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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/*
428870ff 22 * Copyright (c) 2005, 2010, Oracle and/or its affiliates. All rights reserved.
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23 */
24
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25/*
26 * The objective of this program is to provide a DMU/ZAP/SPA stress test
27 * that runs entirely in userland, is easy to use, and easy to extend.
28 *
29 * The overall design of the ztest program is as follows:
30 *
31 * (1) For each major functional area (e.g. adding vdevs to a pool,
32 * creating and destroying datasets, reading and writing objects, etc)
33 * we have a simple routine to test that functionality. These
34 * individual routines do not have to do anything "stressful".
35 *
36 * (2) We turn these simple functionality tests into a stress test by
37 * running them all in parallel, with as many threads as desired,
38 * and spread across as many datasets, objects, and vdevs as desired.
39 *
40 * (3) While all this is happening, we inject faults into the pool to
41 * verify that self-healing data really works.
42 *
43 * (4) Every time we open a dataset, we change its checksum and compression
44 * functions. Thus even individual objects vary from block to block
45 * in which checksum they use and whether they're compressed.
46 *
47 * (5) To verify that we never lose on-disk consistency after a crash,
48 * we run the entire test in a child of the main process.
49 * At random times, the child self-immolates with a SIGKILL.
50 * This is the software equivalent of pulling the power cord.
51 * The parent then runs the test again, using the existing
52 * storage pool, as many times as desired.
53 *
54 * (6) To verify that we don't have future leaks or temporal incursions,
55 * many of the functional tests record the transaction group number
56 * as part of their data. When reading old data, they verify that
57 * the transaction group number is less than the current, open txg.
58 * If you add a new test, please do this if applicable.
59 *
60 * When run with no arguments, ztest runs for about five minutes and
61 * produces no output if successful. To get a little bit of information,
62 * specify -V. To get more information, specify -VV, and so on.
63 *
64 * To turn this into an overnight stress test, use -T to specify run time.
65 *
66 * You can ask more more vdevs [-v], datasets [-d], or threads [-t]
67 * to increase the pool capacity, fanout, and overall stress level.
68 *
69 * The -N(okill) option will suppress kills, so each child runs to completion.
70 * This can be useful when you're trying to distinguish temporal incursions
71 * from plain old race conditions.
72 */
73
74#include <sys/zfs_context.h>
75#include <sys/spa.h>
76#include <sys/dmu.h>
77#include <sys/txg.h>
9babb374 78#include <sys/dbuf.h>
34dc7c2f 79#include <sys/zap.h>
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80#include <sys/dmu_objset.h>
81#include <sys/poll.h>
82#include <sys/stat.h>
83#include <sys/time.h>
84#include <sys/wait.h>
85#include <sys/mman.h>
86#include <sys/resource.h>
87#include <sys/zio.h>
34dc7c2f 88#include <sys/zil.h>
428870ff 89#include <sys/zil_impl.h>
34dc7c2f 90#include <sys/vdev_impl.h>
b128c09f 91#include <sys/vdev_file.h>
34dc7c2f 92#include <sys/spa_impl.h>
428870ff 93#include <sys/metaslab_impl.h>
34dc7c2f 94#include <sys/dsl_prop.h>
9babb374 95#include <sys/dsl_dataset.h>
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96#include <sys/dsl_scan.h>
97#include <sys/zio_checksum.h>
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98#include <sys/refcount.h>
99#include <stdio.h>
100#include <stdio_ext.h>
101#include <stdlib.h>
102#include <unistd.h>
103#include <signal.h>
104#include <umem.h>
105#include <dlfcn.h>
106#include <ctype.h>
107#include <math.h>
108#include <sys/fs/zfs.h>
428870ff 109#include <libnvpair.h>
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110
111static char cmdname[] = "ztest";
112static char *zopt_pool = cmdname;
113
114static uint64_t zopt_vdevs = 5;
115static uint64_t zopt_vdevtime;
116static int zopt_ashift = SPA_MINBLOCKSHIFT;
117static int zopt_mirrors = 2;
118static int zopt_raidz = 4;
119static int zopt_raidz_parity = 1;
120static size_t zopt_vdev_size = SPA_MINDEVSIZE;
121static int zopt_datasets = 7;
122static int zopt_threads = 23;
123static uint64_t zopt_passtime = 60; /* 60 seconds */
124static uint64_t zopt_killrate = 70; /* 70% kill rate */
125static int zopt_verbose = 0;
126static int zopt_init = 1;
127static char *zopt_dir = "/tmp";
128static uint64_t zopt_time = 300; /* 5 minutes */
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129static uint64_t zopt_maxloops = 50; /* max loops during spa_freeze() */
130
131#define BT_MAGIC 0x123456789abcdefULL
132#define MAXFAULTS() (MAX(zs->zs_mirrors, 1) * (zopt_raidz_parity + 1) - 1)
133
134enum ztest_io_type {
135 ZTEST_IO_WRITE_TAG,
136 ZTEST_IO_WRITE_PATTERN,
137 ZTEST_IO_WRITE_ZEROES,
138 ZTEST_IO_TRUNCATE,
139 ZTEST_IO_SETATTR,
140 ZTEST_IO_TYPES
141};
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142
143typedef struct ztest_block_tag {
428870ff 144 uint64_t bt_magic;
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145 uint64_t bt_objset;
146 uint64_t bt_object;
147 uint64_t bt_offset;
428870ff 148 uint64_t bt_gen;
34dc7c2f 149 uint64_t bt_txg;
428870ff 150 uint64_t bt_crtxg;
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151} ztest_block_tag_t;
152
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153typedef struct bufwad {
154 uint64_t bw_index;
155 uint64_t bw_txg;
156 uint64_t bw_data;
157} bufwad_t;
158
159/*
160 * XXX -- fix zfs range locks to be generic so we can use them here.
161 */
162typedef enum {
163 RL_READER,
164 RL_WRITER,
165 RL_APPEND
166} rl_type_t;
167
168typedef struct rll {
169 void *rll_writer;
170 int rll_readers;
171 mutex_t rll_lock;
172 cond_t rll_cv;
173} rll_t;
174
175typedef struct rl {
176 uint64_t rl_object;
177 uint64_t rl_offset;
178 uint64_t rl_size;
179 rll_t *rl_lock;
180} rl_t;
181
182#define ZTEST_RANGE_LOCKS 64
183#define ZTEST_OBJECT_LOCKS 64
184
185/*
186 * Object descriptor. Used as a template for object lookup/create/remove.
187 */
188typedef struct ztest_od {
189 uint64_t od_dir;
190 uint64_t od_object;
191 dmu_object_type_t od_type;
192 dmu_object_type_t od_crtype;
193 uint64_t od_blocksize;
194 uint64_t od_crblocksize;
195 uint64_t od_gen;
196 uint64_t od_crgen;
197 char od_name[MAXNAMELEN];
198} ztest_od_t;
34dc7c2f 199
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200/*
201 * Per-dataset state.
202 */
203typedef struct ztest_ds {
204 objset_t *zd_os;
205 zilog_t *zd_zilog;
206 uint64_t zd_seq;
207 ztest_od_t *zd_od; /* debugging aid */
208 char zd_name[MAXNAMELEN];
209 mutex_t zd_dirobj_lock;
210 rll_t zd_object_lock[ZTEST_OBJECT_LOCKS];
211 rll_t zd_range_lock[ZTEST_RANGE_LOCKS];
212} ztest_ds_t;
213
214/*
215 * Per-iteration state.
216 */
217typedef void ztest_func_t(ztest_ds_t *zd, uint64_t id);
218
219typedef struct ztest_info {
220 ztest_func_t *zi_func; /* test function */
221 uint64_t zi_iters; /* iterations per execution */
222 uint64_t *zi_interval; /* execute every <interval> seconds */
223 uint64_t zi_call_count; /* per-pass count */
224 uint64_t zi_call_time; /* per-pass time */
225 uint64_t zi_call_next; /* next time to call this function */
226} ztest_info_t;
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227
228/*
229 * Note: these aren't static because we want dladdr() to work.
230 */
231ztest_func_t ztest_dmu_read_write;
232ztest_func_t ztest_dmu_write_parallel;
233ztest_func_t ztest_dmu_object_alloc_free;
428870ff 234ztest_func_t ztest_dmu_commit_callbacks;
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235ztest_func_t ztest_zap;
236ztest_func_t ztest_zap_parallel;
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237ztest_func_t ztest_zil_commit;
238ztest_func_t ztest_dmu_read_write_zcopy;
34dc7c2f 239ztest_func_t ztest_dmu_objset_create_destroy;
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240ztest_func_t ztest_dmu_prealloc;
241ztest_func_t ztest_fzap;
34dc7c2f 242ztest_func_t ztest_dmu_snapshot_create_destroy;
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243ztest_func_t ztest_dsl_prop_get_set;
244ztest_func_t ztest_spa_prop_get_set;
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245ztest_func_t ztest_spa_create_destroy;
246ztest_func_t ztest_fault_inject;
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247ztest_func_t ztest_ddt_repair;
248ztest_func_t ztest_dmu_snapshot_hold;
b128c09f 249ztest_func_t ztest_spa_rename;
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250ztest_func_t ztest_scrub;
251ztest_func_t ztest_dsl_dataset_promote_busy;
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252ztest_func_t ztest_vdev_attach_detach;
253ztest_func_t ztest_vdev_LUN_growth;
254ztest_func_t ztest_vdev_add_remove;
b128c09f 255ztest_func_t ztest_vdev_aux_add_remove;
428870ff 256ztest_func_t ztest_split_pool;
34dc7c2f 257
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258uint64_t zopt_always = 0ULL * NANOSEC; /* all the time */
259uint64_t zopt_incessant = 1ULL * NANOSEC / 10; /* every 1/10 second */
260uint64_t zopt_often = 1ULL * NANOSEC; /* every second */
261uint64_t zopt_sometimes = 10ULL * NANOSEC; /* every 10 seconds */
262uint64_t zopt_rarely = 60ULL * NANOSEC; /* every 60 seconds */
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263
264ztest_info_t ztest_info[] = {
265 { ztest_dmu_read_write, 1, &zopt_always },
428870ff 266 { ztest_dmu_write_parallel, 10, &zopt_always },
34dc7c2f 267 { ztest_dmu_object_alloc_free, 1, &zopt_always },
428870ff 268 { ztest_dmu_commit_callbacks, 1, &zopt_always },
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269 { ztest_zap, 30, &zopt_always },
270 { ztest_zap_parallel, 100, &zopt_always },
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271 { ztest_split_pool, 1, &zopt_always },
272 { ztest_zil_commit, 1, &zopt_incessant },
273 { ztest_dmu_read_write_zcopy, 1, &zopt_often },
274 { ztest_dmu_objset_create_destroy, 1, &zopt_often },
275 { ztest_dsl_prop_get_set, 1, &zopt_often },
276 { ztest_spa_prop_get_set, 1, &zopt_sometimes },
277#if 0
278 { ztest_dmu_prealloc, 1, &zopt_sometimes },
279#endif
280 { ztest_fzap, 1, &zopt_sometimes },
281 { ztest_dmu_snapshot_create_destroy, 1, &zopt_sometimes },
282 { ztest_spa_create_destroy, 1, &zopt_sometimes },
34dc7c2f 283 { ztest_fault_inject, 1, &zopt_sometimes },
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284 { ztest_ddt_repair, 1, &zopt_sometimes },
285 { ztest_dmu_snapshot_hold, 1, &zopt_sometimes },
34dc7c2f 286 { ztest_spa_rename, 1, &zopt_rarely },
428870ff 287 { ztest_scrub, 1, &zopt_rarely },
9babb374 288 { ztest_dsl_dataset_promote_busy, 1, &zopt_rarely },
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289 { ztest_vdev_attach_detach, 1, &zopt_rarely },
290 { ztest_vdev_LUN_growth, 1, &zopt_rarely },
291 { ztest_vdev_add_remove, 1, &zopt_vdevtime },
b128c09f 292 { ztest_vdev_aux_add_remove, 1, &zopt_vdevtime },
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293};
294
295#define ZTEST_FUNCS (sizeof (ztest_info) / sizeof (ztest_info_t))
296
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297/*
298 * The following struct is used to hold a list of uncalled commit callbacks.
299 * The callbacks are ordered by txg number.
300 */
301typedef struct ztest_cb_list {
302 mutex_t zcl_callbacks_lock;
303 list_t zcl_callbacks;
304} ztest_cb_list_t;
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305
306/*
307 * Stuff we need to share writably between parent and child.
308 */
309typedef struct ztest_shared {
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310 char *zs_pool;
311 spa_t *zs_spa;
312 hrtime_t zs_proc_start;
313 hrtime_t zs_proc_stop;
314 hrtime_t zs_thread_start;
315 hrtime_t zs_thread_stop;
316 hrtime_t zs_thread_kill;
34dc7c2f 317 uint64_t zs_enospc_count;
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318 uint64_t zs_vdev_next_leaf;
319 uint64_t zs_vdev_aux;
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320 uint64_t zs_alloc;
321 uint64_t zs_space;
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322 mutex_t zs_vdev_lock;
323 rwlock_t zs_name_lock;
34dc7c2f 324 ztest_info_t zs_info[ZTEST_FUNCS];
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325 uint64_t zs_splits;
326 uint64_t zs_mirrors;
327 ztest_ds_t zs_zd[];
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328} ztest_shared_t;
329
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330#define ID_PARALLEL -1ULL
331
34dc7c2f 332static char ztest_dev_template[] = "%s/%s.%llua";
b128c09f 333static char ztest_aux_template[] = "%s/%s.%s.%llu";
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334ztest_shared_t *ztest_shared;
335uint64_t *ztest_seq;
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336
337static int ztest_random_fd;
338static int ztest_dump_core = 1;
339
b128c09f 340static boolean_t ztest_exiting;
34dc7c2f 341
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342/* Global commit callback list */
343static ztest_cb_list_t zcl;
344
34dc7c2f 345extern uint64_t metaslab_gang_bang;
9babb374 346extern uint64_t metaslab_df_alloc_threshold;
428870ff 347static uint64_t metaslab_sz;
34dc7c2f 348
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349enum ztest_object {
350 ZTEST_META_DNODE = 0,
351 ZTEST_DIROBJ,
352 ZTEST_OBJECTS
353};
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354
355static void usage(boolean_t) __NORETURN;
356
357/*
358 * These libumem hooks provide a reasonable set of defaults for the allocator's
359 * debugging facilities.
360 */
361const char *
362_umem_debug_init()
363{
364 return ("default,verbose"); /* $UMEM_DEBUG setting */
365}
366
367const char *
368_umem_logging_init(void)
369{
370 return ("fail,contents"); /* $UMEM_LOGGING setting */
371}
372
373#define FATAL_MSG_SZ 1024
374
375char *fatal_msg;
376
377static void
378fatal(int do_perror, char *message, ...)
379{
380 va_list args;
381 int save_errno = errno;
382 char buf[FATAL_MSG_SZ];
383
384 (void) fflush(stdout);
385
386 va_start(args, message);
387 (void) sprintf(buf, "ztest: ");
388 /* LINTED */
389 (void) vsprintf(buf + strlen(buf), message, args);
390 va_end(args);
391 if (do_perror) {
392 (void) snprintf(buf + strlen(buf), FATAL_MSG_SZ - strlen(buf),
393 ": %s", strerror(save_errno));
394 }
395 (void) fprintf(stderr, "%s\n", buf);
396 fatal_msg = buf; /* to ease debugging */
397 if (ztest_dump_core)
398 abort();
399 exit(3);
400}
401
402static int
403str2shift(const char *buf)
404{
405 const char *ends = "BKMGTPEZ";
406 int i;
407
408 if (buf[0] == '\0')
409 return (0);
410 for (i = 0; i < strlen(ends); i++) {
411 if (toupper(buf[0]) == ends[i])
412 break;
413 }
414 if (i == strlen(ends)) {
415 (void) fprintf(stderr, "ztest: invalid bytes suffix: %s\n",
416 buf);
417 usage(B_FALSE);
418 }
419 if (buf[1] == '\0' || (toupper(buf[1]) == 'B' && buf[2] == '\0')) {
420 return (10*i);
421 }
422 (void) fprintf(stderr, "ztest: invalid bytes suffix: %s\n", buf);
423 usage(B_FALSE);
424 /* NOTREACHED */
425}
426
427static uint64_t
428nicenumtoull(const char *buf)
429{
430 char *end;
431 uint64_t val;
432
433 val = strtoull(buf, &end, 0);
434 if (end == buf) {
435 (void) fprintf(stderr, "ztest: bad numeric value: %s\n", buf);
436 usage(B_FALSE);
437 } else if (end[0] == '.') {
438 double fval = strtod(buf, &end);
439 fval *= pow(2, str2shift(end));
440 if (fval > UINT64_MAX) {
441 (void) fprintf(stderr, "ztest: value too large: %s\n",
442 buf);
443 usage(B_FALSE);
444 }
445 val = (uint64_t)fval;
446 } else {
447 int shift = str2shift(end);
448 if (shift >= 64 || (val << shift) >> shift != val) {
449 (void) fprintf(stderr, "ztest: value too large: %s\n",
450 buf);
451 usage(B_FALSE);
452 }
453 val <<= shift;
454 }
455 return (val);
456}
457
458static void
459usage(boolean_t requested)
460{
461 char nice_vdev_size[10];
462 char nice_gang_bang[10];
463 FILE *fp = requested ? stdout : stderr;
464
465 nicenum(zopt_vdev_size, nice_vdev_size);
466 nicenum(metaslab_gang_bang, nice_gang_bang);
467
468 (void) fprintf(fp, "Usage: %s\n"
469 "\t[-v vdevs (default: %llu)]\n"
470 "\t[-s size_of_each_vdev (default: %s)]\n"
428870ff 471 "\t[-a alignment_shift (default: %d)] use 0 for random\n"
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472 "\t[-m mirror_copies (default: %d)]\n"
473 "\t[-r raidz_disks (default: %d)]\n"
474 "\t[-R raidz_parity (default: %d)]\n"
475 "\t[-d datasets (default: %d)]\n"
476 "\t[-t threads (default: %d)]\n"
477 "\t[-g gang_block_threshold (default: %s)]\n"
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478 "\t[-i init_count (default: %d)] initialize pool i times\n"
479 "\t[-k kill_percentage (default: %llu%%)]\n"
34dc7c2f 480 "\t[-p pool_name (default: %s)]\n"
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481 "\t[-f dir (default: %s)] file directory for vdev files\n"
482 "\t[-V] verbose (use multiple times for ever more blather)\n"
483 "\t[-E] use existing pool instead of creating new one\n"
484 "\t[-T time (default: %llu sec)] total run time\n"
485 "\t[-F freezeloops (default: %llu)] max loops in spa_freeze()\n"
486 "\t[-P passtime (default: %llu sec)] time per pass\n"
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487 "\t[-h] (print help)\n"
488 "",
489 cmdname,
490 (u_longlong_t)zopt_vdevs, /* -v */
491 nice_vdev_size, /* -s */
492 zopt_ashift, /* -a */
493 zopt_mirrors, /* -m */
494 zopt_raidz, /* -r */
495 zopt_raidz_parity, /* -R */
496 zopt_datasets, /* -d */
497 zopt_threads, /* -t */
498 nice_gang_bang, /* -g */
499 zopt_init, /* -i */
500 (u_longlong_t)zopt_killrate, /* -k */
501 zopt_pool, /* -p */
502 zopt_dir, /* -f */
503 (u_longlong_t)zopt_time, /* -T */
428870ff 504 (u_longlong_t)zopt_maxloops, /* -F */
b128c09f 505 (u_longlong_t)zopt_passtime); /* -P */
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506 exit(requested ? 0 : 1);
507}
508
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509static void
510process_options(int argc, char **argv)
511{
512 int opt;
513 uint64_t value;
514
515 /* By default, test gang blocks for blocks 32K and greater */
516 metaslab_gang_bang = 32 << 10;
517
34dc7c2f 518 while ((opt = getopt(argc, argv,
428870ff 519 "v:s:a:m:r:R:d:t:g:i:k:p:f:VET:P:hF:")) != EOF) {
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520 value = 0;
521 switch (opt) {
522 case 'v':
523 case 's':
524 case 'a':
525 case 'm':
526 case 'r':
527 case 'R':
528 case 'd':
529 case 't':
530 case 'g':
531 case 'i':
532 case 'k':
533 case 'T':
534 case 'P':
428870ff 535 case 'F':
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536 value = nicenumtoull(optarg);
537 }
538 switch (opt) {
539 case 'v':
540 zopt_vdevs = value;
541 break;
542 case 's':
543 zopt_vdev_size = MAX(SPA_MINDEVSIZE, value);
544 break;
545 case 'a':
546 zopt_ashift = value;
547 break;
548 case 'm':
549 zopt_mirrors = value;
550 break;
551 case 'r':
552 zopt_raidz = MAX(1, value);
553 break;
554 case 'R':
45d1cae3 555 zopt_raidz_parity = MIN(MAX(value, 1), 3);
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556 break;
557 case 'd':
558 zopt_datasets = MAX(1, value);
559 break;
560 case 't':
561 zopt_threads = MAX(1, value);
562 break;
563 case 'g':
564 metaslab_gang_bang = MAX(SPA_MINBLOCKSIZE << 1, value);
565 break;
566 case 'i':
567 zopt_init = value;
568 break;
569 case 'k':
570 zopt_killrate = value;
571 break;
572 case 'p':
573 zopt_pool = strdup(optarg);
574 break;
575 case 'f':
576 zopt_dir = strdup(optarg);
577 break;
578 case 'V':
579 zopt_verbose++;
580 break;
581 case 'E':
582 zopt_init = 0;
583 break;
584 case 'T':
585 zopt_time = value;
586 break;
587 case 'P':
588 zopt_passtime = MAX(1, value);
589 break;
428870ff
BB
590 case 'F':
591 zopt_maxloops = MAX(1, value);
592 break;
34dc7c2f
BB
593 case 'h':
594 usage(B_TRUE);
595 break;
596 case '?':
597 default:
598 usage(B_FALSE);
599 break;
600 }
601 }
602
603 zopt_raidz_parity = MIN(zopt_raidz_parity, zopt_raidz - 1);
604
428870ff
BB
605 zopt_vdevtime = (zopt_vdevs > 0 ? zopt_time * NANOSEC / zopt_vdevs :
606 UINT64_MAX >> 2);
607}
608
609static void
610ztest_kill(ztest_shared_t *zs)
611{
612 zs->zs_alloc = metaslab_class_get_alloc(spa_normal_class(zs->zs_spa));
613 zs->zs_space = metaslab_class_get_space(spa_normal_class(zs->zs_spa));
614 (void) kill(getpid(), SIGKILL);
615}
616
617static uint64_t
618ztest_random(uint64_t range)
619{
620 uint64_t r;
621
622 if (range == 0)
623 return (0);
624
625 if (read(ztest_random_fd, &r, sizeof (r)) != sizeof (r))
626 fatal(1, "short read from /dev/urandom");
627
628 return (r % range);
629}
630
631/* ARGSUSED */
632static void
633ztest_record_enospc(const char *s)
634{
635 ztest_shared->zs_enospc_count++;
34dc7c2f
BB
636}
637
638static uint64_t
639ztest_get_ashift(void)
640{
641 if (zopt_ashift == 0)
642 return (SPA_MINBLOCKSHIFT + ztest_random(3));
643 return (zopt_ashift);
644}
645
646static nvlist_t *
b128c09f 647make_vdev_file(char *path, char *aux, size_t size, uint64_t ashift)
34dc7c2f 648{
b128c09f 649 char pathbuf[MAXPATHLEN];
34dc7c2f 650 uint64_t vdev;
34dc7c2f
BB
651 nvlist_t *file;
652
b128c09f
BB
653 if (ashift == 0)
654 ashift = ztest_get_ashift();
655
656 if (path == NULL) {
657 path = pathbuf;
658
659 if (aux != NULL) {
660 vdev = ztest_shared->zs_vdev_aux;
661 (void) sprintf(path, ztest_aux_template,
662 zopt_dir, zopt_pool, aux, vdev);
663 } else {
428870ff 664 vdev = ztest_shared->zs_vdev_next_leaf++;
b128c09f
BB
665 (void) sprintf(path, ztest_dev_template,
666 zopt_dir, zopt_pool, vdev);
667 }
668 }
34dc7c2f 669
b128c09f
BB
670 if (size != 0) {
671 int fd = open(path, O_RDWR | O_CREAT | O_TRUNC, 0666);
34dc7c2f 672 if (fd == -1)
b128c09f 673 fatal(1, "can't open %s", path);
34dc7c2f 674 if (ftruncate(fd, size) != 0)
b128c09f 675 fatal(1, "can't ftruncate %s", path);
34dc7c2f
BB
676 (void) close(fd);
677 }
678
679 VERIFY(nvlist_alloc(&file, NV_UNIQUE_NAME, 0) == 0);
680 VERIFY(nvlist_add_string(file, ZPOOL_CONFIG_TYPE, VDEV_TYPE_FILE) == 0);
b128c09f 681 VERIFY(nvlist_add_string(file, ZPOOL_CONFIG_PATH, path) == 0);
34dc7c2f
BB
682 VERIFY(nvlist_add_uint64(file, ZPOOL_CONFIG_ASHIFT, ashift) == 0);
683
684 return (file);
685}
686
687static nvlist_t *
b128c09f 688make_vdev_raidz(char *path, char *aux, size_t size, uint64_t ashift, int r)
34dc7c2f
BB
689{
690 nvlist_t *raidz, **child;
691 int c;
692
693 if (r < 2)
b128c09f 694 return (make_vdev_file(path, aux, size, ashift));
34dc7c2f
BB
695 child = umem_alloc(r * sizeof (nvlist_t *), UMEM_NOFAIL);
696
697 for (c = 0; c < r; c++)
b128c09f 698 child[c] = make_vdev_file(path, aux, size, ashift);
34dc7c2f
BB
699
700 VERIFY(nvlist_alloc(&raidz, NV_UNIQUE_NAME, 0) == 0);
701 VERIFY(nvlist_add_string(raidz, ZPOOL_CONFIG_TYPE,
702 VDEV_TYPE_RAIDZ) == 0);
703 VERIFY(nvlist_add_uint64(raidz, ZPOOL_CONFIG_NPARITY,
704 zopt_raidz_parity) == 0);
705 VERIFY(nvlist_add_nvlist_array(raidz, ZPOOL_CONFIG_CHILDREN,
706 child, r) == 0);
707
708 for (c = 0; c < r; c++)
709 nvlist_free(child[c]);
710
711 umem_free(child, r * sizeof (nvlist_t *));
712
713 return (raidz);
714}
715
716static nvlist_t *
b128c09f
BB
717make_vdev_mirror(char *path, char *aux, size_t size, uint64_t ashift,
718 int r, int m)
34dc7c2f
BB
719{
720 nvlist_t *mirror, **child;
