1 // SPDX-License-Identifier: GPL-2.0-or-later 2 /* 3 * Copyright (C) 2016 Namjae Jeon <linkinjeon@kernel.org> 4 * Copyright (C) 2018 Samsung Electronics Co., Ltd. 5 */ 6 7 #include <crypto/utils.h> 8 #include <linux/inetdevice.h> 9 #include <net/addrconf.h> 10 #include <linux/syscalls.h> 11 #include <linux/namei.h> 12 #include <linux/fs_struct.h> 13 #include <linux/statfs.h> 14 #include <linux/ethtool.h> 15 #include <linux/falloc.h> 16 #include <linux/mount.h> 17 #include <linux/filelock.h> 18 #include <linux/fileattr.h> 19 #include <linux/timekeeping.h> 20 #include <linux/unaligned.h> 21 22 #include "glob.h" 23 #include "../common/smbfsctl.h" 24 #include "oplock.h" 25 #include "smbacl.h" 26 27 #include "auth.h" 28 #include "asn1.h" 29 #include "connection.h" 30 #include "transport_ipc.h" 31 #include "transport_rdma.h" 32 #include "vfs.h" 33 #include "vfs_cache.h" 34 #include "misc.h" 35 36 #include "server.h" 37 #include "smb_common.h" 38 #include "../common/smb2status.h" 39 #include "ksmbd_work.h" 40 #include "mgmt/user_config.h" 41 #include "mgmt/share_config.h" 42 #include "mgmt/tree_connect.h" 43 #include "mgmt/user_session.h" 44 #include "mgmt/ksmbd_ida.h" 45 #include "ndr.h" 46 #include "stats.h" 47 #include "transport_tcp.h" 48 #include "compress.h" 49 50 static void __wbuf(struct ksmbd_work *work, void **req, void **rsp) 51 { 52 if (work->next_smb2_rcv_hdr_off) { 53 *req = ksmbd_req_buf_next(work); 54 *rsp = ksmbd_resp_buf_next(work); 55 } else { 56 *req = smb_get_msg(work->request_buf); 57 *rsp = smb_get_msg(work->response_buf); 58 } 59 } 60 61 static struct ksmbd_work *smb2_notify_cancel_claim(void **argv); 62 static void smb2_notify_cancel_fn(void **argv); 63 static void smb2_complete_notify_cancel(struct ksmbd_work *in_work); 64 65 #define WORK_BUFFERS(w, rq, rs) __wbuf((w), (void **)&(rq), (void **)&(rs)) 66 67 #define SMB2_CREATE_FILE_ATTRIBUTE_MASK \ 68 (FILE_ATTRIBUTE_MASK & ~(FILE_ATTRIBUTE_INTEGRITY_STREAM | \ 69 FILE_ATTRIBUTE_NO_SCRUB_DATA)) 70 71 /* Windows reports automatic write-time updates at roughly 15 ms resolution. */ 72 #define KSMBD_WRITE_TIME_RESOLUTION (15ULL * 10000) 73 74 /* MAXFILESIZE in [MS-FSA] 2.1.5.3 Server Requests a Write. */ 75 #define SMB2_MAX_FILE_SIZE 0xfffffff0000ULL 76 77 struct channel *lookup_chann_list(struct ksmbd_session *sess, struct ksmbd_conn *conn) 78 { 79 struct channel *chann; 80 81 down_read(&sess->chann_lock); 82 chann = xa_load(&sess->ksmbd_chann_list, (long)conn); 83 up_read(&sess->chann_lock); 84 85 return chann; 86 } 87 88 static int register_session_channel(struct ksmbd_session *sess, 89 struct ksmbd_conn *conn, 90 const char *sess_key) 91 { 92 struct channel *chann, *old; 93 unsigned long index; 94 unsigned int count = 0; 95 int rc = 0; 96 97 down_write(&sess->chann_lock); 98 if (sess->tearing_down) { 99 rc = -ESHUTDOWN; 100 goto out; 101 } 102 103 if (xa_load(&sess->ksmbd_chann_list, (long)conn)) 104 goto out; 105 106 xa_for_each(&sess->ksmbd_chann_list, index, chann) 107 count++; 108 if (count >= KSMBD_MAX_CHANNELS) { 109 rc = -ENOSPC; 110 goto out; 111 } 112 113 chann = kmalloc_obj(struct channel, KSMBD_DEFAULT_GFP); 114 if (!chann) { 115 rc = -ENOMEM; 116 goto out; 117 } 118 119 chann->conn = conn; 120 memcpy(chann->sess_key, sess_key, sizeof(chann->sess_key)); 121 old = xa_store(&sess->ksmbd_chann_list, (long)conn, chann, 122 KSMBD_DEFAULT_GFP); 123 if (xa_is_err(old)) { 124 kfree_sensitive(chann); 125 rc = xa_err(old); 126 } 127 out: 128 up_write(&sess->chann_lock); 129 return rc; 130 } 131 132 /** 133 * smb2_get_ksmbd_tcon() - get tree connection information using a tree id. 134 * @work: smb work 135 * 136 * Return: 0 if there is a tree connection matched or these are 137 * skipable commands, otherwise error 138 */ 139 int smb2_get_ksmbd_tcon(struct ksmbd_work *work) 140 { 141 struct smb2_hdr *req_hdr = ksmbd_req_buf_next(work); 142 unsigned int cmd = le16_to_cpu(req_hdr->Command); 143 unsigned int tree_id; 144 145 if (cmd == SMB2_TREE_CONNECT_HE || 146 cmd == SMB2_CANCEL_HE || 147 cmd == SMB2_LOGOFF_HE) { 148 ksmbd_debug(SMB, "skip to check tree connect request\n"); 149 return 0; 150 } 151 152 if (xa_empty(&work->sess->tree_conns)) { 153 ksmbd_debug(SMB, "NO tree connected\n"); 154 return -ENOENT; 155 } 156 157 tree_id = le32_to_cpu(req_hdr->Id.SyncId.TreeId); 158 159 /* 160 * If request is not the first in Compound request, 161 * Just validate tree id in header with work->tcon->id. 162 */ 163 if (work->next_smb2_rcv_hdr_off) { 164 if (!work->tcon) { 165 pr_err("The first operation in the compound does not have tcon\n"); 166 return -EINVAL; 167 } 168 if (work->tcon->t_state != TREE_CONNECTED) 169 return -ENOENT; 170 if (tree_id != UINT_MAX && work->tcon->id != tree_id) { 171 pr_err("tree id(%u) is different with id(%u) in first operation\n", 172 tree_id, work->tcon->id); 173 return -EINVAL; 174 } 175 return 1; 176 } 177 178 work->tcon = ksmbd_tree_conn_lookup(work->sess, tree_id); 179 if (!work->tcon) { 180 pr_err("Invalid tid %d\n", tree_id); 181 return -ENOENT; 182 } 183 184 return 1; 185 } 186 187 /** 188 * smb2_set_err_rsp() - set error response code on smb response 189 * @work: smb work containing response buffer 190 */ 191 void smb2_set_err_rsp(struct ksmbd_work *work) 192 { 193 struct smb2_err_rsp *err_rsp; 194 195 if (work->next_smb2_rcv_hdr_off) 196 err_rsp = ksmbd_resp_buf_next(work); 197 else 198 err_rsp = smb_get_msg(work->response_buf); 199 200 if (err_rsp->hdr.Status != STATUS_STOPPED_ON_SYMLINK) { 201 int err; 202 203 err_rsp->StructureSize = SMB2_ERROR_STRUCTURE_SIZE2_LE; 204 err_rsp->ErrorContextCount = 0; 205 err_rsp->Reserved = 0; 206 err_rsp->ByteCount = 0; 207 err_rsp->ErrorData[0] = 0; 208 err = ksmbd_iov_pin_rsp(work, (void *)err_rsp, 209 __SMB2_HEADER_STRUCTURE_SIZE + 210 SMB2_ERROR_STRUCTURE_SIZE2); 211 if (err) 212 work->send_no_response = 1; 213 } 214 } 215 216 /** 217 * is_smb2_neg_cmd() - is it smb2 negotiation command 218 * @work: smb work containing smb header 219 * 220 * Return: true if smb2 negotiation command, otherwise false 221 */ 222 bool is_smb2_neg_cmd(struct ksmbd_work *work) 223 { 224 struct smb2_hdr *hdr = smb_get_msg(work->request_buf); 225 226 /* is it SMB2 header ? */ 227 if (hdr->ProtocolId != SMB2_PROTO_NUMBER) 228 return false; 229 230 /* make sure it is request not response message */ 231 if (hdr->Flags & SMB2_FLAGS_SERVER_TO_REDIR) 232 return false; 233 234 if (hdr->Command != SMB2_NEGOTIATE) 235 return false; 236 237 return true; 238 } 239 240 /** 241 * is_smb2_rsp() - is it smb2 response 242 * @work: smb work containing smb response buffer 243 * 244 * Return: true if smb2 response, otherwise false 245 */ 246 bool is_smb2_rsp(struct ksmbd_work *work) 247 { 248 struct smb2_hdr *hdr = smb_get_msg(work->response_buf); 249 250 /* is it SMB2 header ? */ 251 if (hdr->ProtocolId != SMB2_PROTO_NUMBER) 252 return false; 253 254 /* make sure it is response not request message */ 255 if (!(hdr->Flags & SMB2_FLAGS_SERVER_TO_REDIR)) 256 return false; 257 258 return true; 259 } 260 261 /** 262 * get_smb2_cmd_val() - get smb command code from smb header 263 * @work: smb work containing smb request buffer 264 * 265 * Return: smb2 request command value 266 */ 267 u16 get_smb2_cmd_val(struct ksmbd_work *work) 268 { 269 struct smb2_hdr *rcv_hdr; 270 271 if (work->next_smb2_rcv_hdr_off) 272 rcv_hdr = ksmbd_req_buf_next(work); 273 else 274 rcv_hdr = smb_get_msg(work->request_buf); 275 return le16_to_cpu(rcv_hdr->Command); 276 } 277 278 /** 279 * set_smb2_rsp_status() - set error response code on smb2 header 280 * @work: smb work containing response buffer 281 * @err: error response code 282 */ 283 void set_smb2_rsp_status(struct ksmbd_work *work, __le32 err) 284 { 285 struct smb2_hdr *rsp_hdr; 286 287 if (work->next_smb2_rcv_hdr_off) { 288 rsp_hdr = ksmbd_resp_buf_next(work); 289 rsp_hdr->Status = err; 290 smb2_set_err_rsp(work); 291 return; 292 } 293 294 rsp_hdr = smb_get_msg(work->response_buf); 295 rsp_hdr->Status = err; 296 297 work->iov_idx = 0; 298 work->iov_cnt = 0; 299 work->next_smb2_rcv_hdr_off = 0; 300 smb2_set_err_rsp(work); 301 } 302 303 /** 304 * init_smb2_neg_rsp() - initialize smb2 response for negotiate command 305 * @work: smb work containing smb request buffer 306 * 307 * smb2 negotiate response is sent in reply of smb1 negotiate command for 308 * dialect auto-negotiation. 309 */ 310 int init_smb2_neg_rsp(struct ksmbd_work *work) 311 { 312 struct smb2_hdr *rsp_hdr; 313 struct smb2_negotiate_rsp *rsp; 314 struct ksmbd_conn *conn = work->conn; 315 int err; 316 317 rsp_hdr = smb_get_msg(work->response_buf); 318 memset(rsp_hdr, 0, sizeof(struct smb2_hdr) + 2); 319 rsp_hdr->ProtocolId = SMB2_PROTO_NUMBER; 320 rsp_hdr->StructureSize = SMB2_HEADER_STRUCTURE_SIZE; 321 rsp_hdr->CreditRequest = cpu_to_le16(2); 322 rsp_hdr->Command = SMB2_NEGOTIATE; 323 rsp_hdr->Flags = (SMB2_FLAGS_SERVER_TO_REDIR); 324 rsp_hdr->NextCommand = 0; 325 rsp_hdr->MessageId = 0; 326 rsp_hdr->Id.SyncId.ProcessId = 0; 327 rsp_hdr->Id.SyncId.TreeId = 0; 328 rsp_hdr->SessionId = 0; 329 memset(rsp_hdr->Signature, 0, 16); 330 331 rsp = smb_get_msg(work->response_buf); 332 333 WARN_ON(ksmbd_conn_good(conn)); 334 335 rsp->StructureSize = cpu_to_le16(65); 336 ksmbd_debug(SMB, "conn->dialect 0x%x\n", conn->dialect); 337 rsp->DialectRevision = cpu_to_le16(conn->dialect); 338 /* Not setting conn guid rsp->ServerGUID, as it 339 * not used by client for identifying connection 340 */ 341 rsp->Capabilities = cpu_to_le32(conn->vals->req_capabilities); 342 /* Default Max Message Size till SMB2.0, 64K*/ 343 rsp->MaxTransactSize = cpu_to_le32(conn->vals->max_trans_size); 344 rsp->MaxReadSize = cpu_to_le32(conn->vals->max_read_size); 345 rsp->MaxWriteSize = cpu_to_le32(conn->vals->max_write_size); 346 347 rsp->SystemTime = cpu_to_le64(ksmbd_systime()); 348 rsp->ServerStartTime = 0; 349 350 rsp->SecurityBufferOffset = cpu_to_le16(128); 351 rsp->SecurityBufferLength = cpu_to_le16(AUTH_GSS_LENGTH); 352 ksmbd_copy_gss_neg_header((char *)(&rsp->hdr) + 353 le16_to_cpu(rsp->SecurityBufferOffset)); 354 rsp->SecurityMode = SMB2_NEGOTIATE_SIGNING_ENABLED_LE; 355 if (server_conf.signing == KSMBD_CONFIG_OPT_MANDATORY) 356 rsp->SecurityMode |= SMB2_NEGOTIATE_SIGNING_REQUIRED_LE; 357 err = ksmbd_iov_pin_rsp(work, rsp, 358 sizeof(struct smb2_negotiate_rsp) + AUTH_GSS_LENGTH); 359 if (err) 360 return err; 361 conn->use_spnego = true; 362 363 ksmbd_conn_set_need_negotiate(conn); 364 return 0; 365 } 366 367 /** 368 * smb2_set_rsp_credits() - set number of credits in response buffer 369 * @work: smb work containing smb response buffer 370 */ 371 int smb2_set_rsp_credits(struct ksmbd_work *work) 372 { 373 struct smb2_hdr *req_hdr = ksmbd_req_buf_next(work); 374 struct smb2_hdr *hdr = ksmbd_resp_buf_next(work); 375 struct ksmbd_conn *conn = work->conn; 376 unsigned short credits_requested, aux_max; 377 unsigned short credit_charge, credits_granted = 0; 378 u64 window_room, i; 379 380 if (work->send_no_response) 381 return 0; 382 383 hdr->CreditCharge = req_hdr->CreditCharge; 384 385 if (conn->total_credits > conn->vals->max_credits) { 386 hdr->CreditRequest = 0; 387 pr_err("Total credits overflow: %d\n", conn->total_credits); 388 return -EINVAL; 389 } 390 391 credit_charge = max_t(unsigned short, 392 le16_to_cpu(req_hdr->CreditCharge), 1); 393 if (credit_charge > conn->total_credits) { 394 ksmbd_debug(SMB, "Insufficient credits granted, given: %u, granted: %u\n", 395 credit_charge, conn->total_credits); 396 return -EINVAL; 397 } 398 399 conn->total_credits -= credit_charge; 400 conn->outstanding_credits -= credit_charge; 401 work->credit_charge = 0; 402 credits_requested = max_t(unsigned short, 403 le16_to_cpu(req_hdr->CreditRequest), 1); 404 405 /* according to smb2.credits smbtorture, Windows server 406 * 2016 or later grant up to 8192 credits at once. 407 * 408 * TODO: Need to adjuct CreditRequest value according to 409 * current cpu load 410 */ 411 if (hdr->Command == SMB2_NEGOTIATE) 412 aux_max = 1; 413 else 414 aux_max = conn->vals->max_credits - conn->total_credits; 415 416 /* 417 * The command sequence window must not grow beyond 418 * KSMBD_CMD_SEQ_WINDOW sequence numbers ahead of the oldest one still 419 * outstanding. Cap the grant by the room left in the window so that 420 * credits are withheld until the client consumes the low end (and so 421 * that seq_bitmap stays usable as a ring). 422 */ 423 window_room = conn->seq_low + KSMBD_CMD_SEQ_WINDOW - conn->seq_high; 424 aux_max = min_t(unsigned short, aux_max, window_room); 425 credits_granted = min_t(unsigned short, credits_requested, aux_max); 426 427 conn->total_credits += credits_granted; 428 work->credits_granted += credits_granted; 429 430 /* Extend the sequence window to cover the newly granted credits. */ 431 for (i = conn->seq_high; i < conn->seq_high + credits_granted; i++) 432 __set_bit(i & (KSMBD_CMD_SEQ_WINDOW - 1), conn->seq_bitmap); 433 conn->seq_high += credits_granted; 434 435 if (!req_hdr->NextCommand) { 436 /* Update CreditRequest in last request */ 437 hdr->CreditRequest = cpu_to_le16(work->credits_granted); 438 } 439 ksmbd_debug(SMB, 440 "credits: requested[%d] granted[%d] total_granted[%d]\n", 441 credits_requested, credits_granted, 442 conn->total_credits); 443 return 0; 444 } 445 446 /** 447 * init_chained_smb2_rsp() - initialize smb2 chained response 448 * @work: smb work containing smb response buffer 449 */ 450 static void init_chained_smb2_rsp(struct ksmbd_work *work) 451 { 452 struct smb2_hdr *req = ksmbd_req_buf_next(work); 453 struct smb2_hdr *rsp = ksmbd_resp_buf_next(work); 454 struct smb2_hdr *rsp_hdr; 455 struct smb2_hdr *rcv_hdr; 456 int next_hdr_offset = 0; 457 int len, new_len; 458 459 /* Len of this response = updated RFC len - offset of previous cmd 460 * in the compound rsp 461 */ 462 463 /* Storing the current local FID which may be needed by subsequent 464 * command in the compound request 465 */ 466 if (req->Command == SMB2_CREATE && rsp->Status == STATUS_SUCCESS) { 467 work->compound_fid = ((struct smb2_create_rsp *)rsp)->VolatileFileId; 468 work->compound_pfid = ((struct smb2_create_rsp *)rsp)->PersistentFileId; 469 work->compound_sid = le64_to_cpu(rsp->SessionId); 470 work->compound_status = STATUS_SUCCESS; 471 } else if ((req->Command == SMB2_FLUSH || 472 req->Command == SMB2_READ || 473 req->Command == SMB2_WRITE) && 474 rsp->Status == STATUS_SUCCESS) { 475 u64 volatile_id = KSMBD_NO_FID; 476 u64 persistent_id = KSMBD_NO_FID; 477 478 if (req->Command == SMB2_FLUSH) { 479 struct smb2_flush_req *flush_req = 480 (struct smb2_flush_req *)req; 481 482 volatile_id = flush_req->VolatileFileId; 483 persistent_id = flush_req->PersistentFileId; 484 } else if (req->Command == SMB2_READ) { 485 struct smb2_read_req *read_req = 486 (struct smb2_read_req *)req; 487 488 volatile_id = read_req->VolatileFileId; 489 persistent_id = read_req->PersistentFileId; 490 } else { 491 struct smb2_write_req *write_req = 492 (struct smb2_write_req *)req; 493 494 volatile_id = write_req->VolatileFileId; 495 persistent_id = write_req->PersistentFileId; 496 } 497 498 if (has_file_id(volatile_id)) { 499 work->compound_fid = volatile_id; 500 work->compound_pfid = persistent_id; 501 work->compound_sid = le64_to_cpu(rsp->SessionId); 502 work->compound_status = STATUS_SUCCESS; 503 } 504 } else if (req->Command == SMB2_CREATE) { 505 work->compound_fid = KSMBD_NO_FID; 506 work->compound_pfid = KSMBD_NO_FID; 507 work->compound_sid = le64_to_cpu(rsp->SessionId); 508 work->compound_status = rsp->Status; 509 } else if (rsp->Status != STATUS_SUCCESS) { 510 work->compound_sid = le64_to_cpu(rsp->SessionId); 511 /* 512 * Only carry the failed status forward when the failing command 513 * was itself part of the related chain. An unrelated command 514 * that fails (e.g. a standalone request with a bad session id) 515 * must not seed the status for a following related command, 516 * which has to be evaluated on its own (and may legitimately 517 * fail with a different status such as INVALID_PARAMETER). The 518 * compound session id is still tracked so a following related 519 * command can validate it. 520 */ 521 if (req->Flags & SMB2_FLAGS_RELATED_OPERATIONS) 522 work->compound_status = rsp->Status; 523 } 524 525 len = get_rfc1002_len(work->response_buf) - work->next_smb2_rsp_hdr_off; 526 next_hdr_offset = le32_to_cpu(req->NextCommand); 527 528 new_len = ALIGN(len, 8); 529 work->iov[work->iov_idx].iov_len += (new_len - len); 530 inc_rfc1001_len(work->response_buf, new_len - len); 531 rsp->NextCommand = cpu_to_le32(new_len); 532 533 work->next_smb2_rcv_hdr_off += next_hdr_offset; 534 work->curr_smb2_rsp_hdr_off = work->next_smb2_rsp_hdr_off; 535 work->next_smb2_rsp_hdr_off += new_len; 536 ksmbd_debug(SMB, 537 "Compound req new_len = %d rcv off = %d rsp off = %d\n", 538 new_len, work->next_smb2_rcv_hdr_off, 539 work->next_smb2_rsp_hdr_off); 540 541 rsp_hdr = ksmbd_resp_buf_next(work); 542 rcv_hdr = ksmbd_req_buf_next(work); 543 544 if (!(rcv_hdr->Flags & SMB2_FLAGS_RELATED_OPERATIONS)) { 545 ksmbd_debug(SMB, "related flag should be set\n"); 546 work->compound_fid = KSMBD_NO_FID; 547 work->compound_pfid = KSMBD_NO_FID; 548 work->compound_status = STATUS_SUCCESS; 549 } 550 memset((char *)rsp_hdr, 0, sizeof(struct smb2_hdr) + 2); 551 rsp_hdr->ProtocolId = SMB2_PROTO_NUMBER; 552 rsp_hdr->StructureSize = SMB2_HEADER_STRUCTURE_SIZE; 553 rsp_hdr->Command = rcv_hdr->Command; 554 555 /* 556 * Message is response. We don't grant oplock yet. 557 */ 558 rsp_hdr->Flags = (SMB2_FLAGS_SERVER_TO_REDIR | 559 SMB2_FLAGS_RELATED_OPERATIONS); 560 if (rcv_hdr->Flags & SMB2_FLAGS_REPLAY_OPERATION) 561 rsp_hdr->Flags |= SMB2_FLAGS_REPLAY_OPERATION; 562 rsp_hdr->NextCommand = 0; 563 rsp_hdr->MessageId = rcv_hdr->MessageId; 564 rsp_hdr->Id.SyncId.ProcessId = rcv_hdr->Id.SyncId.ProcessId; 565 rsp_hdr->Id.SyncId.TreeId = rcv_hdr->Id.SyncId.TreeId; 566 rsp_hdr->SessionId = rcv_hdr->SessionId; 567 memcpy(rsp_hdr->Signature, rcv_hdr->Signature, 16); 568 } 569 570 static bool smb2_compound_has_failed(struct ksmbd_work *work, 571 struct smb2_hdr *rsp) 572 { 573 if (!work->next_smb2_rcv_hdr_off || 574 has_file_id(work->compound_fid) || 575 work->compound_status == STATUS_SUCCESS) 576 return false; 577 578 rsp->Status = work->compound_status; 579 smb2_set_err_rsp(work); 580 return true; 581 } 582 583 /** 584 * is_chained_smb2_message() - check for chained command 585 * @work: smb work containing smb request buffer 586 * 587 * Return: true if chained request, otherwise false 588 */ 589 bool is_chained_smb2_message(struct ksmbd_work *work) 590 { 591 struct smb2_hdr *hdr = smb_get_msg(work->request_buf); 592 unsigned int len, next_cmd; 593 594 if (hdr->ProtocolId != SMB2_PROTO_NUMBER) 595 return false; 596 597 hdr = ksmbd_req_buf_next(work); 598 next_cmd = le32_to_cpu(hdr->NextCommand); 599 if (next_cmd > 0) { 600 if ((u64)work->next_smb2_rcv_hdr_off + next_cmd + 601 __SMB2_HEADER_STRUCTURE_SIZE > 602 get_rfc1002_len(work->request_buf)) { 603 pr_err("next command(%u) offset exceeds smb msg size\n", 604 next_cmd); 605 return false; 606 } 607 608 if ((u64)get_rfc1002_len(work->response_buf) + MAX_CIFS_SMALL_BUFFER_SIZE > 609 work->response_sz) { 610 pr_err("next response offset exceeds response buffer size\n"); 611 return false; 612 } 613 614 ksmbd_debug(SMB, "got SMB2 chained command\n"); 615 init_chained_smb2_rsp(work); 616 return true; 617 } else if (work->next_smb2_rcv_hdr_off) { 618 /* 619 * This is last request in chained command, 620 * align response to 8 byte 621 */ 622 len = ALIGN(get_rfc1002_len(work->response_buf), 8); 623 len = len - get_rfc1002_len(work->response_buf); 624 if (len) { 625 ksmbd_debug(SMB, "padding len %u\n", len); 626 work->iov[work->iov_idx].iov_len += len; 627 inc_rfc1001_len(work->response_buf, len); 628 } 629 work->curr_smb2_rsp_hdr_off = work->next_smb2_rsp_hdr_off; 630 } 631 return false; 632 } 633 634 /** 635 * init_smb2_rsp_hdr() - initialize smb2 response 636 * @work: smb work containing smb request buffer 637 * 638 * Return: 0 639 */ 640 int init_smb2_rsp_hdr(struct ksmbd_work *work) 641 { 642 struct smb2_hdr *rsp_hdr = smb_get_msg(work->response_buf); 643 struct smb2_hdr *rcv_hdr = smb_get_msg(work->request_buf); 644 645 memset(rsp_hdr, 0, sizeof(struct smb2_hdr) + 2); 646 rsp_hdr->ProtocolId = rcv_hdr->ProtocolId; 647 rsp_hdr->StructureSize = SMB2_HEADER_STRUCTURE_SIZE; 648 rsp_hdr->Command = rcv_hdr->Command; 649 650 /* 651 * Message is response. We don't grant oplock yet. 652 */ 653 rsp_hdr->Flags = (SMB2_FLAGS_SERVER_TO_REDIR); 654 if (rcv_hdr->Flags & SMB2_FLAGS_REPLAY_OPERATION) 655 rsp_hdr->Flags |= SMB2_FLAGS_REPLAY_OPERATION; 656 rsp_hdr->NextCommand = 0; 657 rsp_hdr->MessageId = rcv_hdr->MessageId; 658 rsp_hdr->Id.SyncId.ProcessId = rcv_hdr->Id.SyncId.ProcessId; 659 rsp_hdr->Id.SyncId.TreeId = rcv_hdr->Id.SyncId.TreeId; 660 rsp_hdr->SessionId = rcv_hdr->SessionId; 661 memcpy(rsp_hdr->Signature, rcv_hdr->Signature, 16); 662 663 return 0; 664 } 665 666 static __le16 smb3_hdr_channel_sequence(struct smb2_hdr *hdr) 667 { 668 return ((struct smb3_hdr_req *)hdr)->ChannelSequence; 669 } 670 671 static bool smb3_hdr_replay(struct smb2_hdr *hdr) 672 { 673 return hdr->Flags & SMB2_FLAGS_REPLAY_OPERATION; 674 } 675 676 static int smb3_verify_channel_sequence(struct ksmbd_work *work, 677 struct ksmbd_file *fp, 678 struct smb2_hdr *hdr, 679 bool allow_stale) 680 { 681 __le16 chseq_le; 682 u16 chseq, old_chseq; 683 int ret = 0; 684 685 if (work->conn->dialect < SMB30_PROT_ID) 686 return 0; 687 688 chseq_le = smb3_hdr_channel_sequence(hdr); 689 chseq = le16_to_cpu(chseq_le); 690 691 spin_lock(&fp->f_lock); 692 old_chseq = le16_to_cpu(fp->channel_sequence); 693 if (smb3_hdr_replay(hdr)) { 694 if (chseq == old_chseq && fp->outstanding_pre_requests == 0) { 695 fp->outstanding_requests++; 696 } else if ((u16)(chseq - old_chseq) <= 0x7fff && 697 fp->outstanding_pre_requests == 0) { 698 fp->outstanding_pre_requests += fp->outstanding_requests; 699 fp->outstanding_requests = 1; 700 fp->channel_sequence = chseq_le; 701 } else if (allow_stale) { 702 fp->outstanding_pre_requests++; 703 } else { 704 ret = -EAGAIN; 705 } 706 } else { 707 if (chseq == old_chseq) { 708 fp->outstanding_requests++; 709 } else if ((u16)(chseq - old_chseq) <= 0x7fff) { 710 fp->outstanding_pre_requests += fp->outstanding_requests; 711 fp->outstanding_requests = 1; 712 fp->channel_sequence = chseq_le; 713 } else if (allow_stale) { 714 fp->outstanding_pre_requests++; 715 } else { 716 ret = -EAGAIN; 717 } 718 } 719 spin_unlock(&fp->f_lock); 720 721 return ret; 722 } 723 724 static void smb3_complete_channel_sequence(struct ksmbd_work *work, 725 struct ksmbd_file *fp, 726 __le16 chseq_le) 727 { 728 u16 chseq; 729 730 if (work->conn->dialect < SMB30_PROT_ID) 731 return; 732 733 chseq = le16_to_cpu(chseq_le); 734 735 spin_lock(&fp->f_lock); 736 if (chseq == le16_to_cpu(fp->channel_sequence)) { 737 if (fp->outstanding_requests) 738 fp->outstanding_requests--; 739 } else { 740 if (fp->outstanding_pre_requests) 741 fp->outstanding_pre_requests--; 742 } 743 spin_unlock(&fp->f_lock); 744 } 745 746 static int smb2_set_request_open(struct ksmbd_work *work, struct ksmbd_file *fp, 747 struct smb2_hdr *hdr, bool verify_chseq, 748 bool allow_stale_chseq) 749 { 750 struct ksmbd_file *open; 751 int ret; 752 753 smb2_complete_request_open(work); 754 755 open = ksmbd_file_get(fp); 756 if (!open) 757 return -ESTALE; 758 759 if (verify_chseq) { 760 ret = smb3_verify_channel_sequence(work, fp, hdr, 761 allow_stale_chseq); 762 if (ret) { 763 ksmbd_fd_put(work, open); 764 return ret; 765 } 766 work->request_open_chseq_tracked = true; 767 } 768 769 work->request_open = open; 770 work->request_open_chseq = smb3_hdr_channel_sequence(hdr); 771 return 0; 772 } 773 774 void smb2_complete_request_open(struct ksmbd_work *work) 775 { 776 struct ksmbd_file *open = work->request_open; 777 778 if (!open) 779 return; 780 781 if (work->request_open_chseq_tracked) 782 smb3_complete_channel_sequence(work, open, 783 work->request_open_chseq); 784 785 work->request_open = NULL; 786 work->request_open_chseq_tracked = false; 787 ksmbd_fd_put(work, open); 788 } 789 790 static bool smb2_lock_sequence_applicable(struct ksmbd_work *work, 791 struct ksmbd_file *fp) 792 { 793 return fp->is_resilient || fp->is_durable || fp->is_persistent || 794 (work->conn->dialect >= SMB30_PROT_ID && 795 (work->conn->vals->req_capabilities & 796 SMB2_GLOBAL_CAP_MULTI_CHANNEL)); 797 } 798 799 static bool smb2_verify_lock_sequence(struct ksmbd_work *work, 800 struct ksmbd_file *fp, 801 struct smb2_lock_req *req) 802 { 803 u32 val, index; 804 u8 sequence; 805 bool replay = false; 806 807 if (work->conn->dialect == SMB20_PROT_ID || 808 !smb2_lock_sequence_applicable(work, fp)) 809 return false; 810 811 val = le32_to_cpu(req->LockSequenceNumber); 812 sequence = val & 0xf; 813 index = val >> 4; 814 if (!index || index > KSMBD_LOCK_SEQ_ARRAY_SIZE) 815 return false; 816 817 spin_lock(&fp->f_lock); 818 if (fp->lock_seq[index - 1].valid) { 819 if (fp->lock_seq[index - 1].sequence == sequence) 820 replay = true; 821 else 822 fp->lock_seq[index - 1].valid = false; 823 } 824 spin_unlock(&fp->f_lock); 825 826 return replay; 827 } 828 829 static void smb2_update_lock_sequence(struct ksmbd_work *work, 830 struct ksmbd_file *fp, 831 struct smb2_lock_req *req) 832 { 833 u32 val, index; 834 u8 sequence; 835 836 if (work->conn->dialect == SMB20_PROT_ID || 837 !smb2_lock_sequence_applicable(work, fp)) 838 return; 839 840 val = le32_to_cpu(req->LockSequenceNumber); 841 sequence = val & 0xf; 842 index = val >> 4; 843 if (!index || index > KSMBD_LOCK_SEQ_ARRAY_SIZE) 844 return; 845 846 spin_lock(&fp->f_lock); 847 fp->lock_seq[index - 1].valid = true; 848 fp->lock_seq[index - 1].sequence = sequence; 849 spin_unlock(&fp->f_lock); 850 } 851 852 /** 853 * smb2_allocate_rsp_buf() - allocate smb2 response buffer 854 * @work: smb work containing smb request buffer 855 * 856 * Return: 0 on success, otherwise error 857 */ 858 int smb2_allocate_rsp_buf(struct ksmbd_work *work) 859 { 860 struct smb2_hdr *hdr = smb_get_msg(work->request_buf); 861 size_t small_sz = MAX_CIFS_SMALL_BUFFER_SIZE; 862 size_t large_sz = small_sz + work->conn->vals->max_trans_size; 863 size_t sz = small_sz; 864 int cmd = le16_to_cpu(hdr->Command); 865 866 if (cmd == SMB2_IOCTL_HE || cmd == SMB2_QUERY_DIRECTORY_HE) 867 sz = large_sz; 868 869 if (cmd == SMB2_QUERY_INFO_HE) { 870 struct smb2_query_info_req *req; 871 872 if (get_rfc1002_len(work->request_buf) < 873 offsetof(struct smb2_query_info_req, OutputBufferLength)) 874 return -EINVAL; 875 876 req = smb_get_msg(work->request_buf); 877 if ((req->InfoType == SMB2_O_INFO_FILE && 878 (req->FileInfoClass == FILE_FULL_EA_INFORMATION || 879 req->FileInfoClass == FILE_ALL_INFORMATION || 880 req->FileInfoClass == FILE_NORMALIZED_NAME_INFORMATION)) || 881 req->InfoType == SMB2_O_INFO_SECURITY) 882 sz = large_sz; 883 } 884 885 /* allocate large response buf for chained commands */ 886 if (le32_to_cpu(hdr->NextCommand) > 0) 887 sz = large_sz; 888 889 work->response_buf = kvzalloc(sz, KSMBD_DEFAULT_GFP); 890 if (!work->response_buf) 891 return -ENOMEM; 892 893 work->response_sz = sz; 894 return 0; 895 } 896 897 static bool smb2_session_expired_cmd_allowed(struct ksmbd_work *work, 898 unsigned int cmd) 899 { 900 struct smb2_lock_req *req; 901 unsigned int len, lock_count, i; 902 903 if (cmd == SMB2_CANCEL_HE || cmd == SMB2_CLOSE_HE || 904 cmd == SMB2_LOGOFF_HE) 905 return true; 906 if (cmd != SMB2_LOCK_HE) 907 return false; 908 909 req = ksmbd_req_buf_next(work); 910 if (req->hdr.NextCommand) 911 len = le32_to_cpu(req->hdr.NextCommand); 912 else { 913 len = get_rfc1002_len(work->request_buf); 914 if (len < work->next_smb2_rcv_hdr_off) 915 return false; 916 len -= work->next_smb2_rcv_hdr_off; 917 } 918 919 lock_count = le16_to_cpu(req->LockCount); 920 if (!lock_count || len < offsetof(struct smb2_lock_req, locks) || 921 lock_count > (len - offsetof(struct smb2_lock_req, locks)) / 922 sizeof(struct smb2_lock_element)) 923 return false; 924 925 for (i = 0; i < lock_count; i++) { 926 if (le32_to_cpu(req->locks[i].Flags) != SMB2_LOCKFLAG_UNLOCK) 927 return false; 928 } 929 return true; 930 } 931 932 static bool smb2_session_kerberos_expired(struct ksmbd_session *sess) 933 { 934 if (!sess->kerberos_expiry || 935 ktime_get_real_seconds() < sess->kerberos_expiry) 936 return false; 937 938 if (cmpxchg(&sess->state, SMB2_SESSION_VALID, 939 SMB2_SESSION_EXPIRED) == SMB2_SESSION_VALID) 940 ksmbd_counter_inc(KSMBD_COUNTER_SESSION_TIMEOUTS); 941 return true; 942 } 943 944 /** 945 * smb2_check_user_session() - check for valid session for a user 946 * @work: smb work containing smb request buffer 947 * 948 * Return: 0 on success, otherwise error 949 */ 950 int smb2_check_user_session(struct ksmbd_work *work) 951 { 952 struct smb2_hdr *req_hdr = ksmbd_req_buf_next(work); 953 struct ksmbd_conn *conn = work->conn; 954 unsigned int cmd = le16_to_cpu(req_hdr->Command); 955 unsigned long long sess_id; 956 957 /* 958 * SMB2_NEGOTIATE and SMB2_SESSION_SETUP do not require a session id. 959 * SMB2_ECHO may omit it, but an echo carrying a session id still needs 960 * the session attached to work so that its signature can be checked and 961 * the response can be signed, including after Kerberos expiry. 962 */ 963 if (cmd == SMB2_NEGOTIATE_HE || cmd == SMB2_SESSION_SETUP_HE) 964 return 0; 965 966 sess_id = le64_to_cpu(req_hdr->SessionId); 967 if (cmd == SMB2_ECHO_HE) { 968 /* 969 * ECHO remains valid without a live session, including after 970 * LOGOFF. Attach an existing session only to authenticate a signed 971 * ECHO and sign its response; a stale SessionId is not an error. 972 */ 973 if (!work->next_smb2_rcv_hdr_off && sess_id) 974 work->sess = ksmbd_session_lookup_all_states(conn, sess_id); 975 if (work->sess) { 976 if (!smb2_session_kerberos_expired(work->sess) && 977 work->sess->state != SMB2_SESSION_VALID) { 978 ksmbd_user_session_put(work->sess); 979 work->sess = NULL; 980 } 981 } 982 return 0; 983 } 984 985 if (!ksmbd_conn_good(conn)) 986 return -EIO; 987 988 /* 989 * If request is not the first in Compound request, 990 * Just validate session id in header with work->sess->id. 991 */ 992 if (work->next_smb2_rcv_hdr_off) { 993 if (!work->sess) { 994 pr_err("The first operation in the compound does not have sess\n"); 995 return -EINVAL; 996 } 997 if (sess_id != ULLONG_MAX && work->sess->id != sess_id) { 998 pr_err("session id(%llu) is different with the first operation(%lld)\n", 999 sess_id, work->sess->id); 1000 return -EINVAL; 1001 } 1002 smb2_session_kerberos_expired(work->sess); 1003 if (work->sess->state != SMB2_SESSION_VALID) { 1004 pr_err("compound request on a non-valid session (state %d)\n", 1005 work->sess->state); 1006 if (smb2_session_kerberos_expired(work->sess) && 1007 smb2_session_expired_cmd_allowed(work, cmd)) 1008 return 1; 1009 return smb2_session_kerberos_expired(work->sess) ? 1010 -EKEYEXPIRED : -EINVAL; 1011 } 1012 return 1; 1013 } 1014 1015 /* Check for validity of user session */ 1016 work->sess = ksmbd_session_lookup_all_states(conn, sess_id); 1017 if (work->sess) { 1018 if (smb2_session_kerberos_expired(work->sess)) { 1019 return smb2_session_expired_cmd_allowed(work, cmd) ? 1020 1 : -EKEYEXPIRED; 1021 } 1022 if (work->sess->state != SMB2_SESSION_VALID) { 1023 /* 1024 * Keep the reference for an encrypted request so the caller can 1025 * return STATUS_USER_SESSION_DELETED encrypted with the old key. 1026 */ 1027 if (work->encrypted && 1028 work->sess->state == SMB2_SESSION_EXPIRED && 1029 work->sess->enc) 1030 return -ENOENT; 1031 ksmbd_user_session_put(work->sess); 1032 work->sess = NULL; 1033 return -ENOENT; 1034 } 1035 return 1; 1036 } 1037 ksmbd_debug(SMB, "Invalid user session, Uid %llu\n", sess_id); 1038 return -ENOENT; 1039 } 1040 1041 /** 1042 * smb2_get_name() - get filename string from on the wire smb format 1043 * @src: source buffer 1044 * @maxlen: maxlen of source string 1045 * @local_nls: nls_table pointer 1046 * 1047 * Return: matching converted filename on success, otherwise error ptr 1048 */ 1049 static char * 1050 smb2_get_name(const char *src, const int maxlen, struct nls_table *local_nls) 1051 { 1052 char *name; 1053 1054 name = smb_strndup_from_utf16(src, maxlen, 1, local_nls); 1055 if (IS_ERR(name)) { 1056 pr_err("failed to get name %ld\n", PTR_ERR(name)); 1057 return name; 1058 } 1059 1060 if (*name == '\0') { 1061 kfree(name); 1062 return ERR_PTR(-EINVAL); 1063 } 1064 1065 if (*name == '\\') { 1066 pr_err("not allow directory name included leading slash\n"); 1067 kfree(name); 1068 return ERR_PTR(-EINVAL); 1069 } 1070 1071 ksmbd_conv_path_to_unix(name); 1072 ksmbd_strip_last_slash(name); 1073 return name; 1074 } 1075 1076 /* Link a fully initialized async work item unless the connection is closing. */ 1077 static bool ksmbd_conn_link_async_request(struct ksmbd_conn *conn, 1078 struct ksmbd_work *work) 1079 { 1080 bool linked = false; 1081 1082 spin_lock(&conn->request_lock); 1083 if (!ksmbd_conn_exiting(conn) && !ksmbd_conn_releasing(conn)) { 1084 if (list_empty(&work->async_request_entry)) 1085 list_add_tail(&work->async_request_entry, 1086 &conn->async_requests); 1087 linked = true; 1088 } 1089 spin_unlock(&conn->request_lock); 1090 1091 return linked; 1092 } 1093 1094 int setup_async_work(struct ksmbd_work *work, void (*fn)(void **), void **arg) 1095 { 1096 struct ksmbd_conn *conn = work->conn; 1097 int id; 1098 1099 id = ksmbd_acquire_async_msg_id(&conn->async_ida); 1100 if (id < 0) { 1101 pr_err("Failed to alloc async message id\n"); 1102 return id; 1103 } 1104 work->asynchronous = true; 1105 work->async_id = id; 1106 work->cancel_fn = fn; 1107 work->cancel_argv = arg; 1108 1109 if (!ksmbd_conn_link_async_request(conn, work)) { 1110 work->asynchronous = false; 1111 work->async_id = 0; 1112 work->cancel_fn = NULL; 1113 work->cancel_argv = NULL; 1114 ksmbd_release_id(&conn->async_ida, id); 1115 return -ESHUTDOWN; 1116 } 1117 1118 ksmbd_debug(SMB, 1119 "Send interim Response to inform async request id : %d\n", 1120 work->async_id); 1121 1122 return 0; 1123 } 1124 1125 void release_async_work(struct ksmbd_work *work) 1126 { 1127 struct ksmbd_conn *conn = work->conn; 1128 1129 spin_lock(&conn->request_lock); 1130 list_del_init(&work->async_request_entry); 1131 spin_unlock(&conn->request_lock); 1132 1133 work->asynchronous = 0; 1134 work->cancel_fn = NULL; 1135 kfree(work->cancel_argv); 1136 work->cancel_argv = NULL; 1137 if (work->async_id) { 1138 ksmbd_release_id(&conn->async_ida, work->async_id); 1139 work->async_id = 0; 1140 } 1141 } 1142 1143 static int smb2_send_interim_work(struct ksmbd_work *in_work, 1144 struct ksmbd_work *work, bool eor) 1145 { 1146 int err = 0; 1147 1148 in_work->encrypted = work->encrypted; 1149 if (work->encrypted && work->sess && work->sess->enc && 1150 work->conn->ops->encrypt_resp) { 1151 in_work->sess = work->sess; 1152 err = work->conn->ops->encrypt_resp(in_work); 1153 in_work->sess = NULL; 1154 } 1155 if (err) 1156 return err; 1157 1158 return eor ? ksmbd_conn_write_eor(in_work) : 1159 ksmbd_conn_write(in_work); 1160 } 1161 1162 static int smb2_send_interim_prefix_work(struct ksmbd_work *work) 1163 { 1164 struct ksmbd_work *in_work; 1165 unsigned int len, copied = 0; 1166 char *dst; 1167 int err = -ENOMEM; 1168 int i; 1169 1170 len = get_rfc1002_len(work->iov[0].iov_base); 1171 in_work = ksmbd_alloc_work_struct(); 1172 if (!in_work) 1173 return err; 1174 1175 in_work->response_buf = kvzalloc(len + 4, KSMBD_DEFAULT_GFP); 1176 if (!in_work->response_buf) 1177 goto out; 1178 in_work->response_sz = len + 4; 1179 in_work->conn = work->conn; 1180 dst = in_work->response_buf + 4; 1181 for (i = 1; i <= work->iov_idx; i++) { 1182 if (work->iov[i].iov_len > len - copied) { 1183 err = -EINVAL; 1184 goto out; 1185 } 1186 memcpy(dst + copied, work->iov[i].iov_base, 1187 work->iov[i].iov_len); 1188 copied += work->iov[i].iov_len; 1189 } 1190 if (copied != len) { 1191 err = -EINVAL; 1192 goto out; 1193 } 1194 1195 err = ksmbd_iov_pin_rsp(in_work, dst, len); 1196 if (!err) 1197 err = smb2_send_interim_work(in_work, work, true); 1198 out: 1199 ksmbd_free_work_struct(in_work); 1200 return err; 1201 } 1202 1203 static void smb2_send_interim_compound_prefix(struct ksmbd_work *work) 1204 { 1205 struct smb2_hdr *req_hdr; 1206 struct smb2_hdr *rsp_hdr; 1207 int err; 1208 1209 if (!work->next_smb2_rcv_hdr_off || 1210 !work->next_smb2_rsp_hdr_off || 1211 work->curr_smb2_rsp_hdr_off == work->next_smb2_rsp_hdr_off || 1212 !work->iov_idx) 1213 return; 1214 1215 req_hdr = ksmbd_req_buf_next(work); 1216 /* Detach only the final async command from the completed prefix. */ 1217 if (req_hdr->NextCommand) 1218 return; 1219 1220 /* 1221 * The responses before the async command are sent as a standalone 1222 * compound response. The last response in this prefix must terminate 1223 * the chain. 1224 */ 1225 rsp_hdr = ksmbd_resp_buf_curr(work); 1226 rsp_hdr->NextCommand = 0; 1227 if ((rsp_hdr->Flags & SMB2_FLAGS_SIGNED) && work->sess && 1228 work->conn->ops->set_sign_rsp) 1229 work->conn->ops->set_sign_rsp(work); 1230 1231 err = smb2_send_interim_prefix_work(work); 1232 if (err) 1233 ksmbd_debug(SMB, "failed to send compound interim prefix: %d\n", 1234 err); 1235 1236 work->iov_idx = 0; 1237 work->iov_cnt = 0; 1238 work->curr_smb2_rsp_hdr_off = work->next_smb2_rsp_hdr_off; 1239 *(__be32 *)work->response_buf = 0; 1240 1241 rsp_hdr = ksmbd_resp_buf_next(work); 1242 rsp_hdr->Flags &= ~SMB2_FLAGS_RELATED_OPERATIONS; 1243 } 1244 1245 void smb2_send_interim_resp(struct ksmbd_work *work, __le32 status) 1246 { 1247 struct smb2_hdr *rsp_hdr; 1248 struct ksmbd_work *in_work = ksmbd_alloc_work_struct(); 1249 1250 if (!in_work) 1251 return; 1252 1253 if (allocate_interim_rsp_buf(in_work)) { 1254 pr_err("smb_allocate_rsp_buf failed!\n"); 1255 ksmbd_free_work_struct(in_work); 1256 return; 1257 } 1258 1259 if (status == STATUS_PENDING) 1260 smb2_send_interim_compound_prefix(work); 1261 1262 in_work->conn = work->conn; 1263 memcpy(smb_get_msg(in_work->response_buf), ksmbd_resp_buf_next(work), 1264 __SMB2_HEADER_STRUCTURE_SIZE); 1265 1266 rsp_hdr = smb_get_msg(in_work->response_buf); 1267 rsp_hdr->Flags |= SMB2_FLAGS_ASYNC_COMMAND; 1268 rsp_hdr->Id.AsyncId = cpu_to_le64(work->async_id); 1269 smb2_set_err_rsp(in_work); 1270 rsp_hdr->Status = status; 1271 1272 if (smb2_send_interim_work(in_work, work, true)) 1273 ksmbd_debug(SMB, "failed to send interim response\n"); 1274 ksmbd_free_work_struct(in_work); 1275 } 1276 1277 static __le32 smb2_get_reparse_tag_special_file(umode_t mode) 1278 { 1279 if (S_ISDIR(mode) || S_ISREG(mode)) 1280 return 0; 1281 1282 if (S_ISLNK(mode)) 1283 return IO_REPARSE_TAG_LX_SYMLINK_LE; 1284 else if (S_ISFIFO(mode)) 1285 return IO_REPARSE_TAG_LX_FIFO_LE; 1286 else if (S_ISSOCK(mode)) 1287 return IO_REPARSE_TAG_AF_UNIX_LE; 1288 else if (S_ISCHR(mode)) 1289 return IO_REPARSE_TAG_LX_CHR_LE; 1290 else if (S_ISBLK(mode)) 1291 return IO_REPARSE_TAG_LX_BLK_LE; 1292 1293 return 0; 1294 } 1295 1296 /** 1297 * smb2_get_dos_mode() - get file mode in dos format from unix mode 1298 * @stat: kstat containing file mode 1299 * @attribute: attribute flags 1300 * 1301 * Return: converted dos mode 1302 */ 1303 static int smb2_get_dos_mode(struct kstat *stat, int attribute) 1304 { 1305 int attr = 0; 1306 1307 if (S_ISDIR(stat->mode)) { 1308 attr = FILE_ATTRIBUTE_DIRECTORY | 1309 (attribute & (FILE_ATTRIBUTE_HIDDEN | FILE_ATTRIBUTE_SYSTEM)); 1310 } else { 1311 attr = (attribute & 0x00005137) | FILE_ATTRIBUTE_ARCHIVE; 1312 attr &= ~(FILE_ATTRIBUTE_DIRECTORY); 1313 1314 if (smb2_get_reparse_tag_special_file(stat->mode)) 1315 attr |= FILE_ATTRIBUTE_REPARSE_POINT; 1316 } 1317 1318 return attr; 1319 } 1320 1321 static void build_preauth_ctxt(struct smb2_preauth_neg_context *pneg_ctxt, 1322 __le16 hash_id) 1323 { 1324 pneg_ctxt->ContextType = SMB2_PREAUTH_INTEGRITY_CAPABILITIES; 1325 pneg_ctxt->DataLength = cpu_to_le16(38); 1326 pneg_ctxt->HashAlgorithmCount = cpu_to_le16(1); 1327 pneg_ctxt->Reserved = cpu_to_le32(0); 1328 pneg_ctxt->SaltLength = cpu_to_le16(SMB311_SALT_SIZE); 1329 get_random_bytes(pneg_ctxt->Salt, SMB311_SALT_SIZE); 1330 pneg_ctxt->HashAlgorithms = hash_id; 1331 } 1332 1333 static void build_encrypt_ctxt(struct smb2_encryption_neg_context *pneg_ctxt, 1334 __le16 cipher_type) 1335 { 1336 pneg_ctxt->ContextType = SMB2_ENCRYPTION_CAPABILITIES; 1337 pneg_ctxt->DataLength = cpu_to_le16(4); 1338 pneg_ctxt->Reserved = cpu_to_le32(0); 1339 pneg_ctxt->CipherCount = cpu_to_le16(1); 1340 pneg_ctxt->Ciphers[0] = cipher_type; 1341 } 1342 1343 static void build_compress_ctxt(struct smb2_compression_capabilities_context *pneg_ctxt, 1344 __le16 compress_algorithm, bool compress_chained, 1345 bool compress_pattern) 1346 { 1347 /* 1348 * Return only algorithms implemented by ksmbd. Pattern_V1 is advertised 1349 * as a second ID when the client also enabled chained transforms. 1350 */ 1351 pneg_ctxt->ContextType = SMB2_COMPRESSION_CAPABILITIES; 1352 pneg_ctxt->DataLength = cpu_to_le16(compress_pattern ? 12 : 10); 1353 pneg_ctxt->Reserved = cpu_to_le32(0); 1354 pneg_ctxt->CompressionAlgorithmCount = 1355 cpu_to_le16(compress_pattern ? 2 : 1); 1356 pneg_ctxt->Padding = cpu_to_le16(0); 1357 pneg_ctxt->Flags = compress_chained ? 1358 SMB2_COMPRESSION_CAPABILITIES_FLAG_CHAINED : 1359 SMB2_COMPRESSION_CAPABILITIES_FLAG_NONE; 1360 pneg_ctxt->CompressionAlgorithms[0] = compress_algorithm; 1361 pneg_ctxt->CompressionAlgorithms[1] = compress_pattern ? 1362 SMB3_COMPRESS_PATTERN : 0; 1363 pneg_ctxt->CompressionAlgorithms[2] = 0; 1364 pneg_ctxt->CompressionAlgorithms[3] = 0; 1365 } 1366 1367 /** 1368 * build_rdma_ctx() - build an RDMA transform negotiate response context 1369 * @ctxt: response context header to populate 1370 * @transform_ids: bitmap of transforms common to the client and server 1371 * 1372 * Return: encoded negotiate context length 1373 */ 1374 static int build_rdma_ctx(struct smb2_neg_context *ctxt, 1375 unsigned long transform_ids) 1376 { 1377 struct smb2_rdma_transform_capabilities_context *pneg_ctxt; 1378 int count = 0; 1379 1380 pneg_ctxt = (void *)ctxt; 1381 pneg_ctxt->ContextType = SMB2_RDMA_TRANSFORM_CAPABILITIES; 1382 pneg_ctxt->Reserved = 0; 1383 pneg_ctxt->Reserved1 = 0; 1384 pneg_ctxt->Reserved2 = 0; 1385 if (transform_ids & BIT(SMB2_RDMA_TRANSFORM_ENCRYPTION)) 1386 pneg_ctxt->RDMATransformIds[count++] = 1387 cpu_to_le16(SMB2_RDMA_TRANSFORM_ENCRYPTION); 1388 if (!count) 1389 pneg_ctxt->RDMATransformIds[count++] = 1390 cpu_to_le16(SMB2_RDMA_TRANSFORM_NONE); 1391 1392 pneg_ctxt->TransformCount = cpu_to_le16(count); 1393 pneg_ctxt->DataLength = cpu_to_le16(8 + count * sizeof(__le16)); 1394 return sizeof(struct smb2_neg_context) + 1395 le16_to_cpu(pneg_ctxt->DataLength); 1396 } 1397 1398 static void build_sign_cap_ctxt(struct smb2_signing_capabilities *pneg_ctxt, 1399 __le16 sign_algo) 1400 { 1401 pneg_ctxt->ContextType = SMB2_SIGNING_CAPABILITIES; 1402 pneg_ctxt->DataLength = 1403 cpu_to_le16((sizeof(struct smb2_signing_capabilities) + 2) 1404 - sizeof(struct smb2_neg_context)); 1405 pneg_ctxt->Reserved = cpu_to_le32(0); 1406 pneg_ctxt->SigningAlgorithmCount = cpu_to_le16(1); 1407 pneg_ctxt->SigningAlgorithms[0] = sign_algo; 1408 } 1409 1410 static void build_posix_ctxt(struct smb2_posix_neg_context *pneg_ctxt) 1411 { 1412 pneg_ctxt->ContextType = SMB2_POSIX_EXTENSIONS_AVAILABLE; 1413 pneg_ctxt->DataLength = cpu_to_le16(POSIX_CTXT_DATA_LEN); 1414 /* SMB2_CREATE_TAG_POSIX is "0x93AD25509CB411E7B42383DE968BCD7C" */ 1415 pneg_ctxt->Name[0] = 0x93; 1416 pneg_ctxt->Name[1] = 0xAD; 1417 pneg_ctxt->Name[2] = 0x25; 1418 pneg_ctxt->Name[3] = 0x50; 1419 pneg_ctxt->Name[4] = 0x9C; 1420 pneg_ctxt->Name[5] = 0xB4; 1421 pneg_ctxt->Name[6] = 0x11; 1422 pneg_ctxt->Name[7] = 0xE7; 1423 pneg_ctxt->Name[8] = 0xB4; 1424 pneg_ctxt->Name[9] = 0x23; 1425 pneg_ctxt->Name[10] = 0x83; 1426 pneg_ctxt->Name[11] = 0xDE; 1427 pneg_ctxt->Name[12] = 0x96; 1428 pneg_ctxt->Name[13] = 0x8B; 1429 pneg_ctxt->Name[14] = 0xCD; 1430 pneg_ctxt->Name[15] = 0x7C; 1431 } 1432 1433 static unsigned int assemble_neg_contexts(struct ksmbd_conn *conn, 1434 struct smb2_negotiate_rsp *rsp) 1435 { 1436 char * const pneg_ctxt = (char *)rsp + 1437 le32_to_cpu(rsp->NegotiateContextOffset); 1438 int neg_ctxt_cnt = 1; 1439 int ctxt_size; 1440 1441 ksmbd_debug(SMB, 1442 "assemble SMB2_PREAUTH_INTEGRITY_CAPABILITIES context\n"); 1443 build_preauth_ctxt((struct smb2_preauth_neg_context *)pneg_ctxt, 1444 conn->preauth_info->Preauth_HashId); 1445 ctxt_size = sizeof(struct smb2_preauth_neg_context); 1446 1447 if (conn->cipher_type) { 1448 /* Round to 8 byte boundary */ 1449 ctxt_size = round_up(ctxt_size, 8); 1450 ksmbd_debug(SMB, 1451 "assemble SMB2_ENCRYPTION_CAPABILITIES context\n"); 1452 build_encrypt_ctxt((struct smb2_encryption_neg_context *) 1453 (pneg_ctxt + ctxt_size), 1454 conn->cipher_type); 1455 neg_ctxt_cnt++; 1456 ctxt_size += sizeof(struct smb2_encryption_neg_context) + 2; 1457 } 1458 1459 if (conn->compress_algorithm != SMB3_COMPRESS_NONE) { 1460 ctxt_size = round_up(ctxt_size, 8); 1461 ksmbd_debug(SMB, 1462 "assemble SMB2_COMPRESSION_CAPABILITIES context\n"); 1463 build_compress_ctxt((struct smb2_compression_capabilities_context *) 1464 (pneg_ctxt + ctxt_size), 1465 conn->compress_algorithm, 1466 conn->compress_chained, 1467 conn->compress_pattern); 1468 neg_ctxt_cnt++; 1469 ctxt_size += sizeof(struct smb2_neg_context) + 1470 (conn->compress_pattern ? 12 : 10); 1471 } 1472 1473 if (conn->rdma_transform_negotiated) { 1474 struct smb2_neg_context *rdma_ctxt; 1475 1476 ctxt_size = round_up(ctxt_size, 8); 1477 ksmbd_debug(SMB, 1478 "assemble SMB2_RDMA_TRANSFORM_CAPABILITIES context\n"); 1479 rdma_ctxt = (void *)(pneg_ctxt + ctxt_size); 1480 ctxt_size += build_rdma_ctx(rdma_ctxt, 1481 conn->rdma_transform_ids); 1482 neg_ctxt_cnt++; 1483 } 1484 1485 if (conn->posix_ext_supported) { 1486 ctxt_size = round_up(ctxt_size, 8); 1487 ksmbd_debug(SMB, 1488 "assemble SMB2_POSIX_EXTENSIONS_AVAILABLE context\n"); 1489 build_posix_ctxt((struct smb2_posix_neg_context *) 1490 (pneg_ctxt + ctxt_size)); 1491 neg_ctxt_cnt++; 1492 ctxt_size += sizeof(struct smb2_posix_neg_context); 1493 } 1494 1495 if (conn->signing_negotiated) { 1496 ctxt_size = round_up(ctxt_size, 8); 1497 ksmbd_debug(SMB, 1498 "assemble SMB2_SIGNING_CAPABILITIES context\n"); 1499 build_sign_cap_ctxt((struct smb2_signing_capabilities *) 1500 (pneg_ctxt + ctxt_size), 1501 conn->signing_algorithm); 1502 neg_ctxt_cnt++; 1503 ctxt_size += sizeof(struct smb2_signing_capabilities) + 2; 1504 } 1505 1506 rsp->NegotiateContextCount = cpu_to_le16(neg_ctxt_cnt); 1507 return ctxt_size + AUTH_GSS_PADDING; 1508 } 1509 1510 static __le32 decode_preauth_ctxt(struct ksmbd_conn *conn, 1511 struct smb2_preauth_neg_context *pneg_ctxt, 1512 int ctxt_len) 1513 { 1514 /* 1515 * sizeof(smb2_preauth_neg_context) assumes SMB311_SALT_SIZE Salt, 1516 * which may not be present. Only check for used HashAlgorithms[1]. 