2 Unix SMB/CIFS implementation.
5 Copyright (C) Stefan Metzmacher 2009
6 Copyright (C) Jeremy Allison 2010
8 This program is free software; you can redistribute it and/or modify
9 it under the terms of the GNU General Public License as published by
10 the Free Software Foundation; either version 3 of the License, or
11 (at your option) any later version.
13 This program 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 the
16 GNU General Public License for more details.
18 You should have received a copy of the GNU General Public License
19 along with this program. If not, see <http://www.gnu.org/licenses/>.
24 #include "smbd/smbd.h"
25 #include "smbd/globals.h"
26 #include "../libcli/smb/smb_common.h"
27 #include "../librpc/gen_ndr/ndr_security.h"
28 #include "../lib/util/tevent_ntstatus.h"
30 int map_smb2_oplock_levels_to_samba(uint8_t in_oplock_level
)
32 switch(in_oplock_level
) {
33 case SMB2_OPLOCK_LEVEL_NONE
:
35 case SMB2_OPLOCK_LEVEL_II
:
36 return LEVEL_II_OPLOCK
;
37 case SMB2_OPLOCK_LEVEL_EXCLUSIVE
:
38 return EXCLUSIVE_OPLOCK
;
39 case SMB2_OPLOCK_LEVEL_BATCH
:
41 case SMB2_OPLOCK_LEVEL_LEASE
:
42 DEBUG(2,("map_smb2_oplock_levels_to_samba: "
43 "LEASE_OPLOCK_REQUESTED\n"));
46 DEBUG(2,("map_smb2_oplock_levels_to_samba: "
48 (unsigned int)in_oplock_level
));
53 static uint8_t map_samba_oplock_levels_to_smb2(int oplock_type
)
55 if (BATCH_OPLOCK_TYPE(oplock_type
)) {
56 return SMB2_OPLOCK_LEVEL_BATCH
;
57 } else if (EXCLUSIVE_OPLOCK_TYPE(oplock_type
)) {
58 return SMB2_OPLOCK_LEVEL_EXCLUSIVE
;
59 } else if (oplock_type
== LEVEL_II_OPLOCK
) {
61 * Don't use LEVEL_II_OPLOCK_TYPE here as
62 * this also includes FAKE_LEVEL_II_OPLOCKs
63 * which are internal only.
65 return SMB2_OPLOCK_LEVEL_II
;
67 return SMB2_OPLOCK_LEVEL_NONE
;
71 static struct tevent_req
*smbd_smb2_create_send(TALLOC_CTX
*mem_ctx
,
72 struct tevent_context
*ev
,
73 struct smbd_smb2_request
*smb2req
,
74 uint8_t in_oplock_level
,
75 uint32_t in_impersonation_level
,
76 uint32_t in_desired_access
,
77 uint32_t in_file_attributes
,
78 uint32_t in_share_access
,
79 uint32_t in_create_disposition
,
80 uint32_t in_create_options
,
82 struct smb2_create_blobs in_context_blobs
);
83 static NTSTATUS
smbd_smb2_create_recv(struct tevent_req
*req
,
85 uint8_t *out_oplock_level
,
86 uint32_t *out_create_action
,
87 NTTIME
*out_creation_time
,
88 NTTIME
*out_last_access_time
,
89 NTTIME
*out_last_write_time
,
90 NTTIME
*out_change_time
,
91 uint64_t *out_allocation_size
,
92 uint64_t *out_end_of_file
,
93 uint32_t *out_file_attributes
,
94 uint64_t *out_file_id_persistent
,
95 uint64_t *out_file_id_volatile
,
96 struct smb2_create_blobs
*out_context_blobs
);
98 static void smbd_smb2_request_create_done(struct tevent_req
*tsubreq
);
99 NTSTATUS
smbd_smb2_request_process_create(struct smbd_smb2_request
*smb2req
)
101 const uint8_t *inbody
;
102 int i
= smb2req
->current_idx
;
103 size_t expected_body_size
= 0x39;
105 uint8_t in_oplock_level
;
106 uint32_t in_impersonation_level
;
107 uint32_t in_desired_access
;
108 uint32_t in_file_attributes
;
109 uint32_t in_share_access
;
110 uint32_t in_create_disposition
;
111 uint32_t in_create_options
;
112 uint16_t in_name_offset
;
113 uint16_t in_name_length
;
114 DATA_BLOB in_name_buffer
;
115 char *in_name_string
;
116 size_t in_name_string_size
;
117 uint32_t name_offset
= 0;
118 uint32_t name_available_length
= 0;
119 uint32_t in_context_offset
;
120 uint32_t in_context_length
;
121 DATA_BLOB in_context_buffer
;
122 struct smb2_create_blobs in_context_blobs
;
123 uint32_t context_offset
= 0;
124 uint32_t context_available_length
= 0;
128 struct tevent_req
*tsubreq
;
130 if (smb2req
->in
.vector
[i
+1].iov_len
!= (expected_body_size
& 0xFFFFFFFE)) {
131 return smbd_smb2_request_error(smb2req
, NT_STATUS_INVALID_PARAMETER
);
134 inbody
= (const uint8_t *)smb2req
->in
.vector
[i
+1].iov_base
;
136 body_size
= SVAL(inbody
, 0x00);
137 if (body_size
!= expected_body_size
) {
138 return smbd_smb2_request_error(smb2req
, NT_STATUS_INVALID_PARAMETER
);
141 in_oplock_level
= CVAL(inbody
, 0x03);
142 in_impersonation_level
= IVAL(inbody
, 0x04);
143 in_desired_access
= IVAL(inbody
, 0x18);
144 in_file_attributes
= IVAL(inbody
, 0x1C);
145 in_share_access
= IVAL(inbody
, 0x20);
146 in_create_disposition
= IVAL(inbody
, 0x24);
147 in_create_options
= IVAL(inbody
, 0x28);
148 in_name_offset
= SVAL(inbody
, 0x2C);
149 in_name_length
= SVAL(inbody
, 0x2E);
150 in_context_offset
= IVAL(inbody
, 0x30);
151 in_context_length
= IVAL(inbody
, 0x34);
154 * First check if the dynamic name and context buffers
155 * are correctly specified.
