afs: Fix fileserver rotation
[linux-2.6-block.git] / fs / afs / internal.h
CommitLineData
2874c5fd 1/* SPDX-License-Identifier: GPL-2.0-or-later */
ec26815a 2/* internal AFS stuff
1da177e4 3 *
08e0e7c8 4 * Copyright (C) 2002, 2007 Red Hat, Inc. All Rights Reserved.
1da177e4 5 * Written by David Howells (dhowells@redhat.com)
1da177e4
LT
6 */
7
1da177e4
LT
8#include <linux/compiler.h>
9#include <linux/kernel.h>
8a79790b 10#include <linux/ktime.h>
1da177e4 11#include <linux/fs.h>
5970e15d 12#include <linux/filelock.h>
1da177e4 13#include <linux/pagemap.h>
08e0e7c8 14#include <linux/rxrpc.h>
00d3b7a4 15#include <linux/key.h>
e8edc6e0 16#include <linux/workqueue.h>
00c541ea 17#include <linux/sched.h>
80e50be4 18#include <linux/fscache.h>
e1da0222 19#include <linux/backing-dev.h>
ff548773 20#include <linux/uuid.h>
0722f186 21#include <linux/mm_types.h>
0a5143f2 22#include <linux/dns_resolver.h>
f044c884 23#include <net/net_namespace.h>
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24#include <net/netns/generic.h>
25#include <net/sock.h>
8324f0bc 26#include <net/af_rxrpc.h>
00c541ea 27
08e0e7c8
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28#include "afs.h"
29#include "afs_vl.h"
30
31#define AFS_CELL_MAX_ADDRS 15
32
31143d5d 33struct pagevec;
08e0e7c8 34struct afs_call;
c4508464 35struct afs_vnode;
f49b594d 36struct afs_server_probe;
08e0e7c8 37
6c6c1d63
DH
38/*
39 * Partial file-locking emulation mode. (The problem being that AFS3 only
40 * allows whole-file locks and no upgrading/downgrading).
41 */
42enum afs_flock_mode {
43 afs_flock_mode_unset,
44 afs_flock_mode_local, /* Local locking only */
45 afs_flock_mode_openafs, /* Don't get server lock for a partial lock */
46 afs_flock_mode_strict, /* Always get a server lock for a partial lock */
47 afs_flock_mode_write, /* Get an exclusive server lock for a partial lock */
48};
49
13fcc683 50struct afs_fs_context {
00d3b7a4 51 bool force; /* T to force cell type */
bec5eb61 52 bool autocell; /* T if set auto mount operation */
4d673da1 53 bool dyn_root; /* T if dynamic root */
13fcc683 54 bool no_cell; /* T if the source is "none" (for dynroot) */
6c6c1d63 55 enum afs_flock_mode flock_mode; /* Partial file-locking emulation mode */
00d3b7a4 56 afs_voltype_t type; /* type of volume requested */
13fcc683 57 unsigned int volnamesz; /* size of volume name */
00d3b7a4 58 const char *volname; /* name of volume to mount */
5b86d4ff 59 struct afs_net *net; /* the AFS net namespace stuff */
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60 struct afs_cell *cell; /* cell in which to find volume */
61 struct afs_volume *volume; /* volume record */
62 struct key *key; /* key to use for secure mounting */
63};
64
8e8d7f13 65enum afs_call_state {
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66 AFS_CALL_CL_REQUESTING, /* Client: Request is being sent */
67 AFS_CALL_CL_AWAIT_REPLY, /* Client: Awaiting reply */
68 AFS_CALL_CL_PROC_REPLY, /* Client: rxrpc call complete; processing reply */
69 AFS_CALL_SV_AWAIT_OP_ID, /* Server: Awaiting op ID */
70 AFS_CALL_SV_AWAIT_REQUEST, /* Server: Awaiting request data */
71 AFS_CALL_SV_REPLYING, /* Server: Replying */
72 AFS_CALL_SV_AWAIT_ACK, /* Server: Awaiting final ACK */
73 AFS_CALL_COMPLETE, /* Completed or failed */
8e8d7f13 74};
f044c884 75
f94f70d3
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76/*
77 * Address preferences.
78 */
79struct afs_addr_preference {
80 union {
81 struct in_addr ipv4_addr; /* AF_INET address to compare against */
82 struct in6_addr ipv6_addr; /* AF_INET6 address to compare against */
83 };
84 sa_family_t family; /* Which address to use */
85 u16 prio; /* Priority */
86 u8 subnet_mask; /* How many bits to compare */
87};
88
89struct afs_addr_preference_list {
90 struct rcu_head rcu;
91 u16 version; /* Incremented when prefs list changes */
92 u8 ipv6_off; /* Offset of IPv6 addresses */
93 u8 nr; /* Number of addresses in total */
94 u8 max_prefs; /* Number of prefs allocated */
95 struct afs_addr_preference prefs[] __counted_by(max_prefs);
96};
97
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98struct afs_address {
99 struct rxrpc_peer *peer;
aa453bec 100 short last_error; /* Last error from this address */
d14cf8ed 101 u16 prio; /* Address priority */
72904d7b
DH
102};
103
8b2a464c
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104/*
105 * List of server addresses.
106 */
107struct afs_addr_list {
ddd2b85f 108 struct rcu_head rcu;
8b2a464c 109 refcount_t usage;
d2ddc776 110 u32 version; /* Version */
1e5d8493 111 unsigned int debug_id;
d14cf8ed 112 unsigned int addr_pref_version; /* Version of address preference list */
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113 unsigned char max_addrs;
114 unsigned char nr_addrs;
3bf0fb6f 115 unsigned char preferred; /* Preferred address */
68eb64c3 116 unsigned char nr_ipv4; /* Number of IPv4 addresses */
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117 enum dns_record_source source:8;
118 enum dns_lookup_status status:8;
aa4917d6 119 unsigned long probe_failed; /* Mask of addrs that failed locally/ICMP */
3bf0fb6f 120 unsigned long responded; /* Mask of addrs that responded */
72904d7b 121 struct afs_address addrs[] __counted_by(max_addrs);
68eb64c3 122#define AFS_MAX_ADDRESSES ((unsigned int)(sizeof(unsigned long) * 8))
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123};
124
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125/*
126 * a record of an in-progress RxRPC call
127 */
128struct afs_call {
129 const struct afs_call_type *type; /* type of call */
08e0e7c8 130 wait_queue_head_t waitq; /* processes awaiting completion */
341f741f 131 struct work_struct async_work; /* async I/O processor */
08e0e7c8 132 struct work_struct work; /* actual work processor */
08e0e7c8 133 struct rxrpc_call *rxcall; /* RxRPC call handle */
e38f299e 134 struct rxrpc_peer *peer; /* Remote endpoint */
08e0e7c8 135 struct key *key; /* security for this call */
f044c884 136 struct afs_net *net; /* The network namespace */
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137 struct afs_server *server; /* The fileserver record if fs op (pins ref) */
138 struct afs_vlserver *vlserver; /* The vlserver record if vl op */
08e0e7c8 139 void *request; /* request data (first part) */
f105da1a 140 size_t iov_len; /* Size of *iter to be used */
fc276122 141 struct iov_iter def_iter; /* Default buffer/data iterator */
bd80d8a8 142 struct iov_iter *write_iter; /* Iterator defining write to be made */
fc276122
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143 struct iov_iter *iter; /* Iterator currently in use */
144 union { /* Convenience for ->def_iter */
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145 struct kvec kvec[1];
146 struct bio_vec bvec[1];
147 };
08e0e7c8 148 void *buffer; /* reply receive buffer */
ffba718e 149 union {
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150 struct afs_endpoint_state *probe;
151 struct afs_addr_list *vl_probe;
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152 struct afs_addr_list *ret_alist;
153 struct afs_vldb_entry *ret_vldb;
c3e9f888 154 char *ret_str;
ffba718e 155 };
f49b594d 156 unsigned char probe_index; /* Address in ->probe_alist */
e49c7b2f 157 struct afs_operation *op;
ffba718e 158 unsigned int server_index;
c56f9ec8 159 refcount_t ref;
8e8d7f13 160 enum afs_call_state state;
98bf40cd 161 spinlock_t state_lock;
08e0e7c8 162 int error; /* error code */
d001648e 163 u32 abort_code; /* Remote abort ID or 0 */
db099c62 164 unsigned int max_lifespan; /* Maximum lifespan in secs to set if not 0 */
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165 unsigned request_size; /* size of request data */
166 unsigned reply_max; /* maximum size of reply */
e49c7b2f 167 unsigned count2; /* count used in unmarshalling */
08e0e7c8 168 unsigned char unmarshall; /* unmarshalling phase */
dde9f095 169 bool drop_ref; /* T if need to drop ref for incoming call */
d001648e 170 bool need_attention; /* T if RxRPC poked us */
56ff9c83 171 bool async; /* T if asynchronous */
a68f4a27 172 bool upgrade; /* T to request service upgrade */
20b8391f 173 bool intr; /* T if interruptible */
38355eec 174 bool unmarshalling_error; /* T if an unmarshalling error occurred */
aa453bec 175 bool responded; /* Got a response from the call (may be abort) */
bf99a53c 176 u16 service_id; /* Actual service ID (after upgrade) */
a25e21f0 177 unsigned int debug_id; /* Trace ID */
50a2c953 178 u32 operation_ID; /* operation ID for an incoming call */
08e0e7c8 179 u32 count; /* count for use in unmarshalling */
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180 union { /* place to extract temporary data */
181 struct {
182 __be32 tmp_u;
183 __be32 tmp;
184 } __attribute__((packed));
185 __be64 tmp64;
186 };
7903192c 187 ktime_t issue_time; /* Time of issue of operation */
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DH
188};
189
190struct afs_call_type {
00d3b7a4 191 const char *name;
025db80c 192 unsigned int op; /* Really enum afs_fs_operation */
00d3b7a4 193
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194 /* deliver request or reply data to an call
195 * - returning an error will cause the call to be aborted
196 */
d001648e 197 int (*deliver)(struct afs_call *call);
08e0e7c8 198
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199 /* clean up a call */
200 void (*destructor)(struct afs_call *call);
341f741f
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201
202 /* Work function */
203 void (*work)(struct work_struct *work);
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204
205 /* Call done function (gets called immediately on success or failure) */
206 void (*done)(struct afs_call *call);
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207};
208
4343d008
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209/*
210 * Key available for writeback on a file.
211 */
212struct afs_wb_key {
213 refcount_t usage;
214 struct key *key;
215 struct list_head vnode_link; /* Link in vnode->wb_keys */
216};
217
215804a9
DH
218/*
219 * AFS open file information record. Pointed to by file->private_data.
220 */
221struct afs_file {
222 struct key *key; /* The key this file was opened with */
4343d008 223 struct afs_wb_key *wb; /* Writeback key record for this file */
215804a9
DH
224};
225
226static inline struct key *afs_file_key(struct file *file)
227{
228 struct afs_file *af = file->private_data;
229
230 return af->key;
231}
232
196ee9cd
DH
233/*
234 * Record of an outstanding read operation on a vnode.
235 */
236struct afs_read {
237 loff_t pos; /* Where to start reading */
e8e581a8 238 loff_t len; /* How much we're asking for */
196ee9cd 239 loff_t actual_len; /* How much we're actually getting */
f3ddee8d 240 loff_t file_size; /* File size returned by server */
c69bf479 241 struct key *key; /* The key to use to reissue the read */
c4508464 242 struct afs_vnode *vnode; /* The file being read into. */
6a19114b 243 struct netfs_io_subrequest *subreq; /* Fscache helper read request this belongs to */
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DH
244 afs_dataversion_t data_version; /* Version number returned by server */
245 refcount_t usage;
c4508464 246 unsigned int call_debug_id;
196ee9cd 247 unsigned int nr_pages;
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DH
248 int error;
249 void (*done)(struct afs_read *);
250 void (*cleanup)(struct afs_read *);
251 struct iov_iter *iter; /* Iterator representing the buffer */
252 struct iov_iter def_iter; /* Default iterator */
196ee9cd
DH
253};
254
08e0e7c8
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255/*
256 * AFS superblock private data
257 * - there's one superblock per volume
258 */
259struct afs_super_info {
5b86d4ff 260 struct net *net_ns; /* Network namespace */
49566f6f 261 struct afs_cell *cell; /* The cell in which the volume resides */
08e0e7c8 262 struct afs_volume *volume; /* volume record */
6c6c1d63 263 enum afs_flock_mode flock_mode:8; /* File locking emulation mode */
4d673da1 264 bool dyn_root; /* True if dynamic root */
08e0e7c8 265};
1da177e4 266
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267static inline struct afs_super_info *AFS_FS_S(struct super_block *sb)
268{
269 return sb->s_fs_info;
1da177e4
LT
270}
271
08e0e7c8
DH
272extern struct file_system_type afs_fs_type;
273
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274/*
275 * Set of substitutes for @sys.
