xref: /onnv-gate/usr/src/uts/common/fs/zfs/vdev.c (revision 1807)
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  */
21789Sahrens /*
221199Seschrock  * Copyright 2006 Sun Microsystems, Inc.  All rights reserved.
23789Sahrens  * Use is subject to license terms.
24789Sahrens  */
25789Sahrens 
26789Sahrens #pragma ident	"%Z%%M%	%I%	%E% SMI"
27789Sahrens 
28789Sahrens #include <sys/zfs_context.h>
291544Seschrock #include <sys/fm/fs/zfs.h>
30789Sahrens #include <sys/spa.h>
31789Sahrens #include <sys/spa_impl.h>
32789Sahrens #include <sys/dmu.h>
33789Sahrens #include <sys/dmu_tx.h>
34789Sahrens #include <sys/vdev_impl.h>
35789Sahrens #include <sys/uberblock_impl.h>
36789Sahrens #include <sys/metaslab.h>
37789Sahrens #include <sys/metaslab_impl.h>
38789Sahrens #include <sys/space_map.h>
39789Sahrens #include <sys/zio.h>
40789Sahrens #include <sys/zap.h>
41789Sahrens #include <sys/fs/zfs.h>
42789Sahrens 
43789Sahrens /*
44789Sahrens  * Virtual device management.
45789Sahrens  */
46789Sahrens 
47789Sahrens static vdev_ops_t *vdev_ops_table[] = {
48789Sahrens 	&vdev_root_ops,
49789Sahrens 	&vdev_raidz_ops,
50789Sahrens 	&vdev_mirror_ops,
51789Sahrens 	&vdev_replacing_ops,
52789Sahrens 	&vdev_disk_ops,
53789Sahrens 	&vdev_file_ops,
54789Sahrens 	&vdev_missing_ops,
55789Sahrens 	NULL
56789Sahrens };
57789Sahrens 
58789Sahrens /*
59789Sahrens  * Given a vdev type, return the appropriate ops vector.
60789Sahrens  */
61789Sahrens static vdev_ops_t *
62789Sahrens vdev_getops(const char *type)
63789Sahrens {
64789Sahrens 	vdev_ops_t *ops, **opspp;
65789Sahrens 
66789Sahrens 	for (opspp = vdev_ops_table; (ops = *opspp) != NULL; opspp++)
67789Sahrens 		if (strcmp(ops->vdev_op_type, type) == 0)
68789Sahrens 			break;
69789Sahrens 
70789Sahrens 	return (ops);
71789Sahrens }
72789Sahrens 
73789Sahrens /*
74789Sahrens  * Default asize function: return the MAX of psize with the asize of
75789Sahrens  * all children.  This is what's used by anything other than RAID-Z.
76789Sahrens  */
77789Sahrens uint64_t
78789Sahrens vdev_default_asize(vdev_t *vd, uint64_t psize)
79789Sahrens {
801732Sbonwick 	uint64_t asize = P2ROUNDUP(psize, 1ULL << vd->vdev_top->vdev_ashift);
81789Sahrens 	uint64_t csize;
82789Sahrens 	uint64_t c;
83789Sahrens 
84789Sahrens 	for (c = 0; c < vd->vdev_children; c++) {
85789Sahrens 		csize = vdev_psize_to_asize(vd->vdev_child[c], psize);
86789Sahrens 		asize = MAX(asize, csize);
87789Sahrens 	}
88789Sahrens 
89789Sahrens 	return (asize);
90789Sahrens }
91789Sahrens 
921175Slling /*
931175Slling  * Get the replaceable or attachable device size.
941175Slling  * If the parent is a mirror or raidz, the replaceable size is the minimum
951175Slling  * psize of all its children. For the rest, just return our own psize.
961175Slling  *
971175Slling  * e.g.
981175Slling  *			psize	rsize
991175Slling  * root			-	-
1001175Slling  *	mirror/raidz	-	-
1011175Slling  *	    disk1	20g	20g
1021175Slling  *	    disk2 	40g	20g
1031175Slling  *	disk3 		80g	80g
1041175Slling  */
1051175Slling uint64_t
1061175Slling vdev_get_rsize(vdev_t *vd)
1071175Slling {
1081175Slling 	vdev_t *pvd, *cvd;
1091175Slling 	uint64_t c, rsize;
1101175Slling 
1111175Slling 	pvd = vd->vdev_parent;
1121175Slling 
1131175Slling 	/*
1141175Slling 	 * If our parent is NULL or the root, just return our own psize.
1151175Slling 	 */
1161175Slling 	if (pvd == NULL || pvd->vdev_parent == NULL)
1171175Slling 		return (vd->vdev_psize);
1181175Slling 
1191175Slling 	rsize = 0;
1201175Slling 
1211175Slling 	for (c = 0; c < pvd->vdev_children; c++) {
1221175Slling 		cvd = pvd->vdev_child[c];
1231175Slling 		rsize = MIN(rsize - 1, cvd->vdev_psize - 1) + 1;
1241175Slling 	}
1251175Slling 
1261175Slling 	return (rsize);
1271175Slling }
1281175Slling 
129789Sahrens vdev_t *
130789Sahrens vdev_lookup_top(spa_t *spa, uint64_t vdev)
131789Sahrens {
132789Sahrens 	vdev_t *rvd = spa->spa_root_vdev;
133789Sahrens 
134789Sahrens 	if (vdev < rvd->vdev_children)
135789Sahrens 		return (rvd->vdev_child[vdev]);
136789Sahrens 
137789Sahrens 	return (NULL);
138789Sahrens }
139789Sahrens 
140789Sahrens vdev_t *
141789Sahrens vdev_lookup_by_guid(vdev_t *vd, uint64_t guid)
142789Sahrens {
143789Sahrens 	int c;
144789Sahrens 	vdev_t *mvd;
145789Sahrens 
1461585Sbonwick 	if (vd->vdev_guid == guid)
147789Sahrens 		return (vd);
148789Sahrens 
149789Sahrens 	for (c = 0; c < vd->vdev_children; c++)
150789Sahrens 		if ((mvd = vdev_lookup_by_guid(vd->vdev_child[c], guid)) !=
151789Sahrens 		    NULL)
152789Sahrens 			return (mvd);
153789Sahrens 
154789Sahrens 	return (NULL);
155789Sahrens }
156789Sahrens 
157789Sahrens void
158789Sahrens vdev_add_child(vdev_t *pvd, vdev_t *cvd)
159789Sahrens {
160789Sahrens 	size_t oldsize, newsize;
161789Sahrens 	uint64_t id = cvd->vdev_id;
162789Sahrens 	vdev_t **newchild;
163789Sahrens 
164789Sahrens 	ASSERT(spa_config_held(cvd->vdev_spa, RW_WRITER));
165789Sahrens 	ASSERT(cvd->vdev_parent == NULL);
166789Sahrens 
167789Sahrens 	cvd->vdev_parent = pvd;
168789Sahrens 
169789Sahrens 	if (pvd == NULL)
170789Sahrens 		return;
171789Sahrens 
172789Sahrens 	ASSERT(id >= pvd->vdev_children || pvd->vdev_child[id] == NULL);
173789Sahrens 
174789Sahrens 	oldsize = pvd->vdev_children * sizeof (vdev_t *);
175789Sahrens 	pvd->vdev_children = MAX(pvd->vdev_children, id + 1);
176789Sahrens 	newsize = pvd->vdev_children * sizeof (vdev_t *);
177789Sahrens 
178789Sahrens 	newchild = kmem_zalloc(newsize, KM_SLEEP);
179789Sahrens 	if (pvd->vdev_child != NULL) {
180789Sahrens 		bcopy(pvd->vdev_child, newchild, oldsize);
181789Sahrens 		kmem_free(pvd->vdev_child, oldsize);
182789Sahrens 	}
183789Sahrens 
184789Sahrens 	pvd->vdev_child = newchild;
185789Sahrens 	pvd->vdev_child[id] = cvd;
186789Sahrens 
187789Sahrens 	cvd->vdev_top = (pvd->vdev_top ? pvd->vdev_top: cvd);
188789Sahrens 	ASSERT(cvd->vdev_top->vdev_parent->vdev_parent == NULL);
189789Sahrens 
190789Sahrens 	/*
191789Sahrens 	 * Walk up all ancestors to update guid sum.
192789Sahrens 	 */
193789Sahrens 	for (; pvd != NULL; pvd = pvd->vdev_parent)
194789Sahrens 		pvd->vdev_guid_sum += cvd->vdev_guid_sum;
195789Sahrens }
196789Sahrens 
197789Sahrens void
198789Sahrens vdev_remove_child(vdev_t *pvd, vdev_t *cvd)
199789Sahrens {
200789Sahrens 	int c;
201789Sahrens 	uint_t id = cvd->vdev_id;
202789Sahrens 
203789Sahrens 	ASSERT(cvd->vdev_parent == pvd);
204789Sahrens 
205789Sahrens 	if (pvd == NULL)
206789Sahrens 		return;
207789Sahrens 
208789Sahrens 	ASSERT(id < pvd->vdev_children);
209789Sahrens 	ASSERT(pvd->vdev_child[id] == cvd);
210789Sahrens 
211789Sahrens 	pvd->vdev_child[id] = NULL;
212789Sahrens 	cvd->vdev_parent = NULL;
213789Sahrens 
214789Sahrens 	for (c = 0; c < pvd->vdev_children; c++)
215789Sahrens 		if (pvd->vdev_child[c])
216789Sahrens 			break;
217789Sahrens 
218789Sahrens 	if (c == pvd->vdev_children) {
219789Sahrens 		kmem_free(pvd->vdev_child, c * sizeof (vdev_t *));
220789Sahrens 		pvd->vdev_child = NULL;
221789Sahrens 		pvd->vdev_children = 0;
222789Sahrens 	}
223789Sahrens 
224789Sahrens 	/*
225789Sahrens 	 * Walk up all ancestors to update guid sum.
226789Sahrens 	 */
227789Sahrens 	for (; pvd != NULL; pvd = pvd->vdev_parent)
228789Sahrens 		pvd->vdev_guid_sum -= cvd->vdev_guid_sum;
229789Sahrens }
230789Sahrens 
231789Sahrens /*
232789Sahrens  * Remove any holes in the child array.
233789Sahrens  */
234789Sahrens void
235789Sahrens vdev_compact_children(vdev_t *pvd)
236789Sahrens {
237789Sahrens 	vdev_t **newchild, *cvd;
238789Sahrens 	int oldc = pvd->vdev_children;
239789Sahrens 	int newc, c;
240789Sahrens 
241789Sahrens 	ASSERT(spa_config_held(pvd->vdev_spa, RW_WRITER));
242789Sahrens 
243789Sahrens 	for (c = newc = 0; c < oldc; c++)
244789Sahrens 		if (pvd->vdev_child[c])
245789Sahrens 			newc++;
246789Sahrens 
247789Sahrens 	newchild = kmem_alloc(newc * sizeof (vdev_t *), KM_SLEEP);
248789Sahrens 
249789Sahrens 	for (c = newc = 0; c < oldc; c++) {
250789Sahrens 		if ((cvd = pvd->vdev_child[c]) != NULL) {
251789Sahrens 			newchild[newc] = cvd;
252789Sahrens 			cvd->vdev_id = newc++;
253789Sahrens 		}
254789Sahrens 	}
255789Sahrens 
256789Sahrens 	kmem_free(pvd->vdev_child, oldc * sizeof (vdev_t *));
257789Sahrens 	pvd->vdev_child = newchild;
258789Sahrens 	pvd->vdev_children = newc;
259789Sahrens }
260789Sahrens 
261789Sahrens /*
262789Sahrens  * Allocate and minimally initialize a vdev_t.
263789Sahrens  */
264789Sahrens static vdev_t *
265789Sahrens vdev_alloc_common(spa_t *spa, uint_t id, uint64_t guid, vdev_ops_t *ops)
266789Sahrens {
267789Sahrens 	vdev_t *vd;
268789Sahrens 
2691585Sbonwick 	vd = kmem_zalloc(sizeof (vdev_t), KM_SLEEP);
2701585Sbonwick 
2711585Sbonwick 	if (spa->spa_root_vdev == NULL) {
2721585Sbonwick 		ASSERT(ops == &vdev_root_ops);
2731585Sbonwick 		spa->spa_root_vdev = vd;
2741585Sbonwick 	}
275789Sahrens 
2761585Sbonwick 	if (guid == 0) {
2771585Sbonwick 		if (spa->spa_root_vdev == vd) {
2781585Sbonwick 			/*
2791585Sbonwick 			 * The root vdev's guid will also be the pool guid,
2801585Sbonwick 			 * which must be unique among all pools.
