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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 * Copyright (c) 2012 by Delphix. All rights reserved.
24 */
25
26 #ifndef _SYS_FS_ZFS_ZNODE_H
27 #define _SYS_FS_ZFS_ZNODE_H
28
29 #ifdef _KERNEL
30 #include <sys/isa_defs.h>
31 #include <sys/types32.h>
32 #include <sys/attr.h>
33 #include <sys/list.h>
34 #include <sys/dmu.h>
35 #include <sys/sa.h>
36 #include <sys/zfs_vfsops.h>
37 #include <sys/rrwlock.h>
38 #include <sys/zfs_sa.h>
39 #include <sys/zfs_stat.h>
40 #endif
41 #include <sys/zfs_acl.h>
42 #include <sys/zil.h>
43
44 #ifdef __cplusplus
45 extern "C" {
46 #endif
47
48 /*
49 * Additional file level attributes, that are stored
50 * in the upper half of zp_flags
51 */
52 #define ZFS_READONLY 0x0000000100000000ull
53 #define ZFS_HIDDEN 0x0000000200000000ull
54 #define ZFS_SYSTEM 0x0000000400000000ull
55 #define ZFS_ARCHIVE 0x0000000800000000ull
56 #define ZFS_IMMUTABLE 0x0000001000000000ull
57 #define ZFS_NOUNLINK 0x0000002000000000ull
58 #define ZFS_APPENDONLY 0x0000004000000000ull
59 #define ZFS_NODUMP 0x0000008000000000ull
60 #define ZFS_OPAQUE 0x0000010000000000ull
61 #define ZFS_AV_QUARANTINED 0x0000020000000000ull
62 #define ZFS_AV_MODIFIED 0x0000040000000000ull
63 #define ZFS_REPARSE 0x0000080000000000ull
64 #define ZFS_OFFLINE 0x0000100000000000ull
65 #define ZFS_SPARSE 0x0000200000000000ull
66
67 #define ZFS_ATTR_SET(zp, attr, value, pflags, tx) \
68 { \
69 if (value) \
70 pflags |= attr; \
71 else \
72 pflags &= ~attr; \
73 VERIFY(0 == sa_update(zp->z_sa_hdl, SA_ZPL_FLAGS(ZTOZSB(zp)), \
74 &pflags, sizeof (pflags), tx)); \
75 }
76
77 /*
78 * Define special zfs pflags
79 */
80 #define ZFS_XATTR 0x1 /* is an extended attribute */
81 #define ZFS_INHERIT_ACE 0x2 /* ace has inheritable ACEs */
82 #define ZFS_ACL_TRIVIAL 0x4 /* files ACL is trivial */
83 #define ZFS_ACL_OBJ_ACE 0x8 /* ACL has CMPLX Object ACE */
84 #define ZFS_ACL_PROTECTED 0x10 /* ACL protected */
85 #define ZFS_ACL_DEFAULTED 0x20 /* ACL should be defaulted */
86 #define ZFS_ACL_AUTO_INHERIT 0x40 /* ACL should be inherited */
87 #define ZFS_BONUS_SCANSTAMP 0x80 /* Scanstamp in bonus area */
88 #define ZFS_NO_EXECS_DENIED 0x100 /* exec was given to everyone */
89
90 #define SA_ZPL_ATIME(z) z->z_attr_table[ZPL_ATIME]
91 #define SA_ZPL_MTIME(z) z->z_attr_table[ZPL_MTIME]
92 #define SA_ZPL_CTIME(z) z->z_attr_table[ZPL_CTIME]
93 #define SA_ZPL_CRTIME(z) z->z_attr_table[ZPL_CRTIME]
94 #define SA_ZPL_GEN(z) z->z_attr_table[ZPL_GEN]
95 #define SA_ZPL_DACL_ACES(z) z->z_attr_table[ZPL_DACL_ACES]
96 #define SA_ZPL_XATTR(z) z->z_attr_table[ZPL_XATTR]
97 #define SA_ZPL_SYMLINK(z) z->z_attr_table[ZPL_SYMLINK]
98 #define SA_ZPL_RDEV(z) z->z_attr_table[ZPL_RDEV]