276 */
277struct afs_sysnames {
278#define AFS_NR_SYSNAME 16
279 char *subs[AFS_NR_SYSNAME];
280 refcount_t usage;
281 unsigned short nr;
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282 char blank[1];
283};
284
f044c884
DH
285/*
286 * AFS network namespace record.
287 */
288struct afs_net {
5b86d4ff 289 struct net *net; /* Backpointer to the owning net namespace */
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290 struct afs_uuid uuid;
291 bool live; /* F if this namespace is being removed */
292
293 /* AF_RXRPC I/O stuff */
294 struct socket *socket;
295 struct afs_call *spare_incoming_call;
296 struct work_struct charge_preallocation_work;
297 struct mutex socket_mutex;
298 atomic_t nr_outstanding_calls;
299 atomic_t nr_superblocks;
300
301 /* Cell database */
989782dc 302 struct rb_root cells;
92e3cc91 303 struct afs_cell *ws_cell;
989782dc
DH
304 struct work_struct cells_manager;
305 struct timer_list cells_timer;
306 atomic_t cells_outstanding;
92e3cc91 307 struct rw_semaphore cells_lock;
8a070a96 308 struct mutex cells_alias_lock;
f044c884 309
0da0b7fd 310 struct mutex proc_cells_lock;
6b3944e4 311 struct hlist_head proc_cells;
f044c884 312
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DH
313 /* Known servers. Theoretically each fileserver can only be in one
314 * cell, but in practice, people create aliases and subsets and there's
315 * no easy way to distinguish them.
316 */
f6cbb368 317 seqlock_t fs_lock; /* For fs_servers, fs_probe_*, fs_proc */
d2ddc776 318 struct rb_root fs_servers; /* afs_server (by server UUID or address) */
f6cbb368
DH
319 struct list_head fs_probe_fast; /* List of afs_server to probe at 30s intervals */
320 struct list_head fs_probe_slow; /* List of afs_server to probe at 5m intervals */
d2ddc776 321 struct hlist_head fs_proc; /* procfs servers list */
f044c884 322
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323 struct hlist_head fs_addresses4; /* afs_server (by lowest IPv4 addr) */
324 struct hlist_head fs_addresses6; /* afs_server (by lowest IPv6 addr) */
325 seqlock_t fs_addr_lock; /* For fs_addresses[46] */
f044c884 326
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DH
327 struct work_struct fs_manager;
328 struct timer_list fs_timer;
f6cbb368
DH
329
330 struct work_struct fs_prober;
331 struct timer_list fs_probe_timer;
59fa1c4a 332 atomic_t servers_outstanding;
f044c884 333
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334 /* File locking renewal management */
335 struct mutex lock_manager_mutex;
336
f044c884 337 /* Misc */
0da0b7fd 338 struct super_block *dynroot_sb; /* Dynamic root mount superblock */
d55b4da4 339 struct proc_dir_entry *proc_afs; /* /proc/net/afs directory */
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DH
340 struct afs_sysnames *sysnames;
341 rwlock_t sysnames_lock;
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342 struct afs_addr_preference_list __rcu *address_prefs;
343 u16 address_pref_version;
d55b4da4
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344
345 /* Statistics counters */
346 atomic_t n_lookup; /* Number of lookups done */
347 atomic_t n_reval; /* Number of dentries needing revalidation */
348 atomic_t n_inval; /* Number of invalidations by the server */
508cae68 349 atomic_t n_relpg; /* Number of invalidations by release_folio */
d55b4da4 350 atomic_t n_read_dir; /* Number of directory pages read */
63a4681f
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351 atomic_t n_dir_cr; /* Number of directory entry creation edits */
352 atomic_t n_dir_rm; /* Number of directory entry removal edits */
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353 atomic_t n_stores; /* Number of store ops */
354 atomic_long_t n_store_bytes; /* Number of bytes stored */
355 atomic_long_t n_fetch_bytes; /* Number of bytes fetched */
356 atomic_t n_fetches; /* Number of data fetch ops */
f044c884
DH
357};
358
6f8880d8 359extern const char afs_init_sysname[];
f044c884 360
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361enum afs_cell_state {
362 AFS_CELL_UNSET,
363 AFS_CELL_ACTIVATING,
364 AFS_CELL_ACTIVE,
365 AFS_CELL_DEACTIVATING,
366 AFS_CELL_INACTIVE,
367 AFS_CELL_FAILED,
1d0e850a 368 AFS_CELL_REMOVED,
989782dc
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369};
370
08e0e7c8 371/*
d2ddc776
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372 * AFS cell record.
373 *
374 * This is a tricky concept to get right as it is possible to create aliases
375 * simply by pointing AFSDB/SRV records for two names at the same set of VL
376 * servers; it is also possible to do things like setting up two sets of VL
377 * servers, one of which provides a superset of the volumes provided by the
378 * other (for internal/external division, for example).
379 *
380 * Cells only exist in the sense that (a) a cell's name maps to a set of VL
381 * servers and (b) a cell's name is used by the client to select the key to use
382 * for authentication and encryption. The cell name is not typically used in
383 * the protocol.
384 *
8a070a96
DH
385 * Two cells are determined to be aliases if they have an explicit alias (YFS
386 * only), share any VL servers in common or have at least one volume in common.
387 * "In common" means that the address list of the VL servers or the fileservers
388 * share at least one endpoint.
08e0e7c8
DH
389 */
390struct afs_cell {
989782dc
DH
391 union {
392 struct rcu_head rcu;
393 struct rb_node net_node; /* Node in net->cells */
394 };
395 struct afs_net *net;
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DH
396 struct afs_cell *alias_of; /* The cell this is an alias of */
397 struct afs_volume *root_volume; /* The root.cell volume if there is one */
00d3b7a4 398 struct key *anonymous_key; /* anonymous user key for this cell */
989782dc 399 struct work_struct manager; /* Manager for init/deinit/dns */
6b3944e4 400 struct hlist_node proc_link; /* /proc cell list link */
989782dc
DH
401 time64_t dns_expiry; /* Time AFSDB/SRV record expires */
402 time64_t last_inactive; /* Time of last drop of usage count */
c56f9ec8 403 refcount_t ref; /* Struct refcount */
88c853c3 404 atomic_t active; /* Active usage counter */
989782dc 405 unsigned long flags;
d5c32c89
DH
406#define AFS_CELL_FL_NO_GC 0 /* The cell was added manually, don't auto-gc */
407#define AFS_CELL_FL_DO_LOOKUP 1 /* DNS lookup requested */
8a070a96 408#define AFS_CELL_FL_CHECK_ALIAS 2 /* Need to check for aliases */
989782dc
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409 enum afs_cell_state state;
410 short error;
d5c32c89
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411 enum dns_record_source dns_source:8; /* Latest source of data from lookup */
412 enum dns_lookup_status dns_status:8; /* Latest status of data from lookup */
413 unsigned int dns_lookup_count; /* Counter of DNS lookups */
dca54a7b 414 unsigned int debug_id;
989782dc 415
20325960 416 /* The volumes belonging to this cell */
32222f09 417 struct rw_semaphore vs_lock; /* Lock for server->volumes */
20325960
DH
418 struct rb_root volumes; /* Tree of volumes on this server */
419 struct hlist_head proc_volumes; /* procfs volume list */
420 seqlock_t volume_lock; /* For volumes */
421
d2ddc776 422 /* Active fileserver interaction state. */
20325960
DH
423 struct rb_root fs_servers; /* afs_server (by server UUID) */
424 seqlock_t fs_lock; /* For fs_servers */
989782dc 425
d2ddc776 426 /* VL server list. */
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427 rwlock_t vl_servers_lock; /* Lock on vl_servers */
428 struct afs_vlserver_list __rcu *vl_servers;
429
989782dc 430 u8 name_len; /* Length of name */
719fdd32 431 char *name; /* Cell name, case-flattened and NUL-padded */
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DH
432};
433
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434/*
435 * Volume Location server record.
436 */
437struct afs_vlserver {
438 struct rcu_head rcu;
439 struct afs_addr_list __rcu *addresses; /* List of addresses for this VL server */
440 unsigned long flags;
441#define AFS_VLSERVER_FL_PROBED 0 /* The VL server has been probed */
442#define AFS_VLSERVER_FL_PROBING 1 /* VL server is being probed */
3bf0fb6f 443#define AFS_VLSERVER_FL_IS_YFS 2 /* Server is YFS not AFS */
b95b3094 444#define AFS_VLSERVER_FL_RESPONDING 3 /* VL server is responding */
0a5143f2 445 rwlock_t lock; /* Lock on addresses */
c56f9ec8 446 refcount_t ref;
b95b3094 447 unsigned int rtt; /* Server's current RTT in uS */
e6a7d7f7 448 unsigned int debug_id;
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DH
449
450 /* Probe state */
451 wait_queue_head_t probe_wq;
452 atomic_t probe_outstanding;
453 spinlock_t probe_lock;
454 struct {
72904d7b 455 unsigned int rtt; /* Best RTT in uS (or UINT_MAX) */
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456 u32 abort_code;
457 short error;
fb72cd3d
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458 unsigned short flags;
459#define AFS_VLSERVER_PROBE_RESPONDED 0x01 /* At least once response (may be abort) */
460#define AFS_VLSERVER_PROBE_IS_YFS 0x02 /* The peer appears to be YFS */
461#define AFS_VLSERVER_PROBE_NOT_YFS 0x04 /* The peer appears not to be YFS */
462#define AFS_VLSERVER_PROBE_LOCAL_FAILURE 0x08 /* A local failure prevented a probe */
3bf0fb6f
DH
463 } probe;
464
e38f299e 465 u16 service_id; /* Service ID we're using */
0a5143f2 466 u16 port;
3bf0fb6f 467 u16 name_len; /* Length of name */
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468 char name[]; /* Server name, case-flattened */
469};
470
471/*
472 * Weighted list of Volume Location servers.
473 */
474struct afs_vlserver_entry {
475 u16 priority; /* Preference (as SRV) */
476 u16 weight; /* Weight (as SRV) */
477 enum dns_record_source source:8;
478 enum dns_lookup_status status:8;
479 struct afs_vlserver *server;
480};
481
482struct afs_vlserver_list {
483 struct rcu_head rcu;
c56f9ec8 484 refcount_t ref;
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485 u8 nr_servers;
486 u8 index; /* Server currently in use */
3bf0fb6f 487 u8 preferred; /* Preferred server */
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488 enum dns_record_source source:8;
489 enum dns_lookup_status status:8;
490 rwlock_t lock;
491 struct afs_vlserver_entry servers[];
492};
493
08e0e7c8 494/*
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495 * Cached VLDB entry.
496 *
497 * This is pointed to by cell->vldb_entries, indexed by name.
