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/*
Unix SMB / CIFS implementation .
Core SMB2 server
Copyright ( C ) Stefan Metzmacher 2009
This program is free software ; you can redistribute it and / or modify
it under the terms of the GNU General Public License as published by
the Free Software Foundation ; either version 3 of the License , or
( at your option ) any later version .
This program is distributed in the hope that it will be useful ,
but WITHOUT ANY WARRANTY ; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE . See the
GNU General Public License for more details .
You should have received a copy of the GNU General Public License
along with this program . If not , see < http : //www.gnu.org/licenses/>.
*/
# include "includes.h"
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# include "smbd/smbd.h"
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# include "smbd/globals.h"
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# include "../libcli/smb/smb_common.h"
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# include "../libcli/smb/smb2_negotiate_context.h"
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# include "../lib/tsocket/tsocket.h"
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# include "../librpc/ndr/libndr.h"
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# include "../libcli/smb/smb_signing.h"
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# undef DBGC_CLASS
# define DBGC_CLASS DBGC_SMB2
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extern fstring remote_proto ;
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/*
* this is the entry point if SMB2 is selected via
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* the SMB negprot and the given dialect .
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*/
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static NTSTATUS reply_smb20xx ( struct smb_request * req , uint16_t dialect )
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{
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uint8_t * smb2_inpdu ;
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uint8_t * smb2_hdr ;
uint8_t * smb2_body ;
uint8_t * smb2_dyn ;
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size_t len = SMB2_HDR_BODY + 0x24 + 2 ;
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smb2_inpdu = talloc_zero_array ( talloc_tos ( ) , uint8_t , len ) ;
if ( smb2_inpdu = = NULL ) {
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DEBUG ( 0 , ( " Could not push spnego blob \n " ) ) ;
reply_nterror ( req , NT_STATUS_NO_MEMORY ) ;
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return NT_STATUS_NO_MEMORY ;
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}
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smb2_hdr = smb2_inpdu ;
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smb2_body = smb2_hdr + SMB2_HDR_BODY ;
smb2_dyn = smb2_body + 0x24 ;
SIVAL ( smb2_hdr , SMB2_HDR_PROTOCOL_ID , SMB2_MAGIC ) ;
SIVAL ( smb2_hdr , SMB2_HDR_LENGTH , SMB2_HDR_BODY ) ;
SSVAL ( smb2_body , 0x00 , 0x0024 ) ; /* struct size */
SSVAL ( smb2_body , 0x02 , 0x0001 ) ; /* dialect count */
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SSVAL ( smb2_dyn , 0x00 , dialect ) ;
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req - > outbuf = NULL ;
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return smbd_smb2_process_negprot ( req - > xconn , 0 , smb2_inpdu , len ) ;
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}
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/*
* this is the entry point if SMB2 is selected via
* the SMB negprot and the " SMB 2.002 " dialect .
*/
void reply_smb2002 ( struct smb_request * req , uint16_t choice )
{
reply_smb20xx ( req , SMB2_DIALECT_REVISION_202 ) ;
}
/*
* this is the entry point if SMB2 is selected via
* the SMB negprot and the " SMB 2.??? " dialect .