99 #define SA_ZPL_SCANSTAMP(z) z->z_attr_table[ZPL_SCANSTAMP]
100 #define SA_ZPL_UID(z) z->z_attr_table[ZPL_UID]
101 #define SA_ZPL_GID(z) z->z_attr_table[ZPL_GID]
102 #define SA_ZPL_PARENT(z) z->z_attr_table[ZPL_PARENT]
103 #define SA_ZPL_LINKS(z) z->z_attr_table[ZPL_LINKS]
104 #define SA_ZPL_MODE(z) z->z_attr_table[ZPL_MODE]
105 #define SA_ZPL_DACL_COUNT(z) z->z_attr_table[ZPL_DACL_COUNT]
106 #define SA_ZPL_FLAGS(z) z->z_attr_table[ZPL_FLAGS]
107 #define SA_ZPL_SIZE(z) z->z_attr_table[ZPL_SIZE]
108 #define SA_ZPL_ZNODE_ACL(z) z->z_attr_table[ZPL_ZNODE_ACL]
109 #define SA_ZPL_DXATTR(z) z->z_attr_table[ZPL_DXATTR]
110 #define SA_ZPL_PAD(z) z->z_attr_table[ZPL_PAD]
111
112 /*
113 * Is ID ephemeral?
114 */
115 #define IS_EPHEMERAL(x) (x > MAXUID)
116
117 /*
118 * Should we use FUIDs?
119 */
120 #define USE_FUIDS(version, os) (version >= ZPL_VERSION_FUID && \
121 spa_version(dmu_objset_spa(os)) >= SPA_VERSION_FUID)
122 #define USE_SA(version, os) (version >= ZPL_VERSION_SA && \
123 spa_version(dmu_objset_spa(os)) >= SPA_VERSION_SA)
124
125 #define MASTER_NODE_OBJ 1
126
127 /*
128 * Special attributes for master node.
129 * "userquota@" and "groupquota@" are also valid (from
130 * zfs_userquota_prop_prefixes[]).
131 */
132 #define ZFS_FSID "FSID"
133 #define ZFS_UNLINKED_SET "DELETE_QUEUE"
134 #define ZFS_ROOT_OBJ "ROOT"
135 #define ZPL_VERSION_STR "VERSION"
136 #define ZFS_FUID_TABLES "FUID"
137 #define ZFS_SHARES_DIR "SHARES"
138 #define ZFS_SA_ATTRS "SA_ATTRS"
139
140 #define ZFS_MAX_BLOCKSIZE (SPA_MAXBLOCKSIZE)
141
142 /* Path component length */
143 /*
144 * The generic fs code uses MAXNAMELEN to represent
145 * what the largest component length is. Unfortunately,
146 * this length includes the terminating NULL. ZFS needs
147 * to tell the users via pathconf() and statvfs() what the
148 * true maximum length of a component is, excluding the NULL.
149 */
150 #define ZFS_MAXNAMELEN (MAXNAMELEN - 1)
151
152 /*
153 * Convert mode bits (zp_mode) to BSD-style DT_* values for storing in
154 * the directory entries. On Linux systems this value is already
155 * defined correctly as part of the /usr/include/dirent.h header file.
156 */
157 #ifndef IFTODT
158 #define IFTODT(mode) (((mode) & S_IFMT) >> 12)
159 #endif
160
161 /*
162 * The directory entry has the type (currently unused on Solaris) in the
163 * top 4 bits, and the object number in the low 48 bits. The "middle"
164 * 12 bits are unused.
165 */
166 #define ZFS_DIRENT_TYPE(de) BF64_GET(de, 60, 4)
167 #define ZFS_DIRENT_OBJ(de) BF64_GET(de, 0, 48)
168
169 /*
170 * Directory entry locks control access to directory entries.
171 * They are used to protect creates, deletes, and renames.
172 * Each directory znode has a mutex and a list of locked names.