08e0e7c8 498 */
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499struct afs_vldb_entry {
500 afs_volid_t vid[3]; /* Volume IDs for R/W, R/O and Bak volumes */
00d3b7a4 501
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502 unsigned long flags;
503#define AFS_VLDB_HAS_RW 0 /* - R/W volume exists */
504#define AFS_VLDB_HAS_RO 1 /* - R/O volume exists */
505#define AFS_VLDB_HAS_BAK 2 /* - Backup volume exists */
506#define AFS_VLDB_QUERY_VALID 3 /* - Record is valid */
507#define AFS_VLDB_QUERY_ERROR 4 /* - VL server returned error */
508
509 uuid_t fs_server[AFS_NMAXNSERVERS];
81006805 510 u32 addr_version[AFS_NMAXNSERVERS]; /* Registration change counters */
d2ddc776 511 u8 fs_mask[AFS_NMAXNSERVERS];
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512#define AFS_VOL_VTM_RW 0x01 /* R/W version of the volume is available (on this server) */
513#define AFS_VOL_VTM_RO 0x02 /* R/O version of the volume is available (on this server) */
514#define AFS_VOL_VTM_BAK 0x04 /* backup version of the volume is available (on this server) */
d3acd81e 515 u8 vlsf_flags[AFS_NMAXNSERVERS];
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516 short error;
517 u8 nr_servers; /* Number of server records */
518 u8 name_len;
519 u8 name[AFS_MAXVOLNAME + 1]; /* NUL-padded volume name */
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520};
521
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522/*
523 * Fileserver endpoint state. The records the addresses of a fileserver's
524 * endpoints and the state and result of a round of probing on them. This
525 * allows the rotation algorithm to access those results without them being
526 * erased by a subsequent round of probing.
527 */
528struct afs_endpoint_state {
529 struct rcu_head rcu;
530 struct afs_addr_list *addresses; /* The addresses being probed */
531 unsigned long responsive_set; /* Bitset of responsive endpoints */
532 unsigned long failed_set; /* Bitset of endpoints we failed to probe */
533 refcount_t ref;
534 unsigned int server_id; /* Debug ID of server */
535 unsigned int probe_seq; /* Probe sequence (from server::probe_counter) */
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536 atomic_t nr_probing; /* Number of outstanding probes */
537 unsigned int rtt; /* Best RTT in uS (or UINT_MAX) */
538 s32 abort_code;
539 short error;
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540 unsigned long flags;
541#define AFS_ESTATE_RESPONDED 0 /* Set if the server responded */
542#define AFS_ESTATE_SUPERSEDED 1 /* Set if this record has been superseded */
543#define AFS_ESTATE_IS_YFS 2 /* Set if probe upgraded to YFS */
544#define AFS_ESTATE_NOT_YFS 3 /* Set if probe didn't upgrade to YFS */
545#define AFS_ESTATE_LOCAL_FAILURE 4 /* Set if there was a local failure (eg. ENOMEM) */
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546};
547
08e0e7c8 548/*
d2ddc776 549 * Record of fileserver with which we're actively communicating.
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550 */
551struct afs_server {
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552 struct rcu_head rcu;
553 union {
554 uuid_t uuid; /* Server ID */
555 struct afs_uuid _uuid;
556 };
557
20325960 558 struct afs_cell *cell; /* Cell to which belongs (pins ref) */
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559 struct rb_node uuid_rb; /* Link in net->fs_servers */
560 struct afs_server __rcu *uuid_next; /* Next server with same UUID */
561 struct afs_server *uuid_prev; /* Previous server with same UUID */
f6cbb368 562 struct list_head probe_link; /* Link in net->fs_probe_list */
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563 struct hlist_node addr4_link; /* Link in net->fs_addresses4 */
564 struct hlist_node addr6_link; /* Link in net->fs_addresses6 */
565 struct hlist_node proc_link; /* Link in net->fs_proc */
ca0e79a4 566 struct list_head volumes; /* RCU list of afs_server_entry objects */
d2ddc776 567 struct afs_server *gc_next; /* Next server in manager's list */
977e5f8e 568 time64_t unuse_time; /* Time at which last unused */
c435ee34 569 unsigned long flags;
f3c130e6 570#define AFS_SERVER_FL_RESPONDING 0 /* The server is responding */
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571#define AFS_SERVER_FL_UPDATING 1
572#define AFS_SERVER_FL_NEEDS_UPDATE 2 /* Fileserver address list is out of date */
573#define AFS_SERVER_FL_NOT_READY 4 /* The record is not ready for use */
574#define AFS_SERVER_FL_NOT_FOUND 5 /* VL server says no such server */
575#define AFS_SERVER_FL_VL_FAIL 6 /* Failed to access VL server */
f2686b09 576#define AFS_SERVER_FL_MAY_HAVE_CB 8 /* May have callbacks on this fileserver */
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577#define AFS_SERVER_FL_IS_YFS 16 /* Server is YFS not AFS */
578#define AFS_SERVER_FL_NO_IBULK 17 /* Fileserver doesn't support FS.InlineBulkStatus */
579#define AFS_SERVER_FL_NO_RM2 18 /* Fileserver doesn't support YFS.RemoveFile2 */
b537a3c2 580#define AFS_SERVER_FL_HAS_FS64 19 /* Fileserver supports FS.{Fetch,Store}Data64 */
c56f9ec8 581 refcount_t ref; /* Object refcount */
977e5f8e 582 atomic_t active; /* Active user count */
d2ddc776 583 u32 addr_version; /* Address list version */
e38f299e 584 u16 service_id; /* Service ID we're using. */
f3c130e6 585 unsigned int rtt; /* Server's current RTT in uS */
45218193 586 unsigned int debug_id; /* Debugging ID for traces */
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587
588 /* file service access */
d2ddc776 589 rwlock_t fs_lock; /* access lock */
08e0e7c8 590
3bf0fb6f 591 /* Probe state */
f49b594d 592 struct afs_endpoint_state __rcu *endpoint_state; /* Latest endpoint/probe state */
f6cbb368 593 unsigned long probed_at; /* Time last probe was dispatched (jiffies) */
3bf0fb6f 594 wait_queue_head_t probe_wq;
f49b594d 595 unsigned int probe_counter; /* Number of probes issued */
3bf0fb6f 596 spinlock_t probe_lock;
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597};
598
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599enum afs_ro_replicating {
600 AFS_RO_NOT_REPLICATING, /* Not doing replication */
601 AFS_RO_REPLICATING_USE_OLD, /* Replicating; use old version */
602 AFS_RO_REPLICATING_USE_NEW, /* Replicating; switch to new version */
603} __mode(byte);
604
08e0e7c8 605/*
194d28cf 606 * Replaceable volume server list.
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607 */
608struct afs_server_entry {
609 struct afs_server *server;
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610 struct afs_volume *volume;
611 struct list_head slink; /* Link in server->volumes */
453924de 612 time64_t cb_expires_at; /* Time at which volume-level callback expires */
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613 unsigned long flags;
614#define AFS_SE_EXCLUDED 0 /* Set if server is to be excluded in rotation */
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615};
616
617struct afs_server_list {
e6bace73 618 struct rcu_head rcu;
d2ddc776 619 refcount_t usage;
ca0e79a4 620 bool attached; /* T if attached to servers */
d3acd81e 621 enum afs_ro_replicating ro_replicating; /* RW->RO update (probably) in progress */
3bf0fb6f 622 unsigned char nr_servers;
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623 unsigned short vnovol_mask; /* Servers to be skipped due to VNOVOL */
624 unsigned int seq; /* Set to ->servers_seq when installed */
d4a96bec 625 rwlock_t lock;
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626 struct afs_server_entry servers[];
627};
628
629/*
630 * Live AFS volume management.
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631 */
632struct afs_volume {
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633 struct rcu_head rcu;
634 afs_volid_t vid; /* The volume ID of this volume */
635 afs_volid_t vids[AFS_MAXTYPES]; /* All associated volume IDs */
c56f9ec8 636 refcount_t ref;
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637 time64_t update_at; /* Time at which to next update */
638 struct afs_cell *cell; /* Cell to which belongs (pins ref) */
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639 struct rb_node cell_node; /* Link in cell->volumes */
640 struct hlist_node proc_link; /* Link in cell->proc_volumes */
641 struct super_block __rcu *sb; /* Superblock on which inodes reside */
445f9b69 642 struct work_struct destructor; /* Deferred destructor */
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643 unsigned long flags;
644#define AFS_VOLUME_NEEDS_UPDATE 0 /* - T if an update needs performing */
645#define AFS_VOLUME_UPDATING 1 /* - T if an update is in progress */
646#define AFS_VOLUME_WAIT 2 /* - T if users must wait for update */
647#define AFS_VOLUME_DELETED 3 /* - T if volume appears deleted */
648#define AFS_VOLUME_OFFLINE 4 /* - T if volume offline notice given */
649#define AFS_VOLUME_BUSY 5 /* - T if volume busy notice given */
20325960 650#define AFS_VOLUME_MAYBE_NO_IBULK 6 /* - T if some servers don't have InlineBulkStatus */
9a6b294a 651#define AFS_VOLUME_RM_TREE 7 /* - Set if volume removed from cell->volumes */
9b3f26c9 652#ifdef CONFIG_AFS_FSCACHE
523d27cd 653 struct fscache_volume *cache; /* Caching cookie */
08e0e7c8 654#endif
8a070a96 655 struct afs_server_list __rcu *servers; /* List of servers on which volume resides */
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656 rwlock_t servers_lock; /* Lock for ->servers */
657 unsigned int servers_seq; /* Incremented each time ->servers changes */
658
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659 /* RO release tracking */
660 struct mutex volsync_lock; /* Time/state evaluation lock */
661 time64_t creation_time; /* Volume creation time (or TIME64_MIN) */
662 time64_t update_time; /* Volume update time (or TIME64_MIN) */
663
664 /* Callback management */
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665 struct mutex cb_check_lock; /* Lock to control race to check after v_break */
666 time64_t cb_expires_at; /* Earliest volume callback expiry time */
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667 atomic_t cb_ro_snapshot; /* RO volume update-from-snapshot counter */
668 atomic_t cb_v_break; /* Volume-break event counter. */
453924de 669 atomic_t cb_v_check; /* Volume-break has-been-checked counter. */
16069e13 670 atomic_t cb_scrub; /* Scrub-all-data event counter. */
90fa9b64 671 rwlock_t cb_v_break_lock;
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672 struct rw_semaphore open_mmaps_lock;
673 struct list_head open_mmaps; /* List of vnodes that are mmapped */
68251f0a 674
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675 afs_voltype_t type; /* type of volume */
676 char type_force; /* force volume type (suppress R/O -> R/W) */
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677 u8 name_len;
678 u8 name[AFS_MAXVOLNAME + 1]; /* NUL-padded volume name */
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679};
680
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681enum afs_lock_state {
682 AFS_VNODE_LOCK_NONE, /* The vnode has no lock on the server */
683 AFS_VNODE_LOCK_WAITING_FOR_CB, /* We're waiting for the server to break the callback */
684 AFS_VNODE_LOCK_SETTING, /* We're asking the server for a lock */
685 AFS_VNODE_LOCK_GRANTED, /* We have a lock on the server */
686 AFS_VNODE_LOCK_EXTENDING, /* We're extending a lock on the server */
687 AFS_VNODE_LOCK_NEED_UNLOCK, /* We need to unlock on the server */
688 AFS_VNODE_LOCK_UNLOCKING, /* We're telling the server to unlock */
cdfb26b4 689 AFS_VNODE_LOCK_DELETED, /* The vnode has been deleted whilst we have a lock */
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690};
691
08e0e7c8 692/*
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693 * AFS inode private data.
694 *
695 * Note that afs_alloc_inode() *must* reset anything that could incorrectly
696 * leak from one inode to another.
