1 #include <linux/ceph/ceph_debug.h> 2 3 #include <linux/module.h> 4 #include <linux/fs.h> 5 #include <linux/slab.h> 6 #include <linux/string.h> 7 #include <linux/uaccess.h> 8 #include <linux/kernel.h> 9 #include <linux/namei.h> 10 #include <linux/writeback.h> 11 #include <linux/vmalloc.h> 12 13 #include "super.h" 14 #include "mds_client.h" 15 #include <linux/ceph/decode.h> 16 17 /* 18 * Ceph inode operations 19 * 20 * Implement basic inode helpers (get, alloc) and inode ops (getattr, 21 * setattr, etc.), xattr helpers, and helpers for assimilating 22 * metadata returned by the MDS into our cache. 23 * 24 * Also define helpers for doing asynchronous writeback, invalidation, 25 * and truncation for the benefit of those who can't afford to block 26 * (typically because they are in the message handler path). 27 */ 28 29 static const struct inode_operations ceph_symlink_iops; 30 31 static void ceph_invalidate_work(struct work_struct *work); 32 static void ceph_writeback_work(struct work_struct *work); 33 static void ceph_vmtruncate_work(struct work_struct *work); 34 35 /* 36 * find or create an inode, given the ceph ino number 37 */ 38 static int ceph_set_ino_cb(struct inode *inode, void *data) 39 { 40 ceph_inode(inode)->i_vino = *(struct ceph_vino *)data; 41 inode->i_ino = ceph_vino_to_ino(*(struct ceph_vino *)data); 42 return 0; 43 } 44 45 struct inode *ceph_get_inode(struct super_block *sb, struct ceph_vino vino) 46 { 47 struct inode *inode; 48 ino_t t = ceph_vino_to_ino(vino); 49 50 inode = iget5_locked(sb, t, ceph_ino_compare, ceph_set_ino_cb, &vino); 51 if (inode == NULL) 52 return ERR_PTR(-ENOMEM); 53 if (inode->i_state & I_NEW) { 54 dout("get_inode created new inode %p %llx.%llx ino %llx\n", 55 inode, ceph_vinop(inode), (u64)inode->i_ino); 56 unlock_new_inode(inode); 57 } 58 59 dout("get_inode on %lu=%llx.%llx got %p\n", inode->i_ino, vino.ino, 60 vino.snap, inode); 61 return inode; 62 } 63 64 /* 65 * get/constuct snapdir inode for a given directory 66 */ 67 struct inode *ceph_get_snapdir(struct inode *parent) 68 { 69 struct ceph_vino vino = { 70 .ino = ceph_ino(parent), 71 .snap = CEPH_SNAPDIR, 72 }; 73 struct inode *inode = ceph_get_inode(parent->i_sb, vino); 74 struct ceph_inode_info *ci = ceph_inode(inode); 75 76 BUG_ON(!S_ISDIR(parent->i_mode)); 77 if (IS_ERR(inode)) 78 return inode; 79 inode->i_mode = parent->i_mode; 80 inode->i_uid = parent->i_uid; 81 inode->i_gid = parent->i_gid; 82 inode->i_op = &ceph_dir_iops; 83 inode->i_fop = &ceph_dir_fops; 84 ci->i_snap_caps = CEPH_CAP_PIN; /* so we can open */ 85 ci->i_rbytes = 0; 86 return inode; 87 } 88 89 const struct inode_operations ceph_file_iops = { 90 .permission = ceph_permission, 91 .setattr = ceph_setattr, 92 .getattr = ceph_getattr, 93 .setxattr = ceph_setxattr, 94 .getxattr = ceph_getxattr, 95 .listxattr = ceph_listxattr, 96 .removexattr = ceph_removexattr, 97 }; 98 99 100 /* 101 * We use a 'frag tree' to keep track of the MDS's directory fragments 102 * for a given inode (usually there is just a single fragment). We 103 * need to know when a child frag is delegated to a new MDS, or when 104 * it is flagged as replicated, so we can direct our requests 105 * accordingly. 106 */ 107 108 /* 109 * find/create a frag in the tree 110 */ 111 static struct ceph_inode_frag *__get_or_create_frag(struct ceph_inode_info *ci, 112 u32 f) 113 { 114 struct rb_node **p; 115 struct rb_node *parent = NULL; 116 struct ceph_inode_frag *frag; 117 int c; 118 119 p = &ci->i_fragtree.rb_node; 120 while (*p) { 121 parent = *p; 122 frag = rb_entry(parent, struct ceph_inode_frag, node); 123 c = ceph_frag_compare(f, frag->frag); 124 if (c < 0) 125 p = &(*p)->rb_left; 126 else if (c > 0) 127 p = &(*p)->rb_right; 128 else 129 return frag; 130 } 131 132 frag = kmalloc(sizeof(*frag), GFP_NOFS); 133 if (!frag) { 134 pr_err("__get_or_create_frag ENOMEM on %p %llx.%llx " 135 "frag %x\n", &ci->vfs_inode, 136 ceph_vinop(&ci->vfs_inode), f); 137 return ERR_PTR(-ENOMEM); 138 } 139 frag->frag = f; 140 frag->split_by = 0; 141 frag->mds = -1; 142 frag->ndist = 0; 143 144 rb_link_node(&frag->node, parent, p); 145 rb_insert_color(&frag->node, &ci->i_fragtree); 146 147 dout("get_or_create_frag added %llx.%llx frag %x\n", 148 ceph_vinop(&ci->vfs_inode), f); 149 return frag; 150 } 151 152 /* 153 * find a specific frag @f 154 */ 155 struct ceph_inode_frag *__ceph_find_frag(struct ceph_inode_info *ci, u32 f) 156 { 157 struct rb_node *n = ci->i_fragtree.rb_node; 158 159 while (n) { 160 struct ceph_inode_frag *frag = 161 rb_entry(n, struct ceph_inode_frag, node); 162 int c = ceph_frag_compare(f, frag->frag); 163 if (c < 0) 164 n = n->rb_left; 165 else if (c > 0) 166 n = n->rb_right; 167 else 168 return frag; 169 } 170 return NULL; 171 } 172 173 /* 174 * Choose frag containing the given value @v. If @pfrag is 175 * specified, copy the frag delegation info to the caller if 176 * it is present. 177 */ 178 u32 ceph_choose_frag(struct ceph_inode_info *ci, u32 v, 179 struct ceph_inode_frag *pfrag, 180 int *found) 181 { 182 u32 t = ceph_frag_make(0, 0); 183 struct ceph_inode_frag *frag; 184 unsigned nway, i; 185 u32 n; 186 187 if (found) 188 *found = 0; 189 190 mutex_lock(&ci->i_fragtree_mutex); 191 while (1) { 192 WARN_ON(!ceph_frag_contains_value(t, v)); 193 frag = __ceph_find_frag(ci, t); 194 if (!frag) 195 break; /* t is a leaf */ 196 if (frag->split_by == 0) { 197 if (pfrag) 198 memcpy(pfrag, frag, sizeof(*pfrag)); 199 if (found) 200 *found = 1; 201 break; 202 } 203 204 /* choose child */ 205 nway = 1 << frag->split_by; 206 dout("choose_frag(%x) %x splits by %d (%d ways)\n", v, t, 207 frag->split_by, nway); 208 for (i = 0; i < nway; i++) { 209 n = ceph_frag_make_child(t, frag->split_by, i); 210 if (ceph_frag_contains_value(n, v)) { 211 t = n; 212 break; 213 } 214 } 215 BUG_ON(i == nway); 216 } 217 dout("choose_frag(%x) = %x\n", v, t); 218 219 mutex_unlock(&ci->i_fragtree_mutex); 220 return t; 221 } 222 223 /* 224 * Process dirfrag (delegation) info from the mds. Include leaf 225 * fragment in tree ONLY if ndist > 0. Otherwise, only 226 * branches/splits are included in i_fragtree) 227 */ 228 static int ceph_fill_dirfrag(struct inode *inode, 229 struct ceph_mds_reply_dirfrag *dirinfo) 230 { 231 struct ceph_inode_info *ci = ceph_inode(inode); 232 struct ceph_inode_frag *frag; 233 u32 id = le32_to_cpu(dirinfo->frag); 234 int mds = le32_to_cpu(dirinfo->auth); 235 int ndist = le32_to_cpu(dirinfo->ndist); 236 int i; 237 int err = 0; 238 239 mutex_lock(&ci->i_fragtree_mutex); 240 if (ndist == 0) { 241 /* no delegation info needed. */ 242 frag = __ceph_find_frag(ci, id); 243 if (!frag) 244 goto out; 245 if (frag->split_by == 0) { 246 /* tree leaf, remove */ 247 dout("fill_dirfrag removed %llx.%llx frag %x" 248 " (no ref)\n", ceph_vinop(inode), id); 249 rb_erase(&frag->node, &ci->i_fragtree); 250 kfree(frag); 251 } else { 252 /* tree branch, keep and clear */ 253 dout("fill_dirfrag cleared %llx.