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https://github.com/samba-team/samba.git
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46a4ce32ab
Signed-off-by: Joseph Sutton <josephsutton@catalyst.net.nz> Reviewed-by: Andrew Bartlett <abartlet@samba.org>
624 lines
18 KiB
C
624 lines
18 KiB
C
/*
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Unix SMB/CIFS implementation.
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dcerpc schannel operations
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Copyright (C) Andrew Tridgell 2004
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Copyright (C) Andrew Bartlett <abartlet@samba.org> 2004-2005
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Copyright (C) Rafal Szczesniak 2006
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This program is free software; you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation; either version 3 of the License, or
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(at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program. If not, see <http://www.gnu.org/licenses/>.
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*/
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#include "includes.h"
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#include <tevent.h>
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#include "auth/auth.h"
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#include "libcli/composite/composite.h"
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#include "libcli/auth/libcli_auth.h"
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#include "librpc/gen_ndr/ndr_netlogon.h"
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#include "librpc/gen_ndr/ndr_netlogon_c.h"
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#include "auth/credentials/credentials.h"
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#include "librpc/rpc/dcerpc_proto.h"
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#include "param/param.h"
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#include "lib/param/loadparm.h"
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struct schannel_key_state {
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struct dcerpc_pipe *pipe;
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struct dcerpc_pipe *pipe2;
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struct dcerpc_binding *binding;
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bool dcerpc_schannel_auto;
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struct cli_credentials *credentials;
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struct netlogon_creds_CredentialState *creds;
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uint32_t local_negotiate_flags;
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uint32_t remote_negotiate_flags;
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struct netr_Credential credentials1;
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struct netr_Credential credentials2;
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struct netr_Credential credentials3;
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struct netr_ServerReqChallenge r;
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struct netr_ServerAuthenticate2 a;
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const struct samr_Password *mach_pwd;
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};
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static void continue_secondary_connection(struct composite_context *ctx);
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static void continue_bind_auth_none(struct composite_context *ctx);
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static void continue_srv_challenge(struct tevent_req *subreq);
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static void continue_srv_auth2(struct tevent_req *subreq);
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static void continue_get_capabilities(struct tevent_req *subreq);
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/*
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Stage 2 of schannel_key: Receive endpoint mapping and request secondary
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rpc connection
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*/
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static void continue_epm_map_binding(struct composite_context *ctx)
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{
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struct composite_context *c;
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struct schannel_key_state *s;
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struct composite_context *sec_conn_req;
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c = talloc_get_type(ctx->async.private_data, struct composite_context);
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s = talloc_get_type(c->private_data, struct schannel_key_state);
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/* receive endpoint mapping */
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c->status = dcerpc_epm_map_binding_recv(ctx);
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if (!NT_STATUS_IS_OK(c->status)) {
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DEBUG(0,("Failed to map DCERPC/TCP NCACN_NP pipe for '%s' - %s\n",
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NDR_NETLOGON_UUID, nt_errstr(c->status)));
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composite_error(c, c->status);
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return;
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}
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/* send a request for secondary rpc connection */
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sec_conn_req = dcerpc_secondary_connection_send(s->pipe,
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s->binding);
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if (composite_nomem(sec_conn_req, c)) return;
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composite_continue(c, sec_conn_req, continue_secondary_connection, c);
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}
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/*
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Stage 3 of schannel_key: Receive secondary rpc connection and perform
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non-authenticated bind request
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*/
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static void continue_secondary_connection(struct composite_context *ctx)
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{
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struct composite_context *c;
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struct schannel_key_state *s;
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struct composite_context *auth_none_req;
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c = talloc_get_type(ctx->async.private_data, struct composite_context);
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s = talloc_get_type(c->private_data, struct schannel_key_state);
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/* receive secondary rpc connection */
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c->status = dcerpc_secondary_connection_recv(ctx, &s->pipe2);
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if (!composite_is_ok(c)) return;
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talloc_steal(s, s->pipe2);
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/* initiate a non-authenticated bind */
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auth_none_req = dcerpc_bind_auth_none_send(c, s->pipe2, &ndr_table_netlogon);
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if (composite_nomem(auth_none_req, c)) return;
