1 // SPDX-License-Identifier: GPL-2.0-or-later 2 /* 3 * RDMA Network Block Driver 4 * 5 * Copyright (c) 2014 - 2018 ProfitBricks GmbH. All rights reserved. 6 * Copyright (c) 2018 - 2019 1&1 IONOS Cloud GmbH. All rights reserved. 7 * Copyright (c) 2019 - 2020 1&1 IONOS SE. All rights reserved. 8 */ 9 #undef pr_fmt 10 #define pr_fmt(fmt) KBUILD_MODNAME " L" __stringify(__LINE__) ": " fmt 11 12 #include <linux/module.h> 13 #include <linux/blkdev.h> 14 15 #include "rnbd-srv.h" 16 #include "rnbd-srv-dev.h" 17 18 MODULE_DESCRIPTION("RDMA Network Block Device Server"); 19 MODULE_LICENSE("GPL"); 20 21 static u16 port_nr = RTRS_PORT; 22 23 module_param_named(port_nr, port_nr, ushort, 0444); 24 MODULE_PARM_DESC(port_nr, 25 "The port number the server is listening on (default: " 26 __stringify(RTRS_PORT)")"); 27 28 #define DEFAULT_DEV_SEARCH_PATH "/" 29 30 static char dev_search_path[PATH_MAX] = DEFAULT_DEV_SEARCH_PATH; 31 32 static int dev_search_path_set(const char *val, const struct kernel_param *kp) 33 { 34 const char *p = strrchr(val, '\n') ? : val + strlen(val); 35 36 if (strlen(val) >= sizeof(dev_search_path)) 37 return -EINVAL; 38 39 snprintf(dev_search_path, sizeof(dev_search_path), "%.*s", 40 (int)(p - val), val); 41 42 pr_info("dev_search_path changed to '%s'\n", dev_search_path); 43 44 return 0; 45 } 46 47 static struct kparam_string dev_search_path_kparam_str = { 48 .maxlen = sizeof(dev_search_path), 49 .string = dev_search_path 50 }; 51 52 static const struct kernel_param_ops dev_search_path_ops = { 53 .set = dev_search_path_set, 54 .get = param_get_string, 55 }; 56 57 module_param_cb(dev_search_path, &dev_search_path_ops, 58 &dev_search_path_kparam_str, 0444); 59 MODULE_PARM_DESC(dev_search_path, 60 "Sets the dev_search_path. When a device is mapped this path is prepended to the device path from the map device operation. If %SESSNAME% is specified in a path, then device will be searched in a session namespace. (default: " 61 DEFAULT_DEV_SEARCH_PATH ")"); 62 63 static DEFINE_MUTEX(sess_lock); 64 static DEFINE_SPINLOCK(dev_lock); 65 66 static LIST_HEAD(sess_list); 67 static LIST_HEAD(dev_list); 68 69 struct rnbd_io_private { 70 struct rtrs_srv_op *id; 71 struct rnbd_srv_sess_dev *sess_dev; 72 }; 73 74 static void rnbd_sess_dev_release(struct kref *kref) 75 { 76 struct rnbd_srv_sess_dev *sess_dev; 77 78 sess_dev = container_of(kref, struct rnbd_srv_sess_dev, kref); 79 complete(sess_dev->destroy_comp); 80 } 81 82 static inline void rnbd_put_sess_dev(struct rnbd_srv_sess_dev *sess_dev) 83 { 84 kref_put(&sess_dev->kref, rnbd_sess_dev_release); 85 } 86 87 void rnbd_endio(void *priv, int error) 88 { 89 struct rnbd_io_private *rnbd_priv = priv; 90 struct rnbd_srv_sess_dev *sess_dev = rnbd_priv->sess_dev; 91 92 rnbd_put_sess_dev(sess_dev); 93 94 rtrs_srv_resp_rdma(rnbd_priv->id, error); 95 96 kfree(priv); 97 } 98 99 static struct rnbd_srv_sess_dev * 100 rnbd_get_sess_dev(int dev_id, struct rnbd_srv_session *srv_sess) 101 { 102 struct rnbd_srv_sess_dev *sess_dev; 103 int ret = 0; 104 105 rcu_read_lock(); 106 sess_dev = xa_load(&srv_sess->index_idr, dev_id); 107 if (likely(sess_dev)) 108 ret = kref_get_unless_zero(&sess_dev->kref); 109 rcu_read_unlock(); 110 111 if (!sess_dev || !ret) 112 return ERR_PTR(-ENXIO); 113 114 return sess_dev; 115 } 116 117 static int process_rdma(struct rtrs_srv *sess, 118 struct rnbd_srv_session *srv_sess, 119 struct rtrs_srv_op *id, void *data, u32 datalen, 120 const void *usr, size_t usrlen) 121 { 122 const struct rnbd_msg_io *msg = usr; 123 struct rnbd_io_private *priv; 124 struct rnbd_srv_sess_dev *sess_dev; 125 u32 dev_id; 126 int err; 127 struct rnbd_dev_blk_io *io; 128 struct bio *bio; 129 short prio; 130 131 priv = kmalloc(sizeof(*priv), GFP_KERNEL); 132 if (!priv) 133 return -ENOMEM; 134 135 dev_id = le32_to_cpu(msg->device_id); 136 137 sess_dev = rnbd_get_sess_dev(dev_id, srv_sess); 138 if (IS_ERR(sess_dev)) { 139 pr_err_ratelimited("Got I/O request on session %s for unknown device id %d\n", 140 srv_sess->sessname, dev_id); 141 err = -ENOTCONN; 142 goto err; 143 } 144 145 priv->sess_dev = sess_dev; 146 priv->id = id; 147 148 /* Generate bio with pages pointing to the rdma buffer */ 149 bio = rnbd_bio_map_kern(data, sess_dev->rnbd_dev->ibd_bio_set, datalen, GFP_KERNEL); 150 if (IS_ERR(bio)) { 151 err = PTR_ERR(bio); 152 rnbd_srv_err(sess_dev, "Failed to generate bio, err: %d\n", err); 153 goto sess_dev_put; 154 } 155 156 io = container_of(bio, struct rnbd_dev_blk_io, bio); 157 io->dev = sess_dev->rnbd_dev; 158 io->priv = priv; 159 160 bio->bi_end_io = rnbd_dev_bi_end_io; 161 bio->bi_private = io; 162 bio->bi_opf = rnbd_to_bio_flags(le32_to_cpu(msg->rw)); 163 bio->bi_iter.bi_sector = le64_to_cpu(msg->sector); 164 bio->bi_iter.bi_size = le32_to_cpu(msg->bi_size); 165 prio = srv_sess->ver < RNBD_PROTO_VER_MAJOR || 166 usrlen < sizeof(*msg) ? 0 : le16_to_cpu(msg->prio); 167 bio_set_prio(bio, prio); 168 bio_set_dev(bio, sess_dev->rnbd_dev->bdev); 169 170 submit_bio(bio); 171 172 return 0; 173 174 sess_dev_put: 175 rnbd_put_sess_dev(sess_dev); 176 err: 177 kfree(priv); 178 return err; 179 } 180 181 static void destroy_device(struct rnbd_srv_dev *dev) 182 { 183 WARN_ONCE(!list_empty(&dev->sess_dev_list), 184 "Device %s is being destroyed but still in use!\n", 185 dev->id); 186 187 spin_lock(&dev_lock); 188 list_del(&dev->list); 189 spin_unlock(&dev_lock); 190 191 mutex_destroy(&dev->lock); 192 if (dev->dev_kobj.state_in_sysfs) 193 /* 194 * Destroy kobj only if it was really created. 195 */ 196 rnbd_srv_destroy_dev_sysfs(dev); 197 else 198 kfree(dev); 199 } 200 201 static void destroy_device_cb(struct kref *kref) 202 { 203 struct rnbd_srv_dev *dev; 204 205 dev = container_of(kref, struct rnbd_srv_dev, kref); 206 207 destroy_device(dev); 208 } 209 210 static void rnbd_put_srv_dev(struct rnbd_srv_dev *dev) 211 { 212 kref_put(&dev->kref, destroy_device_cb); 213 } 214 215 void rnbd_destroy_sess_dev(struct rnbd_srv_sess_dev *sess_dev, bool keep_id) 216 { 217 DECLARE_COMPLETION_ONSTACK(dc); 218 219 if (keep_id) 220 /* free the resources for the id but don't */ 221 /* allow to re-use the id itself because it */ 222 /* is still used by the client */ 223 xa_cmpxchg(&sess_dev->sess->index_idr, sess_dev->device_id, 