*/
void reply_smb20ff ( struct smb_request * req , uint16_t choice )
{
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struct smbXsrv_connection * xconn = req - > xconn ;
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xconn - > smb2 . allow_2ff = true ;
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reply_smb20xx ( req , SMB2_DIALECT_REVISION_2FF ) ;
}
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enum protocol_types smbd_smb2_protocol_dialect_match ( const uint8_t * indyn ,
const int dialect_count ,
uint16_t * dialect )
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{
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struct {
enum protocol_types proto ;
uint16_t dialect ;
} pd [ ] = {
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{ PROTOCOL_SMB3_11 , SMB3_DIALECT_REVISION_311 } ,
{ PROTOCOL_SMB3_10 , SMB3_DIALECT_REVISION_310 } ,
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{ PROTOCOL_SMB3_02 , SMB3_DIALECT_REVISION_302 } ,
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{ PROTOCOL_SMB3_00 , SMB3_DIALECT_REVISION_300 } ,
{ PROTOCOL_SMB2_24 , SMB2_DIALECT_REVISION_224 } ,
{ PROTOCOL_SMB2_22 , SMB2_DIALECT_REVISION_222 } ,
{ PROTOCOL_SMB2_10 , SMB2_DIALECT_REVISION_210 } ,
{ PROTOCOL_SMB2_02 , SMB2_DIALECT_REVISION_202 } ,
} ;
size_t i ;
for ( i = 0 ; i < ARRAY_SIZE ( pd ) ; i + + ) {
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int c = 0 ;
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if ( lp_server_max_protocol ( ) < pd [ i ] . proto ) {
continue ;
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}
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if ( lp_server_min_protocol ( ) > pd [ i ] . proto ) {
continue ;
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}
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for ( c = 0 ; c < dialect_count ; c + + ) {
* dialect = SVAL ( indyn , c * 2 ) ;
if ( * dialect = = pd [ i ] . dialect ) {
return pd [ i ] . proto ;
}
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}
}
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return PROTOCOL_NONE ;
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}
NTSTATUS smbd_smb2_request_process_negprot ( struct smbd_smb2_request * req )
{
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struct smbXsrv_connection * xconn = req - > xconn ;
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struct smbXsrv_client_global0 * global0 = NULL ;
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NTSTATUS status ;
const uint8_t * inbody ;
const uint8_t * indyn = NULL ;
DATA_BLOB outbody ;
DATA_BLOB outdyn ;
DATA_BLOB negprot_spnego_blob ;
uint16_t security_offset ;
DATA_BLOB security_buffer ;
size_t expected_dyn_size = 0 ;
size_t c ;
uint16_t security_mode ;
uint16_t dialect_count ;
uint16_t in_security_mode ;
uint32_t in_capabilities ;
DATA_BLOB in_guid_blob ;
struct GUID in_guid ;
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struct smb2_negotiate_contexts in_c = { . num_contexts = 0 , } ;
struct smb2_negotiate_context * in_preauth = NULL ;
struct smb2_negotiate_context * in_cipher = NULL ;
struct smb2_negotiate_contexts out_c = { . num_contexts = 0 , } ;
DATA_BLOB out_negotiate_context_blob = data_blob_null ;
uint32_t out_negotiate_context_offset = 0 ;
uint16_t out_negotiate_context_count = 0 ;
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uint16_t dialect = 0 ;
uint32_t capabilities ;
DATA_BLOB out_guid_blob ;
struct GUID out_guid ;
enum protocol_types protocol = PROTOCOL_NONE ;
uint32_t max_limit ;
uint32_t max_trans = lp_smb2_max_trans ( ) ;
uint32_t max_read = lp_smb2_max_read ( ) ;
uint32_t max_write = lp_smb2_max_write ( ) ;
NTTIME now = timeval_to_nttime ( & req - > request_time ) ;