%llx frag %x" 254 " referral\n", ceph_vinop(inode), id); 255 frag->mds = -1; 256 frag->ndist = 0; 257 } 258 goto out; 259 } 260 261 262 /* find/add this frag to store mds delegation info */ 263 frag = __get_or_create_frag(ci, id); 264 if (IS_ERR(frag)) { 265 /* this is not the end of the world; we can continue 266 with bad/inaccurate delegation info */ 267 pr_err("fill_dirfrag ENOMEM on mds ref %llx.%llx fg %x\n", 268 ceph_vinop(inode), le32_to_cpu(dirinfo->frag)); 269 err = -ENOMEM; 270 goto out; 271 } 272 273 frag->mds = mds; 274 frag->ndist = min_t(u32, ndist, CEPH_MAX_DIRFRAG_REP); 275 for (i = 0; i < frag->ndist; i++) 276 frag->dist[i] = le32_to_cpu(dirinfo->dist[i]); 277 dout("fill_dirfrag %llx.%llx frag %x ndist=%d\n", 278 ceph_vinop(inode), frag->frag, frag->ndist); 279 280 out: 281 mutex_unlock(&ci->i_fragtree_mutex); 282 return err; 283 } 284 285 286 /* 287 * initialize a newly allocated inode. 288 */ 289 struct inode *ceph_alloc_inode(struct super_block *sb) 290 { 291 struct ceph_inode_info *ci; 292 int i; 293 294 ci = kmem_cache_alloc(ceph_inode_cachep, GFP_NOFS); 295 if (!ci) 296 return NULL; 297 298 dout("alloc_inode %p\n", &ci->vfs_inode); 299 300 spin_lock_init(&ci->i_ceph_lock); 301 302 ci->i_version = 0; 303 ci->i_time_warp_seq = 0; 304 ci->i_ceph_flags = 0; 305 atomic_set(&ci->i_release_count, 1); 306 atomic_set(&ci->i_complete_count, 0); 307 ci->i_symlink = NULL; 308 309 memset(&ci->i_dir_layout, 0, sizeof(ci->i_dir_layout)); 310 311 ci->i_fragtree = RB_ROOT; 312 mutex_init(&ci->i_fragtree_mutex); 313 314 ci->i_xattrs.blob = NULL; 315 ci->i_xattrs.prealloc_blob = NULL; 316 ci->i_xattrs.dirty = false; 317 ci->i_xattrs.index = RB_ROOT; 318 ci->i_xattrs.count = 0; 319 ci->i_xattrs.names_size = 0; 320 ci->i_xattrs.vals_size = 0; 321 ci->i_xattrs.version = 0; 322 ci->i_xattrs.index_version = 0; 323 324 ci->i_caps = RB_ROOT; 325 ci->i_auth_cap = NULL; 326 ci->i_dirty_caps = 0; 327 ci->i_flushing_caps = 0; 328 INIT_LIST_HEAD(&ci->i_dirty_item); 329 INIT_LIST_HEAD(&ci->i_flushing_item); 330 ci->i_cap_flush_seq = 0; 331 ci->i_cap_flush_last_tid = 0; 332 memset(&ci->i_cap_flush_tid, 0, sizeof(ci->i_cap_flush_tid)); 333 init_waitqueue_head(&ci->i_cap_wq); 334 ci->i_hold_caps_min = 0; 335 ci->i_hold_caps_max = 0; 336 INIT_LIST_HEAD(&ci->i_cap_delay_list); 337 ci->i_cap_exporting_mds = 0; 338 ci->i_cap_exporting_mseq = 0; 339 ci->i_cap_exporting_issued = 0; 340 INIT_LIST_HEAD(&ci->i_cap_snaps); 341 ci->i_head_snapc = NULL; 342 ci->i_snap_caps = 0; 343 344 for (i = 0; i < CEPH_FILE_MODE_NUM; i++) 345 ci->i_nr_by_mode[i] = 0; 346 347 ci->i_truncate_seq = 0; 348 ci->i_truncate_size = 0; 349 ci->i_truncate_pending = 0; 350 351 ci->i_max_size = 0; 352 ci->i_reported_size = 0; 353 ci->i_wanted_max_size = 0; 354 ci->i_requested_max_size = 0; 355 356 ci->i_pin_ref = 0; 357 ci->i_rd_ref = 0; 358 ci->i_rdcache_ref = 0; 359 ci->i_wr_ref = 0; 360 ci->i_wb_ref = 0; 361 ci->i_wrbuffer_ref = 0; 362 ci->i_wrbuffer_ref_head = 0; 363 ci->i_shared_gen = 0; 364 ci->i_rdcache_gen = 0; 365 ci->i_rdcache_revoking = 0; 366 367 INIT_LIST_HEAD(&ci->i_unsafe_writes); 368 INIT_LIST_HEAD(&ci->i_unsafe_dirops); 369 spin_lock_init(&ci->i_unsafe_lock); 370 371 ci->i_snap_realm = NULL; 372 INIT_LIST_HEAD(&ci->i_snap_realm_item); 373 INIT_LIST_HEAD(&ci->i_snap_flush_item); 374 375 INIT_WORK(&ci->i_wb_work, ceph_writeback_work); 376 INIT_WORK(&ci->i_pg_inv_work, ceph_invalidate_work); 377 378 INIT_WORK(&ci->i_vmtruncate_work, ceph_vmtruncate_work); 379 380 return &ci->vfs_inode; 381 } 382 383 static void ceph_i_callback(struct rcu_head *head) 384 { 385 struct inode *inode = container_of(head, struct inode, i_rcu); 386 struct ceph_inode_info *ci = ceph_inode(inode); 387 388 kmem_cache_free(ceph_inode_cachep, ci); 389 } 390 391 void ceph_destroy_inode(struct inode *inode) 392 { 393 struct ceph_inode_info *ci = ceph_inode(inode); 394 struct ceph_inode_frag *frag; 395 struct rb_node *n; 396 397 dout("destroy_inode %p ino %llx.%llx\n", inode, ceph_vinop(inode)); 398 399 ceph_queue_caps_release(inode); 400 401 /* 402 * we may still have a snap_realm reference if there are stray 403 * caps in i_cap_exporting_issued or i_snap_caps. 404 */ 405 if (ci->i_snap_realm) { 406 struct ceph_mds_client *mdsc = 407 ceph_sb_to_client(ci->vfs_inode.i_sb)->mdsc; 408 struct ceph_snap_realm *realm = ci->i_snap_realm; 409 410 dout(" dropping residual ref to snap realm %p\n", realm); 411 spin_lock(&realm->inodes_with_caps_lock); 412 list_del_init(&ci->i_snap_realm_item); 413 spin_unlock(&realm->inodes_with_caps_lock); 414 ceph_put_snap_realm(mdsc, realm); 415 } 416 417 kfree(ci->i_symlink); 418 while ((n = rb_first(&ci->i_fragtree)) != NULL) { 419 frag = rb_entry(n, struct ceph_inode_frag, node); 420 rb_erase(n, &ci->i_fragtree); 421 kfree(frag); 422 } 423 424 __ceph_destroy_xattrs(ci); 425 if (ci->i_xattrs.blob) 426 ceph_buffer_put(ci->i_xattrs.blob); 427 if (ci->i_xattrs.prealloc_blob) 428 ceph_buffer_put(ci->i_xattrs.prealloc_blob); 429 430 call_rcu(&inode->i_rcu, ceph_i_callback); 431 } 432 433 434 /* 435 * Helpers to fill in size, ctime, mtime, and atime. We have to be 436 * careful because either the client or MDS may have more up to date 437 * info, depending on which capabilities are held, and whether 438 * time_warp_seq or truncate_seq have increased. (Ordinarily, mtime 439 * and size are monotonically increasing, except when utimes() or 440 * truncate() increments the corresponding _seq values.) 441 */ 442 int ceph_fill_file_size(struct inode *inode, int issued, 443 u32 truncate_seq, u64 truncate_size, u64 size) 444 { 445 struct ceph_inode_info *ci = ceph_inode(inode); 446 int queue_trunc = 0; 447 448 if (ceph_seq_cmp(truncate_seq, ci->i_truncate_seq) > 0 || 449 (truncate_seq == ci->i_truncate_seq && size > inode->i_size)) { 450 dout("size %lld -> %llu\n", inode->i_size, size); 451 inode->i_size = size; 452 inode->i_blocks = (size + (1<<9) - 1) >> 9; 453 ci->i_reported_size = size; 454 if (truncate_seq != ci->i_truncate_seq) { 455 dout("truncate_seq %u -> %u\n", 456 ci->i_truncate_seq, truncate_seq); 457 ci->i_truncate_seq = truncate_seq; 458 /* 459 * If we hold relevant caps, or in the case where we're 460 * not the only client referencing this file and we 461 * don't hold those caps, then we need to check whether 462 * the file is either opened or mmaped 463 */ 464 if ((issued & (CEPH_CAP_FILE_CACHE|CEPH_CAP_FILE_RD| 465 CEPH_CAP_FILE_WR|CEPH_CAP_FILE_BUFFER| 466 CEPH_CAP_FILE_EXCL| 467 CEPH_CAP_FILE_LAZYIO)) || 468 mapping_mapped(inode->i_mapping) || 469 __ceph_caps_file_wanted(ci)) { 470 ci->i_truncate_pending++; 471 queue_trunc = 1; 472 } 473 } 474 } 475 if (ceph_seq_cmp(truncate_seq, ci->i_truncate_seq) >= 0 && 476 ci->i_truncate_size != truncate_size) { 477 dout("truncate_size %lld -> %llu\n", ci->i_truncate_size, 478 truncate_size); 479 ci->i_truncate_size = truncate_size; 480 } 481 return queue_trunc; 482 } 483 484 void ceph_fill_file_time(struct inode *inode, int issued, 485 u64 time_warp_seq, struct timespec *ctime, 486 struct timespec *mtime, struct timespec *atime) 487 { 488 struct ceph_inode_info *ci = ceph_inode(inode); 489 int warn = 0; 490 491 if (issued & (CEPH_CAP_FILE_EXCL| 492 CEPH_CAP_FILE_WR| 493 CEPH_CAP_FILE_BUFFER| 494 CEPH_CAP_AUTH_EXCL| 495 CEPH_CAP_XATTR_EXCL)) { 496 if (timespec_compare(ctime, &inode->i_ctime) > 0) { 497 dout("ctime %ld.