1 /* -*- mode: c; c-basic-offset: 8; -*- 2 * vim: noexpandtab sw=8 ts=8 sts=0: 3 * 4 * dlmdomain.c 5 * 6 * defines domain join / leave apis 7 * 8 * Copyright (C) 2004 Oracle. All rights reserved. 9 * 10 * This program is free software; you can redistribute it and/or 11 * modify it under the terms of the GNU General Public 12 * License as published by the Free Software Foundation; either 13 * version 2 of the License, or (at your option) any later version. 14 * 15 * This program is distributed in the hope that it will be useful, 16 * but WITHOUT ANY WARRANTY; without even the implied warranty of 17 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU 18 * General Public License for more details. 19 * 20 * You should have received a copy of the GNU General Public 21 * License along with this program; if not, write to the 22 * Free Software Foundation, Inc., 59 Temple Place - Suite 330, 23 * Boston, MA 021110-1307, USA. 24 * 25 */ 26 27 #include <linux/module.h> 28 #include <linux/types.h> 29 #include <linux/slab.h> 30 #include <linux/highmem.h> 31 #include <linux/init.h> 32 #include <linux/spinlock.h> 33 #include <linux/delay.h> 34 #include <linux/err.h> 35 #include <linux/debugfs.h> 36 37 #include "cluster/heartbeat.h" 38 #include "cluster/nodemanager.h" 39 #include "cluster/tcp.h" 40 41 #include "dlmapi.h" 42 #include "dlmcommon.h" 43 #include "dlmdomain.h" 44 #include "dlmdebug.h" 45 46 #define MLOG_MASK_PREFIX (ML_DLM|ML_DLM_DOMAIN) 47 #include "cluster/masklog.h" 48 49 /* 50 * ocfs2 node maps are array of long int, which limits to send them freely 51 * across the wire due to endianness issues. To workaround this, we convert 52 * long ints to byte arrays. Following 3 routines are helper functions to 53 * set/test/copy bits within those array of bytes 54 */ 55 static inline void byte_set_bit(u8 nr, u8 map[]) 56 { 57 map[nr >> 3] |= (1UL << (nr & 7)); 58 } 59 60 static inline int byte_test_bit(u8 nr, u8 map[]) 61 { 62 return ((1UL << (nr & 7)) & (map[nr >> 3])) != 0; 63 } 64 65 static inline void byte_copymap(u8 dmap[], unsigned long smap[], 66 unsigned int sz) 67 { 68 unsigned int nn; 69 70 if (!sz) 71 return; 72 73 memset(dmap, 0, ((sz + 7) >> 3)); 74 for (nn = 0 ; nn < sz; nn++) 75 if (test_bit(nn, smap)) 76 byte_set_bit(nn, dmap); 77 } 78 79 static void dlm_free_pagevec(void **vec, int pages) 80 { 81 while (pages--) 82 free_page((unsigned long)vec[pages]); 83 kfree(vec); 84 } 85 86 static void **dlm_alloc_pagevec(int pages) 87 { 88 void **vec = kmalloc(pages * sizeof(void *), GFP_KERNEL); 89 int i; 90 91 if (!vec) 92 return NULL; 93 94 for (i = 0; i < pages; i++) 95 if (!(vec[i] = (void *)__get_free_page(GFP_KERNEL))) 96 goto out_free; 97 98 mlog(0, "Allocated DLM hash pagevec; %d pages (%lu expected), %lu buckets per page\n", 99 pages, (unsigned long)DLM_HASH_PAGES, 100 (unsigned long)DLM_BUCKETS_PER_PAGE); 101 return vec; 102 out_free: 103 dlm_free_pagevec(vec, i); 104 return NULL; 105 } 106 107 /* 108 * 109 * spinlock lock ordering: if multiple locks are needed, obey this ordering: 110 * dlm_domain_lock 111 * struct dlm_ctxt->spinlock 112 * struct dlm_lock_resource->spinlock 113 * struct dlm_ctxt->master_lock 114 * struct dlm_ctxt->ast_lock 115 * dlm_master_list_entry->spinlock 116 * dlm_lock->spinlock 117 * 118 */ 119 120 DEFINE_SPINLOCK(dlm_domain_lock); 121 LIST_HEAD(dlm_domains); 122 static DECLARE_WAIT_QUEUE_HEAD(dlm_domain_events); 123 124 /* 125 * The supported protocol version for DLM communication. Running domains 126 * will have a negotiated version with the same major number and a minor 127 * number equal or smaller. The dlm_ctxt->dlm_locking_proto field should 128 * be used to determine what a running domain is actually using. 129 * 130 * New in version 1.1: 131 * - Message DLM_QUERY_REGION added to support global heartbeat 132 * - Message DLM_QUERY_NODEINFO added to allow online node removes 133 * New in version 1.2: 134 * - Message DLM_BEGIN_EXIT_DOMAIN_MSG added to mark start of exit domain 135 */ 136 static const struct dlm_protocol_version dlm_protocol = { 137 .pv_major = 1, 138 .pv_minor = 2, 139 }; 140 141 #define DLM_DOMAIN_BACKOFF_MS 200 142 143 static int dlm_query_join_handler(struct o2net_msg *msg, u32 len, void *data, 144 void **ret_data); 145 static int dlm_assert_joined_handler(struct o2net_msg *msg, u32 len, void *data, 146 void **ret_data); 147 static int dlm_cancel_join_handler(struct o2net_msg *msg, u32 len, void *data, 148 void **ret_data); 149 static int dlm_query_region_handler(struct o2net_msg *msg, u32 len, 150 void *data, void **ret_data); 151 static int dlm_exit_domain_handler(struct o2net_msg *msg, u32 len, void *data, 152 void **ret_data); 153 static int dlm_protocol_compare(struct dlm_protocol_version *existing, 154 struct dlm_protocol_version *request); 155 156 static void dlm_unregister_domain_handlers(struct dlm_ctxt *dlm); 157 158 void __dlm_unhash_lockres(struct dlm_ctxt *dlm, struct dlm_lock_resource *res) 159 { 160 if (hlist_unhashed(&res->hash_node)) 161 return; 162 163 mlog(0, "%s: Unhash res %.*s\n", dlm->name, res->lockname.len, 164 res->lockname.name); 165 hlist_del_init(&res->hash_node); 166 dlm_lockres_put(res); 167 } 168 169 void __dlm_insert_lockres(struct dlm_ctxt *dlm, struct dlm_lock_resource *res) 170 { 171 struct hlist_head *bucket; 172 struct qstr *q; 173 174 assert_spin_locked(&dlm->spinlock); 175 176 q = &res->lockname; 177 bucket = dlm_lockres_hash(dlm, q->hash); 178 179 /* get a reference for our hashtable */ 180 dlm_lockres_get(res); 181 182 hlist_add_head(&res->hash_node, bucket); 183 184 mlog(0, "%s: Hash res %.*s\n", dlm->name, res->lockname.len, 185 res->lockname.name); 186 } 187 188 struct dlm_lock_resource * __dlm_lookup_lockres_full(struct dlm_ctxt *dlm, 189 const char *name, 190 unsigned int len, 191 unsigned int hash) 192 { 193 struct hlist_head *bucket; 194 struct dlm_lock_resource *res; 195 196 mlog(0, "%.*s\n", len, name); 197 198 assert_spin_locked(&dlm->spinlock); 199 200 bucket = dlm_lockres_hash(dlm, hash); 201 202 hlist_for_each_entry(res, bucket, hash_node) { 203 if (res->lockname.name[0] != name[0]) 204 continue; 205 if (unlikely(res->lockname.len != len)) 206 continue; 207 if (memcmp(res->lockname.name + 1, name + 1, len - 1)) 208 continue; 209 dlm_lockres_get(res); 210 return res; 211 } 212 return NULL; 213 } 214 215 /* intended to be called by functions which do not care about lock 216 * resources which are being purged (most net _handler functions). 217 * this will return NULL for any lock resource which is found but 218 * currently in the process of dropping its mastery reference. 219 * use __dlm_lookup_lockres_full when you need the lock resource 220 * regardless (e.g. dlm_get_lock_resource) */ 221 struct dlm_lock_resource * __dlm_lookup_lockres(struct dlm_ctxt *dlm, 222 const char *name, 223 unsigned int len, 224 unsigned int hash) 225 { 226 struct dlm_lock_resource *res = NULL; 227 228 mlog(0, "%.*s\n", len, name); 229 230 assert_spin_locked(&dlm->spinlock); 231 232 res = __dlm_lookup_lockres_full(dlm, name, len, hash); 233 if (res) { 234 spin_lock(&res->spinlock); 235 if (res->state & DLM_LOCK_RES_DROPPING_REF) { 236 spin_unlock(&res->spinlock); 237 dlm_lockres_put(res); 238 return NULL; 239 } 240 spin_unlock(&res->spinlock); 241 } 242 243 return res; 244 } 245 246 struct dlm_lock_resource * dlm_lookup_lockres(struct dlm_ctxt *dlm, 247 const char *name, 248 unsigned int len) 249 { 250 struct dlm_lock_resource *res; 251 unsigned int hash = dlm_lockid_hash(name, len); 252 253 spin_lock(&dlm->spinlock); 254 res = __dlm_lookup_lockres(dlm, name, len, hash); 255 spin_unlock(&dlm->spinlock); 256 return res; 257 } 258 259 static struct dlm_ctxt * __dlm_lookup_domain_full(const char *domain, int len) 260 { 261 struct dlm_ctxt *tmp; 262 263 assert_spin_locked(&dlm_domain_lock); 264 265 /* tmp->name here is always NULL terminated, 266 * but domain may not be! */ 267 list_for_each_entry(tmp, &dlm_domains, list) { 268 if (strlen(tmp->name) == len && 269 memcmp(tmp->name, domain, len)==0) 270 return tmp; 271 } 272 273 return NULL; 274 } 275 276 /* For null terminated domain strings ONLY */ 277 static struct dlm_ctxt * __dlm_lookup_domain(const char *domain) 278 { 279 assert_spin_locked(&dlm_domain_lock); 280 281 return __dlm_lookup_domain_full(domain, strlen(domain)); 282 } 283 284 285 /* returns true on one of two conditions: 286 * 1) the domain does not exist 287 * 2) the domain exists and it's state is "joined" */ 288 static int dlm_wait_on_domain_helper(const