xref: /onnv-gate/usr/src/uts/common/fs/zfs/vdev.c (revision 10922)
1789Sahrens /*
2789Sahrens  * CDDL HEADER START
3789Sahrens  *
4789Sahrens  * The contents of this file are subject to the terms of the
51485Slling  * Common Development and Distribution License (the "License").
61485Slling  * You may not use this file except in compliance with the License.
7789Sahrens  *
8789Sahrens  * You can obtain a copy of the license at usr/src/OPENSOLARIS.LICENSE
9789Sahrens  * or http://www.opensolaris.org/os/licensing.
10789Sahrens  * See the License for the specific language governing permissions
11789Sahrens  * and limitations under the License.
12789Sahrens  *
13789Sahrens  * When distributing Covered Code, include this CDDL HEADER in each
14789Sahrens  * file and include the License file at usr/src/OPENSOLARIS.LICENSE.
15789Sahrens  * If applicable, add the following below this CDDL HEADER, with the
16789Sahrens  * fields enclosed by brackets "[]" replaced with your own identifying
17789Sahrens  * information: Portions Copyright [yyyy] [name of copyright owner]
18789Sahrens  *
19789Sahrens  * CDDL HEADER END
20789Sahrens  */
212082Seschrock 
22789Sahrens /*
238632SBill.Moore@Sun.COM  * Copyright 2009 Sun Microsystems, Inc.  All rights reserved.
24789Sahrens  * Use is subject to license terms.
25789Sahrens  */
26789Sahrens 
27789Sahrens #include <sys/zfs_context.h>
281544Seschrock #include <sys/fm/fs/zfs.h>
29789Sahrens #include <sys/spa.h>
30789Sahrens #include <sys/spa_impl.h>
31789Sahrens #include <sys/dmu.h>
32789Sahrens #include <sys/dmu_tx.h>
33789Sahrens #include <sys/vdev_impl.h>
34789Sahrens #include <sys/uberblock_impl.h>
35789Sahrens #include <sys/metaslab.h>
36789Sahrens #include <sys/metaslab_impl.h>
37789Sahrens #include <sys/space_map.h>
38789Sahrens #include <sys/zio.h>
39789Sahrens #include <sys/zap.h>
40789Sahrens #include <sys/fs/zfs.h>
416643Seschrock #include <sys/arc.h>
429701SGeorge.Wilson@Sun.COM #include <sys/zil.h>
43789Sahrens 
44789Sahrens /*
45789Sahrens  * Virtual device management.
46789Sahrens  */
47789Sahrens 
48789Sahrens static vdev_ops_t *vdev_ops_table[] = {
49789Sahrens 	&vdev_root_ops,
50789Sahrens 	&vdev_raidz_ops,
51789Sahrens 	&vdev_mirror_ops,
52789Sahrens 	&vdev_replacing_ops,
532082Seschrock 	&vdev_spare_ops,
54789Sahrens 	&vdev_disk_ops,
55789Sahrens 	&vdev_file_ops,
56789Sahrens 	&vdev_missing_ops,
5710594SGeorge.Wilson@Sun.COM 	&vdev_hole_ops,
58789Sahrens 	NULL
59789Sahrens };
60789Sahrens 
617046Sahrens /* maximum scrub/resilver I/O queue per leaf vdev */
627046Sahrens int zfs_scrub_limit = 10;
633697Smishra 
64789Sahrens /*
65789Sahrens  * Given a vdev type, return the appropriate ops vector.
66789Sahrens  */
67789Sahrens static vdev_ops_t *
68789Sahrens vdev_getops(const char *type)
69789Sahrens {
70789Sahrens 	vdev_ops_t *ops, **opspp;
71789Sahrens 
72789Sahrens 	for (opspp = vdev_ops_table; (ops = *opspp) != NULL; opspp++)
73789Sahrens 		if (strcmp(ops->vdev_op_type, type) == 0)
74789Sahrens 			break;
75789Sahrens 
76789Sahrens 	return (ops);
77789Sahrens }
78789Sahrens 
79789Sahrens /*
80789Sahrens  * Default asize function: return the MAX of psize with the asize of
81789Sahrens  * all children.  This is what's used by anything other than RAID-Z.
82789Sahrens  */
83789Sahrens uint64_t
84789Sahrens vdev_default_asize(vdev_t *vd, uint64_t psize)
85789Sahrens {
861732Sbonwick 	uint64_t asize = P2ROUNDUP(psize, 1ULL << vd->vdev_top->vdev_ashift);
87789Sahrens 	uint64_t csize;
889816SGeorge.Wilson@Sun.COM 
899816SGeorge.Wilson@Sun.COM 	for (int c = 0; c < vd->vdev_children; c++) {
90789Sahrens 		csize = vdev_psize_to_asize(vd->vdev_child[c], psize);
91789Sahrens 		asize = MAX(asize, csize);
92789Sahrens 	}
93789Sahrens 
94789Sahrens 	return (asize);
95789Sahrens }
96789Sahrens 
971175Slling /*
989816SGeorge.Wilson@Sun.COM  * Get the minimum allocatable size. We define the allocatable size as
999816SGeorge.Wilson@Sun.COM  * the vdev's asize rounded to the nearest metaslab. This allows us to
1009816SGeorge.Wilson@Sun.COM  * replace or attach devices which don't have the same physical size but
1019816SGeorge.Wilson@Sun.COM  * can still satisfy the same number of allocations.
1021175Slling  */
1031175Slling uint64_t
1049816SGeorge.Wilson@Sun.COM vdev_get_min_asize(vdev_t *vd)
1051175Slling {
1069816SGeorge.Wilson@Sun.COM 	vdev_t *pvd = vd->vdev_parent;
1079816SGeorge.Wilson@Sun.COM 
1089816SGeorge.Wilson@Sun.COM 	/*
1099816SGeorge.Wilson@Sun.COM 	 * The our parent is NULL (inactive spare or cache) or is the root,
1109816SGeorge.Wilson@Sun.COM 	 * just return our own asize.
1119816SGeorge.Wilson@Sun.COM 	 */
1129816SGeorge.Wilson@Sun.COM 	if (pvd == NULL)
1139816SGeorge.Wilson@Sun.COM 		return (vd->vdev_asize);
1141175Slling 
1151175Slling 	/*
1169816SGeorge.Wilson@Sun.COM 	 * The top-level vdev just returns the allocatable size rounded
1179816SGeorge.Wilson@Sun.COM 	 * to the nearest metaslab.
1189816SGeorge.Wilson@Sun.COM 	 */
1199816SGeorge.Wilson@Sun.COM 	if (vd == vd->vdev_top)
1209816SGeorge.Wilson@Sun.COM 		return (P2ALIGN(vd->vdev_asize, 1ULL << vd->vdev_ms_shift));
1219816SGeorge.Wilson@Sun.COM 
1229816SGeorge.Wilson@Sun.COM 	/*
1239816SGeorge.Wilson@Sun.COM 	 * The allocatable space for a raidz vdev is N * sizeof(smallest child),
1249816SGeorge.Wilson@Sun.COM 	 * so each child must provide at least 1/Nth of its asize.
1251175Slling 	 */
1269816SGeorge.Wilson@Sun.COM 	if (pvd->vdev_ops == &vdev_raidz_ops)
1279816SGeorge.Wilson@Sun.COM 		return (pvd->vdev_min_asize / pvd->vdev_children);
1289816SGeorge.Wilson@Sun.COM 
1299816SGeorge.Wilson@Sun.COM 	return (pvd->vdev_min_asize);
1309816SGeorge.Wilson@Sun.COM }
1319816SGeorge.Wilson@Sun.COM 
1329816SGeorge.Wilson@Sun.COM void
1339816SGeorge.Wilson@Sun.COM vdev_set_min_asize(vdev_t *vd)
1349816SGeorge.Wilson@Sun.COM {
1359816SGeorge.Wilson@Sun.COM 	vd->vdev_min_asize = vdev_get_min_asize(vd);
1369816SGeorge.Wilson@Sun.COM 
1379816SGeorge.Wilson@Sun.COM 	for (int c = 0; c < vd->vdev_children; c++)
1389816SGeorge.Wilson@Sun.COM 		vdev_set_min_asize(vd->vdev_child[c]);
1391175Slling }
1401175Slling 
141789Sahrens vdev_t *
142789Sahrens vdev_lookup_top(spa_t *spa, uint64_t vdev)
143789Sahrens {
144789Sahrens 	vdev_t *rvd = spa->spa_root_vdev;
145789Sahrens 
1467754SJeff.Bonwick@Sun.COM 	ASSERT(spa_config_held(spa, SCL_ALL, RW_READER) != 0);
1475530Sbonwick 
1487046Sahrens 	if (vdev < rvd->vdev_children) {
1497046Sahrens 		ASSERT(rvd->vdev_child[vdev] != NULL);
150789Sahrens 		return (rvd->vdev_child[vdev]);
1517046Sahrens 	}
152789Sahrens 
153789Sahrens 	return (NULL);
154789Sahrens }
155789Sahrens 
156789Sahrens vdev_t *
157789Sahrens vdev_lookup_by_guid(vdev_t *vd, uint64_t guid)
158789Sahrens {
159789Sahrens 	vdev_t *mvd;
160789Sahrens 
1611585Sbonwick 	if (vd->vdev_guid == guid)
162789Sahrens 		return (vd);
163789Sahrens 
1649816SGeorge.Wilson@Sun.COM 	for (int c = 0; c < vd->vdev_children; c++)
165789Sahrens 		if ((mvd = vdev_lookup_by_guid(vd->vdev_child[c], guid)) !=
166789Sahrens 		    NULL)
167789Sahrens 			return (mvd);
168789Sahrens 
169789Sahrens 	return (NULL);
170789Sahrens }
171789Sahrens 
172789Sahrens void
173789Sahrens vdev_add_child(vdev_t *pvd, vdev_t *cvd)
174789Sahrens {
175789Sahrens 	size_t oldsize, newsize;
176789Sahrens 	uint64_t id = cvd->vdev_id;
177789Sahrens 	vdev_t **newchild;
178789Sahrens 
1797754SJeff.Bonwick@Sun.COM 	ASSERT(spa_config_held(cvd->vdev_spa, SCL_ALL, RW_WRITER) == SCL_ALL);
180789Sahrens 	ASSERT(cvd->vdev_parent == NULL);
181789Sahrens 
182789Sahrens 	cvd->vdev_parent = pvd;
183789Sahrens 
184789Sahrens 	if (pvd == NULL)
185789Sahrens 		return;
186789Sahrens 
187789Sahrens 	ASSERT(id >= pvd->vdev_children || pvd->vdev_child[id] == NULL);
188789Sahrens 
189789Sahrens 	oldsize = pvd->vdev_children * sizeof (vdev_t *);
190789Sahrens 	pvd->vdev_children = MAX(pvd->vdev_children, id + 1);
191789Sahrens 	newsize = pvd->vdev_children * sizeof (vdev_t *);
192789Sahrens 
193789Sahrens 	newchild = kmem_zalloc(newsize, KM_SLEEP);
194789Sahrens 	if (pvd->vdev_child != NULL) {
195789Sahrens 		bcopy(pvd->vdev_child, newchild, oldsize);
196789Sahrens 		kmem_free(pvd->vdev_child, oldsize);
197789Sahrens 	}
198789Sahrens 
199789Sahrens 	pvd->vdev_child = newchild;
200789Sahrens 	pvd->vdev_child[id] = cvd;
201789Sahrens 
202789Sahrens 	cvd->vdev_top = (pvd->vdev_top ? pvd->vdev_top: cvd);
203789Sahrens 	ASSERT(cvd->vdev_top->vdev_parent->vdev_parent == NULL);
204789Sahrens 
205789Sahrens 	/*
206789Sahrens 	 * Walk up all ancestors to update guid sum.
207789Sahrens 	 */
208789Sahrens 	for (; pvd != NULL; pvd = pvd->vdev_parent)
209789Sahrens 		pvd->vdev_guid_sum += cvd->vdev_guid_sum;
2103697Smishra 
2113697Smishra 	if (cvd->vdev_ops->vdev_op_leaf)
2123697Smishra 		cvd->vdev_spa->spa_scrub_maxinflight += zfs_scrub_limit;
213789Sahrens }
214789Sahrens 
215789Sahrens void
216789Sahrens vdev_remove_child(vdev_t *pvd, vdev_t *cvd)
217789Sahrens {
218789Sahrens 	int c;
219789Sahrens 	uint_t id = cvd->vdev_id;
220789Sahrens 
221789Sahrens 	ASSERT(cvd->vdev_parent == pvd);
222789Sahrens 
223789Sahrens 	if (pvd == NULL)
224789Sahrens 		return;
225789Sahrens 
226789Sahrens 	ASSERT(id < pvd->vdev_children);
227789Sahrens 	ASSERT(pvd->vdev_child[id] == cvd);
228789Sahrens 
229789Sahrens 	pvd->vdev_child[id] = NULL;
230789Sahrens 	cvd->vdev_parent = NULL;
231789Sahrens 
232789Sahrens 	for (c = 0; c < pvd->vdev_children; c++)
233789Sahrens 		if (pvd->vdev_child[c])
234789Sahrens 			break;
235789Sahrens 
236789Sahrens 	if (c == pvd->vdev_children) {
237789Sahrens 		kmem_free(pvd->vdev_child, c * sizeof (vdev_t *));
238789Sahrens 		pvd->vdev_child = NULL;
239789Sahrens 		pvd->vdev_children = 0;
240789Sahrens 	}
241789Sahrens 
242789Sahrens 	/*
243789Sahrens 	 * Walk up all ancestors to update guid sum.
244789Sahrens 	 */
245789Sahrens 	for (; pvd != NULL; pvd = pvd->vdev_parent)
246789Sahrens 		pvd->vdev_guid_sum -= cvd->vdev_guid_sum;
2473697Smishra 
2483697Smishra 	if (cvd->vdev_ops->vdev_op_leaf)
2493697Smishra 		cvd->vdev_spa->spa_scrub_maxinflight -= zfs_scrub_limit;
250789Sahrens }
251789Sahrens 
252789Sahrens /*
253789Sahrens  * Remove any holes in the child array.
254789Sahrens  */
255789Sahrens void
256789Sahrens vdev_compact_children(vdev_t *pvd)
257789Sahrens {
258789Sahrens 	vdev_t **newchild, *cvd;
259789Sahrens 	int oldc = pvd->vdev_children;
2609816SGeorge.Wilson@Sun.COM 	int newc;
261789Sahrens 
2627754SJeff.Bonwick@Sun.COM 	ASSERT(spa_config_held(pvd->vdev_spa, SCL_ALL, RW_WRITER) == SCL_ALL);
263789Sahrens 
2649816SGeorge.Wilson@Sun.COM 	for (int c = newc = 0; c < oldc; c++)
265789Sahrens 		if (pvd->vdev_child[c])
266789Sahrens 			newc++;
267789Sahrens 
268789Sahrens 	newchild = kmem_alloc(newc * sizeof (vdev_t *), KM_SLEEP);
269789Sahrens 
2709816SGeorge.Wilson@Sun.COM 	for (int c = newc = 0; c < oldc; c++) {
271789Sahrens 		if ((cvd = pvd->vdev_child[c]) != NULL) {
272789Sahrens 			newchild[newc] = cvd;
273789Sahrens 			cvd->vdev_id = newc++;
274789Sahrens 		}
275789Sahrens 	}
276789Sahrens 
277789Sahrens 	kmem_free(pvd->vdev_child, oldc * sizeof (vdev_t *));
278789Sahrens 	pvd->vdev_child = newchild;
279789Sahrens 	pvd->vdev_children = newc;
280789Sahrens }
281789Sahrens 
282789Sahrens /*
283789Sahrens  * Allocate and minimally initialize a vdev_t.
284789Sahrens  */
28510594SGeorge.Wilson@Sun.COM vdev_t *
286789Sahrens vdev_alloc_common(spa_t *spa, uint_t id, uint64_t guid, vdev_ops_t *ops)
287789Sahrens {
288789Sahrens 	vdev_t *vd;
289789Sahrens 
2901585Sbonwick 	vd = kmem_zalloc(sizeof (vdev_t), KM_SLEEP);
2911585Sbonwick 
2921585Sbonwick 	if (spa->spa_root_vdev == NULL) {
2931585Sbonwick 		ASSERT(ops == &vdev_root_ops);
2941585Sbonwick 		spa->spa_root_vdev = vd;
2951585Sbonwick 	}
296789Sahrens 
29710594SGeorge.Wilson@Sun.COM 	if (guid == 0 && ops != &vdev_hole_ops) {
2981585Sbonwick 		if (spa->spa_root_vdev == vd) {
2991585Sbonwick 			/*
3001585Sbonwick 			 * The root vdev's guid will also be the pool guid,
3011585Sbonwick 			 * which must be unique among all pools.
3021585Sbonwick 			 */
3031585Sbonwick 			while (guid == 0 || spa_guid_exists(guid, 0))
3041585Sbonwick 				guid = spa_get_random(-1ULL);
3051585Sbonwick 		} else {
3061585Sbonwick 			/*
3071585Sbonwick 			 * Any other vdev's guid must be unique within the pool.
3081585Sbonwick 			 */
3091585Sbonwick 			while (guid == 0 ||
3101585Sbonwick 			    spa_guid_exists(spa_guid(spa), guid))
3111585Sbonwick 				guid = spa_get_random(-1ULL);
3121585Sbonwick 		}
3131585Sbonwick 		ASSERT(!spa_guid_exists(spa_guid(spa), guid));
3141585Sbonwick 	}
315789Sahrens 
316789Sahrens 	vd->vdev_spa = spa;
317789Sahrens 	vd->vdev_id = id;
318789Sahrens 	vd->vdev_guid = guid;
319789Sahrens 	vd->vdev_guid_sum = guid;
320789Sahrens 	vd->vdev_ops = ops;
321789Sahrens 	vd->vdev_state = VDEV_STATE_CLOSED;
32210594SGeorge.Wilson@Sun.COM 	vd->vdev_ishole = (ops == &vdev_hole_ops);
323789Sahrens 
324789Sahrens 	mutex_init(&vd->vdev_dtl_lock, NULL, MUTEX_DEFAULT, NULL);
3252856Snd150628 	mutex_init(&vd->vdev_stat_lock, NULL, MUTEX_DEFAULT, NULL);
3267754SJeff.Bonwick@Sun.COM 	mutex_init(&vd->vdev_probe_lock, NULL, MUTEX_DEFAULT, NULL);
3278241SJeff.Bonwick@Sun.COM 	for (int t = 0; t < DTL_TYPES; t++) {
3288241SJeff.Bonwick@Sun.COM 		space_map_create(&vd->vdev_dtl[t], 0, -1ULL, 0,
3298241SJeff.Bonwick@Sun.COM 		    &vd->vdev_dtl_lock);
3308241SJeff.Bonwick@Sun.COM 	}
331789Sahrens 	txg_list_create(&vd->vdev_ms_list,
332789Sahrens 	    offsetof(struct metaslab, ms_txg_node));
333789Sahrens 	txg_list_create(&vd->vdev_dtl_list,
334789Sahrens 	    offsetof(struct vdev, vdev_dtl_node));
335789Sahrens 	vd->vdev_stat.vs_timestamp = gethrtime();
3364451Seschrock 	vdev_queue_init(vd);
3374451Seschrock 	vdev_cache_init(vd);
338789Sahrens 
339789Sahrens 	return (vd);
340789Sahrens }
341789Sahrens 
342789Sahrens /*
343789Sahrens  * Allocate a new vdev.  The 'alloctype' is used to control whether we are
344789Sahrens  * creating a new vdev or loading an existing one - the behavior is slightly
345789Sahrens  * different for each case.
346789Sahrens  */
3472082Seschrock int
3482082Seschrock vdev_alloc(spa_t *spa, vdev_t **vdp, nvlist_t *nv, vdev_t *parent, uint_t id,
3492082Seschrock     int alloctype)
350789Sahrens {
351789Sahrens 	vdev_ops_t *ops;
352789Sahrens 	char *type;
3534527Sperrin 	uint64_t guid = 0, islog, nparity;
354789Sahrens 	vdev_t *vd;
355789Sahrens 
3567754SJeff.Bonwick@Sun.COM 	ASSERT(spa_config_held(spa, SCL_ALL, RW_WRITER) == SCL_ALL);
357789Sahrens 
358789Sahrens 	if (nvlist_lookup_string(nv, ZPOOL_CONFIG_TYPE, &type) != 0)
3592082Seschrock 		return (EINVAL);
360789Sahrens 
361789Sahrens 	if ((ops = vdev_getops(type)) == NULL)
3622082Seschrock 		return (EINVAL);
363789Sahrens 
364789Sahrens 	/*
365789Sahrens 	 * If this is a load, get the vdev guid from the nvlist.
366789Sahrens 	 * Otherwise, vdev_alloc_common() will generate one for us.
367789Sahrens 	 */
368789Sahrens 	if (alloctype == VDEV_ALLOC_LOAD) {
369789Sahrens 		uint64_t label_id;
370789Sahrens 
371789Sahrens 		if (nvlist_lookup_uint64(nv, ZPOOL_CONFIG_ID, &label_id) ||
372789Sahrens 		    label_id != id)
3732082Seschrock 			return (EINVAL);
374789Sahrens 
375789Sahrens 		if (nvlist_lookup_uint64(nv, ZPOOL_CONFIG_GUID, &guid) != 0)
3762082Seschrock 			return (EINVAL);
3772082Seschrock 	} else if (alloctype == VDEV_ALLOC_SPARE) {
3782082Seschrock 		if (nvlist_lookup_uint64(nv, ZPOOL_CONFIG_GUID, &guid) != 0)
3792082Seschrock 			return (EINVAL);
3805450Sbrendan 	} else if (alloctype == VDEV_ALLOC_L2CACHE) {
3815450Sbrendan 		if (nvlist_lookup_uint64(nv, ZPOOL_CONFIG_GUID, &guid) != 0)
3825450Sbrendan 			return (EINVAL);
3839790SLin.Ling@Sun.COM 	} else if (alloctype == VDEV_ALLOC_ROOTPOOL) {
3849790SLin.Ling@Sun.COM 		if (nvlist_lookup_uint64(nv, ZPOOL_CONFIG_GUID, &guid) != 0)
3859790SLin.Ling@Sun.COM 			return (EINVAL);
386789Sahrens 	}
387789Sahrens 
3882082Seschrock 	/*
3892082Seschrock 	 * The first allocated vdev must be of type 'root'.
3902082Seschrock 	 */
3912082Seschrock 	if (ops != &vdev_root_ops && spa->spa_root_vdev == NULL)
3922082Seschrock 		return (EINVAL);
3932082Seschrock 
3944527Sperrin 	/*
3954527Sperrin 	 * Determine whether we're a log vdev.
3964527Sperrin 	 */
3974527Sperrin 	islog = 0;
3984527Sperrin 	(void) nvlist_lookup_uint64(nv, ZPOOL_CONFIG_IS_LOG, &islog);
3995094Slling 	if (islog && spa_version(spa) < SPA_VERSION_SLOGS)
4004527Sperrin 		return (ENOTSUP);
4014527Sperrin 
40210594SGeorge.Wilson@Sun.COM 	if (ops == &vdev_hole_ops && spa_version(spa) < SPA_VERSION_HOLES)
40310594SGeorge.Wilson@Sun.COM 		return (ENOTSUP);
40410594SGeorge.Wilson@Sun.COM 
4054527Sperrin 	/*
4064527Sperrin 	 * Set the nparity property for RAID-Z vdevs.
4074527Sperrin 	 */
4084527Sperrin 	nparity = -1ULL;
4094527Sperrin 	if (ops == &vdev_raidz_ops) {
4104527Sperrin 		if (nvlist_lookup_uint64(nv, ZPOOL_CONFIG_NPARITY,
4114527Sperrin 		    &nparity) == 0) {
412*10922SJeff.Bonwick@Sun.COM 			if (nparity == 0 || nparity > VDEV_RAIDZ_MAXPARITY)
4134527Sperrin 				return (EINVAL);
4144527Sperrin 			/*
41510105Sadam.leventhal@sun.com 			 * Previous versions could only support 1 or 2 parity
41610105Sadam.leventhal@sun.com 			 * device.
4174527Sperrin 			 */
41810105Sadam.leventhal@sun.com 			if (nparity > 1 &&
41910105Sadam.leventhal@sun.com 			    spa_version(spa) < SPA_VERSION_RAIDZ2)
42010105Sadam.leventhal@sun.com 				return (ENOTSUP);
42110105Sadam.leventhal@sun.com 			if (nparity > 2 &&
42210105Sadam.leventhal@sun.com 			    spa_version(spa) < SPA_VERSION_RAIDZ3)
4234527Sperrin 				return (ENOTSUP);
4244527Sperrin 		} else {
4254527Sperrin 			/*
4264527Sperrin 			 * We require the parity to be specified for SPAs that
4274527Sperrin 			 * support multiple parity levels.
4284527Sperrin 			 */
42910105Sadam.leventhal@sun.com 			if (spa_version(spa) >= SPA_VERSION_RAIDZ2)
4304527Sperrin 				return (EINVAL);
4314527Sperrin 			/*
4324527Sperrin 			 * Otherwise, we default to 1 parity device for RAID-Z.
