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Fixes for procfs files backed by linked lists
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CommitLineData
34dc7c2f
BB
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/*
572e2857 22 * Copyright (c) 2005, 2010, Oracle and/or its affiliates. All rights reserved.
a0bd735a 23 * Copyright (c) 2016 Actifio, Inc. All rights reserved.
34dc7c2f
BB
24 */
25
34dc7c2f
BB
26#include <assert.h>
27#include <fcntl.h>
28#include <poll.h>
29#include <stdio.h>
30#include <stdlib.h>
31#include <string.h>
32#include <zlib.h>
9867e8be 33#include <libgen.h>
1e33ac1e 34#include <sys/signal.h>
34dc7c2f
BB
35#include <sys/spa.h>
36#include <sys/stat.h>
37#include <sys/processor.h>
38#include <sys/zfs_context.h>
13fe0198 39#include <sys/rrwlock.h>
34dc7c2f 40#include <sys/utsname.h>
d603ed6c 41#include <sys/time.h>
d164b209 42#include <sys/systeminfo.h>
1eeb4562 43#include <zfs_fletcher.h>
0b04990a 44#include <sys/crypto/icp.h>
34dc7c2f
BB
45
46/*
47 * Emulation of kernel services in userland.
48 */
49
428870ff 50int aok;
34dc7c2f
BB
51uint64_t physmem;
52vnode_t *rootdir = (vnode_t *)0xabcd1234;
d164b209 53char hw_serial[HW_HOSTID_LEN];
f0e324f2 54struct utsname hw_utsname;
ca67b33a 55vmem_t *zio_arena = NULL;
34dc7c2f 56
9867e8be
MA
57/* If set, all blocks read will be copied to the specified directory. */
58char *vn_dumpdir = NULL;
59
428870ff
BB
60/* this only exists to have its address taken */
61struct proc p0;
62
34dc7c2f
BB
63/*
64 * =========================================================================
65 * threads
66 * =========================================================================
c25b8f99
BB
67 *
68 * TS_STACK_MIN is dictated by the minimum allowed pthread stack size. While
69 * TS_STACK_MAX is somewhat arbitrary, it was selected to be large enough for
70 * the expected stack depth while small enough to avoid exhausting address
71 * space with high thread counts.
34dc7c2f 72 */
c25b8f99
BB
73#define TS_STACK_MIN MAX(PTHREAD_STACK_MIN, 32768)
74#define TS_STACK_MAX (256 * 1024)
1e33ac1e 75
c25b8f99 76/*ARGSUSED*/
1e33ac1e 77kthread_t *
c25b8f99 78zk_thread_create(void (*func)(void *), void *arg, size_t stksize, int state)
1e33ac1e 79{
1e33ac1e 80 pthread_attr_t attr;
c25b8f99 81 pthread_t tid;
aa0ac7ca 82 char *stkstr;
c25b8f99 83 int detachstate = PTHREAD_CREATE_DETACHED;
1e33ac1e 84
c25b8f99 85 VERIFY0(pthread_attr_init(&attr));
1e33ac1e 86
c25b8f99
BB
87 if (state & TS_JOINABLE)
88 detachstate = PTHREAD_CREATE_JOINABLE;
1e33ac1e 89
aa0ac7ca
BB
90 VERIFY0(pthread_attr_setdetachstate(&attr, detachstate));
91
1e33ac1e 92 /*
aa0ac7ca
BB
93 * We allow the default stack size in user space to be specified by
94 * setting the ZFS_STACK_SIZE environment variable. This allows us
95 * the convenience of observing and debugging stack overruns in
96 * user space. Explicitly specified stack sizes will be honored.
97 * The usage of ZFS_STACK_SIZE is discussed further in the
98 * ENVIRONMENT VARIABLES sections of the ztest(1) man page.
1e33ac1e 99 */
aa0ac7ca
BB
100 if (stksize == 0) {
101 stkstr = getenv("ZFS_STACK_SIZE");
102
103 if (stkstr == NULL)
104 stksize = TS_STACK_MAX;
105 else
106 stksize = MAX(atoi(stkstr), TS_STACK_MIN);
107 }
108
109 VERIFY3S(stksize, >, 0);
110 stksize = P2ROUNDUP(MAX(stksize, TS_STACK_MIN), PAGESIZE);
c25b8f99 111
206971d2
DR
112 /*
113 * If this ever fails, it may be because the stack size is not a
114 * multiple of system page size.