char *domain) 289 { 290 int ret = 0; 291 struct dlm_ctxt *tmp = NULL; 292 293 spin_lock(&dlm_domain_lock); 294 295 tmp = __dlm_lookup_domain(domain); 296 if (!tmp) 297 ret = 1; 298 else if (tmp->dlm_state == DLM_CTXT_JOINED) 299 ret = 1; 300 301 spin_unlock(&dlm_domain_lock); 302 return ret; 303 } 304 305 static void dlm_free_ctxt_mem(struct dlm_ctxt *dlm) 306 { 307 dlm_destroy_debugfs_subroot(dlm); 308 309 if (dlm->lockres_hash) 310 dlm_free_pagevec((void **)dlm->lockres_hash, DLM_HASH_PAGES); 311 312 if (dlm->master_hash) 313 dlm_free_pagevec((void **)dlm->master_hash, DLM_HASH_PAGES); 314 315 kfree(dlm->name); 316 kfree(dlm); 317 } 318 319 /* A little strange - this function will be called while holding 320 * dlm_domain_lock and is expected to be holding it on the way out. We 321 * will however drop and reacquire it multiple times */ 322 static void dlm_ctxt_release(struct kref *kref) 323 { 324 struct dlm_ctxt *dlm; 325 326 dlm = container_of(kref, struct dlm_ctxt, dlm_refs); 327 328 BUG_ON(dlm->num_joins); 329 BUG_ON(dlm->dlm_state == DLM_CTXT_JOINED); 330 331 /* we may still be in the list if we hit an error during join. */ 332 list_del_init(&dlm->list); 333 334 spin_unlock(&dlm_domain_lock); 335 336 mlog(0, "freeing memory from domain %s\n", dlm->name); 337 338 wake_up(&dlm_domain_events); 339 340 dlm_free_ctxt_mem(dlm); 341 342 spin_lock(&dlm_domain_lock); 343 } 344 345 void dlm_put(struct dlm_ctxt *dlm) 346 { 347 spin_lock(&dlm_domain_lock); 348 kref_put(&dlm->dlm_refs, dlm_ctxt_release); 349 spin_unlock(&dlm_domain_lock); 350 } 351 352 static void __dlm_get(struct dlm_ctxt *dlm) 353 { 354 kref_get(&dlm->dlm_refs); 355 } 356 357 /* given a questionable reference to a dlm object, gets a reference if 358 * it can find it in the list, otherwise returns NULL in which case 359 * you shouldn't trust your pointer. */ 360 struct dlm_ctxt *dlm_grab(struct dlm_ctxt *dlm) 361 { 362 struct dlm_ctxt *target; 363 struct dlm_ctxt *ret = NULL; 364 365 spin_lock(&dlm_domain_lock); 366 367 list_for_each_entry(target, &dlm_domains, list) { 368 if (target == dlm) { 369 __dlm_get(target); 370 ret = target; 371 break; 372 } 373 } 374 375 spin_unlock(&dlm_domain_lock); 376 377 return ret; 378 } 379 380 int dlm_domain_fully_joined(struct dlm_ctxt *dlm) 381 { 382 int ret; 383 384 spin_lock(&dlm_domain_lock); 385 ret = (dlm->dlm_state == DLM_CTXT_JOINED) || 386 (dlm->dlm_state == DLM_CTXT_IN_SHUTDOWN); 387 spin_unlock(&dlm_domain_lock); 388 389 return ret; 390 } 391 392 static void dlm_destroy_dlm_worker(struct dlm_ctxt *dlm) 393 { 394 if (dlm->dlm_worker) { 395 flush_workqueue(dlm->dlm_worker); 396 destroy_workqueue(dlm->dlm_worker); 397 dlm->dlm_worker = NULL; 398 } 399 } 400 401 static void dlm_complete_dlm_shutdown(struct dlm_ctxt *dlm) 402 { 403 dlm_unregister_domain_handlers(dlm); 404 dlm_debug_shutdown(dlm); 405 dlm_complete_thread(dlm); 406 dlm_complete_recovery_thread(dlm); 407 dlm_destroy_dlm_worker(dlm); 408 409 /* We've left the domain. Now we can take ourselves out of the 410 * list and allow the kref stuff to help us free the 411 * memory. */ 412 spin_lock(&dlm_domain_lock); 413 list_del_init(&dlm->list); 414 spin_unlock(&dlm_domain_lock); 415 416 /* Wake up anyone waiting for us to remove this domain */ 417 wake_up(&dlm_domain_events); 418 } 419 420 static int dlm_migrate_all_locks(struct dlm_ctxt *dlm) 421 { 422 int i, num, n, ret = 0; 423 struct dlm_lock_resource *res; 424 struct hlist_node *iter; 425 struct hlist_head *bucket; 426 int dropped; 427 428 mlog(0, "Migrating locks from domain %s\n", dlm->name); 429 430 num = 0; 431 spin_lock(&dlm->spinlock); 432 for (i = 0; i < DLM_HASH_BUCKETS; i++) { 433 redo_bucket: 434 n = 0; 435 bucket = dlm_lockres_hash(dlm, i); 436 iter = bucket->first; 437 while (iter) { 438 n++; 439 res = hlist_entry(iter, struct dlm_lock_resource, 440 hash_node); 441 dlm_lockres_get(res); 442 /* migrate, if necessary. this will drop the dlm 443 * spinlock and retake it if it does migration. */ 444 dropped = dlm_empty_lockres(dlm, res); 445 446 spin_lock(&res->spinlock); 447 if (dropped) 448 __dlm_lockres_calc_usage(dlm, res); 449 else 450 iter = res->hash_node.next; 451 spin_unlock(&res->spinlock); 452 453 dlm_lockres_put(res); 454 455 if (dropped) { 456 cond_resched_lock(&dlm->spinlock); 457 goto redo_bucket; 458 } 459 } 460 cond_resched_lock(&dlm->spinlock); 461 num += n; 462 } 463 spin_unlock(&dlm->spinlock); 464 wake_up(&dlm->dlm_thread_wq); 465 466 /* let the dlm thread take care of purging, keep scanning until 467 * nothing remains in the hash */ 468 if (num) { 469 mlog(0, "%s: %d lock resources in hash last pass\n", 470 dlm->name, num); 471 ret = -EAGAIN; 472 } 473 mlog(0, "DONE Migrating locks from domain %s\n", dlm->name); 474 return ret; 475 } 476 477 static int dlm_no_joining_node(struct dlm_ctxt *dlm) 478 { 479 int ret; 480 481 spin_lock(&dlm->spinlock); 482 ret = dlm->joining_node == DLM_LOCK_RES_OWNER_UNKNOWN; 483 spin_unlock(&dlm->spinlock); 484 485 return ret; 486 } 487 488 static int dlm_begin_exit_domain_handler(struct o2net_msg *msg, u32 len, 489 void *data, void **ret_data) 490 { 491 struct dlm_ctxt *dlm = data; 492 unsigned int node; 493 struct dlm_exit_domain *exit_msg = (struct dlm_exit_domain *) msg->buf; 494 495 if (!dlm_grab(dlm)) 496 return 0; 497 498 node = exit_msg->node_idx; 499 mlog(0, "%s: Node %u sent a begin exit domain message\n", dlm->name, node); 500 501 spin_lock(&dlm->spinlock); 502 set_bit(node, dlm->exit_domain_map); 503 spin_unlock(&dlm->spinlock); 504 505 dlm_put(dlm); 506 507 return 0; 508 } 509 510 static void dlm_mark_domain_leaving(struct dlm_ctxt *dlm) 511 { 512 /* Yikes, a double spinlock! I need domain_lock for the dlm 513 * state and the dlm spinlock for join state... Sorry! */ 514 again: 515 spin_lock(&dlm_domain_lock); 516 spin_lock(&dlm->spinlock); 517 518 if (dlm->joining_node != DLM_LOCK_RES_OWNER_UNKNOWN) { 519 mlog(0, "Node %d is joining, we wait on it.\n", 520 dlm->joining_node); 521 spin_unlock(&dlm->spinlock); 522 spin_unlock(&dlm_domain_lock); 523 524 wait_event(dlm->dlm_join_events, dlm_no_joining_node(dlm)); 525 goto again; 526 } 527 528 dlm->dlm_state = DLM_CTXT_LEAVING; 529 spin_unlock(&dlm->spinlock); 530 spin_unlock(&dlm_domain_lock); 531 } 532 533 static void __dlm_print_nodes(struct dlm_ctxt *dlm) 534 { 535 int node = -1, num = 0; 536 537 assert_spin_locked(&dlm->spinlock); 538 539 printk("( "); 540 while ((node = find_next_bit(dlm->domain_map, O2NM_MAX_NODES, 541 node + 1)) < O2NM_MAX_NODES) { 542 printk("%d ", node); 543 ++num; 544 } 545 printk(") %u nodes\n", num); 546 } 547 548 static int dlm_exit_domain_handler(struct o2net_msg *msg, u32 len, void *data, 549 void **ret_data) 550 { 551 struct dlm_ctxt *dlm = data; 552 unsigned int node; 553 struct dlm_exit_domain *exit_msg = (struct dlm_exit_domain *) msg->buf; 554 555 mlog(0, "%p %u %p", msg, len, data); 556 557 if (!dlm_grab(dlm)) 558 return 0; 559 560 node = exit_msg->node_idx; 561 562 spin_lock(&dlm->spinlock); 563 clear_bit(node, dlm->domain_map); 564 clear_bit(node, dlm->exit_domain_map); 565 printk(KERN_NOTICE "o2dlm: Node %u leaves domain %s ", node, dlm->name); 566 __dlm_print_nodes(dlm); 567 568 /* notify anything attached to the heartbeat events */ 569 dlm_hb_event_notify_attached(dlm, node, 0); 570 571 spin_unlock(&dlm->spinlock); 572 573 dlm_put(dlm); 574 575 return 0; 576 } 577 578 static int dlm_send_one_domain_exit(struct dlm_ctxt *dlm, u32 msg_type, 579 unsigned int node) 580 { 581 int status; 582 struct dlm_exit_domain leave_msg; 583 584 mlog(0, "%s: Sending domain exit message %u to node %u\n", dlm->name, 585 msg_type, node); 586 587 memset(&leave_msg, 0, sizeof(leave_msg)); 588 leave_msg.node_idx = dlm->node_num; 589 590 status = o2net_send_message(msg_type, dlm->key, &leave_msg, 591 sizeof(leave_msg), node, NULL); 592 if (status < 0) 593 mlog(ML_ERROR, "Error %d sending domain exit message %u " 594 "to node %u on domain %s\n", status, msg_type, node, 595 dlm->name); 596 597 return status; 598 } 599 600 static void dlm_begin_exit_domain(struct dlm_ctxt *dlm) 601 { 602 int node = -1; 603 604 /* Support for begin exit domain was added in 1.2 */ 605 if (dlm->dlm_locking_proto.pv_major == 1 && 606 dlm->dlm_locking_proto.pv_minor < 2) 607 return; 608 609 /* 610 * Unlike DLM_EXIT_DOMAIN_MSG, DLM_BEGIN_EXIT_DOMAIN_MSG is purely 611 * informational. Meaning if a node does not receive the message, 612 * so be it. 613 */ 614 spin_lock(&dlm->spinlock); 615 while (1) { 616 