Linux 3.11-rc1
[linux-2.6.git] / fs / cifs / cifsencrypt.c
blob45e57cc38200448da67b1ce2c896efff555f0e73
1 /*
2 * fs/cifs/cifsencrypt.c
4 * Copyright (C) International Business Machines Corp., 2005,2013
5 * Author(s): Steve French (sfrench@us.ibm.com)
7 * This library is free software; you can redistribute it and/or modify
8 * it under the terms of the GNU Lesser General Public License as published
9 * by the Free Software Foundation; either version 2.1 of the License, or
10 * (at your option) any later version.
12 * This library is distributed in the hope that it will be useful,
13 * but WITHOUT ANY WARRANTY; without even the implied warranty of
14 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See
15 * the GNU Lesser General Public License for more details.
17 * You should have received a copy of the GNU Lesser General Public License
18 * along with this library; if not, write to the Free Software
19 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
22 #include <linux/fs.h>
23 #include <linux/slab.h>
24 #include "cifspdu.h"
25 #include "cifsglob.h"
26 #include "cifs_debug.h"
27 #include "cifs_unicode.h"
28 #include "cifsproto.h"
29 #include "ntlmssp.h"
30 #include <linux/ctype.h>
31 #include <linux/random.h>
32 #include <linux/highmem.h>
34 static int
35 cifs_crypto_shash_md5_allocate(struct TCP_Server_Info *server)
37 int rc;
38 unsigned int size;
40 if (server->secmech.sdescmd5 != NULL)
41 return 0; /* already allocated */
43 server->secmech.md5 = crypto_alloc_shash("md5", 0, 0);
44 if (IS_ERR(server->secmech.md5)) {
45 cifs_dbg(VFS, "could not allocate crypto md5\n");
46 return PTR_ERR(server->secmech.md5);
49 size = sizeof(struct shash_desc) +
50 crypto_shash_descsize(server->secmech.md5);
51 server->secmech.sdescmd5 = kmalloc(size, GFP_KERNEL);
52 if (!server->secmech.sdescmd5) {
53 rc = -ENOMEM;
54 crypto_free_shash(server->secmech.md5);
55 server->secmech.md5 = NULL;
56 return rc;
58 server->secmech.sdescmd5->shash.tfm = server->secmech.md5;
59 server->secmech.sdescmd5->shash.flags = 0x0;
61 return 0;
65 * Calculate and return the CIFS signature based on the mac key and SMB PDU.
66 * The 16 byte signature must be allocated by the caller. Note we only use the
67 * 1st eight bytes and that the smb header signature field on input contains
68 * the sequence number before this function is called. Also, this function
69 * should be called with the server->srv_mutex held.
71 static int cifs_calc_signature(struct smb_rqst *rqst,
72 struct TCP_Server_Info *server, char *signature)
74 int i;
75 int rc;
76 struct kvec *iov = rqst->rq_iov;
77 int n_vec = rqst->rq_nvec;
79 if (iov == NULL || signature == NULL || server == NULL)
80 return -EINVAL;
82 if (!server->secmech.sdescmd5) {
83 rc = cifs_crypto_shash_md5_allocate(server);
84 if (rc) {
85 cifs_dbg(VFS, "%s: Can't alloc md5 crypto\n", __func__);
86 return -1;
90 rc = crypto_shash_init(&server->secmech.sdescmd5->shash);
91 if (rc) {
92 cifs_dbg(VFS, "%s: Could not init md5\n", __func__);
93 return rc;
96 rc = crypto_shash_update(&server->secmech.sdescmd5->shash,
97 server->session_key.response, server->session_key.len);
98 if (rc) {
99 cifs_dbg(VFS, "%s: Could not update with response\n", __func__);
100 return rc;
103 for (i = 0; i < n_vec; i++) {
104 if (iov[i].iov_len == 0)
105 continue;
106 if (iov[i].iov_base == NULL) {
107 cifs_dbg(VFS, "null iovec entry\n");
108 return -EIO;
110 /* The first entry includes a length field (which does not get
