mirror of
https://github.com/samba-team/samba.git
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d0c7651a7d
rafal (This used to be commit 44b89cd47a1eb635f09ef97e6a828c40962c2322)
585 lines
16 KiB
C
585 lines
16 KiB
C
/*
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Unix SMB/CIFS implementation.
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Copyright (C) Stefan Metzmacher 2004
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Copyright (C) Rafal Szczesniak 2005
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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 2 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, write to the Free Software
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Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
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*/
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#include "includes.h"
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#include "libnet/libnet.h"
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#include "libcli/libcli.h"
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#include "libcli/composite/composite.h"
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#include "librpc/gen_ndr/ndr_lsa_c.h"
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struct rpc_connect_srv_state {
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struct libnet_RpcConnect r;
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const char *binding;
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};
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static void continue_pipe_connect(struct composite_context *ctx);
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/**
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* Initiates connection to rpc pipe on remote server
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*
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* @param ctx initialised libnet context
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* @param mem_ctx memory context of this call
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* @param r data structure containing necessary parameters and return values
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* @return composite context of this call
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**/
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static struct composite_context* libnet_RpcConnectSrv_send(struct libnet_context *ctx,
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TALLOC_CTX *mem_ctx,
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struct libnet_RpcConnect *r)
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{
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struct composite_context *c;
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struct rpc_connect_srv_state *s;
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struct composite_context *pipe_connect_req;
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/* composite context allocation and setup */
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c = talloc_zero(mem_ctx, struct composite_context);
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if (c == NULL) return NULL;
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s = talloc_zero(c, struct rpc_connect_srv_state);
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if (composite_nomem(s, c)) return c;
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c->state = COMPOSITE_STATE_IN_PROGRESS;
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c->private_data = s;
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c->event_ctx = ctx->event_ctx;
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s->r = *r;
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/* prepare binding string */
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switch (r->level) {
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case LIBNET_RPC_CONNECT_DC:
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case LIBNET_RPC_CONNECT_PDC:
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case LIBNET_RPC_CONNECT_SERVER:
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s->binding = talloc_asprintf(s, "ncacn_np:%s", r->in.name);
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break;
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case LIBNET_RPC_CONNECT_BINDING:
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s->binding = talloc_strdup(s, r->in.binding);
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break;
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}
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/* connect to remote dcerpc pipe */
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pipe_connect_req = dcerpc_pipe_connect_send(c, &s->r.out.dcerpc_pipe,
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s->binding, r->in.dcerpc_iface,
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ctx->cred, c->event_ctx);
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if (composite_nomem(pipe_connect_req, c)) return c;
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composite_continue(c, pipe_connect_req, continue_pipe_connect, c);
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return c;
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}
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/*
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Step 2 of RpcConnectSrv - get rpc connection
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*/
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static void continue_pipe_connect(struct composite_context *ctx)
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{
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struct composite_context *c;
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struct rpc_connect_srv_state *s;
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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 rpc_connect_srv_state);
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/* receive result of rpc pipe connection */
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c->status = dcerpc_pipe_connect_recv(ctx, c, &s->r.out.dcerpc_pipe);
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if (!composite_is_ok(c)) return;
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s->r.out.error_string = NULL;
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composite_done(c);
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}
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/**
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* Receives result of connection to rpc pipe on remote server
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*
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* @param c composite context
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* @param ctx initialised libnet context
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* @param mem_ctx memory context of this call
