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libceph: drop declaration of ceph_con_get()
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3d14c5d2 1#include <linux/ceph/ceph_debug.h>
2f2dc053 2
496e5955 3#include <linux/fs.h>
2f2dc053 4#include <linux/wait.h>
5a0e3ad6 5#include <linux/slab.h>
2f2dc053 6#include <linux/sched.h>
3d14c5d2
YS
7#include <linux/debugfs.h>
8#include <linux/seq_file.h>
2f2dc053 9
2f2dc053 10#include "super.h"
3d14c5d2
YS
11#include "mds_client.h"
12
13#include <linux/ceph/messenger.h>
14#include <linux/ceph/decode.h>
15#include <linux/ceph/pagelist.h>
16#include <linux/ceph/auth.h>
17#include <linux/ceph/debugfs.h>
2f2dc053
SW
18
19/*
20 * A cluster of MDS (metadata server) daemons is responsible for
21 * managing the file system namespace (the directory hierarchy and
22 * inodes) and for coordinating shared access to storage. Metadata is
23 * partitioning hierarchically across a number of servers, and that
24 * partition varies over time as the cluster adjusts the distribution
25 * in order to balance load.
26 *
27 * The MDS client is primarily responsible to managing synchronous
28 * metadata requests for operations like open, unlink, and so forth.
29 * If there is a MDS failure, we find out about it when we (possibly
30 * request and) receive a new MDS map, and can resubmit affected
31 * requests.
32 *
33 * For the most part, though, we take advantage of a lossless
34 * communications channel to the MDS, and do not need to worry about
35 * timing out or resubmitting requests.
36 *
37 * We maintain a stateful "session" with each MDS we interact with.
38 * Within each session, we sent periodic heartbeat messages to ensure
39 * any capabilities or leases we have been issues remain valid. If
40 * the session times out and goes stale, our leases and capabilities
41 * are no longer valid.
42 */
43
20cb34ae
SW
44struct ceph_reconnect_state {
45 struct ceph_pagelist *pagelist;
46 bool flock;
47};
48
2f2dc053
SW
49static void __wake_requests(struct ceph_mds_client *mdsc,
50 struct list_head *head);
51
9e32789f 52static const struct ceph_connection_operations mds_con_ops;
2f2dc053
SW
53
54
55/*
56 * mds reply parsing
57 */
58
59/*
60 * parse individual inode info
61 */
62static int parse_reply_info_in(void **p, void *end,
14303d20
SW
63 struct ceph_mds_reply_info_in *info,
64 int features)
2f2dc053
SW
65{
66 int err = -EIO;
67
68 info->in = *p;
69 *p += sizeof(struct ceph_mds_reply_inode) +
70 sizeof(*info->in->fragtree.splits) *
71 le32_to_cpu(info->in->fragtree.nsplits);
72
73 ceph_decode_32_safe(p, end, info->symlink_len, bad);
74 ceph_decode_need(p, end, info->symlink_len, bad);
75 info->symlink = *p;
76 *p += info->symlink_len;
77
14303d20
SW
78 if (features & CEPH_FEATURE_DIRLAYOUTHASH)
79 ceph_decode_copy_safe(p, end, &info->dir_layout,
80 sizeof(info->dir_layout), bad);
81 else
82 memset(&info->dir_layout, 0, sizeof(info->dir_layout));
83
2f2dc053
SW
84 ceph_decode_32_safe(p, end, info->xattr_len, bad);
85 ceph_decode_need(p, end, info->xattr_len, bad);
86 info->xattr_data = *p;
87 *p += info->xattr_len;
88 return 0;
89bad:
90 return err;
91}
92
93/*
94 * parse a normal reply, which may contain a (dir+)dentry and/or a
95 * target inode.
96 */
97static int parse_reply_info_trace(void **p, void *end,
14303d20
SW
98 struct ceph_mds_reply_info_parsed *info,
99 int features)
2f2dc053
SW
100{
101 int err;
102
103 if (info->head->is_dentry) {
14303d20 104 err = parse_reply_info_in(p, end, &info->diri, features);
2f2dc053
SW
105 if (err < 0)
106 goto out_bad;
107
108 if (unlikely(*p + sizeof(*info->dirfrag) > end))
109 goto bad;
110 info->dirfrag = *p;
111 *p += sizeof(*info->dirfrag) +
112 sizeof(u32)*le32_to_cpu(info->dirfrag->ndist);
113 if (unlikely(*p > end))
114 goto bad;
115
116 ceph_decode_32_safe(p, end, info->dname_len, bad);
117 ceph_decode_need(p, end, info->dname_len, bad);
118 info->dname = *p;
119 *p += info->dname_len;
120 info->dlease = *p;
121 *p += sizeof(*info->dlease);
122 }
123
124 if (info->head->is_target) {
14303d20 125 err = parse_reply_info_in(p, end, &info->targeti, features);
2f2dc053
SW
126 if (err < 0)
127 goto out_bad;
128 }
129
130 if (unlikely(*p != end))
131 goto bad;
132 return 0;
133
134bad:
135 err = -EIO;
136out_bad:
137 pr_err("problem parsing mds trace %d\n", err);
138 return err;
139}
140
141/*
142 * parse readdir results
143 */
144static int parse_reply_info_dir(void **p, void *end,
14303d20
SW
145 struct ceph_mds_reply_info_parsed *info,
146 int features)
2f2dc053
SW
147{
148 u32 num, i = 0;
149 int err;
150
151 info->dir_dir = *p;
152 if (*p + sizeof(*info->dir_dir) > end)
153 goto bad;
154 *p += sizeof(*info->dir_dir) +
155 sizeof(u32)*le32_to_cpu(info->dir_dir->ndist);
156 if (*p > end)
157 goto bad;
158
159 ceph_decode_need(p, end, sizeof(num) + 2, bad);
c89136ea
SW
160 num = ceph_decode_32(p);
161 info->dir_end = ceph_decode_8(p);
162 info->dir_complete = ceph_decode_8(p);
2f2dc053
SW
163 if (num == 0)
164 goto done;
165
166 /* alloc large array */
167 info->dir_nr = num;
168 info->dir_in = kcalloc(num, sizeof(*info->dir_in) +
169 sizeof(*info->dir_dname) +
170 sizeof(*info->dir_dname_len) +
171 sizeof(*info->dir_dlease),
172 GFP_NOFS);
173 if (info->dir_in == NULL) {
174 err = -ENOMEM;
175 goto out_bad;
176 }
177 info->dir_dname = (void *)(info->dir_in + num);
178 info->dir_dname_len = (void *)(info->dir_dname + num);
179 info->dir_dlease = (void *)(info->dir_dname_len + num);
180
181 while (num) {
182 /* dentry */
183 ceph_decode_need(p, end, sizeof(u32)*2, bad);
c89136ea 184 info->dir_dname_len[i] = ceph_decode_32(p);
2f2dc053
SW
185 ceph_decode_need(p, end, info->dir_dname_len[i], bad);
186 info->dir_dname[i] = *p;
187 *p += info->dir_dname_len[i];
188 dout("parsed dir dname '%.*s'\n", info->dir_dname_len[i],
189 info->dir_dname[i]);
190 info->dir_dlease[i] = *p;
191 *p += sizeof(struct ceph_mds_reply_lease);
192
193 /* inode */
14303d20 194 err = parse_reply_info_in(p, end, &info->dir_in[i], features);
2f2dc053
SW
195 if (err < 0)
196 goto out_bad;
197 i++;
198 num--;
199 }
200
201done:
202 if (*p != end)
203 goto bad;
204 return 0;
205
206bad:
207 err = -EIO;
208out_bad:
209 pr_err("problem parsing dir contents %d\n", err);
210 return err;
211}
212
25933abd
HS
213/*
214 * parse fcntl F_GETLK results
215 */
216static int parse_reply_info_filelock(void **p, void *end,
14303d20
SW
217 struct ceph_mds_reply_info_parsed *info,
218 int features)
25933abd
HS
219{
220 if (*p + sizeof(*info->filelock_reply) > end)
221 goto bad;
222
223 info->filelock_reply = *p;
224 *p += sizeof(*info->filelock_reply);
225
226 if (unlikely(*p != end))
227 goto bad;
228 return 0;
229
230bad:
231 return -EIO;
232}
233
234/*
235 * parse extra results
236 */
237static int parse_reply_info_extra(void **p, void *end,
14303d20
SW
238 struct ceph_mds_reply_info_parsed *info,
239 int features)
25933abd
HS
240{
241 if (info->head->op == CEPH_MDS_OP_GETFILELOCK)
14303d20 242 return parse_reply_info_filelock(p, end, info, features);
25933abd 243 else
14303d20 244 return parse_reply_info_dir(p, end, info, features);
25933abd
HS
245}
246
2f2dc053
SW
247/*
248 * parse entire mds reply
249 */
250static int parse_reply_info(struct ceph_msg *msg,
14303d20
SW
251 struct ceph_mds_reply_info_parsed *info,
252 int features)
2f2dc053
SW
253{
254 void *p, *end;
255 u32 len;
256 int err;
257
258 info->head = msg->front.iov_base;
259 p = msg->front.iov_base + sizeof(struct ceph_mds_reply_head);
260 end = p + msg->front.iov_len - sizeof(struct ceph_mds_reply_head);
261
262 /* trace */
263 ceph_decode_32_safe(&p, end, len, bad);
264 if (len > 0) {
32852a81 265 ceph_decode_need(&p, end, len, bad);
14303d20 266 err = parse_reply_info_trace(&p, p+len, info, features);
2f2dc053
SW
267 if (err < 0)
268 goto out_bad;
269 }
270
25933abd 271 /* extra */
2f2dc053
SW
272 ceph_decode_32_safe(&p, end, len, bad);
273 if (len > 0) {
32852a81 274 ceph_decode_need(&p, end, len, bad);
14303d20 275 err = parse_reply_info_extra(&p, p+len, info, features);
2f2dc053
SW
276 if (err < 0)
277 goto out_bad;
278 }
279
280 /* snap blob */
281 ceph_decode_32_safe(&p, end, len, bad);
282 info->snapblob_len = len;
283 info->snapblob = p;
284 p += len;
285
286 if (p != end)
287 goto bad;
288 return 0;
289
290bad:
291 err = -EIO;
292out_bad:
293 pr_err("mds parse_reply err %d\n", err);
294 return err;
295}
296
297static void destroy_reply_info(struct ceph_mds_reply_info_parsed *info)
298{
299 kfree(info->dir_in);
300}
301
302
303/*
304 * sessions
305 */
306static const char *session_state_name(int s)
307{
308 switch (s) {
309 case CEPH_MDS_SESSION_NEW: return "new";
310 case CEPH_MDS_SESSION_OPENING: return "opening";
311 case CEPH_MDS_SESSION_OPEN: return "open";
312 case CEPH_MDS_SESSION_HUNG: return "hung";
313 case CEPH_MDS_SESSION_CLOSING: return "closing";
44ca18f2 314 case CEPH_MDS_SESSION_RESTARTING: return "restarting";
2f2dc053
SW
315 case CEPH_MDS_SESSION_RECONNECTING: return "reconnecting";
316 default: return "???";
317 }
318}
319
320static struct ceph_mds_session *get_session(struct ceph_mds_session *s)
321{
322 if (atomic_inc_not_zero(&s->s_ref)) {
323 dout("mdsc get_session %p %d -> %d\n", s,
324 atomic_read(&s->s_ref)-1, atomic_read(&s->s_ref));
325 return s;
326 } else {
327 dout("mdsc get_session %p 0 -- FAIL", s);
328 return NULL;
329 }
330}
331
332void ceph_put_mds_session(struct ceph_mds_session *s)
333{
334 dout("mdsc put_session %p %d -> %d\n", s,
335 atomic_read(&s->s_ref), atomic_read(&s->s_ref)-1);
4e7a5dcd 336 if (atomic_dec_and_test(&s->s_ref)) {
6c4a1915 337 if (s->s_auth.authorizer)
3d14c5d2
YS
338 s->s_mdsc->fsc->client->monc.auth->ops->destroy_authorizer(
339 s->s_mdsc->fsc->client->monc.auth,
6c4a1915 340 s->s_auth.authorizer);
2f2dc053 341 kfree(s);
4e7a5dcd 342 }
2f2dc053
SW
343}
344
345/*
346 * called under mdsc->mutex
347 */
348struct ceph_mds_session *__ceph_lookup_mds_session(struct ceph_mds_client *mdsc,
349 int mds)
350{
351 struct ceph_mds_session *session;
352
353 if (mds >= mdsc->max_sessions || mdsc->sessions[mds] == NULL)
354 return NULL;
355 session = mdsc->sessions[mds];
356 dout("lookup_mds_session %p %d\n", session,
357 atomic_read(&session->s_ref));
358 get_session(session);
359 return session;
360}
361
362static bool __have_session(struct ceph_mds_client *mdsc, int mds)
363{
364 if (mds >= mdsc->max_sessions)
365 return false;
366 return mdsc->sessions[mds];
367}
368
2600d2dd
SW
369static int __verify_registered_session(struct ceph_mds_client *mdsc,
370 struct ceph_mds_session *s)
371{
372 if (s->s_mds >= mdsc->max_sessions ||
373 mdsc->sessions[s->s_mds] != s)
374 return -ENOENT;
375 return 0;
376}
377
2f2dc053
SW
378/*
379 * create+register a new session for given mds.
380 * called under mdsc->mutex.
381 */
382static struct ceph_mds_session *register_session(struct ceph_mds_client *mdsc,
383 int mds)
384{
385 struct ceph_mds_session *s;
386
387 s = kzalloc(sizeof(*s), GFP_NOFS);
4736b009
DC
388 if (!s)
389 return ERR_PTR(-ENOMEM);
2f2dc053
SW
390 s->s_mdsc = mdsc;
391 s->s_mds = mds;
392 s->s_state = CEPH_MDS_SESSION_NEW;
393 s->s_ttl = 0;
394 s->s_seq = 0;
395 mutex_init(&s->s_mutex);
396
1bfd89f4
AE
397 ceph_con_init(&s->s_con, s, &mds_con_ops, &mdsc->fsc->client->msgr,
398 CEPH_ENTITY_TYPE_MDS, mds);
2f2dc053 399
d8fb02ab 400 spin_lock_init(&s->s_gen_ttl_lock);
2f2dc053 401 s->s_cap_gen = 0;
1ce208a6 402 s->s_cap_ttl = jiffies - 1;
d8fb02ab
AE
403
404 spin_lock_init(&s->s_cap_lock);
2f2dc053
SW
405 s->s_renew_requested = 0;
406 s->s_renew_seq = 0;
407 INIT_LIST_HEAD(&s->s_caps);
408 s->s_nr_caps = 0;
5dacf091 409 s->s_trim_caps = 0;
2f2dc053
SW
410 atomic_set(&s->s_ref, 1);
411 INIT_LIST_HEAD(&s->s_waiting);
412 INIT_LIST_HEAD(&s->s_unsafe);
413 s->s_num_cap_releases = 0;
7c1332b8 414 s->s_cap_iterator = NULL;
2f2dc053
SW
415 INIT_LIST_HEAD(&s->s_cap_releases);
416 INIT_LIST_HEAD(&s->s_cap_releases_done);
417 INIT_LIST_HEAD(&s->s_cap_flushing);
418 INIT_LIST_HEAD(&s->s_cap_snaps_flushing);
419
420 dout("register_session mds%d\n", mds);
421 if (mds >= mdsc->max_sessions) {
422 int newmax = 1 << get_count_order(mds+1);
423 struct ceph_mds_session **sa;
424
425 dout("register_session realloc to %d\n", newmax);
426 sa = kcalloc(newmax, sizeof(void *), GFP_NOFS);
427 if (sa == NULL)
42ce56e5 428 goto fail_realloc;
2f2dc053
SW
429 if (mdsc->sessions) {
430 memcpy(sa, mdsc->sessions,
431 mdsc->max_sessions * sizeof(void *));
432 kfree(mdsc->sessions);
433 }
434 mdsc->sessions = sa;
435 mdsc->max_sessions = newmax;
436 }
437 mdsc->sessions[mds] = s;
438 atomic_inc(&s->s_ref); /* one ref to sessions[], one to caller */
42ce56e5
SW
439
440 ceph_con_open(&s->s_con, ceph_mdsmap_get_addr(mdsc->mdsmap, mds));
441
2f2dc053 442 return s;
42ce56e5
SW
443
444fail_realloc:
445 kfree(s);
446 return ERR_PTR(-ENOMEM);
2f2dc053
SW
447}
448
449/*
450 * called under mdsc->mutex
451 */
2600d2dd 452static void __unregister_session(struct ceph_mds_client *mdsc,
42ce56e5 453 struct ceph_mds_session *s)
2f2dc053 454{
2600d2dd
SW
455 dout("__unregister_session mds%d %p\n", s->s_mds, s);
456 BUG_ON(mdsc->sessions[s->s_mds] != s);
42ce56e5
SW
457 mdsc->sessions[s->s_mds] = NULL;
458 ceph_con_close(&s->s_con);
459 ceph_put_mds_session(s);
2f2dc053
SW
460}
461
462/*
463 * drop session refs in request.
464 *
465 * should be last request ref, or hold mdsc->mutex
466 */
467static void put_request_session(struct ceph_mds_request *req)
468{
469 if (req->r_session) {
470 ceph_put_mds_session(req->r_session);
471 req->r_session = NULL;
472 }
473}
474
153c8e6b 475void ceph_mdsc_release_request(struct kref *kref)
2f2dc053 476{
153c8e6b
SW
477 struct ceph_mds_request *req = container_of(kref,
478 struct ceph_mds_request,
479 r_kref);
480 if (req->r_request)
481 ceph_msg_put(req->r_request);
482 if (req->r_reply) {
483 ceph_msg_put(req->r_reply);
484 destroy_reply_info(&req->r_reply_info);
485 }
486 if (req->r_inode) {
41b02e1f 487 ceph_put_cap_refs(ceph_inode(req->r_inode), CEPH_CAP_PIN);
153c8e6b
SW
488 iput(req->r_inode);
489 }
490 if (req->r_locked_dir)
41b02e1f 491 ceph_put_cap_refs(ceph_inode(req->r_locked_dir), CEPH_CAP_PIN);
153c8e6b
SW
492 if (req->r_target_inode)
493 iput(req->r_target_inode);
494 if (req->r_dentry)
495 dput(req->r_dentry);
496 if (req->r_old_dentry) {
41b02e1f
SW
497 /*
498 * track (and drop pins for) r_old_dentry_dir
499 * separately, since r_old_dentry's d_parent may have
500 * changed between the dir mutex being dropped and
501 * this request being freed.