111 signed that occupies the first 4 bytes before the header */
112 if (i == 0) {
113 if (iov[0].iov_len <= 8) /* cmd field at offset 9 */
114 break; /* nothing to sign or corrupt header */
115 rc =
116 crypto_shash_update(&server->secmech.sdescmd5->shash,
117 iov[i].iov_base + 4, iov[i].iov_len - 4);
118 } else {
119 rc =
120 crypto_shash_update(&server->secmech.sdescmd5->shash,
121 iov[i].iov_base, iov[i].iov_len);
123 if (rc) {
124 cifs_dbg(VFS, "%s: Could not update with payload\n",
125 __func__);
126 return rc;
130 /* now hash over the rq_pages array */
131 for (i = 0; i < rqst->rq_npages; i++) {
132 struct kvec p_iov;
134 cifs_rqst_page_to_kvec(rqst, i, &p_iov);
135 crypto_shash_update(&server->secmech.sdescmd5->shash,
136 p_iov.iov_base, p_iov.iov_len);
137 kunmap(rqst->rq_pages[i]);
140 rc = crypto_shash_final(&server->secmech.sdescmd5->shash, signature);
141 if (rc)
142 cifs_dbg(VFS, "%s: Could not generate md5 hash\n", __func__);
144 return rc;
147 /* must be called with server->srv_mutex held */
148 int cifs_sign_rqst(struct smb_rqst *rqst, struct TCP_Server_Info *server,
149 __u32 *pexpected_response_sequence_number)
151 int rc = 0;
152 char smb_signature[20];
153 struct smb_hdr *cifs_pdu = (struct smb_hdr *)rqst->rq_iov[0].iov_base;
155 if ((cifs_pdu == NULL) || (server == NULL))
156 return -EINVAL;
158 if (!(cifs_pdu->Flags2 & SMBFLG2_SECURITY_SIGNATURE) ||
159 server->tcpStatus == CifsNeedNegotiate)
160 return rc;
162 if (!server->session_estab) {
163 memcpy(cifs_pdu->Signature.SecuritySignature, "BSRSPYL", 8);
164 return rc;
167 cifs_pdu->Signature.Sequence.SequenceNumber =
168 cpu_to_le32(server->sequence_number);
169 cifs_pdu->Signature.Sequence.Reserved = 0;
171 *pexpected_response_sequence_number = ++server->sequence_number;
172 ++server->sequence_number;
174 rc = cifs_calc_signature(rqst, server, smb_signature);
175 if (rc)
176 memset(cifs_pdu->Signature.SecuritySignature, 0, 8);
177 else
178 memcpy(cifs_pdu->Signature.SecuritySignature, smb_signature, 8);
180 return rc;
183 int cifs_sign_smbv(struct kvec *iov, int n_vec, struct TCP_Server_Info *server,
184 __u32 *pexpected_response_sequence)
186 struct smb_rqst rqst = { .rq_iov = iov,
187 .rq_nvec = n_vec };
189 return cifs_sign_rqst(&rqst, server, pexpected_response_sequence);
192 /* must be called with server->srv_mutex held */
193 int cifs_sign_smb(struct smb_hdr *cifs_pdu, struct TCP_Server_Info *server,
194 __u32 *pexpected_response_sequence_number)
196 struct kvec iov;
198 iov.iov_base = cifs_pdu;
199 iov.iov_len = be32_to_cpu(cifs_pdu->smb_buf_length) + 4;
201 return cifs_sign_smbv(&iov, 1, server,
202 pexpected_response_sequence_number);
205 int cifs_verify_signature(struct smb_rqst *rqst,
206 struct TCP_Server_Info *server,
207 __u32 expected_sequence_number)
209 unsigned int rc;
210 char server_response_sig[8];
211 char what_we_think_sig_should_be[20];
212 struct smb_hdr *cifs_pdu = (struct smb_hdr *)rqst->rq_iov[0].iov_base;
214 if (cifs_pdu == NULL || server == NULL)
215 return -EINVAL;
217 if (!server->session_estab)
218 return 0;
220 if (cifs_pdu->Command == SMB_COM_LOCKING_ANDX) {
221 struct smb_com_lock_req *pSMB =
222 (struct smb_com_lock_req *)cifs_pdu;
223 if (pSMB->LockType & LOCKING_ANDX_OPLOCK_RELEASE)
224 return 0;
227 /* BB what if signatures are supposed to be on for session but
228 server does not send one? BB */
230 /* Do not need to verify session setups with signature "BSRSPYL " */
