1 /* 2 * (C) 2001 Clemson University and The University of Chicago 3 * 4 * See COPYING in top-level directory. 5 */ 6 7 #include "protocol.h" 8 #include "orangefs-kernel.h" 9 #include "orangefs-bufmap.h" 10 11 #include <linux/parser.h> 12 13 /* a cache for orangefs-inode objects (i.e. orangefs inode private data) */ 14 static struct kmem_cache *orangefs_inode_cache; 15 16 /* list for storing orangefs specific superblocks in use */ 17 LIST_HEAD(orangefs_superblocks); 18 19 DEFINE_SPINLOCK(orangefs_superblocks_lock); 20 21 enum { 22 Opt_intr, 23 Opt_acl, 24 Opt_local_lock, 25 26 Opt_err 27 }; 28 29 static const match_table_t tokens = { 30 { Opt_acl, "acl" }, 31 { Opt_intr, "intr" }, 32 { Opt_local_lock, "local_lock" }, 33 { Opt_err, NULL } 34 }; 35 36 uint64_t orangefs_features; 37 38 static int parse_mount_options(struct super_block *sb, char *options, 39 int silent) 40 { 41 struct orangefs_sb_info_s *orangefs_sb = ORANGEFS_SB(sb); 42 substring_t args[MAX_OPT_ARGS]; 43 char *p; 44 45 /* 46 * Force any potential flags that might be set from the mount 47 * to zero, ie, initialize to unset. 48 */ 49 sb->s_flags &= ~MS_POSIXACL; 50 orangefs_sb->flags &= ~ORANGEFS_OPT_INTR; 51 orangefs_sb->flags &= ~ORANGEFS_OPT_LOCAL_LOCK; 52 53 while ((p = strsep(&options, ",")) != NULL) { 54 int token; 55 56 if (!*p) 57 continue; 58 59 token = match_token(p, tokens, args); 60 switch (token) { 61 case Opt_acl: 62 sb->s_flags |= MS_POSIXACL; 63 break; 64 case Opt_intr: 65 orangefs_sb->flags |= ORANGEFS_OPT_INTR; 66 break; 67 case Opt_local_lock: 68 orangefs_sb->flags |= ORANGEFS_OPT_LOCAL_LOCK; 69 break; 70 default: 71 goto fail; 72 } 73 } 74 75 return 0; 76 fail: 77 if (!silent) 78 gossip_err("Error: mount option [%s] is not supported.\n", p); 79 return -EINVAL; 80 } 81 82 static void orangefs_inode_cache_ctor(void *req) 83 { 84 struct orangefs_inode_s *orangefs_inode = req; 85 86 inode_init_once(&orangefs_inode->vfs_inode); 87 init_rwsem(&orangefs_inode->xattr_sem); 88 89 orangefs_inode->vfs_inode.i_version = 1; 90 } 91 92 static struct inode *orangefs_alloc_inode(struct super_block *sb) 93 { 94 struct orangefs_inode_s *orangefs_inode; 95 96 orangefs_inode = kmem_cache_alloc(orangefs_inode_cache, GFP_KERNEL); 97 if (orangefs_inode == NULL) { 98 gossip_err("Failed to allocate orangefs_inode\n"); 99 return NULL; 100 } 101 102 /* 103 * We want to clear everything except for rw_semaphore and the 104 * vfs_inode. 105 */ 106 memset(&orangefs_inode->refn.khandle, 0, 16); 107 orangefs_inode->refn.fs_id = ORANGEFS_FS_ID_NULL; 108 orangefs_inode->last_failed_block_index_read = 0; 109 memset(orangefs_inode->link_target, 0, sizeof(orangefs_inode->link_target)); 110 orangefs_inode->pinode_flags = 0; 111 112 gossip_debug(GOSSIP_SUPER_DEBUG, 113 "orangefs_alloc_inode: allocated %p\n", 114 &orangefs_inode->vfs_inode); 115 return &orangefs_inode->vfs_inode; 116 } 117 118 static void orangefs_destroy_inode(struct inode *inode) 119 { 120 struct orangefs_inode_s *orangefs_inode = ORANGEFS_I(inode); 121 122 gossip_debug(GOSSIP_SUPER_DEBUG, 123 "%s: deallocated %p destroying inode %pU\n", 124 __func__, orangefs_inode, get_khandle_from_ino(inode)); 125 126 kmem_cache_free(orangefs_inode_cache, orangefs_inode); 127 } 128 129 /* 130 * NOTE: information filled in here is typically reflected in the 131 * output of the system command 'df' 132 */ 133 