xref: /titanic_51/usr/src/cmd/zfs/zfs_iter.c (revision 99653d4ee642c6528e88224f12409a5f23060994)
1fa9e4066Sahrens /*
2fa9e4066Sahrens  * CDDL HEADER START
3fa9e4066Sahrens  *
4fa9e4066Sahrens  * The contents of this file are subject to the terms of the
5*99653d4eSeschrock  * Common Development and Distribution License (the "License").
6*99653d4eSeschrock  * You may not use this file except in compliance with the License.
7fa9e4066Sahrens  *
8fa9e4066Sahrens  * You can obtain a copy of the license at usr/src/OPENSOLARIS.LICENSE
9fa9e4066Sahrens  * or http://www.opensolaris.org/os/licensing.
10fa9e4066Sahrens  * See the License for the specific language governing permissions
11fa9e4066Sahrens  * and limitations under the License.
12fa9e4066Sahrens  *
13fa9e4066Sahrens  * When distributing Covered Code, include this CDDL HEADER in each
14fa9e4066Sahrens  * file and include the License file at usr/src/OPENSOLARIS.LICENSE.
15fa9e4066Sahrens  * If applicable, add the following below this CDDL HEADER, with the
16fa9e4066Sahrens  * fields enclosed by brackets "[]" replaced with your own identifying
17fa9e4066Sahrens  * information: Portions Copyright [yyyy] [name of copyright owner]
18fa9e4066Sahrens  *
19fa9e4066Sahrens  * CDDL HEADER END
20fa9e4066Sahrens  */
21fa9e4066Sahrens /*
227f7322feSeschrock  * Copyright 2006 Sun Microsystems, Inc.  All rights reserved.
23fa9e4066Sahrens  * Use is subject to license terms.
24fa9e4066Sahrens  */
25fa9e4066Sahrens 
26fa9e4066Sahrens #pragma ident	"%Z%%M%	%I%	%E% SMI"
27fa9e4066Sahrens 
28fa9e4066Sahrens #include <libintl.h>
29fa9e4066Sahrens #include <libuutil.h>
30fa9e4066Sahrens #include <stddef.h>
31fa9e4066Sahrens #include <stdio.h>
32fa9e4066Sahrens #include <stdlib.h>
33fa9e4066Sahrens #include <strings.h>
34fa9e4066Sahrens 
35fa9e4066Sahrens #include <libzfs.h>
36fa9e4066Sahrens 
37fa9e4066Sahrens #include "zfs_util.h"
38fa9e4066Sahrens 
39fa9e4066Sahrens /*
40fa9e4066Sahrens  * This is a private interface used to gather up all the datasets specified on
41fa9e4066Sahrens  * the command line so that we can iterate over them in order.
42fa9e4066Sahrens  *
43fa9e4066Sahrens  * First, we iterate over all filesystems, gathering them together into an
44fa9e4066Sahrens  * AVL tree sorted by name.  For snapshots, we order them according to
45fa9e4066Sahrens  * creation time.  We report errors for any explicitly specified datasets
46fa9e4066Sahrens  * that we couldn't open.
47fa9e4066Sahrens  *
48fa9e4066Sahrens  * When finished, we have an AVL tree of ZFS handles.  We go through and execute
49fa9e4066Sahrens  * the provided callback for each one, passing whatever data the user supplied.
50fa9e4066Sahrens  */
51fa9e4066Sahrens 
52fa9e4066Sahrens typedef struct zfs_node {
53fa9e4066Sahrens 	zfs_handle_t	*zn_handle;
54fa9e4066Sahrens 	uu_avl_node_t	zn_avlnode;
55fa9e4066Sahrens } zfs_node_t;
56fa9e4066Sahrens 
57fa9e4066Sahrens typedef struct callback_data {
58fa9e4066Sahrens 	uu_avl_t	*cb_avl;
59fa9e4066Sahrens 	int		cb_recurse;
60fa9e4066Sahrens 	zfs_type_t	cb_types;
61fa9e4066Sahrens } callback_data_t;
62fa9e4066Sahrens 
63fa9e4066Sahrens uu_avl_pool_t *avl_pool;
64fa9e4066Sahrens 
65fa9e4066Sahrens /*
66fa9e4066Sahrens  * Called for each dataset.  If the object the object is of an appropriate type,
67fa9e4066Sahrens  * add it to the avl tree and recurse over any children as necessary.
