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Add support for user/group dnode accounting & quota
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1 /*
2 * CDDL HEADER START
3 *
4 * The contents of this file are subject to the terms of the
5 * Common Development and Distribution License (the "License").
6 * You may not use this file except in compliance with the License.
7 *
8 * You can obtain a copy of the license at usr/src/OPENSOLARIS.LICENSE
9 * or http://www.opensolaris.org/os/licensing.
10 * See the License for the specific language governing permissions
11 * and limitations under the License.
12 *
13 * When distributing Covered Code, include this CDDL HEADER in each
14 * file and include the License file at usr/src/OPENSOLARIS.LICENSE.
15 * If applicable, add the following below this CDDL HEADER, with the
16 * fields enclosed by brackets "[]" replaced with your own identifying
17 * information: Portions Copyright [yyyy] [name of copyright owner]
18 *
19 * CDDL HEADER END
20 */
21 /*
22 * Copyright (c) 2005, 2010, Oracle and/or its affiliates. All rights reserved.
23 */
24
25 #ifndef _SYS_FS_ZFS_VFSOPS_H
26 #define _SYS_FS_ZFS_VFSOPS_H
27
28 #include <sys/isa_defs.h>
29 #include <sys/types32.h>
30 #include <sys/list.h>
31 #include <sys/vfs.h>
32 #include <sys/zil.h>
33 #include <sys/sa.h>
34 #include <sys/rrwlock.h>
35 #include <sys/zfs_ioctl.h>
36
37 #ifdef __cplusplus
38 extern "C" {
39 #endif
40
41 struct zfs_sb;
42 struct znode;
43
44 typedef struct zfs_mntopts {
45 char *z_osname; /* Objset name */
46 char *z_mntpoint; /* Primary mount point */
47 uint64_t z_xattr;
48 boolean_t z_readonly;
49 boolean_t z_do_readonly;
50 boolean_t z_setuid;
51 boolean_t z_do_setuid;
52 boolean_t z_exec;
53 boolean_t z_do_exec;
54 boolean_t z_devices;
55 boolean_t z_do_devices;
56 boolean_t z_do_xattr;
57 boolean_t z_atime;
58 boolean_t z_do_atime;
59 boolean_t z_relatime;
60 boolean_t z_do_relatime;
61 boolean_t z_nbmand;
62 boolean_t z_do_nbmand;
63 } zfs_mntopts_t;
64
65 typedef struct zfs_sb {
66 struct super_block *z_sb; /* generic super_block */
67 struct backing_dev_info z_bdi; /* generic backing dev info */
68 struct zfs_sb *z_parent; /* parent fs */
69 objset_t *z_os; /* objset reference */
70 zfs_mntopts_t *z_mntopts; /* passed mount options */
71 uint64_t z_flags; /* super_block flags */
72 uint64_t z_root; /* id of root znode */
73 uint64_t z_unlinkedobj; /* id of unlinked zapobj */
74 uint64_t z_max_blksz; /* maximum block size for files */
75 uint64_t z_fuid_obj; /* fuid table object number */
76 uint64_t z_fuid_size; /* fuid table size */
77 avl_tree_t z_fuid_idx; /* fuid tree keyed by index */
78 avl_tree_t z_fuid_domain; /* fuid tree keyed by domain */
79 krwlock_t z_fuid_lock; /* fuid lock */
80 boolean_t z_fuid_loaded; /* fuid tables are loaded */
81 boolean_t z_fuid_dirty; /* need to sync fuid table ? */
82 struct zfs_fuid_info *z_fuid_replay; /* fuid info for replay */
83 zilog_t *z_log; /* intent log pointer */
84 uint_t z_acl_inherit; /* acl inheritance behavior */
85 uint_t z_acl_type; /* type of ACL usable on this FS */
86 zfs_case_t z_case; /* case-sense */
87 boolean_t z_utf8; /* utf8-only */