%09ld -> %ld.%09ld inc w/ cap\n", 498 inode->i_ctime.tv_sec, inode->i_ctime.tv_nsec, 499 ctime->tv_sec, ctime->tv_nsec); 500 inode->i_ctime = *ctime; 501 } 502 if (ceph_seq_cmp(time_warp_seq, ci->i_time_warp_seq) > 0) { 503 /* the MDS did a utimes() */ 504 dout("mtime %ld.%09ld -> %ld.%09ld " 505 "tw %d -> %d\n", 506 inode->i_mtime.tv_sec, inode->i_mtime.tv_nsec, 507 mtime->tv_sec, mtime->tv_nsec, 508 ci->i_time_warp_seq, (int)time_warp_seq); 509 510 inode->i_mtime = *mtime; 511 inode->i_atime = *atime; 512 ci->i_time_warp_seq = time_warp_seq; 513 } else if (time_warp_seq == ci->i_time_warp_seq) { 514 /* nobody did utimes(); take the max */ 515 if (timespec_compare(mtime, &inode->i_mtime) > 0) { 516 dout("mtime %ld.%09ld -> %ld.%09ld inc\n", 517 inode->i_mtime.tv_sec, 518 inode->i_mtime.tv_nsec, 519 mtime->tv_sec, mtime->tv_nsec); 520 inode->i_mtime = *mtime; 521 } 522 if (timespec_compare(atime, &inode->i_atime) > 0) { 523 dout("atime %ld.%09ld -> %ld.%09ld inc\n", 524 inode->i_atime.tv_sec, 525 inode->i_atime.tv_nsec, 526 atime->tv_sec, atime->tv_nsec); 527 inode->i_atime = *atime; 528 } 529 } else if (issued & CEPH_CAP_FILE_EXCL) { 530 /* we did a utimes(); ignore mds values */ 531 } else { 532 warn = 1; 533 } 534 } else { 535 /* we have no write|excl caps; whatever the MDS says is true */ 536 if (ceph_seq_cmp(time_warp_seq, ci->i_time_warp_seq) >= 0) { 537 inode->i_ctime = *ctime; 538 inode->i_mtime = *mtime; 539 inode->i_atime = *atime; 540 ci->i_time_warp_seq = time_warp_seq; 541 } else { 542 warn = 1; 543 } 544 } 545 if (warn) /* time_warp_seq shouldn't go backwards */ 546 dout("%p mds time_warp_seq %llu < %u\n", 547 inode, time_warp_seq, ci->i_time_warp_seq); 548 } 549 550 /* 551 * Populate an inode based on info from mds. May be called on new or 552 * existing inodes. 553 */ 554 static int fill_inode(struct inode *inode, 555 struct ceph_mds_reply_info_in *iinfo, 556 struct ceph_mds_reply_dirfrag *dirinfo, 557 struct ceph_mds_session *session, 558 unsigned long ttl_from, int cap_fmode, 559 struct ceph_cap_reservation *caps_reservation) 560 { 561 struct ceph_mds_reply_inode *info = iinfo->in; 562 struct ceph_inode_info *ci = ceph_inode(inode); 563 int i; 564 int issued = 0, implemented; 565 struct timespec mtime, atime, ctime; 566 u32 nsplits; 567 struct ceph_buffer *xattr_blob = NULL; 568 int err = 0; 569 int queue_trunc = 0; 570 571 dout("fill_inode %p ino %llx.%llx v %llu had %llu\n", 572 inode, ceph_vinop(inode), le64_to_cpu(info->version), 573 ci->i_version); 574 575 /* 576 * prealloc xattr data, if it looks like we'll need it. only 577 * if len > 4 (meaning there are actually xattrs; the first 4 578 * bytes are the xattr count). 579 */ 580 if (iinfo->xattr_len > 4) { 581 xattr_blob = ceph_buffer_new(iinfo->xattr_len, GFP_NOFS); 582 if (!xattr_blob) 583 pr_err("fill_inode ENOMEM xattr blob %d bytes\n", 584 iinfo->xattr_len); 585 } 586 587 spin_lock(&ci->i_ceph_lock); 588 589 /* 590 * provided version will be odd if inode value is projected, 591 * even if stable. skip the update if we have newer stable 592 * info (ours>=theirs, e.g. due to racing mds replies), unless 593 * we are getting projected (unstable) info (in which case the 594 * version is odd, and we want ours>theirs). 595 * us them 596 * 2 2 skip 597 * 3 2 skip 598 * 3 3 update 599 */ 600 if (le64_to_cpu(info->version) > 0 && 601 (ci->i_version & ~1) >= le64_to_cpu(info->version)) 602 goto no_change; 603 604 issued = __ceph_caps_issued(ci, &implemented); 605 issued |= implemented | __ceph_caps_dirty(ci); 606 607 /* update inode */ 608 ci->i_version = le64_to_cpu(info->version); 609 inode->i_version++; 610 inode->i_rdev = le32_to_cpu(info->rdev); 611 612 if ((issued & CEPH_CAP_AUTH_EXCL) == 0) { 613 inode->i_mode = le32_to_cpu(info->mode); 614 inode->i_uid = make_kuid(&init_user_ns, le32_to_cpu(info->uid)); 615 inode->i_gid = make_kgid(&init_user_ns, le32_to_cpu(info->gid)); 616 dout("%p mode 0%o uid.gid %d.%d\n", inode, inode->i_mode, 617 from_kuid(&init_user_ns, inode->i_uid), 618 from_kgid(&init_user_ns, inode->i_gid)); 619 } 620 621 if ((issued & CEPH_CAP_LINK_EXCL) == 0) 622 set_nlink(inode, le32_to_cpu(info->nlink)); 623 624 /* be careful with mtime, atime, size */ 625 ceph_decode_timespec(&atime, &info->atime); 626 ceph_decode_timespec(&mtime, &info->mtime); 627 ceph_decode_timespec(&ctime, &info->ctime); 628 queue_trunc = ceph_fill_file_size(inode, issued, 629 le32_to_cpu(info->truncate_seq), 630 le64_to_cpu(info->truncate_size), 631 le64_to_cpu(info->size)); 632 ceph_fill_file_time(inode, issued, 633 le32_to_cpu(info->time_warp_seq), 634 &ctime, &mtime, &atime); 635 636 /* only update max_size on auth cap */ 637 if ((info->cap.flags & CEPH_CAP_FLAG_AUTH) && 638 ci->i_max_size != le64_to_cpu(info->max_size)) { 639 dout("max_size %lld -> %llu\n", ci->i_max_size, 640 le64_to_cpu(info->max_size)); 641 ci->i_max_size = le64_to_cpu(info->max_size); 642 } 643 644 ci->i_layout = info->layout; 645 inode->i_blkbits = fls(le32_to_cpu(info->layout.fl_stripe_unit)) - 1; 646 647 /* xattrs */ 648 /* note that if i_xattrs.len <= 4, i_xattrs.data will still be NULL. */ 649 if ((issued & CEPH_CAP_XATTR_EXCL) == 0 && 650 le64_to_cpu(info->xattr_version) > ci->i_xattrs.version) { 651 if (ci->i_xattrs.blob) 652 ceph_buffer_put(ci->i_xattrs.blob); 653 ci->i_xattrs.blob = xattr_blob; 654 if (xattr_blob) 655 memcpy(ci->i_xattrs.blob->vec.iov_base, 656 iinfo->xattr_data, iinfo->xattr_len); 657 ci->i_xattrs.version = le64_to_cpu(info->xattr_version); 658 xattr_blob = NULL; 659 } 660 661 inode->i_mapping->a_ops = &ceph_aops; 662 inode->i_mapping->backing_dev_info = 663 &ceph_sb_to_client(inode->i_sb)->backing_dev_info; 664 665 switch (inode->i_mode & S_IFMT) { 666 case S_IFIFO: 667 case S_IFBLK: 668 case S_IFCHR: 669 case S_IFSOCK: 670 init_special_inode(inode, inode->i_mode, inode->i_rdev); 671 inode->i_op = &ceph_file_iops; 672 break; 673 case S_IFREG: 674 inode->i_op = &ceph_file_iops; 675 inode->i_fop = &ceph_file_fops; 676 break; 677 case S_IFLNK: 678 inode->i_op = &ceph_symlink_iops; 679 if (!ci->i_symlink) { 680 u32 symlen = iinfo->symlink_len; 681 char *sym; 682 683 spin_unlock(&ci->i_ceph_lock); 684 685 err = -EINVAL; 686 if (WARN_ON(symlen != inode->i_size)) 687 goto out; 688 689 err = -ENOMEM; 690 sym = kstrndup(iinfo->symlink, symlen, GFP_NOFS); 691 if (!sym) 692 goto out; 693 694 spin_lock(&ci->i_ceph_lock); 695 if (!ci->i_symlink) 696 ci->i_symlink = sym; 697 else 698 kfree(sym); /* lost a race */ 699 } 700 break; 701 case S_IFDIR: 702 inode->i_op = &ceph_dir_iops; 703 inode->i_fop = &ceph_dir_fops; 704 705 ci->i_dir_layout = iinfo->dir_layout; 706 707 ci->i_files = le64_to_cpu(info->files); 708 ci->i_subdirs = le64_to_cpu(info->subdirs); 709 ci->i_rbytes = le64_to_cpu(info->rbytes); 710 ci->i_rfiles = le64_to_cpu(info->rfiles); 711 ci->i_rsubdirs = le64_to_cpu(info->rsubdirs); 712 ceph_decode_timespec(&ci->i_rctime, &info->rctime); 713 break; 714 default: 715 pr_err("fill_inode %llx.