1 // SPDX-License-Identifier: GPL-2.0-only 2 /* 3 * linux/fs/lockd/clntproc.c 4 * 5 * RPC procedures for the client side NLM implementation 6 * 7 * Copyright (C) 1996, Olaf Kirch <okir@monad.swb.de> 8 */ 9 10 #include <linux/module.h> 11 #include <linux/slab.h> 12 #include <linux/types.h> 13 #include <linux/errno.h> 14 #include <linux/fs.h> 15 #include <linux/filelock.h> 16 #include <linux/nfs_fs.h> 17 #include <linux/utsname.h> 18 #include <linux/freezer.h> 19 #include <linux/sunrpc/clnt.h> 20 #include <linux/sunrpc/svc.h> 21 22 #include "lockd.h" 23 #include "trace.h" 24 25 #define NLMDBG_FACILITY NLMDBG_CLIENT 26 #define NLMCLNT_GRACE_WAIT (5*HZ) 27 #define NLMCLNT_POLL_TIMEOUT (30*HZ) 28 #define NLMCLNT_MAX_RETRIES 3 29 30 static int nlmclnt_test(struct nlm_rqst *, struct file_lock *); 31 static int nlmclnt_lock(struct nlm_rqst *, struct file_lock *); 32 static int nlmclnt_unlock(struct nlm_rqst *, struct file_lock *); 33 static int nlm_stat_to_errno(__be32 stat); 34 static void nlmclnt_locks_init_private(struct file_lock *fl, struct nlm_host *host); 35 static int nlmclnt_cancel(struct nlm_host *, int , struct file_lock *); 36 37 static const struct rpc_call_ops nlmclnt_unlock_ops; 38 static const struct rpc_call_ops nlmclnt_cancel_ops; 39 40 /* 41 * Cookie counter for NLM requests 42 */ 43 static atomic_t nlm_cookie = ATOMIC_INIT(0x1234); 44 45 void nlmclnt_next_cookie(struct lockd_cookie *c) 46 { 47 u32 cookie = atomic_inc_return(&nlm_cookie); 48 49 memcpy(c->data, &cookie, 4); 50 c->len=4; 51 } 52 53 static struct nlm_lockowner * 54 nlmclnt_get_lockowner(struct nlm_lockowner *lockowner) 55 { 56 refcount_inc(&lockowner->count); 57 return lockowner; 58 } 59 60 static void nlmclnt_put_lockowner(struct nlm_lockowner *lockowner) 61 { 62 if (!refcount_dec_and_lock(&lockowner->count, &lockowner->host->h_lock)) 63 return; 64 list_del(&lockowner->list); 65 spin_unlock(&lockowner->host->h_lock); 66 nlmclnt_release_host(lockowner->host); 67 kfree(lockowner); 68 } 69 70 static inline int nlm_pidbusy(struct nlm_host *host, uint32_t pid) 71 { 72 struct nlm_lockowner *lockowner; 73 list_for_each_entry(lockowner, &host->h_lockowners, list) { 74 if (lockowner->pid == pid) 75 return -EBUSY; 76 } 77 return 0; 78 } 79 80 static inline uint32_t __nlm_alloc_pid(struct nlm_host *host) 81 { 82 uint32_t res; 83 do { 84 res = host->h_pidcount++; 85 } while (nlm_pidbusy(host, res) < 0); 86 return res; 87 } 88 89 static struct nlm_lockowner *__nlmclnt_find_lockowner(struct nlm_host *host, fl_owner_t owner) 90 { 91 struct nlm_lockowner *lockowner; 92 list_for_each_entry(lockowner, &host->h_lockowners, list) { 93 if (lockowner->owner != owner) 94 continue; 95 return nlmclnt_get_lockowner(lockowner); 96 } 97 return NULL; 98 } 99 100 static struct nlm_lockowner *nlmclnt_find_lockowner(struct nlm_host *host, fl_owner_t owner) 101 { 102 struct nlm_lockowner *res, *new = NULL; 103 104 spin_lock(&host->h_lock); 105 res = __nlmclnt_find_lockowner(host, owner); 106 if (res == NULL) { 107 spin_unlock(&host->h_lock); 108 new = kmalloc_obj(*new); 109 spin_lock(&host->h_lock); 110 res = __nlmclnt_find_lockowner(host, owner); 111 if (res == NULL && new != NULL) { 112 res = new; 113 refcount_set(&new->count, 1); 114 new->owner = owner; 115 new->pid = __nlm_alloc_pid(host); 116 new->host = nlm_get_host(host); 117 list_add(&new->list, &host->h_lockowners); 118 new = NULL; 119 } 120 } 121 spin_unlock(&host->h_lock); 122 kfree(new); 123 return res; 124 } 125 126 /* 127 * Initialize arguments for TEST/LOCK/UNLOCK/CANCEL calls 128 */ 129 static void nlmclnt_setlockargs(struct nlm_rqst *req, struct file_lock *fl) 130 { 131 struct lockd_args *argp = &req->a_args; 132 struct lockd_lock *lock = &argp->lock; 133 char *nodename = req->a_host->h_rpcclnt->cl_nodename; 134 135 nlmclnt_next_cookie(&argp->cookie); 136 memcpy(&lock->fh, NFS_FH(file_inode(fl->c.flc_file)), 137 sizeof(struct nfs_fh)); 138 lock->caller = nodename; 139 lock->oh.data = req->a_owner; 140 lock->oh.len = snprintf(req->a_owner, sizeof(req->a_owner), "%u@%s", 141 (unsigned int)fl->fl_u.nfs_fl.owner->pid, 142 nodename); 143 lock->svid = fl->fl_u.nfs_fl.owner->pid; 144 lock->fl.fl_start = fl->fl_start; 145 lock->fl.fl_end = fl->fl_end; 146 lock->fl.c.flc_type = fl->c.flc_type; 147 } 148 149 static void nlmclnt_release_lockargs(struct nlm_rqst *req) 150 { 151 WARN_ON_ONCE(req->a_args.lock.fl.fl_ops != NULL); 152 } 153 154 /** 155 * nlmclnt_proc - Perform a single client-side lock request 156 * @host: address of a valid nlm_host context representing the NLM server 157 * @cmd: fcntl-style file lock operation to perform 158 * @fl: address of arguments for the lock operation 159 * @data: address of data to be sent to callback operations 160 * 161 */ 162 int nlmclnt_proc(struct nlm_host *host, int cmd, struct file_lock *fl, void *data) 163 { 164 struct nlm_rqst *call; 165 int status; 166 const struct nlmclnt_operations *nlmclnt_ops = host->h_nlmclnt_ops; 167 168 call = nlm_alloc_call(host); 169 if (call == NULL) 170 return -ENOMEM; 171 172 if (nlmclnt_ops && nlmclnt_ops->nlmclnt_alloc_call) 173 nlmclnt_ops->nlmclnt_alloc_call(data); 174 175 nlmclnt_locks_init_private(fl, host); 176 if (!fl->fl_u.nfs_fl.owner) { 177 /* lockowner allocation has failed */ 178 nlmclnt_release_call(call); 179 return -ENOMEM; 180 } 181 /* Set up the argument struct */ 182 nlmclnt_setlockargs(call, fl); 183 call->a_callback_data = data; 184 185 if (IS_SETLK(cmd) || IS_SETLKW(cmd)) { 186 if (fl->c.flc_type != F_UNLCK) { 187 call->a_args.block = IS_SETLKW(cmd) ? 1 : 0; 188 status = nlmclnt_lock(call, fl); 189 } else 190 status = nlmclnt_unlock(call, fl); 191 } else if (IS_GETLK(cmd)) 192 status = nlmclnt_test(call, fl); 193 else 194 status = -EINVAL; 195 fl->fl_ops->fl_release_private(fl); 196 fl->fl_ops = NULL; 197 198 dprintk("lockd: clnt proc returns %d\n", status); 199 return status; 200 } 201 EXPORT_SYMBOL_GPL(nlmclnt_proc); 202 203 /* 204 * Allocate an NLM RPC call struct 205 */ 206 struct nlm_rqst *nlm_alloc_call(struct nlm_host *host) 207 { 208 struct nlm_rqst *call; 209 210 for(;;) { 211 call = kzalloc_obj(*call); 212 if (call != NULL) { 213 refcount_set(&call->a_count, 1); 214 locks_init_lock(&call->a_args.lock.fl); 215 locks_init_lock(&call->a_res.lock.fl); 216 call->a_host = nlm_get_host(host); 217 return call; 218 } 219 if (signalled()) 220 break; 221 printk("nlm_alloc_call: failed, waiting for memory\n"); 222 schedule_timeout_interruptible(5*HZ); 223 } 224 return NULL; 225 } 226 227 void nlmclnt_release_call(struct nlm_rqst *call) 228 { 229 const struct nlmclnt_operations *nlmclnt_ops = call->a_host->h_nlmclnt_ops; 230 231 if (!refcount_dec_and_test(&call->a_count)) 232 return; 233 if (nlmclnt_ops && nlmclnt_ops->nlmclnt_release_call) 234 nlmclnt_ops->nlmclnt_release_call(call->a_callback_data); 235 nlmclnt_release_host(call->a_host); 236 nlmclnt_release_lockargs(call); 237 kfree(call); 238 } 239 240 static void nlmclnt_rpc_release(void *data) 241 { 242 nlmclnt_release_call(data); 243 } 244 245 static int nlm_wait_on_grace(wait_queue_head_t *queue) 246 { 247 DEFINE_WAIT(wait); 248 int status = -EINTR; 249 250 prepare_to_wait(queue, &wait, TASK_INTERRUPTIBLE); 251 if (!signalled ()) { 252 schedule_timeout(NLMCLNT_GRACE_WAIT); 253 try_to_freeze(); 254 if (!signalled ()) 255 status = 0; 256 } 257 finish_wait(queue, &wait); 258 return status; 259 } 260 261 /* 262 * Generic NLM call 263 */ 264 static int 265 nlmclnt_call(const struct cred *cred, struct nlm_rqst *req, u32 proc) 266 { 267 struct nlm_host *host = req->a_host; 268 struct rpc_clnt *clnt; 269 struct lockd_args *argp = &req->a_args; 270 struct lockd_res *resp = &req->a_res; 271 struct rpc_message msg = { 272 .rpc_argp = argp, 273 .rpc_resp = resp, 274 .rpc_cred = cred, 275 }; 276 int status; 277 278 dprintk("lockd: call procedure %d on %s\n", 279 (int)proc, host->h_name); 280 281 do { 282 if (host->h_reclaiming && !argp->reclaim) 283 goto in_grace_period; 284 285 /* If we have no RPC client yet, create one. */ 286 if ((clnt = nlm_bind_host(host)) == NULL) 287 return -ENOLCK; 288 msg.rpc_proc = &clnt->cl_procinfo[proc]; 289 290 /* Perform the RPC call. If an error occurs, try again */ 291 if ((status = rpc_call_sync(clnt, &msg, 0)) < 0) { 292 dprintk("lockd: rpc_call returned error %d\n", -status); 293 switch (status) { 294 case -EPROTONOSUPPORT: 295 status = -EINVAL; 296 break; 297 case -ECONNREFUSED: 298 case -ETIMEDOUT: 299 case -ENOTCONN: 300 nlm_rebind_host(host); 301 status = -EAGAIN; 302 break; 303 case -ERESTARTSYS: 304 return signalled () ? -EINTR : status; 305 default: 306 break; 307 } 308 break; 309 } else 310 if (resp->status == nlm_lck_denied_grace_period) { 311 dprintk("lockd: server in grace period\n"); 312 if (argp->reclaim) { 313 printk(KERN_WARNING 314 "lockd: spurious grace period reject?!\n"); 315 return -ENOLCK; 316 } 317 } else { 318 if (!argp->reclaim) { 319 /* We appear to be out of the grace period */ 320 wake_up_all(&host->h_gracewait); 321 } 322 dprintk("lockd: server returns status %d\n", 323 ntohl(resp->status)); 324 return 0; /* Okay, call complete */ 325 } 326 327 in_grace_period: 328 /* 329 * The server has rebooted and appears to be in the grace 330 * period during which locks are only allowed to be 331 * reclaimed. 332 * We can only back off and try again later. 333 */ 334 status = nlm_wait_on_grace(&host->h_gracewait); 335 } while (status == 0); 336 337 return status; 338 } 339 340 /* 341 * Generic NLM call, async version. 