231 if (memcmp(cifs_pdu->Signature.SecuritySignature, "BSRSPYL ", 8) == 0)
232 cifs_dbg(FYI, "dummy signature received for smb command 0x%x\n",
233 cifs_pdu->Command);
235 /* save off the origiginal signature so we can modify the smb and check
236 its signature against what the server sent */
237 memcpy(server_response_sig, cifs_pdu->Signature.SecuritySignature, 8);
239 cifs_pdu->Signature.Sequence.SequenceNumber =
240 cpu_to_le32(expected_sequence_number);
241 cifs_pdu->Signature.Sequence.Reserved = 0;
243 mutex_lock(&server->srv_mutex);
244 rc = cifs_calc_signature(rqst, server, what_we_think_sig_should_be);
245 mutex_unlock(&server->srv_mutex);
247 if (rc)
248 return rc;
250 /* cifs_dump_mem("what we think it should be: ",
251 what_we_think_sig_should_be, 16); */
253 if (memcmp(server_response_sig, what_we_think_sig_should_be, 8))
254 return -EACCES;
255 else
256 return 0;
260 /* first calculate 24 bytes ntlm response and then 16 byte session key */
261 int setup_ntlm_response(struct cifs_ses *ses, const struct nls_table *nls_cp)
263 int rc = 0;
264 unsigned int temp_len = CIFS_SESS_KEY_SIZE + CIFS_AUTH_RESP_SIZE;
265 char temp_key[CIFS_SESS_KEY_SIZE];
267 if (!ses)
268 return -EINVAL;
270 ses->auth_key.response = kmalloc(temp_len, GFP_KERNEL);
271 if (!ses->auth_key.response)
272 return -ENOMEM;
274 ses->auth_key.len = temp_len;
276 rc = SMBNTencrypt(ses->password, ses->server->cryptkey,
277 ses->auth_key.response + CIFS_SESS_KEY_SIZE, nls_cp);
278 if (rc) {
279 cifs_dbg(FYI, "%s Can't generate NTLM response, error: %d\n",
280 __func__, rc);
281 return rc;
284 rc = E_md4hash(ses->password, temp_key, nls_cp);
285 if (rc) {
286 cifs_dbg(FYI, "%s Can't generate NT hash, error: %d\n",
287 __func__, rc);
288 return rc;
291 rc = mdfour(ses->auth_key.response, temp_key, CIFS_SESS_KEY_SIZE);
292 if (rc)
293 cifs_dbg(FYI, "%s Can't generate NTLM session key, error: %d\n",
294 __func__, rc);
296 return rc;
299 #ifdef CONFIG_CIFS_WEAK_PW_HASH
300 int calc_lanman_hash(const char *password, const char *cryptkey, bool encrypt,
301 char *lnm_session_key)
303 int i;
304 int rc;
305 char password_with_pad[CIFS_ENCPWD_SIZE];
307 memset(password_with_pad, 0, CIFS_ENCPWD_SIZE);
308 if (password)
309 strncpy(password_with_pad, password, CIFS_ENCPWD_SIZE);
311 if (!encrypt && global_secflags & CIFSSEC_MAY_PLNTXT) {
312 memcpy(lnm_session_key, password_with_pad,
313 CIFS_ENCPWD_SIZE);
314 return 0;
317 /* calculate old style session key */
318 /* calling toupper is less broken than repeatedly
319 calling nls_toupper would be since that will never
320 work for UTF8, but neither handles multibyte code pages
321 but the only alternative would be converting to UCS-16 (Unicode)
322 (using a routine something like UniStrupr) then
323 uppercasing and then converting back from Unicode - which
324 would only worth doing it if we knew it were utf8. Basically
325 utf8 and other multibyte codepages each need their own strupper
326 function since a byte at a time will ont work. */
328 for (i = 0; i < CIFS_ENCPWD_SIZE; i++)
329 password_with_pad[i] = toupper(password_with_pad[i]);
331 rc = SMBencrypt(password_with_pad, cryptkey, lnm_session_key);
333 return rc;
335 #endif /* CIFS_WEAK_PW_HASH */
337 /* Build a proper attribute value/target info pairs blob.
338 * Fill in netbios and dns domain name and workstation name
339 * and client time (total five av pairs and + one end of fields indicator.
340 * Allocate domain name which gets freed when session struct is deallocated.
