1 // SPDX-License-Identifier: GPL-2.0-or-later 2 /* 3 * Copyright (C) 2016 Namjae Jeon <linkinjeon@kernel.org> 4 * Copyright (C) 2018 Samsung Electronics Co., Ltd. 5 */ 6 7 #include <linux/moduleparam.h> 8 9 #include "glob.h" 10 #include "oplock.h" 11 12 #include "smb_common.h" 13 #include "smbstatus.h" 14 #include "connection.h" 15 #include "mgmt/user_session.h" 16 #include "mgmt/share_config.h" 17 #include "mgmt/tree_connect.h" 18 19 static LIST_HEAD(lease_table_list); 20 static DEFINE_RWLOCK(lease_list_lock); 21 22 /** 23 * alloc_opinfo() - allocate a new opinfo object for oplock info 24 * @work: smb work 25 * @id: fid of open file 26 * @Tid: tree id of connection 27 * 28 * Return: allocated opinfo object on success, otherwise NULL 29 */ 30 static struct oplock_info *alloc_opinfo(struct ksmbd_work *work, 31 u64 id, __u16 Tid) 32 { 33 struct ksmbd_conn *conn = work->conn; 34 struct ksmbd_session *sess = work->sess; 35 struct oplock_info *opinfo; 36 37 opinfo = kzalloc(sizeof(struct oplock_info), GFP_KERNEL); 38 if (!opinfo) 39 return NULL; 40 41 opinfo->sess = sess; 42 opinfo->conn = conn; 43 opinfo->level = SMB2_OPLOCK_LEVEL_NONE; 44 opinfo->op_state = OPLOCK_STATE_NONE; 45 opinfo->pending_break = 0; 46 opinfo->fid = id; 47 opinfo->Tid = Tid; 48 INIT_LIST_HEAD(&opinfo->op_entry); 49 INIT_LIST_HEAD(&opinfo->interim_list); 50 init_waitqueue_head(&opinfo->oplock_q); 51 init_waitqueue_head(&opinfo->oplock_brk); 52 atomic_set(&opinfo->refcount, 1); 53 atomic_set(&opinfo->breaking_cnt, 0); 54 55 return opinfo; 56 } 57 58 static void lease_add_list(struct oplock_info *opinfo) 59 { 60 struct lease_table *lb = opinfo->o_lease->l_lb; 61 62 spin_lock(&lb->lb_lock); 63 list_add_rcu(&opinfo->lease_entry, &lb->lease_list); 64 spin_unlock(&lb->lb_lock); 65 } 66 67 static void lease_del_list(struct oplock_info *opinfo) 68 { 69 struct lease_table *lb = opinfo->o_lease->l_lb; 70 71 if (!lb) 72 return; 73 74 spin_lock(&lb->lb_lock); 75 if (list_empty(&opinfo->lease_entry)) { 76 spin_unlock(&lb->lb_lock); 77 return; 78 } 79 80 list_del_init(&opinfo->lease_entry); 81 opinfo->o_lease->l_lb = NULL; 82 spin_unlock(&lb->lb_lock); 83 } 84 85 static void lb_add(struct lease_table *lb) 86 { 87 write_lock(&lease_list_lock); 88 list_add(&lb->l_entry, &lease_table_list); 89 write_unlock(&lease_list_lock); 90 } 91 92 static int alloc_lease(struct oplock_info *opinfo, struct lease_ctx_info *lctx) 93 { 94 struct lease *lease; 95 96 lease = kmalloc(sizeof(struct lease), GFP_KERNEL); 97 if (!lease) 98 return -ENOMEM; 99 100 memcpy(lease->lease_key, lctx->lease_key, SMB2_LEASE_KEY_SIZE); 101 lease->state = lctx->req_state; 102 lease->new_state = 0; 103 lease->flags = lctx->flags; 104 lease->duration = lctx->duration; 105 lease->is_dir = lctx->is_dir; 106 memcpy(lease->parent_lease_key, lctx->parent_lease_key, SMB2_LEASE_KEY_SIZE); 107 lease->version = lctx->version; 108 lease->epoch = le16_to_cpu(lctx->epoch) + 1; 109 INIT_LIST_HEAD(&opinfo->lease_entry); 110 opinfo->o_lease = lease; 111 112 return 0; 113 } 114 115 static void free_lease(struct oplock_info *opinfo) 116 { 117 struct lease *lease; 118 119 lease = opinfo->o_lease; 120 kfree(lease); 121 } 122 123 static void free_opinfo(struct oplock_info *opinfo) 124 { 125 if (opinfo->is_lease) 126 free_lease(opinfo); 127 kfree(opinfo); 128 } 129 130 static inline void opinfo_free_rcu(struct rcu_head *rcu_head) 131 { 132 struct oplock_info *opinfo; 133 134 opinfo = container_of(rcu_head, struct oplock_info, rcu_head); 135 free_opinfo(opinfo); 136 } 137 138 struct oplock_info *opinfo_get(struct ksmbd_file *fp) 139 { 140 struct oplock_info *opinfo; 141 142 rcu_read_lock(); 143 opinfo = rcu_dereference(fp->f_opinfo); 144 if (opinfo && !atomic_inc_not_zero(&opinfo->refcount)) 145 opinfo = NULL; 146 rcu_read_unlock(); 147 148 return opinfo; 149 } 150 151 static struct oplock_info *opinfo_get_list(struct ksmbd_inode *ci) 152 { 153 struct oplock_info *opinfo; 154 155 if (list_empty(&ci->m_op_list)) 156 return NULL; 157 158 rcu_read_lock(); 159 opinfo = list_first_or_null_rcu(&ci->m_op_list, struct oplock_info, 160 op_entry); 161 if (opinfo) { 162 if (opinfo->conn == NULL || 163 !atomic_inc_not_zero(&opinfo->refcount)) 164 opinfo = NULL; 165 else { 166 atomic_inc(&opinfo->conn->r_count); 167 if (ksmbd_conn_releasing(opinfo->conn)) { 168 atomic_dec(&opinfo->conn->r_count); 169 atomic_dec(&opinfo->refcount); 170 opinfo = NULL; 171 } 172 } 173 } 174 175 rcu_read_unlock(); 176 177 return opinfo; 178 } 179 180 static void opinfo_conn_put(struct oplock_info *opinfo) 181 { 182 struct ksmbd_conn *conn; 183 184 if (!opinfo) 185 return; 186 187 conn = opinfo->conn; 188 /* 189 * Checking waitqueue to dropping pending requests on 190 * disconnection. waitqueue_active is safe because it 191 * uses atomic operation for condition. 192 */ 193 if (!atomic_dec_return(&conn->r_count) && waitqueue_active(&conn->r_count_q)) 194 wake_up(&conn->r_count_q); 195 opinfo_put(opinfo); 196 } 197 198 void opinfo_put(struct oplock_info *opinfo) 199 { 200 if (!atomic_dec_and_test(&opinfo->refcount)) 201 return; 202 203 call_rcu(&opinfo->rcu_head, opinfo_free_rcu); 204 } 205 206 static void opinfo_add(struct oplock_info *opinfo) 207 { 208 struct ksmbd_inode *ci = opinfo->o_fp->f_ci; 209 210 write_lock(&ci->m_lock); 211 list_add_rcu(&opinfo->op_entry, &ci->m_op_list); 212 write_unlock(&ci->m_lock); 213 } 214 215 static void opinfo_del(struct oplock_info *opinfo) 216 { 217 struct ksmbd_inode *ci = opinfo->o_fp->f_ci; 218 219 if (opinfo->is_lease) { 220 write_lock(&lease_list_lock); 221 lease_del_list(opinfo); 222 write_unlock(&lease_list_lock); 223 } 224 write_lock(&ci->m_lock); 225 list_del_rcu(&opinfo->op_entry); 226 write_unlock(&ci->m_lock); 227 } 228 229 static unsigned long opinfo_count(struct ksmbd_file *fp) 230 { 231 if (ksmbd_stream_fd(fp)) 232 return atomic_read(&fp->f_ci->sop_count); 233 else 234 return atomic_read(&fp->f_ci->op_count); 235 } 236 237 static void opinfo_count_inc(struct ksmbd_file *fp) 238 { 239 if (ksmbd_stream_fd(fp)) 240 return atomic_inc(&fp->f_ci->sop_count); 241 else 242 return atomic_inc(&fp->f_ci->op_count); 243 } 244 245 static void opinfo_count_dec(struct ksmbd_file *fp) 246 { 247 if (ksmbd_stream_fd(fp)) 248 return atomic_dec(&fp->f_ci->sop_count); 249 else 250 return atomic_dec(&fp->f_ci->op_count); 251 } 252 253 /** 254 * opinfo_write_to_read() - convert a write oplock to read oplock 255 * @opinfo: current oplock info 256 * 257 * Return: 0 on success, otherwise -EINVAL 258 */ 259 int opinfo_write_to_read(struct oplock_info *opinfo) 260 { 261 struct lease *lease = opinfo->o_lease; 262 263 if (!