mirror of
https://github.com/samba-team/samba.git
synced 2025-12-17 04:23:50 +03:00
added srvparse.o and pipesrvsvc.o smb.h : mods to the Net Share Enum stuff srvparse.c : Net Share Enum parsing support. more srvsvc pipe parsing to go here... pipenetlog.c util.c: modified standard_sub_basic() so that you can set a global boolean and use a different string for the %U username substitution. proto.h: the usual.
-
662 lines
18 KiB
C
662 lines
18 KiB
C
/*
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Unix SMB/Netbios implementation.
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Version 1.9.
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Pipe SMB reply routines
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Copyright (C) Andrew Tridgell 1992-1997,
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Copyright (C) Luke Kenneth Casson Leighton 1996-1997.
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Copyright (C) Paul Ashton 1997.
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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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/*
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This file handles reply_ calls on named pipes that the server
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makes to handle specific protocols
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*/
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#include "includes.h"
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#include "trans2.h"
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#include "nterr.h"
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extern int DEBUGLEVEL;
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extern BOOL sam_logon_in_ssb;
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extern pstring samlogon_user;
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#ifdef NTDOMAIN
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static void make_lsa_r_req_chal(LSA_R_REQ_CHAL *r_c,
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DOM_CHAL *srv_chal, int status)
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{
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DEBUG(6,("make_lsa_r_req_chal: %d\n", __LINE__));
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memcpy(r_c->srv_chal.data, srv_chal->data, sizeof(srv_chal->data));
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r_c->status = status;
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}
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static int lsa_reply_req_chal(LSA_Q_REQ_CHAL *q_c, char *q, char *base,
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DOM_CHAL *srv_chal)
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{
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LSA_R_REQ_CHAL r_c;
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DEBUG(6,("lsa_reply_req_chal: %d\n", __LINE__));
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/* set up the LSA REQUEST CHALLENGE response */
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make_lsa_r_req_chal(&r_c, srv_chal, 0);
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/* store the response in the SMB stream */
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q = lsa_io_r_req_chal(False, &r_c, q, base, 4, 0);
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DEBUG(6,("lsa_reply_req_chal: %d\n", __LINE__));
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/* return length of SMB data stored */
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return PTR_DIFF(q, base);
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}
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static void make_lsa_r_auth_2(LSA_R_AUTH_2 *r_a,
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DOM_CHAL *resp_cred, NEG_FLAGS *flgs, int status)
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{
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memcpy( r_a->srv_chal.data, resp_cred->data, sizeof(resp_cred->data));
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memcpy(&(r_a->srv_flgs) , flgs , sizeof(r_a->srv_flgs));
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r_a->status = status;
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}
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static int lsa_reply_auth_2(LSA_Q_AUTH_2 *q_a, char *q, char *base,
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DOM_CHAL *resp_cred, int status)
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{
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LSA_R_AUTH_2 r_a;
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/* set up the LSA AUTH 2 response */
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make_lsa_r_auth_2(&r_a, resp_cred, &(q_a->clnt_flgs), status);
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/* store the response in the SMB stream */
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q = lsa_io_r_auth_2(False, &r_a, q, base, 4, 0);
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/* return length of SMB data stored */
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return PTR_DIFF(q, base);
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}
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static void make_lsa_r_srv_pwset(LSA_R_SRV_PWSET *r_s,
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DOM_CRED *srv_cred, int status)
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{
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DEBUG(5,("make_lsa_r_srv_pwset: %d\n", __LINE__));
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memcpy(&(r_s->srv_cred), srv_cred, sizeof(r_s->srv_cred));
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r_s->status = status;
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DEBUG(5,("make_lsa_r_srv_pwset: %d\n", __LINE__));
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}
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static int lsa_reply_srv_pwset(LSA_Q_SRV_PWSET *q_s, char *q, char *base,
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DOM_CRED *srv_cred, int status)
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{
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LSA_R_SRV_PWSET r_s;
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DEBUG(5,("lsa_srv_pwset: %d\n", __LINE__));
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/* set up the LSA Server Password Set response */
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make_lsa_r_srv_pwset(&r_s, srv_cred, status);
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/* store the response in the SMB stream */
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q = lsa_io_r_srv_pwset(False, &r_s, q, base, 4, 0);
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DEBUG(5,("lsa_srv_pwset: %d\n", __LINE__));
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/* return length of SMB data stored */
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return PTR_DIFF(q, base);
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}
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static void make_lsa_user_info(LSA_USER_INFO *usr,
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NTTIME *logon_time,
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NTTIME *logoff_time,
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NTTIME *kickoff_time,
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NTTIME *pass_last_set_time,
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NTTIME *pass_can_change_time,
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NTTIME *pass_must_change_time,