115 */
aa0ac7ca
BB
116 VERIFY0(pthread_attr_setstacksize(&attr, stksize));
117 VERIFY0(pthread_attr_setguardsize(&attr, PAGESIZE));
118
c25b8f99 119 VERIFY0(pthread_create(&tid, &attr, (void *(*)(void *))func, arg));
aa0ac7ca 120 VERIFY0(pthread_attr_destroy(&attr));
1e33ac1e 121
c25b8f99 122 return ((void *)(uintptr_t)tid);
34dc7c2f
BB
123}
124
125/*
126 * =========================================================================
127 * kstats
128 * =========================================================================
129 */
130/*ARGSUSED*/
131kstat_t *
330847ff
MA
132kstat_create(const char *module, int instance, const char *name,
133 const char *class, uchar_t type, ulong_t ndata, uchar_t ks_flag)
34dc7c2f
BB
134{
135 return (NULL);
136}
137
138/*ARGSUSED*/
139void
140kstat_install(kstat_t *ksp)
141{}
142
143/*ARGSUSED*/
144void
145kstat_delete(kstat_t *ksp)
146{}
147
1421c891 148/*ARGSUSED*/
330847ff
MA
149void
150kstat_waitq_enter(kstat_io_t *kiop)
151{}
152
153/*ARGSUSED*/
154void
155kstat_waitq_exit(kstat_io_t *kiop)
156{}
157
158/*ARGSUSED*/
159void
160kstat_runq_enter(kstat_io_t *kiop)
161{}
162
163/*ARGSUSED*/
164void
165kstat_runq_exit(kstat_io_t *kiop)
166{}
167
168/*ARGSUSED*/
169void
170kstat_waitq_to_runq(kstat_io_t *kiop)
171{}
172
173/*ARGSUSED*/
174void
175kstat_runq_back_to_waitq(kstat_io_t *kiop)
176{}
177
1421c891
PS
178void
179kstat_set_raw_ops(kstat_t *ksp,
180 int (*headers)(char *buf, size_t size),
181 int (*data)(char *buf, size_t size, void *data),
182 void *(*addr)(kstat_t *ksp, loff_t index))
183{}
184
34dc7c2f
BB
185/*
186 * =========================================================================
187 * mutexes
188 * =========================================================================
189 */
1e33ac1e 190
34dc7c2f 191void
1e33ac1e 192mutex_init(kmutex_t *mp, char *name, int type, void *cookie)
34dc7c2f 193{
c25b8f99
BB
194 VERIFY0(pthread_mutex_init(&mp->m_lock, NULL));
195 memset(&mp->m_owner, 0, sizeof (pthread_t));
34dc7c2f
BB
196}
197
198void
1e33ac1e 199mutex_destroy(kmutex_t *mp)
34dc7c2f 200{
c25b8f99 201 VERIFY0(pthread_mutex_destroy(&mp->m_lock));
34dc7c2f
BB
202}
203
204void
205mutex_enter(kmutex_t *mp)
206{
c25b8f99
BB
207 VERIFY0(pthread_mutex_lock(&mp->m_lock));
208 mp->m_owner = pthread_self();
34dc7c2f
BB
209}
210
211int
212mutex_tryenter(kmutex_t *mp)
213{
c25b8f99
BB
214 int error;
215
216 error = pthread_mutex_trylock(&mp->m_lock);
217 if (error == 0) {
218 mp->m_owner = pthread_self();
34dc7c2f
BB
219 return (1);
220 } else {
c25b8f99 221 VERIFY3S(error, ==, EBUSY);
34dc7c2f
BB
222 return (0);
223 }
224}
225
226void
227mutex_exit(kmutex_t *mp)
228{
c25b8f99
BB
229 memset(&mp->m_owner, 0, sizeof (pthread_t));
230 VERIFY0(pthread_mutex_unlock(&mp->m_lock));
1e33ac1e
BB
231}
232
34dc7c2f
BB
233/*
234 * =========================================================================
235 * rwlocks
236 * =========================================================================
237 */
1e33ac1e 238
34dc7c2f
BB
239void
240rw_init(krwlock_t *rwlp, char *name, int type, void *arg)
241{
c25b8f99 242 VERIFY0(pthread_rwlock_init(&rwlp->rw_lock, NULL));
1e33ac1e 243 rwlp->rw_readers = 0;
c25b8f99 244 rwlp->rw_owner = 0;
34dc7c2f
BB
245}
246
247void
248rw_destroy(krwlock_t *rwlp)
249{
c25b8f99 250 VERIFY0(pthread_rwlock_destroy(&rwlp->rw_lock));
34dc7c2f
BB
251}
252
253void
254rw_enter(krwlock_t *rwlp, krw_t rw)
255{
1e33ac1e 256 if (rw == RW_READER) {
c25b8f99 257 VERIFY0(pthread_rwlock_rdlock(&rwlp->rw_lock));
1e33ac1e
BB
258 atomic_inc_uint(&rwlp->rw_readers);
259 } else {
c25b8f99
BB
260 VERIFY0(pthread_rwlock_wrlock(&rwlp->rw_lock));
261 rwlp->rw_owner = pthread_self();
1e33ac1e 262 }
34dc7c2f
BB
263}
264
265void
266rw_exit(krwlock_t *rwlp)
267{
1e33ac1e
BB
268 if (RW_READ_HELD(rwlp))
269 atomic_dec_uint(&rwlp->rw_readers);
270 else
c25b8f99 271 rwlp->rw_owner = 0;
34dc7c2f 272
c25b8f99 273 VERIFY0(pthread_rwlock_unlock(&rwlp->rw_lock));
34dc7c2f
BB
274}
275
276int
277rw_tryenter(krwlock_t *rwlp, krw_t rw)
278{
c25b8f99 279 int error;
34dc7c2f
BB
280
281 if (rw == RW_READER)
c25b8f99 282 error = pthread_rwlock_tryrdlock(&rwlp->rw_lock);
34dc7c2f 283 else
c25b8f99 284 error = pthread_rwlock_trywrlock(&rwlp->rw_lock);
1e33ac1e 285
c25b8f99 286 if (error == 0) {
1e33ac1e
BB
287 if (rw == RW_READER)
288 atomic_inc_uint(&rwlp->rw_readers);
c25b8f99
BB
289 else
290 rwlp->rw_owner = pthread_self();
1e33ac1e 291
34dc7c2f
BB
292 return (1);
293 }
294
c25b8f99 295 VERIFY3S(error, ==, EBUSY);
1e33ac1e 296
34dc7c2f
BB
297 return (0);
298}
299
6cb8e530
PZ
300/* ARGSUSED */
301uint32_t
302zone_get_hostid(void *zonep)
303{
304 /*
305 * We're emulating the system's hostid in userland.