node = find_next_bit(dlm->domain_map, O2NM_MAX_NODES, node + 1); 617 if (node >= O2NM_MAX_NODES) 618 break; 619 if (node == dlm->node_num) 620 continue; 621 622 spin_unlock(&dlm->spinlock); 623 dlm_send_one_domain_exit(dlm, DLM_BEGIN_EXIT_DOMAIN_MSG, node); 624 spin_lock(&dlm->spinlock); 625 } 626 spin_unlock(&dlm->spinlock); 627 } 628 629 static void dlm_leave_domain(struct dlm_ctxt *dlm) 630 { 631 int node, clear_node, status; 632 633 /* At this point we've migrated away all our locks and won't 634 * accept mastership of new ones. The dlm is responsible for 635 * almost nothing now. We make sure not to confuse any joining 636 * nodes and then commence shutdown procedure. */ 637 638 spin_lock(&dlm->spinlock); 639 /* Clear ourselves from the domain map */ 640 clear_bit(dlm->node_num, dlm->domain_map); 641 while ((node = find_next_bit(dlm->domain_map, O2NM_MAX_NODES, 642 0)) < O2NM_MAX_NODES) { 643 /* Drop the dlm spinlock. This is safe wrt the domain_map. 644 * -nodes cannot be added now as the 645 * query_join_handlers knows to respond with OK_NO_MAP 646 * -we catch the right network errors if a node is 647 * removed from the map while we're sending him the 648 * exit message. */ 649 spin_unlock(&dlm->spinlock); 650 651 clear_node = 1; 652 653 status = dlm_send_one_domain_exit(dlm, DLM_EXIT_DOMAIN_MSG, 654 node); 655 if (status < 0 && 656 status != -ENOPROTOOPT && 657 status != -ENOTCONN) { 658 mlog(ML_NOTICE, "Error %d sending domain exit message " 659 "to node %d\n", status, node); 660 661 /* Not sure what to do here but lets sleep for 662 * a bit in case this was a transient 663 * error... */ 664 msleep(DLM_DOMAIN_BACKOFF_MS); 665 clear_node = 0; 666 } 667 668 spin_lock(&dlm->spinlock); 669 /* If we're not clearing the node bit then we intend 670 * to loop back around to try again. */ 671 if (clear_node) 672 clear_bit(node, dlm->domain_map); 673 } 674 spin_unlock(&dlm->spinlock); 675 } 676 677 int dlm_joined(struct dlm_ctxt *dlm) 678 { 679 int ret = 0; 680 681 spin_lock(&dlm_domain_lock); 682 683 if (dlm->dlm_state == DLM_CTXT_JOINED) 684 ret = 1; 685 686 spin_unlock(&dlm_domain_lock); 687 688 return ret; 689 } 690 691 int dlm_shutting_down(struct dlm_ctxt *dlm) 692 { 693 int ret = 0; 694 695 spin_lock(&dlm_domain_lock); 696 697 if (dlm->dlm_state == DLM_CTXT_IN_SHUTDOWN) 698 ret = 1; 699 700 spin_unlock(&dlm_domain_lock); 701 702 return ret; 703 } 704 705 void dlm_unregister_domain(struct dlm_ctxt *dlm) 706 { 707 int leave = 0; 708 struct dlm_lock_resource *res; 709 710 spin_lock(&dlm_domain_lock); 711 BUG_ON(dlm->dlm_state != DLM_CTXT_JOINED); 712 BUG_ON(!dlm->num_joins); 713 714 dlm->num_joins--; 715 if (!dlm->num_joins) { 716 /* We mark it "in shutdown" now so new register 717 * requests wait until we've completely left the 718 * domain. Don't use DLM_CTXT_LEAVING yet as we still 719 * want new domain joins to communicate with us at 720 * least until we've completed migration of our 721 * resources. */ 722 dlm->dlm_state = DLM_CTXT_IN_SHUTDOWN; 723 leave = 1; 724 } 725 spin_unlock(&dlm_domain_lock); 726 727 if (leave) { 728 mlog(0, "shutting down domain %s\n", dlm->name); 729 dlm_begin_exit_domain(dlm); 730 731 /* We changed dlm state, notify the thread */ 732 dlm_kick_thread(dlm, NULL); 733 734 while (dlm_migrate_all_locks(dlm)) { 735 /* Give dlm_thread time to purge the lockres' */ 736 msleep(500); 737 mlog(0, "%s: more migration to do\n", dlm->name); 738 } 739 740 /* This list should be empty. If not, print remaining lockres */ 741 if (!list_empty(&dlm->tracking_list)) { 742 mlog(ML_ERROR, "Following lockres' are still on the " 743 "tracking list:\n"); 744 list_for_each_entry(res, &dlm->tracking_list, tracking) 745 dlm_print_one_lock_resource(res); 746 } 747 748 dlm_mark_domain_leaving(dlm); 749 dlm_leave_domain(dlm); 750 printk(KERN_NOTICE "o2dlm: Leaving domain %s\n", dlm->name); 751 dlm_force_free_mles(dlm); 752 dlm_complete_dlm_shutdown(dlm); 753 } 754 dlm_put(dlm); 755 } 756 EXPORT_SYMBOL_GPL(dlm_unregister_domain); 757 758 static int dlm_query_join_proto_check(char *proto_type, int node, 759 struct dlm_protocol_version *ours, 760 struct dlm_protocol_version *request) 761 { 762 int rc; 763 struct dlm_protocol_version proto = *request; 764 765 if (!dlm_protocol_compare(ours, &proto)) { 766 mlog(0, 767 "node %u wanted to join with %s locking protocol " 768 "%u.%u, we respond with %u.%u\n", 769 node, proto_type, 770 request->pv_major, 771 request->pv_minor, 772 proto.pv_major, proto.pv_minor); 773 request->pv_minor = proto.pv_minor; 774 rc = 0; 775 } else { 776 mlog(ML_NOTICE, 777 "Node %u wanted to join with %s locking " 778 "protocol %u.%u, but we have %u.%u, disallowing\n", 779 node, proto_type, 780 request->pv_major, 781 request->pv_minor, 782 ours->pv_major, 783 ours->pv_minor); 784 rc = 1; 785 } 786 787 return rc; 788 } 789 790 /* 791 * struct dlm_query_join_packet is made up of four one-byte fields. They 792 * are effectively in big-endian order already. However, little-endian 793 * machines swap them before putting the packet on the wire (because 794 * query_join's response is a status, and that status is treated as a u32 795 * on the wire). Thus, a big-endian and little-endian machines will treat 796 * this structure differently. 797 * 798 * The solution is to have little-endian machines swap the structure when 799 * converting from the structure to the u32 representation. This will 800 * result in the structure having the correct format on the wire no matter 801 * the host endian format. 802 */ 803 static void dlm_query_join_packet_to_wire(struct dlm_query_join_packet *packet, 804 u32 *wire) 805 { 806 union dlm_query_join_response response; 807 808 response.packet = *packet; 809 *wire = be32_to_cpu(response.intval); 810 } 811 812 static void dlm_query_join_wire_to_packet(u32 wire, 813 struct dlm_query_join_packet *packet) 814 { 815 union dlm_query_join_response response; 816 817 response.intval = cpu_to_be32(wire); 818 *packet = response.packet; 819 } 820 821 static int dlm_query_join_handler(struct o2net_msg *msg, u32 len, void *data, 822 void **ret_data) 823 { 824 struct dlm_query_join_request *query; 825 struct dlm_query_join_packet packet = { 826 .code = JOIN_DISALLOW, 827 }; 828 struct dlm_ctxt *dlm = NULL; 829 u32 response; 830 u8 nodenum; 831 832 query = (struct dlm_query_join_request *) msg->buf; 833 834 mlog(0, "node %u wants to join domain %s\n", query->node_idx, 835 query->domain); 836 837 /* 838 * If heartbeat doesn't consider the node live, tell it 839 * to back off and try again. This gives heartbeat a chance 840 * to catch up. 841 */ 842 if (!o2hb_check_node_heartbeating(query->node_idx)) { 843 mlog(0, "node %u is not in our live map yet\n", 844 query->node_idx); 845 846 packet.code = JOIN_DISALLOW; 847 goto respond; 848 } 849 850 packet.code = JOIN_OK_NO_MAP; 851 852 spin_lock(&dlm_domain_lock); 853 dlm = __dlm_lookup_domain_full(query->domain, query->name_len); 854 if (!dlm) 855 goto unlock_respond; 856 857 /* 858 * There is a small window where the joining node may not see the 859 * node(s) that just left but still part of the cluster. DISALLOW 860 * join request if joining node has different node map. 861 */ 862 nodenum=0; 863 while (nodenum < O2NM_MAX_NODES) { 864 if (test_bit(nodenum, dlm->domain_map)) { 865 if (!byte_test_bit(nodenum, query->node_map)) { 866 mlog(0, "disallow join as node %u does not " 867 "have node %u in its nodemap\n", 868 query->node_idx, nodenum); 869 packet.code = JOIN_DISALLOW; 870 goto unlock_respond; 871 } 872 } 873 nodenum++; 874 } 875 876 /* Once the dlm ctxt is marked as leaving then we don't want 877 * to be put in someone's domain map. 878 * Also, explicitly disallow joining at certain troublesome 879 * times (ie. during recovery). */ 880 if (dlm && dlm->dlm_state != DLM_CTXT_LEAVING) { 881 int bit = query->node_idx; 882 spin_lock(&dlm->spinlock); 883 884 if (dlm->dlm_state == DLM_CTXT_NEW && 885 dlm->joining_node == DLM_LOCK_RES_OWNER_UNKNOWN) { 886 /*If this is a brand new context and we 887 * haven't started our join process yet, then 888 * the other node won the race. */ 889 packet.code = JOIN_OK_NO_MAP; 890 } else if (dlm->joining_node != DLM_LOCK_RES_OWNER_UNKNOWN) { 891 /* Disallow parallel joins. */ 892 packet.code = JOIN_DISALLOW; 893 } else if (dlm->reco.state & DLM_RECO_STATE_ACTIVE) { 894 mlog(0, "node %u trying to join, but recovery " 895 "is ongoing.\n", bit); 896 packet.code = JOIN_DISALLOW; 897 } else if (test_bit(bit, dlm->recovery_map)) { 898 mlog(0, "node %u trying to join, but it " 899 "still needs recovery.