xref: /titanic_44/usr/src/cmd/zdb/zdb.c (revision a66b28a398b570821116edfa8ced7b2bd4aeeab8)
1 /*
2  * CDDL HEADER START
3  *
4  * The contents of this file are subject to the terms of the
5  * Common Development and Distribution License (the "License").
6  * You may not use this file except in compliance with the License.
7  *
8  * You can obtain a copy of the license at usr/src/OPENSOLARIS.LICENSE
9  * or http://www.opensolaris.org/os/licensing.
10  * See the License for the specific language governing permissions
11  * and limitations under the License.
12  *
13  * When distributing Covered Code, include this CDDL HEADER in each
14  * file and include the License file at usr/src/OPENSOLARIS.LICENSE.
15  * If applicable, add the following below this CDDL HEADER, with the
16  * fields enclosed by brackets "[]" replaced with your own identifying
17  * information: Portions Copyright [yyyy] [name of copyright owner]
18  *
19  * CDDL HEADER END
20  */
21 
22 /*
23  * Copyright (c) 2005, 2010, Oracle and/or its affiliates. All rights reserved.
24  * Copyright (c) 2011, 2015 by Delphix. All rights reserved.
25  */
26 
27 #include <stdio.h>
28 #include <unistd.h>
29 #include <stdio_ext.h>
30 #include <stdlib.h>
31 #include <ctype.h>
32 #include <sys/zfs_context.h>
33 #include <sys/spa.h>
34 #include <sys/spa_impl.h>
35 #include <sys/dmu.h>
36 #include <sys/zap.h>
37 #include <sys/fs/zfs.h>
38 #include <sys/zfs_znode.h>
39 #include <sys/zfs_sa.h>
40 #include <sys/sa.h>
41 #include <sys/sa_impl.h>
42 #include <sys/vdev.h>
43 #include <sys/vdev_impl.h>
44 #include <sys/metaslab_impl.h>
45 #include <sys/dmu_objset.h>
46 #include <sys/dsl_dir.h>
47 #include <sys/dsl_dataset.h>
48 #include <sys/dsl_pool.h>
49 #include <sys/dbuf.h>
50 #include <sys/zil.h>
51 #include <sys/zil_impl.h>
52 #include <sys/stat.h>
53 #include <sys/resource.h>
54 #include <sys/dmu_traverse.h>
55 #include <sys/zio_checksum.h>
56 #include <sys/zio_compress.h>
57 #include <sys/zfs_fuid.h>
58 #include <sys/arc.h>
59 #include <sys/ddt.h>
60 #include <sys/zfeature.h>
61 #include <zfs_comutil.h>
62 #include <libcmdutils.h>
63 #undef verify
64 #include <libzfs.h>
65 
66 #define	ZDB_COMPRESS_NAME(idx) ((idx) < ZIO_COMPRESS_FUNCTIONS ?	\
67 	zio_compress_table[(idx)].ci_name : "UNKNOWN")
68 #define	ZDB_CHECKSUM_NAME(idx) ((idx) < ZIO_CHECKSUM_FUNCTIONS ?	\
69 	zio_checksum_table[(idx)].ci_name : "UNKNOWN")
70 #define	ZDB_OT_NAME(idx) ((idx) < DMU_OT_NUMTYPES ?	\
71 	dmu_ot[(idx)].ot_name : DMU_OT_IS_VALID(idx) ?	\
72 	dmu_ot_byteswap[DMU_OT_BYTESWAP(idx)].ob_name : "UNKNOWN")
73 #define	ZDB_OT_TYPE(idx) ((idx) < DMU_OT_NUMTYPES ? (idx) :		\
74 	(((idx) == DMU_OTN_ZAP_DATA || (idx) == DMU_OTN_ZAP_METADATA) ?	\
75 	DMU_OT_ZAP_OTHER : DMU_OT_NUMTYPES))
76 
77 #ifndef lint
78 extern boolean_t zfs_recover;
79 extern uint64_t zfs_arc_max, zfs_arc_meta_limit;
80 extern int zfs_vdev_async_read_max_active;
81 #else
82 boolean_t zfs_recover;
83 uint64_t zfs_arc_max, zfs_arc_meta_limit;
84 int zfs_vdev_async_read_max_active;
85 #endif
86 
87 const char cmdname[] = "zdb";
88 uint8_t dump_opt[256];
89 
90 typedef void object_viewer_t(objset_t *, uint64_t, void *data, size_t size);
91 
92 extern void dump_intent_log(zilog_t *);
93 uint64_t *zopt_object = NULL;
94 int zopt_objects = 0;
95 libzfs_handle_t *g_zfs;
96 uint64_t max_inflight = 1000;
97 
98 static void snprintf_blkptr_compact(char *, size_t, const blkptr_t *);
99 
100 /*
101  * These libumem hooks provide a reasonable set of defaults for the allocator's
102  * debugging facilities.
103  */
104 const char *
_umem_debug_init()105 _umem_debug_init()
106 {
107 	return ("default,verbose"); /* $UMEM_DEBUG setting */
108 }
109 
110 const char *
_umem_logging_init(void)111 _umem_logging_init(void)
112 {
113 	return ("fail,contents"); /* $UMEM_LOGGING setting */
114 }
115 
116 static void
usage(void)117 usage(void)
118 {
119 	(void) fprintf(stderr,
120 	    "Usage: %s [-CumMdibcsDvhLXFPA] [-t txg] [-e [-p path...]] "
121 	    "[-U config] [-I inflight I/Os] [-x dumpdir] poolname [object...]\n"
122 	    "       %s [-divPA] [-e -p path...] [-U config] dataset "
123 	    "[object...]\n"
124 	    "       %s -mM [-LXFPA] [-t txg] [-e [-p path...]] [-U config] "
125 	    "poolname [vdev [metaslab...]]\n"
126 	    "       %s -R [-A] [-e [-p path...]] poolname "
127 	    "vdev:offset:size[:flags]\n"
128 	    "       %s -S [-PA] [-e [-p path...]] [-U config] poolname\n"
129 	    "       %s -l [-uA] device\n"
130 	    "       %s -C [-A] [-U config]\n\n",
131 	    cmdname, cmdname, cmdname, cmdname, cmdname, cmdname, cmdname);
132 
133 	(void) fprintf(stderr, "    Dataset name must include at least one "
134 	    "separator character '/' or '@'\n");
135 	(void) fprintf(stderr, "    If dataset name is specified, only that "
136 	    "dataset is dumped\n");
137 	(void) fprintf(stderr, "    If object numbers are specified, only "
138 	    "those objects are dumped\n\n");
139 	(void) fprintf(stderr, "    Options to control amount of output:\n");
140 	(void) fprintf(stderr, "        -u uberblock\n");
141 	(void) fprintf(stderr, "        -d dataset(s)\n");
142 	(void) fprintf(stderr, "        -i intent logs\n");
143 	(void) fprintf(stderr, "        -C config (or cachefile if alone)\n");
144 	(void) fprintf(stderr, "        -h pool history\n");
145 	(void) fprintf(stderr, "        -b block statistics\n");
146 	(void) fprintf(stderr, "        -m metaslabs\n");
147 	(void) fprintf(stderr, "        -M metaslab groups\n");
148 	(void) fprintf(stderr, "        -c checksum all metadata (twice for "
149 	    "all data) blocks\n");
150 	(void) fprintf(stderr, "        -s report stats on zdb's I/O\n");
151 	(void) fprintf(stderr, "        -D dedup statistics\n");
152 	(void) fprintf(stderr, "        -S simulate dedup to measure effect\n");
153 	(void) fprintf(stderr, "        -v verbose (applies to all others)\n");
154 	(void) fprintf(stderr, "        -l dump label contents\n");
155 	(void) fprintf(stderr, "        -L disable leak tracking (do not "
156 	    "load spacemaps)\n");
157 	(void) fprintf(stderr, "        -R read and display block from a "
158 	    "device\n\n");
159 	(void) fprintf(stderr, "    Below options are intended for use "
160 	    "with other options:\n");
161 	(void) fprintf(stderr, "        -A ignore assertions (-A), enable "
162 	    "panic recovery (-AA) or both (-AAA)\n");
163 	(void) fprintf(stderr, "        -F attempt automatic rewind within "
164 	    "safe range of transaction groups\n");
165 	(void) fprintf(stderr, "        -U <cachefile_path> -- use alternate "
166 	    "cachefile\n");
167 	(void) fprintf(stderr, "        -X attempt extreme rewind (does not "
168 	    "work with dataset)\n");
169 	(void) fprintf(stderr, "        -e pool is exported/destroyed/"
170 	    "has altroot/not in a cachefile\n");
171 	(void) fprintf(stderr, "        -p <path> -- use one or more with "
172 	    "-e to specify path to vdev dir\n");
173 	(void) fprintf(stderr, "        -x <dumpdir> -- "
174 	    "dump all read blocks into specified directory\n");
175 	(void) fprintf(stderr, "        -P print numbers in parseable form\n");
176 	(void) fprintf(stderr, "        -t <txg> -- highest txg to use when "
177 	    "searching for uberblocks\n");
178 	(void) fprintf(stderr, "        -I <number of inflight I/Os> -- "
179 	    "specify the maximum number of "
180 	    "checksumming I/Os [default is 200]\n");
181 	(void) fprintf(stderr, "Specify an option more than once (e.g. -bb) "
182 	    "to make only that option verbose\n");
183 	(void) fprintf(stderr, "Default is to dump everything non-verbosely\n");
184 	exit(1);
185 }
186 
187 /*
188  * Called for usage errors that are discovered after a call to spa_open(),
189  * dmu_bonus_hold(), or pool_match().  abort() is called for other errors.
190  */
191 
192 static void
fatal(const char * fmt,...)193 fatal(const char *fmt, ...)
194 {
195 	va_list ap;
196 
197 	va_start(ap, fmt);
198 	(void) fprintf(stderr, "%s: ", cmdname);
199 	(void) vfprintf(stderr, fmt, ap);
200 	va_end(ap);
201 	(void) fprintf(stderr, "\n");
202 
203 	exit(1);
204 }
205 
206 /* ARGSUSED */
207 static void
dump_packed_nvlist(objset_t * os,uint64_t object,void * data,size_t size)208 dump_packed_nvlist(objset_t *os, uint64_t object, void *data, size_t size)
209 {
210 	nvlist_t *nv;
211 	size_t nvsize = *(uint64_t *)data;
212 	char *packed = umem_alloc(nvsize, UMEM_NOFAIL);
213 
214 	VERIFY(0 == dmu_read(os, object, 0, nvsize, packed, DMU_READ_PREFETCH));
215 
216 	VERIFY(nvlist_unpack(packed, nvsize, &nv, 0) == 0);
217 
218 	umem_free(packed, nvsize);
219 
220 	dump_nvlist(nv, 8);
221 
222 	nvlist_free(nv);
223 }
224 
225 /* ARGSUSED */
226 static void
dump_history_offsets(objset_t * os,uint64_t object,void * data,size_t size)227 dump_history_offsets(objset_t *os, uint64_t object, void *data, size_t size)
228 {
229 	spa_history_phys_t *shp = data;
230 
231 	if (shp == NULL)
232 		return;
233 
234 	(void) printf("\t\tpool_create_len = %llu\n",
235 	    (u_longlong_t)shp->sh_pool_create_len);
236 	(void) printf("\t\tphys_max_off = %llu\n",
237 	    (u_longlong_t)shp->sh_phys_max_off);
238 	(void) printf("\t\tbof = %llu\n",
239 	    (u_longlong_t)shp->sh_bof);
240 	(void) printf("\t\teof = %llu\n",
241 	    (u_longlong_t)shp->sh_eof);
242 	(void) printf("\t\trecords_lost = %llu\n",
243 	    (u_longlong_t)shp->sh_records_lost);
244 }
245 
246 static void
zdb_nicenum(uint64_t num,char * buf,size_t buflen)247 zdb_nicenum(uint64_t num, char *buf, size_t buflen)
248 {
249 	if (dump_opt['P'])
250 		(void) snprintf(buf, buflen, "%llu", (longlong_t)num);
251 	else
252 		nicenum(num, buf, sizeof (buf));
253 }
254 
255 const char histo_stars[] = "****************************************";
256 const int histo_width = sizeof (histo_stars) - 1;
257 
258 static void
dump_histogram(const uint64_t * histo,int size,int offset)259 dump_histogram(const uint64_t *histo, int size, int offset)
260 {
261 	int i;
262 	int minidx = size - 1;
263 	int maxidx = 0;
264 	uint64_t max = 0;
265 
266 	for (i = 0; i < size; i++) {
267 		if (histo[i] > max)
268 			max = histo[i];
269 		if (histo[i] > 0 && i > maxidx)
270 			maxidx = i;
271 		if (histo[i] > 0 && i < minidx)
272 			minidx = i;
273 	}
274 
275 	if (max < histo_width)
276 		max = histo_width;
277 
278 	for (i = minidx; i <= maxidx; i++) {
279 		(void) printf("\t\t\t%3u: %6llu %s\n",
280 		    i + offset, (u_longlong_t)histo[i],
281 		    &histo_stars[(max - histo[i]) * histo_width / max]);
282 	}
283 }
284 
285 static void
dump_zap_stats(objset_t * os,uint64_t object)286 dump_zap_stats(objset_t *os, uint64_t object)
287 {
288 	int error;
289 	zap_stats_t zs;
290 
291 	error = zap_get_stats(os, object, &zs);
292 	if (error)
293 		return;
294 
295 	if (zs.zs_ptrtbl_len == 0) {
296 		ASSERT(zs.zs_num_blocks == 1);
297 		(void) printf("\tmicrozap: %llu bytes, %llu entries\n",
298 		    (u_longlong_t)zs.zs_blocksize,
299 		    (u_longlong_t)zs.zs_num_entries);
300 		return;
301 	}
302 
303 	(void) printf("\tFat ZAP stats:\n");
304 
305 	(void) printf("\t\tPointer table:\n");
306 	(void) printf("\t\t\t%llu elements\n",
307 	    (u_longlong_t)zs.zs_ptrtbl_len);
308 	(void) printf("\t\t\tzt_blk: %llu\n",
309 	    (u_longlong_t)zs.zs_ptrtbl_zt_blk);
310 	(void) printf("\t\t\tzt_numblks: %llu\n",
311 	    (u_longlong_t)zs.zs_ptrtbl_zt_numblks);
312 	(void) printf("\t\t\tzt_shift: %llu\n",
313 	    (u_longlong_t)zs.zs_ptrtbl_zt_shift);
314 	(void) printf("\t\t\tzt_blks_copied: %llu\n",
315 	    (u_longlong_t)zs.zs_ptrtbl_blks_copied);
316 	(void) printf("\t\t\tzt_nextblk: %llu\n",
317 	    (u_longlong_t)zs.zs_ptrtbl_nextblk);
318 
319 	(void) printf("\t\tZAP entries: %llu\n",
320 	    (u_longlong_t)zs.zs_num_entries);
321 	(void) printf("\t\tLeaf blocks: %llu\n",
322 	    (u_longlong_t)zs.zs_num_leafs);
323 	(void) printf("\t\tTotal blocks: %llu\n",
324 	    (u_longlong_t)zs.zs_num_blocks);
325 	(void) printf("\t\tzap_block_type: 0x%llx\n",
326 	    (u_longlong_t)zs.zs_block_type);
327 	(void) printf("\t\tzap_magic: 0x%llx\n",
328 	    (u_longlong_t)zs.zs_magic);
329 	(void) printf("\t\tzap_salt: 0x%llx\n",
330 	    (u_longlong_t)zs.zs_salt);
331 
332 	(void) printf("\t\tLeafs with 2^n pointers:\n");
333 	dump_histogram(zs.zs_leafs_with_2n_pointers, ZAP_HISTOGRAM_SIZE, 0);
334 
335 	(void) printf("\t\tBlocks with n*5 entries:\n");
336 	dump_histogram(zs.zs_blocks_with_n5_entries, ZAP_HISTOGRAM_SIZE, 0);
337 
338 	(void) printf("\t\tBlocks n/10 full:\n");
339 	dump_histogram(zs.zs_blocks_n_tenths_full, ZAP_HISTOGRAM_SIZE, 0);
340 
341 	(void) printf("\t\tEntries with n chunks:\n");
342 	dump_histogram(zs.zs_entries_using_n_chunks, ZAP_HISTOGRAM_SIZE, 0);
343 
344 	(void) printf("\t\tBuckets with n entries:\n");
345 	dump_histogram(zs.zs_buckets_with_n_entries, ZAP_HISTOGRAM_SIZE, 0);
346 }
347 
348 /*ARGSUSED*/
349 static void
dump_none(objset_t * os,uint64_t object,void * data,size_t size)350 dump_none(objset_t *os, uint64_t object, void *data, size_t size)
351 {
352 }
353 
354 /*ARGSUSED*/
355 static void
dump_unknown(objset_t * os,uint64_t object,void * data,size_t size)356 dump_unknown(objset_t *os, uint64_t object, void *data, size_t size)
357 {
358 	(void) printf("\tUNKNOWN OBJECT TYPE\n");
359 }
360 
361 /*ARGSUSED*/
362 void
dump_uint8(objset_t * os,uint64_t object,void * data,size_t size)363 dump_uint8(objset_t *os, uint64_t object, void *data, size_t size)
364 {
365 }
366 
367 /*ARGSUSED*/
368 static void
dump_uint64(objset_t * os,uint64_t object,void * data,size_t size)369 dump_uint64(objset_t *os, uint64_t object, void *data, size_t size)
370 {
371 }
372 
373 /*ARGSUSED*/
374 static void
dump_zap(objset_t * os,uint64_t object,void * data,size_t size)375 dump_zap(objset_t *os, uint64_t object, void *data, size_t size)
376 {
377 	zap_cursor_t zc;
378 	zap_attribute_t attr;
379 	void *prop;
380 	int i;
381 
382 	dump_zap_stats(os, object);
383 	(void) printf("\n");
384 
385 	for (zap_cursor_init(&zc, os, object);
386 	    zap_cursor_retrieve(&zc, &attr) == 0;
387 	    zap_cursor_advance(&zc)) {
388 		(void) printf("\t\t%s = ", attr.za_name);
389 		if (attr.za_num_integers == 0) {
390 			(void) printf("\n");
391 			continue;
392 		}
393 		prop = umem_zalloc(attr.za_num_integers *
394 		    attr.za_integer_length, UMEM_NOFAIL);
395 		(void) zap_lookup(os, object, attr.za_name,
396 		    attr.za_integer_length, attr.za_num_integers, prop);
397 		if (attr.za_integer_length == 1) {
398 			(void) printf("%s", (char *)prop);
399 		} else {
400 			for (i = 0; i < attr.za_num_integers; i++) {
401 				switch (attr.za_integer_length) {
402 				case 2:
403 					(void) printf("%u ",
404 					    ((uint16_t *)prop)[i]);
405 					break;
406 				case 4:
407 					(void) printf("%u ",
408 					    ((uint32_t *)prop)[i]);
409 					break;
410 				case 8:
411 					(void) printf("%lld ",
412 					    (u_longlong_t)((int64_t *)prop)[i]);
413 					break;
414 				}
415 			}
416 		}
417 		(void) printf("\n");
418 		umem_free(prop, attr.za_num_integers * attr.za_integer_length);
419 	}
420 	zap_cursor_fini(&zc);
421 }
422 
423 static void
dump_bpobj(objset_t * os,uint64_t object,void * data,size_t size)424 dump_bpobj(objset_t *os, uint64_t object, void *data, size_t size)
425 {
426 	bpobj_phys_t *bpop = data;
427 	char bytes[32], comp[32], uncomp[32];
428 
429 	/* make sure the output won't get truncated */
430 	CTASSERT(sizeof (bytes) >= NN_NUMBUF_SZ);
431 	CTASSERT(sizeof (comp) >= NN_NUMBUF_SZ);
432 	CTASSERT(sizeof (uncomp) >= NN_NUMBUF_SZ);
433 
434 	if (bpop == NULL)
435 		return;
436 
437 	zdb_nicenum(bpop->bpo_bytes, bytes, sizeof (bytes));
438 	zdb_nicenum(bpop->bpo_comp, comp, sizeof (comp));
439 	zdb_nicenum(bpop->bpo_uncomp, uncomp, sizeof (uncomp));
440 
441 	(void) printf("\t\tnum_blkptrs = %llu\n",
442 	    (u_longlong_t)bpop->bpo_num_blkptrs);
443 	(void) printf("\t\tbytes = %s\n", bytes);
444 	if (size >= BPOBJ_SIZE_V1) {
445 		(void) printf("\t\tcomp = %s\n", comp);
446 		(void) printf("\t\tuncomp = %s\n", uncomp);
447 	}
448 	if (size >= sizeof (*bpop)) {
