zfs_ioctl.c revision 277585
1/*
2 * CDDL HEADER START
3 *
4 * The contents of this file are subject to the terms of the
5 * Common Development and Distribution License (the "License").
6 * You may not use this file except in compliance with the License.
7 *
8 * You can obtain a copy of the license at usr/src/OPENSOLARIS.LICENSE
9 * or http://www.opensolaris.org/os/licensing.
10 * See the License for the specific language governing permissions
11 * and limitations under the License.
12 *
13 * When distributing Covered Code, include this CDDL HEADER in each
14 * file and include the License file at usr/src/OPENSOLARIS.LICENSE.
15 * If applicable, add the following below this CDDL HEADER, with the
16 * fields enclosed by brackets "[]" replaced with your own identifying
17 * information: Portions Copyright [yyyy] [name of copyright owner]
18 *
19 * CDDL HEADER END
20 */
21
22/*
23 * Copyright (c) 2005, 2010, Oracle and/or its affiliates. All rights reserved.
24 * Copyright (c) 2011-2012 Pawel Jakub Dawidek <pawel@dawidek.net>.
25 * All rights reserved.
26 * Copyright 2013 Martin Matuska <mm@FreeBSD.org>. All rights reserved.
27 * Copyright 2014 Xin Li <delphij@FreeBSD.org>. All rights reserved.
28 * Copyright 2011 Nexenta Systems, Inc.  All rights reserved.
29 * Copyright (c) 2014, Joyent, Inc. All rights reserved.
30 * Copyright (c) 2011, 2014 by Delphix. All rights reserved.
31 * Copyright (c) 2013 by Saso Kiselkov. All rights reserved.
32 * Copyright (c) 2013 Steven Hartland. All rights reserved.
33 * Copyright (c) 2014, Nexenta Systems, Inc. All rights reserved.
34 */
35
36/*
37 * ZFS ioctls.
38 *
39 * This file handles the ioctls to /dev/zfs, used for configuring ZFS storage
40 * pools and filesystems, e.g. with /sbin/zfs and /sbin/zpool.
41 *
42 * There are two ways that we handle ioctls: the legacy way where almost
43 * all of the logic is in the ioctl callback, and the new way where most
44 * of the marshalling is handled in the common entry point, zfsdev_ioctl().
45 *
46 * Non-legacy ioctls should be registered by calling
47 * zfs_ioctl_register() from zfs_ioctl_init().  The ioctl is invoked
48 * from userland by lzc_ioctl().
49 *
50 * The registration arguments are as follows:
51 *
52 * const char *name
53 *   The name of the ioctl.  This is used for history logging.  If the
54 *   ioctl returns successfully (the callback returns 0), and allow_log
55 *   is true, then a history log entry will be recorded with the input &
56 *   output nvlists.  The log entry can be printed with "zpool history -i".
57 *
58 * zfs_ioc_t ioc
59 *   The ioctl request number, which userland will pass to ioctl(2).
60 *   The ioctl numbers can change from release to release, because
61 *   the caller (libzfs) must be matched to the kernel.
62 *
63 * zfs_secpolicy_func_t *secpolicy
64 *   This function will be called before the zfs_ioc_func_t, to
65 *   determine if this operation is permitted.  It should return EPERM
66 *   on failure, and 0 on success.  Checks include determining if the
67 *   dataset is visible in this zone, and if the user has either all
68 *   zfs privileges in the zone (SYS_MOUNT), or has been granted permission
69 *   to do this operation on this dataset with "zfs allow".
70 *
71 * zfs_ioc_namecheck_t namecheck
72 *   This specifies what to expect in the zfs_cmd_t:zc_name -- a pool
73 *   name, a dataset name, or nothing.  If the name is not well-formed,
74 *   the ioctl will fail and the callback will not be called.
75 *   Therefore, the callback can assume that the name is well-formed
76 *   (e.g. is null-terminated, doesn't have more than one '@' character,
77 *   doesn't have invalid characters).
78 *
79 * zfs_ioc_poolcheck_t pool_check
80 *   This specifies requirements on the pool state.  If the pool does
81 *   not meet them (is suspended or is readonly), the ioctl will fail
82 *   and the callback will not be called.  If any checks are specified
83 *   (i.e. it is not POOL_CHECK_NONE), namecheck must not be NO_NAME.
84 *   Multiple checks can be or-ed together (e.g. POOL_CHECK_SUSPENDED |
85 *   POOL_CHECK_READONLY).
86 *
87 * boolean_t smush_outnvlist
88 *   If smush_outnvlist is true, then the output is presumed to be a
89 *   list of errors, and it will be "smushed" down to fit into the
90 *   caller's buffer, by removing some entries and replacing them with a
91 *   single "N_MORE_ERRORS" entry indicating how many were removed.  See
92 *   nvlist_smush() for details.  If smush_outnvlist is false, and the
93 *   outnvlist does not fit into the userland-provided buffer, then the
94 *   ioctl will fail with ENOMEM.
95 *
96 * zfs_ioc_func_t *func
97 *   The callback function that will perform the operation.
98 *
99 *   The callback should return 0 on success, or an error number on
100 *   failure.  If the function fails, the userland ioctl will return -1,
101 *   and errno will be set to the callback's return value.  The callback
102 *   will be called with the following arguments:
103 *
104 *   const char *name
105 *     The name of the pool or dataset to operate on, from
106 *     zfs_cmd_t:zc_name.  The 'namecheck' argument specifies the
107 *     expected type (pool, dataset, or none).
108 *
109 *   nvlist_t *innvl
110 *     The input nvlist, deserialized from zfs_cmd_t:zc_nvlist_src.  Or
111 *     NULL if no input nvlist was provided.  Changes to this nvlist are
112 *     ignored.  If the input nvlist could not be deserialized, the
113 *     ioctl will fail and the callback will not be called.
114 *
115 *   nvlist_t *outnvl
116 *     The output nvlist, initially empty.  The callback can fill it in,
117 *     and it will be returned to userland by serializing it into
118 *     zfs_cmd_t:zc_nvlist_dst.  If it is non-empty, and serialization
119 *     fails (e.g. because the caller didn't supply a large enough
120 *     buffer), then the overall ioctl will fail.  See the
121 *     'smush_nvlist' argument above for additional behaviors.
122 *
123 *     There are two typical uses of the output nvlist:
124 *       - To return state, e.g. property values.  In this case,
125 *         smush_outnvlist should be false.  If the buffer was not large
126 *         enough, the caller will reallocate a larger buffer and try
127 *         the ioctl again.
128 *
129 *       - To return multiple errors from an ioctl which makes on-disk
130 *         changes.  In this case, smush_outnvlist should be true.
131 *         Ioctls which make on-disk modifications should generally not
132 *         use the outnvl if they succeed, because the caller can not
133 *         distinguish between the operation failing, and
134 *         deserialization failing.
135 */
136
137#include <sys/types.h>
138#include <sys/param.h>
139#include <sys/systm.h>
140#include <sys/conf.h>
141#include <sys/kernel.h>
142#include <sys/lock.h>
143#include <sys/malloc.h>
144#include <sys/mutex.h>
145#include <sys/proc.h>
146#include <sys/errno.h>
147#include <sys/uio.h>
148#include <sys/buf.h>
149#include <sys/file.h>
150#include <sys/kmem.h>
151#include <sys/conf.h>
152#include <sys/cmn_err.h>
153#include <sys/stat.h>
154#include <sys/zfs_ioctl.h>
155#include <sys/zfs_vfsops.h>
156#include <sys/zfs_znode.h>
157#include <sys/zap.h>
158#include <sys/spa.h>
159#include <sys/spa_impl.h>
160#include <sys/vdev.h>
161#include <sys/dmu.h>
162#include <sys/dsl_dir.h>
163#include <sys/dsl_dataset.h>
164#include <sys/dsl_prop.h>
165#include <sys/dsl_deleg.h>
166#include <sys/dmu_objset.h>
167#include <sys/dmu_impl.h>
168#include <sys/dmu_tx.h>
169#include <sys/sunddi.h>
170#include <sys/policy.h>
171#include <sys/zone.h>
172#include <sys/nvpair.h>
173#include <sys/mount.h>
174#include <sys/taskqueue.h>
175#include <sys/sdt.h>
176#include <sys/varargs.h>
177#include <sys/fs/zfs.h>
178#include <sys/zfs_ctldir.h>
179#include <sys/zfs_dir.h>
180#include <sys/zfs_onexit.h>
181#include <sys/zvol.h>
182#include <sys/dsl_scan.h>
183#include <sys/dmu_objset.h>
184#include <sys/dmu_send.h>
185#include <sys/dsl_destroy.h>
186#include <sys/dsl_bookmark.h>
187#include <sys/dsl_userhold.h>
188#include <sys/zfeature.h>
189
190#include "zfs_namecheck.h"
191#include "zfs_prop.h"
192#include "zfs_deleg.h"
193#include "zfs_comutil.h"
194#include "zfs_ioctl_compat.h"
195
196CTASSERT(sizeof(zfs_cmd_t) < IOCPARM_MAX);
197
198static int snapshot_list_prefetch;
199SYSCTL_DECL(_vfs_zfs);
200TUNABLE_INT("vfs.zfs.snapshot_list_prefetch", &snapshot_list_prefetch);
201SYSCTL_INT(_vfs_zfs, OID_AUTO, snapshot_list_prefetch, CTLFLAG_RW,
202    &snapshot_list_prefetch, 0, "Prefetch data when listing snapshots");
203
204static struct cdev *zfsdev;
205
206extern void zfs_init(void);
207extern void zfs_fini(void);
208
209uint_t zfs_fsyncer_key;
210extern uint_t rrw_tsd_key;
211static uint_t zfs_allow_log_key;
212
213typedef int zfs_ioc_legacy_func_t(zfs_cmd_t *);
214typedef int zfs_ioc_func_t(const char *, nvlist_t *, nvlist_t *);
215typedef int zfs_secpolicy_func_t(zfs_cmd_t *, nvlist_t *, cred_t *);
216
217typedef enum {
218	NO_NAME,
219	POOL_NAME,
220	DATASET_NAME
221} zfs_ioc_namecheck_t;
222
223typedef enum {
224	POOL_CHECK_NONE		= 1 << 0,
225	POOL_CHECK_SUSPENDED	= 1 << 1,
226	POOL_CHECK_READONLY	= 1 << 2,
227} zfs_ioc_poolcheck_t;
228
229typedef struct zfs_ioc_vec {
230	zfs_ioc_legacy_func_t	*zvec_legacy_func;
231	zfs_ioc_func_t		*zvec_func;
232	zfs_secpolicy_func_t	*zvec_secpolicy;
233	zfs_ioc_namecheck_t	zvec_namecheck;
234	boolean_t		zvec_allow_log;
235	zfs_ioc_poolcheck_t	zvec_pool_check;
236	boolean_t		zvec_smush_outnvlist;
237	const char		*zvec_name;
238} zfs_ioc_vec_t;
239
240/* This array is indexed by zfs_userquota_prop_t */
241static const char *userquota_perms[] = {
242	ZFS_DELEG_PERM_USERUSED,
243	ZFS_DELEG_PERM_USERQUOTA,
244	ZFS_DELEG_PERM_GROUPUSED,
245	ZFS_DELEG_PERM_GROUPQUOTA,
246};
247
248static int zfs_ioc_userspace_upgrade(zfs_cmd_t *zc);
249static int zfs_check_settable(const char *name, nvpair_t *property,
250    cred_t *cr);
251static int zfs_check_clearable(char *dataset, nvlist_t *props,
252    nvlist_t **errors);
253static int zfs_fill_zplprops_root(uint64_t, nvlist_t *, nvlist_t *,
254    boolean_t *);
255int zfs_set_prop_nvlist(const char *, zprop_source_t, nvlist_t *, nvlist_t *);
256static int get_nvlist(uint64_t nvl, uint64_t size, int iflag, nvlist_t **nvp);
257
258static void zfsdev_close(void *data);
259
260static int zfs_prop_activate_feature(spa_t *spa, spa_feature_t feature);
261
262/* _NOTE(PRINTFLIKE(4)) - this is printf-like, but lint is too whiney */
263void
264__dprintf(const char *file, const char *func, int line, const char *fmt, ...)
265{
266	const char *newfile;
267	char buf[512];
268	va_list adx;
269
270	/*
271	 * Get rid of annoying "../common/" prefix to filename.
272	 */
273	newfile = strrchr(file, '/');
274	if (newfile != NULL) {
275		newfile = newfile + 1; /* Get rid of leading / */
276	} else {
277		newfile = file;
278	}
279
280	va_start(adx, fmt);
281	(void) vsnprintf(buf, sizeof (buf), fmt, adx);
282	va_end(adx);
283
284	/*
285	 * To get this data, use the zfs-dprintf probe as so:
286	 * dtrace -q -n 'zfs-dprintf \
287	 *	/stringof(arg0) == "dbuf.c"/ \
288	 *	{printf("%s: %s", stringof(arg1), stringof(arg3))}'
289	 * arg0 = file name
290	 * arg1 = function name
291	 * arg2 = line number
292	 * arg3 = message
293	 */
294	DTRACE_PROBE4(zfs__dprintf,
295	    char *, newfile, char *, func, int, line, char *, buf);
296}
297
298static void
299history_str_free(char *buf)
300{
301	kmem_free(buf, HIS_MAX_RECORD_LEN);
302}
303
304static char *
305history_str_get(zfs_cmd_t *zc)
306{
307	char *buf;
308
309	if (zc->zc_history == 0)
310		return (NULL);
311
312	buf = kmem_alloc(HIS_MAX_RECORD_LEN, KM_SLEEP);
313	if (copyinstr((void *)(uintptr_t)zc->zc_history,
314	    buf, HIS_MAX_RECORD_LEN, NULL) != 0) {
315		history_str_free(buf);
316		return (NULL);
317	}
318
319	buf[HIS_MAX_RECORD_LEN -1] = '\0';
320
321	return (buf);
322}
323
324/*
325 * Check to see if the named dataset is currently defined as bootable
326 */
327static boolean_t
328zfs_is_bootfs(const char *name)
329{
330	objset_t *os;
331
332	if (dmu_objset_hold(name, FTAG, &os) == 0) {
333		boolean_t ret;
334		ret = (dmu_objset_id(os) == spa_bootfs(dmu_objset_spa(os)));
335		dmu_objset_rele(os, FTAG);
336		return (ret);
337	}
338	return (B_FALSE);
339}
340
341/*
342 * Return non-zero if the spa version is less than requested version.
343 */
344static int
345zfs_earlier_version(const char *name, int version)
346{
347	spa_t *spa;
348
349	if (spa_open(name, &spa, FTAG) == 0) {
350		if (spa_version(spa) < version) {
351			spa_close(spa, FTAG);
352			return (1);
353		}
354		spa_close(spa, FTAG);
355	}
356	return (0);
357}
358
359/*
360 * Return TRUE if the ZPL version is less than requested version.
361 */
362static boolean_t
363zpl_earlier_version(const char *name, int version)
364{
365	objset_t *os;
366	boolean_t rc = B_TRUE;
367
368	if (dmu_objset_hold(name, FTAG, &os) == 0) {
369		uint64_t zplversion;
370
371		if (dmu_objset_type(os) != DMU_OST_ZFS) {
372			dmu_objset_rele(os, FTAG);
373			return (B_TRUE);
374		}
375		/* XXX reading from non-owned objset */
376		if (zfs_get_zplprop(os, ZFS_PROP_VERSION, &zplversion) == 0)
377			rc = zplversion < version;
378		dmu_objset_rele(os, FTAG);
379	}
380	return (rc);
381}
382
383static void
384zfs_log_history(zfs_cmd_t *zc)
385{
386	spa_t *spa;
387	char *buf;
388
389	if ((buf = history_str_get(zc)) == NULL)
390		return;
391
392	if (spa_open(zc->zc_name, &spa, FTAG) == 0) {
393		if (spa_version(spa) >= SPA_VERSION_ZPOOL_HISTORY)
394			(void) spa_history_log(spa, buf);
395		spa_close(spa, FTAG);
396	}
397	history_str_free(buf);
398}
399
400/*
401 * Policy for top-level read operations (list pools).  Requires no privileges,
402 * and can be used in the local zone, as there is no associated dataset.
403 */
404/* ARGSUSED */
405static int
406zfs_secpolicy_none(zfs_cmd_t *zc, nvlist_t *innvl, cred_t *cr)
407{
408	return (0);
409}
410
411/*
412 * Policy for dataset read operations (list children, get statistics).  Requires
413 * no privileges, but must be visible in the local zone.
414 */
415/* ARGSUSED */
416static int
417zfs_secpolicy_read(zfs_cmd_t *zc, nvlist_t *innvl, cred_t *cr)
418{
419	if (INGLOBALZONE(curthread) ||
420	    zone_dataset_visible(zc->zc_name, NULL))
421		return (0);
422
423	return (SET_ERROR(ENOENT));
424}
425
426static int
427zfs_dozonecheck_impl(const char *dataset, uint64_t zoned, cred_t *cr)
428{
429	int writable = 1;
430
431	/*
432	 * The dataset must be visible by this zone -- check this first
433	 * so they don't see EPERM on something they shouldn't know about.
434	 */
435	if (!INGLOBALZONE(curthread) &&
436	    !zone_dataset_visible(dataset, &writable))
437		return (SET_ERROR(ENOENT));
438
439	if (INGLOBALZONE(curthread)) {
440		/*
441		 * If the fs is zoned, only root can access it from the
442		 * global zone.
443		 */
444		if (secpolicy_zfs(cr) && zoned)
445			return (SET_ERROR(EPERM));
446	} else {
447		/*
448		 * If we are in a local zone, the 'zoned' property must be set.
449		 */
450		if (!zoned)
451			return (SET_ERROR(EPERM));
452
453		/* must be writable by this zone */
454		if (!writable)
455			return (SET_ERROR(EPERM));
456	}
457	return (0);
458}
459
460static int
461zfs_dozonecheck(const char *dataset, cred_t *cr)
462{
463	uint64_t zoned;
464
465	if (dsl_prop_get_integer(dataset, "jailed", &zoned, NULL))
466		return (SET_ERROR(ENOENT));
467
468	return (zfs_dozonecheck_impl(dataset, zoned, cr));
469}
470
471static int
472zfs_dozonecheck_ds(const char *dataset, dsl_dataset_t *ds, cred_t *cr)
473{
474	uint64_t zoned;
475
476	if (dsl_prop_get_int_ds(ds, "jailed", &zoned))
477		return (SET_ERROR(ENOENT));
478
479	return (zfs_dozonecheck_impl(dataset, zoned, cr));
480}
481
482static int
483zfs_secpolicy_write_perms_ds(const char *name, dsl_dataset_t *ds,
484    const char *perm, cred_t *cr)
485{
486	int error;
487
488	error = zfs_dozonecheck_ds(name, ds, cr);
489	if (error == 0) {
490		error = secpolicy_zfs(cr);
491		if (error != 0)
492			error = dsl_deleg_access_impl(ds, perm, cr);
493	}
494	return (error);
495}
496
497static int
498zfs_secpolicy_write_perms(const char *name, const char *perm, cred_t *cr)
499{
500	int error;
501	dsl_dataset_t *ds;
502	dsl_pool_t *dp;
503
504	error = dsl_pool_hold(name, FTAG, &dp);
505	if (error != 0)
506		return (error);
507
508	error = dsl_dataset_hold(dp, name, FTAG, &ds);
509	if (error != 0) {
510		dsl_pool_rele(dp, FTAG);
511		return (error);
512	}
513
514	error = zfs_secpolicy_write_perms_ds(name, ds, perm, cr);
515
516	dsl_dataset_rele(ds, FTAG);
517	dsl_pool_rele(dp, FTAG);
518	return (error);
519}
520
521#ifdef SECLABEL
522/*
523 * Policy for setting the security label property.
524 *
525 * Returns 0 for success, non-zero for access and other errors.
526 */
527static int
528zfs_set_slabel_policy(const char *name, char *strval, cred_t *cr)
529{
530	char		ds_hexsl[MAXNAMELEN];
531	bslabel_t	ds_sl, new_sl;
532	boolean_t	new_default = FALSE;
533	uint64_t	zoned;
534	int		needed_priv = -1;
535	int		error;
536
537	/* First get the existing dataset label. */
538	error = dsl_prop_get(name, zfs_prop_to_name(ZFS_PROP_MLSLABEL),
539	    1, sizeof (ds_hexsl), &ds_hexsl, NULL);
540	if (error != 0)
541		return (SET_ERROR(EPERM));
542
543	if (strcasecmp(strval, ZFS_MLSLABEL_DEFAULT) == 0)
544		new_default = TRUE;
545
546	/* The label must be translatable */
547	if (!new_default && (hexstr_to_label(strval, &new_sl) != 0))
548		return (SET_ERROR(EINVAL));
549
550	/*
551	 * In a non-global zone, disallow attempts to set a label that
552	 * doesn't match that of the zone; otherwise no other checks
553	 * are needed.
554	 */
555	if (!INGLOBALZONE(curproc)) {
556		if (new_default || !blequal(&new_sl, CR_SL(CRED())))
557			return (SET_ERROR(EPERM));
558		return (0);
559	}
560
561	/*
562	 * For global-zone datasets (i.e., those whose zoned property is
563	 * "off", verify that the specified new label is valid for the
564	 * global zone.
565	 */
566	if (dsl_prop_get_integer(name,
567	    zfs_prop_to_name(ZFS_PROP_ZONED), &zoned, NULL))
568		return (SET_ERROR(EPERM));
569	if (!zoned) {
570		if (zfs_check_global_label(name, strval) != 0)
571			return (SET_ERROR(EPERM));
572	}
573
574	/*
575	 * If the existing dataset label is nondefault, check if the
576	 * dataset is mounted (label cannot be changed while mounted).
577	 * Get the zfsvfs; if there isn't one, then the dataset isn't
578	 * mounted (or isn't a dataset, doesn't exist, ...).
579	 */
580	if (strcasecmp(ds_hexsl, ZFS_MLSLABEL_DEFAULT) != 0) {
581		objset_t *os;
582		static char *setsl_tag = "setsl_tag";
583
584		/*
585		 * Try to own the dataset; abort if there is any error,
586		 * (e.g., already mounted, in use, or other error).
587		 */
588		error = dmu_objset_own(name, DMU_OST_ZFS, B_TRUE,
589		    setsl_tag, &os);
590		if (error != 0)
591			return (SET_ERROR(EPERM));
592
593		dmu_objset_disown(os, setsl_tag);
594
595		if (new_default) {
596			needed_priv = PRIV_FILE_DOWNGRADE_SL;
597			goto out_check;
598		}
599
600		if (hexstr_to_label(strval, &new_sl) != 0)
601			return (SET_ERROR(EPERM));
602
603		if (blstrictdom(&ds_sl, &new_sl))
604			needed_priv = PRIV_FILE_DOWNGRADE_SL;
605		else if (blstrictdom(&new_sl, &ds_sl))
606			needed_priv = PRIV_FILE_UPGRADE_SL;
607	} else {
608		/* dataset currently has a default label */
609		if (!new_default)
610			needed_priv = PRIV_FILE_UPGRADE_SL;
611	}
612
613out_check:
614	if (needed_priv != -1)
615		return (PRIV_POLICY(cr, needed_priv, B_FALSE, EPERM, NULL));
616	return (0);
617}
618#endif	/* SECLABEL */
619
620static int
621zfs_secpolicy_setprop(const char *dsname, zfs_prop_t prop, nvpair_t *propval,
622    cred_t *cr)
623{
624	char *strval;
625
626	/*
627	 * Check permissions for special properties.
628	 */
629	switch (prop) {
630	case ZFS_PROP_ZONED:
631		/*
632		 * Disallow setting of 'zoned' from within a local zone.
633		 */
634		if (!INGLOBALZONE(curthread))
635			return (SET_ERROR(EPERM));
636		break;
637
638	case ZFS_PROP_QUOTA:
639	case ZFS_PROP_FILESYSTEM_LIMIT:
640	case ZFS_PROP_SNAPSHOT_LIMIT:
641		if (!INGLOBALZONE(curthread)) {
642			uint64_t zoned;
643			char setpoint[MAXNAMELEN];
644			/*
645			 * Unprivileged users are allowed to modify the
646			 * limit on things *under* (ie. contained by)
647			 * the thing they own.
648			 */
649			if (dsl_prop_get_integer(dsname, "jailed", &zoned,
650			    setpoint))
651				return (SET_ERROR(EPERM));
652			if (!zoned || strlen(dsname) <= strlen(setpoint))
653				return (SET_ERROR(EPERM));
654		}
655		break;
656
657	case ZFS_PROP_MLSLABEL:
658#ifdef SECLABEL
659		if (!is_system_labeled())
660			return (SET_ERROR(EPERM));
661
662		if (nvpair_value_string(propval, &strval) == 0) {
663			int err;
664
665			err = zfs_set_slabel_policy(dsname, strval, CRED());
666			if (err != 0)
667				return (err);
668		}
669#else
670		return (EOPNOTSUPP);
671#endif
672		break;
673	}
674
675	return (zfs_secpolicy_write_perms(dsname, zfs_prop_to_name(prop), cr));
676}
677
678/* ARGSUSED */
679static int
680zfs_secpolicy_set_fsacl(zfs_cmd_t *zc, nvlist_t *innvl, cred_t *cr)
681{
682	int error;
683
684	error = zfs_dozonecheck(zc->zc_name, cr);
685	if (error != 0)
686		return (error);
687
688	/*
689	 * permission to set permissions will be evaluated later in
690	 * dsl_deleg_can_allow()
691	 */
692	return (0);
693}
694
695/* ARGSUSED */
696static int
697zfs_secpolicy_rollback(zfs_cmd_t *zc, nvlist_t *innvl, cred_t *cr)
698{
699	return (zfs_secpolicy_write_perms(zc->zc_name,
700	    ZFS_DELEG_PERM_ROLLBACK, cr));
701}
702
703/* ARGSUSED */
704static int
705zfs_secpolicy_send(zfs_cmd_t *zc, nvlist_t *innvl, cred_t *cr)
706{
707	dsl_pool_t *dp;
708	dsl_dataset_t *ds;
709	char *cp;
710	int error;
711
712	/*
713	 * Generate the current snapshot name from the given objsetid, then
714	 * use that name for the secpolicy/zone checks.
715	 */
716	cp = strchr(zc->zc_name, '@');
717	if (cp == NULL)
718		return (SET_ERROR(EINVAL));
719	error = dsl_pool_hold(zc->zc_name, FTAG, &dp);
720	if (error != 0)
721		return (error);
722
723	error = dsl_dataset_hold_obj(dp, zc->zc_sendobj, FTAG, &ds);
724	if (error != 0) {
725		dsl_pool_rele(dp, FTAG);
726		return (error);
727	}
728
729	dsl_dataset_name(ds, zc->zc_name);
730
731	error = zfs_secpolicy_write_perms_ds(zc->zc_name, ds,
732	    ZFS_DELEG_PERM_SEND, cr);
733	dsl_dataset_rele(ds, FTAG);
734	dsl_pool_rele(dp, FTAG);
735
736	return (error);
737}
738
739/* ARGSUSED */
740static int
741zfs_secpolicy_send_new(zfs_cmd_t *zc, nvlist_t *innvl, cred_t *cr)
742{
743	return (zfs_secpolicy_write_perms(zc->zc_name,
744	    ZFS_DELEG_PERM_SEND, cr));
745}
746
747/* ARGSUSED */
748static int
749zfs_secpolicy_deleg_share(zfs_cmd_t *zc, nvlist_t *innvl, cred_t *cr)
750{
751	vnode_t *vp;
752	int error;
753
754	if ((error = lookupname(zc->zc_value, UIO_SYSSPACE,
755	    NO_FOLLOW, NULL, &vp)) != 0)
756		return (error);
757
758	/* Now make sure mntpnt and dataset are ZFS */
759
760	if (strcmp(vp->v_vfsp->mnt_stat.f_fstypename, "zfs") != 0 ||
761	    (strcmp((char *)refstr_value(vp->v_vfsp->vfs_resource),
762	    zc->zc_name) != 0)) {
763		VN_RELE(vp);
764		return (SET_ERROR(EPERM));
765	}
766
767	VN_RELE(vp);
768	return (dsl_deleg_access(zc->zc_name,
769	    ZFS_DELEG_PERM_SHARE, cr));
770}
771
772int
773zfs_secpolicy_share(zfs_cmd_t *zc, nvlist_t *innvl, cred_t *cr)
774{
775	if (!INGLOBALZONE(curthread))
776		return (SET_ERROR(EPERM));
777
778	if (secpolicy_nfs(cr) == 0) {
779		return (0);
780	} else {
781		return (zfs_secpolicy_deleg_share(zc, innvl, cr));
782	}
783}
784
785int
786zfs_secpolicy_smb_acl(zfs_cmd_t *zc, nvlist_t *innvl, cred_t *cr)
787{
788	if (!INGLOBALZONE(curthread))
789		return (SET_ERROR(EPERM));
790
791	if (secpolicy_smb(cr) == 0) {
792		return (0);
793	} else {
794		return (zfs_secpolicy_deleg_share(zc, innvl, cr));
795	}
796}
797
798static int
799zfs_get_parent(const char *datasetname, char *parent, int parentsize)
800{
801	char *cp;
802
803	/*
804	 * Remove the @bla or /bla from the end of the name to get the parent.
805	 */
806	(void) strncpy(parent, datasetname, parentsize);
807	cp = strrchr(parent, '@');
808	if (cp != NULL) {
809		cp[0] = '\0';
810	} else {
811		cp = strrchr(parent, '/');
812		if (cp == NULL)
813			return (SET_ERROR(ENOENT));
814		cp[0] = '\0';
815	}
816
817	return (0);
818}
819
820int
821zfs_secpolicy_destroy_perms(const char *name, cred_t *cr)
822{
823	int error;
824
825	if ((error = zfs_secpolicy_write_perms(name,
826	    ZFS_DELEG_PERM_MOUNT, cr)) != 0)
827		return (error);
828
829	return (zfs_secpolicy_write_perms(name, ZFS_DELEG_PERM_DESTROY, cr));
830}
831
832/* ARGSUSED */
833static int
834zfs_secpolicy_destroy(zfs_cmd_t *zc, nvlist_t *innvl, cred_t *cr)
835{
836	return (zfs_secpolicy_destroy_perms(zc->zc_name, cr));
837}
838
839/*
840 * Destroying snapshots with delegated permissions requires
841 * descendant mount and destroy permissions.