173 */
174 #ifdef _KERNEL
175 typedef struct zfs_dirlock {
176 char *dl_name; /* directory entry being locked */
177 uint32_t dl_sharecnt; /* 0 if exclusive, > 0 if shared */
178 uint8_t dl_namelock; /* 1 if z_name_lock is NOT held */
179 uint16_t dl_namesize; /* set if dl_name was allocated */
180 kcondvar_t dl_cv; /* wait for entry to be unlocked */
181 struct znode *dl_dzp; /* directory znode */
182 struct zfs_dirlock *dl_next; /* next in z_dirlocks list */
183 } zfs_dirlock_t;
184
185 typedef struct znode {
186 uint64_t z_id; /* object ID for this znode */
187 kmutex_t z_lock; /* znode modification lock */
188 krwlock_t z_parent_lock; /* parent lock for directories */
189 krwlock_t z_name_lock; /* "master" lock for dirent locks */
190 zfs_dirlock_t *z_dirlocks; /* directory entry lock list */
191 kmutex_t z_range_lock; /* protects changes to z_range_avl */
192 avl_tree_t z_range_avl; /* avl tree of file range locks */
193 uint8_t z_unlinked; /* file has been unlinked */
194 uint8_t z_atime_dirty; /* atime needs to be synced */
195 uint8_t z_zn_prefetch; /* Prefetch znodes? */
196 uint8_t z_moved; /* Has this znode been moved? */
197 uint_t z_blksz; /* block size in bytes */
198 uint_t z_seq; /* modification sequence number */
199 uint64_t z_mapcnt; /* number of pages mapped to file */
200 uint64_t z_gen; /* generation (cached) */
201 uint64_t z_size; /* file size (cached) */
202 uint64_t z_atime[2]; /* atime (cached) */
203 uint64_t z_links; /* file links (cached) */
204 uint64_t z_pflags; /* pflags (cached) */
205 uint64_t z_uid; /* uid fuid (cached) */
206 uint64_t z_gid; /* gid fuid (cached) */
207 mode_t z_mode; /* mode (cached) */
208 uint32_t z_sync_cnt; /* synchronous open count */
209 kmutex_t z_acl_lock; /* acl data lock */
210 zfs_acl_t *z_acl_cached; /* cached acl */
211 krwlock_t z_xattr_lock; /* xattr data lock */
212 nvlist_t *z_xattr_cached;/* cached xattrs */
213 struct znode *z_xattr_parent;/* xattr parent znode */
214 list_node_t z_link_node; /* all znodes in fs link */
215 sa_handle_t *z_sa_hdl; /* handle to sa data */
216 boolean_t z_is_sa; /* are we native sa? */
217 boolean_t z_is_zvol; /* are we used by the zvol */
218 boolean_t z_is_mapped; /* are we mmap'ed */
219 boolean_t z_is_ctldir; /* are we .zfs entry */
220 boolean_t z_is_stale; /* are we stale due to rollback? */
221 struct inode z_inode; /* generic vfs inode */
222 } znode_t;
223
224
225 /*
226 * Range locking rules
227 * --------------------
228 * 1. When truncating a file (zfs_create, zfs_setattr, zfs_space) the whole
229 * file range needs to be locked as RL_WRITER. Only then can the pages be
230 * freed etc and zp_size reset. zp_size must be set within range lock.
231 * 2. For writes and punching holes (zfs_write & zfs_space) just the range
232 * being written or freed needs to be locked as RL_WRITER.
233 * Multiple writes at the end of the file must coordinate zp_size updates
234 * to ensure data isn't lost. A compare and swap loop is currently used
235 * to ensure the file size is at least the offset last written.
236 * 3. For reads (zfs_read, zfs_get_data & zfs_putapage) just the range being
237 * read needs to be locked as RL_READER. A check against zp_size can then
238 * be made for reading beyond end of file.
239 */
240
241 /*
242 * Convert between znode pointers and inode pointers
243 */
244 #define ZTOI(znode) (&((znode)->z_inode))
245 #define ITOZ(inode) (container_of((inode), znode_t, z_inode))
246 #define ZTOZSB(znode) ((zfs_sb_t *)(ZTOI(znode)->i_sb->s_fs_info))
247 #define ITOZSB(inode) ((zfs_sb_t *)((inode)->i_sb->s_fs_info))
248
249 #define S_ISDEV(mode) (S_ISCHR(mode) || S_ISBLK(mode) || S_ISFIFO(mode))
250
251 /*
252 * ZFS_ENTER() is called on entry to each ZFS inode and vfs operation.