2811585Sbonwick 			 */
2821585Sbonwick 			while (guid == 0 || spa_guid_exists(guid, 0))
2831585Sbonwick 				guid = spa_get_random(-1ULL);
2841585Sbonwick 		} else {
2851585Sbonwick 			/*
2861585Sbonwick 			 * Any other vdev's guid must be unique within the pool.
2871585Sbonwick 			 */
2881585Sbonwick 			while (guid == 0 ||
2891585Sbonwick 			    spa_guid_exists(spa_guid(spa), guid))
2901585Sbonwick 				guid = spa_get_random(-1ULL);
2911585Sbonwick 		}
2921585Sbonwick 		ASSERT(!spa_guid_exists(spa_guid(spa), guid));
2931585Sbonwick 	}
294789Sahrens 
295789Sahrens 	vd->vdev_spa = spa;
296789Sahrens 	vd->vdev_id = id;
297789Sahrens 	vd->vdev_guid = guid;
298789Sahrens 	vd->vdev_guid_sum = guid;
299789Sahrens 	vd->vdev_ops = ops;
300789Sahrens 	vd->vdev_state = VDEV_STATE_CLOSED;
301789Sahrens 
302789Sahrens 	mutex_init(&vd->vdev_dtl_lock, NULL, MUTEX_DEFAULT, NULL);
303789Sahrens 	space_map_create(&vd->vdev_dtl_map, 0, -1ULL, 0, &vd->vdev_dtl_lock);
304789Sahrens 	space_map_create(&vd->vdev_dtl_scrub, 0, -1ULL, 0, &vd->vdev_dtl_lock);
305789Sahrens 	txg_list_create(&vd->vdev_ms_list,
306789Sahrens 	    offsetof(struct metaslab, ms_txg_node));
307789Sahrens 	txg_list_create(&vd->vdev_dtl_list,
308789Sahrens 	    offsetof(struct vdev, vdev_dtl_node));
309789Sahrens 	vd->vdev_stat.vs_timestamp = gethrtime();
310789Sahrens 
311789Sahrens 	return (vd);
312789Sahrens }
313789Sahrens 
314789Sahrens /*
315789Sahrens  * Free a vdev_t that has been removed from service.
316789Sahrens  */
317789Sahrens static void
318789Sahrens vdev_free_common(vdev_t *vd)
319789Sahrens {
3201585Sbonwick 	spa_t *spa = vd->vdev_spa;
3211585Sbonwick 
322789Sahrens 	if (vd->vdev_path)
323789Sahrens 		spa_strfree(vd->vdev_path);
324789Sahrens 	if (vd->vdev_devid)
325789Sahrens 		spa_strfree(vd->vdev_devid);
326789Sahrens 
327789Sahrens 	txg_list_destroy(&vd->vdev_ms_list);
328789Sahrens 	txg_list_destroy(&vd->vdev_dtl_list);
329789Sahrens 	mutex_enter(&vd->vdev_dtl_lock);
3301732Sbonwick 	space_map_unload(&vd->vdev_dtl_map);
331789Sahrens 	space_map_destroy(&vd->vdev_dtl_map);
332789Sahrens 	space_map_vacate(&vd->vdev_dtl_scrub, NULL, NULL);
333789Sahrens 	space_map_destroy(&vd->vdev_dtl_scrub);
334789Sahrens 	mutex_exit(&vd->vdev_dtl_lock);
335789Sahrens 	mutex_destroy(&vd->vdev_dtl_lock);
336789Sahrens 
3371585Sbonwick 	if (vd == spa->spa_root_vdev)
3381585Sbonwick 		spa->spa_root_vdev = NULL;
3391585Sbonwick 
340789Sahrens 	kmem_free(vd, sizeof (vdev_t));
341789Sahrens }
342789Sahrens 
343789Sahrens /*
344789Sahrens  * Allocate a new vdev.  The 'alloctype' is used to control whether we are
345789Sahrens  * creating a new vdev or loading an existing one - the behavior is slightly
346789Sahrens  * different for each case.
347789Sahrens  */
348789Sahrens vdev_t *
349789Sahrens vdev_alloc(spa_t *spa, nvlist_t *nv, vdev_t *parent, uint_t id, int alloctype)
350789Sahrens {
351789Sahrens 	vdev_ops_t *ops;
352789Sahrens 	char *type;
3531732Sbonwick 	uint64_t guid = 0;
354789Sahrens 	vdev_t *vd;
355789Sahrens 
356789Sahrens 	ASSERT(spa_config_held(spa, RW_WRITER));
357789Sahrens 
358789Sahrens 	if (nvlist_lookup_string(nv, ZPOOL_CONFIG_TYPE, &type) != 0)
359789Sahrens 		return (NULL);
360789Sahrens 
361789Sahrens 	if ((ops = vdev_getops(type)) == NULL)
362789Sahrens 		return (NULL);
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)
373789Sahrens 			return (NULL);
374789Sahrens 
375789Sahrens 		if (nvlist_lookup_uint64(nv, ZPOOL_CONFIG_GUID, &guid) != 0)
376789Sahrens 			return (NULL);
377789Sahrens 	}
378789Sahrens 
379789Sahrens 	vd = vdev_alloc_common(spa, id, guid, ops);
380789Sahrens 
381789Sahrens 	if (nvlist_lookup_string(nv, ZPOOL_CONFIG_PATH, &vd->vdev_path) == 0)
382789Sahrens 		vd->vdev_path = spa_strdup(vd->vdev_path);
383789Sahrens 	if (nvlist_lookup_string(nv, ZPOOL_CONFIG_DEVID, &vd->vdev_devid) == 0)
384789Sahrens 		vd->vdev_devid = spa_strdup(vd->vdev_devid);
385789Sahrens 
386789Sahrens 	/*
3871171Seschrock 	 * Set the whole_disk property.  If it's not specified, leave the value
3881171Seschrock 	 * as -1.
3891171Seschrock 	 */
3901171Seschrock 	if (nvlist_lookup_uint64(nv, ZPOOL_CONFIG_WHOLE_DISK,
3911171Seschrock 	    &vd->vdev_wholedisk) != 0)
3921171Seschrock 		vd->vdev_wholedisk = -1ULL;
3931171Seschrock 
3941171Seschrock 	/*
3951544Seschrock 	 * Look for the 'not present' flag.  This will only be set if the device
3961544Seschrock 	 * was not present at the time of import.
3971544Seschrock 	 */
3981544Seschrock 	(void) nvlist_lookup_uint64(nv, ZPOOL_CONFIG_NOT_PRESENT,
3991544Seschrock 	    &vd->vdev_not_present);
4001544Seschrock 
4011544Seschrock 	/*
4021732Sbonwick 	 * Get the alignment requirement.
4031732Sbonwick 	 */
4041732Sbonwick 	(void) nvlist_lookup_uint64(nv, ZPOOL_CONFIG_ASHIFT, &vd->vdev_ashift);
4051732Sbonwick 
4061732Sbonwick 	/*
407789Sahrens 	 * If we're a top-level vdev, try to load the allocation parameters.
408789Sahrens 	 */
409789Sahrens 	if (parent && !parent->vdev_parent && alloctype == VDEV_ALLOC_LOAD) {
410789Sahrens 		(void) nvlist_lookup_uint64(nv, ZPOOL_CONFIG_METASLAB_ARRAY,
411789Sahrens 		    &vd->vdev_ms_array);
412789Sahrens 		(void) nvlist_lookup_uint64(nv, ZPOOL_CONFIG_METASLAB_SHIFT,
413789Sahrens 		    &vd->vdev_ms_shift);
414789Sahrens 		(void) nvlist_lookup_uint64(nv, ZPOOL_CONFIG_ASIZE,
415789Sahrens 		    &vd->vdev_asize);
416789Sahrens 	}
417789Sahrens 
418789Sahrens 	/*
4191732Sbonwick 	 * If we're a leaf vdev, try to load the DTL object and offline state.
420789Sahrens 	 */
421789Sahrens 	if (vd->vdev_ops->vdev_op_leaf && alloctype == VDEV_ALLOC_LOAD) {
422789Sahrens 		(void) nvlist_lookup_uint64(nv, ZPOOL_CONFIG_DTL,
423789Sahrens 		    &vd->vdev_dtl.smo_object);
4241732Sbonwick 		(void) nvlist_lookup_uint64(nv, ZPOOL_CONFIG_OFFLINE,
4251732Sbonwick 		    &vd->vdev_offline);
426789Sahrens 	}
427789Sahrens 
428789Sahrens 	/*
429789Sahrens 	 * Add ourselves to the parent's list of children.
430789Sahrens 	 */
431789Sahrens 	vdev_add_child(parent, vd);
432789Sahrens 
433789Sahrens 	return (vd);
434789Sahrens }
435789Sahrens 
436789Sahrens void
437789Sahrens vdev_free(vdev_t *vd)
438789Sahrens {
439789Sahrens 	int c;
440789Sahrens 
441789Sahrens 	/*
442789Sahrens 	 * vdev_free() implies closing the vdev first.  This is simpler than
443789Sahrens 	 * trying to ensure complicated semantics for all callers.
444789Sahrens 	 */
445789Sahrens 	vdev_close(vd);
446789Sahrens 
4471732Sbonwick 	ASSERT(!list_link_active(&vd->vdev_dirty_node));
448789Sahrens 
449789Sahrens 	/*
450789Sahrens 	 * Free all children.
451789Sahrens 	 */
452789Sahrens 	for (c = 0; c < vd->vdev_children; c++)
453789Sahrens 		vdev_free(vd->vdev_child[c]);
454789Sahrens 
455789Sahrens 	ASSERT(vd->vdev_child == NULL);
456789Sahrens 	ASSERT(vd->vdev_guid_sum == vd->vdev_guid);
457789Sahrens 
458789Sahrens 	/*
459789Sahrens 	 * Discard allocation state.
460789Sahrens 	 */
461789Sahrens 	if (vd == vd->vdev_top)
462789Sahrens 		vdev_metaslab_fini(vd);
463789Sahrens 
464789Sahrens 	ASSERT3U(vd->vdev_stat.vs_space, ==, 0);
465789Sahrens 	ASSERT3U(vd->vdev_stat.vs_alloc, ==, 0);
466789Sahrens 
467789Sahrens 	/*
468789Sahrens 	 * Remove this vdev from its parent's child list.
469789Sahrens 	 */
470789Sahrens 	vdev_remove_child(vd->vdev_parent, vd);
471789Sahrens 
472789Sahrens 	ASSERT(vd->vdev_parent == NULL);
473789Sahrens 
474789Sahrens 	vdev_free_common(vd);
475789Sahrens }
476789Sahrens 
477789Sahrens /*
478789Sahrens  * Transfer top-level vdev state from svd to tvd.