157 * Note: That we don't check if the name and context buffers
161 dyn_offset
= SMB2_HDR_BODY
+ (body_size
& 0xFFFFFFFE);
163 if (in_name_offset
== 0 && in_name_length
== 0) {
166 } else if (in_name_offset
< dyn_offset
) {
167 return smbd_smb2_request_error(smb2req
, NT_STATUS_INVALID_PARAMETER
);
169 name_offset
= in_name_offset
- dyn_offset
;
172 if (name_offset
> smb2req
->in
.vector
[i
+2].iov_len
) {
173 return smbd_smb2_request_error(smb2req
, NT_STATUS_INVALID_PARAMETER
);
176 name_available_length
= smb2req
->in
.vector
[i
+2].iov_len
- name_offset
;
178 if (in_name_length
> name_available_length
) {
179 return smbd_smb2_request_error(smb2req
, NT_STATUS_INVALID_PARAMETER
);
182 in_name_buffer
.data
= (uint8_t *)smb2req
->in
.vector
[i
+2].iov_base
+
184 in_name_buffer
.length
= in_name_length
;
186 if (in_context_offset
== 0 && in_context_length
== 0) {
189 } else if (in_context_offset
< dyn_offset
) {
190 return smbd_smb2_request_error(smb2req
, NT_STATUS_INVALID_PARAMETER
);
192 context_offset
= in_context_offset
- dyn_offset
;
195 if (context_offset
> smb2req
->in
.vector
[i
+2].iov_len
) {
196 return smbd_smb2_request_error(smb2req
, NT_STATUS_INVALID_PARAMETER
);
199 context_available_length
= smb2req
->in
.vector
[i
+2].iov_len
- context_offset
;
201 if (in_context_length
> context_available_length
) {
202 return smbd_smb2_request_error(smb2req
, NT_STATUS_INVALID_PARAMETER
);
205 in_context_buffer
.data
= (uint8_t *)smb2req
->in
.vector
[i
+2].iov_base
+
207 in_context_buffer
.length
= in_context_length
;
210 * Now interpret the name and context buffers
213 ok
= convert_string_talloc(smb2req
, CH_UTF16
, CH_UNIX
,
215 in_name_buffer
.length
,
217 &in_name_string_size
, false);
219 return smbd_smb2_request_error(smb2req
, NT_STATUS_ILLEGAL_CHARACTER
);
222 ZERO_STRUCT(in_context_blobs
);
223 status
= smb2_create_blob_parse(smb2req
, in_context_buffer
, &in_context_blobs
);
224 if (!NT_STATUS_IS_OK(status
)) {
225 return smbd_smb2_request_error(smb2req
, status
);
228 tsubreq
= smbd_smb2_create_send(smb2req
,
229 smb2req
->sconn
->smb2
.event_ctx
,
232 in_impersonation_level
,
236 in_create_disposition
,
240 if (tsubreq
== NULL
) {
241 smb2req
->subreq
= NULL
;
242 return smbd_smb2_request_error(smb2req
, NT_STATUS_NO_MEMORY
);
244 tevent_req_set_callback(tsubreq
, smbd_smb2_request_create_done
, smb2req
);
246 return smbd_smb2_request_pending_queue(smb2req
, tsubreq
);
249 static uint64_t get_mid_from_smb2req(struct smbd_smb2_request
*smb2req
)
251 uint8_t *reqhdr
= (uint8_t *)smb2req
->out
.vector
[smb2req
->current_idx
].iov_base
;
252 return BVAL(reqhdr
, SMB2_HDR_MESSAGE_ID
);
255 static void smbd_smb2_request_create_done(struct tevent_req
*tsubreq
)
257 struct smbd_smb2_request
*smb2req
= tevent_req_callback_data(tsubreq
,
258 struct smbd_smb2_request
);
259 int i
= smb2req
->current_idx
;
263 uint8_t out_oplock_level
= 0;
264 uint32_t out_create_action
= 0;
265 NTTIME out_creation_time
= 0;
266 NTTIME out_last_access_time
= 0;
267 NTTIME out_last_write_time
= 0;
268 NTTIME out_change_time
= 0;
269 uint64_t out_allocation_size
= 0;
270 uint64_t out_end_of_file
= 0;
271 uint32_t out_file_attributes
= 0;
272 uint64_t out_file_id_persistent
= 0;
273 uint64_t out_file_id_volatile
= 0;
274 struct smb2_create_blobs out_context_blobs
;
275 DATA_BLOB out_context_buffer
;
276 uint16_t out_context_buffer_offset
= 0;
278 NTSTATUS error
; /* transport error */
280 if (smb2req
->cancelled
