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AFS: fix a couple of problems with unlinking AFS files
[net-next-2.6.git] / fs / afs / internal.h
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ec26815a 1/* internal AFS stuff
1da177e4 2 *
08e0e7c8 3 * Copyright (C) 2002, 2007 Red Hat, Inc. All Rights Reserved.
1da177e4
LT
4 * Written by David Howells (dhowells@redhat.com)
5 *
6 * This program is free software; you can redistribute it and/or
7 * modify it under the terms of the GNU General Public License
8 * as published by the Free Software Foundation; either version
9 * 2 of the License, or (at your option) any later version.
10 */
11
1da177e4
LT
12#include <linux/compiler.h>
13#include <linux/kernel.h>
14#include <linux/fs.h>
15#include <linux/pagemap.h>
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DH
16#include <linux/skbuff.h>
17#include <linux/rxrpc.h>
00d3b7a4 18#include <linux/key.h>
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19#include "afs.h"
20#include "afs_vl.h"
21
22#define AFS_CELL_MAX_ADDRS 15
23
31143d5d 24struct pagevec;
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25struct afs_call;
26
27typedef enum {
28 AFS_VL_NEW, /* new, uninitialised record */
29 AFS_VL_CREATING, /* creating record */
30 AFS_VL_VALID, /* record is pending */
31 AFS_VL_NO_VOLUME, /* no such volume available */
32 AFS_VL_UPDATING, /* update in progress */
33 AFS_VL_VOLUME_DELETED, /* volume was deleted */
34 AFS_VL_UNCERTAIN, /* uncertain state (update failed) */
35} __attribute__((packed)) afs_vlocation_state_t;
1da177e4 36
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37struct afs_mount_params {
38 bool rwpath; /* T if the parent should be considered R/W */
39 bool force; /* T to force cell type */
40 afs_voltype_t type; /* type of volume requested */
41 int volnamesz; /* size of volume name */
42 const char *volname; /* name of volume to mount */
43 struct afs_cell *cell; /* cell in which to find volume */
44 struct afs_volume *volume; /* volume record */
45 struct key *key; /* key to use for secure mounting */
46};
47
1da177e4 48/*
08e0e7c8 49 * definition of how to wait for the completion of an operation
1da177e4 50 */
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51struct afs_wait_mode {
52 /* RxRPC received message notification */
53 void (*rx_wakeup)(struct afs_call *call);
1da177e4 54
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DH
55 /* synchronous call waiter and call dispatched notification */
56 int (*wait)(struct afs_call *call);
57
58 /* asynchronous call completion */
59 void (*async_complete)(void *reply, int error);
60};
61
62extern const struct afs_wait_mode afs_sync_call;
63extern const struct afs_wait_mode afs_async_call;
64
65/*
66 * a record of an in-progress RxRPC call
67 */
68struct afs_call {
69 const struct afs_call_type *type; /* type of call */
70 const struct afs_wait_mode *wait_mode; /* completion wait mode */
71 wait_queue_head_t waitq; /* processes awaiting completion */
72 struct work_struct async_work; /* asynchronous work processor */
73 struct work_struct work; /* actual work processor */
74 struct sk_buff_head rx_queue; /* received packets */
75 struct rxrpc_call *rxcall; /* RxRPC call handle */
76 struct key *key; /* security for this call */
77 struct afs_server *server; /* server affected by incoming CM call */
78 void *request; /* request data (first part) */
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79 struct address_space *mapping; /* page set */
80 struct afs_writeback *wb; /* writeback being performed */
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81 void *buffer; /* reply receive buffer */
82 void *reply; /* reply buffer (first part) */
83 void *reply2; /* reply buffer (second part) */
84 void *reply3; /* reply buffer (third part) */
260a9803 85 void *reply4; /* reply buffer (fourth part) */
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86 pgoff_t first; /* first page in mapping to deal with */
87 pgoff_t last; /* last page in mapping to deal with */
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88 enum { /* call state */
89 AFS_CALL_REQUESTING, /* request is being sent for outgoing call */
90 AFS_CALL_AWAIT_REPLY, /* awaiting reply to outgoing call */
91 AFS_CALL_AWAIT_OP_ID, /* awaiting op ID on incoming call */
92 AFS_CALL_AWAIT_REQUEST, /* awaiting request data on incoming call */
93 AFS_CALL_REPLYING, /* replying to incoming call */
94 AFS_CALL_AWAIT_ACK, /* awaiting final ACK of incoming call */
95 AFS_CALL_COMPLETE, /* successfully completed */
96 AFS_CALL_BUSY, /* server was busy */