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bool signing_required = true ;
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bool ok ;
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status = smbd_smb2_request_verify_sizes ( req , 0x24 ) ;
if ( ! NT_STATUS_IS_OK ( status ) ) {
return smbd_smb2_request_error ( req , status ) ;
}
inbody = SMBD_SMB2_IN_BODY_PTR ( req ) ;
dialect_count = SVAL ( inbody , 0x02 ) ;
in_security_mode = SVAL ( inbody , 0x04 ) ;
in_capabilities = IVAL ( inbody , 0x08 ) ;
in_guid_blob = data_blob_const ( inbody + 0x0C , 16 ) ;
if ( dialect_count = = 0 ) {
return smbd_smb2_request_error ( req , NT_STATUS_INVALID_PARAMETER ) ;
}
status = GUID_from_ndr_blob ( & in_guid_blob , & in_guid ) ;
if ( ! NT_STATUS_IS_OK ( status ) ) {
return smbd_smb2_request_error ( req , status ) ;
}
expected_dyn_size = dialect_count * 2 ;
if ( SMBD_SMB2_IN_DYN_LEN ( req ) < expected_dyn_size ) {
return smbd_smb2_request_error ( req , NT_STATUS_INVALID_PARAMETER ) ;
}
indyn = SMBD_SMB2_IN_DYN_PTR ( req ) ;
protocol = smbd_smb2_protocol_dialect_match ( indyn ,
dialect_count ,
& dialect ) ;
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for ( c = 0 ; protocol = = PROTOCOL_NONE & & c < dialect_count ; c + + ) {
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if ( lp_server_max_protocol ( ) < PROTOCOL_SMB2_10 ) {
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break ;
}
dialect = SVAL ( indyn , c * 2 ) ;
if ( dialect = = SMB2_DIALECT_REVISION_2FF ) {
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if ( xconn - > smb2 . allow_2ff ) {
xconn - > smb2 . allow_2ff = false ;
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protocol = PROTOCOL_SMB2_10 ;
break ;
}
}
}
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if ( protocol = = PROTOCOL_NONE ) {
return smbd_smb2_request_error ( req , NT_STATUS_NOT_SUPPORTED ) ;
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}
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if ( protocol > = PROTOCOL_SMB3_10 ) {
uint32_t in_negotiate_context_offset = 0 ;
uint16_t in_negotiate_context_count = 0 ;
DATA_BLOB in_negotiate_context_blob = data_blob_null ;
size_t ofs ;
in_negotiate_context_offset = IVAL ( inbody , 0x1C ) ;
in_negotiate_context_count = SVAL ( inbody , 0x20 ) ;
ofs = SMB2_HDR_BODY ;
ofs + = SMBD_SMB2_IN_BODY_LEN ( req ) ;
ofs + = expected_dyn_size ;
if ( ( ofs % 8 ) ! = 0 ) {
ofs + = 8 - ( ofs % 8 ) ;
}
if ( in_negotiate_context_offset ! = ofs ) {
return smbd_smb2_request_error ( req ,
NT_STATUS_INVALID_PARAMETER ) ;
}
ofs - = SMB2_HDR_BODY ;
ofs - = SMBD_SMB2_IN_BODY_LEN ( req ) ;
if ( SMBD_SMB2_IN_DYN_LEN ( req ) < ofs ) {
return smbd_smb2_request_error ( req ,
NT_STATUS_INVALID_PARAMETER ) ;
}
in_negotiate_context_blob = data_blob_const ( indyn ,
SMBD_SMB2_IN_DYN_LEN ( req ) ) ;
in_negotiate_context_blob . data + = ofs ;
in_negotiate_context_blob . length - = ofs ;
status = smb2_negotiate_context_parse ( req ,
in_negotiate_context_blob , & in_c ) ;
if ( ! NT_STATUS_IS_OK ( status ) ) {
return smbd_smb2_request_error ( req , status ) ;
}
if ( in_negotiate_context_count ! = in_c . num_contexts ) {
return smbd_smb2_request_error ( req ,
NT_STATUS_INVALID_PARAMETER ) ;
}
}
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if ( ( dialect ! = SMB2_DIALECT_REVISION_2FF ) & &
( protocol > = PROTOCOL_SMB2_10 ) & &
! GUID_all_zero ( & in_guid ) )
{
ok = remote_arch_cache_update ( & in_guid ) ;
if ( ! ok ) {
return smbd_smb2_request_error (
req , NT_STATUS_UNSUCCESSFUL ) ;
}
}
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switch ( get_remote_arch ( ) ) {
case RA_VISTA :
case RA_SAMBA :
case RA_CIFSFS :
case RA_OSX :
break ;
default :
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set_remote_arch ( RA_VISTA ) ;
