1fa9e4066Sahrens /*
2fa9e4066Sahrens * CDDL HEADER START
3fa9e4066Sahrens *
4fa9e4066Sahrens * The contents of this file are subject to the terms of the
5441d80aaSlling * Common Development and Distribution License (the "License").
6441d80aaSlling * You may not use this file except in compliance with the License.
7fa9e4066Sahrens *
8fa9e4066Sahrens * You can obtain a copy of the license at usr/src/OPENSOLARIS.LICENSE
9fa9e4066Sahrens * or http://www.opensolaris.org/os/licensing.
10fa9e4066Sahrens * See the License for the specific language governing permissions
11fa9e4066Sahrens * and limitations under the License.
12fa9e4066Sahrens *
13fa9e4066Sahrens * When distributing Covered Code, include this CDDL HEADER in each
14fa9e4066Sahrens * file and include the License file at usr/src/OPENSOLARIS.LICENSE.
15fa9e4066Sahrens * If applicable, add the following below this CDDL HEADER, with the
16fa9e4066Sahrens * fields enclosed by brackets "[]" replaced with your own identifying
17fa9e4066Sahrens * information: Portions Copyright [yyyy] [name of copyright owner]
18fa9e4066Sahrens *
19fa9e4066Sahrens * CDDL HEADER END
20fa9e4066Sahrens */
21ad135b5dSChristopher Siden
22fa9e4066Sahrens /*
233f9d6ad7SLin Ling * Copyright (c) 2005, 2010, Oracle and/or its affiliates. All rights reserved.
249a686fbcSPaul Dagnelie * Copyright (c) 2012, 2015 by Delphix. All rights reserved.
25fa9e4066Sahrens */
26fa9e4066Sahrens
27fa9e4066Sahrens /*
28fa9e4066Sahrens * Virtual Device Labels
29fa9e4066Sahrens * ---------------------
30fa9e4066Sahrens *
31fa9e4066Sahrens * The vdev label serves several distinct purposes:
32fa9e4066Sahrens *
33fa9e4066Sahrens * 1. Uniquely identify this device as part of a ZFS pool and confirm its
34fa9e4066Sahrens * identity within the pool.
35fa9e4066Sahrens *
36fa9e4066Sahrens * 2. Verify that all the devices given in a configuration are present
37fa9e4066Sahrens * within the pool.
38fa9e4066Sahrens *
39fa9e4066Sahrens * 3. Determine the uberblock for the pool.
40fa9e4066Sahrens *
41fa9e4066Sahrens * 4. In case of an import operation, determine the configuration of the
42fa9e4066Sahrens * toplevel vdev of which it is a part.
43fa9e4066Sahrens *
44fa9e4066Sahrens * 5. If an import operation cannot find all the devices in the pool,
45fa9e4066Sahrens * provide enough information to the administrator to determine which
46fa9e4066Sahrens * devices are missing.
47fa9e4066Sahrens *
48fa9e4066Sahrens * It is important to note that while the kernel is responsible for writing the
49fa9e4066Sahrens * label, it only consumes the information in the first three cases. The
50fa9e4066Sahrens * latter information is only consumed in userland when determining the
51fa9e4066Sahrens * configuration to import a pool.
52fa9e4066Sahrens *
53fa9e4066Sahrens *
54fa9e4066Sahrens * Label Organization
55fa9e4066Sahrens * ------------------
56fa9e4066Sahrens *
57fa9e4066Sahrens * Before describing the contents of the label, it's important to understand how
58fa9e4066Sahrens * the labels are written and updated with respect to the uberblock.
59fa9e4066Sahrens *
60fa9e4066Sahrens * When the pool configuration is altered, either because it was newly created
61fa9e4066Sahrens * or a device was added, we want to update all the labels such that we can deal
62fa9e4066Sahrens * with fatal failure at any point. To this end, each disk has two labels which
63fa9e4066Sahrens * are updated before and after the uberblock is synced. Assuming we have
643d7072f8Seschrock * labels and an uberblock with the following transaction groups:
65fa9e4066Sahrens *
66fa9e4066Sahrens * L1 UB L2
67fa9e4066Sahrens * +------+ +------+ +------+
68fa9e4066Sahrens * | | | | | |
69fa9e4066Sahrens * | t10 | | t10 | | t10 |
70fa9e4066Sahrens * | | | | | |
71fa9e4066Sahrens * +------+ +------+ +------+
72fa9e4066Sahrens *
73fa9e4066Sahrens * In this stable state, the labels and the uberblock were all updated within
74fa9e4066Sahrens * the same transaction group (10). Each label is mirrored and checksummed, so
75fa9e4066Sahrens * that we can detect when we fail partway through writing the label.
76fa9e4066Sahrens *
77fa9e4066Sahrens * In order to identify which labels are valid, the labels are written in the
78fa9e4066Sahrens * following manner:
79fa9e4066Sahrens *
80fa9e4066Sahrens * 1. For each vdev, update 'L1' to the new label
81fa9e4066Sahrens * 2. Update the uberblock
82fa9e4066Sahrens * 3. For each vdev, update 'L2' to the new label
83fa9e4066Sahrens *
84fa9e4066Sahrens * Given arbitrary failure, we can determine the correct label to use based on
85fa9e4066Sahrens * the transaction group. If we fail after updating L1 but before updating the
86fa9e4066Sahrens * UB, we will notice that L1's transaction group is greater than the uberblock,
87fa9e4066Sahrens * so L2 must be valid. If we fail after writing the uberblock but before
88fa9e4066Sahrens * writing L2, we will notice that L2's transaction group is less than L1, and
89fa9e4066Sahrens * therefore L1 is valid.
90fa9e4066Sahrens *
91fa9e4066Sahrens * Another added complexity is that not every label is updated when the config
92fa9e4066Sahrens * is synced. If we add a single device, we do not want to have to re-write
93fa9e4066Sahrens * every label for every device in the pool. This means that both L1 and L2 may
94fa9e4066Sahrens * be older than the pool uberblock, because the necessary information is stored
95fa9e4066Sahrens * on another vdev.
96fa9e4066Sahrens *
97fa9e4066Sahrens *
98fa9e4066Sahrens * On-disk Format
99fa9e4066Sahrens * --------------
100fa9e4066Sahrens *
101fa9e4066Sahrens * The vdev label consists of two distinct parts, and is wrapped within the
102fa9e4066Sahrens * vdev_label_t structure. The label includes 8k of padding to permit legacy
103fa9e4066Sahrens * VTOC disk labels, but is otherwise ignored.
104fa9e4066Sahrens *
105fa9e4066Sahrens * The first half of the label is a packed nvlist which contains pool wide
106fa9e4066Sahrens * properties, per-vdev properties, and configuration information. It is
107fa9e4066Sahrens * described in more detail below.
108fa9e4066Sahrens *
109fa9e4066Sahrens * The latter half of the label consists of a redundant array of uberblocks.
110fa9e4066Sahrens * These uberblocks are updated whenever a transaction group is committed,
111fa9e4066Sahrens * or when the configuration is updated. When a pool is loaded, we scan each
112fa9e4066Sahrens * vdev for the 'best' uberblock.
113fa9e4066Sahrens *
114fa9e4066Sahrens *
115fa9e4066Sahrens * Configuration Information
116fa9e4066Sahrens * -------------------------
117fa9e4066Sahrens *
118fa9e4066Sahrens * The nvlist describing the pool and vdev contains the following elements:
119fa9e4066Sahrens *
120fa9e4066Sahrens * version ZFS on-disk version
121fa9e4066Sahrens * name Pool name
122fa9e4066Sahrens * state Pool state
123fa9e4066Sahrens * txg Transaction group in which this label was written
124fa9e4066Sahrens * pool_guid Unique identifier for this pool
125fa9e4066Sahrens * vdev_tree An nvlist describing vdev tree.
126ad135b5dSChristopher Siden * features_for_read
127ad135b5dSChristopher Siden * An nvlist of the features necessary for reading the MOS.
128fa9e4066Sahrens *
129fa9e4066Sahrens * Each leaf device label also contains the following:
130fa9e4066Sahrens *
131fa9e4066Sahrens * top_guid Unique ID for top-level vdev in which this is contained
132fa9e4066Sahrens * guid Unique ID for the leaf vdev
133fa9e4066Sahrens *
134fa9e4066Sahrens * The 'vs' configuration follows the format described in 'spa_config.c'.
135fa9e4066Sahrens */
136fa9e4066Sahrens
137fa9e4066Sahrens #include <sys/zfs_context.h>
138fa9e4066Sahrens #include <sys/spa.h>
139fa9e4066Sahrens #include <sys/spa_impl.h>
140fa9e4066Sahrens #include <sys/dmu.h>
141fa9e4066Sahrens #include <sys/zap.h>
142fa9e4066Sahrens #include <sys/vdev.h>
143fa9e4066Sahrens #include <sys/vdev_impl.h>
144fa9e4066Sahrens #include <sys/uberblock_impl.h>
145fa9e4066Sahrens #include <sys/metaslab.h>
146fa9e4066Sahrens #include <sys/zio.h>
1473f9d6ad7SLin Ling #include <sys/dsl_scan.h>
148fa9e4066Sahrens #include <sys/fs/zfs.h>
149fa9e4066Sahrens
150fa9e4066Sahrens /*
151fa9e4066Sahrens * Basic routines to read and write from a vdev label.
152fa9e4066Sahrens * Used throughout the rest of this file.
153fa9e4066Sahrens */
154fa9e4066Sahrens uint64_t
vdev_label_offset(uint64_t psize,int l,uint64_t offset)155fa9e4066Sahrens vdev_label_offset(uint64_t psize, int l, uint64_t offset)
156fa9e4066Sahrens {
157ecc2d604Sbonwick ASSERT(offset < sizeof (vdev_label_t));
158e7437265Sahrens ASSERT(P2PHASE_TYPED(psize, sizeof (vdev_label_t), uint64_t) == 0);
159ecc2d604Sbonwick
160fa9e4066Sahrens return (offset + l * sizeof (vdev_label_t) + (l < VDEV_LABELS / 2 ?
161fa9e4066Sahrens 0 : psize - VDEV_LABELS * sizeof (vdev_label_t)));
162fa9e4066Sahrens }
163fa9e4066Sahrens
16421bf64a7Sgw25295 /*
16521bf64a7Sgw25295 * Returns back the vdev label associated with the passed in offset.
