1 /****************************************************************************** 2 * xenbus_xs.c 3 * 4 * This is the kernel equivalent of the "xs" library. We don't need everything 5 * and we use xenbus_comms for communication. 6 * 7 * Copyright (C) 2005 Rusty Russell, IBM Corporation 8 * 9 * This program is free software; you can redistribute it and/or 10 * modify it under the terms of the GNU General Public License version 2 11 * as published by the Free Software Foundation; or, when distributed 12 * separately from the Linux kernel or incorporated into other 13 * software packages, subject to the following license: 14 * 15 * Permission is hereby granted, free of charge, to any person obtaining a copy 16 * of this source file (the "Software"), to deal in the Software without 17 * restriction, including without limitation the rights to use, copy, modify, 18 * merge, publish, distribute, sublicense, and/or sell copies of the Software, 19 * and to permit persons to whom the Software is furnished to do so, subject to 20 * the following conditions: 21 * 22 * The above copyright notice and this permission notice shall be included in 23 * all copies or substantial portions of the Software. 24 * 25 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR 26 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, 27 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE 28 * AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER 29 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING 30 * FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS 31 * IN THE SOFTWARE. 32 */ 33 34 #define pr_fmt(fmt) KBUILD_MODNAME ": " fmt 35 36 #include <linux/unistd.h> 37 #include <linux/errno.h> 38 #include <linux/types.h> 39 #include <linux/uio.h> 40 #include <linux/kernel.h> 41 #include <linux/string.h> 42 #include <linux/err.h> 43 #include <linux/slab.h> 44 #include <linux/fcntl.h> 45 #include <linux/kthread.h> 46 #include <linux/reboot.h> 47 #include <linux/rwsem.h> 48 #include <linux/mutex.h> 49 #include <asm/xen/hypervisor.h> 50 #include <xen/xenbus.h> 51 #include <xen/xen.h> 52 #include "xenbus.h" 53 54 /* 55 * Framework to protect suspend/resume handling against normal Xenstore 56 * message handling: 57 * During suspend/resume there must be no open transaction and no pending 58 * Xenstore request. 59 * New watch events happening in this time can be ignored by firing all watches 60 * after resume. 61 */ 62 63 /* Lock protecting enter/exit critical region. */ 64 static DEFINE_SPINLOCK(xs_state_lock); 65 /* Number of users in critical region (protected by xs_state_lock). */ 66 static unsigned int xs_state_users; 67 /* Suspend handler waiting or already active (protected by xs_state_lock)? */ 68 static int xs_suspend_active; 69 /* Unique Xenstore request id (protected by xs_state_lock). */ 70 static uint32_t xs_request_id; 71 72 /* Wait queue for all callers waiting for critical region to become usable. */ 73 static DECLARE_WAIT_QUEUE_HEAD(xs_state_enter_wq); 74 /* Wait queue for suspend handling waiting for critical region being empty. */ 75 static DECLARE_WAIT_QUEUE_HEAD(xs_state_exit_wq); 76 77 /* List of registered watches, and a lock to protect it. */ 78 static LIST_HEAD(watches); 79 static DEFINE_SPINLOCK(watches_lock); 80 81 /* List of pending watch callback events, and a lock to protect it. */ 82 static LIST_HEAD(watch_events); 83 static DEFINE_SPINLOCK(watch_events_lock); 84 85 /* Protect watch (de)register against save/restore. */ 86 static DECLARE_RWSEM(xs_watch_rwsem); 87 88 /* 89 * Details