) {
281 uint64_t mid
= get_mid_from_smb2req(smb2req
);
282 DEBUG(10,("smbd_smb2_request_create_done: cancelled mid %llu\n",
283 (unsigned long long)mid
));
284 error
= smbd_smb2_request_error(smb2req
, NT_STATUS_CANCELLED
);
285 if (!NT_STATUS_IS_OK(error
)) {
286 smbd_server_connection_terminate(smb2req
->sconn
,
293 status
= smbd_smb2_create_recv(tsubreq
,
298 &out_last_access_time
,
299 &out_last_write_time
,
301 &out_allocation_size
,
303 &out_file_attributes
,
304 &out_file_id_persistent
,
305 &out_file_id_volatile
,
307 if (!NT_STATUS_IS_OK(status
)) {
308 error
= smbd_smb2_request_error(smb2req
, status
);
309 if (!NT_STATUS_IS_OK(error
)) {
310 smbd_server_connection_terminate(smb2req
->sconn
,
317 status
= smb2_create_blob_push(smb2req
, &out_context_buffer
, out_context_blobs
);
318 if (!NT_STATUS_IS_OK(status
)) {
319 error
= smbd_smb2_request_error(smb2req
, status
);
320 if (!NT_STATUS_IS_OK(error
)) {
321 smbd_server_connection_terminate(smb2req
->sconn
,
328 if (out_context_buffer
.length
> 0) {
329 out_context_buffer_offset
= SMB2_HDR_BODY
+ 0x58;
332 outhdr
= (uint8_t *)smb2req
->out
.vector
[i
].iov_base
;
334 outbody
= data_blob_talloc(smb2req
->out
.vector
, NULL
, 0x58);
335 if (outbody
.data
== NULL
) {
336 error
= smbd_smb2_request_error(smb2req
, NT_STATUS_NO_MEMORY
);
337 if (!NT_STATUS_IS_OK(error
)) {
338 smbd_server_connection_terminate(smb2req
->sconn
,
345 SSVAL(outbody
.data
, 0x00, 0x58 + 1); /* struct size */
346 SCVAL(outbody
.data
, 0x02,
347 out_oplock_level
); /* oplock level */
348 SCVAL(outbody
.data
, 0x03, 0); /* reserved */
349 SIVAL(outbody
.data
, 0x04,
350 out_create_action
); /* create action */
351 SBVAL(outbody
.data
, 0x08,
352 out_creation_time
); /* creation time */
353 SBVAL(outbody
.data
, 0x10,
354 out_last_access_time
); /* last access time */
355 SBVAL(outbody
.data
, 0x18,
356 out_last_write_time
); /* last write time */
357 SBVAL(outbody
.data
, 0x20,
358 out_change_time
); /* change time */
359 SBVAL(outbody
.data
, 0x28,
360 out_allocation_size
); /* allocation size */
361 SBVAL(outbody
.data
, 0x30,
362 out_end_of_file
); /* end of file */
363 SIVAL(outbody
.data
, 0x38,
364 out_file_attributes
); /* file attributes */
365 SIVAL(outbody
.data
, 0x3C, 0); /* reserved */
366 SBVAL(outbody
.data
, 0x40,
367 out_file_id_persistent
); /* file id (persistent) */
368 SBVAL(outbody
.data
, 0x48,
369 out_file_id_volatile
); /* file id (volatile) */
370 SIVAL(outbody
.data
, 0x50,
371 out_context_buffer_offset
); /* create contexts offset */
372 SIVAL(outbody
.data
, 0x54,
373 out_context_buffer
.length
); /* create contexts length */
375 outdyn
= out_context_buffer
;
377 error
= smbd_smb2_request_done(smb2req
, outbody
, &outdyn
);
378 if (!NT_STATUS_IS_OK(error
)) {
379 smbd_server_connection_terminate(smb2req
->sconn
,
385 struct smbd_smb2_create_state
{
386 struct smbd_smb2_request
*smb2req
;
387 struct smb_request
*smb1req
;
388 struct timed_event
*te
;
389 struct tevent_immediate
*im
;
390 struct timeval request_time
;
392 DATA_BLOB private_data
;
393 uint8_t out_oplock_level
;
394 uint32_t out_create_action
;
395 NTTIME out_creation_time
;
396 NTTIME out_last_access_time
;
397 NTTIME out_last_write_time
;
398 NTTIME out_change_time
;
399 uint64_t out_allocation_size
;
400 uint64_t out_end_of_file
;
401 uint32_t out_file_attributes
;
402 uint64_t out_file_id_persistent
;
403 uint64_t out_file_id_volatile
;
404 struct smb2_create_blobs out_context_blobs