\n", bit); 900 packet.code = JOIN_DISALLOW; 901 } else if (test_bit(bit, dlm->domain_map)) { 902 mlog(0, "node %u trying to join, but it " 903 "is still in the domain! needs recovery?\n", 904 bit); 905 packet.code = JOIN_DISALLOW; 906 } else { 907 /* Alright we're fully a part of this domain 908 * so we keep some state as to who's joining 909 * and indicate to him that needs to be fixed 910 * up. */ 911 912 /* Make sure we speak compatible locking protocols. */ 913 if (dlm_query_join_proto_check("DLM", bit, 914 &dlm->dlm_locking_proto, 915 &query->dlm_proto)) { 916 packet.code = JOIN_PROTOCOL_MISMATCH; 917 } else if (dlm_query_join_proto_check("fs", bit, 918 &dlm->fs_locking_proto, 919 &query->fs_proto)) { 920 packet.code = JOIN_PROTOCOL_MISMATCH; 921 } else { 922 packet.dlm_minor = query->dlm_proto.pv_minor; 923 packet.fs_minor = query->fs_proto.pv_minor; 924 packet.code = JOIN_OK; 925 __dlm_set_joining_node(dlm, query->node_idx); 926 } 927 } 928 929 spin_unlock(&dlm->spinlock); 930 } 931 unlock_respond: 932 spin_unlock(&dlm_domain_lock); 933 934 respond: 935 mlog(0, "We respond with %u\n", packet.code); 936 937 dlm_query_join_packet_to_wire(&packet, &response); 938 return response; 939 } 940 941 static int dlm_assert_joined_handler(struct o2net_msg *msg, u32 len, void *data, 942 void **ret_data) 943 { 944 struct dlm_assert_joined *assert; 945 struct dlm_ctxt *dlm = NULL; 946 947 assert = (struct dlm_assert_joined *) msg->buf; 948 949 mlog(0, "node %u asserts join on domain %s\n", assert->node_idx, 950 assert->domain); 951 952 spin_lock(&dlm_domain_lock); 953 dlm = __dlm_lookup_domain_full(assert->domain, assert->name_len); 954 /* XXX should we consider no dlm ctxt an error? */ 955 if (dlm) { 956 spin_lock(&dlm->spinlock); 957 958 /* Alright, this node has officially joined our 959 * domain. Set him in the map and clean up our 960 * leftover join state. */ 961 BUG_ON(dlm->joining_node != assert->node_idx); 962 set_bit(assert->node_idx, dlm->domain_map); 963 clear_bit(assert->node_idx, dlm->exit_domain_map); 964 __dlm_set_joining_node(dlm, DLM_LOCK_RES_OWNER_UNKNOWN); 965 966 printk(KERN_NOTICE "o2dlm: Node %u joins domain %s ", 967 assert->node_idx, dlm->name); 968 __dlm_print_nodes(dlm); 969 970 /* notify anything attached to the heartbeat events */ 971 dlm_hb_event_notify_attached(dlm, assert->node_idx, 1); 972 973 spin_unlock(&dlm->spinlock); 974 } 975 spin_unlock(&dlm_domain_lock); 976 977 return 0; 978 } 979 980 static int dlm_match_regions(struct dlm_ctxt *dlm, 981 struct dlm_query_region *qr, 982 char *local, int locallen) 983 { 984 char *remote = qr->qr_regions; 985 char *l, *r; 986 int localnr, i, j, foundit; 987 int status = 0; 988 989 if (!o2hb_global_heartbeat_active()) { 990 if (qr->qr_numregions) { 991 mlog(ML_ERROR, "Domain %s: Joining node %d has global " 992 "heartbeat enabled but local node %d does not\n", 993 qr->qr_domain, qr->qr_node, dlm->node_num); 994 status = -EINVAL; 995 } 996 goto bail; 997 } 998 999 if (o2hb_global_heartbeat_active() && !qr->qr_numregions) { 1000 mlog(ML_ERROR, "Domain %s: Local node %d has global " 1001 "heartbeat enabled but joining node %d does not\n", 1002 qr->qr_domain, dlm->node_num, qr->qr_node); 1003 status = -EINVAL; 1004 goto bail; 1005 } 1006 1007 r = remote; 1008 for (i = 0; i < qr->qr_numregions; ++i) { 1009 mlog(0, "Region %.*s\n", O2HB_MAX_REGION_NAME_LEN, r); 1010 r += O2HB_MAX_REGION_NAME_LEN; 1011 } 1012 1013 localnr = min(O2NM_MAX_REGIONS, locallen/O2HB_MAX_REGION_NAME_LEN); 1014 localnr = o2hb_get_all_regions(local, (u8)localnr); 1015 1016 /* compare local regions with remote */ 1017 l = local; 1018 for (i = 0; i < localnr; ++i) { 1019 foundit = 0; 1020 r = remote; 1021 for (j = 0; j <= qr->qr_numregions; ++j) { 1022 if (!memcmp(l, r, O2HB_MAX_REGION_NAME_LEN)) { 1023 foundit = 1; 1024 break; 1025 } 1026 r += O2HB_MAX_REGION_NAME_LEN; 1027 } 1028 if (!foundit) { 1029 status = -EINVAL; 1030 mlog(ML_ERROR, "Domain %s: Region '%.*s' registered " 1031 "in local node %d but not in joining node %d\n", 1032 qr->qr_domain, O2HB_MAX_REGION_NAME_LEN, l, 1033 dlm->node_num, qr->qr_node); 1034 goto bail; 1035 } 1036 l += O2HB_MAX_REGION_NAME_LEN; 1037 } 1038 1039 /* compare remote with local regions */ 1040 r = remote; 1041 for (i = 0; i < qr->qr_numregions; ++i) { 1042 foundit = 0; 1043 l = local; 1044 for (j = 0; j < localnr; ++j) { 1045 if (!memcmp(r, l, O2HB_MAX_REGION_NAME_LEN)) { 1046 foundit = 1; 1047 break; 1048 } 1049 l += O2HB_MAX_REGION_NAME_LEN; 1050 } 1051 if (!foundit) { 1052 status = -EINVAL; 1053 mlog(ML_ERROR, "Domain %s: Region '%.*s' registered " 1054 "in joining node %d but not in local node %d\n", 1055 qr->qr_domain, O2HB_MAX_REGION_NAME_LEN, r, 1056 qr->qr_node, dlm->node_num); 1057 goto bail; 1058 } 1059 r += O2HB_MAX_REGION_NAME_LEN; 1060 } 1061 1062 bail: 1063 return status; 1064 } 1065 1066 static int dlm_send_regions(struct dlm_ctxt *dlm, unsigned long *node_map) 1067 { 1068 struct dlm_query_region *qr = NULL; 1069 int status, ret = 0, i; 1070 char *p; 1071 1072 if (find_next_bit(node_map, O2NM_MAX_NODES, 0) >= O2NM_MAX_NODES) 1073 goto bail; 1074 1075 qr = kzalloc(sizeof(struct dlm_query_region), GFP_KERNEL); 1076 if (!qr) { 1077 ret = -ENOMEM; 1078 mlog_errno(ret); 1079 goto bail; 1080 } 1081 1082 qr->qr_node = dlm->node_num; 1083 qr->qr_namelen = strlen(dlm->name); 1084 memcpy(qr->qr_domain, dlm->name, qr->qr_namelen); 1085 /* if local hb, the numregions will be zero */ 1086 if (o2hb_global_heartbeat_active()) 1087 qr->qr_numregions = o2hb_get_all_regions(qr->qr_regions, 1088 O2NM_MAX_REGIONS); 1089 1090 p = qr->qr_regions; 1091 for (i = 0; i < qr->qr_numregions; ++i, p += O2HB_MAX_REGION_NAME_LEN) 1092 mlog(0, "Region %.*s\n", O2HB_MAX_REGION_NAME_LEN, p); 1093 1094 i = -1; 1095 while ((i = find_next_bit(node_map, O2NM_MAX_NODES, 1096 i + 1)) < O2NM_MAX_NODES) { 1097 if (i == dlm->node_num) 1098 continue; 1099 1100 mlog(0, "Sending regions to node %d\n", i); 1101 1102 ret = o2net_send_message(DLM_QUERY_REGION, DLM_MOD_KEY, qr, 1103 sizeof(struct dlm_query_region), 1104 i, &status); 1105 if (ret >= 0) 1106 ret = status; 1107 if (ret) { 1108 mlog(ML_ERROR, "Region mismatch %d, node %d\n", 1109 ret, i); 1110 break; 1111 } 1112 } 1113 1114 bail: 1115 kfree(qr); 1116 return ret; 1117 } 1118 1119 static int dlm_query_region_handler(struct o2net_msg *msg, u32 len, 1120 void *data, void **ret_data) 1121 { 1122 struct dlm_query_region *qr; 1123 struct dlm_ctxt *dlm = NULL; 1124 char *local = NULL; 1125 int status = 0; 1126 int locked = 0; 1127 1128 qr = (struct dlm_query_region *) msg->buf; 1129 1130 mlog(0, "Node %u queries hb regions on domain %s\n", qr->qr_node, 1131 qr->qr_domain); 1132 1133 /* buffer used in dlm_mast_regions() */ 1134 local = kmalloc(sizeof(qr->qr_regions), GFP_KERNEL); 1135 if (!local) { 1136 status = -ENOMEM; 1137 goto bail; 1138 } 1139 1140 status = -EINVAL; 1141 1142 spin_lock(&dlm_domain_lock); 1143 dlm = __dlm_lookup_domain_full(qr->qr_domain, qr->qr_namelen); 1144 if (!dlm) { 1145 mlog(ML_ERROR, "Node %d queried hb regions on domain %s " 1146 "before join domain\n", qr->qr_node, qr->qr_domain); 1147 goto bail; 1148 } 1149 1150 spin_lock(&dlm->spinlock); 1151 locked = 1; 1152 if (dlm->joining_node != qr->qr_node) { 1153 mlog(ML_ERROR, "Node %d queried hb regions on domain %s " 1154 "but joining node is %d\n", qr->qr_node, qr->qr_domain, 1155 dlm->joining_node); 1156 goto bail; 1157 } 1158 1159 /* Support for global heartbeat was added in 1.1 */ 1160 if (dlm->dlm_locking_proto.pv_major == 1 && 1161 dlm->dlm_locking_proto.pv_minor == 0) { 1162 mlog(ML_ERROR, "Node %d queried hb regions on domain %s " 1163 "but active dlm protocol is %d.