502 */
503 ceph_put_cap_refs(ceph_inode(req->r_old_dentry_dir),
504 CEPH_CAP_PIN);
153c8e6b 505 dput(req->r_old_dentry);
41b02e1f 506 iput(req->r_old_dentry_dir);
2f2dc053 507 }
153c8e6b
SW
508 kfree(req->r_path1);
509 kfree(req->r_path2);
510 put_request_session(req);
37151668 511 ceph_unreserve_caps(req->r_mdsc, &req->r_caps_reservation);
153c8e6b 512 kfree(req);
2f2dc053
SW
513}
514
515/*
516 * lookup session, bump ref if found.
517 *
518 * called under mdsc->mutex.
519 */
520static struct ceph_mds_request *__lookup_request(struct ceph_mds_client *mdsc,
521 u64 tid)
522{
523 struct ceph_mds_request *req;
44ca18f2
SW
524 struct rb_node *n = mdsc->request_tree.rb_node;
525
526 while (n) {
527 req = rb_entry(n, struct ceph_mds_request, r_node);
528 if (tid < req->r_tid)
529 n = n->rb_left;
530 else if (tid > req->r_tid)
531 n = n->rb_right;
532 else {
533 ceph_mdsc_get_request(req);
534 return req;
535 }
536 }
537 return NULL;
538}
539
540static void __insert_request(struct ceph_mds_client *mdsc,
541 struct ceph_mds_request *new)
542{
543 struct rb_node **p = &mdsc->request_tree.rb_node;
544 struct rb_node *parent = NULL;
545 struct ceph_mds_request *req = NULL;
546
547 while (*p) {
548 parent = *p;
549 req = rb_entry(parent, struct ceph_mds_request, r_node);
550 if (new->r_tid < req->r_tid)
551 p = &(*p)->rb_left;
552 else if (new->r_tid > req->r_tid)
553 p = &(*p)->rb_right;
554 else
555 BUG();
556 }
557
558 rb_link_node(&new->r_node, parent, p);
559 rb_insert_color(&new->r_node, &mdsc->request_tree);
2f2dc053
SW
560}
561
562/*
563 * Register an in-flight request, and assign a tid. Link to directory
564 * are modifying (if any).
565 *
566 * Called under mdsc->mutex.
567 */
568static void __register_request(struct ceph_mds_client *mdsc,
569 struct ceph_mds_request *req,
570 struct inode *dir)
571{
572 req->r_tid = ++mdsc->last_tid;
573 if (req->r_num_caps)
37151668
YS
574 ceph_reserve_caps(mdsc, &req->r_caps_reservation,
575 req->r_num_caps);
2f2dc053
SW
576 dout("__register_request %p tid %lld\n", req, req->r_tid);
577 ceph_mdsc_get_request(req);
44ca18f2 578 __insert_request(mdsc, req);
2f2dc053 579
cb4276cc
SW
580 req->r_uid = current_fsuid();
581 req->r_gid = current_fsgid();
582
2f2dc053
SW
583 if (dir) {
584 struct ceph_inode_info *ci = ceph_inode(dir);
585
3b663780 586 ihold(dir);
2f2dc053
SW
587 spin_lock(&ci->i_unsafe_lock);
588 req->r_unsafe_dir = dir;
589 list_add_tail(&req->r_unsafe_dir_item, &ci->i_unsafe_dirops);
590 spin_unlock(&ci->i_unsafe_lock);
591 }
592}
593
594static void __unregister_request(struct ceph_mds_client *mdsc,
595 struct ceph_mds_request *req)
596{
597 dout("__unregister_request %p tid %lld\n", req, req->r_tid);
44ca18f2 598 rb_erase(&req->r_node, &mdsc->request_tree);
80fc7314 599 RB_CLEAR_NODE(&req->r_node);
2f2dc053
SW
600
601 if (req->r_unsafe_dir) {
602 struct ceph_inode_info *ci = ceph_inode(req->r_unsafe_dir);
603
604 spin_lock(&ci->i_unsafe_lock);
605 list_del_init(&req->r_unsafe_dir_item);
606 spin_unlock(&ci->i_unsafe_lock);
3b663780
SW
607
608 iput(req->r_unsafe_dir);
609 req->r_unsafe_dir = NULL;
2f2dc053 610 }
94aa8ae1
SW
611
612 ceph_mdsc_put_request(req);
2f2dc053
SW
613}
614
615/*
616 * Choose mds to send request to next. If there is a hint set in the
617 * request (e.g., due to a prior forward hint from the mds), use that.
618 * Otherwise, consult frag tree and/or caps to identify the
619 * appropriate mds. If all else fails, choose randomly.
620 *
621 * Called under mdsc->mutex.
622 */
7fd7d101 623static struct dentry *get_nonsnap_parent(struct dentry *dentry)
eb6bb1c5 624{
d79698da
SW
625 /*
626 * we don't need to worry about protecting the d_parent access
627 * here because we never renaming inside the snapped namespace
628 * except to resplice to another snapdir, and either the old or new
629 * result is a valid result.
630 */
eb6bb1c5
SW
631 while (!IS_ROOT(dentry) && ceph_snap(dentry->d_inode) != CEPH_NOSNAP)
632 dentry = dentry->d_parent;
633 return dentry;
634}
635
2f2dc053
SW
636static int __choose_mds(struct ceph_mds_client *mdsc,
637 struct ceph_mds_request *req)
638{
639 struct inode *inode;
640 struct ceph_inode_info *ci;
641 struct ceph_cap *cap;
642 int mode = req->r_direct_mode;
643 int mds = -1;
644 u32 hash = req->r_direct_hash;
645 bool is_hash = req->r_direct_is_hash;
646
647 /*
648 * is there a specific mds we should try? ignore hint if we have
649 * no session and the mds is not up (active or recovering).
650 */
651 if (req->r_resend_mds >= 0 &&
652 (__have_session(mdsc, req->r_resend_mds) ||
653 ceph_mdsmap_get_state(mdsc->mdsmap, req->r_resend_mds) > 0)) {
654 dout("choose_mds using resend_mds mds%d\n",
655 req->r_resend_mds);
656 return req->r_resend_mds;
657 }
658
659 if (mode == USE_RANDOM_MDS)
660 goto random;
661
662 inode = NULL;
663 if (req->r_inode) {
664 inode = req->r_inode;
665 } else if (req->r_dentry) {
d79698da
SW
666 /* ignore race with rename; old or new d_parent is okay */
667 struct dentry *parent = req->r_dentry->d_parent;
668 struct inode *dir = parent->d_inode;
eb6bb1c5 669
3d14c5d2 670 if (dir->i_sb != mdsc->fsc->sb) {
eb6bb1c5
SW
671 /* not this fs! */
672 inode = req->r_dentry->d_inode;
673 } else if (ceph_snap(dir) != CEPH_NOSNAP) {
674 /* direct snapped/virtual snapdir requests
675 * based on parent dir inode */
d79698da 676 struct dentry *dn = get_nonsnap_parent(parent);
eb6bb1c5
SW
677 inode = dn->d_inode;
678 dout("__choose_mds using nonsnap parent %p\n", inode);
679 } else if (req->r_dentry->d_inode) {
680 /* dentry target */
2f2dc053
SW
681 inode = req->r_dentry->d_inode;
682 } else {
eb6bb1c5
SW
683 /* dir + name */
684 inode = dir;
e5f86dc3 685 hash = ceph_dentry_hash(dir, req->r_dentry);
2f2dc053
SW
686 is_hash = true;
687 }
688 }
eb6bb1c5 689
2f2dc053
SW
690 dout("__choose_mds %p is_hash=%d (%d) mode %d\n", inode, (int)is_hash,
691 (int)hash, mode);
692 if (!inode)
693 goto random;
694 ci = ceph_inode(inode);
695
696 if (is_hash && S_ISDIR(inode->i_mode)) {
697 struct ceph_inode_frag frag;
698 int found;
699
700 ceph_choose_frag(ci, hash, &frag, &found);
701 if (found) {
702 if (mode == USE_ANY_MDS && frag.ndist > 0) {
703 u8 r;
704
705 /* choose a random replica */
706 get_random_bytes(&r, 1);
707 r %= frag.ndist;
708 mds = frag.dist[r];
709 dout("choose_mds %p %llx.%llx "
710 "frag %u mds%d (%d/%d)\n",
711 inode, ceph_vinop(inode),
d66bbd44 712 frag.frag, mds,
2f2dc053 713 (int)r, frag.ndist);
d66bbd44
SW
714 if (ceph_mdsmap_get_state(mdsc->mdsmap, mds) >=
715 CEPH_MDS_STATE_ACTIVE)
716 return mds;
2f2dc053
SW
717 }
718
719 /* since this file/dir wasn't known to be
720 * replicated, then we want to look for the
721 * authoritative mds. */
722 mode = USE_AUTH_MDS;
723 if (frag.mds >= 0) {
724 /* choose auth mds */
725 mds = frag.mds;
726 dout("choose_mds %p %llx.%llx "
727 "frag %u mds%d (auth)\n",
728 inode, ceph_vinop(inode), frag.frag, mds);
d66bbd44
SW
729 if (ceph_mdsmap_get_state(mdsc->mdsmap, mds) >=
730 CEPH_MDS_STATE_ACTIVE)
731 return mds;
2f2dc053
SW
732 }
733 }
734 }
735
be655596 736 spin_lock(&ci->i_ceph_lock);
2f2dc053
SW
737 cap = NULL;
738 if (mode == USE_AUTH_MDS)
739 cap = ci->i_auth_cap;
740 if (!cap && !RB_EMPTY_ROOT(&ci->i_caps))
741 cap = rb_entry(rb_first(&ci->i_caps), struct ceph_cap, ci_node);
742 if (!cap) {
be655596 743 spin_unlock(&ci->i_ceph_lock);
2f2dc053
SW
744 goto random;
745 }
746 mds = cap->session->s_mds;
747 dout("choose_mds %p %llx.%llx mds%d (%scap %p)\n",
748 inode, ceph_vinop(inode), mds,
749 cap == ci->i_auth_cap ? "auth " : "", cap);
be655596 750 spin_unlock(&ci->i_ceph_lock);
2f2dc053
SW
751 return mds;
752
753random:
754 mds = ceph_mdsmap_get_random_mds(mdsc->mdsmap);
755 dout("choose_mds chose random mds%d\n", mds);
756 return mds;
757}
758
759
760/*
761 * session messages
762 */
763static struct ceph_msg *create_session_msg(u32 op, u64 seq)
764{
765 struct ceph_msg *msg;
766 struct ceph_mds_session_head *h;
767
b61c2763
SW
768 msg = ceph_msg_new(CEPH_MSG_CLIENT_SESSION, sizeof(*h), GFP_NOFS,
769 false);
a79832f2 770 if (!msg) {
2f2dc053 771 pr_err("create_session_msg ENOMEM creating msg\n");
a79832f2 772 return NULL;
2f2dc053
SW
773 }
774 h = msg->front.iov_base;
775 h->op = cpu_to_le32(op);
776 h->seq = cpu_to_le64(seq);
777 return msg;
778}
779
780/*
781 * send session open request.
782 *
783 * called under mdsc->mutex
784 */
785static int __open_session(struct ceph_mds_client *mdsc,
786 struct ceph_mds_session *session)
787{
788 struct ceph_msg *msg;
789 int mstate;
790 int mds = session->s_mds;
2f2dc053
SW
791
792 /* wait for mds to go active? */
793 mstate = ceph_mdsmap_get_state(mdsc->mdsmap, mds);
794 dout("open_session to mds%d (%s)\n", mds,
795 ceph_mds_state_name(mstate));
796 session->s_state = CEPH_MDS_SESSION_OPENING;
797 session->s_renew_requested = jiffies;
798
799 /* send connect message */
800 msg = create_session_msg(CEPH_SESSION_REQUEST_OPEN, session->s_seq);
a79832f2
SW
801 if (!msg)
802 return -ENOMEM;
2f2dc053 803 ceph_con_send(&session->s_con, msg);
2f2dc053
SW
804 return 0;
805}
806
ed0552a1
SW
807/*
808 * open sessions for any export targets for the given mds
809 *
810 * called under mdsc->mutex
811 */
812static void __open_export_target_sessions(struct ceph_mds_client *mdsc,
813 struct ceph_mds_session *session)
814{
815 struct ceph_mds_info *mi;
816 struct ceph_mds_session *ts;
817 int i, mds = session->s_mds;
818 int target;
819
820 if (mds >= mdsc->mdsmap->m_max_mds)
821 return;
822 mi = &mdsc->mdsmap->m_info[mds];
823 dout("open_export_target_sessions for mds%d (%d targets)\n",
824 session->s_mds, mi->num_export_targets);
825
826 for (i = 0; i < mi->num_export_targets; i++) {
827 target = mi->export_targets[i];
828 ts = __ceph_lookup_mds_session(mdsc, target);
829 if (!ts) {
830 ts = register_session(mdsc, target);
831 if (IS_ERR(ts))
832 return;
833 }
834 if (session->s_state == CEPH_MDS_SESSION_NEW ||
835 session->s_state == CEPH_MDS_SESSION_CLOSING)
836 __open_session(mdsc, session);
837 else
838 dout(" mds%d target mds%d %p is %s\n", session->s_mds,
839 i, ts, session_state_name(ts->s_state));
840 ceph_put_mds_session(ts);
841 }
842}
843
154f42c2
SW
844void ceph_mdsc_open_export_target_sessions(struct ceph_mds_client *mdsc,
845 struct ceph_mds_session *session)
846{
847 mutex_lock(&mdsc->mutex);
848 __open_export_target_sessions(mdsc, session);
849 mutex_unlock(&mdsc->mutex);
850}
851
2f2dc053
SW
852/*
853 * session caps
854 */
855
856/*
857 * Free preallocated cap messages assigned to this session
858 */
859static void cleanup_cap_releases(struct ceph_mds_session *session)
860{
861 struct ceph_msg *msg;
862
863 spin_lock(&session->s_cap_lock);
864 while (!list_empty(&session->s_cap_releases)) {
865 msg = list_first_entry(&session->s_cap_releases,
866 struct ceph_msg, list_head);
867 list_del_init(&msg->list_head);
868 ceph_msg_put(msg);
869 }
870 while (!list_empty(&session->s_cap_releases_done)) {
871 msg = list_first_entry(&session->s_cap_releases_done,
872 struct ceph_msg, list_head);
873 list_del_init(&msg->list_head);
874 ceph_msg_put(msg);
875 }
876 spin_unlock(&session->s_cap_lock);
877}
878
879/*
f818a736
SW
880 * Helper to safely iterate over all caps associated with a session, with
881 * special care taken to handle a racing __ceph_remove_cap().
2f2dc053 882 *
f818a736 883 * Caller must hold session s_mutex.
2f2dc053
SW
884 */
885static int iterate_session_caps(struct ceph_mds_session *session,
886 int (*cb)(struct inode *, struct ceph_cap *,
887 void *), void *arg)
888{
7c1332b8
SW
889 struct list_head *p;
890 struct ceph_cap *cap;
891 struct inode *inode, *last_inode = NULL;
892 struct ceph_cap *old_cap = NULL;
2f2dc053
SW
893 int ret;
894
895 dout("iterate_session_caps %p mds%d\n", session, session->s_mds);
896 spin_lock(&session->s_cap_lock);
7c1332b8
SW
897 p = session->s_caps.next;
898 while (p != &session->s_caps) {
899 cap = list_entry(p, struct ceph_cap, session_caps);
2f2dc053 900 inode = igrab(&cap->ci->vfs_inode);
7c1332b8
SW
901 if (!inode) {
902 p = p->next;
2f2dc053 903 continue;
7c1332b8
SW
904 }
905 session->s_cap_iterator = cap;
2f2dc053 906 spin_unlock(&session->s_cap_lock);
7c1332b8
SW
907
908 if (last_inode) {
909 iput(last_inode);
910 last_inode = NULL;
911 }
912 if (old_cap) {
37151668 913 ceph_put_cap(session->s_mdsc, old_cap);
7c1332b8
SW
914 old_cap = NULL;
915 }
916
2f2dc053 917 ret = cb(inode, cap, arg);
7c1332b8
SW
918 last_inode = inode;
919
2f2dc053 920 spin_lock(&session->s_cap_lock);
7c1332b8
SW
921 p = p->next;
922 if (cap->ci == NULL) {
923 dout("iterate_session_caps finishing cap %p removal\n",
924 cap);
925 BUG_ON(cap->session != session);
926 list_del_init(&cap->session_caps);
927 session->s_nr_caps--;
928 cap->session = NULL;
929 old_cap = cap; /* put_cap it w/o locks held */
930 }
5dacf091
SW
931 if (ret < 0)
932 goto out;
2f2dc053 933 }
5dacf091
SW
934 ret = 0;
935out:
7c1332b8 936 session->s_cap_iterator = NULL;
2f2dc053 937 spin_unlock(&session->s_cap_lock);
7c1332b8
SW
938
939 if (last_inode)
940 iput(last_inode);
941 if (old_cap)
37151668 942 ceph_put_cap(session->s_mdsc, old_cap);
7c1332b8 943
5dacf091 944 return ret;
2f2dc053
SW
945}
946
947static int remove_session_caps_cb(struct inode *inode, struct ceph_cap *cap,
6c99f254 948 void *arg)
2f2dc053
SW
949{
950 struct ceph_inode_info *ci = ceph_inode(inode);
6c99f254
SW
951 int drop = 0;
952
2f2dc053
SW
953 dout("removing cap %p, ci is %p, inode is %p\n",
954 cap, ci, &ci->vfs_inode);
be655596 955 spin_lock(&ci->i_ceph_lock);
6c99f254
SW
956 __ceph_remove_cap(cap);
957 if (!__ceph_is_any_real_caps(ci)) {
958 struct ceph_mds_client *mdsc =
3d14c5d2 959 ceph_sb_to_client(inode->i_sb)->mdsc;
6c99f254
SW
960
961 spin_lock(&mdsc->cap_dirty_lock);
962 if (!list_empty(&ci->i_dirty_item)) {
963 pr_info(" dropping dirty %s state for %p %lld\n",
964 ceph_cap_string(ci->i_dirty_caps),
965 inode, ceph_ino(inode));
966 ci->i_dirty_caps = 0;
967 list_del_init(&ci->i_dirty_item);
968 drop = 1;
969 }
970 if (!list_empty(&ci->i_flushing_item)) {
971 pr_info(" dropping dirty+flushing %s state for %p %lld\n",
972 ceph_cap_string(ci->i_flushing_caps),
973 inode, ceph_ino(inode));
974 ci->i_flushing_caps = 0;
975 list_del_init(&ci->i_flushing_item);
976 mdsc->num_cap_flushing--;
977 drop = 1;
978 }
979 if (drop && ci->i_wrbuffer_ref) {
980 pr_info(" dropping dirty data for %p %lld\n",
981 inode, ceph_ino(inode));
982 ci->i_wrbuffer_ref = 0;
983 ci->i_wrbuffer_ref_head = 0;
984 drop++;
985 }
986 spin_unlock(&mdsc->cap_dirty_lock);
987 }
be655596 988 spin_unlock(&ci->i_ceph_lock);
6c99f254
SW
989 while (drop--)
990 iput(inode);
2f2dc053
SW
991 return 0;
992}
993
994/*
995 * caller must hold session s_mutex
996 */
997static void remove_session_caps(struct ceph_mds_session *session)
998{
999 dout("remove_session_caps on %p\n", session);
1000 iterate_session_caps(session, remove_session_caps_cb, NULL);
1001 BUG_ON(session->s_nr_caps > 0);
6c99f254 1002 BUG_ON(!list_empty(&session->s_cap_flushing));
2f2dc053
SW
1003 cleanup_cap_releases(session);
1004}
1005
1006/*
1007 * wake up any threads waiting on this session's caps. if the cap is
1008 * old (didn't get renewed on the client reconnect), remove it now.