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composite_continue(c, auth_none_req, continue_bind_auth_none, c);
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}
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/*
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Stage 4 of schannel_key: Receive non-authenticated bind and get
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a netlogon challenge
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*/
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static void continue_bind_auth_none(struct composite_context *ctx)
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{
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struct composite_context *c;
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struct schannel_key_state *s;
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struct tevent_req *subreq;
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c = talloc_get_type(ctx->async.private_data, struct composite_context);
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s = talloc_get_type(c->private_data, struct schannel_key_state);
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/* receive result of non-authenticated bind request */
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c->status = dcerpc_bind_auth_none_recv(ctx);
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if (!composite_is_ok(c)) return;
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/* prepare a challenge request */
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s->r.in.server_name = talloc_asprintf(c, "\\\\%s", dcerpc_server_name(s->pipe));
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if (composite_nomem(s->r.in.server_name, c)) return;
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s->r.in.computer_name = cli_credentials_get_workstation(s->credentials);
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s->r.in.credentials = &s->credentials1;
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s->r.out.return_credentials = &s->credentials2;
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generate_random_buffer(s->credentials1.data, sizeof(s->credentials1.data));
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/*
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request a netlogon challenge - a rpc request over opened secondary pipe
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*/
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subreq = dcerpc_netr_ServerReqChallenge_r_send(s, c->event_ctx,
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s->pipe2->binding_handle,
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&s->r);
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if (composite_nomem(subreq, c)) return;
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tevent_req_set_callback(subreq, continue_srv_challenge, c);
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}
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/*
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Stage 5 of schannel_key: Receive a challenge and perform authentication
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on the netlogon pipe
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*/
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static void continue_srv_challenge(struct tevent_req *subreq)
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{
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struct composite_context *c;
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struct schannel_key_state *s;
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c = tevent_req_callback_data(subreq, struct composite_context);
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s = talloc_get_type(c->private_data, struct schannel_key_state);
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/* receive rpc request result - netlogon challenge */
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c->status = dcerpc_netr_ServerReqChallenge_r_recv(subreq, s);
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TALLOC_FREE(subreq);
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if (!composite_is_ok(c)) return;
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/* prepare credentials for auth2 request */
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s->mach_pwd = cli_credentials_get_nt_hash(s->credentials, c);
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if (s->mach_pwd == NULL) {
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return composite_error(c, NT_STATUS_INTERNAL_ERROR);
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}
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/* auth2 request arguments */
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s->a.in.server_name = s->r.in.server_name;
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s->a.in.account_name = cli_credentials_get_username(s->credentials);
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s->a.in.secure_channel_type =
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cli_credentials_get_secure_channel_type(s->credentials);
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s->a.in.computer_name = cli_credentials_get_workstation(s->credentials);
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s->a.in.negotiate_flags = &s->local_negotiate_flags;
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s->a.in.credentials = &s->credentials3;
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s->a.out.negotiate_flags = &s->remote_negotiate_flags;
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s->a.out.return_credentials = &s->credentials3;
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s->creds = netlogon_creds_client_init(s,
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s->a.in.account_name,
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s->a.in.computer_name,
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s->a.in.secure_channel_type,
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&s->credentials1, &s->credentials2,
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s->mach_pwd, &s->credentials3,
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s->local_negotiate_flags);
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if (composite_nomem(s->creds, c)) {
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return;
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}
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/*
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authenticate on the netlogon pipe - a rpc request over secondary pipe
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*/
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subreq = dcerpc_netr_ServerAuthenticate2_r_send(s, c->event_ctx,
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s->pipe2->binding_handle,
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&s->a);
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if (composite_nomem(subreq, c)) return;
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tevent_req_set_callback(subreq, continue_srv_auth2, c);
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}
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/*
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Stage 6 of schannel_key: Receive authentication request result and verify
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received credentials
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*/
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static void continue_srv_auth2(struct tevent_req *subreq)
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{
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struct composite_context *c;
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struct schannel_key_state *s;
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c = tevent_req_callback_data(subreq, struct composite_context);
