4 * Copyright (C) International Business Machines Corp., 2002,2008
5 * Author(s): Steve French (sfrench@us.ibm.com)
6 * Jeremy Allison (jra@samba.org) 2006.
8 * This library is free software; you can redistribute it and/or modify
9 * it under the terms of the GNU Lesser General Public License as published
10 * by the Free Software Foundation; either version 2.1 of the License, or
11 * (at your option) any later version.
13 * This library is distributed in the hope that it will be useful,
14 * but WITHOUT ANY WARRANTY; without even the implied warranty of
15 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See
16 * the GNU Lesser General Public License for more details.
18 * You should have received a copy of the GNU Lesser General Public License
19 * along with this library; if not, write to the Free Software
20 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
24 #include <linux/list.h>
25 #include <linux/gfp.h>
26 #include <linux/wait.h>
27 #include <linux/net.h>
28 #include <linux/delay.h>
29 #include <linux/freezer.h>
30 #include <linux/tcp.h>
31 #include <linux/bvec.h>
32 #include <linux/highmem.h>
33 #include <linux/uaccess.h>
34 #include <asm/processor.h>
35 #include <linux/mempool.h>
38 #include "cifsproto.h"
39 #include "cifs_debug.h"
42 cifs_wake_up_task(struct mid_q_entry
*mid
)
44 wake_up_process(mid
->callback_data
);
48 AllocMidQEntry(const struct smb_hdr
*smb_buffer
, struct TCP_Server_Info
*server
)
50 struct mid_q_entry
*temp
;
53 cifs_dbg(VFS
, "Null TCP session in AllocMidQEntry\n");
57 temp
= mempool_alloc(cifs_mid_poolp
, GFP_NOFS
);
61 memset(temp
, 0, sizeof(struct mid_q_entry
));
62 temp
->mid
= get_mid(smb_buffer
);
63 temp
->pid
= current
->pid
;
64 temp
->command
= cpu_to_le16(smb_buffer
->Command
);
65 cifs_dbg(FYI
, "For smb_command %d\n", smb_buffer
->Command
);
66 /* do_gettimeofday(&temp->when_sent);*/ /* easier to use jiffies */
67 /* when mid allocated can be before when sent */
68 temp
->when_alloc
= jiffies
;
69 temp
->server
= server
;
72 * The default is for the mid to be synchronous, so the
73 * default callback just wakes up the current task.
75 temp
->callback
= cifs_wake_up_task
;
76 temp
->callback_data
= current
;
79 atomic_inc(&midCount
);
80 temp
->mid_state
= MID_REQUEST_ALLOCATED
;
85 DeleteMidQEntry(struct mid_q_entry
*midEntry
)
87 #ifdef CONFIG_CIFS_STATS2
88 __le16 command
= midEntry
->server
->vals
->lock_cmd
;
91 midEntry
->mid_state
= MID_FREE
;
92 atomic_dec(&midCount
);
93 if (midEntry
->large_buf
)
94 cifs_buf_release(midEntry
->resp_buf
);
96 cifs_small_buf_release(midEntry
->resp_buf
);
97 #ifdef CONFIG_CIFS_STATS2
99 /* commands taking longer than one second are indications that
100 something is wrong, unless it is quite a slow link or server */
101 if ((now
- midEntry
->when_alloc
) > HZ
) {
102 if ((cifsFYI
& CIFS_TIMER
) && (midEntry
->command
!= command
)) {
103 pr_debug(" CIFS slow rsp: cmd %d mid %llu",
104 midEntry
->command
, midEntry
->mid
);
105 pr_info(" A: 0x%lx S: 0x%lx R: 0x%lx\n",
106 now
- midEntry
->when_alloc
,
107 now
- midEntry
->when_sent
,
108 now
- midEntry
->when_received
);
112 mempool_free(midEntry
, cifs_mid_poolp
);
116 cifs_delete_mid(struct mid_q_entry
*mid
)
118 spin_lock(&GlobalMid_Lock
);
119 list_del(&mid
->qhead
);
120 spin_unlock(&GlobalMid_Lock
);
122 DeleteMidQEntry(mid
);
126 * smb_send_kvec - send an array of kvecs to the server
127 * @server: Server to send the data to
128 * @smb_msg: Message to send
129 * @sent: amount of data sent on socket is stored here
131 * Our basic "send data to server" function. Should be called with srv_mutex
132 * held. The caller is responsible for handling the results.