(opinfo->level == SMB2_OPLOCK_LEVEL_BATCH || 264 opinfo->level == SMB2_OPLOCK_LEVEL_EXCLUSIVE)) { 265 pr_err("bad oplock(0x%x)\n", opinfo->level); 266 if (opinfo->is_lease) 267 pr_err("lease state(0x%x)\n", lease->state); 268 return -EINVAL; 269 } 270 opinfo->level = SMB2_OPLOCK_LEVEL_II; 271 272 if (opinfo->is_lease) 273 lease->state = lease->new_state; 274 return 0; 275 } 276 277 /** 278 * opinfo_read_handle_to_read() - convert a read/handle oplock to read oplock 279 * @opinfo: current oplock info 280 * 281 * Return: 0 on success, otherwise -EINVAL 282 */ 283 int opinfo_read_handle_to_read(struct oplock_info *opinfo) 284 { 285 struct lease *lease = opinfo->o_lease; 286 287 lease->state = lease->new_state; 288 opinfo->level = SMB2_OPLOCK_LEVEL_II; 289 return 0; 290 } 291 292 /** 293 * opinfo_write_to_none() - convert a write oplock to none 294 * @opinfo: current oplock info 295 * 296 * Return: 0 on success, otherwise -EINVAL 297 */ 298 int opinfo_write_to_none(struct oplock_info *opinfo) 299 { 300 struct lease *lease = opinfo->o_lease; 301 302 if (!(opinfo->level == SMB2_OPLOCK_LEVEL_BATCH || 303 opinfo->level == SMB2_OPLOCK_LEVEL_EXCLUSIVE)) { 304 pr_err("bad oplock(0x%x)\n", opinfo->level); 305 if (opinfo->is_lease) 306 pr_err("lease state(0x%x)\n", lease->state); 307 return -EINVAL; 308 } 309 opinfo->level = SMB2_OPLOCK_LEVEL_NONE; 310 if (opinfo->is_lease) 311 lease->state = lease->new_state; 312 return 0; 313 } 314 315 /** 316 * opinfo_read_to_none() - convert a write read to none 317 * @opinfo: current oplock info 318 * 319 * Return: 0 on success, otherwise -EINVAL 320 */ 321 int opinfo_read_to_none(struct oplock_info *opinfo) 322 { 323 struct lease *lease = opinfo->o_lease; 324 325 if (opinfo->level != SMB2_OPLOCK_LEVEL_II) { 326 pr_err("bad oplock(0x%x)\n", opinfo->level); 327 if (opinfo->is_lease) 328 pr_err("lease state(0x%x)\n", lease->state); 329 return -EINVAL; 330 } 331 opinfo->level = SMB2_OPLOCK_LEVEL_NONE; 332 if (opinfo->is_lease) 333 lease->state = lease->new_state; 334 return 0; 335 } 336 337 /** 338 * lease_read_to_write() - upgrade lease state from read to write 339 * @opinfo: current lease info 340 * 341 * Return: 0 on success, otherwise -EINVAL 342 */ 343 int lease_read_to_write(struct oplock_info *opinfo) 344 { 345 struct lease *lease = opinfo->o_lease; 346 347 if (!(lease->state & SMB2_LEASE_READ_CACHING_LE)) { 348 ksmbd_debug(OPLOCK, "bad lease state(0x%x)\n", lease->state); 349 return -EINVAL; 350 } 351 352 lease->new_state = SMB2_LEASE_NONE_LE; 353 lease->state |= SMB2_LEASE_WRITE_CACHING_LE; 354 if (lease->state & SMB2_LEASE_HANDLE_CACHING_LE) 355 opinfo->level = SMB2_OPLOCK_LEVEL_BATCH; 356 else 357 opinfo->level = SMB2_OPLOCK_LEVEL_EXCLUSIVE; 358 return 0; 359 } 360 361 /** 362 * lease_none_upgrade() - upgrade lease state from none 363 * @opinfo: current lease info 364 * @new_state: new lease state 365 * 366 * Return: 0 on success, otherwise -EINVAL 367 */ 368 static int lease_none_upgrade(struct oplock_info *opinfo, __le32 new_state) 369 { 370 struct lease *lease = opinfo->o_lease; 371 372 if (!(lease->state == SMB2_LEASE_NONE_LE)) { 373 ksmbd_debug(OPLOCK, "bad lease state(0x%x)\n", lease->state); 374 return -EINVAL; 375 } 376 377 lease->new_state = SMB2_LEASE_NONE_LE; 378 lease->state = new_state; 379 if (lease->state & SMB2_LEASE_HANDLE_CACHING_LE) 380 if (lease->state & SMB2_LEASE_WRITE_CACHING_LE) 381 opinfo->level = SMB2_OPLOCK_LEVEL_BATCH; 382 else 383 opinfo->level = SMB2_OPLOCK_LEVEL_II; 384 else if (lease->state & SMB2_LEASE_WRITE_CACHING_LE) 385 opinfo->level = SMB2_OPLOCK_LEVEL_EXCLUSIVE; 386 else if (lease->state & SMB2_LEASE_READ_CACHING_LE) 387 opinfo->level = SMB2_OPLOCK_LEVEL_II; 388 389 return 0; 390 } 391 392 /** 393 * close_id_del_oplock() - release oplock object at file close time 394 * @fp: ksmbd file pointer 395 */ 396 void close_id_del_oplock(struct ksmbd_file *fp) 397 { 398 struct oplock_info *opinfo; 399 400 if (fp->reserve_lease_break) 401 smb_lazy_parent_lease_break_close(fp); 402 403 opinfo = opinfo_get(fp); 404 if (!opinfo) 405 return; 406 407 opinfo_del(opinfo); 408 409 rcu_assign_pointer(fp->f_opinfo, NULL); 410 if (opinfo->op_state == OPLOCK_ACK_WAIT) { 411 opinfo->op_state = OPLOCK_CLOSING; 412 wake_up_interruptible_all(&opinfo->oplock_q); 413 if (opinfo->is_lease) { 414 atomic_set(&opinfo->breaking_cnt, 0); 415 wake_up_interruptible_all(&opinfo->oplock_brk); 416 } 417 } 418 419 opinfo_count_dec(fp); 420 atomic_dec(&opinfo->refcount); 421 opinfo_put(opinfo); 422 } 423 424 /** 425 * grant_write_oplock() - grant exclusive/batch oplock or write lease 426 * @opinfo_new: new oplock info object 427 * @req_oplock: request oplock 428 * @lctx: lease context information 429 * 430 * Return: 0 431 */ 432 static void grant_write_oplock(struct oplock_info *opinfo_new, int req_oplock, 433 struct lease_ctx_info *lctx) 434 { 435 struct lease *lease = opinfo_new->o_lease; 436 437 if (req_oplock == SMB2_OPLOCK_LEVEL_BATCH) 438 opinfo_new->level = SMB2_OPLOCK_LEVEL_BATCH; 439 else 440 opinfo_new->level = SMB2_OPLOCK_LEVEL_EXCLUSIVE; 441 442 if (lctx) { 443 lease->state = lctx->req_state; 444 memcpy(lease->lease_key, lctx->lease_key, SMB2_LEASE_KEY_SIZE); 445 } 446 } 447 448 /** 449 * grant_read_oplock() - grant level2 oplock or read lease 450 * @opinfo_new: new oplock info object 451 * @lctx: lease context information 452 * 453 * Return: 0 454 */ 455 static void grant_read_oplock(struct oplock_info *opinfo_new, 456 struct lease_ctx_info *lctx) 457 { 458 struct lease *lease = opinfo_new->o_lease; 459 460 opinfo_new->level = SMB2_OPLOCK_LEVEL_II; 461 462 if (lctx) { 463 lease->state = SMB2_LEASE_READ_CACHING_LE; 464 if (lctx->req_state & SMB2_LEASE_HANDLE_CACHING_LE) 465 lease->state |= SMB2_LEASE_HANDLE_CACHING_LE; 466 memcpy(lease->lease_key, lctx->lease_key, SMB2_LEASE_KEY_SIZE); 467 } 468 } 469 470 /** 471 * grant_none_oplock() - grant none oplock or none lease 472 * @opinfo_new: new oplock info object 473 * @lctx: lease context information 474 * 475 * Return: 0 476 */ 477 static void grant_none_oplock(struct oplock_info *opinfo_new, 478 struct lease_ctx_info *lctx) 479 { 480 struct lease *lease = opinfo_new->o_lease; 481 482 opinfo_new->level = SMB2_OPLOCK_LEVEL_NONE; 483 484 if (lctx) { 485 lease->state = 0; 486 memcpy(lease->lease_key, lctx->lease_key, SMB2_LEASE_KEY_SIZE); 487 } 488 } 489 490 static inline int compare_guid_key(struct oplock_info *opinfo, 491 const char *guid1, const char *key1) 492 { 493 const char *guid2, *key2; 494 495 guid2 = opinfo->conn->ClientGUID; 496 key2 = opinfo->o_lease->lease_key; 497 if (!memcmp(guid1, guid2, SMB2_CLIENT_GUID_SIZE) && 498 !memcmp(key1, key2, SMB2_LEASE_KEY_SIZE)) 499 return 1; 500 501 return 0; 502 } 503 504 /** 505 * same_client_has_lease() - check whether current lease request is 506 * from lease owner of file 507 * @ci: master file pointer 508 * @client_guid: Client GUID 509 * @lctx: lease context information 510 * 511 * Return: oplock(lease) object on success, otherwise NULL 512 */ 513 static struct oplock_info *same_client_has_lease(struct ksmbd_inode *ci, 514 char *client_guid, 515 struct lease_ctx_info *lctx) 516 { 517 int ret; 518 struct lease *lease; 