721 int c;
722
723 if (m < 1)
b128c09f 724 return (make_vdev_raidz(path, aux, size, ashift, r));
34dc7c2f
BB
725
726 child = umem_alloc(m * sizeof (nvlist_t *), UMEM_NOFAIL);
727
728 for (c = 0; c < m; c++)
b128c09f 729 child[c] = make_vdev_raidz(path, aux, size, ashift, r);
34dc7c2f
BB
730
731 VERIFY(nvlist_alloc(&mirror, NV_UNIQUE_NAME, 0) == 0);
732 VERIFY(nvlist_add_string(mirror, ZPOOL_CONFIG_TYPE,
733 VDEV_TYPE_MIRROR) == 0);
734 VERIFY(nvlist_add_nvlist_array(mirror, ZPOOL_CONFIG_CHILDREN,
735 child, m) == 0);
34dc7c2f
BB
736
737 for (c = 0; c < m; c++)
738 nvlist_free(child[c]);
739
740 umem_free(child, m * sizeof (nvlist_t *));
741
742 return (mirror);
743}
744
745static nvlist_t *
b128c09f
BB
746make_vdev_root(char *path, char *aux, size_t size, uint64_t ashift,
747 int log, int r, int m, int t)
34dc7c2f
BB
748{
749 nvlist_t *root, **child;
750 int c;
751
752 ASSERT(t > 0);
753
754 child = umem_alloc(t * sizeof (nvlist_t *), UMEM_NOFAIL);
755
b128c09f
BB
756 for (c = 0; c < t; c++) {
757 child[c] = make_vdev_mirror(path, aux, size, ashift, r, m);
758 VERIFY(nvlist_add_uint64(child[c], ZPOOL_CONFIG_IS_LOG,
759 log) == 0);
760 }
34dc7c2f
BB
761
762 VERIFY(nvlist_alloc(&root, NV_UNIQUE_NAME, 0) == 0);
763 VERIFY(nvlist_add_string(root, ZPOOL_CONFIG_TYPE, VDEV_TYPE_ROOT) == 0);
b128c09f 764 VERIFY(nvlist_add_nvlist_array(root, aux ? aux : ZPOOL_CONFIG_CHILDREN,
34dc7c2f
BB
765 child, t) == 0);
766
767 for (c = 0; c < t; c++)
768 nvlist_free(child[c]);
769
770 umem_free(child, t * sizeof (nvlist_t *));
771
772 return (root);
773}
774
428870ff
BB
775static int
776ztest_random_blocksize(void)
34dc7c2f 777{
428870ff
BB
778 return (1 << (SPA_MINBLOCKSHIFT +
779 ztest_random(SPA_MAXBLOCKSHIFT - SPA_MINBLOCKSHIFT + 1)));
780}
34dc7c2f 781
428870ff
BB
782static int
783ztest_random_ibshift(void)
784{
785 return (DN_MIN_INDBLKSHIFT +
786 ztest_random(DN_MAX_INDBLKSHIFT - DN_MIN_INDBLKSHIFT + 1));
34dc7c2f
BB
787}
788
428870ff
BB
789static uint64_t
790ztest_random_vdev_top(spa_t *spa, boolean_t log_ok)
34dc7c2f 791{
428870ff
BB
792 uint64_t top;
793 vdev_t *rvd = spa->spa_root_vdev;
794 vdev_t *tvd;
34dc7c2f 795
428870ff 796 ASSERT(spa_config_held(spa, SCL_ALL, RW_READER) != 0);
34dc7c2f 797
428870ff
BB
798 do {
799 top = ztest_random(rvd->vdev_children);
800 tvd = rvd->vdev_child[top];
801 } while (tvd->vdev_ishole || (tvd->vdev_islog && !log_ok) ||
802 tvd->vdev_mg == NULL || tvd->vdev_mg->mg_class == NULL);
34dc7c2f 803
428870ff 804 return (top);
34dc7c2f
BB
805}
806
428870ff
BB
807static uint64_t
808ztest_random_dsl_prop(zfs_prop_t prop)
34dc7c2f 809{
428870ff
BB
810 uint64_t value;
811
812 do {
813 value = zfs_prop_random_value(prop, ztest_random(-1ULL));
814 } while (prop == ZFS_PROP_CHECKSUM && value == ZIO_CHECKSUM_OFF);
815
816 return (value);
34dc7c2f
BB
817}
818
34dc7c2f 819static int
428870ff
BB
820ztest_dsl_prop_set_uint64(char *osname, zfs_prop_t prop, uint64_t value,
821 boolean_t inherit)
34dc7c2f 822{
428870ff
BB
823 const char *propname = zfs_prop_to_name(prop);
824 const char *valname;
825 char setpoint[MAXPATHLEN];
826 uint64_t curval;
34dc7c2f
BB
827 int error;
828
428870ff
BB
829 error = dsl_prop_set(osname, propname,
830 (inherit ? ZPROP_SRC_NONE : ZPROP_SRC_LOCAL),
831 sizeof (value), 1, &value);
34dc7c2f 832
428870ff
BB
833 if (error == ENOSPC) {
834 ztest_record_enospc(FTAG);
34dc7c2f
BB
835 return (error);
836 }
34dc7c2f 837 ASSERT3U(error, ==, 0);
34dc7c2f 838
428870ff
BB
839 VERIFY3U(dsl_prop_get(osname, propname, sizeof (curval),
840 1, &curval, setpoint), ==, 0);
841
842 if (zopt_verbose >= 6) {
843 VERIFY(zfs_prop_index_to_string(prop, curval, &valname) == 0);
844 (void) printf("%s %s = %s at '%s'\n",
845 osname, propname, valname, setpoint);
34dc7c2f
BB
846 }
847
848 return (error);
849}
850
851static int
428870ff 852ztest_spa_prop_set_uint64(ztest_shared_t *zs, zpool_prop_t prop, uint64_t value)
34dc7c2f 853{
428870ff
BB
854 spa_t *spa = zs->zs_spa;
855 nvlist_t *props = NULL;
34dc7c2f
BB
856 int error;
857
428870ff
BB
858 VERIFY(nvlist_alloc(&props, NV_UNIQUE_NAME, 0) == 0);
859 VERIFY(nvlist_add_uint64(props, zpool_prop_to_name(prop), value) == 0);
34dc7c2f 860
428870ff
BB
861 error = spa_prop_set(spa, props);
862
863 nvlist_free(props);
864
865 if (error == ENOSPC) {
866 ztest_record_enospc(FTAG);
34dc7c2f
BB
867 return (error);
868 }
428870ff 869 ASSERT3U(error, ==, 0);
34dc7c2f
BB
870
871 return (error);
872}
873
428870ff
BB
874static void
875ztest_rll_init(rll_t *rll)
876{
877 rll->rll_writer = NULL;
878 rll->rll_readers = 0;
879 VERIFY(_mutex_init(&rll->rll_lock, USYNC_THREAD, NULL) == 0);
880 VERIFY(cond_init(&rll->rll_cv, USYNC_THREAD, NULL) == 0);
881}
34dc7c2f 882
428870ff
BB
883static void
884ztest_rll_destroy(rll_t *rll)
34dc7c2f 885{
428870ff
BB
886 ASSERT(rll->rll_writer == NULL);
887 ASSERT(rll->rll_readers == 0);
888 VERIFY(_mutex_destroy(&rll->rll_lock) == 0);
889 VERIFY(cond_destroy(&rll->rll_cv) == 0);
890}
34dc7c2f 891
428870ff
BB
892static void
893ztest_rll_lock(rll_t *rll, rl_type_t type)
894{
895 VERIFY(mutex_lock(&rll->rll_lock) == 0);
34dc7c2f 896
428870ff
BB
897 if (type == RL_READER) {
898 while (rll->rll_writer != NULL)
899 (void) cond_wait(&rll->rll_cv, &rll->rll_lock);
900 rll->rll_readers++;
901 } else {
902 while (rll->rll_writer != NULL || rll->rll_readers)
903 (void) cond_wait(&rll->rll_cv, &rll->rll_lock);
904 rll->rll_writer = curthread;
905 }
34dc7c2f 906
428870ff
BB
907 VERIFY(mutex_unlock(&rll->rll_lock) == 0);
908}
34dc7c2f 909
428870ff
BB
910static void
911ztest_rll_unlock(rll_t *rll)
912{
913 VERIFY(mutex_lock(&rll->rll_lock) == 0);
34dc7c2f 914
428870ff
BB
915 if (rll->rll_writer) {
916 ASSERT(rll->rll_readers == 0);
917 rll->rll_writer = NULL;
918 } else {
919 ASSERT(rll->rll_readers != 0);
920 ASSERT(rll->rll_writer == NULL);
921 rll->rll_readers--;
922 }
34dc7c2f 923
428870ff
BB
924 if (rll->rll_writer == NULL && rll->rll_readers == 0)
925 VERIFY(cond_broadcast(&rll->rll_cv) == 0);
926
927 VERIFY(mutex_unlock(&rll->rll_lock) == 0);
34dc7c2f
BB
928}
929
428870ff
BB
930static void
931ztest_object_lock(ztest_ds_t *zd, uint64_t object, rl_type_t type)
b128c09f 932{
428870ff 933 rll_t *rll = &zd->zd_object_lock[object & (ZTEST_OBJECT_LOCKS - 1)];
b128c09f 934
428870ff
BB
935 ztest_rll_lock(rll, type);
936}
b128c09f 937
428870ff
BB
938static void
939ztest_object_unlock(ztest_ds_t *zd, uint64_t object)
940{
941 rll_t *rll = &zd->zd_object_lock[object & (ZTEST_OBJECT_LOCKS - 1)];
b128c09f 942
428870ff 943 ztest_rll_unlock(rll);
b128c09f
BB
944}
945
428870ff
BB
946static rl_t *
947ztest_range_lock(ztest_ds_t *zd, uint64_t object, uint64_t offset,
948 uint64_t size, rl_type_t type)
34dc7c2f 949{
428870ff
BB
950 uint64_t hash = object ^ (offset % (ZTEST_RANGE_LOCKS + 1));
951 rll_t *rll = &zd->zd_range_lock[hash & (ZTEST_RANGE_LOCKS - 1)];
952 rl_t *rl;
34dc7c2f 953
428870ff
BB
954 rl = umem_alloc(sizeof (*rl), UMEM_NOFAIL);
955 rl->rl_object = object;
956 rl->rl_offset = offset;
957 rl->rl_size = size;
958 rl->rl_lock = rll;
34dc7c2f 959
428870ff
BB
960 ztest_rll_lock(rll, type);
961
962 return (rl);
963}
34dc7c2f 964
428870ff
BB
965static void
966ztest_range_unlock(rl_t *rl)
967{
968 rll_t *rll = rl->rl_lock;
34dc7c2f 969
428870ff 970 ztest_rll_unlock(rll);
34dc7c2f 971
428870ff
BB
972 umem_free(rl, sizeof (*rl));
973}
34dc7c2f 974
428870ff
BB
975static void
976ztest_zd_init(ztest_ds_t *zd, objset_t *os)
977{
978 zd->zd_os = os;
979 zd->zd_zilog = dmu_objset_zil(os);
980 zd->zd_seq = 0;
981 dmu_objset_name(os, zd->zd_name);
982
983 VERIFY(_mutex_init(&zd->zd_dirobj_lock, USYNC_THREAD, NULL) == 0);
34dc7c2f 984
428870ff
BB
985 for (int l = 0; l < ZTEST_OBJECT_LOCKS; l++)
986 ztest_rll_init(&zd->zd_object_lock[l]);
34dc7c2f 987
428870ff
BB
988 for (int l = 0; l < ZTEST_RANGE_LOCKS; l++)
989 ztest_rll_init(&zd->zd_range_lock[l]);
34dc7c2f
BB
990}
991
428870ff
BB
992static void
993ztest_zd_fini(ztest_ds_t *zd)
34dc7c2f 994{
428870ff 995 VERIFY(_mutex_destroy(&zd->zd_dirobj_lock) == 0);
34dc7c2f 996
428870ff
BB
997 for (int l = 0; l < ZTEST_OBJECT_LOCKS; l++)
998 ztest_rll_destroy(&zd->zd_object_lock[l]);
b128c09f 999
428870ff
BB
1000 for (int l = 0; l < ZTEST_RANGE_LOCKS; l++)
1001 ztest_rll_destroy(&zd->zd_range_lock[l]);
1002}
b128c09f 1003
428870ff 1004#define TXG_MIGHTWAIT (ztest_random(10) == 0 ? TXG_NOWAIT : TXG_WAIT)
b128c09f 1005
428870ff
BB
1006static uint64_t
1007ztest_tx_assign(dmu_tx_t *tx, uint64_t txg_how, const char *tag)
1008{
1009 uint64_t txg;
1010 int error;
1011
1012 /*
1013 * Attempt to assign tx to some transaction group.
1014 */
1015 error = dmu_tx_assign(tx, txg_how);
1016 if (error) {
1017 if (error == ERESTART) {
1018 ASSERT(txg_how == TXG_NOWAIT);
1019 dmu_tx_wait(tx);
1020 } else {
1021 ASSERT3U(error, ==, ENOSPC);
1022 ztest_record_enospc(tag);
1023 }
1024 dmu_tx_abort(tx);
1025 return (0);
1026 }
1027 txg = dmu_tx_get_txg(tx);
1028 ASSERT(txg != 0);
1029 return (txg);
1030}
1031
1032static void
1033ztest_pattern_set(void *buf, uint64_t size, uint64_t value)
1034{
1035 uint64_t *ip = buf;
1036 uint64_t *ip_end = (uint64_t *)((uintptr_t)buf + (uintptr_t)size);
1037
1038 while (ip < ip_end)
1039 *ip++ = value;
1040}
1041
1042static boolean_t
1043ztest_pattern_match(void *buf, uint64_t size, uint64_t value)
1044{
1045 uint64_t *ip = buf;
1046 uint64_t *ip_end = (uint64_t *)((uintptr_t)buf + (uintptr_t)size);
1047 uint64_t diff = 0;
1048
1049 while (ip < ip_end)
1050 diff |= (value - *ip++);
1051
1052 return (diff == 0);
1053}
1054
1055static void
1056ztest_bt_generate(ztest_block_tag_t *bt, objset_t *os, uint64_t object,
1057 uint64_t offset, uint64_t gen, uint64_t txg, uint64_t crtxg)
1058{
1059 bt->bt_magic = BT_MAGIC;
1060 bt->bt_objset = dmu_objset_id(os);
1061 bt->bt_object = object;
1062 bt->bt_offset = offset;
1063 bt->bt_gen = gen;
1064 bt->bt_txg = txg;
1065 bt->bt_crtxg = crtxg;
1066}
1067
1068static void
1069ztest_bt_verify(ztest_block_tag_t *bt, objset_t *os, uint64_t object,
1070 uint64_t offset, uint64_t gen, uint64_t txg, uint64_t crtxg)
1071{
1072 ASSERT(bt->bt_magic == BT_MAGIC);
1073 ASSERT(bt->bt_objset == dmu_objset_id(os));
1074 ASSERT(bt->bt_object == object);
1075 ASSERT(bt->bt_offset == offset);
1076 ASSERT(bt->bt_gen <= gen);
1077 ASSERT(bt->bt_txg <= txg);
1078 ASSERT(bt->bt_crtxg == crtxg);
1079}
1080
1081static ztest_block_tag_t *
1082ztest_bt_bonus(dmu_buf_t *db)
1083{
1084 dmu_object_info_t doi;
1085 ztest_block_tag_t *bt;
1086
1087 dmu_object_info_from_db(db, &doi);
1088 ASSERT3U(doi.doi_bonus_size, <=, db->db_size);
1089 ASSERT3U(doi.doi_bonus_size, >=, sizeof (*bt));
1090 bt = (void *)((char *)db->db_data + doi.doi_bonus_size - sizeof (*bt));
1091
1092 return (bt);
1093}
1094
1095/*
1096 * ZIL logging ops
1097 */
1098
1099#define lrz_type lr_mode
1100#define lrz_blocksize lr_uid
1101#define lrz_ibshift lr_gid
1102#define lrz_bonustype lr_rdev
1103#define lrz_bonuslen lr_crtime[1]
1104
572e2857 1105static void
428870ff
BB
1106ztest_log_create(ztest_ds_t *zd, dmu_tx_t *tx, lr_create_t *lr)
1107{
1108 char *name = (void *)(lr + 1); /* name follows lr */
1109 size_t namesize = strlen(name) + 1;
1110 itx_t *itx;
1111
1112 if (zil_replaying(zd->zd_zilog, tx))
572e2857 1113 return;
428870ff
BB
1114
1115 itx = zil_itx_create(TX_CREATE, sizeof (*lr) + namesize);
1116 bcopy(&lr->lr_common + 1, &itx->itx_lr + 1,
1117 sizeof (*lr) + namesize - sizeof (lr_t));
1118
572e2857 1119 zil_itx_assign(zd->zd_zilog, itx, tx);
428870ff
BB
1120}
1121
572e2857
BB
1122static void
1123ztest_log_remove(ztest_ds_t *zd, dmu_tx_t *tx, lr_remove_t *lr, uint64_t object)
428870ff
BB
1124{
1125 char *name = (void *)(lr + 1); /* name follows lr */
1126 size_t namesize = strlen(name) + 1;
1127 itx_t *itx;
1128
1129 if (zil_replaying(zd->zd_zilog, tx))
572e2857 1130 return;
428870ff
BB
1131
1132 itx = zil_itx_create(TX_REMOVE, sizeof (*lr) + namesize);
1133 bcopy(&lr->lr_common + 1, &itx->itx_lr + 1,
1134 sizeof (*lr) + namesize - sizeof (lr_t));
1135
572e2857
BB
1136 itx->itx_oid = object;
1137 zil_itx_assign(zd->zd_zilog, itx, tx);
428870ff
BB
1138}
1139
572e2857 1140static void
428870ff
BB
1141ztest_log_write(ztest_ds_t *zd, dmu_tx_t *tx, lr_write_t *lr)
1142{
1143 itx_t *itx;
1144 itx_wr_state_t write_state = ztest_random(WR_NUM_STATES);
1145
1146 if (zil_replaying(zd->zd_zilog, tx))
572e2857 1147 return;
428870ff
BB
1148
1149 if (lr->lr_length > ZIL_MAX_LOG_DATA)
1150 write_state = WR_INDIRECT;
1151
1152 itx = zil_itx_create(TX_WRITE,
1153 sizeof (*lr) + (write_state == WR_COPIED ? lr->lr_length : 0));
1154
1155 if (write_state == WR_COPIED &&
1156 dmu_read(zd->zd_os, lr->lr_foid, lr->lr_offset, lr->lr_length,
1157 ((lr_write_t *)&itx->itx_lr) + 1, DMU_READ_NO_PREFETCH) != 0) {
1158 zil_itx_destroy(itx);
1159 itx = zil_itx_create(TX_WRITE, sizeof (*lr));
1160 write_state = WR_NEED_COPY;
1161 }
1162 itx->itx_private = zd;
1163 itx->itx_wr_state = write_state;
1164 itx->itx_sync = (ztest_random(8) == 0);
1165 itx->itx_sod += (write_state == WR_NEED_COPY ? lr->lr_length : 0);
1166
1167 bcopy(&lr->lr_common + 1, &itx->itx_lr + 1,
1168 sizeof (*lr) - sizeof (lr_t));
1169
572e2857 1170 zil_itx_assign(zd->zd_zilog, itx, tx);
428870ff
BB
1171}
1172
572e2857 1173static void
428870ff
BB
1174ztest_log_truncate(ztest_ds_t *zd, dmu_tx_t *tx, lr_truncate_t *lr)
1175{
1176 itx_t *itx;
1177
1178 if (zil_replaying(zd->zd_zilog, tx))
572e2857 1179 return;
428870ff
BB
1180
1181 itx = zil_itx_create(TX_TRUNCATE, sizeof (*lr));
1182 bcopy(&lr->lr_common + 1, &itx->itx_lr + 1,
1183 sizeof (*lr) - sizeof (lr_t));
1184
572e2857
BB
1185 itx->itx_sync = B_FALSE;
1186 zil_itx_assign(zd->zd_zilog, itx, tx);
428870ff
BB
1187}
1188
572e2857 1189static void
428870ff
BB
1190ztest_log_setattr(ztest_ds_t *zd, dmu_tx_t *tx, lr_setattr_t *lr)
1191{
1192 itx_t *itx;
1193
1194 if (zil_replaying(zd->zd_zilog, tx))
572e2857 1195 return;
428870ff
BB
1196
1197 itx = zil_itx_create(TX_SETATTR, sizeof (*lr));
1198 bcopy(&lr->lr_common + 1, &itx->itx_lr + 1,
1199 sizeof (*lr) - sizeof (lr_t));
1200
572e2857
BB
1201 itx->itx_sync = B_FALSE;
1202 zil_itx_assign(zd->zd_zilog, itx, tx);
428870ff
BB
1203}
1204
1205/*
1206 * ZIL replay ops
1207 */
1208static int
1209ztest_replay_create(ztest_ds_t *zd, lr_create_t *lr, boolean_t byteswap)
1210{
1211 char *name = (void *)(lr + 1); /* name follows lr */
1212 objset_t *os = zd->zd_os;
1213 ztest_block_tag_t *bbt;
1214 dmu_buf_t *db;
1215 dmu_tx_t *tx;
1216 uint64_t txg;
1217 int error = 0;
1218
1219 if (byteswap)
1220 byteswap_uint64_array(lr, sizeof (*lr));
1221
1222 ASSERT(lr->lr_doid == ZTEST_DIROBJ);
1223 ASSERT(name[0] != '\0');
1224
1225 tx = dmu_tx_create(os);
1226
1227 dmu_tx_hold_zap(tx, lr->lr_doid, B_TRUE, name);
1228
1229 if (lr->lrz_type == DMU_OT_ZAP_OTHER) {
1230 dmu_tx_hold_zap(tx, DMU_NEW_OBJECT, B_TRUE, NULL);
1231 } else {
1232 dmu_tx_hold_bonus(tx, DMU_NEW_OBJECT);
1233 }
1234
1235 txg = ztest_tx_assign(tx, TXG_WAIT, FTAG);
1236 if (txg == 0)
1237 return (ENOSPC);
1238
1239 ASSERT(dmu_objset_zil(os)->zl_replay == !!lr->lr_foid);
1240
1241 if (lr->lrz_type == DMU_OT_ZAP_OTHER) {
1242 if (lr->lr_foid == 0) {
1243 lr->lr_foid = zap_create(os,
1244 lr->lrz_type, lr->lrz_bonustype,
1245 lr->lrz_bonuslen, tx);
1246 } else {
1247 error = zap_create_claim(os, lr->lr_foid,
1248 lr->lrz_type, lr->lrz_bonustype,
1249 lr->lrz_bonuslen, tx);
1250 }
1251 } else {
1252 if (lr->lr_foid == 0) {
1253 lr->lr_foid = dmu_object_alloc(os,
1254 lr->lrz_type, 0, lr->lrz_bonustype,
1255 lr->lrz_bonuslen, tx);
1256 } else {
1257 error = dmu_object_claim(os, lr->lr_foid,
1258 lr->lrz_type, 0, lr->lrz_bonustype,
1259 lr->lrz_bonuslen, tx);
1260 }
1261 }
1262
1263 if (error) {
1264 ASSERT3U(error, ==, EEXIST);
1265 ASSERT(zd->zd_zilog->zl_replay);
1266 dmu_tx_commit(tx);
1267 return (error);
1268 }
1269
1270 ASSERT(lr->lr_foid != 0);
1271
1272 if (lr->lrz_type != DMU_OT_ZAP_OTHER)
1273 VERIFY3U(0, ==, dmu_object_set_blocksize(os, lr->lr_foid,
1274 lr->lrz_blocksize, lr->lrz_ibshift, tx));
1275
1276 VERIFY3U(0, ==, dmu_bonus_hold(os, lr->lr_foid, FTAG, &db));
1277 bbt = ztest_bt_bonus(db);
1278 dmu_buf_will_dirty(db, tx);
1279 ztest_bt_generate(bbt, os, lr->lr_foid, -1ULL, lr->lr_gen, txg, txg);
1280 dmu_buf_rele(db, FTAG);
1281
1282 VERIFY3U(0, ==, zap_add(os, lr->lr_doid, name, sizeof (uint64_t), 1,
1283 &lr->lr_foid, tx));
1284
1285 (void) ztest_log_create(zd, tx, lr);
1286
1287 dmu_tx_commit(tx);
1288
1289 return (0);
1290}
1291
1292static int
1293ztest_replay_remove(ztest_ds_t *zd, lr_remove_t *lr, boolean_t byteswap)
1294{
1295 char *name = (void *)(lr + 1); /* name follows lr */
1296 objset_t *os = zd->zd_os;
1297 dmu_object_info_t doi;
1298 dmu_tx_t *tx;
1299 uint64_t object, txg;
1300
1301 if (byteswap)
1302 byteswap_uint64_array(lr, sizeof (*lr));
1303
1304 ASSERT(lr->lr_doid == ZTEST_DIROBJ);
1305 ASSERT(name[0] != '\0');
1306
1307 VERIFY3U(0, ==,
1308 zap_lookup(os, lr->lr_doid, name, sizeof (object), 1, &object));
1309 ASSERT(object != 0);
1310
1311 ztest_object_lock(zd, object, RL_WRITER);
1312
1313 VERIFY3U(0, ==, dmu_object_info(os, object, &doi));
1314
1315 tx = dmu_tx_create(os);
1316
1317 dmu_tx_hold_zap(tx, lr->lr_doid, B_FALSE, name);
1318 dmu_tx_hold_free(tx, object, 0, DMU_OBJECT_END);
1319
1320 txg = ztest_tx_assign(tx, TXG_WAIT, FTAG);
1321 if (txg == 0) {
1322 ztest_object_unlock(zd, object);
1323 return (ENOSPC);
1324 }
1325
1326 if (doi.doi_type == DMU_OT_ZAP_OTHER) {
1327 VERIFY3U(0, ==, zap_destroy(os, object, tx));
1328 } else {
1329 VERIFY3U(0, ==, dmu_object_free(os, object, tx));
1330 }
1331
1332 VERIFY3U(0, ==, zap_remove(os, lr->lr_doid, name, tx));
1333
572e2857 1334 (void) ztest_log_remove(zd, tx, lr, object);
428870ff
BB
1335
1336 dmu_tx_commit(tx);
1337
1338 ztest_object_unlock(zd, object);
1339
1340 return (0);
1341}
1342
1343static int
1344ztest_replay_write(ztest_ds_t *zd, lr_write_t *lr, boolean_t byteswap)
1345{
1346 objset_t *os = zd->zd_os;
1347 void *data = lr + 1; /* data follows lr */
1348 uint64_t offset, length;
1349 ztest_block_tag_t *bt = data;
1350 ztest_block_tag_t *bbt;
1351 uint64_t gen, txg, lrtxg, crtxg;
1352 dmu_object_info_t doi;
1353 dmu_tx_t *tx;
1354 dmu_buf_t *db;
1355 arc_buf_t *abuf = NULL;
1356 rl_t *rl;
1357
1358 if (byteswap)
1359 byteswap_uint64_array(lr, sizeof (*lr));
1360
1361 offset = lr->lr_offset;
1362 length = lr->lr_length;
1363
1364 /* If it's a dmu_sync() block, write the whole block */
1365 if (lr->lr_common.lrc_reclen == sizeof (lr_write_t)) {
1366 uint64_t blocksize = BP_GET_LSIZE(&lr->lr_blkptr);
1367 if (length < blocksize) {
1368 offset -= offset % blocksize;
1369 length = blocksize;
1370 }
1371 }
1372
1373 if (bt->bt_magic == BSWAP_64(BT_MAGIC))
1374 byteswap_uint64_array(bt, sizeof (*bt));
1375
1376 if (bt->bt_magic != BT_MAGIC)
1377 bt = NULL;
1378
1379 ztest_object_lock(zd, lr->lr_foid, RL_READER);
1380 rl = ztest_range_lock(zd, lr->lr_foid, offset, length, RL_WRITER);
1381
1382 VERIFY3U(0, ==, dmu_bonus_hold(os, lr->lr_foid, FTAG, &db));
1383
1384 dmu_object_info_from_db(db, &doi);
1385
1386 bbt = ztest_bt_bonus(db);
1387 ASSERT3U(bbt->bt_magic, ==, BT_MAGIC);
1388 gen = bbt->bt_gen;
1389 crtxg = bbt->bt_crtxg;
1390 lrtxg = lr->lr_common.lrc_txg;
1391
1392 tx = dmu_tx_create(os);
1393
1394 dmu_tx_hold_write(tx, lr->lr_foid, offset, length);
1395
1396 if (ztest_random(8) == 0 && length == doi.doi_data_block_size &&
1397 P2PHASE(offset, length) == 0)
1398 abuf = dmu_request_arcbuf(db, length);
1399
1400 txg = ztest_tx_assign(tx, TXG_WAIT, FTAG);
1401 if (txg == 0) {
1402 if (abuf != NULL)
1403 dmu_return_arcbuf(abuf);
1404 dmu_buf_rele(db, FTAG);
1405 ztest_range_unlock(rl);
1406 ztest_object_unlock(zd, lr->lr_foid);
1407 return (ENOSPC);
1408 }
1409
1410 if (bt != NULL) {
1411 /*
1412 * Usually, verify the old data before writing new data --
1413 * but not always, because we also want to verify correct
1414 * behavior when the data was not recently read into cache.
1415 */
1416 ASSERT(offset % doi.doi_data_block_size == 0);
1417 if (ztest_random(4) != 0) {
1418 int prefetch = ztest_random(2) ?
1419 DMU_READ_PREFETCH : DMU_READ_NO_PREFETCH;
1420 ztest_block_tag_t rbt;
1421
1422 VERIFY(dmu_read(os, lr->lr_foid, offset,
1423 sizeof (rbt), &rbt, prefetch) == 0);
1424 if (rbt.bt_magic == BT_MAGIC) {
1425 ztest_bt_verify(&rbt, os, lr->lr_foid,
1426 offset, gen, txg, crtxg);
1427 }
1428 }
1429
1430 /*
1431 * Writes can appear to be newer than the bonus buffer because
1432 * the ztest_get_data() callback does a dmu_read() of the
1433 * open-context data, which may be different than the data
1434 * as it was when the write was generated.
1435 */
1436 if (zd->zd_zilog->zl_replay) {
1437 ztest_bt_verify(bt, os, lr->lr_foid, offset,
1438 MAX(gen, bt->bt_gen), MAX(txg, lrtxg),
1439 bt->bt_crtxg);
1440 }
1441
1442 /*
1443 * Set the bt's gen/txg to the bonus buffer's gen/txg
1444 * so that all of the usual ASSERTs will work.
1445 */
1446 ztest_bt_generate(bt, os, lr->lr_foid, offset, gen, txg, crtxg);
1447 }
1448
1449 if (abuf == NULL) {
1450 dmu_write(os, lr->lr_foid, offset, length, data, tx);
1451 } else {
1452 bcopy(data, abuf->b_data, length);
1453 dmu_assign_arcbuf(db, offset, abuf, tx);
1454 }
1455
1456 (void) ztest_log_write(zd, tx, lr);
1457
1458 dmu_buf_rele(db, FTAG);
1459
1460 dmu_tx_commit(tx);
1461
1462 ztest_range_unlock(rl);
1463 ztest_object_unlock(zd, lr->lr_foid);
1464
1465 return (0);
1466}
1467
1468static int
1469ztest_replay_truncate(ztest_ds_t *zd, lr_truncate_t *lr, boolean_t byteswap)
1470{
1471 objset_t *os = zd->zd_os;
1472 dmu_tx_t *tx;
1473 uint64_t txg;
1474 rl_t *rl;
1475
1476 if (byteswap)
1477 byteswap_uint64_array(lr, sizeof (*lr));
1478
1479 ztest_object_lock(zd, lr->lr_foid, RL_READER);
1480 rl = ztest_range_lock(zd, lr->lr_foid, lr->lr_offset, lr->lr_length,
1481 RL_WRITER);
1482
1483 tx = dmu_tx_create(os);
1484
1485 dmu_tx_hold_free(tx, lr->lr_foid, lr->lr_offset, lr->lr_length);
1486
1487 txg = ztest_tx_assign(tx, TXG_WAIT, FTAG);
1488 if (txg == 0) {
1489 ztest_range_unlock(rl);
1490 ztest_object_unlock(zd, lr->lr_foid);
1491 return (ENOSPC);
1492 }
1493
1494 VERIFY(dmu_free_range(os, lr->lr_foid, lr->lr_offset,
1495 lr->lr_length, tx) == 0);
1496
1497 (void) ztest_log_truncate(zd, tx, lr);
1498
1499 dmu_tx_commit(tx);
1500
1501 ztest_range_unlock(rl);
1502 ztest_object_unlock(zd, lr->lr_foid);
1503
1504 return (0);
1505}
1506
1507static int
1508ztest_replay_setattr(ztest_ds_t *zd, lr_setattr_t *lr, boolean_t byteswap)
1509{
1510 objset_t *os = zd->zd_os;
1511 dmu_tx_t *tx;
1512 dmu_buf_t *db;
1513 ztest_block_tag_t *bbt;
1514 uint64_t txg, lrtxg, crtxg;
1515
1516 if (byteswap)
1517 byteswap_uint64_array(lr, sizeof (*lr));
1518
1519 ztest_object_lock(zd, lr->lr_foid, RL_WRITER);
1520
1521 VERIFY3U(0, ==, dmu_bonus_hold(os, lr->lr_foid, FTAG, &db));
1522
1523 tx = dmu_tx_create(os);
1524 dmu_tx_hold_bonus(tx, lr->lr_foid);
1525
1526 txg = ztest_tx_assign(tx, TXG_WAIT, FTAG);
1527 if (txg == 0) {
1528 dmu_buf_rele(db, FTAG);
1529 ztest_object_unlock(zd, lr->lr_foid);
1530 return (ENOSPC);
1531 }
1532
1533 bbt = ztest_bt_bonus(db);
1534 ASSERT3U(bbt->bt_magic, ==, BT_MAGIC);
1535 crtxg = bbt->bt_crtxg;
1536 lrtxg = lr->lr_common.lrc_txg;
1537
1538 if (zd->zd_zilog->zl_replay) {
1539 ASSERT(lr->lr_size != 0);
1540 ASSERT(lr->lr_mode != 0);
1541 ASSERT(lrtxg != 0);
1542 } else {
1543 /*
1544 * Randomly change the size and increment the generation.