97 AFS_CALL_ABORTED, /* call was aborted */
98 AFS_CALL_ERROR, /* call failed due to error */
99 } state;
100 int error; /* error code */
101 unsigned request_size; /* size of request data */
102 unsigned reply_max; /* maximum size of reply */
103 unsigned reply_size; /* current size of reply */
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104 unsigned first_offset; /* offset into mapping[first] */
105 unsigned last_to; /* amount of mapping[last] */
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106 unsigned short offset; /* offset into received data store */
107 unsigned char unmarshall; /* unmarshalling phase */
108 bool incoming; /* T if incoming call */
31143d5d 109 bool send_pages; /* T if data from mapping should be sent */
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110 u16 service_id; /* RxRPC service ID to call */
111 __be16 port; /* target UDP port */
112 __be32 operation_ID; /* operation ID for an incoming call */
113 u32 count; /* count for use in unmarshalling */
114 __be32 tmp; /* place to extract temporary data */
31143d5d 115 afs_dataversion_t store_version; /* updated version expected from store */
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116};
117
118struct afs_call_type {
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119 const char *name;
120
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121 /* deliver request or reply data to an call
122 * - returning an error will cause the call to be aborted
123 */
124 int (*deliver)(struct afs_call *call, struct sk_buff *skb,
125 bool last);
126
127 /* map an abort code to an error number */
128 int (*abort_to_error)(u32 abort_code);
129
130 /* clean up a call */
131 void (*destructor)(struct afs_call *call);
132};
133
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DH
134/*
135 * record of an outstanding writeback on a vnode
136 */
137struct afs_writeback {
138 struct list_head link; /* link in vnode->writebacks */
139 struct work_struct writer; /* work item to perform the writeback */
140 struct afs_vnode *vnode; /* vnode to which this write applies */
141 struct key *key; /* owner of this write */
142 wait_queue_head_t waitq; /* completion and ready wait queue */
143 pgoff_t first; /* first page in batch */
144 pgoff_t point; /* last page in current store op */
145 pgoff_t last; /* last page in batch (inclusive) */
146 unsigned offset_first; /* offset into first page of start of write */
147 unsigned to_last; /* offset into last page of end of write */
148 int num_conflicts; /* count of conflicting writes in list */
149 int usage;
150 bool conflicts; /* T if has dependent conflicts */
151 enum {
152 AFS_WBACK_SYNCING, /* synchronisation being performed */
153 AFS_WBACK_PENDING, /* write pending */
154 AFS_WBACK_CONFLICTING, /* conflicting writes posted */
155 AFS_WBACK_WRITING, /* writing back */
156 AFS_WBACK_COMPLETE /* the writeback record has been unlinked */
157 } state __attribute__((packed));
158};
159
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DH
160/*
161 * AFS superblock private data
162 * - there's one superblock per volume
163 */
164struct afs_super_info {
165 struct afs_volume *volume; /* volume record */
166 char rwparent; /* T if parent is R/W AFS volume */
167};
1da177e4 168
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169static inline struct afs_super_info *AFS_FS_S(struct super_block *sb)
170{
171 return sb->s_fs_info;
1da177e4
LT
172}
173
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DH
174extern struct file_system_type afs_fs_type;
175
176/*
177 * entry in the cached cell catalogue
178 */
179struct afs_cache_cell {
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DH
180 char name[AFS_MAXCELLNAME]; /* cell name (padded with NULs) */
181 struct in_addr vl_servers[15]; /* cached cell VL servers */
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DH
182};
183
184/*
185 * AFS cell record
186 */
187struct afs_cell {
188 atomic_t usage;
189 struct list_head link; /* main cell list link */
00d3b7a4 190 struct key *anonymous_key; /* anonymous user key for this cell */
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DH
191 struct list_head proc_link; /* /proc cell list link */
192 struct proc_dir_entry *proc_dir; /* /proc dir for this cell */
193#ifdef AFS_CACHING_SUPPORT
194 struct cachefs_cookie *cache; /* caching cookie */
195#endif
196
197 /* server record management */
198 rwlock_t servers_lock; /* active server list lock */
199 struct list_head servers; /* active server list */
200
201 /* volume location record management */
202 struct rw_semaphore vl_sem; /* volume management serialisation semaphore */