1009 *
1010 * caller must hold s_mutex.
1011 */
1012static int wake_up_session_cb(struct inode *inode, struct ceph_cap *cap,
1013 void *arg)
1014{
0dc2570f
SW
1015 struct ceph_inode_info *ci = ceph_inode(inode);
1016
03066f23 1017 wake_up_all(&ci->i_cap_wq);
0dc2570f 1018 if (arg) {
be655596 1019 spin_lock(&ci->i_ceph_lock);
0dc2570f
SW
1020 ci->i_wanted_max_size = 0;
1021 ci->i_requested_max_size = 0;
be655596 1022 spin_unlock(&ci->i_ceph_lock);
0dc2570f 1023 }
2f2dc053
SW
1024 return 0;
1025}
1026
0dc2570f
SW
1027static void wake_up_session_caps(struct ceph_mds_session *session,
1028 int reconnect)
2f2dc053
SW
1029{
1030 dout("wake_up_session_caps %p mds%d\n", session, session->s_mds);
0dc2570f
SW
1031 iterate_session_caps(session, wake_up_session_cb,
1032 (void *)(unsigned long)reconnect);
2f2dc053
SW
1033}
1034
1035/*
1036 * Send periodic message to MDS renewing all currently held caps. The
1037 * ack will reset the expiration for all caps from this session.
1038 *
1039 * caller holds s_mutex
1040 */
1041static int send_renew_caps(struct ceph_mds_client *mdsc,
1042 struct ceph_mds_session *session)
1043{
1044 struct ceph_msg *msg;
1045 int state;
1046
1047 if (time_after_eq(jiffies, session->s_cap_ttl) &&
1048 time_after_eq(session->s_cap_ttl, session->s_renew_requested))
1049 pr_info("mds%d caps stale\n", session->s_mds);
e4cb4cb8 1050 session->s_renew_requested = jiffies;
2f2dc053
SW
1051
1052 /* do not try to renew caps until a recovering mds has reconnected
1053 * with its clients. */
1054 state = ceph_mdsmap_get_state(mdsc->mdsmap, session->s_mds);
1055 if (state < CEPH_MDS_STATE_RECONNECT) {
1056 dout("send_renew_caps ignoring mds%d (%s)\n",
1057 session->s_mds, ceph_mds_state_name(state));
1058 return 0;
1059 }
1060
1061 dout("send_renew_caps to mds%d (%s)\n", session->s_mds,
1062 ceph_mds_state_name(state));
2f2dc053
SW
1063 msg = create_session_msg(CEPH_SESSION_REQUEST_RENEWCAPS,
1064 ++session->s_renew_seq);
a79832f2
SW
1065 if (!msg)
1066 return -ENOMEM;
2f2dc053
SW
1067 ceph_con_send(&session->s_con, msg);
1068 return 0;
1069}
1070
1071/*
1072 * Note new cap ttl, and any transition from stale -> not stale (fresh?).
0dc2570f
SW
1073 *
1074 * Called under session->s_mutex
2f2dc053
SW
1075 */
1076static void renewed_caps(struct ceph_mds_client *mdsc,
1077 struct ceph_mds_session *session, int is_renew)
1078{
1079 int was_stale;
1080 int wake = 0;
1081
1082 spin_lock(&session->s_cap_lock);
1ce208a6 1083 was_stale = is_renew && time_after_eq(jiffies, session->s_cap_ttl);
2f2dc053
SW
1084
1085 session->s_cap_ttl = session->s_renew_requested +
1086 mdsc->mdsmap->m_session_timeout*HZ;
1087
1088 if (was_stale) {
1089 if (time_before(jiffies, session->s_cap_ttl)) {
1090 pr_info("mds%d caps renewed\n", session->s_mds);
1091 wake = 1;
1092 } else {
1093 pr_info("mds%d caps still stale\n", session->s_mds);
1094 }
1095 }
1096 dout("renewed_caps mds%d ttl now %lu, was %s, now %s\n",
1097 session->s_mds, session->s_cap_ttl, was_stale ? "stale" : "fresh",
1098 time_before(jiffies, session->s_cap_ttl) ? "stale" : "fresh");
1099 spin_unlock(&session->s_cap_lock);
1100
1101 if (wake)
0dc2570f 1102 wake_up_session_caps(session, 0);
2f2dc053
SW
1103}
1104
1105/*
1106 * send a session close request
1107 */
1108static int request_close_session(struct ceph_mds_client *mdsc,
1109 struct ceph_mds_session *session)
1110{
1111 struct ceph_msg *msg;
2f2dc053
SW
1112
1113 dout("request_close_session mds%d state %s seq %lld\n",
1114 session->s_mds, session_state_name(session->s_state),
1115 session->s_seq);
1116 msg = create_session_msg(CEPH_SESSION_REQUEST_CLOSE, session->s_seq);
a79832f2
SW
1117 if (!msg)
1118 return -ENOMEM;
1119 ceph_con_send(&session->s_con, msg);
1120 return 0;
2f2dc053
SW
1121}
1122
1123/*
1124 * Called with s_mutex held.
1125 */
1126static int __close_session(struct ceph_mds_client *mdsc,
1127 struct ceph_mds_session *session)
1128{
1129 if (session->s_state >= CEPH_MDS_SESSION_CLOSING)
1130 return 0;
1131 session->s_state = CEPH_MDS_SESSION_CLOSING;
1132 return request_close_session(mdsc, session);
1133}
1134
1135/*
1136 * Trim old(er) caps.
1137 *
1138 * Because we can't cache an inode without one or more caps, we do
1139 * this indirectly: if a cap is unused, we prune its aliases, at which
1140 * point the inode will hopefully get dropped to.
1141 *
1142 * Yes, this is a bit sloppy. Our only real goal here is to respond to
1143 * memory pressure from the MDS, though, so it needn't be perfect.
1144 */
1145static int trim_caps_cb(struct inode *inode, struct ceph_cap *cap, void *arg)
1146{
1147 struct ceph_mds_session *session = arg;
1148 struct ceph_inode_info *ci = ceph_inode(inode);
1149 int used, oissued, mine;
1150
1151 if (session->s_trim_caps <= 0)
1152 return -1;
1153
be655596 1154 spin_lock(&ci->i_ceph_lock);
2f2dc053
SW
1155 mine = cap->issued | cap->implemented;
1156 used = __ceph_caps_used(ci);
1157 oissued = __ceph_caps_issued_other(ci, cap);
1158
1159 dout("trim_caps_cb %p cap %p mine %s oissued %s used %s\n",
1160 inode, cap, ceph_cap_string(mine), ceph_cap_string(oissued),
1161 ceph_cap_string(used));
1162 if (ci->i_dirty_caps)
1163 goto out; /* dirty caps */
1164 if ((used & ~oissued) & mine)
1165 goto out; /* we need these caps */
1166
1167 session->s_trim_caps--;
1168 if (oissued) {
1169 /* we aren't the only cap.. just remove us */
7c1332b8 1170 __ceph_remove_cap(cap);
2f2dc053
SW
1171 } else {
1172 /* try to drop referring dentries */
be655596 1173 spin_unlock(&ci->i_ceph_lock);
2f2dc053
SW
1174 d_prune_aliases(inode);
1175 dout("trim_caps_cb %p cap %p pruned, count now %d\n",
1176 inode, cap, atomic_read(&inode->i_count));
1177 return 0;
1178 }
1179
1180out:
be655596 1181 spin_unlock(&ci->i_ceph_lock);
2f2dc053
SW
1182 return 0;
1183}
1184
1185/*
1186 * Trim session cap count down to some max number.
1187 */
1188static int trim_caps(struct ceph_mds_client *mdsc,
1189 struct ceph_mds_session *session,
1190 int max_caps)
1191{
1192 int trim_caps = session->s_nr_caps - max_caps;
1193
1194 dout("trim_caps mds%d start: %d / %d, trim %d\n",
1195 session->s_mds, session->s_nr_caps, max_caps, trim_caps);
1196 if (trim_caps > 0) {
1197 session->s_trim_caps = trim_caps;
1198 iterate_session_caps(session, trim_caps_cb, session);
1199 dout("trim_caps mds%d done: %d / %d, trimmed %d\n",
1200 session->s_mds, session->s_nr_caps, max_caps,
1201 trim_caps - session->s_trim_caps);
5dacf091 1202 session->s_trim_caps = 0;
2f2dc053
SW
1203 }
1204 return 0;
1205}
1206
1207/*
1208 * Allocate cap_release messages. If there is a partially full message
1209 * in the queue, try to allocate enough to cover it's remainder, so that
1210 * we can send it immediately.
1211 *
1212 * Called under s_mutex.
1213 */
2b2300d6 1214int ceph_add_cap_releases(struct ceph_mds_client *mdsc,
ee6b272b 1215 struct ceph_mds_session *session)
2f2dc053 1216{
38e8883e 1217 struct ceph_msg *msg, *partial = NULL;
2f2dc053
SW
1218 struct ceph_mds_cap_release *head;
1219 int err = -ENOMEM;
3d14c5d2 1220 int extra = mdsc->fsc->mount_options->cap_release_safety;
38e8883e 1221 int num;
2f2dc053 1222
38e8883e
SW
1223 dout("add_cap_releases %p mds%d extra %d\n", session, session->s_mds,
1224 extra);
2f2dc053
SW
1225
1226 spin_lock(&session->s_cap_lock);
1227
1228 if (!list_empty(&session->s_cap_releases)) {
1229 msg = list_first_entry(&session->s_cap_releases,
1230 struct ceph_msg,
1231 list_head);
1232 head = msg->front.iov_base;
38e8883e
SW
1233 num = le32_to_cpu(head->num);
1234 if (num) {
1235 dout(" partial %p with (%d/%d)\n", msg, num,
1236 (int)CEPH_CAPS_PER_RELEASE);
1237 extra += CEPH_CAPS_PER_RELEASE - num;
1238 partial = msg;
1239 }
2f2dc053 1240 }
2f2dc053
SW
1241 while (session->s_num_cap_releases < session->s_nr_caps + extra) {
1242 spin_unlock(&session->s_cap_lock);
34d23762 1243 msg = ceph_msg_new(CEPH_MSG_CLIENT_CAPRELEASE, PAGE_CACHE_SIZE,
b61c2763 1244 GFP_NOFS, false);
2f2dc053
SW
1245 if (!msg)
1246 goto out_unlocked;
1247 dout("add_cap_releases %p msg %p now %d\n", session, msg,
1248 (int)msg->front.iov_len);
1249 head = msg->front.iov_base;
1250 head->num = cpu_to_le32(0);
1251 msg->front.iov_len = sizeof(*head);
1252 spin_lock(&session->s_cap_lock);
1253 list_add(&msg->list_head, &session->s_cap_releases);
1254 session->s_num_cap_releases += CEPH_CAPS_PER_RELEASE;
1255 }
1256
38e8883e
SW
1257 if (partial) {
1258 head = partial->front.iov_base;
1259 num = le32_to_cpu(head->num);
1260 dout(" queueing partial %p with %d/%d\n", partial, num,
1261 (int)CEPH_CAPS_PER_RELEASE);
1262 list_move_tail(&partial->list_head,
1263 &session->s_cap_releases_done);
1264 session->s_num_cap_releases -= CEPH_CAPS_PER_RELEASE - num;
2f2dc053
SW
1265 }
1266 err = 0;
1267 spin_unlock(&session->s_cap_lock);
1268out_unlocked:
1269 return err;
1270}
1271
1272/*
1273 * flush all dirty inode data to disk.
1274 *
1275 * returns true if we've flushed through want_flush_seq
1276 */
1277static int check_cap_flush(struct ceph_mds_client *mdsc, u64 want_flush_seq)
1278{
1279 int mds, ret = 1;
1280
1281 dout("check_cap_flush want %lld\n", want_flush_seq);
1282 mutex_lock(&mdsc->mutex);
1283 for (mds = 0; ret && mds < mdsc->max_sessions; mds++) {
1284 struct ceph_mds_session *session = mdsc->sessions[mds];
1285
1286 if (!session)
1287 continue;
1288 get_session(session);
1289 mutex_unlock(&mdsc->mutex);
1290
1291 mutex_lock(&session->s_mutex);
1292 if (!list_empty(&session->s_cap_flushing)) {
1293 struct ceph_inode_info *ci =
1294 list_entry(session->s_cap_flushing.next,
1295 struct ceph_inode_info,
1296 i_flushing_item);
1297 struct inode *inode = &ci->vfs_inode;
1298
be655596 1299 spin_lock(&ci->i_ceph_lock);
2f2dc053
SW
1300 if (ci->i_cap_flush_seq <= want_flush_seq) {
1301 dout("check_cap_flush still flushing %p "
1302 "seq %lld <= %lld to mds%d\n", inode,
1303 ci->i_cap_flush_seq, want_flush_seq,
1304 session->s_mds);
1305 ret = 0;
1306 }
be655596 1307 spin_unlock(&ci->i_ceph_lock);
2f2dc053
SW
1308 }
1309 mutex_unlock(&session->s_mutex);
1310 ceph_put_mds_session(session);
1311
1312 if (!ret)
1313 return ret;
1314 mutex_lock(&mdsc->mutex);
1315 }
1316
1317 mutex_unlock(&mdsc->mutex);
1318 dout("check_cap_flush ok, flushed thru %lld\n", want_flush_seq);
1319 return ret;
1320}
1321
1322/*
1323 * called under s_mutex
1324 */
3d7ded4d
SW
1325void ceph_send_cap_releases(struct ceph_mds_client *mdsc,
1326 struct ceph_mds_session *session)
2f2dc053
SW
1327{
1328 struct ceph_msg *msg;
1329
1330 dout("send_cap_releases mds%d\n", session->s_mds);
0f8605f2
SW
1331 spin_lock(&session->s_cap_lock);
1332 while (!list_empty(&session->s_cap_releases_done)) {
2f2dc053
SW
1333 msg = list_first_entry(&session->s_cap_releases_done,
1334 struct ceph_msg, list_head);
1335 list_del_init(&msg->list_head);
1336 spin_unlock(&session->s_cap_lock);
1337 msg->hdr.front_len = cpu_to_le32(msg->front.iov_len);
1338 dout("send_cap_releases mds%d %p\n", session->s_mds, msg);
1339 ceph_con_send(&session->s_con, msg);
0f8605f2 1340 spin_lock(&session->s_cap_lock);
2f2dc053
SW
1341 }
1342 spin_unlock(&session->s_cap_lock);
1343}
1344
e01a5946
SW
1345static void discard_cap_releases(struct ceph_mds_client *mdsc,
1346 struct ceph_mds_session *session)
1347{
1348 struct ceph_msg *msg;
1349 struct ceph_mds_cap_release *head;
1350 unsigned num;
1351
1352 dout("discard_cap_releases mds%d\n", session->s_mds);
1353 spin_lock(&session->s_cap_lock);
1354
1355 /* zero out the in-progress message */
1356 msg = list_first_entry(&session->s_cap_releases,
1357 struct ceph_msg, list_head);
1358 head = msg->front.iov_base;
1359 num = le32_to_cpu(head->num);
1360 dout("discard_cap_releases mds%d %p %u\n", session->s_mds, msg, num);
1361 head->num = cpu_to_le32(0);
1362 session->s_num_cap_releases += num;
1363
1364 /* requeue completed messages */
1365 while (!list_empty(&session->s_cap_releases_done)) {
1366 msg = list_first_entry(&session->s_cap_releases_done,
1367 struct ceph_msg, list_head);
1368 list_del_init(&msg->list_head);
1369
1370 head = msg->front.iov_base;
1371 num = le32_to_cpu(head->num);
1372 dout("discard_cap_releases mds%d %p %u\n", session->s_mds, msg,
1373 num);
1374 session->s_num_cap_releases += num;
1375 head->num = cpu_to_le32(0);
1376 msg->front.iov_len = sizeof(*head);
1377 list_add(&msg->list_head, &session->s_cap_releases);
1378 }
1379
1380 spin_unlock(&session->s_cap_lock);
1381}
1382
2f2dc053
SW
1383/*
1384 * requests
1385 */
1386
1387/*
1388 * Create an mds request.