1545 */
1546 lr->lr_size = (ztest_random(db->db_size / sizeof (*bbt)) + 1) *
1547 sizeof (*bbt);
1548 lr->lr_mode = bbt->bt_gen + 1;
1549 ASSERT(lrtxg == 0);
1550 }
1551
1552 /*
1553 * Verify that the current bonus buffer is not newer than our txg.
1554 */
1555 ztest_bt_verify(bbt, os, lr->lr_foid, -1ULL, lr->lr_mode,
1556 MAX(txg, lrtxg), crtxg);
1557
1558 dmu_buf_will_dirty(db, tx);
1559
1560 ASSERT3U(lr->lr_size, >=, sizeof (*bbt));
1561 ASSERT3U(lr->lr_size, <=, db->db_size);
1562 VERIFY3U(dmu_set_bonus(db, lr->lr_size, tx), ==, 0);
1563 bbt = ztest_bt_bonus(db);
1564
1565 ztest_bt_generate(bbt, os, lr->lr_foid, -1ULL, lr->lr_mode, txg, crtxg);
1566
1567 dmu_buf_rele(db, FTAG);
1568
1569 (void) ztest_log_setattr(zd, tx, lr);
1570
1571 dmu_tx_commit(tx);
1572
1573 ztest_object_unlock(zd, lr->lr_foid);
1574
1575 return (0);
1576}
1577
1578zil_replay_func_t *ztest_replay_vector[TX_MAX_TYPE] = {
1579 NULL, /* 0 no such transaction type */
1580 ztest_replay_create, /* TX_CREATE */
1581 NULL, /* TX_MKDIR */
1582 NULL, /* TX_MKXATTR */
1583 NULL, /* TX_SYMLINK */
1584 ztest_replay_remove, /* TX_REMOVE */
1585 NULL, /* TX_RMDIR */
1586 NULL, /* TX_LINK */
1587 NULL, /* TX_RENAME */
1588 ztest_replay_write, /* TX_WRITE */
1589 ztest_replay_truncate, /* TX_TRUNCATE */
1590 ztest_replay_setattr, /* TX_SETATTR */
1591 NULL, /* TX_ACL */
1592 NULL, /* TX_CREATE_ACL */
1593 NULL, /* TX_CREATE_ATTR */
1594 NULL, /* TX_CREATE_ACL_ATTR */
1595 NULL, /* TX_MKDIR_ACL */
1596 NULL, /* TX_MKDIR_ATTR */
1597 NULL, /* TX_MKDIR_ACL_ATTR */
1598 NULL, /* TX_WRITE2 */
1599};
1600
1601/*
1602 * ZIL get_data callbacks
1603 */
1604
1605static void
1606ztest_get_done(zgd_t *zgd, int error)
1607{
1608 ztest_ds_t *zd = zgd->zgd_private;
1609 uint64_t object = zgd->zgd_rl->rl_object;
1610
1611 if (zgd->zgd_db)
1612 dmu_buf_rele(zgd->zgd_db, zgd);
1613
1614 ztest_range_unlock(zgd->zgd_rl);
1615 ztest_object_unlock(zd, object);
1616
1617 if (error == 0 && zgd->zgd_bp)
1618 zil_add_block(zgd->zgd_zilog, zgd->zgd_bp);
1619
1620 umem_free(zgd, sizeof (*zgd));
1621}
1622
1623static int
1624ztest_get_data(void *arg, lr_write_t *lr, char *buf, zio_t *zio)
1625{
1626 ztest_ds_t *zd = arg;
1627 objset_t *os = zd->zd_os;
1628 uint64_t object = lr->lr_foid;
1629 uint64_t offset = lr->lr_offset;
1630 uint64_t size = lr->lr_length;
1631 blkptr_t *bp = &lr->lr_blkptr;
1632 uint64_t txg = lr->lr_common.lrc_txg;
1633 uint64_t crtxg;
1634 dmu_object_info_t doi;
1635 dmu_buf_t *db;
1636 zgd_t *zgd;
1637 int error;
1638
1639 ztest_object_lock(zd, object, RL_READER);
1640 error = dmu_bonus_hold(os, object, FTAG, &db);
1641 if (error) {
1642 ztest_object_unlock(zd, object);
1643 return (error);
1644 }
1645
1646 crtxg = ztest_bt_bonus(db)->bt_crtxg;
1647
1648 if (crtxg == 0 || crtxg > txg) {
1649 dmu_buf_rele(db, FTAG);
1650 ztest_object_unlock(zd, object);
1651 return (ENOENT);
1652 }
1653
1654 dmu_object_info_from_db(db, &doi);
1655 dmu_buf_rele(db, FTAG);
1656 db = NULL;
1657
1658 zgd = umem_zalloc(sizeof (*zgd), UMEM_NOFAIL);
1659 zgd->zgd_zilog = zd->zd_zilog;
1660 zgd->zgd_private = zd;
1661
1662 if (buf != NULL) { /* immediate write */
1663 zgd->zgd_rl = ztest_range_lock(zd, object, offset, size,
1664 RL_READER);
1665
1666 error = dmu_read(os, object, offset, size, buf,
1667 DMU_READ_NO_PREFETCH);
1668 ASSERT(error == 0);
1669 } else {
1670 size = doi.doi_data_block_size;
1671 if (ISP2(size)) {
1672 offset = P2ALIGN(offset, size);
1673 } else {
1674 ASSERT(offset < size);
1675 offset = 0;
1676 }
1677
1678 zgd->zgd_rl = ztest_range_lock(zd, object, offset, size,
1679 RL_READER);
1680
1681 error = dmu_buf_hold(os, object, offset, zgd, &db,
1682 DMU_READ_NO_PREFETCH);
1683
1684 if (error == 0) {
1685 zgd->zgd_db = db;
1686 zgd->zgd_bp = bp;
1687
1688 ASSERT(db->db_offset == offset);
1689 ASSERT(db->db_size == size);
1690
1691 error = dmu_sync(zio, lr->lr_common.lrc_txg,
1692 ztest_get_done, zgd);
1693
1694 if (error == 0)
1695 return (0);
1696 }
1697 }
1698
1699 ztest_get_done(zgd, error);
1700
1701 return (error);
1702}
1703
1704static void *
1705ztest_lr_alloc(size_t lrsize, char *name)
1706{
1707 char *lr;
1708 size_t namesize = name ? strlen(name) + 1 : 0;
1709
1710 lr = umem_zalloc(lrsize + namesize, UMEM_NOFAIL);
1711
1712 if (name)
1713 bcopy(name, lr + lrsize, namesize);
1714
1715 return (lr);
1716}
1717
1718void
1719ztest_lr_free(void *lr, size_t lrsize, char *name)
1720{
1721 size_t namesize = name ? strlen(name) + 1 : 0;
1722
1723 umem_free(lr, lrsize + namesize);
1724}
1725
1726/*
1727 * Lookup a bunch of objects. Returns the number of objects not found.
1728 */
1729static int
1730ztest_lookup(ztest_ds_t *zd, ztest_od_t *od, int count)
1731{
1732 int missing = 0;
1733 int error;
1734
1735 ASSERT(_mutex_held(&zd->zd_dirobj_lock));
1736
1737 for (int i = 0; i < count; i++, od++) {
1738 od->od_object = 0;
1739 error = zap_lookup(zd->zd_os, od->od_dir, od->od_name,
1740 sizeof (uint64_t), 1, &od->od_object);
1741 if (error) {
1742 ASSERT(error == ENOENT);
1743 ASSERT(od->od_object == 0);
1744 missing++;
1745 } else {
1746 dmu_buf_t *db;
1747 ztest_block_tag_t *bbt;
1748 dmu_object_info_t doi;
1749
1750 ASSERT(od->od_object != 0);
1751 ASSERT(missing == 0); /* there should be no gaps */
1752
1753 ztest_object_lock(zd, od->od_object, RL_READER);
1754 VERIFY3U(0, ==, dmu_bonus_hold(zd->zd_os,
1755 od->od_object, FTAG, &db));
1756 dmu_object_info_from_db(db, &doi);
1757 bbt = ztest_bt_bonus(db);
1758 ASSERT3U(bbt->bt_magic, ==, BT_MAGIC);
1759 od->od_type = doi.doi_type;
1760 od->od_blocksize = doi.doi_data_block_size;
1761 od->od_gen = bbt->bt_gen;
1762 dmu_buf_rele(db, FTAG);
1763 ztest_object_unlock(zd, od->od_object);
1764 }
1765 }
1766
1767 return (missing);
1768}
1769
1770static int
1771ztest_create(ztest_ds_t *zd, ztest_od_t *od, int count)
1772{
1773 int missing = 0;
1774
1775 ASSERT(_mutex_held(&zd->zd_dirobj_lock));
1776
1777 for (int i = 0; i < count; i++, od++) {
1778 if (missing) {
1779 od->od_object = 0;
1780 missing++;
1781 continue;
1782 }
1783
1784 lr_create_t *lr = ztest_lr_alloc(sizeof (*lr), od->od_name);
1785
1786 lr->lr_doid = od->od_dir;
1787 lr->lr_foid = 0; /* 0 to allocate, > 0 to claim */
1788 lr->lrz_type = od->od_crtype;
1789 lr->lrz_blocksize = od->od_crblocksize;
1790 lr->lrz_ibshift = ztest_random_ibshift();
1791 lr->lrz_bonustype = DMU_OT_UINT64_OTHER;
1792 lr->lrz_bonuslen = dmu_bonus_max();
1793 lr->lr_gen = od->od_crgen;
1794 lr->lr_crtime[0] = time(NULL);
1795
1796 if (ztest_replay_create(zd, lr, B_FALSE) != 0) {
1797 ASSERT(missing == 0);
1798 od->od_object = 0;
1799 missing++;
1800 } else {
1801 od->od_object = lr->lr_foid;
1802 od->od_type = od->od_crtype;
1803 od->od_blocksize = od->od_crblocksize;
1804 od->od_gen = od->od_crgen;
1805 ASSERT(od->od_object != 0);
1806 }
1807
1808 ztest_lr_free(lr, sizeof (*lr), od->od_name);
1809 }
1810
1811 return (missing);
1812}
1813
1814static int
1815ztest_remove(ztest_ds_t *zd, ztest_od_t *od, int count)
1816{
1817 int missing = 0;
1818 int error;
1819
1820 ASSERT(_mutex_held(&zd->zd_dirobj_lock));
1821
1822 od += count - 1;
1823
1824 for (int i = count - 1; i >= 0; i--, od--) {
1825 if (missing) {
1826 missing++;
1827 continue;
1828 }
1829
1830 if (od->od_object == 0)
1831 continue;
1832
1833 lr_remove_t *lr = ztest_lr_alloc(sizeof (*lr), od->od_name);
1834
1835 lr->lr_doid = od->od_dir;
1836
1837 if ((error = ztest_replay_remove(zd, lr, B_FALSE)) != 0) {
1838 ASSERT3U(error, ==, ENOSPC);
1839 missing++;
1840 } else {
1841 od->od_object = 0;
1842 }
1843 ztest_lr_free(lr, sizeof (*lr), od->od_name);
1844 }
1845
1846 return (missing);
1847}
1848
1849static int
1850ztest_write(ztest_ds_t *zd, uint64_t object, uint64_t offset, uint64_t size,
1851 void *data)
1852{
1853 lr_write_t *lr;
1854 int error;
1855
1856 lr = ztest_lr_alloc(sizeof (*lr) + size, NULL);
1857
1858 lr->lr_foid = object;
1859 lr->lr_offset = offset;
1860 lr->lr_length = size;
1861 lr->lr_blkoff = 0;
1862 BP_ZERO(&lr->lr_blkptr);
1863
1864 bcopy(data, lr + 1, size);
1865
1866 error = ztest_replay_write(zd, lr, B_FALSE);
1867
1868 ztest_lr_free(lr, sizeof (*lr) + size, NULL);
1869
1870 return (error);
1871}
1872
1873static int
1874ztest_truncate(ztest_ds_t *zd, uint64_t object, uint64_t offset, uint64_t size)
1875{
1876 lr_truncate_t *lr;
1877 int error;
1878
1879 lr = ztest_lr_alloc(sizeof (*lr), NULL);
1880
1881 lr->lr_foid = object;
1882 lr->lr_offset = offset;
1883 lr->lr_length = size;
1884
1885 error = ztest_replay_truncate(zd, lr, B_FALSE);
1886
1887 ztest_lr_free(lr, sizeof (*lr), NULL);
1888
1889 return (error);
1890}
1891
1892static int
1893ztest_setattr(ztest_ds_t *zd, uint64_t object)
1894{
1895 lr_setattr_t *lr;
1896 int error;
1897
1898 lr = ztest_lr_alloc(sizeof (*lr), NULL);
1899
1900 lr->lr_foid = object;
1901 lr->lr_size = 0;
1902 lr->lr_mode = 0;
1903
1904 error = ztest_replay_setattr(zd, lr, B_FALSE);
1905
1906 ztest_lr_free(lr, sizeof (*lr), NULL);
1907
1908 return (error);
1909}
1910
1911static void
1912ztest_prealloc(ztest_ds_t *zd, uint64_t object, uint64_t offset, uint64_t size)
1913{
1914 objset_t *os = zd->zd_os;
1915 dmu_tx_t *tx;
1916 uint64_t txg;
1917 rl_t *rl;
1918
1919 txg_wait_synced(dmu_objset_pool(os), 0);
1920
1921 ztest_object_lock(zd, object, RL_READER);
1922 rl = ztest_range_lock(zd, object, offset, size, RL_WRITER);
1923
1924 tx = dmu_tx_create(os);
1925
1926 dmu_tx_hold_write(tx, object, offset, size);
1927
1928 txg = ztest_tx_assign(tx, TXG_WAIT, FTAG);
1929
1930 if (txg != 0) {
1931 dmu_prealloc(os, object, offset, size, tx);
1932 dmu_tx_commit(tx);
1933 txg_wait_synced(dmu_objset_pool(os), txg);
1934 } else {
1935 (void) dmu_free_long_range(os, object, offset, size);
1936 }
1937
1938 ztest_range_unlock(rl);
1939 ztest_object_unlock(zd, object);
1940}
1941
1942static void
1943ztest_io(ztest_ds_t *zd, uint64_t object, uint64_t offset)
1944{
1945 ztest_block_tag_t wbt;
1946 dmu_object_info_t doi;
1947 enum ztest_io_type io_type;
1948 uint64_t blocksize;
1949 void *data;
1950
1951 VERIFY(dmu_object_info(zd->zd_os, object, &doi) == 0);
1952 blocksize = doi.doi_data_block_size;
1953 data = umem_alloc(blocksize, UMEM_NOFAIL);
1954
1955 /*
1956 * Pick an i/o type at random, biased toward writing block tags.
1957 */
1958 io_type = ztest_random(ZTEST_IO_TYPES);
1959 if (ztest_random(2) == 0)
1960 io_type = ZTEST_IO_WRITE_TAG;
1961
1962 switch (io_type) {
1963
1964 case ZTEST_IO_WRITE_TAG:
1965 ztest_bt_generate(&wbt, zd->zd_os, object, offset, 0, 0, 0);
1966 (void) ztest_write(zd, object, offset, sizeof (wbt), &wbt);
1967 break;
1968
1969 case ZTEST_IO_WRITE_PATTERN:
1970 (void) memset(data, 'a' + (object + offset) % 5, blocksize);
1971 if (ztest_random(2) == 0) {
1972 /*
1973 * Induce fletcher2 collisions to ensure that
1974 * zio_ddt_collision() detects and resolves them
1975 * when using fletcher2-verify for deduplication.
1976 */
1977 ((uint64_t *)data)[0] ^= 1ULL << 63;
1978 ((uint64_t *)data)[4] ^= 1ULL << 63;
1979 }
1980 (void) ztest_write(zd, object, offset, blocksize, data);
1981 break;
1982
1983 case ZTEST_IO_WRITE_ZEROES:
1984 bzero(data, blocksize);
1985 (void) ztest_write(zd, object, offset, blocksize, data);
1986 break;
1987
1988 case ZTEST_IO_TRUNCATE:
1989 (void) ztest_truncate(zd, object, offset, blocksize);
1990 break;
1991
1992 case ZTEST_IO_SETATTR:
1993 (void) ztest_setattr(zd, object);
1994 break;
1995 }
1996
1997 umem_free(data, blocksize);
1998}
1999
2000/*
2001 * Initialize an object description template.
2002 */
2003static void
2004ztest_od_init(ztest_od_t *od, uint64_t id, char *tag, uint64_t index,
2005 dmu_object_type_t type, uint64_t blocksize, uint64_t gen)
2006{
2007 od->od_dir = ZTEST_DIROBJ;
2008 od->od_object = 0;
2009
2010 od->od_crtype = type;
2011 od->od_crblocksize = blocksize ? blocksize : ztest_random_blocksize();
2012 od->od_crgen = gen;
2013
2014 od->od_type = DMU_OT_NONE;
2015 od->od_blocksize = 0;
2016 od->od_gen = 0;
2017
2018 (void) snprintf(od->od_name, sizeof (od->od_name), "%s(%lld)[%llu]",
2019 tag, (int64_t)id, index);
2020}
2021
2022/*
2023 * Lookup or create the objects for a test using the od template.
2024 * If the objects do not all exist, or if 'remove' is specified,
2025 * remove any existing objects and create new ones. Otherwise,
2026 * use the existing objects.
2027 */
2028static int
2029ztest_object_init(ztest_ds_t *zd, ztest_od_t *od, size_t size, boolean_t remove)
2030{
2031 int count = size / sizeof (*od);
2032 int rv = 0;
2033
2034 VERIFY(mutex_lock(&zd->zd_dirobj_lock) == 0);
2035 if ((ztest_lookup(zd, od, count) != 0 || remove) &&
2036 (ztest_remove(zd, od, count) != 0 ||
2037 ztest_create(zd, od, count) != 0))
2038 rv = -1;
2039 zd->zd_od = od;
2040 VERIFY(mutex_unlock(&zd->zd_dirobj_lock) == 0);
2041
2042 return (rv);
2043}
2044
2045/* ARGSUSED */
2046void
2047ztest_zil_commit(ztest_ds_t *zd, uint64_t id)
2048{
2049 zilog_t *zilog = zd->zd_zilog;
2050
572e2857 2051 zil_commit(zilog, ztest_random(ZTEST_OBJECTS));
428870ff
BB
2052
2053 /*
2054 * Remember the committed values in zd, which is in parent/child
2055 * shared memory. If we die, the next iteration of ztest_run()
2056 * will verify that the log really does contain this record.
2057 */
2058 mutex_enter(&zilog->zl_lock);
2059 ASSERT(zd->zd_seq <= zilog->zl_commit_lr_seq);
2060 zd->zd_seq = zilog->zl_commit_lr_seq;
2061 mutex_exit(&zilog->zl_lock);
2062}
2063
2064/*
2065 * Verify that we can't destroy an active pool, create an existing pool,
2066 * or create a pool with a bad vdev spec.
2067 */
2068/* ARGSUSED */
2069void
2070ztest_spa_create_destroy(ztest_ds_t *zd, uint64_t id)
2071{
2072 ztest_shared_t *zs = ztest_shared;
2073 spa_t *spa;
2074 nvlist_t *nvroot;
2075
2076 /*
2077 * Attempt to create using a bad file.
2078 */
2079 nvroot = make_vdev_root("/dev/bogus", NULL, 0, 0, 0, 0, 0, 1);
2080 VERIFY3U(ENOENT, ==,
2081 spa_create("ztest_bad_file", nvroot, NULL, NULL, NULL));
2082 nvlist_free(nvroot);
2083
2084 /*
2085 * Attempt to create using a bad mirror.
2086 */
2087 nvroot = make_vdev_root("/dev/bogus", NULL, 0, 0, 0, 0, 2, 1);
2088 VERIFY3U(ENOENT, ==,
2089 spa_create("ztest_bad_mirror", nvroot, NULL, NULL, NULL));
2090 nvlist_free(nvroot);
2091
2092 /*
2093 * Attempt to create an existing pool. It shouldn't matter
2094 * what's in the nvroot; we should fail with EEXIST.
2095 */
2096 (void) rw_rdlock(&zs->zs_name_lock);
2097 nvroot = make_vdev_root("/dev/bogus", NULL, 0, 0, 0, 0, 0, 1);
2098 VERIFY3U(EEXIST, ==, spa_create(zs->zs_pool, nvroot, NULL, NULL, NULL));
2099 nvlist_free(nvroot);
2100 VERIFY3U(0, ==, spa_open(zs->zs_pool, &spa, FTAG));
2101 VERIFY3U(EBUSY, ==, spa_destroy(zs->zs_pool));
2102 spa_close(spa, FTAG);
2103
2104 (void) rw_unlock(&zs->zs_name_lock);
2105}
2106
2107static vdev_t *
2108vdev_lookup_by_path(vdev_t *vd, const char *path)
2109{
2110 vdev_t *mvd;
2111
2112 if (vd->vdev_path != NULL && strcmp(path, vd->vdev_path) == 0)
2113 return (vd);
2114
2115 for (int c = 0; c < vd->vdev_children; c++)
2116 if ((mvd = vdev_lookup_by_path(vd->vdev_child[c], path)) !=
2117 NULL)
2118 return (mvd);
2119
2120 return (NULL);
2121}
2122
2123/*
2124 * Find the first available hole which can be used as a top-level.
2125 */
2126int
2127find_vdev_hole(spa_t *spa)
2128{
2129 vdev_t *rvd = spa->spa_root_vdev;
2130 int c;
2131
2132 ASSERT(spa_config_held(spa, SCL_VDEV, RW_READER) == SCL_VDEV);
2133
2134 for (c = 0; c < rvd->vdev_children; c++) {
2135 vdev_t *cvd = rvd->vdev_child[c];
2136
2137 if (cvd->vdev_ishole)
2138 break;
2139 }
2140 return (c);
2141}
2142
2143/*
2144 * Verify that vdev_add() works as expected.
2145 */
2146/* ARGSUSED */
2147void
2148ztest_vdev_add_remove(ztest_ds_t *zd, uint64_t id)
2149{
2150 ztest_shared_t *zs = ztest_shared;
2151 spa_t *spa = zs->zs_spa;
2152 uint64_t leaves;
2153 uint64_t guid;
2154 nvlist_t *nvroot;
2155 int error;
2156
2157 VERIFY(mutex_lock(&zs->zs_vdev_lock) == 0);
2158 leaves = MAX(zs->zs_mirrors + zs->zs_splits, 1) * zopt_raidz;
2159
2160 spa_config_enter(spa, SCL_VDEV, FTAG, RW_READER);
2161
2162 ztest_shared->zs_vdev_next_leaf = find_vdev_hole(spa) * leaves;
2163
2164 /*
2165 * If we have slogs then remove them 1/4 of the time.
2166 */
2167 if (spa_has_slogs(spa) && ztest_random(4) == 0) {
2168 /*
2169 * Grab the guid from the head of the log class rotor.
2170 */
2171 guid = spa_log_class(spa)->mc_rotor->mg_vd->vdev_guid;
2172
2173 spa_config_exit(spa, SCL_VDEV, FTAG);
2174
2175 /*
2176 * We have to grab the zs_name_lock as writer to
2177 * prevent a race between removing a slog (dmu_objset_find)
2178 * and destroying a dataset. Removing the slog will
2179 * grab a reference on the dataset which may cause
2180 * dmu_objset_destroy() to fail with EBUSY thus
2181 * leaving the dataset in an inconsistent state.
2182 */
2183 VERIFY(rw_wrlock(&ztest_shared->zs_name_lock) == 0);
2184 error = spa_vdev_remove(spa, guid, B_FALSE);
2185 VERIFY(rw_unlock(&ztest_shared->zs_name_lock) == 0);
2186
2187 if (error && error != EEXIST)
2188 fatal(0, "spa_vdev_remove() = %d", error);
2189 } else {
2190 spa_config_exit(spa, SCL_VDEV, FTAG);
2191
2192 /*
2193 * Make 1/4 of the devices be log devices.
2194 */
2195 nvroot = make_vdev_root(NULL, NULL, zopt_vdev_size, 0,
2196 ztest_random(4) == 0, zopt_raidz, zs->zs_mirrors, 1);
2197
2198 error = spa_vdev_add(spa, nvroot);
2199 nvlist_free(nvroot);
2200
2201 if (error == ENOSPC)
2202 ztest_record_enospc("spa_vdev_add");
2203 else if (error != 0)
2204 fatal(0, "spa_vdev_add() = %d", error);
2205 }
2206
2207 VERIFY(mutex_unlock(&ztest_shared->zs_vdev_lock) == 0);
2208}
2209
2210/*
2211 * Verify that adding/removing aux devices (l2arc, hot spare) works as expected.
2212 */
2213/* ARGSUSED */
2214void
2215ztest_vdev_aux_add_remove(ztest_ds_t *zd, uint64_t id)
2216{
2217 ztest_shared_t *zs = ztest_shared;
2218 spa_t *spa = zs->zs_spa;
2219 vdev_t *rvd = spa->spa_root_vdev;
2220 spa_aux_vdev_t *sav;
2221 char *aux;
2222 uint64_t guid = 0;
2223 int error;
2224
2225 if (ztest_random(2) == 0) {
2226 sav = &spa->spa_spares;
2227 aux = ZPOOL_CONFIG_SPARES;
2228 } else {
2229 sav = &spa->spa_l2cache;
2230 aux = ZPOOL_CONFIG_L2CACHE;
2231 }
2232
2233 VERIFY(mutex_lock(&zs->zs_vdev_lock) == 0);
2234
2235 spa_config_enter(spa, SCL_VDEV, FTAG, RW_READER);
2236
2237 if (sav->sav_count != 0 && ztest_random(4) == 0) {
b128c09f
BB
2238 /*
2239 * Pick a random device to remove.
2240 */
2241 guid = sav->sav_vdevs[ztest_random(sav->sav_count)]->vdev_guid;
2242 } else {
2243 /*
2244 * Find an unused device we can add.
2245 */
428870ff 2246 zs->zs_vdev_aux = 0;
b128c09f
BB
2247 for (;;) {
2248 char path[MAXPATHLEN];
2249 int c;
2250 (void) sprintf(path, ztest_aux_template, zopt_dir,
428870ff 2251 zopt_pool, aux, zs->zs_vdev_aux);
b128c09f
BB
2252 for (c = 0; c < sav->sav_count; c++)
2253 if (strcmp(sav->sav_vdevs[c]->vdev_path,
2254 path) == 0)
2255 break;
2256 if (c == sav->sav_count &&
2257 vdev_lookup_by_path(rvd, path) == NULL)
2258 break;
428870ff 2259 zs->zs_vdev_aux++;
34dc7c2f
BB
2260 }
2261 }
2262
b128c09f 2263 spa_config_exit(spa, SCL_VDEV, FTAG);
34dc7c2f 2264
b128c09f
BB
2265 if (guid == 0) {
2266 /*
2267 * Add a new device.
2268 */
2269 nvlist_t *nvroot = make_vdev_root(NULL, aux,
2270 (zopt_vdev_size * 5) / 4, 0, 0, 0, 0, 1);
2271 error = spa_vdev_add(spa, nvroot);
2272 if (error != 0)
2273 fatal(0, "spa_vdev_add(%p) = %d", nvroot, error);
2274 nvlist_free(nvroot);
2275 } else {
2276 /*
2277 * Remove an existing device. Sometimes, dirty its
2278 * vdev state first to make sure we handle removal
2279 * of devices that have pending state changes.