of the xenwatch callback kernel thread. The thread waits on the 90 * watch_events_waitq for work to do (queued on watch_events list). When it 91 * wakes up it acquires the xenwatch_mutex before reading the list and 92 * carrying out work. 93 */ 94 static pid_t xenwatch_pid; 95 static DEFINE_MUTEX(xenwatch_mutex); 96 static DECLARE_WAIT_QUEUE_HEAD(watch_events_waitq); 97 98 static void xs_suspend_enter(void) 99 { 100 spin_lock(&xs_state_lock); 101 xs_suspend_active++; 102 spin_unlock(&xs_state_lock); 103 wait_event(xs_state_exit_wq, xs_state_users == 0); 104 } 105 106 static void xs_suspend_exit(void) 107 { 108 xb_dev_generation_id++; 109 spin_lock(&xs_state_lock); 110 xs_suspend_active--; 111 spin_unlock(&xs_state_lock); 112 wake_up_all(&xs_state_enter_wq); 113 } 114 115 void xs_free_req(struct kref *kref) 116 { 117 struct xb_req_data *req = container_of(kref, struct xb_req_data, kref); 118 kfree(req); 119 } 120 121 static uint32_t xs_request_enter(struct xb_req_data *req) 122 { 123 uint32_t rq_id; 124 125 req->type = req->msg.type; 126 127 spin_lock(&xs_state_lock); 128 129 while (!xs_state_users && xs_suspend_active) { 130 spin_unlock(&xs_state_lock); 131 wait_event(xs_state_enter_wq, xs_suspend_active == 0); 132 spin_lock(&xs_state_lock); 133 } 134 135 if (req->type == XS_TRANSACTION_START && !req->user_req) 136 xs_state_users++; 137 xs_state_users++; 138 rq_id = xs_request_id++; 139 140 spin_unlock(&xs_state_lock); 141 142 return rq_id; 143 } 144 145 void xs_request_exit(struct xb_req_data *req) 146 { 147 spin_lock(&xs_state_lock); 148 xs_state_users--; 149 if ((req->type == XS_TRANSACTION_START && req->msg.type == XS_ERROR) || 150 (req->type == XS_TRANSACTION_END && !req->user_req && 151 !WARN_ON_ONCE(req->msg.type == XS_ERROR && 152 !strcmp(req->body, "ENOENT")))) 153 xs_state_users--; 154 spin_unlock(&xs_state_lock); 155 156 if (xs_suspend_active && !xs_state_users) 157 wake_up(&xs_state_exit_wq); 158 } 159 160 static int get_error(const char *errorstring) 161 { 162 unsigned int i; 163 164 for (i = 0; strcmp(errorstring, xsd_errors[i].errstring) != 0; i++) { 165 if (i == ARRAY_SIZE(xsd_errors) - 1) { 166 pr_warn("xen store gave: unknown error %s\n", 167 errorstring); 168 return EINVAL; 169 } 170 } 171 return xsd_errors[i].errnum; 172 } 173 174 static bool xenbus_ok(void) 175 { 176 switch (xen_store_domain_type) { 177 case XS_LOCAL: 178 switch (system_state) { 179 case SYSTEM_POWER_OFF: 180 case SYSTEM_RESTART: 181 case SYSTEM_HALT: 182 return false; 183 default: 184 break; 185 } 186 return true; 187 case XS_PV: 188 case XS_HVM: 189 /* FIXME: Could check that the remote domain is alive, 190 * but it is normally initial domain. */ 191 return true; 192 default: 193 break; 194 } 195 return false; 196 } 197 198 static bool test_reply(struct xb_req_data *req) 199 { 200 if (req->state == xb_req_state_got_reply || !xenbus_ok()) { 201 /* read req->state before all other fields */ 202 virt_rmb(); 203 return true; 204 } 205 206 /* Make sure to reread req->state each time. */ 207 barrier(); 208 209 return false; 210 } 211 212 static void *read_reply(struct xb_req_data *req) 213 { 214 do { 215 wait_event(req->wq, test_reply(req)); 216 217 if (!xenbus_ok()) 218 /* 219 * If we are in the process of being shut-down there is 220 * no point of trying to contact XenBus - it is either 221 * killed (xenstored application) or the other domain 222 * has been killed or is unreachable. 