%llx BAD mode 0%o\n", 716 ceph_vinop(inode), inode->i_mode); 717 } 718 719 /* set dir completion flag? */ 720 if (S_ISDIR(inode->i_mode) && 721 ci->i_files == 0 && ci->i_subdirs == 0 && 722 ceph_snap(inode) == CEPH_NOSNAP && 723 (le32_to_cpu(info->cap.caps) & CEPH_CAP_FILE_SHARED) && 724 (issued & CEPH_CAP_FILE_EXCL) == 0 && 725 !__ceph_dir_is_complete(ci)) { 726 dout(" marking %p complete (empty)\n", inode); 727 __ceph_dir_set_complete(ci, atomic_read(&ci->i_release_count)); 728 ci->i_max_offset = 2; 729 } 730 no_change: 731 spin_unlock(&ci->i_ceph_lock); 732 733 /* queue truncate if we saw i_size decrease */ 734 if (queue_trunc) 735 ceph_queue_vmtruncate(inode); 736 737 /* populate frag tree */ 738 /* FIXME: move me up, if/when version reflects fragtree changes */ 739 nsplits = le32_to_cpu(info->fragtree.nsplits); 740 mutex_lock(&ci->i_fragtree_mutex); 741 for (i = 0; i < nsplits; i++) { 742 u32 id = le32_to_cpu(info->fragtree.splits[i].frag); 743 struct ceph_inode_frag *frag = __get_or_create_frag(ci, id); 744 745 if (IS_ERR(frag)) 746 continue; 747 frag->split_by = le32_to_cpu(info->fragtree.splits[i].by); 748 dout(" frag %x split by %d\n", frag->frag, frag->split_by); 749 } 750 mutex_unlock(&ci->i_fragtree_mutex); 751 752 /* were we issued a capability? */ 753 if (info->cap.caps) { 754 if (ceph_snap(inode) == CEPH_NOSNAP) { 755 ceph_add_cap(inode, session, 756 le64_to_cpu(info->cap.cap_id), 757 cap_fmode, 758 le32_to_cpu(info->cap.caps), 759 le32_to_cpu(info->cap.wanted), 760 le32_to_cpu(info->cap.seq), 761 le32_to_cpu(info->cap.mseq), 762 le64_to_cpu(info->cap.realm), 763 info->cap.flags, 764 caps_reservation); 765 } else { 766 spin_lock(&ci->i_ceph_lock); 767 dout(" %p got snap_caps %s\n", inode, 768 ceph_cap_string(le32_to_cpu(info->cap.caps))); 769 ci->i_snap_caps |= le32_to_cpu(info->cap.caps); 770 if (cap_fmode >= 0) 771 __ceph_get_fmode(ci, cap_fmode); 772 spin_unlock(&ci->i_ceph_lock); 773 } 774 } else if (cap_fmode >= 0) { 775 pr_warning("mds issued no caps on %llx.%llx\n", 776 ceph_vinop(inode)); 777 __ceph_get_fmode(ci, cap_fmode); 778 } 779 780 /* update delegation info? */ 781 if (dirinfo) 782 ceph_fill_dirfrag(inode, dirinfo); 783 784 err = 0; 785 786 out: 787 if (xattr_blob) 788 ceph_buffer_put(xattr_blob); 789 return err; 790 } 791 792 /* 793 * caller should hold session s_mutex. 794 */ 795 static void update_dentry_lease(struct dentry *dentry, 796 struct ceph_mds_reply_lease *lease, 797 struct ceph_mds_session *session, 798 unsigned long from_time) 799 { 800 struct ceph_dentry_info *di = ceph_dentry(dentry); 801 long unsigned duration = le32_to_cpu(lease->duration_ms); 802 long unsigned ttl = from_time + (duration * HZ) / 1000; 803 long unsigned half_ttl = from_time + (duration * HZ / 2) / 1000; 804 struct inode *dir; 805 806 /* only track leases on regular dentries */ 807 if (dentry->d_op != &ceph_dentry_ops) 808 return; 809 810 spin_lock(&dentry->d_lock); 811 dout("update_dentry_lease %p duration %lu ms ttl %lu\n", 812 dentry, duration, ttl); 813 814 /* make lease_rdcache_gen match directory */ 815 dir = dentry->d_parent->d_inode; 816 di->lease_shared_gen = ceph_inode(dir)->i_shared_gen; 817 818 if (duration == 0) 819 goto out_unlock; 820 821 if (di->lease_gen == session->s_cap_gen && 822 time_before(ttl, dentry->d_time)) 823 goto out_unlock; /* we already have a newer lease. */ 824 825 if (di->lease_session && di->lease_session != session) 826 goto out_unlock; 827 828 ceph_dentry_lru_touch(dentry); 829 830 if (!di->lease_session) 831 di->lease_session = ceph_get_mds_session(session); 832 di->lease_gen = session->s_cap_gen; 833 di->lease_seq = le32_to_cpu(lease->seq); 834 di->lease_renew_after = half_ttl; 835 di->lease_renew_from = 0; 836 dentry->d_time = ttl; 837 out_unlock: 838 spin_unlock(&dentry->d_lock); 839 return; 840 } 841 842 /* 843 * Set dentry's directory position based on the current dir's max, and 844 * order it in d_subdirs, so that dcache_readdir behaves. 845 * 846 * Always called under directory's i_mutex. 847 */ 848 static void ceph_set_dentry_offset(struct dentry *dn) 849 { 850 struct dentry *dir = dn->d_parent; 851 struct inode *inode = dir->d_inode; 852 struct ceph_inode_info *ci; 853 struct ceph_dentry_info *di; 854 855 BUG_ON(!inode); 856 857 ci = ceph_inode(inode); 858 di = ceph_dentry(dn); 859 860 spin_lock(&ci->i_ceph_lock); 861 if (!__ceph_dir_is_complete(ci)) { 862 spin_unlock(&ci->i_ceph_lock); 863 return; 864 } 865 di->offset = ceph_inode(inode)->i_max_offset++; 866 spin_unlock(&ci->i_ceph_lock); 867 868 spin_lock(&dir->d_lock); 869 spin_lock_nested(&dn->d_lock, DENTRY_D_LOCK_NESTED); 870 list_move(&dn->d_u.d_child, &dir->d_subdirs); 871 dout("set_dentry_offset %p %lld (%p %p)\n", dn, di->offset, 872 dn->d_u.d_child.prev, dn->d_u.d_child.next); 873 spin_unlock(&dn->d_lock); 874 spin_unlock(&dir->d_lock); 875 } 876 877 /* 878 * splice a dentry to an inode. 879 * caller must hold directory i_mutex for this to be safe. 880 * 881 * we will only rehash the resulting dentry if @prehash is 882 * true; @prehash will be set to false (for the benefit of 883 * the caller) if we fail. 884 */ 885 static struct dentry *splice_dentry(struct dentry *dn, struct inode *in, 886 bool *prehash, bool set_offset) 887 { 888 struct dentry *realdn; 889 890 BUG_ON(dn->d_inode); 891 892 /* dn must be unhashed */ 893 if (!d_unhashed(dn)) 894 d_drop(dn); 895 realdn = d_materialise_unique(dn, in); 896 if (IS_ERR(realdn)) { 897 pr_err("splice_dentry error %ld %p inode %p ino %llx.%llx\n", 898 PTR_ERR(realdn), dn, in, ceph_vinop(in)); 899 if (prehash) 900 *prehash = false; /* don't rehash on error */ 901 dn = realdn; /* note realdn contains the error */ 902 goto out; 903 } else if (realdn) { 904 dout("dn %p (%d) spliced with %p (%d) " 905 "inode %p ino %llx.%llx\n", 906 dn, dn->d_count, 907 realdn, realdn->d_count, 908 realdn->d_inode, ceph_vinop(realdn->d_inode)); 909 dput(dn); 910 dn = realdn; 911 } else { 912 BUG_ON(!ceph_dentry(dn)); 913 dout("dn %p attached to %p ino %llx.%llx\n", 914 dn, dn->d_inode, ceph_vinop(dn->d_inode)); 915 } 916 if ((!prehash || *prehash) && d_unhashed(dn)) 917 d_rehash(dn); 918 if (set_offset) 919 ceph_set_dentry_offset(dn); 920 out: 921 return dn; 922 } 923 924 /* 925 * Incorporate results into the local cache. This is either just 926 * one inode, or a directory, dentry, and possibly linked-to inode (e.g., 927 * after a lookup). 928 * 929 * A reply may contain 930 * a directory inode along with a dentry. 931 * and/or a target inode 932 * 933 * Called with snap_rwsem (read). 