1389 */
1390struct ceph_mds_request *
1391ceph_mdsc_create_request(struct ceph_mds_client *mdsc, int op, int mode)
1392{
1393 struct ceph_mds_request *req = kzalloc(sizeof(*req), GFP_NOFS);
1394
1395 if (!req)
1396 return ERR_PTR(-ENOMEM);
1397
b4556396 1398 mutex_init(&req->r_fill_mutex);
37151668 1399 req->r_mdsc = mdsc;
2f2dc053
SW
1400 req->r_started = jiffies;
1401 req->r_resend_mds = -1;
1402 INIT_LIST_HEAD(&req->r_unsafe_dir_item);
1403 req->r_fmode = -1;
153c8e6b 1404 kref_init(&req->r_kref);
2f2dc053
SW
1405 INIT_LIST_HEAD(&req->r_wait);
1406 init_completion(&req->r_completion);
1407 init_completion(&req->r_safe_completion);
1408 INIT_LIST_HEAD(&req->r_unsafe_item);
1409
1410 req->r_op = op;
1411 req->r_direct_mode = mode;
1412 return req;
1413}
1414
1415/*
44ca18f2 1416 * return oldest (lowest) request, tid in request tree, 0 if none.
2f2dc053
SW
1417 *
1418 * called under mdsc->mutex.
1419 */
44ca18f2
SW
1420static struct ceph_mds_request *__get_oldest_req(struct ceph_mds_client *mdsc)
1421{
1422 if (RB_EMPTY_ROOT(&mdsc->request_tree))
1423 return NULL;
1424 return rb_entry(rb_first(&mdsc->request_tree),
1425 struct ceph_mds_request, r_node);
1426}
1427
2f2dc053
SW
1428static u64 __get_oldest_tid(struct ceph_mds_client *mdsc)
1429{
44ca18f2
SW
1430 struct ceph_mds_request *req = __get_oldest_req(mdsc);
1431
1432 if (req)
1433 return req->r_tid;
1434 return 0;
2f2dc053
SW
1435}
1436
1437/*
1438 * Build a dentry's path. Allocate on heap; caller must kfree. Based
1439 * on build_path_from_dentry in fs/cifs/dir.c.
1440 *
1441 * If @stop_on_nosnap, generate path relative to the first non-snapped
1442 * inode.
1443 *
1444 * Encode hidden .snap dirs as a double /, i.e.
1445 * foo/.snap/bar -> foo//bar
1446 */
1447char *ceph_mdsc_build_path(struct dentry *dentry, int *plen, u64 *base,
1448 int stop_on_nosnap)
1449{
1450 struct dentry *temp;
1451 char *path;
1452 int len, pos;
1b71fe2e 1453 unsigned seq;
2f2dc053
SW
1454
1455 if (dentry == NULL)
1456 return ERR_PTR(-EINVAL);
1457
1458retry:
1459 len = 0;
1b71fe2e
AV
1460 seq = read_seqbegin(&rename_lock);
1461 rcu_read_lock();
2f2dc053
SW
1462 for (temp = dentry; !IS_ROOT(temp);) {
1463 struct inode *inode = temp->d_inode;
1464 if (inode && ceph_snap(inode) == CEPH_SNAPDIR)
1465 len++; /* slash only */
1466 else if (stop_on_nosnap && inode &&
1467 ceph_snap(inode) == CEPH_NOSNAP)
1468 break;
1469 else
1470 len += 1 + temp->d_name.len;
1471 temp = temp->d_parent;
1472 if (temp == NULL) {
1b71fe2e 1473 rcu_read_unlock();
6c99f254 1474 pr_err("build_path corrupt dentry %p\n", dentry);
2f2dc053
SW
1475 return ERR_PTR(-EINVAL);
1476 }
1477 }
1b71fe2e 1478 rcu_read_unlock();
2f2dc053
SW
1479 if (len)
1480 len--; /* no leading '/' */
1481
1482 path = kmalloc(len+1, GFP_NOFS);
1483 if (path == NULL)
1484 return ERR_PTR(-ENOMEM);
1485 pos = len;
1486 path[pos] = 0; /* trailing null */
1b71fe2e 1487 rcu_read_lock();
2f2dc053 1488 for (temp = dentry; !IS_ROOT(temp) && pos != 0; ) {
1b71fe2e 1489 struct inode *inode;
2f2dc053 1490
1b71fe2e
AV
1491 spin_lock(&temp->d_lock);
1492 inode = temp->d_inode;
2f2dc053 1493 if (inode && ceph_snap(inode) == CEPH_SNAPDIR) {
104648ad 1494 dout("build_path path+%d: %p SNAPDIR\n",
2f2dc053
SW
1495 pos, temp);
1496 } else if (stop_on_nosnap && inode &&
1497 ceph_snap(inode) == CEPH_NOSNAP) {
9d5a09e6 1498 spin_unlock(&temp->d_lock);
2f2dc053
SW
1499 break;
1500 } else {
1501 pos -= temp->d_name.len;
1b71fe2e
AV
1502 if (pos < 0) {
1503 spin_unlock(&temp->d_lock);
2f2dc053 1504 break;
1b71fe2e 1505 }
2f2dc053
SW
1506 strncpy(path + pos, temp->d_name.name,
1507 temp->d_name.len);
2f2dc053 1508 }
1b71fe2e 1509 spin_unlock(&temp->d_lock);
2f2dc053
SW
1510 if (pos)
1511 path[--pos] = '/';
1512 temp = temp->d_parent;
1513 if (temp == NULL) {
1b71fe2e 1514 rcu_read_unlock();
104648ad 1515 pr_err("build_path corrupt dentry\n");
2f2dc053
SW
1516 kfree(path);
1517 return ERR_PTR(-EINVAL);
1518 }
1519 }
1b71fe2e
AV
1520 rcu_read_unlock();
1521 if (pos != 0 || read_seqretry(&rename_lock, seq)) {
104648ad 1522 pr_err("build_path did not end path lookup where "
2f2dc053
SW
1523 "expected, namelen is %d, pos is %d\n", len, pos);
1524 /* presumably this is only possible if racing with a
1525 rename of one of the parent directories (we can not
1526 lock the dentries above us to prevent this, but
1527 retrying should be harmless) */
1528 kfree(path);
1529 goto retry;
1530 }
1531
1532 *base = ceph_ino(temp->d_inode);
1533 *plen = len;
104648ad 1534 dout("build_path on %p %d built %llx '%.*s'\n",
b7ab39f6 1535 dentry, dentry->d_count, *base, len, path);
2f2dc053
SW
1536 return path;
1537}
1538
1539static int build_dentry_path(struct dentry *dentry,
1540 const char **ppath, int *ppathlen, u64 *pino,
1541 int *pfreepath)
1542{
1543 char *path;
1544
1545 if (ceph_snap(dentry->d_parent->d_inode) == CEPH_NOSNAP) {
1546 *pino = ceph_ino(dentry->d_parent->d_inode);
1547 *ppath = dentry->d_name.name;
1548 *ppathlen = dentry->d_name.len;
1549 return 0;
1550 }
1551 path = ceph_mdsc_build_path(dentry, ppathlen, pino, 1);
1552 if (IS_ERR(path))
1553 return PTR_ERR(path);
1554 *ppath = path;
1555 *pfreepath = 1;
1556 return 0;
1557}
1558
1559static int build_inode_path(struct inode *inode,
1560 const char **ppath, int *ppathlen, u64 *pino,
1561 int *pfreepath)
1562{
1563 struct dentry *dentry;
1564 char *path;
1565
1566 if (ceph_snap(inode) == CEPH_NOSNAP) {
1567 *pino = ceph_ino(inode);
1568 *ppathlen = 0;
1569 return 0;
1570 }
1571 dentry = d_find_alias(inode);
1572 path = ceph_mdsc_build_path(dentry, ppathlen, pino, 1);
1573 dput(dentry);
1574 if (IS_ERR(path))
1575 return PTR_ERR(path);
1576 *ppath = path;
1577 *pfreepath = 1;
1578 return 0;
1579}
1580
1581/*
1582 * request arguments may be specified via an inode *, a dentry *, or
1583 * an explicit ino+path.
1584 */
1585static int set_request_path_attr(struct inode *rinode, struct dentry *rdentry,
1586 const char *rpath, u64 rino,
1587 const char **ppath, int *pathlen,
1588 u64 *ino, int *freepath)
1589{
1590 int r = 0;
1591
1592 if (rinode) {
1593 r = build_inode_path(rinode, ppath, pathlen, ino, freepath);
1594 dout(" inode %p %llx.%llx\n", rinode, ceph_ino(rinode),
1595 ceph_snap(rinode));
1596 } else if (rdentry) {
1597 r = build_dentry_path(rdentry, ppath, pathlen, ino, freepath);
1598 dout(" dentry %p %llx/%.*s\n", rdentry, *ino, *pathlen,
1599 *ppath);
795858db 1600 } else if (rpath || rino) {
2f2dc053
SW
1601 *ino = rino;
1602 *ppath = rpath;
1603 *pathlen = strlen(rpath);
1604 dout(" path %.*s\n", *pathlen, rpath);
1605 }
1606
1607 return r;
1608}
1609
1610/*
1611 * called under mdsc->mutex
1612 */
1613static struct ceph_msg *create_request_message(struct ceph_mds_client *mdsc,
1614 struct ceph_mds_request *req,
1615 int mds)
1616{
1617 struct ceph_msg *msg;
1618 struct ceph_mds_request_head *head;
1619 const char *path1 = NULL;
1620 const char *path2 = NULL;
1621 u64 ino1 = 0, ino2 = 0;
1622 int pathlen1 = 0, pathlen2 = 0;
1623 int freepath1 = 0, freepath2 = 0;
1624 int len;
1625 u16 releases;
1626 void *p, *end;
1627 int ret;
1628
1629 ret = set_request_path_attr(req->r_inode, req->r_dentry,
1630 req->r_path1, req->r_ino1.ino,
1631 &path1, &pathlen1, &ino1, &freepath1);
1632 if (ret < 0) {
1633 msg = ERR_PTR(ret);
1634 goto out;
1635 }
1636
1637 ret = set_request_path_attr(NULL, req->r_old_dentry,
1638 req->r_path2, req->r_ino2.ino,
1639 &path2, &pathlen2, &ino2, &freepath2);
1640 if (ret < 0) {
1641 msg = ERR_PTR(ret);
1642 goto out_free1;
1643 }
1644
1645 len = sizeof(*head) +
ac8839d7 1646 pathlen1 + pathlen2 + 2*(1 + sizeof(u32) + sizeof(u64));
2f2dc053
SW
1647
1648 /* calculate (max) length for cap releases */
1649 len += sizeof(struct ceph_mds_request_release) *
1650 (!!req->r_inode_drop + !!req->r_dentry_drop +
1651 !!req->r_old_inode_drop + !!req->r_old_dentry_drop);
1652 if (req->r_dentry_drop)
1653 len += req->r_dentry->d_name.len;
1654 if (req->r_old_dentry_drop)
1655 len += req->r_old_dentry->d_name.len;
1656
b61c2763 1657 msg = ceph_msg_new(CEPH_MSG_CLIENT_REQUEST, len, GFP_NOFS, false);
a79832f2
SW
1658 if (!msg) {
1659 msg = ERR_PTR(-ENOMEM);
2f2dc053 1660 goto out_free2;
a79832f2 1661 }
2f2dc053 1662
6df058c0
SW
1663 msg->hdr.tid = cpu_to_le64(req->r_tid);
1664
2f2dc053
SW
1665 head = msg->front.iov_base;
1666 p = msg->front.iov_base + sizeof(*head);
1667 end = msg->front.iov_base + msg->front.iov_len;
1668
1669 head->mdsmap_epoch = cpu_to_le32(mdsc->mdsmap->m_epoch);
1670 head->op = cpu_to_le32(req->r_op);
cb4276cc
SW
1671 head->caller_uid = cpu_to_le32(req->r_uid);
1672 head->caller_gid = cpu_to_le32(req->r_gid);
2f2dc053
SW
1673 head->args = req->r_args;
1674
1675 ceph_encode_filepath(&p, end, ino1, path1);
1676 ceph_encode_filepath(&p, end, ino2, path2);
1677
e979cf50
SW
1678 /* make note of release offset, in case we need to replay */
1679 req->r_request_release_offset = p - msg->front.iov_base;
1680
2f2dc053
SW
1681 /* cap releases */
1682 releases = 0;
1683 if (req->r_inode_drop)
1684 releases += ceph_encode_inode_release(&p,
1685 req->r_inode ? req->r_inode : req->r_dentry->d_inode,
1686 mds, req->r_inode_drop, req->r_inode_unless, 0);
1687 if (req->r_dentry_drop)
1688 releases += ceph_encode_dentry_release(&p, req->r_dentry,
1689 mds, req->r_dentry_drop, req->r_dentry_unless);
1690 if (req->r_old_dentry_drop)
1691 releases += ceph_encode_dentry_release(&p, req->r_old_dentry,
1692 mds, req->r_old_dentry_drop, req->r_old_dentry_unless);
1693 if (req->r_old_inode_drop)
1694 releases += ceph_encode_inode_release(&p,
1695 req->r_old_dentry->d_inode,
1696 mds, req->r_old_inode_drop, req->r_old_inode_unless, 0);
1697 head->num_releases = cpu_to_le16(releases);
1698
1699 BUG_ON(p > end);
1700 msg->front.iov_len = p - msg->front.iov_base;
1701 msg->hdr.front_len = cpu_to_le32(msg->front.iov_len);
1702
1703 msg->pages = req->r_pages;
1704 msg->nr_pages = req->r_num_pages;
1705 msg->hdr.data_len = cpu_to_le32(req->r_data_len);
1706 msg->hdr.data_off = cpu_to_le16(0);
1707
1708out_free2:
1709 if (freepath2)
1710 kfree((char *)path2);
1711out_free1:
1712 if (freepath1)
1713 kfree((char *)path1);
1714out:
1715 return msg;
1716}
1717
1718/*
1719 * called under mdsc->mutex if error, under no mutex if
1720 * success.
1721 */
1722static void complete_request(struct ceph_mds_client *mdsc,
1723 struct ceph_mds_request *req)
1724{
1725 if (req->r_callback)
1726 req->r_callback(mdsc, req);
1727 else
03066f23 1728 complete_all(&req->r_completion);
2f2dc053
SW
1729}
1730
1731/*
1732 * called under mdsc->mutex
1733 */
1734static int __prepare_send_request(struct ceph_mds_client *mdsc,
1735 struct ceph_mds_request *req,
1736 int mds)
1737{
1738 struct ceph_mds_request_head *rhead;
1739 struct ceph_msg *msg;
1740 int flags = 0;
1741
2f2dc053 1742 req->r_attempts++;
e55b71f8
GF
1743 if (req->r_inode) {
1744 struct ceph_cap *cap =
1745 ceph_get_cap_for_mds(ceph_inode(req->r_inode), mds);
1746
1747 if (cap)
1748 req->r_sent_on_mseq = cap->mseq;
1749 else
1750 req->r_sent_on_mseq = -1;
1751 }
2f2dc053
SW
1752 dout("prepare_send_request %p tid %lld %s (attempt %d)\n", req,
1753 req->r_tid, ceph_mds_op_name(req->r_op), req->r_attempts);
1754
01a92f17
SW
1755 if (req->r_got_unsafe) {
1756 /*
1757 * Replay. Do not regenerate message (and rebuild
1758 * paths, etc.); just use the original message.
1759 * Rebuilding paths will break for renames because
1760 * d_move mangles the src name.
1761 */
1762 msg = req->r_request;
1763 rhead = msg->front.iov_base;
1764
1765 flags = le32_to_cpu(rhead->flags);
1766 flags |= CEPH_MDS_FLAG_REPLAY;
1767 rhead->flags = cpu_to_le32(flags);
1768
1769 if (req->r_target_inode)
1770 rhead->ino = cpu_to_le64(ceph_ino(req->r_target_inode));
1771
1772 rhead->num_retry = req->r_attempts - 1;
e979cf50
SW
1773
1774 /* remove cap/dentry releases from message */
1775 rhead->num_releases = 0;
1776 msg->hdr.front_len = cpu_to_le32(req->r_request_release_offset);
1777 msg->front.iov_len = req->r_request_release_offset;
01a92f17
SW
1778 return 0;
1779 }
1780
2f2dc053
SW
1781 if (req->r_request) {
1782 ceph_msg_put(req->r_request);
1783 req->r_request = NULL;
1784 }
1785 msg = create_request_message(mdsc, req, mds);
1786 if (IS_ERR(msg)) {
e1518c7c 1787 req->r_err = PTR_ERR(msg);
2f2dc053 1788 complete_request(mdsc, req);
a79832f2 1789 return PTR_ERR(msg);
2f2dc053
SW
1790 }
1791 req->r_request = msg;
1792
1793 rhead = msg->front.iov_base;
2f2dc053
SW
1794 rhead->oldest_client_tid = cpu_to_le64(__get_oldest_tid(mdsc));
1795 if (req->r_got_unsafe)
1796 flags |= CEPH_MDS_FLAG_REPLAY;
1797 if (req->r_locked_dir)
1798 flags |= CEPH_MDS_FLAG_WANT_DENTRY;
1799 rhead->flags = cpu_to_le32(flags);
1800 rhead->num_fwd = req->r_num_fwd;
1801 rhead->num_retry = req->r_attempts - 1;
01a92f17 1802 rhead->ino = 0;
2f2dc053
SW
1803
1804 dout(" r_locked_dir = %p\n", req->r_locked_dir);
2f2dc053
SW
1805 return 0;
1806}
1807
1808/*
1809 * send request, or put it on the appropriate wait list.