842 */
843/* ARGSUSED */
844static int
845zfs_secpolicy_destroy_snaps(zfs_cmd_t *zc, nvlist_t *innvl, cred_t *cr)
846{
847	nvlist_t *snaps;
848	nvpair_t *pair, *nextpair;
849	int error = 0;
850
851	if (nvlist_lookup_nvlist(innvl, "snaps", &snaps) != 0)
852		return (SET_ERROR(EINVAL));
853	for (pair = nvlist_next_nvpair(snaps, NULL); pair != NULL;
854	    pair = nextpair) {
855		nextpair = nvlist_next_nvpair(snaps, pair);
856		error = zfs_secpolicy_destroy_perms(nvpair_name(pair), cr);
857		if (error == ENOENT) {
858			/*
859			 * Ignore any snapshots that don't exist (we consider
860			 * them "already destroyed").  Remove the name from the
861			 * nvl here in case the snapshot is created between
862			 * now and when we try to destroy it (in which case
863			 * we don't want to destroy it since we haven't
864			 * checked for permission).
865			 */
866			fnvlist_remove_nvpair(snaps, pair);
867			error = 0;
868		}
869		if (error != 0)
870			break;
871	}
872
873	return (error);
874}
875
876int
877zfs_secpolicy_rename_perms(const char *from, const char *to, cred_t *cr)
878{
879	char	parentname[MAXNAMELEN];
880	int	error;
881
882	if ((error = zfs_secpolicy_write_perms(from,
883	    ZFS_DELEG_PERM_RENAME, cr)) != 0)
884		return (error);
885
886	if ((error = zfs_secpolicy_write_perms(from,
887	    ZFS_DELEG_PERM_MOUNT, cr)) != 0)
888		return (error);
889
890	if ((error = zfs_get_parent(to, parentname,
891	    sizeof (parentname))) != 0)
892		return (error);
893
894	if ((error = zfs_secpolicy_write_perms(parentname,
895	    ZFS_DELEG_PERM_CREATE, cr)) != 0)
896		return (error);
897
898	if ((error = zfs_secpolicy_write_perms(parentname,
899	    ZFS_DELEG_PERM_MOUNT, cr)) != 0)
900		return (error);
901
902	return (error);
903}
904
905/* ARGSUSED */
906static int
907zfs_secpolicy_rename(zfs_cmd_t *zc, nvlist_t *innvl, cred_t *cr)
908{
909	char *at = NULL;
910	int error;
911
912	if ((zc->zc_cookie & 1) != 0) {
913		/*
914		 * This is recursive rename, so the starting snapshot might
915		 * not exist. Check file system or volume permission instead.
916		 */
917		at = strchr(zc->zc_name, '@');
918		if (at == NULL)
919			return (EINVAL);
920		*at = '\0';
921	}
922
923	error = zfs_secpolicy_rename_perms(zc->zc_name, zc->zc_value, cr);
924
925	if (at != NULL)
926		*at = '@';
927
928	return (error);
929}
930
931/* ARGSUSED */
932static int
933zfs_secpolicy_promote(zfs_cmd_t *zc, nvlist_t *innvl, cred_t *cr)
934{
935	dsl_pool_t *dp;
936	dsl_dataset_t *clone;
937	int error;
938
939	error = zfs_secpolicy_write_perms(zc->zc_name,
940	    ZFS_DELEG_PERM_PROMOTE, cr);
941	if (error != 0)
942		return (error);
943
944	error = dsl_pool_hold(zc->zc_name, FTAG, &dp);
945	if (error != 0)
946		return (error);
947
948	error = dsl_dataset_hold(dp, zc->zc_name, FTAG, &clone);
949
950	if (error == 0) {
951		char parentname[MAXNAMELEN];
952		dsl_dataset_t *origin = NULL;
953		dsl_dir_t *dd;
954		dd = clone->ds_dir;
955
956		error = dsl_dataset_hold_obj(dd->dd_pool,
957		    dsl_dir_phys(dd)->dd_origin_obj, FTAG, &origin);
958		if (error != 0) {
959			dsl_dataset_rele(clone, FTAG);
960			dsl_pool_rele(dp, FTAG);
961			return (error);
962		}
963
964		error = zfs_secpolicy_write_perms_ds(zc->zc_name, clone,
965		    ZFS_DELEG_PERM_MOUNT, cr);
966
967		dsl_dataset_name(origin, parentname);
968		if (error == 0) {
969			error = zfs_secpolicy_write_perms_ds(parentname, origin,
970			    ZFS_DELEG_PERM_PROMOTE, cr);
971		}
972		dsl_dataset_rele(clone, FTAG);
973		dsl_dataset_rele(origin, FTAG);
974	}
975	dsl_pool_rele(dp, FTAG);
976	return (error);
977}
978
979/* ARGSUSED */
980static int
981zfs_secpolicy_recv(zfs_cmd_t *zc, nvlist_t *innvl, cred_t *cr)
982{
983	int error;
984
985	if ((error = zfs_secpolicy_write_perms(zc->zc_name,
986	    ZFS_DELEG_PERM_RECEIVE, cr)) != 0)
987		return (error);
988
989	if ((error = zfs_secpolicy_write_perms(zc->zc_name,
990	    ZFS_DELEG_PERM_MOUNT, cr)) != 0)
991		return (error);
992
993	return (zfs_secpolicy_write_perms(zc->zc_name,
994	    ZFS_DELEG_PERM_CREATE, cr));
995}
996
997int
998zfs_secpolicy_snapshot_perms(const char *name, cred_t *cr)
999{
1000	return (zfs_secpolicy_write_perms(name,
1001	    ZFS_DELEG_PERM_SNAPSHOT, cr));
1002}
1003
1004/*
1005 * Check for permission to create each snapshot in the nvlist.
1006 */
1007/* ARGSUSED */
1008static int
1009zfs_secpolicy_snapshot(zfs_cmd_t *zc, nvlist_t *innvl, cred_t *cr)
1010{
1011	nvlist_t *snaps;
1012	int error;
1013	nvpair_t *pair;
1014
1015	if (nvlist_lookup_nvlist(innvl, "snaps", &snaps) != 0)
1016		return (SET_ERROR(EINVAL));
1017	for (pair = nvlist_next_nvpair(snaps, NULL); pair != NULL;
1018	    pair = nvlist_next_nvpair(snaps, pair)) {
1019		char *name = nvpair_name(pair);
1020		char *atp = strchr(name, '@');
1021
1022		if (atp == NULL) {
1023			error = SET_ERROR(EINVAL);
1024			break;
1025		}
1026		*atp = '\0';
1027		error = zfs_secpolicy_snapshot_perms(name, cr);
1028		*atp = '@';
1029		if (error != 0)
1030			break;
1031	}
1032	return (error);
1033}
1034
1035/*
1036 * Check for permission to create each snapshot in the nvlist.
1037 */
1038/* ARGSUSED */
1039static int
1040zfs_secpolicy_bookmark(zfs_cmd_t *zc, nvlist_t *innvl, cred_t *cr)
1041{
1042	int error = 0;
1043
1044	for (nvpair_t *pair = nvlist_next_nvpair(innvl, NULL);
1045	    pair != NULL; pair = nvlist_next_nvpair(innvl, pair)) {
1046		char *name = nvpair_name(pair);
1047		char *hashp = strchr(name, '#');
1048
1049		if (hashp == NULL) {
1050			error = SET_ERROR(EINVAL);
1051			break;
1052		}
1053		*hashp = '\0';
1054		error = zfs_secpolicy_write_perms(name,
1055		    ZFS_DELEG_PERM_BOOKMARK, cr);
1056		*hashp = '#';
1057		if (error != 0)
1058			break;
1059	}
1060	return (error);
1061}
1062
1063/* ARGSUSED */
1064static int
1065zfs_secpolicy_destroy_bookmarks(zfs_cmd_t *zc, nvlist_t *innvl, cred_t *cr)
1066{
1067	nvpair_t *pair, *nextpair;
1068	int error = 0;
1069
1070	for (pair = nvlist_next_nvpair(innvl, NULL); pair != NULL;
1071	    pair = nextpair) {
1072		char *name = nvpair_name(pair);
1073		char *hashp = strchr(name, '#');
1074		nextpair = nvlist_next_nvpair(innvl, pair);
1075
1076		if (hashp == NULL) {
1077			error = SET_ERROR(EINVAL);
1078			break;
1079		}
1080
1081		*hashp = '\0';
1082		error = zfs_secpolicy_write_perms(name,
1083		    ZFS_DELEG_PERM_DESTROY, cr);
1084		*hashp = '#';
1085		if (error == ENOENT) {
1086			/*
1087			 * Ignore any filesystems that don't exist (we consider
1088			 * their bookmarks "already destroyed").  Remove
1089			 * the name from the nvl here in case the filesystem
1090			 * is created between now and when we try to destroy
1091			 * the bookmark (in which case we don't want to
1092			 * destroy it since we haven't checked for permission).
1093			 */
1094			fnvlist_remove_nvpair(innvl, pair);
1095			error = 0;
1096		}
1097		if (error != 0)
1098			break;
1099	}
1100
1101	return (error);
1102}
1103
1104/* ARGSUSED */
1105static int
1106zfs_secpolicy_log_history(zfs_cmd_t *zc, nvlist_t *innvl, cred_t *cr)
1107{
1108	/*
1109	 * Even root must have a proper TSD so that we know what pool
1110	 * to log to.
1111	 */
1112	if (tsd_get(zfs_allow_log_key) == NULL)
1113		return (SET_ERROR(EPERM));
1114	return (0);
1115}
1116
1117static int
1118zfs_secpolicy_create_clone(zfs_cmd_t *zc, nvlist_t *innvl, cred_t *cr)
1119{
1120	char	parentname[MAXNAMELEN];
1121	int	error;
1122	char	*origin;
1123
1124	if ((error = zfs_get_parent(zc->zc_name, parentname,
1125	    sizeof (parentname))) != 0)
1126		return (error);
1127
1128	if (nvlist_lookup_string(innvl, "origin", &origin) == 0 &&
1129	    (error = zfs_secpolicy_write_perms(origin,
1130	    ZFS_DELEG_PERM_CLONE, cr)) != 0)
1131		return (error);
1132
1133	if ((error = zfs_secpolicy_write_perms(parentname,
1134	    ZFS_DELEG_PERM_CREATE, cr)) != 0)
1135		return (error);
1136
1137	return (zfs_secpolicy_write_perms(parentname,
1138	    ZFS_DELEG_PERM_MOUNT, cr));
1139}
1140
1141/*
1142 * Policy for pool operations - create/destroy pools, add vdevs, etc.  Requires
1143 * SYS_CONFIG privilege, which is not available in a local zone.
1144 */
1145/* ARGSUSED */
1146static int
1147zfs_secpolicy_config(zfs_cmd_t *zc, nvlist_t *innvl, cred_t *cr)
1148{
1149	if (secpolicy_sys_config(cr, B_FALSE) != 0)
1150		return (SET_ERROR(EPERM));
1151
1152	return (0);
1153}
1154
1155/*
1156 * Policy for object to name lookups.
1157 */
1158/* ARGSUSED */
1159static int
1160zfs_secpolicy_diff(zfs_cmd_t *zc, nvlist_t *innvl, cred_t *cr)
1161{
1162	int error;
1163
1164	if ((error = secpolicy_sys_config(cr, B_FALSE)) == 0)
1165		return (0);
1166
1167	error = zfs_secpolicy_write_perms(zc->zc_name, ZFS_DELEG_PERM_DIFF, cr);
1168	return (error);
1169}
1170
1171/*
1172 * Policy for fault injection.  Requires all privileges.
1173 */
1174/* ARGSUSED */
1175static int
1176zfs_secpolicy_inject(zfs_cmd_t *zc, nvlist_t *innvl, cred_t *cr)
1177{
1178	return (secpolicy_zinject(cr));
1179}
1180
1181/* ARGSUSED */
1182static int
1183zfs_secpolicy_inherit_prop(zfs_cmd_t *zc, nvlist_t *innvl, cred_t *cr)
1184{
1185	zfs_prop_t prop = zfs_name_to_prop(zc->zc_value);
1186
1187	if (prop == ZPROP_INVAL) {
1188		if (!zfs_prop_user(zc->zc_value))
1189			return (SET_ERROR(EINVAL));
1190		return (zfs_secpolicy_write_perms(zc->zc_name,
1191		    ZFS_DELEG_PERM_USERPROP, cr));
1192	} else {
1193		return (zfs_secpolicy_setprop(zc->zc_name, prop,
1194		    NULL, cr));
1195	}
1196}
1197
1198static int
1199zfs_secpolicy_userspace_one(zfs_cmd_t *zc, nvlist_t *innvl, cred_t *cr)
1200{
1201	int err = zfs_secpolicy_read(zc, innvl, cr);
1202	if (err)
1203		return (err);
1204
1205	if (zc->zc_objset_type >= ZFS_NUM_USERQUOTA_PROPS)
1206		return (SET_ERROR(EINVAL));
1207
1208	if (zc->zc_value[0] == 0) {
1209		/*
1210		 * They are asking about a posix uid/gid.  If it's
1211		 * themself, allow it.
1212		 */
1213		if (zc->zc_objset_type == ZFS_PROP_USERUSED ||
1214		    zc->zc_objset_type == ZFS_PROP_USERQUOTA) {
1215			if (zc->zc_guid == crgetuid(cr))
1216				return (0);
1217		} else {
1218			if (groupmember(zc->zc_guid, cr))
1219				return (0);
1220		}
1221	}
1222
1223	return (zfs_secpolicy_write_perms(zc->zc_name,
1224	    userquota_perms[zc->zc_objset_type], cr));
1225}
1226
1227static int
1228zfs_secpolicy_userspace_many(zfs_cmd_t *zc, nvlist_t *innvl, cred_t *cr)
1229{
1230	int err = zfs_secpolicy_read(zc, innvl, cr);
1231	if (err)
1232		return (err);
1233
1234	if (zc->zc_objset_type >= ZFS_NUM_USERQUOTA_PROPS)
1235		return (SET_ERROR(EINVAL));
1236
1237	return (zfs_secpolicy_write_perms(zc->zc_name,
1238	    userquota_perms[zc->zc_objset_type], cr));
1239}
1240
1241/* ARGSUSED */
1242static int
1243zfs_secpolicy_userspace_upgrade(zfs_cmd_t *zc, nvlist_t *innvl, cred_t *cr)
1244{
1245	return (zfs_secpolicy_setprop(zc->zc_name, ZFS_PROP_VERSION,
1246	    NULL, cr));
1247}
1248
1249/* ARGSUSED */
1250static int
1251zfs_secpolicy_hold(zfs_cmd_t *zc, nvlist_t *innvl, cred_t *cr)
1252{
1253	nvpair_t *pair;
1254	nvlist_t *holds;
1255	int error;
1256
1257	error = nvlist_lookup_nvlist(innvl, "holds", &holds);
1258	if (error != 0)
1259		return (SET_ERROR(EINVAL));
1260
1261	for (pair = nvlist_next_nvpair(holds, NULL); pair != NULL;
1262	    pair = nvlist_next_nvpair(holds, pair)) {
1263		char fsname[MAXNAMELEN];
1264		error = dmu_fsname(nvpair_name(pair), fsname);
1265		if (error != 0)
1266			return (error);
1267		error = zfs_secpolicy_write_perms(fsname,
1268		    ZFS_DELEG_PERM_HOLD, cr);
1269		if (error != 0)
1270			return (error);
1271	}
1272	return (0);
1273}
1274
1275/* ARGSUSED */
1276static int
1277zfs_secpolicy_release(zfs_cmd_t *zc, nvlist_t *innvl, cred_t *cr)
1278{
1279	nvpair_t *pair;
1280	int error;
1281
1282	for (pair = nvlist_next_nvpair(innvl, NULL); pair != NULL;
1283	    pair = nvlist_next_nvpair(innvl, pair)) {
1284		char fsname[MAXNAMELEN];
1285		error = dmu_fsname(nvpair_name(pair), fsname);
1286		if (error != 0)
1287			return (error);
1288		error = zfs_secpolicy_write_perms(fsname,
1289		    ZFS_DELEG_PERM_RELEASE, cr);
1290		if (error != 0)
1291			return (error);
1292	}
1293	return (0);
1294}
1295
1296/*
1297 * Policy for allowing temporary snapshots to be taken or released
1298 */
1299static int
1300zfs_secpolicy_tmp_snapshot(zfs_cmd_t *zc, nvlist_t *innvl, cred_t *cr)
1301{
1302	/*
1303	 * A temporary snapshot is the same as a snapshot,
1304	 * hold, destroy and release all rolled into one.
1305	 * Delegated diff alone is sufficient that we allow this.
1306	 */
1307	int error;
1308
1309	if ((error = zfs_secpolicy_write_perms(zc->zc_name,
1310	    ZFS_DELEG_PERM_DIFF, cr)) == 0)
1311		return (0);
1312
1313	error = zfs_secpolicy_snapshot_perms(zc->zc_name, cr);
1314	if (error == 0)
1315		error = zfs_secpolicy_hold(zc, innvl, cr);
1316	if (error == 0)
1317		error = zfs_secpolicy_release(zc, innvl, cr);
1318	if (error == 0)
1319		error = zfs_secpolicy_destroy(zc, innvl, cr);
1320	return (error);
1321}
1322
1323/*
1324 * Returns the nvlist as specified by the user in the zfs_cmd_t.
1325 */
1326static int
1327get_nvlist(uint64_t nvl, uint64_t size, int iflag, nvlist_t **nvp)
1328{
1329	char *packed;
1330	int error;
1331	nvlist_t *list = NULL;
1332
1333	/*
1334	 * Read in and unpack the user-supplied nvlist.
1335	 */
1336	if (size == 0)
1337		return (SET_ERROR(EINVAL));
1338
1339	packed = kmem_alloc(size, KM_SLEEP);
1340
1341	if ((error = ddi_copyin((void *)(uintptr_t)nvl, packed, size,
1342	    iflag)) != 0) {
1343		kmem_free(packed, size);
1344		return (error);
1345	}
1346
1347	if ((error = nvlist_unpack(packed, size, &list, 0)) != 0) {
1348		kmem_free(packed, size);
1349		return (error);
1350	}
1351
1352	kmem_free(packed, size);
1353
1354	*nvp = list;
1355	return (0);
1356}
1357
1358/*
1359 * Reduce the size of this nvlist until it can be serialized in 'max' bytes.
1360 * Entries will be removed from the end of the nvlist, and one int32 entry
1361 * named "N_MORE_ERRORS" will be added indicating how many entries were
1362 * removed.
1363 */
1364static int
1365nvlist_smush(nvlist_t *errors, size_t max)
1366{
1367	size_t size;
1368
1369	size = fnvlist_size(errors);
1370
1371	if (size > max) {
1372		nvpair_t *more_errors;
1373		int n = 0;
1374
1375		if (max < 1024)
1376			return (SET_ERROR(ENOMEM));
1377
1378		fnvlist_add_int32(errors, ZPROP_N_MORE_ERRORS, 0);
1379		more_errors = nvlist_prev_nvpair(errors, NULL);
1380
1381		do {
1382			nvpair_t *pair = nvlist_prev_nvpair(errors,
1383			    more_errors);
1384			fnvlist_remove_nvpair(errors, pair);
1385			n++;
1386			size = fnvlist_size(errors);
1387		} while (size > max);
1388
1389		fnvlist_remove_nvpair(errors, more_errors);
1390		fnvlist_add_int32(errors, ZPROP_N_MORE_ERRORS, n);
1391		ASSERT3U(fnvlist_size(errors), <=, max);
1392	}
1393
1394	return (0);
1395}
1396
1397static int
1398put_nvlist(zfs_cmd_t *zc, nvlist_t *nvl)
1399{
1400	char *packed = NULL;
1401	int error = 0;
1402	size_t size;
1403
1404	size = fnvlist_size(nvl);
1405
1406	if (size > zc->zc_nvlist_dst_size) {
1407		/*
1408		 * Solaris returns ENOMEM here, because even if an error is
1409		 * returned from an ioctl(2), new zc_nvlist_dst_size will be
1410		 * passed to the userland. This is not the case for FreeBSD.
1411		 * We need to return 0, so the kernel will copy the
1412		 * zc_nvlist_dst_size back and the userland can discover that a
1413		 * bigger buffer is needed.
1414		 */
1415		error = 0;
1416	} else {
1417		packed = fnvlist_pack(nvl, &size);
1418		if (ddi_copyout(packed, (void *)(uintptr_t)zc->zc_nvlist_dst,
1419		    size, zc->zc_iflags) != 0)
1420			error = SET_ERROR(EFAULT);
1421		fnvlist_pack_free(packed, size);
1422	}
1423
1424	zc->zc_nvlist_dst_size = size;
1425	zc->zc_nvlist_dst_filled = B_TRUE;
1426	return (error);
1427}
1428
1429static int
1430getzfsvfs(const char *dsname, zfsvfs_t **zfvp)
1431{
1432	objset_t *os;
1433	int error;
1434
1435	error = dmu_objset_hold(dsname, FTAG, &os);
1436	if (error != 0)
1437		return (error);
1438	if (dmu_objset_type(os) != DMU_OST_ZFS) {
1439		dmu_objset_rele(os, FTAG);
1440		return (SET_ERROR(EINVAL));
1441	}
1442
1443	mutex_enter(&os->os_user_ptr_lock);
1444	*zfvp = dmu_objset_get_user(os);
1445	if (*zfvp) {
1446		VFS_HOLD((*zfvp)->z_vfs);
1447	} else {
1448		error = SET_ERROR(ESRCH);
1449	}
1450	mutex_exit(&os->os_user_ptr_lock);
1451	dmu_objset_rele(os, FTAG);
1452	return (error);
1453}
1454
1455/*
1456 * Find a zfsvfs_t for a mounted filesystem, or create our own, in which
1457 * case its z_vfs will be NULL, and it will be opened as the owner.
1458 * If 'writer' is set, the z_teardown_lock will be held for RW_WRITER,
1459 * which prevents all vnode ops from running.
1460 */
1461static int
1462zfsvfs_hold(const char *name, void *tag, zfsvfs_t **zfvp, boolean_t writer)
1463{
1464	int error = 0;
1465
1466	if (getzfsvfs(name, zfvp) != 0)
1467		error = zfsvfs_create(name, zfvp);
1468	if (error == 0) {
1469		rrm_enter(&(*zfvp)->z_teardown_lock, (writer) ? RW_WRITER :
1470		    RW_READER, tag);
1471		if ((*zfvp)->z_unmounted) {
1472			/*
1473			 * XXX we could probably try again, since the unmounting
1474			 * thread should be just about to disassociate the
1475			 * objset from the zfsvfs.
1476			 */
1477			rrm_exit(&(*zfvp)->z_teardown_lock, tag);
1478			return (SET_ERROR(EBUSY));
1479		}
1480	}
1481	return (error);
1482}
1483
1484static void
1485zfsvfs_rele(zfsvfs_t *zfsvfs, void *tag)
1486{
1487	rrm_exit(&zfsvfs->z_teardown_lock, tag);
1488
1489	if (zfsvfs->z_vfs) {
1490		VFS_RELE(zfsvfs->z_vfs);
1491	} else {
1492		dmu_objset_disown(zfsvfs->z_os, zfsvfs);
1493		zfsvfs_free(zfsvfs);
1494	}
1495}
1496
1497static int
1498zfs_ioc_pool_create(zfs_cmd_t *zc)
1499{
1500	int error;
1501	nvlist_t *config, *props = NULL;
1502	nvlist_t *rootprops = NULL;
1503	nvlist_t *zplprops = NULL;
1504
1505	if (error = get_nvlist(zc->zc_nvlist_conf, zc->zc_nvlist_conf_size,
1506	    zc->zc_iflags, &config))
1507		return (error);
1508
1509	if (zc->zc_nvlist_src_size != 0 && (error =
1510	    get_nvlist(zc->zc_nvlist_src, zc->zc_nvlist_src_size,
1511	    zc->zc_iflags, &props))) {
1512		nvlist_free(config);
1513		return (error);
1514	}
1515
1516	if (props) {
1517		nvlist_t *nvl = NULL;
1518		uint64_t version = SPA_VERSION;
1519
1520		(void) nvlist_lookup_uint64(props,
1521		    zpool_prop_to_name(ZPOOL_PROP_VERSION), &version);
1522		if (!SPA_VERSION_IS_SUPPORTED(version)) {
1523			error = SET_ERROR(EINVAL);
1524			goto pool_props_bad;
1525		}
1526		(void) nvlist_lookup_nvlist(props, ZPOOL_ROOTFS_PROPS, &nvl);
1527		if (nvl) {
1528			error = nvlist_dup(nvl, &rootprops, KM_SLEEP);
1529			if (error != 0) {
1530				nvlist_free(config);
1531				nvlist_free(props);
1532				return (error);
1533			}
1534			(void) nvlist_remove_all(props, ZPOOL_ROOTFS_PROPS);
1535		}
1536		VERIFY(nvlist_alloc(&zplprops, NV_UNIQUE_NAME, KM_SLEEP) == 0);
1537		error = zfs_fill_zplprops_root(version, rootprops,
1538		    zplprops, NULL);
1539		if (error != 0)
1540			goto pool_props_bad;
1541	}
1542
1543	error = spa_create(zc->zc_name, config, props, zplprops);
1544
1545	/*
1546	 * Set the remaining root properties
1547	 */
1548	if (!error && (error = zfs_set_prop_nvlist(zc->zc_name,
1549	    ZPROP_SRC_LOCAL, rootprops, NULL)) != 0)
1550		(void) spa_destroy(zc->zc_name);
1551
1552pool_props_bad:
1553	nvlist_free(rootprops);
1554	nvlist_free(zplprops);
1555	nvlist_free(config);
1556	nvlist_free(props);
1557
1558	return (error);
1559}
1560
1561static int
1562zfs_ioc_pool_destroy(zfs_cmd_t *zc)
1563{
1564	int error;
1565	zfs_log_history(zc);
1566	error = spa_destroy(zc->zc_name);
1567	if (error == 0)
1568		zvol_remove_minors(zc->zc_name);
1569	return (error);
1570}
1571
1572static int
1573zfs_ioc_pool_import(zfs_cmd_t *zc)
1574{
1575	nvlist_t *config, *props = NULL;
1576	uint64_t guid;
1577	int error;
1578
1579	if ((error = get_nvlist(zc->zc_nvlist_conf, zc->zc_nvlist_conf_size,
1580	    zc->zc_iflags, &config)) != 0)
1581		return (error);
1582
1583	if (zc->zc_nvlist_src_size != 0 && (error =
1584	    get_nvlist(zc->zc_nvlist_src, zc->zc_nvlist_src_size,
1585	    zc->zc_iflags, &props))) {
1586		nvlist_free(config);
1587		return (error);
1588	}
1589
1590	if (nvlist_lookup_uint64(config, ZPOOL_CONFIG_POOL_GUID, &guid) != 0 ||
1591	    guid != zc->zc_guid)
1592		error = SET_ERROR(EINVAL);
1593	else
1594		error = spa_import(zc->zc_name, config, props, zc->zc_cookie);
1595
1596	if (zc->zc_nvlist_dst != 0) {
1597		int err;
1598
1599		if ((err = put_nvlist(zc, config)) != 0)
1600			error = err;
1601	}
1602
1603	nvlist_free(config);
1604
1605	if (props)
1606		nvlist_free(props);
1607
1608	return (error);
1609}
1610
1611static int
1612zfs_ioc_pool_export(zfs_cmd_t *zc)
1613{
1614	int error;
1615	boolean_t force = (boolean_t)zc->zc_cookie;
1616	boolean_t hardforce = (boolean_t)zc->zc_guid;
1617
1618	zfs_log_history(zc);
1619	error = spa_export(zc->zc_name, NULL, force, hardforce);
1620	if (error == 0)
1621		zvol_remove_minors(zc->zc_name);
1622	return (error);
1623}
1624
1625static int
1626zfs_ioc_pool_configs(zfs_cmd_t *zc)
1627{
1628	nvlist_t *configs;
1629	int error;
1630
1631	if ((configs = spa_all_configs(&zc->zc_cookie)) == NULL)
1632		return (SET_ERROR(EEXIST));
1633
1634	error = put_nvlist(zc, configs);
1635
1636	nvlist_free(configs);
1637
1638	return (error);
1639}
1640
1641/*
1642 * inputs:
1643 * zc_name		name of the pool
1644 *
1645 * outputs:
1646 * zc_cookie		real errno
1647 * zc_nvlist_dst	config nvlist
1648 * zc_nvlist_dst_size	size of config nvlist
1649 */
1650static int
1651zfs_ioc_pool_stats(zfs_cmd_t *zc)
1652{
1653	nvlist_t *config;
1654	int error;
1655	int ret = 0;
1656
1657	error = spa_get_stats(zc->zc_name, &config, zc->zc_value,
1658	    sizeof (zc->zc_value));
1659
1660	if (config != NULL) {
1661		ret = put_nvlist(zc, config);
1662		nvlist_free(config);
1663
1664		/*
1665		 * The config may be present even if 'error' is non-zero.
1666		 * In this case we return success, and preserve the real errno
1667		 * in 'zc_cookie'.
1668		 */
1669		zc->zc_cookie = error;
1670	} else {
1671		ret = error;
1672	}
1673
1674	return (ret);
1675}
1676
1677/*
1678 * Try to import the given pool, returning pool stats as appropriate so that
1679 * user land knows which devices are available and overall pool health.