306 */
307 return (strtoul(hw_serial, NULL, 10));
308}
309
34dc7c2f
BB
310int
311rw_tryupgrade(krwlock_t *rwlp)
312{
34dc7c2f
BB
313 return (0);
314}
315
316/*
317 * =========================================================================
318 * condition variables
319 * =========================================================================
320 */
1e33ac1e 321
34dc7c2f
BB
322void
323cv_init(kcondvar_t *cv, char *name, int type, void *arg)
324{
c25b8f99 325 VERIFY0(pthread_cond_init(cv, NULL));
34dc7c2f
BB
326}
327
328void
329cv_destroy(kcondvar_t *cv)
330{
c25b8f99 331 VERIFY0(pthread_cond_destroy(cv));
34dc7c2f
BB
332}
333
334void
335cv_wait(kcondvar_t *cv, kmutex_t *mp)
336{
c25b8f99
BB
337 memset(&mp->m_owner, 0, sizeof (pthread_t));
338 VERIFY0(pthread_cond_wait(cv, &mp->m_lock));
339 mp->m_owner = pthread_self();
34dc7c2f
BB
340}
341
342clock_t
343cv_timedwait(kcondvar_t *cv, kmutex_t *mp, clock_t abstime)
344{
345 int error;
1e33ac1e 346 struct timeval tv;
6413c95f 347 struct timespec ts;
34dc7c2f
BB
348 clock_t delta;
349
428870ff 350 delta = abstime - ddi_get_lbolt();
34dc7c2f
BB
351 if (delta <= 0)
352 return (-1);
353
1e33ac1e
BB
354 VERIFY(gettimeofday(&tv, NULL) == 0);
355
356 ts.tv_sec = tv.tv_sec + delta / hz;
67925abb 357 ts.tv_nsec = tv.tv_usec * NSEC_PER_USEC + (delta % hz) * (NANOSEC / hz);
1e33ac1e
BB
358 if (ts.tv_nsec >= NANOSEC) {
359 ts.tv_sec++;
360 ts.tv_nsec -= NANOSEC;
361 }
34dc7c2f 362
c25b8f99
BB
363 memset(&mp->m_owner, 0, sizeof (pthread_t));
364 error = pthread_cond_timedwait(cv, &mp->m_lock, &ts);
365 mp->m_owner = pthread_self();
34dc7c2f 366
1e33ac1e 367 if (error == ETIMEDOUT)
34dc7c2f
BB
368 return (-1);
369
206971d2 370 VERIFY0(error);
34dc7c2f
BB
371
372 return (1);
373}
374
63fd3c6c
AL
375/*ARGSUSED*/
376clock_t
377cv_timedwait_hires(kcondvar_t *cv, kmutex_t *mp, hrtime_t tim, hrtime_t res,
378 int flag)
379{
380 int error;
67925abb 381 struct timeval tv;
6413c95f 382 struct timespec ts;
63fd3c6c
AL
383 hrtime_t delta;
384
206971d2
DR
385 ASSERT(flag == 0 || flag == CALLOUT_FLAG_ABSOLUTE);
386
387 delta = tim;
388 if (flag & CALLOUT_FLAG_ABSOLUTE)
389 delta -= gethrtime();
63fd3c6c 390
63fd3c6c
AL
391 if (delta <= 0)
392 return (-1);
393
c25b8f99 394 VERIFY0(gettimeofday(&tv, NULL));
67925abb
BB
395
396 ts.tv_sec = tv.tv_sec + delta / NANOSEC;
397 ts.tv_nsec = tv.tv_usec * NSEC_PER_USEC + (delta % NANOSEC);
398 if (ts.tv_nsec >= NANOSEC) {
399 ts.tv_sec++;
400 ts.tv_nsec -= NANOSEC;
401 }
63fd3c6c 402
c25b8f99
BB
403 memset(&mp->m_owner, 0, sizeof (pthread_t));
404 error = pthread_cond_timedwait(cv, &mp->m_lock, &ts);
405 mp->m_owner = pthread_self();
63fd3c6c 406
206971d2 407 if (error == ETIMEDOUT)
63fd3c6c
AL
408 return (-1);
409
206971d2 410 VERIFY0(error);
63fd3c6c
AL
411
412 return (1);
413}
414
34dc7c2f
BB
415void
416cv_signal(kcondvar_t *cv)
417{
c25b8f99 418 VERIFY0(pthread_cond_signal(cv));
34dc7c2f
BB
419}
420
421void
422cv_broadcast(kcondvar_t *cv)
423{
c25b8f99 424 VERIFY0(pthread_cond_broadcast(cv));
34dc7c2f
BB
425}
426
d1261452
JG
427/*
428 * =========================================================================
429 * procfs list
430 * =========================================================================
431 */
432
433void
434seq_printf(struct seq_file *m, const char *fmt, ...)