4334527Sperrin 			 */
4344527Sperrin 			nparity = 1;
4354527Sperrin 		}
4364527Sperrin 	} else {
4374527Sperrin 		nparity = 0;
4384527Sperrin 	}
4394527Sperrin 	ASSERT(nparity != -1ULL);
4404527Sperrin 
441789Sahrens 	vd = vdev_alloc_common(spa, id, guid, ops);
442789Sahrens 
4434527Sperrin 	vd->vdev_islog = islog;
4444527Sperrin 	vd->vdev_nparity = nparity;
4454527Sperrin 
446789Sahrens 	if (nvlist_lookup_string(nv, ZPOOL_CONFIG_PATH, &vd->vdev_path) == 0)
447789Sahrens 		vd->vdev_path = spa_strdup(vd->vdev_path);
448789Sahrens 	if (nvlist_lookup_string(nv, ZPOOL_CONFIG_DEVID, &vd->vdev_devid) == 0)
449789Sahrens 		vd->vdev_devid = spa_strdup(vd->vdev_devid);
4504451Seschrock 	if (nvlist_lookup_string(nv, ZPOOL_CONFIG_PHYS_PATH,
4514451Seschrock 	    &vd->vdev_physpath) == 0)
4524451Seschrock 		vd->vdev_physpath = spa_strdup(vd->vdev_physpath);
4539425SEric.Schrock@Sun.COM 	if (nvlist_lookup_string(nv, ZPOOL_CONFIG_FRU, &vd->vdev_fru) == 0)
4549425SEric.Schrock@Sun.COM 		vd->vdev_fru = spa_strdup(vd->vdev_fru);
455789Sahrens 
456789Sahrens 	/*
4571171Seschrock 	 * Set the whole_disk property.  If it's not specified, leave the value
4581171Seschrock 	 * as -1.
4591171Seschrock 	 */
4601171Seschrock 	if (nvlist_lookup_uint64(nv, ZPOOL_CONFIG_WHOLE_DISK,
4611171Seschrock 	    &vd->vdev_wholedisk) != 0)
4621171Seschrock 		vd->vdev_wholedisk = -1ULL;
4631171Seschrock 
4641171Seschrock 	/*
4651544Seschrock 	 * Look for the 'not present' flag.  This will only be set if the device
4661544Seschrock 	 * was not present at the time of import.
4671544Seschrock 	 */
4689425SEric.Schrock@Sun.COM 	(void) nvlist_lookup_uint64(nv, ZPOOL_CONFIG_NOT_PRESENT,
4699425SEric.Schrock@Sun.COM 	    &vd->vdev_not_present);
4701544Seschrock 
4711544Seschrock 	/*
4721732Sbonwick 	 * Get the alignment requirement.
4731732Sbonwick 	 */
4741732Sbonwick 	(void) nvlist_lookup_uint64(nv, ZPOOL_CONFIG_ASHIFT, &vd->vdev_ashift);
4751732Sbonwick 
4761732Sbonwick 	/*
47710594SGeorge.Wilson@Sun.COM 	 * Retrieve the vdev creation time.
47810594SGeorge.Wilson@Sun.COM 	 */
47910594SGeorge.Wilson@Sun.COM 	(void) nvlist_lookup_uint64(nv, ZPOOL_CONFIG_CREATE_TXG,
48010594SGeorge.Wilson@Sun.COM 	    &vd->vdev_crtxg);
48110594SGeorge.Wilson@Sun.COM 
48210594SGeorge.Wilson@Sun.COM 	/*
483789Sahrens 	 * If we're a top-level vdev, try to load the allocation parameters.
484789Sahrens 	 */
485789Sahrens 	if (parent && !parent->vdev_parent && alloctype == VDEV_ALLOC_LOAD) {
486789Sahrens 		(void) nvlist_lookup_uint64(nv, ZPOOL_CONFIG_METASLAB_ARRAY,
487789Sahrens 		    &vd->vdev_ms_array);
488789Sahrens 		(void) nvlist_lookup_uint64(nv, ZPOOL_CONFIG_METASLAB_SHIFT,
489789Sahrens 		    &vd->vdev_ms_shift);
490789Sahrens 		(void) nvlist_lookup_uint64(nv, ZPOOL_CONFIG_ASIZE,
491789Sahrens 		    &vd->vdev_asize);
492789Sahrens 	}
493789Sahrens 
494789Sahrens 	/*
4954451Seschrock 	 * If we're a leaf vdev, try to load the DTL object and other state.
496789Sahrens 	 */
4976643Seschrock 	if (vd->vdev_ops->vdev_op_leaf &&
4989790SLin.Ling@Sun.COM 	    (alloctype == VDEV_ALLOC_LOAD || alloctype == VDEV_ALLOC_L2CACHE ||
4999790SLin.Ling@Sun.COM 	    alloctype == VDEV_ALLOC_ROOTPOOL)) {
5006643Seschrock 		if (alloctype == VDEV_ALLOC_LOAD) {
5016643Seschrock 			(void) nvlist_lookup_uint64(nv, ZPOOL_CONFIG_DTL,
5028241SJeff.Bonwick@Sun.COM 			    &vd->vdev_dtl_smo.smo_object);
5036643Seschrock 			(void) nvlist_lookup_uint64(nv, ZPOOL_CONFIG_UNSPARE,
5046643Seschrock 			    &vd->vdev_unspare);
5056643Seschrock 		}
5069790SLin.Ling@Sun.COM 
5079790SLin.Ling@Sun.COM 		if (alloctype == VDEV_ALLOC_ROOTPOOL) {
5089790SLin.Ling@Sun.COM 			uint64_t spare = 0;
5099790SLin.Ling@Sun.COM 
5109790SLin.Ling@Sun.COM 			if (nvlist_lookup_uint64(nv, ZPOOL_CONFIG_IS_SPARE,
5119790SLin.Ling@Sun.COM 			    &spare) == 0 && spare)
5129790SLin.Ling@Sun.COM 				spa_spare_add(vd);
5139790SLin.Ling@Sun.COM 		}
5149790SLin.Ling@Sun.COM 
5151732Sbonwick 		(void) nvlist_lookup_uint64(nv, ZPOOL_CONFIG_OFFLINE,
5161732Sbonwick 		    &vd->vdev_offline);
5176643Seschrock 
5184451Seschrock 		/*
5194451Seschrock 		 * When importing a pool, we want to ignore the persistent fault
5204451Seschrock 		 * state, as the diagnosis made on another system may not be
52110817SEric.Schrock@Sun.COM 		 * valid in the current context.  Local vdevs will
52210817SEric.Schrock@Sun.COM 		 * remain in the faulted state.
5234451Seschrock 		 */
5244451Seschrock 		if (spa->spa_load_state == SPA_LOAD_OPEN) {
5254451Seschrock 			(void) nvlist_lookup_uint64(nv, ZPOOL_CONFIG_FAULTED,
5264451Seschrock 			    &vd->vdev_faulted);
5274451Seschrock 			(void) nvlist_lookup_uint64(nv, ZPOOL_CONFIG_DEGRADED,
5284451Seschrock 			    &vd->vdev_degraded);
5294451Seschrock 			(void) nvlist_lookup_uint64(nv, ZPOOL_CONFIG_REMOVED,
5304451Seschrock 			    &vd->vdev_removed);
53110817SEric.Schrock@Sun.COM 
53210817SEric.Schrock@Sun.COM 			if (vd->vdev_faulted || vd->vdev_degraded) {
53310817SEric.Schrock@Sun.COM 				char *aux;
53410817SEric.Schrock@Sun.COM 
53510817SEric.Schrock@Sun.COM 				vd->vdev_label_aux =
53610817SEric.Schrock@Sun.COM 				    VDEV_AUX_ERR_EXCEEDED;
53710817SEric.Schrock@Sun.COM 				if (nvlist_lookup_string(nv,
53810817SEric.Schrock@Sun.COM 				    ZPOOL_CONFIG_AUX_STATE, &aux) == 0 &&
53910817SEric.Schrock@Sun.COM 				    strcmp(aux, "external") == 0)
54010817SEric.Schrock@Sun.COM 					vd->vdev_label_aux = VDEV_AUX_EXTERNAL;
54110817SEric.Schrock@Sun.COM 			}
5424451Seschrock 		}
543789Sahrens 	}
544789Sahrens 
545789Sahrens 	/*
546789Sahrens 	 * Add ourselves to the parent's list of children.
547789Sahrens 	 */
548789Sahrens 	vdev_add_child(parent, vd);
549789Sahrens 
5502082Seschrock 	*vdp = vd;
5512082Seschrock 
5522082Seschrock 	return (0);
553789Sahrens }
554789Sahrens 
555789Sahrens void
556789Sahrens vdev_free(vdev_t *vd)
557789Sahrens {
5584451Seschrock 	spa_t *spa = vd->vdev_spa;
559789Sahrens 
560789Sahrens 	/*
561789Sahrens 	 * vdev_free() implies closing the vdev first.  This is simpler than
562789Sahrens 	 * trying to ensure complicated semantics for all callers.
563789Sahrens 	 */
564789Sahrens 	vdev_close(vd);
565789Sahrens 
5667754SJeff.Bonwick@Sun.COM 	ASSERT(!list_link_active(&vd->vdev_config_dirty_node));
567*10922SJeff.Bonwick@Sun.COM 	ASSERT(!list_link_active(&vd->vdev_state_dirty_node));
568789Sahrens 
569789Sahrens 	/*
570789Sahrens 	 * Free all children.
571789Sahrens 	 */
5729816SGeorge.Wilson@Sun.COM 	for (int c = 0; c < vd->vdev_children; c++)
573789Sahrens 		vdev_free(vd->vdev_child[c]);
574789Sahrens 
575789Sahrens 	ASSERT(vd->vdev_child == NULL);
576789Sahrens 	ASSERT(vd->vdev_guid_sum == vd->vdev_guid);
577789Sahrens 
578789Sahrens 	/*
579789Sahrens 	 * Discard allocation state.
580789Sahrens 	 */
581789Sahrens 	if (vd == vd->vdev_top)
582789Sahrens 		vdev_metaslab_fini(vd);
583789Sahrens 
584789Sahrens 	ASSERT3U(vd->vdev_stat.vs_space, ==, 0);
5852082Seschrock 	ASSERT3U(vd->vdev_stat.vs_dspace, ==, 0);
586789Sahrens 	ASSERT3U(vd->vdev_stat.vs_alloc, ==, 0);
587789Sahrens 
588789Sahrens 	/*
589789Sahrens 	 * Remove this vdev from its parent's child list.
590789Sahrens 	 */
591789Sahrens 	vdev_remove_child(vd->vdev_parent, vd);
592789Sahrens 
593789Sahrens 	ASSERT(vd->vdev_parent == NULL);
594789Sahrens 
5954451Seschrock 	/*
5964451Seschrock 	 * Clean up vdev structure.
5974451Seschrock 	 */
5984451Seschrock 	vdev_queue_fini(vd);
5994451Seschrock 	vdev_cache_fini(vd);
6004451Seschrock 
6014451Seschrock 	if (vd->vdev_path)
6024451Seschrock 		spa_strfree(vd->vdev_path);
6034451Seschrock 	if (vd->vdev_devid)
6044451Seschrock 		spa_strfree(vd->vdev_devid);
6054451Seschrock 	if (vd->vdev_physpath)
6064451Seschrock 		spa_strfree(vd->vdev_physpath);
6079425SEric.Schrock@Sun.COM 	if (vd->vdev_fru)
6089425SEric.Schrock@Sun.COM 		spa_strfree(vd->vdev_fru);
6094451Seschrock 
6104451Seschrock 	if (vd->vdev_isspare)
6114451Seschrock 		spa_spare_remove(vd);
6125450Sbrendan 	if (vd->vdev_isl2cache)
6135450Sbrendan 		spa_l2cache_remove(vd);
6144451Seschrock 
6154451Seschrock 	txg_list_destroy(&vd->vdev_ms_list);
6164451Seschrock 	txg_list_destroy(&vd->vdev_dtl_list);
6178241SJeff.Bonwick@Sun.COM 
6184451Seschrock 	mutex_enter(&vd->vdev_dtl_lock);
6198241SJeff.Bonwick@Sun.COM 	for (int t = 0; t < DTL_TYPES; t++) {
6208241SJeff.Bonwick@Sun.COM 		space_map_unload(&vd->vdev_dtl[t]);
6218241SJeff.Bonwick@Sun.COM 		space_map_destroy(&vd->vdev_dtl[t]);
6228241SJeff.Bonwick@Sun.COM 	}
6234451Seschrock 	mutex_exit(&vd->vdev_dtl_lock);
6248241SJeff.Bonwick@Sun.COM 
6254451Seschrock 	mutex_destroy(&vd->vdev_dtl_lock);
6264451Seschrock 	mutex_destroy(&vd->vdev_stat_lock);
6277754SJeff.Bonwick@Sun.COM 	mutex_destroy(&vd->vdev_probe_lock);
6284451Seschrock 
6294451Seschrock 	if (vd == spa->spa_root_vdev)
6304451Seschrock 		spa->spa_root_vdev = NULL;
6314451Seschrock 
6324451Seschrock 	kmem_free(vd, sizeof (vdev_t));
633789Sahrens }
634789Sahrens 
635789Sahrens /*
636789Sahrens  * Transfer top-level vdev state from svd to tvd.
637789Sahrens  */
638789Sahrens static void
639789Sahrens vdev_top_transfer(vdev_t *svd, vdev_t *tvd)
640789Sahrens {
641789Sahrens 	spa_t *spa = svd->vdev_spa;
642789Sahrens 	metaslab_t *msp;
643789Sahrens 	vdev_t *vd;
644789Sahrens 	int t;
645789Sahrens 
646789Sahrens 	ASSERT(tvd == tvd->vdev_top);
647789Sahrens 
648789Sahrens 	tvd->vdev_ms_array = svd->vdev_ms_array;
649789Sahrens 	tvd->vdev_ms_shift = svd->vdev_ms_shift;
650789Sahrens 	tvd->vdev_ms_count = svd->vdev_ms_count;
651789Sahrens 
652789Sahrens 	svd->vdev_ms_array = 0;
653789Sahrens 	svd->vdev_ms_shift = 0;
654789Sahrens 	svd->vdev_ms_count = 0;
655789Sahrens 
656789Sahrens 	tvd->vdev_mg = svd->vdev_mg;
657789Sahrens 	tvd->vdev_ms = svd->vdev_ms;
658789Sahrens 
659789Sahrens 	svd->vdev_mg = NULL;
660789Sahrens 	svd->vdev_ms = NULL;
6611732Sbonwick 
6621732Sbonwick 	if (tvd->vdev_mg != NULL)
6631732Sbonwick 		tvd->vdev_mg->mg_vd = tvd;
664789Sahrens 
665789Sahrens 	tvd->vdev_stat.vs_alloc = svd->vdev_stat.vs_alloc;
666789Sahrens 	tvd->vdev_stat.vs_space = svd->vdev_stat.vs_space;
6672082Seschrock 	tvd->vdev_stat.vs_dspace = svd->vdev_stat.vs_dspace;
668789Sahrens 
669789Sahrens 	svd->vdev_stat.vs_alloc = 0;
670789Sahrens 	svd->vdev_stat.vs_space = 0;
6712082Seschrock 	svd->vdev_stat.vs_dspace = 0;
672789Sahrens 
673789Sahrens 	for (t = 0; t < TXG_SIZE; t++) {
674789Sahrens 		while ((msp = txg_list_remove(&svd->vdev_ms_list, t)) != NULL)
675789Sahrens 			(void) txg_list_add(&tvd->vdev_ms_list, msp, t);
676789Sahrens 		while ((vd = txg_list_remove(&svd->vdev_dtl_list, t)) != NULL)
677789Sahrens 			(void) txg_list_add(&tvd->vdev_dtl_list, vd, t);
678789Sahrens 		if (txg_list_remove_this(&spa->spa_vdev_txg_list, svd, t))
679789Sahrens 			(void) txg_list_add(&spa->spa_vdev_txg_list, tvd, t);
680789Sahrens 	}
681789Sahrens 
6827754SJeff.Bonwick@Sun.COM 	if (list_link_active(&svd->vdev_config_dirty_node)) {
683789Sahrens 		vdev_config_clean(svd);
684789Sahrens 		vdev_config_dirty(tvd);
685789Sahrens 	}
686789Sahrens 
6877754SJeff.Bonwick@Sun.COM 	if (list_link_active(&svd->vdev_state_dirty_node)) {
6887754SJeff.Bonwick@Sun.COM 		vdev_state_clean(svd);
6897754SJeff.Bonwick@Sun.COM 		vdev_state_dirty(tvd);
6907754SJeff.Bonwick@Sun.COM 	}
6917754SJeff.Bonwick@Sun.COM 
6922082Seschrock 	tvd->vdev_deflate_ratio = svd->vdev_deflate_ratio;
6932082Seschrock 	svd->vdev_deflate_ratio = 0;
6944527Sperrin 
6954527Sperrin 	tvd->vdev_islog = svd->vdev_islog;
6964527Sperrin 	svd->vdev_islog = 0;
697789Sahrens }
698789Sahrens 
699789Sahrens static void
700789Sahrens vdev_top_update(vdev_t *tvd, vdev_t *vd)
701789Sahrens {
702789Sahrens 	if (vd == NULL)
703789Sahrens 		return;
704789Sahrens 
705789Sahrens 	vd->vdev_top = tvd;
706789Sahrens 
7079816SGeorge.Wilson@Sun.COM 	for (int c = 0; c < vd->vdev_children; c++)
708789Sahrens 		vdev_top_update(tvd, vd->vdev_child[c]);
709789Sahrens }
710789Sahrens 
711789Sahrens /*
712789Sahrens  * Add a mirror/replacing vdev above an existing vdev.
713789Sahrens  */
714789Sahrens vdev_t *
715789Sahrens vdev_add_parent(vdev_t *cvd, vdev_ops_t *ops)
716789Sahrens {
717789Sahrens 	spa_t *spa = cvd->vdev_spa;
718789Sahrens 	vdev_t *pvd = cvd->vdev_parent;
719789Sahrens 	vdev_t *mvd;
720789Sahrens 
7217754SJeff.Bonwick@Sun.COM 	ASSERT(spa_config_held(spa, SCL_ALL, RW_WRITER) == SCL_ALL);
722789Sahrens 
723789Sahrens 	mvd = vdev_alloc_common(spa, cvd->vdev_id, 0, ops);
7241732Sbonwick 
7251732Sbonwick 	mvd->vdev_asize = cvd->vdev_asize;
7269816SGeorge.Wilson@Sun.COM 	mvd->vdev_min_asize = cvd->vdev_min_asize;
7271732Sbonwick 	mvd->vdev_ashift = cvd->vdev_ashift;
7281732Sbonwick 	mvd->vdev_state = cvd->vdev_state;
72910594SGeorge.Wilson@Sun.COM 	mvd->vdev_crtxg = cvd->vdev_crtxg;
7301732Sbonwick 
731789Sahrens 	vdev_remove_child(pvd, cvd);
732789Sahrens 	vdev_add_child(pvd, mvd);
733789Sahrens 	cvd->vdev_id = mvd->vdev_children;
734789Sahrens 	vdev_add_child(mvd, cvd);
735789Sahrens 	vdev_top_update(cvd->vdev_top, cvd->vdev_top);
736789Sahrens 
737789Sahrens 	if (mvd == mvd->vdev_top)
738789Sahrens 		vdev_top_transfer(cvd, mvd);
739789Sahrens 
740789Sahrens 	return (mvd);
741789Sahrens }
742789Sahrens 
743789Sahrens /*
744789Sahrens  * Remove a 1-way mirror/replacing vdev from the tree.
745789Sahrens  */
746789Sahrens void
747789Sahrens vdev_remove_parent(vdev_t *cvd)
748789Sahrens {
749789Sahrens 	vdev_t *mvd = cvd->vdev_parent;
750789Sahrens 	vdev_t *pvd = mvd->vdev_parent;
751789Sahrens 
7527754SJeff.Bonwick@Sun.COM 	ASSERT(spa_config_held(cvd->vdev_spa, SCL_ALL, RW_WRITER) == SCL_ALL);
753789Sahrens 
754789Sahrens 	ASSERT(mvd->vdev_children == 1);
755789Sahrens 	ASSERT(mvd->vdev_ops == &vdev_mirror_ops ||
7562082Seschrock 	    mvd->vdev_ops == &vdev_replacing_ops ||
7572082Seschrock 	    mvd->vdev_ops == &vdev_spare_ops);
7581732Sbonwick 	cvd->vdev_ashift = mvd->vdev_ashift;
759789Sahrens 
760789Sahrens 	vdev_remove_child(mvd, cvd);
761789Sahrens 	vdev_remove_child(pvd, mvd);
7628241SJeff.Bonwick@Sun.COM 
7637754SJeff.Bonwick@Sun.COM 	/*
7647754SJeff.Bonwick@Sun.COM 	 * If cvd will replace mvd as a top-level vdev, preserve mvd's guid.
7657754SJeff.Bonwick@Sun.COM 	 * Otherwise, we could have detached an offline device, and when we
7667754SJeff.Bonwick@Sun.COM 	 * go to import the pool we'll think we have two top-level vdevs,
7677754SJeff.Bonwick@Sun.COM 	 * instead of a different version of the same top-level vdev.
7687754SJeff.Bonwick@Sun.COM 	 */
7698241SJeff.Bonwick@Sun.COM 	if (mvd->vdev_top == mvd) {
7708241SJeff.Bonwick@Sun.COM 		uint64_t guid_delta = mvd->vdev_guid - cvd->vdev_guid;
7718241SJeff.Bonwick@Sun.COM 		cvd->vdev_guid += guid_delta;
7728241SJeff.Bonwick@Sun.COM 		cvd->vdev_guid_sum += guid_delta;
7738241SJeff.Bonwick@Sun.COM 	}
774789Sahrens 	cvd->vdev_id = mvd->vdev_id;
775789Sahrens 	vdev_add_child(pvd, cvd);
776789Sahrens 	vdev_top_update(cvd->vdev_top, cvd->vdev_top);
777789Sahrens 
778789Sahrens 	if (cvd == cvd->vdev_top)
779789Sahrens 		vdev_top_transfer(mvd, cvd);
780789Sahrens 
781789Sahrens 	ASSERT(mvd->vdev_children == 0);
782789Sahrens 	vdev_free(mvd);
783789Sahrens }
784789Sahrens 
7851544Seschrock int
786789Sahrens vdev_metaslab_init(vdev_t *vd, uint64_t txg)
787789Sahrens {
788789Sahrens 	spa_t *spa = vd->vdev_spa;
7891732Sbonwick 	objset_t *mos = spa->spa_meta_objset;
7904527Sperrin 	metaslab_class_t *mc;
7911732Sbonwick 	uint64_t m;
792789Sahrens 	uint64_t oldc = vd->vdev_ms_count;
793789Sahrens 	uint64_t newc = vd->vdev_asize >> vd->vdev_ms_shift;
7941732Sbonwick 	metaslab_t **mspp;
7951732Sbonwick 	int error;
796789Sahrens 
79710594SGeorge.Wilson@Sun.COM 	/*
79810594SGeorge.Wilson@Sun.COM 	 * This vdev is not being allocated from yet or is a hole.
79910594SGeorge.Wilson@Sun.COM 	 */
80010594SGeorge.Wilson@Sun.COM 	if (vd->vdev_ms_shift == 0)
8011585Sbonwick 		return (0);
8021585Sbonwick 
80310594SGeorge.Wilson@Sun.COM 	ASSERT(!vd->vdev_ishole);
80410594SGeorge.Wilson@Sun.COM 
8059701SGeorge.Wilson@Sun.COM 	/*
8069701SGeorge.Wilson@Sun.COM 	 * Compute the raidz-deflation ratio.  Note, we hard-code
8079701SGeorge.Wilson@Sun.COM 	 * in 128k (1 << 17) because it is the current "typical" blocksize.
8089701SGeorge.Wilson@Sun.COM 	 * Even if SPA_MAXBLOCKSIZE changes, this algorithm must never change,
8099701SGeorge.Wilson@Sun.COM 	 * or we will inconsistently account for existing bp's.
