1 /* 2 * linux/fs/lockd/mon.c 3 * 4 * The kernel statd client. 5 * 6 * Copyright (C) 1996, Olaf Kirch <okir@monad.swb.de> 7 */ 8 9 #include <linux/types.h> 10 #include <linux/utsname.h> 11 #include <linux/kernel.h> 12 #include <linux/ktime.h> 13 14 #include <linux/sunrpc/clnt.h> 15 #include <linux/sunrpc/xprtsock.h> 16 #include <linux/sunrpc/svc.h> 17 #include <linux/lockd/lockd.h> 18 19 #include <asm/unaligned.h> 20 21 #define NLMDBG_FACILITY NLMDBG_MONITOR 22 #define NSM_PROGRAM 100024 23 #define NSM_VERSION 1 24 25 enum { 26 NSMPROC_NULL, 27 NSMPROC_STAT, 28 NSMPROC_MON, 29 NSMPROC_UNMON, 30 NSMPROC_UNMON_ALL, 31 NSMPROC_SIMU_CRASH, 32 NSMPROC_NOTIFY, 33 }; 34 35 struct nsm_args { 36 struct nsm_private *priv; 37 u32 prog; /* RPC callback info */ 38 u32 vers; 39 u32 proc; 40 41 char *mon_name; 42 }; 43 44 struct nsm_res { 45 u32 status; 46 u32 state; 47 }; 48 49 static struct rpc_program nsm_program; 50 static LIST_HEAD(nsm_handles); 51 static DEFINE_SPINLOCK(nsm_lock); 52 53 /* 54 * Local NSM state 55 */ 56 u32 __read_mostly nsm_local_state; 57 int __read_mostly nsm_use_hostnames; 58 59 static inline struct sockaddr *nsm_addr(const struct nsm_handle *nsm) 60 { 61 return (struct sockaddr *)&nsm->sm_addr; 62 } 63 64 static void nsm_display_ipv4_address(const struct sockaddr *sap, char *buf, 65 const size_t len) 66 { 67 const struct sockaddr_in *sin = (struct sockaddr_in *)sap; 68 snprintf(buf, len, "%pI4", &sin->sin_addr.s_addr); 69 } 70 71 static void nsm_display_ipv6_address(const struct sockaddr *sap, char *buf, 72 const size_t len) 73 { 74 const struct sockaddr_in6 *sin6 = (struct sockaddr_in6 *)sap; 75 76 if (ipv6_addr_v4mapped(&sin6->sin6_addr)) 77 snprintf(buf, len, "%pI4", &sin6->sin6_addr.s6_addr32[3]); 78 else if (sin6->sin6_scope_id != 0) 79 snprintf(buf, len, "%pI6%%%u", &sin6->sin6_addr, 80 sin6->sin6_scope_id); 81 else 82 snprintf(buf, len, "%pI6", &sin6->sin6_addr); 83 } 84 85 static void nsm_display_address(const struct sockaddr *sap, 86 char *buf, const size_t len) 87 { 88 switch (sap->sa_family) { 89 case AF_INET: 90 nsm_display_ipv4_address(sap, buf, len); 91 break; 92 case AF_INET6: 93 nsm_display_ipv6_address(sap, buf, len); 94 break; 95 default: 96 snprintf(buf, len, "unsupported address family"); 97 break; 98 } 99 } 100 101 static struct rpc_clnt *nsm_create(void) 102 { 103 struct sockaddr_in sin = { 104 .sin_family = AF_INET, 105 .sin_addr.s_addr = htonl(INADDR_LOOPBACK), 106 }; 107 struct rpc_create_args args = { 108 .protocol = XPRT_TRANSPORT_UDP, 109 .address = (struct sockaddr *)&sin, 110 .addrsize = sizeof(sin), 111 .servername = "rpc.statd", 112 .program = &nsm_program, 113 .version = NSM_VERSION, 114 .authflavor = RPC_AUTH_NULL, 115 .flags = RPC_CLNT_CREATE_NOPING, 116 }; 117 118 return rpc_create(&args); 119 } 120 121 static int nsm_mon_unmon(struct nsm_handle *nsm, u32 proc, struct nsm_res *res) 122 { 123 struct rpc_clnt *clnt; 124 int status; 125 struct nsm_args args = { 126 .priv = &nsm->sm_priv, 127 .prog = NLM_PROGRAM, 128 .vers = 3, 129 .proc = NLMPROC_NSM_NOTIFY, 130 .mon_name = nsm->sm_mon_name, 131 }; 132 struct rpc_message msg = { 133 .rpc_argp = &args, 134 .rpc_resp = res, 135 }; 136 137 clnt = nsm_create(); 138 if (IS_ERR(clnt)) { 139 status = PTR_ERR(clnt); 140 dprintk("lockd: failed to create NSM upcall transport, " 141 "status=%d\n", status); 142 goto out; 143 } 144 145 memset(res, 