;
407 static struct tevent_req
*smbd_smb2_create_send(TALLOC_CTX
*mem_ctx
,
408 struct tevent_context
*ev
,
409 struct smbd_smb2_request
*smb2req
,
410 uint8_t in_oplock_level
,
411 uint32_t in_impersonation_level
,
412 uint32_t in_desired_access
,
413 uint32_t in_file_attributes
,
414 uint32_t in_share_access
,
415 uint32_t in_create_disposition
,
416 uint32_t in_create_options
,
418 struct smb2_create_blobs in_context_blobs
)
420 struct tevent_req
*req
= NULL
;
421 struct smbd_smb2_create_state
*state
= NULL
;
423 struct smb_request
*smb1req
= NULL
;
424 files_struct
*result
= NULL
;
426 struct timespec write_time_ts
;
427 struct smb2_create_blobs out_context_blobs
;
428 int requested_oplock_level
;
430 ZERO_STRUCT(out_context_blobs
);
432 if(lp_fake_oplocks(SNUM(smb2req
->tcon
->compat_conn
))) {
433 requested_oplock_level
= SMB2_OPLOCK_LEVEL_NONE
;
435 requested_oplock_level
= in_oplock_level
;
439 if (!smb2req
->async
) {
440 /* New create call. */
441 req
= tevent_req_create(mem_ctx
, &state
,
442 struct smbd_smb2_create_state
);
446 state
->smb2req
= smb2req
;
447 smb2req
->subreq
= req
; /* So we can find this when going async. */
449 smb1req
= smbd_smb2_fake_smb_request(smb2req
);
450 if (tevent_req_nomem(smb1req
, req
)) {
451 return tevent_req_post(req
, ev
);
453 state
->smb1req
= smb1req
;
454 DEBUG(10,("smbd_smb2_create: name[%s]\n",
457 /* Re-entrant create call. */
458 req
= smb2req
->subreq
;
459 state
= tevent_req_data(req
,
460 struct smbd_smb2_create_state
);
461 smb1req
= state
->smb1req
;
462 DEBUG(10,("smbd_smb2_create_send: reentrant for file %s\n",
466 if (IS_IPC(smb1req
->conn
)) {
467 const char *pipe_name
= in_name
;
469 if (!lp_nt_pipe_support()) {
470 tevent_req_nterror(req
, NT_STATUS_ACCESS_DENIED
);
471 return tevent_req_post(req
, ev
);
474 /* Strip \\ off the name. */
475 if (pipe_name
[0] == '\\') {
479 status
= open_np_file(smb1req
, pipe_name
, &result
);
480 if (!NT_STATUS_IS_OK(status
)) {
481 tevent_req_nterror(req
, status
);
482 return tevent_req_post(req
, ev
);
484 info
= FILE_WAS_OPENED
;
485 } else if (CAN_PRINT(smb1req
->conn
)) {
486 status
= file_new(smb1req
, smb1req
->conn
, &result
);
487 if(!NT_STATUS_IS_OK(status
)) {
488 tevent_req_nterror(req
, status
);
489 return tevent_req_post(req
, ev
);
492 status
= print_spool_open(result
, in_name
,
494 if (!NT_STATUS_IS_OK(status
)) {
495 file_free(smb1req
, result
);
496 tevent_req_nterror(req
, status
);
497 return tevent_req_post(req
, ev
);
499 info
= FILE_WAS_CREATED
;
502 struct smb_filename
*smb_fname
= NULL
;
503 struct smb2_create_blob
*exta
= NULL
;
504 struct ea_list
*ea_list
= NULL
;
505 struct smb2_create_blob
*mxac
= NULL
;
506 NTTIME max_access_time
= 0;
507 struct smb2_create_blob
*secd
= NULL
;
508 struct security_descriptor
*sec_desc
= NULL
;
509 struct smb2_create_blob
*dhnq
= NULL
;
510 struct smb2_create_blob
*dhnc
= NULL
;
511 struct smb2_create_blob
*alsi
= NULL
;
512 uint64_t allocation_size
= 0;
513 struct smb2_create_blob
*twrp
= NULL
;
514 struct smb2_create_blob
*qfid
= NULL
;
516 exta
= smb2_create_blob_find(&in_context_blobs
,
517 SMB2_CREATE_TAG_EXTA
);
518 mxac
= smb2_create_blob_find(&in_context_blobs
,
519 SMB2_CREATE_TAG_MXAC
);
520 secd
= smb2_create_blob_find(&in_context_blobs
,
521 SMB2_CREATE_TAG_SECD
);
522 dhnq
= smb2_create_blob_find(&in_context_blobs
,
523 SMB2_CREATE_TAG_DHNQ
);
524 dhnc
= smb2_create_blob_find(&in_context_blobs
,
