xref: /freebsd/stand/libsa/zfs/zfsimpl.c (revision 2e6bb6553b04d80cf85c9728df6aa4dc66dc020a)
1b8902de1SWarner Losh /*-
2b8902de1SWarner Losh  * Copyright (c) 2007 Doug Rabson
3b8902de1SWarner Losh  * All rights reserved.
4b8902de1SWarner Losh  *
5b8902de1SWarner Losh  * Redistribution and use in source and binary forms, with or without
6b8902de1SWarner Losh  * modification, are permitted provided that the following conditions
7b8902de1SWarner Losh  * are met:
8b8902de1SWarner Losh  * 1. Redistributions of source code must retain the above copyright
9b8902de1SWarner Losh  *    notice, this list of conditions and the following disclaimer.
10b8902de1SWarner Losh  * 2. Redistributions in binary form must reproduce the above copyright
11b8902de1SWarner Losh  *    notice, this list of conditions and the following disclaimer in the
12b8902de1SWarner Losh  *    documentation and/or other materials provided with the distribution.
13b8902de1SWarner Losh  *
14b8902de1SWarner Losh  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
15b8902de1SWarner Losh  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
16b8902de1SWarner Losh  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
17b8902de1SWarner Losh  * ARE DISCLAIMED.  IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
18b8902de1SWarner Losh  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
19b8902de1SWarner Losh  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
20b8902de1SWarner Losh  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
21b8902de1SWarner Losh  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
22b8902de1SWarner Losh  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
23b8902de1SWarner Losh  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
24b8902de1SWarner Losh  * SUCH DAMAGE.
25b8902de1SWarner Losh  */
26b8902de1SWarner Losh 
27b8902de1SWarner Losh #include <sys/cdefs.h>
28b8902de1SWarner Losh __FBSDID("$FreeBSD$");
29b8902de1SWarner Losh 
30b8902de1SWarner Losh /*
31b8902de1SWarner Losh  *	Stand-alone ZFS file reader.
32b8902de1SWarner Losh  */
33b8902de1SWarner Losh 
3412d62cc2SXin LI #include <sys/endian.h>
35b8902de1SWarner Losh #include <sys/stat.h>
36b8902de1SWarner Losh #include <sys/stdint.h>
37b1b93268SToomas Soome #include <sys/list.h>
38b8902de1SWarner Losh 
39b8902de1SWarner Losh #include "zfsimpl.h"
40b8902de1SWarner Losh #include "zfssubr.c"
41b8902de1SWarner Losh 
42b8902de1SWarner Losh 
43b8902de1SWarner Losh struct zfsmount {
44b8902de1SWarner Losh 	const spa_t	*spa;
45b8902de1SWarner Losh 	objset_phys_t	objset;
46b8902de1SWarner Losh 	uint64_t	rootobj;
47b8902de1SWarner Losh };
48b8902de1SWarner Losh static struct zfsmount zfsmount __unused;
49b8902de1SWarner Losh 
50b8902de1SWarner Losh /*
51b1b93268SToomas Soome  * The indirect_child_t represents the vdev that we will read from, when we
52b1b93268SToomas Soome  * need to read all copies of the data (e.g. for scrub or reconstruction).
53b1b93268SToomas Soome  * For plain (non-mirror) top-level vdevs (i.e. is_vdev is not a mirror),
54b1b93268SToomas Soome  * ic_vdev is the same as is_vdev.  However, for mirror top-level vdevs,
55b1b93268SToomas Soome  * ic_vdev is a child of the mirror.
56b1b93268SToomas Soome  */
57b1b93268SToomas Soome typedef struct indirect_child {
58b1b93268SToomas Soome 	void *ic_data;
59b1b93268SToomas Soome 	vdev_t *ic_vdev;
60b1b93268SToomas Soome } indirect_child_t;
61b1b93268SToomas Soome 
62b1b93268SToomas Soome /*
63b1b93268SToomas Soome  * The indirect_split_t represents one mapped segment of an i/o to the
64b1b93268SToomas Soome  * indirect vdev. For non-split (contiguously-mapped) blocks, there will be
65b1b93268SToomas Soome  * only one indirect_split_t, with is_split_offset==0 and is_size==io_size.
66b1b93268SToomas Soome  * For split blocks, there will be several of these.
67b1b93268SToomas Soome  */
68b1b93268SToomas Soome typedef struct indirect_split {
69b1b93268SToomas Soome 	list_node_t is_node; /* link on iv_splits */
70b1b93268SToomas Soome 
71b1b93268SToomas Soome 	/*
72b1b93268SToomas Soome 	 * is_split_offset is the offset into the i/o.
73b1b93268SToomas Soome 	 * This is the sum of the previous splits' is_size's.
74b1b93268SToomas Soome 	 */
75b1b93268SToomas Soome 	uint64_t is_split_offset;
76b1b93268SToomas Soome 
77b1b93268SToomas Soome 	vdev_t *is_vdev; /* top-level vdev */
78b1b93268SToomas Soome 	uint64_t is_target_offset; /* offset on is_vdev */
79b1b93268SToomas Soome 	uint64_t is_size;
80b1b93268SToomas Soome 	int is_children; /* number of entries in is_child[] */
81b1b93268SToomas Soome 
82b1b93268SToomas Soome 	/*
83b1b93268SToomas Soome 	 * is_good_child is the child that we are currently using to
84b1b93268SToomas Soome 	 * attempt reconstruction.
85b1b93268SToomas Soome 	 */
86b1b93268SToomas Soome 	int is_good_child;
87b1b93268SToomas Soome 
88b1b93268SToomas Soome 	indirect_child_t is_child[1]; /* variable-length */
89b1b93268SToomas Soome } indirect_split_t;
90b1b93268SToomas Soome 
91b1b93268SToomas Soome /*
92b1b93268SToomas Soome  * The indirect_vsd_t is associated with each i/o to the indirect vdev.
93b1b93268SToomas Soome  * It is the "Vdev-Specific Data" in the zio_t's io_vsd.
94b1b93268SToomas Soome  */
95b1b93268SToomas Soome typedef struct indirect_vsd {
96b1b93268SToomas Soome 	boolean_t iv_split_block;
97b1b93268SToomas Soome 	boolean_t iv_reconstruct;
98b1b93268SToomas Soome 
99b1b93268SToomas Soome 	list_t iv_splits; /* list of indirect_split_t's */
100b1b93268SToomas Soome } indirect_vsd_t;
101b1b93268SToomas Soome 
102b1b93268SToomas Soome /*
103b8902de1SWarner Losh  * List of all vdevs, chained through v_alllink.
104b8902de1SWarner Losh  */
105b8902de1SWarner Losh static vdev_list_t zfs_vdevs;
106b8902de1SWarner Losh 
107b8902de1SWarner Losh /*
108b8902de1SWarner Losh  * List of ZFS features supported for read
109b8902de1SWarner Losh  */
110b8902de1SWarner Losh static const char *features_for_read[] = {
111b8902de1SWarner Losh 	"org.illumos:lz4_compress",
112b8902de1SWarner Losh 	"com.delphix:hole_birth",
113b8902de1SWarner Losh 	"com.delphix:extensible_dataset",
114b8902de1SWarner Losh 	"com.delphix:embedded_data",
115b8902de1SWarner Losh 	"org.open-zfs:large_blocks",
116b8902de1SWarner Losh 	"org.illumos:sha512",
117b8902de1SWarner Losh 	"org.illumos:skein",
118b8902de1SWarner Losh 	"org.zfsonlinux:large_dnode",
1197c52f914SToomas Soome 	"com.joyent:multi_vdev_crash_dump",
1206459a61eSMatt Macy 	"com.delphix:spacemap_histogram",
1216459a61eSMatt Macy 	"com.delphix:zpool_checkpoint",
1226459a61eSMatt Macy 	"com.delphix:spacemap_v2",
1236459a61eSMatt Macy 	"com.datto:encryption",
1246459a61eSMatt Macy 	"org.zfsonlinux:allocation_classes",
1256459a61eSMatt Macy 	"com.datto:resilver_defer",
126b1b93268SToomas Soome 	"com.delphix:device_removal",
127b1b93268SToomas Soome 	"com.delphix:obsolete_counts",
128489912daSAndriy Gapon 	"com.intel:allocation_classes",
129b8902de1SWarner Losh 	NULL
130b8902de1SWarner Losh };
131b8902de1SWarner Losh 
132b8902de1SWarner Losh /*
133b8902de1SWarner Losh  * List of all pools, chained through spa_link.
134b8902de1SWarner Losh  */
135b8902de1SWarner Losh static spa_list_t zfs_pools;
136b8902de1SWarner Losh 
137b8902de1SWarner Losh static const dnode_phys_t *dnode_cache_obj;
138b8902de1SWarner Losh static uint64_t dnode_cache_bn;
139b8902de1SWarner Losh static char *dnode_cache_buf;
140b8902de1SWarner Losh static char *zap_scratch;
141b8902de1SWarner Losh static char *zfs_temp_buf, *zfs_temp_end, *zfs_temp_ptr;
142b8902de1SWarner Losh 
143b8902de1SWarner Losh #define	TEMP_SIZE	(1024 * 1024)
144b8902de1SWarner Losh 
145b8902de1SWarner Losh static int zio_read(const spa_t *spa, const blkptr_t *bp, void *buf);
146b8902de1SWarner Losh static int zfs_get_root(const spa_t *spa, uint64_t *objid);
147b8902de1SWarner Losh static int zfs_rlookup(const spa_t *spa, uint64_t objnum, char *result);
148b8902de1SWarner Losh static int zap_lookup(const spa_t *spa, const dnode_phys_t *dnode,
149b8902de1SWarner Losh     const char *name, uint64_t integer_size, uint64_t num_integers,
150b8902de1SWarner Losh     void *value);
151b1b93268SToomas Soome static int objset_get_dnode(const spa_t *, const objset_phys_t *, uint64_t,
152b1b93268SToomas Soome     dnode_phys_t *);
153b1b93268SToomas Soome static int dnode_read(const spa_t *, const dnode_phys_t *, off_t, void *,
154b1b93268SToomas Soome     size_t);
155b1b93268SToomas Soome static int vdev_indirect_read(vdev_t *, const blkptr_t *, void *, off_t,
156b1b93268SToomas Soome     size_t);
157b1b93268SToomas Soome static int vdev_mirror_read(vdev_t *, const blkptr_t *, void *, off_t, size_t);
158b1b93268SToomas Soome vdev_indirect_mapping_t *vdev_indirect_mapping_open(spa_t *, objset_phys_t *,
159b1b93268SToomas Soome     uint64_t);
160b1b93268SToomas Soome vdev_indirect_mapping_entry_phys_t *
161b1b93268SToomas Soome     vdev_indirect_mapping_duplicate_adjacent_entries(vdev_t *, uint64_t,
162b1b93268SToomas Soome     uint64_t, uint64_t *);
163b8902de1SWarner Losh 
164b8902de1SWarner Losh static void
165b8902de1SWarner Losh zfs_init(void)
166b8902de1SWarner Losh {
167b8902de1SWarner Losh 	STAILQ_INIT(&zfs_vdevs);
168b8902de1SWarner Losh 	STAILQ_INIT(&zfs_pools);
169b8902de1SWarner Losh 
170b8902de1SWarner Losh 	zfs_temp_buf = malloc(TEMP_SIZE);
171b8902de1SWarner Losh 	zfs_temp_end = zfs_temp_buf + TEMP_SIZE;
172b8902de1SWarner Losh 	zfs_temp_ptr = zfs_temp_buf;
173b8902de1SWarner Losh 	dnode_cache_buf = malloc(SPA_MAXBLOCKSIZE);
174b8902de1SWarner Losh 	zap_scratch = malloc(SPA_MAXBLOCKSIZE);
175b8902de1SWarner Losh 
176b8902de1SWarner Losh 	zfs_init_crc();
177b8902de1SWarner Losh }
178b8902de1SWarner Losh 
179b8902de1SWarner Losh static void *
180b8902de1SWarner Losh zfs_alloc(size_t size)
181b8902de1SWarner Losh {
182b8902de1SWarner Losh 	char *ptr;
183b8902de1SWarner Losh 
184b8902de1SWarner Losh 	if (zfs_temp_ptr + size > zfs_temp_end) {
18551e5c6b8SToomas Soome 		panic("ZFS: out of temporary buffer space");
186b8902de1SWarner Losh 	}
187b8902de1SWarner Losh 	ptr = zfs_temp_ptr;
188b8902de1SWarner Losh 	zfs_temp_ptr += size;
189b8902de1SWarner Losh 
190b8902de1SWarner Losh 	return (ptr);
191b8902de1SWarner Losh }
192b8902de1SWarner Losh 
193b8902de1SWarner Losh static void
194b8902de1SWarner Losh zfs_free(void *ptr, size_t size)
195b8902de1SWarner Losh {
196b8902de1SWarner Losh 
197b8902de1SWarner Losh 	zfs_temp_ptr -= size;
198b8902de1SWarner Losh 	if (zfs_temp_ptr != ptr) {
19951e5c6b8SToomas Soome 		panic("ZFS: zfs_alloc()/zfs_free() mismatch");
200b8902de1SWarner Losh 	}
201b8902de1SWarner Losh }
202b8902de1SWarner Losh 
203b8902de1SWarner Losh static int
204b8902de1SWarner Losh xdr_int(const unsigned char **xdr, int *ip)
205b8902de1SWarner Losh {
20612d62cc2SXin LI 	*ip = be32dec(*xdr);
207b8902de1SWarner Losh 	(*xdr) += 4;
208b8902de1SWarner Losh 	return (0);
209b8902de1SWarner Losh }
210b8902de1SWarner Losh 
211b8902de1SWarner Losh static int
212b8902de1SWarner Losh xdr_u_int(const unsigned char **xdr, u_int *ip)
213b8902de1SWarner Losh {
21412d62cc2SXin LI 	*ip = be32dec(*xdr);
215b8902de1SWarner Losh 	(*xdr) += 4;
216b8902de1SWarner Losh 	return (0);
217b8902de1SWarner Losh }
218b8902de1SWarner Losh 
219b8902de1SWarner Losh static int
220b8902de1SWarner Losh xdr_uint64_t(const unsigned char **xdr, uint64_t *lp)
221b8902de1SWarner Losh {
222b8902de1SWarner Losh 	u_int hi, lo;
223b8902de1SWarner Losh 
224b8902de1SWarner Losh 	xdr_u_int(xdr, &hi);
225b8902de1SWarner Losh 	xdr_u_int(xdr, &lo);
226b8902de1SWarner Losh 	*lp = (((uint64_t)hi) << 32) | lo;
227b8902de1SWarner Losh 	return (0);
228b8902de1SWarner Losh }
229b8902de1SWarner Losh 
230b8902de1SWarner Losh static int
231b8902de1SWarner Losh nvlist_find(const unsigned char *nvlist, const char *name, int type,
232b8902de1SWarner Losh     int *elementsp, void *valuep)
233b8902de1SWarner Losh {
234b8902de1SWarner Losh 	const unsigned char *p, *pair;
235b8902de1SWarner Losh 	int junk;
236b8902de1SWarner Losh 	int encoded_size, decoded_size;
237b8902de1SWarner Losh 
238b8902de1SWarner Losh 	p = nvlist;
239b8902de1SWarner Losh 	xdr_int(&p, &junk);
240b8902de1SWarner Losh 	xdr_int(&p, &junk);
241b8902de1SWarner Losh 
242b8902de1SWarner Losh 	pair = p;
243b8902de1SWarner Losh 	xdr_int(&p, &encoded_size);
244b8902de1SWarner Losh 	xdr_int(&p, &decoded_size);
245b8902de1SWarner Losh 	while (encoded_size && decoded_size) {
246b8902de1SWarner Losh 		int namelen, pairtype, elements;
247b8902de1SWarner Losh 		const char *pairname;
248b8902de1SWarner Losh 
249b8902de1SWarner Losh 		xdr_int(&p, &namelen);
250b8902de1SWarner Losh 		pairname = (const char*)p;
251b8902de1SWarner Losh 		p += roundup(namelen, 4);
252b8902de1SWarner Losh 		xdr_int(&p, &pairtype);
253b8902de1SWarner Losh 
254*2e6bb655SToomas Soome 		if (memcmp(name, pairname, namelen) == 0 && type == pairtype) {
255b8902de1SWarner Losh 			xdr_int(&p, &elements);
256b8902de1SWarner Losh 			if (elementsp)
257b8902de1SWarner Losh 				*elementsp = elements;
258b8902de1SWarner Losh 			if (type == DATA_TYPE_UINT64) {
259b8902de1SWarner Losh 				xdr_uint64_t(&p, (uint64_t *)valuep);
260b8902de1SWarner Losh 				return (0);
261b8902de1SWarner Losh 			} else if (type == DATA_TYPE_STRING) {
262b8902de1SWarner Losh 				int len;
263b8902de1SWarner Losh 				xdr_int(&p, &len);
264b8902de1SWarner Losh 				(*(const char**)valuep) = (const char*)p;
265b8902de1SWarner Losh 				return (0);
266*2e6bb655SToomas Soome 			} else if (type == DATA_TYPE_NVLIST ||
267*2e6bb655SToomas Soome 			    type == DATA_TYPE_NVLIST_ARRAY) {
268b8902de1SWarner Losh 				(*(const unsigned char**)valuep) =
269b8902de1SWarner Losh 				    (const unsigned char*)p;
270b8902de1SWarner Losh 				return (0);
271b8902de1SWarner Losh 			} else {
272b8902de1SWarner Losh 				return (EIO);
273b8902de1SWarner Losh 			}
274b8902de1SWarner Losh 		} else {
275b8902de1SWarner Losh 			/*
276*2e6bb655SToomas Soome 			 * Not the pair we are looking for, skip to the
277*2e6bb655SToomas Soome 			 * next one.
278b8902de1SWarner Losh 			 */
279b8902de1SWarner Losh 			p = pair + encoded_size;
280b8902de1SWarner Losh 		}
281b8902de1SWarner Losh 
282b8902de1SWarner Losh 		pair = p;
283b8902de1SWarner Losh 		xdr_int(&p, &encoded_size);
284b8902de1SWarner Losh 		xdr_int(&p, &decoded_size);
285b8902de1SWarner Losh 	}
286b8902de1SWarner Losh 
287b8902de1SWarner Losh 	return (EIO);
288b8902de1SWarner Losh }
289b8902de1SWarner Losh 
290b8902de1SWarner Losh static int
291b8902de1SWarner Losh nvlist_check_features_for_read(const unsigned char *nvlist)
292b8902de1SWarner Losh {
293b8902de1SWarner Losh 	const unsigned char *p, *pair;
294b8902de1SWarner Losh 	int junk;
295b8902de1SWarner Losh 	int encoded_size, decoded_size;
296b8902de1SWarner Losh 	int rc;
297b8902de1SWarner Losh 
298b8902de1SWarner Losh 	rc = 0;
299b8902de1SWarner Losh 
300b8902de1SWarner Losh 	p = nvlist;
301b8902de1SWarner Losh 	xdr_int(&p, &junk);
302b8902de1SWarner Losh 	xdr_int(&p, &junk);
303b8902de1SWarner Losh 
304b8902de1SWarner Losh 	pair = p;
305b8902de1SWarner Losh 	xdr_int(&p, &encoded_size);
306b8902de1SWarner Losh 	xdr_int(&p, &decoded_size);
307b8902de1SWarner Losh 	while (encoded_size && decoded_size) {
308b8902de1SWarner Losh 		int namelen, pairtype;
309b8902de1SWarner Losh 		const char *pairname;
310b8902de1SWarner Losh 		int i, found;
311b8902de1SWarner Losh 
312b8902de1SWarner Losh 		found = 0;
313b8902de1SWarner Losh 
314b8902de1SWarner Losh 		xdr_int(&p, &namelen);
315b8902de1SWarner Losh 		pairname = (const char*)p;
316b8902de1SWarner Losh 		p += roundup(namelen, 4);
317b8902de1SWarner Losh 		xdr_int(&p, &pairtype);
318b8902de1SWarner Losh 
319b8902de1SWarner Losh 		for (i = 0; features_for_read[i] != NULL; i++) {
320*2e6bb655SToomas Soome 			if (memcmp(pairname, features_for_read[i],
321*2e6bb655SToomas Soome 			    namelen) == 0) {
322b8902de1SWarner Losh 				found = 1;
323b8902de1SWarner Losh 				break;
324b8902de1SWarner Losh 			}
325b8902de1SWarner Losh 		}
326b8902de1SWarner Losh 
327b8902de1SWarner Losh 		if (!found) {
328b8902de1SWarner Losh 			printf("ZFS: unsupported feature: %s\n", pairname);
329b8902de1SWarner Losh 			rc = EIO;
330b8902de1SWarner Losh 		}
331b8902de1SWarner Losh 
332b8902de1SWarner Losh 		p = pair + encoded_size;
333b8902de1SWarner Losh 
334b8902de1SWarner Losh 		pair = p;
335b8902de1SWarner Losh 		xdr_int(&p, &encoded_size);
336b8902de1SWarner Losh 		xdr_int(&p, &decoded_size);
337b8902de1SWarner Losh 	}
338b8902de1SWarner Losh 
339b8902de1SWarner Losh 	return (rc);
340b8902de1SWarner Losh }
341b8902de1SWarner Losh 
342b8902de1SWarner Losh /*
343b8902de1SWarner Losh  * Return the next nvlist in an nvlist array.