479789Sahrens  */
480789Sahrens static void
481789Sahrens vdev_top_transfer(vdev_t *svd, vdev_t *tvd)
482789Sahrens {
483789Sahrens 	spa_t *spa = svd->vdev_spa;
484789Sahrens 	metaslab_t *msp;
485789Sahrens 	vdev_t *vd;
486789Sahrens 	int t;
487789Sahrens 
488789Sahrens 	ASSERT(tvd == tvd->vdev_top);
489789Sahrens 
490789Sahrens 	tvd->vdev_ms_array = svd->vdev_ms_array;
491789Sahrens 	tvd->vdev_ms_shift = svd->vdev_ms_shift;
492789Sahrens 	tvd->vdev_ms_count = svd->vdev_ms_count;
493789Sahrens 
494789Sahrens 	svd->vdev_ms_array = 0;
495789Sahrens 	svd->vdev_ms_shift = 0;
496789Sahrens 	svd->vdev_ms_count = 0;
497789Sahrens 
498789Sahrens 	tvd->vdev_mg = svd->vdev_mg;
499789Sahrens 	tvd->vdev_ms = svd->vdev_ms;
500789Sahrens 
501789Sahrens 	svd->vdev_mg = NULL;
502789Sahrens 	svd->vdev_ms = NULL;
5031732Sbonwick 
5041732Sbonwick 	if (tvd->vdev_mg != NULL)
5051732Sbonwick 		tvd->vdev_mg->mg_vd = tvd;
506789Sahrens 
507789Sahrens 	tvd->vdev_stat.vs_alloc = svd->vdev_stat.vs_alloc;
508789Sahrens 	tvd->vdev_stat.vs_space = svd->vdev_stat.vs_space;
509789Sahrens 
510789Sahrens 	svd->vdev_stat.vs_alloc = 0;
511789Sahrens 	svd->vdev_stat.vs_space = 0;
512789Sahrens 
513789Sahrens 	for (t = 0; t < TXG_SIZE; t++) {
514789Sahrens 		while ((msp = txg_list_remove(&svd->vdev_ms_list, t)) != NULL)
515789Sahrens 			(void) txg_list_add(&tvd->vdev_ms_list, msp, t);
516789Sahrens 		while ((vd = txg_list_remove(&svd->vdev_dtl_list, t)) != NULL)
517789Sahrens 			(void) txg_list_add(&tvd->vdev_dtl_list, vd, t);
518789Sahrens 		if (txg_list_remove_this(&spa->spa_vdev_txg_list, svd, t))
519789Sahrens 			(void) txg_list_add(&spa->spa_vdev_txg_list, tvd, t);
520789Sahrens 	}
521789Sahrens 
5221732Sbonwick 	if (list_link_active(&svd->vdev_dirty_node)) {
523789Sahrens 		vdev_config_clean(svd);
524789Sahrens 		vdev_config_dirty(tvd);
525789Sahrens 	}
526789Sahrens 
5271544Seschrock 	tvd->vdev_reopen_wanted = svd->vdev_reopen_wanted;
5281544Seschrock 	svd->vdev_reopen_wanted = 0;
529789Sahrens }
530789Sahrens 
531789Sahrens static void
532789Sahrens vdev_top_update(vdev_t *tvd, vdev_t *vd)
533789Sahrens {
534789Sahrens 	int c;
535789Sahrens 
536789Sahrens 	if (vd == NULL)
537789Sahrens 		return;
538789Sahrens 
539789Sahrens 	vd->vdev_top = tvd;
540789Sahrens 
541789Sahrens 	for (c = 0; c < vd->vdev_children; c++)
542789Sahrens 		vdev_top_update(tvd, vd->vdev_child[c]);
543789Sahrens }
544789Sahrens 
545789Sahrens /*
546789Sahrens  * Add a mirror/replacing vdev above an existing vdev.
547789Sahrens  */
548789Sahrens vdev_t *
549789Sahrens vdev_add_parent(vdev_t *cvd, vdev_ops_t *ops)
550789Sahrens {
551789Sahrens 	spa_t *spa = cvd->vdev_spa;
552789Sahrens 	vdev_t *pvd = cvd->vdev_parent;
553789Sahrens 	vdev_t *mvd;
554789Sahrens 
555789Sahrens 	ASSERT(spa_config_held(spa, RW_WRITER));
556789Sahrens 
557789Sahrens 	mvd = vdev_alloc_common(spa, cvd->vdev_id, 0, ops);
5581732Sbonwick 
5591732Sbonwick 	mvd->vdev_asize = cvd->vdev_asize;
5601732Sbonwick 	mvd->vdev_ashift = cvd->vdev_ashift;
5611732Sbonwick 	mvd->vdev_state = cvd->vdev_state;
5621732Sbonwick 
563789Sahrens 	vdev_remove_child(pvd, cvd);
564789Sahrens 	vdev_add_child(pvd, mvd);
565789Sahrens 	cvd->vdev_id = mvd->vdev_children;
566789Sahrens 	vdev_add_child(mvd, cvd);
567789Sahrens 	vdev_top_update(cvd->vdev_top, cvd->vdev_top);
568789Sahrens 
569789Sahrens 	if (mvd == mvd->vdev_top)
570789Sahrens 		vdev_top_transfer(cvd, mvd);
571789Sahrens 
572789Sahrens 	return (mvd);
573789Sahrens }
574789Sahrens 
575789Sahrens /*
576789Sahrens  * Remove a 1-way mirror/replacing vdev from the tree.
577789Sahrens  */
578789Sahrens void
579789Sahrens vdev_remove_parent(vdev_t *cvd)
580789Sahrens {
581789Sahrens 	vdev_t *mvd = cvd->vdev_parent;
582789Sahrens 	vdev_t *pvd = mvd->vdev_parent;
583789Sahrens 
584789Sahrens 	ASSERT(spa_config_held(cvd->vdev_spa, RW_WRITER));
585789Sahrens 
586789Sahrens 	ASSERT(mvd->vdev_children == 1);
587789Sahrens 	ASSERT(mvd->vdev_ops == &vdev_mirror_ops ||
588789Sahrens 	    mvd->vdev_ops == &vdev_replacing_ops);
5891732Sbonwick 	cvd->vdev_ashift = mvd->vdev_ashift;
590789Sahrens 
591789Sahrens 	vdev_remove_child(mvd, cvd);
592789Sahrens 	vdev_remove_child(pvd, mvd);
593789Sahrens 	cvd->vdev_id = mvd->vdev_id;
594789Sahrens 	vdev_add_child(pvd, cvd);
595789Sahrens 	vdev_top_update(cvd->vdev_top, cvd->vdev_top);
596789Sahrens 
597789Sahrens 	if (cvd == cvd->vdev_top)
598789Sahrens 		vdev_top_transfer(mvd, cvd);
599789Sahrens 
600789Sahrens 	ASSERT(mvd->vdev_children == 0);
601789Sahrens 	vdev_free(mvd);
602789Sahrens }
603789Sahrens 
6041544Seschrock int
605789Sahrens vdev_metaslab_init(vdev_t *vd, uint64_t txg)
606789Sahrens {
607789Sahrens 	spa_t *spa = vd->vdev_spa;
6081732Sbonwick 	objset_t *mos = spa->spa_meta_objset;
609789Sahrens 	metaslab_class_t *mc = spa_metaslab_class_select(spa);
6101732Sbonwick 	uint64_t m;
611789Sahrens 	uint64_t oldc = vd->vdev_ms_count;
612789Sahrens 	uint64_t newc = vd->vdev_asize >> vd->vdev_ms_shift;
6131732Sbonwick 	metaslab_t **mspp;
6141732Sbonwick 	int error;
615789Sahrens 
6161585Sbonwick 	if (vd->vdev_ms_shift == 0)	/* not being allocated from yet */
6171585Sbonwick 		return (0);
6181585Sbonwick 
619789Sahrens 	dprintf("%s oldc %llu newc %llu\n", vdev_description(vd), oldc, newc);
620789Sahrens 
621789Sahrens 	ASSERT(oldc <= newc);
622789Sahrens 
6231732Sbonwick 	if (vd->vdev_mg == NULL)
6241732Sbonwick 		vd->vdev_mg = metaslab_group_create(mc, vd);
6251732Sbonwick 
6261732Sbonwick 	mspp = kmem_zalloc(newc * sizeof (*mspp), KM_SLEEP);
6271732Sbonwick 
6281732Sbonwick 	if (oldc != 0) {
6291732Sbonwick 		bcopy(vd->vdev_ms, mspp, oldc * sizeof (*mspp));
6301732Sbonwick 		kmem_free(vd->vdev_ms, oldc * sizeof (*mspp));
6311732Sbonwick 	}
6321732Sbonwick 
6331732Sbonwick 	vd->vdev_ms = mspp;
634789Sahrens 	vd->vdev_ms_count = newc;
635789Sahrens 
6361732Sbonwick 	for (m = oldc; m < newc; m++) {
6371732Sbonwick 		space_map_obj_t smo = { 0, 0, 0 };
638789Sahrens 		if (txg == 0) {
6391732Sbonwick 			uint64_t object = 0;
6401732Sbonwick 			error = dmu_read(mos, vd->vdev_ms_array,
6411732Sbonwick 			    m * sizeof (uint64_t), sizeof (uint64_t), &object);
6421732Sbonwick 			if (error)
6431732Sbonwick 				return (error);
6441732Sbonwick 			if (object != 0) {
6451732Sbonwick 				dmu_buf_t *db;
6461732Sbonwick 				error = dmu_bonus_hold(mos, object, FTAG, &db);
6471732Sbonwick 				if (error)
6481732Sbonwick 					return (error);
6491732Sbonwick 				ASSERT3U(db->db_size, ==, sizeof (smo));
6501732Sbonwick 				bcopy(db->db_data, &smo, db->db_size);
6511732Sbonwick 				ASSERT3U(smo.smo_object, ==, object);
6521544Seschrock 				dmu_buf_rele(db, FTAG);
653789Sahrens 			}
654789Sahrens 		}
6551732Sbonwick 		vd->vdev_ms[m] = metaslab_init(vd->vdev_mg, &smo,
6561732Sbonwick 		    m << vd->vdev_ms_shift, 1ULL << vd->vdev_ms_shift, txg);
657789Sahrens 	}
658789Sahrens 
6591544Seschrock 	return (0);
660789Sahrens }
661789Sahrens 
662789Sahrens void
663789Sahrens vdev_metaslab_fini(vdev_t *vd)
664789Sahrens {
665789Sahrens 	uint64_t m;
666789Sahrens 	uint64_t count = vd->vdev_ms_count;
667789Sahrens 
668789Sahrens 	if (vd->vdev_ms != NULL) {
669789Sahrens 		for (m = 0; m < count; m++)
6701732Sbonwick 			if (vd->vdev_ms[m] != NULL)
6711732Sbonwick 				metaslab_fini(vd->vdev_ms[m]);
672789Sahrens 		kmem_free(vd->vdev_ms, count * sizeof (metaslab_t *));
673789Sahrens 		vd->vdev_ms = NULL;
674789Sahrens 	}
675789Sahrens }
676789Sahrens 
677789Sahrens /*
678789Sahrens  * Prepare a virtual device for access.