449 		(void) printf("\t\tsubobjs = %llu\n",
450 		    (u_longlong_t)bpop->bpo_subobjs);
451 		(void) printf("\t\tnum_subobjs = %llu\n",
452 		    (u_longlong_t)bpop->bpo_num_subobjs);
453 	}
454 
455 	if (dump_opt['d'] < 5)
456 		return;
457 
458 	for (uint64_t i = 0; i < bpop->bpo_num_blkptrs; i++) {
459 		char blkbuf[BP_SPRINTF_LEN];
460 		blkptr_t bp;
461 
462 		int err = dmu_read(os, object,
463 		    i * sizeof (bp), sizeof (bp), &bp, 0);
464 		if (err != 0) {
465 			(void) printf("got error %u from dmu_read\n", err);
466 			break;
467 		}
468 		snprintf_blkptr_compact(blkbuf, sizeof (blkbuf), &bp);
469 		(void) printf("\t%s\n", blkbuf);
470 	}
471 }
472 
473 /* ARGSUSED */
474 static void
dump_bpobj_subobjs(objset_t * os,uint64_t object,void * data,size_t size)475 dump_bpobj_subobjs(objset_t *os, uint64_t object, void *data, size_t size)
476 {
477 	dmu_object_info_t doi;
478 
479 	VERIFY0(dmu_object_info(os, object, &doi));
480 	uint64_t *subobjs = kmem_alloc(doi.doi_max_offset, KM_SLEEP);
481 
482 	int err = dmu_read(os, object, 0, doi.doi_max_offset, subobjs, 0);
483 	if (err != 0) {
484 		(void) printf("got error %u from dmu_read\n", err);
485 		kmem_free(subobjs, doi.doi_max_offset);
486 		return;
487 	}
488 
489 	int64_t last_nonzero = -1;
490 	for (uint64_t i = 0; i < doi.doi_max_offset / 8; i++) {
491 		if (subobjs[i] != 0)
492 			last_nonzero = i;
493 	}
494 
495 	for (int64_t i = 0; i <= last_nonzero; i++) {
496 		(void) printf("\t%llu\n", (longlong_t)subobjs[i]);
497 	}
498 	kmem_free(subobjs, doi.doi_max_offset);
499 }
500 
501 /*ARGSUSED*/
502 static void
dump_ddt_zap(objset_t * os,uint64_t object,void * data,size_t size)503 dump_ddt_zap(objset_t *os, uint64_t object, void *data, size_t size)
504 {
505 	dump_zap_stats(os, object);
506 	/* contents are printed elsewhere, properly decoded */
507 }
508 
509 /*ARGSUSED*/
510 static void
dump_sa_attrs(objset_t * os,uint64_t object,void * data,size_t size)511 dump_sa_attrs(objset_t *os, uint64_t object, void *data, size_t size)
512 {
513 	zap_cursor_t zc;
514 	zap_attribute_t attr;
515 
516 	dump_zap_stats(os, object);
517 	(void) printf("\n");
518 
519 	for (zap_cursor_init(&zc, os, object);
520 	    zap_cursor_retrieve(&zc, &attr) == 0;
521 	    zap_cursor_advance(&zc)) {
522 		(void) printf("\t\t%s = ", attr.za_name);
523 		if (attr.za_num_integers == 0) {
524 			(void) printf("\n");
525 			continue;
526 		}
527 		(void) printf(" %llx : [%d:%d:%d]\n",
528 		    (u_longlong_t)attr.za_first_integer,
529 		    (int)ATTR_LENGTH(attr.za_first_integer),
530 		    (int)ATTR_BSWAP(attr.za_first_integer),
531 		    (int)ATTR_NUM(attr.za_first_integer));
532 	}
533 	zap_cursor_fini(&zc);
534 }
535 
536 /*ARGSUSED*/
537 static void
dump_sa_layouts(objset_t * os,uint64_t object,void * data,size_t size)538 dump_sa_layouts(objset_t *os, uint64_t object, void *data, size_t size)
539 {
540 	zap_cursor_t zc;
541 	zap_attribute_t attr;
542 	uint16_t *layout_attrs;
543 	int i;
544 
545 	dump_zap_stats(os, object);
546 	(void) printf("\n");
547 
548 	for (zap_cursor_init(&zc, os, object);
549 	    zap_cursor_retrieve(&zc, &attr) == 0;
550 	    zap_cursor_advance(&zc)) {
551 		(void) printf("\t\t%s = [", attr.za_name);
552 		if (attr.za_num_integers == 0) {
553 			(void) printf("\n");
554 			continue;
555 		}
556 
557 		VERIFY(attr.za_integer_length == 2);
558 		layout_attrs = umem_zalloc(attr.za_num_integers *
559 		    attr.za_integer_length, UMEM_NOFAIL);
560 
561 		VERIFY(zap_lookup(os, object, attr.za_name,
562 		    attr.za_integer_length,
563 		    attr.za_num_integers, layout_attrs) == 0);
564 
565 		for (i = 0; i != attr.za_num_integers; i++)
566 			(void) printf(" %d ", (int)layout_attrs[i]);
567 		(void) printf("]\n");
568 		umem_free(layout_attrs,
569 		    attr.za_num_integers * attr.za_integer_length);
570 	}
571 	zap_cursor_fini(&zc);
572 }
573 
574 /*ARGSUSED*/
575 static void
dump_zpldir(objset_t * os,uint64_t object,void * data,size_t size)576 dump_zpldir(objset_t *os, uint64_t object, void *data, size_t size)
577 {
578 	zap_cursor_t zc;
579 	zap_attribute_t attr;
580 	const char *typenames[] = {
581 		/* 0 */ "not specified",
582 		/* 1 */ "FIFO",
583 		/* 2 */ "Character Device",
584 		/* 3 */ "3 (invalid)",
585 		/* 4 */ "Directory",
586 		/* 5 */ "5 (invalid)",
587 		/* 6 */ "Block Device",
588 		/* 7 */ "7 (invalid)",
589 		/* 8 */ "Regular File",
590 		/* 9 */ "9 (invalid)",
591 		/* 10 */ "Symbolic Link",
592 		/* 11 */ "11 (invalid)",
593 		/* 12 */ "Socket",
594 		/* 13 */ "Door",
595 		/* 14 */ "Event Port",
596 		/* 15 */ "15 (invalid)",
597 	};
598 
599 	dump_zap_stats(os, object);
600 	(void) printf("\n");
601 
602 	for (zap_cursor_init(&zc, os, object);
603 	    zap_cursor_retrieve(&zc, &attr) == 0;
604 	    zap_cursor_advance(&zc)) {
605 		(void) printf("\t\t%s = %lld (type: %s)\n",
606 		    attr.za_name, ZFS_DIRENT_OBJ(attr.za_first_integer),
607 		    typenames[ZFS_DIRENT_TYPE(attr.za_first_integer)]);
608 	}
609 	zap_cursor_fini(&zc);
610 }
611 
612 int
get_dtl_refcount(vdev_t * vd)613 get_dtl_refcount(vdev_t *vd)
614 {
615 	int refcount = 0;
616 
617 	if (vd->vdev_ops->vdev_op_leaf) {
618 		space_map_t *sm = vd->vdev_dtl_sm;
619 
620 		if (sm != NULL &&
621 		    sm->sm_dbuf->db_size == sizeof (space_map_phys_t))
622 			return (1);
623 		return (0);
624 	}
625 
626 	for (int c = 0; c < vd->vdev_children; c++)
627 		refcount += get_dtl_refcount(vd->vdev_child[c]);
628 	return (refcount);
629 }
630 
631 int
get_metaslab_refcount(vdev_t * vd)632 get_metaslab_refcount(vdev_t *vd)
633 {
634 	int refcount = 0;
635 
636 	if (vd->vdev_top == vd && !vd->vdev_removing) {
637 		for (int m = 0; m < vd->vdev_ms_count; m++) {
638 			space_map_t *sm = vd->vdev_ms[m]->ms_sm;
639 
640 			if (sm != NULL &&
641 			    sm->sm_dbuf->db_size == sizeof (space_map_phys_t))
642 				refcount++;
643 		}
644 	}
645 	for (int c = 0; c < vd->vdev_children; c++)
646 		refcount += get_metaslab_refcount(vd->vdev_child[c]);
647 
648 	return (refcount);
649 }
650 
651 static int
verify_spacemap_refcounts(spa_t * spa)652 verify_spacemap_refcounts(spa_t *spa)
653 {
654 	uint64_t expected_refcount = 0;
655 	uint64_t actual_refcount;
656 
657 	(void) feature_get_refcount(spa,
658 	    &spa_feature_table[SPA_FEATURE_SPACEMAP_HISTOGRAM],
659 	    &expected_refcount);
660 	actual_refcount = get_dtl_refcount(spa->spa_root_vdev);
661 	actual_refcount += get_metaslab_refcount(spa->spa_root_vdev);
662 
663 	if (expected_refcount != actual_refcount) {
664 		(void) printf("space map refcount mismatch: expected %lld != "
665 		    "actual %lld\n",
666 		    (longlong_t)expected_refcount,
667 		    (longlong_t)actual_refcount);
668 		return (2);
669 	}
670 	return (0);
671 }
672 
673 static void
dump_spacemap(objset_t * os,space_map_t * sm)674 dump_spacemap(objset_t *os, space_map_t *sm)
675 {
676 	uint64_t alloc, offset, entry;
677 	char *ddata[] = { "ALLOC", "FREE", "CONDENSE", "INVALID",
678 			    "INVALID", "INVALID", "INVALID", "INVALID" };
679 
680 	if (sm == NULL)
681 		return;
682 
683 	/*
684 	 * Print out the freelist entries in both encoded and decoded form.
685 	 */
686 	alloc = 0;
687 	for (offset = 0; offset < space_map_length(sm);
688 	    offset += sizeof (entry)) {
689 		uint8_t mapshift = sm->sm_shift;
690 
691 		VERIFY0(dmu_read(os, space_map_object(sm), offset,
692 		    sizeof (entry), &entry, DMU_READ_PREFETCH));
693 		if (SM_DEBUG_DECODE(entry)) {
694 
695 			(void) printf("\t    [%6llu] %s: txg %llu, pass %llu\n",
696 			    (u_longlong_t)(offset / sizeof (entry)),
697 			    ddata[SM_DEBUG_ACTION_DECODE(entry)],
698 			    (u_longlong_t)SM_DEBUG_TXG_DECODE(entry),
699 			    (u_longlong_t)SM_DEBUG_SYNCPASS_DECODE(entry));
700 		} else {
701 			(void) printf("\t    [%6llu]    %c  range:"
702 			    " %010llx-%010llx  size: %06llx\n",
703 			    (u_longlong_t)(offset / sizeof (entry)),
704 			    SM_TYPE_DECODE(entry) == SM_ALLOC ? 'A' : 'F',
705 			    (u_longlong_t)((SM_OFFSET_DECODE(entry) <<
706 			    mapshift) + sm->sm_start),
707 			    (u_longlong_t)((SM_OFFSET_DECODE(entry) <<
708 			    mapshift) + sm->sm_start +
709 			    (SM_RUN_DECODE(entry) << mapshift)),
710 			    (u_longlong_t)(SM_RUN_DECODE(entry) << mapshift));
711 			if (SM_TYPE_DECODE(entry) == SM_ALLOC)
712 				alloc += SM_RUN_DECODE(entry) << mapshift;
713 			else
714 				alloc -= SM_RUN_DECODE(entry) << mapshift;
715 		}
716 	}
717 	if (alloc != space_map_allocated(sm)) {
718 		(void) printf("space_map_object alloc (%llu) INCONSISTENT "
719 		    "with space map summary (%llu)\n",
720 		    (u_longlong_t)space_map_allocated(sm), (u_longlong_t)alloc);
721 	}
722 }
723 
724 static void
dump_metaslab_stats(metaslab_t * msp)725 dump_metaslab_stats(metaslab_t *msp)
726 {
727 	char maxbuf[32];
728 	range_tree_t *rt = msp->ms_tree;
729 	avl_tree_t *t = &msp->ms_size_tree;
730 	int free_pct = range_tree_space(rt) * 100 / msp->ms_size;
731 
732 	/* max sure nicenum has enough space */
733 	CTASSERT(sizeof (maxbuf) >= NN_NUMBUF_SZ);
734 
735 	zdb_nicenum(metaslab_block_maxsize(msp), maxbuf, sizeof (maxbuf));
736 
737 	(void) printf("\t %25s %10lu   %7s  %6s   %4s %4d%%\n",
738 	    "segments", avl_numnodes(t), "maxsize", maxbuf,
739 	    "freepct", free_pct);
740 	(void) printf("\tIn-memory histogram:\n");
741 	dump_histogram(rt->rt_histogram, RANGE_TREE_HISTOGRAM_SIZE, 0);
742 }
743 
744 static void
dump_metaslab(metaslab_t * msp)745 dump_metaslab(metaslab_t *msp)
746 {
747 	vdev_t *vd = msp->ms_group->mg_vd;
748 	spa_t *spa = vd->vdev_spa;
749 	space_map_t *sm = msp->ms_sm;
750 	char freebuf[32];
751 
752 	zdb_nicenum(msp->ms_size - space_map_allocated(sm), freebuf,
753 	    sizeof (freebuf));
754 
755 	(void) printf(
756 	    "\tmetaslab %6llu   offset %12llx   spacemap %6llu   free    %5s\n",
757 	    (u_longlong_t)msp->ms_id, (u_longlong_t)msp->ms_start,
758 	    (u_longlong_t)space_map_object(sm), freebuf);
759 
760 	if (dump_opt['m'] > 2 && !dump_opt['L']) {
761 		mutex_enter(&msp->ms_lock);
762 		metaslab_load_wait(msp);
763 		if (!msp->ms_loaded) {
764 			VERIFY0(metaslab_load(msp));
765 			range_tree_stat_verify(msp->ms_tree);
766 		}
767 		dump_metaslab_stats(msp);
768 		metaslab_unload(msp);
769 		mutex_exit(&msp->ms_lock);
770 	}
771 
772 	if (dump_opt['m'] > 1 && sm != NULL &&
773 	    spa_feature_is_active(spa, SPA_FEATURE_SPACEMAP_HISTOGRAM)) {
774 		/*
775 		 * The space map histogram represents free space in chunks
776 		 * of sm_shift (i.e. bucket 0 refers to 2^sm_shift).
777 		 */
778 		(void) printf("\tOn-disk histogram:\t\tfragmentation %llu\n",
779 		    (u_longlong_t)msp->ms_fragmentation);
780 		dump_histogram(sm->sm_phys->smp_histogram,
781 		    SPACE_MAP_HISTOGRAM_SIZE, sm->sm_shift);
782 	}
783 
784 	if (dump_opt['d'] > 5 || dump_opt['m'] > 3) {
785 		ASSERT(msp->ms_size == (1ULL << vd->vdev_ms_shift));
786 
787 		mutex_enter(&msp->ms_lock);
788 		dump_spacemap(spa->spa_meta_objset, msp->ms_sm);
789 		mutex_exit(&msp->ms_lock);
790 	}
791 }
792 
793 static void
print_vdev_metaslab_header(vdev_t * vd)794 print_vdev_metaslab_header(vdev_t *vd)
795 {
796 	(void) printf("\tvdev %10llu\n\t%-10s%5llu   %-19s   %-15s   %-10s\n",
797 	    (u_longlong_t)vd->vdev_id,
798 	    "metaslabs", (u_longlong_t)vd->vdev_ms_count,
799 	    "offset", "spacemap", "free");
800 	(void) printf("\t%15s   %19s   %15s   %10s\n",
801 	    "---------------", "-------------------",
802 	    "---------------", "-------------");
803 }
804 
805 static void
dump_metaslab_groups(spa_t * spa)806 dump_metaslab_groups(spa_t *spa)
807 {
808 	vdev_t *rvd = spa->spa_root_vdev;
809 	metaslab_class_t *mc = spa_normal_class(spa);
810 	uint64_t fragmentation;
811 
812 	metaslab_class_histogram_verify(mc);
813 
814 	for (int c = 0; c < rvd->vdev_children; c++) {
815 		vdev_t *tvd = rvd->vdev_child[c];
816 		metaslab_group_t *mg = tvd->vdev_mg;
817 
818 		if (mg->mg_class != mc)
819 			continue;
820 
821 		metaslab_group_histogram_verify(mg);
822 		mg->mg_fragmentation = metaslab_group_fragmentation(mg);
823 
824 		(void) printf("\tvdev %10llu\t\tmetaslabs%5llu\t\t"
825 		    "fragmentation",
826 		    (u_longlong_t)tvd->vdev_id,
827 		    (u_longlong_t)tvd->vdev_ms_count);
828 		if (mg->mg_fragmentation == ZFS_FRAG_INVALID) {
829 			(void) printf("%3s\n", "-");
830 		} else {
831 			(void) printf("%3llu%%\n",
832 			    (u_longlong_t)mg->mg_fragmentation);
833 		}
834 		dump_histogram(mg->mg_histogram, RANGE_TREE_HISTOGRAM_SIZE, 0);
835 	}
836 
837 	(void) printf("\tpool %s\tfragmentation", spa_name(spa));
838 	fragmentation = metaslab_class_fragmentation(mc);
839 	if (fragmentation == ZFS_FRAG_INVALID)
840 		(void) printf("\t%3s\n", "-");
841 	else
842 		(void) printf("\t%3llu%%\n", (u_longlong_t)fragmentation);
843 	dump_histogram(mc->mc_histogram, RANGE_TREE_HISTOGRAM_SIZE, 0);
844 }
845 
846 static void
dump_metaslabs(spa_t * spa)847 dump_metaslabs(spa_t *spa)
848 {
849 	vdev_t *vd, *rvd = spa->spa_root_vdev;
850 	uint64_t m, c = 0, children = rvd->vdev_children;
851 
852 	(void) printf("\nMetaslabs:\n");
853 
854 	if (!dump_opt['d'] && zopt_objects > 0) {
855 		c = zopt_object[0];
856 
857 		if (c >= children)
858 			(void) fatal("bad vdev id: %llu", (u_longlong_t)c);
859 
860 		if (zopt_objects > 1) {
861 			vd = rvd->vdev_child[c];
862 			print_vdev_metaslab_header(vd);
863 
864 			for (m = 1; m < zopt_objects; m++) {
865 				if (zopt_object[m] < vd->vdev_ms_count)
866 					dump_metaslab(
867 					    vd->vdev_ms[zopt_object[m]]);
868 				else
869 					(void) fprintf(stderr, "bad metaslab "
870 					    "number %llu\n",
871 					    (u_longlong_t)zopt_object[m]);
872 			}
873 			(void) printf("\n");
874 			return;
875 		}
876 		children = c + 1;
877 	}
878 	for (; c < children; c++) {
879 		vd = rvd->vdev_child[c];
880 		print_vdev_metaslab_header(vd);
881 
882 		for (m = 0; m < vd->vdev_ms_count; m++)
883 			dump_metaslab(vd->vdev_ms[m]);
884 		(void) printf("\n");
885 	}
886 }
887 
888 static void
dump_dde(const ddt_t * ddt,const ddt_entry_t * dde,uint64_t index)889 dump_dde(const ddt_t *ddt, const ddt_entry_t *dde, uint64_t index)
890 {
891 	const ddt_phys_t *ddp = dde->dde_phys;
892 	const ddt_key_t *ddk = &dde->dde_key;
893 	char *types[4] = { "ditto", "single", "double", "triple" };
894 	char blkbuf[BP_SPRINTF_LEN];
895 	blkptr_t blk;
896 
897 	for (int p = 0; p < DDT_PHYS_TYPES; p++, ddp++) {
898 		if (ddp->ddp_phys_birth == 0)
899 			continue;
900 		ddt_bp_create(ddt->ddt_checksum, ddk, ddp, &blk);
901 		snprintf_blkptr(blkbuf, sizeof (blkbuf), &blk);
902 		(void) printf("index %llx refcnt %llu %s %s\n",
903 		    (u_longlong_t)index, (u_longlong_t)ddp->ddp_refcnt,
904 		    types[p], blkbuf);
905 	}
906 }
907 
908 static void
dump_dedup_ratio(const ddt_stat_t * dds)909 dump_dedup_ratio(const ddt_stat_t *dds)
910 {
911 	double rL, rP, rD, D, dedup, compress, copies;
912 
913 	if (dds->dds_blocks == 0)
914 		return;
915 
916 	rL = (double)dds->dds_ref_lsize;
917 	rP = (double)dds->dds_ref_psize;
918 	rD = (double)dds->dds_ref_dsize;
919 	D = (double)dds->dds_dsize;
920 
921 	dedup = rD / D;
922 	compress = rL / rP;
923 	copies = rD / rP;
924 
925 	(void) printf("dedup = %.2f, compress = %.2f, copies = %.2f, "
926 	    "dedup * compress / copies = %.2f\n\n",
927 	    dedup, compress, copies, dedup * compress / copies);
928 }
929 
930 static void
dump_ddt(ddt_t * ddt,enum ddt_type type,enum ddt_class class)931 dump_ddt(ddt_t *ddt, enum ddt_type type, enum ddt_class class)
932 {
933 	char name[DDT_NAMELEN];
934 	ddt_entry_t dde;
935 	uint64_t walk = 0;
936 	dmu_object_info_t doi;
937 	uint64_t count, dspace, mspace;
938 	int error;
939 
940 	error = ddt_object_info(ddt, type, class, &doi);
941 
942 	if (error == ENOENT)
943 		return;
944 	ASSERT(error == 0);
945 
946 	if ((count = ddt_object_count(ddt, type, class)) == 0)
947 		return;
948 
949 	dspace = doi.doi_physical_blocks_512 << 9;
950 	mspace = doi.doi_fill_count * doi.doi_data_block_size;
951 
952 	ddt_object_name(ddt, type, class, name);
953 
954 	(void) printf("%s: %llu entries, size %llu on disk, %llu in core\n",
