ceph: don't trim auth cap when there are cap snaps
[linux-2.6-block.git] / fs / ceph / caps.c
CommitLineData
3d14c5d2 1#include <linux/ceph/ceph_debug.h>
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2
3#include <linux/fs.h>
4#include <linux/kernel.h>
5#include <linux/sched.h>
5a0e3ad6 6#include <linux/slab.h>
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7#include <linux/vmalloc.h>
8#include <linux/wait.h>
f1a3d572 9#include <linux/writeback.h>
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10
11#include "super.h"
3d14c5d2 12#include "mds_client.h"
99ccbd22 13#include "cache.h"
3d14c5d2
YS
14#include <linux/ceph/decode.h>
15#include <linux/ceph/messenger.h>
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16
17/*
18 * Capability management
19 *
20 * The Ceph metadata servers control client access to inode metadata
21 * and file data by issuing capabilities, granting clients permission
22 * to read and/or write both inode field and file data to OSDs
23 * (storage nodes). Each capability consists of a set of bits
24 * indicating which operations are allowed.
25 *
26 * If the client holds a *_SHARED cap, the client has a coherent value
27 * that can be safely read from the cached inode.
28 *
29 * In the case of a *_EXCL (exclusive) or FILE_WR capabilities, the
30 * client is allowed to change inode attributes (e.g., file size,
31 * mtime), note its dirty state in the ceph_cap, and asynchronously
32 * flush that metadata change to the MDS.
33 *
34 * In the event of a conflicting operation (perhaps by another
35 * client), the MDS will revoke the conflicting client capabilities.
36 *
37 * In order for a client to cache an inode, it must hold a capability
38 * with at least one MDS server. When inodes are released, release
39 * notifications are batched and periodically sent en masse to the MDS
40 * cluster to release server state.
41 */
42
43
44/*
45 * Generate readable cap strings for debugging output.
46 */
47#define MAX_CAP_STR 20
48static char cap_str[MAX_CAP_STR][40];
49static DEFINE_SPINLOCK(cap_str_lock);
50static int last_cap_str;
51
52static char *gcap_string(char *s, int c)
53{
54 if (c & CEPH_CAP_GSHARED)
55 *s++ = 's';
56 if (c & CEPH_CAP_GEXCL)
57 *s++ = 'x';
58 if (c & CEPH_CAP_GCACHE)
59 *s++ = 'c';
60 if (c & CEPH_CAP_GRD)
61 *s++ = 'r';
62 if (c & CEPH_CAP_GWR)
63 *s++ = 'w';
64 if (c & CEPH_CAP_GBUFFER)
65 *s++ = 'b';
66 if (c & CEPH_CAP_GLAZYIO)
67 *s++ = 'l';
68 return s;
69}
70
71const char *ceph_cap_string(int caps)
72{
73 int i;
74 char *s;
75 int c;
76
77 spin_lock(&cap_str_lock);
78 i = last_cap_str++;
79 if (last_cap_str == MAX_CAP_STR)
80 last_cap_str = 0;
81 spin_unlock(&cap_str_lock);
82
83 s = cap_str[i];
84
85 if (caps & CEPH_CAP_PIN)
86 *s++ = 'p';
87
88 c = (caps >> CEPH_CAP_SAUTH) & 3;
89 if (c) {
90 *s++ = 'A';
91 s = gcap_string(s, c);
92 }
93
94 c = (caps >> CEPH_CAP_SLINK) & 3;
95 if (c) {
96 *s++ = 'L';
97 s = gcap_string(s, c);
98 }
99
100 c = (caps >> CEPH_CAP_SXATTR) & 3;
101 if (c) {
102 *s++ = 'X';
103 s = gcap_string(s, c);
104 }
105
106 c = caps >> CEPH_CAP_SFILE;
107 if (c) {
108 *s++ = 'F';
109 s = gcap_string(s, c);
110 }
111
112 if (s == cap_str[i])
113 *s++ = '-';
114 *s = 0;
115 return cap_str[i];
116}
117
37151668 118void ceph_caps_init(struct ceph_mds_client *mdsc)
a8599bd8 119{
37151668
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120 INIT_LIST_HEAD(&mdsc->caps_list);
121 spin_lock_init(&mdsc->caps_list_lock);
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122}
123
37151668 124void ceph_caps_finalize(struct ceph_mds_client *mdsc)
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125{
126 struct ceph_cap *cap;
127
37151668
YS
128 spin_lock(&mdsc->caps_list_lock);
129 while (!list_empty(&mdsc->caps_list)) {
130 cap = list_first_entry(&mdsc->caps_list,
131 struct ceph_cap, caps_item);
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SW
132 list_del(&cap->caps_item);
133 kmem_cache_free(ceph_cap_cachep, cap);
134 }
37151668
YS
135 mdsc->caps_total_count = 0;
136 mdsc->caps_avail_count = 0;
137 mdsc->caps_use_count = 0;
138 mdsc->caps_reserve_count = 0;
139 mdsc->caps_min_count = 0;
140 spin_unlock(&mdsc->caps_list_lock);
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SW
141}
142
37151668 143void ceph_adjust_min_caps(struct ceph_mds_client *mdsc, int delta)
85ccce43 144{
37151668
YS
145 spin_lock(&mdsc->caps_list_lock);
146 mdsc->caps_min_count += delta;
147 BUG_ON(mdsc->caps_min_count < 0);
148 spin_unlock(&mdsc->caps_list_lock);
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SW
149}
150
93faca6e 151void ceph_reserve_caps(struct ceph_mds_client *mdsc,
37151668 152 struct ceph_cap_reservation *ctx, int need)
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SW
153{
154 int i;
155 struct ceph_cap *cap;
156 int have;
157 int alloc = 0;
158 LIST_HEAD(newcaps);
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159
160 dout("reserve caps ctx=%p need=%d\n", ctx, need);
161
162 /* first reserve any caps that are already allocated */
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163 spin_lock(&mdsc->caps_list_lock);
164 if (mdsc->caps_avail_count >= need)
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SW
165 have = need;
166 else
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167 have = mdsc->caps_avail_count;
168 mdsc->caps_avail_count -= have;
169 mdsc->caps_reserve_count += have;
170 BUG_ON(mdsc->caps_total_count != mdsc->caps_use_count +
171 mdsc->caps_reserve_count +
172 mdsc->caps_avail_count);
173 spin_unlock(&mdsc->caps_list_lock);
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SW
174
175 for (i = have; i < need; i++) {
176 cap = kmem_cache_alloc(ceph_cap_cachep, GFP_NOFS);
93faca6e 177 if (!cap)
178 break;
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SW
179 list_add(&cap->caps_item, &newcaps);
180 alloc++;
181 }
93faca6e 182 /* we didn't manage to reserve as much as we needed */
183 if (have + alloc != need)
184 pr_warn("reserve caps ctx=%p ENOMEM need=%d got=%d\n",
185 ctx, need, have + alloc);
a8599bd8 186
37151668
YS
187 spin_lock(&mdsc->caps_list_lock);
188 mdsc->caps_total_count += alloc;
189 mdsc->caps_reserve_count += alloc;
190 list_splice(&newcaps, &mdsc->caps_list);
a8599bd8 191
37151668
YS
192 BUG_ON(mdsc->caps_total_count != mdsc->caps_use_count +
193 mdsc->caps_reserve_count +
194 mdsc->caps_avail_count);
195 spin_unlock(&mdsc->caps_list_lock);
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196
197 ctx->count = need;
198 dout("reserve caps ctx=%p %d = %d used + %d resv + %d avail\n",
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YS
199 ctx, mdsc->caps_total_count, mdsc->caps_use_count,
200 mdsc->caps_reserve_count, mdsc->caps_avail_count);
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SW
201}
202
37151668
YS
203int ceph_unreserve_caps(struct ceph_mds_client *mdsc,
204 struct ceph_cap_reservation *ctx)
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SW
205{
206 dout("unreserve caps ctx=%p count=%d\n", ctx, ctx->count);
207 if (ctx->count) {
37151668
YS
208 spin_lock(&mdsc->caps_list_lock);
209 BUG_ON(mdsc->caps_reserve_count < ctx->count);
210 mdsc->caps_reserve_count -= ctx->count;
211 mdsc->caps_avail_count += ctx->count;
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212 ctx->count = 0;
213 dout("unreserve caps %d = %d used + %d resv + %d avail\n",
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YS
214 mdsc->caps_total_count, mdsc->caps_use_count,
215 mdsc->caps_reserve_count, mdsc->caps_avail_count);
216 BUG_ON(mdsc->caps_total_count != mdsc->caps_use_count +
217 mdsc->caps_reserve_count +
218 mdsc->caps_avail_count);
219 spin_unlock(&mdsc->caps_list_lock);
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220 }
221 return 0;
222}
223
d9df2783
YZ
224struct ceph_cap *ceph_get_cap(struct ceph_mds_client *mdsc,
225 struct ceph_cap_reservation *ctx)
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226{
227 struct ceph_cap *cap = NULL;
228
229 /* temporary, until we do something about cap import/export */
443b3760
SW
230 if (!ctx) {
231 cap = kmem_cache_alloc(ceph_cap_cachep, GFP_NOFS);
232 if (cap) {
4d1d0534 233 spin_lock(&mdsc->caps_list_lock);
37151668
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234 mdsc->caps_use_count++;
235 mdsc->caps_total_count++;
4d1d0534 236 spin_unlock(&mdsc->caps_list_lock);
443b3760
SW
237 }
238 return cap;
239 }
a8599bd8 240
37151668 241 spin_lock(&mdsc->caps_list_lock);
a8599bd8 242 dout("get_cap ctx=%p (%d) %d = %d used + %d resv + %d avail\n",
37151668
YS
243 ctx, ctx->count, mdsc->caps_total_count, mdsc->caps_use_count,
244 mdsc->caps_reserve_count, mdsc->caps_avail_count);
a8599bd8 245 BUG_ON(!ctx->count);
37151668
YS
246 BUG_ON(ctx->count > mdsc->caps_reserve_count);
247 BUG_ON(list_empty(&mdsc->caps_list));
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SW
248
249 ctx->count--;
37151668
YS
250 mdsc->caps_reserve_count--;
251 mdsc->caps_use_count++;
a8599bd8 252
37151668 253 cap = list_first_entry(&mdsc->caps_list, struct ceph_cap, caps_item);
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SW
254 list_del(&cap->caps_item);
255
37151668
YS
256 BUG_ON(mdsc->caps_total_count != mdsc->caps_use_count +
257 mdsc->caps_reserve_count + mdsc->caps_avail_count);
258 spin_unlock(&mdsc->caps_list_lock);
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SW
259 return cap;
260}
261
37151668 262void ceph_put_cap(struct ceph_mds_client *mdsc, struct ceph_cap *cap)
a8599bd8 263{
37151668 264 spin_lock(&mdsc->caps_list_lock);
7c1332b8 265 dout("put_cap %p %d = %d used + %d resv + %d avail\n",
37151668
YS
266 cap, mdsc->caps_total_count, mdsc->caps_use_count,
267 mdsc->caps_reserve_count, mdsc->caps_avail_count);
268 mdsc->caps_use_count--;
a8599bd8 269 /*
85ccce43
SW
270 * Keep some preallocated caps around (ceph_min_count), to
271 * avoid lots of free/alloc churn.
a8599bd8 272 */
37151668
YS
273 if (mdsc->caps_avail_count >= mdsc->caps_reserve_count +
274 mdsc->caps_min_count) {
275 mdsc->caps_total_count--;
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SW
276 kmem_cache_free(ceph_cap_cachep, cap);
277 } else {
37151668
YS
278 mdsc->caps_avail_count++;
279 list_add(&cap->caps_item, &mdsc->caps_list);
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SW
280 }
281
37151668
YS
282 BUG_ON(mdsc->caps_total_count != mdsc->caps_use_count +
283 mdsc->caps_reserve_count + mdsc->caps_avail_count);
284 spin_unlock(&mdsc->caps_list_lock);
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SW
285}
286
3d14c5d2 287void ceph_reservation_status(struct ceph_fs_client *fsc,
85ccce43
SW
288 int *total, int *avail, int *used, int *reserved,
289 int *min)
a8599bd8 290{
3d14c5d2 291 struct ceph_mds_client *mdsc = fsc->mdsc;
37151668 292
a8599bd8 293 if (total)
37151668 294 *total = mdsc->caps_total_count;
a8599bd8 295 if (avail)
37151668 296 *avail = mdsc->caps_avail_count;
a8599bd8 297 if (used)
37151668 298 *used = mdsc->caps_use_count;
a8599bd8 299 if (reserved)
37151668 300 *reserved = mdsc->caps_reserve_count;
85ccce43 301 if (min)
37151668 302 *min = mdsc->caps_min_count;
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SW
303}
304
305/*
306 * Find ceph_cap for given mds, if any.
307 *
be655596 308 * Called with i_ceph_lock held.
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309 */
310static struct ceph_cap *__get_cap_for_mds(struct ceph_inode_info *ci, int mds)
311{
312 struct ceph_cap *cap;
313 struct rb_node *n = ci->i_caps.rb_node;
314
315 while (n) {
316 cap = rb_entry(n, struct ceph_cap, ci_node);
317 if (mds < cap->mds)
318 n = n->rb_left;
319 else if (mds > cap->mds)
320 n = n->rb_right;
321 else
322 return cap;
323 }
324 return NULL;
325}
326
2bc50259
GF
327struct ceph_cap *ceph_get_cap_for_mds(struct ceph_inode_info *ci, int mds)
328{
329 struct ceph_cap *cap;
330
be655596 331 spin_lock(&ci->i_ceph_lock);
2bc50259 332 cap = __get_cap_for_mds(ci, mds);
be655596 333 spin_unlock(&ci->i_ceph_lock);
2bc50259
GF
334 return cap;
335}
336
a8599bd8 337/*
33caad32 338 * Return id of any MDS with a cap, preferably FILE_WR|BUFFER|EXCL, else -1.
a8599bd8 339 */
ca81f3f6 340static int __ceph_get_cap_mds(struct ceph_inode_info *ci)
a8599bd8
SW
341{
342 struct ceph_cap *cap;
343 int mds = -1;
344 struct rb_node *p;
345
33caad32 346 /* prefer mds with WR|BUFFER|EXCL caps */
a8599bd8
SW
347 for (p = rb_first(&ci->i_caps); p; p = rb_next(p)) {
348 cap = rb_entry(p, struct ceph_cap, ci_node);
349 mds = cap->mds;
a8599bd8
SW
350 if (cap->issued & (CEPH_CAP_FILE_WR |
351 CEPH_CAP_FILE_BUFFER |
352 CEPH_CAP_FILE_EXCL))
353 break;
354 }
355 return mds;
356}
357
358int ceph_get_cap_mds(struct inode *inode)
359{
be655596 360 struct ceph_inode_info *ci = ceph_inode(inode);
a8599bd8 361 int mds;
be655596 362 spin_lock(&ci->i_ceph_lock);
ca81f3f6 363 mds = __ceph_get_cap_mds(ceph_inode(inode));
be655596 364 spin_unlock(&ci->i_ceph_lock);
a8599bd8
SW
365 return mds;
366}
367
368/*
be655596 369 * Called under i_ceph_lock.
a8599bd8
SW
370 */
371static void __insert_cap_node(struct ceph_inode_info *ci,
372 struct ceph_cap *new)
373{
374 struct rb_node **p = &ci->i_caps.rb_node;
375 struct rb_node *parent = NULL;
376 struct ceph_cap *cap = NULL;
377
378 while (*p) {
379 parent = *p;
380 cap = rb_entry(parent, struct ceph_cap, ci_node);
381 if (new->mds < cap->mds)
382 p = &(*p)->rb_left;
383 else if (new->mds > cap->mds)
384 p = &(*p)->rb_right;
385 else
386 BUG();
387 }
388
389 rb_link_node(&new->ci_node, parent, p);
390 rb_insert_color(&new->ci_node, &ci->i_caps);
391}
392
393/*
394 * (re)set cap hold timeouts, which control the delayed release
395 * of unused caps back to the MDS. Should be called on cap use.
396 */
397static void __cap_set_timeouts(struct ceph_mds_client *mdsc,
398 struct ceph_inode_info *ci)
399{
3d14c5d2 400 struct ceph_mount_options *ma = mdsc->fsc->mount_options;
a8599bd8
SW
401
402 ci->i_hold_caps_min = round_jiffies(jiffies +
403 ma->caps_wanted_delay_min * HZ);
404 ci->i_hold_caps_max = round_jiffies(jiffies +
405 ma->caps_wanted_delay_max * HZ);
406 dout("__cap_set_timeouts %p min %lu max %lu\n", &ci->vfs_inode,
407 ci->i_hold_caps_min - jiffies, ci->i_hold_caps_max - jiffies);
408}
409
410/*
411 * (Re)queue cap at the end of the delayed cap release list.
412 *
413 * If I_FLUSH is set, leave the inode at the front of the list.
414 *
be655596 415 * Caller holds i_ceph_lock
a8599bd8
SW
416 * -> we take mdsc->cap_delay_lock
417 */
418static void __cap_delay_requeue(struct ceph_mds_client *mdsc,
419 struct ceph_inode_info *ci)
420{
421 __cap_set_timeouts(mdsc, ci);
422 dout("__cap_delay_requeue %p flags %d at %lu\n", &ci->vfs_inode,
423 ci->i_ceph_flags, ci->i_hold_caps_max);
424 if (!mdsc->stopping) {
425 spin_lock(&mdsc->cap_delay_lock);
426 if (!list_empty(&ci->i_cap_delay_list)) {
427 if (ci->i_ceph_flags & CEPH_I_FLUSH)
428 goto no_change;
429 list_del_init(&ci->i_cap_delay_list);
430 }
431 list_add_tail(&ci->i_cap_delay_list, &mdsc->cap_delay_list);
432no_change:
433 spin_unlock(&mdsc->cap_delay_lock);
434 }
435}
436
437/*
438 * Queue an inode for immediate writeback. Mark inode with I_FLUSH,
439 * indicating we should send a cap message to flush dirty metadata
440 * asap, and move to the front of the delayed cap list.
441 */
442static void __cap_delay_requeue_front(struct ceph_mds_client *mdsc,
443 struct ceph_inode_info *ci)
444{
445 dout("__cap_delay_requeue_front %p\n", &ci->vfs_inode);
446 spin_lock(&mdsc->cap_delay_lock);
447 ci->i_ceph_flags |= CEPH_I_FLUSH;
448 if (!list_empty(&ci->i_cap_delay_list))
449 list_del_init(&ci->i_cap_delay_list);
450 list_add(&ci->i_cap_delay_list, &mdsc->cap_delay_list);
451 spin_unlock(&mdsc->cap_delay_lock);
452}
453
454/*
455 * Cancel delayed work on cap.
456 *
be655596 457 * Caller must hold i_ceph_lock.
a8599bd8
SW
458 */
459static void __cap_delay_cancel(struct ceph_mds_client *mdsc,
460 struct ceph_inode_info *ci)
461{
462 dout("__cap_delay_cancel %p\n", &ci->vfs_inode);
463 if (list_empty(&ci->i_cap_delay_list))
464 return;
465 spin_lock(&mdsc->cap_delay_lock);
466 list_del_init(&ci->i_cap_delay_list);
467 spin_unlock(&mdsc->cap_delay_lock);
468}
469
470/*
471 * Common issue checks for add_cap, handle_cap_grant.
472 */
473static void __check_cap_issue(struct ceph_inode_info *ci, struct ceph_cap *cap,
474 unsigned issued)
475{
476 unsigned had = __ceph_caps_issued(ci, NULL);
477
478 /*
479 * Each time we receive FILE_CACHE anew, we increment
480 * i_rdcache_gen.
481 */
2962507c 482 if ((issued & (CEPH_CAP_FILE_CACHE|CEPH_CAP_FILE_LAZYIO)) &&
99ccbd22 483 (had & (CEPH_CAP_FILE_CACHE|CEPH_CAP_FILE_LAZYIO)) == 0) {
a8599bd8 484 ci->i_rdcache_gen++;
99ccbd22 485 }
a8599bd8
SW
486
487 /*
2f276c51 488 * if we are newly issued FILE_SHARED, mark dir not complete; we
a8599bd8
SW
489 * don't know what happened to this directory while we didn't
490 * have the cap.
