1 /*
2 * SMB1 (CIFS) version specific operations
3 *
4 * Copyright (c) 2012, Jeff Layton <jlayton@redhat.com>
5 *
6 * This library is free software; you can redistribute it and/or modify
7 * it under the terms of the GNU General Public License v2 as published
8 * by the Free Software Foundation.
9 *
10 * This library is distributed in the hope that it will be useful,
11 * but WITHOUT ANY WARRANTY; without even the implied warranty of
12 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See
13 * the GNU Lesser General Public License for more details.
14 *
15 * You should have received a copy of the GNU Lesser General Public License
16 * along with this library; if not, write to the Free Software
17 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
18 */
19
20 #include <linux/pagemap.h>
21 #include <linux/vfs.h>
22 #include "cifsglob.h"
23 #include "cifsproto.h"
24 #include "cifs_debug.h"
25 #include "cifspdu.h"
26 #include "cifs_unicode.h"
27
28 /*
29 * An NT cancel request header looks just like the original request except:
30 *
31 * The Command is SMB_COM_NT_CANCEL
32 * The WordCount is zeroed out
33 * The ByteCount is zeroed out
34 *
35 * This function mangles an existing request buffer into a
36 * SMB_COM_NT_CANCEL request and then sends it.
37 */
38 static int
send_nt_cancel(struct TCP_Server_Info * server,struct smb_rqst * rqst,struct mid_q_entry * mid)39 send_nt_cancel(struct TCP_Server_Info *server, struct smb_rqst *rqst,
40 struct mid_q_entry *mid)
41 {
42 int rc = 0;
43 struct smb_hdr *in_buf = (struct smb_hdr *)rqst->rq_iov[0].iov_base;
44
45 /* -4 for RFC1001 length and +2 for BCC field */
46 in_buf->smb_buf_length = cpu_to_be32(sizeof(struct smb_hdr) - 4 + 2);
47 in_buf->Command = SMB_COM_NT_CANCEL;
48 in_buf->WordCount = 0;
49 put_bcc(0, in_buf);
50
51 mutex_lock(&server->srv_mutex);
52 rc = cifs_sign_smb(in_buf, server, &mid->sequence_number);
53 if (rc) {
54 mutex_unlock(&server->srv_mutex);
55 return rc;
56 }
57
58 /*
59 * The response to this call was already factored into the sequence
60 * number when the call went out, so we must adjust it back downward
61 * after signing here.
62 */
63 --server->sequence_number;
64 rc = smb_send(server, in_buf, be32_to_cpu(in_buf->smb_buf_length));
65 if (rc < 0)
66 server->sequence_number--;
67
68 mutex_unlock(&server->srv_mutex);
69
70 cifs_dbg(FYI, "issued NT_CANCEL for mid %u, rc = %d\n",
71 get_mid(in_buf), rc);
72
73 return rc;
74 }
75
76 static bool
cifs_compare_fids(struct cifsFileInfo * ob1,struct cifsFileInfo * ob2)77 cifs_compare_fids(struct cifsFileInfo *ob1, struct cifsFileInfo *ob2)
78 {
79 return ob1->fid.netfid == ob2->fid.netfid;
80 }
81
82 static unsigned int
cifs_read_data_offset(char * buf)83 cifs_read_data_offset(char *buf)
84 {
85 READ_RSP *rsp = (READ_RSP *)buf;
86 return le16_to_cpu(rsp->DataOffset);
87 }
88
89 static unsigned int
cifs_read_data_length(char * buf)90 cifs_read_data_length(char *buf)
91 {
92 READ_RSP *rsp = (READ_RSP *)buf;
93 return (le16_to_cpu(rsp->DataLengthHigh) << 16) +
94 le16_to_cpu(rsp->DataLength);
95 }
96
97 static struct mid_q_entry *
cifs_find_mid(struct TCP_Server_Info * server,char * buffer)98 cifs_find_mid(struct TCP_Server_Info *server, char *buffer)
99 {
100 struct smb_hdr *buf = (struct smb_hdr *)buffer;
101 struct mid_q_entry *mid;
102
103 spin_lock(&GlobalMid_Lock);
104 list_for_each_entry(mid, &server->pending_mid_q, qhead) {
105 if (compare_mid(mid->mid, buf) &&
106 mid->mid_state == MID_REQUEST_SUBMITTED &&
107 le16_to_cpu(mid->command) == buf->Command) {
108 kref_get(&mid->refcount);
109 spin_unlock(&GlobalMid_Lock);
110 return mid;
111 }
112 }
113 spin_unlock(&GlobalMid_Lock);
114 return NULL;
115 }
116
117 static void
cifs_add_credits(struct TCP_Server_Info * server,const unsigned int add,const int optype)118 cifs_add_credits(struct TCP_Server_Info *server, const unsigned int add,
119 const int optype)
120 {
121 spin_lock(&server->req_lock);
122 server->credits += add;
123 server->in_flight--;
124 spin_unlock(&server->req_lock);
125 wake_up(&server->request_q);
126 }
127
128 static void
cifs_set_credits(struct TCP_Server_Info * server,const int val)129 cifs_set_credits(struct TCP_Server_Info *server, const int val)
130 {
131 spin_lock(&server->req_lock);
132 server->credits = val;
133 server->oplocks = val > 1 ? enable_oplocks : false;
134 spin_unlock(&server->req_lock);
135 }
136
137 static int *
cifs_get_credits_field(struct TCP_Server_Info * server,const int optype)138 cifs_get_credits_field(struct TCP_Server_Info *server, const int optype)
139 {
140 return &server->credits;
141 }
142
143 static unsigned int
cifs_get_credits(struct mid_q_entry * mid)144 cifs_get_credits(struct mid_q_entry *mid)
145 {
146 return 1;
147 }
148
149 /*
150 * Find a free multiplex id (SMB mid). Otherwise there could be
151 * mid collisions which might cause problems, demultiplexing the
152 * wrong response to this request. Multiplex ids could collide if
153 * one of a series requests takes much longer than the others, or
154 * if a very large number of long lived requests (byte range
155 * locks or FindNotify requests) are pending. No more than
156 * 64K-1 requests can be outstanding at one time. If no
157 * mids are available, return zero. A future optimization
158 * could make the combination of mids and uid the key we use
159 * to demultiplex on (rather than mid alone).
160 * In addition to the above check, the cifs demultiplex
161 * code already used the command code as a secondary
162 * check of the frame and if signing is negotiated the
163 * response would be discarded if the mid were the same
164 * but the signature was wrong. Since the mid is not put in the
165 * pending queue until later (when it is about to be dispatched)
166 * we do have to limit the number of outstanding requests
167 * to somewhat less than 64K-1 although it is hard to imagine
168 * so many threads being in the vfs at one time.