955 	    name,
956 	    (u_longlong_t)count,
957 	    (u_longlong_t)(dspace / count),
958 	    (u_longlong_t)(mspace / count));
959 
960 	if (dump_opt['D'] < 3)
961 		return;
962 
963 	zpool_dump_ddt(NULL, &ddt->ddt_histogram[type][class]);
964 
965 	if (dump_opt['D'] < 4)
966 		return;
967 
968 	if (dump_opt['D'] < 5 && class == DDT_CLASS_UNIQUE)
969 		return;
970 
971 	(void) printf("%s contents:\n\n", name);
972 
973 	while ((error = ddt_object_walk(ddt, type, class, &walk, &dde)) == 0)
974 		dump_dde(ddt, &dde, walk);
975 
976 	ASSERT(error == ENOENT);
977 
978 	(void) printf("\n");
979 }
980 
981 static void
dump_all_ddts(spa_t * spa)982 dump_all_ddts(spa_t *spa)
983 {
984 	ddt_histogram_t ddh_total = { 0 };
985 	ddt_stat_t dds_total = { 0 };
986 
987 	for (enum zio_checksum c = 0; c < ZIO_CHECKSUM_FUNCTIONS; c++) {
988 		ddt_t *ddt = spa->spa_ddt[c];
989 		for (enum ddt_type type = 0; type < DDT_TYPES; type++) {
990 			for (enum ddt_class class = 0; class < DDT_CLASSES;
991 			    class++) {
992 				dump_ddt(ddt, type, class);
993 			}
994 		}
995 	}
996 
997 	ddt_get_dedup_stats(spa, &dds_total);
998 
999 	if (dds_total.dds_blocks == 0) {
1000 		(void) printf("All DDTs are empty\n");
1001 		return;
1002 	}
1003 
1004 	(void) printf("\n");
1005 
1006 	if (dump_opt['D'] > 1) {
1007 		(void) printf("DDT histogram (aggregated over all DDTs):\n");
1008 		ddt_get_dedup_histogram(spa, &ddh_total);
1009 		zpool_dump_ddt(&dds_total, &ddh_total);
1010 	}
1011 
1012 	dump_dedup_ratio(&dds_total);
1013 }
1014 
1015 static void
dump_dtl_seg(void * arg,uint64_t start,uint64_t size)1016 dump_dtl_seg(void *arg, uint64_t start, uint64_t size)
1017 {
1018 	char *prefix = arg;
1019 
1020 	(void) printf("%s [%llu,%llu) length %llu\n",
1021 	    prefix,
1022 	    (u_longlong_t)start,
1023 	    (u_longlong_t)(start + size),
1024 	    (u_longlong_t)(size));
1025 }
1026 
1027 static void
dump_dtl(vdev_t * vd,int indent)1028 dump_dtl(vdev_t *vd, int indent)
1029 {
1030 	spa_t *spa = vd->vdev_spa;
1031 	boolean_t required;
1032 	char *name[DTL_TYPES] = { "missing", "partial", "scrub", "outage" };
1033 	char prefix[256];
1034 
1035 	spa_vdev_state_enter(spa, SCL_NONE);
1036 	required = vdev_dtl_required(vd);
1037 	(void) spa_vdev_state_exit(spa, NULL, 0);
1038 
1039 	if (indent == 0)
1040 		(void) printf("\nDirty time logs:\n\n");
1041 
1042 	(void) printf("\t%*s%s [%s]\n", indent, "",
1043 	    vd->vdev_path ? vd->vdev_path :
1044 	    vd->vdev_parent ? vd->vdev_ops->vdev_op_type : spa_name(spa),
1045 	    required ? "DTL-required" : "DTL-expendable");
1046 
1047 	for (int t = 0; t < DTL_TYPES; t++) {
1048 		range_tree_t *rt = vd->vdev_dtl[t];
1049 		if (range_tree_space(rt) == 0)
1050 			continue;
1051 		(void) snprintf(prefix, sizeof (prefix), "\t%*s%s",
1052 		    indent + 2, "", name[t]);
1053 		mutex_enter(rt->rt_lock);
1054 		range_tree_walk(rt, dump_dtl_seg, prefix);
1055 		mutex_exit(rt->rt_lock);
1056 		if (dump_opt['d'] > 5 && vd->vdev_children == 0)
1057 			dump_spacemap(spa->spa_meta_objset, vd->vdev_dtl_sm);
1058 	}
1059 
1060 	for (int c = 0; c < vd->vdev_children; c++)
1061 		dump_dtl(vd->vdev_child[c], indent + 4);
1062 }
1063 
1064 static void
dump_history(spa_t * spa)1065 dump_history(spa_t *spa)
1066 {
1067 	nvlist_t **events = NULL;
1068 	char buf[SPA_MAXBLOCKSIZE];
1069 	uint64_t resid, len, off = 0;
1070 	uint_t num = 0;
1071 	int error;
1072 	time_t tsec;
1073 	struct tm t;
1074 	char tbuf[30];
1075 	char internalstr[MAXPATHLEN];
1076 
1077 	do {
1078 		len = sizeof (buf);
1079 
1080 		if ((error = spa_history_get(spa, &off, &len, buf)) != 0) {
1081 			(void) fprintf(stderr, "Unable to read history: "
1082 			    "error %d\n", error);
1083 			return;
1084 		}
1085 
1086 		if (zpool_history_unpack(buf, len, &resid, &events, &num) != 0)
1087 			break;
1088 
1089 		off -= resid;
1090 	} while (len != 0);
1091 
1092 	(void) printf("\nHistory:\n");
1093 	for (int i = 0; i < num; i++) {
1094 		uint64_t time, txg, ievent;
1095 		char *cmd, *intstr;
1096 		boolean_t printed = B_FALSE;
1097 
1098 		if (nvlist_lookup_uint64(events[i], ZPOOL_HIST_TIME,
1099 		    &time) != 0)
1100 			goto next;
1101 		if (nvlist_lookup_string(events[i], ZPOOL_HIST_CMD,
1102 		    &cmd) != 0) {
1103 			if (nvlist_lookup_uint64(events[i],
1104 			    ZPOOL_HIST_INT_EVENT, &ievent) != 0)
1105 				goto next;
1106 			verify(nvlist_lookup_uint64(events[i],
1107 			    ZPOOL_HIST_TXG, &txg) == 0);
1108 			verify(nvlist_lookup_string(events[i],
1109 			    ZPOOL_HIST_INT_STR, &intstr) == 0);
1110 			if (ievent >= ZFS_NUM_LEGACY_HISTORY_EVENTS)
1111 				goto next;
1112 
1113 			(void) snprintf(internalstr,
1114 			    sizeof (internalstr),
1115 			    "[internal %s txg:%lld] %s",
1116 			    zfs_history_event_names[ievent], txg,
1117 			    intstr);
1118 			cmd = internalstr;
1119 		}
1120 		tsec = time;
1121 		(void) localtime_r(&tsec, &t);
1122 		(void) strftime(tbuf, sizeof (tbuf), "%F.%T", &t);
1123 		(void) printf("%s %s\n", tbuf, cmd);
1124 		printed = B_TRUE;
1125 
1126 next:
1127 		if (dump_opt['h'] > 1) {
1128 			if (!printed)
1129 				(void) printf("unrecognized record:\n");
1130 			dump_nvlist(events[i], 2);
1131 		}
1132 	}
1133 }
1134 
1135 /*ARGSUSED*/
1136 static void
dump_dnode(objset_t * os,uint64_t object,void * data,size_t size)1137 dump_dnode(objset_t *os, uint64_t object, void *data, size_t size)
1138 {
1139 }
1140 
1141 static uint64_t
blkid2offset(const dnode_phys_t * dnp,const blkptr_t * bp,const zbookmark_phys_t * zb)1142 blkid2offset(const dnode_phys_t *dnp, const blkptr_t *bp,
1143     const zbookmark_phys_t *zb)
1144 {
1145 	if (dnp == NULL) {
1146 		ASSERT(zb->zb_level < 0);
1147 		if (zb->zb_object == 0)
1148 			return (zb->zb_blkid);
1149 		return (zb->zb_blkid * BP_GET_LSIZE(bp));
1150 	}
1151 
1152 	ASSERT(zb->zb_level >= 0);
1153 
1154 	return ((zb->zb_blkid <<
1155 	    (zb->zb_level * (dnp->dn_indblkshift - SPA_BLKPTRSHIFT))) *
1156 	    dnp->dn_datablkszsec << SPA_MINBLOCKSHIFT);
1157 }
1158 
1159 static void
snprintf_blkptr_compact(char * blkbuf,size_t buflen,const blkptr_t * bp)1160 snprintf_blkptr_compact(char *blkbuf, size_t buflen, const blkptr_t *bp)
1161 {
1162 	const dva_t *dva = bp->blk_dva;
1163 	int ndvas = dump_opt['d'] > 5 ? BP_GET_NDVAS(bp) : 1;
1164 
1165 	if (dump_opt['b'] >= 6) {
1166 		snprintf_blkptr(blkbuf, buflen, bp);
1167 		return;
1168 	}
1169 
1170 	if (BP_IS_EMBEDDED(bp)) {
1171 		(void) sprintf(blkbuf,
1172 		    "EMBEDDED et=%u %llxL/%llxP B=%llu",
1173 		    (int)BPE_GET_ETYPE(bp),
1174 		    (u_longlong_t)BPE_GET_LSIZE(bp),
1175 		    (u_longlong_t)BPE_GET_PSIZE(bp),
1176 		    (u_longlong_t)bp->blk_birth);
1177 		return;
1178 	}
1179 
1180 	blkbuf[0] = '\0';
1181 	for (int i = 0; i < ndvas; i++)
1182 		(void) snprintf(blkbuf + strlen(blkbuf),
1183 		    buflen - strlen(blkbuf), "%llu:%llx:%llx ",
1184 		    (u_longlong_t)DVA_GET_VDEV(&dva[i]),
1185 		    (u_longlong_t)DVA_GET_OFFSET(&dva[i]),
1186 		    (u_longlong_t)DVA_GET_ASIZE(&dva[i]));
1187 
1188 	if (BP_IS_HOLE(bp)) {
1189 		(void) snprintf(blkbuf + strlen(blkbuf),
1190 		    buflen - strlen(blkbuf),
1191 		    "%llxL B=%llu",
1192 		    (u_longlong_t)BP_GET_LSIZE(bp),
1193 		    (u_longlong_t)bp->blk_birth);
1194 	} else {
1195 		(void) snprintf(blkbuf + strlen(blkbuf),
1196 		    buflen - strlen(blkbuf),
1197 		    "%llxL/%llxP F=%llu B=%llu/%llu",
1198 		    (u_longlong_t)BP_GET_LSIZE(bp),
1199 		    (u_longlong_t)BP_GET_PSIZE(bp),
1200 		    (u_longlong_t)BP_GET_FILL(bp),
1201 		    (u_longlong_t)bp->blk_birth,
1202 		    (u_longlong_t)BP_PHYSICAL_BIRTH(bp));
1203 	}
1204 }
1205 
1206 static void
print_indirect(blkptr_t * bp,const zbookmark_phys_t * zb,const dnode_phys_t * dnp)1207 print_indirect(blkptr_t *bp, const zbookmark_phys_t *zb,
1208     const dnode_phys_t *dnp)
1209 {
1210 	char blkbuf[BP_SPRINTF_LEN];
1211 	int l;
1212 
1213 	if (!BP_IS_EMBEDDED(bp)) {
1214 		ASSERT3U(BP_GET_TYPE(bp), ==, dnp->dn_type);
1215 		ASSERT3U(BP_GET_LEVEL(bp), ==, zb->zb_level);
1216 	}
1217 
1218 	(void) printf("%16llx ", (u_longlong_t)blkid2offset(dnp, bp, zb));
1219 
1220 	ASSERT(zb->zb_level >= 0);
1221 
1222 	for (l = dnp->dn_nlevels - 1; l >= -1; l--) {
1223 		if (l == zb->zb_level) {
1224 			(void) printf("L%llx", (u_longlong_t)zb->zb_level);
1225 		} else {
1226 			(void) printf(" ");
1227 		}
1228 	}
1229 
1230 	snprintf_blkptr_compact(blkbuf, sizeof (blkbuf), bp);
1231 	(void) printf("%s\n", blkbuf);
1232 }
1233 
1234 static int
visit_indirect(spa_t * spa,const dnode_phys_t * dnp,blkptr_t * bp,const zbookmark_phys_t * zb)1235 visit_indirect(spa_t *spa, const dnode_phys_t *dnp,
1236     blkptr_t *bp, const zbookmark_phys_t *zb)
1237 {
1238 	int err = 0;
1239 
1240 	if (bp->blk_birth == 0)
1241 		return (0);
1242 
1243 	print_indirect(bp, zb, dnp);
1244 
1245 	if (BP_GET_LEVEL(bp) > 0 && !BP_IS_HOLE(bp)) {
1246 		arc_flags_t flags = ARC_FLAG_WAIT;
1247 		int i;
1248 		blkptr_t *cbp;
1249 		int epb = BP_GET_LSIZE(bp) >> SPA_BLKPTRSHIFT;
1250 		arc_buf_t *buf;
1251 		uint64_t fill = 0;
1252 
1253 		err = arc_read(NULL, spa, bp, arc_getbuf_func, &buf,
1254 		    ZIO_PRIORITY_ASYNC_READ, ZIO_FLAG_CANFAIL, &flags, zb);
1255 		if (err)
1256 			return (err);
1257 		ASSERT(buf->b_data);
1258 
1259 		/* recursively visit blocks below this */
1260 		cbp = buf->b_data;
1261 		for (i = 0; i < epb; i++, cbp++) {
1262 			zbookmark_phys_t czb;
1263 
1264 			SET_BOOKMARK(&czb, zb->zb_objset, zb->zb_object,
1265 			    zb->zb_level - 1,
1266 			    zb->zb_blkid * epb + i);
1267 			err = visit_indirect(spa, dnp, cbp, &czb);
1268 			if (err)
1269 				break;
1270 			fill += BP_GET_FILL(cbp);
1271 		}
1272 		if (!err)
1273 			ASSERT3U(fill, ==, BP_GET_FILL(bp));
1274 		(void) arc_buf_remove_ref(buf, &buf);
1275 	}
1276 
1277 	return (err);
1278 }
1279 
1280 /*ARGSUSED*/
1281 static void
dump_indirect(dnode_t * dn)1282 dump_indirect(dnode_t *dn)
1283 {
1284 	dnode_phys_t *dnp = dn->dn_phys;
1285 	int j;
1286 	zbookmark_phys_t czb;
1287 
1288 	(void) printf("Indirect blocks:\n");
1289 
1290 	SET_BOOKMARK(&czb, dmu_objset_id(dn->dn_objset),
1291 	    dn->dn_object, dnp->dn_nlevels - 1, 0);
1292 	for (j = 0; j < dnp->dn_nblkptr; j++) {
1293 		czb.zb_blkid = j;
1294 		(void) visit_indirect(dmu_objset_spa(dn->dn_objset), dnp,
1295 		    &dnp->dn_blkptr[j], &czb);
1296 	}
1297 
1298 	(void) printf("\n");
1299 }
1300 
1301 /*ARGSUSED*/
1302 static void
dump_dsl_dir(objset_t * os,uint64_t object,void * data,size_t size)1303 dump_dsl_dir(objset_t *os, uint64_t object, void *data, size_t size)
1304 {
1305 	dsl_dir_phys_t *dd = data;
1306 	time_t crtime;
1307 	char nice[32];
1308 
1309 	/* make sure nicenum has enough space */
1310 	CTASSERT(sizeof (nice) >= NN_NUMBUF_SZ);
1311 
1312 	if (dd == NULL)
1313 		return;
1314 
1315 	ASSERT3U(size, >=, sizeof (dsl_dir_phys_t));
1316 
1317 	crtime = dd->dd_creation_time;
1318 	(void) printf("\t\tcreation_time = %s", ctime(&crtime));
1319 	(void) printf("\t\thead_dataset_obj = %llu\n",
1320 	    (u_longlong_t)dd->dd_head_dataset_obj);
1321 	(void) printf("\t\tparent_dir_obj = %llu\n",
1322 	    (u_longlong_t)dd->dd_parent_obj);
1323 	(void) printf("\t\torigin_obj = %llu\n",
1324 	    (u_longlong_t)dd->dd_origin_obj);
1325 	(void) printf("\t\tchild_dir_zapobj = %llu\n",
1326 	    (u_longlong_t)dd->dd_child_dir_zapobj);
1327 	zdb_nicenum(dd->dd_used_bytes, nice, sizeof (nice));
1328 	(void) printf("\t\tused_bytes = %s\n", nice);
1329 	zdb_nicenum(dd->dd_compressed_bytes, nice, sizeof (nice));
1330 	(void) printf("\t\tcompressed_bytes = %s\n", nice);
1331 	zdb_nicenum(dd->dd_uncompressed_bytes, nice, sizeof (nice));
1332 	(void) printf("\t\tuncompressed_bytes = %s\n", nice);
1333 	zdb_nicenum(dd->dd_quota, nice, sizeof (nice));
1334 	(void) printf("\t\tquota = %s\n", nice);
1335 	zdb_nicenum(dd->dd_reserved, nice, sizeof (nice));
1336 	(void) printf("\t\treserved = %s\n", nice);
1337 	(void) printf("\t\tprops_zapobj = %llu\n",
1338 	    (u_longlong_t)dd->dd_props_zapobj);
1339 	(void) printf("\t\tdeleg_zapobj = %llu\n",
1340 	    (u_longlong_t)dd->dd_deleg_zapobj);
1341 	(void) printf("\t\tflags = %llx\n",
1342 	    (u_longlong_t)dd->dd_flags);
1343 
1344 #define	DO(which) \
1345 	zdb_nicenum(dd->dd_used_breakdown[DD_USED_ ## which], nice, \
1346 	    sizeof (nice)); \
1347 	(void) printf("\t\tused_breakdown[" #which "] = %s\n", nice)
1348 	DO(HEAD);
1349 	DO(SNAP);
1350 	DO(CHILD);
1351 	DO(CHILD_RSRV);
1352 	DO(REFRSRV);
1353 #undef DO
1354 }
1355 
1356 /*ARGSUSED*/
1357 static void
dump_dsl_dataset(objset_t * os,uint64_t object,void * data,size_t size)1358 dump_dsl_dataset(objset_t *os, uint64_t object, void *data, size_t size)
1359 {
1360 	dsl_dataset_phys_t *ds = data;
1361 	time_t crtime;
1362 	char used[32], compressed[32], uncompressed[32], unique[32];
1363 	char blkbuf[BP_SPRINTF_LEN];
1364 
1365 	/* make sure nicenum has enough space */
1366 	CTASSERT(sizeof (used) >= NN_NUMBUF_SZ);
1367 	CTASSERT(sizeof (compressed) >= NN_NUMBUF_SZ);
1368 	CTASSERT(sizeof (uncompressed) >= NN_NUMBUF_SZ);
1369 	CTASSERT(sizeof (unique) >= NN_NUMBUF_SZ);
1370 
1371 	if (ds == NULL)
1372 		return;
1373 
1374 	ASSERT(size == sizeof (*ds));
1375 	crtime = ds->ds_creation_time;
1376 	zdb_nicenum(ds->ds_referenced_bytes, used, sizeof (used));
1377 	zdb_nicenum(ds->ds_compressed_bytes, compressed, sizeof (compressed));
1378 	zdb_nicenum(ds->ds_uncompressed_bytes, uncompressed,
1379 	    sizeof (uncompressed));
1380 	zdb_nicenum(ds->ds_unique_bytes, unique, sizeof (unique));
1381 	snprintf_blkptr(blkbuf, sizeof (blkbuf), &ds->ds_bp);
1382 
1383 	(void) printf("\t\tdir_obj = %llu\n",
1384 	    (u_longlong_t)ds->ds_dir_obj);
1385 	(void) printf("\t\tprev_snap_obj = %llu\n",
1386 	    (u_longlong_t)ds->ds_prev_snap_obj);
1387 	(void) printf("\t\tprev_snap_txg = %llu\n",
1388 	    (u_longlong_t)ds->ds_prev_snap_txg);
1389 	(void) printf("\t\tnext_snap_obj = %llu\n",
1390 	    (u_longlong_t)ds->ds_next_snap_obj);
1391 	(void) printf("\t\tsnapnames_zapobj = %llu\n",
1392 	    (u_longlong_t)ds->ds_snapnames_zapobj);
1393 	(void) printf("\t\tnum_children = %llu\n",
1394 	    (u_longlong_t)ds->ds_num_children);
1395 	(void) printf("\t\tuserrefs_obj = %llu\n",
1396 	    (u_longlong_t)ds->ds_userrefs_obj);
1397 	(void) printf("\t\tcreation_time = %s", ctime(&crtime));
1398 	(void) printf("\t\tcreation_txg = %llu\n",
1399 	    (u_longlong_t)ds->ds_creation_txg);
1400 	(void) printf("\t\tdeadlist_obj = %llu\n",
1401 	    (u_longlong_t)ds->ds_deadlist_obj);
1402 	(void) printf("\t\tused_bytes = %s\n", used);
1403 	(void) printf("\t\tcompressed_bytes = %s\n", compressed);
1404 	(void) printf("\t\tuncompressed_bytes = %s\n", uncompressed);
1405 	(void) printf("\t\tunique = %s\n", unique);
1406 	(void) printf("\t\tfsid_guid = %llu\n",
1407 	    (u_longlong_t)ds->ds_fsid_guid);
1408 	(void) printf("\t\tguid = %llu\n",
1409 	    (u_longlong_t)ds->ds_guid);
1410 	(void) printf("\t\tflags = %llx\n",
1411 	    (u_longlong_t)ds->ds_flags);
1412 	(void) printf("\t\tnext_clones_obj = %llu\n",
1413 	    (u_longlong_t)ds->ds_next_clones_obj);
1414 	(void) printf("\t\tprops_obj = %llu\n",
1415 	    (u_longlong_t)ds->ds_props_obj);
1416 	(void) printf("\t\tbp = %s\n", blkbuf);
1417 }
1418 
1419 /* ARGSUSED */
1420 static int
dump_bptree_cb(void * arg,const blkptr_t * bp,dmu_tx_t * tx)1421 dump_bptree_cb(void *arg, const blkptr_t *bp, dmu_tx_t *tx)
1422 {
1423 	char blkbuf[BP_SPRINTF_LEN];
1424 
1425 	if (bp->blk_birth != 0) {
1426 		snprintf_blkptr(blkbuf, sizeof (blkbuf), bp);
1427 		(void) printf("\t%s\n", blkbuf);
1428 	}
1429 	return (0);
1430 }
1431 
1432 static void
dump_bptree(objset_t * os,uint64_t obj,char * name)1433 dump_bptree(objset_t *os, uint64_t obj, char *name)
1434 {
1435 	char bytes[32];
1436 	bptree_phys_t *bt;
1437 	dmu_buf_t *db;
1438 
1439 	/* make sure nicenum has enough space */
1440 	CTASSERT(sizeof (bytes) >= NN_NUMBUF_SZ);
1441 
1442 	if (dump_opt['d'] < 3)
1443 		return;
1444 
1445 	VERIFY3U(0, ==, dmu_bonus_hold(os, obj, FTAG, &db));
1446 	bt = db->db_data;