16621bf64a7Sgw25295 */
16721bf64a7Sgw25295 int
vdev_label_number(uint64_t psize,uint64_t offset)16821bf64a7Sgw25295 vdev_label_number(uint64_t psize, uint64_t offset)
16921bf64a7Sgw25295 {
17021bf64a7Sgw25295 int l;
17121bf64a7Sgw25295
17221bf64a7Sgw25295 if (offset >= psize - VDEV_LABEL_END_SIZE) {
17321bf64a7Sgw25295 offset -= psize - VDEV_LABEL_END_SIZE;
17421bf64a7Sgw25295 offset += (VDEV_LABELS / 2) * sizeof (vdev_label_t);
17521bf64a7Sgw25295 }
17621bf64a7Sgw25295 l = offset / sizeof (vdev_label_t);
17721bf64a7Sgw25295 return (l < VDEV_LABELS ? l : -1);
17821bf64a7Sgw25295 }
17921bf64a7Sgw25295
180fa9e4066Sahrens static void
vdev_label_read(zio_t * zio,vdev_t * vd,int l,void * buf,uint64_t offset,uint64_t size,zio_done_func_t * done,void * private,int flags)181fa9e4066Sahrens vdev_label_read(zio_t *zio, vdev_t *vd, int l, void *buf, uint64_t offset,
182e14bb325SJeff Bonwick uint64_t size, zio_done_func_t *done, void *private, int flags)
183fa9e4066Sahrens {
184e14bb325SJeff Bonwick ASSERT(spa_config_held(zio->io_spa, SCL_STATE_ALL, RW_WRITER) ==
185e14bb325SJeff Bonwick SCL_STATE_ALL);
186e14bb325SJeff Bonwick ASSERT(flags & ZIO_FLAG_CONFIG_WRITER);
187fa9e4066Sahrens
188fa9e4066Sahrens zio_nowait(zio_read_phys(zio, vd,
189fa9e4066Sahrens vdev_label_offset(vd->vdev_psize, l, offset),
190fa9e4066Sahrens size, buf, ZIO_CHECKSUM_LABEL, done, private,
191e14bb325SJeff Bonwick ZIO_PRIORITY_SYNC_READ, flags, B_TRUE));
192fa9e4066Sahrens }
193fa9e4066Sahrens
194fa9e4066Sahrens static void
vdev_label_write(zio_t * zio,vdev_t * vd,int l,void * buf,uint64_t offset,uint64_t size,zio_done_func_t * done,void * private,int flags)195fa9e4066Sahrens vdev_label_write(zio_t *zio, vdev_t *vd, int l, void *buf, uint64_t offset,
19617f17c2dSbonwick uint64_t size, zio_done_func_t *done, void *private, int flags)
197fa9e4066Sahrens {
198e14bb325SJeff Bonwick ASSERT(spa_config_held(zio->io_spa, SCL_ALL, RW_WRITER) == SCL_ALL ||
199e14bb325SJeff Bonwick (spa_config_held(zio->io_spa, SCL_CONFIG | SCL_STATE, RW_READER) ==
200e14bb325SJeff Bonwick (SCL_CONFIG | SCL_STATE) &&
201e14bb325SJeff Bonwick dsl_pool_sync_context(spa_get_dsl(zio->io_spa))));
202e14bb325SJeff Bonwick ASSERT(flags & ZIO_FLAG_CONFIG_WRITER);
203fa9e4066Sahrens
204fa9e4066Sahrens zio_nowait(zio_write_phys(zio, vd,
205fa9e4066Sahrens vdev_label_offset(vd->vdev_psize, l, offset),
206fa9e4066Sahrens size, buf, ZIO_CHECKSUM_LABEL, done, private,
20717f17c2dSbonwick ZIO_PRIORITY_SYNC_WRITE, flags, B_TRUE));
208fa9e4066Sahrens }
209fa9e4066Sahrens
210fa9e4066Sahrens /*
211fa9e4066Sahrens * Generate the nvlist representing this vdev's config.
212fa9e4066Sahrens */
213fa9e4066Sahrens nvlist_t *
vdev_config_generate(spa_t * spa,vdev_t * vd,boolean_t getstats,vdev_config_flag_t flags)21499653d4eSeschrock vdev_config_generate(spa_t *spa, vdev_t *vd, boolean_t getstats,
2153f9d6ad7SLin Ling vdev_config_flag_t flags)
216fa9e4066Sahrens {
217fa9e4066Sahrens nvlist_t *nv = NULL;
218fa9e4066Sahrens
219b4952e17SGeorge Wilson nv = fnvlist_alloc();
220fa9e4066Sahrens
221b4952e17SGeorge Wilson fnvlist_add_string(nv, ZPOOL_CONFIG_TYPE, vd->vdev_ops->vdev_op_type);
2223f9d6ad7SLin Ling if (!(flags & (VDEV_CONFIG_SPARE | VDEV_CONFIG_L2CACHE)))
223b4952e17SGeorge Wilson fnvlist_add_uint64(nv, ZPOOL_CONFIG_ID, vd->vdev_id);
224b4952e17SGeorge Wilson fnvlist_add_uint64(nv, ZPOOL_CONFIG_GUID, vd->vdev_guid);
225fa9e4066Sahrens
226fa9e4066Sahrens if (vd->vdev_path != NULL)
227b4952e17SGeorge Wilson fnvlist_add_string(nv, ZPOOL_CONFIG_PATH, vd->vdev_path);
228fa9e4066Sahrens
229fa9e4066Sahrens if (vd->vdev_devid != NULL)
230b4952e17SGeorge Wilson fnvlist_add_string(nv, ZPOOL_CONFIG_DEVID, vd->vdev_devid);
231fa9e4066Sahrens
2323d7072f8Seschrock if (vd->vdev_physpath != NULL)
233b4952e17SGeorge Wilson fnvlist_add_string(nv, ZPOOL_CONFIG_PHYS_PATH,
234b4952e17SGeorge Wilson vd->vdev_physpath);
2353d7072f8Seschrock
2366809eb4eSEric Schrock if (vd->vdev_fru != NULL)
237b4952e17SGeorge Wilson fnvlist_add_string(nv, ZPOOL_CONFIG_FRU, vd->vdev_fru);
2386809eb4eSEric Schrock
23999653d4eSeschrock if (vd->vdev_nparity != 0) {
24099653d4eSeschrock ASSERT(strcmp(vd->vdev_ops->vdev_op_type,
24199653d4eSeschrock VDEV_TYPE_RAIDZ) == 0);
24299653d4eSeschrock
24399653d4eSeschrock /*
24499653d4eSeschrock * Make sure someone hasn't managed to sneak a fancy new vdev
24599653d4eSeschrock * into a crufty old storage pool.
24699653d4eSeschrock */
24799653d4eSeschrock ASSERT(vd->vdev_nparity == 1 ||
248f94275ceSAdam Leventhal (vd->vdev_nparity <= 2 &&
249f94275ceSAdam Leventhal spa_version(spa) >= SPA_VERSION_RAIDZ2) ||
250f94275ceSAdam Leventhal (vd->vdev_nparity <= 3 &&
251f94275ceSAdam Leventhal spa_version(spa) >= SPA_VERSION_RAIDZ3));
25299653d4eSeschrock
25399653d4eSeschrock /*
25499653d4eSeschrock * Note that we'll add the nparity tag even on storage pools
25599653d4eSeschrock * that only support a single parity device -- older software
25699653d4eSeschrock * will just ignore it.
25799653d4eSeschrock */
258b4952e17SGeorge Wilson fnvlist_add_uint64(nv, ZPOOL_CONFIG_NPARITY, vd->vdev_nparity);
25999653d4eSeschrock }
26099653d4eSeschrock
261afefbcddSeschrock if (vd->vdev_wholedisk != -1ULL)
262b4952e17SGeorge Wilson fnvlist_add_uint64(nv, ZPOOL_CONFIG_WHOLE_DISK,
263b4952e17SGeorge Wilson vd->vdev_wholedisk);
264afefbcddSeschrock
265ea8dc4b6Seschrock if (vd->vdev_not_present)
266b4952e17SGeorge Wilson fnvlist_add_uint64(nv, ZPOOL_CONFIG_NOT_PRESENT, 1);
267ea8dc4b6Seschrock
26899653d4eSeschrock if (vd->vdev_isspare)
269b4952e17SGeorge Wilson fnvlist_add_uint64(nv, ZPOOL_CONFIG_IS_SPARE, 1);
27099653d4eSeschrock
2713f9d6ad7SLin Ling if (!(flags & (VDEV_CONFIG_SPARE | VDEV_CONFIG_L2CACHE)) &&
2723f9d6ad7SLin Ling vd == vd->vdev_top) {
273b4952e17SGeorge Wilson fnvlist_add_uint64(nv, ZPOOL_CONFIG_METASLAB_ARRAY,
274b4952e17SGeorge Wilson vd->vdev_ms_array);
275b4952e17SGeorge Wilson fnvlist_add_uint64(nv, ZPOOL_CONFIG_METASLAB_SHIFT,
276b4952e17SGeorge Wilson vd->vdev_ms_shift);
277b4952e17SGeorge Wilson fnvlist_add_uint64(nv, ZPOOL_CONFIG_ASHIFT, vd->vdev_ashift);
278b4952e17SGeorge Wilson fnvlist_add_uint64(nv, ZPOOL_CONFIG_ASIZE,
279b4952e17SGeorge Wilson vd->vdev_asize);
280b4952e17SGeorge Wilson fnvlist_add_uint64(nv, ZPOOL_CONFIG_IS_LOG, vd->vdev_islog);
2813f9d6ad7SLin Ling if (vd->vdev_removing)
282b4952e17SGeorge Wilson fnvlist_add_uint64(nv, ZPOOL_CONFIG_REMOVING,
283b4952e17SGeorge Wilson vd->vdev_removing);
284fa9e4066Sahrens }
285fa9e4066Sahrens
2860713e232SGeorge Wilson if (vd->vdev_dtl_sm != NULL) {
287b4952e17SGeorge Wilson fnvlist_add_uint64(nv, ZPOOL_CONFIG_DTL,
2880713e232SGeorge Wilson space_map_object(vd->vdev_dtl_sm));
2890713e232SGeorge Wilson }
290fa9e4066Sahrens
29188ecc943SGeorge Wilson if (vd->vdev_crtxg)
292b4952e17SGeorge Wilson fnvlist_add_uint64(nv, ZPOOL_CONFIG_CREATE_TXG, vd->vdev_crtxg);
29388ecc943SGeorge Wilson
294fa9e4066Sahrens if (getstats) {
295fa9e4066Sahrens vdev_stat_t vs;
2963f9d6ad7SLin Ling pool_scan_stat_t ps;
2973f9d6ad7SLin Ling
298fa9e4066Sahrens vdev_get_stats(vd, &vs);
299b4952e17SGeorge Wilson fnvlist_add_uint64_array(nv, ZPOOL_CONFIG_VDEV_STATS,
300b4952e17SGeorge Wilson (uint64_t *)&vs, sizeof (vs) / sizeof (uint64_t));
3013f9d6ad7SLin Ling
3023f9d6ad7SLin Ling /* provide either current or previous scan information */
3033f9d6ad7SLin Ling if (spa_scan_get_stats(spa, &ps) == 0) {
304b4952e17SGeorge Wilson fnvlist_add_uint64_array(nv,
3053f9d6ad7SLin Ling ZPOOL_CONFIG_SCAN_STATS, (uint64_t *)&ps,
306b4952e17SGeorge Wilson sizeof (pool_scan_stat_t) / sizeof (uint64_t));
3073f9d6ad7SLin Ling }
308fa9e4066Sahrens }
309fa9e4066Sahrens
310fa9e4066Sahrens if (!vd->vdev_ops->vdev_op_leaf) {
311fa9e4066Sahrens nvlist_t **child;
3123f9d6ad7SLin Ling int c, idx;
313fa9e4066Sahrens
31488ecc943SGeorge Wilson ASSERT(!vd->vdev_ishole);
31588ecc943SGeorge Wilson
316fa9e4066Sahrens child = kmem_alloc(vd->vdev_children * sizeof (nvlist_t *),
317fa9e4066Sahrens KM_SLEEP);
318fa9e4066Sahrens
3193f9d6ad7SLin Ling for (c = 0, idx = 0; c < vd->vdev_children; c++) {
3203f9d6ad7SLin Ling vdev_t *cvd = vd->vdev_child[c];
321fa9e4066Sahrens
3223f9d6ad7SLin Ling /*
3233f9d6ad7SLin Ling * If we're generating an nvlist of removing
3243f9d6ad7SLin Ling * vdevs then skip over any device which is
3253f9d6ad7SLin Ling * not being removed.