342 */ 343 static struct rpc_task *__nlm_async_call(struct nlm_rqst *req, u32 proc, struct rpc_message *msg, const struct rpc_call_ops *tk_ops) 344 { 345 struct nlm_host *host = req->a_host; 346 struct rpc_clnt *clnt; 347 struct rpc_task_setup task_setup_data = { 348 .rpc_message = msg, 349 .callback_ops = tk_ops, 350 .callback_data = req, 351 .flags = RPC_TASK_ASYNC, 352 }; 353 354 dprintk("lockd: call procedure %d on %s (async)\n", 355 (int)proc, host->h_name); 356 357 /* If we have no RPC client yet, create one. */ 358 clnt = nlm_bind_host(host); 359 if (clnt == NULL) 360 goto out_err; 361 msg->rpc_proc = &clnt->cl_procinfo[proc]; 362 task_setup_data.rpc_client = clnt; 363 364 /* bootstrap and kick off the async RPC call */ 365 return rpc_run_task(&task_setup_data); 366 out_err: 367 tk_ops->rpc_release(req); 368 return ERR_PTR(-ENOLCK); 369 } 370 371 static int nlm_do_async_call(struct nlm_rqst *req, u32 proc, struct rpc_message *msg, const struct rpc_call_ops *tk_ops) 372 { 373 struct rpc_task *task; 374 375 task = __nlm_async_call(req, proc, msg, tk_ops); 376 if (IS_ERR(task)) 377 return PTR_ERR(task); 378 rpc_put_task(task); 379 return 0; 380 } 381 382 /* 383 * NLM asynchronous call. 384 */ 385 int nlm_async_call(struct nlm_rqst *req, u32 proc, const struct rpc_call_ops *tk_ops) 386 { 387 struct rpc_message msg = { 388 .rpc_argp = &req->a_args, 389 .rpc_resp = &req->a_res, 390 }; 391 return nlm_do_async_call(req, proc, &msg, tk_ops); 392 } 393 394 int nlm_async_reply(struct nlm_rqst *req, u32 proc, const struct rpc_call_ops *tk_ops) 395 { 396 struct rpc_message msg = { 397 .rpc_argp = &req->a_res, 398 }; 399 return nlm_do_async_call(req, proc, &msg, tk_ops); 400 } 401 402 /* 403 * NLM client asynchronous call. 404 * 405 * Note that although the calls are asynchronous, and are therefore 406 * guaranteed to complete, we still always attempt to wait for 407 * completion in order to be able to correctly track the lock 408 * state. 409 */ 410 static int nlmclnt_async_call(const struct cred *cred, struct nlm_rqst *req, u32 proc, const struct rpc_call_ops *tk_ops) 411 { 412 struct rpc_message msg = { 413 .rpc_argp = &req->a_args, 414 .rpc_resp = &req->a_res, 415 .rpc_cred = cred, 416 }; 417 struct rpc_task *task; 418 int err; 419 420 task = __nlm_async_call(req, proc, &msg, tk_ops); 421 if (IS_ERR(task)) 422 return PTR_ERR(task); 423 err = rpc_wait_for_completion_task(task); 424 rpc_put_task(task); 425 return err; 426 } 427 428 /* 429 * TEST for the presence of a conflicting lock 430 */ 431 static int 432 nlmclnt_test(struct nlm_rqst *req, struct file_lock *fl) 433 { 434 int status; 435 436 status = nlmclnt_call(nfs_file_cred(fl->c.flc_file), req, 437 NLMPROC_TEST); 438 if (status < 0) 439 goto out; 440 441 switch (req->a_res.status) { 442 case nlm_granted: 443 fl->c.flc_type = F_UNLCK; 444 break; 445 case nlm_lck_denied: 446 /* 447 * Report the conflicting lock back to the application. 