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s = talloc_get_type(c->private_data, struct schannel_key_state);
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/* receive rpc request result - auth2 credentials */
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c->status = dcerpc_netr_ServerAuthenticate2_r_recv(subreq, s);
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TALLOC_FREE(subreq);
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if (!composite_is_ok(c)) return;
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if (!NT_STATUS_EQUAL(s->a.out.result, NT_STATUS_ACCESS_DENIED) &&
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!NT_STATUS_IS_OK(s->a.out.result)) {
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composite_error(c, s->a.out.result);
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return;
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}
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/*
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* Strong keys could be unsupported (NT4) or disabled. So retry with the
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* flags returned by the server. - asn
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*/
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if (NT_STATUS_EQUAL(s->a.out.result, NT_STATUS_ACCESS_DENIED)) {
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uint32_t lf = s->local_negotiate_flags;
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const char *ln = NULL;
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uint32_t rf = s->remote_negotiate_flags;
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const char *rn = NULL;
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if (!s->dcerpc_schannel_auto) {
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composite_error(c, s->a.out.result);
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return;
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}
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s->dcerpc_schannel_auto = false;
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if (lf & NETLOGON_NEG_SUPPORTS_AES) {
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ln = "aes";
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if (rf & NETLOGON_NEG_SUPPORTS_AES) {
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composite_error(c, s->a.out.result);
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return;
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}
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} else if (lf & NETLOGON_NEG_STRONG_KEYS) {
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ln = "strong";
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if (rf & NETLOGON_NEG_STRONG_KEYS) {
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composite_error(c, s->a.out.result);
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return;
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}
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} else {
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ln = "des";
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}
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if (rf & NETLOGON_NEG_SUPPORTS_AES) {
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rn = "aes";
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} else if (rf & NETLOGON_NEG_STRONG_KEYS) {
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rn = "strong";
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} else {
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rn = "des";
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}
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DEBUG(3, ("Server doesn't support %s keys, downgrade to %s"
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"and retry! local[0x%08X] remote[0x%08X]\n",
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ln, rn, lf, rf));
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s->local_negotiate_flags = s->remote_negotiate_flags;
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generate_random_buffer(s->credentials1.data,
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sizeof(s->credentials1.data));
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subreq = dcerpc_netr_ServerReqChallenge_r_send(s,
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c->event_ctx,
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s->pipe2->binding_handle,
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&s->r);
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if (composite_nomem(subreq, c)) return;
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tevent_req_set_callback(subreq, continue_srv_challenge, c);
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return;
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}
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s->creds->negotiate_flags = s->remote_negotiate_flags;
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/* verify credentials */
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if (!netlogon_creds_client_check(s->creds, s->a.out.return_credentials)) {
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composite_error(c, NT_STATUS_UNSUCCESSFUL);
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return;
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}
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composite_done(c);
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}
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/*
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Initiate establishing a schannel key using netlogon challenge
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on a secondary pipe
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*/
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static struct composite_context *dcerpc_schannel_key_send(TALLOC_CTX *mem_ctx,
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struct dcerpc_pipe *p,
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struct cli_credentials *credentials,
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struct loadparm_context *lp_ctx)
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{
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struct composite_context *c;
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struct schannel_key_state *s;
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struct composite_context *epm_map_req;
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enum netr_SchannelType schannel_type = cli_credentials_get_secure_channel_type(credentials);
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struct cli_credentials *epm_creds = NULL;
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/* composite context allocation and setup */
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c = composite_create(mem_ctx, p->conn->event_ctx);
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if (c == NULL) return NULL;
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s = talloc_zero(c, struct schannel_key_state);
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if (composite_nomem(s, c)) return c;
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c->private_data = s;
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/* store parameters in the state structure */
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s->pipe = p;
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s->credentials = credentials;
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s->local_negotiate_flags = NETLOGON_NEG_AUTH2_FLAGS;
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/* allocate credentials */
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if (s->pipe->conn->flags & DCERPC_SCHANNEL_128) {
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s->local_negotiate_flags = NETLOGON_NEG_AUTH2_ADS_FLAGS;
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}