1810 */
1811static int __do_request(struct ceph_mds_client *mdsc,
1812 struct ceph_mds_request *req)
1813{
1814 struct ceph_mds_session *session = NULL;
1815 int mds = -1;
1816 int err = -EAGAIN;
1817
e1518c7c 1818 if (req->r_err || req->r_got_result)
2f2dc053
SW
1819 goto out;
1820
1821 if (req->r_timeout &&
1822 time_after_eq(jiffies, req->r_started + req->r_timeout)) {
1823 dout("do_request timed out\n");
1824 err = -EIO;
1825 goto finish;
1826 }
1827
dc69e2e9
SW
1828 put_request_session(req);
1829
2f2dc053
SW
1830 mds = __choose_mds(mdsc, req);
1831 if (mds < 0 ||
1832 ceph_mdsmap_get_state(mdsc->mdsmap, mds) < CEPH_MDS_STATE_ACTIVE) {
1833 dout("do_request no mds or not active, waiting for map\n");
1834 list_add(&req->r_wait, &mdsc->waiting_for_map);
1835 goto out;
1836 }
1837
1838 /* get, open session */
1839 session = __ceph_lookup_mds_session(mdsc, mds);
9c423956 1840 if (!session) {
2f2dc053 1841 session = register_session(mdsc, mds);
9c423956
SW
1842 if (IS_ERR(session)) {
1843 err = PTR_ERR(session);
1844 goto finish;
1845 }
1846 }
dc69e2e9
SW
1847 req->r_session = get_session(session);
1848
2f2dc053
SW
1849 dout("do_request mds%d session %p state %s\n", mds, session,
1850 session_state_name(session->s_state));
1851 if (session->s_state != CEPH_MDS_SESSION_OPEN &&
1852 session->s_state != CEPH_MDS_SESSION_HUNG) {
1853 if (session->s_state == CEPH_MDS_SESSION_NEW ||
1854 session->s_state == CEPH_MDS_SESSION_CLOSING)
1855 __open_session(mdsc, session);
1856 list_add(&req->r_wait, &session->s_waiting);
1857 goto out_session;
1858 }
1859
1860 /* send request */
2f2dc053
SW
1861 req->r_resend_mds = -1; /* forget any previous mds hint */
1862
1863 if (req->r_request_started == 0) /* note request start time */
1864 req->r_request_started = jiffies;
1865
1866 err = __prepare_send_request(mdsc, req, mds);
1867 if (!err) {
1868 ceph_msg_get(req->r_request);
1869 ceph_con_send(&session->s_con, req->r_request);
1870 }
1871
1872out_session:
1873 ceph_put_mds_session(session);
1874out:
1875 return err;
1876
1877finish:
e1518c7c 1878 req->r_err = err;
2f2dc053
SW
1879 complete_request(mdsc, req);
1880 goto out;
1881}
1882
1883/*
1884 * called under mdsc->mutex
1885 */
1886static void __wake_requests(struct ceph_mds_client *mdsc,
1887 struct list_head *head)
1888{
1889 struct ceph_mds_request *req, *nreq;
1890
1891 list_for_each_entry_safe(req, nreq, head, r_wait) {
1892 list_del_init(&req->r_wait);
1893 __do_request(mdsc, req);
1894 }
1895}
1896
1897/*
1898 * Wake up threads with requests pending for @mds, so that they can
29790f26 1899 * resubmit their requests to a possibly different mds.
2f2dc053 1900 */
29790f26 1901static void kick_requests(struct ceph_mds_client *mdsc, int mds)
2f2dc053 1902{
44ca18f2
SW
1903 struct ceph_mds_request *req;
1904 struct rb_node *p;
2f2dc053
SW
1905
1906 dout("kick_requests mds%d\n", mds);
44ca18f2
SW
1907 for (p = rb_first(&mdsc->request_tree); p; p = rb_next(p)) {
1908 req = rb_entry(p, struct ceph_mds_request, r_node);
1909 if (req->r_got_unsafe)
1910 continue;
1911 if (req->r_session &&
1912 req->r_session->s_mds == mds) {
1913 dout(" kicking tid %llu\n", req->r_tid);
44ca18f2 1914 __do_request(mdsc, req);
2f2dc053
SW
1915 }
1916 }
1917}
1918
1919void ceph_mdsc_submit_request(struct ceph_mds_client *mdsc,
1920 struct ceph_mds_request *req)
1921{
1922 dout("submit_request on %p\n", req);
1923 mutex_lock(&mdsc->mutex);
1924 __register_request(mdsc, req, NULL);
1925 __do_request(mdsc, req);
1926 mutex_unlock(&mdsc->mutex);
1927}
1928
1929/*
1930 * Synchrously perform an mds request. Take care of all of the
1931 * session setup, forwarding, retry details.
1932 */
1933int ceph_mdsc_do_request(struct ceph_mds_client *mdsc,
1934 struct inode *dir,
1935 struct ceph_mds_request *req)
1936{
1937 int err;
1938
1939 dout("do_request on %p\n", req);
1940
1941 /* take CAP_PIN refs for r_inode, r_locked_dir, r_old_dentry */
1942 if (req->r_inode)
1943 ceph_get_cap_refs(ceph_inode(req->r_inode), CEPH_CAP_PIN);
1944 if (req->r_locked_dir)
1945 ceph_get_cap_refs(ceph_inode(req->r_locked_dir), CEPH_CAP_PIN);
1946 if (req->r_old_dentry)
41b02e1f
SW
1947 ceph_get_cap_refs(ceph_inode(req->r_old_dentry_dir),
1948 CEPH_CAP_PIN);
2f2dc053
SW
1949
1950 /* issue */
1951 mutex_lock(&mdsc->mutex);
1952 __register_request(mdsc, req, dir);
1953 __do_request(mdsc, req);
1954
e1518c7c
SW
1955 if (req->r_err) {
1956 err = req->r_err;
1957 __unregister_request(mdsc, req);
1958 dout("do_request early error %d\n", err);
1959 goto out;
2f2dc053
SW
1960 }
1961
e1518c7c
SW
1962 /* wait */
1963 mutex_unlock(&mdsc->mutex);
1964 dout("do_request waiting\n");
1965 if (req->r_timeout) {
aa91647c 1966 err = (long)wait_for_completion_killable_timeout(
e1518c7c
SW
1967 &req->r_completion, req->r_timeout);
1968 if (err == 0)
1969 err = -EIO;
1970 } else {
aa91647c 1971 err = wait_for_completion_killable(&req->r_completion);
e1518c7c
SW
1972 }
1973 dout("do_request waited, got %d\n", err);
1974 mutex_lock(&mdsc->mutex);
5b1daecd 1975
e1518c7c
SW
1976 /* only abort if we didn't race with a real reply */
1977 if (req->r_got_result) {
1978 err = le32_to_cpu(req->r_reply_info.head->result);
1979 } else if (err < 0) {
1980 dout("aborted request %lld with %d\n", req->r_tid, err);
b4556396
SW
1981
1982 /*
1983 * ensure we aren't running concurrently with
1984 * ceph_fill_trace or ceph_readdir_prepopulate, which
1985 * rely on locks (dir mutex) held by our caller.
1986 */
1987 mutex_lock(&req->r_fill_mutex);
e1518c7c
SW
1988 req->r_err = err;
1989 req->r_aborted = true;
b4556396 1990 mutex_unlock(&req->r_fill_mutex);
5b1daecd 1991
e1518c7c 1992 if (req->r_locked_dir &&
167c9e35
SW
1993 (req->r_op & CEPH_MDS_OP_WRITE))
1994 ceph_invalidate_dir_request(req);
2f2dc053 1995 } else {
e1518c7c 1996 err = req->r_err;
2f2dc053 1997 }
2f2dc053 1998
e1518c7c
SW
1999out:
2000 mutex_unlock(&mdsc->mutex);
2f2dc053
SW
2001 dout("do_request %p done, result %d\n", req, err);
2002 return err;
2003}
2004
167c9e35 2005/*
c6ffe100 2006 * Invalidate dir D_COMPLETE, dentry lease state on an aborted MDS
167c9e35
SW
2007 * namespace request.
2008 */
2009void ceph_invalidate_dir_request(struct ceph_mds_request *req)
2010{
2011 struct inode *inode = req->r_locked_dir;
2012 struct ceph_inode_info *ci = ceph_inode(inode);
2013
c6ffe100 2014 dout("invalidate_dir_request %p (D_COMPLETE, lease(s))\n", inode);
be655596 2015 spin_lock(&ci->i_ceph_lock);
c6ffe100 2016 ceph_dir_clear_complete(inode);
167c9e35 2017 ci->i_release_count++;
be655596 2018 spin_unlock(&ci->i_ceph_lock);
167c9e35
SW
2019
2020 if (req->r_dentry)
2021 ceph_invalidate_dentry_lease(req->r_dentry);
2022 if (req->r_old_dentry)
2023 ceph_invalidate_dentry_lease(req->r_old_dentry);
2024}
2025
2f2dc053
SW
2026/*
2027 * Handle mds reply.
2028 *
2029 * We take the session mutex and parse and process the reply immediately.
2030 * This preserves the logical ordering of replies, capabilities, etc., sent
2031 * by the MDS as they are applied to our local cache.
2032 */
2033static void handle_reply(struct ceph_mds_session *session, struct ceph_msg *msg)
2034{
2035 struct ceph_mds_client *mdsc = session->s_mdsc;
2036 struct ceph_mds_request *req;
2037 struct ceph_mds_reply_head *head = msg->front.iov_base;
2038 struct ceph_mds_reply_info_parsed *rinfo; /* parsed reply info */
2039 u64 tid;
2040 int err, result;
2600d2dd 2041 int mds = session->s_mds;
2f2dc053 2042
2f2dc053
SW
2043 if (msg->front.iov_len < sizeof(*head)) {
2044 pr_err("mdsc_handle_reply got corrupt (short) reply\n");
9ec7cab1 2045 ceph_msg_dump(msg);
2f2dc053
SW
2046 return;
2047 }
2048
2049 /* get request, session */
6df058c0 2050 tid = le64_to_cpu(msg->hdr.tid);
2f2dc053
SW
2051 mutex_lock(&mdsc->mutex);
2052 req = __lookup_request(mdsc, tid);
2053 if (!req) {
2054 dout("handle_reply on unknown tid %llu\n", tid);
2055 mutex_unlock(&mdsc->mutex);
2056 return;
2057 }
2058 dout("handle_reply %p\n", req);
2f2dc053
SW
2059
2060 /* correct session? */
d96d6049 2061 if (req->r_session != session) {
2f2dc053
SW
2062 pr_err("mdsc_handle_reply got %llu on session mds%d"
2063 " not mds%d\n", tid, session->s_mds,
2064 req->r_session ? req->r_session->s_mds : -1);
2065 mutex_unlock(&mdsc->mutex);
2066 goto out;
2067 }
2068
2069 /* dup? */
2070 if ((req->r_got_unsafe && !head->safe) ||
2071 (req->r_got_safe && head->safe)) {
2072 pr_warning("got a dup %s reply on %llu from mds%d\n",
2073 head->safe ? "safe" : "unsafe", tid, mds);
2074 mutex_unlock(&mdsc->mutex);
2075 goto out;
2076 }
85792d0d
SW
2077 if (req->r_got_safe && !head->safe) {
2078 pr_warning("got unsafe after safe on %llu from mds%d\n",
2079 tid, mds);
2080 mutex_unlock(&mdsc->mutex);
2081 goto out;
2082 }
2f2dc053
SW
2083
2084 result = le32_to_cpu(head->result);
2085
2086 /*
e55b71f8
GF
2087 * Handle an ESTALE
2088 * if we're not talking to the authority, send to them
2089 * if the authority has changed while we weren't looking,
2090 * send to new authority
2091 * Otherwise we just have to return an ESTALE
2f2dc053
SW
2092 */
2093 if (result == -ESTALE) {
e55b71f8 2094 dout("got ESTALE on request %llu", req->r_tid);
213c99ee
SW
2095 if (!req->r_inode) {
2096 /* do nothing; not an authority problem */
2097 } else if (req->r_direct_mode != USE_AUTH_MDS) {
e55b71f8
GF
2098 dout("not using auth, setting for that now");
2099 req->r_direct_mode = USE_AUTH_MDS;
2f2dc053
SW
2100 __do_request(mdsc, req);
2101 mutex_unlock(&mdsc->mutex);
2102 goto out;
e55b71f8
GF
2103 } else {
2104 struct ceph_inode_info *ci = ceph_inode(req->r_inode);
4af25fdd
SW
2105 struct ceph_cap *cap = NULL;
2106
2107 if (req->r_session)
2108 cap = ceph_get_cap_for_mds(ci,
2109 req->r_session->s_mds);
e55b71f8
GF
2110
2111 dout("already using auth");
2112 if ((!cap || cap != ci->i_auth_cap) ||
2113 (cap->mseq != req->r_sent_on_mseq)) {
2114 dout("but cap changed, so resending");
2115 __do_request(mdsc, req);
2116 mutex_unlock(&mdsc->mutex);
2117 goto out;
2118 }
2f2dc053 2119 }
e55b71f8 2120 dout("have to return ESTALE on request %llu", req->r_tid);
2f2dc053
SW
2121 }
2122
e55b71f8 2123
2f2dc053
SW
2124 if (head->safe) {
2125 req->r_got_safe = true;
2126 __unregister_request(mdsc, req);
03066f23 2127 complete_all(&req->r_safe_completion);
2f2dc053
SW
2128
2129 if (req->r_got_unsafe) {
2130 /*
2131 * We already handled the unsafe response, now do the
2132 * cleanup. No need to examine the response; the MDS
2133 * doesn't include any result info in the safe
2134 * response. And even if it did, there is nothing
2135 * useful we could do with a revised return value.
2136 */
2137 dout("got safe reply %llu, mds%d\n", tid, mds);
2138 list_del_init(&req->r_unsafe_item);
2139
2140 /* last unsafe request during umount? */
44ca18f2 2141 if (mdsc->stopping && !__get_oldest_req(mdsc))
03066f23 2142 complete_all(&mdsc->safe_umount_waiters);
2f2dc053
SW
2143 mutex_unlock(&mdsc->mutex);
2144 goto out;
2145 }
e1518c7c 2146 } else {
2f2dc053
SW
2147 req->r_got_unsafe = true;
2148 list_add_tail(&req->r_unsafe_item, &req->r_session->s_unsafe);
2149 }
2150
2151 dout("handle_reply tid %lld result %d\n", tid, result);
2152 rinfo = &req->r_reply_info;
14303d20 2153 err = parse_reply_info(msg, rinfo, session->s_con.peer_features);
2f2dc053
SW
2154 mutex_unlock(&mdsc->mutex);
2155
2156 mutex_lock(&session->s_mutex);
2157 if (err < 0) {
25933abd 2158 pr_err("mdsc_handle_reply got corrupt reply mds%d(tid:%lld)\n", mds, tid);
9ec7cab1 2159 ceph_msg_dump(msg);
2f2dc053
SW
2160 goto out_err;
2161 }
2162
2163 /* snap trace */
2164 if (rinfo->snapblob_len) {
2165 down_write(&mdsc->snap_rwsem);
2166 ceph_update_snap_trace(mdsc, rinfo->snapblob,
2167 rinfo->snapblob + rinfo->snapblob_len,
2168 le32_to_cpu(head->op) == CEPH_MDS_OP_RMSNAP);
2169 downgrade_write(&mdsc->snap_rwsem);
2170 } else {
2171 down_read(&mdsc->snap_rwsem);
2172 }
2173
2174 /* insert trace into our cache */
b4556396 2175 mutex_lock(&req->r_fill_mutex);
3d14c5d2 2176 err = ceph_fill_trace(mdsc->fsc->sb, req, req->r_session);
2f2dc053 2177 if (err == 0) {
25933abd
HS
2178 if (result == 0 && req->r_op != CEPH_MDS_OP_GETFILELOCK &&
2179 rinfo->dir_nr)
2f2dc053 2180 ceph_readdir_prepopulate(req, req->r_session);
37151668 2181 ceph_unreserve_caps(mdsc, &req->r_caps_reservation);
2f2dc053 2182 }
b4556396 2183 mutex_unlock(&req->r_fill_mutex);
2f2dc053
SW
2184
2185 up_read(&mdsc->snap_rwsem);
2186out_err:
e1518c7c
SW
2187 mutex_lock(&mdsc->mutex);
2188 if (!req->r_aborted) {
2189 if (err) {
2190 req->r_err = err;
2191 } else {
2192 req->r_reply = msg;
2193 ceph_msg_get(msg);
2194 req->r_got_result = true;
2195 }
2f2dc053 2196 } else {
e1518c7c 2197 dout("reply arrived after request %lld was aborted\n", tid);
2f2dc053 2198 }
e1518c7c 2199 mutex_unlock(&mdsc->mutex);
2f2dc053 2200
ee6b272b 2201 ceph_add_cap_releases(mdsc, req->r_session);
2f2dc053
SW
2202 mutex_unlock(&session->s_mutex);
2203
2204 /* kick calling process */
2205 complete_request(mdsc, req);
2206out:
2207 ceph_mdsc_put_request(req);
2208 return;
2209}
2210
2211
2212
2213/*
2214 * handle mds notification that our request has been forwarded.
