1 // SPDX-License-Identifier: GPL-2.0
2 #include <linux/ceph/ceph_debug.h>
4 #include <linux/module.h>
5 #include <linux/types.h>
6 #include <linux/slab.h>
7 #include <linux/random.h>
8 #include <linux/sched.h>
10 #include <linux/ceph/ceph_features.h>
11 #include <linux/ceph/mon_client.h>
12 #include <linux/ceph/libceph.h>
13 #include <linux/ceph/debugfs.h>
14 #include <linux/ceph/decode.h>
15 #include <linux/ceph/auth.h>
18 * Interact with Ceph monitor cluster. Handle requests for new map
19 * versions, and periodically resend as needed. Also implement
20 * statfs() and umount().
22 * A small cluster of Ceph "monitors" are responsible for managing critical
23 * cluster configuration and state information. An odd number (e.g., 3, 5)
24 * of cmon daemons use a modified version of the Paxos part-time parliament
25 * algorithm to manage the MDS map (mds cluster membership), OSD map, and
26 * list of clients who have mounted the file system.
28 * We maintain an open, active session with a monitor at all times in order to
29 * receive timely MDSMap updates. We periodically send a keepalive byte on the
30 * TCP socket to ensure we detect a failure. If the connection does break, we
31 * randomly hunt for a new monitor. Once the connection is reestablished, we
32 * resend any outstanding requests.
35 static const struct ceph_connection_operations mon_con_ops
;
37 static int __validate_auth(struct ceph_mon_client
*monc
);
40 * Decode a monmap blob (e.g., during mount).
42 struct ceph_monmap
*ceph_monmap_decode(void *p
, void *end
)
44 struct ceph_monmap
*m
= NULL
;
46 struct ceph_fsid fsid
;
50 ceph_decode_32_safe(&p
, end
, len
, bad
);
51 ceph_decode_need(&p
, end
, len
, bad
);
53 dout("monmap_decode %p %p len %d\n", p
, end
, (int)(end
-p
));
54 p
+= sizeof(u16
); /* skip version */
56 ceph_decode_need(&p
, end
, sizeof(fsid
) + 2*sizeof(u32
), bad
);
57 ceph_decode_copy(&p
, &fsid
, sizeof(fsid
));
58 epoch
= ceph_decode_32(&p
);
60 num_mon
= ceph_decode_32(&p
);
61 ceph_decode_need(&p
, end
, num_mon
*sizeof(m
->mon_inst
[0]), bad
);
63 if (num_mon
> CEPH_MAX_MON
)
65 m
= kmalloc(struct_size(m
, mon_inst
, num_mon
), GFP_NOFS
);
67 return ERR_PTR(-ENOMEM
);
71 ceph_decode_copy(&p
, m
->mon_inst
, num_mon
*sizeof(m
->mon_inst
[0]));
72 for (i
= 0; i
< num_mon
; i
++)
73 ceph_decode_addr(&m
->mon_inst
[i
].addr
);
75 dout("monmap_decode epoch %d, num_mon %d\n", m
->epoch
,
77 for (i
= 0; i
< m
->num_mon
; i
++)
78 dout("monmap_decode mon%d is %s\n", i
,
79 ceph_pr_addr(&m
->mon_inst
[i
].addr
.in_addr
));
83 dout("monmap_decode failed with %d\n", err
);
89 * return true if *addr is included in the monmap.
91 int ceph_monmap_contains(struct ceph_monmap
*m
, struct ceph_entity_addr
*addr
)
95 for (i
= 0; i
< m
->num_mon
; i
++)
96 if (memcmp(addr
, &m
->mon_inst
[i
].addr
, sizeof(*addr
)) == 0)
102 * Send an auth request.
104 static void __send_prepared_auth_request(struct ceph_mon_client
*monc
, int len
)
106 monc
->pending_auth
= 1;
107 monc
->m_auth
->front
.iov_len
= len
;
108 monc
->m_auth
->hdr
.front_len
= cpu_to_le32(len
);
109 ceph_msg_revoke(monc
->m_auth
);
110 ceph_msg_get(monc
->m_auth
); /* keep our ref */
111 ceph_con_send(&monc
->con
, monc
->m_auth
);
115 * Close monitor session, if any.
117 static void __close_session(struct ceph_mon_client
*monc
)
119 dout("__close_session closing mon%d\n", monc
->cur_mon
);
120 ceph_msg_revoke(monc
->m_auth
);
121 ceph_msg_revoke_incoming(monc
->m_auth_reply
);
122 ceph_msg_revoke(monc
->m_subscribe
);
123 ceph_msg_revoke_incoming(monc
->m_subscribe_ack
);
124 ceph_con_close(&monc
->con
);
126 monc
->pending_auth
= 0;
127 ceph_auth_reset(monc
->auth
);
131 * Pick a new monitor at random and set cur_mon. If we are repicking
132 * (i.e. cur_mon is already set), be sure to pick a different one.
134 static void pick_new_mon(struct ceph_mon_client
*monc
)
136 int old_mon
= monc
->cur_mon
;
138 BUG_ON(monc
->monmap
->num_mon
< 1);
140 if (monc
->monmap
->num_mon
== 1) {
143 int max
= monc
->monmap
->num_mon
;
147 if (monc
->cur_mon
>= 0) {
148 if (monc
->cur_mon
< monc
->monmap
->num_mon
)
154 n
= prandom_u32() % max
;
155 if (o
>= 0 && n
>= o
)
161 dout("%s mon%d -> mon%d out of %d mons\n", __func__
, old_mon
,
162 monc
->cur_mon
, monc
->monmap
->num_mon
);
166 * Open a session with a new monitor.