519 struct oplock_info *opinfo; 520 struct oplock_info *m_opinfo = NULL; 521 522 if (!lctx) 523 return NULL; 524 525 /* 526 * Compare lease key and client_guid to know request from same owner 527 * of same client 528 */ 529 read_lock(&ci->m_lock); 530 list_for_each_entry(opinfo, &ci->m_op_list, op_entry) { 531 if (!opinfo->is_lease || !opinfo->conn) 532 continue; 533 read_unlock(&ci->m_lock); 534 lease = opinfo->o_lease; 535 536 ret = compare_guid_key(opinfo, client_guid, lctx->lease_key); 537 if (ret) { 538 m_opinfo = opinfo; 539 /* skip upgrading lease about breaking lease */ 540 if (atomic_read(&opinfo->breaking_cnt)) { 541 read_lock(&ci->m_lock); 542 continue; 543 } 544 545 /* upgrading lease */ 546 if ((atomic_read(&ci->op_count) + 547 atomic_read(&ci->sop_count)) == 1) { 548 if (lease->state != SMB2_LEASE_NONE_LE && 549 lease->state == (lctx->req_state & lease->state)) { 550 lease->epoch++; 551 lease->state |= lctx->req_state; 552 if (lctx->req_state & 553 SMB2_LEASE_WRITE_CACHING_LE) 554 lease_read_to_write(opinfo); 555 556 } 557 } else if ((atomic_read(&ci->op_count) + 558 atomic_read(&ci->sop_count)) > 1) { 559 if (lctx->req_state == 560 (SMB2_LEASE_READ_CACHING_LE | 561 SMB2_LEASE_HANDLE_CACHING_LE)) { 562 lease->epoch++; 563 lease->state = lctx->req_state; 564 } 565 } 566 567 if (lctx->req_state && lease->state == 568 SMB2_LEASE_NONE_LE) { 569 lease->epoch++; 570 lease_none_upgrade(opinfo, lctx->req_state); 571 } 572 } 573 read_lock(&ci->m_lock); 574 } 575 read_unlock(&ci->m_lock); 576 577 return m_opinfo; 578 } 579 580 static void wait_for_break_ack(struct oplock_info *opinfo) 581 { 582 int rc = 0; 583 584 rc = wait_event_interruptible_timeout(opinfo->oplock_q, 585 opinfo->op_state == OPLOCK_STATE_NONE || 586 opinfo->op_state == OPLOCK_CLOSING, 587 OPLOCK_WAIT_TIME); 588 589 /* is this a timeout ? */ 590 if (!rc) { 591 if (opinfo->is_lease) 592 opinfo->o_lease->state = SMB2_LEASE_NONE_LE; 593 opinfo->level = SMB2_OPLOCK_LEVEL_NONE; 594 opinfo->op_state = OPLOCK_STATE_NONE; 595 } 596 } 597 598 static void wake_up_oplock_break(struct oplock_info *opinfo) 599 { 600 clear_bit_unlock(0, &opinfo->pending_break); 601 /* memory barrier is needed for wake_up_bit() */ 602 smp_mb__after_atomic(); 603 wake_up_bit(&opinfo->pending_break, 0); 604 } 605 606 static int oplock_break_pending(struct oplock_info *opinfo, int req_op_level) 607 { 608 while (test_and_set_bit(0, &opinfo->pending_break)) { 609 wait_on_bit(&opinfo->pending_break, 0, TASK_UNINTERRUPTIBLE); 610 611 /* Not immediately break to none. */ 612 opinfo->open_trunc = 0; 613 614 if (opinfo->op_state == OPLOCK_CLOSING) 615 return -ENOENT; 616 else if (opinfo->level <= req_op_level) { 617 if (opinfo->is_lease == false) 618 return 1; 619 620 if (opinfo->o_lease->state != 621 (SMB2_LEASE_HANDLE_CACHING_LE | 622 SMB2_LEASE_READ_CACHING_LE)) 623 return 1; 624 } 625 } 626 627 if (opinfo->level <= req_op_level) { 628 if (opinfo->is_lease == false) { 629 wake_up_oplock_break(opinfo); 630 return 1; 631 } 632 if (opinfo->o_lease->state != 633 (SMB2_LEASE_HANDLE_CACHING_LE | 634 SMB2_LEASE_READ_CACHING_LE)) { 635 wake_up_oplock_break(opinfo); 636 return 1; 637 } 638 } 639 return 0; 640 } 641 642 /** 643 * __smb2_oplock_break_noti() - send smb2 oplock break cmd from conn 644 * to client 645 * @wk: smb work object 646 * 647 * There are two ways this function can be called. 1- while file open we break 648 * from exclusive/batch lock to levelII oplock and 2- while file write/truncate 649 * we break from levelII oplock no oplock. 650 * work->request_buf contains oplock_info. 651 */ 652 static void __smb2_oplock_break_noti(struct work_struct *wk) 653 { 654 struct smb2_oplock_break *rsp = NULL; 655 struct ksmbd_work *work = container_of(wk, struct ksmbd_work, work); 656 struct oplock_break_info *br_info = work->request_buf; 657 struct smb2_hdr *rsp_hdr; 658 struct ksmbd_file *fp; 659 660 fp = ksmbd_lookup_global_fd(br_info->fid); 661 if (!fp) 662 goto out; 663 664 if (allocate_interim_rsp_buf(work)) { 665 pr_err("smb2_allocate_rsp_buf failed! "); 666 ksmbd_fd_put(work, fp); 667 goto out; 668 } 669 670 rsp_hdr = smb2_get_msg(work->response_buf); 671 memset(rsp_hdr, 0, sizeof(struct smb2_hdr) + 2); 672 rsp_hdr->ProtocolId = SMB2_PROTO_NUMBER; 673 rsp_hdr->StructureSize = SMB2_HEADER_STRUCTURE_SIZE; 674 rsp_hdr->CreditRequest = cpu_to_le16(0); 675 rsp_hdr->Command = SMB2_OPLOCK_BREAK; 676 rsp_hdr->Flags = (SMB2_FLAGS_SERVER_TO_REDIR); 677 rsp_hdr->NextCommand = 0; 678 rsp_hdr->MessageId = cpu_to_le64(-1); 679 rsp_hdr->Id.SyncId.ProcessId = 0; 680 rsp_hdr->Id.SyncId.TreeId = 0; 681 rsp_hdr->SessionId = 0; 682 memset(rsp_hdr->Signature, 0, 16); 683 684 rsp = smb2_get_msg(work->response_buf); 685 686 rsp->StructureSize = cpu_to_le16(24); 687 if (!br_info->open_trunc && 688 (br_info->level == SMB2_OPLOCK_LEVEL_BATCH || 689 br_info->level == SMB2_OPLOCK_LEVEL_EXCLUSIVE)) 690 rsp->OplockLevel = SMB2_OPLOCK_LEVEL_II; 691 else 692 rsp->OplockLevel = SMB2_OPLOCK_LEVEL_NONE; 693 rsp->Reserved = 0; 694 rsp->Reserved2 = 0; 695 rsp->PersistentFid = fp->persistent_id; 696 rsp->VolatileFid = fp->volatile_id; 697 698 ksmbd_fd_put(work, fp); 699 if (ksmbd_iov_pin_rsp(work, (void *)rsp, 700 sizeof(struct smb2_oplock_break))) 701 goto out; 702 703 ksmbd_debug(OPLOCK, 704 "sending oplock break v_id %llu p_id = %llu lock level = %d\n", 705 rsp->VolatileFid, rsp->PersistentFid, rsp->OplockLevel); 706 707 ksmbd_conn_write(work); 708 709 out: 710 ksmbd_free_work_struct(work); 711 } 712 713 /** 714 * smb2_oplock_break_noti() - send smb2 exclusive/batch to level2 oplock 715 * break command from server to client 716 * @opinfo: oplock info object 717 * 718 * Return: 0 on success, otherwise error 719 */ 720 static int smb2_oplock_break_noti(struct oplock_info *opinfo) 721 { 722 struct ksmbd_conn *conn = opinfo->conn; 723 struct oplock_break_info *br_info; 724 int ret = 0; 725 struct ksmbd_work *work = ksmbd_alloc_work_struct(); 726 727 if (!work) 728 return -ENOMEM; 729 730 br_info = kmalloc(sizeof(struct oplock_break_info), GFP_KERNEL); 731 if (!br_info) { 732 ksmbd_free_work_struct(work); 733 return -ENOMEM; 734 } 735 736 br_info->level = opinfo->level; 737 br_info->fid = opinfo->fid; 738 br_info->open_trunc = opinfo->open_trunc; 739 740 work->request_buf = (char *)br_info; 741 work->conn = conn; 742 work->sess = opinfo->sess; 743 744 if (opinfo->op_state == OPLOCK_ACK_WAIT) { 745 INIT_WORK(&work->work, __smb2_oplock_break_noti); 746 ksmbd_queue_work(work); 747 748 wait_for_break_ack(opinfo); 749 } else { 750 __smb2_oplock_break_noti(&work->work); 751 if (opinfo->level == SMB2_OPLOCK_LEVEL_II) 752 opinfo->level = SMB2_OPLOCK_LEVEL_NONE; 753 } 754 return ret; 755 } 756 757 /** 758 * __smb2_lease_break_noti() - send lease break command from server 759 * to client 760 * @wk: smb work object 761 */ 762 static void __smb2_lease_break_noti(struct work_struct *wk) 763 { 764 