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697 */
698struct afs_vnode {
874c8ca1 699 struct netfs_inode netfs; /* Netfslib context and vfs inode */
08e0e7c8 700 struct afs_volume *volume; /* volume on which vnode resides */
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701 struct afs_fid fid; /* the file identifier for this inode */
702 struct afs_file_status status; /* AFS status info for this file */
a4ff7401 703 afs_dataversion_t invalid_before; /* Child dentries are invalid before this */
fe342cf7 704 struct afs_permits __rcu *permit_cache; /* cache of permits so far obtained */
d2ddc776 705 struct mutex io_lock; /* Lock for serialising I/O on this mutex */
b61f7dcf 706 struct rw_semaphore validate_lock; /* lock for validating this vnode */
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707 struct rw_semaphore rmdir_lock; /* Lock for rmdir vs sillyrename */
708 struct key *silly_key; /* Silly rename key */
4343d008 709 spinlock_t wb_lock; /* lock for wb_keys */
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710 spinlock_t lock; /* waitqueue/flags lock */
711 unsigned long flags;
260a9803 712#define AFS_VNODE_UNSET 1 /* set if vnode attributes not yet set */
f3ddee8d 713#define AFS_VNODE_DIR_VALID 2 /* Set if dir contents are valid */
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714#define AFS_VNODE_ZAP_DATA 3 /* set if vnode's data should be invalidated */
715#define AFS_VNODE_DELETED 4 /* set if vnode deleted on server */
716#define AFS_VNODE_MOUNTPOINT 5 /* set if vnode is a mountpoint symlink */
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717#define AFS_VNODE_AUTOCELL 6 /* set if Vnode is an auto mount point */
718#define AFS_VNODE_PSEUDODIR 7 /* set if Vnode is a pseudo directory */
5a813276 719#define AFS_VNODE_NEW_CONTENT 8 /* Set if file has new content (create/trunc-0) */
b6489a49 720#define AFS_VNODE_SILLY_DELETED 9 /* Set if file has been silly-deleted */
22650f14 721#define AFS_VNODE_MODIFYING 10 /* Set if we're performing a modification op */
08e0e7c8 722
4343d008 723 struct list_head wb_keys; /* List of keys available for writeback */
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724 struct list_head pending_locks; /* locks waiting to be granted */
725 struct list_head granted_locks; /* locks granted on this file */
726 struct delayed_work lock_work; /* work to be done in locking */
0fafdc9f 727 struct key *lock_key; /* Key to be used in lock ops */
a690f60a 728 ktime_t locked_at; /* Time at which lock obtained */
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729 enum afs_lock_state lock_state : 8;
730 afs_lock_type_t lock_type : 8;
31143d5d 731
08e0e7c8 732 /* outstanding callback notification on this file */
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733 struct work_struct cb_work; /* Work for mmap'd files */
734 struct list_head cb_mmap_link; /* Link in cell->fs_open_mmaps */
20325960 735 void *cb_server; /* Server with callback/filelock */
6e0e99d5 736 atomic_t cb_nr_mmap; /* Number of mmaps */
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737 unsigned int cb_ro_snapshot; /* RO volume release counter on ->volume */
738 unsigned int cb_scrub; /* Scrub counter on ->volume */
c435ee34 739 unsigned int cb_break; /* Break counter on vnode */
453924de 740 unsigned int cb_v_check; /* Break check counter on ->volume */
20325960 741 seqlock_t cb_lock; /* Lock for ->cb_server, ->status, ->cb_*break */
c435ee34 742
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743 atomic64_t cb_expires_at; /* time at which callback expires */
744#define AFS_NO_CB_PROMISE TIME64_MIN
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745};
746
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747static inline struct fscache_cookie *afs_vnode_cache(struct afs_vnode *vnode)
748{
749#ifdef CONFIG_AFS_FSCACHE
e81fb419 750 return netfs_i_cookie(&vnode->netfs);
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751#else
752 return NULL;
753#endif
754}
755
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756static inline void afs_vnode_set_cache(struct afs_vnode *vnode,
757 struct fscache_cookie *cookie)
758{
759#ifdef CONFIG_AFS_FSCACHE
874c8ca1 760 vnode->netfs.cache = cookie;
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761 if (cookie)
762 mapping_set_release_always(vnode->netfs.inode.i_mapping);
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763#endif
764}
765
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766/*
767 * cached security record for one user's attempt to access a vnode
768 */
769struct afs_permit {
770 struct key *key; /* RxRPC ticket holding a security context */
be080a6f 771 afs_access_t access; /* CallerAccess value for this key */
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772};
773
774/*
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775 * Immutable cache of CallerAccess records from attempts to access vnodes.
776 * These may be shared between multiple vnodes.
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777 */
778struct afs_permits {
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779 struct rcu_head rcu;
780 struct hlist_node hash_node; /* Link in hash */
781 unsigned long h; /* Hash value for this permit list */
782 refcount_t usage;
783 unsigned short nr_permits; /* Number of records */
784 bool invalidated; /* Invalidated due to key change */
aade1533 785 struct afs_permit permits[] __counted_by(nr_permits); /* List of permits sorted by key pointer */
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786};
787
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788/*
789 * Error prioritisation and accumulation.
790 */
791struct afs_error {
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792 s32 abort_code; /* Cumulative abort code */
793 short error; /* Cumulative error */
4584ae96 794 bool responded; /* T if server responded */
aa453bec 795 bool aborted; /* T if ->error is from an abort */
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796};
797
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798/*
799 * Cursor for iterating over a set of volume location servers.
800 */
801struct afs_vl_cursor {
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802 struct afs_cell *cell; /* The cell we're querying */
803 struct afs_vlserver_list *server_list; /* Current server list (pins ref) */
3bf0fb6f 804 struct afs_vlserver *server; /* Server on which this resides */
98f9fda2 805 struct afs_addr_list *alist; /* Current address list (pins ref) */
0a5143f2 806 struct key *key; /* Key for the server */
905b8615 807 unsigned long untried_servers; /* Bitmask of untried servers */
98f9fda2 808 unsigned long addr_tried; /* Tried addresses */
aa453bec 809 struct afs_error cumul_error; /* Cumulative error */
98f9fda2 810 unsigned int debug_id;
aa453bec 811 s32 call_abort_code;
aa453bec 812 short call_error; /* Error from single call */
905b8615 813 short server_index; /* Current server */
98f9fda2 814 signed char addr_index; /* Current address */
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815 unsigned short flags;
816#define AFS_VL_CURSOR_STOP 0x0001 /* Set to cease iteration */
817#define AFS_VL_CURSOR_RETRY 0x0002 /* Set to do a retry */
818#define AFS_VL_CURSOR_RETRIED 0x0004 /* Set if started a retry */
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819 short nr_iterations; /* Number of server iterations */
820 bool call_responded; /* T if the current address responded */
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821};
822
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823/*
824 * Fileserver state tracking for an operation. An array of these is kept,
825 * indexed by server index.
826 */
827struct afs_server_state {
828 /* Tracking of fileserver probe state. Other operations may interfere
829 * by probing a fileserver when accessing other volumes.
830 */
831 unsigned int probe_seq;
832 unsigned long untried_addrs; /* Addresses we haven't tried yet */
833 struct wait_queue_entry probe_waiter;
834 struct afs_endpoint_state *endpoint_state; /* Endpoint state being monitored */
835};
836
8b2a464c 837/*
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838 * Fileserver operation methods.
839 */
840struct afs_operation_ops {
841 void (*issue_afs_rpc)(struct afs_operation *op);
842 void (*issue_yfs_rpc)(struct afs_operation *op);
843 void (*success)(struct afs_operation *op);
844 void (*aborted)(struct afs_operation *op);
dc419184 845 void (*failed)(struct afs_operation *op);
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846 void (*edit_dir)(struct afs_operation *op);
847 void (*put)(struct afs_operation *op);
848};
849
850struct afs_vnode_param {
851 struct afs_vnode *vnode;
852 struct afs_fid fid; /* Fid to access */
853 struct afs_status_cb scb; /* Returned status and callback promise */
854 afs_dataversion_t dv_before; /* Data version before the call */
453924de 855 unsigned int cb_break_before; /* cb_break before the call */
e49c7b2f 856 u8 dv_delta; /* Expected change in data version */
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857 bool put_vnode:1; /* T if we have a ref on the vnode */
858 bool need_io_lock:1; /* T if we need the I/O lock on this */
859 bool update_ctime:1; /* Need to update the ctime */
860 bool set_size:1; /* Must update i_size */
b6489a49 861 bool op_unlinked:1; /* True if file was unlinked by op */
a9e5c87c 862 bool speculative:1; /* T if speculative status fetch (no vnode lock) */
22650f14 863 bool modification:1; /* Set if the content gets modified */
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864};
865
866/*
867 * Fileserver operation wrapper, handling server and address rotation
868 * asynchronously. May make simultaneous calls to multiple servers.
8b2a464c 869 */
a310082f 870struct afs_operation {
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871 struct afs_net *net; /* Network namespace */
872 struct key *key; /* Key for the cell */
a58823ac 873 const struct afs_call_type *type; /* Type of call done */
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874 const struct afs_operation_ops *ops;
875
876 /* Parameters/results for the operation */
877 struct afs_volume *volume; /* Volume being accessed */
878 struct afs_vnode_param file[2];
879 struct afs_vnode_param *more_files;
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880 struct afs_volsync pre_volsync; /* Volsync before op */
881 struct afs_volsync volsync; /* Volsync returned by op */
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882 struct dentry *dentry; /* Dentry to be altered */
883 struct dentry *dentry_2; /* Second dentry to be altered */
884 struct timespec64 mtime; /* Modification time to record */
da8d0755 885 struct timespec64 ctime; /* Change time to set */
aa453bec 886 struct afs_error cumul_error; /* Cumulative error */
e49c7b2f 887 short nr_files; /* Number of entries in file[], more_files */
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888 unsigned int debug_id;
889
890 unsigned int cb_v_break; /* Volume break counter before op */
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891
892 union {
893 struct {
894 int which; /* Which ->file[] to fetch for */
895 } fetch_status;
896 struct {
897 int reason; /* enum afs_edit_dir_reason */
898 mode_t mode;
899 const char *symlink;
900 } create;
901 struct {
902 bool need_rehash;
903 } unlink;
904 struct {
905 struct dentry *rehash;
906 struct dentry *tmp;
907 bool new_negative;
908 } rename;
909 struct {
910 struct afs_read *req;
911 } fetch;
912 struct {
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913 afs_lock_type_t type;
914 } lock;
915 struct {
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916 struct iov_iter *write_iter;
917 loff_t pos;
918 loff_t size;
919 loff_t i_size;
bd80d8a8 920 bool laundering; /* Laundering page, PG_writeback not set */
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921 } store;
922 struct {
923 struct iattr *attr;
ec0fa0b6 924 loff_t old_i_size;
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925 } setattr;
926 struct afs_acl *acl;
927 struct yfs_acl *yacl;
928 struct {
929 struct afs_volume_status vs;
930 struct kstatfs *buf;
931 } volstatus;
932 };
933
934 /* Fileserver iteration state */
d2ddc776 935 struct afs_server_list *server_list; /* Current server list (pins ref) */
20325960 936 struct afs_server *server; /* Server we're using (ref pinned by server_list) */
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937 struct afs_endpoint_state *estate; /* Current endpoint state (doesn't pin ref) */
938 struct afs_server_state *server_states; /* States of the servers involved */
e49c7b2f 939 struct afs_call *call;
905b8615 940 unsigned long untried_servers; /* Bitmask of untried servers */
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941 unsigned long addr_tried; /* Tried addresses */
942 s32 call_abort_code; /* Abort code from single call */
943 short call_error; /* Error from single call */
905b8615 944 short server_index; /* Current server */
075171fd 945 short nr_iterations; /* Number of server iterations */
98f9fda2 946 signed char addr_index; /* Current address */
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947 bool call_responded; /* T if the current address responded */
948
e49c7b2f 949 unsigned int flags;
8409f67b
DH
950#define AFS_OPERATION_STOP 0x0001 /* Set to cease iteration */
951#define AFS_OPERATION_VBUSY 0x0002 /* Set if seen VBUSY */
952#define AFS_OPERATION_VMOVED 0x0004 /* Set if seen VMOVED */
953#define AFS_OPERATION_VNOVOL 0x0008 /* Set if seen VNOVOL */
954#define AFS_OPERATION_CUR_ONLY 0x0010 /* Set if current server only (file lock held) */
955#define AFS_OPERATION_NO_VSLEEP 0x0020 /* Set to prevent sleep on VBUSY, VOFFLINE, ... */
956#define AFS_OPERATION_UNINTR 0x0040 /* Set if op is uninterruptible */
957#define AFS_OPERATION_DOWNGRADE 0x0080 /* Set to retry with downgraded opcode */
958#define AFS_OPERATION_LOCK_0 0x0100 /* Set if have io_lock on file[0] */
959#define AFS_OPERATION_LOCK_1 0x0200 /* Set if have io_lock on file[1] */
960#define AFS_OPERATION_TRIED_ALL 0x0400 /* Set if we've tried all the fileservers */
961#define AFS_OPERATION_RETRY_SERVER 0x0800 /* Set if we should retry the current server */
b6489a49 962#define AFS_OPERATION_DIR_CONFLICT 0x1000 /* Set if we detected a 3rd-party dir change */
8b2a464c
DH
963};
964
402cb8dd
DH
965/*
966 * Cache auxiliary data.