168 static void __open_session(struct ceph_mon_client
*monc
)
174 monc
->hunting
= true;
175 if (monc
->had_a_connection
) {
176 monc
->hunt_mult
*= CEPH_MONC_HUNT_BACKOFF
;
177 if (monc
->hunt_mult
> CEPH_MONC_HUNT_MAX_MULT
)
178 monc
->hunt_mult
= CEPH_MONC_HUNT_MAX_MULT
;
181 monc
->sub_renew_after
= jiffies
; /* i.e., expired */
182 monc
->sub_renew_sent
= 0;
184 dout("%s opening mon%d\n", __func__
, monc
->cur_mon
);
185 ceph_con_open(&monc
->con
, CEPH_ENTITY_TYPE_MON
, monc
->cur_mon
,
186 &monc
->monmap
->mon_inst
[monc
->cur_mon
].addr
);
189 * send an initial keepalive to ensure our timestamp is valid
190 * by the time we are in an OPENED state
192 ceph_con_keepalive(&monc
->con
);
194 /* initiate authentication handshake */
195 ret
= ceph_auth_build_hello(monc
->auth
,
196 monc
->m_auth
->front
.iov_base
,
197 monc
->m_auth
->front_alloc_len
);
199 __send_prepared_auth_request(monc
, ret
);
202 static void reopen_session(struct ceph_mon_client
*monc
)
205 pr_info("mon%d %s session lost, hunting for new mon\n",
206 monc
->cur_mon
, ceph_pr_addr(&monc
->con
.peer_addr
.in_addr
));
208 __close_session(monc
);
209 __open_session(monc
);
212 static void un_backoff(struct ceph_mon_client
*monc
)
214 monc
->hunt_mult
/= 2; /* reduce by 50% */
215 if (monc
->hunt_mult
< 1)
217 dout("%s hunt_mult now %d\n", __func__
, monc
->hunt_mult
);
221 * Reschedule delayed work timer.
223 static void __schedule_delayed(struct ceph_mon_client
*monc
)
228 delay
= CEPH_MONC_HUNT_INTERVAL
* monc
->hunt_mult
;
230 delay
= CEPH_MONC_PING_INTERVAL
;
232 dout("__schedule_delayed after %lu\n", delay
);
233 mod_delayed_work(system_wq
, &monc
->delayed_work
,
234 round_jiffies_relative(delay
));
237 const char *ceph_sub_str
[] = {
238 [CEPH_SUB_MONMAP
] = "monmap",
239 [CEPH_SUB_OSDMAP
] = "osdmap",
240 [CEPH_SUB_FSMAP
] = "fsmap.user",
241 [CEPH_SUB_MDSMAP
] = "mdsmap",
245 * Send subscribe request for one or more maps, according to
248 static void __send_subscribe(struct ceph_mon_client
*monc
)
250 struct ceph_msg
*msg
= monc
->m_subscribe
;
251 void *p
= msg
->front
.iov_base
;
252 void *const end
= p
+ msg
->front_alloc_len
;
256 dout("%s sent %lu\n", __func__
, monc
->sub_renew_sent
);
258 BUG_ON(monc
->cur_mon
< 0);
260 if (!monc
->sub_renew_sent
)
261 monc
->sub_renew_sent
= jiffies
| 1; /* never 0 */
263 msg
->hdr
.version
= cpu_to_le16(2);
265 for (i
= 0; i
< ARRAY_SIZE(monc
->subs
); i
++) {
266 if (monc
->subs
[i
].want
)
269 BUG_ON(num
< 1); /* monmap sub is always there */
270 ceph_encode_32(&p
, num
);
271 for (i
= 0; i
< ARRAY_SIZE(monc
->subs
); i
++) {
275 if (!monc
->subs
[i
].want
)
278 len
= sprintf(buf
, "%s", ceph_sub_str
[i
]);
279 if (i
== CEPH_SUB_MDSMAP
&&
280 monc
->fs_cluster_id
!= CEPH_FS_CLUSTER_ID_NONE
)
281 len
+= sprintf(buf
+ len
, ".%d", monc
->fs_cluster_id
);
283 dout("%s %s start %llu flags 0x%x\n", __func__
, buf
,
284 le64_to_cpu(monc
->subs
[i
].item
.start
),
285 monc
->subs
[i
].item
.flags
);
286 ceph_encode_string(&p
, end
, buf
, len
);
287 memcpy(p
, &monc
->subs
[i
].item
, sizeof(monc
->subs
[i
].item
));
288 p
+= sizeof(monc
->subs
[i
].item
);
292 msg
->front
.iov_len
= p
- msg
->front
.iov_base
;
293 msg
->hdr
.front_len
= cpu_to_le32(msg
->front
.iov_len
);
294 ceph_msg_revoke(msg
);
295 ceph_con_send(&monc
->con
, ceph_msg_get(msg
));
298 static void handle_subscribe_ack(struct ceph_mon_client
*monc
,
299 struct ceph_msg
*msg
)
301 unsigned int seconds
;
302 struct ceph_mon_subscribe_ack
*h
= msg
->front
.iov_base
;
304 if (msg
->front
.iov_len
< sizeof(*h
))
306 seconds
= le32_to_cpu(h
->duration
);
308 mutex_lock(&monc
->mutex
);
309 if (monc
->sub_renew_sent
) {
311 * This is only needed for legacy (infernalis or older)
312 * MONs -- see delayed_work().