679789Sahrens  */
680789Sahrens int
681789Sahrens vdev_open(vdev_t *vd)
682789Sahrens {
683789Sahrens 	int error;
684789Sahrens 	vdev_knob_t *vk;
685789Sahrens 	int c;
686789Sahrens 	uint64_t osize = 0;
687789Sahrens 	uint64_t asize, psize;
6881732Sbonwick 	uint64_t ashift = 0;
689789Sahrens 
690789Sahrens 	ASSERT(vd->vdev_state == VDEV_STATE_CLOSED ||
691789Sahrens 	    vd->vdev_state == VDEV_STATE_CANT_OPEN ||
692789Sahrens 	    vd->vdev_state == VDEV_STATE_OFFLINE);
693789Sahrens 
694789Sahrens 	if (vd->vdev_fault_mode == VDEV_FAULT_COUNT)
695789Sahrens 		vd->vdev_fault_arg >>= 1;
696789Sahrens 	else
697789Sahrens 		vd->vdev_fault_mode = VDEV_FAULT_NONE;
698789Sahrens 
699789Sahrens 	vd->vdev_stat.vs_aux = VDEV_AUX_NONE;
700789Sahrens 
701789Sahrens 	for (vk = vdev_knob_next(NULL); vk != NULL; vk = vdev_knob_next(vk)) {
702789Sahrens 		uint64_t *valp = (uint64_t *)((char *)vd + vk->vk_offset);
703789Sahrens 
704789Sahrens 		*valp = vk->vk_default;
705789Sahrens 		*valp = MAX(*valp, vk->vk_min);
706789Sahrens 		*valp = MIN(*valp, vk->vk_max);
707789Sahrens 	}
708789Sahrens 
709789Sahrens 	if (vd->vdev_ops->vdev_op_leaf) {
710789Sahrens 		vdev_cache_init(vd);
711789Sahrens 		vdev_queue_init(vd);
712789Sahrens 		vd->vdev_cache_active = B_TRUE;
713789Sahrens 	}
714789Sahrens 
715789Sahrens 	if (vd->vdev_offline) {
716789Sahrens 		ASSERT(vd->vdev_children == 0);
7171544Seschrock 		vdev_set_state(vd, B_TRUE, VDEV_STATE_OFFLINE, VDEV_AUX_NONE);
718789Sahrens 		return (ENXIO);
719789Sahrens 	}
720789Sahrens 
721789Sahrens 	error = vd->vdev_ops->vdev_op_open(vd, &osize, &ashift);
722789Sahrens 
7231544Seschrock 	if (zio_injection_enabled && error == 0)
7241544Seschrock 		error = zio_handle_device_injection(vd, ENXIO);
7251544Seschrock 
726789Sahrens 	dprintf("%s = %d, osize %llu, state = %d\n",
727789Sahrens 	    vdev_description(vd), error, osize, vd->vdev_state);
728789Sahrens 
729789Sahrens 	if (error) {
7301544Seschrock 		vdev_set_state(vd, B_TRUE, VDEV_STATE_CANT_OPEN,
731789Sahrens 		    vd->vdev_stat.vs_aux);
732789Sahrens 		return (error);
733789Sahrens 	}
734789Sahrens 
735789Sahrens 	vd->vdev_state = VDEV_STATE_HEALTHY;
736789Sahrens 
737789Sahrens 	for (c = 0; c < vd->vdev_children; c++)
7381544Seschrock 		if (vd->vdev_child[c]->vdev_state != VDEV_STATE_HEALTHY) {
7391544Seschrock 			vdev_set_state(vd, B_TRUE, VDEV_STATE_DEGRADED,
7401544Seschrock 			    VDEV_AUX_NONE);
7411544Seschrock 			break;
7421544Seschrock 		}
743789Sahrens 
744789Sahrens 	osize = P2ALIGN(osize, (uint64_t)sizeof (vdev_label_t));
745789Sahrens 
746789Sahrens 	if (vd->vdev_children == 0) {
747789Sahrens 		if (osize < SPA_MINDEVSIZE) {
7481544Seschrock 			vdev_set_state(vd, B_TRUE, VDEV_STATE_CANT_OPEN,
7491544Seschrock 			    VDEV_AUX_TOO_SMALL);
750789Sahrens 			return (EOVERFLOW);
751789Sahrens 		}
752789Sahrens 		psize = osize;
753789Sahrens 		asize = osize - (VDEV_LABEL_START_SIZE + VDEV_LABEL_END_SIZE);
754789Sahrens 	} else {
7551732Sbonwick 		if (vd->vdev_parent != NULL && osize < SPA_MINDEVSIZE -
756789Sahrens 		    (VDEV_LABEL_START_SIZE + VDEV_LABEL_END_SIZE)) {
7571544Seschrock 			vdev_set_state(vd, B_TRUE, VDEV_STATE_CANT_OPEN,
7581544Seschrock 			    VDEV_AUX_TOO_SMALL);
759789Sahrens 			return (EOVERFLOW);
760789Sahrens 		}
761789Sahrens 		psize = 0;
762789Sahrens 		asize = osize;
763789Sahrens 	}
764789Sahrens 
765789Sahrens 	vd->vdev_psize = psize;
766789Sahrens 
767789Sahrens 	if (vd->vdev_asize == 0) {
768789Sahrens 		/*
769789Sahrens 		 * This is the first-ever open, so use the computed values.
7701732Sbonwick 		 * For testing purposes, a higher ashift can be requested.
771789Sahrens 		 */
772789Sahrens 		vd->vdev_asize = asize;
7731732Sbonwick 		vd->vdev_ashift = MAX(ashift, vd->vdev_ashift);
774789Sahrens 	} else {
775789Sahrens 		/*
776789Sahrens 		 * Make sure the alignment requirement hasn't increased.
777789Sahrens 		 */
7781732Sbonwick 		if (ashift > vd->vdev_top->vdev_ashift) {
7791544Seschrock 			vdev_set_state(vd, B_TRUE, VDEV_STATE_CANT_OPEN,
7801544Seschrock 			    VDEV_AUX_BAD_LABEL);
781789Sahrens 			return (EINVAL);
782789Sahrens 		}
783789Sahrens 
784789Sahrens 		/*
785789Sahrens 		 * Make sure the device hasn't shrunk.
786789Sahrens 		 */
787789Sahrens 		if (asize < vd->vdev_asize) {
7881544Seschrock 			vdev_set_state(vd, B_TRUE, VDEV_STATE_CANT_OPEN,
7891544Seschrock 			    VDEV_AUX_BAD_LABEL);
790789Sahrens 			return (EINVAL);
791789Sahrens 		}
792789Sahrens 
793789Sahrens 		/*
794789Sahrens 		 * If all children are healthy and the asize has increased,
795789Sahrens 		 * then we've experienced dynamic LUN growth.
796789Sahrens 		 */
797789Sahrens 		if (vd->vdev_state == VDEV_STATE_HEALTHY &&
798789Sahrens 		    asize > vd->vdev_asize) {
799789Sahrens 			vd->vdev_asize = asize;
800789Sahrens 		}
801789Sahrens 	}
802789Sahrens 
8031544Seschrock 	/*
8041544Seschrock 	 * If we were able to open a vdev that was marked permanently
8051544Seschrock 	 * unavailable, clear that state now.
8061544Seschrock 	 */
8071544Seschrock 	if (vd->vdev_not_present)
8081544Seschrock 		vd->vdev_not_present = 0;
8091544Seschrock 
8101544Seschrock 	/*
8111544Seschrock 	 * This allows the ZFS DE to close cases appropriately.  If a device
8121544Seschrock 	 * goes away and later returns, we want to close the associated case.
8131544Seschrock 	 * But it's not enough to simply post this only when a device goes from
8141544Seschrock 	 * CANT_OPEN -> HEALTHY.  If we reboot the system and the device is
8151544Seschrock 	 * back, we also need to close the case (otherwise we will try to replay
8161544Seschrock 	 * it).  So we have to post this notifier every time.  Since this only
8171544Seschrock 	 * occurs during pool open or error recovery, this should not be an
8181544Seschrock 	 * issue.
8191544Seschrock 	 */
8201544Seschrock 	zfs_post_ok(vd->vdev_spa, vd);
8211544Seschrock 
822789Sahrens 	return (0);
823789Sahrens }
824789Sahrens 
825789Sahrens /*
826789Sahrens  * Close a virtual device.
827789Sahrens  */
828789Sahrens void
829789Sahrens vdev_close(vdev_t *vd)
830789Sahrens {
831789Sahrens 	vd->vdev_ops->vdev_op_close(vd);
832789Sahrens 
833789Sahrens 	if (vd->vdev_cache_active) {
834789Sahrens 		vdev_cache_fini(vd);
835789Sahrens 		vdev_queue_fini(vd);
836789Sahrens 		vd->vdev_cache_active = B_FALSE;
837789Sahrens 	}
838789Sahrens 
839789Sahrens 	if (vd->vdev_offline)
840789Sahrens 		vd->vdev_state = VDEV_STATE_OFFLINE;
841789Sahrens 	else
842789Sahrens 		vd->vdev_state = VDEV_STATE_CLOSED;
8431544Seschrock 	vd->vdev_stat.vs_aux = VDEV_AUX_NONE;
844789Sahrens }
845789Sahrens 
846789Sahrens void
8471544Seschrock vdev_reopen(vdev_t *vd)
848789Sahrens {
8491544Seschrock 	spa_t *spa = vd->vdev_spa;
850789Sahrens 
8511544Seschrock 	ASSERT(spa_config_held(spa, RW_WRITER));
8521544Seschrock 
853789Sahrens 	vdev_close(vd);
854789Sahrens 	(void) vdev_open(vd);
855789Sahrens 
856789Sahrens 	/*
857789Sahrens 	 * Reassess root vdev's health.
858789Sahrens 	 */
8591775Sbillm 	vdev_propagate_state(spa->spa_root_vdev);
860789Sahrens }
861789Sahrens 
862789Sahrens int
863789Sahrens vdev_create(vdev_t *vd, uint64_t txg)
864789Sahrens {
865789Sahrens 	int error;
866789Sahrens 
867789Sahrens 	/*
868789Sahrens 	 * Normally, partial opens (e.g. of a mirror) are allowed.
869789Sahrens 	 * For a create, however, we want to fail the request if
870789Sahrens 	 * there are any components we can't open.
871789Sahrens 	 */
872789Sahrens 	error = vdev_open(vd);
873789Sahrens 
874789Sahrens 	if (error || vd->vdev_state != VDEV_STATE_HEALTHY) {
875789Sahrens 		vdev_close(vd);
876789Sahrens 		return (error ? error : ENXIO);
877789Sahrens 	}
878789Sahrens 
879789Sahrens 	/*
880789Sahrens 	 * Recursively initialize all labels.
881789Sahrens 	 */
882789Sahrens 	if ((error = vdev_label_init(vd, txg)) != 0) {
883789Sahrens 		vdev_close(vd);
884789Sahrens 		return (error);
885789Sahrens 	}
886789Sahrens 
887789Sahrens 	return (0);
888789Sahrens }
889789Sahrens 
890789Sahrens /*
891789Sahrens  * The is the latter half of vdev_create().  It is distinct because it
892789Sahrens  * involves initiating transactions in order to do metaslab creation.
893789Sahrens  * For creation, we want to try to create all vdevs at once and then undo it
894789Sahrens  * if anything fails; this is much harder if we have pending transactions.
895789Sahrens  */
8961585Sbonwick void
897789Sahrens vdev_init(vdev_t *vd, uint64_t txg)
898789Sahrens {
899789Sahrens 	/*
900789Sahrens 	 * Aim for roughly 200 metaslabs per vdev.
901789Sahrens 	 */
902789Sahrens 	vd->vdev_ms_shift = highbit(vd->vdev_asize / 200);
903789Sahrens 	vd->vdev_ms_shift = MAX(vd->vdev_ms_shift, SPA_MAXBLOCKSHIFT);
904789Sahrens 
905789Sahrens 	/*
9061585Sbonwick 	 * Initialize the vdev's metaslabs.  This can't fail because
9071585Sbonwick 	 * there's nothing to read when creating all new metaslabs.
908789Sahrens 	 */
9091585Sbonwick 	VERIFY(vdev_metaslab_init(vd, txg) == 0);
910789Sahrens }
911789Sahrens 
912789Sahrens void
9131732Sbonwick vdev_dirty(vdev_t *vd, int flags, void *arg, uint64_t txg)
914789Sahrens {
9151732Sbonwick 	ASSERT(vd == vd->vdev_top);
9161732Sbonwick 	ASSERT(ISP2(flags));
917789Sahrens 
9181732Sbonwick 	if (flags & VDD_METASLAB)
9191732Sbonwick 		(void) txg_list_add(&vd->vdev_ms_list, arg, txg);
9201732Sbonwick 
9211732Sbonwick 	if (flags & VDD_DTL)
9221732Sbonwick 		(void) txg_list_add(&vd->vdev_dtl_list, arg, txg);
9231732Sbonwick 
9241732Sbonwick 	(void) txg_list_add(&vd->vdev_spa->spa_vdev_txg_list, vd, txg);
925789Sahrens }
926789Sahrens 
927789Sahrens void
928789Sahrens vdev_dtl_dirty(space_map_t *sm, uint64_t txg, uint64_t size)
929789Sahrens {
930789Sahrens 	mutex_enter(sm->sm_lock);
931789Sahrens 	if (!space_map_contains(sm, txg, size))
932789Sahrens 		space_map_add(sm, txg, size);
933789Sahrens 	mutex_exit(sm->sm_lock);
934789Sahrens }
935789Sahrens 
936789Sahrens int
937789Sahrens vdev_dtl_contains(space_map_t *sm, uint64_t txg, uint64_t size)
938789Sahrens {
939789Sahrens 	int dirty;
940789Sahrens 
941789Sahrens 	/*
942789Sahrens 	 * Quick test without the lock -- covers the common case that
943789Sahrens 	 * there are no dirty time segments.
944789Sahrens 	 */
945789Sahrens 	if (sm->sm_space == 0)
946789Sahrens 		return (0);
947789Sahrens 
948789Sahrens 	mutex_enter(sm->sm_lock);
949789Sahrens 	dirty = space_map_contains(sm, txg, size);
950789Sahrens 	mutex_exit(sm->sm_lock);
951789Sahrens 
952789Sahrens 	return (dirty);
953789Sahrens }
954789Sahrens 
955789Sahrens /*
956789Sahrens  * Reassess DTLs after a config change or scrub completion.
