1 // SPDX-License-Identifier: GPL-2.0 2 /* 3 * SMB2 version specific operations 4 * 5 * Copyright (c) 2012, Jeff Layton <jlayton@redhat.com> 6 */ 7 8 #include <linux/pagemap.h> 9 #include <linux/vfs.h> 10 #include <linux/falloc.h> 11 #include <linux/scatterlist.h> 12 #include <linux/uuid.h> 13 #include <linux/sort.h> 14 #include <crypto/aead.h> 15 #include <linux/fiemap.h> 16 #include <linux/folio_queue.h> 17 #include <uapi/linux/magic.h> 18 #include "cifsfs.h" 19 #include "cifsglob.h" 20 #include "cifsproto.h" 21 #include "smb2proto.h" 22 #include "smb2pdu.h" 23 #include "cifs_debug.h" 24 #include "cifs_unicode.h" 25 #include "../common/smb2status.h" 26 #include "smb2glob.h" 27 #include "cifs_ioctl.h" 28 #include "smbdirect.h" 29 #include "fscache.h" 30 #include "fs_context.h" 31 #include "cached_dir.h" 32 #include "reparse.h" 33 34 /* Change credits for different ops and return the total number of credits */ 35 static int 36 change_conf(struct TCP_Server_Info *server) 37 { 38 server->credits += server->echo_credits + server->oplock_credits; 39 if (server->credits > server->max_credits) 40 server->credits = server->max_credits; 41 server->oplock_credits = server->echo_credits = 0; 42 switch (server->credits) { 43 case 0: 44 return 0; 45 case 1: 46 server->echoes = false; 47 server->oplocks = false; 48 break; 49 case 2: 50 server->echoes = true; 51 server->oplocks = false; 52 server->echo_credits = 1; 53 break; 54 default: 55 server->echoes = true; 56 if (enable_oplocks) { 57 server->oplocks = true; 58 server->oplock_credits = 1; 59 } else 60 server->oplocks = false; 61 62 server->echo_credits = 1; 63 } 64 server->credits -= server->echo_credits + server->oplock_credits; 65 return server->credits + server->echo_credits + server->oplock_credits; 66 } 67 68 static void 69 smb2_add_credits(struct TCP_Server_Info *server, 70 struct cifs_credits *credits, const int optype) 71 { 72 int *val, rc = -1; 73 int scredits, in_flight; 74 unsigned int add = credits->value; 75 unsigned int instance = credits->instance; 76 bool reconnect_detected = false; 77 bool reconnect_with_invalid_credits = false; 78 79 spin_lock(&server->req_lock); 80 val = server->ops->get_credits_field(server, optype); 81 82 /* eg found case where write overlapping reconnect messed up credits */ 83 if (((optype & CIFS_OP_MASK) == CIFS_NEG_OP) && (*val != 0)) 84 reconnect_with_invalid_credits = true; 85 86 if ((instance == 0) || (instance == server->reconnect_instance)) 87 *val += add; 88 else 89 reconnect_detected = true; 90 91 if (*val > 65000) { 92 *val = 65000; /* Don't get near 64K credits, avoid srv bugs */ 93 pr_warn_once("server overflowed SMB3 credits\n"); 94 trace_smb3_overflow_credits(server->current_mid, 95 server->conn_id, server->hostname, *val, 96 add, server->in_flight); 97 } 98 if (credits->in_flight_check > 1) { 99 pr_warn_once("rreq R=%08x[%x] Credits not in flight\n", 100 credits->rreq_debug_id, credits->rreq_debug_index); 101 } else { 102 credits->in_flight_check = 2; 103 } 104 if (WARN_ON_ONCE(server->in_flight == 0)) { 105 pr_warn_once("rreq R=%08x[%x] Zero in_flight\n", 106 credits->rreq_debug_id, credits->rreq_debug_index); 107 trace_smb3_rw_credits(credits->rreq_debug_id, 108 credits->rreq_debug_index, 109 credits->value, 110 server->credits, server->in_flight, 0, 111 cifs_trace_rw_credits_zero_in_flight); 112 } 113 server->in_flight--; 114 if (server->in_flight == 0 && 115 ((optype & CIFS_OP_MASK) != CIFS_NEG_OP) && 116 ((optype & CIFS_OP_MASK) != CIFS_SESS_OP)) 117 rc = change_conf(server); 118 /* 119 * Sometimes server returns 0 credits on oplock break ack - we need to 120 * rebalance credits in this case. 121 */ 122 else if (server->in_flight > 0 && server->oplock_credits == 0 && 123 server->oplocks) { 124 if (server->credits > 1) { 125 server->credits--; 126 server->oplock_credits++; 127 } 128 } else if ((server->in_flight > 0) && (server->oplock_credits > 3) && 129 ((optype & CIFS_OP_MASK) == CIFS_OBREAK_OP)) 130 /* if now have too many oplock credits, rebalance so don't starve normal ops */ 131 change_conf(server); 132 133 scredits = *val; 134 in_flight = server->in_flight; 135 spin_unlock(&server->req_lock); 136 wake_up(&server->request_q); 137 138 if (reconnect_detected) { 139 trace_smb3_reconnect_detected(server->current_mid, 140 server->conn_id, server->hostname, scredits, add, in_flight); 141 142 cifs_dbg(FYI, "trying to put %d credits from the old server instance %d\n", 143 add, instance); 144 } 145 146 if (reconnect_with_invalid_credits) { 147 trace_smb3_reconnect_with_invalid_credits(server->current_mid, 148 server->conn_id, server->hostname, scredits, add, in_flight); 149 cifs_dbg(FYI, "Negotiate operation when server credits is non-zero. Optype: %d, server credits: %d, credits added: %d\n", 150 optype, scredits, add); 151 } 152 153 spin_lock(&server->srv_lock); 154 if (server->tcpStatus == CifsNeedReconnect 155 || server->tcpStatus == CifsExiting) { 156 spin_unlock(&server->srv_lock); 157 return; 158 } 159 spin_unlock(&server->srv_lock); 160 161 switch (rc) { 162 case -1: 163 /* change_conf hasn't been executed */ 164 break; 165 case 0: 166 cifs_server_dbg(VFS, "Possible client or server bug - zero credits\n"); 167 break; 168 case 1: 169 cifs_server_dbg(VFS, "disabling echoes and oplocks\n"); 170 break; 171 case 2: 172 cifs_dbg(FYI, "disabling oplocks\n"); 173 break; 174 default: 175 /* change_conf rebalanced credits for different types */ 176 break; 177 } 178 179 trace_smb3_add_credits(server->current_mid, 180 server->conn_id, server->hostname, scredits, add, in_flight); 181 cifs_dbg(FYI, "%s: added %u credits total=%d\n", __func__, add, scredits); 182 } 183 184 static void 185 smb2_set_credits(struct TCP_Server_Info *server, const int val) 186 { 187 int scredits, in_flight; 188 189 spin_lock(&server->req_lock); 190 server->credits = val; 191 if (val == 1) { 192 server->reconnect_instance++; 193 /* 194 * ChannelSequence updated for all channels in primary channel so that consistent 195 * across SMB3 requests sent on any channel. See MS-SMB2 3.2.4.1 and 3.2.7.1 196 */ 197 if (SERVER_IS_CHAN(server)) 198 server->primary_server->channel_sequence_num++; 199 else 200 server->channel_sequence_num++; 201 } 202 scredits = server->credits; 203 in_flight = server->in_flight; 204 spin_unlock(&server->req_lock); 205 206 trace_smb3_set_credits(server->current_mid, 207 server->conn_id, server->hostname, scredits, val, in_flight); 208 cifs_dbg(FYI, "%s: set %u credits\n", __func__, val); 209 210 /* don't log while holding the lock */ 211 if (val == 1) 212 cifs_dbg(FYI, "set credits to 1 due to smb2 reconnect\n"); 213 } 214 215 static int * 216 smb2_get_credits_field(struct TCP_Server_Info *server, const int optype) 217 { 218 switch (optype) { 219 case CIFS_ECHO_OP: 220 return &server->echo_credits; 221 case CIFS_OBREAK_OP: 222 return &server->oplock_credits; 223 default: 224 return &server->credits; 225 } 226 } 227 228 static unsigned int 229 smb2_get_credits(struct mid_q_entry *mid) 230 { 231 return mid->credits_received; 232 } 233 234 static int 235 smb2_wait_mtu_credits(struct TCP_Server_Info *server, size_t size, 236 size_t *num, struct cifs_credits *credits) 237 { 238 int rc = 0; 239 unsigned int scredits, in_flight; 240 241 spin_lock(&server->req_lock); 242 while (1) { 243 spin_unlock(&server->req_lock); 244 245 spin_lock(&server->srv_lock); 246 if (server->tcpStatus == CifsExiting) { 247 spin_unlock(&server->srv_lock); 248 return -ENOENT; 249 } 250 spin_unlock(&server->srv_lock); 251 252 spin_lock(&server->req_lock); 253 if (server->credits <= 0) { 254 spin_unlock(&server->req_lock); 255 cifs_num_waiters_inc(server); 256 rc = wait_event_killable(server->request_q, 257 has_credits(server, &server->credits, 1)); 258 cifs_num_waiters_dec(server); 259 if (rc) 260 return rc; 261 spin_lock(&server->req_lock); 262 } else { 263 scredits = server->credits; 264 /* can deadlock with reopen */ 265 if (scredits <= 8) { 266 *num = SMB2_MAX_BUFFER_SIZE; 267 credits->value = 0; 268 credits->instance = 0; 269 break; 270 } 271 272 /* leave some credits for reopen and other ops */ 273 scredits -= 8; 274 *num = min_t(unsigned int, size, 275 scredits * SMB2_MAX_BUFFER_SIZE); 276 277 credits->value = 278 DIV_ROUND_UP(*num, SMB2_MAX_BUFFER_SIZE); 279 credits->instance = server->reconnect_instance; 280 server->credits -= credits->value; 281 server->in_flight++; 282 if (server->in_flight > server->max_in_flight) 283 server->max_in_flight = server->in_flight; 284 break; 285 } 286 } 287 scredits = server->credits; 288 in_flight = server->in_flight; 289 spin_unlock(&server->req_lock); 290 291 trace_smb3_wait_credits(server->current_mid, 292 server->conn_id, server->hostname, scredits, -(credits->value), in_flight); 293 cifs_dbg(FYI, "%s: removed %u credits total=%d\n", 294 __func__, credits->value, scredits); 295 296 return rc; 297 } 298 299 static int 300 smb2_adjust_credits(struct TCP_Server_Info *server, 301 struct cifs_io_subrequest *subreq, 302 unsigned int /*enum smb3_rw_credits_trace*/ trace) 303 { 304 struct cifs_credits *credits = &subreq->credits; 305 int new_val = DIV_ROUND_UP(subreq->subreq.len - subreq->subreq.transferred, 306 SMB2_MAX_BUFFER_SIZE); 307 int scredits, in_flight; 308 309 if (!credits->value || credits->value == new_val) 310 return 0; 311 312 if (credits->value < new_val) { 313 trace_smb3_rw_credits(subreq->rreq->debug_id, 314 subreq->subreq.debug_index, 315 credits->value, 316 server->credits, server->in_flight, 317 new_val - credits->value, 318 cifs_trace_rw_credits_no_adjust_up); 319 trace_smb3_too_many_credits(server->current_mid, 320 server->conn_id, server->hostname, 0, credits->value - new_val, 0); 321 cifs_server_dbg(VFS, "R=%x[%x] request has less credits (%d) than required (%d)", 322 subreq->rreq->debug_id, subreq->subreq.debug_index, 323 credits->value, new_val); 324 325 return -EOPNOTSUPP; 326 } 327 328 spin_lock(&server->req_lock); 329 330 if (server->reconnect_instance != credits->instance) { 331 scredits = server->credits; 332 in_flight = server->in_flight; 333 spin_unlock(&server->req_lock); 334 335 trace_smb3_rw_credits(subreq->rreq->debug_id, 336 subreq->subreq.debug_index, 337 credits->value, 338 server->credits, server->in_flight, 339 new_val - credits->value, 340 cifs_trace_rw_credits_old_session); 341 trace_smb3_reconnect_detected(server->current_mid, 342 server->conn_id, server->hostname, scredits, 343 credits->value - new_val, in_flight); 344 cifs_server_dbg(VFS, "R=%x[%x] trying to return %d credits to old session\n", 345 subreq->rreq->debug_id, subreq->subreq.debug_index, 346 credits->value - new_val); 347 return -EAGAIN; 348 } 349 350 trace_smb3_rw_credits(subreq->rreq->debug_id, 351 subreq->subreq.debug_index, 352 credits->value, 353 server->credits, server->in_flight, 354 new_val - credits->value, trace); 355 server->credits += credits->value - new_val; 356 scredits = server->credits; 357 in_flight = server->in_flight; 358 spin_unlock(&server->req_lock); 359 wake_up(&server->request_q); 360 361 trace_smb3_adj_credits(server->current_mid, 362 server->conn_id, server->hostname, scredits, 363 credits->value - new_val, in_flight); 364 cifs_dbg(FYI, "%s: adjust added %u credits total=%d\n", 365 __func__, credits->value - new_val, scredits); 366 367 credits->value = new_val; 368 369 return 0; 370 } 371 372 static __u64 373 smb2_get_next_mid(struct TCP_Server_Info *server) 374 { 375 __u64 mid; 376 /* for SMB2 we need the current value */ 377 spin_lock(&server->mid_counter_lock); 378 mid = server->current_mid++; 379 spin_unlock(&server->mid_counter_lock); 380 return mid; 381 } 382 383 static void 384 smb2_revert_current_mid(struct TCP_Server_Info *server, const unsigned int val) 385 { 386 spin_lock(&server->mid_counter_lock); 387 if (server->current_mid >= val) 388 server->current_mid -= val; 389 spin_unlock(&server->mid_counter_lock); 390 } 391 392 static struct mid_q_entry * 393 __smb2_find_mid(struct TCP_Server_Info *server, char *buf, bool dequeue) 394 { 395 struct mid_q_entry *mid; 396 struct smb2_hdr *shdr = (struct smb2_hdr *)buf; 397 __u64 wire_mid = le64_to_cpu(shdr->MessageId); 398 399 if (shdr->ProtocolId == SMB2_TRANSFORM_PROTO_NUM) { 400 cifs_server_dbg(VFS, "Encrypted frame parsing not supported yet\n"); 401 return NULL; 402 } 403 404 spin_lock(&server->mid_queue_lock); 405 list_for_each_entry(mid, &server->pending_mid_q, qhead) { 406 if ((mid->mid == wire_mid) && 407 (mid->mid_state == MID_REQUEST_SUBMITTED) && 408 (mid->command == shdr->Command)) { 409 smb_get_mid(mid); 410 if (dequeue) { 411 list_del_init(&mid->qhead); 412 mid->deleted_from_q = true; 413 } 414 spin_unlock(&server->mid_queue_lock); 415 return mid; 416 } 417 } 418 spin_unlock(&server->mid_queue_lock); 419 return NULL; 420 } 421 422 static struct mid_q_entry * 423 smb2_find_mid(struct TCP_Server_Info *server, char *buf) 424 { 425 return __smb2_find_mid(server, buf, false); 426 } 427 428 static struct mid_q_entry * 429 smb2_find_dequeue_mid(struct TCP_Server_Info *server, char *buf) 430 { 431 return __smb2_find_mid(server, buf, true); 432 } 433 434 static void 435 smb2_dump_detail(void *buf, size_t buf_len, struct TCP_Server_Info *server) 436 { 437 #ifdef CONFIG_CIFS_DEBUG2 438 struct smb2_hdr *shdr = (struct smb2_hdr *)buf; 439 440 cifs_server_dbg(VFS, "Cmd: %d Err: 0x%x Flags: 0x%x Mid: %llu Pid: %d\n", 441 shdr->Command, shdr->Status, shdr->Flags, shdr->MessageId, 442 shdr->Id.SyncId.ProcessId); 443 if (!server->ops->check_message(buf, buf_len, server->total_read, server)) { 444 cifs_server_dbg(VFS, "smb buf %p len %u\n", buf, 445 server->ops->calc_smb_size(buf)); 446 } 447 #endif 448 } 449 450 static bool 451 smb2_need_neg(struct TCP_Server_Info *server) 452 { 453 return server->max_read == 0; 454 } 455 456 static int 457 smb2_negotiate(const unsigned int xid, 458 struct cifs_ses *ses, 459 struct TCP_Server_Info *server) 460 { 461 int rc; 462 463 spin_lock(&server->mid_counter_lock); 464 server->current_mid = 0; 465 spin_unlock(&server->mid_counter_lock); 466 rc = SMB2_negotiate(xid, ses, server); 467 return rc; 468 } 469 470 static inline unsigned int 471 prevent_zero_iosize(unsigned int size, const char *type) 472 { 473 if (size == 0) { 474 cifs_dbg(VFS, "SMB: Zero %ssize calculated, using minimum value %u\n", 475 type, CIFS_MIN_DEFAULT_IOSIZE); 476 return CIFS_MIN_DEFAULT_IOSIZE; 477 } 478 return size; 479 } 480 481 static unsigned int 482 smb2_negotiate_wsize(struct cifs_tcon *tcon, struct smb3_fs_context *ctx) 483 { 484 struct TCP_Server_Info *server = tcon->ses->server; 485 unsigned int wsize; 486 487 /* start with specified wsize, or default */ 488 wsize = ctx->got_wsize ? ctx->vol_wsize : CIFS_DEFAULT_IOSIZE; 489 wsize = min_t(unsigned int, wsize, server->max_write); 490 if (!(server->capabilities & SMB2_GLOBAL_CAP_LARGE_MTU)) 491 wsize = min_t(unsigned int, wsize, SMB2_MAX_BUFFER_SIZE); 492 493 return prevent_zero_iosize(wsize, "w"); 494 } 495 496 static unsigned int 497 smb3_negotiate_wsize(struct cifs_tcon *tcon, struct smb3_fs_context *ctx) 498 { 499 struct TCP_Server_Info *server = tcon->ses->server; 500 unsigned int wsize; 501 502 /* start with specified wsize, or default */ 503 wsize = ctx->got_wsize ? ctx->vol_wsize : SMB3_DEFAULT_IOSIZE; 504 wsize = min_t(unsigned int, wsize, server->max_write); 505 #ifdef CONFIG_CIFS_SMB_DIRECT 506 if (server->rdma) { 507 const struct smbdirect_socket_parameters *sp = 508 smbd_get_parameters(server->smbd_conn); 509 510 if (server->sign) 511 /* 512 * Account for SMB2 data transfer packet header and 513 * possible encryption header 514 */ 515 wsize = min_t(unsigned int, 516 wsize, 517 sp->max_fragmented_send_size - 518 SMB2_READWRITE_PDU_HEADER_SIZE - 519 sizeof(struct smb2_transform_hdr)); 520 else 521 wsize = min_t(unsigned int, 522 wsize, sp->max_read_write_size); 523 } 524 #endif 525 if (!(server->capabilities & SMB2_GLOBAL_CAP_LARGE_MTU)) 526 wsize = min_t(unsigned int, wsize, SMB2_MAX_BUFFER_SIZE); 527 528 return prevent_zero_iosize(wsize, "w"); 529 } 530 531 static unsigned int 532 smb2_negotiate_rsize(struct cifs_tcon *tcon, struct smb3_fs_context *ctx) 533 { 534 struct TCP_Server_Info *server = tcon->ses->server; 535 unsigned int rsize; 536 537 /* start with specified rsize, or default */ 538 rsize = ctx->got_rsize ? ctx->vol_rsize : CIFS_DEFAULT_IOSIZE; 539 rsize = min_t(unsigned int, rsize, server->max_read); 540 541 if (!(server->capabilities & SMB2_GLOBAL_CAP_LARGE_MTU)) 542 rsize = min_t(unsigned int, rsize, SMB2_MAX_BUFFER_SIZE); 543 544 return prevent_zero_iosize(rsize, "r"); 545 } 546 547 static unsigned int 548 smb3_negotiate_rsize(struct cifs_tcon *tcon, struct smb3_fs_context *ctx) 549 { 550 struct TCP_Server_Info *server = tcon->ses->server; 551 unsigned int rsize; 552 553 /* start with specified rsize, or default */ 554 rsize = ctx->got_rsize ? ctx->vol_rsize : SMB3_DEFAULT_IOSIZE; 555 rsize = min_t(unsigned int, rsize, server->max_read); 556 #ifdef CONFIG_CIFS_SMB_DIRECT 557 if (server->rdma) { 558 const struct smbdirect_socket_parameters *sp = 559 smbd_get_parameters(server->smbd_conn); 560 561 if (server->sign) 562 /* 563 * Account for SMB2 data transfer packet header and 564 * possible encryption header 565 */ 566 rsize = min_t(unsigned int, 567 rsize, 568 sp->max_fragmented_recv_size - 569 SMB2_READWRITE_PDU_HEADER_SIZE - 570 sizeof(struct smb2_transform_hdr)); 571 else 572 rsize = min_t(unsigned int, 573 rsize, sp->max_read_write_size); 574 } 575 #endif 576 577 if (!(server->capabilities & SMB2_GLOBAL_CAP_LARGE_MTU)) 578 rsize = min_t(unsigned int, rsize, SMB2_MAX_BUFFER_SIZE); 579 580 return prevent_zero_iosize(rsize, "r"); 581 } 582 583 /* 584 * compare two interfaces a and b 585 * return 0 if everything matches. 586 * return 1 if a is rdma capable, or rss capable, or has higher link speed 587 * return -1 otherwise. 588 */ 589 static int 590 iface_cmp(struct cifs_server_iface *a, struct cifs_server_iface *b) 591 { 592 int cmp_ret = 0; 593 594 WARN_ON(!a || !b); 595 if (a->rdma_capable == b->rdma_capable) { 596 if (a->rss_capable == b->rss_capable) { 597 if (a->speed == b->speed) { 598 cmp_ret = cifs_ipaddr_cmp((struct sockaddr *) &a->sockaddr, 599 (struct sockaddr *) &b->sockaddr); 600 if (!cmp_ret) 601 return 0; 602 else if (cmp_ret > 0) 603 return 1; 604 else 605 return -1; 606 } else if (a->speed > b->speed) 607 return 1; 608 else 609 return -1; 610 } else if (a->rss_capable > b->rss_capable) 611 return 1; 612 else 613 return -1; 614 } else if (a->rdma_capable > b->rdma_capable) 615 return 1; 616 else 617 return -1; 618 } 619 620 static int 621 parse_server_interfaces(struct network_interface_info_ioctl_rsp *buf, 622 size_t buf_len, struct cifs_ses *ses, bool in_mount) 623 { 624 struct network_interface_info_ioctl_rsp *p; 625 struct sockaddr_in *addr4; 626 struct sockaddr_in6 *addr6; 627 struct smb_sockaddr_in *p4; 628 struct smb_sockaddr_in6 *p6; 629 struct cifs_server_iface *info = NULL, *iface = NULL, *niface = NULL; 630 struct cifs_server_iface tmp_iface; 631 __be16 port; 632 ssize_t bytes_left; 633 size_t next = 0; 634 int nb_iface = 0; 635 int rc = 0, ret = 0; 636 637 bytes_left = buf_len; 638 p = buf; 639 640 spin_lock(&ses->iface_lock); 641 642 /* 643 * Go through iface_list and mark them as inactive 644 */ 645 list_for_each_entry_safe(iface, niface, &ses->iface_list, 646 iface_head) 647 iface->is_active = 0; 648 649 spin_unlock(&ses->iface_lock); 650 651 /* 652 * Samba server e.g. can return an empty interface list in some cases, 653 * which would only be a problem if we were requesting multichannel 654 */ 655 if (bytes_left == 0) { 656 /* avoid spamming logs every 10 minutes, so log only in mount */ 657 if ((ses->chan_max > 1) && in_mount) 658 cifs_dbg(VFS, 659 "multichannel not available\n" 660 "Empty network interface list returned by server %s\n", 661 ses->server->hostname); 662 rc = -EOPNOTSUPP; 663 goto out; 664 } 665 666 spin_lock(&ses->server->srv_lock); 667 if (ses->server->dstaddr.ss_family == AF_INET) 668 port = ((struct sockaddr_in *)&ses->server->dstaddr)->sin_port; 669 else if (ses->server->dstaddr.ss_family == AF_INET6) 670 port = ((struct sockaddr_in6 *)&ses->server->dstaddr)->sin6_port; 671 else 672 port = cpu_to_be16(CIFS_PORT); 673 spin_unlock(&ses->server->srv_lock); 674 675 while (bytes_left >= (ssize_t)sizeof(*p)) { 676 memset(&tmp_iface, 0, sizeof(tmp_iface)); 677 /* default to 1Gbps when link speed is unset */ 678 tmp_iface.speed = le64_to_cpu(p->LinkSpeed) ?: 1000000000; 679 tmp_iface.rdma_capable = le32_to_cpu(p->Capability & RDMA_CAPABLE) ? 1 : 0; 680 tmp_iface.rss_capable = le32_to_cpu(p->Capability & RSS_CAPABLE) ? 1 : 0; 681 682 switch (p->Family) { 683 /* 684 * The kernel and wire socket structures have the same 685 * layout and use network byte order but make the 686 * conversion explicit in case either one changes. 687 */ 688 case INTERNETWORK: 689 addr4 = (struct sockaddr_in *)&tmp_iface.sockaddr; 690 p4 = (struct smb_sockaddr_in *)p->Buffer; 691 addr4->sin_family = AF_INET; 692 memcpy(&addr4->sin_addr, &p4->IPv4Address, 4); 693 694 /* [MS-SMB2] 2.2.32.5.1.1 Clients MUST ignore these */ 695 addr4->sin_port = port; 696 697 cifs_dbg(FYI, "%s: ipv4 %pI4\n", __func__, 698 &addr4->sin_addr); 699 break; 700 case INTERNETWORKV6: 701 addr6 = (struct sockaddr_in6 *)&tmp_iface.sockaddr; 702 p6 = (struct smb_sockaddr_in6 *)p->Buffer; 703 addr6->sin6_family = AF_INET6; 704 memcpy(&addr6->sin6_addr, &p6->IPv6Address, 16); 705 706 /* [MS-SMB2] 2.2.32.5.1.2 Clients MUST ignore these */ 707 addr6->sin6_flowinfo = 0; 708 addr6->sin6_scope_id = 0; 709 addr6->sin6_port = port; 710 711 cifs_dbg(FYI, "%s: ipv6 %pI6\n", __func__, 712 &addr6->sin6_addr); 713 break; 714 default: 715 cifs_dbg(VFS, 716 "%s: skipping unsupported socket family\n", 717 __func__); 718 goto next_iface; 719 } 720 721 /* 722 * The iface_list is assumed to be sorted by speed. 