1 /* server.c: AFS server record management
3 * Copyright (C) 2002 Red Hat, Inc. All Rights Reserved.
4 * Written by David Howells (dhowells@redhat.com)
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.
12 #include <linux/sched.h>
13 #include <linux/slab.h>
14 #include <rxrpc/peer.h>
15 #include <rxrpc/connection.h>
19 #include "transport.h"
21 #include "kafstimod.h"
24 DEFINE_SPINLOCK(afs_server_peer_lock
);
26 #define FS_SERVICE_ID 1 /* AFS Volume Location Service ID */
27 #define VL_SERVICE_ID 52 /* AFS Volume Location Service ID */
29 static void __afs_server_timeout(struct afs_timer
*timer
)
31 struct afs_server
*server
=
32 list_entry(timer
, struct afs_server
, timeout
);
34 _debug("SERVER TIMEOUT [%p{u=%d}]",
35 server
, atomic_read(&server
->usage
));
37 afs_server_do_timeout(server
);
40 static const struct afs_timer_ops afs_server_timer_ops
= {
41 .timed_out
= __afs_server_timeout
,
44 /*****************************************************************************/
46 * lookup a server record in a cell
47 * - TODO: search the cell's server list
49 int afs_server_lookup(struct afs_cell
*cell
, const struct in_addr
*addr
,
50 struct afs_server
**_server
)
52 struct afs_server
*server
, *active
, *zombie
;
55 _enter("%p,%08x,", cell
, ntohl(addr
->s_addr
));
57 /* allocate and initialise a server record */
58 server
= kmalloc(sizeof(struct afs_server
), GFP_KERNEL
);
64 memset(server
, 0, sizeof(struct afs_server
));
65 atomic_set(&server
->usage
, 1);
67 INIT_LIST_HEAD(&server
->link
);
68 init_rwsem(&server
->sem
);
69 INIT_LIST_HEAD(&server
->fs_callq
);
70 spin_lock_init(&server
->fs_lock
);
71 INIT_LIST_HEAD(&server
->cb_promises
);
72 spin_lock_init(&server
->cb_lock
);
74 for (loop
= 0; loop
< AFS_SERVER_CONN_LIST_SIZE
; loop
++)
75 server
->fs_conn_cnt
[loop
] = 4;
77 memcpy(&server
->addr
, addr
, sizeof(struct in_addr
));
78 server
->addr
.s_addr
= addr
->s_addr
;
80 afs_timer_init(&server
->timeout
, &afs_server_timer_ops
);
83 write_lock(&cell
->sv_lock
);
85 /* check the active list */
86 list_for_each_entry(active
, &cell
->sv_list
, link
) {
87 if (active
->addr
.s_addr
== addr
->s_addr
)
88 goto use_active_server
;
91 /* check the inactive list */
92 spin_lock(&cell
->sv_gylock
);
93 list_for_each_entry(zombie
, &cell
->sv_graveyard
, link
) {
94 if (zombie
->addr
.s_addr
== addr
->s_addr
)
95 goto resurrect_server
;
97 spin_unlock(&cell
->sv_gylock
);
101 list_add_tail(&server
->link
, &cell
->sv_list
);
103 write_unlock(&cell
->sv_lock
);
106 _leave(" = 0 (%p)", server
);
109 /* found a matching active server */
111 _debug("active server");
112 afs_get_server(active
);
113 write_unlock(&cell
->sv_lock
);
118 _leave(" = 0 (%p)", active
);
121 /* found a matching server in the graveyard, so resurrect it and
122 * dispose of the new record */
124 _debug("resurrecting server");
126 list_del(&zombie
->link
);
127 list_add_tail(&zombie
->link
, &cell
->sv_list
);
128 afs_get_server(zombie
);
129 afs_kafstimod_del_timer(&zombie
->timeout
);
130 spin_unlock(&cell
->sv_gylock
);
131 write_unlock(&cell
->sv_lock
);
136 _leave(" = 0 (%p)", zombie
);
139 } /* end afs_server_lookup() */
141 /*****************************************************************************/
143 * destroy a server record
144 * - removes from the cell list
146 void afs_put_server(struct afs_server
*server
)
148 struct afs_cell
*cell
;
153 _enter("%p", server
);
158 BUG_ON(atomic_read(&server
->usage
) <= 0);
160 /* to prevent a race, the decrement and the dequeue must be effectively
162 write_lock(&cell
->sv_lock
);
164 if (likely(!atomic_dec_and_test(&server
->usage
))) {
165 write_unlock(&cell
->sv_lock
);
170 spin_lock(&cell
->sv_gylock