struct smb2_lease_break *rsp = NULL; 765 struct ksmbd_work *work = container_of(wk, struct ksmbd_work, work); 766 struct lease_break_info *br_info = work->request_buf; 767 struct smb2_hdr *rsp_hdr; 768 769 if (allocate_interim_rsp_buf(work)) { 770 ksmbd_debug(OPLOCK, "smb2_allocate_rsp_buf failed! "); 771 goto out; 772 } 773 774 rsp_hdr = smb2_get_msg(work->response_buf); 775 memset(rsp_hdr, 0, sizeof(struct smb2_hdr) + 2); 776 rsp_hdr->ProtocolId = SMB2_PROTO_NUMBER; 777 rsp_hdr->StructureSize = SMB2_HEADER_STRUCTURE_SIZE; 778 rsp_hdr->CreditRequest = cpu_to_le16(0); 779 rsp_hdr->Command = SMB2_OPLOCK_BREAK; 780 rsp_hdr->Flags = (SMB2_FLAGS_SERVER_TO_REDIR); 781 rsp_hdr->NextCommand = 0; 782 rsp_hdr->MessageId = cpu_to_le64(-1); 783 rsp_hdr->Id.SyncId.ProcessId = 0; 784 rsp_hdr->Id.SyncId.TreeId = 0; 785 rsp_hdr->SessionId = 0; 786 memset(rsp_hdr->Signature, 0, 16); 787 788 rsp = smb2_get_msg(work->response_buf); 789 rsp->StructureSize = cpu_to_le16(44); 790 rsp->Epoch = br_info->epoch; 791 rsp->Flags = 0; 792 793 if (br_info->curr_state & (SMB2_LEASE_WRITE_CACHING_LE | 794 SMB2_LEASE_HANDLE_CACHING_LE)) 795 rsp->Flags = SMB2_NOTIFY_BREAK_LEASE_FLAG_ACK_REQUIRED; 796 797 memcpy(rsp->LeaseKey, br_info->lease_key, SMB2_LEASE_KEY_SIZE); 798 rsp->CurrentLeaseState = br_info->curr_state; 799 rsp->NewLeaseState = br_info->new_state; 800 rsp->BreakReason = 0; 801 rsp->AccessMaskHint = 0; 802 rsp->ShareMaskHint = 0; 803 804 if (ksmbd_iov_pin_rsp(work, (void *)rsp, 805 sizeof(struct smb2_lease_break))) 806 goto out; 807 808 ksmbd_conn_write(work); 809 810 out: 811 ksmbd_free_work_struct(work); 812 } 813 814 /** 815 * smb2_lease_break_noti() - break lease when a new client request 816 * write lease 817 * @opinfo: conains lease state information 818 * 819 * Return: 0 on success, otherwise error 820 */ 821 static int smb2_lease_break_noti(struct oplock_info *opinfo) 822 { 823 struct ksmbd_conn *conn = opinfo->conn; 824 struct list_head *tmp, *t; 825 struct ksmbd_work *work; 826 struct lease_break_info *br_info; 827 struct lease *lease = opinfo->o_lease; 828 829 work = ksmbd_alloc_work_struct(); 830 if (!work) 831 return -ENOMEM; 832 833 br_info = kmalloc(sizeof(struct lease_break_info), GFP_KERNEL); 834 if (!br_info) { 835 ksmbd_free_work_struct(work); 836 return -ENOMEM; 837 } 838 839 br_info->curr_state = lease->state; 840 br_info->new_state = lease->new_state; 841 if (lease->version == 2) 842 br_info->epoch = cpu_to_le16(++lease->epoch); 843 else 844 br_info->epoch = 0; 845 memcpy(br_info->lease_key, lease->lease_key, SMB2_LEASE_KEY_SIZE); 846 847 work->request_buf = (char *)br_info; 848 work->conn = conn; 849 work->sess = opinfo->sess; 850 851 if (opinfo->op_state == OPLOCK_ACK_WAIT) { 852 list_for_each_safe(tmp, t, &opinfo->interim_list) { 853 struct ksmbd_work *in_work; 854 855 in_work = list_entry(tmp, struct ksmbd_work, 856 interim_entry); 857 setup_async_work(in_work, NULL, NULL); 858 smb2_send_interim_resp(in_work, STATUS_PENDING); 859 list_del_init(&in_work->interim_entry); 860 release_async_work(in_work); 861 } 862 INIT_WORK(&work->work, __smb2_lease_break_noti); 863 ksmbd_queue_work(work); 864 wait_for_break_ack(opinfo); 865 } else { 866 __smb2_lease_break_noti(&work->work); 867 if (opinfo->o_lease->new_state == SMB2_LEASE_NONE_LE) { 868 opinfo->level = SMB2_OPLOCK_LEVEL_NONE; 869 opinfo->o_lease->state = SMB2_LEASE_NONE_LE; 870 } 871 } 872 return 0; 873 } 874 875 static void wait_lease_breaking(struct oplock_info *opinfo) 876 { 877 if (!opinfo->is_lease) 878 return; 879 880 wake_up_interruptible_all(&opinfo->oplock_brk); 881 if (atomic_read(&opinfo->breaking_cnt)) { 882 int ret = 0; 883 884 ret = wait_event_interruptible_timeout(opinfo->oplock_brk, 885 atomic_read(&opinfo->breaking_cnt) == 0, 886 HZ); 887 if (!ret) 888 atomic_set(&opinfo->breaking_cnt, 0); 889 } 890 } 891 892 static int oplock_break(struct oplock_info *brk_opinfo, int req_op_level) 893 { 894 int err = 0; 895 896 /* Need to break exclusive/batch oplock, write lease or overwrite_if */ 897 ksmbd_debug(OPLOCK, 898 "request to send oplock(level : 0x%x) break notification\n", 899 brk_opinfo->level); 900 901 if (brk_opinfo->is_lease) { 902 struct lease *lease = brk_opinfo->o_lease; 903 904 atomic_inc(&brk_opinfo->breaking_cnt); 905 err = oplock_break_pending(brk_opinfo, req_op_level); 906 if (err) 907 return err < 0 ? err : 0; 908 909 if (brk_opinfo->open_trunc) { 910 /* 911 * Create overwrite break trigger the lease break to 912 * none. 913 */ 914 lease->new_state = SMB2_LEASE_NONE_LE; 915 } else { 916 if (lease->state & SMB2_LEASE_WRITE_CACHING_LE) { 917 if (lease->state & SMB2_LEASE_HANDLE_CACHING_LE) 918 lease->new_state = 919 SMB2_LEASE_READ_CACHING_LE | 920 SMB2_LEASE_HANDLE_CACHING_LE; 921 else 922 lease->new_state = 923 SMB2_LEASE_READ_CACHING_LE; 924 } else { 925 if (lease->state & SMB2_LEASE_HANDLE_CACHING_LE && 926 !lease->is_dir) 927 lease->new_state = 928 SMB2_LEASE_READ_CACHING_LE; 929 else 930 lease->new_state = SMB2_LEASE_NONE_LE; 931 } 932 } 933 934 if (lease->state & (SMB2_LEASE_WRITE_CACHING_LE | 935 SMB2_LEASE_HANDLE_CACHING_LE)) 936 brk_opinfo->op_state = OPLOCK_ACK_WAIT; 937 else 938 atomic_dec(&brk_opinfo->breaking_cnt); 939 } else { 940 err = oplock_break_pending(brk_opinfo, req_op_level); 941 if (err) 942 return err < 0 ? err : 0; 943 944 if (brk_opinfo->level == SMB2_OPLOCK_LEVEL_BATCH || 945 brk_opinfo->level == SMB2_OPLOCK_LEVEL_EXCLUSIVE) 946 brk_opinfo->op_state = OPLOCK_ACK_WAIT; 947 } 948 949 if (brk_opinfo->is_lease) 950 err = smb2_lease_break_noti(brk_opinfo); 951 else 952 err = smb2_oplock_break_noti(brk_opinfo); 953 954 ksmbd_debug(OPLOCK, "oplock granted = %d\n", brk_opinfo->level); 955 if (brk_opinfo->op_state == OPLOCK_CLOSING) 956 err = -ENOENT; 957 wake_up_oplock_break(brk_opinfo); 958 959 wait_lease_breaking(brk_opinfo); 960 961 return err; 962 } 963 964 void destroy_lease_table(struct ksmbd_conn *conn) 965 { 966 struct lease_table *lb, *lbtmp; 967 struct oplock_info *opinfo; 968 969 write_lock(&lease_list_lock); 970 if (list_empty(&lease_table_list)) { 971 write_unlock(&lease_list_lock); 972 return; 973 } 974 975 list_for_each_entry_safe(lb, lbtmp, &lease_table_list, l_entry) { 976 if (conn && memcmp(lb->client_guid, conn->ClientGUID, 977 SMB2_CLIENT_GUID_SIZE)) 978 continue; 979 again: 980 rcu_read_lock(); 981 list_for_each_entry_rcu(opinfo, &lb->lease_list, 982 lease_entry) { 983 rcu_read_unlock(); 984 lease_del_list(opinfo); 985 goto again; 986 } 987 rcu_read_unlock(); 988 list_del(&lb->l_entry); 989 kfree(lb); 990 } 991 write_unlock(&lease_list_lock); 992 } 993 994 int find_same_lease_key(struct ksmbd_session *sess, struct ksmbd_inode *ci, 995 struct lease_ctx_info *lctx) 996 { 997 struct oplock_info *opinfo; 998 int err = 0; 999 struct lease_table *lb; 1000 1001 if (!lctx) 1002 return err; 1003 1004 read_lock(&lease_list_lock); 1005 if (list_empty(&lease_table_list)) { 