1680 */
1681static int
1682zfs_ioc_pool_tryimport(zfs_cmd_t *zc)
1683{
1684	nvlist_t *tryconfig, *config;
1685	int error;
1686
1687	if ((error = get_nvlist(zc->zc_nvlist_conf, zc->zc_nvlist_conf_size,
1688	    zc->zc_iflags, &tryconfig)) != 0)
1689		return (error);
1690
1691	config = spa_tryimport(tryconfig);
1692
1693	nvlist_free(tryconfig);
1694
1695	if (config == NULL)
1696		return (SET_ERROR(EINVAL));
1697
1698	error = put_nvlist(zc, config);
1699	nvlist_free(config);
1700
1701	return (error);
1702}
1703
1704/*
1705 * inputs:
1706 * zc_name              name of the pool
1707 * zc_cookie            scan func (pool_scan_func_t)
1708 */
1709static int
1710zfs_ioc_pool_scan(zfs_cmd_t *zc)
1711{
1712	spa_t *spa;
1713	int error;
1714
1715	if ((error = spa_open(zc->zc_name, &spa, FTAG)) != 0)
1716		return (error);
1717
1718	if (zc->zc_cookie == POOL_SCAN_NONE)
1719		error = spa_scan_stop(spa);
1720	else
1721		error = spa_scan(spa, zc->zc_cookie);
1722
1723	spa_close(spa, FTAG);
1724
1725	return (error);
1726}
1727
1728static int
1729zfs_ioc_pool_freeze(zfs_cmd_t *zc)
1730{
1731	spa_t *spa;
1732	int error;
1733
1734	error = spa_open(zc->zc_name, &spa, FTAG);
1735	if (error == 0) {
1736		spa_freeze(spa);
1737		spa_close(spa, FTAG);
1738	}
1739	return (error);
1740}
1741
1742static int
1743zfs_ioc_pool_upgrade(zfs_cmd_t *zc)
1744{
1745	spa_t *spa;
1746	int error;
1747
1748	if ((error = spa_open(zc->zc_name, &spa, FTAG)) != 0)
1749		return (error);
1750
1751	if (zc->zc_cookie < spa_version(spa) ||
1752	    !SPA_VERSION_IS_SUPPORTED(zc->zc_cookie)) {
1753		spa_close(spa, FTAG);
1754		return (SET_ERROR(EINVAL));
1755	}
1756
1757	spa_upgrade(spa, zc->zc_cookie);
1758	spa_close(spa, FTAG);
1759
1760	return (error);
1761}
1762
1763static int
1764zfs_ioc_pool_get_history(zfs_cmd_t *zc)
1765{
1766	spa_t *spa;
1767	char *hist_buf;
1768	uint64_t size;
1769	int error;
1770
1771	if ((size = zc->zc_history_len) == 0)
1772		return (SET_ERROR(EINVAL));
1773
1774	if ((error = spa_open(zc->zc_name, &spa, FTAG)) != 0)
1775		return (error);
1776
1777	if (spa_version(spa) < SPA_VERSION_ZPOOL_HISTORY) {
1778		spa_close(spa, FTAG);
1779		return (SET_ERROR(ENOTSUP));
1780	}
1781
1782	hist_buf = kmem_alloc(size, KM_SLEEP);
1783	if ((error = spa_history_get(spa, &zc->zc_history_offset,
1784	    &zc->zc_history_len, hist_buf)) == 0) {
1785		error = ddi_copyout(hist_buf,
1786		    (void *)(uintptr_t)zc->zc_history,
1787		    zc->zc_history_len, zc->zc_iflags);
1788	}
1789
1790	spa_close(spa, FTAG);
1791	kmem_free(hist_buf, size);
1792	return (error);
1793}
1794
1795static int
1796zfs_ioc_pool_reguid(zfs_cmd_t *zc)
1797{
1798	spa_t *spa;
1799	int error;
1800
1801	error = spa_open(zc->zc_name, &spa, FTAG);
1802	if (error == 0) {
1803		error = spa_change_guid(spa);
1804		spa_close(spa, FTAG);
1805	}
1806	return (error);
1807}
1808
1809static int
1810zfs_ioc_dsobj_to_dsname(zfs_cmd_t *zc)
1811{
1812	return (dsl_dsobj_to_dsname(zc->zc_name, zc->zc_obj, zc->zc_value));
1813}
1814
1815/*
1816 * inputs:
1817 * zc_name		name of filesystem
1818 * zc_obj		object to find
1819 *
1820 * outputs:
1821 * zc_value		name of object
1822 */
1823static int
1824zfs_ioc_obj_to_path(zfs_cmd_t *zc)
1825{
1826	objset_t *os;
1827	int error;
1828
1829	/* XXX reading from objset not owned */
1830	if ((error = dmu_objset_hold(zc->zc_name, FTAG, &os)) != 0)
1831		return (error);
1832	if (dmu_objset_type(os) != DMU_OST_ZFS) {
1833		dmu_objset_rele(os, FTAG);
1834		return (SET_ERROR(EINVAL));
1835	}
1836	error = zfs_obj_to_path(os, zc->zc_obj, zc->zc_value,
1837	    sizeof (zc->zc_value));
1838	dmu_objset_rele(os, FTAG);
1839
1840	return (error);
1841}
1842
1843/*
1844 * inputs:
1845 * zc_name		name of filesystem
1846 * zc_obj		object to find
1847 *
1848 * outputs:
1849 * zc_stat		stats on object
1850 * zc_value		path to object
1851 */
1852static int
1853zfs_ioc_obj_to_stats(zfs_cmd_t *zc)
1854{
1855	objset_t *os;
1856	int error;
1857
1858	/* XXX reading from objset not owned */
1859	if ((error = dmu_objset_hold(zc->zc_name, FTAG, &os)) != 0)
1860		return (error);
1861	if (dmu_objset_type(os) != DMU_OST_ZFS) {
1862		dmu_objset_rele(os, FTAG);
1863		return (SET_ERROR(EINVAL));
1864	}
1865	error = zfs_obj_to_stats(os, zc->zc_obj, &zc->zc_stat, zc->zc_value,
1866	    sizeof (zc->zc_value));
1867	dmu_objset_rele(os, FTAG);
1868
1869	return (error);
1870}
1871
1872static int
1873zfs_ioc_vdev_add(zfs_cmd_t *zc)
1874{
1875	spa_t *spa;
1876	int error;
1877	nvlist_t *config, **l2cache, **spares;
1878	uint_t nl2cache = 0, nspares = 0;
1879
1880	error = spa_open(zc->zc_name, &spa, FTAG);
1881	if (error != 0)
1882		return (error);
1883
1884	error = get_nvlist(zc->zc_nvlist_conf, zc->zc_nvlist_conf_size,
1885	    zc->zc_iflags, &config);
1886	(void) nvlist_lookup_nvlist_array(config, ZPOOL_CONFIG_L2CACHE,
1887	    &l2cache, &nl2cache);
1888
1889	(void) nvlist_lookup_nvlist_array(config, ZPOOL_CONFIG_SPARES,
1890	    &spares, &nspares);
1891
1892#ifdef illumos
1893	/*
1894	 * A root pool with concatenated devices is not supported.
1895	 * Thus, can not add a device to a root pool.
1896	 *
1897	 * Intent log device can not be added to a rootpool because
1898	 * during mountroot, zil is replayed, a seperated log device
1899	 * can not be accessed during the mountroot time.
1900	 *
1901	 * l2cache and spare devices are ok to be added to a rootpool.
1902	 */
1903	if (spa_bootfs(spa) != 0 && nl2cache == 0 && nspares == 0) {
1904		nvlist_free(config);
1905		spa_close(spa, FTAG);
1906		return (SET_ERROR(EDOM));
1907	}
1908#endif /* illumos */
1909
1910	if (error == 0) {
1911		error = spa_vdev_add(spa, config);
1912		nvlist_free(config);
1913	}
1914	spa_close(spa, FTAG);
1915	return (error);
1916}
1917
1918/*
1919 * inputs:
1920 * zc_name		name of the pool
1921 * zc_nvlist_conf	nvlist of devices to remove
1922 * zc_cookie		to stop the remove?
1923 */
1924static int
1925zfs_ioc_vdev_remove(zfs_cmd_t *zc)
1926{
1927	spa_t *spa;
1928	int error;
1929
1930	error = spa_open(zc->zc_name, &spa, FTAG);
1931	if (error != 0)
1932		return (error);
1933	error = spa_vdev_remove(spa, zc->zc_guid, B_FALSE);
1934	spa_close(spa, FTAG);
1935	return (error);
1936}
1937
1938static int
1939zfs_ioc_vdev_set_state(zfs_cmd_t *zc)
1940{
1941	spa_t *spa;
1942	int error;
1943	vdev_state_t newstate = VDEV_STATE_UNKNOWN;
1944
1945	if ((error = spa_open(zc->zc_name, &spa, FTAG)) != 0)
1946		return (error);
1947	switch (zc->zc_cookie) {
1948	case VDEV_STATE_ONLINE:
1949		error = vdev_online(spa, zc->zc_guid, zc->zc_obj, &newstate);
1950		break;
1951
1952	case VDEV_STATE_OFFLINE:
1953		error = vdev_offline(spa, zc->zc_guid, zc->zc_obj);
1954		break;
1955
1956	case VDEV_STATE_FAULTED:
1957		if (zc->zc_obj != VDEV_AUX_ERR_EXCEEDED &&
1958		    zc->zc_obj != VDEV_AUX_EXTERNAL)
1959			zc->zc_obj = VDEV_AUX_ERR_EXCEEDED;
1960
1961		error = vdev_fault(spa, zc->zc_guid, zc->zc_obj);
1962		break;
1963
1964	case VDEV_STATE_DEGRADED:
1965		if (zc->zc_obj != VDEV_AUX_ERR_EXCEEDED &&
1966		    zc->zc_obj != VDEV_AUX_EXTERNAL)
1967			zc->zc_obj = VDEV_AUX_ERR_EXCEEDED;
1968
1969		error = vdev_degrade(spa, zc->zc_guid, zc->zc_obj);
1970		break;
1971
1972	default:
1973		error = SET_ERROR(EINVAL);
1974	}
1975	zc->zc_cookie = newstate;
1976	spa_close(spa, FTAG);
1977	return (error);
1978}
1979
1980static int
1981zfs_ioc_vdev_attach(zfs_cmd_t *zc)
1982{
1983	spa_t *spa;
1984	int replacing = zc->zc_cookie;
1985	nvlist_t *config;
1986	int error;
1987
1988	if ((error = spa_open(zc->zc_name, &spa, FTAG)) != 0)
1989		return (error);
1990
1991	if ((error = get_nvlist(zc->zc_nvlist_conf, zc->zc_nvlist_conf_size,
1992	    zc->zc_iflags, &config)) == 0) {
1993		error = spa_vdev_attach(spa, zc->zc_guid, config, replacing);
1994		nvlist_free(config);
1995	}
1996
1997	spa_close(spa, FTAG);
1998	return (error);
1999}
2000
2001static int
2002zfs_ioc_vdev_detach(zfs_cmd_t *zc)
2003{
2004	spa_t *spa;
2005	int error;
2006
2007	if ((error = spa_open(zc->zc_name, &spa, FTAG)) != 0)
2008		return (error);
2009
2010	error = spa_vdev_detach(spa, zc->zc_guid, 0, B_FALSE);
2011
2012	spa_close(spa, FTAG);
2013	return (error);
2014}
2015
2016static int
2017zfs_ioc_vdev_split(zfs_cmd_t *zc)
2018{
2019	spa_t *spa;
2020	nvlist_t *config, *props = NULL;
2021	int error;
2022	boolean_t exp = !!(zc->zc_cookie & ZPOOL_EXPORT_AFTER_SPLIT);
2023
2024	if ((error = spa_open(zc->zc_name, &spa, FTAG)) != 0)
2025		return (error);
2026
2027	if (error = get_nvlist(zc->zc_nvlist_conf, zc->zc_nvlist_conf_size,
2028	    zc->zc_iflags, &config)) {
2029		spa_close(spa, FTAG);
2030		return (error);
2031	}
2032
2033	if (zc->zc_nvlist_src_size != 0 && (error =
2034	    get_nvlist(zc->zc_nvlist_src, zc->zc_nvlist_src_size,
2035	    zc->zc_iflags, &props))) {
2036		spa_close(spa, FTAG);
2037		nvlist_free(config);
2038		return (error);
2039	}
2040
2041	error = spa_vdev_split_mirror(spa, zc->zc_string, config, props, exp);
2042
2043	spa_close(spa, FTAG);
2044
2045	nvlist_free(config);
2046	nvlist_free(props);
2047
2048	return (error);
2049}
2050
2051static int
2052zfs_ioc_vdev_setpath(zfs_cmd_t *zc)
2053{
2054	spa_t *spa;
2055	char *path = zc->zc_value;
2056	uint64_t guid = zc->zc_guid;
2057	int error;
2058
2059	error = spa_open(zc->zc_name, &spa, FTAG);
2060	if (error != 0)
2061		return (error);
2062
2063	error = spa_vdev_setpath(spa, guid, path);
2064	spa_close(spa, FTAG);
2065	return (error);
2066}
2067
2068static int
2069zfs_ioc_vdev_setfru(zfs_cmd_t *zc)
2070{
2071	spa_t *spa;
2072	char *fru = zc->zc_value;
2073	uint64_t guid = zc->zc_guid;
2074	int error;
2075
2076	error = spa_open(zc->zc_name, &spa, FTAG);
2077	if (error != 0)
2078		return (error);
2079
2080	error = spa_vdev_setfru(spa, guid, fru);
2081	spa_close(spa, FTAG);
2082	return (error);
2083}
2084
2085static int
2086zfs_ioc_objset_stats_impl(zfs_cmd_t *zc, objset_t *os)
2087{
2088	int error = 0;
2089	nvlist_t *nv;
2090
2091	dmu_objset_fast_stat(os, &zc->zc_objset_stats);
2092
2093	if (zc->zc_nvlist_dst != 0 &&
2094	    (error = dsl_prop_get_all(os, &nv)) == 0) {
2095		dmu_objset_stats(os, nv);
2096		/*
2097		 * NB: zvol_get_stats() will read the objset contents,
2098		 * which we aren't supposed to do with a
2099		 * DS_MODE_USER hold, because it could be
2100		 * inconsistent.  So this is a bit of a workaround...
2101		 * XXX reading with out owning
2102		 */
2103		if (!zc->zc_objset_stats.dds_inconsistent &&
2104		    dmu_objset_type(os) == DMU_OST_ZVOL) {
2105			error = zvol_get_stats(os, nv);
2106			if (error == EIO)
2107				return (error);
2108			VERIFY0(error);
2109		}
2110		error = put_nvlist(zc, nv);
2111		nvlist_free(nv);
2112	}
2113
2114	return (error);
2115}
2116
2117/*
2118 * inputs:
2119 * zc_name		name of filesystem
2120 * zc_nvlist_dst_size	size of buffer for property nvlist
2121 *
2122 * outputs:
2123 * zc_objset_stats	stats
2124 * zc_nvlist_dst	property nvlist
2125 * zc_nvlist_dst_size	size of property nvlist
2126 */
2127static int
2128zfs_ioc_objset_stats(zfs_cmd_t *zc)
2129{
2130	objset_t *os;
2131	int error;
2132
2133	error = dmu_objset_hold(zc->zc_name, FTAG, &os);
2134	if (error == 0) {
2135		error = zfs_ioc_objset_stats_impl(zc, os);
2136		dmu_objset_rele(os, FTAG);
2137	}
2138
2139	if (error == ENOMEM)
2140		error = 0;
2141	return (error);
2142}
2143
2144/*
2145 * inputs:
2146 * zc_name		name of filesystem
2147 * zc_nvlist_dst_size	size of buffer for property nvlist
2148 *
2149 * outputs:
2150 * zc_nvlist_dst	received property nvlist
2151 * zc_nvlist_dst_size	size of received property nvlist
2152 *
2153 * Gets received properties (distinct from local properties on or after
2154 * SPA_VERSION_RECVD_PROPS) for callers who want to differentiate received from
2155 * local property values.
2156 */
2157static int
2158zfs_ioc_objset_recvd_props(zfs_cmd_t *zc)
2159{
2160	int error = 0;
2161	nvlist_t *nv;
2162
2163	/*
2164	 * Without this check, we would return local property values if the
2165	 * caller has not already received properties on or after
2166	 * SPA_VERSION_RECVD_PROPS.
2167	 */
2168	if (!dsl_prop_get_hasrecvd(zc->zc_name))
2169		return (SET_ERROR(ENOTSUP));
2170
2171	if (zc->zc_nvlist_dst != 0 &&
2172	    (error = dsl_prop_get_received(zc->zc_name, &nv)) == 0) {
2173		error = put_nvlist(zc, nv);
2174		nvlist_free(nv);
2175	}
2176
2177	return (error);
2178}
2179
2180static int
2181nvl_add_zplprop(objset_t *os, nvlist_t *props, zfs_prop_t prop)
2182{
2183	uint64_t value;
2184	int error;
2185
2186	/*
2187	 * zfs_get_zplprop() will either find a value or give us
2188	 * the default value (if there is one).
2189	 */
2190	if ((error = zfs_get_zplprop(os, prop, &value)) != 0)
2191		return (error);
2192	VERIFY(nvlist_add_uint64(props, zfs_prop_to_name(prop), value) == 0);
2193	return (0);
2194}
2195
2196/*
2197 * inputs:
2198 * zc_name		name of filesystem
2199 * zc_nvlist_dst_size	size of buffer for zpl property nvlist
2200 *
2201 * outputs:
2202 * zc_nvlist_dst	zpl property nvlist
2203 * zc_nvlist_dst_size	size of zpl property nvlist
2204 */
2205static int
2206zfs_ioc_objset_zplprops(zfs_cmd_t *zc)
2207{
2208	objset_t *os;
2209	int err;
2210
2211	/* XXX reading without owning */
2212	if (err = dmu_objset_hold(zc->zc_name, FTAG, &os))
2213		return (err);
2214
2215	dmu_objset_fast_stat(os, &zc->zc_objset_stats);
2216
2217	/*
2218	 * NB: nvl_add_zplprop() will read the objset contents,
2219	 * which we aren't supposed to do with a DS_MODE_USER
2220	 * hold, because it could be inconsistent.
2221	 */
2222	if (zc->zc_nvlist_dst != 0 &&
2223	    !zc->zc_objset_stats.dds_inconsistent &&
2224	    dmu_objset_type(os) == DMU_OST_ZFS) {
2225		nvlist_t *nv;
2226
2227		VERIFY(nvlist_alloc(&nv, NV_UNIQUE_NAME, KM_SLEEP) == 0);
2228		if ((err = nvl_add_zplprop(os, nv, ZFS_PROP_VERSION)) == 0 &&
2229		    (err = nvl_add_zplprop(os, nv, ZFS_PROP_NORMALIZE)) == 0 &&
2230		    (err = nvl_add_zplprop(os, nv, ZFS_PROP_UTF8ONLY)) == 0 &&
2231		    (err = nvl_add_zplprop(os, nv, ZFS_PROP_CASE)) == 0)
2232			err = put_nvlist(zc, nv);
2233		nvlist_free(nv);
2234	} else {
2235		err = SET_ERROR(ENOENT);
2236	}
2237	dmu_objset_rele(os, FTAG);
2238	return (err);
2239}
2240
2241boolean_t
2242dataset_name_hidden(const char *name)
2243{
2244	/*
2245	 * Skip over datasets that are not visible in this zone,
2246	 * internal datasets (which have a $ in their name), and
2247	 * temporary datasets (which have a % in their name).
2248	 */
2249	if (strchr(name, '$') != NULL)
2250		return (B_TRUE);
2251	if (strchr(name, '%') != NULL)
2252		return (B_TRUE);
2253	if (!INGLOBALZONE(curthread) && !zone_dataset_visible(name, NULL))
2254		return (B_TRUE);
2255	return (B_FALSE);
2256}
2257
2258/*
2259 * inputs:
2260 * zc_name		name of filesystem
2261 * zc_cookie		zap cursor
2262 * zc_nvlist_dst_size	size of buffer for property nvlist
2263 *
2264 * outputs:
2265 * zc_name		name of next filesystem
2266 * zc_cookie		zap cursor
2267 * zc_objset_stats	stats
2268 * zc_nvlist_dst	property nvlist
2269 * zc_nvlist_dst_size	size of property nvlist
2270 */
2271static int
2272zfs_ioc_dataset_list_next(zfs_cmd_t *zc)
2273{
2274	objset_t *os;
2275	int error;
2276	char *p;
2277	size_t orig_len = strlen(zc->zc_name);
2278
2279top:
2280	if (error = dmu_objset_hold(zc->zc_name, FTAG, &os)) {
2281		if (error == ENOENT)
2282			error = SET_ERROR(ESRCH);
2283		return (error);
2284	}
2285
2286	p = strrchr(zc->zc_name, '/');
2287	if (p == NULL || p[1] != '\0')
2288		(void) strlcat(zc->zc_name, "/", sizeof (zc->zc_name));
2289	p = zc->zc_name + strlen(zc->zc_name);
2290
2291	do {
2292		error = dmu_dir_list_next(os,
2293		    sizeof (zc->zc_name) - (p - zc->zc_name), p,
2294		    NULL, &zc->zc_cookie);
2295		if (error == ENOENT)
2296			error = SET_ERROR(ESRCH);
2297	} while (error == 0 && dataset_name_hidden(zc->zc_name));
2298	dmu_objset_rele(os, FTAG);
2299
2300	/*
2301	 * If it's an internal dataset (ie. with a '$' in its name),
2302	 * don't try to get stats for it, otherwise we'll return ENOENT.
2303	 */
2304	if (error == 0 && strchr(zc->zc_name, '$') == NULL) {
2305		error = zfs_ioc_objset_stats(zc); /* fill in the stats */
2306		if (error == ENOENT) {
2307			/* We lost a race with destroy, get the next one. */
2308			zc->zc_name[orig_len] = '\0';
2309			goto top;
2310		}
2311	}
2312	return (error);
2313}
2314
2315/*
2316 * inputs:
2317 * zc_name		name of filesystem
2318 * zc_cookie		zap cursor
2319 * zc_nvlist_dst_size	size of buffer for property nvlist
2320 * zc_simple		when set, only name is requested
2321 *
2322 * outputs:
2323 * zc_name		name of next snapshot
2324 * zc_objset_stats	stats
2325 * zc_nvlist_dst	property nvlist
2326 * zc_nvlist_dst_size	size of property nvlist
2327 */
2328static int
2329zfs_ioc_snapshot_list_next(zfs_cmd_t *zc)
2330{
2331	objset_t *os;
2332	int error;
2333
2334	error = dmu_objset_hold(zc->zc_name, FTAG, &os);
2335	if (error != 0) {
2336		return (error == ENOENT ? ESRCH : error);
2337	}
2338
2339	/*
2340	 * A dataset name of maximum length cannot have any snapshots,
2341	 * so exit immediately.
2342	 */
2343	if (strlcat(zc->zc_name, "@", sizeof (zc->zc_name)) >= MAXNAMELEN) {
2344		dmu_objset_rele(os, FTAG);
2345		return (SET_ERROR(ESRCH));
2346	}
2347
2348	error = dmu_snapshot_list_next(os,
2349	    sizeof (zc->zc_name) - strlen(zc->zc_name),
2350	    zc->zc_name + strlen(zc->zc_name), &zc->zc_obj, &zc->zc_cookie,
2351	    NULL);
2352
2353	if (error == 0 && !zc->zc_simple) {
2354		dsl_dataset_t *ds;
2355		dsl_pool_t *dp = os->os_dsl_dataset->ds_dir->dd_pool;
2356
2357		error = dsl_dataset_hold_obj(dp, zc->zc_obj, FTAG, &ds);
2358		if (error == 0) {
2359			objset_t *ossnap;
2360
2361			error = dmu_objset_from_ds(ds, &ossnap);
2362			if (error == 0)
2363				error = zfs_ioc_objset_stats_impl(zc, ossnap);
2364			dsl_dataset_rele(ds, FTAG);
2365		}
2366	} else if (error == ENOENT) {
2367		error = SET_ERROR(ESRCH);
2368	}
2369
2370	dmu_objset_rele(os, FTAG);
2371	/* if we failed, undo the @ that we tacked on to zc_name */
2372	if (error != 0)
2373		*strchr(zc->zc_name, '@') = '\0';
2374	return (error);
2375}
2376
2377static int
2378zfs_prop_set_userquota(const char *dsname, nvpair_t *pair)
2379{
2380	const char *propname = nvpair_name(pair);
2381	uint64_t *valary;
2382	unsigned int vallen;
2383	const char *domain;
2384	char *dash;
2385	zfs_userquota_prop_t type;
2386	uint64_t rid;
2387	uint64_t quota;
2388	zfsvfs_t *zfsvfs;
2389	int err;
2390
2391	if (nvpair_type(pair) == DATA_TYPE_NVLIST) {
2392		nvlist_t *attrs;
2393		VERIFY(nvpair_value_nvlist(pair, &attrs) == 0);
2394		if (nvlist_lookup_nvpair(attrs, ZPROP_VALUE,
2395		    &pair) != 0)
2396			return (SET_ERROR(EINVAL));
2397	}
2398
2399	/*
2400	 * A correctly constructed propname is encoded as
2401	 * userquota@<rid>-<domain>.
2402	 */
2403	if ((dash = strchr(propname, '-')) == NULL ||
2404	    nvpair_value_uint64_array(pair, &valary, &vallen) != 0 ||
2405	    vallen != 3)
2406		return (SET_ERROR(EINVAL));
2407
2408	domain = dash + 1;
2409	type = valary[0];
2410	rid = valary[1];
2411	quota = valary[2];
2412
2413	err = zfsvfs_hold(dsname, FTAG, &zfsvfs, B_FALSE);
2414	if (err == 0) {
2415		err = zfs_set_userquota(zfsvfs, type, domain, rid, quota);
2416		zfsvfs_rele(zfsvfs, FTAG);
2417	}
2418
2419	return (err);
2420}
2421
2422/*
2423 * If the named property is one that has a special function to set its value,
2424 * return 0 on success and a positive error code on failure; otherwise if it is
2425 * not one of the special properties handled by this function, return -1.
2426 *
2427 * XXX: It would be better for callers of the property interface if we handled
2428 * these special cases in dsl_prop.c (in the dsl layer).
2429 */
2430static int
2431zfs_prop_set_special(const char *dsname, zprop_source_t source,
2432    nvpair_t *pair)
2433{
2434	const char *propname = nvpair_name(pair);
2435	zfs_prop_t prop = zfs_name_to_prop(propname);
2436	uint64_t intval;
2437	int err = -1;
2438
2439	if (prop == ZPROP_INVAL) {
2440		if (zfs_prop_userquota(propname))
2441			return (zfs_prop_set_userquota(dsname, pair));
2442		return (-1);
2443	}
2444
2445	if (nvpair_type(pair) == DATA_TYPE_NVLIST) {
2446		nvlist_t *attrs;
2447		VERIFY(nvpair_value_nvlist(pair, &attrs) == 0);
2448		VERIFY(nvlist_lookup_nvpair(attrs, ZPROP_VALUE,
2449		    &pair) == 0);
2450	}
2451
2452	if (zfs_prop_get_type(prop) == PROP_TYPE_STRING)
2453		return (-1);
2454
2455	VERIFY(0 == nvpair_value_uint64(pair, &intval));
2456
2457	switch (prop) {
2458	case ZFS_PROP_QUOTA:
2459		err = dsl_dir_set_quota(dsname, source, intval);
2460		break;
2461	case ZFS_PROP_REFQUOTA:
2462		err = dsl_dataset_set_refquota(dsname, source, intval);
2463		break;
2464	case ZFS_PROP_FILESYSTEM_LIMIT:
2465	case ZFS_PROP_SNAPSHOT_LIMIT:
2466		if (intval == UINT64_MAX) {
2467			/* clearing the limit, just do it */
2468			err = 0;
2469		} else {
2470			err = dsl_dir_activate_fs_ss_limit(dsname);
2471		}
2472		/*
2473		 * Set err to -1 to force the zfs_set_prop_nvlist code down the
2474		 * default path to set the value in the nvlist.
2475		 */
2476		if (err == 0)
2477			err = -1;
2478		break;
2479	case ZFS_PROP_RESERVATION:
2480		err = dsl_dir_set_reservation(dsname, source, intval);
2481		break;
2482	case ZFS_PROP_REFRESERVATION:
2483		err = dsl_dataset_set_refreservation(dsname, source, intval);
2484		break;
2485	case ZFS_PROP_VOLSIZE:
2486		err = zvol_set_volsize(dsname, intval);
2487		break;
2488	case ZFS_PROP_VERSION:
2489	{
2490		zfsvfs_t *zfsvfs;
2491
2492		if ((err = zfsvfs_hold(dsname, FTAG, &zfsvfs, B_TRUE)) != 0)
2493			break;
2494
2495		err = zfs_set_version(zfsvfs, intval);
2496		zfsvfs_rele(zfsvfs, FTAG);
2497
2498		if (err == 0 && intval >= ZPL_VERSION_USERSPACE) {
2499			zfs_cmd_t *zc;
2500
2501			zc = kmem_zalloc(sizeof (zfs_cmd_t), KM_SLEEP);
2502			(void) strcpy(zc->zc_name, dsname);
2503			(void) zfs_ioc_userspace_upgrade(zc);
2504			kmem_free(zc, sizeof (zfs_cmd_t));
2505		}
2506		break;
2507	}
2508	default:
2509		err = -1;
2510	}
2511
2512	return (err);
2513}
2514
2515/*
2516 * This function is best effort. If it fails to set any of the given properties,
2517 * it continues to set as many as it can and returns the last error
2518 * encountered. If the caller provides a non-NULL errlist, it will be filled in
2519 * with the list of names of all the properties that failed along with the
2520 * corresponding error numbers.
2521 *
2522 * If every property is set successfully, zero is returned and errlist is not
2523 * modified.
2524 */
2525int
2526zfs_set_prop_nvlist(const char *dsname, zprop_source_t source, nvlist_t *nvl,
2527    nvlist_t *errlist)
2528{
2529	nvpair_t *pair;
2530	nvpair_t *propval;
2531	int rv = 0;
2532	uint64_t intval;
2533	char *strval;
2534	nvlist_t *genericnvl = fnvlist_alloc();
2535	nvlist_t *retrynvl = fnvlist_alloc();
2536
2537retry:
2538	pair = NULL;
2539	while ((pair = nvlist_next_nvpair(nvl, pair)) != NULL) {
2540		const char *propname = nvpair_name(pair);
2541		zfs_prop_t prop = zfs_name_to_prop(propname);
2542		int err = 0;
2543
2544		/* decode the property value */
2545		propval = pair;
2546		if (nvpair_type(pair) == DATA_TYPE_NVLIST) {
2547			nvlist_t *attrs;
2548			attrs = fnvpair_value_nvlist(pair);
2549			if (nvlist_lookup_nvpair(attrs, ZPROP_VALUE,
2550			    &propval) != 0)
2551				err = SET_ERROR(EINVAL);
2552		}
2553
2554		/* Validate value type */
2555		if (err == 0 && prop == ZPROP_INVAL) {
2556			if (zfs_prop_user(propname)) {
2557				if (nvpair_type(propval) != DATA_TYPE_STRING)
2558					err = SET_ERROR(EINVAL);
2559			} else if (zfs_prop_userquota(propname)) {
2560				if (nvpair_type(propval) !=
2561				    DATA_TYPE_UINT64_ARRAY)
2562					err = SET_ERROR(EINVAL);
2563			} else {
2564				err = SET_ERROR(EINVAL);
2565			}
2566		} else if (err == 0) {
2567			if (nvpair_type(propval) == DATA_TYPE_STRING) {
2568				if (zfs_prop_get_type(prop) != PROP_TYPE_STRING)
2569					err = SET_ERROR(EINVAL);
2570			} else if (nvpair_type(propval) == DATA_TYPE_UINT64) {
2571				const char *unused;
2572
2573				intval = fnvpair_value_uint64(propval);
2574
2575				switch (zfs_prop_get_type(prop)) {
2576				case PROP_TYPE_NUMBER:
2577					break;
2578				case PROP_TYPE_STRING:
2579					err = SET_ERROR(EINVAL);
2580					break;
2581				case PROP_TYPE_INDEX:
2582					if (zfs_prop_index_to_string(prop,
2583					    intval, &unused) != 0)
2584						err = SET_ERROR(EINVAL);
2585					break;
2586				default:
2587					cmn_err(CE_PANIC,
2588					    "unknown property type");
2589				}
2590			} else {
2591				err = SET_ERROR(EINVAL);
2592			}
2593		}
2594
2595		/* Validate permissions */
2596		if (err == 0)
2597			err = zfs_check_settable(dsname, pair, CRED());
2598
2599		if (err == 0) {
2600			err = zfs_prop_set_special(dsname, source, pair);
2601			if (err == -1) {
2602				/*
2603				 * For better performance we build up a list of
2604				 * properties to set in a single transaction.