1517 */ 1518 if (ctxt_len < 1519 sizeof(struct smb2_neg_context) + MIN_PREAUTH_CTXT_DATA_LEN) 1520 return STATUS_INVALID_PARAMETER; 1521 1522 if (pneg_ctxt->HashAlgorithms != SMB2_PREAUTH_INTEGRITY_SHA512) 1523 return STATUS_SMB_NO_PREAUTH_INTEGRITY_HASH_OVERLAP; 1524 1525 conn->preauth_info->Preauth_HashId = SMB2_PREAUTH_INTEGRITY_SHA512; 1526 return STATUS_SUCCESS; 1527 } 1528 1529 static void decode_encrypt_ctxt(struct ksmbd_conn *conn, 1530 struct smb2_encryption_neg_context *pneg_ctxt, 1531 int ctxt_len) 1532 { 1533 int cph_cnt; 1534 int i, cphs_size; 1535 1536 if (sizeof(struct smb2_encryption_neg_context) > ctxt_len) { 1537 pr_err("Invalid SMB2_ENCRYPTION_CAPABILITIES context size\n"); 1538 return; 1539 } 1540 1541 conn->cipher_type = 0; 1542 1543 cph_cnt = le16_to_cpu(pneg_ctxt->CipherCount); 1544 cphs_size = cph_cnt * sizeof(__le16); 1545 1546 if (sizeof(struct smb2_encryption_neg_context) + cphs_size > 1547 ctxt_len) { 1548 pr_err("Invalid cipher count(%d)\n", cph_cnt); 1549 return; 1550 } 1551 1552 if (server_conf.flags & KSMBD_GLOBAL_FLAG_SMB2_ENCRYPTION_OFF) 1553 return; 1554 1555 for (i = 0; i < cph_cnt; i++) { 1556 if (pneg_ctxt->Ciphers[i] == SMB2_ENCRYPTION_AES128_GCM || 1557 pneg_ctxt->Ciphers[i] == SMB2_ENCRYPTION_AES128_CCM || 1558 pneg_ctxt->Ciphers[i] == SMB2_ENCRYPTION_AES256_CCM || 1559 pneg_ctxt->Ciphers[i] == SMB2_ENCRYPTION_AES256_GCM) { 1560 ksmbd_debug(SMB, "Cipher ID = 0x%x\n", 1561 pneg_ctxt->Ciphers[i]); 1562 conn->cipher_type = pneg_ctxt->Ciphers[i]; 1563 break; 1564 } 1565 } 1566 } 1567 1568 /** 1569 * smb3_encryption_negotiated() - checks if server and client agreed on enabling encryption 1570 * @conn: smb connection 1571 * 1572 * Return: true if connection should be encrypted, else false 1573 */ 1574 bool smb3_encryption_negotiated(struct ksmbd_conn *conn) 1575 { 1576 if (!conn->ops->generate_encryptionkey) 1577 return false; 1578 1579 /* 1580 * SMB 3.0 and 3.0.2 dialects use the SMB2_GLOBAL_CAP_ENCRYPTION flag. 1581 * SMB 3.1.1 uses the cipher_type field. 1582 */ 1583 return (conn->vals->req_capabilities & SMB2_GLOBAL_CAP_ENCRYPTION) || 1584 conn->cipher_type; 1585 } 1586 1587 static __le32 decode_compress_ctxt(struct ksmbd_conn *conn, 1588 struct smb2_compression_capabilities_context *pneg_ctxt, 1589 int ctxt_len) 1590 { 1591 int alg_cnt, algs_size, i; 1592 __le16 *algs; 1593 1594 if (sizeof(struct smb2_neg_context) + 10 > ctxt_len) { 1595 pr_err("Invalid SMB2_COMPRESSION_CAPABILITIES context length\n"); 1596 return STATUS_INVALID_PARAMETER; 1597 } 1598 1599 conn->compress_algorithm = SMB3_COMPRESS_NONE; 1600 conn->compress_chained = false; 1601 conn->compress_pattern = false; 1602 1603 alg_cnt = le16_to_cpu(pneg_ctxt->CompressionAlgorithmCount); 1604 if (!alg_cnt) 1605 return STATUS_INVALID_PARAMETER; 1606 1607 if (pneg_ctxt->Flags != SMB2_COMPRESSION_CAPABILITIES_FLAG_NONE && 1608 pneg_ctxt->Flags != SMB2_COMPRESSION_CAPABILITIES_FLAG_CHAINED) 1609 return STATUS_INVALID_PARAMETER; 1610 1611 algs_size = alg_cnt * sizeof(__le16); 1612 if (sizeof(struct smb2_neg_context) + 8 + algs_size > ctxt_len) { 1613 pr_err("Invalid compression algorithm count(%d)\n", alg_cnt); 1614 return STATUS_INVALID_PARAMETER; 1615 } 1616 1617 /* 1618 * CompressionAlgorithms[] is declared as a fixed 4-element array, but 1619 * the actual element count is variable (clients such as Windows may 1620 * advertise more). The on-wire length was validated above, so walk the 1621 * algorithms through a pointer to avoid a fixed-array bounds check. 1622 */ 1623 algs = pneg_ctxt->CompressionAlgorithms; 1624 for (i = 0; i < alg_cnt; i++) { 1625 __le16 alg = algs[i]; 1626 1627 /* 1628 * LZ77 is the required general-purpose codec. Pattern_V1 is an 1629 * optional chained payload type and cannot stand alone. 1630 */ 1631 if (alg == SMB3_COMPRESS_LZ77) { 1632 conn->compress_algorithm = alg; 1633 conn->compress_chained = 1634 pneg_ctxt->Flags == 1635 SMB2_COMPRESSION_CAPABILITIES_FLAG_CHAINED; 1636 ksmbd_debug(SMB, "Compression Algorithm ID = 0x%x\n", 1637 le16_to_cpu(alg)); 1638 } else if (alg == SMB3_COMPRESS_PATTERN) { 1639 conn->compress_pattern = true; 1640 } 1641 } 1642 1643 if (conn->compress_algorithm == SMB3_COMPRESS_NONE || 1644 !conn->compress_chained) 1645 conn->compress_pattern = false; 1646 1647 return STATUS_SUCCESS; 1648 } 1649 1650 static void decode_sign_cap_ctxt(struct ksmbd_conn *conn, 1651 struct smb2_signing_capabilities *pneg_ctxt, 1652 int ctxt_len) 1653 { 1654 int sign_algo_cnt; 1655 int i, sign_alos_size; 1656 1657 if (sizeof(struct smb2_signing_capabilities) > ctxt_len) { 1658 pr_err("Invalid SMB2_SIGNING_CAPABILITIES context length\n"); 1659 return; 1660 } 1661 1662 conn->signing_negotiated = false; 1663 sign_algo_cnt = le16_to_cpu(pneg_ctxt->SigningAlgorithmCount); 1664 sign_alos_size = sign_algo_cnt * sizeof(__le16); 1665 1666 if (sizeof(struct smb2_signing_capabilities) + sign_alos_size > 1667 ctxt_len) { 1668 pr_err("Invalid signing algorithm count(%d)\n", sign_algo_cnt); 1669 return; 1670 } 1671 1672 for (i = 0; i < sign_algo_cnt; i++) { 1673 if (pneg_ctxt->SigningAlgorithms[i] == SIGNING_ALG_HMAC_SHA256_LE || 1674 pneg_ctxt->SigningAlgorithms[i] == SIGNING_ALG_AES_CMAC_LE) { 1675 ksmbd_debug(SMB, "Signing Algorithm ID = 0x%x\n", 1676 pneg_ctxt->SigningAlgorithms[i]); 1677 conn->signing_negotiated = true; 1678 conn->signing_algorithm = 1679 pneg_ctxt->SigningAlgorithms[i]; 1680 break; 1681 } 1682 } 1683 } 1684 1685 /** 1686 * decode_rdma_ctx() - decode an RDMA transform negotiate request context 1687 * @conn: connection being negotiated 1688 * @ctxt: request context header to decode 1689 * @ctxt_len: total context length, including the negotiate context header 1690 * 1691 * Record transforms supported by both peers only for SMB Direct connections. 1692 * 1693 * Return: NT status describing the decode result 1694 */ 1695 static __le32 decode_rdma_ctx(struct ksmbd_conn *conn, 1696 struct smb2_neg_context *ctxt, int ctxt_len) 1697 { 1698 struct smb2_rdma_transform_capabilities_context *pneg_ctxt; 1699 unsigned int count, i; 1700 1701 pneg_ctxt = (void *)ctxt; 1702 /* RDMA transforms are a node capability, not just a transport capability. */ 1703 if (!ksmbd_rdma_enabled()) 1704 return STATUS_SUCCESS; 1705 1706 if (ctxt_len < sizeof(*pneg_ctxt)) 1707 return STATUS_INVALID_PARAMETER; 1708 1709 count = le16_to_cpu(pneg_ctxt->TransformCount); 1710 if (!count || count > 1711 (ctxt_len - sizeof(*pneg_ctxt)) / sizeof(__le16)) 1712 return STATUS_INVALID_PARAMETER; 1713 1714 conn->rdma_transform_negotiated = true; 1715 conn->rdma_transform_ids = 0; 1716 for (i = 0; i < count; i++) { 1717 u16 id = le16_to_cpu(pneg_ctxt->RDMATransformIds[i]); 1718 1719 if (id == SMB2_RDMA_TRANSFORM_ENCRYPTION) 1720 conn->rdma_transform_ids |= BIT(id); 1721 } 1722 return STATUS_SUCCESS; 1723 } 1724 1725 static __le32 deassemble_neg_contexts(struct ksmbd_conn *conn, 1726 struct smb2_negotiate_req *req, 1727 unsigned int len_of_smb) 1728 { 1729 /* +4 is to account for the RFC1001 len field */ 1730 struct smb2_neg_context *pctx = (struct smb2_neg_context *)req; 1731 int i = 0, len_of_ctxts; 1732 unsigned int offset = le32_to_cpu(req->NegotiateContextOffset); 1733 unsigned int neg_ctxt_cnt = le16_to_cpu(req->NegotiateContextCount); 1734 __le32 status = STATUS_INVALID_PARAMETER; 1735 int compress_ctxt_cnt = 0, rdma_transform_ctxt_cnt = 0; 1736 1737 ksmbd_debug(SMB, "decoding %d negotiate contexts\n", neg_ctxt_cnt); 1738 if (len_of_smb <= offset) { 1739 ksmbd_debug(SMB, "Invalid response: negotiate context offset\n"); 1740 return status; 1741 } 1742 1743 len_of_ctxts = len_of_smb - offset; 1744 1745 while (i++ < neg_ctxt_cnt) { 1746 int clen, ctxt_len; 1747 1748 if (len_of_ctxts < (int)sizeof(struct smb2_neg_context)) 1749 break; 1750 1751 pctx = (struct smb2_neg_context *)((char *)pctx + offset); 1752 clen = le16_to_cpu(pctx->DataLength); 1753 ctxt_len = clen + sizeof(struct smb2_neg_context); 1754 1755 if (ctxt_len > len_of_ctxts) 1756 break; 1757 1758 if (pctx->ContextType == SMB2_PREAUTH_INTEGRITY_CAPABILITIES) { 1759 ksmbd_debug(SMB, 1760 "deassemble SMB2_PREAUTH_INTEGRITY_CAPABILITIES context\n"); 1761 if (conn->preauth_info->Preauth_HashId) 1762 break; 1763 1764 status = decode_preauth_ctxt(conn, 1765 (struct smb2_preauth_neg_context *)pctx, 1766 ctxt_len); 1767 if (status != STATUS_SUCCESS) 1768 break; 1769 } else if (pctx->ContextType == SMB2_ENCRYPTION_CAPABILITIES) { 1770 ksmbd_debug(SMB, 1771 "deassemble SMB2_ENCRYPTION_CAPABILITIES context\n"); 1772 if (conn->cipher_type) 1773 break; 1774 1775 decode_encrypt_ctxt(conn, 1776 (struct smb2_encryption_neg_context *)pctx, 1777 ctxt_len); 1778 } else if (pctx->ContextType == SMB2_COMPRESSION_CAPABILITIES) { 1779 ksmbd_debug(SMB, 1780 "deassemble SMB2_COMPRESSION_CAPABILITIES context\n"); 1781 if (compress_ctxt_cnt++) { 1782 status = STATUS_INVALID_PARAMETER; 1783 break; 1784 } 1785 1786 status = decode_compress_ctxt(conn, 1787 (struct smb2_compression_capabilities_context *) 1788 pctx, ctxt_len); 1789 if (status != STATUS_SUCCESS) 1790 break; 1791 } else if (pctx->ContextType == SMB2_NETNAME_NEGOTIATE_CONTEXT_ID) { 1792 ksmbd_debug(SMB, 1793 "deassemble SMB2_NETNAME_NEGOTIATE_CONTEXT_ID context\n"); 1794 } else if (pctx->ContextType == SMB2_RDMA_TRANSFORM_CAPABILITIES) { 1795 ksmbd_debug(SMB, 1796 "deassemble SMB2_RDMA_TRANSFORM_CAPABILITIES context\n"); 1797 if (ksmbd_rdma_enabled() && 1798 rdma_transform_ctxt_cnt++) { 1799 status = STATUS_INVALID_PARAMETER; 1800 break; 1801 } 1802 status = decode_rdma_ctx(conn, pctx, ctxt_len); 1803 if (status != STATUS_SUCCESS) 1804 break; 1805 } else if (pctx->ContextType == SMB2_POSIX_EXTENSIONS_AVAILABLE) { 1806 ksmbd_debug(SMB, 1807 "deassemble SMB2_POSIX_EXTENSIONS_AVAILABLE context\n"); 1808 conn->posix_ext_supported = true; 1809 } else if (pctx->ContextType == SMB2_SIGNING_CAPABILITIES) { 1810 ksmbd_debug(SMB, 1811 "deassemble SMB2_SIGNING_CAPABILITIES context\n"); 1812 1813 decode_sign_cap_ctxt(conn, 1814 (struct smb2_signing_capabilities *)pctx, 1815 ctxt_len); 1816 } 1817 1818 /* offsets must be 8 byte aligned */ 1819 offset = (ctxt_len + 7) & ~0x7; 1820 len_of_ctxts -= offset; 1821 } 1822 return status; 1823 } 1824 1825 /** 1826 * smb2_handle_negotiate() - handler for smb2 negotiate command 1827 * @work: smb work containing smb request buffer 1828 * 1829 * The caller holds conn->srv_mutex. 1830 * 1831 * Return: 0 1832 */ 1833 int smb2_handle_negotiate(struct ksmbd_work *work) 1834 { 1835 struct ksmbd_conn *conn = work->conn; 1836 struct smb2_negotiate_req *req = smb_get_msg(work->request_buf); 1837 struct smb2_negotiate_rsp *rsp = smb_get_msg(work->response_buf); 1838 int rc = 0; 1839 unsigned int smb2_buf_len, smb2_neg_size, neg_ctxt_len = 0; 1840 __le32 status; 1841 1842 ksmbd_debug(SMB, "Received negotiate request\n"); 1843 conn->need_neg = false; 1844 smb2_buf_len = get_rfc1002_len(work->request_buf); 1845 smb2_neg_size = offsetof(struct smb2_negotiate_req, Dialects); 1846 if (smb2_neg_size > smb2_buf_len) { 1847 rsp->hdr.Status = STATUS_INVALID_PARAMETER; 1848 rc = -EINVAL; 1849 goto err_out; 1850 } 1851 1852 if (req->DialectCount == 0) { 1853 pr_err("malformed packet\n"); 1854 rsp->hdr.Status = STATUS_INVALID_PARAMETER; 1855 rc = -EINVAL; 1856 goto err_out; 1857 } 1858 1859 if (conn->dialect == SMB311_PROT_ID) { 1860 unsigned int nego_ctxt_off = le32_to_cpu(req->NegotiateContextOffset); 1861 1862 if (smb2_buf_len < nego_ctxt_off) { 1863 rsp->hdr.Status = STATUS_INVALID_PARAMETER; 1864 rc = -EINVAL; 1865 goto err_out; 1866 } 1867 1868 if (smb2_neg_size > nego_ctxt_off) { 1869 rsp->hdr.Status = STATUS_INVALID_PARAMETER; 1870 rc = -EINVAL; 1871 goto err_out; 1872 } 1873 1874 if (smb2_neg_size + le16_to_cpu(req->DialectCount) * sizeof(__le16) > 1875 nego_ctxt_off) { 1876 rsp->hdr.Status = STATUS_INVALID_PARAMETER; 1877 rc = -EINVAL; 1878 goto err_out; 1879 } 1880 } else { 1881 if (smb2_neg_size + le16_to_cpu(req->DialectCount) * sizeof(__le16) > 1882 smb2_buf_len) { 1883 rsp->hdr.Status = STATUS_INVALID_PARAMETER; 1884 rc = -EINVAL; 1885 goto err_out; 1886 } 1887 } 1888 1889 conn->cli_cap = le32_to_cpu(req->Capabilities); 1890 switch (conn->dialect) { 1891 case SMB311_PROT_ID: 1892 conn->preauth_info = 1893 kzalloc_obj(struct preauth_integrity_info, 1894 KSMBD_DEFAULT_GFP); 1895 if (!conn->preauth_info) { 1896 rc = -ENOMEM; 1897 rsp->hdr.Status = STATUS_INSUFFICIENT_RESOURCES; 1898 goto err_out; 1899 } 1900 1901 status = deassemble_neg_contexts(conn, req, 1902 get_rfc1002_len(work->request_buf)); 1903 if (status != STATUS_SUCCESS) { 1904 pr_err("deassemble_neg_contexts error(0x%x)\n", 1905 status); 1906 rsp->hdr.Status = status; 1907 rc = -EINVAL; 1908 kfree(conn->preauth_info); 1909 conn->preauth_info = NULL; 1910 goto err_out; 1911 } 1912 if (!conn->cipher_type) 1913 conn->rdma_transform_ids &= 1914 ~BIT(SMB2_RDMA_TRANSFORM_ENCRYPTION); 1915 ksmbd_debug(RDMA, 1916 "RDMA transform negotiation: transport=%s context=%s encryption=%s cipher=0x%04x\n", 1917 conn->transport->ops->rdma_read ? "rdma" : "tcp", 1918 conn->rdma_transform_negotiated ? "present" : "absent", 1919 conn->rdma_transform_ids & 1920 BIT(SMB2_RDMA_TRANSFORM_ENCRYPTION) ? "enabled" : "disabled", 1921 le16_to_cpu(conn->cipher_type)); 1922 1923 rc = init_smb3_11_server(conn); 1924 if (rc < 0) { 1925 rsp->hdr.Status = STATUS_INVALID_PARAMETER; 1926 kfree(conn->preauth_info); 1927 conn->preauth_info = NULL; 1928 goto err_out; 1929 } 1930 1931 ksmbd_gen_preauth_integrity_hash(conn, 1932 work->request_buf, 1933 conn->preauth_info->Preauth_HashValue); 1934 rsp->NegotiateContextOffset = 1935 cpu_to_le32(OFFSET_OF_NEG_CONTEXT); 1936 neg_ctxt_len = assemble_neg_contexts(conn, rsp); 1937 break; 1938 case SMB302_PROT_ID: 1939 init_smb3_02_server(conn); 1940 break; 1941 case SMB30_PROT_ID: 1942 init_smb3_0_server(conn); 1943 break; 1944 case SMB21_PROT_ID: 1945 init_smb2_1_server(conn); 1946 break; 1947 case SMB2X_PROT_ID: 1948 case BAD_PROT_ID: 1949 default: 1950 ksmbd_debug(SMB, "Server dialect :0x%x not supported\n", 1951 conn->dialect); 1952 rsp->hdr.Status = STATUS_NOT_SUPPORTED; 1953 rc = -EINVAL; 1954 goto err_out; 1955 } 1956 rsp->Capabilities = cpu_to_le32(conn->vals->req_capabilities); 1957 1958 /* For stats */ 1959 conn->connection_type = conn->dialect; 1960 1961 rsp->MaxTransactSize = cpu_to_le32(conn->vals->max_trans_size); 1962 rsp->MaxReadSize = cpu_to_le32(conn->vals->max_read_size); 1963 rsp->MaxWriteSize = cpu_to_le32(conn->vals->max_write_size); 1964 1965 memcpy(conn->ClientGUID, req->ClientGUID, 1966 SMB2_CLIENT_GUID_SIZE); 1967 conn->cli_sec_mode = le16_to_cpu(req->SecurityMode); 1968 1969 rsp->StructureSize = cpu_to_le16(65); 1970 rsp->DialectRevision = cpu_to_le16(conn->dialect); 1971 /* Not setting conn guid rsp->ServerGUID, as it 1972 * not used by client for identifying server 1973 */ 1974 memset(rsp->ServerGUID, 0, SMB2_CLIENT_GUID_SIZE); 1975 1976 rsp->SystemTime = cpu_to_le64(ksmbd_systime()); 1977 rsp->ServerStartTime = 0; 1978 ksmbd_debug(SMB, "negotiate context offset %d, count %d\n", 1979 le32_to_cpu(rsp->NegotiateContextOffset), 1980 le16_to_cpu(rsp->NegotiateContextCount)); 1981 1982 rsp->SecurityBufferOffset = cpu_to_le16(128); 1983 rsp->SecurityBufferLength = cpu_to_le16(AUTH_GSS_LENGTH); 1984 ksmbd_copy_gss_neg_header((char *)(&rsp->hdr) + 1985 le16_to_cpu(rsp->SecurityBufferOffset)); 1986 1987 rsp->SecurityMode = SMB2_NEGOTIATE_SIGNING_ENABLED_LE; 1988 conn->use_spnego = true; 1989 1990 if (req->SecurityMode & SMB2_NEGOTIATE_SIGNING_REQUIRED_LE) 1991 conn->sign = true; 1992 if (server_conf.signing == KSMBD_CONFIG_OPT_MANDATORY) { 1993 server_conf.enforced_signing = true; 1994 rsp->SecurityMode |= SMB2_NEGOTIATE_SIGNING_REQUIRED_LE; 1995 conn->sign = true; 1996 } 1997 1998 conn->srv_sec_mode = le16_to_cpu(rsp->SecurityMode); 1999 ksmbd_conn_set_need_setup(conn); 2000 2001 err_out: 2002 if (rc && rsp->hdr.Status == STATUS_SUCCESS) 2003 rsp->hdr.Status = STATUS_INSUFFICIENT_RESOURCES; 2004 2005 if (!rc) 2006 rc = ksmbd_iov_pin_rsp(work, rsp, 2007 sizeof(struct smb2_negotiate_rsp) + 2008 AUTH_GSS_LENGTH + neg_ctxt_len); 2009 if (rc < 0) 2010 smb2_set_err_rsp(work); 2011 return rc; 2012 } 2013 2014 static int alloc_preauth_hash(struct ksmbd_session *sess, 2015 struct ksmbd_conn *conn) 2016 { 2017 if (sess->Preauth_HashValue) 2018 return 0; 2019 2020 if (!conn->preauth_info) 2021 return -ENOMEM; 2022 2023 sess->Preauth_HashValue = kmemdup(conn->preauth_info->Preauth_HashValue, 2024 PREAUTH_HASHVALUE_SIZE, KSMBD_DEFAULT_GFP); 2025 if (!sess->Preauth_HashValue) 2026 return -ENOMEM; 2027 2028 return 0; 2029 } 2030 2031 static int generate_preauth_hash(struct ksmbd_work *work) 2032 { 2033 struct ksmbd_conn *conn = work->conn; 2034 struct ksmbd_session *sess = work->sess; 2035 u8 *preauth_hash; 2036 2037 if (conn->dialect != SMB311_PROT_ID) 2038 return 0; 2039 2040 if (conn->binding) { 2041 struct preauth_session *preauth_sess; 2042 2043 preauth_sess = ksmbd_preauth_session_lookup(conn, sess->id); 2044 if (!preauth_sess) { 2045 preauth_sess = ksmbd_preauth_session_alloc(conn, sess->id); 2046 if (!preauth_sess) 2047 return -ENOMEM; 2048 } 2049 2050 preauth_hash = preauth_sess->Preauth_HashValue; 2051 } else { 2052 if (!sess->Preauth_HashValue) 2053 if (alloc_preauth_hash(sess, conn)) 2054 return -ENOMEM; 2055 preauth_hash = sess->Preauth_HashValue; 2056 } 2057 2058 ksmbd_gen_preauth_integrity_hash(conn, work->request_buf, preauth_hash); 2059 return 0; 2060 } 2061 2062 static int decode_negotiation_token(struct ksmbd_conn *conn, 2063 struct negotiate_message *negblob, 2064 size_t sz) 2065 { 2066 if (!conn->use_spnego) 2067 return -EINVAL; 2068 2069 if (ksmbd_decode_negTokenInit((char *)negblob, sz, conn)) { 2070 if (ksmbd_decode_negTokenTarg((char *)negblob, sz, conn)) { 2071 conn->auth_mechs |= KSMBD_AUTH_NTLMSSP; 2072 conn->preferred_auth_mech = KSMBD_AUTH_NTLMSSP; 2073 conn->use_spnego = false; 2074 } 2075 } 2076 return 0; 2077 } 2078 2079 static int ntlm_negotiate(struct ksmbd_work *work, 2080 struct negotiate_message *negblob, 2081 size_t negblob_len, struct smb2_sess_setup_rsp *rsp) 2082 { 2083 struct challenge_message *chgblob; 2084 unsigned char *spnego_blob = NULL; 2085 u16 spnego_blob_len; 2086 char *neg_blob; 2087 int sz, rc; 2088 2089 ksmbd_debug(SMB, "negotiate phase\n"); 2090 rc = ksmbd_decode_ntlmssp_neg_blob(negblob, negblob_len, work->conn); 2091 if (rc) 2092 return rc; 2093 2094 sz = le16_to_cpu(rsp->SecurityBufferOffset); 2095 chgblob = (struct challenge_message *)rsp->Buffer; 2096 memset(chgblob, 0, sizeof(struct challenge_message)); 2097 2098 if (!work->conn->use_spnego) { 2099 sz = ksmbd_build_ntlmssp_challenge_blob(chgblob, work->conn); 2100 if (sz < 0) 2101 return -ENOMEM; 2102 2103 rsp->SecurityBufferLength = cpu_to_le16(sz); 2104 return 0; 2105 } 2106 2107 sz = sizeof(struct challenge_message); 2108 sz += (strlen(ksmbd_netbios_name()) * 2 + 1 + 4) * 6; 2109 2110 neg_blob = kzalloc(sz, KSMBD_DEFAULT_GFP); 2111 if (!neg_blob) 2112 return -ENOMEM; 2113 2114 chgblob = (struct challenge_message *)neg_blob; 2115 sz = ksmbd_build_ntlmssp_challenge_blob(chgblob, work->conn); 2116 if (sz < 0) { 2117 rc = -ENOMEM; 2118 goto out; 2119 } 2120 2121 rc = build_spnego_ntlmssp_neg_blob(&spnego_blob, &spnego_blob_len, 2122 neg_blob, sz); 2123 if (rc) { 2124 rc = -ENOMEM; 2125 goto out; 2126 } 2127 2128 memcpy(rsp->Buffer, spnego_blob, spnego_blob_len); 2129 rsp->SecurityBufferLength = cpu_to_le16(spnego_blob_len); 2130 2131 out: 2132 kfree(spnego_blob); 2133 kfree(neg_blob); 2134 return rc; 2135 } 2136 2137 static struct authenticate_message *user_authblob(struct ksmbd_conn *conn, 2138 struct smb2_sess_setup_req *req) 2139 { 2140 int sz; 2141 2142 if (conn->use_spnego && conn->mechToken) 2143 return (struct authenticate_message *)conn->mechToken; 2144 2145 sz = le16_to_cpu(req->SecurityBufferOffset); 2146 return (struct authenticate_message *)((char *)&req->hdr.ProtocolId 2147 + sz); 2148 } 2149 2150 static struct ksmbd_user *session_user(struct ksmbd_conn *conn, 2151 struct smb2_sess_setup_req *req) 2152 { 2153 struct authenticate_message *authblob; 2154 struct ksmbd_user *user; 2155 char *name; 2156 unsigned int name_off, name_len, secbuf_len; 2157 2158 if (conn->use_spnego && conn->mechToken) 2159 secbuf_len = conn->mechTokenLen; 2160 else 2161 secbuf_len = le16_to_cpu(req->SecurityBufferLength); 2162 if (secbuf_len < sizeof(struct authenticate_message)) { 2163 ksmbd_debug(SMB, "blob len %d too small\n", secbuf_len); 2164 return NULL; 2165 } 2166 authblob = user_authblob(conn, req); 2167 name_off = le32_to_cpu(authblob->UserName.BufferOffset); 2168 name_len = le16_to_cpu(authblob->UserName.Length); 2169 2170 if (secbuf_len < (u64)name_off + name_len) 2171 return NULL; 2172 2173 name = smb_strndup_from_utf16((const char *)authblob + name_off, 2174 name_len, 2175 true, 2176 conn->local_nls); 2177 if (IS_ERR(name)) { 2178 pr_err("cannot allocate memory\n"); 2179 return NULL; 2180 } 2181 2182 ksmbd_debug(SMB, "session setup request for user %s\n", name); 2183 user = ksmbd_login_user(name); 2184 kfree(name); 2185 return user; 2186 } 2187 2188 static int ntlm_authenticate(struct ksmbd_work *work, 2189 struct smb2_sess_setup_req *req, 2190 struct smb2_sess_setup_rsp *rsp) 2191 { 2192 struct ksmbd_conn *conn = work->conn; 2193 struct ksmbd_session *sess = work->sess; 2194 struct ksmbd_user *user; 2195 char channel_key[CIFS_KEY_SIZE] = {}; 2196 char *auth_key = conn->binding ? channel_key : sess->sess_key; 2197 u64 prev_id; 2198 bool binding = conn->binding; 2199 int sz, rc; 2200 2201 ksmbd_debug(SMB, "authenticate phase\n"); 2202 if (conn->use_spnego) { 2203 unsigned char *spnego_blob; 2204 u16 spnego_blob_len; 2205 2206 rc = build_spnego_ntlmssp_auth_blob(&spnego_blob, 2207 &spnego_blob_len, 2208 0); 2209 if (rc) 2210 return -ENOMEM; 2211 2212 memcpy(rsp->Buffer, spnego_blob, spnego_blob_len); 2213 rsp->SecurityBufferLength = cpu_to_le16(spnego_blob_len); 2214 kfree(spnego_blob); 2215 } 2216 2217 user = session_user(conn, req); 2218 if (!user) { 2219 ksmbd_debug(SMB, "Unknown user name or an error\n"); 2220 return -EPERM; 2221 } 2222 2223 if (sess->state == SMB2_SESSION_VALID) { 2224 /* 2225 * Reuse session if anonymous try to connect 2226 * on reauthetication. 2227 */ 2228 if (conn->binding == false && ksmbd_anonymous_user(user)) { 2229 ksmbd_free_user(user); 2230 return 0; 2231 } 2232 2233 if (!ksmbd_compare_user(sess->user, user)) { 2234 ksmbd_free_user(user); 2235 return -EKEYREJECTED; 2236 } 2237 ksmbd_free_user(user); 2238 } else { 2239 sess->user = user; 2240 } 2241 2242 if (conn->binding == false && user_guest(sess->user)) { 2243 rsp->SessionFlags = SMB2_SESSION_FLAG_IS_GUEST_LE; 2244 } else { 2245 struct authenticate_message *authblob; 2246 2247 authblob = user_authblob(conn, req); 2248 if (conn->use_spnego && conn->mechToken) 2249 sz = conn->mechTokenLen; 2250 else 2251 sz = le16_to_cpu(req->SecurityBufferLength); 2252 rc = ksmbd_decode_ntlmssp_auth_blob(authblob, sz, conn, sess, 2253 auth_key); 2254 if (rc) { 2255 set_user_flag(sess->user, KSMBD_USER_FLAG_BAD_PASSWORD); 2256 ksmbd_debug(SMB, "authentication failed\n"); 2257 rc = -EPERM; 2258 goto out; 2259 } 2260 } 2261 2262 prev_id = le64_to_cpu(req->PreviousSessionId); 2263 if (prev_id && prev_id != sess->id) 2264 destroy_previous_session(conn, sess->user, prev_id); 2265 2266 /* 2267 * If session state is SMB2_SESSION_VALID, We can assume 2268 * that it is reauthentication. And the user/password 2269 * has been verified, so return it here. 2270 */ 2271 if (sess->state == SMB2_SESSION_VALID) { 2272 if (conn->binding) 2273 goto binding_session; 2274 return 0; 2275 } 2276 2277 if ((rsp->SessionFlags != SMB2_SESSION_FLAG_IS_GUEST_LE && 2278 (conn->sign || server_conf.enforced_signing)) || 2279 (req->SecurityMode & SMB2_NEGOTIATE_SIGNING_REQUIRED)) 2280 sess->sign = true; 2281 2282 if (smb3_encryption_negotiated(conn) && 2283 !(req->Flags & SMB2_SESSION_REQ_FLAG_BINDING)) { 2284 conn->ops->generate_encryptionkey(conn, sess); 2285 sess->enc = true; 2286 if (server_conf.flags & KSMBD_GLOBAL_FLAG_SMB2_ENCRYPTION) 2287 rsp->SessionFlags = SMB2_SESSION_FLAG_ENCRYPT_DATA_LE; 2288 /* 2289 * signing is disable if encryption is enable 2290 * on this session 2291 */ 2292 sess->sign = false; 2293 } 2294 2295 binding_session: 2296 if (conn->dialect >= SMB30_PROT_ID) { 2297 rc = register_session_channel(sess, conn, auth_key); 2298 if (rc) 2299 goto out; 2300 } 2301 2302 if (conn->ops->generate_signingkey) { 2303 rc = conn->ops->generate_signingkey(sess, conn); 2304 if (rc) { 2305 ksmbd_debug(SMB, "SMB3 signing key generation failed\n"); 2306 rc = -EINVAL; 2307 goto out; 2308 } 2309 } 2310 2311 if (!ksmbd_conn_lookup_dialect(conn)) { 2312 pr_err("fail to verify the dialect\n"); 2313 rc = -ENOENT; 2314 goto out; 2315 } 2316 rc = 0; 2317 out: 2318 if (binding) 2319 memzero_explicit(channel_key, sizeof(channel_key)); 2320 return rc; 2321 } 2322 2323 #ifdef CONFIG_SMB_SERVER_KERBEROS5 2324 static int krb5_authenticate(struct ksmbd_work *work, 2325 struct smb2_sess_setup_req *req, 2326 struct smb2_sess_setup_rsp *rsp) 2327 { 2328 struct ksmbd_conn *conn = work->conn; 2329 struct ksmbd_session *sess = work->sess; 2330 char *in_blob, *out_blob; 2331 char channel_key[CIFS_KEY_SIZE] = {}; 2332 char reauth_key[CIFS_KEY_SIZE] = {}; 2333 char *auth_key = conn->binding ? channel_key : 2334 (work->session_setup_reauth ? reauth_key : sess->sess_key); 2335 u64 prev_sess_id; 2336 bool binding = conn->binding; 2337 int in_len, out_len; 2338 int retval; 2339 2340 in_blob = (char *)&req->hdr.ProtocolId + 2341 le16_to_cpu(req->SecurityBufferOffset); 2342 in_len = le16_to_cpu(req->SecurityBufferLength); 2343 out_blob = (char *)&rsp->hdr.ProtocolId + 2344 le16_to_cpu(rsp->SecurityBufferOffset); 2345 out_len = work->response_sz - work->next_smb2_rsp_hdr_off - 2346 (le16_to_cpu(rsp->SecurityBufferOffset) + 4); 2347 2348 retval = ksmbd_krb5_authenticate(sess, in_blob, in_len, 2349 out_blob, &out_len, auth_key); 2350 if (retval) { 2351 ksmbd_debug(SMB, "krb5 authentication failed\n"); 2352 if (retval != -EKEYREJECTED) 2353 retval = -EPERM; 2354 goto out; 2355 } 2356 2357 /* Check previous session */ 2358 prev_sess_id = le64_to_cpu(req->PreviousSessionId); 2359 if (prev_sess_id && prev_sess_id != sess->id) 2360 destroy_previous_session(conn, sess->user, prev_sess_id); 2361 2362 rsp->SecurityBufferLength = cpu_to_le16(out_len); 2363 2364 /* 2365 * If session state is SMB2_SESSION_VALID, We can assume 2366 * that it is reauthentication. And the user/password 2367 * has been verified, so return it here. 2368 */ 2369 if (sess->state == SMB2_SESSION_VALID && !work->session_setup_reauth) { 2370 if (conn->binding) 2371 goto binding_session; 2372 return 0; 2373 } 2374 2375 /* 2376 * Reauthentication verifies the new Kerberos credentials but keeps 2377 * the established SMB session keys. 2378 */ 2379 if (work->session_setup_reauth) { 2380 retval = 0; 2381 goto out; 2382 } 2383 2384 if ((rsp->SessionFlags != SMB2_SESSION_FLAG_IS_GUEST_LE && 2385 (conn->sign || server_conf.enforced_signing)) || 2386 (req->SecurityMode & SMB2_NEGOTIATE_SIGNING_REQUIRED)) 2387 sess->sign = true; 2388 2389 if (smb3_encryption_negotiated(conn) && 2390 !(req->Flags & SMB2_SESSION_REQ_FLAG_BINDING)) { 2391 conn->ops->generate_encryptionkey(conn, sess); 2392 sess->enc = true; 2393 if (server_conf.flags & KSMBD_GLOBAL_FLAG_SMB2_ENCRYPTION) 2394 rsp->SessionFlags = SMB2_SESSION_FLAG_ENCRYPT_DATA_LE; 2395 sess->sign = false; 2396 } 2397 2398 binding_session: 2399 if (conn->dialect >= SMB30_PROT_ID) { 2400 retval = register_session_channel(sess, conn, auth_key); 2401 if (retval) 2402 goto out; 2403 } 2404 2405 if (conn->ops->generate_signingkey) { 2406 retval = conn->ops->generate_signingkey(sess, conn); 2407 if (retval) { 2408 ksmbd_debug(SMB, "SMB3 signing key generation failed\n"); 2409 retval = -EINVAL; 2410 goto out; 2411 } 2412 } 2413 2414 if (!ksmbd_conn_lookup_dialect(conn)) { 2415 pr_err("fail to verify the dialect\n"); 2416 retval = -ENOENT; 2417 goto out; 2418 } 2419 retval = 0; 2420 out: 2421 memzero_explicit(reauth_key, sizeof(reauth_key)); 2422 if (binding) 2423 memzero_explicit(channel_key, sizeof(channel_key)); 2424 return retval; 2425 } 2426 #else 2427 static int krb5_authenticate(struct ksmbd_work *work, 2428 struct smb2_sess_setup_req *req, 2429 struct smb2_sess_setup_rsp *rsp) 2430 { 2431 return -EOPNOTSUPP; 2432 } 2433 #endif 2434 2435 int smb2_sess_setup(struct ksmbd_work *work) 2436 { 2437 struct ksmbd_conn *conn = work->conn; 2438 struct smb2_sess_setup_req *req; 2439 struct smb2_sess_setup_rsp *rsp; 2440 struct ksmbd_session *sess = NULL; 2441 struct negotiate_message *negblob; 2442 unsigned int negblob_len, negblob_off; 2443 int rc = 0; 2444 2445 ksmbd_debug(SMB, "Received smb2 session setup request\n"); 2446 2447 if (!ksmbd_conn_need_setup(conn) && !ksmbd_conn_good(conn)) { 2448 work->send_no_response = 1; 2449 return rc; 2450 } 2451 2452 WORK_BUFFERS(work, req, rsp); 2453 2454 rsp->StructureSize = cpu_to_le16(9); 2455 rsp->SessionFlags = 0; 2456 rsp->SecurityBufferOffset = cpu_to_le16(72); 2457 rsp->SecurityBufferLength = 0; 2458 2459 ksmbd_conn_lock(conn); 2460 if (!req->hdr.SessionId) { 2461 sess = ksmbd_smb2_session_create(); 2462 if (!sess) { 2463 rc = -ENOMEM; 2464 goto out_err; 2465 } 2466 rsp->hdr.SessionId = cpu_to_le64(sess->id); 2467 rc = ksmbd_session_register(conn, sess); 2468 if (rc) 2469 goto out_err; 2470 2471 conn->binding = false; 2472 } else if (conn->dialect >= SMB30_PROT_ID && 2473 (server_conf.flags & KSMBD_GLOBAL_FLAG_SMB3_MULTICHANNEL) && 2474 req->Flags & SMB2_SESSION_REQ_FLAG_BINDING) { 2475 u64 sess_id = le64_to_cpu(req->hdr.SessionId); 2476 2477 sess = ksmbd_session_lookup_slowpath(sess_id); 2478 if (!sess) { 2479 rc = -ENOENT; 2480 goto out_err; 2481 } 2482 2483 if (conn->dialect != sess->dialect) { 2484 rc = -EINVAL; 2485 goto out_err; 2486 } 2487 2488 if (conn->dialect == SMB311_PROT_ID) { 2489 struct channel *chann; 2490 unsigned long index; 2491 2492 down_read(&sess->chann_lock); 2493 xa_for_each(&sess->ksmbd_chann_list, index, chann) { 2494 if (conn->cipher_type != chann->conn->cipher_type) 2495 rc = -EINVAL; 2496 break; 2497 } 2498 up_read(&sess->chann_lock); 2499 if (rc) 2500 goto out_err; 2501 } 2502 2503 if (!(req->hdr.Flags & SMB2_FLAGS_SIGNED)) { 2504 rc = -EINVAL; 2505 goto out_err; 2506 } 2507 2508 if (memcmp(conn->ClientGUID, sess->ClientGUID, 2509 SMB2_CLIENT_GUID_SIZE)) { 2510 rc = -ENOENT; 2511 goto out_err; 2512 } 2513 2514 if (sess->state == SMB2_SESSION_IN_PROGRESS) { 2515 rc = -EACCES; 2516 goto out_err; 2517 } 2518 2519 if (sess->state == SMB2_SESSION_EXPIRED) { 2520 rc = -EFAULT; 2521 goto out_err; 2522 } 2523 2524 if (ksmbd_conn_need_reconnect(conn)) { 2525 rc = -EFAULT; 2526 ksmbd_user_session_put(sess); 2527 sess = NULL; 2528 goto out_err; 2529 } 2530 2531 if (is_ksmbd_session_in_connection(conn, sess_id)) { 2532 rc = -EACCES; 2533 goto out_err; 2534 } 2535 2536 if (user_guest(sess->user)) { 2537 rc = -EOPNOTSUPP; 2538 goto out_err; 2539 } 2540 2541 conn->binding = true; 2542 } else if ((conn->dialect < SMB30_PROT_ID || 2543 server_conf.flags & KSMBD_GLOBAL_FLAG_SMB3_MULTICHANNEL) && 2544 (req->Flags & SMB2_SESSION_REQ_FLAG_BINDING)) { 2545 sess = ksmbd_session_lookup_slowpath(le64_to_cpu(req->hdr.SessionId)); 2546 if (sess) { 2547 int sign_ret; 2548 2549 work->sess = sess; 2550 if (sess->dialect >= SMB30_PROT_ID) 2551 sign_ret = smb3_check_sign_req(work); 2552 else 2553 sign_ret = smb2_check_sign_req(work); 2554 if (sess->state != SMB2_SESSION_VALID || 2555 !(req->hdr.Flags & SMB2_FLAGS_SIGNED) || 2556 !sign_ret) { 2557 ksmbd_user_session_put(sess); 2558 work->sess = NULL; 2559 sess = NULL; 2560 } 2561 } 2562 rc = -EACCES; 2563 goto out_err; 2564 } else { 2565 sess = ksmbd_session_lookup(conn, 2566 le64_to_cpu(req->hdr.SessionId)); 2567 if (!sess) { 2568 sess = ksmbd_session_lookup_slowpath(le64_to_cpu(req->hdr.SessionId)); 2569 if (sess && !lookup_chann_list(sess, conn)) { 2570 ksmbd_user_session_put(sess); 2571 sess = NULL; 2572 } 2573 } 2574 if (!sess) { 2575 rc = -ENOENT; 2576 goto out_err; 2577 } 2578 2579 if (sess->state == SMB2_SESSION_EXPIRED) { 2580 if (sess->kerberos_expiry && 2581 ktime_get_real_seconds() >= sess->kerberos_expiry) { 2582 work->session_setup_reauth = true; 2583 } else { 2584 rc = -EFAULT; 2585 goto out_err; 2586 } 2587 } 2588 2589 if (ksmbd_conn_need_reconnect(conn)) { 2590 rc = -EFAULT; 2591 ksmbd_user_session_put(sess); 2592 sess = NULL; 2593 goto out_err; 2594 } 2595 2596 if (work->session_setup_reauth) 2597 WRITE_ONCE(sess->state, SMB2_SESSION_IN_PROGRESS); 2598 2599 conn->binding = false; 2600 } 2601 work->sess = sess; 2602 2603 negblob_off = le16_to_cpu(req->SecurityBufferOffset); 2604 negblob_len = le16_to_cpu(req->SecurityBufferLength); 2605 if (negblob_off < offsetof(struct smb2_sess_setup_req, Buffer)) { 2606 rc = -EINVAL; 2607 goto out_err; 2608 } 2609 2610 negblob = (struct negotiate_message *)((char *)&req->hdr.ProtocolId + 2611 negblob_off); 2612 2613 if (decode_negotiation_token(conn, negblob, negblob_len) == 0) { 2614 if (conn->mechToken) { 2615 negblob = (struct negotiate_message *)conn->mechToken; 2616 negblob_len = conn->mechTokenLen; 2617 } 2618 } 2619 2620 if (negblob_len < offsetof(struct negotiate_message, NegotiateFlags)) { 2621 rc = -EINVAL; 2622 goto out_err; 2623 } 2624 2625 if (server_conf.auth_mechs & conn->auth_mechs) { 2626 rc = generate_preauth_hash(work); 2627 if (rc) 2628 goto out_err; 2629 2630 if (conn->preferred_auth_mech & 2631 (KSMBD_AUTH_KRB5 | KSMBD_AUTH_MSKRB5)) { 2632 rc = krb5_authenticate(work, req, rsp); 2633 if (rc) 2634 goto out_err; 2635 2636 if (!ksmbd_conn_need_reconnect(conn)) { 2637 ksmbd_conn_set_good(conn); 2638 sess->state = SMB2_SESSION_VALID; 2639 } 2640 } else if (conn->preferred_auth_mech == KSMBD_AUTH_NTLMSSP) { 2641 if (negblob->MessageType == NtLmNegotiate) { 2642 rc = ntlm_negotiate(work, negblob, negblob_len, rsp); 2643 if (rc) 2644 goto out_err; 2645 rsp->hdr.Status = 2646 STATUS_MORE_PROCESSING_REQUIRED; 2647 } else if (negblob->MessageType == NtLmAuthenticate) { 2648 rc = ntlm_authenticate(work, req, rsp); 2649 if (rc) 2650 goto out_err; 2651 2652 if (!ksmbd_conn_need_reconnect(conn)) { 2653 ksmbd_conn_set_good(conn); 2654 sess->state = SMB2_SESSION_VALID; 2655 } 2656 if (conn->binding) { 2657 struct preauth_session *preauth_sess; 2658 2659 preauth_sess = 2660 ksmbd_preauth_session_lookup(conn, sess->id); 2661 if (preauth_sess) { 2662 list_del(&preauth_sess->preauth_entry); 2663 kfree_sensitive(preauth_sess); 2664 } 2665 } 2666 } else { 2667 pr_info_ratelimited("Unknown NTLMSSP message type : 0x%x\n", 2668 le32_to_cpu(negblob->MessageType)); 2669 rc = -EINVAL; 2670 } 2671 } else { 2672 /* TODO: need one more negotiation */ 2673 pr_err("Not support the preferred authentication\n"); 2674 rc = -EINVAL; 2675 } 2676 } else { 2677 pr_err("Not support authentication\n"); 2678 rc = -EINVAL; 2679 } 2680 2681 out_err: 2682 if (rc == -EINVAL) 2683 rsp->hdr.Status = STATUS_INVALID_PARAMETER; 2684 else if (rc == -ENOENT) 2685 rsp->hdr.Status = STATUS_USER_SESSION_DELETED; 2686 else if (rc == -EACCES) 2687 rsp->hdr.Status = STATUS_REQUEST_NOT_ACCEPTED; 2688 else if (rc == -EFAULT) 2689 rsp->hdr.Status = STATUS_NETWORK_SESSION_EXPIRED; 2690 else if (rc == -ENOMEM || rc == -ENOSPC) 2691 rsp->hdr.Status = STATUS_INSUFFICIENT_RESOURCES; 2692 else if (rc == -EOPNOTSUPP) 2693 rsp->hdr.Status = STATUS_NOT_SUPPORTED; 2694 else if (rc == -EKEYREJECTED) 2695 rsp->hdr.Status = STATUS_ACCESS_DENIED; 2696 else if (rc) 2697 rsp->hdr.Status = STATUS_LOGON_FAILURE; 2698 if ((rsp->hdr.Status == STATUS_USER_SESSION_DELETED || 2699 (rsp->hdr.Status == STATUS_INVALID_PARAMETER && 2700 (req->Flags & SMB2_SESSION_REQ_FLAG_BINDING))) && 2701 (req->hdr.Flags & SMB2_FLAGS_SIGNED)) 2702 rsp->hdr.Flags |= SMB2_FLAGS_SIGNED; 2703 2704 if (conn->mechToken) { 2705 kfree(conn->mechToken); 2706 conn->mechToken = NULL; 2707 } 2708 2709 if (rc < 0) { 2710 bool setup_in_progress = sess && 2711 READ_ONCE(sess->state) == SMB2_SESSION_IN_PROGRESS && 2712 !(req->Flags & SMB2_SESSION_REQ_FLAG_BINDING); 2713 2714 /* Authentication errors must not leave the new session published. */ 2715 if (setup_in_progress) 2716 ksmbd_session_unregister(conn, sess); 2717 2718 if (sess && conn->dialect == SMB311_PROT_ID && 2719 (req->Flags & SMB2_SESSION_REQ_FLAG_BINDING)) { 2720 struct preauth_session *preauth_sess; 2721 2722 preauth_sess = ksmbd_preauth_session_lookup(conn, sess->id); 2723 if (preauth_sess) { 2724 list_del(&preauth_sess->preauth_entry); 2725 kfree_sensitive(preauth_sess); 2726 } 2727 } 2728 2729 /* 2730 * SecurityBufferOffset should be set to zero 2731 * in session setup error response. 2732 */ 2733 rsp->SecurityBufferOffset = 0; 2734 2735 if (sess) { 2736 bool try_delay = false; 2737 2738 /* 2739 * To avoid dictionary attacks (repeated session setups rapidly sent) to 2740 * connect to server, ksmbd make a delay of a 5 seconds on session setup 2741 * failure to make it harder to send enough random connection requests 2742 * to break into a server. 2743 */ 2744 if (sess->user && sess->user->flags & KSMBD_USER_FLAG_DELAY_SESSION) 2745 try_delay = true; 2746 2747 /* 2748 * For binding requests, session belongs to another 2749 * connection. Do not expire it. 2750 */ 2751 if (!(req->Flags & SMB2_SESSION_REQ_FLAG_BINDING) && 2752 !setup_in_progress) { 2753 sess->last_active = jiffies; 2754 sess->kerberos_expiry = 0; 2755 sess->state = SMB2_SESSION_EXPIRED; 2756 } 2757 /* 2758 * Keep the binding session reference until the response is 2759 * signed and sent. Error responses for a signed binding 2760 * request are signed with the existing session signing key. 2761 */ 2762 if (!(req->Flags & SMB2_SESSION_REQ_FLAG_BINDING) || 2763 work->sess != sess) { 2764 ksmbd_user_session_put(sess); 2765 work->sess = NULL; 2766 } 2767 if (try_delay) { 2768 ksmbd_conn_set_need_reconnect(conn); 2769 ssleep(5); 2770 ksmbd_conn_set_need_setup(conn); 2771 } 2772 } 2773 smb2_set_err_rsp(work); 2774 conn->binding = false; 2775 } else { 2776 unsigned int iov_len; 2777 2778 if (rsp->SecurityBufferLength) 2779 iov_len = offsetof(struct smb2_sess_setup_rsp, Buffer) + 2780 le16_to_cpu(rsp->SecurityBufferLength); 2781 else 2782 iov_len = sizeof(struct smb2_sess_setup_rsp); 2783 rc = ksmbd_iov_pin_rsp(work, rsp, iov_len); 2784 if (rc) 2785 rsp->hdr.Status = STATUS_INSUFFICIENT_RESOURCES; 2786 } 2787 2788 ksmbd_conn_unlock(conn); 2789 return rc; 2790 } 2791 2792 /** 2793 * smb2_tree_connect() - handler for smb2 tree connect command 2794 * @work: smb work containing smb request buffer 2795 * 2796 * Return: 0 on success, otherwise error 2797 */ 2798 int smb2_tree_connect(struct ksmbd_work *work) 2799 { 2800 struct ksmbd_conn *conn = work->conn; 2801 struct smb2_tree_connect_req *req; 2802 struct smb2_tree_connect_rsp *rsp; 2803 struct ksmbd_session *sess = work->sess; 2804 char *treename = NULL, *name = NULL; 2805 struct ksmbd_tree_conn_status status; 2806 struct ksmbd_tree_connect *tree_conn = NULL; 2807 struct ksmbd_share_config *share = NULL; 2808 int rc = -EINVAL; 2809 2810 ksmbd_debug(SMB, "Received smb2 tree connect request\n"); 2811 2812 WORK_BUFFERS(work, req, rsp); 2813 2814 treename = smb_strndup_from_utf16((char *)req + le16_to_cpu(req->PathOffset), 2815 le16_to_cpu(req->PathLength), true, 2816 conn->local_nls); 2817 if (IS_ERR(treename)) { 2818 pr_err("treename is NULL\n"); 2819 status.ret = KSMBD_TREE_CONN_STATUS_ERROR; 2820 goto out_err1; 2821 } 2822 2823 name = ksmbd_extract_sharename(conn->um, treename); 2824 if (IS_ERR(name)) { 2825 status.ret = KSMBD_TREE_CONN_STATUS_ERROR; 2826 goto out_err1; 2827 } 2828 2829 ksmbd_debug(SMB, "tree connect request for tree %s treename %s\n", 2830 name, treename); 2831 2832 status = ksmbd_tree_conn_connect(work, name); 2833 if (status.ret == KSMBD_TREE_CONN_STATUS_OK) { 2834 tree_conn = status.tree_conn; 2835 rsp->hdr.Id.SyncId.TreeId = cpu_to_le32(status.tree_conn->id); 2836 share = status.tree_conn->share_conf; 2837 2838 /* A share that requires encryption needs a negotiated SMB3 cipher. */ 2839 if (test_share_config_flag(share, KSMBD_SHARE_FLAG_ENCRYPT_DATA) && 2840 !smb3_encryption_negotiated(conn)) { 2841 ksmbd_tree_conn_disconnect(sess, status.tree_conn); 2842 status.tree_conn = NULL; 2843 share = NULL; 2844 status.ret = KSMBD_TREE_CONN_STATUS_ERROR; 2845 goto out_err1; 2846 } 2847 } else 2848 goto out_err1; 2849 2850 if (test_share_config_flag(share, KSMBD_SHARE_FLAG_PIPE)) { 2851 ksmbd_debug(SMB, "IPC share path request\n"); 2852 rsp->ShareType = SMB2_SHARE_TYPE_PIPE; 2853 rsp->MaximalAccess = FILE_READ_DATA_LE | FILE_READ_EA_LE | 2854 FILE_EXECUTE_LE | FILE_READ_ATTRIBUTES_LE | 2855 FILE_DELETE_LE | FILE_READ_CONTROL_LE | 2856 FILE_WRITE_DAC_LE | FILE_WRITE_OWNER_LE | 2857 FILE_SYNCHRONIZE_LE; 2858 } else { 2859 rsp->ShareType = SMB2_SHARE_TYPE_DISK; 2860 rsp->MaximalAccess = FILE_READ_DATA_LE | FILE_READ_EA_LE | 2861 FILE_EXECUTE_LE | FILE_READ_ATTRIBUTES_LE; 2862 if (test_tree_conn_flag(status.tree_conn, 2863 KSMBD_TREE_CONN_FLAG_WRITABLE)) { 2864 rsp->MaximalAccess |= FILE_WRITE_DATA_LE | 2865 FILE_APPEND_DATA_LE | FILE_WRITE_EA_LE | 2866 FILE_DELETE_LE | FILE_WRITE_ATTRIBUTES_LE | 2867 FILE_DELETE_CHILD_LE | FILE_READ_CONTROL_LE | 2868 FILE_WRITE_DAC_LE | FILE_WRITE_OWNER_LE | 2869 FILE_SYNCHRONIZE_LE; 2870 } 2871 } 2872 2873 status.tree_conn->maximal_access = le32_to_cpu(rsp->MaximalAccess); 2874 if (conn->posix_ext_supported) 2875 status.tree_conn->posix_extensions = true; 2876 2877 down_write(&sess->tree_conns_lock); 2878 if (status.tree_conn->t_state == TREE_DISCONNECTED) { 2879 status.ret = KSMBD_TREE_CONN_STATUS_ERROR; 2880 share = NULL; 2881 } else { 2882 status.tree_conn->t_state = TREE_CONNECTED; 2883 } 2884 up_write(&sess->tree_conns_lock); 2885 if (status.ret != KSMBD_TREE_CONN_STATUS_OK) 2886 goto out_err1; 2887 rsp->StructureSize = cpu_to_le16(16); 2888 out_err1: 2889 /* 2890 * A configured CA share is not continuously available until persistent 2891 * open recovery, ownership fencing, and failover are implemented. 2892 */ 2893 rsp->Capabilities = 0; 2894 rsp->Reserved = 0; 2895 /* default manual caching */ 2896 rsp->ShareFlags = SMB2_SHAREFLAG_MANUAL_CACHING; 2897 /* Tell the client that READ requests may request compressed responses. */ 2898 if (conn->dialect == SMB311_PROT_ID && 2899 conn->compress_algorithm != SMB3_COMPRESS_NONE) 2900 rsp->ShareFlags |= cpu_to_le32(SMB2_SHAREFLAG_COMPRESS_DATA); 2901 if (share && test_share_config_flag(share, 2902 KSMBD_SHARE_FLAG_HIDE_UNREADABLE)) 2903 rsp->ShareFlags |= 2904 cpu_to_le32(SMB2_SHAREFLAG_ACCESS_BASED_DIRECTORY_ENUM); 2905 if (share && test_share_config_flag(share, 2906 KSMBD_SHARE_FLAG_ENCRYPT_DATA)) 2907 rsp->ShareFlags |= 2908 cpu_to_le32(SMB2_SHAREFLAG_ENCRYPT_DATA); 2909 2910 rc = ksmbd_iov_pin_rsp(work, rsp, sizeof(struct smb2_tree_connect_rsp)); 2911 if (rc) { 2912 if (status.ret == KSMBD_TREE_CONN_STATUS_OK) { 2913 ksmbd_tree_conn_disconnect(sess, status.tree_conn); 2914 status.tree_conn = NULL; 2915 } 2916 status.ret = KSMBD_TREE_CONN_STATUS_NOMEM; 2917 } 2918 2919 if (!IS_ERR(treename)) 2920 kfree(treename); 2921 if (!IS_ERR(name)) 2922 kfree(name); 2923 2924 switch (status.ret) { 2925 case KSMBD_TREE_CONN_STATUS_OK: 2926 rsp->hdr.Status = STATUS_SUCCESS; 2927 rc = 0; 2928 break; 2929 case -ESTALE: 2930 case -ENOENT: 2931 case KSMBD_TREE_CONN_STATUS_NO_SHARE: 2932 rsp->hdr.Status = STATUS_BAD_NETWORK_NAME; 2933 break; 2934 case -ENOMEM: 2935 case KSMBD_TREE_CONN_STATUS_NOMEM: 2936 rsp->hdr.Status = STATUS_NO_MEMORY; 2937 break; 2938 case KSMBD_TREE_CONN_STATUS_ERROR: 2939 case KSMBD_TREE_CONN_STATUS_TOO_MANY_CONNS: 2940 case KSMBD_TREE_CONN_STATUS_TOO_MANY_SESSIONS: 2941 rsp->hdr.Status = STATUS_ACCESS_DENIED; 2942 break; 2943 case -EINVAL: 2944 rsp->hdr.Status = STATUS_INVALID_PARAMETER; 2945 break; 2946 default: 2947 rsp->hdr.Status = STATUS_ACCESS_DENIED; 2948 } 2949 2950 if (status.ret != KSMBD_TREE_CONN_STATUS_OK) 2951 smb2_set_err_rsp(work); 2952 2953 if (tree_conn) 2954 ksmbd_tree_connect_put(tree_conn); 2955 2956 return rc; 2957 } 2958 2959 /** 2960 * smb2_create_open_flags() - convert smb open flags to unix open flags 2961 * @file_present: is file already present 2962 * @access: file access flags 2963 * @disposition: file disposition flags 2964 * @may_flags: set with MAY_ flags 2965 * @coptions: file creation options 2966 * @mode: file mode 2967 * 2968 * Return: file open flags 2969 */ 2970 static int smb2_create_open_flags(bool file_present, __le32 access, 2971 __le32 disposition, 2972 int *may_flags, 2973 __le32 coptions, 2974 umode_t mode) 2975 { 2976 int oflags = O_NONBLOCK | O_LARGEFILE; 2977 2978 if (coptions & FILE_DIRECTORY_FILE_LE || S_ISDIR(mode)) { 2979 access &= ~FILE_WRITE_DESIRE_ACCESS_LE; 2980 ksmbd_debug(SMB, "Discard write access to a directory\n"); 2981 } 2982 2983 if (access & FILE_READ_DESIRED_ACCESS_LE && 2984 access & FILE_WRITE_DESIRE_ACCESS_LE) { 2985 oflags |= O_RDWR; 2986 *may_flags = MAY_OPEN | MAY_READ | MAY_WRITE; 2987 } else if (access & FILE_WRITE_DESIRE_ACCESS_LE) { 2988 oflags |= O_WRONLY; 2989 *may_flags = MAY_OPEN | MAY_WRITE; 2990 } else { 2991 oflags |= O_RDONLY; 2992 *may_flags = MAY_OPEN | MAY_READ; 2993 } 2994 2995 if (access == FILE_READ_ATTRIBUTES_LE || S_ISBLK(mode) || S_ISCHR(mode)) 2996 oflags |= O_PATH; 2997 2998 if (file_present) { 2999 switch (disposition & FILE_CREATE_MASK_LE) { 3000 case FILE_OPEN_LE: 3001 case FILE_CREATE_LE: 3002 break; 3003 case FILE_SUPERSEDE_LE: 3004 case FILE_OVERWRITE_LE: 3005 case FILE_OVERWRITE_IF_LE: 3006 oflags |= O_TRUNC; 3007 break; 3008 default: 3009 break; 3010 } 3011 } else { 3012 switch (disposition & FILE_CREATE_MASK_LE) { 3013 case FILE_SUPERSEDE_LE: 3014 case FILE_CREATE_LE: 3015 case FILE_OPEN_IF_LE: 3016 case FILE_OVERWRITE_IF_LE: 3017 oflags |= O_CREAT; 3018 break; 3019 case FILE_OPEN_LE: 3020 case FILE_OVERWRITE_LE: 3021 oflags &= ~O_CREAT; 3022 break; 3023 default: 3024 break; 3025 } 3026 } 3027 3028 return oflags; 3029 } 3030 3031 /** 3032 * smb2_tree_disconnect() - handler for smb tree connect request 3033 * @work: smb work containing request buffer 3034 * 3035 * Return: 0 on success, otherwise error 3036 */ 3037 int smb2_tree_disconnect(struct ksmbd_work *work) 3038 { 3039 struct smb2_tree_disconnect_rsp *rsp; 3040 struct smb2_tree_disconnect_req *req; 3041 struct ksmbd_session *sess = work->sess; 3042 struct ksmbd_tree_connect *tcon = work->tcon; 3043 int err; 3044 3045 ksmbd_debug(SMB, "Received smb2 tree disconnect request\n"); 3046 3047 WORK_BUFFERS(work, req, rsp); 3048 3049 if (!tcon) { 3050 ksmbd_debug(SMB, "Invalid tid %d\n", req->hdr.Id.SyncId.TreeId); 3051 3052 rsp->hdr.Status = STATUS_NETWORK_NAME_DELETED; 3053 err = -ENOENT; 3054 goto err_out; 3055 } 3056 3057 ksmbd_close_tree_conn_fds(work); 3058 3059 err = ksmbd_tree_conn_disconnect(sess, tcon); 3060 if (err) { 3061 rsp->hdr.Status = STATUS_NETWORK_NAME_DELETED; 3062 goto err_out; 3063 } 3064 3065 rsp->StructureSize = cpu_to_le16(4); 3066 err = ksmbd_iov_pin_rsp(work, rsp, 3067 sizeof(struct smb2_tree_disconnect_rsp)); 3068 if (err) { 3069 rsp->hdr.Status = STATUS_INSUFFICIENT_RESOURCES; 3070 goto err_out; 3071 } 3072 3073 return 0; 3074 3075 err_out: 3076 smb2_set_err_rsp(work); 3077 return err; 3078 3079 } 3080 3081 /** 3082 * smb2_session_logoff() - handler for session log off request 3083 * @work: smb work containing request buffer 3084 * 3085 * Return: 0 on success, otherwise error 3086 */ 3087 int smb2_session_logoff(struct ksmbd_work *work) 3088 { 3089 struct ksmbd_conn *conn = work->conn; 3090 struct ksmbd_session *sess = work->sess; 3091 struct smb2_logoff_req *req; 3092 struct smb2_logoff_rsp *rsp; 3093 int err; 3094 3095 WORK_BUFFERS(work, req, rsp); 3096 3097 ksmbd_debug(SMB, "Received smb2 session logoff request\n"); 3098 3099 ksmbd_conn_lock(conn); 3100 if (!ksmbd_conn_good(conn)) { 3101 ksmbd_conn_unlock(conn); 3102 rsp->hdr.Status = STATUS_NETWORK_NAME_DELETED; 3103 smb2_set_err_rsp(work); 3104 return -ENOENT; 3105 } 3106 3107 down_write(&sess->chann_lock); 3108 if (sess->tearing_down) { 3109 up_write(&sess->chann_lock); 3110 ksmbd_conn_unlock(conn); 3111 rsp->hdr.Status = STATUS_USER_SESSION_DELETED; 3112 smb2_set_err_rsp(work); 3113 return -ENOENT; 3114 } 3115 sess->tearing_down = true; 3116 up_write(&sess->chann_lock); 3117 3118 ksmbd_all_conn_set_status(sess, KSMBD_SESS_NEED_RECONNECT); 3119 ksmbd_conn_unlock(conn); 3120 3121 err = ksmbd_conn_wait_idle_sess(conn, sess); 3122 if (err) { 3123 down_write(&sess->chann_lock); 3124 sess->tearing_down = false; 3125 up_write(&sess->chann_lock); 3126 ksmbd_all_conn_set_status(sess, KSMBD_SESS_GOOD); 3127 rsp->hdr.Status = STATUS_UNEXPECTED_IO_ERROR; 3128 smb2_set_err_rsp(work); 3129 return err; 3130 } 3131 3132 ksmbd_close_session_fds(work); 3133 3134 if (ksmbd_tree_conn_session_logoff(sess)) { 3135 ksmbd_debug(SMB, "Invalid tid %d\n", req->hdr.Id.SyncId.TreeId); 3136 rsp->hdr.Status = STATUS_NETWORK_NAME_DELETED; 3137 smb2_set_err_rsp(work); 3138 err = -ENOENT; 3139 } else { 3140 err = 0; 3141 } 3142 3143 down_write(&conn->session_lock); 3144 sess->kerberos_expiry = 0; 3145 sess->state = SMB2_SESSION_EXPIRED; 3146 up_write(&conn->session_lock); 3147 3148 ksmbd_all_conn_set_status(sess, KSMBD_SESS_NEED_SETUP); 3149 3150 if (err) 3151 return err; 3152 3153 rsp->StructureSize = cpu_to_le16(4); 3154 err = ksmbd_iov_pin_rsp(work, rsp, sizeof(struct smb2_logoff_rsp)); 3155 if (err) { 3156 rsp->hdr.Status = STATUS_INSUFFICIENT_RESOURCES; 3157 smb2_set_err_rsp(work); 3158 return err; 3159 } 3160 return 0; 3161 } 3162 3163 /** 3164 * create_smb2_pipe() - create IPC pipe 3165 * @work: smb work containing request buffer 3166 * 3167 * Return: 0 on success, otherwise error 3168 */ 3169 static noinline int create_smb2_pipe(struct ksmbd_work *work) 3170 { 3171 struct smb2_create_rsp *rsp; 3172 struct smb2_create_req *req; 3173 int id = -1; 3174 int err; 3175 char *name; 3176 3177 WORK_BUFFERS(work, req, rsp); 3178 3179 name = smb_strndup_from_utf16(req->Buffer, le16_to_cpu(req->NameLength), 3180 1, work->conn->local_nls); 3181 if (IS_ERR(name)) { 3182 rsp->hdr.Status = STATUS_NO_MEMORY; 3183 err = PTR_ERR(name); 3184 goto out; 3185 } 3186 3187 id = ksmbd_session_rpc_open(work->sess, name); 3188 if (id < 0) { 3189 /* 3190 * mdssvc (Spotlight) is a routine, expected probe from macOS 3191 * that we deliberately don't support -- it's disabled at the 3192 * __rpc_method() level (mgmt/user_session.c), but this 3193 * generic failure log would otherwise still fire on every 3194 * single probe regardless. 