525 SMB2_CREATE_TAG_DHNC
);
526 alsi
= smb2_create_blob_find(&in_context_blobs
,
527 SMB2_CREATE_TAG_ALSI
);
528 twrp
= smb2_create_blob_find(&in_context_blobs
,
529 SMB2_CREATE_TAG_TWRP
);
530 qfid
= smb2_create_blob_find(&in_context_blobs
,
531 SMB2_CREATE_TAG_QFID
);
533 fname
= talloc_strdup(state
, in_name
);
534 if (tevent_req_nomem(fname
, req
)) {
535 return tevent_req_post(req
, ev
);
540 tevent_req_nterror(req
, NT_STATUS_INVALID_PARAMETER
);
541 return tevent_req_post(req
, ev
);
544 ea_list
= read_nttrans_ea_list(mem_ctx
,
545 (const char *)exta
->data
.data
, exta
->data
.length
);
547 DEBUG(10,("smbd_smb2_create_send: read_ea_name_list failed.\n"));
548 tevent_req_nterror(req
, NT_STATUS_INVALID_PARAMETER
);
549 return tevent_req_post(req
, ev
);
555 tevent_req_nterror(req
, NT_STATUS_INVALID_PARAMETER
);
556 return tevent_req_post(req
, ev
);
559 if (mxac
->data
.length
== 0) {
561 } else if (mxac
->data
.length
== 8) {
562 max_access_time
= BVAL(mxac
->data
.data
, 0);
564 tevent_req_nterror(req
, NT_STATUS_INVALID_PARAMETER
);
565 return tevent_req_post(req
, ev
);
570 enum ndr_err_code ndr_err
;
573 tevent_req_nterror(req
, NT_STATUS_INVALID_PARAMETER
);
574 return tevent_req_post(req
, ev
);
577 sec_desc
= talloc_zero(state
, struct security_descriptor
);
578 if (tevent_req_nomem(sec_desc
, req
)) {
579 return tevent_req_post(req
, ev
);
582 ndr_err
= ndr_pull_struct_blob(&secd
->data
,
584 (ndr_pull_flags_fn_t
)ndr_pull_security_descriptor
);
585 if (!NDR_ERR_CODE_IS_SUCCESS(ndr_err
)) {
586 DEBUG(2,("ndr_pull_security_descriptor failed: %s\n",
587 ndr_errstr(ndr_err
)));
588 tevent_req_nterror(req
, NT_STATUS_INVALID_PARAMETER
);
589 return tevent_req_post(req
, ev
);
595 tevent_req_nterror(req
, NT_STATUS_INVALID_PARAMETER
);
596 return tevent_req_post(req
, ev
);
599 if (dhnq
->data
.length
!= 16) {
600 tevent_req_nterror(req
, NT_STATUS_INVALID_PARAMETER
);
601 return tevent_req_post(req
, ev
);
604 * we don't support durable handles yet
605 * and have to ignore this
610 if (dhnc
->data
.length
!= 16) {
611 tevent_req_nterror(req
, NT_STATUS_INVALID_PARAMETER
);
612 return tevent_req_post(req
, ev
);
614 /* we don't support durable handles yet */
615 tevent_req_nterror(req
, NT_STATUS_OBJECT_NAME_NOT_FOUND
);
616 return tevent_req_post(req
, ev
);
621 tevent_req_nterror(req
, NT_STATUS_INVALID_PARAMETER
);
622 return tevent_req_post(req
, ev
);
625 if (alsi
->data
.length
!= 8) {
626 tevent_req_nterror(req
, NT_STATUS_INVALID_PARAMETER
);
627 return tevent_req_post(req
, ev
);
629 allocation_size
= BVAL(alsi
->data
.data
, 0);
638 tevent_req_nterror(req
, NT_STATUS_INVALID_PARAMETER
);
639 return tevent_req_post(req
, ev
);
642 if (twrp
->data
.length
!= 8) {
643 tevent_req_nterror(req
, NT_STATUS_INVALID_PARAMETER
);
644 return tevent_req_post(req
, ev
);
647 nttime
= BVAL(twrp
->data
.data
, 0);
648 t
= nt_time_to_unix(nttime
);
652 fname
= talloc_asprintf(state
,
653 "@GMT-%04u.%02u.%02u-%02u.%02u.%02u\\%s",
661 if (tevent_req_nomem(fname
, req
)) {
662 return tevent_req_post(req
, ev
);
667 if (qfid
->data
.length
!= 0) {
668 tevent_req_nterror(req
, NT_STATUS_INVALID_PARAMETER
);
669 return tevent_req_post(req
, ev
);
673 /* these are ignored for SMB2 */
674 in_create_options
&= ~(0x10);/* NTCREATEX_OPTIONS_SYNC_ALERT */
675 in_create_options
&= ~(0x20);/* NTCREATEX_OPTIONS_ASYNC_ALERT */
678 * For a DFS path the function parse_dfs_path()
679 * will do the path processing.