2605				 */
2606				err = nvlist_add_nvpair(genericnvl, pair);
2607			} else if (err != 0 && nvl != retrynvl) {
2608				/*
2609				 * This may be a spurious error caused by
2610				 * receiving quota and reservation out of order.
2611				 * Try again in a second pass.
2612				 */
2613				err = nvlist_add_nvpair(retrynvl, pair);
2614			}
2615		}
2616
2617		if (err != 0) {
2618			if (errlist != NULL)
2619				fnvlist_add_int32(errlist, propname, err);
2620			rv = err;
2621		}
2622	}
2623
2624	if (nvl != retrynvl && !nvlist_empty(retrynvl)) {
2625		nvl = retrynvl;
2626		goto retry;
2627	}
2628
2629	if (!nvlist_empty(genericnvl) &&
2630	    dsl_props_set(dsname, source, genericnvl) != 0) {
2631		/*
2632		 * If this fails, we still want to set as many properties as we
2633		 * can, so try setting them individually.
2634		 */
2635		pair = NULL;
2636		while ((pair = nvlist_next_nvpair(genericnvl, pair)) != NULL) {
2637			const char *propname = nvpair_name(pair);
2638			int err = 0;
2639
2640			propval = pair;
2641			if (nvpair_type(pair) == DATA_TYPE_NVLIST) {
2642				nvlist_t *attrs;
2643				attrs = fnvpair_value_nvlist(pair);
2644				propval = fnvlist_lookup_nvpair(attrs,
2645				    ZPROP_VALUE);
2646			}
2647
2648			if (nvpair_type(propval) == DATA_TYPE_STRING) {
2649				strval = fnvpair_value_string(propval);
2650				err = dsl_prop_set_string(dsname, propname,
2651				    source, strval);
2652			} else {
2653				intval = fnvpair_value_uint64(propval);
2654				err = dsl_prop_set_int(dsname, propname, source,
2655				    intval);
2656			}
2657
2658			if (err != 0) {
2659				if (errlist != NULL) {
2660					fnvlist_add_int32(errlist, propname,
2661					    err);
2662				}
2663				rv = err;
2664			}
2665		}
2666	}
2667	nvlist_free(genericnvl);
2668	nvlist_free(retrynvl);
2669
2670	return (rv);
2671}
2672
2673/*
2674 * Check that all the properties are valid user properties.
2675 */
2676static int
2677zfs_check_userprops(const char *fsname, nvlist_t *nvl)
2678{
2679	nvpair_t *pair = NULL;
2680	int error = 0;
2681
2682	while ((pair = nvlist_next_nvpair(nvl, pair)) != NULL) {
2683		const char *propname = nvpair_name(pair);
2684
2685		if (!zfs_prop_user(propname) ||
2686		    nvpair_type(pair) != DATA_TYPE_STRING)
2687			return (SET_ERROR(EINVAL));
2688
2689		if (error = zfs_secpolicy_write_perms(fsname,
2690		    ZFS_DELEG_PERM_USERPROP, CRED()))
2691			return (error);
2692
2693		if (strlen(propname) >= ZAP_MAXNAMELEN)
2694			return (SET_ERROR(ENAMETOOLONG));
2695
2696		if (strlen(fnvpair_value_string(pair)) >= ZAP_MAXVALUELEN)
2697			return (E2BIG);
2698	}
2699	return (0);
2700}
2701
2702static void
2703props_skip(nvlist_t *props, nvlist_t *skipped, nvlist_t **newprops)
2704{
2705	nvpair_t *pair;
2706
2707	VERIFY(nvlist_alloc(newprops, NV_UNIQUE_NAME, KM_SLEEP) == 0);
2708
2709	pair = NULL;
2710	while ((pair = nvlist_next_nvpair(props, pair)) != NULL) {
2711		if (nvlist_exists(skipped, nvpair_name(pair)))
2712			continue;
2713
2714		VERIFY(nvlist_add_nvpair(*newprops, pair) == 0);
2715	}
2716}
2717
2718static int
2719clear_received_props(const char *dsname, nvlist_t *props,
2720    nvlist_t *skipped)
2721{
2722	int err = 0;
2723	nvlist_t *cleared_props = NULL;
2724	props_skip(props, skipped, &cleared_props);
2725	if (!nvlist_empty(cleared_props)) {
2726		/*
2727		 * Acts on local properties until the dataset has received
2728		 * properties at least once on or after SPA_VERSION_RECVD_PROPS.
2729		 */
2730		zprop_source_t flags = (ZPROP_SRC_NONE |
2731		    (dsl_prop_get_hasrecvd(dsname) ? ZPROP_SRC_RECEIVED : 0));
2732		err = zfs_set_prop_nvlist(dsname, flags, cleared_props, NULL);
2733	}
2734	nvlist_free(cleared_props);
2735	return (err);
2736}
2737
2738/*
2739 * inputs:
2740 * zc_name		name of filesystem
2741 * zc_value		name of property to set
2742 * zc_nvlist_src{_size}	nvlist of properties to apply
2743 * zc_cookie		received properties flag
2744 *
2745 * outputs:
2746 * zc_nvlist_dst{_size} error for each unapplied received property
2747 */
2748static int
2749zfs_ioc_set_prop(zfs_cmd_t *zc)
2750{
2751	nvlist_t *nvl;
2752	boolean_t received = zc->zc_cookie;
2753	zprop_source_t source = (received ? ZPROP_SRC_RECEIVED :
2754	    ZPROP_SRC_LOCAL);
2755	nvlist_t *errors;
2756	int error;
2757
2758	if ((error = get_nvlist(zc->zc_nvlist_src, zc->zc_nvlist_src_size,
2759	    zc->zc_iflags, &nvl)) != 0)
2760		return (error);
2761
2762	if (received) {
2763		nvlist_t *origprops;
2764
2765		if (dsl_prop_get_received(zc->zc_name, &origprops) == 0) {
2766			(void) clear_received_props(zc->zc_name,
2767			    origprops, nvl);
2768			nvlist_free(origprops);
2769		}
2770
2771		error = dsl_prop_set_hasrecvd(zc->zc_name);
2772	}
2773
2774	errors = fnvlist_alloc();
2775	if (error == 0)
2776		error = zfs_set_prop_nvlist(zc->zc_name, source, nvl, errors);
2777
2778	if (zc->zc_nvlist_dst != 0 && errors != NULL) {
2779		(void) put_nvlist(zc, errors);
2780	}
2781
2782	nvlist_free(errors);
2783	nvlist_free(nvl);
2784	return (error);
2785}
2786
2787/*
2788 * inputs:
2789 * zc_name		name of filesystem
2790 * zc_value		name of property to inherit
2791 * zc_cookie		revert to received value if TRUE
2792 *
2793 * outputs:		none
2794 */
2795static int
2796zfs_ioc_inherit_prop(zfs_cmd_t *zc)
2797{
2798	const char *propname = zc->zc_value;
2799	zfs_prop_t prop = zfs_name_to_prop(propname);
2800	boolean_t received = zc->zc_cookie;
2801	zprop_source_t source = (received
2802	    ? ZPROP_SRC_NONE		/* revert to received value, if any */
2803	    : ZPROP_SRC_INHERITED);	/* explicitly inherit */
2804
2805	if (received) {
2806		nvlist_t *dummy;
2807		nvpair_t *pair;
2808		zprop_type_t type;
2809		int err;
2810
2811		/*
2812		 * zfs_prop_set_special() expects properties in the form of an
2813		 * nvpair with type info.
2814		 */
2815		if (prop == ZPROP_INVAL) {
2816			if (!zfs_prop_user(propname))
2817				return (SET_ERROR(EINVAL));
2818
2819			type = PROP_TYPE_STRING;
2820		} else if (prop == ZFS_PROP_VOLSIZE ||
2821		    prop == ZFS_PROP_VERSION) {
2822			return (SET_ERROR(EINVAL));
2823		} else {
2824			type = zfs_prop_get_type(prop);
2825		}
2826
2827		VERIFY(nvlist_alloc(&dummy, NV_UNIQUE_NAME, KM_SLEEP) == 0);
2828
2829		switch (type) {
2830		case PROP_TYPE_STRING:
2831			VERIFY(0 == nvlist_add_string(dummy, propname, ""));
2832			break;
2833		case PROP_TYPE_NUMBER:
2834		case PROP_TYPE_INDEX:
2835			VERIFY(0 == nvlist_add_uint64(dummy, propname, 0));
2836			break;
2837		default:
2838			nvlist_free(dummy);
2839			return (SET_ERROR(EINVAL));
2840		}
2841
2842		pair = nvlist_next_nvpair(dummy, NULL);
2843		err = zfs_prop_set_special(zc->zc_name, source, pair);
2844		nvlist_free(dummy);
2845		if (err != -1)
2846			return (err); /* special property already handled */
2847	} else {
2848		/*
2849		 * Only check this in the non-received case. We want to allow
2850		 * 'inherit -S' to revert non-inheritable properties like quota
2851		 * and reservation to the received or default values even though
2852		 * they are not considered inheritable.
2853		 */
2854		if (prop != ZPROP_INVAL && !zfs_prop_inheritable(prop))
2855			return (SET_ERROR(EINVAL));
2856	}
2857
2858	/* property name has been validated by zfs_secpolicy_inherit_prop() */
2859	return (dsl_prop_inherit(zc->zc_name, zc->zc_value, source));
2860}
2861
2862static int
2863zfs_ioc_pool_set_props(zfs_cmd_t *zc)
2864{
2865	nvlist_t *props;
2866	spa_t *spa;
2867	int error;
2868	nvpair_t *pair;
2869
2870	if (error = get_nvlist(zc->zc_nvlist_src, zc->zc_nvlist_src_size,
2871	    zc->zc_iflags, &props))
2872		return (error);
2873
2874	/*
2875	 * If the only property is the configfile, then just do a spa_lookup()
2876	 * to handle the faulted case.
2877	 */
2878	pair = nvlist_next_nvpair(props, NULL);
2879	if (pair != NULL && strcmp(nvpair_name(pair),
2880	    zpool_prop_to_name(ZPOOL_PROP_CACHEFILE)) == 0 &&
2881	    nvlist_next_nvpair(props, pair) == NULL) {
2882		mutex_enter(&spa_namespace_lock);
2883		if ((spa = spa_lookup(zc->zc_name)) != NULL) {
2884			spa_configfile_set(spa, props, B_FALSE);
2885			spa_config_sync(spa, B_FALSE, B_TRUE);
2886		}
2887		mutex_exit(&spa_namespace_lock);
2888		if (spa != NULL) {
2889			nvlist_free(props);
2890			return (0);
2891		}
2892	}
2893
2894	if ((error = spa_open(zc->zc_name, &spa, FTAG)) != 0) {
2895		nvlist_free(props);
2896		return (error);
2897	}
2898
2899	error = spa_prop_set(spa, props);
2900
2901	nvlist_free(props);
2902	spa_close(spa, FTAG);
2903
2904	return (error);
2905}
2906
2907static int
2908zfs_ioc_pool_get_props(zfs_cmd_t *zc)
2909{
2910	spa_t *spa;
2911	int error;
2912	nvlist_t *nvp = NULL;
2913
2914	if ((error = spa_open(zc->zc_name, &spa, FTAG)) != 0) {
2915		/*
2916		 * If the pool is faulted, there may be properties we can still
2917		 * get (such as altroot and cachefile), so attempt to get them
2918		 * anyway.
2919		 */
2920		mutex_enter(&spa_namespace_lock);
2921		if ((spa = spa_lookup(zc->zc_name)) != NULL)
2922			error = spa_prop_get(spa, &nvp);
2923		mutex_exit(&spa_namespace_lock);
2924	} else {
2925		error = spa_prop_get(spa, &nvp);
2926		spa_close(spa, FTAG);
2927	}
2928
2929	if (error == 0 && zc->zc_nvlist_dst != 0)
2930		error = put_nvlist(zc, nvp);
2931	else
2932		error = SET_ERROR(EFAULT);
2933
2934	nvlist_free(nvp);
2935	return (error);
2936}
2937
2938/*
2939 * inputs:
2940 * zc_name		name of filesystem
2941 * zc_nvlist_src{_size}	nvlist of delegated permissions
2942 * zc_perm_action	allow/unallow flag
2943 *
2944 * outputs:		none
2945 */
2946static int
2947zfs_ioc_set_fsacl(zfs_cmd_t *zc)
2948{
2949	int error;
2950	nvlist_t *fsaclnv = NULL;
2951
2952	if ((error = get_nvlist(zc->zc_nvlist_src, zc->zc_nvlist_src_size,
2953	    zc->zc_iflags, &fsaclnv)) != 0)
2954		return (error);
2955
2956	/*
2957	 * Verify nvlist is constructed correctly
2958	 */
2959	if ((error = zfs_deleg_verify_nvlist(fsaclnv)) != 0) {
2960		nvlist_free(fsaclnv);
2961		return (SET_ERROR(EINVAL));
2962	}
2963
2964	/*
2965	 * If we don't have PRIV_SYS_MOUNT, then validate
2966	 * that user is allowed to hand out each permission in
2967	 * the nvlist(s)
2968	 */
2969
2970	error = secpolicy_zfs(CRED());
2971	if (error != 0) {
2972		if (zc->zc_perm_action == B_FALSE) {
2973			error = dsl_deleg_can_allow(zc->zc_name,
2974			    fsaclnv, CRED());
2975		} else {
2976			error = dsl_deleg_can_unallow(zc->zc_name,
2977			    fsaclnv, CRED());
2978		}
2979	}
2980
2981	if (error == 0)
2982		error = dsl_deleg_set(zc->zc_name, fsaclnv, zc->zc_perm_action);
2983
2984	nvlist_free(fsaclnv);
2985	return (error);
2986}
2987
2988/*
2989 * inputs:
2990 * zc_name		name of filesystem
2991 *
2992 * outputs:
2993 * zc_nvlist_src{_size}	nvlist of delegated permissions
2994 */
2995static int
2996zfs_ioc_get_fsacl(zfs_cmd_t *zc)
2997{
2998	nvlist_t *nvp;
2999	int error;
3000
3001	if ((error = dsl_deleg_get(zc->zc_name, &nvp)) == 0) {
3002		error = put_nvlist(zc, nvp);
3003		nvlist_free(nvp);
3004	}
3005
3006	return (error);
3007}
3008
3009/*
3010 * Search the vfs list for a specified resource.  Returns a pointer to it
3011 * or NULL if no suitable entry is found. The caller of this routine
3012 * is responsible for releasing the returned vfs pointer.
3013 */
3014static vfs_t *
3015zfs_get_vfs(const char *resource)
3016{
3017	vfs_t *vfsp;
3018
3019	mtx_lock(&mountlist_mtx);
3020	TAILQ_FOREACH(vfsp, &mountlist, mnt_list) {
3021		if (strcmp(refstr_value(vfsp->vfs_resource), resource) == 0) {
3022			VFS_HOLD(vfsp);
3023			break;
3024		}
3025	}
3026	mtx_unlock(&mountlist_mtx);
3027	return (vfsp);
3028}
3029
3030/* ARGSUSED */
3031static void
3032zfs_create_cb(objset_t *os, void *arg, cred_t *cr, dmu_tx_t *tx)
3033{
3034	zfs_creat_t *zct = arg;
3035
3036	zfs_create_fs(os, cr, zct->zct_zplprops, tx);
3037}
3038
3039#define	ZFS_PROP_UNDEFINED	((uint64_t)-1)
3040
3041/*
3042 * inputs:
3043 * os			parent objset pointer (NULL if root fs)
3044 * fuids_ok		fuids allowed in this version of the spa?
3045 * sa_ok		SAs allowed in this version of the spa?
3046 * createprops		list of properties requested by creator
3047 *
3048 * outputs:
3049 * zplprops	values for the zplprops we attach to the master node object
3050 * is_ci	true if requested file system will be purely case-insensitive
3051 *
3052 * Determine the settings for utf8only, normalization and
3053 * casesensitivity.  Specific values may have been requested by the
3054 * creator and/or we can inherit values from the parent dataset.  If
3055 * the file system is of too early a vintage, a creator can not
3056 * request settings for these properties, even if the requested
3057 * setting is the default value.  We don't actually want to create dsl
3058 * properties for these, so remove them from the source nvlist after
3059 * processing.
3060 */
3061static int
3062zfs_fill_zplprops_impl(objset_t *os, uint64_t zplver,
3063    boolean_t fuids_ok, boolean_t sa_ok, nvlist_t *createprops,
3064    nvlist_t *zplprops, boolean_t *is_ci)
3065{
3066	uint64_t sense = ZFS_PROP_UNDEFINED;
3067	uint64_t norm = ZFS_PROP_UNDEFINED;
3068	uint64_t u8 = ZFS_PROP_UNDEFINED;
3069
3070	ASSERT(zplprops != NULL);
3071
3072	/*
3073	 * Pull out creator prop choices, if any.
3074	 */
3075	if (createprops) {
3076		(void) nvlist_lookup_uint64(createprops,
3077		    zfs_prop_to_name(ZFS_PROP_VERSION), &zplver);
3078		(void) nvlist_lookup_uint64(createprops,
3079		    zfs_prop_to_name(ZFS_PROP_NORMALIZE), &norm);
3080		(void) nvlist_remove_all(createprops,
3081		    zfs_prop_to_name(ZFS_PROP_NORMALIZE));
3082		(void) nvlist_lookup_uint64(createprops,
3083		    zfs_prop_to_name(ZFS_PROP_UTF8ONLY), &u8);
3084		(void) nvlist_remove_all(createprops,
3085		    zfs_prop_to_name(ZFS_PROP_UTF8ONLY));
3086		(void) nvlist_lookup_uint64(createprops,
3087		    zfs_prop_to_name(ZFS_PROP_CASE), &sense);
3088		(void) nvlist_remove_all(createprops,
3089		    zfs_prop_to_name(ZFS_PROP_CASE));
3090	}
3091
3092	/*
3093	 * If the zpl version requested is whacky or the file system
3094	 * or pool is version is too "young" to support normalization
3095	 * and the creator tried to set a value for one of the props,
3096	 * error out.
3097	 */
3098	if ((zplver < ZPL_VERSION_INITIAL || zplver > ZPL_VERSION) ||
3099	    (zplver >= ZPL_VERSION_FUID && !fuids_ok) ||
3100	    (zplver >= ZPL_VERSION_SA && !sa_ok) ||
3101	    (zplver < ZPL_VERSION_NORMALIZATION &&
3102	    (norm != ZFS_PROP_UNDEFINED || u8 != ZFS_PROP_UNDEFINED ||
3103	    sense != ZFS_PROP_UNDEFINED)))
3104		return (SET_ERROR(ENOTSUP));
3105
3106	/*
3107	 * Put the version in the zplprops
3108	 */
3109	VERIFY(nvlist_add_uint64(zplprops,
3110	    zfs_prop_to_name(ZFS_PROP_VERSION), zplver) == 0);
3111
3112	if (norm == ZFS_PROP_UNDEFINED)
3113		VERIFY(zfs_get_zplprop(os, ZFS_PROP_NORMALIZE, &norm) == 0);
3114	VERIFY(nvlist_add_uint64(zplprops,
3115	    zfs_prop_to_name(ZFS_PROP_NORMALIZE), norm) == 0);
3116
3117	/*
3118	 * If we're normalizing, names must always be valid UTF-8 strings.
3119	 */
3120	if (norm)
3121		u8 = 1;
3122	if (u8 == ZFS_PROP_UNDEFINED)
3123		VERIFY(zfs_get_zplprop(os, ZFS_PROP_UTF8ONLY, &u8) == 0);
3124	VERIFY(nvlist_add_uint64(zplprops,
3125	    zfs_prop_to_name(ZFS_PROP_UTF8ONLY), u8) == 0);
3126
3127	if (sense == ZFS_PROP_UNDEFINED)
3128		VERIFY(zfs_get_zplprop(os, ZFS_PROP_CASE, &sense) == 0);
3129	VERIFY(nvlist_add_uint64(zplprops,
3130	    zfs_prop_to_name(ZFS_PROP_CASE), sense) == 0);
3131
3132	if (is_ci)
3133		*is_ci = (sense == ZFS_CASE_INSENSITIVE);
3134
3135	return (0);
3136}
3137
3138static int
3139zfs_fill_zplprops(const char *dataset, nvlist_t *createprops,
3140    nvlist_t *zplprops, boolean_t *is_ci)
3141{
3142	boolean_t fuids_ok, sa_ok;
3143	uint64_t zplver = ZPL_VERSION;
3144	objset_t *os = NULL;
3145	char parentname[MAXNAMELEN];
3146	char *cp;
3147	spa_t *spa;
3148	uint64_t spa_vers;
3149	int error;
3150
3151	(void) strlcpy(parentname, dataset, sizeof (parentname));
3152	cp = strrchr(parentname, '/');
3153	ASSERT(cp != NULL);
3154	cp[0] = '\0';
3155
3156	if ((error = spa_open(dataset, &spa, FTAG)) != 0)
3157		return (error);
3158
3159	spa_vers = spa_version(spa);
3160	spa_close(spa, FTAG);
3161
3162	zplver = zfs_zpl_version_map(spa_vers);
3163	fuids_ok = (zplver >= ZPL_VERSION_FUID);
3164	sa_ok = (zplver >= ZPL_VERSION_SA);
3165
3166	/*
3167	 * Open parent object set so we can inherit zplprop values.
3168	 */
3169	if ((error = dmu_objset_hold(parentname, FTAG, &os)) != 0)
3170		return (error);
3171
3172	error = zfs_fill_zplprops_impl(os, zplver, fuids_ok, sa_ok, createprops,
3173	    zplprops, is_ci);
3174	dmu_objset_rele(os, FTAG);
3175	return (error);
3176}
3177
3178static int
3179zfs_fill_zplprops_root(uint64_t spa_vers, nvlist_t *createprops,
3180    nvlist_t *zplprops, boolean_t *is_ci)
3181{
3182	boolean_t fuids_ok;
3183	boolean_t sa_ok;
3184	uint64_t zplver = ZPL_VERSION;
3185	int error;
3186
3187	zplver = zfs_zpl_version_map(spa_vers);
3188	fuids_ok = (zplver >= ZPL_VERSION_FUID);
3189	sa_ok = (zplver >= ZPL_VERSION_SA);
3190
3191	error = zfs_fill_zplprops_impl(NULL, zplver, fuids_ok, sa_ok,
3192	    createprops, zplprops, is_ci);
3193	return (error);
3194}
3195
3196/*
3197 * innvl: {
3198 *     "type" -> dmu_objset_type_t (int32)
3199 *     (optional) "props" -> { prop -> value }
3200 * }
3201 *
3202 * outnvl: propname -> error code (int32)
3203 */
3204static int
3205zfs_ioc_create(const char *fsname, nvlist_t *innvl, nvlist_t *outnvl)
3206{
3207	int error = 0;
3208	zfs_creat_t zct = { 0 };
3209	nvlist_t *nvprops = NULL;
3210	void (*cbfunc)(objset_t *os, void *arg, cred_t *cr, dmu_tx_t *tx);
3211	int32_t type32;
3212	dmu_objset_type_t type;
3213	boolean_t is_insensitive = B_FALSE;
3214
3215	if (nvlist_lookup_int32(innvl, "type", &type32) != 0)
3216		return (SET_ERROR(EINVAL));
3217	type = type32;
3218	(void) nvlist_lookup_nvlist(innvl, "props", &nvprops);
3219
3220	switch (type) {
3221	case DMU_OST_ZFS:
3222		cbfunc = zfs_create_cb;
3223		break;
3224
3225	case DMU_OST_ZVOL:
3226		cbfunc = zvol_create_cb;
3227		break;
3228
3229	default:
3230		cbfunc = NULL;
3231		break;
3232	}
3233	if (strchr(fsname, '@') ||
3234	    strchr(fsname, '%'))
3235		return (SET_ERROR(EINVAL));
3236
3237	zct.zct_props = nvprops;
3238
3239	if (cbfunc == NULL)
3240		return (SET_ERROR(EINVAL));
3241
3242	if (type == DMU_OST_ZVOL) {
3243		uint64_t volsize, volblocksize;
3244
3245		if (nvprops == NULL)
3246			return (SET_ERROR(EINVAL));
3247		if (nvlist_lookup_uint64(nvprops,
3248		    zfs_prop_to_name(ZFS_PROP_VOLSIZE), &volsize) != 0)
3249			return (SET_ERROR(EINVAL));
3250
3251		if ((error = nvlist_lookup_uint64(nvprops,
3252		    zfs_prop_to_name(ZFS_PROP_VOLBLOCKSIZE),
3253		    &volblocksize)) != 0 && error != ENOENT)
3254			return (SET_ERROR(EINVAL));
3255
3256		if (error != 0)
3257			volblocksize = zfs_prop_default_numeric(
3258			    ZFS_PROP_VOLBLOCKSIZE);
3259
3260		if ((error = zvol_check_volblocksize(
3261		    volblocksize)) != 0 ||
3262		    (error = zvol_check_volsize(volsize,
3263		    volblocksize)) != 0)
3264			return (error);
3265	} else if (type == DMU_OST_ZFS) {
3266		int error;
3267
3268		/*
3269		 * We have to have normalization and
3270		 * case-folding flags correct when we do the
3271		 * file system creation, so go figure them out
3272		 * now.
3273		 */
3274		VERIFY(nvlist_alloc(&zct.zct_zplprops,
3275		    NV_UNIQUE_NAME, KM_SLEEP) == 0);
3276		error = zfs_fill_zplprops(fsname, nvprops,
3277		    zct.zct_zplprops, &is_insensitive);
3278		if (error != 0) {
3279			nvlist_free(zct.zct_zplprops);
3280			return (error);
3281		}
3282	}
3283
3284	error = dmu_objset_create(fsname, type,
3285	    is_insensitive ? DS_FLAG_CI_DATASET : 0, cbfunc, &zct);
3286	nvlist_free(zct.zct_zplprops);
3287
3288	/*
3289	 * It would be nice to do this atomically.
3290	 */
3291	if (error == 0) {
3292		error = zfs_set_prop_nvlist(fsname, ZPROP_SRC_LOCAL,
3293		    nvprops, outnvl);
3294		if (error != 0)
3295			(void) dsl_destroy_head(fsname);
3296	}
3297#ifdef __FreeBSD__
3298	if (error == 0 && type == DMU_OST_ZVOL)
3299		zvol_create_minors(fsname);
3300#endif
3301	return (error);
3302}
3303
3304/*
3305 * innvl: {
3306 *     "origin" -> name of origin snapshot
3307 *     (optional) "props" -> { prop -> value }
3308 * }
3309 *
3310 * outnvl: propname -> error code (int32)
3311 */
3312static int
3313zfs_ioc_clone(const char *fsname, nvlist_t *innvl, nvlist_t *outnvl)
3314{
3315	int error = 0;
3316	nvlist_t *nvprops = NULL;
3317	char *origin_name;
3318
3319	if (nvlist_lookup_string(innvl, "origin", &origin_name) != 0)
3320		return (SET_ERROR(EINVAL));
3321	(void) nvlist_lookup_nvlist(innvl, "props", &nvprops);
3322
3323	if (strchr(fsname, '@') ||
3324	    strchr(fsname, '%'))
3325		return (SET_ERROR(EINVAL));
3326
3327	if (dataset_namecheck(origin_name, NULL, NULL) != 0)
3328		return (SET_ERROR(EINVAL));
3329	error = dmu_objset_clone(fsname, origin_name);
3330	if (error != 0)
3331		return (error);
3332
3333	/*
3334	 * It would be nice to do this atomically.
3335	 */
3336	if (error == 0) {
3337		error = zfs_set_prop_nvlist(fsname, ZPROP_SRC_LOCAL,
3338		    nvprops, outnvl);
3339		if (error != 0)
3340			(void) dsl_destroy_head(fsname);
3341	}
3342#ifdef __FreeBSD__
3343	if (error == 0)
3344		zvol_create_minors(fsname);
3345#endif
3346	return (error);
3347}
3348
3349/*
3350 * innvl: {
3351 *     "snaps" -> { snapshot1, snapshot2 }
3352 *     (optional) "props" -> { prop -> value (string) }
3353 * }
3354 *
3355 * outnvl: snapshot -> error code (int32)
3356 */
3357static int
3358zfs_ioc_snapshot(const char *poolname, nvlist_t *innvl, nvlist_t *outnvl)
3359{
3360	nvlist_t *snaps;
3361	nvlist_t *props = NULL;
3362	int error, poollen;
3363	nvpair_t *pair;
3364
3365	(void) nvlist_lookup_nvlist(innvl, "props", &props);
3366	if ((error = zfs_check_userprops(poolname, props)) != 0)
3367		return (error);
3368
3369	if (!nvlist_empty(props) &&
3370	    zfs_earlier_version(poolname, SPA_VERSION_SNAP_PROPS))
3371		return (SET_ERROR(ENOTSUP));
3372
3373	if (nvlist_lookup_nvlist(innvl, "snaps", &snaps) != 0)
3374		return (SET_ERROR(EINVAL));
3375	poollen = strlen(poolname);
3376	for (pair = nvlist_next_nvpair(snaps, NULL); pair != NULL;
3377	    pair = nvlist_next_nvpair(snaps, pair)) {
3378		const char *name = nvpair_name(pair);
3379		const char *cp = strchr(name, '@');
3380
3381		/*
3382		 * The snap name must contain an @, and the part after it must
3383		 * contain only valid characters.
3384		 */
3385		if (cp == NULL ||
3386		    zfs_component_namecheck(cp + 1, NULL, NULL) != 0)
3387			return (SET_ERROR(EINVAL));
3388
3389		/*
3390		 * The snap must be in the specified pool.
3391		 */
3392		if (strncmp(name, poolname, poollen) != 0 ||
3393		    (name[poollen] != '/' && name[poollen] != '@'))
3394			return (SET_ERROR(EXDEV));
3395
3396		/* This must be the only snap of this fs. */
3397		for (nvpair_t *pair2 = nvlist_next_nvpair(snaps, pair);
3398		    pair2 != NULL; pair2 = nvlist_next_nvpair(snaps, pair2)) {
3399			if (strncmp(name, nvpair_name(pair2), cp - name + 1)
3400			    == 0) {
3401				return (SET_ERROR(EXDEV));
3402			}
3403		}
3404	}
3405
3406	error = dsl_dataset_snapshot(snaps, props, outnvl);
3407	return (error);
3408}
3409
3410/*
3411 * innvl: "message" -> string
3412 */
3413/* ARGSUSED */
3414static int
3415zfs_ioc_log_history(const char *unused, nvlist_t *innvl, nvlist_t *outnvl)
3416{
3417	char *message;
3418	spa_t *spa;
3419	int error;
3420	char *poolname;
3421
3422	/*
3423	 * The poolname in the ioctl is not set, we get it from the TSD,
3424	 * which was set at the end of the last successful ioctl that allows
3425	 * logging.  The secpolicy func already checked that it is set.