314 monc
->sub_renew_after
= monc
->sub_renew_sent
+
315 (seconds
>> 1) * HZ
- 1;
316 dout("%s sent %lu duration %d renew after %lu\n", __func__
,
317 monc
->sub_renew_sent
, seconds
, monc
->sub_renew_after
);
318 monc
->sub_renew_sent
= 0;
320 dout("%s sent %lu renew after %lu, ignoring\n", __func__
,
321 monc
->sub_renew_sent
, monc
->sub_renew_after
);
323 mutex_unlock(&monc
->mutex
);
326 pr_err("got corrupt subscribe-ack msg\n");
331 * Register interest in a map
333 * @sub: one of CEPH_SUB_*
334 * @epoch: X for "every map since X", or 0 for "just the latest"
336 static bool __ceph_monc_want_map(struct ceph_mon_client
*monc
, int sub
,
337 u32 epoch
, bool continuous
)
339 __le64 start
= cpu_to_le64(epoch
);
340 u8 flags
= !continuous
? CEPH_SUBSCRIBE_ONETIME
: 0;
342 dout("%s %s epoch %u continuous %d\n", __func__
, ceph_sub_str
[sub
],
345 if (monc
->subs
[sub
].want
&&
346 monc
->subs
[sub
].item
.start
== start
&&
347 monc
->subs
[sub
].item
.flags
== flags
)
350 monc
->subs
[sub
].item
.start
= start
;
351 monc
->subs
[sub
].item
.flags
= flags
;
352 monc
->subs
[sub
].want
= true;
357 bool ceph_monc_want_map(struct ceph_mon_client
*monc
, int sub
, u32 epoch
,
362 mutex_lock(&monc
->mutex
);
363 need_request
= __ceph_monc_want_map(monc
, sub
, epoch
, continuous
);
364 mutex_unlock(&monc
->mutex
);
368 EXPORT_SYMBOL(ceph_monc_want_map
);
371 * Keep track of which maps we have
373 * @sub: one of CEPH_SUB_*
375 static void __ceph_monc_got_map(struct ceph_mon_client
*monc
, int sub
,
378 dout("%s %s epoch %u\n", __func__
, ceph_sub_str
[sub
], epoch
);
380 if (monc
->subs
[sub
].want
) {
381 if (monc
->subs
[sub
].item
.flags
& CEPH_SUBSCRIBE_ONETIME
)
382 monc
->subs
[sub
].want
= false;
384 monc
->subs
[sub
].item
.start
= cpu_to_le64(epoch
+ 1);
387 monc
->subs
[sub
].have
= epoch
;
390 void ceph_monc_got_map(struct ceph_mon_client
*monc
, int sub
, u32 epoch
)
392 mutex_lock(&monc
->mutex
);
393 __ceph_monc_got_map(monc
, sub
, epoch
);
394 mutex_unlock(&monc
->mutex
);
396 EXPORT_SYMBOL(ceph_monc_got_map
);
398 void ceph_monc_renew_subs(struct ceph_mon_client
*monc
)
400 mutex_lock(&monc
->mutex
);
401 __send_subscribe(monc
);
402 mutex_unlock(&monc
->mutex
);
404 EXPORT_SYMBOL(ceph_monc_renew_subs
);
407 * Wait for an osdmap with a given epoch.
409 * @epoch: epoch to wait for
410 * @timeout: in jiffies, 0 means "wait forever"
412 int ceph_monc_wait_osdmap(struct ceph_mon_client
*monc
, u32 epoch
,
413 unsigned long timeout
)
415 unsigned long started
= jiffies
;
418 mutex_lock(&monc
->mutex
);
419 while (monc
->subs
[CEPH_SUB_OSDMAP
].have
< epoch
) {
420 mutex_unlock(&monc
->mutex
);
422 if (timeout
&& time_after_eq(jiffies
, started
+ timeout
))
425 ret
= wait_event_interruptible_timeout(monc
->client
->auth_wq
,
426 monc
->subs
[CEPH_SUB_OSDMAP
].have
>= epoch
,
427 ceph_timeout_jiffies(timeout
));
431 mutex_lock(&monc
->mutex
);
434 mutex_unlock(&monc
->mutex
);
437 EXPORT_SYMBOL(ceph_monc_wait_osdmap
);
440 * Open a session with a random monitor. Request monmap and osdmap,
441 * which are waited upon in __ceph_open_session().