934 */ 935 int ceph_fill_trace(struct super_block *sb, struct ceph_mds_request *req, 936 struct ceph_mds_session *session) 937 { 938 struct ceph_mds_reply_info_parsed *rinfo = &req->r_reply_info; 939 struct inode *in = NULL; 940 struct ceph_mds_reply_inode *ininfo; 941 struct ceph_vino vino; 942 struct ceph_fs_client *fsc = ceph_sb_to_client(sb); 943 int i = 0; 944 int err = 0; 945 946 dout("fill_trace %p is_dentry %d is_target %d\n", req, 947 rinfo->head->is_dentry, rinfo->head->is_target); 948 949 #if 0 950 /* 951 * Debugging hook: 952 * 953 * If we resend completed ops to a recovering mds, we get no 954 * trace. Since that is very rare, pretend this is the case 955 * to ensure the 'no trace' handlers in the callers behave. 956 * 957 * Fill in inodes unconditionally to avoid breaking cap 958 * invariants. 959 */ 960 if (rinfo->head->op & CEPH_MDS_OP_WRITE) { 961 pr_info("fill_trace faking empty trace on %lld %s\n", 962 req->r_tid, ceph_mds_op_name(rinfo->head->op)); 963 if (rinfo->head->is_dentry) { 964 rinfo->head->is_dentry = 0; 965 err = fill_inode(req->r_locked_dir, 966 &rinfo->diri, rinfo->dirfrag, 967 session, req->r_request_started, -1); 968 } 969 if (rinfo->head->is_target) { 970 rinfo->head->is_target = 0; 971 ininfo = rinfo->targeti.in; 972 vino.ino = le64_to_cpu(ininfo->ino); 973 vino.snap = le64_to_cpu(ininfo->snapid); 974 in = ceph_get_inode(sb, vino); 975 err = fill_inode(in, &rinfo->targeti, NULL, 976 session, req->r_request_started, 977 req->r_fmode); 978 iput(in); 979 } 980 } 981 #endif 982 983 if (!rinfo->head->is_target && !rinfo->head->is_dentry) { 984 dout("fill_trace reply is empty!\n"); 985 if (rinfo->head->result == 0 && req->r_locked_dir) 986 ceph_invalidate_dir_request(req); 987 return 0; 988 } 989 990 if (rinfo->head->is_dentry) { 991 struct inode *dir = req->r_locked_dir; 992 993 if (dir) { 994 err = fill_inode(dir, &rinfo->diri, rinfo->dirfrag, 995 session, req->r_request_started, -1, 996 &req->r_caps_reservation); 997 if (err < 0) 998 return err; 999 } else { 1000 WARN_ON_ONCE(1); 1001 } 1002 } 1003 1004 /* 1005 * ignore null lease/binding on snapdir ENOENT, or else we 1006 * will have trouble splicing in the virtual snapdir later 1007 */ 1008 if (rinfo->head->is_dentry && !req->r_aborted && 1009 req->r_locked_dir && 1010 (rinfo->head->is_target || strncmp(req->r_dentry->d_name.name, 1011 fsc->mount_options->snapdir_name, 1012 req->r_dentry->d_name.len))) { 1013 /* 1014 * lookup link rename : null -> possibly existing inode 1015 * mknod symlink mkdir : null -> new inode 1016 * unlink : linked -> null 1017 */ 1018 struct inode *dir = req->r_locked_dir; 1019 struct dentry *dn = req->r_dentry; 1020 bool have_dir_cap, have_lease; 1021 1022 BUG_ON(!dn); 1023 BUG_ON(!dir); 1024 BUG_ON(dn->d_parent->d_inode != dir); 1025 BUG_ON(ceph_ino(dir) != 1026 le64_to_cpu(rinfo->diri.in->ino)); 1027 BUG_ON(ceph_snap(dir) != 1028 le64_to_cpu(rinfo->diri.in->snapid)); 1029 1030 /* do we have a lease on the whole dir? */ 1031 have_dir_cap = 1032 (le32_to_cpu(rinfo->diri.in->cap.caps) & 1033 CEPH_CAP_FILE_SHARED); 1034 1035 /* do we have a dn lease? */ 1036 have_lease = have_dir_cap || 1037 le32_to_cpu(rinfo->dlease->duration_ms); 1038 if (!have_lease) 1039 dout("fill_trace no dentry lease or dir cap\n"); 1040 1041 /* rename? */ 1042 if (req->r_old_dentry && req->r_op == CEPH_MDS_OP_RENAME) { 1043 dout(" src %p '%.*s' dst %p '%.*s'\n", 1044 req->r_old_dentry, 1045 req->r_old_dentry->d_name.len, 1046 req->r_old_dentry->d_name.name, 1047 dn, dn->d_name.len, dn->d_name.name); 1048 dout("fill_trace doing d_move %p -> %p\n", 1049 req->r_old_dentry, dn); 1050 1051 d_move(req->r_old_dentry, dn); 1052 dout(" src %p '%.*s' dst %p '%.*s'\n", 1053 req->r_old_dentry, 1054 req->r_old_dentry->d_name.len, 1055 req->r_old_dentry->d_name.name, 1056 dn, dn->d_name.len, dn->d_name.name); 1057 1058 /* ensure target dentry is invalidated, despite 1059 rehashing bug in vfs_rename_dir */ 1060 ceph_invalidate_dentry_lease(dn); 1061 1062 /* 1063 * d_move() puts the renamed dentry at the end of 1064 * d_subdirs. We need to assign it an appropriate 1065 * directory offset so we can behave when dir is 1066 * complete. 1067 */ 1068 ceph_set_dentry_offset(req->r_old_dentry); 1069 dout("dn %p gets new offset %lld\n", req->r_old_dentry, 1070 ceph_dentry(req->r_old_dentry)->offset); 1071 1072 dn = req->r_old_dentry; /* use old_dentry */ 1073 in = dn->d_inode; 1074 } 1075 1076 /* null dentry? */ 1077 if (!rinfo->head->is_target) { 1078 dout("fill_trace null dentry\n"); 1079 if (dn->d_inode) { 1080 dout("d_delete %p\n", dn); 1081 d_delete(dn); 1082 } else { 1083 dout("d_instantiate %p NULL\n", dn); 1084 d_instantiate(dn, NULL); 1085 if (have_lease && d_unhashed(dn)) 1086 d_rehash(dn); 1087 update_dentry_lease(dn, rinfo->dlease, 1088 session, 1089 req->r_request_started); 1090 } 1091 goto done; 1092 } 1093 1094 /* attach proper inode */ 1095 ininfo = rinfo->targeti.in; 1096 vino.ino = le64_to_cpu(ininfo->ino); 1097 vino.snap = le64_to_cpu(ininfo->snapid); 1098 in = dn->d_inode; 1099 if (!in) { 1100 in = ceph_get_inode(sb, vino); 1101 if (IS_ERR(in)) { 1102 pr_err("fill_trace bad get_inode " 1103 "%llx.%llx\n", vino.ino, vino.snap); 1104 err = PTR_ERR(in); 1105 d_drop(dn); 1106 goto done; 1107 } 1108 dn = splice_dentry(dn, in, &have_lease, true); 1109 if (IS_ERR(dn)) { 1110 err = PTR_ERR(dn); 1111 goto done; 1112 } 1113 req->r_dentry = dn; /* may have spliced */ 1114 ihold(in); 1115 } else if (ceph_ino(in) == vino.ino && 1116 ceph_snap(in) == vino.snap) { 1117 ihold(in); 1118 } else { 1119 dout(" %p links to %p %llx.%llx, not %llx.%llx\n", 1120 dn, in, ceph_ino(in), ceph_snap(in), 1121 vino.ino, vino.snap); 1122 have_lease = false; 1123 in = NULL; 1124 } 1125 1126 if (have_lease) 1127 update_dentry_lease(dn, rinfo->dlease, session, 1128 req->r_request_started); 1129 dout(" final dn %p\n", dn); 1130 i++; 1131 } else if ((req->r_op == CEPH_MDS_OP_LOOKUPSNAP || 1132 req->r_op == CEPH_MDS_OP_MKSNAP) && !req->r_aborted) { 1133 struct dentry *dn = req->r_dentry; 1134 1135 /* fill out a snapdir LOOKUPSNAP dentry */ 1136 BUG_ON(!dn); 1137 BUG_ON(!req->r_locked_dir); 1138 BUG_ON(ceph_snap(req->r_locked_dir) != CEPH_SNAPDIR); 1139 ininfo = rinfo->targeti.in; 1140 vino.ino = le64_to_cpu(ininfo->ino); 1141 vino.snap = le64_to_cpu(ininfo->snapid); 1142 in = ceph_get_inode(sb, vino); 1143 if (IS_ERR(in)) { 1144 pr_err("fill_inode get_inode badness %llx.%llx\n", 1145 vino.ino, vino.snap); 1146 err = PTR_ERR(in); 1147 d_delete(dn); 1148 goto done; 1149 } 1150 dout(" linking snapped dir %p to dn %p\n", in, dn); 1151 dn = splice_dentry(dn, in, NULL, true); 1152 if (IS_ERR(dn)) { 1153 err = PTR_ERR(dn); 1154 goto done; 1155 } 1156 req->r_dentry = dn; /* may have spliced */ 1157 ihold(in); 1158 rinfo->head->is_dentry = 1; /* fool notrace handlers */ 1159 } 1160 1161 if (rinfo->head->is_target) { 1162 vino.ino = le64_to_cpu(rinfo->targeti.in->ino); 1163 vino.snap = le64_to_cpu(rinfo->targeti.in->snapid); 1164 1165 if (in == NULL || ceph_ino(in) != vino.ino || 1166 ceph_snap(in) != vino.snap) { 1167 in = ceph_get_inode(sb, vino); 1168 if (IS_ERR(in)) { 1169 err = PTR_ERR(in); 1170 goto done; 1171 } 1172 } 1173 req->r_target_inode = in; 1174 1175 err = fill_inode(in, 1176 &rinfo->targeti, NULL, 1177 session, req->r_request_started, 1178 (le32_to_cpu(rinfo->head->result) == 0) ? 