135 smb_send_kvec(struct TCP_Server_Info
*server
, struct msghdr
*smb_msg
,
140 struct socket
*ssocket
= server
->ssocket
;
144 smb_msg
->msg_name
= (struct sockaddr
*) &server
->dstaddr
;
145 smb_msg
->msg_namelen
= sizeof(struct sockaddr
);
146 smb_msg
->msg_control
= NULL
;
147 smb_msg
->msg_controllen
= 0;
148 if (server
->noblocksnd
)
149 smb_msg
->msg_flags
= MSG_DONTWAIT
+ MSG_NOSIGNAL
;
151 smb_msg
->msg_flags
= MSG_NOSIGNAL
;
153 while (msg_data_left(smb_msg
)) {
155 * If blocking send, we try 3 times, since each can block
156 * for 5 seconds. For nonblocking we have to try more
157 * but wait increasing amounts of time allowing time for
158 * socket to clear. The overall time we wait in either
159 * case to send on the socket is about 15 seconds.
160 * Similarly we wait for 15 seconds for a response from
161 * the server in SendReceive[2] for the server to send
162 * a response back for most types of requests (except
163 * SMB Write past end of file which can be slow, and
164 * blocking lock operations). NFS waits slightly longer
165 * than CIFS, but this can make it take longer for
166 * nonresponsive servers to be detected and 15 seconds
167 * is more than enough time for modern networks to
168 * send a packet. In most cases if we fail to send
169 * after the retries we will kill the socket and
170 * reconnect which may clear the network problem.
172 rc
= sock_sendmsg(ssocket
, smb_msg
);
176 (!server
->noblocksnd
&& (retries
> 2))) {
177 cifs_dbg(VFS
, "sends on sock %p stuck for 15 seconds\n",
181 msleep(1 << retries
);
189 /* should never happen, letting socket clear before
190 retrying is our only obvious option here */
191 cifs_dbg(VFS
, "tcp sent no data\n");
196 /* send was at least partially successful */
198 retries
= 0; /* in case we get ENOSPC on the next send */
204 rqst_len(struct smb_rqst
*rqst
)
207 struct kvec
*iov
= rqst
->rq_iov
;
208 unsigned long buflen
= 0;
210 /* total up iov array first */
211 for (i
= 0; i
< rqst
->rq_nvec
; i
++)
212 buflen
+= iov
[i
].iov_len
;
214 /* add in the page array if there is one */
215 if (rqst
->rq_npages
) {
216 buflen
+= rqst
->rq_pagesz
* (rqst
->rq_npages
- 1);
217 buflen
+= rqst
->rq_tailsz
;
224 smb_send_rqst(struct TCP_Server_Info
*server
, struct smb_rqst
*rqst
)
227 struct kvec
*iov
= rqst
->rq_iov
;
228 int n_vec
= rqst
->rq_nvec
;
229 unsigned int smb_buf_length
= get_rfc1002_length(iov
[0].iov_base
);
230 unsigned long send_length
;
232 size_t total_len
= 0, sent
, size
;
233 struct socket
*ssocket
= server
->ssocket
;
234 struct msghdr smb_msg
;
240 /* sanity check send length */