2280 */
2281 if (ztest_random(2) == 0)
9babb374 2282 (void) vdev_online(spa, guid, 0, NULL);
b128c09f
BB
2283
2284 error = spa_vdev_remove(spa, guid, B_FALSE);
2285 if (error != 0 && error != EBUSY)
2286 fatal(0, "spa_vdev_remove(%llu) = %d", guid, error);
2287 }
2288
428870ff
BB
2289 VERIFY(mutex_unlock(&zs->zs_vdev_lock) == 0);
2290}
2291
2292/*
2293 * split a pool if it has mirror tlvdevs
2294 */
2295/* ARGSUSED */
2296void
2297ztest_split_pool(ztest_ds_t *zd, uint64_t id)
2298{
2299 ztest_shared_t *zs = ztest_shared;
2300 spa_t *spa = zs->zs_spa;
2301 vdev_t *rvd = spa->spa_root_vdev;
2302 nvlist_t *tree, **child, *config, *split, **schild;
2303 uint_t c, children, schildren = 0, lastlogid = 0;
2304 int error = 0;
2305
2306 VERIFY(mutex_lock(&zs->zs_vdev_lock) == 0);
2307
2308 /* ensure we have a useable config; mirrors of raidz aren't supported */
2309 if (zs->zs_mirrors < 3 || zopt_raidz > 1) {
2310 VERIFY(mutex_unlock(&zs->zs_vdev_lock) == 0);
2311 return;
2312 }
2313
2314 /* clean up the old pool, if any */
2315 (void) spa_destroy("splitp");
2316
2317 spa_config_enter(spa, SCL_VDEV, FTAG, RW_READER);
2318
2319 /* generate a config from the existing config */
2320 mutex_enter(&spa->spa_props_lock);
2321 VERIFY(nvlist_lookup_nvlist(spa->spa_config, ZPOOL_CONFIG_VDEV_TREE,
2322 &tree) == 0);
2323 mutex_exit(&spa->spa_props_lock);
2324
2325 VERIFY(nvlist_lookup_nvlist_array(tree, ZPOOL_CONFIG_CHILDREN, &child,
2326 &children) == 0);
2327
2328 schild = malloc(rvd->vdev_children * sizeof (nvlist_t *));
2329 for (c = 0; c < children; c++) {
2330 vdev_t *tvd = rvd->vdev_child[c];
2331 nvlist_t **mchild;
2332 uint_t mchildren;
2333
2334 if (tvd->vdev_islog || tvd->vdev_ops == &vdev_hole_ops) {
2335 VERIFY(nvlist_alloc(&schild[schildren], NV_UNIQUE_NAME,
2336 0) == 0);
2337 VERIFY(nvlist_add_string(schild[schildren],
2338 ZPOOL_CONFIG_TYPE, VDEV_TYPE_HOLE) == 0);
2339 VERIFY(nvlist_add_uint64(schild[schildren],
2340 ZPOOL_CONFIG_IS_HOLE, 1) == 0);
2341 if (lastlogid == 0)
2342 lastlogid = schildren;
2343 ++schildren;
2344 continue;
2345 }
2346 lastlogid = 0;
2347 VERIFY(nvlist_lookup_nvlist_array(child[c],
2348 ZPOOL_CONFIG_CHILDREN, &mchild, &mchildren) == 0);
2349 VERIFY(nvlist_dup(mchild[0], &schild[schildren++], 0) == 0);
2350 }
2351
2352 /* OK, create a config that can be used to split */
2353 VERIFY(nvlist_alloc(&split, NV_UNIQUE_NAME, 0) == 0);
2354 VERIFY(nvlist_add_string(split, ZPOOL_CONFIG_TYPE,
2355 VDEV_TYPE_ROOT) == 0);
2356 VERIFY(nvlist_add_nvlist_array(split, ZPOOL_CONFIG_CHILDREN, schild,
2357 lastlogid != 0 ? lastlogid : schildren) == 0);
2358
2359 VERIFY(nvlist_alloc(&config, NV_UNIQUE_NAME, 0) == 0);
2360 VERIFY(nvlist_add_nvlist(config, ZPOOL_CONFIG_VDEV_TREE, split) == 0);
2361
2362 for (c = 0; c < schildren; c++)
2363 nvlist_free(schild[c]);
2364 free(schild);
2365 nvlist_free(split);
2366
2367 spa_config_exit(spa, SCL_VDEV, FTAG);
2368
2369 (void) rw_wrlock(&zs->zs_name_lock);
2370 error = spa_vdev_split_mirror(spa, "splitp", config, NULL, B_FALSE);
2371 (void) rw_unlock(&zs->zs_name_lock);
2372
2373 nvlist_free(config);
2374
2375 if (error == 0) {
2376 (void) printf("successful split - results:\n");
2377 mutex_enter(&spa_namespace_lock);
2378 show_pool_stats(spa);
2379 show_pool_stats(spa_lookup("splitp"));
2380 mutex_exit(&spa_namespace_lock);
2381 ++zs->zs_splits;
2382 --zs->zs_mirrors;
2383 }
2384 VERIFY(mutex_unlock(&zs->zs_vdev_lock) == 0);
2385
34dc7c2f
BB
2386}
2387
2388/*
2389 * Verify that we can attach and detach devices.
2390 */
428870ff 2391/* ARGSUSED */
34dc7c2f 2392void
428870ff 2393ztest_vdev_attach_detach(ztest_ds_t *zd, uint64_t id)
34dc7c2f 2394{
428870ff
BB
2395 ztest_shared_t *zs = ztest_shared;
2396 spa_t *spa = zs->zs_spa;
b128c09f 2397 spa_aux_vdev_t *sav = &spa->spa_spares;
34dc7c2f
BB
2398 vdev_t *rvd = spa->spa_root_vdev;
2399 vdev_t *oldvd, *newvd, *pvd;
b128c09f 2400 nvlist_t *root;
428870ff 2401 uint64_t leaves;
34dc7c2f
BB
2402 uint64_t leaf, top;
2403 uint64_t ashift = ztest_get_ashift();
fb5f0bc8 2404 uint64_t oldguid, pguid;
34dc7c2f
BB
2405 size_t oldsize, newsize;
2406 char oldpath[MAXPATHLEN], newpath[MAXPATHLEN];
2407 int replacing;
b128c09f
BB
2408 int oldvd_has_siblings = B_FALSE;
2409 int newvd_is_spare = B_FALSE;
2410 int oldvd_is_log;
34dc7c2f 2411 int error, expected_error;
34dc7c2f 2412
428870ff
BB
2413 VERIFY(mutex_lock(&zs->zs_vdev_lock) == 0);
2414 leaves = MAX(zs->zs_mirrors, 1) * zopt_raidz;
34dc7c2f 2415
b128c09f 2416 spa_config_enter(spa, SCL_VDEV, FTAG, RW_READER);
34dc7c2f
BB
2417
2418 /*
2419 * Decide whether to do an attach or a replace.
2420 */
2421 replacing = ztest_random(2);
2422
2423 /*
2424 * Pick a random top-level vdev.
2425 */
428870ff 2426 top = ztest_random_vdev_top(spa, B_TRUE);
34dc7c2f
BB
2427
2428 /*
2429 * Pick a random leaf within it.
2430 */
2431 leaf = ztest_random(leaves);
2432
2433 /*
b128c09f 2434 * Locate this vdev.
34dc7c2f 2435 */
b128c09f 2436 oldvd = rvd->vdev_child[top];
428870ff 2437 if (zs->zs_mirrors >= 1) {
fb5f0bc8 2438 ASSERT(oldvd->vdev_ops == &vdev_mirror_ops);
428870ff 2439 ASSERT(oldvd->vdev_children >= zs->zs_mirrors);
b128c09f 2440 oldvd = oldvd->vdev_child[leaf / zopt_raidz];
fb5f0bc8
BB
2441 }
2442 if (zopt_raidz > 1) {
2443 ASSERT(oldvd->vdev_ops == &vdev_raidz_ops);
2444 ASSERT(oldvd->vdev_children == zopt_raidz);
b128c09f 2445 oldvd = oldvd->vdev_child[leaf % zopt_raidz];
fb5f0bc8 2446 }
34dc7c2f
BB
2447
2448 /*
b128c09f
BB
2449 * If we're already doing an attach or replace, oldvd may be a
2450 * mirror vdev -- in which case, pick a random child.
34dc7c2f 2451 */
b128c09f
BB
2452 while (oldvd->vdev_children != 0) {
2453 oldvd_has_siblings = B_TRUE;
fb5f0bc8
BB
2454 ASSERT(oldvd->vdev_children >= 2);
2455 oldvd = oldvd->vdev_child[ztest_random(oldvd->vdev_children)];
b128c09f
BB
2456 }
2457
2458 oldguid = oldvd->vdev_guid;
9babb374 2459 oldsize = vdev_get_min_asize(oldvd);
b128c09f
BB
2460 oldvd_is_log = oldvd->vdev_top->vdev_islog;
2461 (void) strcpy(oldpath, oldvd->vdev_path);
2462 pvd = oldvd->vdev_parent;
fb5f0bc8 2463 pguid = pvd->vdev_guid;
34dc7c2f
BB
2464
2465 /*
b128c09f 2466 * If oldvd has siblings, then half of the time, detach it.
34dc7c2f 2467 */
b128c09f
BB
2468 if (oldvd_has_siblings && ztest_random(2) == 0) {
2469 spa_config_exit(spa, SCL_VDEV, FTAG);
fb5f0bc8
BB
2470 error = spa_vdev_detach(spa, oldguid, pguid, B_FALSE);
2471 if (error != 0 && error != ENODEV && error != EBUSY &&
2472 error != ENOTSUP)
2473 fatal(0, "detach (%s) returned %d", oldpath, error);
428870ff 2474 VERIFY(mutex_unlock(&zs->zs_vdev_lock) == 0);
b128c09f
BB
2475 return;
2476 }
34dc7c2f
BB
2477
2478 /*
b128c09f
BB
2479 * For the new vdev, choose with equal probability between the two
2480 * standard paths (ending in either 'a' or 'b') or a random hot spare.
34dc7c2f 2481 */
b128c09f
BB
2482 if (sav->sav_count != 0 && ztest_random(3) == 0) {
2483 newvd = sav->sav_vdevs[ztest_random(sav->sav_count)];
2484 newvd_is_spare = B_TRUE;
2485 (void) strcpy(newpath, newvd->vdev_path);
2486 } else {
2487 (void) snprintf(newpath, sizeof (newpath), ztest_dev_template,
2488 zopt_dir, zopt_pool, top * leaves + leaf);
2489 if (ztest_random(2) == 0)
2490 newpath[strlen(newpath) - 1] = 'b';
2491 newvd = vdev_lookup_by_path(rvd, newpath);
2492 }
2493
2494 if (newvd) {
9babb374 2495 newsize = vdev_get_min_asize(newvd);
b128c09f
BB
2496 } else {
2497 /*
2498 * Make newsize a little bigger or smaller than oldsize.
2499 * If it's smaller, the attach should fail.
2500 * If it's larger, and we're doing a replace,
2501 * we should get dynamic LUN growth when we're done.
2502 */
2503 newsize = 10 * oldsize / (9 + ztest_random(3));
2504 }
34dc7c2f
BB
2505
2506 /*
2507 * If pvd is not a mirror or root, the attach should fail with ENOTSUP,
2508 * unless it's a replace; in that case any non-replacing parent is OK.
2509 *
2510 * If newvd is already part of the pool, it should fail with EBUSY.
2511 *
2512 * If newvd is too small, it should fail with EOVERFLOW.
2513 */
b128c09f
BB
2514 if (pvd->vdev_ops != &vdev_mirror_ops &&
2515 pvd->vdev_ops != &vdev_root_ops && (!replacing ||
2516 pvd->vdev_ops == &vdev_replacing_ops ||
2517 pvd->vdev_ops == &vdev_spare_ops))
34dc7c2f 2518 expected_error = ENOTSUP;
b128c09f
BB
2519 else if (newvd_is_spare && (!replacing || oldvd_is_log))
2520 expected_error = ENOTSUP;
2521 else if (newvd == oldvd)
2522 expected_error = replacing ? 0 : EBUSY;
2523 else if (vdev_lookup_by_path(rvd, newpath) != NULL)
2524 expected_error = EBUSY;
34dc7c2f
BB
2525 else if (newsize < oldsize)
2526 expected_error = EOVERFLOW;
2527 else if (ashift > oldvd->vdev_top->vdev_ashift)
2528 expected_error = EDOM;
2529 else
2530 expected_error = 0;
2531
b128c09f 2532 spa_config_exit(spa, SCL_VDEV, FTAG);
34dc7c2f
BB
2533
2534 /*
2535 * Build the nvlist describing newpath.
2536 */
b128c09f
BB
2537 root = make_vdev_root(newpath, NULL, newvd == NULL ? newsize : 0,
2538 ashift, 0, 0, 0, 1);
34dc7c2f 2539
b128c09f 2540 error = spa_vdev_attach(spa, oldguid, root, replacing);
34dc7c2f 2541
34dc7c2f
BB
2542 nvlist_free(root);
2543
2544 /*
2545 * If our parent was the replacing vdev, but the replace completed,
2546 * then instead of failing with ENOTSUP we may either succeed,
2547 * fail with ENODEV, or fail with EOVERFLOW.
2548 */
2549 if (expected_error == ENOTSUP &&
2550 (error == 0 || error == ENODEV || error == EOVERFLOW))
2551 expected_error = error;
2552
2553 /*
2554 * If someone grew the LUN, the replacement may be too small.
2555 */
b128c09f 2556 if (error == EOVERFLOW || error == EBUSY)
34dc7c2f
BB
2557 expected_error = error;
2558
b128c09f
BB
2559 /* XXX workaround 6690467 */
2560 if (error != expected_error && expected_error != EBUSY) {
2561 fatal(0, "attach (%s %llu, %s %llu, %d) "
2562 "returned %d, expected %d",
2563 oldpath, (longlong_t)oldsize, newpath,
2564 (longlong_t)newsize, replacing, error, expected_error);
34dc7c2f
BB
2565 }
2566
428870ff 2567 VERIFY(mutex_unlock(&zs->zs_vdev_lock) == 0);
34dc7c2f
BB
2568}
2569
9babb374
BB
2570/*
2571 * Callback function which expands the physical size of the vdev.
2572 */
2573vdev_t *
2574grow_vdev(vdev_t *vd, void *arg)
2575{
2576 spa_t *spa = vd->vdev_spa;
2577 size_t *newsize = arg;
2578 size_t fsize;
2579 int fd;
2580
2581 ASSERT(spa_config_held(spa, SCL_STATE, RW_READER) == SCL_STATE);
2582 ASSERT(vd->vdev_ops->vdev_op_leaf);
2583
2584 if ((fd = open(vd->vdev_path, O_RDWR)) == -1)
2585 return (vd);
2586
2587 fsize = lseek(fd, 0, SEEK_END);
2588 (void) ftruncate(fd, *newsize);
2589
2590 if (zopt_verbose >= 6) {
2591 (void) printf("%s grew from %lu to %lu bytes\n",
2592 vd->vdev_path, (ulong_t)fsize, (ulong_t)*newsize);
2593 }
2594 (void) close(fd);
2595 return (NULL);
2596}
2597
2598/*
2599 * Callback function which expands a given vdev by calling vdev_online().
2600 */
2601/* ARGSUSED */
2602vdev_t *
2603online_vdev(vdev_t *vd, void *arg)
2604{
2605 spa_t *spa = vd->vdev_spa;
2606 vdev_t *tvd = vd->vdev_top;
9babb374 2607 uint64_t guid = vd->vdev_guid;
428870ff
BB
2608 uint64_t generation = spa->spa_config_generation + 1;
2609 vdev_state_t newstate = VDEV_STATE_UNKNOWN;
2610 int error;
9babb374
BB
2611
2612 ASSERT(spa_config_held(spa, SCL_STATE, RW_READER) == SCL_STATE);
2613 ASSERT(vd->vdev_ops->vdev_op_leaf);
2614
2615 /* Calling vdev_online will initialize the new metaslabs */
2616 spa_config_exit(spa, SCL_STATE, spa);
428870ff 2617 error = vdev_online(spa, guid, ZFS_ONLINE_EXPAND, &newstate);
9babb374
BB
2618 spa_config_enter(spa, SCL_STATE, spa, RW_READER);
2619
428870ff
BB
2620 /*
2621 * If vdev_online returned an error or the underlying vdev_open
2622 * failed then we abort the expand. The only way to know that
2623 * vdev_open fails is by checking the returned newstate.
2624 */
2625 if (error || newstate != VDEV_STATE_HEALTHY) {
2626 if (zopt_verbose >= 5) {
2627 (void) printf("Unable to expand vdev, state %llu, "
2628 "error %d\n", (u_longlong_t)newstate, error);
2629 }
2630 return (vd);
2631 }
2632 ASSERT3U(newstate, ==, VDEV_STATE_HEALTHY);
2633
9babb374
BB
2634 /*
2635 * Since we dropped the lock we need to ensure that we're
2636 * still talking to the original vdev. It's possible this
2637 * vdev may have been detached/replaced while we were
2638 * trying to online it.
2639 */
428870ff
BB
2640 if (generation != spa->spa_config_generation) {
2641 if (zopt_verbose >= 5) {
2642 (void) printf("vdev configuration has changed, "
2643 "guid %llu, state %llu, expected gen %llu, "
2644 "got gen %llu\n",
2645 (u_longlong_t)guid,
2646 (u_longlong_t)tvd->vdev_state,
2647 (u_longlong_t)generation,
2648 (u_longlong_t)spa->spa_config_generation);
9babb374
BB
2649 }
2650 return (vd);
2651 }
2652 return (NULL);
2653}
2654
2655/*
2656 * Traverse the vdev tree calling the supplied function.
2657 * We continue to walk the tree until we either have walked all
2658 * children or we receive a non-NULL return from the callback.
2659 * If a NULL callback is passed, then we just return back the first
2660 * leaf vdev we encounter.
2661 */
2662vdev_t *
2663vdev_walk_tree(vdev_t *vd, vdev_t *(*func)(vdev_t *, void *), void *arg)
2664{
2665 if (vd->vdev_ops->vdev_op_leaf) {
2666 if (func == NULL)
2667 return (vd);
2668 else
2669 return (func(vd, arg));
2670 }
2671
2672 for (uint_t c = 0; c < vd->vdev_children; c++) {
2673 vdev_t *cvd = vd->vdev_child[c];
2674 if ((cvd = vdev_walk_tree(cvd, func, arg)) != NULL)
2675 return (cvd);
2676 }
2677 return (NULL);
2678}
2679
34dc7c2f
BB
2680/*
2681 * Verify that dynamic LUN growth works as expected.
2682 */
428870ff 2683/* ARGSUSED */
34dc7c2f 2684void
428870ff 2685ztest_vdev_LUN_growth(ztest_ds_t *zd, uint64_t id)
34dc7c2f 2686{
428870ff
BB
2687 ztest_shared_t *zs = ztest_shared;
2688 spa_t *spa = zs->zs_spa;
2689 vdev_t *vd, *tvd;
2690 metaslab_class_t *mc;
2691 metaslab_group_t *mg;
9babb374 2692 size_t psize, newsize;
428870ff
BB
2693 uint64_t top;
2694 uint64_t old_class_space, new_class_space, old_ms_count, new_ms_count;
34dc7c2f 2695
428870ff 2696 VERIFY(mutex_lock(&zs->zs_vdev_lock) == 0);
9babb374
BB
2697 spa_config_enter(spa, SCL_STATE, spa, RW_READER);
2698
428870ff 2699 top = ztest_random_vdev_top(spa, B_TRUE);
9babb374 2700
428870ff
BB
2701 tvd = spa->spa_root_vdev->vdev_child[top];
2702 mg = tvd->vdev_mg;
2703 mc = mg->mg_class;
2704 old_ms_count = tvd->vdev_ms_count;
2705 old_class_space = metaslab_class_get_space(mc);
34dc7c2f
BB
2706
2707 /*
9babb374
BB
2708 * Determine the size of the first leaf vdev associated with
2709 * our top-level device.
34dc7c2f 2710 */
9babb374
BB
2711 vd = vdev_walk_tree(tvd, NULL, NULL);
2712 ASSERT3P(vd, !=, NULL);
2713 ASSERT(vd->vdev_ops->vdev_op_leaf);
34dc7c2f 2714
9babb374 2715 psize = vd->vdev_psize;
34dc7c2f 2716
9babb374 2717 /*
428870ff
BB
2718 * We only try to expand the vdev if it's healthy, less than 4x its
2719 * original size, and it has a valid psize.
9babb374 2720 */
428870ff
BB
2721 if (tvd->vdev_state != VDEV_STATE_HEALTHY ||
2722 psize == 0 || psize >= 4 * zopt_vdev_size) {
9babb374 2723 spa_config_exit(spa, SCL_STATE, spa);
428870ff 2724 VERIFY(mutex_unlock(&zs->zs_vdev_lock) == 0);
9babb374
BB
2725 return;
2726 }
2727 ASSERT(psize > 0);
2728 newsize = psize + psize / 8;
2729 ASSERT3U(newsize, >, psize);
34dc7c2f 2730
9babb374 2731 if (zopt_verbose >= 6) {
428870ff 2732 (void) printf("Expanding LUN %s from %lu to %lu\n",
9babb374
BB
2733 vd->vdev_path, (ulong_t)psize, (ulong_t)newsize);
2734 }
2735
9babb374
BB
2736 /*
2737 * Growing the vdev is a two step process:
2738 * 1). expand the physical size (i.e. relabel)
2739 * 2). online the vdev to create the new metaslabs
2740 */
2741 if (vdev_walk_tree(tvd, grow_vdev, &newsize) != NULL ||
2742 vdev_walk_tree(tvd, online_vdev, NULL) != NULL ||
2743 tvd->vdev_state != VDEV_STATE_HEALTHY) {
2744 if (zopt_verbose >= 5) {
2745 (void) printf("Could not expand LUN because "
428870ff 2746 "the vdev configuration changed.\n");
34dc7c2f 2747 }
428870ff
BB
2748 spa_config_exit(spa, SCL_STATE, spa);
2749 VERIFY(mutex_unlock(&zs->zs_vdev_lock) == 0);
9babb374 2750 return;
34dc7c2f
BB
2751 }
2752
428870ff 2753 spa_config_exit(spa, SCL_STATE, spa);
9babb374
BB
2754
2755 /*
2756 * Expanding the LUN will update the config asynchronously,
2757 * thus we must wait for the async thread to complete any
2758 * pending tasks before proceeding.
2759 */
428870ff
BB
2760 for (;;) {
2761 boolean_t done;
2762 mutex_enter(&spa->spa_async_lock);
2763 done = (spa->spa_async_thread == NULL && !spa->spa_async_tasks);
2764 mutex_exit(&spa->spa_async_lock);
2765 if (done)
2766 break;
2767 txg_wait_synced(spa_get_dsl(spa), 0);
2768 (void) poll(NULL, 0, 100);
2769 }
9babb374
BB
2770
2771 spa_config_enter(spa, SCL_STATE, spa, RW_READER);
428870ff
BB
2772
2773 tvd = spa->spa_root_vdev->vdev_child[top];
2774 new_ms_count = tvd->vdev_ms_count;
2775 new_class_space = metaslab_class_get_space(mc);
2776
2777 if (tvd->vdev_mg != mg || mg->mg_class != mc) {
2778 if (zopt_verbose >= 5) {
2779 (void) printf("Could not verify LUN expansion due to "
2780 "intervening vdev offline or remove.\n");
2781 }
2782 spa_config_exit(spa, SCL_STATE, spa);
2783 VERIFY(mutex_unlock(&zs->zs_vdev_lock) == 0);
2784 return;
2785 }
2786
2787 /*
2788 * Make sure we were able to grow the vdev.
2789 */
2790 if (new_ms_count <= old_ms_count)
2791 fatal(0, "LUN expansion failed: ms_count %llu <= %llu\n",
2792 old_ms_count, new_ms_count);
9babb374
BB
2793
2794 /*
2795 * Make sure we were able to grow the pool.
2796 */
428870ff
BB
2797 if (new_class_space <= old_class_space)
2798 fatal(0, "LUN expansion failed: class_space %llu <= %llu\n",
2799 old_class_space, new_class_space);
2800
2801 if (zopt_verbose >= 5) {
9babb374
BB
2802 char oldnumbuf[6], newnumbuf[6];
2803
428870ff
BB
2804 nicenum(old_class_space, oldnumbuf);
2805 nicenum(new_class_space, newnumbuf);
9babb374
BB
2806 (void) printf("%s grew from %s to %s\n",
2807 spa->spa_name, oldnumbuf, newnumbuf);
2808 }
428870ff 2809
9babb374 2810 spa_config_exit(spa, SCL_STATE, spa);
428870ff 2811 VERIFY(mutex_unlock(&zs->zs_vdev_lock) == 0);
34dc7c2f
BB
2812}
2813
428870ff
BB
2814/*
2815 * Verify that dmu_objset_{create,destroy,open,close} work as expected.
2816 */
34dc7c2f
BB
2817/* ARGSUSED */
2818static void
428870ff 2819ztest_objset_create_cb(objset_t *os, void *arg, cred_t *cr, dmu_tx_t *tx)
34dc7c2f
BB
2820{
2821 /*
428870ff 2822 * Create the objects common to all ztest datasets.
34dc7c2f 2823 */
428870ff 2824 VERIFY(zap_create_claim(os, ZTEST_DIROBJ,
34dc7c2f 2825 DMU_OT_ZAP_OTHER, DMU_OT_NONE, 0, tx) == 0);
428870ff 2826}
34dc7c2f 2827
428870ff
BB
2828static int
2829ztest_dataset_create(char *dsname)
2830{
2831 uint64_t zilset = ztest_random(100);
2832 int err = dmu_objset_create(dsname, DMU_OST_OTHER, 0,
2833 ztest_objset_create_cb, NULL);
2834
2835 if (err || zilset < 80)
2836 return (err);
2837
2838 (void) printf("Setting dataset %s to sync always\n", dsname);
2839 return (ztest_dsl_prop_set_uint64(dsname, ZFS_PROP_SYNC,
2840 ZFS_SYNC_ALWAYS, B_FALSE));
34dc7c2f
BB
2841}
2842
428870ff 2843/* ARGSUSED */
34dc7c2f 2844static int
428870ff 2845ztest_objset_destroy_cb(const char *name, void *arg)
34dc7c2f 2846{
34dc7c2f 2847 objset_t *os;
428870ff 2848 dmu_object_info_t doi;
34dc7c2f
BB
2849 int error;
2850
2851 /*
2852 * Verify that the dataset contains a directory object.
2853 */
428870ff
BB
2854 VERIFY3U(0, ==, dmu_objset_hold(name, FTAG, &os));
2855 error = dmu_object_info(os, ZTEST_DIROBJ, &doi);
34dc7c2f
BB
2856 if (error != ENOENT) {
2857 /* We could have crashed in the middle of destroying it */
2858 ASSERT3U(error, ==, 0);
428870ff
BB
2859 ASSERT3U(doi.doi_type, ==, DMU_OT_ZAP_OTHER);
2860 ASSERT3S(doi.doi_physical_blocks_512, >=, 0);
34dc7c2f 2861 }
428870ff 2862 dmu_objset_rele(os, FTAG);
34dc7c2f
BB
2863
2864 /*
2865 * Destroy the dataset.
2866 */
428870ff 2867 VERIFY3U(0, ==, dmu_objset_destroy(name, B_FALSE));
34dc7c2f
BB
2868 return (0);
2869}
2870
428870ff
BB
2871static boolean_t
2872ztest_snapshot_create(char *osname, uint64_t id)
34dc7c2f 2873{
428870ff
BB
2874 char snapname[MAXNAMELEN];
2875 int error;
2876
2877 (void) snprintf(snapname, MAXNAMELEN, "%s@%llu", osname,
2878 (u_longlong_t)id);
2879
2880 error = dmu_objset_snapshot(osname, strchr(snapname, '@') + 1,
572e2857 2881 NULL, NULL, B_FALSE, B_FALSE, -1);
428870ff
BB
2882 if (error == ENOSPC) {
2883 ztest_record_enospc(FTAG);
2884 return (B_FALSE);
2885 }
2886 if (error != 0 && error != EEXIST)
2887 fatal(0, "ztest_snapshot_create(%s) = %d", snapname, error);
2888 return (B_TRUE);
2889}
2890
2891static boolean_t
2892ztest_snapshot_destroy(char *osname, uint64_t id)
2893{
2894 char snapname[MAXNAMELEN];
2895 int error;
2896
2897 (void) snprintf(snapname, MAXNAMELEN, "%s@%llu", osname,
2898 (u_longlong_t)id);
2899
2900 error = dmu_objset_destroy(snapname, B_FALSE);
2901 if (error != 0 && error != ENOENT)
2902 fatal(0, "ztest_snapshot_destroy(%s) = %d", snapname, error);
2903 return (B_TRUE);
34dc7c2f
BB
2904}
2905
428870ff 2906/* ARGSUSED */
34dc7c2f 2907void
428870ff 2908ztest_dmu_objset_create_destroy(ztest_ds_t *zd, uint64_t id)
34dc7c2f 2909{
428870ff
BB
2910 ztest_shared_t *zs = ztest_shared;
2911 ztest_ds_t zdtmp;
2912 int iters;
34dc7c2f 2913 int error;
b128c09f 2914 objset_t *os, *os2;
428870ff 2915 char name[MAXNAMELEN];
34dc7c2f 2916 zilog_t *zilog;
34dc7c2f 2917
428870ff 2918 (void) rw_rdlock(&zs->zs_name_lock);
34dc7c2f 2919
428870ff
BB
2920 (void) snprintf(name, MAXNAMELEN, "%s/temp_%llu",
2921 zs->zs_pool, (u_longlong_t)id);
34dc7c2f
BB
2922
2923 /*
2924 * If this dataset exists from a previous run, process its replay log
2925 * half of the time. If we don't replay it, then dmu_objset_destroy()
428870ff 2926 * (invoked from ztest_objset_destroy_cb()) should just throw it away.