491 */
492 if ((issued & CEPH_CAP_FILE_SHARED) &&
493 (had & CEPH_CAP_FILE_SHARED) == 0) {
494 ci->i_shared_gen++;
a8673d61
YZ
495 if (S_ISDIR(ci->vfs_inode.i_mode)) {
496 dout(" marking %p NOT complete\n", &ci->vfs_inode);
2f276c51 497 __ceph_dir_clear_complete(ci);
a8673d61 498 }
a8599bd8
SW
499 }
500}
501
502/*
503 * Add a capability under the given MDS session.
504 *
505 * Caller should hold session snap_rwsem (read) and s_mutex.
506 *
507 * @fmode is the open file mode, if we are opening a file, otherwise
508 * it is < 0. (This is so we can atomically add the cap and add an
509 * open file reference to it.)
510 */
d9df2783
YZ
511void ceph_add_cap(struct inode *inode,
512 struct ceph_mds_session *session, u64 cap_id,
513 int fmode, unsigned issued, unsigned wanted,
514 unsigned seq, unsigned mseq, u64 realmino, int flags,
515 struct ceph_cap **new_cap)
a8599bd8 516{
3d14c5d2 517 struct ceph_mds_client *mdsc = ceph_inode_to_client(inode)->mdsc;
a8599bd8 518 struct ceph_inode_info *ci = ceph_inode(inode);
a8599bd8
SW
519 struct ceph_cap *cap;
520 int mds = session->s_mds;
521 int actual_wanted;
522
523 dout("add_cap %p mds%d cap %llx %s seq %d\n", inode,
524 session->s_mds, cap_id, ceph_cap_string(issued), seq);
525
526 /*
527 * If we are opening the file, include file mode wanted bits
528 * in wanted.
529 */
530 if (fmode >= 0)
531 wanted |= ceph_caps_for_mode(fmode);
532
a8599bd8
SW
533 cap = __get_cap_for_mds(ci, mds);
534 if (!cap) {
d9df2783
YZ
535 cap = *new_cap;
536 *new_cap = NULL;
a8599bd8
SW
537
538 cap->issued = 0;
539 cap->implemented = 0;
540 cap->mds = mds;
541 cap->mds_wanted = 0;
964266cc 542 cap->mseq = 0;
a8599bd8
SW
543
544 cap->ci = ci;
545 __insert_cap_node(ci, cap);
546
a8599bd8
SW
547 /* add to session cap list */
548 cap->session = session;
549 spin_lock(&session->s_cap_lock);
550 list_add_tail(&cap->session_caps, &session->s_caps);
551 session->s_nr_caps++;
552 spin_unlock(&session->s_cap_lock);
11df2dfb 553 } else {
11df2dfb
YZ
554 /*
555 * auth mds of the inode changed. we received the cap export
556 * message, but still haven't received the cap import message.
557 * handle_cap_export() updated the new auth MDS' cap.
558 *
559 * "ceph_seq_cmp(seq, cap->seq) <= 0" means we are processing
560 * a message that was send before the cap import message. So
561 * don't remove caps.
562 */
563 if (ceph_seq_cmp(seq, cap->seq) <= 0) {
564 WARN_ON(cap != ci->i_auth_cap);
565 WARN_ON(cap->cap_id != cap_id);
566 seq = cap->seq;
567 mseq = cap->mseq;
568 issued |= cap->issued;
569 flags |= CEPH_CAP_FLAG_AUTH;
570 }
571 }
a8599bd8
SW
572
573 if (!ci->i_snap_realm) {
574 /*
575 * add this inode to the appropriate snap realm
576 */
577 struct ceph_snap_realm *realm = ceph_lookup_snap_realm(mdsc,
578 realmino);
579 if (realm) {
a8599bd8
SW
580 spin_lock(&realm->inodes_with_caps_lock);
581 ci->i_snap_realm = realm;
582 list_add(&ci->i_snap_realm_item,
583 &realm->inodes_with_caps);
584 spin_unlock(&realm->inodes_with_caps_lock);
585 } else {
586 pr_err("ceph_add_cap: couldn't find snap realm %llx\n",
587 realmino);
b8cd07e7 588 WARN_ON(!realm);
a8599bd8
SW
589 }
590 }
591
592 __check_cap_issue(ci, cap, issued);
593
594 /*
595 * If we are issued caps we don't want, or the mds' wanted
596 * value appears to be off, queue a check so we'll release
597 * later and/or update the mds wanted value.
598 */
599 actual_wanted = __ceph_caps_wanted(ci);
600 if ((wanted & ~actual_wanted) ||
601 (issued & ~actual_wanted & CEPH_CAP_ANY_WR)) {
602 dout(" issued %s, mds wanted %s, actual %s, queueing\n",
603 ceph_cap_string(issued), ceph_cap_string(wanted),
604 ceph_cap_string(actual_wanted));
605 __cap_delay_requeue(mdsc, ci);
606 }
607
b8c2f3ae
YZ
608 if (flags & CEPH_CAP_FLAG_AUTH) {
609 if (ci->i_auth_cap == NULL ||
d9ffc4f7 610 ceph_seq_cmp(ci->i_auth_cap->mseq, mseq) < 0) {
b8c2f3ae 611 ci->i_auth_cap = cap;
d9ffc4f7
YZ
612 cap->mds_wanted = wanted;
613 }
11df2dfb
YZ
614 } else {
615 WARN_ON(ci->i_auth_cap == cap);
8a92a119 616 }
a8599bd8
SW
617
618 dout("add_cap inode %p (%llx.%llx) cap %p %s now %s seq %d mds%d\n",
619 inode, ceph_vinop(inode), cap, ceph_cap_string(issued),
620 ceph_cap_string(issued|cap->issued), seq, mds);
621 cap->cap_id = cap_id;
622 cap->issued = issued;
623 cap->implemented |= issued;
d1b87809 624 if (ceph_seq_cmp(mseq, cap->mseq) > 0)
964266cc
YZ
625 cap->mds_wanted = wanted;
626 else
627 cap->mds_wanted |= wanted;
a8599bd8
SW
628 cap->seq = seq;
629 cap->issue_seq = seq;
630 cap->mseq = mseq;
685f9a5d 631 cap->cap_gen = session->s_cap_gen;
a8599bd8
SW
632
633 if (fmode >= 0)
634 __ceph_get_fmode(ci, fmode);
a8599bd8
SW
635}
636
637/*
638 * Return true if cap has not timed out and belongs to the current
639 * generation of the MDS session (i.e. has not gone 'stale' due to
640 * us losing touch with the mds).
641 */
642static int __cap_is_valid(struct ceph_cap *cap)
643{
644 unsigned long ttl;
cdac8303 645 u32 gen;
a8599bd8 646
d8fb02ab 647 spin_lock(&cap->session->s_gen_ttl_lock);
a8599bd8
SW
648 gen = cap->session->s_cap_gen;
649 ttl = cap->session->s_cap_ttl;
d8fb02ab 650 spin_unlock(&cap->session->s_gen_ttl_lock);
a8599bd8 651
685f9a5d 652 if (cap->cap_gen < gen || time_after_eq(jiffies, ttl)) {
a8599bd8
SW
653 dout("__cap_is_valid %p cap %p issued %s "
654 "but STALE (gen %u vs %u)\n", &cap->ci->vfs_inode,
685f9a5d 655 cap, ceph_cap_string(cap->issued), cap->cap_gen, gen);
a8599bd8
SW
656 return 0;
657 }
658
659 return 1;
660}
661
662/*
663 * Return set of valid cap bits issued to us. Note that caps time
664 * out, and may be invalidated in bulk if the client session times out
665 * and session->s_cap_gen is bumped.
666 */
667int __ceph_caps_issued(struct ceph_inode_info *ci, int *implemented)
668{
d9df2783 669 int have = ci->i_snap_caps;
a8599bd8
SW
670 struct ceph_cap *cap;
671 struct rb_node *p;
672
673 if (implemented)
674 *implemented = 0;
675 for (p = rb_first(&ci->i_caps); p; p = rb_next(p)) {
676 cap = rb_entry(p, struct ceph_cap, ci_node);
677 if (!__cap_is_valid(cap))
678 continue;
679 dout("__ceph_caps_issued %p cap %p issued %s\n",
680 &ci->vfs_inode, cap, ceph_cap_string(cap->issued));
681 have |= cap->issued;
682 if (implemented)
683 *implemented |= cap->implemented;
684 }
b1530f57
YZ
685 /*
686 * exclude caps issued by non-auth MDS, but are been revoking
687 * by the auth MDS. The non-auth MDS should be revoking/exporting
688 * these caps, but the message is delayed.
689 */
690 if (ci->i_auth_cap) {
691 cap = ci->i_auth_cap;
692 have &= ~cap->implemented | cap->issued;
693 }
a8599bd8
SW
694 return have;
695}
696
697/*
698 * Get cap bits issued by caps other than @ocap
699 */
700int __ceph_caps_issued_other(struct ceph_inode_info *ci, struct ceph_cap *ocap)
701{
702 int have = ci->i_snap_caps;
703 struct ceph_cap *cap;
704 struct rb_node *p;
705
706 for (p = rb_first(&ci->i_caps); p; p = rb_next(p)) {
707 cap = rb_entry(p, struct ceph_cap, ci_node);
708 if (cap == ocap)
709 continue;
710 if (!__cap_is_valid(cap))
711 continue;
712 have |= cap->issued;
713 }
714 return have;
715}
716
717/*
718 * Move a cap to the end of the LRU (oldest caps at list head, newest
719 * at list tail).
720 */
721static void __touch_cap(struct ceph_cap *cap)
722{
723 struct ceph_mds_session *s = cap->session;
724
a8599bd8 725 spin_lock(&s->s_cap_lock);
7c1332b8 726 if (s->s_cap_iterator == NULL) {
5dacf091
SW
727 dout("__touch_cap %p cap %p mds%d\n", &cap->ci->vfs_inode, cap,
728 s->s_mds);
729 list_move_tail(&cap->session_caps, &s->s_caps);
730 } else {
731 dout("__touch_cap %p cap %p mds%d NOP, iterating over caps\n",
732 &cap->ci->vfs_inode, cap, s->s_mds);
733 }
a8599bd8
SW
734 spin_unlock(&s->s_cap_lock);
735}
736
737/*
738 * Check if we hold the given mask. If so, move the cap(s) to the
739 * front of their respective LRUs. (This is the preferred way for
740 * callers to check for caps they want.)
741 */
742int __ceph_caps_issued_mask(struct ceph_inode_info *ci, int mask, int touch)
743{
744 struct ceph_cap *cap;
745 struct rb_node *p;
746 int have = ci->i_snap_caps;
747
748 if ((have & mask) == mask) {
749 dout("__ceph_caps_issued_mask %p snap issued %s"
750 " (mask %s)\n", &ci->vfs_inode,
751 ceph_cap_string(have),
752 ceph_cap_string(mask));
753 return 1;
754 }
755
756 for (p = rb_first(&ci->i_caps); p; p = rb_next(p)) {
757 cap = rb_entry(p, struct ceph_cap, ci_node);
758 if (!__cap_is_valid(cap))
759 continue;
760 if ((cap->issued & mask) == mask) {
761 dout("__ceph_caps_issued_mask %p cap %p issued %s"
762 " (mask %s)\n", &ci->vfs_inode, cap,
763 ceph_cap_string(cap->issued),
764 ceph_cap_string(mask));
765 if (touch)
766 __touch_cap(cap);
767 return 1;
768 }
769
770 /* does a combination of caps satisfy mask? */
771 have |= cap->issued;
772 if ((have & mask) == mask) {
773 dout("__ceph_caps_issued_mask %p combo issued %s"
774 " (mask %s)\n", &ci->vfs_inode,
775 ceph_cap_string(cap->issued),
776 ceph_cap_string(mask));
777 if (touch) {
778 struct rb_node *q;
779
25985edc 780 /* touch this + preceding caps */
a8599bd8
SW
781 __touch_cap(cap);
782 for (q = rb_first(&ci->i_caps); q != p;
783 q = rb_next(q)) {
784 cap = rb_entry(q, struct ceph_cap,
785 ci_node);
786 if (!__cap_is_valid(cap))
787 continue;
788 __touch_cap(cap);
789 }
790 }
791 return 1;
792 }
793 }
794
795 return 0;
796}
797
798/*
799 * Return true if mask caps are currently being revoked by an MDS.
800 */
6ee6b953
YZ
801int __ceph_caps_revoking_other(struct ceph_inode_info *ci,
802 struct ceph_cap *ocap, int mask)
a8599bd8 803{
a8599bd8
SW
804 struct ceph_cap *cap;
805 struct rb_node *p;
a8599bd8 806
a8599bd8
SW
807 for (p = rb_first(&ci->i_caps); p; p = rb_next(p)) {
808 cap = rb_entry(p, struct ceph_cap, ci_node);
9563f88c 809 if (cap != ocap &&
6ee6b953
YZ
810 (cap->implemented & ~cap->issued & mask))
811 return 1;
a8599bd8 812 }
6ee6b953
YZ
813 return 0;
814}
815
816int ceph_caps_revoking(struct ceph_inode_info *ci, int mask)
817{
818 struct inode *inode = &ci->vfs_inode;
819 int ret;
820
821 spin_lock(&ci->i_ceph_lock);
822 ret = __ceph_caps_revoking_other(ci, NULL, mask);
be655596 823 spin_unlock(&ci->i_ceph_lock);
a8599bd8
SW
824 dout("ceph_caps_revoking %p %s = %d\n", inode,
825 ceph_cap_string(mask), ret);
826 return ret;
827}
828
829int __ceph_caps_used(struct ceph_inode_info *ci)
830{
831 int used = 0;
832 if (ci->i_pin_ref)
833 used |= CEPH_CAP_PIN;
834 if (ci->i_rd_ref)
835 used |= CEPH_CAP_FILE_RD;
a43fb731 836 if (ci->i_rdcache_ref || ci->vfs_inode.i_data.nrpages)
a8599bd8
SW
837 used |= CEPH_CAP_FILE_CACHE;
838 if (ci->i_wr_ref)
839 used |= CEPH_CAP_FILE_WR;
d3d0720d 840 if (ci->i_wb_ref || ci->i_wrbuffer_ref)
a8599bd8
SW
841 used |= CEPH_CAP_FILE_BUFFER;
842 return used;
843}
844
845/*
846 * wanted, by virtue of open file modes
847 */
848int __ceph_caps_file_wanted(struct ceph_inode_info *ci)
849{
850 int want = 0;
851 int mode;
33caad32 852 for (mode = 0; mode < CEPH_FILE_MODE_NUM; mode++)
a8599bd8
SW
853 if (ci->i_nr_by_mode[mode])
854 want |= ceph_caps_for_mode(mode);
855 return want;
856}
857
858/*
859 * Return caps we have registered with the MDS(s) as 'wanted'.
860 */
861int __ceph_caps_mds_wanted(struct ceph_inode_info *ci)
862{
863 struct ceph_cap *cap;
864 struct rb_node *p;
865 int mds_wanted = 0;
866
867 for (p = rb_first(&ci->i_caps); p; p = rb_next(p)) {
868 cap = rb_entry(p, struct ceph_cap, ci_node);
869 if (!__cap_is_valid(cap))
870 continue;
a2550604
YZ
871 if (cap == ci->i_auth_cap)
872 mds_wanted |= cap->mds_wanted;
873 else
874 mds_wanted |= (cap->mds_wanted & ~CEPH_CAP_ANY_FILE_WR);
a8599bd8
SW
875 }
876 return mds_wanted;
877}
878
879/*
be655596 880 * called under i_ceph_lock
a8599bd8
SW
881 */
882static int __ceph_is_any_caps(struct ceph_inode_info *ci)
883{
d9df2783 884 return !RB_EMPTY_ROOT(&ci->i_caps);
a8599bd8
SW
885}
886
9215aeea
YZ
887int ceph_is_any_caps(struct inode *inode)
888{
889 struct ceph_inode_info *ci = ceph_inode(inode);
890 int ret;
891
892 spin_lock(&ci->i_ceph_lock);
893 ret = __ceph_is_any_caps(ci);
894 spin_unlock(&ci->i_ceph_lock);
895
896 return ret;
897}
898
db40cc17
YZ
899static void drop_inode_snap_realm(struct ceph_inode_info *ci)
900{
901 struct ceph_snap_realm *realm = ci->i_snap_realm;
902 spin_lock(&realm->inodes_with_caps_lock);
903 list_del_init(&ci->i_snap_realm_item);
904 ci->i_snap_realm_counter++;
905 ci->i_snap_realm = NULL;
906 spin_unlock(&realm->inodes_with_caps_lock);
907 ceph_put_snap_realm(ceph_sb_to_client(ci->vfs_inode.i_sb)->mdsc,
908 realm);
909}
910
a8599bd8 911/*
f818a736
SW
912 * Remove a cap. Take steps to deal with a racing iterate_session_caps.
913 *
be655596 914 * caller should hold i_ceph_lock.
a6369741 915 * caller will not hold session s_mutex if called from destroy_inode.
a8599bd8 916 */
a096b09a 917void __ceph_remove_cap(struct ceph_cap *cap, bool queue_release)
a8599bd8
SW
918{
919 struct ceph_mds_session *session = cap->session;
920 struct ceph_inode_info *ci = cap->ci;
640ef79d 921 struct ceph_mds_client *mdsc =
3d14c5d2 922 ceph_sb_to_client(ci->vfs_inode.i_sb)->mdsc;
f818a736 923 int removed = 0;
a8599bd8
SW
924
925 dout("__ceph_remove_cap %p from %p\n", cap, &ci->vfs_inode);
926
7c1332b8
SW
927 /* remove from session list */
928 spin_lock(&session->s_cap_lock);
99a9c273
YZ
929 /*
930 * s_cap_reconnect is protected by s_cap_lock. no one changes
931 * s_cap_gen while session is in the reconnect state.
932 */
933 if (queue_release &&
934 (!session->s_cap_reconnect ||
935 cap->cap_gen == session->s_cap_gen))
a096b09a
YZ
936 __queue_cap_release(session, ci->i_vino.ino, cap->cap_id,
937 cap->mseq, cap->issue_seq);
938
7c1332b8
SW
939 if (session->s_cap_iterator == cap) {
940 /* not yet, we are iterating over this very cap */
941 dout("__ceph_remove_cap delaying %p removal from session %p\n",
942 cap, cap->session);
943 } else {
944 list_del_init(&cap->session_caps);
945 session->s_nr_caps--;
946 cap->session = NULL;
f818a736 947 removed = 1;
7c1332b8 948 }
f818a736
SW
949 /* protect backpointer with s_cap_lock: see iterate_session_caps */
950 cap->ci = NULL;
7c1332b8
SW
951 spin_unlock(&session->s_cap_lock);
952
f818a736
SW
953 /* remove from inode list */
954 rb_erase(&cap->ci_node, &ci->i_caps);
955 if (ci->i_auth_cap == cap)
956 ci->i_auth_cap = NULL;
957
958 if (removed)
37151668 959 ceph_put_cap(mdsc, cap);
a8599bd8 960
db40cc17
YZ
961 /* when reconnect denied, we remove session caps forcibly,
962 * i_wr_ref can be non-zero. If there are ongoing write,
963 * keep i_snap_realm.
964 */
965 if (!__ceph_is_any_caps(ci) && ci->i_wr_ref == 0 && ci->i_snap_realm)
966 drop_inode_snap_realm(ci);
967
a8599bd8
SW
968 if (!__ceph_is_any_real_caps(ci))
969 __cap_delay_cancel(mdsc, ci);
970}
971
972/*
973 * Build and send a cap message to the given MDS.
974 *
975 * Caller should be holding s_mutex.