967 */
968struct afs_vnode_cache_aux {
523d27cd 969 __be64 data_version;
402cb8dd
DH
970} __packed;
971
523d27cd
DH
972static inline void afs_set_cache_aux(struct afs_vnode *vnode,
973 struct afs_vnode_cache_aux *aux)
974{
975 aux->data_version = cpu_to_be64(vnode->status.data_version);
976}
977
978static inline void afs_invalidate_cache(struct afs_vnode *vnode, unsigned int flags)
979{
980 struct afs_vnode_cache_aux aux;
981
982 afs_set_cache_aux(vnode, &aux);
983 fscache_invalidate(afs_vnode_cache(vnode), &aux,
874c8ca1 984 i_size_read(&vnode->netfs.inode), flags);
523d27cd
DH
985}
986
185f0c70 987/*
78525c74 988 * We use folio->private to hold the amount of the folio that we've written to,
185f0c70 989 * splitting the field into two parts. However, we need to represent a range
78525c74 990 * 0...FOLIO_SIZE, so we reduce the resolution if the size of the folio
2d9900f2 991 * exceeds what we can encode.
185f0c70 992 */
65dd2d60 993#ifdef CONFIG_64BIT
78525c74
DH
994#define __AFS_FOLIO_PRIV_MASK 0x7fffffffUL
995#define __AFS_FOLIO_PRIV_SHIFT 32
996#define __AFS_FOLIO_PRIV_MMAPPED 0x80000000UL
185f0c70 997#else
78525c74
DH
998#define __AFS_FOLIO_PRIV_MASK 0x7fffUL
999#define __AFS_FOLIO_PRIV_SHIFT 16
1000#define __AFS_FOLIO_PRIV_MMAPPED 0x8000UL
185f0c70
DH
1001#endif
1002
78525c74 1003static inline unsigned int afs_folio_dirty_resolution(struct folio *folio)
2d9900f2 1004{
78525c74 1005 int shift = folio_shift(folio) - (__AFS_FOLIO_PRIV_SHIFT - 1);
2d9900f2
DH
1006 return (shift > 0) ? shift : 0;
1007}
1008
78525c74 1009static inline size_t afs_folio_dirty_from(struct folio *folio, unsigned long priv)
185f0c70 1010{
78525c74 1011 unsigned long x = priv & __AFS_FOLIO_PRIV_MASK;
2d9900f2
DH
1012
1013 /* The lower bound is inclusive */
78525c74 1014 return x << afs_folio_dirty_resolution(folio);
185f0c70
DH
1015}
1016
78525c74 1017static inline size_t afs_folio_dirty_to(struct folio *folio, unsigned long priv)
185f0c70 1018{
78525c74 1019 unsigned long x = (priv >> __AFS_FOLIO_PRIV_SHIFT) & __AFS_FOLIO_PRIV_MASK;
2d9900f2
DH
1020
1021 /* The upper bound is immediately beyond the region */
78525c74 1022 return (x + 1) << afs_folio_dirty_resolution(folio);
185f0c70
DH
1023}
1024
78525c74 1025static inline unsigned long afs_folio_dirty(struct folio *folio, size_t from, size_t to)
185f0c70 1026{
78525c74 1027 unsigned int res = afs_folio_dirty_resolution(folio);
2d9900f2
DH
1028 from >>= res;
1029 to = (to - 1) >> res;
78525c74 1030 return (to << __AFS_FOLIO_PRIV_SHIFT) | from;
185f0c70
DH
1031}
1032
78525c74 1033static inline unsigned long afs_folio_dirty_mmapped(unsigned long priv)
f86726a6 1034{
78525c74 1035 return priv | __AFS_FOLIO_PRIV_MMAPPED;
f86726a6
DH
1036}
1037
78525c74 1038static inline bool afs_is_folio_dirty_mmapped(unsigned long priv)
f86726a6 1039{
78525c74 1040 return priv & __AFS_FOLIO_PRIV_MMAPPED;
f86726a6
DH
1041}
1042
98bf40cd
DH
1043#include <trace/events/afs.h>
1044
08e0e7c8 1045/*****************************************************************************/
8b2a464c
DH
1046/*
1047 * addr_list.c
1048 */
1e5d8493 1049struct afs_addr_list *afs_get_addrlist(struct afs_addr_list *alist, enum afs_alist_trace reason);
e38f299e 1050extern struct afs_addr_list *afs_alloc_addrlist(unsigned int nr);
1e5d8493 1051extern void afs_put_addrlist(struct afs_addr_list *alist, enum afs_alist_trace reason);
0a5143f2
DH
1052extern struct afs_vlserver_list *afs_parse_text_addrs(struct afs_net *,
1053 const char *, size_t, char,
1054 unsigned short, unsigned short);
07f3502b
DH
1055bool afs_addr_list_same(const struct afs_addr_list *a,
1056 const struct afs_addr_list *b);
0a5143f2 1057extern struct afs_vlserver_list *afs_dns_query(struct afs_cell *, time64_t *);
8b2a464c 1058
72904d7b
DH
1059extern int afs_merge_fs_addr4(struct afs_net *net, struct afs_addr_list *addr,
1060 __be32 xdr, u16 port);
1061extern int afs_merge_fs_addr6(struct afs_net *net, struct afs_addr_list *addr,
1062 __be32 *xdr, u16 port);
d2ddc776 1063
f94f70d3
DH
1064/*
1065 * addr_prefs.c
1066 */
1067int afs_proc_addr_prefs_write(struct file *file, char *buf, size_t size);
d14cf8ed
DH
1068void afs_get_address_preferences_rcu(struct afs_net *net, struct afs_addr_list *alist);
1069void afs_get_address_preferences(struct afs_net *net, struct afs_addr_list *alist);
f94f70d3 1070
08e0e7c8
DH
1071/*
1072 * callback.c
1073 */
6e0e99d5 1074extern void afs_invalidate_mmap_work(struct work_struct *);
08e0e7c8 1075extern void afs_init_callback_state(struct afs_server *);
051d2525
DH
1076extern void __afs_break_callback(struct afs_vnode *, enum afs_cb_break_reason);
1077extern void afs_break_callback(struct afs_vnode *, enum afs_cb_break_reason);
1078extern void afs_break_callbacks(struct afs_server *, size_t, struct afs_callback_break *);
c435ee34 1079
68251f0a
DH
1080static inline unsigned int afs_calc_vnode_cb_break(struct afs_vnode *vnode)
1081{
453924de 1082 return vnode->cb_break + vnode->cb_ro_snapshot + vnode->cb_scrub;
68251f0a
DH
1083}
1084
18ac6185 1085static inline bool afs_cb_is_broken(unsigned int cb_break,
20325960 1086 const struct afs_vnode *vnode)
68251f0a 1087{
453924de
DH
1088 return cb_break != (vnode->cb_break +
1089 atomic_read(&vnode->volume->cb_ro_snapshot) +
1090 atomic_read(&vnode->volume->cb_scrub));
68251f0a
DH
1091}
1092
1da177e4
LT
1093/*
1094 * cell.c
1095 */
989782dc 1096extern int afs_cell_init(struct afs_net *, const char *);
dca54a7b
DH
1097extern struct afs_cell *afs_find_cell(struct afs_net *, const char *, unsigned,
1098 enum afs_cell_trace);
989782dc
DH
1099extern struct afs_cell *afs_lookup_cell(struct afs_net *, const char *, unsigned,
1100 const char *, bool);
dca54a7b
DH
1101extern struct afs_cell *afs_use_cell(struct afs_cell *, enum afs_cell_trace);
1102extern void afs_unuse_cell(struct afs_net *, struct afs_cell *, enum afs_cell_trace);
1103extern struct afs_cell *afs_get_cell(struct afs_cell *, enum afs_cell_trace);
1104extern void afs_see_cell(struct afs_cell *, enum afs_cell_trace);
1105extern void afs_put_cell(struct afs_cell *, enum afs_cell_trace);
1106extern void afs_queue_cell(struct afs_cell *, enum afs_cell_trace);
989782dc
DH
1107extern void afs_manage_cells(struct work_struct *);
1108extern void afs_cells_timer(struct timer_list *);
f044c884 1109extern void __net_exit afs_cell_purge(struct afs_net *);
08e0e7c8
DH
1110
1111/*
1112 * cmservice.c
1113 */
1114extern bool afs_cm_incoming_call(struct afs_call *);
1115
1da177e4
LT
1116/*
1117 * dir.c
1118 */
4d673da1 1119extern const struct file_operations afs_dir_file_operations;
754661f1 1120extern const struct inode_operations afs_dir_inode_operations;
f3ddee8d 1121extern const struct address_space_operations afs_dir_aops;
d61dcce2 1122extern const struct dentry_operations afs_fs_dentry_operations;
4d673da1 1123
66c7e1d3 1124extern void afs_d_release(struct dentry *);
728279a5 1125extern void afs_check_for_remote_deletion(struct afs_operation *);
66c7e1d3 1126
63a4681f
DH
1127/*
1128 * dir_edit.c
1129 */
1130extern void afs_edit_dir_add(struct afs_vnode *, struct qstr *, struct afs_fid *,
1131 enum afs_edit_dir_reason);
1132extern void afs_edit_dir_remove(struct afs_vnode *, struct qstr *, enum afs_edit_dir_reason);
1133
79ddbfa5
DH
1134/*
1135 * dir_silly.c
1136 */
1137extern int afs_sillyrename(struct afs_vnode *, struct afs_vnode *,
1138 struct dentry *, struct key *);
1139extern int afs_silly_iput(struct dentry *, struct inode *);
1140
66c7e1d3
DH
1141/*
1142 * dynroot.c
1143 */
66c7e1d3
DH
1144extern const struct inode_operations afs_dynroot_inode_operations;
1145extern const struct dentry_operations afs_dynroot_dentry_operations;
1146
1147extern struct inode *afs_try_auto_mntpt(struct dentry *, struct inode *);
0da0b7fd
DH
1148extern int afs_dynroot_mkdir(struct afs_net *, struct afs_cell *);
1149extern void afs_dynroot_rmdir(struct afs_net *, struct afs_cell *);
1150extern int afs_dynroot_populate(struct super_block *);
1151extern void afs_dynroot_depopulate(struct super_block *);
1da177e4
LT
1152
1153/*
1154 * file.c
1155 */
75bd228d
DH
1156extern const struct address_space_operations afs_file_aops;
1157extern const struct address_space_operations afs_symlink_aops;
754661f1 1158extern const struct inode_operations afs_file_inode_operations;
00d3b7a4 1159extern const struct file_operations afs_file_operations;
6a19114b 1160extern const struct netfs_request_ops afs_req_ops;
00d3b7a4 1161
4343d008
DH
1162extern int afs_cache_wb_key(struct afs_vnode *, struct afs_file *);
1163extern void afs_put_wb_key(struct afs_wb_key *);
00d3b7a4
DH
1164extern int afs_open(struct inode *, struct file *);
1165extern int afs_release(struct inode *, struct file *);
c69bf479 1166extern int afs_fetch_data(struct afs_vnode *, struct afs_read *);
5cbf0398 1167extern struct afs_read *afs_alloc_read(gfp_t);
196ee9cd 1168extern void afs_put_read(struct afs_read *);
c7f75ef3 1169extern int afs_write_inode(struct inode *, struct writeback_control *);
1da177e4 1170
d4438a25
DH
1171static inline struct afs_read *afs_get_read(struct afs_read *req)
1172{
1173 refcount_inc(&req->usage);
1174 return req;
1175}
1176
e8d6c554
DH
1177/*
1178 * flock.c
1179 */
f044c884
DH
1180extern struct workqueue_struct *afs_lock_manager;
1181
a690f60a 1182extern void afs_lock_op_done(struct afs_call *);
e8d6c554
DH
1183extern void afs_lock_work(struct work_struct *);
1184extern void afs_lock_may_be_available(struct afs_vnode *);
1185extern int afs_lock(struct file *, int, struct file_lock *);
1186extern int afs_flock(struct file *, int, struct file_lock *);
1187
08e0e7c8
DH
1188/*
1189 * fsclient.c
1190 */
e49c7b2f
DH
1191extern void afs_fs_fetch_status(struct afs_operation *);
1192extern void afs_fs_fetch_data(struct afs_operation *);
1193extern void afs_fs_create_file(struct afs_operation *);
1194extern void afs_fs_make_dir(struct afs_operation *);
1195extern void afs_fs_remove_file(struct afs_operation *);
1196extern void afs_fs_remove_dir(struct afs_operation *);
1197extern void afs_fs_link(struct afs_operation *);
1198extern void afs_fs_symlink(struct afs_operation *);
1199extern void afs_fs_rename(struct afs_operation *);
1200extern void afs_fs_store_data(struct afs_operation *);
1201extern void afs_fs_setattr(struct afs_operation *);
1202extern void afs_fs_get_volume_status(struct afs_operation *);
1203extern void afs_fs_set_lock(struct afs_operation *);
1204extern void afs_fs_extend_lock(struct afs_operation *);
1205extern void afs_fs_release_lock(struct afs_operation *);
98f9fda2
DH
1206int afs_fs_give_up_all_callbacks(struct afs_net *net, struct afs_server *server,
1207 struct afs_address *addr, struct key *key);
1208bool afs_fs_get_capabilities(struct afs_net *net, struct afs_server *server,
f49b594d 1209 struct afs_endpoint_state *estate, unsigned int addr_index,
98f9fda2 1210 struct key *key);
e49c7b2f 1211extern void afs_fs_inline_bulk_status(struct afs_operation *);
08e0e7c8 1212
260f082b
DH
1213struct afs_acl {
1214 u32 size;