34dc7c2f
BB
2927 */
2928 if (ztest_random(2) == 0 &&
428870ff
BB
2929 dmu_objset_own(name, DMU_OST_OTHER, B_FALSE, FTAG, &os) == 0) {
2930 ztest_zd_init(&zdtmp, os);
2931 zil_replay(os, &zdtmp, ztest_replay_vector);
2932 ztest_zd_fini(&zdtmp);
2933 dmu_objset_disown(os, FTAG);
34dc7c2f
BB
2934 }
2935
2936 /*
2937 * There may be an old instance of the dataset we're about to
2938 * create lying around from a previous run. If so, destroy it
2939 * and all of its snapshots.
2940 */
428870ff 2941 (void) dmu_objset_find(name, ztest_objset_destroy_cb, NULL,
34dc7c2f
BB
2942 DS_FIND_CHILDREN | DS_FIND_SNAPSHOTS);
2943
2944 /*
2945 * Verify that the destroyed dataset is no longer in the namespace.
2946 */
428870ff 2947 VERIFY3U(ENOENT, ==, dmu_objset_hold(name, FTAG, &os));
34dc7c2f
BB
2948
2949 /*
2950 * Verify that we can create a new dataset.
2951 */
428870ff 2952 error = ztest_dataset_create(name);
34dc7c2f
BB
2953 if (error) {
2954 if (error == ENOSPC) {
428870ff
BB
2955 ztest_record_enospc(FTAG);
2956 (void) rw_unlock(&zs->zs_name_lock);
34dc7c2f
BB
2957 return;
2958 }
2959 fatal(0, "dmu_objset_create(%s) = %d", name, error);
2960 }
2961
428870ff
BB
2962 VERIFY3U(0, ==,
2963 dmu_objset_own(name, DMU_OST_OTHER, B_FALSE, FTAG, &os));
2964
2965 ztest_zd_init(&zdtmp, os);
34dc7c2f
BB
2966
2967 /*
2968 * Open the intent log for it.
2969 */
428870ff 2970 zilog = zil_open(os, ztest_get_data);
34dc7c2f
BB
2971
2972 /*
428870ff
BB
2973 * Put some objects in there, do a little I/O to them,
2974 * and randomly take a couple of snapshots along the way.
34dc7c2f 2975 */
428870ff
BB
2976 iters = ztest_random(5);
2977 for (int i = 0; i < iters; i++) {
2978 ztest_dmu_object_alloc_free(&zdtmp, id);
2979 if (ztest_random(iters) == 0)
2980 (void) ztest_snapshot_create(name, i);
34dc7c2f
BB
2981 }
2982
2983 /*
2984 * Verify that we cannot create an existing dataset.
2985 */
428870ff
BB
2986 VERIFY3U(EEXIST, ==,
2987 dmu_objset_create(name, DMU_OST_OTHER, 0, NULL, NULL));
34dc7c2f
BB
2988
2989 /*
428870ff 2990 * Verify that we can hold an objset that is also owned.
b128c09f 2991 */
428870ff
BB
2992 VERIFY3U(0, ==, dmu_objset_hold(name, FTAG, &os2));
2993 dmu_objset_rele(os2, FTAG);
34dc7c2f 2994
428870ff
BB
2995 /*
2996 * Verify that we cannot own an objset that is already owned.
2997 */
2998 VERIFY3U(EBUSY, ==,
2999 dmu_objset_own(name, DMU_OST_OTHER, B_FALSE, FTAG, &os2));
34dc7c2f 3000
428870ff
BB
3001 zil_close(zilog);
3002 dmu_objset_disown(os, FTAG);
3003 ztest_zd_fini(&zdtmp);
34dc7c2f 3004
428870ff 3005 (void) rw_unlock(&zs->zs_name_lock);
34dc7c2f
BB
3006}
3007
3008/*
3009 * Verify that dmu_snapshot_{create,destroy,open,close} work as expected.
3010 */
3011void
428870ff 3012ztest_dmu_snapshot_create_destroy(ztest_ds_t *zd, uint64_t id)
34dc7c2f 3013{
428870ff 3014 ztest_shared_t *zs = ztest_shared;
34dc7c2f 3015
428870ff
BB
3016 (void) rw_rdlock(&zs->zs_name_lock);
3017 (void) ztest_snapshot_destroy(zd->zd_name, id);
3018 (void) ztest_snapshot_create(zd->zd_name, id);
3019 (void) rw_unlock(&zs->zs_name_lock);
34dc7c2f
BB
3020}
3021
9babb374
BB
3022/*
3023 * Cleanup non-standard snapshots and clones.
3024 */
3025void
428870ff 3026ztest_dsl_dataset_cleanup(char *osname, uint64_t id)
9babb374 3027{
428870ff
BB
3028 char snap1name[MAXNAMELEN];
3029 char clone1name[MAXNAMELEN];
3030 char snap2name[MAXNAMELEN];
3031 char clone2name[MAXNAMELEN];
3032 char snap3name[MAXNAMELEN];
9babb374
BB
3033 int error;
3034
428870ff
BB
3035 (void) snprintf(snap1name, MAXNAMELEN, "%s@s1_%llu", osname, id);
3036 (void) snprintf(clone1name, MAXNAMELEN, "%s/c1_%llu", osname, id);
3037 (void) snprintf(snap2name, MAXNAMELEN, "%s@s2_%llu", clone1name, id);
3038 (void) snprintf(clone2name, MAXNAMELEN, "%s/c2_%llu", osname, id);
3039 (void) snprintf(snap3name, MAXNAMELEN, "%s@s3_%llu", clone1name, id);
9babb374 3040
45d1cae3 3041 error = dmu_objset_destroy(clone2name, B_FALSE);
9babb374
BB
3042 if (error && error != ENOENT)
3043 fatal(0, "dmu_objset_destroy(%s) = %d", clone2name, error);
45d1cae3 3044 error = dmu_objset_destroy(snap3name, B_FALSE);
9babb374
BB
3045 if (error && error != ENOENT)
3046 fatal(0, "dmu_objset_destroy(%s) = %d", snap3name, error);
45d1cae3 3047 error = dmu_objset_destroy(snap2name, B_FALSE);
9babb374
BB
3048 if (error && error != ENOENT)
3049 fatal(0, "dmu_objset_destroy(%s) = %d", snap2name, error);
45d1cae3 3050 error = dmu_objset_destroy(clone1name, B_FALSE);
9babb374
BB
3051 if (error && error != ENOENT)
3052 fatal(0, "dmu_objset_destroy(%s) = %d", clone1name, error);
45d1cae3 3053 error = dmu_objset_destroy(snap1name, B_FALSE);
9babb374
BB
3054 if (error && error != ENOENT)
3055 fatal(0, "dmu_objset_destroy(%s) = %d", snap1name, error);
3056}
3057
3058/*
3059 * Verify dsl_dataset_promote handles EBUSY
3060 */
3061void
428870ff 3062ztest_dsl_dataset_promote_busy(ztest_ds_t *zd, uint64_t id)
9babb374 3063{
428870ff 3064 ztest_shared_t *zs = ztest_shared;
9babb374
BB
3065 objset_t *clone;
3066 dsl_dataset_t *ds;
428870ff
BB
3067 char snap1name[MAXNAMELEN];
3068 char clone1name[MAXNAMELEN];
3069 char snap2name[MAXNAMELEN];
3070 char clone2name[MAXNAMELEN];
3071 char snap3name[MAXNAMELEN];
3072 char *osname = zd->zd_name;
3073 int error;
9babb374 3074
428870ff 3075 (void) rw_rdlock(&zs->zs_name_lock);
9babb374 3076
428870ff 3077 ztest_dsl_dataset_cleanup(osname, id);
9babb374 3078
428870ff
BB
3079 (void) snprintf(snap1name, MAXNAMELEN, "%s@s1_%llu", osname, id);
3080 (void) snprintf(clone1name, MAXNAMELEN, "%s/c1_%llu", osname, id);
3081 (void) snprintf(snap2name, MAXNAMELEN, "%s@s2_%llu", clone1name, id);
3082 (void) snprintf(clone2name, MAXNAMELEN, "%s/c2_%llu", osname, id);
3083 (void) snprintf(snap3name, MAXNAMELEN, "%s@s3_%llu", clone1name, id);
9babb374
BB
3084
3085 error = dmu_objset_snapshot(osname, strchr(snap1name, '@')+1,
572e2857 3086 NULL, NULL, B_FALSE, B_FALSE, -1);
9babb374
BB
3087 if (error && error != EEXIST) {
3088 if (error == ENOSPC) {
428870ff 3089 ztest_record_enospc(FTAG);
9babb374
BB
3090 goto out;
3091 }
3092 fatal(0, "dmu_take_snapshot(%s) = %d", snap1name, error);
3093 }
3094
428870ff 3095 error = dmu_objset_hold(snap1name, FTAG, &clone);
9babb374
BB
3096 if (error)
3097 fatal(0, "dmu_open_snapshot(%s) = %d", snap1name, error);
3098
428870ff
BB
3099 error = dmu_objset_clone(clone1name, dmu_objset_ds(clone), 0);
3100 dmu_objset_rele(clone, FTAG);
9babb374
BB
3101 if (error) {
3102 if (error == ENOSPC) {
428870ff 3103 ztest_record_enospc(FTAG);
9babb374
BB
3104 goto out;
3105 }
3106 fatal(0, "dmu_objset_create(%s) = %d", clone1name, error);
3107 }
3108
428870ff 3109 error = dmu_objset_snapshot(clone1name, strchr(snap2name, '@')+1,
572e2857 3110 NULL, NULL, B_FALSE, B_FALSE, -1);
428870ff
BB
3111 if (error && error != EEXIST) {
3112 if (error == ENOSPC) {
3113 ztest_record_enospc(FTAG);
3114 goto out;
34dc7c2f 3115 }
428870ff
BB
3116 fatal(0, "dmu_open_snapshot(%s) = %d", snap2name, error);
3117 }
34dc7c2f 3118
428870ff 3119 error = dmu_objset_snapshot(clone1name, strchr(snap3name, '@')+1,
572e2857 3120 NULL, NULL, B_FALSE, B_FALSE, -1);
428870ff
BB
3121 if (error && error != EEXIST) {
3122 if (error == ENOSPC) {
3123 ztest_record_enospc(FTAG);
3124 goto out;
3125 }
3126 fatal(0, "dmu_open_snapshot(%s) = %d", snap3name, error);
3127 }
34dc7c2f 3128
428870ff
BB
3129 error = dmu_objset_hold(snap3name, FTAG, &clone);
3130 if (error)
3131 fatal(0, "dmu_open_snapshot(%s) = %d", snap3name, error);
34dc7c2f 3132
428870ff
BB
3133 error = dmu_objset_clone(clone2name, dmu_objset_ds(clone), 0);
3134 dmu_objset_rele(clone, FTAG);
3135 if (error) {
3136 if (error == ENOSPC) {
3137 ztest_record_enospc(FTAG);
3138 goto out;
3139 }
3140 fatal(0, "dmu_objset_create(%s) = %d", clone2name, error);
3141 }
34dc7c2f 3142
428870ff
BB
3143 error = dsl_dataset_own(snap2name, B_FALSE, FTAG, &ds);
3144 if (error)
3145 fatal(0, "dsl_dataset_own(%s) = %d", snap2name, error);
3146 error = dsl_dataset_promote(clone2name, NULL);
3147 if (error != EBUSY)
3148 fatal(0, "dsl_dataset_promote(%s), %d, not EBUSY", clone2name,
3149 error);
3150 dsl_dataset_disown(ds, FTAG);
34dc7c2f 3151
428870ff
BB
3152out:
3153 ztest_dsl_dataset_cleanup(osname, id);
34dc7c2f 3154
428870ff
BB
3155 (void) rw_unlock(&zs->zs_name_lock);
3156}
34dc7c2f 3157
428870ff
BB
3158/*
3159 * Verify that dmu_object_{alloc,free} work as expected.
3160 */
3161void
3162ztest_dmu_object_alloc_free(ztest_ds_t *zd, uint64_t id)
3163{
3164 ztest_od_t od[4];
3165 int batchsize = sizeof (od) / sizeof (od[0]);
34dc7c2f 3166
428870ff
BB
3167 for (int b = 0; b < batchsize; b++)
3168 ztest_od_init(&od[b], id, FTAG, b, DMU_OT_UINT64_OTHER, 0, 0);
34dc7c2f 3169
428870ff
BB
3170 /*
3171 * Destroy the previous batch of objects, create a new batch,
3172 * and do some I/O on the new objects.
3173 */
3174 if (ztest_object_init(zd, od, sizeof (od), B_TRUE) != 0)
3175 return;
34dc7c2f 3176
428870ff
BB
3177 while (ztest_random(4 * batchsize) != 0)
3178 ztest_io(zd, od[ztest_random(batchsize)].od_object,
3179 ztest_random(ZTEST_RANGE_LOCKS) << SPA_MAXBLOCKSHIFT);
34dc7c2f
BB
3180}
3181
3182/*
3183 * Verify that dmu_{read,write} work as expected.
3184 */
34dc7c2f 3185void
428870ff 3186ztest_dmu_read_write(ztest_ds_t *zd, uint64_t id)
34dc7c2f 3187{
428870ff
BB
3188 objset_t *os = zd->zd_os;
3189 ztest_od_t od[2];
34dc7c2f
BB
3190 dmu_tx_t *tx;
3191 int i, freeit, error;
3192 uint64_t n, s, txg;
3193 bufwad_t *packbuf, *bigbuf, *pack, *bigH, *bigT;
428870ff
BB
3194 uint64_t packobj, packoff, packsize, bigobj, bigoff, bigsize;
3195 uint64_t chunksize = (1000 + ztest_random(1000)) * sizeof (uint64_t);
34dc7c2f
BB
3196 uint64_t regions = 997;
3197 uint64_t stride = 123456789ULL;
3198 uint64_t width = 40;
3199 int free_percent = 5;
3200
3201 /*
3202 * This test uses two objects, packobj and bigobj, that are always
3203 * updated together (i.e. in the same tx) so that their contents are
3204 * in sync and can be compared. Their contents relate to each other
3205 * in a simple way: packobj is a dense array of 'bufwad' structures,
3206 * while bigobj is a sparse array of the same bufwads. Specifically,
3207 * for any index n, there are three bufwads that should be identical:
3208 *
3209 * packobj, at offset n * sizeof (bufwad_t)
3210 * bigobj, at the head of the nth chunk
3211 * bigobj, at the tail of the nth chunk
3212 *
3213 * The chunk size is arbitrary. It doesn't have to be a power of two,
3214 * and it doesn't have any relation to the object blocksize.
3215 * The only requirement is that it can hold at least two bufwads.
3216 *
3217 * Normally, we write the bufwad to each of these locations.
3218 * However, free_percent of the time we instead write zeroes to
3219 * packobj and perform a dmu_free_range() on bigobj. By comparing
3220 * bigobj to packobj, we can verify that the DMU is correctly
3221 * tracking which parts of an object are allocated and free,
3222 * and that the contents of the allocated blocks are correct.
3223 */
3224
3225 /*
3226 * Read the directory info. If it's the first time, set things up.
3227 */
428870ff
BB
3228 ztest_od_init(&od[0], id, FTAG, 0, DMU_OT_UINT64_OTHER, 0, chunksize);
3229 ztest_od_init(&od[1], id, FTAG, 1, DMU_OT_UINT64_OTHER, 0, chunksize);
34dc7c2f 3230
428870ff
BB
3231 if (ztest_object_init(zd, od, sizeof (od), B_FALSE) != 0)
3232 return;
34dc7c2f 3233
428870ff
BB
3234 bigobj = od[0].od_object;
3235 packobj = od[1].od_object;
3236 chunksize = od[0].od_gen;
3237 ASSERT(chunksize == od[1].od_gen);
34dc7c2f
BB
3238
3239 /*
3240 * Prefetch a random chunk of the big object.
3241 * Our aim here is to get some async reads in flight
3242 * for blocks that we may free below; the DMU should
3243 * handle this race correctly.
3244 */
3245 n = ztest_random(regions) * stride + ztest_random(width);
3246 s = 1 + ztest_random(2 * width - 1);
428870ff 3247 dmu_prefetch(os, bigobj, n * chunksize, s * chunksize);
34dc7c2f
BB
3248
3249 /*
3250 * Pick a random index and compute the offsets into packobj and bigobj.
3251 */
3252 n = ztest_random(regions) * stride + ztest_random(width);
3253 s = 1 + ztest_random(width - 1);
3254
3255 packoff = n * sizeof (bufwad_t);
3256 packsize = s * sizeof (bufwad_t);
3257
428870ff
BB
3258 bigoff = n * chunksize;
3259 bigsize = s * chunksize;
34dc7c2f
BB
3260
3261 packbuf = umem_alloc(packsize, UMEM_NOFAIL);
3262 bigbuf = umem_alloc(bigsize, UMEM_NOFAIL);
3263
3264 /*
3265 * free_percent of the time, free a range of bigobj rather than
3266 * overwriting it.
3267 */
3268 freeit = (ztest_random(100) < free_percent);
3269
3270 /*
3271 * Read the current contents of our objects.
3272 */
428870ff 3273 error = dmu_read(os, packobj, packoff, packsize, packbuf,
9babb374 3274 DMU_READ_PREFETCH);
34dc7c2f 3275 ASSERT3U(error, ==, 0);
428870ff 3276 error = dmu_read(os, bigobj, bigoff, bigsize, bigbuf,
9babb374 3277 DMU_READ_PREFETCH);
34dc7c2f
BB
3278 ASSERT3U(error, ==, 0);
3279
3280 /*
3281 * Get a tx for the mods to both packobj and bigobj.
3282 */
3283 tx = dmu_tx_create(os);
3284
428870ff 3285 dmu_tx_hold_write(tx, packobj, packoff, packsize);
34dc7c2f
BB
3286
3287 if (freeit)
428870ff 3288 dmu_tx_hold_free(tx, bigobj, bigoff, bigsize);
34dc7c2f 3289 else
428870ff 3290 dmu_tx_hold_write(tx, bigobj, bigoff, bigsize);
34dc7c2f 3291
428870ff
BB
3292 txg = ztest_tx_assign(tx, TXG_MIGHTWAIT, FTAG);
3293 if (txg == 0) {
34dc7c2f
BB
3294 umem_free(packbuf, packsize);
3295 umem_free(bigbuf, bigsize);
3296 return;
3297 }
3298
428870ff
BB
3299 dmu_object_set_checksum(os, bigobj,
3300 (enum zio_checksum)ztest_random_dsl_prop(ZFS_PROP_CHECKSUM), tx);
3301
3302 dmu_object_set_compress(os, bigobj,
3303 (enum zio_compress)ztest_random_dsl_prop(ZFS_PROP_COMPRESSION), tx);
34dc7c2f
BB
3304
3305 /*
3306 * For each index from n to n + s, verify that the existing bufwad
3307 * in packobj matches the bufwads at the head and tail of the
3308 * corresponding chunk in bigobj. Then update all three bufwads
3309 * with the new values we want to write out.
3310 */
3311 for (i = 0; i < s; i++) {
3312 /* LINTED */
3313 pack = (bufwad_t *)((char *)packbuf + i * sizeof (bufwad_t));
3314 /* LINTED */
428870ff 3315 bigH = (bufwad_t *)((char *)bigbuf + i * chunksize);
34dc7c2f 3316 /* LINTED */
428870ff 3317 bigT = (bufwad_t *)((char *)bigH + chunksize) - 1;
34dc7c2f
BB
3318
3319 ASSERT((uintptr_t)bigH - (uintptr_t)bigbuf < bigsize);
3320 ASSERT((uintptr_t)bigT - (uintptr_t)bigbuf < bigsize);
3321
3322 if (pack->bw_txg > txg)
3323 fatal(0, "future leak: got %llx, open txg is %llx",
3324 pack->bw_txg, txg);
3325
3326 if (pack->bw_data != 0 && pack->bw_index != n + i)
3327 fatal(0, "wrong index: got %llx, wanted %llx+%llx",
3328 pack->bw_index, n, i);
3329
3330 if (bcmp(pack, bigH, sizeof (bufwad_t)) != 0)
3331 fatal(0, "pack/bigH mismatch in %p/%p", pack, bigH);
3332
3333 if (bcmp(pack, bigT, sizeof (bufwad_t)) != 0)
3334 fatal(0, "pack/bigT mismatch in %p/%p", pack, bigT);
3335
3336 if (freeit) {
3337 bzero(pack, sizeof (bufwad_t));
3338 } else {
3339 pack->bw_index = n + i;
3340 pack->bw_txg = txg;
3341 pack->bw_data = 1 + ztest_random(-2ULL);
3342 }
3343 *bigH = *pack;
3344 *bigT = *pack;
3345 }
3346
3347 /*
3348 * We've verified all the old bufwads, and made new ones.
3349 * Now write them out.
3350 */
428870ff 3351 dmu_write(os, packobj, packoff, packsize, packbuf, tx);
34dc7c2f
BB
3352
3353 if (freeit) {
428870ff 3354 if (zopt_verbose >= 7) {
34dc7c2f
BB
3355 (void) printf("freeing offset %llx size %llx"
3356 " txg %llx\n",
3357 (u_longlong_t)bigoff,
3358 (u_longlong_t)bigsize,
3359 (u_longlong_t)txg);
3360 }
428870ff 3361 VERIFY(0 == dmu_free_range(os, bigobj, bigoff, bigsize, tx));
34dc7c2f 3362 } else {
428870ff 3363 if (zopt_verbose >= 7) {
34dc7c2f
BB
3364 (void) printf("writing offset %llx size %llx"
3365 " txg %llx\n",
3366 (u_longlong_t)bigoff,
3367 (u_longlong_t)bigsize,
3368 (u_longlong_t)txg);
3369 }
428870ff 3370 dmu_write(os, bigobj, bigoff, bigsize, bigbuf, tx);
34dc7c2f
BB
3371 }
3372
3373 dmu_tx_commit(tx);
3374
3375 /*
3376 * Sanity check the stuff we just wrote.
3377 */
3378 {
3379 void *packcheck = umem_alloc(packsize, UMEM_NOFAIL);
3380 void *bigcheck = umem_alloc(bigsize, UMEM_NOFAIL);
3381
428870ff 3382 VERIFY(0 == dmu_read(os, packobj, packoff,
9babb374 3383 packsize, packcheck, DMU_READ_PREFETCH));
428870ff 3384 VERIFY(0 == dmu_read(os, bigobj, bigoff,
9babb374 3385 bigsize, bigcheck, DMU_READ_PREFETCH));
34dc7c2f
BB
3386
3387 ASSERT(bcmp(packbuf, packcheck, packsize) == 0);
3388 ASSERT(bcmp(bigbuf, bigcheck, bigsize) == 0);
3389
3390 umem_free(packcheck, packsize);
3391 umem_free(bigcheck, bigsize);
3392 }
3393
3394 umem_free(packbuf, packsize);
3395 umem_free(bigbuf, bigsize);
3396}
3397
9babb374
BB
3398void
3399compare_and_update_pbbufs(uint64_t s, bufwad_t *packbuf, bufwad_t *bigbuf,
428870ff 3400 uint64_t bigsize, uint64_t n, uint64_t chunksize, uint64_t txg)
9babb374
BB
3401{
3402 uint64_t i;
3403 bufwad_t *pack;
3404 bufwad_t *bigH;
3405 bufwad_t *bigT;
3406
3407 /*
3408 * For each index from n to n + s, verify that the existing bufwad
3409 * in packobj matches the bufwads at the head and tail of the
3410 * corresponding chunk in bigobj. Then update all three bufwads
3411 * with the new values we want to write out.
3412 */
3413 for (i = 0; i < s; i++) {
3414 /* LINTED */
3415 pack = (bufwad_t *)((char *)packbuf + i * sizeof (bufwad_t));
3416 /* LINTED */
428870ff 3417 bigH = (bufwad_t *)((char *)bigbuf + i * chunksize);
9babb374 3418 /* LINTED */
428870ff 3419 bigT = (bufwad_t *)((char *)bigH + chunksize) - 1;
9babb374
BB
3420
3421 ASSERT((uintptr_t)bigH - (uintptr_t)bigbuf < bigsize);
3422 ASSERT((uintptr_t)bigT - (uintptr_t)bigbuf < bigsize);
3423
3424 if (pack->bw_txg > txg)
3425 fatal(0, "future leak: got %llx, open txg is %llx",
3426 pack->bw_txg, txg);
3427
3428 if (pack->bw_data != 0 && pack->bw_index != n + i)
3429 fatal(0, "wrong index: got %llx, wanted %llx+%llx",
3430 pack->bw_index, n, i);
3431
3432 if (bcmp(pack, bigH, sizeof (bufwad_t)) != 0)
3433 fatal(0, "pack/bigH mismatch in %p/%p", pack, bigH);
3434
3435 if (bcmp(pack, bigT, sizeof (bufwad_t)) != 0)
3436 fatal(0, "pack/bigT mismatch in %p/%p", pack, bigT);
3437
3438 pack->bw_index = n + i;
3439 pack->bw_txg = txg;
3440 pack->bw_data = 1 + ztest_random(-2ULL);
3441
3442 *bigH = *pack;
3443 *bigT = *pack;
3444 }
3445}
3446
3447void
428870ff 3448ztest_dmu_read_write_zcopy(ztest_ds_t *zd, uint64_t id)
9babb374 3449{
428870ff
BB
3450 objset_t *os = zd->zd_os;
3451 ztest_od_t od[2];
9babb374
BB
3452 dmu_tx_t *tx;
3453 uint64_t i;
3454 int error;
3455 uint64_t n, s, txg;
3456 bufwad_t *packbuf, *bigbuf;
428870ff
BB
3457 uint64_t packobj, packoff, packsize, bigobj, bigoff, bigsize;
3458 uint64_t blocksize = ztest_random_blocksize();
3459 uint64_t chunksize = blocksize;
9babb374
BB
3460 uint64_t regions = 997;
3461 uint64_t stride = 123456789ULL;
3462 uint64_t width = 9;
3463 dmu_buf_t *bonus_db;
3464 arc_buf_t **bigbuf_arcbufs;
428870ff 3465 dmu_object_info_t doi;
9babb374
BB
3466
3467 /*
3468 * This test uses two objects, packobj and bigobj, that are always
3469 * updated together (i.e. in the same tx) so that their contents are
3470 * in sync and can be compared. Their contents relate to each other
3471 * in a simple way: packobj is a dense array of 'bufwad' structures,
3472 * while bigobj is a sparse array of the same bufwads. Specifically,
3473 * for any index n, there are three bufwads that should be identical:
3474 *
3475 * packobj, at offset n * sizeof (bufwad_t)
3476 * bigobj, at the head of the nth chunk
3477 * bigobj, at the tail of the nth chunk
3478 *
3479 * The chunk size is set equal to bigobj block size so that
3480 * dmu_assign_arcbuf() can be tested for object updates.
3481 */
3482
3483 /*
3484 * Read the directory info. If it's the first time, set things up.
3485 */
428870ff
BB
3486 ztest_od_init(&od[0], id, FTAG, 0, DMU_OT_UINT64_OTHER, blocksize, 0);
3487 ztest_od_init(&od[1], id, FTAG, 1, DMU_OT_UINT64_OTHER, 0, chunksize);
9babb374 3488
428870ff
BB
3489 if (ztest_object_init(zd, od, sizeof (od), B_FALSE) != 0)
3490 return;
9babb374 3491
428870ff
BB
3492 bigobj = od[0].od_object;
3493 packobj = od[1].od_object;
3494 blocksize = od[0].od_blocksize;
3495 chunksize = blocksize;
3496 ASSERT(chunksize == od[1].od_gen);
9babb374 3497
428870ff
BB
3498 VERIFY(dmu_object_info(os, bigobj, &doi) == 0);
3499 VERIFY(ISP2(doi.doi_data_block_size));
3500 VERIFY(chunksize == doi.doi_data_block_size);
3501 VERIFY(chunksize >= 2 * sizeof (bufwad_t));
9babb374
BB
3502
3503 /*
3504 * Pick a random index and compute the offsets into packobj and bigobj.
3505 */
3506 n = ztest_random(regions) * stride + ztest_random(width);
3507 s = 1 + ztest_random(width - 1);
3508
3509 packoff = n * sizeof (bufwad_t);
3510 packsize = s * sizeof (bufwad_t);
3511
428870ff
BB
3512 bigoff = n * chunksize;
3513 bigsize = s * chunksize;
9babb374
BB
3514
3515 packbuf = umem_zalloc(packsize, UMEM_NOFAIL);
3516 bigbuf = umem_zalloc(bigsize, UMEM_NOFAIL);
3517
428870ff 3518 VERIFY3U(0, ==, dmu_bonus_hold(os, bigobj, FTAG, &bonus_db));
9babb374
BB
3519
3520 bigbuf_arcbufs = umem_zalloc(2 * s * sizeof (arc_buf_t *), UMEM_NOFAIL);
3521
3522 /*
3523 * Iteration 0 test zcopy for DB_UNCACHED dbufs.
3524 * Iteration 1 test zcopy to already referenced dbufs.
3525 * Iteration 2 test zcopy to dirty dbuf in the same txg.
3526 * Iteration 3 test zcopy to dbuf dirty in previous txg.
3527 * Iteration 4 test zcopy when dbuf is no longer dirty.
3528 * Iteration 5 test zcopy when it can't be done.
3529 * Iteration 6 one more zcopy write.
3530 */
3531 for (i = 0; i < 7; i++) {
3532 uint64_t j;
3533 uint64_t off;
3534
3535 /*
3536 * In iteration 5 (i == 5) use arcbufs
3537 * that don't match bigobj blksz to test
3538 * dmu_assign_arcbuf() when it can't directly
3539 * assign an arcbuf to a dbuf.