723 * Check if the new interface exists in that list. 724 * NEVER change iface. it could be in use. 725 * Add a new one instead 726 */ 727 spin_lock(&ses->iface_lock); 728 list_for_each_entry_safe(iface, niface, &ses->iface_list, 729 iface_head) { 730 ret = iface_cmp(iface, &tmp_iface); 731 if (!ret) { 732 iface->is_active = 1; 733 spin_unlock(&ses->iface_lock); 734 goto next_iface; 735 } else if (ret < 0) { 736 /* all remaining ifaces are slower */ 737 kref_get(&iface->refcount); 738 break; 739 } 740 } 741 spin_unlock(&ses->iface_lock); 742 743 /* no match. insert the entry in the list */ 744 info = kmalloc_obj(struct cifs_server_iface); 745 if (!info) { 746 rc = -ENOMEM; 747 goto out; 748 } 749 memcpy(info, &tmp_iface, sizeof(tmp_iface)); 750 751 /* add this new entry to the list */ 752 kref_init(&info->refcount); 753 info->is_active = 1; 754 755 cifs_dbg(FYI, "%s: adding iface %zu\n", __func__, ses->iface_count); 756 cifs_dbg(FYI, "%s: speed %zu bps\n", __func__, info->speed); 757 cifs_dbg(FYI, "%s: capabilities 0x%08x\n", __func__, 758 le32_to_cpu(p->Capability)); 759 760 spin_lock(&ses->iface_lock); 761 if (!list_entry_is_head(iface, &ses->iface_list, iface_head)) { 762 list_add_tail(&info->iface_head, &iface->iface_head); 763 kref_put(&iface->refcount, release_iface); 764 } else 765 list_add_tail(&info->iface_head, &ses->iface_list); 766 767 ses->iface_count++; 768 spin_unlock(&ses->iface_lock); 769 next_iface: 770 nb_iface++; 771 next = le32_to_cpu(p->Next); 772 if (!next) { 773 bytes_left -= sizeof(*p); 774 break; 775 } 776 /* Validate that Next doesn't point beyond the buffer */ 777 if (next > bytes_left) { 778 cifs_dbg(VFS, "%s: invalid Next pointer %zu > %zd\n", 779 __func__, next, bytes_left); 780 rc = -EINVAL; 781 goto out; 782 } 783 p = (struct network_interface_info_ioctl_rsp *)((u8 *)p+next); 784 bytes_left -= next; 785 } 786 787 if (!nb_iface) { 788 cifs_dbg(VFS, "%s: malformed interface info\n", __func__); 789 rc = -EINVAL; 790 goto out; 791 } 792 793 /* Azure rounds the buffer size up 8, to a 16 byte boundary */ 794 if ((bytes_left > 8) || 795 (bytes_left >= offsetof(struct network_interface_info_ioctl_rsp, Next) 796 + sizeof(p->Next) && p->Next)) 797 cifs_dbg(VFS, "%s: incomplete interface info\n", __func__); 798 799 out: 800 /* 801 * Go through the list again and put the inactive entries 802 */ 803 spin_lock(&ses->iface_lock); 804 list_for_each_entry_safe(iface, niface, &ses->iface_list, 805 iface_head) { 806 if (!iface->is_active) { 807 list_del(&iface->iface_head); 808 kref_put(&iface->refcount, release_iface); 809 ses->iface_count--; 810 } 811 } 812 spin_unlock(&ses->iface_lock); 813 814 return rc; 815 } 816 817 int 818 SMB3_request_interfaces(const unsigned int xid, struct cifs_tcon *tcon, bool in_mount) 819 { 820 int rc; 821 unsigned int ret_data_len = 0; 822 struct network_interface_info_ioctl_rsp *out_buf = NULL; 823 struct cifs_ses *ses = tcon->ses; 824 struct TCP_Server_Info *pserver; 825 826 /* do not query too frequently */ 827 spin_lock(&ses->iface_lock); 828 if (ses->iface_last_update && 829 time_before(jiffies, ses->iface_last_update + 830 (SMB_INTERFACE_POLL_INTERVAL * HZ))) { 831 spin_unlock(&ses->iface_lock); 832 return 0; 833 } 834 835 ses->iface_last_update = jiffies; 836 837 spin_unlock(&ses->iface_lock); 838 839 rc = SMB2_ioctl(xid, tcon, NO_FILE_ID, NO_FILE_ID, 840 FSCTL_QUERY_NETWORK_INTERFACE_INFO, 841 NULL /* no data input */, 0 /* no data input */, 842 CIFSMaxBufSize, (char **)&out_buf, &ret_data_len); 843 if (rc == -EOPNOTSUPP) { 844 cifs_dbg(FYI, 845 "server does not support query network interfaces\n"); 846 ret_data_len = 0; 847 } else if (rc != 0) { 848 cifs_tcon_dbg(VFS, "error %d on ioctl to get interface list\n", rc); 849 goto out; 850 } 851 852 rc = parse_server_interfaces(out_buf, ret_data_len, ses, in_mount); 853 if (rc) 854 goto out; 855 856 /* check if iface is still active */ 857 spin_lock(&ses->chan_lock); 858 pserver = ses->chans[0].server; 859 if (pserver && !cifs_chan_is_iface_active(ses, pserver)) { 860 spin_unlock(&ses->chan_lock); 861 cifs_chan_update_iface(ses, pserver); 862 spin_lock(&ses->chan_lock); 863 } 864 spin_unlock(&ses->chan_lock); 865 866 out: 867 kfree(out_buf); 868 return rc; 869 } 870 871 static void 872 smb3_qfs_tcon(const unsigned int xid, struct cifs_tcon *tcon, 873 struct cifs_sb_info *cifs_sb) 874 { 875 int rc; 876 __le16 srch_path = 0; /* Null - open root of share */ 877 u8 oplock = SMB2_OPLOCK_LEVEL_NONE; 878 struct cifs_open_parms oparms; 879 struct cifs_fid fid; 880 struct cached_fid *cfid = NULL; 881 882 oparms = (struct cifs_open_parms) { 883 .tcon = tcon, 884 .path = "", 885 .desired_access = FILE_READ_ATTRIBUTES, 886 .disposition = FILE_OPEN, 887 .create_options = cifs_create_options(cifs_sb, 0), 888 .fid = &fid, 889 }; 890 891 rc = open_cached_dir(xid, tcon, "", cifs_sb, false, &cfid); 892 if (rc == 0) 893 memcpy(&fid, &cfid->fid, sizeof(struct cifs_fid)); 894 else 895 rc = SMB2_open(xid, &oparms, &srch_path, &oplock, NULL, NULL, 896 NULL, NULL); 897 if (rc) 898 return; 899 900 SMB3_request_interfaces(xid, tcon, true /* called during mount */); 901 902 SMB2_QFS_attr(xid, tcon, fid.persistent_fid, fid.volatile_fid, 903 FS_ATTRIBUTE_INFORMATION); 904 SMB2_QFS_attr(xid, tcon, fid.persistent_fid, fid.volatile_fid, 905 FS_DEVICE_INFORMATION); 906 SMB2_QFS_attr(xid, tcon, fid.persistent_fid, fid.volatile_fid, 907 FS_VOLUME_INFORMATION); 908 SMB2_QFS_attr(xid, tcon, fid.persistent_fid, fid.volatile_fid, 909 FS_SECTOR_SIZE_INFORMATION); /* SMB3 specific */ 910 if (cfid == NULL) 911 SMB2_close(xid, tcon, fid.persistent_fid, fid.volatile_fid); 912 else 913 close_cached_dir(cfid); 914 } 915 916 static void 917 smb2_qfs_tcon(const unsigned int xid, struct cifs_tcon *tcon, 918 struct cifs_sb_info *cifs_sb) 919 { 920 int rc; 921 __le16 srch_path = 0; /* Null - open root of share */ 922 u8 oplock = SMB2_OPLOCK_LEVEL_NONE; 923 struct cifs_open_parms oparms; 924 struct cifs_fid fid; 925 926 oparms = (struct cifs_open_parms) { 927 .tcon = tcon, 928 .path = "", 929 .desired_access = FILE_READ_ATTRIBUTES, 930 .disposition = FILE_OPEN, 931 .create_options = cifs_create_options(cifs_sb, 0), 932 .fid = &fid, 933 }; 934 935 rc = SMB2_open(xid, &oparms, &srch_path, &oplock, NULL, NULL, 936 NULL, NULL); 937 if (rc) 938 return; 939 940 SMB2_QFS_attr(xid, tcon, fid.persistent_fid, fid.volatile_fid, 941 FS_ATTRIBUTE_INFORMATION); 942 SMB2_QFS_attr(xid, tcon, fid.persistent_fid, fid.volatile_fid, 943 FS_DEVICE_INFORMATION); 944 SMB2_close(xid, tcon, fid.persistent_fid, fid.volatile_fid); 945 } 946 947 static int 948 smb2_is_path_accessible(const unsigned int xid, struct cifs_tcon *tcon, 949 struct cifs_sb_info *cifs_sb, const char *full_path) 950 { 951 __le16 *utf16_path; 952 __u8 oplock = SMB2_OPLOCK_LEVEL_NONE; 953 int err_buftype = CIFS_NO_BUFFER; 954 struct cifs_open_parms oparms; 955 struct kvec err_iov = {}; 956 struct cifs_fid fid; 957 struct cached_fid *cfid; 958 bool islink; 959 int rc, rc2; 960 961 rc = open_cached_dir(xid, tcon, full_path, cifs_sb, true, &cfid); 962 if (!rc) { 963 close_cached_dir(cfid); 964 return 0; 965 } 966 967 utf16_path = cifs_convert_path_to_utf16(full_path, cifs_sb); 968 if (!utf16_path) 969 return -ENOMEM; 970 971 oparms = (struct cifs_open_parms) { 972 .tcon = tcon, 973 .path = full_path, 974 .desired_access = FILE_READ_ATTRIBUTES, 975 .disposition = FILE_OPEN, 976 .create_options = cifs_create_options(cifs_sb, 0), 977 .fid = &fid, 978 }; 979 980 rc = SMB2_open(xid, &oparms, utf16_path, &oplock, NULL, NULL, 981 &err_iov, &err_buftype); 982 if (rc) { 983 struct smb2_hdr *hdr = err_iov.iov_base; 984 985 if (unlikely(!hdr || err_buftype == CIFS_NO_BUFFER)) 986 goto out; 987 988 if (rc != -EREMOTE && hdr->Status == STATUS_OBJECT_NAME_INVALID) { 989 rc2 = cifs_inval_name_dfs_link_error(xid, tcon, cifs_sb, 990 full_path, &islink); 991 if (rc2) { 992 rc = rc2; 993 goto out; 994 } 995 if (islink) 996 rc = -EREMOTE; 997 } 998 if (rc == -EREMOTE && IS_ENABLED(CONFIG_CIFS_DFS_UPCALL) && 999 (cifs_sb_flags(cifs_sb) & CIFS_MOUNT_NO_DFS)) 1000 rc = -EOPNOTSUPP; 1001 goto out; 1002 } 1003 1004 rc = SMB2_close(xid, tcon, fid.persistent_fid, fid.volatile_fid); 1005 1006 out: 1007 free_rsp_buf(err_buftype, err_iov.iov_base); 1008 kfree(utf16_path); 1009 return rc; 1010 } 1011 1012 static int smb2_get_srv_inum(const unsigned int xid, struct cifs_tcon *tcon, 1013 struct cifs_sb_info *cifs_sb, const char *full_path, 1014 u64 *uniqueid, struct cifs_open_info_data *data) 1015 { 1016 *uniqueid = le64_to_cpu(data->fi.IndexNumber); 1017 return 0; 1018 } 1019 1020 static int smb2_query_file_info(const unsigned int xid, struct cifs_tcon *tcon, 1021 struct cifsFileInfo *cfile, struct cifs_open_info_data *data) 1022 { 1023 struct cifs_fid *fid = &cfile->fid; 1024 1025 if (cfile->symlink_target) { 1026 data->symlink_target = kstrdup(cfile->symlink_target, GFP_KERNEL); 1027 if (!data->symlink_target) 1028 return -ENOMEM; 1029 } 1030 data->contains_posix_file_info = false; 1031 return SMB2_query_info(xid, tcon, fid->persistent_fid, fid->volatile_fid, &data->fi); 1032 } 1033 1034 #ifdef CONFIG_CIFS_XATTR 1035 static ssize_t 1036 move_smb2_ea_to_cifs(char *dst, size_t dst_size, 1037 struct smb2_file_full_ea_info *src, size_t src_size, 1038 const unsigned char *ea_name) 1039 { 1040 int rc = 0; 1041 unsigned int ea_name_len = ea_name ? strlen(ea_name) : 0; 1042 char *name, *value; 1043 size_t buf_size = dst_size; 1044 size_t name_len, value_len, user_name_len; 1045 1046 while (src_size > 0) { 1047 name_len = (size_t)src->ea_name_length; 1048 value_len = (size_t)le16_to_cpu(src->ea_value_length); 1049 1050 if (name_len == 0) 1051 break; 1052 1053 if (src_size < 8 + name_len + 1 + value_len) { 1054 cifs_dbg(FYI, "EA entry goes beyond length of list\n"); 1055 rc = smb_EIO2(smb_eio_trace_ea_overrun, 1056 src_size, 8 + name_len + 1 + value_len); 1057 goto out; 1058 } 1059 1060 name = &src->ea_data[0]; 1061 value = &src->ea_data[src->ea_name_length + 1]; 1062 1063 if (ea_name) { 1064 if (ea_name_len == name_len && 1065 memcmp(ea_name, name, name_len) == 0) { 1066 rc = value_len; 1067 if (dst_size == 0) 1068 goto out; 1069 if (dst_size < value_len) { 1070 rc = -ERANGE; 1071 goto out; 1072 } 1073 memcpy(dst, value, value_len); 1074 goto out; 1075 } 1076 } else { 1077 /* 'user.' plus a terminating null */ 1078 user_name_len = 5 + 1 + name_len; 1079 1080 if (buf_size == 0) { 1081 /* skip copy - calc size only */ 1082 rc += user_name_len; 1083 } else if (dst_size >= user_name_len) { 1084 dst_size -= user_name_len; 1085 memcpy(dst, "user.", 5); 1086 dst += 5; 1087 memcpy(dst, src->ea_data, name_len); 1088 dst += name_len; 1089 *dst = 0; 1090 ++dst; 1091 rc += user_name_len; 1092 } else { 1093 /* stop before overrun buffer */ 1094 rc = -ERANGE; 1095 break; 1096 } 1097 } 1098 1099 if (!src->next_entry_offset) 1100 break; 1101 1102 if (src_size < le32_to_cpu(src->next_entry_offset)) { 1103 /* stop before overrun buffer */ 1104 rc = -ERANGE; 1105 break; 1106 } 1107 src_size -= le32_to_cpu(src->next_entry_offset); 1108 src = (void *)((char *)src + 1109 le32_to_cpu(src->next_entry_offset)); 1110 } 1111 1112 /* didn't find the named attribute */ 1113 if (ea_name) 1114 rc = -ENODATA; 1115 1116 out: 1117 return (ssize_t)rc; 1118 } 1119 1120 static ssize_t 1121 smb2_query_eas(const unsigned int xid, struct cifs_tcon *tcon, 1122 const unsigned char *path, const unsigned char *ea_name, 1123 char *ea_data, size_t buf_size, 1124 struct cifs_sb_info *cifs_sb) 1125 { 1126 int rc; 1127 struct kvec rsp_iov = {NULL, 0}; 1128 int buftype = CIFS_NO_BUFFER; 1129 struct smb2_query_info_rsp *rsp; 1130 struct smb2_file_full_ea_info *info = NULL; 1131 1132 rc = smb2_query_info_compound(xid, tcon, path, 1133 FILE_READ_EA, 1134 FILE_FULL_EA_INFORMATION, 1135 SMB2_O_INFO_FILE, 1136 CIFSMaxBufSize - 1137 MAX_SMB2_CREATE_RESPONSE_SIZE - 1138 MAX_SMB2_CLOSE_RESPONSE_SIZE, 1139 &rsp_iov, &buftype, cifs_sb); 1140 if (rc) { 1141 /* 1142 * If ea_name is NULL (listxattr) and there are no EAs, 1143 * return 0 as it's not an error. Otherwise, the specified 1144 * ea_name was not found. 1145 */ 1146 if (!ea_name && rc == -ENODATA) 1147 rc = 0; 1148 goto qeas_exit; 1149 } 1150 1151 rsp = (struct smb2_query_info_rsp *)rsp_iov.iov_base; 1152 rc = smb2_validate_iov(le16_to_cpu(rsp->OutputBufferOffset), 1153 le32_to_cpu(rsp->OutputBufferLength), 1154 &rsp_iov, 1155 sizeof(struct smb2_file_full_ea_info)); 1156 if (rc) 1157 goto qeas_exit; 1158 1159 info = (struct smb2_file_full_ea_info *)( 1160 le16_to_cpu(rsp->OutputBufferOffset) + (char *)rsp); 1161 rc = move_smb2_ea_to_cifs(ea_data, buf_size, info, 1162 le32_to_cpu(rsp->OutputBufferLength), ea_name); 1163 1164 qeas_exit: 1165 free_rsp_buf(buftype, rsp_iov.iov_base); 1166 return rc; 1167 } 1168 1169 static int 1170 smb2_set_ea(const unsigned int xid, struct cifs_tcon *tcon, 1171 const char *path, const char *ea_name, const void *ea_value, 1172 const __u16 ea_value_len, const struct nls_table *nls_codepage, 1173 struct cifs_sb_info *cifs_sb) 1174 { 1175 struct smb2_compound_vars *vars; 1176 struct cifs_ses *ses = tcon->ses; 1177 struct TCP_Server_Info *server; 1178 struct smb_rqst *rqst; 1179 struct kvec *rsp_iov; 1180 __le16 *utf16_path = NULL; 1181 int ea_name_len = strlen(ea_name); 1182 int flags = CIFS_CP_CREATE_CLOSE_OP; 1183 int len; 1184 int resp_buftype[3]; 1185 struct cifs_open_parms oparms; 1186 __u8 oplock = SMB2_OPLOCK_LEVEL_NONE; 1187 struct cifs_fid fid; 1188 unsigned int size[1]; 1189 void *data[1]; 1190 struct smb2_file_full_ea_info *ea; 1191 struct smb2_query_info_rsp *rsp; 1192 int rc, used_len = 0; 1193 int retries = 0, cur_sleep = 0; 1194 1195 replay_again: 1196 /* reinitialize for possible replay */ 1197 used_len = 0; 1198 flags = CIFS_CP_CREATE_CLOSE_OP; 1199 oplock = SMB2_OPLOCK_LEVEL_NONE; 1200 server = cifs_pick_channel(ses); 1201 1202 if (smb3_encryption_required(tcon)) 1203 flags |= CIFS_TRANSFORM_REQ; 1204 1205 if (ea_name_len > 255) 1206 return -EINVAL; 1207 1208 utf16_path = cifs_convert_path_to_utf16(path, cifs_sb); 1209 if (!utf16_path) 1210 return -ENOMEM; 1211 1212 ea = NULL; 1213 resp_buftype[0] = resp_buftype[1] = resp_buftype[2] = CIFS_NO_BUFFER; 1214 vars = kzalloc_obj(*vars); 1215 if (!vars) { 1216 rc = -ENOMEM; 1217 goto out_free_path; 1218 } 1219 rqst = vars->rqst; 1220 rsp_iov = vars->rsp_iov; 1221 1222 if (ses->server->ops->query_all_EAs) { 1223 if (!ea_value) { 1224 rc = ses->server->ops->query_all_EAs(xid, tcon, path, 1225 ea_name, NULL, 0, 1226 cifs_sb); 1227 if (rc == -ENODATA) 1228 goto sea_exit; 1229 } else { 1230 /* If we are adding a attribute we should first check 1231 * if there will be enough space available to store 1232 * the new EA. If not we should not add it since we 1233 * would not be able to even read the EAs back. 1234 */ 1235 rc = smb2_query_info_compound(xid, tcon, path, 1236 FILE_READ_EA, 1237 FILE_FULL_EA_INFORMATION, 1238 SMB2_O_INFO_FILE, 1239 CIFSMaxBufSize - 1240 MAX_SMB2_CREATE_RESPONSE_SIZE - 1241 MAX_SMB2_CLOSE_RESPONSE_SIZE, 1242 &rsp_iov[1], &resp_buftype[1], cifs_sb); 1243 if (rc == 0) { 1244 rsp = (struct smb2_query_info_rsp *)rsp_iov[1].iov_base; 1245 used_len = le32_to_cpu(rsp->OutputBufferLength); 1246 } 1247 free_rsp_buf(resp_buftype[1], rsp_iov[1].iov_base); 1248 resp_buftype[1] = CIFS_NO_BUFFER; 1249 memset(&rsp_iov[1], 0, sizeof(rsp_iov[1])); 1250 rc = 0; 1251 1252 /* Use a fudge factor of 256 bytes in case we collide 1253 * with a different set_EAs command. 1254 */ 1255 if (CIFSMaxBufSize - MAX_SMB2_CREATE_RESPONSE_SIZE - 1256 MAX_SMB2_CLOSE_RESPONSE_SIZE - 256 < 1257 used_len + ea_name_len + ea_value_len + 1) { 1258 rc = -ENOSPC; 1259 goto sea_exit; 1260 } 1261 } 1262 } 1263 1264 /* Open */ 1265 rqst[0].rq_iov = vars->open_iov; 1266 rqst[0].rq_nvec = SMB2_CREATE_IOV_SIZE; 1267 1268 oparms = (struct cifs_open_parms) { 1269 .tcon = tcon, 1270 .path = path, 1271 .desired_access = FILE_WRITE_EA, 1272 .disposition = FILE_OPEN, 1273 .create_options = cifs_create_options(cifs_sb, 0), 1274 .fid = &fid, 1275 .replay = !!(retries), 1276 }; 1277 1278 rc = SMB2_open_init(tcon, server, 1279 &rqst[0], &oplock, &oparms, utf16_path); 1280 if (rc) 1281 goto sea_exit; 1282 smb2_set_next_command(tcon, &rqst[0]); 1283 1284 1285 /* Set Info */ 1286 rqst[1].rq_iov = vars->si_iov; 1287 rqst[1].rq_nvec = 1; 1288 1289 len = sizeof(*ea) + ea_name_len + ea_value_len + 1; 1290 ea = kzalloc(len, GFP_KERNEL); 1291 if (ea == NULL) { 1292 rc = -ENOMEM; 1293 goto sea_exit; 1294 } 1295 1296 ea->ea_name_length = ea_name_len; 1297 ea->ea_value_length = cpu_to_le16(ea_value_len); 1298 memcpy(ea->ea_data, ea_name, ea_name_len + 1); 1299 memcpy(ea->ea_data + ea_name_len + 1, ea_value, ea_value_len); 1300 1301 size[0] = len; 1302 data[0] = ea; 1303 1304 rc = SMB2_set_info_init(tcon, server, 1305 &rqst[1], COMPOUND_FID, 1306 COMPOUND_FID, current->tgid, 1307 FILE_FULL_EA_INFORMATION, 1308 SMB2_O_INFO_FILE, 0, data, size); 1309 if (rc) 1310 goto sea_exit; 1311 smb2_set_next_command(tcon, &rqst[1]); 1312 smb2_set_related(&rqst[1]); 1313 1314 /* Close */ 1315 rqst[2].rq_iov = &vars->close_iov; 1316 rqst[2].rq_nvec = 1; 1317 rc = SMB2_close_init(tcon, server, 1318 &rqst[2], COMPOUND_FID, COMPOUND_FID, false); 1319 if (rc) 1320 goto sea_exit; 1321 smb2_set_related(&rqst[2]); 1322 1323 if (retries) { 1324 /* Back-off before retry */ 1325 if (cur_sleep) 1326 msleep(cur_sleep); 1327 smb2_set_replay(server, &rqst[0]); 1328 smb2_set_replay(server, &rqst[1]); 1329 smb2_set_replay(server, &rqst[2]); 1330 } 1331 1332 rc = compound_send_recv(xid, ses, server, 1333 flags, 3, rqst, 1334 resp_buftype, rsp_iov); 1335 /* no need to bump num_remote_opens because handle immediately closed */ 1336 1337 sea_exit: 1338 kfree(ea); 1339 SMB2_open_free(&rqst[0]); 1340 SMB2_set_info_free(&rqst[1]); 1341 SMB2_close_free(&rqst[2]); 1342 free_rsp_buf(resp_buftype[0], rsp_iov[0].iov_base); 1343 free_rsp_buf(resp_buftype[1], rsp_iov[1].iov_base); 1344 free_rsp_buf(resp_buftype[2], rsp_iov[2].iov_base); 1345 kfree(vars); 1346 out_free_path: 1347 kfree(utf16_path); 1348 1349 if (is_replayable_error(rc) && 1350 smb2_should_replay(tcon, &retries, &cur_sleep)) 1351 goto replay_again; 1352 1353 return rc; 1354 } 1355 #endif 1356 1357 static bool 1358 smb2_can_echo(struct TCP_Server_Info *server) 1359 { 1360 return server->echoes; 1361 } 1362 1363 static void 1364 smb2_clear_stats(struct cifs_tcon *tcon) 1365 { 1366 int i; 1367 1368 for (i = 0; i < NUMBER_OF_SMB2_COMMANDS; i++) { 1369 atomic_set(&tcon->stats.smb2_stats.smb2_com_sent[i], 0); 1370 atomic_set(&tcon->stats.smb2_stats.smb2_com_failed[i], 0); 1371 } 1372 } 1373 1374 static void 1375 smb2_dump_share_caps(struct seq_file *m, struct cifs_tcon *tcon) 1376 { 1377 seq_puts(m, "\n\tShare Capabilities:"); 1378 if (tcon->capabilities & SMB2_SHARE_CAP_DFS) 1379 seq_puts(m, " DFS,"); 1380 if (tcon->capabilities & SMB2_SHARE_CAP_CONTINUOUS_AVAILABILITY) 1381 seq_puts(m, " CONTINUOUS AVAILABILITY,"); 1382 if (tcon->capabilities & SMB2_SHARE_CAP_SCALEOUT) 1383 seq_puts(m, " SCALEOUT,"); 1384 if (tcon->capabilities & SMB2_SHARE_CAP_CLUSTER) 1385 seq_puts(m, " CLUSTER,"); 1386 if (tcon->capabilities & SMB2_SHARE_CAP_ASYMMETRIC) 1387 seq_puts(m, " ASYMMETRIC,"); 1388 if (tcon->capabilities == 0) 1389 seq_puts(m, " None"); 1390 if (tcon->ss_flags & SSINFO_FLAGS_ALIGNED_DEVICE) 1391 seq_puts(m, " Aligned,"); 1392 if (tcon->ss_flags & SSINFO_FLAGS_PARTITION_ALIGNED_ON_DEVICE) 1393 seq_puts(m, " Partition Aligned,"); 1394 if (tcon->ss_flags & SSINFO_FLAGS_NO_SEEK_PENALTY) 1395 seq_puts(m, " SSD,"); 1396 if (tcon->ss_flags & SSINFO_FLAGS_TRIM_ENABLED) 1397 seq_puts(m, " TRIM-support,"); 1398 1399 seq_printf(m, "\tShare Flags: 0x%x", tcon->share_flags); 1400 seq_printf(m, "\n\ttid: 0x%x", tcon->tid); 1401 if (tcon->perf_sector_size) 1402 seq_printf(m, "\tOptimal sector size: 0x%x", 1403 tcon->perf_sector_size); 1404 seq_printf(m, "\tMaximal Access: 0x%x", tcon->maximal_access); 1405 } 1406 1407 static void 1408 smb2_print_stats(struct seq_file *m, struct cifs_tcon *tcon) 1409 { 1410 atomic_t *sent = tcon->stats.smb2_stats.smb2_com_sent; 1411 atomic_t *failed = tcon->stats.smb2_stats.smb2_com_failed; 1412 1413 /* 1414 * Can't display SMB2_NEGOTIATE, SESSION_SETUP, LOGOFF, CANCEL and ECHO 1415 * totals (requests sent) since those SMBs are per-session not per tcon 1416 */ 1417 seq_printf(m, "\nBytes read: %llu Bytes written: %llu", 1418 (long long)(tcon->bytes_read), 1419 (long long)(tcon->bytes_written)); 1420 seq_printf(m, "\nOpen files: %d total (local), %d open on server", 1421 atomic_read(&tcon->num_local_opens), 1422 atomic_read(&tcon->num_remote_opens)); 1423 seq_printf(m, "\nTreeConnects: %d total %d failed", 1424 atomic_read(&sent[SMB2_TREE_CONNECT_HE]), 1425 atomic_read(&failed[SMB2_TREE_CONNECT_HE])); 1426 seq_printf(m, "\nTreeDisconnects: %d total %d failed", 1427 atomic_read(&sent[SMB2_TREE_DISCONNECT_HE]), 1428 atomic_read(&failed[SMB2_TREE_DISCONNECT_HE])); 1429 seq_printf(m, "\nCreates: %d total %d failed", 1430 atomic_read(&sent[SMB2_CREATE_HE]), 1431 atomic_read(&failed[SMB2_CREATE_HE])); 1432 seq_printf(m, "\nCloses: %d total %d failed", 1433 atomic_read(&sent[SMB2_CLOSE_HE]), 1434 atomic_read(&failed[SMB2_CLOSE_HE])); 1435 seq_printf(m, "\nFlushes: %d total %d failed", 1436 atomic_read(&sent[SMB2_FLUSH_HE]), 1437 atomic_read(&failed[SMB2_FLUSH_HE])); 1438 seq_printf(m, "\nReads: %d total %d failed", 1439 atomic_read(&sent[SMB2_READ_HE]), 1440 atomic_read(&failed[SMB2_READ_HE])); 1441 seq_printf(m, "\nWrites: %d total %d failed", 1442 atomic_read(&sent[SMB2_WRITE_HE]), 1443 atomic_read(&failed[SMB2_WRITE_HE])); 1444 seq_printf(m, "\nLocks: %d total %d failed", 1445 atomic_read(&sent[SMB2_LOCK_HE]), 1446 atomic_read(&failed[SMB2_LOCK_HE])); 1447 seq_printf(m, "\nIOCTLs: %d total %d failed", 1448 atomic_read(&sent[SMB2_IOCTL_HE]), 1449 atomic_read(&failed[SMB2_IOCTL_HE])); 1450 seq_printf(m, "\nQueryDirectories: %d total %d failed", 1451 atomic_read(&sent[SMB2_QUERY_DIRECTORY_HE]), 1452 atomic_read(&failed[SMB2_QUERY_DIRECTORY_HE])); 1453 seq_printf(m, "\nChangeNotifies: %d total %d failed", 1454 atomic_read(&sent[SMB2_CHANGE_NOTIFY_HE]), 1455 atomic_read(&failed[SMB2_CHANGE_NOTIFY_HE])); 1456 seq_printf(m, "\nQueryInfos: %d total %d failed", 1457 atomic_read(&sent[SMB2_QUERY_INFO_HE]), 1458 atomic_read(&failed[SMB2_QUERY_INFO_HE])); 1459 seq_printf(m, "\nSetInfos: %d total %d failed", 1460 atomic_read(&sent[SMB2_SET_INFO_HE]), 1461 atomic_read(&failed[SMB2_SET_INFO_HE])); 1462 seq_printf(m, "\nOplockBreaks: %d sent %d failed", 1463 atomic_read(&sent[SMB2_OPLOCK_BREAK_HE]), 1464 atomic_read(&failed[SMB2_OPLOCK_BREAK_HE])); 1465 } 1466 1467 static void 1468 smb2_set_fid(struct cifsFileInfo *cfile, struct cifs_fid *fid, __u32 oplock) 1469 { 1470 struct cifsInodeInfo *cinode = CIFS_I(d_inode(cfile->dentry)); 1471 struct TCP_Server_Info *server = tlink_tcon(cfile->tlink)->ses->server; 1472 1473 lockdep_assert_held(&cinode->open_file_lock); 1474 1475 cfile->fid.persistent_fid = fid->persistent_fid; 1476 cfile->fid.volatile_fid = fid->volatile_fid; 1477 cfile->fid.access = fid->access; 1478 #ifdef CONFIG_CIFS_DEBUG2 1479 cfile->fid.mid = fid->mid; 1480 #endif /* CIFS_DEBUG2 */ 1481 server->ops->set_oplock_level(cinode, oplock, fid->epoch, 1482 &fid->purge_cache); 1483 cinode->can_cache_brlcks = CIFS_CACHE_WRITE(cinode); 1484 memcpy(cfile->fid.create_guid, fid->create_guid, 16); 1485 } 1486 1487 static int 1488 smb2_close_file(const unsigned int xid, struct cifs_tcon *tcon, 1489 struct cifs_fid *fid) 1490 { 1491 return SMB2_close(xid, tcon, fid->persistent_fid, fid->volatile_fid); 1492 } 1493 1494 static int 1495 smb2_close_getattr(const unsigned int xid, struct cifs_tcon *tcon, 1496 struct cifsFileInfo *cfile) 1497 { 1498 struct smb2_file_network_open_info file_inf; 1499 struct inode *inode; 1500 int rc; 1501 1502 rc = __SMB2_close(xid, tcon, cfile->fid.persistent_fid, 1503 cfile->fid.volatile_fid, &file_inf); 1504 if (rc) 1505 return rc; 1506 1507 inode = d_inode(cfile->dentry); 1508 1509 spin_lock(&inode->i_lock); 1510 CIFS_I(inode)->time = jiffies; 1511 1512 /* Creation time should not need to be updated on close */ 1513 if (file_inf.LastWriteTime) 1514 inode_set_mtime_to_ts(inode, 1515 cifs_NTtimeToUnix(file_inf.LastWriteTime)); 1516 if (file_inf.ChangeTime) 1517 inode_set_ctime_to_ts(inode, 1518 cifs_NTtimeToUnix(file_inf.ChangeTime)); 1519 if (file_inf.LastAccessTime) 1520 inode_set_atime_to_ts(inode, 1521 cifs_NTtimeToUnix(file_inf.LastAccessTime)); 1522 1523 /* 1524 * i_blocks is not related to (i_size / i_blksize), 1525 * but instead 512 byte (2**9) size is required for 1526 * calculating num blocks. 