3263f9d6ad7SLin Ling */
3273f9d6ad7SLin Ling if ((flags & VDEV_CONFIG_REMOVING) &&
3283f9d6ad7SLin Ling !cvd->vdev_removing)
3293f9d6ad7SLin Ling continue;
330fa9e4066Sahrens
3313f9d6ad7SLin Ling child[idx++] = vdev_config_generate(spa, cvd,
3323f9d6ad7SLin Ling getstats, flags);
3333f9d6ad7SLin Ling }
3343f9d6ad7SLin Ling
3353f9d6ad7SLin Ling if (idx) {
336b4952e17SGeorge Wilson fnvlist_add_nvlist_array(nv, ZPOOL_CONFIG_CHILDREN,
337b4952e17SGeorge Wilson child, idx);
3383f9d6ad7SLin Ling }
3393f9d6ad7SLin Ling
3403f9d6ad7SLin Ling for (c = 0; c < idx; c++)
341fa9e4066Sahrens nvlist_free(child[c]);
342fa9e4066Sahrens
343fa9e4066Sahrens kmem_free(child, vd->vdev_children * sizeof (nvlist_t *));
344441d80aaSlling
345441d80aaSlling } else {
346069f55e2SEric Schrock const char *aux = NULL;
347069f55e2SEric Schrock
348ecc2d604Sbonwick if (vd->vdev_offline && !vd->vdev_tmpoffline)
349b4952e17SGeorge Wilson fnvlist_add_uint64(nv, ZPOOL_CONFIG_OFFLINE, B_TRUE);
350b4952e17SGeorge Wilson if (vd->vdev_resilver_txg != 0)
351b4952e17SGeorge Wilson fnvlist_add_uint64(nv, ZPOOL_CONFIG_RESILVER_TXG,
352b4952e17SGeorge Wilson vd->vdev_resilver_txg);
3533d7072f8Seschrock if (vd->vdev_faulted)
354b4952e17SGeorge Wilson fnvlist_add_uint64(nv, ZPOOL_CONFIG_FAULTED, B_TRUE);
3553d7072f8Seschrock if (vd->vdev_degraded)
356b4952e17SGeorge Wilson fnvlist_add_uint64(nv, ZPOOL_CONFIG_DEGRADED, B_TRUE);
3573d7072f8Seschrock if (vd->vdev_removed)
358b4952e17SGeorge Wilson fnvlist_add_uint64(nv, ZPOOL_CONFIG_REMOVED, B_TRUE);
3593d7072f8Seschrock if (vd->vdev_unspare)
360b4952e17SGeorge Wilson fnvlist_add_uint64(nv, ZPOOL_CONFIG_UNSPARE, B_TRUE);
36188ecc943SGeorge Wilson if (vd->vdev_ishole)
362b4952e17SGeorge Wilson fnvlist_add_uint64(nv, ZPOOL_CONFIG_IS_HOLE, B_TRUE);
363069f55e2SEric Schrock
364069f55e2SEric Schrock switch (vd->vdev_stat.vs_aux) {
365069f55e2SEric Schrock case VDEV_AUX_ERR_EXCEEDED:
366069f55e2SEric Schrock aux = "err_exceeded";
367069f55e2SEric Schrock break;
368069f55e2SEric Schrock
369069f55e2SEric Schrock case VDEV_AUX_EXTERNAL:
370069f55e2SEric Schrock aux = "external";
371069f55e2SEric Schrock break;
372069f55e2SEric Schrock }
373069f55e2SEric Schrock
374069f55e2SEric Schrock if (aux != NULL)
375b4952e17SGeorge Wilson fnvlist_add_string(nv, ZPOOL_CONFIG_AUX_STATE, aux);
3761195e687SMark J Musante
3771195e687SMark J Musante if (vd->vdev_splitting && vd->vdev_orig_guid != 0LL) {
378b4952e17SGeorge Wilson fnvlist_add_uint64(nv, ZPOOL_CONFIG_ORIG_GUID,
379b4952e17SGeorge Wilson vd->vdev_orig_guid);
3801195e687SMark J Musante }
381441d80aaSlling }
382fa9e4066Sahrens
383fa9e4066Sahrens return (nv);
384fa9e4066Sahrens }
385fa9e4066Sahrens
38688ecc943SGeorge Wilson /*
38788ecc943SGeorge Wilson * Generate a view of the top-level vdevs. If we currently have holes
38888ecc943SGeorge Wilson * in the namespace, then generate an array which contains a list of holey
38988ecc943SGeorge Wilson * vdevs. Additionally, add the number of top-level children that currently
39088ecc943SGeorge Wilson * exist.
39188ecc943SGeorge Wilson */
39288ecc943SGeorge Wilson void
vdev_top_config_generate(spa_t * spa,nvlist_t * config)39388ecc943SGeorge Wilson vdev_top_config_generate(spa_t *spa, nvlist_t *config)
39488ecc943SGeorge Wilson {
39588ecc943SGeorge Wilson vdev_t *rvd = spa->spa_root_vdev;
39688ecc943SGeorge Wilson uint64_t *array;
3973f9d6ad7SLin Ling uint_t c, idx;
39888ecc943SGeorge Wilson
39988ecc943SGeorge Wilson array = kmem_alloc(rvd->vdev_children * sizeof (uint64_t), KM_SLEEP);
40088ecc943SGeorge Wilson
4013f9d6ad7SLin Ling for (c = 0, idx = 0; c < rvd->vdev_children; c++) {
40288ecc943SGeorge Wilson vdev_t *tvd = rvd->vdev_child[c];
40388ecc943SGeorge Wilson
40488ecc943SGeorge Wilson if (tvd->vdev_ishole)
40588ecc943SGeorge Wilson array[idx++] = c;
40688ecc943SGeorge Wilson }
40788ecc943SGeorge Wilson
408312c6e15SGeorge Wilson if (idx) {
40988ecc943SGeorge Wilson VERIFY(nvlist_add_uint64_array(config, ZPOOL_CONFIG_HOLE_ARRAY,
410312c6e15SGeorge Wilson array, idx) == 0);
411312c6e15SGeorge Wilson }
412312c6e15SGeorge Wilson
41388ecc943SGeorge Wilson VERIFY(nvlist_add_uint64(config, ZPOOL_CONFIG_VDEV_CHILDREN,
41488ecc943SGeorge Wilson rvd->vdev_children) == 0);
41588ecc943SGeorge Wilson
41688ecc943SGeorge Wilson kmem_free(array, rvd->vdev_children * sizeof (uint64_t));
41788ecc943SGeorge Wilson }
41888ecc943SGeorge Wilson
419ad135b5dSChristopher Siden /*
420dfbb9432SGeorge Wilson * Returns the configuration from the label of the given vdev. For vdevs
421dfbb9432SGeorge Wilson * which don't have a txg value stored on their label (i.e. spares/cache)
422dfbb9432SGeorge Wilson * or have not been completely initialized (txg = 0) just return
423dfbb9432SGeorge Wilson * the configuration from the first valid label we find. Otherwise,
424dfbb9432SGeorge Wilson * find the most up-to-date label that does not exceed the specified
425dfbb9432SGeorge Wilson * 'txg' value.
426ad135b5dSChristopher Siden */
427fa9e4066Sahrens nvlist_t *
vdev_label_read_config(vdev_t * vd,uint64_t txg)428dfbb9432SGeorge Wilson vdev_label_read_config(vdev_t *vd, uint64_t txg)
429fa9e4066Sahrens {
4300373e76bSbonwick spa_t *spa = vd->vdev_spa;
431fa9e4066Sahrens nvlist_t *config = NULL;
432fa9e4066Sahrens vdev_phys_t *vp;
433fa9e4066Sahrens zio_t *zio;
434dfbb9432SGeorge Wilson uint64_t best_txg = 0;
435dfbb9432SGeorge Wilson int error = 0;
4368956713aSEric Schrock int flags = ZIO_FLAG_CONFIG_WRITER | ZIO_FLAG_CANFAIL |
4378956713aSEric Schrock ZIO_FLAG_SPECULATIVE;
438fa9e4066Sahrens
439e14bb325SJeff Bonwick ASSERT(spa_config_held(spa, SCL_STATE_ALL, RW_WRITER) == SCL_STATE_ALL);
4400373e76bSbonwick
4410a4e9518Sgw25295 if (!vdev_readable(vd))
442fa9e4066Sahrens return (NULL);
443fa9e4066Sahrens
444fa9e4066Sahrens vp = zio_buf_alloc(sizeof (vdev_phys_t));
445fa9e4066Sahrens
4468956713aSEric Schrock retry:
447e14bb325SJeff Bonwick for (int l = 0; l < VDEV_LABELS; l++) {
448dfbb9432SGeorge Wilson nvlist_t *label = NULL;
449fa9e4066Sahrens
450e14bb325SJeff Bonwick zio = zio_root(spa, NULL, NULL, flags);
451fa9e4066Sahrens
452fa9e4066Sahrens vdev_label_read(zio, vd, l, vp,
453fa9e4066Sahrens offsetof(vdev_label_t, vl_vdev_phys),
454e14bb325SJeff Bonwick sizeof (vdev_phys_t), NULL, NULL, flags);
455fa9e4066Sahrens
456fa9e4066Sahrens if (zio_wait(zio) == 0 &&
457fa9e4066Sahrens nvlist_unpack(vp->vp_nvlist, sizeof (vp->vp_nvlist),
458dfbb9432SGeorge Wilson &label, 0) == 0) {
459dfbb9432SGeorge Wilson uint64_t label_txg = 0;
460fa9e4066Sahrens
461dfbb9432SGeorge Wilson /*
462dfbb9432SGeorge Wilson * Auxiliary vdevs won't have txg values in their
463dfbb9432SGeorge Wilson * labels and newly added vdevs may not have been
464dfbb9432SGeorge Wilson * completely initialized so just return the
465dfbb9432SGeorge Wilson * configuration from the first valid label we
466dfbb9432SGeorge Wilson * encounter.