1447 	zdb_nicenum(bt->bt_bytes, bytes, sizeof (bytes));
1448 	(void) printf("\n    %s: %llu datasets, %s\n",
1449 	    name, (unsigned long long)(bt->bt_end - bt->bt_begin), bytes);
1450 	dmu_buf_rele(db, FTAG);
1451 
1452 	if (dump_opt['d'] < 5)
1453 		return;
1454 
1455 	(void) printf("\n");
1456 
1457 	(void) bptree_iterate(os, obj, B_FALSE, dump_bptree_cb, NULL, NULL);
1458 }
1459 
1460 /* ARGSUSED */
1461 static int
dump_bpobj_cb(void * arg,const blkptr_t * bp,dmu_tx_t * tx)1462 dump_bpobj_cb(void *arg, const blkptr_t *bp, dmu_tx_t *tx)
1463 {
1464 	char blkbuf[BP_SPRINTF_LEN];
1465 
1466 	ASSERT(bp->blk_birth != 0);
1467 	snprintf_blkptr_compact(blkbuf, sizeof (blkbuf), bp);
1468 	(void) printf("\t%s\n", blkbuf);
1469 	return (0);
1470 }
1471 
1472 static void
dump_full_bpobj(bpobj_t * bpo,char * name,int indent)1473 dump_full_bpobj(bpobj_t *bpo, char *name, int indent)
1474 {
1475 	char bytes[32];
1476 	char comp[32];
1477 	char uncomp[32];
1478 
1479 	/* make sure nicenum has enough space */
1480 	CTASSERT(sizeof (bytes) >= NN_NUMBUF_SZ);
1481 	CTASSERT(sizeof (comp) >= NN_NUMBUF_SZ);
1482 	CTASSERT(sizeof (uncomp) >= NN_NUMBUF_SZ);
1483 
1484 	if (dump_opt['d'] < 3)
1485 		return;
1486 
1487 	zdb_nicenum(bpo->bpo_phys->bpo_bytes, bytes, sizeof (bytes));
1488 	if (bpo->bpo_havesubobj && bpo->bpo_phys->bpo_subobjs != 0) {
1489 		zdb_nicenum(bpo->bpo_phys->bpo_comp, comp, sizeof (comp));
1490 		zdb_nicenum(bpo->bpo_phys->bpo_uncomp, uncomp, sizeof (uncomp));
1491 		(void) printf("    %*s: object %llu, %llu local blkptrs, "
1492 		    "%llu subobjs in object %llu, %s (%s/%s comp)\n",
1493 		    indent * 8, name,
1494 		    (u_longlong_t)bpo->bpo_object,
1495 		    (u_longlong_t)bpo->bpo_phys->bpo_num_blkptrs,
1496 		    (u_longlong_t)bpo->bpo_phys->bpo_num_subobjs,
1497 		    (u_longlong_t)bpo->bpo_phys->bpo_subobjs,
1498 		    bytes, comp, uncomp);
1499 
1500 		for (uint64_t i = 0; i < bpo->bpo_phys->bpo_num_subobjs; i++) {
1501 			uint64_t subobj;
1502 			bpobj_t subbpo;
1503 			int error;
1504 			VERIFY0(dmu_read(bpo->bpo_os,
1505 			    bpo->bpo_phys->bpo_subobjs,
1506 			    i * sizeof (subobj), sizeof (subobj), &subobj, 0));
1507 			error = bpobj_open(&subbpo, bpo->bpo_os, subobj);
1508 			if (error != 0) {
1509 				(void) printf("ERROR %u while trying to open "
1510 				    "subobj id %llu\n",
1511 				    error, (u_longlong_t)subobj);
1512 				continue;
1513 			}
1514 			dump_full_bpobj(&subbpo, "subobj", indent + 1);
1515 			bpobj_close(&subbpo);
1516 		}
1517 	} else {
1518 		(void) printf("    %*s: object %llu, %llu blkptrs, %s\n",
1519 		    indent * 8, name,
1520 		    (u_longlong_t)bpo->bpo_object,
1521 		    (u_longlong_t)bpo->bpo_phys->bpo_num_blkptrs,
1522 		    bytes);
1523 	}
1524 
1525 	if (dump_opt['d'] < 5)
1526 		return;
1527 
1528 
1529 	if (indent == 0) {
1530 		(void) bpobj_iterate_nofree(bpo, dump_bpobj_cb, NULL, NULL);
1531 		(void) printf("\n");
1532 	}
1533 }
1534 
1535 static void
dump_deadlist(dsl_deadlist_t * dl)1536 dump_deadlist(dsl_deadlist_t *dl)
1537 {
1538 	dsl_deadlist_entry_t *dle;
1539 	uint64_t unused;
1540 	char bytes[32];
1541 	char comp[32];
1542 	char uncomp[32];
1543 
1544 	/* make sure nicenum has enough space */
1545 	CTASSERT(sizeof (bytes) >= NN_NUMBUF_SZ);
1546 	CTASSERT(sizeof (comp) >= NN_NUMBUF_SZ);
1547 	CTASSERT(sizeof (uncomp) >= NN_NUMBUF_SZ);
1548 
1549 	if (dump_opt['d'] < 3)
1550 		return;
1551 
1552 	if (dl->dl_oldfmt) {
1553 		dump_full_bpobj(&dl->dl_bpobj, "old-format deadlist", 0);
1554 		return;
1555 	}
1556 
1557 	zdb_nicenum(dl->dl_phys->dl_used, bytes, sizeof (bytes));
1558 	zdb_nicenum(dl->dl_phys->dl_comp, comp, sizeof (comp));
1559 	zdb_nicenum(dl->dl_phys->dl_uncomp, uncomp, sizeof (uncomp));
1560 	(void) printf("\n    Deadlist: %s (%s/%s comp)\n",
1561 	    bytes, comp, uncomp);
1562 
1563 	if (dump_opt['d'] < 4)
1564 		return;
1565 
1566 	(void) printf("\n");
1567 
1568 	/* force the tree to be loaded */
1569 	dsl_deadlist_space_range(dl, 0, UINT64_MAX, &unused, &unused, &unused);
1570 
1571 	for (dle = avl_first(&dl->dl_tree); dle;
1572 	    dle = AVL_NEXT(&dl->dl_tree, dle)) {
1573 		if (dump_opt['d'] >= 5) {
1574 			char buf[128];
1575 			(void) snprintf(buf, sizeof (buf), "mintxg %llu -> ",
1576 			    (longlong_t)dle->dle_mintxg,
1577 			    (longlong_t)dle->dle_bpobj.bpo_object);
1578 
1579 			dump_full_bpobj(&dle->dle_bpobj, buf, 0);
1580 		} else {
1581 			(void) printf("mintxg %llu -> obj %llu\n",
1582 			    (longlong_t)dle->dle_mintxg,
1583 			    (longlong_t)dle->dle_bpobj.bpo_object);
1584 
1585 		}
1586 	}
1587 }
1588 
1589 static avl_tree_t idx_tree;
1590 static avl_tree_t domain_tree;
1591 static boolean_t fuid_table_loaded;
1592 static boolean_t sa_loaded;
1593 sa_attr_type_t *sa_attr_table;
1594 
1595 static void
fuid_table_destroy()1596 fuid_table_destroy()
1597 {
1598 	if (fuid_table_loaded) {
1599 		zfs_fuid_table_destroy(&idx_tree, &domain_tree);
1600 		fuid_table_loaded = B_FALSE;
1601 	}
1602 }
1603 
1604 /*
1605  * print uid or gid information.
1606  * For normal POSIX id just the id is printed in decimal format.
1607  * For CIFS files with FUID the fuid is printed in hex followed by
1608  * the domain-rid string.
1609  */
1610 static void
print_idstr(uint64_t id,const char * id_type)1611 print_idstr(uint64_t id, const char *id_type)
1612 {
1613 	if (FUID_INDEX(id)) {
1614 		char *domain;
1615 
1616 		domain = zfs_fuid_idx_domain(&idx_tree, FUID_INDEX(id));
1617 		(void) printf("\t%s     %llx [%s-%d]\n", id_type,
1618 		    (u_longlong_t)id, domain, (int)FUID_RID(id));
1619 	} else {
1620 		(void) printf("\t%s     %llu\n", id_type, (u_longlong_t)id);
1621 	}
1622 
1623 }
1624 
1625 static void
dump_uidgid(objset_t * os,uint64_t uid,uint64_t gid)1626 dump_uidgid(objset_t *os, uint64_t uid, uint64_t gid)
1627 {
1628 	uint32_t uid_idx, gid_idx;
1629 
1630 	uid_idx = FUID_INDEX(uid);
1631 	gid_idx = FUID_INDEX(gid);
1632 
1633 	/* Load domain table, if not already loaded */
1634 	if (!fuid_table_loaded && (uid_idx || gid_idx)) {
1635 		uint64_t fuid_obj;
1636 
1637 		/* first find the fuid object.  It lives in the master node */
1638 		VERIFY(zap_lookup(os, MASTER_NODE_OBJ, ZFS_FUID_TABLES,
1639 		    8, 1, &fuid_obj) == 0);
1640 		zfs_fuid_avl_tree_create(&idx_tree, &domain_tree);
1641 		(void) zfs_fuid_table_load(os, fuid_obj,
1642 		    &idx_tree, &domain_tree);
1643 		fuid_table_loaded = B_TRUE;
1644 	}
1645 
1646 	print_idstr(uid, "uid");
1647 	print_idstr(gid, "gid");
1648 }
1649 
1650 /*ARGSUSED*/
1651 static void
dump_znode(objset_t * os,uint64_t object,void * data,size_t size)1652 dump_znode(objset_t *os, uint64_t object, void *data, size_t size)
1653 {
1654 	char path[MAXPATHLEN * 2];	/* allow for xattr and failure prefix */
1655 	sa_handle_t *hdl;
1656 	uint64_t xattr, rdev, gen;
1657 	uint64_t uid, gid, mode, fsize, parent, links;
1658 	uint64_t pflags;
1659 	uint64_t acctm[2], modtm[2], chgtm[2], crtm[2];
1660 	time_t z_crtime, z_atime, z_mtime, z_ctime;
1661 	sa_bulk_attr_t bulk[12];
1662 	int idx = 0;
1663 	int error;
1664 
1665 	if (!sa_loaded) {
1666 		uint64_t sa_attrs = 0;
1667 		uint64_t version;
1668 
1669 		VERIFY(zap_lookup(os, MASTER_NODE_OBJ, ZPL_VERSION_STR,
1670 		    8, 1, &version) == 0);
1671 		if (version >= ZPL_VERSION_SA) {
1672 			VERIFY(zap_lookup(os, MASTER_NODE_OBJ, ZFS_SA_ATTRS,
1673 			    8, 1, &sa_attrs) == 0);
1674 		}
1675 		if ((error = sa_setup(os, sa_attrs, zfs_attr_table,
1676 		    ZPL_END, &sa_attr_table)) != 0) {
1677 			(void) printf("sa_setup failed errno %d, can't "
1678 			    "display znode contents\n", error);
1679 			return;
1680 		}
1681 		sa_loaded = B_TRUE;
1682 	}
1683 
1684 	if (sa_handle_get(os, object, NULL, SA_HDL_PRIVATE, &hdl)) {
1685 		(void) printf("Failed to get handle for SA znode\n");
1686 		return;
1687 	}
1688 
1689 	SA_ADD_BULK_ATTR(bulk, idx, sa_attr_table[ZPL_UID], NULL, &uid, 8);
1690 	SA_ADD_BULK_ATTR(bulk, idx, sa_attr_table[ZPL_GID], NULL, &gid, 8);
1691 	SA_ADD_BULK_ATTR(bulk, idx, sa_attr_table[ZPL_LINKS], NULL,
1692 	    &links, 8);
1693 	SA_ADD_BULK_ATTR(bulk, idx, sa_attr_table[ZPL_GEN], NULL, &gen, 8);
1694 	SA_ADD_BULK_ATTR(bulk, idx, sa_attr_table[ZPL_MODE], NULL,
1695 	    &mode, 8);
1696 	SA_ADD_BULK_ATTR(bulk, idx, sa_attr_table[ZPL_PARENT],
1697 	    NULL, &parent, 8);
1698 	SA_ADD_BULK_ATTR(bulk, idx, sa_attr_table[ZPL_SIZE], NULL,
1699 	    &fsize, 8);
1700 	SA_ADD_BULK_ATTR(bulk, idx, sa_attr_table[ZPL_ATIME], NULL,
1701 	    acctm, 16);
1702 	SA_ADD_BULK_ATTR(bulk, idx, sa_attr_table[ZPL_MTIME], NULL,
1703 	    modtm, 16);
1704 	SA_ADD_BULK_ATTR(bulk, idx, sa_attr_table[ZPL_CRTIME], NULL,
1705 	    crtm, 16);
1706 	SA_ADD_BULK_ATTR(bulk, idx, sa_attr_table[ZPL_CTIME], NULL,
1707 	    chgtm, 16);
1708 	SA_ADD_BULK_ATTR(bulk, idx, sa_attr_table[ZPL_FLAGS], NULL,
1709 	    &pflags, 8);
1710 
1711 	if (sa_bulk_lookup(hdl, bulk, idx)) {
1712 		(void) sa_handle_destroy(hdl);
1713 		return;
1714 	}
1715 
1716 	error = zfs_obj_to_path(os, object, path, sizeof (path));
1717 	if (error != 0) {
1718 		(void) snprintf(path, sizeof (path), "\?\?\?<object#%llu>",
1719 		    (u_longlong_t)object);
1720 	}
1721 	if (dump_opt['d'] < 3) {
1722 		(void) printf("\t%s\n", path);
1723 		(void) sa_handle_destroy(hdl);
1724 		return;
1725 	}
1726 
1727 	z_crtime = (time_t)crtm[0];
1728 	z_atime = (time_t)acctm[0];
1729 	z_mtime = (time_t)modtm[0];
1730 	z_ctime = (time_t)chgtm[0];
1731 
1732 	(void) printf("\tpath	%s\n", path);
1733 	dump_uidgid(os, uid, gid);
1734 	(void) printf("\tatime	%s", ctime(&z_atime));
1735 	(void) printf("\tmtime	%s", ctime(&z_mtime));
1736 	(void) printf("\tctime	%s", ctime(&z_ctime));
1737 	(void) printf("\tcrtime	%s", ctime(&z_crtime));
1738 	(void) printf("\tgen	%llu\n", (u_longlong_t)gen);
1739 	(void) printf("\tmode	%llo\n", (u_longlong_t)mode);
1740 	(void) printf("\tsize	%llu\n", (u_longlong_t)fsize);
1741 	(void) printf("\tparent	%llu\n", (u_longlong_t)parent);
1742 	(void) printf("\tlinks	%llu\n", (u_longlong_t)links);
1743 	(void) printf("\tpflags	%llx\n", (u_longlong_t)pflags);
1744 	if (sa_lookup(hdl, sa_attr_table[ZPL_XATTR], &xattr,
1745 	    sizeof (uint64_t)) == 0)
1746 		(void) printf("\txattr	%llu\n", (u_longlong_t)xattr);
1747 	if (sa_lookup(hdl, sa_attr_table[ZPL_RDEV], &rdev,
1748 	    sizeof (uint64_t)) == 0)
1749 		(void) printf("\trdev	0x%016llx\n", (u_longlong_t)rdev);
1750 	sa_handle_destroy(hdl);
1751 }
1752 
1753 /*ARGSUSED*/
1754 static void
dump_acl(objset_t * os,uint64_t object,void * data,size_t size)1755 dump_acl(objset_t *os, uint64_t object, void *data, size_t size)
1756 {
1757 }
1758 
1759 /*ARGSUSED*/
1760 static void
dump_dmu_objset(objset_t * os,uint64_t object,void * data,size_t size)1761 dump_dmu_objset(objset_t *os, uint64_t object, void *data, size_t size)
1762 {
1763 }
1764 
1765 static object_viewer_t *object_viewer[DMU_OT_NUMTYPES + 1] = {
1766 	dump_none,		/* unallocated			*/
1767 	dump_zap,		/* object directory		*/
1768 	dump_uint64,		/* object array			*/
1769 	dump_none,		/* packed nvlist		*/
1770 	dump_packed_nvlist,	/* packed nvlist size		*/
1771 	dump_none,		/* bpobj			*/
1772 	dump_bpobj,		/* bpobj header			*/
1773 	dump_none,		/* SPA space map header		*/
1774 	dump_none,		/* SPA space map		*/
1775 	dump_none,		/* ZIL intent log		*/
1776 	dump_dnode,		/* DMU dnode			*/
1777 	dump_dmu_objset,	/* DMU objset			*/
1778 	dump_dsl_dir,		/* DSL directory		*/
1779 	dump_zap,		/* DSL directory child map	*/
1780 	dump_zap,		/* DSL dataset snap map		*/
1781 	dump_zap,		/* DSL props			*/
1782 	dump_dsl_dataset,	/* DSL dataset			*/
1783 	dump_znode,		/* ZFS znode			*/
1784 	dump_acl,		/* ZFS V0 ACL			*/
1785 	dump_uint8,		/* ZFS plain file		*/
1786 	dump_zpldir,		/* ZFS directory		*/
1787 	dump_zap,		/* ZFS master node		*/
1788 	dump_zap,		/* ZFS delete queue		*/
1789 	dump_uint8,		/* zvol object			*/
1790 	dump_zap,		/* zvol prop			*/
1791 	dump_uint8,		/* other uint8[]		*/
1792 	dump_uint64,		/* other uint64[]		*/
1793 	dump_zap,		/* other ZAP			*/
1794 	dump_zap,		/* persistent error log		*/
1795 	dump_uint8,		/* SPA history			*/
1796 	dump_history_offsets,	/* SPA history offsets		*/
1797 	dump_zap,		/* Pool properties		*/
1798 	dump_zap,		/* DSL permissions		*/
1799 	dump_acl,		/* ZFS ACL			*/
1800 	dump_uint8,		/* ZFS SYSACL			*/
1801 	dump_none,		/* FUID nvlist			*/
1802 	dump_packed_nvlist,	/* FUID nvlist size		*/
1803 	dump_zap,		/* DSL dataset next clones	*/
1804 	dump_zap,		/* DSL scrub queue		*/
1805 	dump_zap,		/* ZFS user/group used		*/
1806 	dump_zap,		/* ZFS user/group quota		*/
1807 	dump_zap,		/* snapshot refcount tags	*/
1808 	dump_ddt_zap,		/* DDT ZAP object		*/
1809 	dump_zap,		/* DDT statistics		*/
1810 	dump_znode,		/* SA object			*/
1811 	dump_zap,		/* SA Master Node		*/
1812 	dump_sa_attrs,		/* SA attribute registration	*/
1813 	dump_sa_layouts,	/* SA attribute layouts		*/
1814 	dump_zap,		/* DSL scrub translations	*/
1815 	dump_none,		/* fake dedup BP		*/
1816 	dump_zap,		/* deadlist			*/
1817 	dump_none,		/* deadlist hdr			*/
1818 	dump_zap,		/* dsl clones			*/
1819 	dump_bpobj_subobjs,	/* bpobj subobjs		*/
1820 	dump_unknown,		/* Unknown type, must be last	*/
1821 };
1822 
1823 static void
dump_object(objset_t * os,uint64_t object,int verbosity,int * print_header)1824 dump_object(objset_t *os, uint64_t object, int verbosity, int *print_header)
1825 {
1826 	dmu_buf_t *db = NULL;
1827 	dmu_object_info_t doi;
1828 	dnode_t *dn;
1829 	void *bonus = NULL;
1830 	size_t bsize = 0;
1831 	char iblk[32], dblk[32], lsize[32], asize[32], fill[32];
1832 	char bonus_size[32];
1833 	char aux[50];
1834 	int error;
1835 
1836 	/* make sure nicenum has enough space */
1837 	CTASSERT(sizeof (iblk) >= NN_NUMBUF_SZ);
1838 	CTASSERT(sizeof (dblk) >= NN_NUMBUF_SZ);
1839 	CTASSERT(sizeof (lsize) >= NN_NUMBUF_SZ);
1840 	CTASSERT(sizeof (asize) >= NN_NUMBUF_SZ);
1841 	CTASSERT(sizeof (bonus_size) >= NN_NUMBUF_SZ);
1842 
1843 	if (*print_header) {
1844 		(void) printf("\n%10s  %3s  %5s  %5s  %5s  %5s  %6s  %s\n",
1845 		    "Object", "lvl", "iblk", "dblk", "dsize", "lsize",
1846 		    "%full", "type");
1847 		*print_header = 0;
1848 	}
1849 
1850 	if (object == 0) {
1851 		dn = DMU_META_DNODE(os);
1852 	} else {
1853 		error = dmu_bonus_hold(os, object, FTAG, &db);
1854 		if (error)
1855 			fatal("dmu_bonus_hold(%llu) failed, errno %u",
1856 			    object, error);
1857 		bonus = db->db_data;
1858 		bsize = db->db_size;
1859 		dn = DB_DNODE((dmu_buf_impl_t *)db);
1860 	}
1861 	dmu_object_info_from_dnode(dn, &doi);
1862 
1863 	zdb_nicenum(doi.doi_metadata_block_size, iblk, sizeof (iblk));
1864 	zdb_nicenum(doi.doi_data_block_size, dblk, sizeof (dblk));
1865 	zdb_nicenum(doi.doi_max_offset, lsize, sizeof (lsize));
1866 	zdb_nicenum(doi.doi_physical_blocks_512 << 9, asize, sizeof (asize));
1867 	zdb_nicenum(doi.doi_bonus_size, bonus_size, sizeof (bonus_size));
1868 	(void) sprintf(fill, "%6.2f", 100.0 * doi.doi_fill_count *
1869 	    doi.doi_data_block_size / (object == 0 ? DNODES_PER_BLOCK : 1) /
1870 	    doi.doi_max_offset);
1871 
1872 	aux[0] = '\0';
1873 
1874 	if (doi.doi_checksum != ZIO_CHECKSUM_INHERIT || verbosity >= 6) {
1875 		(void) snprintf(aux + strlen(aux), sizeof (aux), " (K=%s)",
1876 		    ZDB_CHECKSUM_NAME(doi.doi_checksum));
1877 	}
1878 
1879 	if (doi.doi_compress != ZIO_COMPRESS_INHERIT || verbosity >= 6) {
1880 		(void) snprintf(aux + strlen(aux), sizeof (aux), " (Z=%s)",
1881 		    ZDB_COMPRESS_NAME(doi.doi_compress));
1882 	}
1883 
1884 	(void) printf("%10lld  %3u  %5s  %5s  %5s  %5s  %6s  %s%s\n",
1885 	    (u_longlong_t)object, doi.doi_indirection, iblk, dblk,
1886 	    asize, lsize, fill, ZDB_OT_NAME(doi.doi_type), aux);
1887 
1888 	if (doi.doi_bonus_type != DMU_OT_NONE && verbosity > 3) {
1889 		(void) printf("%10s  %3s  %5s  %5s  %5s  %5s  %6s  %s\n",
1890 		    "", "", "", "", "", bonus_size, "bonus",
1891 		    ZDB_OT_NAME(doi.doi_bonus_type));
1892 	}
1893 
1894 	if (verbosity >= 4) {
1895 		(void) printf("\tdnode flags: %s%s%s\n",
1896 		    (dn->dn_phys->dn_flags & DNODE_FLAG_USED_BYTES) ?