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break ;
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}
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fstr_sprintf ( remote_proto , " SMB%X_%02X " ,
( dialect > > 8 ) & 0xFF , dialect & 0xFF ) ;
reload_services ( req - > sconn , conn_snum_used , true ) ;
DEBUG ( 3 , ( " Selected protocol %s \n " , remote_proto ) ) ;
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in_preauth = smb2_negotiate_context_find ( & in_c ,
SMB2_PREAUTH_INTEGRITY_CAPABILITIES ) ;
if ( protocol > = PROTOCOL_SMB3_10 & & in_preauth = = NULL ) {
return smbd_smb2_request_error ( req , NT_STATUS_INVALID_PARAMETER ) ;
}
in_cipher = smb2_negotiate_context_find ( & in_c ,
SMB2_ENCRYPTION_CAPABILITIES ) ;
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/* negprot_spnego() returns a the server guid in the first 16 bytes */
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negprot_spnego_blob = negprot_spnego ( req , xconn ) ;
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if ( negprot_spnego_blob . data = = NULL ) {
return smbd_smb2_request_error ( req , NT_STATUS_NO_MEMORY ) ;
}
if ( negprot_spnego_blob . length < 16 ) {
return smbd_smb2_request_error ( req , NT_STATUS_INTERNAL_ERROR ) ;
}
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security_mode = SMB2_NEGOTIATE_SIGNING_ENABLED ;
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/*
* We use xconn - > smb1 . signing_state as that ' s already present
* and used lpcfg_server_signing_allowed ( ) to get the correct
* defaults , e . g . signing_required for an ad_dc .
*/
signing_required = smb_signing_is_mandatory ( xconn - > smb1 . signing_state ) ;
if ( signing_required ) {
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security_mode | = SMB2_NEGOTIATE_SIGNING_REQUIRED ;
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}
capabilities = 0 ;
if ( lp_host_msdfs ( ) ) {
capabilities | = SMB2_CAP_DFS ;
}
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if ( protocol > = PROTOCOL_SMB2_10 & &
lp_smb2_leases ( ) & &
lp_oplocks ( GLOBAL_SECTION_SNUM ) & &
! lp_kernel_oplocks ( GLOBAL_SECTION_SNUM ) )
{
capabilities | = SMB2_CAP_LEASING ;
}
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if ( ( protocol > = PROTOCOL_SMB2_24 ) & &
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( lp_smb_encrypt ( - 1 ) ! = SMB_SIGNING_OFF ) & &
( in_capabilities & SMB2_CAP_ENCRYPTION ) ) {
capabilities | = SMB2_CAP_ENCRYPTION ;
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}
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/*
* 0x10000 ( 65536 ) is the maximum allowed message size
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* for SMB 2.0
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*/
max_limit = 0x10000 ;
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if ( protocol > = PROTOCOL_SMB2_10 ) {
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int p = 0 ;
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if ( tsocket_address_is_inet ( req - > sconn - > local_address , " ip " ) ) {
p = tsocket_address_inet_port ( req - > sconn - > local_address ) ;
}
/* largeMTU is not supported over NBT (tcp port 139) */
if ( p ! = NBT_SMB_PORT ) {
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capabilities | = SMB2_CAP_LARGE_MTU ;
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xconn - > smb2 . credits . multicredit = true ;
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/*
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* We allow up to almost 16 MB .
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*
* The maximum PDU size is 0xFFFFFF ( 16776960 )
* and we need some space for the header .
