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c214a612df
the Samba4 'net samdump'.
Andrew Bartlett
(This used to be commit b7eeea53b2
)
478 lines
14 KiB
C
478 lines
14 KiB
C
/*
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Unix SMB/CIFS implementation.
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Extract the user/system database from a remote SamSync server
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Copyright (C) Andrew Bartlett <abartlet@samba.org> 2004-2005
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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 "librpc/gen_ndr/ndr_netlogon.h"
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#include "librpc/gen_ndr/ndr_samr.h"
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#include "dlinklist.h"
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struct samsync_secret {
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struct samsync_secret *prev, *next;
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DATA_BLOB secret;
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char *name;
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NTTIME mtime;
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};
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struct samsync_trusted_domain {
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struct samsync_trusted_domain *prev, *next;
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struct dom_sid *sid;
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char *name;
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};
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struct samdump_state {
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struct samsync_secret *secrets;
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struct samsync_trusted_domain *trusted_domains;
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};
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/**
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* Decrypt and extract the user's passwords.
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*
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* The writes decrypted (no longer 'RID encrypted' or arcfour encrypted) passwords back into the structure
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*/
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static NTSTATUS fix_user(TALLOC_CTX *mem_ctx,
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struct creds_CredentialState *creds,
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enum netr_SamDatabaseID database,
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struct netr_DELTA_ENUM *delta,
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char **error_string)
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{
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uint32_t rid = delta->delta_id_union.rid;
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struct netr_DELTA_USER *user = delta->delta_union.user;
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struct samr_Password lm_hash;
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struct samr_Password nt_hash;
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const char *username = user->account_name.string;
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NTSTATUS nt_status;
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if (user->lm_password_present) {
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sam_rid_crypt(rid, user->lmpassword.hash, lm_hash.hash, 0);
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user->lmpassword = lm_hash;
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}
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if (user->nt_password_present) {
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sam_rid_crypt(rid, user->ntpassword.hash, nt_hash.hash, 0);
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user->ntpassword = nt_hash;
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}
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if (user->user_private_info.SensitiveData) {
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DATA_BLOB data;
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struct netr_USER_KEYS keys;
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data.data = user->user_private_info.SensitiveData;
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data.length = user->user_private_info.DataLength;
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creds_arcfour_crypt(creds, data.data, data.length);
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user->user_private_info.SensitiveData = data.data;
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user->user_private_info.DataLength = data.length;
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nt_status = ndr_pull_struct_blob(&data, mem_ctx, &keys, (ndr_pull_flags_fn_t)ndr_pull_netr_USER_KEYS);
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if (NT_STATUS_IS_OK(nt_status)) {
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if (keys.keys.keys2.lmpassword.length == 16) {
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sam_rid_crypt(rid, keys.keys.keys2.lmpassword.pwd.hash, lm_hash.hash, 0);
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user->lmpassword = lm_hash;
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user->lm_password_present = True;
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}
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if (keys.keys.keys2.ntpassword.length == 16) {
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sam_rid_crypt(rid, keys.keys.keys2.ntpassword.pwd.hash, nt_hash.hash, 0);
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user->ntpassword = nt_hash;
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user->nt_password_present = True;
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}
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} else {
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*error_string = talloc_asprintf(mem_ctx, "Failed to parse Sensitive Data for %s:\n", username);
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dump_data(10, data.data, data.length);
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return nt_status;
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}
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}
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return NT_STATUS_OK;
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}
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/**
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* Decrypt and extract the secrets
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*
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* The writes decrypted secrets back into the structure
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*/
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static NTSTATUS fix_secret(TALLOC_CTX *mem_ctx,
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struct creds_CredentialState *creds,
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enum netr_SamDatabaseID database,
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struct netr_DELTA_ENUM *delta,
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char **error_string)
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{
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struct netr_DELTA_SECRET *secret = delta->delta_union.secret;
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creds_arcfour_crypt(creds, secret->current_cipher.cipher_data,
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secret->current_cipher.maxlen);
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creds_arcfour_crypt(creds, secret->old_cipher.cipher_data,
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secret->old_cipher.maxlen);
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return NT_STATUS_OK;
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}
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/**
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* Fix up the delta, dealing with encryption issues so that the final