1897 		    "USED_BYTES " : "",
1898 		    (dn->dn_phys->dn_flags & DNODE_FLAG_USERUSED_ACCOUNTED) ?
1899 		    "USERUSED_ACCOUNTED " : "",
1900 		    (dn->dn_phys->dn_flags & DNODE_FLAG_SPILL_BLKPTR) ?
1901 		    "SPILL_BLKPTR" : "");
1902 		(void) printf("\tdnode maxblkid: %llu\n",
1903 		    (longlong_t)dn->dn_phys->dn_maxblkid);
1904 
1905 		object_viewer[ZDB_OT_TYPE(doi.doi_bonus_type)](os, object,
1906 		    bonus, bsize);
1907 		object_viewer[ZDB_OT_TYPE(doi.doi_type)](os, object, NULL, 0);
1908 		*print_header = 1;
1909 	}
1910 
1911 	if (verbosity >= 5)
1912 		dump_indirect(dn);
1913 
1914 	if (verbosity >= 5) {
1915 		/*
1916 		 * Report the list of segments that comprise the object.
1917 		 */
1918 		uint64_t start = 0;
1919 		uint64_t end;
1920 		uint64_t blkfill = 1;
1921 		int minlvl = 1;
1922 
1923 		if (dn->dn_type == DMU_OT_DNODE) {
1924 			minlvl = 0;
1925 			blkfill = DNODES_PER_BLOCK;
1926 		}
1927 
1928 		for (;;) {
1929 			char segsize[32];
1930 			/* make sure nicenum has enough space */
1931 			CTASSERT(sizeof (segsize) >= NN_NUMBUF_SZ);
1932 			error = dnode_next_offset(dn,
1933 			    0, &start, minlvl, blkfill, 0);
1934 			if (error)
1935 				break;
1936 			end = start;
1937 			error = dnode_next_offset(dn,
1938 			    DNODE_FIND_HOLE, &end, minlvl, blkfill, 0);
1939 			zdb_nicenum(end - start, segsize, sizeof (segsize));
1940 			(void) printf("\t\tsegment [%016llx, %016llx)"
1941 			    " size %5s\n", (u_longlong_t)start,
1942 			    (u_longlong_t)end, segsize);
1943 			if (error)
1944 				break;
1945 			start = end;
1946 		}
1947 	}
1948 
1949 	if (db != NULL)
1950 		dmu_buf_rele(db, FTAG);
1951 }
1952 
1953 static char *objset_types[DMU_OST_NUMTYPES] = {
1954 	"NONE", "META", "ZPL", "ZVOL", "OTHER", "ANY" };
1955 
1956 static void
dump_dir(objset_t * os)1957 dump_dir(objset_t *os)
1958 {
1959 	dmu_objset_stats_t dds;
1960 	uint64_t object, object_count;
1961 	uint64_t refdbytes, usedobjs, scratch;
1962 	char numbuf[32];
1963 	char blkbuf[BP_SPRINTF_LEN + 20];
1964 	char osname[ZFS_MAX_DATASET_NAME_LEN];
1965 	char *type = "UNKNOWN";
1966 	int verbosity = dump_opt['d'];
1967 	int print_header = 1;
1968 	int i, error;
1969 
1970 	/* make sure nicenum has enough space */
1971 	CTASSERT(sizeof (numbuf) >= NN_NUMBUF_SZ);
1972 
1973 	dsl_pool_config_enter(dmu_objset_pool(os), FTAG);
1974 	dmu_objset_fast_stat(os, &dds);
1975 	dsl_pool_config_exit(dmu_objset_pool(os), FTAG);
1976 
1977 	if (dds.dds_type < DMU_OST_NUMTYPES)
1978 		type = objset_types[dds.dds_type];
1979 
1980 	if (dds.dds_type == DMU_OST_META) {
1981 		dds.dds_creation_txg = TXG_INITIAL;
1982 		usedobjs = BP_GET_FILL(os->os_rootbp);
1983 		refdbytes = dsl_dir_phys(os->os_spa->spa_dsl_pool->dp_mos_dir)->
1984 		    dd_used_bytes;
1985 	} else {
1986 		dmu_objset_space(os, &refdbytes, &scratch, &usedobjs, &scratch);
1987 	}
1988 
1989 	ASSERT3U(usedobjs, ==, BP_GET_FILL(os->os_rootbp));
1990 
1991 	zdb_nicenum(refdbytes, numbuf, sizeof (numbuf));
1992 
1993 	if (verbosity >= 4) {
1994 		(void) snprintf(blkbuf, sizeof (blkbuf), ", rootbp ");
1995 		(void) snprintf_blkptr(blkbuf + strlen(blkbuf),
1996 		    sizeof (blkbuf) - strlen(blkbuf), os->os_rootbp);
1997 	} else {
1998 		blkbuf[0] = '\0';
1999 	}
2000 
2001 	dmu_objset_name(os, osname);
2002 
2003 	(void) printf("Dataset %s [%s], ID %llu, cr_txg %llu, "
2004 	    "%s, %llu objects%s\n",
2005 	    osname, type, (u_longlong_t)dmu_objset_id(os),
2006 	    (u_longlong_t)dds.dds_creation_txg,
2007 	    numbuf, (u_longlong_t)usedobjs, blkbuf);
2008 
2009 	if (zopt_objects != 0) {
2010 		for (i = 0; i < zopt_objects; i++)
2011 			dump_object(os, zopt_object[i], verbosity,
2012 			    &print_header);
2013 		(void) printf("\n");
2014 		return;
2015 	}
2016 
2017 	if (dump_opt['i'] != 0 || verbosity >= 2)
2018 		dump_intent_log(dmu_objset_zil(os));
2019 
2020 	if (dmu_objset_ds(os) != NULL)
2021 		dump_deadlist(&dmu_objset_ds(os)->ds_deadlist);
2022 
2023 	if (verbosity < 2)
2024 		return;
2025 
2026 	if (BP_IS_HOLE(os->os_rootbp))
2027 		return;
2028 
2029 	dump_object(os, 0, verbosity, &print_header);
2030 	object_count = 0;
2031 	if (DMU_USERUSED_DNODE(os) != NULL &&
2032 	    DMU_USERUSED_DNODE(os)->dn_type != 0) {
2033 		dump_object(os, DMU_USERUSED_OBJECT, verbosity, &print_header);
2034 		dump_object(os, DMU_GROUPUSED_OBJECT, verbosity, &print_header);
2035 	}
2036 
2037 	object = 0;
2038 	while ((error = dmu_object_next(os, &object, B_FALSE, 0)) == 0) {
2039 		dump_object(os, object, verbosity, &print_header);
2040 		object_count++;
2041 	}
2042 
2043 	ASSERT3U(object_count, ==, usedobjs);
2044 
2045 	(void) printf("\n");
2046 
2047 	if (error != ESRCH) {
2048 		(void) fprintf(stderr, "dmu_object_next() = %d\n", error);
2049 		abort();
2050 	}
2051 }
2052 
2053 static void
dump_uberblock(uberblock_t * ub,const char * header,const char * footer)2054 dump_uberblock(uberblock_t *ub, const char *header, const char *footer)
2055 {
2056 	time_t timestamp = ub->ub_timestamp;
2057 
2058 	(void) printf(header ? header : "");
2059 	(void) printf("\tmagic = %016llx\n", (u_longlong_t)ub->ub_magic);
2060 	(void) printf("\tversion = %llu\n", (u_longlong_t)ub->ub_version);
2061 	(void) printf("\ttxg = %llu\n", (u_longlong_t)ub->ub_txg);
2062 	(void) printf("\tguid_sum = %llu\n", (u_longlong_t)ub->ub_guid_sum);
2063 	(void) printf("\ttimestamp = %llu UTC = %s",
2064 	    (u_longlong_t)ub->ub_timestamp, asctime(localtime(&timestamp)));
2065 	if (dump_opt['u'] >= 3) {
2066 		char blkbuf[BP_SPRINTF_LEN];
2067 		snprintf_blkptr(blkbuf, sizeof (blkbuf), &ub->ub_rootbp);
2068 		(void) printf("\trootbp = %s\n", blkbuf);
2069 	}
2070 	(void) printf(footer ? footer : "");
2071 }
2072 
2073 static void
dump_config(spa_t * spa)2074 dump_config(spa_t *spa)
2075 {
2076 	dmu_buf_t *db;
2077 	size_t nvsize = 0;
2078 	int error = 0;
2079 
2080 
2081 	error = dmu_bonus_hold(spa->spa_meta_objset,
2082 	    spa->spa_config_object, FTAG, &db);
2083 
2084 	if (error == 0) {
2085 		nvsize = *(uint64_t *)db->db_data;
2086 		dmu_buf_rele(db, FTAG);
2087 
2088 		(void) printf("\nMOS Configuration:\n");
2089 		dump_packed_nvlist(spa->spa_meta_objset,
2090 		    spa->spa_config_object, (void *)&nvsize, 1);
2091 	} else {
2092 		(void) fprintf(stderr, "dmu_bonus_hold(%llu) failed, errno %d",
2093 		    (u_longlong_t)spa->spa_config_object, error);
2094 	}
2095 }
2096 
2097 static void
dump_cachefile(const char * cachefile)2098 dump_cachefile(const char *cachefile)
2099 {
2100 	int fd;
2101 	struct stat64 statbuf;
2102 	char *buf;
2103 	nvlist_t *config;
2104 
2105 	if ((fd = open64(cachefile, O_RDONLY)) < 0) {
2106 		(void) printf("cannot open '%s': %s\n", cachefile,
2107 		    strerror(errno));
2108 		exit(1);
2109 	}
2110 
2111 	if (fstat64(fd, &statbuf) != 0) {
2112 		(void) printf("failed to stat '%s': %s\n", cachefile,
2113 		    strerror(errno));
2114 		exit(1);
2115 	}
2116 
2117 	if ((buf = malloc(statbuf.st_size)) == NULL) {
2118 		(void) fprintf(stderr, "failed to allocate %llu bytes\n",
2119 		    (u_longlong_t)statbuf.st_size);
2120 		exit(1);
2121 	}
2122 
2123 	if (read(fd, buf, statbuf.st_size) != statbuf.st_size) {
2124 		(void) fprintf(stderr, "failed to read %llu bytes\n",
2125 		    (u_longlong_t)statbuf.st_size);
2126 		exit(1);
2127 	}
2128 
2129 	(void) close(fd);
2130 
2131 	if (nvlist_unpack(buf, statbuf.st_size, &config, 0) != 0) {
2132 		(void) fprintf(stderr, "failed to unpack nvlist\n");
2133 		exit(1);
2134 	}
2135 
2136 	free(buf);
2137 
2138 	dump_nvlist(config, 0);
2139 
2140 	nvlist_free(config);
2141 }
2142 
2143 #define	ZDB_MAX_UB_HEADER_SIZE 32
2144 
2145 static void
dump_label_uberblocks(vdev_label_t * lbl,uint64_t ashift)2146 dump_label_uberblocks(vdev_label_t *lbl, uint64_t ashift)
2147 {
2148 	vdev_t vd;
2149 	vdev_t *vdp = &vd;
2150 	char header[ZDB_MAX_UB_HEADER_SIZE];
2151 
2152 	vd.vdev_ashift = ashift;
2153 	vdp->vdev_top = vdp;
2154 
2155 	for (int i = 0; i < VDEV_UBERBLOCK_COUNT(vdp); i++) {
2156 		uint64_t uoff = VDEV_UBERBLOCK_OFFSET(vdp, i);
2157 		uberblock_t *ub = (void *)((char *)lbl + uoff);
2158 
2159 		if (uberblock_verify(ub))
2160 			continue;
2161 		(void) snprintf(header, ZDB_MAX_UB_HEADER_SIZE,
2162 		    "Uberblock[%d]\n", i);
2163 		dump_uberblock(ub, header, "");
2164 	}
2165 }
2166 
2167 static void
dump_label(const char * dev)2168 dump_label(const char *dev)
2169 {
2170 	int fd;
2171 	vdev_label_t label;
2172 	char *path, *buf = label.vl_vdev_phys.vp_nvlist;
2173 	size_t buflen = sizeof (label.vl_vdev_phys.vp_nvlist);
2174 	struct stat64 statbuf;
2175 	uint64_t psize, ashift;
2176 	int len = strlen(dev) + 1;
2177 
2178 	if (strncmp(dev, "/dev/dsk/", 9) == 0) {
2179 		len++;
2180 		path = malloc(len);
2181 		(void) snprintf(path, len, "%s%s", "/dev/rdsk/", dev + 9);
2182 	} else {
2183 		path = strdup(dev);
2184 	}
2185 
2186 	if ((fd = open64(path, O_RDONLY)) < 0) {
2187 		(void) printf("cannot open '%s': %s\n", path, strerror(errno));
2188 		free(path);
2189 		exit(1);
2190 	}
2191 
2192 	if (fstat64(fd, &statbuf) != 0) {
2193 		(void) printf("failed to stat '%s': %s\n", path,
2194 		    strerror(errno));
2195 		free(path);
2196 		(void) close(fd);
2197 		exit(1);
2198 	}
2199 
2200 	if (S_ISBLK(statbuf.st_mode)) {
2201 		(void) printf("cannot use '%s': character device required\n",
2202 		    path);
2203 		free(path);
2204 		(void) close(fd);
2205 		exit(1);
2206 	}
2207 
2208 	psize = statbuf.st_size;
2209 	psize = P2ALIGN(psize, (uint64_t)sizeof (vdev_label_t));
2210 
2211 	for (int l = 0; l < VDEV_LABELS; l++) {
2212 		nvlist_t *config = NULL;
2213 
2214 		(void) printf("--------------------------------------------\n");
2215 		(void) printf("LABEL %d\n", l);
2216 		(void) printf("--------------------------------------------\n");
2217 
2218 		if (pread64(fd, &label, sizeof (label),
2219 		    vdev_label_offset(psize, l, 0)) != sizeof (label)) {
2220 			(void) printf("failed to read label %d\n", l);
2221 			continue;
2222 		}
2223 
2224 		if (nvlist_unpack(buf, buflen, &config, 0) != 0) {
2225 			(void) printf("failed to unpack label %d\n", l);
2226 			ashift = SPA_MINBLOCKSHIFT;
2227 		} else {
2228 			nvlist_t *vdev_tree = NULL;
2229 
2230 			dump_nvlist(config, 4);
2231 			if ((nvlist_lookup_nvlist(config,
2232 			    ZPOOL_CONFIG_VDEV_TREE, &vdev_tree) != 0) ||
2233 			    (nvlist_lookup_uint64(vdev_tree,
2234 			    ZPOOL_CONFIG_ASHIFT, &ashift) != 0))
2235 				ashift = SPA_MINBLOCKSHIFT;
2236 			nvlist_free(config);
2237 		}
2238 		if (dump_opt['u'])
2239 			dump_label_uberblocks(&label, ashift);
2240 	}
2241 
2242 	free(path);
2243 	(void) close(fd);
2244 }
2245 
2246 static uint64_t dataset_feature_count[SPA_FEATURES];
2247 
2248 /*ARGSUSED*/
2249 static int
dump_one_dir(const char * dsname,void * arg)2250 dump_one_dir(const char *dsname, void *arg)
2251 {
2252 	int error;
2253 	objset_t *os;
2254 
2255 	error = dmu_objset_own(dsname, DMU_OST_ANY, B_TRUE, FTAG, &os);
2256 	if (error) {
2257 		(void) printf("Could not open %s, error %d\n", dsname, error);
2258 		return (0);
2259 	}
2260 
2261 	for (spa_feature_t f = 0; f < SPA_FEATURES; f++) {
2262 		if (!dmu_objset_ds(os)->ds_feature_inuse[f])
2263 			continue;
2264 		ASSERT(spa_feature_table[f].fi_flags &
2265 		    ZFEATURE_FLAG_PER_DATASET);
2266 		dataset_feature_count[f]++;
2267 	}
2268 
2269 	dump_dir(os);
2270 	dmu_objset_disown(os, FTAG);
2271 	fuid_table_destroy();
2272 	sa_loaded = B_FALSE;
2273 	return (0);
2274 }
2275 
2276 /*
2277  * Block statistics.
2278  */
2279 #define	PSIZE_HISTO_SIZE (SPA_OLD_MAXBLOCKSIZE / SPA_MINBLOCKSIZE + 2)
2280 typedef struct zdb_blkstats {
2281 	uint64_t zb_asize;
2282 	uint64_t zb_lsize;
2283 	uint64_t zb_psize;
2284 	uint64_t zb_count;
2285 	uint64_t zb_gangs;
2286 	uint64_t zb_ditto_samevdev;
2287 	uint64_t zb_psize_histogram[PSIZE_HISTO_SIZE];
2288 } zdb_blkstats_t;
2289 
2290 /*
2291  * Extended object types to report deferred frees and dedup auto-ditto blocks.
2292  */
2293 #define	ZDB_OT_DEFERRED	(DMU_OT_NUMTYPES + 0)
2294 #define	ZDB_OT_DITTO	(DMU_OT_NUMTYPES + 1)
2295 #define	ZDB_OT_OTHER	(DMU_OT_NUMTYPES + 2)
2296 #define	ZDB_OT_TOTAL	(DMU_OT_NUMTYPES + 3)
2297 
2298 static char *zdb_ot_extname[] = {
2299 	"deferred free",
2300 	"dedup ditto",
2301 	"other",
2302 	"Total",
2303 };
2304 
2305 #define	ZB_TOTAL	DN_MAX_LEVELS
2306 
2307 typedef struct zdb_cb {
2308 	zdb_blkstats_t	zcb_type[ZB_TOTAL + 1][ZDB_OT_TOTAL + 1];
2309 	uint64_t	zcb_dedup_asize;
2310 	uint64_t	zcb_dedup_blocks;
2311 	uint64_t	zcb_embedded_blocks[NUM_BP_EMBEDDED_TYPES];
2312 	uint64_t	zcb_embedded_histogram[NUM_BP_EMBEDDED_TYPES]
2313 	    [BPE_PAYLOAD_SIZE];
2314 	uint64_t	zcb_start;
2315 	uint64_t	zcb_lastprint;
2316 	uint64_t	zcb_totalasize;
2317 	uint64_t	zcb_errors[256];
2318 	int		zcb_readfails;
2319 	int		zcb_haderrors;
2320 	spa_t		*zcb_spa;
2321 } zdb_cb_t;
2322 
2323 static void
zdb_count_block(zdb_cb_t * zcb,zilog_t * zilog,const blkptr_t * bp,dmu_object_type_t type)2324 zdb_count_block(zdb_cb_t *zcb, zilog_t *zilog, const blkptr_t *bp,
2325     dmu_object_type_t type)
2326 {
2327 	uint64_t refcnt = 0;
2328 
2329 	ASSERT(type < ZDB_OT_TOTAL);
2330 
2331 	if (zilog && zil_bp_tree_add(zilog, bp) != 0)
2332 		return;
2333 
2334 	for (int i = 0; i < 4; i++) {
2335 		int l = (i < 2) ? BP_GET_LEVEL(bp) : ZB_TOTAL;
2336 		int t = (i & 1) ? type : ZDB_OT_TOTAL;
2337 		int equal;
2338 		zdb_blkstats_t *zb = &zcb->zcb_type[l][t];
2339 
2340 		zb->zb_asize += BP_GET_ASIZE(bp);
2341 		zb->zb_lsize += BP_GET_LSIZE(bp);
2342 		zb->zb_psize += BP_GET_PSIZE(bp);
2343 		zb->zb_count++;
2344 
2345 		/*
2346 		 * The histogram is only big enough to record blocks up to
2347 		 * SPA_OLD_MAXBLOCKSIZE; larger blocks go into the last,
2348 		 * "other", bucket.