static int orangefs_statfs(struct dentry *dentry, struct kstatfs *buf) 134 { 135 int ret = -ENOMEM; 136 struct orangefs_kernel_op_s *new_op = NULL; 137 int flags = 0; 138 struct super_block *sb = NULL; 139 140 sb = dentry->d_sb; 141 142 gossip_debug(GOSSIP_SUPER_DEBUG, 143 "orangefs_statfs: called on sb %p (fs_id is %d)\n", 144 sb, 145 (int)(ORANGEFS_SB(sb)->fs_id)); 146 147 new_op = op_alloc(ORANGEFS_VFS_OP_STATFS); 148 if (!new_op) 149 return ret; 150 new_op->upcall.req.statfs.fs_id = ORANGEFS_SB(sb)->fs_id; 151 152 if (ORANGEFS_SB(sb)->flags & ORANGEFS_OPT_INTR) 153 flags = ORANGEFS_OP_INTERRUPTIBLE; 154 155 ret = service_operation(new_op, "orangefs_statfs", flags); 156 157 if (new_op->downcall.status < 0) 158 goto out_op_release; 159 160 gossip_debug(GOSSIP_SUPER_DEBUG, 161 "%s: got %ld blocks available | " 162 "%ld blocks total | %ld block size | " 163 "%ld files total | %ld files avail\n", 164 __func__, 165 (long)new_op->downcall.resp.statfs.blocks_avail, 166 (long)new_op->downcall.resp.statfs.blocks_total, 167 (long)new_op->downcall.resp.statfs.block_size, 168 (long)new_op->downcall.resp.statfs.files_total, 169 (long)new_op->downcall.resp.statfs.files_avail); 170 171 buf->f_type = sb->s_magic; 172 memcpy(&buf->f_fsid, &ORANGEFS_SB(sb)->fs_id, sizeof(buf->f_fsid)); 173 buf->f_bsize = new_op->downcall.resp.statfs.block_size; 174 buf->f_namelen = ORANGEFS_NAME_MAX; 175 176 buf->f_blocks = (sector_t) new_op->downcall.resp.statfs.blocks_total; 177 buf->f_bfree = (sector_t) new_op->downcall.resp.statfs.blocks_avail; 178 buf->f_bavail = (sector_t) new_op->downcall.resp.statfs.blocks_avail; 179 buf->f_files = (sector_t) new_op->downcall.resp.statfs.files_total; 180 buf->f_ffree = (sector_t) new_op->downcall.resp.statfs.files_avail; 181 buf->f_frsize = sb->s_blocksize; 182 183 out_op_release: 184 op_release(new_op); 185 gossip_debug(GOSSIP_SUPER_DEBUG, "orangefs_statfs: returning %d\n", ret); 186 return ret; 187 } 188 189 /* 190 * Remount as initiated by VFS layer. We just need to reparse the mount 191 * options, no need to signal pvfs2-client-core about it. 192 */ 193 static int orangefs_remount_fs(struct super_block *sb, int *flags, char *data) 194 { 195 gossip_debug(GOSSIP_SUPER_DEBUG, "orangefs_remount_fs: called\n"); 196 return parse_mount_options(sb, data, 1); 197 } 198 199 /* 200 * Remount as initiated by pvfs2-client-core on restart. This is used to 201 * repopulate mount information left from previous pvfs2-client-core. 202 * 203 * the idea here is that given a valid superblock, we're 204 * re-initializing the user space client with the initial mount 205 * information specified when the super block was first initialized. 206 * this is very different than the first initialization/creation of a 207 * superblock. we use the special service_priority_operation to make 208 * sure that the mount gets ahead of any other pending operation that 209 * is waiting for servicing. this means that the pvfs2-client won't 210 * fail to start several times for all other pending operations before 211 * the client regains all of the mount information from us. 212 * NOTE: this function assumes that the request_mutex is already acquired! 