223 */ 224 return ERR_PTR(-EIO); 225 if (req->err) 226 return ERR_PTR(req->err); 227 228 } while (req->state != xb_req_state_got_reply); 229 230 return req->body; 231 } 232 233 static void xs_send(struct xb_req_data *req, struct xsd_sockmsg *msg) 234 { 235 bool notify; 236 237 req->msg = *msg; 238 req->err = 0; 239 req->state = xb_req_state_queued; 240 init_waitqueue_head(&req->wq); 241 242 /* Save the caller req_id and restore it later in the reply */ 243 req->caller_req_id = req->msg.req_id; 244 req->msg.req_id = xs_request_enter(req); 245 246 /* 247 * Take 2nd ref. One for this thread, and the second for the 248 * xenbus_thread. 249 */ 250 kref_get(&req->kref); 251 252 mutex_lock(&xb_write_mutex); 253 list_add_tail(&req->list, &xb_write_list); 254 notify = list_is_singular(&xb_write_list); 255 mutex_unlock(&xb_write_mutex); 256 257 if (notify) 258 wake_up(&xb_waitq); 259 } 260 261 static void *xs_wait_for_reply(struct xb_req_data *req, struct xsd_sockmsg *msg) 262 { 263 void *ret; 264 265 ret = read_reply(req); 266 267 xs_request_exit(req); 268 269 msg->type = req->msg.type; 270 msg->len = req->msg.len; 271 272 mutex_lock(&xb_write_mutex); 273 if (req->state == xb_req_state_queued || 274 req->state == xb_req_state_wait_reply) 275 req->state = xb_req_state_aborted; 276 277 kref_put(&req->kref, xs_free_req); 278 mutex_unlock(&xb_write_mutex); 279 280 return ret; 281 } 282 283 static void xs_wake_up(struct xb_req_data *req) 284 { 285 wake_up(&req->wq); 286 } 287 288 int xenbus_dev_request_and_reply(struct xsd_sockmsg *msg, void *par) 289 { 290 struct xb_req_data *req; 291 struct kvec *vec; 292 293 req = kmalloc(sizeof(*req) + sizeof(*vec), GFP_KERNEL); 294 if (!req) 295 return -ENOMEM; 296 297 vec = (struct kvec *)(req + 1); 298 vec->iov_len = msg->len; 299 vec->iov_base = msg + 1; 300 301 req->vec = vec; 302 req->num_vecs = 1; 303 req->cb = xenbus_dev_queue_reply; 304 req->par = par; 305 req->user_req = true; 306 kref_init(&req->kref); 307 308 xs_send(req, msg); 309 310 return 0; 311 } 312 EXPORT_SYMBOL(xenbus_dev_request_and_reply); 313 314 /* Send message to xs, get kmalloc'ed reply. ERR_PTR() on error. */ 315 static void *xs_talkv(struct xenbus_transaction t, 316 enum xsd_sockmsg_type type, 317 const struct kvec *iovec, 318 unsigned int num_vecs, 319 unsigned int *len) 320 { 321 struct xb_req_data *req; 322 struct xsd_sockmsg msg; 323 void *ret = NULL; 324 unsigned int i; 325 int err; 326 327 req = kmalloc(sizeof(*req), GFP_NOIO | __GFP_HIGH); 328 if (!req) 329 return ERR_PTR(-ENOMEM); 330 331 req->vec = iovec; 332 req->num_vecs = num_vecs; 333 req->cb = xs_wake_up; 334 req->user_req = false; 335 kref_init(&req->kref); 336 337 msg.req_id = 0; 338 msg.tx_id = t.id; 339 msg.type = type; 340 msg.len = 0; 341 for (i = 0; i < num_vecs; i++) 342 msg.len += iovec[i].iov_len; 343 344 xs_send(req, &msg); 345 346 ret = xs_wait_for_reply(req, &msg); 347 if (len) 348 *len = msg.len; 349 350 if (IS_ERR(ret)) 351 return ret; 352 353 if (msg.type == XS_ERROR) { 354 err = get_error(ret); 355 kfree(ret); 356 return ERR_PTR(-err); 357 } 358 359 if (msg.type != type) { 360 pr_warn_ratelimited("unexpected type [%d], expected [%d]\n", 361 msg.type, type); 362 kfree(ret); 363 return ERR_PTR(-EINVAL); 364 } 365 return ret; 366 } 367 368 /* Simplified version of xs_talkv: single message. */ 369 static void *xs_single(struct xenbus_transaction t, 370 enum xsd_sockmsg_type type, 371 const char *string, 372 unsigned int *len) 373 { 374 struct kvec iovec; 375 376 iovec.iov_base = (void *)string; 377 iovec.iov_len = strlen(string) + 1; 378 return xs_talkv(t, type, &iovec, 1, len); 379 } 380 381 /* Many commands only