203 struct list_head vl_list; /* cell's active VL record list */
204 spinlock_t vl_lock; /* vl_list lock */
205 unsigned short vl_naddrs; /* number of VL servers in addr list */
206 unsigned short vl_curr_svix; /* current server index */
207 struct in_addr vl_addrs[AFS_CELL_MAX_ADDRS]; /* cell VL server addresses */
208
209 char name[0]; /* cell name - must go last */
210};
211
212/*
213 * entry in the cached volume location catalogue
214 */
215struct afs_cache_vlocation {
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216 /* volume name (lowercase, padded with NULs) */
217 uint8_t name[AFS_MAXVOLNAME + 1];
218
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DH
219 uint8_t nservers; /* number of entries used in servers[] */
220 uint8_t vidmask; /* voltype mask for vid[] */
221 uint8_t srvtmask[8]; /* voltype masks for servers[] */
222#define AFS_VOL_VTM_RW 0x01 /* R/W version of the volume is available (on this server) */
223#define AFS_VOL_VTM_RO 0x02 /* R/O version of the volume is available (on this server) */
224#define AFS_VOL_VTM_BAK 0x04 /* backup version of the volume is available (on this server) */
225
226 afs_volid_t vid[3]; /* volume IDs for R/W, R/O and Bak volumes */
227 struct in_addr servers[8]; /* fileserver addresses */
228 time_t rtime; /* last retrieval time */
229};
230
231/*
232 * volume -> vnode hash table entry
233 */
234struct afs_cache_vhash {
235 afs_voltype_t vtype; /* which volume variation */
236 uint8_t hash_bucket; /* which hash bucket this represents */
237} __attribute__((packed));
238
239/*
240 * AFS volume location record
241 */
242struct afs_vlocation {
243 atomic_t usage;
244 time_t time_of_death; /* time at which put reduced usage to 0 */
245 struct list_head link; /* link in cell volume location list */
246 struct list_head grave; /* link in master graveyard list */
247 struct list_head update; /* link in master update list */
248 struct afs_cell *cell; /* cell to which volume belongs */
249#ifdef AFS_CACHING_SUPPORT
250 struct cachefs_cookie *cache; /* caching cookie */
251#endif
252 struct afs_cache_vlocation vldb; /* volume information DB record */
253 struct afs_volume *vols[3]; /* volume access record pointer (index by type) */
254 wait_queue_head_t waitq; /* status change waitqueue */
255 time_t update_at; /* time at which record should be updated */
39bf0949 256 spinlock_t lock; /* access lock */
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DH
257 afs_vlocation_state_t state; /* volume location state */
258 unsigned short upd_rej_cnt; /* ENOMEDIUM count during update */
259 unsigned short upd_busy_cnt; /* EBUSY count during update */
260 bool valid; /* T if valid */
261};
262
263/*
264 * AFS fileserver record
265 */
266struct afs_server {
267 atomic_t usage;
268 time_t time_of_death; /* time at which put reduced usage to 0 */
269 struct in_addr addr; /* server address */
270 struct afs_cell *cell; /* cell in which server resides */
271 struct list_head link; /* link in cell's server list */
272 struct list_head grave; /* link in master graveyard list */
273 struct rb_node master_rb; /* link in master by-addr tree */
274 struct rw_semaphore sem; /* access lock */
275
276 /* file service access */
277 struct rb_root fs_vnodes; /* vnodes backed by this server (ordered by FID) */
278 unsigned long fs_act_jif; /* time at which last activity occurred */
279 unsigned long fs_dead_jif; /* time at which no longer to be considered dead */
280 spinlock_t fs_lock; /* access lock */
281 int fs_state; /* 0 or reason FS currently marked dead (-errno) */
282
283 /* callback promise management */
284 struct rb_root cb_promises; /* vnode expiration list (ordered earliest first) */
285 struct delayed_work cb_updater; /* callback updater */
286 struct delayed_work cb_break_work; /* collected break dispatcher */
287 wait_queue_head_t cb_break_waitq; /* space available in cb_break waitqueue */
288 spinlock_t cb_lock; /* access lock */
289 struct afs_callback cb_break[64]; /* ring of callbacks awaiting breaking */
290 atomic_t cb_break_n; /* number of pending breaks */
291 u8 cb_break_head; /* head of callback breaking ring */
292 u8 cb_break_tail; /* tail of callback breaking ring */
293};
294
295/*
296 * AFS volume access record
297 */
298struct afs_volume {
299 atomic_t usage;
300 struct afs_cell *cell; /* cell to which belongs (unrefd ptr) */
301 struct afs_vlocation *vlocation; /* volume location */
302#ifdef AFS_CACHING_SUPPORT
303 struct cachefs_cookie *cache; /* caching cookie */
304#endif
305 afs_volid_t vid; /* volume ID */
306 afs_voltype_t type; /* type of volume */