448 */ 449 fl->fl_start = req->a_res.lock.fl.fl_start; 450 fl->fl_end = req->a_res.lock.fl.fl_end; 451 fl->c.flc_type = req->a_res.lock.fl.c.flc_type; 452 fl->c.flc_pid = -req->a_res.lock.fl.c.flc_pid; 453 break; 454 default: 455 status = nlm_stat_to_errno(req->a_res.status); 456 } 457 out: 458 trace_nlmclnt_test(&req->a_args.lock, 459 (const struct sockaddr *)&req->a_host->h_addr, 460 req->a_host->h_addrlen, req->a_res.status); 461 nlmclnt_release_call(req); 462 return status; 463 } 464 465 static void nlmclnt_locks_copy_lock(struct file_lock *new, struct file_lock *fl) 466 { 467 spin_lock(&fl->fl_u.nfs_fl.owner->host->h_lock); 468 new->fl_u.nfs_fl.state = fl->fl_u.nfs_fl.state; 469 new->fl_u.nfs_fl.owner = nlmclnt_get_lockowner(fl->fl_u.nfs_fl.owner); 470 list_add_tail(&new->fl_u.nfs_fl.list, &fl->fl_u.nfs_fl.owner->host->h_granted); 471 spin_unlock(&fl->fl_u.nfs_fl.owner->host->h_lock); 472 } 473 474 static void nlmclnt_locks_release_private(struct file_lock *fl) 475 { 476 spin_lock(&fl->fl_u.nfs_fl.owner->host->h_lock); 477 list_del(&fl->fl_u.nfs_fl.list); 478 spin_unlock(&fl->fl_u.nfs_fl.owner->host->h_lock); 479 nlmclnt_put_lockowner(fl->fl_u.nfs_fl.owner); 480 } 481 482 static const struct file_lock_operations nlmclnt_lock_ops = { 483 .fl_copy_lock = nlmclnt_locks_copy_lock, 484 .fl_release_private = nlmclnt_locks_release_private, 485 }; 486 487 static void nlmclnt_locks_init_private(struct file_lock *fl, struct nlm_host *host) 488 { 489 fl->fl_u.nfs_fl.state = 0; 490 fl->fl_ops = NULL; 491 fl->fl_u.nfs_fl.owner = nlmclnt_find_lockowner(host, 492 fl->c.flc_owner); 493 INIT_LIST_HEAD(&fl->fl_u.nfs_fl.list); 494 if (!fl->fl_u.nfs_fl.owner) 495 return; 496 fl->fl_ops = &nlmclnt_lock_ops; 497 } 498 499 static int do_vfs_lock(struct file_lock *fl) 500 { 501 return locks_lock_file_wait(fl->c.flc_file, fl); 502 } 503 504 /* 505 * LOCK: Try to create a lock 506 * 507 * Programmer Harassment Alert 508 * 509 * When given a blocking lock request in a sync RPC call, the HPUX lockd 510 * will faithfully return LCK_BLOCKED but never cares to notify us when 511 * the lock could be granted. This way, our local process could hang 512 * around forever waiting for the callback. 513 * 514 * Solution A: Implement busy-waiting 515 * Solution B: Use the async version of the call (NLM_LOCK_{MSG,RES}) 516 * 517 * For now I am implementing solution A, because I hate the idea of 518 * re-implementing lockd for a third time in two months. The async 519 * calls shouldn't be too hard to do, however. 520 * 521 * This is one of the lovely things about standards in the NFS area: 522 * they're so soft and squishy you can't really blame HP for doing this. 523 */ 524 static int 525 nlmclnt_lock(struct nlm_rqst *req, struct file_lock *fl) 526 { 527 const struct cred *cred = nfs_file_cred(fl->c.flc_file); 528 struct nlm_host *host = req->a_host; 529 struct lockd_res *resp = &req->a_res; 530 struct nlm_wait block; 531 unsigned char flags = fl->c.flc_flags; 532 unsigned char type; 533 __be32 b_status; 534 int status = -ENOLCK; 535 536 if (nsm_monitor(host) < 0) 537 goto out; 538 req->a_args.state = nsm_local_state; 539 540 fl->c.flc_flags |= FL_ACCESS; 541 status = do_vfs_lock(fl); 542 fl->c.flc_flags = flags; 543 if (status < 0) 544 goto out; 545 546 nlmclnt_prepare_block(&block, host, fl); 547 again: 548 /* 549 * Initialise resp->status to a valid non-zero value, 550 * since 0 == nlm_lck_granted 551 */ 552 