467dfbb9432SGeorge Wilson */
468dfbb9432SGeorge Wilson error = nvlist_lookup_uint64(label,
469dfbb9432SGeorge Wilson ZPOOL_CONFIG_POOL_TXG, &label_txg);
470dfbb9432SGeorge Wilson if ((error || label_txg == 0) && !config) {
471dfbb9432SGeorge Wilson config = label;
472dfbb9432SGeorge Wilson break;
473dfbb9432SGeorge Wilson } else if (label_txg <= txg && label_txg > best_txg) {
474dfbb9432SGeorge Wilson best_txg = label_txg;
475fa9e4066Sahrens nvlist_free(config);
476dfbb9432SGeorge Wilson config = fnvlist_dup(label);
477dfbb9432SGeorge Wilson }
478dfbb9432SGeorge Wilson }
479dfbb9432SGeorge Wilson
480dfbb9432SGeorge Wilson if (label != NULL) {
481dfbb9432SGeorge Wilson nvlist_free(label);
482dfbb9432SGeorge Wilson label = NULL;
483fa9e4066Sahrens }
484fa9e4066Sahrens }
485fa9e4066Sahrens
4868956713aSEric Schrock if (config == NULL && !(flags & ZIO_FLAG_TRYHARD)) {
4878956713aSEric Schrock flags |= ZIO_FLAG_TRYHARD;
4888956713aSEric Schrock goto retry;
4898956713aSEric Schrock }
4908956713aSEric Schrock
491fa9e4066Sahrens zio_buf_free(vp, sizeof (vdev_phys_t));
492fa9e4066Sahrens
493fa9e4066Sahrens return (config);
494fa9e4066Sahrens }
495fa9e4066Sahrens
49639c23413Seschrock /*
49739c23413Seschrock * Determine if a device is in use. The 'spare_guid' parameter will be filled
49839c23413Seschrock * in with the device guid if this spare is active elsewhere on the system.
49939c23413Seschrock */
50039c23413Seschrock static boolean_t
vdev_inuse(vdev_t * vd,uint64_t crtxg,vdev_labeltype_t reason,uint64_t * spare_guid,uint64_t * l2cache_guid)50139c23413Seschrock vdev_inuse(vdev_t *vd, uint64_t crtxg, vdev_labeltype_t reason,
502fa94a07fSbrendan uint64_t *spare_guid, uint64_t *l2cache_guid)
50339c23413Seschrock {
50439c23413Seschrock spa_t *spa = vd->vdev_spa;
50539c23413Seschrock uint64_t state, pool_guid, device_guid, txg, spare_pool;
50639c23413Seschrock uint64_t vdtxg = 0;
50739c23413Seschrock nvlist_t *label;
50839c23413Seschrock
50939c23413Seschrock if (spare_guid)
51039c23413Seschrock *spare_guid = 0ULL;
511fa94a07fSbrendan if (l2cache_guid)
512fa94a07fSbrendan *l2cache_guid = 0ULL;
51339c23413Seschrock
51439c23413Seschrock /*
51539c23413Seschrock * Read the label, if any, and perform some basic sanity checks.
51639c23413Seschrock */
517dfbb9432SGeorge Wilson if ((label = vdev_label_read_config(vd, -1ULL)) == NULL)
51839c23413Seschrock return (B_FALSE);
51939c23413Seschrock
52039c23413Seschrock (void) nvlist_lookup_uint64(label, ZPOOL_CONFIG_CREATE_TXG,
52139c23413Seschrock &vdtxg);
52239c23413Seschrock
52339c23413Seschrock if (nvlist_lookup_uint64(label, ZPOOL_CONFIG_POOL_STATE,
52439c23413Seschrock &state) != 0 ||
52539c23413Seschrock nvlist_lookup_uint64(label, ZPOOL_CONFIG_GUID,
52639c23413Seschrock &device_guid) != 0) {
52739c23413Seschrock nvlist_free(label);
52839c23413Seschrock return (B_FALSE);
52939c23413Seschrock }
53039c23413Seschrock
531fa94a07fSbrendan if (state != POOL_STATE_SPARE && state != POOL_STATE_L2CACHE &&
53239c23413Seschrock (nvlist_lookup_uint64(label, ZPOOL_CONFIG_POOL_GUID,
53339c23413Seschrock &pool_guid) != 0 ||
53439c23413Seschrock nvlist_lookup_uint64(label, ZPOOL_CONFIG_POOL_TXG,
53539c23413Seschrock &txg) != 0)) {
53639c23413Seschrock nvlist_free(label);
53739c23413Seschrock return (B_FALSE);
53839c23413Seschrock }
53939c23413Seschrock
54039c23413Seschrock nvlist_free(label);
54139c23413Seschrock
54239c23413Seschrock /*
54339c23413Seschrock * Check to see if this device indeed belongs to the pool it claims to
54439c23413Seschrock * be a part of. The only way this is allowed is if the device is a hot
54539c23413Seschrock * spare (which we check for later on).
54639c23413Seschrock */
547fa94a07fSbrendan if (state != POOL_STATE_SPARE && state != POOL_STATE_L2CACHE &&
54839c23413Seschrock !spa_guid_exists(pool_guid, device_guid) &&
54989a89ebfSlling !spa_spare_exists(device_guid, NULL, NULL) &&
550fa94a07fSbrendan !spa_l2cache_exists(device_guid, NULL))
55139c23413Seschrock return (B_FALSE);
55239c23413Seschrock
55339c23413Seschrock /*
55439c23413Seschrock * If the transaction group is zero, then this an initialized (but
55539c23413Seschrock * unused) label. This is only an error if the create transaction
55639c23413Seschrock * on-disk is the same as the one we're using now, in which case the
55739c23413Seschrock * user has attempted to add the same vdev multiple times in the same
55839c23413Seschrock * transaction.
55939c23413Seschrock */
560fa94a07fSbrendan if (state != POOL_STATE_SPARE && state != POOL_STATE_L2CACHE &&
561fa94a07fSbrendan txg == 0 && vdtxg == crtxg)
56239c23413Seschrock return (B_TRUE);
56339c23413Seschrock
56439c23413Seschrock /*
56539c23413Seschrock * Check to see if this is a spare device. We do an explicit check for
56639c23413Seschrock * spa_has_spare() here because it may be on our pending list of spares
567fa94a07fSbrendan * to add. We also check if it is an l2cache device.
56839c23413Seschrock */
56989a89ebfSlling if (spa_spare_exists(device_guid, &spare_pool, NULL) ||
57039c23413Seschrock spa_has_spare(spa, device_guid)) {
57139c23413Seschrock if (spare_guid)
57239c23413Seschrock *spare_guid = device_guid;
57339c23413Seschrock
57439c23413Seschrock switch (reason) {
57539c23413Seschrock case VDEV_LABEL_CREATE:
576fa94a07fSbrendan case VDEV_LABEL_L2CACHE:
57739c23413Seschrock return (B_TRUE);
57839c23413Seschrock
57939c23413Seschrock case VDEV_LABEL_REPLACE:
58039c23413Seschrock return (!spa_has_spare(spa, device_guid) ||
58139c23413Seschrock spare_pool != 0ULL);
58239c23413Seschrock
58339c23413Seschrock case VDEV_LABEL_SPARE:
58439c23413Seschrock return (spa_has_spare(spa, device_guid));
58539c23413Seschrock }
58639c23413Seschrock }
58739c23413Seschrock
58839c23413Seschrock /*
589fa94a07fSbrendan * Check to see if this is an l2cache device.
590fa94a07fSbrendan */
591fa94a07fSbrendan if (spa_l2cache_exists(device_guid, NULL))
592fa94a07fSbrendan return (B_TRUE);
593fa94a07fSbrendan
594fa94a07fSbrendan /*
595f9af39baSGeorge Wilson * We can't rely on a pool's state if it's been imported
596f9af39baSGeorge Wilson * read-only. Instead we look to see if the pools is marked
597f9af39baSGeorge Wilson * read-only in the namespace and set the state to active.
598f9af39baSGeorge Wilson */
5995bdd995dSRichard Yao if (state != POOL_STATE_SPARE && state != POOL_STATE_L2CACHE &&
6005bdd995dSRichard Yao (spa = spa_by_guid(pool_guid, device_guid)) != NULL &&
601f9af39baSGeorge Wilson spa_mode(spa) == FREAD)
602f9af39baSGeorge Wilson state = POOL_STATE_ACTIVE;
603f9af39baSGeorge Wilson
604f9af39baSGeorge Wilson /*
60539c23413Seschrock * If the device is marked ACTIVE, then this device is in use by another
60639c23413Seschrock * pool on the system.
60739c23413Seschrock */
60839c23413Seschrock return (state == POOL_STATE_ACTIVE);
60939c23413Seschrock }
61039c23413Seschrock
61139c23413Seschrock /*
61239c23413Seschrock * Initialize a vdev label. We check to make sure each leaf device is not in
61339c23413Seschrock * use, and writable. We put down an initial label which we will later
61439c23413Seschrock * overwrite with a complete label. Note that it's important to do this
61539c23413Seschrock * sequentially, not in parallel, so that we catch cases of multiple use of the
61639c23413Seschrock * same leaf vdev in the vdev we're creating -- e.g. mirroring a disk with
61739c23413Seschrock * itself.
61839c23413Seschrock */
61939c23413Seschrock int
vdev_label_init(vdev_t * vd,uint64_t crtxg,vdev_labeltype_t reason)62039c23413Seschrock vdev_label_init(vdev_t *vd, uint64_t crtxg, vdev_labeltype_t reason)
621fa9e4066Sahrens {
622fa9e4066Sahrens spa_t *spa = vd->vdev_spa;
623fa9e4066Sahrens nvlist_t *label;
624fa9e4066Sahrens vdev_phys_t *vp;
625f83ffe1aSLin Ling char *pad2;
626ecc2d604Sbonwick uberblock_t *ub;
627fa9e4066Sahrens zio_t *zio;
628fa9e4066Sahrens char *buf;
629fa9e4066Sahrens size_t buflen;
630fa9e4066Sahrens int error;
631fa94a07fSbrendan uint64_t spare_guid, l2cache_guid;
632e14bb325SJeff Bonwick int flags = ZIO_FLAG_CONFIG_WRITER | ZIO_FLAG_CANFAIL;
633fa9e4066Sahrens
634e14bb325SJeff Bonwick ASSERT(spa_config_held(spa, SCL_ALL, RW_WRITER) == SCL_ALL);
6350373e76bSbonwick
636e14bb325SJeff Bonwick for (int c = 0; c < vd->vdev_children; c++)
63739c23413Seschrock if ((error = vdev_label_init(vd->vdev_child[c],
63839c23413Seschrock crtxg, reason)) != 0)
639fa9e4066Sahrens return (error);
640fa9e4066Sahrens
64188ecc943SGeorge Wilson /* Track the creation time for this vdev */
64288ecc943SGeorge Wilson vd->vdev_crtxg = crtxg;
64388ecc943SGeorge Wilson
644973c78e9SGeorge Wilson if (!vd->vdev_ops->vdev_op_leaf || !spa_writeable(spa))
645fa9e4066Sahrens return (0);
646fa9e4066Sahrens
647fa9e4066Sahrens /*
64839c23413Seschrock * Dead vdevs cannot be initialized.
