smb2pdu.c 59 KB

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  1. /*
  2. * fs/cifs/smb2pdu.c
  3. *
  4. * Copyright (C) International Business Machines Corp., 2009, 2012
  5. * Etersoft, 2012
  6. * Author(s): Steve French (sfrench@us.ibm.com)
  7. * Pavel Shilovsky (pshilovsky@samba.org) 2012
  8. *
  9. * Contains the routines for constructing the SMB2 PDUs themselves
  10. *
  11. * This library is free software; you can redistribute it and/or modify
  12. * it under the terms of the GNU Lesser General Public License as published
  13. * by the Free Software Foundation; either version 2.1 of the License, or
  14. * (at your option) any later version.
  15. *
  16. * This library is distributed in the hope that it will be useful,
  17. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  18. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See
  19. * the GNU Lesser General Public License for more details.
  20. *
  21. * You should have received a copy of the GNU Lesser General Public License
  22. * along with this library; if not, write to the Free Software
  23. * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
  24. */
  25. /* SMB2 PDU handling routines here - except for leftovers (eg session setup) */
  26. /* Note that there are handle based routines which must be */
  27. /* treated slightly differently for reconnection purposes since we never */
  28. /* want to reuse a stale file handle and only the caller knows the file info */
  29. #include <linux/fs.h>
  30. #include <linux/kernel.h>
  31. #include <linux/vfs.h>
  32. #include <linux/task_io_accounting_ops.h>
  33. #include <linux/uaccess.h>
  34. #include <linux/pagemap.h>
  35. #include <linux/xattr.h>
  36. #include "smb2pdu.h"
  37. #include "cifsglob.h"
  38. #include "cifsacl.h"
  39. #include "cifsproto.h"
  40. #include "smb2proto.h"
  41. #include "cifs_unicode.h"
  42. #include "cifs_debug.h"
  43. #include "ntlmssp.h"
  44. #include "smb2status.h"
  45. #include "smb2glob.h"
  46. #include "cifspdu.h"
  47. /*
  48. * The following table defines the expected "StructureSize" of SMB2 requests
  49. * in order by SMB2 command. This is similar to "wct" in SMB/CIFS requests.
  50. *
  51. * Note that commands are defined in smb2pdu.h in le16 but the array below is
  52. * indexed by command in host byte order.
  53. */
  54. static const int smb2_req_struct_sizes[NUMBER_OF_SMB2_COMMANDS] = {
  55. /* SMB2_NEGOTIATE */ 36,
  56. /* SMB2_SESSION_SETUP */ 25,
  57. /* SMB2_LOGOFF */ 4,
  58. /* SMB2_TREE_CONNECT */ 9,
  59. /* SMB2_TREE_DISCONNECT */ 4,
  60. /* SMB2_CREATE */ 57,
  61. /* SMB2_CLOSE */ 24,
  62. /* SMB2_FLUSH */ 24,
  63. /* SMB2_READ */ 49,
  64. /* SMB2_WRITE */ 49,
  65. /* SMB2_LOCK */ 48,
  66. /* SMB2_IOCTL */ 57,
  67. /* SMB2_CANCEL */ 4,
  68. /* SMB2_ECHO */ 4,
  69. /* SMB2_QUERY_DIRECTORY */ 33,
  70. /* SMB2_CHANGE_NOTIFY */ 32,
  71. /* SMB2_QUERY_INFO */ 41,
  72. /* SMB2_SET_INFO */ 33,
  73. /* SMB2_OPLOCK_BREAK */ 24 /* BB this is 36 for LEASE_BREAK variant */
  74. };
  75. static void
  76. smb2_hdr_assemble(struct smb2_hdr *hdr, __le16 smb2_cmd /* command */ ,
  77. const struct cifs_tcon *tcon)
  78. {
  79. struct smb2_pdu *pdu = (struct smb2_pdu *)hdr;
  80. char *temp = (char *)hdr;
  81. /* lookup word count ie StructureSize from table */
  82. __u16 parmsize = smb2_req_struct_sizes[le16_to_cpu(smb2_cmd)];
  83. /*
  84. * smaller than SMALL_BUFFER_SIZE but bigger than fixed area of
  85. * largest operations (Create)
  86. */
  87. memset(temp, 0, 256);
  88. /* Note this is only network field converted to big endian */
  89. hdr->smb2_buf_length = cpu_to_be32(parmsize + sizeof(struct smb2_hdr)
  90. - 4 /* RFC 1001 length field itself not counted */);
  91. hdr->ProtocolId[0] = 0xFE;
  92. hdr->ProtocolId[1] = 'S';
  93. hdr->ProtocolId[2] = 'M';
  94. hdr->ProtocolId[3] = 'B';
  95. hdr->StructureSize = cpu_to_le16(64);
  96. hdr->Command = smb2_cmd;
  97. hdr->CreditRequest = cpu_to_le16(2); /* BB make this dynamic */
  98. hdr->ProcessId = cpu_to_le32((__u16)current->tgid);
  99. if (!tcon)
  100. goto out;
  101. hdr->TreeId = tcon->tid;
  102. /* Uid is not converted */
  103. if (tcon->ses)
  104. hdr->SessionId = tcon->ses->Suid;
  105. /* BB check following DFS flags BB */
  106. /* BB do we have to add check for SHI1005_FLAGS_DFS_ROOT too? */
  107. if (tcon->share_flags & SHI1005_FLAGS_DFS)
  108. hdr->Flags |= SMB2_FLAGS_DFS_OPERATIONS;
  109. /* BB how does SMB2 do case sensitive? */
  110. /* if (tcon->nocase)
  111. hdr->Flags |= SMBFLG_CASELESS; */
  112. if (tcon->ses && tcon->ses->server && tcon->ses->server->sign)
  113. hdr->Flags |= SMB2_FLAGS_SIGNED;
  114. out:
  115. pdu->StructureSize2 = cpu_to_le16(parmsize);
  116. return;
  117. }
  118. static int
  119. smb2_reconnect(__le16 smb2_command, struct cifs_tcon *tcon)
  120. {
  121. int rc = 0;
  122. struct nls_table *nls_codepage;
  123. struct cifs_ses *ses;
  124. struct TCP_Server_Info *server;
  125. /*
  126. * SMB2s NegProt, SessSetup, Logoff do not have tcon yet so
  127. * check for tcp and smb session status done differently
  128. * for those three - in the calling routine.
  129. */
  130. if (tcon == NULL)
  131. return rc;
  132. if (smb2_command == SMB2_TREE_CONNECT)
  133. return rc;
  134. if (tcon->tidStatus == CifsExiting) {
  135. /*
  136. * only tree disconnect, open, and write,
  137. * (and ulogoff which does not have tcon)
  138. * are allowed as we start force umount.
  139. */
  140. if ((smb2_command != SMB2_WRITE) &&
  141. (smb2_command != SMB2_CREATE) &&
  142. (smb2_command != SMB2_TREE_DISCONNECT)) {
  143. cifs_dbg(FYI, "can not send cmd %d while umounting\n",
  144. smb2_command);
  145. return -ENODEV;
  146. }
  147. }
  148. if ((!tcon->ses) || (tcon->ses->status == CifsExiting) ||
  149. (!tcon->ses->server))
  150. return -EIO;
  151. ses = tcon->ses;
  152. server = ses->server;
  153. /*
  154. * Give demultiplex thread up to 10 seconds to reconnect, should be
  155. * greater than cifs socket timeout which is 7 seconds
  156. */
  157. while (server->tcpStatus == CifsNeedReconnect) {
  158. /*
  159. * Return to caller for TREE_DISCONNECT and LOGOFF and CLOSE
  160. * here since they are implicitly done when session drops.
  161. */
  162. switch (smb2_command) {
  163. /*
  164. * BB Should we keep oplock break and add flush to exceptions?
  165. */
  166. case SMB2_TREE_DISCONNECT:
  167. case SMB2_CANCEL:
  168. case SMB2_CLOSE:
  169. case SMB2_OPLOCK_BREAK:
  170. return -EAGAIN;
  171. }
  172. wait_event_interruptible_timeout(server->response_q,
  173. (server->tcpStatus != CifsNeedReconnect), 10 * HZ);
  174. /* are we still trying to reconnect? */
  175. if (server->tcpStatus != CifsNeedReconnect)
  176. break;
  177. /*
  178. * on "soft" mounts we wait once. Hard mounts keep
  179. * retrying until process is killed or server comes
  180. * back on-line
  181. */
  182. if (!tcon->retry) {
  183. cifs_dbg(FYI, "gave up waiting on reconnect in smb_init\n");
  184. return -EHOSTDOWN;
  185. }
  186. }
  187. if (!tcon->ses->need_reconnect && !tcon->need_reconnect)
  188. return rc;
  189. nls_codepage = load_nls_default();
  190. /*
  191. * need to prevent multiple threads trying to simultaneously reconnect
  192. * the same SMB session
  193. */
  194. mutex_lock(&tcon->ses->session_mutex);
  195. rc = cifs_negotiate_protocol(0, tcon->ses);
  196. if (!rc && tcon->ses->need_reconnect)
  197. rc = cifs_setup_session(0, tcon->ses, nls_codepage);
  198. if (rc || !tcon->need_reconnect) {
  199. mutex_unlock(&tcon->ses->session_mutex);
  200. goto out;
  201. }
  202. cifs_mark_open_files_invalid(tcon);
  203. rc = SMB2_tcon(0, tcon->ses, tcon->treeName, tcon, nls_codepage);
  204. mutex_unlock(&tcon->ses->session_mutex);
  205. cifs_dbg(FYI, "reconnect tcon rc = %d\n", rc);
  206. if (rc)
  207. goto out;
  208. atomic_inc(&tconInfoReconnectCount);
  209. /*
  210. * BB FIXME add code to check if wsize needs update due to negotiated
  211. * smb buffer size shrinking.
  212. */
  213. out:
  214. /*
  215. * Check if handle based operation so we know whether we can continue
  216. * or not without returning to caller to reset file handle.
  217. */
  218. /*
  219. * BB Is flush done by server on drop of tcp session? Should we special
  220. * case it and skip above?
  221. */
  222. switch (smb2_command) {
  223. case SMB2_FLUSH:
  224. case SMB2_READ:
  225. case SMB2_WRITE:
  226. case SMB2_LOCK:
  227. case SMB2_IOCTL:
  228. case SMB2_QUERY_DIRECTORY:
  229. case SMB2_CHANGE_NOTIFY:
  230. case SMB2_QUERY_INFO:
  231. case SMB2_SET_INFO:
  232. return -EAGAIN;
  233. }
  234. unload_nls(nls_codepage);
  235. return rc;
  236. }
  237. /*
  238. * Allocate and return pointer to an SMB request hdr, and set basic
  239. * SMB information in the SMB header. If the return code is zero, this
  240. * function must have filled in request_buf pointer.