344b8902de1SWarner Losh  */
345b8902de1SWarner Losh static const unsigned char *
346b8902de1SWarner Losh nvlist_next(const unsigned char *nvlist)
347b8902de1SWarner Losh {
348b8902de1SWarner Losh 	const unsigned char *p, *pair;
349b8902de1SWarner Losh 	int junk;
350b8902de1SWarner Losh 	int encoded_size, decoded_size;
351b8902de1SWarner Losh 
352b8902de1SWarner Losh 	p = nvlist;
353b8902de1SWarner Losh 	xdr_int(&p, &junk);
354b8902de1SWarner Losh 	xdr_int(&p, &junk);
355b8902de1SWarner Losh 
356b8902de1SWarner Losh 	pair = p;
357b8902de1SWarner Losh 	xdr_int(&p, &encoded_size);
358b8902de1SWarner Losh 	xdr_int(&p, &decoded_size);
359b8902de1SWarner Losh 	while (encoded_size && decoded_size) {
360b8902de1SWarner Losh 		p = pair + encoded_size;
361b8902de1SWarner Losh 
362b8902de1SWarner Losh 		pair = p;
363b8902de1SWarner Losh 		xdr_int(&p, &encoded_size);
364b8902de1SWarner Losh 		xdr_int(&p, &decoded_size);
365b8902de1SWarner Losh 	}
366b8902de1SWarner Losh 
367*2e6bb655SToomas Soome 	return (p);
368b8902de1SWarner Losh }
369b8902de1SWarner Losh 
370b8902de1SWarner Losh #ifdef TEST
371b8902de1SWarner Losh 
372b8902de1SWarner Losh static const unsigned char *
373b8902de1SWarner Losh nvlist_print(const unsigned char *nvlist, unsigned int indent)
374b8902de1SWarner Losh {
375b8902de1SWarner Losh 	static const char *typenames[] = {
376b8902de1SWarner Losh 		"DATA_TYPE_UNKNOWN",
377b8902de1SWarner Losh 		"DATA_TYPE_BOOLEAN",
378b8902de1SWarner Losh 		"DATA_TYPE_BYTE",
379b8902de1SWarner Losh 		"DATA_TYPE_INT16",
380b8902de1SWarner Losh 		"DATA_TYPE_UINT16",
381b8902de1SWarner Losh 		"DATA_TYPE_INT32",
382b8902de1SWarner Losh 		"DATA_TYPE_UINT32",
383b8902de1SWarner Losh 		"DATA_TYPE_INT64",
384b8902de1SWarner Losh 		"DATA_TYPE_UINT64",
385b8902de1SWarner Losh 		"DATA_TYPE_STRING",
386b8902de1SWarner Losh 		"DATA_TYPE_BYTE_ARRAY",
387b8902de1SWarner Losh 		"DATA_TYPE_INT16_ARRAY",
388b8902de1SWarner Losh 		"DATA_TYPE_UINT16_ARRAY",
389b8902de1SWarner Losh 		"DATA_TYPE_INT32_ARRAY",
390b8902de1SWarner Losh 		"DATA_TYPE_UINT32_ARRAY",
391b8902de1SWarner Losh 		"DATA_TYPE_INT64_ARRAY",
392b8902de1SWarner Losh 		"DATA_TYPE_UINT64_ARRAY",
393b8902de1SWarner Losh 		"DATA_TYPE_STRING_ARRAY",
394b8902de1SWarner Losh 		"DATA_TYPE_HRTIME",
395b8902de1SWarner Losh 		"DATA_TYPE_NVLIST",
396b8902de1SWarner Losh 		"DATA_TYPE_NVLIST_ARRAY",
397b8902de1SWarner Losh 		"DATA_TYPE_BOOLEAN_VALUE",
398b8902de1SWarner Losh 		"DATA_TYPE_INT8",
399b8902de1SWarner Losh 		"DATA_TYPE_UINT8",
400b8902de1SWarner Losh 		"DATA_TYPE_BOOLEAN_ARRAY",
401b8902de1SWarner Losh 		"DATA_TYPE_INT8_ARRAY",
402b8902de1SWarner Losh 		"DATA_TYPE_UINT8_ARRAY"
403b8902de1SWarner Losh 	};
404b8902de1SWarner Losh 
405b8902de1SWarner Losh 	unsigned int i, j;
406b8902de1SWarner Losh 	const unsigned char *p, *pair;
407b8902de1SWarner Losh 	int junk;
408b8902de1SWarner Losh 	int encoded_size, decoded_size;
409b8902de1SWarner Losh 
410b8902de1SWarner Losh 	p = nvlist;
411b8902de1SWarner Losh 	xdr_int(&p, &junk);
412b8902de1SWarner Losh 	xdr_int(&p, &junk);
413b8902de1SWarner Losh 
414b8902de1SWarner Losh 	pair = p;
415b8902de1SWarner Losh 	xdr_int(&p, &encoded_size);
416b8902de1SWarner Losh 	xdr_int(&p, &decoded_size);
417b8902de1SWarner Losh 	while (encoded_size && decoded_size) {
418b8902de1SWarner Losh 		int namelen, pairtype, elements;
419b8902de1SWarner Losh 		const char *pairname;
420b8902de1SWarner Losh 
421b8902de1SWarner Losh 		xdr_int(&p, &namelen);
422b8902de1SWarner Losh 		pairname = (const char*)p;
423b8902de1SWarner Losh 		p += roundup(namelen, 4);
424b8902de1SWarner Losh 		xdr_int(&p, &pairtype);
425b8902de1SWarner Losh 
426b8902de1SWarner Losh 		for (i = 0; i < indent; i++)
427b8902de1SWarner Losh 			printf(" ");
428b8902de1SWarner Losh 		printf("%s %s", typenames[pairtype], pairname);
429b8902de1SWarner Losh 
430b8902de1SWarner Losh 		xdr_int(&p, &elements);
431b8902de1SWarner Losh 		switch (pairtype) {
432b8902de1SWarner Losh 		case DATA_TYPE_UINT64: {
433b8902de1SWarner Losh 			uint64_t val;
434b8902de1SWarner Losh 			xdr_uint64_t(&p, &val);
435b8902de1SWarner Losh 			printf(" = 0x%jx\n", (uintmax_t)val);
436b8902de1SWarner Losh 			break;
437b8902de1SWarner Losh 		}
438b8902de1SWarner Losh 
439b8902de1SWarner Losh 		case DATA_TYPE_STRING: {
440b8902de1SWarner Losh 			int len;
441b8902de1SWarner Losh 			xdr_int(&p, &len);
442b8902de1SWarner Losh 			printf(" = \"%s\"\n", p);
443b8902de1SWarner Losh 			break;
444b8902de1SWarner Losh 		}
445b8902de1SWarner Losh 
446b8902de1SWarner Losh 		case DATA_TYPE_NVLIST:
447b8902de1SWarner Losh 			printf("\n");
448b8902de1SWarner Losh 			nvlist_print(p, indent + 1);
449b8902de1SWarner Losh 			break;
450b8902de1SWarner Losh 
451b8902de1SWarner Losh 		case DATA_TYPE_NVLIST_ARRAY:
452b8902de1SWarner Losh 			for (j = 0; j < elements; j++) {
453b8902de1SWarner Losh 				printf("[%d]\n", j);
454b8902de1SWarner Losh 				p = nvlist_print(p, indent + 1);
455b8902de1SWarner Losh 				if (j != elements - 1) {
456b8902de1SWarner Losh 					for (i = 0; i < indent; i++)
457b8902de1SWarner Losh 						printf(" ");
458*2e6bb655SToomas Soome 					printf("%s %s", typenames[pairtype],
459*2e6bb655SToomas Soome 					    pairname);
460b8902de1SWarner Losh 				}
461b8902de1SWarner Losh 			}
462b8902de1SWarner Losh 			break;
463b8902de1SWarner Losh 
464b8902de1SWarner Losh 		default:
465b8902de1SWarner Losh 			printf("\n");
466b8902de1SWarner Losh 		}
467b8902de1SWarner Losh 
468b8902de1SWarner Losh 		p = pair + encoded_size;
469b8902de1SWarner Losh 
470b8902de1SWarner Losh 		pair = p;
471b8902de1SWarner Losh 		xdr_int(&p, &encoded_size);
472b8902de1SWarner Losh 		xdr_int(&p, &decoded_size);
473b8902de1SWarner Losh 	}
474b8902de1SWarner Losh 
475*2e6bb655SToomas Soome 	return (p);
476b8902de1SWarner Losh }
477b8902de1SWarner Losh 
478b8902de1SWarner Losh #endif
479b8902de1SWarner Losh 
480b8902de1SWarner Losh static int
481b8902de1SWarner Losh vdev_read_phys(vdev_t *vdev, const blkptr_t *bp, void *buf,
482b8902de1SWarner Losh     off_t offset, size_t size)
483b8902de1SWarner Losh {
484b8902de1SWarner Losh 	size_t psize;
485b8902de1SWarner Losh 	int rc;
486b8902de1SWarner Losh 
487b8902de1SWarner Losh 	if (!vdev->v_phys_read)
488b8902de1SWarner Losh 		return (EIO);
489b8902de1SWarner Losh 
490b8902de1SWarner Losh 	if (bp) {
491b8902de1SWarner Losh 		psize = BP_GET_PSIZE(bp);
492b8902de1SWarner Losh 	} else {
493b8902de1SWarner Losh 		psize = size;
494b8902de1SWarner Losh 	}
495b8902de1SWarner Losh 
496b8902de1SWarner Losh 	rc = vdev->v_phys_read(vdev, vdev->v_read_priv, offset, buf, psize);
497b8902de1SWarner Losh 	if (rc)
498b8902de1SWarner Losh 		return (rc);
499b1b93268SToomas Soome 	if (bp != NULL)
500b1b93268SToomas Soome 		return (zio_checksum_verify(vdev->spa, bp, buf));
501b8902de1SWarner Losh 
502b8902de1SWarner Losh 	return (0);
503b8902de1SWarner Losh }
504b8902de1SWarner Losh 
505b1b93268SToomas Soome typedef struct remap_segment {
506b1b93268SToomas Soome 	vdev_t *rs_vd;
507b1b93268SToomas Soome 	uint64_t rs_offset;
508b1b93268SToomas Soome 	uint64_t rs_asize;
509b1b93268SToomas Soome 	uint64_t rs_split_offset;
510b1b93268SToomas Soome 	list_node_t rs_node;
511b1b93268SToomas Soome } remap_segment_t;
512b1b93268SToomas Soome 
513b1b93268SToomas Soome static remap_segment_t *
514b1b93268SToomas Soome rs_alloc(vdev_t *vd, uint64_t offset, uint64_t asize, uint64_t split_offset)
515b1b93268SToomas Soome {
516b1b93268SToomas Soome 	remap_segment_t *rs = malloc(sizeof (remap_segment_t));
517b1b93268SToomas Soome 
518b1b93268SToomas Soome 	if (rs != NULL) {
519b1b93268SToomas Soome 		rs->rs_vd = vd;
520b1b93268SToomas Soome 		rs->rs_offset = offset;
521b1b93268SToomas Soome 		rs->rs_asize = asize;
522b1b93268SToomas Soome 		rs->rs_split_offset = split_offset;
523b1b93268SToomas Soome 	}
524b1b93268SToomas Soome 
525b1b93268SToomas Soome 	return (rs);
526b1b93268SToomas Soome }
527b1b93268SToomas Soome 
528b1b93268SToomas Soome vdev_indirect_mapping_t *
529b1b93268SToomas Soome vdev_indirect_mapping_open(spa_t *spa, objset_phys_t *os,
530b1b93268SToomas Soome     uint64_t mapping_object)
531b1b93268SToomas Soome {
532b1b93268SToomas Soome 	vdev_indirect_mapping_t *vim;
533b1b93268SToomas Soome 	vdev_indirect_mapping_phys_t *vim_phys;
534b1b93268SToomas Soome 	int rc;
535b1b93268SToomas Soome 
536b1b93268SToomas Soome 	vim = calloc(1, sizeof (*vim));
537b1b93268SToomas Soome 	if (vim == NULL)
538b1b93268SToomas Soome 		return (NULL);
539b1b93268SToomas Soome 
540b1b93268SToomas Soome 	vim->vim_dn = calloc(1, sizeof (*vim->vim_dn));
541b1b93268SToomas Soome 	if (vim->vim_dn == NULL) {
542b1b93268SToomas Soome 		free(vim);
543b1b93268SToomas Soome 		return (NULL);
544b1b93268SToomas Soome 	}
545b1b93268SToomas Soome 
546b1b93268SToomas Soome 	rc = objset_get_dnode(spa, os, mapping_object, vim->vim_dn);
547b1b93268SToomas Soome 	if (rc != 0) {
548b1b93268SToomas Soome 		free(vim->vim_dn);
549b1b93268SToomas Soome 		free(vim);
550b1b93268SToomas Soome 		return (NULL);
551b1b93268SToomas Soome 	}
552b1b93268SToomas Soome 
553b1b93268SToomas Soome 	vim->vim_spa = spa;
554b1b93268SToomas Soome 	vim->vim_phys = malloc(sizeof (*vim->vim_phys));
555b1b93268SToomas Soome 	if (vim->vim_phys == NULL) {
556b1b93268SToomas Soome 		free(vim->vim_dn);
557b1b93268SToomas Soome 		free(vim);
558b1b93268SToomas Soome 		return (NULL);
559b1b93268SToomas Soome 	}
560b1b93268SToomas Soome 
561b1b93268SToomas Soome 	vim_phys = (vdev_indirect_mapping_phys_t *)DN_BONUS(vim->vim_dn);
562b1b93268SToomas Soome 	*vim->vim_phys = *vim_phys;
563b1b93268SToomas Soome 
564b1b93268SToomas Soome 	vim->vim_objset = os;
565b1b93268SToomas Soome 	vim->vim_object = mapping_object;
566b1b93268SToomas Soome 	vim->vim_entries = NULL;
567b1b93268SToomas Soome 
568b1b93268SToomas Soome 	vim->vim_havecounts =
569b1b93268SToomas Soome 	    (vim->vim_dn->dn_bonuslen > VDEV_INDIRECT_MAPPING_SIZE_V0);
570b1b93268SToomas Soome 	return (vim);
571b1b93268SToomas Soome }
572b1b93268SToomas Soome 
573b1b93268SToomas Soome /*
574b1b93268SToomas Soome  * Compare an offset with an indirect mapping entry; there are three
575b1b93268SToomas Soome  * possible scenarios:
576b1b93268SToomas Soome  *
577b1b93268SToomas Soome  *     1. The offset is "less than" the mapping entry; meaning the
578b1b93268SToomas Soome  *        offset is less than the source offset of the mapping entry. In
579b1b93268SToomas Soome  *        this case, there is no overlap between the offset and the
580b1b93268SToomas Soome  *        mapping entry and -1 will be returned.
581b1b93268SToomas Soome  *
582b1b93268SToomas Soome  *     2. The offset is "greater than" the mapping entry; meaning the
583b1b93268SToomas Soome  *        offset is greater than the mapping entry's source offset plus
584b1b93268SToomas Soome  *        the entry's size. In this case, there is no overlap between
585b1b93268SToomas Soome  *        the offset and the mapping entry and 1 will be returned.
586b1b93268SToomas Soome  *
587b1b93268SToomas Soome  *        NOTE: If the offset is actually equal to the entry's offset
588b1b93268SToomas Soome  *        plus size, this is considered to be "greater" than the entry,
589b1b93268SToomas Soome  *        and this case applies (i.e. 1 will be returned). Thus, the
590b1b93268SToomas Soome  *        entry's "range" can be considered to be inclusive at its
591b1b93268SToomas Soome  *        start, but exclusive at its end: e.g. [src, src + size).
592b1b93268SToomas Soome  *
593b1b93268SToomas Soome  *     3. The last case to consider is if the offset actually falls
594b1b93268SToomas Soome  *        within the mapping entry's range. If this is the case, the
595b1b93268SToomas Soome  *        offset is considered to be "equal to" the mapping entry and
596b1b93268SToomas Soome  *        0 will be returned.
597b1b93268SToomas Soome  *
598b1b93268SToomas Soome  *        NOTE: If the offset is equal to the entry's source offset,
599b1b93268SToomas Soome  *        this case applies and 0 will be returned. If the offset is
600b1b93268SToomas Soome  *        equal to the entry's source plus its size, this case does
601b1b93268SToomas Soome  *        *not* apply (see "NOTE" above for scenario 2), and 1 will be
602b1b93268SToomas Soome  *        returned.
603b1b93268SToomas Soome  */
604b1b93268SToomas Soome static int
605b1b93268SToomas Soome dva_mapping_overlap_compare(const void *v_key, const void *v_array_elem)
606b1b93268SToomas Soome {
607b1b93268SToomas Soome 	const uint64_t *key = v_key;
608b1b93268SToomas Soome 	const vdev_indirect_mapping_entry_phys_t *array_elem =
609b1b93268SToomas Soome 	    v_array_elem;
610b1b93268SToomas Soome 	uint64_t src_offset = DVA_MAPPING_GET_SRC_OFFSET(array_elem);
611b1b93268SToomas Soome 
612b1b93268SToomas Soome 	if (*key < src_offset) {
613b1b93268SToomas Soome 		return (-1);
614b1b93268SToomas Soome 	} else if (*key < src_offset + DVA_GET_ASIZE(&array_elem->vimep_dst)) {
615b1b93268SToomas Soome 		return (0);
616b1b93268SToomas Soome 	} else {
617b1b93268SToomas Soome 		return (1);
618b1b93268SToomas Soome 	}
619b1b93268SToomas Soome }
620b1b93268SToomas Soome 
621b1b93268SToomas Soome /*
622b1b93268SToomas Soome  * Return array entry.
623b1b93268SToomas Soome  */
624b1b93268SToomas Soome static vdev_indirect_mapping_entry_phys_t *
625b1b93268SToomas Soome vdev_indirect_mapping_entry(vdev_indirect_mapping_t *vim, uint64_t index)
626b1b93268SToomas Soome {
627b1b93268SToomas Soome 	uint64_t size;
628b1b93268SToomas Soome 	off_t offset = 0;
629b1b93268SToomas Soome 	int rc;
630b1b93268SToomas Soome 
631b1b93268SToomas Soome 	if (vim->vim_phys->vimp_num_entries == 0)
632b1b93268SToomas Soome 		return (NULL);
633b1b93268SToomas Soome 
634b1b93268SToomas Soome 	if (vim->vim_entries == NULL) {
635b1b93268SToomas Soome 		uint64_t bsize;
636b1b93268SToomas Soome 
637b1b93268SToomas Soome 		bsize = vim->vim_dn->dn_datablkszsec << SPA_MINBLOCKSHIFT;
638b1b93268SToomas Soome 		size = vim->vim_phys->vimp_num_entries *
639b1b93268SToomas Soome 		    sizeof (*vim->vim_entries);
640b1b93268SToomas Soome 		if (size > bsize) {
641b1b93268SToomas Soome 			size = bsize / sizeof (*vim->vim_entries);
642b1b93268SToomas Soome 			size *= sizeof (*vim->vim_entries);
643b1b93268SToomas Soome 		}
644b1b93268SToomas Soome 		vim->vim_entries = malloc(size);
645b1b93268SToomas Soome 		if (vim->vim_entries == NULL)
646b1b93268SToomas Soome 			return (NULL);
647b1b93268SToomas Soome 		vim->vim_num_entries = size / sizeof (*vim->vim_entries);
648b1b93268SToomas Soome 		offset = index * sizeof (*vim->vim_entries);
649b1b93268SToomas Soome 	}
650b1b93268SToomas Soome 
651b1b93268SToomas Soome 	/* We have data in vim_entries */
652b1b93268SToomas Soome 	if (offset == 0) {
653b1b93268SToomas Soome 		if (index >= vim->vim_entry_offset &&
654b1b93268SToomas Soome 		    index <= vim->vim_entry_offset + vim->vim_num_entries) {
655b1b93268SToomas Soome 			index -= vim->vim_entry_offset;
656b1b93268SToomas Soome 			return (&vim->vim_entries[index]);
657b1b93268SToomas Soome 		}
658b1b93268SToomas Soome 		offset = index * sizeof (*vim->vim_entries);
659b1b93268SToomas Soome 	}
660b1b93268SToomas Soome 
661b1b93268SToomas Soome 	vim->vim_entry_offset = index;
662b1b93268SToomas Soome 	size = vim->vim_num_entries * sizeof (*vim->vim_entries);
663b1b93268SToomas Soome 	rc = dnode_read(vim->vim_spa, vim->vim_dn, offset, vim->vim_entries,
664b1b93268SToomas Soome 	    size);
665b1b93268SToomas Soome 	if (rc != 0) {
666b1b93268SToomas Soome 		/* Read error, invalidate vim_entries. */
667b1b93268SToomas Soome 		free(vim->vim_entries);
668b1b93268SToomas Soome 		vim->vim_entries = NULL;
669b1b93268SToomas Soome 		return (NULL);
670b1b93268SToomas Soome 	}
671b1b93268SToomas Soome 	index -= vim->vim_entry_offset;
672b1b93268SToomas Soome 	return (&vim->vim_entries[index]);
673b1b93268SToomas Soome }
674b1b93268SToomas Soome 
675b1b93268SToomas Soome /*
676b1b93268SToomas Soome  * Returns the mapping entry for the given offset.
677b1b93268SToomas Soome  *
678b1b93268SToomas Soome  * It's possible that the given offset will not be in the mapping table
679b1b93268SToomas Soome  * (i.e. no mapping entries contain this offset), in which case, the
680b1b93268SToomas Soome  * return value value depends on the "next_if_missing" parameter.
681b1b93268SToomas Soome  *
682b1b93268SToomas Soome  * If the offset is not found in the table and "next_if_missing" is
683b1b93268SToomas Soome  * B_FALSE, then NULL will always be returned. The behavior is intended
684b1b93268SToomas Soome  * to allow consumers to get the entry corresponding to the offset
685b1b93268SToomas Soome  * parameter, iff the offset overlaps with an entry in the table.
686b1b93268SToomas Soome  *
687b1b93268SToomas Soome  * If the offset is not found in the table and "next_if_missing" is
688b1b93268SToomas Soome  * B_TRUE, then the entry nearest to the given offset will be returned,
689b1b93268SToomas Soome  * such that the entry's source offset is greater than the offset
690b1b93268SToomas Soome  * passed in (i.e. the "next" mapping entry in the table is returned, if
691b1b93268SToomas Soome  * the offset is missing from the table). If there are no entries whose
692b1b93268SToomas Soome  * source offset is greater than the passed in offset, NULL is returned.
693b1b93268SToomas Soome  */
694b1b93268SToomas Soome static vdev_indirect_mapping_entry_phys_t *
695b1b93268SToomas Soome vdev_indirect_mapping_entry_for_offset(vdev_indirect_mapping_t *vim,
696b1b93268SToomas Soome     uint64_t offset)
697b1b93268SToomas Soome {
698b1b93268SToomas Soome 	ASSERT(vim->vim_phys->vimp_num_entries > 0);
699b1b93268SToomas Soome 
700b1b93268SToomas Soome 	vdev_indirect_mapping_entry_phys_t *entry;
701b1b93268SToomas Soome 
702b1b93268SToomas Soome 	uint64_t last = vim->vim_phys->vimp_num_entries - 1;
703b1b93268SToomas Soome 	uint64_t base = 0;
704b1b93268SToomas Soome 
705b1b93268SToomas Soome 	/*
706b1b93268SToomas Soome 	 * We don't define these inside of the while loop because we use
707b1b93268SToomas Soome 	 * their value in the case that offset isn't in the mapping.
708b1b93268SToomas Soome 	 */
709b1b93268SToomas Soome 	uint64_t mid;
710b1b93268SToomas Soome 	int result;
711b1b93268SToomas Soome 
712b1b93268SToomas Soome 	while (last >= base) {
713b1b93268SToomas Soome 		mid = base + ((last - base) >> 1);
714b1b93268SToomas Soome 
715b1b93268SToomas Soome 		entry = vdev_indirect_mapping_entry(vim, mid);
716b1b93268SToomas Soome 		if (entry == NULL)
717b1b93268SToomas Soome 			break;
718b1b93268SToomas Soome 		result = dva_mapping_overlap_compare(&offset, entry);
719b1b93268SToomas Soome 
720b1b93268SToomas Soome 		if (result == 0) {
721b1b93268SToomas Soome 			break;
722b1b93268SToomas Soome 		} else if (result < 0) {
723b1b93268SToomas Soome 			last = mid - 1;
724b1b93268SToomas Soome 		} else {
725b1b93268SToomas Soome 			base = mid + 1;
726b1b93268SToomas Soome 		}
727b1b93268SToomas Soome 	}
728b1b93268SToomas Soome 	return (entry);
729b1b93268SToomas Soome }
730b1b93268SToomas Soome 
731b1b93268SToomas Soome /*
732b1b93268SToomas Soome  * Given an indirect vdev and an extent on that vdev, it duplicates the
733b1b93268SToomas Soome  * physical entries of the indirect mapping that correspond to the extent
734b1b93268SToomas Soome  * to a new array and returns a pointer to it. In addition, copied_entries
735b1b93268SToomas Soome  * is populated with the number of mapping entries that were duplicated.
736b1b93268SToomas Soome  *
737b1b93268SToomas Soome  * Finally, since we are doing an allocation, it is up to the caller to
738b1b93268SToomas Soome  * free the array allocated in this function.
739b1b93268SToomas Soome  */
740b1b93268SToomas Soome vdev_indirect_mapping_entry_phys_t *
741b1b93268SToomas Soome vdev_indirect_mapping_duplicate_adjacent_entries(vdev_t *vd, uint64_t offset,
742b1b93268SToomas Soome     uint64_t asize, uint64_t *copied_entries)
743b1b93268SToomas Soome {
744b1b93268SToomas Soome 	vdev_indirect_mapping_entry_phys_t *duplicate_mappings = NULL;
745b1b93268SToomas Soome 	vdev_indirect_mapping_t *vim = vd->v_mapping;
746b1b93268SToomas Soome 	uint64_t entries = 0;
747b1b93268SToomas Soome 
748b1b93268SToomas Soome 	vdev_indirect_mapping_entry_phys_t *first_mapping =
749b1b93268SToomas Soome 	    vdev_indirect_mapping_entry_for_offset(vim, offset);
750b1b93268SToomas Soome 	ASSERT3P(first_mapping, !=, NULL);
751b1b93268SToomas Soome 
752b1b93268SToomas Soome 	vdev_indirect_mapping_entry_phys_t *m = first_mapping;
753b1b93268SToomas Soome 	while (asize > 0) {
754b1b93268SToomas Soome 		uint64_t size = DVA_GET_ASIZE(&m->vimep_dst);
755b1b93268SToomas Soome 		uint64_t inner_offset = offset - DVA_MAPPING_GET_SRC_OFFSET(m);
756b1b93268SToomas Soome 		uint64_t inner_size = MIN(asize, size - inner_offset);
757b1b93268SToomas Soome 
758b1b93268SToomas Soome 		offset += inner_size;
759b1b93268SToomas Soome 		asize -= inner_size;
760b1b93268SToomas Soome 		entries++;
761b1b93268SToomas Soome 		m++;
762b1b93268SToomas Soome 	}
763b1b93268SToomas Soome 
764b1b93268SToomas Soome 	size_t copy_length = entries * sizeof (*first_mapping);
765b1b93268SToomas Soome 	duplicate_mappings = malloc(copy_length);
766b1b93268SToomas Soome 	if (duplicate_mappings != NULL)
767b1b93268SToomas Soome 		bcopy(first_mapping, duplicate_mappings, copy_length);
768b1b93268SToomas Soome 	else
769b1b93268SToomas Soome 		entries = 0;
770b1b93268SToomas Soome 
771b1b93268SToomas Soome 	*copied_entries = entries;
772b1b93268SToomas Soome 
773b1b93268SToomas Soome 	return (duplicate_mappings);
774b1b93268SToomas Soome }
775b1b93268SToomas Soome 
776b1b93268SToomas Soome static vdev_t *
777b1b93268SToomas Soome vdev_lookup_top(spa_t *spa, uint64_t vdev)
778b1b93268SToomas Soome {
779b1b93268SToomas Soome 	vdev_t *rvd;
780b1b93268SToomas Soome 
781b1b93268SToomas Soome 	STAILQ_FOREACH(rvd, &spa->spa_vdevs, v_childlink)
782b1b93268SToomas Soome 		if (rvd->v_id == vdev)
783b1b93268SToomas Soome 			break;
784b1b93268SToomas Soome 
785b1b93268SToomas Soome 	return (rvd);
786b1b93268SToomas Soome }
787b1b93268SToomas Soome 
788b1b93268SToomas Soome /*
789b1b93268SToomas Soome  * This is a callback for vdev_indirect_remap() which allocates an
790b1b93268SToomas Soome  * indirect_split_t for each split segment and adds it to iv_splits.
791b1b93268SToomas Soome  */
792b1b93268SToomas Soome static void
793b1b93268SToomas Soome vdev_indirect_gather_splits(uint64_t split_offset, vdev_t *vd, uint64_t offset,
794b1b93268SToomas Soome     uint64_t size, void *arg)
795b1b93268SToomas Soome {
796b1b93268SToomas Soome 	int n = 1;
797b1b93268SToomas Soome 	zio_t *zio = arg;
798b1b93268SToomas Soome 	indirect_vsd_t *iv = zio->io_vsd;
799b1b93268SToomas Soome 
800b1b93268SToomas Soome 	if (vd->v_read == vdev_indirect_read)
801b1b93268SToomas Soome 		return;
802b1b93268SToomas Soome 
803b1b93268SToomas Soome 	if (vd->v_read == vdev_mirror_read)
804b1b93268SToomas Soome 		n = vd->v_nchildren;
805b1b93268SToomas Soome 
806b1b93268SToomas Soome 	indirect_split_t *is =
807b1b93268SToomas Soome 	    malloc(offsetof(indirect_split_t, is_child[n]));
808b1b93268SToomas Soome 	if (is == NULL) {
809b1b93268SToomas Soome 		zio->io_error = ENOMEM;
810b1b93268SToomas Soome 		return;
811b1b93268SToomas Soome 	}
812b1b93268SToomas Soome 	bzero(is, offsetof(indirect_split_t, is_child[n]));
813b1b93268SToomas Soome 
814b1b93268SToomas Soome 	is->is_children = n;
815b1b93268SToomas Soome 	is->is_size = size;
816b1b93268SToomas Soome 	is->is_split_offset = split_offset;
817b1b93268SToomas Soome 	is->is_target_offset = offset;
818b1b93268SToomas Soome 	is->is_vdev = vd;
819b1b93268SToomas Soome 
820b1b93268SToomas Soome 	/*
821b1b93268SToomas Soome 	 * Note that we only consider multiple copies of the data for
822b1b93268SToomas Soome 	 * *mirror* vdevs.  We don't for "replacing" or "spare" vdevs, even
823b1b93268SToomas Soome 	 * though they use the same ops as mirror, because there's only one
824b1b93268SToomas Soome 	 * "good" copy under the replacing/spare.
825b1b93268SToomas Soome 	 */
826b1b93268SToomas Soome 	if (vd->v_read == vdev_mirror_read) {
827b1b93268SToomas Soome 		int i = 0;
828b1b93268SToomas Soome 		vdev_t *kid;
829b1b93268SToomas Soome 
830b1b93268SToomas Soome 		STAILQ_FOREACH(kid, &vd->v_children, v_childlink) {
831b1b93268SToomas Soome 			is->is_child[i++].ic_vdev = kid;
832b1b93268SToomas Soome 		}
833b1b93268SToomas Soome 	} else {
834b1b93268SToomas Soome 		is->is_child[0].ic_vdev = vd;
835b1b93268SToomas Soome 	}
836b1b93268SToomas Soome 
837b1b93268SToomas Soome 	list_insert_tail(&iv->iv_splits, is);
838b1b93268SToomas Soome }
839b1b93268SToomas Soome 
840b1b93268SToomas Soome static void
841b1b93268SToomas Soome vdev_indirect_remap(vdev_t *vd, uint64_t offset, uint64_t asize, void *arg)
842b1b93268SToomas Soome {
843b1b93268SToomas Soome 	list_t stack;
844b1b93268SToomas Soome 	spa_t *spa = vd->spa;
8456e5555adSToomas Soome 	zio_t *zio = arg;
8464efce32aSToomas Soome 	remap_segment_t *rs;
847b1b93268SToomas Soome 
848b1b93268SToomas Soome 	list_create(&stack, sizeof (remap_segment_t),
849b1b93268SToomas Soome 	    offsetof(remap_segment_t, rs_node));
850b1b93268SToomas Soome 
8514efce32aSToomas Soome 	rs = rs_alloc(vd, offset, asize, 0);
8524efce32aSToomas Soome 	if (rs == NULL) {
8534efce32aSToomas Soome 		printf("vdev_indirect_remap: out of memory.\n");
8544efce32aSToomas Soome 		zio->io_error = ENOMEM;
8554efce32aSToomas Soome 	}
8564efce32aSToomas Soome 	for (; rs != NULL; rs = list_remove_head(&stack)) {
857b1b93268SToomas Soome 		vdev_t *v = rs->rs_vd;
858b1b93268SToomas Soome 		uint64_t num_entries = 0;
859b1b93268SToomas Soome 		/* vdev_indirect_mapping_t *vim = v->v_mapping; */
860b1b93268SToomas Soome 		vdev_indirect_mapping_entry_phys_t *mapping =
861b1b93268SToomas Soome 		    vdev_indirect_mapping_duplicate_adjacent_entries(v,
862b1b93268SToomas Soome 		    rs->rs_offset, rs->rs_asize, &num_entries);
863b1b93268SToomas Soome 
8644efce32aSToomas Soome 		if (num_entries == 0)
8654efce32aSToomas Soome 			zio->io_error = ENOMEM;
8664efce32aSToomas Soome 
867b1b93268SToomas Soome 		for (uint64_t i = 0; i < num_entries; i++) {
868b1b93268SToomas Soome 			vdev_indirect_mapping_entry_phys_t *m = &mapping[i];
869b1b93268SToomas Soome 			uint64_t size = DVA_GET_ASIZE(&m->vimep_dst);
870b1b93268SToomas Soome 			uint64_t dst_offset = DVA_GET_OFFSET(&m->vimep_dst);
871b1b93268SToomas Soome 			uint64_t dst_vdev = DVA_GET_VDEV(&m->vimep_dst);
872b1b93268SToomas Soome 			uint64_t inner_offset = rs->rs_offset -
873b1b93268SToomas Soome 			    DVA_MAPPING_GET_SRC_OFFSET(m);
874b1b93268SToomas Soome 			uint64_t inner_size =
875b1b93268SToomas Soome 			    MIN(rs->rs_asize, size - inner_offset);
876b1b93268SToomas Soome 			vdev_t *dst_v = vdev_lookup_top(spa, dst_vdev);
877b1b93268SToomas Soome 
878b1b93268SToomas Soome 			if (dst_v->v_read == vdev_indirect_read) {
8794efce32aSToomas Soome 				remap_segment_t *o;
8804efce32aSToomas Soome 
8814efce32aSToomas Soome 				o = rs_alloc(dst_v, dst_offset + inner_offset,
8824efce32aSToomas Soome 				    inner_size, rs->rs_split_offset);
8834efce32aSToomas Soome 				if (o == NULL) {
8844efce32aSToomas Soome 					printf("vdev_indirect_remap: "
8854efce32aSToomas Soome 					    "out of memory.\n");
8864efce32aSToomas Soome 					zio->io_error = ENOMEM;
8874efce32aSToomas Soome 					break;
8884efce32aSToomas Soome 				}
8894efce32aSToomas Soome 
8904efce32aSToomas Soome 				list_insert_head(&stack, o);
891b1b93268SToomas Soome 			}
892b1b93268SToomas Soome 			vdev_indirect_gather_splits(rs->rs_split_offset, dst_v,
893b1b93268SToomas Soome 			    dst_offset + inner_offset,
894b1b93268SToomas Soome 			    inner_size, arg);
895b1b93268SToomas Soome 
8966e5555adSToomas Soome 			/*
8976e5555adSToomas Soome 			 * vdev_indirect_gather_splits can have memory
8986e5555adSToomas Soome 			 * allocation error, we can not recover from it.