8109701SGeorge.Wilson@Sun.COM 	 */
8119701SGeorge.Wilson@Sun.COM 	vd->vdev_deflate_ratio = (1 << 17) /
8129701SGeorge.Wilson@Sun.COM 	    (vdev_psize_to_asize(vd, 1 << 17) >> SPA_MINBLOCKSHIFT);
8139701SGeorge.Wilson@Sun.COM 
814789Sahrens 	ASSERT(oldc <= newc);
815789Sahrens 
8164527Sperrin 	if (vd->vdev_islog)
817*10922SJeff.Bonwick@Sun.COM 		mc = spa_log_class(spa);
8184527Sperrin 	else
819*10922SJeff.Bonwick@Sun.COM 		mc = spa_normal_class(spa);
8204527Sperrin 
8211732Sbonwick 	if (vd->vdev_mg == NULL)
8221732Sbonwick 		vd->vdev_mg = metaslab_group_create(mc, vd);
8231732Sbonwick 
8241732Sbonwick 	mspp = kmem_zalloc(newc * sizeof (*mspp), KM_SLEEP);
8251732Sbonwick 
8261732Sbonwick 	if (oldc != 0) {
8271732Sbonwick 		bcopy(vd->vdev_ms, mspp, oldc * sizeof (*mspp));
8281732Sbonwick 		kmem_free(vd->vdev_ms, oldc * sizeof (*mspp));
8291732Sbonwick 	}
8301732Sbonwick 
8311732Sbonwick 	vd->vdev_ms = mspp;
832789Sahrens 	vd->vdev_ms_count = newc;
833789Sahrens 
8341732Sbonwick 	for (m = oldc; m < newc; m++) {
8351732Sbonwick 		space_map_obj_t smo = { 0, 0, 0 };
836789Sahrens 		if (txg == 0) {
8371732Sbonwick 			uint64_t object = 0;
8381732Sbonwick 			error = dmu_read(mos, vd->vdev_ms_array,
8399512SNeil.Perrin@Sun.COM 			    m * sizeof (uint64_t), sizeof (uint64_t), &object,
8409512SNeil.Perrin@Sun.COM 			    DMU_READ_PREFETCH);
8411732Sbonwick 			if (error)
8421732Sbonwick 				return (error);
8431732Sbonwick 			if (object != 0) {
8441732Sbonwick 				dmu_buf_t *db;
8451732Sbonwick 				error = dmu_bonus_hold(mos, object, FTAG, &db);
8461732Sbonwick 				if (error)
8471732Sbonwick 					return (error);
8484944Smaybee 				ASSERT3U(db->db_size, >=, sizeof (smo));
8494944Smaybee 				bcopy(db->db_data, &smo, sizeof (smo));
8501732Sbonwick 				ASSERT3U(smo.smo_object, ==, object);
8511544Seschrock 				dmu_buf_rele(db, FTAG);
852789Sahrens 			}
853789Sahrens 		}
8541732Sbonwick 		vd->vdev_ms[m] = metaslab_init(vd->vdev_mg, &smo,
8551732Sbonwick 		    m << vd->vdev_ms_shift, 1ULL << vd->vdev_ms_shift, txg);
856789Sahrens 	}
857789Sahrens 
8581544Seschrock 	return (0);
859789Sahrens }
860789Sahrens 
861789Sahrens void
862789Sahrens vdev_metaslab_fini(vdev_t *vd)
863789Sahrens {
864789Sahrens 	uint64_t m;
865789Sahrens 	uint64_t count = vd->vdev_ms_count;
866789Sahrens 
867789Sahrens 	if (vd->vdev_ms != NULL) {
868789Sahrens 		for (m = 0; m < count; m++)
8691732Sbonwick 			if (vd->vdev_ms[m] != NULL)
8701732Sbonwick 				metaslab_fini(vd->vdev_ms[m]);
871789Sahrens 		kmem_free(vd->vdev_ms, count * sizeof (metaslab_t *));
872789Sahrens 		vd->vdev_ms = NULL;
873789Sahrens 	}
874789Sahrens }
875789Sahrens 
8767754SJeff.Bonwick@Sun.COM typedef struct vdev_probe_stats {
8777754SJeff.Bonwick@Sun.COM 	boolean_t	vps_readable;
8787754SJeff.Bonwick@Sun.COM 	boolean_t	vps_writeable;
8797754SJeff.Bonwick@Sun.COM 	int		vps_flags;
8807754SJeff.Bonwick@Sun.COM } vdev_probe_stats_t;
8817754SJeff.Bonwick@Sun.COM 
8827754SJeff.Bonwick@Sun.COM static void
8837754SJeff.Bonwick@Sun.COM vdev_probe_done(zio_t *zio)
8845329Sgw25295 {
8858241SJeff.Bonwick@Sun.COM 	spa_t *spa = zio->io_spa;
8868632SBill.Moore@Sun.COM 	vdev_t *vd = zio->io_vd;
8877754SJeff.Bonwick@Sun.COM 	vdev_probe_stats_t *vps = zio->io_private;
8888632SBill.Moore@Sun.COM 
8898632SBill.Moore@Sun.COM 	ASSERT(vd->vdev_probe_zio != NULL);
8907754SJeff.Bonwick@Sun.COM 
8917754SJeff.Bonwick@Sun.COM 	if (zio->io_type == ZIO_TYPE_READ) {
8927754SJeff.Bonwick@Sun.COM 		if (zio->io_error == 0)
8937754SJeff.Bonwick@Sun.COM 			vps->vps_readable = 1;
8948241SJeff.Bonwick@Sun.COM 		if (zio->io_error == 0 && spa_writeable(spa)) {
8958632SBill.Moore@Sun.COM 			zio_nowait(zio_write_phys(vd->vdev_probe_zio, vd,
8967754SJeff.Bonwick@Sun.COM 			    zio->io_offset, zio->io_size, zio->io_data,
8977754SJeff.Bonwick@Sun.COM 			    ZIO_CHECKSUM_OFF, vdev_probe_done, vps,
8987754SJeff.Bonwick@Sun.COM 			    ZIO_PRIORITY_SYNC_WRITE, vps->vps_flags, B_TRUE));
8997754SJeff.Bonwick@Sun.COM 		} else {
9007754SJeff.Bonwick@Sun.COM 			zio_buf_free(zio->io_data, zio->io_size);
9017754SJeff.Bonwick@Sun.COM 		}
9027754SJeff.Bonwick@Sun.COM 	} else if (zio->io_type == ZIO_TYPE_WRITE) {
9037754SJeff.Bonwick@Sun.COM 		if (zio->io_error == 0)
9047754SJeff.Bonwick@Sun.COM 			vps->vps_writeable = 1;
9057754SJeff.Bonwick@Sun.COM 		zio_buf_free(zio->io_data, zio->io_size);
9067754SJeff.Bonwick@Sun.COM 	} else if (zio->io_type == ZIO_TYPE_NULL) {
9078632SBill.Moore@Sun.COM 		zio_t *pio;
9087754SJeff.Bonwick@Sun.COM 
9097754SJeff.Bonwick@Sun.COM 		vd->vdev_cant_read |= !vps->vps_readable;
9107754SJeff.Bonwick@Sun.COM 		vd->vdev_cant_write |= !vps->vps_writeable;
9117754SJeff.Bonwick@Sun.COM 
9127754SJeff.Bonwick@Sun.COM 		if (vdev_readable(vd) &&
9138241SJeff.Bonwick@Sun.COM 		    (vdev_writeable(vd) || !spa_writeable(spa))) {
9147754SJeff.Bonwick@Sun.COM 			zio->io_error = 0;
9157754SJeff.Bonwick@Sun.COM 		} else {
9167754SJeff.Bonwick@Sun.COM 			ASSERT(zio->io_error != 0);
9177754SJeff.Bonwick@Sun.COM 			zfs_ereport_post(FM_EREPORT_ZFS_PROBE_FAILURE,
9188241SJeff.Bonwick@Sun.COM 			    spa, vd, NULL, 0, 0);
9197754SJeff.Bonwick@Sun.COM 			zio->io_error = ENXIO;
9207754SJeff.Bonwick@Sun.COM 		}
9218632SBill.Moore@Sun.COM 
9228632SBill.Moore@Sun.COM 		mutex_enter(&vd->vdev_probe_lock);
9238632SBill.Moore@Sun.COM 		ASSERT(vd->vdev_probe_zio == zio);
9248632SBill.Moore@Sun.COM 		vd->vdev_probe_zio = NULL;
9258632SBill.Moore@Sun.COM 		mutex_exit(&vd->vdev_probe_lock);
9268632SBill.Moore@Sun.COM 
9278632SBill.Moore@Sun.COM 		while ((pio = zio_walk_parents(zio)) != NULL)
9288632SBill.Moore@Sun.COM 			if (!vdev_accessible(vd, pio))
9298632SBill.Moore@Sun.COM 				pio->io_error = ENXIO;
9308632SBill.Moore@Sun.COM 
9317754SJeff.Bonwick@Sun.COM 		kmem_free(vps, sizeof (*vps));
9327754SJeff.Bonwick@Sun.COM 	}
9337754SJeff.Bonwick@Sun.COM }
9345329Sgw25295 
9357754SJeff.Bonwick@Sun.COM /*
9367754SJeff.Bonwick@Sun.COM  * Determine whether this device is accessible by reading and writing
9377754SJeff.Bonwick@Sun.COM  * to several known locations: the pad regions of each vdev label
9387754SJeff.Bonwick@Sun.COM  * but the first (which we leave alone in case it contains a VTOC).
9397754SJeff.Bonwick@Sun.COM  */
9407754SJeff.Bonwick@Sun.COM zio_t *
9418632SBill.Moore@Sun.COM vdev_probe(vdev_t *vd, zio_t *zio)
9427754SJeff.Bonwick@Sun.COM {
9437754SJeff.Bonwick@Sun.COM 	spa_t *spa = vd->vdev_spa;
9448632SBill.Moore@Sun.COM 	vdev_probe_stats_t *vps = NULL;
9458632SBill.Moore@Sun.COM 	zio_t *pio;
9467754SJeff.Bonwick@Sun.COM 
9477754SJeff.Bonwick@Sun.COM 	ASSERT(vd->vdev_ops->vdev_op_leaf);
9487754SJeff.Bonwick@Sun.COM 
9498632SBill.Moore@Sun.COM 	/*
9508632SBill.Moore@Sun.COM 	 * Don't probe the probe.
9518632SBill.Moore@Sun.COM 	 */
9528632SBill.Moore@Sun.COM 	if (zio && (zio->io_flags & ZIO_FLAG_PROBE))
9538632SBill.Moore@Sun.COM 		return (NULL);
9548632SBill.Moore@Sun.COM 
9558632SBill.Moore@Sun.COM 	/*
9568632SBill.Moore@Sun.COM 	 * To prevent 'probe storms' when a device fails, we create
9578632SBill.Moore@Sun.COM 	 * just one probe i/o at a time.  All zios that want to probe
9588632SBill.Moore@Sun.COM 	 * this vdev will become parents of the probe io.
9598632SBill.Moore@Sun.COM 	 */
9608632SBill.Moore@Sun.COM 	mutex_enter(&vd->vdev_probe_lock);
9618632SBill.Moore@Sun.COM 
9628632SBill.Moore@Sun.COM 	if ((pio = vd->vdev_probe_zio) == NULL) {
9638632SBill.Moore@Sun.COM 		vps = kmem_zalloc(sizeof (*vps), KM_SLEEP);
9648632SBill.Moore@Sun.COM 
9658632SBill.Moore@Sun.COM 		vps->vps_flags = ZIO_FLAG_CANFAIL | ZIO_FLAG_PROBE |
9668632SBill.Moore@Sun.COM 		    ZIO_FLAG_DONT_CACHE | ZIO_FLAG_DONT_AGGREGATE |
9679725SEric.Schrock@Sun.COM 		    ZIO_FLAG_TRYHARD;
9688632SBill.Moore@Sun.COM 
9698632SBill.Moore@Sun.COM 		if (spa_config_held(spa, SCL_ZIO, RW_WRITER)) {
9708632SBill.Moore@Sun.COM 			/*
9718632SBill.Moore@Sun.COM 			 * vdev_cant_read and vdev_cant_write can only
9728632SBill.Moore@Sun.COM 			 * transition from TRUE to FALSE when we have the
9738632SBill.Moore@Sun.COM 			 * SCL_ZIO lock as writer; otherwise they can only
9748632SBill.Moore@Sun.COM 			 * transition from FALSE to TRUE.  This ensures that
9758632SBill.Moore@Sun.COM 			 * any zio looking at these values can assume that
9768632SBill.Moore@Sun.COM 			 * failures persist for the life of the I/O.  That's
9778632SBill.Moore@Sun.COM 			 * important because when a device has intermittent
9788632SBill.Moore@Sun.COM 			 * connectivity problems, we want to ensure that
9798632SBill.Moore@Sun.COM 			 * they're ascribed to the device (ENXIO) and not
9808632SBill.Moore@Sun.COM 			 * the zio (EIO).
9818632SBill.Moore@Sun.COM 			 *
9828632SBill.Moore@Sun.COM 			 * Since we hold SCL_ZIO as writer here, clear both
9838632SBill.Moore@Sun.COM 			 * values so the probe can reevaluate from first
9848632SBill.Moore@Sun.COM 			 * principles.
9858632SBill.Moore@Sun.COM 			 */
9868632SBill.Moore@Sun.COM 			vps->vps_flags |= ZIO_FLAG_CONFIG_WRITER;
9878632SBill.Moore@Sun.COM 			vd->vdev_cant_read = B_FALSE;
9888632SBill.Moore@Sun.COM 			vd->vdev_cant_write = B_FALSE;
9898632SBill.Moore@Sun.COM 		}
9908632SBill.Moore@Sun.COM 
9918632SBill.Moore@Sun.COM 		vd->vdev_probe_zio = pio = zio_null(NULL, spa, vd,
9928632SBill.Moore@Sun.COM 		    vdev_probe_done, vps,
9938632SBill.Moore@Sun.COM 		    vps->vps_flags | ZIO_FLAG_DONT_PROPAGATE);
9948632SBill.Moore@Sun.COM 
9958632SBill.Moore@Sun.COM 		if (zio != NULL) {
9968632SBill.Moore@Sun.COM 			vd->vdev_probe_wanted = B_TRUE;
9978632SBill.Moore@Sun.COM 			spa_async_request(spa, SPA_ASYNC_PROBE);
9988632SBill.Moore@Sun.COM 		}
9998632SBill.Moore@Sun.COM 	}
10008632SBill.Moore@Sun.COM 
10018632SBill.Moore@Sun.COM 	if (zio != NULL)
10028632SBill.Moore@Sun.COM 		zio_add_child(zio, pio);
10038632SBill.Moore@Sun.COM 
10048632SBill.Moore@Sun.COM 	mutex_exit(&vd->vdev_probe_lock);
10058632SBill.Moore@Sun.COM 
10068632SBill.Moore@Sun.COM 	if (vps == NULL) {
10078632SBill.Moore@Sun.COM 		ASSERT(zio != NULL);
10088632SBill.Moore@Sun.COM 		return (NULL);
10098632SBill.Moore@Sun.COM 	}
10107754SJeff.Bonwick@Sun.COM 
10117754SJeff.Bonwick@Sun.COM 	for (int l = 1; l < VDEV_LABELS; l++) {
10128632SBill.Moore@Sun.COM 		zio_nowait(zio_read_phys(pio, vd,
10137754SJeff.Bonwick@Sun.COM 		    vdev_label_offset(vd->vdev_psize, l,
10149056SLin.Ling@Sun.COM 		    offsetof(vdev_label_t, vl_pad2)),
10159056SLin.Ling@Sun.COM 		    VDEV_PAD_SIZE, zio_buf_alloc(VDEV_PAD_SIZE),
10167754SJeff.Bonwick@Sun.COM 		    ZIO_CHECKSUM_OFF, vdev_probe_done, vps,
10177754SJeff.Bonwick@Sun.COM 		    ZIO_PRIORITY_SYNC_READ, vps->vps_flags, B_TRUE));
10187754SJeff.Bonwick@Sun.COM 	}
10197754SJeff.Bonwick@Sun.COM 
10208632SBill.Moore@Sun.COM 	if (zio == NULL)
10218632SBill.Moore@Sun.COM 		return (pio);
10228632SBill.Moore@Sun.COM 
10238632SBill.Moore@Sun.COM 	zio_nowait(pio);
10248632SBill.Moore@Sun.COM 	return (NULL);
10255329Sgw25295 }
10265329Sgw25295 
10279846SEric.Taylor@Sun.COM static void
10289846SEric.Taylor@Sun.COM vdev_open_child(void *arg)
10299846SEric.Taylor@Sun.COM {
10309846SEric.Taylor@Sun.COM 	vdev_t *vd = arg;
10319846SEric.Taylor@Sun.COM 
10329846SEric.Taylor@Sun.COM 	vd->vdev_open_thread = curthread;
10339846SEric.Taylor@Sun.COM 	vd->vdev_open_error = vdev_open(vd);
10349846SEric.Taylor@Sun.COM 	vd->vdev_open_thread = NULL;
10359846SEric.Taylor@Sun.COM }
10369846SEric.Taylor@Sun.COM 
103710588SEric.Taylor@Sun.COM boolean_t
103810588SEric.Taylor@Sun.COM vdev_uses_zvols(vdev_t *vd)
103910588SEric.Taylor@Sun.COM {
104010588SEric.Taylor@Sun.COM 	if (vd->vdev_path && strncmp(vd->vdev_path, ZVOL_DIR,
104110588SEric.Taylor@Sun.COM 	    strlen(ZVOL_DIR)) == 0)
104210588SEric.Taylor@Sun.COM 		return (B_TRUE);
104310588SEric.Taylor@Sun.COM 	for (int c = 0; c < vd->vdev_children; c++)
104410588SEric.Taylor@Sun.COM 		if (vdev_uses_zvols(vd->vdev_child[c]))
104510588SEric.Taylor@Sun.COM 			return (B_TRUE);
104610588SEric.Taylor@Sun.COM 	return (B_FALSE);
104710588SEric.Taylor@Sun.COM }
104810588SEric.Taylor@Sun.COM 
10499846SEric.Taylor@Sun.COM void
10509846SEric.Taylor@Sun.COM vdev_open_children(vdev_t *vd)
10519846SEric.Taylor@Sun.COM {
10529846SEric.Taylor@Sun.COM 	taskq_t *tq;
10539846SEric.Taylor@Sun.COM 	int children = vd->vdev_children;
10549846SEric.Taylor@Sun.COM 
105510588SEric.Taylor@Sun.COM 	/*
105610588SEric.Taylor@Sun.COM 	 * in order to handle pools on top of zvols, do the opens
105710588SEric.Taylor@Sun.COM 	 * in a single thread so that the same thread holds the
105810588SEric.Taylor@Sun.COM 	 * spa_namespace_lock
105910588SEric.Taylor@Sun.COM 	 */
106010588SEric.Taylor@Sun.COM 	if (vdev_uses_zvols(vd)) {
106110588SEric.Taylor@Sun.COM 		for (int c = 0; c < children; c++)
106210588SEric.Taylor@Sun.COM 			vd->vdev_child[c]->vdev_open_error =
106310588SEric.Taylor@Sun.COM 			    vdev_open(vd->vdev_child[c]);
106410588SEric.Taylor@Sun.COM 		return;
106510588SEric.Taylor@Sun.COM 	}
10669846SEric.Taylor@Sun.COM 	tq = taskq_create("vdev_open", children, minclsyspri,
10679846SEric.Taylor@Sun.COM 	    children, children, TASKQ_PREPOPULATE);
10689846SEric.Taylor@Sun.COM 
10699846SEric.Taylor@Sun.COM 	for (int c = 0; c < children; c++)
10709846SEric.Taylor@Sun.COM 		VERIFY(taskq_dispatch(tq, vdev_open_child, vd->vdev_child[c],
10719846SEric.Taylor@Sun.COM 		    TQ_SLEEP) != NULL);
10729846SEric.Taylor@Sun.COM 
10739846SEric.Taylor@Sun.COM 	taskq_destroy(tq);
10749846SEric.Taylor@Sun.COM }
10759846SEric.Taylor@Sun.COM 
1076789Sahrens /*
1077789Sahrens  * Prepare a virtual device for access.
1078789Sahrens  */
1079789Sahrens int
1080789Sahrens vdev_open(vdev_t *vd)
1081789Sahrens {
10828241SJeff.Bonwick@Sun.COM 	spa_t *spa = vd->vdev_spa;
1083789Sahrens 	int error;
1084789Sahrens 	uint64_t osize = 0;
1085789Sahrens 	uint64_t asize, psize;
10861732Sbonwick 	uint64_t ashift = 0;
1087789Sahrens 
10889846SEric.Taylor@Sun.COM 	ASSERT(vd->vdev_open_thread == curthread ||
10899846SEric.Taylor@Sun.COM 	    spa_config_held(spa, SCL_STATE_ALL, RW_WRITER) == SCL_STATE_ALL);
1090789Sahrens 	ASSERT(vd->vdev_state == VDEV_STATE_CLOSED ||
1091789Sahrens 	    vd->vdev_state == VDEV_STATE_CANT_OPEN ||
1092789Sahrens 	    vd->vdev_state == VDEV_STATE_OFFLINE);
1093789Sahrens 
1094789Sahrens 	vd->vdev_stat.vs_aux = VDEV_AUX_NONE;
10959701SGeorge.Wilson@Sun.COM 	vd->vdev_cant_read = B_FALSE;
10969701SGeorge.Wilson@Sun.COM 	vd->vdev_cant_write = B_FALSE;
10979816SGeorge.Wilson@Sun.COM 	vd->vdev_min_asize = vdev_get_min_asize(vd);
1098789Sahrens 
109910817SEric.Schrock@Sun.COM 	/*
110010817SEric.Schrock@Sun.COM 	 * If this vdev is not removed, check its fault status.  If it's
110110817SEric.Schrock@Sun.COM 	 * faulted, bail out of the open.
110210817SEric.Schrock@Sun.COM 	 */
11034451Seschrock 	if (!vd->vdev_removed && vd->vdev_faulted) {
11044451Seschrock 		ASSERT(vd->vdev_children == 0);
110510817SEric.Schrock@Sun.COM 		ASSERT(vd->vdev_label_aux == VDEV_AUX_ERR_EXCEEDED ||
110610817SEric.Schrock@Sun.COM 		    vd->vdev_label_aux == VDEV_AUX_EXTERNAL);
11074451Seschrock 		vdev_set_state(vd, B_TRUE, VDEV_STATE_FAULTED,
110810817SEric.Schrock@Sun.COM 		    vd->vdev_label_aux);
11094451Seschrock 		return (ENXIO);
11104451Seschrock 	} else if (vd->vdev_offline) {
1111789Sahrens 		ASSERT(vd->vdev_children == 0);
11121544Seschrock 		vdev_set_state(vd, B_TRUE, VDEV_STATE_OFFLINE, VDEV_AUX_NONE);
1113789Sahrens 		return (ENXIO);
1114789Sahrens 	}
1115789Sahrens 
1116789Sahrens 	error = vd->vdev_ops->vdev_op_open(vd, &osize, &ashift);
1117789Sahrens 
111810850SGeorge.Wilson@Sun.COM 	/*
111910850SGeorge.Wilson@Sun.COM 	 * Reset the vdev_reopening flag so that we actually close
112010850SGeorge.Wilson@Sun.COM 	 * the vdev on error.
112110850SGeorge.Wilson@Sun.COM 	 */
112210850SGeorge.Wilson@Sun.COM 	vd->vdev_reopening = B_FALSE;
11231544Seschrock 	if (zio_injection_enabled && error == 0)
11249725SEric.Schrock@Sun.COM 		error = zio_handle_device_injection(vd, NULL, ENXIO);
11251544Seschrock 
11264451Seschrock 	if (error) {
11274451Seschrock 		if (vd->vdev_removed &&
11284451Seschrock 		    vd->vdev_stat.vs_aux != VDEV_AUX_OPEN_FAILED)
11294451Seschrock 			vd->vdev_removed = B_FALSE;
1130789Sahrens 
11311544Seschrock 		vdev_set_state(vd, B_TRUE, VDEV_STATE_CANT_OPEN,
1132789Sahrens 		    vd->vdev_stat.vs_aux);
1133789Sahrens 		return (error);
1134789Sahrens 	}
1135789Sahrens 
11364451Seschrock 	vd->vdev_removed = B_FALSE;
11374451Seschrock 
113810830SEric.Schrock@Sun.COM 	/*
113910830SEric.Schrock@Sun.COM 	 * Recheck the faulted flag now that we have confirmed that
114010830SEric.Schrock@Sun.COM 	 * the vdev is accessible.  If we're faulted, bail.
114110830SEric.Schrock@Sun.COM 	 */
114210830SEric.Schrock@Sun.COM 	if (vd->vdev_faulted) {
114310830SEric.Schrock@Sun.COM 		ASSERT(vd->vdev_children == 0);
114410830SEric.Schrock@Sun.COM 		ASSERT(vd->vdev_label_aux == VDEV_AUX_ERR_EXCEEDED ||
114510830SEric.Schrock@Sun.COM 		    vd->vdev_label_aux == VDEV_AUX_EXTERNAL);
114610830SEric.Schrock@Sun.COM 		vdev_set_state(vd, B_TRUE, VDEV_STATE_FAULTED,
114710830SEric.Schrock@Sun.COM 		    vd->vdev_label_aux);
114810830SEric.Schrock@Sun.COM 		return (ENXIO);
114910830SEric.Schrock@Sun.COM 	}
115010830SEric.Schrock@Sun.COM 
11514451Seschrock 	if (vd->vdev_degraded) {
11524451Seschrock 		ASSERT(vd->vdev_children == 0);
11534451Seschrock 		vdev_set_state(vd, B_TRUE, VDEV_STATE_DEGRADED,
11544451Seschrock 		    VDEV_AUX_ERR_EXCEEDED);
11554451Seschrock 	} else {
115610817SEric.Schrock@Sun.COM 		vdev_set_state(vd, B_TRUE, VDEV_STATE_HEALTHY, 0);
11574451Seschrock 	}
1158789Sahrens 
115910594SGeorge.Wilson@Sun.COM 	/*
116010594SGeorge.Wilson@Sun.COM 	 * For hole or missing vdevs we just return success.
116110594SGeorge.Wilson@Sun.COM 	 */
116210594SGeorge.Wilson@Sun.COM 	if (vd->vdev_ishole || vd->vdev_ops == &vdev_missing_ops)
116310594SGeorge.Wilson@Sun.COM 		return (0);
116410594SGeorge.Wilson@Sun.COM 
11659816SGeorge.Wilson@Sun.COM 	for (int c = 0; c < vd->vdev_children; c++) {
11661544Seschrock 		if (vd->vdev_child[c]->vdev_state != VDEV_STATE_HEALTHY) {
11671544Seschrock 			vdev_set_state(vd, B_TRUE, VDEV_STATE_DEGRADED,
11681544Seschrock 			    VDEV_AUX_NONE);
11691544Seschrock 			break;
11701544Seschrock 		}
11719816SGeorge.Wilson@Sun.COM 	}
1172789Sahrens 
1173789Sahrens 	osize = P2ALIGN(osize, (uint64_t)sizeof (vdev_label_t));
1174789Sahrens 
1175789Sahrens 	if (vd->vdev_children == 0) {
1176789Sahrens 		if (osize < SPA_MINDEVSIZE) {
11771544Seschrock 			vdev_set_state(vd, B_TRUE, VDEV_STATE_CANT_OPEN,
11781544Seschrock 			    VDEV_AUX_TOO_SMALL);
1179789Sahrens 			return (EOVERFLOW);
1180789Sahrens 		}
1181789Sahrens 		psize = osize;
1182789Sahrens 		asize = osize - (VDEV_LABEL_START_SIZE + VDEV_LABEL_END_SIZE);
1183789Sahrens 	} else {
11841732Sbonwick 		if (vd->vdev_parent != NULL && osize < SPA_MINDEVSIZE -
1185789Sahrens 		    (VDEV_LABEL_START_SIZE + VDEV_LABEL_END_SIZE)) {
11861544Seschrock 			vdev_set_state(vd, B_TRUE, VDEV_STATE_CANT_OPEN,
11871544Seschrock 			    VDEV_AUX_TOO_SMALL);
1188789Sahrens 			return (EOVERFLOW);
1189789Sahrens 		}
1190789Sahrens 		psize = 0;
1191789Sahrens 		asize = osize;
1192789Sahrens 	}
1193789Sahrens 
1194789Sahrens 	vd->vdev_psize = psize;
1195789Sahrens 
11969816SGeorge.Wilson@Sun.COM 	/*
11979816SGeorge.Wilson@Sun.COM 	 * Make sure the allocatable size hasn't shrunk.