435{}
436
437void
438procfs_list_install(const char *module,
439 const char *name,
440 procfs_list_t *procfs_list,
441 int (*show)(struct seq_file *f, void *p),
442 int (*show_header)(struct seq_file *f),
443 int (*clear)(procfs_list_t *procfs_list),
444 size_t procfs_list_node_off)
445{
446 mutex_init(&procfs_list->pl_lock, NULL, MUTEX_DEFAULT, NULL);
447 list_create(&procfs_list->pl_list,
448 procfs_list_node_off + sizeof (procfs_list_node_t),
449 procfs_list_node_off + offsetof(procfs_list_node_t, pln_link));
450 procfs_list->pl_next_id = 1;
451 procfs_list->pl_node_offset = procfs_list_node_off;
452}
453
454void
455procfs_list_uninstall(procfs_list_t *procfs_list)
456{}
457
458void
459procfs_list_destroy(procfs_list_t *procfs_list)
460{
461 ASSERT(list_is_empty(&procfs_list->pl_list));
462 list_destroy(&procfs_list->pl_list);
463 mutex_destroy(&procfs_list->pl_lock);
464}
465
466#define NODE_ID(procfs_list, obj) \
467 (((procfs_list_node_t *)(((char *)obj) + \
468 (procfs_list)->pl_node_offset))->pln_id)
469
470void
471procfs_list_add(procfs_list_t *procfs_list, void *p)
472{
473 ASSERT(MUTEX_HELD(&procfs_list->pl_lock));
474 NODE_ID(procfs_list, p) = procfs_list->pl_next_id++;
475 list_insert_tail(&procfs_list->pl_list, p);
476}
477
34dc7c2f
BB
478/*
479 * =========================================================================
480 * vnode operations
481 * =========================================================================
482 */
483/*
484 * Note: for the xxxat() versions of these functions, we assume that the
485 * starting vp is always rootdir (which is true for spa_directory.c, the only
486 * ZFS consumer of these interfaces). We assert this is true, and then emulate
487 * them by adding '/' in front of the path.
488 */
489
490/*ARGSUSED*/
491int
492vn_open(char *path, int x1, int flags, int mode, vnode_t **vpp, int x2, int x3)
493{
e2c292bb 494 int fd = -1;
495 int dump_fd = -1;
34dc7c2f 496 vnode_t *vp;
a4914d38 497 int old_umask = 0;
5ae4e2c2 498 char *realpath;
34dc7c2f 499 struct stat64 st;
4d58b69d 500 int err;
34dc7c2f 501
5ae4e2c2
BB
502 realpath = umem_alloc(MAXPATHLEN, UMEM_NOFAIL);
503
34dc7c2f
BB
504 /*
505 * If we're accessing a real disk from userland, we need to use
506 * the character interface to avoid caching. This is particularly
507 * important if we're trying to look at a real in-kernel storage
508 * pool from userland, e.g. via zdb, because otherwise we won't
509 * see the changes occurring under the segmap cache.
510 * On the other hand, the stupid character device returns zero
511 * for its size. So -- gag -- we open the block device to get
512 * its size, and remember it for subsequent VOP_GETATTR().
513 */
d603ed6c 514#if defined(__sun__) || defined(__sun)
34dc7c2f 515 if (strncmp(path, "/dev/", 5) == 0) {
d603ed6c
BB
516#else
517 if (0) {
518#endif
34dc7c2f
BB
519 char *dsk;
520 fd = open64(path, O_RDONLY);
5ae4e2c2
BB
521 if (fd == -1) {
522 err = errno;
523 free(realpath);
524 return (err);
525 }
34dc7c2f 526 if (fstat64(fd, &st) == -1) {
5ae4e2c2 527 err = errno;
34dc7c2f 528 close(fd);
5ae4e2c2
BB
529 free(realpath);
530 return (err);
34dc7c2f
BB
531 }
532 close(fd);
533 (void) sprintf(realpath, "%s", path);
534 dsk = strstr(path, "/dsk/");
535 if (dsk != NULL)
536 (void) sprintf(realpath + (dsk - path) + 1, "r%s",
537 dsk + 1);
538 } else {
539 (void) sprintf(realpath, "%s", path);
5ae4e2c2
BB
540 if (!(flags & FCREAT) && stat64(realpath, &st) == -1) {
541 err = errno;
542 free(realpath);
543 return (err);
544 }
34dc7c2f
BB
545 }
546
d603ed6c
BB
547 if (!(flags & FCREAT) && S_ISBLK(st.st_mode)) {
548#ifdef __linux__
549 flags |= O_DIRECT;
550#endif
d603ed6c
BB
551 }
552
34dc7c2f
BB
553 if (flags & FCREAT)
554 old_umask = umask(0);
555
556 /*
557 * The construct 'flags - FREAD' conveniently maps combinations of
558 * FREAD and FWRITE to the corresponding O_RDONLY, O_WRONLY, and O_RDWR.