);
171 list_del(&server
->link
);
172 list_add_tail(&server
->link
, &cell
->sv_graveyard
);
174 /* time out in 10 secs */
175 afs_kafstimod_add_timer(&server
->timeout
, 10 * HZ
);
177 spin_unlock(&cell
->sv_gylock
);
178 write_unlock(&cell
->sv_lock
);
181 } /* end afs_put_server() */
183 /*****************************************************************************/
185 * timeout server record
186 * - removes from the cell's graveyard if the usage count is zero
188 void afs_server_do_timeout(struct afs_server
*server
)
190 struct rxrpc_peer
*peer
;
191 struct afs_cell
*cell
;
194 _enter("%p", server
);
198 BUG_ON(atomic_read(&server
->usage
) < 0);
200 /* remove from graveyard if still dead */
201 spin_lock(&cell
->vl_gylock
);
202 if (atomic_read(&server
->usage
) == 0)
203 list_del_init(&server
->link
);
206 spin_unlock(&cell
->vl_gylock
);
210 return; /* resurrected */
213 /* we can now destroy it properly */
216 /* uncross-point the structs under a global lock */
217 spin_lock(&afs_server_peer_lock
);
223 spin_unlock(&afs_server_peer_lock
);
225 /* finish cleaning up the server */
226 for (loop
= AFS_SERVER_CONN_LIST_SIZE
- 1; loop
>= 0; loop
--)
227 if (server
->fs_conn
[loop
])
228 rxrpc_put_connection(server
->fs_conn
[loop
]);
230 if (server
->vlserver
)
231 rxrpc_put_connection(server
->vlserver
);
235 _leave(" [destroyed]");
236 } /* end afs_server_do_timeout() */
238 /*****************************************************************************/
240 * get a callslot on a connection to the fileserver on the specified server
242 int afs_server_request_callslot(struct afs_server
*server
,
243 struct afs_server_callslot
*callslot
)
245 struct afs_server_callslot
*pcallslot
;
246 struct rxrpc_connection
*conn
;
249 _enter("%p,",server
);
251 INIT_LIST_HEAD(&callslot
->link
);
252 callslot
->task
= current
;
253 callslot
->conn
= NULL
;
254 callslot
->nconn
= -1;
260 /* get hold of a callslot first */
261 spin_lock(&server
->fs_lock
);
263 /* resurrect the server if it's death timeout has expired */
264 if (server
->fs_state
) {
265 if (time_before(jiffies
, server
->fs_dead_jif
)) {
266 ret
= server
->fs_state
;
267 spin_unlock(&server
->fs_lock
);
268 _leave(" = %d [still dead]", ret
);
272 server
->fs_state
= 0;
275 /* try and find a connection that has spare callslots */
276 for (nconn
= 0; nconn
< AFS_SERVER_CONN_LIST_SIZE
; nconn
++) {
277 if (server
->fs_conn_cnt
[nconn
] > 0) {
278 server
->fs_conn_cnt
[nconn
]--;
279 spin_unlock(&server
->fs_lock
);
280 callslot
->nconn
= nconn
;
285 /* none were available - wait interruptibly for one to become
287 set_current_state(TASK_INTERRUPTIBLE
);
288 list_add_tail(&callslot
->link
, &server
->fs_callq
);
289 spin_unlock(&server
->fs_lock
);
291 while (!callslot
->ready
&& !signal_pending(current
)) {
293 set_current_state(TASK_INTERRUPTIBLE
);
296 set_current_state(TASK_RUNNING
);
298 /* even if we were interrupted we may still be queued */
299 if (!callslot
->ready
) {
300 spin_lock(&server
->fs_lock
);
301 list_del_init(&callslot
->link
);
302 spin_unlock(&server
->fs_lock
);
305 nconn
= callslot
->nconn
;
307 /* if interrupted, we must release any slot we also got before
308 * returning an error */
309 if (signal_pending(current
)) {
314 /* if we were woken up with an error, then pass that error back to the
317 _leave(" = %d", callslot
->errno
);
318 return callslot
->errno
;
321 /* were we given a connection directly? */
322 if (callslot
->conn
) {
324 _leave(" = 0 (nc=%d)", nconn
);
328 /* got a callslot, but no connection */
331 /* need to get hold of the RxRPC connection */
332 down_write(&server
->sem
);
334 /* quick check to see if there's an outstanding error */