1006 read_unlock(&lease_list_lock); 1007 return 0; 1008 } 1009 1010 list_for_each_entry(lb, &lease_table_list, l_entry) { 1011 if (!memcmp(lb->client_guid, sess->ClientGUID, 1012 SMB2_CLIENT_GUID_SIZE)) 1013 goto found; 1014 } 1015 read_unlock(&lease_list_lock); 1016 1017 return 0; 1018 1019 found: 1020 rcu_read_lock(); 1021 list_for_each_entry_rcu(opinfo, &lb->lease_list, lease_entry) { 1022 if (!atomic_inc_not_zero(&opinfo->refcount)) 1023 continue; 1024 rcu_read_unlock(); 1025 if (opinfo->o_fp->f_ci == ci) 1026 goto op_next; 1027 err = compare_guid_key(opinfo, sess->ClientGUID, 1028 lctx->lease_key); 1029 if (err) { 1030 err = -EINVAL; 1031 ksmbd_debug(OPLOCK, 1032 "found same lease key is already used in other files\n"); 1033 opinfo_put(opinfo); 1034 goto out; 1035 } 1036 op_next: 1037 opinfo_put(opinfo); 1038 rcu_read_lock(); 1039 } 1040 rcu_read_unlock(); 1041 1042 out: 1043 read_unlock(&lease_list_lock); 1044 return err; 1045 } 1046 1047 static void copy_lease(struct oplock_info *op1, struct oplock_info *op2) 1048 { 1049 struct lease *lease1 = op1->o_lease; 1050 struct lease *lease2 = op2->o_lease; 1051 1052 op2->level = op1->level; 1053 lease2->state = lease1->state; 1054 memcpy(lease2->lease_key, lease1->lease_key, 1055 SMB2_LEASE_KEY_SIZE); 1056 lease2->duration = lease1->duration; 1057 lease2->flags = lease1->flags; 1058 lease2->epoch = lease1->epoch; 1059 lease2->version = lease1->version; 1060 } 1061 1062 static int add_lease_global_list(struct oplock_info *opinfo) 1063 { 1064 struct lease_table *lb; 1065 1066 read_lock(&lease_list_lock); 1067 list_for_each_entry(lb, &lease_table_list, l_entry) { 1068 if (!memcmp(lb->client_guid, opinfo->conn->ClientGUID, 1069 SMB2_CLIENT_GUID_SIZE)) { 1070 opinfo->o_lease->l_lb = lb; 1071 lease_add_list(opinfo); 1072 read_unlock(&lease_list_lock); 1073 return 0; 1074 } 1075 } 1076 read_unlock(&lease_list_lock); 1077 1078 lb = kmalloc(sizeof(struct lease_table), GFP_KERNEL); 1079 if (!lb) 1080 return -ENOMEM; 1081 1082 memcpy(lb->client_guid, opinfo->conn->ClientGUID, 1083 SMB2_CLIENT_GUID_SIZE); 1084 INIT_LIST_HEAD(&lb->lease_list); 1085 spin_lock_init(&lb->lb_lock); 1086 opinfo->o_lease->l_lb = lb; 1087 lease_add_list(opinfo); 1088 lb_add(lb); 1089 return 0; 1090 } 1091 1092 static void set_oplock_level(struct oplock_info *opinfo, int level, 1093 struct lease_ctx_info *lctx) 1094 { 1095 switch (level) { 1096 case SMB2_OPLOCK_LEVEL_BATCH: 1097 case SMB2_OPLOCK_LEVEL_EXCLUSIVE: 1098 grant_write_oplock(opinfo, level, lctx); 1099 break; 1100 case SMB2_OPLOCK_LEVEL_II: 1101 grant_read_oplock(opinfo, lctx); 1102 break; 1103 default: 1104 grant_none_oplock(opinfo, lctx); 1105 break; 1106 } 1107 } 1108 1109 void smb_send_parent_lease_break_noti(struct ksmbd_file *fp, 1110 struct lease_ctx_info *lctx) 1111 { 1112 struct oplock_info *opinfo; 1113 struct ksmbd_inode *p_ci = NULL; 1114 1115 if (lctx->version != 2) 1116 return; 1117 1118 p_ci = ksmbd_inode_lookup_lock(fp->filp->f_path.dentry->d_parent); 1119 if (!p_ci) 1120 return; 1121 1122 read_lock(&p_ci->m_lock); 1123 list_for_each_entry(opinfo, &p_ci->m_op_list, op_entry) { 1124 if (opinfo->conn == NULL || !opinfo->is_lease) 1125 continue; 1126 1127 if (opinfo->o_lease->state != SMB2_OPLOCK_LEVEL_NONE && 1128 (!(lctx->flags & SMB2_LEASE_FLAG_PARENT_LEASE_KEY_SET_LE) || 1129 !compare_guid_key(opinfo, fp->conn->ClientGUID, 1130 lctx->parent_lease_key))) { 1131 if (!atomic_inc_not_zero(&opinfo->refcount)) 1132 continue; 1133 1134 atomic_inc(&opinfo->conn->r_count); 1135 if (ksmbd_conn_releasing(opinfo->conn)) { 1136 atomic_dec(&opinfo->conn->r_count); 1137 continue; 1138 } 1139 1140 read_unlock(&p_ci->m_lock); 1141 oplock_break(opinfo, SMB2_OPLOCK_LEVEL_NONE); 1142 opinfo_conn_put(opinfo); 1143 read_lock(&p_ci->m_lock); 1144 } 1145 } 1146 read_unlock(&p_ci->m_lock); 1147 1148 ksmbd_inode_put(p_ci); 1149 } 1150 1151 void smb_lazy_parent_lease_break_close(struct ksmbd_file *fp) 1152 { 1153 struct oplock_info *opinfo; 1154 struct ksmbd_inode *p_ci = NULL; 1155 1156 rcu_read_lock(); 1157 opinfo = rcu_dereference(fp->f_opinfo); 1158 rcu_read_unlock(); 1159 1160 if (!opinfo || !opinfo->is_lease || opinfo->o_lease->version != 2) 1161 return; 1162 1163 p_ci = ksmbd_inode_lookup_lock(fp->filp->f_path.dentry->d_parent); 1164 if (!p_ci) 1165 return; 1166 1167 read_lock(&p_ci->m_lock); 1168 list_for_each_entry(opinfo, &p_ci->m_op_list, op_entry) { 1169 if (opinfo->conn == NULL || !opinfo->is_lease) 1170 continue; 1171 1172 if (opinfo->o_lease->state != SMB2_OPLOCK_LEVEL_NONE) { 1173 if (!atomic_inc_not_zero(&opinfo->refcount)) 1174 continue; 1175 1176 atomic_inc(&opinfo->conn->r_count); 1177 if (ksmbd_conn_releasing(opinfo->conn)) { 1178 atomic_dec(&opinfo->conn->r_count); 1179 continue; 1180 } 1181 read_unlock(&p_ci->m_lock); 1182 oplock_break(opinfo, SMB2_OPLOCK_LEVEL_NONE); 1183 opinfo_conn_put(opinfo); 1184 read_lock(&p_ci->m_lock); 1185 } 1186 } 1187 read_unlock(&p_ci->m_lock); 1188 1189 ksmbd_inode_put(p_ci); 1190 } 1191 1192 /** 1193 * smb_grant_oplock() - handle oplock/lease request on file open 1194 * @work: smb work 1195 * @req_op_level: oplock level 1196 * @pid: id of open file 1197 * @fp: ksmbd file pointer 1198 * @tid: Tree id of connection 1199 * @lctx: lease context information on file open 1200 * @share_ret: share mode 1201 * 1202 * Return: 0 on success, otherwise error 1203 */ 1204 int smb_grant_oplock(struct ksmbd_work *work, int req_op_level, u64 pid, 1205 struct ksmbd_file *fp, __u16 tid, 1206 struct lease_ctx_info *lctx, int share_ret) 1207 { 1208 struct ksmbd_session *sess = work->sess; 1209 int err = 0; 1210 struct oplock_info *opinfo = NULL, *prev_opinfo = NULL; 1211 struct ksmbd_inode *ci = fp->f_ci; 1212 bool prev_op_has_lease; 1213 __le32 prev_op_state = 0; 1214 1215 /* Only v2 leases handle the directory */ 1216 if (S_ISDIR(file_inode(fp->filp)->i_mode)) { 1217 if (!lctx || lctx->version != 2 || 1218 (lctx->flags != SMB2_LEASE_FLAG_PARENT_LEASE_KEY_SET_LE && 1219 !lctx->epoch)) 1220 return 0; 1221 } 1222 1223 opinfo = alloc_opinfo(work, pid, tid); 1224 if (!opinfo) 1225 return -ENOMEM; 1226 1227 if (lctx) { 1228 err = alloc_lease(opinfo, lctx); 1229 if (err) 1230 goto err_out; 1231 opinfo->is_lease = 1; 1232 } 1233 1234 /* ci does not have any oplock */ 1235 if (!opinfo_count(fp)) 1236 goto set_lev; 1237 1238 /* grant none-oplock if second open is trunc */ 1239 if (fp->attrib_only && fp->cdoption != FILE_OVERWRITE_IF_LE && 1240 fp->cdoption != FILE_OVERWRITE_LE && 1241 fp->cdoption != FILE_SUPERSEDE_LE) { 1242 req_op_level = SMB2_OPLOCK_LEVEL_NONE; 1243 goto set_lev; 1244 } 1245 1246 if (lctx) { 1247 struct oplock_info *m_opinfo; 1248 1249 /* is lease already granted ? */ 1250 m_opinfo = same_client_has_lease(ci, sess->ClientGUID, 1251 lctx); 1252 if (m_opinfo) { 1253 copy_lease(m_opinfo, opinfo); 1254 if (atomic_read(&m_opinfo->breaking_cnt)) 1255 opinfo->o_lease->flags = 1256 