342 static int
343 build_avpair_blob(struct cifs_ses *ses, const struct nls_table *nls_cp)
345 unsigned int dlen;
346 unsigned int size = 2 * sizeof(struct ntlmssp2_name);
347 char *defdmname = "WORKGROUP";
348 unsigned char *blobptr;
349 struct ntlmssp2_name *attrptr;
351 if (!ses->domainName) {
352 ses->domainName = kstrdup(defdmname, GFP_KERNEL);
353 if (!ses->domainName)
354 return -ENOMEM;
357 dlen = strlen(ses->domainName);
360 * The length of this blob is two times the size of a
361 * structure (av pair) which holds name/size
362 * ( for NTLMSSP_AV_NB_DOMAIN_NAME followed by NTLMSSP_AV_EOL ) +
363 * unicode length of a netbios domain name
365 ses->auth_key.len = size + 2 * dlen;
366 ses->auth_key.response = kzalloc(ses->auth_key.len, GFP_KERNEL);
367 if (!ses->auth_key.response) {
368 ses->auth_key.len = 0;
369 return -ENOMEM;
372 blobptr = ses->auth_key.response;
373 attrptr = (struct ntlmssp2_name *) blobptr;
376 * As defined in MS-NTLM 3.3.2, just this av pair field
377 * is sufficient as part of the temp
379 attrptr->type = cpu_to_le16(NTLMSSP_AV_NB_DOMAIN_NAME);
380 attrptr->length = cpu_to_le16(2 * dlen);
381 blobptr = (unsigned char *)attrptr + sizeof(struct ntlmssp2_name);
382 cifs_strtoUTF16((__le16 *)blobptr, ses->domainName, dlen, nls_cp);
384 return 0;
387 /* Server has provided av pairs/target info in the type 2 challenge
388 * packet and we have plucked it and stored within smb session.
389 * We parse that blob here to find netbios domain name to be used
390 * as part of ntlmv2 authentication (in Target String), if not already
391 * specified on the command line.
392 * If this function returns without any error but without fetching
393 * domain name, authentication may fail against some server but
394 * may not fail against other (those who are not very particular
395 * about target string i.e. for some, just user name might suffice.
397 static int
398 find_domain_name(struct cifs_ses *ses, const struct nls_table *nls_cp)
400 unsigned int attrsize;
401 unsigned int type;
402 unsigned int onesize = sizeof(struct ntlmssp2_name);
403 unsigned char *blobptr;
404 unsigned char *blobend;
405 struct ntlmssp2_name *attrptr;
407 if (!ses->auth_key.len || !ses->auth_key.response)
408 return 0;
410 blobptr = ses->auth_key.response;
411 blobend = blobptr + ses->auth_key.len;
413 while (blobptr + onesize < blobend) {
414 attrptr = (struct ntlmssp2_name *) blobptr;
415 type = le16_to_cpu(attrptr->type);
416 if (type == NTLMSSP_AV_EOL)
417 break;
418 blobptr += 2; /* advance attr type */
419 attrsize = le16_to_cpu(attrptr->length);
420 blobptr += 2; /* advance attr size */
421 if (blobptr + attrsize > blobend)
422 break;
423 if (type == NTLMSSP_AV_NB_DOMAIN_NAME) {
424 if (!attrsize)
425 break;
426 if (!ses->domainName) {
427 ses->domainName =
428 kmalloc(attrsize + 1, GFP_KERNEL);
429 if (!ses->domainName)
430 return -ENOMEM;
431 cifs_from_utf16(ses->domainName,
432 (__le16 *)blobptr, attrsize, attrsize,
433 nls_cp, false);
434 break;
437 blobptr += attrsize; /* advance attr value */
440 return 0;
443 static int calc_ntlmv2_hash(struct cifs_ses *ses, char *ntlmv2_hash,
444 const struct nls_table *nls_cp)
446 int rc = 0;
447 int len;