169 */
170 static __u64
cifs_get_next_mid(struct TCP_Server_Info * server)171 cifs_get_next_mid(struct TCP_Server_Info *server)
172 {
173 __u64 mid = 0;
174 __u16 last_mid, cur_mid;
175 bool collision;
176
177 spin_lock(&GlobalMid_Lock);
178
179 /* mid is 16 bit only for CIFS/SMB */
180 cur_mid = (__u16)((server->CurrentMid) & 0xffff);
181 /* we do not want to loop forever */
182 last_mid = cur_mid;
183 cur_mid++;
184 /* avoid 0xFFFF MID */
185 if (cur_mid == 0xffff)
186 cur_mid++;
187
188 /*
189 * This nested loop looks more expensive than it is.
190 * In practice the list of pending requests is short,
191 * fewer than 50, and the mids are likely to be unique
192 * on the first pass through the loop unless some request
193 * takes longer than the 64 thousand requests before it
194 * (and it would also have to have been a request that
195 * did not time out).
196 */
197 while (cur_mid != last_mid) {
198 struct mid_q_entry *mid_entry;
199 unsigned int num_mids;
200
201 collision = false;
202 if (cur_mid == 0)
203 cur_mid++;
204
205 num_mids = 0;
206 list_for_each_entry(mid_entry, &server->pending_mid_q, qhead) {
207 ++num_mids;
208 if (mid_entry->mid == cur_mid &&
209 mid_entry->mid_state == MID_REQUEST_SUBMITTED) {
210 /* This mid is in use, try a different one */
211 collision = true;
212 break;
213 }
214 }
215
216 /*
217 * if we have more than 32k mids in the list, then something
218 * is very wrong. Possibly a local user is trying to DoS the
219 * box by issuing long-running calls and SIGKILL'ing them. If
220 * we get to 2^16 mids then we're in big trouble as this
221 * function could loop forever.
222 *
223 * Go ahead and assign out the mid in this situation, but force
224 * an eventual reconnect to clean out the pending_mid_q.
225 */
226 if (num_mids > 32768)
227 server->tcpStatus = CifsNeedReconnect;
228
229 if (!collision) {
230 mid = (__u64)cur_mid;
231 server->CurrentMid = mid;
232 break;
233 }
234 cur_mid++;
235 }
236 spin_unlock(&GlobalMid_Lock);
237 return mid;
238 }
239
240 /*
241 return codes:
242 0 not a transact2, or all data present
243 >0 transact2 with that much data missing
244 -EINVAL invalid transact2
245 */
246 static int
check2ndT2(char * buf)247 check2ndT2(char *buf)
248 {
249 struct smb_hdr *pSMB = (struct smb_hdr *)buf;
250 struct smb_t2_rsp *pSMBt;
251 int remaining;
252 __u16 total_data_size, data_in_this_rsp;
253
254 if (pSMB->Command != SMB_COM_TRANSACTION2)
255 return 0;
256
257 /* check for plausible wct, bcc and t2 data and parm sizes */
258 /* check for parm and data offset going beyond end of smb */
259 if (pSMB->WordCount != 10) { /* coalesce_t2 depends on this */
260 cifs_dbg(FYI, "invalid transact2 word count\n");
261 return -EINVAL;
262 }
263
264 pSMBt = (struct smb_t2_rsp *)pSMB;
265
266 total_data_size = get_unaligned_le16(&pSMBt->t2_rsp.TotalDataCount);
267 data_in_this_rsp = get_unaligned_le16(&pSMBt->t2_rsp.DataCount);
268
269 if (total_data_size == data_in_this_rsp)
270 return 0;
271 else if (total_data_size < data_in_this_rsp) {
272 cifs_dbg(FYI, "total data %d smaller than data in frame %d\n",
273 total_data_size, data_in_this_rsp);
274 return -EINVAL;
275 }
276
277 remaining = total_data_size - data_in_this_rsp;
278
279 cifs_dbg(FYI, "missing %d bytes from transact2, check next response\n",
280 remaining);
281 if (total_data_size > CIFSMaxBufSize) {
282 cifs_dbg(VFS, "TotalDataSize %d is over maximum buffer %d\n",
283 total_data_size, CIFSMaxBufSize);
284 return -EINVAL;
285 }
286 return remaining;
287 }
288
289 static int
coalesce_t2(char * second_buf,struct smb_hdr * target_hdr)290 coalesce_t2(char *second_buf, struct smb_hdr *target_hdr)
291 {
292 struct smb_t2_rsp *pSMBs = (struct smb_t2_rsp *)second_buf;
293 struct smb_t2_rsp *pSMBt = (struct smb_t2_rsp *)target_hdr;
294 char *data_area_of_tgt;
295 char *data_area_of_src;
296 int remaining;
297 unsigned int byte_count, total_in_tgt;
298 __u16 tgt_total_cnt, src_total_cnt, total_in_src;
299
300 src_total_cnt = get_unaligned_le16(&pSMBs->t2_rsp.TotalDataCount);
301 tgt_total_cnt = get_unaligned_le16(&pSMBt->t2_rsp.TotalDataCount);
302
303 if (tgt_total_cnt != src_total_cnt)
304 cifs_dbg(FYI, "total data count of primary and secondary t2 differ source=%hu target=%hu\n",
305 src_total_cnt, tgt_total_cnt);
306
307 total_in_tgt = get_unaligned_le16(&pSMBt->t2_rsp.DataCount);
308
309 remaining = tgt_total_cnt - total_in_tgt;
310
311 if (remaining < 0) {
312 cifs_dbg(FYI, "Server sent too much data. tgt_total_cnt=%hu total_in_tgt=%u\n",
313 tgt_total_cnt, total_in_tgt);
314 return -EPROTO;
315 }
316
317 if (remaining == 0) {
318 /* nothing to do, ignore */
319 cifs_dbg(FYI, "no more data remains\n");
320 return 0;
321 }
322
323 total_in_src = get_unaligned_le16(&pSMBs->t2_rsp.DataCount);
324 if (remaining < total_in_src)
325 cifs_dbg(FYI, "transact2 2nd response contains too much data\n");
326
327 /* find end of first SMB data area */
328 data_area_of_tgt = (char *)&pSMBt->hdr.Protocol +
329 get_unaligned_le16(&pSMBt->t2_rsp.DataOffset);
330
331 /* validate target area */