8996e5555adSToomas Soome 			 */
9006e5555adSToomas Soome 			if (zio->io_error != 0)
9016e5555adSToomas Soome 				break;
9026e5555adSToomas Soome 
903b1b93268SToomas Soome 			rs->rs_offset += inner_size;
904b1b93268SToomas Soome 			rs->rs_asize -= inner_size;
905b1b93268SToomas Soome 			rs->rs_split_offset += inner_size;
906b1b93268SToomas Soome 		}
907b1b93268SToomas Soome 
908b1b93268SToomas Soome 		free(mapping);
909b1b93268SToomas Soome 		free(rs);
9106e5555adSToomas Soome 		if (zio->io_error != 0)
9116e5555adSToomas Soome 			break;
912b1b93268SToomas Soome 	}
913b1b93268SToomas Soome 
914b1b93268SToomas Soome 	list_destroy(&stack);
915b1b93268SToomas Soome }
916b1b93268SToomas Soome 
917b1b93268SToomas Soome static void
918b1b93268SToomas Soome vdev_indirect_map_free(zio_t *zio)
919b1b93268SToomas Soome {
920b1b93268SToomas Soome 	indirect_vsd_t *iv = zio->io_vsd;
921b1b93268SToomas Soome 	indirect_split_t *is;
922b1b93268SToomas Soome 
923b1b93268SToomas Soome 	while ((is = list_head(&iv->iv_splits)) != NULL) {
924b1b93268SToomas Soome 		for (int c = 0; c < is->is_children; c++) {
925b1b93268SToomas Soome 			indirect_child_t *ic = &is->is_child[c];
926b1b93268SToomas Soome 			free(ic->ic_data);
927b1b93268SToomas Soome 		}
928b1b93268SToomas Soome 		list_remove(&iv->iv_splits, is);
929b1b93268SToomas Soome 		free(is);
930b1b93268SToomas Soome 	}
931b1b93268SToomas Soome 	free(iv);
932b1b93268SToomas Soome }
933b1b93268SToomas Soome 
934b1b93268SToomas Soome static int
935b1b93268SToomas Soome vdev_indirect_read(vdev_t *vdev, const blkptr_t *bp, void *buf,
936b1b93268SToomas Soome     off_t offset, size_t bytes)
937b1b93268SToomas Soome {
938b1b93268SToomas Soome 	zio_t zio = { 0 };
939b1b93268SToomas Soome 	spa_t *spa = vdev->spa;
940b1b93268SToomas Soome 	indirect_vsd_t *iv = malloc(sizeof (*iv));
941b1b93268SToomas Soome 	indirect_split_t *first;
942b1b93268SToomas Soome 	int rc = EIO;
943b1b93268SToomas Soome 
944b1b93268SToomas Soome 	if (iv == NULL)
945b1b93268SToomas Soome 		return (ENOMEM);
946b1b93268SToomas Soome 	bzero(iv, sizeof (*iv));
947b1b93268SToomas Soome 
948b1b93268SToomas Soome 	list_create(&iv->iv_splits,
949b1b93268SToomas Soome 	    sizeof (indirect_split_t), offsetof(indirect_split_t, is_node));
950b1b93268SToomas Soome 
951b1b93268SToomas Soome 	zio.io_spa = spa;
952b1b93268SToomas Soome 	zio.io_bp = (blkptr_t *)bp;
953b1b93268SToomas Soome 	zio.io_data = buf;
954b1b93268SToomas Soome 	zio.io_size = bytes;
955b1b93268SToomas Soome 	zio.io_offset = offset;
956b1b93268SToomas Soome 	zio.io_vd = vdev;
957b1b93268SToomas Soome 	zio.io_vsd = iv;
958b1b93268SToomas Soome 
959b1b93268SToomas Soome 	if (vdev->v_mapping == NULL) {
960b1b93268SToomas Soome 		vdev_indirect_config_t *vic;
961b1b93268SToomas Soome 
962b1b93268SToomas Soome 		vic = &vdev->vdev_indirect_config;
963b1b93268SToomas Soome 		vdev->v_mapping = vdev_indirect_mapping_open(spa,
964b1b93268SToomas Soome 		    &spa->spa_mos, vic->vic_mapping_object);
965b1b93268SToomas Soome 	}
966b1b93268SToomas Soome 
967b1b93268SToomas Soome 	vdev_indirect_remap(vdev, offset, bytes, &zio);
9686e5555adSToomas Soome 	if (zio.io_error != 0)
9696e5555adSToomas Soome 		return (zio.io_error);
970b1b93268SToomas Soome 
971b1b93268SToomas Soome 	first = list_head(&iv->iv_splits);
972b1b93268SToomas Soome 	if (first->is_size == zio.io_size) {
973b1b93268SToomas Soome 		/*
974b1b93268SToomas Soome 		 * This is not a split block; we are pointing to the entire
975b1b93268SToomas Soome 		 * data, which will checksum the same as the original data.
976b1b93268SToomas Soome 		 * Pass the BP down so that the child i/o can verify the
977b1b93268SToomas Soome 		 * checksum, and try a different location if available
978b1b93268SToomas Soome 		 * (e.g. on a mirror).
979b1b93268SToomas Soome 		 *
980b1b93268SToomas Soome 		 * While this special case could be handled the same as the
981b1b93268SToomas Soome 		 * general (split block) case, doing it this way ensures
982b1b93268SToomas Soome 		 * that the vast majority of blocks on indirect vdevs
983b1b93268SToomas Soome 		 * (which are not split) are handled identically to blocks
984b1b93268SToomas Soome 		 * on non-indirect vdevs.  This allows us to be less strict
985b1b93268SToomas Soome 		 * about performance in the general (but rare) case.
986b1b93268SToomas Soome 		 */
987b1b93268SToomas Soome 		rc = first->is_vdev->v_read(first->is_vdev, zio.io_bp,
988b1b93268SToomas Soome 		    zio.io_data, first->is_target_offset, bytes);
989b1b93268SToomas Soome 	} else {
990b1b93268SToomas Soome 		iv->iv_split_block = B_TRUE;
991b1b93268SToomas Soome 		/*
992b1b93268SToomas Soome 		 * Read one copy of each split segment, from the
993b1b93268SToomas Soome 		 * top-level vdev.  Since we don't know the
994b1b93268SToomas Soome 		 * checksum of each split individually, the child
995b1b93268SToomas Soome 		 * zio can't ensure that we get the right data.
996b1b93268SToomas Soome 		 * E.g. if it's a mirror, it will just read from a
997b1b93268SToomas Soome 		 * random (healthy) leaf vdev.  We have to verify
998b1b93268SToomas Soome 		 * the checksum in vdev_indirect_io_done().
999b1b93268SToomas Soome 		 */
1000b1b93268SToomas Soome 		for (indirect_split_t *is = list_head(&iv->iv_splits);
1001b1b93268SToomas Soome 		    is != NULL; is = list_next(&iv->iv_splits, is)) {
1002b1b93268SToomas Soome 			char *ptr = zio.io_data;
1003b1b93268SToomas Soome 
1004b1b93268SToomas Soome 			rc = is->is_vdev->v_read(is->is_vdev, zio.io_bp,
1005b1b93268SToomas Soome 			    ptr + is->is_split_offset, is->is_target_offset,
1006b1b93268SToomas Soome 			    is->is_size);
1007b1b93268SToomas Soome 		}
1008b1b93268SToomas Soome 		if (zio_checksum_verify(spa, zio.io_bp, zio.io_data))
1009b1b93268SToomas Soome 			rc = ECKSUM;
1010b1b93268SToomas Soome 		else
1011b1b93268SToomas Soome 			rc = 0;
1012b1b93268SToomas Soome 	}
1013b1b93268SToomas Soome 
1014b1b93268SToomas Soome 	vdev_indirect_map_free(&zio);
1015b1b93268SToomas Soome 	if (rc == 0)
1016b1b93268SToomas Soome 		rc = zio.io_error;
1017b1b93268SToomas Soome 
1018b1b93268SToomas Soome 	return (rc);
1019b1b93268SToomas Soome }
1020b1b93268SToomas Soome 
1021b8902de1SWarner Losh static int
1022b8902de1SWarner Losh vdev_disk_read(vdev_t *vdev, const blkptr_t *bp, void *buf,
1023b8902de1SWarner Losh     off_t offset, size_t bytes)
1024b8902de1SWarner Losh {
1025b8902de1SWarner Losh 
1026b8902de1SWarner Losh 	return (vdev_read_phys(vdev, bp, buf,
1027b8902de1SWarner Losh 	    offset + VDEV_LABEL_START_SIZE, bytes));
1028b8902de1SWarner Losh }
1029b8902de1SWarner Losh 
1030b8902de1SWarner Losh 
1031b8902de1SWarner Losh static int
1032b8902de1SWarner Losh vdev_mirror_read(vdev_t *vdev, const blkptr_t *bp, void *buf,
1033b8902de1SWarner Losh     off_t offset, size_t bytes)
1034b8902de1SWarner Losh {
1035b8902de1SWarner Losh 	vdev_t *kid;
1036b8902de1SWarner Losh 	int rc;
1037b8902de1SWarner Losh 
1038b8902de1SWarner Losh 	rc = EIO;
1039b8902de1SWarner Losh 	STAILQ_FOREACH(kid, &vdev->v_children, v_childlink) {
1040b8902de1SWarner Losh 		if (kid->v_state != VDEV_STATE_HEALTHY)
1041b8902de1SWarner Losh 			continue;
1042b8902de1SWarner Losh 		rc = kid->v_read(kid, bp, buf, offset, bytes);
1043b8902de1SWarner Losh 		if (!rc)
1044b8902de1SWarner Losh 			return (0);
1045b8902de1SWarner Losh 	}
1046b8902de1SWarner Losh 
1047b8902de1SWarner Losh 	return (rc);
1048b8902de1SWarner Losh }
1049b8902de1SWarner Losh 
1050b8902de1SWarner Losh static int
1051b8902de1SWarner Losh vdev_replacing_read(vdev_t *vdev, const blkptr_t *bp, void *buf,
1052b8902de1SWarner Losh     off_t offset, size_t bytes)
1053b8902de1SWarner Losh {
1054b8902de1SWarner Losh 	vdev_t *kid;
1055b8902de1SWarner Losh 
1056b8902de1SWarner Losh 	/*
1057b8902de1SWarner Losh 	 * Here we should have two kids:
1058b8902de1SWarner Losh 	 * First one which is the one we are replacing and we can trust
1059b8902de1SWarner Losh 	 * only this one to have valid data, but it might not be present.
1060b8902de1SWarner Losh 	 * Second one is that one we are replacing with. It is most likely
1061b8902de1SWarner Losh 	 * healthy, but we can't trust it has needed data, so we won't use it.
1062b8902de1SWarner Losh 	 */
1063b8902de1SWarner Losh 	kid = STAILQ_FIRST(&vdev->v_children);
1064b8902de1SWarner Losh 	if (kid == NULL)
1065b8902de1SWarner Losh 		return (EIO);
1066b8902de1SWarner Losh 	if (kid->v_state != VDEV_STATE_HEALTHY)
1067b8902de1SWarner Losh 		return (EIO);
1068b8902de1SWarner Losh 	return (kid->v_read(kid, bp, buf, offset, bytes));
1069b8902de1SWarner Losh }
1070b8902de1SWarner Losh 
1071b8902de1SWarner Losh static vdev_t *
1072b8902de1SWarner Losh vdev_find(uint64_t guid)
1073b8902de1SWarner Losh {
1074b8902de1SWarner Losh 	vdev_t *vdev;
1075b8902de1SWarner Losh 
1076b8902de1SWarner Losh 	STAILQ_FOREACH(vdev, &zfs_vdevs, v_alllink)
1077b8902de1SWarner Losh 		if (vdev->v_guid == guid)
1078b8902de1SWarner Losh 			return (vdev);
1079b8902de1SWarner Losh 
1080b8902de1SWarner Losh 	return (0);
1081b8902de1SWarner Losh }
1082b8902de1SWarner Losh 
1083b8902de1SWarner Losh static vdev_t *
1084b8902de1SWarner Losh vdev_create(uint64_t guid, vdev_read_t *_read)
1085b8902de1SWarner Losh {
1086b8902de1SWarner Losh 	vdev_t *vdev;
1087b1b93268SToomas Soome 	vdev_indirect_config_t *vic;
1088b8902de1SWarner Losh 
1089b8902de1SWarner Losh 	vdev = malloc(sizeof(vdev_t));
1090b8902de1SWarner Losh 	memset(vdev, 0, sizeof(vdev_t));
1091b8902de1SWarner Losh 	STAILQ_INIT(&vdev->v_children);
1092b8902de1SWarner Losh 	vdev->v_guid = guid;
1093b8902de1SWarner Losh 	vdev->v_state = VDEV_STATE_OFFLINE;
1094b8902de1SWarner Losh 	vdev->v_read = _read;
1095b1b93268SToomas Soome 
1096b1b93268SToomas Soome 	vic = &vdev->vdev_indirect_config;
1097b1b93268SToomas Soome 	vic->vic_prev_indirect_vdev = UINT64_MAX;
1098b8902de1SWarner Losh 	STAILQ_INSERT_TAIL(&zfs_vdevs, vdev, v_alllink);
1099b8902de1SWarner Losh 
1100b8902de1SWarner Losh 	return (vdev);
1101b8902de1SWarner Losh }
1102b8902de1SWarner Losh 
1103b8902de1SWarner Losh static int
1104b8902de1SWarner Losh vdev_init_from_nvlist(const unsigned char *nvlist, vdev_t *pvdev,
1105b8902de1SWarner Losh     vdev_t **vdevp, int is_newer)
1106b8902de1SWarner Losh {
1107b8902de1SWarner Losh 	int rc;
1108abca0bd5SToomas Soome 	uint64_t guid, id, ashift, asize, nparity;
1109b8902de1SWarner Losh 	const char *type;
1110b8902de1SWarner Losh 	const char *path;
1111b8902de1SWarner Losh 	vdev_t *vdev, *kid;
1112b8902de1SWarner Losh 	const unsigned char *kids;
1113b8902de1SWarner Losh 	int nkids, i, is_new;
1114b8902de1SWarner Losh 	uint64_t is_offline, is_faulted, is_degraded, is_removed, isnt_present;
11150c0a882cSToomas Soome 	uint64_t is_log;
1116b8902de1SWarner Losh 
1117b8902de1SWarner Losh 	if (nvlist_find(nvlist, ZPOOL_CONFIG_GUID, DATA_TYPE_UINT64,
1118b8902de1SWarner Losh 	    NULL, &guid)
1119b8902de1SWarner Losh 	    || nvlist_find(nvlist, ZPOOL_CONFIG_ID, DATA_TYPE_UINT64, NULL, &id)
1120b8902de1SWarner Losh 	    || nvlist_find(nvlist, ZPOOL_CONFIG_TYPE, DATA_TYPE_STRING,
1121b8902de1SWarner Losh 	    NULL, &type)) {
1122b8902de1SWarner Losh 		printf("ZFS: can't find vdev details\n");
1123b8902de1SWarner Losh 		return (ENOENT);
1124b8902de1SWarner Losh 	}
1125b8902de1SWarner Losh 
1126*2e6bb655SToomas Soome 	if (strcmp(type, VDEV_TYPE_MIRROR) != 0 &&
1127*2e6bb655SToomas Soome 	    strcmp(type, VDEV_TYPE_DISK) != 0 &&
1128b8902de1SWarner Losh #ifdef ZFS_TEST
1129*2e6bb655SToomas Soome 	    strcmp(type, VDEV_TYPE_FILE) != 0 &&
1130b8902de1SWarner Losh #endif
1131*2e6bb655SToomas Soome 	    strcmp(type, VDEV_TYPE_RAIDZ) != 0 &&
1132*2e6bb655SToomas Soome 	    strcmp(type, VDEV_TYPE_INDIRECT) != 0 &&
1133*2e6bb655SToomas Soome 	    strcmp(type, VDEV_TYPE_REPLACING) != 0) {
1134*2e6bb655SToomas Soome 		printf("ZFS: can only boot from disk, mirror, raidz1, "
1135*2e6bb655SToomas Soome 		    "raidz2 and raidz3 vdevs\n");
1136b8902de1SWarner Losh 		return (EIO);
1137b8902de1SWarner Losh 	}
1138b8902de1SWarner Losh 
1139b8902de1SWarner Losh 	is_offline = is_removed = is_faulted = is_degraded = isnt_present = 0;
11400c0a882cSToomas Soome 	is_log = 0;
1141b8902de1SWarner Losh 
1142b8902de1SWarner Losh 	nvlist_find(nvlist, ZPOOL_CONFIG_OFFLINE, DATA_TYPE_UINT64, NULL,
1143b8902de1SWarner Losh 	    &is_offline);
1144b8902de1SWarner Losh 	nvlist_find(nvlist, ZPOOL_CONFIG_REMOVED, DATA_TYPE_UINT64, NULL,
1145b8902de1SWarner Losh 	    &is_removed);
1146b8902de1SWarner Losh 	nvlist_find(nvlist, ZPOOL_CONFIG_FAULTED, DATA_TYPE_UINT64, NULL,
1147b8902de1SWarner Losh 	    &is_faulted);
1148b8902de1SWarner Losh 	nvlist_find(nvlist, ZPOOL_CONFIG_DEGRADED, DATA_TYPE_UINT64, NULL,
1149b8902de1SWarner Losh 	    &is_degraded);
1150b8902de1SWarner Losh 	nvlist_find(nvlist, ZPOOL_CONFIG_NOT_PRESENT, DATA_TYPE_UINT64, NULL,
1151b8902de1SWarner Losh 	    &isnt_present);
11520c0a882cSToomas Soome 	nvlist_find(nvlist, ZPOOL_CONFIG_IS_LOG, DATA_TYPE_UINT64, NULL,
11530c0a882cSToomas Soome 	    &is_log);
1154b8902de1SWarner Losh 
1155b8902de1SWarner Losh 	vdev = vdev_find(guid);
1156b8902de1SWarner Losh 	if (!vdev) {
1157b8902de1SWarner Losh 		is_new = 1;
1158b8902de1SWarner Losh 
1159*2e6bb655SToomas Soome 		if (strcmp(type, VDEV_TYPE_MIRROR) == 0)
1160b8902de1SWarner Losh 			vdev = vdev_create(guid, vdev_mirror_read);
1161*2e6bb655SToomas Soome 		else if (strcmp(type, VDEV_TYPE_RAIDZ) == 0)
1162b8902de1SWarner Losh 			vdev = vdev_create(guid, vdev_raidz_read);
1163*2e6bb655SToomas Soome 		else if (strcmp(type, VDEV_TYPE_REPLACING) == 0)
1164b8902de1SWarner Losh 			vdev = vdev_create(guid, vdev_replacing_read);
1165*2e6bb655SToomas Soome 		else if (strcmp(type, VDEV_TYPE_INDIRECT) == 0) {
1166b1b93268SToomas Soome 			vdev_indirect_config_t *vic;
1167b1b93268SToomas Soome 
1168b1b93268SToomas Soome 			vdev = vdev_create(guid, vdev_indirect_read);
1169b1b93268SToomas Soome 			vdev->v_state = VDEV_STATE_HEALTHY;
1170b1b93268SToomas Soome 			vic = &vdev->vdev_indirect_config;
1171b1b93268SToomas Soome 
1172b1b93268SToomas Soome 			nvlist_find(nvlist,
1173b1b93268SToomas Soome 			    ZPOOL_CONFIG_INDIRECT_OBJECT, DATA_TYPE_UINT64,
1174b1b93268SToomas Soome 			    NULL, &vic->vic_mapping_object);
1175b1b93268SToomas Soome 			nvlist_find(nvlist,
1176b1b93268SToomas Soome 			    ZPOOL_CONFIG_INDIRECT_BIRTHS, DATA_TYPE_UINT64,
1177b1b93268SToomas Soome 			    NULL, &vic->vic_births_object);
1178b1b93268SToomas Soome 			nvlist_find(nvlist,
1179b1b93268SToomas Soome 			    ZPOOL_CONFIG_PREV_INDIRECT_VDEV, DATA_TYPE_UINT64,
1180b1b93268SToomas Soome 			    NULL, &vic->vic_prev_indirect_vdev);
1181b1b93268SToomas Soome 		} else
1182b8902de1SWarner Losh 			vdev = vdev_create(guid, vdev_disk_read);
1183b8902de1SWarner Losh 
1184b8902de1SWarner Losh 		vdev->v_id = id;
1185b8902de1SWarner Losh 		vdev->v_top = pvdev != NULL ? pvdev : vdev;
1186b8902de1SWarner Losh 		if (nvlist_find(nvlist, ZPOOL_CONFIG_ASHIFT,
1187b8902de1SWarner Losh 			DATA_TYPE_UINT64, NULL, &ashift) == 0) {
1188b8902de1SWarner Losh 			vdev->v_ashift = ashift;
1189b8902de1SWarner Losh 		} else {
1190b8902de1SWarner Losh 			vdev->v_ashift = 0;
1191b8902de1SWarner Losh 		}
1192abca0bd5SToomas Soome 		if (nvlist_find(nvlist, ZPOOL_CONFIG_ASIZE,
1193abca0bd5SToomas Soome 		    DATA_TYPE_UINT64, NULL, &asize) == 0) {
1194abca0bd5SToomas Soome 			vdev->v_psize = asize +
1195abca0bd5SToomas Soome 			    VDEV_LABEL_START_SIZE + VDEV_LABEL_END_SIZE;
1196abca0bd5SToomas Soome 		}
1197b8902de1SWarner Losh 		if (nvlist_find(nvlist, ZPOOL_CONFIG_NPARITY,
1198b8902de1SWarner Losh 			DATA_TYPE_UINT64, NULL, &nparity) == 0) {
1199b8902de1SWarner Losh 			vdev->v_nparity = nparity;
1200b8902de1SWarner Losh 		} else {
1201b8902de1SWarner Losh 			vdev->v_nparity = 0;
1202b8902de1SWarner Losh 		}
1203b8902de1SWarner Losh 		if (nvlist_find(nvlist, ZPOOL_CONFIG_PATH,
1204b8902de1SWarner Losh 				DATA_TYPE_STRING, NULL, &path) == 0) {
1205b8902de1SWarner Losh 			if (strncmp(path, "/dev/", 5) == 0)
1206b8902de1SWarner Losh 				path += 5;
1207b8902de1SWarner Losh 			vdev->v_name = strdup(path);
1208b8902de1SWarner Losh 		} else {
1209b1b93268SToomas Soome 			char *name;
1210b1b93268SToomas Soome 
1211*2e6bb655SToomas Soome 			if (strcmp(type, "raidz") == 0) {
1212b1b93268SToomas Soome 				if (vdev->v_nparity < 1 ||
1213b1b93268SToomas Soome 				    vdev->v_nparity > 3) {
1214b1b93268SToomas Soome 					printf("ZFS: can only boot from disk, "
1215b1b93268SToomas Soome 					    "mirror, raidz1, raidz2 and raidz3 "
1216b1b93268SToomas Soome 					    "vdevs\n");
1217b8902de1SWarner Losh 					return (EIO);
1218b8902de1SWarner Losh 				}
1219*2e6bb655SToomas Soome 				rc = asprintf(&name, "%s%d-%jd", type,
1220b1b93268SToomas Soome 				    vdev->v_nparity, id);
1221b8902de1SWarner Losh 			} else {
1222*2e6bb655SToomas Soome 				rc = asprintf(&name, "%s-%jd", type, id);
1223b8902de1SWarner Losh 			}
1224*2e6bb655SToomas Soome 			if (rc < 0)
1225b1b93268SToomas Soome 				return (ENOMEM);
1226b1b93268SToomas Soome 			vdev->v_name = name;
1227b8902de1SWarner Losh 		}
12280c0a882cSToomas Soome 		vdev->v_islog = is_log == 1;
1229b8902de1SWarner Losh 	} else {
1230b8902de1SWarner Losh 		is_new = 0;
1231b8902de1SWarner Losh 	}
1232b8902de1SWarner Losh 
1233b8902de1SWarner Losh 	if (is_new || is_newer) {
1234b8902de1SWarner Losh 		/*
1235b8902de1SWarner Losh 		 * This is either new vdev or we've already seen this vdev,
1236b8902de1SWarner Losh 		 * but from an older vdev label, so let's refresh its state
1237b8902de1SWarner Losh 		 * from the newer label.
1238b8902de1SWarner Losh 		 */
1239b8902de1SWarner Losh 		if (is_offline)
1240b8902de1SWarner Losh 			vdev->v_state = VDEV_STATE_OFFLINE;
1241b8902de1SWarner Losh 		else if (is_removed)
1242b8902de1SWarner Losh 			vdev->v_state = VDEV_STATE_REMOVED;
1243b8902de1SWarner Losh 		else if (is_faulted)
1244b8902de1SWarner Losh 			vdev->v_state = VDEV_STATE_FAULTED;
1245b8902de1SWarner Losh 		else if (is_degraded)
1246b8902de1SWarner Losh 			vdev->v_state = VDEV_STATE_DEGRADED;
1247b8902de1SWarner Losh 		else if (isnt_present)
1248b8902de1SWarner Losh 			vdev->v_state = VDEV_STATE_CANT_OPEN;
1249b8902de1SWarner Losh 	}
1250b8902de1SWarner Losh 
1251b8902de1SWarner Losh 	rc = nvlist_find(nvlist, ZPOOL_CONFIG_CHILDREN, DATA_TYPE_NVLIST_ARRAY,
1252b8902de1SWarner Losh 	    &nkids, &kids);
1253b8902de1SWarner Losh 	/*
1254b8902de1SWarner Losh 	 * Its ok if we don't have any kids.
1255b8902de1SWarner Losh 	 */
1256b8902de1SWarner Losh 	if (rc == 0) {
1257b8902de1SWarner Losh 		vdev->v_nchildren = nkids;
1258b8902de1SWarner Losh 		for (i = 0; i < nkids; i++) {
1259b8902de1SWarner Losh 			rc = vdev_init_from_nvlist(kids, vdev, &kid, is_newer);
1260b8902de1SWarner Losh 			if (rc)
1261b8902de1SWarner Losh 				return (rc);
1262b8902de1SWarner Losh 			if (is_new)
1263b8902de1SWarner Losh 				STAILQ_INSERT_TAIL(&vdev->v_children, kid,
1264b8902de1SWarner Losh 				    v_childlink);
1265b8902de1SWarner Losh 			kids = nvlist_next(kids);
1266b8902de1SWarner Losh 		}
1267b8902de1SWarner Losh 	} else {
1268b8902de1SWarner Losh 		vdev->v_nchildren = 0;
1269b8902de1SWarner Losh 	}
1270b8902de1SWarner Losh 
1271b8902de1SWarner Losh 	if (vdevp)
1272b8902de1SWarner Losh 		*vdevp = vdev;
1273b8902de1SWarner Losh 	return (0);
1274b8902de1SWarner Losh }
1275b8902de1SWarner Losh 
1276b8902de1SWarner Losh static void
1277b8902de1SWarner Losh vdev_set_state(vdev_t *vdev)
1278b8902de1SWarner Losh {
1279b8902de1SWarner Losh 	vdev_t *kid;
1280b8902de1SWarner Losh 	int good_kids;
1281b8902de1SWarner Losh 	int bad_kids;
1282b8902de1SWarner Losh 
1283b8902de1SWarner Losh 	/*
1284b8902de1SWarner Losh 	 * A mirror or raidz is healthy if all its kids are healthy. A
1285b8902de1SWarner Losh 	 * mirror is degraded if any of its kids is healthy; a raidz
1286b8902de1SWarner Losh 	 * is degraded if at most nparity kids are offline.