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char *user_name,
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char *full_name,
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char *logon_script,
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char *profile_path,
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char *home_dir,
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char *dir_drive,
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uint16 logon_count,
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uint16 bad_pw_count,
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uint32 user_id,
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uint32 group_id,
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uint32 num_groups,
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DOM_GID *gids,
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uint32 user_flgs,
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char sess_key[16],
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char *logon_srv,
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char *logon_dom,
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char *dom_sid,
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char *other_sids) /* space-delimited set of SIDs */
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{
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/* only cope with one "other" sid, right now. */
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/* need to count the number of space-delimited sids */
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int i;
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int num_other_sids = other_sids != NULL ? 1 : 0;
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int len_user_name = strlen(user_name );
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int len_full_name = strlen(full_name );
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int len_logon_script = strlen(logon_script);
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int len_profile_path = strlen(profile_path);
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int len_home_dir = strlen(home_dir );
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int len_dir_drive = strlen(dir_drive );
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int len_logon_srv = strlen(logon_srv);
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int len_logon_dom = strlen(logon_dom);
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usr->ptr_user_info = 1; /* yes, we're bothering to put USER_INFO data here */
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usr->logon_time = *logon_time;
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usr->logoff_time = *logoff_time;
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usr->kickoff_time = *kickoff_time;
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usr->pass_last_set_time = *pass_last_set_time;
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usr->pass_can_change_time = *pass_can_change_time;
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usr->pass_must_change_time = *pass_must_change_time;
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make_uni_hdr(&(usr->hdr_user_name ), len_user_name , len_user_name , 4);
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make_uni_hdr(&(usr->hdr_full_name ), len_full_name , len_full_name , 4);
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make_uni_hdr(&(usr->hdr_logon_script), len_logon_script, len_logon_script, 4);
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make_uni_hdr(&(usr->hdr_profile_path), len_profile_path, len_profile_path, 4);
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make_uni_hdr(&(usr->hdr_home_dir ), len_home_dir , len_home_dir , 4);
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make_uni_hdr(&(usr->hdr_dir_drive ), len_dir_drive , len_dir_drive , 4);
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usr->logon_count = logon_count;
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usr->bad_pw_count = bad_pw_count;
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usr->user_id = user_id;
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usr->group_id = group_id;
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usr->num_groups = num_groups;
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usr->buffer_groups = 1; /* indicates fill in groups, below, even if there are none */
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usr->user_flgs = user_flgs;
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if (sess_key != NULL)
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{
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memcpy(usr->sess_key, sess_key, sizeof(usr->sess_key));
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}
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else
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{
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bzero(usr->sess_key, sizeof(usr->sess_key));
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}
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make_uni_hdr(&(usr->hdr_logon_srv), len_logon_srv, len_logon_srv, 4);
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make_uni_hdr(&(usr->hdr_logon_dom), len_logon_dom, len_logon_dom, 4);
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usr->buffer_dom_id = dom_sid ? 1 : 0; /* yes, we're bothering to put a domain SID in */
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bzero(usr->padding, sizeof(usr->padding));
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usr->num_other_sids = num_other_sids;
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usr->buffer_other_sids = num_other_sids != 0 ? 1 : 0;
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make_unistr2(&(usr->uni_user_name ), user_name , len_user_name );
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make_unistr2(&(usr->uni_full_name ), full_name , len_full_name );
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make_unistr2(&(usr->uni_logon_script), logon_script, len_logon_script);
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make_unistr2(&(usr->uni_profile_path), profile_path, len_profile_path);
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make_unistr2(&(usr->uni_home_dir ), home_dir , len_home_dir );
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make_unistr2(&(usr->uni_dir_drive ), dir_drive , len_dir_drive );
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usr->num_groups2 = num_groups;
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for (i = 0; i < num_groups; i++)
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{
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usr->gids[i] = gids[i];
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}
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make_unistr2(&(usr->uni_logon_srv), logon_srv, len_logon_srv);
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make_unistr2(&(usr->uni_logon_dom), logon_dom, len_logon_dom);
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make_dom_sid(&(usr->dom_sid), dom_sid);
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make_dom_sid(&(usr->other_sids[0]), other_sids);
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}
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static int lsa_reply_sam_logon(LSA_Q_SAM_LOGON *q_s, char *q, char *base,
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DOM_CRED *srv_cred, LSA_USER_INFO *user_info)
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{
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LSA_R_SAM_LOGON r_s;