976 */
977static int send_cap_msg(struct ceph_mds_session *session,
978 u64 ino, u64 cid, int op,
979 int caps, int wanted, int dirty,
980 u32 seq, u64 flush_tid, u32 issue_seq, u32 mseq,
981 u64 size, u64 max_size,
982 struct timespec *mtime, struct timespec *atime,
983 u64 time_warp_seq,
05cb11c1 984 kuid_t uid, kgid_t gid, umode_t mode,
a8599bd8
SW
985 u64 xattr_version,
986 struct ceph_buffer *xattrs_buf,
e20d258d 987 u64 follows, bool inline_data)
a8599bd8
SW
988{
989 struct ceph_mds_caps *fc;
990 struct ceph_msg *msg;
e20d258d
YZ
991 void *p;
992 size_t extra_len;
a8599bd8
SW
993
994 dout("send_cap_msg %s %llx %llx caps %s wanted %s dirty %s"
995 " seq %u/%u mseq %u follows %lld size %llu/%llu"
996 " xattr_ver %llu xattr_len %d\n", ceph_cap_op_name(op),
997 cid, ino, ceph_cap_string(caps), ceph_cap_string(wanted),
998 ceph_cap_string(dirty),
999 seq, issue_seq, mseq, follows, size, max_size,
1000 xattr_version, xattrs_buf ? (int)xattrs_buf->vec.iov_len : 0);
1001
e20d258d
YZ
1002 /* flock buffer size + inline version + inline data size */
1003 extra_len = 4 + 8 + 4;
1004 msg = ceph_msg_new(CEPH_MSG_CLIENT_CAPS, sizeof(*fc) + extra_len,
1005 GFP_NOFS, false);
a79832f2
SW
1006 if (!msg)
1007 return -ENOMEM;
a8599bd8 1008
6df058c0 1009 msg->hdr.tid = cpu_to_le64(flush_tid);
a8599bd8 1010
6df058c0 1011 fc = msg->front.iov_base;
a8599bd8
SW
1012 memset(fc, 0, sizeof(*fc));
1013
1014 fc->cap_id = cpu_to_le64(cid);
1015 fc->op = cpu_to_le32(op);
1016 fc->seq = cpu_to_le32(seq);
a8599bd8
SW
1017 fc->issue_seq = cpu_to_le32(issue_seq);
1018 fc->migrate_seq = cpu_to_le32(mseq);
1019 fc->caps = cpu_to_le32(caps);
1020 fc->wanted = cpu_to_le32(wanted);
1021 fc->dirty = cpu_to_le32(dirty);
1022 fc->ino = cpu_to_le64(ino);
1023 fc->snap_follows = cpu_to_le64(follows);
1024
1025 fc->size = cpu_to_le64(size);
1026 fc->max_size = cpu_to_le64(max_size);
1027 if (mtime)
1028 ceph_encode_timespec(&fc->mtime, mtime);
1029 if (atime)
1030 ceph_encode_timespec(&fc->atime, atime);
1031 fc->time_warp_seq = cpu_to_le32(time_warp_seq);
1032
05cb11c1
EB
1033 fc->uid = cpu_to_le32(from_kuid(&init_user_ns, uid));
1034 fc->gid = cpu_to_le32(from_kgid(&init_user_ns, gid));
a8599bd8
SW
1035 fc->mode = cpu_to_le32(mode);
1036
e20d258d
YZ
1037 p = fc + 1;
1038 /* flock buffer size */
1039 ceph_encode_32(&p, 0);
1040 /* inline version */
1041 ceph_encode_64(&p, inline_data ? 0 : CEPH_INLINE_NONE);
1042 /* inline data size */
1043 ceph_encode_32(&p, 0);
1044
a8599bd8
SW
1045 fc->xattr_version = cpu_to_le64(xattr_version);
1046 if (xattrs_buf) {
1047 msg->middle = ceph_buffer_get(xattrs_buf);
1048 fc->xattr_len = cpu_to_le32(xattrs_buf->vec.iov_len);
1049 msg->hdr.middle_len = cpu_to_le32(xattrs_buf->vec.iov_len);
1050 }
1051
1052 ceph_con_send(&session->s_con, msg);
1053 return 0;
1054}
1055
d40ee0dc
YZ
1056void __queue_cap_release(struct ceph_mds_session *session,
1057 u64 ino, u64 cap_id, u32 migrate_seq,
1058 u32 issue_seq)
3d7ded4d
SW
1059{
1060 struct ceph_msg *msg;
1061 struct ceph_mds_cap_release *head;
1062 struct ceph_mds_cap_item *item;
1063
3d7ded4d
SW
1064 BUG_ON(!session->s_num_cap_releases);
1065 msg = list_first_entry(&session->s_cap_releases,
1066 struct ceph_msg, list_head);
1067
1068 dout(" adding %llx release to mds%d msg %p (%d left)\n",
1069 ino, session->s_mds, msg, session->s_num_cap_releases);
1070
1071 BUG_ON(msg->front.iov_len + sizeof(*item) > PAGE_CACHE_SIZE);
1072 head = msg->front.iov_base;
b905a7f8 1073 le32_add_cpu(&head->num, 1);
3d7ded4d
SW
1074 item = msg->front.iov_base + msg->front.iov_len;
1075 item->ino = cpu_to_le64(ino);
1076 item->cap_id = cpu_to_le64(cap_id);
1077 item->migrate_seq = cpu_to_le32(migrate_seq);
1078 item->seq = cpu_to_le32(issue_seq);
1079
1080 session->s_num_cap_releases--;
1081
1082 msg->front.iov_len += sizeof(*item);
1083 if (le32_to_cpu(head->num) == CEPH_CAPS_PER_RELEASE) {
1084 dout(" release msg %p full\n", msg);
1085 list_move_tail(&msg->list_head, &session->s_cap_releases_done);
1086 } else {
1087 dout(" release msg %p at %d/%d (%d)\n", msg,
1088 (int)le32_to_cpu(head->num),
1089 (int)CEPH_CAPS_PER_RELEASE,
1090 (int)msg->front.iov_len);
1091 }
3d7ded4d
SW
1092}
1093
a8599bd8 1094/*
a6369741 1095 * Queue cap releases when an inode is dropped from our cache. Since
be655596 1096 * inode is about to be destroyed, there is no need for i_ceph_lock.
a8599bd8
SW
1097 */
1098void ceph_queue_caps_release(struct inode *inode)
1099{
1100 struct ceph_inode_info *ci = ceph_inode(inode);
1101 struct rb_node *p;
1102
a8599bd8
SW
1103 p = rb_first(&ci->i_caps);
1104 while (p) {
1105 struct ceph_cap *cap = rb_entry(p, struct ceph_cap, ci_node);
a8599bd8 1106 p = rb_next(p);
a096b09a 1107 __ceph_remove_cap(cap, true);
a8599bd8 1108 }
a8599bd8
SW
1109}
1110
1111/*
1112 * Send a cap msg on the given inode. Update our caps state, then
be655596 1113 * drop i_ceph_lock and send the message.
a8599bd8
SW
1114 *
1115 * Make note of max_size reported/requested from mds, revoked caps
1116 * that have now been implemented.
1117 *
1118 * Make half-hearted attempt ot to invalidate page cache if we are
1119 * dropping RDCACHE. Note that this will leave behind locked pages
1120 * that we'll then need to deal with elsewhere.
1121 *
1122 * Return non-zero if delayed release, or we experienced an error
1123 * such that the caller should requeue + retry later.
1124 *
be655596 1125 * called with i_ceph_lock, then drops it.
a8599bd8
SW
1126 * caller should hold snap_rwsem (read), s_mutex.
1127 */
1128static int __send_cap(struct ceph_mds_client *mdsc, struct ceph_cap *cap,
1129 int op, int used, int want, int retain, int flushing,
1130 unsigned *pflush_tid)
be655596 1131 __releases(cap->ci->i_ceph_lock)
a8599bd8
SW
1132{
1133 struct ceph_inode_info *ci = cap->ci;
1134 struct inode *inode = &ci->vfs_inode;
1135 u64 cap_id = cap->cap_id;
68c28323 1136 int held, revoking, dropping, keep;
a8599bd8
SW
1137 u64 seq, issue_seq, mseq, time_warp_seq, follows;
1138 u64 size, max_size;
1139 struct timespec mtime, atime;
1140 int wake = 0;
5706b27d 1141 umode_t mode;
05cb11c1
EB
1142 kuid_t uid;
1143 kgid_t gid;
a8599bd8
SW
1144 struct ceph_mds_session *session;
1145 u64 xattr_version = 0;
082afec9 1146 struct ceph_buffer *xattr_blob = NULL;
a8599bd8
SW
1147 int delayed = 0;
1148 u64 flush_tid = 0;
1149 int i;
1150 int ret;
e20d258d 1151 bool inline_data;
a8599bd8 1152
68c28323
SW
1153 held = cap->issued | cap->implemented;
1154 revoking = cap->implemented & ~cap->issued;
1155 retain &= ~revoking;
1156 dropping = cap->issued & ~retain;
1157
a8599bd8
SW
1158 dout("__send_cap %p cap %p session %p %s -> %s (revoking %s)\n",
1159 inode, cap, cap->session,
1160 ceph_cap_string(held), ceph_cap_string(held & retain),
1161 ceph_cap_string(revoking));
1162 BUG_ON((retain & CEPH_CAP_PIN) == 0);
1163
1164 session = cap->session;
1165
1166 /* don't release wanted unless we've waited a bit. */
1167 if ((ci->i_ceph_flags & CEPH_I_NODELAY) == 0 &&
1168 time_before(jiffies, ci->i_hold_caps_min)) {
1169 dout(" delaying issued %s -> %s, wanted %s -> %s on send\n",
1170 ceph_cap_string(cap->issued),
1171 ceph_cap_string(cap->issued & retain),
1172 ceph_cap_string(cap->mds_wanted),
1173 ceph_cap_string(want));
1174 want |= cap->mds_wanted;
1175 retain |= cap->issued;
1176 delayed = 1;
1177 }
1178 ci->i_ceph_flags &= ~(CEPH_I_NODELAY | CEPH_I_FLUSH);
1179
1180 cap->issued &= retain; /* drop bits we don't want */
1181 if (cap->implemented & ~cap->issued) {
1182 /*
1183 * Wake up any waiters on wanted -> needed transition.
1184 * This is due to the weird transition from buffered
1185 * to sync IO... we need to flush dirty pages _before_
1186 * allowing sync writes to avoid reordering.
1187 */
1188 wake = 1;
1189 }
1190 cap->implemented &= cap->issued | used;
1191 cap->mds_wanted = want;
1192
1193 if (flushing) {
1194 /*
1195 * assign a tid for flush operations so we can avoid
1196 * flush1 -> dirty1 -> flush2 -> flushack1 -> mark
1197 * clean type races. track latest tid for every bit
1198 * so we can handle flush AxFw, flush Fw, and have the
1199 * first ack clean Ax.
1200 */
1201 flush_tid = ++ci->i_cap_flush_last_tid;
1202 if (pflush_tid)
1203 *pflush_tid = flush_tid;
1204 dout(" cap_flush_tid %d\n", (int)flush_tid);
1205 for (i = 0; i < CEPH_CAP_BITS; i++)
1206 if (flushing & (1 << i))
1207 ci->i_cap_flush_tid[i] = flush_tid;
7d8cb26d
SW
1208
1209 follows = ci->i_head_snapc->seq;
1210 } else {
1211 follows = 0;
a8599bd8
SW
1212 }
1213
1214 keep = cap->implemented;
1215 seq = cap->seq;
1216 issue_seq = cap->issue_seq;
1217 mseq = cap->mseq;
1218 size = inode->i_size;
1219 ci->i_reported_size = size;
1220 max_size = ci->i_wanted_max_size;
1221 ci->i_requested_max_size = max_size;
1222 mtime = inode->i_mtime;
1223 atime = inode->i_atime;
1224 time_warp_seq = ci->i_time_warp_seq;
a8599bd8
SW
1225 uid = inode->i_uid;
1226 gid = inode->i_gid;
1227 mode = inode->i_mode;
1228
082afec9 1229 if (flushing & CEPH_CAP_XATTR_EXCL) {
a8599bd8 1230 __ceph_build_xattrs_blob(ci);
082afec9
SW
1231 xattr_blob = ci->i_xattrs.blob;
1232 xattr_version = ci->i_xattrs.version;
a8599bd8
SW
1233 }
1234
e20d258d
YZ
1235 inline_data = ci->i_inline_version != CEPH_INLINE_NONE;
1236
be655596 1237 spin_unlock(&ci->i_ceph_lock);
a8599bd8 1238
a8599bd8
SW
1239 ret = send_cap_msg(session, ceph_vino(inode).ino, cap_id,
1240 op, keep, want, flushing, seq, flush_tid, issue_seq, mseq,
1241 size, max_size, &mtime, &atime, time_warp_seq,
082afec9 1242 uid, gid, mode, xattr_version, xattr_blob,
e20d258d 1243 follows, inline_data);
a8599bd8
SW
1244 if (ret < 0) {
1245 dout("error sending cap msg, must requeue %p\n", inode);
1246 delayed = 1;
1247 }
1248
1249 if (wake)
03066f23 1250 wake_up_all(&ci->i_cap_wq);
a8599bd8
SW
1251
1252 return delayed;
1253}
1254
1255/*
1256 * When a snapshot is taken, clients accumulate dirty metadata on
1257 * inodes with capabilities in ceph_cap_snaps to describe the file
1258 * state at the time the snapshot was taken. This must be flushed
1259 * asynchronously back to the MDS once sync writes complete and dirty
1260 * data is written out.
1261 *
e835124c
SW
1262 * Unless @again is true, skip cap_snaps that were already sent to
1263 * the MDS (i.e., during this session).
1264 *
be655596 1265 * Called under i_ceph_lock. Takes s_mutex as needed.
a8599bd8
SW
1266 */
1267void __ceph_flush_snaps(struct ceph_inode_info *ci,
e835124c
SW
1268 struct ceph_mds_session **psession,
1269 int again)
be655596
SW
1270 __releases(ci->i_ceph_lock)
1271 __acquires(ci->i_ceph_lock)
a8599bd8
SW
1272{
1273 struct inode *inode = &ci->vfs_inode;
1274 int mds;
1275 struct ceph_cap_snap *capsnap;
1276 u32 mseq;
3d14c5d2 1277 struct ceph_mds_client *mdsc = ceph_inode_to_client(inode)->mdsc;
a8599bd8
SW
1278 struct ceph_mds_session *session = NULL; /* if session != NULL, we hold
1279 session->s_mutex */
1280 u64 next_follows = 0; /* keep track of how far we've gotten through the
1281 i_cap_snaps list, and skip these entries next time
1282 around to avoid an infinite loop */
1283
1284 if (psession)
1285 session = *psession;
1286
1287 dout("__flush_snaps %p\n", inode);
1288retry:
1289 list_for_each_entry(capsnap, &ci->i_cap_snaps, ci_item) {
1290 /* avoid an infiniute loop after retry */
1291 if (capsnap->follows < next_follows)
1292 continue;
1293 /*
1294 * we need to wait for sync writes to complete and for dirty
1295 * pages to be written out.
1296 */
1297 if (capsnap->dirty_pages || capsnap->writing)
cfc0bf66 1298 break;
a8599bd8 1299
86056090
YZ
1300 /* should be removed by ceph_try_drop_cap_snap() */
1301 BUG_ON(!capsnap->need_flush);
819ccbfa 1302
a8599bd8 1303 /* pick mds, take s_mutex */
ca81f3f6
SW
1304 if (ci->i_auth_cap == NULL) {
1305 dout("no auth cap (migrating?), doing nothing\n");
1306 goto out;
1307 }
e835124c
SW
1308
1309 /* only flush each capsnap once */
1310 if (!again && !list_empty(&capsnap->flushing_item)) {
1311 dout("already flushed %p, skipping\n", capsnap);
1312 continue;
1313 }
1314
ca81f3f6
SW
1315 mds = ci->i_auth_cap->session->s_mds;
1316 mseq = ci->i_auth_cap->mseq;
1317
a8599bd8
SW
1318 if (session && session->s_mds != mds) {
1319 dout("oops, wrong session %p mutex\n", session);
1320 mutex_unlock(&session->s_mutex);
1321 ceph_put_mds_session(session);
1322 session = NULL;
1323 }
1324 if (!session) {
be655596 1325 spin_unlock(&ci->i_ceph_lock);
a8599bd8
SW
1326 mutex_lock(&mdsc->mutex);
1327 session = __ceph_lookup_mds_session(mdsc, mds);
1328 mutex_unlock(&mdsc->mutex);
1329 if (session) {
1330 dout("inverting session/ino locks on %p\n",
1331 session);
1332 mutex_lock(&session->s_mutex);
1333 }
1334 /*
1335 * if session == NULL, we raced against a cap
ca81f3f6
SW
1336 * deletion or migration. retry, and we'll
1337 * get a better @mds value next time.
a8599bd8 1338 */
be655596 1339 spin_lock(&ci->i_ceph_lock);
a8599bd8
SW
1340 goto retry;
1341 }
1342
1343 capsnap->flush_tid = ++ci->i_cap_flush_last_tid;
1344 atomic_inc(&capsnap->nref);
1345 if (!list_empty(&capsnap->flushing_item))
1346 list_del_init(&capsnap->flushing_item);
1347 list_add_tail(&capsnap->flushing_item,
1348 &session->s_cap_snaps_flushing);
be655596 1349 spin_unlock(&ci->i_ceph_lock);
a8599bd8 1350
cfc0bf66
SW
1351 dout("flush_snaps %p cap_snap %p follows %lld tid %llu\n",
1352 inode, capsnap, capsnap->follows, capsnap->flush_tid);
a8599bd8
SW
1353 send_cap_msg(session, ceph_vino(inode).ino, 0,
1354 CEPH_CAP_OP_FLUSHSNAP, capsnap->issued, 0,
1355 capsnap->dirty, 0, capsnap->flush_tid, 0, mseq,
1356 capsnap->size, 0,
1357 &capsnap->mtime, &capsnap->atime,
1358 capsnap->time_warp_seq,
1359 capsnap->uid, capsnap->gid, capsnap->mode,
4a625be4 1360 capsnap->xattr_version, capsnap->xattr_blob,
e20d258d 1361 capsnap->follows, capsnap->inline_data);
a8599bd8
SW
1362
1363 next_follows = capsnap->follows + 1;
1364 ceph_put_cap_snap(capsnap);
1365
be655596 1366 spin_lock(&ci->i_ceph_lock);
a8599bd8
SW
1367 goto retry;
1368 }
1369
1370 /* we flushed them all; remove this inode from the queue */
1371 spin_lock(&mdsc->snap_flush_lock);
1372 list_del_init(&ci->i_snap_flush_item);
1373 spin_unlock(&mdsc->snap_flush_lock);
1374
ca81f3f6 1375out:
a8599bd8
SW
1376 if (psession)
1377 *psession = session;
1378 else if (session) {
1379 mutex_unlock(&session->s_mutex);
1380 ceph_put_mds_session(session);
1381 }
1382}
1383
1384static void ceph_flush_snaps(struct ceph_inode_info *ci)
1385{
be655596 1386 spin_lock(&ci->i_ceph_lock);
e835124c 1387 __ceph_flush_snaps(ci, NULL, 0);
be655596 1388 spin_unlock(&ci->i_ceph_lock);
a8599bd8
SW
1389}
1390
76e3b390 1391/*
fca65b4a
SW
1392 * Mark caps dirty. If inode is newly dirty, return the dirty flags.
1393 * Caller is then responsible for calling __mark_inode_dirty with the
1394 * returned flags value.