  241. */
  242. static int
  243. small_smb2_init(__le16 smb2_command, struct cifs_tcon *tcon,
  244. void **request_buf)
  245. {
  246. int rc = 0;
  247. rc = smb2_reconnect(smb2_command, tcon);
  248. if (rc)
  249. return rc;
  250. /* BB eventually switch this to SMB2 specific small buf size */
  251. *request_buf = cifs_small_buf_get();
  252. if (*request_buf == NULL) {
  253. /* BB should we add a retry in here if not a writepage? */
  254. return -ENOMEM;
  255. }
  256. smb2_hdr_assemble((struct smb2_hdr *) *request_buf, smb2_command, tcon);
  257. if (tcon != NULL) {
  258. #ifdef CONFIG_CIFS_STATS2
  259. uint16_t com_code = le16_to_cpu(smb2_command);
  260. cifs_stats_inc(&tcon->stats.smb2_stats.smb2_com_sent[com_code]);
  261. #endif
  262. cifs_stats_inc(&tcon->num_smbs_sent);
  263. }
  264. return rc;
  265. }
  266. static void
  267. free_rsp_buf(int resp_buftype, void *rsp)
  268. {
  269. if (resp_buftype == CIFS_SMALL_BUFFER)
  270. cifs_small_buf_release(rsp);
  271. else if (resp_buftype == CIFS_LARGE_BUFFER)
  272. cifs_buf_release(rsp);
  273. }
  274. /*
  275. *
  276. * SMB2 Worker functions follow:
  277. *
  278. * The general structure of the worker functions is:
  279. * 1) Call smb2_init (assembles SMB2 header)
  280. * 2) Initialize SMB2 command specific fields in fixed length area of SMB
  281. * 3) Call smb_sendrcv2 (sends request on socket and waits for response)
  282. * 4) Decode SMB2 command specific fields in the fixed length area
  283. * 5) Decode variable length data area (if any for this SMB2 command type)
  284. * 6) Call free smb buffer
  285. * 7) return
  286. *
  287. */
  288. int
  289. SMB2_negotiate(const unsigned int xid, struct cifs_ses *ses)
  290. {
  291. struct smb2_negotiate_req *req;
  292. struct smb2_negotiate_rsp *rsp;
  293. struct kvec iov[1];
  294. int rc = 0;
  295. int resp_buftype;
  296. struct TCP_Server_Info *server = ses->server;
  297. unsigned int sec_flags;
  298. int blob_offset, blob_length;
  299. char *security_blob;
  300. int flags = CIFS_NEG_OP;
  301. cifs_dbg(FYI, "Negotiate protocol\n");
  302. if (!server) {
  303. WARN(1, "%s: server is NULL!\n", __func__);
  304. return -EIO;
  305. }
  306. rc = small_smb2_init(SMB2_NEGOTIATE, NULL, (void **) &req);
  307. if (rc)
  308. return rc;
  309. /* if any of auth flags (ie not sign or seal) are overriden use them */
  310. if (ses->overrideSecFlg & (~(CIFSSEC_MUST_SIGN | CIFSSEC_MUST_SEAL)))
  311. sec_flags = ses->overrideSecFlg; /* BB FIXME fix sign flags?*/
  312. else /* if override flags set only sign/seal OR them with global auth */
  313. sec_flags = global_secflags | ses->overrideSecFlg;
  314. cifs_dbg(FYI, "sec_flags 0x%x\n", sec_flags);
  315. req->hdr.SessionId = 0;
  316. req->Dialects[0] = cpu_to_le16(ses->server->vals->protocol_id);
  317. req->DialectCount = cpu_to_le16(1); /* One vers= at a time for now */
  318. inc_rfc1001_len(req, 2);
  319. /* only one of SMB2 signing flags may be set in SMB2 request */
  320. if (ses->sign)
  321. req->SecurityMode = SMB2_NEGOTIATE_SIGNING_REQUIRED;
  322. else if (global_secflags & CIFSSEC_MAY_SIGN)
  323. req->SecurityMode = SMB2_NEGOTIATE_SIGNING_ENABLED;
  324. else
  325. req->SecurityMode = 0;
  326. req->Capabilities = cpu_to_le32(ses->server->vals->req_capabilities);
  327. memcpy(req->ClientGUID, cifs_client_guid, SMB2_CLIENT_GUID_SIZE);
  328. iov[0].iov_base = (char *)req;
  329. /* 4 for rfc1002 length field */
  330. iov[0].iov_len = get_rfc1002_length(req) + 4;
  331. rc = SendReceive2(xid, ses, iov, 1, &resp_buftype, flags);
  332. rsp = (struct smb2_negotiate_rsp *)iov[0].iov_base;
  333. /*
  334. * No tcon so can't do
  335. * cifs_stats_inc(&tcon->stats.smb2_stats.smb2_com_fail[SMB2...]);
  336. */
  337. if (rc != 0)
  338. goto neg_exit;
  339. cifs_dbg(FYI, "mode 0x%x\n", rsp->SecurityMode);
  340. /* BB we may eventually want to match the negotiated vs. requested
  341. dialect, even though we are only requesting one at a time */
  342. if (rsp->DialectRevision == cpu_to_le16(SMB20_PROT_ID))
  343. cifs_dbg(FYI, "negotiated smb2.0 dialect\n");
  344. else if (rsp->DialectRevision == cpu_to_le16(SMB21_PROT_ID))
  345. cifs_dbg(FYI, "negotiated smb2.1 dialect\n");
  346. else if (rsp->DialectRevision == cpu_to_le16(SMB30_PROT_ID))
  347. cifs_dbg(FYI, "negotiated smb3.0 dialect\n");
  348. else {
  349. cifs_dbg(VFS, "Illegal dialect returned by server %d\n",
  350. le16_to_cpu(rsp->DialectRevision));
  351. rc = -EIO;
  352. goto neg_exit;
  353. }
  354. server->dialect = le16_to_cpu(rsp->DialectRevision);
  355. /* SMB2 only has an extended negflavor */
  356. server->negflavor = CIFS_NEGFLAVOR_EXTENDED;
  357. server->maxBuf = le32_to_cpu(rsp->MaxTransactSize);
  358. server->max_read = le32_to_cpu(rsp->MaxReadSize);
  359. server->max_write = le32_to_cpu(rsp->MaxWriteSize);
  360. /* BB Do we need to validate the SecurityMode? */
  361. server->sec_mode = le16_to_cpu(rsp->SecurityMode);
  362. server->capabilities = le32_to_cpu(rsp->Capabilities);
  363. /* Internal types */
  364. server->capabilities |= SMB2_NT_FIND | SMB2_LARGE_FILES;
  365. security_blob = smb2_get_data_area_len(&blob_offset, &blob_length,
  366. &rsp->hdr);
  367. if (blob_length == 0) {
  368. cifs_dbg(VFS, "missing security blob on negprot\n");
  369. rc = -EIO;
  370. goto neg_exit;
  371. }
  372. rc = cifs_enable_signing(server, ses->sign);
  373. #ifdef CONFIG_SMB2_ASN1 /* BB REMOVEME when updated asn1.c ready */
  374. if (rc)
  375. goto neg_exit;
  376. rc = decode_neg_token_init(security_blob, blob_length,
  377. &server->sec_type);
  378. if (rc == 1)
  379. rc = 0;
  380. else if (rc == 0) {
  381. rc = -EIO;
  382. goto neg_exit;
  383. }
  384. #endif
  385. neg_exit:
  386. free_rsp_buf(resp_buftype, rsp);
  387. return rc;
  388. }
  389. int
  390. SMB2_sess_setup(const unsigned int xid, struct cifs_ses *ses,
  391. const struct nls_table *nls_cp)
  392. {
  393. struct smb2_sess_setup_req *req;
  394. struct smb2_sess_setup_rsp *rsp = NULL;
  395. struct kvec iov[2];
  396. int rc = 0;
  397. int resp_buftype;
  398. __le32 phase = NtLmNegotiate; /* NTLMSSP, if needed, is multistage */
  399. struct TCP_Server_Info *server = ses->server;
  400. unsigned int sec_flags;
  401. u16 blob_length = 0;
  402. char *security_blob;
  403. char *ntlmssp_blob = NULL;
  404. bool use_spnego = false; /* else use raw ntlmssp */
  405. cifs_dbg(FYI, "Session Setup\n");
  406. if (!server) {
  407. WARN(1, "%s: server is NULL!\n", __func__);
  408. return -EIO;
  409. }
  410. /*
  411. * If memory allocation is successful, caller of this function
  412. * frees it.
  413. */
  414. ses->ntlmssp = kmalloc(sizeof(struct ntlmssp_auth), GFP_KERNEL);
  415. if (!ses->ntlmssp)
  416. return -ENOMEM;
  417. ses->server->secType = RawNTLMSSP;
  418. ssetup_ntlmssp_authenticate:
  419. if (phase == NtLmChallenge)
  420. phase = NtLmAuthenticate; /* if ntlmssp, now final phase */
  421. rc = small_smb2_init(SMB2_SESSION_SETUP, NULL, (void **) &req);
  422. if (rc)
  423. return rc;
  424. /* if any of auth flags (ie not sign or seal) are overriden use them */
  425. if (ses->overrideSecFlg & (~(CIFSSEC_MUST_SIGN | CIFSSEC_MUST_SEAL)))
  426. sec_flags = ses->overrideSecFlg; /* BB FIXME fix sign flags?*/
  427. else /* if override flags set only sign/seal OR them with global auth */
  428. sec_flags = global_secflags | ses->overrideSecFlg;
  429. cifs_dbg(FYI, "sec_flags 0x%x\n", sec_flags);
  430. req->hdr.SessionId = 0; /* First session, not a reauthenticate */
  431. req->VcNumber = 0; /* MBZ */
  432. /* to enable echos and oplocks */
  433. req->hdr.CreditRequest = cpu_to_le16(3);
  434. /* only one of SMB2 signing flags may be set in SMB2 request */
  435. if (server->sign)
  436. req->SecurityMode = SMB2_NEGOTIATE_SIGNING_REQUIRED;
  437. else if (global_secflags & CIFSSEC_MAY_SIGN) /* one flag unlike MUST_ */
  438. req->SecurityMode = SMB2_NEGOTIATE_SIGNING_ENABLED;
  439. else
  440. req->SecurityMode = 0;
  441. req->Capabilities = 0;
  442. req->Channel = 0; /* MBZ */
  443. iov[0].iov_base = (char *)req;
  444. /* 4 for rfc1002 length field and 1 for pad */
  445. iov[0].iov_len = get_rfc1002_length(req) + 4 - 1;
  446. if (phase == NtLmNegotiate) {
  447. ntlmssp_blob = kmalloc(sizeof(struct _NEGOTIATE_MESSAGE),
  448. GFP_KERNEL);
  449. if (ntlmssp_blob == NULL) {
  450. rc = -ENOMEM;
  451. goto ssetup_exit;
  452. }
  453. build_ntlmssp_negotiate_blob(ntlmssp_blob, ses);
  454. if (use_spnego) {
  455. /* blob_length = build_spnego_ntlmssp_blob(
  456. &security_blob,
  457. sizeof(struct _NEGOTIATE_MESSAGE),
  458. ntlmssp_blob); */
  459. /* BB eventually need to add this */
  460. cifs_dbg(VFS, "spnego not supported for SMB2 yet\n");
  461. rc = -EOPNOTSUPP;
  462. kfree(ntlmssp_blob);
  463. goto ssetup_exit;
  464. } else {
  465. blob_length = sizeof(struct _NEGOTIATE_MESSAGE);
  466. /* with raw NTLMSSP we don't encapsulate in SPNEGO */
  467. security_blob = ntlmssp_blob;
  468. }
  469. } else if (phase == NtLmAuthenticate) {
  470. req->hdr.SessionId = ses->Suid;
  471. ntlmssp_blob = kzalloc(sizeof(struct _NEGOTIATE_MESSAGE) + 500,
  472. GFP_KERNEL);
  473. if (ntlmssp_blob == NULL) {
  474. rc = -ENOMEM;
  475. goto ssetup_exit;
  476. }
  477. rc = build_ntlmssp_auth_blob(ntlmssp_blob, &blob_length, ses,
  478. nls_cp);
  479. if (rc) {
  480. cifs_dbg(FYI, "build_ntlmssp_auth_blob failed %d\n",
  481. rc);
  482. goto ssetup_exit; /* BB double check error handling */
  483. }
  484. if (use_spnego) {
  485. /* blob_length = build_spnego_ntlmssp_blob(
  486. &security_blob,
  487. blob_length,
  488. ntlmssp_blob); */
  489. cifs_dbg(VFS, "spnego not supported for SMB2 yet\n");
  490. rc = -EOPNOTSUPP;
  491. kfree(ntlmssp_blob);
  492. goto ssetup_exit;
  493. } else {
  494. security_blob = ntlmssp_blob;
  495. }
  496. } else {
  497. cifs_dbg(VFS, "illegal ntlmssp phase\n");
  498. rc = -EIO;
  499. goto ssetup_exit;
  500. }
  501. /* Testing shows that buffer offset must be at location of Buffer[0] */
  502. req->SecurityBufferOffset =
  503. cpu_to_le16(sizeof(struct smb2_sess_setup_req) -
  504. 1 /* pad */ - 4 /* rfc1001 len */);
  505. req->SecurityBufferLength = cpu_to_le16(blob_length);
  506. iov[1].iov_base = security_blob;
  507. iov[1].iov_len = blob_length;
  508. inc_rfc1001_len(req, blob_length - 1 /* pad */);
  509. /* BB add code to build os and lm fields */
  510. rc = SendReceive2(xid, ses, iov, 2, &resp_buftype,
  511. CIFS_LOG_ERROR | CIFS_NEG_OP);
  512. kfree(security_blob);
  513. rsp = (struct smb2_sess_setup_rsp *)iov[0].iov_base;
  514. if (resp_buftype != CIFS_NO_BUFFER &&
  515. rsp->hdr.Status == STATUS_MORE_PROCESSING_REQUIRED) {
  516. if (phase != NtLmNegotiate) {
  517. cifs_dbg(VFS, "Unexpected more processing error\n");
  518. goto ssetup_exit;
  519. }
  520. if (offsetof(struct smb2_sess_setup_rsp, Buffer) - 4 !=
  521. le16_to_cpu(rsp->SecurityBufferOffset)) {
  522. cifs_dbg(VFS, "Invalid security buffer offset %d\n",
  523. le16_to_cpu(rsp->SecurityBufferOffset));
  524. rc = -EIO;
  525. goto ssetup_exit;
  526. }
  527. /* NTLMSSP Negotiate sent now processing challenge (response) */
  528. phase = NtLmChallenge; /* process ntlmssp challenge */
  529. rc = 0; /* MORE_PROCESSING is not an error here but expected */
  530. ses->Suid = rsp->hdr.SessionId;
  531. rc = decode_ntlmssp_challenge(rsp->Buffer,
  532. le16_to_cpu(rsp->SecurityBufferLength), ses);
  533. }
  534. /*
  535. * BB eventually add code for SPNEGO decoding of NtlmChallenge blob,
  536. * but at least the raw NTLMSSP case works.