2349 		 */
2350 		int idx = BP_GET_PSIZE(bp) >> SPA_MINBLOCKSHIFT;
2351 		idx = MIN(idx, SPA_OLD_MAXBLOCKSIZE / SPA_MINBLOCKSIZE + 1);
2352 		zb->zb_psize_histogram[idx]++;
2353 
2354 		zb->zb_gangs += BP_COUNT_GANG(bp);
2355 
2356 		switch (BP_GET_NDVAS(bp)) {
2357 		case 2:
2358 			if (DVA_GET_VDEV(&bp->blk_dva[0]) ==
2359 			    DVA_GET_VDEV(&bp->blk_dva[1]))
2360 				zb->zb_ditto_samevdev++;
2361 			break;
2362 		case 3:
2363 			equal = (DVA_GET_VDEV(&bp->blk_dva[0]) ==
2364 			    DVA_GET_VDEV(&bp->blk_dva[1])) +
2365 			    (DVA_GET_VDEV(&bp->blk_dva[0]) ==
2366 			    DVA_GET_VDEV(&bp->blk_dva[2])) +
2367 			    (DVA_GET_VDEV(&bp->blk_dva[1]) ==
2368 			    DVA_GET_VDEV(&bp->blk_dva[2]));
2369 			if (equal != 0)
2370 				zb->zb_ditto_samevdev++;
2371 			break;
2372 		}
2373 
2374 	}
2375 
2376 	if (BP_IS_EMBEDDED(bp)) {
2377 		zcb->zcb_embedded_blocks[BPE_GET_ETYPE(bp)]++;
2378 		zcb->zcb_embedded_histogram[BPE_GET_ETYPE(bp)]
2379 		    [BPE_GET_PSIZE(bp)]++;
2380 		return;
2381 	}
2382 
2383 	if (dump_opt['L'])
2384 		return;
2385 
2386 	if (BP_GET_DEDUP(bp)) {
2387 		ddt_t *ddt;
2388 		ddt_entry_t *dde;
2389 
2390 		ddt = ddt_select(zcb->zcb_spa, bp);
2391 		ddt_enter(ddt);
2392 		dde = ddt_lookup(ddt, bp, B_FALSE);
2393 
2394 		if (dde == NULL) {
2395 			refcnt = 0;
2396 		} else {
2397 			ddt_phys_t *ddp = ddt_phys_select(dde, bp);
2398 			ddt_phys_decref(ddp);
2399 			refcnt = ddp->ddp_refcnt;
2400 			if (ddt_phys_total_refcnt(dde) == 0)
2401 				ddt_remove(ddt, dde);
2402 		}
2403 		ddt_exit(ddt);
2404 	}
2405 
2406 	VERIFY3U(zio_wait(zio_claim(NULL, zcb->zcb_spa,
2407 	    refcnt ? 0 : spa_first_txg(zcb->zcb_spa),
2408 	    bp, NULL, NULL, ZIO_FLAG_CANFAIL)), ==, 0);
2409 }
2410 
2411 static void
zdb_blkptr_done(zio_t * zio)2412 zdb_blkptr_done(zio_t *zio)
2413 {
2414 	spa_t *spa = zio->io_spa;
2415 	blkptr_t *bp = zio->io_bp;
2416 	int ioerr = zio->io_error;
2417 	zdb_cb_t *zcb = zio->io_private;
2418 	zbookmark_phys_t *zb = &zio->io_bookmark;
2419 
2420 	zio_data_buf_free(zio->io_data, zio->io_size);
2421 
2422 	mutex_enter(&spa->spa_scrub_lock);
2423 	spa->spa_scrub_inflight--;
2424 	cv_broadcast(&spa->spa_scrub_io_cv);
2425 
2426 	if (ioerr && !(zio->io_flags & ZIO_FLAG_SPECULATIVE)) {
2427 		char blkbuf[BP_SPRINTF_LEN];
2428 
2429 		zcb->zcb_haderrors = 1;
2430 		zcb->zcb_errors[ioerr]++;
2431 
2432 		if (dump_opt['b'] >= 2)
2433 			snprintf_blkptr(blkbuf, sizeof (blkbuf), bp);
2434 		else
2435 			blkbuf[0] = '\0';
2436 
2437 		(void) printf("zdb_blkptr_cb: "
2438 		    "Got error %d reading "
2439 		    "<%llu, %llu, %lld, %llx> %s -- skipping\n",
2440 		    ioerr,
2441 		    (u_longlong_t)zb->zb_objset,
2442 		    (u_longlong_t)zb->zb_object,
2443 		    (u_longlong_t)zb->zb_level,
2444 		    (u_longlong_t)zb->zb_blkid,
2445 		    blkbuf);
2446 	}
2447 	mutex_exit(&spa->spa_scrub_lock);
2448 }
2449 
2450 static int
zdb_blkptr_cb(spa_t * spa,zilog_t * zilog,const blkptr_t * bp,const zbookmark_phys_t * zb,const dnode_phys_t * dnp,void * arg)2451 zdb_blkptr_cb(spa_t *spa, zilog_t *zilog, const blkptr_t *bp,
2452     const zbookmark_phys_t *zb, const dnode_phys_t *dnp, void *arg)
2453 {
2454 	zdb_cb_t *zcb = arg;
2455 	dmu_object_type_t type;
2456 	boolean_t is_metadata;
2457 
2458 	if (bp == NULL)
2459 		return (0);
2460 
2461 	if (dump_opt['b'] >= 5 && bp->blk_birth > 0) {
2462 		char blkbuf[BP_SPRINTF_LEN];
2463 		snprintf_blkptr(blkbuf, sizeof (blkbuf), bp);
2464 		(void) printf("objset %llu object %llu "
2465 		    "level %lld offset 0x%llx %s\n",
2466 		    (u_longlong_t)zb->zb_objset,
2467 		    (u_longlong_t)zb->zb_object,
2468 		    (longlong_t)zb->zb_level,
2469 		    (u_longlong_t)blkid2offset(dnp, bp, zb),
2470 		    blkbuf);
2471 	}
2472 
2473 	if (BP_IS_HOLE(bp))
2474 		return (0);
2475 
2476 	type = BP_GET_TYPE(bp);
2477 
2478 	zdb_count_block(zcb, zilog, bp,
2479 	    (type & DMU_OT_NEWTYPE) ? ZDB_OT_OTHER : type);
2480 
2481 	is_metadata = (BP_GET_LEVEL(bp) != 0 || DMU_OT_IS_METADATA(type));
2482 
2483 	if (!BP_IS_EMBEDDED(bp) &&
2484 	    (dump_opt['c'] > 1 || (dump_opt['c'] && is_metadata))) {
2485 		size_t size = BP_GET_PSIZE(bp);
2486 		void *data = zio_data_buf_alloc(size);
2487 		int flags = ZIO_FLAG_CANFAIL | ZIO_FLAG_SCRUB | ZIO_FLAG_RAW;
2488 
2489 		/* If it's an intent log block, failure is expected. */
2490 		if (zb->zb_level == ZB_ZIL_LEVEL)
2491 			flags |= ZIO_FLAG_SPECULATIVE;
2492 
2493 		mutex_enter(&spa->spa_scrub_lock);
2494 		while (spa->spa_scrub_inflight > max_inflight)
2495 			cv_wait(&spa->spa_scrub_io_cv, &spa->spa_scrub_lock);
2496 		spa->spa_scrub_inflight++;
2497 		mutex_exit(&spa->spa_scrub_lock);
2498 
2499 		zio_nowait(zio_read(NULL, spa, bp, data, size,
2500 		    zdb_blkptr_done, zcb, ZIO_PRIORITY_ASYNC_READ, flags, zb));
2501 	}
2502 
2503 	zcb->zcb_readfails = 0;
2504 
2505 	/* only call gethrtime() every 100 blocks */
2506 	static int iters;
2507 	if (++iters > 100)
2508 		iters = 0;
2509 	else
2510 		return (0);
2511 
2512 	if (dump_opt['b'] < 5 && gethrtime() > zcb->zcb_lastprint + NANOSEC) {
2513 		uint64_t now = gethrtime();
2514 		char buf[10];
2515 		uint64_t bytes = zcb->zcb_type[ZB_TOTAL][ZDB_OT_TOTAL].zb_asize;
2516 		int kb_per_sec =
2517 		    1 + bytes / (1 + ((now - zcb->zcb_start) / 1000 / 1000));
2518 		int sec_remaining =
2519 		    (zcb->zcb_totalasize - bytes) / 1024 / kb_per_sec;
2520 
2521 		/* make sure nicenum has enough space */
2522 		CTASSERT(sizeof (buf) >= NN_NUMBUF_SZ);
2523 
2524 		zfs_nicenum(bytes, buf, sizeof (buf));
2525 		(void) fprintf(stderr,
2526 		    "\r%5s completed (%4dMB/s) "
2527 		    "estimated time remaining: %uhr %02umin %02usec        ",
2528 		    buf, kb_per_sec / 1024,
2529 		    sec_remaining / 60 / 60,
2530 		    sec_remaining / 60 % 60,
2531 		    sec_remaining % 60);
2532 
2533 		zcb->zcb_lastprint = now;
2534 	}
2535 
2536 	return (0);
2537 }
2538 
2539 static void
zdb_leak(void * arg,uint64_t start,uint64_t size)2540 zdb_leak(void *arg, uint64_t start, uint64_t size)
2541 {
2542 	vdev_t *vd = arg;
2543 
2544 	(void) printf("leaked space: vdev %llu, offset 0x%llx, size %llu\n",
2545 	    (u_longlong_t)vd->vdev_id, (u_longlong_t)start, (u_longlong_t)size);
2546 }
2547 
2548 static metaslab_ops_t zdb_metaslab_ops = {
2549 	NULL	/* alloc */
2550 };
2551 
2552 static void
zdb_ddt_leak_init(spa_t * spa,zdb_cb_t * zcb)2553 zdb_ddt_leak_init(spa_t *spa, zdb_cb_t *zcb)
2554 {
2555 	ddt_bookmark_t ddb = { 0 };
2556 	ddt_entry_t dde;
2557 	int error;
2558 
2559 	while ((error = ddt_walk(spa, &ddb, &dde)) == 0) {
2560 		blkptr_t blk;
2561 		ddt_phys_t *ddp = dde.dde_phys;
2562 
2563 		if (ddb.ddb_class == DDT_CLASS_UNIQUE)
2564 			return;
2565 
2566 		ASSERT(ddt_phys_total_refcnt(&dde) > 1);
2567 
2568 		for (int p = 0; p < DDT_PHYS_TYPES; p++, ddp++) {
2569 			if (ddp->ddp_phys_birth == 0)
2570 				continue;
2571 			ddt_bp_create(ddb.ddb_checksum,
2572 			    &dde.dde_key, ddp, &blk);
2573 			if (p == DDT_PHYS_DITTO) {
2574 				zdb_count_block(zcb, NULL, &blk, ZDB_OT_DITTO);
2575 			} else {
2576 				zcb->zcb_dedup_asize +=
2577 				    BP_GET_ASIZE(&blk) * (ddp->ddp_refcnt - 1);
2578 				zcb->zcb_dedup_blocks++;
2579 			}
2580 		}
2581 		if (!dump_opt['L']) {
2582 			ddt_t *ddt = spa->spa_ddt[ddb.ddb_checksum];
2583 			ddt_enter(ddt);
2584 			VERIFY(ddt_lookup(ddt, &blk, B_TRUE) != NULL);
2585 			ddt_exit(ddt);
2586 		}
2587 	}
2588 
2589 	ASSERT(error == ENOENT);
2590 }
2591 
2592 static void
zdb_leak_init(spa_t * spa,zdb_cb_t * zcb)2593 zdb_leak_init(spa_t *spa, zdb_cb_t *zcb)
2594 {
2595 	zcb->zcb_spa = spa;
2596 
2597 	if (!dump_opt['L']) {
2598 		vdev_t *rvd = spa->spa_root_vdev;
2599 		for (uint64_t c = 0; c < rvd->vdev_children; c++) {
2600 			vdev_t *vd = rvd->vdev_child[c];
2601 			for (uint64_t m = 0; m < vd->vdev_ms_count; m++) {
2602 				metaslab_t *msp = vd->vdev_ms[m];
2603 				mutex_enter(&msp->ms_lock);
2604 				metaslab_unload(msp);
2605 
2606 				/*
2607 				 * For leak detection, we overload the metaslab
2608 				 * ms_tree to contain allocated segments
2609 				 * instead of free segments. As a result,
2610 				 * we can't use the normal metaslab_load/unload
2611 				 * interfaces.
2612 				 */
2613 				if (msp->ms_sm != NULL) {
2614 					(void) fprintf(stderr,
2615 					    "\rloading space map for "
2616 					    "vdev %llu of %llu, "
2617 					    "metaslab %llu of %llu ...",
2618 					    (longlong_t)c,
2619 					    (longlong_t)rvd->vdev_children,
2620 					    (longlong_t)m,
2621 					    (longlong_t)vd->vdev_ms_count);
2622 
2623 					msp->ms_ops = &zdb_metaslab_ops;
2624 
2625 					/*
2626 					 * We don't want to spend the CPU
2627 					 * manipulating the size-ordered
2628 					 * tree, so clear the range_tree
2629 					 * ops.
2630 					 */
2631 					msp->ms_tree->rt_ops = NULL;
2632 					VERIFY0(space_map_load(msp->ms_sm,
2633 					    msp->ms_tree, SM_ALLOC));
2634 					msp->ms_loaded = B_TRUE;
2635 				}
2636 				mutex_exit(&msp->ms_lock);
2637 			}
2638 		}
2639 		(void) fprintf(stderr, "\n");
2640 	}
2641 
2642 	spa_config_enter(spa, SCL_CONFIG, FTAG, RW_READER);
2643 
2644 	zdb_ddt_leak_init(spa, zcb);
2645 
2646 	spa_config_exit(spa, SCL_CONFIG, FTAG);
2647 }
2648 
2649 static void
zdb_leak_fini(spa_t * spa)2650 zdb_leak_fini(spa_t *spa)
2651 {
2652 	if (!dump_opt['L']) {
2653 		vdev_t *rvd = spa->spa_root_vdev;
2654 		for (int c = 0; c < rvd->vdev_children; c++) {
2655 			vdev_t *vd = rvd->vdev_child[c];
2656 			for (int m = 0; m < vd->vdev_ms_count; m++) {
2657 				metaslab_t *msp = vd->vdev_ms[m];
2658 				mutex_enter(&msp->ms_lock);
2659 
2660 				/*
2661 				 * The ms_tree has been overloaded to
2662 				 * contain allocated segments. Now that we
2663 				 * finished traversing all blocks, any
2664 				 * block that remains in the ms_tree
2665 				 * represents an allocated block that we
2666 				 * did not claim during the traversal.
2667 				 * Claimed blocks would have been removed
2668 				 * from the ms_tree.
2669 				 */
2670 				range_tree_vacate(msp->ms_tree, zdb_leak, vd);
2671 				msp->ms_loaded = B_FALSE;
2672 
2673 				mutex_exit(&msp->ms_lock);
2674 			}
2675 		}
2676 	}
2677 }
2678 
2679 /* ARGSUSED */
2680 static int
count_block_cb(void * arg,const blkptr_t * bp,dmu_tx_t * tx)2681 count_block_cb(void *arg, const blkptr_t *bp, dmu_tx_t *tx)
2682 {
2683 	zdb_cb_t *zcb = arg;
2684 
2685 	if (dump_opt['b'] >= 5) {
2686 		char blkbuf[BP_SPRINTF_LEN];
2687 		snprintf_blkptr(blkbuf, sizeof (blkbuf), bp);
2688 		(void) printf("[%s] %s\n",
2689 		    "deferred free", blkbuf);
2690 	}
2691 	zdb_count_block(zcb, NULL, bp, ZDB_OT_DEFERRED);
2692 	return (0);
2693 }
2694 
2695 static int
dump_block_stats(spa_t * spa)2696 dump_block_stats(spa_t *spa)
2697 {
2698 	zdb_cb_t zcb = { 0 };
2699 	zdb_blkstats_t *zb, *tzb;
2700 	uint64_t norm_alloc, norm_space, total_alloc, total_found;
2701 	int flags = TRAVERSE_PRE | TRAVERSE_PREFETCH_METADATA | TRAVERSE_HARD;
2702 	boolean_t leaks = B_FALSE;
2703 
2704 	(void) printf("\nTraversing all blocks %s%s%s%s%s...\n\n",
2705 	    (dump_opt['c'] || !dump_opt['L']) ? "to verify " : "",
2706 	    (dump_opt['c'] == 1) ? "metadata " : "",
2707 	    dump_opt['c'] ? "checksums " : "",
2708 	    (dump_opt['c'] && !dump_opt['L']) ? "and verify " : "",
2709 	    !dump_opt['L'] ? "nothing leaked " : "");
2710 
2711 	/*
2712 	 * Load all space maps as SM_ALLOC maps, then traverse the pool
2713 	 * claiming each block we discover.  If the pool is perfectly
2714 	 * consistent, the space maps will be empty when we're done.
2715 	 * Anything left over is a leak; any block we can't claim (because
2716 	 * it's not part of any space map) is a double allocation,
2717 	 * reference to a freed block, or an unclaimed log block.
2718 	 */
2719 	zdb_leak_init(spa, &zcb);
2720 
2721 	/*
2722 	 * If there's a deferred-free bplist, process that first.
2723 	 */
2724 	(void) bpobj_iterate_nofree(&spa->spa_deferred_bpobj,
2725 	    count_block_cb, &zcb, NULL);
2726 	if (spa_version(spa) >= SPA_VERSION_DEADLISTS) {
2727 		(void) bpobj_iterate_nofree(&spa->spa_dsl_pool->dp_free_bpobj,
2728 		    count_block_cb, &zcb, NULL);
2729 	}
2730 	if (spa_feature_is_active(spa, SPA_FEATURE_ASYNC_DESTROY)) {
2731 		VERIFY3U(0, ==, bptree_iterate(spa->spa_meta_objset,
2732 		    spa->spa_dsl_pool->dp_bptree_obj, B_FALSE, count_block_cb,
2733 		    &zcb, NULL));
2734 	}
2735 
2736 	if (dump_opt['c'] > 1)
2737 		flags |= TRAVERSE_PREFETCH_DATA;
2738 
2739 	zcb.zcb_totalasize = metaslab_class_get_alloc(spa_normal_class(spa));
2740 	zcb.zcb_start = zcb.zcb_lastprint = gethrtime();
2741 	zcb.zcb_haderrors |= traverse_pool(spa, 0, flags, zdb_blkptr_cb, &zcb);
2742 
2743 	/*
2744 	 * If we've traversed the data blocks then we need to wait for those
2745 	 * I/Os to complete. We leverage "The Godfather" zio to wait on
2746 	 * all async I/Os to complete.
2747 	 */
2748 	if (dump_opt['c']) {
2749 		for (int i = 0; i < max_ncpus; i++) {
2750 			(void) zio_wait(spa->spa_async_zio_root[i]);
2751 			spa->spa_async_zio_root[i] = zio_root(spa, NULL, NULL,
2752 			    ZIO_FLAG_CANFAIL | ZIO_FLAG_SPECULATIVE |
2753 			    ZIO_FLAG_GODFATHER);
2754 		}
2755 	}
2756 
2757 	if (zcb.zcb_haderrors) {
2758 		(void) printf("\nError counts:\n\n");
2759 		(void) printf("\t%5s  %s\n", "errno", "count");
2760 		for (int e = 0; e < 256; e++) {
2761 			if (zcb.zcb_errors[e] != 0) {
2762 				(void) printf("\t%5d  %llu\n",
2763 				    e, (u_longlong_t)zcb.zcb_errors[e]);
2764 			}
2765 		}
2766 	}
2767 
2768 	/*
2769 	 * Report any leaked segments.