559 */
560 fd = open64(realpath, flags - FREAD, mode);
470f12d6
G
561 if (fd == -1) {
562 err = errno;
563 free(realpath);
564 return (err);
565 }
34dc7c2f
BB
566
567 if (flags & FCREAT)
568 (void) umask(old_umask);
569
9867e8be
MA
570 if (vn_dumpdir != NULL) {
571 char *dumppath = umem_zalloc(MAXPATHLEN, UMEM_NOFAIL);
572 (void) snprintf(dumppath, MAXPATHLEN,
573 "%s/%s", vn_dumpdir, basename(realpath));
574 dump_fd = open64(dumppath, O_CREAT | O_WRONLY, 0666);
575 umem_free(dumppath, MAXPATHLEN);
576 if (dump_fd == -1) {
577 err = errno;
578 free(realpath);
579 close(fd);
580 return (err);
581 }
582 } else {
583 dump_fd = -1;
584 }
585
586 free(realpath);
587
8d4e8140 588 if (fstat64_blk(fd, &st) == -1) {
4d58b69d 589 err = errno;
34dc7c2f 590 close(fd);
e2c292bb 591 if (dump_fd != -1)
592 close(dump_fd);
4d58b69d 593 return (err);
34dc7c2f
BB
594 }
595
596 (void) fcntl(fd, F_SETFD, FD_CLOEXEC);
597
598 *vpp = vp = umem_zalloc(sizeof (vnode_t), UMEM_NOFAIL);
599
600 vp->v_fd = fd;
601 vp->v_size = st.st_size;
602 vp->v_path = spa_strdup(path);
9867e8be 603 vp->v_dump_fd = dump_fd;
34dc7c2f
BB
604
605 return (0);
606}
607
608/*ARGSUSED*/
609int
610vn_openat(char *path, int x1, int flags, int mode, vnode_t **vpp, int x2,
611 int x3, vnode_t *startvp, int fd)
612{
613 char *realpath = umem_alloc(strlen(path) + 2, UMEM_NOFAIL);
614 int ret;
615
616 ASSERT(startvp == rootdir);
617 (void) sprintf(realpath, "/%s", path);
618
619 /* fd ignored for now, need if want to simulate nbmand support */
620 ret = vn_open(realpath, x1, flags, mode, vpp, x2, x3);
621
622 umem_free(realpath, strlen(path) + 2);
623
624 return (ret);
625}
626
627/*ARGSUSED*/
628int
629vn_rdwr(int uio, vnode_t *vp, void *addr, ssize_t len, offset_t offset,
e9aa730c 630 int x1, int x2, rlim64_t x3, void *x4, ssize_t *residp)
34dc7c2f 631{
4d58b69d 632 ssize_t rc, done = 0, split;
34dc7c2f
BB
633
634 if (uio == UIO_READ) {
4d58b69d 635 rc = pread64(vp->v_fd, addr, len, offset);
470f12d6 636 if (vp->v_dump_fd != -1 && rc != -1) {
928c58dd
BB
637 int status;
638 status = pwrite64(vp->v_dump_fd, addr, rc, offset);
9867e8be
MA
639 ASSERT(status != -1);
640 }
34dc7c2f
BB
641 } else {
642 /*
643 * To simulate partial disk writes, we split writes into two
644 * system calls so that the process can be killed in between.
645 */
9ae529ec
CS
646 int sectors = len >> SPA_MINBLOCKSHIFT;
647 split = (sectors > 0 ? rand() % sectors : 0) <<
648 SPA_MINBLOCKSHIFT;
4d58b69d
RC
649 rc = pwrite64(vp->v_fd, addr, split, offset);
650 if (rc != -1) {
651 done = rc;
652 rc = pwrite64(vp->v_fd, (char *)addr + split,
653 len - split, offset + split);
654 }
34dc7c2f
BB
655 }
656
d603ed6c
BB
657#ifdef __linux__
658 if (rc == -1 && errno == EINVAL) {
659 /*
660 * Under Linux, this most likely means an alignment issue
661 * (memory or disk) due to O_DIRECT, so we abort() in order to
662 * catch the offender.
663 */
d1d7e268 664 abort();
d603ed6c
BB
665 }
666#endif
4d58b69d 667 if (rc == -1)
34dc7c2f 668 return (errno);
4d58b69d
RC
669
670 done += rc;
671
34dc7c2f 672 if (residp)
4d58b69d
RC
673 *residp = len - done;
674 else if (done != len)
34dc7c2f
BB
675 return (EIO);
676 return (0);
677}
678
679void
680vn_close(vnode_t *vp)
681{
682 close(vp->v_fd);
9867e8be
MA
683 if (vp->v_dump_fd != -1)
684 close(vp->v_dump_fd);
34dc7c2f
BB
685 spa_strfree(vp->v_path);
686 umem_free(vp, sizeof (vnode_t));
687}
688
428870ff
BB
689/*
690 * At a minimum we need to update the size since vdev_reopen()
691 * will no longer call vn_openat().
692 */
693int
694fop_getattr(vnode_t *vp, vattr_t *vap)
695{
696 struct stat64 st;
8d4e8140 697 int err;
428870ff 698
8d4e8140
RC
699 if (fstat64_blk(vp->v_fd, &st) == -1) {
700 err = errno;
428870ff 701 close(vp->v_fd);
8d4e8140 702 return (err);
428870ff
BB
703 }
704
705 vap->va_size = st.st_size;
706 return (0);
707}
708
34dc7c2f
BB
709/*
710 * =========================================================================
711 * Figure out which debugging statements to print
712 * =========================================================================
713 */
714
715static char *dprintf_string;
716static int dprintf_print_all;
717
718int
719dprintf_find_string(const char *string)
720{
721 char *tmp_str = dprintf_string;
722 int len = strlen(string);
723
724 /*
725 * Find out if this is a string we want to print.