332 data_area_of_src = (char *)&pSMBs->hdr.Protocol +
333 get_unaligned_le16(&pSMBs->t2_rsp.DataOffset);
334
335 data_area_of_tgt += total_in_tgt;
336
337 total_in_tgt += total_in_src;
338 /* is the result too big for the field? */
339 if (total_in_tgt > USHRT_MAX) {
340 cifs_dbg(FYI, "coalesced DataCount too large (%u)\n",
341 total_in_tgt);
342 return -EPROTO;
343 }
344 put_unaligned_le16(total_in_tgt, &pSMBt->t2_rsp.DataCount);
345
346 /* fix up the BCC */
347 byte_count = get_bcc(target_hdr);
348 byte_count += total_in_src;
349 /* is the result too big for the field? */
350 if (byte_count > USHRT_MAX) {
351 cifs_dbg(FYI, "coalesced BCC too large (%u)\n", byte_count);
352 return -EPROTO;
353 }
354 put_bcc(byte_count, target_hdr);
355
356 byte_count = be32_to_cpu(target_hdr->smb_buf_length);
357 byte_count += total_in_src;
358 /* don't allow buffer to overflow */
359 if (byte_count > CIFSMaxBufSize + MAX_CIFS_HDR_SIZE - 4) {
360 cifs_dbg(FYI, "coalesced BCC exceeds buffer size (%u)\n",
361 byte_count);
362 return -ENOBUFS;
363 }
364 target_hdr->smb_buf_length = cpu_to_be32(byte_count);
365
366 /* copy second buffer into end of first buffer */
367 memcpy(data_area_of_tgt, data_area_of_src, total_in_src);
368
369 if (remaining != total_in_src) {
370 /* more responses to go */
371 cifs_dbg(FYI, "waiting for more secondary responses\n");
372 return 1;
373 }
374
375 /* we are done */
376 cifs_dbg(FYI, "found the last secondary response\n");
377 return 0;
378 }
379
380 static void
cifs_downgrade_oplock(struct TCP_Server_Info * server,struct cifsInodeInfo * cinode,bool set_level2)381 cifs_downgrade_oplock(struct TCP_Server_Info *server,
382 struct cifsInodeInfo *cinode, bool set_level2)
383 {
384 if (set_level2)
385 cifs_set_oplock_level(cinode, OPLOCK_READ);
386 else
387 cifs_set_oplock_level(cinode, 0);
388 }
389
390 static bool
cifs_check_trans2(struct mid_q_entry * mid,struct TCP_Server_Info * server,char * buf,int malformed)391 cifs_check_trans2(struct mid_q_entry *mid, struct TCP_Server_Info *server,
392 char *buf, int malformed)
393 {
394 if (malformed)
395 return false;
396 if (check2ndT2(buf) <= 0)
397 return false;
398 mid->multiRsp = true;
399 if (mid->resp_buf) {
400 /* merge response - fix up 1st*/
401 malformed = coalesce_t2(buf, mid->resp_buf);
402 if (malformed > 0)
403 return true;
404 /* All parts received or packet is malformed. */
405 mid->multiEnd = true;
406 dequeue_mid(mid, malformed);
407 return true;
408 }
409 if (!server->large_buf) {
410 /*FIXME: switch to already allocated largebuf?*/
411 cifs_dbg(VFS, "1st trans2 resp needs bigbuf\n");
412 } else {
413 /* Have first buffer */
414 mid->resp_buf = buf;
415 mid->large_buf = true;
416 server->bigbuf = NULL;
417 }
418 return true;
419 }
420
421 static bool
cifs_need_neg(struct TCP_Server_Info * server)422 cifs_need_neg(struct TCP_Server_Info *server)
423 {
424 return server->maxBuf == 0;
425 }
426
427 static int
cifs_negotiate(const unsigned int xid,struct cifs_ses * ses)428 cifs_negotiate(const unsigned int xid, struct cifs_ses *ses)
429 {
430 int rc;
431 rc = CIFSSMBNegotiate(xid, ses);
432 if (rc == -EAGAIN) {
433 /* retry only once on 1st time connection */
434 set_credits(ses->server, 1);
435 rc = CIFSSMBNegotiate(xid, ses);
436 if (rc == -EAGAIN)
437 rc = -EHOSTDOWN;
438 }
439 return rc;
440 }
441
442 static unsigned int
cifs_negotiate_wsize(struct cifs_tcon * tcon,struct smb_vol * volume_info)443 cifs_negotiate_wsize(struct cifs_tcon *tcon, struct smb_vol *volume_info)
444 {
445 __u64 unix_cap = le64_to_cpu(tcon->fsUnixInfo.Capability);
446 struct TCP_Server_Info *server = tcon->ses->server;
447 unsigned int wsize;
448
449 /* start with specified wsize, or default */
450 if (volume_info->wsize)
451 wsize = volume_info->wsize;
452 else if (tcon->unix_ext && (unix_cap & CIFS_UNIX_LARGE_WRITE_CAP))
453 wsize = CIFS_DEFAULT_IOSIZE;
454 else
455 wsize = CIFS_DEFAULT_NON_POSIX_WSIZE;
456
457 /* can server support 24-bit write sizes? (via UNIX extensions) */
458 if (!tcon->unix_ext || !(unix_cap & CIFS_UNIX_LARGE_WRITE_CAP))
459 wsize = min_t(unsigned int, wsize, CIFS_MAX_RFC1002_WSIZE);
460
461 /*
462 * no CAP_LARGE_WRITE_X or is signing enabled without CAP_UNIX set?
463 * Limit it to max buffer offered by the server, minus the size of the
464 * WRITEX header, not including the 4 byte RFC1001 length.
465 */
466 if (!(server->capabilities & CAP_LARGE_WRITE_X) ||
467 (!(server->capabilities & CAP_UNIX) && server->sign))
468 wsize = min_t(unsigned int, wsize,
469 server->maxBuf - sizeof(WRITE_REQ) + 4);
470
471 /* hard limit of CIFS_MAX_WSIZE */
472 wsize = min_t(unsigned int, wsize, CIFS_MAX_WSIZE);
473
474 return wsize;
475 }
476
477 static unsigned int
cifs_negotiate_rsize(struct cifs_tcon * tcon,struct smb_vol * volume_info)478 cifs_negotiate_rsize(struct cifs_tcon *tcon, struct smb_vol *volume_info)
479 {
480 __u64 unix_cap = le64_to_cpu(tcon->fsUnixInfo.Capability);
481 struct TCP_Server_Info *server = tcon->ses->server;
482 unsigned int rsize, defsize;
483
484 /*
485 * Set default value...