224 sess_dev, NULL, 0); 225 else 226 xa_erase(&sess_dev->sess->index_idr, sess_dev->device_id); 227 synchronize_rcu(); 228 229 sess_dev->destroy_comp = &dc; 230 rnbd_put_sess_dev(sess_dev); 231 wait_for_completion(&dc); /* wait for inflights to drop to zero */ 232 233 rnbd_dev_close(sess_dev->rnbd_dev); 234 list_del(&sess_dev->sess_list); 235 mutex_lock(&sess_dev->dev->lock); 236 list_del(&sess_dev->dev_list); 237 if (sess_dev->open_flags & FMODE_WRITE) 238 sess_dev->dev->open_write_cnt--; 239 mutex_unlock(&sess_dev->dev->lock); 240 241 rnbd_put_srv_dev(sess_dev->dev); 242 243 rnbd_srv_info(sess_dev, "Device closed\n"); 244 kfree(sess_dev); 245 } 246 247 static void destroy_sess(struct rnbd_srv_session *srv_sess) 248 { 249 struct rnbd_srv_sess_dev *sess_dev, *tmp; 250 251 if (list_empty(&srv_sess->sess_dev_list)) 252 goto out; 253 254 mutex_lock(&srv_sess->lock); 255 list_for_each_entry_safe(sess_dev, tmp, &srv_sess->sess_dev_list, 256 sess_list) 257 rnbd_srv_destroy_dev_session_sysfs(sess_dev); 258 mutex_unlock(&srv_sess->lock); 259 260 out: 261 xa_destroy(&srv_sess->index_idr); 262 bioset_exit(&srv_sess->sess_bio_set); 263 264 pr_info("RTRS Session %s disconnected\n", srv_sess->sessname); 265 266 mutex_lock(&sess_lock); 267 list_del(&srv_sess->list); 268 mutex_unlock(&sess_lock); 269 270 mutex_destroy(&srv_sess->lock); 271 kfree(srv_sess); 272 } 273 274 static int create_sess(struct rtrs_srv *rtrs) 275 { 276 struct rnbd_srv_session *srv_sess; 277 char sessname[NAME_MAX]; 278 int err; 279 280 err = rtrs_srv_get_sess_name(rtrs, sessname, sizeof(sessname)); 281 if (err) { 282 pr_err("rtrs_srv_get_sess_name(%s): %d\n", sessname, err); 283 284 return err; 285 } 286 srv_sess = kzalloc(sizeof(*srv_sess), GFP_KERNEL); 287 if (!srv_sess) 288 return -ENOMEM; 289 290 srv_sess->queue_depth = rtrs_srv_get_queue_depth(rtrs); 291 err = bioset_init(&srv_sess->sess_bio_set, srv_sess->queue_depth, 292 offsetof(struct rnbd_dev_blk_io, bio), 293 BIOSET_NEED_BVECS); 294 if (err) { 295 pr_err("Allocating srv_session for session %s failed\n", 296 sessname); 297 kfree(srv_sess); 298 return err; 299 } 300 301 xa_init_flags(&srv_sess->index_idr, XA_FLAGS_ALLOC); 302 INIT_LIST_HEAD(&srv_sess->sess_dev_list); 303 mutex_init(&srv_sess->lock); 304 mutex_lock(&sess_lock); 305 list_add(&srv_sess->list, &sess_list); 306 mutex_unlock(&sess_lock); 307 308 srv_sess->rtrs = rtrs; 309 strlcpy(srv_sess->sessname, sessname, sizeof(srv_sess->sessname)); 310 311 rtrs_srv_set_sess_priv(rtrs, srv_sess); 312 313 return 0; 314 } 315 316 static int rnbd_srv_link_ev(struct rtrs_srv *rtrs, 317 enum rtrs_srv_link_ev ev, void *priv) 318 { 319 struct rnbd_srv_session *srv_sess = priv; 320 321 switch (ev) { 322 case RTRS_SRV_LINK_EV_CONNECTED: 323 return create_sess(rtrs); 324 325 case RTRS_SRV_LINK_EV_DISCONNECTED: 326 if (WARN_ON_ONCE(!srv_sess)) 327 return -EINVAL; 328 329 destroy_sess(srv_sess); 330 return 0; 331 332 default: 333 pr_warn("Received unknown RTRS session event %d from session %s\n", 334 ev, srv_sess->sessname); 335 return -EINVAL; 336 } 337 } 338 339 void rnbd_srv_sess_dev_force_close(struct