241 send_length
= rqst_len(rqst
);
242 if (send_length
!= smb_buf_length
+ 4) {
243 WARN(1, "Send length mismatch(send_length=%lu smb_buf_length=%u)\n",
244 send_length
, smb_buf_length
);
248 cifs_dbg(FYI
, "Sending smb: smb_len=%u\n", smb_buf_length
);
249 dump_smb(iov
[0].iov_base
, iov
[0].iov_len
);
251 /* cork the socket */
252 kernel_setsockopt(ssocket
, SOL_TCP
, TCP_CORK
,
253 (char *)&val
, sizeof(val
));
256 for (i
= 0; i
< n_vec
; i
++)
257 size
+= iov
[i
].iov_len
;
259 iov_iter_kvec(&smb_msg
.msg_iter
, WRITE
| ITER_KVEC
, iov
, n_vec
, size
);
261 rc
= smb_send_kvec(server
, &smb_msg
, &sent
);
267 /* now walk the page array and send each page in it */
268 for (i
= 0; i
< rqst
->rq_npages
; i
++) {
269 size_t len
= i
== rqst
->rq_npages
- 1
272 struct bio_vec bvec
= {
273 .bv_page
= rqst
->rq_pages
[i
],
276 iov_iter_bvec(&smb_msg
.msg_iter
, WRITE
| ITER_BVEC
,
278 rc
= smb_send_kvec(server
, &smb_msg
, &sent
);
288 kernel_setsockopt(ssocket
, SOL_TCP
, TCP_CORK
,
289 (char *)&val
, sizeof(val
));
291 if ((total_len
> 0) && (total_len
!= smb_buf_length
+ 4)) {
292 cifs_dbg(FYI
, "partial send (wanted=%u sent=%zu): terminating session\n",
293 smb_buf_length
+ 4, total_len
);
295 * If we have only sent part of an SMB then the next SMB could
296 * be taken as the remainder of this one. We need to kill the
297 * socket so the server throws away the partial SMB
299 server
->tcpStatus
= CifsNeedReconnect
;
302 if (rc
< 0 && rc
!= -EINTR
)
303 cifs_dbg(VFS
, "Error %d sending data on socket to server\n",
312 smb_sendv(struct TCP_Server_Info
*server
, struct kvec
*iov
, int n_vec
)
314 struct smb_rqst rqst
= { .rq_iov
= iov
,
317 return smb_send_rqst(server
, &rqst
);
321 smb_send(struct TCP_Server_Info
*server
, struct smb_hdr
*smb_buffer
,
322 unsigned int smb_buf_length
)
326 iov
.iov_base
= smb_buffer
;
327 iov
.iov_len
= smb_buf_length
+ 4;
329 return smb_sendv(server
, &iov
, 1);
333 wait_for_free_credits(struct TCP_Server_Info
*server
, const int timeout
,
338 spin_lock(&server
->req_lock
);
339 if (timeout
== CIFS_ASYNC_OP
) {
340 /* oplock breaks must not be held up */
343 spin_unlock(&server
->req_lock
);
349 spin_unlock(&server
->req_lock
);
350 cifs_num_waiters_inc(server
);
351 rc
= wait_event_killable(server
->request_q
,
352 has_credits(server
, credits
));
353 cifs_num_waiters_dec(server
);
356 spin_lock(&server
->req_lock
);
358 if (server
->tcpStatus
== CifsExiting
) {
359 spin_unlock(&server
->req_lock
);
364 * Can not count locking commands against total
365 * as they are allowed to block on server.