3426	 * Only one log ioctl is allowed after each successful ioctl, so
3427	 * we clear the TSD here.
3428	 */
3429	poolname = tsd_get(zfs_allow_log_key);
3430	(void) tsd_set(zfs_allow_log_key, NULL);
3431	error = spa_open(poolname, &spa, FTAG);
3432	strfree(poolname);
3433	if (error != 0)
3434		return (error);
3435
3436	if (nvlist_lookup_string(innvl, "message", &message) != 0)  {
3437		spa_close(spa, FTAG);
3438		return (SET_ERROR(EINVAL));
3439	}
3440
3441	if (spa_version(spa) < SPA_VERSION_ZPOOL_HISTORY) {
3442		spa_close(spa, FTAG);
3443		return (SET_ERROR(ENOTSUP));
3444	}
3445
3446	error = spa_history_log(spa, message);
3447	spa_close(spa, FTAG);
3448	return (error);
3449}
3450
3451/*
3452 * The dp_config_rwlock must not be held when calling this, because the
3453 * unmount may need to write out data.
3454 *
3455 * This function is best-effort.  Callers must deal gracefully if it
3456 * remains mounted (or is remounted after this call).
3457 *
3458 * Returns 0 if the argument is not a snapshot, or it is not currently a
3459 * filesystem, or we were able to unmount it.  Returns error code otherwise.
3460 */
3461int
3462zfs_unmount_snap(const char *snapname)
3463{
3464	vfs_t *vfsp;
3465	zfsvfs_t *zfsvfs;
3466	int err;
3467
3468	if (strchr(snapname, '@') == NULL)
3469		return (0);
3470
3471	vfsp = zfs_get_vfs(snapname);
3472	if (vfsp == NULL)
3473		return (0);
3474
3475	zfsvfs = vfsp->vfs_data;
3476	ASSERT(!dsl_pool_config_held(dmu_objset_pool(zfsvfs->z_os)));
3477
3478	err = vn_vfswlock(vfsp->vfs_vnodecovered);
3479	VFS_RELE(vfsp);
3480	if (err != 0)
3481		return (SET_ERROR(err));
3482
3483	/*
3484	 * Always force the unmount for snapshots.
3485	 */
3486
3487#ifdef illumos
3488	(void) dounmount(vfsp, MS_FORCE, kcred);
3489#else
3490	mtx_lock(&Giant);	/* dounmount() */
3491	(void) dounmount(vfsp, MS_FORCE, curthread);
3492	mtx_unlock(&Giant);	/* dounmount() */
3493#endif
3494	return (0);
3495}
3496
3497/* ARGSUSED */
3498static int
3499zfs_unmount_snap_cb(const char *snapname, void *arg)
3500{
3501	return (zfs_unmount_snap(snapname));
3502}
3503
3504/*
3505 * When a clone is destroyed, its origin may also need to be destroyed,
3506 * in which case it must be unmounted.  This routine will do that unmount
3507 * if necessary.
3508 */
3509void
3510zfs_destroy_unmount_origin(const char *fsname)
3511{
3512	int error;
3513	objset_t *os;
3514	dsl_dataset_t *ds;
3515
3516	error = dmu_objset_hold(fsname, FTAG, &os);
3517	if (error != 0)
3518		return;
3519	ds = dmu_objset_ds(os);
3520	if (dsl_dir_is_clone(ds->ds_dir) && DS_IS_DEFER_DESTROY(ds->ds_prev)) {
3521		char originname[MAXNAMELEN];
3522		dsl_dataset_name(ds->ds_prev, originname);
3523		dmu_objset_rele(os, FTAG);
3524		(void) zfs_unmount_snap(originname);
3525	} else {
3526		dmu_objset_rele(os, FTAG);
3527	}
3528}
3529
3530/*
3531 * innvl: {
3532 *     "snaps" -> { snapshot1, snapshot2 }
3533 *     (optional boolean) "defer"
3534 * }
3535 *
3536 * outnvl: snapshot -> error code (int32)
3537 *
3538 */
3539/* ARGSUSED */
3540static int
3541zfs_ioc_destroy_snaps(const char *poolname, nvlist_t *innvl, nvlist_t *outnvl)
3542{
3543	int error, poollen;
3544	nvlist_t *snaps;
3545	nvpair_t *pair;
3546	boolean_t defer;
3547
3548	if (nvlist_lookup_nvlist(innvl, "snaps", &snaps) != 0)
3549		return (SET_ERROR(EINVAL));
3550	defer = nvlist_exists(innvl, "defer");
3551
3552	poollen = strlen(poolname);
3553	for (pair = nvlist_next_nvpair(snaps, NULL); pair != NULL;
3554	    pair = nvlist_next_nvpair(snaps, pair)) {
3555		const char *name = nvpair_name(pair);
3556
3557		/*
3558		 * The snap must be in the specified pool to prevent the
3559		 * invalid removal of zvol minors below.
3560		 */
3561		if (strncmp(name, poolname, poollen) != 0 ||
3562		    (name[poollen] != '/' && name[poollen] != '@'))
3563			return (SET_ERROR(EXDEV));
3564
3565		error = zfs_unmount_snap(name);
3566		if (error != 0)
3567			return (error);
3568#if defined(__FreeBSD__)
3569		zvol_remove_minors(name);
3570#endif
3571	}
3572
3573	return (dsl_destroy_snapshots_nvl(snaps, defer, outnvl));
3574}
3575
3576/*
3577 * Create bookmarks.  Bookmark names are of the form <fs>#<bmark>.
3578 * All bookmarks must be in the same pool.
3579 *
3580 * innvl: {
3581 *     bookmark1 -> snapshot1, bookmark2 -> snapshot2
3582 * }
3583 *
3584 * outnvl: bookmark -> error code (int32)
3585 *
3586 */
3587/* ARGSUSED */
3588static int
3589zfs_ioc_bookmark(const char *poolname, nvlist_t *innvl, nvlist_t *outnvl)
3590{
3591	for (nvpair_t *pair = nvlist_next_nvpair(innvl, NULL);
3592	    pair != NULL; pair = nvlist_next_nvpair(innvl, pair)) {
3593		char *snap_name;
3594
3595		/*
3596		 * Verify the snapshot argument.
3597		 */
3598		if (nvpair_value_string(pair, &snap_name) != 0)
3599			return (SET_ERROR(EINVAL));
3600
3601
3602		/* Verify that the keys (bookmarks) are unique */
3603		for (nvpair_t *pair2 = nvlist_next_nvpair(innvl, pair);
3604		    pair2 != NULL; pair2 = nvlist_next_nvpair(innvl, pair2)) {
3605			if (strcmp(nvpair_name(pair), nvpair_name(pair2)) == 0)
3606				return (SET_ERROR(EINVAL));
3607		}
3608	}
3609
3610	return (dsl_bookmark_create(innvl, outnvl));
3611}
3612
3613/*
3614 * innvl: {
3615 *     property 1, property 2, ...
3616 * }
3617 *
3618 * outnvl: {
3619 *     bookmark name 1 -> { property 1, property 2, ... },
3620 *     bookmark name 2 -> { property 1, property 2, ... }
3621 * }
3622 *
3623 */
3624static int
3625zfs_ioc_get_bookmarks(const char *fsname, nvlist_t *innvl, nvlist_t *outnvl)
3626{
3627	return (dsl_get_bookmarks(fsname, innvl, outnvl));
3628}
3629
3630/*
3631 * innvl: {
3632 *     bookmark name 1, bookmark name 2
3633 * }
3634 *
3635 * outnvl: bookmark -> error code (int32)
3636 *
3637 */
3638static int
3639zfs_ioc_destroy_bookmarks(const char *poolname, nvlist_t *innvl,
3640    nvlist_t *outnvl)
3641{
3642	int error, poollen;
3643
3644	poollen = strlen(poolname);
3645	for (nvpair_t *pair = nvlist_next_nvpair(innvl, NULL);
3646	    pair != NULL; pair = nvlist_next_nvpair(innvl, pair)) {
3647		const char *name = nvpair_name(pair);
3648		const char *cp = strchr(name, '#');
3649
3650		/*
3651		 * The bookmark name must contain an #, and the part after it
3652		 * must contain only valid characters.
3653		 */
3654		if (cp == NULL ||
3655		    zfs_component_namecheck(cp + 1, NULL, NULL) != 0)
3656			return (SET_ERROR(EINVAL));
3657
3658		/*
3659		 * The bookmark must be in the specified pool.
3660		 */
3661		if (strncmp(name, poolname, poollen) != 0 ||
3662		    (name[poollen] != '/' && name[poollen] != '#'))
3663			return (SET_ERROR(EXDEV));
3664	}
3665
3666	error = dsl_bookmark_destroy(innvl, outnvl);
3667	return (error);
3668}
3669
3670/*
3671 * inputs:
3672 * zc_name		name of dataset to destroy
3673 * zc_objset_type	type of objset
3674 * zc_defer_destroy	mark for deferred destroy
3675 *
3676 * outputs:		none
3677 */
3678static int
3679zfs_ioc_destroy(zfs_cmd_t *zc)
3680{
3681	int err;
3682
3683	if (zc->zc_objset_type == DMU_OST_ZFS) {
3684		err = zfs_unmount_snap(zc->zc_name);
3685		if (err != 0)
3686			return (err);
3687	}
3688
3689	if (strchr(zc->zc_name, '@'))
3690		err = dsl_destroy_snapshot(zc->zc_name, zc->zc_defer_destroy);
3691	else
3692		err = dsl_destroy_head(zc->zc_name);
3693	if (zc->zc_objset_type == DMU_OST_ZVOL && err == 0)
3694#ifdef __FreeBSD__
3695		zvol_remove_minors(zc->zc_name);
3696#else
3697		(void) zvol_remove_minor(zc->zc_name);
3698#endif
3699	return (err);
3700}
3701
3702/*
3703 * fsname is name of dataset to rollback (to most recent snapshot)
3704 *
3705 * innvl is not used.
3706 *
3707 * outnvl: "target" -> name of most recent snapshot
3708 * }
3709 */
3710/* ARGSUSED */
3711static int
3712zfs_ioc_rollback(const char *fsname, nvlist_t *args, nvlist_t *outnvl)
3713{
3714	zfsvfs_t *zfsvfs;
3715	int error;
3716
3717	if (getzfsvfs(fsname, &zfsvfs) == 0) {
3718		error = zfs_suspend_fs(zfsvfs);
3719		if (error == 0) {
3720			int resume_err;
3721
3722			error = dsl_dataset_rollback(fsname, zfsvfs, outnvl);
3723			resume_err = zfs_resume_fs(zfsvfs, fsname);
3724			error = error ? error : resume_err;
3725		}
3726		VFS_RELE(zfsvfs->z_vfs);
3727	} else {
3728		error = dsl_dataset_rollback(fsname, NULL, outnvl);
3729	}
3730	return (error);
3731}
3732
3733static int
3734recursive_unmount(const char *fsname, void *arg)
3735{
3736	const char *snapname = arg;
3737	char fullname[MAXNAMELEN];
3738
3739	(void) snprintf(fullname, sizeof (fullname), "%s@%s", fsname, snapname);
3740	return (zfs_unmount_snap(fullname));
3741}
3742
3743/*
3744 * inputs:
3745 * zc_name	old name of dataset
3746 * zc_value	new name of dataset
3747 * zc_cookie	recursive flag (only valid for snapshots)
3748 *
3749 * outputs:	none
3750 */
3751static int
3752zfs_ioc_rename(zfs_cmd_t *zc)
3753{
3754	boolean_t recursive = zc->zc_cookie & 1;
3755#ifdef __FreeBSD__
3756	boolean_t allow_mounted = zc->zc_cookie & 2;
3757#endif
3758	char *at;
3759
3760	zc->zc_value[sizeof (zc->zc_value) - 1] = '\0';
3761	if (dataset_namecheck(zc->zc_value, NULL, NULL) != 0 ||
3762	    strchr(zc->zc_value, '%'))
3763		return (SET_ERROR(EINVAL));
3764
3765	at = strchr(zc->zc_name, '@');
3766	if (at != NULL) {
3767		/* snaps must be in same fs */
3768		int error;
3769
3770		if (strncmp(zc->zc_name, zc->zc_value, at - zc->zc_name + 1))
3771			return (SET_ERROR(EXDEV));
3772		*at = '\0';
3773#ifdef illumos
3774		if (zc->zc_objset_type == DMU_OST_ZFS) {
3775#else
3776		if (zc->zc_objset_type == DMU_OST_ZFS && allow_mounted) {
3777#endif
3778			error = dmu_objset_find(zc->zc_name,
3779			    recursive_unmount, at + 1,
3780			    recursive ? DS_FIND_CHILDREN : 0);
3781			if (error != 0) {
3782				*at = '@';
3783				return (error);
3784			}
3785		}
3786		error = dsl_dataset_rename_snapshot(zc->zc_name,
3787		    at + 1, strchr(zc->zc_value, '@') + 1, recursive);
3788		*at = '@';
3789
3790		return (error);
3791	} else {
3792#ifdef illumos
3793		if (zc->zc_objset_type == DMU_OST_ZVOL)
3794			(void) zvol_remove_minor(zc->zc_name);
3795#endif
3796		return (dsl_dir_rename(zc->zc_name, zc->zc_value));
3797	}
3798}
3799
3800static int
3801zfs_check_settable(const char *dsname, nvpair_t *pair, cred_t *cr)
3802{
3803	const char *propname = nvpair_name(pair);
3804	boolean_t issnap = (strchr(dsname, '@') != NULL);
3805	zfs_prop_t prop = zfs_name_to_prop(propname);
3806	uint64_t intval;
3807	int err;
3808
3809	if (prop == ZPROP_INVAL) {
3810		if (zfs_prop_user(propname)) {
3811			if (err = zfs_secpolicy_write_perms(dsname,
3812			    ZFS_DELEG_PERM_USERPROP, cr))
3813				return (err);
3814			return (0);
3815		}
3816
3817		if (!issnap && zfs_prop_userquota(propname)) {
3818			const char *perm = NULL;
3819			const char *uq_prefix =
3820			    zfs_userquota_prop_prefixes[ZFS_PROP_USERQUOTA];
3821			const char *gq_prefix =
3822			    zfs_userquota_prop_prefixes[ZFS_PROP_GROUPQUOTA];
3823
3824			if (strncmp(propname, uq_prefix,
3825			    strlen(uq_prefix)) == 0) {
3826				perm = ZFS_DELEG_PERM_USERQUOTA;
3827			} else if (strncmp(propname, gq_prefix,
3828			    strlen(gq_prefix)) == 0) {
3829				perm = ZFS_DELEG_PERM_GROUPQUOTA;
3830			} else {
3831				/* USERUSED and GROUPUSED are read-only */
3832				return (SET_ERROR(EINVAL));
3833			}
3834
3835			if (err = zfs_secpolicy_write_perms(dsname, perm, cr))
3836				return (err);
3837			return (0);
3838		}
3839
3840		return (SET_ERROR(EINVAL));
3841	}
3842
3843	if (issnap)
3844		return (SET_ERROR(EINVAL));
3845
3846	if (nvpair_type(pair) == DATA_TYPE_NVLIST) {
3847		/*
3848		 * dsl_prop_get_all_impl() returns properties in this
3849		 * format.
3850		 */
3851		nvlist_t *attrs;
3852		VERIFY(nvpair_value_nvlist(pair, &attrs) == 0);
3853		VERIFY(nvlist_lookup_nvpair(attrs, ZPROP_VALUE,
3854		    &pair) == 0);
3855	}
3856
3857	/*
3858	 * Check that this value is valid for this pool version
3859	 */
3860	switch (prop) {
3861	case ZFS_PROP_COMPRESSION:
3862		/*
3863		 * If the user specified gzip compression, make sure
3864		 * the SPA supports it. We ignore any errors here since
3865		 * we'll catch them later.
3866		 */
3867		if (nvpair_value_uint64(pair, &intval) == 0) {
3868			if (intval >= ZIO_COMPRESS_GZIP_1 &&
3869			    intval <= ZIO_COMPRESS_GZIP_9 &&
3870			    zfs_earlier_version(dsname,
3871			    SPA_VERSION_GZIP_COMPRESSION)) {
3872				return (SET_ERROR(ENOTSUP));
3873			}
3874
3875			if (intval == ZIO_COMPRESS_ZLE &&
3876			    zfs_earlier_version(dsname,
3877			    SPA_VERSION_ZLE_COMPRESSION))
3878				return (SET_ERROR(ENOTSUP));
3879
3880			if (intval == ZIO_COMPRESS_LZ4) {
3881				spa_t *spa;
3882
3883				if ((err = spa_open(dsname, &spa, FTAG)) != 0)
3884					return (err);
3885
3886				if (!spa_feature_is_enabled(spa,
3887				    SPA_FEATURE_LZ4_COMPRESS)) {
3888					spa_close(spa, FTAG);
3889					return (SET_ERROR(ENOTSUP));
3890				}
3891				spa_close(spa, FTAG);
3892			}
3893
3894			/*
3895			 * If this is a bootable dataset then
3896			 * verify that the compression algorithm
3897			 * is supported for booting. We must return
3898			 * something other than ENOTSUP since it
3899			 * implies a downrev pool version.
3900			 */
3901			if (zfs_is_bootfs(dsname) &&
3902			    !BOOTFS_COMPRESS_VALID(intval)) {
3903				return (SET_ERROR(ERANGE));
3904			}
3905		}
3906		break;
3907
3908	case ZFS_PROP_COPIES:
3909		if (zfs_earlier_version(dsname, SPA_VERSION_DITTO_BLOCKS))
3910			return (SET_ERROR(ENOTSUP));
3911		break;
3912
3913	case ZFS_PROP_DEDUP:
3914		if (zfs_earlier_version(dsname, SPA_VERSION_DEDUP))
3915			return (SET_ERROR(ENOTSUP));
3916		break;
3917
3918	case ZFS_PROP_RECORDSIZE:
3919		/* Record sizes above 128k need the feature to be enabled */
3920		if (nvpair_value_uint64(pair, &intval) == 0 &&
3921		    intval > SPA_OLD_MAXBLOCKSIZE) {
3922			spa_t *spa;
3923
3924			/*
3925			 * If this is a bootable dataset then
3926			 * the we don't allow large (>128K) blocks,
3927			 * because GRUB doesn't support them.
3928			 */
3929			if (zfs_is_bootfs(dsname) &&
3930			    intval > SPA_OLD_MAXBLOCKSIZE) {
3931				return (SET_ERROR(EDOM));
3932			}
3933
3934			/*
3935			 * We don't allow setting the property above 1MB,
3936			 * unless the tunable has been changed.
3937			 */
3938			if (intval > zfs_max_recordsize ||
3939			    intval > SPA_MAXBLOCKSIZE)
3940				return (SET_ERROR(EDOM));
3941
3942			if ((err = spa_open(dsname, &spa, FTAG)) != 0)
3943				return (err);
3944
3945			if (!spa_feature_is_enabled(spa,
3946			    SPA_FEATURE_LARGE_BLOCKS)) {
3947				spa_close(spa, FTAG);
3948				return (SET_ERROR(ENOTSUP));
3949			}
3950			spa_close(spa, FTAG);
3951		}
3952		break;
3953
3954	case ZFS_PROP_SHARESMB:
3955		if (zpl_earlier_version(dsname, ZPL_VERSION_FUID))
3956			return (SET_ERROR(ENOTSUP));
3957		break;
3958
3959	case ZFS_PROP_ACLINHERIT:
3960		if (nvpair_type(pair) == DATA_TYPE_UINT64 &&
3961		    nvpair_value_uint64(pair, &intval) == 0) {
3962			if (intval == ZFS_ACL_PASSTHROUGH_X &&
3963			    zfs_earlier_version(dsname,
3964			    SPA_VERSION_PASSTHROUGH_X))
3965				return (SET_ERROR(ENOTSUP));
3966		}
3967		break;
3968	}
3969
3970	return (zfs_secpolicy_setprop(dsname, prop, pair, CRED()));
3971}
3972
3973/*
3974 * Checks for a race condition to make sure we don't increment a feature flag
3975 * multiple times.
3976 */
3977static int
3978zfs_prop_activate_feature_check(void *arg, dmu_tx_t *tx)
3979{
3980	spa_t *spa = dmu_tx_pool(tx)->dp_spa;
3981	spa_feature_t *featurep = arg;
3982
3983	if (!spa_feature_is_active(spa, *featurep))
3984		return (0);
3985	else
3986		return (SET_ERROR(EBUSY));
3987}
3988
3989/*
3990 * The callback invoked on feature activation in the sync task caused by
3991 * zfs_prop_activate_feature.
3992 */
3993static void
3994zfs_prop_activate_feature_sync(void *arg, dmu_tx_t *tx)
3995{
3996	spa_t *spa = dmu_tx_pool(tx)->dp_spa;
3997	spa_feature_t *featurep = arg;
3998
3999	spa_feature_incr(spa, *featurep, tx);
4000}
4001
4002/*
4003 * Activates a feature on a pool in response to a property setting. This
4004 * creates a new sync task which modifies the pool to reflect the feature
4005 * as being active.
4006 */
4007static int
4008zfs_prop_activate_feature(spa_t *spa, spa_feature_t feature)
4009{
4010	int err;
4011
4012	/* EBUSY here indicates that the feature is already active */
4013	err = dsl_sync_task(spa_name(spa),
4014	    zfs_prop_activate_feature_check, zfs_prop_activate_feature_sync,
4015	    &feature, 2, ZFS_SPACE_CHECK_RESERVED);
4016
4017	if (err != 0 && err != EBUSY)
4018		return (err);
4019	else
4020		return (0);
4021}
4022
4023/*
4024 * Removes properties from the given props list that fail permission checks
4025 * needed to clear them and to restore them in case of a receive error. For each
4026 * property, make sure we have both set and inherit permissions.
4027 *
4028 * Returns the first error encountered if any permission checks fail. If the
4029 * caller provides a non-NULL errlist, it also gives the complete list of names
4030 * of all the properties that failed a permission check along with the
4031 * corresponding error numbers. The caller is responsible for freeing the
4032 * returned errlist.
4033 *
4034 * If every property checks out successfully, zero is returned and the list
4035 * pointed at by errlist is NULL.
4036 */
4037static int
4038zfs_check_clearable(char *dataset, nvlist_t *props, nvlist_t **errlist)
4039{
4040	zfs_cmd_t *zc;
4041	nvpair_t *pair, *next_pair;
4042	nvlist_t *errors;
4043	int err, rv = 0;
4044
4045	if (props == NULL)
4046		return (0);
4047
4048	VERIFY(nvlist_alloc(&errors, NV_UNIQUE_NAME, KM_SLEEP) == 0);
4049
4050	zc = kmem_alloc(sizeof (zfs_cmd_t), KM_SLEEP);
4051	(void) strcpy(zc->zc_name, dataset);
4052	pair = nvlist_next_nvpair(props, NULL);
4053	while (pair != NULL) {
4054		next_pair = nvlist_next_nvpair(props, pair);
4055
4056		(void) strcpy(zc->zc_value, nvpair_name(pair));
4057		if ((err = zfs_check_settable(dataset, pair, CRED())) != 0 ||
4058		    (err = zfs_secpolicy_inherit_prop(zc, NULL, CRED())) != 0) {
4059			VERIFY(nvlist_remove_nvpair(props, pair) == 0);
4060			VERIFY(nvlist_add_int32(errors,
4061			    zc->zc_value, err) == 0);
4062		}
4063		pair = next_pair;
4064	}
4065	kmem_free(zc, sizeof (zfs_cmd_t));
4066
4067	if ((pair = nvlist_next_nvpair(errors, NULL)) == NULL) {
4068		nvlist_free(errors);
4069		errors = NULL;
4070	} else {
4071		VERIFY(nvpair_value_int32(pair, &rv) == 0);
4072	}
4073
4074	if (errlist == NULL)
4075		nvlist_free(errors);
4076	else
4077		*errlist = errors;
4078
4079	return (rv);
4080}
4081
4082static boolean_t
4083propval_equals(nvpair_t *p1, nvpair_t *p2)
4084{
4085	if (nvpair_type(p1) == DATA_TYPE_NVLIST) {
4086		/* dsl_prop_get_all_impl() format */
4087		nvlist_t *attrs;
4088		VERIFY(nvpair_value_nvlist(p1, &attrs) == 0);
4089		VERIFY(nvlist_lookup_nvpair(attrs, ZPROP_VALUE,
4090		    &p1) == 0);
4091	}
4092
4093	if (nvpair_type(p2) == DATA_TYPE_NVLIST) {
4094		nvlist_t *attrs;
4095		VERIFY(nvpair_value_nvlist(p2, &attrs) == 0);
4096		VERIFY(nvlist_lookup_nvpair(attrs, ZPROP_VALUE,
4097		    &p2) == 0);
4098	}
4099
4100	if (nvpair_type(p1) != nvpair_type(p2))
4101		return (B_FALSE);
4102
4103	if (nvpair_type(p1) == DATA_TYPE_STRING) {
4104		char *valstr1, *valstr2;
4105
4106		VERIFY(nvpair_value_string(p1, (char **)&valstr1) == 0);
4107		VERIFY(nvpair_value_string(p2, (char **)&valstr2) == 0);
4108		return (strcmp(valstr1, valstr2) == 0);
4109	} else {
4110		uint64_t intval1, intval2;
4111
4112		VERIFY(nvpair_value_uint64(p1, &intval1) == 0);
4113		VERIFY(nvpair_value_uint64(p2, &intval2) == 0);
4114		return (intval1 == intval2);
4115	}
4116}
4117
4118/*
4119 * Remove properties from props if they are not going to change (as determined
4120 * by comparison with origprops). Remove them from origprops as well, since we
4121 * do not need to clear or restore properties that won't change.
4122 */
4123static void
4124props_reduce(nvlist_t *props, nvlist_t *origprops)
4125{
4126	nvpair_t *pair, *next_pair;
4127
4128	if (origprops == NULL)
4129		return; /* all props need to be received */
4130
4131	pair = nvlist_next_nvpair(props, NULL);
4132	while (pair != NULL) {
4133		const char *propname = nvpair_name(pair);
4134		nvpair_t *match;
4135
4136		next_pair = nvlist_next_nvpair(props, pair);
4137
4138		if ((nvlist_lookup_nvpair(origprops, propname,
4139		    &match) != 0) || !propval_equals(pair, match))
4140			goto next; /* need to set received value */
4141
4142		/* don't clear the existing received value */
4143		(void) nvlist_remove_nvpair(origprops, match);
4144		/* don't bother receiving the property */
4145		(void) nvlist_remove_nvpair(props, pair);
4146next:
4147		pair = next_pair;
4148	}
4149}
4150
4151#ifdef	DEBUG
4152static boolean_t zfs_ioc_recv_inject_err;
4153#endif
4154
4155/*
4156 * inputs:
4157 * zc_name		name of containing filesystem
4158 * zc_nvlist_src{_size}	nvlist of properties to apply
4159 * zc_value		name of snapshot to create
4160 * zc_string		name of clone origin (if DRR_FLAG_CLONE)
4161 * zc_cookie		file descriptor to recv from
4162 * zc_begin_record	the BEGIN record of the stream (not byteswapped)
4163 * zc_guid		force flag
4164 * zc_cleanup_fd	cleanup-on-exit file descriptor
4165 * zc_action_handle	handle for this guid/ds mapping (or zero on first call)
4166 *
4167 * outputs:
4168 * zc_cookie		number of bytes read
4169 * zc_nvlist_dst{_size} error for each unapplied received property
4170 * zc_obj		zprop_errflags_t
4171 * zc_action_handle	handle for this guid/ds mapping
4172 */
4173static int
4174zfs_ioc_recv(zfs_cmd_t *zc)
4175{
4176	file_t *fp;
4177	dmu_recv_cookie_t drc;
4178	boolean_t force = (boolean_t)zc->zc_guid;
4179	int fd;
4180	int error = 0;
4181	int props_error = 0;
4182	nvlist_t *errors;
4183	offset_t off;
4184	nvlist_t *props = NULL; /* sent properties */
4185	nvlist_t *origprops = NULL; /* existing properties */
4186	char *origin = NULL;
4187	char *tosnap;
4188	char tofs[ZFS_MAXNAMELEN];
4189	cap_rights_t rights;
4190	boolean_t first_recvd_props = B_FALSE;
4191
4192	if (dataset_namecheck(zc->zc_value, NULL, NULL) != 0 ||
4193	    strchr(zc->zc_value, '@') == NULL ||
4194	    strchr(zc->zc_value, '%'))
4195		return (SET_ERROR(EINVAL));
4196
4197	(void) strcpy(tofs, zc->zc_value);
4198	tosnap = strchr(tofs, '@');
4199	*tosnap++ = '\0';
4200
4201	if (zc->zc_nvlist_src != 0 &&
4202	    (error = get_nvlist(zc->zc_nvlist_src, zc->zc_nvlist_src_size,
4203	    zc->zc_iflags, &props)) != 0)
4204		return (error);
4205
4206	fd = zc->zc_cookie;
4207	fp = getf(fd, cap_rights_init(&rights, CAP_PREAD));
4208	if (fp == NULL) {
4209		nvlist_free(props);
4210		return (SET_ERROR(EBADF));
4211	}
4212
4213	VERIFY(nvlist_alloc(&errors, NV_UNIQUE_NAME, KM_SLEEP) == 0);
4214
4215	if (zc->zc_string[0])
4216		origin = zc->zc_string;
4217
4218	error = dmu_recv_begin(tofs, tosnap,
4219	    &zc->zc_begin_record, force, origin, &drc);
4220	if (error != 0)
4221		goto out;
4222
4223	/*
4224	 * Set properties before we receive the stream so that they are applied
4225	 * to the new data. Note that we must call dmu_recv_stream() if
4226	 * dmu_recv_begin() succeeds.
4227	 */
4228	if (props != NULL && !drc.drc_newfs) {
4229		if (spa_version(dsl_dataset_get_spa(drc.drc_ds)) >=
4230		    SPA_VERSION_RECVD_PROPS &&
4231		    !dsl_prop_get_hasrecvd(tofs))
4232			first_recvd_props = B_TRUE;
4233
4234		/*
4235		 * If new received properties are supplied, they are to
4236		 * completely replace the existing received properties, so stash
4237		 * away the existing ones.
4238		 */
4239		if (dsl_prop_get_received(tofs, &origprops) == 0) {
4240			nvlist_t *errlist = NULL;
4241			/*
4242			 * Don't bother writing a property if its value won't
4243			 * change (and avoid the unnecessary security checks).