3195 */ 3196 if (!(id == -ENOENT && (!strcmp(name, "\\mdssvc") || 3197 !strcmp(name, "mdssvc")))) 3198 pr_err("Unable to open RPC pipe: %d\n", id); 3199 err = id; 3200 goto out; 3201 } 3202 3203 rsp->hdr.Status = STATUS_SUCCESS; 3204 rsp->StructureSize = cpu_to_le16(89); 3205 rsp->OplockLevel = SMB2_OPLOCK_LEVEL_NONE; 3206 rsp->Flags = 0; 3207 rsp->CreateAction = cpu_to_le32(FILE_OPENED); 3208 3209 rsp->CreationTime = cpu_to_le64(0); 3210 rsp->LastAccessTime = cpu_to_le64(0); 3211 rsp->ChangeTime = cpu_to_le64(0); 3212 rsp->AllocationSize = cpu_to_le64(0); 3213 rsp->EndofFile = cpu_to_le64(0); 3214 rsp->FileAttributes = FILE_ATTRIBUTE_NORMAL_LE; 3215 rsp->Reserved2 = 0; 3216 rsp->VolatileFileId = id; 3217 rsp->PersistentFileId = 0; 3218 rsp->CreateContextsOffset = 0; 3219 rsp->CreateContextsLength = 0; 3220 3221 err = ksmbd_iov_pin_rsp(work, rsp, offsetof(struct smb2_create_rsp, Buffer)); 3222 if (err) 3223 goto out; 3224 3225 kfree(name); 3226 return 0; 3227 3228 out: 3229 switch (err) { 3230 case -EINVAL: 3231 rsp->hdr.Status = STATUS_INVALID_PARAMETER; 3232 break; 3233 case -ENOENT: 3234 rsp->hdr.Status = STATUS_OBJECT_NAME_NOT_FOUND; 3235 break; 3236 case -ENOSPC: 3237 case -ENOMEM: 3238 rsp->hdr.Status = STATUS_NO_MEMORY; 3239 break; 3240 } 3241 3242 if (id >= 0) 3243 ksmbd_session_rpc_close(work->sess, id); 3244 3245 if (!IS_ERR(name)) 3246 kfree(name); 3247 3248 smb2_set_err_rsp(work); 3249 return err; 3250 } 3251 3252 static bool smb2_is_private_ea(const char *name, size_t name_len) 3253 { 3254 if (name_len == SD_PREFIX_LEN && 3255 !strncasecmp(name, SD_PREFIX, SD_PREFIX_LEN)) 3256 return true; 3257 if (name_len == DOS_ATTRIBUTE_PREFIX_LEN && 3258 !strncasecmp(name, DOS_ATTRIBUTE_PREFIX, 3259 DOS_ATTRIBUTE_PREFIX_LEN)) 3260 return true; 3261 if (name_len >= STREAM_PREFIX_LEN && 3262 !strncasecmp(name, STREAM_PREFIX, STREAM_PREFIX_LEN)) 3263 return true; 3264 3265 return false; 3266 } 3267 3268 /** 3269 * smb2_set_ea() - handler for setting extended attributes using set 3270 * info command 3271 * @eabuf: set info command buffer 3272 * @buf_len: set info command buffer length 3273 * @path: dentry path for get ea 3274 * @get_write: get write access to a mount 3275 * 3276 * Return: 0 on success, otherwise error 3277 */ 3278 static int smb2_set_ea(struct smb2_ea_info *eabuf, unsigned int buf_len, 3279 const struct path *path, bool get_write) 3280 { 3281 struct mnt_idmap *idmap = mnt_idmap(path->mnt); 3282 char *attr_name = NULL, *value; 3283 int rc = 0; 3284 unsigned int next = 0; 3285 3286 if (buf_len < sizeof(struct smb2_ea_info) + eabuf->EaNameLength + 1 + 3287 le16_to_cpu(eabuf->EaValueLength)) 3288 return -EINVAL; 3289 3290 attr_name = kmalloc(XATTR_NAME_MAX + 1, KSMBD_DEFAULT_GFP); 3291 if (!attr_name) 3292 return -ENOMEM; 3293 3294 do { 3295 if (!eabuf->EaNameLength) 3296 goto next; 3297 3298 ksmbd_debug(SMB, 3299 "name : <%s>, name_len : %u, value_len : %u, next : %u\n", 3300 eabuf->name, eabuf->EaNameLength, 3301 le16_to_cpu(eabuf->EaValueLength), 3302 le32_to_cpu(eabuf->NextEntryOffset)); 3303 3304 if (eabuf->EaNameLength > 3305 (XATTR_NAME_MAX - XATTR_USER_PREFIX_LEN)) { 3306 rc = -EINVAL; 3307 break; 3308 } 3309 if (smb2_is_private_ea(eabuf->name, eabuf->EaNameLength)) { 3310 rc = -EACCES; 3311 break; 3312 } 3313 3314 memcpy(attr_name, XATTR_USER_PREFIX, XATTR_USER_PREFIX_LEN); 3315 memcpy(&attr_name[XATTR_USER_PREFIX_LEN], eabuf->name, 3316 eabuf->EaNameLength); 3317 attr_name[XATTR_USER_PREFIX_LEN + eabuf->EaNameLength] = '\0'; 3318 value = (char *)&eabuf->name + eabuf->EaNameLength + 1; 3319 3320 if (!eabuf->EaValueLength) { 3321 rc = ksmbd_vfs_casexattr_len(idmap, 3322 path->dentry, 3323 attr_name, 3324 XATTR_USER_PREFIX_LEN + 3325 eabuf->EaNameLength); 3326 3327 /* delete the EA only when it exits */ 3328 if (rc > 0) { 3329 rc = ksmbd_vfs_remove_xattr(idmap, 3330 path, 3331 attr_name, 3332 get_write); 3333 3334 if (rc < 0) { 3335 ksmbd_debug(SMB, 3336 "remove xattr failed(%d)\n", 3337 rc); 3338 break; 3339 } 3340 } 3341 3342 /* if the EA doesn't exist, just do nothing. */ 3343 rc = 0; 3344 } else { 3345 rc = ksmbd_vfs_setxattr(idmap, path, attr_name, value, 3346 le16_to_cpu(eabuf->EaValueLength), 3347 0, get_write); 3348 if (rc < 0) { 3349 ksmbd_debug(SMB, 3350 "ksmbd_vfs_setxattr is failed(%d)\n", 3351 rc); 3352 break; 3353 } 3354 } 3355 3356 next: 3357 next = le32_to_cpu(eabuf->NextEntryOffset); 3358 if (next == 0 || buf_len < next) 3359 break; 3360 buf_len -= next; 3361 eabuf = (struct smb2_ea_info *)((char *)eabuf + next); 3362 if (buf_len < sizeof(struct smb2_ea_info)) { 3363 rc = -EINVAL; 3364 break; 3365 } 3366 3367 if (buf_len < sizeof(struct smb2_ea_info) + eabuf->EaNameLength + 1 + 3368 le16_to_cpu(eabuf->EaValueLength)) { 3369 rc = -EINVAL; 3370 break; 3371 } 3372 } while (next != 0); 3373 3374 kfree(attr_name); 3375 return rc; 3376 } 3377 3378 static noinline int smb2_set_stream_name_xattr(const struct path *path, 3379 struct ksmbd_file *fp, 3380 char *stream_name, int s_type) 3381 { 3382 struct mnt_idmap *idmap = mnt_idmap(path->mnt); 3383 size_t xattr_stream_size; 3384 char *xattr_stream_name; 3385 int rc; 3386 3387 rc = ksmbd_vfs_xattr_stream_name(stream_name, 3388 &xattr_stream_name, 3389 &xattr_stream_size, 3390 s_type); 3391 if (rc) 3392 return rc; 3393 3394 fp->stream.name = xattr_stream_name; 3395 fp->stream.size = xattr_stream_size; 3396 3397 /* Check if there is stream prefix in xattr space */ 3398 rc = ksmbd_vfs_casexattr_len(idmap, 3399 path->dentry, 3400 xattr_stream_name, 3401 xattr_stream_size); 3402 if (rc >= 0) 3403 return 0; 3404 3405 if (fp->cdoption == FILE_OPEN_LE) { 3406 if (!strcmp(stream_name, "AFP_AfpInfo") && 3407 test_share_config_flag(fp->tcon->share_conf, 3408 KSMBD_SHARE_FLAG_TIME_MACHINE)) { 3409 /* 3410 * Synthesize an empty AFP_AfpInfo xattr on first access. 3411 * type=0/creator=0 tells macOS to use the file extension 3412 * for icon and type detection. 3413 * 3414 * Scoped to TIME_MACHINE shares, matching the rest of 3415 * the AAPL series -- conn->is_aapl alone isn't a safe 3416 * gate here, since the pre-existing narrow UniqueId=0 3417 * path can also set it on ordinary, non-Time-Machine 3418 * shares whenever a Mac client happens to negotiate 3419 * AAPL there too. 3420 */ 3421 static const u8 afpinfo_empty[60] = { 3422 0x00, 0x05, 0x16, 0x07, /* magic 0x00051607 BE */ 3423 0x00, 0x02, 0x00, 0x00, /* version 0x00020000 BE */ 3424 }; 3425 rc = ksmbd_vfs_setxattr(idmap, path, xattr_stream_name, 3426 (void *)afpinfo_empty, 3427 sizeof(afpinfo_empty), 0, false); 3428 return rc < 0 ? rc : 0; 3429 } 3430 ksmbd_debug(SMB, "XATTR stream name lookup failed: %d\n", rc); 3431 return -EBADF; 3432 } 3433 3434 rc = ksmbd_vfs_setxattr(idmap, path, xattr_stream_name, NULL, 0, 0, false); 3435 if (rc < 0) 3436 pr_err("Failed to store XATTR stream name :%d\n", rc); 3437 return 0; 3438 } 3439 3440 /* 3441 * fp->stream.size is the byte length of the mangled xattr *name* 3442 * (used as attr_name_len when looking the xattr up), not the size of 3443 * the xattr's value. Reporting it as EndOfFile/AllocationSize for a 3444 * stream handle is wrong -- query the xattr's actual value length 3445 * instead. 3446 */ 3447 static loff_t ksmbd_stream_eof(struct ksmbd_file *fp) 3448 { 3449 ssize_t slen = ksmbd_vfs_casexattr_len(file_mnt_idmap(fp->filp), 3450 fp->filp->f_path.dentry, 3451 fp->stream.name, 3452 fp->stream.size); 3453 return slen < 0 ? 0 : (loff_t)slen; 3454 } 3455 3456 static int smb2_remove_smb_xattrs(const struct path *path) 3457 { 3458 struct mnt_idmap *idmap = mnt_idmap(path->mnt); 3459 char *name, *xattr_list = NULL; 3460 ssize_t xattr_list_len; 3461 int err = 0; 3462 3463 xattr_list_len = ksmbd_vfs_listxattr(path->dentry, &xattr_list); 3464 if (xattr_list_len < 0) { 3465 goto out; 3466 } else if (!xattr_list_len) { 3467 ksmbd_debug(SMB, "empty xattr in the file\n"); 3468 goto out; 3469 } 3470 3471 for (name = xattr_list; name - xattr_list < xattr_list_len; 3472 name += strlen(name) + 1) { 3473 ksmbd_debug(SMB, "%s, len %zd\n", name, strlen(name)); 3474 3475 if (!strncmp(name, XATTR_USER_PREFIX, XATTR_USER_PREFIX_LEN) && 3476 !strncmp(&name[XATTR_USER_PREFIX_LEN], STREAM_PREFIX, 3477 STREAM_PREFIX_LEN)) { 3478 err = ksmbd_vfs_remove_xattr(idmap, path, 3479 name, true); 3480 if (err) 3481 ksmbd_debug(SMB, "remove xattr failed : %s\n", 3482 name); 3483 } 3484 } 3485 out: 3486 kvfree(xattr_list); 3487 return err; 3488 } 3489 3490 static int smb2_create_truncate(const struct path *path) 3491 { 3492 int rc = vfs_truncate(path, 0); 3493 3494 if (rc) { 3495 pr_err("vfs_truncate failed, rc %d\n", rc); 3496 return rc; 3497 } 3498 3499 rc = smb2_remove_smb_xattrs(path); 3500 if (rc == -EOPNOTSUPP) 3501 rc = 0; 3502 if (rc) 3503 ksmbd_debug(SMB, 3504 "ksmbd_truncate_stream_name_xattr failed, rc %d\n", 3505 rc); 3506 return rc; 3507 } 3508 3509 static void smb2_new_xattrs(struct ksmbd_tree_connect *tcon, const struct path *path, 3510 struct ksmbd_file *fp) 3511 { 3512 struct xattr_dos_attrib da = {0}; 3513 int rc; 3514 3515 if (!test_share_config_flag(tcon->share_conf, 3516 KSMBD_SHARE_FLAG_STORE_DOS_ATTRS)) 3517 return; 3518 3519 da.version = 4; 3520 da.attr = le32_to_cpu(fp->f_ci->m_fattr); 3521 da.itime = da.create_time = fp->create_time; 3522 da.flags = XATTR_DOSINFO_ATTRIB | XATTR_DOSINFO_CREATE_TIME | 3523 XATTR_DOSINFO_ITIME; 3524 3525 rc = ksmbd_vfs_set_dos_attrib_xattr(mnt_idmap(path->mnt), path, &da, true); 3526 if (rc) 3527 ksmbd_debug(SMB, "failed to store file attribute into xattr\n"); 3528 } 3529 3530 static bool smb2_parent_compressed(struct ksmbd_tree_connect *tcon, 3531 const struct path *path) 3532 { 3533 struct dentry *parent = dget_parent(path->dentry); 3534 struct file_kattr fa = { .flags_valid = true }; 3535 struct xattr_dos_attrib da; 3536 bool compressed = false; 3537 int rc; 3538 3539 rc = vfs_fileattr_get(parent, &fa); 3540 if (!rc && fa.flags & FS_COMPR_FL) { 3541 compressed = true; 3542 goto out; 3543 } 3544 3545 rc = ksmbd_vfs_get_dos_attrib_xattr(mnt_idmap(path->mnt), parent, &da); 3546 if (rc > 0 && da.attr & FILE_ATTRIBUTE_COMPRESSED) 3547 compressed = true; 3548 3549 out: 3550 dput(parent); 3551 return compressed; 3552 } 3553 3554 static void smb2_update_xattrs(struct ksmbd_tree_connect *tcon, 3555 const struct path *path, struct ksmbd_file *fp) 3556 { 3557 struct xattr_dos_attrib da = {}; 3558 bool store_dos_attrs = test_share_config_flag(tcon->share_conf, 3559 KSMBD_SHARE_FLAG_STORE_DOS_ATTRS); 3560 int rc; 3561 3562 fp->f_ci->m_fattr &= ~(FILE_ATTRIBUTE_HIDDEN_LE | FILE_ATTRIBUTE_SYSTEM_LE); 3563 3564 /* get FileAttributes from XATTR_NAME_DOS_ATTRIBUTE */ 3565 rc = ksmbd_vfs_get_dos_attrib_xattr(mnt_idmap(path->mnt), 3566 path->dentry, &da); 3567 if (rc > 0) { 3568 if (store_dos_attrs) { 3569 fp->f_ci->m_fattr = cpu_to_le32(da.attr); 3570 fp->create_time = da.create_time; 3571 fp->itime = da.itime; 3572 } else { 3573 fp->f_ci->m_fattr &= 3574 ~(FILE_ATTRIBUTE_COMPRESSED_LE | 3575 FILE_ATTRIBUTE_SPARSE_FILE_LE); 3576 fp->f_ci->m_fattr |= 3577 cpu_to_le32(da.attr & 3578 (FILE_ATTRIBUTE_COMPRESSED | 3579 FILE_ATTRIBUTE_SPARSE_FILE)); 3580 } 3581 } 3582 } 3583 3584 static int smb2_creat(struct ksmbd_work *work, 3585 struct path *path, char *name, int open_flags, 3586 umode_t posix_mode, bool is_dir) 3587 { 3588 struct ksmbd_tree_connect *tcon = work->tcon; 3589 struct ksmbd_share_config *share = tcon->share_conf; 3590 umode_t mode; 3591 int rc; 3592 3593 if (!(open_flags & O_CREAT)) 3594 return -EBADF; 3595 3596 ksmbd_debug(SMB, "file does not exist, so creating\n"); 3597 if (is_dir == true) { 3598 ksmbd_debug(SMB, "creating directory\n"); 3599 3600 mode = share_config_directory_mode(share, posix_mode); 3601 rc = ksmbd_vfs_mkdir(work, name, mode); 3602 if (rc) 3603 return rc; 3604 } else { 3605 ksmbd_debug(SMB, "creating regular file\n"); 3606 3607 mode = share_config_create_mode(share, posix_mode); 3608 rc = ksmbd_vfs_create(work, name, mode); 3609 if (rc) 3610 return rc; 3611 } 3612 3613 rc = ksmbd_vfs_kern_path(work, name, 0, path, 0); 3614 if (rc) { 3615 pr_err("cannot get linux path (%s), err = %d\n", 3616 name, rc); 3617 return rc; 3618 } 3619 return 0; 3620 } 3621 3622 static int smb2_create_sd_buffer(struct ksmbd_work *work, 3623 struct smb2_create_req *req, 3624 const struct path *path) 3625 { 3626 struct create_context *context; 3627 struct create_sd_buf_req *sd_buf; 3628 3629 if (!req->CreateContextsOffset) 3630 return -ENOENT; 3631 3632 /* Parse SD BUFFER create contexts */ 3633 context = smb2_find_context_vals(req, SMB2_CREATE_SD_BUFFER, 4); 3634 if (!context) 3635 return -ENOENT; 3636 else if (IS_ERR(context)) 3637 return PTR_ERR(context); 3638 3639 ksmbd_debug(SMB, 3640 "Set ACLs using SMB2_CREATE_SD_BUFFER context\n"); 3641 sd_buf = (struct create_sd_buf_req *)context; 3642 if (le16_to_cpu(context->DataOffset) + 3643 le32_to_cpu(context->DataLength) < 3644 sizeof(struct create_sd_buf_req)) 3645 return -EINVAL; 3646 return set_info_sec(work->conn, work->tcon, path, &sd_buf->ntsd, 3647 le32_to_cpu(sd_buf->ccontext.DataLength), true, false); 3648 } 3649 3650 static void ksmbd_acls_fattr(struct smb_fattr *fattr, 3651 struct mnt_idmap *idmap, 3652 struct inode *inode) 3653 { 3654 vfsuid_t vfsuid = i_uid_into_vfsuid(idmap, inode); 3655 vfsgid_t vfsgid = i_gid_into_vfsgid(idmap, inode); 3656 3657 fattr->cf_uid = vfsuid_into_kuid(vfsuid); 3658 fattr->cf_gid = vfsgid_into_kgid(vfsgid); 3659 fattr->cf_mode = inode->i_mode; 3660 fattr->cf_acls = NULL; 3661 fattr->cf_dacls = NULL; 3662 3663 if (IS_ENABLED(CONFIG_FS_POSIX_ACL)) { 3664 fattr->cf_acls = get_inode_acl(inode, ACL_TYPE_ACCESS); 3665 if (S_ISDIR(inode->i_mode)) 3666 fattr->cf_dacls = get_inode_acl(inode, ACL_TYPE_DEFAULT); 3667 } 3668 } 3669 3670 enum { 3671 DURABLE_RECONN_V2 = 1, 3672 DURABLE_RECONN, 3673 DURABLE_REQ_V2, 3674 DURABLE_REQ, 3675 }; 3676 3677 struct durable_info { 3678 struct ksmbd_file *fp; 3679 unsigned short int type; 3680 bool persistent; 3681 bool reconnected; 3682 bool replay; 3683 bool replay_consumed; 3684 bool app_instance_id; 3685 bool app_instance_version_valid; 3686 unsigned int timeout; 3687 char *CreateGuid; 3688 char AppInstanceId[SMB2_CREATE_GUID_SIZE]; 3689 u64 app_instance_version_high; 3690 u64 app_instance_version_low; 3691 }; 3692 3693 static int smb2_check_durable_replay(struct ksmbd_work *work, 3694 struct ksmbd_file *fp, 3695 struct lease_ctx_info *lc, 3696 bool persistent) 3697 { 3698 struct oplock_info *opinfo; 3699 int ret = 0; 3700 3701 if (!fp->is_durable && !fp->is_persistent) 3702 return -EACCES; 3703 3704 if (ksmbd_vfs_compare_durable_owner(fp, work->sess->user) == false) 3705 return -EACCES; 3706 3707 if (fp->is_persistent && !persistent) 3708 return -EINVAL; 3709 3710 opinfo = opinfo_get(fp); 3711 if (!opinfo) 3712 return 0; 3713 3714 if (opinfo->sess && opinfo->sess->id != work->sess->id) { 3715 ret = -ENOEXEC; 3716 goto out; 3717 } 3718 3719 if (opinfo->is_lease) { 3720 if (!lc || 3721 memcmp(opinfo->o_lease->lease_key, lc->lease_key, 3722 SMB2_LEASE_KEY_SIZE)) { 3723 ret = -EACCES; 3724 goto out; 3725 } 3726 } else { 3727 if (lc) { 3728 ret = -EACCES; 3729 goto out; 3730 } 3731 3732 if (fp->is_durable && opinfo->level != SMB2_OPLOCK_LEVEL_BATCH) 3733 ret = -EACCES; 3734 } 3735 out: 3736 opinfo_put(opinfo); 3737 return ret; 3738 } 3739 3740 static bool smb2_durable_replay_consumed(struct ksmbd_file *fp) 3741 { 3742 bool consumed; 3743 3744 spin_lock(&fp->f_lock); 3745 consumed = fp->durable_replay_consumed; 3746 spin_unlock(&fp->f_lock); 3747 3748 return consumed; 3749 } 3750 3751 static void smb2_mark_durable_replay_consumed(struct ksmbd_file *fp) 3752 { 3753 spin_lock(&fp->f_lock); 3754 fp->durable_replay_consumed = true; 3755 spin_unlock(&fp->f_lock); 3756 } 3757 3758 static bool smb2_durable_replay_differs(struct ksmbd_file *fp, 3759 struct smb2_create_req *req) 3760 { 3761 return fp->cdoption != req->CreateDisposition || 3762 fp->create_file_attributes != req->FileAttributes; 3763 } 3764 3765 static int parse_durable_handle_context(struct ksmbd_work *work, 3766 struct smb2_create_req *req, 3767 struct lease_ctx_info *lc, 3768 struct durable_info *dh_info) 3769 { 3770 struct ksmbd_conn *conn = work->conn; 3771 struct create_context *context; 3772 int dh_idx, err = 0; 3773 u64 persistent_id = 0; 3774 int req_op_level; 3775 static const char * const durable_arr[] = {"DH2C", "DHnC", "DH2Q", "DHnQ"}; 3776 3777 req_op_level = req->RequestedOplockLevel; 3778 for (dh_idx = DURABLE_RECONN_V2; dh_idx <= ARRAY_SIZE(durable_arr); 3779 dh_idx++) { 3780 context = smb2_find_context_vals(req, durable_arr[dh_idx - 1], 4); 3781 if (IS_ERR(context)) { 3782 err = PTR_ERR(context); 3783 goto out; 3784 } 3785 if (!context) 3786 continue; 3787 3788 switch (dh_idx) { 3789 case DURABLE_RECONN_V2: 3790 { 3791 struct create_durable_handle_reconnect_v2 *recon_v2; 3792 u32 flags; 3793 3794 if (dh_info->type == DURABLE_RECONN || 3795 dh_info->type == DURABLE_REQ_V2) { 3796 err = -EINVAL; 3797 goto out; 3798 } 3799 3800 if (le32_to_cpu(context->DataLength) < 3801 sizeof(recon_v2->dcontext)) { 3802 err = -EINVAL; 3803 goto out; 3804 } 3805 3806 recon_v2 = (struct create_durable_handle_reconnect_v2 *)context; 3807 flags = le32_to_cpu(recon_v2->dcontext.Flags); 3808 if (flags & ~SMB2_DHANDLE_FLAG_PERSISTENT) { 3809 err = -EINVAL; 3810 goto out; 3811 } 3812 dh_info->persistent = flags & SMB2_DHANDLE_FLAG_PERSISTENT; 3813 persistent_id = recon_v2->dcontext.Fid.PersistentFileId; 3814 dh_info->fp = ksmbd_lookup_durable_fd(persistent_id); 3815 if (!dh_info->fp) { 3816 ksmbd_debug(SMB, "Failed to get durable handle state\n"); 3817 err = -EBADF; 3818 goto out; 3819 } 3820 3821 /* A zero VolatileFileId means that the client did not specify it. */ 3822 if (recon_v2->dcontext.Fid.VolatileFileId && 3823 dh_info->fp->durable_volatile_id != 3824 recon_v2->dcontext.Fid.VolatileFileId) { 3825 err = -EBADF; 3826 ksmbd_put_durable_fd(dh_info->fp); 3827 goto out; 3828 } 3829 3830 if (memcmp(dh_info->fp->create_guid, recon_v2->dcontext.CreateGuid, 3831 SMB2_CREATE_GUID_SIZE)) { 3832 err = -EBADF; 3833 ksmbd_put_durable_fd(dh_info->fp); 3834 goto out; 3835 } 3836 3837 /* A persistent reconnect must match the original open type. */ 3838 if (dh_info->fp->is_persistent != dh_info->persistent) { 3839 err = dh_info->persistent ? -EINVAL : -EBADF; 3840 ksmbd_put_durable_fd(dh_info->fp); 3841 goto out; 3842 } 3843 3844 dh_info->type = dh_idx; 3845 dh_info->reconnected = true; 3846 ksmbd_debug(SMB, 3847 "reconnect v2 Persistent-id from reconnect = %llu\n", 3848 persistent_id); 3849 break; 3850 } 3851 case DURABLE_RECONN: 3852 { 3853 create_durable_reconn_t *recon; 3854 3855 if (dh_info->type == DURABLE_RECONN_V2 || 3856 dh_info->type == DURABLE_REQ_V2) { 3857 err = -EINVAL; 3858 goto out; 3859 } 3860 3861 if (le32_to_cpu(context->DataLength) < 3862 sizeof(recon->Data)) { 3863 err = -EINVAL; 3864 goto out; 3865 } 3866 3867 recon = (create_durable_reconn_t *)context; 3868 persistent_id = recon->Data.Fid.PersistentFileId; 3869 dh_info->fp = ksmbd_lookup_durable_fd(persistent_id); 3870 if (!dh_info->fp) { 3871 ksmbd_debug(SMB, "Failed to get durable handle state\n"); 3872 err = -EBADF; 3873 goto out; 3874 } 3875 3876 /* A zero VolatileFileId means that the client did not specify it. */ 3877 if (recon->Data.Fid.VolatileFileId && 3878 dh_info->fp->durable_volatile_id != 3879 recon->Data.Fid.VolatileFileId) { 3880 err = -EBADF; 3881 ksmbd_put_durable_fd(dh_info->fp); 3882 goto out; 3883 } 3884 3885 dh_info->type = dh_idx; 3886 dh_info->reconnected = true; 3887 ksmbd_debug(SMB, "reconnect Persistent-id from reconnect = %llu\n", 3888 persistent_id); 3889 break; 3890 } 3891 case DURABLE_REQ_V2: 3892 { 3893 struct create_durable_req_v2 *durable_v2_blob; 3894 3895 if (dh_info->type == DURABLE_RECONN || 3896 dh_info->type == DURABLE_RECONN_V2) { 3897 err = -EINVAL; 3898 goto out; 3899 } 3900 3901 if (le32_to_cpu(context->DataLength) < 3902 sizeof(durable_v2_blob->dcontext)) { 3903 err = -EINVAL; 3904 goto out; 3905 } 3906 3907 durable_v2_blob = 3908 (struct create_durable_req_v2 *)context; 3909 if (le32_to_cpu(durable_v2_blob->dcontext.Flags) & 3910 ~SMB2_DHANDLE_FLAG_PERSISTENT) { 3911 err = -EINVAL; 3912 goto out; 3913 } 3914 ksmbd_debug(SMB, "Request for durable v2 open\n"); 3915 dh_info->CreateGuid = durable_v2_blob->dcontext.CreateGuid; 3916 dh_info->persistent = 3917 le32_to_cpu(durable_v2_blob->dcontext.Flags) & 3918 SMB2_DHANDLE_FLAG_PERSISTENT; 3919 dh_info->fp = ksmbd_lookup_fd_cguid(durable_v2_blob->dcontext.CreateGuid); 3920 if (dh_info->fp) { 3921 if (!memcmp(conn->ClientGUID, dh_info->fp->client_guid, 3922 SMB2_CLIENT_GUID_SIZE)) { 3923 if (!(req->hdr.Flags & SMB2_FLAGS_REPLAY_OPERATION)) { 3924 err = -ENOEXEC; 3925 ksmbd_put_durable_fd(dh_info->fp); 3926 goto out; 3927 } 3928 3929 if (dh_info->fp->f_state == FP_NEW) { 3930 /* Original CREATE is still pending. */ 3931 ksmbd_put_durable_fd(dh_info->fp); 3932 err = -EAGAIN; 3933 goto out; 3934 } 3935 3936 if (!dh_info->fp->is_durable && 3937 !dh_info->fp->is_persistent) { 3938 /* 3939 * A DurableHandleReqV2 CREATE can complete 3940 * without granting durability (for example, if 3941 * it requested no oplock). Its CreateGuid still 3942 * identifies a completed CREATE for replay. 3943 */ 3944 if (dh_info->fp->conn && 3945 ksmbd_vfs_compare_durable_owner( 3946 dh_info->fp, work->sess->user)) { 3947 if (smb2_durable_replay_consumed( 3948 dh_info->fp)) { 3949 ksmbd_put_durable_fd(dh_info->fp); 3950 dh_info->fp = NULL; 3951 dh_info->type = dh_idx; 3952 dh_info->replay_consumed = true; 3953 break; 3954 } 3955 if (smb2_durable_replay_differs( 3956 dh_info->fp, req)) 3957 smb2_mark_durable_replay_consumed( 3958 dh_info->fp); 3959 dh_info->replay = true; 3960 dh_info->type = dh_idx; 3961 goto out; 3962 } 3963 ksmbd_put_durable_fd(dh_info->fp); 3964 err = -EACCES; 3965 goto out; 3966 } 3967 3968 if (dh_info->fp->conn && 3969 smb2_durable_replay_consumed(dh_info->fp)) { 3970 ksmbd_put_durable_fd(dh_info->fp); 3971 dh_info->fp = NULL; 3972 dh_info->type = dh_idx; 3973 dh_info->replay_consumed = true; 3974 break; 3975 } 3976 3977 err = smb2_check_durable_replay(work, 3978 dh_info->fp, 3979 lc, 3980 dh_info->persistent); 3981 if (err) { 3982 ksmbd_put_durable_fd(dh_info->fp); 3983 goto out; 3984 } 3985 3986 if (dh_info->fp->conn) { 3987 if (smb2_durable_replay_differs(dh_info->fp, 3988 req)) 3989 smb2_mark_durable_replay_consumed( 3990 dh_info->fp); 3991 dh_info->replay = true; 3992 } else { 3993 dh_info->reconnected = true; 3994 } 3995 dh_info->type = dh_idx; 3996 goto out; 3997 } 3998 ksmbd_put_durable_fd(dh_info->fp); 3999 dh_info->fp = NULL; 4000 } 4001 4002 if ((lc && (lc->req_state & SMB2_LEASE_HANDLE_CACHING_LE)) || 4003 req_op_level == SMB2_OPLOCK_LEVEL_BATCH) { 4004 dh_info->timeout = 4005 le32_to_cpu(durable_v2_blob->dcontext.Timeout); 4006 dh_info->type = dh_idx; 4007 } 4008 break; 4009 } 4010 case DURABLE_REQ: 4011 if (dh_info->type == DURABLE_RECONN) 4012 goto out; 4013 if (dh_info->type == DURABLE_RECONN_V2 || 4014 dh_info->type == DURABLE_REQ_V2) { 4015 err = -EINVAL; 4016 goto out; 4017 } 4018 4019 if ((lc && (lc->req_state & SMB2_LEASE_HANDLE_CACHING_LE)) || 4020 req_op_level == SMB2_OPLOCK_LEVEL_BATCH) { 4021 ksmbd_debug(SMB, "Request for durable open\n"); 4022 dh_info->type = dh_idx; 4023 } 4024 } 4025 } 4026 4027 out: 4028 return err; 4029 } 4030 4031 static int parse_app_instance_id(struct smb2_create_req *req, 4032 struct durable_info *dh_info) 4033 { 4034 struct create_context *context; 4035 char *data; 4036 4037 context = smb2_find_context_vals(req, SMB2_CREATE_APP_INSTANCE_ID, 4038 SMB2_CREATE_GUID_SIZE); 4039 if (IS_ERR(context)) 4040 return PTR_ERR(context); 4041 if (!context) 4042 return 0; 4043 4044 if (le32_to_cpu(context->DataLength) < 20) 4045 return -EINVAL; 4046 4047 data = (char *)context + le16_to_cpu(context->DataOffset); 4048 if (data[0] != 20 || data[1]) 4049 return -EINVAL; 4050 4051 memcpy(dh_info->AppInstanceId, data + 4, SMB2_CREATE_GUID_SIZE); 4052 dh_info->app_instance_id = true; 4053 return 0; 4054 } 4055 4056 static int parse_app_instance_version(struct smb2_create_req *req, 4057 struct durable_info *dh_info) 4058 { 4059 struct create_context *context; 4060 char *data; 4061 4062 context = smb2_find_context_vals(req, SMB2_CREATE_APP_INSTANCE_VERSION, 4063 SMB2_CREATE_GUID_SIZE); 4064 if (IS_ERR(context)) 4065 return PTR_ERR(context); 4066 if (!context) 4067 return 0; 4068 4069 if (le32_to_cpu(context->DataLength) < 24) 4070 return -EINVAL; 4071 4072 data = (char *)context + le16_to_cpu(context->DataOffset); 4073 if (get_unaligned_le16(data) != 24 || 4074 get_unaligned_le16(data + 2) != 0) 4075 return -EINVAL; 4076 4077 dh_info->app_instance_version_high = get_unaligned_le64(data + 8); 4078 dh_info->app_instance_version_low = get_unaligned_le64(data + 16); 4079 dh_info->app_instance_version_valid = true; 4080 return 0; 4081 } 4082 4083 static int smb2_handle_app_instance_id(struct smb2_create_rsp *rsp, 4084 struct durable_info *dh_info) 4085 { 4086 struct ksmbd_file *old_fp; 4087 bool reject = false; 4088 4089 if (!dh_info->app_instance_id) 4090 return 0; 4091 4092 old_fp = ksmbd_lookup_fd_app_instance_id(dh_info->AppInstanceId); 4093 if (!old_fp) 4094 return 0; 4095 4096 if (dh_info->app_instance_version_valid) { 4097 if (old_fp->app_instance_version_valid && 4098 (dh_info->app_instance_version_high < 4099 old_fp->app_instance_version_high || 4100 (dh_info->app_instance_version_high == 4101 old_fp->app_instance_version_high && 4102 dh_info->app_instance_version_low <= 4103 old_fp->app_instance_version_low))) 4104 reject = true; 4105 } else if (old_fp->app_instance_version_valid) { 4106 reject = true; 4107 } 4108 4109 ksmbd_put_durable_fd(old_fp); 4110 if (reject) { 4111 rsp->hdr.Status = STATUS_FILE_FORCED_CLOSED; 4112 return -EIO; 4113 } 4114 4115 return ksmbd_close_fd_app_instance_id(dh_info->AppInstanceId); 4116 } 4117 4118 /** 4119 * smb2_open() - handler for smb file open request 4120 * @work: smb work containing request buffer 4121 * 4122 * Return: 0 on success, otherwise error 4123 */ 4124 int smb2_open(struct ksmbd_work *work) 4125 { 4126 struct ksmbd_conn *conn = work->conn; 4127 struct ksmbd_session *sess = work->sess; 4128 struct ksmbd_tree_connect *tcon = work->tcon; 4129 struct smb2_create_req *req; 4130 struct smb2_create_rsp *rsp; 4131 struct path path; 4132 struct ksmbd_share_config *share = tcon->share_conf; 4133 struct ksmbd_file *fp = NULL; 4134 struct file *filp = NULL; 4135 struct mnt_idmap *idmap = NULL; 4136 struct kstat stat; 4137 struct create_context *context; 4138 struct lease_ctx_info *lc = NULL; 4139 struct create_ea_buf_req *ea_buf = NULL; 4140 struct oplock_info *opinfo; 4141 struct durable_info dh_info = {0}; 4142 __le32 *next_ptr = NULL; 4143 int req_op_level = 0, open_flags = 0, may_flags = 0, file_info = 0; 4144 int rc = 0; 4145 int contxt_cnt = 0, query_disk_id = 0; 4146 bool maximal_access_ctxt = false, posix_ctxt = false; 4147 bool aapl_ctxt = false; 4148 bool durable_rsp = true; 4149 __u64 aapl_req_bitmap = 0, aapl_client_caps = 0; 4150 int s_type = 0; 4151 int next_off = 0; 4152 char *name = NULL; 4153 char *stream_name = NULL; 4154 bool file_present = false, created = false, already_permitted = false; 4155 int share_ret, need_truncate = 0; 4156 u64 time, alloc_size = 0; 4157 umode_t posix_mode = 0; 4158 __le32 daccess, maximal_access = 0; 4159 u32 dos_attr; 4160 int iov_len = 0; 4161 4162 ksmbd_debug(SMB, "Received smb2 create request\n"); 4163 4164 WORK_BUFFERS(work, req, rsp); 4165 4166 if (req->hdr.NextCommand && !work->next_smb2_rcv_hdr_off && 4167 (req->hdr.Flags & SMB2_FLAGS_RELATED_OPERATIONS)) { 4168 ksmbd_debug(SMB, "invalid flag in chained command\n"); 4169 rsp->hdr.Status = STATUS_INVALID_PARAMETER; 4170 smb2_set_err_rsp(work); 4171 return -EINVAL; 4172 } 4173 4174 if (test_share_config_flag(share, KSMBD_SHARE_FLAG_PIPE)) { 4175 ksmbd_debug(SMB, "IPC pipe create request\n"); 4176 return create_smb2_pipe(work); 4177 } 4178 4179 if (req->CreateContextsOffset && tcon->posix_extensions) { 4180 context = smb2_find_context_vals(req, SMB2_CREATE_TAG_POSIX, 16); 4181 if (IS_ERR(context)) { 4182 rc = PTR_ERR(context); 4183 goto err_out2; 4184 } else if (context) { 4185 struct create_posix *posix = (struct create_posix *)context; 4186 4187 if (le16_to_cpu(context->DataOffset) + 4188 le32_to_cpu(context->DataLength) < 4189 sizeof(struct create_posix) - 4) { 4190 rc = -EINVAL; 4191 goto err_out2; 4192 } 4193 ksmbd_debug(SMB, "get posix context\n"); 4194 4195 posix_mode = le32_to_cpu(posix->Mode); 4196 posix_ctxt = true; 4197 } 4198 } 4199 4200 if (req->NameLength) { 4201 name = smb2_get_name((char *)req + le16_to_cpu(req->NameOffset), 4202 le16_to_cpu(req->NameLength), 4203 work->conn->local_nls); 4204 if (IS_ERR(name)) { 4205 rc = PTR_ERR(name); 4206 name = NULL; 4207 goto err_out2; 4208 } 4209 4210 ksmbd_debug(SMB, "converted name = %s\n", name); 4211 4212 if (posix_ctxt == false) { 4213 if (strchr(name, ':')) { 4214 if (!test_share_config_flag(work->tcon->share_conf, 4215 KSMBD_SHARE_FLAG_STREAMS)) { 4216 rc = -EBADF; 4217 goto err_out2; 4218 } 4219 rc = parse_stream_name(name, &stream_name, &s_type); 4220 if (rc < 0) 4221 goto err_out2; 4222 } 4223 4224 rc = ksmbd_validate_filename(name); 4225 if (rc < 0) 4226 goto err_out2; 4227 } 4228 4229 if (ksmbd_share_veto_filename(share, name)) { 4230 rc = -ENOENT; 4231 ksmbd_debug(SMB, "Reject open(), vetoed file: %s\n", 4232 name); 4233 goto err_out2; 4234 } 4235 } else { 4236 name = kstrdup("", KSMBD_DEFAULT_GFP); 4237 if (!name) { 4238 rc = -ENOMEM; 4239 goto err_out2; 4240 } 4241 } 4242 4243 req_op_level = req->RequestedOplockLevel; 4244 4245 if (req->CreateContextsOffset) { 4246 rc = parse_app_instance_id(req, &dh_info); 4247 if (rc) 4248 goto err_out2; 4249 rc = parse_app_instance_version(req, &dh_info); 4250 if (rc) 4251 goto err_out2; 4252 } 4253 4254 if (server_conf.flags & KSMBD_GLOBAL_FLAG_DURABLE_HANDLE && 4255 req->CreateContextsOffset) { 4256 lc = parse_lease_state(req); 4257 if (IS_ERR(lc)) { 4258 rc = PTR_ERR(lc); 4259 lc = NULL; 4260 goto err_out2; 4261 } 4262 if (lc && lc->version == 2 && conn->dialect < SMB30_PROT_ID) { 4263 kfree(lc); 4264 lc = NULL; 4265 if (req_op_level == SMB2_OPLOCK_LEVEL_LEASE) 4266 req_op_level = SMB2_OPLOCK_LEVEL_NONE; 4267 } 4268 rc = parse_durable_handle_context(work, req, lc, &dh_info); 4269 if (rc) { 4270 ksmbd_debug(SMB, "error parsing durable handle context\n"); 4271 goto err_out2; 4272 } 4273 4274 if (dh_info.replay == true) { 4275 fp = dh_info.fp; 4276 if (ksmbd_override_fsids(work)) { 4277 rc = -ENOMEM; 4278 goto err_out2; 4279 } 4280 4281 file_info = FILE_OPENED; 4282 rc = ksmbd_vfs_getattr(&fp->filp->f_path, &stat); 4283 if (rc) 4284 goto err_out2; 4285 4286 goto reconnected_fp; 4287 } 4288 4289 if (dh_info.reconnected == true) { 4290 rc = smb2_check_durable_oplock(conn, share, dh_info.fp, 4291 lc, sess->user, name); 4292 if (rc) 4293 goto err_out2; 4294 4295 rc = ksmbd_reopen_durable_fd(work, dh_info.fp); 4296 if (rc) 4297 goto err_out2; 4298 4299 fp = dh_info.fp; 4300 4301 if (ksmbd_override_fsids(work)) { 4302 rc = -ENOMEM; 4303 goto err_out2; 4304 } 4305 4306 file_info = FILE_OPENED; 4307 4308 rc = ksmbd_vfs_getattr(&fp->filp->f_path, &stat); 4309 if (rc) 4310 goto err_out2; 4311 4312 goto reconnected_fp; 4313 } 4314 4315 } else if (req_op_level == SMB2_OPLOCK_LEVEL_LEASE) { 4316 lc = parse_lease_state(req); 4317 if (IS_ERR(lc)) { 4318 rc = PTR_ERR(lc); 4319 lc = NULL; 4320 goto err_out2; 4321 } 4322 if (lc && lc->version == 2 && conn->dialect < SMB30_PROT_ID) { 4323 kfree(lc); 4324 lc = NULL; 4325 req_op_level = SMB2_OPLOCK_LEVEL_NONE; 4326 } 4327 } 4328 4329 if (dh_info.app_instance_id && !dh_info.reconnected && 4330 !dh_info.replay) { 4331 rc = smb2_handle_app_instance_id(rsp, &dh_info); 4332 if (rc) 4333 goto err_out2; 4334 } 4335 4336 if (le32_to_cpu(req->ImpersonationLevel) > le32_to_cpu(IL_DELEGATE)) { 4337 pr_err("Invalid impersonationlevel : 0x%x\n", 4338 le32_to_cpu(req->ImpersonationLevel)); 4339 rc = -EIO; 4340 rsp->hdr.Status = STATUS_BAD_IMPERSONATION_LEVEL; 4341 goto err_out2; 4342 } 4343 4344 if (req->CreateOptions && !(req->CreateOptions & CREATE_OPTIONS_MASK_LE)) { 4345 pr_err("Invalid create options : 0x%x\n", 4346 le32_to_cpu(req->CreateOptions)); 4347 rc = -EINVAL; 4348 goto err_out2; 4349 } else { 4350 if (req->CreateOptions & FILE_SEQUENTIAL_ONLY_LE && 4351 req->CreateOptions & FILE_RANDOM_ACCESS_LE) 4352 req->CreateOptions &= ~FILE_SEQUENTIAL_ONLY_LE; 4353 4354 if (req->CreateOptions & 4355 (FILE_OPEN_BY_FILE_ID_LE | CREATE_TREE_CONNECTION | 4356 FILE_RESERVE_OPFILTER_LE)) { 4357 rc = -EOPNOTSUPP; 4358 goto err_out2; 4359 } 4360 4361 if (req->CreateOptions & FILE_DIRECTORY_FILE_LE) { 4362 if (req->CreateOptions & FILE_NON_DIRECTORY_FILE_LE) { 4363 rc = -EINVAL; 4364 goto err_out2; 4365 } 4366 } 4367 } 4368 4369 if (le32_to_cpu(req->CreateDisposition) > 4370 le32_to_cpu(FILE_OVERWRITE_IF_LE)) { 4371 pr_err("Invalid create disposition : 0x%x\n", 4372 le32_to_cpu(req->CreateDisposition)); 4373 rc = -EINVAL; 4374 goto err_out2; 4375 } 4376 4377 if (!(req->DesiredAccess & DESIRED_ACCESS_MASK)) { 4378 pr_err("Invalid desired access : 0x%x\n", 4379 le32_to_cpu(req->DesiredAccess)); 4380 rc = -EACCES; 4381 goto err_out2; 4382 } 4383 4384 if (req->DesiredAccess == FILE_SYNCHRONIZE_LE && 4385 req->CreateDisposition == FILE_OPEN_IF_LE && 4386 !req->FileAttributes) { 4387 rc = -EACCES; 4388 goto err_out2; 4389 } 4390 4391 if (req->FileAttributes && 4392 (req->FileAttributes & ~cpu_to_le32(SMB2_CREATE_FILE_ATTRIBUTE_MASK))) { 4393 pr_err("Invalid file attribute : 0x%x\n", 4394 le32_to_cpu(req->FileAttributes)); 4395 rc = -EINVAL; 4396 goto err_out2; 4397 } 4398 4399 if (req->CreateContextsOffset) { 4400 /* Parse non-durable handle create contexts */ 4401 context = smb2_find_context_vals(req, SMB2_CREATE_EA_BUFFER, 4); 4402 if (IS_ERR(context)) { 4403 rc = PTR_ERR(context); 4404 goto err_out2; 4405 } else if (context) { 4406 ea_buf = (struct create_ea_buf_req *)context; 4407 if (le16_to_cpu(context->DataOffset) + 4408 le32_to_cpu(context->DataLength) < 4409 sizeof(struct create_ea_buf_req)) { 4410 rc = -EINVAL; 4411 goto err_out2; 4412 } 4413 if (req->CreateOptions & FILE_NO_EA_KNOWLEDGE_LE) { 4414 rsp->hdr.Status = STATUS_ACCESS_DENIED; 4415 rc = -EACCES; 4416 goto err_out2; 4417 } 4418 } 4419 4420 context = smb2_find_context_vals(req, 4421 SMB2_CREATE_QUERY_MAXIMAL_ACCESS_REQUEST, 4); 4422 if (IS_ERR(context)) { 4423 rc = PTR_ERR(context); 4424 goto err_out2; 4425 } else if (context) { 4426 ksmbd_debug(SMB, 4427 "get query maximal access context\n"); 4428 maximal_access_ctxt = 1; 4429 } 4430 4431 context = smb2_find_context_vals(req, 4432 SMB2_CREATE_TIMEWARP_REQUEST, 4); 4433 if (IS_ERR(context)) { 4434 rc = PTR_ERR(context); 4435 goto err_out2; 4436 } else if (context) { 4437 ksmbd_debug(SMB, "get timewarp context\n"); 4438 rc = -EBADF; 4439 goto err_out2; 4440 } 4441 } 4442 4443 if (ksmbd_override_fsids(work)) { 4444 rc = -ENOMEM; 4445 goto err_out2; 4446 } 4447 4448 rc = ksmbd_vfs_kern_path(work, name, LOOKUP_NO_SYMLINKS, 4449 &path, 1); 4450 4451 /* 4452 * A durable handle opened with delete-on-close is preserved across a 4453 * disconnect so it can be reclaimed by a durable reconnect. When a new 4454 * delete-on-close open for the same name arrives instead, the 4455 * disconnected handle must give way: close it so its delete-on-close 4456 * removes the file, then re-resolve so this open can create a fresh one. 4457 */ 4458 if (!rc && (req->CreateOptions & FILE_DELETE_ON_CLOSE_LE) && 4459 (req->CreateDisposition == FILE_OVERWRITE_IF_LE || 4460 req->CreateDisposition == FILE_OPEN_IF_LE) && 4461 ksmbd_close_disconnected_durable_delete_on_close(path.dentry)) { 4462 path_put(&path); 4463 rc = ksmbd_vfs_kern_path(work, name, LOOKUP_NO_SYMLINKS, 4464 &path, 1); 4465 } 4466 4467 if (!rc) { 4468 file_present = true; 4469 4470 if (req->CreateOptions & FILE_DELETE_ON_CLOSE_LE) { 4471 struct xattr_dos_attrib da; 4472 4473 /* 4474 * If file exists with under flags, return access 4475 * denied error. 4476 */ 4477 if (req->CreateDisposition == FILE_OVERWRITE_IF_LE || 4478 req->CreateDisposition == FILE_OPEN_IF_LE) { 4479 rc = -EACCES; 4480 goto err_out; 4481 } 4482 4483 if (!test_tree_conn_flag(tcon, KSMBD_TREE_CONN_FLAG_WRITABLE)) { 4484 ksmbd_debug(SMB, 4485 "User does not have write permission\n"); 4486 rc = -EACCES; 4487 goto err_out; 4488 } 4489 4490 if (test_share_config_flag(tcon->share_conf, 4491 KSMBD_SHARE_FLAG_STORE_DOS_ATTRS) && 4492 ksmbd_vfs_get_dos_attrib_xattr(mnt_idmap(path.mnt), 4493 path.dentry, &da) > 0 && 4494 da.attr & FILE_ATTRIBUTE_READONLY) { 4495 rsp->hdr.Status = STATUS_CANNOT_DELETE; 4496 rc = -EACCES; 4497 goto err_out; 4498 } 4499 } else if (d_is_symlink(path.dentry)) { 4500 rc = -EACCES; 4501 goto err_out; 4502 } 4503 4504 idmap = mnt_idmap(path.mnt); 4505 } else { 4506 if (rc != -ENOENT) 4507 goto err_out; 4508 ksmbd_debug(SMB, "can not get linux path for %s, rc = %d\n", 4509 name, rc); 4510 rc = 0; 4511 } 4512 4513 if (!file_present && req->CreateOptions & FILE_DELETE_ON_CLOSE_LE && 4514 req->FileAttributes & FILE_ATTRIBUTE_READONLY_LE) { 4515 rsp->hdr.Status = STATUS_CANNOT_DELETE; 4516 rc = -EACCES; 4517 goto err_out; 4518 } 4519 4520 /* 4521 * An explicit ::$DATA suffix names the unnamed data stream and is 4522 * canonicalized to a NULL stream name (base file), but the request 4523 * still has to be validated against the data-stream type, e.g. opening 4524 * <dir>::$DATA with FILE_DIRECTORY_FILE must fail with 4525 * STATUS_NOT_A_DIRECTORY. 4526 */ 4527 if (stream_name || s_type == DATA_STREAM) { 4528 if (req->CreateOptions & FILE_DIRECTORY_FILE_LE) { 4529 if (s_type == DATA_STREAM) { 4530 rc = -EIO; 4531 rsp->hdr.Status = STATUS_NOT_A_DIRECTORY; 4532 } 4533 } else { 4534 if (file_present && S_ISDIR(d_inode(path.dentry)->i_mode) && 4535 !stream_name && s_type == DATA_STREAM) { 4536 rc = -EIO; 4537 rsp->hdr.Status = STATUS_FILE_IS_A_DIRECTORY; 4538 } 4539 } 4540 4541 if (req->CreateOptions & FILE_DIRECTORY_FILE_LE && 4542 req->FileAttributes & FILE_ATTRIBUTE_NORMAL_LE) { 4543 rsp->hdr.Status = STATUS_NOT_A_DIRECTORY; 4544 rc = -EIO; 4545 } 4546 4547 if (rc < 0) 4548 goto err_out; 4549 } 4550 4551 if (file_present && req->CreateOptions & FILE_NON_DIRECTORY_FILE_LE && 4552 S_ISDIR(d_inode(path.dentry)->i_mode) && 4553 !(req->CreateOptions & FILE_DELETE_ON_CLOSE_LE)) { 4554 ksmbd_debug(SMB, "open() argument is a directory: %s, %x\n", 4555 name, req->CreateOptions); 4556 rsp->hdr.Status = STATUS_FILE_IS_A_DIRECTORY; 4557 rc = -EIO; 4558 goto err_out; 4559 } 4560 4561 if (file_present && (req->CreateOptions & FILE_DIRECTORY_FILE_LE) && 4562 !(req->CreateDisposition == FILE_CREATE_LE) && 4563 !S_ISDIR(d_inode(path.dentry)->i_mode)) { 4564 rsp->hdr.Status = STATUS_NOT_A_DIRECTORY; 4565 rc = -EIO; 4566 goto err_out; 4567 } 4568 4569 if (!stream_name && file_present && 4570 req->CreateDisposition == FILE_CREATE_LE) { 4571 rc = -EEXIST; 4572 goto err_out; 4573 } 4574 4575 daccess = smb_map_generic_desired_access(req->DesiredAccess); 4576 4577 if (file_present && !(req->CreateOptions & FILE_DELETE_ON_CLOSE_LE)) { 4578 rc = smb_check_perm_dacl(conn, &path, &daccess, 4579 req->DesiredAccess, 4580 sess->user->uid, false); 4581 if (rc) 4582 goto err_out; 4583 4584 if (maximal_access_ctxt) { 4585 maximal_access = FILE_MAXIMAL_ACCESS_LE; 4586 rc = smb_check_perm_dacl(conn, &path, &maximal_access, 4587 0, sess->user->uid, false); 4588 if (rc) 4589 goto err_out; 4590 4591 /* 4592 * smb_check_perm_dacl() returns success without 4593 * touching *pdaccess when the object has no stored 4594 * NT ACL, leaving maximal_access as the 4595 * FILE_MAXIMAL_ACCESS_LE request sentinel instead of 4596 * a real access mask. 4597 */ 4598 if (maximal_access == FILE_MAXIMAL_ACCESS_LE) 4599 ksmbd_vfs_query_maximal_access(idmap, path.dentry, 4600 &maximal_access); 4601 } 4602 } 4603 4604 if (daccess & FILE_MAXIMAL_ACCESS_LE) { 4605 if (!file_present) { 4606 daccess = cpu_to_le32(GENERIC_ALL_FLAGS); 4607 } else { 4608 ksmbd_vfs_query_maximal_access(idmap, 4609 path.dentry, 4610 &daccess); 4611 already_permitted = true; 4612 } 4613 maximal_access = daccess; 4614 } 4615 4616 open_flags = smb2_create_open_flags(file_present, daccess, 4617 req->CreateDisposition, 4618 &may_flags, 4619 req->CreateOptions, 4620 file_present ? d_inode(path.dentry)->i_mode : 0); 4621 4622 if (!test_tree_conn_flag(tcon, KSMBD_TREE_CONN_FLAG_WRITABLE)) { 4623 if (open_flags & (O_CREAT | O_TRUNC)) { 4624 ksmbd_debug(SMB, 4625 "User does not have write permission\n"); 4626 rc = -EACCES; 4627 goto err_out; 4628 } 4629 } 4630 4631 /*create file if not present */ 4632 if (!file_present) { 4633 rc = smb2_creat(work, &path, name, open_flags, 4634 posix_mode, 4635 req->CreateOptions & FILE_DIRECTORY_FILE_LE); 4636 if (rc) { 4637 if (rc == -ENOENT) { 4638 rc = -EIO; 4639 rsp->hdr.Status = STATUS_OBJECT_PATH_NOT_FOUND; 4640 } 4641 goto err_out; 4642 } 4643 4644 created = true; 4645 idmap = mnt_idmap(path.mnt); 4646 if (ea_buf) { 4647 if (le32_to_cpu(ea_buf->ccontext.DataLength) < 4648 sizeof(struct smb2_ea_info)) { 4649 rc = -EINVAL; 4650 goto err_out; 4651 } 4652 4653 rc = smb2_set_ea(&ea_buf->ea, 4654 le32_to_cpu(ea_buf->ccontext.DataLength), 4655 &path, false); 4656 if (rc == -EOPNOTSUPP) 4657 rc = 0; 4658 else if (rc) 4659 goto err_out; 4660 } 4661 } else if (!already_permitted) { 4662 /* FILE_READ_ATTRIBUTE is allowed without inode_permission, 4663 * because execute(search) permission on a parent directory, 4664 * is already granted. 4665 */ 4666 if (daccess & ~(FILE_READ_ATTRIBUTES_LE | FILE_READ_CONTROL_LE)) { 4667 rc = inode_permission(idmap, 4668 d_inode(path.dentry), 4669 may_flags); 4670 if (rc) 4671 goto err_out; 4672 4673 if ((daccess & FILE_DELETE_LE) || 4674 (req->CreateOptions & FILE_DELETE_ON_CLOSE_LE)) { 4675 rc = inode_permission(idmap, 4676 d_inode(path.dentry->d_parent), 4677 MAY_EXEC | MAY_WRITE); 4678 if (rc) 4679 goto err_out; 4680 } 4681 } 4682 } 4683 4684 rc = ksmbd_query_inode_status(path.dentry->d_parent); 4685 if (rc == KSMBD_INODE_STATUS_PENDING_DELETE) { 4686 rc = -EBUSY; 4687 goto err_out; 4688 } 4689 4690 rc = 0; 4691 filp = dentry_open(&path, open_flags, current_cred()); 4692 if (IS_ERR(filp)) { 4693 rc = PTR_ERR(filp); 4694 pr_err("dentry open for dir failed, rc %d\n", rc); 4695 goto err_out; 4696 } 4697 4698 if (file_present) { 4699 if (!(open_flags & O_TRUNC)) 4700 file_info = FILE_OPENED; 4701 else 4702 file_info = FILE_OVERWRITTEN; 4703 4704 if ((req->CreateDisposition & FILE_CREATE_MASK_LE) == 4705 FILE_SUPERSEDE_LE) 4706 file_info = FILE_SUPERSEDED; 4707 } else if (open_flags & O_CREAT) { 4708 file_info = FILE_CREATED; 4709 } 4710 4711 ksmbd_vfs_set_fadvise(filp, req->CreateOptions); 4712 4713 /* Obtain Volatile-ID */ 4714 fp = ksmbd_open_fd(work, filp); 4715 if (IS_ERR(fp)) { 4716 fput(filp); 4717 rc = PTR_ERR(fp); 4718 fp = NULL; 4719 goto err_out; 4720 } 4721 4722 /* Get Persistent-ID */ 4723 ksmbd_open_durable_fd(fp); 4724 if (!has_file_id(fp->persistent_id)) { 4725 rc = -ENOMEM; 4726 goto err_out; 4727 } 4728 4729 /* 4730 * Publish the client and create GUID before an oplock/lease break can 4731 * make this CREATE pending. A replay of that in-flight CREATE must find 4732 * this FP_NEW handle and fail with STATUS_FILE_NOT_AVAILABLE instead of 4733 * waiting on the same break again. 