3540 */
3541 for (j = 0; j < s; j++) {
3542 if (i != 5) {
3543 bigbuf_arcbufs[j] =
428870ff 3544 dmu_request_arcbuf(bonus_db, chunksize);
9babb374
BB
3545 } else {
3546 bigbuf_arcbufs[2 * j] =
428870ff 3547 dmu_request_arcbuf(bonus_db, chunksize / 2);
9babb374 3548 bigbuf_arcbufs[2 * j + 1] =
428870ff 3549 dmu_request_arcbuf(bonus_db, chunksize / 2);
9babb374
BB
3550 }
3551 }
3552
3553 /*
3554 * Get a tx for the mods to both packobj and bigobj.
3555 */
3556 tx = dmu_tx_create(os);
3557
428870ff
BB
3558 dmu_tx_hold_write(tx, packobj, packoff, packsize);
3559 dmu_tx_hold_write(tx, bigobj, bigoff, bigsize);
9babb374 3560
428870ff
BB
3561 txg = ztest_tx_assign(tx, TXG_MIGHTWAIT, FTAG);
3562 if (txg == 0) {
9babb374
BB
3563 umem_free(packbuf, packsize);
3564 umem_free(bigbuf, bigsize);
3565 for (j = 0; j < s; j++) {
3566 if (i != 5) {
3567 dmu_return_arcbuf(bigbuf_arcbufs[j]);
3568 } else {
3569 dmu_return_arcbuf(
3570 bigbuf_arcbufs[2 * j]);
3571 dmu_return_arcbuf(
3572 bigbuf_arcbufs[2 * j + 1]);
3573 }
3574 }
3575 umem_free(bigbuf_arcbufs, 2 * s * sizeof (arc_buf_t *));
3576 dmu_buf_rele(bonus_db, FTAG);
3577 return;
3578 }
3579
9babb374
BB
3580 /*
3581 * 50% of the time don't read objects in the 1st iteration to
3582 * test dmu_assign_arcbuf() for the case when there're no
3583 * existing dbufs for the specified offsets.
3584 */
3585 if (i != 0 || ztest_random(2) != 0) {
428870ff 3586 error = dmu_read(os, packobj, packoff,
9babb374
BB
3587 packsize, packbuf, DMU_READ_PREFETCH);
3588 ASSERT3U(error, ==, 0);
428870ff 3589 error = dmu_read(os, bigobj, bigoff, bigsize,
9babb374
BB
3590 bigbuf, DMU_READ_PREFETCH);
3591 ASSERT3U(error, ==, 0);
3592 }
3593 compare_and_update_pbbufs(s, packbuf, bigbuf, bigsize,
428870ff 3594 n, chunksize, txg);
9babb374
BB
3595
3596 /*
3597 * We've verified all the old bufwads, and made new ones.
3598 * Now write them out.
3599 */
428870ff
BB
3600 dmu_write(os, packobj, packoff, packsize, packbuf, tx);
3601 if (zopt_verbose >= 7) {
9babb374
BB
3602 (void) printf("writing offset %llx size %llx"
3603 " txg %llx\n",
3604 (u_longlong_t)bigoff,
3605 (u_longlong_t)bigsize,
3606 (u_longlong_t)txg);
3607 }
428870ff 3608 for (off = bigoff, j = 0; j < s; j++, off += chunksize) {
9babb374
BB
3609 dmu_buf_t *dbt;
3610 if (i != 5) {
3611 bcopy((caddr_t)bigbuf + (off - bigoff),
428870ff 3612 bigbuf_arcbufs[j]->b_data, chunksize);
9babb374
BB
3613 } else {
3614 bcopy((caddr_t)bigbuf + (off - bigoff),
3615 bigbuf_arcbufs[2 * j]->b_data,
428870ff 3616 chunksize / 2);
9babb374 3617 bcopy((caddr_t)bigbuf + (off - bigoff) +
428870ff 3618 chunksize / 2,
9babb374 3619 bigbuf_arcbufs[2 * j + 1]->b_data,
428870ff 3620 chunksize / 2);
9babb374
BB
3621 }
3622
3623 if (i == 1) {
428870ff
BB
3624 VERIFY(dmu_buf_hold(os, bigobj, off,
3625 FTAG, &dbt, DMU_READ_NO_PREFETCH) == 0);
9babb374
BB
3626 }
3627 if (i != 5) {
3628 dmu_assign_arcbuf(bonus_db, off,
3629 bigbuf_arcbufs[j], tx);
3630 } else {
3631 dmu_assign_arcbuf(bonus_db, off,
3632 bigbuf_arcbufs[2 * j], tx);
3633 dmu_assign_arcbuf(bonus_db,
428870ff 3634 off + chunksize / 2,
9babb374
BB
3635 bigbuf_arcbufs[2 * j + 1], tx);
3636 }
3637 if (i == 1) {
3638 dmu_buf_rele(dbt, FTAG);
3639 }
3640 }
3641 dmu_tx_commit(tx);
3642
3643 /*
3644 * Sanity check the stuff we just wrote.
3645 */
3646 {
3647 void *packcheck = umem_alloc(packsize, UMEM_NOFAIL);
3648 void *bigcheck = umem_alloc(bigsize, UMEM_NOFAIL);
3649
428870ff 3650 VERIFY(0 == dmu_read(os, packobj, packoff,
9babb374 3651 packsize, packcheck, DMU_READ_PREFETCH));
428870ff 3652 VERIFY(0 == dmu_read(os, bigobj, bigoff,
9babb374
BB
3653 bigsize, bigcheck, DMU_READ_PREFETCH));
3654
3655 ASSERT(bcmp(packbuf, packcheck, packsize) == 0);
3656 ASSERT(bcmp(bigbuf, bigcheck, bigsize) == 0);
3657
3658 umem_free(packcheck, packsize);
3659 umem_free(bigcheck, bigsize);
3660 }
3661 if (i == 2) {
3662 txg_wait_open(dmu_objset_pool(os), 0);
3663 } else if (i == 3) {
3664 txg_wait_synced(dmu_objset_pool(os), 0);
3665 }
3666 }
3667
3668 dmu_buf_rele(bonus_db, FTAG);
3669 umem_free(packbuf, packsize);
3670 umem_free(bigbuf, bigsize);
3671 umem_free(bigbuf_arcbufs, 2 * s * sizeof (arc_buf_t *));
3672}
3673
428870ff 3674/* ARGSUSED */
34dc7c2f 3675void
428870ff 3676ztest_dmu_write_parallel(ztest_ds_t *zd, uint64_t id)
34dc7c2f 3677{
428870ff
BB
3678 ztest_od_t od[1];
3679 uint64_t offset = (1ULL << (ztest_random(20) + 43)) +
3680 (ztest_random(ZTEST_RANGE_LOCKS) << SPA_MAXBLOCKSHIFT);
34dc7c2f
BB
3681
3682 /*
428870ff
BB
3683 * Have multiple threads write to large offsets in an object
3684 * to verify that parallel writes to an object -- even to the
3685 * same blocks within the object -- doesn't cause any trouble.
34dc7c2f 3686 */
428870ff 3687 ztest_od_init(&od[0], ID_PARALLEL, FTAG, 0, DMU_OT_UINT64_OTHER, 0, 0);
9babb374 3688
428870ff 3689 if (ztest_object_init(zd, od, sizeof (od), B_FALSE) != 0)
34dc7c2f 3690 return;
34dc7c2f 3691
428870ff
BB
3692 while (ztest_random(10) != 0)
3693 ztest_io(zd, od[0].od_object, offset);
3694}
34dc7c2f 3695
428870ff
BB
3696void
3697ztest_dmu_prealloc(ztest_ds_t *zd, uint64_t id)
3698{
3699 ztest_od_t od[1];
3700 uint64_t offset = (1ULL << (ztest_random(4) + SPA_MAXBLOCKSHIFT)) +
3701 (ztest_random(ZTEST_RANGE_LOCKS) << SPA_MAXBLOCKSHIFT);
3702 uint64_t count = ztest_random(20) + 1;
3703 uint64_t blocksize = ztest_random_blocksize();
3704 void *data;
34dc7c2f 3705
428870ff 3706 ztest_od_init(&od[0], id, FTAG, 0, DMU_OT_UINT64_OTHER, blocksize, 0);
34dc7c2f 3707
428870ff 3708 if (ztest_object_init(zd, od, sizeof (od), !ztest_random(2)) != 0)
34dc7c2f
BB
3709 return;
3710
428870ff 3711 if (ztest_truncate(zd, od[0].od_object, offset, count * blocksize) != 0)
34dc7c2f
BB
3712 return;
3713
428870ff 3714 ztest_prealloc(zd, od[0].od_object, offset, count * blocksize);
34dc7c2f 3715
428870ff 3716 data = umem_zalloc(blocksize, UMEM_NOFAIL);
34dc7c2f 3717
428870ff
BB
3718 while (ztest_random(count) != 0) {
3719 uint64_t randoff = offset + (ztest_random(count) * blocksize);
3720 if (ztest_write(zd, od[0].od_object, randoff, blocksize,
3721 data) != 0)
3722 break;
3723 while (ztest_random(4) != 0)
3724 ztest_io(zd, od[0].od_object, randoff);
9babb374 3725 }
34dc7c2f 3726
428870ff 3727 umem_free(data, blocksize);
34dc7c2f
BB
3728}
3729
3730/*
3731 * Verify that zap_{create,destroy,add,remove,update} work as expected.
3732 */
3733#define ZTEST_ZAP_MIN_INTS 1
3734#define ZTEST_ZAP_MAX_INTS 4
3735#define ZTEST_ZAP_MAX_PROPS 1000
3736
3737void
428870ff 3738ztest_zap(ztest_ds_t *zd, uint64_t id)
34dc7c2f 3739{
428870ff
BB
3740 objset_t *os = zd->zd_os;
3741 ztest_od_t od[1];
34dc7c2f
BB
3742 uint64_t object;
3743 uint64_t txg, last_txg;
3744 uint64_t value[ZTEST_ZAP_MAX_INTS];
3745 uint64_t zl_ints, zl_intsize, prop;
3746 int i, ints;
3747 dmu_tx_t *tx;
3748 char propname[100], txgname[100];
3749 int error;
34dc7c2f
BB
3750 char *hc[2] = { "s.acl.h", ".s.open.h.hyLZlg" };
3751
428870ff 3752 ztest_od_init(&od[0], id, FTAG, 0, DMU_OT_ZAP_OTHER, 0, 0);
34dc7c2f 3753
428870ff
BB
3754 if (ztest_object_init(zd, od, sizeof (od), !ztest_random(2)) != 0)
3755 return;
34dc7c2f 3756
428870ff 3757 object = od[0].od_object;
34dc7c2f 3758
428870ff
BB
3759 /*
3760 * Generate a known hash collision, and verify that
3761 * we can lookup and remove both entries.
3762 */
3763 tx = dmu_tx_create(os);
3764 dmu_tx_hold_zap(tx, object, B_TRUE, NULL);
3765 txg = ztest_tx_assign(tx, TXG_MIGHTWAIT, FTAG);
3766 if (txg == 0)
3767 return;
3768 for (i = 0; i < 2; i++) {
3769 value[i] = i;
3770 VERIFY3U(0, ==, zap_add(os, object, hc[i], sizeof (uint64_t),
3771 1, &value[i], tx));
3772 }
3773 for (i = 0; i < 2; i++) {
3774 VERIFY3U(EEXIST, ==, zap_add(os, object, hc[i],
3775 sizeof (uint64_t), 1, &value[i], tx));
3776 VERIFY3U(0, ==,
3777 zap_length(os, object, hc[i], &zl_intsize, &zl_ints));
3778 ASSERT3U(zl_intsize, ==, sizeof (uint64_t));
3779 ASSERT3U(zl_ints, ==, 1);
3780 }
3781 for (i = 0; i < 2; i++) {
3782 VERIFY3U(0, ==, zap_remove(os, object, hc[i], tx));
34dc7c2f 3783 }
428870ff 3784 dmu_tx_commit(tx);
34dc7c2f 3785
428870ff
BB
3786 /*
3787 * Generate a buch of random entries.
3788 */
34dc7c2f
BB
3789 ints = MAX(ZTEST_ZAP_MIN_INTS, object % ZTEST_ZAP_MAX_INTS);
3790
3791 prop = ztest_random(ZTEST_ZAP_MAX_PROPS);
3792 (void) sprintf(propname, "prop_%llu", (u_longlong_t)prop);
3793 (void) sprintf(txgname, "txg_%llu", (u_longlong_t)prop);
3794 bzero(value, sizeof (value));
3795 last_txg = 0;
3796
3797 /*
3798 * If these zap entries already exist, validate their contents.
3799 */
3800 error = zap_length(os, object, txgname, &zl_intsize, &zl_ints);
3801 if (error == 0) {
3802 ASSERT3U(zl_intsize, ==, sizeof (uint64_t));
3803 ASSERT3U(zl_ints, ==, 1);
3804
3805 VERIFY(zap_lookup(os, object, txgname, zl_intsize,
3806 zl_ints, &last_txg) == 0);
3807
3808 VERIFY(zap_length(os, object, propname, &zl_intsize,
3809 &zl_ints) == 0);
3810
3811 ASSERT3U(zl_intsize, ==, sizeof (uint64_t));
3812 ASSERT3U(zl_ints, ==, ints);
3813
3814 VERIFY(zap_lookup(os, object, propname, zl_intsize,
3815 zl_ints, value) == 0);
3816
3817 for (i = 0; i < ints; i++) {
3818 ASSERT3U(value[i], ==, last_txg + object + i);
3819 }
3820 } else {
3821 ASSERT3U(error, ==, ENOENT);
3822 }
3823
3824 /*
3825 * Atomically update two entries in our zap object.
3826 * The first is named txg_%llu, and contains the txg
3827 * in which the property was last updated. The second
3828 * is named prop_%llu, and the nth element of its value
3829 * should be txg + object + n.
3830 */
3831 tx = dmu_tx_create(os);
428870ff
BB
3832 dmu_tx_hold_zap(tx, object, B_TRUE, NULL);
3833 txg = ztest_tx_assign(tx, TXG_MIGHTWAIT, FTAG);
3834 if (txg == 0)
34dc7c2f 3835 return;
34dc7c2f
BB
3836
3837 if (last_txg > txg)
3838 fatal(0, "zap future leak: old %llu new %llu", last_txg, txg);
3839
3840 for (i = 0; i < ints; i++)
3841 value[i] = txg + object + i;
3842
428870ff
BB
3843 VERIFY3U(0, ==, zap_update(os, object, txgname, sizeof (uint64_t),
3844 1, &txg, tx));
3845 VERIFY3U(0, ==, zap_update(os, object, propname, sizeof (uint64_t),
3846 ints, value, tx));
34dc7c2f
BB
3847
3848 dmu_tx_commit(tx);
3849
3850 /*
3851 * Remove a random pair of entries.
3852 */
3853 prop = ztest_random(ZTEST_ZAP_MAX_PROPS);
3854 (void) sprintf(propname, "prop_%llu", (u_longlong_t)prop);
3855 (void) sprintf(txgname, "txg_%llu", (u_longlong_t)prop);
3856
3857 error = zap_length(os, object, txgname, &zl_intsize, &zl_ints);
3858
3859 if (error == ENOENT)
3860 return;
3861
3862 ASSERT3U(error, ==, 0);
3863
3864 tx = dmu_tx_create(os);
428870ff
BB
3865 dmu_tx_hold_zap(tx, object, B_TRUE, NULL);
3866 txg = ztest_tx_assign(tx, TXG_MIGHTWAIT, FTAG);
3867 if (txg == 0)
34dc7c2f 3868 return;
428870ff
BB
3869 VERIFY3U(0, ==, zap_remove(os, object, txgname, tx));
3870 VERIFY3U(0, ==, zap_remove(os, object, propname, tx));
3871 dmu_tx_commit(tx);
3872}
34dc7c2f 3873
428870ff
BB
3874/*
3875 * Testcase to test the upgrading of a microzap to fatzap.
3876 */
3877void
3878ztest_fzap(ztest_ds_t *zd, uint64_t id)
3879{
3880 objset_t *os = zd->zd_os;
3881 ztest_od_t od[1];
3882 uint64_t object, txg;
34dc7c2f 3883
428870ff
BB
3884 ztest_od_init(&od[0], id, FTAG, 0, DMU_OT_ZAP_OTHER, 0, 0);
3885
3886 if (ztest_object_init(zd, od, sizeof (od), !ztest_random(2)) != 0)
3887 return;
3888
3889 object = od[0].od_object;
34dc7c2f
BB
3890
3891 /*
428870ff
BB
3892 * Add entries to this ZAP and make sure it spills over
3893 * and gets upgraded to a fatzap. Also, since we are adding
3894 * 2050 entries we should see ptrtbl growth and leaf-block split.
34dc7c2f 3895 */
428870ff
BB
3896 for (int i = 0; i < 2050; i++) {
3897 char name[MAXNAMELEN];
3898 uint64_t value = i;
3899 dmu_tx_t *tx;
3900 int error;
34dc7c2f 3901
428870ff
BB
3902 (void) snprintf(name, sizeof (name), "fzap-%llu-%llu",
3903 id, value);
3904
3905 tx = dmu_tx_create(os);
3906 dmu_tx_hold_zap(tx, object, B_TRUE, name);
3907 txg = ztest_tx_assign(tx, TXG_MIGHTWAIT, FTAG);
3908 if (txg == 0)
3909 return;
3910 error = zap_add(os, object, name, sizeof (uint64_t), 1,
3911 &value, tx);
3912 ASSERT(error == 0 || error == EEXIST);
3913 dmu_tx_commit(tx);
34dc7c2f 3914 }
34dc7c2f
BB
3915}
3916
428870ff 3917/* ARGSUSED */
34dc7c2f 3918void
428870ff 3919ztest_zap_parallel(ztest_ds_t *zd, uint64_t id)
34dc7c2f 3920{
428870ff
BB
3921 objset_t *os = zd->zd_os;
3922 ztest_od_t od[1];
34dc7c2f
BB
3923 uint64_t txg, object, count, wsize, wc, zl_wsize, zl_wc;
3924 dmu_tx_t *tx;
3925 int i, namelen, error;
428870ff 3926 int micro = ztest_random(2);
34dc7c2f
BB
3927 char name[20], string_value[20];
3928 void *data;
3929
428870ff
BB
3930 ztest_od_init(&od[0], ID_PARALLEL, FTAG, micro, DMU_OT_ZAP_OTHER, 0, 0);
3931
3932 if (ztest_object_init(zd, od, sizeof (od), B_FALSE) != 0)
3933 return;
3934
3935 object = od[0].od_object;
3936
34dc7c2f
BB
3937 /*
3938 * Generate a random name of the form 'xxx.....' where each
3939 * x is a random printable character and the dots are dots.
3940 * There are 94 such characters, and the name length goes from
3941 * 6 to 20, so there are 94^3 * 15 = 12,458,760 possible names.
3942 */
3943 namelen = ztest_random(sizeof (name) - 5) + 5 + 1;
3944
3945 for (i = 0; i < 3; i++)
3946 name[i] = '!' + ztest_random('~' - '!' + 1);
3947 for (; i < namelen - 1; i++)
3948 name[i] = '.';
3949 name[i] = '\0';
3950
428870ff 3951 if ((namelen & 1) || micro) {
34dc7c2f
BB
3952 wsize = sizeof (txg);
3953 wc = 1;
3954 data = &txg;
3955 } else {
3956 wsize = 1;
3957 wc = namelen;
3958 data = string_value;
3959 }
3960
3961 count = -1ULL;
3962 VERIFY(zap_count(os, object, &count) == 0);
3963 ASSERT(count != -1ULL);
3964
3965 /*
3966 * Select an operation: length, lookup, add, update, remove.
3967 */
3968 i = ztest_random(5);
3969
3970 if (i >= 2) {
3971 tx = dmu_tx_create(os);
428870ff
BB
3972 dmu_tx_hold_zap(tx, object, B_TRUE, NULL);
3973 txg = ztest_tx_assign(tx, TXG_MIGHTWAIT, FTAG);
3974 if (txg == 0)
34dc7c2f 3975 return;
34dc7c2f
BB
3976 bcopy(name, string_value, namelen);
3977 } else {
3978 tx = NULL;
3979 txg = 0;
3980 bzero(string_value, namelen);
3981 }
3982
3983 switch (i) {
3984
3985 case 0:
3986 error = zap_length(os, object, name, &zl_wsize, &zl_wc);
3987 if (error == 0) {
3988 ASSERT3U(wsize, ==, zl_wsize);
3989 ASSERT3U(wc, ==, zl_wc);
3990 } else {
3991 ASSERT3U(error, ==, ENOENT);
3992 }
3993 break;
3994
3995 case 1:
3996 error = zap_lookup(os, object, name, wsize, wc, data);
3997 if (error == 0) {
3998 if (data == string_value &&
3999 bcmp(name, data, namelen) != 0)
4000 fatal(0, "name '%s' != val '%s' len %d",
4001 name, data, namelen);
4002 } else {
4003 ASSERT3U(error, ==, ENOENT);
4004 }
4005 break;
4006
4007 case 2:
4008 error = zap_add(os, object, name, wsize, wc, data, tx);
4009 ASSERT(error == 0 || error == EEXIST);
4010 break;
4011
4012 case 3:
4013 VERIFY(zap_update(os, object, name, wsize, wc, data, tx) == 0);
4014 break;
4015
4016 case 4:
4017 error = zap_remove(os, object, name, tx);
4018 ASSERT(error == 0 || error == ENOENT);
4019 break;
4020 }
4021
4022 if (tx != NULL)
4023 dmu_tx_commit(tx);
4024}
4025
428870ff
BB
4026/*
4027 * Commit callback data.
4028 */
4029typedef struct ztest_cb_data {
4030 list_node_t zcd_node;
4031 uint64_t zcd_txg;
4032 int zcd_expected_err;
4033 boolean_t zcd_added;
4034 boolean_t zcd_called;
4035 spa_t *zcd_spa;
4036} ztest_cb_data_t;
4037
4038/* This is the actual commit callback function */
4039static void
4040ztest_commit_callback(void *arg, int error)
4041{
4042 ztest_cb_data_t *data = arg;
4043 uint64_t synced_txg;
4044
4045 VERIFY(data != NULL);
4046 VERIFY3S(data->zcd_expected_err, ==, error);
4047 VERIFY(!data->zcd_called);
4048
4049 synced_txg = spa_last_synced_txg(data->zcd_spa);
4050 if (data->zcd_txg > synced_txg)
4051 fatal(0, "commit callback of txg %" PRIu64 " called prematurely"
4052 ", last synced txg = %" PRIu64 "\n", data->zcd_txg,
4053 synced_txg);
4054
4055 data->zcd_called = B_TRUE;
4056
4057 if (error == ECANCELED) {
4058 ASSERT3U(data->zcd_txg, ==, 0);
4059 ASSERT(!data->zcd_added);
4060
4061 /*
4062 * The private callback data should be destroyed here, but
4063 * since we are going to check the zcd_called field after
4064 * dmu_tx_abort(), we will destroy it there.
4065 */
4066 return;
4067 }
4068
4069 /* Was this callback added to the global callback list? */
4070 if (!data->zcd_added)
4071 goto out;
4072
4073 ASSERT3U(data->zcd_txg, !=, 0);
4074
4075 /* Remove our callback from the list */
4076 (void) mutex_lock(&zcl.zcl_callbacks_lock);
4077 list_remove(&zcl.zcl_callbacks, data);
4078 (void) mutex_unlock(&zcl.zcl_callbacks_lock);
4079
4080out:
4081 umem_free(data, sizeof (ztest_cb_data_t));
4082}
4083
4084/* Allocate and initialize callback data structure */
4085static ztest_cb_data_t *
4086ztest_create_cb_data(objset_t *os, uint64_t txg)
4087{
4088 ztest_cb_data_t *cb_data;
4089
4090 cb_data = umem_zalloc(sizeof (ztest_cb_data_t), UMEM_NOFAIL);
4091
4092 cb_data->zcd_txg = txg;
4093 cb_data->zcd_spa = dmu_objset_spa(os);
4094
4095 return (cb_data);
4096}
4097
4098/*
4099 * If a number of txgs equal to this threshold have been created after a commit
4100 * callback has been registered but not called, then we assume there is an
4101 * implementation bug.
4102 */
4103#define ZTEST_COMMIT_CALLBACK_THRESH (TXG_CONCURRENT_STATES + 2)
4104
4105/*
4106 * Commit callback test.
4107 */
34dc7c2f 4108void
428870ff
BB
4109ztest_dmu_commit_callbacks(ztest_ds_t *zd, uint64_t id)
4110{
4111 objset_t *os = zd->zd_os;
4112 ztest_od_t od[1];
4113 dmu_tx_t *tx;
4114 ztest_cb_data_t *cb_data[3], *tmp_cb;
4115 uint64_t old_txg, txg;
4116 int i, error;
4117
4118 ztest_od_init(&od[0], id, FTAG, 0, DMU_OT_UINT64_OTHER, 0, 0);
4119
4120 if (ztest_object_init(zd, od, sizeof (od), B_FALSE) != 0)
4121 return;
4122
4123 tx = dmu_tx_create(os);
4124
4125 cb_data[0] = ztest_create_cb_data(os, 0);
4126 dmu_tx_callback_register(tx, ztest_commit_callback, cb_data[0]);
4127
4128 dmu_tx_hold_write(tx, od[0].od_object, 0, sizeof (uint64_t));
4129
4130 /* Every once in a while, abort the transaction on purpose */
4131 if (ztest_random(100) == 0)
4132 error = -1;
4133
4134 if (!error)
4135 error = dmu_tx_assign(tx, TXG_NOWAIT);
4136
4137 txg = error ? 0 : dmu_tx_get_txg(tx);
4138
4139 cb_data[0]->zcd_txg = txg;
4140 cb_data[1] = ztest_create_cb_data(os, txg);
4141 dmu_tx_callback_register(tx, ztest_commit_callback, cb_data[1]);
4142
4143 if (error) {
4144 /*
4145 * It's not a strict requirement to call the registered
4146 * callbacks from inside dmu_tx_abort(), but that's what
4147 * it's supposed to happen in the current implementation
4148 * so we will check for that.
4149 */
4150 for (i = 0; i < 2; i++) {
4151 cb_data[i]->zcd_expected_err = ECANCELED;
4152 VERIFY(!cb_data[i]->zcd_called);
4153 }
4154
4155 dmu_tx_abort(tx);
4156
4157 for (i = 0; i < 2; i++) {
4158 VERIFY(cb_data[i]->zcd_called);
4159 umem_free(cb_data[i], sizeof (ztest_cb_data_t));
4160 }
4161
4162 return;
4163 }
4164
4165 cb_data[2] = ztest_create_cb_data(os, txg);
4166 dmu_tx_callback_register(tx, ztest_commit_callback, cb_data[2]);
4167
4168 /*
4169 * Read existing data to make sure there isn't a future leak.
4170 */
4171 VERIFY(0 == dmu_read(os, od[0].od_object, 0, sizeof (uint64_t),
4172 &old_txg, DMU_READ_PREFETCH));
4173
4174 if (old_txg > txg)
4175 fatal(0, "future leak: got %" PRIu64 ", open txg is %" PRIu64,
4176 old_txg, txg);
4177
4178 dmu_write(os, od[0].od_object, 0, sizeof (uint64_t), &txg, tx);
4179
4180 (void) mutex_lock(&zcl.zcl_callbacks_lock);
4181
4182 /*
4183 * Since commit callbacks don't have any ordering requirement and since
4184 * it is theoretically possible for a commit callback to be called
4185 * after an arbitrary amount of time has elapsed since its txg has been
4186 * synced, it is difficult to reliably determine whether a commit
4187 * callback hasn't been called due to high load or due to a flawed
4188 * implementation.
4189 *
4190 * In practice, we will assume that if after a certain number of txgs a
4191 * commit callback hasn't been called, then most likely there's an
4192 * implementation bug..
4193 */
4194 tmp_cb = list_head(&zcl.zcl_callbacks);
4195 if (tmp_cb != NULL &&
4196 tmp_cb->zcd_txg > txg - ZTEST_COMMIT_CALLBACK_THRESH) {
4197 fatal(0, "Commit callback threshold exceeded, oldest txg: %"
4198 PRIu64 ", open txg: %" PRIu64 "\n", tmp_cb->zcd_txg, txg);
4199 }
4200
4201 /*
4202 * Let's find the place to insert our callbacks.
4203 *
4204 * Even though the list is ordered by txg, it is possible for the
4205 * insertion point to not be the end because our txg may already be
4206 * quiescing at this point and other callbacks in the open txg
4207 * (from other objsets) may have sneaked in.