76e3b390 1395 */
fca65b4a 1396int __ceph_mark_dirty_caps(struct ceph_inode_info *ci, int mask)
76e3b390 1397{
640ef79d 1398 struct ceph_mds_client *mdsc =
3d14c5d2 1399 ceph_sb_to_client(ci->vfs_inode.i_sb)->mdsc;
76e3b390
SW
1400 struct inode *inode = &ci->vfs_inode;
1401 int was = ci->i_dirty_caps;
1402 int dirty = 0;
1403
571ade33
YZ
1404 if (!ci->i_auth_cap) {
1405 pr_warn("__mark_dirty_caps %p %llx mask %s, "
1406 "but no auth cap (session was closed?)\n",
1407 inode, ceph_ino(inode), ceph_cap_string(mask));
1408 return 0;
1409 }
1410
76e3b390
SW
1411 dout("__mark_dirty_caps %p %s dirty %s -> %s\n", &ci->vfs_inode,
1412 ceph_cap_string(mask), ceph_cap_string(was),
1413 ceph_cap_string(was | mask));
1414 ci->i_dirty_caps |= mask;
1415 if (was == 0) {
604d1b02
YZ
1416 if (!ci->i_head_snapc) {
1417 WARN_ON_ONCE(!rwsem_is_locked(&mdsc->snap_rwsem));
7d8cb26d
SW
1418 ci->i_head_snapc = ceph_get_snap_context(
1419 ci->i_snap_realm->cached_context);
604d1b02 1420 }
0685235f
YZ
1421 dout(" inode %p now dirty snapc %p auth cap %p\n",
1422 &ci->vfs_inode, ci->i_head_snapc, ci->i_auth_cap);
76e3b390
SW
1423 BUG_ON(!list_empty(&ci->i_dirty_item));
1424 spin_lock(&mdsc->cap_dirty_lock);
11df2dfb 1425 list_add(&ci->i_dirty_item, &mdsc->cap_dirty);
76e3b390
SW
1426 spin_unlock(&mdsc->cap_dirty_lock);
1427 if (ci->i_flushing_caps == 0) {
3772d26d 1428 ihold(inode);
76e3b390
SW
1429 dirty |= I_DIRTY_SYNC;
1430 }
1431 }
1432 BUG_ON(list_empty(&ci->i_dirty_item));
1433 if (((was | ci->i_flushing_caps) & CEPH_CAP_FILE_BUFFER) &&
1434 (mask & CEPH_CAP_FILE_BUFFER))
1435 dirty |= I_DIRTY_DATASYNC;
76e3b390 1436 __cap_delay_requeue(mdsc, ci);
fca65b4a 1437 return dirty;
76e3b390
SW
1438}
1439
a8599bd8
SW
1440/*
1441 * Add dirty inode to the flushing list. Assigned a seq number so we
1442 * can wait for caps to flush without starving.
cdc35f96 1443 *
be655596 1444 * Called under i_ceph_lock.
a8599bd8 1445 */
cdc35f96 1446static int __mark_caps_flushing(struct inode *inode,
a8599bd8
SW
1447 struct ceph_mds_session *session)
1448{
3d14c5d2 1449 struct ceph_mds_client *mdsc = ceph_sb_to_client(inode->i_sb)->mdsc;
a8599bd8 1450 struct ceph_inode_info *ci = ceph_inode(inode);
cdc35f96 1451 int flushing;
50b885b9 1452
cdc35f96 1453 BUG_ON(ci->i_dirty_caps == 0);
a8599bd8 1454 BUG_ON(list_empty(&ci->i_dirty_item));
cdc35f96
SW
1455
1456 flushing = ci->i_dirty_caps;
1457 dout("__mark_caps_flushing flushing %s, flushing_caps %s -> %s\n",
1458 ceph_cap_string(flushing),
1459 ceph_cap_string(ci->i_flushing_caps),
1460 ceph_cap_string(ci->i_flushing_caps | flushing));
1461 ci->i_flushing_caps |= flushing;
1462 ci->i_dirty_caps = 0;
afcdaea3 1463 dout(" inode %p now !dirty\n", inode);
cdc35f96 1464
a8599bd8 1465 spin_lock(&mdsc->cap_dirty_lock);
afcdaea3
SW
1466 list_del_init(&ci->i_dirty_item);
1467
a8599bd8 1468 if (list_empty(&ci->i_flushing_item)) {
d3383a8e 1469 ci->i_cap_flush_seq = ++mdsc->cap_flush_seq;
a8599bd8
SW
1470 list_add_tail(&ci->i_flushing_item, &session->s_cap_flushing);
1471 mdsc->num_cap_flushing++;
afcdaea3
SW
1472 dout(" inode %p now flushing seq %lld\n", inode,
1473 ci->i_cap_flush_seq);
1474 } else {
1475 list_move_tail(&ci->i_flushing_item, &session->s_cap_flushing);
1476 dout(" inode %p now flushing (more) seq %lld\n", inode,
a8599bd8
SW
1477 ci->i_cap_flush_seq);
1478 }
1479 spin_unlock(&mdsc->cap_dirty_lock);
cdc35f96
SW
1480
1481 return flushing;
a8599bd8
SW
1482}
1483
5ecad6fd
SW
1484/*
1485 * try to invalidate mapping pages without blocking.
1486 */
5ecad6fd
SW
1487static int try_nonblocking_invalidate(struct inode *inode)
1488{
1489 struct ceph_inode_info *ci = ceph_inode(inode);
1490 u32 invalidating_gen = ci->i_rdcache_gen;
1491
be655596 1492 spin_unlock(&ci->i_ceph_lock);
5ecad6fd 1493 invalidate_mapping_pages(&inode->i_data, 0, -1);
be655596 1494 spin_lock(&ci->i_ceph_lock);
5ecad6fd 1495
18a38193 1496 if (inode->i_data.nrpages == 0 &&
5ecad6fd
SW
1497 invalidating_gen == ci->i_rdcache_gen) {
1498 /* success. */
1499 dout("try_nonblocking_invalidate %p success\n", inode);
cd045cb4
SW
1500 /* save any racing async invalidate some trouble */
1501 ci->i_rdcache_revoking = ci->i_rdcache_gen - 1;
5ecad6fd
SW
1502 return 0;
1503 }
1504 dout("try_nonblocking_invalidate %p failed\n", inode);
1505 return -1;
1506}
1507
a8599bd8
SW
1508/*
1509 * Swiss army knife function to examine currently used and wanted
1510 * versus held caps. Release, flush, ack revoked caps to mds as
1511 * appropriate.
1512 *
1513 * CHECK_CAPS_NODELAY - caller is delayed work and we should not delay
1514 * cap release further.
1515 * CHECK_CAPS_AUTHONLY - we should only check the auth cap
1516 * CHECK_CAPS_FLUSH - we should flush any dirty caps immediately, without
1517 * further delay.
1518 */
1519void ceph_check_caps(struct ceph_inode_info *ci, int flags,
1520 struct ceph_mds_session *session)
1521{
3d14c5d2
YS
1522 struct ceph_fs_client *fsc = ceph_inode_to_client(&ci->vfs_inode);
1523 struct ceph_mds_client *mdsc = fsc->mdsc;
a8599bd8
SW
1524 struct inode *inode = &ci->vfs_inode;
1525 struct ceph_cap *cap;
395c312b 1526 int file_wanted, used, cap_used;
a8599bd8 1527 int took_snap_rwsem = 0; /* true if mdsc->snap_rwsem held */
cbd03635 1528 int issued, implemented, want, retain, revoking, flushing = 0;
a8599bd8
SW
1529 int mds = -1; /* keep track of how far we've gone through i_caps list
1530 to avoid an infinite loop on retry */
1531 struct rb_node *p;
1532 int tried_invalidate = 0;
1533 int delayed = 0, sent = 0, force_requeue = 0, num;
cbd03635 1534 int queue_invalidate = 0;
a8599bd8
SW
1535 int is_delayed = flags & CHECK_CAPS_NODELAY;
1536
1537 /* if we are unmounting, flush any unused caps immediately. */
1538 if (mdsc->stopping)
1539 is_delayed = 1;
1540
be655596 1541 spin_lock(&ci->i_ceph_lock);
a8599bd8
SW
1542
1543 if (ci->i_ceph_flags & CEPH_I_FLUSH)
1544 flags |= CHECK_CAPS_FLUSH;
1545
1546 /* flush snaps first time around only */
1547 if (!list_empty(&ci->i_cap_snaps))
e835124c 1548 __ceph_flush_snaps(ci, &session, 0);
a8599bd8
SW
1549 goto retry_locked;
1550retry:
be655596 1551 spin_lock(&ci->i_ceph_lock);
a8599bd8
SW
1552retry_locked:
1553 file_wanted = __ceph_caps_file_wanted(ci);
1554 used = __ceph_caps_used(ci);
1555 want = file_wanted | used;
cbd03635
SW
1556 issued = __ceph_caps_issued(ci, &implemented);
1557 revoking = implemented & ~issued;
a8599bd8
SW
1558
1559 retain = want | CEPH_CAP_PIN;
1560 if (!mdsc->stopping && inode->i_nlink > 0) {
1561 if (want) {
1562 retain |= CEPH_CAP_ANY; /* be greedy */
32ec4397
YZ
1563 } else if (S_ISDIR(inode->i_mode) &&
1564 (issued & CEPH_CAP_FILE_SHARED) &&
1565 __ceph_dir_is_complete(ci)) {
1566 /*
1567 * If a directory is complete, we want to keep
1568 * the exclusive cap. So that MDS does not end up
1569 * revoking the shared cap on every create/unlink
1570 * operation.
1571 */
1572 want = CEPH_CAP_ANY_SHARED | CEPH_CAP_FILE_EXCL;
1573 retain |= want;
a8599bd8 1574 } else {
32ec4397 1575
a8599bd8
SW
1576 retain |= CEPH_CAP_ANY_SHARED;
1577 /*
1578 * keep RD only if we didn't have the file open RW,
1579 * because then the mds would revoke it anyway to
1580 * journal max_size=0.
1581 */
1582 if (ci->i_max_size == 0)
1583 retain |= CEPH_CAP_ANY_RD;
1584 }
1585 }
1586
1587 dout("check_caps %p file_want %s used %s dirty %s flushing %s"
cbd03635 1588 " issued %s revoking %s retain %s %s%s%s\n", inode,
a8599bd8
SW
1589 ceph_cap_string(file_wanted),
1590 ceph_cap_string(used), ceph_cap_string(ci->i_dirty_caps),
1591 ceph_cap_string(ci->i_flushing_caps),
cbd03635 1592 ceph_cap_string(issued), ceph_cap_string(revoking),
a8599bd8
SW
1593 ceph_cap_string(retain),
1594 (flags & CHECK_CAPS_AUTHONLY) ? " AUTHONLY" : "",
1595 (flags & CHECK_CAPS_NODELAY) ? " NODELAY" : "",
1596 (flags & CHECK_CAPS_FLUSH) ? " FLUSH" : "");
1597
1598 /*
1599 * If we no longer need to hold onto old our caps, and we may
1600 * have cached pages, but don't want them, then try to invalidate.
1601 * If we fail, it's because pages are locked.... try again later.
1602 */
1603 if ((!is_delayed || mdsc->stopping) &&
1604 ci->i_wrbuffer_ref == 0 && /* no dirty pages... */
93afd449 1605 inode->i_data.nrpages && /* have cached pages */
cbd03635 1606 (file_wanted == 0 || /* no open files */
2962507c
SW
1607 (revoking & (CEPH_CAP_FILE_CACHE|
1608 CEPH_CAP_FILE_LAZYIO))) && /* or revoking cache */
a8599bd8 1609 !tried_invalidate) {
a8599bd8 1610 dout("check_caps trying to invalidate on %p\n", inode);
5ecad6fd 1611 if (try_nonblocking_invalidate(inode) < 0) {
2962507c
SW
1612 if (revoking & (CEPH_CAP_FILE_CACHE|
1613 CEPH_CAP_FILE_LAZYIO)) {
5ecad6fd
SW
1614 dout("check_caps queuing invalidate\n");
1615 queue_invalidate = 1;
1616 ci->i_rdcache_revoking = ci->i_rdcache_gen;
1617 } else {
1618 dout("check_caps failed to invalidate pages\n");
1619 /* we failed to invalidate pages. check these
1620 caps again later. */
1621 force_requeue = 1;
1622 __cap_set_timeouts(mdsc, ci);
1623 }
a8599bd8
SW
1624 }
1625 tried_invalidate = 1;
1626 goto retry_locked;
1627 }
1628
1629 num = 0;
1630 for (p = rb_first(&ci->i_caps); p; p = rb_next(p)) {
1631 cap = rb_entry(p, struct ceph_cap, ci_node);
1632 num++;
1633
1634 /* avoid looping forever */
1635 if (mds >= cap->mds ||
1636 ((flags & CHECK_CAPS_AUTHONLY) && cap != ci->i_auth_cap))
1637 continue;
1638
1639 /* NOTE: no side-effects allowed, until we take s_mutex */
1640
395c312b
YZ
1641 cap_used = used;
1642 if (ci->i_auth_cap && cap != ci->i_auth_cap)
1643 cap_used &= ~ci->i_auth_cap->issued;
1644
a8599bd8 1645 revoking = cap->implemented & ~cap->issued;
395c312b 1646 dout(" mds%d cap %p used %s issued %s implemented %s revoking %s\n",
088b3f5e 1647 cap->mds, cap, ceph_cap_string(cap->issued),
395c312b 1648 ceph_cap_string(cap_used),
088b3f5e
SW
1649 ceph_cap_string(cap->implemented),
1650 ceph_cap_string(revoking));
a8599bd8
SW
1651
1652 if (cap == ci->i_auth_cap &&
1653 (cap->issued & CEPH_CAP_FILE_WR)) {
1654 /* request larger max_size from MDS? */
1655 if (ci->i_wanted_max_size > ci->i_max_size &&
1656 ci->i_wanted_max_size > ci->i_requested_max_size) {
1657 dout("requesting new max_size\n");
1658 goto ack;
1659 }
1660
1661 /* approaching file_max? */
1662 if ((inode->i_size << 1) >= ci->i_max_size &&
1663 (ci->i_reported_size << 1) < ci->i_max_size) {
1664 dout("i_size approaching max_size\n");
1665 goto ack;
1666 }
1667 }
1668 /* flush anything dirty? */
1669 if (cap == ci->i_auth_cap && (flags & CHECK_CAPS_FLUSH) &&
1670 ci->i_dirty_caps) {
1671 dout("flushing dirty caps\n");
1672 goto ack;
1673 }
1674
1675 /* completed revocation? going down and there are no caps? */
395c312b 1676 if (revoking && (revoking & cap_used) == 0) {
a8599bd8
SW
1677 dout("completed revocation of %s\n",
1678 ceph_cap_string(cap->implemented & ~cap->issued));
1679 goto ack;
1680 }
1681
1682 /* want more caps from mds? */
1683 if (want & ~(cap->mds_wanted | cap->issued))
1684 goto ack;
1685
1686 /* things we might delay */
1687 if ((cap->issued & ~retain) == 0 &&
1688 cap->mds_wanted == want)
1689 continue; /* nope, all good */
1690
1691 if (is_delayed)
1692 goto ack;
1693
1694 /* delay? */
1695 if ((ci->i_ceph_flags & CEPH_I_NODELAY) == 0 &&
1696 time_before(jiffies, ci->i_hold_caps_max)) {
1697 dout(" delaying issued %s -> %s, wanted %s -> %s\n",
1698 ceph_cap_string(cap->issued),
1699 ceph_cap_string(cap->issued & retain),
1700 ceph_cap_string(cap->mds_wanted),
1701 ceph_cap_string(want));
1702 delayed++;
1703 continue;
1704 }
1705
1706ack:
e9964c10
SW
1707 if (ci->i_ceph_flags & CEPH_I_NOFLUSH) {
1708 dout(" skipping %p I_NOFLUSH set\n", inode);
1709 continue;
1710 }
1711
a8599bd8
SW
1712 if (session && session != cap->session) {
1713 dout("oops, wrong session %p mutex\n", session);
1714 mutex_unlock(&session->s_mutex);
1715 session = NULL;
1716 }
1717 if (!session) {
1718 session = cap->session;
1719 if (mutex_trylock(&session->s_mutex) == 0) {
1720 dout("inverting session/ino locks on %p\n",
1721 session);
be655596 1722 spin_unlock(&ci->i_ceph_lock);
a8599bd8
SW
1723 if (took_snap_rwsem) {
1724 up_read(&mdsc->snap_rwsem);
1725 took_snap_rwsem = 0;
1726 }
1727 mutex_lock(&session->s_mutex);
1728 goto retry;
1729 }
1730 }
1731 /* take snap_rwsem after session mutex */
1732 if (!took_snap_rwsem) {
1733 if (down_read_trylock(&mdsc->snap_rwsem) == 0) {
1734 dout("inverting snap/in locks on %p\n",
1735 inode);
be655596 1736 spin_unlock(&ci->i_ceph_lock);
a8599bd8
SW
1737 down_read(&mdsc->snap_rwsem);
1738 took_snap_rwsem = 1;
1739 goto retry;
1740 }
1741 took_snap_rwsem = 1;
1742 }
1743
cdc35f96
SW
1744 if (cap == ci->i_auth_cap && ci->i_dirty_caps)
1745 flushing = __mark_caps_flushing(inode, session);
24be0c48
SW
1746 else
1747 flushing = 0;
a8599bd8
SW
1748
1749 mds = cap->mds; /* remember mds, so we don't repeat */
1750 sent++;
1751
be655596 1752 /* __send_cap drops i_ceph_lock */
395c312b
YZ
1753 delayed += __send_cap(mdsc, cap, CEPH_CAP_OP_UPDATE, cap_used,
1754 want, retain, flushing, NULL);
be655596 1755 goto retry; /* retake i_ceph_lock and restart our cap scan. */
a8599bd8
SW
1756 }
1757
1758 /*
1759 * Reschedule delayed caps release if we delayed anything,
1760 * otherwise cancel.
1761 */
1762 if (delayed && is_delayed)
1763 force_requeue = 1; /* __send_cap delayed release; requeue */
1764 if (!delayed && !is_delayed)
1765 __cap_delay_cancel(mdsc, ci);
1766 else if (!is_delayed || force_requeue)
1767 __cap_delay_requeue(mdsc, ci);
1768
be655596 1769 spin_unlock(&ci->i_ceph_lock);
a8599bd8 1770
cbd03635 1771 if (queue_invalidate)
3c6f6b79 1772 ceph_queue_invalidate(inode);
cbd03635 1773
cdc2ce05 1774 if (session)
a8599bd8
SW
1775 mutex_unlock(&session->s_mutex);
1776 if (took_snap_rwsem)
1777 up_read(&mdsc->snap_rwsem);
1778}
1779
a8599bd8
SW
1780/*
1781 * Try to flush dirty caps back to the auth mds.
1782 */
4fe59789 1783static int try_flush_caps(struct inode *inode, unsigned *flush_tid)
a8599bd8 1784{
3d14c5d2 1785 struct ceph_mds_client *mdsc = ceph_sb_to_client(inode->i_sb)->mdsc;
a8599bd8 1786 struct ceph_inode_info *ci = ceph_inode(inode);
a8599bd8 1787 int flushing = 0;
4fe59789 1788 struct ceph_mds_session *session = NULL;
a8599bd8
SW
1789
1790retry:
be655596 1791 spin_lock(&ci->i_ceph_lock);
e9964c10
SW
1792 if (ci->i_ceph_flags & CEPH_I_NOFLUSH) {
1793 dout("try_flush_caps skipping %p I_NOFLUSH set\n", inode);
1794 goto out;
1795 }
a8599bd8
SW
1796 if (ci->i_dirty_caps && ci->i_auth_cap) {
1797 struct ceph_cap *cap = ci->i_auth_cap;
1798 int used = __ceph_caps_used(ci);
1799 int want = __ceph_caps_wanted(ci);
1800 int delayed;
1801
4fe59789 1802 if (!session || session != cap->session) {
be655596 1803 spin_unlock(&ci->i_ceph_lock);
4fe59789
YZ
1804 if (session)
1805 mutex_unlock(&session->s_mutex);
a8599bd8
SW
1806 session = cap->session;
1807 mutex_lock(&session->s_mutex);
1808 goto retry;
1809 }
a8599bd8
SW
1810 if (cap->session->s_state < CEPH_MDS_SESSION_OPEN)
1811 goto out;
1812
cdc35f96 1813 flushing = __mark_caps_flushing(inode, session);
a8599bd8 1814
be655596 1815 /* __send_cap drops i_ceph_lock */
a8599bd8
SW
1816 delayed = __send_cap(mdsc, cap, CEPH_CAP_OP_FLUSH, used, want,
1817 cap->issued | cap->implemented, flushing,
1818 flush_tid);
1819 if (!delayed)
1820 goto out_unlocked;
1821
be655596 1822 spin_lock(&ci->i_ceph_lock);
a8599bd8
SW
1823 __cap_delay_requeue(mdsc, ci);
1824 }
1825out:
be655596 1826 spin_unlock(&ci->i_ceph_lock);
a8599bd8 1827out_unlocked:
4fe59789 1828 if (session)
a8599bd8
SW
1829 mutex_unlock(&session->s_mutex);
1830 return flushing;
1831}
1832
1833/*
1834 * Return true if we've flushed caps through the given flush_tid.