1215 u8 data[];
1216};
1217
e49c7b2f
DH
1218extern void afs_fs_fetch_acl(struct afs_operation *);
1219extern void afs_fs_store_acl(struct afs_operation *);
1220
1221/*
1222 * fs_operation.c
1223 */
1224extern struct afs_operation *afs_alloc_operation(struct key *, struct afs_volume *);
1225extern int afs_put_operation(struct afs_operation *);
1226extern bool afs_begin_vnode_operation(struct afs_operation *);
1227extern void afs_wait_for_operation(struct afs_operation *);
1228extern int afs_do_sync_operation(struct afs_operation *);
1229
e49c7b2f
DH
1230static inline void afs_op_set_vnode(struct afs_operation *op, unsigned int n,
1231 struct afs_vnode *vnode)
1232{
1233 op->file[n].vnode = vnode;
1234 op->file[n].need_io_lock = true;
1235}
1236
1237static inline void afs_op_set_fid(struct afs_operation *op, unsigned int n,
1238 const struct afs_fid *fid)
1239{
1240 op->file[n].fid = *fid;
1241}
260f082b 1242
3bf0fb6f
DH
1243/*
1244 * fs_probe.c
1245 */
f49b594d
DH
1246struct afs_endpoint_state *afs_get_endpoint_state(struct afs_endpoint_state *estate,
1247 enum afs_estate_trace where);
1248void afs_put_endpoint_state(struct afs_endpoint_state *estate, enum afs_estate_trace where);
3bf0fb6f 1249extern void afs_fileserver_probe_result(struct afs_call *);
f49b594d
DH
1250void afs_fs_probe_fileserver(struct afs_net *net, struct afs_server *server,
1251 struct afs_addr_list *new_addrs, struct key *key);
495f2ae9 1252int afs_wait_for_fs_probes(struct afs_operation *op, struct afs_server_state *states, bool intr);
8409f67b 1253extern void afs_probe_fileserver(struct afs_net *, struct afs_server *);
f6cbb368 1254extern void afs_fs_probe_dispatcher(struct work_struct *);
f49b594d 1255int afs_wait_for_one_fs_probe(struct afs_server *server, struct afs_endpoint_state *estate,
495f2ae9 1256 unsigned long exclude, bool is_intr);
5481fc6e 1257extern void afs_fs_probe_cleanup(struct afs_net *);
3bf0fb6f 1258
1da177e4
LT
1259/*
1260 * inode.c
1261 */
b6489a49
DH
1262extern const struct afs_operation_ops afs_fetch_status_operation;
1263
e49c7b2f 1264extern void afs_vnode_commit_status(struct afs_operation *, struct afs_vnode_param *);
a58823ac 1265extern int afs_fetch_status(struct afs_vnode *, struct key *, bool, afs_access_t *);
e49c7b2f 1266extern int afs_ilookup5_test_by_fid(struct inode *, void *);
4d673da1 1267extern struct inode *afs_iget_pseudo_dir(struct super_block *, bool);
e49c7b2f
DH
1268extern struct inode *afs_iget(struct afs_operation *, struct afs_vnode_param *);
1269extern struct inode *afs_root_iget(struct super_block *, struct key *);
b74d24f7 1270extern int afs_getattr(struct mnt_idmap *idmap, const struct path *,
549c7297 1271 struct kstat *, u32, unsigned int);
c1632a0f 1272extern int afs_setattr(struct mnt_idmap *idmap, struct dentry *, struct iattr *);
b57922d9 1273extern void afs_evict_inode(struct inode *);
bec5eb61 1274extern int afs_drop_inode(struct inode *);
1da177e4
LT
1275
1276/*
1277 * main.c
1278 */
0ad53eee 1279extern struct workqueue_struct *afs_wq;
5b86d4ff 1280extern int afs_net_id;
f044c884 1281
5b86d4ff 1282static inline struct afs_net *afs_net(struct net *net)
f044c884 1283{
5b86d4ff 1284 return net_generic(net, afs_net_id);
f044c884
DH
1285}
1286
5b86d4ff 1287static inline struct afs_net *afs_sb2net(struct super_block *sb)
f044c884 1288{
5b86d4ff 1289 return afs_net(AFS_FS_S(sb)->net_ns);
f044c884
DH
1290}
1291
5b86d4ff 1292static inline struct afs_net *afs_d2net(struct dentry *dentry)
f044c884 1293{
5b86d4ff 1294 return afs_sb2net(dentry->d_sb);
f044c884
DH
1295}
1296
5b86d4ff 1297static inline struct afs_net *afs_i2net(struct inode *inode)
f044c884 1298{
5b86d4ff 1299 return afs_sb2net(inode->i_sb);
f044c884
DH
1300}
1301
5b86d4ff 1302static inline struct afs_net *afs_v2net(struct afs_vnode *vnode)
f044c884 1303{
874c8ca1 1304 return afs_i2net(&vnode->netfs.inode);
f044c884
DH
1305}
1306
5b86d4ff 1307static inline struct afs_net *afs_sock2net(struct sock *sk)
f044c884 1308{
5b86d4ff 1309 return net_generic(sock_net(sk), afs_net_id);
f044c884 1310}
1da177e4 1311
d55b4da4
DH
1312static inline void __afs_stat(atomic_t *s)
1313{
1314 atomic_inc(s);
1315}
1316
1317#define afs_stat_v(vnode, n) __afs_stat(&afs_v2net(vnode)->n)
1318
08e0e7c8
DH
1319/*
1320 * misc.c
1321 */
1322extern int afs_abort_to_error(u32);
4584ae96 1323extern void afs_prioritise_error(struct afs_error *, int, u32);
08e0e7c8 1324
2de5599f
DH
1325static inline void afs_op_nomem(struct afs_operation *op)
1326{
aa453bec 1327 op->cumul_error.error = -ENOMEM;
2de5599f
DH
1328}
1329
1330static inline int afs_op_error(const struct afs_operation *op)
1331{
aa453bec
DH
1332 return op->cumul_error.error;
1333}
1334
1335static inline s32 afs_op_abort_code(const struct afs_operation *op)
1336{
1337 return op->cumul_error.abort_code;
2de5599f
DH
1338}
1339
1340static inline int afs_op_set_error(struct afs_operation *op, int error)
1341{
aa453bec
DH
1342 return op->cumul_error.error = error;
1343}
1344
1345static inline void afs_op_accumulate_error(struct afs_operation *op, int error, s32 abort_code)
1346{
1347 afs_prioritise_error(&op->cumul_error, error, abort_code);
2de5599f
DH
1348}
1349
1da177e4
LT
1350/*
1351 * mntpt.c
1352 */
754661f1 1353extern const struct inode_operations afs_mntpt_inode_operations;
bec5eb61 1354extern const struct inode_operations afs_autocell_inode_operations;
4b6f5d20 1355extern const struct file_operations afs_mntpt_file_operations;
1da177e4 1356
d18610b0 1357extern struct vfsmount *afs_d_automount(struct path *);
08e0e7c8 1358extern void afs_mntpt_kill_timer(void);
1da177e4 1359
1da177e4
LT
1360/*
1361 * proc.c
1362 */
b6cfbeca 1363#ifdef CONFIG_PROC_FS
f044c884
DH
1364extern int __net_init afs_proc_init(struct afs_net *);
1365extern void __net_exit afs_proc_cleanup(struct afs_net *);
5b86d4ff
DH
1366extern int afs_proc_cell_setup(struct afs_cell *);
1367extern void afs_proc_cell_remove(struct afs_cell *);
6f8880d8 1368extern void afs_put_sysnames(struct afs_sysnames *);
b6cfbeca
DH
1369#else
1370static inline int afs_proc_init(struct afs_net *net) { return 0; }
1371static inline void afs_proc_cleanup(struct afs_net *net) {}
1372static inline int afs_proc_cell_setup(struct afs_cell *cell) { return 0; }
1373static inline void afs_proc_cell_remove(struct afs_cell *cell) {}
1374static inline void afs_put_sysnames(struct afs_sysnames *sysnames) {}
1375#endif
1da177e4 1376
d2ddc776
DH
1377/*
1378 * rotate.c
1379 */
495f2ae9 1380void afs_clear_server_states(struct afs_operation *op);
a310082f 1381extern bool afs_select_fileserver(struct afs_operation *);
e49c7b2f 1382extern void afs_dump_edestaddrreq(const struct afs_operation *);
d2ddc776 1383
08e0e7c8
DH
1384/*
1385 * rxrpc.c
1386 */
f044c884 1387extern struct workqueue_struct *afs_async_calls;
8324f0bc 1388
f044c884
DH
1389extern int __net_init afs_open_socket(struct afs_net *);
1390extern void __net_exit afs_close_socket(struct afs_net *);
1391extern void afs_charge_preallocation(struct work_struct *);
341f741f 1392extern void afs_put_call(struct afs_call *);
98f9fda2
DH
1393void afs_make_call(struct afs_call *call, gfp_t gfp);
1394void afs_wait_for_call_to_complete(struct afs_call *call);
f044c884
DH
1395extern struct afs_call *afs_alloc_flat_call(struct afs_net *,
1396 const struct afs_call_type *,
08e0e7c8
DH
1397 size_t, size_t);
1398extern void afs_flat_call_destructor(struct afs_call *);
08e0e7c8 1399extern void afs_send_empty_reply(struct afs_call *);
b908fe6b 1400extern void afs_send_simple_reply(struct afs_call *, const void *, size_t);
12bdcf33 1401extern int afs_extract_data(struct afs_call *, bool);
7126ead9 1402extern int afs_protocol_error(struct afs_call *, enum afs_eproto_cause);
08e0e7c8 1403
e49c7b2f
DH
1404static inline void afs_make_op_call(struct afs_operation *op, struct afs_call *call,
1405 gfp_t gfp)
20b8391f 1406{
f49b594d
DH
1407 struct afs_addr_list *alist = op->estate->addresses;
1408
e38f299e
DH
1409 op->call = call;
1410 op->type = call->type;
1411 call->op = op;
1412 call->key = op->key;
1413 call->intr = !(op->flags & AFS_OPERATION_UNINTR);
f49b594d 1414 call->peer = rxrpc_kernel_get_peer(alist->addrs[op->addr_index].peer);
e38f299e 1415 call->service_id = op->server->service_id;
98f9fda2 1416 afs_make_call(call, gfp);
20b8391f
DH
1417}
1418
12bdcf33
DH
1419static inline void afs_extract_begin(struct afs_call *call, void *buf, size_t size)
1420{
f105da1a 1421 call->iov_len = size;
12bdcf33
DH
1422 call->kvec[0].iov_base = buf;
1423 call->kvec[0].iov_len = size;
de4eda9d 1424 iov_iter_kvec(&call->def_iter, ITER_DEST, call->kvec, 1, size);
12bdcf33
DH
1425}
1426
1427static inline void afs_extract_to_tmp(struct afs_call *call)
1428{
f105da1a 1429 call->iov_len = sizeof(call->tmp);
12bdcf33
DH
1430 afs_extract_begin(call, &call->tmp, sizeof(call->tmp));
1431}
1432
1433static inline void afs_extract_to_tmp64(struct afs_call *call)
1434{
f105da1a 1435 call->iov_len = sizeof(call->tmp64);
12bdcf33
DH
1436 afs_extract_begin(call, &call->tmp64, sizeof(call->tmp64));
1437}
1438
1439static inline void afs_extract_discard(struct afs_call *call, size_t size)
1440{
f105da1a 1441 call->iov_len = size;
de4eda9d 1442 iov_iter_discard(&call->def_iter, ITER_DEST, size);
12bdcf33
DH
1443}
1444
1445static inline void afs_extract_to_buf(struct afs_call *call, size_t size)
1446{
f105da1a 1447 call->iov_len = size;
12bdcf33
DH
1448 afs_extract_begin(call, call->buffer, size);
1449}
1450
d001648e 1451static inline int afs_transfer_reply(struct afs_call *call)
372ee163 1452{
12bdcf33 1453 return afs_extract_data(call, false);
372ee163
DH
1454}
1455
98bf40cd
DH
1456static inline bool afs_check_call_state(struct afs_call *call,
1457 enum afs_call_state state)
1458{
1459 return READ_ONCE(call->state) == state;
1460}
1461
1462static inline bool afs_set_call_state(struct afs_call *call,
1463 enum afs_call_state from,
1464 enum afs_call_state to)
1465{
1466 bool ok = false;
1467
1468 spin_lock_bh(&call->state_lock);
1469 if (call->state == from) {
1470 call->state = to;
1471 trace_afs_call_state(call, from, to, 0, 0);
1472 ok = true;
1473 }
1474 spin_unlock_bh(&call->state_lock);
1475 return ok;
1476}
1477
1478static inline void afs_set_call_complete(struct afs_call *call,
1479 int error, u32 remote_abort)
1480{
1481 enum afs_call_state state;
1482 bool ok = false;
1483
1484 spin_lock_bh(&call->state_lock);
1485 state = call->state;
1486 if (state != AFS_CALL_COMPLETE) {
1487 call->abort_code = remote_abort;
1488 call->error = error;
1489 call->state = AFS_CALL_COMPLETE;
1490 trace_afs_call_state(call, state, AFS_CALL_COMPLETE,
1491 error, remote_abort);
1492 ok = true;
1493 }
1494 spin_unlock_bh(&call->state_lock);
dde9f095 1495 if (ok) {
98bf40cd 1496 trace_afs_call_done(call);
dde9f095
DH
1497
1498 /* Asynchronous calls have two refs to release - one from the alloc and
1499 * one queued with the work item - and we can't just deallocate the
1500 * call because the work item may be queued again.