957789Sahrens  */
958789Sahrens void
959789Sahrens vdev_dtl_reassess(vdev_t *vd, uint64_t txg, uint64_t scrub_txg, int scrub_done)
960789Sahrens {
9611544Seschrock 	spa_t *spa = vd->vdev_spa;
962789Sahrens 	int c;
963789Sahrens 
9641544Seschrock 	ASSERT(spa_config_held(spa, RW_WRITER));
965789Sahrens 
966789Sahrens 	if (vd->vdev_children == 0) {
967789Sahrens 		mutex_enter(&vd->vdev_dtl_lock);
968789Sahrens 		/*
969789Sahrens 		 * We're successfully scrubbed everything up to scrub_txg.
970789Sahrens 		 * Therefore, excise all old DTLs up to that point, then
971789Sahrens 		 * fold in the DTLs for everything we couldn't scrub.
972789Sahrens 		 */
973789Sahrens 		if (scrub_txg != 0) {
974789Sahrens 			space_map_excise(&vd->vdev_dtl_map, 0, scrub_txg);
975789Sahrens 			space_map_union(&vd->vdev_dtl_map, &vd->vdev_dtl_scrub);
976789Sahrens 		}
977789Sahrens 		if (scrub_done)
978789Sahrens 			space_map_vacate(&vd->vdev_dtl_scrub, NULL, NULL);
979789Sahrens 		mutex_exit(&vd->vdev_dtl_lock);
9801732Sbonwick 		if (txg != 0)
9811732Sbonwick 			vdev_dirty(vd->vdev_top, VDD_DTL, vd, txg);
982789Sahrens 		return;
983789Sahrens 	}
984789Sahrens 
9851544Seschrock 	/*
9861544Seschrock 	 * Make sure the DTLs are always correct under the scrub lock.
9871544Seschrock 	 */
9881544Seschrock 	if (vd == spa->spa_root_vdev)
9891544Seschrock 		mutex_enter(&spa->spa_scrub_lock);
9901544Seschrock 
991789Sahrens 	mutex_enter(&vd->vdev_dtl_lock);
992789Sahrens 	space_map_vacate(&vd->vdev_dtl_map, NULL, NULL);
993789Sahrens 	space_map_vacate(&vd->vdev_dtl_scrub, NULL, NULL);
994789Sahrens 	mutex_exit(&vd->vdev_dtl_lock);
995789Sahrens 
996789Sahrens 	for (c = 0; c < vd->vdev_children; c++) {
997789Sahrens 		vdev_t *cvd = vd->vdev_child[c];
998789Sahrens 		vdev_dtl_reassess(cvd, txg, scrub_txg, scrub_done);
999789Sahrens 		mutex_enter(&vd->vdev_dtl_lock);
1000789Sahrens 		space_map_union(&vd->vdev_dtl_map, &cvd->vdev_dtl_map);
1001789Sahrens 		space_map_union(&vd->vdev_dtl_scrub, &cvd->vdev_dtl_scrub);
1002789Sahrens 		mutex_exit(&vd->vdev_dtl_lock);
1003789Sahrens 	}
10041544Seschrock 
10051544Seschrock 	if (vd == spa->spa_root_vdev)
10061544Seschrock 		mutex_exit(&spa->spa_scrub_lock);
1007789Sahrens }
1008789Sahrens 
1009789Sahrens static int
1010789Sahrens vdev_dtl_load(vdev_t *vd)
1011789Sahrens {
1012789Sahrens 	spa_t *spa = vd->vdev_spa;
1013789Sahrens 	space_map_obj_t *smo = &vd->vdev_dtl;
10141732Sbonwick 	objset_t *mos = spa->spa_meta_objset;
1015789Sahrens 	dmu_buf_t *db;
1016789Sahrens 	int error;
1017789Sahrens 
1018789Sahrens 	ASSERT(vd->vdev_children == 0);
1019789Sahrens 
1020789Sahrens 	if (smo->smo_object == 0)
1021789Sahrens 		return (0);
1022789Sahrens 
10231732Sbonwick 	if ((error = dmu_bonus_hold(mos, smo->smo_object, FTAG, &db)) != 0)
10241544Seschrock 		return (error);
10251732Sbonwick 
1026789Sahrens 	ASSERT3U(db->db_size, ==, sizeof (*smo));
1027789Sahrens 	bcopy(db->db_data, smo, db->db_size);
10281544Seschrock 	dmu_buf_rele(db, FTAG);
1029789Sahrens 
1030789Sahrens 	mutex_enter(&vd->vdev_dtl_lock);
10311732Sbonwick 	error = space_map_load(&vd->vdev_dtl_map, NULL, SM_ALLOC, smo, mos);
1032789Sahrens 	mutex_exit(&vd->vdev_dtl_lock);
1033789Sahrens 
1034789Sahrens 	return (error);
1035789Sahrens }
1036789Sahrens 
1037789Sahrens void
1038789Sahrens vdev_dtl_sync(vdev_t *vd, uint64_t txg)
1039789Sahrens {
1040789Sahrens 	spa_t *spa = vd->vdev_spa;
1041789Sahrens 	space_map_obj_t *smo = &vd->vdev_dtl;
1042789Sahrens 	space_map_t *sm = &vd->vdev_dtl_map;
10431732Sbonwick 	objset_t *mos = spa->spa_meta_objset;
1044789Sahrens 	space_map_t smsync;
1045789Sahrens 	kmutex_t smlock;
1046789Sahrens 	dmu_buf_t *db;
1047789Sahrens 	dmu_tx_t *tx;
1048789Sahrens 
1049789Sahrens 	dprintf("%s in txg %llu pass %d\n",
1050789Sahrens 	    vdev_description(vd), (u_longlong_t)txg, spa_sync_pass(spa));
1051789Sahrens 
1052789Sahrens 	tx = dmu_tx_create_assigned(spa->spa_dsl_pool, txg);
1053789Sahrens 
1054789Sahrens 	if (vd->vdev_detached) {
1055789Sahrens 		if (smo->smo_object != 0) {
10561732Sbonwick 			int err = dmu_object_free(mos, smo->smo_object, tx);
1057789Sahrens 			ASSERT3U(err, ==, 0);
1058789Sahrens 			smo->smo_object = 0;
1059789Sahrens 		}
1060789Sahrens 		dmu_tx_commit(tx);
10611732Sbonwick 		dprintf("detach %s committed in txg %llu\n",
10621732Sbonwick 		    vdev_description(vd), txg);
1063789Sahrens 		return;
1064789Sahrens 	}
1065789Sahrens 
1066789Sahrens 	if (smo->smo_object == 0) {
1067789Sahrens 		ASSERT(smo->smo_objsize == 0);
1068789Sahrens 		ASSERT(smo->smo_alloc == 0);
10691732Sbonwick 		smo->smo_object = dmu_object_alloc(mos,
1070789Sahrens 		    DMU_OT_SPACE_MAP, 1 << SPACE_MAP_BLOCKSHIFT,
1071789Sahrens 		    DMU_OT_SPACE_MAP_HEADER, sizeof (*smo), tx);
1072789Sahrens 		ASSERT(smo->smo_object != 0);
1073789Sahrens 		vdev_config_dirty(vd->vdev_top);
1074789Sahrens 	}
1075789Sahrens 
1076789Sahrens 	mutex_init(&smlock, NULL, MUTEX_DEFAULT, NULL);
1077789Sahrens 
1078789Sahrens 	space_map_create(&smsync, sm->sm_start, sm->sm_size, sm->sm_shift,
1079789Sahrens 	    &smlock);
1080789Sahrens 
1081789Sahrens 	mutex_enter(&smlock);
1082789Sahrens 
1083789Sahrens 	mutex_enter(&vd->vdev_dtl_lock);
10841732Sbonwick 	space_map_walk(sm, space_map_add, &smsync);
1085789Sahrens 	mutex_exit(&vd->vdev_dtl_lock);
1086789Sahrens 
10871732Sbonwick 	space_map_truncate(smo, mos, tx);
10881732Sbonwick 	space_map_sync(&smsync, SM_ALLOC, smo, mos, tx);
1089789Sahrens 
1090789Sahrens 	space_map_destroy(&smsync);
1091789Sahrens 
1092789Sahrens 	mutex_exit(&smlock);
1093789Sahrens 	mutex_destroy(&smlock);
1094789Sahrens 
10951732Sbonwick 	VERIFY(0 == dmu_bonus_hold(mos, smo->smo_object, FTAG, &db));
1096789Sahrens 	dmu_buf_will_dirty(db, tx);
1097789Sahrens 	ASSERT3U(db->db_size, ==, sizeof (*smo));
1098789Sahrens 	bcopy(smo, db->db_data, db->db_size);
10991544Seschrock 	dmu_buf_rele(db, FTAG);
1100789Sahrens 
1101789Sahrens 	dmu_tx_commit(tx);
1102789Sahrens }
1103789Sahrens 
1104789Sahrens int
11051544Seschrock vdev_load(vdev_t *vd)
1106789Sahrens {
1107789Sahrens 	spa_t *spa = vd->vdev_spa;
1108789Sahrens 	int c, error;
1109789Sahrens 	nvlist_t *label;
1110789Sahrens 	uint64_t guid, state;
1111789Sahrens 
1112789Sahrens 	dprintf("loading %s\n", vdev_description(vd));
1113789Sahrens 
1114789Sahrens 	/*
1115789Sahrens 	 * Recursively load all children.
1116789Sahrens 	 */
1117789Sahrens 	for (c = 0; c < vd->vdev_children; c++)
11181544Seschrock 		if ((error = vdev_load(vd->vdev_child[c])) != 0)
1119789Sahrens 			return (error);
1120789Sahrens 
1121789Sahrens 	/*
1122789Sahrens 	 * If this is a leaf vdev, make sure its agrees with its disk labels.
1123789Sahrens 	 */
1124789Sahrens 	if (vd->vdev_ops->vdev_op_leaf) {
1125789Sahrens 
1126789Sahrens 		if (vdev_is_dead(vd))
1127789Sahrens 			return (0);
1128789Sahrens 
1129789Sahrens 		/*
1130789Sahrens 		 * XXX state transitions don't propagate to parent here.
1131789Sahrens 		 * Also, merely setting the state isn't sufficient because
1132789Sahrens 		 * it's not persistent; a vdev_reopen() would make us
1133789Sahrens 		 * forget all about it.
1134789Sahrens 		 */
1135789Sahrens 		if ((label = vdev_label_read_config(vd)) == NULL) {
1136789Sahrens 			dprintf("can't load label config\n");
11371544Seschrock 			vdev_set_state(vd, B_FALSE, VDEV_STATE_CANT_OPEN,
1138789Sahrens 			    VDEV_AUX_CORRUPT_DATA);
1139789Sahrens 			return (0);
1140789Sahrens 		}
1141789Sahrens 
1142789Sahrens 		if (nvlist_lookup_uint64(label, ZPOOL_CONFIG_POOL_GUID,
1143789Sahrens 		    &guid) != 0 || guid != spa_guid(spa)) {
1144789Sahrens 			dprintf("bad or missing pool GUID (%llu)\n", guid);
11451544Seschrock 			vdev_set_state(vd, B_FALSE, VDEV_STATE_CANT_OPEN,
1146789Sahrens 			    VDEV_AUX_CORRUPT_DATA);
1147789Sahrens 			nvlist_free(label);
1148789Sahrens 			return (0);
1149789Sahrens 		}
1150789Sahrens 
1151789Sahrens 		if (nvlist_lookup_uint64(label, ZPOOL_CONFIG_GUID, &guid) ||
1152789Sahrens 		    guid != vd->vdev_guid) {
1153789Sahrens 			dprintf("bad or missing vdev guid (%llu != %llu)\n",
1154789Sahrens 			    guid, vd->vdev_guid);
11551544Seschrock 			vdev_set_state(vd, B_FALSE, VDEV_STATE_CANT_OPEN,
1156789Sahrens 			    VDEV_AUX_CORRUPT_DATA);
1157789Sahrens 			nvlist_free(label);
1158789Sahrens 			return (0);
1159789Sahrens 		}
1160789Sahrens 
1161789Sahrens 		/*
1162789Sahrens 		 * If we find a vdev with a matching pool guid and vdev guid,
1163789Sahrens 		 * but the pool state is not active, it indicates that the user
1164789Sahrens 		 * exported or destroyed the pool without affecting the config
1165789Sahrens 		 * cache (if / was mounted readonly, for example).  In this
1166789Sahrens 		 * case, immediately return EBADF so the caller can remove it
1167789Sahrens 		 * from the config.