443 int ceph_monc_open_session(struct ceph_mon_client
*monc
)
445 mutex_lock(&monc
->mutex
);
446 __ceph_monc_want_map(monc
, CEPH_SUB_MONMAP
, 0, true);
447 __ceph_monc_want_map(monc
, CEPH_SUB_OSDMAP
, 0, false);
448 __open_session(monc
);
449 __schedule_delayed(monc
);
450 mutex_unlock(&monc
->mutex
);
453 EXPORT_SYMBOL(ceph_monc_open_session
);
455 static void ceph_monc_handle_map(struct ceph_mon_client
*monc
,
456 struct ceph_msg
*msg
)
458 struct ceph_client
*client
= monc
->client
;
459 struct ceph_monmap
*monmap
= NULL
, *old
= monc
->monmap
;
462 mutex_lock(&monc
->mutex
);
464 dout("handle_monmap\n");
465 p
= msg
->front
.iov_base
;
466 end
= p
+ msg
->front
.iov_len
;
468 monmap
= ceph_monmap_decode(p
, end
);
469 if (IS_ERR(monmap
)) {
470 pr_err("problem decoding monmap, %d\n",
471 (int)PTR_ERR(monmap
));
475 if (ceph_check_fsid(monc
->client
, &monmap
->fsid
) < 0) {
480 client
->monc
.monmap
= monmap
;
483 __ceph_monc_got_map(monc
, CEPH_SUB_MONMAP
, monc
->monmap
->epoch
);
484 client
->have_fsid
= true;
487 mutex_unlock(&monc
->mutex
);
488 wake_up_all(&client
->auth_wq
);
492 * generic requests (currently statfs, mon_get_version)
494 DEFINE_RB_FUNCS(generic_request
, struct ceph_mon_generic_request
, tid
, node
)
496 static void release_generic_request(struct kref
*kref
)
498 struct ceph_mon_generic_request
*req
=
499 container_of(kref
, struct ceph_mon_generic_request
, kref
);
501 dout("%s greq %p request %p reply %p\n", __func__
, req
, req
->request
,
503 WARN_ON(!RB_EMPTY_NODE(&req
->node
));
506 ceph_msg_put(req
->reply
);
508 ceph_msg_put(req
->request
);
513 static void put_generic_request(struct ceph_mon_generic_request
*req
)
516 kref_put(&req
->kref
, release_generic_request
);
519 static void get_generic_request(struct ceph_mon_generic_request
*req
)
521 kref_get(&req
->kref
);
524 static struct ceph_mon_generic_request
*
525 alloc_generic_request(struct ceph_mon_client
*monc
, gfp_t gfp
)
527 struct ceph_mon_generic_request
*req
;
529 req
= kzalloc(sizeof(*req
), gfp
);
534 kref_init(&req
->kref
);
535 RB_CLEAR_NODE(&req
->node
);
536 init_completion(&req
->completion
);
538 dout("%s greq %p\n", __func__
, req
);
542 static void register_generic_request(struct ceph_mon_generic_request
*req
)
544 struct ceph_mon_client
*monc
= req
->monc
;
548 get_generic_request(req
);
549 req
->tid
= ++monc
->last_tid
;
550 insert_generic_request(&monc
->generic_request_tree
, req
);
553 static void send_generic_request(struct ceph_mon_client
*monc
,
554 struct ceph_mon_generic_request
*req
)
558 dout("%s greq %p tid %llu\n", __func__
, req
, req
->tid
);
559 req
->request
->hdr
.tid
= cpu_to_le64(req
->tid
);
560 ceph_con_send(&monc
->con
, ceph_msg_get(req
->request
));
563 static void __finish_generic_request(struct ceph_mon_generic_request
*req
)
565 struct ceph_mon_client
*monc
= req
->monc
;
567 dout("%s greq %p tid %llu\n", __func__
, req
, req
->tid
);
568 erase_generic_request(&monc
->generic_request_tree
, req
);
570 ceph_msg_revoke(req
->request
);
571 ceph_msg_revoke_incoming(req
->reply
);
574 static void finish_generic_request(struct ceph_mon_generic_request
*req
)
576 __finish_generic_request(req
);
577 put_generic_request(req
);
580 static void complete_generic_request(struct ceph_mon_generic_request
*req
)
582 if (req
->complete_cb
)
583 req
->complete_cb(req
);
585 complete_all(&req
->completion
);
586 put_generic_request(req
);
589 static void cancel_generic_request(struct ceph_mon_generic_request
*req
)
591 struct ceph_mon_client
*monc
= req
->monc
;
592 struct ceph_mon_generic_request
*lookup_req
;
594 dout("%s greq %p tid %llu\n", __func__
, req
, req
->tid
);
596 mutex_lock(&monc
->mutex
);
597 lookup_req
= lookup_generic_request(&monc
->generic_request_tree
,
600 WARN_ON(lookup_req
!= req
);
601 finish_generic_request(req
);
604 mutex_unlock(&monc
->mutex
);
607 static int wait_generic_request(struct ceph_mon_generic_request
*req
)
611 dout("%s greq %p tid %llu\n", __func__
, req
, req
->tid
);
612 ret
= wait_for_completion_interruptible(&req
->completion
);
614 cancel_generic_request(req
);
616 ret
= req
->result
; /* completed */
621 static struct ceph_msg
*get_generic_reply(struct ceph_connection
*con
,
622 struct ceph_msg_header
*hdr
,
625 struct ceph_mon_client
*monc
= con
->private;
626 struct ceph_mon_generic_request
*req
;
627 u64 tid
= le64_to_cpu(hdr
->tid
);
630 mutex_lock(&monc
->mutex
);
631 req
= lookup_generic_request(&monc
->generic_request_tree
, tid
);
633 dout("get_generic_reply %lld dne\n", tid
);
637 dout("get_generic_reply %lld got %p\n", tid
, req
->reply
);
639 m
= ceph_msg_get(req
->reply
);
641 * we don't need to track the connection reading into
642 * this reply because we only have one open connection
646 mutex_unlock(&monc
->mutex
);
653 static void handle_statfs_reply(struct ceph_mon_client
*monc
,
654 struct ceph_msg
*msg
)
656 struct ceph_mon_generic_request
*req
;
657 struct ceph_mon_statfs_reply
*reply
= msg
->front
.iov_base
;
658 u64 tid
= le64_to_cpu(msg
->hdr
.tid
);
660 dout("%s msg %p tid %llu\n", __func__
, msg
, tid
);
662 if (msg
->front
.iov_len
!= sizeof(*reply
))
665 mutex_lock(&monc
->mutex
);
666 req
= lookup_generic_request(&monc
->generic_request_tree
, tid
);
668 mutex_unlock(&monc
->mutex
);
673 *req
->u
.st
= reply
->st
; /* struct */
674 __finish_generic_request(req
);
675 mutex_unlock(&monc
->mutex
);
677 complete_generic_request(req
);
681 pr_err("corrupt statfs reply, tid %llu\n", tid
);
686 * Do a synchronous statfs().