486 *
487 * HACK alert! Ancient servers have very small buffers. Even though
488 * MS-CIFS indicates that servers are only limited by the client's
489 * bufsize for reads, testing against win98se shows that it throws
490 * INVALID_PARAMETER errors if you try to request too large a read.
491 * OS/2 just sends back short reads.
492 *
493 * If the server doesn't advertise CAP_LARGE_READ_X, then assume that
494 * it can't handle a read request larger than its MaxBufferSize either.
495 */
496 if (tcon->unix_ext && (unix_cap & CIFS_UNIX_LARGE_READ_CAP))
497 defsize = CIFS_DEFAULT_IOSIZE;
498 else if (server->capabilities & CAP_LARGE_READ_X)
499 defsize = CIFS_DEFAULT_NON_POSIX_RSIZE;
500 else
501 defsize = server->maxBuf - sizeof(READ_RSP);
502
503 rsize = volume_info->rsize ? volume_info->rsize : defsize;
504
505 /*
506 * no CAP_LARGE_READ_X? Then MS-CIFS states that we must limit this to
507 * the client's MaxBufferSize.
508 */
509 if (!(server->capabilities & CAP_LARGE_READ_X))
510 rsize = min_t(unsigned int, CIFSMaxBufSize, rsize);
511
512 /* hard limit of CIFS_MAX_RSIZE */
513 rsize = min_t(unsigned int, rsize, CIFS_MAX_RSIZE);
514
515 return rsize;
516 }
517
518 static void
cifs_qfs_tcon(const unsigned int xid,struct cifs_tcon * tcon)519 cifs_qfs_tcon(const unsigned int xid, struct cifs_tcon *tcon)
520 {
521 CIFSSMBQFSDeviceInfo(xid, tcon);
522 CIFSSMBQFSAttributeInfo(xid, tcon);
523 }
524
525 static int
cifs_is_path_accessible(const unsigned int xid,struct cifs_tcon * tcon,struct cifs_sb_info * cifs_sb,const char * full_path)526 cifs_is_path_accessible(const unsigned int xid, struct cifs_tcon *tcon,
527 struct cifs_sb_info *cifs_sb, const char *full_path)
528 {
529 int rc;
530 FILE_ALL_INFO *file_info;
531
532 file_info = kmalloc(sizeof(FILE_ALL_INFO), GFP_KERNEL);
533 if (file_info == NULL)
534 return -ENOMEM;
535
536 rc = CIFSSMBQPathInfo(xid, tcon, full_path, file_info,
537 0 /* not legacy */, cifs_sb->local_nls,
538 cifs_remap(cifs_sb));
539
540 if (rc == -EOPNOTSUPP || rc == -EINVAL)
541 rc = SMBQueryInformation(xid, tcon, full_path, file_info,
542 cifs_sb->local_nls, cifs_remap(cifs_sb));
543 kfree(file_info);
544 return rc;
545 }
546
547 static int
cifs_query_path_info(const unsigned int xid,struct cifs_tcon * tcon,struct cifs_sb_info * cifs_sb,const char * full_path,FILE_ALL_INFO * data,bool * adjustTZ,bool * symlink)548 cifs_query_path_info(const unsigned int xid, struct cifs_tcon *tcon,
549 struct cifs_sb_info *cifs_sb, const char *full_path,
550 FILE_ALL_INFO *data, bool *adjustTZ, bool *symlink)
551 {
552 int rc;
553
554 *symlink = false;
555
556 /* could do find first instead but this returns more info */
557 rc = CIFSSMBQPathInfo(xid, tcon, full_path, data, 0 /* not legacy */,
558 cifs_sb->local_nls, cifs_remap(cifs_sb));
559 /*
560 * BB optimize code so we do not make the above call when server claims
561 * no NT SMB support and the above call failed at least once - set flag
562 * in tcon or mount.
563 */
564 if ((rc == -EOPNOTSUPP) || (rc == -EINVAL)) {
565 rc = SMBQueryInformation(xid, tcon, full_path, data,
566 cifs_sb->local_nls,
567 cifs_remap(cifs_sb));
568 *adjustTZ = true;
569 }
570
571 if (!rc && (le32_to_cpu(data->Attributes) & ATTR_REPARSE)) {
572 int tmprc;
573 int oplock = 0;
574 struct cifs_fid fid;
575 struct cifs_open_parms oparms;
576
577 oparms.tcon = tcon;
578 oparms.cifs_sb = cifs_sb;
579 oparms.desired_access = FILE_READ_ATTRIBUTES;
580 oparms.create_options = 0;
581 oparms.disposition = FILE_OPEN;
582 oparms.path = full_path;
583 oparms.fid = &fid;
584 oparms.reconnect = false;
585
586 /* Need to check if this is a symbolic link or not */
587 tmprc = CIFS_open(xid, &oparms, &oplock, NULL);
588 if (tmprc == -EOPNOTSUPP)
589 *symlink = true;
590 else if (tmprc == 0)
591 CIFSSMBClose(xid, tcon, fid.netfid);
592 }
593
594 return rc;
595 }
596
597 static int
cifs_get_srv_inum(const unsigned int xid,struct cifs_tcon * tcon,struct cifs_sb_info * cifs_sb,const char * full_path,u64 * uniqueid,FILE_ALL_INFO * data)598 cifs_get_srv_inum(const unsigned int xid, struct cifs_tcon *tcon,
599 struct cifs_sb_info *cifs_sb, const char *full_path,
600 u64 *uniqueid, FILE_ALL_INFO *data)
601 {
602 /*
603 * We can not use the IndexNumber field by default from Windows or
604 * Samba (in ALL_INFO buf) but we can request it explicitly. The SNIA
605 * CIFS spec claims that this value is unique within the scope of a
606 * share, and the windows docs hint that it's actually unique
607 * per-machine.
608 *
609 * There may be higher info levels that work but are there Windows
610 * server or network appliances for which IndexNumber field is not
611 * guaranteed unique?