368 /* update # of requests on the wire to server */
369 if (timeout
!= CIFS_BLOCKING_OP
) {
373 spin_unlock(&server
->req_lock
);
381 wait_for_free_request(struct TCP_Server_Info
*server
, const int timeout
,
386 val
= server
->ops
->get_credits_field(server
, optype
);
387 /* Since an echo is already inflight, no need to wait to send another */
388 if (*val
<= 0 && optype
== CIFS_ECHO_OP
)
390 return wait_for_free_credits(server
, timeout
, val
);
394 cifs_wait_mtu_credits(struct TCP_Server_Info
*server
, unsigned int size
,
395 unsigned int *num
, unsigned int *credits
)
402 static int allocate_mid(struct cifs_ses
*ses
, struct smb_hdr
*in_buf
,
403 struct mid_q_entry
**ppmidQ
)
405 if (ses
->server
->tcpStatus
== CifsExiting
) {
409 if (ses
->server
->tcpStatus
== CifsNeedReconnect
) {
410 cifs_dbg(FYI
, "tcp session dead - return to caller to retry\n");
414 if (ses
->status
== CifsNew
) {
415 if ((in_buf
->Command
!= SMB_COM_SESSION_SETUP_ANDX
) &&
416 (in_buf
->Command
!= SMB_COM_NEGOTIATE
))
418 /* else ok - we are setting up session */
421 if (ses
->status
== CifsExiting
) {
422 /* check if SMB session is bad because we are setting it up */
423 if (in_buf
->Command
!= SMB_COM_LOGOFF_ANDX
)
425 /* else ok - we are shutting down session */
428 *ppmidQ
= AllocMidQEntry(in_buf
, ses
->server
);
431 spin_lock(&GlobalMid_Lock
);
432 list_add_tail(&(*ppmidQ
)->qhead
, &ses
->server
->pending_mid_q
);
433 spin_unlock(&GlobalMid_Lock
);
438 wait_for_response(struct TCP_Server_Info
*server
, struct mid_q_entry
*midQ
)
442 error
= wait_event_freezekillable_unsafe(server
->response_q
,
443 midQ
->mid_state
!= MID_REQUEST_SUBMITTED
);
451 cifs_setup_async_request(struct TCP_Server_Info
*server
, struct smb_rqst
*rqst
)
454 struct smb_hdr
*hdr
= (struct smb_hdr
*)rqst
->rq_iov
[0].iov_base
;
455 struct mid_q_entry
*mid
;
457 /* enable signing if server requires it */
459 hdr
->Flags2
|= SMBFLG2_SECURITY_SIGNATURE
;
461 mid
= AllocMidQEntry(hdr
, server
);
463 return ERR_PTR(-ENOMEM
);
465 rc
= cifs_sign_rqst(rqst
, server
, &mid
->sequence_number
);
467 DeleteMidQEntry(mid
);
475 * Send a SMB request and set the callback function in the mid to handle
476 * the result. Caller is responsible for dealing with timeouts.
479 cifs_call_async(struct TCP_Server_Info
*server
, struct smb_rqst
*rqst
,
480 mid_receive_t
*receive
, mid_callback_t
*callback
,
481 void *cbdata
, const int flags
)
483 int rc
, timeout
, optype
;
484 struct mid_q_entry
*mid
;
485 unsigned int credits
= 0;
487 timeout
= flags
& CIFS_TIMEOUT_MASK
;
488 optype
= flags
& CIFS_OP_MASK
;
490 if ((flags
& CIFS_HAS_CREDITS
) == 0) {
491 rc
= wait_for_free_request(server
, timeout
, optype
);
497 mutex_lock(&server
->srv_mutex
);
498 mid
= server
->ops
->setup_async_request(server
, rqst
);
500 mutex_unlock(&server
->srv_mutex
);
501 add_credits_and_wake_if(server
, credits
, optype
);
505 mid
->receive
= receive
;
506 mid
->callback
= callback
;
507 mid
->callback_data
= cbdata
;
508 mid
->mid_state
= MID_REQUEST_SUBMITTED
;
510 /* put it on the pending_mid_q */
511 spin_lock(&GlobalMid_Lock
);
512 list_add_tail(&mid
->qhead
, &server
->pending_mid_q
);
513 spin_unlock(&GlobalMid_Lock
);
516 cifs_in_send_inc(server
);
517 rc
= smb_send_rqst(server
, rqst
);
518 cifs_in_send_dec(server
);
519 cifs_save_when_sent(mid
);
522 server
->sequence_number
-= 2;
523 cifs_delete_mid(mid
);
526 mutex_unlock(&server
->srv_mutex
);
531 add_credits_and_wake_if(server
, credits
, optype
);
537 * Send an SMB Request. No response info (other than return code)
538 * needs to be parsed.