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* @param r data structure containing necessary parameters and return values
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* @return nt status of rpc connection
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**/
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static NTSTATUS libnet_RpcConnectSrv_recv(struct composite_context *c,
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struct libnet_context *ctx,
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TALLOC_CTX *mem_ctx,
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struct libnet_RpcConnect *r)
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{
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struct rpc_connect_srv_state *s;
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NTSTATUS status = composite_wait(c);
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if (NT_STATUS_IS_OK(status) && ctx && mem_ctx && r) {
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/* move the returned rpc pipe between memory contexts */
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s = talloc_get_type(c->private_data, struct rpc_connect_srv_state);
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r->out.dcerpc_pipe = talloc_steal(mem_ctx, s->r.out.dcerpc_pipe);
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ctx->pipe = r->out.dcerpc_pipe;
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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 rpc_connect_dc_state {
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struct libnet_context *ctx;
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struct libnet_RpcConnect r;
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struct libnet_RpcConnect r2;
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struct libnet_LookupDCs f;
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const char *connect_name;
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};
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static void continue_lookup_dc(struct composite_context *ctx);
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static void continue_rpc_connect(struct composite_context *ctx);
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/**
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* Initiates connection to rpc pipe on domain pdc
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*
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* @param ctx initialised libnet context
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* @param mem_ctx memory context of this call
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* @param r data structure containing necessary parameters and return values
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* @return composite context of this call
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**/
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static struct composite_context* libnet_RpcConnectDC_send(struct libnet_context *ctx,
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TALLOC_CTX *mem_ctx,
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struct libnet_RpcConnect *r)
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{
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struct composite_context *c;
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struct rpc_connect_dc_state *s;
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struct composite_context *lookup_dc_req;
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/* composite context allocation and setup */
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c = talloc_zero(mem_ctx, struct composite_context);
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if (c == NULL) return NULL;
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s = talloc_zero(c, struct rpc_connect_dc_state);
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if (composite_nomem(s, c)) return c;
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c->state = COMPOSITE_STATE_IN_PROGRESS;
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c->private_data = s;
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c->event_ctx = ctx->event_ctx;
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s->r = *r;
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s->ctx = ctx;
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switch (r->level) {
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case LIBNET_RPC_CONNECT_PDC:
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s->f.in.name_type = NBT_NAME_PDC;
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break;
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case LIBNET_RPC_CONNECT_DC:
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s->f.in.name_type = NBT_NAME_LOGON;
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break;
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default:
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break;
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}
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s->f.in.domain_name = r->in.name;
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s->f.out.num_dcs = 0;
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s->f.out.dcs = NULL;
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/* find the domain pdc first */
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lookup_dc_req = libnet_LookupDCs_send(ctx, c, &s->f);
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if (composite_nomem(lookup_dc_req, c)) return c;
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composite_continue(c, lookup_dc_req, continue_lookup_dc, c);
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return c;
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}
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/*
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Step 2 of RpcConnectDC: get domain controller name/address and
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initiate RpcConnect to it
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*/
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static void continue_lookup_dc(struct composite_context *ctx)
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{
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struct composite_context *c;
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struct rpc_connect_dc_state *s;
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struct composite_context *rpc_connect_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 rpc_connect_dc_state);
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/* receive result of domain controller lookup */
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c->status = libnet_LookupDCs_recv(ctx, c, &s->f);
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if (!composite_is_ok(c)) return;