4734 */ 4735 memcpy(fp->client_guid, conn->ClientGUID, SMB2_CLIENT_GUID_SIZE); 4736 if (dh_info.app_instance_id) { 4737 memcpy(fp->app_instance_id, dh_info.AppInstanceId, 4738 SMB2_CREATE_GUID_SIZE); 4739 fp->has_app_instance_id = true; 4740 } 4741 if (dh_info.app_instance_version_valid) { 4742 fp->app_instance_version_high = 4743 dh_info.app_instance_version_high; 4744 fp->app_instance_version_low = dh_info.app_instance_version_low; 4745 fp->app_instance_version_valid = true; 4746 } 4747 if (dh_info.CreateGuid) { 4748 memcpy(fp->create_guid, dh_info.CreateGuid, SMB2_CREATE_GUID_SIZE); 4749 fp->durable_replay_consumed = dh_info.replay_consumed; 4750 rc = ksmbd_vfs_set_durable_owner(fp, sess->user); 4751 if (rc) 4752 goto err_out; 4753 } 4754 4755 fp->cdoption = req->CreateDisposition; 4756 fp->create_file_attributes = req->FileAttributes; 4757 fp->daccess = daccess; 4758 fp->saccess = req->ShareAccess; 4759 fp->coption = req->CreateOptions; 4760 4761 /* Set default windows and posix acls if creating new file */ 4762 if (created) { 4763 int posix_acl_rc; 4764 struct inode *inode = d_inode(path.dentry); 4765 4766 posix_acl_rc = ksmbd_vfs_inherit_posix_acl(idmap, 4767 &path, 4768 d_inode(path.dentry->d_parent)); 4769 if (posix_acl_rc) 4770 ksmbd_debug(SMB, "inherit posix acl failed : %d\n", posix_acl_rc); 4771 4772 rc = smb2_create_sd_buffer(work, req, &path); 4773 if (rc && rc != -ENOENT) 4774 goto err_out; 4775 4776 if (rc == -ENOENT) { 4777 if (test_share_config_flag(work->tcon->share_conf, 4778 KSMBD_SHARE_FLAG_ACL_XATTR)) { 4779 rc = smb_inherit_dacl(conn, &path, sess->user->uid, 4780 sess->user->gid); 4781 } 4782 if (rc) { 4783 if (posix_acl_rc) 4784 ksmbd_vfs_set_init_posix_acl(idmap, 4785 &path); 4786 4787 if (test_share_config_flag(work->tcon->share_conf, 4788 KSMBD_SHARE_FLAG_ACL_XATTR)) { 4789 struct smb_fattr fattr; 4790 struct smb_ntsd *pntsd; 4791 int pntsd_size; 4792 size_t scratch_len; 4793 4794 ksmbd_acls_fattr(&fattr, idmap, inode); 4795 scratch_len = smb_acl_sec_desc_scratch_len(&fattr, 4796 NULL, 0, 4797 OWNER_SECINFO | GROUP_SECINFO | 4798 DACL_SECINFO); 4799 if (!scratch_len || scratch_len == SIZE_MAX) { 4800 rc = -EFBIG; 4801 posix_acl_release(fattr.cf_acls); 4802 posix_acl_release(fattr.cf_dacls); 4803 goto err_out; 4804 } 4805 4806 pntsd = kvzalloc(scratch_len, KSMBD_DEFAULT_GFP); 4807 if (!pntsd) { 4808 rc = -ENOMEM; 4809 posix_acl_release(fattr.cf_acls); 4810 posix_acl_release(fattr.cf_dacls); 4811 goto err_out; 4812 } 4813 4814 rc = build_sec_desc(idmap, 4815 pntsd, NULL, 0, 4816 OWNER_SECINFO | 4817 GROUP_SECINFO | 4818 DACL_SECINFO, 4819 &pntsd_size, &fattr); 4820 posix_acl_release(fattr.cf_acls); 4821 posix_acl_release(fattr.cf_dacls); 4822 if (rc) { 4823 kvfree(pntsd); 4824 goto err_out; 4825 } 4826 4827 rc = ksmbd_vfs_set_sd_xattr(conn, 4828 idmap, 4829 &path, 4830 pntsd, 4831 pntsd_size, 4832 false); 4833 kvfree(pntsd); 4834 if (rc) 4835 pr_err("failed to store ntacl in xattr : %d\n", 4836 rc); 4837 } 4838 } 4839 } 4840 rc = 0; 4841 } 4842 4843 if (stream_name) { 4844 rc = smb2_set_stream_name_xattr(&path, 4845 fp, 4846 stream_name, 4847 s_type); 4848 if (rc) 4849 goto err_out; 4850 file_info = FILE_CREATED; 4851 } 4852 4853 fp->attrib_only = !(req->DesiredAccess & ~(FILE_READ_ATTRIBUTES_LE | 4854 FILE_WRITE_ATTRIBUTES_LE | FILE_SYNCHRONIZE_LE)); 4855 4856 fp->is_posix_ctxt = posix_ctxt; 4857 4858 /* fp should be searchable through ksmbd_inode.m_fp_list 4859 * after daccess, saccess, attrib_only, and stream are 4860 * initialized. 4861 */ 4862 down_write(&fp->f_ci->m_lock); 4863 list_add(&fp->node, &fp->f_ci->m_fp_list); 4864 up_write(&fp->f_ci->m_lock); 4865 4866 /* Check delete pending among previous fp before oplock break */ 4867 if (ksmbd_inode_pending_delete(fp)) { 4868 rc = -EBUSY; 4869 goto err_out; 4870 } 4871 4872 if (!stream_name && daccess & FILE_DELETE_LE && 4873 ksmbd_has_stream_without_delete_share(fp)) { 4874 rc = -EPERM; 4875 goto err_out; 4876 } 4877 4878 if (file_present || created) 4879 path_put(&path); 4880 4881 if (!S_ISDIR(file_inode(filp)->i_mode) && open_flags & O_TRUNC && 4882 !fp->attrib_only && !stream_name) { 4883 smb_break_all_oplock(work, fp); 4884 need_truncate = 1; 4885 } 4886 4887 share_ret = ksmbd_smb_check_shared_mode(fp->filp, fp); 4888 if (!test_share_config_flag(work->tcon->share_conf, KSMBD_SHARE_FLAG_OPLOCKS) || 4889 (req_op_level == SMB2_OPLOCK_LEVEL_LEASE && 4890 !(conn->vals->req_capabilities & SMB2_GLOBAL_CAP_LEASING))) { 4891 if (share_ret < 0 && !S_ISDIR(file_inode(fp->filp)->i_mode)) { 4892 rc = share_ret; 4893 goto err_out1; 4894 } 4895 } else { 4896 if (created && !lc) 4897 smb_send_parent_lease_break_noti(fp, NULL); 4898 4899 if (req_op_level == SMB2_OPLOCK_LEVEL_LEASE && lc) { 4900 if (S_ISDIR(file_inode(filp)->i_mode)) { 4901 lc->req_state &= ~SMB2_LEASE_WRITE_CACHING_LE; 4902 lc->is_dir = true; 4903 } 4904 4905 /* 4906 * Compare parent lease using parent key. If there is no 4907 * a lease that has same parent key, Send lease break 4908 * notification. 4909 */ 4910 smb_send_parent_lease_break_noti(fp, lc); 4911 4912 req_op_level = smb2_map_lease_to_oplock(lc->req_state); 4913 ksmbd_debug(SMB, 4914 "lease req for(%s) req oplock state 0x%x, lease state 0x%x\n", 4915 name, req_op_level, lc->req_state); 4916 rc = find_same_lease_key(conn, fp->f_ci, lc); 4917 if (rc) 4918 goto err_out1; 4919 } else if (open_flags == O_RDONLY && 4920 (req_op_level == SMB2_OPLOCK_LEVEL_BATCH || 4921 req_op_level == SMB2_OPLOCK_LEVEL_EXCLUSIVE)) 4922 req_op_level = SMB2_OPLOCK_LEVEL_II; 4923 4924 rc = smb_grant_oplock(work, req_op_level, 4925 fp->persistent_id, fp, 4926 le32_to_cpu(req->hdr.Id.SyncId.TreeId), 4927 lc, share_ret, 4928 smb3_hdr_replay(&req->hdr)); 4929 if (rc < 0) 4930 goto err_out1; 4931 } 4932 4933 if (req->CreateOptions & FILE_DELETE_ON_CLOSE_LE) { 4934 smb_break_all_levII_oplock_for_delete(work, fp); 4935 ksmbd_fd_set_delete_on_close(fp, file_info); 4936 } 4937 4938 if (need_truncate) { 4939 rc = smb2_create_truncate(&fp->filp->f_path); 4940 if (rc) 4941 goto err_out1; 4942 } 4943 4944 if (req->CreateContextsOffset) { 4945 struct create_alloc_size_req *az_req; 4946 4947 az_req = (struct create_alloc_size_req *)smb2_find_context_vals(req, 4948 SMB2_CREATE_ALLOCATION_SIZE, 4); 4949 if (IS_ERR(az_req)) { 4950 rc = PTR_ERR(az_req); 4951 goto err_out1; 4952 } else if (az_req) { 4953 int err; 4954 4955 if (le16_to_cpu(az_req->ccontext.DataOffset) + 4956 le32_to_cpu(az_req->ccontext.DataLength) < 4957 sizeof(struct create_alloc_size_req)) { 4958 rc = -EINVAL; 4959 goto err_out1; 4960 } 4961 alloc_size = le64_to_cpu(az_req->AllocationSize); 4962 fp->allocation_size_set = true; 4963 ksmbd_debug(SMB, 4964 "request smb2 create allocate size : %llu\n", 4965 alloc_size); 4966 /* 4967 * fp->filp is the base file's data fork for a stream 4968 * handle (streams are xattr-backed on the same 4969 * underlying file) -- fallocate has no meaning for a 4970 * stream and would otherwise pre-allocate storage on 4971 * the base file's data instead. 4972 */ 4973 if (!ksmbd_stream_fd(fp)) { 4974 smb_break_all_levII_oplock(work, fp, 1); 4975 err = vfs_fallocate(fp->filp, FALLOC_FL_KEEP_SIZE, 0, 4976 alloc_size); 4977 if (err < 0) 4978 ksmbd_debug(SMB, 4979 "vfs_fallocate is failed : %d\n", 4980 err); 4981 } 4982 } 4983 4984 context = smb2_find_context_vals(req, SMB2_CREATE_QUERY_ON_DISK_ID, 4); 4985 if (IS_ERR(context)) { 4986 rc = PTR_ERR(context); 4987 goto err_out1; 4988 } else if (context) { 4989 ksmbd_debug(SMB, "get query on disk id context\n"); 4990 query_disk_id = 1; 4991 } 4992 4993 if (test_share_config_flag(share, KSMBD_SHARE_FLAG_TIME_MACHINE)) { 4994 context = smb2_find_context_vals(req, SMB2_CREATE_AAPL, 4); 4995 if (IS_ERR(context)) { 4996 rc = PTR_ERR(context); 4997 goto err_out1; 4998 } else if (context) { 4999 struct aapl_server_query_req *aapl_req; 5000 5001 if (le32_to_cpu(context->DataLength) < 5002 sizeof(struct aapl_server_query_req)) { 5003 rc = -EINVAL; 5004 goto err_out1; 5005 } 5006 5007 aapl_req = (struct aapl_server_query_req *) 5008 ((char *)context + 5009 le16_to_cpu(context->DataOffset)); 5010 if (le32_to_cpu(aapl_req->cmd) == 5011 SMB2_CRTCTX_AAPL_SERVER_QUERY) { 5012 conn->is_aapl = true; 5013 aapl_ctxt = true; 5014 aapl_req_bitmap = le64_to_cpu(aapl_req->req_bitmap); 5015 aapl_client_caps = le64_to_cpu(aapl_req->client_caps); 5016 } 5017 } 5018 } else if (conn->is_aapl == false) { 5019 context = smb2_find_context_vals(req, SMB2_CREATE_AAPL, 4); 5020 if (IS_ERR(context)) { 5021 rc = PTR_ERR(context); 5022 goto err_out1; 5023 } else if (context) 5024 conn->is_aapl = true; 5025 } 5026 } 5027 5028 rc = ksmbd_vfs_getattr(&path, &stat); 5029 if (rc) 5030 goto err_out1; 5031 5032 if (stat.result_mask & STATX_BTIME) 5033 fp->create_time = ksmbd_UnixTimeToNT(stat.btime); 5034 else 5035 fp->create_time = ksmbd_UnixTimeToNT(stat.ctime); 5036 fp->change_time = ksmbd_UnixTimeToNT(stat.ctime); 5037 fp->allocation_size = S_ISDIR(stat.mode) ? 0 : 5038 (alloc_size ?: stat.blocks << 9); 5039 if (created || fp->f_ci->m_fattr == 0) 5040 fp->f_ci->m_fattr = 5041 cpu_to_le32(smb2_get_dos_mode(&stat, le32_to_cpu(req->FileAttributes))); 5042 5043 if (!created) 5044 smb2_update_xattrs(tcon, &path, fp); 5045 if (need_truncate && req->FileAttributes) { 5046 dos_attr = le32_to_cpu(req->FileAttributes); 5047 fp->f_ci->m_fattr = 5048 cpu_to_le32(smb2_get_dos_mode(&stat, dos_attr)); 5049 smb2_new_xattrs(tcon, &path, fp); 5050 } 5051 5052 ksmbd_vfs_update_compressed_fattr(path.dentry, &fp->f_ci->m_fattr); 5053 5054 if (created) { 5055 if (fp->coption & FILE_NO_COMPRESSION_LE) { 5056 rc = ksmbd_vfs_set_compression_create(work, fp, 5057 COMPRESSION_FORMAT_NONE); 5058 if (rc) 5059 fp->f_ci->m_fattr &= ~FILE_ATTRIBUTE_COMPRESSED_LE; 5060 rc = 0; 5061 } else if (smb2_parent_compressed(tcon, &path)) { 5062 rc = ksmbd_vfs_set_compression_create(work, fp, 5063 COMPRESSION_FORMAT_LZNT1); 5064 if (rc) 5065 fp->f_ci->m_fattr |= FILE_ATTRIBUTE_COMPRESSED_LE; 5066 rc = 0; 5067 } 5068 } 5069 5070 if (created) 5071 smb2_new_xattrs(tcon, &path, fp); 5072 5073 fp->create_action = cpu_to_le32(file_info); 5074 5075 if (dh_info.type == DURABLE_REQ_V2 || dh_info.type == DURABLE_REQ) { 5076 if (dh_info.type == DURABLE_REQ_V2 && dh_info.persistent && 5077 test_share_config_flag(work->tcon->share_conf, 5078 KSMBD_SHARE_FLAG_CONTINUOUS_AVAILABILITY) && 5079 (conn->vals->req_capabilities & 5080 SMB2_GLOBAL_CAP_PERSISTENT_HANDLES)) { 5081 /* MS-SMB2 3.3.5.9.10: a persistent open is durable too. */ 5082 fp->is_durable = true; 5083 fp->is_persistent = true; 5084 } else { 5085 fp->is_durable = true; 5086 } 5087 if (dh_info.type == DURABLE_REQ_V2) { 5088 if (dh_info.app_instance_id) 5089 memcpy(fp->app_instance_id, 5090 dh_info.AppInstanceId, 5091 SMB2_CREATE_GUID_SIZE); 5092 if (dh_info.timeout) 5093 fp->durable_timeout = 5094 min_t(unsigned int, dh_info.timeout, 5095 DURABLE_HANDLE_MAX_TIMEOUT); 5096 else 5097 fp->durable_timeout = 60000; 5098 } 5099 } 5100 5101 /* 5102 * conn->is_aapl detection above (this function's create-context 5103 * parsing) is skipped on the reconnect path below, since a 5104 * reconnect always arrives on a fresh connection -- if the client 5105 * cares, it sends its own AAPL context on this same CREATE, which 5106 * this function's normal (non-reconnect) parsing already handles. 5107 */ 5108 reconnected_fp: 5109 if (dh_info.replay) 5110 file_info = le32_to_cpu(fp->create_action); 5111 rsp->StructureSize = cpu_to_le16(89); 5112 opinfo = opinfo_get(fp); 5113 rsp->OplockLevel = opinfo != NULL ? opinfo->level : 0; 5114 /* 5115 * A durable CREATE replay does not modify the existing open. When 5116 * replayed without an oplock, however, its response reflects that 5117 * request and cannot include a new durable-handle response context. 5118 */ 5119 if (dh_info.replay && !lc && 5120 req_op_level == SMB2_OPLOCK_LEVEL_NONE) { 5121 rsp->OplockLevel = SMB2_OPLOCK_LEVEL_NONE; 5122 durable_rsp = false; 5123 } 5124 rsp->Flags = 0; 5125 rsp->CreateAction = cpu_to_le32(file_info); 5126 rsp->CreationTime = cpu_to_le64(fp->create_time); 5127 time = ksmbd_UnixTimeToNT(stat.atime); 5128 rsp->LastAccessTime = cpu_to_le64(time); 5129 time = ksmbd_UnixTimeToNT(stat.mtime); 5130 fp->open_mtime = time; 5131 rsp->LastWriteTime = cpu_to_le64(time); 5132 rsp->ChangeTime = cpu_to_le64(fp->change_time); 5133 /* 5134 * The cached allocation size hides filesystem rounding for the 5135 * requested allocation, but it can go stale when the file grows past 5136 * it via writes (e.g. across a durable reconnect). Refresh it once the 5137 * file exceeds the cached value, rounding the end of file up to the 5138 * volume allocation unit (the filesystem block size, matching the 5139 * SectorsPerAllocationUnit/BytesPerSector ksmbd advertises) rather than 5140 * using the raw on-disk block count, which can include filesystem 5141 * preallocation and metadata rounding. 5142 */ 5143 if (ksmbd_stream_fd(fp)) { 5144 loff_t seof = ksmbd_stream_eof(fp); 5145 5146 rsp->AllocationSize = cpu_to_le64((u64)seof); 5147 rsp->EndofFile = cpu_to_le64((u64)seof); 5148 } else { 5149 if (!S_ISDIR(stat.mode) && stat.size > fp->allocation_size) 5150 fp->allocation_size = round_up(stat.size, stat.blksize); 5151 rsp->AllocationSize = cpu_to_le64(fp->allocation_size); 5152 rsp->EndofFile = S_ISDIR(stat.mode) ? 0 : cpu_to_le64(stat.size); 5153 } 5154 rsp->FileAttributes = fp->f_ci->m_fattr; 5155 5156 rsp->Reserved2 = 0; 5157 5158 rsp->PersistentFileId = fp->persistent_id; 5159 rsp->VolatileFileId = fp->volatile_id; 5160 5161 rsp->CreateContextsOffset = 0; 5162 rsp->CreateContextsLength = 0; 5163 iov_len = offsetof(struct smb2_create_rsp, Buffer); 5164 5165 /* If lease is request send lease context response */ 5166 if (opinfo && opinfo->is_lease) { 5167 struct create_context *lease_ccontext; 5168 5169 ksmbd_debug(SMB, "lease granted on(%s) lease state 0x%x\n", 5170 name, opinfo->o_lease->state); 5171 rsp->OplockLevel = SMB2_OPLOCK_LEVEL_LEASE; 5172 5173 lease_ccontext = (struct create_context *)rsp->Buffer; 5174 contxt_cnt++; 5175 create_lease_buf(rsp->Buffer, opinfo->o_lease); 5176 le32_add_cpu(&rsp->CreateContextsLength, 5177 conn->vals->create_lease_size); 5178 iov_len += conn->vals->create_lease_size; 5179 next_ptr = &lease_ccontext->Next; 5180 next_off = conn->vals->create_lease_size; 5181 } 5182 opinfo_put(opinfo); 5183 5184 if (maximal_access_ctxt) { 5185 struct create_context *mxac_ccontext; 5186 5187 if (maximal_access == 0) 5188 ksmbd_vfs_query_maximal_access(idmap, 5189 path.dentry, 5190 &maximal_access); 5191 mxac_ccontext = (struct create_context *)(rsp->Buffer + 5192 le32_to_cpu(rsp->CreateContextsLength)); 5193 contxt_cnt++; 5194 create_mxac_rsp_buf(rsp->Buffer + 5195 le32_to_cpu(rsp->CreateContextsLength), 5196 le32_to_cpu(maximal_access)); 5197 le32_add_cpu(&rsp->CreateContextsLength, 5198 conn->vals->create_mxac_size); 5199 iov_len += conn->vals->create_mxac_size; 5200 if (next_ptr) 5201 *next_ptr = cpu_to_le32(next_off); 5202 next_ptr = &mxac_ccontext->Next; 5203 next_off = conn->vals->create_mxac_size; 5204 } 5205 5206 if (query_disk_id) { 5207 struct create_context *disk_id_ccontext; 5208 5209 disk_id_ccontext = (struct create_context *)(rsp->Buffer + 5210 le32_to_cpu(rsp->CreateContextsLength)); 5211 contxt_cnt++; 5212 create_disk_id_rsp_buf(rsp->Buffer + 5213 le32_to_cpu(rsp->CreateContextsLength), 5214 stat.ino, tcon->id); 5215 le32_add_cpu(&rsp->CreateContextsLength, 5216 conn->vals->create_disk_id_size); 5217 iov_len += conn->vals->create_disk_id_size; 5218 if (next_ptr) 5219 *next_ptr = cpu_to_le32(next_off); 5220 next_ptr = &disk_id_ccontext->Next; 5221 next_off = conn->vals->create_disk_id_size; 5222 } 5223 5224 if (durable_rsp && 5225 (dh_info.type == DURABLE_REQ || dh_info.type == DURABLE_REQ_V2)) { 5226 struct create_context *durable_ccontext; 5227 5228 durable_ccontext = (struct create_context *)(rsp->Buffer + 5229 le32_to_cpu(rsp->CreateContextsLength)); 5230 contxt_cnt++; 5231 if (dh_info.type == DURABLE_REQ) { 5232 create_durable_rsp_buf(rsp->Buffer + 5233 le32_to_cpu(rsp->CreateContextsLength)); 5234 le32_add_cpu(&rsp->CreateContextsLength, 5235 conn->vals->create_durable_size); 5236 iov_len += conn->vals->create_durable_size; 5237 } else { 5238 create_durable_v2_rsp_buf(rsp->Buffer + 5239 le32_to_cpu(rsp->CreateContextsLength), 5240 fp); 5241 le32_add_cpu(&rsp->CreateContextsLength, 5242 conn->vals->create_durable_v2_size); 5243 iov_len += conn->vals->create_durable_v2_size; 5244 } 5245 5246 if (next_ptr) 5247 *next_ptr = cpu_to_le32(next_off); 5248 next_ptr = &durable_ccontext->Next; 5249 next_off = dh_info.type == DURABLE_REQ ? 5250 conn->vals->create_durable_size : 5251 conn->vals->create_durable_v2_size; 5252 } 5253 5254 if (posix_ctxt) { 5255 struct create_context *posix_ccontext; 5256 5257 posix_ccontext = (struct create_context *)(rsp->Buffer + 5258 le32_to_cpu(rsp->CreateContextsLength)); 5259 contxt_cnt++; 5260 create_posix_rsp_buf(rsp->Buffer + 5261 le32_to_cpu(rsp->CreateContextsLength), 5262 fp); 5263 le32_add_cpu(&rsp->CreateContextsLength, 5264 conn->vals->create_posix_size); 5265 iov_len += conn->vals->create_posix_size; 5266 if (next_ptr) 5267 *next_ptr = cpu_to_le32(next_off); 5268 next_ptr = &posix_ccontext->Next; 5269 next_off = conn->vals->create_posix_size; 5270 } 5271 5272 /* 5273 * AAPL create context response: see smb2pdu.h for the capability 5274 * rationale. Scoped to TIME_MACHINE shares only. 5275 */ 5276 if (aapl_ctxt) { 5277 if (aapl_client_caps & SMB2_CRTCTX_AAPL_SUPPORTS_READ_DIR_ATTR) 5278 conn->aapl_readdir_attr = true; 5279 /* 5280 * V2 extends the same inline-FinderInfo mechanism (see 5281 * smb2pdu.h), so a V2-requesting client also gets 5282 * aapl_readdir_attr treatment -- the reply just advertises 5283 * the V2 bit instead of the V1 one (create_aapl_rsp_buf). 5284 */ 5285 if (aapl_client_caps & SMB2_CRTCTX_AAPL_SUPPORTS_READ_DIR_ATTR_V2) { 5286 conn->aapl_readdir_attr = true; 5287 conn->aapl_readdir_attr_v2 = true; 5288 } 5289 5290 contxt_cnt++; 5291 create_aapl_rsp_buf(rsp->Buffer + 5292 le32_to_cpu(rsp->CreateContextsLength), 5293 SMB2_CRTCTX_AAPL_FULL_SYNC, 5294 aapl_req_bitmap, 5295 conn->aapl_readdir_attr_v2); 5296 le32_add_cpu(&rsp->CreateContextsLength, 5297 conn->vals->create_aapl_size); 5298 iov_len += conn->vals->create_aapl_size; 5299 if (next_ptr) 5300 *next_ptr = cpu_to_le32(next_off); 5301 /* AAPL is last; next_ptr need not be updated */ 5302 } 5303 5304 if (contxt_cnt > 0) { 5305 rsp->CreateContextsOffset = 5306 cpu_to_le32(offsetof(struct smb2_create_rsp, Buffer)); 5307 } 5308 5309 err_out: 5310 if (rc && (file_present || created)) 5311 path_put(&path); 5312 5313 err_out1: 5314 ksmbd_revert_fsids(work); 5315 5316 err_out2: 5317 if (!rc) { 5318 if (!dh_info.replay) 5319 rc = ksmbd_update_fstate(&work->sess->file_table, fp, 5320 FP_INITED); 5321 if (!rc) 5322 rc = smb2_set_request_open(work, fp, &req->hdr, false, false); 5323 if (!rc) 5324 rc = ksmbd_iov_pin_rsp(work, (void *)rsp, iov_len); 5325 } 5326 if (rc) { 5327 if (rc == -EINVAL) 5328 rsp->hdr.Status = STATUS_INVALID_PARAMETER; 5329 else if (rc == -EOPNOTSUPP) 5330 rsp->hdr.Status = STATUS_NOT_SUPPORTED; 5331 else if ((rc == -EACCES || rc == -ESTALE || rc == -EXDEV) && 5332 !rsp->hdr.Status) { 5333 if (req->DesiredAccess & FILE_ACCESS_SYSTEM_SECURITY_LE) 5334 rsp->hdr.Status = STATUS_PRIVILEGE_NOT_HELD; 5335 else 5336 rsp->hdr.Status = STATUS_ACCESS_DENIED; 5337 } 5338 else if (rc == -ENOENT) 5339 rsp->hdr.Status = STATUS_OBJECT_NAME_INVALID; 5340 else if (rc == -EPERM) 5341 rsp->hdr.Status = STATUS_SHARING_VIOLATION; 5342 else if (rc == -EBUSY) 5343 rsp->hdr.Status = STATUS_DELETE_PENDING; 5344 else if (rc == -EBADF) 5345 rsp->hdr.Status = STATUS_OBJECT_NAME_NOT_FOUND; 5346 else if (rc == -ENOEXEC) 5347 rsp->hdr.Status = STATUS_DUPLICATE_OBJECTID; 5348 else if (rc == -ENXIO) 5349 rsp->hdr.Status = STATUS_NO_SUCH_DEVICE; 5350 else if (rc == -EEXIST) 5351 rsp->hdr.Status = STATUS_OBJECT_NAME_COLLISION; 5352 else if (rc == -EMFILE) 5353 rsp->hdr.Status = STATUS_INSUFFICIENT_RESOURCES; 5354 else if (rc == -EINPROGRESS) 5355 rsp->hdr.Status = STATUS_FILE_NOT_AVAILABLE; 5356 else if (rc == -EAGAIN) 5357 rsp->hdr.Status = STATUS_FILE_NOT_AVAILABLE; 5358 if (!rsp->hdr.Status) 5359 rsp->hdr.Status = STATUS_UNEXPECTED_IO_ERROR; 5360 5361 if (fp && !dh_info.replay) 5362 ksmbd_fd_put(work, fp); 5363 smb2_set_err_rsp(work); 5364 ksmbd_debug(SMB, "Error response: %x\n", rsp->hdr.Status); 5365 } 5366 5367 if (dh_info.replay) 5368 ksmbd_put_durable_fd(dh_info.fp); 5369 5370 if (dh_info.reconnected) { 5371 /* 5372 * If reconnect succeeded, fp was republished in the 5373 * session file table. On a later error, ksmbd_fd_put() 5374 * above drops the session reference; drop the durable 5375 * lookup reference through the same session-aware path so 5376 * final close removes the volatile id before freeing fp. 5377 */ 5378 if (rc && fp == dh_info.fp) 5379 ksmbd_fd_put(work, dh_info.fp); 5380 else 5381 ksmbd_put_durable_fd(dh_info.fp); 5382 } 5383 5384 kfree(name); 5385 kfree(lc); 5386 5387 return rc; 5388 } 5389 5390 static int readdir_info_level_struct_sz(int info_level) 5391 { 5392 switch (info_level) { 5393 case FILE_FULL_DIRECTORY_INFORMATION: 5394 return sizeof(FILE_FULL_DIRECTORY_INFO); 5395 case FILE_BOTH_DIRECTORY_INFORMATION: 5396 return sizeof(FILE_BOTH_DIRECTORY_INFO); 5397 case FILE_DIRECTORY_INFORMATION: 5398 return sizeof(FILE_DIRECTORY_INFO); 5399 case FILE_NAMES_INFORMATION: 5400 return sizeof(struct file_names_info); 5401 case FILEID_FULL_DIRECTORY_INFORMATION: 5402 return sizeof(FILE_ID_FULL_DIR_INFO); 5403 case FILEID_BOTH_DIRECTORY_INFORMATION: 5404 return sizeof(struct file_id_both_directory_info); 5405 case SMB_FIND_FILE_POSIX_INFO: 5406 return sizeof(struct smb2_posix_info); 5407 default: 5408 return -EOPNOTSUPP; 5409 } 5410 } 5411 5412 static int dentry_name(struct ksmbd_dir_info *d_info, int info_level) 5413 { 5414 switch (info_level) { 5415 case FILE_FULL_DIRECTORY_INFORMATION: 5416 { 5417 FILE_FULL_DIRECTORY_INFO *ffdinfo; 5418 5419 ffdinfo = (FILE_FULL_DIRECTORY_INFO *)d_info->rptr; 5420 d_info->rptr += le32_to_cpu(ffdinfo->NextEntryOffset); 5421 d_info->name = ffdinfo->FileName; 5422 d_info->name_len = le32_to_cpu(ffdinfo->FileNameLength); 5423 return 0; 5424 } 5425 case FILE_BOTH_DIRECTORY_INFORMATION: 5426 { 5427 FILE_BOTH_DIRECTORY_INFO *fbdinfo; 5428 5429 fbdinfo = (FILE_BOTH_DIRECTORY_INFO *)d_info->rptr; 5430 d_info->rptr += le32_to_cpu(fbdinfo->NextEntryOffset); 5431 d_info->name = fbdinfo->FileName; 5432 d_info->name_len = le32_to_cpu(fbdinfo->FileNameLength); 5433 return 0; 5434 } 5435 case FILE_DIRECTORY_INFORMATION: 5436 { 5437 FILE_DIRECTORY_INFO *fdinfo; 5438 5439 fdinfo = (FILE_DIRECTORY_INFO *)d_info->rptr; 5440 d_info->rptr += le32_to_cpu(fdinfo->NextEntryOffset); 5441 d_info->name = fdinfo->FileName; 5442 d_info->name_len = le32_to_cpu(fdinfo->FileNameLength); 5443 return 0; 5444 } 5445 case FILE_NAMES_INFORMATION: 5446 { 5447 struct file_names_info *fninfo; 5448 5449 fninfo = (struct file_names_info *)d_info->rptr; 5450 d_info->rptr += le32_to_cpu(fninfo->NextEntryOffset); 5451 d_info->name = fninfo->FileName; 5452 d_info->name_len = le32_to_cpu(fninfo->FileNameLength); 5453 return 0; 5454 } 5455 case FILEID_FULL_DIRECTORY_INFORMATION: 5456 { 5457 FILE_ID_FULL_DIR_INFO *dinfo; 5458 5459 dinfo = (FILE_ID_FULL_DIR_INFO *)d_info->rptr; 5460 d_info->rptr += le32_to_cpu(dinfo->NextEntryOffset); 5461 d_info->name = dinfo->FileName; 5462 d_info->name_len = le32_to_cpu(dinfo->FileNameLength); 5463 return 0; 5464 } 5465 case FILEID_BOTH_DIRECTORY_INFORMATION: 5466 { 5467 struct file_id_both_directory_info *fibdinfo; 5468 5469 fibdinfo = (struct file_id_both_directory_info *)d_info->rptr; 5470 d_info->rptr += le32_to_cpu(fibdinfo->NextEntryOffset); 5471 d_info->name = fibdinfo->FileName; 5472 d_info->name_len = le32_to_cpu(fibdinfo->FileNameLength); 5473 return 0; 5474 } 5475 case SMB_FIND_FILE_POSIX_INFO: 5476 { 5477 struct smb2_posix_info *posix_info; 5478 5479 posix_info = (struct smb2_posix_info *)d_info->rptr; 5480 d_info->rptr += le32_to_cpu(posix_info->NextEntryOffset); 5481 d_info->name = posix_info->name; 5482 d_info->name_len = le32_to_cpu(posix_info->name_len); 5483 return 0; 5484 } 5485 default: 5486 return -EINVAL; 5487 } 5488 } 5489 5490 /** 5491 * smb2_populate_readdir_entry() - encode directory entry in smb2 response 5492 * buffer 5493 * @conn: connection instance 5494 * @info_level: smb information level 5495 * @d_info: structure included variables for query dir 5496 * @ksmbd_kstat: ksmbd wrapper of dirent stat information 5497 * 5498 * if directory has many entries, find first can't read it fully. 5499 * find next might be called multiple times to read remaining dir entries 5500 * 5501 * Return: 0 on success, otherwise error 5502 */ 5503 static int smb2_populate_readdir_entry(struct ksmbd_conn *conn, int info_level, 5504 struct ksmbd_dir_info *d_info, 5505 struct ksmbd_kstat *ksmbd_kstat) 5506 { 5507 int next_entry_offset = 0; 5508 char *conv_name; 5509 int conv_len; 5510 void *kstat; 5511 int struct_sz, rc = 0; 5512 5513 conv_name = ksmbd_convert_dir_info_name(d_info, 5514 conn->local_nls, 5515 &conv_len); 5516 if (!conv_name) 5517 return -ENOMEM; 5518 5519 /* Somehow the name has only terminating NULL bytes */ 5520 if (conv_len < 0) { 5521 rc = -EINVAL; 5522 goto free_conv_name; 5523 } 5524 5525 struct_sz = readdir_info_level_struct_sz(info_level); 5526 if (struct_sz == -EOPNOTSUPP) { 5527 rc = -EINVAL; 5528 goto free_conv_name; 5529 } 5530 5531 struct_sz += conv_len; 5532 next_entry_offset = ALIGN(struct_sz, KSMBD_DIR_INFO_ALIGNMENT); 5533 d_info->last_entry_off_align = next_entry_offset - struct_sz; 5534 5535 if (next_entry_offset > d_info->out_buf_len) { 5536 d_info->out_buf_len = 0; 5537 rc = -ENOSPC; 5538 goto free_conv_name; 5539 } 5540 5541 kstat = d_info->wptr; 5542 if (info_level != FILE_NAMES_INFORMATION) 5543 kstat = ksmbd_vfs_init_kstat(&d_info->wptr, ksmbd_kstat); 5544 5545 switch (info_level) { 5546 case FILE_FULL_DIRECTORY_INFORMATION: 5547 { 5548 FILE_FULL_DIRECTORY_INFO *ffdinfo; 5549 5550 ffdinfo = (FILE_FULL_DIRECTORY_INFO *)kstat; 5551 ffdinfo->FileNameLength = cpu_to_le32(conv_len); 5552 ffdinfo->EaSize = 5553 smb2_get_reparse_tag_special_file(ksmbd_kstat->kstat->mode); 5554 if (ffdinfo->EaSize) 5555 ffdinfo->ExtFileAttributes = FILE_ATTRIBUTE_REPARSE_POINT_LE; 5556 if (d_info->hide_dot_file && d_info->name[0] == '.') 5557 ffdinfo->ExtFileAttributes |= FILE_ATTRIBUTE_HIDDEN_LE; 5558 memcpy(ffdinfo->FileName, conv_name, conv_len); 5559 ffdinfo->NextEntryOffset = cpu_to_le32(next_entry_offset); 5560 break; 5561 } 5562 case FILE_BOTH_DIRECTORY_INFORMATION: 5563 { 5564 FILE_BOTH_DIRECTORY_INFO *fbdinfo; 5565 5566 fbdinfo = (FILE_BOTH_DIRECTORY_INFO *)kstat; 5567 fbdinfo->FileNameLength = cpu_to_le32(conv_len); 5568 fbdinfo->EaSize = 5569 smb2_get_reparse_tag_special_file(ksmbd_kstat->kstat->mode); 5570 if (fbdinfo->EaSize) 5571 fbdinfo->ExtFileAttributes = FILE_ATTRIBUTE_REPARSE_POINT_LE; 5572 fbdinfo->ShortNameLength = 0; 5573 fbdinfo->Reserved = 0; 5574 if (d_info->hide_dot_file && d_info->name[0] == '.') 5575 fbdinfo->ExtFileAttributes |= FILE_ATTRIBUTE_HIDDEN_LE; 5576 memcpy(fbdinfo->FileName, conv_name, conv_len); 5577 fbdinfo->NextEntryOffset = cpu_to_le32(next_entry_offset); 5578 break; 5579 } 5580 case FILE_DIRECTORY_INFORMATION: 5581 { 5582 FILE_DIRECTORY_INFO *fdinfo; 5583 5584 fdinfo = (FILE_DIRECTORY_INFO *)kstat; 5585 fdinfo->FileNameLength = cpu_to_le32(conv_len); 5586 if (d_info->hide_dot_file && d_info->name[0] == '.') 5587 fdinfo->ExtFileAttributes |= FILE_ATTRIBUTE_HIDDEN_LE; 5588 memcpy(fdinfo->FileName, conv_name, conv_len); 5589 fdinfo->NextEntryOffset = cpu_to_le32(next_entry_offset); 5590 break; 5591 } 5592 case FILE_NAMES_INFORMATION: 5593 { 5594 struct file_names_info *fninfo; 5595 5596 fninfo = (struct file_names_info *)kstat; 5597 fninfo->FileNameLength = cpu_to_le32(conv_len); 5598 memcpy(fninfo->FileName, conv_name, conv_len); 5599 fninfo->NextEntryOffset = cpu_to_le32(next_entry_offset); 5600 break; 5601 } 5602 case FILEID_FULL_DIRECTORY_INFORMATION: 5603 { 5604 FILE_ID_FULL_DIR_INFO *dinfo; 5605 5606 dinfo = (FILE_ID_FULL_DIR_INFO *)kstat; 5607 dinfo->FileNameLength = cpu_to_le32(conv_len); 5608 dinfo->EaSize = 5609 smb2_get_reparse_tag_special_file(ksmbd_kstat->kstat->mode); 5610 if (dinfo->EaSize) 5611 dinfo->ExtFileAttributes = FILE_ATTRIBUTE_REPARSE_POINT_LE; 5612 dinfo->Reserved = 0; 5613 if (conn->is_aapl) 5614 dinfo->UniqueId = 0; 5615 else 5616 dinfo->UniqueId = cpu_to_le64(ksmbd_kstat->kstat->ino); 5617 if (d_info->hide_dot_file && d_info->name[0] == '.') 5618 dinfo->ExtFileAttributes |= FILE_ATTRIBUTE_HIDDEN_LE; 5619 memcpy(dinfo->FileName, conv_name, conv_len); 5620 dinfo->NextEntryOffset = cpu_to_le32(next_entry_offset); 5621 break; 5622 } 5623 case FILEID_BOTH_DIRECTORY_INFORMATION: 5624 { 5625 struct file_id_both_directory_info *fibdinfo; 5626 5627 fibdinfo = (struct file_id_both_directory_info *)kstat; 5628 fibdinfo->FileNameLength = cpu_to_le32(conv_len); 5629 if (conn->is_aapl) 5630 fibdinfo->UniqueId = 0; 5631 else 5632 fibdinfo->UniqueId = cpu_to_le64(ksmbd_kstat->kstat->ino); 5633 fibdinfo->ShortNameLength = 0; 5634 fibdinfo->Reserved = 0; 5635 if (conn->aapl_readdir_attr) { 5636 /* 5637 * READDIR_ATTR wire format, confirmed against reference server's 5638 * reference implementation marshalling (reference implementation behavior): 5639 * EaSize = max_access (expanded specific 5640 * rights, simplified to "grant all") 5641 * ShortNameLength = 24 (fixed; not 0, despite the spec) 5642 * ShortName[0..7] = resource fork size (uint64 LE, 0 = no rfork) 5643 * ShortName[8..23] = compressed FinderInfo (type+creator+flags+ 5644 * ext_flags+date_added, 16 bytes LE; all 5645 * zeros means type=0/creator=0, i.e. use 5646 * the file extension for icon lookup) 5647 * Reserved2 = Unix mode bits (uint16 LE) 5648 * Reparse-point tag is indicated via ExtFileAttributes, not EaSize. 5649 * 5650 * V2 (conn->aapl_readdir_attr_v2): ShortNameLength+Reserved 5651 * are read as a single flags field instead of being ignored 5652 * -- see smb2pdu.h for the wire-format confirmation and 5653 * AAPL_READDIR_ATTR_V2_NO_XATTR's meaning. 5654 */ 5655 __le32 reparse_tag = 5656 smb2_get_reparse_tag_special_file(ksmbd_kstat->kstat->mode); 5657 5658 if (reparse_tag) 5659 fibdinfo->ExtFileAttributes = FILE_ATTRIBUTE_REPARSE_POINT_LE; 5660 /* 5661 * FILE_GENERIC_ALL_LE (0x10000000) is the raw 5662 * "generic all" meta-bit -- valid only in a 5663 * client's requested access mask, for the server 5664 * to expand. It has none of the specific FILE_* 5665 * rights bits set (FILE_LIST_DIRECTORY, FILE_TRAVERSE, 5666 * etc.), so reporting it here as max_access would make 5667 * macOS's bit-by-bit access checks fail on every 5668 * entry -> permanent "no entry" badges in Finder. 5669 * Report the actual expanded rights instead, same 5670 * as smb_map_generic_desired_access() does when 5671 * translating a client's GENERIC_ALL request. 5672 */ 5673 fibdinfo->EaSize = cpu_to_le32(GENERIC_ALL_FLAGS); 5674 /* 5675 * The spec says ShortNameLength should be 0 when 5676 * there's no short name; 24 here instead matches 5677 * reference implementation marshalling (reference 5678 * behavior) for server-to-server wire parity. 5679 * V2 repurposes it as a flags field that is 5680 * interpreted; V1 doesn't. Either value is safe 5681 * here, so keep 24 for parity. 5682 */ 5683 if (conn->aapl_readdir_attr_v2) { 5684 /* 5685 * V2 repurposes this field as flags (see comment 5686 * above) -- 24 is a V1-only convention that real 5687 * macOS clients ignore outright, so don't reuse it 5688 * here as a base value for a field V2 clients 5689 * actually interpret. 5690 */ 5691 fibdinfo->ShortNameLength = 0; 5692 if (!ksmbd_kstat->has_ads_stream) 5693 fibdinfo->ShortNameLength = AAPL_READDIR_ATTR_V2_NO_XATTR; 5694 } else { 5695 fibdinfo->ShortNameLength = 24; 5696 } 5697 memset(fibdinfo->ShortName, 0, sizeof(fibdinfo->ShortName)); 5698 fibdinfo->Reserved2 = cpu_to_le16(ksmbd_kstat->kstat->mode & 0xffff); 5699 } else { 5700 fibdinfo->EaSize = 5701 smb2_get_reparse_tag_special_file(ksmbd_kstat->kstat->mode); 5702 if (fibdinfo->EaSize) 5703 fibdinfo->ExtFileAttributes = FILE_ATTRIBUTE_REPARSE_POINT_LE; 5704 fibdinfo->Reserved2 = cpu_to_le16(0); 5705 } 5706 if (d_info->hide_dot_file && d_info->name[0] == '.') 5707 fibdinfo->ExtFileAttributes |= FILE_ATTRIBUTE_HIDDEN_LE; 5708 memcpy(fibdinfo->FileName, conv_name, conv_len); 5709 fibdinfo->NextEntryOffset = cpu_to_le32(next_entry_offset); 5710 break; 5711 } 5712 case SMB_FIND_FILE_POSIX_INFO: 5713 { 5714 struct smb2_posix_info *posix_info; 5715 u64 time; 5716 5717 posix_info = (struct smb2_posix_info *)kstat; 5718 posix_info->Ignored = 0; 5719 posix_info->CreationTime = cpu_to_le64(ksmbd_kstat->create_time); 5720 time = ksmbd_UnixTimeToNT(ksmbd_kstat->kstat->ctime); 5721 posix_info->ChangeTime = cpu_to_le64(time); 5722 time = ksmbd_UnixTimeToNT(ksmbd_kstat->kstat->atime); 5723 posix_info->LastAccessTime = cpu_to_le64(time); 5724 time = ksmbd_UnixTimeToNT(ksmbd_kstat->kstat->mtime); 5725 posix_info->LastWriteTime = cpu_to_le64(time); 5726 posix_info->EndOfFile = cpu_to_le64(ksmbd_kstat->kstat->size); 5727 posix_info->AllocationSize = cpu_to_le64(ksmbd_kstat->kstat->blocks << 9); 5728 posix_info->DeviceId = cpu_to_le32(ksmbd_kstat->kstat->rdev); 5729 posix_info->HardLinks = cpu_to_le32(ksmbd_kstat->kstat->nlink); 5730 posix_info->Mode = cpu_to_le32(ksmbd_kstat->kstat->mode & 0777); 5731 switch (ksmbd_kstat->kstat->mode & S_IFMT) { 5732 case S_IFDIR: 5733 posix_info->Mode |= cpu_to_le32(POSIX_TYPE_DIR << POSIX_FILETYPE_SHIFT); 5734 break; 5735 case S_IFLNK: 5736 posix_info->Mode |= cpu_to_le32(POSIX_TYPE_SYMLINK << POSIX_FILETYPE_SHIFT); 5737 break; 5738 case S_IFCHR: 5739 posix_info->Mode |= cpu_to_le32(POSIX_TYPE_CHARDEV << POSIX_FILETYPE_SHIFT); 5740 break; 5741 case S_IFBLK: 5742 posix_info->Mode |= cpu_to_le32(POSIX_TYPE_BLKDEV << POSIX_FILETYPE_SHIFT); 5743 break; 5744 case S_IFIFO: 5745 posix_info->Mode |= cpu_to_le32(POSIX_TYPE_FIFO << POSIX_FILETYPE_SHIFT); 5746 break; 5747 case S_IFSOCK: 5748 posix_info->Mode |= cpu_to_le32(POSIX_TYPE_SOCKET << POSIX_FILETYPE_SHIFT); 5749 } 5750 5751 posix_info->Inode = cpu_to_le64(ksmbd_kstat->kstat->ino); 5752 posix_info->DosAttributes = 5753 S_ISDIR(ksmbd_kstat->kstat->mode) ? 5754 FILE_ATTRIBUTE_DIRECTORY_LE : FILE_ATTRIBUTE_ARCHIVE_LE; 5755 if (d_info->hide_dot_file && d_info->name[0] == '.') 5756 posix_info->DosAttributes |= FILE_ATTRIBUTE_HIDDEN_LE; 5757 /* 5758 * SidBuffer(32) contain two sids(Domain sid(16), UNIX group sid(16)). 5759 * UNIX sid(16) = revision(1) + num_subauth(1) + authority(6) + 5760 * sub_auth(4 * 1(num_subauth)) + RID(4). 5761 */ 5762 id_to_sid(from_kuid_munged(&init_user_ns, ksmbd_kstat->kstat->uid), 5763 SIDUNIX_USER, (struct smb_sid *)&posix_info->SidBuffer[0]); 5764 id_to_sid(from_kgid_munged(&init_user_ns, ksmbd_kstat->kstat->gid), 5765 SIDUNIX_GROUP, (struct smb_sid *)&posix_info->SidBuffer[16]); 5766 memcpy(posix_info->name, conv_name, conv_len); 5767 posix_info->name_len = cpu_to_le32(conv_len); 5768 posix_info->NextEntryOffset = cpu_to_le32(next_entry_offset); 5769 break; 5770 } 5771 5772 } /* switch (info_level) */ 5773 5774 d_info->last_entry_offset = d_info->data_count; 5775 d_info->data_count += next_entry_offset; 5776 d_info->out_buf_len -= next_entry_offset; 5777 d_info->wptr += next_entry_offset; 5778 5779 ksmbd_debug(SMB, 5780 "info_level : %d, buf_len :%d, next_offset : %d, data_count : %d\n", 5781 info_level, d_info->out_buf_len, 5782 next_entry_offset, d_info->data_count); 5783 5784 free_conv_name: 5785 kfree(conv_name); 5786 return rc; 5787 } 5788 5789 struct smb2_query_dir_private { 5790 struct ksmbd_work *work; 5791 char *search_pattern; 5792 struct ksmbd_file *dir_fp; 5793 5794 struct ksmbd_dir_info *d_info; 5795 int info_level; 5796 }; 5797 5798 static int process_query_dir_entries(struct smb2_query_dir_private *priv) 5799 { 5800 struct mnt_idmap *idmap = file_mnt_idmap(priv->dir_fp->filp); 5801 struct kstat kstat; 5802 struct ksmbd_kstat ksmbd_kstat; 5803 int rc; 5804 int i; 5805 5806 for (i = 0; i < priv->d_info->num_entry; i++) { 5807 struct dentry *dent; 5808 struct path path; 5809 5810 if (dentry_name(priv->d_info, priv->info_level)) 5811 return -EINVAL; 5812 5813 dent = lookup_one_unlocked(idmap, 5814 &QSTR_LEN(priv->d_info->name, 5815 priv->d_info->name_len), 5816 priv->dir_fp->filp->f_path.dentry); 5817 5818 if (IS_ERR(dent)) { 5819 ksmbd_debug(SMB, "Cannot lookup `%s' [%ld]\n", 5820 priv->d_info->name, 5821 PTR_ERR(dent)); 5822 continue; 5823 } 5824 if (unlikely(d_is_negative(dent))) { 5825 dput(dent); 5826 ksmbd_debug(SMB, "Negative dentry `%s'\n", 5827 priv->d_info->name); 5828 continue; 5829 } 5830 5831 if (test_share_config_flag(priv->work->tcon->share_conf, 5832 KSMBD_SHARE_FLAG_HIDE_UNREADABLE)) { 5833 __le32 daccess = FILE_READ_DATA_LE | FILE_READ_EA_LE | 5834 FILE_READ_ATTRIBUTES_LE; 5835 5836 path.mnt = priv->dir_fp->filp->f_path.mnt; 5837 path.dentry = dent; 5838 rc = smb_check_perm_dacl(priv->work->conn, &path, 5839 &daccess, daccess, 5840 priv->work->sess->user->uid, 5841 true); 5842 if (rc) { 5843 dput(dent); 5844 continue; 5845 } 5846 } 5847 5848 ksmbd_kstat.kstat = &kstat; 5849 if (priv->info_level != FILE_NAMES_INFORMATION) { 5850 rc = ksmbd_vfs_fill_dentry_attrs(priv->work, 5851 idmap, 5852 dent, 5853 &ksmbd_kstat); 5854 if (rc) { 5855 dput(dent); 5856 continue; 5857 } 5858 } 5859 5860 rc = smb2_populate_readdir_entry(priv->work->conn, 5861 priv->info_level, 5862 priv->d_info, 5863 &ksmbd_kstat); 5864 dput(dent); 5865 if (rc) 5866 return rc; 5867 } 5868 return 0; 5869 } 5870 5871 static int reserve_populate_dentry(struct ksmbd_dir_info *d_info, 5872 int info_level) 5873 { 5874 int struct_sz; 5875 int conv_len; 5876 int next_entry_offset; 5877 5878 struct_sz = readdir_info_level_struct_sz(info_level); 5879 if (struct_sz == -EOPNOTSUPP) 5880 return -EOPNOTSUPP; 5881 5882 conv_len = (d_info->name_len + 1) * 2; 5883 next_entry_offset = ALIGN(struct_sz + conv_len, 5884 KSMBD_DIR_INFO_ALIGNMENT); 5885 5886 if (next_entry_offset > d_info->out_buf_len) { 5887 d_info->out_buf_len = 0; 5888 return -ENOSPC; 5889 } 5890 5891 switch (info_level) { 5892 case FILE_FULL_DIRECTORY_INFORMATION: 5893 { 5894 FILE_FULL_DIRECTORY_INFO *ffdinfo; 5895 5896 ffdinfo = (FILE_FULL_DIRECTORY_INFO *)d_info->wptr; 5897 memcpy(ffdinfo->FileName, d_info->name, d_info->name_len); 5898 ffdinfo->FileName[d_info->name_len] = 0x00; 5899 ffdinfo->FileNameLength = cpu_to_le32(d_info->name_len); 5900 ffdinfo->NextEntryOffset = cpu_to_le32(next_entry_offset); 5901 break; 5902 } 5903 case FILE_BOTH_DIRECTORY_INFORMATION: 5904 { 5905 FILE_BOTH_DIRECTORY_INFO *fbdinfo; 5906 5907 fbdinfo = (FILE_BOTH_DIRECTORY_INFO *)d_info->wptr; 5908 memcpy(fbdinfo->FileName, d_info->name, d_info->name_len); 5909 fbdinfo->FileName[d_info->name_len] = 0x00; 5910 fbdinfo->FileNameLength = cpu_to_le32(d_info->name_len); 5911 fbdinfo->NextEntryOffset = cpu_to_le32(next_entry_offset); 5912 break; 5913 } 5914 case FILE_DIRECTORY_INFORMATION: 5915 { 5916 FILE_DIRECTORY_INFO *fdinfo; 5917 5918 fdinfo = (FILE_DIRECTORY_INFO *)d_info->wptr; 5919 memcpy(fdinfo->FileName, d_info->name, d_info->name_len); 5920 fdinfo->FileName[d_info->name_len] = 0x00; 5921 fdinfo->FileNameLength = cpu_to_le32(d_info->name_len); 5922 fdinfo->NextEntryOffset = cpu_to_le32(next_entry_offset); 5923 break; 5924 } 5925 case FILE_NAMES_INFORMATION: 5926 { 5927 struct file_names_info *fninfo; 5928 5929 fninfo = (struct file_names_info *)d_info->wptr; 5930 memcpy(fninfo->FileName, d_info->name, d_info->name_len); 5931 fninfo->FileName[d_info->name_len] = 0x00; 5932 fninfo->FileNameLength = cpu_to_le32(d_info->name_len); 5933 fninfo->NextEntryOffset = cpu_to_le32(next_entry_offset); 5934 break; 5935 } 5936 case FILEID_FULL_DIRECTORY_INFORMATION: 5937 { 5938 FILE_ID_FULL_DIR_INFO *dinfo; 5939 5940 dinfo = (FILE_ID_FULL_DIR_INFO *)d_info->wptr; 5941 memcpy(dinfo->FileName, d_info->name, d_info->name_len); 5942 dinfo->FileName[d_info->name_len] = 0x00; 5943 dinfo->FileNameLength = cpu_to_le32(d_info->name_len); 5944 dinfo->NextEntryOffset = cpu_to_le32(next_entry_offset); 5945 break; 5946 } 5947 case FILEID_BOTH_DIRECTORY_INFORMATION: 5948 { 5949 struct file_id_both_directory_info *fibdinfo; 5950 5951 fibdinfo = (struct file_id_both_directory_info *)d_info->wptr; 5952 memcpy(fibdinfo->FileName, d_info->name, d_info->name_len); 5953 fibdinfo->FileName[d_info->name_len] = 0x00; 5954 fibdinfo->FileNameLength = cpu_to_le32(d_info->name_len); 5955 fibdinfo->NextEntryOffset = cpu_to_le32(next_entry_offset); 5956 break; 5957 } 5958 case SMB_FIND_FILE_POSIX_INFO: 5959 { 5960 struct smb2_posix_info *posix_info; 5961 5962 posix_info = (struct smb2_posix_info *)d_info->wptr; 5963 memcpy(posix_info->name, d_info->name, d_info->name_len); 5964 posix_info->name[d_info->name_len] = 0x00; 5965 posix_info->name_len = cpu_to_le32(d_info->name_len); 5966 posix_info->NextEntryOffset = 5967 cpu_to_le32(next_entry_offset); 5968 break; 5969 } 5970 } /* switch (info_level) */ 5971 5972 d_info->num_entry++; 5973 d_info->out_buf_len -= next_entry_offset; 5974 d_info->wptr += next_entry_offset; 5975 return 0; 5976 } 5977 5978 static bool __query_dir(struct dir_context *ctx, const char *name, int namlen, 5979 loff_t offset, u64 ino, unsigned int d_type) 5980 { 5981 struct ksmbd_readdir_data *buf; 5982 struct smb2_query_dir_private *priv; 5983 struct ksmbd_dir_info *d_info; 5984 int rc; 5985 5986 buf = container_of(ctx, struct ksmbd_readdir_data, ctx); 5987 priv = buf->private; 5988 d_info = priv->d_info; 5989 5990 /* dot and dotdot entries are already reserved */ 5991 if (!strcmp(".", name) || !strcmp("..", name)) 5992 return true; 5993 d_info->num_scan++; 5994 if (ksmbd_share_veto_filename(priv->work->tcon->share_conf, name)) 5995 return true; 5996 if (!match_pattern(name, namlen, priv->search_pattern)) 5997 return true; 5998 5999 d_info->name = name; 6000 d_info->name_len = namlen; 6001 rc = reserve_populate_dentry(d_info, priv->info_level); 6002 if (rc) 6003 return false; 6004 if (d_info->flags & SMB2_RETURN_SINGLE_ENTRY) 6005 d_info->out_buf_len = 0; 6006 return true; 6007 } 6008 6009 static int verify_info_level(int info_level) 6010 { 6011 switch (info_level) { 6012 case FILE_FULL_DIRECTORY_INFORMATION: 6013 case FILE_BOTH_DIRECTORY_INFORMATION: 6014 case FILE_DIRECTORY_INFORMATION: 6015 case FILE_NAMES_INFORMATION: 6016 case FILEID_FULL_DIRECTORY_INFORMATION: 6017 case FILEID_BOTH_DIRECTORY_INFORMATION: 6018 case SMB_FIND_FILE_POSIX_INFO: 6019 break; 6020 default: 6021 return -EOPNOTSUPP; 6022 } 6023 6024 return 0; 6025 } 6026 6027 static int smb2_resp_buf_len(struct ksmbd_work *work, unsigned short hdr2_len) 6028 { 6029 int free_len; 6030 6031 free_len = (int)(work->response_sz - 6032 (get_rfc1002_len(work->response_buf) + 4)) - hdr2_len; 6033 return free_len; 6034 } 6035 6036 static int smb2_calc_max_out_buf_len(struct ksmbd_work *work, 6037 unsigned short hdr2_len, 6038 unsigned int out_buf_len) 6039 { 6040 int free_len; 6041 6042 if (out_buf_len > work->conn->vals->max_trans_size) 6043 return -EINVAL; 6044 6045 free_len = smb2_resp_buf_len(work, hdr2_len); 6046 if (free_len < 0) 6047 return -EINVAL; 6048 6049 return min_t(int, out_buf_len, free_len); 6050 } 6051 6052 int smb2_query_dir(struct ksmbd_work *work) 6053 { 6054 struct ksmbd_conn *conn = work->conn; 6055 struct smb2_query_directory_req *req; 6056 struct smb2_query_directory_rsp *rsp; 6057 struct ksmbd_share_config *share = work->tcon->share_conf; 6058 struct ksmbd_file *dir_fp = NULL; 6059 struct ksmbd_dir_info d_info; 6060 int rc = 0; 6061 char *srch_ptr = NULL; 6062 unsigned char srch_flag; 6063 int buffer_sz; 6064 struct smb2_query_dir_private query_dir_private = {NULL, }; 6065 unsigned int id = KSMBD_NO_FID, pid = KSMBD_NO_FID; 6066 6067 ksmbd_debug(SMB, "Received smb2 query directory request\n"); 6068 6069 WORK_BUFFERS(work, req, rsp); 6070 6071 if (smb2_compound_has_failed(work, &rsp->hdr)) 6072 return -EACCES; 6073 6074 if (work->next_smb2_rcv_hdr_off && 6075 !has_file_id(req->VolatileFileId)) { 6076 ksmbd_debug(SMB, "Compound request set FID = %llu\n", 6077 work->compound_fid); 6078 id = work->compound_fid; 6079 pid = work->compound_pfid; 6080 } 6081 6082 if (!has_file_id(id)) { 6083 id = req->VolatileFileId; 6084 pid = req->PersistentFileId; 6085 } 6086 6087 if (ksmbd_override_fsids(work)) { 6088 rsp->hdr.Status = STATUS_NO_MEMORY; 6089 smb2_set_err_rsp(work); 6090 return -ENOMEM; 6091 } 6092 6093 rc = verify_info_level(req->FileInformationClass); 6094 if (rc) { 6095 rc = -EFAULT; 6096 goto err_out2; 6097 } 6098 6099 dir_fp = ksmbd_lookup_fd_slow(work, id, pid); 6100 if (!dir_fp) { 6101 rc = -EBADF; 6102 goto err_out2; 6103 } 6104 6105 if (!(dir_fp->daccess & FILE_LIST_DIRECTORY_LE) || 6106 inode_permission(file_mnt_idmap(dir_fp->filp), 6107 file_inode(dir_fp->filp), 6108 MAY_READ | MAY_EXEC)) { 6109 pr_err("no right to enumerate directory (%pD)\n", dir_fp->filp); 6110 rc = -EACCES; 6111 goto err_out2; 6112 } 6113 6114 if (!S_ISDIR(file_inode(dir_fp->filp)->i_mode)) { 6115 pr_err("can't do query dir for a file\n"); 6116 rc = -EINVAL; 6117 goto err_out2; 6118 } 6119 6120 srch_flag = req->Flags; 6121 srch_ptr = smb_strndup_from_utf16((char *)req + le16_to_cpu(req->FileNameOffset), 6122 le16_to_cpu(req->FileNameLength), 1, 6123 conn->local_nls); 6124 if (IS_ERR(srch_ptr)) { 6125 ksmbd_debug(SMB, "Search Pattern not found\n"); 6126 rc = -EINVAL; 6127 goto err_out2; 6128 } else { 6129 ksmbd_debug(SMB, "Search pattern is %s\n", srch_ptr); 6130 } 6131 6132 mutex_lock(&dir_fp->readdir_lock); 6133 6134 if (srch_flag & SMB2_REOPEN || srch_flag & SMB2_RESTART_SCANS) { 6135 ksmbd_debug(SMB, "Restart directory scan\n"); 6136 generic_file_llseek(dir_fp->filp, 0, SEEK_SET); 6137 } 6138 6139 memset(&d_info, 0, sizeof(struct ksmbd_dir_info)); 6140 d_info.wptr = (char *)rsp->Buffer; 6141 d_info.rptr = (char *)rsp->Buffer; 6142 d_info.out_buf_len = 6143 smb2_calc_max_out_buf_len(work, 6144 offsetof(struct smb2_query_directory_rsp, Buffer), 6145 le32_to_cpu(req->OutputBufferLength)); 6146 if (d_info.out_buf_len < 0) { 6147 rc = -EINVAL; 6148 goto err_out; 6149 } 6150 d_info.flags = srch_flag; 6151 6152 /* 6153 * reserve dot and dotdot entries in head of buffer 6154 * in first response 6155 */ 6156 rc = ksmbd_populate_dot_dotdot_entries(work, req->FileInformationClass, 6157 dir_fp, &d_info, srch_ptr, 6158 smb2_populate_readdir_entry); 6159 if (rc == -ENOSPC) 6160 rc = 0; 6161 else if (rc) 6162 goto err_out; 6163 6164 if (test_share_config_flag(share, KSMBD_SHARE_FLAG_HIDE_DOT_FILES)) 6165 d_info.hide_dot_file = true; 6166 6167 buffer_sz = d_info.out_buf_len; 6168 d_info.rptr = d_info.wptr; 6169 query_dir_private.work = work; 6170 query_dir_private.search_pattern = srch_ptr; 6171 query_dir_private.dir_fp = dir_fp; 6172 query_dir_private.d_info = &d_info; 6173 query_dir_private.info_level = req->FileInformationClass; 6174 dir_fp->readdir_data.private = &query_dir_private; 6175 set_ctx_actor(&dir_fp->readdir_data.ctx, __query_dir); 6176 again: 6177 d_info.num_scan = 0; 6178 rc = iterate_dir(dir_fp->filp, &dir_fp->readdir_data.ctx); 6179 /* 6180 * num_entry can be 0 if the directory iteration stops before reaching 6181 * the end of the directory and no file is matched with the search 6182 * pattern. 6183 */ 6184 if (rc >= 0 && !d_info.num_entry && d_info.num_scan && 6185 d_info.out_buf_len > 0) 6186 goto again; 6187 /* 6188 * req->OutputBufferLength is too small to contain even one entry. 6189 * In this case, it immediately returns OutputBufferLength 0 to client. 