%d\n", qr->qr_node, 1164 qr->qr_domain, dlm->dlm_locking_proto.pv_major, 1165 dlm->dlm_locking_proto.pv_minor); 1166 goto bail; 1167 } 1168 1169 status = dlm_match_regions(dlm, qr, local, sizeof(qr->qr_regions)); 1170 1171 bail: 1172 if (locked) 1173 spin_unlock(&dlm->spinlock); 1174 spin_unlock(&dlm_domain_lock); 1175 1176 kfree(local); 1177 1178 return status; 1179 } 1180 1181 static int dlm_match_nodes(struct dlm_ctxt *dlm, struct dlm_query_nodeinfo *qn) 1182 { 1183 struct o2nm_node *local; 1184 struct dlm_node_info *remote; 1185 int i, j; 1186 int status = 0; 1187 1188 for (j = 0; j < qn->qn_numnodes; ++j) 1189 mlog(0, "Node %3d, %pI4:%u\n", qn->qn_nodes[j].ni_nodenum, 1190 &(qn->qn_nodes[j].ni_ipv4_address), 1191 ntohs(qn->qn_nodes[j].ni_ipv4_port)); 1192 1193 for (i = 0; i < O2NM_MAX_NODES && !status; ++i) { 1194 local = o2nm_get_node_by_num(i); 1195 remote = NULL; 1196 for (j = 0; j < qn->qn_numnodes; ++j) { 1197 if (qn->qn_nodes[j].ni_nodenum == i) { 1198 remote = &(qn->qn_nodes[j]); 1199 break; 1200 } 1201 } 1202 1203 if (!local && !remote) 1204 continue; 1205 1206 if ((local && !remote) || (!local && remote)) 1207 status = -EINVAL; 1208 1209 if (!status && 1210 ((remote->ni_nodenum != local->nd_num) || 1211 (remote->ni_ipv4_port != local->nd_ipv4_port) || 1212 (remote->ni_ipv4_address != local->nd_ipv4_address))) 1213 status = -EINVAL; 1214 1215 if (status) { 1216 if (remote && !local) 1217 mlog(ML_ERROR, "Domain %s: Node %d (%pI4:%u) " 1218 "registered in joining node %d but not in " 1219 "local node %d\n", qn->qn_domain, 1220 remote->ni_nodenum, 1221 &(remote->ni_ipv4_address), 1222 ntohs(remote->ni_ipv4_port), 1223 qn->qn_nodenum, dlm->node_num); 1224 if (local && !remote) 1225 mlog(ML_ERROR, "Domain %s: Node %d (%pI4:%u) " 1226 "registered in local node %d but not in " 1227 "joining node %d\n", qn->qn_domain, 1228 local->nd_num, &(local->nd_ipv4_address), 1229 ntohs(local->nd_ipv4_port), 1230 dlm->node_num, qn->qn_nodenum); 1231 BUG_ON((!local && !remote)); 1232 } 1233 1234 if (local) 1235 o2nm_node_put(local); 1236 } 1237 1238 return status; 1239 } 1240 1241 static int dlm_send_nodeinfo(struct dlm_ctxt *dlm, unsigned long *node_map) 1242 { 1243 struct dlm_query_nodeinfo *qn = NULL; 1244 struct o2nm_node *node; 1245 int ret = 0, status, count, i; 1246 1247 if (find_next_bit(node_map, O2NM_MAX_NODES, 0) >= O2NM_MAX_NODES) 1248 goto bail; 1249 1250 qn = kzalloc(sizeof(struct dlm_query_nodeinfo), GFP_KERNEL); 1251 if (!qn) { 1252 ret = -ENOMEM; 1253 mlog_errno(ret); 1254 goto bail; 1255 } 1256 1257 for (i = 0, count = 0; i < O2NM_MAX_NODES; ++i) { 1258 node = o2nm_get_node_by_num(i); 1259 if (!node) 1260 continue; 1261 qn->qn_nodes[count].ni_nodenum = node->nd_num; 1262 qn->qn_nodes[count].ni_ipv4_port = node->nd_ipv4_port; 1263 qn->qn_nodes[count].ni_ipv4_address = node->nd_ipv4_address; 1264 mlog(0, "Node %3d, %pI4:%u\n", node->nd_num, 1265 &(node->nd_ipv4_address), ntohs(node->nd_ipv4_port)); 1266 ++count; 1267 o2nm_node_put(node); 1268 } 1269 1270 qn->qn_nodenum = dlm->node_num; 1271 qn->qn_numnodes = count; 1272 qn->qn_namelen = strlen(dlm->name); 1273 memcpy(qn->qn_domain, dlm->name, qn->qn_namelen); 1274 1275 i = -1; 1276 while ((i = find_next_bit(node_map, O2NM_MAX_NODES, 1277 i + 1)) < O2NM_MAX_NODES) { 1278 if (i == dlm->node_num) 1279 continue; 1280 1281 mlog(0, "Sending nodeinfo to node %d\n", i); 1282 1283 ret = o2net_send_message(DLM_QUERY_NODEINFO, DLM_MOD_KEY, 1284 qn, sizeof(struct dlm_query_nodeinfo), 1285 i, &status); 1286 if (ret >= 0) 1287 ret = status; 1288 if (ret) { 1289 mlog(ML_ERROR, "node mismatch %d, node %d\n", ret, i); 1290 break; 1291 } 1292 } 1293 1294 bail: 1295 kfree(qn); 1296 return ret; 1297 } 1298 1299 static int dlm_query_nodeinfo_handler(struct o2net_msg *msg, u32 len, 1300 void *data, void **ret_data) 1301 { 1302 struct dlm_query_nodeinfo *qn; 1303 struct dlm_ctxt *dlm = NULL; 1304 int locked = 0, status = -EINVAL; 1305 1306 qn = (struct dlm_query_nodeinfo *) msg->buf; 1307 1308 mlog(0, "Node %u queries nodes on domain %s\n", qn->qn_nodenum, 1309 qn->qn_domain); 1310 1311 spin_lock(&dlm_domain_lock); 1312 dlm = __dlm_lookup_domain_full(qn->qn_domain, qn->qn_namelen); 1313 if (!dlm) { 1314 mlog(ML_ERROR, "Node %d queried nodes on domain %s before " 1315 "join domain\n", qn->qn_nodenum, qn->qn_domain); 1316 goto bail; 1317 } 1318 1319 spin_lock(&dlm->spinlock); 1320 locked = 1; 1321 if (dlm->joining_node != qn->qn_nodenum) { 1322 mlog(ML_ERROR, "Node %d queried nodes on domain %s but " 1323 "joining node is %d\n", qn->qn_nodenum, qn->qn_domain, 1324 dlm->joining_node); 1325 goto bail; 1326 } 1327 1328 /* Support for node query was added in 1.1 */ 1329 if (dlm->dlm_locking_proto.pv_major == 1 && 1330 dlm->dlm_locking_proto.pv_minor == 0) { 1331 mlog(ML_ERROR, "Node %d queried nodes on domain %s " 1332 "but active dlm protocol is %d.%d\n", qn->qn_nodenum, 1333 qn->qn_domain, dlm->dlm_locking_proto.pv_major, 1334 dlm->dlm_locking_proto.pv_minor); 1335 goto bail; 1336 } 1337 1338 status = dlm_match_nodes(dlm, qn); 1339 1340 bail: 1341 if (locked) 1342 spin_unlock(&dlm->spinlock); 1343 spin_unlock(&dlm_domain_lock); 1344 1345 return status; 1346 } 1347 1348 static int dlm_cancel_join_handler(struct o2net_msg *msg, u32 len, void *data, 1349 void **ret_data) 1350 { 1351 struct dlm_cancel_join *cancel; 1352 struct dlm_ctxt *dlm = NULL; 1353 1354 cancel = (struct dlm_cancel_join *) msg->buf; 1355 1356 mlog(0, "node %u cancels join on domain %s\n", cancel->node_idx, 1357 cancel->domain); 1358 1359 spin_lock(&dlm_domain_lock); 1360 dlm = __dlm_lookup_domain_full(cancel->domain, cancel->name_len); 1361 1362 if (dlm) { 1363 spin_lock(&dlm->spinlock); 1364 1365 /* Yikes, this guy wants to cancel his join. No 1366 * problem, we simply cleanup our join state. */ 1367 BUG_ON(dlm->joining_node != cancel->node_idx); 1368 __dlm_set_joining_node(dlm, DLM_LOCK_RES_OWNER_UNKNOWN); 1369 1370 spin_unlock(&dlm->spinlock); 1371 } 1372 spin_unlock(&dlm_domain_lock); 1373 1374 return 0; 1375 } 1376 1377 static int dlm_send_one_join_cancel(struct dlm_ctxt *dlm, 1378 unsigned int node) 1379 { 1380 int status; 1381 struct dlm_cancel_join cancel_msg; 1382 1383 memset(&cancel_msg, 0, sizeof(cancel_msg)); 1384 cancel_msg.node_idx = dlm->node_num; 1385 cancel_msg.name_len = strlen(dlm->name); 1386 memcpy(cancel_msg.domain, dlm->name, cancel_msg.name_len); 1387 1388 status = o2net_send_message(DLM_CANCEL_JOIN_MSG, DLM_MOD_KEY, 1389 &cancel_msg, sizeof(cancel_msg), node, 1390 NULL); 1391 if (status < 0) { 1392 mlog(ML_ERROR, "Error %d when sending message %u (key 0x%x) to " 1393 "node %u\n", status, DLM_CANCEL_JOIN_MSG, DLM_MOD_KEY, 1394 node); 1395 goto bail; 1396 } 1397 1398 bail: 1399 return status; 1400 } 1401 1402 /* map_size should be in bytes. */ 1403 static int dlm_send_join_cancels(struct dlm_ctxt *dlm, 1404 unsigned long *node_map, 1405 unsigned int map_size) 1406 { 1407 int status, tmpstat; 1408 unsigned int node; 1409 1410 if (map_size != (BITS_TO_LONGS(O2NM_MAX_NODES) * 1411 sizeof(unsigned long))) { 1412 mlog(ML_ERROR, 1413 "map_size %u != BITS_TO_LONGS(O2NM_MAX_NODES) %u\n", 1414 map_size, (unsigned)BITS_TO_LONGS(O2NM_MAX_NODES)); 1415 return -EINVAL; 1416 } 1417 1418 status = 0; 1419 node = -1; 1420 while ((node = find_next_bit(node_map, O2NM_MAX_NODES, 1421 node + 1)) < O2NM_MAX_NODES) { 1422 if (node == dlm->node_num) 1423 continue; 1424 1425 tmpstat = dlm_send_one_join_cancel(dlm, node); 1426 if (tmpstat) { 1427 mlog(ML_ERROR, "Error return %d cancelling join on " 1428 "node %d\n", tmpstat, node); 1429 if (!status) 1430 status = tmpstat; 1431 } 1432 } 1433 1434 if (status) 1435 mlog_errno(status); 1436 return status; 1437 } 1438 1439 static int dlm_request_join(struct dlm_ctxt *dlm, 1440 int node, 1441 enum dlm_query_join_response_code *response) 1442 { 1443 int status; 1444 struct dlm_query_join_request join_msg; 1445 struct dlm_query_join_packet packet; 1446 u32 join_resp; 1447 1448 mlog(0, "querying node %d\n", node); 1449 1450 memset(&join_msg, 0, sizeof(join_msg)); 1451 join_msg.node_idx = dlm->node_num; 1452 join_msg.name_len = strlen(dlm->name); 1453 memcpy(join_msg.domain, dlm->name, join_msg.name_len); 1454 join_msg.dlm_proto = dlm->dlm_locking_proto; 1455 join_msg.fs_proto = dlm->fs_locking_proto; 1456 1457 /* copy live node map to join message */ 1458 byte_copymap(join_msg.node_map, dlm->live_nodes_map, O2NM_MAX_NODES); 1459 1460 status = o2net_send_message(DLM_QUERY_JOIN_MSG, DLM_MOD_KEY, &join_msg, 1461 sizeof(join_msg), node, &join_resp); 1462 if (status < 0 && status != -ENOPROTOOPT) { 1463 mlog(ML_ERROR, "Error %d when sending message %u (key 0x%x) to " 1464 "node %u\n", status, DLM_QUERY_JOIN_MSG, DLM_MOD_KEY, 1465 node); 1466 goto bail; 1467 } 1468 dlm_query_join_wire_to_packet(join_resp, &packet); 1469 1470 /* -ENOPROTOOPT from the net code means the other side isn't 1471 listening for our message type -- that's fine, it means 1472 his dlm isn't up, so we can consider him a 'yes' but not 1473 joined into the domain. */ 1474 if (status == -ENOPROTOOPT) { 1475 status = 0; 1476 *response = JOIN_OK_NO_MAP; 1477 } else if (packet.code == JOIN_DISALLOW || 1478 packet.code == JOIN_OK_NO_MAP) { 1479 *response = packet.code; 1480 } else if (packet.code == JOIN_PROTOCOL_MISMATCH) { 1481 mlog(ML_NOTICE, 1482 "This node requested DLM locking protocol %u.