2215 */
2600d2dd
SW
2216static void handle_forward(struct ceph_mds_client *mdsc,
2217 struct ceph_mds_session *session,
2218 struct ceph_msg *msg)
2f2dc053
SW
2219{
2220 struct ceph_mds_request *req;
a1ea787c 2221 u64 tid = le64_to_cpu(msg->hdr.tid);
2f2dc053
SW
2222 u32 next_mds;
2223 u32 fwd_seq;
2f2dc053
SW
2224 int err = -EINVAL;
2225 void *p = msg->front.iov_base;
2226 void *end = p + msg->front.iov_len;
2f2dc053 2227
a1ea787c 2228 ceph_decode_need(&p, end, 2*sizeof(u32), bad);
c89136ea
SW
2229 next_mds = ceph_decode_32(&p);
2230 fwd_seq = ceph_decode_32(&p);
2f2dc053
SW
2231
2232 mutex_lock(&mdsc->mutex);
2233 req = __lookup_request(mdsc, tid);
2234 if (!req) {
2a8e5e36 2235 dout("forward tid %llu to mds%d - req dne\n", tid, next_mds);
2f2dc053
SW
2236 goto out; /* dup reply? */
2237 }
2238
2a8e5e36
SW
2239 if (req->r_aborted) {
2240 dout("forward tid %llu aborted, unregistering\n", tid);
2241 __unregister_request(mdsc, req);
2242 } else if (fwd_seq <= req->r_num_fwd) {
2243 dout("forward tid %llu to mds%d - old seq %d <= %d\n",
2f2dc053
SW
2244 tid, next_mds, req->r_num_fwd, fwd_seq);
2245 } else {
2246 /* resend. forward race not possible; mds would drop */
2a8e5e36
SW
2247 dout("forward tid %llu to mds%d (we resend)\n", tid, next_mds);
2248 BUG_ON(req->r_err);
2249 BUG_ON(req->r_got_result);
2f2dc053
SW
2250 req->r_num_fwd = fwd_seq;
2251 req->r_resend_mds = next_mds;
2252 put_request_session(req);
2253 __do_request(mdsc, req);
2254 }
2255 ceph_mdsc_put_request(req);
2256out:
2257 mutex_unlock(&mdsc->mutex);
2258 return;
2259
2260bad:
2261 pr_err("mdsc_handle_forward decode error err=%d\n", err);
2262}
2263
2264/*
2265 * handle a mds session control message
2266 */
2267static void handle_session(struct ceph_mds_session *session,
2268 struct ceph_msg *msg)
2269{
2270 struct ceph_mds_client *mdsc = session->s_mdsc;
2271 u32 op;
2272 u64 seq;
2600d2dd 2273 int mds = session->s_mds;
2f2dc053
SW
2274 struct ceph_mds_session_head *h = msg->front.iov_base;
2275 int wake = 0;
2276
2f2dc053
SW
2277 /* decode */
2278 if (msg->front.iov_len != sizeof(*h))
2279 goto bad;
2280 op = le32_to_cpu(h->op);
2281 seq = le64_to_cpu(h->seq);
2282
2283 mutex_lock(&mdsc->mutex);
2600d2dd
SW
2284 if (op == CEPH_SESSION_CLOSE)
2285 __unregister_session(mdsc, session);
2f2dc053
SW
2286 /* FIXME: this ttl calculation is generous */
2287 session->s_ttl = jiffies + HZ*mdsc->mdsmap->m_session_autoclose;
2288 mutex_unlock(&mdsc->mutex);
2289
2290 mutex_lock(&session->s_mutex);
2291
2292 dout("handle_session mds%d %s %p state %s seq %llu\n",
2293 mds, ceph_session_op_name(op), session,
2294 session_state_name(session->s_state), seq);
2295
2296 if (session->s_state == CEPH_MDS_SESSION_HUNG) {
2297 session->s_state = CEPH_MDS_SESSION_OPEN;
2298 pr_info("mds%d came back\n", session->s_mds);
2299 }
2300
2301 switch (op) {
2302 case CEPH_SESSION_OPEN:
29790f26
SW
2303 if (session->s_state == CEPH_MDS_SESSION_RECONNECTING)
2304 pr_info("mds%d reconnect success\n", session->s_mds);
2f2dc053
SW
2305 session->s_state = CEPH_MDS_SESSION_OPEN;
2306 renewed_caps(mdsc, session, 0);
2307 wake = 1;
2308 if (mdsc->stopping)
2309 __close_session(mdsc, session);
2310 break;
2311
2312 case CEPH_SESSION_RENEWCAPS:
2313 if (session->s_renew_seq == seq)
2314 renewed_caps(mdsc, session, 1);
2315 break;
2316
2317 case CEPH_SESSION_CLOSE:
29790f26
SW
2318 if (session->s_state == CEPH_MDS_SESSION_RECONNECTING)
2319 pr_info("mds%d reconnect denied\n", session->s_mds);
2f2dc053
SW
2320 remove_session_caps(session);
2321 wake = 1; /* for good measure */
f3c60c59 2322 wake_up_all(&mdsc->session_close_wq);
29790f26 2323 kick_requests(mdsc, mds);
2f2dc053
SW
2324 break;
2325
2326 case CEPH_SESSION_STALE:
2327 pr_info("mds%d caps went stale, renewing\n",
2328 session->s_mds);
d8fb02ab 2329 spin_lock(&session->s_gen_ttl_lock);
2f2dc053 2330 session->s_cap_gen++;
1ce208a6 2331 session->s_cap_ttl = jiffies - 1;
d8fb02ab 2332 spin_unlock(&session->s_gen_ttl_lock);
2f2dc053
SW
2333 send_renew_caps(mdsc, session);
2334 break;
2335
2336 case CEPH_SESSION_RECALL_STATE:
2337 trim_caps(mdsc, session, le32_to_cpu(h->max_caps));
2338 break;
2339
2340 default:
2341 pr_err("mdsc_handle_session bad op %d mds%d\n", op, mds);
2342 WARN_ON(1);
2343 }
2344
2345 mutex_unlock(&session->s_mutex);
2346 if (wake) {
2347 mutex_lock(&mdsc->mutex);
2348 __wake_requests(mdsc, &session->s_waiting);
2349 mutex_unlock(&mdsc->mutex);
2350 }
2351 return;
2352
2353bad:
2354 pr_err("mdsc_handle_session corrupt message mds%d len %d\n", mds,
2355 (int)msg->front.iov_len);
9ec7cab1 2356 ceph_msg_dump(msg);
2f2dc053
SW
2357 return;
2358}
2359
2360
2361/*
2362 * called under session->mutex.
2363 */
2364static void replay_unsafe_requests(struct ceph_mds_client *mdsc,
2365 struct ceph_mds_session *session)
2366{
2367 struct ceph_mds_request *req, *nreq;
2368 int err;
2369
2370 dout("replay_unsafe_requests mds%d\n", session->s_mds);
2371
2372 mutex_lock(&mdsc->mutex);
2373 list_for_each_entry_safe(req, nreq, &session->s_unsafe, r_unsafe_item) {
2374 err = __prepare_send_request(mdsc, req, session->s_mds);
2375 if (!err) {
2376 ceph_msg_get(req->r_request);
2377 ceph_con_send(&session->s_con, req->r_request);
2378 }
2379 }
2380 mutex_unlock(&mdsc->mutex);
2381}
2382
2383/*
2384 * Encode information about a cap for a reconnect with the MDS.
2385 */
2f2dc053
SW
2386static int encode_caps_cb(struct inode *inode, struct ceph_cap *cap,
2387 void *arg)
2388{
20cb34ae
SW
2389 union {
2390 struct ceph_mds_cap_reconnect v2;
2391 struct ceph_mds_cap_reconnect_v1 v1;
2392 } rec;
2393 size_t reclen;
2f2dc053 2394 struct ceph_inode_info *ci;
20cb34ae
SW
2395 struct ceph_reconnect_state *recon_state = arg;
2396 struct ceph_pagelist *pagelist = recon_state->pagelist;
2f2dc053
SW
2397 char *path;
2398 int pathlen, err;
2399 u64 pathbase;
2400 struct dentry *dentry;
2401
2402 ci = cap->ci;
2403
2404 dout(" adding %p ino %llx.%llx cap %p %lld %s\n",
2405 inode, ceph_vinop(inode), cap, cap->cap_id,
2406 ceph_cap_string(cap->issued));
93cea5be
SW
2407 err = ceph_pagelist_encode_64(pagelist, ceph_ino(inode));
2408 if (err)
2409 return err;
2f2dc053
SW
2410
2411 dentry = d_find_alias(inode);
2412 if (dentry) {
2413 path = ceph_mdsc_build_path(dentry, &pathlen, &pathbase, 0);
2414 if (IS_ERR(path)) {
2415 err = PTR_ERR(path);
e072f8aa 2416 goto out_dput;
2f2dc053
SW
2417 }
2418 } else {
2419 path = NULL;
2420 pathlen = 0;
2421 }
93cea5be
SW
2422 err = ceph_pagelist_encode_string(pagelist, path, pathlen);
2423 if (err)
e072f8aa 2424 goto out_free;
2f2dc053 2425
be655596 2426 spin_lock(&ci->i_ceph_lock);
2f2dc053
SW
2427 cap->seq = 0; /* reset cap seq */
2428 cap->issue_seq = 0; /* and issue_seq */
20cb34ae
SW
2429
2430 if (recon_state->flock) {
2431 rec.v2.cap_id = cpu_to_le64(cap->cap_id);
2432 rec.v2.wanted = cpu_to_le32(__ceph_caps_wanted(ci));
2433 rec.v2.issued = cpu_to_le32(cap->issued);
2434 rec.v2.snaprealm = cpu_to_le64(ci->i_snap_realm->ino);
2435 rec.v2.pathbase = cpu_to_le64(pathbase);
2436 rec.v2.flock_len = 0;
2437 reclen = sizeof(rec.v2);
2438 } else {
2439 rec.v1.cap_id = cpu_to_le64(cap->cap_id);
2440 rec.v1.wanted = cpu_to_le32(__ceph_caps_wanted(ci));
2441 rec.v1.issued = cpu_to_le32(cap->issued);
2442 rec.v1.size = cpu_to_le64(inode->i_size);
2443 ceph_encode_timespec(&rec.v1.mtime, &inode->i_mtime);
2444 ceph_encode_timespec(&rec.v1.atime, &inode->i_atime);
2445 rec.v1.snaprealm = cpu_to_le64(ci->i_snap_realm->ino);
2446 rec.v1.pathbase = cpu_to_le64(pathbase);
2447 reclen = sizeof(rec.v1);
2448 }
be655596 2449 spin_unlock(&ci->i_ceph_lock);
2f2dc053 2450
40819f6f
GF
2451 if (recon_state->flock) {
2452 int num_fcntl_locks, num_flock_locks;
fca4451a
GF
2453 struct ceph_pagelist_cursor trunc_point;
2454
2455 ceph_pagelist_set_cursor(pagelist, &trunc_point);
2456 do {
496e5955 2457 lock_flocks();
fca4451a
GF
2458 ceph_count_locks(inode, &num_fcntl_locks,
2459 &num_flock_locks);
2460 rec.v2.flock_len = (2*sizeof(u32) +
2461 (num_fcntl_locks+num_flock_locks) *
2462 sizeof(struct ceph_filelock));
496e5955 2463 unlock_flocks();
fca4451a
GF
2464
2465 /* pre-alloc pagelist */
2466 ceph_pagelist_truncate(pagelist, &trunc_point);
2467 err = ceph_pagelist_append(pagelist, &rec, reclen);
2468 if (!err)
2469 err = ceph_pagelist_reserve(pagelist,
2470 rec.v2.flock_len);
2471
2472 /* encode locks */
2473 if (!err) {
496e5955 2474 lock_flocks();
fca4451a
GF
2475 err = ceph_encode_locks(inode,
2476 pagelist,
2477 num_fcntl_locks,
2478 num_flock_locks);
496e5955 2479 unlock_flocks();
fca4451a
GF
2480 }
2481 } while (err == -ENOSPC);
3612abbd
SW
2482 } else {
2483 err = ceph_pagelist_append(pagelist, &rec, reclen);
40819f6f 2484 }
93cea5be 2485
e072f8aa 2486out_free:
2f2dc053 2487 kfree(path);
e072f8aa 2488out_dput:
2f2dc053 2489 dput(dentry);
93cea5be 2490 return err;
2f2dc053
SW
2491}
2492
2493
2494/*
2495 * If an MDS fails and recovers, clients need to reconnect in order to
2496 * reestablish shared state. This includes all caps issued through
2497 * this session _and_ the snap_realm hierarchy. Because it's not
2498 * clear which snap realms the mds cares about, we send everything we
2499 * know about.. that ensures we'll then get any new info the
2500 * recovering MDS might have.
2501 *
2502 * This is a relatively heavyweight operation, but it's rare.
2503 *
2504 * called with mdsc->mutex held.
2505 */
34b6c855
SW
2506static void send_mds_reconnect(struct ceph_mds_client *mdsc,
2507 struct ceph_mds_session *session)
2f2dc053 2508{
2f2dc053 2509 struct ceph_msg *reply;
a105f00c 2510 struct rb_node *p;
34b6c855 2511 int mds = session->s_mds;
9abf82b8 2512 int err = -ENOMEM;
93cea5be 2513 struct ceph_pagelist *pagelist;
20cb34ae 2514 struct ceph_reconnect_state recon_state;
2f2dc053 2515
34b6c855 2516 pr_info("mds%d reconnect start\n", mds);
2f2dc053 2517
93cea5be
SW
2518 pagelist = kmalloc(sizeof(*pagelist), GFP_NOFS);
2519 if (!pagelist)
2520 goto fail_nopagelist;
2521 ceph_pagelist_init(pagelist);
2522
b61c2763 2523 reply = ceph_msg_new(CEPH_MSG_CLIENT_RECONNECT, 0, GFP_NOFS, false);
a79832f2 2524 if (!reply)
93cea5be 2525 goto fail_nomsg;
93cea5be 2526
34b6c855
SW
2527 mutex_lock(&session->s_mutex);
2528 session->s_state = CEPH_MDS_SESSION_RECONNECTING;
2529 session->s_seq = 0;
2f2dc053 2530
34b6c855
SW
2531 ceph_con_open(&session->s_con,
2532 ceph_mdsmap_get_addr(mdsc->mdsmap, mds));
2f2dc053 2533
34b6c855
SW
2534 /* replay unsafe requests */
2535 replay_unsafe_requests(mdsc, session);
2f2dc053
SW
2536
2537 down_read(&mdsc->snap_rwsem);
2538
2f2dc053
SW
2539 dout("session %p state %s\n", session,
2540 session_state_name(session->s_state));
2541
e01a5946
SW
2542 /* drop old cap expires; we're about to reestablish that state */
2543 discard_cap_releases(mdsc, session);
2544
2f2dc053 2545 /* traverse this session's caps */
93cea5be
SW
2546 err = ceph_pagelist_encode_32(pagelist, session->s_nr_caps);
2547 if (err)
2548 goto fail;
20cb34ae
SW
2549
2550 recon_state.pagelist = pagelist;
2551 recon_state.flock = session->s_con.peer_features & CEPH_FEATURE_FLOCK;
2552 err = iterate_session_caps(session, encode_caps_cb, &recon_state);
2f2dc053 2553 if (err < 0)
9abf82b8 2554 goto fail;
2f2dc053
SW
2555
2556 /*
2557 * snaprealms. we provide mds with the ino, seq (version), and
2558 * parent for all of our realms. If the mds has any newer info,
2559 * it will tell us.
2560 */
a105f00c
SW
2561 for (p = rb_first(&mdsc->snap_realms); p; p = rb_next(p)) {
2562 struct ceph_snap_realm *realm =
2563 rb_entry(p, struct ceph_snap_realm, node);
93cea5be 2564 struct ceph_mds_snaprealm_reconnect sr_rec;
2f2dc053
SW
2565
2566 dout(" adding snap realm %llx seq %lld parent %llx\n",
2567 realm->ino, realm->seq, realm->parent_ino);
93cea5be
SW
2568 sr_rec.ino = cpu_to_le64(realm->ino);
2569 sr_rec.seq = cpu_to_le64(realm->seq);
2570 sr_rec.parent = cpu_to_le64(realm->parent_ino);
2571 err = ceph_pagelist_append(pagelist, &sr_rec, sizeof(sr_rec));
2572 if (err)
2573 goto fail;
2f2dc053 2574 }
2f2dc053 2575
93cea5be 2576 reply->pagelist = pagelist;
20cb34ae
SW
2577 if (recon_state.flock)
2578 reply->hdr.version = cpu_to_le16(2);
93cea5be
SW
2579 reply->hdr.data_len = cpu_to_le32(pagelist->length);
2580 reply->nr_pages = calc_pages_for(0, pagelist->length);
2f2dc053
SW
2581 ceph_con_send(&session->s_con, reply);
2582
9abf82b8
SW
2583 mutex_unlock(&session->s_mutex);
2584
2585 mutex_lock(&mdsc->mutex);
2586 __wake_requests(mdsc, &session->s_waiting);
2587 mutex_unlock(&mdsc->mutex);
2588
2f2dc053 2589 up_read(&mdsc->snap_rwsem);
2f2dc053
SW
2590 return;
2591
93cea5be 2592fail:
2f2dc053 2593 ceph_msg_put(reply);
9abf82b8
SW
2594 up_read(&mdsc->snap_rwsem);
2595 mutex_unlock(&session->s_mutex);
93cea5be
SW
2596fail_nomsg:
2597 ceph_pagelist_release(pagelist);
2598 kfree(pagelist);
2599fail_nopagelist:
9abf82b8 2600 pr_err("error %d preparing reconnect for mds%d\n", err, mds);
9abf82b8 2601 return;
2f2dc053
SW
2602}
2603
2604
2605/*
2606 * compare old and new mdsmaps, kicking requests
2607 * and closing out old connections as necessary
2608 *
2609 * called under mdsc->mutex.
2610 */
2611static void check_new_map(struct ceph_mds_client *mdsc,
2612 struct ceph_mdsmap *newmap,
2613 struct ceph_mdsmap *oldmap)
2614{
2615 int i;
2616 int oldstate, newstate;
2617 struct ceph_mds_session *s;
2618
2619 dout("check_new_map new %u old %u\n",
2620 newmap->m_epoch, oldmap->m_epoch);
2621
2622 for (i = 0; i < oldmap->m_max_mds && i < mdsc->max_sessions; i++) {
2623 if (mdsc->sessions[i] == NULL)
2624 continue;
2625 s = mdsc->sessions[i];
2626 oldstate = ceph_mdsmap_get_state(oldmap, i);
2627 newstate = ceph_mdsmap_get_state(newmap, i);
2628
0deb01c9 2629 dout("check_new_map mds%d state %s%s -> %s%s (session %s)\n",
2f2dc053 2630 i, ceph_mds_state_name(oldstate),
0deb01c9 2631 ceph_mdsmap_is_laggy(oldmap, i) ? " (laggy)" : "",
2f2dc053 2632 ceph_mds_state_name(newstate),
0deb01c9 2633 ceph_mdsmap_is_laggy(newmap, i) ? " (laggy)" : "",
2f2dc053
SW
2634 session_state_name(s->s_state));
2635
2636 if (memcmp(ceph_mdsmap_get_addr(oldmap, i),
2637 ceph_mdsmap_get_addr(newmap, i),
2638 sizeof(struct ceph_entity_addr))) {
2639 if (s->s_state == CEPH_MDS_SESSION_OPENING) {
2640 /* the session never opened, just close it
2641 * out now */
2642 __wake_requests(mdsc, &s->s_waiting);
2600d2dd 2643 __unregister_session(mdsc, s);
2f2dc053
SW
2644 } else {
2645 /* just close it */
2646 mutex_unlock(&mdsc->mutex);
2647 mutex_lock(&s->s_mutex);
2648 mutex_lock(&mdsc->mutex);
2649 ceph_con_close(&s->s_con);
2650 mutex_unlock(&s->s_mutex);
2651 s->s_state = CEPH_MDS_SESSION_RESTARTING;
2652 }
2653
2654 /* kick any requests waiting on the recovering mds */
29790f26 2655 kick_requests(mdsc, i);
2f2dc053
SW
2656 } else if (oldstate == newstate) {
2657 continue; /* nothing new with this mds */
2658 }
2659
2660 /*
2661 * send reconnect?