6190 */ 6191 if (!d_info.out_buf_len && !d_info.num_entry) 6192 goto no_buf_len; 6193 if (rc > 0 || rc == -ENOSPC) 6194 rc = 0; 6195 else if (rc) 6196 goto err_out; 6197 6198 d_info.wptr = d_info.rptr; 6199 d_info.out_buf_len = buffer_sz; 6200 rc = process_query_dir_entries(&query_dir_private); 6201 if (rc) 6202 goto err_out; 6203 6204 if (!d_info.data_count && d_info.out_buf_len >= 0) { 6205 if (srch_flag & SMB2_RETURN_SINGLE_ENTRY && !is_asterisk(srch_ptr)) { 6206 rsp->hdr.Status = STATUS_NO_SUCH_FILE; 6207 } else { 6208 dir_fp->dot_dotdot[0] = dir_fp->dot_dotdot[1] = 0; 6209 rsp->hdr.Status = STATUS_NO_MORE_FILES; 6210 } 6211 rsp->StructureSize = cpu_to_le16(9); 6212 rsp->OutputBufferOffset = cpu_to_le16(0); 6213 rsp->OutputBufferLength = cpu_to_le32(0); 6214 rsp->Buffer[0] = 0; 6215 rc = ksmbd_iov_pin_rsp(work, (void *)rsp, 6216 offsetof(struct smb2_query_directory_rsp, Buffer) 6217 + 1); 6218 if (rc) 6219 goto err_out; 6220 } else { 6221 no_buf_len: 6222 ((FILE_DIRECTORY_INFO *) 6223 ((char *)rsp->Buffer + d_info.last_entry_offset)) 6224 ->NextEntryOffset = 0; 6225 if (d_info.data_count >= d_info.last_entry_off_align) 6226 d_info.data_count -= d_info.last_entry_off_align; 6227 6228 rsp->StructureSize = cpu_to_le16(9); 6229 rsp->OutputBufferOffset = cpu_to_le16(72); 6230 rsp->OutputBufferLength = cpu_to_le32(d_info.data_count); 6231 rc = ksmbd_iov_pin_rsp(work, (void *)rsp, 6232 offsetof(struct smb2_query_directory_rsp, Buffer) + 6233 d_info.data_count); 6234 if (rc) 6235 goto err_out; 6236 } 6237 6238 mutex_unlock(&dir_fp->readdir_lock); 6239 kfree(srch_ptr); 6240 ksmbd_fd_put(work, dir_fp); 6241 ksmbd_revert_fsids(work); 6242 return 0; 6243 6244 err_out: 6245 pr_err("error while processing smb2 query dir rc = %d\n", rc); 6246 mutex_unlock(&dir_fp->readdir_lock); 6247 kfree(srch_ptr); 6248 6249 err_out2: 6250 if (rc == -EINVAL) 6251 rsp->hdr.Status = STATUS_INVALID_PARAMETER; 6252 else if (rc == -EACCES) 6253 rsp->hdr.Status = STATUS_ACCESS_DENIED; 6254 else if (rc == -ENOENT) 6255 rsp->hdr.Status = STATUS_NO_SUCH_FILE; 6256 else if (rc == -EBADF) 6257 rsp->hdr.Status = STATUS_FILE_CLOSED; 6258 else if (rc == -ENOMEM) 6259 rsp->hdr.Status = STATUS_NO_MEMORY; 6260 else if (rc == -EFAULT) 6261 rsp->hdr.Status = STATUS_INVALID_INFO_CLASS; 6262 else if (rc == -EIO) 6263 rsp->hdr.Status = STATUS_FILE_CORRUPT_ERROR; 6264 if (!rsp->hdr.Status) 6265 rsp->hdr.Status = STATUS_UNEXPECTED_IO_ERROR; 6266 6267 smb2_set_err_rsp(work); 6268 ksmbd_fd_put(work, dir_fp); 6269 ksmbd_revert_fsids(work); 6270 return rc; 6271 } 6272 6273 /** 6274 * buffer_check_err() - helper function to check buffer errors 6275 * @reqOutputBufferLength: max buffer length expected in command response 6276 * @fixed_len: minimum fixed response length 6277 * @rsp: query info response buffer contains output buffer length 6278 * 6279 * Return: 0 on success, otherwise error 6280 */ 6281 static int buffer_check_err(int reqOutputBufferLength, 6282 unsigned int fixed_len, 6283 struct smb2_query_info_rsp *rsp) 6284 { 6285 unsigned int output_len = le32_to_cpu(rsp->OutputBufferLength); 6286 6287 if (reqOutputBufferLength < fixed_len) { 6288 pr_err("Invalid Buffer Size Requested\n"); 6289 rsp->hdr.Status = STATUS_INFO_LENGTH_MISMATCH; 6290 return -EINVAL; 6291 } 6292 6293 if (reqOutputBufferLength < output_len) { 6294 rsp->hdr.Status = STATUS_BUFFER_OVERFLOW; 6295 rsp->OutputBufferLength = cpu_to_le32(reqOutputBufferLength); 6296 } 6297 return 0; 6298 } 6299 6300 static void get_standard_info_pipe(struct smb2_query_info_rsp *rsp) 6301 { 6302 struct smb2_file_standard_info *sinfo; 6303 6304 sinfo = (struct smb2_file_standard_info *)rsp->Buffer; 6305 6306 sinfo->AllocationSize = cpu_to_le64(4096); 6307 sinfo->EndOfFile = cpu_to_le64(0); 6308 sinfo->NumberOfLinks = cpu_to_le32(1); 6309 sinfo->DeletePending = 1; 6310 sinfo->Directory = 0; 6311 rsp->OutputBufferLength = 6312 cpu_to_le32(sizeof(struct smb2_file_standard_info)); 6313 } 6314 6315 static void get_internal_info_pipe(struct smb2_query_info_rsp *rsp, u64 num) 6316 { 6317 struct smb2_file_internal_info *file_info; 6318 6319 file_info = (struct smb2_file_internal_info *)rsp->Buffer; 6320 6321 /* any unique number */ 6322 file_info->IndexNumber = cpu_to_le64(num | (1ULL << 63)); 6323 rsp->OutputBufferLength = 6324 cpu_to_le32(sizeof(struct smb2_file_internal_info)); 6325 } 6326 6327 static int smb2_get_info_file_pipe(struct ksmbd_session *sess, 6328 struct smb2_query_info_req *req, 6329 struct smb2_query_info_rsp *rsp) 6330 { 6331 u64 id; 6332 int rc; 6333 6334 /* 6335 * Windows can sometime send query file info request on 6336 * pipe without opening it, checking error condition here 6337 */ 6338 id = req->VolatileFileId; 6339 6340 lockdep_assert_not_held(&sess->rpc_lock); 6341 6342 down_read(&sess->rpc_lock); 6343 if (!ksmbd_session_rpc_method(sess, id)) { 6344 up_read(&sess->rpc_lock); 6345 return -ENOENT; 6346 } 6347 up_read(&sess->rpc_lock); 6348 6349 ksmbd_debug(SMB, "FileInfoClass %u, FileId 0x%llx\n", 6350 req->FileInfoClass, req->VolatileFileId); 6351 6352 switch (req->FileInfoClass) { 6353 case FILE_STANDARD_INFORMATION: 6354 get_standard_info_pipe(rsp); 6355 rc = buffer_check_err(le32_to_cpu(req->OutputBufferLength), 6356 le32_to_cpu(rsp->OutputBufferLength), 6357 rsp); 6358 break; 6359 case FILE_INTERNAL_INFORMATION: 6360 get_internal_info_pipe(rsp, id); 6361 rc = buffer_check_err(le32_to_cpu(req->OutputBufferLength), 6362 le32_to_cpu(rsp->OutputBufferLength), 6363 rsp); 6364 break; 6365 default: 6366 ksmbd_debug(SMB, "smb2_info_file_pipe for %u not supported\n", 6367 req->FileInfoClass); 6368 rc = -EOPNOTSUPP; 6369 } 6370 return rc; 6371 } 6372 6373 /** 6374 * smb2_get_ea() - handler for smb2 get extended attribute command 6375 * @work: smb work containing query info command buffer 6376 * @fp: ksmbd_file pointer 6377 * @req: get extended attribute request 6378 * @rsp: response buffer pointer 6379 * @rsp_org: base response buffer pointer in case of chained response 6380 * 6381 * Return: 0 on success, otherwise error 6382 */ 6383 static int smb2_get_ea(struct ksmbd_work *work, struct ksmbd_file *fp, 6384 struct smb2_query_info_req *req, 6385 struct smb2_query_info_rsp *rsp, void *rsp_org) 6386 { 6387 struct smb2_ea_info *eainfo, *prev_eainfo; 6388 char *name, *ptr, *xattr_list = NULL, *buf; 6389 int rc, name_len, value_len, xattr_list_len, idx; 6390 ssize_t buf_free_len, alignment_bytes, next_offset, rsp_data_cnt = 0; 6391 struct smb2_ea_info_req *ea_req = NULL; 6392 const struct path *path; 6393 struct mnt_idmap *idmap = file_mnt_idmap(fp->filp); 6394 6395 if (!(fp->daccess & FILE_READ_EA_LE)) { 6396 pr_err("Not permitted to read ext attr : 0x%x\n", 6397 fp->daccess); 6398 return -EACCES; 6399 } 6400 6401 path = &fp->filp->f_path; 6402 /* single EA entry is requested with given user.* name */ 6403 if (req->InputBufferLength) { 6404 if (le32_to_cpu(req->InputBufferLength) <= 6405 sizeof(struct smb2_ea_info_req)) 6406 return -EINVAL; 6407 6408 ea_req = (struct smb2_ea_info_req *)((char *)req + 6409 le16_to_cpu(req->InputBufferOffset)); 6410 6411 if (le32_to_cpu(req->InputBufferLength) < 6412 offsetof(struct smb2_ea_info_req, name) + 6413 ea_req->EaNameLength) 6414 return -EINVAL; 6415 } else { 6416 /* need to send all EAs, if no specific EA is requested*/ 6417 if (le32_to_cpu(req->Flags) & SL_RETURN_SINGLE_ENTRY) 6418 ksmbd_debug(SMB, 6419 "All EAs are requested but need to send single EA entry in rsp flags 0x%x\n", 6420 le32_to_cpu(req->Flags)); 6421 } 6422 6423 buf_free_len = 6424 smb2_calc_max_out_buf_len(work, 6425 offsetof(struct smb2_query_info_rsp, Buffer), 6426 le32_to_cpu(req->OutputBufferLength)); 6427 if (buf_free_len < 0) 6428 return -EINVAL; 6429 6430 rc = ksmbd_vfs_listxattr(path->dentry, &xattr_list); 6431 if (rc < 0) { 6432 rsp->hdr.Status = STATUS_INVALID_HANDLE; 6433 goto out; 6434 } else if (!rc) { /* there is no EA in the file */ 6435 ksmbd_debug(SMB, "no ea data in the file\n"); 6436 goto done; 6437 } 6438 xattr_list_len = rc; 6439 6440 ptr = (char *)rsp->Buffer; 6441 eainfo = (struct smb2_ea_info *)ptr; 6442 prev_eainfo = eainfo; 6443 idx = 0; 6444 6445 while (idx < xattr_list_len) { 6446 name = xattr_list + idx; 6447 name_len = strlen(name); 6448 6449 ksmbd_debug(SMB, "%s, len %d\n", name, name_len); 6450 idx += name_len + 1; 6451 6452 /* 6453 * CIFS does not support EA other than user.* namespace, 6454 * still keep the framework generic, to list other attrs 6455 * in future. 6456 */ 6457 if (strncmp(name, XATTR_USER_PREFIX, XATTR_USER_PREFIX_LEN)) 6458 continue; 6459 6460 if (req->InputBufferLength && 6461 strncmp(&name[XATTR_USER_PREFIX_LEN], ea_req->name, 6462 ea_req->EaNameLength)) 6463 continue; 6464 6465 if (smb2_is_private_ea(&name[XATTR_USER_PREFIX_LEN], 6466 name_len - XATTR_USER_PREFIX_LEN)) 6467 continue; 6468 6469 if (!strncmp(name, XATTR_USER_PREFIX, XATTR_USER_PREFIX_LEN)) 6470 name_len -= XATTR_USER_PREFIX_LEN; 6471 6472 ptr = eainfo->name + name_len + 1; 6473 buf_free_len -= (offsetof(struct smb2_ea_info, name) + 6474 name_len + 1); 6475 /* bailout if xattr can't fit in buf_free_len */ 6476 value_len = ksmbd_vfs_getxattr(idmap, path->dentry, 6477 name, &buf); 6478 if (value_len <= 0) { 6479 rc = -ENOENT; 6480 rsp->hdr.Status = STATUS_INVALID_HANDLE; 6481 goto out; 6482 } 6483 6484 buf_free_len -= value_len; 6485 if (buf_free_len < 0) { 6486 kfree(buf); 6487 break; 6488 } 6489 6490 memcpy(ptr, buf, value_len); 6491 kfree(buf); 6492 6493 ptr += value_len; 6494 eainfo->Flags = 0; 6495 eainfo->EaNameLength = name_len; 6496 6497 if (!strncmp(name, XATTR_USER_PREFIX, XATTR_USER_PREFIX_LEN)) 6498 memcpy(eainfo->name, &name[XATTR_USER_PREFIX_LEN], 6499 name_len); 6500 else 6501 memcpy(eainfo->name, name, name_len); 6502 6503 eainfo->name[name_len] = '\0'; 6504 eainfo->EaValueLength = cpu_to_le16(value_len); 6505 next_offset = offsetof(struct smb2_ea_info, name) + 6506 name_len + 1 + value_len; 6507 6508 /* align next xattr entry at 4 byte bundary */ 6509 alignment_bytes = ((next_offset + 3) & ~3) - next_offset; 6510 if (alignment_bytes) { 6511 if (buf_free_len < alignment_bytes) 6512 break; 6513 memset(ptr, '\0', alignment_bytes); 6514 ptr += alignment_bytes; 6515 next_offset += alignment_bytes; 6516 buf_free_len -= alignment_bytes; 6517 } 6518 eainfo->NextEntryOffset = cpu_to_le32(next_offset); 6519 prev_eainfo = eainfo; 6520 eainfo = (struct smb2_ea_info *)ptr; 6521 rsp_data_cnt += next_offset; 6522 6523 if (req->InputBufferLength) { 6524 ksmbd_debug(SMB, "single entry requested\n"); 6525 break; 6526 } 6527 } 6528 6529 /* no more ea entries */ 6530 prev_eainfo->NextEntryOffset = 0; 6531 done: 6532 rc = 0; 6533 if (rsp_data_cnt == 0) 6534 rsp->hdr.Status = STATUS_NO_EAS_ON_FILE; 6535 rsp->OutputBufferLength = cpu_to_le32(rsp_data_cnt); 6536 out: 6537 kvfree(xattr_list); 6538 return rc; 6539 } 6540 6541 static void get_file_access_info(struct smb2_query_info_rsp *rsp, 6542 struct ksmbd_file *fp, void *rsp_org) 6543 { 6544 struct smb2_file_access_info *file_info; 6545 6546 file_info = (struct smb2_file_access_info *)rsp->Buffer; 6547 file_info->AccessFlags = fp->daccess; 6548 rsp->OutputBufferLength = 6549 cpu_to_le32(sizeof(struct smb2_file_access_info)); 6550 } 6551 6552 static int get_file_basic_info(struct smb2_query_info_rsp *rsp, 6553 struct ksmbd_file *fp, void *rsp_org) 6554 { 6555 struct file_basic_info *basic_info; 6556 struct kstat stat; 6557 u64 time; 6558 int ret; 6559 6560 if (!(fp->daccess & FILE_READ_ATTRIBUTES_LE)) { 6561 pr_err("no right to read the attributes : 0x%x\n", 6562 fp->daccess); 6563 return -EACCES; 6564 } 6565 6566 ret = vfs_getattr(&fp->filp->f_path, &stat, STATX_BASIC_STATS, 6567 AT_STATX_SYNC_AS_STAT); 6568 if (ret) 6569 return ret; 6570 6571 basic_info = (struct file_basic_info *)rsp->Buffer; 6572 basic_info->CreationTime = cpu_to_le64(fp->create_time); 6573 time = ksmbd_UnixTimeToNT(stat.atime); 6574 basic_info->LastAccessTime = cpu_to_le64(time); 6575 time = ksmbd_UnixTimeToNT(stat.mtime); 6576 basic_info->LastWriteTime = cpu_to_le64(time); 6577 basic_info->ChangeTime = cpu_to_le64(fp->change_time); 6578 basic_info->Attributes = fp->f_ci->m_fattr; 6579 basic_info->Pad = 0; 6580 rsp->OutputBufferLength = 6581 cpu_to_le32(sizeof(struct file_basic_info)); 6582 return 0; 6583 } 6584 6585 static int get_file_allocation_stat(struct ksmbd_file *fp, struct kstat *stat) 6586 { 6587 int ret; 6588 6589 /* 6590 * Buffered writes can leave delayed allocation in a state where two 6591 * consecutive queries report different block counts even when the 6592 * second write only overwrites the first one. Complete writeback before 6593 * reporting the filesystem allocation for an ordinary open. 6594 */ 6595 if (!fp->allocation_size_set) { 6596 ret = file_write_and_wait(fp->filp); 6597 if (ret) 6598 return ret; 6599 } 6600 6601 ret = vfs_getattr(&fp->filp->f_path, stat, STATX_BASIC_STATS, 6602 AT_STATX_SYNC_AS_STAT); 6603 if (!ret && !fp->allocation_size_set) 6604 fp->allocation_size = S_ISDIR(stat->mode) ? 0 : stat->blocks << 9; 6605 6606 return ret; 6607 } 6608 6609 static int get_file_standard_info(struct smb2_query_info_rsp *rsp, 6610 struct ksmbd_file *fp, void *rsp_org) 6611 { 6612 struct smb2_file_standard_info *sinfo; 6613 unsigned int delete_pending; 6614 struct kstat stat; 6615 int ret; 6616 6617 ret = get_file_allocation_stat(fp, &stat); 6618 if (ret) 6619 return ret; 6620 6621 sinfo = (struct smb2_file_standard_info *)rsp->Buffer; 6622 delete_pending = ksmbd_inode_pending_delete(fp); 6623 6624 if (ksmbd_stream_fd(fp) == false) { 6625 sinfo->AllocationSize = cpu_to_le64(fp->allocation_size); 6626 sinfo->EndOfFile = S_ISDIR(stat.mode) ? 0 : cpu_to_le64(stat.size); 6627 } else { 6628 loff_t seof = ksmbd_stream_eof(fp); 6629 6630 sinfo->AllocationSize = cpu_to_le64((u64)seof); 6631 sinfo->EndOfFile = cpu_to_le64((u64)seof); 6632 } 6633 sinfo->NumberOfLinks = cpu_to_le32(get_nlink(&stat) - delete_pending); 6634 sinfo->DeletePending = delete_pending; 6635 sinfo->Directory = S_ISDIR(stat.mode) ? 1 : 0; 6636 rsp->OutputBufferLength = 6637 cpu_to_le32(sizeof(struct smb2_file_standard_info)); 6638 6639 return 0; 6640 } 6641 6642 static void get_file_alignment_info(struct smb2_query_info_rsp *rsp, 6643 void *rsp_org) 6644 { 6645 struct smb2_file_alignment_info *file_info; 6646 6647 file_info = (struct smb2_file_alignment_info *)rsp->Buffer; 6648 file_info->AlignmentRequirement = 0; 6649 rsp->OutputBufferLength = 6650 cpu_to_le32(sizeof(struct smb2_file_alignment_info)); 6651 } 6652 6653 static int get_file_all_info(struct ksmbd_work *work, 6654 struct smb2_query_info_rsp *rsp, 6655 struct ksmbd_file *fp, 6656 void *rsp_org) 6657 { 6658 struct ksmbd_conn *conn = work->conn; 6659 struct smb2_file_all_info *file_info; 6660 unsigned int delete_pending; 6661 struct kstat stat; 6662 int conv_len; 6663 char *filename; 6664 u64 time; 6665 int ret, buf_free_len, filename_len; 6666 6667 if (!(fp->daccess & FILE_READ_ATTRIBUTES_LE)) { 6668 ksmbd_debug(SMB, "no right to read the attributes : 0x%x\n", 6669 fp->daccess); 6670 return -EACCES; 6671 } 6672 6673 filename = convert_to_nt_pathname(work->tcon->share_conf, &fp->filp->f_path); 6674 if (IS_ERR(filename)) 6675 return PTR_ERR(filename); 6676 6677 filename_len = strlen(filename); 6678 buf_free_len = smb2_resp_buf_len(work, 6679 offsetof(struct smb2_query_info_rsp, Buffer) + 6680 offsetof(struct smb2_file_all_info, FileName)); 6681 if (buf_free_len < (filename_len + 1) * 2) { 6682 kfree(filename); 6683 return -EINVAL; 6684 } 6685 6686 ret = get_file_allocation_stat(fp, &stat); 6687 if (ret) { 6688 kfree(filename); 6689 return ret; 6690 } 6691 6692 ksmbd_debug(SMB, "filename = %s\n", filename); 6693 delete_pending = ksmbd_inode_pending_delete(fp); 6694 file_info = (struct smb2_file_all_info *)rsp->Buffer; 6695 6696 file_info->CreationTime = cpu_to_le64(fp->create_time); 6697 time = ksmbd_UnixTimeToNT(stat.atime); 6698 file_info->LastAccessTime = cpu_to_le64(time); 6699 time = ksmbd_UnixTimeToNT(stat.mtime); 6700 file_info->LastWriteTime = cpu_to_le64(time); 6701 file_info->ChangeTime = cpu_to_le64(fp->change_time); 6702 file_info->Attributes = fp->f_ci->m_fattr; 6703 file_info->Pad1 = 0; 6704 if (ksmbd_stream_fd(fp) == false) { 6705 file_info->AllocationSize = cpu_to_le64(fp->allocation_size); 6706 file_info->EndOfFile = S_ISDIR(stat.mode) ? 0 : cpu_to_le64(stat.size); 6707 } else { 6708 loff_t seof = ksmbd_stream_eof(fp); 6709 6710 file_info->AllocationSize = cpu_to_le64((u64)seof); 6711 file_info->EndOfFile = cpu_to_le64((u64)seof); 6712 } 6713 file_info->NumberOfLinks = 6714 cpu_to_le32(get_nlink(&stat) - delete_pending); 6715 file_info->DeletePending = delete_pending; 6716 file_info->Directory = S_ISDIR(stat.mode) ? 1 : 0; 6717 file_info->Pad2 = 0; 6718 file_info->IndexNumber = cpu_to_le64(stat.ino); 6719 file_info->EASize = 0; 6720 file_info->AccessFlags = fp->daccess; 6721 if (ksmbd_stream_fd(fp) == false) 6722 file_info->CurrentByteOffset = cpu_to_le64(fp->filp->f_pos); 6723 else 6724 file_info->CurrentByteOffset = cpu_to_le64(fp->stream.pos); 6725 file_info->Mode = fp->coption; 6726 file_info->AlignmentRequirement = 0; 6727 conv_len = smbConvertToUTF16((__le16 *)file_info->FileName, filename, 6728 min(filename_len, PATH_MAX), 6729 conn->local_nls, 0); 6730 conv_len *= 2; 6731 file_info->FileNameLength = cpu_to_le32(conv_len); 6732 rsp->OutputBufferLength = 6733 cpu_to_le32(sizeof(struct smb2_file_all_info) + conv_len - 1); 6734 kfree(filename); 6735 return 0; 6736 } 6737 6738 static void get_file_alternate_info(struct ksmbd_work *work, 6739 struct smb2_query_info_rsp *rsp, 6740 struct ksmbd_file *fp, 6741 void *rsp_org) 6742 { 6743 struct ksmbd_conn *conn = work->conn; 6744 struct smb2_file_alt_name_info *file_info; 6745 struct dentry *dentry = fp->filp->f_path.dentry; 6746 int conv_len; 6747 6748 spin_lock(&dentry->d_lock); 6749 file_info = (struct smb2_file_alt_name_info *)rsp->Buffer; 6750 conv_len = ksmbd_extract_shortname(conn, 6751 dentry->d_name.name, 6752 file_info->FileName); 6753 spin_unlock(&dentry->d_lock); 6754 file_info->FileNameLength = cpu_to_le32(conv_len); 6755 rsp->OutputBufferLength = 6756 cpu_to_le32(struct_size(file_info, FileName, conv_len)); 6757 } 6758 6759 static char *smb2_get_normalized_stream_name(struct ksmbd_file *fp) 6760 { 6761 char *name, *stream_name = NULL, *xattr_list = NULL; 6762 ssize_t xattr_list_len; 6763 6764 if (!ksmbd_stream_fd(fp)) 6765 return NULL; 6766 6767 xattr_list_len = ksmbd_vfs_listxattr(fp->filp->f_path.dentry, 6768 &xattr_list); 6769 if (xattr_list_len <= 0) 6770 goto out; 6771 6772 for (name = xattr_list; name - xattr_list < xattr_list_len; 6773 name += strlen(name) + 1) { 6774 char *type; 6775 6776 if (strlen(name) + 1 != fp->stream.size || 6777 strncasecmp(name, fp->stream.name, fp->stream.size - 1)) 6778 continue; 6779 6780 name += XATTR_NAME_STREAM_LEN; 6781 type = strrchr(name, ':'); 6782 if (type) 6783 stream_name = kstrndup(name, type - name, 6784 KSMBD_DEFAULT_GFP); 6785 break; 6786 } 6787 out: 6788 kvfree(xattr_list); 6789 return stream_name; 6790 } 6791 6792 static int get_file_normalized_name_info(struct ksmbd_work *work, 6793 struct smb2_query_info_rsp *rsp, 6794 struct ksmbd_file *fp) 6795 { 6796 struct smb2_file_alt_name_info *file_info; 6797 char *filename, *normalized, *stream_name; 6798 int buf_free_len, conv_len, filename_len; 6799 6800 if (work->conn->dialect < SMB311_PROT_ID) { 6801 rsp->hdr.Status = STATUS_NOT_SUPPORTED; 6802 return -EOPNOTSUPP; 6803 } 6804 6805 filename = convert_to_nt_pathname(work->tcon->share_conf, 6806 &fp->filp->f_path); 6807 if (IS_ERR(filename)) 6808 return PTR_ERR(filename); 6809 if (filename[0] == '\\') 6810 memmove(filename, filename + 1, strlen(filename)); 6811 6812 stream_name = smb2_get_normalized_stream_name(fp); 6813 normalized = kasprintf(KSMBD_DEFAULT_GFP, "%s%s%s", filename, 6814 stream_name ? ":" : "", 6815 stream_name ? stream_name : ""); 6816 kfree(stream_name); 6817 kfree(filename); 6818 if (!normalized) 6819 return -ENOMEM; 6820 6821 filename_len = strlen(normalized); 6822 buf_free_len = smb2_resp_buf_len(work, sizeof(*rsp) + 6823 sizeof(*file_info)); 6824 if (buf_free_len < 0 || 6825 (size_t)buf_free_len < (filename_len + 1) * sizeof(__le16)) { 6826 kfree(normalized); 6827 return -EINVAL; 6828 } 6829 6830 file_info = (struct smb2_file_alt_name_info *)rsp->Buffer; 6831 conv_len = smbConvertToUTF16((__le16 *)file_info->FileName, 6832 normalized, filename_len, 6833 work->conn->local_nls, 0); 6834 kfree(normalized); 6835 conv_len *= 2; 6836 file_info->FileNameLength = cpu_to_le32(conv_len); 6837 rsp->OutputBufferLength = cpu_to_le32(sizeof(*file_info) + conv_len); 6838 return 0; 6839 } 6840 6841 static int get_file_stream_info(struct ksmbd_work *work, 6842 struct smb2_query_info_rsp *rsp, 6843 struct ksmbd_file *fp, 6844 void *rsp_org) 6845 { 6846 struct ksmbd_conn *conn = work->conn; 6847 struct smb2_file_stream_info *file_info; 6848 char *stream_name, *xattr_list = NULL, *stream_buf; 6849 struct kstat stat; 6850 const struct path *path = &fp->filp->f_path; 6851 ssize_t xattr_list_len; 6852 ssize_t slen; 6853 loff_t ssize; 6854 int nbytes = 0, streamlen, stream_name_len, next, idx = 0; 6855 int buf_free_len; 6856 int ret; 6857 6858 ret = vfs_getattr(&fp->filp->f_path, &stat, STATX_BASIC_STATS, 6859 AT_STATX_SYNC_AS_STAT); 6860 if (ret) 6861 return ret; 6862 6863 file_info = (struct smb2_file_stream_info *)rsp->Buffer; 6864 6865 buf_free_len = smb2_resp_buf_len(work, 6866 offsetof(struct smb2_query_info_rsp, Buffer)); 6867 if (buf_free_len < 0) 6868 goto out; 6869 6870 xattr_list_len = ksmbd_vfs_listxattr(path->dentry, &xattr_list); 6871 if (xattr_list_len < 0) { 6872 goto out; 6873 } else if (!xattr_list_len) { 6874 ksmbd_debug(SMB, "empty xattr in the file\n"); 6875 goto out; 6876 } 6877 6878 while (idx < xattr_list_len) { 6879 stream_name = xattr_list + idx; 6880 streamlen = strlen(stream_name); 6881 idx += streamlen + 1; 6882 6883 ksmbd_debug(SMB, "%s, len %d\n", stream_name, streamlen); 6884 6885 if (strncmp(&stream_name[XATTR_USER_PREFIX_LEN], 6886 STREAM_PREFIX, STREAM_PREFIX_LEN)) 6887 continue; 6888 6889 stream_name_len = streamlen - (XATTR_USER_PREFIX_LEN + 6890 STREAM_PREFIX_LEN); 6891 streamlen = stream_name_len; 6892 6893 /* plus : size */ 6894 streamlen += 1; 6895 stream_buf = kmalloc(streamlen + 1, KSMBD_DEFAULT_GFP); 6896 if (!stream_buf) 6897 break; 6898 6899 streamlen = snprintf(stream_buf, streamlen + 1, 6900 ":%s", &stream_name[XATTR_NAME_STREAM_LEN]); 6901 6902 next = sizeof(struct smb2_file_stream_info) + streamlen * 2; 6903 if (next > buf_free_len) { 6904 kfree(stream_buf); 6905 break; 6906 } 6907 6908 file_info = (struct smb2_file_stream_info *)&rsp->Buffer[nbytes]; 6909 streamlen = smbConvertToUTF16((__le16 *)file_info->StreamName, 6910 stream_buf, streamlen, 6911 conn->local_nls, 0); 6912 streamlen *= 2; 6913 kfree(stream_buf); 6914 file_info->StreamNameLength = cpu_to_le32(streamlen); 6915 /* 6916 * stream_name_len is the byte length of the xattr's *name*, 6917 * not its value -- same class of bug ksmbd_stream_eof() 6918 * (smb2pdu.c) already fixes for EndOfFile/AllocationSize on 6919 * a stream handle; this enumeration path needs the same 6920 * real xattr value length, not the name length reused as a 6921 * size. 6922 */ 6923 slen = ksmbd_vfs_casexattr_len(file_mnt_idmap(fp->filp), 6924 path->dentry, stream_name, 6925 strlen(stream_name) + 1); 6926 ssize = slen < 0 ? 0 : (loff_t)slen; 6927 file_info->StreamSize = cpu_to_le64(ssize); 6928 file_info->StreamAllocationSize = cpu_to_le64(ssize); 6929 6930 nbytes += next; 6931 buf_free_len -= next; 6932 file_info->NextEntryOffset = cpu_to_le32(next); 6933 } 6934 6935 out: 6936 if (!S_ISDIR(stat.mode) && 6937 buf_free_len >= sizeof(struct smb2_file_stream_info) + 7 * 2) { 6938 file_info = (struct smb2_file_stream_info *) 6939 &rsp->Buffer[nbytes]; 6940 streamlen = smbConvertToUTF16((__le16 *)file_info->StreamName, 6941 "::$DATA", 7, conn->local_nls, 0); 6942 streamlen *= 2; 6943 file_info->StreamNameLength = cpu_to_le32(streamlen); 6944 file_info->StreamSize = cpu_to_le64(stat.size); 6945 file_info->StreamAllocationSize = cpu_to_le64(stat.blocks << 9); 6946 nbytes += sizeof(struct smb2_file_stream_info) + streamlen; 6947 } 6948 6949 /* last entry offset should be 0 */ 6950 file_info->NextEntryOffset = 0; 6951 kvfree(xattr_list); 6952 6953 rsp->OutputBufferLength = cpu_to_le32(nbytes); 6954 6955 return 0; 6956 } 6957 6958 static int get_file_internal_info(struct smb2_query_info_rsp *rsp, 6959 struct ksmbd_file *fp, void *rsp_org) 6960 { 6961 struct smb2_file_internal_info *file_info; 6962 struct kstat stat; 6963 int ret; 6964 6965 ret = vfs_getattr(&fp->filp->f_path, &stat, STATX_BASIC_STATS, 6966 AT_STATX_SYNC_AS_STAT); 6967 if (ret) 6968 return ret; 6969 6970 file_info = (struct smb2_file_internal_info *)rsp->Buffer; 6971 file_info->IndexNumber = cpu_to_le64(stat.ino); 6972 rsp->OutputBufferLength = 6973 cpu_to_le32(sizeof(struct smb2_file_internal_info)); 6974 6975 return 0; 6976 } 6977 6978 static int get_file_network_open_info(struct smb2_query_info_rsp *rsp, 6979 struct ksmbd_file *fp, void *rsp_org) 6980 { 6981 struct smb2_file_network_open_info *file_info; 6982 struct kstat stat; 6983 u64 time; 6984 int ret; 6985 6986 if (!(fp->daccess & FILE_READ_ATTRIBUTES_LE)) { 6987 pr_err("no right to read the attributes : 0x%x\n", 6988 fp->daccess); 6989 return -EACCES; 6990 } 6991 6992 ret = get_file_allocation_stat(fp, &stat); 6993 if (ret) 6994 return ret; 6995 6996 file_info = (struct smb2_file_network_open_info *)rsp->Buffer; 6997 6998 file_info->CreationTime = cpu_to_le64(fp->create_time); 6999 time = ksmbd_UnixTimeToNT(stat.atime); 7000 file_info->LastAccessTime = cpu_to_le64(time); 7001 time = ksmbd_UnixTimeToNT(stat.mtime); 7002 file_info->LastWriteTime = cpu_to_le64(time); 7003 file_info->ChangeTime = cpu_to_le64(fp->change_time); 7004 file_info->Attributes = fp->f_ci->m_fattr; 7005 if (ksmbd_stream_fd(fp) == false) { 7006 file_info->AllocationSize = cpu_to_le64(fp->allocation_size); 7007 file_info->EndOfFile = S_ISDIR(stat.mode) ? 0 : cpu_to_le64(stat.size); 7008 } else { 7009 loff_t seof = ksmbd_stream_eof(fp); 7010 7011 file_info->AllocationSize = cpu_to_le64((u64)seof); 7012 file_info->EndOfFile = cpu_to_le64((u64)seof); 7013 } 7014 file_info->Reserved = cpu_to_le32(0); 7015 rsp->OutputBufferLength = 7016 cpu_to_le32(sizeof(struct smb2_file_network_open_info)); 7017 return 0; 7018 } 7019 7020 static void get_file_ea_info(struct smb2_query_info_rsp *rsp, void *rsp_org) 7021 { 7022 struct smb2_file_ea_info *file_info; 7023 7024 file_info = (struct smb2_file_ea_info *)rsp->Buffer; 7025 file_info->EASize = 0; 7026 rsp->OutputBufferLength = 7027 cpu_to_le32(sizeof(struct smb2_file_ea_info)); 7028 } 7029 7030 static void get_file_position_info(struct smb2_query_info_rsp *rsp, 7031 struct ksmbd_file *fp, void *rsp_org) 7032 { 7033 struct smb2_file_pos_info *file_info; 7034 7035 file_info = (struct smb2_file_pos_info *)rsp->Buffer; 7036 if (ksmbd_stream_fd(fp) == false) 7037 file_info->CurrentByteOffset = cpu_to_le64(fp->filp->f_pos); 7038 else 7039 file_info->CurrentByteOffset = cpu_to_le64(fp->stream.pos); 7040 7041 rsp->OutputBufferLength = 7042 cpu_to_le32(sizeof(struct smb2_file_pos_info)); 7043 } 7044 7045 static void get_file_mode_info(struct smb2_query_info_rsp *rsp, 7046 struct ksmbd_file *fp, void *rsp_org) 7047 { 7048 struct smb2_file_mode_info *file_info; 7049 7050 file_info = (struct smb2_file_mode_info *)rsp->Buffer; 7051 file_info->Mode = fp->coption & FILE_MODE_INFO_MASK; 7052 rsp->OutputBufferLength = 7053 cpu_to_le32(sizeof(struct smb2_file_mode_info)); 7054 } 7055 7056 static int get_file_compression_info(struct smb2_query_info_rsp *rsp, 7057 struct ksmbd_file *fp, void *rsp_org) 7058 { 7059 struct smb2_file_comp_info *file_info; 7060 struct kstat stat; 7061 u16 fmt; 7062 int ret; 7063 7064 ret = vfs_getattr(&fp->filp->f_path, &stat, STATX_BASIC_STATS, 7065 AT_STATX_SYNC_AS_STAT); 7066 if (ret) 7067 return ret; 7068 7069 ret = ksmbd_vfs_get_compression(fp, &fmt); 7070 if (ret) 7071 return ret; 7072 7073 file_info = (struct smb2_file_comp_info *)rsp->Buffer; 7074 file_info->CompressedFileSize = cpu_to_le64(min_t(u64, stat.blocks << 9, stat.size)); 7075 file_info->CompressionFormat = cpu_to_le16(fmt); 7076 file_info->CompressionUnitShift = 0; 7077 file_info->ChunkShift = 0; 7078 file_info->ClusterShift = 0; 7079 memset(&file_info->Reserved[0], 0, 3); 7080 7081 rsp->OutputBufferLength = 7082 cpu_to_le32(sizeof(struct smb2_file_comp_info)); 7083 7084 return 0; 7085 } 7086 7087 static int get_file_attribute_tag_info(struct smb2_query_info_rsp *rsp, 7088 struct ksmbd_file *fp, void *rsp_org) 7089 { 7090 struct smb2_file_attr_tag_info *file_info; 7091 7092 if (!(fp->daccess & FILE_READ_ATTRIBUTES_LE)) { 7093 pr_err("no right to read the attributes : 0x%x\n", 7094 fp->daccess); 7095 return -EACCES; 7096 } 7097 7098 file_info = (struct smb2_file_attr_tag_info *)rsp->Buffer; 7099 file_info->FileAttributes = fp->f_ci->m_fattr; 7100 file_info->ReparseTag = 0; 7101 rsp->OutputBufferLength = 7102 cpu_to_le32(sizeof(struct smb2_file_attr_tag_info)); 7103 return 0; 7104 } 7105 7106 static int find_file_posix_info(struct smb2_query_info_rsp *rsp, 7107 struct ksmbd_file *fp, void *rsp_org) 7108 { 7109 struct smb311_posix_qinfo *file_info; 7110 struct inode *inode = file_inode(fp->filp); 7111 struct mnt_idmap *idmap = file_mnt_idmap(fp->filp); 7112 vfsuid_t vfsuid = i_uid_into_vfsuid(idmap, inode); 7113 vfsgid_t vfsgid = i_gid_into_vfsgid(idmap, inode); 7114 struct kstat stat; 7115 u64 time; 7116 int out_buf_len = sizeof(struct smb311_posix_qinfo) + 32; 7117 int ret; 7118 7119 if (!(fp->daccess & FILE_READ_ATTRIBUTES_LE)) { 7120 pr_err("no right to read the attributes : 0x%x\n", 7121 fp->daccess); 7122 return -EACCES; 7123 } 7124 7125 ret = get_file_allocation_stat(fp, &stat); 7126 if (ret) 7127 return ret; 7128 7129 file_info = (struct smb311_posix_qinfo *)rsp->Buffer; 7130 file_info->CreationTime = cpu_to_le64(fp->create_time); 7131 time = ksmbd_UnixTimeToNT(stat.atime); 7132 file_info->LastAccessTime = cpu_to_le64(time); 7133 time = ksmbd_UnixTimeToNT(stat.mtime); 7134 file_info->LastWriteTime = cpu_to_le64(time); 7135 file_info->ChangeTime = cpu_to_le64(fp->change_time); 7136 file_info->DosAttributes = fp->f_ci->m_fattr; 7137 file_info->Inode = cpu_to_le64(stat.ino); 7138 if (ksmbd_stream_fd(fp) == false) { 7139 file_info->EndOfFile = cpu_to_le64(stat.size); 7140 file_info->AllocationSize = cpu_to_le64(fp->allocation_size); 7141 } else { 7142 loff_t seof = ksmbd_stream_eof(fp); 7143 7144 file_info->EndOfFile = cpu_to_le64((u64)seof); 7145 file_info->AllocationSize = cpu_to_le64((u64)seof); 7146 } 7147 file_info->HardLinks = cpu_to_le32(stat.nlink); 7148 file_info->Mode = cpu_to_le32(stat.mode & 0777); 7149 switch (stat.mode & S_IFMT) { 7150 case S_IFDIR: 7151 file_info->Mode |= cpu_to_le32(POSIX_TYPE_DIR << POSIX_FILETYPE_SHIFT); 7152 break; 7153 case S_IFLNK: 7154 file_info->Mode |= cpu_to_le32(POSIX_TYPE_SYMLINK << POSIX_FILETYPE_SHIFT); 7155 break; 7156 case S_IFCHR: 7157 file_info->Mode |= cpu_to_le32(POSIX_TYPE_CHARDEV << POSIX_FILETYPE_SHIFT); 7158 break; 7159 case S_IFBLK: 7160 file_info->Mode |= cpu_to_le32(POSIX_TYPE_BLKDEV << POSIX_FILETYPE_SHIFT); 7161 break; 7162 case S_IFIFO: 7163 file_info->Mode |= cpu_to_le32(POSIX_TYPE_FIFO << POSIX_FILETYPE_SHIFT); 7164 break; 7165 case S_IFSOCK: 7166 file_info->Mode |= cpu_to_le32(POSIX_TYPE_SOCKET << POSIX_FILETYPE_SHIFT); 7167 } 7168 7169 file_info->DeviceId = cpu_to_le32(stat.rdev); 7170 7171 /* 7172 * Sids(32) contain two sids(Domain sid(16), UNIX group sid(16)). 7173 * UNIX sid(16) = revision(1) + num_subauth(1) + authority(6) + 7174 * sub_auth(4 * 1(num_subauth)) + RID(4). 7175 */ 7176 id_to_sid(from_kuid_munged(&init_user_ns, vfsuid_into_kuid(vfsuid)), 7177 SIDUNIX_USER, (struct smb_sid *)&file_info->Sids[0]); 7178 id_to_sid(from_kgid_munged(&init_user_ns, vfsgid_into_kgid(vfsgid)), 7179 SIDUNIX_GROUP, (struct smb_sid *)&file_info->Sids[16]); 7180 7181 rsp->OutputBufferLength = cpu_to_le32(out_buf_len); 7182 7183 return 0; 7184 } 7185 7186 static int smb2_get_info_file(struct ksmbd_work *work, 7187 struct smb2_query_info_req *req, 7188 struct smb2_query_info_rsp *rsp) 7189 { 7190 struct ksmbd_file *fp; 7191 int fileinfoclass = 0; 7192 int rc = 0; 7193 unsigned int fixed_len; 7194 unsigned int id = KSMBD_NO_FID, pid = KSMBD_NO_FID; 7195 7196 if (test_share_config_flag(work->tcon->share_conf, 7197 KSMBD_SHARE_FLAG_PIPE)) { 7198 /* smb2 info file called for pipe */ 7199 rc = smb2_get_info_file_pipe(work->sess, req, rsp); 7200 goto iov_pin_out; 7201 } 7202 7203 if (work->next_smb2_rcv_hdr_off) { 7204 if (!has_file_id(req->VolatileFileId)) { 7205 ksmbd_debug(SMB, "Compound request set FID = %llu\n", 7206 work->compound_fid); 7207 id = work->compound_fid; 7208 pid = work->compound_pfid; 7209 } 7210 } 7211 7212 if (!has_file_id(id)) { 7213 id = req->VolatileFileId; 7214 pid = req->PersistentFileId; 7215 } 7216 7217 fp = ksmbd_lookup_fd_slow(work, id, pid); 7218 if (!fp) 7219 return -ENOENT; 7220 7221 fileinfoclass = req->FileInfoClass; 7222 7223 switch (fileinfoclass) { 7224 case FILE_ACCESS_INFORMATION: 7225 get_file_access_info(rsp, fp, work->response_buf); 7226 break; 7227 7228 case FILE_BASIC_INFORMATION: 7229 rc = get_file_basic_info(rsp, fp, work->response_buf); 7230 break; 7231 7232 case FILE_STANDARD_INFORMATION: 7233 rc = get_file_standard_info(rsp, fp, work->response_buf); 7234 break; 7235 7236 case FILE_ALIGNMENT_INFORMATION: 7237 get_file_alignment_info(rsp, work->response_buf); 7238 break; 7239 7240 case FILE_ALL_INFORMATION: 7241 rc = get_file_all_info(work, rsp, fp, work->response_buf); 7242 break; 7243 7244 case FILE_ALTERNATE_NAME_INFORMATION: 7245 get_file_alternate_info(work, rsp, fp, work->response_buf); 7246 break; 7247 case FILE_NORMALIZED_NAME_INFORMATION: 7248 rc = get_file_normalized_name_info(work, rsp, fp); 7249 break; 7250 7251 case FILE_STREAM_INFORMATION: 7252 rc = get_file_stream_info(work, rsp, fp, work->response_buf); 7253 break; 7254 7255 case FILE_INTERNAL_INFORMATION: 7256 rc = get_file_internal_info(rsp, fp, work->response_buf); 7257 break; 7258 7259 case FILE_NETWORK_OPEN_INFORMATION: 7260 rc = get_file_network_open_info(rsp, fp, work->response_buf); 7261 break; 7262 7263 case FILE_EA_INFORMATION: 7264 get_file_ea_info(rsp, work->response_buf); 7265 break; 7266 7267 case FILE_FULL_EA_INFORMATION: 7268 rc = smb2_get_ea(work, fp, req, rsp, work->response_buf); 7269 break; 7270 7271 case FILE_POSITION_INFORMATION: 7272 get_file_position_info(rsp, fp, work->response_buf); 7273 break; 7274 7275 case FILE_MODE_INFORMATION: 7276 get_file_mode_info(rsp, fp, work->response_buf); 7277 break; 7278 7279 case FILE_COMPRESSION_INFORMATION: 7280 rc = get_file_compression_info(rsp, fp, work->response_buf); 7281 break; 7282 7283 case FILE_ATTRIBUTE_TAG_INFORMATION: 7284 rc = get_file_attribute_tag_info(rsp, fp, work->response_buf); 7285 break; 7286 case SMB_FIND_FILE_POSIX_INFO: 7287 if (!work->tcon->posix_extensions) { 7288 pr_err("client doesn't negotiate with SMB3.1.1 POSIX Extensions\n"); 7289 rc = -EOPNOTSUPP; 7290 } else { 7291 rc = find_file_posix_info(rsp, fp, work->response_buf); 7292 } 7293 break; 7294 default: 7295 ksmbd_debug(SMB, "fileinfoclass %d not supported yet\n", 7296 fileinfoclass); 7297 rc = -EOPNOTSUPP; 7298 } 7299 if (!rc) { 7300 fixed_len = le32_to_cpu(rsp->OutputBufferLength); 7301 switch (fileinfoclass) { 7302 case FILE_ALL_INFORMATION: 7303 fixed_len = FILE_ALL_INFORMATION_SIZE; 7304 break; 7305 case FILE_ALTERNATE_NAME_INFORMATION: 7306 fixed_len = FILE_ALTERNATE_NAME_INFORMATION_SIZE; 7307 break; 7308 case FILE_NORMALIZED_NAME_INFORMATION: 7309 fixed_len = FILE_NORMALIZED_NAME_INFORMATION_SIZE; 7310 break; 7311 case FILE_STREAM_INFORMATION: 7312 fixed_len = FILE_STREAM_INFORMATION_SIZE; 7313 break; 7314 } 7315 rc = buffer_check_err(le32_to_cpu(req->OutputBufferLength), 7316 fixed_len, 7317 rsp); 7318 } 7319 ksmbd_fd_put(work, fp); 7320 7321 iov_pin_out: 7322 if (!rc) 7323 rc = ksmbd_iov_pin_rsp(work, (void *)rsp, 7324 offsetof(struct smb2_query_info_rsp, Buffer) + 7325 le32_to_cpu(rsp->OutputBufferLength)); 7326 return rc; 7327 } 7328 7329 static int smb2_get_info_filesystem(struct ksmbd_work *work, 7330 struct smb2_query_info_req *req, 7331 struct smb2_query_info_rsp *rsp) 7332 { 7333 struct ksmbd_conn *conn = work->conn; 7334 struct ksmbd_share_config *share = work->tcon->share_conf; 7335 int fsinfoclass = 0; 7336 struct kstatfs stfs; 7337 struct path path; 7338 int rc = 0, len; 7339 unsigned int fixed_len = 0; 7340 7341 if (!share->path) 7342 return -EIO; 7343 7344 scoped_with_init_fs() 7345 rc = kern_path(share->path, LOOKUP_NO_SYMLINKS, &path); 7346 if (rc) { 7347 pr_err("cannot create vfs path\n"); 7348 return -EIO; 7349 } 7350 7351 rc = vfs_statfs(&path, &stfs); 7352 if (rc) { 7353 pr_err("cannot do stat of path %s\n", share->path); 7354 path_put(&path); 7355 return -EIO; 7356 } 7357 7358 fsinfoclass = req->FileInfoClass; 7359 7360 switch (fsinfoclass) { 7361 case FS_DEVICE_INFORMATION: 7362 { 7363 FILE_SYSTEM_DEVICE_INFO *info; 7364 7365 info = (FILE_SYSTEM_DEVICE_INFO *)rsp->Buffer; 7366 7367 info->DeviceType = cpu_to_le32(FILE_DEVICE_DISK); 7368 info->DeviceCharacteristics = 7369 cpu_to_le32(FILE_DEVICE_IS_MOUNTED); 7370 if (!test_tree_conn_flag(work->tcon, 7371 KSMBD_TREE_CONN_FLAG_WRITABLE)) 7372 info->DeviceCharacteristics |= 7373 cpu_to_le32(FILE_READ_ONLY_DEVICE); 7374 rsp->OutputBufferLength = cpu_to_le32(8); 7375 fixed_len = 8; 7376 break; 7377 } 7378 case FS_ATTRIBUTE_INFORMATION: 7379 { 7380 FILE_SYSTEM_ATTRIBUTE_INFO *info; 7381 struct file_kattr fa = {}; 7382 size_t sz; 7383 u32 attrs; 7384 int err; 7385 7386 info = (FILE_SYSTEM_ATTRIBUTE_INFO *)rsp->Buffer; 7387 attrs = FILE_SUPPORTS_OBJECT_IDS | 7388 FILE_PERSISTENT_ACLS | 7389 FILE_UNICODE_ON_DISK | 7390 FILE_FILE_COMPRESSION | 7391 FILE_SUPPORTS_SPARSE_FILES | 7392 FILE_SUPPORTS_BLOCK_REFCOUNTING; 7393 7394 err = vfs_fileattr_get(path.dentry, &fa); 7395 /* 7396 * -EINVAL, -EOPNOTSUPP: ntfs-3g and other FUSE 7397 * filesystems that lack FS_IOC_FSGETXATTR support. 7398 */ 7399 if (err && err != -ENOIOCTLCMD && err != -ENOTTY && 7400 err != -EINVAL && err != -EOPNOTSUPP) { 7401 path_put(&path); 7402 return err; 7403 } 7404 if (!(fa.fsx_xflags & FS_XFLAG_CASEFOLD)) 7405 attrs |= FILE_CASE_SENSITIVE_SEARCH; 7406 if (!(fa.fsx_xflags & FS_XFLAG_CASENONPRESERVING)) 7407 attrs |= FILE_CASE_PRESERVED_NAMES; 7408 7409 info->Attributes = cpu_to_le32(attrs); 7410 info->Attributes |= cpu_to_le32(server_conf.share_fake_fscaps); 7411 7412 if (test_share_config_flag(work->tcon->share_conf, 7413 KSMBD_SHARE_FLAG_STREAMS)) 7414 info->Attributes |= cpu_to_le32(FILE_NAMED_STREAMS); 7415 7416 info->MaxPathNameComponentLength = cpu_to_le32(stfs.f_namelen); 7417 /* 7418 * some application(potableapp) can not run on ksmbd share 7419 * because only NTFS handle security setting on windows. 7420 * So Although local fs(EXT4 or F2fs, etc) is not NTFS, 7421 * ksmbd should show share as NTFS. Later, If needed, we can add 7422 * fs type(s) parameter to change fs type user wanted. 7423 */ 7424 len = smbConvertToUTF16((__le16 *)info->FileSystemName, 7425 "NTFS", PATH_MAX, conn->local_nls, 0); 7426 len = len * 2; 7427 info->FileSystemNameLen = cpu_to_le32(len); 7428 sz = sizeof(FILE_SYSTEM_ATTRIBUTE_INFO) + len; 7429 rsp->OutputBufferLength = cpu_to_le32(sz); 7430 fixed_len = 16; 7431 break; 7432 } 7433 case FS_VOLUME_INFORMATION: 7434 { 7435 struct filesystem_vol_info *info; 7436 size_t sz; 7437 unsigned int serial_crc = 0; 7438 7439 info = (struct filesystem_vol_info *)(rsp->Buffer); 7440 info->VolumeCreationTime = 0; 7441 serial_crc = crc32_le(serial_crc, share->name, 7442 strlen(share->name)); 7443 serial_crc = crc32_le(serial_crc, share->path, 7444 strlen(share->path)); 7445 serial_crc = crc32_le(serial_crc, ksmbd_netbios_name(), 7446 strlen(ksmbd_netbios_name())); 7447 /* Taking dummy value of serial number*/ 7448 info->VolumeSerialNumber = cpu_to_le32(serial_crc); 7449 len = smbConvertToUTF16((__le16 *)info->VolumeLabel, 7450 share->name, PATH_MAX, 7451 conn->local_nls, 0); 7452 len = len * 2; 7453 info->VolumeLabelLength = cpu_to_le32(len); 7454 info->Reserved = 0; 7455 info->SupportsObjects = 0; 7456 sz = sizeof(struct filesystem_vol_info) + len; 7457 rsp->OutputBufferLength = cpu_to_le32(sz); 7458 fixed_len = 24; 7459 break; 7460 } 7461 case FS_SIZE_INFORMATION: 7462 { 7463 FILE_SYSTEM_SIZE_INFO *info; 7464 7465 info = (FILE_SYSTEM_SIZE_INFO *)(rsp->Buffer); 7466 info->TotalAllocationUnits = cpu_to_le64(stfs.f_blocks); 7467 info->AvailableAllocationUnits = cpu_to_le64(stfs.f_bfree); 7468 info->SectorsPerAllocationUnit = cpu_to_le32(1); 7469 info->BytesPerSector = cpu_to_le32(stfs.f_bsize); 7470 rsp->OutputBufferLength = cpu_to_le32(24); 7471 fixed_len = 24; 7472 break; 7473 } 7474 case FS_FULL_SIZE_INFORMATION: 7475 { 7476 struct smb2_fs_full_size_info *info; 7477 7478 info = (struct smb2_fs_full_size_info *)(rsp->Buffer); 7479 info->TotalAllocationUnits = cpu_to_le64(stfs.f_blocks); 7480 info->CallerAvailableAllocationUnits = 7481 cpu_to_le64(stfs.f_bavail); 7482 info->ActualAvailableAllocationUnits = 7483 cpu_to_le64(stfs.f_bfree); 7484 info->SectorsPerAllocationUnit = cpu_to_le32(1); 7485 info->BytesPerSector = cpu_to_le32(stfs.f_bsize); 7486 rsp->OutputBufferLength = cpu_to_le32(32); 7487 fixed_len = 32; 7488 break; 7489 } 7490 case FS_OBJECT_ID_INFORMATION: 7491 { 7492 struct object_id_info *info; 7493 7494 info = (struct object_id_info *)(rsp->Buffer); 7495 memset(info, 0, sizeof(*info)); 7496 7497 if (path.mnt->mnt_sb->s_uuid_len == 16) 7498 memcpy(info->objid, path.mnt->mnt_sb->s_uuid.b, 7499 path.mnt->mnt_sb->s_uuid_len); 7500 else 7501 memcpy(info->objid, &stfs.f_fsid, sizeof(stfs.f_fsid)); 7502 7503 info->extended_info.magic = cpu_to_le32(EXTENDED_INFO_MAGIC); 7504 info->extended_info.version = cpu_to_le32(1); 7505 info->extended_info.release = cpu_to_le32(1); 7506 info->extended_info.rel_date = 0; 7507 memcpy(info->extended_info.version_string, "1.1.0", strlen("1.1.0")); 7508 rsp->OutputBufferLength = cpu_to_le32(64); 7509 fixed_len = 64; 7510 break; 7511 } 7512 case FS_SECTOR_SIZE_INFORMATION: 7513 { 7514 struct smb3_fs_ss_info *info; 7515 unsigned int sector_size = 7516 min_t(unsigned int, path.mnt->mnt_sb->s_blocksize, 4096); 7517 7518 info = (struct smb3_fs_ss_info *)(rsp->Buffer); 7519 7520 info->LogicalBytesPerSector = cpu_to_le32(sector_size); 7521 info->PhysicalBytesPerSectorForAtomicity = 7522 cpu_to_le32(sector_size); 7523 info->PhysicalBytesPerSectorForPerf = cpu_to_le32(sector_size); 7524 info->FSEffPhysicalBytesPerSectorForAtomicity = 7525 cpu_to_le32(sector_size); 7526 info->Flags = cpu_to_le32(SSINFO_FLAGS_ALIGNED_DEVICE | 7527 SSINFO_FLAGS_PARTITION_ALIGNED_ON_DEVICE | 7528 SSINFO_FLAGS_TRIM_ENABLED); 7529 info->ByteOffsetForSectorAlignment = 0; 7530 info->ByteOffsetForPartitionAlignment = 0; 7531 rsp->OutputBufferLength = cpu_to_le32(28); 7532 fixed_len = 28; 7533 break; 7534 } 7535 case FS_CONTROL_INFORMATION: 7536 { 7537 /* 7538 * TODO : The current implementation is based on 7539 * test result with win7(NTFS) server. It's need to 7540 * modify this to get valid Quota values 7541 * from Linux kernel 7542 */ 7543 struct smb2_fs_control_info *info; 7544 7545 info = (struct smb2_fs_control_info *)(rsp->Buffer); 7546 info->FreeSpaceStartFiltering = 0; 7547 info->FreeSpaceThreshold = 0; 7548 info->FreeSpaceStopFiltering = 0; 7549 info->DefaultQuotaThreshold = cpu_to_le64(SMB2_NO_FID); 7550 info->DefaultQuotaLimit = cpu_to_le64(SMB2_NO_FID); 7551 info->FileSystemControlFlags = 0; 7552 info->Padding = 0; 7553 rsp->OutputBufferLength = cpu_to_le32(48); 7554 fixed_len = 48; 7555 break; 7556 } 7557 case FS_POSIX_INFORMATION: 7558 { 7559 FILE_SYSTEM_POSIX_INFO *info; 7560 7561 if (!work->tcon->posix_extensions) { 7562 pr_err("client doesn't negotiate with SMB3.1.1 POSIX Extensions\n"); 7563 path_put(&path); 7564 return -EOPNOTSUPP; 7565 } else { 7566 info = (FILE_SYSTEM_POSIX_INFO *)(rsp->Buffer); 7567 info->OptimalTransferSize = cpu_to_le32(stfs.f_bsize); 7568 info->BlockSize = cpu_to_le32(stfs.f_bsize); 7569 info->TotalBlocks = cpu_to_le64(stfs.f_blocks); 7570 info->BlocksAvail = cpu_to_le64(stfs.f_bfree); 7571 info->UserBlocksAvail = cpu_to_le64(stfs.f_bavail); 7572 info->TotalFileNodes = cpu_to_le64(stfs.f_files); 7573 info->FreeFileNodes = cpu_to_le64(stfs.f_ffree); 7574 info->FileSysIdentifier = 7575 cpu_to_le64((u64)(u32)stfs.f_fsid.val[1] << 32 | 7576 (u32)stfs.f_fsid.val[0]); 7577 rsp->OutputBufferLength = cpu_to_le32(56); 7578 fixed_len = 56; 7579 } 7580 break; 7581 } 7582 default: 7583 path_put(&path); 7584 return -EOPNOTSUPP; 7585 } 7586 rc = buffer_check_err(le32_to_cpu(req->OutputBufferLength), 7587 fixed_len, 7588 rsp); 7589 path_put(&path); 7590 7591 if (!rc) 7592 rc = ksmbd_iov_pin_rsp(work, (void *)rsp, 7593 offsetof(struct smb2_query_info_rsp, Buffer) + 7594 le32_to_cpu(rsp->OutputBufferLength)); 7595 return rc; 7596 } 7597 7598 static int smb2_get_info_sec(struct ksmbd_work *work, 7599 struct smb2_query_info_req *req, 7600 struct smb2_query_info_rsp *rsp) 7601 { 7602 struct ksmbd_file *fp; 7603 struct mnt_idmap *idmap; 7604 struct smb_ntsd *pntsd = NULL, *ppntsd = NULL; 7605 struct smb_fattr fattr = {{0}}; 7606 struct inode *inode; 7607 __u32 secdesclen = 0; 7608 unsigned int id = KSMBD_NO_FID, pid = KSMBD_NO_FID; 7609 int addition_info = le32_to_cpu(req->AdditionalInformation); 7610 int rc = 0, ppntsd_size = 0, max_len; 7611 size_t scratch_len = 0; 7612 7613 if (addition_info & ~(OWNER_SECINFO | GROUP_SECINFO | DACL_SECINFO | 7614 PROTECTED_DACL_SECINFO | 7615 UNPROTECTED_DACL_SECINFO)) { 7616 ksmbd_debug(SMB, "Unsupported addition info: 0x%x)\n", 7617 addition_info); 7618 7619 rsp->hdr.Status = STATUS_NOT_SUPPORTED; 7620 return -EINVAL; 7621 } 7622 7623 if (work->next_smb2_rcv_hdr_off) { 7624 if (!has_file_id(req->VolatileFileId)) { 7625 ksmbd_debug(SMB, "Compound request set FID = %llu\n", 7626 work->compound_fid); 7627 id = work->compound_fid; 7628 pid = work->compound_pfid; 7629 } 7630 } 7631 7632 if (!has_file_id(id)) { 7633 id = req->VolatileFileId; 7634 pid = req->PersistentFileId; 7635 } 7636 7637 fp = ksmbd_lookup_fd_slow(work, id, pid); 7638 if (!fp) 7639 return -ENOENT; 7640 7641 if (addition_info & (OWNER_SECINFO | GROUP_SECINFO | DACL_SECINFO) && 7642 !