1835 */
1836static int caps_are_flushed(struct inode *inode, unsigned tid)
1837{
1838 struct ceph_inode_info *ci = ceph_inode(inode);
a5ee751c 1839 int i, ret = 1;
a8599bd8 1840
be655596 1841 spin_lock(&ci->i_ceph_lock);
a8599bd8
SW
1842 for (i = 0; i < CEPH_CAP_BITS; i++)
1843 if ((ci->i_flushing_caps & (1 << i)) &&
1844 ci->i_cap_flush_tid[i] <= tid) {
1845 /* still flushing this bit */
1846 ret = 0;
1847 break;
1848 }
be655596 1849 spin_unlock(&ci->i_ceph_lock);
a8599bd8
SW
1850 return ret;
1851}
1852
1853/*
1854 * Wait on any unsafe replies for the given inode. First wait on the
1855 * newest request, and make that the upper bound. Then, if there are
1856 * more requests, keep waiting on the oldest as long as it is still older
1857 * than the original request.
1858 */
1859static void sync_write_wait(struct inode *inode)
1860{
1861 struct ceph_inode_info *ci = ceph_inode(inode);
1862 struct list_head *head = &ci->i_unsafe_writes;
1863 struct ceph_osd_request *req;
1864 u64 last_tid;
1865
1866 spin_lock(&ci->i_unsafe_lock);
1867 if (list_empty(head))
1868 goto out;
1869
1870 /* set upper bound as _last_ entry in chain */
1871 req = list_entry(head->prev, struct ceph_osd_request,
1872 r_unsafe_item);
1873 last_tid = req->r_tid;
1874
1875 do {
1876 ceph_osdc_get_request(req);
1877 spin_unlock(&ci->i_unsafe_lock);
1878 dout("sync_write_wait on tid %llu (until %llu)\n",
1879 req->r_tid, last_tid);
1880 wait_for_completion(&req->r_safe_completion);
1881 spin_lock(&ci->i_unsafe_lock);
1882 ceph_osdc_put_request(req);
1883
1884 /*
1885 * from here on look at first entry in chain, since we
1886 * only want to wait for anything older than last_tid
1887 */
1888 if (list_empty(head))
1889 break;
1890 req = list_entry(head->next, struct ceph_osd_request,
1891 r_unsafe_item);
1892 } while (req->r_tid < last_tid);
1893out:
1894 spin_unlock(&ci->i_unsafe_lock);
1895}
1896
02c24a82 1897int ceph_fsync(struct file *file, loff_t start, loff_t end, int datasync)
a8599bd8 1898{
7ea80859 1899 struct inode *inode = file->f_mapping->host;
a8599bd8
SW
1900 struct ceph_inode_info *ci = ceph_inode(inode);
1901 unsigned flush_tid;
1902 int ret;
1903 int dirty;
1904
1905 dout("fsync %p%s\n", inode, datasync ? " datasync" : "");
1906 sync_write_wait(inode);
1907
02c24a82 1908 ret = filemap_write_and_wait_range(inode->i_mapping, start, end);
a8599bd8
SW
1909 if (ret < 0)
1910 return ret;
02c24a82 1911 mutex_lock(&inode->i_mutex);
a8599bd8 1912
4fe59789 1913 dirty = try_flush_caps(inode, &flush_tid);
a8599bd8
SW
1914 dout("fsync dirty caps are %s\n", ceph_cap_string(dirty));
1915
1916 /*
1917 * only wait on non-file metadata writeback (the mds
1918 * can recover size and mtime, so we don't need to
1919 * wait for that)
1920 */
1921 if (!datasync && (dirty & ~CEPH_CAP_ANY_FILE_WR)) {
1922 dout("fsync waiting for flush_tid %u\n", flush_tid);
1923 ret = wait_event_interruptible(ci->i_cap_wq,
1924 caps_are_flushed(inode, flush_tid));
1925 }
1926
1927 dout("fsync %p%s done\n", inode, datasync ? " datasync" : "");
02c24a82 1928 mutex_unlock(&inode->i_mutex);
a8599bd8
SW
1929 return ret;
1930}
1931
1932/*
1933 * Flush any dirty caps back to the mds. If we aren't asked to wait,
1934 * queue inode for flush but don't do so immediately, because we can
1935 * get by with fewer MDS messages if we wait for data writeback to
1936 * complete first.
1937 */
f1a3d572 1938int ceph_write_inode(struct inode *inode, struct writeback_control *wbc)
a8599bd8
SW
1939{
1940 struct ceph_inode_info *ci = ceph_inode(inode);
1941 unsigned flush_tid;
1942 int err = 0;
1943 int dirty;
f1a3d572 1944 int wait = wbc->sync_mode == WB_SYNC_ALL;
a8599bd8
SW
1945
1946 dout("write_inode %p wait=%d\n", inode, wait);
1947 if (wait) {
4fe59789 1948 dirty = try_flush_caps(inode, &flush_tid);
a8599bd8
SW
1949 if (dirty)
1950 err = wait_event_interruptible(ci->i_cap_wq,
1951 caps_are_flushed(inode, flush_tid));
1952 } else {
640ef79d 1953 struct ceph_mds_client *mdsc =
3d14c5d2 1954 ceph_sb_to_client(inode->i_sb)->mdsc;
a8599bd8 1955
be655596 1956 spin_lock(&ci->i_ceph_lock);
a8599bd8
SW
1957 if (__ceph_caps_dirty(ci))
1958 __cap_delay_requeue_front(mdsc, ci);
be655596 1959 spin_unlock(&ci->i_ceph_lock);
a8599bd8
SW
1960 }
1961 return err;
1962}
1963
1964/*
1965 * After a recovering MDS goes active, we need to resend any caps
1966 * we were flushing.
1967 *
1968 * Caller holds session->s_mutex.
1969 */
1970static void kick_flushing_capsnaps(struct ceph_mds_client *mdsc,
1971 struct ceph_mds_session *session)
1972{
1973 struct ceph_cap_snap *capsnap;
1974
1975 dout("kick_flushing_capsnaps mds%d\n", session->s_mds);
1976 list_for_each_entry(capsnap, &session->s_cap_snaps_flushing,
1977 flushing_item) {
1978 struct ceph_inode_info *ci = capsnap->ci;
1979 struct inode *inode = &ci->vfs_inode;
1980 struct ceph_cap *cap;
1981
be655596 1982 spin_lock(&ci->i_ceph_lock);
a8599bd8
SW
1983 cap = ci->i_auth_cap;
1984 if (cap && cap->session == session) {
1985 dout("kick_flushing_caps %p cap %p capsnap %p\n", inode,
1986 cap, capsnap);
e835124c 1987 __ceph_flush_snaps(ci, &session, 1);
a8599bd8
SW
1988 } else {
1989 pr_err("%p auth cap %p not mds%d ???\n", inode,
1990 cap, session->s_mds);
a8599bd8 1991 }
be655596 1992 spin_unlock(&ci->i_ceph_lock);
a8599bd8
SW
1993 }
1994}
1995
1996void ceph_kick_flushing_caps(struct ceph_mds_client *mdsc,
1997 struct ceph_mds_session *session)
1998{
1999 struct ceph_inode_info *ci;
2000
2001 kick_flushing_capsnaps(mdsc, session);
2002
2003 dout("kick_flushing_caps mds%d\n", session->s_mds);
2004 list_for_each_entry(ci, &session->s_cap_flushing, i_flushing_item) {
2005 struct inode *inode = &ci->vfs_inode;
2006 struct ceph_cap *cap;
2007 int delayed = 0;
2008
be655596 2009 spin_lock(&ci->i_ceph_lock);
a8599bd8
SW
2010 cap = ci->i_auth_cap;
2011 if (cap && cap->session == session) {
2012 dout("kick_flushing_caps %p cap %p %s\n", inode,
2013 cap, ceph_cap_string(ci->i_flushing_caps));
2014 delayed = __send_cap(mdsc, cap, CEPH_CAP_OP_FLUSH,
2015 __ceph_caps_used(ci),
2016 __ceph_caps_wanted(ci),
2017 cap->issued | cap->implemented,
2018 ci->i_flushing_caps, NULL);
2019 if (delayed) {
be655596 2020 spin_lock(&ci->i_ceph_lock);
a8599bd8 2021 __cap_delay_requeue(mdsc, ci);
be655596 2022 spin_unlock(&ci->i_ceph_lock);
a8599bd8
SW
2023 }
2024 } else {
2025 pr_err("%p auth cap %p not mds%d ???\n", inode,
2026 cap, session->s_mds);
be655596 2027 spin_unlock(&ci->i_ceph_lock);
a8599bd8
SW
2028 }
2029 }
2030}
2031
088b3f5e
SW
2032static void kick_flushing_inode_caps(struct ceph_mds_client *mdsc,
2033 struct ceph_mds_session *session,
2034 struct inode *inode)
2035{
2036 struct ceph_inode_info *ci = ceph_inode(inode);
2037 struct ceph_cap *cap;
2038 int delayed = 0;
2039
be655596 2040 spin_lock(&ci->i_ceph_lock);
088b3f5e
SW
2041 cap = ci->i_auth_cap;
2042 dout("kick_flushing_inode_caps %p flushing %s flush_seq %lld\n", inode,
2043 ceph_cap_string(ci->i_flushing_caps), ci->i_cap_flush_seq);
005c4697 2044
088b3f5e 2045 __ceph_flush_snaps(ci, &session, 1);
005c4697 2046
088b3f5e 2047 if (ci->i_flushing_caps) {
005c4697
YZ
2048 spin_lock(&mdsc->cap_dirty_lock);
2049 list_move_tail(&ci->i_flushing_item,
2050 &cap->session->s_cap_flushing);
2051 spin_unlock(&mdsc->cap_dirty_lock);
2052
088b3f5e
SW
2053 delayed = __send_cap(mdsc, cap, CEPH_CAP_OP_FLUSH,
2054 __ceph_caps_used(ci),
2055 __ceph_caps_wanted(ci),
2056 cap->issued | cap->implemented,
2057 ci->i_flushing_caps, NULL);
2058 if (delayed) {
be655596 2059 spin_lock(&ci->i_ceph_lock);
088b3f5e 2060 __cap_delay_requeue(mdsc, ci);
be655596 2061 spin_unlock(&ci->i_ceph_lock);
088b3f5e
SW
2062 }
2063 } else {
be655596 2064 spin_unlock(&ci->i_ceph_lock);
088b3f5e
SW
2065 }
2066}
2067
a8599bd8
SW
2068
2069/*
2070 * Take references to capabilities we hold, so that we don't release
2071 * them to the MDS prematurely.
2072 *
be655596 2073 * Protected by i_ceph_lock.
a8599bd8 2074 */
5dda377c
YZ
2075static void __take_cap_refs(struct ceph_inode_info *ci, int got,
2076 bool snap_rwsem_locked)
a8599bd8
SW
2077{
2078 if (got & CEPH_CAP_PIN)
2079 ci->i_pin_ref++;
2080 if (got & CEPH_CAP_FILE_RD)
2081 ci->i_rd_ref++;
2082 if (got & CEPH_CAP_FILE_CACHE)
2083 ci->i_rdcache_ref++;
5dda377c
YZ
2084 if (got & CEPH_CAP_FILE_WR) {
2085 if (ci->i_wr_ref == 0 && !ci->i_head_snapc) {
2086 BUG_ON(!snap_rwsem_locked);
2087 ci->i_head_snapc = ceph_get_snap_context(
2088 ci->i_snap_realm->cached_context);
2089 }
a8599bd8 2090 ci->i_wr_ref++;
5dda377c 2091 }
a8599bd8 2092 if (got & CEPH_CAP_FILE_BUFFER) {
d3d0720d 2093 if (ci->i_wb_ref == 0)
3772d26d 2094 ihold(&ci->vfs_inode);
d3d0720d
HC
2095 ci->i_wb_ref++;
2096 dout("__take_cap_refs %p wb %d -> %d (?)\n",
2097 &ci->vfs_inode, ci->i_wb_ref-1, ci->i_wb_ref);
a8599bd8
SW
2098 }
2099}
2100
2101/*
2102 * Try to grab cap references. Specify those refs we @want, and the
2103 * minimal set we @need. Also include the larger offset we are writing
2104 * to (when applicable), and check against max_size here as well.
2105 * Note that caller is responsible for ensuring max_size increases are
2106 * requested from the MDS.
2107 */
2108static int try_get_cap_refs(struct ceph_inode_info *ci, int need, int want,
5dda377c 2109 loff_t endoff, bool nonblock, int *got, int *err)
a8599bd8
SW
2110{
2111 struct inode *inode = &ci->vfs_inode;
5dda377c 2112 struct ceph_mds_client *mdsc = ceph_inode_to_client(inode)->mdsc;
a8599bd8 2113 int ret = 0;
c4d4a582 2114 int have, implemented;
195d3ce2 2115 int file_wanted;
5dda377c 2116 bool snap_rwsem_locked = false;
a8599bd8
SW
2117
2118 dout("get_cap_refs %p need %s want %s\n", inode,
2119 ceph_cap_string(need), ceph_cap_string(want));
c4d4a582 2120
5dda377c 2121again:
be655596 2122 spin_lock(&ci->i_ceph_lock);
a8599bd8 2123
195d3ce2
SW
2124 /* make sure file is actually open */
2125 file_wanted = __ceph_caps_file_wanted(ci);
2126 if ((file_wanted & need) == 0) {
2127 dout("try_get_cap_refs need %s file_wanted %s, EBADF\n",
2128 ceph_cap_string(need), ceph_cap_string(file_wanted));
a8599bd8
SW
2129 *err = -EBADF;
2130 ret = 1;
3738daa6 2131 goto out_unlock;
a8599bd8
SW
2132 }
2133
37505d57
YZ
2134 /* finish pending truncate */
2135 while (ci->i_truncate_pending) {
2136 spin_unlock(&ci->i_ceph_lock);
5dda377c
YZ
2137 if (snap_rwsem_locked) {
2138 up_read(&mdsc->snap_rwsem);
2139 snap_rwsem_locked = false;
2140 }
b415bf4f 2141 __ceph_do_pending_vmtruncate(inode);
37505d57
YZ
2142 spin_lock(&ci->i_ceph_lock);
2143 }
2144
3871cbb9
YZ
2145 have = __ceph_caps_issued(ci, &implemented);
2146
2147 if (have & need & CEPH_CAP_FILE_WR) {
a8599bd8
SW
2148 if (endoff >= 0 && endoff > (loff_t)ci->i_max_size) {
2149 dout("get_cap_refs %p endoff %llu > maxsize %llu\n",
2150 inode, endoff, ci->i_max_size);
3871cbb9 2151 if (endoff > ci->i_requested_max_size) {
5dda377c 2152 *err = -EAGAIN;
a8599bd8
SW
2153 ret = 1;
2154 }
3738daa6 2155 goto out_unlock;
a8599bd8
SW
2156 }
2157 /*
2158 * If a sync write is in progress, we must wait, so that we
2159 * can get a final snapshot value for size+mtime.
2160 */
2161 if (__ceph_have_pending_cap_snap(ci)) {
2162 dout("get_cap_refs %p cap_snap_pending\n", inode);
3738daa6 2163 goto out_unlock;
a8599bd8
SW
2164 }
2165 }
a8599bd8 2166
a8599bd8
SW
2167 if ((have & need) == need) {
2168 /*
2169 * Look at (implemented & ~have & not) so that we keep waiting
2170 * on transition from wanted -> needed caps. This is needed
2171 * for WRBUFFER|WR -> WR to avoid a new WR sync write from
2172 * going before a prior buffered writeback happens.
2173 */
2174 int not = want & ~(have & need);
2175 int revoking = implemented & ~have;
2176 dout("get_cap_refs %p have %s but not %s (revoking %s)\n",
2177 inode, ceph_cap_string(have), ceph_cap_string(not),
2178 ceph_cap_string(revoking));
2179 if ((revoking & not) == 0) {
5dda377c
YZ
2180 if (!snap_rwsem_locked &&
2181 !ci->i_head_snapc &&
2182 (need & CEPH_CAP_FILE_WR)) {
2183 if (!down_read_trylock(&mdsc->snap_rwsem)) {
2184 /*
2185 * we can not call down_read() when
2186 * task isn't in TASK_RUNNING state
2187 */
2188 if (nonblock) {
2189 *err = -EAGAIN;
2190 ret = 1;
2191 goto out_unlock;
2192 }
2193
2194 spin_unlock(&ci->i_ceph_lock);
2195 down_read(&mdsc->snap_rwsem);
2196 snap_rwsem_locked = true;
2197 goto again;
2198 }
2199 snap_rwsem_locked = true;
2200 }
c4d4a582 2201 *got = need | (have & want);
5dda377c 2202 __take_cap_refs(ci, *got, true);
a8599bd8
SW
2203 ret = 1;
2204 }
2205 } else {
03f4fcb0
YZ
2206 int session_readonly = false;
2207 if ((need & CEPH_CAP_FILE_WR) && ci->i_auth_cap) {
2208 struct ceph_mds_session *s = ci->i_auth_cap->session;
2209 spin_lock(&s->s_cap_lock);
2210 session_readonly = s->s_readonly;
2211 spin_unlock(&s->s_cap_lock);
2212 }
2213 if (session_readonly) {
2214 dout("get_cap_refs %p needed %s but mds%d readonly\n",
2215 inode, ceph_cap_string(need), ci->i_auth_cap->mds);
2216 *err = -EROFS;
2217 ret = 1;
2218 goto out_unlock;
2219 }
2220
a8599bd8
SW
2221 dout("get_cap_refs %p have %s needed %s\n", inode,
2222 ceph_cap_string(have), ceph_cap_string(need));
2223 }
3738daa6 2224out_unlock:
be655596 2225 spin_unlock(&ci->i_ceph_lock);
5dda377c
YZ
2226 if (snap_rwsem_locked)
2227 up_read(&mdsc->snap_rwsem);
3738daa6 2228
a8599bd8 2229 dout("get_cap_refs %p ret %d got %s\n", inode,
c4d4a582 2230 ret, ceph_cap_string(*got));
a8599bd8
SW
2231 return ret;
2232}
2233
2234/*
2235 * Check the offset we are writing up to against our current
2236 * max_size. If necessary, tell the MDS we want to write to
2237 * a larger offset.
2238 */
2239static void check_max_size(struct inode *inode, loff_t endoff)
2240{
2241 struct ceph_inode_info *ci = ceph_inode(inode);
2242 int check = 0;
2243
2244 /* do we need to explicitly request a larger max_size? */
be655596 2245 spin_lock(&ci->i_ceph_lock);
3871cbb9 2246 if (endoff >= ci->i_max_size && endoff > ci->i_wanted_max_size) {
a8599bd8
SW
2247 dout("write %p at large endoff %llu, req max_size\n",
2248 inode, endoff);
2249 ci->i_wanted_max_size = endoff;
a8599bd8 2250 }
3871cbb9
YZ
2251 /* duplicate ceph_check_caps()'s logic */
2252 if (ci->i_auth_cap &&
2253 (ci->i_auth_cap->issued & CEPH_CAP_FILE_WR) &&
2254 ci->i_wanted_max_size > ci->i_max_size &&
2255 ci->i_wanted_max_size > ci->i_requested_max_size)
2256 check = 1;
be655596 2257 spin_unlock(&ci->i_ceph_lock);
a8599bd8
SW
2258 if (check)
2259 ceph_check_caps(ci, CHECK_CAPS_AUTHONLY, NULL);
2260}
2261
2262/*
2263 * Wait for caps, and take cap references. If we can't get a WR cap
2264 * due to a small max_size, make sure we check_max_size (and possibly
2265 * ask the mds) so we don't get hung up indefinitely.