726 * String format: file1.c,function_name1,file2.c,file3.c
727 */
728
729 while (tmp_str != NULL) {
730 if (strncmp(tmp_str, string, len) == 0 &&
731 (tmp_str[len] == ',' || tmp_str[len] == '\0'))
732 return (1);
733 tmp_str = strchr(tmp_str, ',');
734 if (tmp_str != NULL)
735 tmp_str++; /* Get rid of , */
736 }
737 return (0);
738}
739
740void
741dprintf_setup(int *argc, char **argv)
742{
743 int i, j;
744
745 /*
746 * Debugging can be specified two ways: by setting the
747 * environment variable ZFS_DEBUG, or by including a
748 * "debug=..." argument on the command line. The command
749 * line setting overrides the environment variable.
750 */
751
752 for (i = 1; i < *argc; i++) {
753 int len = strlen("debug=");
754 /* First look for a command line argument */
755 if (strncmp("debug=", argv[i], len) == 0) {
756 dprintf_string = argv[i] + len;
757 /* Remove from args */
758 for (j = i; j < *argc; j++)
759 argv[j] = argv[j+1];
760 argv[j] = NULL;
761 (*argc)--;
762 }
763 }
764
765 if (dprintf_string == NULL) {
766 /* Look for ZFS_DEBUG environment variable */
767 dprintf_string = getenv("ZFS_DEBUG");
768 }
769
770 /*
771 * Are we just turning on all debugging?
772 */
773 if (dprintf_find_string("on"))
774 dprintf_print_all = 1;
308a451f
MA
775
776 if (dprintf_string != NULL)
777 zfs_flags |= ZFS_DEBUG_DPRINTF;
34dc7c2f
BB
778}
779
780/*
781 * =========================================================================
782 * debug printfs
783 * =========================================================================
784 */
785void
786__dprintf(const char *file, const char *func, int line, const char *fmt, ...)
787{
788 const char *newfile;
789 va_list adx;
790
791 /*
792 * Get rid of annoying "../common/" prefix to filename.
793 */
794 newfile = strrchr(file, '/');
795 if (newfile != NULL) {
796 newfile = newfile + 1; /* Get rid of leading / */
797 } else {
798 newfile = file;
799 }
800
801 if (dprintf_print_all ||
802 dprintf_find_string(newfile) ||
803 dprintf_find_string(func)) {
804 /* Print out just the function name if requested */
805 flockfile(stdout);
806 if (dprintf_find_string("pid"))
807 (void) printf("%d ", getpid());
808 if (dprintf_find_string("tid"))
02730c33 809 (void) printf("%u ", (uint_t)pthread_self());
34dc7c2f
BB
810 if (dprintf_find_string("cpu"))
811 (void) printf("%u ", getcpuid());
812 if (dprintf_find_string("time"))
813 (void) printf("%llu ", gethrtime());
814 if (dprintf_find_string("long"))
815 (void) printf("%s, line %d: ", newfile, line);
816 (void) printf("%s: ", func);
817 va_start(adx, fmt);
818 (void) vprintf(fmt, adx);
819 va_end(adx);
820 funlockfile(stdout);
821 }
822}
823
34dc7c2f
BB
824/*
825 * =========================================================================
826 * cmn_err() and panic()
827 * =========================================================================
828 */
829static char ce_prefix[CE_IGNORE][10] = { "", "NOTICE: ", "WARNING: ", "" };
830static char ce_suffix[CE_IGNORE][2] = { "", "\n", "\n", "" };
831
832void
833vpanic(const char *fmt, va_list adx)
834{
835 (void) fprintf(stderr, "error: ");
836 (void) vfprintf(stderr, fmt, adx);
837 (void) fprintf(stderr, "\n");
838
839 abort(); /* think of it as a "user-level crash dump" */
840}
841
842void
843panic(const char *fmt, ...)
844{
845 va_list adx;
846
847 va_start(adx, fmt);
848 vpanic(fmt, adx);
849 va_end(adx);
850}
851
852void
853vcmn_err(int ce, const char *fmt, va_list adx)
854{
855 if (ce == CE_PANIC)
856 vpanic(fmt, adx);
857 if (ce != CE_NOTE) { /* suppress noise in userland stress testing */
858 (void) fprintf(stderr, "%s", ce_prefix[ce]);
859 (void) vfprintf(stderr, fmt, adx);
860 (void) fprintf(stderr, "%s", ce_suffix[ce]);
861 }
862}
863
864/*PRINTFLIKE2*/
865void
866cmn_err(int ce, const char *fmt, ...)
867{
868 va_list adx;
869
870 va_start(adx, fmt);
871 vcmn_err(ce, fmt, adx);
872 va_end(adx);
873}
874
875/*
876 * =========================================================================
877 * kobj interfaces
878 * =========================================================================
879 */
880struct _buf *
881kobj_open_file(char *name)
882{
883 struct _buf *file;
884 vnode_t *vp;
885
886 /* set vp as the _fd field of the file */
887 if (vn_openat(name, UIO_SYSSPACE, FREAD, 0, &vp, 0, 0, rootdir,
888 -1) != 0)
889 return ((void *)-1UL);
890
891 file = umem_zalloc(sizeof (struct _buf), UMEM_NOFAIL);
892 file->_fd = (intptr_t)vp;
893 return (file);
894}
895
896int
897kobj_read_file(struct _buf *file, char *buf, unsigned size, unsigned off)
898{
689f093e 899 ssize_t resid = 0;
34dc7c2f 900
957dc932
RY
901 if (vn_rdwr(UIO_READ, (vnode_t *)file->_fd, buf, size, (offset_t)off,
902 UIO_SYSSPACE, 0, 0, 0, &resid) != 0)
903 return (-1);
34dc7c2f
BB
904
905 return (size - resid);
906}
907
908void
909kobj_close_file(struct _buf *file)
910{
911 vn_close((vnode_t *)file->_fd);
912 umem_free(file, sizeof (struct _buf));
913}
914
915int
916kobj_get_filesize(struct _buf *file, uint64_t *size)
917{
918 struct stat64 st;
919 vnode_t *vp = (vnode_t *)file->_fd;
920
921 if (fstat64(vp->v_fd, &st) == -1) {
922 vn_close(vp);
923 return (errno);
924 }
925 *size = st.st_size;
926 return (0);
927}
928
929/*
930 * =========================================================================
931 * misc routines
932 * =========================================================================
933 */
934
935void
936delay(clock_t ticks)
937{
af4db70f 938 (void) poll(0, 0, ticks * (1000 / hz));
34dc7c2f
BB
939}
940
941/*
942 * Find highest one bit set.