213 */ 214 int orangefs_remount(struct orangefs_sb_info_s *orangefs_sb) 215 { 216 struct orangefs_kernel_op_s *new_op; 217 int ret = -EINVAL; 218 219 gossip_debug(GOSSIP_SUPER_DEBUG, "orangefs_remount: called\n"); 220 221 new_op = op_alloc(ORANGEFS_VFS_OP_FS_MOUNT); 222 if (!new_op) 223 return -ENOMEM; 224 strncpy(new_op->upcall.req.fs_mount.orangefs_config_server, 225 orangefs_sb->devname, 226 ORANGEFS_MAX_SERVER_ADDR_LEN); 227 228 gossip_debug(GOSSIP_SUPER_DEBUG, 229 "Attempting ORANGEFS Remount via host %s\n", 230 new_op->upcall.req.fs_mount.orangefs_config_server); 231 232 /* 233 * we assume that the calling function has already acquired the 234 * request_mutex to prevent other operations from bypassing 235 * this one 236 */ 237 ret = service_operation(new_op, "orangefs_remount", 238 ORANGEFS_OP_PRIORITY | ORANGEFS_OP_NO_MUTEX); 239 gossip_debug(GOSSIP_SUPER_DEBUG, 240 "orangefs_remount: mount got return value of %d\n", 241 ret); 242 if (ret == 0) { 243 /* 244 * store the id assigned to this sb -- it's just a 245 * short-lived mapping that the system interface uses 246 * to map this superblock to a particular mount entry 247 */ 248 orangefs_sb->id = new_op->downcall.resp.fs_mount.id; 249 orangefs_sb->mount_pending = 0; 250 } 251 252 op_release(new_op); 253 254 if (orangefs_userspace_version >= 20906) { 255 new_op = op_alloc(ORANGEFS_VFS_OP_FEATURES); 256 if (!new_op) 257 return -ENOMEM; 258 new_op->upcall.req.features.features = 0; 259 ret = service_operation(new_op, "orangefs_features", 0); 260 orangefs_features = new_op->downcall.resp.features.features; 261 op_release(new_op); 262 } else { 263 orangefs_features = 0; 264 } 265 266 return ret; 267 } 268 269 int fsid_key_table_initialize(void) 270 { 271 return 0; 272 } 273 274 void fsid_key_table_finalize(void) 275 { 276 } 277 278 /* Called whenever the VFS dirties the inode in response to atime updates */ 279 static void orangefs_dirty_inode(struct inode *inode, int flags) 280 { 281 struct orangefs_inode_s *orangefs_inode = ORANGEFS_I(inode); 282 283 gossip_debug(GOSSIP_SUPER_DEBUG, 284 "orangefs_dirty_inode: %pU\n", 285 get_khandle_from_ino(inode)); 286 SetAtimeFlag(orangefs_inode); 287 } 288 289 static const struct super_operations orangefs_s_ops = { 290 .alloc_inode = orangefs_alloc_inode, 291 .destroy_inode = orangefs_destroy_inode, 292 .dirty_inode = orangefs_dirty_inode, 293 .drop_inode = generic_delete_inode, 294 .statfs = orangefs_statfs, 295 .remount_fs = orangefs_remount_fs, 296 .show_options = generic_show_options, 297 }; 298 299 static struct dentry *orangefs_fh_to_dentry(struct super_block *sb, 300 struct fid *fid, 301 int fh_len, 302 int fh_type) 303 { 304 struct orangefs_object_kref refn; 305 306 if (fh_len < 5 || fh_type > 2) 307 return NULL; 308 309 ORANGEFS_khandle_from(&(refn.khandle), fid->raw, 16); 310 refn.fs_id = (u32) fid->raw[4]; 311 gossip_debug(GOSSIP_SUPER_DEBUG, 312 "fh_to_dentry: handle %pU, fs_id %d\n", 313 &refn.khandle, 314 refn.fs_id); 315 316 return d_obtain_alias(orangefs_iget(sb, &refn)); 317 } 318 319 static int orangefs_encode_fh(struct inode *inode, 320 __u32 *fh, 321 int *max_len, 322 struct inode *parent) 323 { 324 int len = parent ? 