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* callback need only do the printing or application logic
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*/
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static NTSTATUS fix_delta(TALLOC_CTX *mem_ctx,
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struct creds_CredentialState *creds,
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enum netr_SamDatabaseID database,
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struct netr_DELTA_ENUM *delta,
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char **error_string)
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{
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NTSTATUS nt_status = NT_STATUS_OK;
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*error_string = NULL;
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switch (delta->delta_type) {
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case NETR_DELTA_USER:
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{
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nt_status = fix_user(mem_ctx,
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creds,
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database,
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delta,
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error_string);
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break;
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}
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case NETR_DELTA_SECRET:
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{
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nt_status = fix_secret(mem_ctx,
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creds,
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database,
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delta,
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error_string);
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break;
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}
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}
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return nt_status;
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}
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static NTSTATUS libnet_SamSync_netlogon(struct libnet_context *ctx, TALLOC_CTX *mem_ctx, union libnet_SamSync *r)
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{
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NTSTATUS nt_status, dbsync_nt_status;
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TALLOC_CTX *loop_ctx, *delta_ctx;
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struct creds_CredentialState *creds;
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struct netr_DatabaseSync dbsync;
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struct cli_credentials *machine_account;
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struct dcerpc_binding *b;
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struct dcerpc_pipe *p;
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const enum netr_SamDatabaseID database_ids[] = {SAM_DATABASE_DOMAIN, SAM_DATABASE_BUILTIN, SAM_DATABASE_PRIVS};
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int i;
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/* TODO: This is bogus */
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const char **bindings = lp_passwordserver();
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const char *binding;
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if (bindings && bindings[0]) {
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binding = bindings[0];
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}
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machine_account = cli_credentials_init(mem_ctx);
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if (!machine_account) {
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return NT_STATUS_NO_MEMORY;
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}
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cli_credentials_set_conf(machine_account);
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nt_status = cli_credentials_set_machine_account(machine_account);
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if (!NT_STATUS_IS_OK(nt_status)) {
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r->netlogon.error_string = talloc_strdup(mem_ctx, "Could not obtain machine account password - are we joined to the domain?");
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return nt_status;
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}
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if (cli_credentials_get_secure_channel_type(machine_account) != SEC_CHAN_BDC) {
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r->netlogon.error_string
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= talloc_asprintf(mem_ctx,
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"Our join to domain %s is not as a BDC (%d), please rejoin as a BDC",
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cli_credentials_get_domain(machine_account),
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cli_credentials_get_secure_channel_type(machine_account));
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return NT_STATUS_CANT_ACCESS_DOMAIN_INFO;
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}
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/* Connect to DC (take a binding string for now) */
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nt_status = dcerpc_parse_binding(mem_ctx, binding, &b);
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if (!NT_STATUS_IS_OK(nt_status)) {
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r->netlogon.error_string = talloc_asprintf(mem_ctx, "Bad binding string %s\n", binding);
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return NT_STATUS_INVALID_PARAMETER;
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}
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/* We like schannel */
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b->flags &= ~DCERPC_AUTH_OPTIONS;
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b->flags |= DCERPC_SCHANNEL | DCERPC_SEAL /* | DCERPC_SCHANNEL_128 */;
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/* Setup schannel */
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nt_status = dcerpc_pipe_connect_b(mem_ctx, &p, b,
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DCERPC_NETLOGON_UUID,
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DCERPC_NETLOGON_VERSION,
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machine_account);
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if (!NT_STATUS_IS_OK(nt_status)) {
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return nt_status;
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}
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/* get NETLOGON credentails */
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nt_status = dcerpc_schannel_creds(p->conn->security_state.generic_state, mem_ctx, &creds);
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if (!NT_STATUS_IS_OK(nt_status)) {
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r->netlogon.error_string = talloc_strdup(mem_ctx, "Could not obtain NETLOGON credentials from DCERPC/GENSEC layer");
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return nt_status;
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}
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dbsync.in.logon_server = talloc_asprintf(mem_ctx, "\\\\%s", dcerpc_server_name(p));
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dbsync.in.computername = cli_credentials_get_workstation(machine_account);
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dbsync.in.preferredmaximumlength = (uint32_t)-1;
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ZERO_STRUCT(dbsync.in.return_authenticator);
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for (i=0;i< ARRAY_SIZE(database_ids); i++) {
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dbsync.in.sync_context = 0;
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dbsync.in.database_id = database_ids[i];