649fa9e4066Sahrens */
650fa9e4066Sahrens if (vdev_is_dead(vd))
651be6fd75aSMatthew Ahrens return (SET_ERROR(EIO));
652fa9e4066Sahrens
653fa9e4066Sahrens /*
65439c23413Seschrock * Determine if the vdev is in use.
655fa9e4066Sahrens */
6561195e687SMark J Musante if (reason != VDEV_LABEL_REMOVE && reason != VDEV_LABEL_SPLIT &&
657fa94a07fSbrendan vdev_inuse(vd, crtxg, reason, &spare_guid, &l2cache_guid))
658be6fd75aSMatthew Ahrens return (SET_ERROR(EBUSY));
659fa9e4066Sahrens
66099653d4eSeschrock /*
661fa94a07fSbrendan * If this is a request to add or replace a spare or l2cache device
662fa94a07fSbrendan * that is in use elsewhere on the system, then we must update the
663fa94a07fSbrendan * guid (which was initialized to a random value) to reflect the
664fa94a07fSbrendan * actual GUID (which is shared between multiple pools).
66599653d4eSeschrock */
666fa94a07fSbrendan if (reason != VDEV_LABEL_REMOVE && reason != VDEV_LABEL_L2CACHE &&
667fa94a07fSbrendan spare_guid != 0ULL) {
66831157203SJeff Bonwick uint64_t guid_delta = spare_guid - vd->vdev_guid;
66999653d4eSeschrock
67031157203SJeff Bonwick vd->vdev_guid += guid_delta;
67131157203SJeff Bonwick
67231157203SJeff Bonwick for (vdev_t *pvd = vd; pvd != NULL; pvd = pvd->vdev_parent)
67331157203SJeff Bonwick pvd->vdev_guid_sum += guid_delta;
67439c23413Seschrock
67539c23413Seschrock /*
67639c23413Seschrock * If this is a replacement, then we want to fallthrough to the
67739c23413Seschrock * rest of the code. If we're adding a spare, then it's already
6783d7072f8Seschrock * labeled appropriately and we can just return.
67939c23413Seschrock */
68039c23413Seschrock if (reason == VDEV_LABEL_SPARE)
68199653d4eSeschrock return (0);
6821195e687SMark J Musante ASSERT(reason == VDEV_LABEL_REPLACE ||
6831195e687SMark J Musante reason == VDEV_LABEL_SPLIT);
684fa9e4066Sahrens }
68599653d4eSeschrock
686fa94a07fSbrendan if (reason != VDEV_LABEL_REMOVE && reason != VDEV_LABEL_SPARE &&
687fa94a07fSbrendan l2cache_guid != 0ULL) {
68831157203SJeff Bonwick uint64_t guid_delta = l2cache_guid - vd->vdev_guid;
689fa94a07fSbrendan
69031157203SJeff Bonwick vd->vdev_guid += guid_delta;
69131157203SJeff Bonwick
69231157203SJeff Bonwick for (vdev_t *pvd = vd; pvd != NULL; pvd = pvd->vdev_parent)
69331157203SJeff Bonwick pvd->vdev_guid_sum += guid_delta;
694fa94a07fSbrendan
695fa94a07fSbrendan /*
696fa94a07fSbrendan * If this is a replacement, then we want to fallthrough to the
697fa94a07fSbrendan * rest of the code. If we're adding an l2cache, then it's
698fa94a07fSbrendan * already labeled appropriately and we can just return.
699fa94a07fSbrendan */
700fa94a07fSbrendan if (reason == VDEV_LABEL_L2CACHE)
701fa94a07fSbrendan return (0);
702fa94a07fSbrendan ASSERT(reason == VDEV_LABEL_REPLACE);
703fa94a07fSbrendan }
704fa94a07fSbrendan
70599653d4eSeschrock /*
70639c23413Seschrock * Initialize its label.
707fa9e4066Sahrens */
708fa9e4066Sahrens vp = zio_buf_alloc(sizeof (vdev_phys_t));
709fa9e4066Sahrens bzero(vp, sizeof (vdev_phys_t));
710fa9e4066Sahrens
711fa9e4066Sahrens /*
712fa9e4066Sahrens * Generate a label describing the pool and our top-level vdev.
713fa9e4066Sahrens * We mark it as being from txg 0 to indicate that it's not
714fa9e4066Sahrens * really part of an active pool just yet. The labels will
715fa9e4066Sahrens * be written again with a meaningful txg by spa_sync().
716fa9e4066Sahrens */
71739c23413Seschrock if (reason == VDEV_LABEL_SPARE ||
71839c23413Seschrock (reason == VDEV_LABEL_REMOVE && vd->vdev_isspare)) {
71939c23413Seschrock /*
72039c23413Seschrock * For inactive hot spares, we generate a special label that
72139c23413Seschrock * identifies as a mutually shared hot spare. We write the
72239c23413Seschrock * label if we are adding a hot spare, or if we are removing an
72339c23413Seschrock * active hot spare (in which case we want to revert the
72439c23413Seschrock * labels).
72539c23413Seschrock */
72699653d4eSeschrock VERIFY(nvlist_alloc(&label, NV_UNIQUE_NAME, KM_SLEEP) == 0);
72799653d4eSeschrock
72899653d4eSeschrock VERIFY(nvlist_add_uint64(label, ZPOOL_CONFIG_VERSION,
72999653d4eSeschrock spa_version(spa)) == 0);
73099653d4eSeschrock VERIFY(nvlist_add_uint64(label, ZPOOL_CONFIG_POOL_STATE,
73199653d4eSeschrock POOL_STATE_SPARE) == 0);
73299653d4eSeschrock VERIFY(nvlist_add_uint64(label, ZPOOL_CONFIG_GUID,
73399653d4eSeschrock vd->vdev_guid) == 0);
734fa94a07fSbrendan } else if (reason == VDEV_LABEL_L2CACHE ||
735fa94a07fSbrendan (reason == VDEV_LABEL_REMOVE && vd->vdev_isl2cache)) {
736fa94a07fSbrendan /*
737fa94a07fSbrendan * For level 2 ARC devices, add a special label.
738fa94a07fSbrendan */
739fa94a07fSbrendan VERIFY(nvlist_alloc(&label, NV_UNIQUE_NAME, KM_SLEEP) == 0);
740fa94a07fSbrendan
741fa94a07fSbrendan VERIFY(nvlist_add_uint64(label, ZPOOL_CONFIG_VERSION,
742fa94a07fSbrendan spa_version(spa)) == 0);
743fa94a07fSbrendan VERIFY(nvlist_add_uint64(label, ZPOOL_CONFIG_POOL_STATE,
744fa94a07fSbrendan POOL_STATE_L2CACHE) == 0);
745fa94a07fSbrendan VERIFY(nvlist_add_uint64(label, ZPOOL_CONFIG_GUID,
746fa94a07fSbrendan vd->vdev_guid) == 0);
74799653d4eSeschrock } else {
7481195e687SMark J Musante uint64_t txg = 0ULL;
7491195e687SMark J Musante
7501195e687SMark J Musante if (reason == VDEV_LABEL_SPLIT)
7511195e687SMark J Musante txg = spa->spa_uberblock.ub_txg;
7521195e687SMark J Musante label = spa_config_generate(spa, vd, txg, B_FALSE);
753fa9e4066Sahrens
754fa9e4066Sahrens /*
75599653d4eSeschrock * Add our creation time. This allows us to detect multiple
75699653d4eSeschrock * vdev uses as described above, and automatically expires if we
75799653d4eSeschrock * fail.
758fa9e4066Sahrens */
75999653d4eSeschrock VERIFY(nvlist_add_uint64(label, ZPOOL_CONFIG_CREATE_TXG,
76099653d4eSeschrock crtxg) == 0);
76199653d4eSeschrock }
762fa9e4066Sahrens
763fa9e4066Sahrens buf = vp->vp_nvlist;
764fa9e4066Sahrens buflen = sizeof (vp->vp_nvlist);
765fa9e4066Sahrens
766a75573b6Smmusante error = nvlist_pack(label, &buf, &buflen, NV_ENCODE_XDR, KM_SLEEP);
767a75573b6Smmusante if (error != 0) {
768fa9e4066Sahrens nvlist_free(label);
769fa9e4066Sahrens zio_buf_free(vp, sizeof (vdev_phys_t));
770a75573b6Smmusante /* EFAULT means nvlist_pack ran out of room */
771a75573b6Smmusante return (error == EFAULT ? ENAMETOOLONG : EINVAL);
772fa9e4066Sahrens }
773fa9e4066Sahrens
774fa9e4066Sahrens /*
775fa9e4066Sahrens * Initialize uberblock template.
776fa9e4066Sahrens */
777f64c0e34SEric Taylor ub = zio_buf_alloc(VDEV_UBERBLOCK_RING);
778f64c0e34SEric Taylor bzero(ub, VDEV_UBERBLOCK_RING);
779ecc2d604Sbonwick *ub = spa->spa_uberblock;
780ecc2d604Sbonwick ub->ub_txg = 0;
781fa9e4066Sahrens
782f83ffe1aSLin Ling /* Initialize the 2nd padding area. */
783f83ffe1aSLin Ling pad2 = zio_buf_alloc(VDEV_PAD_SIZE);
784f83ffe1aSLin Ling bzero(pad2, VDEV_PAD_SIZE);
785f83ffe1aSLin Ling
786fa9e4066Sahrens /*
787fa9e4066Sahrens * Write everything in parallel.
788fa9e4066Sahrens */
7898956713aSEric Schrock retry:
79017f17c2dSbonwick zio = zio_root(spa, NULL, NULL, flags);
791fa9e4066Sahrens
792e14bb325SJeff Bonwick for (int l = 0; l < VDEV_LABELS; l++) {
793fa9e4066Sahrens
794fa9e4066Sahrens vdev_label_write(zio, vd, l, vp,
795fa9e4066Sahrens offsetof(vdev_label_t, vl_vdev_phys),
79617f17c2dSbonwick sizeof (vdev_phys_t), NULL, NULL, flags);
797fa9e4066Sahrens
798f83ffe1aSLin Ling /*
799f83ffe1aSLin Ling * Skip the 1st padding area.