253 * ZFS_EXIT() must be called before exitting the vop.
254 * ZFS_VERIFY_ZP() verifies the znode is valid.
255 */
256 #define ZFS_ENTER(zsb) \
257 { \
258 rrw_enter_read(&(zsb)->z_teardown_lock, FTAG); \
259 if ((zsb)->z_unmounted) { \
260 ZFS_EXIT(zsb); \
261 return (EIO); \
262 } \
263 }
264
265 #define ZFS_EXIT(zsb) \
266 { \
267 rrw_exit(&(zsb)->z_teardown_lock, FTAG); \
268 tsd_exit(); \
269 }
270
271 #define ZFS_VERIFY_ZP(zp) \
272 if ((zp)->z_sa_hdl == NULL) { \
273 ZFS_EXIT(ZTOZSB(zp)); \
274 return (EIO); \
275 }
276
277 /*
278 * Macros for dealing with dmu_buf_hold
279 */
280 #define ZFS_OBJ_HASH(obj_num) ((obj_num) & (ZFS_OBJ_MTX_SZ - 1))
281 #define ZFS_OBJ_MUTEX(zsb, obj_num) \
282 (&(zsb)->z_hold_mtx[ZFS_OBJ_HASH(obj_num)])
283 #define ZFS_OBJ_HOLD_ENTER(zsb, obj_num) \
284 mutex_enter(ZFS_OBJ_MUTEX((zsb), (obj_num)))
285 #define ZFS_OBJ_HOLD_TRYENTER(zsb, obj_num) \
286 mutex_tryenter(ZFS_OBJ_MUTEX((zsb), (obj_num)))
287 #define ZFS_OBJ_HOLD_EXIT(zsb, obj_num) \
288 mutex_exit(ZFS_OBJ_MUTEX((zsb), (obj_num)))
289 #define ZFS_OBJ_HOLD_OWNED(zsb, obj_num) \
290 mutex_owned(ZFS_OBJ_MUTEX((zsb), (obj_num)))
291
292 /*
293 * Macros to encode/decode ZFS stored time values from/to struct timespec
294 */
295 #define ZFS_TIME_ENCODE(tp, stmp) \
296 { \
297 (stmp)[0] = (uint64_t)(tp)->tv_sec; \
298 (stmp)[1] = (uint64_t)(tp)->tv_nsec; \
299 }
300
301 #define ZFS_TIME_DECODE(tp, stmp) \
302 { \
303 (tp)->tv_sec = (time_t)(stmp)[0]; \
304 (tp)->tv_nsec = (long)(stmp)[1]; \
305 }
306
307 /*
308 * Timestamp defines
309 */
310 #define ACCESSED (ATTR_ATIME)
311 #define STATE_CHANGED (ATTR_CTIME)
312 #define CONTENT_MODIFIED (ATTR_MTIME | ATTR_CTIME)
313
314 #define ZFS_ACCESSTIME_STAMP(zsb, zp) \
315 if ((zsb)->z_atime && !(zfs_is_readonly(zsb))) \
316 zfs_tstamp_update_setup(zp, ACCESSED, NULL, NULL, B_FALSE);
317
318 extern int zfs_init_fs(zfs_sb_t *, znode_t **);
319 extern void zfs_set_dataprop(objset_t *);
320 extern void zfs_create_fs(objset_t *os, cred_t *cr, nvlist_t *,
321 dmu_tx_t *tx);
322 extern void zfs_tstamp_update_setup(znode_t *, uint_t, uint64_t [2],
323 uint64_t [2], boolean_t);
324 extern void zfs_grow_blocksize(znode_t *, uint64_t, dmu_tx_t *);
325 extern int zfs_freesp(znode_t *, uint64_t, uint64_t, int, boolean_t);
326 extern void zfs_znode_init(void);
327 extern void zfs_znode_fini(void);
328 extern int zfs_zget(zfs_sb_t *, uint64_t, znode_t **);
329 extern int zfs_rezget(znode_t *);
330 extern void zfs_zinactive(znode_t *);
331 extern void zfs_znode_delete(znode_t *, dmu_tx_t *);
332 extern void zfs_remove_op_tables(void);