1168789Sahrens 		 */
1169789Sahrens 		if (nvlist_lookup_uint64(label, ZPOOL_CONFIG_POOL_STATE,
1170789Sahrens 		    &state)) {
1171789Sahrens 			dprintf("missing pool state\n");
11721544Seschrock 			vdev_set_state(vd, B_FALSE, VDEV_STATE_CANT_OPEN,
1173789Sahrens 			    VDEV_AUX_CORRUPT_DATA);
1174789Sahrens 			nvlist_free(label);
1175789Sahrens 			return (0);
1176789Sahrens 		}
1177789Sahrens 
1178789Sahrens 		if (state != POOL_STATE_ACTIVE &&
11791544Seschrock 		    (spa->spa_load_state == SPA_LOAD_OPEN ||
11801631Sdarrenm 		    (state != POOL_STATE_EXPORTED &&
11811631Sdarrenm 		    state != POOL_STATE_DESTROYED))) {
1182789Sahrens 			dprintf("pool state not active (%llu)\n", state);
1183789Sahrens 			nvlist_free(label);
1184789Sahrens 			return (EBADF);
1185789Sahrens 		}
1186789Sahrens 
1187789Sahrens 		nvlist_free(label);
1188789Sahrens 	}
1189789Sahrens 
1190789Sahrens 	/*
11911585Sbonwick 	 * If this is a top-level vdev, initialize its metaslabs.
1192789Sahrens 	 */
1193789Sahrens 	if (vd == vd->vdev_top) {
1194789Sahrens 
11951585Sbonwick 		if (vd->vdev_ashift == 0 || vd->vdev_asize == 0) {
11961544Seschrock 			vdev_set_state(vd, B_FALSE, VDEV_STATE_CANT_OPEN,
1197789Sahrens 			    VDEV_AUX_CORRUPT_DATA);
1198789Sahrens 			return (0);
1199789Sahrens 		}
1200789Sahrens 
12011544Seschrock 		if ((error = vdev_metaslab_init(vd, 0)) != 0) {
12021544Seschrock 			vdev_set_state(vd, B_FALSE, VDEV_STATE_CANT_OPEN,
12031544Seschrock 			    VDEV_AUX_CORRUPT_DATA);
12041544Seschrock 			return (0);
12051544Seschrock 		}
1206789Sahrens 	}
1207789Sahrens 
1208789Sahrens 	/*
1209789Sahrens 	 * If this is a leaf vdev, load its DTL.
1210789Sahrens 	 */
1211789Sahrens 	if (vd->vdev_ops->vdev_op_leaf) {
1212789Sahrens 		error = vdev_dtl_load(vd);
1213789Sahrens 		if (error) {
1214789Sahrens 			dprintf("can't load DTL for %s, error %d\n",
1215789Sahrens 			    vdev_description(vd), error);
12161544Seschrock 			vdev_set_state(vd, B_FALSE, VDEV_STATE_CANT_OPEN,
1217789Sahrens 			    VDEV_AUX_CORRUPT_DATA);
1218789Sahrens 			return (0);
1219789Sahrens 		}
1220789Sahrens 	}
1221789Sahrens 
1222789Sahrens 	return (0);
1223789Sahrens }
1224789Sahrens 
1225789Sahrens void
1226789Sahrens vdev_sync_done(vdev_t *vd, uint64_t txg)
1227789Sahrens {
1228789Sahrens 	metaslab_t *msp;
1229789Sahrens 
1230789Sahrens 	dprintf("%s txg %llu\n", vdev_description(vd), txg);
1231789Sahrens 
1232789Sahrens 	while (msp = txg_list_remove(&vd->vdev_ms_list, TXG_CLEAN(txg)))
1233789Sahrens 		metaslab_sync_done(msp, txg);
1234789Sahrens }
1235789Sahrens 
1236789Sahrens void
1237789Sahrens vdev_sync(vdev_t *vd, uint64_t txg)
1238789Sahrens {
1239789Sahrens 	spa_t *spa = vd->vdev_spa;
1240789Sahrens 	vdev_t *lvd;
1241789Sahrens 	metaslab_t *msp;
12421732Sbonwick 	dmu_tx_t *tx;
1243789Sahrens 
1244789Sahrens 	dprintf("%s txg %llu pass %d\n",
1245789Sahrens 	    vdev_description(vd), (u_longlong_t)txg, spa_sync_pass(spa));
1246789Sahrens 
12471732Sbonwick 	if (vd->vdev_ms_array == 0 && vd->vdev_ms_shift != 0) {
12481732Sbonwick 		ASSERT(vd == vd->vdev_top);
12491732Sbonwick 		tx = dmu_tx_create_assigned(spa->spa_dsl_pool, txg);
12501732Sbonwick 		vd->vdev_ms_array = dmu_object_alloc(spa->spa_meta_objset,
12511732Sbonwick 		    DMU_OT_OBJECT_ARRAY, 0, DMU_OT_NONE, 0, tx);
12521732Sbonwick 		ASSERT(vd->vdev_ms_array != 0);
12531732Sbonwick 		vdev_config_dirty(vd);
12541732Sbonwick 		dmu_tx_commit(tx);
12551732Sbonwick 	}
1256789Sahrens 
12571732Sbonwick 	while ((msp = txg_list_remove(&vd->vdev_ms_list, txg)) != NULL) {
1258789Sahrens 		metaslab_sync(msp, txg);
12591732Sbonwick 		(void) txg_list_add(&vd->vdev_ms_list, msp, TXG_CLEAN(txg));
12601732Sbonwick 	}
1261789Sahrens 
1262789Sahrens 	while ((lvd = txg_list_remove(&vd->vdev_dtl_list, txg)) != NULL)
1263789Sahrens 		vdev_dtl_sync(lvd, txg);
1264789Sahrens 
1265789Sahrens 	(void) txg_list_add(&spa->spa_vdev_txg_list, vd, TXG_CLEAN(txg));
1266789Sahrens }
1267789Sahrens 
1268789Sahrens uint64_t
1269789Sahrens vdev_psize_to_asize(vdev_t *vd, uint64_t psize)
1270789Sahrens {
1271789Sahrens 	return (vd->vdev_ops->vdev_op_asize(vd, psize));
1272789Sahrens }
1273789Sahrens 
1274789Sahrens void
1275789Sahrens vdev_io_start(zio_t *zio)
1276789Sahrens {
1277789Sahrens 	zio->io_vd->vdev_ops->vdev_op_io_start(zio);
1278789Sahrens }
1279789Sahrens 
1280789Sahrens void
1281789Sahrens vdev_io_done(zio_t *zio)
1282789Sahrens {
1283789Sahrens 	zio->io_vd->vdev_ops->vdev_op_io_done(zio);
1284789Sahrens }
1285789Sahrens 
1286789Sahrens const char *
1287789Sahrens vdev_description(vdev_t *vd)
1288789Sahrens {
1289789Sahrens 	if (vd == NULL || vd->vdev_ops == NULL)
1290789Sahrens 		return ("<unknown>");
1291789Sahrens 
1292789Sahrens 	if (vd->vdev_path != NULL)
1293789Sahrens 		return (vd->vdev_path);
1294789Sahrens 
1295789Sahrens 	if (vd->vdev_parent == NULL)
1296789Sahrens 		return (spa_name(vd->vdev_spa));
1297789Sahrens 
1298789Sahrens 	return (vd->vdev_ops->vdev_op_type);
1299789Sahrens }
1300789Sahrens 
1301789Sahrens int
13021544Seschrock vdev_online(spa_t *spa, uint64_t guid)
1303789Sahrens {
13041485Slling 	vdev_t *rvd, *vd;
13051485Slling 	uint64_t txg;
1306789Sahrens 
13071485Slling 	txg = spa_vdev_enter(spa);
13081485Slling 
13091485Slling 	rvd = spa->spa_root_vdev;
13101585Sbonwick 
13111544Seschrock 	if ((vd = vdev_lookup_by_guid(rvd, guid)) == NULL)
13121485Slling 		return (spa_vdev_exit(spa, NULL, txg, ENODEV));
1313789Sahrens 
13141585Sbonwick 	if (!vd->vdev_ops->vdev_op_leaf)
13151585Sbonwick 		return (spa_vdev_exit(spa, NULL, txg, ENOTSUP));
13161585Sbonwick 
1317789Sahrens 	dprintf("ONLINE: %s\n", vdev_description(vd));
1318789Sahrens 
1319789Sahrens 	vd->vdev_offline = B_FALSE;
13201485Slling 	vd->vdev_tmpoffline = B_FALSE;
13211544Seschrock 	vdev_reopen(vd->vdev_top);
1322789Sahrens 
13231485Slling 	vdev_config_dirty(vd->vdev_top);
13241485Slling 
13251485Slling 	(void) spa_vdev_exit(spa, NULL, txg, 0);
1326789Sahrens 
1327789Sahrens 	VERIFY(spa_scrub(spa, POOL_SCRUB_RESILVER, B_TRUE) == 0);
1328789Sahrens 
1329789Sahrens 	return (0);
1330789Sahrens }
1331789Sahrens 
1332789Sahrens int
13331544Seschrock vdev_offline(spa_t *spa, uint64_t guid, int istmp)
1334789Sahrens {
13351485Slling 	vdev_t *rvd, *vd;
13361485Slling 	uint64_t txg;
1337789Sahrens 
13381485Slling 	txg = spa_vdev_enter(spa);
1339789Sahrens 
13401485Slling 	rvd = spa->spa_root_vdev;
13411585Sbonwick 
13421544Seschrock 	if ((vd = vdev_lookup_by_guid(rvd, guid)) == NULL)
13431485Slling 		return (spa_vdev_exit(spa, NULL, txg, ENODEV));
1344789Sahrens 
13451585Sbonwick 	if (!vd->vdev_ops->vdev_op_leaf)
13461585Sbonwick 		return (spa_vdev_exit(spa, NULL, txg, ENOTSUP));
13471585Sbonwick 
1348789Sahrens 	dprintf("OFFLINE: %s\n", vdev_description(vd));
1349789Sahrens 
1350789Sahrens 	/*
13511732Sbonwick 	 * If the device isn't already offline, try to offline it.
1352789Sahrens 	 */
13531732Sbonwick 	if (!vd->vdev_offline) {
13541732Sbonwick 		/*
13551732Sbonwick 		 * If this device's top-level vdev has a non-empty DTL,
13561732Sbonwick 		 * don't allow the device to be offlined.
13571732Sbonwick 		 *
13581732Sbonwick 		 * XXX -- make this more precise by allowing the offline
13591732Sbonwick 		 * as long as the remaining devices don't have any DTL holes.
13601732Sbonwick 		 */
13611732Sbonwick 		if (vd->vdev_top->vdev_dtl_map.sm_space != 0)
13621732Sbonwick 			return (spa_vdev_exit(spa, NULL, txg, EBUSY));
1363789Sahrens 
13641732Sbonwick 		/*
13651732Sbonwick 		 * Offline this device and reopen its top-level vdev.
13661732Sbonwick 		 * If this action results in the top-level vdev becoming
13671732Sbonwick 		 * unusable, undo it and fail the request.
13681732Sbonwick 		 */
13691732Sbonwick 		vd->vdev_offline = B_TRUE;
13701544Seschrock 		vdev_reopen(vd->vdev_top);
13711732Sbonwick 		if (vdev_is_dead(vd->vdev_top)) {
13721732Sbonwick 			vd->vdev_offline = B_FALSE;
13731732Sbonwick 			vdev_reopen(vd->vdev_top);
13741732Sbonwick 			return (spa_vdev_exit(spa, NULL, txg, EBUSY));
13751732Sbonwick 		}
1376789Sahrens 	}
1377789Sahrens 
13781485Slling 	vd->vdev_tmpoffline = istmp;
13791732Sbonwick 
13801732Sbonwick 	vdev_config_dirty(vd->vdev_top);
13811485Slling 
13821485Slling 	return (spa_vdev_exit(spa, NULL, txg, 0));
1383789Sahrens }
1384789Sahrens 
13851544Seschrock /*
13861544Seschrock  * Clear the error counts associated with this vdev.  Unlike vdev_online() and
13871544Seschrock  * vdev_offline(), we assume the spa config is locked.  We also clear all
13881544Seschrock  * children.  If 'vd' is NULL, then the user wants to clear all vdevs.