0, sizeof(*res)); 146 147 msg.rpc_proc = &clnt->cl_procinfo[proc]; 148 status = rpc_call_sync(clnt, &msg, 0); 149 if (status < 0) 150 dprintk("lockd: NSM upcall RPC failed, status=%d\n", 151 status); 152 else 153 status = 0; 154 rpc_shutdown_client(clnt); 155 out: 156 return status; 157 } 158 159 /** 160 * nsm_monitor - Notify a peer in case we reboot 161 * @host: pointer to nlm_host of peer to notify 162 * 163 * If this peer is not already monitored, this function sends an 164 * upcall to the local rpc.statd to record the name/address of 165 * the peer to notify in case we reboot. 166 * 167 * Returns zero if the peer is monitored by the local rpc.statd; 168 * otherwise a negative errno value is returned. 169 */ 170 int nsm_monitor(const struct nlm_host *host) 171 { 172 struct nsm_handle *nsm = host->h_nsmhandle; 173 struct nsm_res res; 174 int status; 175 176 dprintk("lockd: nsm_monitor(%s)\n", nsm->sm_name); 177 178 if (nsm->sm_monitored) 179 return 0; 180 181 /* 182 * Choose whether to record the caller_name or IP address of 183 * this peer in the local rpc.statd's database. 184 */ 185 nsm->sm_mon_name = nsm_use_hostnames ? nsm->sm_name : nsm->sm_addrbuf; 186 187 status = nsm_mon_unmon(nsm, NSMPROC_MON, &res); 188 if (unlikely(res.status != 0)) 189 status = -EIO; 190 if (unlikely(status < 0)) { 191 printk(KERN_NOTICE "lockd: cannot monitor %s\n", nsm->sm_name); 192 return status; 193 } 194 195 nsm->sm_monitored = 1; 196 if (unlikely(nsm_local_state != res.state)) { 197 nsm_local_state = res.state; 198 dprintk("lockd: NSM state changed to %d\n", nsm_local_state); 199 } 200 return 0; 201 } 202 203 /** 204 * nsm_unmonitor - Unregister peer notification 205 * @host: pointer to nlm_host of peer to stop monitoring 206 * 207 * If this peer is monitored, this function sends an upcall to 208 * tell the local rpc.statd not to send this peer a notification 209 * when we reboot. 210 */ 211 void nsm_unmonitor(const struct nlm_host *host) 212 { 213 struct nsm_handle *nsm = host->h_nsmhandle; 214 struct nsm_res res; 215 int status; 216 217 if (atomic_read(&nsm->sm_count) == 1 218 && nsm->sm_monitored && !nsm->sm_sticky) { 219 dprintk("lockd: nsm_unmonitor(%s)\n", nsm->sm_name); 220 221 status = nsm_mon_unmon(nsm, NSMPROC_UNMON, &res); 222 if (res.status != 0) 223 status = -EIO; 224 if (status < 0) 225 printk(KERN_NOTICE "lockd: cannot unmonitor %s\n", 226 nsm->sm_name); 227 else 228 nsm->sm_monitored = 0; 229 } 230 } 231 232 static struct nsm_handle *nsm_lookup_hostname(const char *hostname, 233 const size_t len) 234 { 235 struct nsm_handle *nsm; 236 237 list_for_each_entry(nsm, &nsm_handles, sm_link) 238 if (strlen(nsm->sm_name) == len && 239 memcmp(nsm->sm_name, hostname, len) == 0) 240 return nsm; 241 return NULL; 242 } 243 244 static struct nsm_handle *nsm_lookup_addr(const struct sockaddr *sap) 245 { 246 struct nsm_handle *nsm; 247 248 list_for_each_entry(nsm, &nsm_handles, sm_link) 249 if (nlm_cmp_addr(nsm_addr(nsm), sap)) 250 return nsm; 251 return NULL; 252 } 253 254 static struct nsm_handle *nsm_lookup_priv(const struct nsm_private *priv) 255 { 256 struct nsm_handle *nsm; 257 258 list_for_each_entry(nsm, &nsm_handles, sm_link) 259 if (memcmp(nsm->sm_priv.data, priv->data, 260 sizeof(priv->data)) == 0) 261 return nsm; 262 return NULL; 263 } 264 265 /* 266 * Construct a unique cookie to match this nsm_handle to this monitored 267 * host. It is passed to the local rpc.statd via NSMPROC_MON, and 268 * returned via NLMPROC_SM_NOTIFY, in the "priv" field of these 269 * requests. 