682 if (!(smb1req
->flags2
& FLAGS2_DFS_PATHNAMES
)) {
683 /* convert '\\' into '/' */
684 status
= check_path_syntax(fname
);
685 if (!NT_STATUS_IS_OK(status
)) {
686 tevent_req_nterror(req
, status
);
687 return tevent_req_post(req
, ev
);
691 status
= filename_convert(req
,
693 smb1req
->flags2
& FLAGS2_DFS_PATHNAMES
,
698 if (!NT_STATUS_IS_OK(status
)) {
699 tevent_req_nterror(req
, status
);
700 return tevent_req_post(req
, ev
);
703 in_file_attributes
&= ~FILE_FLAG_POSIX_SEMANTICS
;
705 status
= SMB_VFS_CREATE_FILE(smb1req
->conn
,
707 0, /* root_dir_fid */
711 in_create_disposition
,
714 map_smb2_oplock_levels_to_samba(requested_oplock_level
),
716 0, /* private_flags */
721 if (!NT_STATUS_IS_OK(status
)) {
722 if (open_was_deferred(smb1req
->mid
)) {
725 tevent_req_nterror(req
, status
);
726 return tevent_req_post(req
, ev
);
730 NTTIME last_write_time
;
732 unix_timespec_to_nt_time(&last_write_time
,
733 result
->fsp_name
->st
.st_ex_mtime
);
734 if (last_write_time
!= max_access_time
) {
736 uint32_t max_access_granted
;
737 DATA_BLOB blob
= data_blob_const(p
, sizeof(p
));
739 status
= smbd_check_open_rights(smb1req
->conn
,
741 SEC_FLAG_MAXIMUM_ALLOWED
,
742 &max_access_granted
);
744 SIVAL(p
, 0, NT_STATUS_V(status
));
745 SIVAL(p
, 4, max_access_granted
);
747 status
= smb2_create_blob_add(state
,
749 SMB2_CREATE_TAG_MXAC
,
751 if (!NT_STATUS_IS_OK(status
)) {
752 tevent_req_nterror(req
, status
);
753 return tevent_req_post(req
, ev
);
760 uint64_t file_index
= get_FileIndex(result
->conn
,
761 &result
->fsp_name
->st
);
762 DATA_BLOB blob
= data_blob_const(p
, sizeof(p
));
766 /* From conversations with Microsoft engineers at
767 the MS plugfest. The first 8 bytes are the "volume index"
768 == inode, the second 8 bytes are the "volume id",
769 == dev. This will be updated in the SMB2 doc. */
770 SBVAL(p
, 0, file_index
);
771 SIVAL(p
, 8, result
->fsp_name
->st
.st_ex_dev
);/* FileIndexHigh */
773 status
= smb2_create_blob_add(state
, &out_context_blobs
,
774 SMB2_CREATE_TAG_QFID
,
776 if (!NT_STATUS_IS_OK(status
)) {
777 tevent_req_nterror(req
, status
);
778 return tevent_req_post(req
, ev
);
783 smb2req
->compat_chain_fsp
= smb1req
->chain_fsp
;
785 if(lp_fake_oplocks(SNUM(smb2req
->tcon
->compat_conn
))) {
786 state
->out_oplock_level
= in_oplock_level
;
788 state
->out_oplock_level
= map_samba_oplock_levels_to_smb2(result
->oplock_type
);
791 if ((in_create_disposition
== FILE_SUPERSEDE
)
792 && (info
== FILE_WAS_OVERWRITTEN
)) {
793 state
->out_create_action
= FILE_WAS_SUPERSEDED
;
795 state
->out_create_action
= info
;
797 state
->out_file_attributes
= dos_mode(result
->conn
,
799 /* Deal with other possible opens having a modified
801 ZERO_STRUCT(write_time_ts
);
802 get_file_infos(result
->file_id
, 0, NULL
, &write_time_ts
);
803 if (!null_timespec(write_time_ts
)) {
804 update_stat_ex_mtime(&result
->fsp_name
->st
, write_time_ts
);
807 unix_timespec_to_nt_time(&state
->out_creation_time
,
808 get_create_timespec(smb1req
->conn
, result
,
810 unix_timespec_to_nt_time(&state
->out_last_access_time
,
811 result
->fsp_name
->st
.st_ex_atime
);
812 unix_timespec_to_nt_time(&state
->out_last_write_time
,
813 result
->fsp_name
->st
.st_ex_mtime
);
814 unix_timespec_to_nt_time(&state
->out_change_time
,
815 get_change_timespec(smb1req
->conn
, result
,
817 state
->out_allocation_size
=
818 result
->fsp_name
->st
.st_ex_blksize
*
819 result
->fsp_name
->st
.st_ex_blocks
;
820 state
->out_end_of_file
= result
->fsp_name
->st
.st_ex_size
;
821 if (state
->out_file_attributes
== 0) {
822 state
->out_file_attributes
= FILE_ATTRIBUTE_NORMAL
;
824 state
->out_file_id_persistent
= result
->fnum
;
825 state
->out_file_id_volatile
= result
->fnum
;
826 state
->out_context_blobs
= out_context_blobs
;
828 tevent_req_done(req
);
829 return tevent_req_post(req
, ev
);
832 static NTSTATUS
smbd_smb2_create_recv(struct tevent_req
*req
,
834 uint8_t *out_oplock_level
,
835 uint32_t *out_create_action
,
836 NTTIME
*out_creation_time
,
837 NTTIME
*out_last_access_time
,
838 NTTIME
*out_last_write_time
,
839 NTTIME
*out_change_time
,
840 uint64_t *out_allocation_size
,
841 uint64_t *out_end_of_file
,
842 uint32_t *out_file_attributes
,
843 uint64_t *out_file_id_persistent
,
844 uint64_t *out_file_id_volatile
,
845 struct smb2_create_blobs
*out_context_blobs
)
848 struct smbd_smb2_create_state
*state
= tevent_req_data(req
,
849 struct smbd_smb2_create_state
);
851 if (tevent_req_is_nterror(req
, &status
)) {
852 tevent_req_received(req
);
856 *out_oplock_level
= state
->out_oplock_level
;
857 *out_create_action
= state
->out_create_action
;
858 *out_creation_time
= state
->out_creation_time
;
859 *out_last_access_time
= state
->out_last_access_time
;
860 *out_last_write_time
= state
->out_last_write_time
;
861 *out_change_time
= state
->out_change_time
;
862 *out_allocation_size
= state
->out_allocation_size
;
863 *out_end_of_file
= state
->out_end_of_file
;
864 *out_file_attributes
= state
->out_file_attributes
;
865 *out_file_id_persistent
= state
->out_file_id_persistent
;
866 *out_file_id_volatile
= state
->out_file_id_volatile
;
867 *out_context_blobs
= state
->out_context_blobs
;
869 talloc_steal(mem_ctx
, state
->out_context_blobs
.blobs
);
871 tevent_req_received(req
);