1179 req->r_fmode : -1, 1180 &req->r_caps_reservation); 1181 if (err < 0) { 1182 pr_err("fill_inode badness %p %llx.%llx\n", 1183 in, ceph_vinop(in)); 1184 goto done; 1185 } 1186 } 1187 1188 done: 1189 dout("fill_trace done err=%d\n", err); 1190 return err; 1191 } 1192 1193 /* 1194 * Prepopulate our cache with readdir results, leases, etc. 1195 */ 1196 static int readdir_prepopulate_inodes_only(struct ceph_mds_request *req, 1197 struct ceph_mds_session *session) 1198 { 1199 struct ceph_mds_reply_info_parsed *rinfo = &req->r_reply_info; 1200 int i, err = 0; 1201 1202 for (i = 0; i < rinfo->dir_nr; i++) { 1203 struct ceph_vino vino; 1204 struct inode *in; 1205 int rc; 1206 1207 vino.ino = le64_to_cpu(rinfo->dir_in[i].in->ino); 1208 vino.snap = le64_to_cpu(rinfo->dir_in[i].in->snapid); 1209 1210 in = ceph_get_inode(req->r_dentry->d_sb, vino); 1211 if (IS_ERR(in)) { 1212 err = PTR_ERR(in); 1213 dout("new_inode badness got %d\n", err); 1214 continue; 1215 } 1216 rc = fill_inode(in, &rinfo->dir_in[i], NULL, session, 1217 req->r_request_started, -1, 1218 &req->r_caps_reservation); 1219 if (rc < 0) { 1220 pr_err("fill_inode badness on %p got %d\n", in, rc); 1221 err = rc; 1222 continue; 1223 } 1224 } 1225 1226 return err; 1227 } 1228 1229 int ceph_readdir_prepopulate(struct ceph_mds_request *req, 1230 struct ceph_mds_session *session) 1231 { 1232 struct dentry *parent = req->r_dentry; 1233 struct ceph_mds_reply_info_parsed *rinfo = &req->r_reply_info; 1234 struct qstr dname; 1235 struct dentry *dn; 1236 struct inode *in; 1237 int err = 0, i; 1238 struct inode *snapdir = NULL; 1239 struct ceph_mds_request_head *rhead = req->r_request->front.iov_base; 1240 u64 frag = le32_to_cpu(rhead->args.readdir.frag); 1241 struct ceph_dentry_info *di; 1242 1243 if (req->r_aborted) 1244 return readdir_prepopulate_inodes_only(req, session); 1245 1246 if (le32_to_cpu(rinfo->head->op) == CEPH_MDS_OP_LSSNAP) { 1247 snapdir = ceph_get_snapdir(parent->d_inode); 1248 parent = d_find_alias(snapdir); 1249 dout("readdir_prepopulate %d items under SNAPDIR dn %p\n", 1250 rinfo->dir_nr, parent); 1251 } else { 1252 dout("readdir_prepopulate %d items under dn %p\n", 1253 rinfo->dir_nr, parent); 1254 if (rinfo->dir_dir) 1255 ceph_fill_dirfrag(parent->d_inode, rinfo->dir_dir); 1256 } 1257 1258 for (i = 0; i < rinfo->dir_nr; i++) { 1259 struct ceph_vino vino; 1260 1261 dname.name = rinfo->dir_dname[i]; 1262 dname.len = rinfo->dir_dname_len[i]; 1263 dname.hash = full_name_hash(dname.name, dname.len); 1264 1265 vino.ino = le64_to_cpu(rinfo->dir_in[i].in->ino); 1266 vino.snap = le64_to_cpu(rinfo->dir_in[i].in->snapid); 1267 1268 retry_lookup: 1269 dn = d_lookup(parent, &dname); 1270 dout("d_lookup on parent=%p name=%.*s got %p\n", 1271 parent, dname.len, dname.name, dn); 1272 1273 if (!dn) { 1274 dn = d_alloc(parent, &dname); 1275 dout("d_alloc %p '%.*s' = %p\n", parent, 1276 dname.len, dname.name, dn); 1277 if (dn == NULL) { 1278 dout("d_alloc badness\n"); 1279 err = -ENOMEM; 1280 goto out; 1281 } 1282 err = ceph_init_dentry(dn); 1283 if (err < 0) { 1284 dput(dn); 1285 goto out; 1286 } 1287 } else if (dn->d_inode && 1288 (ceph_ino(dn->d_inode) != vino.ino || 1289 ceph_snap(dn->d_inode) != vino.snap)) { 1290 dout(" dn %p points to wrong inode %p\n", 1291 dn, dn->d_inode); 1292 d_delete(dn); 1293 dput(dn); 1294 goto retry_lookup; 1295 } else { 1296 /* reorder parent's d_subdirs */ 1297 spin_lock(&parent->d_lock); 1298 spin_lock_nested(&dn->d_lock, DENTRY_D_LOCK_NESTED); 1299 list_move(&dn->d_u.d_child, &parent->d_subdirs); 1300 spin_unlock(&dn->d_lock); 1301 spin_unlock(&parent->d_lock); 1302 } 1303 1304 di = dn->d_fsdata; 1305 di->offset = ceph_make_fpos(frag, i + req->r_readdir_offset); 1306 1307 /* inode */ 1308 if (dn->d_inode) { 1309 in = dn->d_inode; 1310 } else { 1311 in = ceph_get_inode(parent->d_sb, vino); 1312 if (IS_ERR(in)) { 1313 dout("new_inode badness\n"); 1314 d_drop(dn); 1315 dput(dn); 1316 err = PTR_ERR(in); 1317 goto out; 1318 } 1319 dn = splice_dentry(dn, in, NULL, false); 1320 if (IS_ERR(dn)) 1321 dn = NULL; 1322 } 1323 1324 if (fill_inode(in, &rinfo->dir_in[i], NULL, session, 1325 req->r_request_started, -1, 1326 &req->r_caps_reservation) < 0) { 1327 pr_err("fill_inode badness on %p\n", in); 1328 goto next_item; 1329 } 1330 if (dn) 1331 update_dentry_lease(dn, rinfo->dir_dlease[i], 1332 req->r_session, 1333 req->r_request_started); 1334 next_item: 1335 if (dn) 1336 dput(dn); 1337 } 1338 req->r_did_prepopulate = true; 1339 1340 out: 1341 if (snapdir) { 1342 iput(snapdir); 1343 dput(parent); 1344 } 1345 dout("readdir_prepopulate done\n"); 1346 return err; 1347 } 1348 1349 int ceph_inode_set_size(struct inode *inode, loff_t size) 1350 { 1351 struct ceph_inode_info *ci = ceph_inode(inode); 1352 int ret = 0; 1353 1354 spin_lock(&ci->i_ceph_lock); 1355 dout("set_size %p %llu -> %llu\n", inode, inode->i_size, size); 1356 inode->i_size = size; 1357 inode->i_blocks = (size + (1 << 9) - 1) >> 9; 1358 1359 /* tell the MDS if we are approaching max_size */ 1360 if ((size << 1) >= ci->i_max_size && 1361 (ci->i_reported_size << 1) < ci->i_max_size) 1362 ret = 1; 1363 1364 spin_unlock(&ci->i_ceph_lock); 1365 return ret; 1366 } 1367 1368 /* 1369 * Write back inode data in a worker thread. (This can't be done 1370 * in the message handler context.) 1371 */ 1372 void ceph_queue_writeback(struct inode *inode) 1373 { 1374 ihold(inode); 1375 if (queue_work(ceph_inode_to_client(inode)->wb_wq, 1376 &ceph_inode(inode)->i_wb_work)) { 1377 dout("ceph_queue_writeback %p\n", inode); 1378 } else { 1379 dout("ceph_queue_writeback %p failed\n", inode); 1380 iput(inode); 1381 } 1382 } 1383 1384 static void ceph_writeback_work(struct work_struct *work) 1385 { 1386 struct ceph_inode_info *ci = container_of(work, struct ceph_inode_info, 1387 i_wb_work); 1388 struct inode *inode = &ci->vfs_inode; 1389 1390 dout("writeback %p\n", inode); 1391 filemap_fdatawrite(&inode->i_data); 1392 iput(inode); 1393 } 1394 1395 /* 1396 * queue an async invalidation 1397 */ 1398 void ceph_queue_invalidate(struct inode *inode) 1399 { 1400 ihold(inode); 1401 if (queue_work(ceph_inode_to_client(inode)->pg_inv_wq, 1402 &ceph_inode(inode)->i_pg_inv_work)) { 1403 dout("ceph_queue_invalidate %p\n", inode); 1404 } else { 1405 dout("ceph_queue_invalidate %p failed\n", inode); 1406 iput(inode); 1407 } 1408 } 1409 1410 /* 1411 * Invalidate inode pages in a worker thread. (This can't be done 1412 * in the message handler context.) 