1527 */ 1528 if (le64_to_cpu(file_inf.AllocationSize) > 4096) 1529 inode->i_blocks = 1530 (512 - 1 + le64_to_cpu(file_inf.AllocationSize)) >> 9; 1531 1532 /* End of file and Attributes should not have to be updated on close */ 1533 spin_unlock(&inode->i_lock); 1534 return rc; 1535 } 1536 1537 static int 1538 SMB2_request_res_key(const unsigned int xid, struct cifs_tcon *tcon, 1539 u64 persistent_fid, u64 volatile_fid, 1540 struct copychunk_ioctl_req *pcchunk) 1541 { 1542 int rc; 1543 unsigned int ret_data_len; 1544 struct resume_key_ioctl_rsp *res_key; 1545 1546 rc = SMB2_ioctl(xid, tcon, persistent_fid, volatile_fid, 1547 FSCTL_SRV_REQUEST_RESUME_KEY, NULL, 0 /* no input */, 1548 CIFSMaxBufSize, (char **)&res_key, &ret_data_len); 1549 1550 if (rc == -EOPNOTSUPP) { 1551 pr_warn_once("Server share %s does not support copy range\n", tcon->tree_name); 1552 goto req_res_key_exit; 1553 } else if (rc) { 1554 cifs_tcon_dbg(VFS, "refcpy ioctl error %d getting resume key\n", rc); 1555 goto req_res_key_exit; 1556 } 1557 if (ret_data_len < sizeof(struct resume_key_ioctl_rsp)) { 1558 cifs_tcon_dbg(VFS, "Invalid refcopy resume key length\n"); 1559 rc = -EINVAL; 1560 goto req_res_key_exit; 1561 } 1562 memcpy(pcchunk->SourceKey, res_key->ResumeKey, COPY_CHUNK_RES_KEY_SIZE); 1563 1564 req_res_key_exit: 1565 kfree(res_key); 1566 return rc; 1567 } 1568 1569 static int 1570 smb2_ioctl_query_info(const unsigned int xid, 1571 struct cifs_tcon *tcon, 1572 struct cifs_sb_info *cifs_sb, 1573 __le16 *path, int is_dir, 1574 unsigned long p) 1575 { 1576 struct smb2_compound_vars *vars; 1577 struct smb_rqst *rqst; 1578 struct kvec *rsp_iov; 1579 struct cifs_ses *ses = tcon->ses; 1580 struct TCP_Server_Info *server; 1581 char __user *arg = (char __user *)p; 1582 struct smb_query_info qi; 1583 struct smb_query_info __user *pqi; 1584 int rc = 0; 1585 int flags = CIFS_CP_CREATE_CLOSE_OP; 1586 struct smb2_query_info_rsp *qi_rsp = NULL; 1587 struct smb2_ioctl_rsp *io_rsp = NULL; 1588 void *buffer = NULL; 1589 int resp_buftype[3]; 1590 struct cifs_open_parms oparms; 1591 u8 oplock = SMB2_OPLOCK_LEVEL_NONE; 1592 struct cifs_fid fid; 1593 unsigned int size[2]; 1594 void *data[2]; 1595 int create_options = is_dir ? CREATE_NOT_FILE : CREATE_NOT_DIR; 1596 void (*free_req1_func)(struct smb_rqst *r); 1597 int retries = 0, cur_sleep = 0; 1598 1599 replay_again: 1600 /* reinitialize for possible replay */ 1601 buffer = NULL; 1602 flags = CIFS_CP_CREATE_CLOSE_OP; 1603 oplock = SMB2_OPLOCK_LEVEL_NONE; 1604 server = cifs_pick_channel(ses); 1605 1606 vars = kzalloc_obj(*vars, GFP_ATOMIC); 1607 if (vars == NULL) 1608 return -ENOMEM; 1609 rqst = &vars->rqst[0]; 1610 rsp_iov = &vars->rsp_iov[0]; 1611 1612 resp_buftype[0] = resp_buftype[1] = resp_buftype[2] = CIFS_NO_BUFFER; 1613 1614 if (copy_from_user(&qi, arg, sizeof(struct smb_query_info))) { 1615 rc = -EFAULT; 1616 goto free_vars; 1617 } 1618 if (qi.output_buffer_length > 1024) { 1619 rc = -EINVAL; 1620 goto free_vars; 1621 } 1622 1623 if (!ses || !server) { 1624 rc = smb_EIO(smb_eio_trace_null_pointers); 1625 goto free_vars; 1626 } 1627 1628 if (smb3_encryption_required(tcon)) 1629 flags |= CIFS_TRANSFORM_REQ; 1630 1631 if (qi.output_buffer_length) { 1632 buffer = memdup_user(arg + sizeof(struct smb_query_info), qi.output_buffer_length); 1633 if (IS_ERR(buffer)) { 1634 rc = PTR_ERR(buffer); 1635 goto free_vars; 1636 } 1637 } 1638 1639 /* Open */ 1640 rqst[0].rq_iov = &vars->open_iov[0]; 1641 rqst[0].rq_nvec = SMB2_CREATE_IOV_SIZE; 1642 1643 oparms = (struct cifs_open_parms) { 1644 .tcon = tcon, 1645 .disposition = FILE_OPEN, 1646 .create_options = cifs_create_options(cifs_sb, create_options), 1647 .fid = &fid, 1648 .replay = !!(retries), 1649 }; 1650 1651 if (qi.flags & PASSTHRU_FSCTL) { 1652 switch (qi.info_type & FSCTL_DEVICE_ACCESS_MASK) { 1653 case FSCTL_DEVICE_ACCESS_FILE_READ_WRITE_ACCESS: 1654 oparms.desired_access = FILE_READ_DATA | FILE_WRITE_DATA | FILE_READ_ATTRIBUTES | SYNCHRONIZE; 1655 break; 1656 case FSCTL_DEVICE_ACCESS_FILE_ANY_ACCESS: 1657 oparms.desired_access = GENERIC_ALL; 1658 break; 1659 case FSCTL_DEVICE_ACCESS_FILE_READ_ACCESS: 1660 oparms.desired_access = GENERIC_READ; 1661 break; 1662 case FSCTL_DEVICE_ACCESS_FILE_WRITE_ACCESS: 1663 oparms.desired_access = GENERIC_WRITE; 1664 break; 1665 } 1666 } else if (qi.flags & PASSTHRU_SET_INFO) { 1667 oparms.desired_access = GENERIC_WRITE; 1668 } else { 1669 oparms.desired_access = FILE_READ_ATTRIBUTES | READ_CONTROL; 1670 } 1671 1672 rc = SMB2_open_init(tcon, server, 1673 &rqst[0], &oplock, &oparms, path); 1674 if (rc) 1675 goto free_output_buffer; 1676 smb2_set_next_command(tcon, &rqst[0]); 1677 1678 /* Query */ 1679 if (qi.flags & PASSTHRU_FSCTL) { 1680 /* Can eventually relax perm check since server enforces too */ 1681 if (!capable(CAP_SYS_ADMIN)) { 1682 rc = -EPERM; 1683 goto free_open_req; 1684 } 1685 rqst[1].rq_iov = &vars->io_iov[0]; 1686 rqst[1].rq_nvec = SMB2_IOCTL_IOV_SIZE; 1687 1688 rc = SMB2_ioctl_init(tcon, server, &rqst[1], COMPOUND_FID, COMPOUND_FID, 1689 qi.info_type, buffer, qi.output_buffer_length, 1690 CIFSMaxBufSize - MAX_SMB2_CREATE_RESPONSE_SIZE - 1691 MAX_SMB2_CLOSE_RESPONSE_SIZE); 1692 free_req1_func = SMB2_ioctl_free; 1693 } else if (qi.flags == PASSTHRU_SET_INFO) { 1694 /* Can eventually relax perm check since server enforces too */ 1695 if (!capable(CAP_SYS_ADMIN)) { 1696 rc = -EPERM; 1697 goto free_open_req; 1698 } 1699 if (qi.output_buffer_length < 8) { 1700 rc = -EINVAL; 1701 goto free_open_req; 1702 } 1703 rqst[1].rq_iov = vars->si_iov; 1704 rqst[1].rq_nvec = 1; 1705 1706 /* MS-FSCC 2.4.13 FileEndOfFileInformation */ 1707 size[0] = 8; 1708 data[0] = buffer; 1709 1710 rc = SMB2_set_info_init(tcon, server, &rqst[1], COMPOUND_FID, COMPOUND_FID, 1711 current->tgid, FILE_END_OF_FILE_INFORMATION, 1712 SMB2_O_INFO_FILE, 0, data, size); 1713 free_req1_func = SMB2_set_info_free; 1714 } else if (qi.flags == PASSTHRU_QUERY_INFO) { 1715 rqst[1].rq_iov = &vars->qi_iov; 1716 rqst[1].rq_nvec = 1; 1717 1718 rc = SMB2_query_info_init(tcon, server, 1719 &rqst[1], COMPOUND_FID, 1720 COMPOUND_FID, qi.file_info_class, 1721 qi.info_type, qi.additional_information, 1722 qi.input_buffer_length, 1723 qi.output_buffer_length, buffer); 1724 free_req1_func = SMB2_query_info_free; 1725 } else { /* unknown flags */ 1726 cifs_tcon_dbg(VFS, "Invalid passthru query flags: 0x%x\n", 1727 qi.flags); 1728 rc = -EINVAL; 1729 } 1730 1731 if (rc) 1732 goto free_open_req; 1733 smb2_set_next_command(tcon, &rqst[1]); 1734 smb2_set_related(&rqst[1]); 1735 1736 /* Close */ 1737 rqst[2].rq_iov = &vars->close_iov; 1738 rqst[2].rq_nvec = 1; 1739 1740 rc = SMB2_close_init(tcon, server, 1741 &rqst[2], COMPOUND_FID, COMPOUND_FID, false); 1742 if (rc) 1743 goto free_req_1; 1744 smb2_set_related(&rqst[2]); 1745 1746 if (retries) { 1747 /* Back-off before retry */ 1748 if (cur_sleep) 1749 msleep(cur_sleep); 1750 smb2_set_replay(server, &rqst[0]); 1751 smb2_set_replay(server, &rqst[1]); 1752 smb2_set_replay(server, &rqst[2]); 1753 } 1754 1755 rc = compound_send_recv(xid, ses, server, 1756 flags, 3, rqst, 1757 resp_buftype, rsp_iov); 1758 if (rc) 1759 goto out; 1760 1761 /* No need to bump num_remote_opens since handle immediately closed */ 1762 if (qi.flags & PASSTHRU_FSCTL) { 1763 pqi = (struct smb_query_info __user *)arg; 1764 io_rsp = (struct smb2_ioctl_rsp *)rsp_iov[1].iov_base; 1765 if (le32_to_cpu(io_rsp->OutputCount) < qi.input_buffer_length) 1766 qi.input_buffer_length = le32_to_cpu(io_rsp->OutputCount); 1767 if (qi.input_buffer_length > 0 && 1768 le32_to_cpu(io_rsp->OutputOffset) + qi.input_buffer_length 1769 > rsp_iov[1].iov_len) { 1770 rc = -EFAULT; 1771 goto out; 1772 } 1773 1774 if (copy_to_user(&pqi->input_buffer_length, 1775 &qi.input_buffer_length, 1776 sizeof(qi.input_buffer_length))) { 1777 rc = -EFAULT; 1778 goto out; 1779 } 1780 1781 if (copy_to_user((void __user *)pqi + sizeof(struct smb_query_info), 1782 (const void *)io_rsp + le32_to_cpu(io_rsp->OutputOffset), 1783 qi.input_buffer_length)) 1784 rc = -EFAULT; 1785 } else { 1786 pqi = (struct smb_query_info __user *)arg; 1787 qi_rsp = (struct smb2_query_info_rsp *)rsp_iov[1].iov_base; 1788 if (le32_to_cpu(qi_rsp->OutputBufferLength) < qi.input_buffer_length) 1789 qi.input_buffer_length = le32_to_cpu(qi_rsp->OutputBufferLength); 1790 if (copy_to_user(&pqi->input_buffer_length, 1791 &qi.input_buffer_length, 1792 sizeof(qi.input_buffer_length))) { 1793 rc = -EFAULT; 1794 goto out; 1795 } 1796 1797 if (copy_to_user(pqi + 1, qi_rsp->Buffer, 1798 qi.input_buffer_length)) 1799 rc = -EFAULT; 1800 } 1801 1802 out: 1803 free_rsp_buf(resp_buftype[0], rsp_iov[0].iov_base); 1804 free_rsp_buf(resp_buftype[1], rsp_iov[1].iov_base); 1805 free_rsp_buf(resp_buftype[2], rsp_iov[2].iov_base); 1806 SMB2_close_free(&rqst[2]); 1807 free_req_1: 1808 free_req1_func(&rqst[1]); 1809 free_open_req: 1810 SMB2_open_free(&rqst[0]); 1811 free_output_buffer: 1812 kfree(buffer); 1813 free_vars: 1814 kfree(vars); 1815 1816 if (is_replayable_error(rc) && 1817 smb2_should_replay(tcon, &retries, &cur_sleep)) 1818 goto replay_again; 1819 1820 return rc; 1821 } 1822 1823 /** 1824 * calc_chunk_count - calculates the number chunks to be filled in the Chunks[] 1825 * array of struct copychunk_ioctl 1826 * 1827 * @tcon: destination file tcon 1828 * @bytes_left: how many bytes are left to copy 1829 * 1830 * Return: maximum number of chunks with which Chunks[] can be filled. 1831 */ 1832 static inline u32 1833 calc_chunk_count(struct cifs_tcon *tcon, u64 bytes_left) 1834 { 1835 u32 max_chunks = READ_ONCE(tcon->max_chunks); 1836 u32 max_bytes_copy = READ_ONCE(tcon->max_bytes_copy); 1837 u32 max_bytes_chunk = READ_ONCE(tcon->max_bytes_chunk); 1838 u64 need; 1839 u32 allowed; 1840 1841 if (!max_bytes_chunk || !max_bytes_copy || !max_chunks) 1842 return 0; 1843 1844 /* chunks needed for the remaining bytes */ 1845 need = DIV_ROUND_UP_ULL(bytes_left, max_bytes_chunk); 1846 /* chunks allowed per cc request */ 1847 allowed = DIV_ROUND_UP(max_bytes_copy, max_bytes_chunk); 1848 1849 return (u32)umin(need, umin(max_chunks, allowed)); 1850 } 1851 1852 /** 1853 * smb2_copychunk_range - server-side copy of data range 1854 * 1855 * @xid: transaction id 1856 * @src_file: source file 1857 * @dst_file: destination file 1858 * @src_off: source file byte offset 1859 * @len: number of bytes to copy 1860 * @dst_off: destination file byte offset 1861 * 1862 * Obtains a resume key for @src_file and issues FSCTL_SRV_COPYCHUNK_WRITE 1863 * IOCTLs, splitting the request into chunks limited by tcon->max_*. 1864 * 1865 * Return: @len on success; negative errno on failure. 1866 */ 1867 static ssize_t 1868 smb2_copychunk_range(const unsigned int xid, 1869 struct cifsFileInfo *src_file, 1870 struct cifsFileInfo *dst_file, 1871 u64 src_off, 1872 u64 len, 1873 u64 dst_off) 1874 { 1875 int rc = 0; 1876 unsigned int ret_data_len = 0; 1877 struct copychunk_ioctl_req *cc_req = NULL; 1878 struct copychunk_ioctl_rsp *cc_rsp = NULL; 1879 struct cifs_tcon *tcon; 1880 struct srv_copychunk *chunk; 1881 u32 chunks, chunk_count, chunk_bytes; 1882 u32 copy_bytes, copy_bytes_left; 1883 u32 chunks_written, bytes_written; 1884 u64 total_bytes_left = len; 1885 u64 src_off_prev, dst_off_prev; 1886 u32 retries = 0; 1887 1888 tcon = tlink_tcon(dst_file->tlink); 1889 1890 trace_smb3_copychunk_enter(xid, src_file->fid.volatile_fid, 1891 dst_file->fid.volatile_fid, tcon->tid, 1892 tcon->ses->Suid, src_off, dst_off, len); 1893 1894 retry: 1895 chunk_count = calc_chunk_count(tcon, total_bytes_left); 1896 if (!chunk_count) { 1897 rc = -EOPNOTSUPP; 1898 goto out; 1899 } 1900 1901 cc_req = kzalloc_flex(*cc_req, Chunks, chunk_count); 1902 if (!cc_req) { 1903 rc = -ENOMEM; 1904 goto out; 1905 } 1906 1907 /* Request a key from the server to identify the source of the copy */ 1908 rc = SMB2_request_res_key(xid, 1909 tlink_tcon(src_file->tlink), 1910 src_file->fid.persistent_fid, 1911 src_file->fid.volatile_fid, 1912 cc_req); 1913 1914 /* Note: request_res_key sets res_key null only if rc != 0 */ 1915 if (rc) 1916 goto out; 1917 1918 while (total_bytes_left > 0) { 1919 1920 /* Store previous offsets to allow rewind */ 1921 src_off_prev = src_off; 1922 dst_off_prev = dst_off; 1923 1924 /* 1925 * __counted_by_le(ChunkCount): set to allocated chunks before 1926 * populating Chunks[] 1927 */ 1928 cc_req->ChunkCount = cpu_to_le32(chunk_count); 1929 1930 chunks = 0; 1931 copy_bytes = 0; 1932 copy_bytes_left = umin(total_bytes_left, tcon->max_bytes_copy); 1933 while (copy_bytes_left > 0 && chunks < chunk_count) { 1934 chunk = &cc_req->Chunks[chunks++]; 1935 1936 chunk->SourceOffset = cpu_to_le64(src_off); 1937 chunk->TargetOffset = cpu_to_le64(dst_off); 1938 1939 chunk_bytes = umin(copy_bytes_left, tcon->max_bytes_chunk); 1940 1941 chunk->Length = cpu_to_le32(chunk_bytes); 1942 /* Buffer is zeroed, no need to set chunk->Reserved = 0 */ 1943 1944 src_off += chunk_bytes; 1945 dst_off += chunk_bytes; 1946 1947 copy_bytes_left -= chunk_bytes; 1948 copy_bytes += chunk_bytes; 1949 } 1950 1951 cc_req->ChunkCount = cpu_to_le32(chunks); 1952 /* Buffer is zeroed, no need to set cc_req->Reserved = 0 */ 1953 1954 /* Request server copy to target from src identified by key */ 1955 kfree(cc_rsp); 1956 cc_rsp = NULL; 1957 rc = SMB2_ioctl(xid, tcon, dst_file->fid.persistent_fid, 1958 dst_file->fid.volatile_fid, FSCTL_SRV_COPYCHUNK_WRITE, 1959 (char *)cc_req, struct_size(cc_req, Chunks, chunks), 1960 CIFSMaxBufSize, (char **)&cc_rsp, &ret_data_len); 1961 1962 if (rc && rc != -EINVAL) 1963 goto out; 1964 1965 if (unlikely(ret_data_len != sizeof(*cc_rsp))) { 1966 cifs_tcon_dbg(VFS, "Copychunk invalid response: size %u/%zu\n", 1967 ret_data_len, sizeof(*cc_rsp)); 1968 rc = smb_EIO1(smb_eio_trace_copychunk_inv_rsp, ret_data_len); 1969 goto out; 1970 } 1971 1972 bytes_written = le32_to_cpu(cc_rsp->TotalBytesWritten); 1973 chunks_written = le32_to_cpu(cc_rsp->ChunksWritten); 1974 chunk_bytes = le32_to_cpu(cc_rsp->ChunkBytesWritten); 1975 1976 if (rc == 0) { 1977 /* Check if server claimed to write more than we asked */ 1978 if (unlikely(!bytes_written || bytes_written > copy_bytes)) { 1979 cifs_tcon_dbg(VFS, "Copychunk invalid response: bytes written %u/%u\n", 1980 bytes_written, copy_bytes); 1981 rc = smb_EIO2(smb_eio_trace_copychunk_overcopy_b, 1982 bytes_written, copy_bytes); 1983 goto out; 1984 } 1985 if (unlikely(!chunks_written || chunks_written > chunks)) { 1986 cifs_tcon_dbg(VFS, "Copychunk invalid response: chunks written %u/%u\n", 1987 chunks_written, chunks); 1988 rc = smb_EIO2(smb_eio_trace_copychunk_overcopy_c, 1989 chunks_written, chunks); 1990 goto out; 1991 } 1992 1993 /* Partial write: rewind */ 1994 if (bytes_written < copy_bytes) { 1995 u32 delta = copy_bytes - bytes_written; 1996 1997 src_off -= delta; 1998 dst_off -= delta; 1999 } 2000 2001 total_bytes_left -= bytes_written; 2002 continue; 2003 } 2004 2005 /* 2006 * Check if server is not asking us to reduce size. 2007 * 2008 * Note: As per MS-SMB2 2.2.32.1, the values returned 2009 * in cc_rsp are not strictly lower than what existed 2010 * before. 2011 */ 2012 if (bytes_written < tcon->max_bytes_copy) { 2013 cifs_tcon_dbg(FYI, "Copychunk MaxBytesCopy updated: %u -> %u\n", 2014 tcon->max_bytes_copy, bytes_written); 2015 tcon->max_bytes_copy = bytes_written; 2016 } 2017 2018 if (chunks_written < tcon->max_chunks) { 2019 cifs_tcon_dbg(FYI, "Copychunk MaxChunks updated: %u -> %u\n", 2020 tcon->max_chunks, chunks_written); 2021 tcon->max_chunks = chunks_written; 2022 } 2023 2024 if (chunk_bytes < tcon->max_bytes_chunk) { 2025 cifs_tcon_dbg(FYI, "Copychunk MaxBytesChunk updated: %u -> %u\n", 2026 tcon->max_bytes_chunk, chunk_bytes); 2027 tcon->max_bytes_chunk = chunk_bytes; 2028 } 2029 2030 /* reset to last offsets */ 2031 if (retries++ < 2) { 2032 src_off = src_off_prev; 2033 dst_off = dst_off_prev; 2034 kfree(cc_req); 2035 cc_req = NULL; 2036 goto retry; 2037 } 2038 2039 break; 2040 } 2041 2042 out: 2043 kfree(cc_req); 2044 kfree(cc_rsp); 2045 if (rc) { 2046 trace_smb3_copychunk_err(xid, src_file->fid.volatile_fid, 2047 dst_file->fid.volatile_fid, tcon->tid, 2048 tcon->ses->Suid, src_off, dst_off, len, rc); 2049 return rc; 2050 } else { 2051 trace_smb3_copychunk_done(xid, src_file->fid.volatile_fid, 2052 dst_file->fid.volatile_fid, tcon->tid, 2053 tcon->ses->Suid, src_off, dst_off, len); 2054 return len; 2055 } 2056 } 2057 2058 static int 2059 smb2_flush_file(const unsigned int xid, struct cifs_tcon *tcon, 2060 struct cifs_fid *fid) 2061 { 2062 return SMB2_flush(xid, tcon, fid->persistent_fid, fid->volatile_fid); 2063 } 2064 2065 static unsigned int 2066 smb2_read_data_offset(char *buf) 2067 { 2068 struct smb2_read_rsp *rsp = (struct smb2_read_rsp *)buf; 2069 2070 return rsp->DataOffset; 2071 } 2072 2073 static unsigned int 2074 smb2_read_data_length(char *buf, bool in_remaining) 2075 { 2076 struct smb2_read_rsp *rsp = (struct smb2_read_rsp *)buf; 2077 2078 if (in_remaining) 2079 return le32_to_cpu(rsp->DataRemaining); 2080 2081 return le32_to_cpu(rsp->DataLength); 2082 } 2083 2084 2085 static int 2086 smb2_sync_read(const unsigned int xid, struct cifs_fid *pfid, 2087 struct cifs_io_parms *parms, unsigned int *bytes_read, 2088 char **buf, int *buf_type) 2089 { 2090 parms->persistent_fid = pfid->persistent_fid; 2091 parms->volatile_fid = pfid->volatile_fid; 2092 return SMB2_read(xid, parms, bytes_read, buf, buf_type); 2093 } 2094 2095 static int 2096 smb2_sync_write(const unsigned int xid, struct cifs_fid *pfid, 2097 struct cifs_io_parms *parms, unsigned int *written, 2098 struct kvec *iov, unsigned long nr_segs) 2099 { 2100 2101 parms->persistent_fid = pfid->persistent_fid; 2102 parms->volatile_fid = pfid->volatile_fid; 2103 return SMB2_write(xid, parms, written, iov, nr_segs); 2104 } 2105 2106 /* Set or clear the SPARSE_FILE attribute based on value passed in setsparse */ 2107 static bool smb2_set_sparse(const unsigned int xid, struct cifs_tcon *tcon, 2108 struct cifsFileInfo *cfile, struct inode *inode, __u8 setsparse) 2109 { 2110 struct cifsInodeInfo *cifsi; 2111 int rc; 2112 2113 cifsi = CIFS_I(inode); 2114 2115 /* if file already sparse don't bother setting sparse again */ 2116 if ((cifsi->cifsAttrs & FILE_ATTRIBUTE_SPARSE_FILE) && setsparse) 2117 return true; /* already sparse */ 2118 2119 if (!(cifsi->cifsAttrs & FILE_ATTRIBUTE_SPARSE_FILE) && !setsparse) 2120 return true; /* already not sparse */ 2121 2122 /* 2123 * Can't check for sparse support on share the usual way via the 2124 * FS attribute info (FILE_SUPPORTS_SPARSE_FILES) on the share 2125 * since Samba server doesn't set the flag on the share, yet 2126 * supports the set sparse FSCTL and returns sparse correctly 2127 * in the file attributes. If we fail setting sparse though we 2128 * mark that server does not support sparse files for this share 2129 * to avoid repeatedly sending the unsupported fsctl to server 2130 * if the file is repeatedly extended. 2131 */ 2132 if (tcon->broken_sparse_sup) 2133 return false; 2134 2135 rc = SMB2_ioctl(xid, tcon, cfile->fid.persistent_fid, 2136 cfile->fid.volatile_fid, FSCTL_SET_SPARSE, 2137 &setsparse, 1, CIFSMaxBufSize, NULL, NULL); 2138 if (rc) { 2139 tcon->broken_sparse_sup = true; 2140 cifs_dbg(FYI, "set sparse rc = %d\n", rc); 2141 return false; 2142 } 2143 2144 if (setsparse) 2145 cifsi->cifsAttrs |= FILE_ATTRIBUTE_SPARSE_FILE; 2146 else 2147 cifsi->cifsAttrs &= (~FILE_ATTRIBUTE_SPARSE_FILE); 2148 2149 return true; 2150 } 2151 2152 static int 2153 smb2_set_file_size(const unsigned int xid, struct cifs_tcon *tcon, 2154 struct cifsFileInfo *cfile, __u64 size, bool set_alloc) 2155 { 2156 struct inode *inode; 2157 2158 /* 2159 * If extending file more than one page make sparse. Many Linux fs 2160 * make files sparse by default when extending via ftruncate 2161 */ 2162 inode = d_inode(cfile->dentry); 2163 2164 if (!set_alloc && (size > inode->i_size + 8192)) { 2165 __u8 set_sparse = 1; 2166 2167 /* whether set sparse succeeds or not, extend the file */ 2168 smb2_set_sparse(xid, tcon, cfile, inode, set_sparse); 2169 } 2170 2171 return SMB2_set_eof(xid, tcon, cfile->fid.persistent_fid, 2172 cfile->fid.volatile_fid, cfile->pid, size); 2173 } 2174 2175 static int 2176 smb2_duplicate_extents(const unsigned int xid, 2177 struct cifsFileInfo *srcfile, 2178 struct cifsFileInfo *trgtfile, u64 src_off, 2179 u64 len, u64 dest_off) 2180 { 2181 int rc; 2182 unsigned int ret_data_len; 2183 struct inode *inode; 2184 struct duplicate_extents_to_file dup_ext_buf; 2185 struct cifs_tcon *tcon = tlink_tcon(trgtfile->tlink); 2186 2187 /* server fileays advertise duplicate extent support with this flag */ 2188 if ((le32_to_cpu(tcon->fsAttrInfo.Attributes) & 2189 FILE_SUPPORTS_BLOCK_REFCOUNTING) == 0) 2190 return -EOPNOTSUPP; 2191 2192 dup_ext_buf.VolatileFileHandle = srcfile->fid.volatile_fid; 2193 dup_ext_buf.PersistentFileHandle = srcfile->fid.persistent_fid; 2194 dup_ext_buf.SourceFileOffset = cpu_to_le64(src_off); 2195 dup_ext_buf.TargetFileOffset = cpu_to_le64(dest_off); 2196 dup_ext_buf.ByteCount = cpu_to_le64(len); 2197 cifs_dbg(FYI, "Duplicate extents: src off %lld dst off %lld len %lld\n", 2198 src_off, dest_off, len); 2199 trace_smb3_clone_enter(xid, srcfile->fid.volatile_fid, 2200 trgtfile->fid.volatile_fid, tcon->tid, 2201 tcon->ses->Suid, src_off, dest_off, len); 2202 inode = d_inode(trgtfile->dentry); 2203 if (inode->i_size < dest_off + len) { 2204 rc = smb2_set_file_size(xid, tcon, trgtfile, dest_off + len, false); 2205 if (rc) 2206 goto duplicate_extents_out; 2207 2208 /* 2209 * Although also could set plausible allocation size (i_blocks) 2210 * here in addition to setting the file size, in reflink 2211 * it is likely that the target file is sparse. Its allocation 2212 * size will be queried on next revalidate, but it is important 2213 * to make sure that file's cached size is updated immediately 2214 */ 2215 netfs_resize_file(netfs_inode(inode), dest_off + len, true); 2216 cifs_setsize(inode, dest_off + len); 2217 } 2218 rc = SMB2_ioctl(xid, tcon, trgtfile->fid.persistent_fid, 2219 trgtfile->fid.volatile_fid, 2220 FSCTL_DUPLICATE_EXTENTS_TO_FILE, 2221 (char *)&dup_ext_buf, 2222 sizeof(struct duplicate_extents_to_file), 2223 CIFSMaxBufSize, NULL, 2224 &ret_data_len); 2225 2226 if (ret_data_len > 0) 2227 cifs_dbg(FYI, "Non-zero response length in duplicate extents\n"); 2228 2229 duplicate_extents_out: 2230 if (rc) 2231 trace_smb3_clone_err(xid, srcfile->fid.volatile_fid, 2232 trgtfile->fid.volatile_fid, 2233 tcon->tid, tcon->ses->Suid, src_off, 2234 dest_off, len, rc); 2235 else 2236 trace_smb3_clone_done(xid, srcfile->fid.volatile_fid, 2237 trgtfile->fid.volatile_fid, tcon->tid, 2238 tcon->ses->Suid, src_off, dest_off, len); 2239 return rc; 2240 } 2241 2242 static int 2243 smb2_set_compression(const unsigned int xid, struct cifs_tcon *tcon, 2244 struct cifsFileInfo *cfile) 2245 { 2246 return SMB2_set_compression(xid, tcon, cfile->fid.persistent_fid, 2247 cfile->fid.volatile_fid); 2248 } 2249 2250 static int 2251 smb3_set_integrity(const unsigned int xid, struct cifs_tcon *tcon, 2252 struct cifsFileInfo *cfile) 2253 { 2254 struct fsctl_set_integrity_information_req integr_info; 2255 unsigned int ret_data_len; 2256 2257 integr_info.ChecksumAlgorithm = cpu_to_le16(CHECKSUM_TYPE_UNCHANGED); 2258 integr_info.Flags = 0; 2259 integr_info.Reserved = 0; 2260 2261 return SMB2_ioctl(xid, tcon, cfile->fid.persistent_fid, 2262 cfile->fid.volatile_fid, 2263 FSCTL_SET_INTEGRITY_INFORMATION, 2264 (char *)&integr_info, 2265 sizeof(struct fsctl_set_integrity_information_req), 2266 CIFSMaxBufSize, NULL, 2267 &ret_data_len); 2268 2269 } 2270 2271 /* GMT Token is @GMT-YYYY.MM.DD-HH.MM.SS Unicode which is 48 bytes + null */ 2272 #define GMT_TOKEN_SIZE 50 2273 2274 #define MIN_SNAPSHOT_ARRAY_SIZE 16 /* See MS-SMB2 section 3.3.5.15.1 */ 2275 2276 /* 2277 * Input buffer contains (empty) struct smb_snapshot array with size filled in 2278 * For output see struct SRV_SNAPSHOT_ARRAY in MS-SMB2 section 2.2.32.2 2279 */ 2280 static int 2281 smb3_enum_snapshots(const unsigned int xid, struct cifs_tcon *tcon, 2282 struct cifsFileInfo *cfile, void __user *ioc_buf) 2283 { 2284 char *retbuf = NULL; 2285 unsigned int ret_data_len = 0; 2286 int rc; 2287 u32 max_response_size; 2288 struct smb_snapshot_array snapshot_in; 2289 2290 /* 2291 * On the first query to enumerate the list of snapshots available 2292 * for this volume the buffer begins with 0 (number of snapshots 2293 * which can be returned is zero since at that point we do not know 2294 * how big the buffer needs to be). On the second query, 2295 * it (ret_data_len) is set to number of snapshots so we can 2296 * know to set the maximum response size larger (see below). 