2770 	 */
2771 	zdb_leak_fini(spa);
2772 
2773 	tzb = &zcb.zcb_type[ZB_TOTAL][ZDB_OT_TOTAL];
2774 
2775 	norm_alloc = metaslab_class_get_alloc(spa_normal_class(spa));
2776 	norm_space = metaslab_class_get_space(spa_normal_class(spa));
2777 
2778 	total_alloc = norm_alloc + metaslab_class_get_alloc(spa_log_class(spa));
2779 	total_found = tzb->zb_asize - zcb.zcb_dedup_asize;
2780 
2781 	if (total_found == total_alloc) {
2782 		if (!dump_opt['L'])
2783 			(void) printf("\n\tNo leaks (block sum matches space"
2784 			    " maps exactly)\n");
2785 	} else {
2786 		(void) printf("block traversal size %llu != alloc %llu "
2787 		    "(%s %lld)\n",
2788 		    (u_longlong_t)total_found,
2789 		    (u_longlong_t)total_alloc,
2790 		    (dump_opt['L']) ? "unreachable" : "leaked",
2791 		    (longlong_t)(total_alloc - total_found));
2792 		leaks = B_TRUE;
2793 	}
2794 
2795 	if (tzb->zb_count == 0)
2796 		return (2);
2797 
2798 	(void) printf("\n");
2799 	(void) printf("\tbp count:      %10llu\n",
2800 	    (u_longlong_t)tzb->zb_count);
2801 	(void) printf("\tganged count:  %10llu\n",
2802 	    (longlong_t)tzb->zb_gangs);
2803 	(void) printf("\tbp logical:    %10llu      avg: %6llu\n",
2804 	    (u_longlong_t)tzb->zb_lsize,
2805 	    (u_longlong_t)(tzb->zb_lsize / tzb->zb_count));
2806 	(void) printf("\tbp physical:   %10llu      avg:"
2807 	    " %6llu     compression: %6.2f\n",
2808 	    (u_longlong_t)tzb->zb_psize,
2809 	    (u_longlong_t)(tzb->zb_psize / tzb->zb_count),
2810 	    (double)tzb->zb_lsize / tzb->zb_psize);
2811 	(void) printf("\tbp allocated:  %10llu      avg:"
2812 	    " %6llu     compression: %6.2f\n",
2813 	    (u_longlong_t)tzb->zb_asize,
2814 	    (u_longlong_t)(tzb->zb_asize / tzb->zb_count),
2815 	    (double)tzb->zb_lsize / tzb->zb_asize);
2816 	(void) printf("\tbp deduped:    %10llu    ref>1:"
2817 	    " %6llu   deduplication: %6.2f\n",
2818 	    (u_longlong_t)zcb.zcb_dedup_asize,
2819 	    (u_longlong_t)zcb.zcb_dedup_blocks,
2820 	    (double)zcb.zcb_dedup_asize / tzb->zb_asize + 1.0);
2821 	(void) printf("\tSPA allocated: %10llu     used: %5.2f%%\n",
2822 	    (u_longlong_t)norm_alloc, 100.0 * norm_alloc / norm_space);
2823 
2824 	for (bp_embedded_type_t i = 0; i < NUM_BP_EMBEDDED_TYPES; i++) {
2825 		if (zcb.zcb_embedded_blocks[i] == 0)
2826 			continue;
2827 		(void) printf("\n");
2828 		(void) printf("\tadditional, non-pointer bps of type %u: "
2829 		    "%10llu\n",
2830 		    i, (u_longlong_t)zcb.zcb_embedded_blocks[i]);
2831 
2832 		if (dump_opt['b'] >= 3) {
2833 			(void) printf("\t number of (compressed) bytes:  "
2834 			    "number of bps\n");
2835 			dump_histogram(zcb.zcb_embedded_histogram[i],
2836 			    sizeof (zcb.zcb_embedded_histogram[i]) /
2837 			    sizeof (zcb.zcb_embedded_histogram[i][0]), 0);
2838 		}
2839 	}
2840 
2841 	if (tzb->zb_ditto_samevdev != 0) {
2842 		(void) printf("\tDittoed blocks on same vdev: %llu\n",
2843 		    (longlong_t)tzb->zb_ditto_samevdev);
2844 	}
2845 
2846 	if (dump_opt['b'] >= 2) {
2847 		int l, t, level;
2848 		(void) printf("\nBlocks\tLSIZE\tPSIZE\tASIZE"
2849 		    "\t  avg\t comp\t%%Total\tType\n");
2850 
2851 		for (t = 0; t <= ZDB_OT_TOTAL; t++) {
2852 			char csize[32], lsize[32], psize[32], asize[32];
2853 			char avg[32], gang[32];
2854 			char *typename;
2855 
2856 			/* make sure nicenum has enough space */
2857 			CTASSERT(sizeof (csize) >= NN_NUMBUF_SZ);
2858 			CTASSERT(sizeof (lsize) >= NN_NUMBUF_SZ);
2859 			CTASSERT(sizeof (psize) >= NN_NUMBUF_SZ);
2860 			CTASSERT(sizeof (asize) >= NN_NUMBUF_SZ);
2861 			CTASSERT(sizeof (avg) >= NN_NUMBUF_SZ);
2862 			CTASSERT(sizeof (gang) >= NN_NUMBUF_SZ);
2863 
2864 			if (t < DMU_OT_NUMTYPES)
2865 				typename = dmu_ot[t].ot_name;
2866 			else
2867 				typename = zdb_ot_extname[t - DMU_OT_NUMTYPES];
2868 
2869 			if (zcb.zcb_type[ZB_TOTAL][t].zb_asize == 0) {
2870 				(void) printf("%6s\t%5s\t%5s\t%5s"
2871 				    "\t%5s\t%5s\t%6s\t%s\n",
2872 				    "-",
2873 				    "-",
2874 				    "-",
2875 				    "-",
2876 				    "-",
2877 				    "-",
2878 				    "-",
2879 				    typename);
2880 				continue;
2881 			}
2882 
2883 			for (l = ZB_TOTAL - 1; l >= -1; l--) {
2884 				level = (l == -1 ? ZB_TOTAL : l);
2885 				zb = &zcb.zcb_type[level][t];
2886 
2887 				if (zb->zb_asize == 0)
2888 					continue;
2889 
2890 				if (dump_opt['b'] < 3 && level != ZB_TOTAL)
2891 					continue;
2892 
2893 				if (level == 0 && zb->zb_asize ==
2894 				    zcb.zcb_type[ZB_TOTAL][t].zb_asize)
2895 					continue;
2896 
2897 				zdb_nicenum(zb->zb_count, csize,
2898 				    sizeof (csize));
2899 				zdb_nicenum(zb->zb_lsize, lsize,
2900 				    sizeof (lsize));
2901 				zdb_nicenum(zb->zb_psize, psize,
2902 				    sizeof (psize));
2903 				zdb_nicenum(zb->zb_asize, asize,
2904 				    sizeof (asize));
2905 				zdb_nicenum(zb->zb_asize / zb->zb_count, avg,
2906 				    sizeof (avg));
2907 				zdb_nicenum(zb->zb_gangs, gang, sizeof (gang));
2908 
2909 				(void) printf("%6s\t%5s\t%5s\t%5s\t%5s"
2910 				    "\t%5.2f\t%6.2f\t",
2911 				    csize, lsize, psize, asize, avg,
2912 				    (double)zb->zb_lsize / zb->zb_psize,
2913 				    100.0 * zb->zb_asize / tzb->zb_asize);
2914 
2915 				if (level == ZB_TOTAL)
2916 					(void) printf("%s\n", typename);
2917 				else
2918 					(void) printf("    L%d %s\n",
2919 					    level, typename);
2920 
2921 				if (dump_opt['b'] >= 3 && zb->zb_gangs > 0) {
2922 					(void) printf("\t number of ganged "
2923 					    "blocks: %s\n", gang);
2924 				}
2925 
2926 				if (dump_opt['b'] >= 4) {
2927 					(void) printf("psize "
2928 					    "(in 512-byte sectors): "
2929 					    "number of blocks\n");
2930 					dump_histogram(zb->zb_psize_histogram,
2931 					    PSIZE_HISTO_SIZE, 0);
2932 				}
2933 			}
2934 		}
2935 	}
2936 
2937 	(void) printf("\n");
2938 
2939 	if (leaks)
2940 		return (2);
2941 
2942 	if (zcb.zcb_haderrors)
2943 		return (3);
2944 
2945 	return (0);
2946 }
2947 
2948 typedef struct zdb_ddt_entry {
2949 	ddt_key_t	zdde_key;
2950 	uint64_t	zdde_ref_blocks;
2951 	uint64_t	zdde_ref_lsize;
2952 	uint64_t	zdde_ref_psize;
2953 	uint64_t	zdde_ref_dsize;
2954 	avl_node_t	zdde_node;
2955 } zdb_ddt_entry_t;
2956 
2957 /* ARGSUSED */
2958 static int
zdb_ddt_add_cb(spa_t * spa,zilog_t * zilog,const blkptr_t * bp,const zbookmark_phys_t * zb,const dnode_phys_t * dnp,void * arg)2959 zdb_ddt_add_cb(spa_t *spa, zilog_t *zilog, const blkptr_t *bp,
2960     const zbookmark_phys_t *zb, const dnode_phys_t *dnp, void *arg)
2961 {
2962 	avl_tree_t *t = arg;
2963 	avl_index_t where;
2964 	zdb_ddt_entry_t *zdde, zdde_search;
2965 
2966 	if (bp == NULL || BP_IS_HOLE(bp) || BP_IS_EMBEDDED(bp))
2967 		return (0);
2968 
2969 	if (dump_opt['S'] > 1 && zb->zb_level == ZB_ROOT_LEVEL) {
2970 		(void) printf("traversing objset %llu, %llu objects, "
2971 		    "%lu blocks so far\n",
2972 		    (u_longlong_t)zb->zb_objset,
2973 		    (u_longlong_t)BP_GET_FILL(bp),
2974 		    avl_numnodes(t));
2975 	}
2976 
2977 	if (BP_IS_HOLE(bp) || BP_GET_CHECKSUM(bp) == ZIO_CHECKSUM_OFF ||
2978 	    BP_GET_LEVEL(bp) > 0 || DMU_OT_IS_METADATA(BP_GET_TYPE(bp)))
2979 		return (0);
2980 
2981 	ddt_key_fill(&zdde_search.zdde_key, bp);
2982 
2983 	zdde = avl_find(t, &zdde_search, &where);
2984 
2985 	if (zdde == NULL) {
2986 		zdde = umem_zalloc(sizeof (*zdde), UMEM_NOFAIL);
2987 		zdde->zdde_key = zdde_search.zdde_key;
2988 		avl_insert(t, zdde, where);
2989 	}
2990 
2991 	zdde->zdde_ref_blocks += 1;
2992 	zdde->zdde_ref_lsize += BP_GET_LSIZE(bp);
2993 	zdde->zdde_ref_psize += BP_GET_PSIZE(bp);
2994 	zdde->zdde_ref_dsize += bp_get_dsize_sync(spa, bp);
2995 
2996 	return (0);
2997 }
2998 
2999 static void
dump_simulated_ddt(spa_t * spa)3000 dump_simulated_ddt(spa_t *spa)
3001 {
3002 	avl_tree_t t;
3003 	void *cookie = NULL;
3004 	zdb_ddt_entry_t *zdde;
3005 	ddt_histogram_t ddh_total = { 0 };
3006 	ddt_stat_t dds_total = { 0 };
3007 
3008 	avl_create(&t, ddt_entry_compare,
3009 	    sizeof (zdb_ddt_entry_t), offsetof(zdb_ddt_entry_t, zdde_node));
3010 
3011 	spa_config_enter(spa, SCL_CONFIG, FTAG, RW_READER);
3012 
3013 	(void) traverse_pool(spa, 0, TRAVERSE_PRE | TRAVERSE_PREFETCH_METADATA,
3014 	    zdb_ddt_add_cb, &t);
3015 
3016 	spa_config_exit(spa, SCL_CONFIG, FTAG);
3017 
3018 	while ((zdde = avl_destroy_nodes(&t, &cookie)) != NULL) {
3019 		ddt_stat_t dds;
3020 		uint64_t refcnt = zdde->zdde_ref_blocks;
3021 		ASSERT(refcnt != 0);
3022 
3023 		dds.dds_blocks = zdde->zdde_ref_blocks / refcnt;
3024 		dds.dds_lsize = zdde->zdde_ref_lsize / refcnt;
3025 		dds.dds_psize = zdde->zdde_ref_psize / refcnt;
3026 		dds.dds_dsize = zdde->zdde_ref_dsize / refcnt;
3027 
3028 		dds.dds_ref_blocks = zdde->zdde_ref_blocks;
3029 		dds.dds_ref_lsize = zdde->zdde_ref_lsize;
3030 		dds.dds_ref_psize = zdde->zdde_ref_psize;
3031 		dds.dds_ref_dsize = zdde->zdde_ref_dsize;
3032 
3033 		ddt_stat_add(&ddh_total.ddh_stat[highbit64(refcnt) - 1],
3034 		    &dds, 0);
3035 
3036 		umem_free(zdde, sizeof (*zdde));
3037 	}
3038 
3039 	avl_destroy(&t);
3040 
3041 	ddt_histogram_stat(&dds_total, &ddh_total);
3042 
3043 	(void) printf("Simulated DDT histogram:\n");
3044 
3045 	zpool_dump_ddt(&dds_total, &ddh_total);
3046 
3047 	dump_dedup_ratio(&dds_total);
3048 }
3049 
3050 static void
dump_zpool(spa_t * spa)3051 dump_zpool(spa_t *spa)
3052 {
3053 	dsl_pool_t *dp = spa_get_dsl(spa);
3054 	int rc = 0;
3055 
3056 	if (dump_opt['S']) {
3057 		dump_simulated_ddt(spa);
3058 		return;
3059 	}
3060 
3061 	if (!dump_opt['e'] && dump_opt['C'] > 1) {
3062 		(void) printf("\nCached configuration:\n");
3063 		dump_nvlist(spa->spa_config, 8);
3064 	}
3065 
3066 	if (dump_opt['C'])
3067 		dump_config(spa);
3068 
3069 	if (dump_opt['u'])
3070 		dump_uberblock(&spa->spa_uberblock, "\nUberblock:\n", "\n");
3071 
3072 	if (dump_opt['D'])
3073 		dump_all_ddts(spa);
3074 
3075 	if (dump_opt['d'] > 2 || dump_opt['m'])
3076 		dump_metaslabs(spa);
3077 	if (dump_opt['M'])
3078 		dump_metaslab_groups(spa);
3079 
3080 	if (dump_opt['d'] || dump_opt['i']) {
3081 		dump_dir(dp->dp_meta_objset);
3082 		if (dump_opt['d'] >= 3) {
3083 			dump_full_bpobj(&spa->spa_deferred_bpobj,
3084 			    "Deferred frees", 0);
3085 			if (spa_version(spa) >= SPA_VERSION_DEADLISTS) {
3086 				dump_full_bpobj(
3087 				    &spa->spa_dsl_pool->dp_free_bpobj,
3088 				    "Pool snapshot frees", 0);
3089 			}
3090 
3091 			if (spa_feature_is_active(spa,
3092 			    SPA_FEATURE_ASYNC_DESTROY)) {
3093 				dump_bptree(spa->spa_meta_objset,
3094 				    spa->spa_dsl_pool->dp_bptree_obj,
3095 				    "Pool dataset frees");
3096 			}
3097 			dump_dtl(spa->spa_root_vdev, 0);
3098 		}
3099 		(void) dmu_objset_find(spa_name(spa), dump_one_dir,
3100 		    NULL, DS_FIND_SNAPSHOTS | DS_FIND_CHILDREN);
3101 
3102 		for (spa_feature_t f = 0; f < SPA_FEATURES; f++) {
3103 			uint64_t refcount;
3104 
3105 			if (!(spa_feature_table[f].fi_flags &
3106 			    ZFEATURE_FLAG_PER_DATASET)) {
3107 				ASSERT0(dataset_feature_count[f]);
3108 				continue;
3109 			}
3110 			(void) feature_get_refcount(spa,
3111 			    &spa_feature_table[f], &refcount);
3112 			if (dataset_feature_count[f] != refcount) {
3113 				(void) printf("%s feature refcount mismatch: "
3114 				    "%lld datasets != %lld refcount\n",
3115 				    spa_feature_table[f].fi_uname,
3116 				    (longlong_t)dataset_feature_count[f],
3117 				    (longlong_t)refcount);
3118 				rc = 2;
3119 			} else {
3120 				(void) printf("Verified %s feature refcount "
3121 				    "of %llu is correct\n",
3122 				    spa_feature_table[f].fi_uname,
3123 				    (longlong_t)refcount);
3124 			}
3125 		}
3126 	}
3127 	if (rc == 0 && (dump_opt['b'] || dump_opt['c']))
3128 		rc = dump_block_stats(spa);
3129 
3130 	if (rc == 0)
3131 		rc = verify_spacemap_refcounts(spa);
3132 
3133 	if (dump_opt['s'])
3134 		show_pool_stats(spa);
3135 
3136 	if (dump_opt['h'])
3137 		dump_history(spa);
3138 
3139 	if (rc != 0)
3140 		exit(rc);
3141 }
3142 
3143 #define	ZDB_FLAG_CHECKSUM	0x0001
3144 #define	ZDB_FLAG_DECOMPRESS	0x0002
3145 #define	ZDB_FLAG_BSWAP		0x0004
3146 #define	ZDB_FLAG_GBH		0x0008
3147 #define	ZDB_FLAG_INDIRECT	0x0010
3148 #define	ZDB_FLAG_PHYS		0x0020
3149 #define	ZDB_FLAG_RAW		0x0040
3150 #define	ZDB_FLAG_PRINT_BLKPTR	0x0080
3151 
3152 int flagbits[256];
3153 
3154 static void
zdb_print_blkptr(blkptr_t * bp,int flags)3155 zdb_print_blkptr(blkptr_t *bp, int flags)
3156 {
3157 	char blkbuf[BP_SPRINTF_LEN];
3158 
3159 	if (flags & ZDB_FLAG_BSWAP)
3160 		byteswap_uint64_array((void *)bp, sizeof (blkptr_t));
3161 
3162 	snprintf_blkptr(blkbuf, sizeof (blkbuf), bp);
3163 	(void) printf("%s\n", blkbuf);
3164 }
3165 
3166 static void
zdb_dump_indirect(blkptr_t * bp,int nbps,int flags)3167 zdb_dump_indirect(blkptr_t *bp, int nbps, int flags)
3168 {
3169 	int i;
3170 
3171 	for (i = 0; i < nbps; i++)
3172 		zdb_print_blkptr(&bp[i], flags);
3173 }
3174 
3175 static void
zdb_dump_gbh(void * buf,int flags)3176 zdb_dump_gbh(void *buf, int flags)
3177 {
3178 	zdb_dump_indirect((blkptr_t *)buf, SPA_GBH_NBLKPTRS, flags);
3179 }
3180 
3181 static void
zdb_dump_block_raw(void * buf,uint64_t size,int flags)3182 zdb_dump_block_raw(void *buf, uint64_t size, int flags)
3183 {
3184 	if (flags & ZDB_FLAG_BSWAP)
3185 		byteswap_uint64_array(buf, size);
3186 	(void) write(1, buf, size);
3187 }
3188 
3189 static void
zdb_dump_block(char * label,void * buf,uint64_t size,int flags)3190 zdb_dump_block(char *label, void *buf, uint64_t size, int flags)
3191 {
3192 	uint64_t *d = (uint64_t *)buf;
3193 	int nwords = size / sizeof (uint64_t);
3194 	int do_bswap = !!(flags & ZDB_FLAG_BSWAP);
3195 	int i, j;
3196 	char *hdr, *c;
3197 
3198 
3199 	if (do_bswap)
3200 		hdr = " 7 6 5 4 3 2 1 0   f e d c b a 9 8";
3201 	else
3202 		hdr = " 0 1 2 3 4 5 6 7   8 9 a b c d e f";
3203 
3204 	(void) printf("\n%s\n%6s   %s  0123456789abcdef\n", label, "", hdr);
3205 
3206 	for (i = 0; i < nwords; i += 2) {
3207 		(void) printf("%06llx:  %016llx  %016llx  ",
3208 		    (u_longlong_t)(i * sizeof (uint64_t)),
3209 		    (u_longlong_t)(do_bswap ? BSWAP_64(d[i]) : d[i]),
3210 		    (u_longlong_t)(do_bswap ? BSWAP_64(d[i + 1]) : d[i + 1]));
3211 
3212 		c = (char *)&d[i];
3213 		for (j = 0; j < 2 * sizeof (uint64_t); j++)
3214 			(void) printf("%c", isprint(c[j]) ? c[j] : '.');
3215 		(void) printf("\n");
3216 	}
3217 }
3218 
3219 /*
3220  * There are two acceptable formats:
3221  *	leaf_name	  - For example: c1t0d0 or /tmp/ztest.0a
3222  *	child[.child]*    - For example: 0.1.1
3223  *
3224  * The second form can be used to specify arbitrary vdevs anywhere
3225  * in the heirarchy.  For example, in a pool with a mirror of
3226  * RAID-Zs, you can specify either RAID-Z vdev with 0.0 or 0.1 .