307 char type_force; /* force volume type (suppress R/O -> R/W) */
308 unsigned short nservers; /* number of server slots filled */
309 unsigned short rjservers; /* number of servers discarded due to -ENOMEDIUM */
310 struct afs_server *servers[8]; /* servers on which volume resides (ordered) */
311 struct rw_semaphore server_sem; /* lock for accessing current server */
312};
313
314/*
315 * vnode catalogue entry
316 */
317struct afs_cache_vnode {
318 afs_vnodeid_t vnode_id; /* vnode ID */
319 unsigned vnode_unique; /* vnode ID uniquifier */
320 afs_dataversion_t data_version; /* data version */
321};
322
323/*
324 * AFS inode private data
325 */
326struct afs_vnode {
327 struct inode vfs_inode; /* the VFS's inode record */
328
329 struct afs_volume *volume; /* volume on which vnode resides */
330 struct afs_server *server; /* server currently supplying this file */
331 struct afs_fid fid; /* the file identifier for this inode */
332 struct afs_file_status status; /* AFS status info for this file */
333#ifdef AFS_CACHING_SUPPORT
334 struct cachefs_cookie *cache; /* caching cookie */
335#endif
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DH
336 struct afs_permits *permits; /* cache of permits so far obtained */
337 struct mutex permits_lock; /* lock for altering permits list */
260a9803 338 struct mutex validate_lock; /* lock for validating this vnode */
08e0e7c8 339 wait_queue_head_t update_waitq; /* status fetch waitqueue */
260a9803 340 int update_cnt; /* number of outstanding ops that will update the
08e0e7c8 341 * status */
31143d5d 342 spinlock_t writeback_lock; /* lock for writebacks */
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DH
343 spinlock_t lock; /* waitqueue/flags lock */
344 unsigned long flags;
345#define AFS_VNODE_CB_BROKEN 0 /* set if vnode's callback was broken */
260a9803 346#define AFS_VNODE_UNSET 1 /* set if vnode attributes not yet set */
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DH
347#define AFS_VNODE_MODIFIED 2 /* set if vnode's data modified */
348#define AFS_VNODE_ZAP_DATA 3 /* set if vnode's data should be invalidated */
349#define AFS_VNODE_DELETED 4 /* set if vnode deleted on server */
350#define AFS_VNODE_MOUNTPOINT 5 /* set if vnode is a mountpoint symlink */
08e0e7c8 351
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DH
352 long acl_order; /* ACL check count (callback break count) */
353
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DH
354 struct list_head writebacks; /* alterations in pagecache that need writing */
355
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DH
356 /* outstanding callback notification on this file */
357 struct rb_node server_rb; /* link in server->fs_vnodes */
358 struct rb_node cb_promise; /* link in server->cb_promises */
359 struct work_struct cb_broken_work; /* work to be done on callback break */
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DH
360 time_t cb_expires; /* time at which callback expires */
361 time_t cb_expires_at; /* time used to order cb_promise */
362 unsigned cb_version; /* callback version */
363 unsigned cb_expiry; /* callback expiry time */
364 afs_callback_type_t cb_type; /* type of callback */
365 bool cb_promised; /* true if promise still holds */
366};
367
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DH
368/*
369 * cached security record for one user's attempt to access a vnode
370 */
371struct afs_permit {
372 struct key *key; /* RxRPC ticket holding a security context */
373 afs_access_t access_mask; /* access mask for this key */
374};
375
376/*
377 * cache of security records from attempts to access a vnode
378 */
379struct afs_permits {
380 struct rcu_head rcu; /* disposal procedure */
381 int count; /* number of records */
382 struct afs_permit permits[0]; /* the permits so far examined */
383};
384
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DH
385/*
386 * record of one of a system's set of network interfaces
387 */
388struct afs_interface {
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DH
389 struct in_addr address; /* IPv4 address bound to interface */
390 struct in_addr netmask; /* netmask applied to address */
391 unsigned mtu; /* MTU of interface */
392};
393
394/*
395 * UUID definition [internet draft]
396 * - the timestamp is a 60-bit value, split 32/16/12, and goes in 100ns
397 * increments since midnight 15th October 1582
398 * - add AFS_UUID_TO_UNIX_TIME to convert unix time in 100ns units to UUID
399 * time
400 * - the clock sequence is a 14-bit counter to avoid duplicate times
401 */
402struct afs_uuid {