800f83ffe1aSLin Ling * Zero out the 2nd padding area where it might have
801f83ffe1aSLin Ling * left over data from previous filesystem format.
802f83ffe1aSLin Ling */
803f83ffe1aSLin Ling vdev_label_write(zio, vd, l, pad2,
804f83ffe1aSLin Ling offsetof(vdev_label_t, vl_pad2),
805f83ffe1aSLin Ling VDEV_PAD_SIZE, NULL, NULL, flags);
806f83ffe1aSLin Ling
807ecc2d604Sbonwick vdev_label_write(zio, vd, l, ub,
808f64c0e34SEric Taylor offsetof(vdev_label_t, vl_uberblock),
809f64c0e34SEric Taylor VDEV_UBERBLOCK_RING, NULL, NULL, flags);
810fa9e4066Sahrens }
811fa9e4066Sahrens
812fa9e4066Sahrens error = zio_wait(zio);
813fa9e4066Sahrens
8148956713aSEric Schrock if (error != 0 && !(flags & ZIO_FLAG_TRYHARD)) {
8158956713aSEric Schrock flags |= ZIO_FLAG_TRYHARD;
8168956713aSEric Schrock goto retry;
8178956713aSEric Schrock }
8188956713aSEric Schrock
819fa9e4066Sahrens nvlist_free(label);
820f83ffe1aSLin Ling zio_buf_free(pad2, VDEV_PAD_SIZE);
821f64c0e34SEric Taylor zio_buf_free(ub, VDEV_UBERBLOCK_RING);
822fa9e4066Sahrens zio_buf_free(vp, sizeof (vdev_phys_t));
823fa9e4066Sahrens
82499653d4eSeschrock /*
82539c23413Seschrock * If this vdev hasn't been previously identified as a spare, then we
8263d7072f8Seschrock * mark it as such only if a) we are labeling it as a spare, or b) it
827fa94a07fSbrendan * exists as a spare elsewhere in the system. Do the same for
828fa94a07fSbrendan * level 2 ARC devices.
82999653d4eSeschrock */
83039c23413Seschrock if (error == 0 && !vd->vdev_isspare &&
83139c23413Seschrock (reason == VDEV_LABEL_SPARE ||
83289a89ebfSlling spa_spare_exists(vd->vdev_guid, NULL, NULL)))
83339c23413Seschrock spa_spare_add(vd);
83439c23413Seschrock
835fa94a07fSbrendan if (error == 0 && !vd->vdev_isl2cache &&
836fa94a07fSbrendan (reason == VDEV_LABEL_L2CACHE ||
837fa94a07fSbrendan spa_l2cache_exists(vd->vdev_guid, NULL)))
838fa94a07fSbrendan spa_l2cache_add(vd);
839fa94a07fSbrendan
84039c23413Seschrock return (error);
84199653d4eSeschrock }
84299653d4eSeschrock
843fa9e4066Sahrens /*
844fa9e4066Sahrens * ==========================================================================
845fa9e4066Sahrens * uberblock load/sync
846fa9e4066Sahrens * ==========================================================================
847fa9e4066Sahrens */
848fa9e4066Sahrens
849fa9e4066Sahrens /*
850fa9e4066Sahrens * Consider the following situation: txg is safely synced to disk. We've
851fa9e4066Sahrens * written the first uberblock for txg + 1, and then we lose power. When we
852fa9e4066Sahrens * come back up, we fail to see the uberblock for txg + 1 because, say,
853fa9e4066Sahrens * it was on a mirrored device and the replica to which we wrote txg + 1
854fa9e4066Sahrens * is now offline. If we then make some changes and sync txg + 1, and then
855ad135b5dSChristopher Siden * the missing replica comes back, then for a few seconds we'll have two
856fa9e4066Sahrens * conflicting uberblocks on disk with the same txg. The solution is simple:
857fa9e4066Sahrens * among uberblocks with equal txg, choose the one with the latest timestamp.
858fa9e4066Sahrens */
859fa9e4066Sahrens static int
vdev_uberblock_compare(uberblock_t * ub1,uberblock_t * ub2)860fa9e4066Sahrens vdev_uberblock_compare(uberblock_t *ub1, uberblock_t *ub2)
861fa9e4066Sahrens {
862fa9e4066Sahrens if (ub1->ub_txg < ub2->ub_txg)
863fa9e4066Sahrens return (-1);
864fa9e4066Sahrens if (ub1->ub_txg > ub2->ub_txg)
865fa9e4066Sahrens return (1);
866fa9e4066Sahrens
867fa9e4066Sahrens if (ub1->ub_timestamp < ub2->ub_timestamp)
868fa9e4066Sahrens return (-1);
869fa9e4066Sahrens if (ub1->ub_timestamp > ub2->ub_timestamp)
870fa9e4066Sahrens return (1);
871fa9e4066Sahrens
872fa9e4066Sahrens return (0);
873fa9e4066Sahrens }
874fa9e4066Sahrens
875ad135b5dSChristopher Siden struct ubl_cbdata {
876ad135b5dSChristopher Siden uberblock_t *ubl_ubbest; /* Best uberblock */
877ad135b5dSChristopher Siden vdev_t *ubl_vd; /* vdev associated with the above */
878ad135b5dSChristopher Siden };
879ad135b5dSChristopher Siden
880fa9e4066Sahrens static void
vdev_uberblock_load_done(zio_t * zio)881fa9e4066Sahrens vdev_uberblock_load_done(zio_t *zio)
882fa9e4066Sahrens {
883ad135b5dSChristopher Siden vdev_t *vd = zio->io_vd;
884468c413aSTim Haley spa_t *spa = zio->io_spa;
885e14bb325SJeff Bonwick zio_t *rio = zio->io_private;
886ecc2d604Sbonwick uberblock_t *ub = zio->io_data;
887ad135b5dSChristopher Siden struct ubl_cbdata *cbp = rio->io_private;
888fa9e4066Sahrens
889ad135b5dSChristopher Siden ASSERT3U(zio->io_size, ==, VDEV_UBERBLOCK_SIZE(vd));
890fa9e4066Sahrens
891ea8dc4b6Seschrock if (zio->io_error == 0 && uberblock_verify(ub) == 0) {
892e14bb325SJeff Bonwick mutex_enter(&rio->io_lock);
893468c413aSTim Haley if (ub->ub_txg <= spa->spa_load_max_txg &&
894ad135b5dSChristopher Siden vdev_uberblock_compare(ub, cbp->ubl_ubbest) > 0) {
895ad135b5dSChristopher Siden /*
896dfbb9432SGeorge Wilson * Keep track of the vdev in which this uberblock
897dfbb9432SGeorge Wilson * was found. We will use this information later
898dfbb9432SGeorge Wilson * to obtain the config nvlist associated with
899ad135b5dSChristopher Siden * this uberblock.
900ad135b5dSChristopher Siden */
901ad135b5dSChristopher Siden *cbp->ubl_ubbest = *ub;
902ad135b5dSChristopher Siden cbp->ubl_vd = vd;
903ad135b5dSChristopher Siden }
904e14bb325SJeff Bonwick mutex_exit(&rio->io_lock);
905fa9e4066Sahrens }
906fa9e4066Sahrens
907fa9e4066Sahrens zio_buf_free(zio->io_data, zio->io_size);
908fa9e4066Sahrens }
909fa9e4066Sahrens
910ad135b5dSChristopher Siden static void
vdev_uberblock_load_impl(zio_t * zio,vdev_t * vd,int flags,struct ubl_cbdata * cbp)911ad135b5dSChristopher Siden vdev_uberblock_load_impl(zio_t *zio, vdev_t *vd, int flags,
912ad135b5dSChristopher Siden struct ubl_cbdata *cbp)
913fa9e4066Sahrens {
914e14bb325SJeff Bonwick for (int c = 0; c < vd->vdev_children; c++)
915ad135b5dSChristopher Siden vdev_uberblock_load_impl(zio, vd->vdev_child[c], flags, cbp);
916fa9e4066Sahrens
917e14bb325SJeff Bonwick if (vd->vdev_ops->vdev_op_leaf && vdev_readable(vd)) {
918e14bb325SJeff Bonwick for (int l = 0; l < VDEV_LABELS; l++) {
919e14bb325SJeff Bonwick for (int n = 0; n < VDEV_UBERBLOCK_COUNT(vd); n++) {
920fa9e4066Sahrens vdev_label_read(zio, vd, l,
921ecc2d604Sbonwick zio_buf_alloc(VDEV_UBERBLOCK_SIZE(vd)),
922ecc2d604Sbonwick VDEV_UBERBLOCK_OFFSET(vd, n),
923ecc2d604Sbonwick VDEV_UBERBLOCK_SIZE(vd),
924e14bb325SJeff Bonwick vdev_uberblock_load_done, zio, flags);
925fa9e4066Sahrens }
926fa9e4066Sahrens }
927fa9e4066Sahrens }
928e14bb325SJeff Bonwick }
929ad135b5dSChristopher Siden
930ad135b5dSChristopher Siden /*
931ad135b5dSChristopher Siden * Reads the 'best' uberblock from disk along with its associated
932ad135b5dSChristopher Siden * configuration. First, we read the uberblock array of each label of each
933ad135b5dSChristopher Siden * vdev, keeping track of the uberblock with the highest txg in each array.
934dfbb9432SGeorge Wilson * Then, we read the configuration from the same vdev as the best uberblock.
935ad135b5dSChristopher Siden */
936ad135b5dSChristopher Siden void
vdev_uberblock_load(vdev_t * rvd,uberblock_t * ub,nvlist_t ** config)937ad135b5dSChristopher Siden vdev_uberblock_load(vdev_t *rvd, uberblock_t *ub, nvlist_t **config)
938ad135b5dSChristopher Siden {
939ad135b5dSChristopher Siden zio_t *zio;
940ad135b5dSChristopher Siden spa_t *spa = rvd->vdev_spa;
941ad135b5dSChristopher Siden struct ubl_cbdata cb;
942ad135b5dSChristopher Siden int flags = ZIO_FLAG_CONFIG_WRITER | ZIO_FLAG_CANFAIL |
943ad135b5dSChristopher Siden ZIO_FLAG_SPECULATIVE | ZIO_FLAG_TRYHARD;
944ad135b5dSChristopher Siden
945ad135b5dSChristopher Siden ASSERT(ub);
946ad135b5dSChristopher Siden ASSERT(config);
947ad135b5dSChristopher Siden
948ad135b5dSChristopher Siden bzero(ub, sizeof (uberblock_t));
949ad135b5dSChristopher Siden *config = NULL;
950ad135b5dSChristopher Siden
951ad135b5dSChristopher Siden cb.ubl_ubbest = ub;
952ad135b5dSChristopher Siden cb.ubl_vd = NULL;
953ad135b5dSChristopher Siden
954ad135b5dSChristopher Siden spa_config_enter(spa, SCL_ALL, FTAG, RW_WRITER);
955ad135b5dSChristopher Siden zio = zio_root(spa, NULL, &cb, flags);
956ad135b5dSChristopher Siden vdev_uberblock_load_impl(zio, rvd, flags, &cb);
957ad135b5dSChristopher Siden (void) zio_wait(zio);
958dfbb9432SGeorge Wilson
959dfbb9432SGeorge Wilson /*
960dfbb9432SGeorge Wilson * It's possible that the best uberblock was discovered on a label
961dfbb9432SGeorge Wilson * that has a configuration which was written in a future txg.