333 extern int zfs_create_op_tables(void);
334 extern int zfs_sync(struct super_block *, int, cred_t *);
335 extern dev_t zfs_cmpldev(uint64_t);
336 extern int zfs_get_zplprop(objset_t *os, zfs_prop_t prop, uint64_t *value);
337 extern int zfs_get_stats(objset_t *os, nvlist_t *nv);
338 extern void zfs_znode_dmu_fini(znode_t *);
339 extern int zfs_inode_alloc(struct super_block *, struct inode **ip);
340 extern void zfs_inode_destroy(struct inode *);
341 extern void zfs_inode_update(znode_t *);
342
343 extern void zfs_log_create(zilog_t *zilog, dmu_tx_t *tx, uint64_t txtype,
344 znode_t *dzp, znode_t *zp, char *name, vsecattr_t *, zfs_fuid_info_t *,
345 vattr_t *vap);
346 extern int zfs_log_create_txtype(zil_create_t, vsecattr_t *vsecp,
347 vattr_t *vap);
348 extern void zfs_log_remove(zilog_t *zilog, dmu_tx_t *tx, uint64_t txtype,
349 znode_t *dzp, char *name, uint64_t foid);
350 #define ZFS_NO_OBJECT 0 /* no object id */
351 extern void zfs_log_link(zilog_t *zilog, dmu_tx_t *tx, uint64_t txtype,
352 znode_t *dzp, znode_t *zp, char *name);
353 extern void zfs_log_symlink(zilog_t *zilog, dmu_tx_t *tx, uint64_t txtype,
354 znode_t *dzp, znode_t *zp, char *name, char *link);
355 extern void zfs_log_rename(zilog_t *zilog, dmu_tx_t *tx, uint64_t txtype,
356 znode_t *sdzp, char *sname, znode_t *tdzp, char *dname, znode_t *szp);
357 extern void zfs_log_write(zilog_t *zilog, dmu_tx_t *tx, int txtype,
358 znode_t *zp, offset_t off, ssize_t len, int ioflag);
359 extern void zfs_log_truncate(zilog_t *zilog, dmu_tx_t *tx, int txtype,
360 znode_t *zp, uint64_t off, uint64_t len);
361 extern void zfs_log_setattr(zilog_t *zilog, dmu_tx_t *tx, int txtype,
362 znode_t *zp, vattr_t *vap, uint_t mask_applied, zfs_fuid_info_t *fuidp);
363 extern void zfs_log_acl(zilog_t *zilog, dmu_tx_t *tx, znode_t *zp,
364 vsecattr_t *vsecp, zfs_fuid_info_t *fuidp);
365 extern void zfs_xvattr_set(znode_t *zp, xvattr_t *xvap, dmu_tx_t *tx);
366 extern void zfs_upgrade(zfs_sb_t *zsb, dmu_tx_t *tx);
367 extern int zfs_create_share_dir(zfs_sb_t *zsb, dmu_tx_t *tx);
368
369 #if defined(HAVE_UIO_RW)
370 extern caddr_t zfs_map_page(page_t *, enum seg_rw);
371 extern void zfs_unmap_page(page_t *, caddr_t);
372 #endif /* HAVE_UIO_RW */
373
374 extern zil_get_data_t zfs_get_data;
375 extern zil_replay_func_t zfs_replay_vector[TX_MAX_TYPE];
376 extern int zfsfstype;
377
378 #endif /* _KERNEL */
379
380 extern int zfs_obj_to_path(objset_t *osp, uint64_t obj, char *buf, int len);
381
382 #ifdef __cplusplus
383 }
384 #endif
385
386 #endif /* _SYS_FS_ZFS_ZNODE_H */