2266 */
3738daa6
YZ
2267int ceph_get_caps(struct ceph_inode_info *ci, int need, int want,
2268 loff_t endoff, int *got, struct page **pinned_page)
a8599bd8 2269{
5dda377c 2270 int _got, ret, err = 0;
a8599bd8 2271
10183a69
YZ
2272 ret = ceph_pool_perm_check(ci, need);
2273 if (ret < 0)
2274 return ret;
2275
5dda377c
YZ
2276 while (true) {
2277 if (endoff > 0)
2278 check_max_size(&ci->vfs_inode, endoff);
c4d4a582 2279
5dda377c
YZ
2280 err = 0;
2281 _got = 0;
2282 ret = try_get_cap_refs(ci, need, want, endoff,
2283 false, &_got, &err);
2284 if (ret) {
2285 if (err == -EAGAIN)
2286 continue;
2287 if (err < 0)
2288 return err;
2289 } else {
2290 ret = wait_event_interruptible(ci->i_cap_wq,
2291 try_get_cap_refs(ci, need, want, endoff,
2292 true, &_got, &err));
2293 if (err == -EAGAIN)
2294 continue;
2295 if (err < 0)
2296 ret = err;
2297 if (ret < 0)
2298 return ret;
2299 }
c4d4a582 2300
5dda377c
YZ
2301 if (ci->i_inline_version != CEPH_INLINE_NONE &&
2302 (_got & (CEPH_CAP_FILE_CACHE|CEPH_CAP_FILE_LAZYIO)) &&
2303 i_size_read(&ci->vfs_inode) > 0) {
2304 struct page *page =
2305 find_get_page(ci->vfs_inode.i_mapping, 0);
2306 if (page) {
2307 if (PageUptodate(page)) {
2308 *pinned_page = page;
2309 break;
2310 }
2311 page_cache_release(page);
c4d4a582 2312 }
5dda377c
YZ
2313 /*
2314 * drop cap refs first because getattr while
2315 * holding * caps refs can cause deadlock.
2316 */
2317 ceph_put_cap_refs(ci, _got);
2318 _got = 0;
c4d4a582 2319
5dda377c
YZ
2320 /*
2321 * getattr request will bring inline data into
2322 * page cache
2323 */
2324 ret = __ceph_do_getattr(&ci->vfs_inode, NULL,
2325 CEPH_STAT_CAP_INLINE_DATA,
2326 true);
2327 if (ret < 0)
2328 return ret;
2329 continue;
2330 }
2331 break;
c4d4a582 2332 }
5dda377c 2333
c4d4a582
YZ
2334 *got = _got;
2335 return 0;
a8599bd8
SW
2336}
2337
2338/*
2339 * Take cap refs. Caller must already know we hold at least one ref
2340 * on the caps in question or we don't know this is safe.
2341 */
2342void ceph_get_cap_refs(struct ceph_inode_info *ci, int caps)
2343{
be655596 2344 spin_lock(&ci->i_ceph_lock);
5dda377c 2345 __take_cap_refs(ci, caps, false);
be655596 2346 spin_unlock(&ci->i_ceph_lock);
a8599bd8
SW
2347}
2348
86056090
YZ
2349
2350/*
2351 * drop cap_snap that is not associated with any snapshot.
2352 * we don't need to send FLUSHSNAP message for it.
2353 */
2354static int ceph_try_drop_cap_snap(struct ceph_cap_snap *capsnap)
2355{
2356 if (!capsnap->need_flush &&
2357 !capsnap->writing && !capsnap->dirty_pages) {
2358
2359 dout("dropping cap_snap %p follows %llu\n",
2360 capsnap, capsnap->follows);
2361 ceph_put_snap_context(capsnap->context);
2362 list_del(&capsnap->ci_item);
2363 list_del(&capsnap->flushing_item);
2364 ceph_put_cap_snap(capsnap);
2365 return 1;
2366 }
2367 return 0;
2368}
2369
a8599bd8
SW
2370/*
2371 * Release cap refs.
2372 *
2373 * If we released the last ref on any given cap, call ceph_check_caps
2374 * to release (or schedule a release).
2375 *
2376 * If we are releasing a WR cap (from a sync write), finalize any affected
2377 * cap_snap, and wake up any waiters.
2378 */
2379void ceph_put_cap_refs(struct ceph_inode_info *ci, int had)
2380{
2381 struct inode *inode = &ci->vfs_inode;
2382 int last = 0, put = 0, flushsnaps = 0, wake = 0;
a8599bd8 2383
be655596 2384 spin_lock(&ci->i_ceph_lock);
a8599bd8
SW
2385 if (had & CEPH_CAP_PIN)
2386 --ci->i_pin_ref;
2387 if (had & CEPH_CAP_FILE_RD)
2388 if (--ci->i_rd_ref == 0)
2389 last++;
2390 if (had & CEPH_CAP_FILE_CACHE)
2391 if (--ci->i_rdcache_ref == 0)
2392 last++;
2393 if (had & CEPH_CAP_FILE_BUFFER) {
d3d0720d 2394 if (--ci->i_wb_ref == 0) {
a8599bd8
SW
2395 last++;
2396 put++;
2397 }
d3d0720d
HC
2398 dout("put_cap_refs %p wb %d -> %d (?)\n",
2399 inode, ci->i_wb_ref+1, ci->i_wb_ref);
a8599bd8
SW
2400 }
2401 if (had & CEPH_CAP_FILE_WR)
2402 if (--ci->i_wr_ref == 0) {
2403 last++;
86056090
YZ
2404 if (__ceph_have_pending_cap_snap(ci)) {
2405 struct ceph_cap_snap *capsnap =
2406 list_last_entry(&ci->i_cap_snaps,
2407 struct ceph_cap_snap,
2408 ci_item);
2409 capsnap->writing = 0;
2410 if (ceph_try_drop_cap_snap(capsnap))
2411 put++;
2412 else if (__ceph_finish_cap_snap(ci, capsnap))
2413 flushsnaps = 1;
2414 wake = 1;
a8599bd8 2415 }
5dda377c
YZ
2416 if (ci->i_wrbuffer_ref_head == 0 &&
2417 ci->i_dirty_caps == 0 &&
2418 ci->i_flushing_caps == 0) {
2419 BUG_ON(!ci->i_head_snapc);
2420 ceph_put_snap_context(ci->i_head_snapc);
2421 ci->i_head_snapc = NULL;
2422 }
db40cc17
YZ
2423 /* see comment in __ceph_remove_cap() */
2424 if (!__ceph_is_any_caps(ci) && ci->i_snap_realm)
2425 drop_inode_snap_realm(ci);
a8599bd8 2426 }
be655596 2427 spin_unlock(&ci->i_ceph_lock);
a8599bd8 2428
819ccbfa
SW
2429 dout("put_cap_refs %p had %s%s%s\n", inode, ceph_cap_string(had),
2430 last ? " last" : "", put ? " put" : "");
a8599bd8
SW
2431
2432 if (last && !flushsnaps)
2433 ceph_check_caps(ci, 0, NULL);
2434 else if (flushsnaps)
2435 ceph_flush_snaps(ci);
2436 if (wake)
03066f23 2437 wake_up_all(&ci->i_cap_wq);
86056090 2438 while (put-- > 0)
a8599bd8
SW
2439 iput(inode);
2440}
2441
2442/*
2443 * Release @nr WRBUFFER refs on dirty pages for the given @snapc snap
2444 * context. Adjust per-snap dirty page accounting as appropriate.
2445 * Once all dirty data for a cap_snap is flushed, flush snapped file
2446 * metadata back to the MDS. If we dropped the last ref, call
2447 * ceph_check_caps.
2448 */
2449void ceph_put_wrbuffer_cap_refs(struct ceph_inode_info *ci, int nr,
2450 struct ceph_snap_context *snapc)
2451{
2452 struct inode *inode = &ci->vfs_inode;
2453 int last = 0;
819ccbfa
SW
2454 int complete_capsnap = 0;
2455 int drop_capsnap = 0;
a8599bd8
SW
2456 int found = 0;
2457 struct ceph_cap_snap *capsnap = NULL;
2458
be655596 2459 spin_lock(&ci->i_ceph_lock);
a8599bd8
SW
2460 ci->i_wrbuffer_ref -= nr;
2461 last = !ci->i_wrbuffer_ref;
2462
2463 if (ci->i_head_snapc == snapc) {
2464 ci->i_wrbuffer_ref_head -= nr;
7d8cb26d 2465 if (ci->i_wrbuffer_ref_head == 0 &&
5dda377c
YZ
2466 ci->i_wr_ref == 0 &&
2467 ci->i_dirty_caps == 0 &&
2468 ci->i_flushing_caps == 0) {
7d8cb26d 2469 BUG_ON(!ci->i_head_snapc);
a8599bd8
SW
2470 ceph_put_snap_context(ci->i_head_snapc);
2471 ci->i_head_snapc = NULL;
2472 }
2473 dout("put_wrbuffer_cap_refs on %p head %d/%d -> %d/%d %s\n",
2474 inode,
2475 ci->i_wrbuffer_ref+nr, ci->i_wrbuffer_ref_head+nr,
2476 ci->i_wrbuffer_ref, ci->i_wrbuffer_ref_head,
2477 last ? " LAST" : "");
2478 } else {
2479 list_for_each_entry(capsnap, &ci->i_cap_snaps, ci_item) {
2480 if (capsnap->context == snapc) {
2481 found = 1;
a8599bd8
SW
2482 break;
2483 }
2484 }
2485 BUG_ON(!found);
819ccbfa
SW
2486 capsnap->dirty_pages -= nr;
2487 if (capsnap->dirty_pages == 0) {
2488 complete_capsnap = 1;
86056090 2489 drop_capsnap = ceph_try_drop_cap_snap(capsnap);
819ccbfa 2490 }
a8599bd8 2491 dout("put_wrbuffer_cap_refs on %p cap_snap %p "
86056090 2492 " snap %lld %d/%d -> %d/%d %s%s\n",
a8599bd8
SW
2493 inode, capsnap, capsnap->context->seq,
2494 ci->i_wrbuffer_ref+nr, capsnap->dirty_pages + nr,
2495 ci->i_wrbuffer_ref, capsnap->dirty_pages,
2496 last ? " (wrbuffer last)" : "",
86056090 2497 complete_capsnap ? " (complete capsnap)" : "");
a8599bd8
SW
2498 }
2499
be655596 2500 spin_unlock(&ci->i_ceph_lock);
a8599bd8
SW
2501
2502 if (last) {
2503 ceph_check_caps(ci, CHECK_CAPS_AUTHONLY, NULL);
2504 iput(inode);
819ccbfa 2505 } else if (complete_capsnap) {
a8599bd8 2506 ceph_flush_snaps(ci);
03066f23 2507 wake_up_all(&ci->i_cap_wq);
a8599bd8 2508 }
819ccbfa
SW
2509 if (drop_capsnap)
2510 iput(inode);
a8599bd8
SW
2511}
2512
ca20c991
YZ
2513/*
2514 * Invalidate unlinked inode's aliases, so we can drop the inode ASAP.
2515 */
2516static void invalidate_aliases(struct inode *inode)
2517{
2518 struct dentry *dn, *prev = NULL;
2519
2520 dout("invalidate_aliases inode %p\n", inode);
2521 d_prune_aliases(inode);
2522 /*
2523 * For non-directory inode, d_find_alias() only returns
fc12c80a
BF
2524 * hashed dentry. After calling d_invalidate(), the
2525 * dentry becomes unhashed.
ca20c991 2526 *
a8d436f0 2527 * For directory inode, d_find_alias() can return
fc12c80a 2528 * unhashed dentry. But directory inode should have
ca20c991
YZ
2529 * one alias at most.
2530 */
2531 while ((dn = d_find_alias(inode))) {
2532 if (dn == prev) {
2533 dput(dn);
2534 break;
2535 }
a8d436f0 2536 d_invalidate(dn);
ca20c991
YZ
2537 if (prev)
2538 dput(prev);
2539 prev = dn;
2540 }
2541 if (prev)
2542 dput(prev);
2543}
2544
a8599bd8
SW
2545/*
2546 * Handle a cap GRANT message from the MDS. (Note that a GRANT may
2547 * actually be a revocation if it specifies a smaller cap set.)
2548 *
be655596 2549 * caller holds s_mutex and i_ceph_lock, we drop both.
a8599bd8 2550 */
2cd698be
YZ
2551static void handle_cap_grant(struct ceph_mds_client *mdsc,
2552 struct inode *inode, struct ceph_mds_caps *grant,
fb01d1f8
YZ
2553 u64 inline_version,
2554 void *inline_data, int inline_len,
2cd698be 2555 struct ceph_buffer *xattr_buf,
15637c8b 2556 struct ceph_mds_session *session,
2cd698be
YZ
2557 struct ceph_cap *cap, int issued)
2558 __releases(ci->i_ceph_lock)
982d6011 2559 __releases(mdsc->snap_rwsem)
a8599bd8
SW
2560{
2561 struct ceph_inode_info *ci = ceph_inode(inode);
2562 int mds = session->s_mds;
2f56f56a 2563 int seq = le32_to_cpu(grant->seq);
a8599bd8 2564 int newcaps = le32_to_cpu(grant->caps);
2cd698be 2565 int used, wanted, dirty;
a8599bd8
SW
2566 u64 size = le64_to_cpu(grant->size);
2567 u64 max_size = le64_to_cpu(grant->max_size);
2568 struct timespec mtime, atime, ctime;
15637c8b 2569 int check_caps = 0;
ab6c2c3e
FF
2570 bool wake = false;
2571 bool writeback = false;
2572 bool queue_trunc = false;
2573 bool queue_invalidate = false;
2574 bool queue_revalidate = false;
2575 bool deleted_inode = false;
31c542a1 2576 bool fill_inline = false;
a8599bd8 2577
2f56f56a
SW
2578 dout("handle_cap_grant inode %p cap %p mds%d seq %d %s\n",
2579 inode, cap, mds, seq, ceph_cap_string(newcaps));
a8599bd8
SW
2580 dout(" size %llu max_size %llu, i_size %llu\n", size, max_size,
2581 inode->i_size);
2582
11df2dfb
YZ
2583
2584 /*
2585 * auth mds of the inode changed. we received the cap export message,
2586 * but still haven't received the cap import message. handle_cap_export
2587 * updated the new auth MDS' cap.
2588 *
2589 * "ceph_seq_cmp(seq, cap->seq) <= 0" means we are processing a message
2590 * that was sent before the cap import message. So don't remove caps.
2591 */
2592 if (ceph_seq_cmp(seq, cap->seq) <= 0) {
2593 WARN_ON(cap != ci->i_auth_cap);
2594 WARN_ON(cap->cap_id != le64_to_cpu(grant->cap_id));
2595 seq = cap->seq;
2596 newcaps |= cap->issued;
2597 }
2598
a8599bd8
SW
2599 /*
2600 * If CACHE is being revoked, and we have no dirty buffers,
2601 * try to invalidate (once). (If there are dirty buffers, we
2602 * will invalidate _after_ writeback.)
2603 */
3b454c49
SW
2604 if (((cap->issued & ~newcaps) & CEPH_CAP_FILE_CACHE) &&
2605 (newcaps & CEPH_CAP_FILE_LAZYIO) == 0 &&
bcd2cbd1 2606 !ci->i_wrbuffer_ref) {
e9075743 2607 if (try_nonblocking_invalidate(inode)) {
a8599bd8
SW
2608 /* there were locked pages.. invalidate later
2609 in a separate thread. */
2610 if (ci->i_rdcache_revoking != ci->i_rdcache_gen) {
ab6c2c3e 2611 queue_invalidate = true;
a8599bd8
SW
2612 ci->i_rdcache_revoking = ci->i_rdcache_gen;
2613 }
a8599bd8 2614 }
99ccbd22
MT
2615
2616 ceph_fscache_invalidate(inode);
a8599bd8
SW
2617 }
2618
2619 /* side effects now are allowed */
685f9a5d 2620 cap->cap_gen = session->s_cap_gen;
11df2dfb 2621 cap->seq = seq;
a8599bd8
SW
2622
2623 __check_cap_issue(ci, cap, newcaps);
2624
f98a128a
YZ
2625 if ((newcaps & CEPH_CAP_AUTH_SHARED) &&
2626 (issued & CEPH_CAP_AUTH_EXCL) == 0) {
a8599bd8 2627 inode->i_mode = le32_to_cpu(grant->mode);
05cb11c1
EB
2628 inode->i_uid = make_kuid(&init_user_ns, le32_to_cpu(grant->uid));
2629 inode->i_gid = make_kgid(&init_user_ns, le32_to_cpu(grant->gid));
a8599bd8 2630 dout("%p mode 0%o uid.gid %d.%d\n", inode, inode->i_mode,
bd2bae6a
EB
2631 from_kuid(&init_user_ns, inode->i_uid),
2632 from_kgid(&init_user_ns, inode->i_gid));
a8599bd8
SW
2633 }
2634
f98a128a
YZ
2635 if ((newcaps & CEPH_CAP_AUTH_SHARED) &&
2636 (issued & CEPH_CAP_LINK_EXCL) == 0) {
bfe86848 2637 set_nlink(inode, le32_to_cpu(grant->nlink));
ca20c991
YZ
2638 if (inode->i_nlink == 0 &&
2639 (newcaps & (CEPH_CAP_LINK_SHARED | CEPH_CAP_LINK_EXCL)))
ab6c2c3e 2640 deleted_inode = true;
ca20c991 2641 }
a8599bd8
SW
2642
2643 if ((issued & CEPH_CAP_XATTR_EXCL) == 0 && grant->xattr_len) {
2644 int len = le32_to_cpu(grant->xattr_len);
2645 u64 version = le64_to_cpu(grant->xattr_version);
2646
2647 if (version > ci->i_xattrs.version) {
2648 dout(" got new xattrs v%llu on %p len %d\n",
2649 version, inode, len);
2650 if (ci->i_xattrs.blob)
2651 ceph_buffer_put(ci->i_xattrs.blob);
2652 ci->i_xattrs.blob = ceph_buffer_get(xattr_buf);
2653 ci->i_xattrs.version = version;
7221fe4c 2654 ceph_forget_all_cached_acls(inode);
a8599bd8
SW
2655 }
2656 }
2657
99ccbd22
MT
2658 /* Do we need to revalidate our fscache cookie. Don't bother on the
2659 * first cache cap as we already validate at cookie creation time. */
2660 if ((issued & CEPH_CAP_FILE_CACHE) && ci->i_rdcache_gen > 1)
ab6c2c3e 2661 queue_revalidate = true;
99ccbd22 2662
f98a128a
YZ
2663 if (newcaps & CEPH_CAP_ANY_RD) {
2664 /* ctime/mtime/atime? */
2665 ceph_decode_timespec(&mtime, &grant->mtime);
2666 ceph_decode_timespec(&atime, &grant->atime);
2667 ceph_decode_timespec(&ctime, &grant->ctime);
2668 ceph_fill_file_time(inode, issued,
2669 le32_to_cpu(grant->time_warp_seq),
2670 &ctime, &mtime, &atime);
2671 }
2672
2673 if (newcaps & (CEPH_CAP_ANY_FILE_RD | CEPH_CAP_ANY_FILE_WR)) {
2674 /* file layout may have changed */
2675 ci->i_layout = grant->layout;
2676 /* size/truncate_seq? */
2677 queue_trunc = ceph_fill_file_size(inode, issued,
2678 le32_to_cpu(grant->truncate_seq),
2679 le64_to_cpu(grant->truncate_size),
2680 size);
2681 /* max size increase? */
2682 if (ci->i_auth_cap == cap && max_size != ci->i_max_size) {
2683 dout("max_size %lld -> %llu\n",
2684 ci->i_max_size, max_size);
2685 ci->i_max_size = max_size;
2686 if (max_size >= ci->i_wanted_max_size) {
2687 ci->i_wanted_max_size = 0; /* reset */
2688 ci->i_requested_max_size = 0;
2689 }
ab6c2c3e 2690 wake = true;
a8599bd8 2691 }
a8599bd8
SW
2692 }
2693
2694 /* check cap bits */
2695 wanted = __ceph_caps_wanted(ci);
2696 used = __ceph_caps_used(ci);
2697 dirty = __ceph_caps_dirty(ci);
2698 dout(" my wanted = %s, used = %s, dirty %s\n",
2699 ceph_cap_string(wanted),
2700 ceph_cap_string(used),
2701 ceph_cap_string(dirty));
2702 if (wanted != le32_to_cpu(grant->wanted)) {
2703 dout("mds wanted %s -> %s\n",
2704 ceph_cap_string(le32_to_cpu(grant->wanted)),
2705 ceph_cap_string(wanted));
390306c3
YZ
2706 /* imported cap may not have correct mds_wanted */
2707 if (le32_to_cpu(grant->op) == CEPH_CAP_OP_IMPORT)
2708 check_caps = 1;
a8599bd8
SW
2709 }
2710
a8599bd8
SW
2711 /* revocation, grant, or no-op? */
2712 if (cap->issued & ~newcaps) {
3b454c49
SW
2713 int revoking = cap->issued & ~newcaps;
2714
2715 dout("revocation: %s -> %s (revoking %s)\n",
2716 ceph_cap_string(cap->issued),
2717 ceph_cap_string(newcaps),
2718 ceph_cap_string(revoking));
0eb6cd49 2719 if (revoking & used & CEPH_CAP_FILE_BUFFER)
ab6c2c3e 2720 writeback = true; /* initiate writeback; will delay ack */
3b454c49
SW
2721 else if (revoking == CEPH_CAP_FILE_CACHE &&
2722 (newcaps & CEPH_CAP_FILE_LAZYIO) == 0 &&
2723 queue_invalidate)
2724 ; /* do nothing yet, invalidation will be queued */
2725 else if (cap == ci->i_auth_cap)
2726 check_caps = 1; /* check auth cap only */
2727 else
2728 check_caps = 2; /* check all caps */
a8599bd8 2729 cap->issued = newcaps;
978097c9 2730 cap->implemented |= newcaps;
a8599bd8
SW
2731 } else if (cap->issued == newcaps) {
2732 dout("caps unchanged: %s -> %s\n",
2733 ceph_cap_string(cap->issued), ceph_cap_string(newcaps));
2734 } else {
2735 dout("grant: %s -> %s\n", ceph_cap_string(cap->issued),
2736 ceph_cap_string(newcaps));
6ee6b953
YZ
2737 /* non-auth MDS is revoking the newly grant caps ? */
2738 if (cap == ci->i_auth_cap &&
2739 __ceph_caps_revoking_other(ci, cap, newcaps))
2740 check_caps = 2;
2741
a8599bd8
SW
2742 cap->issued = newcaps;
2743 cap->implemented |= newcaps; /* add bits only, to
2744 * avoid stepping on a
2745 * pending revocation */
ab6c2c3e 2746 wake = true;
a8599bd8 2747 }
978097c9 2748 BUG_ON(cap->issued & ~cap->implemented);
a8599bd8 2749
31c542a1
YZ
2750 if (inline_version > 0 && inline_version >= ci->i_inline_version) {
2751 ci->i_inline_version = inline_version;
2752 if (ci->i_inline_version != CEPH_INLINE_NONE &&
2753 (newcaps & (CEPH_CAP_FILE_CACHE|CEPH_CAP_FILE_LAZYIO)))
2754 fill_inline = true;
2755 }
2756
be655596 2757 spin_unlock(&ci->i_ceph_lock);
99ccbd22 2758
2cd698be 2759 if (le32_to_cpu(grant->op) == CEPH_CAP_OP_IMPORT) {
2cd698be
YZ
2760 kick_flushing_inode_caps(mdsc, session, inode);
2761 up_read(&mdsc->snap_rwsem);
2762 if (newcaps & ~issued)
ab6c2c3e 2763 wake = true;
2cd698be
YZ
2764 }
2765
31c542a1
YZ
2766 if (fill_inline)
2767 ceph_fill_inline_data(inode, NULL, inline_data, inline_len);
2768
c6bcda6f
YZ
2769 if (queue_trunc) {
2770 ceph_queue_vmtruncate(inode);
2771 ceph_queue_revalidate(inode);
2772 } else if (queue_revalidate)
2773 ceph_queue_revalidate(inode);
2774
3c6f6b79 2775 if (writeback)
a8599bd8
SW
2776 /*
2777 * queue inode for writeback: we can't actually call
2778 * filemap_write_and_wait, etc. from message handler
2779 * context.