1287b8902de1SWarner Losh 	 */
1288b8902de1SWarner Losh 	if (STAILQ_FIRST(&vdev->v_children)) {
1289b8902de1SWarner Losh 		good_kids = 0;
1290b8902de1SWarner Losh 		bad_kids = 0;
1291b8902de1SWarner Losh 		STAILQ_FOREACH(kid, &vdev->v_children, v_childlink) {
1292b8902de1SWarner Losh 			if (kid->v_state == VDEV_STATE_HEALTHY)
1293b8902de1SWarner Losh 				good_kids++;
1294b8902de1SWarner Losh 			else
1295b8902de1SWarner Losh 				bad_kids++;
1296b8902de1SWarner Losh 		}
1297b8902de1SWarner Losh 		if (bad_kids == 0) {
1298b8902de1SWarner Losh 			vdev->v_state = VDEV_STATE_HEALTHY;
1299b8902de1SWarner Losh 		} else {
1300b8902de1SWarner Losh 			if (vdev->v_read == vdev_mirror_read) {
1301b8902de1SWarner Losh 				if (good_kids) {
1302b8902de1SWarner Losh 					vdev->v_state = VDEV_STATE_DEGRADED;
1303b8902de1SWarner Losh 				} else {
1304b8902de1SWarner Losh 					vdev->v_state = VDEV_STATE_OFFLINE;
1305b8902de1SWarner Losh 				}
1306b8902de1SWarner Losh 			} else if (vdev->v_read == vdev_raidz_read) {
1307b8902de1SWarner Losh 				if (bad_kids > vdev->v_nparity) {
1308b8902de1SWarner Losh 					vdev->v_state = VDEV_STATE_OFFLINE;
1309b8902de1SWarner Losh 				} else {
1310b8902de1SWarner Losh 					vdev->v_state = VDEV_STATE_DEGRADED;
1311b8902de1SWarner Losh 				}
1312b8902de1SWarner Losh 			}
1313b8902de1SWarner Losh 		}
1314b8902de1SWarner Losh 	}
1315b8902de1SWarner Losh }
1316b8902de1SWarner Losh 
1317b8902de1SWarner Losh static spa_t *
1318b8902de1SWarner Losh spa_find_by_guid(uint64_t guid)
1319b8902de1SWarner Losh {
1320b8902de1SWarner Losh 	spa_t *spa;
1321b8902de1SWarner Losh 
1322b8902de1SWarner Losh 	STAILQ_FOREACH(spa, &zfs_pools, spa_link)
1323b8902de1SWarner Losh 		if (spa->spa_guid == guid)
1324b8902de1SWarner Losh 			return (spa);
1325b8902de1SWarner Losh 
1326*2e6bb655SToomas Soome 	return (NULL);
1327b8902de1SWarner Losh }
1328b8902de1SWarner Losh 
1329b8902de1SWarner Losh static spa_t *
1330b8902de1SWarner Losh spa_find_by_name(const char *name)
1331b8902de1SWarner Losh {
1332b8902de1SWarner Losh 	spa_t *spa;
1333b8902de1SWarner Losh 
1334b8902de1SWarner Losh 	STAILQ_FOREACH(spa, &zfs_pools, spa_link)
1335*2e6bb655SToomas Soome 		if (strcmp(spa->spa_name, name) == 0)
1336b8902de1SWarner Losh 			return (spa);
1337b8902de1SWarner Losh 
1338*2e6bb655SToomas Soome 	return (NULL);
1339b8902de1SWarner Losh }
1340b8902de1SWarner Losh 
1341b8902de1SWarner Losh #ifdef BOOT2
1342b8902de1SWarner Losh static spa_t *
1343b8902de1SWarner Losh spa_get_primary(void)
1344b8902de1SWarner Losh {
1345b8902de1SWarner Losh 
1346b8902de1SWarner Losh 	return (STAILQ_FIRST(&zfs_pools));
1347b8902de1SWarner Losh }
1348b8902de1SWarner Losh 
1349b8902de1SWarner Losh static vdev_t *
1350b8902de1SWarner Losh spa_get_primary_vdev(const spa_t *spa)
1351b8902de1SWarner Losh {
1352b8902de1SWarner Losh 	vdev_t *vdev;
1353b8902de1SWarner Losh 	vdev_t *kid;
1354b8902de1SWarner Losh 
1355b8902de1SWarner Losh 	if (spa == NULL)
1356b8902de1SWarner Losh 		spa = spa_get_primary();
1357b8902de1SWarner Losh 	if (spa == NULL)
1358b8902de1SWarner Losh 		return (NULL);
1359b8902de1SWarner Losh 	vdev = STAILQ_FIRST(&spa->spa_vdevs);
1360b8902de1SWarner Losh 	if (vdev == NULL)
1361b8902de1SWarner Losh 		return (NULL);
1362b8902de1SWarner Losh 	for (kid = STAILQ_FIRST(&vdev->v_children); kid != NULL;
1363b8902de1SWarner Losh 	    kid = STAILQ_FIRST(&vdev->v_children))
1364b8902de1SWarner Losh 		vdev = kid;
1365b8902de1SWarner Losh 	return (vdev);
1366b8902de1SWarner Losh }
1367b8902de1SWarner Losh #endif
1368b8902de1SWarner Losh 
1369b8902de1SWarner Losh static spa_t *
1370b8902de1SWarner Losh spa_create(uint64_t guid, const char *name)
1371b8902de1SWarner Losh {
1372b8902de1SWarner Losh 	spa_t *spa;
1373b8902de1SWarner Losh 
137493a2d4c9SToomas Soome 	if ((spa = calloc(1, sizeof(spa_t))) == NULL)
1375b8902de1SWarner Losh 		return (NULL);
1376b8902de1SWarner Losh 	if ((spa->spa_name = strdup(name)) == NULL) {
1377b8902de1SWarner Losh 		free(spa);
1378b8902de1SWarner Losh 		return (NULL);
1379b8902de1SWarner Losh 	}
1380b8902de1SWarner Losh 	STAILQ_INIT(&spa->spa_vdevs);
1381b8902de1SWarner Losh 	spa->spa_guid = guid;
1382b8902de1SWarner Losh 	STAILQ_INSERT_TAIL(&zfs_pools, spa, spa_link);
1383b8902de1SWarner Losh 
1384b8902de1SWarner Losh 	return (spa);
1385b8902de1SWarner Losh }
1386b8902de1SWarner Losh 
1387b8902de1SWarner Losh static const char *
1388b8902de1SWarner Losh state_name(vdev_state_t state)
1389b8902de1SWarner Losh {
1390b8902de1SWarner Losh 	static const char *names[] = {
1391b8902de1SWarner Losh 		"UNKNOWN",
1392b8902de1SWarner Losh 		"CLOSED",
1393b8902de1SWarner Losh 		"OFFLINE",
1394b8902de1SWarner Losh 		"REMOVED",
1395b8902de1SWarner Losh 		"CANT_OPEN",
1396b8902de1SWarner Losh 		"FAULTED",
1397b8902de1SWarner Losh 		"DEGRADED",
1398b8902de1SWarner Losh 		"ONLINE"
1399b8902de1SWarner Losh 	};
1400*2e6bb655SToomas Soome 	return (names[state]);
1401b8902de1SWarner Losh }
1402b8902de1SWarner Losh 
1403b8902de1SWarner Losh #ifdef BOOT2
1404b8902de1SWarner Losh 
1405b8902de1SWarner Losh #define pager_printf printf
1406b8902de1SWarner Losh 
1407b8902de1SWarner Losh #else
1408b8902de1SWarner Losh 
1409b8902de1SWarner Losh static int
1410b8902de1SWarner Losh pager_printf(const char *fmt, ...)
1411b8902de1SWarner Losh {
1412b8902de1SWarner Losh 	char line[80];
1413b8902de1SWarner Losh 	va_list args;
1414b8902de1SWarner Losh 
1415b8902de1SWarner Losh 	va_start(args, fmt);
1416b8902de1SWarner Losh 	vsprintf(line, fmt, args);
1417b8902de1SWarner Losh 	va_end(args);
1418b8902de1SWarner Losh 
1419b8902de1SWarner Losh 	return (pager_output(line));
1420b8902de1SWarner Losh }
1421b8902de1SWarner Losh 
1422b8902de1SWarner Losh #endif
1423b8902de1SWarner Losh 
1424b8902de1SWarner Losh #define	STATUS_FORMAT	"        %s %s\n"
1425b8902de1SWarner Losh 
1426b8902de1SWarner Losh static int
1427b8902de1SWarner Losh print_state(int indent, const char *name, vdev_state_t state)
1428b8902de1SWarner Losh {
1429b8902de1SWarner Losh 	char buf[512];
1430b8902de1SWarner Losh 	int i;
1431b8902de1SWarner Losh 
1432b8902de1SWarner Losh 	buf[0] = 0;
1433b8902de1SWarner Losh 	for (i = 0; i < indent; i++)
1434b8902de1SWarner Losh 		strcat(buf, "  ");
1435b8902de1SWarner Losh 	strcat(buf, name);
1436b8902de1SWarner Losh 
1437b8902de1SWarner Losh 	return (pager_printf(STATUS_FORMAT, buf, state_name(state)));
1438b8902de1SWarner Losh }
1439b8902de1SWarner Losh 
1440b8902de1SWarner Losh static int
1441b8902de1SWarner Losh vdev_status(vdev_t *vdev, int indent)
1442b8902de1SWarner Losh {
1443b8902de1SWarner Losh 	vdev_t *kid;
1444b8902de1SWarner Losh 	int ret;
14450c0a882cSToomas Soome 
14460c0a882cSToomas Soome 	if (vdev->v_islog) {
14470c0a882cSToomas Soome 		(void) pager_output("        logs\n");
14480c0a882cSToomas Soome 		indent++;
14490c0a882cSToomas Soome 	}
14500c0a882cSToomas Soome 
1451b8902de1SWarner Losh 	ret = print_state(indent, vdev->v_name, vdev->v_state);
1452b8902de1SWarner Losh 	if (ret != 0)
1453b8902de1SWarner Losh 		return (ret);
1454b8902de1SWarner Losh 
1455b8902de1SWarner Losh 	STAILQ_FOREACH(kid, &vdev->v_children, v_childlink) {
1456b8902de1SWarner Losh 		ret = vdev_status(kid, indent + 1);
1457b8902de1SWarner Losh 		if (ret != 0)
1458b8902de1SWarner Losh 			return (ret);
1459b8902de1SWarner Losh 	}
1460b8902de1SWarner Losh 	return (ret);
1461b8902de1SWarner Losh }
1462b8902de1SWarner Losh 
1463b8902de1SWarner Losh static int
1464b8902de1SWarner Losh spa_status(spa_t *spa)
1465b8902de1SWarner Losh {
1466b8902de1SWarner Losh 	static char bootfs[ZFS_MAXNAMELEN];
1467b8902de1SWarner Losh 	uint64_t rootid;
1468b8902de1SWarner Losh 	vdev_t *vdev;
1469b8902de1SWarner Losh 	int good_kids, bad_kids, degraded_kids, ret;
1470b8902de1SWarner Losh 	vdev_state_t state;
1471b8902de1SWarner Losh 
1472b8902de1SWarner Losh 	ret = pager_printf("  pool: %s\n", spa->spa_name);
1473b8902de1SWarner Losh 	if (ret != 0)
1474b8902de1SWarner Losh 		return (ret);
1475b8902de1SWarner Losh 
1476b8902de1SWarner Losh 	if (zfs_get_root(spa, &rootid) == 0 &&
1477b8902de1SWarner Losh 	    zfs_rlookup(spa, rootid, bootfs) == 0) {
1478b8902de1SWarner Losh 		if (bootfs[0] == '\0')
1479b8902de1SWarner Losh 			ret = pager_printf("bootfs: %s\n", spa->spa_name);
1480b8902de1SWarner Losh 		else
1481b8902de1SWarner Losh 			ret = pager_printf("bootfs: %s/%s\n", spa->spa_name,
1482b8902de1SWarner Losh 			    bootfs);
1483b8902de1SWarner Losh 		if (ret != 0)
1484b8902de1SWarner Losh 			return (ret);
1485b8902de1SWarner Losh 	}
1486b8902de1SWarner Losh 	ret = pager_printf("config:\n\n");
1487b8902de1SWarner Losh 	if (ret != 0)
1488b8902de1SWarner Losh 		return (ret);
1489b8902de1SWarner Losh 	ret = pager_printf(STATUS_FORMAT, "NAME", "STATE");
1490b8902de1SWarner Losh 	if (ret != 0)
1491b8902de1SWarner Losh 		return (ret);
1492b8902de1SWarner Losh 
1493b8902de1SWarner Losh 	good_kids = 0;
1494b8902de1SWarner Losh 	degraded_kids = 0;
1495b8902de1SWarner Losh 	bad_kids = 0;
1496b8902de1SWarner Losh 	STAILQ_FOREACH(vdev, &spa->spa_vdevs, v_childlink) {
1497b8902de1SWarner Losh 		if (vdev->v_state == VDEV_STATE_HEALTHY)
1498b8902de1SWarner Losh 			good_kids++;
1499b8902de1SWarner Losh 		else if (vdev->v_state == VDEV_STATE_DEGRADED)
1500b8902de1SWarner Losh 			degraded_kids++;
1501b8902de1SWarner Losh 		else
1502b8902de1SWarner Losh 			bad_kids++;
1503b8902de1SWarner Losh 	}
1504b8902de1SWarner Losh 
1505b8902de1SWarner Losh 	state = VDEV_STATE_CLOSED;
1506b8902de1SWarner Losh 	if (good_kids > 0 && (degraded_kids + bad_kids) == 0)
1507b8902de1SWarner Losh 		state = VDEV_STATE_HEALTHY;
1508b8902de1SWarner Losh 	else if ((good_kids + degraded_kids) > 0)
1509b8902de1SWarner Losh 		state = VDEV_STATE_DEGRADED;
1510b8902de1SWarner Losh 
1511b8902de1SWarner Losh 	ret = print_state(0, spa->spa_name, state);
1512b8902de1SWarner Losh 	if (ret != 0)
1513b8902de1SWarner Losh 		return (ret);
1514b8902de1SWarner Losh 	STAILQ_FOREACH(vdev, &spa->spa_vdevs, v_childlink) {
1515b8902de1SWarner Losh 		ret = vdev_status(vdev, 1);
1516b8902de1SWarner Losh 		if (ret != 0)
1517b8902de1SWarner Losh 			return (ret);
1518b8902de1SWarner Losh 	}
1519b8902de1SWarner Losh 	return (ret);
1520b8902de1SWarner Losh }
1521b8902de1SWarner Losh 
1522b8902de1SWarner Losh static int
1523b8902de1SWarner Losh spa_all_status(void)
1524b8902de1SWarner Losh {
1525b8902de1SWarner Losh 	spa_t *spa;
1526b8902de1SWarner Losh 	int first = 1, ret = 0;
1527b8902de1SWarner Losh 
1528b8902de1SWarner Losh 	STAILQ_FOREACH(spa, &zfs_pools, spa_link) {
1529b8902de1SWarner Losh 		if (!first) {
1530b8902de1SWarner Losh 			ret = pager_printf("\n");
1531b8902de1SWarner Losh 			if (ret != 0)
1532b8902de1SWarner Losh 				return (ret);
1533b8902de1SWarner Losh 		}
1534b8902de1SWarner Losh 		first = 0;
1535b8902de1SWarner Losh 		ret = spa_status(spa);
1536b8902de1SWarner Losh 		if (ret != 0)
1537b8902de1SWarner Losh 			return (ret);
1538b8902de1SWarner Losh 	}
1539b8902de1SWarner Losh 	return (ret);
1540b8902de1SWarner Losh }
1541b8902de1SWarner Losh 
1542b8902de1SWarner Losh static uint64_t
1543b8902de1SWarner Losh vdev_label_offset(uint64_t psize, int l, uint64_t offset)
1544b8902de1SWarner Losh {
1545b8902de1SWarner Losh 	uint64_t label_offset;
1546b8902de1SWarner Losh 
1547b8902de1SWarner Losh 	if (l < VDEV_LABELS / 2)
1548b8902de1SWarner Losh 		label_offset = 0;
1549b8902de1SWarner Losh 	else
1550b8902de1SWarner Losh 		label_offset = psize - VDEV_LABELS * sizeof (vdev_label_t);
1551b8902de1SWarner Losh 
1552b8902de1SWarner Losh 	return (offset + l * sizeof (vdev_label_t) + label_offset);
1553b8902de1SWarner Losh }
1554b8902de1SWarner Losh 
1555b8902de1SWarner Losh static int
155679a4bf89SToomas Soome vdev_uberblock_compare(const uberblock_t *ub1, const uberblock_t *ub2)
155779a4bf89SToomas Soome {
155879a4bf89SToomas Soome 	unsigned int seq1 = 0;
155979a4bf89SToomas Soome 	unsigned int seq2 = 0;
156079a4bf89SToomas Soome 	int cmp = AVL_CMP(ub1->ub_txg, ub2->ub_txg);
156179a4bf89SToomas Soome 
156279a4bf89SToomas Soome 	if (cmp != 0)
156379a4bf89SToomas Soome 		return (cmp);
156479a4bf89SToomas Soome 
156579a4bf89SToomas Soome 	cmp = AVL_CMP(ub1->ub_timestamp, ub2->ub_timestamp);
156679a4bf89SToomas Soome 	if (cmp != 0)
156779a4bf89SToomas Soome 		return (cmp);
156879a4bf89SToomas Soome 
156979a4bf89SToomas Soome 	if (MMP_VALID(ub1) && MMP_SEQ_VALID(ub1))
157079a4bf89SToomas Soome 		seq1 = MMP_SEQ(ub1);
157179a4bf89SToomas Soome 
157279a4bf89SToomas Soome 	if (MMP_VALID(ub2) && MMP_SEQ_VALID(ub2))
157379a4bf89SToomas Soome 		seq2 = MMP_SEQ(ub2);
157479a4bf89SToomas Soome 
157579a4bf89SToomas Soome 	return (AVL_CMP(seq1, seq2));
157679a4bf89SToomas Soome }
157779a4bf89SToomas Soome 
157879a4bf89SToomas Soome static int
157979a4bf89SToomas Soome uberblock_verify(uberblock_t *ub)
158079a4bf89SToomas Soome {
158179a4bf89SToomas Soome 	if (ub->ub_magic == BSWAP_64((uint64_t)UBERBLOCK_MAGIC)) {
158279a4bf89SToomas Soome 		byteswap_uint64_array(ub, sizeof (uberblock_t));
158379a4bf89SToomas Soome 	}
158479a4bf89SToomas Soome 
158579a4bf89SToomas Soome 	if (ub->ub_magic != UBERBLOCK_MAGIC ||
158679a4bf89SToomas Soome 	    !SPA_VERSION_IS_SUPPORTED(ub->ub_version))
158779a4bf89SToomas Soome 		return (EINVAL);
158879a4bf89SToomas Soome 
158979a4bf89SToomas Soome 	return (0);
159079a4bf89SToomas Soome }
159179a4bf89SToomas Soome 
159279a4bf89SToomas Soome static int
159379a4bf89SToomas Soome vdev_label_read(vdev_t *vd, int l, void *buf, uint64_t offset,
159479a4bf89SToomas Soome     size_t size)
159579a4bf89SToomas Soome {
159679a4bf89SToomas Soome 	blkptr_t bp;
159779a4bf89SToomas Soome 	off_t off;
159879a4bf89SToomas Soome 
159979a4bf89SToomas Soome 	off = vdev_label_offset(vd->v_psize, l, offset);
160079a4bf89SToomas Soome 
160179a4bf89SToomas Soome 	BP_ZERO(&bp);
160279a4bf89SToomas Soome 	BP_SET_LSIZE(&bp, size);
160379a4bf89SToomas Soome 	BP_SET_PSIZE(&bp, size);
160479a4bf89SToomas Soome 	BP_SET_CHECKSUM(&bp, ZIO_CHECKSUM_LABEL);
160579a4bf89SToomas Soome 	BP_SET_COMPRESS(&bp, ZIO_COMPRESS_OFF);
160679a4bf89SToomas Soome 	DVA_SET_OFFSET(BP_IDENTITY(&bp), off);
160779a4bf89SToomas Soome 	ZIO_SET_CHECKSUM(&bp.blk_cksum, off, 0, 0, 0);
160879a4bf89SToomas Soome 
160979a4bf89SToomas Soome 	return (vdev_read_phys(vd, &bp, buf, off, size));
161079a4bf89SToomas Soome }
161179a4bf89SToomas Soome 
161279a4bf89SToomas Soome static unsigned char *
161379a4bf89SToomas Soome vdev_label_read_config(vdev_t *vd, uint64_t txg)
161479a4bf89SToomas Soome {
161579a4bf89SToomas Soome 	vdev_phys_t *label;
161679a4bf89SToomas Soome 	uint64_t best_txg = 0;
161779a4bf89SToomas Soome 	uint64_t label_txg = 0;
161879a4bf89SToomas Soome 	uint64_t asize;
161979a4bf89SToomas Soome 	unsigned char *nvl;
162079a4bf89SToomas Soome 	size_t nvl_size;
162179a4bf89SToomas Soome 	int error;
162279a4bf89SToomas Soome 
162379a4bf89SToomas Soome 	label = malloc(sizeof (vdev_phys_t));
162479a4bf89SToomas Soome 	if (label == NULL)
162579a4bf89SToomas Soome 		return (NULL);
162679a4bf89SToomas Soome 
162779a4bf89SToomas Soome 	nvl_size = VDEV_PHYS_SIZE - sizeof (zio_eck_t) - 4;
162879a4bf89SToomas Soome 	nvl = malloc(nvl_size);
16293cac32d1SToomas Soome 	if (nvl == NULL)
16303cac32d1SToomas Soome 		goto done;
163179a4bf89SToomas Soome 
163279a4bf89SToomas Soome 	for (int l = 0; l < VDEV_LABELS; l++) {
163379a4bf89SToomas Soome 		const unsigned char *nvlist;
163479a4bf89SToomas Soome 
163579a4bf89SToomas Soome 		if (vdev_label_read(vd, l, label,
163679a4bf89SToomas Soome 		    offsetof(vdev_label_t, vl_vdev_phys),
163779a4bf89SToomas Soome 		    sizeof (vdev_phys_t)))
163879a4bf89SToomas Soome 			continue;
163979a4bf89SToomas Soome 
164079a4bf89SToomas Soome 		if (label->vp_nvlist[0] != NV_ENCODE_XDR)
164179a4bf89SToomas Soome 			continue;
164279a4bf89SToomas Soome 
164379a4bf89SToomas Soome 		nvlist = (const unsigned char *) label->vp_nvlist + 4;
164479a4bf89SToomas Soome 		error = nvlist_find(nvlist, ZPOOL_CONFIG_POOL_TXG,
164579a4bf89SToomas Soome 		    DATA_TYPE_UINT64, NULL, &label_txg);
16469a3ea759SToomas Soome 		if (error != 0 || label_txg == 0) {
16479a3ea759SToomas Soome 			memcpy(nvl, nvlist, nvl_size);
16483cac32d1SToomas Soome 			goto done;
16499a3ea759SToomas Soome 		}
165079a4bf89SToomas Soome 
165179a4bf89SToomas Soome 		if (label_txg <= txg && label_txg > best_txg) {
165279a4bf89SToomas Soome 			best_txg = label_txg;
165379a4bf89SToomas Soome 			memcpy(nvl, nvlist, nvl_size);
165479a4bf89SToomas Soome 
165579a4bf89SToomas Soome 			/*
165679a4bf89SToomas Soome 			 * Use asize from pool config. We need this
165779a4bf89SToomas Soome 			 * because we can get bad value from BIOS.
165879a4bf89SToomas Soome 			 */
165979a4bf89SToomas Soome 			if (nvlist_find(nvlist, ZPOOL_CONFIG_ASIZE,
166079a4bf89SToomas Soome 			    DATA_TYPE_UINT64, NULL, &asize) == 0) {
166179a4bf89SToomas Soome 				vd->v_psize = asize +
166279a4bf89SToomas Soome 				    VDEV_LABEL_START_SIZE + VDEV_LABEL_END_SIZE;
166379a4bf89SToomas Soome 			}
166479a4bf89SToomas Soome 		}
166579a4bf89SToomas Soome 	}
166679a4bf89SToomas Soome 
166779a4bf89SToomas Soome 	if (best_txg == 0) {
166879a4bf89SToomas Soome 		free(nvl);
166979a4bf89SToomas Soome 		nvl = NULL;
167079a4bf89SToomas Soome 	}
16713cac32d1SToomas Soome done:
16723cac32d1SToomas Soome 	free(label);
167379a4bf89SToomas Soome 	return (nvl);
167479a4bf89SToomas Soome }
167579a4bf89SToomas Soome 
167679a4bf89SToomas Soome static void
167779a4bf89SToomas Soome vdev_uberblock_load(vdev_t *vd, uberblock_t *ub)
167879a4bf89SToomas Soome {
167979a4bf89SToomas Soome 	uberblock_t *buf;
168079a4bf89SToomas Soome 
168179a4bf89SToomas Soome 	buf = malloc(VDEV_UBERBLOCK_SIZE(vd));
168279a4bf89SToomas Soome 	if (buf == NULL)
168379a4bf89SToomas Soome 		return;
168479a4bf89SToomas Soome 
168579a4bf89SToomas Soome 	for (int l = 0; l < VDEV_LABELS; l++) {
168679a4bf89SToomas Soome 		for (int n = 0; n < VDEV_UBERBLOCK_COUNT(vd); n++) {
168779a4bf89SToomas Soome 			if (vdev_label_read(vd, l, buf,
168879a4bf89SToomas Soome 			    VDEV_UBERBLOCK_OFFSET(vd, n),
168979a4bf89SToomas Soome 			    VDEV_UBERBLOCK_SIZE(vd)))
169079a4bf89SToomas Soome 				continue;
169179a4bf89SToomas Soome 			if (uberblock_verify(buf) != 0)
169279a4bf89SToomas Soome 				continue;
169379a4bf89SToomas Soome 
169479a4bf89SToomas Soome 			if (vdev_uberblock_compare(buf, ub) > 0)
169579a4bf89SToomas Soome 				*ub = *buf;
169679a4bf89SToomas Soome 		}
169779a4bf89SToomas Soome 	}
169879a4bf89SToomas Soome 	free(buf);
169979a4bf89SToomas Soome }
170079a4bf89SToomas Soome 
170179a4bf89SToomas Soome static int
1702b8902de1SWarner Losh vdev_probe(vdev_phys_read_t *_read, void *read_priv, spa_t **spap)
1703b8902de1SWarner Losh {
1704c082b391SToomas Soome 	vdev_t vtmp;
1705b8902de1SWarner Losh 	spa_t *spa;
1706b8902de1SWarner Losh 	vdev_t *vdev, *top_vdev, *pool_vdev;
170779a4bf89SToomas Soome 	unsigned char *nvlist;
1708b8902de1SWarner Losh 	uint64_t val;
1709b8902de1SWarner Losh 	uint64_t guid;
1710b8902de1SWarner Losh 	uint64_t pool_txg, pool_guid;
1711b8902de1SWarner Losh 	const char *pool_name;
1712b8902de1SWarner Losh 	const unsigned char *vdevs;
1713b8902de1SWarner Losh 	const unsigned char *features;
171479a4bf89SToomas Soome 	int rc, is_newer;
1715b8902de1SWarner Losh 
1716b8902de1SWarner Losh 	/*
1717b8902de1SWarner Losh 	 * Load the vdev label and figure out which
1718b8902de1SWarner Losh 	 * uberblock is most current.