403 u32 time_low; /* low part of timestamp */
404 u16 time_mid; /* mid part of timestamp */
405 u16 time_hi_and_version; /* high part of timestamp and version */
b1bdb691 406#define AFS_UUID_TO_UNIX_TIME 0x01b21dd213814000ULL
b908fe6b
DH
407#define AFS_UUID_TIMEHI_MASK 0x0fff
408#define AFS_UUID_VERSION_TIME 0x1000 /* time-based UUID */
409#define AFS_UUID_VERSION_NAME 0x3000 /* name-based UUID */
410#define AFS_UUID_VERSION_RANDOM 0x4000 /* (pseudo-)random generated UUID */
411 u8 clock_seq_hi_and_reserved; /* clock seq hi and variant */
412#define AFS_UUID_CLOCKHI_MASK 0x3f
413#define AFS_UUID_VARIANT_STD 0x80
414 u8 clock_seq_low; /* clock seq low */
415 u8 node[6]; /* spatially unique node ID (MAC addr) */
416};
417
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DH
418/*****************************************************************************/
419/*
420 * callback.c
421 */
422extern void afs_init_callback_state(struct afs_server *);
423extern void afs_broken_callback_work(struct work_struct *);
424extern void afs_break_callbacks(struct afs_server *, size_t,
425 struct afs_callback[]);
260a9803 426extern void afs_discard_callback_on_delete(struct afs_vnode *);
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DH
427extern void afs_give_up_callback(struct afs_vnode *);
428extern void afs_dispatch_give_up_callbacks(struct work_struct *);
429extern void afs_flush_callback_breaks(struct afs_server *);
430extern int __init afs_callback_update_init(void);
fbb3fcba 431extern void afs_callback_update_kill(void);
08e0e7c8 432
1da177e4
LT
433/*
434 * cell.c
435 */
436extern struct rw_semaphore afs_proc_cells_sem;
437extern struct list_head afs_proc_cells;
438#ifdef AFS_CACHING_SUPPORT
439extern struct cachefs_index_def afs_cache_cell_index_def;
440#endif
441
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DH
442#define afs_get_cell(C) do { atomic_inc(&(C)->usage); } while(0)
443extern int afs_cell_init(char *);
444extern struct afs_cell *afs_cell_create(const char *, char *);
445extern struct afs_cell *afs_cell_lookup(const char *, unsigned);
446extern struct afs_cell *afs_grab_cell(struct afs_cell *);
447extern void afs_put_cell(struct afs_cell *);
448extern void afs_cell_purge(void);
449
450/*
451 * cmservice.c
452 */
453extern bool afs_cm_incoming_call(struct afs_call *);
454
1da177e4
LT
455/*
456 * dir.c
457 */
754661f1 458extern const struct inode_operations afs_dir_inode_operations;
4b6f5d20 459extern const struct file_operations afs_dir_file_operations;
1da177e4 460
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DH
461extern int afs_permission(struct inode *, int, struct nameidata *);
462
1da177e4
LT
463/*
464 * file.c
465 */
f5e54d6e 466extern const struct address_space_operations afs_fs_aops;
754661f1 467extern const struct inode_operations afs_file_inode_operations;
00d3b7a4
DH
468extern const struct file_operations afs_file_operations;
469
470extern int afs_open(struct inode *, struct file *);
471extern int afs_release(struct inode *, struct file *);
1da177e4 472
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DH
473/*
474 * fsclient.c
475 */
00d3b7a4
DH
476extern int afs_fs_fetch_file_status(struct afs_server *, struct key *,
477 struct afs_vnode *, struct afs_volsync *,
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DH
478 const struct afs_wait_mode *);
479extern int afs_fs_give_up_callbacks(struct afs_server *,
480 const struct afs_wait_mode *);
00d3b7a4
DH
481extern int afs_fs_fetch_data(struct afs_server *, struct key *,
482 struct afs_vnode *, off_t, size_t, struct page *,
08e0e7c8 483 const struct afs_wait_mode *);
260a9803
DH
484extern int afs_fs_create(struct afs_server *, struct key *,
485 struct afs_vnode *, const char *, umode_t,
486 struct afs_fid *, struct afs_file_status *,
487 struct afs_callback *,
488 const struct afs_wait_mode *);
489extern int afs_fs_remove(struct afs_server *, struct key *,
490 struct afs_vnode *, const char *, bool,
491 const struct afs_wait_mode *);
492extern int afs_fs_link(struct afs_server *, struct key *, struct afs_vnode *,
493 struct afs_vnode *, const char *,
494 const struct afs_wait_mode *);
495extern int afs_fs_symlink(struct afs_server *, struct key *,
496 struct afs_vnode *, const char *, const char *,
497 struct afs_fid *, struct afs_file_status *,
498 const struct afs_wait_mode *);
499extern int afs_fs_rename(struct afs_server *, struct key *,
500 struct afs_vnode *, const char *,
501 struct afs_vnode *, const char *,
502 const struct afs_wait_mode *);
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DH
503extern int afs_fs_store_data(struct afs_server *, struct afs_writeback *,