1501 */
1502 if (call->drop_ref)
1503 afs_put_call(call);
1504 }
98bf40cd
DH
1505}
1506
00d3b7a4
DH
1507/*
1508 * security.c
1509 */
be080a6f 1510extern void afs_put_permits(struct afs_permits *);
00d3b7a4 1511extern void afs_clear_permits(struct afs_vnode *);
a58823ac
DH
1512extern void afs_cache_permit(struct afs_vnode *, struct key *, unsigned int,
1513 struct afs_status_cb *);
00d3b7a4 1514extern struct key *afs_request_key(struct afs_cell *);
8b6a666a 1515extern struct key *afs_request_key_rcu(struct afs_cell *);
0fafdc9f 1516extern int afs_check_permit(struct afs_vnode *, struct key *, afs_access_t *);
4609e1f1 1517extern int afs_permission(struct mnt_idmap *, struct inode *, int);
be080a6f 1518extern void __exit afs_clean_up_permit_cache(void);
00d3b7a4 1519
08e0e7c8
DH
1520/*
1521 * server.c
1522 */
1523extern spinlock_t afs_server_peer_lock;
1524
72904d7b 1525extern struct afs_server *afs_find_server(struct afs_net *, const struct rxrpc_peer *);
d2ddc776 1526extern struct afs_server *afs_find_server_by_uuid(struct afs_net *, const uuid_t *);
81006805 1527extern struct afs_server *afs_lookup_server(struct afs_cell *, struct key *, const uuid_t *, u32);
45218193 1528extern struct afs_server *afs_get_server(struct afs_server *, enum afs_server_trace);
977e5f8e
DH
1529extern struct afs_server *afs_use_server(struct afs_server *, enum afs_server_trace);
1530extern void afs_unuse_server(struct afs_net *, struct afs_server *, enum afs_server_trace);
1531extern void afs_unuse_server_notime(struct afs_net *, struct afs_server *, enum afs_server_trace);
45218193 1532extern void afs_put_server(struct afs_net *, struct afs_server *, enum afs_server_trace);
d2ddc776
DH
1533extern void afs_manage_servers(struct work_struct *);
1534extern void afs_servers_timer(struct timer_list *);
f6cbb368 1535extern void afs_fs_probe_timer(struct timer_list *);
f044c884 1536extern void __net_exit afs_purge_servers(struct afs_net *);
f49b594d 1537bool afs_check_server_record(struct afs_operation *op, struct afs_server *server, struct key *key);
08e0e7c8 1538
f6cbb368
DH
1539static inline void afs_inc_servers_outstanding(struct afs_net *net)
1540{
1541 atomic_inc(&net->servers_outstanding);
1542}
1543
1544static inline void afs_dec_servers_outstanding(struct afs_net *net)
1545{
1546 if (atomic_dec_and_test(&net->servers_outstanding))
1547 wake_up_var(&net->servers_outstanding);
1548}
1549
1550static inline bool afs_is_probing_server(struct afs_server *server)
1551{
1552 return list_empty(&server->probe_link);
1553}
1554
00d3b7a4 1555/*
d2ddc776 1556 * server_list.c
00d3b7a4 1557 */
d2ddc776
DH
1558static inline struct afs_server_list *afs_get_serverlist(struct afs_server_list *slist)
1559{
1560 refcount_inc(&slist->usage);
1561 return slist;
1562}
00d3b7a4 1563
d2ddc776 1564extern void afs_put_serverlist(struct afs_net *, struct afs_server_list *);
ca0e79a4
DH
1565struct afs_server_list *afs_alloc_server_list(struct afs_volume *volume,
1566 struct key *key,
1567 struct afs_vldb_entry *vldb);
d2ddc776 1568extern bool afs_annotate_server_list(struct afs_server_list *, struct afs_server_list *);
ca0e79a4
DH
1569void afs_attach_volume_to_servers(struct afs_volume *volume, struct afs_server_list *slist);
1570void afs_reattach_volume_to_servers(struct afs_volume *volume, struct afs_server_list *slist,
1571 struct afs_server_list *old);
1572void afs_detach_volume_from_servers(struct afs_volume *volume, struct afs_server_list *slist);
08e0e7c8
DH
1573
1574/*
d2ddc776 1575 * super.c
08e0e7c8 1576 */
d2ddc776 1577extern int __init afs_fs_init(void);
5b86d4ff 1578extern void afs_fs_exit(void);
08e0e7c8 1579
dfa0a449
DH
1580/*
1581 * validation.c
1582 */
453924de 1583bool afs_check_validity(const struct afs_vnode *vnode);
16069e13 1584int afs_update_volume_state(struct afs_operation *op);
dfa0a449
DH
1585int afs_validate(struct afs_vnode *vnode, struct key *key);
1586
08e0e7c8 1587/*
d2ddc776 1588 * vlclient.c
08e0e7c8 1589 */
0a5143f2
DH
1590extern struct afs_vldb_entry *afs_vl_get_entry_by_name_u(struct afs_vl_cursor *,
1591 const char *, int);
1592extern struct afs_addr_list *afs_vl_get_addrs_u(struct afs_vl_cursor *, const uuid_t *);
98f9fda2
DH
1593struct afs_call *afs_vl_get_capabilities(struct afs_net *net,
1594 struct afs_addr_list *alist,
1595 unsigned int addr_index,
1596 struct key *key,
1597 struct afs_vlserver *server,
1598 unsigned int server_index);
0a5143f2 1599extern struct afs_addr_list *afs_yfsvl_get_endpoints(struct afs_vl_cursor *, const uuid_t *);
c3e9f888 1600extern char *afs_yfsvl_get_cell_name(struct afs_vl_cursor *);
0a5143f2 1601
8a070a96
DH
1602/*
1603 * vl_alias.c
1604 */
1605extern int afs_cell_detect_alias(struct afs_cell *, struct key *);
1606
3bf0fb6f
DH
1607/*
1608 * vl_probe.c
1609 */
1610extern void afs_vlserver_probe_result(struct afs_call *);
1611extern int afs_send_vl_probes(struct afs_net *, struct key *, struct afs_vlserver_list *);
1612extern int afs_wait_for_vl_probes(struct afs_vlserver_list *, unsigned long);
1613
0a5143f2
DH
1614/*
1615 * vl_rotate.c
1616 */
1617extern bool afs_begin_vlserver_operation(struct afs_vl_cursor *,
1618 struct afs_cell *, struct key *);
1619extern bool afs_select_vlserver(struct afs_vl_cursor *);
1620extern bool afs_select_current_vlserver(struct afs_vl_cursor *);
1621extern int afs_end_vlserver_operation(struct afs_vl_cursor *);
1622
1623/*
1624 * vlserver_list.c
1625 */
1626static inline struct afs_vlserver *afs_get_vlserver(struct afs_vlserver *vlserver)
1627{
c56f9ec8 1628 refcount_inc(&vlserver->ref);
0a5143f2
DH
1629 return vlserver;
1630}
1631
1632static inline struct afs_vlserver_list *afs_get_vlserverlist(struct afs_vlserver_list *vllist)
1633{
1634 if (vllist)
c56f9ec8 1635 refcount_inc(&vllist->ref);
0a5143f2
DH
1636 return vllist;
1637}
1638
1639extern struct afs_vlserver *afs_alloc_vlserver(const char *, size_t, unsigned short);
1640extern void afs_put_vlserver(struct afs_net *, struct afs_vlserver *);
1641extern struct afs_vlserver_list *afs_alloc_vlserver_list(unsigned int);
1642extern void afs_put_vlserverlist(struct afs_net *, struct afs_vlserver_list *);
1643extern struct afs_vlserver_list *afs_extract_vlserver_list(struct afs_cell *,
1644 const void *, size_t);
08e0e7c8
DH
1645
1646/*
1647 * volume.c
1648 */
13fcc683 1649extern struct afs_volume *afs_create_volume(struct afs_fs_context *);
523d27cd 1650extern int afs_activate_volume(struct afs_volume *);
d2ddc776 1651extern void afs_deactivate_volume(struct afs_volume *);
9a6b294a 1652bool afs_try_get_volume(struct afs_volume *volume, enum afs_volume_trace reason);
cca37d45 1653extern struct afs_volume *afs_get_volume(struct afs_volume *, enum afs_volume_trace);
445f9b69 1654void afs_put_volume(struct afs_volume *volume, enum afs_volume_trace reason);
a310082f 1655extern int afs_check_volume_status(struct afs_volume *, struct afs_operation *);
08e0e7c8 1656
31143d5d
DH
1657/*
1658 * write.c
1659 */
c7f75ef3 1660#ifdef CONFIG_AFS_FSCACHE
8fb72b4a 1661bool afs_dirty_folio(struct address_space *, struct folio *);
c7f75ef3 1662#else
8fb72b4a 1663#define afs_dirty_folio filemap_dirty_folio
c7f75ef3 1664#endif
15b4650e 1665extern int afs_write_begin(struct file *file, struct address_space *mapping,
9d6b0cd7 1666 loff_t pos, unsigned len,
15b4650e
NP
1667 struct page **pagep, void **fsdata);
1668extern int afs_write_end(struct file *file, struct address_space *mapping,
1669 loff_t pos, unsigned len, unsigned copied,
1670 struct page *page, void *fsdata);
31143d5d
DH
1671extern int afs_writepage(struct page *, struct writeback_control *);
1672extern int afs_writepages(struct address_space *, struct writeback_control *);
50b5551d 1673extern ssize_t afs_file_write(struct kiocb *, struct iov_iter *);
02c24a82 1674extern int afs_fsync(struct file *, loff_t, loff_t, int);
0722f186 1675extern vm_fault_t afs_page_mkwrite(struct vm_fault *vmf);
4343d008 1676extern void afs_prune_wb_keys(struct afs_vnode *);