11989816SGeorge.Wilson@Sun.COM 	 */
11999816SGeorge.Wilson@Sun.COM 	if (asize < vd->vdev_min_asize) {
12009816SGeorge.Wilson@Sun.COM 		vdev_set_state(vd, B_TRUE, VDEV_STATE_CANT_OPEN,
12019816SGeorge.Wilson@Sun.COM 		    VDEV_AUX_BAD_LABEL);
12029816SGeorge.Wilson@Sun.COM 		return (EINVAL);
12039816SGeorge.Wilson@Sun.COM 	}
12049816SGeorge.Wilson@Sun.COM 
1205789Sahrens 	if (vd->vdev_asize == 0) {
1206789Sahrens 		/*
1207789Sahrens 		 * This is the first-ever open, so use the computed values.
12081732Sbonwick 		 * For testing purposes, a higher ashift can be requested.
1209789Sahrens 		 */
1210789Sahrens 		vd->vdev_asize = asize;
12111732Sbonwick 		vd->vdev_ashift = MAX(ashift, vd->vdev_ashift);
1212789Sahrens 	} else {
1213789Sahrens 		/*
1214789Sahrens 		 * Make sure the alignment requirement hasn't increased.
1215789Sahrens 		 */
12161732Sbonwick 		if (ashift > vd->vdev_top->vdev_ashift) {
12171544Seschrock 			vdev_set_state(vd, B_TRUE, VDEV_STATE_CANT_OPEN,
12181544Seschrock 			    VDEV_AUX_BAD_LABEL);
1219789Sahrens 			return (EINVAL);
1220789Sahrens 		}
1221789Sahrens 	}
1222789Sahrens 
12231544Seschrock 	/*
12249816SGeorge.Wilson@Sun.COM 	 * If all children are healthy and the asize has increased,
12259816SGeorge.Wilson@Sun.COM 	 * then we've experienced dynamic LUN growth.  If automatic
12269816SGeorge.Wilson@Sun.COM 	 * expansion is enabled then use the additional space.
12279816SGeorge.Wilson@Sun.COM 	 */
12289816SGeorge.Wilson@Sun.COM 	if (vd->vdev_state == VDEV_STATE_HEALTHY && asize > vd->vdev_asize &&
12299816SGeorge.Wilson@Sun.COM 	    (vd->vdev_expanding || spa->spa_autoexpand))
12309816SGeorge.Wilson@Sun.COM 		vd->vdev_asize = asize;
12319816SGeorge.Wilson@Sun.COM 
12329816SGeorge.Wilson@Sun.COM 	vdev_set_min_asize(vd);
12339816SGeorge.Wilson@Sun.COM 
12349816SGeorge.Wilson@Sun.COM 	/*
12355329Sgw25295 	 * Ensure we can issue some IO before declaring the
12365329Sgw25295 	 * vdev open for business.
12375329Sgw25295 	 */
12387754SJeff.Bonwick@Sun.COM 	if (vd->vdev_ops->vdev_op_leaf &&
12397754SJeff.Bonwick@Sun.COM 	    (error = zio_wait(vdev_probe(vd, NULL))) != 0) {
12405329Sgw25295 		vdev_set_state(vd, B_TRUE, VDEV_STATE_CANT_OPEN,
12417754SJeff.Bonwick@Sun.COM 		    VDEV_AUX_IO_FAILURE);
12425329Sgw25295 		return (error);
12435329Sgw25295 	}
12445329Sgw25295 
12455329Sgw25295 	/*
12467046Sahrens 	 * If a leaf vdev has a DTL, and seems healthy, then kick off a
12478241SJeff.Bonwick@Sun.COM 	 * resilver.  But don't do this if we are doing a reopen for a scrub,
12488241SJeff.Bonwick@Sun.COM 	 * since this would just restart the scrub we are already doing.
12497046Sahrens 	 */
12508241SJeff.Bonwick@Sun.COM 	if (vd->vdev_ops->vdev_op_leaf && !spa->spa_scrub_reopen &&
12518241SJeff.Bonwick@Sun.COM 	    vdev_resilver_needed(vd, NULL, NULL))
12528241SJeff.Bonwick@Sun.COM 		spa_async_request(spa, SPA_ASYNC_RESILVER);
12537046Sahrens 
1254789Sahrens 	return (0);
1255789Sahrens }
1256789Sahrens 
1257789Sahrens /*
12581986Seschrock  * Called once the vdevs are all opened, this routine validates the label
12591986Seschrock  * contents.  This needs to be done before vdev_load() so that we don't
12604451Seschrock  * inadvertently do repair I/Os to the wrong device.
12611986Seschrock  *
12621986Seschrock  * This function will only return failure if one of the vdevs indicates that it
12631986Seschrock  * has since been destroyed or exported.  This is only possible if
12641986Seschrock  * /etc/zfs/zpool.cache was readonly at the time.  Otherwise, the vdev state
12651986Seschrock  * will be updated but the function will return 0.
12661986Seschrock  */
12671986Seschrock int
12681986Seschrock vdev_validate(vdev_t *vd)
12691986Seschrock {
12701986Seschrock 	spa_t *spa = vd->vdev_spa;
12711986Seschrock 	nvlist_t *label;
12727754SJeff.Bonwick@Sun.COM 	uint64_t guid, top_guid;
12731986Seschrock 	uint64_t state;
12741986Seschrock 
12759816SGeorge.Wilson@Sun.COM 	for (int c = 0; c < vd->vdev_children; c++)
12761986Seschrock 		if (vdev_validate(vd->vdev_child[c]) != 0)
12774070Smc142369 			return (EBADF);
12781986Seschrock 
12792174Seschrock 	/*
12802174Seschrock 	 * If the device has already failed, or was marked offline, don't do
12812174Seschrock 	 * any further validation.  Otherwise, label I/O will fail and we will
12822174Seschrock 	 * overwrite the previous state.
12832174Seschrock 	 */
12847754SJeff.Bonwick@Sun.COM 	if (vd->vdev_ops->vdev_op_leaf && vdev_readable(vd)) {
12851986Seschrock 
12861986Seschrock 		if ((label = vdev_label_read_config(vd)) == NULL) {
12871986Seschrock 			vdev_set_state(vd, B_TRUE, VDEV_STATE_CANT_OPEN,
12881986Seschrock 			    VDEV_AUX_BAD_LABEL);
12891986Seschrock 			return (0);
12901986Seschrock 		}
12911986Seschrock 
12921986Seschrock 		if (nvlist_lookup_uint64(label, ZPOOL_CONFIG_POOL_GUID,
12931986Seschrock 		    &guid) != 0 || guid != spa_guid(spa)) {
12941986Seschrock 			vdev_set_state(vd, B_FALSE, VDEV_STATE_CANT_OPEN,
12951986Seschrock 			    VDEV_AUX_CORRUPT_DATA);
12961986Seschrock 			nvlist_free(label);
12971986Seschrock 			return (0);
12981986Seschrock 		}
12991986Seschrock 
13007754SJeff.Bonwick@Sun.COM 		/*
13017754SJeff.Bonwick@Sun.COM 		 * If this vdev just became a top-level vdev because its
13027754SJeff.Bonwick@Sun.COM 		 * sibling was detached, it will have adopted the parent's
13037754SJeff.Bonwick@Sun.COM 		 * vdev guid -- but the label may or may not be on disk yet.
13047754SJeff.Bonwick@Sun.COM 		 * Fortunately, either version of the label will have the
13057754SJeff.Bonwick@Sun.COM 		 * same top guid, so if we're a top-level vdev, we can
13067754SJeff.Bonwick@Sun.COM 		 * safely compare to that instead.
13077754SJeff.Bonwick@Sun.COM 		 */
13081986Seschrock 		if (nvlist_lookup_uint64(label, ZPOOL_CONFIG_GUID,
13097754SJeff.Bonwick@Sun.COM 		    &guid) != 0 ||
13107754SJeff.Bonwick@Sun.COM 		    nvlist_lookup_uint64(label, ZPOOL_CONFIG_TOP_GUID,
13117754SJeff.Bonwick@Sun.COM 		    &top_guid) != 0 ||
13127754SJeff.Bonwick@Sun.COM 		    (vd->vdev_guid != guid &&
13137754SJeff.Bonwick@Sun.COM 		    (vd->vdev_guid != top_guid || vd != vd->vdev_top))) {
13141986Seschrock 			vdev_set_state(vd, B_FALSE, VDEV_STATE_CANT_OPEN,
13151986Seschrock 			    VDEV_AUX_CORRUPT_DATA);
13161986Seschrock 			nvlist_free(label);
13171986Seschrock 			return (0);
13181986Seschrock 		}
13191986Seschrock 
13201986Seschrock 		if (nvlist_lookup_uint64(label, ZPOOL_CONFIG_POOL_STATE,
13211986Seschrock 		    &state) != 0) {
13221986Seschrock 			vdev_set_state(vd, B_FALSE, VDEV_STATE_CANT_OPEN,
13231986Seschrock 			    VDEV_AUX_CORRUPT_DATA);
13241986Seschrock 			nvlist_free(label);
13251986Seschrock 			return (0);
13261986Seschrock 		}
13271986Seschrock 
13281986Seschrock 		nvlist_free(label);
13291986Seschrock 
133010100SLin.Ling@Sun.COM 		/*
133110100SLin.Ling@Sun.COM 		 * If spa->spa_load_verbatim is true, no need to check the
133210100SLin.Ling@Sun.COM 		 * state of the pool.
133310100SLin.Ling@Sun.COM 		 */
133410100SLin.Ling@Sun.COM 		if (!spa->spa_load_verbatim &&
133510100SLin.Ling@Sun.COM 		    spa->spa_load_state == SPA_LOAD_OPEN &&
133610100SLin.Ling@Sun.COM 		    state != POOL_STATE_ACTIVE)
13374070Smc142369 			return (EBADF);
13386976Seschrock 
13396976Seschrock 		/*
13406976Seschrock 		 * If we were able to open and validate a vdev that was
13416976Seschrock 		 * previously marked permanently unavailable, clear that state
13426976Seschrock 		 * now.
13436976Seschrock 		 */
13446976Seschrock 		if (vd->vdev_not_present)
13456976Seschrock 			vd->vdev_not_present = 0;
13461986Seschrock 	}
13471986Seschrock 
13481986Seschrock 	return (0);
13491986Seschrock }
13501986Seschrock 
13511986Seschrock /*
1352789Sahrens  * Close a virtual device.
1353789Sahrens  */
1354789Sahrens void
1355789Sahrens vdev_close(vdev_t *vd)
1356789Sahrens {
13578241SJeff.Bonwick@Sun.COM 	spa_t *spa = vd->vdev_spa;
135810850SGeorge.Wilson@Sun.COM 	vdev_t *pvd = vd->vdev_parent;
13598241SJeff.Bonwick@Sun.COM 
13608241SJeff.Bonwick@Sun.COM 	ASSERT(spa_config_held(spa, SCL_STATE_ALL, RW_WRITER) == SCL_STATE_ALL);
13618241SJeff.Bonwick@Sun.COM 
136210850SGeorge.Wilson@Sun.COM 	if (pvd != NULL && pvd->vdev_reopening)
136310850SGeorge.Wilson@Sun.COM 		vd->vdev_reopening = pvd->vdev_reopening;
136410850SGeorge.Wilson@Sun.COM 
1365789Sahrens 	vd->vdev_ops->vdev_op_close(vd);
1366789Sahrens 
13674451Seschrock 	vdev_cache_purge(vd);
1368789Sahrens 
13691986Seschrock 	/*
13709816SGeorge.Wilson@Sun.COM 	 * We record the previous state before we close it, so that if we are
13711986Seschrock 	 * doing a reopen(), we don't generate FMA ereports if we notice that
13721986Seschrock 	 * it's still faulted.
13731986Seschrock 	 */
13741986Seschrock 	vd->vdev_prevstate = vd->vdev_state;
13751986Seschrock 
1376789Sahrens 	if (vd->vdev_offline)
1377789Sahrens 		vd->vdev_state = VDEV_STATE_OFFLINE;
1378789Sahrens 	else
1379789Sahrens 		vd->vdev_state = VDEV_STATE_CLOSED;
13801544Seschrock 	vd->vdev_stat.vs_aux = VDEV_AUX_NONE;
1381789Sahrens }
1382789Sahrens 
138310850SGeorge.Wilson@Sun.COM /*
138410850SGeorge.Wilson@Sun.COM  * Reopen all interior vdevs and any unopened leaves.  We don't actually
138510850SGeorge.Wilson@Sun.COM  * reopen leaf vdevs which had previously been opened as they might deadlock
138610850SGeorge.Wilson@Sun.COM  * on the spa_config_lock.  Instead we only obtain the leaf's physical size.
138710850SGeorge.Wilson@Sun.COM  * If the leaf has never been opened then open it, as usual.
138810850SGeorge.Wilson@Sun.COM  */
1389789Sahrens void
13901544Seschrock vdev_reopen(vdev_t *vd)
1391789Sahrens {
13921544Seschrock 	spa_t *spa = vd->vdev_spa;
1393789Sahrens 
13947754SJeff.Bonwick@Sun.COM 	ASSERT(spa_config_held(spa, SCL_STATE_ALL, RW_WRITER) == SCL_STATE_ALL);
13951544Seschrock 
139610850SGeorge.Wilson@Sun.COM 	vd->vdev_reopening = B_TRUE;
1397789Sahrens 	vdev_close(vd);
1398789Sahrens 	(void) vdev_open(vd);
1399789Sahrens 
1400789Sahrens 	/*
14013377Seschrock 	 * Call vdev_validate() here to make sure we have the same device.
14023377Seschrock 	 * Otherwise, a device with an invalid label could be successfully
14033377Seschrock 	 * opened in response to vdev_reopen().
14043377Seschrock 	 */
14056643Seschrock 	if (vd->vdev_aux) {
14066643Seschrock 		(void) vdev_validate_aux(vd);
14077754SJeff.Bonwick@Sun.COM 		if (vdev_readable(vd) && vdev_writeable(vd) &&
14089425SEric.Schrock@Sun.COM 		    vd->vdev_aux == &spa->spa_l2cache &&
14099816SGeorge.Wilson@Sun.COM 		    !l2arc_vdev_present(vd))
14109816SGeorge.Wilson@Sun.COM 			l2arc_add_vdev(spa, vd);
14116643Seschrock 	} else {
14126643Seschrock 		(void) vdev_validate(vd);
14136643Seschrock 	}
14143377Seschrock 
14153377Seschrock 	/*
14164451Seschrock 	 * Reassess parent vdev's health.
1417789Sahrens 	 */
14184451Seschrock 	vdev_propagate_state(vd);
1419789Sahrens }
1420789Sahrens 
1421789Sahrens int
14222082Seschrock vdev_create(vdev_t *vd, uint64_t txg, boolean_t isreplacing)
1423789Sahrens {
1424789Sahrens 	int error;
1425789Sahrens 
1426789Sahrens 	/*
1427789Sahrens 	 * Normally, partial opens (e.g. of a mirror) are allowed.
1428789Sahrens 	 * For a create, however, we want to fail the request if
1429789Sahrens 	 * there are any components we can't open.
1430789Sahrens 	 */
1431789Sahrens 	error = vdev_open(vd);
1432789Sahrens 
1433789Sahrens 	if (error || vd->vdev_state != VDEV_STATE_HEALTHY) {
1434789Sahrens 		vdev_close(vd);
1435789Sahrens 		return (error ? error : ENXIO);
1436789Sahrens 	}
1437789Sahrens 
1438789Sahrens 	/*
1439789Sahrens 	 * Recursively initialize all labels.
1440789Sahrens 	 */
14413377Seschrock 	if ((error = vdev_label_init(vd, txg, isreplacing ?
14423377Seschrock 	    VDEV_LABEL_REPLACE : VDEV_LABEL_CREATE)) != 0) {
1443789Sahrens 		vdev_close(vd);
1444789Sahrens 		return (error);
1445789Sahrens 	}
1446789Sahrens 
1447789Sahrens 	return (0);
1448789Sahrens }
1449789Sahrens 
14501585Sbonwick void
14519816SGeorge.Wilson@Sun.COM vdev_metaslab_set_size(vdev_t *vd)
1452789Sahrens {
1453789Sahrens 	/*
1454789Sahrens 	 * Aim for roughly 200 metaslabs per vdev.
1455789Sahrens 	 */
1456789Sahrens 	vd->vdev_ms_shift = highbit(vd->vdev_asize / 200);
1457789Sahrens 	vd->vdev_ms_shift = MAX(vd->vdev_ms_shift, SPA_MAXBLOCKSHIFT);
1458789Sahrens }
1459789Sahrens 
1460789Sahrens void
14611732Sbonwick vdev_dirty(vdev_t *vd, int flags, void *arg, uint64_t txg)
1462789Sahrens {
14631732Sbonwick 	ASSERT(vd == vd->vdev_top);
146410594SGeorge.Wilson@Sun.COM 	ASSERT(!vd->vdev_ishole);
14651732Sbonwick 	ASSERT(ISP2(flags));
1466789Sahrens 
14671732Sbonwick 	if (flags & VDD_METASLAB)
14681732Sbonwick 		(void) txg_list_add(&vd->vdev_ms_list, arg, txg);
14691732Sbonwick 
14701732Sbonwick 	if (flags & VDD_DTL)
14711732Sbonwick 		(void) txg_list_add(&vd->vdev_dtl_list, arg, txg);
14721732Sbonwick 
14731732Sbonwick 	(void) txg_list_add(&vd->vdev_spa->spa_vdev_txg_list, vd, txg);
1474789Sahrens }
1475789Sahrens 
14768241SJeff.Bonwick@Sun.COM /*
14778241SJeff.Bonwick@Sun.COM  * DTLs.
14788241SJeff.Bonwick@Sun.COM  *
14798241SJeff.Bonwick@Sun.COM  * A vdev's DTL (dirty time log) is the set of transaction groups for which
14808241SJeff.Bonwick@Sun.COM  * the vdev has less than perfect replication.  There are three kinds of DTL:
14818241SJeff.Bonwick@Sun.COM  *
14828241SJeff.Bonwick@Sun.COM  * DTL_MISSING: txgs for which the vdev has no valid copies of the data
14838241SJeff.Bonwick@Sun.COM  *
14848241SJeff.Bonwick@Sun.COM  * DTL_PARTIAL: txgs for which data is available, but not fully replicated
14858241SJeff.Bonwick@Sun.COM  *
14868241SJeff.Bonwick@Sun.COM  * DTL_SCRUB: the txgs that could not be repaired by the last scrub; upon
14878241SJeff.Bonwick@Sun.COM  *	scrub completion, DTL_SCRUB replaces DTL_MISSING in the range of
14888241SJeff.Bonwick@Sun.COM  *	txgs that was scrubbed.
14898241SJeff.Bonwick@Sun.COM  *
14908241SJeff.Bonwick@Sun.COM  * DTL_OUTAGE: txgs which cannot currently be read, whether due to
14918241SJeff.Bonwick@Sun.COM  *	persistent errors or just some device being offline.
14928241SJeff.Bonwick@Sun.COM  *	Unlike the other three, the DTL_OUTAGE map is not generally
14938241SJeff.Bonwick@Sun.COM  *	maintained; it's only computed when needed, typically to
14948241SJeff.Bonwick@Sun.COM  *	determine whether a device can be detached.
14958241SJeff.Bonwick@Sun.COM  *
14968241SJeff.Bonwick@Sun.COM  * For leaf vdevs, DTL_MISSING and DTL_PARTIAL are identical: the device
14978241SJeff.Bonwick@Sun.COM  * either has the data or it doesn't.
14988241SJeff.Bonwick@Sun.COM  *
14998241SJeff.Bonwick@Sun.COM  * For interior vdevs such as mirror and RAID-Z the picture is more complex.
15008241SJeff.Bonwick@Sun.COM  * A vdev's DTL_PARTIAL is the union of its children's DTL_PARTIALs, because
15018241SJeff.Bonwick@Sun.COM  * if any child is less than fully replicated, then so is its parent.
15028241SJeff.Bonwick@Sun.COM  * A vdev's DTL_MISSING is a modified union of its children's DTL_MISSINGs,
15038241SJeff.Bonwick@Sun.COM  * comprising only those txgs which appear in 'maxfaults' or more children;
15048241SJeff.Bonwick@Sun.COM  * those are the txgs we don't have enough replication to read.  For example,
15058241SJeff.Bonwick@Sun.COM  * double-parity RAID-Z can tolerate up to two missing devices (maxfaults == 2);
15068241SJeff.Bonwick@Sun.COM  * thus, its DTL_MISSING consists of the set of txgs that appear in more than
15078241SJeff.Bonwick@Sun.COM  * two child DTL_MISSING maps.
15088241SJeff.Bonwick@Sun.COM  *
15098241SJeff.Bonwick@Sun.COM  * It should be clear from the above that to compute the DTLs and outage maps
15108241SJeff.Bonwick@Sun.COM  * for all vdevs, it suffices to know just the leaf vdevs' DTL_MISSING maps.
15118241SJeff.Bonwick@Sun.COM  * Therefore, that is all we keep on disk.  When loading the pool, or after
15128241SJeff.Bonwick@Sun.COM  * a configuration change, we generate all other DTLs from first principles.
15138241SJeff.Bonwick@Sun.COM  */
1514789Sahrens void
15158241SJeff.Bonwick@Sun.COM vdev_dtl_dirty(vdev_t *vd, vdev_dtl_type_t t, uint64_t txg, uint64_t size)
1516789Sahrens {
15178241SJeff.Bonwick@Sun.COM 	space_map_t *sm = &vd->vdev_dtl[t];
15188241SJeff.Bonwick@Sun.COM 
15198241SJeff.Bonwick@Sun.COM 	ASSERT(t < DTL_TYPES);
15208241SJeff.Bonwick@Sun.COM 	ASSERT(vd != vd->vdev_spa->spa_root_vdev);
15218241SJeff.Bonwick@Sun.COM 
1522789Sahrens 	mutex_enter(sm->sm_lock);
1523789Sahrens 	if (!space_map_contains(sm, txg, size))
1524789Sahrens 		space_map_add(sm, txg, size);
1525789Sahrens 	mutex_exit(sm->sm_lock);
1526789Sahrens }
1527789Sahrens 
15288241SJeff.Bonwick@Sun.COM boolean_t
15298241SJeff.Bonwick@Sun.COM vdev_dtl_contains(vdev_t *vd, vdev_dtl_type_t t, uint64_t txg, uint64_t size)
1530789Sahrens {
15318241SJeff.Bonwick@Sun.COM 	space_map_t *sm = &vd->vdev_dtl[t];
15328241SJeff.Bonwick@Sun.COM 	boolean_t dirty = B_FALSE;
15338241SJeff.Bonwick@Sun.COM 
15348241SJeff.Bonwick@Sun.COM 	ASSERT(t < DTL_TYPES);
15358241SJeff.Bonwick@Sun.COM 	ASSERT(vd != vd->vdev_spa->spa_root_vdev);
1536789Sahrens 
1537789Sahrens 	mutex_enter(sm->sm_lock);
15388241SJeff.Bonwick@Sun.COM 	if (sm->sm_space != 0)
15398241SJeff.Bonwick@Sun.COM 		dirty = space_map_contains(sm, txg, size);
1540789Sahrens 	mutex_exit(sm->sm_lock);
1541789Sahrens 
1542789Sahrens 	return (dirty);
1543789Sahrens }
1544789Sahrens 
15458241SJeff.Bonwick@Sun.COM boolean_t
15468241SJeff.Bonwick@Sun.COM vdev_dtl_empty(vdev_t *vd, vdev_dtl_type_t t)
15478241SJeff.Bonwick@Sun.COM {
15488241SJeff.Bonwick@Sun.COM 	space_map_t *sm = &vd->vdev_dtl[t];
15498241SJeff.Bonwick@Sun.COM 	boolean_t empty;
15508241SJeff.Bonwick@Sun.COM 
15518241SJeff.Bonwick@Sun.COM 	mutex_enter(sm->sm_lock);
15528241SJeff.Bonwick@Sun.COM 	empty = (sm->sm_space == 0);
15538241SJeff.Bonwick@Sun.COM 	mutex_exit(sm->sm_lock);
15548241SJeff.Bonwick@Sun.COM 
15558241SJeff.Bonwick@Sun.COM 	return (empty);
15568241SJeff.Bonwick@Sun.COM }
15578241SJeff.Bonwick@Sun.COM 
1558789Sahrens /*
1559789Sahrens  * Reassess DTLs after a config change or scrub completion.