875 /*********************************************************
876 Code for dealing with deferred opens.
877 *********************************************************/
879 bool get_deferred_open_message_state_smb2(struct smbd_smb2_request
*smb2req
,
880 struct timeval
*p_request_time
,
883 struct smbd_smb2_create_state
*state
= NULL
;
884 struct tevent_req
*req
= NULL
;
889 if (!smb2req
->async
) {
892 req
= smb2req
->subreq
;
896 state
= tevent_req_data(req
, struct smbd_smb2_create_state
);
900 if (p_request_time
) {
901 *p_request_time
= state
->request_time
;
904 *pp_state
= (void *)state
->private_data
.data
;
909 /*********************************************************
910 Re-process this call early - requested by message or
912 *********************************************************/
914 static struct smbd_smb2_request
*find_open_smb2req(
915 struct smbd_server_connection
*sconn
, uint64_t mid
)
917 struct smbd_smb2_request
*smb2req
;
919 for (smb2req
= sconn
->smb2
.requests
; smb2req
; smb2req
= smb2req
->next
) {
921 if (smb2req
->subreq
== NULL
) {
922 /* This message has been processed. */
925 if (!tevent_req_is_in_progress(smb2req
->subreq
)) {
926 /* This message has been processed. */
929 message_id
= get_mid_from_smb2req(smb2req
);
930 if (message_id
== mid
) {
937 bool open_was_deferred_smb2(struct smbd_server_connection
*sconn
, uint64_t mid
)
939 struct smbd_smb2_create_state
*state
= NULL
;
940 struct smbd_smb2_request
*smb2req
;
942 smb2req
= find_open_smb2req(sconn
, mid
);
945 DEBUG(10,("open_was_deferred_smb2: mid %llu smb2req == NULL\n",
946 (unsigned long long)mid
));
949 if (!smb2req
->subreq
) {
952 if (!tevent_req_is_in_progress(smb2req
->subreq
)) {
955 state
= tevent_req_data(smb2req
->subreq
,
956 struct smbd_smb2_create_state
);
960 /* It's not in progress if there's no timeout event. */
965 DEBUG(10,("open_was_deferred_smb2: mid = %llu\n",
966 (unsigned long long)mid
));
971 static void remove_deferred_open_message_smb2_internal(struct smbd_smb2_request
*smb2req
,
974 struct smbd_smb2_create_state
*state
= NULL
;
976 if (!smb2req
->subreq
) {
979 if (!tevent_req_is_in_progress(smb2req
->subreq
)) {
982 state
= tevent_req_data(smb2req
->subreq
,
983 struct smbd_smb2_create_state
);
988 DEBUG(10,("remove_deferred_open_message_smb2_internal: "
990 (unsigned long long)mid
));
992 /* Ensure we don't have any outstanding timer event. */
993 TALLOC_FREE(state
->te
);
994 /* Ensure we don't have any outstanding immediate event. */
995 TALLOC_FREE(state
->im
);
998 void remove_deferred_open_message_smb2(
999 struct smbd_server_connection
*sconn
, uint64_t mid
)
1001 struct smbd_smb2_request
*smb2req
;
1003 smb2req
= find_open_smb2req(sconn
, mid
);
1006 DEBUG(10,("remove_deferred_open_message_smb2: "
1007 "can't find mid %llu\n",
1008 (unsigned long long)mid
));
1011 remove_deferred_open_message_smb2_internal(smb2req
, mid
);
1014 static void smbd_smb2_create_request_dispatch_immediate(struct tevent_context
*ctx
,
1015 struct tevent_immediate
*im
,
1018 struct smbd_smb2_request
*smb2req
= talloc_get_type_abort(private_data
,
1019 struct smbd_smb2_request
);
1020 struct smbd_server_connection
*sconn
= smb2req
->sconn
;
1021 uint64_t mid
= get_mid_from_smb2req(smb2req
);
1024 DEBUG(10,("smbd_smb2_create_request_dispatch_immediate: "
1025 "re-dispatching mid %llu\n",
1026 (unsigned long long)mid
));
1028 status
= smbd_smb2_request_dispatch(smb2req
);
1029 if (!NT_STATUS_IS_OK(status
)) {
1030 smbd_server_connection_terminate(sconn
, nt_errstr(status
));
1035 void schedule_deferred_open_message_smb2(
1036 struct smbd_server_connection
*sconn
, uint64_t mid
)
1038 struct smbd_smb2_create_state
*state
= NULL
;
1039 struct smbd_smb2_request
*smb2req
;
1041 smb2req
= find_open_smb2req(sconn
, mid
);
1044 DEBUG(10,("schedule_deferred_open_message_smb2: "
1045 "can't find mid %llu\n",
1046 (unsigned long long)mid
));
1049 if (!smb2req
->subreq
) {
1052 if (!tevent_req_is_in_progress(smb2req
->subreq
)) {
1055 state
= tevent_req_data(smb2req
->subreq
,
1056 struct smbd_smb2_create_state
);
1061 /* Ensure we don't have any outstanding timer event. */
1062 TALLOC_FREE(state
->te
);
1063 /* Ensure we don't have any outstanding immediate event. */
1064 TALLOC_FREE(state
->im
);
1067 * This is subtle. We must null out the callback
1068 * before resheduling, else the first call to
1069 * tevent_req_nterror() causes the _receive()
1070 * function to be called, this causing tevent_req_post()
1073 tevent_req_set_callback(smb2req
->subreq
, NULL
, NULL
);
1075 state
->im
= tevent_create_immediate(smb2req
);
1077 smbd_server_connection_terminate(smb2req
->sconn
,
1078 nt_errstr(NT_STATUS_NO_MEMORY
));
1081 DEBUG(10,("schedule_deferred_open_message_smb2: "
1082 "re-processing mid %llu\n",
1083 (unsigned long long)mid
));
