2 Unix SMB/CIFS implementation.
5 Copyright (C) Stefan Metzmacher 2009
7 This program is free software; you can redistribute it and/or modify
8 it under the terms of the GNU General Public License as published by
9 the Free Software Foundation; either version 3 of the License, or
10 (at your option) any later version.
12 This program is distributed in the hope that it will be useful,
13 but WITHOUT ANY WARRANTY; without even the implied warranty of
14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 GNU General Public License for more details.
17 You should have received a copy of the GNU General Public License
18 along with this program. If not, see <http://www.gnu.org/licenses/>.
22 #include "smbd/smbd.h"
23 #include "smbd/globals.h"
24 #include "../libcli/smb/smb_common.h"
27 * this is the entry point if SMB2 is selected via
28 * the SMB negprot and the given dialect.
30 static void reply_smb20xx(struct smb_request
*req
, uint16_t dialect
)
36 size_t len
= 4 + SMB2_HDR_BODY
+ 0x24 + 2;
38 smb2_inbuf
= talloc_zero_array(talloc_tos(), uint8_t, len
);
39 if (smb2_inbuf
== NULL
) {
40 DEBUG(0, ("Could not push spnego blob\n"));
41 reply_nterror(req
, NT_STATUS_NO_MEMORY
);
44 smb2_hdr
= smb2_inbuf
+ 4;
45 smb2_body
= smb2_hdr
+ SMB2_HDR_BODY
;
46 smb2_dyn
= smb2_body
+ 0x24;
48 SIVAL(smb2_hdr
, SMB2_HDR_PROTOCOL_ID
, SMB2_MAGIC
);
49 SIVAL(smb2_hdr
, SMB2_HDR_LENGTH
, SMB2_HDR_BODY
);
51 SSVAL(smb2_body
, 0x00, 0x0024); /* struct size */
52 SSVAL(smb2_body
, 0x02, 0x0001); /* dialect count */
54 SSVAL(smb2_dyn
, 0x00, dialect
);
58 smbd_smb2_first_negprot(req
->sconn
, smb2_inbuf
, len
);
63 * this is the entry point if SMB2 is selected via
64 * the SMB negprot and the "SMB 2.002" dialect.
66 void reply_smb2002(struct smb_request
*req
, uint16_t choice
)
68 reply_smb20xx(req
, SMB2_DIALECT_REVISION_202
);
72 * this is the entry point if SMB2 is selected via
73 * the SMB negprot and the "SMB 2.???" dialect.
75 void reply_smb20ff(struct smb_request
*req
, uint16_t choice
)
77 req
->sconn
->smb2
.negprot_2ff
= true;
78 reply_smb20xx(req
, SMB2_DIALECT_REVISION_2FF
);
81 NTSTATUS
smbd_smb2_request_process_negprot(struct smbd_smb2_request
*req
)
84 const uint8_t *inbody
;
85 const uint8_t *indyn
= NULL
;
86 int i
= req
->current_idx
;
89 DATA_BLOB negprot_spnego_blob
;
90 uint16_t security_offset
;
91 DATA_BLOB security_buffer
;
92 size_t expected_dyn_size
= 0;
94 uint16_t security_mode
;
95 uint16_t dialect_count
;
97 uint32_t capabilities
;
98 enum protocol_types protocol
= PROTOCOL_NONE
;
100 uint32_t max_trans
= lp_smb2_max_trans();
101 uint32_t max_read
= lp_smb2_max_read();
102 uint32_t max_write
= lp_smb2_max_write();
104 status
= smbd_smb2_request_verify_sizes(req
, 0x24);
105 if (!NT_STATUS_IS_OK(status
)) {
106 return smbd_smb2_request_error(req
, status
);
108 inbody
= (const uint8_t *)req
->in
.vector
[i
+1].iov_base
;
110 dialect_count
= SVAL(inbody
, 0x02);
111 if (dialect_count
== 0) {
112 return smbd_smb2_request_error(req
, NT_STATUS_INVALID_PARAMETER
);
115 expected_dyn_size
= dialect_count
* 2;
116 if (req
->in
.vector
[i
+2].iov_len
< expected_dyn_size
) {
117 return smbd_smb2_request_error(req
, NT_STATUS_INVALID_PARAMETER
);
119 indyn
= (const uint8_t *)req
->in
.vector
[i
+2].iov_base
;
121 for (c
=0; protocol
== PROTOCOL_NONE
&& c
< dialect_count
; c
++) {
122 if (lp_maxprotocol() < PROTOCOL_SMB2_24
) {
125 if (lp_minprotocol() > PROTOCOL_SMB2_24
) {
129 dialect
= SVAL(indyn
, c
*2);
130 if (dialect
== SMB2_DIALECT_REVISION_224
) {
131 protocol
= PROTOCOL_SMB2_24
;
136 for (c
=0; protocol
== PROTOCOL_NONE
&& c
< dialect_count
; c
++) {
137 if (lp_maxprotocol() < PROTOCOL_SMB2_22
) {
140 if (lp_minprotocol() > PROTOCOL_SMB2_22
) {
144 dialect