2780 */
3c6f6b79
SW
2781 ceph_queue_writeback(inode);
2782 if (queue_invalidate)
2783 ceph_queue_invalidate(inode);
ca20c991
YZ
2784 if (deleted_inode)
2785 invalidate_aliases(inode);
a8599bd8 2786 if (wake)
03066f23 2787 wake_up_all(&ci->i_cap_wq);
15637c8b
SW
2788
2789 if (check_caps == 1)
2790 ceph_check_caps(ci, CHECK_CAPS_NODELAY|CHECK_CAPS_AUTHONLY,
2791 session);
2792 else if (check_caps == 2)
2793 ceph_check_caps(ci, CHECK_CAPS_NODELAY, session);
2794 else
2795 mutex_unlock(&session->s_mutex);
a8599bd8
SW
2796}
2797
2798/*
2799 * Handle FLUSH_ACK from MDS, indicating that metadata we sent to the
2800 * MDS has been safely committed.
2801 */
6df058c0 2802static void handle_cap_flush_ack(struct inode *inode, u64 flush_tid,
a8599bd8
SW
2803 struct ceph_mds_caps *m,
2804 struct ceph_mds_session *session,
2805 struct ceph_cap *cap)
be655596 2806 __releases(ci->i_ceph_lock)
a8599bd8
SW
2807{
2808 struct ceph_inode_info *ci = ceph_inode(inode);
3d14c5d2 2809 struct ceph_mds_client *mdsc = ceph_sb_to_client(inode->i_sb)->mdsc;
a8599bd8
SW
2810 unsigned seq = le32_to_cpu(m->seq);
2811 int dirty = le32_to_cpu(m->dirty);
2812 int cleaned = 0;
afcdaea3 2813 int drop = 0;
a8599bd8
SW
2814 int i;
2815
2816 for (i = 0; i < CEPH_CAP_BITS; i++)
2817 if ((dirty & (1 << i)) &&
3231300b 2818 (u16)flush_tid == ci->i_cap_flush_tid[i])
a8599bd8
SW
2819 cleaned |= 1 << i;
2820
2821 dout("handle_cap_flush_ack inode %p mds%d seq %d on %s cleaned %s,"
2822 " flushing %s -> %s\n",
2823 inode, session->s_mds, seq, ceph_cap_string(dirty),
2824 ceph_cap_string(cleaned), ceph_cap_string(ci->i_flushing_caps),
2825 ceph_cap_string(ci->i_flushing_caps & ~cleaned));
2826
2827 if (ci->i_flushing_caps == (ci->i_flushing_caps & ~cleaned))
2828 goto out;
2829
a8599bd8 2830 ci->i_flushing_caps &= ~cleaned;
a8599bd8
SW
2831
2832 spin_lock(&mdsc->cap_dirty_lock);
2833 if (ci->i_flushing_caps == 0) {
2834 list_del_init(&ci->i_flushing_item);
2835 if (!list_empty(&session->s_cap_flushing))
2836 dout(" mds%d still flushing cap on %p\n",
2837 session->s_mds,
2838 &list_entry(session->s_cap_flushing.next,
2839 struct ceph_inode_info,
2840 i_flushing_item)->vfs_inode);
2841 mdsc->num_cap_flushing--;
03066f23 2842 wake_up_all(&mdsc->cap_flushing_wq);
a8599bd8 2843 dout(" inode %p now !flushing\n", inode);
afcdaea3
SW
2844
2845 if (ci->i_dirty_caps == 0) {
2846 dout(" inode %p now clean\n", inode);
2847 BUG_ON(!list_empty(&ci->i_dirty_item));
2848 drop = 1;
5dda377c
YZ
2849 if (ci->i_wr_ref == 0 &&
2850 ci->i_wrbuffer_ref_head == 0) {
7d8cb26d
SW
2851 BUG_ON(!ci->i_head_snapc);
2852 ceph_put_snap_context(ci->i_head_snapc);
2853 ci->i_head_snapc = NULL;
2854 }
76e3b390
SW
2855 } else {
2856 BUG_ON(list_empty(&ci->i_dirty_item));
afcdaea3 2857 }
a8599bd8
SW
2858 }
2859 spin_unlock(&mdsc->cap_dirty_lock);
03066f23 2860 wake_up_all(&ci->i_cap_wq);
a8599bd8
SW
2861
2862out:
be655596 2863 spin_unlock(&ci->i_ceph_lock);
afcdaea3 2864 if (drop)
a8599bd8
SW
2865 iput(inode);
2866}
2867
2868/*
2869 * Handle FLUSHSNAP_ACK. MDS has flushed snap data to disk and we can
2870 * throw away our cap_snap.
2871 *
2872 * Caller hold s_mutex.
2873 */
6df058c0 2874static void handle_cap_flushsnap_ack(struct inode *inode, u64 flush_tid,
a8599bd8
SW
2875 struct ceph_mds_caps *m,
2876 struct ceph_mds_session *session)
2877{
2878 struct ceph_inode_info *ci = ceph_inode(inode);
2879 u64 follows = le64_to_cpu(m->snap_follows);
a8599bd8
SW
2880 struct ceph_cap_snap *capsnap;
2881 int drop = 0;
2882
2883 dout("handle_cap_flushsnap_ack inode %p ci %p mds%d follows %lld\n",
2884 inode, ci, session->s_mds, follows);
2885
be655596 2886 spin_lock(&ci->i_ceph_lock);
a8599bd8
SW
2887 list_for_each_entry(capsnap, &ci->i_cap_snaps, ci_item) {
2888 if (capsnap->follows == follows) {
2889 if (capsnap->flush_tid != flush_tid) {
2890 dout(" cap_snap %p follows %lld tid %lld !="
2891 " %lld\n", capsnap, follows,
2892 flush_tid, capsnap->flush_tid);
2893 break;
2894 }
2895 WARN_ON(capsnap->dirty_pages || capsnap->writing);
819ccbfa
SW
2896 dout(" removing %p cap_snap %p follows %lld\n",
2897 inode, capsnap, follows);
a8599bd8
SW
2898 ceph_put_snap_context(capsnap->context);
2899 list_del(&capsnap->ci_item);
2900 list_del(&capsnap->flushing_item);
2901 ceph_put_cap_snap(capsnap);
2902 drop = 1;
2903 break;
2904 } else {
2905 dout(" skipping cap_snap %p follows %lld\n",
2906 capsnap, capsnap->follows);
2907 }
2908 }
be655596 2909 spin_unlock(&ci->i_ceph_lock);
a8599bd8
SW
2910 if (drop)
2911 iput(inode);
2912}
2913
2914/*
2915 * Handle TRUNC from MDS, indicating file truncation.
2916 *
2917 * caller hold s_mutex.
2918 */
2919static void handle_cap_trunc(struct inode *inode,
2920 struct ceph_mds_caps *trunc,
2921 struct ceph_mds_session *session)
be655596 2922 __releases(ci->i_ceph_lock)
a8599bd8
SW
2923{
2924 struct ceph_inode_info *ci = ceph_inode(inode);
2925 int mds = session->s_mds;
2926 int seq = le32_to_cpu(trunc->seq);
2927 u32 truncate_seq = le32_to_cpu(trunc->truncate_seq);
2928 u64 truncate_size = le64_to_cpu(trunc->truncate_size);
2929 u64 size = le64_to_cpu(trunc->size);
2930 int implemented = 0;
2931 int dirty = __ceph_caps_dirty(ci);
2932 int issued = __ceph_caps_issued(ceph_inode(inode), &implemented);
2933 int queue_trunc = 0;
2934
2935 issued |= implemented | dirty;
2936
2937 dout("handle_cap_trunc inode %p mds%d seq %d to %lld seq %d\n",
2938 inode, mds, seq, truncate_size, truncate_seq);
2939 queue_trunc = ceph_fill_file_size(inode, issued,
2940 truncate_seq, truncate_size, size);
be655596 2941 spin_unlock(&ci->i_ceph_lock);
a8599bd8 2942
99ccbd22 2943 if (queue_trunc) {
3c6f6b79 2944 ceph_queue_vmtruncate(inode);
99ccbd22
MT
2945 ceph_fscache_invalidate(inode);
2946 }
a8599bd8
SW
2947}
2948
2949/*
2950 * Handle EXPORT from MDS. Cap is being migrated _from_ this mds to a
2951 * different one. If we are the most recent migration we've seen (as
2952 * indicated by mseq), make note of the migrating cap bits for the
2953 * duration (until we see the corresponding IMPORT).
2954 *
2955 * caller holds s_mutex
2956 */
2957static void handle_cap_export(struct inode *inode, struct ceph_mds_caps *ex,
11df2dfb
YZ
2958 struct ceph_mds_cap_peer *ph,
2959 struct ceph_mds_session *session)
a8599bd8 2960{
db354052 2961 struct ceph_mds_client *mdsc = ceph_inode_to_client(inode)->mdsc;
11df2dfb 2962 struct ceph_mds_session *tsession = NULL;
d9df2783 2963 struct ceph_cap *cap, *tcap, *new_cap = NULL;
a8599bd8 2964 struct ceph_inode_info *ci = ceph_inode(inode);
11df2dfb 2965 u64 t_cap_id;
a8599bd8 2966 unsigned mseq = le32_to_cpu(ex->migrate_seq);
11df2dfb
YZ
2967 unsigned t_seq, t_mseq;
2968 int target, issued;
2969 int mds = session->s_mds;
a8599bd8 2970
11df2dfb
YZ
2971 if (ph) {
2972 t_cap_id = le64_to_cpu(ph->cap_id);
2973 t_seq = le32_to_cpu(ph->seq);
2974 t_mseq = le32_to_cpu(ph->mseq);
2975 target = le32_to_cpu(ph->mds);
2976 } else {
2977 t_cap_id = t_seq = t_mseq = 0;
2978 target = -1;
2979 }
a8599bd8 2980
11df2dfb
YZ
2981 dout("handle_cap_export inode %p ci %p mds%d mseq %d target %d\n",
2982 inode, ci, mds, mseq, target);
2983retry:
be655596 2984 spin_lock(&ci->i_ceph_lock);
11df2dfb 2985 cap = __get_cap_for_mds(ci, mds);
ca665e02 2986 if (!cap || cap->cap_id != le64_to_cpu(ex->cap_id))
11df2dfb 2987 goto out_unlock;
a8599bd8 2988
11df2dfb
YZ
2989 if (target < 0) {
2990 __ceph_remove_cap(cap, false);
2991 goto out_unlock;
a8599bd8
SW
2992 }
2993
11df2dfb
YZ
2994 /*
2995 * now we know we haven't received the cap import message yet
2996 * because the exported cap still exist.
2997 */
db354052 2998
11df2dfb
YZ
2999 issued = cap->issued;
3000 WARN_ON(issued != cap->implemented);
3001
3002 tcap = __get_cap_for_mds(ci, target);
3003 if (tcap) {
3004 /* already have caps from the target */
3005 if (tcap->cap_id != t_cap_id ||
3006 ceph_seq_cmp(tcap->seq, t_seq) < 0) {
3007 dout(" updating import cap %p mds%d\n", tcap, target);
3008 tcap->cap_id = t_cap_id;
3009 tcap->seq = t_seq - 1;
3010 tcap->issue_seq = t_seq - 1;
3011 tcap->mseq = t_mseq;
3012 tcap->issued |= issued;
3013 tcap->implemented |= issued;
3014 if (cap == ci->i_auth_cap)
3015 ci->i_auth_cap = tcap;
3016 if (ci->i_flushing_caps && ci->i_auth_cap == tcap) {
3017 spin_lock(&mdsc->cap_dirty_lock);
3018 list_move_tail(&ci->i_flushing_item,
3019 &tcap->session->s_cap_flushing);
3020 spin_unlock(&mdsc->cap_dirty_lock);
db354052 3021 }
a8599bd8 3022 }
a096b09a 3023 __ceph_remove_cap(cap, false);
11df2dfb 3024 goto out_unlock;
d9df2783 3025 } else if (tsession) {
11df2dfb 3026 /* add placeholder for the export tagert */
d9df2783 3027 int flag = (cap == ci->i_auth_cap) ? CEPH_CAP_FLAG_AUTH : 0;
11df2dfb 3028 ceph_add_cap(inode, tsession, t_cap_id, -1, issued, 0,
d9df2783
YZ
3029 t_seq - 1, t_mseq, (u64)-1, flag, &new_cap);
3030
3031 __ceph_remove_cap(cap, false);
3032 goto out_unlock;
a8599bd8
SW
3033 }
3034
be655596 3035 spin_unlock(&ci->i_ceph_lock);
11df2dfb
YZ
3036 mutex_unlock(&session->s_mutex);
3037
3038 /* open target session */
3039 tsession = ceph_mdsc_open_export_target_session(mdsc, target);
3040 if (!IS_ERR(tsession)) {
3041 if (mds > target) {
3042 mutex_lock(&session->s_mutex);
3043 mutex_lock_nested(&tsession->s_mutex,
3044 SINGLE_DEPTH_NESTING);
3045 } else {
3046 mutex_lock(&tsession->s_mutex);
3047 mutex_lock_nested(&session->s_mutex,
3048 SINGLE_DEPTH_NESTING);
3049 }
3050 ceph_add_cap_releases(mdsc, tsession);
d9df2783 3051 new_cap = ceph_get_cap(mdsc, NULL);
11df2dfb
YZ
3052 } else {
3053 WARN_ON(1);
3054 tsession = NULL;
3055 target = -1;
3056 }
3057 goto retry;
3058
3059out_unlock:
3060 spin_unlock(&ci->i_ceph_lock);
3061 mutex_unlock(&session->s_mutex);
3062 if (tsession) {
3063 mutex_unlock(&tsession->s_mutex);
3064 ceph_put_mds_session(tsession);
3065 }
d9df2783
YZ
3066 if (new_cap)
3067 ceph_put_cap(mdsc, new_cap);
a8599bd8
SW
3068}
3069
3070/*
2cd698be 3071 * Handle cap IMPORT.
a8599bd8 3072 *
2cd698be 3073 * caller holds s_mutex. acquires i_ceph_lock
a8599bd8
SW
3074 */
3075static void handle_cap_import(struct ceph_mds_client *mdsc,
3076 struct inode *inode, struct ceph_mds_caps *im,
4ee6a914 3077 struct ceph_mds_cap_peer *ph,
a8599bd8 3078 struct ceph_mds_session *session,
2cd698be
YZ
3079 struct ceph_cap **target_cap, int *old_issued)
3080 __acquires(ci->i_ceph_lock)
a8599bd8
SW
3081{
3082 struct ceph_inode_info *ci = ceph_inode(inode);
2cd698be 3083 struct ceph_cap *cap, *ocap, *new_cap = NULL;
a8599bd8 3084 int mds = session->s_mds;
2cd698be
YZ
3085 int issued;
3086 unsigned caps = le32_to_cpu(im->caps);
a8599bd8
SW
3087 unsigned wanted = le32_to_cpu(im->wanted);
3088 unsigned seq = le32_to_cpu(im->seq);
3089 unsigned mseq = le32_to_cpu(im->migrate_seq);
3090 u64 realmino = le64_to_cpu(im->realm);
3091 u64 cap_id = le64_to_cpu(im->cap_id);
4ee6a914
YZ
3092 u64 p_cap_id;
3093 int peer;
a8599bd8 3094
4ee6a914
YZ
3095 if (ph) {
3096 p_cap_id = le64_to_cpu(ph->cap_id);
3097 peer = le32_to_cpu(ph->mds);
3098 } else {
3099 p_cap_id = 0;
3100 peer = -1;
3101 }
db354052 3102
4ee6a914
YZ
3103 dout("handle_cap_import inode %p ci %p mds%d mseq %d peer %d\n",
3104 inode, ci, mds, mseq, peer);
3105
d9df2783 3106retry:
4ee6a914 3107 spin_lock(&ci->i_ceph_lock);
d9df2783
YZ
3108 cap = __get_cap_for_mds(ci, mds);
3109 if (!cap) {
3110 if (!new_cap) {
3111 spin_unlock(&ci->i_ceph_lock);
3112 new_cap = ceph_get_cap(mdsc, NULL);
3113 goto retry;
3114 }
2cd698be
YZ
3115 cap = new_cap;
3116 } else {
3117 if (new_cap) {
3118 ceph_put_cap(mdsc, new_cap);
3119 new_cap = NULL;
3120 }
d9df2783
YZ
3121 }
3122
2cd698be
YZ
3123 __ceph_caps_issued(ci, &issued);
3124 issued |= __ceph_caps_dirty(ci);
3125
3126 ceph_add_cap(inode, session, cap_id, -1, caps, wanted, seq, mseq,
d9df2783
YZ
3127 realmino, CEPH_CAP_FLAG_AUTH, &new_cap);
3128
2cd698be
YZ
3129 ocap = peer >= 0 ? __get_cap_for_mds(ci, peer) : NULL;
3130 if (ocap && ocap->cap_id == p_cap_id) {
4ee6a914 3131 dout(" remove export cap %p mds%d flags %d\n",
2cd698be 3132 ocap, peer, ph->flags);
4ee6a914 3133 if ((ph->flags & CEPH_CAP_FLAG_AUTH) &&
2cd698be
YZ
3134 (ocap->seq != le32_to_cpu(ph->seq) ||
3135 ocap->mseq != le32_to_cpu(ph->mseq))) {
4ee6a914
YZ
3136 pr_err("handle_cap_import: mismatched seq/mseq: "
3137 "ino (%llx.%llx) mds%d seq %d mseq %d "
3138 "importer mds%d has peer seq %d mseq %d\n",
2cd698be
YZ
3139 ceph_vinop(inode), peer, ocap->seq,
3140 ocap->mseq, mds, le32_to_cpu(ph->seq),
4ee6a914 3141 le32_to_cpu(ph->mseq));
db354052 3142 }
2cd698be 3143 __ceph_remove_cap(ocap, (ph->flags & CEPH_CAP_FLAG_RELEASE));
a8599bd8
SW
3144 }
3145
4ee6a914
YZ
3146 /* make sure we re-request max_size, if necessary */
3147 ci->i_wanted_max_size = 0;
3148 ci->i_requested_max_size = 0;
d9df2783 3149
2cd698be
YZ
3150 *old_issued = issued;
3151 *target_cap = cap;
a8599bd8
SW
3152}
3153
3154/*
3155 * Handle a caps message from the MDS.