448 char nt_hash[CIFS_NTHASH_SIZE];
449 __le16 *user;
450 wchar_t *domain;
451 wchar_t *server;
453 if (!ses->server->secmech.sdeschmacmd5) {
454 cifs_dbg(VFS, "%s: can't generate ntlmv2 hash\n", __func__);
455 return -1;
458 /* calculate md4 hash of password */
459 E_md4hash(ses->password, nt_hash, nls_cp);
461 rc = crypto_shash_setkey(ses->server->secmech.hmacmd5, nt_hash,
462 CIFS_NTHASH_SIZE);
463 if (rc) {
464 cifs_dbg(VFS, "%s: Could not set NT Hash as a key\n", __func__);
465 return rc;
468 rc = crypto_shash_init(&ses->server->secmech.sdeschmacmd5->shash);
469 if (rc) {
470 cifs_dbg(VFS, "%s: could not init hmacmd5\n", __func__);
471 return rc;
474 /* convert ses->user_name to unicode */
475 len = ses->user_name ? strlen(ses->user_name) : 0;
476 user = kmalloc(2 + (len * 2), GFP_KERNEL);
477 if (user == NULL) {
478 rc = -ENOMEM;
479 return rc;
482 if (len) {
483 len = cifs_strtoUTF16(user, ses->user_name, len, nls_cp);
484 UniStrupr(user);
485 } else {
486 memset(user, '\0', 2);
489 rc = crypto_shash_update(&ses->server->secmech.sdeschmacmd5->shash,
490 (char *)user, 2 * len);
491 kfree(user);
492 if (rc) {
493 cifs_dbg(VFS, "%s: Could not update with user\n", __func__);
494 return rc;
497 /* convert ses->domainName to unicode and uppercase */
498 if (ses->domainName) {
499 len = strlen(ses->domainName);
501 domain = kmalloc(2 + (len * 2), GFP_KERNEL);
502 if (domain == NULL) {
503 rc = -ENOMEM;
504 return rc;
506 len = cifs_strtoUTF16((__le16 *)domain, ses->domainName, len,
507 nls_cp);
508 rc =
509 crypto_shash_update(&ses->server->secmech.sdeschmacmd5->shash,
510 (char *)domain, 2 * len);
511 kfree(domain);
512 if (rc) {
513 cifs_dbg(VFS, "%s: Could not update with domain\n",
514 __func__);
515 return rc;
517 } else if (ses->serverName) {
518 len = strlen(ses->serverName);
520 server = kmalloc(2 + (len * 2), GFP_KERNEL);
521 if (server == NULL) {
522 rc = -ENOMEM;
523 return rc;
525 len = cifs_strtoUTF16((__le16 *)server, ses->serverName, len,
526 nls_cp);
527 rc =
528 crypto_shash_update(&ses->server->secmech.sdeschmacmd5->shash,
529 (char *)server, 2 * len);
530 kfree(server);
531 if (rc) {
532 cifs_dbg(VFS, "%s: Could not update with server\n",
533 __func__);
534 return rc;
538 rc = crypto_shash_final(&ses->server->secmech.sdeschmacmd5->shash,
539 ntlmv2_hash);
540 if (rc)
541 cifs_dbg(VFS, "%s: Could not generate md5 hash\n", __func__);
543 return rc;
546 static int
547 CalcNTLMv2_response(const struct cifs_ses *ses, char *ntlmv2_hash)
549 int rc;
550 unsigned int offset = CIFS_SESS_KEY_SIZE + 8;
552 if (!ses->server->secmech.sdeschmacmd5) {
553 cifs_dbg(VFS, "%s: can't generate ntlmv2 hash\n", __func__);
554 return -1;
557 rc = crypto_shash_setkey(ses->server->secmech.hmacmd5,
558 ntlmv2_hash, CIFS_HMAC_MD5_HASH_SIZE);
559 if (rc) {
560 cifs_dbg(VFS, "%s: Could not set NTLMV2 Hash as a key\n",
561 __func__);
562 return rc;
565 rc = crypto_shash_init(&ses->server->secmech.sdeschmacmd5->shash);
566 if (rc) {
567 cifs_dbg(VFS, "%s: could not init hmacmd5\n", __func__);
568 return rc;
571 if (ses->server->negflavor == CIFS_NEGFLAVOR_EXTENDED)
572 memcpy(ses->auth_key.response + offset,
573 ses->ntlmssp->cryptkey, CIFS_SERVER_CHALLENGE_SIZE);