612 */
613 return CIFSGetSrvInodeNumber(xid, tcon, full_path, uniqueid,
614 cifs_sb->local_nls,
615 cifs_remap(cifs_sb));
616 }
617
618 static int
cifs_query_file_info(const unsigned int xid,struct cifs_tcon * tcon,struct cifs_fid * fid,FILE_ALL_INFO * data)619 cifs_query_file_info(const unsigned int xid, struct cifs_tcon *tcon,
620 struct cifs_fid *fid, FILE_ALL_INFO *data)
621 {
622 return CIFSSMBQFileInfo(xid, tcon, fid->netfid, data);
623 }
624
625 static void
cifs_clear_stats(struct cifs_tcon * tcon)626 cifs_clear_stats(struct cifs_tcon *tcon)
627 {
628 #ifdef CONFIG_CIFS_STATS
629 atomic_set(&tcon->stats.cifs_stats.num_writes, 0);
630 atomic_set(&tcon->stats.cifs_stats.num_reads, 0);
631 atomic_set(&tcon->stats.cifs_stats.num_flushes, 0);
632 atomic_set(&tcon->stats.cifs_stats.num_oplock_brks, 0);
633 atomic_set(&tcon->stats.cifs_stats.num_opens, 0);
634 atomic_set(&tcon->stats.cifs_stats.num_posixopens, 0);
635 atomic_set(&tcon->stats.cifs_stats.num_posixmkdirs, 0);
636 atomic_set(&tcon->stats.cifs_stats.num_closes, 0);
637 atomic_set(&tcon->stats.cifs_stats.num_deletes, 0);
638 atomic_set(&tcon->stats.cifs_stats.num_mkdirs, 0);
639 atomic_set(&tcon->stats.cifs_stats.num_rmdirs, 0);
640 atomic_set(&tcon->stats.cifs_stats.num_renames, 0);
641 atomic_set(&tcon->stats.cifs_stats.num_t2renames, 0);
642 atomic_set(&tcon->stats.cifs_stats.num_ffirst, 0);
643 atomic_set(&tcon->stats.cifs_stats.num_fnext, 0);
644 atomic_set(&tcon->stats.cifs_stats.num_fclose, 0);
645 atomic_set(&tcon->stats.cifs_stats.num_hardlinks, 0);
646 atomic_set(&tcon->stats.cifs_stats.num_symlinks, 0);
647 atomic_set(&tcon->stats.cifs_stats.num_locks, 0);
648 atomic_set(&tcon->stats.cifs_stats.num_acl_get, 0);
649 atomic_set(&tcon->stats.cifs_stats.num_acl_set, 0);
650 #endif
651 }
652
653 static void
cifs_print_stats(struct seq_file * m,struct cifs_tcon * tcon)654 cifs_print_stats(struct seq_file *m, struct cifs_tcon *tcon)
655 {
656 #ifdef CONFIG_CIFS_STATS
657 seq_printf(m, " Oplocks breaks: %d",
658 atomic_read(&tcon->stats.cifs_stats.num_oplock_brks));
659 seq_printf(m, "\nReads: %d Bytes: %llu",
660 atomic_read(&tcon->stats.cifs_stats.num_reads),
661 (long long)(tcon->bytes_read));
662 seq_printf(m, "\nWrites: %d Bytes: %llu",
663 atomic_read(&tcon->stats.cifs_stats.num_writes),
664 (long long)(tcon->bytes_written));
665 seq_printf(m, "\nFlushes: %d",
666 atomic_read(&tcon->stats.cifs_stats.num_flushes));
667 seq_printf(m, "\nLocks: %d HardLinks: %d Symlinks: %d",
668 atomic_read(&tcon->stats.cifs_stats.num_locks),
669 atomic_read(&tcon->stats.cifs_stats.num_hardlinks),
670 atomic_read(&tcon->stats.cifs_stats.num_symlinks));
671 seq_printf(m, "\nOpens: %d Closes: %d Deletes: %d",
672 atomic_read(&tcon->stats.cifs_stats.num_opens),
673 atomic_read(&tcon->stats.cifs_stats.num_closes),
674 atomic_read(&tcon->stats.cifs_stats.num_deletes));
675 seq_printf(m, "\nPosix Opens: %d Posix Mkdirs: %d",
676 atomic_read(&tcon->stats.cifs_stats.num_posixopens),
677 atomic_read(&tcon->stats.cifs_stats.num_posixmkdirs));
678 seq_printf(m, "\nMkdirs: %d Rmdirs: %d",
679 atomic_read(&tcon->stats.cifs_stats.num_mkdirs),
680 atomic_read(&tcon->stats.cifs_stats.num_rmdirs));
681 seq_printf(m, "\nRenames: %d T2 Renames %d",
682 atomic_read(&tcon->stats.cifs_stats.num_renames),
683 atomic_read(&tcon->stats.cifs_stats.num_t2renames));
684 seq_printf(m, "\nFindFirst: %d FNext %d FClose %d",
685 atomic_read(&tcon->stats.cifs_stats.num_ffirst),
686 atomic_read(&tcon->stats.cifs_stats.num_fnext),
687 atomic_read(&tcon->stats.cifs_stats.num_fclose));
688 #endif
689 }
690
691 static void
cifs_mkdir_setinfo(struct inode * inode,const char * full_path,struct cifs_sb_info * cifs_sb,struct cifs_tcon * tcon,const unsigned int xid)692 cifs_mkdir_setinfo(struct inode *inode, const char *full_path,
693 struct cifs_sb_info *cifs_sb, struct cifs_tcon *tcon,
694 const unsigned int xid)
695 {
696 FILE_BASIC_INFO info;
697 struct cifsInodeInfo *cifsInode;
698 u32 dosattrs;
699 int rc;
700
701 memset(&info, 0, sizeof(info));
702 cifsInode = CIFS_I(inode);
703 dosattrs = cifsInode->cifsAttrs|ATTR_READONLY;
704 info.Attributes = cpu_to_le32(dosattrs);
705 rc = CIFSSMBSetPathInfo(xid, tcon, full_path, &info, cifs_sb->local_nls,
706 cifs_remap(cifs_sb));
707 if (rc == 0)
708 cifsInode->cifsAttrs = dosattrs;
709 }
710
711 static int
cifs_open_file(const unsigned int xid,struct cifs_open_parms * oparms,__u32 * oplock,FILE_ALL_INFO * buf)712 cifs_open_file(const unsigned int xid, struct cifs_open_parms *oparms,
713 __u32 *oplock, FILE_ALL_INFO *buf)
714 {
715 if (!(oparms->tcon->ses->capabilities & CAP_NT_SMBS))
716 return SMBLegacyOpen(xid, oparms->tcon, oparms->path,
717 oparms->disposition,
718 oparms->desired_access,
719 oparms->create_options,
720 &oparms->fid->netfid, oplock, buf,
721 oparms->cifs_sb->local_nls,