2297 */ 2298 if (get_user(ret_data_len, (unsigned int __user *)ioc_buf)) 2299 return -EFAULT; 2300 2301 /* 2302 * Note that for snapshot queries that servers like Azure expect that 2303 * the first query be minimal size (and just used to get the number/size 2304 * of previous versions) so response size must be specified as EXACTLY 2305 * sizeof(struct snapshot_array) which is 16 when rounded up to multiple 2306 * of eight bytes. 2307 */ 2308 if (ret_data_len == 0) 2309 max_response_size = MIN_SNAPSHOT_ARRAY_SIZE; 2310 else 2311 max_response_size = CIFSMaxBufSize; 2312 2313 rc = SMB2_ioctl(xid, tcon, cfile->fid.persistent_fid, 2314 cfile->fid.volatile_fid, 2315 FSCTL_SRV_ENUMERATE_SNAPSHOTS, 2316 NULL, 0 /* no input data */, max_response_size, 2317 (char **)&retbuf, 2318 &ret_data_len); 2319 cifs_dbg(FYI, "enum snapshots ioctl returned %d and ret buflen is %d\n", 2320 rc, ret_data_len); 2321 if (rc) 2322 return rc; 2323 2324 if (ret_data_len && (ioc_buf != NULL) && (retbuf != NULL)) { 2325 /* Fixup buffer */ 2326 if (copy_from_user(&snapshot_in, ioc_buf, 2327 sizeof(struct smb_snapshot_array))) { 2328 rc = -EFAULT; 2329 kfree(retbuf); 2330 return rc; 2331 } 2332 2333 /* 2334 * Check for min size, ie not large enough to fit even one GMT 2335 * token (snapshot). On the first ioctl some users may pass in 2336 * smaller size (or zero) to simply get the size of the array 2337 * so the user space caller can allocate sufficient memory 2338 * and retry the ioctl again with larger array size sufficient 2339 * to hold all of the snapshot GMT tokens on the second try. 2340 */ 2341 if (snapshot_in.snapshot_array_size < GMT_TOKEN_SIZE) 2342 ret_data_len = sizeof(struct smb_snapshot_array); 2343 2344 /* 2345 * We return struct SRV_SNAPSHOT_ARRAY, followed by 2346 * the snapshot array (of 50 byte GMT tokens) each 2347 * representing an available previous version of the data 2348 */ 2349 if (ret_data_len > (snapshot_in.snapshot_array_size + 2350 sizeof(struct smb_snapshot_array))) 2351 ret_data_len = snapshot_in.snapshot_array_size + 2352 sizeof(struct smb_snapshot_array); 2353 2354 if (copy_to_user(ioc_buf, retbuf, ret_data_len)) 2355 rc = -EFAULT; 2356 } 2357 2358 kfree(retbuf); 2359 return rc; 2360 } 2361 2362 2363 2364 static int 2365 smb3_notify(const unsigned int xid, struct file *pfile, 2366 void __user *ioc_buf, bool return_changes) 2367 { 2368 struct smb3_notify_info notify; 2369 struct smb3_notify_info __user *pnotify_buf; 2370 struct dentry *dentry = pfile->f_path.dentry; 2371 struct inode *inode = file_inode(pfile); 2372 struct cifs_sb_info *cifs_sb = CIFS_SB(inode->i_sb); 2373 struct cifs_open_parms oparms; 2374 struct cifs_fid fid; 2375 struct cifs_tcon *tcon; 2376 const unsigned char *path; 2377 char *returned_ioctl_info = NULL; 2378 void *page = alloc_dentry_path(); 2379 __le16 *utf16_path = NULL; 2380 u8 oplock = SMB2_OPLOCK_LEVEL_NONE; 2381 int rc = 0; 2382 __u32 ret_len = 0; 2383 2384 path = build_path_from_dentry(dentry, page); 2385 if (IS_ERR(path)) { 2386 rc = PTR_ERR(path); 2387 goto notify_exit; 2388 } 2389 2390 utf16_path = cifs_convert_path_to_utf16(path, cifs_sb); 2391 if (utf16_path == NULL) { 2392 rc = -ENOMEM; 2393 goto notify_exit; 2394 } 2395 2396 if (return_changes) { 2397 if (copy_from_user(¬ify, ioc_buf, sizeof(struct smb3_notify_info))) { 2398 rc = -EFAULT; 2399 goto notify_exit; 2400 } 2401 } else { 2402 if (copy_from_user(¬ify, ioc_buf, sizeof(struct smb3_notify))) { 2403 rc = -EFAULT; 2404 goto notify_exit; 2405 } 2406 notify.data_len = 0; 2407 } 2408 2409 tcon = cifs_sb_master_tcon(cifs_sb); 2410 oparms = (struct cifs_open_parms) { 2411 .tcon = tcon, 2412 .path = path, 2413 .desired_access = FILE_READ_ATTRIBUTES | FILE_READ_DATA, 2414 .disposition = FILE_OPEN, 2415 .create_options = cifs_create_options(cifs_sb, 0), 2416 .fid = &fid, 2417 }; 2418 2419 rc = SMB2_open(xid, &oparms, utf16_path, &oplock, NULL, NULL, NULL, 2420 NULL); 2421 if (rc) 2422 goto notify_exit; 2423 2424 rc = SMB2_change_notify(xid, tcon, fid.persistent_fid, fid.volatile_fid, 2425 notify.watch_tree, notify.completion_filter, 2426 notify.data_len, &returned_ioctl_info, &ret_len); 2427 2428 SMB2_close(xid, tcon, fid.persistent_fid, fid.volatile_fid); 2429 2430 cifs_dbg(FYI, "change notify for path %s rc %d\n", path, rc); 2431 if (return_changes && (ret_len > 0) && (notify.data_len > 0)) { 2432 if (ret_len > notify.data_len) 2433 ret_len = notify.data_len; 2434 pnotify_buf = (struct smb3_notify_info __user *)ioc_buf; 2435 if (copy_to_user(pnotify_buf->notify_data, returned_ioctl_info, ret_len)) 2436 rc = -EFAULT; 2437 else if (copy_to_user(&pnotify_buf->data_len, &ret_len, sizeof(ret_len))) 2438 rc = -EFAULT; 2439 } 2440 kfree(returned_ioctl_info); 2441 notify_exit: 2442 free_dentry_path(page); 2443 kfree(utf16_path); 2444 return rc; 2445 } 2446 2447 static int 2448 smb2_query_dir_first(const unsigned int xid, struct cifs_tcon *tcon, 2449 const char *path, struct cifs_sb_info *cifs_sb, 2450 struct cifs_fid *fid, __u16 search_flags, 2451 struct cifs_search_info *srch_inf) 2452 { 2453 __le16 *utf16_path; 2454 struct smb_rqst rqst[2]; 2455 struct kvec rsp_iov[2]; 2456 int resp_buftype[2]; 2457 struct kvec open_iov[SMB2_CREATE_IOV_SIZE]; 2458 struct kvec qd_iov[SMB2_QUERY_DIRECTORY_IOV_SIZE]; 2459 int rc, flags = 0; 2460 u8 oplock = SMB2_OPLOCK_LEVEL_NONE; 2461 struct cifs_open_parms oparms; 2462 struct smb2_query_directory_rsp *qd_rsp = NULL; 2463 struct smb2_create_rsp *op_rsp = NULL; 2464 struct TCP_Server_Info *server; 2465 int retries = 0, cur_sleep = 0; 2466 2467 replay_again: 2468 /* reinitialize for possible replay */ 2469 flags = 0; 2470 oplock = SMB2_OPLOCK_LEVEL_NONE; 2471 server = cifs_pick_channel(tcon->ses); 2472 2473 utf16_path = cifs_convert_path_to_utf16(path, cifs_sb); 2474 if (!utf16_path) 2475 return -ENOMEM; 2476 2477 if (smb3_encryption_required(tcon)) 2478 flags |= CIFS_TRANSFORM_REQ; 2479 2480 memset(rqst, 0, sizeof(rqst)); 2481 resp_buftype[0] = resp_buftype[1] = CIFS_NO_BUFFER; 2482 memset(rsp_iov, 0, sizeof(rsp_iov)); 2483 2484 /* Open */ 2485 memset(&open_iov, 0, sizeof(open_iov)); 2486 rqst[0].rq_iov = open_iov; 2487 rqst[0].rq_nvec = SMB2_CREATE_IOV_SIZE; 2488 2489 oparms = (struct cifs_open_parms) { 2490 .tcon = tcon, 2491 .path = path, 2492 .desired_access = FILE_READ_ATTRIBUTES | FILE_READ_DATA, 2493 .disposition = FILE_OPEN, 2494 .create_options = cifs_create_options(cifs_sb, 0), 2495 .fid = fid, 2496 .replay = !!(retries), 2497 }; 2498 2499 rc = SMB2_open_init(tcon, server, 2500 &rqst[0], &oplock, &oparms, utf16_path); 2501 if (rc) 2502 goto qdf_free; 2503 smb2_set_next_command(tcon, &rqst[0]); 2504 2505 /* Query directory */ 2506 srch_inf->entries_in_buffer = 0; 2507 srch_inf->index_of_last_entry = 2; 2508 2509 memset(&qd_iov, 0, sizeof(qd_iov)); 2510 rqst[1].rq_iov = qd_iov; 2511 rqst[1].rq_nvec = SMB2_QUERY_DIRECTORY_IOV_SIZE; 2512 2513 rc = SMB2_query_directory_init(xid, tcon, server, 2514 &rqst[1], 2515 COMPOUND_FID, COMPOUND_FID, 2516 0, srch_inf->info_level); 2517 if (rc) 2518 goto qdf_free; 2519 2520 smb2_set_related(&rqst[1]); 2521 2522 if (retries) { 2523 /* Back-off before retry */ 2524 if (cur_sleep) 2525 msleep(cur_sleep); 2526 smb2_set_replay(server, &rqst[0]); 2527 smb2_set_replay(server, &rqst[1]); 2528 } 2529 2530 rc = compound_send_recv(xid, tcon->ses, server, 2531 flags, 2, rqst, 2532 resp_buftype, rsp_iov); 2533 2534 /* If the open failed there is nothing to do */ 2535 op_rsp = (struct smb2_create_rsp *)rsp_iov[0].iov_base; 2536 if (op_rsp == NULL || op_rsp->hdr.Status != STATUS_SUCCESS) { 2537 cifs_dbg(FYI, "query_dir_first: open failed rc=%d\n", rc); 2538 goto qdf_free; 2539 } 2540 fid->persistent_fid = op_rsp->PersistentFileId; 2541 fid->volatile_fid = op_rsp->VolatileFileId; 2542 2543 /* Anything else than ENODATA means a genuine error */ 2544 if (rc && rc != -ENODATA) { 2545 SMB2_close(xid, tcon, fid->persistent_fid, fid->volatile_fid); 2546 cifs_dbg(FYI, "query_dir_first: query directory failed rc=%d\n", rc); 2547 trace_smb3_query_dir_err(xid, fid->persistent_fid, 2548 tcon->tid, tcon->ses->Suid, 0, 0, rc); 2549 goto qdf_free; 2550 } 2551 2552 atomic_inc(&tcon->num_remote_opens); 2553 2554 qd_rsp = (struct smb2_query_directory_rsp *)rsp_iov[1].iov_base; 2555 if (qd_rsp->hdr.Status == STATUS_NO_MORE_FILES) { 2556 trace_smb3_query_dir_done(xid, fid->persistent_fid, 2557 tcon->tid, tcon->ses->Suid, 0, 0); 2558 srch_inf->endOfSearch = true; 2559 rc = 0; 2560 goto qdf_free; 2561 } 2562 2563 rc = smb2_parse_query_directory(tcon, &rsp_iov[1], resp_buftype[1], 2564 srch_inf); 2565 if (rc) { 2566 trace_smb3_query_dir_err(xid, fid->persistent_fid, tcon->tid, 2567 tcon->ses->Suid, 0, 0, rc); 2568 goto qdf_free; 2569 } 2570 resp_buftype[1] = CIFS_NO_BUFFER; 2571 2572 trace_smb3_query_dir_done(xid, fid->persistent_fid, tcon->tid, 2573 tcon->ses->Suid, 0, srch_inf->entries_in_buffer); 2574 2575 qdf_free: 2576 kfree(utf16_path); 2577 SMB2_open_free(&rqst[0]); 2578 SMB2_query_directory_free(&rqst[1]); 2579 free_rsp_buf(resp_buftype[0], rsp_iov[0].iov_base); 2580 free_rsp_buf(resp_buftype[1], rsp_iov[1].iov_base); 2581 2582 if (is_replayable_error(rc) && 2583 smb2_should_replay(tcon, &retries, &cur_sleep)) 2584 goto replay_again; 2585 2586 return rc; 2587 } 2588 2589 static int 2590 smb2_query_dir_next(const unsigned int xid, struct cifs_tcon *tcon, 2591 struct cifs_fid *fid, __u16 search_flags, 2592 struct cifs_search_info *srch_inf) 2593 { 2594 return SMB2_query_directory(xid, tcon, fid->persistent_fid, 2595 fid->volatile_fid, 0, srch_inf); 2596 } 2597 2598 static int 2599 smb2_close_dir(const unsigned int xid, struct cifs_tcon *tcon, 2600 struct cifs_fid *fid) 2601 { 2602 return SMB2_close(xid, tcon, fid->persistent_fid, fid->volatile_fid); 2603 } 2604 2605 /* 2606 * If we negotiate SMB2 protocol and get STATUS_PENDING - update 2607 * the number of credits and return true. Otherwise - return false. 2608 */ 2609 static bool 2610 smb2_is_status_pending(char *buf, struct TCP_Server_Info *server) 2611 { 2612 struct smb2_hdr *shdr = (struct smb2_hdr *)buf; 2613 int scredits, in_flight; 2614 2615 if (shdr->Status != STATUS_PENDING) 2616 return false; 2617 2618 if (shdr->CreditRequest) { 2619 spin_lock(&server->req_lock); 2620 server->credits += le16_to_cpu(shdr->CreditRequest); 2621 scredits = server->credits; 2622 in_flight = server->in_flight; 2623 spin_unlock(&server->req_lock); 2624 wake_up(&server->request_q); 2625 2626 trace_smb3_pend_credits(server->current_mid, 2627 server->conn_id, server->hostname, scredits, 2628 le16_to_cpu(shdr->CreditRequest), in_flight); 2629 cifs_dbg(FYI, "%s: status pending add %u credits total=%d\n", 2630 __func__, le16_to_cpu(shdr->CreditRequest), scredits); 2631 } 2632 2633 return true; 2634 } 2635 2636 static bool 2637 smb2_is_session_expired(char *buf) 2638 { 2639 struct smb2_hdr *shdr = (struct smb2_hdr *)buf; 2640 2641 if (shdr->Status != STATUS_NETWORK_SESSION_EXPIRED && 2642 shdr->Status != STATUS_USER_SESSION_DELETED) 2643 return false; 2644 2645 trace_smb3_ses_expired(le32_to_cpu(shdr->Id.SyncId.TreeId), 2646 le64_to_cpu(shdr->SessionId), 2647 le16_to_cpu(shdr->Command), 2648 le64_to_cpu(shdr->MessageId)); 2649 cifs_dbg(FYI, "Session expired or deleted\n"); 2650 2651 return true; 2652 } 2653 2654 static bool 2655 smb2_is_status_io_timeout(char *buf) 2656 { 2657 struct smb2_hdr *shdr = (struct smb2_hdr *)buf; 2658 2659 if (shdr->Status == STATUS_IO_TIMEOUT) 2660 return true; 2661 else 2662 return false; 2663 } 2664 2665 static bool 2666 smb2_is_network_name_deleted(char *buf, struct TCP_Server_Info *server) 2667 { 2668 struct smb2_hdr *shdr = (struct smb2_hdr *)buf; 2669 struct TCP_Server_Info *pserver; 2670 struct cifs_ses *ses; 2671 struct cifs_tcon *tcon; 2672 2673 if (shdr->Status != STATUS_NETWORK_NAME_DELETED) 2674 return false; 2675 2676 /* If server is a channel, select the primary channel */ 2677 pserver = SERVER_IS_CHAN(server) ? server->primary_server : server; 2678 2679 spin_lock(&cifs_tcp_ses_lock); 2680 list_for_each_entry(ses, &pserver->smb_ses_list, smb_ses_list) { 2681 if (cifs_ses_exiting(ses)) 2682 continue; 2683 list_for_each_entry(tcon, &ses->tcon_list, tcon_list) { 2684 if (tcon->tid == le32_to_cpu(shdr->Id.SyncId.TreeId)) { 2685 spin_lock(&tcon->tc_lock); 2686 tcon->need_reconnect = true; 2687 spin_unlock(&tcon->tc_lock); 2688 spin_unlock(&cifs_tcp_ses_lock); 2689 pr_warn_once("Server share %s deleted.\n", 2690 tcon->tree_name); 2691 return true; 2692 } 2693 } 2694 } 2695 spin_unlock(&cifs_tcp_ses_lock); 2696 2697 return false; 2698 } 2699 2700 static int smb2_oplock_response(struct cifs_tcon *tcon, __u64 persistent_fid, 2701 __u64 volatile_fid, __u16 net_fid, 2702 struct cifsInodeInfo *cinode, unsigned int oplock) 2703 { 2704 unsigned int sbflags = cifs_sb_flags(CIFS_SB(cinode)); 2705 __u8 op; 2706 2707 if (tcon->ses->server->capabilities & SMB2_GLOBAL_CAP_LEASING) 2708 return SMB2_lease_break(0, tcon, cinode->lease_key, 2709 smb2_get_lease_state(cinode, oplock)); 2710 2711 op = !!((oplock & CIFS_CACHE_READ_FLG) || (sbflags & CIFS_MOUNT_RO_CACHE)); 2712 return SMB2_oplock_break(0, tcon, persistent_fid, volatile_fid, op); 2713 } 2714 2715 void 2716 smb2_set_replay(struct TCP_Server_Info *server, struct smb_rqst *rqst) 2717 { 2718 struct smb2_hdr *shdr; 2719 2720 if (server->dialect < SMB30_PROT_ID) 2721 return; 2722 2723 shdr = (struct smb2_hdr *)(rqst->rq_iov[0].iov_base); 2724 if (shdr == NULL) { 2725 cifs_dbg(FYI, "shdr NULL in smb2_set_related\n"); 2726 return; 2727 } 2728 shdr->Flags |= SMB2_FLAGS_REPLAY_OPERATION; 2729 } 2730 2731 void 2732 smb2_set_related(struct smb_rqst *rqst) 2733 { 2734 struct smb2_hdr *shdr; 2735 2736 shdr = (struct smb2_hdr *)(rqst->rq_iov[0].iov_base); 2737 if (shdr == NULL) { 2738 cifs_dbg(FYI, "shdr NULL in smb2_set_related\n"); 2739 return; 2740 } 2741 shdr->Flags |= SMB2_FLAGS_RELATED_OPERATIONS; 2742 } 2743 2744 char smb2_padding[7] = {0, 0, 0, 0, 0, 0, 0}; 2745 2746 void 2747 smb2_set_next_command(struct cifs_tcon *tcon, struct smb_rqst *rqst) 2748 { 2749 struct smb2_hdr *shdr; 2750 struct cifs_ses *ses = tcon->ses; 2751 struct TCP_Server_Info *server = ses->server; 2752 unsigned long len = smb_rqst_len(server, rqst); 2753 int num_padding; 2754 2755 shdr = (struct smb2_hdr *)(rqst->rq_iov[0].iov_base); 2756 if (shdr == NULL) { 2757 cifs_dbg(FYI, "shdr NULL in smb2_set_next_command\n"); 2758 return; 2759 } 2760 2761 /* SMB headers in a compound are 8 byte aligned. */ 2762 if (IS_ALIGNED(len, 8)) 2763 goto out; 2764 2765 num_padding = 8 - (len & 7); 2766 if (smb3_encryption_required(tcon)) { 2767 int i; 2768 2769 /* 2770 * Flatten request into a single buffer with required padding as 2771 * the encryption layer can't handle the padding iovs. 2772 */ 2773 for (i = 1; i < rqst->rq_nvec; i++) { 2774 memcpy(rqst->rq_iov[0].iov_base + 2775 rqst->rq_iov[0].iov_len, 2776 rqst->rq_iov[i].iov_base, 2777 rqst->rq_iov[i].iov_len); 2778 rqst->rq_iov[0].iov_len += rqst->rq_iov[i].iov_len; 2779 } 2780 memset(rqst->rq_iov[0].iov_base + rqst->rq_iov[0].iov_len, 2781 0, num_padding); 2782 rqst->rq_iov[0].iov_len += num_padding; 2783 rqst->rq_nvec = 1; 2784 } else { 2785 rqst->rq_iov[rqst->rq_nvec].iov_base = smb2_padding; 2786 rqst->rq_iov[rqst->rq_nvec].iov_len = num_padding; 2787 rqst->rq_nvec++; 2788 } 2789 len += num_padding; 2790 out: 2791 shdr->NextCommand = cpu_to_le32(len); 2792 } 2793 2794 /* 2795 * helper function for exponential backoff and check if replayable 2796 */ 2797 bool smb2_should_replay(struct cifs_tcon *tcon, 2798 int *pretries, 2799 int *pcur_sleep) 2800 { 2801 if (!pretries || !pcur_sleep) 2802 return false; 2803 2804 if (tcon->retry || (*pretries)++ < tcon->ses->server->retrans) { 2805 /* Update sleep time for exponential backoff */ 2806 if (!(*pcur_sleep)) 2807 (*pcur_sleep) = 1; 2808 else { 2809 (*pcur_sleep) = ((*pcur_sleep) << 1); 2810 if ((*pcur_sleep) > CIFS_MAX_SLEEP) 2811 (*pcur_sleep) = CIFS_MAX_SLEEP; 2812 } 2813 return true; 2814 } 2815 2816 return false; 2817 } 2818 2819 /* 2820 * Passes the query info response back to the caller on success. 2821 * Caller need to free this with free_rsp_buf(). 2822 */ 2823 int 2824 smb2_query_info_compound(const unsigned int xid, struct cifs_tcon *tcon, 2825 const char *path, u32 desired_access, 2826 u32 class, u32 type, u32 output_len, 2827 struct kvec *rsp, int *buftype, 2828 struct cifs_sb_info *cifs_sb) 2829 { 2830 struct smb2_compound_vars *vars; 2831 struct cifs_ses *ses = tcon->ses; 2832 struct TCP_Server_Info *server; 2833 int flags = CIFS_CP_CREATE_CLOSE_OP; 2834 struct smb_rqst *rqst; 2835 int resp_buftype[3]; 2836 struct kvec *rsp_iov; 2837 u8 oplock = SMB2_OPLOCK_LEVEL_NONE; 2838 struct cifs_open_parms oparms; 2839 struct cifs_fid fid; 2840 int rc; 2841 __le16 *utf16_path; 2842 struct cached_fid *cfid; 2843 int retries = 0, cur_sleep = 0; 2844 2845 replay_again: 2846 /* reinitialize for possible replay */ 2847 cfid = NULL; 2848 flags = CIFS_CP_CREATE_CLOSE_OP; 2849 oplock = SMB2_OPLOCK_LEVEL_NONE; 2850 server = cifs_pick_channel(ses); 2851 2852 if (!path) 2853 path = ""; 2854 utf16_path = cifs_convert_path_to_utf16(path, cifs_sb); 2855 if (!utf16_path) 2856 return -ENOMEM; 2857 2858 if (smb3_encryption_required(tcon)) 2859 flags |= CIFS_TRANSFORM_REQ; 2860 2861 resp_buftype[0] = resp_buftype[1] = resp_buftype[2] = CIFS_NO_BUFFER; 2862 vars = kzalloc_obj(*vars); 2863 if (!vars) { 2864 rc = -ENOMEM; 2865 goto out_free_path; 2866 } 2867 rqst = vars->rqst; 2868 rsp_iov = vars->rsp_iov; 2869 2870 /* 2871 * We can only call this for things we know are directories. 2872 */ 2873 if (!strcmp(path, "")) 2874 open_cached_dir(xid, tcon, path, cifs_sb, false, 2875 &cfid); /* cfid null if open dir failed */ 2876 2877 rqst[0].rq_iov = vars->open_iov; 2878 rqst[0].rq_nvec = SMB2_CREATE_IOV_SIZE; 2879 2880 oparms = (struct cifs_open_parms) { 2881 .tcon = tcon, 2882 .path = path, 2883 .desired_access = desired_access, 2884 .disposition = FILE_OPEN, 2885 .create_options = cifs_create_options(cifs_sb, 0), 2886 .fid = &fid, 2887 .replay = !!(retries), 2888 }; 2889 2890 rc = SMB2_open_init(tcon, server, 2891 &rqst[0], &oplock, &oparms, utf16_path); 2892 if (rc) 2893 goto qic_exit; 2894 smb2_set_next_command(tcon, &rqst[0]); 2895 2896 rqst[1].rq_iov = &vars->qi_iov; 2897 rqst[1].rq_nvec = 1; 2898 2899 if (cfid) { 2900 rc = SMB2_query_info_init(tcon, server, 2901 &rqst[1], 2902 cfid->fid.persistent_fid, 2903 cfid->fid.volatile_fid, 2904 class, type, 0, 2905 output_len, 0, 2906 NULL); 2907 } else { 2908 rc = SMB2_query_info_init(tcon, server, 2909 &rqst[1], 2910 COMPOUND_FID, 2911 COMPOUND_FID, 2912 class, type, 0, 2913 output_len, 0, 2914 NULL); 2915 } 2916 if (rc) 2917 goto qic_exit; 2918 if (!cfid) { 2919 smb2_set_next_command(tcon, &rqst[1]); 2920 smb2_set_related(&rqst[1]); 2921 } 2922 2923 rqst[2].rq_iov = &vars->close_iov; 2924 rqst[2].rq_nvec = 1; 2925 2926 rc = SMB2_close_init(tcon, server, 2927 &rqst[2], COMPOUND_FID, COMPOUND_FID, false); 2928 if (rc) 2929 goto qic_exit; 2930 smb2_set_related(&rqst[2]); 2931 2932 if (retries) { 2933 /* Back-off before retry */ 2934 if (cur_sleep) 2935 msleep(cur_sleep); 2936 if (!cfid) { 2937 smb2_set_replay(server, &rqst[0]); 2938 smb2_set_replay(server, &rqst[2]); 2939 } 2940 smb2_set_replay(server, &rqst[1]); 2941 } 2942 2943 if (cfid) { 2944 rc = compound_send_recv(xid, ses, server, 2945 flags, 1, &rqst[1], 2946 &resp_buftype[1], &rsp_iov[1]); 2947 } else { 2948 rc = compound_send_recv(xid, ses, server, 2949 flags, 3, rqst, 2950 resp_buftype, rsp_iov); 2951 } 2952 if (rc) { 2953 free_rsp_buf(resp_buftype[1], rsp_iov[1].iov_base); 2954 if (rc == -EREMCHG) { 2955 tcon->need_reconnect = true; 2956 pr_warn_once("server share %s deleted\n", 2957 tcon->tree_name); 2958 } 2959 goto qic_exit; 2960 } 2961 *rsp = rsp_iov[1]; 2962 *buftype = resp_buftype[1]; 2963 2964 qic_exit: 2965 SMB2_open_free(&rqst[0]); 2966 SMB2_query_info_free(&rqst[1]); 2967 SMB2_close_free(&rqst[2]); 2968 free_rsp_buf(resp_buftype[0], rsp_iov[0].iov_base); 2969 free_rsp_buf(resp_buftype[2], rsp_iov[2].iov_base); 2970 if (cfid) 2971 close_cached_dir(cfid); 2972 kfree(vars); 2973 out_free_path: 2974 kfree(utf16_path); 2975 2976 if (is_replayable_error(rc) && 2977 smb2_should_replay(tcon, &retries, &cur_sleep)) 2978 goto replay_again; 2979 2980 return rc; 2981 } 2982 2983 static int 2984 smb2_queryfs(const unsigned int xid, struct cifs_tcon *tcon, 2985 const char *path, struct cifs_sb_info *cifs_sb, struct kstatfs *buf) 2986 { 2987 struct smb2_query_info_rsp *rsp; 2988 struct smb2_fs_full_size_info *info = NULL; 2989 struct kvec rsp_iov = {NULL, 0}; 2990 int buftype = CIFS_NO_BUFFER; 2991 int rc; 2992 2993 2994 rc = smb2_query_info_compound(xid, tcon, path, 2995 FILE_READ_ATTRIBUTES, 2996 FS_FULL_SIZE_INFORMATION, 2997 SMB2_O_INFO_FILESYSTEM, 2998 sizeof(struct smb2_fs_full_size_info), 2999 &rsp_iov, &buftype, cifs_sb); 3000 if (rc) 3001 goto qfs_exit; 3002 3003 rsp = (struct smb2_query_info_rsp *)rsp_iov.iov_base; 3004 buf->f_type = SMB2_SUPER_MAGIC; 3005 info = (struct smb2_fs_full_size_info *)( 3006 le16_to_cpu(rsp->OutputBufferOffset) + (char *)rsp); 3007 rc = smb2_validate_iov(le16_to_cpu(rsp->OutputBufferOffset), 3008 le32_to_cpu(rsp->OutputBufferLength), 3009 &rsp_iov, 3010 sizeof(struct smb2_fs_full_size_info)); 3011 if (!rc) 3012 smb2_copy_fs_info_to_kstatfs(info, buf); 3013 3014 qfs_exit: 3015 trace_smb3_qfs_done(xid, tcon->tid, tcon->ses->Suid, tcon->tree_name, rc); 3016 free_rsp_buf(buftype, rsp_iov.iov_base); 3017 return rc; 3018 } 3019 3020 static int 3021 smb311_queryfs(const unsigned int xid, struct cifs_tcon *tcon, 3022 const char *path, struct cifs_sb_info *cifs_sb, struct kstatfs *buf) 3023 { 3024 int rc; 3025 __le16 *utf16_path = NULL; 3026 u8 oplock = SMB2_OPLOCK_LEVEL_NONE; 3027 struct cifs_open_parms oparms; 3028 struct cifs_fid fid; 3029 3030 if (!tcon->posix_extensions) 3031 return smb2_queryfs(xid, tcon, path, cifs_sb, buf); 3032 3033 oparms = (struct cifs_open_parms) { 3034 .tcon = tcon, 3035 .path = path, 3036 .desired_access = FILE_READ_ATTRIBUTES, 3037 .disposition = FILE_OPEN, 3038 .create_options = cifs_create_options(cifs_sb, 0), 3039 .fid = &fid, 3040 }; 3041 3042 utf16_path = cifs_convert_path_to_utf16(path, cifs_sb); 3043 if (utf16_path == NULL) 3044 return -ENOMEM; 3045 3046 rc = SMB2_open(xid, &oparms, utf16_path, &oplock, NULL, NULL, 3047 NULL, NULL); 3048 kfree(utf16_path); 3049 if (rc) 3050 return rc; 3051 3052 rc = SMB311_posix_qfs_info(xid, tcon, fid.persistent_fid, 3053 fid.volatile_fid, buf); 3054 buf->f_type = SMB2_SUPER_MAGIC; 3055 SMB2_close(xid, tcon, fid.persistent_fid, fid.volatile_fid); 3056 return rc; 3057 } 3058 3059 static bool 3060 smb2_compare_fids(struct cifsFileInfo *ob1, struct cifsFileInfo *ob2) 3061 { 3062 return ob1->fid.persistent_fid == ob2->fid.persistent_fid && 3063 ob1->fid.volatile_fid == ob2->fid.volatile_fid; 3064 } 3065 3066 static int 3067 smb2_mand_lock(const unsigned int xid, struct cifsFileInfo *cfile, __u64 offset, 3068 __u64 length, __u32 type, int lock, int unlock, bool wait) 3069 { 3070 if (unlock && !lock) 3071 type = SMB2_LOCKFLAG_UNLOCK; 3072 return SMB2_lock(xid, tlink_tcon(cfile->tlink), 3073 cfile->fid.persistent_fid, cfile->fid.volatile_fid, 3074 current->tgid, length, offset, type, wait); 3075 } 3076 3077 static void 3078 