88 int z_norm; /* normalization flags */
89 boolean_t z_atime; /* enable atimes mount option */
90 boolean_t z_relatime; /* enable relatime mount option */
91 boolean_t z_unmounted; /* unmounted */
92 rrmlock_t z_teardown_lock;
93 krwlock_t z_teardown_inactive_lock;
94 list_t z_all_znodes; /* all znodes in the fs */
95 uint64_t z_nr_znodes; /* number of znodes in the fs */
96 unsigned long z_rollback_time; /* last online rollback time */
97 unsigned long z_snap_defer_time; /* last snapshot unmount deferal */
98 kmutex_t z_znodes_lock; /* lock for z_all_znodes */
99 arc_prune_t *z_arc_prune; /* called by ARC to prune caches */
100 struct inode *z_ctldir; /* .zfs directory inode */
101 boolean_t z_show_ctldir; /* expose .zfs in the root dir */
102 boolean_t z_issnap; /* true if this is a snapshot */
103 boolean_t z_vscan; /* virus scan on/off */
104 boolean_t z_use_fuids; /* version allows fuids */
105 boolean_t z_replay; /* set during ZIL replay */
106 boolean_t z_use_sa; /* version allow system attributes */
107 boolean_t z_xattr_sa; /* allow xattrs to be stores as SA */
108 uint64_t z_version; /* ZPL version */
109 uint64_t z_shares_dir; /* hidden shares dir */
110 kmutex_t z_lock;
111 uint64_t z_userquota_obj;
112 uint64_t z_groupquota_obj;
113 uint64_t z_userobjquota_obj;
114 uint64_t z_groupobjquota_obj;
115 uint64_t z_replay_eof; /* New end of file - replay only */
116 sa_attr_type_t *z_attr_table; /* SA attr mapping->id */
117 uint64_t z_hold_size; /* znode hold array size */
118 avl_tree_t *z_hold_trees; /* znode hold trees */
119 kmutex_t *z_hold_locks; /* znode hold locks */
120 } zfs_sb_t;
121
122 #define ZFS_SUPER_MAGIC 0x2fc12fc1
123
124 #define ZSB_XATTR 0x0001 /* Enable user xattrs */
125
126 /*
127 * Allow a maximum number of links. While ZFS does not internally limit
128 * this the inode->i_nlink member is defined as an unsigned int. To be
129 * safe we use 2^31-1 as the limit.
130 */
131 #define ZFS_LINK_MAX ((1U << 31) - 1U)
132
133 /*
134 * Normal filesystems (those not under .zfs/snapshot) have a total
135 * file ID size limited to 12 bytes (including the length field) due to
136 * NFSv2 protocol's limitation of 32 bytes for a filehandle. For historical
137 * reasons, this same limit is being imposed by the Solaris NFSv3 implementation
138 * (although the NFSv3 protocol actually permits a maximum of 64 bytes). It
139 * is not possible to expand beyond 12 bytes without abandoning support
140 * of NFSv2.
141 *
142 * For normal filesystems, we partition up the available space as follows:
143 * 2 bytes fid length (required)
144 * 6 bytes object number (48 bits)
145 * 4 bytes generation number (32 bits)
146 *
147 * We reserve only 48 bits for the object number, as this is the limit
148 * currently defined and imposed by the DMU.
149 */
150 typedef struct zfid_short {
151 uint16_t zf_len;
152 uint8_t zf_object[6]; /* obj[i] = obj >> (8 * i) */
153 uint8_t zf_gen[4]; /* gen[i] = gen >> (8 * i) */
154 } zfid_short_t;
155
156 /*
157 * Filesystems under .zfs/snapshot have a total file ID size of 22 bytes
158 * (including the length field). This makes files under .zfs/snapshot
159 * accessible by NFSv3 and NFSv4, but not NFSv2.