540 * flags indicate the type of request buffer and how long to wait
541 * and whether to log NT STATUS code (error) before mapping it to POSIX error
545 SendReceiveNoRsp(const unsigned int xid
, struct cifs_ses
*ses
,
546 char *in_buf
, int flags
)
552 iov
[0].iov_base
= in_buf
;
553 iov
[0].iov_len
= get_rfc1002_length(in_buf
) + 4;
554 flags
|= CIFS_NO_RESP
;
555 rc
= SendReceive2(xid
, ses
, iov
, 1, &resp_buf_type
, flags
);
556 cifs_dbg(NOISY
, "SendRcvNoRsp flags %d rc %d\n", flags
, rc
);
562 cifs_sync_mid_result(struct mid_q_entry
*mid
, struct TCP_Server_Info
*server
)
566 cifs_dbg(FYI
, "%s: cmd=%d mid=%llu state=%d\n",
567 __func__
, le16_to_cpu(mid
->command
), mid
->mid
, mid
->mid_state
);
569 spin_lock(&GlobalMid_Lock
);
570 switch (mid
->mid_state
) {
571 case MID_RESPONSE_RECEIVED
:
572 spin_unlock(&GlobalMid_Lock
);
574 case MID_RETRY_NEEDED
:
577 case MID_RESPONSE_MALFORMED
:
584 list_del_init(&mid
->qhead
);
585 cifs_dbg(VFS
, "%s: invalid mid state mid=%llu state=%d\n",
586 __func__
, mid
->mid
, mid
->mid_state
);
589 spin_unlock(&GlobalMid_Lock
);
591 mutex_lock(&server
->srv_mutex
);
592 DeleteMidQEntry(mid
);
593 mutex_unlock(&server
->srv_mutex
);
598 send_cancel(struct TCP_Server_Info
*server
, void *buf
, struct mid_q_entry
*mid
)
600 return server
->ops
->send_cancel
?
601 server
->ops
->send_cancel(server
, buf
, mid
) : 0;
605 cifs_check_receive(struct mid_q_entry
*mid
, struct TCP_Server_Info
*server
,
608 unsigned int len
= get_rfc1002_length(mid
->resp_buf
) + 4;
610 dump_smb(mid
->resp_buf
, min_t(u32
, 92, len
));
612 /* convert the length into a more usable form */
616 struct smb_rqst rqst
= { .rq_iov
= &iov
,
619 iov
.iov_base
= mid
->resp_buf
;
621 /* FIXME: add code to kill session */
622 rc
= cifs_verify_signature(&rqst
, server
,
623 mid
->sequence_number
);
625 cifs_dbg(VFS
, "SMB signature verification returned error = %d\n",
629 /* BB special case reconnect tid and uid here? */
630 return map_smb_to_linux_error(mid
->resp_buf
, log_error
);
634 cifs_setup_request(struct cifs_ses
*ses
, struct smb_rqst
*rqst
)
637 struct smb_hdr
*hdr
= (struct smb_hdr
*)rqst
->rq_iov
[0].iov_base
;
638 struct mid_q_entry
*mid
;
640 rc
= allocate_mid(ses
, hdr
, &mid
);
643 rc
= cifs_sign_rqst(rqst
, ses
->server
, &mid
->sequence_number
);
645 cifs_delete_mid(mid
);
652 SendReceive2(const unsigned int xid
, struct cifs_ses
*ses
,
653 struct kvec
*iov
, int n_vec
, int *resp_buf_type
/* ret */,
658 struct mid_q_entry
*midQ
;
659 char *buf
= iov
[0].iov_base
;
660 unsigned int credits
= 1;
661 struct smb_rqst rqst
= { .rq_iov
= iov
,
664 timeout
= flags
& CIFS_TIMEOUT_MASK
;
665 optype
= flags
& CIFS_OP_MASK
;
667 *resp_buf_type
= CIFS_NO_BUFFER
; /* no response buf yet */
669 if ((ses
== NULL
) || (ses
->server
== NULL
)) {
670 cifs_small_buf_release(buf
);
671 cifs_dbg(VFS
, "Null session\n");
675 if (ses
->server
->tcpStatus
== CifsExiting
) {
676 cifs_small_buf_release(buf
);