smb2_get_lease_key(struct inode *inode, struct cifs_fid *fid) 3079 { 3080 memcpy(fid->lease_key, CIFS_I(inode)->lease_key, SMB2_LEASE_KEY_SIZE); 3081 } 3082 3083 static void 3084 smb2_set_lease_key(struct inode *inode, struct cifs_fid *fid) 3085 { 3086 memcpy(CIFS_I(inode)->lease_key, fid->lease_key, SMB2_LEASE_KEY_SIZE); 3087 } 3088 3089 static void 3090 smb2_new_lease_key(struct cifs_fid *fid) 3091 { 3092 generate_random_uuid(fid->lease_key); 3093 } 3094 3095 static int 3096 smb2_get_dfs_refer(const unsigned int xid, struct cifs_ses *ses, 3097 const char *search_name, 3098 struct dfs_info3_param **target_nodes, 3099 unsigned int *num_of_nodes, 3100 const struct nls_table *nls_codepage, int remap) 3101 { 3102 int rc; 3103 __le16 *utf16_path = NULL; 3104 int utf16_path_len = 0; 3105 struct cifs_tcon *tcon; 3106 struct fsctl_get_dfs_referral_req *dfs_req = NULL; 3107 struct get_dfs_referral_rsp *dfs_rsp = NULL; 3108 u32 dfs_req_size = 0, dfs_rsp_size = 0; 3109 int retry_once = 0; 3110 3111 cifs_dbg(FYI, "%s: path: %s\n", __func__, search_name); 3112 3113 /* 3114 * Try to use the IPC tcon, otherwise just use any 3115 */ 3116 tcon = ses->tcon_ipc; 3117 if (tcon == NULL) { 3118 spin_lock(&cifs_tcp_ses_lock); 3119 tcon = list_first_entry_or_null(&ses->tcon_list, 3120 struct cifs_tcon, 3121 tcon_list); 3122 if (tcon) { 3123 spin_lock(&tcon->tc_lock); 3124 tcon->tc_count++; 3125 spin_unlock(&tcon->tc_lock); 3126 trace_smb3_tcon_ref(tcon->debug_id, tcon->tc_count, 3127 netfs_trace_tcon_ref_get_dfs_refer); 3128 } 3129 spin_unlock(&cifs_tcp_ses_lock); 3130 } 3131 3132 if (tcon == NULL) { 3133 cifs_dbg(VFS, "session %p has no tcon available for a dfs referral request\n", 3134 ses); 3135 rc = -ENOTCONN; 3136 goto out; 3137 } 3138 3139 utf16_path = cifs_strndup_to_utf16(search_name, PATH_MAX, 3140 &utf16_path_len, 3141 nls_codepage, remap); 3142 if (!utf16_path) { 3143 rc = -ENOMEM; 3144 goto out; 3145 } 3146 3147 dfs_req_size = sizeof(*dfs_req) + utf16_path_len; 3148 dfs_req = kzalloc(dfs_req_size, GFP_KERNEL); 3149 if (!dfs_req) { 3150 rc = -ENOMEM; 3151 goto out; 3152 } 3153 3154 /* Highest DFS referral version understood */ 3155 dfs_req->MaxReferralLevel = DFS_VERSION; 3156 3157 /* Path to resolve in an UTF-16 null-terminated string */ 3158 memcpy(dfs_req->RequestFileName, utf16_path, utf16_path_len); 3159 3160 for (;;) { 3161 rc = SMB2_ioctl(xid, tcon, NO_FILE_ID, NO_FILE_ID, 3162 FSCTL_DFS_GET_REFERRALS, 3163 (char *)dfs_req, dfs_req_size, CIFSMaxBufSize, 3164 (char **)&dfs_rsp, &dfs_rsp_size); 3165 if (fatal_signal_pending(current)) { 3166 rc = -EINTR; 3167 break; 3168 } 3169 if (!is_retryable_error(rc) || retry_once++) 3170 break; 3171 usleep_range(512, 2048); 3172 } 3173 3174 if (!rc && !dfs_rsp) 3175 rc = smb_EIO(smb_eio_trace_dfsref_no_rsp); 3176 if (rc) { 3177 if (!is_retryable_error(rc) && rc != -ENOENT && rc != -EOPNOTSUPP) 3178 cifs_tcon_dbg(FYI, "%s: ioctl error: rc=%d\n", __func__, rc); 3179 goto out; 3180 } 3181 3182 rc = parse_dfs_referrals(dfs_rsp, dfs_rsp_size, 3183 num_of_nodes, target_nodes, 3184 nls_codepage, remap, search_name, 3185 true /* is_unicode */); 3186 if (rc && rc != -ENOENT) { 3187 cifs_tcon_dbg(VFS, "%s: failed to parse DFS referral %s: %d\n", 3188 __func__, search_name, rc); 3189 } 3190 3191 out: 3192 if (tcon && !tcon->ipc) { 3193 /* ipc tcons are not refcounted */ 3194 cifs_put_tcon(tcon, netfs_trace_tcon_ref_put_dfs_refer); 3195 } 3196 kfree(utf16_path); 3197 kfree(dfs_req); 3198 kfree(dfs_rsp); 3199 return rc; 3200 } 3201 3202 static struct smb_ntsd * 3203 get_smb2_acl_by_fid(struct cifs_sb_info *cifs_sb, 3204 const struct cifs_fid *cifsfid, u32 *pacllen, u32 info) 3205 { 3206 struct smb_ntsd *pntsd = NULL; 3207 unsigned int xid; 3208 int rc = -EOPNOTSUPP; 3209 struct tcon_link *tlink = cifs_sb_tlink(cifs_sb); 3210 3211 if (IS_ERR(tlink)) 3212 return ERR_CAST(tlink); 3213 3214 xid = get_xid(); 3215 cifs_dbg(FYI, "trying to get acl\n"); 3216 3217 rc = SMB2_query_acl(xid, tlink_tcon(tlink), cifsfid->persistent_fid, 3218 cifsfid->volatile_fid, (void **)&pntsd, pacllen, 3219 info); 3220 free_xid(xid); 3221 3222 cifs_put_tlink(tlink); 3223 3224 cifs_dbg(FYI, "%s: rc = %d ACL len %d\n", __func__, rc, *pacllen); 3225 if (rc) 3226 return ERR_PTR(rc); 3227 return pntsd; 3228 3229 } 3230 3231 static struct smb_ntsd * 3232 get_smb2_acl_by_path(struct cifs_sb_info *cifs_sb, 3233 const char *path, u32 *pacllen, u32 info) 3234 { 3235 struct smb_ntsd *pntsd = NULL; 3236 u8 oplock = SMB2_OPLOCK_LEVEL_NONE; 3237 unsigned int xid; 3238 int rc; 3239 struct cifs_tcon *tcon; 3240 struct tcon_link *tlink = cifs_sb_tlink(cifs_sb); 3241 struct cifs_fid fid; 3242 struct cifs_open_parms oparms; 3243 __le16 *utf16_path; 3244 3245 cifs_dbg(FYI, "get smb3 acl for path %s\n", path); 3246 if (IS_ERR(tlink)) 3247 return ERR_CAST(tlink); 3248 3249 tcon = tlink_tcon(tlink); 3250 xid = get_xid(); 3251 3252 utf16_path = cifs_convert_path_to_utf16(path, cifs_sb); 3253 if (!utf16_path) { 3254 rc = -ENOMEM; 3255 goto put_tlink; 3256 } 3257 3258 oparms = (struct cifs_open_parms) { 3259 .tcon = tcon, 3260 .path = path, 3261 .desired_access = READ_CONTROL, 3262 .disposition = FILE_OPEN, 3263 /* 3264 * When querying an ACL, even if the file is a symlink 3265 * we want to open the source not the target, and so 3266 * the protocol requires that the client specify this 3267 * flag when opening a reparse point 3268 */ 3269 .create_options = cifs_create_options(cifs_sb, 0) | 3270 OPEN_REPARSE_POINT, 3271 .fid = &fid, 3272 }; 3273 3274 if (info & SACL_SECINFO) 3275 oparms.desired_access |= SYSTEM_SECURITY; 3276 3277 rc = SMB2_open(xid, &oparms, utf16_path, &oplock, NULL, NULL, NULL, 3278 NULL); 3279 kfree(utf16_path); 3280 if (!rc) { 3281 rc = SMB2_query_acl(xid, tlink_tcon(tlink), fid.persistent_fid, 3282 fid.volatile_fid, (void **)&pntsd, pacllen, 3283 info); 3284 SMB2_close(xid, tcon, fid.persistent_fid, fid.volatile_fid); 3285 } 3286 3287 put_tlink: 3288 cifs_put_tlink(tlink); 3289 free_xid(xid); 3290 3291 cifs_dbg(FYI, "%s: rc = %d ACL len %d\n", __func__, rc, *pacllen); 3292 if (rc) 3293 return ERR_PTR(rc); 3294 return pntsd; 3295 } 3296 3297 static int 3298 set_smb2_acl(struct smb_ntsd *pnntsd, __u32 acllen, 3299 struct inode *inode, const char *path, int aclflag) 3300 { 3301 u8 oplock = SMB2_OPLOCK_LEVEL_NONE; 3302 unsigned int xid; 3303 int rc, access_flags = 0; 3304 struct cifs_tcon *tcon; 3305 struct cifs_sb_info *cifs_sb = CIFS_SB(inode->i_sb); 3306 struct tcon_link *tlink = cifs_sb_tlink(cifs_sb); 3307 struct cifs_fid fid; 3308 struct cifs_open_parms oparms; 3309 __le16 *utf16_path; 3310 3311 cifs_dbg(FYI, "set smb3 acl for path %s\n", path); 3312 if (IS_ERR(tlink)) 3313 return PTR_ERR(tlink); 3314 3315 tcon = tlink_tcon(tlink); 3316 xid = get_xid(); 3317 3318 if (aclflag & CIFS_ACL_OWNER || aclflag & CIFS_ACL_GROUP) 3319 access_flags |= WRITE_OWNER; 3320 if (aclflag & CIFS_ACL_SACL) 3321 access_flags |= SYSTEM_SECURITY; 3322 if (aclflag & CIFS_ACL_DACL) 3323 access_flags |= WRITE_DAC; 3324 3325 utf16_path = cifs_convert_path_to_utf16(path, cifs_sb); 3326 if (!utf16_path) { 3327 rc = -ENOMEM; 3328 goto put_tlink; 3329 } 3330 3331 oparms = (struct cifs_open_parms) { 3332 .tcon = tcon, 3333 .desired_access = access_flags, 3334 .create_options = cifs_create_options(cifs_sb, 0), 3335 .disposition = FILE_OPEN, 3336 .path = path, 3337 .fid = &fid, 3338 }; 3339 3340 rc = SMB2_open(xid, &oparms, utf16_path, &oplock, NULL, NULL, 3341 NULL, NULL); 3342 kfree(utf16_path); 3343 if (!rc) { 3344 rc = SMB2_set_acl(xid, tlink_tcon(tlink), fid.persistent_fid, 3345 fid.volatile_fid, pnntsd, acllen, aclflag); 3346 SMB2_close(xid, tcon, fid.persistent_fid, fid.volatile_fid); 3347 } 3348 3349 put_tlink: 3350 cifs_put_tlink(tlink); 3351 free_xid(xid); 3352 return rc; 3353 } 3354 3355 /* Retrieve an ACL from the server */ 3356 static struct smb_ntsd * 3357 get_smb2_acl(struct cifs_sb_info *cifs_sb, 3358 struct inode *inode, const char *path, 3359 u32 *pacllen, u32 info) 3360 { 3361 struct smb_ntsd *pntsd = NULL; 3362 struct cifsFileInfo *open_file = NULL; 3363 3364 if (inode && !(info & SACL_SECINFO)) 3365 open_file = find_readable_file(CIFS_I(inode), FIND_FSUID_ONLY); 3366 if (!open_file || (info & SACL_SECINFO)) 3367 return get_smb2_acl_by_path(cifs_sb, path, pacllen, info); 3368 3369 pntsd = get_smb2_acl_by_fid(cifs_sb, &open_file->fid, pacllen, info); 3370 cifsFileInfo_put(open_file); 3371 return pntsd; 3372 } 3373 3374 static long smb3_zero_data(struct file *file, struct cifs_tcon *tcon, 3375 loff_t offset, loff_t len, unsigned int xid) 3376 { 3377 struct cifsFileInfo *cfile = file->private_data; 3378 struct file_zero_data_information fsctl_buf; 3379 3380 cifs_dbg(FYI, "Offset %lld len %lld\n", offset, len); 3381 3382 fsctl_buf.FileOffset = cpu_to_le64(offset); 3383 fsctl_buf.BeyondFinalZero = cpu_to_le64(offset + len); 3384 3385 return SMB2_ioctl(xid, tcon, cfile->fid.persistent_fid, 3386 cfile->fid.volatile_fid, FSCTL_SET_ZERO_DATA, 3387 (char *)&fsctl_buf, 3388 sizeof(struct file_zero_data_information), 3389 0, NULL, NULL); 3390 } 3391 3392 static long smb3_zero_range(struct file *file, struct cifs_tcon *tcon, 3393 unsigned long long offset, unsigned long long len, 3394 bool keep_size) 3395 { 3396 struct cifs_ses *ses = tcon->ses; 3397 struct inode *inode = file_inode(file); 3398 struct cifsInodeInfo *cifsi = CIFS_I(inode); 3399 struct cifsFileInfo *cfile = file->private_data; 3400 struct netfs_inode *ictx = netfs_inode(inode); 3401 unsigned long long i_size, new_size, remote_size; 3402 long rc; 3403 unsigned int xid; 3404 3405 xid = get_xid(); 3406 3407 trace_smb3_zero_enter(xid, cfile->fid.persistent_fid, tcon->tid, 3408 ses->Suid, offset, len); 3409 3410 filemap_invalidate_lock(inode->i_mapping); 3411 3412 i_size = i_size_read(inode); 3413 remote_size = ictx->remote_i_size; 3414 if (offset + len >= remote_size && offset < i_size) { 3415 unsigned long long top = umin(offset + len, i_size); 3416 3417 rc = filemap_write_and_wait_range(inode->i_mapping, offset, top - 1); 3418 if (rc < 0) 3419 goto zero_range_exit; 3420 } 3421 3422 /* 3423 * We zero the range through ioctl, so we need remove the page caches 3424 * first, otherwise the data may be inconsistent with the server. 3425 */ 3426 truncate_pagecache_range(inode, offset, offset + len - 1); 3427 netfs_wait_for_outstanding_io(inode); 3428 3429 /* if file not oplocked can't be sure whether asking to extend size */ 3430 rc = -EOPNOTSUPP; 3431 if (keep_size == false && !CIFS_CACHE_READ(cifsi)) 3432 goto zero_range_exit; 3433 3434 rc = smb3_zero_data(file, tcon, offset, len, xid); 3435 if (rc < 0) 3436 goto zero_range_exit; 3437 3438 /* 3439 * do we also need to change the size of the file? 3440 */ 3441 new_size = offset + len; 3442 if (keep_size == false && (unsigned long long)i_size_read(inode) < new_size) { 3443 rc = SMB2_set_eof(xid, tcon, cfile->fid.persistent_fid, 3444 cfile->fid.volatile_fid, cfile->pid, new_size); 3445 if (rc >= 0) { 3446 truncate_setsize(inode, new_size); 3447 netfs_resize_file(&cifsi->netfs, new_size, true); 3448 if (offset < cifsi->netfs.zero_point) 3449 cifsi->netfs.zero_point = offset; 3450 fscache_resize_cookie(cifs_inode_cookie(inode), new_size); 3451 } 3452 } 3453 3454 zero_range_exit: 3455 filemap_invalidate_unlock(inode->i_mapping); 3456 free_xid(xid); 3457 if (rc) 3458 trace_smb3_zero_err(xid, cfile->fid.persistent_fid, tcon->tid, 3459 ses->Suid, offset, len, rc); 3460 else 3461 trace_smb3_zero_done(xid, cfile->fid.persistent_fid, tcon->tid, 3462 ses->Suid, offset, len); 3463 return rc; 3464 } 3465 3466 static long smb3_punch_hole(struct file *file, struct cifs_tcon *tcon, 3467 loff_t offset, loff_t len) 3468 { 3469 struct inode *inode = file_inode(file); 3470 struct cifsFileInfo *cfile = file->private_data; 3471 struct file_zero_data_information fsctl_buf; 3472 unsigned long long end = offset + len, i_size, remote_i_size; 3473 long rc; 3474 unsigned int xid; 3475 __u8 set_sparse = 1; 3476 3477 xid = get_xid(); 3478 3479 /* Need to make file sparse, if not already, before freeing range. */ 3480 /* Consider adding equivalent for compressed since it could also work */ 3481 if (!smb2_set_sparse(xid, tcon, cfile, inode, set_sparse)) { 3482 rc = -EOPNOTSUPP; 3483 goto out; 3484 } 3485 3486 filemap_invalidate_lock(inode->i_mapping); 3487 /* 3488 * We implement the punch hole through ioctl, so we need remove the page 3489 * caches first, otherwise the data may be inconsistent with the server. 3490 */ 3491 truncate_pagecache_range(inode, offset, offset + len - 1); 3492 netfs_wait_for_outstanding_io(inode); 3493 3494 cifs_dbg(FYI, "Offset %lld len %lld\n", offset, len); 3495 3496 fsctl_buf.FileOffset = cpu_to_le64(offset); 3497 fsctl_buf.BeyondFinalZero = cpu_to_le64(offset + len); 3498 3499 rc = SMB2_ioctl(xid, tcon, cfile->fid.persistent_fid, 3500 cfile->fid.volatile_fid, FSCTL_SET_ZERO_DATA, 3501 (char *)&fsctl_buf, 3502 sizeof(struct file_zero_data_information), 3503 CIFSMaxBufSize, NULL, NULL); 3504 3505 if (rc) 3506 goto unlock; 3507 3508 /* If there's dirty data in the buffer that would extend the EOF if it 3509 * were written, then we need to move the EOF marker over to the lower 3510 * of the high end of the hole and the proposed EOF. The problem is 3511 * that we locally hole-punch the tail of the dirty data, the proposed 3512 * EOF update will end up in the wrong place. 3513 */ 3514 i_size = i_size_read(inode); 3515 remote_i_size = netfs_inode(inode)->remote_i_size; 3516 if (end > remote_i_size && i_size > remote_i_size) { 3517 unsigned long long extend_to = umin(end, i_size); 3518 rc = SMB2_set_eof(xid, tcon, cfile->fid.persistent_fid, 3519 cfile->fid.volatile_fid, cfile->pid, extend_to); 3520 if (rc >= 0) 3521 netfs_inode(inode)->remote_i_size = extend_to; 3522 } 3523 3524 unlock: 3525 filemap_invalidate_unlock(inode->i_mapping); 3526 out: 3527 free_xid(xid); 3528 return rc; 3529 } 3530 3531 static int smb3_simple_fallocate_write_range(unsigned int xid, 3532 struct cifs_tcon *tcon, 3533 struct cifsFileInfo *cfile, 3534 loff_t off, loff_t len, 3535 char *buf) 3536 { 3537 struct cifs_io_parms io_parms = {0}; 3538 int nbytes; 3539 int rc = 0; 3540 struct kvec iov[2]; 3541 3542 io_parms.netfid = cfile->fid.netfid; 3543 io_parms.pid = current->tgid; 3544 io_parms.tcon = tcon; 3545 io_parms.persistent_fid = cfile->fid.persistent_fid; 3546 io_parms.volatile_fid = cfile->fid.volatile_fid; 3547 3548 while (len) { 3549 io_parms.offset = off; 3550 io_parms.length = len; 3551 if (io_parms.length > SMB2_MAX_BUFFER_SIZE) 3552 io_parms.length = SMB2_MAX_BUFFER_SIZE; 3553 /* iov[0] is reserved for smb header */ 3554 iov[1].iov_base = buf; 3555 iov[1].iov_len = io_parms.length; 3556 rc = SMB2_write(xid, &io_parms, &nbytes, iov, 1); 3557 if (rc) 3558 break; 3559 if (nbytes > len) 3560 return -EINVAL; 3561 buf += nbytes; 3562 off += nbytes; 3563 len -= nbytes; 3564 } 3565 return rc; 3566 } 3567 3568 static int smb3_simple_fallocate_range(unsigned int xid, 3569 struct cifs_tcon *tcon, 3570 struct cifsFileInfo *cfile, 3571 loff_t off, loff_t len) 3572 { 3573 struct file_allocated_range_buffer in_data, *out_data = NULL, *tmp_data; 3574 u32 out_data_len; 3575 char *buf = NULL; 3576 loff_t l; 3577 int rc; 3578 3579 in_data.file_offset = cpu_to_le64(off); 3580 in_data.length = cpu_to_le64(len); 3581 rc = SMB2_ioctl(xid, tcon, cfile->fid.persistent_fid, 3582 cfile->fid.volatile_fid, 3583 FSCTL_QUERY_ALLOCATED_RANGES, 3584 (char *)&in_data, sizeof(in_data), 3585 1024 * sizeof(struct file_allocated_range_buffer), 3586 (char **)&out_data, &out_data_len); 3587 if (rc) 3588 goto out; 3589 3590 buf = kzalloc(1024 * 1024, GFP_KERNEL); 3591 if (buf == NULL) { 3592 rc = -ENOMEM; 3593 goto out; 3594 } 3595 3596 tmp_data = out_data; 3597 while (len) { 3598 /* 3599 * The rest of the region is unmapped so write it all. 3600 */ 3601 if (out_data_len == 0) { 3602 rc = smb3_simple_fallocate_write_range(xid, tcon, 3603 cfile, off, len, buf); 3604 goto out; 3605 } 3606 3607 if (out_data_len < sizeof(struct file_allocated_range_buffer)) { 3608 rc = -EINVAL; 3609 goto out; 3610 } 3611 3612 if (off < le64_to_cpu(tmp_data->file_offset)) { 3613 /* 3614 * We are at a hole. Write until the end of the region 3615 * or until the next allocated data, 3616 * whichever comes next. 3617 */ 3618 l = le64_to_cpu(tmp_data->file_offset) - off; 3619 if (len < l) 3620 l = len; 3621 rc = smb3_simple_fallocate_write_range(xid, tcon, 3622 cfile, off, l, buf); 3623 if (rc) 3624 goto out; 3625 off = off + l; 3626 len = len - l; 3627 if (len == 0) 3628 goto out; 3629 } 3630 /* 3631 * We are at a section of allocated data, just skip forward 3632 * until the end of the data or the end of the region 3633 * we are supposed to fallocate, whichever comes first. 3634 */ 3635 l = le64_to_cpu(tmp_data->length); 3636 if (len < l) 3637 l = len; 3638 off += l; 3639 len -= l; 3640 3641 tmp_data = &tmp_data[1]; 3642 out_data_len -= sizeof(struct file_allocated_range_buffer); 3643 } 3644 3645 out: 3646 kfree(out_data); 3647 kfree(buf); 3648 return rc; 3649 } 3650 3651 3652 static long smb3_simple_falloc(struct file *file, struct cifs_tcon *tcon, 3653 loff_t off, loff_t len, bool keep_size) 3654 { 3655 struct inode *inode; 3656 struct cifsInodeInfo *cifsi; 3657 struct cifsFileInfo *cfile = file->private_data; 3658 long rc = -EOPNOTSUPP; 3659 unsigned int xid; 3660 loff_t new_eof; 3661 3662 xid = get_xid(); 3663 3664 inode = d_inode(cfile->dentry); 3665 cifsi = CIFS_I(inode); 3666 3667 trace_smb3_falloc_enter(xid, cfile->fid.persistent_fid, tcon->tid, 3668 tcon->ses->Suid, off, len); 3669 /* if file not oplocked can't be sure whether asking to extend size */ 3670 if (!CIFS_CACHE_READ(cifsi)) 3671 if (keep_size == false) { 3672 trace_smb3_falloc_err(xid, cfile->fid.persistent_fid, 3673 tcon->tid, tcon->ses->Suid, off, len, rc); 3674 free_xid(xid); 3675 return rc; 3676 } 3677 3678 /* 3679 * Extending the file 3680 */ 3681 if ((keep_size == false) && i_size_read(inode) < off + len) { 3682 rc = inode_newsize_ok(inode, off + len); 3683 if (rc) 3684 goto out; 3685 3686 if (cifsi->cifsAttrs & FILE_ATTRIBUTE_SPARSE_FILE) 3687 smb2_set_sparse(xid, tcon, cfile, inode, false); 3688 3689 new_eof = off + len; 3690 rc = SMB2_set_eof(xid, tcon, cfile->fid.persistent_fid, 3691 cfile->fid.volatile_fid, cfile->pid, new_eof); 3692 if (rc == 0) { 3693 netfs_resize_file(&cifsi->netfs, new_eof, true); 3694 cifs_setsize(inode, new_eof); 3695 } 3696 goto out; 3697 } 3698 3699 /* 3700 * Files are non-sparse by default so falloc may be a no-op 3701 * Must check if file sparse. If not sparse, and since we are not 3702 * extending then no need to do anything since file already allocated 3703 */ 3704 if ((cifsi->cifsAttrs & FILE_ATTRIBUTE_SPARSE_FILE) == 0) { 3705 rc = 0; 3706 goto out; 3707 } 3708 3709 if (keep_size == true) { 3710 /* 3711 * We can not preallocate pages beyond the end of the file 3712 * in SMB2 3713 */ 3714 if (off >= i_size_read(inode)) { 3715 rc = 0; 3716 goto out; 3717 } 3718 /* 3719 * For fallocates that are partially beyond the end of file, 3720 * clamp len so we only fallocate up to the end of file. 3721 */ 3722 if (off + len > i_size_read(inode)) { 3723 len = i_size_read(inode) - off; 3724 } 3725 } 3726 3727 if ((keep_size == true) || (i_size_read(inode) >= off + len)) { 3728 /* 3729 * At this point, we are trying to fallocate an internal 3730 * regions of a sparse file. Since smb2 does not have a 3731 * fallocate command we have two options on how to emulate this. 3732 * We can either turn the entire file to become non-sparse 3733 * which we only do if the fallocate is for virtually 3734 * the whole file, or we can overwrite the region with zeroes 3735 * using SMB2_write, which could be prohibitevly expensive 3736 * if len is large. 3737 */ 3738 /* 3739 * We are only trying to fallocate a small region so 3740 * just write it with zero. 3741 */ 3742 if (len <= 1024 * 1024) { 3743 rc = smb3_simple_fallocate_range(xid, tcon, cfile, 3744 off, len); 3745 goto out; 3746 } 3747 3748 /* 3749 * Check if falloc starts within first few pages of file 3750 * and ends within a few pages of the end of file to 3751 * ensure that most of file is being forced to be 3752 * fallocated now. If so then setting whole file sparse 3753 * ie potentially making a few extra pages at the beginning 3754 * or end of the file non-sparse via set_sparse is harmless. 3755 */ 3756 if ((off > 8192) || (off + len + 8192 < i_size_read(inode))) { 3757 rc = -EOPNOTSUPP; 3758 goto out; 3759 } 3760 } 3761 3762 smb2_set_sparse(xid, tcon, cfile, inode, false); 3763 rc = 0; 3764 3765 out: 3766 if (rc) 3767 trace_smb3_falloc_err(xid, cfile->fid.persistent_fid, tcon->tid, 3768 tcon->ses->Suid, off, len, rc); 3769 else 3770 trace_smb3_falloc_done(xid, cfile->fid.persistent_fid, tcon->tid, 3771 tcon->ses->Suid, off, len); 3772 3773 free_xid(xid); 3774 return rc; 3775 } 3776 3777 static long smb3_collapse_range(struct file *file, struct cifs_tcon *tcon, 3778 loff_t off, loff_t len) 3779 { 3780 int rc; 3781 unsigned int xid; 3782 struct inode *inode = file_inode(file); 3783 struct cifsInodeInfo *cifsi = CIFS_I(inode); 3784 struct cifsFileInfo *cfile = file->private_data; 3785 struct netfs_inode *ictx = &cifsi->netfs; 3786 loff_t old_eof, new_eof; 3787 3788 xid = get_xid(); 3789 3790 old_eof = i_size_read(inode); 3791 if ((off >= old_eof) || 3792 off + len >= old_eof) { 3793 rc = -EINVAL; 3794 goto out; 3795 } 3796 3797 filemap_invalidate_lock(inode->i_mapping); 3798 rc = filemap_write_and_wait_range(inode->i_mapping, off, old_eof - 1); 3799 if (rc < 0) 3800 goto out_2; 3801 3802 truncate_pagecache_range(inode, off, old_eof); 3803 ictx->zero_point = old_eof; 3804 netfs_wait_for_outstanding_io(inode); 3805 3806 rc = smb2_copychunk_range(xid, cfile, cfile, off + len, 3807 old_eof - off - len, off); 3808 if (rc < 0) 3809 goto out_2; 3810 3811 new_eof = old_eof - len; 3812 rc = SMB2_set_eof(xid, tcon, cfile->fid.persistent_fid, 3813 cfile->fid.volatile_fid, cfile->pid, new_eof); 3814 if (rc < 0) 3815 goto out_2; 3816 3817 rc = 0; 3818 3819 truncate_setsize(inode, new_eof); 3820 netfs_resize_file(&cifsi->netfs, new_eof, true); 3821 ictx->zero_point = new_eof; 3822 fscache_resize_cookie(cifs_inode_cookie(inode), new_eof); 3823 out_2: 3824 filemap_invalidate_unlock(inode->i_mapping); 3825 out: 3826 free_xid(xid); 3827 return rc; 3828 } 3829 3830 static long smb3_insert_range(struct file *file, struct cifs_tcon *tcon, 3831 loff_t off, loff_t len) 3832 { 3833 int rc; 3834 unsigned int xid; 3835 struct cifsFileInfo *cfile = file->private_data; 3836 struct inode *inode = file_inode(file); 3837 struct cifsInodeInfo *cifsi = CIFS_I(inode); 3838 __u64 count, old_eof, new_eof; 3839 3840 xid = get_xid(); 3841 3842 old_eof = i_size_read(inode); 3843 if (off >= old_eof) { 3844 rc = -EINVAL; 3845 goto out; 3846 } 3847 3848 count = old_eof - off; 3849 new_eof = old_eof + len; 3850 3851 filemap_invalidate_lock(inode->i_mapping); 3852 rc = filemap_write_and_wait_range(inode->i_mapping, off, new_eof - 1); 3853 if (rc < 0) 3854 goto out_2; 3855 truncate_pagecache_range(inode, off, old_eof); 3856 netfs_wait_for_outstanding_io(inode); 3857 3858 rc = SMB2_set_eof(xid, tcon, cfile->fid.persistent_fid, 3859 cfile->fid.volatile_fid, cfile->pid, new_eof); 3860 if (rc < 0) 3861 goto out_2; 3862 3863 truncate_setsize(inode, new_eof); 3864 netfs_resize_file(&cifsi->netfs, i_size_read(inode), true); 3865 fscache_resize_cookie(cifs_inode_cookie(inode), i_size_read(inode)); 3866 3867 rc = smb2_copychunk_range(xid, cfile, cfile, off, count, off + len); 3868 if (rc < 0) 3869 goto out_2; 3870 cifsi->netfs.zero_point = new_eof; 3871 3872 rc = smb3_zero_data(file, tcon, off, len, xid); 3873 if (rc < 0) 3874 goto out_2; 3875 3876 rc = 0; 3877 out_2: 3878 filemap_invalidate_unlock(inode->i_mapping); 3879 out: 3880 free_xid(xid); 3881 return rc; 3882 } 3883 3884 static loff_t smb3_llseek(struct file *file, struct cifs_tcon *tcon, loff_t offset, int whence) 3885 { 3886 struct cifsFileInfo *wrcfile, *cfile = file->private_data; 3887 struct cifsInodeInfo *cifsi; 3888 struct inode *inode; 3889 int rc = 0; 3890 struct file_allocated_range_buffer in_data, *out_data = NULL; 3891 u32 out_data_len; 3892 unsigned int xid; 3893 3894 if (whence != SEEK_HOLE && whence != SEEK_DATA) 3895 return generic_file_llseek(file, offset, whence); 3896 3897 inode = d_inode(cfile->dentry); 3898 cifsi = CIFS_I(inode); 3899 3900 if (offset < 0 || offset >= i_size_read(inode)) 3901 return -ENXIO; 3902 3903 xid = get_xid(); 3904 /* 3905 * We need to be sure that all dirty pages are written as they 3906 * might fill holes on the server. 