  537. */
  538. /*
  539. * No tcon so can't do
  540. * cifs_stats_inc(&tcon->stats.smb2_stats.smb2_com_fail[SMB2...]);
  541. */
  542. if (rc != 0)
  543. goto ssetup_exit;
  544. ses->session_flags = le16_to_cpu(rsp->SessionFlags);
  545. ssetup_exit:
  546. free_rsp_buf(resp_buftype, rsp);
  547. /* if ntlmssp, and negotiate succeeded, proceed to authenticate phase */
  548. if ((phase == NtLmChallenge) && (rc == 0))
  549. goto ssetup_ntlmssp_authenticate;
  550. return rc;
  551. }
  552. int
  553. SMB2_logoff(const unsigned int xid, struct cifs_ses *ses)
  554. {
  555. struct smb2_logoff_req *req; /* response is also trivial struct */
  556. int rc = 0;
  557. struct TCP_Server_Info *server;
  558. cifs_dbg(FYI, "disconnect session %p\n", ses);
  559. if (ses && (ses->server))
  560. server = ses->server;
  561. else
  562. return -EIO;
  563. rc = small_smb2_init(SMB2_LOGOFF, NULL, (void **) &req);
  564. if (rc)
  565. return rc;
  566. /* since no tcon, smb2_init can not do this, so do here */
  567. req->hdr.SessionId = ses->Suid;
  568. if (server->sign)
  569. req->hdr.Flags |= SMB2_FLAGS_SIGNED;
  570. rc = SendReceiveNoRsp(xid, ses, (char *) &req->hdr, 0);
  571. /*
  572. * No tcon so can't do
  573. * cifs_stats_inc(&tcon->stats.smb2_stats.smb2_com_fail[SMB2...]);
  574. */
  575. return rc;
  576. }
  577. static inline void cifs_stats_fail_inc(struct cifs_tcon *tcon, uint16_t code)
  578. {
  579. cifs_stats_inc(&tcon->stats.smb2_stats.smb2_com_failed[code]);
  580. }
  581. #define MAX_SHARENAME_LENGTH (255 /* server */ + 80 /* share */ + 1 /* NULL */)
  582. int
  583. SMB2_tcon(const unsigned int xid, struct cifs_ses *ses, const char *tree,
  584. struct cifs_tcon *tcon, const struct nls_table *cp)
  585. {
  586. struct smb2_tree_connect_req *req;
  587. struct smb2_tree_connect_rsp *rsp = NULL;
  588. struct kvec iov[2];
  589. int rc = 0;
  590. int resp_buftype;
  591. int unc_path_len;
  592. struct TCP_Server_Info *server;
  593. __le16 *unc_path = NULL;
  594. cifs_dbg(FYI, "TCON\n");
  595. if ((ses->server) && tree)
  596. server = ses->server;
  597. else
  598. return -EIO;
  599. if (tcon && tcon->bad_network_name)
  600. return -ENOENT;
  601. unc_path = kmalloc(MAX_SHARENAME_LENGTH * 2, GFP_KERNEL);
  602. if (unc_path == NULL)
  603. return -ENOMEM;
  604. unc_path_len = cifs_strtoUTF16(unc_path, tree, strlen(tree), cp) + 1;
  605. unc_path_len *= 2;
  606. if (unc_path_len < 2) {
  607. kfree(unc_path);
  608. return -EINVAL;
  609. }
  610. rc = small_smb2_init(SMB2_TREE_CONNECT, tcon, (void **) &req);
  611. if (rc) {
  612. kfree(unc_path);
  613. return rc;
  614. }
  615. if (tcon == NULL) {
  616. /* since no tcon, smb2_init can not do this, so do here */
  617. req->hdr.SessionId = ses->Suid;
  618. /* if (ses->server->sec_mode & SECMODE_SIGN_REQUIRED)
  619. req->hdr.Flags |= SMB2_FLAGS_SIGNED; */
  620. }
  621. iov[0].iov_base = (char *)req;
  622. /* 4 for rfc1002 length field and 1 for pad */
  623. iov[0].iov_len = get_rfc1002_length(req) + 4 - 1;
  624. /* Testing shows that buffer offset must be at location of Buffer[0] */
  625. req->PathOffset = cpu_to_le16(sizeof(struct smb2_tree_connect_req)
  626. - 1 /* pad */ - 4 /* do not count rfc1001 len field */);
  627. req->PathLength = cpu_to_le16(unc_path_len - 2);
  628. iov[1].iov_base = unc_path;
  629. iov[1].iov_len = unc_path_len;
  630. inc_rfc1001_len(req, unc_path_len - 1 /* pad */);
  631. rc = SendReceive2(xid, ses, iov, 2, &resp_buftype, 0);
  632. rsp = (struct smb2_tree_connect_rsp *)iov[0].iov_base;
  633. if (rc != 0) {
  634. if (tcon) {
  635. cifs_stats_fail_inc(tcon, SMB2_TREE_CONNECT_HE);
  636. tcon->need_reconnect = true;
  637. }
  638. goto tcon_error_exit;
  639. }
  640. if (tcon == NULL) {
  641. ses->ipc_tid = rsp->hdr.TreeId;
  642. goto tcon_exit;
  643. }
  644. if (rsp->ShareType & SMB2_SHARE_TYPE_DISK)
  645. cifs_dbg(FYI, "connection to disk share\n");
  646. else if (rsp->ShareType & SMB2_SHARE_TYPE_PIPE) {
  647. tcon->ipc = true;
  648. cifs_dbg(FYI, "connection to pipe share\n");
  649. } else if (rsp->ShareType & SMB2_SHARE_TYPE_PRINT) {
  650. tcon->print = true;
  651. cifs_dbg(FYI, "connection to printer\n");
  652. } else {
  653. cifs_dbg(VFS, "unknown share type %d\n", rsp->ShareType);
  654. rc = -EOPNOTSUPP;
  655. goto tcon_error_exit;
  656. }
  657. tcon->share_flags = le32_to_cpu(rsp->ShareFlags);
  658. tcon->maximal_access = le32_to_cpu(rsp->MaximalAccess);
  659. tcon->tidStatus = CifsGood;
  660. tcon->need_reconnect = false;
  661. tcon->tid = rsp->hdr.TreeId;
  662. strncpy(tcon->treeName, tree, MAX_TREE_SIZE);
  663. if ((rsp->Capabilities & SMB2_SHARE_CAP_DFS) &&
  664. ((tcon->share_flags & SHI1005_FLAGS_DFS) == 0))
  665. cifs_dbg(VFS, "DFS capability contradicts DFS flag\n");
  666. tcon_exit:
  667. free_rsp_buf(resp_buftype, rsp);
  668. kfree(unc_path);
  669. return rc;
  670. tcon_error_exit:
  671. if (rsp->hdr.Status == STATUS_BAD_NETWORK_NAME) {
  672. cifs_dbg(VFS, "BAD_NETWORK_NAME: %s\n", tree);
  673. tcon->bad_network_name = true;
  674. }
  675. goto tcon_exit;
  676. }
  677. int
  678. SMB2_tdis(const unsigned int xid, struct cifs_tcon *tcon)
  679. {
  680. struct smb2_tree_disconnect_req *req; /* response is trivial */
  681. int rc = 0;
  682. struct TCP_Server_Info *server;
  683. struct cifs_ses *ses = tcon->ses;
  684. cifs_dbg(FYI, "Tree Disconnect\n");
  685. if (ses && (ses->server))
  686. server = ses->server;
  687. else
  688. return -EIO;
  689. if ((tcon->need_reconnect) || (tcon->ses->need_reconnect))
  690. return 0;
  691. rc = small_smb2_init(SMB2_TREE_DISCONNECT, tcon, (void **) &req);
  692. if (rc)
  693. return rc;
  694. rc = SendReceiveNoRsp(xid, ses, (char *)&req->hdr, 0);
  695. if (rc)
  696. cifs_stats_fail_inc(tcon, SMB2_TREE_DISCONNECT_HE);
  697. return rc;
  698. }
  699. static struct create_lease *
  700. create_lease_buf(u8 *lease_key, u8 oplock)
  701. {
  702. struct create_lease *buf;
  703. buf = kzalloc(sizeof(struct create_lease), GFP_KERNEL);
  704. if (!buf)
  705. return NULL;
  706. buf->lcontext.LeaseKeyLow = cpu_to_le64(*((u64 *)lease_key));
  707. buf->lcontext.LeaseKeyHigh = cpu_to_le64(*((u64 *)(lease_key + 8)));
  708. if (oplock == SMB2_OPLOCK_LEVEL_EXCLUSIVE)
  709. buf->lcontext.LeaseState = SMB2_LEASE_WRITE_CACHING |
  710. SMB2_LEASE_READ_CACHING;
  711. else if (oplock == SMB2_OPLOCK_LEVEL_II)
  712. buf->lcontext.LeaseState = SMB2_LEASE_READ_CACHING;
  713. else if (oplock == SMB2_OPLOCK_LEVEL_BATCH)
  714. buf->lcontext.LeaseState = SMB2_LEASE_HANDLE_CACHING |
  715. SMB2_LEASE_READ_CACHING |
  716. SMB2_LEASE_WRITE_CACHING;
  717. buf->ccontext.DataOffset = cpu_to_le16(offsetof
  718. (struct create_lease, lcontext));
  719. buf->ccontext.DataLength = cpu_to_le32(sizeof(struct lease_context));
  720. buf->ccontext.NameOffset = cpu_to_le16(offsetof
  721. (struct create_lease, Name));
  722. buf->ccontext.NameLength = cpu_to_le16(4);
  723. buf->Name[0] = 'R';
  724. buf->Name[1] = 'q';
  725. buf->Name[2] = 'L';
  726. buf->Name[3] = 's';
  727. return buf;
  728. }
  729. static __u8
  730. parse_lease_state(struct smb2_create_rsp *rsp)
  731. {
  732. char *data_offset;
  733. struct create_lease *lc;
  734. bool found = false;
  735. data_offset = (char *)rsp;
  736. data_offset += 4 + le32_to_cpu(rsp->CreateContextsOffset);