574 else
575 memcpy(ses->auth_key.response + offset,
576 ses->server->cryptkey, CIFS_SERVER_CHALLENGE_SIZE);
577 rc = crypto_shash_update(&ses->server->secmech.sdeschmacmd5->shash,
578 ses->auth_key.response + offset, ses->auth_key.len - offset);
579 if (rc) {
580 cifs_dbg(VFS, "%s: Could not update with response\n", __func__);
581 return rc;
584 rc = crypto_shash_final(&ses->server->secmech.sdeschmacmd5->shash,
585 ses->auth_key.response + CIFS_SESS_KEY_SIZE);
586 if (rc)
587 cifs_dbg(VFS, "%s: Could not generate md5 hash\n", __func__);
589 return rc;
592 static int crypto_hmacmd5_alloc(struct TCP_Server_Info *server)
594 unsigned int size;
596 /* check if already allocated */
597 if (server->secmech.sdeschmacmd5)
598 return 0;
600 server->secmech.hmacmd5 = crypto_alloc_shash("hmac(md5)", 0, 0);
601 if (IS_ERR(server->secmech.hmacmd5)) {
602 cifs_dbg(VFS, "could not allocate crypto hmacmd5\n");
603 return PTR_ERR(server->secmech.hmacmd5);
606 size = sizeof(struct shash_desc) +
607 crypto_shash_descsize(server->secmech.hmacmd5);
608 server->secmech.sdeschmacmd5 = kmalloc(size, GFP_KERNEL);
609 if (!server->secmech.sdeschmacmd5) {
610 crypto_free_shash(server->secmech.hmacmd5);
611 server->secmech.hmacmd5 = NULL;
612 return -ENOMEM;
614 server->secmech.sdeschmacmd5->shash.tfm = server->secmech.hmacmd5;
615 server->secmech.sdeschmacmd5->shash.flags = 0x0;
617 return 0;
621 setup_ntlmv2_rsp(struct cifs_ses *ses, const struct nls_table *nls_cp)
623 int rc;
624 int baselen;
625 unsigned int tilen;
626 struct ntlmv2_resp *buf;
627 char ntlmv2_hash[16];
628 unsigned char *tiblob = NULL; /* target info blob */
630 if (ses->server->negflavor == CIFS_NEGFLAVOR_EXTENDED) {
631 if (!ses->domainName) {
632 rc = find_domain_name(ses, nls_cp);
633 if (rc) {
634 cifs_dbg(VFS, "error %d finding domain name\n",
635 rc);
636 goto setup_ntlmv2_rsp_ret;
639 } else {
640 rc = build_avpair_blob(ses, nls_cp);
641 if (rc) {
642 cifs_dbg(VFS, "error %d building av pair blob\n", rc);
643 goto setup_ntlmv2_rsp_ret;
647 baselen = CIFS_SESS_KEY_SIZE + sizeof(struct ntlmv2_resp);
648 tilen = ses->auth_key.len;
649 tiblob = ses->auth_key.response;
651 ses->auth_key.response = kmalloc(baselen + tilen, GFP_KERNEL);
652 if (!ses->auth_key.response) {
653 rc = ENOMEM;
654 ses->auth_key.len = 0;
655 goto setup_ntlmv2_rsp_ret;
657 ses->auth_key.len += baselen;
659 buf = (struct ntlmv2_resp *)
660 (ses->auth_key.response + CIFS_SESS_KEY_SIZE);
661 buf->blob_signature = cpu_to_le32(0x00000101);
662 buf->reserved = 0;
663 buf->time = cpu_to_le64(cifs_UnixTimeToNT(CURRENT_TIME));
664 get_random_bytes(&buf->client_chal, sizeof(buf->client_chal));
665 buf->reserved2 = 0;
667 memcpy(ses->auth_key.response + baselen, tiblob, tilen);
669 rc = crypto_hmacmd5_alloc(ses->server);
670 if (rc) {
671 cifs_dbg(VFS, "could not crypto alloc hmacmd5 rc %d\n", rc);
672 goto setup_ntlmv2_rsp_ret;
675 /* calculate ntlmv2_hash */
676 rc = calc_ntlmv2_hash(ses, ntlmv2_hash, nls_cp);
677 if (rc) {
678 cifs_dbg(VFS, "could not get v2 hash rc %d\n", rc);
679 goto setup_ntlmv2_rsp_ret;
682 /* calculate first part of the client response (CR1) */
683 rc = CalcNTLMv2_response(ses, ntlmv2_hash);
684 if (rc) {