13891544Seschrock  */
13901544Seschrock void
13911544Seschrock vdev_clear(spa_t *spa, vdev_t *vd)
1392789Sahrens {
13931544Seschrock 	int c;
1394789Sahrens 
13951544Seschrock 	if (vd == NULL)
13961544Seschrock 		vd = spa->spa_root_vdev;
1397789Sahrens 
13981544Seschrock 	vd->vdev_stat.vs_read_errors = 0;
13991544Seschrock 	vd->vdev_stat.vs_write_errors = 0;
14001544Seschrock 	vd->vdev_stat.vs_checksum_errors = 0;
1401789Sahrens 
14021544Seschrock 	for (c = 0; c < vd->vdev_children; c++)
14031544Seschrock 		vdev_clear(spa, vd->vdev_child[c]);
1404789Sahrens }
1405789Sahrens 
1406789Sahrens int
1407789Sahrens vdev_is_dead(vdev_t *vd)
1408789Sahrens {
1409789Sahrens 	return (vd->vdev_state <= VDEV_STATE_CANT_OPEN);
1410789Sahrens }
1411789Sahrens 
1412789Sahrens int
1413789Sahrens vdev_error_inject(vdev_t *vd, zio_t *zio)
1414789Sahrens {
1415789Sahrens 	int error = 0;
1416789Sahrens 
1417789Sahrens 	if (vd->vdev_fault_mode == VDEV_FAULT_NONE)
1418789Sahrens 		return (0);
1419789Sahrens 
1420789Sahrens 	if (((1ULL << zio->io_type) & vd->vdev_fault_mask) == 0)
1421789Sahrens 		return (0);
1422789Sahrens 
1423789Sahrens 	switch (vd->vdev_fault_mode) {
1424789Sahrens 	case VDEV_FAULT_RANDOM:
1425789Sahrens 		if (spa_get_random(vd->vdev_fault_arg) == 0)
1426789Sahrens 			error = EIO;
1427789Sahrens 		break;
1428789Sahrens 
1429789Sahrens 	case VDEV_FAULT_COUNT:
1430789Sahrens 		if ((int64_t)--vd->vdev_fault_arg <= 0)
1431789Sahrens 			vd->vdev_fault_mode = VDEV_FAULT_NONE;
1432789Sahrens 		error = EIO;
1433789Sahrens 		break;
1434789Sahrens 	}
1435789Sahrens 
1436789Sahrens 	if (error != 0) {
1437789Sahrens 		dprintf("returning %d for type %d on %s state %d offset %llx\n",
1438789Sahrens 		    error, zio->io_type, vdev_description(vd),
1439789Sahrens 		    vd->vdev_state, zio->io_offset);
1440789Sahrens 	}
1441789Sahrens 
1442789Sahrens 	return (error);
1443789Sahrens }
1444789Sahrens 
1445789Sahrens /*
1446789Sahrens  * Get statistics for the given vdev.
1447789Sahrens  */
1448789Sahrens void
1449789Sahrens vdev_get_stats(vdev_t *vd, vdev_stat_t *vs)
1450789Sahrens {
1451789Sahrens 	vdev_t *rvd = vd->vdev_spa->spa_root_vdev;
1452789Sahrens 	int c, t;
1453789Sahrens 
1454789Sahrens 	mutex_enter(&vd->vdev_stat_lock);
1455789Sahrens 	bcopy(&vd->vdev_stat, vs, sizeof (*vs));
1456789Sahrens 	vs->vs_timestamp = gethrtime() - vs->vs_timestamp;
1457789Sahrens 	vs->vs_state = vd->vdev_state;
14581175Slling 	vs->vs_rsize = vdev_get_rsize(vd);
1459789Sahrens 	mutex_exit(&vd->vdev_stat_lock);
1460789Sahrens 
1461789Sahrens 	/*
1462789Sahrens 	 * If we're getting stats on the root vdev, aggregate the I/O counts
1463789Sahrens 	 * over all top-level vdevs (i.e. the direct children of the root).
1464789Sahrens 	 */
1465789Sahrens 	if (vd == rvd) {
1466789Sahrens 		for (c = 0; c < rvd->vdev_children; c++) {
1467789Sahrens 			vdev_t *cvd = rvd->vdev_child[c];
1468789Sahrens 			vdev_stat_t *cvs = &cvd->vdev_stat;
1469789Sahrens 
1470789Sahrens 			mutex_enter(&vd->vdev_stat_lock);
1471789Sahrens 			for (t = 0; t < ZIO_TYPES; t++) {
1472789Sahrens 				vs->vs_ops[t] += cvs->vs_ops[t];
1473789Sahrens 				vs->vs_bytes[t] += cvs->vs_bytes[t];
1474789Sahrens 			}
1475789Sahrens 			vs->vs_read_errors += cvs->vs_read_errors;
1476789Sahrens 			vs->vs_write_errors += cvs->vs_write_errors;
1477789Sahrens 			vs->vs_checksum_errors += cvs->vs_checksum_errors;
1478789Sahrens 			vs->vs_scrub_examined += cvs->vs_scrub_examined;
1479789Sahrens 			vs->vs_scrub_errors += cvs->vs_scrub_errors;
1480789Sahrens 			mutex_exit(&vd->vdev_stat_lock);
1481789Sahrens 		}
1482789Sahrens 	}
1483789Sahrens }
1484789Sahrens 
1485789Sahrens void
1486789Sahrens vdev_stat_update(zio_t *zio)
1487789Sahrens {
1488789Sahrens 	vdev_t *vd = zio->io_vd;
1489789Sahrens 	vdev_t *pvd;
1490789Sahrens 	uint64_t txg = zio->io_txg;
1491789Sahrens 	vdev_stat_t *vs = &vd->vdev_stat;
1492789Sahrens 	zio_type_t type = zio->io_type;
1493789Sahrens 	int flags = zio->io_flags;
1494789Sahrens 
1495789Sahrens 	if (zio->io_error == 0) {
1496789Sahrens 		if (!(flags & ZIO_FLAG_IO_BYPASS)) {
1497789Sahrens 			mutex_enter(&vd->vdev_stat_lock);
1498789Sahrens 			vs->vs_ops[type]++;
1499789Sahrens 			vs->vs_bytes[type] += zio->io_size;
1500789Sahrens 			mutex_exit(&vd->vdev_stat_lock);
1501789Sahrens 		}
1502789Sahrens 		if ((flags & ZIO_FLAG_IO_REPAIR) &&
1503789Sahrens 		    zio->io_delegate_list == NULL) {
1504789Sahrens 			mutex_enter(&vd->vdev_stat_lock);
1505*1807Sbonwick 			if (flags & ZIO_FLAG_SCRUB_THREAD)
1506789Sahrens 				vs->vs_scrub_repaired += zio->io_size;
1507789Sahrens 			else
1508789Sahrens 				vs->vs_self_healed += zio->io_size;
1509789Sahrens 			mutex_exit(&vd->vdev_stat_lock);
1510789Sahrens 		}
1511789Sahrens 		return;
1512789Sahrens 	}
1513789Sahrens 
1514789Sahrens 	if (flags & ZIO_FLAG_SPECULATIVE)
1515789Sahrens 		return;
1516789Sahrens 
1517789Sahrens 	if (!vdev_is_dead(vd)) {
1518789Sahrens 		mutex_enter(&vd->vdev_stat_lock);
1519789Sahrens 		if (type == ZIO_TYPE_READ) {
1520789Sahrens 			if (zio->io_error == ECKSUM)
1521789Sahrens 				vs->vs_checksum_errors++;
1522789Sahrens 			else
1523789Sahrens 				vs->vs_read_errors++;
1524789Sahrens 		}
1525789Sahrens 		if (type == ZIO_TYPE_WRITE)
1526789Sahrens 			vs->vs_write_errors++;
1527789Sahrens 		mutex_exit(&vd->vdev_stat_lock);
1528789Sahrens 	}
1529789Sahrens 
1530789Sahrens 	if (type == ZIO_TYPE_WRITE) {
1531789Sahrens 		if (txg == 0 || vd->vdev_children != 0)
1532789Sahrens 			return;
1533*1807Sbonwick 		if (flags & ZIO_FLAG_SCRUB_THREAD) {
1534789Sahrens 			ASSERT(flags & ZIO_FLAG_IO_REPAIR);
1535789Sahrens 			for (pvd = vd; pvd != NULL; pvd = pvd->vdev_parent)
1536789Sahrens 				vdev_dtl_dirty(&pvd->vdev_dtl_scrub, txg, 1);
1537789Sahrens 		}
1538789Sahrens 		if (!(flags & ZIO_FLAG_IO_REPAIR)) {
1539789Sahrens 			if (vdev_dtl_contains(&vd->vdev_dtl_map, txg, 1))
1540789Sahrens 				return;
15411732Sbonwick 			vdev_dirty(vd->vdev_top, VDD_DTL, vd, txg);
1542789Sahrens 			for (pvd = vd; pvd != NULL; pvd = pvd->vdev_parent)
1543789Sahrens 				vdev_dtl_dirty(&pvd->vdev_dtl_map, txg, 1);
1544789Sahrens 		}
1545789Sahrens 	}
1546789Sahrens }
1547789Sahrens 
1548789Sahrens void
1549789Sahrens vdev_scrub_stat_update(vdev_t *vd, pool_scrub_type_t type, boolean_t complete)
1550789Sahrens {
1551789Sahrens 	int c;
1552789Sahrens 	vdev_stat_t *vs = &vd->vdev_stat;
1553789Sahrens 
1554789Sahrens 	for (c = 0; c < vd->vdev_children; c++)
1555789Sahrens 		vdev_scrub_stat_update(vd->vdev_child[c], type, complete);
1556789Sahrens 
1557789Sahrens 	mutex_enter(&vd->vdev_stat_lock);
1558789Sahrens 
1559789Sahrens 	if (type == POOL_SCRUB_NONE) {
1560789Sahrens 		/*
1561789Sahrens 		 * Update completion and end time.  Leave everything else alone
1562789Sahrens 		 * so we can report what happened during the previous scrub.
1563789Sahrens 		 */
1564789Sahrens 		vs->vs_scrub_complete = complete;
1565789Sahrens 		vs->vs_scrub_end = gethrestime_sec();
1566789Sahrens 	} else {
1567789Sahrens 		vs->vs_scrub_type = type;
1568789Sahrens 		vs->vs_scrub_complete = 0;
1569789Sahrens 		vs->vs_scrub_examined = 0;
1570789Sahrens 		vs->vs_scrub_repaired = 0;
1571789Sahrens 		vs->vs_scrub_errors = 0;
1572789Sahrens 		vs->vs_scrub_start = gethrestime_sec();
1573789Sahrens 		vs->vs_scrub_end = 0;
1574789Sahrens 	}
1575789Sahrens 
1576789Sahrens 	mutex_exit(&vd->vdev_stat_lock);
1577789Sahrens }
1578789Sahrens 
1579789Sahrens /*
1580789Sahrens  * Update the in-core space usage stats for this vdev and the root vdev.
1581789Sahrens  */
1582789Sahrens void
1583789Sahrens vdev_space_update(vdev_t *vd, uint64_t space_delta, uint64_t alloc_delta)
1584789Sahrens {
1585789Sahrens 	ASSERT(vd == vd->vdev_top);
1586789Sahrens 
1587789Sahrens 	do {
1588789Sahrens 		mutex_enter(&vd->vdev_stat_lock);
1589789Sahrens 		vd->vdev_stat.vs_space += space_delta;
1590789Sahrens 		vd->vdev_stat.vs_alloc += alloc_delta;
1591789Sahrens 		mutex_exit(&vd->vdev_stat_lock);
1592789Sahrens 	} while ((vd = vd->vdev_parent) != NULL);
1593789Sahrens }
1594789Sahrens 
1595789Sahrens /*
1596789Sahrens  * Various knobs to tune a vdev.