3907 * Note that we also MUST flush any written pages since at least 3908 * some servers (Windows2016) will not reflect recent writes in 3909 * QUERY_ALLOCATED_RANGES until SMB2_flush is called. 3910 */ 3911 wrcfile = find_writable_file(cifsi, FIND_ANY); 3912 if (wrcfile) { 3913 filemap_write_and_wait(inode->i_mapping); 3914 smb2_flush_file(xid, tcon, &wrcfile->fid); 3915 cifsFileInfo_put(wrcfile); 3916 } 3917 3918 if (!(cifsi->cifsAttrs & FILE_ATTRIBUTE_SPARSE_FILE)) { 3919 if (whence == SEEK_HOLE) 3920 offset = i_size_read(inode); 3921 goto lseek_exit; 3922 } 3923 3924 in_data.file_offset = cpu_to_le64(offset); 3925 in_data.length = cpu_to_le64(i_size_read(inode)); 3926 3927 rc = SMB2_ioctl(xid, tcon, cfile->fid.persistent_fid, 3928 cfile->fid.volatile_fid, 3929 FSCTL_QUERY_ALLOCATED_RANGES, 3930 (char *)&in_data, sizeof(in_data), 3931 sizeof(struct file_allocated_range_buffer), 3932 (char **)&out_data, &out_data_len); 3933 if (rc == -E2BIG) 3934 rc = 0; 3935 if (rc) 3936 goto lseek_exit; 3937 3938 if (whence == SEEK_HOLE && out_data_len == 0) 3939 goto lseek_exit; 3940 3941 if (whence == SEEK_DATA && out_data_len == 0) { 3942 rc = -ENXIO; 3943 goto lseek_exit; 3944 } 3945 3946 if (out_data_len < sizeof(struct file_allocated_range_buffer)) { 3947 rc = -EINVAL; 3948 goto lseek_exit; 3949 } 3950 if (whence == SEEK_DATA) { 3951 offset = le64_to_cpu(out_data->file_offset); 3952 goto lseek_exit; 3953 } 3954 if (offset < le64_to_cpu(out_data->file_offset)) 3955 goto lseek_exit; 3956 3957 offset = le64_to_cpu(out_data->file_offset) + le64_to_cpu(out_data->length); 3958 3959 lseek_exit: 3960 free_xid(xid); 3961 kfree(out_data); 3962 if (!rc) 3963 return vfs_setpos(file, offset, inode->i_sb->s_maxbytes); 3964 else 3965 return rc; 3966 } 3967 3968 static int smb3_fiemap(struct cifs_tcon *tcon, 3969 struct cifsFileInfo *cfile, 3970 struct fiemap_extent_info *fei, u64 start, u64 len) 3971 { 3972 unsigned int xid; 3973 struct file_allocated_range_buffer in_data, *out_data; 3974 u32 out_data_len; 3975 int i, num, rc, flags, last_blob; 3976 u64 next; 3977 3978 rc = fiemap_prep(d_inode(cfile->dentry), fei, start, &len, 0); 3979 if (rc) 3980 return rc; 3981 3982 xid = get_xid(); 3983 again: 3984 in_data.file_offset = cpu_to_le64(start); 3985 in_data.length = cpu_to_le64(len); 3986 3987 rc = SMB2_ioctl(xid, tcon, cfile->fid.persistent_fid, 3988 cfile->fid.volatile_fid, 3989 FSCTL_QUERY_ALLOCATED_RANGES, 3990 (char *)&in_data, sizeof(in_data), 3991 1024 * sizeof(struct file_allocated_range_buffer), 3992 (char **)&out_data, &out_data_len); 3993 if (rc == -E2BIG) { 3994 last_blob = 0; 3995 rc = 0; 3996 } else 3997 last_blob = 1; 3998 if (rc) 3999 goto out; 4000 4001 if (out_data_len && out_data_len < sizeof(struct file_allocated_range_buffer)) { 4002 rc = -EINVAL; 4003 goto out; 4004 } 4005 if (out_data_len % sizeof(struct file_allocated_range_buffer)) { 4006 rc = -EINVAL; 4007 goto out; 4008 } 4009 4010 num = out_data_len / sizeof(struct file_allocated_range_buffer); 4011 for (i = 0; i < num; i++) { 4012 flags = 0; 4013 if (i == num - 1 && last_blob) 4014 flags |= FIEMAP_EXTENT_LAST; 4015 4016 rc = fiemap_fill_next_extent(fei, 4017 le64_to_cpu(out_data[i].file_offset), 4018 le64_to_cpu(out_data[i].file_offset), 4019 le64_to_cpu(out_data[i].length), 4020 flags); 4021 if (rc < 0) 4022 goto out; 4023 if (rc == 1) { 4024 rc = 0; 4025 goto out; 4026 } 4027 } 4028 4029 if (!last_blob) { 4030 next = le64_to_cpu(out_data[num - 1].file_offset) + 4031 le64_to_cpu(out_data[num - 1].length); 4032 len = len - (next - start); 4033 start = next; 4034 goto again; 4035 } 4036 4037 out: 4038 free_xid(xid); 4039 kfree(out_data); 4040 return rc; 4041 } 4042 4043 static long smb3_fallocate(struct file *file, struct cifs_tcon *tcon, int mode, 4044 loff_t off, loff_t len) 4045 { 4046 /* KEEP_SIZE already checked for by do_fallocate */ 4047 if (mode & FALLOC_FL_PUNCH_HOLE) 4048 return smb3_punch_hole(file, tcon, off, len); 4049 else if (mode & FALLOC_FL_ZERO_RANGE) { 4050 if (mode & FALLOC_FL_KEEP_SIZE) 4051 return smb3_zero_range(file, tcon, off, len, true); 4052 return smb3_zero_range(file, tcon, off, len, false); 4053 } else if (mode == FALLOC_FL_KEEP_SIZE) 4054 return smb3_simple_falloc(file, tcon, off, len, true); 4055 else if (mode == FALLOC_FL_COLLAPSE_RANGE) 4056 return smb3_collapse_range(file, tcon, off, len); 4057 else if (mode == FALLOC_FL_INSERT_RANGE) 4058 return smb3_insert_range(file, tcon, off, len); 4059 else if (mode == 0) 4060 return smb3_simple_falloc(file, tcon, off, len, false); 4061 4062 return -EOPNOTSUPP; 4063 } 4064 4065 static void 4066 smb2_downgrade_oplock(struct TCP_Server_Info *server, 4067 struct cifsInodeInfo *cinode, __u32 oplock, 4068 __u16 epoch, bool *purge_cache) 4069 { 4070 lockdep_assert_held(&cinode->open_file_lock); 4071 server->ops->set_oplock_level(cinode, oplock, 0, NULL); 4072 } 4073 4074 static void 4075 smb21_set_oplock_level(struct cifsInodeInfo *cinode, __u32 oplock, 4076 __u16 epoch, bool *purge_cache); 4077 4078 static void 4079 smb3_downgrade_oplock(struct TCP_Server_Info *server, 4080 struct cifsInodeInfo *cinode, __u32 oplock, 4081 __u16 epoch, bool *purge_cache) 4082 { 4083 unsigned int old_state = cinode->oplock; 4084 __u16 old_epoch = cinode->epoch; 4085 unsigned int new_state; 4086 4087 if (epoch > old_epoch) { 4088 smb21_set_oplock_level(cinode, oplock, 0, NULL); 4089 cinode->epoch = epoch; 4090 } 4091 4092 new_state = cinode->oplock; 4093 *purge_cache = false; 4094 4095 if ((old_state & CIFS_CACHE_READ_FLG) != 0 && 4096 (new_state & CIFS_CACHE_READ_FLG) == 0) 4097 *purge_cache = true; 4098 else if (old_state == new_state && (epoch - old_epoch > 1)) 4099 *purge_cache = true; 4100 } 4101 4102 static void 4103 smb2_set_oplock_level(struct cifsInodeInfo *cinode, __u32 oplock, 4104 __u16 epoch, bool *purge_cache) 4105 { 4106 oplock &= 0xFF; 4107 cinode->lease_granted = false; 4108 if (oplock == SMB2_OPLOCK_LEVEL_NOCHANGE) 4109 return; 4110 if (oplock == SMB2_OPLOCK_LEVEL_BATCH) { 4111 WRITE_ONCE(cinode->oplock, CIFS_CACHE_RHW_FLG); 4112 cifs_dbg(FYI, "Batch Oplock granted on inode %p\n", 4113 &cinode->netfs.inode); 4114 } else if (oplock == SMB2_OPLOCK_LEVEL_EXCLUSIVE) { 4115 WRITE_ONCE(cinode->oplock, CIFS_CACHE_RW_FLG); 4116 cifs_dbg(FYI, "Exclusive Oplock granted on inode %p\n", 4117 &cinode->netfs.inode); 4118 } else if (oplock == SMB2_OPLOCK_LEVEL_II) { 4119 WRITE_ONCE(cinode->oplock, CIFS_CACHE_READ_FLG); 4120 cifs_dbg(FYI, "Level II Oplock granted on inode %p\n", 4121 &cinode->netfs.inode); 4122 } else 4123 WRITE_ONCE(cinode->oplock, 0); 4124 } 4125 4126 static void 4127 smb21_set_oplock_level(struct cifsInodeInfo *cinode, __u32 oplock, 4128 __u16 epoch, bool *purge_cache) 4129 { 4130 char message[5] = {0}; 4131 unsigned int new_oplock = 0; 4132 4133 oplock &= 0xFF; 4134 cinode->lease_granted = true; 4135 if (oplock == SMB2_OPLOCK_LEVEL_NOCHANGE) 4136 return; 4137 4138 /* Check if the server granted an oplock rather than a lease */ 4139 if (oplock & SMB2_OPLOCK_LEVEL_EXCLUSIVE) 4140 return smb2_set_oplock_level(cinode, oplock, epoch, 4141 purge_cache); 4142 4143 if (oplock & SMB2_LEASE_READ_CACHING_HE) { 4144 new_oplock |= CIFS_CACHE_READ_FLG; 4145 strcat(message, "R"); 4146 } 4147 if (oplock & SMB2_LEASE_HANDLE_CACHING_HE) { 4148 new_oplock |= CIFS_CACHE_HANDLE_FLG; 4149 strcat(message, "H"); 4150 } 4151 if (oplock & SMB2_LEASE_WRITE_CACHING_HE) { 4152 new_oplock |= CIFS_CACHE_WRITE_FLG; 4153 strcat(message, "W"); 4154 } 4155 if (!new_oplock) 4156 strscpy(message, "None"); 4157 4158 WRITE_ONCE(cinode->oplock, new_oplock); 4159 cifs_dbg(FYI, "%s Lease granted on inode %p\n", message, 4160 &cinode->netfs.inode); 4161 } 4162 4163 static void 4164 smb3_set_oplock_level(struct cifsInodeInfo *cinode, __u32 oplock, 4165 __u16 epoch, bool *purge_cache) 4166 { 4167 unsigned int old_oplock = READ_ONCE(cinode->oplock); 4168 unsigned int new_oplock; 4169 4170 smb21_set_oplock_level(cinode, oplock, epoch, purge_cache); 4171 new_oplock = READ_ONCE(cinode->oplock); 4172 4173 if (purge_cache) { 4174 *purge_cache = false; 4175 if (old_oplock == CIFS_CACHE_READ_FLG) { 4176 if (new_oplock == CIFS_CACHE_READ_FLG && 4177 (epoch - cinode->epoch > 0)) 4178 *purge_cache = true; 4179 else if (new_oplock == CIFS_CACHE_RH_FLG && 4180 (epoch - cinode->epoch > 1)) 4181 *purge_cache = true; 4182 else if (new_oplock == CIFS_CACHE_RHW_FLG && 4183 (epoch - cinode->epoch > 1)) 4184 *purge_cache = true; 4185 else if (new_oplock == 0 && 4186 (epoch - cinode->epoch > 0)) 4187 *purge_cache = true; 4188 } else if (old_oplock == CIFS_CACHE_RH_FLG) { 4189 if (new_oplock == CIFS_CACHE_RH_FLG && 4190 (epoch - cinode->epoch > 0)) 4191 *purge_cache = true; 4192 else if (new_oplock == CIFS_CACHE_RHW_FLG && 4193 (epoch - cinode->epoch > 1)) 4194 *purge_cache = true; 4195 } 4196 cinode->epoch = epoch; 4197 } 4198 } 4199 4200 #ifdef CONFIG_CIFS_ALLOW_INSECURE_LEGACY 4201 static bool 4202 smb2_is_read_op(__u32 oplock) 4203 { 4204 return oplock == SMB2_OPLOCK_LEVEL_II; 4205 } 4206 #endif /* CIFS_ALLOW_INSECURE_LEGACY */ 4207 4208 static bool 4209 smb21_is_read_op(__u32 oplock) 4210 { 4211 return (oplock & SMB2_LEASE_READ_CACHING_HE) && 4212 !(oplock & SMB2_LEASE_WRITE_CACHING_HE); 4213 } 4214 4215 static __le32 4216 map_oplock_to_lease(u8 oplock) 4217 { 4218 if (oplock == SMB2_OPLOCK_LEVEL_EXCLUSIVE) 4219 return SMB2_LEASE_WRITE_CACHING_LE | SMB2_LEASE_READ_CACHING_LE; 4220 else if (oplock == SMB2_OPLOCK_LEVEL_II) 4221 return SMB2_LEASE_READ_CACHING_LE | SMB2_LEASE_HANDLE_CACHING_LE; 4222 else if (oplock == SMB2_OPLOCK_LEVEL_BATCH) 4223 return SMB2_LEASE_HANDLE_CACHING_LE | SMB2_LEASE_READ_CACHING_LE | 4224 SMB2_LEASE_WRITE_CACHING_LE; 4225 return 0; 4226 } 4227 4228 static char * 4229 smb2_create_lease_buf(u8 *lease_key, u8 oplock, u8 *parent_lease_key, __le32 flags) 4230 { 4231 struct create_lease *buf; 4232 4233 buf = kzalloc_obj(struct create_lease); 4234 if (!buf) 4235 return NULL; 4236 4237 memcpy(&buf->lcontext.LeaseKey, lease_key, SMB2_LEASE_KEY_SIZE); 4238 buf->lcontext.LeaseState = map_oplock_to_lease(oplock); 4239 4240 buf->ccontext.DataOffset = cpu_to_le16(offsetof 4241 (struct create_lease, lcontext)); 4242 buf->ccontext.DataLength = cpu_to_le32(sizeof(struct lease_context)); 4243 buf->ccontext.NameOffset = cpu_to_le16(offsetof 4244 (struct create_lease, Name)); 4245 buf->ccontext.NameLength = cpu_to_le16(4); 4246 /* SMB2_CREATE_REQUEST_LEASE is "RqLs" */ 4247 buf->Name[0] = 'R'; 4248 buf->Name[1] = 'q'; 4249 buf->Name[2] = 'L'; 4250 buf->Name[3] = 's'; 4251 return (char *)buf; 4252 } 4253 4254 static char * 4255 smb3_create_lease_buf(u8 *lease_key, u8 oplock, u8 *parent_lease_key, __le32 flags) 4256 { 4257 struct create_lease_v2 *buf; 4258 4259 buf = kzalloc_obj(struct create_lease_v2); 4260 if (!buf) 4261 return NULL; 4262 4263 memcpy(&buf->lcontext.LeaseKey, lease_key, SMB2_LEASE_KEY_SIZE); 4264 buf->lcontext.LeaseState = map_oplock_to_lease(oplock); 4265 buf->lcontext.LeaseFlags = flags; 4266 if (flags & SMB2_LEASE_FLAG_PARENT_LEASE_KEY_SET_LE) 4267 memcpy(&buf->lcontext.ParentLeaseKey, parent_lease_key, SMB2_LEASE_KEY_SIZE); 4268 4269 buf->ccontext.DataOffset = cpu_to_le16(offsetof 4270 (struct create_lease_v2, lcontext)); 4271 buf->ccontext.DataLength = cpu_to_le32(sizeof(struct lease_context_v2)); 4272 buf->ccontext.NameOffset = cpu_to_le16(offsetof 4273 (struct create_lease_v2, Name)); 4274 buf->ccontext.NameLength = cpu_to_le16(4); 4275 /* SMB2_CREATE_REQUEST_LEASE is "RqLs" */ 4276 buf->Name[0] = 'R'; 4277 buf->Name[1] = 'q'; 4278 buf->Name[2] = 'L'; 4279 buf->Name[3] = 's'; 4280 return (char *)buf; 4281 } 4282 4283 static __u8 4284 smb2_parse_lease_buf(void *buf, __u16 *epoch, char *lease_key) 4285 { 4286 struct create_lease *lc = (struct create_lease *)buf; 4287 4288 *epoch = 0; /* not used */ 4289 if (lc->lcontext.LeaseFlags & SMB2_LEASE_FLAG_BREAK_IN_PROGRESS_LE) 4290 return SMB2_OPLOCK_LEVEL_NOCHANGE; 4291 return le32_to_cpu(lc->lcontext.LeaseState); 4292 } 4293 4294 static __u8 4295 smb3_parse_lease_buf(void *buf, __u16 *epoch, char *lease_key) 4296 { 4297 struct create_lease_v2 *lc = (struct create_lease_v2 *)buf; 4298 4299 *epoch = le16_to_cpu(lc->lcontext.Epoch); 4300 if (lc->lcontext.LeaseFlags & SMB2_LEASE_FLAG_BREAK_IN_PROGRESS_LE) 4301 return SMB2_OPLOCK_LEVEL_NOCHANGE; 4302 if (lease_key) 4303 memcpy(lease_key, &lc->lcontext.LeaseKey, SMB2_LEASE_KEY_SIZE); 4304 return le32_to_cpu(lc->lcontext.LeaseState); 4305 } 4306 4307 static unsigned int 4308 smb2_wp_retry_size(struct inode *inode) 4309 { 4310 return min_t(unsigned int, CIFS_SB(inode->i_sb)->ctx->wsize, 4311 SMB2_MAX_BUFFER_SIZE); 4312 } 4313 4314 static bool 4315 smb2_dir_needs_close(struct cifsFileInfo *cfile) 4316 { 4317 return !cfile->invalidHandle; 4318 } 4319 4320 static void 4321 fill_transform_hdr(struct smb2_transform_hdr *tr_hdr, unsigned int orig_len, 4322 struct smb_rqst *old_rq, __le16 cipher_type) 4323 { 4324 struct smb2_hdr *shdr = 4325 (struct smb2_hdr *)old_rq->rq_iov[0].iov_base; 4326 4327 memset(tr_hdr, 0, sizeof(struct smb2_transform_hdr)); 4328 tr_hdr->ProtocolId = SMB2_TRANSFORM_PROTO_NUM; 4329 tr_hdr->OriginalMessageSize = cpu_to_le32(orig_len); 4330 tr_hdr->Flags = cpu_to_le16(0x01); 4331 if ((cipher_type == SMB2_ENCRYPTION_AES128_GCM) || 4332 (cipher_type == SMB2_ENCRYPTION_AES256_GCM)) 4333 get_random_bytes(&tr_hdr->Nonce, SMB3_AES_GCM_NONCE); 4334 else 4335 get_random_bytes(&tr_hdr->Nonce, SMB3_AES_CCM_NONCE); 4336 memcpy(&tr_hdr->SessionId, &shdr->SessionId, 8); 4337 } 4338 4339 static void *smb2_aead_req_alloc(struct crypto_aead *tfm, const struct smb_rqst *rqst, 4340 int num_rqst, const u8 *sig, u8 **iv, 4341 struct aead_request **req, struct sg_table *sgt, 4342 unsigned int *num_sgs) 4343 { 4344 unsigned int req_size = sizeof(**req) + crypto_aead_reqsize(tfm); 4345 unsigned int iv_size = crypto_aead_ivsize(tfm); 4346 unsigned int len; 4347 u8 *p; 4348 4349 *num_sgs = cifs_get_num_sgs(rqst, num_rqst, sig); 4350 if (IS_ERR_VALUE((long)(int)*num_sgs)) 4351 return ERR_PTR(*num_sgs); 4352 4353 len = iv_size; 4354 len += crypto_aead_alignmask(tfm) & ~(crypto_tfm_ctx_alignment() - 1); 4355 len = ALIGN(len, crypto_tfm_ctx_alignment()); 4356 len += req_size; 4357 len = ALIGN(len, __alignof__(struct scatterlist)); 4358 len += array_size(*num_sgs, sizeof(struct scatterlist)); 4359 4360 p = kzalloc(len, GFP_NOFS); 4361 if (!p) 4362 return ERR_PTR(-ENOMEM); 4363 4364 *iv = (u8 *)PTR_ALIGN(p, crypto_aead_alignmask(tfm) + 1); 4365 *req = (struct aead_request *)PTR_ALIGN(*iv + iv_size, 4366 crypto_tfm_ctx_alignment()); 4367 sgt->sgl = (struct scatterlist *)PTR_ALIGN((u8 *)*req + req_size, 4368 __alignof__(struct scatterlist)); 4369 return p; 4370 } 4371 4372 static void *smb2_get_aead_req(struct crypto_aead *tfm, struct smb_rqst *rqst, 4373 int num_rqst, const u8 *sig, u8 **iv, 4374 struct aead_request **req, struct scatterlist **sgl) 4375 { 4376 struct sg_table sgtable = {}; 4377 unsigned int skip, num_sgs, i, j; 4378 ssize_t rc; 4379 void *p; 4380 4381 p = smb2_aead_req_alloc(tfm, rqst, num_rqst, sig, iv, req, &sgtable, &num_sgs); 4382 if (IS_ERR(p)) 4383 return ERR_CAST(p); 4384 4385 sg_init_marker(sgtable.sgl, num_sgs); 4386 4387 /* 4388 * The first rqst has a transform header where the 4389 * first 20 bytes are not part of the encrypted blob. 4390 */ 4391 skip = 20; 4392 4393 for (i = 0; i < num_rqst; i++) { 4394 struct iov_iter *iter = &rqst[i].rq_iter; 4395 size_t count = iov_iter_count(iter); 4396 4397 for (j = 0; j < rqst[i].rq_nvec; j++) { 4398 cifs_sg_set_buf(&sgtable, 4399 rqst[i].rq_iov[j].iov_base + skip, 4400 rqst[i].rq_iov[j].iov_len - skip); 4401 4402 /* See the above comment on the 'skip' assignment */ 4403 skip = 0; 4404 } 4405 sgtable.orig_nents = sgtable.nents; 4406 4407 rc = extract_iter_to_sg(iter, count, &sgtable, 4408 num_sgs - sgtable.nents, 0); 4409 iov_iter_revert(iter, rc); 4410 sgtable.orig_nents = sgtable.nents; 4411 } 4412 4413 cifs_sg_set_buf(&sgtable, sig, SMB2_SIGNATURE_SIZE); 4414 sg_mark_end(&sgtable.sgl[sgtable.nents - 1]); 4415 *sgl = sgtable.sgl; 4416 return p; 4417 } 4418 4419 static int 4420 smb2_get_enc_key(struct TCP_Server_Info *server, __u64 ses_id, int enc, u8 *key) 4421 { 4422 struct TCP_Server_Info *pserver; 4423 struct cifs_ses *ses; 4424 u8 *ses_enc_key; 4425 4426 /* If server is a channel, select the primary channel */ 4427 pserver = SERVER_IS_CHAN(server) ? server->primary_server : server; 4428 4429 spin_lock(&cifs_tcp_ses_lock); 4430 list_for_each_entry(ses, &pserver->smb_ses_list, smb_ses_list) { 4431 if (ses->Suid == ses_id) { 4432 spin_lock(&ses->ses_lock); 4433 ses_enc_key = enc ? ses->smb3encryptionkey : 4434 ses->smb3decryptionkey; 4435 memcpy(key, ses_enc_key, SMB3_ENC_DEC_KEY_SIZE); 4436 spin_unlock(&ses->ses_lock); 4437 spin_unlock(&cifs_tcp_ses_lock); 4438 return 0; 4439 } 4440 } 4441 spin_unlock(&cifs_tcp_ses_lock); 4442 4443 trace_smb3_ses_not_found(ses_id); 4444 4445 return -EAGAIN; 4446 } 4447 /* 4448 * Encrypt or decrypt @rqst message. @rqst[0] has the following format: 4449 * iov[0] - transform header (associate data), 4450 * iov[1-N] - SMB2 header and pages - data to encrypt. 4451 * On success return encrypted data in iov[1-N] and pages, leave iov[0] 4452 * untouched. 4453 */ 4454 static int 4455 crypt_message(struct TCP_Server_Info *server, int num_rqst, 4456 struct smb_rqst *rqst, int enc, struct crypto_aead *tfm) 4457 { 4458 struct smb2_transform_hdr *tr_hdr = 4459 (struct smb2_transform_hdr *)rqst[0].rq_iov[0].iov_base; 4460 unsigned int assoc_data_len = sizeof(struct smb2_transform_hdr) - 20; 4461 int rc = 0; 4462 struct scatterlist *sg; 4463 u8 sign[SMB2_SIGNATURE_SIZE] = {}; 4464 u8 key[SMB3_ENC_DEC_KEY_SIZE]; 4465 struct aead_request *req; 4466 u8 *iv; 4467 DECLARE_CRYPTO_WAIT(wait); 4468 unsigned int crypt_len = le32_to_cpu(tr_hdr->OriginalMessageSize); 4469 void *creq; 4470 4471 rc = smb2_get_enc_key(server, le64_to_cpu(tr_hdr->SessionId), enc, key); 4472 if (rc) { 4473 cifs_server_dbg(FYI, "%s: Could not get %scryption key. sid: 0x%llx\n", __func__, 4474 enc ? "en" : "de", le64_to_cpu(tr_hdr->SessionId)); 4475 return rc; 4476 } 4477 4478 if ((server->cipher_type == SMB2_ENCRYPTION_AES256_CCM) || 4479 (server->cipher_type == SMB2_ENCRYPTION_AES256_GCM)) 4480 rc = crypto_aead_setkey(tfm, key, SMB3_GCM256_CRYPTKEY_SIZE); 4481 else 4482 rc = crypto_aead_setkey(tfm, key, SMB3_GCM128_CRYPTKEY_SIZE); 4483 4484 if (rc) { 4485 cifs_server_dbg(VFS, "%s: Failed to set aead key %d\n", __func__, rc); 4486 return rc; 4487 } 4488 4489 rc = crypto_aead_setauthsize(tfm, SMB2_SIGNATURE_SIZE); 4490 if (rc) { 4491 cifs_server_dbg(VFS, "%s: Failed to set authsize %d\n", __func__, rc); 4492 return rc; 4493 } 4494 4495 creq = smb2_get_aead_req(tfm, rqst, num_rqst, sign, &iv, &req, &sg); 4496 if (IS_ERR(creq)) 4497 return PTR_ERR(creq); 4498 4499 if (!enc) { 4500 memcpy(sign, &tr_hdr->Signature, SMB2_SIGNATURE_SIZE); 4501 crypt_len += SMB2_SIGNATURE_SIZE; 4502 } 4503 4504 if ((server->cipher_type == SMB2_ENCRYPTION_AES128_GCM) || 4505 (server->cipher_type == SMB2_ENCRYPTION_AES256_GCM)) 4506 memcpy(iv, (char *)tr_hdr->Nonce, SMB3_AES_GCM_NONCE); 4507 else { 4508 iv[0] = 3; 4509 memcpy(iv + 1, (char *)tr_hdr->Nonce, SMB3_AES_CCM_NONCE); 4510 } 4511 4512 aead_request_set_tfm(req, tfm); 4513 aead_request_set_crypt(req, sg, sg, crypt_len, iv); 4514 aead_request_set_ad(req, assoc_data_len); 4515 4516 aead_request_set_callback(req, CRYPTO_TFM_REQ_MAY_BACKLOG, 4517 crypto_req_done, &wait); 4518 4519 rc = crypto_wait_req(enc ? crypto_aead_encrypt(req) 4520 : crypto_aead_decrypt(req), &wait); 4521 4522 if (!rc && enc) 4523 memcpy(&tr_hdr->Signature, sign, SMB2_SIGNATURE_SIZE); 4524 4525 kfree_sensitive(creq); 4526 return rc; 4527 } 4528 4529 /* 4530 * Copy data from an iterator to the folios in a folio queue buffer. 4531 */ 4532 static bool cifs_copy_iter_to_folioq(struct iov_iter *iter, size_t size, 4533 struct folio_queue *buffer) 4534 { 4535 for (; buffer; buffer = buffer->next) { 4536 for (int s = 0; s < folioq_count(buffer); s++) { 4537 struct folio *folio = folioq_folio(buffer, s); 4538 size_t part = folioq_folio_size(buffer, s); 4539 4540 part = umin(part, size); 4541 4542 if (copy_folio_from_iter(folio, 0, part, iter) != part) 4543 return false; 4544 size -= part; 4545 } 4546 } 4547 return true; 4548 } 4549 4550 void 4551 smb3_free_compound_rqst(int num_rqst, struct smb_rqst *rqst) 4552 { 4553 for (int i = 0; i < num_rqst; i++) 4554 netfs_free_folioq_buffer(rqst[i].rq_buffer); 4555 } 4556 4557 /* 4558 * This function will initialize new_rq and encrypt the content. 4559 * The first entry, new_rq[0], only contains a single iov which contains 4560 * a smb2_transform_hdr and is pre-allocated by the caller. 4561 * This function then populates new_rq[1+] with the content from olq_rq[0+]. 4562 * 4563 * The end result is an array of smb_rqst structures where the first structure 4564 * only contains a single iov for the transform header which we then can pass 4565 * to crypt_message(). 