2662 */
2663 if (s->s_state == CEPH_MDS_SESSION_RESTARTING &&
34b6c855
SW
2664 newstate >= CEPH_MDS_STATE_RECONNECT) {
2665 mutex_unlock(&mdsc->mutex);
2666 send_mds_reconnect(mdsc, s);
2667 mutex_lock(&mdsc->mutex);
2668 }
2f2dc053
SW
2669
2670 /*
29790f26 2671 * kick request on any mds that has gone active.
2f2dc053
SW
2672 */
2673 if (oldstate < CEPH_MDS_STATE_ACTIVE &&
2674 newstate >= CEPH_MDS_STATE_ACTIVE) {
29790f26
SW
2675 if (oldstate != CEPH_MDS_STATE_CREATING &&
2676 oldstate != CEPH_MDS_STATE_STARTING)
2677 pr_info("mds%d recovery completed\n", s->s_mds);
2678 kick_requests(mdsc, i);
2f2dc053 2679 ceph_kick_flushing_caps(mdsc, s);
0dc2570f 2680 wake_up_session_caps(s, 1);
2f2dc053
SW
2681 }
2682 }
cb170a22
SW
2683
2684 for (i = 0; i < newmap->m_max_mds && i < mdsc->max_sessions; i++) {
2685 s = mdsc->sessions[i];
2686 if (!s)
2687 continue;
2688 if (!ceph_mdsmap_is_laggy(newmap, i))
2689 continue;
2690 if (s->s_state == CEPH_MDS_SESSION_OPEN ||
2691 s->s_state == CEPH_MDS_SESSION_HUNG ||
2692 s->s_state == CEPH_MDS_SESSION_CLOSING) {
2693 dout(" connecting to export targets of laggy mds%d\n",
2694 i);
2695 __open_export_target_sessions(mdsc, s);
2696 }
2697 }
2f2dc053
SW
2698}
2699
2700
2701
2702/*
2703 * leases
2704 */
2705
2706/*
2707 * caller must hold session s_mutex, dentry->d_lock
2708 */
2709void __ceph_mdsc_drop_dentry_lease(struct dentry *dentry)
2710{
2711 struct ceph_dentry_info *di = ceph_dentry(dentry);
2712
2713 ceph_put_mds_session(di->lease_session);
2714 di->lease_session = NULL;
2715}
2716
2600d2dd
SW
2717static void handle_lease(struct ceph_mds_client *mdsc,
2718 struct ceph_mds_session *session,
2719 struct ceph_msg *msg)
2f2dc053 2720{
3d14c5d2 2721 struct super_block *sb = mdsc->fsc->sb;
2f2dc053 2722 struct inode *inode;
2f2dc053
SW
2723 struct dentry *parent, *dentry;
2724 struct ceph_dentry_info *di;
2600d2dd 2725 int mds = session->s_mds;
2f2dc053 2726 struct ceph_mds_lease *h = msg->front.iov_base;
1e5ea23d 2727 u32 seq;
2f2dc053 2728 struct ceph_vino vino;
2f2dc053
SW
2729 struct qstr dname;
2730 int release = 0;
2731
2f2dc053
SW
2732 dout("handle_lease from mds%d\n", mds);
2733
2734 /* decode */
2735 if (msg->front.iov_len < sizeof(*h) + sizeof(u32))
2736 goto bad;
2737 vino.ino = le64_to_cpu(h->ino);
2738 vino.snap = CEPH_NOSNAP;
1e5ea23d 2739 seq = le32_to_cpu(h->seq);
2f2dc053
SW
2740 dname.name = (void *)h + sizeof(*h) + sizeof(u32);
2741 dname.len = msg->front.iov_len - sizeof(*h) - sizeof(u32);
2742 if (dname.len != get_unaligned_le32(h+1))
2743 goto bad;
2744
2f2dc053
SW
2745 mutex_lock(&session->s_mutex);
2746 session->s_seq++;
2747
2748 /* lookup inode */
2749 inode = ceph_find_inode(sb, vino);
2f90b852
SW
2750 dout("handle_lease %s, ino %llx %p %.*s\n",
2751 ceph_lease_op_name(h->action), vino.ino, inode,
1e5ea23d 2752 dname.len, dname.name);
2f2dc053
SW
2753 if (inode == NULL) {
2754 dout("handle_lease no inode %llx\n", vino.ino);
2755 goto release;
2756 }
2f2dc053
SW
2757
2758 /* dentry */
2759 parent = d_find_alias(inode);
2760 if (!parent) {
2761 dout("no parent dentry on inode %p\n", inode);
2762 WARN_ON(1);
2763 goto release; /* hrm... */
2764 }
2765 dname.hash = full_name_hash(dname.name, dname.len);
2766 dentry = d_lookup(parent, &dname);
2767 dput(parent);
2768 if (!dentry)
2769 goto release;
2770
2771 spin_lock(&dentry->d_lock);
2772 di = ceph_dentry(dentry);
2773 switch (h->action) {
2774 case CEPH_MDS_LEASE_REVOKE:
3d8eb7a9 2775 if (di->lease_session == session) {
1e5ea23d
SW
2776 if (ceph_seq_cmp(di->lease_seq, seq) > 0)
2777 h->seq = cpu_to_le32(di->lease_seq);
2f2dc053
SW
2778 __ceph_mdsc_drop_dentry_lease(dentry);
2779 }
2780 release = 1;
2781 break;
2782
2783 case CEPH_MDS_LEASE_RENEW:
3d8eb7a9 2784 if (di->lease_session == session &&
2f2dc053
SW
2785 di->lease_gen == session->s_cap_gen &&
2786 di->lease_renew_from &&
2787 di->lease_renew_after == 0) {
2788 unsigned long duration =
2789 le32_to_cpu(h->duration_ms) * HZ / 1000;
2790
1e5ea23d 2791 di->lease_seq = seq;
2f2dc053
SW
2792 dentry->d_time = di->lease_renew_from + duration;
2793 di->lease_renew_after = di->lease_renew_from +
2794 (duration >> 1);
2795 di->lease_renew_from = 0;
2796 }
2797 break;
2798 }
2799 spin_unlock(&dentry->d_lock);
2800 dput(dentry);
2801
2802 if (!release)
2803 goto out;
2804
2805release:
2806 /* let's just reuse the same message */
2807 h->action = CEPH_MDS_LEASE_REVOKE_ACK;
2808 ceph_msg_get(msg);
2809 ceph_con_send(&session->s_con, msg);
2810
2811out:
2812 iput(inode);
2813 mutex_unlock(&session->s_mutex);
2f2dc053
SW
2814 return;
2815
2816bad:
2817 pr_err("corrupt lease message\n");
9ec7cab1 2818 ceph_msg_dump(msg);
2f2dc053
SW
2819}
2820
2821void ceph_mdsc_lease_send_msg(struct ceph_mds_session *session,
2822 struct inode *inode,
2823 struct dentry *dentry, char action,
2824 u32 seq)
2825{
2826 struct ceph_msg *msg;
2827 struct ceph_mds_lease *lease;
2828 int len = sizeof(*lease) + sizeof(u32);
2829 int dnamelen = 0;
2830
2831 dout("lease_send_msg inode %p dentry %p %s to mds%d\n",
2832 inode, dentry, ceph_lease_op_name(action), session->s_mds);
2833 dnamelen = dentry->d_name.len;
2834 len += dnamelen;
2835
b61c2763 2836 msg = ceph_msg_new(CEPH_MSG_CLIENT_LEASE, len, GFP_NOFS, false);
a79832f2 2837 if (!msg)
2f2dc053
SW
2838 return;
2839 lease = msg->front.iov_base;
2840 lease->action = action;
2f2dc053
SW
2841 lease->ino = cpu_to_le64(ceph_vino(inode).ino);
2842 lease->first = lease->last = cpu_to_le64(ceph_vino(inode).snap);
2843 lease->seq = cpu_to_le32(seq);
2844 put_unaligned_le32(dnamelen, lease + 1);
2845 memcpy((void *)(lease + 1) + 4, dentry->d_name.name, dnamelen);
2846
2847 /*
2848 * if this is a preemptive lease RELEASE, no need to
2849 * flush request stream, since the actual request will
2850 * soon follow.
2851 */
2852 msg->more_to_follow = (action == CEPH_MDS_LEASE_RELEASE);
2853
2854 ceph_con_send(&session->s_con, msg);
2855}
2856
2857/*
2858 * Preemptively release a lease we expect to invalidate anyway.
2859 * Pass @inode always, @dentry is optional.
2860 */
2861void ceph_mdsc_lease_release(struct ceph_mds_client *mdsc, struct inode *inode,
2f90b852 2862 struct dentry *dentry)
2f2dc053
SW
2863{
2864 struct ceph_dentry_info *di;
2865 struct ceph_mds_session *session;
2866 u32 seq;
2867
2868 BUG_ON(inode == NULL);
2869 BUG_ON(dentry == NULL);
2f2dc053
SW
2870
2871 /* is dentry lease valid? */
2872 spin_lock(&dentry->d_lock);
2873 di = ceph_dentry(dentry);
2874 if (!di || !di->lease_session ||
2875 di->lease_session->s_mds < 0 ||
2876 di->lease_gen != di->lease_session->s_cap_gen ||
2877 !time_before(jiffies, dentry->d_time)) {
2878 dout("lease_release inode %p dentry %p -- "
2f90b852
SW
2879 "no lease\n",
2880 inode, dentry);
2f2dc053
SW
2881 spin_unlock(&dentry->d_lock);
2882 return;
2883 }
2884
2885 /* we do have a lease on this dentry; note mds and seq */
2886 session = ceph_get_mds_session(di->lease_session);
2887 seq = di->lease_seq;
2888 __ceph_mdsc_drop_dentry_lease(dentry);
2889 spin_unlock(&dentry->d_lock);
2890
2f90b852
SW
2891 dout("lease_release inode %p dentry %p to mds%d\n",
2892 inode, dentry, session->s_mds);
2f2dc053
SW
2893 ceph_mdsc_lease_send_msg(session, inode, dentry,
2894 CEPH_MDS_LEASE_RELEASE, seq);
2895 ceph_put_mds_session(session);
2896}
2897
2898/*
2899 * drop all leases (and dentry refs) in preparation for umount
2900 */
2901static void drop_leases(struct ceph_mds_client *mdsc)
2902{
2903 int i;
2904
2905 dout("drop_leases\n");
2906 mutex_lock(&mdsc->mutex);
2907 for (i = 0; i < mdsc->max_sessions; i++) {
2908 struct ceph_mds_session *s = __ceph_lookup_mds_session(mdsc, i);
2909 if (!s)
2910 continue;
2911 mutex_unlock(&mdsc->mutex);
2912 mutex_lock(&s->s_mutex);
2913 mutex_unlock(&s->s_mutex);
2914 ceph_put_mds_session(s);
2915 mutex_lock(&mdsc->mutex);
2916 }
2917 mutex_unlock(&mdsc->mutex);
2918}
2919
2920
2921
2922/*
2923 * delayed work -- periodically trim expired leases, renew caps with mds
2924 */
2925static void schedule_delayed(struct ceph_mds_client *mdsc)
2926{
2927 int delay = 5;
2928 unsigned hz = round_jiffies_relative(HZ * delay);
2929 schedule_delayed_work(&mdsc->delayed_work, hz);
2930}
2931
2932static void delayed_work(struct work_struct *work)
2933{
2934 int i;
2935 struct ceph_mds_client *mdsc =
2936 container_of(work, struct ceph_mds_client, delayed_work.work);
2937 int renew_interval;
2938 int renew_caps;
2939
2940 dout("mdsc delayed_work\n");
afcdaea3 2941 ceph_check_delayed_caps(mdsc);
2f2dc053
SW
2942
2943 mutex_lock(&mdsc->mutex);
2944 renew_interval = mdsc->mdsmap->m_session_timeout >> 2;
2945 renew_caps = time_after_eq(jiffies, HZ*renew_interval +
2946 mdsc->last_renew_caps);
2947 if (renew_caps)
2948 mdsc->last_renew_caps = jiffies;
2949
2950 for (i = 0; i < mdsc->max_sessions; i++) {
2951 struct ceph_mds_session *s = __ceph_lookup_mds_session(mdsc, i);
2952 if (s == NULL)
2953 continue;
2954 if (s->s_state == CEPH_MDS_SESSION_CLOSING) {
2955 dout("resending session close request for mds%d\n",
2956 s->s_mds);
2957 request_close_session(mdsc, s);
2958 ceph_put_mds_session(s);
2959 continue;
2960 }
2961 if (s->s_ttl && time_after(jiffies, s->s_ttl)) {
2962 if (s->s_state == CEPH_MDS_SESSION_OPEN) {
2963 s->s_state = CEPH_MDS_SESSION_HUNG;
2964 pr_info("mds%d hung\n", s->s_mds);
2965 }
2966 }
2967 if (s->s_state < CEPH_MDS_SESSION_OPEN) {
2968 /* this mds is failed or recovering, just wait */
2969 ceph_put_mds_session(s);
2970 continue;
2971 }
2972 mutex_unlock(&mdsc->mutex);
2973
2974 mutex_lock(&s->s_mutex);
2975 if (renew_caps)
2976 send_renew_caps(mdsc, s);
2977 else
2978 ceph_con_keepalive(&s->s_con);
ee6b272b 2979 ceph_add_cap_releases(mdsc, s);
aab53dd9
SW
2980 if (s->s_state == CEPH_MDS_SESSION_OPEN ||
2981 s->s_state == CEPH_MDS_SESSION_HUNG)
3d7ded4d 2982 ceph_send_cap_releases(mdsc, s);
2f2dc053
SW
2983 mutex_unlock(&s->s_mutex);
2984 ceph_put_mds_session(s);
2985
2986 mutex_lock(&mdsc->mutex);
2987 }
2988 mutex_unlock(&mdsc->mutex);
2989
2990 schedule_delayed(mdsc);
2991}
2992
3d14c5d2 2993int ceph_mdsc_init(struct ceph_fs_client *fsc)
2f2dc053 2994
2f2dc053 2995{
3d14c5d2
YS
2996 struct ceph_mds_client *mdsc;
2997
2998 mdsc = kzalloc(sizeof(struct ceph_mds_client), GFP_NOFS);
2999 if (!mdsc)
3000 return -ENOMEM;
3001 mdsc->fsc = fsc;
3002 fsc->mdsc = mdsc;
2f2dc053
SW
3003 mutex_init(&mdsc->mutex);
3004 mdsc->mdsmap = kzalloc(sizeof(*mdsc->mdsmap), GFP_NOFS);
2d06eeb8
CR
3005 if (mdsc->mdsmap == NULL)
3006 return -ENOMEM;
3007
2f2dc053 3008 init_completion(&mdsc->safe_umount_waiters);
f3c60c59 3009 init_waitqueue_head(&mdsc->session_close_wq);
2f2dc053
SW
3010 INIT_LIST_HEAD(&mdsc->waiting_for_map);
3011 mdsc->sessions = NULL;
3012 mdsc->max_sessions = 0;
3013 mdsc->stopping = 0;
3014 init_rwsem(&mdsc->snap_rwsem);
a105f00c 3015 mdsc->snap_realms = RB_ROOT;
2f2dc053
SW
3016 INIT_LIST_HEAD(&mdsc->snap_empty);
3017 spin_lock_init(&mdsc->snap_empty_lock);
3018 mdsc->last_tid = 0;
44ca18f2 3019 mdsc->request_tree = RB_ROOT;
2f2dc053
SW
3020 INIT_DELAYED_WORK(&mdsc->delayed_work, delayed_work);
3021 mdsc->last_renew_caps = jiffies;
3022 INIT_LIST_HEAD(&mdsc->cap_delay_list);
3023 spin_lock_init(&mdsc->cap_delay_lock);
3024 INIT_LIST_HEAD(&mdsc->snap_flush_list);
3025 spin_lock_init(&mdsc->snap_flush_lock);
3026 mdsc->cap_flush_seq = 0;
3027 INIT_LIST_HEAD(&mdsc->cap_dirty);
db354052 3028 INIT_LIST_HEAD(&mdsc->cap_dirty_migrating);
2f2dc053
SW
3029 mdsc->num_cap_flushing = 0;
3030 spin_lock_init(&mdsc->cap_dirty_lock);
3031 init_waitqueue_head(&mdsc->cap_flushing_wq);
3032 spin_lock_init(&mdsc->dentry_lru_lock);
3033 INIT_LIST_HEAD(&mdsc->dentry_lru);
2d06eeb8 3034
37151668 3035 ceph_caps_init(mdsc);
3d14c5d2 3036 ceph_adjust_min_caps(mdsc, fsc->min_caps);
37151668 3037
5f44f142 3038 return 0;
2f2dc053
SW
3039}
3040
3041/*
3042 * Wait for safe replies on open mds requests. If we time out, drop
3043 * all requests from the tree to avoid dangling dentry refs.