rnbd_srv_sess_dev *sess_dev) 340 { 341 rnbd_srv_destroy_dev_session_sysfs(sess_dev); 342 sess_dev->keep_id = true; 343 344 } 345 346 static int process_msg_close(struct rtrs_srv *rtrs, 347 struct rnbd_srv_session *srv_sess, 348 void *data, size_t datalen, const void *usr, 349 size_t usrlen) 350 { 351 const struct rnbd_msg_close *close_msg = usr; 352 struct rnbd_srv_sess_dev *sess_dev; 353 354 sess_dev = rnbd_get_sess_dev(le32_to_cpu(close_msg->device_id), 355 srv_sess); 356 if (IS_ERR(sess_dev)) 357 return 0; 358 359 rnbd_put_sess_dev(sess_dev); 360 mutex_lock(&srv_sess->lock); 361 rnbd_srv_destroy_dev_session_sysfs(sess_dev); 362 mutex_unlock(&srv_sess->lock); 363 return 0; 364 } 365 366 static int process_msg_open(struct rtrs_srv *rtrs, 367 struct rnbd_srv_session *srv_sess, 368 const void *msg, size_t len, 369 void *data, size_t datalen); 370 371 static int process_msg_sess_info(struct rtrs_srv *rtrs, 372 struct rnbd_srv_session *srv_sess, 373 const void *msg, size_t len, 374 void *data, size_t datalen); 375 376 static int rnbd_srv_rdma_ev(struct rtrs_srv *rtrs, void *priv, 377 struct rtrs_srv_op *id, int dir, 378 void *data, size_t datalen, const void *usr, 379 size_t usrlen) 380 { 381 struct rnbd_srv_session *srv_sess = priv; 382 const struct rnbd_msg_hdr *hdr = usr; 383 int ret = 0; 384 u16 type; 385 386 if (WARN_ON_ONCE(!srv_sess)) 387 return -ENODEV; 388 389 type = le16_to_cpu(hdr->type); 390 391 switch (type) { 392 case RNBD_MSG_IO: 393 return process_rdma(rtrs, srv_sess, id, data, datalen, usr, 394 usrlen); 395 case RNBD_MSG_CLOSE: 396 ret = process_msg_close(rtrs, srv_sess, data, datalen, 397 usr, usrlen); 398 break; 399 case RNBD_MSG_OPEN: 400 ret = process_msg_open(rtrs, srv_sess, usr, usrlen, 401 data, datalen); 402 break; 403 case RNBD_MSG_SESS_INFO: 404 ret = process_msg_sess_info(rtrs, srv_sess, usr, usrlen, 405 data, datalen); 406 break; 407 default: 408 pr_warn("Received unexpected message type %d with dir %d from session %s\n", 409 type, dir, srv_sess->sessname); 410 return -EINVAL; 411 } 412 413 rtrs_srv_resp_rdma(id, ret); 414 return 0; 415 } 416 417 static struct rnbd_srv_sess_dev 418 *rnbd_sess_dev_alloc(struct rnbd_srv_session *srv_sess) 419 { 420 struct rnbd_srv_sess_dev *sess_dev; 421 int error; 422 423 sess_dev = kzalloc(sizeof(*sess_dev), GFP_KERNEL); 424 if (!sess_dev) 425 return ERR_PTR(-ENOMEM); 426 427 error = xa_alloc(&srv_sess->index_idr, &sess_dev->device_id, sess_dev, 428 xa_limit_32b, GFP_NOWAIT); 429 if (error < 0) { 430 pr_warn("Allocating idr failed, err: %d\n", error); 431 kfree(sess_dev); 432 return ERR_PTR(error); 433 } 434 435 return sess_dev; 436 } 437 438 static struct rnbd_srv_dev *rnbd_srv_init_srv_dev(const char *id) 439 { 440 struct rnbd_srv_dev *dev; 441 442 dev = kzalloc(sizeof(*dev), GFP_KERNEL); 443 if (!dev) 444 return ERR_PTR(-ENOMEM); 445 446 strlcpy(dev->id, id, sizeof(dev->id)); 447 kref_init(&dev->kref); 448 INIT_LIST_HEAD(&dev->sess_dev_list); 449 mutex_init(&dev->lock); 450 451 return dev; 452 } 453 454 static struct rnbd_srv_dev * 455 rnbd_srv_find_or_add_srv_dev(struct rnbd_srv_dev *new_dev) 456 { 457 struct