4566 * 4567 * new_rq[0].rq_iov[0] : smb2_transform_hdr pre-allocated by the caller 4568 * new_rq[1+].rq_iov[*] == old_rq[0+].rq_iov[*] : SMB2/3 requests 4569 */ 4570 static int 4571 smb3_init_transform_rq(struct TCP_Server_Info *server, int num_rqst, 4572 struct smb_rqst *new_rq, struct smb_rqst *old_rq) 4573 { 4574 struct smb2_transform_hdr *tr_hdr = new_rq[0].rq_iov[0].iov_base; 4575 unsigned int orig_len = 0; 4576 int rc = -ENOMEM; 4577 4578 for (int i = 1; i < num_rqst; i++) { 4579 struct smb_rqst *old = &old_rq[i - 1]; 4580 struct smb_rqst *new = &new_rq[i]; 4581 struct folio_queue *buffer = NULL; 4582 size_t size = iov_iter_count(&old->rq_iter); 4583 4584 orig_len += smb_rqst_len(server, old); 4585 new->rq_iov = old->rq_iov; 4586 new->rq_nvec = old->rq_nvec; 4587 4588 if (size > 0) { 4589 size_t cur_size = 0; 4590 rc = netfs_alloc_folioq_buffer(NULL, &buffer, &cur_size, 4591 size, GFP_NOFS); 4592 if (rc < 0) 4593 goto err_free; 4594 4595 new->rq_buffer = buffer; 4596 iov_iter_folio_queue(&new->rq_iter, ITER_SOURCE, 4597 buffer, 0, 0, size); 4598 4599 if (!cifs_copy_iter_to_folioq(&old->rq_iter, size, buffer)) { 4600 rc = smb_EIO1(smb_eio_trace_tx_copy_iter_to_buf, size); 4601 goto err_free; 4602 } 4603 } 4604 } 4605 4606 /* fill the 1st iov with a transform header */ 4607 fill_transform_hdr(tr_hdr, orig_len, old_rq, server->cipher_type); 4608 4609 rc = crypt_message(server, num_rqst, new_rq, 1, server->secmech.enc); 4610 cifs_dbg(FYI, "Encrypt message returned %d\n", rc); 4611 if (rc) 4612 goto err_free; 4613 4614 return rc; 4615 4616 err_free: 4617 smb3_free_compound_rqst(num_rqst - 1, &new_rq[1]); 4618 return rc; 4619 } 4620 4621 static int 4622 smb3_is_transform_hdr(void *buf) 4623 { 4624 struct smb2_transform_hdr *trhdr = buf; 4625 4626 return trhdr->ProtocolId == SMB2_TRANSFORM_PROTO_NUM; 4627 } 4628 4629 static int 4630 decrypt_raw_data(struct TCP_Server_Info *server, char *buf, 4631 unsigned int buf_data_size, struct iov_iter *iter, 4632 bool is_offloaded) 4633 { 4634 struct crypto_aead *tfm; 4635 struct smb_rqst rqst = {NULL}; 4636 struct kvec iov[2]; 4637 size_t iter_size = 0; 4638 int rc; 4639 4640 iov[0].iov_base = buf; 4641 iov[0].iov_len = sizeof(struct smb2_transform_hdr); 4642 iov[1].iov_base = buf + sizeof(struct smb2_transform_hdr); 4643 iov[1].iov_len = buf_data_size; 4644 4645 rqst.rq_iov = iov; 4646 rqst.rq_nvec = 2; 4647 if (iter) { 4648 rqst.rq_iter = *iter; 4649 iter_size = iov_iter_count(iter); 4650 } 4651 4652 if (is_offloaded) { 4653 if ((server->cipher_type == SMB2_ENCRYPTION_AES128_GCM) || 4654 (server->cipher_type == SMB2_ENCRYPTION_AES256_GCM)) 4655 tfm = crypto_alloc_aead("gcm(aes)", 0, 0); 4656 else 4657 tfm = crypto_alloc_aead("ccm(aes)", 0, 0); 4658 if (IS_ERR(tfm)) { 4659 rc = PTR_ERR(tfm); 4660 cifs_server_dbg(VFS, "%s: Failed alloc decrypt TFM, rc=%d\n", __func__, rc); 4661 4662 return rc; 4663 } 4664 } else { 4665 rc = smb3_crypto_aead_allocate(server); 4666 if (unlikely(rc)) 4667 return rc; 4668 tfm = server->secmech.dec; 4669 } 4670 4671 rc = crypt_message(server, 1, &rqst, 0, tfm); 4672 cifs_dbg(FYI, "Decrypt message returned %d\n", rc); 4673 4674 if (is_offloaded) 4675 crypto_free_aead(tfm); 4676 4677 if (rc) 4678 return rc; 4679 4680 memmove(buf, iov[1].iov_base, buf_data_size); 4681 4682 if (!is_offloaded) 4683 server->total_read = buf_data_size + iter_size; 4684 4685 return rc; 4686 } 4687 4688 static int 4689 cifs_copy_folioq_to_iter(struct folio_queue *folioq, size_t data_size, 4690 size_t skip, struct iov_iter *iter) 4691 { 4692 for (; folioq; folioq = folioq->next) { 4693 for (int s = 0; s < folioq_count(folioq); s++) { 4694 struct folio *folio = folioq_folio(folioq, s); 4695 size_t fsize = folio_size(folio); 4696 size_t n, len = umin(fsize - skip, data_size); 4697 4698 n = copy_folio_to_iter(folio, skip, len, iter); 4699 if (n != len) { 4700 cifs_dbg(VFS, "%s: something went wrong\n", __func__); 4701 return smb_EIO2(smb_eio_trace_rx_copy_to_iter, 4702 n, len); 4703 } 4704 data_size -= n; 4705 skip = 0; 4706 } 4707 } 4708 4709 return 0; 4710 } 4711 4712 static int 4713 handle_read_data(struct TCP_Server_Info *server, struct mid_q_entry *mid, 4714 char *buf, unsigned int buf_len, struct folio_queue *buffer, 4715 unsigned int buffer_len, bool is_offloaded) 4716 { 4717 unsigned int data_offset; 4718 unsigned int data_len; 4719 unsigned int cur_off; 4720 unsigned int cur_page_idx; 4721 unsigned int pad_len; 4722 struct cifs_io_subrequest *rdata = mid->callback_data; 4723 struct smb2_hdr *shdr = (struct smb2_hdr *)buf; 4724 size_t copied; 4725 bool use_rdma_mr = false; 4726 4727 if (shdr->Command != SMB2_READ) { 4728 cifs_server_dbg(VFS, "only big read responses are supported\n"); 4729 return -EOPNOTSUPP; 4730 } 4731 4732 if (server->ops->is_session_expired && 4733 server->ops->is_session_expired(buf)) { 4734 if (!is_offloaded) 4735 cifs_reconnect(server, true); 4736 return -1; 4737 } 4738 4739 if (server->ops->is_status_pending && 4740 server->ops->is_status_pending(buf, server)) 4741 return -1; 4742 4743 /* set up first two iov to get credits */ 4744 rdata->iov[0].iov_base = buf; 4745 rdata->iov[0].iov_len = 0; 4746 rdata->iov[1].iov_base = buf; 4747 rdata->iov[1].iov_len = 4748 min_t(unsigned int, buf_len, server->vals->read_rsp_size); 4749 cifs_dbg(FYI, "0: iov_base=%p iov_len=%zu\n", 4750 rdata->iov[0].iov_base, rdata->iov[0].iov_len); 4751 cifs_dbg(FYI, "1: iov_base=%p iov_len=%zu\n", 4752 rdata->iov[1].iov_base, rdata->iov[1].iov_len); 4753 4754 rdata->result = server->ops->map_error(buf, true); 4755 if (rdata->result != 0) { 4756 cifs_dbg(FYI, "%s: server returned error %d\n", 4757 __func__, rdata->result); 4758 /* normal error on read response */ 4759 if (is_offloaded) 4760 mid->mid_state = MID_RESPONSE_RECEIVED; 4761 else 4762 dequeue_mid(server, mid, false); 4763 return 0; 4764 } 4765 4766 data_offset = server->ops->read_data_offset(buf); 4767 #ifdef CONFIG_CIFS_SMB_DIRECT 4768 use_rdma_mr = rdata->mr; 4769 #endif 4770 data_len = server->ops->read_data_length(buf, use_rdma_mr); 4771 4772 if (data_offset < server->vals->read_rsp_size) { 4773 /* 4774 * win2k8 sometimes sends an offset of 0 when the read 4775 * is beyond the EOF. Treat it as if the data starts just after 4776 * the header. 4777 */ 4778 cifs_dbg(FYI, "%s: data offset (%u) inside read response header\n", 4779 __func__, data_offset); 4780 data_offset = server->vals->read_rsp_size; 4781 } else if (data_offset > MAX_CIFS_SMALL_BUFFER_SIZE) { 4782 /* data_offset is beyond the end of smallbuf */ 4783 cifs_dbg(FYI, "%s: data offset (%u) beyond end of smallbuf\n", 4784 __func__, data_offset); 4785 rdata->result = smb_EIO1(smb_eio_trace_rx_overlong, data_offset); 4786 if (is_offloaded) 4787 mid->mid_state = MID_RESPONSE_MALFORMED; 4788 else 4789 dequeue_mid(server, mid, rdata->result); 4790 return 0; 4791 } 4792 4793 pad_len = data_offset - server->vals->read_rsp_size; 4794 4795 if (buf_len <= data_offset) { 4796 /* read response payload is in pages */ 4797 cur_page_idx = pad_len / PAGE_SIZE; 4798 cur_off = pad_len % PAGE_SIZE; 4799 4800 if (cur_page_idx != 0) { 4801 /* data offset is beyond the 1st page of response */ 4802 cifs_dbg(FYI, "%s: data offset (%u) beyond 1st page of response\n", 4803 __func__, data_offset); 4804 rdata->result = smb_EIO1(smb_eio_trace_rx_overpage, data_offset); 4805 if (is_offloaded) 4806 mid->mid_state = MID_RESPONSE_MALFORMED; 4807 else 4808 dequeue_mid(server, mid, rdata->result); 4809 return 0; 4810 } 4811 4812 if (data_len > buffer_len - pad_len) { 4813 /* data_len is corrupt -- discard frame */ 4814 rdata->result = smb_EIO1(smb_eio_trace_rx_bad_datalen, data_len); 4815 if (is_offloaded) 4816 mid->mid_state = MID_RESPONSE_MALFORMED; 4817 else 4818 dequeue_mid(server, mid, rdata->result); 4819 return 0; 4820 } 4821 4822 /* Copy the data to the output I/O iterator. */ 4823 rdata->result = cifs_copy_folioq_to_iter(buffer, buffer_len, 4824 cur_off, &rdata->subreq.io_iter); 4825 if (rdata->result != 0) { 4826 if (is_offloaded) 4827 mid->mid_state = MID_RESPONSE_MALFORMED; 4828 else 4829 dequeue_mid(server, mid, rdata->result); 4830 return 0; 4831 } 4832 rdata->got_bytes = buffer_len; 4833 4834 } else if (buf_len >= data_offset + data_len) { 4835 /* read response payload is in buf */ 4836 WARN_ONCE(buffer, "read data can be either in buf or in buffer"); 4837 copied = copy_to_iter(buf + data_offset, data_len, &rdata->subreq.io_iter); 4838 if (copied == 0) 4839 return smb_EIO2(smb_eio_trace_rx_copy_to_iter, copied, data_len); 4840 rdata->got_bytes = copied; 4841 } else { 4842 /* read response payload cannot be in both buf and pages */ 4843 WARN_ONCE(1, "buf can not contain only a part of read data"); 4844 rdata->result = smb_EIO(smb_eio_trace_rx_both_buf); 4845 if (is_offloaded) 4846 mid->mid_state = MID_RESPONSE_MALFORMED; 4847 else 4848 dequeue_mid(server, mid, rdata->result); 4849 return 0; 4850 } 4851 4852 if (is_offloaded) 4853 mid->mid_state = MID_RESPONSE_RECEIVED; 4854 else 4855 dequeue_mid(server, mid, false); 4856 return 0; 4857 } 4858 4859 struct smb2_decrypt_work { 4860 struct work_struct decrypt; 4861 struct TCP_Server_Info *server; 4862 struct folio_queue *buffer; 4863 char *buf; 4864 unsigned int len; 4865 }; 4866 4867 4868 static void smb2_decrypt_offload(struct work_struct *work) 4869 { 4870 struct smb2_decrypt_work *dw = container_of(work, 4871 struct smb2_decrypt_work, decrypt); 4872 int rc; 4873 struct mid_q_entry *mid; 4874 struct iov_iter iter; 4875 4876 iov_iter_folio_queue(&iter, ITER_DEST, dw->buffer, 0, 0, dw->len); 4877 rc = decrypt_raw_data(dw->server, dw->buf, dw->server->vals->read_rsp_size, 4878 &iter, true); 4879 if (rc) { 4880 cifs_dbg(VFS, "error decrypting rc=%d\n", rc); 4881 goto free_pages; 4882 } 4883 4884 dw->server->lstrp = jiffies; 4885 mid = smb2_find_dequeue_mid(dw->server, dw->buf); 4886 if (mid == NULL) 4887 cifs_dbg(FYI, "mid not found\n"); 4888 else { 4889 mid->decrypted = true; 4890 rc = handle_read_data(dw->server, mid, dw->buf, 4891 dw->server->vals->read_rsp_size, 4892 dw->buffer, dw->len, 4893 true); 4894 if (rc >= 0) { 4895 #ifdef CONFIG_CIFS_STATS2 4896 mid->when_received = jiffies; 4897 #endif 4898 if (dw->server->ops->is_network_name_deleted) 4899 dw->server->ops->is_network_name_deleted(dw->buf, 4900 dw->server); 4901 4902 mid_execute_callback(dw->server, mid); 4903 } else { 4904 spin_lock(&dw->server->srv_lock); 4905 if (dw->server->tcpStatus == CifsNeedReconnect) { 4906 spin_lock(&dw->server->mid_queue_lock); 4907 mid->mid_state = MID_RETRY_NEEDED; 4908 spin_unlock(&dw->server->mid_queue_lock); 4909 spin_unlock(&dw->server->srv_lock); 4910 mid_execute_callback(dw->server, mid); 4911 } else { 4912 spin_lock(&dw->server->mid_queue_lock); 4913 mid->mid_state = MID_REQUEST_SUBMITTED; 4914 mid->deleted_from_q = false; 4915 list_add_tail(&mid->qhead, 4916 &dw->server->pending_mid_q); 4917 spin_unlock(&dw->server->mid_queue_lock); 4918 spin_unlock(&dw->server->srv_lock); 4919 } 4920 } 4921 release_mid(dw->server, mid); 4922 } 4923 4924 free_pages: 4925 netfs_free_folioq_buffer(dw->buffer); 4926 cifs_small_buf_release(dw->buf); 4927 kfree(dw); 4928 } 4929 4930 4931 static int 4932 receive_encrypted_read(struct TCP_Server_Info *server, struct mid_q_entry **mid, 4933 int *num_mids) 4934 { 4935 char *buf = server->smallbuf; 4936 struct smb2_transform_hdr *tr_hdr = (struct smb2_transform_hdr *)buf; 4937 struct iov_iter iter; 4938 unsigned int len; 4939 unsigned int buflen = server->pdu_size; 4940 int rc; 4941 struct smb2_decrypt_work *dw; 4942 4943 dw = kzalloc_obj(struct smb2_decrypt_work); 4944 if (!dw) 4945 return -ENOMEM; 4946 INIT_WORK(&dw->decrypt, smb2_decrypt_offload); 4947 dw->server = server; 4948 4949 *num_mids = 1; 4950 len = min_t(unsigned int, buflen, server->vals->read_rsp_size + 4951 sizeof(struct smb2_transform_hdr)) - HEADER_SIZE(server) + 1; 4952 4953 rc = cifs_read_from_socket(server, buf + HEADER_SIZE(server) - 1, len); 4954 if (rc < 0) 4955 goto free_dw; 4956 server->total_read += rc; 4957 4958 len = le32_to_cpu(tr_hdr->OriginalMessageSize) - 4959 server->vals->read_rsp_size; 4960 dw->len = len; 4961 len = round_up(dw->len, PAGE_SIZE); 4962 4963 size_t cur_size = 0; 4964 rc = netfs_alloc_folioq_buffer(NULL, &dw->buffer, &cur_size, len, GFP_NOFS); 4965 if (rc < 0) 4966 goto discard_data; 4967 4968 iov_iter_folio_queue(&iter, ITER_DEST, dw->buffer, 0, 0, len); 4969 4970 /* Read the data into the buffer and clear excess bufferage. */ 4971 rc = cifs_read_iter_from_socket(server, &iter, dw->len); 4972 if (rc < 0) 4973 goto discard_data; 4974 4975 server->total_read += rc; 4976 if (rc < len) { 4977 struct iov_iter tmp = iter; 4978 4979 iov_iter_advance(&tmp, rc); 4980 iov_iter_zero(len - rc, &tmp); 4981 } 4982 iov_iter_truncate(&iter, dw->len); 4983 4984 rc = cifs_discard_remaining_data(server); 4985 if (rc) 4986 goto free_pages; 4987 4988 /* 4989 * For large reads, offload to different thread for better performance, 4990 * use more cores decrypting which can be expensive 4991 */ 4992 4993 if ((server->min_offload) && (server->in_flight > 1) && 4994 (server->pdu_size >= server->min_offload)) { 4995 dw->buf = server->smallbuf; 4996 server->smallbuf = (char *)cifs_small_buf_get(); 4997 4998 queue_work(decrypt_wq, &dw->decrypt); 4999 *num_mids = 0; /* worker thread takes care of finding mid */ 5000 return -1; 5001 } 5002 5003 rc = decrypt_raw_data(server, buf, server->vals->read_rsp_size, 5004 &iter, false); 5005 if (rc) 5006 goto free_pages; 5007 5008 *mid = smb2_find_mid(server, buf); 5009 if (*mid == NULL) { 5010 cifs_dbg(FYI, "mid not found\n"); 5011 } else { 5012 cifs_dbg(FYI, "mid found\n"); 5013 (*mid)->decrypted = true; 5014 rc = handle_read_data(server, *mid, buf, 5015 server->vals->read_rsp_size, 5016 dw->buffer, dw->len, false); 5017 if (rc >= 0) { 5018 if (server->ops->is_network_name_deleted) { 5019 server->ops->is_network_name_deleted(buf, 5020 server); 5021 } 5022 } 5023 } 5024 5025 free_pages: 5026 netfs_free_folioq_buffer(dw->buffer); 5027 free_dw: 5028 kfree(dw); 5029 return rc; 5030 discard_data: 5031 cifs_discard_remaining_data(server); 5032 goto free_pages; 5033 } 5034 5035 static int 5036 receive_encrypted_standard(struct TCP_Server_Info *server, 5037 struct mid_q_entry **mids, char **bufs, 5038 int *num_mids) 5039 { 5040 int ret, length; 5041 char *buf = server->smallbuf; 5042 struct smb2_hdr *shdr; 5043 unsigned int pdu_length = server->pdu_size; 5044 unsigned int buf_size; 5045 unsigned int next_cmd; 5046 struct mid_q_entry *mid_entry; 5047 int next_is_large; 5048 char *next_buffer = NULL; 5049 5050 *num_mids = 0; 5051 5052 /* switch to large buffer if too big for a small one */ 5053 if (pdu_length > MAX_CIFS_SMALL_BUFFER_SIZE) { 5054 server->large_buf = true; 5055 memcpy(server->bigbuf, buf, server->total_read); 5056 buf = server->bigbuf; 5057 } 5058 5059 /* now read the rest */ 5060 length = cifs_read_from_socket(server, buf + HEADER_SIZE(server) - 1, 5061 pdu_length - HEADER_SIZE(server) + 1); 5062 if (length < 0) 5063 return length; 5064 server->total_read += length; 5065 5066 buf_size = pdu_length - sizeof(struct smb2_transform_hdr); 5067 length = decrypt_raw_data(server, buf, buf_size, NULL, false); 5068 if (length) 5069 return length; 5070 5071 next_is_large = server->large_buf; 5072 one_more: 5073 shdr = (struct smb2_hdr *)buf; 5074 next_cmd = le32_to_cpu(shdr->NextCommand); 5075 if (next_cmd) { 5076 if (WARN_ON_ONCE(next_cmd > pdu_length)) 5077 return -1; 5078 if (next_is_large) 5079 next_buffer = (char *)cifs_buf_get(); 5080 else 5081 next_buffer = (char *)cifs_small_buf_get(); 5082 if (!next_buffer) { 5083 cifs_server_dbg(VFS, "No memory for (large) SMB response\n"); 5084 return -1; 5085 } 5086 memcpy(next_buffer, buf + next_cmd, pdu_length - next_cmd); 5087 } 5088 5089 mid_entry = smb2_find_mid(server, buf); 5090 if (mid_entry == NULL) 5091 cifs_dbg(FYI, "mid not found\n"); 5092 else { 5093 cifs_dbg(FYI, "mid found\n"); 5094 mid_entry->decrypted = true; 5095 mid_entry->resp_buf_size = server->pdu_size; 5096 } 5097 5098 if (*num_mids >= MAX_COMPOUND) { 5099 cifs_server_dbg(VFS, "too many PDUs in compound\n"); 5100 return -1; 5101 } 5102 bufs[*num_mids] = buf; 5103 mids[(*num_mids)++] = mid_entry; 5104 5105 if (mid_entry && mid_entry->handle) 5106 ret = mid_entry->handle(server, mid_entry); 5107 else 5108 ret = cifs_handle_standard(server, mid_entry); 5109 5110 if (ret == 0 && next_cmd) { 5111 pdu_length -= next_cmd; 5112 server->large_buf = next_is_large; 5113 if (next_is_large) 5114 server->bigbuf = buf = next_buffer; 5115 else 5116 server->smallbuf = buf = next_buffer; 5117 goto one_more; 5118 } else if (ret != 0) { 5119 /* 5120 * ret != 0 here means that we didn't get to handle_mid() thus 5121 * server->smallbuf and server->bigbuf are still valid. We need 5122 * to free next_buffer because it is not going to be used 5123 * anywhere. 5124 */ 5125 if (next_is_large) 5126 free_rsp_buf(CIFS_LARGE_BUFFER, next_buffer); 5127 else 5128 free_rsp_buf(CIFS_SMALL_BUFFER, next_buffer); 5129 } 5130 5131 return ret; 5132 } 5133 5134 static int 5135 smb3_receive_transform(struct TCP_Server_Info *server, 5136 struct mid_q_entry **mids, char **bufs, int *num_mids) 5137 { 5138 char *buf = server->smallbuf; 5139 unsigned int pdu_length = server->pdu_size; 5140 struct smb2_transform_hdr *tr_hdr = (struct smb2_transform_hdr *)buf; 5141 unsigned int orig_len = le32_to_cpu(tr_hdr->OriginalMessageSize); 5142 5143 if (pdu_length < sizeof(struct smb2_transform_hdr) + 5144 sizeof(struct smb2_hdr)) { 5145 cifs_server_dbg(VFS, "Transform message is too small (%u)\n", 5146 pdu_length); 5147 cifs_reconnect(server, true); 5148 return -ECONNABORTED; 5149 } 5150 5151 if (pdu_length < orig_len + sizeof(struct smb2_transform_hdr)) { 5152 cifs_server_dbg(VFS, "Transform message is broken\n"); 5153 cifs_reconnect(server, true); 5154 return -ECONNABORTED; 5155 } 5156 5157 /* TODO: add support for compounds containing READ. */ 5158 if (pdu_length > CIFSMaxBufSize + MAX_HEADER_SIZE(server)) { 5159 return receive_encrypted_read(server, &mids[0], num_mids); 5160 } 5161 5162 return receive_encrypted_standard(server, mids, bufs, num_mids); 5163 } 5164 5165 int 5166 smb3_handle_read_data(struct TCP_Server_Info *server, struct mid_q_entry *mid) 5167 { 5168 char *buf = server->large_buf ? server->bigbuf : server->smallbuf; 5169 5170 return handle_read_data(server, mid, buf, server->pdu_size, 5171 NULL, 0, false); 5172 } 5173 5174 static int smb2_next_header(struct TCP_Server_Info *server, char *buf, 5175 unsigned int *noff) 5176 { 5177 struct smb2_hdr *hdr = (struct smb2_hdr *)buf; 5178 struct smb2_transform_hdr *t_hdr = (struct smb2_transform_hdr *)buf; 5179 5180 if (hdr->ProtocolId == SMB2_TRANSFORM_PROTO_NUM) { 5181 *noff = le32_to_cpu(t_hdr->OriginalMessageSize); 5182 if (unlikely(check_add_overflow(*noff, sizeof(*t_hdr), noff))) 5183 return -EINVAL; 5184 } else { 5185 *noff = le32_to_cpu(hdr->NextCommand); 5186 } 5187 if (unlikely(*noff && *noff < MID_HEADER_SIZE(server))) 5188 return -EINVAL; 5189 return 0; 5190 } 5191 5192 int __cifs_sfu_make_node(unsigned int xid, struct inode *inode, 5193 struct dentry *dentry, struct cifs_tcon *tcon, 5194 const char *full_path, umode_t mode, dev_t dev, 5195 const char *symname) 5196 { 5197 struct TCP_Server_Info *server = tcon->ses->server; 5198 struct cifs_open_parms oparms; 5199 struct cifs_open_info_data idata; 5200 struct cifs_io_parms io_parms = {}; 5201 struct cifs_sb_info *cifs_sb = CIFS_SB(inode->i_sb); 5202 struct cifs_fid fid; 5203 unsigned int bytes_written; 5204 u8 type[8]; 5205 int type_len = 0; 5206 struct { 5207 __le64 major; 5208 __le64 minor; 5209 } __packed pdev = {}; 5210 __le16 *symname_utf16 = NULL; 5211 u8 *data = NULL; 5212 int data_len = 0; 5213 struct kvec iov[3]; 5214 __u32 oplock = server->oplocks ? REQ_OPLOCK : 0; 5215 int rc; 5216 5217 switch (mode & S_IFMT) { 5218 case S_IFCHR: 5219 type_len = 8; 5220 memcpy(type, "IntxCHR\0", type_len); 5221 pdev.major = cpu_to_le64(MAJOR(dev)); 5222 pdev.minor = cpu_to_le64(MINOR(dev)); 5223 data = (u8 *)&pdev; 5224 data_len = sizeof(pdev); 5225 break; 5226 case S_IFBLK: 5227 type_len = 8; 5228 memcpy(type, "IntxBLK\0", type_len); 5229 pdev.major = cpu_to_le64(MAJOR(dev)); 5230 pdev.minor = cpu_to_le64(MINOR(dev)); 5231 data = (u8 *)&pdev; 5232 data_len = sizeof(pdev); 5233 break; 5234 case S_IFLNK: 5235 type_len = 8; 5236 memcpy(type, "IntxLNK\1", type_len); 5237 symname_utf16 = cifs_strndup_to_utf16(symname, strlen(symname), 5238 &data_len, cifs_sb->local_nls, 5239 NO_MAP_UNI_RSVD); 5240 if (!symname_utf16) { 5241 rc = -ENOMEM; 5242 goto out; 5243 } 5244 data_len -= 2; /* symlink is without trailing wide-nul */ 5245 data = (u8 *)symname_utf16; 5246 break; 5247 case S_IFSOCK: 5248 type_len = 8; 5249 strscpy(type, "LnxSOCK"); 5250 data = (u8 *)&pdev; 5251 data_len = sizeof(pdev); 5252 break; 5253 case S_IFIFO: 5254 type_len = 8; 5255 strscpy(type, "LnxFIFO"); 5256 data = (u8 *)&pdev; 5257 data_len = sizeof(pdev); 5258 break; 5259 default: 5260 rc = -EPERM; 5261 goto out; 5262 } 5263 5264 oparms = CIFS_OPARMS(cifs_sb, tcon, full_path, GENERIC_WRITE, 5265 FILE_CREATE, CREATE_NOT_DIR | 5266 CREATE_OPTION_SPECIAL, ACL_NO_MODE); 5267 oparms.fid = &fid; 5268 idata.contains_posix_file_info = false; 5269 rc = server->ops->open(xid, &oparms, &oplock, &idata); 5270 if (rc) 5271 goto out; 5272 5273 /* 5274 * Check if the server honored ATTR_SYSTEM flag by CREATE_OPTION_SPECIAL 5275 * option. If not then server does not support ATTR_SYSTEM and newly 5276 * created file is not SFU compatible, which means that the call failed. 5277 */ 5278 if (!(le32_to_cpu(idata.fi.Attributes) & ATTR_SYSTEM)) { 5279 rc = -EOPNOTSUPP; 5280 goto out_close; 5281 } 5282 5283 if (type_len + data_len > 0) { 5284 io_parms.pid = current->tgid; 5285 io_parms.tcon = tcon; 5286 io_parms.length = type_len + data_len; 5287 iov[1].iov_base = type; 5288 iov[1].iov_len = type_len; 5289 iov[2].iov_base = data; 5290 iov[2].iov_len = data_len; 5291 5292 rc = server->ops->sync_write(xid, &fid, &io_parms, 5293 &bytes_written, 5294 iov, ARRAY_SIZE(iov)-1); 5295 } 5296 5297 out_close: 5298 server->ops->close(xid, tcon, &fid); 5299 5300 /* 5301 * If CREATE was successful but either setting ATTR_SYSTEM failed or 5302 * writing type/data information failed then remove the intermediate 5303 * object created by CREATE. Otherwise intermediate empty object stay 5304 * on the server. 