resp->status = nlm_lck_blocked; 553 554 /* 555 * A GRANTED callback can come at any time -- even before the reply 556 * to the LOCK request arrives, so we queue the wait before 557 * requesting the lock. 558 */ 559 nlmclnt_queue_block(&block); 560 for (;;) { 561 /* Reboot protection */ 562 fl->fl_u.nfs_fl.state = host->h_state; 563 status = nlmclnt_call(cred, req, NLMPROC_LOCK); 564 if (status < 0) 565 break; 566 /* Did a reclaimer thread notify us of a server reboot? */ 567 if (resp->status == nlm_lck_denied_grace_period) 568 continue; 569 if (resp->status != nlm_lck_blocked) 570 break; 571 /* Wait on an NLM blocking lock */ 572 status = nlmclnt_wait(&block, req, NLMCLNT_POLL_TIMEOUT); 573 if (status < 0) 574 break; 575 if (block.b_status != nlm_lck_blocked) 576 break; 577 } 578 b_status = nlmclnt_dequeue_block(&block); 579 if (resp->status == nlm_lck_blocked) 580 resp->status = b_status; 581 582 /* if we were interrupted while blocking, then cancel the lock request 583 * and exit 584 */ 585 if (resp->status == nlm_lck_blocked) { 586 if (!req->a_args.block) 587 goto out_unlock; 588 if (nlmclnt_cancel(host, req->a_args.block, fl) == 0) 589 goto out; 590 } 591 592 if (resp->status == nlm_granted) { 593 down_read(&host->h_rwsem); 594 /* Check whether or not the server has rebooted */ 595 if (fl->fl_u.nfs_fl.state != host->h_state) { 596 up_read(&host->h_rwsem); 597 goto again; 598 } 599 /* Ensure the resulting lock will get added to granted list */ 600 fl->c.flc_flags |= FL_SLEEP; 601 if (do_vfs_lock(fl) < 0) 602 printk(KERN_WARNING "%s: VFS is out of sync with lock manager!\n", __func__); 603 up_read(&host->h_rwsem); 604 fl->c.flc_flags = flags; 605 status = 0; 606 } 607 if (status < 0) 608 goto out_unlock; 609 /* 610 * EAGAIN doesn't make sense for sleeping locks, and in some 611 * cases NLM_LCK_DENIED is returned for a permanent error. So 612 * turn it into an ENOLCK. 613 */ 614 if (resp->status == nlm_lck_denied && (flags & FL_SLEEP)) 615 status = -ENOLCK; 616 else 617 status = nlm_stat_to_errno(resp->status); 618 out: 619 trace_nlmclnt_lock(&req->a_args.lock, 620 (const struct sockaddr *)&req->a_host->h_addr, 621 req->a_host->h_addrlen, req->a_res.status); 622 nlmclnt_release_call(req); 623 return status; 624 out_unlock: 625 /* Fatal error: ensure that we remove the lock altogether */ 626 trace_nlmclnt_lock(&req->a_args.lock, 627 (const struct sockaddr *)&req->a_host->h_addr, 628 req->a_host->h_addrlen, req->a_res.status); 629 dprintk("lockd: lock attempt ended in fatal error.\n" 630 " Attempting to unlock.\n"); 631 type = fl->c.flc_type; 632 fl->c.flc_type = F_UNLCK; 633 down_read(&host->h_rwsem); 634 do_vfs_lock(fl); 635 up_read(&host->h_rwsem); 636 fl->c.flc_type = type; 637 fl->c.flc_flags = flags; 638 nlmclnt_async_call(cred, req, NLMPROC_UNLOCK, &nlmclnt_unlock_ops); 639 return status; 640 } 641 642 /* 643 * RECLAIM: Try to reclaim a lock 644 */ 645 int 646 nlmclnt_reclaim(struct nlm_host *host, struct file_lock *fl, 647 struct nlm_rqst *req) 648 { 649 int status; 650 651 memset(req, 0, sizeof(*req)); 652 locks_init_lock(&req->a_args.lock.fl); 653 locks_init_lock(&req->a_res.lock.fl); 654 req->a_host = host; 