SMB2_LEASE_FLAG_BREAK_IN_PROGRESS_LE; 1257 goto out; 1258 } 1259 } 1260 prev_opinfo = opinfo_get_list(ci); 1261 if (!prev_opinfo || 1262 (prev_opinfo->level == SMB2_OPLOCK_LEVEL_NONE && lctx)) { 1263 opinfo_conn_put(prev_opinfo); 1264 goto set_lev; 1265 } 1266 prev_op_has_lease = prev_opinfo->is_lease; 1267 if (prev_op_has_lease) 1268 prev_op_state = prev_opinfo->o_lease->state; 1269 1270 if (share_ret < 0 && 1271 prev_opinfo->level == SMB2_OPLOCK_LEVEL_EXCLUSIVE) { 1272 err = share_ret; 1273 opinfo_conn_put(prev_opinfo); 1274 goto err_out; 1275 } 1276 1277 if (prev_opinfo->level != SMB2_OPLOCK_LEVEL_BATCH && 1278 prev_opinfo->level != SMB2_OPLOCK_LEVEL_EXCLUSIVE) { 1279 opinfo_conn_put(prev_opinfo); 1280 goto op_break_not_needed; 1281 } 1282 1283 list_add(&work->interim_entry, &prev_opinfo->interim_list); 1284 err = oplock_break(prev_opinfo, SMB2_OPLOCK_LEVEL_II); 1285 opinfo_conn_put(prev_opinfo); 1286 if (err == -ENOENT) 1287 goto set_lev; 1288 /* Check all oplock was freed by close */ 1289 else if (err < 0) 1290 goto err_out; 1291 1292 op_break_not_needed: 1293 if (share_ret < 0) { 1294 err = share_ret; 1295 goto err_out; 1296 } 1297 1298 if (req_op_level != SMB2_OPLOCK_LEVEL_NONE) 1299 req_op_level = SMB2_OPLOCK_LEVEL_II; 1300 1301 /* grant fixed oplock on stacked locking between lease and oplock */ 1302 if (prev_op_has_lease && !lctx) 1303 if (prev_op_state & SMB2_LEASE_HANDLE_CACHING_LE) 1304 req_op_level = SMB2_OPLOCK_LEVEL_NONE; 1305 1306 if (!prev_op_has_lease && lctx) { 1307 req_op_level = SMB2_OPLOCK_LEVEL_II; 1308 lctx->req_state = SMB2_LEASE_READ_CACHING_LE; 1309 } 1310 1311 set_lev: 1312 set_oplock_level(opinfo, req_op_level, lctx); 1313 1314 out: 1315 rcu_assign_pointer(fp->f_opinfo, opinfo); 1316 opinfo->o_fp = fp; 1317 1318 opinfo_count_inc(fp); 1319 opinfo_add(opinfo); 1320 if (opinfo->is_lease) { 1321 err = add_lease_global_list(opinfo); 1322 if (err) 1323 goto err_out; 1324 } 1325 1326 return 0; 1327 err_out: 1328 free_opinfo(opinfo); 1329 return err; 1330 } 1331 1332 /** 1333 * smb_break_all_write_oplock() - break batch/exclusive oplock to level2 1334 * @work: smb work 1335 * @fp: ksmbd file pointer 1336 * @is_trunc: truncate on open 1337 */ 1338 static void smb_break_all_write_oplock(struct ksmbd_work *work, 1339 struct ksmbd_file *fp, int is_trunc) 1340 { 1341 struct oplock_info *brk_opinfo; 1342 1343 brk_opinfo = opinfo_get_list(fp->f_ci); 1344 if (!brk_opinfo) 1345 return; 1346 if (brk_opinfo->level != SMB2_OPLOCK_LEVEL_BATCH && 1347 brk_opinfo->level != SMB2_OPLOCK_LEVEL_EXCLUSIVE) { 1348 opinfo_conn_put(brk_opinfo); 1349 return; 1350 } 1351 1352 brk_opinfo->open_trunc = is_trunc; 1353 list_add(&work->interim_entry, &brk_opinfo->interim_list); 1354 oplock_break(brk_opinfo, SMB2_OPLOCK_LEVEL_II); 1355 opinfo_conn_put(brk_opinfo); 1356 } 1357 1358 /** 1359 * smb_break_all_levII_oplock() - send level2 oplock or read lease break command 1360 * from server to client 1361 * @work: smb work 1362 * @fp: ksmbd file pointer 1363 * @is_trunc: truncate on open 1364 */ 1365 void smb_break_all_levII_oplock(struct ksmbd_work *work, struct ksmbd_file *fp, 1366 int is_trunc) 1367 { 1368 struct oplock_info *op, *brk_op; 1369 struct ksmbd_inode *ci; 1370 struct ksmbd_conn *conn = work->conn; 1371 1372 if (!test_share_config_flag(work->tcon->share_conf, 1373 KSMBD_SHARE_FLAG_OPLOCKS)) 1374 return; 1375 1376 ci = fp->f_ci; 1377 op = opinfo_get(fp); 1378 1379 rcu_read_lock(); 1380 list_for_each_entry_rcu(brk_op, &ci->m_op_list, op_entry) { 1381 if (brk_op->conn == NULL) 1382 continue; 1383 1384 if (!atomic_inc_not_zero(&brk_op->refcount)) 1385 continue; 1386 1387 atomic_inc(&brk_op->conn->r_count); 1388 if (ksmbd_conn_releasing(brk_op->conn)) { 1389 atomic_dec(&brk_op->conn->r_count); 1390 continue; 1391 } 1392 1393 rcu_read_unlock(); 1394 if (brk_op->is_lease && (brk_op->o_lease->state & 1395 (~(SMB2_LEASE_READ_CACHING_LE | 1396 SMB2_LEASE_HANDLE_CACHING_LE)))) { 1397 ksmbd_debug(OPLOCK, "unexpected lease state(0x%x)\n", 1398 brk_op->o_lease->state); 1399 goto next; 1400 } else if (brk_op->level != 1401 SMB2_OPLOCK_LEVEL_II) { 1402 ksmbd_debug(OPLOCK, "unexpected oplock(0x%x)\n", 1403 brk_op->level); 1404 goto next; 1405 } 1406 1407 /* Skip oplock being break to none */ 1408 if (brk_op->is_lease && 1409 brk_op->o_lease->new_state == SMB2_LEASE_NONE_LE && 1410 atomic_read(&brk_op->breaking_cnt)) 1411 goto next; 1412 1413 if (op && op->is_lease && brk_op->is_lease && 1414 !memcmp(conn->ClientGUID, brk_op->conn->ClientGUID, 1415 SMB2_CLIENT_GUID_SIZE) && 1416 !memcmp(op->o_lease->lease_key, brk_op->o_lease->lease_key, 1417 SMB2_LEASE_KEY_SIZE)) 1418 goto next; 1419 brk_op->open_trunc = is_trunc; 1420 oplock_break(brk_op, SMB2_OPLOCK_LEVEL_NONE); 1421 next: 1422 opinfo_conn_put(brk_op); 1423 rcu_read_lock(); 1424 } 1425 rcu_read_unlock(); 1426 1427 if (op) 1428 opinfo_put(op); 1429 } 1430 1431 /** 1432 * smb_break_all_oplock() - break both batch/exclusive and level2 oplock 1433 * @work: smb work 1434 * @fp: ksmbd file pointer 1435 */ 1436 void smb_break_all_oplock(struct ksmbd_work *work, struct ksmbd_file *fp) 1437 { 1438 if (!test_share_config_flag(work->tcon->share_conf, 1439 KSMBD_SHARE_FLAG_OPLOCKS)) 1440 return; 1441 1442 smb_break_all_write_oplock(work, fp, 1); 1443 smb_break_all_levII_oplock(work, fp, 1); 1444 } 1445 1446 /** 1447 * smb2_map_lease_to_oplock() - map lease state to corresponding oplock type 1448 * @lease_state: lease type 1449 * 1450 * Return: 0 if no mapping, otherwise corresponding oplock type 1451 */ 1452 __u8 smb2_map_lease_to_oplock(__le32 lease_state) 1453 { 1454 if (lease_state == (SMB2_LEASE_HANDLE_CACHING_LE | 1455 SMB2_LEASE_READ_CACHING_LE | 1456 SMB2_LEASE_WRITE_CACHING_LE)) { 1457 return SMB2_OPLOCK_LEVEL_BATCH; 1458 } else if (lease_state != SMB2_LEASE_WRITE_CACHING_LE && 1459 lease_state & SMB2_LEASE_WRITE_CACHING_LE) { 1460 if (!