  737. lc = (struct create_lease *)data_offset;
  738. do {
  739. char *name = le16_to_cpu(lc->ccontext.NameOffset) + (char *)lc;
  740. if (le16_to_cpu(lc->ccontext.NameLength) != 4 ||
  741. strncmp(name, "RqLs", 4)) {
  742. lc = (struct create_lease *)((char *)lc
  743. + le32_to_cpu(lc->ccontext.Next));
  744. continue;
  745. }
  746. if (lc->lcontext.LeaseFlags & SMB2_LEASE_FLAG_BREAK_IN_PROGRESS)
  747. return SMB2_OPLOCK_LEVEL_NOCHANGE;
  748. found = true;
  749. break;
  750. } while (le32_to_cpu(lc->ccontext.Next) != 0);
  751. if (!found)
  752. return 0;
  753. return smb2_map_lease_to_oplock(lc->lcontext.LeaseState);
  754. }
  755. int
  756. SMB2_open(const unsigned int xid, struct cifs_tcon *tcon, __le16 *path,
  757. u64 *persistent_fid, u64 *volatile_fid, __u32 desired_access,
  758. __u32 create_disposition, __u32 file_attributes, __u32 create_options,
  759. __u8 *oplock, struct smb2_file_all_info *buf)
  760. {
  761. struct smb2_create_req *req;
  762. struct smb2_create_rsp *rsp;
  763. struct TCP_Server_Info *server;
  764. struct cifs_ses *ses = tcon->ses;
  765. struct kvec iov[3];
  766. int resp_buftype;
  767. int uni_path_len;
  768. __le16 *copy_path = NULL;
  769. int copy_size;
  770. int rc = 0;
  771. int num_iovecs = 2;
  772. cifs_dbg(FYI, "create/open\n");
  773. if (ses && (ses->server))
  774. server = ses->server;
  775. else
  776. return -EIO;
  777. rc = small_smb2_init(SMB2_CREATE, tcon, (void **) &req);
  778. if (rc)
  779. return rc;
  780. req->ImpersonationLevel = IL_IMPERSONATION;
  781. req->DesiredAccess = cpu_to_le32(desired_access);
  782. /* File attributes ignored on open (used in create though) */
  783. req->FileAttributes = cpu_to_le32(file_attributes);
  784. req->ShareAccess = FILE_SHARE_ALL_LE;
  785. req->CreateDisposition = cpu_to_le32(create_disposition);
  786. req->CreateOptions = cpu_to_le32(create_options);
  787. uni_path_len = (2 * UniStrnlen((wchar_t *)path, PATH_MAX)) + 2;
  788. req->NameOffset = cpu_to_le16(sizeof(struct smb2_create_req)
  789. - 8 /* pad */ - 4 /* do not count rfc1001 len field */);
  790. iov[0].iov_base = (char *)req;
  791. /* 4 for rfc1002 length field */
  792. iov[0].iov_len = get_rfc1002_length(req) + 4;
  793. /* MUST set path len (NameLength) to 0 opening root of share */
  794. if (uni_path_len >= 4) {
  795. req->NameLength = cpu_to_le16(uni_path_len - 2);
  796. /* -1 since last byte is buf[0] which is sent below (path) */
  797. iov[0].iov_len--;
  798. if (uni_path_len % 8 != 0) {
  799. copy_size = uni_path_len / 8 * 8;
  800. if (copy_size < uni_path_len)
  801. copy_size += 8;
  802. copy_path = kzalloc(copy_size, GFP_KERNEL);
  803. if (!copy_path)
  804. return -ENOMEM;
  805. memcpy((char *)copy_path, (const char *)path,
  806. uni_path_len);
  807. uni_path_len = copy_size;
  808. path = copy_path;
  809. }
  810. iov[1].iov_len = uni_path_len;
  811. iov[1].iov_base = path;
  812. /*
  813. * -1 since last byte is buf[0] which was counted in
  814. * smb2_buf_len.
  815. */
  816. inc_rfc1001_len(req, uni_path_len - 1);
  817. } else {
  818. iov[0].iov_len += 7;
  819. req->hdr.smb2_buf_length = cpu_to_be32(be32_to_cpu(
  820. req->hdr.smb2_buf_length) + 8 - 1);
  821. num_iovecs = 1;
  822. req->NameLength = 0;
  823. }
  824. if (!server->oplocks)
  825. *oplock = SMB2_OPLOCK_LEVEL_NONE;
  826. if (!(tcon->ses->server->capabilities & SMB2_GLOBAL_CAP_LEASING) ||
  827. *oplock == SMB2_OPLOCK_LEVEL_NONE)
  828. req->RequestedOplockLevel = *oplock;
  829. else {
  830. iov[num_iovecs].iov_base = create_lease_buf(oplock+1, *oplock);
  831. if (iov[num_iovecs].iov_base == NULL) {
  832. cifs_small_buf_release(req);
  833. kfree(copy_path);
  834. return -ENOMEM;
  835. }
  836. iov[num_iovecs].iov_len = sizeof(struct create_lease);
  837. req->RequestedOplockLevel = SMB2_OPLOCK_LEVEL_LEASE;
  838. req->CreateContextsOffset = cpu_to_le32(
  839. sizeof(struct smb2_create_req) - 4 - 8 +
  840. iov[num_iovecs-1].iov_len);
  841. req->CreateContextsLength = cpu_to_le32(
  842. sizeof(struct create_lease));
  843. inc_rfc1001_len(&req->hdr, sizeof(struct create_lease));
  844. num_iovecs++;
  845. }
  846. rc = SendReceive2(xid, ses, iov, num_iovecs, &resp_buftype, 0);
  847. rsp = (struct smb2_create_rsp *)iov[0].iov_base;
  848. if (rc != 0) {
  849. cifs_stats_fail_inc(tcon, SMB2_CREATE_HE);
  850. goto creat_exit;
  851. }
  852. *persistent_fid = rsp->PersistentFileId;
  853. *volatile_fid = rsp->VolatileFileId;
  854. if (buf) {
  855. memcpy(buf, &rsp->CreationTime, 32);
  856. buf->AllocationSize = rsp->AllocationSize;
  857. buf->EndOfFile = rsp->EndofFile;
  858. buf->Attributes = rsp->FileAttributes;
  859. buf->NumberOfLinks = cpu_to_le32(1);
  860. buf->DeletePending = 0;
  861. }
  862. if (rsp->OplockLevel == SMB2_OPLOCK_LEVEL_LEASE)
  863. *oplock = parse_lease_state(rsp);
  864. else
  865. *oplock = rsp->OplockLevel;
  866. creat_exit:
  867. kfree(copy_path);
  868. free_rsp_buf(resp_buftype, rsp);
  869. return rc;
  870. }
  871. int
  872. SMB2_close(const unsigned int xid, struct cifs_tcon *tcon,
  873. u64 persistent_fid, u64 volatile_fid)
  874. {
  875. struct smb2_close_req *req;
  876. struct smb2_close_rsp *rsp;
  877. struct TCP_Server_Info *server;
  878. struct cifs_ses *ses = tcon->ses;
  879. struct kvec iov[1];
  880. int resp_buftype;
  881. int rc = 0;
  882. cifs_dbg(FYI, "Close\n");
  883. if (ses && (ses->server))
  884. server = ses->server;
  885. else
  886. return -EIO;
  887. rc = small_smb2_init(SMB2_CLOSE, tcon, (void **) &req);
  888. if (rc)
  889. return rc;
  890. req->PersistentFileId = persistent_fid;
  891. req->VolatileFileId = volatile_fid;
  892. iov[0].iov_base = (char *)req;
  893. /* 4 for rfc1002 length field */
  894. iov[0].iov_len = get_rfc1002_length(req) + 4;
  895. rc = SendReceive2(xid, ses, iov, 1, &resp_buftype, 0);
  896. rsp = (struct smb2_close_rsp *)iov[0].iov_base;
  897. if (rc != 0) {
  898. if (tcon)
  899. cifs_stats_fail_inc(tcon, SMB2_CLOSE_HE);
  900. goto close_exit;
  901. }
  902. /* BB FIXME - decode close response, update inode for caching */
  903. close_exit:
  904. free_rsp_buf(resp_buftype, rsp);
  905. return rc;
  906. }
  907. static int
  908. validate_buf(unsigned int offset, unsigned int buffer_length,
  909. struct smb2_hdr *hdr, unsigned int min_buf_size)
  910. {
  911. unsigned int smb_len = be32_to_cpu(hdr->smb2_buf_length);
  912. char *end_of_smb = smb_len + 4 /* RFC1001 length field */ + (char *)hdr;
  913. char *begin_of_buf = 4 /* RFC1001 len field */ + offset + (char *)hdr;
  914. char *end_of_buf = begin_of_buf + buffer_length;
  915. if (buffer_length < min_buf_size) {
  916. cifs_dbg(VFS, "buffer length %d smaller than minimum size %d\n",
  917. buffer_length, min_buf_size);
  918. return -EINVAL;
  919. }
  920. /* check if beyond RFC1001 maximum length */
  921. if ((smb_len > 0x7FFFFF) || (buffer_length > 0x7FFFFF)) {
  922. cifs_dbg(VFS, "buffer length %d or smb length %d too large\n",
  923. buffer_length, smb_len);
  924. return -EINVAL;
  925. }
  926. if ((begin_of_buf > end_of_smb) || (end_of_buf > end_of_smb)) {
  927. cifs_dbg(VFS, "illegal server response, bad offset to data\n");
  928. return -EINVAL;
  929. }
  930. return 0;
  931. }
  932. /*
  933. * If SMB buffer fields are valid, copy into temporary buffer to hold result.
  934. * Caller must free buffer.