722 cifs_remap(oparms->cifs_sb));
723 return CIFS_open(xid, oparms, oplock, buf);
724 }
725
726 static void
cifs_set_fid(struct cifsFileInfo * cfile,struct cifs_fid * fid,__u32 oplock)727 cifs_set_fid(struct cifsFileInfo *cfile, struct cifs_fid *fid, __u32 oplock)
728 {
729 struct cifsInodeInfo *cinode = CIFS_I(d_inode(cfile->dentry));
730 cfile->fid.netfid = fid->netfid;
731 cifs_set_oplock_level(cinode, oplock);
732 cinode->can_cache_brlcks = CIFS_CACHE_WRITE(cinode);
733 }
734
735 static void
cifs_close_file(const unsigned int xid,struct cifs_tcon * tcon,struct cifs_fid * fid)736 cifs_close_file(const unsigned int xid, struct cifs_tcon *tcon,
737 struct cifs_fid *fid)
738 {
739 CIFSSMBClose(xid, tcon, fid->netfid);
740 }
741
742 static int
cifs_flush_file(const unsigned int xid,struct cifs_tcon * tcon,struct cifs_fid * fid)743 cifs_flush_file(const unsigned int xid, struct cifs_tcon *tcon,
744 struct cifs_fid *fid)
745 {
746 return CIFSSMBFlush(xid, tcon, fid->netfid);
747 }
748
749 static int
cifs_sync_read(const unsigned int xid,struct cifs_fid * pfid,struct cifs_io_parms * parms,unsigned int * bytes_read,char ** buf,int * buf_type)750 cifs_sync_read(const unsigned int xid, struct cifs_fid *pfid,
751 struct cifs_io_parms *parms, unsigned int *bytes_read,
752 char **buf, int *buf_type)
753 {
754 parms->netfid = pfid->netfid;
755 return CIFSSMBRead(xid, parms, bytes_read, buf, buf_type);
756 }
757
758 static int
cifs_sync_write(const unsigned int xid,struct cifs_fid * pfid,struct cifs_io_parms * parms,unsigned int * written,struct kvec * iov,unsigned long nr_segs)759 cifs_sync_write(const unsigned int xid, struct cifs_fid *pfid,
760 struct cifs_io_parms *parms, unsigned int *written,
761 struct kvec *iov, unsigned long nr_segs)
762 {
763
764 parms->netfid = pfid->netfid;
765 return CIFSSMBWrite2(xid, parms, written, iov, nr_segs);
766 }
767
768 static int
smb_set_file_info(struct inode * inode,const char * full_path,FILE_BASIC_INFO * buf,const unsigned int xid)769 smb_set_file_info(struct inode *inode, const char *full_path,
770 FILE_BASIC_INFO *buf, const unsigned int xid)
771 {
772 int oplock = 0;
773 int rc;
774 __u32 netpid;
775 struct cifs_fid fid;
776 struct cifs_open_parms oparms;
777 struct cifsFileInfo *open_file;
778 struct cifsInodeInfo *cinode = CIFS_I(inode);
779 struct cifs_sb_info *cifs_sb = CIFS_SB(inode->i_sb);
780 struct tcon_link *tlink = NULL;
781 struct cifs_tcon *tcon;
782
783 /* if the file is already open for write, just use that fileid */
784 open_file = find_writable_file(cinode, true);
785 if (open_file) {
786 fid.netfid = open_file->fid.netfid;
787 netpid = open_file->pid;
788 tcon = tlink_tcon(open_file->tlink);
789 goto set_via_filehandle;
790 }
791
792 tlink = cifs_sb_tlink(cifs_sb);
793 if (IS_ERR(tlink)) {
794 rc = PTR_ERR(tlink);
795 tlink = NULL;
796 goto out;
797 }
798 tcon = tlink_tcon(tlink);
799
800 rc = CIFSSMBSetPathInfo(xid, tcon, full_path, buf, cifs_sb->local_nls,
801 cifs_remap(cifs_sb));
802 if (rc == 0) {
803 cinode->cifsAttrs = le32_to_cpu(buf->Attributes);
804 goto out;
805 } else if (rc != -EOPNOTSUPP && rc != -EINVAL) {
806 goto out;
807 }
808
809 oparms.tcon = tcon;
810 oparms.cifs_sb = cifs_sb;
811 oparms.desired_access = SYNCHRONIZE | FILE_WRITE_ATTRIBUTES;
812 oparms.create_options = CREATE_NOT_DIR;
813 oparms.disposition = FILE_OPEN;
814 oparms.path = full_path;
815 oparms.fid = &fid;
816 oparms.reconnect = false;
817
818 cifs_dbg(FYI, "calling SetFileInfo since SetPathInfo for times not supported by this server\n");
819 rc = CIFS_open(xid, &oparms, &oplock, NULL);
820 if (rc != 0) {
821 if (rc == -EIO)
822 rc = -EINVAL;
823 goto out;
824 }
825
826 netpid = current->tgid;
827
828 set_via_filehandle:
829 rc = CIFSSMBSetFileInfo(xid, tcon, buf, fid.netfid, netpid);
830 if (!rc)
831 cinode->cifsAttrs = le32_to_cpu(buf->Attributes);
832
833 if (open_file == NULL)
834 CIFSSMBClose(xid, tcon, fid.netfid);
835 else
836 cifsFileInfo_put(open_file);
837 out:
838 if (tlink != NULL)
839 cifs_put_tlink(tlink);
840 return rc;
841 }
842
843 static int
cifs_set_compression(const unsigned int xid,struct cifs_tcon * tcon,struct cifsFileInfo * cfile)844 cifs_set_compression(const unsigned int xid, struct cifs_tcon *tcon,
845 struct cifsFileInfo *cfile)
846 {
847 return CIFSSMB_set_compression(xid, tcon, cfile->fid.netfid);
848 }
849
850 static int
cifs_query_dir_first(const unsigned int xid,struct cifs_tcon * tcon,const char * path,struct cifs_sb_info * cifs_sb,struct cifs_fid * fid,__u16 search_flags,struct cifs_search_info * srch_inf)851 cifs_query_dir_first(const unsigned int xid, struct cifs_tcon *tcon,
852 const char *path, struct cifs_sb_info *cifs_sb,
853 struct cifs_fid *fid, __u16 search_flags,
854 struct cifs_search_info *srch_inf)
855 {
856 int rc;
857
858 rc = CIFSFindFirst(xid, tcon, path, cifs_sb,