rnbd_srv_dev *dev; 458 459 spin_lock(&dev_lock); 460 list_for_each_entry(dev, &dev_list, list) { 461 if (!strncmp(dev->id, new_dev->id, sizeof(dev->id))) { 462 if (!kref_get_unless_zero(&dev->kref)) 463 /* 464 * We lost the race, device is almost dead. 465 * Continue traversing to find a valid one. 466 */ 467 continue; 468 spin_unlock(&dev_lock); 469 return dev; 470 } 471 } 472 list_add(&new_dev->list, &dev_list); 473 spin_unlock(&dev_lock); 474 475 return new_dev; 476 } 477 478 static int rnbd_srv_check_update_open_perm(struct rnbd_srv_dev *srv_dev, 479 struct rnbd_srv_session *srv_sess, 480 enum rnbd_access_mode access_mode) 481 { 482 int ret = -EPERM; 483 484 mutex_lock(&srv_dev->lock); 485 486 switch (access_mode) { 487 case RNBD_ACCESS_RO: 488 ret = 0; 489 break; 490 case RNBD_ACCESS_RW: 491 if (srv_dev->open_write_cnt == 0) { 492 srv_dev->open_write_cnt++; 493 ret = 0; 494 } else { 495 pr_err("Mapping device '%s' for session %s with RW permissions failed. Device already opened as 'RW' by %d client(s), access mode %s.\n", 496 srv_dev->id, srv_sess->sessname, 497 srv_dev->open_write_cnt, 498 rnbd_access_mode_str(access_mode)); 499 } 500 break; 501 case RNBD_ACCESS_MIGRATION: 502 if (srv_dev->open_write_cnt < 2) { 503 srv_dev->open_write_cnt++; 504 ret = 0; 505 } else { 506 pr_err("Mapping device '%s' for session %s with migration permissions failed. Device already opened as 'RW' by %d client(s), access mode %s.\n", 507 srv_dev->id, srv_sess->sessname, 508 srv_dev->open_write_cnt, 509 rnbd_access_mode_str(access_mode)); 510 } 511 break; 512 default: 513 pr_err("Received mapping request for device '%s' on session %s with invalid access mode: %d\n", 514 srv_dev->id, srv_sess->sessname, access_mode); 515 ret = -EINVAL; 516 } 517 518 mutex_unlock(&srv_dev->lock); 519 520 return ret; 521 } 522 523 static struct rnbd_srv_dev * 524 rnbd_srv_get_or_create_srv_dev(struct rnbd_dev *rnbd_dev, 525 struct rnbd_srv_session *srv_sess, 526 enum rnbd_access_mode access_mode) 527 { 528 int ret; 529 struct rnbd_srv_dev *new_dev, *dev; 530 531 new_dev = rnbd_srv_init_srv_dev(rnbd_dev->name); 532 if (IS_ERR(new_dev)) 533 return new_dev; 534 535 dev = rnbd_srv_find_or_add_srv_dev(new_dev); 536 if (dev != new_dev) 537 kfree(new_dev); 538 539 ret = rnbd_srv_check_update_open_perm(dev, srv_sess, access_mode); 540 if (ret) { 541 rnbd_put_srv_dev(dev); 542 return ERR_PTR(ret); 543 } 544 545 return dev; 546 } 547 548 static void rnbd_srv_fill_msg_open_rsp(struct rnbd_msg_open_rsp *rsp, 549 struct rnbd_srv_sess_dev *sess_dev) 550 { 551 struct rnbd_dev *rnbd_dev = sess_dev->rnbd_dev; 552 553 rsp->hdr.type = cpu_to_le16(RNBD_MSG_OPEN_RSP); 554 rsp->device_id = 555 cpu_to_le32(sess_dev->device_id); 556 rsp->nsectors = 557 cpu_to_le64(get_capacity(rnbd_dev->bdev->bd_disk)); 558 rsp->logical_block_size = 559 cpu_to_le16(bdev_logical_block_size(rnbd_dev->bdev)); 560 rsp->physical_block_size = 561 cpu_to_le16(bdev_physical_block_size(rnbd_dev->bdev)); 562 rsp->max_segments = 563 cpu_to_le16(rnbd_dev_get_max_segs(rnbd_dev)); 564 rsp->max_hw_sectors = 565 cpu_to_le32(rnbd_dev_get_max_hw_sects(rnbd_dev)); 