4208 */
4209 tmp_cb = list_tail(&zcl.zcl_callbacks);
4210 while (tmp_cb != NULL && tmp_cb->zcd_txg > txg)
4211 tmp_cb = list_prev(&zcl.zcl_callbacks, tmp_cb);
4212
4213 /* Add the 3 callbacks to the list */
4214 for (i = 0; i < 3; i++) {
4215 if (tmp_cb == NULL)
4216 list_insert_head(&zcl.zcl_callbacks, cb_data[i]);
4217 else
4218 list_insert_after(&zcl.zcl_callbacks, tmp_cb,
4219 cb_data[i]);
4220
4221 cb_data[i]->zcd_added = B_TRUE;
4222 VERIFY(!cb_data[i]->zcd_called);
4223
4224 tmp_cb = cb_data[i];
4225 }
4226
4227 (void) mutex_unlock(&zcl.zcl_callbacks_lock);
4228
4229 dmu_tx_commit(tx);
4230}
4231
4232/* ARGSUSED */
4233void
4234ztest_dsl_prop_get_set(ztest_ds_t *zd, uint64_t id)
4235{
4236 zfs_prop_t proplist[] = {
4237 ZFS_PROP_CHECKSUM,
4238 ZFS_PROP_COMPRESSION,
4239 ZFS_PROP_COPIES,
4240 ZFS_PROP_DEDUP
4241 };
4242 ztest_shared_t *zs = ztest_shared;
4243
4244 (void) rw_rdlock(&zs->zs_name_lock);
4245
4246 for (int p = 0; p < sizeof (proplist) / sizeof (proplist[0]); p++)
4247 (void) ztest_dsl_prop_set_uint64(zd->zd_name, proplist[p],
4248 ztest_random_dsl_prop(proplist[p]), (int)ztest_random(2));
4249
4250 (void) rw_unlock(&zs->zs_name_lock);
4251}
4252
4253/* ARGSUSED */
4254void
4255ztest_spa_prop_get_set(ztest_ds_t *zd, uint64_t id)
4256{
4257 ztest_shared_t *zs = ztest_shared;
4258 nvlist_t *props = NULL;
4259
4260 (void) rw_rdlock(&zs->zs_name_lock);
4261
4262 (void) ztest_spa_prop_set_uint64(zs, ZPOOL_PROP_DEDUPDITTO,
4263 ZIO_DEDUPDITTO_MIN + ztest_random(ZIO_DEDUPDITTO_MIN));
4264
4265 VERIFY3U(spa_prop_get(zs->zs_spa, &props), ==, 0);
4266
4267 if (zopt_verbose >= 6)
4268 dump_nvlist(props, 4);
4269
4270 nvlist_free(props);
4271
4272 (void) rw_unlock(&zs->zs_name_lock);
4273}
4274
4275/*
4276 * Test snapshot hold/release and deferred destroy.
4277 */
4278void
4279ztest_dmu_snapshot_hold(ztest_ds_t *zd, uint64_t id)
34dc7c2f 4280{
34dc7c2f 4281 int error;
428870ff
BB
4282 objset_t *os = zd->zd_os;
4283 objset_t *origin;
4284 char snapname[100];
4285 char fullname[100];
4286 char clonename[100];
4287 char tag[100];
4288 char osname[MAXNAMELEN];
34dc7c2f
BB
4289
4290 (void) rw_rdlock(&ztest_shared->zs_name_lock);
4291
4292 dmu_objset_name(os, osname);
4293
428870ff
BB
4294 (void) snprintf(snapname, 100, "sh1_%llu", id);
4295 (void) snprintf(fullname, 100, "%s@%s", osname, snapname);
4296 (void) snprintf(clonename, 100, "%s/ch1_%llu", osname, id);
4297 (void) snprintf(tag, 100, "%tag_%llu", id);
4298
4299 /*
4300 * Clean up from any previous run.
4301 */
4302 (void) dmu_objset_destroy(clonename, B_FALSE);
4303 (void) dsl_dataset_user_release(osname, snapname, tag, B_FALSE);
4304 (void) dmu_objset_destroy(fullname, B_FALSE);
4305
4306 /*
4307 * Create snapshot, clone it, mark snap for deferred destroy,
4308 * destroy clone, verify snap was also destroyed.
4309 */
572e2857
BB
4310 error = dmu_objset_snapshot(osname, snapname, NULL, NULL, FALSE,
4311 FALSE, -1);
428870ff
BB
4312 if (error) {
4313 if (error == ENOSPC) {
4314 ztest_record_enospc("dmu_objset_snapshot");
4315 goto out;
34dc7c2f 4316 }
428870ff
BB
4317 fatal(0, "dmu_objset_snapshot(%s) = %d", fullname, error);
4318 }
34dc7c2f 4319
428870ff
BB
4320 error = dmu_objset_hold(fullname, FTAG, &origin);
4321 if (error)
4322 fatal(0, "dmu_objset_hold(%s) = %d", fullname, error);
34dc7c2f 4323
428870ff
BB
4324 error = dmu_objset_clone(clonename, dmu_objset_ds(origin), 0);
4325 dmu_objset_rele(origin, FTAG);
4326 if (error) {
34dc7c2f 4327 if (error == ENOSPC) {
428870ff
BB
4328 ztest_record_enospc("dmu_objset_clone");
4329 goto out;
34dc7c2f 4330 }
428870ff
BB
4331 fatal(0, "dmu_objset_clone(%s) = %d", clonename, error);
4332 }
34dc7c2f 4333
428870ff
BB
4334 error = dmu_objset_destroy(fullname, B_TRUE);
4335 if (error) {
4336 fatal(0, "dmu_objset_destroy(%s, B_TRUE) = %d",
4337 fullname, error);
4338 }
34dc7c2f 4339
428870ff
BB
4340 error = dmu_objset_destroy(clonename, B_FALSE);
4341 if (error)
4342 fatal(0, "dmu_objset_destroy(%s) = %d", clonename, error);
34dc7c2f 4343
428870ff
BB
4344 error = dmu_objset_hold(fullname, FTAG, &origin);
4345 if (error != ENOENT)
4346 fatal(0, "dmu_objset_hold(%s) = %d", fullname, error);
34dc7c2f 4347
428870ff
BB
4348 /*
4349 * Create snapshot, add temporary hold, verify that we can't
4350 * destroy a held snapshot, mark for deferred destroy,
4351 * release hold, verify snapshot was destroyed.
4352 */
572e2857
BB
4353 error = dmu_objset_snapshot(osname, snapname, NULL, NULL, FALSE,
4354 FALSE, -1);
428870ff
BB
4355 if (error) {
4356 if (error == ENOSPC) {
4357 ztest_record_enospc("dmu_objset_snapshot");
4358 goto out;
34dc7c2f 4359 }
428870ff
BB
4360 fatal(0, "dmu_objset_snapshot(%s) = %d", fullname, error);
4361 }
4362
572e2857
BB
4363 error = dsl_dataset_user_hold(osname, snapname, tag, B_FALSE,
4364 B_TRUE, -1);
428870ff
BB
4365 if (error)
4366 fatal(0, "dsl_dataset_user_hold(%s)", fullname, tag);
4367
4368 error = dmu_objset_destroy(fullname, B_FALSE);
4369 if (error != EBUSY) {
4370 fatal(0, "dmu_objset_destroy(%s, B_FALSE) = %d",
4371 fullname, error);
4372 }
4373
4374 error = dmu_objset_destroy(fullname, B_TRUE);
4375 if (error) {
4376 fatal(0, "dmu_objset_destroy(%s, B_TRUE) = %d",
4377 fullname, error);
34dc7c2f
BB
4378 }
4379
428870ff
BB
4380 error = dsl_dataset_user_release(osname, snapname, tag, B_FALSE);
4381 if (error)
4382 fatal(0, "dsl_dataset_user_release(%s)", fullname, tag);
4383
4384 VERIFY(dmu_objset_hold(fullname, FTAG, &origin) == ENOENT);
4385
4386out:
34dc7c2f
BB
4387 (void) rw_unlock(&ztest_shared->zs_name_lock);
4388}
4389
34dc7c2f
BB
4390/*
4391 * Inject random faults into the on-disk data.
4392 */
428870ff 4393/* ARGSUSED */
34dc7c2f 4394void
428870ff 4395ztest_fault_inject(ztest_ds_t *zd, uint64_t id)
34dc7c2f 4396{
428870ff
BB
4397 ztest_shared_t *zs = ztest_shared;
4398 spa_t *spa = zs->zs_spa;
34dc7c2f
BB
4399 int fd;
4400 uint64_t offset;
428870ff 4401 uint64_t leaves;
34dc7c2f
BB
4402 uint64_t bad = 0x1990c0ffeedecade;
4403 uint64_t top, leaf;
4404 char path0[MAXPATHLEN];
4405 char pathrand[MAXPATHLEN];
4406 size_t fsize;
34dc7c2f
BB
4407 int bshift = SPA_MAXBLOCKSHIFT + 2; /* don't scrog all labels */
4408 int iters = 1000;
428870ff
BB
4409 int maxfaults;
4410 int mirror_save;
b128c09f 4411 vdev_t *vd0 = NULL;
34dc7c2f 4412 uint64_t guid0 = 0;
428870ff
BB
4413 boolean_t islog = B_FALSE;
4414
4415 VERIFY(mutex_lock(&zs->zs_vdev_lock) == 0);
4416 maxfaults = MAXFAULTS();
4417 leaves = MAX(zs->zs_mirrors, 1) * zopt_raidz;
4418 mirror_save = zs->zs_mirrors;
4419 VERIFY(mutex_unlock(&zs->zs_vdev_lock) == 0);
34dc7c2f 4420
b128c09f 4421 ASSERT(leaves >= 1);
34dc7c2f
BB
4422
4423 /*
b128c09f 4424 * We need SCL_STATE here because we're going to look at vd0->vdev_tsd.
34dc7c2f 4425 */
b128c09f 4426 spa_config_enter(spa, SCL_STATE, FTAG, RW_READER);
34dc7c2f 4427
b128c09f
BB
4428 if (ztest_random(2) == 0) {
4429 /*
428870ff 4430 * Inject errors on a normal data device or slog device.
b128c09f 4431 */
428870ff
BB
4432 top = ztest_random_vdev_top(spa, B_TRUE);
4433 leaf = ztest_random(leaves) + zs->zs_splits;
34dc7c2f 4434
b128c09f
BB
4435 /*
4436 * Generate paths to the first leaf in this top-level vdev,
4437 * and to the random leaf we selected. We'll induce transient
4438 * write failures and random online/offline activity on leaf 0,
4439 * and we'll write random garbage to the randomly chosen leaf.
4440 */
4441 (void) snprintf(path0, sizeof (path0), ztest_dev_template,
428870ff 4442 zopt_dir, zopt_pool, top * leaves + zs->zs_splits);
b128c09f
BB
4443 (void) snprintf(pathrand, sizeof (pathrand), ztest_dev_template,
4444 zopt_dir, zopt_pool, top * leaves + leaf);
34dc7c2f 4445
b128c09f 4446 vd0 = vdev_lookup_by_path(spa->spa_root_vdev, path0);
428870ff
BB
4447 if (vd0 != NULL && vd0->vdev_top->vdev_islog)
4448 islog = B_TRUE;
4449
b128c09f
BB
4450 if (vd0 != NULL && maxfaults != 1) {
4451 /*
4452 * Make vd0 explicitly claim to be unreadable,
4453 * or unwriteable, or reach behind its back
4454 * and close the underlying fd. We can do this if
4455 * maxfaults == 0 because we'll fail and reexecute,
4456 * and we can do it if maxfaults >= 2 because we'll
4457 * have enough redundancy. If maxfaults == 1, the
4458 * combination of this with injection of random data
4459 * corruption below exceeds the pool's fault tolerance.
4460 */
4461 vdev_file_t *vf = vd0->vdev_tsd;
4462
4463 if (vf != NULL && ztest_random(3) == 0) {
4464 (void) close(vf->vf_vnode->v_fd);
4465 vf->vf_vnode->v_fd = -1;
4466 } else if (ztest_random(2) == 0) {
4467 vd0->vdev_cant_read = B_TRUE;
4468 } else {
4469 vd0->vdev_cant_write = B_TRUE;
4470 }
4471 guid0 = vd0->vdev_guid;
4472 }
4473 } else {
4474 /*
4475 * Inject errors on an l2cache device.
4476 */
4477 spa_aux_vdev_t *sav = &spa->spa_l2cache;
34dc7c2f 4478
b128c09f
BB
4479 if (sav->sav_count == 0) {
4480 spa_config_exit(spa, SCL_STATE, FTAG);
4481 return;
4482 }
4483 vd0 = sav->sav_vdevs[ztest_random(sav->sav_count)];
34dc7c2f 4484 guid0 = vd0->vdev_guid;
b128c09f
BB
4485 (void) strcpy(path0, vd0->vdev_path);
4486 (void) strcpy(pathrand, vd0->vdev_path);
4487
4488 leaf = 0;
4489 leaves = 1;
4490 maxfaults = INT_MAX; /* no limit on cache devices */
34dc7c2f
BB
4491 }
4492
b128c09f
BB
4493 spa_config_exit(spa, SCL_STATE, FTAG);
4494
34dc7c2f 4495 /*
428870ff
BB
4496 * If we can tolerate two or more faults, or we're dealing
4497 * with a slog, randomly online/offline vd0.
34dc7c2f 4498 */
428870ff 4499 if ((maxfaults >= 2 || islog) && guid0 != 0) {
fb5f0bc8
BB
4500 if (ztest_random(10) < 6) {
4501 int flags = (ztest_random(2) == 0 ?
4502 ZFS_OFFLINE_TEMPORARY : 0);
428870ff
BB
4503
4504 /*
4505 * We have to grab the zs_name_lock as writer to
4506 * prevent a race between offlining a slog and
4507 * destroying a dataset. Offlining the slog will
4508 * grab a reference on the dataset which may cause
4509 * dmu_objset_destroy() to fail with EBUSY thus
4510 * leaving the dataset in an inconsistent state.
4511 */
4512 if (islog)
4513 (void) rw_wrlock(&ztest_shared->zs_name_lock);
4514
fb5f0bc8 4515 VERIFY(vdev_offline(spa, guid0, flags) != EBUSY);
428870ff
BB
4516
4517 if (islog)
4518 (void) rw_unlock(&ztest_shared->zs_name_lock);
fb5f0bc8
BB
4519 } else {
4520 (void) vdev_online(spa, guid0, 0, NULL);
4521 }
34dc7c2f
BB
4522 }
4523
428870ff
BB
4524 if (maxfaults == 0)
4525 return;
4526
34dc7c2f
BB
4527 /*
4528 * We have at least single-fault tolerance, so inject data corruption.
4529 */
4530 fd = open(pathrand, O_RDWR);
4531
4532 if (fd == -1) /* we hit a gap in the device namespace */
4533 return;
4534
4535 fsize = lseek(fd, 0, SEEK_END);
4536
4537 while (--iters != 0) {
4538 offset = ztest_random(fsize / (leaves << bshift)) *
4539 (leaves << bshift) + (leaf << bshift) +
4540 (ztest_random(1ULL << (bshift - 1)) & -8ULL);
4541
4542 if (offset >= fsize)
4543 continue;
4544
428870ff
BB
4545 VERIFY(mutex_lock(&zs->zs_vdev_lock) == 0);
4546 if (mirror_save != zs->zs_mirrors) {
4547 VERIFY(mutex_unlock(&zs->zs_vdev_lock) == 0);
4548 (void) close(fd);
4549 return;
4550 }
34dc7c2f
BB
4551
4552 if (pwrite(fd, &bad, sizeof (bad), offset) != sizeof (bad))
4553 fatal(1, "can't inject bad word at 0x%llx in %s",
4554 offset, pathrand);
428870ff
BB
4555
4556 VERIFY(mutex_unlock(&zs->zs_vdev_lock) == 0);
4557
4558 if (zopt_verbose >= 7)
4559 (void) printf("injected bad word into %s,"
4560 " offset 0x%llx\n", pathrand, (u_longlong_t)offset);
34dc7c2f
BB
4561 }
4562
4563 (void) close(fd);
4564}
4565
4566/*
428870ff 4567 * Verify that DDT repair works as expected.
34dc7c2f
BB
4568 */
4569void
428870ff 4570ztest_ddt_repair(ztest_ds_t *zd, uint64_t id)
34dc7c2f 4571{
428870ff
BB
4572 ztest_shared_t *zs = ztest_shared;
4573 spa_t *spa = zs->zs_spa;
4574 objset_t *os = zd->zd_os;
4575 ztest_od_t od[1];
4576 uint64_t object, blocksize, txg, pattern, psize;
4577 enum zio_checksum checksum = spa_dedup_checksum(spa);
4578 dmu_buf_t *db;
4579 dmu_tx_t *tx;
4580 void *buf;
4581 blkptr_t blk;
4582 int copies = 2 * ZIO_DEDUPDITTO_MIN;
34dc7c2f 4583
428870ff
BB
4584 blocksize = ztest_random_blocksize();
4585 blocksize = MIN(blocksize, 2048); /* because we write so many */
34dc7c2f 4586
428870ff 4587 ztest_od_init(&od[0], id, FTAG, 0, DMU_OT_UINT64_OTHER, blocksize, 0);
34dc7c2f 4588
428870ff
BB
4589 if (ztest_object_init(zd, od, sizeof (od), B_FALSE) != 0)
4590 return;
34dc7c2f
BB
4591
4592 /*
428870ff
BB
4593 * Take the name lock as writer to prevent anyone else from changing
4594 * the pool and dataset properies we need to maintain during this test.
34dc7c2f 4595 */
428870ff 4596 (void) rw_wrlock(&zs->zs_name_lock);
34dc7c2f 4597
428870ff
BB
4598 if (ztest_dsl_prop_set_uint64(zd->zd_name, ZFS_PROP_DEDUP, checksum,
4599 B_FALSE) != 0 ||
4600 ztest_dsl_prop_set_uint64(zd->zd_name, ZFS_PROP_COPIES, 1,
4601 B_FALSE) != 0) {
4602 (void) rw_unlock(&zs->zs_name_lock);
4603 return;
4604 }
4605
4606 object = od[0].od_object;
4607 blocksize = od[0].od_blocksize;
4608 pattern = spa_guid(spa) ^ dmu_objset_fsid_guid(os);
4609
4610 ASSERT(object != 0);
4611
4612 tx = dmu_tx_create(os);
4613 dmu_tx_hold_write(tx, object, 0, copies * blocksize);
4614 txg = ztest_tx_assign(tx, TXG_WAIT, FTAG);
4615 if (txg == 0) {
4616 (void) rw_unlock(&zs->zs_name_lock);
4617 return;
4618 }
34dc7c2f
BB
4619
4620 /*
428870ff 4621 * Write all the copies of our block.
34dc7c2f 4622 */
428870ff
BB
4623 for (int i = 0; i < copies; i++) {
4624 uint64_t offset = i * blocksize;
4625 VERIFY(dmu_buf_hold(os, object, offset, FTAG, &db,
4626 DMU_READ_NO_PREFETCH) == 0);
4627 ASSERT(db->db_offset == offset);
4628 ASSERT(db->db_size == blocksize);
4629 ASSERT(ztest_pattern_match(db->db_data, db->db_size, pattern) ||
4630 ztest_pattern_match(db->db_data, db->db_size, 0ULL));
4631 dmu_buf_will_fill(db, tx);
4632 ztest_pattern_set(db->db_data, db->db_size, pattern);
4633 dmu_buf_rele(db, FTAG);
4634 }
34dc7c2f 4635
428870ff
BB
4636 dmu_tx_commit(tx);
4637 txg_wait_synced(spa_get_dsl(spa), txg);
34dc7c2f
BB
4638
4639 /*
428870ff 4640 * Find out what block we got.
34dc7c2f 4641 */
428870ff
BB
4642 VERIFY(dmu_buf_hold(os, object, 0, FTAG, &db,
4643 DMU_READ_NO_PREFETCH) == 0);
4644 blk = *((dmu_buf_impl_t *)db)->db_blkptr;
4645 dmu_buf_rele(db, FTAG);
34dc7c2f
BB
4646
4647 /*
428870ff 4648 * Damage the block. Dedup-ditto will save us when we read it later.
34dc7c2f 4649 */
428870ff
BB
4650 psize = BP_GET_PSIZE(&blk);
4651 buf = zio_buf_alloc(psize);
4652 ztest_pattern_set(buf, psize, ~pattern);
34dc7c2f 4653
428870ff
BB
4654 (void) zio_wait(zio_rewrite(NULL, spa, 0, &blk,
4655 buf, psize, NULL, NULL, ZIO_PRIORITY_SYNC_WRITE,
4656 ZIO_FLAG_CANFAIL | ZIO_FLAG_INDUCE_DAMAGE, NULL));
34dc7c2f 4657
428870ff 4658 zio_buf_free(buf, psize);
34dc7c2f 4659
428870ff 4660 (void) rw_unlock(&zs->zs_name_lock);
34dc7c2f
BB
4661}
4662
34dc7c2f 4663/*
428870ff 4664 * Scrub the pool.
34dc7c2f 4665 */
428870ff
BB
4666/* ARGSUSED */
4667void
4668ztest_scrub(ztest_ds_t *zd, uint64_t id)
34dc7c2f 4669{
428870ff
BB
4670 ztest_shared_t *zs = ztest_shared;
4671 spa_t *spa = zs->zs_spa;
34dc7c2f 4672
428870ff
BB
4673 (void) spa_scan(spa, POOL_SCAN_SCRUB);
4674 (void) poll(NULL, 0, 100); /* wait a moment, then force a restart */
4675 (void) spa_scan(spa, POOL_SCAN_SCRUB);
4676}
34dc7c2f 4677
428870ff
BB
4678/*
4679 * Rename the pool to a different name and then rename it back.
4680 */
4681/* ARGSUSED */
4682void
4683ztest_spa_rename(ztest_ds_t *zd, uint64_t id)
4684{
4685 ztest_shared_t *zs = ztest_shared;
4686 char *oldname, *newname;
4687 spa_t *spa;
34dc7c2f 4688
428870ff 4689 (void) rw_wrlock(&zs->zs_name_lock);
34dc7c2f 4690
428870ff
BB
4691 oldname = zs->zs_pool;
4692 newname = umem_alloc(strlen(oldname) + 5, UMEM_NOFAIL);
4693 (void) strcpy(newname, oldname);
4694 (void) strcat(newname, "_tmp");
34dc7c2f
BB
4695
4696 /*
428870ff 4697 * Do the rename
34dc7c2f 4698 */
428870ff 4699 VERIFY3U(0, ==, spa_rename(oldname, newname));
34dc7c2f
BB
4700
4701 /*
428870ff 4702 * Try to open it under the old name, which shouldn't exist
34dc7c2f 4703 */
428870ff 4704 VERIFY3U(ENOENT, ==, spa_open(oldname, &spa, FTAG));
34dc7c2f
BB
4705
4706 /*
428870ff
BB
4707 * Open it under the new name and make sure it's still the same spa_t.
4708 */
4709 VERIFY3U(0, ==, spa_open(newname, &spa, FTAG));
34dc7c2f 4710
428870ff
BB
4711 ASSERT(spa == zs->zs_spa);
4712 spa_close(spa, FTAG);
34dc7c2f
BB
4713
4714 /*
428870ff 4715 * Rename it back to the original
34dc7c2f 4716 */
428870ff 4717 VERIFY3U(0, ==, spa_rename(newname, oldname));
34dc7c2f 4718
428870ff
BB
4719 /*
4720 * Make sure it can still be opened
4721 */
4722 VERIFY3U(0, ==, spa_open(oldname, &spa, FTAG));
34dc7c2f 4723
428870ff
BB
4724 ASSERT(spa == zs->zs_spa);
4725 spa_close(spa, FTAG);
4726
4727 umem_free(newname, strlen(newname) + 1);
4728
4729 (void) rw_unlock(&zs->zs_name_lock);
34dc7c2f
BB
4730}
4731
428870ff
BB
4732/*
4733 * Verify pool integrity by running zdb.
4734 */
34dc7c2f 4735static void
428870ff 4736ztest_run_zdb(char *pool)
34dc7c2f
BB
4737{
4738 int status;
4739 char zdb[MAXPATHLEN + MAXNAMELEN + 20];
4740 char zbuf[1024];
4741 char *bin;
4742 char *ztest;
4743 char *isa;
4744 int isalen;
4745 FILE *fp;
4746
4747 (void) realpath(getexecname(), zdb);
4748
4749 /* zdb lives in /usr/sbin, while ztest lives in /usr/bin */
4750 bin = strstr(zdb, "/usr/bin/");
4751 ztest = strstr(bin, "/ztest");
4752 isa = bin + 8;
4753 isalen = ztest - isa;
4754 isa = strdup(isa);
4755 /* LINTED */
4756 (void) sprintf(bin,
428870ff 4757 "/usr/sbin%.*s/zdb -bcc%s%s -U %s %s",
34dc7c2f
BB
4758 isalen,
4759 isa,
4760 zopt_verbose >= 3 ? "s" : "",
4761 zopt_verbose >= 4 ? "v" : "",
428870ff 4762 spa_config_path,
b128c09f 4763 pool);
34dc7c2f
BB
4764 free(isa);
4765
4766 if (zopt_verbose >= 5)
4767 (void) printf("Executing %s\n", strstr(zdb, "zdb "));
4768
4769 fp = popen(zdb, "r");
4770
4771 while (fgets(zbuf, sizeof (zbuf), fp) != NULL)
4772 if (zopt_verbose >= 3)
4773 (void) printf("%s", zbuf);
4774
4775 status = pclose(fp);
4776
4777 if (status == 0)
4778 return;
4779
4780 ztest_dump_core = 0;
4781 if (WIFEXITED(status))
4782 fatal(0, "'%s' exit code %d", zdb, WEXITSTATUS(status));
4783 else
4784 fatal(0, "'%s' died with signal %d", zdb, WTERMSIG(status));
4785}
4786
4787static void
4788ztest_walk_pool_directory(char *header)
4789{
4790 spa_t *spa = NULL;
4791
4792 if (zopt_verbose >= 6)
4793 (void) printf("%s\n", header);
4794
4795 mutex_enter(&spa_namespace_lock);
4796 while ((spa = spa_next(spa)) != NULL)
4797 if (zopt_verbose >= 6)
4798 (void) printf("\t%s\n", spa_name(spa));
4799 mutex_exit(&spa_namespace_lock);
4800}
4801
4802static void
4803ztest_spa_import_export(char *oldname, char *newname)
4804{
fb5f0bc8 4805 nvlist_t *config, *newconfig;
34dc7c2f
BB
4806 uint64_t pool_guid;
4807 spa_t *spa;
34dc7c2f
BB
4808
4809 if (zopt_verbose >= 4) {
4810 (void) printf("import/export: old = %s, new = %s\n",
4811 oldname, newname);
4812 }
4813
4814 /*
4815 * Clean up from previous runs.
4816 */
4817 (void) spa_destroy(newname);
4818
4819 /*
4820 * Get the pool's configuration and guid.
4821 */
428870ff 4822 VERIFY3U(0, ==, spa_open(oldname, &spa, FTAG));
34dc7c2f 4823
fb5f0bc8
BB
4824 /*
4825 * Kick off a scrub to tickle scrub/export races.
4826 */
4827 if (ztest_random(2) == 0)
428870ff 4828 (void) spa_scan(spa, POOL_SCAN_SCRUB);
fb5f0bc8 4829
34dc7c2f
BB
4830 pool_guid = spa_guid(spa);
4831 spa_close(spa, FTAG);
4832
4833 ztest_walk_pool_directory("pools before export");
4834
4835 /*
4836 * Export it.
4837 */
428870ff 4838 VERIFY3U(0, ==, spa_export(oldname, &config, B_FALSE, B_FALSE));
34dc7c2f
BB
4839
4840 ztest_walk_pool_directory("pools after export");
4841
fb5f0bc8
BB
4842 /*
4843 * Try to import it.
4844 */
4845 newconfig = spa_tryimport(config);
4846 ASSERT(newconfig != NULL);
4847 nvlist_free(newconfig);
4848
34dc7c2f
BB
4849 /*
4850 * Import it under the new name.
4851 */
572e2857 4852 VERIFY3U(0, ==, spa_import(newname, config, NULL, 0));
34dc7c2f
BB
4853
4854 ztest_walk_pool_directory("pools after import");
4855
4856 /*
4857 * Try to import it again -- should fail with EEXIST.
4858 */
572e2857 4859 VERIFY3U(EEXIST, ==, spa_import(newname, config, NULL, 0));
34dc7c2f
BB
4860
4861 /*
4862 * Try to import it under a different name -- should fail with EEXIST.
4863 */
572e2857 4864 VERIFY3U(EEXIST, ==, spa_import(oldname, config, NULL, 0));
34dc7c2f
BB
4865
4866 /*
4867 * Verify that the pool is no longer visible under the old name.
4868 */
428870ff 4869 VERIFY3U(ENOENT, ==, spa_open(oldname, &spa, FTAG));
34dc7c2f
BB
4870
4871 /*
4872 * Verify that we can open and close the pool using the new name.
4873 */
428870ff 4874 VERIFY3U(0, ==, spa_open(newname, &spa, FTAG));
34dc7c2f
BB
4875 ASSERT(pool_guid == spa_guid(spa));
4876 spa_close(spa, FTAG);
4877
4878 nvlist_free(config);
4879}
4880
fb5f0bc8
BB
4881static void
4882ztest_resume(spa_t *spa)
4883{
428870ff
BB
4884 if (spa_suspended(spa) && zopt_verbose >= 6)
4885 (void) printf("resuming from suspended state\n");
4886 spa_vdev_state_enter(spa, SCL_NONE);
4887 vdev_clear(spa, NULL);
4888 (void) spa_vdev_state_exit(spa, NULL, 0);
4889 (void) zio_resume(spa);
fb5f0bc8
BB
4890}
4891
34dc7c2f 4892static void *
fb5f0bc8 4893ztest_resume_thread(void *arg)
34dc7c2f 4894{
b128c09f 4895 spa_t *spa = arg;
34dc7c2f
BB
4896
4897 while (!ztest_exiting) {
428870ff
BB
4898 if (spa_suspended(spa))
4899 ztest_resume(spa);
4900 (void) poll(NULL, 0, 100);
34dc7c2f 4901 }
34dc7c2f
BB
4902 return (NULL);
4903}
4904
428870ff
BB
4905static void *
4906ztest_deadman_thread(void *arg)
4907{
4908 ztest_shared_t *zs = arg;
4909 int grace = 300;
4910 hrtime_t delta;
4911
4912 delta = (zs->zs_thread_stop - zs->zs_thread_start) / NANOSEC + grace;
4913
4914 (void) poll(NULL, 0, (int)(1000 * delta));
4915
4916 fatal(0, "failed to complete within %d seconds of deadline", grace);
4917
4918 return (NULL);
4919}
4920
4921static void
4922ztest_execute(ztest_info_t *zi, uint64_t id)
4923{
4924 ztest_shared_t *zs = ztest_shared;
4925 ztest_ds_t *zd = &zs->zs_zd[id % zopt_datasets];
4926 hrtime_t functime = gethrtime();
4927
4928 for (int i = 0; i < zi->zi_iters; i++)
4929 zi->zi_func(zd, id);
4930
4931 functime = gethrtime() - functime;
4932
4933 atomic_add_64(&zi->zi_call_count, 1);
4934 atomic_add_64(&zi->zi_call_time, functime);
4935
4936 if (zopt_verbose >= 4) {
4937 Dl_info dli;
4938 (void) dladdr((void *)zi->zi_func, &dli);
4939 (void) printf("%6.2f sec in %s\n",
4940 (double)functime / NANOSEC, dli.dli_sname);
4941 }
4942}
4943
34dc7c2f
BB
4944static void *
4945ztest_thread(void *arg)
4946{
428870ff 4947 uint64_t id = (uintptr_t)arg;
34dc7c2f 4948 ztest_shared_t *zs = ztest_shared;
428870ff
BB
4949 uint64_t call_next;
4950 hrtime_t now;
34dc7c2f 4951 ztest_info_t *zi;
34dc7c2f 4952
428870ff 4953 while ((now = gethrtime()) < zs->zs_thread_stop) {
34dc7c2f
BB
4954 /*
4955 * See if it's time to force a crash.