68fa9e4066Sahrens  */
69fa9e4066Sahrens int
70fa9e4066Sahrens zfs_callback(zfs_handle_t *zhp, void *data)
71fa9e4066Sahrens {
72fa9e4066Sahrens 	callback_data_t *cb = data;
73fa9e4066Sahrens 	int dontclose = 0;
74fa9e4066Sahrens 
75fa9e4066Sahrens 	/*
76fa9e4066Sahrens 	 * If this object is of the appropriate type, add it to the AVL tree.
77fa9e4066Sahrens 	 */
78fa9e4066Sahrens 	if (zfs_get_type(zhp) & cb->cb_types) {
79fa9e4066Sahrens 		uu_avl_index_t idx;
80fa9e4066Sahrens 		zfs_node_t *node = safe_malloc(sizeof (zfs_node_t));
81fa9e4066Sahrens 
82fa9e4066Sahrens 		node->zn_handle = zhp;
83fa9e4066Sahrens 		uu_avl_node_init(node, &node->zn_avlnode, avl_pool);
84fa9e4066Sahrens 		if (uu_avl_find(cb->cb_avl, node, NULL, &idx) == NULL) {
85fa9e4066Sahrens 			uu_avl_insert(cb->cb_avl, node, idx);
86fa9e4066Sahrens 			dontclose = 1;
87fa9e4066Sahrens 		} else {
88fa9e4066Sahrens 			free(node);
89fa9e4066Sahrens 		}
90fa9e4066Sahrens 	}
91fa9e4066Sahrens 
92fa9e4066Sahrens 	/*
937f7322feSeschrock 	 * Recurse if necessary.
94fa9e4066Sahrens 	 */
95fa9e4066Sahrens 	if (cb->cb_recurse && (zfs_get_type(zhp) == ZFS_TYPE_FILESYSTEM ||
967f7322feSeschrock 	    (zfs_get_type(zhp) == ZFS_TYPE_VOLUME && (cb->cb_types &
977f7322feSeschrock 	    ZFS_TYPE_SNAPSHOT))))
98fa9e4066Sahrens 		(void) zfs_iter_children(zhp, zfs_callback, data);
99fa9e4066Sahrens 
100fa9e4066Sahrens 	if (!dontclose)
101fa9e4066Sahrens 		zfs_close(zhp);
102fa9e4066Sahrens 
103fa9e4066Sahrens 	return (0);
104fa9e4066Sahrens }
105fa9e4066Sahrens 
106fa9e4066Sahrens /* ARGSUSED */
107fa9e4066Sahrens static int
108fa9e4066Sahrens zfs_compare(const void *larg, const void *rarg, void *unused)
109fa9e4066Sahrens {
110fa9e4066Sahrens 	zfs_handle_t *l = ((zfs_node_t *)larg)->zn_handle;
111fa9e4066Sahrens 	zfs_handle_t *r = ((zfs_node_t *)rarg)->zn_handle;
112fa9e4066Sahrens 	const char *lname = zfs_get_name(l);
113fa9e4066Sahrens 	const char *rname = zfs_get_name(r);
114fa9e4066Sahrens 	char *lat, *rat;
115fa9e4066Sahrens 	uint64_t lcreate, rcreate;
116fa9e4066Sahrens 	int ret;
117fa9e4066Sahrens 
118fa9e4066Sahrens 	lat = (char *)strchr(lname, '@');
119fa9e4066Sahrens 	rat = (char *)strchr(rname, '@');
120fa9e4066Sahrens 
121fa9e4066Sahrens 	if (lat != NULL)
122fa9e4066Sahrens 		*lat = '\0';
123fa9e4066Sahrens 	if (rat != NULL)
124fa9e4066Sahrens 		*rat = '\0';
125fa9e4066Sahrens 
126fa9e4066Sahrens 	ret = strcmp(lname, rname);
127fa9e4066Sahrens 	if (ret == 0) {
128fa9e4066Sahrens 		/*
129fa9e4066Sahrens 		 * If we're comparing a dataset to one of its snapshots, we
130fa9e4066Sahrens 		 * always make the full dataset first.