4244			 *
4245			 * The first receive after SPA_VERSION_RECVD_PROPS is a
4246			 * special case where we blow away all local properties
4247			 * regardless.
4248			 */
4249			if (!first_recvd_props)
4250				props_reduce(props, origprops);
4251			if (zfs_check_clearable(tofs, origprops, &errlist) != 0)
4252				(void) nvlist_merge(errors, errlist, 0);
4253			nvlist_free(errlist);
4254
4255			if (clear_received_props(tofs, origprops,
4256			    first_recvd_props ? NULL : props) != 0)
4257				zc->zc_obj |= ZPROP_ERR_NOCLEAR;
4258		} else {
4259			zc->zc_obj |= ZPROP_ERR_NOCLEAR;
4260		}
4261	}
4262
4263	if (props != NULL) {
4264		props_error = dsl_prop_set_hasrecvd(tofs);
4265
4266		if (props_error == 0) {
4267			(void) zfs_set_prop_nvlist(tofs, ZPROP_SRC_RECEIVED,
4268			    props, errors);
4269		}
4270	}
4271
4272	if (zc->zc_nvlist_dst_size != 0 &&
4273	    (nvlist_smush(errors, zc->zc_nvlist_dst_size) != 0 ||
4274	    put_nvlist(zc, errors) != 0)) {
4275		/*
4276		 * Caller made zc->zc_nvlist_dst less than the minimum expected
4277		 * size or supplied an invalid address.
4278		 */
4279		props_error = SET_ERROR(EINVAL);
4280	}
4281
4282	off = fp->f_offset;
4283	error = dmu_recv_stream(&drc, fp, &off, zc->zc_cleanup_fd,
4284	    &zc->zc_action_handle);
4285
4286	if (error == 0) {
4287		zfsvfs_t *zfsvfs = NULL;
4288
4289		if (getzfsvfs(tofs, &zfsvfs) == 0) {
4290			/* online recv */
4291			int end_err;
4292
4293			error = zfs_suspend_fs(zfsvfs);
4294			/*
4295			 * If the suspend fails, then the recv_end will
4296			 * likely also fail, and clean up after itself.
4297			 */
4298			end_err = dmu_recv_end(&drc, zfsvfs);
4299			if (error == 0)
4300				error = zfs_resume_fs(zfsvfs, tofs);
4301			error = error ? error : end_err;
4302			VFS_RELE(zfsvfs->z_vfs);
4303		} else {
4304			error = dmu_recv_end(&drc, NULL);
4305		}
4306	}
4307
4308	zc->zc_cookie = off - fp->f_offset;
4309	if (off >= 0 && off <= MAXOFFSET_T)
4310		fp->f_offset = off;
4311
4312#ifdef	DEBUG
4313	if (zfs_ioc_recv_inject_err) {
4314		zfs_ioc_recv_inject_err = B_FALSE;
4315		error = 1;
4316	}
4317#endif
4318
4319#ifdef __FreeBSD__
4320	if (error == 0)
4321		zvol_create_minors(tofs);
4322#endif
4323
4324	/*
4325	 * On error, restore the original props.
4326	 */
4327	if (error != 0 && props != NULL && !drc.drc_newfs) {
4328		if (clear_received_props(tofs, props, NULL) != 0) {
4329			/*
4330			 * We failed to clear the received properties.
4331			 * Since we may have left a $recvd value on the
4332			 * system, we can't clear the $hasrecvd flag.
4333			 */
4334			zc->zc_obj |= ZPROP_ERR_NORESTORE;
4335		} else if (first_recvd_props) {
4336			dsl_prop_unset_hasrecvd(tofs);
4337		}
4338
4339		if (origprops == NULL && !drc.drc_newfs) {
4340			/* We failed to stash the original properties. */
4341			zc->zc_obj |= ZPROP_ERR_NORESTORE;
4342		}
4343
4344		/*
4345		 * dsl_props_set() will not convert RECEIVED to LOCAL on or
4346		 * after SPA_VERSION_RECVD_PROPS, so we need to specify LOCAL
4347		 * explictly if we're restoring local properties cleared in the
4348		 * first new-style receive.
4349		 */
4350		if (origprops != NULL &&
4351		    zfs_set_prop_nvlist(tofs, (first_recvd_props ?
4352		    ZPROP_SRC_LOCAL : ZPROP_SRC_RECEIVED),
4353		    origprops, NULL) != 0) {
4354			/*
4355			 * We stashed the original properties but failed to
4356			 * restore them.
4357			 */
4358			zc->zc_obj |= ZPROP_ERR_NORESTORE;
4359		}
4360	}
4361out:
4362	nvlist_free(props);
4363	nvlist_free(origprops);
4364	nvlist_free(errors);
4365	releasef(fd);
4366
4367	if (error == 0)
4368		error = props_error;
4369
4370	return (error);
4371}
4372
4373/*
4374 * inputs:
4375 * zc_name	name of snapshot to send
4376 * zc_cookie	file descriptor to send stream to
4377 * zc_obj	fromorigin flag (mutually exclusive with zc_fromobj)
4378 * zc_sendobj	objsetid of snapshot to send
4379 * zc_fromobj	objsetid of incremental fromsnap (may be zero)
4380 * zc_guid	if set, estimate size of stream only.  zc_cookie is ignored.
4381 *		output size in zc_objset_type.
4382 * zc_flags	lzc_send_flags
4383 *
4384 * outputs:
4385 * zc_objset_type	estimated size, if zc_guid is set
4386 */
4387static int
4388zfs_ioc_send(zfs_cmd_t *zc)
4389{
4390	int error;
4391	offset_t off;
4392	boolean_t estimate = (zc->zc_guid != 0);
4393	boolean_t embedok = (zc->zc_flags & 0x1);
4394	boolean_t large_block_ok = (zc->zc_flags & 0x2);
4395
4396	if (zc->zc_obj != 0) {
4397		dsl_pool_t *dp;
4398		dsl_dataset_t *tosnap;
4399
4400		error = dsl_pool_hold(zc->zc_name, FTAG, &dp);
4401		if (error != 0)
4402			return (error);
4403
4404		error = dsl_dataset_hold_obj(dp, zc->zc_sendobj, FTAG, &tosnap);
4405		if (error != 0) {
4406			dsl_pool_rele(dp, FTAG);
4407			return (error);
4408		}
4409
4410		if (dsl_dir_is_clone(tosnap->ds_dir))
4411			zc->zc_fromobj =
4412			    dsl_dir_phys(tosnap->ds_dir)->dd_origin_obj;
4413		dsl_dataset_rele(tosnap, FTAG);
4414		dsl_pool_rele(dp, FTAG);
4415	}
4416
4417	if (estimate) {
4418		dsl_pool_t *dp;
4419		dsl_dataset_t *tosnap;
4420		dsl_dataset_t *fromsnap = NULL;
4421
4422		error = dsl_pool_hold(zc->zc_name, FTAG, &dp);
4423		if (error != 0)
4424			return (error);
4425
4426		error = dsl_dataset_hold_obj(dp, zc->zc_sendobj, FTAG, &tosnap);
4427		if (error != 0) {
4428			dsl_pool_rele(dp, FTAG);
4429			return (error);
4430		}
4431
4432		if (zc->zc_fromobj != 0) {
4433			error = dsl_dataset_hold_obj(dp, zc->zc_fromobj,
4434			    FTAG, &fromsnap);
4435			if (error != 0) {
4436				dsl_dataset_rele(tosnap, FTAG);
4437				dsl_pool_rele(dp, FTAG);
4438				return (error);
4439			}
4440		}
4441
4442		error = dmu_send_estimate(tosnap, fromsnap,
4443		    &zc->zc_objset_type);
4444
4445		if (fromsnap != NULL)
4446			dsl_dataset_rele(fromsnap, FTAG);
4447		dsl_dataset_rele(tosnap, FTAG);
4448		dsl_pool_rele(dp, FTAG);
4449	} else {
4450		file_t *fp;
4451		cap_rights_t rights;
4452
4453		fp = getf(zc->zc_cookie,
4454		    cap_rights_init(&rights, CAP_WRITE));
4455		if (fp == NULL)
4456			return (SET_ERROR(EBADF));
4457
4458		off = fp->f_offset;
4459		error = dmu_send_obj(zc->zc_name, zc->zc_sendobj,
4460		    zc->zc_fromobj, embedok, large_block_ok,
4461#ifdef illumos
4462		    zc->zc_cookie, fp->f_vnode, &off);
4463#else
4464		    zc->zc_cookie, fp, &off);
4465#endif
4466
4467		if (off >= 0 && off <= MAXOFFSET_T)
4468			fp->f_offset = off;
4469		releasef(zc->zc_cookie);
4470	}
4471	return (error);
4472}
4473
4474/*
4475 * inputs:
4476 * zc_name	name of snapshot on which to report progress
4477 * zc_cookie	file descriptor of send stream
4478 *
4479 * outputs:
4480 * zc_cookie	number of bytes written in send stream thus far
4481 */
4482static int
4483zfs_ioc_send_progress(zfs_cmd_t *zc)
4484{
4485	dsl_pool_t *dp;
4486	dsl_dataset_t *ds;
4487	dmu_sendarg_t *dsp = NULL;
4488	int error;
4489
4490	error = dsl_pool_hold(zc->zc_name, FTAG, &dp);
4491	if (error != 0)
4492		return (error);
4493
4494	error = dsl_dataset_hold(dp, zc->zc_name, FTAG, &ds);
4495	if (error != 0) {
4496		dsl_pool_rele(dp, FTAG);
4497		return (error);
4498	}
4499
4500	mutex_enter(&ds->ds_sendstream_lock);
4501
4502	/*
4503	 * Iterate over all the send streams currently active on this dataset.
4504	 * If there's one which matches the specified file descriptor _and_ the
4505	 * stream was started by the current process, return the progress of
4506	 * that stream.
4507	 */
4508	for (dsp = list_head(&ds->ds_sendstreams); dsp != NULL;
4509	    dsp = list_next(&ds->ds_sendstreams, dsp)) {
4510		if (dsp->dsa_outfd == zc->zc_cookie &&
4511		    dsp->dsa_proc == curproc)
4512			break;
4513	}
4514
4515	if (dsp != NULL)
4516		zc->zc_cookie = *(dsp->dsa_off);
4517	else
4518		error = SET_ERROR(ENOENT);
4519
4520	mutex_exit(&ds->ds_sendstream_lock);
4521	dsl_dataset_rele(ds, FTAG);
4522	dsl_pool_rele(dp, FTAG);
4523	return (error);
4524}
4525
4526static int
4527zfs_ioc_inject_fault(zfs_cmd_t *zc)
4528{
4529	int id, error;
4530
4531	error = zio_inject_fault(zc->zc_name, (int)zc->zc_guid, &id,
4532	    &zc->zc_inject_record);
4533
4534	if (error == 0)
4535		zc->zc_guid = (uint64_t)id;
4536
4537	return (error);
4538}
4539
4540static int
4541zfs_ioc_clear_fault(zfs_cmd_t *zc)
4542{
4543	return (zio_clear_fault((int)zc->zc_guid));
4544}
4545
4546static int
4547zfs_ioc_inject_list_next(zfs_cmd_t *zc)
4548{
4549	int id = (int)zc->zc_guid;
4550	int error;
4551
4552	error = zio_inject_list_next(&id, zc->zc_name, sizeof (zc->zc_name),
4553	    &zc->zc_inject_record);
4554
4555	zc->zc_guid = id;
4556
4557	return (error);
4558}
4559
4560static int
4561zfs_ioc_error_log(zfs_cmd_t *zc)
4562{
4563	spa_t *spa;
4564	int error;
4565	size_t count = (size_t)zc->zc_nvlist_dst_size;
4566
4567	if ((error = spa_open(zc->zc_name, &spa, FTAG)) != 0)
4568		return (error);
4569
4570	error = spa_get_errlog(spa, (void *)(uintptr_t)zc->zc_nvlist_dst,
4571	    &count);
4572	if (error == 0)
4573		zc->zc_nvlist_dst_size = count;
4574	else
4575		zc->zc_nvlist_dst_size = spa_get_errlog_size(spa);
4576
4577	spa_close(spa, FTAG);
4578
4579	return (error);
4580}
4581
4582static int
4583zfs_ioc_clear(zfs_cmd_t *zc)
4584{
4585	spa_t *spa;
4586	vdev_t *vd;
4587	int error;
4588
4589	/*
4590	 * On zpool clear we also fix up missing slogs
4591	 */
4592	mutex_enter(&spa_namespace_lock);
4593	spa = spa_lookup(zc->zc_name);
4594	if (spa == NULL) {
4595		mutex_exit(&spa_namespace_lock);
4596		return (SET_ERROR(EIO));
4597	}
4598	if (spa_get_log_state(spa) == SPA_LOG_MISSING) {
4599		/* we need to let spa_open/spa_load clear the chains */
4600		spa_set_log_state(spa, SPA_LOG_CLEAR);
4601	}
4602	spa->spa_last_open_failed = 0;
4603	mutex_exit(&spa_namespace_lock);
4604
4605	if (zc->zc_cookie & ZPOOL_NO_REWIND) {
4606		error = spa_open(zc->zc_name, &spa, FTAG);
4607	} else {
4608		nvlist_t *policy;
4609		nvlist_t *config = NULL;
4610
4611		if (zc->zc_nvlist_src == 0)
4612			return (SET_ERROR(EINVAL));
4613
4614		if ((error = get_nvlist(zc->zc_nvlist_src,
4615		    zc->zc_nvlist_src_size, zc->zc_iflags, &policy)) == 0) {
4616			error = spa_open_rewind(zc->zc_name, &spa, FTAG,
4617			    policy, &config);
4618			if (config != NULL) {
4619				int err;
4620
4621				if ((err = put_nvlist(zc, config)) != 0)
4622					error = err;
4623				nvlist_free(config);
4624			}
4625			nvlist_free(policy);
4626		}
4627	}
4628
4629	if (error != 0)
4630		return (error);
4631
4632	spa_vdev_state_enter(spa, SCL_NONE);
4633
4634	if (zc->zc_guid == 0) {
4635		vd = NULL;
4636	} else {
4637		vd = spa_lookup_by_guid(spa, zc->zc_guid, B_TRUE);
4638		if (vd == NULL) {
4639			(void) spa_vdev_state_exit(spa, NULL, ENODEV);
4640			spa_close(spa, FTAG);
4641			return (SET_ERROR(ENODEV));
4642		}
4643	}
4644
4645	vdev_clear(spa, vd);
4646
4647	(void) spa_vdev_state_exit(spa, NULL, 0);
4648
4649	/*
4650	 * Resume any suspended I/Os.
4651	 */
4652	if (zio_resume(spa) != 0)
4653		error = SET_ERROR(EIO);
4654
4655	spa_close(spa, FTAG);
4656
4657	return (error);
4658}
4659
4660static int
4661zfs_ioc_pool_reopen(zfs_cmd_t *zc)
4662{
4663	spa_t *spa;
4664	int error;
4665
4666	error = spa_open(zc->zc_name, &spa, FTAG);
4667	if (error != 0)
4668		return (error);
4669
4670	spa_vdev_state_enter(spa, SCL_NONE);
4671
4672	/*
4673	 * If a resilver is already in progress then set the
4674	 * spa_scrub_reopen flag to B_TRUE so that we don't restart
4675	 * the scan as a side effect of the reopen. Otherwise, let
4676	 * vdev_open() decided if a resilver is required.
4677	 */
4678	spa->spa_scrub_reopen = dsl_scan_resilvering(spa->spa_dsl_pool);
4679	vdev_reopen(spa->spa_root_vdev);
4680	spa->spa_scrub_reopen = B_FALSE;
4681
4682	(void) spa_vdev_state_exit(spa, NULL, 0);
4683	spa_close(spa, FTAG);
4684	return (0);
4685}
4686/*
4687 * inputs:
4688 * zc_name	name of filesystem
4689 * zc_value	name of origin snapshot
4690 *
4691 * outputs:
4692 * zc_string	name of conflicting snapshot, if there is one
4693 */
4694static int
4695zfs_ioc_promote(zfs_cmd_t *zc)
4696{
4697	char *cp;
4698
4699	/*
4700	 * We don't need to unmount *all* the origin fs's snapshots, but
4701	 * it's easier.
4702	 */
4703	cp = strchr(zc->zc_value, '@');
4704	if (cp)
4705		*cp = '\0';
4706	(void) dmu_objset_find(zc->zc_value,
4707	    zfs_unmount_snap_cb, NULL, DS_FIND_SNAPSHOTS);
4708	return (dsl_dataset_promote(zc->zc_name, zc->zc_string));
4709}
4710
4711/*
4712 * Retrieve a single {user|group}{used|quota}@... property.
4713 *
4714 * inputs:
4715 * zc_name	name of filesystem
4716 * zc_objset_type zfs_userquota_prop_t
4717 * zc_value	domain name (eg. "S-1-234-567-89")
4718 * zc_guid	RID/UID/GID
4719 *
4720 * outputs:
4721 * zc_cookie	property value
4722 */
4723static int
4724zfs_ioc_userspace_one(zfs_cmd_t *zc)
4725{
4726	zfsvfs_t *zfsvfs;
4727	int error;
4728
4729	if (zc->zc_objset_type >= ZFS_NUM_USERQUOTA_PROPS)
4730		return (SET_ERROR(EINVAL));
4731
4732	error = zfsvfs_hold(zc->zc_name, FTAG, &zfsvfs, B_FALSE);
4733	if (error != 0)
4734		return (error);
4735
4736	error = zfs_userspace_one(zfsvfs,
4737	    zc->zc_objset_type, zc->zc_value, zc->zc_guid, &zc->zc_cookie);
4738	zfsvfs_rele(zfsvfs, FTAG);
4739
4740	return (error);
4741}
4742
4743/*
4744 * inputs:
4745 * zc_name		name of filesystem
4746 * zc_cookie		zap cursor
4747 * zc_objset_type	zfs_userquota_prop_t
4748 * zc_nvlist_dst[_size] buffer to fill (not really an nvlist)
4749 *
4750 * outputs:
4751 * zc_nvlist_dst[_size]	data buffer (array of zfs_useracct_t)
4752 * zc_cookie	zap cursor
4753 */
4754static int
4755zfs_ioc_userspace_many(zfs_cmd_t *zc)
4756{
4757	zfsvfs_t *zfsvfs;
4758	int bufsize = zc->zc_nvlist_dst_size;
4759
4760	if (bufsize <= 0)
4761		return (SET_ERROR(ENOMEM));
4762
4763	int error = zfsvfs_hold(zc->zc_name, FTAG, &zfsvfs, B_FALSE);
4764	if (error != 0)
4765		return (error);
4766
4767	void *buf = kmem_alloc(bufsize, KM_SLEEP);
4768
4769	error = zfs_userspace_many(zfsvfs, zc->zc_objset_type, &zc->zc_cookie,
4770	    buf, &zc->zc_nvlist_dst_size);
4771
4772	if (error == 0) {
4773		error = ddi_copyout(buf,
4774		    (void *)(uintptr_t)zc->zc_nvlist_dst,
4775		    zc->zc_nvlist_dst_size, zc->zc_iflags);
4776	}
4777	kmem_free(buf, bufsize);
4778	zfsvfs_rele(zfsvfs, FTAG);
4779
4780	return (error);
4781}
4782
4783/*
4784 * inputs:
4785 * zc_name		name of filesystem
4786 *
4787 * outputs:
4788 * none
4789 */
4790static int
4791zfs_ioc_userspace_upgrade(zfs_cmd_t *zc)
4792{
4793	objset_t *os;
4794	int error = 0;
4795	zfsvfs_t *zfsvfs;
4796
4797	if (getzfsvfs(zc->zc_name, &zfsvfs) == 0) {
4798		if (!dmu_objset_userused_enabled(zfsvfs->z_os)) {
4799			/*
4800			 * If userused is not enabled, it may be because the
4801			 * objset needs to be closed & reopened (to grow the
4802			 * objset_phys_t).  Suspend/resume the fs will do that.
4803			 */
4804			error = zfs_suspend_fs(zfsvfs);
4805			if (error == 0) {
4806				dmu_objset_refresh_ownership(zfsvfs->z_os,
4807				    zfsvfs);
4808				error = zfs_resume_fs(zfsvfs, zc->zc_name);
4809			}
4810		}
4811		if (error == 0)
4812			error = dmu_objset_userspace_upgrade(zfsvfs->z_os);
4813		VFS_RELE(zfsvfs->z_vfs);
4814	} else {
4815		/* XXX kind of reading contents without owning */
4816		error = dmu_objset_hold(zc->zc_name, FTAG, &os);
4817		if (error != 0)
4818			return (error);
4819
4820		error = dmu_objset_userspace_upgrade(os);
4821		dmu_objset_rele(os, FTAG);
4822	}
4823
4824	return (error);
4825}
4826
4827#ifdef sun
4828/*
4829 * We don't want to have a hard dependency
4830 * against some special symbols in sharefs
4831 * nfs, and smbsrv.  Determine them if needed when
4832 * the first file system is shared.
4833 * Neither sharefs, nfs or smbsrv are unloadable modules.
4834 */
4835int (*znfsexport_fs)(void *arg);
4836int (*zshare_fs)(enum sharefs_sys_op, share_t *, uint32_t);
4837int (*zsmbexport_fs)(void *arg, boolean_t add_share);
4838
4839int zfs_nfsshare_inited;
4840int zfs_smbshare_inited;
4841
4842ddi_modhandle_t nfs_mod;
4843ddi_modhandle_t sharefs_mod;
4844ddi_modhandle_t smbsrv_mod;
4845#endif	/* sun */
4846kmutex_t zfs_share_lock;
4847
4848#ifdef sun
4849static int
4850zfs_init_sharefs()
4851{
4852	int error;
4853
4854	ASSERT(MUTEX_HELD(&zfs_share_lock));
4855	/* Both NFS and SMB shares also require sharetab support. */
4856	if (sharefs_mod == NULL && ((sharefs_mod =
4857	    ddi_modopen("fs/sharefs",
4858	    KRTLD_MODE_FIRST, &error)) == NULL)) {
4859		return (SET_ERROR(ENOSYS));
4860	}
4861	if (zshare_fs == NULL && ((zshare_fs =
4862	    (int (*)(enum sharefs_sys_op, share_t *, uint32_t))
4863	    ddi_modsym(sharefs_mod, "sharefs_impl", &error)) == NULL)) {
4864		return (SET_ERROR(ENOSYS));
4865	}
4866	return (0);
4867}
4868#endif	/* sun */
4869
4870static int
4871zfs_ioc_share(zfs_cmd_t *zc)
4872{
4873#ifdef sun
4874	int error;
4875	int opcode;
4876
4877	switch (zc->zc_share.z_sharetype) {
4878	case ZFS_SHARE_NFS:
4879	case ZFS_UNSHARE_NFS:
4880		if (zfs_nfsshare_inited == 0) {
4881			mutex_enter(&zfs_share_lock);
4882			if (nfs_mod == NULL && ((nfs_mod = ddi_modopen("fs/nfs",
4883			    KRTLD_MODE_FIRST, &error)) == NULL)) {
4884				mutex_exit(&zfs_share_lock);
4885				return (SET_ERROR(ENOSYS));
4886			}
4887			if (znfsexport_fs == NULL &&
4888			    ((znfsexport_fs = (int (*)(void *))
4889			    ddi_modsym(nfs_mod,
4890			    "nfs_export", &error)) == NULL)) {
4891				mutex_exit(&zfs_share_lock);
4892				return (SET_ERROR(ENOSYS));
4893			}
4894			error = zfs_init_sharefs();
4895			if (error != 0) {
4896				mutex_exit(&zfs_share_lock);
4897				return (SET_ERROR(ENOSYS));
4898			}
4899			zfs_nfsshare_inited = 1;
4900			mutex_exit(&zfs_share_lock);
4901		}
4902		break;
4903	case ZFS_SHARE_SMB:
4904	case ZFS_UNSHARE_SMB:
4905		if (zfs_smbshare_inited == 0) {
4906			mutex_enter(&zfs_share_lock);
4907			if (smbsrv_mod == NULL && ((smbsrv_mod =
4908			    ddi_modopen("drv/smbsrv",
4909			    KRTLD_MODE_FIRST, &error)) == NULL)) {
4910				mutex_exit(&zfs_share_lock);
4911				return (SET_ERROR(ENOSYS));
4912			}
4913			if (zsmbexport_fs == NULL && ((zsmbexport_fs =
4914			    (int (*)(void *, boolean_t))ddi_modsym(smbsrv_mod,
4915			    "smb_server_share", &error)) == NULL)) {
4916				mutex_exit(&zfs_share_lock);
4917				return (SET_ERROR(ENOSYS));
4918			}
4919			error = zfs_init_sharefs();
4920			if (error != 0) {
4921				mutex_exit(&zfs_share_lock);
4922				return (SET_ERROR(ENOSYS));
4923			}
4924			zfs_smbshare_inited = 1;
4925			mutex_exit(&zfs_share_lock);
4926		}
4927		break;
4928	default:
4929		return (SET_ERROR(EINVAL));
4930	}
4931
4932	switch (zc->zc_share.z_sharetype) {
4933	case ZFS_SHARE_NFS:
4934	case ZFS_UNSHARE_NFS:
4935		if (error =
4936		    znfsexport_fs((void *)
4937		    (uintptr_t)zc->zc_share.z_exportdata))
4938			return (error);
4939		break;
4940	case ZFS_SHARE_SMB:
4941	case ZFS_UNSHARE_SMB:
4942		if (error = zsmbexport_fs((void *)
4943		    (uintptr_t)zc->zc_share.z_exportdata,
4944		    zc->zc_share.z_sharetype == ZFS_SHARE_SMB ?
4945		    B_TRUE: B_FALSE)) {
4946			return (error);
4947		}
4948		break;
4949	}
4950
4951	opcode = (zc->zc_share.z_sharetype == ZFS_SHARE_NFS ||
4952	    zc->zc_share.z_sharetype == ZFS_SHARE_SMB) ?
4953	    SHAREFS_ADD : SHAREFS_REMOVE;
4954
4955	/*
4956	 * Add or remove share from sharetab
4957	 */
4958	error = zshare_fs(opcode,
4959	    (void *)(uintptr_t)zc->zc_share.z_sharedata,
4960	    zc->zc_share.z_sharemax);
4961
4962	return (error);
4963
4964#else	/* !sun */
4965	return (ENOSYS);
4966#endif	/* !sun */
4967}
4968
4969ace_t full_access[] = {
4970	{(uid_t)-1, ACE_ALL_PERMS, ACE_EVERYONE, 0}
4971};
4972
4973/*
4974 * inputs:
4975 * zc_name		name of containing filesystem
4976 * zc_obj		object # beyond which we want next in-use object #
4977 *
4978 * outputs:
4979 * zc_obj		next in-use object #
4980 */
4981static int
4982zfs_ioc_next_obj(zfs_cmd_t *zc)
4983{
4984	objset_t *os = NULL;
4985	int error;
4986
4987	error = dmu_objset_hold(zc->zc_name, FTAG, &os);
4988	if (error != 0)
4989		return (error);
4990
4991	error = dmu_object_next(os, &zc->zc_obj, B_FALSE,
4992	    dsl_dataset_phys(os->os_dsl_dataset)->ds_prev_snap_txg);
4993
4994	dmu_objset_rele(os, FTAG);
4995	return (error);
4996}
4997
4998/*
4999 * inputs:
5000 * zc_name		name of filesystem
5001 * zc_value		prefix name for snapshot
5002 * zc_cleanup_fd	cleanup-on-exit file descriptor for calling process
5003 *
5004 * outputs:
5005 * zc_value		short name of new snapshot
5006 */
5007static int
5008zfs_ioc_tmp_snapshot(zfs_cmd_t *zc)
5009{
5010	char *snap_name;
5011	char *hold_name;
5012	int error;
5013	minor_t minor;
5014
5015	error = zfs_onexit_fd_hold(zc->zc_cleanup_fd, &minor);
5016	if (error != 0)
5017		return (error);
5018
5019	snap_name = kmem_asprintf("%s-%016llx", zc->zc_value,
5020	    (u_longlong_t)ddi_get_lbolt64());
5021	hold_name = kmem_asprintf("%%%s", zc->zc_value);
5022
5023	error = dsl_dataset_snapshot_tmp(zc->zc_name, snap_name, minor,
5024	    hold_name);
5025	if (error == 0)
5026		(void) strcpy(zc->zc_value, snap_name);
5027	strfree(snap_name);
5028	strfree(hold_name);
5029	zfs_onexit_fd_rele(zc->zc_cleanup_fd);
5030	return (error);
5031}
5032
5033/*
5034 * inputs:
5035 * zc_name		name of "to" snapshot
5036 * zc_value		name of "from" snapshot
5037 * zc_cookie		file descriptor to write diff data on
5038 *
5039 * outputs:
5040 * dmu_diff_record_t's to the file descriptor
5041 */
5042static int
5043zfs_ioc_diff(zfs_cmd_t *zc)
5044{
5045	file_t *fp;
5046	cap_rights_t rights;
5047	offset_t off;
5048	int error;
5049
5050	fp = getf(zc->zc_cookie, cap_rights_init(&rights, CAP_WRITE));
5051	if (fp == NULL)
5052		return (SET_ERROR(EBADF));
5053
5054	off = fp->f_offset;
5055
5056#ifdef illumos
5057	error = dmu_diff(zc->zc_name, zc->zc_value, fp->f_vnode, &off);
5058#else
5059	error = dmu_diff(zc->zc_name, zc->zc_value, fp, &off);
5060#endif
5061
5062	if (off >= 0 && off <= MAXOFFSET_T)
5063		fp->f_offset = off;
5064	releasef(zc->zc_cookie);
5065
5066	return (error);
5067}
5068
5069#ifdef sun
5070/*
5071 * Remove all ACL files in shares dir
5072 */
5073static int
5074zfs_smb_acl_purge(znode_t *dzp)
5075{
5076	zap_cursor_t	zc;
5077	zap_attribute_t	zap;
5078	zfsvfs_t *zfsvfs = dzp->z_zfsvfs;
5079	int error;
5080
5081	for (zap_cursor_init(&zc, zfsvfs->z_os, dzp->z_id);
5082	    (error = zap_cursor_retrieve(&zc, &zap)) == 0;
5083	    zap_cursor_advance(&zc)) {
5084		if ((error = VOP_REMOVE(ZTOV(dzp), zap.za_name, kcred,
5085		    NULL, 0)) != 0)
5086			break;
5087	}
5088	zap_cursor_fini(&zc);
5089	return (error);
5090}
5091#endif	/* sun */
5092
5093static int
5094zfs_ioc_smb_acl(zfs_cmd_t *zc)
5095{
5096#ifdef sun
5097	vnode_t *vp;
5098	znode_t *dzp;
5099	vnode_t *resourcevp = NULL;
5100	znode_t *sharedir;
5101	zfsvfs_t *zfsvfs;
5102	nvlist_t *nvlist;
5103	char *src, *target;
5104	vattr_t vattr;
5105	vsecattr_t vsec;
5106	int error = 0;
5107
5108	if ((error = lookupname(zc->zc_value, UIO_SYSSPACE,
5109	    NO_FOLLOW, NULL, &vp)) != 0)
5110		return (error);
5111
5112	/* Now make sure mntpnt and dataset are ZFS */
5113
5114	if (strcmp(vp->v_vfsp->mnt_stat.f_fstypename, "zfs") != 0 ||
5115	    (strcmp((char *)refstr_value(vp->v_vfsp->vfs_resource),
5116	    zc->zc_name) != 0)) {
5117		VN_RELE(vp);
5118		return (SET_ERROR(EINVAL));
5119	}
5120
5121	dzp = VTOZ(vp);
5122	zfsvfs = dzp->z_zfsvfs;
5123	ZFS_ENTER(zfsvfs);
5124
5125	/*
5126	 * Create share dir if its missing.