1413 */ 1414 static void ceph_invalidate_work(struct work_struct *work) 1415 { 1416 struct ceph_inode_info *ci = container_of(work, struct ceph_inode_info, 1417 i_pg_inv_work); 1418 struct inode *inode = &ci->vfs_inode; 1419 u32 orig_gen; 1420 int check = 0; 1421 1422 spin_lock(&ci->i_ceph_lock); 1423 dout("invalidate_pages %p gen %d revoking %d\n", inode, 1424 ci->i_rdcache_gen, ci->i_rdcache_revoking); 1425 if (ci->i_rdcache_revoking != ci->i_rdcache_gen) { 1426 /* nevermind! */ 1427 spin_unlock(&ci->i_ceph_lock); 1428 goto out; 1429 } 1430 orig_gen = ci->i_rdcache_gen; 1431 spin_unlock(&ci->i_ceph_lock); 1432 1433 truncate_inode_pages(&inode->i_data, 0); 1434 1435 spin_lock(&ci->i_ceph_lock); 1436 if (orig_gen == ci->i_rdcache_gen && 1437 orig_gen == ci->i_rdcache_revoking) { 1438 dout("invalidate_pages %p gen %d successful\n", inode, 1439 ci->i_rdcache_gen); 1440 ci->i_rdcache_revoking--; 1441 check = 1; 1442 } else { 1443 dout("invalidate_pages %p gen %d raced, now %d revoking %d\n", 1444 inode, orig_gen, ci->i_rdcache_gen, 1445 ci->i_rdcache_revoking); 1446 } 1447 spin_unlock(&ci->i_ceph_lock); 1448 1449 if (check) 1450 ceph_check_caps(ci, 0, NULL); 1451 out: 1452 iput(inode); 1453 } 1454 1455 1456 /* 1457 * called by trunc_wq; 1458 * 1459 * We also truncate in a separate thread as well. 1460 */ 1461 static void ceph_vmtruncate_work(struct work_struct *work) 1462 { 1463 struct ceph_inode_info *ci = container_of(work, struct ceph_inode_info, 1464 i_vmtruncate_work); 1465 struct inode *inode = &ci->vfs_inode; 1466 1467 dout("vmtruncate_work %p\n", inode); 1468 __ceph_do_pending_vmtruncate(inode, true); 1469 iput(inode); 1470 } 1471 1472 /* 1473 * Queue an async vmtruncate. If we fail to queue work, we will handle 1474 * the truncation the next time we call __ceph_do_pending_vmtruncate. 1475 */ 1476 void ceph_queue_vmtruncate(struct inode *inode) 1477 { 1478 struct ceph_inode_info *ci = ceph_inode(inode); 1479 1480 ihold(inode); 1481 if (queue_work(ceph_sb_to_client(inode->i_sb)->trunc_wq, 1482 &ci->i_vmtruncate_work)) { 1483 dout("ceph_queue_vmtruncate %p\n", inode); 1484 } else { 1485 dout("ceph_queue_vmtruncate %p failed, pending=%d\n", 1486 inode, ci->i_truncate_pending); 1487 iput(inode); 1488 } 1489 } 1490 1491 /* 1492 * Make sure any pending truncation is applied before doing anything 1493 * that may depend on it. 1494 */ 1495 void __ceph_do_pending_vmtruncate(struct inode *inode, bool needlock) 1496 { 1497 struct ceph_inode_info *ci = ceph_inode(inode); 1498 u64 to; 1499 int wrbuffer_refs, finish = 0; 1500 1501 retry: 1502 spin_lock(&ci->i_ceph_lock); 1503 if (ci->i_truncate_pending == 0) { 1504 dout("__do_pending_vmtruncate %p none pending\n", inode); 1505 spin_unlock(&ci->i_ceph_lock); 1506 return; 1507 } 1508 1509 /* 1510 * make sure any dirty snapped pages are flushed before we 1511 * possibly truncate them.. so write AND block! 1512 */ 1513 if (ci->i_wrbuffer_ref_head < ci->i_wrbuffer_ref) { 1514 dout("__do_pending_vmtruncate %p flushing snaps first\n", 1515 inode); 1516 spin_unlock(&ci->i_ceph_lock); 1517 filemap_write_and_wait_range(&inode->i_data, 0, 1518 inode->i_sb->s_maxbytes); 1519 goto retry; 1520 } 1521 1522 to = ci->i_truncate_size; 1523 wrbuffer_refs = ci->i_wrbuffer_ref; 1524 dout("__do_pending_vmtruncate %p (%d) to %lld\n", inode, 1525 ci->i_truncate_pending, to); 1526 spin_unlock(&ci->i_ceph_lock); 1527 1528 if (needlock) 1529 mutex_lock(&inode->i_mutex); 1530 truncate_inode_pages(inode->i_mapping, to); 1531 if (needlock) 1532 mutex_unlock(&inode->i_mutex); 1533 1534 spin_lock(&ci->i_ceph_lock); 1535 if (to == ci->i_truncate_size) { 1536 ci->i_truncate_pending = 0; 1537 finish = 1; 1538 } 1539 spin_unlock(&ci->i_ceph_lock); 1540 if (!finish) 1541 goto retry; 1542 1543 if (wrbuffer_refs == 0) 1544 ceph_check_caps(ci, CHECK_CAPS_AUTHONLY, NULL); 1545 1546 wake_up_all(&ci->i_cap_wq); 1547 } 1548 1549 1550 /* 1551 * symlinks 1552 */ 1553 static void *ceph_sym_follow_link(struct dentry *dentry, struct nameidata *nd) 1554 { 1555 struct ceph_inode_info *ci = ceph_inode(dentry->d_inode); 1556 nd_set_link(nd, ci->i_symlink); 1557 return NULL; 1558 } 1559 1560 static const struct inode_operations ceph_symlink_iops = { 1561 .readlink = generic_readlink, 1562 .follow_link = ceph_sym_follow_link, 1563 .setattr = ceph_setattr, 1564 .getattr = ceph_getattr, 1565 .setxattr = ceph_setxattr, 1566 .getxattr = ceph_getxattr, 1567 .listxattr = ceph_listxattr, 1568 .removexattr = ceph_removexattr, 1569 }; 1570 1571 /* 1572 * setattr 1573 */ 1574 int ceph_setattr(struct dentry *dentry, struct iattr *attr) 1575 { 1576 struct inode *inode = dentry->d_inode; 1577 struct ceph_inode_info *ci = ceph_inode(inode); 1578 struct inode *parent_inode; 1579 const unsigned int ia_valid = attr->ia_valid; 1580 struct ceph_mds_request *req; 1581 struct ceph_mds_client *mdsc = ceph_sb_to_client(dentry->d_sb)->mdsc; 1582 int issued; 1583 int release = 0, dirtied = 0; 1584 int mask = 0; 1585 int err = 0; 1586 int inode_dirty_flags = 0; 1587 1588 if (ceph_snap(inode) != CEPH_NOSNAP) 1589 return -EROFS; 1590 1591 __ceph_do_pending_vmtruncate(inode, false); 1592 1593 err = inode_change_ok(inode, attr); 1594 if (err != 0) 1595 return err; 1596 1597 req = ceph_mdsc_create_request(mdsc, CEPH_MDS_OP_SETATTR, 1598 USE_AUTH_MDS); 1599 if (IS_ERR(req)) 1600 return PTR_ERR(req); 1601 1602 spin_lock(&ci->i_ceph_lock); 1603 issued = __ceph_caps_issued(ci, NULL); 1604 dout("setattr %p issued %s\n", inode, ceph_cap_string(issued)); 1605 1606 if (ia_valid & ATTR_UID) { 1607 dout("setattr %p uid %d -> %d\n", inode, 1608 from_kuid(&init_user_ns, inode->i_uid), 1609 from_kuid(&init_user_ns, attr->ia_uid)); 1610 if (issued & CEPH_CAP_AUTH_EXCL) { 1611 inode->i_uid = attr->ia_uid; 1612 dirtied |= CEPH_CAP_AUTH_EXCL; 1613 } else if ((issued & CEPH_CAP_AUTH_SHARED) == 0 || 1614 !uid_eq(attr->ia_uid, inode->i_uid)) { 1615 req->r_args.setattr.uid = cpu_to_le32( 1616 from_kuid(&init_user_ns, attr->ia_uid)); 1617 mask |= CEPH_SETATTR_UID; 1618 release |= CEPH_CAP_AUTH_SHARED; 1619 } 1620 } 1621 if (ia_valid & ATTR_GID) { 1622 dout("setattr %p gid %d -> %d\n", inode, 1623 from_kgid(&init_user_ns, inode->i_gid), 1624 from_kgid(&init_user_ns, attr->ia_gid)); 1625 if (issued & CEPH_CAP_AUTH_EXCL) { 1626 inode->i_gid = attr->ia_gid; 1627 dirtied |= CEPH_CAP_AUTH_EXCL; 1628 } else if ((issued & CEPH_CAP_AUTH_SHARED) == 0 || 1629 !gid_eq(attr->ia_gid, inode->i_gid)) { 1630 req->r_args.setattr.gid = cpu_to_le32( 1631 from_kgid(&init_user_ns, attr->ia_gid)); 1632 mask |= CEPH_SETATTR_GID; 1633 release |= CEPH_CAP_AUTH_SHARED; 1634 } 1635 } 1636 if (ia_valid & ATTR_MODE) { 1637 dout("setattr %p mode 0%o -> 0%o\n", inode, inode->i_mode, 1638 attr->ia_mode); 1639 if (issued & CEPH_CAP_AUTH_EXCL) { 1640 inode->i_mode = attr->ia_mode; 1641 dirtied |= CEPH_CAP_AUTH_EXCL; 1642 } else if ((issued & CEPH_CAP_AUTH_SHARED) == 0 || 1643 attr->ia_mode != inode->i_mode) { 1644 req->r_args.setattr.mode = cpu_to_le32(attr->ia_mode); 1645 mask |= CEPH_SETATTR_MODE; 1646 release |= CEPH_CAP_AUTH_SHARED; 1647 } 1648 } 1649 1650 if (ia_valid & ATTR_ATIME) { 1651 dout("setattr %p atime %ld.