  935. */
  936. static int
  937. validate_and_copy_buf(unsigned int offset, unsigned int buffer_length,
  938. struct smb2_hdr *hdr, unsigned int minbufsize,
  939. char *data)
  940. {
  941. char *begin_of_buf = 4 /* RFC1001 len field */ + offset + (char *)hdr;
  942. int rc;
  943. if (!data)
  944. return -EINVAL;
  945. rc = validate_buf(offset, buffer_length, hdr, minbufsize);
  946. if (rc)
  947. return rc;
  948. memcpy(data, begin_of_buf, buffer_length);
  949. return 0;
  950. }
  951. static int
  952. query_info(const unsigned int xid, struct cifs_tcon *tcon,
  953. u64 persistent_fid, u64 volatile_fid, u8 info_class,
  954. size_t output_len, size_t min_len, void *data)
  955. {
  956. struct smb2_query_info_req *req;
  957. struct smb2_query_info_rsp *rsp = NULL;
  958. struct kvec iov[2];
  959. int rc = 0;
  960. int resp_buftype;
  961. struct TCP_Server_Info *server;
  962. struct cifs_ses *ses = tcon->ses;
  963. cifs_dbg(FYI, "Query Info\n");
  964. if (ses && (ses->server))
  965. server = ses->server;
  966. else
  967. return -EIO;
  968. rc = small_smb2_init(SMB2_QUERY_INFO, tcon, (void **) &req);
  969. if (rc)
  970. return rc;
  971. req->InfoType = SMB2_O_INFO_FILE;
  972. req->FileInfoClass = info_class;
  973. req->PersistentFileId = persistent_fid;
  974. req->VolatileFileId = volatile_fid;
  975. /* 4 for rfc1002 length field and 1 for Buffer */
  976. req->InputBufferOffset =
  977. cpu_to_le16(sizeof(struct smb2_query_info_req) - 1 - 4);
  978. req->OutputBufferLength = cpu_to_le32(output_len);
  979. iov[0].iov_base = (char *)req;
  980. /* 4 for rfc1002 length field */
  981. iov[0].iov_len = get_rfc1002_length(req) + 4;
  982. rc = SendReceive2(xid, ses, iov, 1, &resp_buftype, 0);
  983. rsp = (struct smb2_query_info_rsp *)iov[0].iov_base;
  984. if (rc) {
  985. cifs_stats_fail_inc(tcon, SMB2_QUERY_INFO_HE);
  986. goto qinf_exit;
  987. }
  988. rc = validate_and_copy_buf(le16_to_cpu(rsp->OutputBufferOffset),
  989. le32_to_cpu(rsp->OutputBufferLength),
  990. &rsp->hdr, min_len, data);
  991. qinf_exit:
  992. free_rsp_buf(resp_buftype, rsp);
  993. return rc;
  994. }
  995. int
  996. SMB2_query_info(const unsigned int xid, struct cifs_tcon *tcon,
  997. u64 persistent_fid, u64 volatile_fid,
  998. struct smb2_file_all_info *data)
  999. {
  1000. return query_info(xid, tcon, persistent_fid, volatile_fid,
  1001. FILE_ALL_INFORMATION,
  1002. sizeof(struct smb2_file_all_info) + MAX_NAME * 2,
  1003. sizeof(struct smb2_file_all_info), data);
  1004. }
  1005. int
  1006. SMB2_get_srv_num(const unsigned int xid, struct cifs_tcon *tcon,
  1007. u64 persistent_fid, u64 volatile_fid, __le64 *uniqueid)
  1008. {
  1009. return query_info(xid, tcon, persistent_fid, volatile_fid,
  1010. FILE_INTERNAL_INFORMATION,
  1011. sizeof(struct smb2_file_internal_info),
  1012. sizeof(struct smb2_file_internal_info), uniqueid);
  1013. }
  1014. /*
  1015. * This is a no-op for now. We're not really interested in the reply, but
  1016. * rather in the fact that the server sent one and that server->lstrp
  1017. * gets updated.
  1018. *
  1019. * FIXME: maybe we should consider checking that the reply matches request?
  1020. */
  1021. static void
  1022. smb2_echo_callback(struct mid_q_entry *mid)
  1023. {
  1024. struct TCP_Server_Info *server = mid->callback_data;
  1025. struct smb2_echo_rsp *smb2 = (struct smb2_echo_rsp *)mid->resp_buf;
  1026. unsigned int credits_received = 1;
  1027. if (mid->mid_state == MID_RESPONSE_RECEIVED)
  1028. credits_received = le16_to_cpu(smb2->hdr.CreditRequest);
  1029. DeleteMidQEntry(mid);
  1030. add_credits(server, credits_received, CIFS_ECHO_OP);
  1031. }
  1032. int
  1033. SMB2_echo(struct TCP_Server_Info *server)
  1034. {
  1035. struct smb2_echo_req *req;
  1036. int rc = 0;
  1037. struct kvec iov;
  1038. struct smb_rqst rqst = { .rq_iov = &iov,
  1039. .rq_nvec = 1 };
  1040. cifs_dbg(FYI, "In echo request\n");
  1041. rc = small_smb2_init(SMB2_ECHO, NULL, (void **)&req);
  1042. if (rc)
  1043. return rc;
  1044. req->hdr.CreditRequest = cpu_to_le16(1);
  1045. iov.iov_base = (char *)req;
  1046. /* 4 for rfc1002 length field */
  1047. iov.iov_len = get_rfc1002_length(req) + 4;
  1048. rc = cifs_call_async(server, &rqst, NULL, smb2_echo_callback, server,
  1049. CIFS_ECHO_OP);
  1050. if (rc)
  1051. cifs_dbg(FYI, "Echo request failed: %d\n", rc);
  1052. cifs_small_buf_release(req);
  1053. return rc;
  1054. }
  1055. int
  1056. SMB2_flush(const unsigned int xid, struct cifs_tcon *tcon, u64 persistent_fid,
  1057. u64 volatile_fid)
  1058. {
  1059. struct smb2_flush_req *req;
  1060. struct TCP_Server_Info *server;
  1061. struct cifs_ses *ses = tcon->ses;
  1062. struct kvec iov[1];
  1063. int resp_buftype;
  1064. int rc = 0;
  1065. cifs_dbg(FYI, "Flush\n");
  1066. if (ses && (ses->server))
  1067. server = ses->server;
  1068. else
  1069. return -EIO;
  1070. rc = small_smb2_init(SMB2_FLUSH, tcon, (void **) &req);
  1071. if (rc)
  1072. return rc;
  1073. req->PersistentFileId = persistent_fid;
  1074. req->VolatileFileId = volatile_fid;
  1075. iov[0].iov_base = (char *)req;
  1076. /* 4 for rfc1002 length field */
  1077. iov[0].iov_len = get_rfc1002_length(req) + 4;
  1078. rc = SendReceive2(xid, ses, iov, 1, &resp_buftype, 0);
  1079. if ((rc != 0) && tcon)
  1080. cifs_stats_fail_inc(tcon, SMB2_FLUSH_HE);
  1081. free_rsp_buf(resp_buftype, iov[0].iov_base);
  1082. return rc;
  1083. }
  1084. /*
  1085. * To form a chain of read requests, any read requests after the first should
  1086. * have the end_of_chain boolean set to true.
  1087. */
  1088. static int
  1089. smb2_new_read_req(struct kvec *iov, struct cifs_io_parms *io_parms,
  1090. unsigned int remaining_bytes, int request_type)
  1091. {
  1092. int rc = -EACCES;
  1093. struct smb2_read_req *req = NULL;
  1094. rc = small_smb2_init(SMB2_READ, io_parms->tcon, (void **) &req);
  1095. if (rc)
  1096. return rc;
  1097. if (io_parms->tcon->ses->server == NULL)
  1098. return -ECONNABORTED;
  1099. req->hdr.ProcessId = cpu_to_le32(io_parms->pid);
  1100. req->PersistentFileId = io_parms->persistent_fid;
  1101. req->VolatileFileId = io_parms->volatile_fid;
  1102. req->ReadChannelInfoOffset = 0; /* reserved */
  1103. req->ReadChannelInfoLength = 0; /* reserved */
  1104. req->Channel = 0; /* reserved */
  1105. req->MinimumCount = 0;
  1106. req->Length = cpu_to_le32(io_parms->length);
  1107. req->Offset = cpu_to_le64(io_parms->offset);
  1108. if (request_type & CHAINED_REQUEST) {
  1109. if (!(request_type & END_OF_CHAIN)) {
  1110. /* 4 for rfc1002 length field */
  1111. req->hdr.NextCommand =
  1112. cpu_to_le32(get_rfc1002_length(req) + 4);
  1113. } else /* END_OF_CHAIN */
  1114. req->hdr.NextCommand = 0;
  1115. if (request_type & RELATED_REQUEST) {
  1116. req->hdr.Flags |= SMB2_FLAGS_RELATED_OPERATIONS;
  1117. /*
  1118. * Related requests use info from previous read request
  1119. * in chain.