655 656 /* Set up the argument struct */ 657 nlmclnt_setlockargs(req, fl); 658 req->a_args.reclaim = 1; 659 660 status = nlmclnt_call(nfs_file_cred(fl->c.flc_file), req, 661 NLMPROC_LOCK); 662 if (status >= 0 && req->a_res.status == nlm_granted) 663 return 0; 664 665 printk(KERN_WARNING "lockd: failed to reclaim lock for pid %d " 666 "(errno %d, status %d)\n", 667 fl->c.flc_pid, 668 status, ntohl(req->a_res.status)); 669 670 /* 671 * FIXME: This is a serious failure. We can 672 * 673 * a. Ignore the problem 674 * b. Send the owning process some signal (Linux doesn't have 675 * SIGLOST, though...) 676 * c. Retry the operation 677 * 678 * Until someone comes up with a simple implementation 679 * for b or c, I'll choose option a. 680 */ 681 682 return -ENOLCK; 683 } 684 685 /* 686 * UNLOCK: remove an existing lock 687 */ 688 static int 689 nlmclnt_unlock(struct nlm_rqst *req, struct file_lock *fl) 690 { 691 struct nlm_host *host = req->a_host; 692 struct lockd_res *resp = &req->a_res; 693 int status; 694 unsigned char flags = fl->c.flc_flags; 695 696 /* 697 * Note: the server is supposed to either grant us the unlock 698 * request, or to deny it with NLM_LCK_DENIED_GRACE_PERIOD. In either 699 * case, we want to unlock. 700 */ 701 fl->c.flc_flags |= FL_EXISTS; 702 down_read(&host->h_rwsem); 703 status = do_vfs_lock(fl); 704 up_read(&host->h_rwsem); 705 fl->c.flc_flags = flags; 706 if (status == -ENOENT) { 707 status = 0; 708 goto out; 709 } 710 711 refcount_inc(&req->a_count); 712 status = nlmclnt_async_call(nfs_file_cred(fl->c.flc_file), req, 713 NLMPROC_UNLOCK, &nlmclnt_unlock_ops); 714 if (status < 0) 715 goto out; 716 717 if (resp->status == nlm_granted) 718 goto out; 719 720 if (resp->status != nlm_lck_denied_nolocks) 721 printk("lockd: unexpected unlock status: %d\n", 722 ntohl(resp->status)); 723 /* What to do now? I'm out of my depth... */ 724 status = -ENOLCK; 725 out: 726 trace_nlmclnt_unlock(&req->a_args.lock, 727 (const struct sockaddr *)&req->a_host->h_addr, 728 req->a_host->h_addrlen, req->a_res.status); 729 nlmclnt_release_call(req); 730 return status; 731 } 732 733 static void nlmclnt_unlock_prepare(struct rpc_task *task, void *data) 734 { 735 struct nlm_rqst *req = data; 736 const struct nlmclnt_operations *nlmclnt_ops = req->a_host->h_nlmclnt_ops; 737 bool defer_call = false; 738 739 if (nlmclnt_ops && nlmclnt_ops->nlmclnt_unlock_prepare) 740 defer_call = nlmclnt_ops->nlmclnt_unlock_prepare(task, req->a_callback_data); 741 742 if (!defer_call) 743 rpc_call_start(task); 744 } 745 746 static void nlmclnt_unlock_callback(struct rpc_task *task, void *data) 747 { 748 struct nlm_rqst *req = data; 749 u32 status = ntohl(req->a_res.status); 750 751 if (RPC_SIGNALLED(task)) 752 goto die; 753 754 if (task->tk_status < 0) { 755 dprintk("lockd: unlock failed (err = %d)\n", -task->tk_status); 756 switch (task->tk_status) { 757 case -EACCES: 758 case -EIO: 759 goto die; 760 default: 761 goto retry_rebind; 762 } 763 } 764 if (status == NLM_LCK_DENIED_GRACE_PERIOD) { 765 rpc_delay(task, NLMCLNT_GRACE_WAIT); 766 goto retry_unlock; 767 } 768 if (status != NLM_LCK_GRANTED) 769 printk(KERN_WARNING "lockd: unexpected unlock status: %d\n", status); 770 die: 771 return; 772 retry_rebind: 773 nlm_rebind_host(req->a_host); 774 retry_unlock: 775 rpc_restart_call(task); 776 } 777 778 static const struct rpc_call_ops nlmclnt_unlock_ops = { 779 .rpc_call_prepare = nlmclnt_unlock_prepare, 780 .rpc_call_done = nlmclnt_unlock_callback, 781 .rpc_release = nlmclnt_rpc_release, 782 }; 783 784 /* 785 * Cancel a blocked lock request. 