need an ack, don't care what it says. */ 382 static int xs_error(char *reply) 383 { 384 if (IS_ERR(reply)) 385 return PTR_ERR(reply); 386 kfree(reply); 387 return 0; 388 } 389 390 static unsigned int count_strings(const char *strings, unsigned int len) 391 { 392 unsigned int num; 393 const char *p; 394 395 for (p = strings, num = 0; p < strings + len; p += strlen(p) + 1) 396 num++; 397 398 return num; 399 } 400 401 /* Return the path to dir with /name appended. Buffer must be kfree()'ed. */ 402 static char *join(const char *dir, const char *name) 403 { 404 char *buffer; 405 406 if (strlen(name) == 0) 407 buffer = kasprintf(GFP_NOIO | __GFP_HIGH, "%s", dir); 408 else 409 buffer = kasprintf(GFP_NOIO | __GFP_HIGH, "%s/%s", dir, name); 410 return (!buffer) ? ERR_PTR(-ENOMEM) : buffer; 411 } 412 413 static char **split(char *strings, unsigned int len, unsigned int *num) 414 { 415 char *p, **ret; 416 417 /* Count the strings. */ 418 *num = count_strings(strings, len); 419 420 /* Transfer to one big alloc for easy freeing. */ 421 ret = kmalloc(*num * sizeof(char *) + len, GFP_NOIO | __GFP_HIGH); 422 if (!ret) { 423 kfree(strings); 424 return ERR_PTR(-ENOMEM); 425 } 426 memcpy(&ret[*num], strings, len); 427 kfree(strings); 428 429 strings = (char *)&ret[*num]; 430 for (p = strings, *num = 0; p < strings + len; p += strlen(p) + 1) 431 ret[(*num)++] = p; 432 433 return ret; 434 } 435 436 char **xenbus_directory(struct xenbus_transaction t, 437 const char *dir, const char *node, unsigned int *num) 438 { 439 char *strings, *path; 440 unsigned int len; 441 442 path = join(dir, node); 443 if (IS_ERR(path)) 444 return ERR_CAST(path); 445 446 strings = xs_single(t, XS_DIRECTORY, path, &len); 447 kfree(path); 448 if (IS_ERR(strings)) 449 return ERR_CAST(strings); 450 451 return split(strings, len, num); 452 } 453 EXPORT_SYMBOL_GPL(xenbus_directory); 454 455 /* Check if a path exists. Return 1 if it does. */ 456 int xenbus_exists(struct xenbus_transaction t, 457 const char *dir, const char *node) 458 { 459 char **d; 460 int dir_n; 461 462 d = xenbus_directory(t, dir, node, &dir_n); 463 if (IS_ERR(d)) 464 return 0; 465 kfree(d); 466 return 1; 467 } 468 EXPORT_SYMBOL_GPL(xenbus_exists); 469 470 /* Get the value of a single file. 471 * Returns a kmalloced value: call free() on it after use. 472 * len indicates length in bytes. 473 */ 474 void *xenbus_read(struct xenbus_transaction t, 475 const char *dir, const char *node, unsigned int *len) 476 { 477 char *path; 478 void *ret; 479 480 path = join(dir, node); 481 if (IS_ERR(path)) 482 return ERR_CAST(path); 483 484 ret = xs_single(t, XS_READ, path, len); 485 kfree(path); 486 return ret; 487 } 488 EXPORT_SYMBOL_GPL(xenbus_read); 489 490 /* Write the value of a single file. 491 * Returns -err on failure. 492 */ 493 int xenbus_write(struct xenbus_transaction t, 494 const char *dir, const char *node, const char *string) 495 { 496 const char *path; 497 struct kvec iovec[2]; 498 int ret; 499 500 path = join(dir, node); 501 if (IS_ERR(path)) 502 return PTR_ERR(path); 503 504 iovec[0].iov_base = (void *)path; 505 iovec[0].iov_len = strlen(path) + 1; 506 iovec[1].iov_base = (void *)string; 507 iovec[1].iov_len = strlen(string); 508 509 ret = xs_error(xs_talkv(t, XS_WRITE, iovec, ARRAY_SIZE(iovec), NULL)); 510 kfree(path); 511 return ret; 512 } 513 EXPORT_SYMBOL_GPL(xenbus_write); 514 515 /* Destroy a file or directory (directories must be empty). */ 516 int xenbus_rm(struct xenbus_transaction t, const char *dir, const char *node) 517 { 518 char *path; 519 int ret; 