10 : 5; 325 int type = 1; 326 struct orangefs_object_kref refn; 327 328 if (*max_len < len) { 329 gossip_lerr("fh buffer is too small for encoding\n"); 330 *max_len = len; 331 type = 255; 332 goto out; 333 } 334 335 refn = ORANGEFS_I(inode)->refn; 336 ORANGEFS_khandle_to(&refn.khandle, fh, 16); 337 fh[4] = refn.fs_id; 338 339 gossip_debug(GOSSIP_SUPER_DEBUG, 340 "Encoding fh: handle %pU, fsid %u\n", 341 &refn.khandle, 342 refn.fs_id); 343 344 345 if (parent) { 346 refn = ORANGEFS_I(parent)->refn; 347 ORANGEFS_khandle_to(&refn.khandle, (char *) fh + 20, 16); 348 fh[9] = refn.fs_id; 349 350 type = 2; 351 gossip_debug(GOSSIP_SUPER_DEBUG, 352 "Encoding parent: handle %pU, fsid %u\n", 353 &refn.khandle, 354 refn.fs_id); 355 } 356 *max_len = len; 357 358 out: 359 return type; 360 } 361 362 static const struct export_operations orangefs_export_ops = { 363 .encode_fh = orangefs_encode_fh, 364 .fh_to_dentry = orangefs_fh_to_dentry, 365 }; 366 367 static int orangefs_fill_sb(struct super_block *sb, 368 struct orangefs_fs_mount_response *fs_mount, 369 void *data, int silent) 370 { 371 int ret = -EINVAL; 372 struct inode *root = NULL; 373 struct dentry *root_dentry = NULL; 374 struct orangefs_object_kref root_object; 375 376 /* alloc and init our private orangefs sb info */ 377 sb->s_fs_info = kzalloc(sizeof(struct orangefs_sb_info_s), GFP_KERNEL); 378 if (!ORANGEFS_SB(sb)) 379 return -ENOMEM; 380 ORANGEFS_SB(sb)->sb = sb; 381 382 ORANGEFS_SB(sb)->root_khandle = fs_mount->root_khandle; 383 ORANGEFS_SB(sb)->fs_id = fs_mount->fs_id; 384 ORANGEFS_SB(sb)->id = fs_mount->id; 385 386 if (data) { 387 ret = parse_mount_options(sb, data, silent); 388 if (ret) 389 return ret; 390 } 391 392 /* Hang the xattr handlers off the superblock */ 393 sb->s_xattr = orangefs_xattr_handlers; 394 sb->s_magic = ORANGEFS_SUPER_MAGIC; 395 sb->s_op = &orangefs_s_ops; 396 sb->s_d_op = &orangefs_dentry_operations; 397 398 sb->s_blocksize = orangefs_bufmap_size_query(); 399 sb->s_blocksize_bits = orangefs_bufmap_shift_query(); 400 sb->s_maxbytes = MAX_LFS_FILESIZE; 401 402 root_object.khandle = ORANGEFS_SB(sb)->root_khandle; 403 root_object.fs_id = ORANGEFS_SB(sb)->fs_id; 404 gossip_debug(GOSSIP_SUPER_DEBUG, 405 "get inode %pU, fsid %d\n", 406 &root_object.khandle, 407 root_object.fs_id); 408 409 root = orangefs_iget(sb, &root_object); 410 if (IS_ERR(root)) 411 return PTR_ERR(root); 412 413 gossip_debug(GOSSIP_SUPER_DEBUG, 414 "Allocated root inode [%p] with mode %x\n", 415 root, 416 root->i_mode); 417 418 /* allocates and places root dentry in dcache */ 419 root_dentry = d_make_root(root); 420 if (!root_dentry) 421 return -ENOMEM; 422 423 sb->s_export_op = &orangefs_export_ops; 424 sb->s_root = root_dentry; 425 return 0; 426 } 427 428 struct dentry *orangefs_mount(struct file_system_type *fst, 429 int flags, 430 const char *devname, 431 void *data) 432 { 433 int ret = -EINVAL; 434 struct super_block *sb = ERR_PTR(-EINVAL); 435 struct orangefs_kernel_op_s *new_op; 436 struct dentry *d = ERR_PTR(-EINVAL); 437 438 gossip_debug(GOSSIP_SUPER_DEBUG, 439 "orangefs_mount: called with devname %s\n", 440 devname); 441 442 if (!devname) { 443 gossip_err("ERROR: device name not specified.\n"); 444 return ERR_PTR(-EINVAL); 445 } 446 447 new_op = op_alloc(ORANGEFS_VFS_OP_FS_MOUNT); 448 if (!new_op) 449 return ERR_PTR(-ENOMEM); 450 451 strncpy(new_op->upcall.req.fs_mount.orangefs_config_server, 452 devname, 453 ORANGEFS_MAX_SERVER_ADDR_LEN); 454 455 gossip_debug(GOSSIP_SUPER_DEBUG, 456 "Attempting ORANGEFS Mount via host %s\n", 457 new_op->upcall.req.fs_mount.orangefs_config_server); 458 459 ret = service_operation(new_op, "orangefs_mount", 0); 460 gossip_debug(GOSSIP_SUPER_DEBUG, 461 "orangefs_mount: mount got return value of %d\n", ret); 462 if (ret) 463 goto free_op; 464 465 if (new_op->downcall.resp.fs_mount.fs_id == ORANGEFS_FS_ID_NULL) { 466 gossip_err("ERROR: Retrieved null fs_id\n"); 467 ret = -EINVAL; 468 goto free_op; 469 } 470 471 sb = sget(fst, NULL, set_anon_super, flags, NULL); 472 473 if (IS_ERR(sb)) { 474 d = ERR_CAST(sb); 475 goto free_op; 476 } 477 478 ret = orangefs_fill_sb(sb, 479 &new_op->downcall.resp.fs_mount, data, 480 flags & MS_SILENT ? 