1560789Sahrens  */
1561789Sahrens void
1562789Sahrens vdev_dtl_reassess(vdev_t *vd, uint64_t txg, uint64_t scrub_txg, int scrub_done)
1563789Sahrens {
15641544Seschrock 	spa_t *spa = vd->vdev_spa;
15658241SJeff.Bonwick@Sun.COM 	avl_tree_t reftree;
15668241SJeff.Bonwick@Sun.COM 	int minref;
15678241SJeff.Bonwick@Sun.COM 
15688241SJeff.Bonwick@Sun.COM 	ASSERT(spa_config_held(spa, SCL_ALL, RW_READER) != 0);
15698241SJeff.Bonwick@Sun.COM 
15708241SJeff.Bonwick@Sun.COM 	for (int c = 0; c < vd->vdev_children; c++)
15718241SJeff.Bonwick@Sun.COM 		vdev_dtl_reassess(vd->vdev_child[c], txg,
15728241SJeff.Bonwick@Sun.COM 		    scrub_txg, scrub_done);
15738241SJeff.Bonwick@Sun.COM 
1574*10922SJeff.Bonwick@Sun.COM 	if (vd == spa->spa_root_vdev || vd->vdev_ishole || vd->vdev_aux)
15758241SJeff.Bonwick@Sun.COM 		return;
15768241SJeff.Bonwick@Sun.COM 
15778241SJeff.Bonwick@Sun.COM 	if (vd->vdev_ops->vdev_op_leaf) {
1578789Sahrens 		mutex_enter(&vd->vdev_dtl_lock);
15797046Sahrens 		if (scrub_txg != 0 &&
15807046Sahrens 		    (spa->spa_scrub_started || spa->spa_scrub_errors == 0)) {
15817046Sahrens 			/* XXX should check scrub_done? */
15827046Sahrens 			/*
15837046Sahrens 			 * We completed a scrub up to scrub_txg.  If we
15847046Sahrens 			 * did it without rebooting, then the scrub dtl
15857046Sahrens 			 * will be valid, so excise the old region and
15867046Sahrens 			 * fold in the scrub dtl.  Otherwise, leave the
15877046Sahrens 			 * dtl as-is if there was an error.
15888241SJeff.Bonwick@Sun.COM 			 *
15898241SJeff.Bonwick@Sun.COM 			 * There's little trick here: to excise the beginning
15908241SJeff.Bonwick@Sun.COM 			 * of the DTL_MISSING map, we put it into a reference
15918241SJeff.Bonwick@Sun.COM 			 * tree and then add a segment with refcnt -1 that
15928241SJeff.Bonwick@Sun.COM 			 * covers the range [0, scrub_txg).  This means
15938241SJeff.Bonwick@Sun.COM 			 * that each txg in that range has refcnt -1 or 0.
15948241SJeff.Bonwick@Sun.COM 			 * We then add DTL_SCRUB with a refcnt of 2, so that
15958241SJeff.Bonwick@Sun.COM 			 * entries in the range [0, scrub_txg) will have a
15968241SJeff.Bonwick@Sun.COM 			 * positive refcnt -- either 1 or 2.  We then convert
15978241SJeff.Bonwick@Sun.COM 			 * the reference tree into the new DTL_MISSING map.
15987046Sahrens 			 */
15998241SJeff.Bonwick@Sun.COM 			space_map_ref_create(&reftree);
16008241SJeff.Bonwick@Sun.COM 			space_map_ref_add_map(&reftree,
16018241SJeff.Bonwick@Sun.COM 			    &vd->vdev_dtl[DTL_MISSING], 1);
16028241SJeff.Bonwick@Sun.COM 			space_map_ref_add_seg(&reftree, 0, scrub_txg, -1);
16038241SJeff.Bonwick@Sun.COM 			space_map_ref_add_map(&reftree,
16048241SJeff.Bonwick@Sun.COM 			    &vd->vdev_dtl[DTL_SCRUB], 2);
16058241SJeff.Bonwick@Sun.COM 			space_map_ref_generate_map(&reftree,
16068241SJeff.Bonwick@Sun.COM 			    &vd->vdev_dtl[DTL_MISSING], 1);
16078241SJeff.Bonwick@Sun.COM 			space_map_ref_destroy(&reftree);
1608789Sahrens 		}
16098241SJeff.Bonwick@Sun.COM 		space_map_vacate(&vd->vdev_dtl[DTL_PARTIAL], NULL, NULL);
16108241SJeff.Bonwick@Sun.COM 		space_map_walk(&vd->vdev_dtl[DTL_MISSING],
16118241SJeff.Bonwick@Sun.COM 		    space_map_add, &vd->vdev_dtl[DTL_PARTIAL]);
1612789Sahrens 		if (scrub_done)
16138241SJeff.Bonwick@Sun.COM 			space_map_vacate(&vd->vdev_dtl[DTL_SCRUB], NULL, NULL);
16148241SJeff.Bonwick@Sun.COM 		space_map_vacate(&vd->vdev_dtl[DTL_OUTAGE], NULL, NULL);
16158241SJeff.Bonwick@Sun.COM 		if (!vdev_readable(vd))
16168241SJeff.Bonwick@Sun.COM 			space_map_add(&vd->vdev_dtl[DTL_OUTAGE], 0, -1ULL);
16178241SJeff.Bonwick@Sun.COM 		else
16188241SJeff.Bonwick@Sun.COM 			space_map_walk(&vd->vdev_dtl[DTL_MISSING],
16198241SJeff.Bonwick@Sun.COM 			    space_map_add, &vd->vdev_dtl[DTL_OUTAGE]);
1620789Sahrens 		mutex_exit(&vd->vdev_dtl_lock);
16217046Sahrens 
16221732Sbonwick 		if (txg != 0)
16231732Sbonwick 			vdev_dirty(vd->vdev_top, VDD_DTL, vd, txg);
1624789Sahrens 		return;
1625789Sahrens 	}
1626789Sahrens 
1627789Sahrens 	mutex_enter(&vd->vdev_dtl_lock);
16288241SJeff.Bonwick@Sun.COM 	for (int t = 0; t < DTL_TYPES; t++) {
162910890SEric.Taylor@Sun.COM 		/* account for child's outage in parent's missing map */
163010890SEric.Taylor@Sun.COM 		int s = (t == DTL_MISSING) ? DTL_OUTAGE: t;
16318241SJeff.Bonwick@Sun.COM 		if (t == DTL_SCRUB)
16328241SJeff.Bonwick@Sun.COM 			continue;			/* leaf vdevs only */
16338241SJeff.Bonwick@Sun.COM 		if (t == DTL_PARTIAL)
16348241SJeff.Bonwick@Sun.COM 			minref = 1;			/* i.e. non-zero */
16358241SJeff.Bonwick@Sun.COM 		else if (vd->vdev_nparity != 0)
16368241SJeff.Bonwick@Sun.COM 			minref = vd->vdev_nparity + 1;	/* RAID-Z */
16378241SJeff.Bonwick@Sun.COM 		else
16388241SJeff.Bonwick@Sun.COM 			minref = vd->vdev_children;	/* any kind of mirror */
16398241SJeff.Bonwick@Sun.COM 		space_map_ref_create(&reftree);
16408241SJeff.Bonwick@Sun.COM 		for (int c = 0; c < vd->vdev_children; c++) {
16418241SJeff.Bonwick@Sun.COM 			vdev_t *cvd = vd->vdev_child[c];
16428241SJeff.Bonwick@Sun.COM 			mutex_enter(&cvd->vdev_dtl_lock);
164310890SEric.Taylor@Sun.COM 			space_map_ref_add_map(&reftree, &cvd->vdev_dtl[s], 1);
16448241SJeff.Bonwick@Sun.COM 			mutex_exit(&cvd->vdev_dtl_lock);
16458241SJeff.Bonwick@Sun.COM 		}
16468241SJeff.Bonwick@Sun.COM 		space_map_ref_generate_map(&reftree, &vd->vdev_dtl[t], minref);
16478241SJeff.Bonwick@Sun.COM 		space_map_ref_destroy(&reftree);
16488241SJeff.Bonwick@Sun.COM 	}
1649789Sahrens 	mutex_exit(&vd->vdev_dtl_lock);
1650789Sahrens }
1651789Sahrens 
1652789Sahrens static int
1653789Sahrens vdev_dtl_load(vdev_t *vd)
1654789Sahrens {
1655789Sahrens 	spa_t *spa = vd->vdev_spa;
16568241SJeff.Bonwick@Sun.COM 	space_map_obj_t *smo = &vd->vdev_dtl_smo;
16571732Sbonwick 	objset_t *mos = spa->spa_meta_objset;
1658789Sahrens 	dmu_buf_t *db;
1659789Sahrens 	int error;
1660789Sahrens 
1661789Sahrens 	ASSERT(vd->vdev_children == 0);
1662789Sahrens 
1663789Sahrens 	if (smo->smo_object == 0)
1664789Sahrens 		return (0);
1665789Sahrens 
166610594SGeorge.Wilson@Sun.COM 	ASSERT(!vd->vdev_ishole);
166710594SGeorge.Wilson@Sun.COM 
16681732Sbonwick 	if ((error = dmu_bonus_hold(mos, smo->smo_object, FTAG, &db)) != 0)
16691544Seschrock 		return (error);
16701732Sbonwick 
16714944Smaybee 	ASSERT3U(db->db_size, >=, sizeof (*smo));
16724944Smaybee 	bcopy(db->db_data, smo, sizeof (*smo));
16731544Seschrock 	dmu_buf_rele(db, FTAG);
1674789Sahrens 
1675789Sahrens 	mutex_enter(&vd->vdev_dtl_lock);
16768241SJeff.Bonwick@Sun.COM 	error = space_map_load(&vd->vdev_dtl[DTL_MISSING],
16778241SJeff.Bonwick@Sun.COM 	    NULL, SM_ALLOC, smo, mos);
1678789Sahrens 	mutex_exit(&vd->vdev_dtl_lock);
1679789Sahrens 
1680789Sahrens 	return (error);
1681789Sahrens }
1682789Sahrens 
1683789Sahrens void
1684789Sahrens vdev_dtl_sync(vdev_t *vd, uint64_t txg)
1685789Sahrens {
1686789Sahrens 	spa_t *spa = vd->vdev_spa;
16878241SJeff.Bonwick@Sun.COM 	space_map_obj_t *smo = &vd->vdev_dtl_smo;
16888241SJeff.Bonwick@Sun.COM 	space_map_t *sm = &vd->vdev_dtl[DTL_MISSING];
16891732Sbonwick 	objset_t *mos = spa->spa_meta_objset;
1690789Sahrens 	space_map_t smsync;
1691789Sahrens 	kmutex_t smlock;
1692789Sahrens 	dmu_buf_t *db;
1693789Sahrens 	dmu_tx_t *tx;
1694789Sahrens 
169510594SGeorge.Wilson@Sun.COM 	ASSERT(!vd->vdev_ishole);
169610594SGeorge.Wilson@Sun.COM 
1697789Sahrens 	tx = dmu_tx_create_assigned(spa->spa_dsl_pool, txg);
1698789Sahrens 
1699789Sahrens 	if (vd->vdev_detached) {
1700789Sahrens 		if (smo->smo_object != 0) {
17011732Sbonwick 			int err = dmu_object_free(mos, smo->smo_object, tx);
1702789Sahrens 			ASSERT3U(err, ==, 0);
1703789Sahrens 			smo->smo_object = 0;
1704789Sahrens 		}
1705789Sahrens 		dmu_tx_commit(tx);
1706789Sahrens 		return;
1707789Sahrens 	}
1708789Sahrens 
1709789Sahrens 	if (smo->smo_object == 0) {
1710789Sahrens 		ASSERT(smo->smo_objsize == 0);
1711789Sahrens 		ASSERT(smo->smo_alloc == 0);
17121732Sbonwick 		smo->smo_object = dmu_object_alloc(mos,
1713789Sahrens 		    DMU_OT_SPACE_MAP, 1 << SPACE_MAP_BLOCKSHIFT,
1714789Sahrens 		    DMU_OT_SPACE_MAP_HEADER, sizeof (*smo), tx);
1715789Sahrens 		ASSERT(smo->smo_object != 0);
1716789Sahrens 		vdev_config_dirty(vd->vdev_top);
1717789Sahrens 	}
1718789Sahrens 
1719789Sahrens 	mutex_init(&smlock, NULL, MUTEX_DEFAULT, NULL);
1720789Sahrens 
1721789Sahrens 	space_map_create(&smsync, sm->sm_start, sm->sm_size, sm->sm_shift,
1722789Sahrens 	    &smlock);
1723789Sahrens 
1724789Sahrens 	mutex_enter(&smlock);
1725789Sahrens 
1726789Sahrens 	mutex_enter(&vd->vdev_dtl_lock);
17271732Sbonwick 	space_map_walk(sm, space_map_add, &smsync);
1728789Sahrens 	mutex_exit(&vd->vdev_dtl_lock);
1729789Sahrens 
17301732Sbonwick 	space_map_truncate(smo, mos, tx);
17311732Sbonwick 	space_map_sync(&smsync, SM_ALLOC, smo, mos, tx);
1732789Sahrens 
1733789Sahrens 	space_map_destroy(&smsync);
1734789Sahrens 
1735789Sahrens 	mutex_exit(&smlock);
1736789Sahrens 	mutex_destroy(&smlock);
1737789Sahrens 
17381732Sbonwick 	VERIFY(0 == dmu_bonus_hold(mos, smo->smo_object, FTAG, &db));
1739789Sahrens 	dmu_buf_will_dirty(db, tx);
17404944Smaybee 	ASSERT3U(db->db_size, >=, sizeof (*smo));
17414944Smaybee 	bcopy(smo, db->db_data, sizeof (*smo));
17421544Seschrock 	dmu_buf_rele(db, FTAG);
1743789Sahrens 
1744789Sahrens 	dmu_tx_commit(tx);
1745789Sahrens }
1746789Sahrens 
17477046Sahrens /*
17488241SJeff.Bonwick@Sun.COM  * Determine whether the specified vdev can be offlined/detached/removed
17498241SJeff.Bonwick@Sun.COM  * without losing data.
17508241SJeff.Bonwick@Sun.COM  */
17518241SJeff.Bonwick@Sun.COM boolean_t
17528241SJeff.Bonwick@Sun.COM vdev_dtl_required(vdev_t *vd)
17538241SJeff.Bonwick@Sun.COM {
17548241SJeff.Bonwick@Sun.COM 	spa_t *spa = vd->vdev_spa;
17558241SJeff.Bonwick@Sun.COM 	vdev_t *tvd = vd->vdev_top;
17568241SJeff.Bonwick@Sun.COM 	uint8_t cant_read = vd->vdev_cant_read;
17578241SJeff.Bonwick@Sun.COM 	boolean_t required;
17588241SJeff.Bonwick@Sun.COM 
17598241SJeff.Bonwick@Sun.COM 	ASSERT(spa_config_held(spa, SCL_STATE_ALL, RW_WRITER) == SCL_STATE_ALL);
17608241SJeff.Bonwick@Sun.COM 
17618241SJeff.Bonwick@Sun.COM 	if (vd == spa->spa_root_vdev || vd == tvd)
17628241SJeff.Bonwick@Sun.COM 		return (B_TRUE);
17638241SJeff.Bonwick@Sun.COM 
17648241SJeff.Bonwick@Sun.COM 	/*
17658241SJeff.Bonwick@Sun.COM 	 * Temporarily mark the device as unreadable, and then determine
17668241SJeff.Bonwick@Sun.COM 	 * whether this results in any DTL outages in the top-level vdev.
17678241SJeff.Bonwick@Sun.COM 	 * If not, we can safely offline/detach/remove the device.
17688241SJeff.Bonwick@Sun.COM 	 */
17698241SJeff.Bonwick@Sun.COM 	vd->vdev_cant_read = B_TRUE;
17708241SJeff.Bonwick@Sun.COM 	vdev_dtl_reassess(tvd, 0, 0, B_FALSE);
17718241SJeff.Bonwick@Sun.COM 	required = !vdev_dtl_empty(tvd, DTL_OUTAGE);
17728241SJeff.Bonwick@Sun.COM 	vd->vdev_cant_read = cant_read;
17738241SJeff.Bonwick@Sun.COM 	vdev_dtl_reassess(tvd, 0, 0, B_FALSE);
17748241SJeff.Bonwick@Sun.COM 
17758241SJeff.Bonwick@Sun.COM 	return (required);
17768241SJeff.Bonwick@Sun.COM }
17778241SJeff.Bonwick@Sun.COM 
17788241SJeff.Bonwick@Sun.COM /*
17797046Sahrens  * Determine if resilver is needed, and if so the txg range.
17807046Sahrens  */
17817046Sahrens boolean_t
17827046Sahrens vdev_resilver_needed(vdev_t *vd, uint64_t *minp, uint64_t *maxp)
17837046Sahrens {
17847046Sahrens 	boolean_t needed = B_FALSE;
17857046Sahrens 	uint64_t thismin = UINT64_MAX;
17867046Sahrens 	uint64_t thismax = 0;
17877046Sahrens 
17887046Sahrens 	if (vd->vdev_children == 0) {
17897046Sahrens 		mutex_enter(&vd->vdev_dtl_lock);
17908241SJeff.Bonwick@Sun.COM 		if (vd->vdev_dtl[DTL_MISSING].sm_space != 0 &&
17918241SJeff.Bonwick@Sun.COM 		    vdev_writeable(vd)) {
17927046Sahrens 			space_seg_t *ss;
17937046Sahrens 
17948241SJeff.Bonwick@Sun.COM 			ss = avl_first(&vd->vdev_dtl[DTL_MISSING].sm_root);
17957046Sahrens 			thismin = ss->ss_start - 1;
17968241SJeff.Bonwick@Sun.COM 			ss = avl_last(&vd->vdev_dtl[DTL_MISSING].sm_root);
17977046Sahrens 			thismax = ss->ss_end;
17987046Sahrens 			needed = B_TRUE;
17997046Sahrens 		}
18007046Sahrens 		mutex_exit(&vd->vdev_dtl_lock);
18017046Sahrens 	} else {
18028241SJeff.Bonwick@Sun.COM 		for (int c = 0; c < vd->vdev_children; c++) {
18037046Sahrens 			vdev_t *cvd = vd->vdev_child[c];
18047046Sahrens 			uint64_t cmin, cmax;
18057046Sahrens 
18067046Sahrens 			if (vdev_resilver_needed(cvd, &cmin, &cmax)) {
18077046Sahrens 				thismin = MIN(thismin, cmin);
18087046Sahrens 				thismax = MAX(thismax, cmax);
18097046Sahrens 				needed = B_TRUE;
18107046Sahrens 			}
18117046Sahrens 		}
18127046Sahrens 	}
18137046Sahrens 
18147046Sahrens 	if (needed && minp) {
18157046Sahrens 		*minp = thismin;
18167046Sahrens 		*maxp = thismax;
18177046Sahrens 	}
18187046Sahrens 	return (needed);
18197046Sahrens }
18207046Sahrens 
18211986Seschrock void
18221544Seschrock vdev_load(vdev_t *vd)
1823789Sahrens {
1824789Sahrens 	/*
1825789Sahrens 	 * Recursively load all children.
1826789Sahrens 	 */
18278241SJeff.Bonwick@Sun.COM 	for (int c = 0; c < vd->vdev_children; c++)
18281986Seschrock 		vdev_load(vd->vdev_child[c]);
1829789Sahrens 
1830789Sahrens 	/*
18311585Sbonwick 	 * If this is a top-level vdev, initialize its metaslabs.
1832789Sahrens 	 */
183310594SGeorge.Wilson@Sun.COM 	if (vd == vd->vdev_top && !vd->vdev_ishole &&
18341986Seschrock 	    (vd->vdev_ashift == 0 || vd->vdev_asize == 0 ||
18351986Seschrock 	    vdev_metaslab_init(vd, 0) != 0))
18361986Seschrock 		vdev_set_state(vd, B_FALSE, VDEV_STATE_CANT_OPEN,
18371986Seschrock 		    VDEV_AUX_CORRUPT_DATA);
1838789Sahrens 
1839789Sahrens 	/*
1840789Sahrens 	 * If this is a leaf vdev, load its DTL.
1841789Sahrens 	 */
18421986Seschrock 	if (vd->vdev_ops->vdev_op_leaf && vdev_dtl_load(vd) != 0)
18431986Seschrock 		vdev_set_state(vd, B_FALSE, VDEV_STATE_CANT_OPEN,
18441986Seschrock 		    VDEV_AUX_CORRUPT_DATA);
1845789Sahrens }
1846789Sahrens 
18472082Seschrock /*
18485450Sbrendan  * The special vdev case is used for hot spares and l2cache devices.  Its
18495450Sbrendan  * sole purpose it to set the vdev state for the associated vdev.  To do this,
18505450Sbrendan  * we make sure that we can open the underlying device, then try to read the
18515450Sbrendan  * label, and make sure that the label is sane and that it hasn't been
18525450Sbrendan  * repurposed to another pool.
18532082Seschrock  */
18542082Seschrock int
18555450Sbrendan vdev_validate_aux(vdev_t *vd)
18562082Seschrock {
18572082Seschrock 	nvlist_t *label;
18582082Seschrock 	uint64_t guid, version;
18592082Seschrock 	uint64_t state;
18602082Seschrock 
18617754SJeff.Bonwick@Sun.COM 	if (!vdev_readable(vd))
18626643Seschrock 		return (0);
18636643Seschrock 
18642082Seschrock 	if ((label = vdev_label_read_config(vd)) == NULL) {
18652082Seschrock 		vdev_set_state(vd, B_TRUE, VDEV_STATE_CANT_OPEN,
18662082Seschrock 		    VDEV_AUX_CORRUPT_DATA);
18672082Seschrock 		return (-1);
18682082Seschrock 	}
18692082Seschrock 
18702082Seschrock 	if (nvlist_lookup_uint64(label, ZPOOL_CONFIG_VERSION, &version) != 0 ||
18714577Sahrens 	    version > SPA_VERSION ||
18722082Seschrock 	    nvlist_lookup_uint64(label, ZPOOL_CONFIG_GUID, &guid) != 0 ||
18732082Seschrock 	    guid != vd->vdev_guid ||
18742082Seschrock 	    nvlist_lookup_uint64(label, ZPOOL_CONFIG_POOL_STATE, &state) != 0) {
18752082Seschrock 		vdev_set_state(vd, B_TRUE, VDEV_STATE_CANT_OPEN,
18762082Seschrock 		    VDEV_AUX_CORRUPT_DATA);
18772082Seschrock 		nvlist_free(label);
18782082Seschrock 		return (-1);
18792082Seschrock 	}
18802082Seschrock 
18812082Seschrock 	/*
18822082Seschrock 	 * We don't actually check the pool state here.  If it's in fact in
18832082Seschrock 	 * use by another pool, we update this fact on the fly when requested.
18842082Seschrock 	 */
18852082Seschrock 	nvlist_free(label);
18862082Seschrock 	return (0);
18872082Seschrock }
18882082Seschrock 
1889789Sahrens void
189010594SGeorge.Wilson@Sun.COM vdev_remove(vdev_t *vd, uint64_t txg)
189110594SGeorge.Wilson@Sun.COM {
189210594SGeorge.Wilson@Sun.COM 	spa_t *spa = vd->vdev_spa;
189310594SGeorge.Wilson@Sun.COM 	objset_t *mos = spa->spa_meta_objset;
189410594SGeorge.Wilson@Sun.COM 	dmu_tx_t *tx;
189510594SGeorge.Wilson@Sun.COM 
189610594SGeorge.Wilson@Sun.COM 	tx = dmu_tx_create_assigned(spa_get_dsl(spa), txg);
189710594SGeorge.Wilson@Sun.COM 
189810594SGeorge.Wilson@Sun.COM 	if (vd->vdev_dtl_smo.smo_object) {
189910594SGeorge.Wilson@Sun.COM 		ASSERT3U(vd->vdev_dtl_smo.smo_alloc, ==, 0);
190010594SGeorge.Wilson@Sun.COM 		(void) dmu_object_free(mos, vd->vdev_dtl_smo.smo_object, tx);
190110594SGeorge.Wilson@Sun.COM 		vd->vdev_dtl_smo.smo_object = 0;
190210594SGeorge.Wilson@Sun.COM 	}
190310594SGeorge.Wilson@Sun.COM 
190410594SGeorge.Wilson@Sun.COM 	if (vd->vdev_ms != NULL) {
190510594SGeorge.Wilson@Sun.COM 		for (int m = 0; m < vd->vdev_ms_count; m++) {
190610594SGeorge.Wilson@Sun.COM 			metaslab_t *msp = vd->vdev_ms[m];
190710594SGeorge.Wilson@Sun.COM 
190810594SGeorge.Wilson@Sun.COM 			if (msp == NULL || msp->ms_smo.smo_object == 0)
190910594SGeorge.Wilson@Sun.COM 				continue;
191010594SGeorge.Wilson@Sun.COM 
191110594SGeorge.Wilson@Sun.COM 			ASSERT3U(msp->ms_smo.smo_alloc, ==, 0);
191210594SGeorge.Wilson@Sun.COM 			(void) dmu_object_free(mos, msp->ms_smo.smo_object, tx);
191310594SGeorge.Wilson@Sun.COM 			msp->ms_smo.smo_object = 0;
191410594SGeorge.Wilson@Sun.COM 		}
191510594SGeorge.Wilson@Sun.COM 	}
191610594SGeorge.Wilson@Sun.COM 
191710594SGeorge.Wilson@Sun.COM 	if (vd->vdev_ms_array) {
191810594SGeorge.Wilson@Sun.COM 		(void) dmu_object_free(mos, vd->vdev_ms_array, tx);
191910594SGeorge.Wilson@Sun.COM 		vd->vdev_ms_array = 0;
192010594SGeorge.Wilson@Sun.COM 		vd->vdev_ms_shift = 0;
192110594SGeorge.Wilson@Sun.COM 	}
192210594SGeorge.Wilson@Sun.COM 	dmu_tx_commit(tx);
192310594SGeorge.Wilson@Sun.COM }
192410594SGeorge.Wilson@Sun.COM 
192510594SGeorge.Wilson@Sun.COM void
1926789Sahrens vdev_sync_done(vdev_t *vd, uint64_t txg)
1927789Sahrens {
1928789Sahrens 	metaslab_t *msp;
1929789Sahrens 
193010594SGeorge.Wilson@Sun.COM 	ASSERT(!vd->vdev_ishole);
193110594SGeorge.Wilson@Sun.COM 
1932789Sahrens 	while (msp = txg_list_remove(&vd->vdev_ms_list, TXG_CLEAN(txg)))
1933789Sahrens 		metaslab_sync_done(msp, txg);
1934789Sahrens }
1935789Sahrens 
1936789Sahrens void
1937789Sahrens vdev_sync(vdev_t *vd, uint64_t txg)
1938789Sahrens {
1939789Sahrens 	spa_t *spa = vd->vdev_spa;
1940789Sahrens 	vdev_t *lvd;
1941789Sahrens 	metaslab_t *msp;
19421732Sbonwick 	dmu_tx_t *tx;
1943789Sahrens 
194410594SGeorge.Wilson@Sun.COM 	ASSERT(!vd->vdev_ishole);
194510594SGeorge.Wilson@Sun.COM 
19461732Sbonwick 	if (vd->vdev_ms_array == 0 && vd->vdev_ms_shift != 0) {
19471732Sbonwick 		ASSERT(vd == vd->vdev_top);
19481732Sbonwick 		tx = dmu_tx_create_assigned(spa->spa_dsl_pool, txg);
19491732Sbonwick 		vd->vdev_ms_array = dmu_object_alloc(spa->spa_meta_objset,
19501732Sbonwick 		    DMU_OT_OBJECT_ARRAY, 0, DMU_OT_NONE, 0, tx);
19511732Sbonwick 		ASSERT(vd->vdev_ms_array != 0);
19521732Sbonwick 		vdev_config_dirty(vd);
19531732Sbonwick 		dmu_tx_commit(tx);
19541732Sbonwick 	}
1955789Sahrens 
195610594SGeorge.Wilson@Sun.COM 	if (vd->vdev_removing)
195710594SGeorge.Wilson@Sun.COM 		vdev_remove(vd, txg);
195810594SGeorge.Wilson@Sun.COM 
19591732Sbonwick 	while ((msp = txg_list_remove(&vd->vdev_ms_list, txg)) != NULL) {
1960789Sahrens 		metaslab_sync(msp, txg);
19611732Sbonwick 		(void) txg_list_add(&vd->vdev_ms_list, msp, TXG_CLEAN(txg));
19621732Sbonwick 	}
1963789Sahrens 
1964789Sahrens 	while ((lvd = txg_list_remove(&vd->vdev_dtl_list, txg)) != NULL)
1965789Sahrens 		vdev_dtl_sync(lvd, txg);
1966789Sahrens 
1967789Sahrens 	(void) txg_list_add(&spa->spa_vdev_txg_list, vd, TXG_CLEAN(txg));
1968789Sahrens }
1969789Sahrens 
1970789Sahrens uint64_t
1971789Sahrens vdev_psize_to_asize(vdev_t *vd, uint64_t psize)
1972789Sahrens {
1973789Sahrens 	return (vd->vdev_ops->vdev_op_asize(vd, psize));
1974789Sahrens }
1975789Sahrens 
19764451Seschrock /*
19774451Seschrock  * Mark the given vdev faulted.  A faulted vdev behaves as if the device could
19784451Seschrock  * not be opened, and no I/O is attempted.