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/* we might not have got back a name. Fall back to the IP */
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if (s->f.out.dcs[0].name) {
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s->connect_name = s->f.out.dcs[0].name;
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} else {
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s->connect_name = s->f.out.dcs[0].address;
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}
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/* ok, pdc has been found so do attempt to rpc connect */
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s->r2.level = LIBNET_RPC_CONNECT_SERVER;
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/* this will cause yet another name resolution, but at least
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* we pass the right name down the stack now */
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s->r2.in.name = talloc_strdup(c, s->connect_name);
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s->r2.in.dcerpc_iface = s->r.in.dcerpc_iface;
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/* send rpc connect request to the server */
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rpc_connect_req = libnet_RpcConnect_send(s->ctx, c, &s->r2);
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if (composite_nomem(rpc_connect_req, c)) return;
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composite_continue(c, rpc_connect_req, continue_rpc_connect, c);
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}
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/*
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Step 3 of RpcConnectDC: get rpc connection to the server
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*/
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static void continue_rpc_connect(struct composite_context *ctx)
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{
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struct composite_context *c;
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struct rpc_connect_dc_state *s;
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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 rpc_connect_dc_state);
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c->status = libnet_RpcConnect_recv(ctx, s->ctx, c, &s->r2);
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/* error string is to be passed anyway */
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s->r.out.error_string = s->r2.out.error_string;
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if (!composite_is_ok(c)) return;
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s->r.out.dcerpc_pipe = s->r2.out.dcerpc_pipe;
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composite_done(c);
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}
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/**
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* Receives result of connection to rpc pipe on domain pdc
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*
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* @param c composite context
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* @param ctx initialised libnet context
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* @param mem_ctx memory context of this call
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* @param r data structure containing necessary parameters and return values
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* @return nt status of rpc connection
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**/
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static NTSTATUS libnet_RpcConnectDC_recv(struct composite_context *c,
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struct libnet_context *ctx,
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TALLOC_CTX *mem_ctx,
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struct libnet_RpcConnect *r)
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{
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NTSTATUS status;
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struct rpc_connect_dc_state *s;
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status = composite_wait(c);
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if (NT_STATUS_IS_OK(status) && ctx && mem_ctx && r) {
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/* move connected rpc pipe between memory contexts */
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s = talloc_get_type(c->private_data, struct rpc_connect_dc_state);
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r->out.dcerpc_pipe = talloc_steal(mem_ctx, s->r.out.dcerpc_pipe);
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ctx->pipe = r->out.dcerpc_pipe;
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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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/**
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* Initiates connection to rpc pipe on remote server or pdc
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*
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* @param ctx initialised libnet context
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* @param mem_ctx memory context of this call
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* @param r data structure containing necessary parameters and return values
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* @return composite context of this call
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**/
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struct composite_context* libnet_RpcConnect_send(struct libnet_context *ctx,
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TALLOC_CTX *mem_ctx,
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struct libnet_RpcConnect *r)
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{
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struct composite_context *c;
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switch (r->level) {
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case LIBNET_RPC_CONNECT_SERVER:
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c = libnet_RpcConnectSrv_send(ctx, mem_ctx, r);
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break;
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case LIBNET_RPC_CONNECT_BINDING:
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c = libnet_RpcConnectSrv_send(ctx, mem_ctx, r);
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break;
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case LIBNET_RPC_CONNECT_PDC:
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case LIBNET_RPC_CONNECT_DC:
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c = libnet_RpcConnectDC_send(ctx, mem_ctx, r);
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break;
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default:
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c = talloc_zero(mem_ctx, struct composite_context);
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composite_error(c, NT_STATUS_INVALID_LEVEL);
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}
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return c;
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}
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/**
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* Receives result of connection to rpc pipe on remote server or pdc
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*
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* @param c composite context
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* @param ctx initialised libnet context
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* @param mem_ctx memory context of this call
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* @param r data structure containing necessary parameters and return values
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* @return nt status of rpc connection
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**/
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NTSTATUS libnet_RpcConnect_recv(struct composite_context *c, struct libnet_context *ctx,
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TALLOC_CTX *mem_ctx, struct libnet_RpcConnect *r)
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{
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switch (r->level) {
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case LIBNET_RPC_CONNECT_SERVER:
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case LIBNET_RPC_CONNECT_BINDING:
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return libnet_RpcConnectSrv_recv(c, ctx, mem_ctx, r);
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case LIBNET_RPC_CONNECT_PDC:
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case LIBNET_RPC_CONNECT_DC:
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return libnet_RpcConnectDC_recv(c, ctx, mem_ctx, r);
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default:
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return NT_STATUS_INVALID_LEVEL;
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}
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}
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/**
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* Connect to a rpc pipe on a remote server - sync version
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*
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* @param ctx initialised libnet context
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* @param mem_ctx memory context of this call
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* @param r data structure containing necessary parameters and return values
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* @return nt status of rpc connection
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**/
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NTSTATUS libnet_RpcConnect(struct libnet_context *ctx, TALLOC_CTX *mem_ctx,
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struct libnet_RpcConnect *r)
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{
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struct composite_context *c;
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c = libnet_RpcConnect_send(ctx, mem_ctx, r);
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return libnet_RpcConnect_recv(c, ctx, mem_ctx, r);
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}
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/**
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* Connects to rpc pipe on remote server or pdc, and returns info on the domain name, domain sid and realm
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*
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* @param ctx initialised libnet context
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* @param r data structure containing necessary parameters and return values. Must be a talloc context
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* @return nt status of the call
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**/
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NTSTATUS libnet_RpcConnectDCInfo(struct libnet_context *ctx,
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struct libnet_RpcConnectDCInfo *r)
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{
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TALLOC_CTX *tmp_ctx;
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NTSTATUS status;
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struct libnet_RpcConnect *c;
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struct lsa_ObjectAttribute attr;
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struct lsa_QosInfo qos;
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struct lsa_OpenPolicy2 lsa_open_policy;
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struct policy_handle lsa_p_handle;
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struct lsa_QueryInfoPolicy2 lsa_query_info2;
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struct lsa_QueryInfoPolicy lsa_query_info;
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struct dcerpc_pipe *lsa_pipe;
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struct dcerpc_binding *final_binding;
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struct dcerpc_pipe *final_pipe;
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tmp_ctx = talloc_new(r);
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if (!tmp_ctx) {
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r->out.error_string = NULL;
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return NT_STATUS_NO_MEMORY;
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}
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c = talloc(tmp_ctx, struct libnet_RpcConnect);
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if (!c) {
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r->out.error_string = NULL;
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talloc_free(tmp_ctx);
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return NT_STATUS_NO_MEMORY;
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}
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c->level = r->level;
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if (r->level != LIBNET_RPC_CONNECT_BINDING) {
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c->in.name = r->in.name;
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} else {
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c->in.binding = r->in.binding;
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}
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c->in.dcerpc_iface = &dcerpc_table_lsarpc;
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/* connect to the LSA pipe of the PDC */