131fa9e4066Sahrens 		 */
132fa9e4066Sahrens 		if (lat == NULL) {
133fa9e4066Sahrens 			ret = -1;
134fa9e4066Sahrens 		} else if (rat == NULL) {
135fa9e4066Sahrens 			ret = 1;
136fa9e4066Sahrens 		} else {
137fa9e4066Sahrens 			/*
138fa9e4066Sahrens 			 * If we have two snapshots from the same dataset, then
139fa9e4066Sahrens 			 * we want to sort them according to creation time.  We
140fa9e4066Sahrens 			 * use the hidden CREATETXG property to get an absolute
141fa9e4066Sahrens 			 * ordering of snapshots.
142fa9e4066Sahrens 			 */
143fa9e4066Sahrens 			lcreate = zfs_prop_get_int(l, ZFS_PROP_CREATETXG);
144fa9e4066Sahrens 			rcreate = zfs_prop_get_int(r, ZFS_PROP_CREATETXG);
145fa9e4066Sahrens 
146fa9e4066Sahrens 			if (lcreate < rcreate)
147fa9e4066Sahrens 				ret = -1;
148fa9e4066Sahrens 			else if (lcreate > rcreate)
149fa9e4066Sahrens 				ret = 1;
150fa9e4066Sahrens 		}
151fa9e4066Sahrens 	}
152fa9e4066Sahrens 
153fa9e4066Sahrens 	if (lat != NULL)
154fa9e4066Sahrens 		*lat = '@';
155fa9e4066Sahrens 	if (rat != NULL)
156fa9e4066Sahrens 		*rat = '@';
157fa9e4066Sahrens 
158fa9e4066Sahrens 	return (ret);
159fa9e4066Sahrens }
160fa9e4066Sahrens 
161fa9e4066Sahrens int
162*99653d4eSeschrock zfs_for_each(int argc, char **argv, boolean_t recurse, zfs_type_t types,
163fa9e4066Sahrens     zfs_iter_f callback, void *data)
164fa9e4066Sahrens {
165fa9e4066Sahrens 	callback_data_t cb;
166fa9e4066Sahrens 	int ret = 0;
167fa9e4066Sahrens 	zfs_node_t *node;
168fa9e4066Sahrens 	uu_avl_walk_t *walk;
169fa9e4066Sahrens 
170fa9e4066Sahrens 	avl_pool = uu_avl_pool_create("zfs_pool", sizeof (zfs_node_t),
171fa9e4066Sahrens 	    offsetof(zfs_node_t, zn_avlnode), zfs_compare, UU_DEFAULT);
172fa9e4066Sahrens 
173fa9e4066Sahrens 	if (avl_pool == NULL) {
174fa9e4066Sahrens 		(void) fprintf(stderr,
175fa9e4066Sahrens 		    gettext("internal error: out of memory\n"));
176fa9e4066Sahrens 		exit(1);
177fa9e4066Sahrens 	}
178fa9e4066Sahrens 
179fa9e4066Sahrens 	cb.cb_recurse = recurse;
180fa9e4066Sahrens 	cb.cb_types = types;
181fa9e4066Sahrens 	if ((cb.cb_avl = uu_avl_create(avl_pool, NULL, UU_DEFAULT)) == NULL) {
182fa9e4066Sahrens 		(void) fprintf(stderr,
183fa9e4066Sahrens 		    gettext("internal error: out of memory\n"));
184fa9e4066Sahrens 		exit(1);
185fa9e4066Sahrens 	}
186fa9e4066Sahrens 
187fa9e4066Sahrens 	if (argc == 0) {
188fa9e4066Sahrens 		/*
189fa9e4066Sahrens 		 * If given no arguments, iterate over all datasets.