5305 */ 5306 if (rc) 5307 server->ops->unlink(xid, tcon, full_path, cifs_sb, NULL); 5308 5309 out: 5310 kfree(symname_utf16); 5311 return rc; 5312 } 5313 5314 int cifs_sfu_make_node(unsigned int xid, struct inode *inode, 5315 struct dentry *dentry, struct cifs_tcon *tcon, 5316 const char *full_path, umode_t mode, dev_t dev) 5317 { 5318 struct inode *new = NULL; 5319 int rc; 5320 5321 rc = __cifs_sfu_make_node(xid, inode, dentry, tcon, 5322 full_path, mode, dev, NULL); 5323 if (rc) 5324 return rc; 5325 5326 if (tcon->posix_extensions) { 5327 rc = smb311_posix_get_inode_info(&new, full_path, NULL, 5328 inode->i_sb, xid); 5329 } else if (tcon->unix_ext) { 5330 rc = cifs_get_inode_info_unix(&new, full_path, 5331 inode->i_sb, xid); 5332 } else { 5333 rc = cifs_get_inode_info(&new, full_path, NULL, 5334 inode->i_sb, xid, NULL); 5335 } 5336 if (!rc) 5337 d_instantiate(dentry, new); 5338 return rc; 5339 } 5340 5341 static int smb2_make_node(unsigned int xid, struct inode *inode, 5342 struct dentry *dentry, struct cifs_tcon *tcon, 5343 const char *full_path, umode_t mode, dev_t dev) 5344 { 5345 unsigned int sbflags = cifs_sb_flags(CIFS_SB(inode)); 5346 int rc = -EOPNOTSUPP; 5347 5348 /* 5349 * Check if mounted with mount parm 'sfu' mount parm. 5350 * SFU emulation should work with all servers, but only 5351 * supports block and char device, socket & fifo, 5352 * and was used by default in earlier versions of Windows 5353 */ 5354 if (sbflags & CIFS_MOUNT_UNX_EMUL) { 5355 rc = cifs_sfu_make_node(xid, inode, dentry, tcon, 5356 full_path, mode, dev); 5357 } else if (CIFS_REPARSE_SUPPORT(tcon)) { 5358 rc = mknod_reparse(xid, inode, dentry, tcon, 5359 full_path, mode, dev); 5360 } 5361 return rc; 5362 } 5363 5364 #ifdef CONFIG_CIFS_ALLOW_INSECURE_LEGACY 5365 struct smb_version_operations smb20_operations = { 5366 .compare_fids = smb2_compare_fids, 5367 .setup_request = smb2_setup_request, 5368 .setup_async_request = smb2_setup_async_request, 5369 .check_receive = smb2_check_receive, 5370 .add_credits = smb2_add_credits, 5371 .set_credits = smb2_set_credits, 5372 .get_credits_field = smb2_get_credits_field, 5373 .get_credits = smb2_get_credits, 5374 .wait_mtu_credits = cifs_wait_mtu_credits, 5375 .get_next_mid = smb2_get_next_mid, 5376 .revert_current_mid = smb2_revert_current_mid, 5377 .read_data_offset = smb2_read_data_offset, 5378 .read_data_length = smb2_read_data_length, 5379 .map_error = map_smb2_to_linux_error, 5380 .find_mid = smb2_find_mid, 5381 .check_message = smb2_check_message, 5382 .dump_detail = smb2_dump_detail, 5383 .clear_stats = smb2_clear_stats, 5384 .print_stats = smb2_print_stats, 5385 .is_oplock_break = smb2_is_valid_oplock_break, 5386 .handle_cancelled_mid = smb2_handle_cancelled_mid, 5387 .downgrade_oplock = smb2_downgrade_oplock, 5388 .need_neg = smb2_need_neg, 5389 .negotiate = smb2_negotiate, 5390 .negotiate_wsize = smb2_negotiate_wsize, 5391 .negotiate_rsize = smb2_negotiate_rsize, 5392 .sess_setup = SMB2_sess_setup, 5393 .logoff = SMB2_logoff, 5394 .tree_connect = SMB2_tcon, 5395 .tree_disconnect = SMB2_tdis, 5396 .qfs_tcon = smb2_qfs_tcon, 5397 .is_path_accessible = smb2_is_path_accessible, 5398 .can_echo = smb2_can_echo, 5399 .echo = SMB2_echo, 5400 .query_path_info = smb2_query_path_info, 5401 .query_reparse_point = smb2_query_reparse_point, 5402 .get_srv_inum = smb2_get_srv_inum, 5403 .query_file_info = smb2_query_file_info, 5404 .set_path_size = smb2_set_path_size, 5405 .set_file_size = smb2_set_file_size, 5406 .set_file_info = smb2_set_file_info, 5407 .set_compression = smb2_set_compression, 5408 .mkdir = smb2_mkdir, 5409 .mkdir_setinfo = smb2_mkdir_setinfo, 5410 .rmdir = smb2_rmdir, 5411 .unlink = smb2_unlink, 5412 .rename = smb2_rename_path, 5413 .create_hardlink = smb2_create_hardlink, 5414 .get_reparse_point_buffer = smb2_get_reparse_point_buffer, 5415 .query_mf_symlink = smb3_query_mf_symlink, 5416 .create_mf_symlink = smb3_create_mf_symlink, 5417 .create_reparse_inode = smb2_create_reparse_inode, 5418 .open = smb2_open_file, 5419 .set_fid = smb2_set_fid, 5420 .close = smb2_close_file, 5421 .flush = smb2_flush_file, 5422 .async_readv = smb2_async_readv, 5423 .async_writev = smb2_async_writev, 5424 .sync_read = smb2_sync_read, 5425 .sync_write = smb2_sync_write, 5426 .query_dir_first = smb2_query_dir_first, 5427 .query_dir_next = smb2_query_dir_next, 5428 .close_dir = smb2_close_dir, 5429 .calc_smb_size = smb2_calc_size, 5430 .is_status_pending = smb2_is_status_pending, 5431 .is_session_expired = smb2_is_session_expired, 5432 .oplock_response = smb2_oplock_response, 5433 .queryfs = smb2_queryfs, 5434 .mand_lock = smb2_mand_lock, 5435 .mand_unlock_range = smb2_unlock_range, 5436 .push_mand_locks = smb2_push_mandatory_locks, 5437 .get_lease_key = smb2_get_lease_key, 5438 .set_lease_key = smb2_set_lease_key, 5439 .new_lease_key = smb2_new_lease_key, 5440 .is_read_op = smb2_is_read_op, 5441 .set_oplock_level = smb2_set_oplock_level, 5442 .create_lease_buf = smb2_create_lease_buf, 5443 .parse_lease_buf = smb2_parse_lease_buf, 5444 .copychunk_range = smb2_copychunk_range, 5445 .wp_retry_size = smb2_wp_retry_size, 5446 .dir_needs_close = smb2_dir_needs_close, 5447 .get_dfs_refer = smb2_get_dfs_refer, 5448 .select_sectype = smb2_select_sectype, 5449 #ifdef CONFIG_CIFS_XATTR 5450 .query_all_EAs = smb2_query_eas, 5451 .set_EA = smb2_set_ea, 5452 #endif /* CIFS_XATTR */ 5453 .get_acl = get_smb2_acl, 5454 .get_acl_by_fid = get_smb2_acl_by_fid, 5455 .set_acl = set_smb2_acl, 5456 .next_header = smb2_next_header, 5457 .ioctl_query_info = smb2_ioctl_query_info, 5458 .make_node = smb2_make_node, 5459 .fiemap = smb3_fiemap, 5460 .llseek = smb3_llseek, 5461 .is_status_io_timeout = smb2_is_status_io_timeout, 5462 .is_network_name_deleted = smb2_is_network_name_deleted, 5463 .rename_pending_delete = smb2_rename_pending_delete, 5464 }; 5465 #endif /* CIFS_ALLOW_INSECURE_LEGACY */ 5466 5467 struct smb_version_operations smb21_operations = { 5468 .compare_fids = smb2_compare_fids, 5469 .setup_request = smb2_setup_request, 5470 .setup_async_request = smb2_setup_async_request, 5471 .check_receive = smb2_check_receive, 5472 .add_credits = smb2_add_credits, 5473 .set_credits = smb2_set_credits, 5474 .get_credits_field = smb2_get_credits_field, 5475 .get_credits = smb2_get_credits, 5476 .wait_mtu_credits = smb2_wait_mtu_credits, 5477 .adjust_credits = smb2_adjust_credits, 5478 .get_next_mid = smb2_get_next_mid, 5479 .revert_current_mid = smb2_revert_current_mid, 5480 .read_data_offset = smb2_read_data_offset, 5481 .read_data_length = smb2_read_data_length, 5482 .map_error = map_smb2_to_linux_error, 5483 .find_mid = smb2_find_mid, 5484 .check_message = smb2_check_message, 5485 .dump_detail = smb2_dump_detail, 5486 .clear_stats = smb2_clear_stats, 5487 .print_stats = smb2_print_stats, 5488 .is_oplock_break = smb2_is_valid_oplock_break, 5489 .handle_cancelled_mid = smb2_handle_cancelled_mid, 5490 .downgrade_oplock = smb2_downgrade_oplock, 5491 .need_neg = smb2_need_neg, 5492 .negotiate = smb2_negotiate, 5493 .negotiate_wsize = smb2_negotiate_wsize, 5494 .negotiate_rsize = smb2_negotiate_rsize, 5495 .sess_setup = SMB2_sess_setup, 5496 .logoff = SMB2_logoff, 5497 .tree_connect = SMB2_tcon, 5498 .tree_disconnect = SMB2_tdis, 5499 .qfs_tcon = smb2_qfs_tcon, 5500 .is_path_accessible = smb2_is_path_accessible, 5501 .can_echo = smb2_can_echo, 5502 .echo = SMB2_echo, 5503 .query_path_info = smb2_query_path_info, 5504 .query_reparse_point = smb2_query_reparse_point, 5505 .get_srv_inum = smb2_get_srv_inum, 5506 .query_file_info = smb2_query_file_info, 5507 .set_path_size = smb2_set_path_size, 5508 .set_file_size = smb2_set_file_size, 5509 .set_file_info = smb2_set_file_info, 5510 .set_compression = smb2_set_compression, 5511 .mkdir = smb2_mkdir, 5512 .mkdir_setinfo = smb2_mkdir_setinfo, 5513 .rmdir = smb2_rmdir, 5514 .unlink = smb2_unlink, 5515 .rename = smb2_rename_path, 5516 .create_hardlink = smb2_create_hardlink, 5517 .get_reparse_point_buffer = smb2_get_reparse_point_buffer, 5518 .query_mf_symlink = smb3_query_mf_symlink, 5519 .create_mf_symlink = smb3_create_mf_symlink, 5520 .create_reparse_inode = smb2_create_reparse_inode, 5521 .open = smb2_open_file, 5522 .set_fid = smb2_set_fid, 5523 .close = smb2_close_file, 5524 .flush = smb2_flush_file, 5525 .async_readv = smb2_async_readv, 5526 .async_writev = smb2_async_writev, 5527 .sync_read = smb2_sync_read, 5528 .sync_write = smb2_sync_write, 5529 .query_dir_first = smb2_query_dir_first, 5530 .query_dir_next = smb2_query_dir_next, 5531 .close_dir = smb2_close_dir, 5532 .calc_smb_size = smb2_calc_size, 5533 .is_status_pending = smb2_is_status_pending, 5534 .is_session_expired = smb2_is_session_expired, 5535 .oplock_response = smb2_oplock_response, 5536 .queryfs = smb2_queryfs, 5537 .mand_lock = smb2_mand_lock, 5538 .mand_unlock_range = smb2_unlock_range, 5539 .push_mand_locks = smb2_push_mandatory_locks, 5540 .get_lease_key = smb2_get_lease_key, 5541 .set_lease_key = smb2_set_lease_key, 5542 .new_lease_key = smb2_new_lease_key, 5543 .is_read_op = smb21_is_read_op, 5544 .set_oplock_level = smb21_set_oplock_level, 5545 .create_lease_buf = smb2_create_lease_buf, 5546 .parse_lease_buf = smb2_parse_lease_buf, 5547 .copychunk_range = smb2_copychunk_range, 5548 .wp_retry_size = smb2_wp_retry_size, 5549 .dir_needs_close = smb2_dir_needs_close, 5550 .enum_snapshots = smb3_enum_snapshots, 5551 .notify = smb3_notify, 5552 .get_dfs_refer = smb2_get_dfs_refer, 5553 .select_sectype = smb2_select_sectype, 5554 #ifdef CONFIG_CIFS_XATTR 5555 .query_all_EAs = smb2_query_eas, 5556 .set_EA = smb2_set_ea, 5557 #endif /* CIFS_XATTR */ 5558 .get_acl = get_smb2_acl, 5559 .get_acl_by_fid = get_smb2_acl_by_fid, 5560 .set_acl = set_smb2_acl, 5561 .next_header = smb2_next_header, 5562 .ioctl_query_info = smb2_ioctl_query_info, 5563 .make_node = smb2_make_node, 5564 .fiemap = smb3_fiemap, 5565 .llseek = smb3_llseek, 5566 .is_status_io_timeout = smb2_is_status_io_timeout, 5567 .is_network_name_deleted = smb2_is_network_name_deleted, 5568 .rename_pending_delete = smb2_rename_pending_delete, 5569 }; 5570 5571 struct smb_version_operations smb30_operations = { 5572 .compare_fids = smb2_compare_fids, 5573 .setup_request = smb2_setup_request, 5574 .setup_async_request = smb2_setup_async_request, 5575 .check_receive = smb2_check_receive, 5576 .add_credits = smb2_add_credits, 5577 .set_credits = smb2_set_credits, 5578 .get_credits_field = smb2_get_credits_field, 5579 .get_credits = smb2_get_credits, 5580 .wait_mtu_credits = smb2_wait_mtu_credits, 5581 .adjust_credits = smb2_adjust_credits, 5582 .get_next_mid = smb2_get_next_mid, 5583 .revert_current_mid = smb2_revert_current_mid, 5584 .read_data_offset = smb2_read_data_offset, 5585 .read_data_length = smb2_read_data_length, 5586 .map_error = map_smb2_to_linux_error, 5587 .find_mid = smb2_find_mid, 5588 .check_message = smb2_check_message, 5589 .dump_detail = smb2_dump_detail, 5590 .clear_stats = smb2_clear_stats, 5591 .print_stats = smb2_print_stats, 5592 .dump_share_caps = smb2_dump_share_caps, 5593 .is_oplock_break = smb2_is_valid_oplock_break, 5594 .handle_cancelled_mid = smb2_handle_cancelled_mid, 5595 .downgrade_oplock = smb3_downgrade_oplock, 5596 .need_neg = smb2_need_neg, 5597 .negotiate = smb2_negotiate, 5598 .negotiate_wsize = smb3_negotiate_wsize, 5599 .negotiate_rsize = smb3_negotiate_rsize, 5600 .sess_setup = SMB2_sess_setup, 5601 .logoff = SMB2_logoff, 5602 .tree_connect = SMB2_tcon, 5603 .tree_disconnect = SMB2_tdis, 5604 .qfs_tcon = smb3_qfs_tcon, 5605 .query_server_interfaces = SMB3_request_interfaces, 5606 .is_path_accessible = smb2_is_path_accessible, 5607 .can_echo = smb2_can_echo, 5608 .echo = SMB2_echo, 5609 .query_path_info = smb2_query_path_info, 5610 /* WSL tags introduced long after smb2.1, enable for SMB3, 3.11 only */ 5611 .query_reparse_point = smb2_query_reparse_point, 5612 .get_srv_inum = smb2_get_srv_inum, 5613 .query_file_info = smb2_query_file_info, 5614 .set_path_size = smb2_set_path_size, 5615 .set_file_size = smb2_set_file_size, 5616 .set_file_info = smb2_set_file_info, 5617 .set_compression = smb2_set_compression, 5618 .mkdir = smb2_mkdir, 5619 .mkdir_setinfo = smb2_mkdir_setinfo, 5620 .rmdir = smb2_rmdir, 5621 .unlink = smb2_unlink, 5622 .rename = smb2_rename_path, 5623 .create_hardlink = smb2_create_hardlink, 5624 .get_reparse_point_buffer = smb2_get_reparse_point_buffer, 5625 .query_mf_symlink = smb3_query_mf_symlink, 5626 .create_mf_symlink = smb3_create_mf_symlink, 5627 .create_reparse_inode = smb2_create_reparse_inode, 5628 .open = smb2_open_file, 5629 .set_fid = smb2_set_fid, 5630 .close = smb2_close_file, 5631 .close_getattr = smb2_close_getattr, 5632 .flush = smb2_flush_file, 5633 .async_readv = smb2_async_readv, 5634 .async_writev = smb2_async_writev, 5635 .sync_read = smb2_sync_read, 5636 .sync_write = smb2_sync_write, 5637 .query_dir_first = smb2_query_dir_first, 5638 .query_dir_next = smb2_query_dir_next, 5639 .close_dir = smb2_close_dir, 5640 .calc_smb_size = smb2_calc_size, 5641 .is_status_pending = smb2_is_status_pending, 5642 .is_session_expired = smb2_is_session_expired, 5643 .oplock_response = smb2_oplock_response, 5644 .queryfs = smb2_queryfs, 5645 .mand_lock = smb2_mand_lock, 5646 .mand_unlock_range = smb2_unlock_range, 5647 .push_mand_locks = smb2_push_mandatory_locks, 5648 .get_lease_key = smb2_get_lease_key, 5649 .set_lease_key = smb2_set_lease_key, 5650 .new_lease_key = smb2_new_lease_key, 5651 .generate_signingkey = generate_smb30signingkey, 5652 .set_integrity = smb3_set_integrity, 5653 .is_read_op = smb21_is_read_op, 5654 .set_oplock_level = smb3_set_oplock_level, 5655 .create_lease_buf = smb3_create_lease_buf, 5656 .parse_lease_buf = smb3_parse_lease_buf, 5657 .copychunk_range = smb2_copychunk_range, 5658 .duplicate_extents = smb2_duplicate_extents, 5659 .validate_negotiate = smb3_validate_negotiate, 5660 .wp_retry_size = smb2_wp_retry_size, 5661 .dir_needs_close = smb2_dir_needs_close, 5662 .fallocate = smb3_fallocate, 5663 .enum_snapshots = smb3_enum_snapshots, 5664 .notify = smb3_notify, 5665 .init_transform_rq = smb3_init_transform_rq, 5666 .is_transform_hdr = smb3_is_transform_hdr, 5667 .receive_transform = smb3_receive_transform, 5668 .get_dfs_refer = smb2_get_dfs_refer, 5669 .select_sectype = smb2_select_sectype, 5670 #ifdef CONFIG_CIFS_XATTR 5671 .query_all_EAs = smb2_query_eas, 5672 .set_EA = smb2_set_ea, 5673 #endif /* CIFS_XATTR */ 5674 .get_acl = get_smb2_acl, 5675 .get_acl_by_fid = get_smb2_acl_by_fid, 5676 .set_acl = set_smb2_acl, 5677 .next_header = smb2_next_header, 5678 .ioctl_query_info = smb2_ioctl_query_info, 5679 .make_node = smb2_make_node, 5680 .fiemap = smb3_fiemap, 5681 .llseek = smb3_llseek, 5682 .is_status_io_timeout = smb2_is_status_io_timeout, 5683 .is_network_name_deleted = smb2_is_network_name_deleted, 5684 .rename_pending_delete = smb2_rename_pending_delete, 5685 }; 5686 5687 struct smb_version_operations smb311_operations = { 5688 .compare_fids = smb2_compare_fids, 5689 .setup_request = smb2_setup_request, 5690 .setup_async_request = smb2_setup_async_request, 5691 .check_receive = smb2_check_receive, 5692 .add_credits = smb2_add_credits, 5693 .set_credits = smb2_set_credits, 5694 .get_credits_field = smb2_get_credits_field, 5695 .get_credits = smb2_get_credits, 5696 .wait_mtu_credits = smb2_wait_mtu_credits, 5697 .adjust_credits = smb2_adjust_credits, 5698 .get_next_mid = smb2_get_next_mid, 5699 .revert_current_mid = smb2_revert_current_mid, 5700 .read_data_offset = smb2_read_data_offset, 5701 .read_data_length = smb2_read_data_length, 5702 .map_error = map_smb2_to_linux_error, 5703 .find_mid = smb2_find_mid, 5704 .check_message = smb2_check_message, 5705 .dump_detail = smb2_dump_detail, 5706 .clear_stats = smb2_clear_stats, 5707 .print_stats = smb2_print_stats, 5708 .dump_share_caps = smb2_dump_share_caps, 5709 .is_oplock_break = smb2_is_valid_oplock_break, 5710 .handle_cancelled_mid = smb2_handle_cancelled_mid, 5711 .downgrade_oplock = smb3_downgrade_oplock, 5712 .need_neg = smb2_need_neg, 5713 .negotiate = smb2_negotiate, 5714 .negotiate_wsize = smb3_negotiate_wsize, 5715 .negotiate_rsize = smb3_negotiate_rsize, 5716 .sess_setup = SMB2_sess_setup, 5717 .logoff = SMB2_logoff, 5718 .tree_connect = SMB2_tcon, 5719 .tree_disconnect = SMB2_tdis, 5720 .qfs_tcon = smb3_qfs_tcon, 5721 .query_server_interfaces = SMB3_request_interfaces, 5722 .is_path_accessible = smb2_is_path_accessible, 5723 .can_echo = smb2_can_echo, 5724 .echo = SMB2_echo, 5725 .query_path_info = smb2_query_path_info, 5726 .query_reparse_point = smb2_query_reparse_point, 5727 .get_srv_inum = smb2_get_srv_inum, 5728 .query_file_info = smb2_query_file_info, 5729 .set_path_size = smb2_set_path_size, 5730 .set_file_size = smb2_set_file_size, 5731 .set_file_info = smb2_set_file_info, 5732 .set_compression = smb2_set_compression, 5733 .mkdir = smb2_mkdir, 5734 .mkdir_setinfo = smb2_mkdir_setinfo, 5735 .posix_mkdir = smb311_posix_mkdir, 5736 .rmdir = smb2_rmdir, 5737 .unlink = smb2_unlink, 5738 .rename = smb2_rename_path, 5739 .create_hardlink = smb2_create_hardlink, 5740 .get_reparse_point_buffer = smb2_get_reparse_point_buffer, 5741 .query_mf_symlink = smb3_query_mf_symlink, 5742 .create_mf_symlink = smb3_create_mf_symlink, 5743 .create_reparse_inode = smb2_create_reparse_inode, 5744 .open = smb2_open_file, 5745 .set_fid = smb2_set_fid, 5746 .close = smb2_close_file, 5747 .close_getattr = smb2_close_getattr, 5748 .flush = smb2_flush_file, 5749 .async_readv = smb2_async_readv, 5750 .async_writev = smb2_async_writev, 5751 .sync_read = smb2_sync_read, 5752 .sync_write = smb2_sync_write, 5753 .query_dir_first = smb2_query_dir_first, 5754 .query_dir_next = smb2_query_dir_next, 5755 .close_dir = smb2_close_dir, 5756 .calc_smb_size = smb2_calc_size, 5757 .is_status_pending = smb2_is_status_pending, 5758 .is_session_expired = smb2_is_session_expired, 5759 .oplock_response = smb2_oplock_response, 5760 .queryfs = smb311_queryfs, 5761 .mand_lock = smb2_mand_lock, 5762 .mand_unlock_range = smb2_unlock_range, 5763 .push_mand_locks = smb2_push_mandatory_locks, 5764 .get_lease_key = smb2_get_lease_key, 5765 .set_lease_key = smb2_set_lease_key, 5766 .new_lease_key = smb2_new_lease_key, 5767 .generate_signingkey = generate_smb311signingkey, 5768 .set_integrity = smb3_set_integrity, 5769 .is_read_op = smb21_is_read_op, 5770 .set_oplock_level = smb3_set_oplock_level, 5771 .create_lease_buf = smb3_create_lease_buf, 5772 .parse_lease_buf = smb3_parse_lease_buf, 5773 .copychunk_range = smb2_copychunk_range, 5774 .duplicate_extents = smb2_duplicate_extents, 5775 /* .validate_negotiate = smb3_validate_negotiate, */ /* not used in 3.11 */ 5776 .wp_retry_size = smb2_wp_retry_size, 5777 .dir_needs_close = smb2_dir_needs_close, 5778 .fallocate = smb3_fallocate, 5779 .enum_snapshots = smb3_enum_snapshots, 5780 .notify = smb3_notify, 5781 .init_transform_rq = smb3_init_transform_rq, 5782 .is_transform_hdr = smb3_is_transform_hdr, 5783 .receive_transform = smb3_receive_transform, 5784 .get_dfs_refer = smb2_get_dfs_refer, 5785 .select_sectype = smb2_select_sectype, 5786 #ifdef CONFIG_CIFS_XATTR 5787 .query_all_EAs = smb2_query_eas, 5788 .set_EA = smb2_set_ea, 5789 #endif /* CIFS_XATTR */ 5790 .get_acl = get_smb2_acl, 5791 .get_acl_by_fid = get_smb2_acl_by_fid, 5792 .set_acl = set_smb2_acl, 5793 .next_header = smb2_next_header, 5794 .ioctl_query_info = smb2_ioctl_query_info, 5795 .make_node = smb2_make_node, 5796 .fiemap = smb3_fiemap, 5797 .llseek = smb3_llseek, 5798 .is_status_io_timeout = smb2_is_status_io_timeout, 5799 .is_network_name_deleted = smb2_is_network_name_deleted, 5800 .rename_pending_delete = smb2_rename_pending_delete, 5801 }; 5802 5803 #ifdef CONFIG_CIFS_ALLOW_INSECURE_LEGACY 5804 struct smb_version_values smb20_values = { 5805 .version_string = SMB20_VERSION_STRING, 5806 .protocol_id = SMB20_PROT_ID, 5807 .req_capabilities = 0, /* MBZ */ 5808 .large_lock_type = 0, 5809 .exclusive_lock_type = SMB2_LOCKFLAG_EXCLUSIVE, 5810 .shared_lock_type = SMB2_LOCKFLAG_SHARED, 5811 .unlock_lock_type = SMB2_LOCKFLAG_UNLOCK, 5812 .header_size = sizeof(struct smb2_hdr), 5813 .max_header_size = MAX_SMB2_HDR_SIZE, 5814 .read_rsp_size = sizeof(struct smb2_read_rsp), 5815 .lock_cmd = SMB2_LOCK, 5816 .cap_unix = 0, 5817 .cap_nt_find = SMB2_NT_FIND, 5818 .cap_large_files = SMB2_LARGE_FILES, 5819 .signing_enabled = SMB2_NEGOTIATE_SIGNING_ENABLED | SMB2_NEGOTIATE_SIGNING_REQUIRED, 5820 .signing_required = SMB2_NEGOTIATE_SIGNING_REQUIRED, 5821 .create_lease_size = sizeof(struct create_lease), 5822 }; 5823 #endif /* ALLOW_INSECURE_LEGACY */ 5824 5825 struct smb_version_values smb21_values = { 5826 .version_string = SMB21_VERSION_STRING, 5827 .protocol_id = SMB21_PROT_ID, 5828 .req_capabilities = 0, /* MBZ on negotiate req until SMB3 dialect */ 5829 .large_lock_type = 0, 5830 .exclusive_lock_type = SMB2_LOCKFLAG_EXCLUSIVE, 5831 .shared_lock_type = SMB2_LOCKFLAG_SHARED, 5832 .unlock_lock_type = SMB2_LOCKFLAG_UNLOCK, 5833 .header_size = sizeof(struct smb2_hdr), 5834 .max_header_size = MAX_SMB2_HDR_SIZE, 5835 .read_rsp_size = sizeof(struct smb2_read_rsp), 5836 .lock_cmd = SMB2_LOCK, 5837 .cap_unix = 0, 5838 .cap_nt_find = SMB2_NT_FIND, 5839 .cap_large_files = SMB2_LARGE_FILES, 5840 .signing_enabled = SMB2_NEGOTIATE_SIGNING_ENABLED | SMB2_NEGOTIATE_SIGNING_REQUIRED, 5841 .signing_required = SMB2_NEGOTIATE_SIGNING_REQUIRED, 5842 .create_lease_size = sizeof(struct create_lease), 5843 }; 5844 5845 struct smb_version_values smb3any_values = { 5846 .version_string = SMB3ANY_VERSION_STRING, 5847 .protocol_id = SMB302_PROT_ID, /* doesn't matter, send protocol array */ 5848 .req_capabilities = SMB2_GLOBAL_CAP_DFS | SMB2_GLOBAL_CAP_LEASING | SMB2_GLOBAL_CAP_LARGE_MTU | SMB2_GLOBAL_CAP_PERSISTENT_HANDLES | SMB2_GLOBAL_CAP_ENCRYPTION | SMB2_GLOBAL_CAP_DIRECTORY_LEASING, 5849 .large_lock_type = 0, 5850 .exclusive_lock_type = SMB2_LOCKFLAG_EXCLUSIVE, 5851 .shared_lock_type = SMB2_LOCKFLAG_SHARED, 5852 .unlock_lock_type = SMB2_LOCKFLAG_UNLOCK, 5853 .header_size = sizeof(struct smb2_hdr), 5854 .max_header_size = MAX_SMB2_HDR_SIZE, 5855 .read_rsp_size = sizeof(struct smb2_read_rsp), 5856 .lock_cmd = SMB2_LOCK, 5857 .cap_unix = 0, 5858 .cap_nt_find = SMB2_NT_FIND, 5859 .cap_large_files = SMB2_LARGE_FILES, 5860 .signing_enabled = SMB2_NEGOTIATE_SIGNING_ENABLED | SMB2_NEGOTIATE_SIGNING_REQUIRED, 5861 .signing_required = SMB2_NEGOTIATE_SIGNING_REQUIRED, 5862 .create_lease_size = sizeof(struct create_lease_v2), 5863 }; 5864 5865 struct smb_version_values smbdefault_values = { 5866 .version_string = SMBDEFAULT_VERSION_STRING, 5867 .protocol_id = SMB302_PROT_ID, /* doesn't matter, send protocol array */ 5868 .req_capabilities = SMB2_GLOBAL_CAP_DFS | SMB2_GLOBAL_CAP_LEASING | SMB2_GLOBAL_CAP_LARGE_MTU | SMB2_GLOBAL_CAP_PERSISTENT_HANDLES | SMB2_GLOBAL_CAP_ENCRYPTION | SMB2_GLOBAL_CAP_DIRECTORY_LEASING, 5869 .large_lock_type = 0, 5870 .exclusive_lock_type = SMB2_LOCKFLAG_EXCLUSIVE, 5871 .shared_lock_type = SMB2_LOCKFLAG_SHARED, 5872 .unlock_lock_type = SMB2_LOCKFLAG_UNLOCK, 5873 .header_size = sizeof(struct smb2_hdr), 5874 .max_header_size = MAX_SMB2_HDR_SIZE, 5875 .read_rsp_size = sizeof(struct smb2_read_rsp), 5876 .lock_cmd = SMB2_LOCK, 5877 .cap_unix = 0, 5878 .cap_nt_find = SMB2_NT_FIND, 5879 .cap_large_files = SMB2_LARGE_FILES, 5880 .signing_enabled = SMB2_NEGOTIATE_SIGNING_ENABLED | SMB2_NEGOTIATE_SIGNING_REQUIRED, 5881 .signing_required = SMB2_NEGOTIATE_SIGNING_REQUIRED, 5882 .create_lease_size = sizeof(struct create_lease_v2), 5883 }; 5884 5885 struct smb_version_values smb30_values = { 5886 .version_string = SMB30_VERSION_STRING, 5887 .protocol_id = SMB30_PROT_ID, 5888 .req_capabilities = SMB2_GLOBAL_CAP_DFS | SMB2_GLOBAL_CAP_LEASING | SMB2_GLOBAL_CAP_LARGE_MTU | SMB2_GLOBAL_CAP_PERSISTENT_HANDLES | SMB2_GLOBAL_CAP_ENCRYPTION | SMB2_GLOBAL_CAP_DIRECTORY_LEASING, 5889 .large_lock_type = 0, 5890 .exclusive_lock_type = SMB2_LOCKFLAG_EXCLUSIVE, 5891 .shared_lock_type = SMB2_LOCKFLAG_SHARED, 5892 .unlock_lock_type = SMB2_LOCKFLAG_UNLOCK, 5893 .header_size = sizeof(struct smb2_hdr), 5894 .max_header_size = MAX_SMB2_HDR_SIZE, 5895 .read_rsp_size = sizeof(struct smb2_read_rsp), 5896 .lock_cmd = SMB2_LOCK, 5897 .cap_unix = 0, 5898 .cap_nt_find = SMB2_NT_FIND, 5899 .cap_large_files = SMB2_LARGE_FILES, 5900 .signing_enabled = SMB2_NEGOTIATE_SIGNING_ENABLED | SMB2_NEGOTIATE_SIGNING_REQUIRED, 5901 .signing_required = SMB2_NEGOTIATE_SIGNING_REQUIRED, 5902 .create_lease_size = sizeof(struct create_lease_v2), 5903 }; 5904 5905 struct smb_version_values smb302_values = { 5906 .version_string = SMB302_VERSION_STRING, 5907 .protocol_id = SMB302_PROT_ID, 5908 .req_capabilities = SMB2_GLOBAL_CAP_DFS | SMB2_GLOBAL_CAP_LEASING | SMB2_GLOBAL_CAP_LARGE_MTU | SMB2_GLOBAL_CAP_PERSISTENT_HANDLES | SMB2_GLOBAL_CAP_ENCRYPTION | SMB2_GLOBAL_CAP_DIRECTORY_LEASING, 5909 .large_lock_type = 0, 5910 .exclusive_lock_type = SMB2_LOCKFLAG_EXCLUSIVE, 5911 .shared_lock_type = SMB2_LOCKFLAG_SHARED, 5912 .unlock_lock_type = SMB2_LOCKFLAG_UNLOCK, 5913 .header_size = sizeof(struct smb2_hdr), 5914 .max_header_size = MAX_SMB2_HDR_SIZE, 5915 .read_rsp_size = sizeof(struct smb2_read_rsp), 5916 .lock_cmd = SMB2_LOCK, 5917 .cap_unix = 0, 5918 .cap_nt_find = SMB2_NT_FIND, 5919 .cap_large_files = SMB2_LARGE_FILES, 5920 .signing_enabled = SMB2_NEGOTIATE_SIGNING_ENABLED | SMB2_NEGOTIATE_SIGNING_REQUIRED, 5921 .signing_required = SMB2_NEGOTIATE_SIGNING_REQUIRED, 5922 .create_lease_size = sizeof(struct create_lease_v2), 5923 }; 5924 5925 struct smb_version_values smb311_values = { 5926 .version_string = SMB311_VERSION_STRING, 5927 .protocol_id = SMB311_PROT_ID, 5928 .req_capabilities = SMB2_GLOBAL_CAP_DFS | SMB2_GLOBAL_CAP_LEASING | SMB2_GLOBAL_CAP_LARGE_MTU | SMB2_GLOBAL_CAP_PERSISTENT_HANDLES | SMB2_GLOBAL_CAP_ENCRYPTION | SMB2_GLOBAL_CAP_DIRECTORY_LEASING, 5929 .large_lock_type = 0, 5930 .exclusive_lock_type = SMB2_LOCKFLAG_EXCLUSIVE, 5931 .shared_lock_type = SMB2_LOCKFLAG_SHARED, 5932 .unlock_lock_type = SMB2_LOCKFLAG_UNLOCK, 5933 .header_size = sizeof(struct smb2_hdr), 5934 .max_header_size = MAX_SMB2_HDR_SIZE, 5935 .read_rsp_size = sizeof(struct smb2_read_rsp), 5936 .lock_cmd = SMB2_LOCK, 5937 .cap_unix = 0, 5938 .cap_nt_find = SMB2_NT_FIND, 5939 .cap_large_files = SMB2_LARGE_FILES, 5940 .signing_enabled = SMB2_NEGOTIATE_SIGNING_ENABLED | SMB2_NEGOTIATE_SIGNING_REQUIRED, 5941 .signing_required = SMB2_NEGOTIATE_SIGNING_REQUIRED, 5942 .create_lease_size = sizeof(struct create_lease_v2), 5943 }; 5944