859 &fid->netfid, search_flags, srch_inf, true);
860 if (rc)
861 cifs_dbg(FYI, "find first failed=%d\n", rc);
862 return rc;
863 }
864
865 static int
cifs_query_dir_next(const unsigned int xid,struct cifs_tcon * tcon,struct cifs_fid * fid,__u16 search_flags,struct cifs_search_info * srch_inf)866 cifs_query_dir_next(const unsigned int xid, struct cifs_tcon *tcon,
867 struct cifs_fid *fid, __u16 search_flags,
868 struct cifs_search_info *srch_inf)
869 {
870 return CIFSFindNext(xid, tcon, fid->netfid, search_flags, srch_inf);
871 }
872
873 static int
cifs_close_dir(const unsigned int xid,struct cifs_tcon * tcon,struct cifs_fid * fid)874 cifs_close_dir(const unsigned int xid, struct cifs_tcon *tcon,
875 struct cifs_fid *fid)
876 {
877 return CIFSFindClose(xid, tcon, fid->netfid);
878 }
879
880 static int
cifs_oplock_response(struct cifs_tcon * tcon,struct cifs_fid * fid,struct cifsInodeInfo * cinode)881 cifs_oplock_response(struct cifs_tcon *tcon, struct cifs_fid *fid,
882 struct cifsInodeInfo *cinode)
883 {
884 return CIFSSMBLock(0, tcon, fid->netfid, current->tgid, 0, 0, 0, 0,
885 LOCKING_ANDX_OPLOCK_RELEASE, false,
886 CIFS_CACHE_READ(cinode) ? 1 : 0);
887 }
888
889 static int
cifs_queryfs(const unsigned int xid,struct cifs_tcon * tcon,struct kstatfs * buf)890 cifs_queryfs(const unsigned int xid, struct cifs_tcon *tcon,
891 struct kstatfs *buf)
892 {
893 int rc = -EOPNOTSUPP;
894
895 buf->f_type = CIFS_MAGIC_NUMBER;
896
897 /*
898 * We could add a second check for a QFS Unix capability bit
899 */
900 if ((tcon->ses->capabilities & CAP_UNIX) &&
901 (CIFS_POSIX_EXTENSIONS & le64_to_cpu(tcon->fsUnixInfo.Capability)))
902 rc = CIFSSMBQFSPosixInfo(xid, tcon, buf);
903
904 /*
905 * Only need to call the old QFSInfo if failed on newer one,
906 * e.g. by OS/2.
907 **/
908 if (rc && (tcon->ses->capabilities & CAP_NT_SMBS))
909 rc = CIFSSMBQFSInfo(xid, tcon, buf);
910
911 /*
912 * Some old Windows servers also do not support level 103, retry with
913 * older level one if old server failed the previous call or we
914 * bypassed it because we detected that this was an older LANMAN sess
915 */
916 if (rc)
917 rc = SMBOldQFSInfo(xid, tcon, buf);
918 return rc;
919 }
920
921 static int
cifs_mand_lock(const unsigned int xid,struct cifsFileInfo * cfile,__u64 offset,__u64 length,__u32 type,int lock,int unlock,bool wait)922 cifs_mand_lock(const unsigned int xid, struct cifsFileInfo *cfile, __u64 offset,
923 __u64 length, __u32 type, int lock, int unlock, bool wait)
924 {
925 return CIFSSMBLock(xid, tlink_tcon(cfile->tlink), cfile->fid.netfid,
926 current->tgid, length, offset, unlock, lock,
927 (__u8)type, wait, 0);
928 }
929
930 static int
cifs_unix_dfs_readlink(const unsigned int xid,struct cifs_tcon * tcon,const unsigned char * searchName,char ** symlinkinfo,const struct nls_table * nls_codepage)931 cifs_unix_dfs_readlink(const unsigned int xid, struct cifs_tcon *tcon,
932 const unsigned char *searchName, char **symlinkinfo,
933 const struct nls_table *nls_codepage)
934 {
935 #ifdef CONFIG_CIFS_DFS_UPCALL
936 int rc;
937 unsigned int num_referrals = 0;
938 struct dfs_info3_param *referrals = NULL;
939
940 rc = get_dfs_path(xid, tcon->ses, searchName, nls_codepage,
941 &num_referrals, &referrals, 0);
942
943 if (!rc && num_referrals > 0) {
944 *symlinkinfo = kstrndup(referrals->node_name,
945 strlen(referrals->node_name),
946 GFP_KERNEL);
947 if (!*symlinkinfo)
948 rc = -ENOMEM;
949 free_dfs_info_array(referrals, num_referrals);
950 }
951 return rc;
952 #else /* No DFS support */
953 return -EREMOTE;
954 #endif
955 }
956
957 static int
cifs_query_symlink(const unsigned int xid,struct cifs_tcon * tcon,const char * full_path,char ** target_path,struct cifs_sb_info * cifs_sb)958 cifs_query_symlink(const unsigned int xid, struct cifs_tcon *tcon,
959 const char *full_path, char **target_path,
960 struct cifs_sb_info *cifs_sb)
961 {
962 int rc;
963 int oplock = 0;
964 struct cifs_fid fid;
965 struct cifs_open_parms oparms;
966
967 cifs_dbg(FYI, "%s: path: %s\n", __func__, full_path);
968
969 /* Check for unix extensions */
970 if (cap_unix(tcon->ses)) {
971 rc = CIFSSMBUnixQuerySymLink(xid, tcon, full_path, target_path,
972 cifs_sb->local_nls,
973 cifs_remap(cifs_sb));
974 if (rc == -EREMOTE)
975 rc = cifs_unix_dfs_readlink(xid, tcon, full_path,
976 target_path,
977 cifs_sb->local_nls);
978
979 goto out;
980 }
981
982 oparms.tcon = tcon;
983 oparms.cifs_sb = cifs_sb;
984 oparms.desired_access = FILE_READ_ATTRIBUTES;
985 oparms.create_options = OPEN_REPARSE_POINT;
986 oparms.disposition = FILE_OPEN;
987 oparms.path = full_path;
988 oparms.fid = &fid;
989 oparms.reconnect = false;
990
991 rc = CIFS_open(xid, &oparms, &oplock, NULL);
992 if (rc)
993 goto out;
994
995 rc = CIFSSMBQuerySymLink(xid, tcon, fid.netfid, target_path,
996 cifs_sb->local_nls);
997 if (rc)
998 goto out_close;
999