19794451Seschrock  */
1980789Sahrens int
198110817SEric.Schrock@Sun.COM vdev_fault(spa_t *spa, uint64_t guid, vdev_aux_t aux)
19824451Seschrock {
19836643Seschrock 	vdev_t *vd;
19844451Seschrock 
198510685SGeorge.Wilson@Sun.COM 	spa_vdev_state_enter(spa, SCL_NONE);
19864451Seschrock 
19876643Seschrock 	if ((vd = spa_lookup_by_guid(spa, guid, B_TRUE)) == NULL)
19887754SJeff.Bonwick@Sun.COM 		return (spa_vdev_state_exit(spa, NULL, ENODEV));
19897754SJeff.Bonwick@Sun.COM 
19904451Seschrock 	if (!vd->vdev_ops->vdev_op_leaf)
19917754SJeff.Bonwick@Sun.COM 		return (spa_vdev_state_exit(spa, NULL, ENOTSUP));
19924451Seschrock 
19934451Seschrock 	/*
199410817SEric.Schrock@Sun.COM 	 * We don't directly use the aux state here, but if we do a
199510817SEric.Schrock@Sun.COM 	 * vdev_reopen(), we need this value to be present to remember why we
199610817SEric.Schrock@Sun.COM 	 * were faulted.
199710817SEric.Schrock@Sun.COM 	 */
199810817SEric.Schrock@Sun.COM 	vd->vdev_label_aux = aux;
199910817SEric.Schrock@Sun.COM 
200010817SEric.Schrock@Sun.COM 	/*
20014451Seschrock 	 * Faulted state takes precedence over degraded.
20024451Seschrock 	 */
20034451Seschrock 	vd->vdev_faulted = 1ULL;
20044451Seschrock 	vd->vdev_degraded = 0ULL;
200510817SEric.Schrock@Sun.COM 	vdev_set_state(vd, B_FALSE, VDEV_STATE_FAULTED, aux);
20064451Seschrock 
20074451Seschrock 	/*
20088123SDavid.Marker@sun.com 	 * If marking the vdev as faulted cause the top-level vdev to become
20094451Seschrock 	 * unavailable, then back off and simply mark the vdev as degraded
20104451Seschrock 	 * instead.
20114451Seschrock 	 */
201210685SGeorge.Wilson@Sun.COM 	if (vdev_is_dead(vd->vdev_top) && !vd->vdev_islog &&
201310685SGeorge.Wilson@Sun.COM 	    vd->vdev_aux == NULL) {
20144451Seschrock 		vd->vdev_degraded = 1ULL;
20154451Seschrock 		vd->vdev_faulted = 0ULL;
20164451Seschrock 
20174451Seschrock 		/*
20184451Seschrock 		 * If we reopen the device and it's not dead, only then do we
20194451Seschrock 		 * mark it degraded.
20204451Seschrock 		 */
20214451Seschrock 		vdev_reopen(vd);
20224451Seschrock 
202310817SEric.Schrock@Sun.COM 		if (vdev_readable(vd))
202410817SEric.Schrock@Sun.COM 			vdev_set_state(vd, B_FALSE, VDEV_STATE_DEGRADED, aux);
20254451Seschrock 	}
20264451Seschrock 
20277754SJeff.Bonwick@Sun.COM 	return (spa_vdev_state_exit(spa, vd, 0));
20284451Seschrock }
20294451Seschrock 
20304451Seschrock /*
20314451Seschrock  * Mark the given vdev degraded.  A degraded vdev is purely an indication to the
20324451Seschrock  * user that something is wrong.  The vdev continues to operate as normal as far
20334451Seschrock  * as I/O is concerned.
20344451Seschrock  */
20354451Seschrock int
203610817SEric.Schrock@Sun.COM vdev_degrade(spa_t *spa, uint64_t guid, vdev_aux_t aux)
20374451Seschrock {
20386643Seschrock 	vdev_t *vd;
20394451Seschrock 
204010685SGeorge.Wilson@Sun.COM 	spa_vdev_state_enter(spa, SCL_NONE);
20414451Seschrock 
20426643Seschrock 	if ((vd = spa_lookup_by_guid(spa, guid, B_TRUE)) == NULL)
20437754SJeff.Bonwick@Sun.COM 		return (spa_vdev_state_exit(spa, NULL, ENODEV));
20447754SJeff.Bonwick@Sun.COM 
20454451Seschrock 	if (!vd->vdev_ops->vdev_op_leaf)
20467754SJeff.Bonwick@Sun.COM 		return (spa_vdev_state_exit(spa, NULL, ENOTSUP));
20474451Seschrock 
20484451Seschrock 	/*
20494451Seschrock 	 * If the vdev is already faulted, then don't do anything.
20504451Seschrock 	 */
20517754SJeff.Bonwick@Sun.COM 	if (vd->vdev_faulted || vd->vdev_degraded)
20527754SJeff.Bonwick@Sun.COM 		return (spa_vdev_state_exit(spa, NULL, 0));
20534451Seschrock 
20544451Seschrock 	vd->vdev_degraded = 1ULL;
20554451Seschrock 	if (!vdev_is_dead(vd))
20564451Seschrock 		vdev_set_state(vd, B_FALSE, VDEV_STATE_DEGRADED,
205710817SEric.Schrock@Sun.COM 		    aux);
20584451Seschrock 
20597754SJeff.Bonwick@Sun.COM 	return (spa_vdev_state_exit(spa, vd, 0));
20604451Seschrock }
20614451Seschrock 
20624451Seschrock /*
20634451Seschrock  * Online the given vdev.  If 'unspare' is set, it implies two things.  First,
20644451Seschrock  * any attached spare device should be detached when the device finishes
20654451Seschrock  * resilvering.  Second, the online should be treated like a 'test' online case,
20664451Seschrock  * so no FMA events are generated if the device fails to open.
20674451Seschrock  */
20684451Seschrock int
20697754SJeff.Bonwick@Sun.COM vdev_online(spa_t *spa, uint64_t guid, uint64_t flags, vdev_state_t *newstate)
2070789Sahrens {
20719816SGeorge.Wilson@Sun.COM 	vdev_t *vd, *tvd, *pvd, *rvd = spa->spa_root_vdev;
2072789Sahrens 
207310685SGeorge.Wilson@Sun.COM 	spa_vdev_state_enter(spa, SCL_NONE);
20741485Slling 
20756643Seschrock 	if ((vd = spa_lookup_by_guid(spa, guid, B_TRUE)) == NULL)
20767754SJeff.Bonwick@Sun.COM 		return (spa_vdev_state_exit(spa, NULL, ENODEV));
2077789Sahrens 
20781585Sbonwick 	if (!vd->vdev_ops->vdev_op_leaf)
20797754SJeff.Bonwick@Sun.COM 		return (spa_vdev_state_exit(spa, NULL, ENOTSUP));
20801585Sbonwick 
20819816SGeorge.Wilson@Sun.COM 	tvd = vd->vdev_top;
2082789Sahrens 	vd->vdev_offline = B_FALSE;
20831485Slling 	vd->vdev_tmpoffline = B_FALSE;
20847754SJeff.Bonwick@Sun.COM 	vd->vdev_checkremove = !!(flags & ZFS_ONLINE_CHECKREMOVE);
20857754SJeff.Bonwick@Sun.COM 	vd->vdev_forcefault = !!(flags & ZFS_ONLINE_FORCEFAULT);
20869816SGeorge.Wilson@Sun.COM 
20879816SGeorge.Wilson@Sun.COM 	/* XXX - L2ARC 1.0 does not support expansion */
20889816SGeorge.Wilson@Sun.COM 	if (!vd->vdev_aux) {
20899816SGeorge.Wilson@Sun.COM 		for (pvd = vd; pvd != rvd; pvd = pvd->vdev_parent)
20909816SGeorge.Wilson@Sun.COM 			pvd->vdev_expanding = !!(flags & ZFS_ONLINE_EXPAND);
20919816SGeorge.Wilson@Sun.COM 	}
20929816SGeorge.Wilson@Sun.COM 
20939816SGeorge.Wilson@Sun.COM 	vdev_reopen(tvd);
20944451Seschrock 	vd->vdev_checkremove = vd->vdev_forcefault = B_FALSE;
20954451Seschrock 
20969816SGeorge.Wilson@Sun.COM 	if (!vd->vdev_aux) {
20979816SGeorge.Wilson@Sun.COM 		for (pvd = vd; pvd != rvd; pvd = pvd->vdev_parent)
20989816SGeorge.Wilson@Sun.COM 			pvd->vdev_expanding = B_FALSE;
20999816SGeorge.Wilson@Sun.COM 	}
21009816SGeorge.Wilson@Sun.COM 
21014451Seschrock 	if (newstate)
21024451Seschrock 		*newstate = vd->vdev_state;
21034451Seschrock 	if ((flags & ZFS_ONLINE_UNSPARE) &&
21044451Seschrock 	    !vdev_is_dead(vd) && vd->vdev_parent &&
21054451Seschrock 	    vd->vdev_parent->vdev_ops == &vdev_spare_ops &&
21064451Seschrock 	    vd->vdev_parent->vdev_child[0] == vd)
21074451Seschrock 		vd->vdev_unspare = B_TRUE;
2108789Sahrens 
21099816SGeorge.Wilson@Sun.COM 	if ((flags & ZFS_ONLINE_EXPAND) || spa->spa_autoexpand) {
21109816SGeorge.Wilson@Sun.COM 
21119816SGeorge.Wilson@Sun.COM 		/* XXX - L2ARC 1.0 does not support expansion */
21129816SGeorge.Wilson@Sun.COM 		if (vd->vdev_aux)
21139816SGeorge.Wilson@Sun.COM 			return (spa_vdev_state_exit(spa, vd, ENOTSUP));
21149816SGeorge.Wilson@Sun.COM 		spa_async_request(spa, SPA_ASYNC_CONFIG_UPDATE);
21159816SGeorge.Wilson@Sun.COM 	}
21168241SJeff.Bonwick@Sun.COM 	return (spa_vdev_state_exit(spa, vd, 0));
2117789Sahrens }
2118789Sahrens 
2119789Sahrens int
212010685SGeorge.Wilson@Sun.COM vdev_offline_log(spa_t *spa)
212110685SGeorge.Wilson@Sun.COM {
212210685SGeorge.Wilson@Sun.COM 	int error = 0;
212310685SGeorge.Wilson@Sun.COM 
212410685SGeorge.Wilson@Sun.COM 	if ((error = dmu_objset_find(spa_name(spa), zil_vdev_offline,
212510685SGeorge.Wilson@Sun.COM 	    NULL, DS_FIND_CHILDREN)) == 0) {
212610685SGeorge.Wilson@Sun.COM 
212710685SGeorge.Wilson@Sun.COM 		/*
212810685SGeorge.Wilson@Sun.COM 		 * We successfully offlined the log device, sync out the
212910685SGeorge.Wilson@Sun.COM 		 * current txg so that the "stubby" block can be removed
213010685SGeorge.Wilson@Sun.COM 		 * by zil_sync().
213110685SGeorge.Wilson@Sun.COM 		 */
213210685SGeorge.Wilson@Sun.COM 		txg_wait_synced(spa->spa_dsl_pool, 0);
213310685SGeorge.Wilson@Sun.COM 	}
213410685SGeorge.Wilson@Sun.COM 	return (error);
213510685SGeorge.Wilson@Sun.COM }
213610685SGeorge.Wilson@Sun.COM 
213710685SGeorge.Wilson@Sun.COM int
21384451Seschrock vdev_offline(spa_t *spa, uint64_t guid, uint64_t flags)
2139789Sahrens {
21409701SGeorge.Wilson@Sun.COM 	vdev_t *vd, *tvd;
214110685SGeorge.Wilson@Sun.COM 	int error = 0;
214210685SGeorge.Wilson@Sun.COM 	uint64_t generation;
214310685SGeorge.Wilson@Sun.COM 	metaslab_group_t *mg;
214410685SGeorge.Wilson@Sun.COM 
214510685SGeorge.Wilson@Sun.COM top:
214610685SGeorge.Wilson@Sun.COM 	spa_vdev_state_enter(spa, SCL_ALLOC);
2147789Sahrens 
21486643Seschrock 	if ((vd = spa_lookup_by_guid(spa, guid, B_TRUE)) == NULL)
21497754SJeff.Bonwick@Sun.COM 		return (spa_vdev_state_exit(spa, NULL, ENODEV));
2150789Sahrens 
21511585Sbonwick 	if (!vd->vdev_ops->vdev_op_leaf)
21527754SJeff.Bonwick@Sun.COM 		return (spa_vdev_state_exit(spa, NULL, ENOTSUP));
21531585Sbonwick 
21549701SGeorge.Wilson@Sun.COM 	tvd = vd->vdev_top;
215510685SGeorge.Wilson@Sun.COM 	mg = tvd->vdev_mg;
215610685SGeorge.Wilson@Sun.COM 	generation = spa->spa_config_generation + 1;
21579701SGeorge.Wilson@Sun.COM 
2158789Sahrens 	/*
21591732Sbonwick 	 * If the device isn't already offline, try to offline it.
2160789Sahrens 	 */
21611732Sbonwick 	if (!vd->vdev_offline) {
21621732Sbonwick 		/*
21638241SJeff.Bonwick@Sun.COM 		 * If this device has the only valid copy of some data,
21649701SGeorge.Wilson@Sun.COM 		 * don't allow it to be offlined. Log devices are always
21659701SGeorge.Wilson@Sun.COM 		 * expendable.
21661732Sbonwick 		 */
21679701SGeorge.Wilson@Sun.COM 		if (!tvd->vdev_islog && vd->vdev_aux == NULL &&
21689701SGeorge.Wilson@Sun.COM 		    vdev_dtl_required(vd))
21697754SJeff.Bonwick@Sun.COM 			return (spa_vdev_state_exit(spa, NULL, EBUSY));
2170789Sahrens 
21711732Sbonwick 		/*
2172*10922SJeff.Bonwick@Sun.COM 		 * If the top-level is a slog and it has had allocations
2173*10922SJeff.Bonwick@Sun.COM 		 * then proceed.  We check that the vdev's metaslab group
2174*10922SJeff.Bonwick@Sun.COM 		 * is not NULL since it's possible that we may have just
2175*10922SJeff.Bonwick@Sun.COM 		 * added this vdev but not yet initialized its metaslabs.
217610685SGeorge.Wilson@Sun.COM 		 */
217710685SGeorge.Wilson@Sun.COM 		if (tvd->vdev_islog && mg != NULL) {
217810685SGeorge.Wilson@Sun.COM 			/*
217910685SGeorge.Wilson@Sun.COM 			 * Prevent any future allocations.
218010685SGeorge.Wilson@Sun.COM 			 */
218110685SGeorge.Wilson@Sun.COM 			metaslab_class_remove(spa->spa_log_class, mg);
218210685SGeorge.Wilson@Sun.COM 			(void) spa_vdev_state_exit(spa, vd, 0);
218310685SGeorge.Wilson@Sun.COM 
218410685SGeorge.Wilson@Sun.COM 			error = vdev_offline_log(spa);
218510685SGeorge.Wilson@Sun.COM 
218610685SGeorge.Wilson@Sun.COM 			spa_vdev_state_enter(spa, SCL_ALLOC);
218710685SGeorge.Wilson@Sun.COM 
218810685SGeorge.Wilson@Sun.COM 			/*
218910685SGeorge.Wilson@Sun.COM 			 * Check to see if the config has changed.
219010685SGeorge.Wilson@Sun.COM 			 */
219110685SGeorge.Wilson@Sun.COM 			if (error || generation != spa->spa_config_generation) {
219210685SGeorge.Wilson@Sun.COM 				metaslab_class_add(spa->spa_log_class, mg);
219310685SGeorge.Wilson@Sun.COM 				if (error)
219410685SGeorge.Wilson@Sun.COM 					return (spa_vdev_state_exit(spa,
219510685SGeorge.Wilson@Sun.COM 					    vd, error));
219610685SGeorge.Wilson@Sun.COM 				(void) spa_vdev_state_exit(spa, vd, 0);
219710685SGeorge.Wilson@Sun.COM 				goto top;
219810685SGeorge.Wilson@Sun.COM 			}
219910685SGeorge.Wilson@Sun.COM 			ASSERT3U(tvd->vdev_stat.vs_alloc, ==, 0);
220010685SGeorge.Wilson@Sun.COM 		}
220110685SGeorge.Wilson@Sun.COM 
220210685SGeorge.Wilson@Sun.COM 		/*
22031732Sbonwick 		 * Offline this device and reopen its top-level vdev.
22049701SGeorge.Wilson@Sun.COM 		 * If the top-level vdev is a log device then just offline
22059701SGeorge.Wilson@Sun.COM 		 * it. Otherwise, if this action results in the top-level
22069701SGeorge.Wilson@Sun.COM 		 * vdev becoming unusable, undo it and fail the request.
22071732Sbonwick 		 */
22081732Sbonwick 		vd->vdev_offline = B_TRUE;
22099701SGeorge.Wilson@Sun.COM 		vdev_reopen(tvd);
22109701SGeorge.Wilson@Sun.COM 
22119701SGeorge.Wilson@Sun.COM 		if (!tvd->vdev_islog && vd->vdev_aux == NULL &&
22129701SGeorge.Wilson@Sun.COM 		    vdev_is_dead(tvd)) {
22131732Sbonwick 			vd->vdev_offline = B_FALSE;
22149701SGeorge.Wilson@Sun.COM 			vdev_reopen(tvd);
22157754SJeff.Bonwick@Sun.COM 			return (spa_vdev_state_exit(spa, NULL, EBUSY));
22161732Sbonwick 		}
221710685SGeorge.Wilson@Sun.COM 
221810685SGeorge.Wilson@Sun.COM 		/*
221910685SGeorge.Wilson@Sun.COM 		 * Add the device back into the metaslab rotor so that
222010685SGeorge.Wilson@Sun.COM 		 * once we online the device it's open for business.
222110685SGeorge.Wilson@Sun.COM 		 */
222210685SGeorge.Wilson@Sun.COM 		if (tvd->vdev_islog && mg != NULL)
222310685SGeorge.Wilson@Sun.COM 			metaslab_class_add(spa->spa_log_class, mg);
2224789Sahrens 	}
2225789Sahrens 
22267754SJeff.Bonwick@Sun.COM 	vd->vdev_tmpoffline = !!(flags & ZFS_OFFLINE_TEMPORARY);
22271732Sbonwick 
222810685SGeorge.Wilson@Sun.COM 	return (spa_vdev_state_exit(spa, vd, 0));
2229789Sahrens }
2230789Sahrens 
22311544Seschrock /*
22321544Seschrock  * Clear the error counts associated with this vdev.  Unlike vdev_online() and
22331544Seschrock  * vdev_offline(), we assume the spa config is locked.  We also clear all
22341544Seschrock  * children.  If 'vd' is NULL, then the user wants to clear all vdevs.
22351544Seschrock  */
22361544Seschrock void
22377754SJeff.Bonwick@Sun.COM vdev_clear(spa_t *spa, vdev_t *vd)
2238789Sahrens {
22397754SJeff.Bonwick@Sun.COM 	vdev_t *rvd = spa->spa_root_vdev;
22407754SJeff.Bonwick@Sun.COM 
22417754SJeff.Bonwick@Sun.COM 	ASSERT(spa_config_held(spa, SCL_STATE_ALL, RW_WRITER) == SCL_STATE_ALL);
2242789Sahrens 
22431544Seschrock 	if (vd == NULL)
22447754SJeff.Bonwick@Sun.COM 		vd = rvd;
2245789Sahrens 
22461544Seschrock 	vd->vdev_stat.vs_read_errors = 0;
22471544Seschrock 	vd->vdev_stat.vs_write_errors = 0;
22481544Seschrock 	vd->vdev_stat.vs_checksum_errors = 0;
2249789Sahrens 
22507754SJeff.Bonwick@Sun.COM 	for (int c = 0; c < vd->vdev_children; c++)
22517754SJeff.Bonwick@Sun.COM 		vdev_clear(spa, vd->vdev_child[c]);
22524451Seschrock 
22534451Seschrock 	/*
22546959Sek110237 	 * If we're in the FAULTED state or have experienced failed I/O, then
22556959Sek110237 	 * clear the persistent state and attempt to reopen the device.  We
22566959Sek110237 	 * also mark the vdev config dirty, so that the new faulted state is
22576959Sek110237 	 * written out to disk.
22584451Seschrock 	 */
22597754SJeff.Bonwick@Sun.COM 	if (vd->vdev_faulted || vd->vdev_degraded ||
22607754SJeff.Bonwick@Sun.COM 	    !vdev_readable(vd) || !vdev_writeable(vd)) {
22616959Sek110237 
226210830SEric.Schrock@Sun.COM 		/*
226310830SEric.Schrock@Sun.COM 		 * When reopening in reponse to a clear event, it may be due to
226410830SEric.Schrock@Sun.COM 		 * a fmadm repair request.  In this case, if the device is
226510830SEric.Schrock@Sun.COM 		 * still broken, we want to still post the ereport again.
226610830SEric.Schrock@Sun.COM 		 */
226710830SEric.Schrock@Sun.COM 		vd->vdev_forcefault = B_TRUE;
226810830SEric.Schrock@Sun.COM 
22694451Seschrock 		vd->vdev_faulted = vd->vdev_degraded = 0;
22707754SJeff.Bonwick@Sun.COM 		vd->vdev_cant_read = B_FALSE;
22717754SJeff.Bonwick@Sun.COM 		vd->vdev_cant_write = B_FALSE;
22727754SJeff.Bonwick@Sun.COM 
22734451Seschrock 		vdev_reopen(vd);
22744451Seschrock 
227510830SEric.Schrock@Sun.COM 		vd->vdev_forcefault = B_FALSE;
227610830SEric.Schrock@Sun.COM 
22777754SJeff.Bonwick@Sun.COM 		if (vd != rvd)
22787754SJeff.Bonwick@Sun.COM 			vdev_state_dirty(vd->vdev_top);
22797754SJeff.Bonwick@Sun.COM 
22807754SJeff.Bonwick@Sun.COM 		if (vd->vdev_aux == NULL && !vdev_is_dead(vd))
22814808Sek110237 			spa_async_request(spa, SPA_ASYNC_RESILVER);
22824451Seschrock 
22834451Seschrock 		spa_event_notify(spa, vd, ESC_ZFS_VDEV_CLEAR);
22844451Seschrock 	}
228510830SEric.Schrock@Sun.COM 
228610830SEric.Schrock@Sun.COM 	/*
228710830SEric.Schrock@Sun.COM 	 * When clearing a FMA-diagnosed fault, we always want to
228810830SEric.Schrock@Sun.COM 	 * unspare the device, as we assume that the original spare was
228910830SEric.Schrock@Sun.COM 	 * done in response to the FMA fault.