5127	 */
5128	mutex_enter(&zfsvfs->z_lock);
5129	if (zfsvfs->z_shares_dir == 0) {
5130		dmu_tx_t *tx;
5131
5132		tx = dmu_tx_create(zfsvfs->z_os);
5133		dmu_tx_hold_zap(tx, MASTER_NODE_OBJ, TRUE,
5134		    ZFS_SHARES_DIR);
5135		dmu_tx_hold_zap(tx, DMU_NEW_OBJECT, FALSE, NULL);
5136		error = dmu_tx_assign(tx, TXG_WAIT);
5137		if (error != 0) {
5138			dmu_tx_abort(tx);
5139		} else {
5140			error = zfs_create_share_dir(zfsvfs, tx);
5141			dmu_tx_commit(tx);
5142		}
5143		if (error != 0) {
5144			mutex_exit(&zfsvfs->z_lock);
5145			VN_RELE(vp);
5146			ZFS_EXIT(zfsvfs);
5147			return (error);
5148		}
5149	}
5150	mutex_exit(&zfsvfs->z_lock);
5151
5152	ASSERT(zfsvfs->z_shares_dir);
5153	if ((error = zfs_zget(zfsvfs, zfsvfs->z_shares_dir, &sharedir)) != 0) {
5154		VN_RELE(vp);
5155		ZFS_EXIT(zfsvfs);
5156		return (error);
5157	}
5158
5159	switch (zc->zc_cookie) {
5160	case ZFS_SMB_ACL_ADD:
5161		vattr.va_mask = AT_MODE|AT_UID|AT_GID|AT_TYPE;
5162		vattr.va_type = VREG;
5163		vattr.va_mode = S_IFREG|0777;
5164		vattr.va_uid = 0;
5165		vattr.va_gid = 0;
5166
5167		vsec.vsa_mask = VSA_ACE;
5168		vsec.vsa_aclentp = &full_access;
5169		vsec.vsa_aclentsz = sizeof (full_access);
5170		vsec.vsa_aclcnt = 1;
5171
5172		error = VOP_CREATE(ZTOV(sharedir), zc->zc_string,
5173		    &vattr, EXCL, 0, &resourcevp, kcred, 0, NULL, &vsec);
5174		if (resourcevp)
5175			VN_RELE(resourcevp);
5176		break;
5177
5178	case ZFS_SMB_ACL_REMOVE:
5179		error = VOP_REMOVE(ZTOV(sharedir), zc->zc_string, kcred,
5180		    NULL, 0);
5181		break;
5182
5183	case ZFS_SMB_ACL_RENAME:
5184		if ((error = get_nvlist(zc->zc_nvlist_src,
5185		    zc->zc_nvlist_src_size, zc->zc_iflags, &nvlist)) != 0) {
5186			VN_RELE(vp);
5187			ZFS_EXIT(zfsvfs);
5188			return (error);
5189		}
5190		if (nvlist_lookup_string(nvlist, ZFS_SMB_ACL_SRC, &src) ||
5191		    nvlist_lookup_string(nvlist, ZFS_SMB_ACL_TARGET,
5192		    &target)) {
5193			VN_RELE(vp);
5194			VN_RELE(ZTOV(sharedir));
5195			ZFS_EXIT(zfsvfs);
5196			nvlist_free(nvlist);
5197			return (error);
5198		}
5199		error = VOP_RENAME(ZTOV(sharedir), src, ZTOV(sharedir), target,
5200		    kcred, NULL, 0);
5201		nvlist_free(nvlist);
5202		break;
5203
5204	case ZFS_SMB_ACL_PURGE:
5205		error = zfs_smb_acl_purge(sharedir);
5206		break;
5207
5208	default:
5209		error = SET_ERROR(EINVAL);
5210		break;
5211	}
5212
5213	VN_RELE(vp);
5214	VN_RELE(ZTOV(sharedir));
5215
5216	ZFS_EXIT(zfsvfs);
5217
5218	return (error);
5219#else	/* !sun */
5220	return (EOPNOTSUPP);
5221#endif	/* !sun */
5222}
5223
5224/*
5225 * innvl: {
5226 *     "holds" -> { snapname -> holdname (string), ... }
5227 *     (optional) "cleanup_fd" -> fd (int32)
5228 * }
5229 *
5230 * outnvl: {
5231 *     snapname -> error value (int32)
5232 *     ...
5233 * }
5234 */
5235/* ARGSUSED */
5236static int
5237zfs_ioc_hold(const char *pool, nvlist_t *args, nvlist_t *errlist)
5238{
5239	nvlist_t *holds;
5240	int cleanup_fd = -1;
5241	int error;
5242	minor_t minor = 0;
5243
5244	error = nvlist_lookup_nvlist(args, "holds", &holds);
5245	if (error != 0)
5246		return (SET_ERROR(EINVAL));
5247
5248	if (nvlist_lookup_int32(args, "cleanup_fd", &cleanup_fd) == 0) {
5249		error = zfs_onexit_fd_hold(cleanup_fd, &minor);
5250		if (error != 0)
5251			return (error);
5252	}
5253
5254	error = dsl_dataset_user_hold(holds, minor, errlist);
5255	if (minor != 0)
5256		zfs_onexit_fd_rele(cleanup_fd);
5257	return (error);
5258}
5259
5260/*
5261 * innvl is not used.
5262 *
5263 * outnvl: {
5264 *    holdname -> time added (uint64 seconds since epoch)
5265 *    ...
5266 * }
5267 */
5268/* ARGSUSED */
5269static int
5270zfs_ioc_get_holds(const char *snapname, nvlist_t *args, nvlist_t *outnvl)
5271{
5272	return (dsl_dataset_get_holds(snapname, outnvl));
5273}
5274
5275/*
5276 * innvl: {
5277 *     snapname -> { holdname, ... }
5278 *     ...
5279 * }
5280 *
5281 * outnvl: {
5282 *     snapname -> error value (int32)
5283 *     ...
5284 * }
5285 */
5286/* ARGSUSED */
5287static int
5288zfs_ioc_release(const char *pool, nvlist_t *holds, nvlist_t *errlist)
5289{
5290	return (dsl_dataset_user_release(holds, errlist));
5291}
5292
5293/*
5294 * inputs:
5295 * zc_name		name of new filesystem or snapshot
5296 * zc_value		full name of old snapshot
5297 *
5298 * outputs:
5299 * zc_cookie		space in bytes
5300 * zc_objset_type	compressed space in bytes
5301 * zc_perm_action	uncompressed space in bytes
5302 */
5303static int
5304zfs_ioc_space_written(zfs_cmd_t *zc)
5305{
5306	int error;
5307	dsl_pool_t *dp;
5308	dsl_dataset_t *new, *old;
5309
5310	error = dsl_pool_hold(zc->zc_name, FTAG, &dp);
5311	if (error != 0)
5312		return (error);
5313	error = dsl_dataset_hold(dp, zc->zc_name, FTAG, &new);
5314	if (error != 0) {
5315		dsl_pool_rele(dp, FTAG);
5316		return (error);
5317	}
5318	error = dsl_dataset_hold(dp, zc->zc_value, FTAG, &old);
5319	if (error != 0) {
5320		dsl_dataset_rele(new, FTAG);
5321		dsl_pool_rele(dp, FTAG);
5322		return (error);
5323	}
5324
5325	error = dsl_dataset_space_written(old, new, &zc->zc_cookie,
5326	    &zc->zc_objset_type, &zc->zc_perm_action);
5327	dsl_dataset_rele(old, FTAG);
5328	dsl_dataset_rele(new, FTAG);
5329	dsl_pool_rele(dp, FTAG);
5330	return (error);
5331}
5332
5333/*
5334 * innvl: {
5335 *     "firstsnap" -> snapshot name
5336 * }
5337 *
5338 * outnvl: {
5339 *     "used" -> space in bytes
5340 *     "compressed" -> compressed space in bytes
5341 *     "uncompressed" -> uncompressed space in bytes
5342 * }
5343 */
5344static int
5345zfs_ioc_space_snaps(const char *lastsnap, nvlist_t *innvl, nvlist_t *outnvl)
5346{
5347	int error;
5348	dsl_pool_t *dp;
5349	dsl_dataset_t *new, *old;
5350	char *firstsnap;
5351	uint64_t used, comp, uncomp;
5352
5353	if (nvlist_lookup_string(innvl, "firstsnap", &firstsnap) != 0)
5354		return (SET_ERROR(EINVAL));
5355
5356	error = dsl_pool_hold(lastsnap, FTAG, &dp);
5357	if (error != 0)
5358		return (error);
5359
5360	error = dsl_dataset_hold(dp, lastsnap, FTAG, &new);
5361	if (error != 0) {
5362		dsl_pool_rele(dp, FTAG);
5363		return (error);
5364	}
5365	error = dsl_dataset_hold(dp, firstsnap, FTAG, &old);
5366	if (error != 0) {
5367		dsl_dataset_rele(new, FTAG);
5368		dsl_pool_rele(dp, FTAG);
5369		return (error);
5370	}
5371
5372	error = dsl_dataset_space_wouldfree(old, new, &used, &comp, &uncomp);
5373	dsl_dataset_rele(old, FTAG);
5374	dsl_dataset_rele(new, FTAG);
5375	dsl_pool_rele(dp, FTAG);
5376	fnvlist_add_uint64(outnvl, "used", used);
5377	fnvlist_add_uint64(outnvl, "compressed", comp);
5378	fnvlist_add_uint64(outnvl, "uncompressed", uncomp);
5379	return (error);
5380}
5381
5382static int
5383zfs_ioc_jail(zfs_cmd_t *zc)
5384{
5385
5386	return (zone_dataset_attach(curthread->td_ucred, zc->zc_name,
5387	    (int)zc->zc_jailid));
5388}
5389
5390static int
5391zfs_ioc_unjail(zfs_cmd_t *zc)
5392{
5393
5394	return (zone_dataset_detach(curthread->td_ucred, zc->zc_name,
5395	    (int)zc->zc_jailid));
5396}
5397
5398/*
5399 * innvl: {
5400 *     "fd" -> file descriptor to write stream to (int32)
5401 *     (optional) "fromsnap" -> full snap name to send an incremental from
5402 *     (optional) "largeblockok" -> (value ignored)
5403 *         indicates that blocks > 128KB are permitted
5404 *     (optional) "embedok" -> (value ignored)
5405 *         presence indicates DRR_WRITE_EMBEDDED records are permitted
5406 * }
5407 *
5408 * outnvl is unused
5409 */
5410/* ARGSUSED */
5411static int
5412zfs_ioc_send_new(const char *snapname, nvlist_t *innvl, nvlist_t *outnvl)
5413{
5414	cap_rights_t rights;
5415	int error;
5416	offset_t off;
5417	char *fromname = NULL;
5418	int fd;
5419	boolean_t largeblockok;
5420	boolean_t embedok;
5421
5422	error = nvlist_lookup_int32(innvl, "fd", &fd);
5423	if (error != 0)
5424		return (SET_ERROR(EINVAL));
5425
5426	(void) nvlist_lookup_string(innvl, "fromsnap", &fromname);
5427
5428	largeblockok = nvlist_exists(innvl, "largeblockok");
5429	embedok = nvlist_exists(innvl, "embedok");
5430
5431	file_t *fp = getf(fd, cap_rights_init(&rights, CAP_READ));
5432	if (fp == NULL)
5433		return (SET_ERROR(EBADF));
5434
5435	off = fp->f_offset;
5436	error = dmu_send(snapname, fromname, embedok, largeblockok,
5437#ifdef illumos
5438	    fd, fp->f_vnode, &off);
5439#else
5440	    fd, fp, &off);
5441#endif
5442
5443#ifdef illumos
5444	if (VOP_SEEK(fp->f_vnode, fp->f_offset, &off, NULL) == 0)
5445		fp->f_offset = off;
5446#else
5447	fp->f_offset = off;
5448#endif
5449
5450	releasef(fd);
5451	return (error);
5452}
5453
5454/*
5455 * Determine approximately how large a zfs send stream will be -- the number
5456 * of bytes that will be written to the fd supplied to zfs_ioc_send_new().
5457 *
5458 * innvl: {
5459 *     (optional) "fromsnap" -> full snap name to send an incremental from
5460 * }
5461 *
5462 * outnvl: {
5463 *     "space" -> bytes of space (uint64)
5464 * }
5465 */
5466static int
5467zfs_ioc_send_space(const char *snapname, nvlist_t *innvl, nvlist_t *outnvl)
5468{
5469	dsl_pool_t *dp;
5470	dsl_dataset_t *fromsnap = NULL;
5471	dsl_dataset_t *tosnap;
5472	int error;
5473	char *fromname;
5474	uint64_t space;
5475
5476	error = dsl_pool_hold(snapname, FTAG, &dp);
5477	if (error != 0)
5478		return (error);
5479
5480	error = dsl_dataset_hold(dp, snapname, FTAG, &tosnap);
5481	if (error != 0) {
5482		dsl_pool_rele(dp, FTAG);
5483		return (error);
5484	}
5485
5486	error = nvlist_lookup_string(innvl, "fromsnap", &fromname);
5487	if (error == 0) {
5488		error = dsl_dataset_hold(dp, fromname, FTAG, &fromsnap);
5489		if (error != 0) {
5490			dsl_dataset_rele(tosnap, FTAG);
5491			dsl_pool_rele(dp, FTAG);
5492			return (error);
5493		}
5494	}
5495
5496	error = dmu_send_estimate(tosnap, fromsnap, &space);
5497	fnvlist_add_uint64(outnvl, "space", space);
5498
5499	if (fromsnap != NULL)
5500		dsl_dataset_rele(fromsnap, FTAG);
5501	dsl_dataset_rele(tosnap, FTAG);
5502	dsl_pool_rele(dp, FTAG);
5503	return (error);
5504}
5505
5506
5507static zfs_ioc_vec_t zfs_ioc_vec[ZFS_IOC_LAST - ZFS_IOC_FIRST];
5508
5509static void
5510zfs_ioctl_register_legacy(zfs_ioc_t ioc, zfs_ioc_legacy_func_t *func,
5511    zfs_secpolicy_func_t *secpolicy, zfs_ioc_namecheck_t namecheck,
5512    boolean_t log_history, zfs_ioc_poolcheck_t pool_check)
5513{
5514	zfs_ioc_vec_t *vec = &zfs_ioc_vec[ioc - ZFS_IOC_FIRST];
5515
5516	ASSERT3U(ioc, >=, ZFS_IOC_FIRST);
5517	ASSERT3U(ioc, <, ZFS_IOC_LAST);
5518	ASSERT3P(vec->zvec_legacy_func, ==, NULL);
5519	ASSERT3P(vec->zvec_func, ==, NULL);
5520
5521	vec->zvec_legacy_func = func;
5522	vec->zvec_secpolicy = secpolicy;
5523	vec->zvec_namecheck = namecheck;
5524	vec->zvec_allow_log = log_history;
5525	vec->zvec_pool_check = pool_check;
5526}
5527
5528/*
5529 * See the block comment at the beginning of this file for details on
5530 * each argument to this function.
5531 */
5532static void
5533zfs_ioctl_register(const char *name, zfs_ioc_t ioc, zfs_ioc_func_t *func,
5534    zfs_secpolicy_func_t *secpolicy, zfs_ioc_namecheck_t namecheck,
5535    zfs_ioc_poolcheck_t pool_check, boolean_t smush_outnvlist,
5536    boolean_t allow_log)
5537{
5538	zfs_ioc_vec_t *vec = &zfs_ioc_vec[ioc - ZFS_IOC_FIRST];
5539
5540	ASSERT3U(ioc, >=, ZFS_IOC_FIRST);
5541	ASSERT3U(ioc, <, ZFS_IOC_LAST);
5542	ASSERT3P(vec->zvec_legacy_func, ==, NULL);
5543	ASSERT3P(vec->zvec_func, ==, NULL);
5544
5545	/* if we are logging, the name must be valid */
5546	ASSERT(!allow_log || namecheck != NO_NAME);
5547
5548	vec->zvec_name = name;
5549	vec->zvec_func = func;
5550	vec->zvec_secpolicy = secpolicy;
5551	vec->zvec_namecheck = namecheck;
5552	vec->zvec_pool_check = pool_check;
5553	vec->zvec_smush_outnvlist = smush_outnvlist;
5554	vec->zvec_allow_log = allow_log;
5555}
5556
5557static void
5558zfs_ioctl_register_pool(zfs_ioc_t ioc, zfs_ioc_legacy_func_t *func,
5559    zfs_secpolicy_func_t *secpolicy, boolean_t log_history,
5560    zfs_ioc_poolcheck_t pool_check)
5561{
5562	zfs_ioctl_register_legacy(ioc, func, secpolicy,
5563	    POOL_NAME, log_history, pool_check);
5564}
5565
5566static void
5567zfs_ioctl_register_dataset_nolog(zfs_ioc_t ioc, zfs_ioc_legacy_func_t *func,
5568    zfs_secpolicy_func_t *secpolicy, zfs_ioc_poolcheck_t pool_check)
5569{
5570	zfs_ioctl_register_legacy(ioc, func, secpolicy,
5571	    DATASET_NAME, B_FALSE, pool_check);
5572}
5573
5574static void
5575zfs_ioctl_register_pool_modify(zfs_ioc_t ioc, zfs_ioc_legacy_func_t *func)
5576{
5577	zfs_ioctl_register_legacy(ioc, func, zfs_secpolicy_config,
5578	    POOL_NAME, B_TRUE, POOL_CHECK_SUSPENDED | POOL_CHECK_READONLY);
5579}
5580
5581static void
5582zfs_ioctl_register_pool_meta(zfs_ioc_t ioc, zfs_ioc_legacy_func_t *func,
5583    zfs_secpolicy_func_t *secpolicy)
5584{
5585	zfs_ioctl_register_legacy(ioc, func, secpolicy,
5586	    NO_NAME, B_FALSE, POOL_CHECK_NONE);
5587}
5588
5589static void
5590zfs_ioctl_register_dataset_read_secpolicy(zfs_ioc_t ioc,
5591    zfs_ioc_legacy_func_t *func, zfs_secpolicy_func_t *secpolicy)
5592{
5593	zfs_ioctl_register_legacy(ioc, func, secpolicy,
5594	    DATASET_NAME, B_FALSE, POOL_CHECK_SUSPENDED);
5595}
5596
5597static void
5598zfs_ioctl_register_dataset_read(zfs_ioc_t ioc, zfs_ioc_legacy_func_t *func)
5599{
5600	zfs_ioctl_register_dataset_read_secpolicy(ioc, func,
5601	    zfs_secpolicy_read);
5602}
5603
5604static void
5605zfs_ioctl_register_dataset_modify(zfs_ioc_t ioc, zfs_ioc_legacy_func_t *func,
5606	zfs_secpolicy_func_t *secpolicy)
5607{
5608	zfs_ioctl_register_legacy(ioc, func, secpolicy,
5609	    DATASET_NAME, B_TRUE, POOL_CHECK_SUSPENDED | POOL_CHECK_READONLY);
5610}
5611
5612static void
5613zfs_ioctl_init(void)
5614{
5615	zfs_ioctl_register("snapshot", ZFS_IOC_SNAPSHOT,
5616	    zfs_ioc_snapshot, zfs_secpolicy_snapshot, POOL_NAME,
5617	    POOL_CHECK_SUSPENDED | POOL_CHECK_READONLY, B_TRUE, B_TRUE);
5618
5619	zfs_ioctl_register("log_history", ZFS_IOC_LOG_HISTORY,
5620	    zfs_ioc_log_history, zfs_secpolicy_log_history, NO_NAME,
5621	    POOL_CHECK_SUSPENDED | POOL_CHECK_READONLY, B_FALSE, B_FALSE);
5622
5623	zfs_ioctl_register("space_snaps", ZFS_IOC_SPACE_SNAPS,
5624	    zfs_ioc_space_snaps, zfs_secpolicy_read, DATASET_NAME,
5625	    POOL_CHECK_SUSPENDED, B_FALSE, B_FALSE);
5626
5627	zfs_ioctl_register("send", ZFS_IOC_SEND_NEW,
5628	    zfs_ioc_send_new, zfs_secpolicy_send_new, DATASET_NAME,
5629	    POOL_CHECK_SUSPENDED, B_FALSE, B_FALSE);
5630
5631	zfs_ioctl_register("send_space", ZFS_IOC_SEND_SPACE,
5632	    zfs_ioc_send_space, zfs_secpolicy_read, DATASET_NAME,
5633	    POOL_CHECK_SUSPENDED, B_FALSE, B_FALSE);
5634
5635	zfs_ioctl_register("create", ZFS_IOC_CREATE,
5636	    zfs_ioc_create, zfs_secpolicy_create_clone, DATASET_NAME,
5637	    POOL_CHECK_SUSPENDED | POOL_CHECK_READONLY, B_TRUE, B_TRUE);
5638
5639	zfs_ioctl_register("clone", ZFS_IOC_CLONE,
5640	    zfs_ioc_clone, zfs_secpolicy_create_clone, DATASET_NAME,
5641	    POOL_CHECK_SUSPENDED | POOL_CHECK_READONLY, B_TRUE, B_TRUE);
5642
5643	zfs_ioctl_register("destroy_snaps", ZFS_IOC_DESTROY_SNAPS,
5644	    zfs_ioc_destroy_snaps, zfs_secpolicy_destroy_snaps, POOL_NAME,
5645	    POOL_CHECK_SUSPENDED | POOL_CHECK_READONLY, B_TRUE, B_TRUE);
5646
5647	zfs_ioctl_register("hold", ZFS_IOC_HOLD,
5648	    zfs_ioc_hold, zfs_secpolicy_hold, POOL_NAME,
5649	    POOL_CHECK_SUSPENDED | POOL_CHECK_READONLY, B_TRUE, B_TRUE);
5650	zfs_ioctl_register("release", ZFS_IOC_RELEASE,
5651	    zfs_ioc_release, zfs_secpolicy_release, POOL_NAME,
5652	    POOL_CHECK_SUSPENDED | POOL_CHECK_READONLY, B_TRUE, B_TRUE);
5653
5654	zfs_ioctl_register("get_holds", ZFS_IOC_GET_HOLDS,
5655	    zfs_ioc_get_holds, zfs_secpolicy_read, DATASET_NAME,
5656	    POOL_CHECK_SUSPENDED, B_FALSE, B_FALSE);
5657
5658	zfs_ioctl_register("rollback", ZFS_IOC_ROLLBACK,
5659	    zfs_ioc_rollback, zfs_secpolicy_rollback, DATASET_NAME,
5660	    POOL_CHECK_SUSPENDED | POOL_CHECK_READONLY, B_FALSE, B_TRUE);
5661
5662	zfs_ioctl_register("bookmark", ZFS_IOC_BOOKMARK,
5663	    zfs_ioc_bookmark, zfs_secpolicy_bookmark, POOL_NAME,
5664	    POOL_CHECK_SUSPENDED | POOL_CHECK_READONLY, B_TRUE, B_TRUE);
5665
5666	zfs_ioctl_register("get_bookmarks", ZFS_IOC_GET_BOOKMARKS,
5667	    zfs_ioc_get_bookmarks, zfs_secpolicy_read, DATASET_NAME,
5668	    POOL_CHECK_SUSPENDED, B_FALSE, B_FALSE);
5669
5670	zfs_ioctl_register("destroy_bookmarks", ZFS_IOC_DESTROY_BOOKMARKS,
5671	    zfs_ioc_destroy_bookmarks, zfs_secpolicy_destroy_bookmarks,
5672	    POOL_NAME,
5673	    POOL_CHECK_SUSPENDED | POOL_CHECK_READONLY, B_TRUE, B_TRUE);
5674
5675	/* IOCTLS that use the legacy function signature */
5676
5677	zfs_ioctl_register_legacy(ZFS_IOC_POOL_FREEZE, zfs_ioc_pool_freeze,
5678	    zfs_secpolicy_config, NO_NAME, B_FALSE, POOL_CHECK_READONLY);
5679
5680	zfs_ioctl_register_pool(ZFS_IOC_POOL_CREATE, zfs_ioc_pool_create,
5681	    zfs_secpolicy_config, B_TRUE, POOL_CHECK_NONE);
5682	zfs_ioctl_register_pool_modify(ZFS_IOC_POOL_SCAN,
5683	    zfs_ioc_pool_scan);
5684	zfs_ioctl_register_pool_modify(ZFS_IOC_POOL_UPGRADE,
5685	    zfs_ioc_pool_upgrade);
5686	zfs_ioctl_register_pool_modify(ZFS_IOC_VDEV_ADD,
5687	    zfs_ioc_vdev_add);
5688	zfs_ioctl_register_pool_modify(ZFS_IOC_VDEV_REMOVE,
5689	    zfs_ioc_vdev_remove);
5690	zfs_ioctl_register_pool_modify(ZFS_IOC_VDEV_SET_STATE,
5691	    zfs_ioc_vdev_set_state);
5692	zfs_ioctl_register_pool_modify(ZFS_IOC_VDEV_ATTACH,
5693	    zfs_ioc_vdev_attach);
5694	zfs_ioctl_register_pool_modify(ZFS_IOC_VDEV_DETACH,
5695	    zfs_ioc_vdev_detach);
5696	zfs_ioctl_register_pool_modify(ZFS_IOC_VDEV_SETPATH,
5697	    zfs_ioc_vdev_setpath);
5698	zfs_ioctl_register_pool_modify(ZFS_IOC_VDEV_SETFRU,
5699	    zfs_ioc_vdev_setfru);
5700	zfs_ioctl_register_pool_modify(ZFS_IOC_POOL_SET_PROPS,
5701	    zfs_ioc_pool_set_props);
5702	zfs_ioctl_register_pool_modify(ZFS_IOC_VDEV_SPLIT,
5703	    zfs_ioc_vdev_split);
5704	zfs_ioctl_register_pool_modify(ZFS_IOC_POOL_REGUID,
5705	    zfs_ioc_pool_reguid);
5706
5707	zfs_ioctl_register_pool_meta(ZFS_IOC_POOL_CONFIGS,
5708	    zfs_ioc_pool_configs, zfs_secpolicy_none);
5709	zfs_ioctl_register_pool_meta(ZFS_IOC_POOL_TRYIMPORT,
5710	    zfs_ioc_pool_tryimport, zfs_secpolicy_config);
5711	zfs_ioctl_register_pool_meta(ZFS_IOC_INJECT_FAULT,
5712	    zfs_ioc_inject_fault, zfs_secpolicy_inject);
5713	zfs_ioctl_register_pool_meta(ZFS_IOC_CLEAR_FAULT,
5714	    zfs_ioc_clear_fault, zfs_secpolicy_inject);
5715	zfs_ioctl_register_pool_meta(ZFS_IOC_INJECT_LIST_NEXT,
5716	    zfs_ioc_inject_list_next, zfs_secpolicy_inject);
5717
5718	/*
5719	 * pool destroy, and export don't log the history as part of
5720	 * zfsdev_ioctl, but rather zfs_ioc_pool_export
5721	 * does the logging of those commands.