688 int ceph_monc_do_statfs(struct ceph_mon_client
*monc
, u64 data_pool
,
689 struct ceph_statfs
*buf
)
691 struct ceph_mon_generic_request
*req
;
692 struct ceph_mon_statfs
*h
;
695 req
= alloc_generic_request(monc
, GFP_NOFS
);
699 req
->request
= ceph_msg_new(CEPH_MSG_STATFS
, sizeof(*h
), GFP_NOFS
,
704 req
->reply
= ceph_msg_new(CEPH_MSG_STATFS_REPLY
, 64, GFP_NOFS
, true);
709 req
->request
->hdr
.version
= cpu_to_le16(2);
711 mutex_lock(&monc
->mutex
);
712 register_generic_request(req
);
713 /* fill out request */
714 h
= req
->request
->front
.iov_base
;
715 h
->monhdr
.have_version
= 0;
716 h
->monhdr
.session_mon
= cpu_to_le16(-1);
717 h
->monhdr
.session_mon_tid
= 0;
718 h
->fsid
= monc
->monmap
->fsid
;
719 h
->contains_data_pool
= (data_pool
!= CEPH_NOPOOL
);
720 h
->data_pool
= cpu_to_le64(data_pool
);
721 send_generic_request(monc
, req
);
722 mutex_unlock(&monc
->mutex
);
724 ret
= wait_generic_request(req
);
726 put_generic_request(req
);
729 EXPORT_SYMBOL(ceph_monc_do_statfs
);
731 static void handle_get_version_reply(struct ceph_mon_client
*monc
,
732 struct ceph_msg
*msg
)
734 struct ceph_mon_generic_request
*req
;
735 u64 tid
= le64_to_cpu(msg
->hdr
.tid
);
736 void *p
= msg
->front
.iov_base
;
737 void *end
= p
+ msg
->front_alloc_len
;
740 dout("%s msg %p tid %llu\n", __func__
, msg
, tid
);
742 ceph_decode_need(&p
, end
, 2*sizeof(u64
), bad
);
743 handle
= ceph_decode_64(&p
);
744 if (tid
!= 0 && tid
!= handle
)
747 mutex_lock(&monc
->mutex
);
748 req
= lookup_generic_request(&monc
->generic_request_tree
, handle
);
750 mutex_unlock(&monc
->mutex
);
755 req
->u
.newest
= ceph_decode_64(&p
);
756 __finish_generic_request(req
);
757 mutex_unlock(&monc
->mutex
);
759 complete_generic_request(req
);
763 pr_err("corrupt mon_get_version reply, tid %llu\n", tid
);
767 static struct ceph_mon_generic_request
*
768 __ceph_monc_get_version(struct ceph_mon_client
*monc
, const char *what
,
769 ceph_monc_callback_t cb
, u64 private_data
)
771 struct ceph_mon_generic_request
*req
;
773 req
= alloc_generic_request(monc
, GFP_NOIO
);
777 req
->request
= ceph_msg_new(CEPH_MSG_MON_GET_VERSION
,
778 sizeof(u64
) + sizeof(u32
) + strlen(what
),
783 req
->reply
= ceph_msg_new(CEPH_MSG_MON_GET_VERSION_REPLY
, 32, GFP_NOIO
,
788 req
->complete_cb
= cb
;
789 req
->private_data
= private_data
;
791 mutex_lock(&monc
->mutex
);
792 register_generic_request(req
);
794 void *p
= req
->request
->front
.iov_base
;
795 void *const end
= p
+ req
->request
->front_alloc_len
;
797 ceph_encode_64(&p
, req
->tid
); /* handle */
798 ceph_encode_string(&p
, end
, what
, strlen(what
));
801 send_generic_request(monc
, req
);
802 mutex_unlock(&monc
->mutex
);
807 put_generic_request(req
);
808 return ERR_PTR(-ENOMEM
);
812 * Send MMonGetVersion and wait for the reply.