681 * Ensure that we do not send more than 50 overlapping requests
682 * to the same server. We may make this configurable later or
686 rc
= wait_for_free_request(ses
->server
, timeout
, optype
);
688 cifs_small_buf_release(buf
);
693 * Make sure that we sign in the same order that we send on this socket
694 * and avoid races inside tcp sendmsg code that could cause corruption
698 mutex_lock(&ses
->server
->srv_mutex
);
700 midQ
= ses
->server
->ops
->setup_request(ses
, &rqst
);
702 mutex_unlock(&ses
->server
->srv_mutex
);
703 cifs_small_buf_release(buf
);
704 /* Update # of requests on wire to server */
705 add_credits(ses
->server
, 1, optype
);
706 return PTR_ERR(midQ
);
709 midQ
->mid_state
= MID_REQUEST_SUBMITTED
;
710 cifs_in_send_inc(ses
->server
);
711 rc
= smb_sendv(ses
->server
, iov
, n_vec
);
712 cifs_in_send_dec(ses
->server
);
713 cifs_save_when_sent(midQ
);
716 ses
->server
->sequence_number
-= 2;
717 mutex_unlock(&ses
->server
->srv_mutex
);
720 cifs_small_buf_release(buf
);
724 if (timeout
== CIFS_ASYNC_OP
) {
725 cifs_small_buf_release(buf
);
729 rc
= wait_for_response(ses
->server
, midQ
);
731 send_cancel(ses
->server
, buf
, midQ
);
732 spin_lock(&GlobalMid_Lock
);
733 if (midQ
->mid_state
== MID_REQUEST_SUBMITTED
) {
734 midQ
->callback
= DeleteMidQEntry
;
735 spin_unlock(&GlobalMid_Lock
);
736 cifs_small_buf_release(buf
);
737 add_credits(ses
->server
, 1, optype
);
740 spin_unlock(&GlobalMid_Lock
);
743 cifs_small_buf_release(buf
);
745 rc
= cifs_sync_mid_result(midQ
, ses
->server
);
747 add_credits(ses
->server
, 1, optype
);
751 if (!midQ
->resp_buf
|| midQ
->mid_state
!= MID_RESPONSE_RECEIVED
) {
753 cifs_dbg(FYI
, "Bad MID state?\n");
757 buf
= (char *)midQ
->resp_buf
;
758 iov
[0].iov_base
= buf
;
759 iov
[0].iov_len
= get_rfc1002_length(buf
) + 4;
761 *resp_buf_type
= CIFS_LARGE_BUFFER
;
763 *resp_buf_type
= CIFS_SMALL_BUFFER
;
765 credits
= ses
->server
->ops
->get_credits(midQ
);
767 rc
= ses
->server
->ops
->check_receive(midQ
, ses
->server
,
768 flags
& CIFS_LOG_ERROR
);
770 /* mark it so buf will not be freed by cifs_delete_mid */
771 if ((flags
& CIFS_NO_RESP
) == 0)
772 midQ
->resp_buf
= NULL
;
774 cifs_delete_mid(midQ
);
775 add_credits(ses
->server
, credits
, optype
);
781 SendReceive(const unsigned int xid
, struct cifs_ses
*ses
,
782 struct smb_hdr
*in_buf
, struct smb_hdr
*out_buf
,
783 int *pbytes_returned
, const int timeout
)
786 struct mid_q_entry
*midQ
;
789 cifs_dbg(VFS
, "Null smb session\n");
792 if (ses
->server
== NULL
) {
793 cifs_dbg(VFS
, "Null tcp session\n");
797 if (ses
->server
->tcpStatus
== CifsExiting
)
800 /* Ensure that we do not send more than 50 overlapping requests
801 to the same server. We may make this configurable later or
804 if (be32_to_cpu(in_buf
->smb_buf_length
) > CIFSMaxBufSize
+
805 MAX_CIFS_HDR_SIZE
- 4) {
806 cifs_dbg(VFS
, "Illegal length, greater than maximum frame, %d\n",
807 be32_to_cpu(in_buf
->smb_buf_length
));
811 rc