504 pgoff_t, pgoff_t, unsigned, unsigned,
505 const struct afs_wait_mode *);
506extern int afs_fs_setattr(struct afs_server *, struct key *,
507 struct afs_vnode *, struct iattr *,
508 const struct afs_wait_mode *);
08e0e7c8 509
1da177e4
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510/*
511 * inode.c
512 */
00d3b7a4 513extern struct inode *afs_iget(struct super_block *, struct key *,
260a9803
DH
514 struct afs_fid *, struct afs_file_status *,
515 struct afs_callback *);
416351f2 516extern void afs_zap_data(struct afs_vnode *);
260a9803 517extern int afs_validate(struct afs_vnode *, struct key *);
416351f2 518extern int afs_getattr(struct vfsmount *, struct dentry *, struct kstat *);
31143d5d 519extern int afs_setattr(struct dentry *, struct iattr *);
ec26815a 520extern void afs_clear_inode(struct inode *);
1da177e4
LT
521
522/*
523 * main.c
524 */
b908fe6b 525extern struct afs_uuid afs_uuid;
1da177e4
LT
526#ifdef AFS_CACHING_SUPPORT
527extern struct cachefs_netfs afs_cache_netfs;
528#endif
529
08e0e7c8
DH
530/*
531 * misc.c
532 */
533extern int afs_abort_to_error(u32);
534
1da177e4
LT
535/*
536 * mntpt.c
537 */
754661f1 538extern const struct inode_operations afs_mntpt_inode_operations;
4b6f5d20 539extern const struct file_operations afs_mntpt_file_operations;
1da177e4
LT
540extern unsigned long afs_mntpt_expiry_timeout;
541
00d3b7a4 542extern int afs_mntpt_check_symlink(struct afs_vnode *, struct key *);
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543extern void afs_mntpt_kill_timer(void);
544extern void afs_umount_begin(struct vfsmount *, int);
1da177e4 545
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546/*
547 * proc.c
548 */
549extern int afs_proc_init(void);
550extern void afs_proc_cleanup(void);
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551extern int afs_proc_cell_setup(struct afs_cell *);
552extern void afs_proc_cell_remove(struct afs_cell *);
1da177e4 553
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554/*
555 * rxrpc.c
556 */
557extern int afs_open_socket(void);
558extern void afs_close_socket(void);
559extern int afs_make_call(struct in_addr *, struct afs_call *, gfp_t,
560 const struct afs_wait_mode *);
561extern struct afs_call *afs_alloc_flat_call(const struct afs_call_type *,
562 size_t, size_t);
563extern void afs_flat_call_destructor(struct afs_call *);
564extern void afs_transfer_reply(struct afs_call *, struct sk_buff *);
565extern void afs_send_empty_reply(struct afs_call *);
b908fe6b 566extern void afs_send_simple_reply(struct afs_call *, const void *, size_t);
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567extern int afs_extract_data(struct afs_call *, struct sk_buff *, bool, void *,
568 size_t);
569
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570/*
571 * security.c
572 */
573extern void afs_clear_permits(struct afs_vnode *);
574extern void afs_cache_permit(struct afs_vnode *, struct key *, long);
416351f2 575extern void afs_zap_permits(struct rcu_head *);
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576extern struct key *afs_request_key(struct afs_cell *);
577extern int afs_permission(struct inode *, int, struct nameidata *);
578
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579/*
580 * server.c
581 */
582extern spinlock_t afs_server_peer_lock;
583
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584#define afs_get_server(S) \
585do { \
586 _debug("GET SERVER %d", atomic_read(&(S)->usage)); \
587 atomic_inc(&(S)->usage); \
588} while(0)
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589
590extern struct afs_server *afs_lookup_server(struct afs_cell *,
591 const struct in_addr *);
592extern struct afs_server *afs_find_server(const struct in_addr *);
593extern void afs_put_server(struct afs_server *);
594extern void __exit afs_purge_servers(void);
595
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596/*
597 * super.c
598 */
599extern int afs_fs_init(void);
600extern void afs_fs_exit(void);
601
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602/*
603 * use-rtnetlink.c
604 */
605extern int afs_get_ipv4_interfaces(struct afs_interface *, size_t, bool);
ec9c9485 606extern int afs_get_MAC_address(u8 *, size_t);
b908fe6b 607
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608/*
609 * vlclient.c
610 */
611#ifdef AFS_CACHING_SUPPORT
612extern struct cachefs_index_def afs_vlocation_cache_index_def;
613#endif
614
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615extern int afs_vl_get_entry_by_name(struct in_addr *, struct key *,
616 const char *, struct afs_cache_vlocation *,