5722	 */
5723	zfs_ioctl_register_pool(ZFS_IOC_POOL_DESTROY, zfs_ioc_pool_destroy,
5724	    zfs_secpolicy_config, B_FALSE, POOL_CHECK_NONE);
5725	zfs_ioctl_register_pool(ZFS_IOC_POOL_EXPORT, zfs_ioc_pool_export,
5726	    zfs_secpolicy_config, B_FALSE, POOL_CHECK_NONE);
5727
5728	zfs_ioctl_register_pool(ZFS_IOC_POOL_STATS, zfs_ioc_pool_stats,
5729	    zfs_secpolicy_read, B_FALSE, POOL_CHECK_NONE);
5730	zfs_ioctl_register_pool(ZFS_IOC_POOL_GET_PROPS, zfs_ioc_pool_get_props,
5731	    zfs_secpolicy_read, B_FALSE, POOL_CHECK_NONE);
5732
5733	zfs_ioctl_register_pool(ZFS_IOC_ERROR_LOG, zfs_ioc_error_log,
5734	    zfs_secpolicy_inject, B_FALSE, POOL_CHECK_NONE);
5735	zfs_ioctl_register_pool(ZFS_IOC_DSOBJ_TO_DSNAME,
5736	    zfs_ioc_dsobj_to_dsname,
5737	    zfs_secpolicy_diff, B_FALSE, POOL_CHECK_NONE);
5738	zfs_ioctl_register_pool(ZFS_IOC_POOL_GET_HISTORY,
5739	    zfs_ioc_pool_get_history,
5740	    zfs_secpolicy_config, B_FALSE, POOL_CHECK_SUSPENDED);
5741
5742	zfs_ioctl_register_pool(ZFS_IOC_POOL_IMPORT, zfs_ioc_pool_import,
5743	    zfs_secpolicy_config, B_TRUE, POOL_CHECK_NONE);
5744
5745	zfs_ioctl_register_pool(ZFS_IOC_CLEAR, zfs_ioc_clear,
5746	    zfs_secpolicy_config, B_TRUE, POOL_CHECK_NONE);
5747	zfs_ioctl_register_pool(ZFS_IOC_POOL_REOPEN, zfs_ioc_pool_reopen,
5748	    zfs_secpolicy_config, B_TRUE, POOL_CHECK_SUSPENDED);
5749
5750	zfs_ioctl_register_dataset_read(ZFS_IOC_SPACE_WRITTEN,
5751	    zfs_ioc_space_written);
5752	zfs_ioctl_register_dataset_read(ZFS_IOC_OBJSET_RECVD_PROPS,
5753	    zfs_ioc_objset_recvd_props);
5754	zfs_ioctl_register_dataset_read(ZFS_IOC_NEXT_OBJ,
5755	    zfs_ioc_next_obj);
5756	zfs_ioctl_register_dataset_read(ZFS_IOC_GET_FSACL,
5757	    zfs_ioc_get_fsacl);
5758	zfs_ioctl_register_dataset_read(ZFS_IOC_OBJSET_STATS,
5759	    zfs_ioc_objset_stats);
5760	zfs_ioctl_register_dataset_read(ZFS_IOC_OBJSET_ZPLPROPS,
5761	    zfs_ioc_objset_zplprops);
5762	zfs_ioctl_register_dataset_read(ZFS_IOC_DATASET_LIST_NEXT,
5763	    zfs_ioc_dataset_list_next);
5764	zfs_ioctl_register_dataset_read(ZFS_IOC_SNAPSHOT_LIST_NEXT,
5765	    zfs_ioc_snapshot_list_next);
5766	zfs_ioctl_register_dataset_read(ZFS_IOC_SEND_PROGRESS,
5767	    zfs_ioc_send_progress);
5768
5769	zfs_ioctl_register_dataset_read_secpolicy(ZFS_IOC_DIFF,
5770	    zfs_ioc_diff, zfs_secpolicy_diff);
5771	zfs_ioctl_register_dataset_read_secpolicy(ZFS_IOC_OBJ_TO_STATS,
5772	    zfs_ioc_obj_to_stats, zfs_secpolicy_diff);
5773	zfs_ioctl_register_dataset_read_secpolicy(ZFS_IOC_OBJ_TO_PATH,
5774	    zfs_ioc_obj_to_path, zfs_secpolicy_diff);
5775	zfs_ioctl_register_dataset_read_secpolicy(ZFS_IOC_USERSPACE_ONE,
5776	    zfs_ioc_userspace_one, zfs_secpolicy_userspace_one);
5777	zfs_ioctl_register_dataset_read_secpolicy(ZFS_IOC_USERSPACE_MANY,
5778	    zfs_ioc_userspace_many, zfs_secpolicy_userspace_many);
5779	zfs_ioctl_register_dataset_read_secpolicy(ZFS_IOC_SEND,
5780	    zfs_ioc_send, zfs_secpolicy_send);
5781
5782	zfs_ioctl_register_dataset_modify(ZFS_IOC_SET_PROP, zfs_ioc_set_prop,
5783	    zfs_secpolicy_none);
5784	zfs_ioctl_register_dataset_modify(ZFS_IOC_DESTROY, zfs_ioc_destroy,
5785	    zfs_secpolicy_destroy);
5786	zfs_ioctl_register_dataset_modify(ZFS_IOC_RENAME, zfs_ioc_rename,
5787	    zfs_secpolicy_rename);
5788	zfs_ioctl_register_dataset_modify(ZFS_IOC_RECV, zfs_ioc_recv,
5789	    zfs_secpolicy_recv);
5790	zfs_ioctl_register_dataset_modify(ZFS_IOC_PROMOTE, zfs_ioc_promote,
5791	    zfs_secpolicy_promote);
5792	zfs_ioctl_register_dataset_modify(ZFS_IOC_INHERIT_PROP,
5793	    zfs_ioc_inherit_prop, zfs_secpolicy_inherit_prop);
5794	zfs_ioctl_register_dataset_modify(ZFS_IOC_SET_FSACL, zfs_ioc_set_fsacl,
5795	    zfs_secpolicy_set_fsacl);
5796
5797	zfs_ioctl_register_dataset_nolog(ZFS_IOC_SHARE, zfs_ioc_share,
5798	    zfs_secpolicy_share, POOL_CHECK_NONE);
5799	zfs_ioctl_register_dataset_nolog(ZFS_IOC_SMB_ACL, zfs_ioc_smb_acl,
5800	    zfs_secpolicy_smb_acl, POOL_CHECK_NONE);
5801	zfs_ioctl_register_dataset_nolog(ZFS_IOC_USERSPACE_UPGRADE,
5802	    zfs_ioc_userspace_upgrade, zfs_secpolicy_userspace_upgrade,
5803	    POOL_CHECK_SUSPENDED | POOL_CHECK_READONLY);
5804	zfs_ioctl_register_dataset_nolog(ZFS_IOC_TMP_SNAPSHOT,
5805	    zfs_ioc_tmp_snapshot, zfs_secpolicy_tmp_snapshot,
5806	    POOL_CHECK_SUSPENDED | POOL_CHECK_READONLY);
5807
5808#ifdef __FreeBSD__
5809	zfs_ioctl_register_dataset_nolog(ZFS_IOC_JAIL, zfs_ioc_jail,
5810	    zfs_secpolicy_config, POOL_CHECK_NONE);
5811	zfs_ioctl_register_dataset_nolog(ZFS_IOC_UNJAIL, zfs_ioc_unjail,
5812	    zfs_secpolicy_config, POOL_CHECK_NONE);
5813#endif
5814}
5815
5816int
5817pool_status_check(const char *name, zfs_ioc_namecheck_t type,
5818    zfs_ioc_poolcheck_t check)
5819{
5820	spa_t *spa;
5821	int error;
5822
5823	ASSERT(type == POOL_NAME || type == DATASET_NAME);
5824
5825	if (check & POOL_CHECK_NONE)
5826		return (0);
5827
5828	error = spa_open(name, &spa, FTAG);
5829	if (error == 0) {
5830		if ((check & POOL_CHECK_SUSPENDED) && spa_suspended(spa))
5831			error = SET_ERROR(EAGAIN);
5832		else if ((check & POOL_CHECK_READONLY) && !spa_writeable(spa))
5833			error = SET_ERROR(EROFS);
5834		spa_close(spa, FTAG);
5835	}
5836	return (error);
5837}
5838
5839/*
5840 * Find a free minor number.
5841 */
5842minor_t
5843zfsdev_minor_alloc(void)
5844{
5845	static minor_t last_minor;
5846	minor_t m;
5847
5848	ASSERT(MUTEX_HELD(&spa_namespace_lock));
5849
5850	for (m = last_minor + 1; m != last_minor; m++) {
5851		if (m > ZFSDEV_MAX_MINOR)
5852			m = 1;
5853		if (ddi_get_soft_state(zfsdev_state, m) == NULL) {
5854			last_minor = m;
5855			return (m);
5856		}
5857	}
5858
5859	return (0);
5860}
5861
5862static int
5863zfs_ctldev_init(struct cdev *devp)
5864{
5865	minor_t minor;
5866	zfs_soft_state_t *zs;
5867
5868	ASSERT(MUTEX_HELD(&spa_namespace_lock));
5869
5870	minor = zfsdev_minor_alloc();
5871	if (minor == 0)
5872		return (SET_ERROR(ENXIO));
5873
5874	if (ddi_soft_state_zalloc(zfsdev_state, minor) != DDI_SUCCESS)
5875		return (SET_ERROR(EAGAIN));
5876
5877	devfs_set_cdevpriv((void *)(uintptr_t)minor, zfsdev_close);
5878
5879	zs = ddi_get_soft_state(zfsdev_state, minor);
5880	zs->zss_type = ZSST_CTLDEV;
5881	zfs_onexit_init((zfs_onexit_t **)&zs->zss_data);
5882
5883	return (0);
5884}
5885
5886static void
5887zfs_ctldev_destroy(zfs_onexit_t *zo, minor_t minor)
5888{
5889	ASSERT(MUTEX_HELD(&spa_namespace_lock));
5890
5891	zfs_onexit_destroy(zo);
5892	ddi_soft_state_free(zfsdev_state, minor);
5893}
5894
5895void *
5896zfsdev_get_soft_state(minor_t minor, enum zfs_soft_state_type which)
5897{
5898	zfs_soft_state_t *zp;
5899
5900	zp = ddi_get_soft_state(zfsdev_state, minor);
5901	if (zp == NULL || zp->zss_type != which)
5902		return (NULL);
5903
5904	return (zp->zss_data);
5905}
5906
5907static int
5908zfsdev_open(struct cdev *devp, int flag, int mode, struct thread *td)
5909{
5910	int error = 0;
5911
5912#ifdef sun
5913	if (getminor(*devp) != 0)
5914		return (zvol_open(devp, flag, otyp, cr));
5915#endif
5916
5917	/* This is the control device. Allocate a new minor if requested. */
5918	if (flag & FEXCL) {
5919		mutex_enter(&spa_namespace_lock);
5920		error = zfs_ctldev_init(devp);
5921		mutex_exit(&spa_namespace_lock);
5922	}
5923
5924	return (error);
5925}
5926
5927static void
5928zfsdev_close(void *data)
5929{
5930	zfs_onexit_t *zo;
5931	minor_t minor = (minor_t)(uintptr_t)data;
5932
5933	if (minor == 0)
5934		return;
5935
5936	mutex_enter(&spa_namespace_lock);
5937	zo = zfsdev_get_soft_state(minor, ZSST_CTLDEV);
5938	if (zo == NULL) {
5939		mutex_exit(&spa_namespace_lock);
5940		return;
5941	}
5942	zfs_ctldev_destroy(zo, minor);
5943	mutex_exit(&spa_namespace_lock);
5944}
5945
5946static int
5947zfsdev_ioctl(struct cdev *dev, u_long zcmd, caddr_t arg, int flag,
5948    struct thread *td)
5949{
5950	zfs_cmd_t *zc;
5951	uint_t vecnum;
5952	int error, rc, len;
5953#ifdef illumos
5954	minor_t minor = getminor(dev);
5955#else
5956	zfs_iocparm_t *zc_iocparm;
5957	int cflag, cmd, oldvecnum;
5958	boolean_t newioc, compat;
5959	void *compat_zc = NULL;
5960	cred_t *cr = td->td_ucred;
5961#endif
5962	const zfs_ioc_vec_t *vec;
5963	char *saved_poolname = NULL;
5964	nvlist_t *innvl = NULL;
5965
5966	cflag = ZFS_CMD_COMPAT_NONE;
5967	compat = B_FALSE;
5968	newioc = B_TRUE;	/* "new" style (zfs_iocparm_t) ioctl */
5969
5970	len = IOCPARM_LEN(zcmd);
5971	vecnum = cmd = zcmd & 0xff;
5972
5973	/*
5974	 * Check if we are talking to supported older binaries
5975	 * and translate zfs_cmd if necessary
5976	 */
5977	if (len != sizeof(zfs_iocparm_t)) {
5978		newioc = B_FALSE;
5979		compat = B_TRUE;
5980
5981		vecnum = cmd;
5982
5983		switch (len) {
5984		case sizeof(zfs_cmd_zcmd_t):
5985			cflag = ZFS_CMD_COMPAT_LZC;
5986			break;
5987		case sizeof(zfs_cmd_deadman_t):
5988			cflag = ZFS_CMD_COMPAT_DEADMAN;
5989			break;
5990		case sizeof(zfs_cmd_v28_t):
5991			cflag = ZFS_CMD_COMPAT_V28;
5992			break;
5993		case sizeof(zfs_cmd_v15_t):
5994			cflag = ZFS_CMD_COMPAT_V15;
5995			vecnum = zfs_ioctl_v15_to_v28[cmd];
5996
5997			/*
5998			 * Return without further handling
5999			 * if the command is blacklisted.
6000			 */
6001			if (vecnum == ZFS_IOC_COMPAT_PASS)
6002				return (0);
6003			else if (vecnum == ZFS_IOC_COMPAT_FAIL)
6004				return (ENOTSUP);
6005			break;
6006		default:
6007			return (EINVAL);
6008		}
6009	}
6010
6011#ifdef illumos
6012	vecnum = cmd - ZFS_IOC_FIRST;
6013	ASSERT3U(getmajor(dev), ==, ddi_driver_major(zfs_dip));
6014#endif
6015
6016	if (vecnum >= sizeof (zfs_ioc_vec) / sizeof (zfs_ioc_vec[0]))
6017		return (SET_ERROR(EINVAL));
6018	vec = &zfs_ioc_vec[vecnum];
6019
6020	zc = kmem_zalloc(sizeof(zfs_cmd_t), KM_SLEEP);
6021
6022#ifdef illumos
6023	error = ddi_copyin((void *)arg, zc, sizeof (zfs_cmd_t), flag);
6024	if (error != 0) {
6025		error = SET_ERROR(EFAULT);
6026		goto out;
6027	}
6028#else	/* !illumos */
6029	bzero(zc, sizeof(zfs_cmd_t));
6030
6031	if (newioc) {
6032		zc_iocparm = (void *)arg;
6033
6034		switch (zc_iocparm->zfs_ioctl_version) {
6035		case ZFS_IOCVER_CURRENT:
6036			if (zc_iocparm->zfs_cmd_size != sizeof(zfs_cmd_t)) {
6037				error = SET_ERROR(EINVAL);
6038				goto out;
6039			}
6040			break;
6041		case ZFS_IOCVER_ZCMD:
6042			if (zc_iocparm->zfs_cmd_size > sizeof(zfs_cmd_t) ||
6043			    zc_iocparm->zfs_cmd_size < sizeof(zfs_cmd_zcmd_t)) {
6044				error = SET_ERROR(EFAULT);
6045				goto out;
6046			}
6047			compat = B_TRUE;
6048			cflag = ZFS_CMD_COMPAT_ZCMD;
6049			break;
6050		default:
6051			error = SET_ERROR(EINVAL);
6052			goto out;
6053			/* NOTREACHED */
6054		}
6055
6056		if (compat) {
6057			ASSERT(sizeof(zfs_cmd_t) >= zc_iocparm->zfs_cmd_size);
6058			compat_zc = kmem_zalloc(sizeof(zfs_cmd_t), KM_SLEEP);
6059			bzero(compat_zc, sizeof(zfs_cmd_t));
6060
6061			error = ddi_copyin((void *)(uintptr_t)zc_iocparm->zfs_cmd,
6062			    compat_zc, zc_iocparm->zfs_cmd_size, flag);
6063			if (error != 0) {
6064				error = SET_ERROR(EFAULT);
6065				goto out;
6066			}
6067		} else {
6068			error = ddi_copyin((void *)(uintptr_t)zc_iocparm->zfs_cmd,
6069			    zc, zc_iocparm->zfs_cmd_size, flag);
6070			if (error != 0) {
6071				error = SET_ERROR(EFAULT);
6072				goto out;
6073			}
6074		}
6075	}
6076
6077	if (compat) {
6078		if (newioc) {
6079			ASSERT(compat_zc != NULL);
6080			zfs_cmd_compat_get(zc, compat_zc, cflag);
6081		} else {
6082			ASSERT(compat_zc == NULL);
6083			zfs_cmd_compat_get(zc, arg, cflag);
6084		}
6085		oldvecnum = vecnum;
6086		error = zfs_ioctl_compat_pre(zc, &vecnum, cflag);
6087		if (error != 0)
6088			goto out;
6089		if (oldvecnum != vecnum)
6090			vec = &zfs_ioc_vec[vecnum];
6091	}
6092#endif	/* !illumos */
6093
6094	zc->zc_iflags = flag & FKIOCTL;
6095	if (zc->zc_nvlist_src_size != 0) {
6096		error = get_nvlist(zc->zc_nvlist_src, zc->zc_nvlist_src_size,
6097		    zc->zc_iflags, &innvl);
6098		if (error != 0)
6099			goto out;
6100	}
6101
6102	/* rewrite innvl for backwards compatibility */
6103	if (compat)
6104		innvl = zfs_ioctl_compat_innvl(zc, innvl, vecnum, cflag);
6105
6106	/*
6107	 * Ensure that all pool/dataset names are valid before we pass down to
6108	 * the lower layers.
6109	 */
6110	zc->zc_name[sizeof (zc->zc_name) - 1] = '\0';
6111	switch (vec->zvec_namecheck) {
6112	case POOL_NAME:
6113		if (pool_namecheck(zc->zc_name, NULL, NULL) != 0)
6114			error = SET_ERROR(EINVAL);
6115		else
6116			error = pool_status_check(zc->zc_name,
6117			    vec->zvec_namecheck, vec->zvec_pool_check);
6118		break;
6119
6120	case DATASET_NAME:
6121		if (dataset_namecheck(zc->zc_name, NULL, NULL) != 0)
6122			error = SET_ERROR(EINVAL);
6123		else
6124			error = pool_status_check(zc->zc_name,
6125			    vec->zvec_namecheck, vec->zvec_pool_check);
6126		break;
6127
6128	case NO_NAME:
6129		break;
6130	}
6131
6132	if (error == 0 && !(flag & FKIOCTL))
6133		error = vec->zvec_secpolicy(zc, innvl, cr);
6134
6135	if (error != 0)
6136		goto out;
6137
6138	/* legacy ioctls can modify zc_name */
6139	len = strcspn(zc->zc_name, "/@#") + 1;
6140	saved_poolname = kmem_alloc(len, KM_SLEEP);
6141	(void) strlcpy(saved_poolname, zc->zc_name, len);
6142
6143	if (vec->zvec_func != NULL) {
6144		nvlist_t *outnvl;
6145		int puterror = 0;
6146		spa_t *spa;
6147		nvlist_t *lognv = NULL;
6148
6149		ASSERT(vec->zvec_legacy_func == NULL);
6150
6151		/*
6152		 * Add the innvl to the lognv before calling the func,
6153		 * in case the func changes the innvl.
6154		 */
6155		if (vec->zvec_allow_log) {
6156			lognv = fnvlist_alloc();
6157			fnvlist_add_string(lognv, ZPOOL_HIST_IOCTL,
6158			    vec->zvec_name);
6159			if (!nvlist_empty(innvl)) {
6160				fnvlist_add_nvlist(lognv, ZPOOL_HIST_INPUT_NVL,
6161				    innvl);
6162			}
6163		}
6164
6165		outnvl = fnvlist_alloc();
6166		error = vec->zvec_func(zc->zc_name, innvl, outnvl);
6167
6168		if (error == 0 && vec->zvec_allow_log &&
6169		    spa_open(zc->zc_name, &spa, FTAG) == 0) {
6170			if (!nvlist_empty(outnvl)) {
6171				fnvlist_add_nvlist(lognv, ZPOOL_HIST_OUTPUT_NVL,
6172				    outnvl);
6173			}
6174			(void) spa_history_log_nvl(spa, lognv);
6175			spa_close(spa, FTAG);
6176		}
6177		fnvlist_free(lognv);
6178
6179		/* rewrite outnvl for backwards compatibility */
6180		if (compat)
6181			outnvl = zfs_ioctl_compat_outnvl(zc, outnvl, vecnum,
6182			    cflag);
6183
6184		if (!nvlist_empty(outnvl) || zc->zc_nvlist_dst_size != 0) {
6185			int smusherror = 0;
6186			if (vec->zvec_smush_outnvlist) {
6187				smusherror = nvlist_smush(outnvl,
6188				    zc->zc_nvlist_dst_size);
6189			}
6190			if (smusherror == 0)
6191				puterror = put_nvlist(zc, outnvl);
6192		}
6193
6194		if (puterror != 0)
6195			error = puterror;
6196
6197		nvlist_free(outnvl);
6198	} else {
6199		error = vec->zvec_legacy_func(zc);
6200	}
6201
6202out:
6203	nvlist_free(innvl);
6204
6205#ifdef illumos
6206	rc = ddi_copyout(zc, (void *)arg, sizeof (zfs_cmd_t), flag);
6207	if (error == 0 && rc != 0)
6208		error = SET_ERROR(EFAULT);
6209#else
6210	if (compat) {
6211		zfs_ioctl_compat_post(zc, cmd, cflag);
6212		if (newioc) {
6213			ASSERT(compat_zc != NULL);
6214			ASSERT(sizeof(zfs_cmd_t) >= zc_iocparm->zfs_cmd_size);
6215
6216			zfs_cmd_compat_put(zc, compat_zc, vecnum, cflag);
6217			rc = ddi_copyout(compat_zc,
6218			    (void *)(uintptr_t)zc_iocparm->zfs_cmd,
6219			    zc_iocparm->zfs_cmd_size, flag);
6220			if (error == 0 && rc != 0)
6221				error = SET_ERROR(EFAULT);
6222			kmem_free(compat_zc, sizeof (zfs_cmd_t));
6223		} else {
6224			zfs_cmd_compat_put(zc, arg, vecnum, cflag);
6225		}
6226	} else {
6227		ASSERT(newioc);
6228
6229		rc = ddi_copyout(zc, (void *)(uintptr_t)zc_iocparm->zfs_cmd,
6230		    sizeof (zfs_cmd_t), flag);
6231		if (error == 0 && rc != 0)
6232			error = SET_ERROR(EFAULT);
6233	}
6234#endif
6235	if (error == 0 && vec->zvec_allow_log) {
6236		char *s = tsd_get(zfs_allow_log_key);
6237		if (s != NULL)
6238			strfree(s);
6239		(void) tsd_set(zfs_allow_log_key, saved_poolname);
6240	} else {
6241		if (saved_poolname != NULL)
6242			strfree(saved_poolname);
6243	}
6244
6245	kmem_free(zc, sizeof (zfs_cmd_t));
6246	return (error);
6247}
6248
6249#ifdef sun
6250static int
6251zfs_attach(dev_info_t *dip, ddi_attach_cmd_t cmd)
6252{
6253	if (cmd != DDI_ATTACH)
6254		return (DDI_FAILURE);
6255
6256	if (ddi_create_minor_node(dip, "zfs", S_IFCHR, 0,
6257	    DDI_PSEUDO, 0) == DDI_FAILURE)
6258		return (DDI_FAILURE);
6259
6260	zfs_dip = dip;
6261
6262	ddi_report_dev(dip);
6263
6264	return (DDI_SUCCESS);
6265}
6266
6267static int
6268zfs_detach(dev_info_t *dip, ddi_detach_cmd_t cmd)
6269{
6270	if (spa_busy() || zfs_busy() || zvol_busy())
6271		return (DDI_FAILURE);
6272
6273	if (cmd != DDI_DETACH)
6274		return (DDI_FAILURE);
6275
6276	zfs_dip = NULL;
6277
6278	ddi_prop_remove_all(dip);
6279	ddi_remove_minor_node(dip, NULL);
6280
6281	return (DDI_SUCCESS);
6282}
6283
6284/*ARGSUSED*/
6285static int
6286zfs_info(dev_info_t *dip, ddi_info_cmd_t infocmd, void *arg, void **result)
6287{
6288	switch (infocmd) {
6289	case DDI_INFO_DEVT2DEVINFO:
6290		*result = zfs_dip;
6291		return (DDI_SUCCESS);
6292
6293	case DDI_INFO_DEVT2INSTANCE:
6294		*result = (void *)0;
6295		return (DDI_SUCCESS);
6296	}
6297
6298	return (DDI_FAILURE);
6299}
6300#endif	/* sun */
6301
6302/*
6303 * OK, so this is a little weird.
6304 *
6305 * /dev/zfs is the control node, i.e. minor 0.
6306 * /dev/zvol/[r]dsk/pool/dataset are the zvols, minor > 0.
6307 *
6308 * /dev/zfs has basically nothing to do except serve up ioctls,
6309 * so most of the standard driver entry points are in zvol.c.
6310 */
6311#ifdef sun
6312static struct cb_ops zfs_cb_ops = {
6313	zfsdev_open,	/* open */
6314	zfsdev_close,	/* close */
6315	zvol_strategy,	/* strategy */
6316	nodev,		/* print */
6317	zvol_dump,	/* dump */
6318	zvol_read,	/* read */
6319	zvol_write,	/* write */
6320	zfsdev_ioctl,	/* ioctl */
6321	nodev,		/* devmap */
6322	nodev,		/* mmap */
6323	nodev,		/* segmap */
6324	nochpoll,	/* poll */
6325	ddi_prop_op,	/* prop_op */
6326	NULL,		/* streamtab */
6327	D_NEW | D_MP | D_64BIT,		/* Driver compatibility flag */
6328	CB_REV,		/* version */
6329	nodev,		/* async read */
6330	nodev,		/* async write */
6331};
6332
6333static struct dev_ops zfs_dev_ops = {
6334	DEVO_REV,	/* version */
6335	0,		/* refcnt */
6336	zfs_info,	/* info */
6337	nulldev,	/* identify */
6338	nulldev,	/* probe */
6339	zfs_attach,	/* attach */
6340	zfs_detach,	/* detach */
6341	nodev,		/* reset */
6342	&zfs_cb_ops,	/* driver operations */
6343	NULL,		/* no bus operations */
6344	NULL,		/* power */
6345	ddi_quiesce_not_needed,	/* quiesce */
6346};
6347
6348static struct modldrv zfs_modldrv = {
6349	&mod_driverops,
6350	"ZFS storage pool",
6351	&zfs_dev_ops
6352};
6353
6354static struct modlinkage modlinkage = {
6355	MODREV_1,
6356	(void *)&zfs_modlfs,
6357	(void *)&zfs_modldrv,
6358	NULL
6359};
6360#endif	/* sun */
6361
6362static struct cdevsw zfs_cdevsw = {
6363	.d_version =	D_VERSION,
6364	.d_open =	zfsdev_open,
6365	.d_ioctl =	zfsdev_ioctl,
6366	.d_name =	ZFS_DEV_NAME
6367};
6368
6369static void
6370zfs_allow_log_destroy(void *arg)
6371{
6372	char *poolname = arg;
6373	strfree(poolname);
6374}
6375
6376static void
6377zfsdev_init(void)
6378{
6379	zfsdev = make_dev(&zfs_cdevsw, 0x0, UID_ROOT, GID_OPERATOR, 0666,
6380	    ZFS_DEV_NAME);
6381}
6382
6383static void
6384zfsdev_fini(void)
6385{
6386	if (zfsdev != NULL)
6387		destroy_dev(zfsdev);
6388}
6389
6390static struct root_hold_token *zfs_root_token;
6391struct proc *zfsproc;
6392
6393#ifdef sun
6394int
6395_init(void)
6396{
6397	int error;
6398
6399	spa_init(FREAD | FWRITE);
6400	zfs_init();
6401	zvol_init();
6402	zfs_ioctl_init();
6403
6404	if ((error = mod_install(&modlinkage)) != 0) {
6405		zvol_fini();
6406		zfs_fini();
6407		spa_fini();
6408		return (error);
6409	}
6410
6411	tsd_create(&zfs_fsyncer_key, NULL);
6412	tsd_create(&rrw_tsd_key, rrw_tsd_destroy);
6413	tsd_create(&zfs_allow_log_key, zfs_allow_log_destroy);
6414
6415	error = ldi_ident_from_mod(&modlinkage, &zfs_li);
6416	ASSERT(error == 0);
6417	mutex_init(&zfs_share_lock, NULL, MUTEX_DEFAULT, NULL);
6418
6419	return (0);
6420}
6421
6422int
6423_fini(void)
6424{
6425	int error;
6426
6427	if (spa_busy() || zfs_busy() || zvol_busy() || zio_injection_enabled)
6428		return (SET_ERROR(EBUSY));
6429
6430	if ((error = mod_remove(&modlinkage)) != 0)
6431		return (error);
6432
6433	zvol_fini();
6434	zfs_fini();
6435	spa_fini();
6436	if (zfs_nfsshare_inited)
6437		(void) ddi_modclose(nfs_mod);
6438	if (zfs_smbshare_inited)
6439		(void) ddi_modclose(smbsrv_mod);
6440	if (zfs_nfsshare_inited || zfs_smbshare_inited)
6441		(void) ddi_modclose(sharefs_mod);
6442
6443	tsd_destroy(&zfs_fsyncer_key);
6444	ldi_ident_release(zfs_li);
6445	zfs_li = NULL;
6446	mutex_destroy(&zfs_share_lock);
6447
6448	return (error);
6449}
6450
6451int
6452_info(struct modinfo *modinfop)
6453{
6454	return (mod_info(&modlinkage, modinfop));
6455}
6456#endif	/* sun */
6457
6458static int zfs__init(void);
6459static int zfs__fini(void);
6460static void zfs_shutdown(void *, int);
6461
6462static eventhandler_tag zfs_shutdown_event_tag;
6463
6464int
6465zfs__init(void)
6466{
6467
6468	zfs_root_token = root_mount_hold("ZFS");
6469
6470	mutex_init(&zfs_share_lock, NULL, MUTEX_DEFAULT, NULL);
6471
6472	spa_init(FREAD | FWRITE);
6473	zfs_init();
6474	zvol_init();
6475	zfs_ioctl_init();
6476
6477	tsd_create(&zfs_fsyncer_key, NULL);
6478	tsd_create(&rrw_tsd_key, rrw_tsd_destroy);
6479	tsd_create(&zfs_allow_log_key, zfs_allow_log_destroy);
6480
6481	printf("ZFS storage pool version: features support (" SPA_VERSION_STRING ")\n");
6482	root_mount_rel(zfs_root_token);
6483
6484	zfsdev_init();
6485
6486	return (0);
6487}
6488
6489int
6490zfs__fini(void)
6491{
6492	if (spa_busy() || zfs_busy() || zvol_busy() ||
6493	    zio_injection_enabled) {
6494		return (EBUSY);
6495	}
6496
6497	zfsdev_fini();
6498	zvol_fini();
6499	zfs_fini();
6500	spa_fini();
6501
6502	tsd_destroy(&zfs_fsyncer_key);
6503	tsd_destroy(&rrw_tsd_key);
6504	tsd_destroy(&zfs_allow_log_key);
6505
6506	mutex_destroy(&zfs_share_lock);
6507
6508	return (0);
6509}
6510
6511static void
6512zfs_shutdown(void *arg __unused, int howto __unused)
6513{
6514
6515	/*
6516	 * ZFS fini routines can not properly work in a panic-ed system.
6517	 */
6518	if (panicstr == NULL)
6519		(void)zfs__fini();
6520}
6521
6522
6523static int
6524zfs_modevent(module_t mod, int type, void *unused __unused)
6525{
6526	int err;
6527
6528	switch (type) {
6529	case MOD_LOAD:
6530		err = zfs__init();
6531		if (err == 0)
6532			zfs_shutdown_event_tag = EVENTHANDLER_REGISTER(
6533			    shutdown_post_sync, zfs_shutdown, NULL,
6534			    SHUTDOWN_PRI_FIRST);
6535		return (err);
6536	case MOD_UNLOAD:
6537		err = zfs__fini();
6538		if (err == 0 && zfs_shutdown_event_tag != NULL)
6539			EVENTHANDLER_DEREGISTER(shutdown_post_sync,
6540			    zfs_shutdown_event_tag);
6541		return (err);
6542	case MOD_SHUTDOWN:
6543		return (0);
6544	default:
6545		break;
6546	}
6547	return (EOPNOTSUPP);
6548}
6549
6550static moduledata_t zfs_mod = {
6551	"zfsctrl",
6552	zfs_modevent,
6553	0
6554};
6555DECLARE_MODULE(zfsctrl, zfs_mod, SI_SUB_VFS, SI_ORDER_ANY);
6556MODULE_VERSION(zfsctrl, 1);
6557MODULE_DEPEND(zfsctrl, opensolaris, 1, 1, 1);
6558MODULE_DEPEND(zfsctrl, krpc, 1, 1, 1);
6559MODULE_DEPEND(zfsctrl, acl_nfs4, 1, 1, 1);
6560