3156 *
3157 * Identify the appropriate session, inode, and call the right handler
3158 * based on the cap op.
3159 */
3160void ceph_handle_caps(struct ceph_mds_session *session,
3161 struct ceph_msg *msg)
3162{
3163 struct ceph_mds_client *mdsc = session->s_mdsc;
3d14c5d2 3164 struct super_block *sb = mdsc->fsc->sb;
a8599bd8 3165 struct inode *inode;
be655596 3166 struct ceph_inode_info *ci;
a8599bd8
SW
3167 struct ceph_cap *cap;
3168 struct ceph_mds_caps *h;
4ee6a914 3169 struct ceph_mds_cap_peer *peer = NULL;
982d6011 3170 struct ceph_snap_realm *realm;
2600d2dd 3171 int mds = session->s_mds;
2cd698be 3172 int op, issued;
3d7ded4d 3173 u32 seq, mseq;
a8599bd8
SW
3174 struct ceph_vino vino;
3175 u64 cap_id;
3176 u64 size, max_size;
6df058c0 3177 u64 tid;
fb01d1f8
YZ
3178 u64 inline_version = 0;
3179 void *inline_data = NULL;
3180 u32 inline_len = 0;
70edb55b 3181 void *snaptrace;
ce1fbc8d 3182 size_t snaptrace_len;
fb01d1f8 3183 void *p, *end;
a8599bd8
SW
3184
3185 dout("handle_caps from mds%d\n", mds);
3186
3187 /* decode */
4ee6a914 3188 end = msg->front.iov_base + msg->front.iov_len;
6df058c0 3189 tid = le64_to_cpu(msg->hdr.tid);
a8599bd8
SW
3190 if (msg->front.iov_len < sizeof(*h))
3191 goto bad;
3192 h = msg->front.iov_base;
3193 op = le32_to_cpu(h->op);
3194 vino.ino = le64_to_cpu(h->ino);
3195 vino.snap = CEPH_NOSNAP;
3196 cap_id = le64_to_cpu(h->cap_id);
3197 seq = le32_to_cpu(h->seq);
3d7ded4d 3198 mseq = le32_to_cpu(h->migrate_seq);
a8599bd8
SW
3199 size = le64_to_cpu(h->size);
3200 max_size = le64_to_cpu(h->max_size);
3201
ce1fbc8d
SW
3202 snaptrace = h + 1;
3203 snaptrace_len = le32_to_cpu(h->snap_trace_len);
fb01d1f8 3204 p = snaptrace + snaptrace_len;
ce1fbc8d
SW
3205
3206 if (le16_to_cpu(msg->hdr.version) >= 2) {
fb01d1f8 3207 u32 flock_len;
ce1fbc8d 3208 ceph_decode_32_safe(&p, end, flock_len, bad);
4ee6a914
YZ
3209 if (p + flock_len > end)
3210 goto bad;
fb01d1f8 3211 p += flock_len;
ce1fbc8d
SW
3212 }
3213
4ee6a914
YZ
3214 if (le16_to_cpu(msg->hdr.version) >= 3) {
3215 if (op == CEPH_CAP_OP_IMPORT) {
4ee6a914
YZ
3216 if (p + sizeof(*peer) > end)
3217 goto bad;
3218 peer = p;
fb01d1f8 3219 p += sizeof(*peer);
11df2dfb
YZ
3220 } else if (op == CEPH_CAP_OP_EXPORT) {
3221 /* recorded in unused fields */
3222 peer = (void *)&h->size;
4ee6a914
YZ
3223 }
3224 }
3225
fb01d1f8
YZ
3226 if (le16_to_cpu(msg->hdr.version) >= 4) {
3227 ceph_decode_64_safe(&p, end, inline_version, bad);
3228 ceph_decode_32_safe(&p, end, inline_len, bad);
3229 if (p + inline_len > end)
3230 goto bad;
3231 inline_data = p;
3232 p += inline_len;
3233 }
3234
6cd3bcad
YZ
3235 /* lookup ino */
3236 inode = ceph_find_inode(sb, vino);
3237 ci = ceph_inode(inode);
3238 dout(" op %s ino %llx.%llx inode %p\n", ceph_cap_op_name(op), vino.ino,
3239 vino.snap, inode);
3240
a8599bd8
SW
3241 mutex_lock(&session->s_mutex);
3242 session->s_seq++;
3243 dout(" mds%d seq %lld cap seq %u\n", session->s_mds, session->s_seq,
3244 (unsigned)seq);
3245
66f58691
YZ
3246 if (op == CEPH_CAP_OP_IMPORT)
3247 ceph_add_cap_releases(mdsc, session);
3248
a8599bd8
SW
3249 if (!inode) {
3250 dout(" i don't have ino %llx\n", vino.ino);
3d7ded4d 3251
a096b09a
YZ
3252 if (op == CEPH_CAP_OP_IMPORT) {
3253 spin_lock(&session->s_cap_lock);
3d7ded4d
SW
3254 __queue_cap_release(session, vino.ino, cap_id,
3255 mseq, seq);
a096b09a
YZ
3256 spin_unlock(&session->s_cap_lock);
3257 }
21b559de 3258 goto flush_cap_releases;
a8599bd8
SW
3259 }
3260
3261 /* these will work even if we don't have a cap yet */
3262 switch (op) {
3263 case CEPH_CAP_OP_FLUSHSNAP_ACK:
6df058c0 3264 handle_cap_flushsnap_ack(inode, tid, h, session);
a8599bd8
SW
3265 goto done;
3266
3267 case CEPH_CAP_OP_EXPORT:
11df2dfb
YZ
3268 handle_cap_export(inode, h, peer, session);
3269 goto done_unlocked;
a8599bd8
SW
3270
3271 case CEPH_CAP_OP_IMPORT:
982d6011
YZ
3272 realm = NULL;
3273 if (snaptrace_len) {
3274 down_write(&mdsc->snap_rwsem);
3275 ceph_update_snap_trace(mdsc, snaptrace,
3276 snaptrace + snaptrace_len,
3277 false, &realm);
3278 downgrade_write(&mdsc->snap_rwsem);
3279 } else {
3280 down_read(&mdsc->snap_rwsem);
3281 }
4ee6a914 3282 handle_cap_import(mdsc, inode, h, peer, session,
2cd698be 3283 &cap, &issued);
982d6011 3284 handle_cap_grant(mdsc, inode, h,
fb01d1f8 3285 inline_version, inline_data, inline_len,
2cd698be 3286 msg->middle, session, cap, issued);
982d6011
YZ
3287 if (realm)
3288 ceph_put_snap_realm(mdsc, realm);
2cd698be 3289 goto done_unlocked;
a8599bd8
SW
3290 }
3291
3292 /* the rest require a cap */
be655596 3293 spin_lock(&ci->i_ceph_lock);
a8599bd8
SW
3294 cap = __get_cap_for_mds(ceph_inode(inode), mds);
3295 if (!cap) {
9dbd412f 3296 dout(" no cap on %p ino %llx.%llx from mds%d\n",
a8599bd8 3297 inode, ceph_ino(inode), ceph_snap(inode), mds);
be655596 3298 spin_unlock(&ci->i_ceph_lock);
21b559de 3299 goto flush_cap_releases;
a8599bd8
SW
3300 }
3301
be655596 3302 /* note that each of these drops i_ceph_lock for us */
a8599bd8
SW
3303 switch (op) {
3304 case CEPH_CAP_OP_REVOKE:
3305 case CEPH_CAP_OP_GRANT:
2cd698be
YZ
3306 __ceph_caps_issued(ci, &issued);
3307 issued |= __ceph_caps_dirty(ci);
982d6011 3308 handle_cap_grant(mdsc, inode, h,
fb01d1f8
YZ
3309 inline_version, inline_data, inline_len,
3310 msg->middle, session, cap, issued);
15637c8b 3311 goto done_unlocked;
a8599bd8
SW
3312
3313 case CEPH_CAP_OP_FLUSH_ACK:
6df058c0 3314 handle_cap_flush_ack(inode, tid, h, session, cap);
a8599bd8
SW
3315 break;
3316
3317 case CEPH_CAP_OP_TRUNC:
3318 handle_cap_trunc(inode, h, session);
3319 break;
3320
3321 default:
be655596 3322 spin_unlock(&ci->i_ceph_lock);
a8599bd8
SW
3323 pr_err("ceph_handle_caps: unknown cap op %d %s\n", op,
3324 ceph_cap_op_name(op));
3325 }
3326
21b559de
GF
3327 goto done;
3328
3329flush_cap_releases:
3330 /*
3331 * send any full release message to try to move things
3332 * along for the mds (who clearly thinks we still have this
3333 * cap).
3334 */
3335 ceph_add_cap_releases(mdsc, session);
3336 ceph_send_cap_releases(mdsc, session);
3337
a8599bd8 3338done:
15637c8b
SW
3339 mutex_unlock(&session->s_mutex);
3340done_unlocked:
e96a650a 3341 iput(inode);
a8599bd8
SW
3342 return;
3343
3344bad:
3345 pr_err("ceph_handle_caps: corrupt message\n");
9ec7cab1 3346 ceph_msg_dump(msg);
a8599bd8
SW
3347 return;
3348}
3349
3350/*
3351 * Delayed work handler to process end of delayed cap release LRU list.
3352 */
afcdaea3 3353void ceph_check_delayed_caps(struct ceph_mds_client *mdsc)
a8599bd8
SW
3354{
3355 struct ceph_inode_info *ci;
3356 int flags = CHECK_CAPS_NODELAY;
3357
a8599bd8
SW
3358 dout("check_delayed_caps\n");
3359 while (1) {
3360 spin_lock(&mdsc->cap_delay_lock);
3361 if (list_empty(&mdsc->cap_delay_list))
3362 break;
3363 ci = list_first_entry(&mdsc->cap_delay_list,
3364 struct ceph_inode_info,
3365 i_cap_delay_list);
3366 if ((ci->i_ceph_flags & CEPH_I_FLUSH) == 0 &&
3367 time_before(jiffies, ci->i_hold_caps_max))
3368 break;
3369 list_del_init(&ci->i_cap_delay_list);
3370 spin_unlock(&mdsc->cap_delay_lock);
3371 dout("check_delayed_caps on %p\n", &ci->vfs_inode);
3372 ceph_check_caps(ci, flags, NULL);
3373 }
3374 spin_unlock(&mdsc->cap_delay_lock);
3375}
3376
afcdaea3
SW
3377/*
3378 * Flush all dirty caps to the mds
3379 */
3380void ceph_flush_dirty_caps(struct ceph_mds_client *mdsc)
3381{
db354052
SW
3382 struct ceph_inode_info *ci;
3383 struct inode *inode;
afcdaea3
SW
3384
3385 dout("flush_dirty_caps\n");
3386 spin_lock(&mdsc->cap_dirty_lock);
db354052
SW
3387 while (!list_empty(&mdsc->cap_dirty)) {
3388 ci = list_first_entry(&mdsc->cap_dirty, struct ceph_inode_info,
3389 i_dirty_item);
70b666c3
SW
3390 inode = &ci->vfs_inode;
3391 ihold(inode);
db354052 3392 dout("flush_dirty_caps %p\n", inode);
afcdaea3 3393 spin_unlock(&mdsc->cap_dirty_lock);
70b666c3
SW
3394 ceph_check_caps(ci, CHECK_CAPS_NODELAY|CHECK_CAPS_FLUSH, NULL);
3395 iput(inode);
afcdaea3
SW
3396 spin_lock(&mdsc->cap_dirty_lock);
3397 }
3398 spin_unlock(&mdsc->cap_dirty_lock);
db354052 3399 dout("flush_dirty_caps done\n");
afcdaea3
SW
3400}
3401
a8599bd8
SW
3402/*
3403 * Drop open file reference. If we were the last open file,
3404 * we may need to release capabilities to the MDS (or schedule
3405 * their delayed release).
3406 */
3407void ceph_put_fmode(struct ceph_inode_info *ci, int fmode)
3408{
3409 struct inode *inode = &ci->vfs_inode;
3410 int last = 0;
3411
be655596 3412 spin_lock(&ci->i_ceph_lock);
a8599bd8
SW
3413 dout("put_fmode %p fmode %d %d -> %d\n", inode, fmode,
3414 ci->i_nr_by_mode[fmode], ci->i_nr_by_mode[fmode]-1);
3415 BUG_ON(ci->i_nr_by_mode[fmode] == 0);
3416 if (--ci->i_nr_by_mode[fmode] == 0)
3417 last++;
be655596 3418 spin_unlock(&ci->i_ceph_lock);
a8599bd8
SW
3419
3420 if (last && ci->i_vino.snap == CEPH_NOSNAP)
3421 ceph_check_caps(ci, 0, NULL);
3422}
3423
3424/*
3425 * Helpers for embedding cap and dentry lease releases into mds
3426 * requests.
3427 *
3428 * @force is used by dentry_release (below) to force inclusion of a
3429 * record for the directory inode, even when there aren't any caps to
3430 * drop.
3431 */
3432int ceph_encode_inode_release(void **p, struct inode *inode,
3433 int mds, int drop, int unless, int force)
3434{
3435 struct ceph_inode_info *ci = ceph_inode(inode);
3436 struct ceph_cap *cap;
3437 struct ceph_mds_request_release *rel = *p;
ec97f88b 3438 int used, dirty;
a8599bd8 3439 int ret = 0;
a8599bd8 3440
be655596 3441 spin_lock(&ci->i_ceph_lock);
916623da 3442 used = __ceph_caps_used(ci);
ec97f88b 3443 dirty = __ceph_caps_dirty(ci);
916623da 3444
ec97f88b
SW
3445 dout("encode_inode_release %p mds%d used|dirty %s drop %s unless %s\n",
3446 inode, mds, ceph_cap_string(used|dirty), ceph_cap_string(drop),
916623da
SW
3447 ceph_cap_string(unless));
3448
ec97f88b
SW
3449 /* only drop unused, clean caps */
3450 drop &= ~(used | dirty);
916623da 3451
a8599bd8
SW
3452 cap = __get_cap_for_mds(ci, mds);
3453 if (cap && __cap_is_valid(cap)) {
3454 if (force ||
3455 ((cap->issued & drop) &&
3456 (cap->issued & unless) == 0)) {
3457 if ((cap->issued & drop) &&
3458 (cap->issued & unless) == 0) {
bb137f84
YZ
3459 int wanted = __ceph_caps_wanted(ci);
3460 if ((ci->i_ceph_flags & CEPH_I_NODELAY) == 0)
3461 wanted |= cap->mds_wanted;
3462 dout("encode_inode_release %p cap %p "
3463 "%s -> %s, wanted %s -> %s\n", inode, cap,
a8599bd8 3464 ceph_cap_string(cap->issued),
bb137f84
YZ
3465 ceph_cap_string(cap->issued & ~drop),
3466 ceph_cap_string(cap->mds_wanted),
3467 ceph_cap_string(wanted));
3468
a8599bd8
SW
3469 cap->issued &= ~drop;
3470 cap->implemented &= ~drop;
bb137f84 3471 cap->mds_wanted = wanted;
a8599bd8
SW
3472 } else {
3473 dout("encode_inode_release %p cap %p %s"
3474 " (force)\n", inode, cap,
3475 ceph_cap_string(cap->issued));
3476 }
3477
3478 rel->ino = cpu_to_le64(ceph_ino(inode));
3479 rel->cap_id = cpu_to_le64(cap->cap_id);
3480 rel->seq = cpu_to_le32(cap->seq);
08a0f24e 3481 rel->issue_seq = cpu_to_le32(cap->issue_seq);
a8599bd8 3482 rel->mseq = cpu_to_le32(cap->mseq);
fd7b95cd 3483 rel->caps = cpu_to_le32(cap->implemented);
a8599bd8
SW
3484 rel->wanted = cpu_to_le32(cap->mds_wanted);
3485 rel->dname_len = 0;
3486 rel->dname_seq = 0;
3487 *p += sizeof(*rel);
3488 ret = 1;
3489 } else {
3490 dout("encode_inode_release %p cap %p %s\n",
3491 inode, cap, ceph_cap_string(cap->issued));
3492 }
3493 }
be655596 3494 spin_unlock(&ci->i_ceph_lock);
a8599bd8
SW
3495 return ret;
3496}
3497
3498int ceph_encode_dentry_release(void **p, struct dentry *dentry,
3499 int mds, int drop, int unless)
3500{
2b0143b5 3501 struct inode *dir = d_inode(dentry->d_parent);
a8599bd8
SW
3502 struct ceph_mds_request_release *rel = *p;
3503 struct ceph_dentry_info *di = ceph_dentry(dentry);
3504 int force = 0;
3505 int ret;
3506
3507 /*
3508 * force an record for the directory caps if we have a dentry lease.
be655596 3509 * this is racy (can't take i_ceph_lock and d_lock together), but it
a8599bd8
SW
3510 * doesn't have to be perfect; the mds will revoke anything we don't
3511 * release.
3512 */
3513 spin_lock(&dentry->d_lock);
3514 if (di->lease_session && di->lease_session->s_mds == mds)
3515 force = 1;
3516 spin_unlock(&dentry->d_lock);
3517
3518 ret = ceph_encode_inode_release(p, dir, mds, drop, unless, force);
3519
3520 spin_lock(&dentry->d_lock);
3521 if (ret && di->lease_session && di->lease_session->s_mds == mds) {
3522 dout("encode_dentry_release %p mds%d seq %d\n",
3523 dentry, mds, (int)di->lease_seq);
3524 rel->dname_len = cpu_to_le32(dentry->d_name.len);
3525 memcpy(*p, dentry->d_name.name, dentry->d_name.len);
3526 *p += dentry->d_name.len;
3527 rel->dname_seq = cpu_to_le32(di->lease_seq);
1dadcce3 3528 __ceph_mdsc_drop_dentry_lease(dentry);
a8599bd8
SW
3529 }
3530 spin_unlock(&dentry->d_lock);
3531 return ret;
3532}