1000 convert_delimiter(*target_path, '/');
1001 out_close:
1002 CIFSSMBClose(xid, tcon, fid.netfid);
1003 out:
1004 if (!rc)
1005 cifs_dbg(FYI, "%s: target path: %s\n", __func__, *target_path);
1006 return rc;
1007 }
1008
1009 static bool
cifs_is_read_op(__u32 oplock)1010 cifs_is_read_op(__u32 oplock)
1011 {
1012 return oplock == OPLOCK_READ;
1013 }
1014
1015 static unsigned int
cifs_wp_retry_size(struct inode * inode)1016 cifs_wp_retry_size(struct inode *inode)
1017 {
1018 return CIFS_SB(inode->i_sb)->wsize;
1019 }
1020
1021 static bool
cifs_dir_needs_close(struct cifsFileInfo * cfile)1022 cifs_dir_needs_close(struct cifsFileInfo *cfile)
1023 {
1024 return !cfile->srch_inf.endOfSearch && !cfile->invalidHandle;
1025 }
1026
1027 static bool
cifs_can_echo(struct TCP_Server_Info * server)1028 cifs_can_echo(struct TCP_Server_Info *server)
1029 {
1030 if (server->tcpStatus == CifsGood)
1031 return true;
1032
1033 return false;
1034 }
1035
1036 struct smb_version_operations smb1_operations = {
1037 .send_cancel = send_nt_cancel,
1038 .compare_fids = cifs_compare_fids,
1039 .setup_request = cifs_setup_request,
1040 .setup_async_request = cifs_setup_async_request,
1041 .check_receive = cifs_check_receive,
1042 .add_credits = cifs_add_credits,
1043 .set_credits = cifs_set_credits,
1044 .get_credits_field = cifs_get_credits_field,
1045 .get_credits = cifs_get_credits,
1046 .wait_mtu_credits = cifs_wait_mtu_credits,
1047 .get_next_mid = cifs_get_next_mid,
1048 .read_data_offset = cifs_read_data_offset,
1049 .read_data_length = cifs_read_data_length,
1050 .map_error = map_smb_to_linux_error,
1051 .find_mid = cifs_find_mid,
1052 .check_message = checkSMB,
1053 .dump_detail = cifs_dump_detail,
1054 .clear_stats = cifs_clear_stats,
1055 .print_stats = cifs_print_stats,
1056 .is_oplock_break = is_valid_oplock_break,
1057 .downgrade_oplock = cifs_downgrade_oplock,
1058 .check_trans2 = cifs_check_trans2,
1059 .need_neg = cifs_need_neg,
1060 .negotiate = cifs_negotiate,
1061 .negotiate_wsize = cifs_negotiate_wsize,
1062 .negotiate_rsize = cifs_negotiate_rsize,
1063 .sess_setup = CIFS_SessSetup,
1064 .logoff = CIFSSMBLogoff,
1065 .tree_connect = CIFSTCon,
1066 .tree_disconnect = CIFSSMBTDis,
1067 .get_dfs_refer = CIFSGetDFSRefer,
1068 .qfs_tcon = cifs_qfs_tcon,
1069 .is_path_accessible = cifs_is_path_accessible,
1070 .can_echo = cifs_can_echo,
1071 .query_path_info = cifs_query_path_info,
1072 .query_file_info = cifs_query_file_info,
1073 .get_srv_inum = cifs_get_srv_inum,
1074 .set_path_size = CIFSSMBSetEOF,
1075 .set_file_size = CIFSSMBSetFileSize,
1076 .set_file_info = smb_set_file_info,
1077 .set_compression = cifs_set_compression,
1078 .echo = CIFSSMBEcho,
1079 .mkdir = CIFSSMBMkDir,
1080 .mkdir_setinfo = cifs_mkdir_setinfo,
1081 .rmdir = CIFSSMBRmDir,
1082 .unlink = CIFSSMBDelFile,
1083 .rename_pending_delete = cifs_rename_pending_delete,
1084 .rename = CIFSSMBRename,
1085 .create_hardlink = CIFSCreateHardLink,
1086 .query_symlink = cifs_query_symlink,
1087 .open = cifs_open_file,
1088 .set_fid = cifs_set_fid,
1089 .close = cifs_close_file,
1090 .flush = cifs_flush_file,
1091 .async_readv = cifs_async_readv,
1092 .async_writev = cifs_async_writev,
1093 .sync_read = cifs_sync_read,
1094 .sync_write = cifs_sync_write,
1095 .query_dir_first = cifs_query_dir_first,
1096 .query_dir_next = cifs_query_dir_next,
1097 .close_dir = cifs_close_dir,
1098 .calc_smb_size = smbCalcSize,
1099 .oplock_response = cifs_oplock_response,
1100 .queryfs = cifs_queryfs,
1101 .mand_lock = cifs_mand_lock,
1102 .mand_unlock_range = cifs_unlock_range,
1103 .push_mand_locks = cifs_push_mandatory_locks,
1104 .query_mf_symlink = cifs_query_mf_symlink,
1105 .create_mf_symlink = cifs_create_mf_symlink,
1106 .is_read_op = cifs_is_read_op,
1107 .wp_retry_size = cifs_wp_retry_size,
1108 .dir_needs_close = cifs_dir_needs_close,
1109 .select_sectype = cifs_select_sectype,
1110 #ifdef CONFIG_CIFS_XATTR
1111 .query_all_EAs = CIFSSMBQAllEAs,
1112 .set_EA = CIFSSMBSetEA,
1113 #endif /* CIFS_XATTR */
1114 #ifdef CONFIG_CIFS_ACL
1115 .get_acl = get_cifs_acl,
1116 .get_acl_by_fid = get_cifs_acl_by_fid,
1117 .set_acl = set_cifs_acl,
1118 #endif /* CIFS_ACL */
1119 };
1120
1121 struct smb_version_values smb1_values = {
1122 .version_string = SMB1_VERSION_STRING,
1123 .large_lock_type = LOCKING_ANDX_LARGE_FILES,
1124 .exclusive_lock_type = 0,
1125 .shared_lock_type = LOCKING_ANDX_SHARED_LOCK,
1126 .unlock_lock_type = 0,
1127 .header_size = sizeof(struct smb_hdr),
1128 .max_header_size = MAX_CIFS_HDR_SIZE,
1129 .read_rsp_size = sizeof(READ_RSP),
1130 .lock_cmd = cpu_to_le16(SMB_COM_LOCKING_ANDX),
1131 .cap_unix = CAP_UNIX,
1132 .cap_nt_find = CAP_NT_SMBS | CAP_NT_FIND,
1133 .cap_large_files = CAP_LARGE_FILES,
1134 .signing_enabled = SECMODE_SIGN_ENABLED,
1135 .signing_required = SECMODE_SIGN_REQUIRED,
1136 };
1137