814 * @what: one of "mdsmap", "osdmap" or "monmap"
816 int ceph_monc_get_version(struct ceph_mon_client
*monc
, const char *what
,
819 struct ceph_mon_generic_request
*req
;
822 req
= __ceph_monc_get_version(monc
, what
, NULL
, 0);
826 ret
= wait_generic_request(req
);
828 *newest
= req
->u
.newest
;
830 put_generic_request(req
);
833 EXPORT_SYMBOL(ceph_monc_get_version
);
836 * Send MMonGetVersion,
838 * @what: one of "mdsmap", "osdmap" or "monmap"
840 int ceph_monc_get_version_async(struct ceph_mon_client
*monc
, const char *what
,
841 ceph_monc_callback_t cb
, u64 private_data
)
843 struct ceph_mon_generic_request
*req
;
845 req
= __ceph_monc_get_version(monc
, what
, cb
, private_data
);
849 put_generic_request(req
);
852 EXPORT_SYMBOL(ceph_monc_get_version_async
);
854 static void handle_command_ack(struct ceph_mon_client
*monc
,
855 struct ceph_msg
*msg
)
857 struct ceph_mon_generic_request
*req
;
858 void *p
= msg
->front
.iov_base
;
859 void *const end
= p
+ msg
->front_alloc_len
;
860 u64 tid
= le64_to_cpu(msg
->hdr
.tid
);
862 dout("%s msg %p tid %llu\n", __func__
, msg
, tid
);
864 ceph_decode_need(&p
, end
, sizeof(struct ceph_mon_request_header
) +
866 p
+= sizeof(struct ceph_mon_request_header
);
868 mutex_lock(&monc
->mutex
);
869 req
= lookup_generic_request(&monc
->generic_request_tree
, tid
);
871 mutex_unlock(&monc
->mutex
);
875 req
->result
= ceph_decode_32(&p
);
876 __finish_generic_request(req
);
877 mutex_unlock(&monc
->mutex
);
879 complete_generic_request(req
);
883 pr_err("corrupt mon_command ack, tid %llu\n", tid
);
887 int ceph_monc_blacklist_add(struct ceph_mon_client
*monc
,
888 struct ceph_entity_addr
*client_addr
)
890 struct ceph_mon_generic_request
*req
;
891 struct ceph_mon_command
*h
;
895 req
= alloc_generic_request(monc
, GFP_NOIO
);
899 req
->request
= ceph_msg_new(CEPH_MSG_MON_COMMAND
, 256, GFP_NOIO
, true);
903 req
->reply
= ceph_msg_new(CEPH_MSG_MON_COMMAND_ACK
, 512, GFP_NOIO
,
908 mutex_lock(&monc
->mutex
);
909 register_generic_request(req
);
910 h
= req
->request
->front
.iov_base
;
911 h
->monhdr
.have_version
= 0;
912 h
->monhdr
.session_mon
= cpu_to_le16(-1);
913 h
->monhdr
.session_mon_tid
= 0;
914 h
->fsid
= monc
->monmap
->fsid
;
915 h
->num_strs
= cpu_to_le32(1);
916 len
= sprintf(h
->str
, "{ \"prefix\": \"osd blacklist\", \
917 \"blacklistop\": \"add\", \
918 \"addr\": \"%pISpc/%u\" }",
919 &client_addr
->in_addr
, le32_to_cpu(client_addr
->nonce
));
920 h
->str_len
= cpu_to_le32(len
);
921 send_generic_request(monc
, req
);
922 mutex_unlock(&monc
->mutex
);
924 ret
= wait_generic_request(req
);
927 * Make sure we have the osdmap that includes the blacklist
928 * entry. This is needed to ensure that the OSDs pick up the
929 * new blacklist before processing any future requests from
932 ret
= ceph_wait_for_latest_osdmap(monc
->client
, 0);
935 put_generic_request(req
);
938 EXPORT_SYMBOL(ceph_monc_blacklist_add
);
941 * Resend pending generic requests.
943 static void __resend_generic_request(struct ceph_mon_client
*monc
)
945 struct ceph_mon_generic_request
*req
;
948 for (p
= rb_first(&monc
->generic_request_tree
); p
; p
= rb_next(p
)) {
949 req
= rb_entry(p
, struct ceph_mon_generic_request
, node
);
950 ceph_msg_revoke(req
->request
);
951 ceph_msg_revoke_incoming(req
->reply
);
952 ceph_con_send(&monc
->con
, ceph_msg_get(req
->request
));
957 * Delayed work. If we haven't mounted yet, retry. Otherwise,
958 * renew/retry subscription as needed (in case it is timing out, or we
959 * got an ENOMEM). And keep the monitor connection alive.
961 static void delayed_work(struct work_struct
*work
)
963 struct ceph_mon_client
*monc
=
964 container_of(work
, struct ceph_mon_client
, delayed_work
.work
);
966 dout("monc delayed_work\n");
967 mutex_lock(&monc
->mutex
);
969 dout("%s continuing hunt\n", __func__
);
970 reopen_session(monc
);
972 int is_auth
= ceph_auth_is_authenticated(monc
->auth
);
973 if (ceph_con_keepalive_expired(&monc
->con
,
974 CEPH_MONC_PING_TIMEOUT
)) {
975 dout("monc keepalive timeout\n");
977 reopen_session(monc
);
980 if (!monc
->hunting
) {
981 ceph_con_keepalive(&monc
->con
);
982 __validate_auth(monc
);
987 !(monc
->con
.peer_features
& CEPH_FEATURE_MON_STATEFUL_SUB
)) {
988 unsigned long now
= jiffies
;
990 dout("%s renew subs? now %lu renew after %lu\n",
991 __func__
, now
, monc
->sub_renew_after
);
992 if (time_after_eq(now
, monc
->sub_renew_after
))
993 __send_subscribe(monc
);
996 __schedule_delayed(monc
);
997 mutex_unlock(&monc
->mutex
);
1001 * On startup, we build a temporary monmap populated with the IPs
1002 * provided by mount(2).