= wait_for_free_request(ses
->server
, timeout
, 0);
815 /* make sure that we sign in the same order that we send on this socket
816 and avoid races inside tcp sendmsg code that could cause corruption
819 mutex_lock(&ses
->server
->srv_mutex
);
821 rc
= allocate_mid(ses
, in_buf
, &midQ
);
823 mutex_unlock(&ses
->server
->srv_mutex
);
824 /* Update # of requests on wire to server */
825 add_credits(ses
->server
, 1, 0);
829 rc
= cifs_sign_smb(in_buf
, ses
->server
, &midQ
->sequence_number
);
831 mutex_unlock(&ses
->server
->srv_mutex
);
835 midQ
->mid_state
= MID_REQUEST_SUBMITTED
;
837 cifs_in_send_inc(ses
->server
);
838 rc
= smb_send(ses
->server
, in_buf
, be32_to_cpu(in_buf
->smb_buf_length
));
839 cifs_in_send_dec(ses
->server
);
840 cifs_save_when_sent(midQ
);
843 ses
->server
->sequence_number
-= 2;
845 mutex_unlock(&ses
->server
->srv_mutex
);
850 if (timeout
== CIFS_ASYNC_OP
)
853 rc
= wait_for_response(ses
->server
, midQ
);
855 send_cancel(ses
->server
, in_buf
, midQ
);
856 spin_lock(&GlobalMid_Lock
);
857 if (midQ
->mid_state
== MID_REQUEST_SUBMITTED
) {
858 /* no longer considered to be "in-flight" */
859 midQ
->callback
= DeleteMidQEntry
;
860 spin_unlock(&GlobalMid_Lock
);
861 add_credits(ses
->server
, 1, 0);
864 spin_unlock(&GlobalMid_Lock
);
867 rc
= cifs_sync_mid_result(midQ
, ses
->server
);
869 add_credits(ses
->server
, 1, 0);
873 if (!midQ
->resp_buf
|| !out_buf
||
874 midQ
->mid_state
!= MID_RESPONSE_RECEIVED
) {
876 cifs_dbg(VFS
, "Bad MID state?\n");
880 *pbytes_returned
= get_rfc1002_length(midQ
->resp_buf
);
881 memcpy(out_buf
, midQ
->resp_buf
, *pbytes_returned
+ 4);
882 rc
= cifs_check_receive(midQ
, ses
->server
, 0);
884 cifs_delete_mid(midQ
);
885 add_credits(ses
->server
, 1, 0);
890 /* We send a LOCKINGX_CANCEL_LOCK to cause the Windows
891 blocking lock to return. */
894 send_lock_cancel(const unsigned int xid
, struct cifs_tcon
*tcon
,
895 struct smb_hdr
*in_buf
,
896 struct smb_hdr
*out_buf
)
899 struct cifs_ses
*ses
= tcon
->ses
;
900 LOCK_REQ
*pSMB
= (LOCK_REQ
*)in_buf
;
902 /* We just modify the current in_buf to change
903 the type of lock from LOCKING_ANDX_SHARED_LOCK
904 or LOCKING_ANDX_EXCLUSIVE_LOCK to
905 LOCKING_ANDX_CANCEL_LOCK. */
907 pSMB
->LockType
= LOCKING_ANDX_CANCEL_LOCK
|LOCKING_ANDX_LARGE_FILES
;
909 pSMB
->hdr
.Mid
= get_next_mid(ses
->server
);
911 return SendReceive(xid
, ses
, in_buf
, out_buf
,
916 SendReceiveBlockingLock(const unsigned int xid
, struct cifs_tcon
*tcon
,
917 struct smb_hdr
*in_buf
, struct smb_hdr
*out_buf
,
918 int *pbytes_returned
)
922 struct mid_q_entry
*midQ
;
923 struct cifs_ses
*ses
;
925 if (tcon
== NULL
|| tcon
->ses
== NULL
) {
926 cifs_dbg(VFS
, "Null smb session\n");
931 if (ses
->server
== NULL
) {
932 cifs_dbg(VFS
, "Null tcp session\n");
936 if (ses
->server
->tcpStatus
== CifsExiting
)
939 /* Ensure that we do not send more than 50 overlapping requests
940 to the same server. We may make this configurable later or