160 *
161 * For files under .zfs/snapshot, we partition up the available space
162 * as follows:
163 * 2 bytes fid length (required)
164 * 6 bytes object number (48 bits)
165 * 4 bytes generation number (32 bits)
166 * 6 bytes objset id (48 bits)
167 * 4 bytes currently just zero (32 bits)
168 *
169 * We reserve only 48 bits for the object number and objset id, as these are
170 * the limits currently defined and imposed by the DMU.
171 */
172 typedef struct zfid_long {
173 zfid_short_t z_fid;
174 uint8_t zf_setid[6]; /* obj[i] = obj >> (8 * i) */
175 uint8_t zf_setgen[4]; /* gen[i] = gen >> (8 * i) */
176 } zfid_long_t;
177
178 #define SHORT_FID_LEN (sizeof (zfid_short_t) - sizeof (uint16_t))
179 #define LONG_FID_LEN (sizeof (zfid_long_t) - sizeof (uint16_t))
180
181 extern uint_t zfs_fsyncer_key;
182
183 extern int zfs_suspend_fs(zfs_sb_t *zsb);
184 extern int zfs_resume_fs(zfs_sb_t *zsb, const char *osname);
185 extern int zfs_userspace_one(zfs_sb_t *zsb, zfs_userquota_prop_t type,
186 const char *domain, uint64_t rid, uint64_t *valuep);
187 extern int zfs_userspace_many(zfs_sb_t *zsb, zfs_userquota_prop_t type,
188 uint64_t *cookiep, void *vbuf, uint64_t *bufsizep);
189 extern int zfs_set_userquota(zfs_sb_t *zsb, zfs_userquota_prop_t type,
190 const char *domain, uint64_t rid, uint64_t quota);
191 extern boolean_t zfs_owner_overquota(zfs_sb_t *zsb, struct znode *,
192 boolean_t isgroup);
193 extern boolean_t zfs_fuid_overquota(zfs_sb_t *zsb, boolean_t isgroup,
194 uint64_t fuid);
195 extern boolean_t zfs_fuid_overobjquota(zfs_sb_t *zsb, boolean_t isgroup,
196 uint64_t fuid);
197 extern int zfs_set_version(zfs_sb_t *zsb, uint64_t newvers);
198 extern int zfs_get_zplprop(objset_t *os, zfs_prop_t prop,
199 uint64_t *value);
200 extern zfs_mntopts_t *zfs_mntopts_alloc(void);
201 extern void zfs_mntopts_free(zfs_mntopts_t *zmo);
202 extern int zfs_sb_create(const char *name, zfs_mntopts_t *zmo,
203 zfs_sb_t **zsbp);
204 extern int zfs_sb_setup(zfs_sb_t *zsb, boolean_t mounting);
205 extern void zfs_sb_free(zfs_sb_t *zsb);
206 extern int zfs_sb_prune(struct super_block *sb, unsigned long nr_to_scan,
207 int *objects);
208 extern int zfs_sb_teardown(zfs_sb_t *zsb, boolean_t unmounting);
209 extern int zfs_check_global_label(const char *dsname, const char *hexsl);
210 extern boolean_t zfs_is_readonly(zfs_sb_t *zsb);
211
212 extern int zfs_register_callbacks(zfs_sb_t *zsb);
213 extern void zfs_unregister_callbacks(zfs_sb_t *zsb);
214 extern int zfs_domount(struct super_block *sb, zfs_mntopts_t *zmo, int silent);
215 extern void zfs_preumount(struct super_block *sb);
216 extern int zfs_umount(struct super_block *sb);
217 extern int zfs_remount(struct super_block *sb, int *flags, zfs_mntopts_t *zmo);
218 extern int zfs_root(zfs_sb_t *zsb, struct inode **ipp);
219 extern int zfs_statvfs(struct dentry *dentry, struct kstatfs *statp);
220 extern int zfs_vget(struct super_block *sb, struct inode **ipp, fid_t *fidp);
221
222 #ifdef __cplusplus
223 }
224 #endif
225
226 #endif /* _SYS_FS_ZFS_VFSOPS_H */