(lease_state & SMB2_LEASE_HANDLE_CACHING_LE)) 1461 return SMB2_OPLOCK_LEVEL_EXCLUSIVE; 1462 } else if (lease_state & SMB2_LEASE_READ_CACHING_LE) { 1463 return SMB2_OPLOCK_LEVEL_II; 1464 } 1465 return 0; 1466 } 1467 1468 /** 1469 * create_lease_buf() - create lease context for open cmd response 1470 * @rbuf: buffer to create lease context response 1471 * @lease: buffer to stored parsed lease state information 1472 */ 1473 void create_lease_buf(u8 *rbuf, struct lease *lease) 1474 { 1475 if (lease->version == 2) { 1476 struct create_lease_v2 *buf = (struct create_lease_v2 *)rbuf; 1477 1478 memset(buf, 0, sizeof(struct create_lease_v2)); 1479 memcpy(buf->lcontext.LeaseKey, lease->lease_key, 1480 SMB2_LEASE_KEY_SIZE); 1481 buf->lcontext.LeaseFlags = lease->flags; 1482 buf->lcontext.Epoch = cpu_to_le16(lease->epoch); 1483 buf->lcontext.LeaseState = lease->state; 1484 if (lease->flags == SMB2_LEASE_FLAG_PARENT_LEASE_KEY_SET_LE) 1485 memcpy(buf->lcontext.ParentLeaseKey, lease->parent_lease_key, 1486 SMB2_LEASE_KEY_SIZE); 1487 buf->ccontext.DataOffset = cpu_to_le16(offsetof 1488 (struct create_lease_v2, lcontext)); 1489 buf->ccontext.DataLength = cpu_to_le32(sizeof(struct lease_context_v2)); 1490 buf->ccontext.NameOffset = cpu_to_le16(offsetof 1491 (struct create_lease_v2, Name)); 1492 buf->ccontext.NameLength = cpu_to_le16(4); 1493 buf->Name[0] = 'R'; 1494 buf->Name[1] = 'q'; 1495 buf->Name[2] = 'L'; 1496 buf->Name[3] = 's'; 1497 } else { 1498 struct create_lease *buf = (struct create_lease *)rbuf; 1499 1500 memset(buf, 0, sizeof(struct create_lease)); 1501 memcpy(buf->lcontext.LeaseKey, lease->lease_key, SMB2_LEASE_KEY_SIZE); 1502 buf->lcontext.LeaseFlags = lease->flags; 1503 buf->lcontext.LeaseState = lease->state; 1504 buf->ccontext.DataOffset = cpu_to_le16(offsetof 1505 (struct create_lease, lcontext)); 1506 buf->ccontext.DataLength = cpu_to_le32(sizeof(struct lease_context)); 1507 buf->ccontext.NameOffset = cpu_to_le16(offsetof 1508 (struct create_lease, Name)); 1509 buf->ccontext.NameLength = cpu_to_le16(4); 1510 buf->Name[0] = 'R'; 1511 buf->Name[1] = 'q'; 1512 buf->Name[2] = 'L'; 1513 buf->Name[3] = 's'; 1514 } 1515 } 1516 1517 /** 1518 * parse_lease_state() - parse lease context containted in file open request 1519 * @open_req: buffer containing smb2 file open(create) request 1520 * 1521 * Return: oplock state, -ENOENT if create lease context not found 1522 */ 1523 struct lease_ctx_info *parse_lease_state(void *open_req) 1524 { 1525 struct create_context *cc; 1526 struct smb2_create_req *req = (struct smb2_create_req *)open_req; 1527 struct lease_ctx_info *lreq; 1528 1529 cc = smb2_find_context_vals(req, SMB2_CREATE_REQUEST_LEASE, 4); 1530 if (IS_ERR_OR_NULL(cc)) 1531 return NULL; 1532 1533 lreq = kzalloc(sizeof(struct lease_ctx_info), GFP_KERNEL); 1534 if (!lreq) 1535 return NULL; 1536 1537 if (sizeof(struct lease_context_v2) == le32_to_cpu(cc->DataLength)) { 1538 struct create_lease_v2 *lc = (struct create_lease_v2 *)cc; 1539 1540 memcpy(lreq->lease_key, lc->lcontext.LeaseKey, SMB2_LEASE_KEY_SIZE); 1541 lreq->req_state = lc->lcontext.LeaseState; 1542 lreq->flags = lc->lcontext.LeaseFlags; 1543 lreq->epoch = lc->lcontext.Epoch; 1544 lreq->duration = lc->lcontext.LeaseDuration; 1545 if (lreq->flags == SMB2_LEASE_FLAG_PARENT_LEASE_KEY_SET_LE) 1546 memcpy(lreq->parent_lease_key, lc->lcontext.ParentLeaseKey, 1547 SMB2_LEASE_KEY_SIZE); 1548 lreq->version = 2; 1549 } else { 1550 struct create_lease *lc = (struct create_lease *)cc; 1551 1552 memcpy(lreq->lease_key, lc->lcontext.LeaseKey, SMB2_LEASE_KEY_SIZE); 1553 lreq->req_state = lc->lcontext.LeaseState; 1554 lreq->flags = lc->lcontext.LeaseFlags; 1555 lreq->duration = lc->lcontext.LeaseDuration; 1556 lreq->version = 1; 1557 } 1558 return lreq; 1559 } 1560 1561 /** 1562 * smb2_find_context_vals() - find a particular context info in open request 1563 * @open_req: buffer containing smb2 file open(create) request 1564 * @tag: context name to search for 1565 * @tag_len: the length of tag 1566 * 1567 * Return: pointer to requested context, NULL if @str context not found 1568 * or error pointer if name length is invalid. 1569 */ 1570 struct create_context *smb2_find_context_vals(void *open_req, const char *tag, int tag_len) 1571 { 1572 struct create_context *cc; 1573 unsigned int next = 0; 1574 char *name; 1575 struct smb2_create_req *req = (struct smb2_create_req *)open_req; 1576 unsigned int remain_len, name_off, name_len, value_off, value_len, 1577 cc_len; 1578 1579 /* 1580 * CreateContextsOffset and CreateContextsLength are guaranteed to 1581 * be valid because of ksmbd_smb2_check_message(). 1582 */ 1583 cc = (struct create_context *)((char *)req + 1584 le32_to_cpu(req->CreateContextsOffset)); 1585 remain_len = le32_to_cpu(req->CreateContextsLength); 1586 do { 1587 cc = (struct create_context *)((char *)cc + next); 1588 if (remain_len < offsetof(struct create_context, Buffer)) 1589 return ERR_PTR(-EINVAL); 1590 1591 next = le32_to_cpu(cc->Next); 1592 name_off = le16_to_cpu(cc->NameOffset); 1593 name_len = le16_to_cpu(cc->NameLength); 1594 value_off = le16_to_cpu(cc->DataOffset); 1595 value_len = le32_to_cpu(cc->DataLength); 1596 cc_len = next ? next : remain_len; 1597 1598 if ((next & 0x7) != 0 || 1599 next > remain_len || 1600 name_off != offsetof(struct create_context, Buffer) || 1601 name_len < 4 || 1602 name_off + name_len > cc_len || 1603 (value_off & 0x7) != 0 || 1604 (value_len && value_off < name_off + (name_len < 8 ? 8 : name_len)) || 1605 ((u64)value_off + value_len > cc_len)) 1606 return ERR_PTR(-EINVAL); 1607 1608 name = (char *)cc + name_off; 1609 if (name_len == tag_len && !memcmp(name, tag, name_len)) 1610 return cc; 1611 1612 remain_len -= next; 1613 } while (next != 0); 1614 1615 return NULL; 1616 } 1617 1618 /** 1619 * create_durable_rsp_buf() - create durable handle context 1620 * @cc: buffer to create durable context response 1621 */ 1622 void create_durable_rsp_buf(char *cc) 1623 { 1624 struct create_durable_rsp *buf; 1625 1626 buf = (struct create_durable_rsp *)cc; 1627 memset(buf, 0, sizeof(struct create_durable_rsp)); 1628 buf->ccontext.DataOffset = cpu_to_le16(offsetof 1629 (struct create_durable_rsp, Data)); 1630 buf->ccontext.DataLength = cpu_to_le32(8); 1631 buf->ccontext.NameOffset = cpu_to_le16(offsetof 1632 (struct create_durable_rsp, Name)); 1633 buf->ccontext.NameLength = cpu_to_le16(4); 1634 /* SMB2_CREATE_DURABLE_HANDLE_RESPONSE is "DHnQ" */ 1635 buf->Name[0] = 'D'; 1636 buf->Name[1] = 'H'; 1637 buf->Name[2] = 'n'; 1638 buf->Name[3] = 'Q'; 1639 } 1640 1641 /** 1642 * create_durable_v2_rsp_buf() - create durable handle v2 context 1643 * @cc: buffer to create durable context response 1644 * @fp: ksmbd file pointer 1645 */ 1646 void create_durable_v2_rsp_buf(char *cc, struct ksmbd_file *fp) 1647 { 1648 struct create_durable_v2_rsp *buf; 1649 1650 buf = (struct create_durable_v2_rsp *)cc; 1651 memset(buf, 0, sizeof(struct create_durable_rsp)); 1652 buf->ccontext.DataOffset = cpu_to_le16(offsetof 1653 (struct create_durable_rsp, Data)); 1654 buf->ccontext.DataLength = cpu_to_le32(8); 1655 buf->ccontext.NameOffset = cpu_to_le16(offsetof 1656 (struct create_durable_rsp, Name)); 1657 buf->ccontext.NameLength = cpu_to_le16(4); 1658 /* SMB2_CREATE_DURABLE_HANDLE_RESPONSE_V2 is "DH2Q" */ 1659 buf->Name[0] = 'D'; 1660 buf->Name[1] = 'H'; 1661 buf->Name[2] = '2'; 1662 buf->Name[3] = 'Q'; 1663 1664 buf->Timeout = cpu_to_le32(fp->durable_timeout); 1665 if (fp->is_persistent) 1666 buf->Flags = cpu_to_le32(SMB2_DHANDLE_FLAG_PERSISTENT); 1667 } 1668 1669 /** 1670 * create_mxac_rsp_buf() - create query maximal access context 1671 * @cc: buffer to create maximal access context response 1672 * @maximal_access: maximal access 1673 */ 1674 void create_mxac_rsp_buf(char *cc, int maximal_access) 1675 { 1676 struct create_mxac_rsp *buf; 1677 1678 buf = (struct create_mxac_rsp *)cc; 1679 memset(buf, 0, sizeof(struct create_mxac_rsp)); 1680 