1597789Sahrens  */
1598789Sahrens static vdev_knob_t vdev_knob[] = {
1599789Sahrens 	{
1600789Sahrens 		"cache_size",
1601789Sahrens 		"size of the read-ahead cache",
1602789Sahrens 		0,
1603789Sahrens 		1ULL << 30,
1604789Sahrens 		10ULL << 20,
1605789Sahrens 		offsetof(struct vdev, vdev_cache.vc_size)
1606789Sahrens 	},
1607789Sahrens 	{
1608789Sahrens 		"cache_bshift",
1609789Sahrens 		"log2 of cache blocksize",
1610789Sahrens 		SPA_MINBLOCKSHIFT,
1611789Sahrens 		SPA_MAXBLOCKSHIFT,
1612789Sahrens 		16,
1613789Sahrens 		offsetof(struct vdev, vdev_cache.vc_bshift)
1614789Sahrens 	},
1615789Sahrens 	{
1616789Sahrens 		"cache_max",
1617789Sahrens 		"largest block size to cache",
1618789Sahrens 		0,
1619789Sahrens 		SPA_MAXBLOCKSIZE,
1620789Sahrens 		1ULL << 14,
1621789Sahrens 		offsetof(struct vdev, vdev_cache.vc_max)
1622789Sahrens 	},
1623789Sahrens 	{
1624789Sahrens 		"min_pending",
1625789Sahrens 		"minimum pending I/Os to the disk",
1626789Sahrens 		1,
1627789Sahrens 		10000,
1628789Sahrens 		2,
1629789Sahrens 		offsetof(struct vdev, vdev_queue.vq_min_pending)
1630789Sahrens 	},
1631789Sahrens 	{
1632789Sahrens 		"max_pending",
1633789Sahrens 		"maximum pending I/Os to the disk",
1634789Sahrens 		1,
1635789Sahrens 		10000,
1636789Sahrens 		35,
1637789Sahrens 		offsetof(struct vdev, vdev_queue.vq_max_pending)
1638789Sahrens 	},
1639789Sahrens 	{
16401544Seschrock 		"scrub_limit",
16411544Seschrock 		"maximum scrub/resilver I/O queue",
16421544Seschrock 		0,
16431544Seschrock 		10000,
16441544Seschrock 		70,
16451544Seschrock 		offsetof(struct vdev, vdev_queue.vq_scrub_limit)
16461544Seschrock 	},
16471544Seschrock 	{
1648789Sahrens 		"agg_limit",
1649789Sahrens 		"maximum size of aggregated I/Os",
1650789Sahrens 		0,
1651789Sahrens 		SPA_MAXBLOCKSIZE,
1652789Sahrens 		SPA_MAXBLOCKSIZE,
1653789Sahrens 		offsetof(struct vdev, vdev_queue.vq_agg_limit)
1654789Sahrens 	},
1655789Sahrens 	{
1656789Sahrens 		"time_shift",
1657789Sahrens 		"deadline = pri + (lbolt >> time_shift)",
1658789Sahrens 		0,
1659789Sahrens 		63,
1660789Sahrens 		4,
1661789Sahrens 		offsetof(struct vdev, vdev_queue.vq_time_shift)
1662789Sahrens 	},
1663789Sahrens 	{
1664789Sahrens 		"ramp_rate",
1665789Sahrens 		"exponential I/O issue ramp-up rate",
1666789Sahrens 		1,
1667789Sahrens 		10000,
1668789Sahrens 		2,
1669789Sahrens 		offsetof(struct vdev, vdev_queue.vq_ramp_rate)
1670789Sahrens 	},
1671789Sahrens };
1672789Sahrens 
1673789Sahrens vdev_knob_t *
1674789Sahrens vdev_knob_next(vdev_knob_t *vk)
1675789Sahrens {
1676789Sahrens 	if (vk == NULL)
1677789Sahrens 		return (vdev_knob);
1678789Sahrens 
1679789Sahrens 	if (++vk == vdev_knob + sizeof (vdev_knob) / sizeof (vdev_knob_t))
1680789Sahrens 		return (NULL);
1681789Sahrens 
1682789Sahrens 	return (vk);
1683789Sahrens }
1684789Sahrens 
1685789Sahrens /*
1686789Sahrens  * Mark a top-level vdev's config as dirty, placing it on the dirty list
1687789Sahrens  * so that it will be written out next time the vdev configuration is synced.
1688789Sahrens  * If the root vdev is specified (vdev_top == NULL), dirty all top-level vdevs.
1689789Sahrens  */
1690789Sahrens void
1691789Sahrens vdev_config_dirty(vdev_t *vd)
1692789Sahrens {
1693789Sahrens 	spa_t *spa = vd->vdev_spa;
1694789Sahrens 	vdev_t *rvd = spa->spa_root_vdev;
1695789Sahrens 	int c;
1696789Sahrens 
16971601Sbonwick 	/*
16981601Sbonwick 	 * The dirty list is protected by the config lock.  The caller must
16991601Sbonwick 	 * either hold the config lock as writer, or must be the sync thread
17001601Sbonwick 	 * (which holds the lock as reader).  There's only one sync thread,
17011601Sbonwick 	 * so this is sufficient to ensure mutual exclusion.
17021601Sbonwick 	 */
17031601Sbonwick 	ASSERT(spa_config_held(spa, RW_WRITER) ||
17041601Sbonwick 	    dsl_pool_sync_context(spa_get_dsl(spa)));
17051601Sbonwick 
1706789Sahrens 	if (vd == rvd) {
1707789Sahrens 		for (c = 0; c < rvd->vdev_children; c++)
1708789Sahrens 			vdev_config_dirty(rvd->vdev_child[c]);
1709789Sahrens 	} else {
1710789Sahrens 		ASSERT(vd == vd->vdev_top);
1711789Sahrens 
17121732Sbonwick 		if (!list_link_active(&vd->vdev_dirty_node))
1713789Sahrens 			list_insert_head(&spa->spa_dirty_list, vd);
1714789Sahrens 	}
1715789Sahrens }
1716789Sahrens 
1717789Sahrens void
1718789Sahrens vdev_config_clean(vdev_t *vd)
1719789Sahrens {
17201601Sbonwick 	spa_t *spa = vd->vdev_spa;
17211601Sbonwick 
17221601Sbonwick 	ASSERT(spa_config_held(spa, RW_WRITER) ||
17231601Sbonwick 	    dsl_pool_sync_context(spa_get_dsl(spa)));
17241601Sbonwick 
17251732Sbonwick 	ASSERT(list_link_active(&vd->vdev_dirty_node));
17261601Sbonwick 	list_remove(&spa->spa_dirty_list, vd);
1727789Sahrens }
1728789Sahrens 
17291775Sbillm void
17301775Sbillm vdev_propagate_state(vdev_t *vd)
17311775Sbillm {
17321775Sbillm 	vdev_t *rvd = vd->vdev_spa->spa_root_vdev;
17331775Sbillm 	int degraded = 0, faulted = 0;
17341775Sbillm 	int corrupted = 0;
17351775Sbillm 	int c;
17361775Sbillm 	vdev_t *child;
17371775Sbillm 
17381775Sbillm 	for (c = 0; c < vd->vdev_children; c++) {
17391775Sbillm 		child = vd->vdev_child[c];
17401775Sbillm 		if (child->vdev_state <= VDEV_STATE_CANT_OPEN)
17411775Sbillm 			faulted++;
17421775Sbillm 		else if (child->vdev_state == VDEV_STATE_DEGRADED)
17431775Sbillm 			degraded++;
17441775Sbillm 
17451775Sbillm 		if (child->vdev_stat.vs_aux == VDEV_AUX_CORRUPT_DATA)
17461775Sbillm 			corrupted++;
17471775Sbillm 	}
17481775Sbillm 
17491775Sbillm 	vd->vdev_ops->vdev_op_state_change(vd, faulted, degraded);
17501775Sbillm 
17511775Sbillm 	/*
17521775Sbillm 	 * Root special: if there is a toplevel vdev that cannot be
17531775Sbillm 	 * opened due to corrupted metadata, then propagate the root
17541775Sbillm 	 * vdev's aux state as 'corrupt' rather than 'insufficient
17551775Sbillm 	 * replicas'.
17561775Sbillm 	 */
17571775Sbillm 	if (corrupted && vd == rvd && rvd->vdev_state == VDEV_STATE_CANT_OPEN)
17581775Sbillm 		vdev_set_state(rvd, B_FALSE, VDEV_STATE_CANT_OPEN,
17591775Sbillm 		    VDEV_AUX_CORRUPT_DATA);
17601775Sbillm }
17611775Sbillm 
1762789Sahrens /*
17631544Seschrock  * Set a vdev's state.  If this is during an open, we don't update the parent
17641544Seschrock  * state, because we're in the process of opening children depth-first.
17651544Seschrock  * Otherwise, we propagate the change to the parent.
17661544Seschrock  *
17671544Seschrock  * If this routine places a device in a faulted state, an appropriate ereport is
17681544Seschrock  * generated.
1769789Sahrens  */
1770789Sahrens void
17711544Seschrock vdev_set_state(vdev_t *vd, boolean_t isopen, vdev_state_t state, vdev_aux_t aux)
1772789Sahrens {
17731544Seschrock 	uint64_t prev_state;
17741544Seschrock 
17751544Seschrock 	if (state == vd->vdev_state) {
17761544Seschrock 		vd->vdev_stat.vs_aux = aux;
1777789Sahrens 		return;
17781544Seschrock 	}
17791544Seschrock 
17801544Seschrock 	prev_state = vd->vdev_state;
1781789Sahrens 
1782789Sahrens 	vd->vdev_state = state;
1783789Sahrens 	vd->vdev_stat.vs_aux = aux;
1784789Sahrens 
17851544Seschrock 	if (state == VDEV_STATE_CANT_OPEN) {
17861544Seschrock 		/*
17871544Seschrock 		 * If we fail to open a vdev during an import, we mark it as
17881544Seschrock 		 * "not available", which signifies that it was never there to
17891544Seschrock 		 * begin with.  Failure to open such a device is not considered
17901544Seschrock 		 * an error.
17911544Seschrock 		 */
17921544Seschrock 		if (!vd->vdev_not_present &&
17931544Seschrock 		    vd != vd->vdev_spa->spa_root_vdev) {
17941544Seschrock 			const char *class;
17951544Seschrock 
17961544Seschrock 			switch (aux) {
17971544Seschrock 			case VDEV_AUX_OPEN_FAILED:
17981544Seschrock 				class = FM_EREPORT_ZFS_DEVICE_OPEN_FAILED;
17991544Seschrock 				break;
18001544Seschrock 			case VDEV_AUX_CORRUPT_DATA:
18011544Seschrock 				class = FM_EREPORT_ZFS_DEVICE_CORRUPT_DATA;
18021544Seschrock 				break;
18031544Seschrock 			case VDEV_AUX_NO_REPLICAS:
18041544Seschrock 				class = FM_EREPORT_ZFS_DEVICE_NO_REPLICAS;
18051544Seschrock 				break;
18061544Seschrock 			case VDEV_AUX_BAD_GUID_SUM:
18071544Seschrock 				class = FM_EREPORT_ZFS_DEVICE_BAD_GUID_SUM;
18081544Seschrock 				break;
18091544Seschrock 			case VDEV_AUX_TOO_SMALL:
18101544Seschrock 				class = FM_EREPORT_ZFS_DEVICE_TOO_SMALL;
18111544Seschrock 				break;
18121544Seschrock 			case VDEV_AUX_BAD_LABEL:
18131544Seschrock 				class = FM_EREPORT_ZFS_DEVICE_BAD_LABEL;
18141544Seschrock 				break;
18151544Seschrock 			default:
18161544Seschrock 				class = FM_EREPORT_ZFS_DEVICE_UNKNOWN;
18171544Seschrock 			}
18181544Seschrock 
18191544Seschrock 			zfs_ereport_post(class, vd->vdev_spa,
18201544Seschrock 			    vd, NULL, prev_state, 0);
18211544Seschrock 		}
18221544Seschrock 
18231544Seschrock 		if (vd->vdev_spa->spa_load_state == SPA_LOAD_IMPORT &&
18241544Seschrock 		    vd->vdev_ops->vdev_op_leaf)
18251544Seschrock 			vd->vdev_not_present = 1;
18261544Seschrock 	}
18271544Seschrock 
18281544Seschrock 	if (isopen)
18291544Seschrock 		return;
18301544Seschrock 
18311775Sbillm 	if (vd->vdev_parent != NULL)
18321775Sbillm 		vdev_propagate_state(vd->vdev_parent);
1833789Sahrens }
1834