270 * 271 * The NSM protocol requires that these cookies be unique while the 272 * system is running. We prefer a stronger requirement of making them 273 * unique across reboots. If user space bugs cause a stale cookie to 274 * be sent to the kernel, it could cause the wrong host to lose its 275 * lock state if cookies were not unique across reboots. 276 * 277 * The cookies are exposed only to local user space via loopback. They 278 * do not appear on the physical network. If we want greater security 279 * for some reason, nsm_init_private() could perform a one-way hash to 280 * obscure the contents of the cookie. 281 */ 282 static void nsm_init_private(struct nsm_handle *nsm) 283 { 284 u64 *p = (u64 *)&nsm->sm_priv.data; 285 struct timespec ts; 286 s64 ns; 287 288 ktime_get_ts(&ts); 289 ns = timespec_to_ns(&ts); 290 put_unaligned(ns, p); 291 put_unaligned((unsigned long)nsm, p + 1); 292 } 293 294 static struct nsm_handle *nsm_create_handle(const struct sockaddr *sap, 295 const size_t salen, 296 const char *hostname, 297 const size_t hostname_len) 298 { 299 struct nsm_handle *new; 300 301 new = kzalloc(sizeof(*new) + hostname_len + 1, GFP_KERNEL); 302 if (unlikely(new == NULL)) 303 return NULL; 304 305 atomic_set(&new->sm_count, 1); 306 new->sm_name = (char *)(new + 1); 307 memcpy(nsm_addr(new), sap, salen); 308 new->sm_addrlen = salen; 309 nsm_init_private(new); 310 nsm_display_address((const struct sockaddr *)&new->sm_addr, 311 new->sm_addrbuf, sizeof(new->sm_addrbuf)); 312 memcpy(new->sm_name, hostname, hostname_len); 313 new->sm_name[hostname_len] = '\0'; 314 315 return new; 316 } 317 318 /** 319 * nsm_get_handle - Find or create a cached nsm_handle 320 * @sap: pointer to socket address of handle to find 321 * @salen: length of socket address 322 * @hostname: pointer to C string containing hostname to find 323 * @hostname_len: length of C string 324 * 325 * Behavior is modulated by the global nsm_use_hostnames variable. 326 * 327 * Returns a cached nsm_handle after bumping its ref count, or 328 * returns a fresh nsm_handle if a handle that matches @sap and/or 329 * @hostname cannot be found in the handle cache. Returns NULL if 330 * an error occurs. 331 */ 332 struct nsm_handle *nsm_get_handle(const struct sockaddr *sap, 333 const size_t salen, const char *hostname, 334 const size_t hostname_len) 335 { 336 struct nsm_handle *cached, *new = NULL; 337 338 if (hostname && memchr(hostname, '/', hostname_len) != NULL) { 339 if (printk_ratelimit()) { 340 printk(KERN_WARNING "Invalid hostname \"%.*s\" " 341 "in NFS lock request\n", 342 (int)hostname_len, hostname); 343 } 344 return NULL; 345 } 346 347 retry: 348 spin_lock(&nsm_lock); 349 350 if (nsm_use_hostnames && hostname != NULL) 351 cached = nsm_lookup_hostname(hostname, hostname_len); 352 else 353 cached = nsm_lookup_addr(sap); 354 355 if (cached != NULL) { 356 atomic_inc(&cached->sm_count); 357 spin_unlock(&nsm_lock); 358 kfree(new); 359 dprintk("lockd: found nsm_handle for %s (%s), " 360 "cnt %d\n", cached->sm_name, 361 cached->sm_addrbuf, 362 atomic_read(&cached->sm_count)); 363 return cached; 364 } 365 366 if (new != NULL) { 367 list_add(&new->sm_link, &nsm_handles); 368 spin_unlock(&nsm_lock); 369 dprintk("lockd: created nsm_handle for %s (%s)\n", 370 new->sm_name, new->sm_addrbuf); 371 return new; 372 } 373 374 spin_unlock(&nsm_lock); 375 376 new = nsm_create_handle(sap, salen, hostname, hostname_len); 377 if (unlikely(new == NULL)) 378 return NULL; 379 goto retry; 380 } 381 382 /** 383 * nsm_reboot_lookup - match NLMPROC_SM_NOTIFY arguments to an nsm_handle 384 * @info: pointer to NLMPROC_SM_NOTIFY arguments 385 * 386 * Returns a matching nsm_handle if found in the nsm cache; the returned 387 * nsm_handle's reference count is bumped and sm_monitored is cleared. 388 * Otherwise returns NULL if some error occurred. 389 */ 390 struct nsm_handle *nsm_reboot_lookup(const struct nlm_reboot *info) 391 { 392 struct nsm_handle *cached; 393 394 spin_lock(&nsm_lock); 395 396 cached = nsm_lookup_priv(&info->priv); 397 if (unlikely(cached == NULL)) { 398 spin_unlock(&nsm_lock); 399 dprintk("lockd: never saw rebooted peer '%.*s' before\n", 400 info->len, info->mon); 401 return cached; 402 } 403 404 atomic_inc(&cached->sm_count); 405 spin_unlock(&nsm_lock); 406 407 /* 408 * During subsequent lock activity, force a fresh 409 * notification to be set up for this host. 410 */ 411 cached->sm_monitored = 0; 412 413 dprintk("lockd: host %s (%s) rebooted, cnt %d\n", 414 cached->sm_name, cached->sm_addrbuf, 415 atomic_read(&cached->sm_count)); 416 return cached; 417 } 418 419 /** 420 * nsm_release - Release an NSM handle 421 * @nsm: pointer to handle to be released 422 * 423 */ 424 void nsm_release(struct nsm_handle *nsm) 425 { 426 if (atomic_dec_and_lock(&nsm->sm_count, &nsm_lock)) { 427 list_del(&nsm->sm_link); 428 spin_unlock(&nsm_lock); 429 dprintk("lockd: destroyed nsm_handle for %s (%s)\n", 430 nsm->sm_name, nsm->sm_addrbuf); 431 kfree(nsm); 432 } 433 } 434 435 /* 436 * XDR functions for NSM. 437 * 438 * See http://www.opengroup.org/ for details on the Network 439 * Status Monitor wire protocol. 440 */ 441 442 static int encode_nsm_string(struct xdr_stream *xdr, const char *string) 443 { 444 const u32 len = strlen(string); 445 __be32 *p; 446 447 if (unlikely(len > SM_MAXSTRLEN)) 448 return -EIO; 449 p = xdr_reserve_space(xdr, sizeof(u32) + len); 450 if (unlikely(p == NULL)) 451 return -EIO; 452 xdr_encode_opaque(p, string, len); 453 return 0; 454 } 455 456 /* 457 * "mon_name" specifies the host to be monitored. 458 */ 459 static int encode_mon_name(struct xdr_stream *xdr, const struct nsm_args *argp) 460 { 461 return encode_nsm_string(xdr, argp->mon_name); 462 } 463 464 /* 465 * The "my_id" argument specifies the hostname and RPC procedure 466 * to be called when the status manager receives notification 467 * (via the NLMPROC_SM_NOTIFY call) that the state of host "mon_name" 468 * has changed. 469 */ 470 static int encode_my_id(struct xdr_stream *xdr, const struct nsm_args *argp) 471 { 472 int status; 473 __be32 *p; 474 475 status = encode_nsm_string(xdr, utsname()->nodename); 476 if (unlikely(status != 0)) 477 return status; 478 p = xdr_reserve_space(xdr, 3 * sizeof(u32)); 479 if (unlikely(p == NULL)) 480 return -EIO; 481 *p++ = htonl(argp->prog); 482 *p++ = htonl(argp->vers); 483 *p++ = htonl(argp->proc); 484 return 0; 485 } 486 487 /* 488 * The "mon_id" argument specifies the non-private arguments 489 * of an NSMPROC_MON or NSMPROC_UNMON call. 490 */ 491 static int encode_mon_id(struct xdr_stream *xdr, const struct nsm_args *argp) 492 { 493 int status; 494 495 status = encode_mon_name(xdr, argp); 496 if (unlikely(status != 0)) 497 return status; 498 return encode_my_id(xdr, argp); 499 } 500 501 /* 502 * The "priv" argument may contain private information required 503 * by the NSMPROC_MON call. This information will be supplied in the 504 * NLMPROC_SM_NOTIFY call. 505 */ 506 static int encode_priv(struct xdr_stream *xdr, const struct nsm_args *argp) 507 { 508 __be32 *p; 509 510 p = xdr_reserve_space(xdr, SM_PRIV_SIZE); 511 if (unlikely(p == NULL)) 512 return -EIO; 513 xdr_encode_opaque_fixed(p, argp->priv->data, SM_PRIV_SIZE); 514 return 0; 515 } 516 517 static int xdr_enc_mon(struct rpc_rqst *req, __be32 *p, 518 const struct nsm_args *argp) 519 { 520 struct xdr_stream xdr; 521 int status; 522 523 xdr_init_encode(&xdr, &req->rq_snd_buf, p); 524 status = encode_mon_id(&xdr, argp); 525 if (unlikely(status)) 526 return status; 527 return encode_priv(&xdr, argp); 528 } 529 530 static int xdr_enc_unmon(struct rpc_rqst *req, __be32 *p, 531 const struct nsm_args *argp) 532 { 533 struct xdr_stream xdr; 534 535 xdr_init_encode(&xdr, &req->rq_snd_buf, p); 536 return encode_mon_id(&xdr, argp); 537 } 538 539 static int xdr_dec_stat_res(struct rpc_rqst *rqstp, __be32 *p, 540 struct nsm_res *resp) 541 { 542 struct xdr_stream xdr; 543 544 xdr_init_decode(&xdr, &rqstp->rq_rcv_buf, p); 545 p = xdr_inline_decode(&xdr, 2 * sizeof(u32)); 546 if (unlikely(p == NULL)) 547 return -EIO; 548 resp->status = ntohl(*p++); 549 resp->state = ntohl(*p); 550 551 dprintk("lockd: xdr_dec_stat_res status %d state %d\n", 552 resp->status, resp->state); 553 return 0; 554 } 555 556 static int xdr_dec_stat(struct rpc_rqst *rqstp, __be32 *p, 557 struct nsm_res *resp) 558 { 559 struct xdr_stream xdr; 560 561 xdr_init_decode(&xdr, &rqstp->rq_rcv_buf, p); 562 p = xdr_inline_decode(&xdr, sizeof(u32)); 563 if (unlikely(p == NULL)) 564 return -EIO; 565 resp->state = ntohl(*p); 566 567 dprintk("lockd: xdr_dec_stat state %d\n", resp->state); 568 return 0; 569 } 570 571 #define SM_my_name_sz (1+XDR_QUADLEN(SM_MAXSTRLEN)) 572 #define SM_my_id_sz (SM_my_name_sz+3) 573 #define SM_mon_name_sz (1+XDR_QUADLEN(SM_MAXSTRLEN)) 574 #define SM_mon_id_sz (SM_mon_name_sz+SM_my_id_sz) 575 #define SM_priv_sz (XDR_QUADLEN(SM_PRIV_SIZE)) 576 #define SM_mon_sz (SM_mon_id_sz+SM_priv_sz) 577 #define SM_monres_sz 2 578 #define SM_unmonres_sz 1 579 580 static struct rpc_procinfo nsm_procedures[] = { 581 [NSMPROC_MON] = { 582 .p_proc = NSMPROC_MON, 583 .p_encode = (kxdrproc_t)xdr_enc_mon, 584 .p_decode = (kxdrproc_t)xdr_dec_stat_res, 585 .p_arglen = SM_mon_sz, 586 .p_replen = SM_monres_sz, 587 .p_statidx = NSMPROC_MON, 588 .p_name = "MONITOR", 589 }, 590 [NSMPROC_UNMON] = { 591 .p_proc = NSMPROC_UNMON, 592 .p_encode = (kxdrproc_t)xdr_enc_unmon, 593 .p_decode = (kxdrproc_t)xdr_dec_stat, 594 .p_arglen = SM_mon_id_sz, 595 .p_replen = SM_unmonres_sz, 596 .p_statidx = NSMPROC_UNMON, 597 .p_name = "UNMONITOR", 598 }, 599 }; 600 601 static struct rpc_version nsm_version1 = { 602 .number = 1, 603 .nrprocs = ARRAY_SIZE(nsm_procedures), 604 .procs = nsm_procedures 605 }; 606 607 static struct rpc_version * nsm_version[] = { 608 [1] = &nsm_version1, 609 }; 610 611 static struct rpc_stat nsm_stats; 612 613 static struct rpc_program nsm_program = { 614 .name = "statd", 615 .number = NSM_PROGRAM, 616 .nrvers = ARRAY_SIZE(nsm_version), 617 .version = nsm_version, 618 .stats = &nsm_stats 619 }; 620