229010830SEric.Schrock@Sun.COM 	 */
229110830SEric.Schrock@Sun.COM 	if (!vdev_is_dead(vd) && vd->vdev_parent != NULL &&
229210830SEric.Schrock@Sun.COM 	    vd->vdev_parent->vdev_ops == &vdev_spare_ops &&
229310830SEric.Schrock@Sun.COM 	    vd->vdev_parent->vdev_child[0] == vd)
229410830SEric.Schrock@Sun.COM 		vd->vdev_unspare = B_TRUE;
2295789Sahrens }
2296789Sahrens 
22977754SJeff.Bonwick@Sun.COM boolean_t
22987754SJeff.Bonwick@Sun.COM vdev_is_dead(vdev_t *vd)
22995329Sgw25295 {
230010594SGeorge.Wilson@Sun.COM 	/*
230110594SGeorge.Wilson@Sun.COM 	 * Holes and missing devices are always considered "dead".
230210594SGeorge.Wilson@Sun.COM 	 * This simplifies the code since we don't have to check for
230310594SGeorge.Wilson@Sun.COM 	 * these types of devices in the various code paths.
230410594SGeorge.Wilson@Sun.COM 	 * Instead we rely on the fact that we skip over dead devices
230510594SGeorge.Wilson@Sun.COM 	 * before issuing I/O to them.
230610594SGeorge.Wilson@Sun.COM 	 */
230710594SGeorge.Wilson@Sun.COM 	return (vd->vdev_state < VDEV_STATE_DEGRADED || vd->vdev_ishole ||
230810594SGeorge.Wilson@Sun.COM 	    vd->vdev_ops == &vdev_missing_ops);
23095329Sgw25295 }
23105329Sgw25295 
23117754SJeff.Bonwick@Sun.COM boolean_t
23127754SJeff.Bonwick@Sun.COM vdev_readable(vdev_t *vd)
2313789Sahrens {
23147754SJeff.Bonwick@Sun.COM 	return (!vdev_is_dead(vd) && !vd->vdev_cant_read);
2315789Sahrens }
2316789Sahrens 
23177754SJeff.Bonwick@Sun.COM boolean_t
23187754SJeff.Bonwick@Sun.COM vdev_writeable(vdev_t *vd)
2319789Sahrens {
23207754SJeff.Bonwick@Sun.COM 	return (!vdev_is_dead(vd) && !vd->vdev_cant_write);
23217754SJeff.Bonwick@Sun.COM }
2322789Sahrens 
23237754SJeff.Bonwick@Sun.COM boolean_t
23247980SGeorge.Wilson@Sun.COM vdev_allocatable(vdev_t *vd)
23257980SGeorge.Wilson@Sun.COM {
23268241SJeff.Bonwick@Sun.COM 	uint64_t state = vd->vdev_state;
23278241SJeff.Bonwick@Sun.COM 
23287980SGeorge.Wilson@Sun.COM 	/*
23298241SJeff.Bonwick@Sun.COM 	 * We currently allow allocations from vdevs which may be in the
23307980SGeorge.Wilson@Sun.COM 	 * process of reopening (i.e. VDEV_STATE_CLOSED). If the device
23317980SGeorge.Wilson@Sun.COM 	 * fails to reopen then we'll catch it later when we're holding
23328241SJeff.Bonwick@Sun.COM 	 * the proper locks.  Note that we have to get the vdev state
23338241SJeff.Bonwick@Sun.COM 	 * in a local variable because although it changes atomically,
23348241SJeff.Bonwick@Sun.COM 	 * we're asking two separate questions about it.
23357980SGeorge.Wilson@Sun.COM 	 */
23368241SJeff.Bonwick@Sun.COM 	return (!(state < VDEV_STATE_DEGRADED && state != VDEV_STATE_CLOSED) &&
233710594SGeorge.Wilson@Sun.COM 	    !vd->vdev_cant_write && !vd->vdev_ishole && !vd->vdev_removing);
23387980SGeorge.Wilson@Sun.COM }
23397980SGeorge.Wilson@Sun.COM 
23407980SGeorge.Wilson@Sun.COM boolean_t
23417754SJeff.Bonwick@Sun.COM vdev_accessible(vdev_t *vd, zio_t *zio)
23427754SJeff.Bonwick@Sun.COM {
23437754SJeff.Bonwick@Sun.COM 	ASSERT(zio->io_vd == vd);
2344789Sahrens 
23457754SJeff.Bonwick@Sun.COM 	if (vdev_is_dead(vd) || vd->vdev_remove_wanted)
23467754SJeff.Bonwick@Sun.COM 		return (B_FALSE);
2347789Sahrens 
23487754SJeff.Bonwick@Sun.COM 	if (zio->io_type == ZIO_TYPE_READ)
23497754SJeff.Bonwick@Sun.COM 		return (!vd->vdev_cant_read);
2350789Sahrens 
23517754SJeff.Bonwick@Sun.COM 	if (zio->io_type == ZIO_TYPE_WRITE)
23527754SJeff.Bonwick@Sun.COM 		return (!vd->vdev_cant_write);
23537754SJeff.Bonwick@Sun.COM 
23547754SJeff.Bonwick@Sun.COM 	return (B_TRUE);
2355789Sahrens }
2356789Sahrens 
2357789Sahrens /*
2358789Sahrens  * Get statistics for the given vdev.
2359789Sahrens  */
2360789Sahrens void
2361789Sahrens vdev_get_stats(vdev_t *vd, vdev_stat_t *vs)
2362789Sahrens {
2363789Sahrens 	vdev_t *rvd = vd->vdev_spa->spa_root_vdev;
2364789Sahrens 
2365789Sahrens 	mutex_enter(&vd->vdev_stat_lock);
2366789Sahrens 	bcopy(&vd->vdev_stat, vs, sizeof (*vs));
23677046Sahrens 	vs->vs_scrub_errors = vd->vdev_spa->spa_scrub_errors;
2368789Sahrens 	vs->vs_timestamp = gethrtime() - vs->vs_timestamp;
2369789Sahrens 	vs->vs_state = vd->vdev_state;
23709816SGeorge.Wilson@Sun.COM 	vs->vs_rsize = vdev_get_min_asize(vd);
23719816SGeorge.Wilson@Sun.COM 	if (vd->vdev_ops->vdev_op_leaf)
23729816SGeorge.Wilson@Sun.COM 		vs->vs_rsize += VDEV_LABEL_START_SIZE + VDEV_LABEL_END_SIZE;
2373789Sahrens 	mutex_exit(&vd->vdev_stat_lock);
2374789Sahrens 
2375789Sahrens 	/*
2376789Sahrens 	 * If we're getting stats on the root vdev, aggregate the I/O counts
2377789Sahrens 	 * over all top-level vdevs (i.e. the direct children of the root).
2378789Sahrens 	 */
2379789Sahrens 	if (vd == rvd) {
23807754SJeff.Bonwick@Sun.COM 		for (int c = 0; c < rvd->vdev_children; c++) {
2381789Sahrens 			vdev_t *cvd = rvd->vdev_child[c];
2382789Sahrens 			vdev_stat_t *cvs = &cvd->vdev_stat;
2383789Sahrens 
2384789Sahrens 			mutex_enter(&vd->vdev_stat_lock);
23857754SJeff.Bonwick@Sun.COM 			for (int t = 0; t < ZIO_TYPES; t++) {
2386789Sahrens 				vs->vs_ops[t] += cvs->vs_ops[t];
2387789Sahrens 				vs->vs_bytes[t] += cvs->vs_bytes[t];
2388789Sahrens 			}
2389789Sahrens 			vs->vs_scrub_examined += cvs->vs_scrub_examined;
2390789Sahrens 			mutex_exit(&vd->vdev_stat_lock);
2391789Sahrens 		}
2392789Sahrens 	}
2393789Sahrens }
2394789Sahrens 
2395789Sahrens void
23965450Sbrendan vdev_clear_stats(vdev_t *vd)
23975450Sbrendan {
23985450Sbrendan 	mutex_enter(&vd->vdev_stat_lock);
23995450Sbrendan 	vd->vdev_stat.vs_space = 0;
24005450Sbrendan 	vd->vdev_stat.vs_dspace = 0;
24015450Sbrendan 	vd->vdev_stat.vs_alloc = 0;
24025450Sbrendan 	mutex_exit(&vd->vdev_stat_lock);
24035450Sbrendan }
24045450Sbrendan 
24055450Sbrendan void
24067754SJeff.Bonwick@Sun.COM vdev_stat_update(zio_t *zio, uint64_t psize)
2407789Sahrens {
24088241SJeff.Bonwick@Sun.COM 	spa_t *spa = zio->io_spa;
24098241SJeff.Bonwick@Sun.COM 	vdev_t *rvd = spa->spa_root_vdev;
24107754SJeff.Bonwick@Sun.COM 	vdev_t *vd = zio->io_vd ? zio->io_vd : rvd;
2411789Sahrens 	vdev_t *pvd;
2412789Sahrens 	uint64_t txg = zio->io_txg;
2413789Sahrens 	vdev_stat_t *vs = &vd->vdev_stat;
2414789Sahrens 	zio_type_t type = zio->io_type;
2415789Sahrens 	int flags = zio->io_flags;
2416789Sahrens 
24177754SJeff.Bonwick@Sun.COM 	/*
24187754SJeff.Bonwick@Sun.COM 	 * If this i/o is a gang leader, it didn't do any actual work.
24197754SJeff.Bonwick@Sun.COM 	 */
24207754SJeff.Bonwick@Sun.COM 	if (zio->io_gang_tree)
24217754SJeff.Bonwick@Sun.COM 		return;
24227754SJeff.Bonwick@Sun.COM 
2423789Sahrens 	if (zio->io_error == 0) {
24247754SJeff.Bonwick@Sun.COM 		/*
24257754SJeff.Bonwick@Sun.COM 		 * If this is a root i/o, don't count it -- we've already
24267754SJeff.Bonwick@Sun.COM 		 * counted the top-level vdevs, and vdev_get_stats() will
24277754SJeff.Bonwick@Sun.COM 		 * aggregate them when asked.  This reduces contention on
24287754SJeff.Bonwick@Sun.COM 		 * the root vdev_stat_lock and implicitly handles blocks
24297754SJeff.Bonwick@Sun.COM 		 * that compress away to holes, for which there is no i/o.
24307754SJeff.Bonwick@Sun.COM 		 * (Holes never create vdev children, so all the counters
24317754SJeff.Bonwick@Sun.COM 		 * remain zero, which is what we want.)
24327754SJeff.Bonwick@Sun.COM 		 *
24337754SJeff.Bonwick@Sun.COM 		 * Note: this only applies to successful i/o (io_error == 0)
24347754SJeff.Bonwick@Sun.COM 		 * because unlike i/o counts, errors are not additive.
24357754SJeff.Bonwick@Sun.COM 		 * When reading a ditto block, for example, failure of
24367754SJeff.Bonwick@Sun.COM 		 * one top-level vdev does not imply a root-level error.
24377754SJeff.Bonwick@Sun.COM 		 */
24387754SJeff.Bonwick@Sun.COM 		if (vd == rvd)
24397754SJeff.Bonwick@Sun.COM 			return;
24407754SJeff.Bonwick@Sun.COM 
24417754SJeff.Bonwick@Sun.COM 		ASSERT(vd == zio->io_vd);
24428241SJeff.Bonwick@Sun.COM 
24438241SJeff.Bonwick@Sun.COM 		if (flags & ZIO_FLAG_IO_BYPASS)
24448241SJeff.Bonwick@Sun.COM 			return;
24458241SJeff.Bonwick@Sun.COM 
24468241SJeff.Bonwick@Sun.COM 		mutex_enter(&vd->vdev_stat_lock);
24478241SJeff.Bonwick@Sun.COM 
24487754SJeff.Bonwick@Sun.COM 		if (flags & ZIO_FLAG_IO_REPAIR) {
24491807Sbonwick 			if (flags & ZIO_FLAG_SCRUB_THREAD)
24507754SJeff.Bonwick@Sun.COM 				vs->vs_scrub_repaired += psize;
24518241SJeff.Bonwick@Sun.COM 			if (flags & ZIO_FLAG_SELF_HEAL)
24527754SJeff.Bonwick@Sun.COM 				vs->vs_self_healed += psize;
2453789Sahrens 		}
24548241SJeff.Bonwick@Sun.COM 
24558241SJeff.Bonwick@Sun.COM 		vs->vs_ops[type]++;
24568241SJeff.Bonwick@Sun.COM 		vs->vs_bytes[type] += psize;
24578241SJeff.Bonwick@Sun.COM 
24588241SJeff.Bonwick@Sun.COM 		mutex_exit(&vd->vdev_stat_lock);
2459789Sahrens 		return;
2460789Sahrens 	}
2461789Sahrens 
2462789Sahrens 	if (flags & ZIO_FLAG_SPECULATIVE)
2463789Sahrens 		return;
2464789Sahrens 
24659725SEric.Schrock@Sun.COM 	/*
24669725SEric.Schrock@Sun.COM 	 * If this is an I/O error that is going to be retried, then ignore the
24679725SEric.Schrock@Sun.COM 	 * error.  Otherwise, the user may interpret B_FAILFAST I/O errors as
24689725SEric.Schrock@Sun.COM 	 * hard errors, when in reality they can happen for any number of
24699725SEric.Schrock@Sun.COM 	 * innocuous reasons (bus resets, MPxIO link failure, etc).
24709725SEric.Schrock@Sun.COM 	 */
24719725SEric.Schrock@Sun.COM 	if (zio->io_error == EIO &&
24729725SEric.Schrock@Sun.COM 	    !(zio->io_flags & ZIO_FLAG_IO_RETRY))
24739725SEric.Schrock@Sun.COM 		return;
24749725SEric.Schrock@Sun.COM 
247510685SGeorge.Wilson@Sun.COM 	/*
247610685SGeorge.Wilson@Sun.COM 	 * Intent logs writes won't propagate their error to the root
247710685SGeorge.Wilson@Sun.COM 	 * I/O so don't mark these types of failures as pool-level
247810685SGeorge.Wilson@Sun.COM 	 * errors.
247910685SGeorge.Wilson@Sun.COM 	 */
248010685SGeorge.Wilson@Sun.COM 	if (zio->io_vd == NULL && (zio->io_flags & ZIO_FLAG_DONT_PROPAGATE))
248110685SGeorge.Wilson@Sun.COM 		return;
248210685SGeorge.Wilson@Sun.COM 
24837754SJeff.Bonwick@Sun.COM 	mutex_enter(&vd->vdev_stat_lock);
24849230SGeorge.Wilson@Sun.COM 	if (type == ZIO_TYPE_READ && !vdev_is_dead(vd)) {
24857754SJeff.Bonwick@Sun.COM 		if (zio->io_error == ECKSUM)
24867754SJeff.Bonwick@Sun.COM 			vs->vs_checksum_errors++;
24877754SJeff.Bonwick@Sun.COM 		else
24887754SJeff.Bonwick@Sun.COM 			vs->vs_read_errors++;
2489789Sahrens 	}
24909230SGeorge.Wilson@Sun.COM 	if (type == ZIO_TYPE_WRITE && !vdev_is_dead(vd))
24917754SJeff.Bonwick@Sun.COM 		vs->vs_write_errors++;
24927754SJeff.Bonwick@Sun.COM 	mutex_exit(&vd->vdev_stat_lock);
2493789Sahrens 
24948241SJeff.Bonwick@Sun.COM 	if (type == ZIO_TYPE_WRITE && txg != 0 &&
24958241SJeff.Bonwick@Sun.COM 	    (!(flags & ZIO_FLAG_IO_REPAIR) ||
2496*10922SJeff.Bonwick@Sun.COM 	    (flags & ZIO_FLAG_SCRUB_THREAD) ||
2497*10922SJeff.Bonwick@Sun.COM 	    spa->spa_claiming)) {
24988241SJeff.Bonwick@Sun.COM 		/*
2499*10922SJeff.Bonwick@Sun.COM 		 * This is either a normal write (not a repair), or it's
2500*10922SJeff.Bonwick@Sun.COM 		 * a repair induced by the scrub thread, or it's a repair
2501*10922SJeff.Bonwick@Sun.COM 		 * made by zil_claim() during spa_load() in the first txg.
2502*10922SJeff.Bonwick@Sun.COM 		 * In the normal case, we commit the DTL change in the same
2503*10922SJeff.Bonwick@Sun.COM 		 * txg as the block was born.  In the scrub-induced repair
2504*10922SJeff.Bonwick@Sun.COM 		 * case, we know that scrubs run in first-pass syncing context,
2505*10922SJeff.Bonwick@Sun.COM 		 * so we commit the DTL change in spa_syncing_txg(spa).
2506*10922SJeff.Bonwick@Sun.COM 		 * In the zil_claim() case, we commit in spa_first_txg(spa).
25078241SJeff.Bonwick@Sun.COM 		 *
25088241SJeff.Bonwick@Sun.COM 		 * We currently do not make DTL entries for failed spontaneous
25098241SJeff.Bonwick@Sun.COM 		 * self-healing writes triggered by normal (non-scrubbing)
25108241SJeff.Bonwick@Sun.COM 		 * reads, because we have no transactional context in which to
25118241SJeff.Bonwick@Sun.COM 		 * do so -- and it's not clear that it'd be desirable anyway.
25128241SJeff.Bonwick@Sun.COM 		 */
25138241SJeff.Bonwick@Sun.COM 		if (vd->vdev_ops->vdev_op_leaf) {
25148241SJeff.Bonwick@Sun.COM 			uint64_t commit_txg = txg;
25158241SJeff.Bonwick@Sun.COM 			if (flags & ZIO_FLAG_SCRUB_THREAD) {
25168241SJeff.Bonwick@Sun.COM 				ASSERT(flags & ZIO_FLAG_IO_REPAIR);
25178241SJeff.Bonwick@Sun.COM 				ASSERT(spa_sync_pass(spa) == 1);
25188241SJeff.Bonwick@Sun.COM 				vdev_dtl_dirty(vd, DTL_SCRUB, txg, 1);
2519*10922SJeff.Bonwick@Sun.COM 				commit_txg = spa_syncing_txg(spa);
2520*10922SJeff.Bonwick@Sun.COM 			} else if (spa->spa_claiming) {
2521*10922SJeff.Bonwick@Sun.COM 				ASSERT(flags & ZIO_FLAG_IO_REPAIR);
2522*10922SJeff.Bonwick@Sun.COM 				commit_txg = spa_first_txg(spa);
25238241SJeff.Bonwick@Sun.COM 			}
2524*10922SJeff.Bonwick@Sun.COM 			ASSERT(commit_txg >= spa_syncing_txg(spa));
25258241SJeff.Bonwick@Sun.COM 			if (vdev_dtl_contains(vd, DTL_MISSING, txg, 1))
25268241SJeff.Bonwick@Sun.COM 				return;
25278241SJeff.Bonwick@Sun.COM 			for (pvd = vd; pvd != rvd; pvd = pvd->vdev_parent)
25288241SJeff.Bonwick@Sun.COM 				vdev_dtl_dirty(pvd, DTL_PARTIAL, txg, 1);
25298241SJeff.Bonwick@Sun.COM 			vdev_dirty(vd->vdev_top, VDD_DTL, vd, commit_txg);
2530789Sahrens 		}
25318241SJeff.Bonwick@Sun.COM 		if (vd != rvd)
25328241SJeff.Bonwick@Sun.COM 			vdev_dtl_dirty(vd, DTL_MISSING, txg, 1);
2533789Sahrens 	}
2534789Sahrens }
2535789Sahrens 
2536789Sahrens void
2537789Sahrens vdev_scrub_stat_update(vdev_t *vd, pool_scrub_type_t type, boolean_t complete)
2538789Sahrens {
2539789Sahrens 	vdev_stat_t *vs = &vd->vdev_stat;
2540789Sahrens 
25419816SGeorge.Wilson@Sun.COM 	for (int c = 0; c < vd->vdev_children; c++)
2542789Sahrens 		vdev_scrub_stat_update(vd->vdev_child[c], type, complete);
2543789Sahrens 
2544789Sahrens 	mutex_enter(&vd->vdev_stat_lock);
2545789Sahrens 
2546789Sahrens 	if (type == POOL_SCRUB_NONE) {
2547789Sahrens 		/*
2548789Sahrens 		 * Update completion and end time.  Leave everything else alone
2549789Sahrens 		 * so we can report what happened during the previous scrub.
2550789Sahrens 		 */
2551789Sahrens 		vs->vs_scrub_complete = complete;
2552789Sahrens 		vs->vs_scrub_end = gethrestime_sec();
2553789Sahrens 	} else {
2554789Sahrens 		vs->vs_scrub_type = type;
2555789Sahrens 		vs->vs_scrub_complete = 0;
2556789Sahrens 		vs->vs_scrub_examined = 0;
2557789Sahrens 		vs->vs_scrub_repaired = 0;
2558789Sahrens 		vs->vs_scrub_start = gethrestime_sec();
2559789Sahrens 		vs->vs_scrub_end = 0;
2560789Sahrens 	}
2561789Sahrens 
2562789Sahrens 	mutex_exit(&vd->vdev_stat_lock);
2563789Sahrens }
2564789Sahrens 
2565789Sahrens /*
2566*10922SJeff.Bonwick@Sun.COM  * Update the in-core space usage stats for this vdev, its metaslab class,
2567*10922SJeff.Bonwick@Sun.COM  * and the root vdev.
2568789Sahrens  */
2569789Sahrens void
2570*10922SJeff.Bonwick@Sun.COM vdev_space_update(vdev_t *vd, int64_t alloc_delta, int64_t defer_delta,
2571*10922SJeff.Bonwick@Sun.COM     int64_t space_delta)
2572789Sahrens {
25734527Sperrin 	int64_t dspace_delta = space_delta;
25744527Sperrin 	spa_t *spa = vd->vdev_spa;
25754527Sperrin 	vdev_t *rvd = spa->spa_root_vdev;
2576*10922SJeff.Bonwick@Sun.COM 	metaslab_group_t *mg = vd->vdev_mg;
2577*10922SJeff.Bonwick@Sun.COM 	metaslab_class_t *mc = mg ? mg->mg_class : NULL;
25784527Sperrin 
2579789Sahrens 	ASSERT(vd == vd->vdev_top);
25804527Sperrin 
25814527Sperrin 	/*
25824527Sperrin 	 * Apply the inverse of the psize-to-asize (ie. RAID-Z) space-expansion
25834527Sperrin 	 * factor.  We must calculate this here and not at the root vdev
25844527Sperrin 	 * because the root vdev's psize-to-asize is simply the max of its
25854527Sperrin 	 * childrens', thus not accurate enough for us.
25864527Sperrin 	 */
25874527Sperrin 	ASSERT((dspace_delta & (SPA_MINBLOCKSIZE-1)) == 0);
25889701SGeorge.Wilson@Sun.COM 	ASSERT(vd->vdev_deflate_ratio != 0 || vd->vdev_isl2cache);
25894527Sperrin 	dspace_delta = (dspace_delta >> SPA_MINBLOCKSHIFT) *
25904527Sperrin 	    vd->vdev_deflate_ratio;
2591789Sahrens 
25924527Sperrin 	mutex_enter(&vd->vdev_stat_lock);
2593*10922SJeff.Bonwick@Sun.COM 	vd->vdev_stat.vs_alloc += alloc_delta;
25944527Sperrin 	vd->vdev_stat.vs_space += space_delta;
25954527Sperrin 	vd->vdev_stat.vs_dspace += dspace_delta;
25964527Sperrin 	mutex_exit(&vd->vdev_stat_lock);
25972082Seschrock 
2598*10922SJeff.Bonwick@Sun.COM 	if (mc == spa_normal_class(spa)) {
2599*10922SJeff.Bonwick@Sun.COM 		mutex_enter(&rvd->vdev_stat_lock);
2600*10922SJeff.Bonwick@Sun.COM 		rvd->vdev_stat.vs_alloc += alloc_delta;
2601*10922SJeff.Bonwick@Sun.COM 		rvd->vdev_stat.vs_space += space_delta;
2602*10922SJeff.Bonwick@Sun.COM 		rvd->vdev_stat.vs_dspace += dspace_delta;
2603*10922SJeff.Bonwick@Sun.COM 		mutex_exit(&rvd->vdev_stat_lock);
2604*10922SJeff.Bonwick@Sun.COM 	}
2605*10922SJeff.Bonwick@Sun.COM 
2606*10922SJeff.Bonwick@Sun.COM 	if (mc != NULL) {
26075450Sbrendan 		ASSERT(rvd == vd->vdev_parent);
26085450Sbrendan 		ASSERT(vd->vdev_ms_count != 0);
26094527Sperrin 
2610*10922SJeff.Bonwick@Sun.COM 		metaslab_class_space_update(mc,
2611*10922SJeff.Bonwick@Sun.COM 		    alloc_delta, defer_delta, space_delta, dspace_delta);
26125450Sbrendan 	}
2613789Sahrens }
2614789Sahrens 
2615789Sahrens /*
2616789Sahrens  * Mark a top-level vdev's config as dirty, placing it on the dirty list
2617789Sahrens  * so that it will be written out next time the vdev configuration is synced.
2618789Sahrens  * If the root vdev is specified (vdev_top == NULL), dirty all top-level vdevs.
2619789Sahrens  */
2620789Sahrens void
2621789Sahrens vdev_config_dirty(vdev_t *vd)
2622789Sahrens {
2623789Sahrens 	spa_t *spa = vd->vdev_spa;
2624789Sahrens 	vdev_t *rvd = spa->spa_root_vdev;
2625789Sahrens 	int c;
2626789Sahrens 
26271601Sbonwick 	/*
26289425SEric.Schrock@Sun.COM 	 * If this is an aux vdev (as with l2cache and spare devices), then we
26299425SEric.Schrock@Sun.COM 	 * update the vdev config manually and set the sync flag.