1004 static int build_initial_monmap(struct ceph_mon_client
*monc
)
1006 struct ceph_options
*opt
= monc
->client
->options
;
1007 struct ceph_entity_addr
*mon_addr
= opt
->mon_addr
;
1008 int num_mon
= opt
->num_mon
;
1011 /* build initial monmap */
1012 monc
->monmap
= kzalloc(struct_size(monc
->monmap
, mon_inst
, num_mon
),
1016 for (i
= 0; i
< num_mon
; i
++) {
1017 monc
->monmap
->mon_inst
[i
].addr
= mon_addr
[i
];
1018 monc
->monmap
->mon_inst
[i
].addr
.nonce
= 0;
1019 monc
->monmap
->mon_inst
[i
].name
.type
=
1020 CEPH_ENTITY_TYPE_MON
;
1021 monc
->monmap
->mon_inst
[i
].name
.num
= cpu_to_le64(i
);
1023 monc
->monmap
->num_mon
= num_mon
;
1027 int ceph_monc_init(struct ceph_mon_client
*monc
, struct ceph_client
*cl
)
1032 memset(monc
, 0, sizeof(*monc
));
1034 monc
->monmap
= NULL
;
1035 mutex_init(&monc
->mutex
);
1037 err
= build_initial_monmap(monc
);
1042 /* authentication */
1043 monc
->auth
= ceph_auth_init(cl
->options
->name
,
1045 if (IS_ERR(monc
->auth
)) {
1046 err
= PTR_ERR(monc
->auth
);
1049 monc
->auth
->want_keys
=
1050 CEPH_ENTITY_TYPE_AUTH
| CEPH_ENTITY_TYPE_MON
|
1051 CEPH_ENTITY_TYPE_OSD
| CEPH_ENTITY_TYPE_MDS
;
1055 monc
->m_subscribe_ack
= ceph_msg_new(CEPH_MSG_MON_SUBSCRIBE_ACK
,
1056 sizeof(struct ceph_mon_subscribe_ack
),
1058 if (!monc
->m_subscribe_ack
)
1061 monc
->m_subscribe
= ceph_msg_new(CEPH_MSG_MON_SUBSCRIBE
, 128,
1063 if (!monc
->m_subscribe
)
1064 goto out_subscribe_ack
;
1066 monc
->m_auth_reply
= ceph_msg_new(CEPH_MSG_AUTH_REPLY
, 4096,
1068 if (!monc
->m_auth_reply
)
1071 monc
->m_auth
= ceph_msg_new(CEPH_MSG_AUTH
, 4096, GFP_KERNEL
, true);
1072 monc
->pending_auth
= 0;
1074 goto out_auth_reply
;
1076 ceph_con_init(&monc
->con
, monc
, &mon_con_ops
,
1077 &monc
->client
->msgr
);
1080 monc
->had_a_connection
= false;
1081 monc
->hunt_mult
= 1;
1083 INIT_DELAYED_WORK(&monc
->delayed_work
, delayed_work
);
1084 monc
->generic_request_tree
= RB_ROOT
;
1087 monc
->fs_cluster_id
= CEPH_FS_CLUSTER_ID_NONE
;
1092 ceph_msg_put(monc
->m_auth_reply
);
1094 ceph_msg_put(monc
->m_subscribe
);
1096 ceph_msg_put(monc
->m_subscribe_ack
);
1098 ceph_auth_destroy(monc
->auth
);
1100 kfree(monc
->monmap
);
1104 EXPORT_SYMBOL(ceph_monc_init
);
1106 void ceph_monc_stop(struct ceph_mon_client
*monc
)
1109 cancel_delayed_work_sync(&monc
->delayed_work
);
1111 mutex_lock(&monc
->mutex
);
1112 __close_session(monc
);
1114 mutex_unlock(&monc
->mutex
);
1117 * flush msgr queue before we destroy ourselves to ensure that:
1118 * - any work that references our embedded con is finished.
1119 * - any osd_client or other work that may reference an authorizer
1120 * finishes before we shut down the auth subsystem.
1124 ceph_auth_destroy(monc
->auth
);
1126 WARN_ON(!RB_EMPTY_ROOT(&monc
->generic_request_tree
));
1128 ceph_msg_put(monc
->m_auth
);
1129 ceph_msg_put(monc
->m_auth_reply
);
1130 ceph_msg_put(monc
->m_subscribe
);
1131 ceph_msg_put(monc
->m_subscribe_ack
);
1133 kfree(monc
->monmap
);
1135 EXPORT_SYMBOL(ceph_monc_stop
);
1137 static void finish_hunting(struct ceph_mon_client
*monc
)
1139 if (monc
->hunting
) {
1140 dout("%s found mon%d\n", __func__
, monc
->cur_mon
);
1141 monc
->hunting
= false;
1142 monc
->had_a_connection
= true;
1144 __schedule_delayed(monc
);
1148 static void handle_auth_reply(struct ceph_mon_client
*monc
,
1149 struct ceph_msg
*msg
)
1154 mutex_lock(&monc
->mutex
);
1155 was_auth
= ceph_auth_is_authenticated(monc
->auth
);
1156 monc
->pending_auth
= 0;
1157 ret
= ceph_handle_auth_reply(monc
->auth
, msg
->front
.iov_base
,
1159 monc
->m_auth
->front
.iov_base
,
1160 monc
->m_auth
->front_alloc_len
);
1162 __send_prepared_auth_request(monc
, ret
);
1166 finish_hunting(monc
);
1169 monc
->client
->auth_err
= ret
;
1170 } else if (!was_auth
&& ceph_auth_is_authenticated(monc
->auth
)) {
1171 dout("authenticated, starting session\n");
1173 monc
->client
->msgr
.inst
.name
.type
= CEPH_ENTITY_TYPE_CLIENT
;
1174 monc
->client
->msgr
.inst
.name
.num
=
1175 cpu_to_le64(monc
->auth
->global_id
);
1177 __send_subscribe(monc
);
1178 __resend_generic_request(monc
);
1180 pr_info("mon%d %s session established\n", monc
->cur_mon
,
1181 ceph_pr_addr(&monc