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status = libnet_RpcConnect(ctx, c, c);
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if (!NT_STATUS_IS_OK(status)) {
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if (r->level != LIBNET_RPC_CONNECT_BINDING) {
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r->out.error_string = talloc_asprintf(r,
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"Connection to LSA pipe of DC failed: %s",
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c->out.error_string);
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} else {
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r->out.error_string = talloc_asprintf(r,
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"Connection to LSA pipe with binding '%s' failed: %s",
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r->in.binding, c->out.error_string);
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}
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talloc_free(tmp_ctx);
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return status;
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}
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lsa_pipe = c->out.dcerpc_pipe;
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/* Get an LSA policy handle */
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ZERO_STRUCT(lsa_p_handle);
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qos.len = 0;
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qos.impersonation_level = 2;
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qos.context_mode = 1;
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qos.effective_only = 0;
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attr.len = 0;
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attr.root_dir = NULL;
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attr.object_name = NULL;
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attr.attributes = 0;
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attr.sec_desc = NULL;
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attr.sec_qos = &qos;
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lsa_open_policy.in.attr = &attr;
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lsa_open_policy.in.system_name = talloc_asprintf(tmp_ctx, "\\");
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if (!lsa_open_policy.in.system_name) {
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r->out.error_string = NULL;
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talloc_free(tmp_ctx);
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return NT_STATUS_NO_MEMORY;
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}
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lsa_open_policy.in.access_mask = SEC_FLAG_MAXIMUM_ALLOWED;
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lsa_open_policy.out.handle = &lsa_p_handle;
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status = dcerpc_lsa_OpenPolicy2(lsa_pipe, tmp_ctx, &lsa_open_policy);
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/* This now fails on ncacn_ip_tcp against Win2k3 SP1 */
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if (NT_STATUS_IS_OK(status)) {
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/* Look to see if this is ADS (a fault indicates NT4 or Samba 3.0) */
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lsa_query_info2.in.handle = &lsa_p_handle;
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lsa_query_info2.in.level = LSA_POLICY_INFO_DNS;
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status = dcerpc_lsa_QueryInfoPolicy2(lsa_pipe, tmp_ctx,
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&lsa_query_info2);
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if (!NT_STATUS_EQUAL(status, NT_STATUS_NET_WRITE_FAULT)) {
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if (!NT_STATUS_IS_OK(status)) {
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r->out.error_string = talloc_asprintf(r,
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"lsa_QueryInfoPolicy2 failed: %s",
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nt_errstr(status));
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talloc_free(tmp_ctx);
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return status;
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}
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r->out.realm = lsa_query_info2.out.info->dns.dns_domain.string;
|
|
r->out.guid = talloc(r, struct GUID);
|
|
if (!r->out.guid) {
|
|
r->out.error_string = NULL;
|
|
return NT_STATUS_NO_MEMORY;
|
|
}
|
|
*r->out.guid = lsa_query_info2.out.info->dns.domain_guid;
|
|
} else {
|
|
r->out.realm = NULL;
|
|
r->out.guid = NULL;
|
|
}
|
|
|
|
/* Grab the domain SID (regardless of the result of the previous call */
|
|
|
|
lsa_query_info.in.handle = &lsa_p_handle;
|
|
lsa_query_info.in.level = LSA_POLICY_INFO_DOMAIN;
|
|
|
|
status = dcerpc_lsa_QueryInfoPolicy(lsa_pipe, tmp_ctx,
|
|
&lsa_query_info);
|
|
|
|
if (!NT_STATUS_IS_OK(status)) {
|
|
r->out.error_string = talloc_asprintf(r,
|
|
"lsa_QueryInfoPolicy2 failed: %s",
|
|
nt_errstr(status));
|
|
talloc_free(tmp_ctx);
|
|
return status;
|
|
}
|
|
|
|
r->out.domain_sid = lsa_query_info.out.info->domain.sid;
|
|
r->out.domain_name = lsa_query_info.out.info->domain.name.string;
|
|
} else {
|
|
/* Cause the code further down to try this with just SAMR */
|
|
r->out.domain_sid = NULL;
|
|
r->out.domain_name = NULL;
|
|
r->out.realm = NULL;
|
|
}
|
|
|
|
/* Find the original binding string */
|
|
final_binding = talloc(tmp_ctx, struct dcerpc_binding);
|
|
if (!final_binding) {
|
|
return NT_STATUS_NO_MEMORY;
|
|
}
|
|
*final_binding = *lsa_pipe->binding;
|
|
/* Ensure we keep hold of the member elements */
|
|
talloc_reference(final_binding, lsa_pipe->binding);
|
|
|
|
/* Make binding string for samr, not the other pipe */
|
|
status = dcerpc_epm_map_binding(tmp_ctx, final_binding,
|
|
r->in.dcerpc_iface,
|
|
lsa_pipe->conn->event_ctx);
|
|
if (!NT_STATUS_IS_OK(status)) {
|
|
r->out.error_string = talloc_asprintf(r,
|
|
"Failed to map pipe with endpoint mapper - %s",
|
|
nt_errstr(status));
|
|
talloc_free(tmp_ctx);
|
|
return status;
|
|
}
|
|
|
|
/* Now that we have the info setup a final connection to the pipe they wanted */
|
|
status = dcerpc_secondary_connection(lsa_pipe, &final_pipe, final_binding);
|
|
if (!NT_STATUS_IS_OK(status)) {
|
|
r->out.error_string = talloc_asprintf(r,
|
|
"secondary connection failed: %s",
|
|
nt_errstr(status));
|
|
talloc_free(tmp_ctx);
|
|
return status;
|
|
}
|
|
r->out.dcerpc_pipe = final_pipe;
|
|
|
|
talloc_steal(r, r->out.realm);
|
|
talloc_steal(r, r->out.domain_sid);
|
|
talloc_steal(r, r->out.domain_name);
|
|
talloc_steal(r, r->out.dcerpc_pipe);
|
|
|
|
/* This should close the LSA pipe, which we don't need now we have the info */
|
|
talloc_free(tmp_ctx);
|
|
return NT_STATUS_OK;
|
|
}
|
|
|