  1120. */
  1121. req->hdr.SessionId = 0xFFFFFFFF;
  1122. req->hdr.TreeId = 0xFFFFFFFF;
  1123. req->PersistentFileId = 0xFFFFFFFF;
  1124. req->VolatileFileId = 0xFFFFFFFF;
  1125. }
  1126. }
  1127. if (remaining_bytes > io_parms->length)
  1128. req->RemainingBytes = cpu_to_le32(remaining_bytes);
  1129. else
  1130. req->RemainingBytes = 0;
  1131. iov[0].iov_base = (char *)req;
  1132. /* 4 for rfc1002 length field */
  1133. iov[0].iov_len = get_rfc1002_length(req) + 4;
  1134. return rc;
  1135. }
  1136. static void
  1137. smb2_readv_callback(struct mid_q_entry *mid)
  1138. {
  1139. struct cifs_readdata *rdata = mid->callback_data;
  1140. struct cifs_tcon *tcon = tlink_tcon(rdata->cfile->tlink);
  1141. struct TCP_Server_Info *server = tcon->ses->server;
  1142. struct smb2_hdr *buf = (struct smb2_hdr *)rdata->iov.iov_base;
  1143. unsigned int credits_received = 1;
  1144. struct smb_rqst rqst = { .rq_iov = &rdata->iov,
  1145. .rq_nvec = 1,
  1146. .rq_pages = rdata->pages,
  1147. .rq_npages = rdata->nr_pages,
  1148. .rq_pagesz = rdata->pagesz,
  1149. .rq_tailsz = rdata->tailsz };
  1150. cifs_dbg(FYI, "%s: mid=%llu state=%d result=%d bytes=%u\n",
  1151. __func__, mid->mid, mid->mid_state, rdata->result,
  1152. rdata->bytes);
  1153. switch (mid->mid_state) {
  1154. case MID_RESPONSE_RECEIVED:
  1155. credits_received = le16_to_cpu(buf->CreditRequest);
  1156. /* result already set, check signature */
  1157. if (server->sign) {
  1158. int rc;
  1159. rc = smb2_verify_signature(&rqst, server);
  1160. if (rc)
  1161. cifs_dbg(VFS, "SMB signature verification returned error = %d\n",
  1162. rc);
  1163. }
  1164. /* FIXME: should this be counted toward the initiating task? */
  1165. task_io_account_read(rdata->bytes);
  1166. cifs_stats_bytes_read(tcon, rdata->bytes);
  1167. break;
  1168. case MID_REQUEST_SUBMITTED:
  1169. case MID_RETRY_NEEDED:
  1170. rdata->result = -EAGAIN;
  1171. break;
  1172. default:
  1173. if (rdata->result != -ENODATA)
  1174. rdata->result = -EIO;
  1175. }
  1176. if (rdata->result)
  1177. cifs_stats_fail_inc(tcon, SMB2_READ_HE);
  1178. queue_work(cifsiod_wq, &rdata->work);
  1179. DeleteMidQEntry(mid);
  1180. add_credits(server, credits_received, 0);
  1181. }
  1182. /* smb2_async_readv - send an async write, and set up mid to handle result */
  1183. int
  1184. smb2_async_readv(struct cifs_readdata *rdata)
  1185. {
  1186. int rc;
  1187. struct smb2_hdr *buf;
  1188. struct cifs_io_parms io_parms;
  1189. struct smb_rqst rqst = { .rq_iov = &rdata->iov,
  1190. .rq_nvec = 1 };
  1191. cifs_dbg(FYI, "%s: offset=%llu bytes=%u\n",
  1192. __func__, rdata->offset, rdata->bytes);
  1193. io_parms.tcon = tlink_tcon(rdata->cfile->tlink);
  1194. io_parms.offset = rdata->offset;
  1195. io_parms.length = rdata->bytes;
  1196. io_parms.persistent_fid = rdata->cfile->fid.persistent_fid;
  1197. io_parms.volatile_fid = rdata->cfile->fid.volatile_fid;
  1198. io_parms.pid = rdata->pid;
  1199. rc = smb2_new_read_req(&rdata->iov, &io_parms, 0, 0);
  1200. if (rc)
  1201. return rc;
  1202. buf = (struct smb2_hdr *)rdata->iov.iov_base;
  1203. /* 4 for rfc1002 length field */
  1204. rdata->iov.iov_len = get_rfc1002_length(rdata->iov.iov_base) + 4;
  1205. kref_get(&rdata->refcount);
  1206. rc = cifs_call_async(io_parms.tcon->ses->server, &rqst,
  1207. cifs_readv_receive, smb2_readv_callback,
  1208. rdata, 0);
  1209. if (rc) {
  1210. kref_put(&rdata->refcount, cifs_readdata_release);
  1211. cifs_stats_fail_inc(io_parms.tcon, SMB2_READ_HE);
  1212. }
  1213. cifs_small_buf_release(buf);
  1214. return rc;
  1215. }
  1216. int
  1217. SMB2_read(const unsigned int xid, struct cifs_io_parms *io_parms,
  1218. unsigned int *nbytes, char **buf, int *buf_type)
  1219. {
  1220. int resp_buftype, rc = -EACCES;
  1221. struct smb2_read_rsp *rsp = NULL;
  1222. struct kvec iov[1];
  1223. *nbytes = 0;
  1224. rc = smb2_new_read_req(iov, io_parms, 0, 0);
  1225. if (rc)
  1226. return rc;
  1227. rc = SendReceive2(xid, io_parms->tcon->ses, iov, 1,
  1228. &resp_buftype, CIFS_LOG_ERROR);
  1229. rsp = (struct smb2_read_rsp *)iov[0].iov_base;
  1230. if (rsp->hdr.Status == STATUS_END_OF_FILE) {
  1231. free_rsp_buf(resp_buftype, iov[0].iov_base);
  1232. return 0;
  1233. }
  1234. if (rc) {
  1235. cifs_stats_fail_inc(io_parms->tcon, SMB2_READ_HE);
  1236. cifs_dbg(VFS, "Send error in read = %d\n", rc);
  1237. } else {
  1238. *nbytes = le32_to_cpu(rsp->DataLength);
  1239. if ((*nbytes > CIFS_MAX_MSGSIZE) ||
  1240. (*nbytes > io_parms->length)) {
  1241. cifs_dbg(FYI, "bad length %d for count %d\n",
  1242. *nbytes, io_parms->length);
  1243. rc = -EIO;
  1244. *nbytes = 0;
  1245. }
  1246. }
  1247. if (*buf) {
  1248. memcpy(*buf, (char *)rsp->hdr.ProtocolId + rsp->DataOffset,
  1249. *nbytes);
  1250. free_rsp_buf(resp_buftype, iov[0].iov_base);
  1251. } else if (resp_buftype != CIFS_NO_BUFFER) {
  1252. *buf = iov[0].iov_base;
  1253. if (resp_buftype == CIFS_SMALL_BUFFER)
  1254. *buf_type = CIFS_SMALL_BUFFER;
  1255. else if (resp_buftype == CIFS_LARGE_BUFFER)
  1256. *buf_type = CIFS_LARGE_BUFFER;
  1257. }
  1258. return rc;
  1259. }
  1260. /*
  1261. * Check the mid_state and signature on received buffer (if any), and queue the
  1262. * workqueue completion task.
  1263. */
  1264. static void
  1265. smb2_writev_callback(struct mid_q_entry *mid)
  1266. {
  1267. struct cifs_writedata *wdata = mid->callback_data;
  1268. struct cifs_tcon *tcon = tlink_tcon(wdata->cfile->tlink);
  1269. unsigned int written;
  1270. struct smb2_write_rsp *rsp = (struct smb2_write_rsp *)mid->resp_buf;
  1271. unsigned int credits_received = 1;
  1272. switch (mid->mid_state) {
  1273. case MID_RESPONSE_RECEIVED:
  1274. credits_received = le16_to_cpu(rsp->hdr.CreditRequest);
  1275. wdata->result = smb2_check_receive(mid, tcon->ses->server, 0);
  1276. if (wdata->result != 0)
  1277. break;
  1278. written = le32_to_cpu(rsp->DataLength);
  1279. /*
  1280. * Mask off high 16 bits when bytes written as returned
  1281. * by the server is greater than bytes requested by the
  1282. * client. OS/2 servers are known to set incorrect
  1283. * CountHigh values.
  1284. */
  1285. if (written > wdata->bytes)
  1286. written &= 0xFFFF;
  1287. if (written < wdata->bytes)
  1288. wdata->result = -ENOSPC;
  1289. else
  1290. wdata->bytes = written;
  1291. break;
  1292. case MID_REQUEST_SUBMITTED:
  1293. case MID_RETRY_NEEDED:
  1294. wdata->result = -EAGAIN;
  1295. break;
  1296. default:
  1297. wdata->result = -EIO;
  1298. break;
  1299. }
  1300. if (wdata->result)
  1301. cifs_stats_fail_inc(tcon, SMB2_WRITE_HE);
  1302. queue_work(cifsiod_wq, &wdata->work);
  1303. DeleteMidQEntry(mid);
  1304. add_credits(tcon->ses->server, credits_received, 0);
  1305. }
  1306. /* smb2_async_writev - send an async write, and set up mid to handle result */
  1307. int
  1308. smb2_async_writev(struct cifs_writedata *wdata)
  1309. {
  1310. int rc = -EACCES;
  1311. struct smb2_write_req *req = NULL;
  1312. struct cifs_tcon *tcon = tlink_tcon(wdata->cfile->tlink);
  1313. struct kvec iov;
  1314. struct smb_rqst rqst;
  1315. rc = small_smb2_init(SMB2_WRITE, tcon, (void **) &req);
  1316. if (rc)
  1317. goto async_writev_out;
  1318. req->hdr.ProcessId = cpu_to_le32(wdata->cfile->pid);
  1319. req->PersistentFileId = wdata->cfile->fid.persistent_fid;
  1320. req->VolatileFileId = wdata->cfile->fid.volatile_fid;
  1321. req->WriteChannelInfoOffset = 0;
  1322. req->WriteChannelInfoLength = 0;
  1323. req->Channel = 0;
  1324. req->Offset = cpu_to_le64(wdata->offset);
  1325. /* 4 for rfc1002 length field */
  1326. req->DataOffset = cpu_to_le16(
  1327. offsetof(struct smb2_write_req, Buffer) - 4);
  1328. req->RemainingBytes = 0;
  1329. /* 4 for rfc1002 length field and 1 for Buffer */
  1330. iov.iov_len = get_rfc1002_length(req) + 4 - 1;
  1331. iov.iov_base = req;
  1332. rqst.rq_iov = &iov;
  1333. rqst.rq_nvec = 1;
  1334. rqst.rq_pages = wdata->pages;
  1335. rqst.rq_npages = wdata->nr_pages;
  1336. rqst.rq_pagesz = wdata->pagesz;
  1337. rqst.rq_tailsz = wdata->tailsz;
  1338. cifs_dbg(FYI, "async write at %llu %u bytes\n",
  1339. wdata->offset, wdata->bytes);
  1340. req->Length = cpu_to_le32(wdata->bytes);
  1341. inc_rfc1001_len(&req->hdr, wdata->bytes - 1 /* Buffer */);
  1342. kref_get(&wdata->refcount);
  1343. rc = cifs_call_async(tcon->ses->server, &rqst, NULL,
  1344. smb2_writev_callback, wdata, 0);
  1345. if (rc) {
  1346. kref_put(&wdata->refcount, cifs_writedata_release);
  1347. cifs_stats_fail_inc(tcon, SMB2_WRITE_HE);
  1348. }
  1349. async_writev_out:
  1350. cifs_small_buf_release(req);
  1351. return rc;
  1352. }
  1353. /*
  1354. * SMB2_write function gets iov pointer to kvec array with n_vec as a length.
  1355. * The length field from io_parms must be at least 1 and indicates a number of
  1356. * elements with data to write that begins with position 1 in iov array. All
  1357. * data length is specified by count.