962dfbb9432SGeorge Wilson * Search all labels on this vdev to find the configuration that
963dfbb9432SGeorge Wilson * matches the txg for our uberblock.
964dfbb9432SGeorge Wilson */
965dfbb9432SGeorge Wilson if (cb.ubl_vd != NULL)
966dfbb9432SGeorge Wilson *config = vdev_label_read_config(cb.ubl_vd, ub->ub_txg);
967ad135b5dSChristopher Siden spa_config_exit(spa, SCL_ALL, FTAG);
968e14bb325SJeff Bonwick }
969e14bb325SJeff Bonwick
970fa9e4066Sahrens /*
97117f17c2dSbonwick * On success, increment root zio's count of good writes.
9720373e76bSbonwick * We only get credit for writes to known-visible vdevs; see spa_vdev_add().
973fa9e4066Sahrens */
974fa9e4066Sahrens static void
vdev_uberblock_sync_done(zio_t * zio)975fa9e4066Sahrens vdev_uberblock_sync_done(zio_t *zio)
976fa9e4066Sahrens {
97717f17c2dSbonwick uint64_t *good_writes = zio->io_private;
978fa9e4066Sahrens
9790373e76bSbonwick if (zio->io_error == 0 && zio->io_vd->vdev_top->vdev_ms_array != 0)
9801a5e258fSJosef 'Jeff' Sipek atomic_inc_64(good_writes);
981fa9e4066Sahrens }
982fa9e4066Sahrens
98317f17c2dSbonwick /*
98417f17c2dSbonwick * Write the uberblock to all labels of all leaves of the specified vdev.
98517f17c2dSbonwick */
986fa9e4066Sahrens static void
vdev_uberblock_sync(zio_t * zio,uberblock_t * ub,vdev_t * vd,int flags)987e14bb325SJeff Bonwick vdev_uberblock_sync(zio_t *zio, uberblock_t *ub, vdev_t *vd, int flags)
988fa9e4066Sahrens {
98917f17c2dSbonwick uberblock_t *ubbuf;
990e14bb325SJeff Bonwick int n;
991fa9e4066Sahrens
992e14bb325SJeff Bonwick for (int c = 0; c < vd->vdev_children; c++)
993e14bb325SJeff Bonwick vdev_uberblock_sync(zio, ub, vd->vdev_child[c], flags);
994fa9e4066Sahrens
995fa9e4066Sahrens if (!vd->vdev_ops->vdev_op_leaf)
996fa9e4066Sahrens return;
997fa9e4066Sahrens
998e14bb325SJeff Bonwick if (!vdev_writeable(vd))
999fa9e4066Sahrens return;
1000fa9e4066Sahrens
100117f17c2dSbonwick n = ub->ub_txg & (VDEV_UBERBLOCK_COUNT(vd) - 1);
1002fa9e4066Sahrens
100317f17c2dSbonwick ubbuf = zio_buf_alloc(VDEV_UBERBLOCK_SIZE(vd));
100417f17c2dSbonwick bzero(ubbuf, VDEV_UBERBLOCK_SIZE(vd));
1005ecc2d604Sbonwick *ubbuf = *ub;
1006fa9e4066Sahrens
1007e14bb325SJeff Bonwick for (int l = 0; l < VDEV_LABELS; l++)
100817f17c2dSbonwick vdev_label_write(zio, vd, l, ubbuf,
1009e14bb325SJeff Bonwick VDEV_UBERBLOCK_OFFSET(vd, n), VDEV_UBERBLOCK_SIZE(vd),
101017f17c2dSbonwick vdev_uberblock_sync_done, zio->io_private,
1011e14bb325SJeff Bonwick flags | ZIO_FLAG_DONT_PROPAGATE);
1012fa9e4066Sahrens
101317f17c2dSbonwick zio_buf_free(ubbuf, VDEV_UBERBLOCK_SIZE(vd));
1014fa9e4066Sahrens }
1015fa9e4066Sahrens
10163e30c24aSWill Andrews /* Sync the uberblocks to all vdevs in svd[] */
101717f17c2dSbonwick int
vdev_uberblock_sync_list(vdev_t ** svd,int svdcount,uberblock_t * ub,int flags)101817f17c2dSbonwick vdev_uberblock_sync_list(vdev_t **svd, int svdcount, uberblock_t *ub, int flags)
101917f17c2dSbonwick {
102017f17c2dSbonwick spa_t *spa = svd[0]->vdev_spa;
1021e14bb325SJeff Bonwick zio_t *zio;
102217f17c2dSbonwick uint64_t good_writes = 0;
102317f17c2dSbonwick
1024e14bb325SJeff Bonwick zio = zio_root(spa, NULL, &good_writes, flags);
102517f17c2dSbonwick
1026e14bb325SJeff Bonwick for (int v = 0; v < svdcount; v++)
1027e14bb325SJeff Bonwick vdev_uberblock_sync(zio, ub, svd[v], flags);
1028e14bb325SJeff Bonwick
102917f17c2dSbonwick (void) zio_wait(zio);
103017f17c2dSbonwick
1031fa9e4066Sahrens /*
103217f17c2dSbonwick * Flush the uberblocks to disk. This ensures that the odd labels
103317f17c2dSbonwick * are no longer needed (because the new uberblocks and the even
103417f17c2dSbonwick * labels are safely on disk), so it is safe to overwrite them.
1035fa9e4066Sahrens */
103617f17c2dSbonwick zio = zio_root(spa, NULL, NULL, flags);
1037fa9e4066Sahrens
1038e14bb325SJeff Bonwick for (int v = 0; v < svdcount; v++)
103917f17c2dSbonwick zio_flush(zio, svd[v]);
1040fa9e4066Sahrens
104117f17c2dSbonwick (void) zio_wait(zio);
104217f17c2dSbonwick
104317f17c2dSbonwick return (good_writes >= 1 ? 0 : EIO);
1044fa9e4066Sahrens }
1045fa9e4066Sahrens
1046fa9e4066Sahrens /*
104717f17c2dSbonwick * On success, increment the count of good writes for our top-level vdev.
1048fa9e4066Sahrens */
1049fa9e4066Sahrens static void
vdev_label_sync_done(zio_t * zio)105017f17c2dSbonwick vdev_label_sync_done(zio_t *zio)
1051fa9e4066Sahrens {
105217f17c2dSbonwick uint64_t *good_writes = zio->io_private;
1053fa9e4066Sahrens
1054fa9e4066Sahrens if (zio->io_error == 0)
10551a5e258fSJosef 'Jeff' Sipek atomic_inc_64(good_writes);
1056fa9e4066Sahrens }
1057fa9e4066Sahrens
105817f17c2dSbonwick /*
105917f17c2dSbonwick * If there weren't enough good writes, indicate failure to the parent.
106017f17c2dSbonwick */
1061fa9e4066Sahrens static void
vdev_label_sync_top_done(zio_t * zio)106217f17c2dSbonwick vdev_label_sync_top_done(zio_t *zio)
106317f17c2dSbonwick {
106417f17c2dSbonwick uint64_t *good_writes = zio->io_private;
106517f17c2dSbonwick
106617f17c2dSbonwick if (*good_writes == 0)
1067be6fd75aSMatthew Ahrens zio->io_error = SET_ERROR(EIO);
106817f17c2dSbonwick
106917f17c2dSbonwick kmem_free(good_writes, sizeof (uint64_t));
107017f17c2dSbonwick }
107117f17c2dSbonwick
107217f17c2dSbonwick /*
10730430f8daSeschrock * We ignore errors for log and cache devices, simply free the private data.
107451ece835Seschrock */
107551ece835Seschrock static void
vdev_label_sync_ignore_done(zio_t * zio)10760430f8daSeschrock vdev_label_sync_ignore_done(zio_t *zio)
107751ece835Seschrock {
107851ece835Seschrock kmem_free(zio->io_private, sizeof (uint64_t));
107951ece835Seschrock }
108051ece835Seschrock
108151ece835Seschrock /*
108217f17c2dSbonwick * Write all even or odd labels to all leaves of the specified vdev.
108317f17c2dSbonwick */
108417f17c2dSbonwick static void
vdev_label_sync(zio_t * zio,vdev_t * vd,int l,uint64_t txg,int flags)1085e14bb325SJeff Bonwick vdev_label_sync(zio_t *zio, vdev_t *vd, int l, uint64_t txg, int flags)
1086fa9e4066Sahrens {
1087fa9e4066Sahrens nvlist_t *label;
1088fa9e4066Sahrens vdev_phys_t *vp;
1089fa9e4066Sahrens char *buf;
1090fa9e4066Sahrens size_t buflen;
1091fa9e4066Sahrens
1092e14bb325SJeff Bonwick for (int c = 0; c < vd->vdev_children; c++)
1093e14bb325SJeff Bonwick vdev_label_sync(zio, vd->vdev_child[c], l, txg, flags);
1094fa9e4066Sahrens
1095fa9e4066Sahrens if (!vd->vdev_ops->vdev_op_leaf)
1096fa9e4066Sahrens return;
1097fa9e4066Sahrens
1098e14bb325SJeff Bonwick if (!vdev_writeable(vd))
1099fa9e4066Sahrens return;
1100fa9e4066Sahrens
1101fa9e4066Sahrens /*
1102fa9e4066Sahrens * Generate a label describing the top-level config to which we belong.