buf->ccontext.DataOffset = cpu_to_le16(offsetof 1681 (struct create_mxac_rsp, QueryStatus)); 1682 buf->ccontext.DataLength = cpu_to_le32(8); 1683 buf->ccontext.NameOffset = cpu_to_le16(offsetof 1684 (struct create_mxac_rsp, Name)); 1685 buf->ccontext.NameLength = cpu_to_le16(4); 1686 /* SMB2_CREATE_QUERY_MAXIMAL_ACCESS_RESPONSE is "MxAc" */ 1687 buf->Name[0] = 'M'; 1688 buf->Name[1] = 'x'; 1689 buf->Name[2] = 'A'; 1690 buf->Name[3] = 'c'; 1691 1692 buf->QueryStatus = STATUS_SUCCESS; 1693 buf->MaximalAccess = cpu_to_le32(maximal_access); 1694 } 1695 1696 void create_disk_id_rsp_buf(char *cc, __u64 file_id, __u64 vol_id) 1697 { 1698 struct create_disk_id_rsp *buf; 1699 1700 buf = (struct create_disk_id_rsp *)cc; 1701 memset(buf, 0, sizeof(struct create_disk_id_rsp)); 1702 buf->ccontext.DataOffset = cpu_to_le16(offsetof 1703 (struct create_disk_id_rsp, DiskFileId)); 1704 buf->ccontext.DataLength = cpu_to_le32(32); 1705 buf->ccontext.NameOffset = cpu_to_le16(offsetof 1706 (struct create_mxac_rsp, Name)); 1707 buf->ccontext.NameLength = cpu_to_le16(4); 1708 /* SMB2_CREATE_QUERY_ON_DISK_ID_RESPONSE is "QFid" */ 1709 buf->Name[0] = 'Q'; 1710 buf->Name[1] = 'F'; 1711 buf->Name[2] = 'i'; 1712 buf->Name[3] = 'd'; 1713 1714 buf->DiskFileId = cpu_to_le64(file_id); 1715 buf->VolumeId = cpu_to_le64(vol_id); 1716 } 1717 1718 /** 1719 * create_posix_rsp_buf() - create posix extension context 1720 * @cc: buffer to create posix on posix response 1721 * @fp: ksmbd file pointer 1722 */ 1723 void create_posix_rsp_buf(char *cc, struct ksmbd_file *fp) 1724 { 1725 struct create_posix_rsp *buf; 1726 struct inode *inode = file_inode(fp->filp); 1727 struct mnt_idmap *idmap = file_mnt_idmap(fp->filp); 1728 vfsuid_t vfsuid = i_uid_into_vfsuid(idmap, inode); 1729 vfsgid_t vfsgid = i_gid_into_vfsgid(idmap, inode); 1730 1731 buf = (struct create_posix_rsp *)cc; 1732 memset(buf, 0, sizeof(struct create_posix_rsp)); 1733 buf->ccontext.DataOffset = cpu_to_le16(offsetof 1734 (struct create_posix_rsp, nlink)); 1735 /* 1736 * DataLength = nlink(4) + reparse_tag(4) + mode(4) + 1737 * domain sid(28) + unix group sid(16). 1738 */ 1739 buf->ccontext.DataLength = cpu_to_le32(56); 1740 buf->ccontext.NameOffset = cpu_to_le16(offsetof 1741 (struct create_posix_rsp, Name)); 1742 buf->ccontext.NameLength = cpu_to_le16(POSIX_CTXT_DATA_LEN); 1743 /* SMB2_CREATE_TAG_POSIX is "0x93AD25509CB411E7B42383DE968BCD7C" */ 1744 buf->Name[0] = 0x93; 1745 buf->Name[1] = 0xAD; 1746 buf->Name[2] = 0x25; 1747 buf->Name[3] = 0x50; 1748 buf->Name[4] = 0x9C; 1749 buf->Name[5] = 0xB4; 1750 buf->Name[6] = 0x11; 1751 buf->Name[7] = 0xE7; 1752 buf->Name[8] = 0xB4; 1753 buf->Name[9] = 0x23; 1754 buf->Name[10] = 0x83; 1755 buf->Name[11] = 0xDE; 1756 buf->Name[12] = 0x96; 1757 buf->Name[13] = 0x8B; 1758 buf->Name[14] = 0xCD; 1759 buf->Name[15] = 0x7C; 1760 1761 buf->nlink = cpu_to_le32(inode->i_nlink); 1762 buf->reparse_tag = cpu_to_le32(fp->volatile_id); 1763 buf->mode = cpu_to_le32(inode->i_mode & 0777); 1764 /* 1765 * SidBuffer(44) contain two sids(Domain sid(28), UNIX group sid(16)). 1766 * Domain sid(28) = revision(1) + num_subauth(1) + authority(6) + 1767 * sub_auth(4 * 4(num_subauth)) + RID(4). 1768 * UNIX group id(16) = revision(1) + num_subauth(1) + authority(6) + 1769 * sub_auth(4 * 1(num_subauth)) + RID(4). 1770 */ 1771 id_to_sid(from_kuid_munged(&init_user_ns, vfsuid_into_kuid(vfsuid)), 1772 SIDOWNER, (struct smb_sid *)&buf->SidBuffer[0]); 1773 id_to_sid(from_kgid_munged(&init_user_ns, vfsgid_into_kgid(vfsgid)), 1774 SIDUNIX_GROUP, (struct smb_sid *)&buf->SidBuffer[28]); 1775 } 1776 1777 /* 1778 * Find lease object(opinfo) for given lease key/fid from lease 1779 * break/file close path. 1780 */ 1781 /** 1782 * lookup_lease_in_table() - find a matching lease info object 1783 * @conn: connection instance 1784 * @lease_key: lease key to be searched for 1785 * 1786 * Return: opinfo if found matching opinfo, otherwise NULL 1787 */ 1788 struct oplock_info *lookup_lease_in_table(struct ksmbd_conn *conn, 1789 char *lease_key) 1790 { 1791 struct oplock_info *opinfo = NULL, *ret_op = NULL; 1792 struct lease_table *lt; 1793 int ret; 1794 1795 read_lock(&lease_list_lock); 1796 list_for_each_entry(lt, &lease_table_list, l_entry) { 1797 if (!memcmp(lt->client_guid, conn->ClientGUID, 1798 SMB2_CLIENT_GUID_SIZE)) 1799 goto found; 1800 } 1801 1802 read_unlock(&lease_list_lock); 1803 return NULL; 1804 1805 found: 1806 rcu_read_lock(); 1807 list_for_each_entry_rcu(opinfo, <->lease_list, lease_entry) { 1808 if (!atomic_inc_not_zero(&opinfo->refcount)) 1809 continue; 1810 rcu_read_unlock(); 1811 if (!opinfo->op_state || opinfo->op_state == OPLOCK_CLOSING) 1812 goto op_next; 1813 if (!(opinfo->o_lease->state & 1814 (SMB2_LEASE_HANDLE_CACHING_LE | 1815 SMB2_LEASE_WRITE_CACHING_LE))) 1816 goto op_next; 1817 ret = compare_guid_key(opinfo, conn->ClientGUID, 1818 lease_key); 1819 if (ret) { 1820 ksmbd_debug(OPLOCK, "found opinfo\n"); 1821 ret_op = opinfo; 1822 goto out; 1823 } 1824 op_next: 1825 opinfo_put(opinfo); 1826 rcu_read_lock(); 1827 } 1828 rcu_read_unlock(); 1829 1830 out: 1831 read_unlock(&lease_list_lock); 1832 return ret_op; 1833 } 1834 1835 int smb2_check_durable_oplock(struct ksmbd_conn *conn, 1836 struct ksmbd_share_config *share, 1837 struct ksmbd_file *fp, 1838 struct lease_ctx_info *lctx, 1839 char *name) 1840 { 1841 struct oplock_info *opinfo = opinfo_get(fp); 1842 int ret = 0; 1843 1844 if (!opinfo) 1845 return 0; 1846 1847 if (opinfo->is_lease == false) { 1848 if (lctx) { 1849 pr_err("create context include lease\n"); 1850 ret = -EBADF; 1851 goto out; 1852 } 1853 1854 if (opinfo->level != SMB2_OPLOCK_LEVEL_BATCH) { 1855 pr_err("oplock level is not equal to SMB2_OPLOCK_LEVEL_BATCH\n"); 1856 ret = -EBADF; 1857 } 1858 1859 goto out; 1860 } 1861 1862 if (memcmp(conn->ClientGUID, fp->client_guid, 1863 SMB2_CLIENT_GUID_SIZE)) { 1864 ksmbd_debug(SMB, "Client guid of fp is not equal to the one of connection\n"); 1865 ret = -EBADF; 1866 goto out; 1867 } 1868 1869 if (!lctx) { 1870 ksmbd_debug(SMB, "create context does not include lease\n"); 1871 ret = -EBADF; 1872 goto out; 1873 } 1874 1875 if (memcmp(opinfo->o_lease->lease_key, lctx->lease_key, 1876 SMB2_LEASE_KEY_SIZE)) { 1877 ksmbd_debug(SMB, 1878 "lease key of fp does not match lease key in create context\n"); 1879 ret = -EBADF; 1880 goto out; 1881 } 1882 1883 if (!(opinfo->o_lease->state & SMB2_LEASE_HANDLE_CACHING_LE)) { 1884 ksmbd_debug(SMB, "lease state does not contain SMB2_LEASE_HANDLE_CACHING\n"); 1885 ret = -EBADF; 1886 goto out; 1887 } 1888 1889 if (opinfo->o_lease->version != lctx->version) { 1890 ksmbd_debug(SMB, 1891 "lease version of fp does not match the one in create context\n"); 1892 ret = -EBADF; 1893 goto out; 1894 } 1895 1896 if (!ksmbd_inode_pending_delete(fp)) 1897 ret = ksmbd_validate_name_reconnect(share, fp, name); 1898 out: 1899 opinfo_put(opinfo); 1900 return ret; 1901 } 1902