1719b8902de1SWarner Losh 	 */
1720c082b391SToomas Soome 	memset(&vtmp, 0, sizeof(vtmp));
1721b8902de1SWarner Losh 	vtmp.v_phys_read = _read;
1722b8902de1SWarner Losh 	vtmp.v_read_priv = read_priv;
1723abca0bd5SToomas Soome 	vtmp.v_psize = P2ALIGN(ldi_get_size(read_priv),
1724b8902de1SWarner Losh 	    (uint64_t)sizeof (vdev_label_t));
1725b8902de1SWarner Losh 
172679a4bf89SToomas Soome 	/* Test for minimum device size. */
1727abca0bd5SToomas Soome 	if (vtmp.v_psize < SPA_MINDEVSIZE)
1728b8902de1SWarner Losh 		return (EIO);
1729b8902de1SWarner Losh 
173079a4bf89SToomas Soome 	nvlist = vdev_label_read_config(&vtmp, UINT64_MAX);
173179a4bf89SToomas Soome 	if (nvlist == NULL)
1732b8902de1SWarner Losh 		return (EIO);
1733b8902de1SWarner Losh 
1734b8902de1SWarner Losh 	if (nvlist_find(nvlist, ZPOOL_CONFIG_VERSION, DATA_TYPE_UINT64,
1735b8902de1SWarner Losh 	    NULL, &val) != 0) {
173679a4bf89SToomas Soome 		free(nvlist);
1737b8902de1SWarner Losh 		return (EIO);
1738b8902de1SWarner Losh 	}
1739b8902de1SWarner Losh 
1740b8902de1SWarner Losh 	if (!SPA_VERSION_IS_SUPPORTED(val)) {
1741b8902de1SWarner Losh 		printf("ZFS: unsupported ZFS version %u (should be %u)\n",
1742b8902de1SWarner Losh 		    (unsigned)val, (unsigned)SPA_VERSION);
174379a4bf89SToomas Soome 		free(nvlist);
1744b8902de1SWarner Losh 		return (EIO);
1745b8902de1SWarner Losh 	}
1746b8902de1SWarner Losh 
1747b8902de1SWarner Losh 	/* Check ZFS features for read */
1748b8902de1SWarner Losh 	if (nvlist_find(nvlist, ZPOOL_CONFIG_FEATURES_FOR_READ,
1749b8902de1SWarner Losh 	    DATA_TYPE_NVLIST, NULL, &features) == 0 &&
1750b8902de1SWarner Losh 	    nvlist_check_features_for_read(features) != 0) {
175179a4bf89SToomas Soome 		free(nvlist);
1752b8902de1SWarner Losh 		return (EIO);
1753b8902de1SWarner Losh 	}
1754b8902de1SWarner Losh 
1755b8902de1SWarner Losh 	if (nvlist_find(nvlist, ZPOOL_CONFIG_POOL_STATE, DATA_TYPE_UINT64,
1756b8902de1SWarner Losh 	    NULL, &val) != 0) {
175779a4bf89SToomas Soome 		free(nvlist);
1758b8902de1SWarner Losh 		return (EIO);
1759b8902de1SWarner Losh 	}
1760b8902de1SWarner Losh 
1761b8902de1SWarner Losh 	if (val == POOL_STATE_DESTROYED) {
1762b8902de1SWarner Losh 		/* We don't boot only from destroyed pools. */
176379a4bf89SToomas Soome 		free(nvlist);
1764b8902de1SWarner Losh 		return (EIO);
1765b8902de1SWarner Losh 	}
1766b8902de1SWarner Losh 
1767b8902de1SWarner Losh 	if (nvlist_find(nvlist, ZPOOL_CONFIG_POOL_TXG, DATA_TYPE_UINT64,
1768b8902de1SWarner Losh 	    NULL, &pool_txg) != 0 ||
1769b8902de1SWarner Losh 	    nvlist_find(nvlist, ZPOOL_CONFIG_POOL_GUID, DATA_TYPE_UINT64,
1770b8902de1SWarner Losh 	    NULL, &pool_guid) != 0 ||
1771b8902de1SWarner Losh 	    nvlist_find(nvlist, ZPOOL_CONFIG_POOL_NAME, DATA_TYPE_STRING,
1772b8902de1SWarner Losh 	    NULL, &pool_name) != 0) {
1773b8902de1SWarner Losh 		/*
1774b8902de1SWarner Losh 		 * Cache and spare devices end up here - just ignore
1775b8902de1SWarner Losh 		 * them.
1776b8902de1SWarner Losh 		 */
177779a4bf89SToomas Soome 		free(nvlist);
1778b8902de1SWarner Losh 		return (EIO);
1779b8902de1SWarner Losh 	}
1780b8902de1SWarner Losh 
1781b8902de1SWarner Losh 	/*
1782b8902de1SWarner Losh 	 * Create the pool if this is the first time we've seen it.
1783b8902de1SWarner Losh 	 */
1784b8902de1SWarner Losh 	spa = spa_find_by_guid(pool_guid);
1785b8902de1SWarner Losh 	if (spa == NULL) {
1786b8902de1SWarner Losh 		spa = spa_create(pool_guid, pool_name);
178779a4bf89SToomas Soome 		if (spa == NULL) {
178879a4bf89SToomas Soome 			free(nvlist);
1789b8902de1SWarner Losh 			return (ENOMEM);
1790b8902de1SWarner Losh 		}
179179a4bf89SToomas Soome 	}
1792b8902de1SWarner Losh 	if (pool_txg > spa->spa_txg) {
1793b8902de1SWarner Losh 		spa->spa_txg = pool_txg;
1794b8902de1SWarner Losh 		is_newer = 1;
1795b8902de1SWarner Losh 	} else {
1796b8902de1SWarner Losh 		is_newer = 0;
1797b8902de1SWarner Losh 	}
1798b8902de1SWarner Losh 
1799b8902de1SWarner Losh 	/*
1800b8902de1SWarner Losh 	 * Get the vdev tree and create our in-core copy of it.
1801b8902de1SWarner Losh 	 * If we already have a vdev with this guid, this must
1802b8902de1SWarner Losh 	 * be some kind of alias (overlapping slices, dangerously dedicated
1803b8902de1SWarner Losh 	 * disks etc).
1804b8902de1SWarner Losh 	 */
1805b8902de1SWarner Losh 	if (nvlist_find(nvlist, ZPOOL_CONFIG_GUID, DATA_TYPE_UINT64,
1806b8902de1SWarner Losh 	    NULL, &guid) != 0) {
180779a4bf89SToomas Soome 		free(nvlist);
1808b8902de1SWarner Losh 		return (EIO);
1809b8902de1SWarner Losh 	}
1810b8902de1SWarner Losh 	vdev = vdev_find(guid);
181179a4bf89SToomas Soome 	/* Has this vdev already been inited? */
181279a4bf89SToomas Soome 	if (vdev && vdev->v_phys_read) {
181379a4bf89SToomas Soome 		free(nvlist);
1814b8902de1SWarner Losh 		return (EIO);
181579a4bf89SToomas Soome 	}
1816b8902de1SWarner Losh 
1817b8902de1SWarner Losh 	if (nvlist_find(nvlist, ZPOOL_CONFIG_VDEV_TREE, DATA_TYPE_NVLIST,
1818b8902de1SWarner Losh 	    NULL, &vdevs)) {
181979a4bf89SToomas Soome 		free(nvlist);
1820b8902de1SWarner Losh 		return (EIO);
1821b8902de1SWarner Losh 	}
1822b8902de1SWarner Losh 
1823b8902de1SWarner Losh 	rc = vdev_init_from_nvlist(vdevs, NULL, &top_vdev, is_newer);
182479a4bf89SToomas Soome 	free(nvlist);
1825b8902de1SWarner Losh 	if (rc != 0)
1826b8902de1SWarner Losh 		return (rc);
1827b8902de1SWarner Losh 
1828b8902de1SWarner Losh 	/*
1829b8902de1SWarner Losh 	 * Add the toplevel vdev to the pool if its not already there.
1830b8902de1SWarner Losh 	 */
1831b8902de1SWarner Losh 	STAILQ_FOREACH(pool_vdev, &spa->spa_vdevs, v_childlink)
1832b8902de1SWarner Losh 		if (top_vdev == pool_vdev)
1833b8902de1SWarner Losh 			break;
183479a4bf89SToomas Soome 
1835b8902de1SWarner Losh 	if (!pool_vdev && top_vdev) {
1836b8902de1SWarner Losh 		top_vdev->spa = spa;
1837b8902de1SWarner Losh 		STAILQ_INSERT_TAIL(&spa->spa_vdevs, top_vdev, v_childlink);
1838b8902de1SWarner Losh 	}
1839b8902de1SWarner Losh 
1840b8902de1SWarner Losh 	/*
1841b8902de1SWarner Losh 	 * We should already have created an incomplete vdev for this
1842b8902de1SWarner Losh 	 * vdev. Find it and initialise it with our read proc.
1843b8902de1SWarner Losh 	 */
1844b8902de1SWarner Losh 	vdev = vdev_find(guid);
1845b8902de1SWarner Losh 	if (vdev) {
1846b8902de1SWarner Losh 		vdev->v_phys_read = _read;
1847b8902de1SWarner Losh 		vdev->v_read_priv = read_priv;
1848b8902de1SWarner Losh 		vdev->v_state = VDEV_STATE_HEALTHY;
1849abca0bd5SToomas Soome 		vdev->v_psize = vtmp.v_psize;
1850b8902de1SWarner Losh 	} else {
1851b8902de1SWarner Losh 		printf("ZFS: inconsistent nvlist contents\n");
1852b8902de1SWarner Losh 		return (EIO);
1853b8902de1SWarner Losh 	}
1854b8902de1SWarner Losh 
18550c0a882cSToomas Soome 	if (vdev->v_islog)
18560c0a882cSToomas Soome 		spa->spa_with_log = vdev->v_islog;
18570c0a882cSToomas Soome 
18580c0a882cSToomas Soome 	/*
1859b8902de1SWarner Losh 	 * Re-evaluate top-level vdev state.
1860b8902de1SWarner Losh 	 */
1861b8902de1SWarner Losh 	vdev_set_state(top_vdev);
1862b8902de1SWarner Losh 
1863b8902de1SWarner Losh 	/*
1864b8902de1SWarner Losh 	 * Ok, we are happy with the pool so far. Lets find
1865b8902de1SWarner Losh 	 * the best uberblock and then we can actually access
1866b8902de1SWarner Losh 	 * the contents of the pool.
1867b8902de1SWarner Losh 	 */
186879a4bf89SToomas Soome 	vdev_uberblock_load(vdev, &spa->spa_uberblock);
1869b8902de1SWarner Losh 
1870b8902de1SWarner Losh 	vdev->spa = spa;
1871b8902de1SWarner Losh 	if (spap != NULL)
1872b8902de1SWarner Losh 		*spap = spa;
1873b8902de1SWarner Losh 	return (0);
1874b8902de1SWarner Losh }
1875b8902de1SWarner Losh 
1876b8902de1SWarner Losh static int
1877b8902de1SWarner Losh ilog2(int n)
1878b8902de1SWarner Losh {
1879b8902de1SWarner Losh 	int v;
1880b8902de1SWarner Losh 
1881b8902de1SWarner Losh 	for (v = 0; v < 32; v++)
1882b8902de1SWarner Losh 		if (n == (1 << v))
1883*2e6bb655SToomas Soome 			return (v);
1884*2e6bb655SToomas Soome 	return (-1);
1885b8902de1SWarner Losh }
1886b8902de1SWarner Losh 
1887b8902de1SWarner Losh static int
1888b8902de1SWarner Losh zio_read_gang(const spa_t *spa, const blkptr_t *bp, void *buf)
1889b8902de1SWarner Losh {
1890b8902de1SWarner Losh 	blkptr_t gbh_bp;
1891b8902de1SWarner Losh 	zio_gbh_phys_t zio_gb;
1892b8902de1SWarner Losh 	char *pbuf;
1893b8902de1SWarner Losh 	int i;
1894b8902de1SWarner Losh 
1895b8902de1SWarner Losh 	/* Artificial BP for gang block header. */
1896b8902de1SWarner Losh 	gbh_bp = *bp;
1897b8902de1SWarner Losh 	BP_SET_PSIZE(&gbh_bp, SPA_GANGBLOCKSIZE);
1898b8902de1SWarner Losh 	BP_SET_LSIZE(&gbh_bp, SPA_GANGBLOCKSIZE);
1899b8902de1SWarner Losh 	BP_SET_CHECKSUM(&gbh_bp, ZIO_CHECKSUM_GANG_HEADER);
1900b8902de1SWarner Losh 	BP_SET_COMPRESS(&gbh_bp, ZIO_COMPRESS_OFF);
1901b8902de1SWarner Losh 	for (i = 0; i < SPA_DVAS_PER_BP; i++)
1902b8902de1SWarner Losh 		DVA_SET_GANG(&gbh_bp.blk_dva[i], 0);
1903b8902de1SWarner Losh 
1904b8902de1SWarner Losh 	/* Read gang header block using the artificial BP. */
1905b8902de1SWarner Losh 	if (zio_read(spa, &gbh_bp, &zio_gb))
1906b8902de1SWarner Losh 		return (EIO);
1907b8902de1SWarner Losh 
1908b8902de1SWarner Losh 	pbuf = buf;
1909b8902de1SWarner Losh 	for (i = 0; i < SPA_GBH_NBLKPTRS; i++) {
1910b8902de1SWarner Losh 		blkptr_t *gbp = &zio_gb.zg_blkptr[i];
1911b8902de1SWarner Losh 
1912b8902de1SWarner Losh 		if (BP_IS_HOLE(gbp))
1913b8902de1SWarner Losh 			continue;
1914b8902de1SWarner Losh 		if (zio_read(spa, gbp, pbuf))
1915b8902de1SWarner Losh 			return (EIO);
1916b8902de1SWarner Losh 		pbuf += BP_GET_PSIZE(gbp);
1917b8902de1SWarner Losh 	}
1918b8902de1SWarner Losh 
1919b8902de1SWarner Losh 	if (zio_checksum_verify(spa, bp, buf))
1920b8902de1SWarner Losh 		return (EIO);
1921b8902de1SWarner Losh 	return (0);
1922b8902de1SWarner Losh }
1923b8902de1SWarner Losh 
1924b8902de1SWarner Losh static int
1925b8902de1SWarner Losh zio_read(const spa_t *spa, const blkptr_t *bp, void *buf)
1926b8902de1SWarner Losh {
1927b8902de1SWarner Losh 	int cpfunc = BP_GET_COMPRESS(bp);
1928b8902de1SWarner Losh 	uint64_t align, size;
1929b8902de1SWarner Losh 	void *pbuf;
1930b8902de1SWarner Losh 	int i, error;
1931b8902de1SWarner Losh 
1932b8902de1SWarner Losh 	/*
1933b8902de1SWarner Losh 	 * Process data embedded in block pointer
1934b8902de1SWarner Losh 	 */
1935b8902de1SWarner Losh 	if (BP_IS_EMBEDDED(bp)) {
1936b8902de1SWarner Losh 		ASSERT(BPE_GET_ETYPE(bp) == BP_EMBEDDED_TYPE_DATA);
1937b8902de1SWarner Losh 
1938b8902de1SWarner Losh 		size = BPE_GET_PSIZE(bp);
1939b8902de1SWarner Losh 		ASSERT(size <= BPE_PAYLOAD_SIZE);
1940b8902de1SWarner Losh 
1941b8902de1SWarner Losh 		if (cpfunc != ZIO_COMPRESS_OFF)
1942b8902de1SWarner Losh 			pbuf = zfs_alloc(size);
1943b8902de1SWarner Losh 		else
1944b8902de1SWarner Losh 			pbuf = buf;
1945b8902de1SWarner Losh 
1946b8902de1SWarner Losh 		decode_embedded_bp_compressed(bp, pbuf);
1947b8902de1SWarner Losh 		error = 0;
1948b8902de1SWarner Losh 
1949b8902de1SWarner Losh 		if (cpfunc != ZIO_COMPRESS_OFF) {
1950b8902de1SWarner Losh 			error = zio_decompress_data(cpfunc, pbuf,
1951b8902de1SWarner Losh 			    size, buf, BP_GET_LSIZE(bp));
1952b8902de1SWarner Losh 			zfs_free(pbuf, size);
1953b8902de1SWarner Losh 		}
1954b8902de1SWarner Losh 		if (error != 0)
1955*2e6bb655SToomas Soome 			printf("ZFS: i/o error - unable to decompress "
1956*2e6bb655SToomas Soome 			    "block pointer data, error %d\n", error);
1957b8902de1SWarner Losh 		return (error);
1958b8902de1SWarner Losh 	}
1959b8902de1SWarner Losh 
1960b8902de1SWarner Losh 	error = EIO;
1961b8902de1SWarner Losh 
1962b8902de1SWarner Losh 	for (i = 0; i < SPA_DVAS_PER_BP; i++) {
1963b8902de1SWarner Losh 		const dva_t *dva = &bp->blk_dva[i];
1964b8902de1SWarner Losh 		vdev_t *vdev;
1965b8902de1SWarner Losh 		int vdevid;
1966b8902de1SWarner Losh 		off_t offset;
1967b8902de1SWarner Losh 
1968b8902de1SWarner Losh 		if (!dva->dva_word[0] && !dva->dva_word[1])
1969b8902de1SWarner Losh 			continue;
1970b8902de1SWarner Losh 
1971b8902de1SWarner Losh 		vdevid = DVA_GET_VDEV(dva);
1972b8902de1SWarner Losh 		offset = DVA_GET_OFFSET(dva);
1973b8902de1SWarner Losh 		STAILQ_FOREACH(vdev, &spa->spa_vdevs, v_childlink) {
1974b8902de1SWarner Losh 			if (vdev->v_id == vdevid)
1975b8902de1SWarner Losh 				break;
1976b8902de1SWarner Losh 		}
1977b8902de1SWarner Losh 		if (!vdev || !vdev->v_read)
1978b8902de1SWarner Losh 			continue;
1979b8902de1SWarner Losh 
1980b8902de1SWarner Losh 		size = BP_GET_PSIZE(bp);
1981b8902de1SWarner Losh 		if (vdev->v_read == vdev_raidz_read) {
1982b8902de1SWarner Losh 			align = 1ULL << vdev->v_top->v_ashift;
1983b8902de1SWarner Losh 			if (P2PHASE(size, align) != 0)
1984b8902de1SWarner Losh 				size = P2ROUNDUP(size, align);
1985b8902de1SWarner Losh 		}
1986b8902de1SWarner Losh 		if (size != BP_GET_PSIZE(bp) || cpfunc != ZIO_COMPRESS_OFF)
1987b8902de1SWarner Losh 			pbuf = zfs_alloc(size);
1988b8902de1SWarner Losh 		else
1989b8902de1SWarner Losh 			pbuf = buf;
1990b8902de1SWarner Losh 
1991b8902de1SWarner Losh 		if (DVA_GET_GANG(dva))
1992b8902de1SWarner Losh 			error = zio_read_gang(spa, bp, pbuf);
1993b8902de1SWarner Losh 		else
1994b8902de1SWarner Losh 			error = vdev->v_read(vdev, bp, pbuf, offset, size);
1995b8902de1SWarner Losh 		if (error == 0) {
1996b8902de1SWarner Losh 			if (cpfunc != ZIO_COMPRESS_OFF)
1997b8902de1SWarner Losh 				error = zio_decompress_data(cpfunc, pbuf,
1998b8902de1SWarner Losh 				    BP_GET_PSIZE(bp), buf, BP_GET_LSIZE(bp));
1999b8902de1SWarner Losh 			else if (size != BP_GET_PSIZE(bp))
2000b8902de1SWarner Losh 				bcopy(pbuf, buf, BP_GET_PSIZE(bp));
2001b8902de1SWarner Losh 		}
2002b8902de1SWarner Losh 		if (buf != pbuf)
2003b8902de1SWarner Losh 			zfs_free(pbuf, size);
2004b8902de1SWarner Losh 		if (error == 0)
2005b8902de1SWarner Losh 			break;
2006b8902de1SWarner Losh 	}
2007b8902de1SWarner Losh 	if (error != 0)
2008b8902de1SWarner Losh 		printf("ZFS: i/o error - all block copies unavailable\n");
2009b8902de1SWarner Losh 	return (error);
2010b8902de1SWarner Losh }
2011b8902de1SWarner Losh 
2012b8902de1SWarner Losh static int
2013*2e6bb655SToomas Soome dnode_read(const spa_t *spa, const dnode_phys_t *dnode, off_t offset,
2014*2e6bb655SToomas Soome     void *buf, size_t buflen)
2015b8902de1SWarner Losh {
2016b8902de1SWarner Losh 	int ibshift = dnode->dn_indblkshift - SPA_BLKPTRSHIFT;
2017b8902de1SWarner Losh 	int bsize = dnode->dn_datablkszsec << SPA_MINBLOCKSHIFT;
2018b8902de1SWarner Losh 	int nlevels = dnode->dn_nlevels;
2019b8902de1SWarner Losh 	int i, rc;
2020b8902de1SWarner Losh 
2021b8902de1SWarner Losh 	if (bsize > SPA_MAXBLOCKSIZE) {
2022b8902de1SWarner Losh 		printf("ZFS: I/O error - blocks larger than %llu are not "
2023b8902de1SWarner Losh 		    "supported\n", SPA_MAXBLOCKSIZE);
2024b8902de1SWarner Losh 		return (EIO);
2025b8902de1SWarner Losh 	}
2026b8902de1SWarner Losh 
2027b8902de1SWarner Losh 	/*
2028b8902de1SWarner Losh 	 * Note: bsize may not be a power of two here so we need to do an
2029b8902de1SWarner Losh 	 * actual divide rather than a bitshift.
2030b8902de1SWarner Losh 	 */
2031b8902de1SWarner Losh 	while (buflen > 0) {
2032b8902de1SWarner Losh 		uint64_t bn = offset / bsize;
2033b8902de1SWarner Losh 		int boff = offset % bsize;
2034b8902de1SWarner Losh 		int ibn;
2035b8902de1SWarner Losh 		const blkptr_t *indbp;
2036b8902de1SWarner Losh 		blkptr_t bp;
2037b8902de1SWarner Losh 
2038b8902de1SWarner Losh 		if (bn > dnode->dn_maxblkid)
2039b8902de1SWarner Losh 			return (EIO);
2040b8902de1SWarner Losh 
2041b8902de1SWarner Losh 		if (dnode == dnode_cache_obj && bn == dnode_cache_bn)
2042b8902de1SWarner Losh 			goto cached;
2043b8902de1SWarner Losh 
2044b8902de1SWarner Losh 		indbp = dnode->dn_blkptr;
2045b8902de1SWarner Losh 		for (i = 0; i < nlevels; i++) {
2046b8902de1SWarner Losh 			/*
2047b8902de1SWarner Losh 			 * Copy the bp from the indirect array so that
2048b8902de1SWarner Losh 			 * we can re-use the scratch buffer for multi-level
2049b8902de1SWarner Losh 			 * objects.
2050b8902de1SWarner Losh 			 */
2051b8902de1SWarner Losh 			ibn = bn >> ((nlevels - i - 1) * ibshift);
2052b8902de1SWarner Losh 			ibn &= ((1 << ibshift) - 1);
2053b8902de1SWarner Losh 			bp = indbp[ibn];
2054b8902de1SWarner Losh 			if (BP_IS_HOLE(&bp)) {
2055b8902de1SWarner Losh 				memset(dnode_cache_buf, 0, bsize);
2056b8902de1SWarner Losh 				break;
2057b8902de1SWarner Losh 			}
2058b8902de1SWarner Losh 			rc = zio_read(spa, &bp, dnode_cache_buf);
2059b8902de1SWarner Losh 			if (rc)
2060b8902de1SWarner Losh 				return (rc);
2061b8902de1SWarner Losh 			indbp = (const blkptr_t *) dnode_cache_buf;
2062b8902de1SWarner Losh 		}
2063b8902de1SWarner Losh 		dnode_cache_obj = dnode;
2064b8902de1SWarner Losh 		dnode_cache_bn = bn;
2065b8902de1SWarner Losh 	cached:
2066b8902de1SWarner Losh 
2067b8902de1SWarner Losh 		/*
2068b8902de1SWarner Losh 		 * The buffer contains our data block. Copy what we
2069b8902de1SWarner Losh 		 * need from it and loop.
2070b8902de1SWarner Losh 		 */
2071b8902de1SWarner Losh 		i = bsize - boff;
2072b8902de1SWarner Losh 		if (i > buflen) i = buflen;
2073b8902de1SWarner Losh 		memcpy(buf, &dnode_cache_buf[boff], i);
2074b8902de1SWarner Losh 		buf = ((char*)buf) + i;
2075b8902de1SWarner Losh 		offset += i;
2076b8902de1SWarner Losh 		buflen -= i;
2077b8902de1SWarner Losh 	}
2078b8902de1SWarner Losh 
2079b8902de1SWarner Losh 	return (0);
2080b8902de1SWarner Losh }
2081b8902de1SWarner Losh 
2082b8902de1SWarner Losh /*
2083b8902de1SWarner Losh  * Lookup a value in a microzap directory. Assumes that the zap
2084b8902de1SWarner Losh  * scratch buffer contains the directory contents.
2085b8902de1SWarner Losh  */
2086b8902de1SWarner Losh static int
2087b8902de1SWarner Losh mzap_lookup(const dnode_phys_t *dnode, const char *name, uint64_t *value)
2088b8902de1SWarner Losh {
2089b8902de1SWarner Losh 	const mzap_phys_t *mz;
2090b8902de1SWarner Losh 	const mzap_ent_phys_t *mze;
2091b8902de1SWarner Losh 	size_t size;
2092b8902de1SWarner Losh 	int chunks, i;
2093b8902de1SWarner Losh 
2094b8902de1SWarner Losh 	/*
2095b8902de1SWarner Losh 	 * Microzap objects use exactly one block. Read the whole
2096b8902de1SWarner Losh 	 * thing.
2097b8902de1SWarner Losh 	 */
2098b8902de1SWarner Losh 	size = dnode->dn_datablkszsec * 512;
2099b8902de1SWarner Losh 
2100b8902de1SWarner Losh 	mz = (const mzap_phys_t *) zap_scratch;
2101b8902de1SWarner Losh 	chunks = size / MZAP_ENT_LEN - 1;
2102b8902de1SWarner Losh 
2103b8902de1SWarner Losh 	for (i = 0; i < chunks; i++) {
2104b8902de1SWarner Losh 		mze = &mz->mz_chunk[i];
2105*2e6bb655SToomas Soome 		if (strcmp(mze->mze_name, name) == 0) {
2106b8902de1SWarner Losh 			*value = mze->mze_value;
2107b8902de1SWarner Losh 			return (0);
2108b8902de1SWarner Losh 		}
2109b8902de1SWarner Losh 	}
2110b8902de1SWarner Losh 
2111b8902de1SWarner Losh 	return (ENOENT);
2112b8902de1SWarner Losh }
2113b8902de1SWarner Losh 
2114b8902de1SWarner Losh /*
2115b8902de1SWarner Losh  * Compare a name with a zap leaf entry. Return non-zero if the name
2116b8902de1SWarner Losh  * matches.