1 : 0); 481 482 if (ret) { 483 d = ERR_PTR(ret); 484 goto free_op; 485 } 486 487 /* 488 * on successful mount, store the devname and data 489 * used 490 */ 491 strncpy(ORANGEFS_SB(sb)->devname, 492 devname, 493 ORANGEFS_MAX_SERVER_ADDR_LEN); 494 495 /* mount_pending must be cleared */ 496 ORANGEFS_SB(sb)->mount_pending = 0; 497 498 /* 499 * finally, add this sb to our list of known orangefs 500 * sb's 501 */ 502 gossip_debug(GOSSIP_SUPER_DEBUG, 503 "Adding SB %p to orangefs superblocks\n", 504 ORANGEFS_SB(sb)); 505 spin_lock(&orangefs_superblocks_lock); 506 list_add_tail(&ORANGEFS_SB(sb)->list, &orangefs_superblocks); 507 spin_unlock(&orangefs_superblocks_lock); 508 op_release(new_op); 509 510 if (orangefs_userspace_version >= 20906) { 511 new_op = op_alloc(ORANGEFS_VFS_OP_FEATURES); 512 if (!new_op) 513 return ERR_PTR(-ENOMEM); 514 new_op->upcall.req.features.features = 0; 515 ret = service_operation(new_op, "orangefs_features", 0); 516 orangefs_features = new_op->downcall.resp.features.features; 517 op_release(new_op); 518 } else { 519 orangefs_features = 0; 520 } 521 522 return dget(sb->s_root); 523 524 free_op: 525 gossip_err("orangefs_mount: mount request failed with %d\n", ret); 526 if (ret == -EINVAL) { 527 gossip_err("Ensure that all orangefs-servers have the same FS configuration files\n"); 528 gossip_err("Look at pvfs2-client-core log file (typically /tmp/pvfs2-client.log) for more details\n"); 529 } 530 531 op_release(new_op); 532 533 return d; 534 } 535 536 void orangefs_kill_sb(struct super_block *sb) 537 { 538 gossip_debug(GOSSIP_SUPER_DEBUG, "orangefs_kill_sb: called\n"); 539 540 /* provided sb cleanup */ 541 kill_anon_super(sb); 542 543 /* 544 * issue the unmount to userspace to tell it to remove the 545 * dynamic mount info it has for this superblock 546 */ 547 orangefs_unmount_sb(sb); 548 549 /* remove the sb from our list of orangefs specific sb's */ 550 551 spin_lock(&orangefs_superblocks_lock); 552 __list_del_entry(&ORANGEFS_SB(sb)->list); /* not list_del_init */ 553 ORANGEFS_SB(sb)->list.prev = NULL; 554 spin_unlock(&orangefs_superblocks_lock); 555 556 /* 557 * make sure that ORANGEFS_DEV_REMOUNT_ALL loop that might've seen us 558 * gets completed before we free the dang thing. 559 */ 560 mutex_lock(&orangefs_request_mutex); 561 mutex_unlock(&orangefs_request_mutex); 562 563 /* free the orangefs superblock private data */ 564 kfree(ORANGEFS_SB(sb)); 565 } 566 567 int orangefs_inode_cache_initialize(void) 568 { 569 orangefs_inode_cache = kmem_cache_create("orangefs_inode_cache", 570 sizeof(struct orangefs_inode_s), 571 0, 572 ORANGEFS_CACHE_CREATE_FLAGS, 573 orangefs_inode_cache_ctor); 574 575 if (!orangefs_inode_cache) { 576 gossip_err("Cannot create orangefs_inode_cache\n"); 577 return -ENOMEM; 578 } 579 return 0; 580 } 581 582 int orangefs_inode_cache_finalize(void) 583 { 584 kmem_cache_destroy(orangefs_inode_cache); 585 return 0; 586 } 587