3227  */
3228 static vdev_t *
zdb_vdev_lookup(vdev_t * vdev,char * path)3229 zdb_vdev_lookup(vdev_t *vdev, char *path)
3230 {
3231 	char *s, *p, *q;
3232 	int i;
3233 
3234 	if (vdev == NULL)
3235 		return (NULL);
3236 
3237 	/* First, assume the x.x.x.x format */
3238 	i = (int)strtoul(path, &s, 10);
3239 	if (s == path || (s && *s != '.' && *s != '\0'))
3240 		goto name;
3241 	if (i < 0 || i >= vdev->vdev_children)
3242 		return (NULL);
3243 
3244 	vdev = vdev->vdev_child[i];
3245 	if (*s == '\0')
3246 		return (vdev);
3247 	return (zdb_vdev_lookup(vdev, s+1));
3248 
3249 name:
3250 	for (i = 0; i < vdev->vdev_children; i++) {
3251 		vdev_t *vc = vdev->vdev_child[i];
3252 
3253 		if (vc->vdev_path == NULL) {
3254 			vc = zdb_vdev_lookup(vc, path);
3255 			if (vc == NULL)
3256 				continue;
3257 			else
3258 				return (vc);
3259 		}
3260 
3261 		p = strrchr(vc->vdev_path, '/');
3262 		p = p ? p + 1 : vc->vdev_path;
3263 		q = &vc->vdev_path[strlen(vc->vdev_path) - 2];
3264 
3265 		if (strcmp(vc->vdev_path, path) == 0)
3266 			return (vc);
3267 		if (strcmp(p, path) == 0)
3268 			return (vc);
3269 		if (strcmp(q, "s0") == 0 && strncmp(p, path, q - p) == 0)
3270 			return (vc);
3271 	}
3272 
3273 	return (NULL);
3274 }
3275 
3276 /*
3277  * Read a block from a pool and print it out.  The syntax of the
3278  * block descriptor is:
3279  *
3280  *	pool:vdev_specifier:offset:size[:flags]
3281  *
3282  *	pool           - The name of the pool you wish to read from
3283  *	vdev_specifier - Which vdev (see comment for zdb_vdev_lookup)
3284  *	offset         - offset, in hex, in bytes
3285  *	size           - Amount of data to read, in hex, in bytes
3286  *	flags          - A string of characters specifying options
3287  *		 b: Decode a blkptr at given offset within block
3288  *		*c: Calculate and display checksums
3289  *		 d: Decompress data before dumping
3290  *		 e: Byteswap data before dumping
3291  *		 g: Display data as a gang block header
3292  *		 i: Display as an indirect block
3293  *		 p: Do I/O to physical offset
3294  *		 r: Dump raw data to stdout
3295  *
3296  *              * = not yet implemented
3297  */
3298 static void
zdb_read_block(char * thing,spa_t * spa)3299 zdb_read_block(char *thing, spa_t *spa)
3300 {
3301 	blkptr_t blk, *bp = &blk;
3302 	dva_t *dva = bp->blk_dva;
3303 	int flags = 0;
3304 	uint64_t offset = 0, size = 0, psize = 0, lsize = 0, blkptr_offset = 0;
3305 	zio_t *zio;
3306 	vdev_t *vd;
3307 	void *pbuf, *lbuf, *buf;
3308 	char *s, *p, *dup, *vdev, *flagstr;
3309 	int i, error;
3310 
3311 	dup = strdup(thing);
3312 	s = strtok(dup, ":");
3313 	vdev = s ? s : "";
3314 	s = strtok(NULL, ":");
3315 	offset = strtoull(s ? s : "", NULL, 16);
3316 	s = strtok(NULL, ":");
3317 	size = strtoull(s ? s : "", NULL, 16);
3318 	s = strtok(NULL, ":");
3319 	flagstr = s ? s : "";
3320 
3321 	s = NULL;
3322 	if (size == 0)
3323 		s = "size must not be zero";
3324 	if (!IS_P2ALIGNED(size, DEV_BSIZE))
3325 		s = "size must be a multiple of sector size";
3326 	if (!IS_P2ALIGNED(offset, DEV_BSIZE))
3327 		s = "offset must be a multiple of sector size";
3328 	if (s) {
3329 		(void) printf("Invalid block specifier: %s  - %s\n", thing, s);
3330 		free(dup);
3331 		return;
3332 	}
3333 
3334 	for (s = strtok(flagstr, ":"); s; s = strtok(NULL, ":")) {
3335 		for (i = 0; flagstr[i]; i++) {
3336 			int bit = flagbits[(uchar_t)flagstr[i]];
3337 
3338 			if (bit == 0) {
3339 				(void) printf("***Invalid flag: %c\n",
3340 				    flagstr[i]);
3341 				continue;
3342 			}
3343 			flags |= bit;
3344 
3345 			/* If it's not something with an argument, keep going */
3346 			if ((bit & (ZDB_FLAG_CHECKSUM |
3347 			    ZDB_FLAG_PRINT_BLKPTR)) == 0)
3348 				continue;
3349 
3350 			p = &flagstr[i + 1];
3351 			if (bit == ZDB_FLAG_PRINT_BLKPTR)
3352 				blkptr_offset = strtoull(p, &p, 16);
3353 			if (*p != ':' && *p != '\0') {
3354 				(void) printf("***Invalid flag arg: '%s'\n", s);
3355 				free(dup);
3356 				return;
3357 			}
3358 		}
3359 	}
3360 
3361 	vd = zdb_vdev_lookup(spa->spa_root_vdev, vdev);
3362 	if (vd == NULL) {
3363 		(void) printf("***Invalid vdev: %s\n", vdev);
3364 		free(dup);
3365 		return;
3366 	} else {
3367 		if (vd->vdev_path)
3368 			(void) fprintf(stderr, "Found vdev: %s\n",
3369 			    vd->vdev_path);
3370 		else
3371 			(void) fprintf(stderr, "Found vdev type: %s\n",
3372 			    vd->vdev_ops->vdev_op_type);
3373 	}
3374 
3375 	psize = size;
3376 	lsize = size;
3377 
3378 	pbuf = umem_alloc(SPA_MAXBLOCKSIZE, UMEM_NOFAIL);
3379 	lbuf = umem_alloc(SPA_MAXBLOCKSIZE, UMEM_NOFAIL);
3380 
3381 	BP_ZERO(bp);
3382 
3383 	DVA_SET_VDEV(&dva[0], vd->vdev_id);
3384 	DVA_SET_OFFSET(&dva[0], offset);
3385 	DVA_SET_GANG(&dva[0], !!(flags & ZDB_FLAG_GBH));
3386 	DVA_SET_ASIZE(&dva[0], vdev_psize_to_asize(vd, psize));
3387 
3388 	BP_SET_BIRTH(bp, TXG_INITIAL, TXG_INITIAL);
3389 
3390 	BP_SET_LSIZE(bp, lsize);
3391 	BP_SET_PSIZE(bp, psize);
3392 	BP_SET_COMPRESS(bp, ZIO_COMPRESS_OFF);
3393 	BP_SET_CHECKSUM(bp, ZIO_CHECKSUM_OFF);
3394 	BP_SET_TYPE(bp, DMU_OT_NONE);
3395 	BP_SET_LEVEL(bp, 0);
3396 	BP_SET_DEDUP(bp, 0);
3397 	BP_SET_BYTEORDER(bp, ZFS_HOST_BYTEORDER);
3398 
3399 	spa_config_enter(spa, SCL_STATE, FTAG, RW_READER);
3400 	zio = zio_root(spa, NULL, NULL, 0);
3401 
3402 	if (vd == vd->vdev_top) {
3403 		/*
3404 		 * Treat this as a normal block read.
3405 		 */
3406 		zio_nowait(zio_read(zio, spa, bp, pbuf, psize, NULL, NULL,
3407 		    ZIO_PRIORITY_SYNC_READ,
3408 		    ZIO_FLAG_CANFAIL | ZIO_FLAG_RAW, NULL));
3409 	} else {
3410 		/*
3411 		 * Treat this as a vdev child I/O.
3412 		 */
3413 		zio_nowait(zio_vdev_child_io(zio, bp, vd, offset, pbuf, psize,
3414 		    ZIO_TYPE_READ, ZIO_PRIORITY_SYNC_READ,
3415 		    ZIO_FLAG_DONT_CACHE | ZIO_FLAG_DONT_QUEUE |
3416 		    ZIO_FLAG_DONT_PROPAGATE | ZIO_FLAG_DONT_RETRY |
3417 		    ZIO_FLAG_CANFAIL | ZIO_FLAG_RAW, NULL, NULL));
3418 	}
3419 
3420 	error = zio_wait(zio);
3421 	spa_config_exit(spa, SCL_STATE, FTAG);
3422 
3423 	if (error) {
3424 		(void) printf("Read of %s failed, error: %d\n", thing, error);
3425 		goto out;
3426 	}
3427 
3428 	if (flags & ZDB_FLAG_DECOMPRESS) {
3429 		/*
3430 		 * We don't know how the data was compressed, so just try
3431 		 * every decompress function at every inflated blocksize.
3432 		 */
3433 		enum zio_compress c;
3434 		void *pbuf2 = umem_alloc(SPA_MAXBLOCKSIZE, UMEM_NOFAIL);
3435 		void *lbuf2 = umem_alloc(SPA_MAXBLOCKSIZE, UMEM_NOFAIL);
3436 
3437 		bcopy(pbuf, pbuf2, psize);
3438 
3439 		VERIFY(random_get_pseudo_bytes((uint8_t *)pbuf + psize,
3440 		    SPA_MAXBLOCKSIZE - psize) == 0);
3441 
3442 		VERIFY(random_get_pseudo_bytes((uint8_t *)pbuf2 + psize,
3443 		    SPA_MAXBLOCKSIZE - psize) == 0);
3444 
3445 		for (lsize = SPA_MAXBLOCKSIZE; lsize > psize;
3446 		    lsize -= SPA_MINBLOCKSIZE) {
3447 			for (c = 0; c < ZIO_COMPRESS_FUNCTIONS; c++) {
3448 				if (zio_decompress_data(c, pbuf, lbuf,
3449 				    psize, lsize) == 0 &&
3450 				    zio_decompress_data(c, pbuf2, lbuf2,
3451 				    psize, lsize) == 0 &&
3452 				    bcmp(lbuf, lbuf2, lsize) == 0)
3453 					break;
3454 			}
3455 			if (c != ZIO_COMPRESS_FUNCTIONS)
3456 				break;
3457 			lsize -= SPA_MINBLOCKSIZE;
3458 		}
3459 
3460 		umem_free(pbuf2, SPA_MAXBLOCKSIZE);
3461 		umem_free(lbuf2, SPA_MAXBLOCKSIZE);
3462 
3463 		if (lsize <= psize) {
3464 			(void) printf("Decompress of %s failed\n", thing);
3465 			goto out;
3466 		}
3467 		buf = lbuf;
3468 		size = lsize;
3469 	} else {
3470 		buf = pbuf;
3471 		size = psize;
3472 	}
3473 
3474 	if (flags & ZDB_FLAG_PRINT_BLKPTR)
3475 		zdb_print_blkptr((blkptr_t *)(void *)
3476 		    ((uintptr_t)buf + (uintptr_t)blkptr_offset), flags);
3477 	else if (flags & ZDB_FLAG_RAW)
3478 		zdb_dump_block_raw(buf, size, flags);
3479 	else if (flags & ZDB_FLAG_INDIRECT)
3480 		zdb_dump_indirect((blkptr_t *)buf, size / sizeof (blkptr_t),
3481 		    flags);
3482 	else if (flags & ZDB_FLAG_GBH)
3483 		zdb_dump_gbh(buf, flags);
3484 	else
3485 		zdb_dump_block(thing, buf, size, flags);
3486 
3487 out:
3488 	umem_free(pbuf, SPA_MAXBLOCKSIZE);
3489 	umem_free(lbuf, SPA_MAXBLOCKSIZE);
3490 	free(dup);
3491 }
3492 
3493 static boolean_t
pool_match(nvlist_t * cfg,char * tgt)3494 pool_match(nvlist_t *cfg, char *tgt)
3495 {
3496 	uint64_t v, guid = strtoull(tgt, NULL, 0);
3497 	char *s;
3498 
3499 	if (guid != 0) {
3500 		if (nvlist_lookup_uint64(cfg, ZPOOL_CONFIG_POOL_GUID, &v) == 0)
3501 			return (v == guid);
3502 	} else {
3503 		if (nvlist_lookup_string(cfg, ZPOOL_CONFIG_POOL_NAME, &s) == 0)
3504 			return (strcmp(s, tgt) == 0);
3505 	}
3506 	return (B_FALSE);
3507 }
3508 
3509 static char *
find_zpool(char ** target,nvlist_t ** configp,int dirc,char ** dirv)3510 find_zpool(char **target, nvlist_t **configp, int dirc, char **dirv)
3511 {
3512 	nvlist_t *pools;
3513 	nvlist_t *match = NULL;
3514 	char *name = NULL;
3515 	char *sepp = NULL;
3516 	char sep = '\0';
3517 	int count = 0;
3518 	importargs_t args = { 0 };
3519 
3520 	args.paths = dirc;
3521 	args.path = dirv;
3522 	args.can_be_active = B_TRUE;
3523 
3524 	if ((sepp = strpbrk(*target, "/@")) != NULL) {
3525 		sep = *sepp;
3526 		*sepp = '\0';
3527 	}
3528 
3529 	pools = zpool_search_import(g_zfs, &args);
3530 
3531 	if (pools != NULL) {
3532 		nvpair_t *elem = NULL;
3533 		while ((elem = nvlist_next_nvpair(pools, elem)) != NULL) {
3534 			verify(nvpair_value_nvlist(elem, configp) == 0);
3535 			if (pool_match(*configp, *target)) {
3536 				count++;
3537 				if (match != NULL) {
3538 					/* print previously found config */
3539 					if (name != NULL) {
3540 						(void) printf("%s\n", name);
3541 						dump_nvlist(match, 8);
3542 						name = NULL;
3543 					}
3544 					(void) printf("%s\n",
3545 					    nvpair_name(elem));
3546 					dump_nvlist(*configp, 8);
3547 				} else {
3548 					match = *configp;
3549 					name = nvpair_name(elem);
3550 				}
3551 			}
3552 		}
3553 	}
3554 	if (count > 1)
3555 		(void) fatal("\tMatched %d pools - use pool GUID "
3556 		    "instead of pool name or \n"
3557 		    "\tpool name part of a dataset name to select pool", count);
3558 
3559 	if (sepp)
3560 		*sepp = sep;
3561 	/*
3562 	 * If pool GUID was specified for pool id, replace it with pool name
3563 	 */
3564 	if (name && (strstr(*target, name) != *target)) {
3565 		int sz = 1 + strlen(name) + ((sepp) ? strlen(sepp) : 0);
3566 
3567 		*target = umem_alloc(sz, UMEM_NOFAIL);
3568 		(void) snprintf(*target, sz, "%s%s", name, sepp ? sepp : "");
3569 	}
3570 
3571 	*configp = name ? match : NULL;
3572 
3573 	return (name);
3574 }
3575 
3576 int
main(int argc,char ** argv)3577 main(int argc, char **argv)
3578 {
3579 	int i, c;
3580 	struct rlimit rl = { 1024, 1024 };
3581 	spa_t *spa = NULL;
3582 	objset_t *os = NULL;
3583 	int dump_all = 1;
3584 	int verbose = 0;
3585 	int error = 0;
3586 	char **searchdirs = NULL;
3587 	int nsearch = 0;
3588 	char *target;
3589 	nvlist_t *policy = NULL;
3590 	uint64_t max_txg = UINT64_MAX;
3591 	int rewind = ZPOOL_NEVER_REWIND;
3592 
3593 	(void) setrlimit(RLIMIT_NOFILE, &rl);
3594 	(void) enable_extended_FILE_stdio(-1, -1);
3595 
3596 	dprintf_setup(&argc, argv);
3597 
3598 	while ((c = getopt(argc, argv,
3599 	    "bcdhilmMI:suCDRSAFLXx:evp:t:U:P")) != -1) {
3600 		switch (c) {
3601 		case 'b':
3602 		case 'c':
3603 		case 'd':
3604 		case 'h':
3605 		case 'i':
3606 		case 'l':
3607 		case 'm':
3608 		case 's':
3609 		case 'u':
3610 		case 'C':
3611 		case 'D':
3612 		case 'M':
3613 		case 'R':
3614 		case 'S':
3615 			dump_opt[c]++;
3616 			dump_all = 0;
3617 			break;
3618 		case 'A':
3619 		case 'F':
3620 		case 'L':
3621 		case 'X':
3622 		case 'e':
3623 		case 'P':
3624 			dump_opt[c]++;
3625 			break;
3626 		case 'I':
3627 			max_inflight = strtoull(optarg, NULL, 0);
3628 			if (max_inflight == 0) {
3629 				(void) fprintf(stderr, "maximum number "
3630 				    "of inflight I/Os must be greater "
3631 				    "than 0\n");
3632 				usage();
3633 			}
3634 			break;
3635 		case 'p':
3636 			if (searchdirs == NULL) {
3637 				searchdirs = umem_alloc(sizeof (char *),
3638 				    UMEM_NOFAIL);
3639 			} else {
3640 				char **tmp = umem_alloc((nsearch + 1) *
3641 				    sizeof (char *), UMEM_NOFAIL);
3642 				bcopy(searchdirs, tmp, nsearch *
3643 				    sizeof (char *));
3644 				umem_free(searchdirs,
3645 				    nsearch * sizeof (char *));
3646 				searchdirs = tmp;
3647 			}
3648 			searchdirs[nsearch++] = optarg;
3649 			break;
3650 		case 't':
3651 			max_txg = strtoull(optarg, NULL, 0);
3652 			if (max_txg < TXG_INITIAL) {
3653 				(void) fprintf(stderr, "incorrect txg "
3654 				    "specified: %s\n", optarg);
3655 				usage();
3656 			}
3657 			break;
3658 		case 'U':
3659 			spa_config_path = optarg;
3660 			break;
3661 		case 'v':
3662 			verbose++;
3663 			break;
3664 		case 'x':
3665 			vn_dumpdir = optarg;
3666 			break;
3667 		default:
3668 			usage();
3669 			break;
3670 		}
3671 	}
3672 
3673 	if (!dump_opt['e'] && searchdirs != NULL) {
3674 		(void) fprintf(stderr, "-p option requires use of -e\n");
3675 		usage();
3676 	}
3677 
3678 	/*
3679 	 * ZDB does not typically re-read blocks; therefore limit the ARC
3680 	 * to 256 MB, which can be used entirely for metadata.
3681 	 */
3682 	zfs_arc_max = zfs_arc_meta_limit = 256 * 1024 * 1024;
3683 
3684 	/*
3685 	 * "zdb -c" uses checksum-verifying scrub i/os which are async reads.
3686 	 * "zdb -b" uses traversal prefetch which uses async reads.
3687 	 * For good performance, let several of them be active at once.
3688 	 */
3689 	zfs_vdev_async_read_max_active = 10;
3690 
3691 	kernel_init(FREAD);
3692 	g_zfs = libzfs_init();
3693 	ASSERT(g_zfs != NULL);
3694 
3695 	if (dump_all)
3696 		verbose = MAX(verbose, 1);
3697 
3698 	for (c = 0; c < 256; c++) {
3699 		if (dump_all && !strchr("elAFLRSXP", c))
3700 			dump_opt[c] = 1;
3701 		if (dump_opt[c])
3702 			dump_opt[c] += verbose;
3703 	}
3704 
3705 	aok = (dump_opt['A'] == 1) || (dump_opt['A'] > 2);
3706 	zfs_recover = (dump_opt['A'] > 1);
3707 
3708 	argc -= optind;
3709 	argv += optind;
3710 
3711 	if (argc < 2 && dump_opt['R'])
3712 		usage();
3713 	if (argc < 1) {
3714 		if (!dump_opt['e'] && dump_opt['C']) {
3715 			dump_cachefile(spa_config_path);
3716 			return (0);
3717 		}
3718 		usage();
3719 	}
3720 
3721 	if (dump_opt['l']) {
3722 		dump_label(argv[0]);
3723 		return (0);
3724 	}
3725 
3726 	if (dump_opt['X'] || dump_opt['F'])
3727 		rewind = ZPOOL_DO_REWIND |
3728 		    (dump_opt['X'] ? ZPOOL_EXTREME_REWIND : 0);
3729 
3730 	if (nvlist_alloc(&policy, NV_UNIQUE_NAME_TYPE, 0) != 0 ||
3731 	    nvlist_add_uint64(policy, ZPOOL_REWIND_REQUEST_TXG, max_txg) != 0 ||
3732 	    nvlist_add_uint32(policy, ZPOOL_REWIND_REQUEST, rewind) != 0)
3733 		fatal("internal error: %s", strerror(ENOMEM));
3734 
3735 	error = 0;
3736 	target = argv[0];
3737 
3738 	if (dump_opt['e']) {
3739 		nvlist_t *cfg = NULL;
3740 		char *name = find_zpool(&target, &cfg, nsearch, searchdirs);
3741 
3742 		error = ENOENT;
3743 		if (name) {
3744 			if (dump_opt['C'] > 1) {
3745 				(void) printf("\nConfiguration for import:\n");
3746 				dump_nvlist(cfg, 8);
3747 			}
3748 			if (nvlist_add_nvlist(cfg,
3749 			    ZPOOL_REWIND_POLICY, policy) != 0) {
3750 				fatal("can't open '%s': %s",
3751 				    target, strerror(ENOMEM));
3752 			}
3753 			if ((error = spa_import(name, cfg, NULL,
3754 			    ZFS_IMPORT_MISSING_LOG)) != 0) {
3755 				error = spa_import(name, cfg, NULL,
3756 				    ZFS_IMPORT_VERBATIM);
3757 			}
3758 		}
3759 	}
3760 
3761 	if (error == 0) {
3762 		if (strpbrk(target, "/@") == NULL || dump_opt['R']) {
3763 			error = spa_open_rewind(target, &spa, FTAG, policy,
3764 			    NULL);
3765 			if (error) {
3766 				/*
3767 				 * If we're missing the log device then
3768 				 * try opening the pool after clearing the
3769 				 * log state.
3770 				 */
3771 				mutex_enter(&spa_namespace_lock);
3772 				if ((spa = spa_lookup(target)) != NULL &&
3773 				    spa->spa_log_state == SPA_LOG_MISSING) {
3774 					spa->spa_log_state = SPA_LOG_CLEAR;
3775 					error = 0;
3776 				}
3777 				mutex_exit(&spa_namespace_lock);
3778 
3779 				if (!error) {
3780 					error = spa_open_rewind(target, &spa,
3781 					    FTAG, policy, NULL);
3782 				}
3783 			}
3784 		} else {
3785 			error = dmu_objset_own(target, DMU_OST_ANY,
3786 			    B_TRUE, FTAG, &os);
3787 		}
3788 	}
3789 	nvlist_free(policy);
3790 
3791 	if (error)
3792 		fatal("can't open '%s': %s", target, strerror(error));
3793 
3794 	argv++;
3795 	argc--;
3796 	if (!dump_opt['R']) {
3797 		if (argc > 0) {
3798 			zopt_objects = argc;
3799 			zopt_object = calloc(zopt_objects, sizeof (uint64_t));
3800 			for (i = 0; i < zopt_objects; i++) {
3801 				errno = 0;
3802 				zopt_object[i] = strtoull(argv[i], NULL, 0);
3803 				if (zopt_object[i] == 0 && errno != 0)
3804 					fatal("bad number %s: %s",
3805 					    argv[i], strerror(errno));
3806 			}
3807 		}
3808 		if (os != NULL) {
3809 			dump_dir(os);
3810 		} else if (zopt_objects > 0 && !dump_opt['m']) {
3811 			dump_dir(spa->spa_meta_objset);
3812 		} else {
3813 			dump_zpool(spa);
3814 		}
3815 	} else {
3816 		flagbits['b'] = ZDB_FLAG_PRINT_BLKPTR;
3817 		flagbits['c'] = ZDB_FLAG_CHECKSUM;
3818 		flagbits['d'] = ZDB_FLAG_DECOMPRESS;
3819 		flagbits['e'] = ZDB_FLAG_BSWAP;
3820 		flagbits['g'] = ZDB_FLAG_GBH;
3821 		flagbits['i'] = ZDB_FLAG_INDIRECT;
3822 		flagbits['p'] = ZDB_FLAG_PHYS;
3823 		flagbits['r'] = ZDB_FLAG_RAW;
3824 
3825 		for (i = 0; i < argc; i++)
3826 			zdb_read_block(argv[i], spa);
3827 	}
3828 
3829 	(os != NULL) ? dmu_objset_disown(os, FTAG) : spa_close(spa, FTAG);
3830 
3831 	fuid_table_destroy();
3832 	sa_loaded = B_FALSE;
3833 
3834 	libzfs_fini(g_zfs);
3835 	kernel_fini();
3836 
3837 	return (0);
3838 }
3839