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if (s->pipe->conn->flags & DCERPC_SCHANNEL_AES) {
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s->local_negotiate_flags = NETLOGON_NEG_AUTH2_ADS_FLAGS;
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s->local_negotiate_flags |= NETLOGON_NEG_SUPPORTS_AES;
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}
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if (s->pipe->conn->flags & DCERPC_SCHANNEL_AUTO) {
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s->local_negotiate_flags = NETLOGON_NEG_AUTH2_ADS_FLAGS;
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s->local_negotiate_flags |= NETLOGON_NEG_SUPPORTS_AES;
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s->dcerpc_schannel_auto = true;
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}
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/* type of authentication depends on schannel type */
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if (schannel_type == SEC_CHAN_RODC) {
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s->local_negotiate_flags |= NETLOGON_NEG_RODC_PASSTHROUGH;
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}
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if (lpcfg_weak_crypto(lp_ctx) == SAMBA_WEAK_CRYPTO_DISALLOWED) {
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s->local_negotiate_flags &= ~NETLOGON_NEG_ARCFOUR;
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}
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epm_creds = cli_credentials_init_anon(s);
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if (composite_nomem(epm_creds, c)) return c;
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/* allocate binding structure */
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s->binding = dcerpc_binding_dup(s, s->pipe->binding);
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if (composite_nomem(s->binding, c)) return c;
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/* request the netlogon endpoint mapping */
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epm_map_req = dcerpc_epm_map_binding_send(c, s->binding,
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&ndr_table_netlogon,
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epm_creds,
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s->pipe->conn->event_ctx,
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lp_ctx);
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if (composite_nomem(epm_map_req, c)) return c;
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composite_continue(c, epm_map_req, continue_epm_map_binding, c);
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return c;
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}
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/*
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Receive result of schannel key request
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*/
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static NTSTATUS dcerpc_schannel_key_recv(struct composite_context *c,
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TALLOC_CTX *mem_ctx,
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struct netlogon_creds_CredentialState **creds)
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{
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NTSTATUS status = composite_wait(c);
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if (NT_STATUS_IS_OK(status)) {
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struct schannel_key_state *s =
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talloc_get_type_abort(c->private_data,
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struct schannel_key_state);
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*creds = talloc_move(mem_ctx, &s->creds);
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}
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talloc_free(c);
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return status;
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}
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struct auth_schannel_state {
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struct dcerpc_pipe *pipe;
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struct cli_credentials *credentials;
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const struct ndr_interface_table *table;
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struct loadparm_context *lp_ctx;
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uint8_t auth_level;
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struct netlogon_creds_CredentialState *creds_state;
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struct netlogon_creds_CredentialState save_creds_state;
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struct netr_Authenticator auth;
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struct netr_Authenticator return_auth;
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union netr_Capabilities capabilities;
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struct netr_LogonGetCapabilities c;
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};
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static void continue_bind_auth(struct composite_context *ctx);
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/*
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Stage 2 of auth_schannel: Receive schannel key and initiate an
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authenticated bind using received credentials
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*/
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static void continue_schannel_key(struct composite_context *ctx)
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{
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struct composite_context *auth_req;
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struct composite_context *c = talloc_get_type(ctx->async.private_data,
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struct composite_context);
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struct auth_schannel_state *s = talloc_get_type(c->private_data,
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struct auth_schannel_state);
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NTSTATUS status;
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/* receive schannel key */
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status = c->status = dcerpc_schannel_key_recv(ctx, s, &s->creds_state);
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if (!composite_is_ok(c)) {
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DEBUG(1, ("Failed to setup credentials: %s\n", nt_errstr(status)));
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return;
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}
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/* send bind auth request with received creds */
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cli_credentials_set_netlogon_creds(s->credentials, s->creds_state);
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auth_req = dcerpc_bind_auth_send(c, s->pipe, s->table, s->credentials,
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lpcfg_gensec_settings(c, s->lp_ctx),
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DCERPC_AUTH_TYPE_SCHANNEL, s->auth_level,
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NULL);
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if (composite_nomem(auth_req, c)) return;
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composite_continue(c, auth_req, continue_bind_auth, c);
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}
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/*
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Stage 3 of auth_schannel: Receive result of authenticated bind
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and say if we're done ok.