%u and " 1483 "filesystem locking protocol %u.%u. At least one of " 1484 "the protocol versions on node %d is not compatible, " 1485 "disconnecting\n", 1486 dlm->dlm_locking_proto.pv_major, 1487 dlm->dlm_locking_proto.pv_minor, 1488 dlm->fs_locking_proto.pv_major, 1489 dlm->fs_locking_proto.pv_minor, 1490 node); 1491 status = -EPROTO; 1492 *response = packet.code; 1493 } else if (packet.code == JOIN_OK) { 1494 *response = packet.code; 1495 /* Use the same locking protocol as the remote node */ 1496 dlm->dlm_locking_proto.pv_minor = packet.dlm_minor; 1497 dlm->fs_locking_proto.pv_minor = packet.fs_minor; 1498 mlog(0, 1499 "Node %d responds JOIN_OK with DLM locking protocol " 1500 "%u.%u and fs locking protocol %u.%u\n", 1501 node, 1502 dlm->dlm_locking_proto.pv_major, 1503 dlm->dlm_locking_proto.pv_minor, 1504 dlm->fs_locking_proto.pv_major, 1505 dlm->fs_locking_proto.pv_minor); 1506 } else { 1507 status = -EINVAL; 1508 mlog(ML_ERROR, "invalid response %d from node %u\n", 1509 packet.code, node); 1510 } 1511 1512 mlog(0, "status %d, node %d response is %d\n", status, node, 1513 *response); 1514 1515 bail: 1516 return status; 1517 } 1518 1519 static int dlm_send_one_join_assert(struct dlm_ctxt *dlm, 1520 unsigned int node) 1521 { 1522 int status; 1523 struct dlm_assert_joined assert_msg; 1524 1525 mlog(0, "Sending join assert to node %u\n", node); 1526 1527 memset(&assert_msg, 0, sizeof(assert_msg)); 1528 assert_msg.node_idx = dlm->node_num; 1529 assert_msg.name_len = strlen(dlm->name); 1530 memcpy(assert_msg.domain, dlm->name, assert_msg.name_len); 1531 1532 status = o2net_send_message(DLM_ASSERT_JOINED_MSG, DLM_MOD_KEY, 1533 &assert_msg, sizeof(assert_msg), node, 1534 NULL); 1535 if (status < 0) 1536 mlog(ML_ERROR, "Error %d when sending message %u (key 0x%x) to " 1537 "node %u\n", status, DLM_ASSERT_JOINED_MSG, DLM_MOD_KEY, 1538 node); 1539 1540 return status; 1541 } 1542 1543 static void dlm_send_join_asserts(struct dlm_ctxt *dlm, 1544 unsigned long *node_map) 1545 { 1546 int status, node, live; 1547 1548 status = 0; 1549 node = -1; 1550 while ((node = find_next_bit(node_map, O2NM_MAX_NODES, 1551 node + 1)) < O2NM_MAX_NODES) { 1552 if (node == dlm->node_num) 1553 continue; 1554 1555 do { 1556 /* It is very important that this message be 1557 * received so we spin until either the node 1558 * has died or it gets the message. */ 1559 status = dlm_send_one_join_assert(dlm, node); 1560 1561 spin_lock(&dlm->spinlock); 1562 live = test_bit(node, dlm->live_nodes_map); 1563 spin_unlock(&dlm->spinlock); 1564 1565 if (status) { 1566 mlog(ML_ERROR, "Error return %d asserting " 1567 "join on node %d\n", status, node); 1568 1569 /* give us some time between errors... */ 1570 if (live) 1571 msleep(DLM_DOMAIN_BACKOFF_MS); 1572 } 1573 } while (status && live); 1574 } 1575 } 1576 1577 struct domain_join_ctxt { 1578 unsigned long live_map[BITS_TO_LONGS(O2NM_MAX_NODES)]; 1579 unsigned long yes_resp_map[BITS_TO_LONGS(O2NM_MAX_NODES)]; 1580 }; 1581 1582 static int dlm_should_restart_join(struct dlm_ctxt *dlm, 1583 struct domain_join_ctxt *ctxt, 1584 enum dlm_query_join_response_code response) 1585 { 1586 int ret; 1587 1588 if (response == JOIN_DISALLOW) { 1589 mlog(0, "Latest response of disallow -- should restart\n"); 1590 return 1; 1591 } 1592 1593 spin_lock(&dlm->spinlock); 1594 /* For now, we restart the process if the node maps have 1595 * changed at all */ 1596 ret = memcmp(ctxt->live_map, dlm->live_nodes_map, 1597 sizeof(dlm->live_nodes_map)); 1598 spin_unlock(&dlm->spinlock); 1599 1600 if (ret) 1601 mlog(0, "Node maps changed -- should restart\n"); 1602 1603 return ret; 1604 } 1605 1606 static int dlm_try_to_join_domain(struct dlm_ctxt *dlm) 1607 { 1608 int status = 0, tmpstat, node; 1609 struct domain_join_ctxt *ctxt; 1610 enum dlm_query_join_response_code response = JOIN_DISALLOW; 1611 1612 mlog(0, "%p", dlm); 1613 1614 ctxt = kzalloc(sizeof(*ctxt), GFP_KERNEL); 1615 if (!ctxt) { 1616 status = -ENOMEM; 1617 mlog_errno(status); 1618 goto bail; 1619 } 1620 1621 /* group sem locking should work for us here -- we're already 1622 * registered for heartbeat events so filling this should be 1623 * atomic wrt getting those handlers called. */ 1624 o2hb_fill_node_map(dlm->live_nodes_map, sizeof(dlm->live_nodes_map)); 1625 1626 spin_lock(&dlm->spinlock); 1627 memcpy(ctxt->live_map, dlm->live_nodes_map, sizeof(ctxt->live_map)); 1628 1629 __dlm_set_joining_node(dlm, dlm->node_num); 1630 1631 spin_unlock(&dlm->spinlock); 1632 1633 node = -1; 1634 while ((node = find_next_bit(ctxt->live_map, O2NM_MAX_NODES, 1635 node + 1)) < O2NM_MAX_NODES) { 1636 if (node == dlm->node_num) 1637 continue; 1638 1639 status = dlm_request_join(dlm, node, &response); 1640 if (status < 0) { 1641 mlog_errno(status); 1642 goto bail; 1643 } 1644 1645 /* Ok, either we got a response or the node doesn't have a 1646 * dlm up. */ 1647 if (response == JOIN_OK) 1648 set_bit(node, ctxt->yes_resp_map); 1649 1650 if (dlm_should_restart_join(dlm, ctxt, response)) { 1651 status = -EAGAIN; 1652 goto bail; 1653 } 1654 } 1655 1656 mlog(0, "Yay, done querying nodes!\n"); 1657 1658 /* Yay, everyone agree's we can join the domain. My domain is 1659 * comprised of all nodes who were put in the 1660 * yes_resp_map. Copy that into our domain map and send a join 1661 * assert message to clean up everyone elses state. */ 1662 spin_lock(&dlm->spinlock); 1663 memcpy(dlm->domain_map, ctxt->yes_resp_map, 1664 sizeof(ctxt->yes_resp_map)); 1665 set_bit(dlm->node_num, dlm->domain_map); 1666 spin_unlock(&dlm->spinlock); 1667 1668 /* Support for global heartbeat and node info was added in 1.1 */ 1669 if (dlm->dlm_locking_proto.pv_major > 1 || 1670 dlm->dlm_locking_proto.pv_minor > 0) { 1671 status = dlm_send_nodeinfo(dlm, ctxt->yes_resp_map); 1672 if (status) { 1673 mlog_errno(status); 1674 goto bail; 1675 } 1676 status = dlm_send_regions(dlm, ctxt->yes_resp_map); 1677 if (status) { 1678 mlog_errno(status); 1679 goto bail; 1680 } 1681 } 1682 1683 dlm_send_join_asserts(dlm, ctxt->yes_resp_map); 1684 1685 /* Joined state *must* be set before the joining node 1686 * information, otherwise the query_join handler may read no 1687 * current joiner but a state of NEW and tell joining nodes 1688 * we're not in the domain. */ 1689 spin_lock(&dlm_domain_lock); 1690 dlm->dlm_state = DLM_CTXT_JOINED; 1691 dlm->num_joins++; 1692 spin_unlock(&dlm_domain_lock); 1693 1694 bail: 1695 spin_lock(&dlm->spinlock); 1696 __dlm_set_joining_node(dlm, DLM_LOCK_RES_OWNER_UNKNOWN); 1697 if (!status) { 1698 printk(KERN_NOTICE "o2dlm: Joining domain %s ", dlm->name); 1699 __dlm_print_nodes(dlm); 1700 } 1701 spin_unlock(&dlm->spinlock); 1702 1703 if (ctxt) { 1704 /* Do we need to send a cancel message to any nodes? */ 1705 if (status < 0) { 1706 tmpstat = dlm_send_join_cancels(dlm, 1707 ctxt->yes_resp_map, 1708 sizeof(ctxt->yes_resp_map)); 1709 if (tmpstat < 0) 1710 mlog_errno(tmpstat); 1711 } 1712 kfree(ctxt); 1713 } 1714 1715 mlog(0, "returning %d\n", status); 1716 return status; 1717 } 1718 1719 static void dlm_unregister_domain_handlers(struct dlm_ctxt *dlm) 1720 { 1721 o2hb_unregister_callback(dlm->name, &dlm->dlm_hb_up); 1722 o2hb_unregister_callback(dlm->name, &dlm->dlm_hb_down); 1723 o2net_unregister_handler_list(&dlm->dlm_domain_handlers); 1724 } 1725 1726 static int dlm_register_domain_handlers(struct dlm_ctxt *dlm) 1727 { 1728 int status; 1729 1730 mlog(0, "registering handlers.