46364cb2
BB
943 * Returns bit number + 1 of highest bit that is set, otherwise returns 0.
944 * The __builtin_clzll() function is supported by both GCC and Clang.
34dc7c2f
BB
945 */
946int
9bd274dd 947highbit64(uint64_t i)
34dc7c2f 948{
34dc7c2f 949 if (i == 0)
46364cb2
BB
950 return (0);
951
952 return (NBBY * sizeof (uint64_t) - __builtin_clzll(i));
34dc7c2f
BB
953}
954
193a37cb
TH
955/*
956 * Find lowest one bit set.
957 * Returns bit number + 1 of lowest bit that is set, otherwise returns 0.
46364cb2 958 * The __builtin_ffsll() function is supported by both GCC and Clang.
193a37cb
TH
959 */
960int
961lowbit64(uint64_t i)
962{
193a37cb
TH
963 if (i == 0)
964 return (0);
965
46364cb2 966 return (__builtin_ffsll(i));
0b04990a 967}
193a37cb 968
e1a0850c
BB
969char *random_path = "/dev/random";
970char *urandom_path = "/dev/urandom";
34dc7c2f
BB
971static int random_fd = -1, urandom_fd = -1;
972
0b04990a
TC
973void
974random_init(void)
975{
e1a0850c
BB
976 VERIFY((random_fd = open(random_path, O_RDONLY)) != -1);
977 VERIFY((urandom_fd = open(urandom_path, O_RDONLY)) != -1);
0b04990a
TC
978}
979
980void
981random_fini(void)
982{
983 close(random_fd);
984 close(urandom_fd);
985
986 random_fd = -1;
987 urandom_fd = -1;
988}
989
34dc7c2f
BB
990static int
991random_get_bytes_common(uint8_t *ptr, size_t len, int fd)
992{
993 size_t resid = len;
994 ssize_t bytes;
995
996 ASSERT(fd != -1);
997
998 while (resid != 0) {
999 bytes = read(fd, ptr, resid);
1000 ASSERT3S(bytes, >=, 0);
1001 ptr += bytes;
1002 resid -= bytes;
1003 }
1004
1005 return (0);
1006}
1007
1008int
1009random_get_bytes(uint8_t *ptr, size_t len)
1010{
1011 return (random_get_bytes_common(ptr, len, random_fd));
1012}
1013
1014int
1015random_get_pseudo_bytes(uint8_t *ptr, size_t len)
1016{
1017 return (random_get_bytes_common(ptr, len, urandom_fd));
1018}
1019
1020int
1021ddi_strtoul(const char *hw_serial, char **nptr, int base, unsigned long *result)
1022{
1023 char *end;
1024
1025 *result = strtoul(hw_serial, &end, base);
1026 if (*result == 0)
1027 return (errno);
1028 return (0);
1029}
1030
428870ff
BB
1031int
1032ddi_strtoull(const char *str, char **nptr, int base, u_longlong_t *result)
1033{
1034 char *end;
1035
1036 *result = strtoull(str, &end, base);
1037 if (*result == 0)
1038 return (errno);
1039 return (0);
1040}
1041
f0e324f2
BB
1042utsname_t *
1043utsname(void)
1044{
1045 return (&hw_utsname);
1046}
1047
34dc7c2f
BB
1048/*
1049 * =========================================================================
1050 * kernel emulation setup & teardown
1051 * =========================================================================
1052 */
1053static int
1054umem_out_of_memory(void)
1055{
1056 char errmsg[] = "out of memory -- generating core dump\n";
1057
0e5b68e0 1058 (void) fprintf(stderr, "%s", errmsg);
34dc7c2f
BB
1059 abort();
1060 return (0);
1061}
1062
1063void
1064kernel_init(int mode)
1065{
13fe0198
MA
1066 extern uint_t rrw_tsd_key;
1067
34dc7c2f
BB
1068 umem_nofail_callback(umem_out_of_memory);
1069
1070 physmem = sysconf(_SC_PHYS_PAGES);
1071
1072 dprintf("physmem = %llu pages (%.2f GB)\n", physmem,
1073 (double)physmem * sysconf(_SC_PAGE_SIZE) / (1ULL << 30));
1074
428870ff 1075 (void) snprintf(hw_serial, sizeof (hw_serial), "%ld",
53698a45 1076 (mode & FWRITE) ? get_system_hostid() : 0);
34dc7c2f 1077
0b04990a
TC
1078 random_init();
1079
f0e324f2 1080 VERIFY0(uname(&hw_utsname));
34dc7c2f 1081
b128c09f 1082 system_taskq_init();
0b04990a 1083 icp_init();
b128c09f 1084
34dc7c2f 1085 spa_init(mode);
13fe0198 1086
1eeb4562