2117b8902de1SWarner Losh  */
2118b8902de1SWarner Losh static int
2119*2e6bb655SToomas Soome fzap_name_equal(const zap_leaf_t *zl, const zap_leaf_chunk_t *zc,
2120*2e6bb655SToomas Soome     const char *name)
2121b8902de1SWarner Losh {
2122b8902de1SWarner Losh 	size_t namelen;
2123b8902de1SWarner Losh 	const zap_leaf_chunk_t *nc;
2124b8902de1SWarner Losh 	const char *p;
2125b8902de1SWarner Losh 
2126b8902de1SWarner Losh 	namelen = zc->l_entry.le_name_numints;
2127b8902de1SWarner Losh 
2128b8902de1SWarner Losh 	nc = &ZAP_LEAF_CHUNK(zl, zc->l_entry.le_name_chunk);
2129b8902de1SWarner Losh 	p = name;
2130b8902de1SWarner Losh 	while (namelen > 0) {
2131b8902de1SWarner Losh 		size_t len;
2132*2e6bb655SToomas Soome 
2133b8902de1SWarner Losh 		len = namelen;
2134b8902de1SWarner Losh 		if (len > ZAP_LEAF_ARRAY_BYTES)
2135b8902de1SWarner Losh 			len = ZAP_LEAF_ARRAY_BYTES;
2136b8902de1SWarner Losh 		if (memcmp(p, nc->l_array.la_array, len))
2137b8902de1SWarner Losh 			return (0);
2138b8902de1SWarner Losh 		p += len;
2139b8902de1SWarner Losh 		namelen -= len;
2140b8902de1SWarner Losh 		nc = &ZAP_LEAF_CHUNK(zl, nc->l_array.la_next);
2141b8902de1SWarner Losh 	}
2142b8902de1SWarner Losh 
2143*2e6bb655SToomas Soome 	return (1);
2144b8902de1SWarner Losh }
2145b8902de1SWarner Losh 
2146b8902de1SWarner Losh /*
2147b8902de1SWarner Losh  * Extract a uint64_t value from a zap leaf entry.
2148b8902de1SWarner Losh  */
2149b8902de1SWarner Losh static uint64_t
2150b8902de1SWarner Losh fzap_leaf_value(const zap_leaf_t *zl, const zap_leaf_chunk_t *zc)
2151b8902de1SWarner Losh {
2152b8902de1SWarner Losh 	const zap_leaf_chunk_t *vc;
2153b8902de1SWarner Losh 	int i;
2154b8902de1SWarner Losh 	uint64_t value;
2155b8902de1SWarner Losh 	const uint8_t *p;
2156b8902de1SWarner Losh 
2157b8902de1SWarner Losh 	vc = &ZAP_LEAF_CHUNK(zl, zc->l_entry.le_value_chunk);
2158b8902de1SWarner Losh 	for (i = 0, value = 0, p = vc->l_array.la_array; i < 8; i++) {
2159b8902de1SWarner Losh 		value = (value << 8) | p[i];
2160b8902de1SWarner Losh 	}
2161b8902de1SWarner Losh 
2162*2e6bb655SToomas Soome 	return (value);
2163b8902de1SWarner Losh }
2164b8902de1SWarner Losh 
2165b8902de1SWarner Losh static void
2166b8902de1SWarner Losh stv(int len, void *addr, uint64_t value)
2167b8902de1SWarner Losh {
2168b8902de1SWarner Losh 	switch (len) {
2169b8902de1SWarner Losh 	case 1:
2170b8902de1SWarner Losh 		*(uint8_t *)addr = value;
2171b8902de1SWarner Losh 		return;
2172b8902de1SWarner Losh 	case 2:
2173b8902de1SWarner Losh 		*(uint16_t *)addr = value;
2174b8902de1SWarner Losh 		return;
2175b8902de1SWarner Losh 	case 4:
2176b8902de1SWarner Losh 		*(uint32_t *)addr = value;
2177b8902de1SWarner Losh 		return;
2178b8902de1SWarner Losh 	case 8:
2179b8902de1SWarner Losh 		*(uint64_t *)addr = value;
2180b8902de1SWarner Losh 		return;
2181b8902de1SWarner Losh 	}
2182b8902de1SWarner Losh }
2183b8902de1SWarner Losh 
2184b8902de1SWarner Losh /*
2185b8902de1SWarner Losh  * Extract a array from a zap leaf entry.
2186b8902de1SWarner Losh  */
2187b8902de1SWarner Losh static void
2188b8902de1SWarner Losh fzap_leaf_array(const zap_leaf_t *zl, const zap_leaf_chunk_t *zc,
2189b8902de1SWarner Losh     uint64_t integer_size, uint64_t num_integers, void *buf)
2190b8902de1SWarner Losh {
2191b8902de1SWarner Losh 	uint64_t array_int_len = zc->l_entry.le_value_intlen;
2192b8902de1SWarner Losh 	uint64_t value = 0;
2193b8902de1SWarner Losh 	uint64_t *u64 = buf;
2194b8902de1SWarner Losh 	char *p = buf;
2195b8902de1SWarner Losh 	int len = MIN(zc->l_entry.le_value_numints, num_integers);
2196b8902de1SWarner Losh 	int chunk = zc->l_entry.le_value_chunk;
2197b8902de1SWarner Losh 	int byten = 0;
2198b8902de1SWarner Losh 
2199b8902de1SWarner Losh 	if (integer_size == 8 && len == 1) {
2200b8902de1SWarner Losh 		*u64 = fzap_leaf_value(zl, zc);
2201b8902de1SWarner Losh 		return;
2202b8902de1SWarner Losh 	}
2203b8902de1SWarner Losh 
2204b8902de1SWarner Losh 	while (len > 0) {
2205b8902de1SWarner Losh 		struct zap_leaf_array *la = &ZAP_LEAF_CHUNK(zl, chunk).l_array;
2206b8902de1SWarner Losh 		int i;
2207b8902de1SWarner Losh 
2208b8902de1SWarner Losh 		ASSERT3U(chunk, <, ZAP_LEAF_NUMCHUNKS(zl));
2209b8902de1SWarner Losh 		for (i = 0; i < ZAP_LEAF_ARRAY_BYTES && len > 0; i++) {
2210b8902de1SWarner Losh 			value = (value << 8) | la->la_array[i];
2211b8902de1SWarner Losh 			byten++;
2212b8902de1SWarner Losh 			if (byten == array_int_len) {
2213b8902de1SWarner Losh 				stv(integer_size, p, value);
2214b8902de1SWarner Losh 				byten = 0;
2215b8902de1SWarner Losh 				len--;
2216b8902de1SWarner Losh 				if (len == 0)
2217b8902de1SWarner Losh 					return;
2218b8902de1SWarner Losh 				p += integer_size;
2219b8902de1SWarner Losh 			}
2220b8902de1SWarner Losh 		}
2221b8902de1SWarner Losh 		chunk = la->la_next;
2222b8902de1SWarner Losh 	}
2223b8902de1SWarner Losh }
2224b8902de1SWarner Losh 
2225b8902de1SWarner Losh /*
2226b8902de1SWarner Losh  * Lookup a value in a fatzap directory. Assumes that the zap scratch
2227b8902de1SWarner Losh  * buffer contains the directory header.
2228b8902de1SWarner Losh  */
2229b8902de1SWarner Losh static int
2230b8902de1SWarner Losh fzap_lookup(const spa_t *spa, const dnode_phys_t *dnode, const char *name,
2231b8902de1SWarner Losh     uint64_t integer_size, uint64_t num_integers, void *value)
2232b8902de1SWarner Losh {
2233b8902de1SWarner Losh 	int bsize = dnode->dn_datablkszsec << SPA_MINBLOCKSHIFT;
2234b8902de1SWarner Losh 	zap_phys_t zh = *(zap_phys_t *)zap_scratch;
2235b8902de1SWarner Losh 	fat_zap_t z;
2236b8902de1SWarner Losh 	uint64_t *ptrtbl;
2237b8902de1SWarner Losh 	uint64_t hash;
2238b8902de1SWarner Losh 	int rc;
2239b8902de1SWarner Losh 
2240b8902de1SWarner Losh 	if (zh.zap_magic != ZAP_MAGIC)
2241b8902de1SWarner Losh 		return (EIO);
2242b8902de1SWarner Losh 
2243b8902de1SWarner Losh 	z.zap_block_shift = ilog2(bsize);
2244b8902de1SWarner Losh 	z.zap_phys = (zap_phys_t *)zap_scratch;
2245b8902de1SWarner Losh 
2246b8902de1SWarner Losh 	/*
2247b8902de1SWarner Losh 	 * Figure out where the pointer table is and read it in if necessary.
2248b8902de1SWarner Losh 	 */
2249b8902de1SWarner Losh 	if (zh.zap_ptrtbl.zt_blk) {
2250b8902de1SWarner Losh 		rc = dnode_read(spa, dnode, zh.zap_ptrtbl.zt_blk * bsize,
2251b8902de1SWarner Losh 		    zap_scratch, bsize);
2252b8902de1SWarner Losh 		if (rc)
2253b8902de1SWarner Losh 			return (rc);
2254b8902de1SWarner Losh 		ptrtbl = (uint64_t *)zap_scratch;
2255b8902de1SWarner Losh 	} else {
2256b8902de1SWarner Losh 		ptrtbl = &ZAP_EMBEDDED_PTRTBL_ENT(&z, 0);
2257b8902de1SWarner Losh 	}
2258b8902de1SWarner Losh 
2259b8902de1SWarner Losh 	hash = zap_hash(zh.zap_salt, name);
2260b8902de1SWarner Losh 
2261b8902de1SWarner Losh 	zap_leaf_t zl;
2262b8902de1SWarner Losh 	zl.l_bs = z.zap_block_shift;
2263b8902de1SWarner Losh 
2264b8902de1SWarner Losh 	off_t off = ptrtbl[hash >> (64 - zh.zap_ptrtbl.zt_shift)] << zl.l_bs;
2265b8902de1SWarner Losh 	zap_leaf_chunk_t *zc;
2266b8902de1SWarner Losh 
2267b8902de1SWarner Losh 	rc = dnode_read(spa, dnode, off, zap_scratch, bsize);
2268b8902de1SWarner Losh 	if (rc)
2269b8902de1SWarner Losh 		return (rc);
2270b8902de1SWarner Losh 
2271b8902de1SWarner Losh 	zl.l_phys = (zap_leaf_phys_t *)zap_scratch;
2272b8902de1SWarner Losh 
2273b8902de1SWarner Losh 	/*
2274b8902de1SWarner Losh 	 * Make sure this chunk matches our hash.
2275b8902de1SWarner Losh 	 */
2276*2e6bb655SToomas Soome 	if (zl.l_phys->l_hdr.lh_prefix_len > 0 &&
2277*2e6bb655SToomas Soome 	    zl.l_phys->l_hdr.lh_prefix !=
2278*2e6bb655SToomas Soome 	    hash >> (64 - zl.l_phys->l_hdr.lh_prefix_len))
2279b8902de1SWarner Losh 		return (ENOENT);
2280b8902de1SWarner Losh 
2281b8902de1SWarner Losh 	/*
2282b8902de1SWarner Losh 	 * Hash within the chunk to find our entry.
2283b8902de1SWarner Losh 	 */
2284*2e6bb655SToomas Soome 	int shift = (64 - ZAP_LEAF_HASH_SHIFT(&zl) -
2285*2e6bb655SToomas Soome 	    zl.l_phys->l_hdr.lh_prefix_len);
2286b8902de1SWarner Losh 	int h = (hash >> shift) & ((1 << ZAP_LEAF_HASH_SHIFT(&zl)) - 1);
2287b8902de1SWarner Losh 	h = zl.l_phys->l_hash[h];
2288b8902de1SWarner Losh 	if (h == 0xffff)
2289b8902de1SWarner Losh 		return (ENOENT);
2290b8902de1SWarner Losh 	zc = &ZAP_LEAF_CHUNK(&zl, h);
2291b8902de1SWarner Losh 	while (zc->l_entry.le_hash != hash) {
2292c527e920SAndriy Gapon 		if (zc->l_entry.le_next == 0xffff)
2293c527e920SAndriy Gapon 			return (ENOENT);
2294b8902de1SWarner Losh 		zc = &ZAP_LEAF_CHUNK(&zl, zc->l_entry.le_next);
2295b8902de1SWarner Losh 	}
2296b8902de1SWarner Losh 	if (fzap_name_equal(&zl, zc, name)) {
2297b8902de1SWarner Losh 		if (zc->l_entry.le_value_intlen * zc->l_entry.le_value_numints >
2298b8902de1SWarner Losh 		    integer_size * num_integers)
2299b8902de1SWarner Losh 			return (E2BIG);
2300b8902de1SWarner Losh 		fzap_leaf_array(&zl, zc, integer_size, num_integers, value);
2301b8902de1SWarner Losh 		return (0);
2302b8902de1SWarner Losh 	}
2303b8902de1SWarner Losh 
2304b8902de1SWarner Losh 	return (ENOENT);
2305b8902de1SWarner Losh }
2306b8902de1SWarner Losh 
2307b8902de1SWarner Losh /*
2308b8902de1SWarner Losh  * Lookup a name in a zap object and return its value as a uint64_t.
2309b8902de1SWarner Losh  */
2310b8902de1SWarner Losh static int
2311b8902de1SWarner Losh zap_lookup(const spa_t *spa, const dnode_phys_t *dnode, const char *name,
2312b8902de1SWarner Losh     uint64_t integer_size, uint64_t num_integers, void *value)
2313b8902de1SWarner Losh {
2314b8902de1SWarner Losh 	int rc;
2315b8902de1SWarner Losh 	uint64_t zap_type;
2316b8902de1SWarner Losh 	size_t size = dnode->dn_datablkszsec << SPA_MINBLOCKSHIFT;
2317b8902de1SWarner Losh 
2318b8902de1SWarner Losh 	rc = dnode_read(spa, dnode, 0, zap_scratch, size);
2319b8902de1SWarner Losh 	if (rc)
2320b8902de1SWarner Losh 		return (rc);
2321b8902de1SWarner Losh 
2322b8902de1SWarner Losh 	zap_type = *(uint64_t *)zap_scratch;
2323b8902de1SWarner Losh 	if (zap_type == ZBT_MICRO)
2324*2e6bb655SToomas Soome 		return (mzap_lookup(dnode, name, value));
2325b8902de1SWarner Losh 	else if (zap_type == ZBT_HEADER) {
2326*2e6bb655SToomas Soome 		return (fzap_lookup(spa, dnode, name, integer_size,
2327*2e6bb655SToomas Soome 		    num_integers, value));
2328b8902de1SWarner Losh 	}
2329b8902de1SWarner Losh 	printf("ZFS: invalid zap_type=%d\n", (int)zap_type);
2330b8902de1SWarner Losh 	return (EIO);
2331b8902de1SWarner Losh }
2332b8902de1SWarner Losh 
2333b8902de1SWarner Losh /*
2334b8902de1SWarner Losh  * List a microzap directory. Assumes that the zap scratch buffer contains
2335b8902de1SWarner Losh  * the directory contents.
2336b8902de1SWarner Losh  */
2337b8902de1SWarner Losh static int
2338b8902de1SWarner Losh mzap_list(const dnode_phys_t *dnode, int (*callback)(const char *, uint64_t))
2339b8902de1SWarner Losh {
2340b8902de1SWarner Losh 	const mzap_phys_t *mz;
2341b8902de1SWarner Losh 	const mzap_ent_phys_t *mze;
2342b8902de1SWarner Losh 	size_t size;
2343b8902de1SWarner Losh 	int chunks, i, rc;
2344b8902de1SWarner Losh 
2345b8902de1SWarner Losh 	/*
2346b8902de1SWarner Losh 	 * Microzap objects use exactly one block. Read the whole
2347b8902de1SWarner Losh 	 * thing.
2348b8902de1SWarner Losh 	 */
2349b8902de1SWarner Losh 	size = dnode->dn_datablkszsec * 512;
2350b8902de1SWarner Losh 	mz = (const mzap_phys_t *) zap_scratch;
2351b8902de1SWarner Losh 	chunks = size / MZAP_ENT_LEN - 1;
2352b8902de1SWarner Losh 
2353b8902de1SWarner Losh 	for (i = 0; i < chunks; i++) {
2354b8902de1SWarner Losh 		mze = &mz->mz_chunk[i];
2355b8902de1SWarner Losh 		if (mze->mze_name[0]) {
2356b8902de1SWarner Losh 			rc = callback(mze->mze_name, mze->mze_value);
2357b8902de1SWarner Losh 			if (rc != 0)
2358b8902de1SWarner Losh 				return (rc);
2359b8902de1SWarner Losh 		}
2360b8902de1SWarner Losh 	}
2361b8902de1SWarner Losh 
2362b8902de1SWarner Losh 	return (0);
2363b8902de1SWarner Losh }
2364b8902de1SWarner Losh 
2365b8902de1SWarner Losh /*
2366b8902de1SWarner Losh  * List a fatzap directory. Assumes that the zap scratch buffer contains
2367b8902de1SWarner Losh  * the directory header.
2368b8902de1SWarner Losh  */
2369b8902de1SWarner Losh static int
2370*2e6bb655SToomas Soome fzap_list(const spa_t *spa, const dnode_phys_t *dnode,
2371*2e6bb655SToomas Soome     int (*callback)(const char *, uint64_t))
2372b8902de1SWarner Losh {
2373b8902de1SWarner Losh 	int bsize = dnode->dn_datablkszsec << SPA_MINBLOCKSHIFT;
2374b8902de1SWarner Losh 	zap_phys_t zh = *(zap_phys_t *)zap_scratch;
2375b8902de1SWarner Losh 	fat_zap_t z;
2376b8902de1SWarner Losh 	int i, j, rc;
2377b8902de1SWarner Losh 
2378b8902de1SWarner Losh 	if (zh.zap_magic != ZAP_MAGIC)
2379b8902de1SWarner Losh 		return (EIO);
2380b8902de1SWarner Losh 
2381b8902de1SWarner Losh 	z.zap_block_shift = ilog2(bsize);
2382b8902de1SWarner Losh 	z.zap_phys = (zap_phys_t *)zap_scratch;
2383b8902de1SWarner Losh 
2384b8902de1SWarner Losh 	/*
2385b8902de1SWarner Losh 	 * This assumes that the leaf blocks start at block 1. The
2386b8902de1SWarner Losh 	 * documentation isn't exactly clear on this.
2387b8902de1SWarner Losh 	 */
2388b8902de1SWarner Losh 	zap_leaf_t zl;
2389b8902de1SWarner Losh 	zl.l_bs = z.zap_block_shift;
2390b8902de1SWarner Losh 	for (i = 0; i < zh.zap_num_leafs; i++) {
2391b8902de1SWarner Losh 		off_t off = (i + 1) << zl.l_bs;
2392b8902de1SWarner Losh 		char name[256], *p;
2393b8902de1SWarner Losh 		uint64_t value;
2394b8902de1SWarner Losh 
2395b8902de1SWarner Losh 		if (dnode_read(spa, dnode, off, zap_scratch, bsize))
2396b8902de1SWarner Losh 			return (EIO);
2397b8902de1SWarner Losh 
2398b8902de1SWarner Losh 		zl.l_phys = (zap_leaf_phys_t *)zap_scratch;
2399b8902de1SWarner Losh 
2400b8902de1SWarner Losh 		for (j = 0; j < ZAP_LEAF_NUMCHUNKS(&zl); j++) {
2401b8902de1SWarner Losh 			zap_leaf_chunk_t *zc, *nc;
2402b8902de1SWarner Losh 			int namelen;
2403b8902de1SWarner Losh 
2404b8902de1SWarner Losh 			zc = &ZAP_LEAF_CHUNK(&zl, j);
2405b8902de1SWarner Losh 			if (zc->l_entry.le_type != ZAP_CHUNK_ENTRY)
2406b8902de1SWarner Losh 				continue;
2407b8902de1SWarner Losh 			namelen = zc->l_entry.le_name_numints;
2408b8902de1SWarner Losh 			if (namelen > sizeof(name))
2409b8902de1SWarner Losh 				namelen = sizeof(name);
2410b8902de1SWarner Losh 
2411b8902de1SWarner Losh 			/*
2412b8902de1SWarner Losh 			 * Paste the name back together.
2413b8902de1SWarner Losh 			 */
2414b8902de1SWarner Losh 			nc = &ZAP_LEAF_CHUNK(&zl, zc->l_entry.le_name_chunk);
2415b8902de1SWarner Losh 			p = name;
2416b8902de1SWarner Losh 			while (namelen > 0) {
2417b8902de1SWarner Losh 				int len;
2418b8902de1SWarner Losh 				len = namelen;
2419b8902de1SWarner Losh 				if (len > ZAP_LEAF_ARRAY_BYTES)
2420b8902de1SWarner Losh 					len = ZAP_LEAF_ARRAY_BYTES;
2421b8902de1SWarner Losh 				memcpy(p, nc->l_array.la_array, len);
2422b8902de1SWarner Losh 				p += len;
2423b8902de1SWarner Losh 				namelen -= len;
2424b8902de1SWarner Losh 				nc = &ZAP_LEAF_CHUNK(&zl, nc->l_array.la_next);
2425b8902de1SWarner Losh 			}
2426b8902de1SWarner Losh 
2427b8902de1SWarner Losh 			/*
2428b8902de1SWarner Losh 			 * Assume the first eight bytes of the value are
2429b8902de1SWarner Losh 			 * a uint64_t.
2430b8902de1SWarner Losh 			 */
2431b8902de1SWarner Losh 			value = fzap_leaf_value(&zl, zc);
2432b8902de1SWarner Losh 
2433*2e6bb655SToomas Soome 			/* printf("%s 0x%jx\n", name, (uintmax_t)value); */
2434b8902de1SWarner Losh 			rc = callback((const char *)name, value);
2435b8902de1SWarner Losh 			if (rc != 0)
2436b8902de1SWarner Losh 				return (rc);
2437b8902de1SWarner Losh 		}
2438b8902de1SWarner Losh 	}
2439b8902de1SWarner Losh 
2440b8902de1SWarner Losh 	return (0);
2441b8902de1SWarner Losh }
2442b8902de1SWarner Losh 
2443b8902de1SWarner Losh static int zfs_printf(const char *name, uint64_t value __unused)
2444b8902de1SWarner Losh {
2445b8902de1SWarner Losh 
2446b8902de1SWarner Losh 	printf("%s\n", name);
2447b8902de1SWarner Losh 
2448b8902de1SWarner Losh 	return (0);
2449b8902de1SWarner Losh }
2450b8902de1SWarner Losh 
2451b8902de1SWarner Losh /*
2452b8902de1SWarner Losh  * List a zap directory.
2453b8902de1SWarner Losh  */
2454b8902de1SWarner Losh static int
2455b8902de1SWarner Losh zap_list(const spa_t *spa, const dnode_phys_t *dnode)
2456b8902de1SWarner Losh {
2457b8902de1SWarner Losh 	uint64_t zap_type;
2458b8902de1SWarner Losh 	size_t size = dnode->dn_datablkszsec * 512;
2459b8902de1SWarner Losh 
2460b8902de1SWarner Losh 	if (dnode_read(spa, dnode, 0, zap_scratch, size))
2461b8902de1SWarner Losh 		return (EIO);
2462b8902de1SWarner Losh 
2463b8902de1SWarner Losh 	zap_type = *(uint64_t *)zap_scratch;
2464b8902de1SWarner Losh 	if (zap_type == ZBT_MICRO)
2465*2e6bb655SToomas Soome 		return (mzap_list(dnode, zfs_printf));
2466b8902de1SWarner Losh 	else
2467*2e6bb655SToomas Soome 		return (fzap_list(spa, dnode, zfs_printf));
2468b8902de1SWarner Losh }
2469b8902de1SWarner Losh 
2470b8902de1SWarner Losh static int
2471*2e6bb655SToomas Soome objset_get_dnode(const spa_t *spa, const objset_phys_t *os, uint64_t objnum,
2472*2e6bb655SToomas Soome     dnode_phys_t *dnode)
2473b8902de1SWarner Losh {
2474b8902de1SWarner Losh 	off_t offset;
2475b8902de1SWarner Losh 
2476b8902de1SWarner Losh 	offset = objnum * sizeof(dnode_phys_t);
2477b8902de1SWarner Losh 	return dnode_read(spa, &os->os_meta_dnode, offset,
2478b8902de1SWarner Losh 		dnode, sizeof(dnode_phys_t));
2479b8902de1SWarner Losh }
2480b8902de1SWarner Losh 
2481b8902de1SWarner Losh static int
2482*2e6bb655SToomas Soome mzap_rlookup(const spa_t *spa, const dnode_phys_t *dnode, char *name,
2483*2e6bb655SToomas Soome     uint64_t value)
2484b8902de1SWarner Losh {
2485b8902de1SWarner Losh 	const mzap_phys_t *mz;
2486b8902de1SWarner Losh 	const mzap_ent_phys_t *mze;
2487b8902de1SWarner Losh 	size_t size;
2488b8902de1SWarner Losh 	int chunks, i;
2489b8902de1SWarner Losh 
2490b8902de1SWarner Losh 	/*
2491b8902de1SWarner Losh 	 * Microzap objects use exactly one block. Read the whole
2492b8902de1SWarner Losh 	 * thing.
2493b8902de1SWarner Losh 	 */
2494b8902de1SWarner Losh 	size = dnode->dn_datablkszsec * 512;
2495b8902de1SWarner Losh 
2496b8902de1SWarner Losh 	mz = (const mzap_phys_t *)zap_scratch;
2497b8902de1SWarner Losh 	chunks = size / MZAP_ENT_LEN - 1;
2498b8902de1SWarner Losh 
2499b8902de1SWarner Losh 	for (i = 0; i < chunks; i++) {
2500b8902de1SWarner Losh 		mze = &mz->mz_chunk[i];
2501b8902de1SWarner Losh 		if (value == mze->mze_value) {
2502b8902de1SWarner Losh 			strcpy(name, mze->mze_name);
2503b8902de1SWarner Losh 			return (0);
2504b8902de1SWarner Losh 		}
2505b8902de1SWarner Losh 	}
2506b8902de1SWarner Losh 
2507b8902de1SWarner Losh 	return (ENOENT);
2508b8902de1SWarner Losh }
2509b8902de1SWarner Losh 
2510b8902de1SWarner Losh static void
2511b8902de1SWarner Losh fzap_name_copy(const zap_leaf_t *zl, const zap_leaf_chunk_t *zc, char *name)
2512b8902de1SWarner Losh {
2513b8902de1SWarner Losh 	size_t namelen;
2514b8902de1SWarner Losh 	const zap_leaf_chunk_t *nc;
2515b8902de1SWarner Losh 	char *p;
2516b8902de1SWarner Losh 
2517b8902de1SWarner Losh 	namelen = zc->l_entry.le_name_numints;
2518b8902de1SWarner Losh 
2519b8902de1SWarner Losh 	nc = &ZAP_LEAF_CHUNK(zl, zc->l_entry.le_name_chunk);
2520b8902de1SWarner Losh 	p = name;
2521b8902de1SWarner Losh 	while (namelen > 0) {
2522b8902de1SWarner Losh 		size_t len;
2523b8902de1SWarner Losh 		len = namelen;
2524b8902de1SWarner Losh 		if (len > ZAP_LEAF_ARRAY_BYTES)
2525b8902de1SWarner Losh 			len = ZAP_LEAF_ARRAY_BYTES;
2526b8902de1SWarner Losh 		memcpy(p, nc->l_array.la_array, len);
2527b8902de1SWarner Losh 		p += len;
2528b8902de1SWarner Losh 		namelen -= len;
2529b8902de1SWarner Losh 		nc = &ZAP_LEAF_CHUNK(zl, nc->l_array.la_next);
2530b8902de1SWarner Losh 	}
2531b8902de1SWarner Losh 
2532b8902de1SWarner Losh 	*p = '\0';
2533b8902de1SWarner Losh }
2534b8902de1SWarner Losh 
2535b8902de1SWarner Losh static int
2536*2e6bb655SToomas Soome fzap_rlookup(const spa_t *spa, const dnode_phys_t *dnode, char *name,
2537*2e6bb655SToomas Soome     uint64_t value)
2538b8902de1SWarner Losh {
2539b8902de1SWarner Losh 	int bsize = dnode->dn_datablkszsec << SPA_MINBLOCKSHIFT;
2540b8902de1SWarner Losh 	zap_phys_t zh = *(zap_phys_t *) zap_scratch;
2541b8902de1SWarner Losh 	fat_zap_t z;
2542b8902de1SWarner Losh 	int i, j;
2543b8902de1SWarner Losh 
2544b8902de1SWarner Losh 	if (zh.zap_magic != ZAP_MAGIC)
2545b8902de1SWarner Losh 		return (EIO);
2546b8902de1SWarner Losh 
2547b8902de1SWarner Losh 	z.zap_block_shift = ilog2(bsize);
2548b8902de1SWarner Losh 	z.zap_phys = (zap_phys_t *)zap_scratch;
2549b8902de1SWarner Losh 
2550b8902de1SWarner Losh 	/*
2551b8902de1SWarner Losh 	 * This assumes that the leaf blocks start at block 1. The
2552b8902de1SWarner Losh 	 * documentation isn't exactly clear on this.