->con
.peer_addr
.in_addr
));
1185 mutex_unlock(&monc
->mutex
);
1186 if (monc
->client
->auth_err
< 0)
1187 wake_up_all(&monc
->client
->auth_wq
);
1190 static int __validate_auth(struct ceph_mon_client
*monc
)
1194 if (monc
->pending_auth
)
1197 ret
= ceph_build_auth(monc
->auth
, monc
->m_auth
->front
.iov_base
,
1198 monc
->m_auth
->front_alloc_len
);
1200 return ret
; /* either an error, or no need to authenticate */
1201 __send_prepared_auth_request(monc
, ret
);
1205 int ceph_monc_validate_auth(struct ceph_mon_client
*monc
)
1209 mutex_lock(&monc
->mutex
);
1210 ret
= __validate_auth(monc
);
1211 mutex_unlock(&monc
->mutex
);
1214 EXPORT_SYMBOL(ceph_monc_validate_auth
);
1217 * handle incoming message
1219 static void dispatch(struct ceph_connection
*con
, struct ceph_msg
*msg
)
1221 struct ceph_mon_client
*monc
= con
->private;
1222 int type
= le16_to_cpu(msg
->hdr
.type
);
1228 case CEPH_MSG_AUTH_REPLY
:
1229 handle_auth_reply(monc
, msg
);
1232 case CEPH_MSG_MON_SUBSCRIBE_ACK
:
1233 handle_subscribe_ack(monc
, msg
);
1236 case CEPH_MSG_STATFS_REPLY
:
1237 handle_statfs_reply(monc
, msg
);
1240 case CEPH_MSG_MON_GET_VERSION_REPLY
:
1241 handle_get_version_reply(monc
, msg
);
1244 case CEPH_MSG_MON_COMMAND_ACK
:
1245 handle_command_ack(monc
, msg
);
1248 case CEPH_MSG_MON_MAP
:
1249 ceph_monc_handle_map(monc
, msg
);
1252 case CEPH_MSG_OSD_MAP
:
1253 ceph_osdc_handle_map(&monc
->client
->osdc
, msg
);
1257 /* can the chained handler handle it? */
1258 if (monc
->client
->extra_mon_dispatch
&&
1259 monc
->client
->extra_mon_dispatch(monc
->client
, msg
) == 0)
1262 pr_err("received unknown message type %d %s\n", type
,
1263 ceph_msg_type_name(type
));
1269 * Allocate memory for incoming message
1271 static struct ceph_msg
*mon_alloc_msg(struct ceph_connection
*con
,
1272 struct ceph_msg_header
*hdr
,
1275 struct ceph_mon_client
*monc
= con
->private;
1276 int type
= le16_to_cpu(hdr
->type
);
1277 int front_len
= le32_to_cpu(hdr
->front_len
);
1278 struct ceph_msg
*m
= NULL
;
1283 case CEPH_MSG_MON_SUBSCRIBE_ACK
:
1284 m
= ceph_msg_get(monc
->m_subscribe_ack
);
1286 case CEPH_MSG_STATFS_REPLY
:
1287 case CEPH_MSG_MON_COMMAND_ACK
:
1288 return get_generic_reply(con
, hdr
, skip
);
1289 case CEPH_MSG_AUTH_REPLY
:
1290 m
= ceph_msg_get(monc
->m_auth_reply
);
1292 case CEPH_MSG_MON_GET_VERSION_REPLY
:
1293 if (le64_to_cpu(hdr
->tid
) != 0)
1294 return get_generic_reply(con
, hdr
, skip
);
1297 * Older OSDs don't set reply tid even if the orignal
1298 * request had a non-zero tid. Work around this weirdness
1299 * by allocating a new message.
1302 case CEPH_MSG_MON_MAP
:
1303 case CEPH_MSG_MDS_MAP
:
1304 case CEPH_MSG_OSD_MAP
:
1305 case CEPH_MSG_FS_MAP_USER
:
1306 m
= ceph_msg_new(type
, front_len
, GFP_NOFS
, false);
1308 return NULL
; /* ENOMEM--return skip == 0 */
1313 pr_info("alloc_msg unknown type %d\n", type
);
1315 } else if (front_len
> m
->front_alloc_len
) {
1316 pr_warn("mon_alloc_msg front %d > prealloc %d (%u#%llu)\n",
1317 front_len
, m
->front_alloc_len
,
1318 (unsigned int)con
->peer_name
.type
,
1319 le64_to_cpu(con
->peer_name
.num
));
1321 m
= ceph_msg_new(type
, front_len
, GFP_NOFS
, false);
1328 * If the monitor connection resets, pick a new monitor and resubmit
1329 * any pending requests.
1331 static void mon_fault(struct ceph_connection
*con
)
1333 struct ceph_mon_client
*monc
= con
->private;
1335 mutex_lock(&monc
->mutex
);
1336 dout("%s mon%d\n", __func__
, monc
->cur_mon
);
1337 if (monc
->cur_mon
>= 0) {
1338 if (!monc
->hunting
) {
1339 dout("%s hunting for new mon\n", __func__
);
1340 reopen_session(monc
);
1341 __schedule_delayed(monc
);
1343 dout("%s already hunting\n", __func__
);
1346 mutex_unlock(&monc
->mutex
);
1350 * We can ignore refcounting on the connection struct, as all references
1351 * will come from the messenger workqueue, which is drained prior to
1352 * mon_client destruction.
1354 static struct ceph_connection
*con_get(struct ceph_connection
*con
)
1359 static void con_put(struct ceph_connection
*con
)
1363 static const struct ceph_connection_operations mon_con_ops
= {
1366 .dispatch
= dispatch
,
1368 .alloc_msg
= mon_alloc_msg
,