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do {
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int d;
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loop_ctx = talloc_named(mem_ctx, 0, "DatabaseSync loop context");
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creds_client_authenticator(creds, &dbsync.in.credential);
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dbsync_nt_status = dcerpc_netr_DatabaseSync(p, loop_ctx, &dbsync);
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if (!NT_STATUS_IS_OK(dbsync_nt_status) &&
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!NT_STATUS_EQUAL(dbsync_nt_status, STATUS_MORE_ENTRIES)) {
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r->netlogon.error_string = talloc_asprintf(mem_ctx, "DatabaseSync failed - %s", nt_errstr(nt_status));
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return nt_status;
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}
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if (!creds_client_check(creds, &dbsync.out.return_authenticator.cred)) {
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r->netlogon.error_string = talloc_strdup(mem_ctx, "Credential chaining failed");
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return NT_STATUS_ACCESS_DENIED;
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}
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dbsync.in.sync_context = dbsync.out.sync_context;
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for (d=0; d < dbsync.out.delta_enum_array->num_deltas; d++) {
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char *error_string = NULL;
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delta_ctx = talloc_named(loop_ctx, 0, "DatabaseSync delta context");
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nt_status = fix_delta(delta_ctx,
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creds,
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dbsync.in.database_id,
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&dbsync.out.delta_enum_array->delta_enum[d],
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&error_string);
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if (!NT_STATUS_IS_OK(nt_status)) {
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r->netlogon.error_string = talloc_steal(mem_ctx, error_string);
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talloc_free(delta_ctx);
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return nt_status;
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}
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nt_status = r->netlogon.delta_fn(delta_ctx,
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r->netlogon.fn_ctx,
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creds,
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dbsync.in.database_id,
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&dbsync.out.delta_enum_array->delta_enum[d],
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&error_string);
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if (!NT_STATUS_IS_OK(nt_status)) {
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r->netlogon.error_string = talloc_steal(mem_ctx, error_string);
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talloc_free(delta_ctx);
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return nt_status;
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}
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talloc_free(delta_ctx);
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}
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talloc_free(loop_ctx);
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} while (NT_STATUS_EQUAL(dbsync_nt_status, STATUS_MORE_ENTRIES));
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nt_status = dbsync_nt_status;
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}
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return nt_status;
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}
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static NTSTATUS vampire_samdump_handle_user(TALLOC_CTX *mem_ctx,
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struct creds_CredentialState *creds,
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struct netr_DELTA_ENUM *delta)
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{
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uint32_t rid = delta->delta_id_union.rid;
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struct netr_DELTA_USER *user = delta->delta_union.user;
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const char *username = user->account_name.string;
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char *hex_lm_password;
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char *hex_nt_password;
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hex_lm_password = smbpasswd_sethexpwd(mem_ctx,
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user->lm_password_present ? &user->lmpassword : NULL,
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user->acct_flags);
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hex_nt_password = smbpasswd_sethexpwd(mem_ctx,
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user->nt_password_present ? &user->ntpassword : NULL,
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user->acct_flags);
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printf("%s:%d:%s:%s:%s:LCT-%08X\n", username,
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rid, hex_lm_password, hex_nt_password,
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smbpasswd_encode_acb_info(mem_ctx, user->acct_flags),
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(unsigned int)nt_time_to_unix(user->last_password_change));
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return NT_STATUS_OK;
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}
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static NTSTATUS vampire_samdump_handle_secret(TALLOC_CTX *mem_ctx,
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struct samdump_state *samdump_state,
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struct creds_CredentialState *creds,
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struct netr_DELTA_ENUM *delta)
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{
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struct netr_DELTA_SECRET *secret = delta->delta_union.secret;
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const char *name = delta->delta_id_union.name;
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struct samsync_secret *new = talloc(samdump_state, struct samsync_secret);
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new->name = talloc_reference(new, name);
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new->secret = data_blob_talloc(new, secret->current_cipher.cipher_data, secret->current_cipher.maxlen);
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new->mtime = secret->current_cipher_set_time;
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DLIST_ADD(samdump_state->secrets, new);
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return NT_STATUS_OK;
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}
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static NTSTATUS vampire_samdump_handle_trusted_domain(TALLOC_CTX *mem_ctx,
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struct samdump_state *samdump_state,
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struct creds_CredentialState *creds,
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struct netr_DELTA_ENUM *delta)
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{
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struct netr_DELTA_TRUSTED_DOMAIN *trusted_domain = delta->delta_union.trusted_domain;
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struct dom_sid *dom_sid = delta->delta_id_union.sid;
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struct samsync_trusted_domain *new = talloc(samdump_state, struct samsync_trusted_domain);
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new->name = talloc_reference(new, trusted_domain->domain_name.string);