4956 */
428870ff
BB
4957 if (now > zs->zs_thread_kill)
4958 ztest_kill(zs);
34dc7c2f
BB
4959
4960 /*
428870ff 4961 * If we're getting ENOSPC with some regularity, stop.
34dc7c2f 4962 */
428870ff
BB
4963 if (zs->zs_enospc_count > 10)
4964 break;
34dc7c2f
BB
4965
4966 /*
428870ff 4967 * Pick a random function to execute.
34dc7c2f 4968 */
428870ff
BB
4969 zi = &zs->zs_info[ztest_random(ZTEST_FUNCS)];
4970 call_next = zi->zi_call_next;
34dc7c2f 4971
428870ff
BB
4972 if (now >= call_next &&
4973 atomic_cas_64(&zi->zi_call_next, call_next, call_next +
4974 ztest_random(2 * zi->zi_interval[0] + 1)) == call_next)
4975 ztest_execute(zi, id);
4976 }
34dc7c2f 4977
428870ff
BB
4978 return (NULL);
4979}
34dc7c2f 4980
428870ff
BB
4981static void
4982ztest_dataset_name(char *dsname, char *pool, int d)
4983{
4984 (void) snprintf(dsname, MAXNAMELEN, "%s/ds_%d", pool, d);
4985}
34dc7c2f 4986
428870ff
BB
4987static void
4988ztest_dataset_destroy(ztest_shared_t *zs, int d)
4989{
4990 char name[MAXNAMELEN];
34dc7c2f 4991
428870ff 4992 ztest_dataset_name(name, zs->zs_pool, d);
34dc7c2f 4993
428870ff
BB
4994 if (zopt_verbose >= 3)
4995 (void) printf("Destroying %s to free up space\n", name);
34dc7c2f 4996
428870ff
BB
4997 /*
4998 * Cleanup any non-standard clones and snapshots. In general,
4999 * ztest thread t operates on dataset (t % zopt_datasets),
5000 * so there may be more than one thing to clean up.
5001 */
5002 for (int t = d; t < zopt_threads; t += zopt_datasets)
5003 ztest_dsl_dataset_cleanup(name, t);
5004
5005 (void) dmu_objset_find(name, ztest_objset_destroy_cb, NULL,
5006 DS_FIND_SNAPSHOTS | DS_FIND_CHILDREN);
5007}
5008
5009static void
5010ztest_dataset_dirobj_verify(ztest_ds_t *zd)
5011{
5012 uint64_t usedobjs, dirobjs, scratch;
5013
5014 /*
5015 * ZTEST_DIROBJ is the object directory for the entire dataset.
5016 * Therefore, the number of objects in use should equal the
5017 * number of ZTEST_DIROBJ entries, +1 for ZTEST_DIROBJ itself.
5018 * If not, we have an object leak.
5019 *
5020 * Note that we can only check this in ztest_dataset_open(),
5021 * when the open-context and syncing-context values agree.
5022 * That's because zap_count() returns the open-context value,
5023 * while dmu_objset_space() returns the rootbp fill count.
5024 */
5025 VERIFY3U(0, ==, zap_count(zd->zd_os, ZTEST_DIROBJ, &dirobjs));
5026 dmu_objset_space(zd->zd_os, &scratch, &scratch, &usedobjs, &scratch);
5027 ASSERT3U(dirobjs + 1, ==, usedobjs);
5028}
5029
5030static int
5031ztest_dataset_open(ztest_shared_t *zs, int d)
5032{
5033 ztest_ds_t *zd = &zs->zs_zd[d];
5034 uint64_t committed_seq = zd->zd_seq;
5035 objset_t *os;
5036 zilog_t *zilog;
5037 char name[MAXNAMELEN];
5038 int error;
5039
5040 ztest_dataset_name(name, zs->zs_pool, d);
5041
5042 (void) rw_rdlock(&zs->zs_name_lock);
5043
5044 error = ztest_dataset_create(name);
5045 if (error == ENOSPC) {
5046 (void) rw_unlock(&zs->zs_name_lock);
5047 ztest_record_enospc(FTAG);
5048 return (error);
34dc7c2f 5049 }
428870ff 5050 ASSERT(error == 0 || error == EEXIST);
34dc7c2f 5051
428870ff
BB
5052 VERIFY3U(dmu_objset_hold(name, zd, &os), ==, 0);
5053 (void) rw_unlock(&zs->zs_name_lock);
5054
5055 ztest_zd_init(zd, os);
5056
5057 zilog = zd->zd_zilog;
5058
5059 if (zilog->zl_header->zh_claim_lr_seq != 0 &&
5060 zilog->zl_header->zh_claim_lr_seq < committed_seq)
5061 fatal(0, "missing log records: claimed %llu < committed %llu",
5062 zilog->zl_header->zh_claim_lr_seq, committed_seq);
5063
5064 ztest_dataset_dirobj_verify(zd);
5065
5066 zil_replay(os, zd, ztest_replay_vector);
5067
5068 ztest_dataset_dirobj_verify(zd);
5069
5070 if (zopt_verbose >= 6)
5071 (void) printf("%s replay %llu blocks, %llu records, seq %llu\n",
5072 zd->zd_name,
5073 (u_longlong_t)zilog->zl_parse_blk_count,
5074 (u_longlong_t)zilog->zl_parse_lr_count,
5075 (u_longlong_t)zilog->zl_replaying_seq);
5076
5077 zilog = zil_open(os, ztest_get_data);
5078
5079 if (zilog->zl_replaying_seq != 0 &&
5080 zilog->zl_replaying_seq < committed_seq)
5081 fatal(0, "missing log records: replayed %llu < committed %llu",
5082 zilog->zl_replaying_seq, committed_seq);
5083
5084 return (0);
5085}
5086
5087static void
5088ztest_dataset_close(ztest_shared_t *zs, int d)
5089{
5090 ztest_ds_t *zd = &zs->zs_zd[d];
5091
5092 zil_close(zd->zd_zilog);
5093 dmu_objset_rele(zd->zd_os, zd);
5094
5095 ztest_zd_fini(zd);
34dc7c2f
BB
5096}
5097
5098/*
5099 * Kick off threads to run tests on all datasets in parallel.
5100 */
5101static void
428870ff 5102ztest_run(ztest_shared_t *zs)
34dc7c2f 5103{
428870ff 5104 thread_t *tid;
34dc7c2f 5105 spa_t *spa;
b128c09f 5106 thread_t resume_tid;
428870ff 5107 int error;
b128c09f
BB
5108
5109 ztest_exiting = B_FALSE;
34dc7c2f 5110
34dc7c2f 5111 /*
428870ff 5112 * Initialize parent/child shared state.
34dc7c2f 5113 */
428870ff
BB
5114 VERIFY(_mutex_init(&zs->zs_vdev_lock, USYNC_THREAD, NULL) == 0);
5115 VERIFY(rwlock_init(&zs->zs_name_lock, USYNC_THREAD, NULL) == 0);
34dc7c2f 5116
428870ff
BB
5117 zs->zs_thread_start = gethrtime();
5118 zs->zs_thread_stop = zs->zs_thread_start + zopt_passtime * NANOSEC;
5119 zs->zs_thread_stop = MIN(zs->zs_thread_stop, zs->zs_proc_stop);
5120 zs->zs_thread_kill = zs->zs_thread_stop;
5121 if (ztest_random(100) < zopt_killrate)
5122 zs->zs_thread_kill -= ztest_random(zopt_passtime * NANOSEC);
34dc7c2f 5123
428870ff 5124 (void) _mutex_init(&zcl.zcl_callbacks_lock, USYNC_THREAD, NULL);
34dc7c2f 5125
428870ff
BB
5126 list_create(&zcl.zcl_callbacks, sizeof (ztest_cb_data_t),
5127 offsetof(ztest_cb_data_t, zcd_node));
34dc7c2f
BB
5128
5129 /*
b128c09f 5130 * Open our pool.
34dc7c2f 5131 */
428870ff
BB
5132 kernel_init(FREAD | FWRITE);
5133 VERIFY(spa_open(zs->zs_pool, &spa, FTAG) == 0);
5134 zs->zs_spa = spa;
5135
5136 spa->spa_dedup_ditto = 2 * ZIO_DEDUPDITTO_MIN;
34dc7c2f 5137
fb5f0bc8
BB
5138 /*
5139 * We don't expect the pool to suspend unless maxfaults == 0,
5140 * in which case ztest_fault_inject() temporarily takes away
5141 * the only valid replica.
5142 */
428870ff 5143 if (MAXFAULTS() == 0)
fb5f0bc8
BB
5144 spa->spa_failmode = ZIO_FAILURE_MODE_WAIT;
5145 else
5146 spa->spa_failmode = ZIO_FAILURE_MODE_PANIC;
5147
34dc7c2f 5148 /*
b128c09f 5149 * Create a thread to periodically resume suspended I/O.
34dc7c2f 5150 */
fb5f0bc8 5151 VERIFY(thr_create(0, 0, ztest_resume_thread, spa, THR_BOUND,
b128c09f 5152 &resume_tid) == 0);
34dc7c2f 5153
428870ff
BB
5154 /*
5155 * Create a deadman thread to abort() if we hang.
5156 */
5157 VERIFY(thr_create(0, 0, ztest_deadman_thread, zs, THR_BOUND,
5158 NULL) == 0);
5159
34dc7c2f
BB
5160 /*
5161 * Verify that we can safely inquire about about any object,
5162 * whether it's allocated or not. To make it interesting,
5163 * we probe a 5-wide window around each power of two.
5164 * This hits all edge cases, including zero and the max.
5165 */
428870ff
BB
5166 for (int t = 0; t < 64; t++) {
5167 for (int d = -5; d <= 5; d++) {
34dc7c2f
BB
5168 error = dmu_object_info(spa->spa_meta_objset,
5169 (1ULL << t) + d, NULL);
5170 ASSERT(error == 0 || error == ENOENT ||
5171 error == EINVAL);
5172 }
5173 }
5174
5175 /*
428870ff 5176 * If we got any ENOSPC errors on the previous run, destroy something.
34dc7c2f 5177 */
428870ff
BB
5178 if (zs->zs_enospc_count != 0) {
5179 int d = ztest_random(zopt_datasets);
5180 ztest_dataset_destroy(zs, d);
5181 }
34dc7c2f
BB
5182 zs->zs_enospc_count = 0;
5183
428870ff 5184 tid = umem_zalloc(zopt_threads * sizeof (thread_t), UMEM_NOFAIL);
34dc7c2f
BB
5185
5186 if (zopt_verbose >= 4)
5187 (void) printf("starting main threads...\n");
5188
428870ff
BB
5189 /*
5190 * Kick off all the tests that run in parallel.
5191 */
5192 for (int t = 0; t < zopt_threads; t++) {
5193 if (t < zopt_datasets && ztest_dataset_open(zs, t) != 0)
5194 return;
5195 VERIFY(thr_create(0, 0, ztest_thread, (void *)(uintptr_t)t,
5196 THR_BOUND, &tid[t]) == 0);
34dc7c2f
BB
5197 }
5198
428870ff
BB
5199 /*
5200 * Wait for all of the tests to complete. We go in reverse order
5201 * so we don't close datasets while threads are still using them.
5202 */
5203 for (int t = zopt_threads - 1; t >= 0; t--) {
5204 VERIFY(thr_join(tid[t], NULL, NULL) == 0);
5205 if (t < zopt_datasets)
5206 ztest_dataset_close(zs, t);
34dc7c2f
BB
5207 }
5208
34dc7c2f
BB
5209 txg_wait_synced(spa_get_dsl(spa), 0);
5210
428870ff
BB
5211 zs->zs_alloc = metaslab_class_get_alloc(spa_normal_class(spa));
5212 zs->zs_space = metaslab_class_get_space(spa_normal_class(spa));
5213
5214 umem_free(tid, zopt_threads * sizeof (thread_t));
5215
5216 /* Kill the resume thread */
5217 ztest_exiting = B_TRUE;
5218 VERIFY(thr_join(resume_tid, NULL, NULL) == 0);
5219 ztest_resume(spa);
34dc7c2f
BB
5220
5221 /*
428870ff
BB
5222 * Right before closing the pool, kick off a bunch of async I/O;
5223 * spa_close() should wait for it to complete.
34dc7c2f 5224 */
428870ff
BB
5225 for (uint64_t object = 1; object < 50; object++)
5226 dmu_prefetch(spa->spa_meta_objset, object, 0, 1ULL << 20);
5227
5228 spa_close(spa, FTAG);
5229
5230 /*
5231 * Verify that we can loop over all pools.
5232 */
5233 mutex_enter(&spa_namespace_lock);
5234 for (spa = spa_next(NULL); spa != NULL; spa = spa_next(spa))
5235 if (zopt_verbose > 3)
5236 (void) printf("spa_next: found %s\n", spa_name(spa));
5237 mutex_exit(&spa_namespace_lock);
5238
5239 /*
5240 * Verify that we can export the pool and reimport it under a
5241 * different name.
5242 */
5243 if (ztest_random(2) == 0) {
5244 char name[MAXNAMELEN];
5245 (void) snprintf(name, MAXNAMELEN, "%s_import", zs->zs_pool);
5246 ztest_spa_import_export(zs->zs_pool, name);
5247 ztest_spa_import_export(name, zs->zs_pool);
5248 }
5249
5250 kernel_fini();
572e2857
BB
5251
5252 list_destroy(&zcl.zcl_callbacks);
5253
5254 (void) _mutex_destroy(&zcl.zcl_callbacks_lock);
5255
5256 (void) rwlock_destroy(&zs->zs_name_lock);
5257 (void) _mutex_destroy(&zs->zs_vdev_lock);
428870ff
BB
5258}
5259
5260static void
5261ztest_freeze(ztest_shared_t *zs)
5262{
5263 ztest_ds_t *zd = &zs->zs_zd[0];
5264 spa_t *spa;
5265 int numloops = 0;
5266
5267 if (zopt_verbose >= 3)
5268 (void) printf("testing spa_freeze()...\n");
9babb374 5269
428870ff
BB
5270 kernel_init(FREAD | FWRITE);
5271 VERIFY3U(0, ==, spa_open(zs->zs_pool, &spa, FTAG));
5272 VERIFY3U(0, ==, ztest_dataset_open(zs, 0));
9babb374 5273
428870ff
BB
5274 /*
5275 * Force the first log block to be transactionally allocated.
5276 * We have to do this before we freeze the pool -- otherwise
5277 * the log chain won't be anchored.
5278 */
5279 while (BP_IS_HOLE(&zd->zd_zilog->zl_header->zh_log)) {
5280 ztest_dmu_object_alloc_free(zd, 0);
572e2857 5281 zil_commit(zd->zd_zilog, 0);
34dc7c2f
BB
5282 }
5283
5284 txg_wait_synced(spa_get_dsl(spa), 0);
5285
428870ff
BB
5286 /*
5287 * Freeze the pool. This stops spa_sync() from doing anything,
5288 * so that the only way to record changes from now on is the ZIL.
5289 */
5290 spa_freeze(spa);
b128c09f 5291
428870ff
BB
5292 /*
5293 * Run tests that generate log records but don't alter the pool config
5294 * or depend on DSL sync tasks (snapshots, objset create/destroy, etc).
5295 * We do a txg_wait_synced() after each iteration to force the txg
5296 * to increase well beyond the last synced value in the uberblock.
5297 * The ZIL should be OK with that.
5298 */
5299 while (ztest_random(10) != 0 && numloops++ < zopt_maxloops) {
5300 ztest_dmu_write_parallel(zd, 0);
5301 ztest_dmu_object_alloc_free(zd, 0);
5302 txg_wait_synced(spa_get_dsl(spa), 0);
5303 }
b128c09f 5304
34dc7c2f 5305 /*
428870ff 5306 * Commit all of the changes we just generated.
34dc7c2f 5307 */
572e2857 5308 zil_commit(zd->zd_zilog, 0);
428870ff 5309 txg_wait_synced(spa_get_dsl(spa), 0);
34dc7c2f 5310
428870ff
BB
5311 /*
5312 * Close our dataset and close the pool.
5313 */
5314 ztest_dataset_close(zs, 0);
34dc7c2f 5315 spa_close(spa, FTAG);
428870ff 5316 kernel_fini();
34dc7c2f 5317
428870ff
BB
5318 /*
5319 * Open and close the pool and dataset to induce log replay.
5320 */
5321 kernel_init(FREAD | FWRITE);
5322 VERIFY3U(0, ==, spa_open(zs->zs_pool, &spa, FTAG));
5323 VERIFY3U(0, ==, ztest_dataset_open(zs, 0));
5324 ztest_dataset_close(zs, 0);
5325 spa_close(spa, FTAG);
34dc7c2f
BB
5326 kernel_fini();
5327}
5328
5329void
5330print_time(hrtime_t t, char *timebuf)
5331{
5332 hrtime_t s = t / NANOSEC;
5333 hrtime_t m = s / 60;
5334 hrtime_t h = m / 60;
5335 hrtime_t d = h / 24;
5336
5337 s -= m * 60;
5338 m -= h * 60;
5339 h -= d * 24;
5340
5341 timebuf[0] = '\0';
5342
5343 if (d)
5344 (void) sprintf(timebuf,
5345 "%llud%02lluh%02llum%02llus", d, h, m, s);
5346 else if (h)
5347 (void) sprintf(timebuf, "%lluh%02llum%02llus", h, m, s);
5348 else if (m)
5349 (void) sprintf(timebuf, "%llum%02llus", m, s);
5350 else
5351 (void) sprintf(timebuf, "%llus", s);
5352}
5353
428870ff
BB
5354static nvlist_t *
5355make_random_props()
5356{
5357 nvlist_t *props;
5358
5359 if (ztest_random(2) == 0)
5360 return (NULL);
5361
5362 VERIFY(nvlist_alloc(&props, NV_UNIQUE_NAME, 0) == 0);
5363 VERIFY(nvlist_add_uint64(props, "autoreplace", 1) == 0);
5364
5365 (void) printf("props:\n");
5366 dump_nvlist(props, 4);
5367
5368 return (props);
5369}
5370
34dc7c2f
BB
5371/*
5372 * Create a storage pool with the given name and initial vdev size.
428870ff 5373 * Then test spa_freeze() functionality.
34dc7c2f
BB
5374 */
5375static void
428870ff 5376ztest_init(ztest_shared_t *zs)
34dc7c2f
BB
5377{
5378 spa_t *spa;
428870ff
BB
5379 nvlist_t *nvroot, *props;
5380
5381 VERIFY(_mutex_init(&zs->zs_vdev_lock, USYNC_THREAD, NULL) == 0);
5382 VERIFY(rwlock_init(&zs->zs_name_lock, USYNC_THREAD, NULL) == 0);
34dc7c2f
BB
5383
5384 kernel_init(FREAD | FWRITE);
5385
5386 /*
5387 * Create the storage pool.
5388 */
428870ff
BB
5389 (void) spa_destroy(zs->zs_pool);
5390 ztest_shared->zs_vdev_next_leaf = 0;
5391 zs->zs_splits = 0;
5392 zs->zs_mirrors = zopt_mirrors;
b128c09f 5393 nvroot = make_vdev_root(NULL, NULL, zopt_vdev_size, 0,
428870ff
BB
5394 0, zopt_raidz, zs->zs_mirrors, 1);
5395 props = make_random_props();
5396 VERIFY3U(0, ==, spa_create(zs->zs_pool, nvroot, props, NULL, NULL));
34dc7c2f
BB
5397 nvlist_free(nvroot);
5398
428870ff 5399 VERIFY3U(0, ==, spa_open(zs->zs_pool, &spa, FTAG));
9babb374 5400 metaslab_sz = 1ULL << spa->spa_root_vdev->vdev_child[0]->vdev_ms_shift;
34dc7c2f
BB
5401 spa_close(spa, FTAG);
5402
5403 kernel_fini();
428870ff
BB
5404
5405 ztest_run_zdb(zs->zs_pool);
5406
5407 ztest_freeze(zs);
5408
5409 ztest_run_zdb(zs->zs_pool);
572e2857
BB
5410
5411 (void) rwlock_destroy(&zs->zs_name_lock);
5412 (void) _mutex_destroy(&zs->zs_vdev_lock);
34dc7c2f
BB
5413}
5414
5415int
5416main(int argc, char **argv)
5417{
5418 int kills = 0;
5419 int iters = 0;
34dc7c2f 5420 ztest_shared_t *zs;
428870ff 5421 size_t shared_size;
34dc7c2f
BB
5422 ztest_info_t *zi;
5423 char timebuf[100];
5424 char numbuf[6];
428870ff 5425 spa_t *spa;
34dc7c2f
BB
5426
5427 (void) setvbuf(stdout, NULL, _IOLBF, 0);
5428
34dc7c2f
BB
5429 ztest_random_fd = open("/dev/urandom", O_RDONLY);
5430
5431 process_options(argc, argv);
5432
428870ff
BB
5433 /* Override location of zpool.cache */
5434 (void) asprintf((char **)&spa_config_path, "%s/zpool.cache", zopt_dir);
5435
34dc7c2f
BB
5436 /*
5437 * Blow away any existing copy of zpool.cache
5438 */
5439 if (zopt_init != 0)
428870ff
BB
5440 (void) remove(spa_config_path);
5441
5442 shared_size = sizeof (*zs) + zopt_datasets * sizeof (ztest_ds_t);
34dc7c2f
BB
5443
5444 zs = ztest_shared = (void *)mmap(0,
428870ff 5445 P2ROUNDUP(shared_size, getpagesize()),
34dc7c2f
BB
5446 PROT_READ | PROT_WRITE, MAP_SHARED | MAP_ANON, -1, 0);
5447
5448 if (zopt_verbose >= 1) {
5449 (void) printf("%llu vdevs, %d datasets, %d threads,"
5450 " %llu seconds...\n",
5451 (u_longlong_t)zopt_vdevs, zopt_datasets, zopt_threads,
5452 (u_longlong_t)zopt_time);
5453 }
5454
5455 /*
5456 * Create and initialize our storage pool.
5457 */
428870ff 5458 for (int i = 1; i <= zopt_init; i++) {
34dc7c2f
BB
5459 bzero(zs, sizeof (ztest_shared_t));
5460 if (zopt_verbose >= 3 && zopt_init != 1)
5461 (void) printf("ztest_init(), pass %d\n", i);
428870ff
BB
5462 zs->zs_pool = zopt_pool;
5463 ztest_init(zs);
34dc7c2f
BB
5464 }
5465
428870ff
BB
5466 zs->zs_pool = zopt_pool;
5467 zs->zs_proc_start = gethrtime();
5468 zs->zs_proc_stop = zs->zs_proc_start + zopt_time * NANOSEC;
34dc7c2f 5469
428870ff
BB
5470 for (int f = 0; f < ZTEST_FUNCS; f++) {
5471 zi = &zs->zs_info[f];
34dc7c2f 5472 *zi = ztest_info[f];
428870ff
BB
5473 if (zs->zs_proc_start + zi->zi_interval[0] > zs->zs_proc_stop)
5474 zi->zi_call_next = UINT64_MAX;
34dc7c2f 5475 else
428870ff
BB
5476 zi->zi_call_next = zs->zs_proc_start +
5477 ztest_random(2 * zi->zi_interval[0] + 1);
34dc7c2f
BB
5478 }
5479
34dc7c2f
BB
5480 /*
5481 * Run the tests in a loop. These tests include fault injection
5482 * to verify that self-healing data works, and forced crashes
5483 * to verify that we never lose on-disk consistency.
5484 */
428870ff 5485 while (gethrtime() < zs->zs_proc_stop) {
34dc7c2f
BB
5486 int status;
5487 pid_t pid;
34dc7c2f
BB
5488
5489 /*
5490 * Initialize the workload counters for each function.
5491 */
428870ff 5492 for (int f = 0; f < ZTEST_FUNCS; f++) {
34dc7c2f 5493 zi = &zs->zs_info[f];
428870ff 5494 zi->zi_call_count = 0;
34dc7c2f
BB
5495 zi->zi_call_time = 0;
5496 }
5497
9babb374
BB
5498 /* Set the allocation switch size */
5499 metaslab_df_alloc_threshold = ztest_random(metaslab_sz / 4) + 1;
5500
34dc7c2f
BB
5501 pid = fork();
5502
5503 if (pid == -1)
5504 fatal(1, "fork failed");
5505
5506 if (pid == 0) { /* child */
5507 struct rlimit rl = { 1024, 1024 };
5508 (void) setrlimit(RLIMIT_NOFILE, &rl);
5509 (void) enable_extended_FILE_stdio(-1, -1);
428870ff 5510 ztest_run(zs);
34dc7c2f
BB
5511 exit(0);
5512 }
5513
5514 while (waitpid(pid, &status, 0) != pid)
5515 continue;
5516
5517 if (WIFEXITED(status)) {
5518 if (WEXITSTATUS(status) != 0) {
5519 (void) fprintf(stderr,
5520 "child exited with code %d\n",
5521 WEXITSTATUS(status));
5522 exit(2);
5523 }
5524 } else if (WIFSIGNALED(status)) {
5525 if (WTERMSIG(status) != SIGKILL) {
5526 (void) fprintf(stderr,
5527 "child died with signal %d\n",
5528 WTERMSIG(status));
5529 exit(3);
5530 }
5531 kills++;
5532 } else {
5533 (void) fprintf(stderr, "something strange happened "
5534 "to child\n");
5535 exit(4);
5536 }
5537
5538 iters++;
5539
5540 if (zopt_verbose >= 1) {
5541 hrtime_t now = gethrtime();
5542
428870ff
BB
5543 now = MIN(now, zs->zs_proc_stop);
5544 print_time(zs->zs_proc_stop - now, timebuf);
34dc7c2f
BB
5545 nicenum(zs->zs_space, numbuf);
5546
5547 (void) printf("Pass %3d, %8s, %3llu ENOSPC, "
5548 "%4.1f%% of %5s used, %3.0f%% done, %8s to go\n",
5549 iters,
5550 WIFEXITED(status) ? "Complete" : "SIGKILL",
5551 (u_longlong_t)zs->zs_enospc_count,
5552 100.0 * zs->zs_alloc / zs->zs_space,
5553 numbuf,
428870ff 5554 100.0 * (now - zs->zs_proc_start) /
34dc7c2f
BB
5555 (zopt_time * NANOSEC), timebuf);
5556 }
5557
5558 if (zopt_verbose >= 2) {
5559 (void) printf("\nWorkload summary:\n\n");
5560 (void) printf("%7s %9s %s\n",
5561 "Calls", "Time", "Function");
5562 (void) printf("%7s %9s %s\n",
5563 "-----", "----", "--------");
428870ff 5564 for (int f = 0; f < ZTEST_FUNCS; f++) {
34dc7c2f
BB
5565 Dl_info dli;
5566
5567 zi = &zs->zs_info[f];
5568 print_time(zi->zi_call_time, timebuf);
5569 (void) dladdr((void *)zi->zi_func, &dli);
5570 (void) printf("%7llu %9s %s\n",
428870ff 5571 (u_longlong_t)zi->zi_call_count, timebuf,
34dc7c2f
BB
5572 dli.dli_sname);
5573 }
5574 (void) printf("\n");
5575 }
5576
5577 /*
428870ff
BB
5578 * It's possible that we killed a child during a rename test,
5579 * in which case we'll have a 'ztest_tmp' pool lying around
5580 * instead of 'ztest'. Do a blind rename in case this happened.
34dc7c2f 5581 */
428870ff
BB
5582 kernel_init(FREAD);
5583 if (spa_open(zopt_pool, &spa, FTAG) == 0) {
5584 spa_close(spa, FTAG);
5585 } else {
5586 char tmpname[MAXNAMELEN];
5587 kernel_fini();
5588 kernel_init(FREAD | FWRITE);
5589 (void) snprintf(tmpname, sizeof (tmpname), "%s_tmp",
5590 zopt_pool);
5591 (void) spa_rename(tmpname, zopt_pool);
5592 }
34dc7c2f 5593 kernel_fini();
34dc7c2f 5594
428870ff
BB
5595 ztest_run_zdb(zopt_pool);
5596 }
34dc7c2f
BB
5597
5598 if (zopt_verbose >= 1) {
5599 (void) printf("%d killed, %d completed, %.0f%% kill rate\n",
5600 kills, iters - kills, (100.0 * kills) / MAX(1, iters));
5601 }
5602
5603 return (0);
5604}