3044 */
3045static void wait_requests(struct ceph_mds_client *mdsc)
3046{
3047 struct ceph_mds_request *req;
3d14c5d2 3048 struct ceph_fs_client *fsc = mdsc->fsc;
2f2dc053
SW
3049
3050 mutex_lock(&mdsc->mutex);
44ca18f2 3051 if (__get_oldest_req(mdsc)) {
2f2dc053 3052 mutex_unlock(&mdsc->mutex);
44ca18f2 3053
2f2dc053
SW
3054 dout("wait_requests waiting for requests\n");
3055 wait_for_completion_timeout(&mdsc->safe_umount_waiters,
3d14c5d2 3056 fsc->client->options->mount_timeout * HZ);
2f2dc053
SW
3057
3058 /* tear down remaining requests */
44ca18f2
SW
3059 mutex_lock(&mdsc->mutex);
3060 while ((req = __get_oldest_req(mdsc))) {
2f2dc053
SW
3061 dout("wait_requests timed out on tid %llu\n",
3062 req->r_tid);
44ca18f2 3063 __unregister_request(mdsc, req);
2f2dc053
SW
3064 }
3065 }
3066 mutex_unlock(&mdsc->mutex);
3067 dout("wait_requests done\n");
3068}
3069
3070/*
3071 * called before mount is ro, and before dentries are torn down.
3072 * (hmm, does this still race with new lookups?)
3073 */
3074void ceph_mdsc_pre_umount(struct ceph_mds_client *mdsc)
3075{
3076 dout("pre_umount\n");
3077 mdsc->stopping = 1;
3078
3079 drop_leases(mdsc);
afcdaea3 3080 ceph_flush_dirty_caps(mdsc);
2f2dc053 3081 wait_requests(mdsc);
17c688c3
SW
3082
3083 /*
3084 * wait for reply handlers to drop their request refs and
3085 * their inode/dcache refs
3086 */
3087 ceph_msgr_flush();
2f2dc053
SW
3088}
3089
3090/*
3091 * wait for all write mds requests to flush.
3092 */
3093static void wait_unsafe_requests(struct ceph_mds_client *mdsc, u64 want_tid)
3094{
80fc7314 3095 struct ceph_mds_request *req = NULL, *nextreq;
44ca18f2 3096 struct rb_node *n;
2f2dc053
SW
3097
3098 mutex_lock(&mdsc->mutex);
3099 dout("wait_unsafe_requests want %lld\n", want_tid);
80fc7314 3100restart:
44ca18f2
SW
3101 req = __get_oldest_req(mdsc);
3102 while (req && req->r_tid <= want_tid) {
80fc7314
SW
3103 /* find next request */
3104 n = rb_next(&req->r_node);
3105 if (n)
3106 nextreq = rb_entry(n, struct ceph_mds_request, r_node);
3107 else
3108 nextreq = NULL;
44ca18f2
SW
3109 if ((req->r_op & CEPH_MDS_OP_WRITE)) {
3110 /* write op */
3111 ceph_mdsc_get_request(req);
80fc7314
SW
3112 if (nextreq)
3113 ceph_mdsc_get_request(nextreq);
44ca18f2
SW
3114 mutex_unlock(&mdsc->mutex);
3115 dout("wait_unsafe_requests wait on %llu (want %llu)\n",
3116 req->r_tid, want_tid);
3117 wait_for_completion(&req->r_safe_completion);
3118 mutex_lock(&mdsc->mutex);
44ca18f2 3119 ceph_mdsc_put_request(req);
80fc7314
SW
3120 if (!nextreq)
3121 break; /* next dne before, so we're done! */
3122 if (RB_EMPTY_NODE(&nextreq->r_node)) {
3123 /* next request was removed from tree */
3124 ceph_mdsc_put_request(nextreq);
3125 goto restart;
3126 }
3127 ceph_mdsc_put_request(nextreq); /* won't go away */
44ca18f2 3128 }
80fc7314 3129 req = nextreq;
2f2dc053
SW
3130 }
3131 mutex_unlock(&mdsc->mutex);
3132 dout("wait_unsafe_requests done\n");
3133}
3134
3135void ceph_mdsc_sync(struct ceph_mds_client *mdsc)
3136{
3137 u64 want_tid, want_flush;
3138
3d14c5d2 3139 if (mdsc->fsc->mount_state == CEPH_MOUNT_SHUTDOWN)
56b7cf95
SW
3140 return;
3141
2f2dc053
SW
3142 dout("sync\n");
3143 mutex_lock(&mdsc->mutex);
3144 want_tid = mdsc->last_tid;
3145 want_flush = mdsc->cap_flush_seq;
3146 mutex_unlock(&mdsc->mutex);
3147 dout("sync want tid %lld flush_seq %lld\n", want_tid, want_flush);
3148
afcdaea3 3149 ceph_flush_dirty_caps(mdsc);
2f2dc053
SW
3150
3151 wait_unsafe_requests(mdsc, want_tid);
3152 wait_event(mdsc->cap_flushing_wq, check_cap_flush(mdsc, want_flush));
3153}
3154
f3c60c59
SW
3155/*
3156 * true if all sessions are closed, or we force unmount
3157 */
7fd7d101 3158static bool done_closing_sessions(struct ceph_mds_client *mdsc)
f3c60c59
SW
3159{
3160 int i, n = 0;
3161
3d14c5d2 3162 if (mdsc->fsc->mount_state == CEPH_MOUNT_SHUTDOWN)
f3c60c59
SW
3163 return true;
3164
3165 mutex_lock(&mdsc->mutex);
3166 for (i = 0; i < mdsc->max_sessions; i++)
3167 if (mdsc->sessions[i])
3168 n++;
3169 mutex_unlock(&mdsc->mutex);
3170 return n == 0;
3171}
2f2dc053
SW
3172
3173/*
3174 * called after sb is ro.
3175 */
3176void ceph_mdsc_close_sessions(struct ceph_mds_client *mdsc)
3177{
3178 struct ceph_mds_session *session;
3179 int i;
3d14c5d2
YS
3180 struct ceph_fs_client *fsc = mdsc->fsc;
3181 unsigned long timeout = fsc->client->options->mount_timeout * HZ;
2f2dc053
SW
3182
3183 dout("close_sessions\n");
3184
2f2dc053 3185 /* close sessions */
f3c60c59
SW
3186 mutex_lock(&mdsc->mutex);
3187 for (i = 0; i < mdsc->max_sessions; i++) {
3188 session = __ceph_lookup_mds_session(mdsc, i);
3189 if (!session)
3190 continue;
2f2dc053 3191 mutex_unlock(&mdsc->mutex);
f3c60c59
SW
3192 mutex_lock(&session->s_mutex);
3193 __close_session(mdsc, session);
3194 mutex_unlock(&session->s_mutex);
3195 ceph_put_mds_session(session);
2f2dc053
SW
3196 mutex_lock(&mdsc->mutex);
3197 }
f3c60c59
SW
3198 mutex_unlock(&mdsc->mutex);
3199
3200 dout("waiting for sessions to close\n");
3201 wait_event_timeout(mdsc->session_close_wq, done_closing_sessions(mdsc),
3202 timeout);
2f2dc053
SW
3203
3204 /* tear down remaining sessions */
f3c60c59 3205 mutex_lock(&mdsc->mutex);
2f2dc053
SW
3206 for (i = 0; i < mdsc->max_sessions; i++) {
3207 if (mdsc->sessions[i]) {
3208 session = get_session(mdsc->sessions[i]);
2600d2dd 3209 __unregister_session(mdsc, session);
2f2dc053
SW
3210 mutex_unlock(&mdsc->mutex);
3211 mutex_lock(&session->s_mutex);
3212 remove_session_caps(session);
3213 mutex_unlock(&session->s_mutex);
3214 ceph_put_mds_session(session);
3215 mutex_lock(&mdsc->mutex);
3216 }
3217 }
2f2dc053 3218 WARN_ON(!list_empty(&mdsc->cap_delay_list));
2f2dc053
SW
3219 mutex_unlock(&mdsc->mutex);
3220
3221 ceph_cleanup_empty_realms(mdsc);
3222
3223 cancel_delayed_work_sync(&mdsc->delayed_work); /* cancel timer */
3224
3225 dout("stopped\n");
3226}
3227
3d14c5d2 3228static void ceph_mdsc_stop(struct ceph_mds_client *mdsc)
2f2dc053
SW
3229{
3230 dout("stop\n");
3231 cancel_delayed_work_sync(&mdsc->delayed_work); /* cancel timer */
3232 if (mdsc->mdsmap)
3233 ceph_mdsmap_destroy(mdsc->mdsmap);
3234 kfree(mdsc->sessions);
37151668 3235 ceph_caps_finalize(mdsc);
2f2dc053
SW
3236}
3237
3d14c5d2
YS
3238void ceph_mdsc_destroy(struct ceph_fs_client *fsc)
3239{
3240 struct ceph_mds_client *mdsc = fsc->mdsc;
3241
ef550f6f 3242 dout("mdsc_destroy %p\n", mdsc);
3d14c5d2 3243 ceph_mdsc_stop(mdsc);
ef550f6f
SW
3244
3245 /* flush out any connection work with references to us */
3246 ceph_msgr_flush();
3247
3d14c5d2
YS
3248 fsc->mdsc = NULL;
3249 kfree(mdsc);
ef550f6f 3250 dout("mdsc_destroy %p done\n", mdsc);
3d14c5d2
YS
3251}
3252
2f2dc053
SW
3253
3254/*
3255 * handle mds map update.
3256 */
3257void ceph_mdsc_handle_map(struct ceph_mds_client *mdsc, struct ceph_msg *msg)
3258{
3259 u32 epoch;
3260 u32 maplen;
3261 void *p = msg->front.iov_base;
3262 void *end = p + msg->front.iov_len;
3263 struct ceph_mdsmap *newmap, *oldmap;
3264 struct ceph_fsid fsid;
3265 int err = -EINVAL;
3266
3267 ceph_decode_need(&p, end, sizeof(fsid)+2*sizeof(u32), bad);
3268 ceph_decode_copy(&p, &fsid, sizeof(fsid));
3d14c5d2 3269 if (ceph_check_fsid(mdsc->fsc->client, &fsid) < 0)
0743304d 3270 return;
c89136ea
SW
3271 epoch = ceph_decode_32(&p);
3272 maplen = ceph_decode_32(&p);
2f2dc053
SW
3273 dout("handle_map epoch %u len %d\n", epoch, (int)maplen);
3274
3275 /* do we need it? */
3d14c5d2 3276 ceph_monc_got_mdsmap(&mdsc->fsc->client->monc, epoch);
2f2dc053
SW
3277 mutex_lock(&mdsc->mutex);
3278 if (mdsc->mdsmap && epoch <= mdsc->mdsmap->m_epoch) {
3279 dout("handle_map epoch %u <= our %u\n",
3280 epoch, mdsc->mdsmap->m_epoch);
3281 mutex_unlock(&mdsc->mutex);
3282 return;
3283 }
3284
3285 newmap = ceph_mdsmap_decode(&p, end);
3286 if (IS_ERR(newmap)) {
3287 err = PTR_ERR(newmap);
3288 goto bad_unlock;
3289 }
3290
3291 /* swap into place */
3292 if (mdsc->mdsmap) {
3293 oldmap = mdsc->mdsmap;
3294 mdsc->mdsmap = newmap;
3295 check_new_map(mdsc, newmap, oldmap);
3296 ceph_mdsmap_destroy(oldmap);
3297 } else {
3298 mdsc->mdsmap = newmap; /* first mds map */
3299 }
3d14c5d2 3300 mdsc->fsc->sb->s_maxbytes = mdsc->mdsmap->m_max_file_size;
2f2dc053
SW
3301
3302 __wake_requests(mdsc, &mdsc->waiting_for_map);
3303
3304 mutex_unlock(&mdsc->mutex);
3305 schedule_delayed(mdsc);
3306 return;
3307
3308bad_unlock:
3309 mutex_unlock(&mdsc->mutex);
3310bad:
3311 pr_err("error decoding mdsmap %d\n", err);
3312 return;
3313}
3314
3315static struct ceph_connection *con_get(struct ceph_connection *con)
3316{
3317 struct ceph_mds_session *s = con->private;
3318
3319 if (get_session(s)) {
2600d2dd 3320 dout("mdsc con_get %p ok (%d)\n", s, atomic_read(&s->s_ref));
2f2dc053
SW
3321 return con;
3322 }
3323 dout("mdsc con_get %p FAIL\n", s);
3324 return NULL;
3325}
3326
3327static void con_put(struct ceph_connection *con)
3328{
3329 struct ceph_mds_session *s = con->private;
3330
7d8e18a6 3331 dout("mdsc con_put %p (%d)\n", s, atomic_read(&s->s_ref) - 1);
2f2dc053
SW
3332 ceph_put_mds_session(s);
3333}
3334
3335/*
3336 * if the client is unresponsive for long enough, the mds will kill
3337 * the session entirely.
3338 */
3339static void peer_reset(struct ceph_connection *con)
3340{
3341 struct ceph_mds_session *s = con->private;
7e70f0ed 3342 struct ceph_mds_client *mdsc = s->s_mdsc;
2f2dc053 3343
7e70f0ed
SW
3344 pr_warning("mds%d closed our session\n", s->s_mds);
3345 send_mds_reconnect(mdsc, s);
2f2dc053
SW
3346}
3347
3348static void dispatch(struct ceph_connection *con, struct ceph_msg *msg)
3349{
3350 struct ceph_mds_session *s = con->private;
3351 struct ceph_mds_client *mdsc = s->s_mdsc;
3352 int type = le16_to_cpu(msg->hdr.type);
3353
2600d2dd
SW
3354 mutex_lock(&mdsc->mutex);
3355 if (__verify_registered_session(mdsc, s) < 0) {
3356 mutex_unlock(&mdsc->mutex);
3357 goto out;
3358 }
3359 mutex_unlock(&mdsc->mutex);
3360
2f2dc053
SW
3361 switch (type) {
3362 case CEPH_MSG_MDS_MAP:
3363 ceph_mdsc_handle_map(mdsc, msg);
3364 break;
3365 case CEPH_MSG_CLIENT_SESSION:
3366 handle_session(s, msg);
3367 break;
3368 case CEPH_MSG_CLIENT_REPLY:
3369 handle_reply(s, msg);
3370 break;
3371 case CEPH_MSG_CLIENT_REQUEST_FORWARD:
2600d2dd 3372 handle_forward(mdsc, s, msg);
2f2dc053
SW
3373 break;
3374 case CEPH_MSG_CLIENT_CAPS:
3375 ceph_handle_caps(s, msg);
3376 break;
3377 case CEPH_MSG_CLIENT_SNAP:
2600d2dd 3378 ceph_handle_snap(mdsc, s, msg);
2f2dc053
SW
3379 break;
3380 case CEPH_MSG_CLIENT_LEASE:
2600d2dd 3381 handle_lease(mdsc, s, msg);
2f2dc053
SW
3382 break;
3383
3384 default:
3385 pr_err("received unknown message type %d %s\n", type,
3386 ceph_msg_type_name(type));
3387 }
2600d2dd 3388out:
2f2dc053
SW
3389 ceph_msg_put(msg);
3390}
3391
4e7a5dcd
SW
3392/*
3393 * authentication
3394 */
a3530df3
AE
3395
3396/*
3397 * Note: returned pointer is the address of a structure that's
3398 * managed separately. Caller must *not* attempt to free it.
3399 */
3400static struct ceph_auth_handshake *get_authorizer(struct ceph_connection *con,
8f43fb53 3401 int *proto, int force_new)
4e7a5dcd
SW
3402{
3403 struct ceph_mds_session *s = con->private;
3404 struct ceph_mds_client *mdsc = s->s_mdsc;
3d14c5d2 3405 struct ceph_auth_client *ac = mdsc->fsc->client->monc.auth;
74f1869f 3406 struct ceph_auth_handshake *auth = &s->s_auth;
4e7a5dcd 3407
74f1869f 3408 if (force_new && auth->authorizer) {
a255651d
AE
3409 if (ac->ops && ac->ops->destroy_authorizer)
3410 ac->ops->destroy_authorizer(ac, auth->authorizer);
74f1869f 3411 auth->authorizer = NULL;
4e7a5dcd 3412 }
a255651d 3413 if (!auth->authorizer && ac->ops && ac->ops->create_authorizer) {
a3530df3
AE
3414 int ret = ac->ops->create_authorizer(ac, CEPH_ENTITY_TYPE_MDS,
3415 auth);
a255651d 3416 if (ret)
a3530df3 3417 return ERR_PTR(ret);
4e7a5dcd 3418 }
4e7a5dcd 3419 *proto = ac->protocol;
74f1869f 3420
a3530df3 3421 return auth;
4e7a5dcd
SW
3422}
3423
3424
3425static int verify_authorizer_reply(struct ceph_connection *con, int len)
3426{
3427 struct ceph_mds_session *s = con->private;
3428 struct ceph_mds_client *mdsc = s->s_mdsc;
3d14c5d2 3429 struct ceph_auth_client *ac = mdsc->fsc->client->monc.auth;
4e7a5dcd 3430
6c4a1915 3431 return ac->ops->verify_authorizer_reply(ac, s->s_auth.authorizer, len);
4e7a5dcd
SW
3432}
3433
9bd2e6f8
SW
3434static int invalidate_authorizer(struct ceph_connection *con)
3435{
3436 struct ceph_mds_session *s = con->private;
3437 struct ceph_mds_client *mdsc = s->s_mdsc;
3d14c5d2 3438 struct ceph_auth_client *ac = mdsc->fsc->client->monc.auth;
9bd2e6f8
SW
3439
3440 if (ac->ops->invalidate_authorizer)
3441 ac->ops->invalidate_authorizer(ac, CEPH_ENTITY_TYPE_MDS);
3442
3d14c5d2 3443 return ceph_monc_validate_auth(&mdsc->fsc->client->monc);
9bd2e6f8
SW
3444}
3445
9e32789f 3446static const struct ceph_connection_operations mds_con_ops = {
2f2dc053
SW
3447 .get = con_get,
3448 .put = con_put,
3449 .dispatch = dispatch,
4e7a5dcd
SW
3450 .get_authorizer = get_authorizer,
3451 .verify_authorizer_reply = verify_authorizer_reply,
9bd2e6f8 3452 .invalidate_authorizer = invalidate_authorizer,
2f2dc053 3453 .peer_reset = peer_reset,
2f2dc053
SW
3454};
3455
2f2dc053 3456/* eof */