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new->sid = talloc_reference(new, dom_sid);
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DLIST_ADD(samdump_state->trusted_domains, new);
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return NT_STATUS_OK;
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}
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static NTSTATUS libnet_samdump_fn(TALLOC_CTX *mem_ctx,
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void *private,
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struct creds_CredentialState *creds,
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enum netr_SamDatabaseID database,
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struct netr_DELTA_ENUM *delta,
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char **error_string)
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{
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NTSTATUS nt_status = NT_STATUS_OK;
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struct samdump_state *samdump_state = private;
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*error_string = NULL;
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switch (delta->delta_type) {
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case NETR_DELTA_USER:
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{
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/* not interested in builtin users */
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if (database == SAM_DATABASE_DOMAIN) {
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nt_status = vampire_samdump_handle_user(mem_ctx,
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creds,
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delta);
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break;
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}
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}
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case NETR_DELTA_SECRET:
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{
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nt_status = vampire_samdump_handle_secret(mem_ctx,
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samdump_state,
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creds,
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delta);
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break;
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}
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case NETR_DELTA_TRUSTED_DOMAIN:
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{
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nt_status = vampire_samdump_handle_trusted_domain(mem_ctx,
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samdump_state,
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creds,
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delta);
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break;
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}
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}
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return nt_status;
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}
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NTSTATUS libnet_SamDump_netlogon(struct libnet_context *ctx, TALLOC_CTX *mem_ctx, union libnet_SamDump *r)
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{
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NTSTATUS nt_status;
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union libnet_SamSync r2;
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struct samdump_state *samdump_state = talloc(mem_ctx, struct samdump_state);
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struct samsync_trusted_domain *t;
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struct samsync_secret *s;
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if (!samdump_state) {
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return NT_STATUS_NO_MEMORY;
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}
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samdump_state->secrets = NULL;
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samdump_state->trusted_domains = NULL;
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r2.netlogon.level = LIBNET_SAMDUMP_NETLOGON;
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r2.netlogon.error_string = NULL;
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r2.netlogon.delta_fn = libnet_samdump_fn;
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r2.netlogon.fn_ctx = samdump_state;
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nt_status = libnet_SamSync_netlogon(ctx, mem_ctx, &r2);
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r->generic.error_string = r2.netlogon.error_string;
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if (!NT_STATUS_IS_OK(nt_status)) {
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return nt_status;
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}
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printf("Trusted domains, sids and secrets:\n");
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for (t=samdump_state->trusted_domains; t; t=t->next) {
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char *secret_name = talloc_asprintf(mem_ctx, "G$$%s", t->name);
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for (s=samdump_state->secrets; s; s=s->next) {
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if (StrCaseCmp(s->name, secret_name) == 0) {
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char *secret_string;
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if (convert_string_talloc(mem_ctx, CH_UTF16, CH_UNIX,
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s->secret.data, s->secret.length,
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(void **)&secret_string) == -1) {
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r->generic.error_string = talloc_asprintf(mem_ctx,
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"Could not convert secret for domain %s to a string\n",
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t->name);
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return NT_STATUS_INVALID_PARAMETER;
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}
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printf("%s\t%s\t%s\n",
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t->name, dom_sid_string(mem_ctx, t->sid),
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secret_string);
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}
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}
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}
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return nt_status;
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}
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NTSTATUS libnet_SamDump_generic(struct libnet_context *ctx, TALLOC_CTX *mem_ctx, union libnet_SamDump *r)
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{
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NTSTATUS nt_status;
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union libnet_SamDump r2;
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r2.generic.level = LIBNET_SAMDUMP_NETLOGON;
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r2.generic.error_string = NULL;
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nt_status = libnet_SamDump(ctx, mem_ctx, &r2);
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r->generic.error_string = r2.netlogon.error_string;
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return nt_status;
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}
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NTSTATUS libnet_SamDump(struct libnet_context *ctx, TALLOC_CTX *mem_ctx, union libnet_SamDump *r)
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{
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switch (r->generic.level) {
|
|
case LIBNET_SAMDUMP_GENERIC:
|
|
return libnet_SamDump_generic(ctx, mem_ctx, r);
|
|
case LIBNET_SAMDUMP_NETLOGON:
|
|
return libnet_SamDump_netlogon(ctx, mem_ctx, r);
|
|
}
|
|
|
|
return NT_STATUS_INVALID_LEVEL;
|
|
}
|