520 521 path = join(dir, node); 522 if (IS_ERR(path)) 523 return PTR_ERR(path); 524 525 ret = xs_error(xs_single(t, XS_RM, path, NULL)); 526 kfree(path); 527 return ret; 528 } 529 EXPORT_SYMBOL_GPL(xenbus_rm); 530 531 /* Start a transaction: changes by others will not be seen during this 532 * transaction, and changes will not be visible to others until end. 533 */ 534 int xenbus_transaction_start(struct xenbus_transaction *t) 535 { 536 char *id_str; 537 538 id_str = xs_single(XBT_NIL, XS_TRANSACTION_START, "", NULL); 539 if (IS_ERR(id_str)) 540 return PTR_ERR(id_str); 541 542 t->id = simple_strtoul(id_str, NULL, 0); 543 kfree(id_str); 544 return 0; 545 } 546 EXPORT_SYMBOL_GPL(xenbus_transaction_start); 547 548 /* End a transaction. 549 * If abandon is true, transaction is discarded instead of committed. 550 */ 551 int xenbus_transaction_end(struct xenbus_transaction t, int abort) 552 { 553 char abortstr[2]; 554 555 if (abort) 556 strcpy(abortstr, "F"); 557 else 558 strcpy(abortstr, "T"); 559 560 return xs_error(xs_single(t, XS_TRANSACTION_END, abortstr, NULL)); 561 } 562 EXPORT_SYMBOL_GPL(xenbus_transaction_end); 563 564 /* Single read and scanf: returns -errno or num scanned. */ 565 int xenbus_scanf(struct xenbus_transaction t, 566 const char *dir, const char *node, const char *fmt, ...) 567 { 568 va_list ap; 569 int ret; 570 char *val; 571 572 val = xenbus_read(t, dir, node, NULL); 573 if (IS_ERR(val)) 574 return PTR_ERR(val); 575 576 va_start(ap, fmt); 577 ret = vsscanf(val, fmt, ap); 578 va_end(ap); 579 kfree(val); 580 /* Distinctive errno. */ 581 if (ret == 0) 582 return -ERANGE; 583 return ret; 584 } 585 EXPORT_SYMBOL_GPL(xenbus_scanf); 586 587 /* Read an (optional) unsigned value. */ 588 unsigned int xenbus_read_unsigned(const char *dir, const char *node, 589 unsigned int default_val) 590 { 591 unsigned int val; 592 int ret; 593 594 ret = xenbus_scanf(XBT_NIL, dir, node, "%u", &val); 595 if (ret <= 0) 596 val = default_val; 597 598 return val; 599 } 600 EXPORT_SYMBOL_GPL(xenbus_read_unsigned); 601 602 /* Single printf and write: returns -errno or 0. */ 603 int xenbus_printf(struct xenbus_transaction t, 604 const char *dir, const char *node, const char *fmt, ...) 605 { 606 va_list ap; 607 int ret; 608 char *buf; 609 610 va_start(ap, fmt); 611 buf = kvasprintf(GFP_NOIO | __GFP_HIGH, fmt, ap); 612 va_end(ap); 613 614 if (!buf) 615 return -ENOMEM; 616 617 ret = xenbus_write(t, dir, node, buf); 618 619 kfree(buf); 620 621 return ret; 622 } 623 EXPORT_SYMBOL_GPL(xenbus_printf); 624 625 /* Takes tuples of names, scanf-style args, and void **, NULL terminated. */ 626 int xenbus_gather(struct xenbus_transaction t, const char *dir, ...) 627 { 628 va_list ap; 629 const char *name; 630 int ret = 0; 631 632 va_start(ap, dir); 633 while (ret == 0 && (name = va_arg(ap, char *)) != NULL) { 634 const char *fmt = va_arg(ap, char *); 635 void *result = va_arg(ap, void *); 636 char *p; 637 638 p = xenbus_read(t, dir, name, NULL); 639 if (IS_ERR(p)) { 640 ret = PTR_ERR(p); 641 break; 642 } 643 if (fmt) { 644 if (sscanf(p, fmt, result) == 0) 645 ret = -EINVAL; 646 kfree(p); 647 } else 648 *(char **)result = p; 649 } 650 va_end(ap); 651 return ret; 652 } 653 EXPORT_SYMBOL_GPL(xenbus_gather); 654 655 static int xs_watch(const char *path, const char *token) 656 { 657 struct kvec iov[2]; 658 659 iov[0].iov_base = (void *)path; 660 iov[0].iov_len = strlen(path) + 1; 661 iov[1].iov_base = (void *)token; 662 iov[1].iov_len = strlen(token) + 1; 663 664 return xs_error(xs_talkv(XBT_NIL, XS_WATCH, iov, 665 