1085 tevent_schedule_immediate(state
->im
,
1086 smb2req
->sconn
->smb2
.event_ctx
,
1087 smbd_smb2_create_request_dispatch_immediate
,
1091 /*********************************************************
1092 Re-process this call.
1093 *********************************************************/
1095 static void smb2_deferred_open_timer(struct event_context
*ev
,
1096 struct timed_event
*te
,
1097 struct timeval _tval
,
1101 struct smbd_smb2_create_state
*state
= NULL
;
1102 struct smbd_smb2_request
*smb2req
= talloc_get_type(private_data
,
1103 struct smbd_smb2_request
);
1105 DEBUG(10,("smb2_deferred_open_timer: [idx=%d], %s\n",
1106 smb2req
->current_idx
,
1107 tevent_req_default_print(smb2req
->subreq
, talloc_tos()) ));
1109 state
= tevent_req_data(smb2req
->subreq
,
1110 struct smbd_smb2_create_state
);
1115 * Null this out, don't talloc_free. It will
1116 * be talloc_free'd by the tevent library when
1120 /* Ensure we don't have any outstanding immediate event. */
1121 TALLOC_FREE(state
->im
);
1124 * This is subtle. We must null out the callback
1125 * before resheduling, else the first call to
1126 * tevent_req_nterror() causes the _receive()
1127 * function to be called, this causing tevent_req_post()
1130 tevent_req_set_callback(smb2req
->subreq
, NULL
, NULL
);
1132 status
= smbd_smb2_request_dispatch(smb2req
);
1134 if (!NT_STATUS_IS_OK(status
)) {
1135 smbd_server_connection_terminate(smb2req
->sconn
,
1140 static bool smbd_smb2_create_cancel(struct tevent_req
*req
)
1142 struct smbd_smb2_request
*smb2req
= NULL
;
1143 struct smbd_smb2_create_state
*state
= tevent_req_data(req
,
1144 struct smbd_smb2_create_state
);
1151 if (!state
->smb2req
) {
1155 smb2req
= state
->smb2req
;
1156 mid
= get_mid_from_smb2req(smb2req
);
1158 remove_deferred_open_entry(state
->id
, mid
,
1159 sconn_server_id(smb2req
->sconn
));
1160 remove_deferred_open_message_smb2_internal(smb2req
, mid
);
1161 smb2req
->cancelled
= true;
1163 tevent_req_done(req
);
1167 bool push_deferred_open_message_smb2(struct smbd_smb2_request
*smb2req
,
1168 struct timeval request_time
,
1169 struct timeval timeout
,
1174 struct tevent_req
*req
= NULL
;
1175 struct smbd_smb2_create_state
*state
= NULL
;
1176 struct timeval end_time
;
1181 req
= smb2req
->subreq
;
1185 state
= tevent_req_data(req
, struct smbd_smb2_create_state
);
1190 state
->request_time
= request_time
;
1191 state
->private_data
= data_blob_talloc(state
, private_data
,
1193 if (!state
->private_data
.data
) {
1198 /* Boo - turns out this isn't what W2K8R2
1199 does. It actually sends the STATUS_PENDING
1200 message followed by the STATUS_SHARING_VIOLATION
1201 message. Surely this means that all open
1202 calls (even on directories) will potentially
1203 fail in a chain.... ? And I've seen directory
1204 opens as the start of a chain. JRA.
1206 Update: 19th May 2010. Talking with Microsoft
1207 engineers at the plugfest this is a bug in
1208 Windows. Re-enable this code.
1211 * More subtlety. To match W2K8R2 don't
1212 * send a "gone async" message if it's simply
1213 * a STATUS_SHARING_VIOLATION (short) wait, not
1214 * an oplock break wait. We do this by prematurely
1215 * setting smb2req->async flag.
1217 if (timeout
.tv_sec
< 2) {
1218 DEBUG(10,("push_deferred_open_message_smb2: "
1219 "short timer wait (usec = %u). "
1220 "Don't send async message.\n",
1221 (unsigned int)timeout
.tv_usec
));
1222 smb2req
->async
= true;
1226 /* Re-schedule us to retry on timer expiry. */
1227 end_time
= timeval_sum(&request_time
, &timeout
);
1229 DEBUG(10,("push_deferred_open_message_smb2: "
1231 timeval_string(talloc_tos(),
1235 state
->te
= event_add_timed(smb2req
->sconn
->smb2
.event_ctx
,
1238 smb2_deferred_open_timer
,
1244 /* allow this request to be canceled */
1245 tevent_req_set_cancel_fn(req
, smbd_smb2_create_cancel
);