566 rsp->max_write_same_sectors = 567 cpu_to_le32(bdev_write_same(rnbd_dev->bdev)); 568 rsp->max_discard_sectors = 569 cpu_to_le32(rnbd_dev_get_max_discard_sects(rnbd_dev)); 570 rsp->discard_granularity = 571 cpu_to_le32(rnbd_dev_get_discard_granularity(rnbd_dev)); 572 rsp->discard_alignment = 573 cpu_to_le32(rnbd_dev_get_discard_alignment(rnbd_dev)); 574 rsp->secure_discard = 575 cpu_to_le16(rnbd_dev_get_secure_discard(rnbd_dev)); 576 rsp->rotational = 577 !blk_queue_nonrot(bdev_get_queue(rnbd_dev->bdev)); 578 } 579 580 static struct rnbd_srv_sess_dev * 581 rnbd_srv_create_set_sess_dev(struct rnbd_srv_session *srv_sess, 582 const struct rnbd_msg_open *open_msg, 583 struct rnbd_dev *rnbd_dev, fmode_t open_flags, 584 struct rnbd_srv_dev *srv_dev) 585 { 586 struct rnbd_srv_sess_dev *sdev = rnbd_sess_dev_alloc(srv_sess); 587 588 if (IS_ERR(sdev)) 589 return sdev; 590 591 kref_init(&sdev->kref); 592 593 strlcpy(sdev->pathname, open_msg->dev_name, sizeof(sdev->pathname)); 594 595 sdev->rnbd_dev = rnbd_dev; 596 sdev->sess = srv_sess; 597 sdev->dev = srv_dev; 598 sdev->open_flags = open_flags; 599 sdev->access_mode = open_msg->access_mode; 600 601 return sdev; 602 } 603 604 static char *rnbd_srv_get_full_path(struct rnbd_srv_session *srv_sess, 605 const char *dev_name) 606 { 607 char *full_path; 608 char *a, *b; 609 610 full_path = kmalloc(PATH_MAX, GFP_KERNEL); 611 if (!full_path) 612 return ERR_PTR(-ENOMEM); 613 614 /* 615 * Replace %SESSNAME% with a real session name in order to 616 * create device namespace. 617 */ 618 a = strnstr(dev_search_path, "%SESSNAME%", sizeof(dev_search_path)); 619 if (a) { 620 int len = a - dev_search_path; 621 622 len = snprintf(full_path, PATH_MAX, "%.*s/%s/%s", len, 623 dev_search_path, srv_sess->sessname, dev_name); 624 if (len >= PATH_MAX) { 625 pr_err("Too long path: %s, %s, %s\n", 626 dev_search_path, srv_sess->sessname, dev_name); 627 kfree(full_path); 628 return ERR_PTR(-EINVAL); 629 } 630 } else { 631 snprintf(full_path, PATH_MAX, "%s/%s", 632 dev_search_path, dev_name); 633 } 634 635 /* eliminitate duplicated slashes */ 636 a = strchr(full_path, '/'); 637 b = a; 638 while (*b != '\0') { 639 if (*b == '/' && *a == '/') { 640 b++; 641 } else { 642 a++; 643 *a = *b; 644 b++; 645 } 646 } 647 a++; 648 *a = '\0'; 649 650 return full_path; 651 } 652 653 static int process_msg_sess_info(struct rtrs_srv *rtrs, 654 struct rnbd_srv_session *srv_sess, 655 const void *msg, size_t len, 656 void *data, size_t datalen) 657 { 658 const struct rnbd_msg_sess_info *sess_info_msg = msg; 659 struct rnbd_msg_sess_info_rsp *rsp = data; 660 661 srv_sess->ver = min_t(u8, sess_info_msg->ver, RNBD_PROTO_VER_MAJOR); 662 pr_debug("Session %s using protocol version %d (client version: %d, server version: %d)\n", 663 srv_sess->sessname, srv_sess->ver, 664 sess_info_msg->ver, RNBD_PROTO_VER_MAJOR); 665 666 rsp->hdr.type = cpu_to_le16(RNBD_MSG_SESS_INFO_RSP); 667 rsp->ver = srv_sess->ver; 668 669 return 0; 670 } 671 672 /** 673 * find_srv_sess_dev() - a dev is already opened by this name 674 * @srv_sess: the session to search. 675 * @dev_name: string containing the name of the device. 