08e0e7c8 617 const struct afs_wait_mode *);
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618extern int afs_vl_get_entry_by_id(struct in_addr *, struct key *,
619 afs_volid_t, afs_voltype_t,
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620 struct afs_cache_vlocation *,
621 const struct afs_wait_mode *);
622
623/*
624 * vlocation.c
625 */
626#define afs_get_vlocation(V) do { atomic_inc(&(V)->usage); } while(0)
627
628extern int __init afs_vlocation_update_init(void);
629extern struct afs_vlocation *afs_vlocation_lookup(struct afs_cell *,
00d3b7a4 630 struct key *,
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631 const char *, size_t);
632extern void afs_put_vlocation(struct afs_vlocation *);
fbb3fcba 633extern void afs_vlocation_purge(void);
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634
635/*
636 * vnode.c
637 */
638#ifdef AFS_CACHING_SUPPORT
639extern struct cachefs_index_def afs_vnode_cache_index_def;
640#endif
641
642extern struct afs_timer_ops afs_vnode_cb_timed_out_ops;
643
644static inline struct afs_vnode *AFS_FS_I(struct inode *inode)
645{
646 return container_of(inode, struct afs_vnode, vfs_inode);
647}
648
649static inline struct inode *AFS_VNODE_TO_I(struct afs_vnode *vnode)
650{
651 return &vnode->vfs_inode;
652}
653
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654extern void afs_vnode_finalise_status_update(struct afs_vnode *,
655 struct afs_server *);
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656extern int afs_vnode_fetch_status(struct afs_vnode *, struct afs_vnode *,
657 struct key *);
658extern int afs_vnode_fetch_data(struct afs_vnode *, struct key *,
659 off_t, size_t, struct page *);
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660extern int afs_vnode_create(struct afs_vnode *, struct key *, const char *,
661 umode_t, struct afs_fid *, struct afs_file_status *,
662 struct afs_callback *, struct afs_server **);
663extern int afs_vnode_remove(struct afs_vnode *, struct key *, const char *,
664 bool);
665extern int afs_vnode_link(struct afs_vnode *, struct afs_vnode *, struct key *,
666 const char *);
667extern int afs_vnode_symlink(struct afs_vnode *, struct key *, const char *,
668 const char *, struct afs_fid *,
669 struct afs_file_status *, struct afs_server **);
670extern int afs_vnode_rename(struct afs_vnode *, struct afs_vnode *,
671 struct key *, const char *, const char *);
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672extern int afs_vnode_store_data(struct afs_writeback *, pgoff_t, pgoff_t,
673 unsigned, unsigned);
674extern int afs_vnode_setattr(struct afs_vnode *, struct key *, struct iattr *);
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675
676/*
677 * volume.c
678 */
679#ifdef AFS_CACHING_SUPPORT
680extern struct cachefs_index_def afs_volume_cache_index_def;
681#endif
682
683#define afs_get_volume(V) do { atomic_inc(&(V)->usage); } while(0)
684
685extern void afs_put_volume(struct afs_volume *);
00d3b7a4 686extern struct afs_volume *afs_volume_lookup(struct afs_mount_params *);
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687extern struct afs_server *afs_volume_pick_fileserver(struct afs_vnode *);
688extern int afs_volume_release_fileserver(struct afs_vnode *,
689 struct afs_server *, int);
690
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691/*
692 * write.c
693 */
694extern int afs_set_page_dirty(struct page *);
695extern void afs_put_writeback(struct afs_writeback *);
696extern int afs_prepare_write(struct file *, struct page *, unsigned, unsigned);
697extern int afs_commit_write(struct file *, struct page *, unsigned, unsigned);
698extern int afs_writepage(struct page *, struct writeback_control *);
699extern int afs_writepages(struct address_space *, struct writeback_control *);
700extern int afs_write_inode(struct inode *, int);
701extern void afs_pages_written_back(struct afs_vnode *, struct afs_call *);
702extern ssize_t afs_file_write(struct kiocb *, const struct iovec *,
703 unsigned long, loff_t);
704extern int afs_writeback_all(struct afs_vnode *);
705extern int afs_fsync(struct file *, struct dentry *, int);
706
707
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708/*****************************************************************************/
709/*
710 * debug tracing
711 */
712extern unsigned afs_debug;
713
714#define dbgprintk(FMT,...) \
715 printk("[%x%-6.6s] "FMT"\n", smp_processor_id(), current->comm ,##__VA_ARGS__)
716
717/* make sure we maintain the format strings, even when debugging is disabled */
718static inline __attribute__((format(printf,1,2)))
719void _dbprintk(const char *fmt, ...)