(fp->daccess & FILE_READ_CONTROL_LE)) { 7643 ksmbd_fd_put(work, fp); 7644 return -EACCES; 7645 } 7646 7647 if (le32_to_cpu(req->OutputBufferLength) < sizeof(struct smb_ntsd)) { 7648 rsp->hdr.Status = STATUS_BUFFER_TOO_SMALL; 7649 ksmbd_fd_put(work, fp); 7650 return -ENOSPC; 7651 } 7652 7653 idmap = file_mnt_idmap(fp->filp); 7654 inode = file_inode(fp->filp); 7655 ksmbd_acls_fattr(&fattr, idmap, inode); 7656 7657 if (test_share_config_flag(work->tcon->share_conf, 7658 KSMBD_SHARE_FLAG_ACL_XATTR)) 7659 ppntsd_size = ksmbd_vfs_get_sd_xattr(work->conn, idmap, 7660 fp->filp->f_path.dentry, 7661 &ppntsd); 7662 7663 /* Check if sd buffer size exceeds response buffer size */ 7664 max_len = smb2_calc_max_out_buf_len(work, 7665 offsetof(struct smb2_query_info_rsp, Buffer), 7666 le32_to_cpu(req->OutputBufferLength)); 7667 if (max_len < 0) { 7668 rc = -EINVAL; 7669 goto release_acl; 7670 } 7671 7672 scratch_len = smb_acl_sec_desc_scratch_len(&fattr, ppntsd, 7673 ppntsd_size, addition_info); 7674 if (!scratch_len || scratch_len == SIZE_MAX) { 7675 rc = -EFBIG; 7676 goto release_acl; 7677 } 7678 7679 pntsd = kvzalloc(scratch_len, KSMBD_DEFAULT_GFP); 7680 if (!pntsd) { 7681 rc = -ENOMEM; 7682 goto release_acl; 7683 } 7684 7685 rc = build_sec_desc(idmap, pntsd, ppntsd, ppntsd_size, 7686 addition_info, &secdesclen, &fattr); 7687 7688 release_acl: 7689 posix_acl_release(fattr.cf_acls); 7690 posix_acl_release(fattr.cf_dacls); 7691 kfree(ppntsd); 7692 ksmbd_fd_put(work, fp); 7693 7694 if (!rc && ALIGN(secdesclen, 8) > scratch_len) 7695 rc = -EFBIG; 7696 if (rc) 7697 goto err_out; 7698 7699 rsp->OutputBufferLength = cpu_to_le32(secdesclen); 7700 rc = buffer_check_err(le32_to_cpu(req->OutputBufferLength), 7701 le32_to_cpu(rsp->OutputBufferLength), 7702 rsp); 7703 if (rc) 7704 goto err_out; 7705 7706 rc = ksmbd_iov_pin_rsp_read(work, (void *)rsp, 7707 offsetof(struct smb2_query_info_rsp, Buffer), 7708 pntsd, secdesclen); 7709 err_out: 7710 if (rc) { 7711 rsp->OutputBufferLength = 0; 7712 kvfree(pntsd); 7713 } 7714 7715 return rc; 7716 } 7717 7718 /** 7719 * smb2_query_info() - handler for smb2 query info command 7720 * @work: smb work containing query info request buffer 7721 * 7722 * Return: 0 on success, otherwise error 7723 */ 7724 int smb2_query_info(struct ksmbd_work *work) 7725 { 7726 struct smb2_query_info_req *req; 7727 struct smb2_query_info_rsp *rsp; 7728 int rc = 0; 7729 7730 ksmbd_debug(SMB, "Received request smb2 query info request\n"); 7731 7732 WORK_BUFFERS(work, req, rsp); 7733 7734 if (smb2_compound_has_failed(work, &rsp->hdr)) 7735 return -EACCES; 7736 7737 if (ksmbd_override_fsids(work)) { 7738 rc = -ENOMEM; 7739 goto err_out; 7740 } 7741 7742 rsp->StructureSize = cpu_to_le16(9); 7743 rsp->OutputBufferOffset = cpu_to_le16(72); 7744 7745 switch (req->InfoType) { 7746 case SMB2_O_INFO_FILE: 7747 ksmbd_debug(SMB, "GOT SMB2_O_INFO_FILE\n"); 7748 rc = smb2_get_info_file(work, req, rsp); 7749 break; 7750 case SMB2_O_INFO_FILESYSTEM: 7751 ksmbd_debug(SMB, "GOT SMB2_O_INFO_FILESYSTEM\n"); 7752 rc = smb2_get_info_filesystem(work, req, rsp); 7753 break; 7754 case SMB2_O_INFO_SECURITY: 7755 ksmbd_debug(SMB, "GOT SMB2_O_INFO_SECURITY\n"); 7756 rc = smb2_get_info_sec(work, req, rsp); 7757 break; 7758 default: 7759 ksmbd_debug(SMB, "InfoType %d not supported yet\n", 7760 req->InfoType); 7761 rc = -EOPNOTSUPP; 7762 } 7763 ksmbd_revert_fsids(work); 7764 7765 err_out: 7766 if (rc < 0) { 7767 if (rc == -EACCES) 7768 rsp->hdr.Status = STATUS_ACCESS_DENIED; 7769 else if (rc == -ENOENT) 7770 rsp->hdr.Status = STATUS_FILE_CLOSED; 7771 else if (rc == -EIO) 7772 rsp->hdr.Status = STATUS_UNEXPECTED_IO_ERROR; 7773 else if (rc == -ENOMEM) 7774 rsp->hdr.Status = STATUS_INSUFFICIENT_RESOURCES; 7775 else if (rc == -EINVAL && rsp->hdr.Status == 0) 7776 rsp->hdr.Status = STATUS_INVALID_PARAMETER; 7777 else if (rsp->hdr.Status == 0) 7778 rsp->hdr.Status = STATUS_INVALID_INFO_CLASS; 7779 smb2_set_err_rsp(work); 7780 7781 ksmbd_debug(SMB, "error while processing smb2 query rc = %d\n", 7782 rc); 7783 return rc; 7784 } 7785 return 0; 7786 } 7787 7788 /** 7789 * smb2_close_pipe() - handler for closing IPC pipe 7790 * @work: smb work containing close request buffer 7791 * 7792 * Return: 0 7793 */ 7794 static noinline int smb2_close_pipe(struct ksmbd_work *work) 7795 { 7796 u64 id; 7797 struct smb2_close_req *req; 7798 struct smb2_close_rsp *rsp; 7799 7800 WORK_BUFFERS(work, req, rsp); 7801 7802 id = req->VolatileFileId; 7803 ksmbd_session_rpc_close(work->sess, id); 7804 7805 rsp->StructureSize = cpu_to_le16(60); 7806 rsp->Flags = 0; 7807 rsp->Reserved = 0; 7808 rsp->CreationTime = 0; 7809 rsp->LastAccessTime = 0; 7810 rsp->LastWriteTime = 0; 7811 rsp->ChangeTime = 0; 7812 rsp->AllocationSize = 0; 7813 rsp->EndOfFile = 0; 7814 rsp->Attributes = 0; 7815 7816 return ksmbd_iov_pin_rsp(work, (void *)rsp, 7817 sizeof(struct smb2_close_rsp)); 7818 } 7819 7820 /** 7821 * smb2_close() - handler for smb2 close file command 7822 * @work: smb work containing close request buffer 7823 * 7824 * Return: 0 on success, otherwise error 7825 */ 7826 int smb2_close(struct ksmbd_work *work) 7827 { 7828 u64 volatile_id = KSMBD_NO_FID; 7829 u64 sess_id; 7830 struct smb2_close_req *req; 7831 struct smb2_close_rsp *rsp; 7832 struct ksmbd_file *fp; 7833 u64 time; 7834 int err = 0; 7835 7836 ksmbd_debug(SMB, "Received smb2 close request\n"); 7837 7838 WORK_BUFFERS(work, req, rsp); 7839 7840 if (smb2_compound_has_failed(work, &rsp->hdr)) 7841 return -EACCES; 7842 7843 if (test_share_config_flag(work->tcon->share_conf, 7844 KSMBD_SHARE_FLAG_PIPE)) { 7845 ksmbd_debug(SMB, "IPC pipe close request\n"); 7846 return smb2_close_pipe(work); 7847 } 7848 7849 sess_id = le64_to_cpu(req->hdr.SessionId); 7850 if (req->hdr.Flags & SMB2_FLAGS_RELATED_OPERATIONS) 7851 sess_id = work->compound_sid; 7852 7853 work->compound_sid = 0; 7854 if (work->sess && work->sess->id == sess_id) { 7855 work->compound_sid = sess_id; 7856 } else { 7857 rsp->hdr.Status = STATUS_USER_SESSION_DELETED; 7858 if (req->hdr.Flags & SMB2_FLAGS_RELATED_OPERATIONS) 7859 rsp->hdr.Status = STATUS_INVALID_PARAMETER; 7860 err = -EBADF; 7861 goto out; 7862 } 7863 7864 if (work->next_smb2_rcv_hdr_off && 7865 !has_file_id(req->VolatileFileId)) { 7866 if (!has_file_id(work->compound_fid)) { 7867 /* file already closed, return FILE_CLOSED */ 7868 ksmbd_debug(SMB, "file already closed\n"); 7869 rsp->hdr.Status = STATUS_FILE_CLOSED; 7870 err = -EBADF; 7871 goto out; 7872 } else { 7873 ksmbd_debug(SMB, 7874 "Compound request set FID = %llu:%llu\n", 7875 work->compound_fid, 7876 work->compound_pfid); 7877 volatile_id = work->compound_fid; 7878 7879 /* file closed, stored id is not valid anymore */ 7880 work->compound_fid = KSMBD_NO_FID; 7881 work->compound_pfid = KSMBD_NO_FID; 7882 } 7883 } else { 7884 volatile_id = req->VolatileFileId; 7885 } 7886 ksmbd_debug(SMB, "volatile_id = %llu\n", volatile_id); 7887 7888 rsp->StructureSize = cpu_to_le16(60); 7889 rsp->Reserved = 0; 7890 7891 if (req->Flags == SMB2_CLOSE_FLAG_POSTQUERY_ATTRIB) { 7892 struct kstat stat; 7893 int ret; 7894 7895 fp = ksmbd_lookup_fd_fast(work, volatile_id); 7896 if (!fp) { 7897 err = -ENOENT; 7898 goto out; 7899 } 7900 7901 ret = vfs_getattr(&fp->filp->f_path, &stat, STATX_BASIC_STATS, 7902 AT_STATX_SYNC_AS_STAT); 7903 if (ret) { 7904 ksmbd_fd_put(work, fp); 7905 goto out; 7906 } 7907 7908 rsp->Flags = SMB2_CLOSE_FLAG_POSTQUERY_ATTRIB; 7909 rsp->AllocationSize = cpu_to_le64(fp->allocation_size); 7910 rsp->EndOfFile = cpu_to_le64(stat.size); 7911 rsp->Attributes = fp->f_ci->m_fattr; 7912 rsp->CreationTime = cpu_to_le64(fp->create_time); 7913 time = ksmbd_UnixTimeToNT(stat.atime); 7914 rsp->LastAccessTime = cpu_to_le64(time); 7915 time = ksmbd_UnixTimeToNT(stat.mtime); 7916 if (time > fp->open_mtime && 7917 time - fp->open_mtime < KSMBD_WRITE_TIME_RESOLUTION) 7918 time = fp->open_mtime; 7919 rsp->LastWriteTime = cpu_to_le64(time); 7920 rsp->ChangeTime = cpu_to_le64(fp->change_time); 7921 ksmbd_fd_put(work, fp); 7922 } else { 7923 rsp->Flags = 0; 7924 rsp->AllocationSize = 0; 7925 rsp->EndOfFile = 0; 7926 rsp->Attributes = 0; 7927 rsp->CreationTime = 0; 7928 rsp->LastAccessTime = 0; 7929 rsp->LastWriteTime = 0; 7930 rsp->ChangeTime = 0; 7931 } 7932 7933 err = ksmbd_close_fd(work, volatile_id); 7934 out: 7935 if (!err) 7936 err = ksmbd_iov_pin_rsp(work, (void *)rsp, 7937 sizeof(struct smb2_close_rsp)); 7938 7939 if (err) { 7940 if (rsp->hdr.Status == 0) 7941 rsp->hdr.Status = STATUS_FILE_CLOSED; 7942 smb2_set_err_rsp(work); 7943 } 7944 7945 return err; 7946 } 7947 7948 /** 7949 * smb2_echo() - handler for smb2 echo(ping) command 7950 * @work: smb work containing echo request buffer 7951 * 7952 * Return: 0 on success, otherwise error 7953 */ 7954 int smb2_echo(struct ksmbd_work *work) 7955 { 7956 struct smb2_echo_rsp *rsp = smb_get_msg(work->response_buf); 7957 7958 ksmbd_debug(SMB, "Received smb2 echo request\n"); 7959 7960 if (work->next_smb2_rcv_hdr_off) 7961 rsp = ksmbd_resp_buf_next(work); 7962 7963 rsp->StructureSize = cpu_to_le16(4); 7964 rsp->Reserved = 0; 7965 return ksmbd_iov_pin_rsp(work, rsp, sizeof(struct smb2_echo_rsp)); 7966 } 7967 7968 static int smb2_rename(struct ksmbd_work *work, 7969 struct ksmbd_file *fp, 7970 struct smb2_file_rename_info *file_info, 7971 struct nls_table *local_nls) 7972 { 7973 struct ksmbd_share_config *share = fp->tcon->share_conf; 7974 char *new_name = NULL; 7975 int rc, flags = 0; 7976 7977 ksmbd_debug(SMB, "setting FILE_RENAME_INFO\n"); 7978 new_name = smb2_get_name(file_info->FileName, 7979 le32_to_cpu(file_info->FileNameLength), 7980 local_nls); 7981 if (IS_ERR(new_name)) 7982 return PTR_ERR(new_name); 7983 7984 if (fp->is_posix_ctxt == false && strchr(new_name, ':')) { 7985 int s_type; 7986 char *xattr_stream_name, *stream_name = NULL; 7987 size_t xattr_stream_size; 7988 int len; 7989 7990 rc = parse_stream_name(new_name, &stream_name, &s_type); 7991 if (rc < 0) 7992 goto out; 7993 7994 len = strlen(new_name); 7995 if (len > 0 && new_name[len - 1] != '/') { 7996 pr_err("not allow base filename in rename\n"); 7997 rc = -ESHARE; 7998 goto out; 7999 } 8000 8001 rc = ksmbd_vfs_xattr_stream_name(stream_name, 8002 &xattr_stream_name, 8003 &xattr_stream_size, 8004 s_type); 8005 if (rc) 8006 goto out; 8007 8008 rc = ksmbd_vfs_setxattr(file_mnt_idmap(fp->filp), 8009 &fp->filp->f_path, 8010 xattr_stream_name, 8011 NULL, 0, 0, true); 8012 if (rc < 0) { 8013 pr_err("failed to store stream name in xattr: %d\n", 8014 rc); 8015 rc = -EINVAL; 8016 } 8017 kfree(xattr_stream_name); 8018 goto out; 8019 } 8020 8021 ksmbd_debug(SMB, "new name %s\n", new_name); 8022 if (ksmbd_share_veto_filename(share, new_name)) { 8023 rc = -ENOENT; 8024 ksmbd_debug(SMB, "Can't rename vetoed file: %s\n", new_name); 8025 goto out; 8026 } 8027 8028 if (!file_info->ReplaceIfExists) 8029 flags = RENAME_NOREPLACE; 8030 8031 rc = ksmbd_vfs_check_rename_share(work, &fp->filp->f_path); 8032 if (rc) 8033 goto out; 8034 8035 smb_break_all_levII_oplock_rename(work, fp); 8036 rc = ksmbd_vfs_rename(work, fp, new_name, flags); 8037 out: 8038 kfree(new_name); 8039 return rc; 8040 } 8041 8042 static int smb2_create_link(struct ksmbd_work *work, 8043 struct ksmbd_share_config *share, 8044 struct smb2_file_link_info *file_info, 8045 unsigned int buf_len, struct file *filp, 8046 struct nls_table *local_nls) 8047 { 8048 char *link_name = NULL, *target_name = NULL, *pathname = NULL; 8049 struct path path; 8050 int rc; 8051 8052 if (buf_len < (u64)sizeof(struct smb2_file_link_info) + 8053 le32_to_cpu(file_info->FileNameLength)) 8054 return -EINVAL; 8055 8056 ksmbd_debug(SMB, "setting FILE_LINK_INFORMATION\n"); 8057 pathname = kmalloc(PATH_MAX, KSMBD_DEFAULT_GFP); 8058 if (!pathname) 8059 return -ENOMEM; 8060 8061 link_name = smb2_get_name(file_info->FileName, 8062 le32_to_cpu(file_info->FileNameLength), 8063 local_nls); 8064 if (IS_ERR(link_name) || S_ISDIR(file_inode(filp)->i_mode)) { 8065 rc = -EINVAL; 8066 goto out; 8067 } 8068 8069 ksmbd_debug(SMB, "link name is %s\n", link_name); 8070 target_name = file_path(filp, pathname, PATH_MAX); 8071 if (IS_ERR(target_name)) { 8072 rc = -EINVAL; 8073 goto out; 8074 } 8075 8076 ksmbd_debug(SMB, "target name is %s\n", target_name); 8077 rc = ksmbd_vfs_kern_path_start_removing(work, link_name, LOOKUP_NO_SYMLINKS, 8078 &path, 0); 8079 if (rc) { 8080 if (rc != -ENOENT) 8081 goto out; 8082 } else { 8083 if (file_info->ReplaceIfExists) { 8084 rc = ksmbd_vfs_remove_file(work, &path); 8085 if (rc) { 8086 rc = -EINVAL; 8087 ksmbd_debug(SMB, "cannot delete %s\n", 8088 link_name); 8089 } 8090 } else { 8091 rc = -EEXIST; 8092 ksmbd_debug(SMB, "link already exists\n"); 8093 } 8094 ksmbd_vfs_kern_path_end_removing(&path); 8095 if (rc) 8096 goto out; 8097 } 8098 rc = ksmbd_vfs_link(work, target_name, link_name); 8099 if (rc) 8100 rc = -EINVAL; 8101 out: 8102 8103 if (!IS_ERR(link_name)) 8104 kfree(link_name); 8105 kfree(pathname); 8106 return rc; 8107 } 8108 8109 static int set_file_basic_info(struct ksmbd_file *fp, 8110 struct file_basic_info *file_info, 8111 struct ksmbd_share_config *share) 8112 { 8113 struct iattr attrs; 8114 struct file *filp; 8115 struct inode *inode; 8116 struct mnt_idmap *idmap; 8117 __le32 attrs_mask = FILE_ATTRIBUTE_DIRECTORY_LE | 8118 FILE_ATTRIBUTE_COMPRESSED_LE; 8119 int rc = 0; 8120 8121 if (!(fp->daccess & FILE_WRITE_ATTRIBUTES_LE)) 8122 return -EACCES; 8123 8124 attrs.ia_valid = 0; 8125 filp = fp->filp; 8126 inode = file_inode(filp); 8127 idmap = file_mnt_idmap(filp); 8128 8129 if (file_info->CreationTime) 8130 fp->create_time = le64_to_cpu(file_info->CreationTime); 8131 8132 if (file_info->LastAccessTime) { 8133 attrs.ia_atime = ksmbd_NTtimeToUnix(file_info->LastAccessTime); 8134 attrs.ia_valid |= (ATTR_ATIME | ATTR_ATIME_SET); 8135 } 8136 8137 if (file_info->ChangeTime) { 8138 fp->change_time = le64_to_cpu(file_info->ChangeTime); 8139 inode_set_ctime_to_ts(inode, 8140 ksmbd_NTtimeToUnix(file_info->ChangeTime)); 8141 } 8142 8143 if (file_info->LastWriteTime) { 8144 attrs.ia_mtime = ksmbd_NTtimeToUnix(file_info->LastWriteTime); 8145 attrs.ia_valid |= (ATTR_MTIME | ATTR_MTIME_SET | ATTR_CTIME); 8146 } 8147 8148 if (file_info->Attributes) { 8149 if (!S_ISDIR(inode->i_mode) && 8150 file_info->Attributes & FILE_ATTRIBUTE_DIRECTORY_LE) { 8151 pr_err("can't change a file to a directory\n"); 8152 return -EINVAL; 8153 } 8154 8155 if (!(S_ISDIR(inode->i_mode) && file_info->Attributes == FILE_ATTRIBUTE_NORMAL_LE)) 8156 fp->f_ci->m_fattr = 8157 (file_info->Attributes & ~FILE_ATTRIBUTE_COMPRESSED_LE) | 8158 (fp->f_ci->m_fattr & attrs_mask); 8159 } 8160 8161 if (test_share_config_flag(share, KSMBD_SHARE_FLAG_STORE_DOS_ATTRS) && 8162 (file_info->CreationTime || file_info->Attributes)) { 8163 struct xattr_dos_attrib da = {0}; 8164 8165 da.version = 4; 8166 da.itime = fp->itime; 8167 da.create_time = fp->create_time; 8168 da.attr = le32_to_cpu(fp->f_ci->m_fattr); 8169 da.flags = XATTR_DOSINFO_ATTRIB | XATTR_DOSINFO_CREATE_TIME | 8170 XATTR_DOSINFO_ITIME; 8171 8172 rc = ksmbd_vfs_set_dos_attrib_xattr(idmap, &filp->f_path, &da, 8173 true); 8174 if (rc) 8175 ksmbd_debug(SMB, 8176 "failed to restore file attribute in EA\n"); 8177 rc = 0; 8178 } 8179 8180 if (attrs.ia_valid) { 8181 struct dentry *dentry = filp->f_path.dentry; 8182 struct inode *inode = d_inode(dentry); 8183 8184 if (IS_IMMUTABLE(inode) || IS_APPEND(inode)) 8185 return -EACCES; 8186 8187 inode_lock(inode); 8188 rc = notify_change(idmap, dentry, &attrs, NULL); 8189 inode_unlock(inode); 8190 } 8191 return rc; 8192 } 8193 8194 static int set_file_allocation_info(struct ksmbd_work *work, 8195 struct ksmbd_file *fp, 8196 struct smb2_file_alloc_info *file_alloc_info) 8197 { 8198 /* 8199 * TODO : It's working fine only when store dos attributes 8200 * is not yes. need to implement a logic which works 8201 * properly with any smb.conf option 8202 */ 8203 8204 loff_t alloc_blks; 8205 u64 alloc_size; 8206 struct inode *inode; 8207 struct kstat stat; 8208 int rc; 8209 8210 if (!(fp->daccess & FILE_WRITE_DATA_LE)) 8211 return -EACCES; 8212 8213 if (ksmbd_stream_fd(fp) == true) 8214 return 0; 8215 8216 rc = vfs_getattr(&fp->filp->f_path, &stat, STATX_BASIC_STATS, 8217 AT_STATX_SYNC_AS_STAT); 8218 if (rc) 8219 return rc; 8220 8221 /* 8222 * AllocationSize is fully client-controlled (the caller only 8223 * validates the fixed 8-byte buffer length). Reject values that 8224 * would overflow the "round up to 512-byte blocks" conversion 8225 * below instead of silently wrapping it to a tiny block count, 8226 * which would truncate the file to a size the client never 8227 * asked for. 8228 */ 8229 alloc_size = le64_to_cpu(file_alloc_info->AllocationSize); 8230 if (alloc_size > MAX_LFS_FILESIZE - 511) 8231 return -EINVAL; 8232 8233 alloc_blks = (alloc_size + 511) >> 9; 8234 inode = file_inode(fp->filp); 8235 8236 if (alloc_blks > stat.blocks) { 8237 smb_break_all_levII_oplock(work, fp, 1); 8238 rc = vfs_fallocate(fp->filp, FALLOC_FL_KEEP_SIZE, 0, 8239 alloc_blks * 512); 8240 if (rc && rc != -EOPNOTSUPP) { 8241 pr_err("vfs_fallocate is failed : %d\n", rc); 8242 return rc; 8243 } 8244 } else if (alloc_blks < stat.blocks) { 8245 loff_t size; 8246 8247 /* 8248 * Allocation size could be smaller than original one 8249 * which means allocated blocks in file should be 8250 * deallocated. use truncate to cut out it, but inode 8251 * size is also updated with truncate offset. 8252 * inode size is retained by backup inode size. 8253 */ 8254 size = i_size_read(inode); 8255 rc = ksmbd_vfs_truncate(work, fp, alloc_blks * 512); 8256 if (rc) { 8257 pr_err("truncate failed!, err %d\n", rc); 8258 return rc; 8259 } 8260 if (size < alloc_blks * 512) 8261 i_size_write(inode, size); 8262 } 8263 8264 fp->allocation_size = le64_to_cpu(file_alloc_info->AllocationSize); 8265 fp->allocation_size_set = true; 8266 return 0; 8267 } 8268 8269 static int set_end_of_file_info(struct ksmbd_work *work, struct ksmbd_file *fp, 8270 struct smb2_file_eof_info *file_eof_info) 8271 { 8272 loff_t newsize; 8273 struct inode *inode; 8274 int rc; 8275 8276 if (!(fp->daccess & FILE_WRITE_DATA_LE)) 8277 return -EACCES; 8278 8279 newsize = le64_to_cpu(file_eof_info->EndOfFile); 8280 inode = file_inode(fp->filp); 8281 8282 /* 8283 * If FILE_END_OF_FILE_INFORMATION of set_info_file is called 8284 * on FAT32 shared device, truncate execution time is too long 8285 * and network error could cause from windows client. because 8286 * truncate of some filesystem like FAT32 fill zero data in 8287 * truncated range. 8288 */ 8289 if (inode->i_sb->s_magic != MSDOS_SUPER_MAGIC && 8290 ksmbd_stream_fd(fp) == false) { 8291 ksmbd_debug(SMB, "truncated to newsize %lld\n", newsize); 8292 rc = ksmbd_vfs_truncate(work, fp, newsize); 8293 if (rc) { 8294 ksmbd_debug(SMB, "truncate failed!, err %d\n", rc); 8295 if (rc != -EAGAIN) 8296 rc = -EBADF; 8297 return rc; 8298 } 8299 } 8300 return 0; 8301 } 8302 8303 static int set_rename_info(struct ksmbd_work *work, struct ksmbd_file *fp, 8304 struct smb2_file_rename_info *rename_info, 8305 unsigned int buf_len) 8306 { 8307 if (!(fp->daccess & FILE_DELETE_LE)) { 8308 pr_err("no right to delete : 0x%x\n", fp->daccess); 8309 return -EACCES; 8310 } 8311 8312 if (buf_len < (u64)sizeof(struct smb2_file_rename_info) + 8313 le32_to_cpu(rename_info->FileNameLength)) 8314 return -EINVAL; 8315 8316 if (!le32_to_cpu(rename_info->FileNameLength)) 8317 return -EINVAL; 8318 8319 return smb2_rename(work, fp, rename_info, work->conn->local_nls); 8320 } 8321 8322 static int set_file_disposition_info(struct ksmbd_work *work, 8323 struct ksmbd_file *fp, 8324 struct smb2_file_disposition_info *file_info) 8325 { 8326 struct inode *inode; 8327 8328 if (!(fp->daccess & FILE_DELETE_LE)) { 8329 pr_err("no right to delete : 0x%x\n", fp->daccess); 8330 return -EACCES; 8331 } 8332 8333 if (fp->f_ci->m_fattr & FILE_ATTRIBUTE_READONLY_LE) 8334 return -EACCES; 8335 8336 inode = file_inode(fp->filp); 8337 if (file_info->DeletePending) { 8338 if (ksmbd_has_stream_without_delete_share(fp)) 8339 return -ESHARE; 8340 8341 if (S_ISDIR(inode->i_mode) && !ksmbd_stream_fd(fp) && 8342 ksmbd_vfs_empty_dir(fp) == -ENOTEMPTY) 8343 return -EBUSY; 8344 smb_break_all_levII_oplock_for_delete(work, fp); 8345 ksmbd_fd_set_delete_pending(fp); 8346 } else { 8347 ksmbd_fd_clear_delete_pending(fp); 8348 } 8349 return 0; 8350 } 8351 8352 static int set_file_position_info(struct ksmbd_file *fp, 8353 struct smb2_file_pos_info *file_info) 8354 { 8355 loff_t current_byte_offset; 8356 unsigned long sector_size; 8357 struct inode *inode; 8358 8359 inode = file_inode(fp->filp); 8360 current_byte_offset = le64_to_cpu(file_info->CurrentByteOffset); 8361 sector_size = inode->i_sb->s_blocksize; 8362 8363 if (current_byte_offset < 0 || 8364 (fp->coption & FILE_NO_INTERMEDIATE_BUFFERING_LE && 8365 current_byte_offset & (sector_size - 1))) { 8366 pr_err("CurrentByteOffset is not valid : %llu\n", 8367 current_byte_offset); 8368 return -EINVAL; 8369 } 8370 8371 if (ksmbd_stream_fd(fp) == false) 8372 fp->filp->f_pos = current_byte_offset; 8373 else { 8374 if (current_byte_offset > XATTR_SIZE_MAX) 8375 current_byte_offset = XATTR_SIZE_MAX; 8376 fp->stream.pos = current_byte_offset; 8377 } 8378 return 0; 8379 } 8380 8381 static int set_file_mode_info(struct ksmbd_file *fp, 8382 struct smb2_file_mode_info *file_info) 8383 { 8384 __le32 mode; 8385 8386 mode = file_info->Mode; 8387 8388 if ((mode & ~FILE_MODE_INFO_MASK)) { 8389 pr_err("Mode is not valid : 0x%x\n", le32_to_cpu(mode)); 8390 return -EINVAL; 8391 } 8392 8393 /* 8394 * TODO : need to implement consideration for 8395 * FILE_SYNCHRONOUS_IO_ALERT and FILE_SYNCHRONOUS_IO_NONALERT 8396 */ 8397 ksmbd_vfs_set_fadvise(fp->filp, mode); 8398 fp->coption = mode; 8399 return 0; 8400 } 8401 8402 /** 8403 * smb2_set_info_file() - handler for smb2 set info command 8404 * @work: smb work containing set info command buffer 8405 * @fp: ksmbd_file pointer 8406 * @req: request buffer pointer 8407 * @share: ksmbd_share_config pointer 8408 * 8409 * Return: 0 on success, otherwise error 8410 */ 8411 static int smb2_set_info_file(struct ksmbd_work *work, struct ksmbd_file *fp, 8412 struct smb2_set_info_req *req, 8413 struct ksmbd_share_config *share) 8414 { 8415 unsigned int buf_len = le32_to_cpu(req->BufferLength); 8416 char *buffer = (char *)req + le16_to_cpu(req->BufferOffset); 8417 8418 switch (req->FileInfoClass) { 8419 case FILE_BASIC_INFORMATION: 8420 { 8421 if (buf_len < sizeof(struct file_basic_info)) 8422 return -EMSGSIZE; 8423 8424 return set_file_basic_info(fp, (struct file_basic_info *)buffer, share); 8425 } 8426 case FILE_ALLOCATION_INFORMATION: 8427 { 8428 if (buf_len < sizeof(struct smb2_file_alloc_info)) 8429 return -EMSGSIZE; 8430 8431 return set_file_allocation_info(work, fp, 8432 (struct smb2_file_alloc_info *)buffer); 8433 } 8434 case FILE_END_OF_FILE_INFORMATION: 8435 { 8436 if (buf_len < sizeof(struct smb2_file_eof_info)) 8437 return -EMSGSIZE; 8438 8439 return set_end_of_file_info(work, fp, 8440 (struct smb2_file_eof_info *)buffer); 8441 } 8442 case FILE_RENAME_INFORMATION: 8443 { 8444 if (buf_len < sizeof(struct smb2_file_rename_info)) 8445 return -EMSGSIZE; 8446 8447 return set_rename_info(work, fp, 8448 (struct smb2_file_rename_info *)buffer, 8449 buf_len); 8450 } 8451 case FILE_LINK_INFORMATION: 8452 { 8453 struct smb2_file_link_info *file_info; 8454 8455 if (buf_len < sizeof(struct smb2_file_link_info)) 8456 return -EMSGSIZE; 8457 8458 file_info = (struct smb2_file_link_info *)buffer; 8459 if (file_info->ReplaceIfExists && !(fp->daccess & FILE_DELETE_LE)) { 8460 pr_err("no right to delete : 0x%x\n", fp->daccess); 8461 return -EACCES; 8462 } 8463 8464 return smb2_create_link(work, work->tcon->share_conf, file_info, 8465 buf_len, fp->filp, 8466 work->conn->local_nls); 8467 } 8468 case FILE_DISPOSITION_INFORMATION: 8469 { 8470 if (buf_len < sizeof(struct smb2_file_disposition_info)) 8471 return -EMSGSIZE; 8472 8473 return set_file_disposition_info(work, fp, 8474 (struct smb2_file_disposition_info *)buffer); 8475 } 8476 case FILE_FULL_EA_INFORMATION: 8477 { 8478 if (!(fp->daccess & FILE_WRITE_EA_LE)) { 8479 pr_err("Not permitted to write ext attr: 0x%x\n", 8480 fp->daccess); 8481 return -EACCES; 8482 } 8483 8484 if (buf_len < sizeof(struct smb2_ea_info)) 8485 return -EMSGSIZE; 8486 8487 return smb2_set_ea((struct smb2_ea_info *)buffer, 8488 buf_len, &fp->filp->f_path, true); 8489 } 8490 case FILE_POSITION_INFORMATION: 8491 { 8492 if (buf_len < sizeof(struct smb2_file_pos_info)) 8493 return -EMSGSIZE; 8494 8495 return set_file_position_info(fp, (struct smb2_file_pos_info *)buffer); 8496 } 8497 case FILE_MODE_INFORMATION: 8498 { 8499 if (buf_len < sizeof(struct smb2_file_mode_info)) 8500 return -EMSGSIZE; 8501 8502 return set_file_mode_info(fp, (struct smb2_file_mode_info *)buffer); 8503 } 8504 } 8505 8506 pr_err("Unimplemented Fileinfoclass :%d\n", req->FileInfoClass); 8507 return -EOPNOTSUPP; 8508 } 8509 8510 static int smb2_set_info_sec(struct ksmbd_file *fp, int addition_info, 8511 char *buffer, int buf_len) 8512 { 8513 struct smb_ntsd *pntsd = (struct smb_ntsd *)buffer; 8514 8515 fp->saccess |= FILE_SHARE_DELETE_LE; 8516 8517 if (!(fp->daccess & (FILE_WRITE_DAC_LE | FILE_WRITE_OWNER_LE))) 8518 return -EACCES; 8519 8520 return set_info_sec(fp->conn, fp->tcon, &fp->filp->f_path, pntsd, 8521 buf_len, false, true); 8522 } 8523 8524 /** 8525 * smb2_set_info() - handler for smb2 set info command handler 8526 * @work: smb work containing set info request buffer 8527 * 8528 * Return: 0 on success, otherwise error 8529 */ 8530 int smb2_set_info(struct ksmbd_work *work) 8531 { 8532 const struct cred *saved_cred; 8533 struct smb2_set_info_req *req; 8534 struct smb2_set_info_rsp *rsp; 8535 struct ksmbd_file *fp = NULL; 8536 int rc = 0; 8537 bool chseq_err = false; 8538 unsigned int id = KSMBD_NO_FID, pid = KSMBD_NO_FID; 8539 8540 ksmbd_debug(SMB, "Received smb2 set info request\n"); 8541 8542 if (work->next_smb2_rcv_hdr_off) { 8543 req = ksmbd_req_buf_next(work); 8544 rsp = ksmbd_resp_buf_next(work); 8545 if (smb2_compound_has_failed(work, &rsp->hdr)) 8546 return -EACCES; 8547 if (!has_file_id(req->VolatileFileId)) { 8548 ksmbd_debug(SMB, "Compound request set FID = %llu\n", 8549 work->compound_fid); 8550 id = work->compound_fid; 8551 pid = work->compound_pfid; 8552 } 8553 } else { 8554 req = smb_get_msg(work->request_buf); 8555 rsp = smb_get_msg(work->response_buf); 8556 } 8557 8558 if (!test_tree_conn_flag(work->tcon, KSMBD_TREE_CONN_FLAG_WRITABLE)) { 8559 ksmbd_debug(SMB, "User does not have write permission\n"); 8560 pr_err("User does not have write permission\n"); 8561 rc = -EACCES; 8562 goto err_out; 8563 } 8564 8565 if (!has_file_id(id)) { 8566 id = req->VolatileFileId; 8567 pid = req->PersistentFileId; 8568 } 8569 8570 fp = ksmbd_lookup_fd_slow(work, id, pid); 8571 if (!fp) { 8572 ksmbd_debug(SMB, "Invalid id for close: %u\n", id); 8573 rc = -ENOENT; 8574 goto err_out; 8575 } 8576 8577 rc = smb2_set_request_open(work, fp, &req->hdr, true, false); 8578 if (rc) { 8579 rsp->hdr.Status = STATUS_FILE_NOT_AVAILABLE; 8580 chseq_err = true; 8581 goto err_out; 8582 } 8583 8584 saved_cred = override_creds(fp->filp->f_cred); 8585 switch (req->InfoType) { 8586 case SMB2_O_INFO_FILE: 8587 ksmbd_debug(SMB, "GOT SMB2_O_INFO_FILE\n"); 8588 rc = smb2_set_info_file(work, fp, req, work->tcon->share_conf); 8589 break; 8590 case SMB2_O_INFO_SECURITY: 8591 ksmbd_debug(SMB, "GOT SMB2_O_INFO_SECURITY\n"); 8592 rc = smb2_set_info_sec(fp, 8593 le32_to_cpu(req->AdditionalInformation), 8594 (char *)req + le16_to_cpu(req->BufferOffset), 8595 le32_to_cpu(req->BufferLength)); 8596 break; 8597 default: 8598 rc = -EOPNOTSUPP; 8599 } 8600 revert_creds(saved_cred); 8601 8602 if (rc < 0) 8603 goto err_out; 8604 8605 rsp->StructureSize = cpu_to_le16(2); 8606 rc = ksmbd_iov_pin_rsp(work, (void *)rsp, 8607 sizeof(struct smb2_set_info_rsp)); 8608 if (rc) 8609 goto err_out; 8610 ksmbd_fd_put(work, fp); 8611 return 0; 8612 8613 err_out: 8614 if (rc == -EACCES || rc == -EPERM || rc == -EXDEV) { 8615 if (fp && req->InfoType == SMB2_O_INFO_FILE && 8616 req->FileInfoClass == FILE_DISPOSITION_INFORMATION && 8617 fp->f_ci->m_fattr & FILE_ATTRIBUTE_READONLY_LE) 8618 rsp->hdr.Status = STATUS_CANNOT_DELETE; 8619 else 8620 rsp->hdr.Status = STATUS_ACCESS_DENIED; 8621 } 8622 else if (rc == -EINVAL) 8623 rsp->hdr.Status = STATUS_INVALID_PARAMETER; 8624 else if (rc == -EMSGSIZE) 8625 rsp->hdr.Status = STATUS_INFO_LENGTH_MISMATCH; 8626 else if (rc == -ENOSPC || rc == -EFBIG) 8627 rsp->hdr.Status = STATUS_DISK_FULL; 8628 else if (rc == -ESHARE) 8629 rsp->hdr.Status = STATUS_SHARING_VIOLATION; 8630 else if (rc == -ENOENT) 8631 rsp->hdr.Status = STATUS_OBJECT_NAME_INVALID; 8632 else if (rc == -EBUSY || rc == -ENOTEMPTY) 8633 rsp->hdr.Status = STATUS_DIRECTORY_NOT_EMPTY; 8634 else if (rc == -EAGAIN && !chseq_err) 8635 rsp->hdr.Status = STATUS_FILE_LOCK_CONFLICT; 8636 else if (rc == -EBADF || rc == -ESTALE) 8637 rsp->hdr.Status = STATUS_INVALID_HANDLE; 8638 else if (rc == -EEXIST) 8639 rsp->hdr.Status = STATUS_OBJECT_NAME_COLLISION; 8640 else if (rsp->hdr.Status == 0 || rc == -EOPNOTSUPP) 8641 rsp->hdr.Status = STATUS_INVALID_INFO_CLASS; 8642 smb2_set_err_rsp(work); 8643 ksmbd_fd_put(work, fp); 8644 ksmbd_debug(SMB, "error while processing smb2 query rc = %d\n", rc); 8645 return rc; 8646 } 8647 8648 /** 8649 * smb2_read_pipe() - handler for smb2 read from IPC pipe 8650 * @work: smb work containing read IPC pipe command buffer 8651 * 8652 * Return: 0 on success, otherwise error 8653 */ 8654 static noinline int smb2_read_pipe(struct ksmbd_work *work) 8655 { 8656 int nbytes = 0, err; 8657 u64 id; 8658 struct ksmbd_rpc_command *rpc_resp; 8659 struct smb2_read_req *req; 8660 struct smb2_read_rsp *rsp; 8661 8662 WORK_BUFFERS(work, req, rsp); 8663 8664 id = req->VolatileFileId; 8665 8666 rpc_resp = ksmbd_rpc_read(work->sess, id); 8667 if (rpc_resp) { 8668 void *aux_payload_buf; 8669 8670 if (rpc_resp->flags != KSMBD_RPC_OK) { 8671 err = -EINVAL; 8672 goto out; 8673 } 8674 8675 aux_payload_buf = 8676 kvmalloc(ALIGN(rpc_resp->payload_sz, 8), 8677 KSMBD_DEFAULT_GFP); 8678 if (!aux_payload_buf) { 8679 err = -ENOMEM; 8680 goto out; 8681 } 8682 8683 memcpy(aux_payload_buf, rpc_resp->payload, rpc_resp->payload_sz); 8684 if (rpc_resp->payload_sz & 7) 8685 memset(aux_payload_buf + rpc_resp->payload_sz, 0, 8686 ALIGN(rpc_resp->payload_sz, 8) - 8687 rpc_resp->payload_sz); 8688 8689 nbytes = rpc_resp->payload_sz; 8690 err = ksmbd_iov_pin_rsp_read(work, (void *)rsp, 8691 offsetof(struct smb2_read_rsp, Buffer), 8692 aux_payload_buf, nbytes); 8693 if (err) { 8694 kvfree(aux_payload_buf); 8695 goto out; 8696 } 8697 kvfree(rpc_resp); 8698 } else { 8699 err = ksmbd_iov_pin_rsp(work, (void *)rsp, 8700 offsetof(struct smb2_read_rsp, Buffer)); 8701 if (err) 8702 goto out; 8703 } 8704 8705 rsp->StructureSize = cpu_to_le16(17); 8706 rsp->DataOffset = 80; 8707 rsp->Reserved = 0; 8708 rsp->DataLength = cpu_to_le32(nbytes); 8709 rsp->DataRemaining = 0; 8710 rsp->Flags = 0; 8711 return 0; 8712 8713 out: 8714 rsp->hdr.Status = STATUS_UNEXPECTED_IO_ERROR; 8715 smb2_set_err_rsp(work); 8716 kvfree(rpc_resp); 8717 return err; 8718 } 8719 8720 /** 8721 * smb2_set_rdma_key() - validate descriptors and save invalidation state 8722 * @work: request work item 8723 * @desc: first RDMA buffer descriptor 8724 * @Channel: nested RDMA channel type 8725 * @channel_info_len: descriptor array length 8726 * 8727 * Return: 0 on success, otherwise -EINVAL 8728 */ 8729 static int smb2_set_rdma_key(struct ksmbd_work *work, 8730 struct smbdirect_buffer_descriptor_v1 *desc, 8731 __le32 Channel, __le16 channel_info_len) 8732 { 8733 unsigned int i, ch_count; 8734 8735 if (Channel != SMB2_CHANNEL_RDMA_V1 && 8736 Channel != SMB2_CHANNEL_RDMA_V1_INVALIDATE) 8737 return -EINVAL; 8738 if (work->conn->dialect == SMB30_PROT_ID && 8739 Channel != SMB2_CHANNEL_RDMA_V1) 8740 return -EINVAL; 8741 if (le16_to_cpu(channel_info_len) % sizeof(*desc)) 8742 return -EINVAL; 8743 8744 ch_count = le16_to_cpu(channel_info_len) / sizeof(*desc); 8745 if (ksmbd_debug_types & KSMBD_DEBUG_RDMA) { 8746 for (i = 0; i < ch_count; i++) { 8747 pr_info("RDMA r/w request %#x: token %#x, length %#x\n", 8748 i, 8749 le32_to_cpu(desc[i].token), 8750 le32_to_cpu(desc[i].length)); 8751 } 8752 } 8753 if (!ch_count) 8754 return -EINVAL; 8755 8756 work->need_invalidate_rkey = 8757 (Channel == SMB2_CHANNEL_RDMA_V1_INVALIDATE); 8758 if (Channel == SMB2_CHANNEL_RDMA_V1_INVALIDATE) 8759 work->remote_key = le32_to_cpu(desc->token); 8760 return 0; 8761 } 8762 8763 /** 8764 * smb2_prep_rdma_read() - transform an RDMA READ payload 8765 * @work: request work item 8766 * @req: READ request controlling encryption or signing 8767 * @rsp: READ response receiving transform metadata 8768 * @data: data that will be transferred through RDMA 8769 * @datalen: data length 8770 * 8771 * Encrypt the payload in place and encode the detached crypto metadata in 8772 * the response buffer. 8773 * 8774 * Return: metadata length, zero when no transform applies, or negative errno 8775 */ 8776 static int smb2_prep_rdma_read(struct ksmbd_work *work, 8777 struct smb2_read_req *req, 8778 struct smb2_read_rsp *rsp, 8779 void *data, unsigned int datalen) 8780 { 8781 struct ksmbd_conn *conn = work->conn; 8782 struct smb2_rdma_transform *transform; 8783 struct smb2_rdma_crypto_transform *crypto; 8784 u8 *nonce; 8785 unsigned int nonce_len = 0, transform_len; 8786 u16 transform_type; 8787 int err; 8788 8789 if (!work->encrypted || 8790 !(conn->rdma_transform_ids & BIT(SMB2_RDMA_TRANSFORM_ENCRYPTION))) 8791 return 0; 8792 8793 transform_type = SMB2_RDMA_TRANSFORM_TYPE_ENCRYPTION; 8794 nonce_len = (conn->cipher_type == SMB2_ENCRYPTION_AES128_GCM || 8795 conn->cipher_type == SMB2_ENCRYPTION_AES256_GCM) ? 8796 SMB3_AES_GCM_NONCE : SMB3_AES_CCM_NONCE; 8797 8798 transform = (struct smb2_rdma_transform *)rsp->Buffer; 8799 crypto = (struct smb2_rdma_crypto_transform *)(transform + 1); 8800 memset(transform, 0, sizeof(*transform) + sizeof(*crypto) + 8801 SMB2_SIGNATURE_SIZE + nonce_len); 8802 transform->Channel = SMB2_CHANNEL_NONE; 8803 transform->TransformCount = cpu_to_le16(1); 8804 8805 crypto->TransformType = cpu_to_le16(transform_type); 8806 crypto->SignatureLength = cpu_to_le16(SMB2_SIGNATURE_SIZE); 8807 crypto->NonceLength = cpu_to_le16(nonce_len); 8808 nonce = crypto->Signature + SMB2_SIGNATURE_SIZE; 8809 8810 get_random_bytes(nonce, nonce_len); 8811 err = ksmbd_crypt_rdma(conn, 8812 work->sess->smb3encryptionkey, 8813 data, datalen, nonce, nonce_len, 8814 crypto->Signature, 8815 SMB2_SIGNATURE_SIZE, true); 8816 if (err) { 8817 pr_err("RDMA READ encryption failed: session=%llu payload=%u rc=%d\n", 8818 work->sess->id, datalen, err); 8819 return err; 8820 } 8821 8822 transform_len = sizeof(*transform) + sizeof(*crypto) + 8823 SMB2_SIGNATURE_SIZE + nonce_len; 8824 rsp->Flags = SMB2_READFLAG_RESPONSE_RDMA_TRANSFORM; 8825 rsp->DataLength = cpu_to_le32(transform_len); 8826 ksmbd_debug(RDMA, 8827 "RDMA READ encryption prepared: session=%llu cipher=0x%04x payload=%u transform=%u nonce=%u tag=%u\n", 8828 work->sess->id, le16_to_cpu(conn->cipher_type), datalen, 8829 transform_len, nonce_len, SMB2_SIGNATURE_SIZE); 8830 return transform_len; 8831 } 8832 8833 struct smb2_rdma_write_transform { 8834 struct smbdirect_buffer_descriptor_v1 *desc; 8835 struct smb2_rdma_crypto_transform *crypto; 8836 u8 *nonce; 8837 unsigned int desc_len; 8838 unsigned int nonce_len; 8839 unsigned int signature_len; 8840 u16 type; 8841 __le32 channel; 8842 }; 8843 8844 /** 8845 * smb2_current_req_len() - return the current compound request element size 8846 * @work: request work item 8847 * @hdr: current SMB2 header 8848 * 8849 * Return: current request element length measured from the SMB2 header 8850 */ 8851 static unsigned int smb2_current_req_len(struct ksmbd_work *work, 8852 struct smb2_hdr *hdr) 8853 { 8854 if (hdr->NextCommand) 8855 return le32_to_cpu(hdr->NextCommand); 8856 return get_rfc1002_len(work->request_buf) - 8857 work->next_smb2_rcv_hdr_off; 8858 } 8859 8860 /** 8861 * check_rdma_desc() - validate an RDMA descriptor array 8862 * @desc: descriptor array 8863 * @desc_len: descriptor array length 8864 * @required_len: minimum aggregate buffer length 8865 * 8866 * Return: 0 when the descriptors cover the transfer, otherwise -EINVAL 8867 */ 8868 static int check_rdma_desc(struct smbdirect_buffer_descriptor_v1 *desc, 8869 unsigned int desc_len, 8870 unsigned int required_len) 8871 { 8872 unsigned int i, count; 8873 u64 described_len = 0; 8874 8875 if (!desc_len || desc_len % sizeof(*desc)) 8876 return -EINVAL; 8877 count = desc_len / sizeof(*desc); 8878 if (!le32_to_cpu(desc[0].length)) 8879 return -EINVAL; 8880 for (i = 0; i < count; i++) 8881 described_len += le32_to_cpu(desc[i].length); 8882 return described_len < required_len ? -EINVAL : 0; 8883 } 8884 8885 /** 8886 * smb2_parse_rdma_write_transform() - validate RDMA WRITE transform metadata 8887 * @work: request work item 8888 * @req: WRITE request containing the transform 8889 * @info: parsed transform information 8890 * 8891 * Validate transform counts, crypto fields, descriptor alignment and bounds, 8892 * negotiated algorithms, and the nested RDMA channel. 8893 * 8894 * Return: 0 on success, otherwise a negative errno 8895 */ 8896 static int smb2_parse_rdma_write_transform(struct ksmbd_work *work, 8897 struct smb2_write_req *req, 8898 struct smb2_rdma_write_transform *info) 8899 { 8900 struct smb2_rdma_transform *transform; 8901 struct smb2_rdma_crypto_transform *crypto; 8902 unsigned int req_len = smb2_current_req_len(work, &req->hdr); 8903 unsigned int offset = le16_to_cpu(req->WriteChannelInfoOffset); 8904 unsigned int length = le16_to_cpu(req->WriteChannelInfoLength); 8905 unsigned int desc_offset, desc_len, crypto_len, expected_desc_offset; 8906 int err; 8907 8908 if (!work->conn->rdma_transform_ids || 8909 offset < offsetof(struct smb2_write_req, Buffer) || 8910 length < sizeof(*transform) || offset > req_len || 8911 length > req_len - offset) 8912 return -EINVAL; 8913 8914 transform = (struct smb2_rdma_transform *)((char *)req + offset); 8915 if (le16_to_cpu(transform->TransformCount) != 1 || 8916 (transform->Channel != SMB2_CHANNEL_RDMA_V1 && 8917 transform->Channel != SMB2_CHANNEL_RDMA_V1_INVALIDATE)) 8918 return -EINVAL; 8919 8920 desc_offset = le16_to_cpu(transform->RdmaDescriptorOffset); 8921 desc_len = le16_to_cpu(transform->RdmaDescriptorLength); 8922 if (!desc_len || desc_len % sizeof(*info->desc) || 8923 desc_offset < sizeof(*transform) || desc_offset > length || 8924 desc_len > length - desc_offset) 8925 return -EINVAL; 8926 8927 crypto = (struct smb2_rdma_crypto_transform *)(transform + 1); 8928 if (length - sizeof(*transform) < sizeof(*crypto)) 8929 return -EINVAL; 8930 info->type = le16_to_cpu(crypto->TransformType); 8931 info->signature_len = le16_to_cpu(crypto->SignatureLength); 8932 info->nonce_len = le16_to_cpu(crypto->NonceLength); 8933 if (!info->signature_len) 8934 return info->type == SMB2_RDMA_TRANSFORM_TYPE_ENCRYPTION ? 8935 -EBADMSG : -EINVAL; 8936 if (info->signature_len > SMB2_SIGNATURE_SIZE) 8937 return info->type == SMB2_RDMA_TRANSFORM_TYPE_ENCRYPTION ? 8938 -EBADMSG : -EINVAL; 8939 if (info->signature_len > length - sizeof(*transform) - sizeof(*crypto) || 8940 info->nonce_len > length - sizeof(*transform) - sizeof(*crypto) - 8941 info->signature_len) 8942 return -EINVAL; 8943 8944 crypto_len = sizeof(*crypto) + info->signature_len + info->nonce_len; 8945 expected_desc_offset = ALIGN(sizeof(*transform) + crypto_len, 8); 8946 if (desc_offset != expected_desc_offset) 8947 return -EINVAL; 8948 8949 if (info->type == SMB2_RDMA_TRANSFORM_TYPE_ENCRYPTION) { 8950 unsigned int expected_nonce_len; 8951 8952 if (!(work->conn->rdma_transform_ids & 8953 BIT(SMB2_RDMA_TRANSFORM_ENCRYPTION)) || !work->encrypted) 8954 return -EINVAL; 8955 expected_nonce_len = 8956 (work->conn->cipher_type == SMB2_ENCRYPTION_AES128_GCM || 8957 work->conn->cipher_type == SMB2_ENCRYPTION_AES256_GCM) ? 8958 SMB3_AES_GCM_NONCE : SMB3_AES_CCM_NONCE; 8959 if (info->nonce_len != expected_nonce_len) 8960 return -EBADMSG; 8961 } else { 8962 return -EINVAL; 8963 } 8964 8965 info->desc = (struct smbdirect_buffer_descriptor_v1 *) 8966 ((char *)transform + desc_offset); 8967 info->desc_len = desc_len; 8968 info->crypto = crypto; 8969 info->nonce = crypto->Signature + info->signature_len; 8970 info->channel = transform->Channel; 8971 err = check_rdma_desc(info->desc, info->desc_len, 8972 le32_to_cpu(req->RemainingBytes)); 8973 if (err) 8974 return err; 8975 8976 ksmbd_debug(RDMA, 8977 "RDMA WRITE encryption metadata: session=%llu cipher=0x%04x payload=%u channel=0x%x descriptors=%zu nonce=%u tag=%u\n", 8978 work->sess->id, le16_to_cpu(work->conn->cipher_type), 8979 le32_to_cpu(req->RemainingBytes), le32_to_cpu(info->channel), 8980 info->desc_len / sizeof(*info->desc), info->nonce_len, 8981 info->signature_len); 8982 return 0; 8983 } 8984 8985 /** 8986 * smb2_read_rdma() - transfer READ data to client RDMA buffers 8987 * @work: request work item 8988 * @req: READ request containing client descriptors 8989 * @data_buf: data to transfer 8990 * @length: data length 8991 * 8992 * Return: transferred length on success, otherwise a negative errno 8993 */ 8994 static ssize_t smb2_read_rdma(struct ksmbd_work *work, 8995 struct smb2_read_req *req, void *data_buf, 8996 size_t length) 8997 { 8998 int err; 8999 9000 err = ksmbd_conn_rdma_write(work->conn, data_buf, length, 9001 (struct smbdirect_buffer_descriptor_v1 *) 9002 ((char *)req + le16_to_cpu(req->ReadChannelInfoOffset)), 9003 le16_to_cpu(req->ReadChannelInfoLength)); 9004 if (err) 9005 return err; 9006 9007 return length; 9008 } 9009 9010 /** 9011 * smb2_read() - handler for smb2 read from file 9012 * @work: smb work containing read command buffer 9013 * 9014 * Return: 0 on success, otherwise error 9015 */ 9016 int smb2_read(struct ksmbd_work *work) 9017 { 9018 struct ksmbd_conn *conn = work->conn; 9019 struct smb2_read_req *req; 9020 struct smb2_read_rsp *rsp; 9021 struct ksmbd_file *fp = NULL; 9022 loff_t offset; 9023 size_t length, mincount; 9024 ssize_t nbytes = 0, remain_bytes = 0; 9025 int err = 0; 9026 int rdma_transform_len = 0; 9027 bool is_rdma_channel = false, async_interim = false; 9028 unsigned int max_read_size = conn->vals->max_read_size; 9029 unsigned int id = KSMBD_NO_FID, pid = KSMBD_NO_FID; 9030 void *aux_payload_buf; 9031 9032 ksmbd_debug(SMB, "Received smb2 read request\n"); 9033 9034 if (test_share_config_flag(work->tcon->share_conf, 9035 KSMBD_SHARE_FLAG_PIPE)) { 9036 ksmbd_debug(SMB, "IPC pipe read request\n"); 9037 return smb2_read_pipe(work); 9038 } 9039 9040 if (work->next_smb2_rcv_hdr_off) { 9041 req = ksmbd_req_buf_next(work); 9042 rsp = ksmbd_resp_buf_next(work); 9043 if (smb2_compound_has_failed(work, &rsp->hdr)) 9044 return -EACCES; 9045 if (!has_file_id(req->VolatileFileId)) { 9046 ksmbd_debug(SMB, "Compound request set FID = %llu\n", 9047 work->compound_fid); 9048 id = work->compound_fid; 9049 pid = work->compound_pfid; 9050 } 9051 } else { 9052 req = smb_get_msg(work->request_buf); 9053 rsp = smb_get_msg(work->response_buf); 9054 } 9055 9056 if (!has_file_id(id)) { 9057 id = req->VolatileFileId; 9058 pid = req->PersistentFileId; 9059 } 9060 9061 if (req->Channel != SMB2_CHANNEL_NONE && 9062 req->Channel != SMB2_CHANNEL_RDMA_V1 && 9063 req->Channel != SMB2_CHANNEL_RDMA_V1_INVALIDATE) { 9064 err = -EINVAL; 9065 goto out; 9066 } 9067 if (req->Channel == SMB2_CHANNEL_RDMA_V1_INVALIDATE || 9068 req->Channel == SMB2_CHANNEL_RDMA_V1) { 9069 is_rdma_channel = true; 9070 max_read_size = get_smbd_max_read_write_size(work->conn->transport); 9071 if (max_read_size == 0) { 9072 err = -EINVAL; 9073 goto out; 9074 } 9075 } 9076 9077 if (is_rdma_channel == true) { 9078 unsigned int ch_offset = le16_to_cpu(req->ReadChannelInfoOffset); 9079 unsigned int ch_len = le16_to_cpu(req->ReadChannelInfoLength); 9080 unsigned int req_len = smb2_current_req_len(work, &req->hdr); 9081 struct smbdirect_buffer_descriptor_v1 *desc; 9082 9083 if (!le32_to_cpu(req->Length) || 9084 ch_offset < offsetof(struct smb2_read_req, Buffer) || 9085 ch_offset > req_len || ch_len > req_len - ch_offset) { 9086 err = -EINVAL; 9087 goto out; 9088 } 9089 desc = (struct smbdirect_buffer_descriptor_v1 *) 9090 ((char *)req + ch_offset); 9091 err = check_rdma_desc(desc, ch_len, le32_to_cpu(req->Length)); 9092 if (err) 9093 goto out; 9094 err = smb2_set_rdma_key(work, desc, 9095 req->Channel, 9096 req->ReadChannelInfoLength); 9097 if (err) 9098 goto out; 9099 } 9100 9101 fp = ksmbd_lookup_fd_slow(work, id, pid); 9102 if (!fp) { 9103 err = -ENOENT; 9104 goto out; 9105 } 9106 9107 err = smb2_set_request_open(work, fp, &req->hdr, true, true); 9108 if (err) 9109 goto out; 9110 9111 if (!(fp->daccess & (FILE_READ_DATA_LE | FILE_READ_ATTRIBUTES_LE))) { 9112 pr_err("Not permitted to read : 0x%x\n", fp->daccess); 9113 err = -EACCES; 9114 goto out; 9115 } 9116 9117 if (work->next_smb2_rcv_hdr_off && !req->hdr.NextCommand) { 9118 err = setup_async_work(work, NULL, NULL); 9119 if (err) 9120 goto out; 9121 smb2_send_interim_resp(work, STATUS_PENDING); 9122 async_interim = true; 9123 } 9124 9125 offset = le64_to_cpu(req->Offset); 9126 if (offset < 0) { 9127 err = -EINVAL; 9128 goto out; 9129 } 9130 length = le32_to_cpu(req->Length); 9131 mincount = le32_to_cpu(req->MinimumCount); 9132 9133 if (length > max_read_size) { 9134 ksmbd_debug(SMB, "limiting read size to max size(%u)\n", 9135 max_read_size); 9136 err = -EINVAL; 9137 goto out; 9138 } 9139 9140 ksmbd_debug(SMB, "filename %pD, offset %lld, len %zu\n", 9141 fp->filp, offset, length); 9142 9143 aux_payload_buf = kvmalloc(ALIGN(length, 8), KSMBD_DEFAULT_GFP); 9144 if (!aux_payload_buf) { 9145 err = -ENOMEM; 9146 goto out; 9147 } 9148 9149 nbytes = ksmbd_vfs_read(work, fp, length, &offset, aux_payload_buf); 9150 if (nbytes < 0) { 9151 kvfree(aux_payload_buf); 9152 err = nbytes; 9153 goto out; 9154 } 9155 9156 /* 9157 * ksmbd_vfs_read() fills only nbytes; the [nbytes, ALIGN(nbytes, 8)) 9158 * tail of the un-zeroed buffer is transmitted as compound-response 9159 * alignment padding, leaking uninitialized kernel memory to the 9160 * client. Zero just that tail. 9161 */ 9162 if (nbytes & 7) 9163 memset(aux_payload_buf + nbytes, 0, ALIGN(nbytes, 8) - nbytes); 9164 9165 if ((nbytes == 0 && length != 0) || nbytes < mincount) { 9166 kvfree(aux_payload_buf); 9167 rsp->hdr.Status = STATUS_END_OF_FILE; 9168 smb2_set_err_rsp(work); 9169 if (async_interim) 9170 release_async_work(work); 9171 ksmbd_fd_put(work, fp); 9172 return -ENODATA; 9173 } 9174 9175 ksmbd_debug(SMB, "nbytes %zu, offset %lld mincount %zu\n", 9176 nbytes, offset, mincount); 9177 9178 if (is_rdma_channel == true) { 9179 rdma_transform_len = smb2_prep_rdma_read(work, req, 9180 rsp, 9181 aux_payload_buf, 9182 nbytes); 9183 if (rdma_transform_len < 0) { 9184 kvfree(aux_payload_buf); 9185 err = rdma_transform_len; 9186 goto out; 9187 } 9188 /* write data to the client using rdma channel */ 9189 remain_bytes = smb2_read_rdma(work, req, 9190 aux_payload_buf, 9191 nbytes); 9192 if (remain_bytes < 0) 9193 pr_err("RDMA READ transfer failed: session=%llu payload=%zu transform=%d rc=%zd\n", 9194 work->sess ? work->sess->id : 0, nbytes, 9195 rdma_transform_len, remain_bytes); 9196 else 9197 ksmbd_debug(RDMA, 9198 "RDMA READ transfer completed: session=%llu payload=%zu transform=%d\n", 9199 work->sess ? work->sess->id : 0, nbytes, 9200 rdma_transform_len); 9201 kvfree(aux_payload_buf); 9202 aux_payload_buf = NULL; 9203 nbytes = 0; 9204 if (remain_bytes < 0) { 9205 err = (int)remain_bytes; 9206 goto out; 9207 } 9208 } 9209 9210 rsp->StructureSize = cpu_to_le16(17); 9211 rsp->DataOffset = 80; 9212 rsp->Reserved = 0; 9213 rsp->DataLength = cpu_to_le32(rdma_transform_len ?: nbytes); 9214 rsp->DataRemaining = cpu_to_le32(remain_bytes); 9215 rsp->Flags = rdma_transform_len ? 9216 SMB2_READFLAG_RESPONSE_RDMA_TRANSFORM : 0; 9217 err = ksmbd_iov_pin_rsp_read(work, (void *)rsp, 9218 offsetof(struct smb2_read_rsp, Buffer) + 9219 rdma_transform_len, 9220 aux_payload_buf, nbytes); 9221 if (err) { 9222 kvfree(aux_payload_buf); 9223 goto out; 9224 } 9225 if (async_interim) 9226 release_async_work(work); 9227 /* 9228 * RDMA responses are transferred through channel buffers and encrypted 9229 * responses use the encryption transform, so only normal SMB transport 9230 * responses are candidates for compression. 