1103fa9e4066Sahrens */
11040373e76bSbonwick label = spa_config_generate(vd->vdev_spa, vd, txg, B_FALSE);
1105fa9e4066Sahrens
1106fa9e4066Sahrens vp = zio_buf_alloc(sizeof (vdev_phys_t));
1107fa9e4066Sahrens bzero(vp, sizeof (vdev_phys_t));
1108fa9e4066Sahrens
1109fa9e4066Sahrens buf = vp->vp_nvlist;
1110fa9e4066Sahrens buflen = sizeof (vp->vp_nvlist);
1111fa9e4066Sahrens
111217f17c2dSbonwick if (nvlist_pack(label, &buf, &buflen, NV_ENCODE_XDR, KM_SLEEP) == 0) {
111317f17c2dSbonwick for (; l < VDEV_LABELS; l += 2) {
1114fa9e4066Sahrens vdev_label_write(zio, vd, l, vp,
111517f17c2dSbonwick offsetof(vdev_label_t, vl_vdev_phys),
111617f17c2dSbonwick sizeof (vdev_phys_t),
111717f17c2dSbonwick vdev_label_sync_done, zio->io_private,
1118e14bb325SJeff Bonwick flags | ZIO_FLAG_DONT_PROPAGATE);
111917f17c2dSbonwick }
112017f17c2dSbonwick }
1121fa9e4066Sahrens
1122fa9e4066Sahrens zio_buf_free(vp, sizeof (vdev_phys_t));
1123fa9e4066Sahrens nvlist_free(label);
1124fa9e4066Sahrens }
1125fa9e4066Sahrens
112617f17c2dSbonwick int
vdev_label_sync_list(spa_t * spa,int l,uint64_t txg,int flags)1127e14bb325SJeff Bonwick vdev_label_sync_list(spa_t *spa, int l, uint64_t txg, int flags)
1128fa9e4066Sahrens {
1129e14bb325SJeff Bonwick list_t *dl = &spa->spa_config_dirty_list;
113017f17c2dSbonwick vdev_t *vd;
1131e14bb325SJeff Bonwick zio_t *zio;
1132fa9e4066Sahrens int error;
1133fa9e4066Sahrens
1134fa9e4066Sahrens /*
1135e14bb325SJeff Bonwick * Write the new labels to disk.
1136fa9e4066Sahrens */
1137e14bb325SJeff Bonwick zio = zio_root(spa, NULL, NULL, flags);
113817f17c2dSbonwick
113917f17c2dSbonwick for (vd = list_head(dl); vd != NULL; vd = list_next(dl, vd)) {
114017f17c2dSbonwick uint64_t *good_writes = kmem_zalloc(sizeof (uint64_t),
114117f17c2dSbonwick KM_SLEEP);
114288ecc943SGeorge Wilson
114388ecc943SGeorge Wilson ASSERT(!vd->vdev_ishole);
114488ecc943SGeorge Wilson
1145a3f829aeSBill Moore zio_t *vio = zio_null(zio, spa, NULL,
11460430f8daSeschrock (vd->vdev_islog || vd->vdev_aux != NULL) ?
11470430f8daSeschrock vdev_label_sync_ignore_done : vdev_label_sync_top_done,
114817f17c2dSbonwick good_writes, flags);
1149e14bb325SJeff Bonwick vdev_label_sync(vio, vd, l, txg, flags);
115017f17c2dSbonwick zio_nowait(vio);
115117f17c2dSbonwick }
1152e14bb325SJeff Bonwick
1153e14bb325SJeff Bonwick error = zio_wait(zio);
1154fa9e4066Sahrens
11558654d025Sperrin /*
115617f17c2dSbonwick * Flush the new labels to disk.
11578654d025Sperrin */
115817f17c2dSbonwick zio = zio_root(spa, NULL, NULL, flags);
11598654d025Sperrin
116017f17c2dSbonwick for (vd = list_head(dl); vd != NULL; vd = list_next(dl, vd))
116117f17c2dSbonwick zio_flush(zio, vd);
116217f17c2dSbonwick
116317f17c2dSbonwick (void) zio_wait(zio);
1164fa9e4066Sahrens
1165fa9e4066Sahrens return (error);
1166fa9e4066Sahrens }
1167fa9e4066Sahrens
1168fa9e4066Sahrens /*
116917f17c2dSbonwick * Sync the uberblock and any changes to the vdev configuration.
1170fa9e4066Sahrens *
1171fa9e4066Sahrens * The order of operations is carefully crafted to ensure that
1172fa9e4066Sahrens * if the system panics or loses power at any time, the state on disk
1173fa9e4066Sahrens * is still transactionally consistent. The in-line comments below
1174fa9e4066Sahrens * describe the failure semantics at each stage.
1175fa9e4066Sahrens *
117617f17c2dSbonwick * Moreover, vdev_config_sync() is designed to be idempotent: if it fails
1177fa9e4066Sahrens * at any time, you can just call it again, and it will resume its work.
1178fa9e4066Sahrens */
1179e14bb325SJeff Bonwick int
vdev_config_sync(vdev_t ** svd,int svdcount,uint64_t txg)1180*eb5bb584SWill Andrews vdev_config_sync(vdev_t **svd, int svdcount, uint64_t txg)
1181fa9e4066Sahrens {
118217f17c2dSbonwick spa_t *spa = svd[0]->vdev_spa;
1183fa9e4066Sahrens uberblock_t *ub = &spa->spa_uberblock;
11840373e76bSbonwick vdev_t *vd;
1185fa9e4066Sahrens zio_t *zio;
1186*eb5bb584SWill Andrews int error = 0;
1187e14bb325SJeff Bonwick int flags = ZIO_FLAG_CONFIG_WRITER | ZIO_FLAG_CANFAIL;
1188fa9e4066Sahrens
1189*eb5bb584SWill Andrews retry:
11908956713aSEric Schrock /*
11918956713aSEric Schrock * Normally, we don't want to try too hard to write every label and
11928956713aSEric Schrock * uberblock. If there is a flaky disk, we don't want the rest of the
11938956713aSEric Schrock * sync process to block while we retry. But if we can't write a
11948956713aSEric Schrock * single label out, we should retry with ZIO_FLAG_TRYHARD before
11958956713aSEric Schrock * bailing out and declaring the pool faulted.
11968956713aSEric Schrock */
1197*eb5bb584SWill Andrews if (error != 0) {
1198*eb5bb584SWill Andrews if ((flags & ZIO_FLAG_TRYHARD) != 0)
1199*eb5bb584SWill Andrews return (error);
12008956713aSEric Schrock flags |= ZIO_FLAG_TRYHARD;
1201*eb5bb584SWill Andrews }
12028956713aSEric Schrock
1203fa9e4066Sahrens ASSERT(ub->ub_txg <= txg);
1204fa9e4066Sahrens
1205fa9e4066Sahrens /*
120617f17c2dSbonwick * If this isn't a resync due to I/O errors,
120717f17c2dSbonwick * and nothing changed in this transaction group,
120817f17c2dSbonwick * and the vdev configuration hasn't changed,
12090373e76bSbonwick * then there's nothing to do.
1210fa9e4066Sahrens */
121117f17c2dSbonwick if (ub->ub_txg < txg &&
121217f17c2dSbonwick uberblock_update(ub, spa->spa_root_vdev, txg) == B_FALSE &&
1213e14bb325SJeff Bonwick list_is_empty(&spa->spa_config_dirty_list))
1214e14bb325SJeff Bonwick return (0);
1215fa9e4066Sahrens
1216fa9e4066Sahrens if (txg > spa_freeze_txg(spa))
1217e14bb325SJeff Bonwick return (0);
1218fa9e4066Sahrens
12190373e76bSbonwick ASSERT(txg <= spa->spa_final_txg);
12200373e76bSbonwick
1221fa9e4066Sahrens /*
1222fa9e4066Sahrens * Flush the write cache of every disk that's been written to
1223fa9e4066Sahrens * in this transaction group. This ensures that all blocks
1224fa9e4066Sahrens * written in this txg will be committed to stable storage
1225fa9e4066Sahrens * before any uberblock that references them.
1226fa9e4066Sahrens */
122717f17c2dSbonwick zio = zio_root(spa, NULL, NULL, flags);
122817f17c2dSbonwick
1229fa9e4066Sahrens for (vd = txg_list_head(&spa->spa_vdev_txg_list, TXG_CLEAN(txg)); vd;
123017f17c2dSbonwick vd = txg_list_next(&spa->spa_vdev_txg_list, vd, TXG_CLEAN(txg)))
123117f17c2dSbonwick zio_flush(zio, vd);
123217f17c2dSbonwick
1233fa9e4066Sahrens (void) zio_wait(zio);
1234fa9e4066Sahrens
1235fa9e4066Sahrens /*
1236fa9e4066Sahrens * Sync out the even labels (L0, L2) for every dirty vdev. If the
1237fa9e4066Sahrens * system dies in the middle of this process, that's OK: all of the
1238fa9e4066Sahrens * even labels that made it to disk will be newer than any uberblock,
1239fa9e4066Sahrens * and will therefore be considered invalid. The odd labels (L1, L3),
124017f17c2dSbonwick * which have not yet been touched, will still be valid. We flush
124117f17c2dSbonwick * the new labels to disk to ensure that all even-label updates
124217f17c2dSbonwick * are committed to stable storage before the uberblock update.
1243fa9e4066Sahrens */
1244e14bb325SJeff Bonwick if ((error = vdev_label_sync_list(spa, 0, txg, flags)) != 0)
1245*eb5bb584SWill Andrews goto retry;
1246fa9e4066Sahrens
1247fa9e4066Sahrens /*
1248e14bb325SJeff Bonwick * Sync the uberblocks to all vdevs in svd[].
12490373e76bSbonwick * If the system dies in the middle of this step, there are two cases
12500373e76bSbonwick * to consider, and the on-disk state is consistent either way:
1251fa9e4066Sahrens *
1252fa9e4066Sahrens * (1) If none of the new uberblocks made it to disk, then the
1253fa9e4066Sahrens * previous uberblock will be the newest, and the odd labels
1254fa9e4066Sahrens * (which had not yet been touched) will be valid with respect
1255fa9e4066Sahrens * to that uberblock.
1256fa9e4066Sahrens *
1257fa9e4066Sahrens * (2) If one or more new uberblocks made it to disk, then they
1258fa9e4066Sahrens * will be the newest, and the even labels (which had all
1259fa9e4066Sahrens * been successfully committed) will be valid with respect
1260fa9e4066Sahrens * to the new uberblocks.
1261fa9e4066Sahrens */
1262e14bb325SJeff Bonwick if ((error = vdev_uberblock_sync_list(svd, svdcount, ub, flags)) != 0)
1263*eb5bb584SWill Andrews goto retry;
1264fa9e4066Sahrens
1265fa9e4066Sahrens /*
1266fa9e4066Sahrens * Sync out odd labels for every dirty vdev. If the system dies
1267fa9e4066Sahrens * in the middle of this process, the even labels and the new
1268fa9e4066Sahrens * uberblocks will suffice to open the pool. The next time
1269fa9e4066Sahrens * the pool is opened, the first thing we'll do -- before any
1270fa9e4066Sahrens * user data is modified -- is mark every vdev dirty so that
127117f17c2dSbonwick * all labels will be brought up to date. We flush the new labels
127217f17c2dSbonwick * to disk to ensure that all odd-label updates are committed to
127317f17c2dSbonwick * stable storage before the next transaction group begins.
1274fa9e4066Sahrens */
1275*eb5bb584SWill Andrews if ((error = vdev_label_sync_list(spa, 1, txg, flags)) != 0)
1276*eb5bb584SWill Andrews goto retry;
1277*eb5bb584SWill Andrews
1278*eb5bb584SWill Andrews return (0);
1279fa9e4066Sahrens }
1280