*/
max_limit = 0xFFFF00 ;
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}
}
/*
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* the defaults are 8 MB , but we ' ll limit this to max_limit based on
* the dialect ( 64 kb for SMB 2.0 , 8 MB for SMB > = 2.1 with LargeMTU )
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*
* user configured values exceeding the limits will be overwritten ,
* only smaller values will be accepted
*/
max_trans = MIN ( max_limit , lp_smb2_max_trans ( ) ) ;
max_read = MIN ( max_limit , lp_smb2_max_read ( ) ) ;
max_write = MIN ( max_limit , lp_smb2_max_write ( ) ) ;
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if ( in_preauth ! = NULL ) {
size_t needed = 4 ;
uint16_t hash_count ;
uint16_t salt_length ;
uint16_t selected_preauth = 0 ;
const uint8_t * p ;
uint8_t buf [ 38 ] ;
size_t i ;
if ( in_preauth - > data . length < needed ) {
return smbd_smb2_request_error ( req ,
NT_STATUS_INVALID_PARAMETER ) ;
}
hash_count = SVAL ( in_preauth - > data . data , 0 ) ;
salt_length = SVAL ( in_preauth - > data . data , 2 ) ;
if ( hash_count = = 0 ) {
return smbd_smb2_request_error ( req ,
NT_STATUS_INVALID_PARAMETER ) ;
}
p = in_preauth - > data . data + needed ;
needed + = hash_count * 2 ;
needed + = salt_length ;
if ( in_preauth - > data . length < needed ) {
return smbd_smb2_request_error ( req ,
NT_STATUS_INVALID_PARAMETER ) ;
}
for ( i = 0 ; i < hash_count ; i + + ) {
uint16_t v ;
v = SVAL ( p , 0 ) ;
p + = 2 ;
if ( v = = SMB2_PREAUTH_INTEGRITY_SHA512 ) {
selected_preauth = v ;
break ;
}
}
if ( selected_preauth = = 0 ) {
return smbd_smb2_request_error ( req ,
NT_STATUS_SMB_NO_PREAUTH_INTEGRITY_HASH_OVERLAP ) ;
}
SSVAL ( buf , 0 , 1 ) ; /* HashAlgorithmCount */
SSVAL ( buf , 2 , 32 ) ; /* SaltLength */
SSVAL ( buf , 4 , selected_preauth ) ;
generate_random_buffer ( buf + 6 , 32 ) ;
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status = smb2_negotiate_context_add (
req ,
& out_c ,
SMB2_PREAUTH_INTEGRITY_CAPABILITIES ,
buf ,
sizeof ( buf ) ) ;
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if ( ! NT_STATUS_IS_OK ( status ) ) {
return smbd_smb2_request_error ( req , status ) ;
}
req - > preauth = & req - > xconn - > smb2 . preauth ;
}
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if ( ( capabilities & SMB2_CAP_ENCRYPTION ) & & ( in_cipher ! = NULL ) ) {
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size_t needed = 2 ;
uint16_t cipher_count ;
const uint8_t * p ;
uint8_t buf [ 4 ] ;
size_t i ;
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bool aes_128_ccm_supported = false ;
bool aes_128_gcm_supported = false ;
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capabilities & = ~ SMB2_CAP_ENCRYPTION ;
if ( in_cipher - > data . length < needed ) {
return smbd_smb2_request_error ( req ,
NT_STATUS_INVALID_PARAMETER ) ;
}
cipher_count = SVAL ( in_cipher - > data . data , 0 ) ;
if ( cipher_count = = 0 ) {
return smbd_smb2_request_error ( req ,
NT_STATUS_INVALID_PARAMETER ) ;
}
p = in_cipher - > data . data + needed ;
needed + = cipher_count * 2 ;
if ( in_cipher - > data . length < needed ) {
return smbd_smb2_request_error ( req ,
NT_STATUS_INVALID_PARAMETER ) ;
}
for ( i = 0 ; i < cipher_count ; i + + ) {
uint16_t v ;
v = SVAL ( p , 0 ) ;
p + = 2 ;
if ( v = = SMB2_ENCRYPTION_AES128_GCM ) {
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aes_128_gcm_supported = true ;
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}
if ( v = = SMB2_ENCRYPTION_AES128_CCM ) {
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aes_128_ccm_supported = true ;
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}
}
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if ( aes_128_gcm_supported ) {
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xconn - > smb2 . server . cipher = SMB2_ENCRYPTION_AES128_GCM ;
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} else if ( aes_128_ccm_supported ) {
xconn - > smb2 . server . cipher = SMB2_ENCRYPTION_AES128_CCM ;
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}
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SSVAL ( buf , 0 , 1 ) ; /* ChiperCount */