685 cifs_dbg(VFS, "Could not calculate CR1 rc: %d\n", rc);
686 goto setup_ntlmv2_rsp_ret;
689 /* now calculate the session key for NTLMv2 */
690 rc = crypto_shash_setkey(ses->server->secmech.hmacmd5,
691 ntlmv2_hash, CIFS_HMAC_MD5_HASH_SIZE);
692 if (rc) {
693 cifs_dbg(VFS, "%s: Could not set NTLMV2 Hash as a key\n",
694 __func__);
695 goto setup_ntlmv2_rsp_ret;
698 rc = crypto_shash_init(&ses->server->secmech.sdeschmacmd5->shash);
699 if (rc) {
700 cifs_dbg(VFS, "%s: Could not init hmacmd5\n", __func__);
701 goto setup_ntlmv2_rsp_ret;
704 rc = crypto_shash_update(&ses->server->secmech.sdeschmacmd5->shash,
705 ses->auth_key.response + CIFS_SESS_KEY_SIZE,
706 CIFS_HMAC_MD5_HASH_SIZE);
707 if (rc) {
708 cifs_dbg(VFS, "%s: Could not update with response\n", __func__);
709 goto setup_ntlmv2_rsp_ret;
712 rc = crypto_shash_final(&ses->server->secmech.sdeschmacmd5->shash,
713 ses->auth_key.response);
714 if (rc)
715 cifs_dbg(VFS, "%s: Could not generate md5 hash\n", __func__);
717 setup_ntlmv2_rsp_ret:
718 kfree(tiblob);
720 return rc;
724 calc_seckey(struct cifs_ses *ses)
726 int rc;
727 struct crypto_blkcipher *tfm_arc4;
728 struct scatterlist sgin, sgout;
729 struct blkcipher_desc desc;
730 unsigned char sec_key[CIFS_SESS_KEY_SIZE]; /* a nonce */
732 get_random_bytes(sec_key, CIFS_SESS_KEY_SIZE);
734 tfm_arc4 = crypto_alloc_blkcipher("ecb(arc4)", 0, CRYPTO_ALG_ASYNC);
735 if (IS_ERR(tfm_arc4)) {
736 rc = PTR_ERR(tfm_arc4);
737 cifs_dbg(VFS, "could not allocate crypto API arc4\n");
738 return rc;
741 desc.tfm = tfm_arc4;
743 rc = crypto_blkcipher_setkey(tfm_arc4, ses->auth_key.response,
744 CIFS_SESS_KEY_SIZE);
745 if (rc) {
746 cifs_dbg(VFS, "%s: Could not set response as a key\n",
747 __func__);
748 return rc;
751 sg_init_one(&sgin, sec_key, CIFS_SESS_KEY_SIZE);
752 sg_init_one(&sgout, ses->ntlmssp->ciphertext, CIFS_CPHTXT_SIZE);
754 rc = crypto_blkcipher_encrypt(&desc, &sgout, &sgin, CIFS_CPHTXT_SIZE);
755 if (rc) {
756 cifs_dbg(VFS, "could not encrypt session key rc: %d\n", rc);
757 crypto_free_blkcipher(tfm_arc4);
758 return rc;
761 /* make secondary_key/nonce as session key */
762 memcpy(ses->auth_key.response, sec_key, CIFS_SESS_KEY_SIZE);
763 /* and make len as that of session key only */
764 ses->auth_key.len = CIFS_SESS_KEY_SIZE;
766 crypto_free_blkcipher(tfm_arc4);
768 return rc;
771 void
772 cifs_crypto_shash_release(struct TCP_Server_Info *server)
774 if (server->secmech.cmacaes) {
775 crypto_free_shash(server->secmech.cmacaes);
776 server->secmech.cmacaes = NULL;
779 if (server->secmech.hmacsha256) {
780 crypto_free_shash(server->secmech.hmacsha256);
781 server->secmech.hmacsha256 = NULL;
784 if (server->secmech.md5) {
785 crypto_free_shash(server->secmech.md5);
786 server->secmech.md5 = NULL;
789 if (server->secmech.hmacmd5) {
790 crypto_free_shash(server->secmech.hmacmd5);
791 server->secmech.hmacmd5 = NULL;
794 kfree(server->secmech.sdesccmacaes);
795 server->secmech.sdesccmacaes = NULL;
796 kfree(server->secmech.sdeschmacsha256);
797 server->secmech.sdeschmacsha256 = NULL;
798 kfree(server->secmech.sdeschmacmd5);
799 server->secmech.sdeschmacmd5 = NULL;
800 kfree(server->secmech.sdescmd5);
801 server->secmech.sdescmd5 = NULL;