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*/
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static void continue_bind_auth(struct composite_context *ctx)
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{
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struct composite_context *c = talloc_get_type(ctx->async.private_data,
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struct composite_context);
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struct auth_schannel_state *s = talloc_get_type(c->private_data,
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struct auth_schannel_state);
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struct tevent_req *subreq;
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c->status = dcerpc_bind_auth_recv(ctx);
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if (!composite_is_ok(c)) return;
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/* if we have a AES encrypted connection, verify the capabilities */
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if (ndr_syntax_id_equal(&s->table->syntax_id,
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&ndr_table_netlogon.syntax_id)) {
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NTSTATUS status;
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ZERO_STRUCT(s->return_auth);
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|
|
|
s->save_creds_state = *s->creds_state;
|
|
status = netlogon_creds_client_authenticator(&s->save_creds_state,
|
|
&s->auth);
|
|
if (!NT_STATUS_IS_OK(status)) {
|
|
composite_error(c, status);
|
|
return;
|
|
}
|
|
|
|
s->c.in.server_name = talloc_asprintf(c,
|
|
"\\\\%s",
|
|
dcerpc_server_name(s->pipe));
|
|
if (composite_nomem(s->c.in.server_name, c)) return;
|
|
s->c.in.computer_name = cli_credentials_get_workstation(s->credentials);
|
|
s->c.in.credential = &s->auth;
|
|
s->c.in.return_authenticator = &s->return_auth;
|
|
s->c.in.query_level = 1;
|
|
|
|
s->c.out.capabilities = &s->capabilities;
|
|
s->c.out.return_authenticator = &s->return_auth;
|
|
|
|
DEBUG(5, ("We established a AES connection, verifying logon "
|
|
"capabilities\n"));
|
|
|
|
subreq = dcerpc_netr_LogonGetCapabilities_r_send(s,
|
|
c->event_ctx,
|
|
s->pipe->binding_handle,
|
|
&s->c);
|
|
if (composite_nomem(subreq, c)) return;
|
|
|
|
tevent_req_set_callback(subreq, continue_get_capabilities, c);
|
|
return;
|
|
}
|
|
|
|
composite_done(c);
|
|
}
|
|
|
|
/*
|
|
Stage 4 of auth_schannel: Get the Logon Capabilities and verify them.