= SVAL(indyn
, c
*2);
145 if (dialect
== SMB2_DIALECT_REVISION_222
) {
146 protocol
= PROTOCOL_SMB2_22
;
151 for (c
=0; protocol
== PROTOCOL_NONE
&& c
< dialect_count
; c
++) {
152 if (lp_maxprotocol() < PROTOCOL_SMB2_10
) {
155 if (lp_minprotocol() > PROTOCOL_SMB2_10
) {
159 dialect
= SVAL(indyn
, c
*2);
160 if (dialect
== SMB2_DIALECT_REVISION_210
) {
161 protocol
= PROTOCOL_SMB2_10
;
166 for (c
=0; protocol
== PROTOCOL_NONE
&& c
< dialect_count
; c
++) {
167 if (lp_maxprotocol() < PROTOCOL_SMB2_02
) {
170 if (lp_minprotocol() > PROTOCOL_SMB2_02
) {
174 dialect
= SVAL(indyn
, c
*2);
175 if (dialect
== SMB2_DIALECT_REVISION_202
) {
176 protocol
= PROTOCOL_SMB2_02
;
181 for (c
=0; protocol
== PROTOCOL_NONE
&& c
< dialect_count
; c
++) {
182 if (lp_maxprotocol() < PROTOCOL_SMB2_10
) {
186 dialect
= SVAL(indyn
, c
*2);
187 if (dialect
== SMB2_DIALECT_REVISION_2FF
) {
188 if (req
->sconn
->smb2
.negprot_2ff
) {
189 req
->sconn
->smb2
.negprot_2ff
= false;
190 protocol
= PROTOCOL_SMB2_10
;
196 if (protocol
== PROTOCOL_NONE
) {
197 return smbd_smb2_request_error(req
, NT_STATUS_NOT_SUPPORTED
);
200 if (dialect
!= SMB2_DIALECT_REVISION_2FF
) {
201 set_Protocol(protocol
);
204 if (get_remote_arch() != RA_SAMBA
) {
205 set_remote_arch(RA_VISTA
);
208 /* negprot_spnego() returns a the server guid in the first 16 bytes */
209 negprot_spnego_blob
= negprot_spnego(req
, req
->sconn
);
210 if (negprot_spnego_blob
.data
== NULL
) {
211 return smbd_smb2_request_error(req
, NT_STATUS_NO_MEMORY
);
214 if (negprot_spnego_blob
.length
< 16) {
215 return smbd_smb2_request_error(req
, NT_STATUS_INTERNAL_ERROR
);
218 security_mode
= SMB2_NEGOTIATE_SIGNING_ENABLED
;
219 if (lp_server_signing() == SMB_SIGNING_REQUIRED
) {
220 security_mode
|= SMB2_NEGOTIATE_SIGNING_REQUIRED
;
224 if (lp_host_msdfs()) {
225 capabilities
|= SMB2_CAP_DFS
;
229 * Unless we implement SMB2_CAP_LARGE_MTU,
230 * 0x10000 (65536) is the maximum allowed message size
234 max_trans
= MIN(max_limit
, max_trans
);
235 max_read
= MIN(max_limit
, max_read
);
236 max_write
= MIN(max_limit
, max_write
);
238 security_offset
= SMB2_HDR_BODY
+ 0x40;
241 /* Try SPNEGO auth... */
242 security_buffer
= data_blob_const(negprot_spnego_blob
.data
+ 16,
243 negprot_spnego_blob
.length
- 16);
245 /* for now we want raw NTLMSSP */
246 security_buffer
= data_blob_const(NULL
, 0);
249 outbody
= data_blob_talloc(req
->out
.vector
, NULL
, 0x40);
250 if (outbody
.data
== NULL
) {
251 return smbd_smb2_request_error(req
, NT_STATUS_NO_MEMORY
);
254 SSVAL(outbody
.data
, 0x00, 0x40 + 1); /* struct size */
255 SSVAL(outbody
.data
, 0x02,
256 security_mode
); /* security mode */
257 SSVAL(outbody
.data
, 0x04, dialect
); /* dialect revision */
258 SSVAL(outbody
.data
, 0x06, 0); /* reserved */
259 memcpy(outbody
.data
+ 0x08,
260 negprot_spnego_blob
.data
, 16); /* server guid */
261 SIVAL(outbody
.data
, 0x18,
262 capabilities
); /* capabilities */
263 SIVAL(outbody
.data
, 0x1C, max_trans
); /* max transact size */
264 SIVAL(outbody
.data
, 0x20, max_trans
); /* max read size */
265 SIVAL(outbody
.data
, 0x24, max_trans
); /* max write size */
266 SBVAL(outbody
.data
, 0x28, 0); /* system time */
267 SBVAL(outbody
.data
, 0x30, 0); /* server start time */
268 SSVAL(outbody
.data
, 0x38,
269 security_offset
); /* security buffer offset */
270 SSVAL(outbody
.data
, 0x3A,
271 security_buffer
.length
); /* security buffer length */
272 SIVAL(outbody
.data
, 0x3C, 0); /* reserved */
274 outdyn
= security_buffer
;
276 req
->sconn
->using_smb2
= true;
277 req
->sconn
->smb2
.max_trans
= max_trans
;
278 req
->sconn
->smb2
.max_read
= max_read
;
279 req
->sconn
->smb2
.max_write
= max_write
;
281 return smbd_smb2_request_done(req
, outbody
, &outdyn
);