JX
1087 fletcher_4_init();
1088
13fe0198 1089 tsd_create(&rrw_tsd_key, rrw_tsd_destroy);
34dc7c2f
BB
1090}
1091
1092void
1093kernel_fini(void)
1094{
1eeb4562 1095 fletcher_4_fini();
34dc7c2f
BB
1096 spa_fini();
1097
0b04990a 1098 icp_fini();
428870ff
BB
1099 system_taskq_fini();
1100
0b04990a 1101 random_fini();
34dc7c2f
BB
1102}
1103
34dc7c2f
BB
1104uid_t
1105crgetuid(cred_t *cr)
1106{
1107 return (0);
1108}
1109
6f1ffb06
MA
1110uid_t
1111crgetruid(cred_t *cr)
1112{
1113 return (0);
1114}
1115
34dc7c2f
BB
1116gid_t
1117crgetgid(cred_t *cr)
1118{
1119 return (0);
1120}
1121
1122int
1123crgetngroups(cred_t *cr)
1124{
1125 return (0);
1126}
1127
1128gid_t *
1129crgetgroups(cred_t *cr)
1130{
1131 return (NULL);
1132}
1133
1134int
1135zfs_secpolicy_snapshot_perms(const char *name, cred_t *cr)
1136{
1137 return (0);
1138}
1139
1140int
1141zfs_secpolicy_rename_perms(const char *from, const char *to, cred_t *cr)
1142{
1143 return (0);
1144}
1145
1146int
1147zfs_secpolicy_destroy_perms(const char *name, cred_t *cr)
1148{
1149 return (0);
1150}
1151
f74b821a
BB
1152int
1153secpolicy_zfs(const cred_t *cr)
1154{
1155 return (0);
1156}
1157
34dc7c2f
BB
1158ksiddomain_t *
1159ksid_lookupdomain(const char *dom)
1160{
1161 ksiddomain_t *kd;
1162
1163 kd = umem_zalloc(sizeof (ksiddomain_t), UMEM_NOFAIL);
1164 kd->kd_name = spa_strdup(dom);
1165 return (kd);
1166}
1167
1168void
1169ksiddomain_rele(ksiddomain_t *ksid)
1170{
1171 spa_strfree(ksid->kd_name);
1172 umem_free(ksid, sizeof (ksiddomain_t));
1173}
428870ff 1174
428870ff 1175char *
00b46022 1176kmem_vasprintf(const char *fmt, va_list adx)
428870ff 1177{
00b46022
BB
1178 char *buf = NULL;
1179 va_list adx_copy;
428870ff 1180
00b46022
BB
1181 va_copy(adx_copy, adx);
1182 VERIFY(vasprintf(&buf, fmt, adx_copy) != -1);
1183 va_end(adx_copy);
428870ff 1184
00b46022
BB
1185 return (buf);
1186}
1187
1188char *
1189kmem_asprintf(const char *fmt, ...)
1190{
1191 char *buf = NULL;
1192 va_list adx;
428870ff
BB
1193
1194 va_start(adx, fmt);
00b46022 1195 VERIFY(vasprintf(&buf, fmt, adx) != -1);
428870ff
BB
1196 va_end(adx);
1197
1198 return (buf);
1199}
572e2857
BB
1200
1201/* ARGSUSED */
1202int
1203zfs_onexit_fd_hold(int fd, minor_t *minorp)
1204{
1205 *minorp = 0;
1206 return (0);
1207}
1208
1209/* ARGSUSED */
1210void
1211zfs_onexit_fd_rele(int fd)
1212{
1213}
1214
1215/* ARGSUSED */
1216int
1217zfs_onexit_add_cb(minor_t minor, void (*func)(void *), void *data,
1218 uint64_t *action_handle)
1219{
1220 return (0);
1221}
1222
1223/* ARGSUSED */
1224int
1225zfs_onexit_del_cb(minor_t minor, uint64_t action_handle, boolean_t fire)
1226{
1227 return (0);
1228}
1229
1230/* ARGSUSED */
1231int
1232zfs_onexit_cb_data(minor_t minor, uint64_t action_handle, void **data)
1233{
1234 return (0);
1235}
92119cc2
BB
1236
1237fstrans_cookie_t
1238spl_fstrans_mark(void)
1239{
02730c33 1240 return ((fstrans_cookie_t)0);
92119cc2
BB
1241}
1242
1243void
1244spl_fstrans_unmark(fstrans_cookie_t cookie)
1245{
1246}
1247
1248int
e624cd19 1249__spl_pf_fstrans_check(void)
92119cc2
BB
1250{
1251 return (0);
1252}
a0bd735a 1253
47dfff3b
MA
1254void *zvol_tag = "zvol_tag";
1255
a0bd735a
BP
1256void
1257zvol_create_minors(spa_t *spa, const char *name, boolean_t async)
1258{
1259}
1260
1261void
1262zvol_remove_minor(spa_t *spa, const char *name, boolean_t async)
1263{
1264}
1265
1266void
1267zvol_remove_minors(spa_t *spa, const char *name, boolean_t async)
1268{
1269}
1270
1271void
1272zvol_rename_minors(spa_t *spa, const char *oldname, const char *newname,
1273 boolean_t async)
1274{
1275}