|
|
*/
|
|
static void continue_get_capabilities(struct tevent_req *subreq)
|
|
{
|
|
struct composite_context *c;
|
|
struct auth_schannel_state *s;
|
|
|
|
c = tevent_req_callback_data(subreq, struct composite_context);
|
|
s = talloc_get_type(c->private_data, struct auth_schannel_state);
|
|
|
|
/* receive rpc request result */
|
|
c->status = dcerpc_netr_LogonGetCapabilities_r_recv(subreq, s);
|
|
TALLOC_FREE(subreq);
|
|
if (NT_STATUS_EQUAL(c->status, NT_STATUS_RPC_PROCNUM_OUT_OF_RANGE)) {
|
|
if (s->creds_state->negotiate_flags & NETLOGON_NEG_SUPPORTS_AES) {
|
|
composite_error(c, NT_STATUS_INVALID_NETWORK_RESPONSE);
|
|
return;
|
|
} else {
|
|
/* This is probably NT */
|
|
composite_done(c);
|
|
return;
|
|
}
|
|
} else if (!composite_is_ok(c)) {
|
|
return;
|
|
}
|
|
|
|
if (NT_STATUS_EQUAL(s->c.out.result, NT_STATUS_NOT_IMPLEMENTED)) {
|
|
if (s->creds_state->negotiate_flags & NETLOGON_NEG_SUPPORTS_AES) {
|
|
/* This means AES isn't supported. */
|
|
composite_error(c, NT_STATUS_INVALID_NETWORK_RESPONSE);
|
|
return;
|
|
}
|
|
|
|
/* This is probably an old Samba version */
|
|
composite_done(c);
|
|
return;
|
|
}
|
|
|
|
/* verify credentials */
|
|
if (!netlogon_creds_client_check(&s->save_creds_state,
|
|
&s->c.out.return_authenticator->cred)) {
|
|
composite_error(c, NT_STATUS_UNSUCCESSFUL);
|
|
return;
|
|
}
|
|
|
|
*s->creds_state = s->save_creds_state;
|
|
cli_credentials_set_netlogon_creds(s->credentials, s->creds_state);
|
|
|
|
if (!NT_STATUS_IS_OK(s->c.out.result)) {
|
|
composite_error(c, s->c.out.result);
|
|
return;
|
|
}
|
|
|
|
/* compare capabilities */
|
|
if (s->creds_state->negotiate_flags != s->capabilities.server_capabilities) {
|
|
DEBUG(2, ("The client capabilities don't match the server "
|
|
"capabilities: local[0x%08X] remote[0x%08X]\n",
|
|
s->creds_state->negotiate_flags,
|
|
s->capabilities.server_capabilities));
|
|
composite_error(c, NT_STATUS_INVALID_NETWORK_RESPONSE);
|
|
return;
|
|
}
|
|
|
|
/* TODO: Add downgrade detection. */
|
|
|
|
composite_done(c);
|
|
}
|
|
|
|
|
|
/*
|
|
Initiate schannel authentication request
|
|
*/
|
|
struct composite_context *dcerpc_bind_auth_schannel_send(TALLOC_CTX *tmp_ctx,
|
|
struct dcerpc_pipe *p,
|
|
const struct ndr_interface_table *table,
|
|
struct cli_credentials *credentials,
|
|
struct loadparm_context *lp_ctx,
|
|
uint8_t auth_level)
|
|
{
|
|
struct composite_context *c;
|
|
struct auth_schannel_state *s;
|
|
struct composite_context *schan_key_req;
|
|
|
|
/* composite context allocation and setup */
|
|
c = composite_create(tmp_ctx, p->conn->event_ctx);
|
|
if (c == NULL) return NULL;
|
|
|
|
s = talloc_zero(c, struct auth_schannel_state);
|
|
if (composite_nomem(s, c)) return c;
|
|
c->private_data = s;
|
|
|
|
/* store parameters in the state structure */
|
|
s->pipe = p;
|
|
s->credentials = credentials;
|
|
s->table = table;
|
|
s->auth_level = auth_level;
|
|
s->lp_ctx = lp_ctx;
|
|
|
|
/* start getting schannel key first */
|
|
schan_key_req = dcerpc_schannel_key_send(c, p, credentials, lp_ctx);
|
|
if (composite_nomem(schan_key_req, c)) return c;
|
|
|
|
composite_continue(c, schan_key_req, continue_schannel_key, c);
|
|
return c;
|
|
}
|
|
|
|
|
|
/*
|
|
Receive result of schannel authentication request
|
|
*/
|
|
NTSTATUS dcerpc_bind_auth_schannel_recv(struct composite_context *c)
|
|
{
|
|
NTSTATUS status = composite_wait(c);
|
|
|
|
talloc_free(c);
|
|
return status;
|
|
}
|