\n"); 1731 1732 o2hb_setup_callback(&dlm->dlm_hb_down, O2HB_NODE_DOWN_CB, 1733 dlm_hb_node_down_cb, dlm, DLM_HB_NODE_DOWN_PRI); 1734 status = o2hb_register_callback(dlm->name, &dlm->dlm_hb_down); 1735 if (status) 1736 goto bail; 1737 1738 o2hb_setup_callback(&dlm->dlm_hb_up, O2HB_NODE_UP_CB, 1739 dlm_hb_node_up_cb, dlm, DLM_HB_NODE_UP_PRI); 1740 status = o2hb_register_callback(dlm->name, &dlm->dlm_hb_up); 1741 if (status) 1742 goto bail; 1743 1744 status = o2net_register_handler(DLM_MASTER_REQUEST_MSG, dlm->key, 1745 sizeof(struct dlm_master_request), 1746 dlm_master_request_handler, 1747 dlm, NULL, &dlm->dlm_domain_handlers); 1748 if (status) 1749 goto bail; 1750 1751 status = o2net_register_handler(DLM_ASSERT_MASTER_MSG, dlm->key, 1752 sizeof(struct dlm_assert_master), 1753 dlm_assert_master_handler, 1754 dlm, dlm_assert_master_post_handler, 1755 &dlm->dlm_domain_handlers); 1756 if (status) 1757 goto bail; 1758 1759 status = o2net_register_handler(DLM_CREATE_LOCK_MSG, dlm->key, 1760 sizeof(struct dlm_create_lock), 1761 dlm_create_lock_handler, 1762 dlm, NULL, &dlm->dlm_domain_handlers); 1763 if (status) 1764 goto bail; 1765 1766 status = o2net_register_handler(DLM_CONVERT_LOCK_MSG, dlm->key, 1767 DLM_CONVERT_LOCK_MAX_LEN, 1768 dlm_convert_lock_handler, 1769 dlm, NULL, &dlm->dlm_domain_handlers); 1770 if (status) 1771 goto bail; 1772 1773 status = o2net_register_handler(DLM_UNLOCK_LOCK_MSG, dlm->key, 1774 DLM_UNLOCK_LOCK_MAX_LEN, 1775 dlm_unlock_lock_handler, 1776 dlm, NULL, &dlm->dlm_domain_handlers); 1777 if (status) 1778 goto bail; 1779 1780 status = o2net_register_handler(DLM_PROXY_AST_MSG, dlm->key, 1781 DLM_PROXY_AST_MAX_LEN, 1782 dlm_proxy_ast_handler, 1783 dlm, NULL, &dlm->dlm_domain_handlers); 1784 if (status) 1785 goto bail; 1786 1787 status = o2net_register_handler(DLM_EXIT_DOMAIN_MSG, dlm->key, 1788 sizeof(struct dlm_exit_domain), 1789 dlm_exit_domain_handler, 1790 dlm, NULL, &dlm->dlm_domain_handlers); 1791 if (status) 1792 goto bail; 1793 1794 status = o2net_register_handler(DLM_DEREF_LOCKRES_MSG, dlm->key, 1795 sizeof(struct dlm_deref_lockres), 1796 dlm_deref_lockres_handler, 1797 dlm, NULL, &dlm->dlm_domain_handlers); 1798 if (status) 1799 goto bail; 1800 1801 status = o2net_register_handler(DLM_MIGRATE_REQUEST_MSG, dlm->key, 1802 sizeof(struct dlm_migrate_request), 1803 dlm_migrate_request_handler, 1804 dlm, NULL, &dlm->dlm_domain_handlers); 1805 if (status) 1806 goto bail; 1807 1808 status = o2net_register_handler(DLM_MIG_LOCKRES_MSG, dlm->key, 1809 DLM_MIG_LOCKRES_MAX_LEN, 1810 dlm_mig_lockres_handler, 1811 dlm, NULL, &dlm->dlm_domain_handlers); 1812 if (status) 1813 goto bail; 1814 1815 status = o2net_register_handler(DLM_MASTER_REQUERY_MSG, dlm->key, 1816 sizeof(struct dlm_master_requery), 1817 dlm_master_requery_handler, 1818 dlm, NULL, &dlm->dlm_domain_handlers); 1819 if (status) 1820 goto bail; 1821 1822 status = o2net_register_handler(DLM_LOCK_REQUEST_MSG, dlm->key, 1823 sizeof(struct dlm_lock_request), 1824 dlm_request_all_locks_handler, 1825 dlm, NULL, &dlm->dlm_domain_handlers); 1826 if (status) 1827 goto bail; 1828 1829 status = o2net_register_handler(DLM_RECO_DATA_DONE_MSG, dlm->key, 1830 sizeof(struct dlm_reco_data_done), 1831 dlm_reco_data_done_handler, 1832 dlm, NULL, &dlm->dlm_domain_handlers); 1833 if (status) 1834 goto bail; 1835 1836 status = o2net_register_handler(DLM_BEGIN_RECO_MSG, dlm->key, 1837 sizeof(struct dlm_begin_reco), 1838 dlm_begin_reco_handler, 1839 dlm, NULL, &dlm->dlm_domain_handlers); 1840 if (status) 1841 goto bail; 1842 1843 status = o2net_register_handler(DLM_FINALIZE_RECO_MSG, dlm->key, 1844 sizeof(struct dlm_finalize_reco), 1845 dlm_finalize_reco_handler, 1846 dlm, NULL, &dlm->dlm_domain_handlers); 1847 if (status) 1848 goto bail; 1849 1850 status = o2net_register_handler(DLM_BEGIN_EXIT_DOMAIN_MSG, dlm->key, 1851 sizeof(struct dlm_exit_domain), 1852 dlm_begin_exit_domain_handler, 1853 dlm, NULL, &dlm->dlm_domain_handlers); 1854 if (status) 1855 goto bail; 1856 1857 bail: 1858 if (status) 1859 dlm_unregister_domain_handlers(dlm); 1860 1861 return status; 1862 } 1863 1864 static int dlm_join_domain(struct dlm_ctxt *dlm) 1865 { 1866 int status; 1867 unsigned int backoff; 1868 unsigned int total_backoff = 0; 1869 1870 BUG_ON(!dlm); 1871 1872 mlog(0, "Join domain %s\n", dlm->name); 1873 1874 status = dlm_register_domain_handlers(dlm); 1875 if (status) { 1876 mlog_errno(status); 1877 goto bail; 1878 } 1879 1880 status = dlm_debug_init(dlm); 1881 if (status < 0) { 1882 mlog_errno(status); 1883 goto bail; 1884 } 1885 1886 status = dlm_launch_thread(dlm); 1887 if (status < 0) { 1888 mlog_errno(status); 1889 goto bail; 1890 } 1891 1892 status = dlm_launch_recovery_thread(dlm); 1893 if (status < 0) { 1894 mlog_errno(status); 1895 goto bail; 1896 } 1897 1898 dlm->dlm_worker = create_singlethread_workqueue("dlm_wq"); 1899 if (!dlm->dlm_worker) { 1900 status = -ENOMEM; 1901 mlog_errno(status); 1902 goto bail; 1903 } 1904 1905 do { 1906 status = dlm_try_to_join_domain(dlm); 1907 1908 /* If we're racing another node to the join, then we 1909 * need to back off temporarily and let them 1910 * complete. */ 1911 #define DLM_JOIN_TIMEOUT_MSECS 90000 1912 if (status == -EAGAIN) { 1913 if (signal_pending(current)) { 1914 status = -ERESTARTSYS; 1915 goto bail; 1916 } 1917 1918 if (total_backoff > 1919 msecs_to_jiffies(DLM_JOIN_TIMEOUT_MSECS)) { 1920 status = -ERESTARTSYS; 1921 mlog(ML_NOTICE, "Timed out joining dlm domain " 1922 "%s after %u msecs\n", dlm->name, 1923 jiffies_to_msecs(total_backoff)); 1924 goto bail; 1925 } 1926 1927 /* 1928 * <chip> After you! 1929 * <dale> No, after you! 1930 * <chip> I insist! 1931 * <dale> But you first! 1932 * ... 1933 */ 1934 backoff = (unsigned int)(jiffies & 0x3); 1935 backoff *= DLM_DOMAIN_BACKOFF_MS; 1936 total_backoff += backoff; 1937 mlog(0, "backoff %d\n", backoff); 1938 msleep(backoff); 1939 } 1940 } while (status == -EAGAIN); 1941 1942 if (status < 0) { 1943 mlog_errno(status); 1944 goto bail; 1945 } 1946 1947 status = 0; 1948 bail: 1949 wake_up(&dlm_domain_events); 1950 1951 if (status) { 1952 dlm_unregister_domain_handlers(dlm); 1953 dlm_debug_shutdown(dlm); 1954 dlm_complete_thread(dlm); 1955 dlm_complete_recovery_thread(dlm); 1956 dlm_destroy_dlm_worker(dlm); 1957 } 1958 1959 return status; 1960 } 1961 1962 static struct dlm_ctxt *dlm_alloc_ctxt(const char *domain, 1963 u32 key) 1964 { 1965 int i; 1966 int ret; 1967 struct dlm_ctxt *dlm = NULL; 1968 1969 dlm = kzalloc(sizeof(*dlm), GFP_KERNEL); 1970 if (!dlm) { 1971 mlog_errno(-ENOMEM); 1972 goto leave; 1973 } 1974 1975 dlm->name = kstrdup(domain, GFP_KERNEL); 1976 if (dlm->name == NULL) { 1977 mlog_errno(-ENOMEM); 1978 kfree(dlm); 1979 dlm = NULL; 1980 goto leave; 1981 } 1982 1983 dlm->lockres_hash = (struct hlist_head **)dlm_alloc_pagevec(DLM_HASH_PAGES); 1984 if (!dlm->lockres_hash) { 1985 mlog_errno(-ENOMEM); 1986 kfree(dlm->name); 1987 kfree(dlm); 1988 dlm = NULL; 1989 goto leave; 1990 } 1991 1992 for (i = 0; i < DLM_HASH_BUCKETS; i++) 1993 INIT_HLIST_HEAD(dlm_lockres_hash(dlm, i)); 1994 1995 dlm->master_hash = (struct hlist_head **) 1996 dlm_alloc_pagevec(DLM_HASH_PAGES); 1997 if (!dlm->master_hash) { 1998 mlog_errno(-ENOMEM); 1999 dlm_free_pagevec((void **)dlm->lockres_hash, DLM_HASH_PAGES); 2000 kfree(dlm->name); 2001 kfree(dlm); 2002 dlm = NULL; 2003 goto leave; 2004 } 2005 2006 for (i = 0; i < DLM_HASH_BUCKETS; i++) 2007 INIT_HLIST_HEAD(dlm_master_hash(dlm, i)); 2008 2009 dlm->key = key; 2010 dlm->node_num = o2nm_this_node(); 2011 2012 ret = dlm_create_debugfs_subroot(dlm); 2013 if (ret < 0) { 2014 dlm_free_pagevec((void **)dlm->master_hash, DLM_HASH_PAGES); 2015 dlm_free_pagevec((void **)dlm->lockres_hash, DLM_HASH_PAGES); 2016 kfree(dlm->name); 2017 kfree(dlm); 2018 dlm = NULL; 2019 goto leave; 2020 } 2021 2022 spin_lock_init(&dlm->spinlock); 2023 spin_lock_init(&dlm->master_lock); 2024 spin_lock_init(&dlm->ast_lock); 2025 spin_lock_init(&dlm->track_lock); 2026 INIT_LIST_HEAD(&dlm->list); 2027 INIT_LIST_HEAD(&dlm->dirty_list); 2028 INIT_LIST_HEAD(&dlm->reco.resources); 2029 INIT_LIST_HEAD(&dlm->reco.received); 2030 INIT_LIST_HEAD(&dlm->reco.node_data); 2031 INIT_LIST_HEAD(&dlm->purge_list); 2032 INIT_LIST_HEAD(&dlm->dlm_domain_handlers); 2033 INIT_LIST_HEAD(&dlm->tracking_list); 2034 dlm->reco.state = 0; 2035 2036 INIT_LIST_HEAD(&dlm->pending_asts); 2037 INIT_LIST_HEAD(&dlm->pending_basts); 2038 2039 mlog(0, "dlm->recovery_map=%p, &(dlm->recovery_map[0])=%p\n", 2040 dlm->recovery_map, &(dlm->recovery_map[0])); 2041 2042 memset(dlm->recovery_map, 0, sizeof(dlm->recovery_map)); 2043 memset(dlm->live_nodes_map, 0, sizeof(dlm->live_nodes_map)); 2044 memset(dlm->domain_map, 0, sizeof(dlm->domain_map)); 2045 2046 dlm->dlm_thread_task = NULL; 2047 dlm->dlm_reco_thread_task = NULL; 2048 dlm->dlm_worker = NULL; 2049 init_waitqueue_head(&dlm->dlm_thread_wq); 2050 init_waitqueue_head(&dlm->dlm_reco_thread_wq); 2051 init_waitqueue_head(&dlm->reco.event); 2052 init_waitqueue_head(&dlm->ast_wq); 2053 init_waitqueue_head(&dlm->migration_wq); 2054 INIT_LIST_HEAD(&dlm->mle_hb_events); 2055 2056 dlm->joining_node = DLM_LOCK_RES_OWNER_UNKNOWN; 2057 init_waitqueue_head(&dlm->dlm_join_events); 2058 2059 dlm->reco.new_master = O2NM_INVALID_NODE_NUM; 2060 dlm->reco.dead_node = O2NM_INVALID_NODE_NUM; 2061 2062 atomic_set(&dlm->res_tot_count, 0); 2063 atomic_set(&dlm->res_cur_count, 0); 2064 for (i = 0; i < DLM_MLE_NUM_TYPES; ++i) { 2065 atomic_set(&dlm->mle_tot_count[i], 0); 2066 atomic_set(&dlm->mle_cur_count[i], 0); 2067 } 2068 2069 spin_lock_init(&dlm->work_lock); 2070 INIT_LIST_HEAD(&dlm->work_list); 2071 INIT_WORK(&dlm->dispatched_work, dlm_dispatch_work); 2072 2073 kref_init(&dlm->dlm_refs); 2074 dlm->dlm_state = DLM_CTXT_NEW; 2075 2076 INIT_LIST_HEAD(&dlm->dlm_eviction_callbacks); 2077 2078 mlog(0, "context init: refcount %u\n", 2079 atomic_read(&dlm->dlm_refs.refcount)); 2080 2081 leave: 2082 return dlm; 2083 } 2084 2085 /* 2086 * Compare a requested locking protocol version against the current one. 2087 * 2088 * If the major numbers are different, they are incompatible. 