335 ret
= server
->fs_state
;
337 goto error_release_upw
;
339 if (server
->fs_conn
[nconn
]) {
340 /* reuse an existing connection */
341 rxrpc_get_connection(server
->fs_conn
[nconn
]);
342 callslot
->conn
= server
->fs_conn
[nconn
];
345 /* create a new connection */
346 ret
= rxrpc_create_connection(afs_transport
,
351 &server
->fs_conn
[nconn
]);
354 goto error_release_upw
;
356 callslot
->conn
= server
->fs_conn
[0];
357 rxrpc_get_connection(callslot
->conn
);
360 up_write(&server
->sem
);
365 /* handle an error occurring */
367 up_write(&server
->sem
);
370 /* either release the callslot or pass it along to another deserving
372 spin_lock(&server
->fs_lock
);
375 /* no callslot allocated */
377 else if (list_empty(&server
->fs_callq
)) {
379 server
->fs_conn_cnt
[nconn
]++;
380 spin_unlock(&server
->fs_lock
);
383 /* someone's waiting - dequeue them and wake them up */
384 pcallslot
= list_entry(server
->fs_callq
.next
,
385 struct afs_server_callslot
, link
);
386 list_del_init(&pcallslot
->link
);
388 pcallslot
->errno
= server
->fs_state
;
389 if (!pcallslot
->errno
) {
390 /* pass them out callslot details */
391 callslot
->conn
= xchg(&pcallslot
->conn
,
393 pcallslot
->nconn
= nconn
;
394 callslot
->nconn
= nconn
= -1;
396 pcallslot
->ready
= 1;
397 wake_up_process(pcallslot
->task
);
398 spin_unlock(&server
->fs_lock
);
401 rxrpc_put_connection(callslot
->conn
);
402 callslot
->conn
= NULL
;
404 _leave(" = %d", ret
);
407 } /* end afs_server_request_callslot() */
409 /*****************************************************************************/
411 * release a callslot back to the server
412 * - transfers the RxRPC connection to the next pending callslot if possible
414 void afs_server_release_callslot(struct afs_server
*server
,
415 struct afs_server_callslot
*callslot
)
417 struct afs_server_callslot
*pcallslot
;
419 _enter("{ad=%08x,cnt=%u},{%d}",
420 ntohl(server
->addr
.s_addr
),
421 server
->fs_conn_cnt
[callslot
->nconn
],
424 BUG_ON(callslot
->nconn
< 0);
426 spin_lock(&server
->fs_lock
);
428 if (list_empty(&server
->fs_callq
)) {
430 server
->fs_conn_cnt
[callslot
->nconn
]++;
431 spin_unlock(&server
->fs_lock
);
434 /* someone's waiting - dequeue them and wake them up */
435 pcallslot
= list_entry(server
->fs_callq
.next
,
436 struct afs_server_callslot
, link
);
437 list_del_init(&pcallslot
->link
);
439 pcallslot
->errno
= server
->fs_state
;
440 if (!pcallslot
->errno
) {
441 /* pass them out callslot details */
442 callslot
->conn
= xchg(&pcallslot
->conn
, callslot
->conn
);
443 pcallslot
->nconn
= callslot
->nconn
;
444 callslot
->nconn
= -1;
447 pcallslot
->ready
= 1;
448 wake_up_process(pcallslot
->task
);
449 spin_unlock(&server
->fs_lock
);
452 rxrpc_put_connection(callslot
->conn
);
455 } /* end afs_server_release_callslot() */
457 /*****************************************************************************/
459 * get a handle to a connection to the vlserver (volume location) on the
462 int afs_server_get_vlconn(struct afs_server
*server
,
463 struct rxrpc_connection
**_conn
)
465 struct rxrpc_connection
*conn
;
468 _enter("%p,", server
);
472 down_read(&server
->sem
);
474 if (server
->vlserver
) {
475 /* reuse an existing connection */
476 rxrpc_get_connection(server
->vlserver
);
477 conn
= server
->vlserver
;
478 up_read(&server
->sem
);
481 /* create a new connection */
482 up_read(&server
->sem
);
483 down_write(&server
->sem
);
484 if (!server
->vlserver
) {
485 ret
= rxrpc_create_connection(afs_transport
,
493 rxrpc_get_connection(server
->vlserver
);
494 conn
= server
->vlserver
;
496 up_write(&server
->sem
);
500 _leave(" = %d", ret
);
502 } /* end afs_server_get_vlconn() */