9231 */ 9232 if (!is_rdma_channel && nbytes && 9233 (req->Flags & SMB2_READFLAG_REQUEST_COMPRESSED) && 9234 conn->compress_algorithm != SMB3_COMPRESS_NONE) 9235 work->compress_response = true; 9236 ksmbd_fd_put(work, fp); 9237 return 0; 9238 9239 out: 9240 if (async_interim) 9241 release_async_work(work); 9242 if (err) { 9243 if (err == -EISDIR) 9244 rsp->hdr.Status = STATUS_INVALID_DEVICE_REQUEST; 9245 else if (err == -EAGAIN) 9246 rsp->hdr.Status = STATUS_FILE_LOCK_CONFLICT; 9247 else if (err == -ENOENT) 9248 rsp->hdr.Status = STATUS_FILE_CLOSED; 9249 else if (err == -EACCES) 9250 rsp->hdr.Status = STATUS_ACCESS_DENIED; 9251 else if (err == -ESHARE) 9252 rsp->hdr.Status = STATUS_SHARING_VIOLATION; 9253 else if (err == -EINVAL) 9254 rsp->hdr.Status = STATUS_INVALID_PARAMETER; 9255 else 9256 rsp->hdr.Status = STATUS_INVALID_HANDLE; 9257 9258 smb2_set_err_rsp(work); 9259 } 9260 ksmbd_fd_put(work, fp); 9261 return err; 9262 } 9263 9264 /** 9265 * smb2_write_pipe() - handler for smb2 write on IPC pipe 9266 * @work: smb work containing write IPC pipe command buffer 9267 * 9268 * Return: 0 on success, otherwise error 9269 */ 9270 static noinline int smb2_write_pipe(struct ksmbd_work *work) 9271 { 9272 struct smb2_write_req *req; 9273 struct smb2_write_rsp *rsp; 9274 struct ksmbd_rpc_command *rpc_resp; 9275 u64 id = 0; 9276 int err = 0, ret = 0; 9277 char *data_buf; 9278 size_t length; 9279 9280 WORK_BUFFERS(work, req, rsp); 9281 9282 length = le32_to_cpu(req->Length); 9283 id = req->VolatileFileId; 9284 9285 if ((u64)le16_to_cpu(req->DataOffset) + length > 9286 get_rfc1002_len(work->request_buf)) { 9287 pr_err("invalid write data offset %u, smb_len %u\n", 9288 le16_to_cpu(req->DataOffset), 9289 get_rfc1002_len(work->request_buf)); 9290 err = -EINVAL; 9291 goto out; 9292 } 9293 9294 data_buf = (char *)(((char *)&req->hdr.ProtocolId) + 9295 le16_to_cpu(req->DataOffset)); 9296 9297 rpc_resp = ksmbd_rpc_write(work->sess, id, data_buf, length); 9298 if (rpc_resp) { 9299 if (rpc_resp->flags == KSMBD_RPC_ENOTIMPLEMENTED) { 9300 rsp->hdr.Status = STATUS_NOT_SUPPORTED; 9301 kvfree(rpc_resp); 9302 smb2_set_err_rsp(work); 9303 return -EOPNOTSUPP; 9304 } 9305 if (rpc_resp->flags != KSMBD_RPC_OK) { 9306 rsp->hdr.Status = STATUS_INVALID_HANDLE; 9307 smb2_set_err_rsp(work); 9308 kvfree(rpc_resp); 9309 return ret; 9310 } 9311 kvfree(rpc_resp); 9312 } 9313 9314 rsp->StructureSize = cpu_to_le16(17); 9315 rsp->DataOffset = 0; 9316 rsp->Reserved = 0; 9317 rsp->DataLength = cpu_to_le32(length); 9318 rsp->DataRemaining = 0; 9319 rsp->Reserved2 = 0; 9320 err = ksmbd_iov_pin_rsp(work, (void *)rsp, 9321 offsetof(struct smb2_write_rsp, Buffer)); 9322 out: 9323 if (err) { 9324 rsp->hdr.Status = STATUS_INVALID_HANDLE; 9325 smb2_set_err_rsp(work); 9326 } 9327 9328 return err; 9329 } 9330 9331 /** 9332 * smb2_write_rdma() - receive and store an RDMA WRITE payload 9333 * @work: request work item 9334 * @desc: client RDMA buffer descriptors 9335 * @desc_len: descriptor array length 9336 * @transform: parsed transform, or NULL for an untransformed transfer 9337 * @fp: target open file 9338 * @offset: target file offset 9339 * @length: transfer length 9340 * @sync: request synchronous storage completion 9341 * 9342 * Receive the payload, authenticate or decrypt it when required, and write it 9343 * to the target file. 9344 * 9345 * Return: written byte count on success, otherwise a negative errno 9346 */ 9347 static ssize_t smb2_write_rdma(struct ksmbd_work *work, 9348 struct smbdirect_buffer_descriptor_v1 *desc, 9349 unsigned int desc_len, 9350 struct smb2_rdma_write_transform *transform, 9351 struct ksmbd_file *fp, loff_t offset, 9352 size_t length, bool sync) 9353 { 9354 char *data_buf; 9355 int ret; 9356 ssize_t nbytes; 9357 9358 data_buf = kvzalloc(length, KSMBD_DEFAULT_GFP); 9359 if (!data_buf) 9360 return -ENOMEM; 9361 9362 ret = ksmbd_conn_rdma_read(work->conn, data_buf, length, desc, 9363 desc_len); 9364 if (ret < 0) { 9365 if (transform) 9366 pr_err("RDMA WRITE encrypted transfer failed: session=%llu payload=%zu rdma_read_rc=%d\n", 9367 work->sess->id, length, ret); 9368 kvfree(data_buf); 9369 return ret; 9370 } 9371 if (transform && 9372 transform->type == SMB2_RDMA_TRANSFORM_TYPE_ENCRYPTION) { 9373 ret = ksmbd_crypt_rdma(work->conn, 9374 work->sess->smb3decryptionkey, 9375 data_buf, length, transform->nonce, 9376 transform->nonce_len, 9377 transform->crypto->Signature, 9378 transform->signature_len, false); 9379 if (ret) { 9380 pr_err("RDMA WRITE decryption failed: session=%llu payload=%zu rc=%d\n", 9381 work->sess->id, length, ret); 9382 kvfree(data_buf); 9383 return ret == -ENOMEM ? ret : -EBADMSG; 9384 } 9385 } 9386 9387 ret = ksmbd_vfs_write(work, fp, data_buf, length, &offset, sync, &nbytes); 9388 kvfree(data_buf); 9389 if (ret < 0) { 9390 if (transform) 9391 pr_err("RDMA WRITE encrypted file write failed: session=%llu payload=%zu rc=%d\n", 9392 work->sess->id, length, ret); 9393 return ret; 9394 } 9395 ksmbd_debug(RDMA, 9396 "RDMA WRITE transfer completed: session=%llu payload=%zu transformed=%u written=%zd\n", 9397 work->sess ? work->sess->id : 0, length, !!transform, nbytes); 9398 9399 return nbytes; 9400 } 9401 9402 /** 9403 * smb2_write() - handler for smb2 write from file 9404 * @work: smb work containing write command buffer 9405 * 9406 * Return: 0 on success, otherwise error 9407 */ 9408 int smb2_write(struct ksmbd_work *work) 9409 { 9410 struct smb2_write_req *req; 9411 struct smb2_write_rsp *rsp; 9412 struct smb2_rdma_write_transform rdma_transform = {}; 9413 struct smb2_rdma_write_transform *rdma_info = NULL; 9414 struct smbdirect_buffer_descriptor_v1 *rdma_desc = NULL; 9415 unsigned int rdma_desc_len = 0; 9416 struct ksmbd_file *fp = NULL; 9417 loff_t offset; 9418 size_t length; 9419 ssize_t nbytes; 9420 char *data_buf; 9421 bool writethrough = false, is_rdma_channel = false; 9422 bool async_interim = false; 9423 bool chseq_err = false; 9424 int err = 0; 9425 unsigned int max_write_size = work->conn->vals->max_write_size; 9426 unsigned int id = KSMBD_NO_FID, pid = KSMBD_NO_FID; 9427 9428 ksmbd_debug(SMB, "Received smb2 write request\n"); 9429 9430 WORK_BUFFERS(work, req, rsp); 9431 9432 if (smb2_compound_has_failed(work, &rsp->hdr)) 9433 return -EACCES; 9434 9435 if (work->next_smb2_rcv_hdr_off && 9436 !has_file_id(req->VolatileFileId)) { 9437 ksmbd_debug(SMB, "Compound request set FID = %llu\n", 9438 work->compound_fid); 9439 id = work->compound_fid; 9440 pid = work->compound_pfid; 9441 } 9442 9443 if (!has_file_id(id)) { 9444 id = req->VolatileFileId; 9445 pid = req->PersistentFileId; 9446 } 9447 9448 if (test_share_config_flag(work->tcon->share_conf, KSMBD_SHARE_FLAG_PIPE)) { 9449 ksmbd_debug(SMB, "IPC pipe write request\n"); 9450 return smb2_write_pipe(work); 9451 } 9452 9453 offset = le64_to_cpu(req->Offset); 9454 if (offset < 0) { 9455 err = -EINVAL; 9456 goto out; 9457 } 9458 length = le32_to_cpu(req->Length); 9459 9460 if (req->Channel != SMB2_CHANNEL_NONE && 9461 req->Channel != SMB2_CHANNEL_RDMA_V1 && 9462 req->Channel != SMB2_CHANNEL_RDMA_V1_INVALIDATE && 9463 req->Channel != SMB2_CHANNEL_RDMA_TRANSFORM) { 9464 err = -EINVAL; 9465 goto out; 9466 } 9467 if (req->Channel == SMB2_CHANNEL_RDMA_TRANSFORM && 9468 work->conn->dialect != SMB311_PROT_ID) { 9469 err = -EINVAL; 9470 goto out; 9471 } 9472 if (req->Channel == SMB2_CHANNEL_RDMA_V1 || 9473 req->Channel == SMB2_CHANNEL_RDMA_V1_INVALIDATE || 9474 req->Channel == SMB2_CHANNEL_RDMA_TRANSFORM) { 9475 is_rdma_channel = true; 9476 max_write_size = get_smbd_max_read_write_size(work->conn->transport); 9477 if (max_write_size == 0) { 9478 err = -EINVAL; 9479 goto out; 9480 } 9481 length = le32_to_cpu(req->RemainingBytes); 9482 } 9483 9484 if (length) { 9485 u64 end = (u64)offset + length; 9486 9487 if (end > SMB2_MAX_FILE_SIZE) { 9488 err = -EINVAL; 9489 goto out; 9490 } 9491 if (end == SMB2_MAX_FILE_SIZE) { 9492 err = -EFBIG; 9493 goto out; 9494 } 9495 } 9496 9497 if (is_rdma_channel == true) { 9498 unsigned int ch_offset = le16_to_cpu(req->WriteChannelInfoOffset); 9499 unsigned int ch_len = le16_to_cpu(req->WriteChannelInfoLength); 9500 unsigned int req_len = smb2_current_req_len(work, &req->hdr); 9501 9502 if (!length || req->Length != 0 || req->DataOffset != 0 || 9503 ch_offset < offsetof(struct smb2_write_req, Buffer) || 9504 ch_offset > req_len || ch_len > req_len - ch_offset) { 9505 err = -EINVAL; 9506 goto out; 9507 } 9508 if (req->Channel == SMB2_CHANNEL_RDMA_TRANSFORM) { 9509 err = smb2_parse_rdma_write_transform(work, req, 9510 &rdma_transform); 9511 if (err) { 9512 pr_err("RDMA WRITE encryption metadata rejected: session=%llu rc=%d\n", 9513 work->sess ? work->sess->id : 0, err); 9514 goto out; 9515 } 9516 rdma_desc = rdma_transform.desc; 9517 rdma_desc_len = rdma_transform.desc_len; 9518 rdma_info = &rdma_transform; 9519 err = smb2_set_rdma_key(work, rdma_desc, 9520 rdma_transform.channel, 9521 cpu_to_le16(rdma_desc_len)); 9522 } else { 9523 rdma_desc = (struct smbdirect_buffer_descriptor_v1 *) 9524 ((char *)req + ch_offset); 9525 rdma_desc_len = ch_len; 9526 err = check_rdma_desc(rdma_desc, rdma_desc_len, length); 9527 if (err) 9528 goto out; 9529 err = smb2_set_rdma_key(work, rdma_desc, 9530 req->Channel, 9531 req->WriteChannelInfoLength); 9532 } 9533 if (err) 9534 goto out; 9535 } 9536 9537 if (!test_tree_conn_flag(work->tcon, KSMBD_TREE_CONN_FLAG_WRITABLE)) { 9538 ksmbd_debug(SMB, "User does not have write permission\n"); 9539 err = -EACCES; 9540 goto out; 9541 } 9542 9543 fp = ksmbd_lookup_fd_slow(work, id, pid); 9544 if (!fp) { 9545 err = -ENOENT; 9546 goto out; 9547 } 9548 9549 err = smb2_set_request_open(work, fp, &req->hdr, true, false); 9550 if (err) { 9551 rsp->hdr.Status = STATUS_FILE_NOT_AVAILABLE; 9552 chseq_err = true; 9553 goto out; 9554 } 9555 9556 if (!(fp->daccess & (FILE_WRITE_DATA_LE | FILE_READ_ATTRIBUTES_LE))) { 9557 pr_err("Not permitted to write : 0x%x\n", fp->daccess); 9558 err = -EACCES; 9559 goto out; 9560 } 9561 9562 if (work->next_smb2_rcv_hdr_off && !req->hdr.NextCommand) { 9563 err = setup_async_work(work, NULL, NULL); 9564 if (err) 9565 goto out; 9566 smb2_send_interim_resp(work, STATUS_PENDING); 9567 async_interim = true; 9568 } 9569 9570 if (length > max_write_size) { 9571 ksmbd_debug(SMB, "limiting write size to max size(%u)\n", 9572 max_write_size); 9573 err = -EINVAL; 9574 goto out; 9575 } 9576 9577 ksmbd_debug(SMB, "flags %u\n", le32_to_cpu(req->Flags)); 9578 if (le32_to_cpu(req->Flags) & SMB2_WRITEFLAG_WRITE_THROUGH) 9579 writethrough = true; 9580 9581 if (is_rdma_channel == false) { 9582 if (le16_to_cpu(req->DataOffset) < 9583 offsetof(struct smb2_write_req, Buffer)) { 9584 err = -EINVAL; 9585 goto out; 9586 } 9587 9588 data_buf = (char *)(((char *)&req->hdr.ProtocolId) + 9589 le16_to_cpu(req->DataOffset)); 9590 9591 ksmbd_debug(SMB, "filename %pD, offset %lld, len %zu\n", 9592 fp->filp, offset, length); 9593 err = ksmbd_vfs_write(work, fp, data_buf, length, &offset, 9594 writethrough, &nbytes); 9595 if (err < 0) 9596 goto out; 9597 } else { 9598 /* read data from the client using rdma channel, and 9599 * write the data. 9600 */ 9601 nbytes = smb2_write_rdma(work, rdma_desc, rdma_desc_len, 9602 rdma_info, fp, offset, length, 9603 writethrough); 9604 if (nbytes < 0) { 9605 err = (int)nbytes; 9606 goto out; 9607 } 9608 } 9609 9610 rsp->StructureSize = cpu_to_le16(17); 9611 rsp->DataOffset = 0; 9612 rsp->Reserved = 0; 9613 rsp->DataLength = cpu_to_le32(nbytes); 9614 rsp->DataRemaining = 0; 9615 rsp->Reserved2 = 0; 9616 err = ksmbd_iov_pin_rsp(work, rsp, offsetof(struct smb2_write_rsp, Buffer)); 9617 if (err) 9618 goto out; 9619 if (async_interim) 9620 release_async_work(work); 9621 ksmbd_fd_put(work, fp); 9622 return 0; 9623 9624 out: 9625 if (async_interim) 9626 release_async_work(work); 9627 9628 if (err == -EAGAIN && !chseq_err) 9629 rsp->hdr.Status = STATUS_FILE_LOCK_CONFLICT; 9630 else if (err == -ENOSPC || err == -EFBIG) 9631 rsp->hdr.Status = STATUS_DISK_FULL; 9632 else if (err == -ENOENT) 9633 rsp->hdr.Status = STATUS_FILE_CLOSED; 9634 else if (err == -EACCES) 9635 rsp->hdr.Status = STATUS_ACCESS_DENIED; 9636 else if (err == -ESHARE) 9637 rsp->hdr.Status = STATUS_SHARING_VIOLATION; 9638 else if (err == -EINVAL) 9639 rsp->hdr.Status = STATUS_INVALID_PARAMETER; 9640 else if (err == -EBADMSG) 9641 rsp->hdr.Status = STATUS_AUTH_TAG_MISMATCH; 9642 else if (err == -EKEYREJECTED) 9643 rsp->hdr.Status = STATUS_INVALID_SIGNATURE; 9644 else if (rsp->hdr.Status == 0) 9645 rsp->hdr.Status = STATUS_INVALID_HANDLE; 9646 9647 smb2_set_err_rsp(work); 9648 ksmbd_fd_put(work, fp); 9649 return err; 9650 } 9651 9652 /** 9653 * smb2_flush() - handler for smb2 flush file - fsync 9654 * @work: smb work containing flush command buffer 9655 * 9656 * Return: 0 on success, otherwise error 9657 */ 9658 int smb2_flush(struct ksmbd_work *work) 9659 { 9660 struct smb2_flush_req *req; 9661 struct smb2_flush_rsp *rsp; 9662 u64 id = KSMBD_NO_FID, pid = KSMBD_NO_FID; 9663 int err; 9664 9665 WORK_BUFFERS(work, req, rsp); 9666 9667 ksmbd_debug(SMB, "Received smb2 flush request(fid : %llu)\n", req->VolatileFileId); 9668 9669 if (smb2_compound_has_failed(work, &rsp->hdr)) 9670 return -EACCES; 9671 9672 if (work->next_smb2_rcv_hdr_off && 9673 !has_file_id(req->VolatileFileId)) { 9674 ksmbd_debug(SMB, "Compound request set FID = %llu\n", 9675 work->compound_fid); 9676 id = work->compound_fid; 9677 pid = work->compound_pfid; 9678 } 9679 9680 if (!has_file_id(id)) { 9681 id = req->VolatileFileId; 9682 pid = req->PersistentFileId; 9683 } 9684 9685 err = ksmbd_vfs_fsync(work, id, pid); 9686 if (err) 9687 goto out; 9688 9689 rsp->StructureSize = cpu_to_le16(4); 9690 rsp->Reserved = 0; 9691 return ksmbd_iov_pin_rsp(work, rsp, sizeof(struct smb2_flush_rsp)); 9692 9693 out: 9694 rsp->hdr.Status = STATUS_INVALID_HANDLE; 9695 smb2_set_err_rsp(work); 9696 return err; 9697 } 9698 9699 /** 9700 * smb2_cancel() - handler for smb2 cancel command 9701 * @work: smb work containing cancel command buffer 9702 * 9703 * Return: 0 on success, otherwise error 9704 */ 9705 int smb2_cancel(struct ksmbd_work *work) 9706 { 9707 struct ksmbd_conn *conn = work->conn; 9708 struct smb2_hdr *hdr = smb_get_msg(work->request_buf); 9709 struct smb2_hdr *chdr; 9710 struct ksmbd_work *iter; 9711 struct ksmbd_work *cancelled_notify = NULL; 9712 struct list_head *command_list; 9713 9714 if (work->next_smb2_rcv_hdr_off) 9715 hdr = ksmbd_resp_buf_next(work); 9716 9717 ksmbd_debug(SMB, "smb2 cancel called on mid %llu, async flags 0x%x\n", 9718 le64_to_cpu(hdr->MessageId), 9719 le32_to_cpu(hdr->Flags)); 9720 9721 if (hdr->Flags & SMB2_FLAGS_ASYNC_COMMAND) { 9722 command_list = &conn->async_requests; 9723 9724 spin_lock(&conn->request_lock); 9725 list_for_each_entry(iter, command_list, 9726 async_request_entry) { 9727 chdr = smb_get_msg(iter->request_buf); 9728 9729 if (iter->async_id != 9730 le64_to_cpu(hdr->Id.AsyncId)) 9731 continue; 9732 9733 /* 9734 * Only an ACTIVE deferred work may have its cancel_fn 9735 * fired. A CANCELLED or CLOSED work already took the 9736 * smb2_lock() non-ACTIVE early-exit that frees the 9737 * file_lock and skips release_async_work(), so it is 9738 * still on conn->async_requests with a live cancel_fn 9739 * pointing at the freed file_lock. 9740 */ 9741 if (cmpxchg(&iter->state, KSMBD_WORK_ACTIVE, 9742 KSMBD_WORK_CANCELLED) != KSMBD_WORK_ACTIVE) 9743 break; 9744 9745 ksmbd_debug(SMB, 9746 "smb2 with AsyncId %llu cancelled command = 0x%x\n", 9747 le64_to_cpu(hdr->Id.AsyncId), 9748 le16_to_cpu(chdr->Command)); 9749 if (iter->cancel_fn == smb2_notify_cancel_fn) 9750 cancelled_notify = 9751 smb2_notify_cancel_claim(iter->cancel_argv); 9752 else if (iter->cancel_fn) 9753 iter->cancel_fn(iter->cancel_argv); 9754 break; 9755 } 9756 spin_unlock(&conn->request_lock); 9757 9758 /* 9759 * Complete a cancelled notify before this CANCEL handler returns. 9760 * Deferring it to the system workqueue lets a following request and 9761 * its response overtake STATUS_CANCELLED, leaving clients waiting 9762 * for the original notify even though the cancellation was accepted. 9763 */ 9764 if (cancelled_notify) 9765 smb2_complete_notify_cancel(cancelled_notify); 9766 } else { 9767 command_list = &conn->requests; 9768 9769 spin_lock(&conn->request_lock); 9770 list_for_each_entry(iter, command_list, request_entry) { 9771 chdr = smb_get_msg(iter->request_buf); 9772 9773 if (chdr->MessageId != hdr->MessageId || 9774 iter == work) 9775 continue; 9776 9777 if (cmpxchg(&iter->state, KSMBD_WORK_ACTIVE, 9778 KSMBD_WORK_CANCELLED) != KSMBD_WORK_ACTIVE) 9779 break; 9780 9781 ksmbd_debug(SMB, 9782 "smb2 with mid %llu cancelled command = 0x%x\n", 9783 le64_to_cpu(hdr->MessageId), 9784 le16_to_cpu(chdr->Command)); 9785 if (iter->cancel_fn) 9786 iter->cancel_fn(iter->cancel_argv); 9787 break; 9788 } 9789 spin_unlock(&conn->request_lock); 9790 } 9791 9792 /* For SMB2_CANCEL command itself send no response*/ 9793 work->send_no_response = 1; 9794 return 0; 9795 } 9796 9797 struct file_lock *smb_flock_init(struct file *f) 9798 { 9799 struct file_lock *fl; 9800 9801 fl = locks_alloc_lock(); 9802 if (!fl) 9803 goto out; 9804 9805 locks_init_lock(fl); 9806 9807 fl->c.flc_owner = f; 9808 fl->c.flc_pid = current->tgid; 9809 fl->c.flc_file = f; 9810 fl->c.flc_flags = FL_POSIX; 9811 fl->fl_ops = NULL; 9812 fl->fl_lmops = NULL; 9813 9814 out: 9815 return fl; 9816 } 9817 9818 static int smb2_set_flock_flags(struct file_lock *flock, int flags) 9819 { 9820 int cmd = -EINVAL; 9821 9822 /* Checking for wrong flag combination during lock request*/ 9823 switch (flags) { 9824 case SMB2_LOCKFLAG_SHARED: 9825 ksmbd_debug(SMB, "received shared request\n"); 9826 cmd = F_SETLKW; 9827 flock->c.flc_type = F_RDLCK; 9828 flock->c.flc_flags |= FL_SLEEP; 9829 break; 9830 case SMB2_LOCKFLAG_EXCLUSIVE: 9831 ksmbd_debug(SMB, "received exclusive request\n"); 9832 cmd = F_SETLKW; 9833 flock->c.flc_type = F_WRLCK; 9834 flock->c.flc_flags |= FL_SLEEP; 9835 break; 9836 case SMB2_LOCKFLAG_SHARED | SMB2_LOCKFLAG_FAIL_IMMEDIATELY: 9837 ksmbd_debug(SMB, 9838 "received shared & fail immediately request\n"); 9839 cmd = F_SETLK; 9840 flock->c.flc_type = F_RDLCK; 9841 break; 9842 case SMB2_LOCKFLAG_EXCLUSIVE | SMB2_LOCKFLAG_FAIL_IMMEDIATELY: 9843 ksmbd_debug(SMB, 9844 "received exclusive & fail immediately request\n"); 9845 cmd = F_SETLK; 9846 flock->c.flc_type = F_WRLCK; 9847 break; 9848 case SMB2_LOCKFLAG_UNLOCK: 9849 ksmbd_debug(SMB, "received unlock request\n"); 9850 flock->c.flc_type = F_UNLCK; 9851 cmd = F_SETLK; 9852 break; 9853 } 9854 9855 return cmd; 9856 } 9857 9858 static struct ksmbd_lock *smb2_lock_init(struct file_lock *flock, 9859 unsigned int cmd, int flags, bool zero_len, 9860 struct list_head *lock_list) 9861 { 9862 struct ksmbd_lock *lock; 9863 9864 lock = kzalloc_obj(struct ksmbd_lock, KSMBD_DEFAULT_GFP); 9865 if (!lock) 9866 return NULL; 9867 9868 lock->cmd = cmd; 9869 lock->fl = flock; 9870 lock->start = flock->fl_start; 9871 lock->end = flock->fl_end; 9872 lock->flags = flags; 9873 lock->zero_len = zero_len; 9874 INIT_LIST_HEAD(&lock->clist); 9875 INIT_LIST_HEAD(&lock->flist); 9876 INIT_LIST_HEAD(&lock->llist); 9877 list_add_tail(&lock->llist, lock_list); 9878 9879 return lock; 9880 } 9881 9882 static void smb2_remove_blocked_lock(void **argv) 9883 { 9884 struct file_lock *flock = (struct file_lock *)argv[0]; 9885 9886 ksmbd_vfs_posix_lock_unblock(flock); 9887 locks_wake_up(flock); 9888 } 9889 9890 static void smb2_free_lock(struct file_lock *flock) 9891 { 9892 ksmbd_vfs_posix_lock_unblock(flock); 9893 locks_free_lock(flock); 9894 } 9895 9896 static void smb2_free_blocked_lock(struct file_lock *flock) 9897 { 9898 ksmbd_vfs_posix_lock_unblock(flock); 9899 locks_wake_up(flock); 9900 locks_free_lock(flock); 9901 } 9902 9903 static inline bool lock_defer_pending(struct file_lock *fl) 9904 { 9905 /* check pending lock waiters */ 9906 return waitqueue_active(&fl->c.flc_wait); 9907 } 9908 9909 /** 9910 * smb2_lock() - handler for smb2 file lock command 9911 * @work: smb work containing lock command buffer 9912 * 9913 * Return: 0 on success, otherwise error 9914 */ 9915 int smb2_lock(struct ksmbd_work *work) 9916 { 9917 struct smb2_lock_req *req; 9918 struct smb2_lock_rsp *rsp; 9919 struct smb2_lock_element *lock_ele; 9920 struct ksmbd_file *fp = NULL; 9921 struct file_lock *flock = NULL; 9922 struct file *filp = NULL; 9923 int lock_count; 9924 int flags = 0; 9925 int cmd = 0; 9926 int err = -EIO, i, rc = 0; 9927 u64 lock_start, lock_length; 9928 struct ksmbd_lock *smb_lock = NULL, *cmp_lock, *tmp, *tmp2; 9929 struct ksmbd_conn *conn; 9930 int nolock = 0; 9931 LIST_HEAD(lock_list); 9932 LIST_HEAD(rollback_list); 9933 int prior_lock = 0, bkt; 9934 unsigned int id = KSMBD_NO_FID, pid = KSMBD_NO_FID; 9935 bool lock_replayed; 9936 9937 WORK_BUFFERS(work, req, rsp); 9938 9939 ksmbd_debug(SMB, "Received smb2 lock request\n"); 9940 9941 if (smb2_compound_has_failed(work, &rsp->hdr)) 9942 return -EACCES; 9943 9944 if (work->next_smb2_rcv_hdr_off && 9945 !has_file_id(req->VolatileFileId)) { 9946 ksmbd_debug(SMB, "Compound request set FID = %llu\n", 9947 work->compound_fid); 9948 id = work->compound_fid; 9949 pid = work->compound_pfid; 9950 } 9951 9952 if (!has_file_id(id)) { 9953 id = req->VolatileFileId; 9954 pid = req->PersistentFileId; 9955 } 9956 9957 fp = ksmbd_lookup_fd_slow(work, id, pid); 9958 if (!fp) { 9959 ksmbd_debug(SMB, "Invalid file id for lock : %llu\n", req->VolatileFileId); 9960 err = -ENOENT; 9961 goto out2; 9962 } 9963 9964 err = smb2_set_request_open(work, fp, &req->hdr, false, false); 9965 if (err) 9966 goto out2; 9967 9968 lock_replayed = smb2_verify_lock_sequence(work, fp, req); 9969 if (lock_replayed) 9970 goto lock_success; 9971 9972 filp = fp->filp; 9973 lock_count = le16_to_cpu(req->LockCount); 9974 lock_ele = req->locks; 9975 9976 ksmbd_debug(SMB, "lock count is %d\n", lock_count); 9977 /* 9978 * Cap lock_count at 64. The MS-SMB2 spec defines Open.LockSequenceArray 9979 * as exactly 64 entries so 64 is the intended ceiling. No real workload 9980 * comes close to this in a single request. 9981 */ 9982 if (!lock_count || lock_count > 64) { 9983 err = -EINVAL; 9984 goto out2; 9985 } 9986 9987 for (i = 0; i < lock_count; i++) { 9988 flags = le32_to_cpu(lock_ele[i].Flags); 9989 9990 flock = smb_flock_init(filp); 9991 if (!flock) 9992 goto out; 9993 9994 cmd = smb2_set_flock_flags(flock, flags); 9995 9996 lock_start = le64_to_cpu(lock_ele[i].Offset); 9997 lock_length = le64_to_cpu(lock_ele[i].Length); 9998 if (lock_start > OFFSET_MAX || 9999 (lock_length && 10000 lock_length - 1 > OFFSET_MAX - lock_start)) { 10001 pr_err("Invalid lock range requested\n"); 10002 rsp->hdr.Status = STATUS_INVALID_LOCK_RANGE; 10003 locks_free_lock(flock); 10004 goto out; 10005 } 10006 10007 flock->fl_start = lock_start; 10008 flock->fl_end = lock_length ? 10009 flock->fl_start + lock_length - 1 : flock->fl_start; 10010 10011 /* Check conflict locks in one request */ 10012 list_for_each_entry(cmp_lock, &lock_list, llist) { 10013 if (cmp_lock->fl->fl_start <= flock->fl_start && 10014 cmp_lock->fl->fl_end >= flock->fl_end) { 10015 if (cmp_lock->fl->c.flc_type != F_UNLCK && 10016 flock->c.flc_type != F_UNLCK) { 10017 pr_err("conflict two locks in one request\n"); 10018 err = -EINVAL; 10019 locks_free_lock(flock); 10020 goto out; 10021 } 10022 } 10023 } 10024 10025 smb_lock = smb2_lock_init(flock, cmd, flags, !lock_length, 10026 &lock_list); 10027 if (!smb_lock) { 10028 err = -EINVAL; 10029 locks_free_lock(flock); 10030 goto out; 10031 } 10032 } 10033 10034 list_for_each_entry_safe(smb_lock, tmp, &lock_list, llist) { 10035 if (lock_count > 1 && 10036 !(le32_to_cpu(lock_ele[0].Flags) & SMB2_LOCKFLAG_UNLOCK) && 10037 !(smb_lock->flags & SMB2_LOCKFLAG_FAIL_IMMEDIATELY)) { 10038 err = -EINVAL; 10039 goto out; 10040 } 10041 10042 if (smb_lock->cmd < 0) { 10043 err = -EINVAL; 10044 goto out; 10045 } 10046 10047 if (!(smb_lock->flags & SMB2_LOCKFLAG_MASK)) { 10048 err = -EINVAL; 10049 goto out; 10050 } 10051 10052 if ((prior_lock & (SMB2_LOCKFLAG_EXCLUSIVE | SMB2_LOCKFLAG_SHARED) && 10053 smb_lock->flags & SMB2_LOCKFLAG_UNLOCK) || 10054 (prior_lock == SMB2_LOCKFLAG_UNLOCK && 10055 !(smb_lock->flags & SMB2_LOCKFLAG_UNLOCK))) { 10056 err = -EINVAL; 10057 goto out; 10058 } 10059 10060 prior_lock = smb_lock->flags; 10061 10062 if (!(smb_lock->flags & SMB2_LOCKFLAG_UNLOCK) && 10063 !(smb_lock->flags & SMB2_LOCKFLAG_FAIL_IMMEDIATELY)) 10064 goto no_check_cl; 10065 10066 nolock = 1; 10067 /* check locks in connection list */ 10068 down_read(&conn_list_lock); 10069 hash_for_each(conn_list, bkt, conn, hlist) { 10070 spin_lock(&conn->llist_lock); 10071 list_for_each_entry_safe(cmp_lock, tmp2, &conn->lock_list, clist) { 10072 if (file_inode(cmp_lock->fl->c.flc_file) != 10073 file_inode(smb_lock->fl->c.flc_file)) 10074 continue; 10075 10076 if (lock_is_unlock(smb_lock->fl)) { 10077 if (cmp_lock->fl->c.flc_file == smb_lock->fl->c.flc_file && 10078 cmp_lock->start == smb_lock->start && 10079 cmp_lock->end == smb_lock->end && 10080 !lock_defer_pending(cmp_lock->fl)) { 10081 nolock = 0; 10082 list_del_init(&cmp_lock->flist); 10083 list_del_init(&cmp_lock->clist); 10084 cmp_lock->conn = NULL; 10085 spin_unlock(&conn->llist_lock); 10086 up_read(&conn_list_lock); 10087 10088 ksmbd_conn_put(conn); 10089 smb2_free_lock(cmp_lock->fl); 10090 kfree(cmp_lock); 10091 goto out_check_cl; 10092 } 10093 continue; 10094 } 10095 10096 if (cmp_lock->fl->c.flc_file == smb_lock->fl->c.flc_file) { 10097 if (smb_lock->flags & SMB2_LOCKFLAG_SHARED) 10098 continue; 10099 } else { 10100 if (cmp_lock->flags & SMB2_LOCKFLAG_SHARED) 10101 continue; 10102 } 10103 10104 /* check zero byte lock range */ 10105 if (cmp_lock->zero_len && !smb_lock->zero_len && 10106 cmp_lock->start > smb_lock->start && 10107 cmp_lock->start <= smb_lock->end) { 10108 spin_unlock(&conn->llist_lock); 10109 up_read(&conn_list_lock); 10110 pr_err("previous lock conflict with zero byte lock range\n"); 10111 goto out; 10112 } 10113 10114 if (smb_lock->zero_len && !cmp_lock->zero_len && 10115 smb_lock->start > cmp_lock->start && 10116 smb_lock->start <= cmp_lock->end) { 10117 spin_unlock(&conn->llist_lock); 10118 up_read(&conn_list_lock); 10119 pr_err("current lock conflict with zero byte lock range\n"); 10120 goto out; 10121 } 10122 10123 if (cmp_lock->start <= smb_lock->end && 10124 smb_lock->start <= cmp_lock->end && 10125 !cmp_lock->zero_len && !smb_lock->zero_len) { 10126 spin_unlock(&conn->llist_lock); 10127 up_read(&conn_list_lock); 10128 pr_err("Not allow lock operation on exclusive lock range\n"); 10129 goto out; 10130 } 10131 } 10132 spin_unlock(&conn->llist_lock); 10133 } 10134 up_read(&conn_list_lock); 10135 out_check_cl: 10136 if (lock_is_unlock(smb_lock->fl) && nolock) { 10137 pr_err("Try to unlock nolocked range\n"); 10138 rsp->hdr.Status = STATUS_RANGE_NOT_LOCKED; 10139 goto out; 10140 } 10141 10142 no_check_cl: 10143 flock = smb_lock->fl; 10144 list_del(&smb_lock->llist); 10145 10146 if (smb_lock->zero_len) { 10147 err = 0; 10148 goto skip; 10149 } 10150 retry: 10151 rc = vfs_lock_file(filp, smb_lock->cmd, flock, NULL); 10152 skip: 10153 if (smb_lock->flags & SMB2_LOCKFLAG_UNLOCK) { 10154 locks_free_lock(flock); 10155 kfree(smb_lock); 10156 if (!rc) { 10157 ksmbd_debug(SMB, "File unlocked\n"); 10158 } else if (rc == -ENOENT) { 10159 rsp->hdr.Status = STATUS_NOT_LOCKED; 10160 err = rc; 10161 goto out; 10162 } 10163 } else { 10164 if (rc == FILE_LOCK_DEFERRED) { 10165 void **argv; 10166 10167 ksmbd_debug(SMB, 10168 "would have to wait for getting lock\n"); 10169 10170 argv = kmalloc(sizeof(void *), KSMBD_DEFAULT_GFP); 10171 if (!argv) { 10172 err = -ENOMEM; 10173 smb2_free_blocked_lock(flock); 10174 kfree(smb_lock); 10175 goto out; 10176 } 10177 argv[0] = flock; 10178 10179 rc = setup_async_work(work, 10180 smb2_remove_blocked_lock, 10181 argv); 10182 if (rc) { 10183 kfree(argv); 10184 err = -ENOMEM; 10185 smb2_free_blocked_lock(flock); 10186 kfree(smb_lock); 10187 goto out; 10188 } 10189 list_add(&smb_lock->llist, &rollback_list); 10190 spin_lock(&fp->f_lock); 10191 list_add(&work->fp_entry, &fp->blocked_works); 10192 spin_unlock(&fp->f_lock); 10193 10194 smb2_send_interim_resp(work, STATUS_PENDING); 10195 10196 ksmbd_vfs_posix_lock_wait(flock); 10197 10198 spin_lock(&fp->f_lock); 10199 list_del(&work->fp_entry); 10200 spin_unlock(&fp->f_lock); 10201 10202 list_del(&smb_lock->llist); 10203 10204 if (work->state == KSMBD_WORK_CANCELLED) { 10205 rsp->hdr.Status = STATUS_CANCELLED; 10206 kfree(smb_lock); 10207 smb2_send_interim_resp(work, 10208 STATUS_CANCELLED); 10209 release_async_work(work); 10210 locks_free_lock(flock); 10211 work->send_no_response = 1; 10212 goto out; 10213 } 10214 10215 release_async_work(work); 10216 10217 if (work->state == KSMBD_WORK_ACTIVE) 10218 goto retry; 10219 10220 locks_free_lock(flock); 10221 10222 rsp->hdr.Status = 10223 STATUS_RANGE_NOT_LOCKED; 10224 kfree(smb_lock); 10225 /* rollback_list may still hold earlier grants */ 10226 goto out; 10227 } else if (!rc) { 10228 list_add(&smb_lock->llist, &rollback_list); 10229 ksmbd_debug(SMB, "successful in taking lock\n"); 10230 } else { 10231 locks_free_lock(flock); 10232 kfree(smb_lock); 10233 err = rc; 10234 goto out; 10235 } 10236 } 10237 } 10238 10239 if (atomic_read(&fp->f_ci->op_count) > 1) 10240 smb_break_all_oplock(work, fp); 10241 10242 lock_success: 10243 rsp->StructureSize = cpu_to_le16(4); 10244 ksmbd_debug(SMB, "successful in taking lock\n"); 10245 rsp->hdr.Status = STATUS_SUCCESS; 10246 rsp->Reserved = 0; 10247 err = ksmbd_iov_pin_rsp(work, rsp, sizeof(struct smb2_lock_rsp)); 10248 if (err) 10249 goto out; 10250 10251 /* publish only once the whole batch has committed */ 10252 if (!list_empty(&rollback_list)) { 10253 spin_lock(&work->conn->llist_lock); 10254 list_for_each_entry_safe(smb_lock, tmp, &rollback_list, llist) { 10255 list_del_init(&smb_lock->llist); 10256 smb_lock->conn = ksmbd_conn_get(work->conn); 10257 list_add_tail(&smb_lock->clist, 10258 &work->conn->lock_list); 10259 list_add_tail(&smb_lock->flist, 10260 &fp->lock_list); 10261 } 10262 spin_unlock(&work->conn->llist_lock); 10263 } 10264 10265 if (!lock_replayed) 10266 smb2_update_lock_sequence(work, fp, req); 10267 10268 ksmbd_fd_put(work, fp); 10269 return 0; 10270 10271 out: 10272 list_for_each_entry_safe(smb_lock, tmp, &lock_list, llist) { 10273 locks_free_lock(smb_lock->fl); 10274 list_del(&smb_lock->llist); 10275 kfree(smb_lock); 10276 } 10277 10278 list_for_each_entry_safe(smb_lock, tmp, &rollback_list, llist) { 10279 struct file_lock *rlock = NULL; 10280 10281 rlock = smb_flock_init(filp); 10282 if (rlock) { 10283 rlock->c.flc_type = F_UNLCK; 10284 rlock->fl_start = smb_lock->start; 10285 rlock->fl_end = smb_lock->end; 10286 10287 rc = vfs_lock_file(filp, F_SETLK, rlock, NULL); 10288 if (rc) 10289 pr_err("rollback unlock fail : %d\n", rc); 10290 } else { 10291 pr_err("rollback unlock alloc failed\n"); 10292 } 10293 10294 list_del(&smb_lock->llist); 10295 smb2_free_lock(smb_lock->fl); 10296 if (rlock) 10297 locks_free_lock(rlock); 10298 kfree(smb_lock); 10299 } 10300 out2: 10301 ksmbd_debug(SMB, "failed in taking lock(flags : %x), err : %d\n", flags, err); 10302 10303 if (!rsp->hdr.Status) { 10304 if (err == -EINVAL) 10305 rsp->hdr.Status = STATUS_INVALID_PARAMETER; 10306 else if (err == -ENOMEM) 10307 rsp->hdr.Status = STATUS_INSUFFICIENT_RESOURCES; 10308 else if (err == -ENOENT) 10309 rsp->hdr.Status = STATUS_FILE_CLOSED; 10310 else 10311 rsp->hdr.Status = STATUS_LOCK_NOT_GRANTED; 10312 } 10313 10314 smb2_set_err_rsp(work); 10315 ksmbd_fd_put(work, fp); 10316 return err; 10317 } 10318 10319 static int fsctl_copychunk(struct ksmbd_work *work, 10320 struct copychunk_ioctl_req *ci_req, 10321 unsigned int cnt_code, 10322 unsigned int input_count, 10323 unsigned long long volatile_id, 10324 unsigned long long persistent_id, 10325 struct smb2_ioctl_rsp *rsp) 10326 { 10327 struct copychunk_ioctl_rsp *ci_rsp; 10328 struct ksmbd_file *src_fp = NULL, *dst_fp = NULL; 10329 struct srv_copychunk *chunks; 10330 unsigned int i, chunk_count, chunk_count_written = 0; 10331 unsigned int chunk_size_written = 0; 10332 loff_t total_size_written = 0; 10333 int ret = 0; 10334 10335 ci_rsp = (struct copychunk_ioctl_rsp *)&rsp->Buffer[0]; 10336 10337 rsp->VolatileFileId = volatile_id; 10338 rsp->PersistentFileId = persistent_id; 10339 ci_rsp->ChunksWritten = 10340 cpu_to_le32(ksmbd_server_side_copy_max_chunk_count()); 10341 ci_rsp->ChunkBytesWritten = 10342 cpu_to_le32(ksmbd_server_side_copy_max_chunk_size()); 10343 ci_rsp->TotalBytesWritten = 10344 cpu_to_le32(ksmbd_server_side_copy_max_total_size()); 10345 10346 chunk_count = le32_to_cpu(ci_req->ChunkCount); 10347 /* 10348 * ChunkCount=0 is the standard SMB2 "query my copy limits" request 10349 * (no data copied) -- but macOS Finder's Cmd+D duplicate sends 10350 * FSCTL_SRV_COPYCHUNK with ChunkCount=0 meaning "copy the whole 10351 * file", relying on the AAPL-negotiated server to do a full copy 10352 * instead. Keep the standard no-op behavior for everyone else. 10353 * 10354 * Gate on the TIME_MACHINE share flag, not just conn->is_aapl: 10355 * that flag alone has ambiguous provenance -- the pre-existing 10356 * narrow UniqueId=0 path can also set it on ordinary, 10357 * non-Time-Machine shares, and this series' stated design keeps 10358 * every AAPL-driven behavior opt-in per share. 10359 */ 10360 if (chunk_count == 0 && 10361 !(work->conn->is_aapl && 10362 test_share_config_flag(work->tcon->share_conf, 10363 KSMBD_SHARE_FLAG_TIME_MACHINE))) 10364 goto out; 10365 total_size_written = 0; 10366 i = 0; 10367 10368 if (chunk_count) { 10369 /* verify the SRV_COPYCHUNK_COPY packet */ 10370 if (chunk_count > ksmbd_server_side_copy_max_chunk_count() || 10371 input_count < struct_size(ci_req, Chunks, chunk_count)) { 10372 rsp->hdr.Status = STATUS_INVALID_PARAMETER; 10373 return -EINVAL; 10374 } 10375 10376 chunks = &ci_req->Chunks[0]; 10377 for (i = 0; i < chunk_count; i++) { 10378 if (le32_to_cpu(chunks[i].Length) == 0 || 10379 le32_to_cpu(chunks[i].Length) > ksmbd_server_side_copy_max_chunk_size()) 10380 break; 10381 total_size_written += le32_to_cpu(chunks[i].Length); 10382 } 10383 } else { 10384 chunks = &ci_req->Chunks[0]; 10385 } 10386 10387 if (i < chunk_count || 10388 total_size_written > ksmbd_server_side_copy_max_total_size()) { 10389 rsp->hdr.Status = STATUS_INVALID_PARAMETER; 10390 return -EINVAL; 10391 } 10392 10393 src_fp = ksmbd_lookup_foreign_fd(work, 10394 le64_to_cpu(ci_req->SourceKeyU64[0])); 10395 dst_fp = ksmbd_lookup_fd_slow(work, volatile_id, persistent_id); 10396 ret = -EINVAL; 10397 if (!src_fp || 10398 src_fp->persistent_id != le64_to_cpu(ci_req->SourceKeyU64[1])) { 10399 rsp->hdr.Status = STATUS_OBJECT_NAME_NOT_FOUND; 10400 goto out; 10401 } 10402 10403 if (!dst_fp) { 10404 rsp->hdr.Status = STATUS_FILE_CLOSED; 10405 goto out; 10406 } 10407 10408 /* 10409 * FILE_READ_DATA should only be included in 10410 * the FSCTL_SRV_COPYCHUNK case 10411 */ 10412 if (cnt_code == FSCTL_SRV_COPYCHUNK && 10413 !(dst_fp->daccess & (FILE_READ_DATA_LE | FILE_GENERIC_READ_LE))) { 10414 rsp->hdr.Status = STATUS_ACCESS_DENIED; 10415 goto out; 10416 } 10417 10418 ret = ksmbd_vfs_copy_file_ranges(work, src_fp, dst_fp, 10419 chunks, chunk_count, 10420 &chunk_count_written, 10421 &chunk_size_written, 10422 &total_size_written); 10423 if (ret < 0) { 10424 if (ret == -EACCES) 10425 rsp->hdr.Status = STATUS_ACCESS_DENIED; 10426 else if (ret == -EAGAIN) 10427 rsp->hdr.Status = STATUS_FILE_LOCK_CONFLICT; 10428 else if (ret == -EBADF) 10429 rsp->hdr.Status = STATUS_INVALID_HANDLE; 10430 else if (ret == -EFBIG || ret == -ENOSPC) 10431 rsp->hdr.Status = STATUS_DISK_FULL; 10432 else if (ret == -EINVAL) 10433 rsp->hdr.Status = STATUS_INVALID_PARAMETER; 10434 else if (ret == -EISDIR) 10435 rsp->hdr.Status = STATUS_FILE_IS_A_DIRECTORY; 10436 else if (ret == -E2BIG) 10437 rsp->hdr.Status = STATUS_INVALID_VIEW_SIZE; 10438 else 10439 rsp->hdr.Status = STATUS_UNEXPECTED_IO_ERROR; 10440 } 10441 10442 ci_rsp->ChunksWritten = cpu_to_le32(chunk_count_written); 10443 ci_rsp->ChunkBytesWritten = cpu_to_le32(chunk_size_written); 10444 ci_rsp->TotalBytesWritten = cpu_to_le32(total_size_written); 10445 out: 10446 ksmbd_fd_put(work, src_fp); 10447 ksmbd_fd_put(work, dst_fp); 10448 return ret; 10449 } 10450 10451 static __be32 idev_ipv4_address(struct in_device *idev) 10452 { 10453 __be32 addr = 0; 10454 10455 struct in_ifaddr *ifa; 10456 10457 rcu_read_lock(); 10458 in_dev_for_each_ifa_rcu(ifa, idev) { 10459 if (ifa->ifa_flags & IFA_F_SECONDARY) 10460 continue; 10461 10462 addr = ifa->ifa_address; 10463 break; 10464 } 10465 rcu_read_unlock(); 10466 return addr; 10467 } 10468 10469 static int fsctl_query_iface_info_ioctl(struct ksmbd_conn *conn, 10470 struct smb2_ioctl_rsp *rsp, 10471 unsigned int out_buf_len) 10472 { 10473 struct network_interface_info_ioctl_rsp *nii_rsp = NULL; 10474 int nbytes = 0; 10475 struct net_device *netdev; 10476 struct sockaddr_storage_rsp *sockaddr_storage; 10477 unsigned int flags; 10478 unsigned long long speed; 10479 10480 rtnl_lock(); 10481 for_each_netdev(&init_net, netdev) { 10482 bool ipv4_set = false; 10483 10484 if (netdev->type == ARPHRD_LOOPBACK) 10485 continue; 10486 10487 if (!ksmbd_find_netdev_name_iface_list(netdev->name)) 10488 continue; 10489 10490 flags = netif_get_flags(netdev); 10491 if (!(flags & IFF_RUNNING)) 10492 continue; 10493 ipv6_retry: 10494 if (out_buf_len < 10495 nbytes + sizeof(struct network_interface_info_ioctl_rsp)) { 10496 rtnl_unlock(); 10497 return -ENOSPC; 10498 } 10499 10500 nii_rsp = (struct network_interface_info_ioctl_rsp *) 10501 &rsp->Buffer[nbytes]; 10502 nii_rsp->IfIndex = cpu_to_le32(netdev->ifindex); 10503 10504 nii_rsp->Capability = 0; 10505 if (netdev->real_num_tx_queues > 1) 10506 nii_rsp->Capability |= RSS_CAPABLE; 10507 if (ksmbd_rdma_capable_netdev(netdev)) 10508 nii_rsp->Capability |= RDMA_CAPABLE; 10509 10510 nii_rsp->Next = cpu_to_le32(152); 10511 nii_rsp->Reserved = 0; 10512 10513 if (netdev->ethtool_ops->get_link_ksettings) { 10514 struct ethtool_link_ksettings cmd; 10515 10516 netdev->ethtool_ops->get_link_ksettings(netdev, &cmd); 10517 speed = cmd.base.speed; 10518 } else { 10519 ksmbd_debug(SMB, "%s %s\n", netdev->name, 10520 "speed is unknown, defaulting to 1Gb/sec"); 10521 speed = SPEED_1000; 10522 } 10523 10524 speed *= 1000000; 10525 nii_rsp->LinkSpeed = cpu_to_le64(speed); 10526 10527 sockaddr_storage = (struct sockaddr_storage_rsp *) 10528 nii_rsp->SockAddr_Storage; 10529 memset(sockaddr_storage, 0, 128); 10530 10531 if (!ipv4_set) { 10532 struct in_device *idev; 10533 10534 sockaddr_storage->Family = INTERNETWORK; 10535 sockaddr_storage->addr4.Port = 0; 10536 10537 idev = __in_dev_get_rtnl(netdev); 10538 if (!idev) 10539 continue; 10540 sockaddr_storage->addr4.IPv4Address = 10541 idev_ipv4_address(idev); 10542 nbytes += sizeof(struct network_interface_info_ioctl_rsp); 10543 ipv4_set = true; 10544 goto ipv6_retry; 10545 } else { 10546 struct inet6_dev *idev6; 10547 struct inet6_ifaddr *ifa; 10548 __u8 *ipv6_addr = sockaddr_storage->addr6.IPv6Address; 10549 10550 sockaddr_storage->Family = INTERNETWORKV6; 10551 sockaddr_storage->addr6.Port = 0; 10552 sockaddr_storage->addr6.FlowInfo = 0; 10553 10554 idev6 = __in6_dev_get(netdev); 10555 if (!idev6) 10556 continue; 10557 10558 list_for_each_entry(ifa, &idev6->addr_list, if_list) { 10559 if (ifa->flags & (IFA_F_TENTATIVE | 10560 IFA_F_DEPRECATED)) 10561 continue; 10562 memcpy(ipv6_addr, ifa->addr.s6_addr, 16); 10563 break; 10564 } 10565 sockaddr_storage->addr6.ScopeId = 0; 10566 nbytes += sizeof(struct network_interface_info_ioctl_rsp); 10567 } 10568 } 10569 rtnl_unlock(); 10570 10571 /* zero if this is last one */ 10572 if (nii_rsp) 10573 nii_rsp->Next = 0; 10574 10575 rsp->PersistentFileId = SMB2_NO_FID; 10576 rsp->VolatileFileId = SMB2_NO_FID; 10577 return nbytes; 10578 } 10579 10580 static int fsctl_validate_negotiate_info(struct ksmbd_conn *conn, 10581 struct validate_negotiate_info_req *neg_req, 10582 struct validate_negotiate_info_rsp *neg_rsp, 10583 unsigned int in_buf_len) 10584 { 10585 int ret = 0; 10586 int dialect; 10587 10588 if (in_buf_len < offsetof(struct validate_negotiate_info_req, Dialects) + 10589 le16_to_cpu(neg_req->DialectCount) * sizeof(__le16)) 10590 return -EINVAL; 10591 10592 dialect = ksmbd_lookup_dialect_by_id(neg_req->Dialects, 10593 neg_req->DialectCount); 10594 if (dialect == BAD_PROT_ID || dialect != conn->dialect) { 10595 ret = -EINVAL; 10596 goto err_out; 10597 } 10598 10599 if (memcmp(neg_req->Guid, conn->ClientGUID, SMB2_CLIENT_GUID_SIZE)) { 10600 ret = -EINVAL; 10601 goto err_out; 10602 } 10603 10604 if (le16_to_cpu(neg_req->SecurityMode) != conn->cli_sec_mode) { 10605 ret = -EINVAL; 10606 goto err_out; 10607 } 10608 10609 if (le32_to_cpu(neg_req->Capabilities) != conn->cli_cap) { 10610 ret = -EINVAL; 10611 goto err_out; 10612 } 10613 10614 neg_rsp->Capabilities = cpu_to_le32(conn->vals->req_capabilities); 10615 memset(neg_rsp->Guid, 0, SMB2_CLIENT_GUID_SIZE); 10616 neg_rsp->SecurityMode = cpu_to_le16(conn->srv_sec_mode); 10617 neg_rsp->Dialect = cpu_to_le16(conn->dialect); 10618 err_out: 10619 return ret; 10620 } 10621 10622 static int fsctl_query_allocated_ranges(struct ksmbd_work *work, u64 id, 10623 struct file_allocated_range_buffer *qar_req, 10624 struct file_allocated_range_buffer *qar_rsp, 10625 unsigned int in_count, unsigned int *out_count) 10626 { 10627 struct ksmbd_file *fp; 10628 loff_t start, length; 10629 int ret = 0; 10630 10631 *out_count = 0; 10632 10633 start = le64_to_cpu(qar_req->file_offset); 10634 length = le64_to_cpu(qar_req->length); 10635 10636 if (start < 0 || length < 0) 10637 return -EINVAL; 10638 10639 fp = ksmbd_lookup_fd_fast(work, id); 10640 if (!fp) 10641 return -ENOENT; 10642 10643 if (!(fp->daccess & FILE_READ_DATA_LE)) { 10644 ret = -EACCES; 10645 goto out; 10646 } 10647 10648 if (!in_count) { 10649 struct file_allocated_range_buffer range; 10650 10651 ret = ksmbd_vfs_query_allocated_ranges(fp, start, length, 10652 &range, 1, out_count); 10653 if ((!ret || ret == -E2BIG) && *out_count) 10654 ret = -ENOSPC; 10655 *out_count = 0; 10656 } else { 10657 ret = ksmbd_vfs_query_allocated_ranges(fp, start, length, 10658 qar_rsp, in_count, 10659 out_count); 10660 } 10661 if (ret && ret != -E2BIG) 10662 *out_count = 0; 10663 10664 out: 10665 ksmbd_fd_put(work, fp); 10666 return ret; 10667 } 10668 10669 static int fsctl_pipe_transceive(struct ksmbd_work *work, u64 id, 10670 unsigned int out_buf_len, 10671 struct smb2_ioctl_req *req, 10672 struct smb2_ioctl_rsp *rsp) 10673 { 10674 struct ksmbd_rpc_command *rpc_resp; 10675 char *data_buf = (char *)req + le32_to_cpu(req->InputOffset); 10676 int nbytes = 0; 10677 10678 rpc_resp = ksmbd_rpc_ioctl(work->sess, id, data_buf, 10679 le32_to_cpu(req->InputCount)); 10680 if (rpc_resp) { 10681 if (rpc_resp->flags == KSMBD_RPC_SOME_NOT_MAPPED) { 10682 /* 10683 * set STATUS_SOME_NOT_MAPPED response 10684 * for unknown domain sid. 10685 */ 10686 rsp->hdr.Status = STATUS_SOME_NOT_MAPPED; 10687 } else if (rpc_resp->flags == KSMBD_RPC_ENOTIMPLEMENTED) { 10688 rsp->hdr.Status = STATUS_NOT_SUPPORTED; 10689 goto out; 10690 } else if (rpc_resp->flags != KSMBD_RPC_OK) { 10691 rsp->hdr.Status = STATUS_INVALID_PARAMETER; 10692 goto out; 10693 } 10694 10695 nbytes = rpc_resp->payload_sz; 10696 if (rpc_resp->payload_sz > out_buf_len) { 10697 rsp->hdr.Status = STATUS_BUFFER_OVERFLOW; 10698 nbytes = out_buf_len; 10699 } 10700 10701 if (!rpc_resp->payload_sz) { 10702 rsp->hdr.Status = 10703 STATUS_UNEXPECTED_IO_ERROR; 10704 goto out; 10705 } 10706 10707 memcpy((char *)rsp->Buffer, rpc_resp->payload, nbytes); 10708 } 10709 out: 10710 kvfree(rpc_resp); 10711 return nbytes; 10712 } 10713 10714 static inline int fsctl_set_sparse(struct ksmbd_work *work, u64 id, 10715 struct file_sparse *sparse) 10716 { 10717 struct ksmbd_file *fp; 10718 struct mnt_idmap *idmap; 10719 int ret = 0; 10720 __le32 old_fattr; 10721 10722 if (!test_tree_conn_flag(work->tcon, KSMBD_TREE_CONN_FLAG_WRITABLE)) { 10723 ksmbd_debug(SMB, "User does not have write permission\n"); 10724 return -EACCES; 10725 } 10726 10727 fp = ksmbd_lookup_fd_fast(work, id); 10728 if (!fp) 10729 return -ENOENT; 10730 10731 if (S_ISDIR(file_inode(fp->filp)->i_mode)) { 10732 ret = -EINVAL; 10733 goto out; 10734 } 10735 10736 if (!