a42442dd 1677int afs_launder_folio(struct folio *);
31143d5d 1678
d3e3b7ea
DH
1679/*
1680 * xattr.c
1681 */
f710c2e4 1682extern const struct xattr_handler * const afs_xattr_handlers[];
31143d5d 1683
30062bd1
DH
1684/*
1685 * yfsclient.c
1686 */
e49c7b2f
DH
1687extern void yfs_fs_fetch_data(struct afs_operation *);
1688extern void yfs_fs_create_file(struct afs_operation *);
1689extern void yfs_fs_make_dir(struct afs_operation *);
1690extern void yfs_fs_remove_file2(struct afs_operation *);
1691extern void yfs_fs_remove_file(struct afs_operation *);
1692extern void yfs_fs_remove_dir(struct afs_operation *);
1693extern void yfs_fs_link(struct afs_operation *);
1694extern void yfs_fs_symlink(struct afs_operation *);
1695extern void yfs_fs_rename(struct afs_operation *);
1696extern void yfs_fs_store_data(struct afs_operation *);
1697extern void yfs_fs_setattr(struct afs_operation *);
1698extern void yfs_fs_get_volume_status(struct afs_operation *);
1699extern void yfs_fs_set_lock(struct afs_operation *);
1700extern void yfs_fs_extend_lock(struct afs_operation *);
1701extern void yfs_fs_release_lock(struct afs_operation *);
1702extern void yfs_fs_fetch_status(struct afs_operation *);
1703extern void yfs_fs_inline_bulk_status(struct afs_operation *);
d2ddc776 1704
ae46578b
DH
1705struct yfs_acl {
1706 struct afs_acl *acl; /* Dir/file/symlink ACL */
1707 struct afs_acl *vol_acl; /* Whole volume ACL */
1708 u32 inherit_flag; /* True if ACL is inherited from parent dir */
1709 u32 num_cleaned; /* Number of ACEs removed due to subject removal */
1710 unsigned int flags;
1711#define YFS_ACL_WANT_ACL 0x01 /* Set if caller wants ->acl */
1712#define YFS_ACL_WANT_VOL_ACL 0x02 /* Set if caller wants ->vol_acl */
1713};
1714
1715extern void yfs_free_opaque_acl(struct yfs_acl *);
e49c7b2f
DH
1716extern void yfs_fs_fetch_opaque_acl(struct afs_operation *);
1717extern void yfs_fs_store_opaque_acl2(struct afs_operation *);
ae46578b 1718
d2ddc776
DH
1719/*
1720 * Miscellaneous inline functions.
1721 */
1722static inline struct afs_vnode *AFS_FS_I(struct inode *inode)
1723{
874c8ca1 1724 return container_of(inode, struct afs_vnode, netfs.inode);
d2ddc776
DH
1725}
1726
1727static inline struct inode *AFS_VNODE_TO_I(struct afs_vnode *vnode)
1728{
874c8ca1 1729 return &vnode->netfs.inode;
d2ddc776
DH
1730}
1731
e49c7b2f
DH
1732/*
1733 * Note that a dentry got changed. We need to set d_fsdata to the data version
1734 * number derived from the result of the operation. It doesn't matter if
1735 * d_fsdata goes backwards as we'll just revalidate.
1736 */
1737static inline void afs_update_dentry_version(struct afs_operation *op,
1738 struct afs_vnode_param *dir_vp,
1739 struct dentry *dentry)
1740{
aa453bec 1741 if (!op->cumul_error.error)
e49c7b2f
DH
1742 dentry->d_fsdata =
1743 (void *)(unsigned long)dir_vp->scb.status.data_version;
1744}
1745
9d37e1ca
DH
1746/*
1747 * Set the file size and block count. Estimate the number of 512 bytes blocks
1748 * used, rounded up to nearest 1K for consistency with other AFS clients.
1749 */
1750static inline void afs_set_i_size(struct afs_vnode *vnode, u64 size)
1751{
874c8ca1
DH
1752 i_size_write(&vnode->netfs.inode, size);
1753 vnode->netfs.inode.i_blocks = ((size + 1023) >> 10) << 1;
9d37e1ca
DH
1754}
1755
b6489a49
DH
1756/*
1757 * Check for a conflicting operation on a directory that we just unlinked from.
1758 * If someone managed to sneak a link or an unlink in on the file we just
1759 * unlinked, we won't be able to trust nlink on an AFS file (but not YFS).
1760 */
1761static inline void afs_check_dir_conflict(struct afs_operation *op,
1762 struct afs_vnode_param *dvp)
1763{
1764 if (dvp->dv_before + dvp->dv_delta != dvp->scb.status.data_version)
1765 op->flags |= AFS_OPERATION_DIR_CONFLICT;
1766}
1767
f51375cd
DH
1768static inline int afs_io_error(struct afs_call *call, enum afs_io_error where)
1769{
1770 trace_afs_io_error(call->debug_id, -EIO, where);
1771 return -EIO;
1772}
1773
1774static inline int afs_bad(struct afs_vnode *vnode, enum afs_file_error where)
1775{
1776 trace_afs_file_error(vnode, -EIO, where);
1777 return -EIO;
1778}
d2ddc776 1779
08e0e7c8
DH
1780/*****************************************************************************/
1781/*
1782 * debug tracing
1783 */
1784extern unsigned afs_debug;
1785
1786#define dbgprintk(FMT,...) \
ad16df84 1787 printk("[%-6.6s] "FMT"\n", current->comm ,##__VA_ARGS__)
08e0e7c8 1788
530b6412
HH
1789#define kenter(FMT,...) dbgprintk("==> %s("FMT")",__func__ ,##__VA_ARGS__)
1790#define kleave(FMT,...) dbgprintk("<== %s()"FMT"",__func__ ,##__VA_ARGS__)
08e0e7c8
DH
1791#define kdebug(FMT,...) dbgprintk(" "FMT ,##__VA_ARGS__)
1792
1793
1794#if defined(__KDEBUG)
1795#define _enter(FMT,...) kenter(FMT,##__VA_ARGS__)
1796#define _leave(FMT,...) kleave(FMT,##__VA_ARGS__)
1797#define _debug(FMT,...) kdebug(FMT,##__VA_ARGS__)
1798
1799#elif defined(CONFIG_AFS_DEBUG)
1800#define AFS_DEBUG_KENTER 0x01
1801#define AFS_DEBUG_KLEAVE 0x02
1802#define AFS_DEBUG_KDEBUG 0x04
1803
1804#define _enter(FMT,...) \
1805do { \
1806 if (unlikely(afs_debug & AFS_DEBUG_KENTER)) \
1807 kenter(FMT,##__VA_ARGS__); \
1808} while (0)
1809
1810#define _leave(FMT,...) \
1811do { \
1812 if (unlikely(afs_debug & AFS_DEBUG_KLEAVE)) \
1813 kleave(FMT,##__VA_ARGS__); \
1814} while (0)
1815
1816#define _debug(FMT,...) \
1817do { \
1818 if (unlikely(afs_debug & AFS_DEBUG_KDEBUG)) \
1819 kdebug(FMT,##__VA_ARGS__); \
1820} while (0)
1821
1822#else
12fdff3f
DH
1823#define _enter(FMT,...) no_printk("==> %s("FMT")",__func__ ,##__VA_ARGS__)
1824#define _leave(FMT,...) no_printk("<== %s()"FMT"",__func__ ,##__VA_ARGS__)
1825#define _debug(FMT,...) no_printk(" "FMT ,##__VA_ARGS__)
08e0e7c8
DH
1826#endif
1827
1828/*
1829 * debug assertion checking
1830 */
1831#if 1 // defined(__KDEBUGALL)
1832
1833#define ASSERT(X) \
1834do { \
1835 if (unlikely(!(X))) { \
1836 printk(KERN_ERR "\n"); \
1837 printk(KERN_ERR "AFS: Assertion failed\n"); \
1838 BUG(); \
1839 } \
1840} while(0)
1841
1842#define ASSERTCMP(X, OP, Y) \
1843do { \
1844 if (unlikely(!((X) OP (Y)))) { \
1845 printk(KERN_ERR "\n"); \
1846 printk(KERN_ERR "AFS: Assertion failed\n"); \
1847 printk(KERN_ERR "%lu " #OP " %lu is false\n", \
1848 (unsigned long)(X), (unsigned long)(Y)); \
1849 printk(KERN_ERR "0x%lx " #OP " 0x%lx is false\n", \
1850 (unsigned long)(X), (unsigned long)(Y)); \
1851 BUG(); \
1852 } \
1853} while(0)
1854
416351f2
DH
1855#define ASSERTRANGE(L, OP1, N, OP2, H) \
1856do { \
1857 if (unlikely(!((L) OP1 (N)) || !((N) OP2 (H)))) { \
1858 printk(KERN_ERR "\n"); \
1859 printk(KERN_ERR "AFS: Assertion failed\n"); \
1860 printk(KERN_ERR "%lu "#OP1" %lu "#OP2" %lu is false\n", \
1861 (unsigned long)(L), (unsigned long)(N), \
1862 (unsigned long)(H)); \
1863 printk(KERN_ERR "0x%lx "#OP1" 0x%lx "#OP2" 0x%lx is false\n", \
1864 (unsigned long)(L), (unsigned long)(N), \
1865 (unsigned long)(H)); \
1866 BUG(); \
1867 } \
1868} while(0)
1869
08e0e7c8
DH
1870#define ASSERTIF(C, X) \
1871do { \
1872 if (unlikely((C) && !(X))) { \
1873 printk(KERN_ERR "\n"); \
1874 printk(KERN_ERR "AFS: Assertion failed\n"); \
1875 BUG(); \
1876 } \
1877} while(0)
1878
1879#define ASSERTIFCMP(C, X, OP, Y) \
1880do { \
1881 if (unlikely((C) && !((X) OP (Y)))) { \
1882 printk(KERN_ERR "\n"); \
1883 printk(KERN_ERR "AFS: Assertion failed\n"); \
1884 printk(KERN_ERR "%lu " #OP " %lu is false\n", \
1885 (unsigned long)(X), (unsigned long)(Y)); \
1886 printk(KERN_ERR "0x%lx " #OP " 0x%lx is false\n", \
1887 (unsigned long)(X), (unsigned long)(Y)); \
1888 BUG(); \
1889 } \
1890} while(0)
1891
1892#else
1893
1894#define ASSERT(X) \
1895do { \
1896} while(0)
1897
1898#define ASSERTCMP(X, OP, Y) \
1899do { \
1900} while(0)
1901
416351f2
DH
1902#define ASSERTRANGE(L, OP1, N, OP2, H) \
1903do { \
1904} while(0)
1905
08e0e7c8
DH
1906#define ASSERTIF(C, X) \
1907do { \
1908} while(0)
1909
1910#define ASSERTIFCMP(C, X, OP, Y) \
1911do { \
1912} while(0)
1913
1914#endif /* __KDEBUGALL */