190fa9e4066Sahrens 		 */
191fa9e4066Sahrens 		cb.cb_recurse = 1;
192*99653d4eSeschrock 		ret = zfs_iter_root(g_zfs, zfs_callback, &cb);
193fa9e4066Sahrens 	} else {
194fa9e4066Sahrens 		int i;
195fa9e4066Sahrens 		zfs_handle_t *zhp;
196fa9e4066Sahrens 		zfs_type_t argtype;
197fa9e4066Sahrens 
198fa9e4066Sahrens 		/*
199fa9e4066Sahrens 		 * If we're recursive, then we always allow filesystems as
200fa9e4066Sahrens 		 * arguments.  If we also are interested in snapshots, then we
201fa9e4066Sahrens 		 * can take volumes as well.
202fa9e4066Sahrens 		 */
203fa9e4066Sahrens 		argtype = types;
204fa9e4066Sahrens 		if (recurse) {
205fa9e4066Sahrens 			argtype |= ZFS_TYPE_FILESYSTEM;
206fa9e4066Sahrens 			if (types & ZFS_TYPE_SNAPSHOT)
207fa9e4066Sahrens 				argtype |= ZFS_TYPE_VOLUME;
208fa9e4066Sahrens 		}
209fa9e4066Sahrens 
210fa9e4066Sahrens 		for (i = 0; i < argc; i++) {
211*99653d4eSeschrock 			if ((zhp = zfs_open(g_zfs, argv[i], argtype)) != NULL)
212*99653d4eSeschrock 				ret |= zfs_callback(zhp, &cb);
213fa9e4066Sahrens 			else
214fa9e4066Sahrens 				ret = 1;
215fa9e4066Sahrens 		}
216fa9e4066Sahrens 	}
217fa9e4066Sahrens 
218fa9e4066Sahrens 	/*
219fa9e4066Sahrens 	 * At this point we've got our AVL tree full of zfs handles, so iterate
220fa9e4066Sahrens 	 * over each one and execute the real user callback.
221fa9e4066Sahrens 	 */
222fa9e4066Sahrens 	for (node = uu_avl_first(cb.cb_avl); node != NULL;
223fa9e4066Sahrens 	    node = uu_avl_next(cb.cb_avl, node))
224fa9e4066Sahrens 		ret |= callback(node->zn_handle, data);
225fa9e4066Sahrens 
226fa9e4066Sahrens 	/*
227fa9e4066Sahrens 	 * Finally, clean up the AVL tree.
228fa9e4066Sahrens 	 */
229fa9e4066Sahrens 	if ((walk = uu_avl_walk_start(cb.cb_avl, UU_WALK_ROBUST)) == NULL) {
230fa9e4066Sahrens 		(void) fprintf(stderr,
231fa9e4066Sahrens 		    gettext("internal error: out of memory"));
232fa9e4066Sahrens 		exit(1);
233fa9e4066Sahrens 	}
234fa9e4066Sahrens 
235fa9e4066Sahrens 	while ((node = uu_avl_walk_next(walk)) != NULL) {
236fa9e4066Sahrens 		uu_avl_remove(cb.cb_avl, node);
237fa9e4066Sahrens 		zfs_close(node->zn_handle);
238fa9e4066Sahrens 		free(node);
239fa9e4066Sahrens 	}
240fa9e4066Sahrens 
241fa9e4066Sahrens 	uu_avl_walk_end(walk);
242fa9e4066Sahrens 	uu_avl_destroy(cb.cb_avl);
243fa9e4066Sahrens 	uu_avl_pool_destroy(avl_pool);
244fa9e4066Sahrens 
245fa9e4066Sahrens 	return (ret);
246fa9e4066Sahrens }
247