2553b8902de1SWarner Losh 	 */
2554b8902de1SWarner Losh 	zap_leaf_t zl;
2555b8902de1SWarner Losh 	zl.l_bs = z.zap_block_shift;
2556b8902de1SWarner Losh 	for (i = 0; i < zh.zap_num_leafs; i++) {
2557b8902de1SWarner Losh 		off_t off = (i + 1) << zl.l_bs;
2558b8902de1SWarner Losh 
2559b8902de1SWarner Losh 		if (dnode_read(spa, dnode, off, zap_scratch, bsize))
2560b8902de1SWarner Losh 			return (EIO);
2561b8902de1SWarner Losh 
2562b8902de1SWarner Losh 		zl.l_phys = (zap_leaf_phys_t *)zap_scratch;
2563b8902de1SWarner Losh 
2564b8902de1SWarner Losh 		for (j = 0; j < ZAP_LEAF_NUMCHUNKS(&zl); j++) {
2565b8902de1SWarner Losh 			zap_leaf_chunk_t *zc;
2566b8902de1SWarner Losh 
2567b8902de1SWarner Losh 			zc = &ZAP_LEAF_CHUNK(&zl, j);
2568b8902de1SWarner Losh 			if (zc->l_entry.le_type != ZAP_CHUNK_ENTRY)
2569b8902de1SWarner Losh 				continue;
2570b8902de1SWarner Losh 			if (zc->l_entry.le_value_intlen != 8 ||
2571b8902de1SWarner Losh 			    zc->l_entry.le_value_numints != 1)
2572b8902de1SWarner Losh 				continue;
2573b8902de1SWarner Losh 
2574b8902de1SWarner Losh 			if (fzap_leaf_value(&zl, zc) == value) {
2575b8902de1SWarner Losh 				fzap_name_copy(&zl, zc, name);
2576b8902de1SWarner Losh 				return (0);
2577b8902de1SWarner Losh 			}
2578b8902de1SWarner Losh 		}
2579b8902de1SWarner Losh 	}
2580b8902de1SWarner Losh 
2581b8902de1SWarner Losh 	return (ENOENT);
2582b8902de1SWarner Losh }
2583b8902de1SWarner Losh 
2584b8902de1SWarner Losh static int
2585*2e6bb655SToomas Soome zap_rlookup(const spa_t *spa, const dnode_phys_t *dnode, char *name,
2586*2e6bb655SToomas Soome     uint64_t value)
2587b8902de1SWarner Losh {
2588b8902de1SWarner Losh 	int rc;
2589b8902de1SWarner Losh 	uint64_t zap_type;
2590b8902de1SWarner Losh 	size_t size = dnode->dn_datablkszsec * 512;
2591b8902de1SWarner Losh 
2592b8902de1SWarner Losh 	rc = dnode_read(spa, dnode, 0, zap_scratch, size);
2593b8902de1SWarner Losh 	if (rc)
2594b8902de1SWarner Losh 		return (rc);
2595b8902de1SWarner Losh 
2596b8902de1SWarner Losh 	zap_type = *(uint64_t *)zap_scratch;
2597b8902de1SWarner Losh 	if (zap_type == ZBT_MICRO)
2598*2e6bb655SToomas Soome 		return (mzap_rlookup(spa, dnode, name, value));
2599b8902de1SWarner Losh 	else
2600*2e6bb655SToomas Soome 		return (fzap_rlookup(spa, dnode, name, value));
2601b8902de1SWarner Losh }
2602b8902de1SWarner Losh 
2603b8902de1SWarner Losh static int
2604b8902de1SWarner Losh zfs_rlookup(const spa_t *spa, uint64_t objnum, char *result)
2605b8902de1SWarner Losh {
2606b8902de1SWarner Losh 	char name[256];
2607b8902de1SWarner Losh 	char component[256];
2608b8902de1SWarner Losh 	uint64_t dir_obj, parent_obj, child_dir_zapobj;
2609b8902de1SWarner Losh 	dnode_phys_t child_dir_zap, dataset, dir, parent;
2610b8902de1SWarner Losh 	dsl_dir_phys_t *dd;
2611b8902de1SWarner Losh 	dsl_dataset_phys_t *ds;
2612b8902de1SWarner Losh 	char *p;
2613b8902de1SWarner Losh 	int len;
2614b8902de1SWarner Losh 
2615b8902de1SWarner Losh 	p = &name[sizeof(name) - 1];
2616b8902de1SWarner Losh 	*p = '\0';
2617b8902de1SWarner Losh 
2618b8902de1SWarner Losh 	if (objset_get_dnode(spa, &spa->spa_mos, objnum, &dataset)) {
2619b8902de1SWarner Losh 		printf("ZFS: can't find dataset %ju\n", (uintmax_t)objnum);
2620b8902de1SWarner Losh 		return (EIO);
2621b8902de1SWarner Losh 	}
2622b8902de1SWarner Losh 	ds = (dsl_dataset_phys_t *)&dataset.dn_bonus;
2623b8902de1SWarner Losh 	dir_obj = ds->ds_dir_obj;
2624b8902de1SWarner Losh 
2625b8902de1SWarner Losh 	for (;;) {
2626b8902de1SWarner Losh 		if (objset_get_dnode(spa, &spa->spa_mos, dir_obj, &dir) != 0)
2627b8902de1SWarner Losh 			return (EIO);
2628b8902de1SWarner Losh 		dd = (dsl_dir_phys_t *)&dir.dn_bonus;
2629b8902de1SWarner Losh 
2630b8902de1SWarner Losh 		/* Actual loop condition. */
2631b8902de1SWarner Losh 		parent_obj = dd->dd_parent_obj;
2632b8902de1SWarner Losh 		if (parent_obj == 0)
2633b8902de1SWarner Losh 			break;
2634b8902de1SWarner Losh 
2635*2e6bb655SToomas Soome 		if (objset_get_dnode(spa, &spa->spa_mos, parent_obj,
2636*2e6bb655SToomas Soome 		    &parent) != 0)
2637b8902de1SWarner Losh 			return (EIO);
2638b8902de1SWarner Losh 		dd = (dsl_dir_phys_t *)&parent.dn_bonus;
2639b8902de1SWarner Losh 		child_dir_zapobj = dd->dd_child_dir_zapobj;
2640*2e6bb655SToomas Soome 		if (objset_get_dnode(spa, &spa->spa_mos, child_dir_zapobj,
2641*2e6bb655SToomas Soome 		    &child_dir_zap) != 0)
2642b8902de1SWarner Losh 			return (EIO);
2643b8902de1SWarner Losh 		if (zap_rlookup(spa, &child_dir_zap, component, dir_obj) != 0)
2644b8902de1SWarner Losh 			return (EIO);
2645b8902de1SWarner Losh 
2646b8902de1SWarner Losh 		len = strlen(component);
2647b8902de1SWarner Losh 		p -= len;
2648b8902de1SWarner Losh 		memcpy(p, component, len);
2649b8902de1SWarner Losh 		--p;
2650b8902de1SWarner Losh 		*p = '/';
2651b8902de1SWarner Losh 
2652b8902de1SWarner Losh 		/* Actual loop iteration. */
2653b8902de1SWarner Losh 		dir_obj = parent_obj;
2654b8902de1SWarner Losh 	}
2655b8902de1SWarner Losh 
2656b8902de1SWarner Losh 	if (*p != '\0')
2657b8902de1SWarner Losh 		++p;
2658b8902de1SWarner Losh 	strcpy(result, p);
2659b8902de1SWarner Losh 
2660b8902de1SWarner Losh 	return (0);
2661b8902de1SWarner Losh }
2662b8902de1SWarner Losh 
2663b8902de1SWarner Losh static int
2664b8902de1SWarner Losh zfs_lookup_dataset(const spa_t *spa, const char *name, uint64_t *objnum)
2665b8902de1SWarner Losh {
2666b8902de1SWarner Losh 	char element[256];
2667b8902de1SWarner Losh 	uint64_t dir_obj, child_dir_zapobj;
2668b8902de1SWarner Losh 	dnode_phys_t child_dir_zap, dir;
2669b8902de1SWarner Losh 	dsl_dir_phys_t *dd;
2670b8902de1SWarner Losh 	const char *p, *q;
2671b8902de1SWarner Losh 
2672*2e6bb655SToomas Soome 	if (objset_get_dnode(spa, &spa->spa_mos,
2673*2e6bb655SToomas Soome 	    DMU_POOL_DIRECTORY_OBJECT, &dir))
2674b8902de1SWarner Losh 		return (EIO);
2675b8902de1SWarner Losh 	if (zap_lookup(spa, &dir, DMU_POOL_ROOT_DATASET, sizeof (dir_obj),
2676b8902de1SWarner Losh 	    1, &dir_obj))
2677b8902de1SWarner Losh 		return (EIO);
2678b8902de1SWarner Losh 
2679b8902de1SWarner Losh 	p = name;
2680b8902de1SWarner Losh 	for (;;) {
2681b8902de1SWarner Losh 		if (objset_get_dnode(spa, &spa->spa_mos, dir_obj, &dir))
2682b8902de1SWarner Losh 			return (EIO);
2683b8902de1SWarner Losh 		dd = (dsl_dir_phys_t *)&dir.dn_bonus;
2684b8902de1SWarner Losh 
2685b8902de1SWarner Losh 		while (*p == '/')
2686b8902de1SWarner Losh 			p++;
2687b8902de1SWarner Losh 		/* Actual loop condition #1. */
2688b8902de1SWarner Losh 		if (*p == '\0')
2689b8902de1SWarner Losh 			break;
2690b8902de1SWarner Losh 
2691b8902de1SWarner Losh 		q = strchr(p, '/');
2692b8902de1SWarner Losh 		if (q) {
2693b8902de1SWarner Losh 			memcpy(element, p, q - p);
2694b8902de1SWarner Losh 			element[q - p] = '\0';
2695b8902de1SWarner Losh 			p = q + 1;
2696b8902de1SWarner Losh 		} else {
2697b8902de1SWarner Losh 			strcpy(element, p);
2698b8902de1SWarner Losh 			p += strlen(p);
2699b8902de1SWarner Losh 		}
2700b8902de1SWarner Losh 
2701b8902de1SWarner Losh 		child_dir_zapobj = dd->dd_child_dir_zapobj;
2702*2e6bb655SToomas Soome 		if (objset_get_dnode(spa, &spa->spa_mos, child_dir_zapobj,
2703*2e6bb655SToomas Soome 		    &child_dir_zap) != 0)
2704b8902de1SWarner Losh 			return (EIO);
2705b8902de1SWarner Losh 
2706b8902de1SWarner Losh 		/* Actual loop condition #2. */
2707b8902de1SWarner Losh 		if (zap_lookup(spa, &child_dir_zap, element, sizeof (dir_obj),
2708b8902de1SWarner Losh 		    1, &dir_obj) != 0)
2709b8902de1SWarner Losh 			return (ENOENT);
2710b8902de1SWarner Losh 	}
2711b8902de1SWarner Losh 
2712b8902de1SWarner Losh 	*objnum = dd->dd_head_dataset_obj;
2713b8902de1SWarner Losh 	return (0);
2714b8902de1SWarner Losh }
2715b8902de1SWarner Losh 
2716b8902de1SWarner Losh #ifndef BOOT2
2717b8902de1SWarner Losh static int
2718b8902de1SWarner Losh zfs_list_dataset(const spa_t *spa, uint64_t objnum/*, int pos, char *entry*/)
2719b8902de1SWarner Losh {
2720b8902de1SWarner Losh 	uint64_t dir_obj, child_dir_zapobj;
2721b8902de1SWarner Losh 	dnode_phys_t child_dir_zap, dir, dataset;
2722b8902de1SWarner Losh 	dsl_dataset_phys_t *ds;
2723b8902de1SWarner Losh 	dsl_dir_phys_t *dd;
2724b8902de1SWarner Losh 
2725b8902de1SWarner Losh 	if (objset_get_dnode(spa, &spa->spa_mos, objnum, &dataset)) {
2726b8902de1SWarner Losh 		printf("ZFS: can't find dataset %ju\n", (uintmax_t)objnum);
2727b8902de1SWarner Losh 		return (EIO);
2728b8902de1SWarner Losh 	}
2729b8902de1SWarner Losh 	ds = (dsl_dataset_phys_t *)&dataset.dn_bonus;
2730b8902de1SWarner Losh 	dir_obj = ds->ds_dir_obj;
2731b8902de1SWarner Losh 
2732b8902de1SWarner Losh 	if (objset_get_dnode(spa, &spa->spa_mos, dir_obj, &dir)) {
2733b8902de1SWarner Losh 		printf("ZFS: can't find dirobj %ju\n", (uintmax_t)dir_obj);
2734b8902de1SWarner Losh 		return (EIO);
2735b8902de1SWarner Losh 	}
2736b8902de1SWarner Losh 	dd = (dsl_dir_phys_t *)&dir.dn_bonus;
2737b8902de1SWarner Losh 
2738b8902de1SWarner Losh 	child_dir_zapobj = dd->dd_child_dir_zapobj;
2739*2e6bb655SToomas Soome 	if (objset_get_dnode(spa, &spa->spa_mos, child_dir_zapobj,
2740*2e6bb655SToomas Soome 	    &child_dir_zap) != 0) {
2741b8902de1SWarner Losh 		printf("ZFS: can't find child zap %ju\n", (uintmax_t)dir_obj);
2742b8902de1SWarner Losh 		return (EIO);
2743b8902de1SWarner Losh 	}
2744b8902de1SWarner Losh 
2745b8902de1SWarner Losh 	return (zap_list(spa, &child_dir_zap) != 0);
2746b8902de1SWarner Losh }
2747b8902de1SWarner Losh 
2748b8902de1SWarner Losh int
2749*2e6bb655SToomas Soome zfs_callback_dataset(const spa_t *spa, uint64_t objnum,
2750*2e6bb655SToomas Soome     int (*callback)(const char *, uint64_t))
2751b8902de1SWarner Losh {
2752b8902de1SWarner Losh 	uint64_t dir_obj, child_dir_zapobj, zap_type;
2753b8902de1SWarner Losh 	dnode_phys_t child_dir_zap, dir, dataset;
2754b8902de1SWarner Losh 	dsl_dataset_phys_t *ds;
2755b8902de1SWarner Losh 	dsl_dir_phys_t *dd;
2756b8902de1SWarner Losh 	int err;
2757b8902de1SWarner Losh 
2758b8902de1SWarner Losh 	err = objset_get_dnode(spa, &spa->spa_mos, objnum, &dataset);
2759b8902de1SWarner Losh 	if (err != 0) {
2760b8902de1SWarner Losh 		printf("ZFS: can't find dataset %ju\n", (uintmax_t)objnum);
2761b8902de1SWarner Losh 		return (err);
2762b8902de1SWarner Losh 	}
2763b8902de1SWarner Losh 	ds = (dsl_dataset_phys_t *)&dataset.dn_bonus;
2764b8902de1SWarner Losh 	dir_obj = ds->ds_dir_obj;
2765b8902de1SWarner Losh 
2766b8902de1SWarner Losh 	err = objset_get_dnode(spa, &spa->spa_mos, dir_obj, &dir);
2767b8902de1SWarner Losh 	if (err != 0) {
2768b8902de1SWarner Losh 		printf("ZFS: can't find dirobj %ju\n", (uintmax_t)dir_obj);
2769b8902de1SWarner Losh 		return (err);
2770b8902de1SWarner Losh 	}
2771b8902de1SWarner Losh 	dd = (dsl_dir_phys_t *)&dir.dn_bonus;
2772b8902de1SWarner Losh 
2773b8902de1SWarner Losh 	child_dir_zapobj = dd->dd_child_dir_zapobj;
2774*2e6bb655SToomas Soome 	err = objset_get_dnode(spa, &spa->spa_mos, child_dir_zapobj,
2775*2e6bb655SToomas Soome 	    &child_dir_zap);
2776b8902de1SWarner Losh 	if (err != 0) {
2777b8902de1SWarner Losh 		printf("ZFS: can't find child zap %ju\n", (uintmax_t)dir_obj);
2778b8902de1SWarner Losh 		return (err);
2779b8902de1SWarner Losh 	}
2780b8902de1SWarner Losh 
2781*2e6bb655SToomas Soome 	err = dnode_read(spa, &child_dir_zap, 0, zap_scratch,
2782*2e6bb655SToomas Soome 	    child_dir_zap.dn_datablkszsec * 512);
2783b8902de1SWarner Losh 	if (err != 0)
2784b8902de1SWarner Losh 		return (err);
2785b8902de1SWarner Losh 
2786b8902de1SWarner Losh 	zap_type = *(uint64_t *)zap_scratch;
2787b8902de1SWarner Losh 	if (zap_type == ZBT_MICRO)
2788*2e6bb655SToomas Soome 		return (mzap_list(&child_dir_zap, callback));
2789b8902de1SWarner Losh 	else
2790*2e6bb655SToomas Soome 		return (fzap_list(spa, &child_dir_zap, callback));
2791b8902de1SWarner Losh }
2792b8902de1SWarner Losh #endif
2793b8902de1SWarner Losh 
2794b8902de1SWarner Losh /*
2795b8902de1SWarner Losh  * Find the object set given the object number of its dataset object
2796b8902de1SWarner Losh  * and return its details in *objset
2797b8902de1SWarner Losh  */
2798b8902de1SWarner Losh static int
2799b8902de1SWarner Losh zfs_mount_dataset(const spa_t *spa, uint64_t objnum, objset_phys_t *objset)
2800b8902de1SWarner Losh {
2801b8902de1SWarner Losh 	dnode_phys_t dataset;
2802b8902de1SWarner Losh 	dsl_dataset_phys_t *ds;
2803b8902de1SWarner Losh 
2804b8902de1SWarner Losh 	if (objset_get_dnode(spa, &spa->spa_mos, objnum, &dataset)) {
2805b8902de1SWarner Losh 		printf("ZFS: can't find dataset %ju\n", (uintmax_t)objnum);
2806b8902de1SWarner Losh 		return (EIO);
2807b8902de1SWarner Losh 	}
2808b8902de1SWarner Losh 
2809b8902de1SWarner Losh 	ds = (dsl_dataset_phys_t *)&dataset.dn_bonus;
2810b8902de1SWarner Losh 	if (zio_read(spa, &ds->ds_bp, objset)) {
2811b8902de1SWarner Losh 		printf("ZFS: can't read object set for dataset %ju\n",
2812b8902de1SWarner Losh 		    (uintmax_t)objnum);
2813b8902de1SWarner Losh 		return (EIO);
2814b8902de1SWarner Losh 	}
2815b8902de1SWarner Losh 
2816b8902de1SWarner Losh 	return (0);
2817b8902de1SWarner Losh }
2818b8902de1SWarner Losh 
2819b8902de1SWarner Losh /*
2820b8902de1SWarner Losh  * Find the object set pointed to by the BOOTFS property or the root
2821b8902de1SWarner Losh  * dataset if there is none and return its details in *objset
2822b8902de1SWarner Losh  */
2823b8902de1SWarner Losh static int
2824b8902de1SWarner Losh zfs_get_root(const spa_t *spa, uint64_t *objid)
2825b8902de1SWarner Losh {
2826b8902de1SWarner Losh 	dnode_phys_t dir, propdir;
2827b8902de1SWarner Losh 	uint64_t props, bootfs, root;
2828b8902de1SWarner Losh 
2829b8902de1SWarner Losh 	*objid = 0;
2830b8902de1SWarner Losh 
2831b8902de1SWarner Losh 	/*
2832b8902de1SWarner Losh 	 * Start with the MOS directory object.
2833b8902de1SWarner Losh 	 */
2834*2e6bb655SToomas Soome 	if (objset_get_dnode(spa, &spa->spa_mos,
2835*2e6bb655SToomas Soome 	    DMU_POOL_DIRECTORY_OBJECT, &dir)) {
2836b8902de1SWarner Losh 		printf("ZFS: can't read MOS object directory\n");
2837b8902de1SWarner Losh 		return (EIO);
2838b8902de1SWarner Losh 	}
2839b8902de1SWarner Losh 
2840b8902de1SWarner Losh 	/*
2841b8902de1SWarner Losh 	 * Lookup the pool_props and see if we can find a bootfs.
2842b8902de1SWarner Losh 	 */
2843*2e6bb655SToomas Soome 	if (zap_lookup(spa, &dir, DMU_POOL_PROPS,
2844*2e6bb655SToomas Soome 	    sizeof(props), 1, &props) == 0 &&
2845*2e6bb655SToomas Soome 	    objset_get_dnode(spa, &spa->spa_mos, props, &propdir) == 0 &&
2846*2e6bb655SToomas Soome 	    zap_lookup(spa, &propdir, "bootfs",
2847*2e6bb655SToomas Soome 	    sizeof(bootfs), 1, &bootfs) == 0 &&
2848*2e6bb655SToomas Soome 	    bootfs != 0) {
2849b8902de1SWarner Losh 		*objid = bootfs;
2850b8902de1SWarner Losh 		return (0);
2851b8902de1SWarner Losh 	}
2852b8902de1SWarner Losh 	/*
2853b8902de1SWarner Losh 	 * Lookup the root dataset directory
2854b8902de1SWarner Losh 	 */
2855*2e6bb655SToomas Soome 	if (zap_lookup(spa, &dir, DMU_POOL_ROOT_DATASET,
2856*2e6bb655SToomas Soome 	    sizeof(root), 1, &root) ||
2857*2e6bb655SToomas Soome 	    objset_get_dnode(spa, &spa->spa_mos, root, &dir)) {
2858b8902de1SWarner Losh 		printf("ZFS: can't find root dsl_dir\n");
2859b8902de1SWarner Losh 		return (EIO);
2860b8902de1SWarner Losh 	}
2861b8902de1SWarner Losh 
2862b8902de1SWarner Losh 	/*
2863b8902de1SWarner Losh 	 * Use the information from the dataset directory's bonus buffer
2864b8902de1SWarner Losh 	 * to find the dataset object and from that the object set itself.
2865b8902de1SWarner Losh 	 */
2866b8902de1SWarner Losh 	dsl_dir_phys_t *dd = (dsl_dir_phys_t *)&dir.dn_bonus;
2867b8902de1SWarner Losh 	*objid = dd->dd_head_dataset_obj;
2868b8902de1SWarner Losh 	return (0);
2869b8902de1SWarner Losh }
2870b8902de1SWarner Losh 
2871b8902de1SWarner Losh static int
2872b8902de1SWarner Losh zfs_mount(const spa_t *spa, uint64_t rootobj, struct zfsmount *mount)
2873b8902de1SWarner Losh {
2874b8902de1SWarner Losh 
2875b8902de1SWarner Losh 	mount->spa = spa;
2876b8902de1SWarner Losh 
2877b8902de1SWarner Losh 	/*
2878b8902de1SWarner Losh 	 * Find the root object set if not explicitly provided
2879b8902de1SWarner Losh 	 */
2880b8902de1SWarner Losh 	if (rootobj == 0 && zfs_get_root(spa, &rootobj)) {
2881b8902de1SWarner Losh 		printf("ZFS: can't find root filesystem\n");
2882b8902de1SWarner Losh 		return (EIO);
2883b8902de1SWarner Losh 	}
2884b8902de1SWarner Losh 
2885b8902de1SWarner Losh 	if (zfs_mount_dataset(spa, rootobj, &mount->objset)) {
2886b8902de1SWarner Losh 		printf("ZFS: can't open root filesystem\n");
2887b8902de1SWarner Losh 		return (EIO);
2888b8902de1SWarner Losh 	}
2889b8902de1SWarner Losh 
2890b8902de1SWarner Losh 	mount->rootobj = rootobj;
2891b8902de1SWarner Losh 
2892b8902de1SWarner Losh 	return (0);
2893b8902de1SWarner Losh }
2894b8902de1SWarner Losh 
2895b8902de1SWarner Losh /*
2896b8902de1SWarner Losh  * callback function for feature name checks.
2897b8902de1SWarner Losh  */
2898b8902de1SWarner Losh static int
2899b8902de1SWarner Losh check_feature(const char *name, uint64_t value)
2900b8902de1SWarner Losh {
2901b8902de1SWarner Losh 	int i;
2902b8902de1SWarner Losh 
2903b8902de1SWarner Losh 	if (value == 0)
2904b8902de1SWarner Losh 		return (0);
2905b8902de1SWarner Losh 	if (name[0] == '\0')
2906b8902de1SWarner Losh 		return (0);
2907b8902de1SWarner Losh 
2908b8902de1SWarner Losh 	for (i = 0; features_for_read[i] != NULL; i++) {
2909b8902de1SWarner Losh 		if (strcmp(name, features_for_read[i]) == 0)
2910b8902de1SWarner Losh 			return (0);
2911b8902de1SWarner Losh 	}
2912b8902de1SWarner Losh 	printf("ZFS: unsupported feature: %s\n", name);
2913b8902de1SWarner Losh 	return (EIO);
2914b8902de1SWarner Losh }
2915b8902de1SWarner Losh 
2916b8902de1SWarner Losh /*
2917b8902de1SWarner Losh  * Checks whether the MOS features that are active are supported.
2918b8902de1SWarner Losh  */
2919b8902de1SWarner Losh static int
2920b8902de1SWarner Losh check_mos_features(const spa_t *spa)
2921b8902de1SWarner Losh {
2922b8902de1SWarner Losh 	dnode_phys_t dir;
2923b8902de1SWarner Losh 	uint64_t objnum, zap_type;
2924b8902de1SWarner Losh 	size_t size;
2925b8902de1SWarner Losh 	int rc;
2926b8902de1SWarner Losh 
2927b8902de1SWarner Losh 	if ((rc = objset_get_dnode(spa, &spa->spa_mos, DMU_OT_OBJECT_DIRECTORY,
2928b8902de1SWarner Losh 	    &dir)) != 0)
2929b8902de1SWarner Losh 		return (rc);
2930b8902de1SWarner Losh 	if ((rc = zap_lookup(spa, &dir, DMU_POOL_FEATURES_FOR_READ,
2931b8902de1SWarner Losh 	    sizeof (objnum), 1, &objnum)) != 0) {
2932b8902de1SWarner Losh 		/*
2933b8902de1SWarner Losh 		 * It is older pool without features. As we have already
2934b8902de1SWarner Losh 		 * tested the label, just return without raising the error.