SSVAL ( buf , 2 , xconn - > smb2 . server . cipher ) ;
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status = smb2_negotiate_context_add (
req ,
& out_c ,
SMB2_ENCRYPTION_CAPABILITIES ,
buf ,
sizeof ( buf ) ) ;
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if ( ! NT_STATUS_IS_OK ( status ) ) {
return smbd_smb2_request_error ( req , status ) ;
}
}
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if ( capabilities & SMB2_CAP_ENCRYPTION ) {
xconn - > smb2 . server . cipher = SMB2_ENCRYPTION_AES128_CCM ;
}
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if ( protocol > = PROTOCOL_SMB2_22 & &
xconn - > client - > server_multi_channel_enabled )
{
if ( in_capabilities & SMB2_CAP_MULTI_CHANNEL ) {
capabilities | = SMB2_CAP_MULTI_CHANNEL ;
}
}
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security_offset = SMB2_HDR_BODY + 0x40 ;
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# if 1
/* Try SPNEGO auth... */
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security_buffer = data_blob_const ( negprot_spnego_blob . data + 16 ,
negprot_spnego_blob . length - 16 ) ;
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# else
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/* for now we want raw NTLMSSP */
security_buffer = data_blob_const ( NULL , 0 ) ;
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# endif
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if ( out_c . num_contexts ! = 0 ) {
status = smb2_negotiate_context_push ( req ,
& out_negotiate_context_blob ,
out_c ) ;
if ( ! NT_STATUS_IS_OK ( status ) ) {
return smbd_smb2_request_error ( req , status ) ;
}
}
if ( out_negotiate_context_blob . length ! = 0 ) {
static const uint8_t zeros [ 8 ] ;
size_t pad = 0 ;
size_t ofs ;
outdyn = data_blob_dup_talloc ( req , security_buffer ) ;
if ( outdyn . length ! = security_buffer . length ) {
return smbd_smb2_request_error ( req ,
NT_STATUS_NO_MEMORY ) ;
}
ofs = security_offset + security_buffer . length ;
if ( ( ofs % 8 ) ! = 0 ) {
pad = 8 - ( ofs % 8 ) ;
}
ofs + = pad ;
ok = data_blob_append ( req , & outdyn , zeros , pad ) ;
if ( ! ok ) {
return smbd_smb2_request_error ( req ,
NT_STATUS_NO_MEMORY ) ;
}
ok = data_blob_append ( req , & outdyn ,
out_negotiate_context_blob . data ,
out_negotiate_context_blob . length ) ;
if ( ! ok ) {
return smbd_smb2_request_error ( req ,
NT_STATUS_NO_MEMORY ) ;
}
out_negotiate_context_offset = ofs ;
out_negotiate_context_count = out_c . num_contexts ;
} else {
outdyn = security_buffer ;
}
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out_guid_blob = data_blob_const ( negprot_spnego_blob . data , 16 ) ;
status = GUID_from_ndr_blob ( & out_guid_blob , & out_guid ) ;
if ( ! NT_STATUS_IS_OK ( status ) ) {
return smbd_smb2_request_error ( req , status ) ;
}
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outbody = smbd_smb2_generate_outbody ( req , 0x40 ) ;
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if ( outbody . data = = NULL ) {
return smbd_smb2_request_error ( req , NT_STATUS_NO_MEMORY ) ;
}
SSVAL ( outbody . data , 0x00 , 0x40 + 1 ) ; /* struct size */
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SSVAL ( outbody . data , 0x02 ,
security_mode ) ; /* security mode */
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SSVAL ( outbody . data , 0x04 , dialect ) ; /* dialect revision */
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SSVAL ( outbody . data , 0x06 ,
out_negotiate_context_count ) ; /* reserved/NegotiateContextCount */
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memcpy ( outbody . data + 0x08 ,
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out_guid_blob . data , 16 ) ; /* server guid */
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SIVAL ( outbody . data , 0x18 ,
capabilities ) ; /* capabilities */
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SIVAL ( outbody . data , 0x1C , max_trans ) ; /* max transact size */
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SIVAL ( outbody . data , 0x20 , max_read ) ; /* max read size */
SIVAL ( outbody . data , 0x24 , max_write ) ; /* max write size */