ARRAY_SIZE(iov), NULL)); 666 } 667 668 static int xs_unwatch(const char *path, const char *token) 669 { 670 struct kvec iov[2]; 671 672 iov[0].iov_base = (char *)path; 673 iov[0].iov_len = strlen(path) + 1; 674 iov[1].iov_base = (char *)token; 675 iov[1].iov_len = strlen(token) + 1; 676 677 return xs_error(xs_talkv(XBT_NIL, XS_UNWATCH, iov, 678 ARRAY_SIZE(iov), NULL)); 679 } 680 681 static struct xenbus_watch *find_watch(const char *token) 682 { 683 struct xenbus_watch *i, *cmp; 684 685 cmp = (void *)simple_strtoul(token, NULL, 16); 686 687 list_for_each_entry(i, &watches, list) 688 if (i == cmp) 689 return i; 690 691 return NULL; 692 } 693 694 int xs_watch_msg(struct xs_watch_event *event) 695 { 696 if (count_strings(event->body, event->len) != 2) { 697 kfree(event); 698 return -EINVAL; 699 } 700 event->path = (const char *)event->body; 701 event->token = (const char *)strchr(event->body, '\0') + 1; 702 703 spin_lock(&watches_lock); 704 event->handle = find_watch(event->token); 705 if (event->handle != NULL && 706 (!event->handle->will_handle || 707 event->handle->will_handle(event->handle, 708 event->path, event->token))) { 709 spin_lock(&watch_events_lock); 710 list_add_tail(&event->list, &watch_events); 711 event->handle->nr_pending++; 712 wake_up(&watch_events_waitq); 713 spin_unlock(&watch_events_lock); 714 } else 715 kfree(event); 716 spin_unlock(&watches_lock); 717 718 return 0; 719 } 720 721 /* 722 * Certain older XenBus toolstack cannot handle reading values that are 723 * not populated. Some Xen 3.4 installation are incapable of doing this 724 * so if we are running on anything older than 4 do not attempt to read 725 * control/platform-feature-xs_reset_watches. 726 */ 727 static bool xen_strict_xenbus_quirk(void) 728 { 729 #ifdef CONFIG_X86 730 uint32_t eax, ebx, ecx, edx, base; 731 732 base = xen_cpuid_base(); 733 cpuid(base + 1, &eax, &ebx, &ecx, &edx); 734 735 if ((eax >> 16) < 4) 736 return true; 737 #endif 738 return false; 739 740 } 741 static void xs_reset_watches(void) 742 { 743 int err; 744 745 if (!xen_hvm_domain() || xen_initial_domain()) 746 return; 747 748 if (xen_strict_xenbus_quirk()) 749 return; 750 751 if (!xenbus_read_unsigned("control", 752 "platform-feature-xs_reset_watches", 0)) 753 return; 754 755 err = xs_error(xs_single(XBT_NIL, XS_RESET_WATCHES, "", NULL)); 756 if (err && err != -EEXIST) 757 pr_warn("xs_reset_watches failed: %d\n", err); 758 } 759 760 /* Register callback to watch this node. */ 761 int register_xenbus_watch(struct xenbus_watch *watch) 762 { 763 /* Pointer in ascii is the token. */ 764 char token[sizeof(watch) * 2 + 1]; 765 int err; 766 767 sprintf(token, "%lX", (long)watch); 768 769 watch->nr_pending = 0; 770 771 down_read(&xs_watch_rwsem); 772 773 spin_lock(&watches_lock); 774 BUG_ON(find_watch(token)); 775 list_add(&watch->list, &watches); 776 spin_unlock(&watches_lock); 777 778 err = xs_watch(watch->node, token); 779 780 if (err) { 781 spin_lock(&watches_lock); 782 list_del(&watch->list); 783 spin_unlock(&watches_lock); 784 } 785 786 up_read(&xs_watch_rwsem); 787 788 return err; 789 } 790 EXPORT_SYMBOL_GPL(register_xenbus_watch); 791 792 void unregister_xenbus_watch(struct xenbus_watch *watch) 793 { 794 struct xs_watch_event *event, *tmp; 795 char token[sizeof(watch) * 2 + 1]; 796 int err; 797 798 sprintf(token, "%lX", (long)watch); 799 800 down_read(&xs_watch_rwsem); 801 802 spin_lock(&watches_lock); 803 BUG_ON(!find_watch(token)); 804 list_del(&watch->list); 805 spin_unlock(&watches_lock); 806 807 err = xs_unwatch(watch->node, token); 