  1358. */
  1359. int
  1360. SMB2_write(const unsigned int xid, struct cifs_io_parms *io_parms,
  1361. unsigned int *nbytes, struct kvec *iov, int n_vec)
  1362. {
  1363. int rc = 0;
  1364. struct smb2_write_req *req = NULL;
  1365. struct smb2_write_rsp *rsp = NULL;
  1366. int resp_buftype;
  1367. *nbytes = 0;
  1368. if (n_vec < 1)
  1369. return rc;
  1370. rc = small_smb2_init(SMB2_WRITE, io_parms->tcon, (void **) &req);
  1371. if (rc)
  1372. return rc;
  1373. if (io_parms->tcon->ses->server == NULL)
  1374. return -ECONNABORTED;
  1375. req->hdr.ProcessId = cpu_to_le32(io_parms->pid);
  1376. req->PersistentFileId = io_parms->persistent_fid;
  1377. req->VolatileFileId = io_parms->volatile_fid;
  1378. req->WriteChannelInfoOffset = 0;
  1379. req->WriteChannelInfoLength = 0;
  1380. req->Channel = 0;
  1381. req->Length = cpu_to_le32(io_parms->length);
  1382. req->Offset = cpu_to_le64(io_parms->offset);
  1383. /* 4 for rfc1002 length field */
  1384. req->DataOffset = cpu_to_le16(
  1385. offsetof(struct smb2_write_req, Buffer) - 4);
  1386. req->RemainingBytes = 0;
  1387. iov[0].iov_base = (char *)req;
  1388. /* 4 for rfc1002 length field and 1 for Buffer */
  1389. iov[0].iov_len = get_rfc1002_length(req) + 4 - 1;
  1390. /* length of entire message including data to be written */
  1391. inc_rfc1001_len(req, io_parms->length - 1 /* Buffer */);
  1392. rc = SendReceive2(xid, io_parms->tcon->ses, iov, n_vec + 1,
  1393. &resp_buftype, 0);
  1394. rsp = (struct smb2_write_rsp *)iov[0].iov_base;
  1395. if (rc) {
  1396. cifs_stats_fail_inc(io_parms->tcon, SMB2_WRITE_HE);
  1397. cifs_dbg(VFS, "Send error in write = %d\n", rc);
  1398. } else
  1399. *nbytes = le32_to_cpu(rsp->DataLength);
  1400. free_rsp_buf(resp_buftype, rsp);
  1401. return rc;
  1402. }
  1403. static unsigned int
  1404. num_entries(char *bufstart, char *end_of_buf, char **lastentry, size_t size)
  1405. {
  1406. int len;
  1407. unsigned int entrycount = 0;
  1408. unsigned int next_offset = 0;
  1409. FILE_DIRECTORY_INFO *entryptr;
  1410. if (bufstart == NULL)
  1411. return 0;
  1412. entryptr = (FILE_DIRECTORY_INFO *)bufstart;
  1413. while (1) {
  1414. entryptr = (FILE_DIRECTORY_INFO *)
  1415. ((char *)entryptr + next_offset);
  1416. if ((char *)entryptr + size > end_of_buf) {
  1417. cifs_dbg(VFS, "malformed search entry would overflow\n");
  1418. break;
  1419. }
  1420. len = le32_to_cpu(entryptr->FileNameLength);
  1421. if ((char *)entryptr + len + size > end_of_buf) {
  1422. cifs_dbg(VFS, "directory entry name would overflow frame end of buf %p\n",
  1423. end_of_buf);
  1424. break;
  1425. }
  1426. *lastentry = (char *)entryptr;
  1427. entrycount++;
  1428. next_offset = le32_to_cpu(entryptr->NextEntryOffset);
  1429. if (!next_offset)
  1430. break;
  1431. }
  1432. return entrycount;
  1433. }
  1434. /*
  1435. * Readdir/FindFirst
  1436. */
  1437. int
  1438. SMB2_query_directory(const unsigned int xid, struct cifs_tcon *tcon,
  1439. u64 persistent_fid, u64 volatile_fid, int index,
  1440. struct cifs_search_info *srch_inf)
  1441. {
  1442. struct smb2_query_directory_req *req;
  1443. struct smb2_query_directory_rsp *rsp = NULL;
  1444. struct kvec iov[2];
  1445. int rc = 0;
  1446. int len;
  1447. int resp_buftype;
  1448. unsigned char *bufptr;
  1449. struct TCP_Server_Info *server;
  1450. struct cifs_ses *ses = tcon->ses;
  1451. __le16 asteriks = cpu_to_le16('*');
  1452. char *end_of_smb;
  1453. unsigned int output_size = CIFSMaxBufSize;
  1454. size_t info_buf_size;
  1455. if (ses && (ses->server))
  1456. server = ses->server;
  1457. else
  1458. return -EIO;
  1459. rc = small_smb2_init(SMB2_QUERY_DIRECTORY, tcon, (void **) &req);
  1460. if (rc)
  1461. return rc;
  1462. switch (srch_inf->info_level) {
  1463. case SMB_FIND_FILE_DIRECTORY_INFO:
  1464. req->FileInformationClass = FILE_DIRECTORY_INFORMATION;
  1465. info_buf_size = sizeof(FILE_DIRECTORY_INFO) - 1;
  1466. break;
  1467. case SMB_FIND_FILE_ID_FULL_DIR_INFO:
  1468. req->FileInformationClass = FILEID_FULL_DIRECTORY_INFORMATION;
  1469. info_buf_size = sizeof(SEARCH_ID_FULL_DIR_INFO) - 1;
  1470. break;
  1471. default:
  1472. cifs_dbg(VFS, "info level %u isn't supported\n",
  1473. srch_inf->info_level);
  1474. rc = -EINVAL;
  1475. goto qdir_exit;
  1476. }
  1477. req->FileIndex = cpu_to_le32(index);
  1478. req->PersistentFileId = persistent_fid;
  1479. req->VolatileFileId = volatile_fid;
  1480. len = 0x2;
  1481. bufptr = req->Buffer;
  1482. memcpy(bufptr, &asteriks, len);
  1483. req->FileNameOffset =
  1484. cpu_to_le16(sizeof(struct smb2_query_directory_req) - 1 - 4);
  1485. req->FileNameLength = cpu_to_le16(len);
  1486. /*
  1487. * BB could be 30 bytes or so longer if we used SMB2 specific
  1488. * buffer lengths, but this is safe and close enough.
  1489. */
  1490. output_size = min_t(unsigned int, output_size, server->maxBuf);
  1491. output_size = min_t(unsigned int, output_size, 2 << 15);
  1492. req->OutputBufferLength = cpu_to_le32(output_size);
  1493. iov[0].iov_base = (char *)req;
  1494. /* 4 for RFC1001 length and 1 for Buffer */
  1495. iov[0].iov_len = get_rfc1002_length(req) + 4 - 1;
  1496. iov[1].iov_base = (char *)(req->Buffer);
  1497. iov[1].iov_len = len;
  1498. inc_rfc1001_len(req, len - 1 /* Buffer */);
  1499. rc = SendReceive2(xid, ses, iov, 2, &resp_buftype, 0);
  1500. rsp = (struct smb2_query_directory_rsp *)iov[0].iov_base;
  1501. if (rc) {
  1502. cifs_stats_fail_inc(tcon, SMB2_QUERY_DIRECTORY_HE);
  1503. goto qdir_exit;
  1504. }
  1505. rc = validate_buf(le16_to_cpu(rsp->OutputBufferOffset),
  1506. le32_to_cpu(rsp->OutputBufferLength), &rsp->hdr,
  1507. info_buf_size);
  1508. if (rc)
  1509. goto qdir_exit;
  1510. srch_inf->unicode = true;
  1511. if (srch_inf->ntwrk_buf_start) {
  1512. if (srch_inf->smallBuf)
  1513. cifs_small_buf_release(srch_inf->ntwrk_buf_start);
  1514. else
  1515. cifs_buf_release(srch_inf->ntwrk_buf_start);
  1516. }
  1517. srch_inf->ntwrk_buf_start = (char *)rsp;
  1518. srch_inf->srch_entries_start = srch_inf->last_entry = 4 /* rfclen */ +
  1519. (char *)&rsp->hdr + le16_to_cpu(rsp->OutputBufferOffset);
  1520. /* 4 for rfc1002 length field */
  1521. end_of_smb = get_rfc1002_length(rsp) + 4 + (char *)&rsp->hdr;
  1522. srch_inf->entries_in_buffer =
  1523. num_entries(srch_inf->srch_entries_start, end_of_smb,
  1524. &srch_inf->last_entry, info_buf_size);
  1525. srch_inf->index_of_last_entry += srch_inf->entries_in_buffer;
  1526. cifs_dbg(FYI, "num entries %d last_index %lld srch start %p srch end %p\n",
  1527. srch_inf->entries_in_buffer, srch_inf->index_of_last_entry,
  1528. srch_inf->srch_entries_start, srch_inf->last_entry);
  1529. if (resp_buftype == CIFS_LARGE_BUFFER)
  1530. srch_inf->smallBuf = false;
  1531. else if (resp_buftype == CIFS_SMALL_BUFFER)
  1532. srch_inf->smallBuf = true;
  1533. else
  1534. cifs_dbg(VFS, "illegal search buffer type\n");
  1535. if (rsp->hdr.Status == STATUS_NO_MORE_FILES)
  1536. srch_inf->endOfSearch = 1;
  1537. else
  1538. srch_inf->endOfSearch = 0;
  1539. return rc;
  1540. qdir_exit:
  1541. free_rsp_buf(resp_buftype, rsp);
  1542. return rc;
  1543. }
  1544. static int
  1545. send_set_info(const unsigned int xid, struct cifs_tcon *tcon,
  1546. u64 persistent_fid, u64 volatile_fid, u32 pid, int info_class,
  1547. unsigned int num, void **data, unsigned int *size)
  1548. {
  1549. struct smb2_set_info_req *req;
  1550. struct smb2_set_info_rsp *rsp = NULL;
  1551. struct kvec *iov;
  1552. int rc = 0;
  1553. int resp_buftype;
  1554. unsigned int i;
  1555. struct TCP_Server_Info *server;
  1556. struct cifs_ses *ses = tcon->ses;
  1557. if (ses && (ses->server))
  1558. server = ses->server;
  1559. else
  1560. return -EIO;
  1561. if (!num)
  1562. return -EINVAL;
  1563. iov = kmalloc(sizeof(struct kvec) * num, GFP_KERNEL);
  1564. if (!iov)
  1565. return -ENOMEM;
  1566. rc = small_smb2_init(SMB2_SET_INFO, tcon, (void **) &req);
  1567. if (rc) {
  1568. kfree(iov);
  1569. return rc;
  1570. }
  1571. req->hdr.ProcessId = cpu_to_le32(pid);
  1572. req->InfoType = SMB2_O_INFO_FILE;
  1573. req->FileInfoClass = info_class;
  1574. req->PersistentFileId = persistent_fid;
  1575. req->VolatileFileId = volatile_fid;
  1576. /* 4 for RFC1001 length and 1 for Buffer */
  1577. req->BufferOffset =
  1578. cpu_to_le16(sizeof(struct smb2_set_info_req) - 1 - 4);
  1579. req->BufferLength = cpu_to_le32(*size);
  1580. inc_rfc1001_len(req, *size - 1 /* Buffer */);
  1581. memcpy(req->Buffer, *data, *size);
  1582. iov[0].iov_base = (char *)req;
  1583. /* 4 for RFC1001 length */
  1584. iov[0].iov_len = get_rfc1002_length(req) + 4;
  1585. for (i = 1; i < num; i++) {
  1586. inc_rfc1001_len(req, size[i]);
  1587. le32_add_cpu(&req->BufferLength, size[i]);
  1588. iov[i].iov_base = (char *)data[i];
  1589. iov[i].iov_len = size[i];
  1590. }
  1591. rc = SendReceive2(xid, ses, iov, num, &resp_buftype, 0);
  1592. rsp = (struct smb2_set_info_rsp *)iov[0].iov_base;
  1593. if (rc != 0) {
  1594. cifs_stats_fail_inc(tcon, SMB2_SET_INFO_HE);
  1595. goto out;
  1596. }
  1597. out:
  1598. free_rsp_buf(resp_buftype, rsp);
  1599. kfree(iov);
  1600. return rc;
  1601. }
  1602. int
  1603. SMB2_rename(const unsigned int xid, struct cifs_tcon *tcon,
  1604. u64 persistent_fid, u64 volatile_fid, __le16 *target_file)