676 * 677 * Return struct rnbd_srv_sess_dev if srv_sess already opened the dev_name 678 * NULL if the session didn't open the device yet. 679 */ 680 static struct rnbd_srv_sess_dev * 681 find_srv_sess_dev(struct rnbd_srv_session *srv_sess, const char *dev_name) 682 { 683 struct rnbd_srv_sess_dev *sess_dev; 684 685 if (list_empty(&srv_sess->sess_dev_list)) 686 return NULL; 687 688 list_for_each_entry(sess_dev, &srv_sess->sess_dev_list, sess_list) 689 if (!strcmp(sess_dev->pathname, dev_name)) 690 return sess_dev; 691 692 return NULL; 693 } 694 695 static int process_msg_open(struct rtrs_srv *rtrs, 696 struct rnbd_srv_session *srv_sess, 697 const void *msg, size_t len, 698 void *data, size_t datalen) 699 { 700 int ret; 701 struct rnbd_srv_dev *srv_dev; 702 struct rnbd_srv_sess_dev *srv_sess_dev; 703 const struct rnbd_msg_open *open_msg = msg; 704 fmode_t open_flags; 705 char *full_path; 706 struct rnbd_dev *rnbd_dev; 707 struct rnbd_msg_open_rsp *rsp = data; 708 709 pr_debug("Open message received: session='%s' path='%s' access_mode=%d\n", 710 srv_sess->sessname, open_msg->dev_name, 711 open_msg->access_mode); 712 open_flags = FMODE_READ; 713 if (open_msg->access_mode != RNBD_ACCESS_RO) 714 open_flags |= FMODE_WRITE; 715 716 mutex_lock(&srv_sess->lock); 717 718 srv_sess_dev = find_srv_sess_dev(srv_sess, open_msg->dev_name); 719 if (srv_sess_dev) 720 goto fill_response; 721 722 if ((strlen(dev_search_path) + strlen(open_msg->dev_name)) 723 >= PATH_MAX) { 724 pr_err("Opening device for session %s failed, device path too long. '%s/%s' is longer than PATH_MAX (%d)\n", 725 srv_sess->sessname, dev_search_path, open_msg->dev_name, 726 PATH_MAX); 727 ret = -EINVAL; 728 goto reject; 729 } 730 if (strstr(open_msg->dev_name, "..")) { 731 pr_err("Opening device for session %s failed, device path %s contains relative path ..\n", 732 srv_sess->sessname, open_msg->dev_name); 733 ret = -EINVAL; 734 goto reject; 735 } 736 full_path = rnbd_srv_get_full_path(srv_sess, open_msg->dev_name); 737 if (IS_ERR(full_path)) { 738 ret = PTR_ERR(full_path); 739 pr_err("Opening device '%s' for client %s failed, failed to get device full path, err: %d\n", 740 open_msg->dev_name, srv_sess->sessname, ret); 741 goto reject; 742 } 743 744 rnbd_dev = rnbd_dev_open(full_path, open_flags, 745 &srv_sess->sess_bio_set); 746 if (IS_ERR(rnbd_dev)) { 747 pr_err("Opening device '%s' on session %s failed, failed to open the block device, err: %ld\n", 748 full_path, srv_sess->sessname, PTR_ERR(rnbd_dev)); 749 ret = PTR_ERR(rnbd_dev); 750 goto free_path; 751 } 752 753 srv_dev = rnbd_srv_get_or_create_srv_dev(rnbd_dev, srv_sess, 754 open_msg->access_mode); 755 if (IS_ERR(srv_dev)) { 756 pr_err("Opening device '%s' on session %s failed, creating srv_dev failed, err: %ld\n", 757 full_path, srv_sess->sessname, PTR_ERR(srv_dev)); 758 ret = PTR_ERR(srv_dev); 759 goto rnbd_dev_close; 760 } 761 762 srv_sess_dev = rnbd_srv_create_set_sess_dev(srv_sess, open_msg, 763 rnbd_dev, open_flags, 764 srv_dev); 765 if (IS_ERR(srv_sess_dev)) { 766 pr_err("Opening device '%s' on session %s failed, creating sess_dev failed, err: %ld\n", 767 full_path, srv_sess->sessname, PTR_ERR(srv_sess_dev)); 768 ret = PTR_ERR(srv_sess_dev); 769 goto srv_dev_put; 770 } 771 772 /* Create the srv_dev sysfs files if they haven't been created yet. The 773 * reason to delay the creation is not to create the sysfs files before 774 * we are sure the device can be opened. 