786 * We always use an async RPC call for this in order not to hang a 787 * process that has been Ctrl-C'ed. 788 */ 789 static int nlmclnt_cancel(struct nlm_host *host, int block, struct file_lock *fl) 790 { 791 struct nlm_rqst *req; 792 int status; 793 794 dprintk("lockd: blocking lock attempt was interrupted by a signal.\n" 795 " Attempting to cancel lock.\n"); 796 797 req = nlm_alloc_call(host); 798 if (!req) 799 return -ENOMEM; 800 req->a_flags = RPC_TASK_ASYNC; 801 802 nlmclnt_setlockargs(req, fl); 803 req->a_args.block = block; 804 805 refcount_inc(&req->a_count); 806 status = nlmclnt_async_call(nfs_file_cred(fl->c.flc_file), req, 807 NLMPROC_CANCEL, &nlmclnt_cancel_ops); 808 if (status == 0 && req->a_res.status == nlm_lck_denied) 809 status = -ENOLCK; 810 nlmclnt_release_call(req); 811 return status; 812 } 813 814 static void nlmclnt_cancel_callback(struct rpc_task *task, void *data) 815 { 816 struct nlm_rqst *req = data; 817 u32 status = ntohl(req->a_res.status); 818 819 if (RPC_SIGNALLED(task)) 820 goto die; 821 822 if (task->tk_status < 0) { 823 dprintk("lockd: CANCEL call error %d, retrying.\n", 824 task->tk_status); 825 goto retry_cancel; 826 } 827 828 switch (status) { 829 case NLM_LCK_GRANTED: 830 case NLM_LCK_DENIED_GRACE_PERIOD: 831 case NLM_LCK_DENIED: 832 /* Everything's good */ 833 break; 834 case NLM_LCK_DENIED_NOLOCKS: 835 dprintk("lockd: CANCEL failed (server has no locks)\n"); 836 goto retry_cancel; 837 default: 838 printk(KERN_NOTICE "lockd: weird return %d for CANCEL call\n", 839 status); 840 } 841 842 die: 843 return; 844 845 retry_cancel: 846 /* Don't ever retry more than 3 times */ 847 if (req->a_retries++ >= NLMCLNT_MAX_RETRIES) 848 goto die; 849 nlm_rebind_host(req->a_host); 850 rpc_restart_call(task); 851 rpc_delay(task, 30 * HZ); 852 } 853 854 static const struct rpc_call_ops nlmclnt_cancel_ops = { 855 .rpc_call_done = nlmclnt_cancel_callback, 856 .rpc_release = nlmclnt_rpc_release, 857 }; 858 859 /* 860 * Convert an NLM status code to a generic kernel errno 861 */ 862 static int 863 nlm_stat_to_errno(__be32 status) 864 { 865 switch(ntohl(status)) { 866 case NLM_LCK_GRANTED: 867 return 0; 868 case NLM_LCK_DENIED: 869 return -EAGAIN; 870 case NLM_LCK_DENIED_NOLOCKS: 871 case NLM_LCK_DENIED_GRACE_PERIOD: 872 return -ENOLCK; 873 case NLM_LCK_BLOCKED: 874 printk(KERN_NOTICE "lockd: unexpected status NLM_BLOCKED\n"); 875 return -ENOLCK; 876 #ifdef CONFIG_LOCKD_V4 877 case NLM_DEADLCK: 878 return -EDEADLK; 879 case NLM_ROFS: 880 return -EROFS; 881 case NLM_STALE_FH: 882 return -ESTALE; 883 case NLM_FBIG: 884 return -EOVERFLOW; 885 case NLM_FAILED: 886 return -ENOLCK; 887 #endif 888 } 889 printk(KERN_NOTICE "lockd: unexpected server status %d\n", 890 ntohl(status)); 891 return -ENOLCK; 892 } 893