2935b8902de1SWarner Losh 		 */
2936b8902de1SWarner Losh 		return (0);
2937b8902de1SWarner Losh 	}
2938b8902de1SWarner Losh 
2939b8902de1SWarner Losh 	if ((rc = objset_get_dnode(spa, &spa->spa_mos, objnum, &dir)) != 0)
2940b8902de1SWarner Losh 		return (rc);
2941b8902de1SWarner Losh 
2942b8902de1SWarner Losh 	if (dir.dn_type != DMU_OTN_ZAP_METADATA)
2943b8902de1SWarner Losh 		return (EIO);
2944b8902de1SWarner Losh 
2945b8902de1SWarner Losh 	size = dir.dn_datablkszsec * 512;
2946b8902de1SWarner Losh 	if (dnode_read(spa, &dir, 0, zap_scratch, size))
2947b8902de1SWarner Losh 		return (EIO);
2948b8902de1SWarner Losh 
2949b8902de1SWarner Losh 	zap_type = *(uint64_t *)zap_scratch;
2950b8902de1SWarner Losh 	if (zap_type == ZBT_MICRO)
2951b8902de1SWarner Losh 		rc = mzap_list(&dir, check_feature);
2952b8902de1SWarner Losh 	else
2953b8902de1SWarner Losh 		rc = fzap_list(spa, &dir, check_feature);
2954b8902de1SWarner Losh 
2955b8902de1SWarner Losh 	return (rc);
2956b8902de1SWarner Losh }
2957b8902de1SWarner Losh 
2958b8902de1SWarner Losh static int
2959b1b93268SToomas Soome load_nvlist(spa_t *spa, uint64_t obj, unsigned char **value)
2960b1b93268SToomas Soome {
2961b1b93268SToomas Soome 	dnode_phys_t dir;
2962b1b93268SToomas Soome 	size_t size;
2963b1b93268SToomas Soome 	int rc;
2964b1b93268SToomas Soome 	unsigned char *nv;
2965b1b93268SToomas Soome 
2966b1b93268SToomas Soome 	*value = NULL;
2967b1b93268SToomas Soome 	if ((rc = objset_get_dnode(spa, &spa->spa_mos, obj, &dir)) != 0)
2968b1b93268SToomas Soome 		return (rc);
2969b1b93268SToomas Soome 	if (dir.dn_type != DMU_OT_PACKED_NVLIST &&
2970b1b93268SToomas Soome 	    dir.dn_bonustype != DMU_OT_PACKED_NVLIST_SIZE) {
2971b1b93268SToomas Soome 		return (EIO);
2972b1b93268SToomas Soome 	}
2973b1b93268SToomas Soome 
2974b1b93268SToomas Soome 	if (dir.dn_bonuslen != sizeof (uint64_t))
2975b1b93268SToomas Soome 		return (EIO);
2976b1b93268SToomas Soome 
2977b1b93268SToomas Soome 	size = *(uint64_t *)DN_BONUS(&dir);
2978b1b93268SToomas Soome 	nv = malloc(size);
2979b1b93268SToomas Soome 	if (nv == NULL)
2980b1b93268SToomas Soome 		return (ENOMEM);
2981b1b93268SToomas Soome 
2982b1b93268SToomas Soome 	rc = dnode_read(spa, &dir, 0, nv, size);
2983b1b93268SToomas Soome 	if (rc != 0) {
2984b1b93268SToomas Soome 		free(nv);
2985b1b93268SToomas Soome 		nv = NULL;
2986b1b93268SToomas Soome 		return (rc);
2987b1b93268SToomas Soome 	}
2988b1b93268SToomas Soome 	*value = nv;
2989b1b93268SToomas Soome 	return (rc);
2990b1b93268SToomas Soome }
2991b1b93268SToomas Soome 
2992b1b93268SToomas Soome static int
2993b8902de1SWarner Losh zfs_spa_init(spa_t *spa)
2994b8902de1SWarner Losh {
2995b8902de1SWarner Losh 	dnode_phys_t dir;
2996b1b93268SToomas Soome 	uint64_t config_object;
2997b1b93268SToomas Soome 	unsigned char *nvlist;
2998b1b93268SToomas Soome 	char *type;
2999b1b93268SToomas Soome 	const unsigned char *nv;
3000b1b93268SToomas Soome 	int nkids, rc;
3001b8902de1SWarner Losh 
3002b8902de1SWarner Losh 	if (zio_read(spa, &spa->spa_uberblock.ub_rootbp, &spa->spa_mos)) {
3003b8902de1SWarner Losh 		printf("ZFS: can't read MOS of pool %s\n", spa->spa_name);
3004b8902de1SWarner Losh 		return (EIO);
3005b8902de1SWarner Losh 	}
3006b8902de1SWarner Losh 	if (spa->spa_mos.os_type != DMU_OST_META) {
3007b8902de1SWarner Losh 		printf("ZFS: corrupted MOS of pool %s\n", spa->spa_name);
3008b8902de1SWarner Losh 		return (EIO);
3009b8902de1SWarner Losh 	}
3010b8902de1SWarner Losh 
3011b8902de1SWarner Losh 	if (objset_get_dnode(spa, &spa->spa_mos, DMU_POOL_DIRECTORY_OBJECT,
3012b8902de1SWarner Losh 	    &dir)) {
3013b8902de1SWarner Losh 		printf("ZFS: failed to read pool %s directory object\n",
3014b8902de1SWarner Losh 		    spa->spa_name);
3015b8902de1SWarner Losh 		return (EIO);
3016b8902de1SWarner Losh 	}
3017b8902de1SWarner Losh 	/* this is allowed to fail, older pools do not have salt */
3018b8902de1SWarner Losh 	rc = zap_lookup(spa, &dir, DMU_POOL_CHECKSUM_SALT, 1,
3019b8902de1SWarner Losh 	    sizeof (spa->spa_cksum_salt.zcs_bytes),
3020b8902de1SWarner Losh 	    spa->spa_cksum_salt.zcs_bytes);
3021b8902de1SWarner Losh 
3022b8902de1SWarner Losh 	rc = check_mos_features(spa);
3023b8902de1SWarner Losh 	if (rc != 0) {
3024b8902de1SWarner Losh 		printf("ZFS: pool %s is not supported\n", spa->spa_name);
3025b1b93268SToomas Soome 		return (rc);
3026b8902de1SWarner Losh 	}
3027b8902de1SWarner Losh 
3028b1b93268SToomas Soome 	rc = zap_lookup(spa, &dir, DMU_POOL_CONFIG,
3029b1b93268SToomas Soome 	    sizeof (config_object), 1, &config_object);
3030b1b93268SToomas Soome 	if (rc != 0) {
3031b1b93268SToomas Soome 		printf("ZFS: can not read MOS %s\n", DMU_POOL_CONFIG);
3032b1b93268SToomas Soome 		return (EIO);
3033b1b93268SToomas Soome 	}
3034b1b93268SToomas Soome 	rc = load_nvlist(spa, config_object, &nvlist);
3035b1b93268SToomas Soome 	if (rc != 0)
3036b1b93268SToomas Soome 		return (rc);
3037b1b93268SToomas Soome 
3038b1b93268SToomas Soome 	/* Update vdevs from MOS config. */
3039b1b93268SToomas Soome 	if (nvlist_find(nvlist + 4, ZPOOL_CONFIG_VDEV_TREE, DATA_TYPE_NVLIST,
3040b1b93268SToomas Soome 	    NULL, &nv)) {
3041b1b93268SToomas Soome 		rc = EIO;
3042b1b93268SToomas Soome 		goto done;
3043b1b93268SToomas Soome 	}
3044b1b93268SToomas Soome 
3045*2e6bb655SToomas Soome 	if (nvlist_find(nv, ZPOOL_CONFIG_TYPE, DATA_TYPE_STRING, NULL, &type)) {
3046b1b93268SToomas Soome 		printf("ZFS: can't find vdev details\n");
3047b1b93268SToomas Soome 		rc = ENOENT;
3048b1b93268SToomas Soome 		goto done;
3049b1b93268SToomas Soome 	}
3050b1b93268SToomas Soome 	if (strcmp(type, VDEV_TYPE_ROOT) != 0) {
3051b1b93268SToomas Soome 		rc = ENOENT;
3052b1b93268SToomas Soome 		goto done;
3053b1b93268SToomas Soome 	}
3054b1b93268SToomas Soome 
3055b1b93268SToomas Soome 	rc = nvlist_find(nv, ZPOOL_CONFIG_CHILDREN, DATA_TYPE_NVLIST_ARRAY,
3056b1b93268SToomas Soome             &nkids, &nv);
3057b1b93268SToomas Soome 	if (rc != 0)
3058b1b93268SToomas Soome 		goto done;
3059b1b93268SToomas Soome 
3060b1b93268SToomas Soome 	for (int i = 0; i < nkids; i++) {
3061b1b93268SToomas Soome 		vdev_t *vd, *prev, *kid = NULL;
3062b1b93268SToomas Soome 		rc = vdev_init_from_nvlist(nv, NULL, &kid, 0);
3063b1b93268SToomas Soome 		if (rc != 0) {
3064b1b93268SToomas Soome 			printf("vdev_init_from_nvlist: %d\n", rc);
3065b1b93268SToomas Soome 			break;
3066b1b93268SToomas Soome 		}
3067b1b93268SToomas Soome 		kid->spa = spa;
3068b1b93268SToomas Soome 		prev = NULL;
3069b1b93268SToomas Soome 		STAILQ_FOREACH(vd, &spa->spa_vdevs, v_childlink) {
3070b1b93268SToomas Soome 			/* Already present? */
3071b1b93268SToomas Soome 			if (kid->v_id == vd->v_id) {
3072b1b93268SToomas Soome 				kid = NULL;
3073b1b93268SToomas Soome 				break;
3074b1b93268SToomas Soome 			}
3075b1b93268SToomas Soome 			if (vd->v_id > kid->v_id) {
3076b1b93268SToomas Soome 				if (prev == NULL) {
3077b1b93268SToomas Soome 					STAILQ_INSERT_HEAD(&spa->spa_vdevs,
3078b1b93268SToomas Soome 					    kid, v_childlink);
3079b1b93268SToomas Soome 				} else {
3080b1b93268SToomas Soome 					STAILQ_INSERT_AFTER(&spa->spa_vdevs,
3081b1b93268SToomas Soome 					    prev, kid, v_childlink);
3082b1b93268SToomas Soome 				}
3083b1b93268SToomas Soome 				kid = NULL;
3084b1b93268SToomas Soome 				break;
3085b1b93268SToomas Soome 			}
3086b1b93268SToomas Soome 			prev = vd;
3087b1b93268SToomas Soome 		}
3088b1b93268SToomas Soome 		if (kid != NULL)
3089b1b93268SToomas Soome 			STAILQ_INSERT_TAIL(&spa->spa_vdevs, kid, v_childlink);
3090b1b93268SToomas Soome 		nv = nvlist_next(nv);
3091b1b93268SToomas Soome 	}
3092b1b93268SToomas Soome 	rc = 0;
3093b1b93268SToomas Soome done:
3094b1b93268SToomas Soome 	free(nvlist);
3095b8902de1SWarner Losh 	return (rc);
3096b8902de1SWarner Losh }
3097b8902de1SWarner Losh 
3098b8902de1SWarner Losh static int
3099b8902de1SWarner Losh zfs_dnode_stat(const spa_t *spa, dnode_phys_t *dn, struct stat *sb)
3100b8902de1SWarner Losh {
3101b8902de1SWarner Losh 
3102b8902de1SWarner Losh 	if (dn->dn_bonustype != DMU_OT_SA) {
3103b8902de1SWarner Losh 		znode_phys_t *zp = (znode_phys_t *)dn->dn_bonus;
3104b8902de1SWarner Losh 
3105b8902de1SWarner Losh 		sb->st_mode = zp->zp_mode;
3106b8902de1SWarner Losh 		sb->st_uid = zp->zp_uid;
3107b8902de1SWarner Losh 		sb->st_gid = zp->zp_gid;
3108b8902de1SWarner Losh 		sb->st_size = zp->zp_size;
3109b8902de1SWarner Losh 	} else {
3110b8902de1SWarner Losh 		sa_hdr_phys_t *sahdrp;
3111b8902de1SWarner Losh 		int hdrsize;
3112b8902de1SWarner Losh 		size_t size = 0;
3113b8902de1SWarner Losh 		void *buf = NULL;
3114b8902de1SWarner Losh 
3115b8902de1SWarner Losh 		if (dn->dn_bonuslen != 0)
3116b8902de1SWarner Losh 			sahdrp = (sa_hdr_phys_t *)DN_BONUS(dn);
3117b8902de1SWarner Losh 		else {
3118b8902de1SWarner Losh 			if ((dn->dn_flags & DNODE_FLAG_SPILL_BLKPTR) != 0) {
3119b8902de1SWarner Losh 				blkptr_t *bp = DN_SPILL_BLKPTR(dn);
3120b8902de1SWarner Losh 				int error;
3121b8902de1SWarner Losh 
3122b8902de1SWarner Losh 				size = BP_GET_LSIZE(bp);
3123b8902de1SWarner Losh 				buf = zfs_alloc(size);
3124b8902de1SWarner Losh 				error = zio_read(spa, bp, buf);
3125b8902de1SWarner Losh 				if (error != 0) {
3126b8902de1SWarner Losh 					zfs_free(buf, size);
3127b8902de1SWarner Losh 					return (error);
3128b8902de1SWarner Losh 				}
3129b8902de1SWarner Losh 				sahdrp = buf;
3130b8902de1SWarner Losh 			} else {
3131b8902de1SWarner Losh 				return (EIO);
3132b8902de1SWarner Losh 			}
3133b8902de1SWarner Losh 		}
3134b8902de1SWarner Losh 		hdrsize = SA_HDR_SIZE(sahdrp);
3135b8902de1SWarner Losh 		sb->st_mode = *(uint64_t *)((char *)sahdrp + hdrsize +
3136b8902de1SWarner Losh 		    SA_MODE_OFFSET);
3137b8902de1SWarner Losh 		sb->st_uid = *(uint64_t *)((char *)sahdrp + hdrsize +
3138b8902de1SWarner Losh 		    SA_UID_OFFSET);
3139b8902de1SWarner Losh 		sb->st_gid = *(uint64_t *)((char *)sahdrp + hdrsize +
3140b8902de1SWarner Losh 		    SA_GID_OFFSET);
3141b8902de1SWarner Losh 		sb->st_size = *(uint64_t *)((char *)sahdrp + hdrsize +
3142b8902de1SWarner Losh 		    SA_SIZE_OFFSET);
3143b8902de1SWarner Losh 		if (buf != NULL)
3144b8902de1SWarner Losh 			zfs_free(buf, size);
3145b8902de1SWarner Losh 	}
3146b8902de1SWarner Losh 
3147b8902de1SWarner Losh 	return (0);
3148b8902de1SWarner Losh }
3149b8902de1SWarner Losh 
3150b8902de1SWarner Losh static int
3151b8902de1SWarner Losh zfs_dnode_readlink(const spa_t *spa, dnode_phys_t *dn, char *path, size_t psize)
3152b8902de1SWarner Losh {
3153b8902de1SWarner Losh 	int rc = 0;
3154b8902de1SWarner Losh 
3155b8902de1SWarner Losh 	if (dn->dn_bonustype == DMU_OT_SA) {
3156b8902de1SWarner Losh 		sa_hdr_phys_t *sahdrp = NULL;
3157b8902de1SWarner Losh 		size_t size = 0;
3158b8902de1SWarner Losh 		void *buf = NULL;
3159b8902de1SWarner Losh 		int hdrsize;
3160b8902de1SWarner Losh 		char *p;
3161b8902de1SWarner Losh 
3162b8902de1SWarner Losh 		if (dn->dn_bonuslen != 0)
3163b8902de1SWarner Losh 			sahdrp = (sa_hdr_phys_t *)DN_BONUS(dn);
3164b8902de1SWarner Losh 		else {
3165b8902de1SWarner Losh 			blkptr_t *bp;
3166b8902de1SWarner Losh 
3167b8902de1SWarner Losh 			if ((dn->dn_flags & DNODE_FLAG_SPILL_BLKPTR) == 0)
3168b8902de1SWarner Losh 				return (EIO);
3169b8902de1SWarner Losh 			bp = DN_SPILL_BLKPTR(dn);
3170b8902de1SWarner Losh 
3171b8902de1SWarner Losh 			size = BP_GET_LSIZE(bp);
3172b8902de1SWarner Losh 			buf = zfs_alloc(size);
3173b8902de1SWarner Losh 			rc = zio_read(spa, bp, buf);
3174b8902de1SWarner Losh 			if (rc != 0) {
3175b8902de1SWarner Losh 				zfs_free(buf, size);
3176b8902de1SWarner Losh 				return (rc);
3177b8902de1SWarner Losh 			}
3178b8902de1SWarner Losh 			sahdrp = buf;
3179b8902de1SWarner Losh 		}
3180b8902de1SWarner Losh 		hdrsize = SA_HDR_SIZE(sahdrp);
3181b8902de1SWarner Losh 		p = (char *)((uintptr_t)sahdrp + hdrsize + SA_SYMLINK_OFFSET);
3182b8902de1SWarner Losh 		memcpy(path, p, psize);
3183b8902de1SWarner Losh 		if (buf != NULL)
3184b8902de1SWarner Losh 			zfs_free(buf, size);
3185b8902de1SWarner Losh 		return (0);
3186b8902de1SWarner Losh 	}
3187b8902de1SWarner Losh 	/*
3188b8902de1SWarner Losh 	 * Second test is purely to silence bogus compiler
3189b8902de1SWarner Losh 	 * warning about accessing past the end of dn_bonus.
3190b8902de1SWarner Losh 	 */
3191b8902de1SWarner Losh 	if (psize + sizeof(znode_phys_t) <= dn->dn_bonuslen &&
3192b8902de1SWarner Losh 	    sizeof(znode_phys_t) <= sizeof(dn->dn_bonus)) {
3193b8902de1SWarner Losh 		memcpy(path, &dn->dn_bonus[sizeof(znode_phys_t)], psize);
3194b8902de1SWarner Losh 	} else {
3195b8902de1SWarner Losh 		rc = dnode_read(spa, dn, 0, path, psize);
3196b8902de1SWarner Losh 	}
3197b8902de1SWarner Losh 	return (rc);
3198b8902de1SWarner Losh }
3199b8902de1SWarner Losh 
3200b8902de1SWarner Losh struct obj_list {
3201b8902de1SWarner Losh 	uint64_t		objnum;
3202b8902de1SWarner Losh 	STAILQ_ENTRY(obj_list)	entry;
3203b8902de1SWarner Losh };
3204b8902de1SWarner Losh 
3205b8902de1SWarner Losh /*
3206b8902de1SWarner Losh  * Lookup a file and return its dnode.
3207b8902de1SWarner Losh  */
3208b8902de1SWarner Losh static int
3209b8902de1SWarner Losh zfs_lookup(const struct zfsmount *mount, const char *upath, dnode_phys_t *dnode)
3210b8902de1SWarner Losh {
3211b8902de1SWarner Losh 	int rc;
3212b8902de1SWarner Losh 	uint64_t objnum;
3213b8902de1SWarner Losh 	const spa_t *spa;
3214b8902de1SWarner Losh 	dnode_phys_t dn;
3215b8902de1SWarner Losh 	const char *p, *q;
3216b8902de1SWarner Losh 	char element[256];
3217b8902de1SWarner Losh 	char path[1024];
3218b8902de1SWarner Losh 	int symlinks_followed = 0;
3219b8902de1SWarner Losh 	struct stat sb;
3220b8902de1SWarner Losh 	struct obj_list *entry, *tentry;
3221b8902de1SWarner Losh 	STAILQ_HEAD(, obj_list) on_cache = STAILQ_HEAD_INITIALIZER(on_cache);
3222b8902de1SWarner Losh 
3223b8902de1SWarner Losh 	spa = mount->spa;
3224b8902de1SWarner Losh 	if (mount->objset.os_type != DMU_OST_ZFS) {
3225b8902de1SWarner Losh 		printf("ZFS: unexpected object set type %ju\n",
3226b8902de1SWarner Losh 		    (uintmax_t)mount->objset.os_type);
3227b8902de1SWarner Losh 		return (EIO);
3228b8902de1SWarner Losh 	}
3229b8902de1SWarner Losh 
3230b8902de1SWarner Losh 	if ((entry = malloc(sizeof(struct obj_list))) == NULL)
3231b8902de1SWarner Losh 		return (ENOMEM);
3232b8902de1SWarner Losh 
3233b8902de1SWarner Losh 	/*
3234b8902de1SWarner Losh 	 * Get the root directory dnode.
3235b8902de1SWarner Losh 	 */
3236b8902de1SWarner Losh 	rc = objset_get_dnode(spa, &mount->objset, MASTER_NODE_OBJ, &dn);
3237b8902de1SWarner Losh 	if (rc) {
3238b8902de1SWarner Losh 		free(entry);
3239b8902de1SWarner Losh 		return (rc);
3240b8902de1SWarner Losh 	}
3241b8902de1SWarner Losh 
3242b8902de1SWarner Losh 	rc = zap_lookup(spa, &dn, ZFS_ROOT_OBJ, sizeof(objnum), 1, &objnum);
3243b8902de1SWarner Losh 	if (rc) {
3244b8902de1SWarner Losh 		free(entry);
3245b8902de1SWarner Losh 		return (rc);
3246b8902de1SWarner Losh 	}
3247b8902de1SWarner Losh 	entry->objnum = objnum;
3248b8902de1SWarner Losh 	STAILQ_INSERT_HEAD(&on_cache, entry, entry);
3249b8902de1SWarner Losh 
3250b8902de1SWarner Losh 	rc = objset_get_dnode(spa, &mount->objset, objnum, &dn);
3251b8902de1SWarner Losh 	if (rc != 0)
3252b8902de1SWarner Losh 		goto done;
3253b8902de1SWarner Losh 
3254b8902de1SWarner Losh 	p = upath;
3255b8902de1SWarner Losh 	while (p && *p) {
3256b8902de1SWarner Losh 		rc = objset_get_dnode(spa, &mount->objset, objnum, &dn);
3257b8902de1SWarner Losh 		if (rc != 0)
3258b8902de1SWarner Losh 			goto done;
3259b8902de1SWarner Losh 
3260b8902de1SWarner Losh 		while (*p == '/')
3261b8902de1SWarner Losh 			p++;
3262b8902de1SWarner Losh 		if (*p == '\0')
3263b8902de1SWarner Losh 			break;
3264b8902de1SWarner Losh 		q = p;
3265b8902de1SWarner Losh 		while (*q != '\0' && *q != '/')
3266b8902de1SWarner Losh 			q++;
3267b8902de1SWarner Losh 
3268b8902de1SWarner Losh 		/* skip dot */
3269b8902de1SWarner Losh 		if (p + 1 == q && p[0] == '.') {
3270b8902de1SWarner Losh 			p++;
3271b8902de1SWarner Losh 			continue;
3272b8902de1SWarner Losh 		}
3273b8902de1SWarner Losh 		/* double dot */
3274b8902de1SWarner Losh 		if (p + 2 == q && p[0] == '.' && p[1] == '.') {
3275b8902de1SWarner Losh 			p += 2;
3276b8902de1SWarner Losh 			if (STAILQ_FIRST(&on_cache) ==
3277b8902de1SWarner Losh 			    STAILQ_LAST(&on_cache, obj_list, entry)) {
3278b8902de1SWarner Losh 				rc = ENOENT;
3279b8902de1SWarner Losh 				goto done;
3280b8902de1SWarner Losh 			}
3281b8902de1SWarner Losh 			entry = STAILQ_FIRST(&on_cache);
3282b8902de1SWarner Losh 			STAILQ_REMOVE_HEAD(&on_cache, entry);
3283b8902de1SWarner Losh 			free(entry);
3284b8902de1SWarner Losh 			objnum = (STAILQ_FIRST(&on_cache))->objnum;
3285b8902de1SWarner Losh 			continue;
3286b8902de1SWarner Losh 		}
3287b8902de1SWarner Losh 		if (q - p + 1 > sizeof(element)) {
3288b8902de1SWarner Losh 			rc = ENAMETOOLONG;
3289b8902de1SWarner Losh 			goto done;
3290b8902de1SWarner Losh 		}
3291b8902de1SWarner Losh 		memcpy(element, p, q - p);
3292b8902de1SWarner Losh 		element[q - p] = 0;
3293b8902de1SWarner Losh 		p = q;
3294b8902de1SWarner Losh 
3295b8902de1SWarner Losh 		if ((rc = zfs_dnode_stat(spa, &dn, &sb)) != 0)
3296b8902de1SWarner Losh 			goto done;
3297b8902de1SWarner Losh 		if (!S_ISDIR(sb.st_mode)) {
3298b8902de1SWarner Losh 			rc = ENOTDIR;
3299b8902de1SWarner Losh 			goto done;
3300b8902de1SWarner Losh 		}
3301b8902de1SWarner Losh 
3302b8902de1SWarner Losh 		rc = zap_lookup(spa, &dn, element, sizeof (objnum), 1, &objnum);
3303b8902de1SWarner Losh 		if (rc)
3304b8902de1SWarner Losh 			goto done;
3305b8902de1SWarner Losh 		objnum = ZFS_DIRENT_OBJ(objnum);
3306b8902de1SWarner Losh 
3307b8902de1SWarner Losh 		if ((entry = malloc(sizeof(struct obj_list))) == NULL) {
3308b8902de1SWarner Losh 			rc = ENOMEM;
3309b8902de1SWarner Losh 			goto done;
3310b8902de1SWarner Losh 		}
3311b8902de1SWarner Losh 		entry->objnum = objnum;
3312b8902de1SWarner Losh 		STAILQ_INSERT_HEAD(&on_cache, entry, entry);
3313b8902de1SWarner Losh 		rc = objset_get_dnode(spa, &mount->objset, objnum, &dn);
3314b8902de1SWarner Losh 		if (rc)
3315b8902de1SWarner Losh 			goto done;
3316b8902de1SWarner Losh 
3317b8902de1SWarner Losh 		/*
3318b8902de1SWarner Losh 		 * Check for symlink.
3319b8902de1SWarner Losh 		 */
3320b8902de1SWarner Losh 		rc = zfs_dnode_stat(spa, &dn, &sb);
3321b8902de1SWarner Losh 		if (rc)
3322b8902de1SWarner Losh 			goto done;
3323b8902de1SWarner Losh 		if (S_ISLNK(sb.st_mode)) {
3324b8902de1SWarner Losh 			if (symlinks_followed > 10) {
3325b8902de1SWarner Losh 				rc = EMLINK;
3326b8902de1SWarner Losh 				goto done;
3327b8902de1SWarner Losh 			}
3328b8902de1SWarner Losh 			symlinks_followed++;
3329b8902de1SWarner Losh 
3330b8902de1SWarner Losh 			/*
3331b8902de1SWarner Losh 			 * Read the link value and copy the tail of our
3332b8902de1SWarner Losh 			 * current path onto the end.
3333b8902de1SWarner Losh 			 */
3334b8902de1SWarner Losh 			if (sb.st_size + strlen(p) + 1 > sizeof(path)) {
3335b8902de1SWarner Losh 				rc = ENAMETOOLONG;
3336b8902de1SWarner Losh 				goto done;
3337b8902de1SWarner Losh 			}
3338b8902de1SWarner Losh 			strcpy(&path[sb.st_size], p);
3339b8902de1SWarner Losh 
3340b8902de1SWarner Losh 			rc = zfs_dnode_readlink(spa, &dn, path, sb.st_size);
3341b8902de1SWarner Losh 			if (rc != 0)
3342b8902de1SWarner Losh 				goto done;
3343b8902de1SWarner Losh 
3344b8902de1SWarner Losh 			/*
3345b8902de1SWarner Losh 			 * Restart with the new path, starting either at
3346b8902de1SWarner Losh 			 * the root or at the parent depending whether or
3347b8902de1SWarner Losh 			 * not the link is relative.
3348b8902de1SWarner Losh 			 */
3349b8902de1SWarner Losh 			p = path;
3350b8902de1SWarner Losh 			if (*p == '/') {
3351b8902de1SWarner Losh 				while (STAILQ_FIRST(&on_cache) !=
3352b8902de1SWarner Losh 				    STAILQ_LAST(&on_cache, obj_list, entry)) {
3353b8902de1SWarner Losh 					entry = STAILQ_FIRST(&on_cache);
3354b8902de1SWarner Losh 					STAILQ_REMOVE_HEAD(&on_cache, entry);
3355b8902de1SWarner Losh 					free(entry);
3356b8902de1SWarner Losh 				}
3357b8902de1SWarner Losh 			} else {
3358b8902de1SWarner Losh 				entry = STAILQ_FIRST(&on_cache);
3359b8902de1SWarner Losh 				STAILQ_REMOVE_HEAD(&on_cache, entry);
3360b8902de1SWarner Losh 				free(entry);
3361b8902de1SWarner Losh 			}
3362b8902de1SWarner Losh 			objnum = (STAILQ_FIRST(&on_cache))->objnum;
3363b8902de1SWarner Losh 		}
3364b8902de1SWarner Losh 	}
3365b8902de1SWarner Losh 
3366b8902de1SWarner Losh 	*dnode = dn;
3367b8902de1SWarner Losh done:
3368b8902de1SWarner Losh 	STAILQ_FOREACH_SAFE(entry, &on_cache, entry, tentry)
3369b8902de1SWarner Losh 		free(entry);
3370b8902de1SWarner Losh 	return (rc);
3371b8902de1SWarner Losh }
3372