775 */ 776 mutex_lock(&srv_dev->lock); 777 if (!srv_dev->dev_kobj.state_in_sysfs) { 778 ret = rnbd_srv_create_dev_sysfs(srv_dev, rnbd_dev->bdev, 779 rnbd_dev->name); 780 if (ret) { 781 mutex_unlock(&srv_dev->lock); 782 rnbd_srv_err(srv_sess_dev, 783 "Opening device failed, failed to create device sysfs files, err: %d\n", 784 ret); 785 goto free_srv_sess_dev; 786 } 787 } 788 789 ret = rnbd_srv_create_dev_session_sysfs(srv_sess_dev); 790 if (ret) { 791 mutex_unlock(&srv_dev->lock); 792 rnbd_srv_err(srv_sess_dev, 793 "Opening device failed, failed to create dev client sysfs files, err: %d\n", 794 ret); 795 goto free_srv_sess_dev; 796 } 797 798 list_add(&srv_sess_dev->dev_list, &srv_dev->sess_dev_list); 799 mutex_unlock(&srv_dev->lock); 800 801 list_add(&srv_sess_dev->sess_list, &srv_sess->sess_dev_list); 802 803 rnbd_srv_info(srv_sess_dev, "Opened device '%s'\n", srv_dev->id); 804 805 kfree(full_path); 806 807 fill_response: 808 rnbd_srv_fill_msg_open_rsp(rsp, srv_sess_dev); 809 mutex_unlock(&srv_sess->lock); 810 return 0; 811 812 free_srv_sess_dev: 813 xa_erase(&srv_sess->index_idr, srv_sess_dev->device_id); 814 synchronize_rcu(); 815 kfree(srv_sess_dev); 816 srv_dev_put: 817 if (open_msg->access_mode != RNBD_ACCESS_RO) { 818 mutex_lock(&srv_dev->lock); 819 srv_dev->open_write_cnt--; 820 mutex_unlock(&srv_dev->lock); 821 } 822 rnbd_put_srv_dev(srv_dev); 823 rnbd_dev_close: 824 rnbd_dev_close(rnbd_dev); 825 free_path: 826 kfree(full_path); 827 reject: 828 mutex_unlock(&srv_sess->lock); 829 return ret; 830 } 831 832 static struct rtrs_srv_ctx *rtrs_ctx; 833 834 static struct rtrs_srv_ops rtrs_ops; 835 static int __init rnbd_srv_init_module(void) 836 { 837 int err; 838 839 BUILD_BUG_ON(sizeof(struct rnbd_msg_hdr) != 4); 840 BUILD_BUG_ON(sizeof(struct rnbd_msg_sess_info) != 36); 841 BUILD_BUG_ON(sizeof(struct rnbd_msg_sess_info_rsp) != 36); 842 BUILD_BUG_ON(sizeof(struct rnbd_msg_open) != 264); 843 BUILD_BUG_ON(sizeof(struct rnbd_msg_close) != 8); 844 BUILD_BUG_ON(sizeof(struct rnbd_msg_open_rsp) != 56); 845 rtrs_ops = (struct rtrs_srv_ops) { 846 .rdma_ev = rnbd_srv_rdma_ev, 847 .link_ev = rnbd_srv_link_ev, 848 }; 849 rtrs_ctx = rtrs_srv_open(&rtrs_ops, port_nr); 850 if (IS_ERR(rtrs_ctx)) { 851 err = PTR_ERR(rtrs_ctx); 852 pr_err("rtrs_srv_open(), err: %d\n", err); 853 return err; 854 } 855 856 err = rnbd_srv_create_sysfs_files(); 857 if (err) { 858 pr_err("rnbd_srv_create_sysfs_files(), err: %d\n", err); 859 rtrs_srv_close(rtrs_ctx); 860 return err; 861 } 862 863 return 0; 864 } 865 866 static void __exit rnbd_srv_cleanup_module(void) 867 { 868 rtrs_srv_close(rtrs_ctx); 869 WARN_ON(!list_empty(&sess_list)); 870 rnbd_srv_destroy_sysfs_files(); 871 } 872 873 module_init(rnbd_srv_init_module); 874 module_exit(rnbd_srv_cleanup_module); 875