2089 * If the current minor is greater than the request, they are incompatible. 2090 * If the current minor is less than or equal to the request, they are 2091 * compatible, and the requester should run at the current minor version. 2092 */ 2093 static int dlm_protocol_compare(struct dlm_protocol_version *existing, 2094 struct dlm_protocol_version *request) 2095 { 2096 if (existing->pv_major != request->pv_major) 2097 return 1; 2098 2099 if (existing->pv_minor > request->pv_minor) 2100 return 1; 2101 2102 if (existing->pv_minor < request->pv_minor) 2103 request->pv_minor = existing->pv_minor; 2104 2105 return 0; 2106 } 2107 2108 /* 2109 * dlm_register_domain: one-time setup per "domain". 2110 * 2111 * The filesystem passes in the requested locking version via proto. 2112 * If registration was successful, proto will contain the negotiated 2113 * locking protocol. 2114 */ 2115 struct dlm_ctxt * dlm_register_domain(const char *domain, 2116 u32 key, 2117 struct dlm_protocol_version *fs_proto) 2118 { 2119 int ret; 2120 struct dlm_ctxt *dlm = NULL; 2121 struct dlm_ctxt *new_ctxt = NULL; 2122 2123 if (strlen(domain) >= O2NM_MAX_NAME_LEN) { 2124 ret = -ENAMETOOLONG; 2125 mlog(ML_ERROR, "domain name length too long\n"); 2126 goto leave; 2127 } 2128 2129 mlog(0, "register called for domain \"%s\"\n", domain); 2130 2131 retry: 2132 dlm = NULL; 2133 if (signal_pending(current)) { 2134 ret = -ERESTARTSYS; 2135 mlog_errno(ret); 2136 goto leave; 2137 } 2138 2139 spin_lock(&dlm_domain_lock); 2140 2141 dlm = __dlm_lookup_domain(domain); 2142 if (dlm) { 2143 if (dlm->dlm_state != DLM_CTXT_JOINED) { 2144 spin_unlock(&dlm_domain_lock); 2145 2146 mlog(0, "This ctxt is not joined yet!\n"); 2147 wait_event_interruptible(dlm_domain_events, 2148 dlm_wait_on_domain_helper( 2149 domain)); 2150 goto retry; 2151 } 2152 2153 if (dlm_protocol_compare(&dlm->fs_locking_proto, fs_proto)) { 2154 spin_unlock(&dlm_domain_lock); 2155 mlog(ML_ERROR, 2156 "Requested locking protocol version is not " 2157 "compatible with already registered domain " 2158 "\"%s\"\n", domain); 2159 ret = -EPROTO; 2160 goto leave; 2161 } 2162 2163 __dlm_get(dlm); 2164 dlm->num_joins++; 2165 2166 spin_unlock(&dlm_domain_lock); 2167 2168 ret = 0; 2169 goto leave; 2170 } 2171 2172 /* doesn't exist */ 2173 if (!new_ctxt) { 2174 spin_unlock(&dlm_domain_lock); 2175 2176 new_ctxt = dlm_alloc_ctxt(domain, key); 2177 if (new_ctxt) 2178 goto retry; 2179 2180 ret = -ENOMEM; 2181 mlog_errno(ret); 2182 goto leave; 2183 } 2184 2185 /* a little variable switch-a-roo here... */ 2186 dlm = new_ctxt; 2187 new_ctxt = NULL; 2188 2189 /* add the new domain */ 2190 list_add_tail(&dlm->list, &dlm_domains); 2191 spin_unlock(&dlm_domain_lock); 2192 2193 /* 2194 * Pass the locking protocol version into the join. If the join 2195 * succeeds, it will have the negotiated protocol set. 2196 */ 2197 dlm->dlm_locking_proto = dlm_protocol; 2198 dlm->fs_locking_proto = *fs_proto; 2199 2200 ret = dlm_join_domain(dlm); 2201 if (ret) { 2202 mlog_errno(ret); 2203 dlm_put(dlm); 2204 goto leave; 2205 } 2206 2207 /* Tell the caller what locking protocol we negotiated */ 2208 *fs_proto = dlm->fs_locking_proto; 2209 2210 ret = 0; 2211 leave: 2212 if (new_ctxt) 2213 dlm_free_ctxt_mem(new_ctxt); 2214 2215 if (ret < 0) 2216 dlm = ERR_PTR(ret); 2217 2218 return dlm; 2219 } 2220 EXPORT_SYMBOL_GPL(dlm_register_domain); 2221 2222 static LIST_HEAD(dlm_join_handlers); 2223 2224 static void dlm_unregister_net_handlers(void) 2225 { 2226 o2net_unregister_handler_list(&dlm_join_handlers); 2227 } 2228 2229 static int dlm_register_net_handlers(void) 2230 { 2231 int status = 0; 2232 2233 status = o2net_register_handler(DLM_QUERY_JOIN_MSG, DLM_MOD_KEY, 2234 sizeof(struct dlm_query_join_request), 2235 dlm_query_join_handler, 2236 NULL, NULL, &dlm_join_handlers); 2237 if (status) 2238 goto bail; 2239 2240 status = o2net_register_handler(DLM_ASSERT_JOINED_MSG, DLM_MOD_KEY, 2241 sizeof(struct dlm_assert_joined), 2242 dlm_assert_joined_handler, 2243 NULL, NULL, &dlm_join_handlers); 2244 if (status) 2245 goto bail; 2246 2247 status = o2net_register_handler(DLM_CANCEL_JOIN_MSG, DLM_MOD_KEY, 2248 sizeof(struct dlm_cancel_join), 2249 dlm_cancel_join_handler, 2250 NULL, NULL, &dlm_join_handlers); 2251 if (status) 2252 goto bail; 2253 2254 status = o2net_register_handler(DLM_QUERY_REGION, DLM_MOD_KEY, 2255 sizeof(struct dlm_query_region), 2256 dlm_query_region_handler, 2257 NULL, NULL, &dlm_join_handlers); 2258 2259 if (status) 2260 goto bail; 2261 2262 status = o2net_register_handler(DLM_QUERY_NODEINFO, DLM_MOD_KEY, 2263 sizeof(struct dlm_query_nodeinfo), 2264 dlm_query_nodeinfo_handler, 2265 NULL, NULL, &dlm_join_handlers); 2266 bail: 2267 if (status < 0) 2268 dlm_unregister_net_handlers(); 2269 2270 return status; 2271 } 2272 2273 /* Domain eviction callback handling. 2274 * 2275 * The file system requires notification of node death *before* the 2276 * dlm completes it's recovery work, otherwise it may be able to 2277 * acquire locks on resources requiring recovery. Since the dlm can 2278 * evict a node from it's domain *before* heartbeat fires, a similar 2279 * mechanism is required. */ 2280 2281 /* Eviction is not expected to happen often, so a per-domain lock is 2282 * not necessary. Eviction callbacks are allowed to sleep for short 2283 * periods of time. */ 2284 static DECLARE_RWSEM(dlm_callback_sem); 2285 2286 void dlm_fire_domain_eviction_callbacks(struct dlm_ctxt *dlm, 2287 int node_num) 2288 { 2289 struct dlm_eviction_cb *cb; 2290 2291 down_read(&dlm_callback_sem); 2292 list_for_each_entry(cb, &dlm->dlm_eviction_callbacks, ec_item) { 2293 cb->ec_func(node_num, cb->ec_data); 2294 } 2295 up_read(&dlm_callback_sem); 2296 } 2297 2298 void dlm_setup_eviction_cb(struct dlm_eviction_cb *cb, 2299 dlm_eviction_func *f, 2300 void *data) 2301 { 2302 INIT_LIST_HEAD(&cb->ec_item); 2303 cb->ec_func = f; 2304 cb->ec_data = data; 2305 } 2306 EXPORT_SYMBOL_GPL(dlm_setup_eviction_cb); 2307 2308 void dlm_register_eviction_cb(struct dlm_ctxt *dlm, 2309 struct dlm_eviction_cb *cb) 2310 { 2311 down_write(&dlm_callback_sem); 2312 list_add_tail(&cb->ec_item, &dlm->dlm_eviction_callbacks); 2313 up_write(&dlm_callback_sem); 2314 } 2315 EXPORT_SYMBOL_GPL(dlm_register_eviction_cb); 2316 2317 void dlm_unregister_eviction_cb(struct dlm_eviction_cb *cb) 2318 { 2319 down_write(&dlm_callback_sem); 2320 list_del_init(&cb->ec_item); 2321 up_write(&dlm_callback_sem); 2322 } 2323 EXPORT_SYMBOL_GPL(dlm_unregister_eviction_cb); 2324 2325 static int __init dlm_init(void) 2326 { 2327 int status; 2328 2329 status = dlm_init_mle_cache(); 2330 if (status) { 2331 mlog(ML_ERROR, "Could not create o2dlm_mle slabcache\n"); 2332 goto error; 2333 } 2334 2335 status = dlm_init_master_caches(); 2336 if (status) { 2337 mlog(ML_ERROR, "Could not create o2dlm_lockres and " 2338 "o2dlm_lockname slabcaches\n"); 2339 goto error; 2340 } 2341 2342 status = dlm_init_lock_cache(); 2343 if (status) { 2344 mlog(ML_ERROR, "Count not create o2dlm_lock slabcache\n"); 2345 goto error; 2346 } 2347 2348 status = dlm_register_net_handlers(); 2349 if (status) { 2350 mlog(ML_ERROR, "Unable to register network handlers\n"); 2351 goto error; 2352 } 2353 2354 status = dlm_create_debugfs_root(); 2355 if (status) 2356 goto error; 2357 2358 return 0; 2359 error: 2360 dlm_unregister_net_handlers(); 2361 dlm_destroy_lock_cache(); 2362 dlm_destroy_master_caches(); 2363 dlm_destroy_mle_cache(); 2364 return -1; 2365 } 2366 2367 static void __exit dlm_exit (void) 2368 { 2369 dlm_destroy_debugfs_root(); 2370 dlm_unregister_net_handlers(); 2371 dlm_destroy_lock_cache(); 2372 dlm_destroy_master_caches(); 2373 dlm_destroy_mle_cache(); 2374 } 2375 2376 MODULE_AUTHOR("Oracle"); 2377 MODULE_LICENSE("GPL"); 2378 MODULE_DESCRIPTION("OCFS2 Distributed Lock Management"); 2379 2380 module_init(dlm_init); 2381 module_exit(dlm_exit); 2382