  1605. {
  1606. struct smb2_file_rename_info info;
  1607. void **data;
  1608. unsigned int size[2];
  1609. int rc;
  1610. int len = (2 * UniStrnlen((wchar_t *)target_file, PATH_MAX));
  1611. data = kmalloc(sizeof(void *) * 2, GFP_KERNEL);
  1612. if (!data)
  1613. return -ENOMEM;
  1614. info.ReplaceIfExists = 1; /* 1 = replace existing target with new */
  1615. /* 0 = fail if target already exists */
  1616. info.RootDirectory = 0; /* MBZ for network ops (why does spec say?) */
  1617. info.FileNameLength = cpu_to_le32(len);
  1618. data[0] = &info;
  1619. size[0] = sizeof(struct smb2_file_rename_info);
  1620. data[1] = target_file;
  1621. size[1] = len + 2 /* null */;
  1622. rc = send_set_info(xid, tcon, persistent_fid, volatile_fid,
  1623. current->tgid, FILE_RENAME_INFORMATION, 2, data,
  1624. size);
  1625. kfree(data);
  1626. return rc;
  1627. }
  1628. int
  1629. SMB2_set_hardlink(const unsigned int xid, struct cifs_tcon *tcon,
  1630. u64 persistent_fid, u64 volatile_fid, __le16 *target_file)
  1631. {
  1632. struct smb2_file_link_info info;
  1633. void **data;
  1634. unsigned int size[2];
  1635. int rc;
  1636. int len = (2 * UniStrnlen((wchar_t *)target_file, PATH_MAX));
  1637. data = kmalloc(sizeof(void *) * 2, GFP_KERNEL);
  1638. if (!data)
  1639. return -ENOMEM;
  1640. info.ReplaceIfExists = 0; /* 1 = replace existing link with new */
  1641. /* 0 = fail if link already exists */
  1642. info.RootDirectory = 0; /* MBZ for network ops (why does spec say?) */
  1643. info.FileNameLength = cpu_to_le32(len);
  1644. data[0] = &info;
  1645. size[0] = sizeof(struct smb2_file_link_info);
  1646. data[1] = target_file;
  1647. size[1] = len + 2 /* null */;
  1648. rc = send_set_info(xid, tcon, persistent_fid, volatile_fid,
  1649. current->tgid, FILE_LINK_INFORMATION, 2, data, size);
  1650. kfree(data);
  1651. return rc;
  1652. }
  1653. int
  1654. SMB2_set_eof(const unsigned int xid, struct cifs_tcon *tcon, u64 persistent_fid,
  1655. u64 volatile_fid, u32 pid, __le64 *eof)
  1656. {
  1657. struct smb2_file_eof_info info;
  1658. void *data;
  1659. unsigned int size;
  1660. info.EndOfFile = *eof;
  1661. data = &info;
  1662. size = sizeof(struct smb2_file_eof_info);
  1663. return send_set_info(xid, tcon, persistent_fid, volatile_fid, pid,
  1664. FILE_END_OF_FILE_INFORMATION, 1, &data, &size);
  1665. }
  1666. int
  1667. SMB2_set_info(const unsigned int xid, struct cifs_tcon *tcon,
  1668. u64 persistent_fid, u64 volatile_fid, FILE_BASIC_INFO *buf)
  1669. {
  1670. unsigned int size;
  1671. size = sizeof(FILE_BASIC_INFO);
  1672. return send_set_info(xid, tcon, persistent_fid, volatile_fid,
  1673. current->tgid, FILE_BASIC_INFORMATION, 1,
  1674. (void **)&buf, &size);
  1675. }
  1676. int
  1677. SMB2_oplock_break(const unsigned int xid, struct cifs_tcon *tcon,
  1678. const u64 persistent_fid, const u64 volatile_fid,
  1679. __u8 oplock_level)
  1680. {
  1681. int rc;
  1682. struct smb2_oplock_break *req = NULL;
  1683. cifs_dbg(FYI, "SMB2_oplock_break\n");
  1684. rc = small_smb2_init(SMB2_OPLOCK_BREAK, tcon, (void **) &req);
  1685. if (rc)
  1686. return rc;
  1687. req->VolatileFid = volatile_fid;
  1688. req->PersistentFid = persistent_fid;
  1689. req->OplockLevel = oplock_level;
  1690. req->hdr.CreditRequest = cpu_to_le16(1);
  1691. rc = SendReceiveNoRsp(xid, tcon->ses, (char *) req, CIFS_OBREAK_OP);
  1692. /* SMB2 buffer freed by function above */
  1693. if (rc) {
  1694. cifs_stats_fail_inc(tcon, SMB2_OPLOCK_BREAK_HE);
  1695. cifs_dbg(FYI, "Send error in Oplock Break = %d\n", rc);
  1696. }
  1697. return rc;
  1698. }
  1699. static void
  1700. copy_fs_info_to_kstatfs(struct smb2_fs_full_size_info *pfs_inf,
  1701. struct kstatfs *kst)
  1702. {
  1703. kst->f_bsize = le32_to_cpu(pfs_inf->BytesPerSector) *
  1704. le32_to_cpu(pfs_inf->SectorsPerAllocationUnit);
  1705. kst->f_blocks = le64_to_cpu(pfs_inf->TotalAllocationUnits);
  1706. kst->f_bfree = le64_to_cpu(pfs_inf->ActualAvailableAllocationUnits);
  1707. kst->f_bavail = le64_to_cpu(pfs_inf->CallerAvailableAllocationUnits);
  1708. return;
  1709. }
  1710. static int
  1711. build_qfs_info_req(struct kvec *iov, struct cifs_tcon *tcon, int level,
  1712. int outbuf_len, u64 persistent_fid, u64 volatile_fid)
  1713. {
  1714. int rc;
  1715. struct smb2_query_info_req *req;
  1716. cifs_dbg(FYI, "Query FSInfo level %d\n", level);
  1717. if ((tcon->ses == NULL) || (tcon->ses->server == NULL))
  1718. return -EIO;
  1719. rc = small_smb2_init(SMB2_QUERY_INFO, tcon, (void **) &req);
  1720. if (rc)
  1721. return rc;
  1722. req->InfoType = SMB2_O_INFO_FILESYSTEM;
  1723. req->FileInfoClass = level;
  1724. req->PersistentFileId = persistent_fid;
  1725. req->VolatileFileId = volatile_fid;
  1726. /* 4 for rfc1002 length field and 1 for pad */
  1727. req->InputBufferOffset =
  1728. cpu_to_le16(sizeof(struct smb2_query_info_req) - 1 - 4);
  1729. req->OutputBufferLength = cpu_to_le32(
  1730. outbuf_len + sizeof(struct smb2_query_info_rsp) - 1 - 4);
  1731. iov->iov_base = (char *)req;
  1732. /* 4 for rfc1002 length field */
  1733. iov->iov_len = get_rfc1002_length(req) + 4;
  1734. return 0;
  1735. }
  1736. int
  1737. SMB2_QFS_info(const unsigned int xid, struct cifs_tcon *tcon,
  1738. u64 persistent_fid, u64 volatile_fid, struct kstatfs *fsdata)
  1739. {
  1740. struct smb2_query_info_rsp *rsp = NULL;
  1741. struct kvec iov;
  1742. int rc = 0;
  1743. int resp_buftype;
  1744. struct cifs_ses *ses = tcon->ses;
  1745. struct smb2_fs_full_size_info *info = NULL;
  1746. rc = build_qfs_info_req(&iov, tcon, FS_FULL_SIZE_INFORMATION,
  1747. sizeof(struct smb2_fs_full_size_info),
  1748. persistent_fid, volatile_fid);
  1749. if (rc)
  1750. return rc;
  1751. rc = SendReceive2(xid, ses, &iov, 1, &resp_buftype, 0);
  1752. if (rc) {
  1753. cifs_stats_fail_inc(tcon, SMB2_QUERY_INFO_HE);
  1754. goto qinf_exit;
  1755. }
  1756. rsp = (struct smb2_query_info_rsp *)iov.iov_base;
  1757. info = (struct smb2_fs_full_size_info *)(4 /* RFC1001 len */ +
  1758. le16_to_cpu(rsp->OutputBufferOffset) + (char *)&rsp->hdr);
  1759. rc = validate_buf(le16_to_cpu(rsp->OutputBufferOffset),
  1760. le32_to_cpu(rsp->OutputBufferLength), &rsp->hdr,
  1761. sizeof(struct smb2_fs_full_size_info));
  1762. if (!rc)
  1763. copy_fs_info_to_kstatfs(info, fsdata);
  1764. qinf_exit:
  1765. free_rsp_buf(resp_buftype, iov.iov_base);
  1766. return rc;
  1767. }
  1768. int
  1769. smb2_lockv(const unsigned int xid, struct cifs_tcon *tcon,
  1770. const __u64 persist_fid, const __u64 volatile_fid, const __u32 pid,
  1771. const __u32 num_lock, struct smb2_lock_element *buf)
  1772. {
  1773. int rc = 0;
  1774. struct smb2_lock_req *req = NULL;
  1775. struct kvec iov[2];
  1776. int resp_buf_type;
  1777. unsigned int count;
  1778. cifs_dbg(FYI, "smb2_lockv num lock %d\n", num_lock);
  1779. rc = small_smb2_init(SMB2_LOCK, tcon, (void **) &req);
  1780. if (rc)
  1781. return rc;
  1782. req->hdr.ProcessId = cpu_to_le32(pid);
  1783. req->LockCount = cpu_to_le16(num_lock);
  1784. req->PersistentFileId = persist_fid;
  1785. req->VolatileFileId = volatile_fid;
  1786. count = num_lock * sizeof(struct smb2_lock_element);
  1787. inc_rfc1001_len(req, count - sizeof(struct smb2_lock_element));
  1788. iov[0].iov_base = (char *)req;
  1789. /* 4 for rfc1002 length field and count for all locks */
  1790. iov[0].iov_len = get_rfc1002_length(req) + 4 - count;
  1791. iov[1].iov_base = (char *)buf;
  1792. iov[1].iov_len = count;
  1793. cifs_stats_inc(&tcon->stats.cifs_stats.num_locks);
  1794. rc = SendReceive2(xid, tcon->ses, iov, 2, &resp_buf_type, CIFS_NO_RESP);
  1795. if (rc) {
  1796. cifs_dbg(FYI, "Send error in smb2_lockv = %d\n", rc);
  1797. cifs_stats_fail_inc(tcon, SMB2_LOCK_HE);
  1798. }
  1799. return rc;
  1800. }
  1801. int
  1802. SMB2_lock(const unsigned int xid, struct cifs_tcon *tcon,
  1803. const __u64 persist_fid, const __u64 volatile_fid, const __u32 pid,
  1804. const __u64 length, const __u64 offset, const __u32 lock_flags,
  1805. const bool wait)
  1806. {
  1807. struct smb2_lock_element lock;
  1808. lock.Offset = cpu_to_le64(offset);
  1809. lock.Length = cpu_to_le64(length);
  1810. lock.Flags = cpu_to_le32(lock_flags);
  1811. if (!wait && lock_flags != SMB2_LOCKFLAG_UNLOCK)
  1812. lock.Flags |= cpu_to_le32(SMB2_LOCKFLAG_FAIL_IMMEDIATELY);
  1813. return smb2_lockv(xid, tcon, persist_fid, volatile_fid, pid, 1, &lock);
  1814. }
  1815. int
  1816. SMB2_lease_break(const unsigned int xid, struct cifs_tcon *tcon,
  1817. __u8 *lease_key, const __le32 lease_state)
  1818. {
  1819. int rc;
  1820. struct smb2_lease_ack *req = NULL;
  1821. cifs_dbg(FYI, "SMB2_lease_break\n");
  1822. rc = small_smb2_init(SMB2_OPLOCK_BREAK, tcon, (void **) &req);
  1823. if (rc)
  1824. return rc;
  1825. req->hdr.CreditRequest = cpu_to_le16(1);
  1826. req->StructureSize = cpu_to_le16(36);
  1827. inc_rfc1001_len(req, 12);
  1828. memcpy(req->LeaseKey, lease_key, 16);
  1829. req->LeaseState = lease_state;
  1830. rc = SendReceiveNoRsp(xid, tcon->ses, (char *) req, CIFS_OBREAK_OP);
  1831. /* SMB2 buffer freed by function above */
  1832. if (rc) {
  1833. cifs_stats_fail_inc(tcon, SMB2_OPLOCK_BREAK_HE);
  1834. cifs_dbg(FYI, "Send error in Lease Break = %d\n", rc);
  1835. }
  1836. return rc;
  1837. }