%ld -> %ld.%ld\n", inode, 1652 inode->i_atime.tv_sec, inode->i_atime.tv_nsec, 1653 attr->ia_atime.tv_sec, attr->ia_atime.tv_nsec); 1654 if (issued & CEPH_CAP_FILE_EXCL) { 1655 ci->i_time_warp_seq++; 1656 inode->i_atime = attr->ia_atime; 1657 dirtied |= CEPH_CAP_FILE_EXCL; 1658 } else if ((issued & CEPH_CAP_FILE_WR) && 1659 timespec_compare(&inode->i_atime, 1660 &attr->ia_atime) < 0) { 1661 inode->i_atime = attr->ia_atime; 1662 dirtied |= CEPH_CAP_FILE_WR; 1663 } else if ((issued & CEPH_CAP_FILE_SHARED) == 0 || 1664 !timespec_equal(&inode->i_atime, &attr->ia_atime)) { 1665 ceph_encode_timespec(&req->r_args.setattr.atime, 1666 &attr->ia_atime); 1667 mask |= CEPH_SETATTR_ATIME; 1668 release |= CEPH_CAP_FILE_CACHE | CEPH_CAP_FILE_RD | 1669 CEPH_CAP_FILE_WR; 1670 } 1671 } 1672 if (ia_valid & ATTR_MTIME) { 1673 dout("setattr %p mtime %ld.%ld -> %ld.%ld\n", inode, 1674 inode->i_mtime.tv_sec, inode->i_mtime.tv_nsec, 1675 attr->ia_mtime.tv_sec, attr->ia_mtime.tv_nsec); 1676 if (issued & CEPH_CAP_FILE_EXCL) { 1677 ci->i_time_warp_seq++; 1678 inode->i_mtime = attr->ia_mtime; 1679 dirtied |= CEPH_CAP_FILE_EXCL; 1680 } else if ((issued & CEPH_CAP_FILE_WR) && 1681 timespec_compare(&inode->i_mtime, 1682 &attr->ia_mtime) < 0) { 1683 inode->i_mtime = attr->ia_mtime; 1684 dirtied |= CEPH_CAP_FILE_WR; 1685 } else if ((issued & CEPH_CAP_FILE_SHARED) == 0 || 1686 !timespec_equal(&inode->i_mtime, &attr->ia_mtime)) { 1687 ceph_encode_timespec(&req->r_args.setattr.mtime, 1688 &attr->ia_mtime); 1689 mask |= CEPH_SETATTR_MTIME; 1690 release |= CEPH_CAP_FILE_SHARED | CEPH_CAP_FILE_RD | 1691 CEPH_CAP_FILE_WR; 1692 } 1693 } 1694 if (ia_valid & ATTR_SIZE) { 1695 dout("setattr %p size %lld -> %lld\n", inode, 1696 inode->i_size, attr->ia_size); 1697 if (attr->ia_size > inode->i_sb->s_maxbytes) { 1698 err = -EINVAL; 1699 goto out; 1700 } 1701 if ((issued & CEPH_CAP_FILE_EXCL) && 1702 attr->ia_size > inode->i_size) { 1703 inode->i_size = attr->ia_size; 1704 inode->i_blocks = 1705 (attr->ia_size + (1 << 9) - 1) >> 9; 1706 inode->i_ctime = attr->ia_ctime; 1707 ci->i_reported_size = attr->ia_size; 1708 dirtied |= CEPH_CAP_FILE_EXCL; 1709 } else if ((issued & CEPH_CAP_FILE_SHARED) == 0 || 1710 attr->ia_size != inode->i_size) { 1711 req->r_args.setattr.size = cpu_to_le64(attr->ia_size); 1712 req->r_args.setattr.old_size = 1713 cpu_to_le64(inode->i_size); 1714 mask |= CEPH_SETATTR_SIZE; 1715 release |= CEPH_CAP_FILE_SHARED | CEPH_CAP_FILE_RD | 1716 CEPH_CAP_FILE_WR; 1717 } 1718 } 1719 1720 /* these do nothing */ 1721 if (ia_valid & ATTR_CTIME) { 1722 bool only = (ia_valid & (ATTR_SIZE|ATTR_MTIME|ATTR_ATIME| 1723 ATTR_MODE|ATTR_UID|ATTR_GID)) == 0; 1724 dout("setattr %p ctime %ld.%ld -> %ld.%ld (%s)\n", inode, 1725 inode->i_ctime.tv_sec, inode->i_ctime.tv_nsec, 1726 attr->ia_ctime.tv_sec, attr->ia_ctime.tv_nsec, 1727 only ? "ctime only" : "ignored"); 1728 inode->i_ctime = attr->ia_ctime; 1729 if (only) { 1730 /* 1731 * if kernel wants to dirty ctime but nothing else, 1732 * we need to choose a cap to dirty under, or do 1733 * a almost-no-op setattr 1734 */ 1735 if (issued & CEPH_CAP_AUTH_EXCL) 1736 dirtied |= CEPH_CAP_AUTH_EXCL; 1737 else if (issued & CEPH_CAP_FILE_EXCL) 1738 dirtied |= CEPH_CAP_FILE_EXCL; 1739 else if (issued & CEPH_CAP_XATTR_EXCL) 1740 dirtied |= CEPH_CAP_XATTR_EXCL; 1741 else 1742 mask |= CEPH_SETATTR_CTIME; 1743 } 1744 } 1745 if (ia_valid & ATTR_FILE) 1746 dout("setattr %p ATTR_FILE ... hrm!\n", inode); 1747 1748 if (dirtied) { 1749 inode_dirty_flags = __ceph_mark_dirty_caps(ci, dirtied); 1750 inode->i_ctime = CURRENT_TIME; 1751 } 1752 1753 release &= issued; 1754 spin_unlock(&ci->i_ceph_lock); 1755 1756 if (inode_dirty_flags) 1757 __mark_inode_dirty(inode, inode_dirty_flags); 1758 1759 if (mask) { 1760 req->r_inode = inode; 1761 ihold(inode); 1762 req->r_inode_drop = release; 1763 req->r_args.setattr.mask = cpu_to_le32(mask); 1764 req->r_num_caps = 1; 1765 parent_inode = ceph_get_dentry_parent_inode(dentry); 1766 err = ceph_mdsc_do_request(mdsc, parent_inode, req); 1767 iput(parent_inode); 1768 } 1769 dout("setattr %p result=%d (%s locally, %d remote)\n", inode, err, 1770 ceph_cap_string(dirtied), mask); 1771 1772 ceph_mdsc_put_request(req); 1773 __ceph_do_pending_vmtruncate(inode, false); 1774 return err; 1775 out: 1776 spin_unlock(&ci->i_ceph_lock); 1777 ceph_mdsc_put_request(req); 1778 return err; 1779 } 1780 1781 /* 1782 * Verify that we have a lease on the given mask. If not, 1783 * do a getattr against an mds. 1784 */ 1785 int ceph_do_getattr(struct inode *inode, int mask) 1786 { 1787 struct ceph_fs_client *fsc = ceph_sb_to_client(inode->i_sb); 1788 struct ceph_mds_client *mdsc = fsc->mdsc; 1789 struct ceph_mds_request *req; 1790 int err; 1791 1792 if (ceph_snap(inode) == CEPH_SNAPDIR) { 1793 dout("do_getattr inode %p SNAPDIR\n", inode); 1794 return 0; 1795 } 1796 1797 dout("do_getattr inode %p mask %s mode 0%o\n", inode, ceph_cap_string(mask), inode->i_mode); 1798 if (ceph_caps_issued_mask(ceph_inode(inode), mask, 1)) 1799 return 0; 1800 1801 req = ceph_mdsc_create_request(mdsc, CEPH_MDS_OP_GETATTR, USE_ANY_MDS); 1802 if (IS_ERR(req)) 1803 return PTR_ERR(req); 1804 req->r_inode = inode; 1805 ihold(inode); 1806 req->r_num_caps = 1; 1807 req->r_args.getattr.mask = cpu_to_le32(mask); 1808 err = ceph_mdsc_do_request(mdsc, NULL, req); 1809 ceph_mdsc_put_request(req); 1810 dout("do_getattr result=%d\n", err); 1811 return err; 1812 } 1813 1814 1815 /* 1816 * Check inode permissions. We verify we have a valid value for 1817 * the AUTH cap, then call the generic handler. 1818 */ 1819 int ceph_permission(struct inode *inode, int mask) 1820 { 1821 int err; 1822 1823 if (mask & MAY_NOT_BLOCK) 1824 return -ECHILD; 1825 1826 err = ceph_do_getattr(inode, CEPH_CAP_AUTH_SHARED); 1827 1828 if (!err) 1829 err = generic_permission(inode, mask); 1830 return err; 1831 } 1832 1833 /* 1834 * Get all attributes. Hopefully somedata we'll have a statlite() 1835 * and can limit the fields we require to be accurate. 1836 */ 1837 int ceph_getattr(struct vfsmount *mnt, struct dentry *dentry, 1838 struct kstat *stat) 1839 { 1840 struct inode *inode = dentry->d_inode; 1841 struct ceph_inode_info *ci = ceph_inode(inode); 1842 int err; 1843 1844 err = ceph_do_getattr(inode, CEPH_STAT_CAP_INODE_ALL); 1845 if (!err) { 1846 generic_fillattr(inode, stat); 1847 stat->ino = ceph_translate_ino(inode->i_sb, inode->i_ino); 1848 if (ceph_snap(inode) != CEPH_NOSNAP) 1849 stat->dev = ceph_snap(inode); 1850 else 1851 stat->dev = 0; 1852 if (S_ISDIR(inode->i_mode)) { 1853 if (ceph_test_mount_opt(ceph_sb_to_client(inode->i_sb), 1854 RBYTES)) 1855 stat->size = ci->i_rbytes; 1856 else 1857 stat->size = ci->i_files + ci->i_subdirs; 1858 stat->blocks = 0; 1859 stat->blksize = 65536; 1860 } 1861 } 1862 return err; 1863 } 1864