26306643Seschrock 	 */
26316643Seschrock 	if (vd->vdev_aux != NULL) {
26326643Seschrock 		spa_aux_vdev_t *sav = vd->vdev_aux;
26336643Seschrock 		nvlist_t **aux;
26346643Seschrock 		uint_t naux;
26356643Seschrock 
26366643Seschrock 		for (c = 0; c < sav->sav_count; c++) {
26376643Seschrock 			if (sav->sav_vdevs[c] == vd)
26386643Seschrock 				break;
26396643Seschrock 		}
26406643Seschrock 
26417754SJeff.Bonwick@Sun.COM 		if (c == sav->sav_count) {
26427754SJeff.Bonwick@Sun.COM 			/*
26437754SJeff.Bonwick@Sun.COM 			 * We're being removed.  There's nothing more to do.
26447754SJeff.Bonwick@Sun.COM 			 */
26457754SJeff.Bonwick@Sun.COM 			ASSERT(sav->sav_sync == B_TRUE);
26467754SJeff.Bonwick@Sun.COM 			return;
26477754SJeff.Bonwick@Sun.COM 		}
26487754SJeff.Bonwick@Sun.COM 
26496643Seschrock 		sav->sav_sync = B_TRUE;
26506643Seschrock 
26519425SEric.Schrock@Sun.COM 		if (nvlist_lookup_nvlist_array(sav->sav_config,
26529425SEric.Schrock@Sun.COM 		    ZPOOL_CONFIG_L2CACHE, &aux, &naux) != 0) {
26539425SEric.Schrock@Sun.COM 			VERIFY(nvlist_lookup_nvlist_array(sav->sav_config,
26549425SEric.Schrock@Sun.COM 			    ZPOOL_CONFIG_SPARES, &aux, &naux) == 0);
26559425SEric.Schrock@Sun.COM 		}
26566643Seschrock 
26576643Seschrock 		ASSERT(c < naux);
26586643Seschrock 
26596643Seschrock 		/*
26606643Seschrock 		 * Setting the nvlist in the middle if the array is a little
26616643Seschrock 		 * sketchy, but it will work.
26626643Seschrock 		 */
26636643Seschrock 		nvlist_free(aux[c]);
26646643Seschrock 		aux[c] = vdev_config_generate(spa, vd, B_TRUE, B_FALSE, B_TRUE);
26656643Seschrock 
26666643Seschrock 		return;
26676643Seschrock 	}
26686643Seschrock 
26696643Seschrock 	/*
26707754SJeff.Bonwick@Sun.COM 	 * The dirty list is protected by the SCL_CONFIG lock.  The caller
26717754SJeff.Bonwick@Sun.COM 	 * must either hold SCL_CONFIG as writer, or must be the sync thread
26727754SJeff.Bonwick@Sun.COM 	 * (which holds SCL_CONFIG as reader).  There's only one sync thread,
26731601Sbonwick 	 * so this is sufficient to ensure mutual exclusion.
26741601Sbonwick 	 */
26757754SJeff.Bonwick@Sun.COM 	ASSERT(spa_config_held(spa, SCL_CONFIG, RW_WRITER) ||
26767754SJeff.Bonwick@Sun.COM 	    (dsl_pool_sync_context(spa_get_dsl(spa)) &&
26777754SJeff.Bonwick@Sun.COM 	    spa_config_held(spa, SCL_CONFIG, RW_READER)));
26781601Sbonwick 
2679789Sahrens 	if (vd == rvd) {
2680789Sahrens 		for (c = 0; c < rvd->vdev_children; c++)
2681789Sahrens 			vdev_config_dirty(rvd->vdev_child[c]);
2682789Sahrens 	} else {
2683789Sahrens 		ASSERT(vd == vd->vdev_top);
2684789Sahrens 
268510594SGeorge.Wilson@Sun.COM 		if (!list_link_active(&vd->vdev_config_dirty_node) &&
268610594SGeorge.Wilson@Sun.COM 		    !vd->vdev_ishole)
26877754SJeff.Bonwick@Sun.COM 			list_insert_head(&spa->spa_config_dirty_list, vd);
2688789Sahrens 	}
2689789Sahrens }
2690789Sahrens 
2691789Sahrens void
2692789Sahrens vdev_config_clean(vdev_t *vd)
2693789Sahrens {
26941601Sbonwick 	spa_t *spa = vd->vdev_spa;
26951601Sbonwick 
26967754SJeff.Bonwick@Sun.COM 	ASSERT(spa_config_held(spa, SCL_CONFIG, RW_WRITER) ||
26977754SJeff.Bonwick@Sun.COM 	    (dsl_pool_sync_context(spa_get_dsl(spa)) &&
26987754SJeff.Bonwick@Sun.COM 	    spa_config_held(spa, SCL_CONFIG, RW_READER)));
26997754SJeff.Bonwick@Sun.COM 
27007754SJeff.Bonwick@Sun.COM 	ASSERT(list_link_active(&vd->vdev_config_dirty_node));
27017754SJeff.Bonwick@Sun.COM 	list_remove(&spa->spa_config_dirty_list, vd);
27027754SJeff.Bonwick@Sun.COM }
27037754SJeff.Bonwick@Sun.COM 
27047754SJeff.Bonwick@Sun.COM /*
27057754SJeff.Bonwick@Sun.COM  * Mark a top-level vdev's state as dirty, so that the next pass of
27067754SJeff.Bonwick@Sun.COM  * spa_sync() can convert this into vdev_config_dirty().  We distinguish
27077754SJeff.Bonwick@Sun.COM  * the state changes from larger config changes because they require
27087754SJeff.Bonwick@Sun.COM  * much less locking, and are often needed for administrative actions.
27097754SJeff.Bonwick@Sun.COM  */
27107754SJeff.Bonwick@Sun.COM void
27117754SJeff.Bonwick@Sun.COM vdev_state_dirty(vdev_t *vd)
27127754SJeff.Bonwick@Sun.COM {
27137754SJeff.Bonwick@Sun.COM 	spa_t *spa = vd->vdev_spa;
27147754SJeff.Bonwick@Sun.COM 
27157754SJeff.Bonwick@Sun.COM 	ASSERT(vd == vd->vdev_top);
27161601Sbonwick 
27177754SJeff.Bonwick@Sun.COM 	/*
27187754SJeff.Bonwick@Sun.COM 	 * The state list is protected by the SCL_STATE lock.  The caller
27197754SJeff.Bonwick@Sun.COM 	 * must either hold SCL_STATE as writer, or must be the sync thread
27207754SJeff.Bonwick@Sun.COM 	 * (which holds SCL_STATE as reader).  There's only one sync thread,
27217754SJeff.Bonwick@Sun.COM 	 * so this is sufficient to ensure mutual exclusion.
27227754SJeff.Bonwick@Sun.COM 	 */
27237754SJeff.Bonwick@Sun.COM 	ASSERT(spa_config_held(spa, SCL_STATE, RW_WRITER) ||
27247754SJeff.Bonwick@Sun.COM 	    (dsl_pool_sync_context(spa_get_dsl(spa)) &&
27257754SJeff.Bonwick@Sun.COM 	    spa_config_held(spa, SCL_STATE, RW_READER)));
27267754SJeff.Bonwick@Sun.COM 
2727*10922SJeff.Bonwick@Sun.COM 	if (!list_link_active(&vd->vdev_state_dirty_node) && !vd->vdev_ishole)
27287754SJeff.Bonwick@Sun.COM 		list_insert_head(&spa->spa_state_dirty_list, vd);
27297754SJeff.Bonwick@Sun.COM }
27307754SJeff.Bonwick@Sun.COM 
27317754SJeff.Bonwick@Sun.COM void
27327754SJeff.Bonwick@Sun.COM vdev_state_clean(vdev_t *vd)
27337754SJeff.Bonwick@Sun.COM {
27347754SJeff.Bonwick@Sun.COM 	spa_t *spa = vd->vdev_spa;
27357754SJeff.Bonwick@Sun.COM 
27367754SJeff.Bonwick@Sun.COM 	ASSERT(spa_config_held(spa, SCL_STATE, RW_WRITER) ||
27377754SJeff.Bonwick@Sun.COM 	    (dsl_pool_sync_context(spa_get_dsl(spa)) &&
27387754SJeff.Bonwick@Sun.COM 	    spa_config_held(spa, SCL_STATE, RW_READER)));
27397754SJeff.Bonwick@Sun.COM 
27407754SJeff.Bonwick@Sun.COM 	ASSERT(list_link_active(&vd->vdev_state_dirty_node));
27417754SJeff.Bonwick@Sun.COM 	list_remove(&spa->spa_state_dirty_list, vd);
2742789Sahrens }
2743789Sahrens 
27446523Sek110237 /*
27456523Sek110237  * Propagate vdev state up from children to parent.
27466523Sek110237  */
27471775Sbillm void
27481775Sbillm vdev_propagate_state(vdev_t *vd)
27491775Sbillm {
27508241SJeff.Bonwick@Sun.COM 	spa_t *spa = vd->vdev_spa;
27518241SJeff.Bonwick@Sun.COM 	vdev_t *rvd = spa->spa_root_vdev;
27521775Sbillm 	int degraded = 0, faulted = 0;
27531775Sbillm 	int corrupted = 0;
27541775Sbillm 	vdev_t *child;
27551775Sbillm 
27564451Seschrock 	if (vd->vdev_children > 0) {
27579816SGeorge.Wilson@Sun.COM 		for (int c = 0; c < vd->vdev_children; c++) {
27584451Seschrock 			child = vd->vdev_child[c];
27596976Seschrock 
276010594SGeorge.Wilson@Sun.COM 			/*
276110594SGeorge.Wilson@Sun.COM 			 * Don't factor holes into the decision.
276210594SGeorge.Wilson@Sun.COM 			 */
276310594SGeorge.Wilson@Sun.COM 			if (child->vdev_ishole)
276410594SGeorge.Wilson@Sun.COM 				continue;
276510594SGeorge.Wilson@Sun.COM 
27667754SJeff.Bonwick@Sun.COM 			if (!vdev_readable(child) ||
27678241SJeff.Bonwick@Sun.COM 			    (!vdev_writeable(child) && spa_writeable(spa))) {
27686976Seschrock 				/*
27696976Seschrock 				 * Root special: if there is a top-level log
27706976Seschrock 				 * device, treat the root vdev as if it were
27716976Seschrock 				 * degraded.
27726976Seschrock 				 */
27736976Seschrock 				if (child->vdev_islog && vd == rvd)
27746976Seschrock 					degraded++;
27756976Seschrock 				else
27766976Seschrock 					faulted++;
27776976Seschrock 			} else if (child->vdev_state <= VDEV_STATE_DEGRADED) {
27784451Seschrock 				degraded++;
27796976Seschrock 			}
27804451Seschrock 
27814451Seschrock 			if (child->vdev_stat.vs_aux == VDEV_AUX_CORRUPT_DATA)
27824451Seschrock 				corrupted++;
27834451Seschrock 		}
27841775Sbillm 
27854451Seschrock 		vd->vdev_ops->vdev_op_state_change(vd, faulted, degraded);
27864451Seschrock 
27874451Seschrock 		/*
27887754SJeff.Bonwick@Sun.COM 		 * Root special: if there is a top-level vdev that cannot be
27894451Seschrock 		 * opened due to corrupted metadata, then propagate the root
27904451Seschrock 		 * vdev's aux state as 'corrupt' rather than 'insufficient
27914451Seschrock 		 * replicas'.
27924451Seschrock 		 */
27934451Seschrock 		if (corrupted && vd == rvd &&
27944451Seschrock 		    rvd->vdev_state == VDEV_STATE_CANT_OPEN)
27954451Seschrock 			vdev_set_state(rvd, B_FALSE, VDEV_STATE_CANT_OPEN,
27964451Seschrock 			    VDEV_AUX_CORRUPT_DATA);
27971775Sbillm 	}
27981775Sbillm 
27996976Seschrock 	if (vd->vdev_parent)
28004451Seschrock 		vdev_propagate_state(vd->vdev_parent);
28011775Sbillm }
28021775Sbillm 
2803789Sahrens /*
28041544Seschrock  * Set a vdev's state.  If this is during an open, we don't update the parent
28051544Seschrock  * state, because we're in the process of opening children depth-first.
28061544Seschrock  * Otherwise, we propagate the change to the parent.
28071544Seschrock  *
28081544Seschrock  * If this routine places a device in a faulted state, an appropriate ereport is
28091544Seschrock  * generated.
2810789Sahrens  */
2811789Sahrens void
28121544Seschrock vdev_set_state(vdev_t *vd, boolean_t isopen, vdev_state_t state, vdev_aux_t aux)
2813789Sahrens {
28141986Seschrock 	uint64_t save_state;
28156643Seschrock 	spa_t *spa = vd->vdev_spa;
28161544Seschrock 
28171544Seschrock 	if (state == vd->vdev_state) {
28181544Seschrock 		vd->vdev_stat.vs_aux = aux;
2819789Sahrens 		return;
28201544Seschrock 	}
28211544Seschrock 
28221986Seschrock 	save_state = vd->vdev_state;
2823789Sahrens 
2824789Sahrens 	vd->vdev_state = state;
2825789Sahrens 	vd->vdev_stat.vs_aux = aux;
2826789Sahrens 
28274451Seschrock 	/*
28284451Seschrock 	 * If we are setting the vdev state to anything but an open state, then
28294451Seschrock 	 * always close the underlying device.  Otherwise, we keep accessible
28304451Seschrock 	 * but invalid devices open forever.  We don't call vdev_close() itself,
28314451Seschrock 	 * because that implies some extra checks (offline, etc) that we don't
28324451Seschrock 	 * want here.  This is limited to leaf devices, because otherwise
28334451Seschrock 	 * closing the device will affect other children.
28344451Seschrock 	 */
28357780SJeff.Bonwick@Sun.COM 	if (vdev_is_dead(vd) && vd->vdev_ops->vdev_op_leaf)
28364451Seschrock 		vd->vdev_ops->vdev_op_close(vd);
28374451Seschrock 
283810817SEric.Schrock@Sun.COM 	/*
283910817SEric.Schrock@Sun.COM 	 * If we have brought this vdev back into service, we need
284010817SEric.Schrock@Sun.COM 	 * to notify fmd so that it can gracefully repair any outstanding
284110817SEric.Schrock@Sun.COM 	 * cases due to a missing device.  We do this in all cases, even those
284210817SEric.Schrock@Sun.COM 	 * that probably don't correlate to a repaired fault.  This is sure to
284310817SEric.Schrock@Sun.COM 	 * catch all cases, and we let the zfs-retire agent sort it out.  If
284410817SEric.Schrock@Sun.COM 	 * this is a transient state it's OK, as the retire agent will
284510817SEric.Schrock@Sun.COM 	 * double-check the state of the vdev before repairing it.
284610817SEric.Schrock@Sun.COM 	 */
284710817SEric.Schrock@Sun.COM 	if (state == VDEV_STATE_HEALTHY && vd->vdev_ops->vdev_op_leaf &&
284810817SEric.Schrock@Sun.COM 	    vd->vdev_prevstate != state)
284910817SEric.Schrock@Sun.COM 		zfs_post_state_change(spa, vd);
285010817SEric.Schrock@Sun.COM 
28514451Seschrock 	if (vd->vdev_removed &&
28524451Seschrock 	    state == VDEV_STATE_CANT_OPEN &&
28534451Seschrock 	    (aux == VDEV_AUX_OPEN_FAILED || vd->vdev_checkremove)) {
28544451Seschrock 		/*
28554451Seschrock 		 * If the previous state is set to VDEV_STATE_REMOVED, then this
28564451Seschrock 		 * device was previously marked removed and someone attempted to
28574451Seschrock 		 * reopen it.  If this failed due to a nonexistent device, then
28584451Seschrock 		 * keep the device in the REMOVED state.  We also let this be if
28594451Seschrock 		 * it is one of our special test online cases, which is only
28604451Seschrock 		 * attempting to online the device and shouldn't generate an FMA
28614451Seschrock 		 * fault.
28624451Seschrock 		 */
28634451Seschrock 		vd->vdev_state = VDEV_STATE_REMOVED;
28644451Seschrock 		vd->vdev_stat.vs_aux = VDEV_AUX_NONE;
28654451Seschrock 	} else if (state == VDEV_STATE_REMOVED) {
28664451Seschrock 		vd->vdev_removed = B_TRUE;
28674451Seschrock 	} else if (state == VDEV_STATE_CANT_OPEN) {
28681544Seschrock 		/*
28691544Seschrock 		 * If we fail to open a vdev during an import, we mark it as
28701544Seschrock 		 * "not available", which signifies that it was never there to
28711544Seschrock 		 * begin with.  Failure to open such a device is not considered
28721544Seschrock 		 * an error.
28731544Seschrock 		 */
28746643Seschrock 		if (spa->spa_load_state == SPA_LOAD_IMPORT &&
28751986Seschrock 		    vd->vdev_ops->vdev_op_leaf)
28761986Seschrock 			vd->vdev_not_present = 1;
28771986Seschrock 
28781986Seschrock 		/*
28791986Seschrock 		 * Post the appropriate ereport.  If the 'prevstate' field is
28801986Seschrock 		 * set to something other than VDEV_STATE_UNKNOWN, it indicates
28811986Seschrock 		 * that this is part of a vdev_reopen().  In this case, we don't
28821986Seschrock 		 * want to post the ereport if the device was already in the
28831986Seschrock 		 * CANT_OPEN state beforehand.
28844451Seschrock 		 *
28854451Seschrock 		 * If the 'checkremove' flag is set, then this is an attempt to
28864451Seschrock 		 * online the device in response to an insertion event.  If we
28874451Seschrock 		 * hit this case, then we have detected an insertion event for a
28884451Seschrock 		 * faulted or offline device that wasn't in the removed state.
28894451Seschrock 		 * In this scenario, we don't post an ereport because we are
28904451Seschrock 		 * about to replace the device, or attempt an online with
28914451Seschrock 		 * vdev_forcefault, which will generate the fault for us.
28921986Seschrock 		 */
28934451Seschrock 		if ((vd->vdev_prevstate != state || vd->vdev_forcefault) &&
28944451Seschrock 		    !vd->vdev_not_present && !vd->vdev_checkremove &&
28956643Seschrock 		    vd != spa->spa_root_vdev) {
28961544Seschrock 			const char *class;
28971544Seschrock 
28981544Seschrock 			switch (aux) {
28991544Seschrock 			case VDEV_AUX_OPEN_FAILED:
29001544Seschrock 				class = FM_EREPORT_ZFS_DEVICE_OPEN_FAILED;
29011544Seschrock 				break;
29021544Seschrock 			case VDEV_AUX_CORRUPT_DATA:
29031544Seschrock 				class = FM_EREPORT_ZFS_DEVICE_CORRUPT_DATA;
29041544Seschrock 				break;
29051544Seschrock 			case VDEV_AUX_NO_REPLICAS:
29061544Seschrock 				class = FM_EREPORT_ZFS_DEVICE_NO_REPLICAS;
29071544Seschrock 				break;
29081544Seschrock 			case VDEV_AUX_BAD_GUID_SUM:
29091544Seschrock 				class = FM_EREPORT_ZFS_DEVICE_BAD_GUID_SUM;
29101544Seschrock 				break;
29111544Seschrock 			case VDEV_AUX_TOO_SMALL:
29121544Seschrock 				class = FM_EREPORT_ZFS_DEVICE_TOO_SMALL;
29131544Seschrock 				break;
29141544Seschrock 			case VDEV_AUX_BAD_LABEL:
29151544Seschrock 				class = FM_EREPORT_ZFS_DEVICE_BAD_LABEL;
29161544Seschrock 				break;
29177754SJeff.Bonwick@Sun.COM 			case VDEV_AUX_IO_FAILURE:
29187754SJeff.Bonwick@Sun.COM 				class = FM_EREPORT_ZFS_IO_FAILURE;
29197754SJeff.Bonwick@Sun.COM 				break;
29201544Seschrock 			default:
29211544Seschrock 				class = FM_EREPORT_ZFS_DEVICE_UNKNOWN;
29221544Seschrock 			}
29231544Seschrock 
29246643Seschrock 			zfs_ereport_post(class, spa, vd, NULL, save_state, 0);
29251544Seschrock 		}
29264451Seschrock 
29274451Seschrock 		/* Erase any notion of persistent removed state */
29284451Seschrock 		vd->vdev_removed = B_FALSE;
29294451Seschrock 	} else {
29304451Seschrock 		vd->vdev_removed = B_FALSE;
29311544Seschrock 	}
29321544Seschrock 
29339583STim.Haley@Sun.COM 	if (!isopen && vd->vdev_parent)
29349583STim.Haley@Sun.COM 		vdev_propagate_state(vd->vdev_parent);
2935789Sahrens }
29367042Sgw25295 
29377042Sgw25295 /*
29387042Sgw25295  * Check the vdev configuration to ensure that it's capable of supporting
29397042Sgw25295  * a root pool. Currently, we do not support RAID-Z or partial configuration.
29407042Sgw25295  * In addition, only a single top-level vdev is allowed and none of the leaves
29417042Sgw25295  * can be wholedisks.
29427042Sgw25295  */
29437042Sgw25295 boolean_t
29447042Sgw25295 vdev_is_bootable(vdev_t *vd)
29457042Sgw25295 {
29467042Sgw25295 	if (!vd->vdev_ops->vdev_op_leaf) {
29477042Sgw25295 		char *vdev_type = vd->vdev_ops->vdev_op_type;
29487042Sgw25295 
29497042Sgw25295 		if (strcmp(vdev_type, VDEV_TYPE_ROOT) == 0 &&
29507042Sgw25295 		    vd->vdev_children > 1) {
29517042Sgw25295 			return (B_FALSE);
29527042Sgw25295 		} else if (strcmp(vdev_type, VDEV_TYPE_RAIDZ) == 0 ||
29537042Sgw25295 		    strcmp(vdev_type, VDEV_TYPE_MISSING) == 0) {
29547042Sgw25295 			return (B_FALSE);
29557042Sgw25295 		}
29567042Sgw25295 	} else if (vd->vdev_wholedisk == 1) {
29577042Sgw25295 		return (B_FALSE);
29587042Sgw25295 	}
29597042Sgw25295 
29609816SGeorge.Wilson@Sun.COM 	for (int c = 0; c < vd->vdev_children; c++) {
29617042Sgw25295 		if (!vdev_is_bootable(vd->vdev_child[c]))
29627042Sgw25295 			return (B_FALSE);
29637042Sgw25295 	}
29647042Sgw25295 	return (B_TRUE);
29657042Sgw25295 }
29669701SGeorge.Wilson@Sun.COM 
296710594SGeorge.Wilson@Sun.COM /*
296810594SGeorge.Wilson@Sun.COM  * Load the state from the original vdev tree (ovd) which
296910594SGeorge.Wilson@Sun.COM  * we've retrieved from the MOS config object. If the original
297010594SGeorge.Wilson@Sun.COM  * vdev was offline then we transfer that state to the device
297110594SGeorge.Wilson@Sun.COM  * in the current vdev tree (nvd).
297210594SGeorge.Wilson@Sun.COM  */
29739701SGeorge.Wilson@Sun.COM void
297410594SGeorge.Wilson@Sun.COM vdev_load_log_state(vdev_t *nvd, vdev_t *ovd)
29759701SGeorge.Wilson@Sun.COM {
297610594SGeorge.Wilson@Sun.COM 	spa_t *spa = nvd->vdev_spa;
297710594SGeorge.Wilson@Sun.COM 
297810594SGeorge.Wilson@Sun.COM 	ASSERT(spa_config_held(spa, SCL_STATE_ALL, RW_WRITER) == SCL_STATE_ALL);
297910594SGeorge.Wilson@Sun.COM 	ASSERT3U(nvd->vdev_guid, ==, ovd->vdev_guid);
298010594SGeorge.Wilson@Sun.COM 
298110594SGeorge.Wilson@Sun.COM 	for (int c = 0; c < nvd->vdev_children; c++)
298210594SGeorge.Wilson@Sun.COM 		vdev_load_log_state(nvd->vdev_child[c], ovd->vdev_child[c]);
298310594SGeorge.Wilson@Sun.COM 
298410594SGeorge.Wilson@Sun.COM 	if (nvd->vdev_ops->vdev_op_leaf && ovd->vdev_offline) {
29859701SGeorge.Wilson@Sun.COM 		/*
29869701SGeorge.Wilson@Sun.COM 		 * It would be nice to call vdev_offline()
29879701SGeorge.Wilson@Sun.COM 		 * directly but the pool isn't fully loaded and
29889701SGeorge.Wilson@Sun.COM 		 * the txg threads have not been started yet.
29899701SGeorge.Wilson@Sun.COM 		 */
299010594SGeorge.Wilson@Sun.COM 		nvd->vdev_offline = ovd->vdev_offline;
299110594SGeorge.Wilson@Sun.COM 		vdev_reopen(nvd->vdev_top);
29929701SGeorge.Wilson@Sun.COM 	}
29939701SGeorge.Wilson@Sun.COM }
29949816SGeorge.Wilson@Sun.COM 
29959816SGeorge.Wilson@Sun.COM /*
29969816SGeorge.Wilson@Sun.COM  * Expand a vdev if possible.
29979816SGeorge.Wilson@Sun.COM  */
29989816SGeorge.Wilson@Sun.COM void
29999816SGeorge.Wilson@Sun.COM vdev_expand(vdev_t *vd, uint64_t txg)
30009816SGeorge.Wilson@Sun.COM {
30019816SGeorge.Wilson@Sun.COM 	ASSERT(vd->vdev_top == vd);
30029816SGeorge.Wilson@Sun.COM 	ASSERT(spa_config_held(vd->vdev_spa, SCL_ALL, RW_WRITER) == SCL_ALL);
30039816SGeorge.Wilson@Sun.COM 
30049816SGeorge.Wilson@Sun.COM 	if ((vd->vdev_asize >> vd->vdev_ms_shift) > vd->vdev_ms_count) {
30059816SGeorge.Wilson@Sun.COM 		VERIFY(vdev_metaslab_init(vd, txg) == 0);
30069816SGeorge.Wilson@Sun.COM 		vdev_config_dirty(vd);
30079816SGeorge.Wilson@Sun.COM 	}
30089816SGeorge.Wilson@Sun.COM }
3009