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SBVAL ( outbody . data , 0x28 , now ) ; /* system time */
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SBVAL ( outbody . data , 0x30 , 0 ) ; /* server start time */
SSVAL ( outbody . data , 0x38 ,
security_offset ) ; /* security buffer offset */
SSVAL ( outbody . data , 0x3A ,
security_buffer . length ) ; /* security buffer length */
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SIVAL ( outbody . data , 0x3C ,
out_negotiate_context_offset ) ; /* reserved/NegotiateContextOffset */
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req - > sconn - > using_smb2 = true ;
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if ( dialect = = SMB2_DIALECT_REVISION_2FF ) {
return smbd_smb2_request_done ( req , outbody , & outdyn ) ;
}
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status = smbXsrv_connection_init_tables ( xconn , protocol ) ;
if ( ! NT_STATUS_IS_OK ( status ) ) {
return smbd_smb2_request_error ( req , status ) ;
}
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xconn - > smb2 . client . capabilities = in_capabilities ;
xconn - > smb2 . client . security_mode = in_security_mode ;
xconn - > smb2 . client . guid = in_guid ;
xconn - > smb2 . client . num_dialects = dialect_count ;
xconn - > smb2 . client . dialects = talloc_array ( xconn ,
uint16_t ,
dialect_count ) ;
if ( xconn - > smb2 . client . dialects = = NULL ) {
return smbd_smb2_request_error ( req , NT_STATUS_NO_MEMORY ) ;
}
for ( c = 0 ; c < dialect_count ; c + + ) {
xconn - > smb2 . client . dialects [ c ] = SVAL ( indyn , c * 2 ) ;
}
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xconn - > smb2 . server . capabilities = capabilities ;
xconn - > smb2 . server . security_mode = security_mode ;
xconn - > smb2 . server . guid = out_guid ;
xconn - > smb2 . server . dialect = dialect ;
xconn - > smb2 . server . max_trans = max_trans ;
xconn - > smb2 . server . max_read = max_read ;
xconn - > smb2 . server . max_write = max_write ;
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if ( xconn - > protocol < PROTOCOL_SMB2_10 ) {
/*
* SMB2_02 doesn ' t support client guids
*/
return smbd_smb2_request_done ( req , outbody , & outdyn ) ;
}
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if ( ! xconn - > client - > server_multi_channel_enabled ) {
/*
* Only deal with the client guid database
* if multi - channel is enabled .
*/
return smbd_smb2_request_done ( req , outbody , & outdyn ) ;
}
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if ( xconn - > smb2 . client . guid_verified ) {
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/*
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* The connection was passed from another
* smbd process .
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*/
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return smbd_smb2_request_done ( req , outbody , & outdyn ) ;
}
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status = smb2srv_client_lookup_global ( xconn - > client ,
xconn - > smb2 . client . guid ,
req , & global0 ) ;
/*
* TODO : check for races . . .
*/
if ( NT_STATUS_EQUAL ( status , NT_STATUS_OBJECTID_NOT_FOUND ) ) {
/*
* This stores the new client information in
* smbXsrv_client_global . tdb
*/
xconn - > client - > global - > client_guid =
xconn - > smb2 . client . guid ;
status = smbXsrv_client_update ( xconn - > client ) ;
if ( ! NT_STATUS_IS_OK ( status ) ) {
return status ;
}
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xconn - > smb2 . client . guid_verified = true ;
} else if ( NT_STATUS_IS_OK ( status ) ) {
status = smb2srv_client_connection_pass ( req ,
global0 ) ;
if ( ! NT_STATUS_IS_OK ( status ) ) {
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return smbd_smb2_request_error ( req , status ) ;
}
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smbd_server_connection_terminate ( xconn ,
" passed connection " ) ;
return NT_STATUS_OBJECTID_EXISTS ;
} else {
return smbd_smb2_request_error ( req , status ) ;
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}
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return smbd_smb2_request_done ( req , outbody , & outdyn ) ;
}