720{
721}
722
723#define kenter(FMT,...) dbgprintk("==> %s("FMT")",__FUNCTION__ ,##__VA_ARGS__)
724#define kleave(FMT,...) dbgprintk("<== %s()"FMT"",__FUNCTION__ ,##__VA_ARGS__)
725#define kdebug(FMT,...) dbgprintk(" "FMT ,##__VA_ARGS__)
726
727
728#if defined(__KDEBUG)
729#define _enter(FMT,...) kenter(FMT,##__VA_ARGS__)
730#define _leave(FMT,...) kleave(FMT,##__VA_ARGS__)
731#define _debug(FMT,...) kdebug(FMT,##__VA_ARGS__)
732
733#elif defined(CONFIG_AFS_DEBUG)
734#define AFS_DEBUG_KENTER 0x01
735#define AFS_DEBUG_KLEAVE 0x02
736#define AFS_DEBUG_KDEBUG 0x04
737
738#define _enter(FMT,...) \
739do { \
740 if (unlikely(afs_debug & AFS_DEBUG_KENTER)) \
741 kenter(FMT,##__VA_ARGS__); \
742} while (0)
743
744#define _leave(FMT,...) \
745do { \
746 if (unlikely(afs_debug & AFS_DEBUG_KLEAVE)) \
747 kleave(FMT,##__VA_ARGS__); \
748} while (0)
749
750#define _debug(FMT,...) \
751do { \
752 if (unlikely(afs_debug & AFS_DEBUG_KDEBUG)) \
753 kdebug(FMT,##__VA_ARGS__); \
754} while (0)
755
756#else
757#define _enter(FMT,...) _dbprintk("==> %s("FMT")",__FUNCTION__ ,##__VA_ARGS__)
758#define _leave(FMT,...) _dbprintk("<== %s()"FMT"",__FUNCTION__ ,##__VA_ARGS__)
759#define _debug(FMT,...) _dbprintk(" "FMT ,##__VA_ARGS__)
760#endif
761
762/*
763 * debug assertion checking
764 */
765#if 1 // defined(__KDEBUGALL)
766
767#define ASSERT(X) \
768do { \
769 if (unlikely(!(X))) { \
770 printk(KERN_ERR "\n"); \
771 printk(KERN_ERR "AFS: Assertion failed\n"); \
772 BUG(); \
773 } \
774} while(0)
775
776#define ASSERTCMP(X, OP, Y) \
777do { \
778 if (unlikely(!((X) OP (Y)))) { \
779 printk(KERN_ERR "\n"); \
780 printk(KERN_ERR "AFS: Assertion failed\n"); \
781 printk(KERN_ERR "%lu " #OP " %lu is false\n", \
782 (unsigned long)(X), (unsigned long)(Y)); \
783 printk(KERN_ERR "0x%lx " #OP " 0x%lx is false\n", \
784 (unsigned long)(X), (unsigned long)(Y)); \
785 BUG(); \
786 } \
787} while(0)
788
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789#define ASSERTRANGE(L, OP1, N, OP2, H) \
790do { \
791 if (unlikely(!((L) OP1 (N)) || !((N) OP2 (H)))) { \
792 printk(KERN_ERR "\n"); \
793 printk(KERN_ERR "AFS: Assertion failed\n"); \
794 printk(KERN_ERR "%lu "#OP1" %lu "#OP2" %lu is false\n", \
795 (unsigned long)(L), (unsigned long)(N), \
796 (unsigned long)(H)); \
797 printk(KERN_ERR "0x%lx "#OP1" 0x%lx "#OP2" 0x%lx is false\n", \
798 (unsigned long)(L), (unsigned long)(N), \
799 (unsigned long)(H)); \
800 BUG(); \
801 } \
802} while(0)
803
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804#define ASSERTIF(C, X) \
805do { \
806 if (unlikely((C) && !(X))) { \
807 printk(KERN_ERR "\n"); \
808 printk(KERN_ERR "AFS: Assertion failed\n"); \
809 BUG(); \
810 } \
811} while(0)
812
813#define ASSERTIFCMP(C, X, OP, Y) \
814do { \
815 if (unlikely((C) && !((X) OP (Y)))) { \
816 printk(KERN_ERR "\n"); \
817 printk(KERN_ERR "AFS: Assertion failed\n"); \
818 printk(KERN_ERR "%lu " #OP " %lu is false\n", \
819 (unsigned long)(X), (unsigned long)(Y)); \
820 printk(KERN_ERR "0x%lx " #OP " 0x%lx is false\n", \
821 (unsigned long)(X), (unsigned long)(Y)); \
822 BUG(); \
823 } \
824} while(0)
825
826#else
827
828#define ASSERT(X) \
829do { \
830} while(0)
831
832#define ASSERTCMP(X, OP, Y) \
833do { \
834} while(0)
835
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836#define ASSERTRANGE(L, OP1, N, OP2, H) \
837do { \
838} while(0)
839
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840#define ASSERTIF(C, X) \
841do { \
842} while(0)
843
844#define ASSERTIFCMP(C, X, OP, Y) \
845do { \
846} while(0)
847
848#endif /* __KDEBUGALL */