808 if (err) 809 pr_warn("Failed to release watch %s: %i\n", watch->node, err); 810 811 up_read(&xs_watch_rwsem); 812 813 /* Make sure there are no callbacks running currently (unless 814 its us) */ 815 if (current->pid != xenwatch_pid) 816 mutex_lock(&xenwatch_mutex); 817 818 /* Cancel pending watch events. */ 819 spin_lock(&watch_events_lock); 820 if (watch->nr_pending) { 821 list_for_each_entry_safe(event, tmp, &watch_events, list) { 822 if (event->handle != watch) 823 continue; 824 list_del(&event->list); 825 kfree(event); 826 } 827 watch->nr_pending = 0; 828 } 829 spin_unlock(&watch_events_lock); 830 831 if (current->pid != xenwatch_pid) 832 mutex_unlock(&xenwatch_mutex); 833 } 834 EXPORT_SYMBOL_GPL(unregister_xenbus_watch); 835 836 void xs_suspend(void) 837 { 838 xs_suspend_enter(); 839 840 mutex_lock(&xs_response_mutex); 841 down_write(&xs_watch_rwsem); 842 } 843 844 void xs_resume(void) 845 { 846 struct xenbus_watch *watch; 847 char token[sizeof(watch) * 2 + 1]; 848 849 xb_init_comms(); 850 851 mutex_unlock(&xs_response_mutex); 852 853 xs_suspend_exit(); 854 855 /* No need for watches_lock: the xs_watch_rwsem is sufficient. */ 856 list_for_each_entry(watch, &watches, list) { 857 sprintf(token, "%lX", (long)watch); 858 xs_watch(watch->node, token); 859 } 860 861 up_write(&xs_watch_rwsem); 862 } 863 864 void xs_suspend_cancel(void) 865 { 866 up_write(&xs_watch_rwsem); 867 mutex_unlock(&xs_response_mutex); 868 869 xs_suspend_exit(); 870 } 871 872 static int xenwatch_thread(void *unused) 873 { 874 struct xs_watch_event *event; 875 876 xenwatch_pid = current->pid; 877 878 for (;;) { 879 wait_event_interruptible(watch_events_waitq, 880 !list_empty(&watch_events)); 881 882 if (kthread_should_stop()) 883 break; 884 885 mutex_lock(&xenwatch_mutex); 886 887 spin_lock(&watch_events_lock); 888 event = list_first_entry_or_null(&watch_events, 889 struct xs_watch_event, list); 890 if (event) { 891 list_del(&event->list); 892 event->handle->nr_pending--; 893 } 894 spin_unlock(&watch_events_lock); 895 896 if (event) { 897 event->handle->callback(event->handle, event->path, 898 event->token); 899 kfree(event); 900 } 901 902 mutex_unlock(&xenwatch_mutex); 903 } 904 905 return 0; 906 } 907 908 /* 909 * Wake up all threads waiting for a xenstore reply. In case of shutdown all 910 * pending replies will be marked as "aborted" in order to let the waiters 911 * return in spite of xenstore possibly no longer being able to reply. This 912 * will avoid blocking shutdown by a thread waiting for xenstore but being 913 * necessary for shutdown processing to proceed. 914 */ 915 static int xs_reboot_notify(struct notifier_block *nb, 916 unsigned long code, void *unused) 917 { 918 struct xb_req_data *req; 919 920 mutex_lock(&xb_write_mutex); 921 list_for_each_entry(req, &xs_reply_list, list) 922 wake_up(&req->wq); 923 list_for_each_entry(req, &xb_write_list, list) 924 wake_up(&req->wq); 925 mutex_unlock(&xb_write_mutex); 926 return NOTIFY_DONE; 927 } 928 929 static struct notifier_block xs_reboot_nb = { 930 .notifier_call = xs_reboot_notify, 931 }; 932 933 int xs_init(void) 934 { 935 int err; 936 struct task_struct *task; 937 938 register_reboot_notifier(&xs_reboot_nb); 939 940 /* Initialize the shared memory rings to talk to xenstored */ 941 err = xb_init_comms(); 942 if (err) 943 return err; 944 945 task = kthread_run(xenwatch_thread, NULL, "xenwatch"); 946 if (IS_ERR(task)) 947 return PTR_ERR(task); 948 949 /* shutdown watches for kexec boot */ 950 xs_reset_watches(); 951 952 return 0; 953 } 954