(fp->daccess & (FILE_WRITE_DATA_LE | FILE_APPEND_DATA_LE | 10737 FILE_WRITE_ATTRIBUTES_LE))) { 10738 ret = -EACCES; 10739 goto out; 10740 } 10741 10742 idmap = file_mnt_idmap(fp->filp); 10743 10744 old_fattr = fp->f_ci->m_fattr; 10745 if (!sparse->SetSparse && 10746 (old_fattr & FILE_ATTRIBUTE_SPARSE_FILE_LE)) { 10747 ret = ksmbd_vfs_zero_holes(fp); 10748 if (ret) 10749 goto out; 10750 } 10751 10752 if (sparse->SetSparse) 10753 fp->f_ci->m_fattr |= FILE_ATTRIBUTE_SPARSE_FILE_LE; 10754 else 10755 fp->f_ci->m_fattr &= ~FILE_ATTRIBUTE_SPARSE_FILE_LE; 10756 10757 if (fp->f_ci->m_fattr != old_fattr) { 10758 const struct cred *saved_cred; 10759 struct xattr_dos_attrib da = {0}; 10760 10761 ret = ksmbd_vfs_get_dos_attrib_xattr(idmap, 10762 fp->filp->f_path.dentry, &da); 10763 if (ret <= 0) { 10764 da.version = 4; 10765 da.itime = fp->itime; 10766 da.create_time = fp->create_time; 10767 da.flags = XATTR_DOSINFO_CREATE_TIME | 10768 XATTR_DOSINFO_ITIME; 10769 } 10770 10771 da.attr = le32_to_cpu(fp->f_ci->m_fattr); 10772 da.flags |= XATTR_DOSINFO_ATTRIB; 10773 saved_cred = override_creds(fp->filp->f_cred); 10774 ret = ksmbd_vfs_set_dos_attrib_xattr(idmap, 10775 &fp->filp->f_path, 10776 &da, true); 10777 revert_creds(saved_cred); 10778 if (ret) 10779 fp->f_ci->m_fattr = old_fattr; 10780 } 10781 10782 out: 10783 ksmbd_fd_put(work, fp); 10784 return ret; 10785 } 10786 10787 static int fsctl_request_resume_key(struct ksmbd_work *work, 10788 struct smb2_ioctl_req *req, 10789 struct resume_key_ioctl_rsp *key_rsp) 10790 { 10791 struct ksmbd_file *fp; 10792 10793 fp = ksmbd_lookup_fd_slow(work, req->VolatileFileId, req->PersistentFileId); 10794 if (!fp) 10795 return -ENOENT; 10796 10797 memset(key_rsp, 0, sizeof(*key_rsp)); 10798 key_rsp->ResumeKeyU64[0] = req->VolatileFileId; 10799 key_rsp->ResumeKeyU64[1] = req->PersistentFileId; 10800 ksmbd_fd_put(work, fp); 10801 10802 return 0; 10803 } 10804 10805 /** 10806 * smb2_ioctl() - handler for smb2 ioctl command 10807 * @work: smb work containing ioctl command buffer 10808 * 10809 * Return: 0 on success, otherwise error 10810 */ 10811 int smb2_ioctl(struct ksmbd_work *work) 10812 { 10813 struct smb2_ioctl_req *req; 10814 struct smb2_ioctl_rsp *rsp; 10815 unsigned int cnt_code, nbytes = 0, out_buf_len, in_buf_len; 10816 u64 id = KSMBD_NO_FID, pid = KSMBD_NO_FID; 10817 struct ksmbd_conn *conn = work->conn; 10818 int ret = 0; 10819 char *buffer; 10820 bool no_fileid_ioctl = false; 10821 bool chseq_err = false; 10822 10823 ksmbd_debug(SMB, "Received smb2 ioctl request\n"); 10824 10825 if (work->next_smb2_rcv_hdr_off) { 10826 req = ksmbd_req_buf_next(work); 10827 rsp = ksmbd_resp_buf_next(work); 10828 if (smb2_compound_has_failed(work, &rsp->hdr)) 10829 return -EACCES; 10830 if (!has_file_id(req->VolatileFileId)) { 10831 ksmbd_debug(SMB, "Compound request set FID = %llu\n", 10832 work->compound_fid); 10833 id = work->compound_fid; 10834 pid = work->compound_pfid; 10835 } 10836 } else { 10837 req = smb_get_msg(work->request_buf); 10838 rsp = smb_get_msg(work->response_buf); 10839 } 10840 10841 if (!has_file_id(id)) { 10842 id = req->VolatileFileId; 10843 pid = req->PersistentFileId; 10844 } 10845 10846 if (req->Flags != cpu_to_le32(SMB2_0_IOCTL_IS_FSCTL)) { 10847 ret = -EOPNOTSUPP; 10848 goto out; 10849 } 10850 10851 buffer = (char *)req + le32_to_cpu(req->InputOffset); 10852 10853 cnt_code = le32_to_cpu(req->CtlCode); 10854 switch (cnt_code) { 10855 case FSCTL_DFS_GET_REFERRALS: 10856 case FSCTL_DFS_GET_REFERRALS_EX: 10857 case FSCTL_QUERY_NETWORK_INTERFACE_INFO: 10858 case FSCTL_VALIDATE_NEGOTIATE_INFO: 10859 case FSCTL_PIPE_WAIT: 10860 case FSCTL_PIPE_TRANSCEIVE: 10861 no_fileid_ioctl = true; 10862 break; 10863 default: 10864 break; 10865 } 10866 10867 if (!no_fileid_ioctl && has_file_id(id)) { 10868 struct ksmbd_file *fp; 10869 10870 fp = ksmbd_lookup_fd_slow(work, id, pid); 10871 if (!fp) { 10872 if (cnt_code == FSCTL_DUPLICATE_EXTENTS_TO_FILE) { 10873 rsp->hdr.Status = STATUS_FILE_CLOSED; 10874 goto out2; 10875 } 10876 ret = -ENOENT; 10877 goto out; 10878 } 10879 10880 ret = smb2_set_request_open(work, fp, &req->hdr, true, false); 10881 ksmbd_fd_put(work, fp); 10882 if (ret) { 10883 rsp->hdr.Status = STATUS_FILE_NOT_AVAILABLE; 10884 chseq_err = true; 10885 goto out; 10886 } 10887 } 10888 10889 ret = smb2_calc_max_out_buf_len(work, 10890 offsetof(struct smb2_ioctl_rsp, Buffer), 10891 le32_to_cpu(req->MaxOutputResponse)); 10892 if (ret < 0) { 10893 rsp->hdr.Status = STATUS_INVALID_PARAMETER; 10894 goto out; 10895 } 10896 out_buf_len = (unsigned int)ret; 10897 in_buf_len = le32_to_cpu(req->InputCount); 10898 10899 switch (cnt_code) { 10900 case FSCTL_SRV_ENUM_SNAPS: { 10901 struct srv_snapshot_array *snap_rsp; 10902 struct ksmbd_file *fp; 10903 10904 if (out_buf_len < sizeof(*snap_rsp)) { 10905 ret = -EINVAL; 10906 goto out; 10907 } 10908 10909 fp = ksmbd_lookup_fd_fast(work, id); 10910 if (!fp) { 10911 ret = -ENOENT; 10912 goto out; 10913 } 10914 ksmbd_fd_put(work, fp); 10915 10916 snap_rsp = (struct srv_snapshot_array *)rsp->Buffer; 10917 snap_rsp->NumberOfSnapShots = 0; 10918 snap_rsp->NumberOfSnapShotsReturned = 0; 10919 snap_rsp->SnapShotArraySize = cpu_to_le32(2); 10920 snap_rsp->Reserved = 0; 10921 nbytes = sizeof(*snap_rsp); 10922 break; 10923 } 10924 case FSCTL_DFS_GET_REFERRALS: 10925 case FSCTL_DFS_GET_REFERRALS_EX: 10926 /* Not support DFS yet */ 10927 ret = -EOPNOTSUPP; 10928 rsp->hdr.Status = STATUS_FS_DRIVER_REQUIRED; 10929 goto out2; 10930 case FSCTL_GET_COMPRESSION: { 10931 struct compress_ioctl *cmpr_rsp; 10932 struct ksmbd_file *fp; 10933 u16 fmt; 10934 10935 if (out_buf_len < sizeof(struct compress_ioctl)) { 10936 ret = -EINVAL; 10937 goto out; 10938 } 10939 10940 fp = ksmbd_lookup_fd_fast(work, id); 10941 if (!fp) { 10942 ret = -ENOENT; 10943 goto out; 10944 } 10945 10946 ret = ksmbd_vfs_get_compression(fp, &fmt); 10947 ksmbd_fd_put(work, fp); 10948 if (ret < 0) 10949 goto out; 10950 10951 cmpr_rsp = (struct compress_ioctl *)&rsp->Buffer[0]; 10952 cmpr_rsp->CompressionState = cpu_to_le16(fmt); 10953 nbytes = sizeof(struct compress_ioctl); 10954 rsp->PersistentFileId = req->PersistentFileId; 10955 rsp->VolatileFileId = req->VolatileFileId; 10956 break; 10957 } 10958 case FSCTL_SET_COMPRESSION: { 10959 struct compress_ioctl *cmpr_req; 10960 struct ksmbd_file *fp; 10961 10962 if (in_buf_len < sizeof(struct compress_ioctl)) { 10963 ret = -EINVAL; 10964 goto out; 10965 } 10966 10967 if (!test_tree_conn_flag(work->tcon, KSMBD_TREE_CONN_FLAG_WRITABLE)) { 10968 ksmbd_debug(SMB, "User does not have write permission\n"); 10969 ret = -EACCES; 10970 goto out; 10971 } 10972 10973 cmpr_req = (struct compress_ioctl *)buffer; 10974 fp = ksmbd_lookup_fd_fast(work, id); 10975 if (!fp) { 10976 ret = -ENOENT; 10977 goto out; 10978 } 10979 10980 ret = ksmbd_vfs_set_compression(work, fp, le16_to_cpu(cmpr_req->CompressionState)); 10981 ksmbd_fd_put(work, fp); 10982 if (ret) 10983 goto out; 10984 break; 10985 } 10986 case FSCTL_CREATE_OR_GET_OBJECT_ID: 10987 { 10988 struct file_object_buf_type1_ioctl_rsp *obj_buf; 10989 struct ksmbd_file *fp; 10990 10991 fp = ksmbd_lookup_fd_fast(work, id); 10992 if (!fp) { 10993 ret = -EBADF; 10994 rsp->hdr.Status = STATUS_FILE_CLOSED; 10995 goto out2; 10996 } 10997 10998 if (out_buf_len < sizeof(struct file_object_buf_type1_ioctl_rsp)) { 10999 ksmbd_fd_put(work, fp); 11000 ret = -EINVAL; 11001 goto out; 11002 } 11003 ksmbd_fd_put(work, fp); 11004 11005 nbytes = sizeof(struct file_object_buf_type1_ioctl_rsp); 11006 obj_buf = (struct file_object_buf_type1_ioctl_rsp *) 11007 &rsp->Buffer[0]; 11008 11009 /* 11010 * TODO: This is dummy implementation to pass smbtorture 11011 * Need to check correct response later 11012 */ 11013 memset(obj_buf->ObjectId, 0x0, 16); 11014 memset(obj_buf->BirthVolumeId, 0x0, 16); 11015 memset(obj_buf->BirthObjectId, 0x0, 16); 11016 memset(obj_buf->DomainId, 0x0, 16); 11017 11018 break; 11019 } 11020 case FSCTL_PIPE_TRANSCEIVE: 11021 out_buf_len = min_t(u32, KSMBD_IPC_MAX_PAYLOAD, out_buf_len); 11022 nbytes = fsctl_pipe_transceive(work, id, out_buf_len, req, rsp); 11023 break; 11024 case FSCTL_VALIDATE_NEGOTIATE_INFO: 11025 if (conn->dialect < SMB30_PROT_ID) { 11026 ret = -EOPNOTSUPP; 11027 goto out; 11028 } 11029 11030 if (in_buf_len < offsetof(struct validate_negotiate_info_req, 11031 Dialects)) { 11032 ret = -EINVAL; 11033 goto out; 11034 } 11035 11036 if (out_buf_len < sizeof(struct validate_negotiate_info_rsp)) { 11037 ret = -EINVAL; 11038 goto out; 11039 } 11040 11041 ret = fsctl_validate_negotiate_info(conn, 11042 (struct validate_negotiate_info_req *)buffer, 11043 (struct validate_negotiate_info_rsp *)&rsp->Buffer[0], 11044 in_buf_len); 11045 if (ret < 0) 11046 goto out; 11047 11048 nbytes = sizeof(struct validate_negotiate_info_rsp); 11049 rsp->PersistentFileId = SMB2_NO_FID; 11050 rsp->VolatileFileId = SMB2_NO_FID; 11051 break; 11052 case FSCTL_QUERY_NETWORK_INTERFACE_INFO: 11053 if (req->PersistentFileId != SMB2_NO_FID || 11054 req->VolatileFileId != SMB2_NO_FID) { 11055 ret = -EINVAL; 11056 goto out; 11057 } 11058 11059 ret = fsctl_query_iface_info_ioctl(conn, rsp, out_buf_len); 11060 if (ret < 0) 11061 goto out; 11062 nbytes = ret; 11063 break; 11064 case FSCTL_SRV_REQUEST_RESUME_KEY: 11065 if (out_buf_len < sizeof(struct resume_key_ioctl_rsp)) { 11066 ret = -EINVAL; 11067 goto out; 11068 } 11069 11070 ret = fsctl_request_resume_key(work, req, 11071 (struct resume_key_ioctl_rsp *)&rsp->Buffer[0]); 11072 if (ret < 0) 11073 goto out; 11074 rsp->PersistentFileId = req->PersistentFileId; 11075 rsp->VolatileFileId = req->VolatileFileId; 11076 nbytes = sizeof(struct resume_key_ioctl_rsp); 11077 break; 11078 case FSCTL_SRV_COPYCHUNK: 11079 case FSCTL_SRV_COPYCHUNK_WRITE: 11080 if (!test_tree_conn_flag(work->tcon, KSMBD_TREE_CONN_FLAG_WRITABLE)) { 11081 ksmbd_debug(SMB, 11082 "User does not have write permission\n"); 11083 ret = -EACCES; 11084 goto out; 11085 } 11086 11087 if (in_buf_len < offsetof(struct copychunk_ioctl_req, Chunks)) { 11088 ret = -EINVAL; 11089 goto out; 11090 } 11091 11092 if (out_buf_len < sizeof(struct copychunk_ioctl_rsp)) { 11093 ret = -EINVAL; 11094 goto out; 11095 } 11096 11097 nbytes = sizeof(struct copychunk_ioctl_rsp); 11098 rsp->VolatileFileId = req->VolatileFileId; 11099 rsp->PersistentFileId = req->PersistentFileId; 11100 fsctl_copychunk(work, 11101 (struct copychunk_ioctl_req *)buffer, 11102 le32_to_cpu(req->CtlCode), 11103 le32_to_cpu(req->InputCount), 11104 req->VolatileFileId, 11105 req->PersistentFileId, 11106 rsp); 11107 break; 11108 case FSCTL_SET_SPARSE: 11109 { 11110 struct file_sparse sparse = {0}; 11111 11112 if (in_buf_len && in_buf_len < sizeof(struct file_sparse)) { 11113 ret = -EINVAL; 11114 goto out; 11115 } 11116 11117 *(u8 *)&sparse = 1; 11118 ret = fsctl_set_sparse(work, id, in_buf_len ? 11119 (struct file_sparse *)buffer : &sparse); 11120 if (ret < 0) 11121 goto out; 11122 break; 11123 } 11124 case FSCTL_SET_ZERO_DATA: 11125 { 11126 struct file_zero_data_information *zero_data; 11127 struct ksmbd_file *fp; 11128 loff_t off, len, bfz; 11129 11130 if (!test_tree_conn_flag(work->tcon, KSMBD_TREE_CONN_FLAG_WRITABLE)) { 11131 ksmbd_debug(SMB, 11132 "User does not have write permission\n"); 11133 ret = -EACCES; 11134 goto out; 11135 } 11136 11137 if (in_buf_len < sizeof(struct file_zero_data_information)) { 11138 ret = -EINVAL; 11139 goto out; 11140 } 11141 11142 zero_data = 11143 (struct file_zero_data_information *)buffer; 11144 11145 off = le64_to_cpu(zero_data->FileOffset); 11146 bfz = le64_to_cpu(zero_data->BeyondFinalZero); 11147 if (off < 0 || bfz < 0 || off > bfz) { 11148 ret = -EINVAL; 11149 goto out; 11150 } 11151 11152 len = bfz - off; 11153 if (len) { 11154 fp = ksmbd_lookup_fd_fast(work, id); 11155 if (!fp) { 11156 ret = -ENOENT; 11157 goto out; 11158 } 11159 11160 if (!(fp->daccess & FILE_WRITE_DATA_LE)) { 11161 ksmbd_fd_put(work, fp); 11162 ret = -EACCES; 11163 goto out; 11164 } 11165 11166 ret = ksmbd_vfs_zero_data(work, fp, off, len); 11167 ksmbd_fd_put(work, fp); 11168 if (ret == -EAGAIN) { 11169 rsp->hdr.Status = STATUS_FILE_LOCK_CONFLICT; 11170 ret = 0; 11171 goto out; 11172 } else if (ret < 0) { 11173 goto out; 11174 } 11175 } 11176 break; 11177 } 11178 case FSCTL_FILE_LEVEL_TRIM: 11179 { 11180 struct file_level_trim *trim_req; 11181 struct file_level_trim_output *trim_rsp; 11182 struct ksmbd_file *fp; 11183 u32 i, num_ranges; 11184 11185 if (!test_tree_conn_flag(work->tcon, KSMBD_TREE_CONN_FLAG_WRITABLE)) { 11186 ksmbd_debug(SMB, 11187 "User does not have write permission\n"); 11188 ret = -EACCES; 11189 goto out; 11190 } 11191 11192 if (in_buf_len < offsetof(struct file_level_trim, Ranges)) { 11193 ret = -EINVAL; 11194 goto out; 11195 } 11196 11197 if (out_buf_len < sizeof(struct file_level_trim_output)) { 11198 ret = -EINVAL; 11199 goto out; 11200 } 11201 11202 trim_req = (struct file_level_trim *)buffer; 11203 num_ranges = le32_to_cpu(trim_req->NumRanges); 11204 if (num_ranges > 11205 (in_buf_len - offsetof(struct file_level_trim, Ranges)) / 11206 sizeof(struct file_level_trim_range)) { 11207 ret = -EINVAL; 11208 goto out; 11209 } 11210 11211 fp = ksmbd_lookup_fd_fast(work, id); 11212 if (!fp) { 11213 ret = -ENOENT; 11214 goto out; 11215 } 11216 11217 if (!(fp->daccess & FILE_WRITE_DATA_LE)) { 11218 ksmbd_fd_put(work, fp); 11219 ret = -EACCES; 11220 goto out; 11221 } 11222 11223 trim_rsp = (struct file_level_trim_output *)&rsp->Buffer[0]; 11224 trim_rsp->NumRangesProcessed = 0; 11225 for (i = 0; i < num_ranges; i++) { 11226 loff_t off = le64_to_cpu(trim_req->Ranges[i].Offset); 11227 loff_t len = le64_to_cpu(trim_req->Ranges[i].Length); 11228 11229 if (off < 0 || len < 0) { 11230 ret = -EINVAL; 11231 break; 11232 } 11233 11234 if (!len) { 11235 trim_rsp->NumRangesProcessed = 11236 cpu_to_le32(i + 1); 11237 continue; 11238 } 11239 11240 ret = ksmbd_vfs_trim_data(work, fp, off, len); 11241 if (ret) 11242 break; 11243 trim_rsp->NumRangesProcessed = cpu_to_le32(i + 1); 11244 } 11245 ksmbd_fd_put(work, fp); 11246 if (ret == -EAGAIN) { 11247 rsp->hdr.Status = STATUS_FILE_LOCK_CONFLICT; 11248 ret = 0; 11249 goto out; 11250 } else if (ret < 0) { 11251 goto out; 11252 } 11253 11254 nbytes = sizeof(struct file_level_trim_output); 11255 break; 11256 } 11257 case FSCTL_QUERY_ALLOCATED_RANGES: 11258 if (in_buf_len < sizeof(struct file_allocated_range_buffer)) { 11259 ret = -EINVAL; 11260 goto out; 11261 } 11262 11263 ret = fsctl_query_allocated_ranges(work, id, 11264 (struct file_allocated_range_buffer *)buffer, 11265 (struct file_allocated_range_buffer *)&rsp->Buffer[0], 11266 out_buf_len / 11267 sizeof(struct file_allocated_range_buffer), &nbytes); 11268 if (ret == -E2BIG) { 11269 rsp->hdr.Status = STATUS_BUFFER_OVERFLOW; 11270 } else if (ret < 0) { 11271 nbytes = 0; 11272 goto out; 11273 } 11274 11275 nbytes *= sizeof(struct file_allocated_range_buffer); 11276 break; 11277 case FSCTL_GET_REPARSE_POINT: 11278 { 11279 struct reparse_data_buffer *reparse_ptr; 11280 struct ksmbd_file *fp; 11281 11282 if (out_buf_len < sizeof(struct reparse_data_buffer)) { 11283 ret = -EINVAL; 11284 goto out; 11285 } 11286 11287 reparse_ptr = (struct reparse_data_buffer *)&rsp->Buffer[0]; 11288 fp = ksmbd_lookup_fd_fast(work, id); 11289 if (!fp) { 11290 pr_err("not found fp!!\n"); 11291 ret = -ENOENT; 11292 goto out; 11293 } 11294 11295 reparse_ptr->ReparseTag = 11296 smb2_get_reparse_tag_special_file(file_inode(fp->filp)->i_mode); 11297 reparse_ptr->ReparseDataLength = 0; 11298 ksmbd_fd_put(work, fp); 11299 nbytes = sizeof(struct reparse_data_buffer); 11300 break; 11301 } 11302 case FSCTL_DUPLICATE_EXTENTS_TO_FILE: 11303 { 11304 struct ksmbd_file *fp_in, *fp_out = NULL; 11305 struct duplicate_extents_to_file *dup_ext; 11306 loff_t src_off, dst_off, length, cloned; 11307 11308 if (in_buf_len < sizeof(struct duplicate_extents_to_file)) { 11309 ret = -EINVAL; 11310 goto out; 11311 } 11312 11313 dup_ext = (struct duplicate_extents_to_file *)buffer; 11314 11315 fp_in = ksmbd_lookup_fd_slow(work, dup_ext->VolatileFileHandle, 11316 dup_ext->PersistentFileHandle); 11317 if (!fp_in) { 11318 pr_err("not found file handle in duplicate extent to file\n"); 11319 ret = -EBADF; 11320 rsp->hdr.Status = STATUS_INVALID_HANDLE; 11321 goto out2; 11322 } 11323 11324 fp_out = ksmbd_lookup_fd_fast(work, id); 11325 if (!fp_out) { 11326 pr_err("not found fp\n"); 11327 ret = -EBADF; 11328 rsp->hdr.Status = STATUS_FILE_CLOSED; 11329 ksmbd_fd_put(work, fp_in); 11330 goto out2; 11331 } 11332 11333 if (!test_tree_conn_flag(work->tcon, 11334 KSMBD_TREE_CONN_FLAG_WRITABLE)) { 11335 ret = -EACCES; 11336 goto dup_ext_out; 11337 } 11338 11339 if (!(fp_out->daccess & FILE_WRITE_DATA_LE)) { 11340 ret = -EACCES; 11341 goto dup_ext_out; 11342 } 11343 if (!(fp_in->daccess & FILE_READ_DATA_LE)) { 11344 ret = -EACCES; 11345 goto dup_ext_out; 11346 } 11347 11348 src_off = le64_to_cpu(dup_ext->SourceFileOffset); 11349 dst_off = le64_to_cpu(dup_ext->TargetFileOffset); 11350 length = le64_to_cpu(dup_ext->ByteCount); 11351 if (src_off < 0 || dst_off < 0 || length < 0 || 11352 src_off + length < src_off || dst_off + length < dst_off) { 11353 ret = -EINVAL; 11354 goto dup_ext_out; 11355 } 11356 if (src_off + length > i_size_read(file_inode(fp_in->filp))) { 11357 ret = -EOPNOTSUPP; 11358 goto dup_ext_out; 11359 } 11360 if (dst_off + length > i_size_read(file_inode(fp_out->filp))) 11361 goto dup_ext_out; 11362 if ((fp_in->f_ci->m_fattr & FILE_ATTRIBUTE_SPARSE_FILE_LE) && 11363 !(fp_out->f_ci->m_fattr & FILE_ATTRIBUTE_SPARSE_FILE_LE)) { 11364 ret = -EOPNOTSUPP; 11365 goto dup_ext_out; 11366 } 11367 if (file_inode(fp_in->filp) == file_inode(fp_out->filp) && 11368 dst_off + length > src_off && 11369 dst_off < src_off + length) { 11370 ret = -EOPNOTSUPP; 11371 goto dup_ext_out; 11372 } 11373 11374 cloned = vfs_clone_file_range(fp_in->filp, src_off, 11375 fp_out->filp, dst_off, length, 0); 11376 if (cloned != length) { 11377 cloned = vfs_copy_file_range(fp_in->filp, src_off, 11378 fp_out->filp, dst_off, 11379 length, 0); 11380 if (cloned != length) { 11381 if (cloned < 0) 11382 ret = cloned; 11383 else 11384 ret = -EINVAL; 11385 } 11386 } 11387 11388 dup_ext_out: 11389 ksmbd_fd_put(work, fp_in); 11390 ksmbd_fd_put(work, fp_out); 11391 if (ret < 0) 11392 goto out; 11393 break; 11394 } 11395 default: 11396 ksmbd_debug(SMB, "not implemented yet ioctl command 0x%x\n", 11397 cnt_code); 11398 ret = -EOPNOTSUPP; 11399 goto out; 11400 } 11401 11402 rsp->CtlCode = cpu_to_le32(cnt_code); 11403 rsp->InputCount = cpu_to_le32(0); 11404 rsp->InputOffset = cpu_to_le32(112); 11405 rsp->OutputOffset = cpu_to_le32(112); 11406 rsp->OutputCount = cpu_to_le32(nbytes); 11407 rsp->StructureSize = cpu_to_le16(49); 11408 rsp->Reserved = cpu_to_le16(0); 11409 rsp->Flags = cpu_to_le32(0); 11410 rsp->Reserved2 = cpu_to_le32(0); 11411 ret = ksmbd_iov_pin_rsp(work, rsp, sizeof(struct smb2_ioctl_rsp) + nbytes); 11412 if (!ret) 11413 return ret; 11414 11415 out: 11416 if (ret == -EACCES) 11417 rsp->hdr.Status = STATUS_ACCESS_DENIED; 11418 else if (ret == -ENOENT) 11419 rsp->hdr.Status = STATUS_OBJECT_NAME_NOT_FOUND; 11420 else if (ret == -EOPNOTSUPP) 11421 rsp->hdr.Status = STATUS_NOT_SUPPORTED; 11422 else if (ret == -ENOSPC) 11423 rsp->hdr.Status = STATUS_BUFFER_TOO_SMALL; 11424 else if (!chseq_err && (ret < 0 || rsp->hdr.Status == 0)) 11425 rsp->hdr.Status = STATUS_INVALID_PARAMETER; 11426 11427 out2: 11428 smb2_set_err_rsp(work); 11429 return ret; 11430 } 11431 11432 /** 11433 * smb20_oplock_break_ack() - handler for smb2.0 oplock break command 11434 * @work: smb work containing oplock break command buffer 11435 * 11436 * Return: 0 11437 */ 11438 static void smb20_oplock_break_ack(struct ksmbd_work *work) 11439 { 11440 struct smb2_oplock_break *req; 11441 struct smb2_oplock_break *rsp; 11442 struct ksmbd_file *fp; 11443 struct oplock_info *opinfo = NULL; 11444 __le32 status = STATUS_SUCCESS; 11445 int ret; 11446 u64 volatile_id, persistent_id; 11447 char req_oplevel = 0, rsp_oplevel = 0; 11448 11449 WORK_BUFFERS(work, req, rsp); 11450 11451 volatile_id = req->VolatileFid; 11452 persistent_id = req->PersistentFid; 11453 req_oplevel = req->OplockLevel; 11454 ksmbd_debug(OPLOCK, "v_id %llu, p_id %llu request oplock level %d\n", 11455 volatile_id, persistent_id, req_oplevel); 11456 11457 fp = ksmbd_lookup_fd_slow(work, volatile_id, persistent_id); 11458 if (!fp) { 11459 rsp->hdr.Status = STATUS_FILE_CLOSED; 11460 smb2_set_err_rsp(work); 11461 return; 11462 } 11463 11464 ret = smb2_set_request_open(work, fp, &req->hdr, false, false); 11465 if (ret) { 11466 rsp->hdr.Status = STATUS_FILE_CLOSED; 11467 smb2_set_err_rsp(work); 11468 ksmbd_fd_put(work, fp); 11469 return; 11470 } 11471 11472 opinfo = opinfo_get(fp); 11473 if (!opinfo) { 11474 pr_err("unexpected null oplock_info\n"); 11475 rsp->hdr.Status = STATUS_INVALID_OPLOCK_PROTOCOL; 11476 smb2_set_err_rsp(work); 11477 ksmbd_fd_put(work, fp); 11478 return; 11479 } 11480 11481 if (opinfo->op_state != OPLOCK_ACK_WAIT) { 11482 ksmbd_debug(SMB, "unexpected oplock state 0x%x\n", 11483 opinfo->op_state); 11484 if (smb3_hdr_replay(&req->hdr) && 11485 opinfo->op_state == OPLOCK_STATE_NONE) { 11486 rsp->StructureSize = cpu_to_le16(24); 11487 rsp->OplockLevel = opinfo->level; 11488 rsp->Reserved = 0; 11489 rsp->Reserved2 = 0; 11490 rsp->VolatileFid = volatile_id; 11491 rsp->PersistentFid = persistent_id; 11492 ret = ksmbd_iov_pin_rsp(work, rsp, 11493 sizeof(struct smb2_oplock_break)); 11494 if (ret) 11495 ksmbd_debug(SMB, 11496 "failed to pin replayed oplock break response: %d\n", 11497 ret); 11498 goto out_no_state_change; 11499 } 11500 if (opinfo->level == SMB2_OPLOCK_LEVEL_NONE) 11501 status = STATUS_INVALID_OPLOCK_PROTOCOL; 11502 else 11503 status = STATUS_INVALID_DEVICE_STATE; 11504 goto err_out; 11505 } 11506 11507 if (req_oplevel == SMB2_OPLOCK_LEVEL_LEASE) { 11508 opinfo->level = SMB2_OPLOCK_LEVEL_NONE; 11509 status = STATUS_INVALID_PARAMETER; 11510 goto err_out; 11511 } 11512 11513 if (opinfo->level == SMB2_OPLOCK_LEVEL_NONE) { 11514 status = STATUS_INVALID_OPLOCK_PROTOCOL; 11515 goto err_out; 11516 } 11517 11518 if (opinfo->level == SMB2_OPLOCK_LEVEL_EXCLUSIVE && 11519 req_oplevel != SMB2_OPLOCK_LEVEL_II && 11520 req_oplevel != SMB2_OPLOCK_LEVEL_NONE) { 11521 opinfo->level = SMB2_OPLOCK_LEVEL_NONE; 11522 status = STATUS_INVALID_OPLOCK_PROTOCOL; 11523 goto err_out; 11524 } 11525 11526 if (opinfo->level == SMB2_OPLOCK_LEVEL_BATCH && 11527 req_oplevel != SMB2_OPLOCK_LEVEL_II && 11528 req_oplevel != SMB2_OPLOCK_LEVEL_NONE && 11529 req_oplevel != SMB2_OPLOCK_LEVEL_EXCLUSIVE) { 11530 opinfo->level = SMB2_OPLOCK_LEVEL_NONE; 11531 status = STATUS_INVALID_OPLOCK_PROTOCOL; 11532 goto err_out; 11533 } 11534 11535 if (opinfo->level == SMB2_OPLOCK_LEVEL_II && 11536 req_oplevel != SMB2_OPLOCK_LEVEL_NONE) { 11537 opinfo->level = SMB2_OPLOCK_LEVEL_NONE; 11538 status = STATUS_INVALID_OPLOCK_PROTOCOL; 11539 goto err_out; 11540 } 11541 11542 if (req_oplevel == SMB2_OPLOCK_LEVEL_EXCLUSIVE) 11543 rsp_oplevel = SMB2_OPLOCK_LEVEL_NONE; 11544 else 11545 rsp_oplevel = req_oplevel; 11546 11547 opinfo->level = rsp_oplevel; 11548 11549 rsp->StructureSize = cpu_to_le16(24); 11550 rsp->OplockLevel = rsp_oplevel; 11551 rsp->Reserved = 0; 11552 rsp->Reserved2 = 0; 11553 rsp->VolatileFid = volatile_id; 11554 rsp->PersistentFid = persistent_id; 11555 ret = ksmbd_iov_pin_rsp(work, rsp, sizeof(struct smb2_oplock_break)); 11556 if (ret) 11557 ksmbd_debug(SMB, "failed to pin oplock break response: %d\n", 11558 ret); 11559 goto out; 11560 11561 err_out: 11562 rsp->hdr.Status = status; 11563 smb2_set_err_rsp(work); 11564 11565 out: 11566 spin_lock(&opinfo->state_lock); 11567 if (opinfo->op_state != OPLOCK_CLOSING) 11568 opinfo->op_state = OPLOCK_STATE_NONE; 11569 spin_unlock(&opinfo->state_lock); 11570 wake_up_interruptible_all(&opinfo->oplock_q); 11571 out_no_state_change: 11572 opinfo_put(opinfo); 11573 ksmbd_fd_put(work, fp); 11574 } 11575 11576 static bool smb2_lease_state_valid(__le32 state) 11577 { 11578 return !(state & ~(SMB2_LEASE_READ_CACHING_LE | 11579 SMB2_LEASE_HANDLE_CACHING_LE | 11580 SMB2_LEASE_WRITE_CACHING_LE)); 11581 } 11582 11583 static int check_lease_state(struct lease *lease, __le32 req_state) 11584 { 11585 if (smb2_lease_state_valid(req_state) && 11586 !(req_state & ~lease->new_state)) 11587 return 0; 11588 11589 return 1; 11590 } 11591 11592 /** 11593 * smb21_lease_break_ack() - handler for smb2.1 lease break command 11594 * @work: smb work containing lease break command buffer 11595 * 11596 * Return: 0 11597 */ 11598 static void smb21_lease_break_ack(struct ksmbd_work *work) 11599 { 11600 struct ksmbd_conn *conn = work->conn; 11601 struct smb2_lease_ack *req; 11602 struct smb2_lease_ack *rsp; 11603 struct oplock_info *opinfo; 11604 int ret = 0; 11605 __le32 lease_state; 11606 struct lease *lease; 11607 11608 WORK_BUFFERS(work, req, rsp); 11609 11610 ksmbd_debug(OPLOCK, "smb21 lease break, lease state(0x%x)\n", 11611 le32_to_cpu(req->LeaseState)); 11612 opinfo = lookup_lease_in_table(conn, req->LeaseKey); 11613 if (!opinfo) { 11614 ksmbd_debug(OPLOCK, "file not opened\n"); 11615 smb2_set_err_rsp(work); 11616 rsp->hdr.Status = STATUS_UNSUCCESSFUL; 11617 return; 11618 } 11619 lease = opinfo->o_lease; 11620 11621 if (opinfo->op_state == OPLOCK_STATE_NONE) { 11622 pr_err("unexpected lease break state 0x%x\n", 11623 opinfo->op_state); 11624 if (smb3_hdr_replay(&req->hdr)) 11625 goto replay_rsp; 11626 rsp->hdr.Status = STATUS_UNSUCCESSFUL; 11627 goto err_out; 11628 } 11629 11630 if (!atomic_read(&opinfo->breaking_cnt)) { 11631 if (smb3_hdr_replay(&req->hdr)) 11632 goto replay_rsp; 11633 rsp->hdr.Status = STATUS_UNSUCCESSFUL; 11634 goto err_out; 11635 } 11636 11637 if (check_lease_state(lease, req->LeaseState)) { 11638 rsp->hdr.Status = STATUS_REQUEST_NOT_ACCEPTED; 11639 ksmbd_debug(OPLOCK, 11640 "req lease state: 0x%x, expected state: 0x%x\n", 11641 req->LeaseState, lease->new_state); 11642 goto err_out; 11643 } 11644 11645 lease_state = req->LeaseState; 11646 lease->state = lease_state; 11647 lease->new_state = SMB2_LEASE_NONE_LE; 11648 lease_update_oplock_levels(lease); 11649 11650 rsp->StructureSize = cpu_to_le16(36); 11651 rsp->Reserved = 0; 11652 rsp->Flags = 0; 11653 memcpy(rsp->LeaseKey, req->LeaseKey, 16); 11654 rsp->LeaseState = lease_state; 11655 rsp->LeaseDuration = 0; 11656 ret = ksmbd_iov_pin_rsp(work, rsp, sizeof(struct smb2_lease_ack)); 11657 if (ret) 11658 goto err_out; 11659 11660 spin_lock(&opinfo->state_lock); 11661 if (opinfo->op_state != OPLOCK_CLOSING) 11662 opinfo->op_state = OPLOCK_STATE_NONE; 11663 spin_unlock(&opinfo->state_lock); 11664 wake_up_interruptible_all(&opinfo->oplock_q); 11665 atomic_dec_if_positive(&opinfo->breaking_cnt); 11666 wake_up_interruptible_all(&opinfo->oplock_brk); 11667 opinfo_put(opinfo); 11668 return; 11669 11670 replay_rsp: 11671 rsp->StructureSize = cpu_to_le16(36); 11672 rsp->Reserved = 0; 11673 rsp->Flags = 0; 11674 memcpy(rsp->LeaseKey, req->LeaseKey, 16); 11675 rsp->LeaseState = lease->state; 11676 rsp->LeaseDuration = 0; 11677 ret = ksmbd_iov_pin_rsp(work, rsp, sizeof(struct smb2_lease_ack)); 11678 if (ret) 11679 goto err_out; 11680 opinfo_put(opinfo); 11681 return; 11682 11683 err_out: 11684 smb2_set_err_rsp(work); 11685 opinfo_put(opinfo); 11686 return; 11687 } 11688 11689 /** 11690 * smb2_oplock_break() - dispatcher for smb2.0 and 2.1 oplock/lease break 11691 * @work: smb work containing oplock/lease break command buffer 11692 * 11693 * Return: 0 on success, otherwise error 11694 */ 11695 int smb2_oplock_break(struct ksmbd_work *work) 11696 { 11697 struct smb2_oplock_break *req; 11698 struct smb2_oplock_break *rsp; 11699 11700 ksmbd_debug(SMB, "Received smb2 oplock break acknowledgment request\n"); 11701 11702 WORK_BUFFERS(work, req, rsp); 11703 11704 switch (le16_to_cpu(req->StructureSize)) { 11705 case OP_BREAK_STRUCT_SIZE_20: 11706 smb20_oplock_break_ack(work); 11707 break; 11708 case OP_BREAK_STRUCT_SIZE_21: 11709 smb21_lease_break_ack(work); 11710 break; 11711 default: 11712 ksmbd_debug(OPLOCK, "invalid break cmd %d\n", 11713 le16_to_cpu(req->StructureSize)); 11714 rsp->hdr.Status = STATUS_INVALID_PARAMETER; 11715 smb2_set_err_rsp(work); 11716 return -EINVAL; 11717 } 11718 11719 return 0; 11720 } 11721 11722 /* 11723 * Cancel handler for a deferred CHANGE_NOTIFY. Races against 11724 * __ksmbd_close_fd()'s notify_pendings drain (vfs_cache.c), which can run 11725 * concurrently on a different connection closing the same handle -- only 11726 * one of the two may claim and free in_work, so both sides check 11727 * list_empty() under fp->f_lock before touching it (list_del_init() 11728 * leaves a node empty, so whichever side removes it first is the owner; 11729 * the loser must not touch in_work again, since the winner may already be 11730 * freeing it). 11731 * 11732 * smb2_cancel() holds conn->request_lock (a spinlock) for the entire 11733 * time it walks conn->async_requests and calls this function -- so this 11734 * runs with preemption disabled and must not sleep or re-acquire that 11735 * same lock. release_async_work() does both (it takes conn->request_lock 11736 * itself, and frees things that can involve sleeping paths), so calling 11737 * it from here would self-deadlock the very thread processing the 11738 * client's CANCEL command. ksmbd_conn_write() can also sleep (it takes 11739 * conn's write mutex). So: do only the non-sleeping, no-relock cleanup 11740 * inline here. smb2_cancel() sends and frees the claimed notify after it 11741 * drops request_lock, preserving response order for a client CANCEL. The 11742 * connection teardown caller has no such post-unlock path, so its wrapper 11743 * defers the send and free to a workqueue. 11744 */ 11745 struct notify_cancel_ctx { 11746 struct work_struct work; 11747 struct ksmbd_work *in_work; 11748 }; 11749 11750 static void smb2_send_notify_cancelled(struct ksmbd_work *work) 11751 { 11752 struct smb2_hdr *hdr = smb_get_msg(work->response_buf); 11753 struct ksmbd_conn *conn = work->conn; 11754 struct ksmbd_session *sess; 11755 11756 sess = ksmbd_session_lookup(conn, le64_to_cpu(hdr->SessionId)); 11757 if (sess) { 11758 work->sess = sess; 11759 if (work->encrypted && sess->enc && conn->ops->encrypt_resp) { 11760 conn->ops->encrypt_resp(work); 11761 } else if (conn->ops->is_sign_req && conn->ops->set_sign_rsp && 11762 conn->ops->is_sign_req(work, 11763 conn->ops->get_cmd_val(work))) { 11764 conn->ops->set_sign_rsp(work); 11765 } 11766 } 11767 11768 ksmbd_conn_write(work); 11769 if (sess) { 11770 ksmbd_user_session_put(sess); 11771 work->sess = NULL; 11772 } 11773 } 11774 11775 static void smb2_notify_cancel_deferred(struct work_struct *w) 11776 { 11777 struct notify_cancel_ctx *ctx = 11778 container_of(w, struct notify_cancel_ctx, work); 11779 struct ksmbd_conn *conn = ctx->in_work->conn; 11780 11781 smb2_complete_notify_cancel(ctx->in_work); 11782 kfree(ctx); 11783 /* 11784 * The connection teardown waits for r_count before destroying 11785 * connection sessions and their proc entries. 11786 */ 11787 ksmbd_conn_r_count_dec(conn); 11788 } 11789 11790 static struct ksmbd_work *smb2_notify_cancel_claim(void **argv) 11791 { 11792 struct ksmbd_work *in_work = (struct ksmbd_work *)argv[0]; 11793 struct ksmbd_file *fp = (struct ksmbd_file *)argv[1]; 11794 bool claimed; 11795 11796 spin_lock(&fp->f_lock); 11797 claimed = !list_empty(&in_work->notify_entry); 11798 if (claimed) 11799 list_del_init(&in_work->notify_entry); 11800 spin_unlock(&fp->f_lock); 11801 11802 if (!claimed) 11803 return NULL; 11804 11805 /* conn->request_lock is held by smb2_cancel() or connection teardown. */ 11806 in_work->cancel_fn = NULL; 11807 kfree(in_work->cancel_argv); 11808 in_work->cancel_argv = NULL; 11809 return in_work; 11810 } 11811 11812 static void smb2_complete_notify_cancel(struct ksmbd_work *in_work) 11813 { 11814 struct smb2_hdr *in_hdr = smb_get_msg(in_work->response_buf); 11815 11816 in_hdr->Status = STATUS_CANCELLED; 11817 smb2_send_notify_cancelled(in_work); 11818 release_async_work(in_work); 11819 ksmbd_free_work_struct(in_work); 11820 } 11821 11822 static void smb2_notify_cancel_fn(void **argv) 11823 { 11824 struct ksmbd_work *in_work = smb2_notify_cancel_claim(argv); 11825 struct ksmbd_conn *conn; 11826 struct notify_cancel_ctx *ctx; 11827 11828 if (!in_work) 11829 return; 11830 conn = in_work->conn; 11831 11832 ctx = kmalloc_obj(*ctx, GFP_ATOMIC); 11833 if (!ctx) { 11834 /* Can't defer the response -- free without sending one. */ 11835 list_del_init(&in_work->async_request_entry); 11836 in_work->asynchronous = false; 11837 if (in_work->async_id) { 11838 ksmbd_release_id(&conn->async_ida, in_work->async_id); 11839 in_work->async_id = 0; 11840 } 11841 ksmbd_free_work_struct(in_work); 11842 return; 11843 } 11844 ctx->in_work = in_work; 11845 INIT_WORK(&ctx->work, smb2_notify_cancel_deferred); 11846 /* 11847 * This deferred work can outlive the connection handler's receive loop. 11848 * Keep teardown from destroying the connection's sessions until the 11849 * deferred response has finished using them. 11850 */ 11851 ksmbd_conn_r_count_inc(conn); 11852 schedule_work(&ctx->work); 11853 } 11854 11855 /** 11856 * smb2_notify() - handler for smb2 notify request 11857 * @work: smb work containing notify command buffer 11858 * 11859 * Return: 0 on success, otherwise error 11860 */ 11861 int smb2_notify(struct ksmbd_work *work) 11862 { 11863 struct smb2_change_notify_req *req; 11864 struct smb2_change_notify_rsp *rsp; 11865 struct ksmbd_work *in_work; 11866 struct smb2_hdr *in_hdr; 11867 struct ksmbd_file *fp; 11868 11869 ksmbd_debug(SMB, "Received smb2 notify\n"); 11870 11871 WORK_BUFFERS(work, req, rsp); 11872 11873 if (smb2_compound_has_failed(work, &rsp->hdr)) 11874 return -EACCES; 11875 11876 if (work->next_smb2_rcv_hdr_off && req->hdr.NextCommand) { 11877 rsp->hdr.Status = STATUS_INTERNAL_ERROR; 11878 smb2_set_err_rsp(work); 11879 return -EIO; 11880 } 11881 11882 /* 11883 * macOS backupd sends CHANGE_NOTIFY with FileId=FFFF...FFFF (share-root 11884 * sentinel) to watch for changes on the share root without holding an 11885 * open handle. Respond STATUS_PENDING + STATUS_NOTIFY_CLEANUP immediately; 11886 * without this, backupd aborts Time Machine setup on STATUS_FILE_CLOSED. 11887 */ 11888 if (req->VolatileFileId == SMB2_NO_FID && 11889 req->PersistentFileId == SMB2_NO_FID) { 11890 in_work = ksmbd_alloc_work_struct(); 11891 if (!in_work || allocate_interim_rsp_buf(in_work)) { 11892 if (in_work) 11893 ksmbd_free_work_struct(in_work); 11894 rsp->hdr.Status = STATUS_INSUFFICIENT_RESOURCES; 11895 smb2_set_err_rsp(work); 11896 return 0; 11897 } 11898 if (setup_async_work(work, NULL, NULL)) { 11899 ksmbd_free_work_struct(in_work); 11900 rsp->hdr.Status = STATUS_INSUFFICIENT_RESOURCES; 11901 smb2_set_err_rsp(work); 11902 return 0; 11903 } 11904 smb2_send_interim_resp(work, STATUS_PENDING); 11905 in_work->conn = work->conn; 11906 in_hdr = smb_get_msg(in_work->response_buf); 11907 memcpy(in_hdr, ksmbd_resp_buf_next(work), 11908 __SMB2_HEADER_STRUCTURE_SIZE); 11909 in_hdr->Flags |= SMB2_FLAGS_ASYNC_COMMAND; 11910 in_hdr->Id.AsyncId = cpu_to_le64(work->async_id); 11911 smb2_set_err_rsp(in_work); 11912 in_hdr->Status = STATUS_NOTIFY_CLEANUP; 11913 in_work->async_id = work->async_id; 11914 work->async_id = 0; 11915 release_async_work(work); 11916 if (smb2_send_interim_work(in_work, work, false)) 11917 ksmbd_debug(SMB, "failed to send notify cleanup\n"); 11918 ksmbd_free_work_struct(in_work); 11919 work->send_no_response = 1; 11920 return 0; 11921 } 11922 11923 /* 11924 * KSMBD does not implement a real change-notification backend. 11925 * Genuine SMB2 servers (and macOS smbfs) never complete a 11926 * CHANGE_NOTIFY spontaneously: it is satisfied only by a real 11927 * directory change, or with STATUS_NOTIFY_CLEANUP when the watched 11928 * handle is closed. Completing it early (e.g. on a timer) makes 11929 * Finder treat the cleanup as "directory changed" and re-enumerate 11930 * the directory forever, leaving items unopenable. Returning 11931 * STATUS_NOT_IMPLEMENTED here (like stock ksmbd) makes macOS smbfs 11932 * hard-freeze on unmount, so this must stay deferred. 11933 */ 11934 fp = ksmbd_lookup_fd_slow(work, req->VolatileFileId, req->PersistentFileId); 11935 if (!fp) { 11936 rsp->hdr.Status = STATUS_FILE_CLOSED; 11937 smb2_set_err_rsp(work); 11938 return 0; 11939 } 11940 11941 in_work = ksmbd_alloc_work_struct(); 11942 if (!in_work || allocate_interim_rsp_buf(in_work)) { 11943 if (in_work) 11944 ksmbd_free_work_struct(in_work); 11945 ksmbd_fd_put(work, fp); 11946 rsp->hdr.Status = STATUS_INSUFFICIENT_RESOURCES; 11947 smb2_set_err_rsp(work); 11948 return 0; 11949 } 11950 /* 11951 * in_work is synthetic (not from the normal request-receiving 11952 * pipeline), so it has no request_buf of its own. It gets registered 11953 * into conn->async_requests below, and smb2_cancel() unconditionally 11954 * computes smb_get_msg(iter->request_buf) for every entry in that 11955 * list while searching for a match -- give it its own small buffer 11956 * (not an alias of response_buf: ksmbd_free_work_struct() kvfree()s 11957 * both separately, so aliasing them would double-free) so that stays 11958 * a harmless read instead of a near-NULL dereference. 11959 */ 11960 in_work->request_buf = kzalloc(MAX_CIFS_SMALL_BUFFER_SIZE, KSMBD_DEFAULT_GFP); 11961 if (!in_work->request_buf) { 11962 ksmbd_free_work_struct(in_work); 11963 ksmbd_fd_put(work, fp); 11964 rsp->hdr.Status = STATUS_INSUFFICIENT_RESOURCES; 11965 smb2_set_err_rsp(work); 11966 return 0; 11967 } 11968 memcpy(smb_get_msg(in_work->request_buf), req, 11969 __SMB2_HEADER_STRUCTURE_SIZE); 11970 11971 if (setup_async_work(work, NULL, NULL)) { 11972 ksmbd_free_work_struct(in_work); 11973 ksmbd_fd_put(work, fp); 11974 rsp->hdr.Status = STATUS_INSUFFICIENT_RESOURCES; 11975 smb2_set_err_rsp(work); 11976 return 0; 11977 } 11978 11979 smb2_send_interim_resp(work, STATUS_PENDING); 11980 11981 /* Keep the async IDA alive until the deferred work is released. */ 11982 in_work->conn = ksmbd_conn_get(work->conn); 11983 in_work->owns_conn_ref = true; 11984 in_work->encrypted = work->encrypted; 11985 in_hdr = smb_get_msg(in_work->response_buf); 11986 memcpy(in_hdr, ksmbd_resp_buf_next(work), __SMB2_HEADER_STRUCTURE_SIZE); 11987 in_hdr->Flags |= SMB2_FLAGS_ASYNC_COMMAND; 11988 in_hdr->Id.AsyncId = cpu_to_le64(work->async_id); 11989 smb2_set_err_rsp(in_work); 11990 in_hdr->Status = STATUS_NOTIFY_CLEANUP; 11991 11992 /* 11993 * Transfer ownership of the async id to in_work; it stays reserved 11994 * until in_work is freed after the deferred response is sent on 11995 * close, so it can't be reused for an unrelated async response. 11996 */ 11997 in_work->async_id = work->async_id; 11998 work->async_id = 0; 11999 release_async_work(work); 12000 12001 /* 12002 * work itself is about to be recycled by the normal request-processing 12003 * pipeline, so it can't stay the target of a future CANCEL -- register 12004 * in_work instead, reusing the same async_id, so a client-sent CANCEL 12005 * for this notify actually finds something to cancel instead of 12006 * silently doing nothing until the handle eventually closes. 12007 */ 12008 in_work->asynchronous = true; 12009 in_work->cancel_argv = kmalloc_array(2, sizeof(void *), KSMBD_DEFAULT_GFP); 12010 if (in_work->cancel_argv) { 12011 in_work->cancel_argv[0] = in_work; 12012 in_work->cancel_argv[1] = fp; 12013 in_work->cancel_fn = smb2_notify_cancel_fn; 12014 } 12015 12016 if (!ksmbd_conn_link_async_request(work->conn, in_work)) { 12017 kfree(in_work->cancel_argv); 12018 in_work->cancel_argv = NULL; 12019 in_work->cancel_fn = NULL; 12020 in_work->asynchronous = false; 12021 ksmbd_fd_put(work, fp); 12022 if (smb2_send_interim_work(in_work, work, false)) 12023 ksmbd_debug(SMB, "failed to send notify cleanup\n"); 12024 ksmbd_free_work_struct(in_work); 12025 work->send_no_response = 1; 12026 return 0; 12027 } 12028 12029 spin_lock(&fp->f_lock); 12030 list_add_tail(&in_work->notify_entry, &fp->notify_pendings); 12031 spin_unlock(&fp->f_lock); 12032 12033 ksmbd_fd_put(work, fp); 12034 work->send_no_response = 1; 12035 return 0; 12036 } 12037 12038 /** 12039 * smb2_is_sign_req() - handler for checking packet signing status 12040 * @work: smb work containing notify command buffer 12041 * @command: SMB2 command id 12042 * 12043 * Return: true if packed is signed, false otherwise 12044 */ 12045 bool smb2_is_sign_req(struct ksmbd_work *work, unsigned int command) 12046 { 12047 struct smb2_hdr *rcv_hdr2 = smb_get_msg(work->request_buf); 12048 12049 if ((rcv_hdr2->Flags & SMB2_FLAGS_SIGNED) && 12050 command != SMB2_NEGOTIATE_HE) 12051 return true; 12052 12053 return false; 12054 } 12055 12056 /** 12057 * smb2_check_sign_req() - handler for req packet sign processing 12058 * @work: smb work containing notify command buffer 12059 * 12060 * Return: 1 on success, 0 otherwise 12061 */ 12062 int smb2_check_sign_req(struct ksmbd_work *work) 12063 { 12064 struct smb2_hdr *hdr; 12065 char signature_req[SMB2_SIGNATURE_SIZE]; 12066 char signature[SMB2_HMACSHA256_SIZE]; 12067 struct kvec iov[1]; 12068 size_t len; 12069 12070 hdr = smb_get_msg(work->request_buf); 12071 if (work->next_smb2_rcv_hdr_off) 12072 hdr = ksmbd_req_buf_next(work); 12073 12074 if (!hdr->NextCommand && !work->next_smb2_rcv_hdr_off) 12075 len = get_rfc1002_len(work->request_buf); 12076 else if (hdr->NextCommand) 12077 len = le32_to_cpu(hdr->NextCommand); 12078 else 12079 len = get_rfc1002_len(work->request_buf) - 12080 work->next_smb2_rcv_hdr_off; 12081 12082 memcpy(signature_req, hdr->Signature, SMB2_SIGNATURE_SIZE); 12083 memset(hdr->Signature, 0, SMB2_SIGNATURE_SIZE); 12084 12085 iov[0].iov_base = (char *)&hdr->ProtocolId; 12086 iov[0].iov_len = len; 12087 12088 ksmbd_sign_smb2_pdu(work->conn, work->sess->sess_key, iov, 1, 12089 signature); 12090 12091 if (crypto_memneq(signature, signature_req, SMB2_SIGNATURE_SIZE)) { 12092 pr_err("bad smb2 signature\n"); 12093 return 0; 12094 } 12095 12096 return 1; 12097 } 12098 12099 /** 12100 * smb2_get_sign_rsp_iov() - get the iovecs used to sign a response 12101 * @work: work that has the response iovecs 12102 * @hdr: SMB2 header of the response 12103 * @n_vec: set to the number of iovecs to sign 12104 * 12105 * Response data may be in another buffer. In this case, the response uses 12106 * more than one iovec. Find the iovec that starts with @hdr. Sign this 12107 * iovec and all iovecs after it. 12108 * 12109 * Return: The first iovec to sign. 12110 */ 12111 static struct kvec *smb2_get_sign_rsp_iov(struct ksmbd_work *work, 12112 struct smb2_hdr *hdr, int *n_vec) 12113 { 12114 int i; 12115 12116 /* 12117 * iov[0] has the RFC1002 message length. It is not part of the SMB2 12118 * message, so do not sign it. 12119 */ 12120 for (i = 1; i <= work->iov_idx; i++) { 12121 if (work->iov[i].iov_base == hdr) { 12122 *n_vec = work->iov_idx - i + 1; 12123 return &work->iov[i]; 12124 } 12125 } 12126 12127 WARN_ON_ONCE(1); 12128 *n_vec = 1; 12129 return &work->iov[work->iov_idx]; 12130 } 12131 12132 /** 12133 * smb2_set_sign_rsp() - handler for rsp packet sign processing 12134 * @work: smb work containing notify command buffer 12135 * 12136 */ 12137 void smb2_set_sign_rsp(struct ksmbd_work *work) 12138 { 12139 struct smb2_hdr *hdr; 12140 char signature[SMB2_HMACSHA256_SIZE]; 12141 struct kvec *iov; 12142 int n_vec; 12143 12144 hdr = ksmbd_resp_buf_curr(work); 12145 hdr->Flags |= SMB2_FLAGS_SIGNED; 12146 memset(hdr->Signature, 0, SMB2_SIGNATURE_SIZE); 12147 12148 iov = smb2_get_sign_rsp_iov(work, hdr, &n_vec); 12149 12150 ksmbd_sign_smb2_pdu(work->conn, work->sess->sess_key, iov, n_vec, 12151 signature); 12152 memcpy(hdr->Signature, signature, SMB2_SIGNATURE_SIZE); 12153 } 12154 12155 /** 12156 * smb3_check_sign_req() - handler for req packet sign processing 12157 * @work: smb work containing notify command buffer 12158 * 12159 * Return: 1 on success, 0 otherwise 12160 */ 12161 int smb3_check_sign_req(struct ksmbd_work *work) 12162 { 12163 struct ksmbd_conn *conn = work->conn; 12164 char *signing_key; 12165 struct smb2_hdr *hdr; 12166 struct channel *chann; 12167 char signature_req[SMB2_SIGNATURE_SIZE]; 12168 char signature[SMB2_CMACAES_SIZE]; 12169 struct kvec iov[1]; 12170 size_t len; 12171 12172 hdr = smb_get_msg(work->request_buf); 12173 if (work->next_smb2_rcv_hdr_off) 12174 hdr = ksmbd_req_buf_next(work); 12175 12176 if (!hdr->NextCommand && !work->next_smb2_rcv_hdr_off) 12177 len = get_rfc1002_len(work->request_buf); 12178 else if (hdr->NextCommand) 12179 len = le32_to_cpu(hdr->NextCommand); 12180 else 12181 len = get_rfc1002_len(work->request_buf) - 12182 work->next_smb2_rcv_hdr_off; 12183 12184 if (le16_to_cpu(hdr->Command) == SMB2_SESSION_SETUP_HE) { 12185 signing_key = work->sess->smb3signingkey; 12186 } else { 12187 chann = lookup_chann_list(work->sess, conn); 12188 if (!chann) { 12189 if (le16_to_cpu(hdr->Command) != SMB2_SESSION_SETUP_HE || 12190 !(hdr->Flags & SMB2_FLAGS_SIGNED)) 12191 return 0; 12192 signing_key = work->sess->smb3signingkey; 12193 } else { 12194 signing_key = chann->smb3signingkey; 12195 } 12196 } 12197 12198 if (!signing_key) { 12199 pr_err("SMB3 signing key is not generated\n"); 12200 return 0; 12201 } 12202 12203 memcpy(signature_req, hdr->Signature, SMB2_SIGNATURE_SIZE); 12204 memset(hdr->Signature, 0, SMB2_SIGNATURE_SIZE); 12205 iov[0].iov_base = (char *)&hdr->ProtocolId; 12206 iov[0].iov_len = len; 12207 12208 ksmbd_sign_smb3_pdu(conn, signing_key, iov, 1, signature); 12209 12210 if (crypto_memneq(signature, signature_req, SMB2_SIGNATURE_SIZE)) { 12211 pr_err("bad smb2 signature\n"); 12212 return 0; 12213 } 12214 12215 return 1; 12216 } 12217 12218 /** 12219 * smb3_set_sign_rsp() - handler for rsp packet sign processing 12220 * @work: smb work containing notify command buffer 12221 * 12222 */ 12223 void smb3_set_sign_rsp(struct ksmbd_work *work) 12224 { 12225 struct ksmbd_conn *conn = work->conn; 12226 struct smb2_hdr *hdr; 12227 struct channel *chann; 12228 char signature[SMB2_CMACAES_SIZE]; 12229 struct kvec *iov; 12230 u16 command = conn->ops->get_cmd_val(work); 12231 int n_vec; 12232 char *signing_key; 12233 12234 hdr = ksmbd_resp_buf_curr(work); 12235 12236 if (command == SMB2_SESSION_SETUP_HE && 12237 (!conn->binding || hdr->Status != STATUS_SUCCESS)) { 12238 signing_key = work->sess->smb3signingkey; 12239 } else { 12240 chann = lookup_chann_list(work->sess, work->conn); 12241 if (!chann) { 12242 return; 12243 } 12244 signing_key = chann->smb3signingkey; 12245 } 12246 12247 if (!signing_key) 12248 return; 12249 12250 hdr->Flags |= SMB2_FLAGS_SIGNED; 12251 memset(hdr->Signature, 0, SMB2_SIGNATURE_SIZE); 12252 12253 iov = smb2_get_sign_rsp_iov(work, hdr, &n_vec); 12254 12255 ksmbd_sign_smb3_pdu(conn, signing_key, iov, n_vec, signature); 12256 memcpy(hdr->Signature, signature, SMB2_SIGNATURE_SIZE); 12257 } 12258 12259 /** 12260 * smb3_preauth_hash_rsp() - handler for computing preauth hash on response 12261 * @work: smb work containing response buffer 12262 * 12263 */ 12264 void smb3_preauth_hash_rsp(struct ksmbd_work *work) 12265 { 12266 struct ksmbd_conn *conn = work->conn; 12267 struct ksmbd_session *sess = work->sess; 12268 struct smb2_hdr *req, *rsp; 12269 12270 if (conn->dialect != SMB311_PROT_ID) 12271 return; 12272 12273 WORK_BUFFERS(work, req, rsp); 12274 12275 if (le16_to_cpu(req->Command) == SMB2_NEGOTIATE_HE) { 12276 ksmbd_conn_lock(conn); 12277 if (conn->preauth_info) 12278 ksmbd_gen_preauth_integrity_hash(conn, work->response_buf, 12279 conn->preauth_info->Preauth_HashValue); 12280 ksmbd_conn_unlock(conn); 12281 } 12282 12283 if (le16_to_cpu(rsp->Command) == SMB2_SESSION_SETUP_HE && sess) { 12284 ksmbd_conn_lock(conn); 12285 12286 if (conn->binding) { 12287 struct preauth_session *preauth_sess; 12288 12289 preauth_sess = ksmbd_preauth_session_lookup(conn, sess->id); 12290 if (preauth_sess) 12291 ksmbd_gen_preauth_integrity_hash(conn, 12292 work->response_buf, 12293 preauth_sess->Preauth_HashValue); 12294 } else if (sess->Preauth_HashValue) { 12295 ksmbd_gen_preauth_integrity_hash(conn, work->response_buf, 12296 sess->Preauth_HashValue); 12297 } 12298 ksmbd_conn_unlock(conn); 12299 } 12300 } 12301 12302 static void fill_transform_hdr(void *tr_buf, char *old_buf, __le16 cipher_type) 12303 { 12304 struct smb2_transform_hdr *tr_hdr = tr_buf + 4; 12305 struct smb2_hdr *hdr = smb_get_msg(old_buf); 12306 unsigned int orig_len = get_rfc1002_len(old_buf); 12307 12308 /* tr_buf must be cleared by the caller */ 12309 tr_hdr->ProtocolId = SMB2_TRANSFORM_PROTO_NUM; 12310 tr_hdr->OriginalMessageSize = cpu_to_le32(orig_len); 12311 tr_hdr->Flags = cpu_to_le16(TRANSFORM_FLAG_ENCRYPTED); 12312 if (cipher_type == SMB2_ENCRYPTION_AES128_GCM || 12313 cipher_type == SMB2_ENCRYPTION_AES256_GCM) 12314 get_random_bytes(&tr_hdr->Nonce, SMB3_AES_GCM_NONCE); 12315 else 12316 get_random_bytes(&tr_hdr->Nonce, SMB3_AES_CCM_NONCE); 12317 memcpy(&tr_hdr->SessionId, &hdr->SessionId, 8); 12318 inc_rfc1001_len(tr_buf, sizeof(struct smb2_transform_hdr)); 12319 inc_rfc1001_len(tr_buf, orig_len); 12320 } 12321 12322 int smb3_encrypt_resp(struct ksmbd_work *work) 12323 { 12324 struct kvec *iov = work->iov; 12325 int rc = -ENOMEM; 12326 void *tr_buf; 12327 12328 tr_buf = kzalloc(sizeof(struct smb2_transform_hdr) + 4, KSMBD_DEFAULT_GFP); 12329 if (!tr_buf) 12330 return rc; 12331 12332 /* fill transform header */ 12333 fill_transform_hdr(tr_buf, work->response_buf, work->conn->cipher_type); 12334 12335 iov[0].iov_base = tr_buf; 12336 iov[0].iov_len = sizeof(struct smb2_transform_hdr) + 4; 12337 work->tr_buf = tr_buf; 12338 12339 return ksmbd_crypt_message(work, iov, work->iov_idx + 1, 1); 12340 } 12341 12342 bool smb3_is_transform_hdr(void *buf) 12343 { 12344 struct smb2_transform_hdr *trhdr = smb_get_msg(buf); 12345 12346 return trhdr->ProtocolId == SMB2_TRANSFORM_PROTO_NUM; 12347 } 12348 12349 int smb3_decrypt_req(struct ksmbd_work *work) 12350 { 12351 char *buf = work->request_buf; 12352 unsigned int pdu_length = get_rfc1002_len(buf); 12353 struct kvec iov[2]; 12354 unsigned int buf_data_size; 12355 struct smb2_transform_hdr *tr_hdr = smb_get_msg(buf); 12356 unsigned int original_msg_size; 12357 int rc = 0; 12358 12359 if (pdu_length < sizeof(struct smb2_transform_hdr)) { 12360 pr_err("Transform message is too small (%u)\n", 12361 pdu_length); 12362 return -ECONNABORTED; 12363 } 12364 12365 buf_data_size = pdu_length - sizeof(struct smb2_transform_hdr); 12366 original_msg_size = le32_to_cpu(tr_hdr->OriginalMessageSize); 12367 if (buf_data_size < sizeof(struct smb2_compression_hdr) || 12368 original_msg_size < sizeof(struct smb2_compression_hdr)) { 12369 pr_err("Transform message is too small (%u)\n", 12370 pdu_length); 12371 return -ECONNABORTED; 12372 } 12373 12374 if (buf_data_size < original_msg_size) { 12375 pr_err("Transform message is broken\n"); 12376 return -ECONNABORTED; 12377 } 12378 12379 iov[0].iov_base = buf; 12380 iov[0].iov_len = sizeof(struct smb2_transform_hdr) + 4; 12381 iov[1].iov_base = buf + sizeof(struct smb2_transform_hdr) + 4; 12382 iov[1].iov_len = buf_data_size; 12383 rc = ksmbd_crypt_message(work, iov, 2, 0); 12384 if (rc) 12385 return rc; 12386 12387 /* Drop the AEAD authentication tag from the inner RFC1002 frame. */ 12388 memmove(buf + 4, iov[1].iov_base, original_msg_size); 12389 *(__be32 *)buf = cpu_to_be32(original_msg_size); 12390 12391 return rc; 12392 } 12393 12394 bool smb3_11_final_sess_setup_resp(struct ksmbd_work *work) 12395 { 12396 struct ksmbd_conn *conn = work->conn; 12397 struct ksmbd_session *sess = work->sess; 12398 struct smb2_hdr *rsp = smb_get_msg(work->response_buf); 12399 12400 if (conn->dialect < SMB30_PROT_ID) 12401 return false; 12402 12403 if (work->next_smb2_rcv_hdr_off) 12404 rsp = ksmbd_resp_buf_next(work); 12405 12406 if (le16_to_cpu(rsp->Command) == SMB2_SESSION_SETUP_HE && 12407 sess->user && !user_guest(sess->user) && 12408 rsp->Status == STATUS_SUCCESS) 12409 return true; 12410 return false; 12411 } 12412