943 if (be32_to_cpu(in_buf
->smb_buf_length
) > CIFSMaxBufSize
+
944 MAX_CIFS_HDR_SIZE
- 4) {
945 cifs_dbg(VFS
, "Illegal length, greater than maximum frame, %d\n",
946 be32_to_cpu(in_buf
->smb_buf_length
));
950 rc
= wait_for_free_request(ses
->server
, CIFS_BLOCKING_OP
, 0);
954 /* make sure that we sign in the same order that we send on this socket
955 and avoid races inside tcp sendmsg code that could cause corruption
958 mutex_lock(&ses
->server
->srv_mutex
);
960 rc
= allocate_mid(ses
, in_buf
, &midQ
);
962 mutex_unlock(&ses
->server
->srv_mutex
);
966 rc
= cifs_sign_smb(in_buf
, ses
->server
, &midQ
->sequence_number
);
968 cifs_delete_mid(midQ
);
969 mutex_unlock(&ses
->server
->srv_mutex
);
973 midQ
->mid_state
= MID_REQUEST_SUBMITTED
;
974 cifs_in_send_inc(ses
->server
);
975 rc
= smb_send(ses
->server
, in_buf
, be32_to_cpu(in_buf
->smb_buf_length
));
976 cifs_in_send_dec(ses
->server
);
977 cifs_save_when_sent(midQ
);
980 ses
->server
->sequence_number
-= 2;
982 mutex_unlock(&ses
->server
->srv_mutex
);
985 cifs_delete_mid(midQ
);
989 /* Wait for a reply - allow signals to interrupt. */
990 rc
= wait_event_interruptible(ses
->server
->response_q
,
991 (!(midQ
->mid_state
== MID_REQUEST_SUBMITTED
)) ||
992 ((ses
->server
->tcpStatus
!= CifsGood
) &&
993 (ses
->server
->tcpStatus
!= CifsNew
)));
995 /* Were we interrupted by a signal ? */
996 if ((rc
== -ERESTARTSYS
) &&
997 (midQ
->mid_state
== MID_REQUEST_SUBMITTED
) &&
998 ((ses
->server
->tcpStatus
== CifsGood
) ||
999 (ses
->server
->tcpStatus
== CifsNew
))) {
1001 if (in_buf
->Command
== SMB_COM_TRANSACTION2
) {
1002 /* POSIX lock. We send a NT_CANCEL SMB to cause the
1003 blocking lock to return. */
1004 rc
= send_cancel(ses
->server
, in_buf
, midQ
);
1006 cifs_delete_mid(midQ
);
1010 /* Windows lock. We send a LOCKINGX_CANCEL_LOCK
1011 to cause the blocking lock to return. */
1013 rc
= send_lock_cancel(xid
, tcon
, in_buf
, out_buf
);
1015 /* If we get -ENOLCK back the lock may have
1016 already been removed. Don't exit in this case. */
1017 if (rc
&& rc
!= -ENOLCK
) {
1018 cifs_delete_mid(midQ
);
1023 rc
= wait_for_response(ses
->server
, midQ
);
1025 send_cancel(ses
->server
, in_buf
, midQ
);
1026 spin_lock(&GlobalMid_Lock
);
1027 if (midQ
->mid_state
== MID_REQUEST_SUBMITTED
) {
1028 /* no longer considered to be "in-flight" */
1029 midQ
->callback
= DeleteMidQEntry
;
1030 spin_unlock(&GlobalMid_Lock
);
1033 spin_unlock(&GlobalMid_Lock
);
1036 /* We got the response - restart system call. */
1040 rc
= cifs_sync_mid_result(midQ
, ses
->server
);
1044 /* rcvd frame is ok */
1045 if (out_buf
== NULL
|| midQ
->mid_state
!= MID_RESPONSE_RECEIVED
) {
1047 cifs_dbg(VFS
, "Bad MID state?\n");
1051 *pbytes_returned
= get_rfc1002_length(midQ
->resp_buf
);
1052 memcpy(out_buf
, midQ
->resp_buf
, *pbytes_returned
+ 4);
1053 rc
= cifs_check_receive(midQ
, ses
->server
, 0);
1055 cifs_delete_mid(midQ
);
1056 if (rstart
&& rc
== -EACCES
)
1057 return -ERESTARTSYS
;