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/* XXXX maybe we want to say 'no', reject the client's credentials */
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r_s.buffer_creds = 1; /* yes, we have valid server credentials */
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memcpy(&(r_s.srv_creds), srv_cred, sizeof(r_s.srv_creds));
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/* store the user information, if there is any. */
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r_s.user = user_info;
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if (user_info != NULL && user_info->ptr_user_info != 0)
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{
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r_s.switch_value = 3; /* indicates type of validation user info */
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r_s.status = 0;
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}
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else
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{
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r_s.switch_value = 0; /* don't know what this value is supposed to be */
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r_s.status = 0xC000000|NT_STATUS_NO_SUCH_USER;
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}
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r_s.auth_resp = 1; /* authoritative response */
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/* store the response in the SMB stream */
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q = lsa_io_r_sam_logon(False, &r_s, q, base, 4, 0);
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/* return length of SMB data stored */
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return PTR_DIFF(q, base);
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}
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static int lsa_reply_sam_logoff(LSA_Q_SAM_LOGOFF *q_s, char *q, char *base,
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DOM_CRED *srv_cred,
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uint32 status)
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{
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LSA_R_SAM_LOGOFF r_s;
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/* XXXX maybe we want to say 'no', reject the client's credentials */
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r_s.buffer_creds = 1; /* yes, we have valid server credentials */
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memcpy(&(r_s.srv_creds), srv_cred, sizeof(r_s.srv_creds));
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r_s.status = status;
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/* store the response in the SMB stream */
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q = lsa_io_r_sam_logoff(False, &r_s, q, base, 4, 0);
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/* return length of SMB data stored */
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return PTR_DIFF(q, base);
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}
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static BOOL update_dcinfo(int cnum, uint16 vuid,
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struct dcinfo *dc, DOM_CHAL *clnt_chal, char *mach_acct)
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{
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struct smb_passwd *smb_pass;
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int i;
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unbecome_user();
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smb_pass = get_smbpwnam(mach_acct);
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if (!become_user(cnum, vuid))
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{
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DEBUG(0,("update_dcinfo: become_user failed\n"));
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return False;
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}
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if (smb_pass != NULL)
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{
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memcpy(dc->md4pw, smb_pass->smb_nt_passwd, sizeof(dc->md4pw));
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DEBUG(5,("dc->md4pw(%d) :", sizeof(dc->md4pw)));
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dump_data(5, dc->md4pw, 16);
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}
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else
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{
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/* No such machine account. Should error out here, but we'll
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print and carry on */
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DEBUG(1,("No account in domain for %s\n", mach_acct));
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return False;
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}
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{
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fstring foo;
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for (i = 0; i < 16; i++) sprintf(foo+i*2,"%02x ", dc->md4pw[i]);
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DEBUG(4,("pass %s %s\n", mach_acct, foo));
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}
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/* copy the client credentials */
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memcpy(dc->clnt_chal.data, clnt_chal->data, sizeof(clnt_chal->data));
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memcpy(dc->clnt_cred.data, clnt_chal->data, sizeof(clnt_chal->data));
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/* create a server challenge for the client */
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/* PAXX: set these to random values. */
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/* lkcl: paul, you mentioned that it doesn't really matter much */
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dc->srv_chal.data[0] = 0x11111111;
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dc->srv_chal.data[1] = 0x11111111;
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dc->srv_cred.data[0] = 0x11111111;
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dc->srv_cred.data[1] = 0x11111111;
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/* from client / server challenges and md4 password, generate sess key */
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cred_session_key(&(dc->clnt_chal), &(dc->srv_chal),
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dc->md4pw, dc->sess_key);
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DEBUG(6,("update_dcinfo: %d\n", __LINE__));
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return True;
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}
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static void api_lsa_req_chal( int cnum, uint16 vuid,
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user_struct *vuser,
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char *param, char *data,
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char **rdata, int *rdata_len )
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{
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LSA_Q_REQ_CHAL q_r;
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fstring mach_acct;
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/* grab the challenge... */
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lsa_io_q_req_chal(True, &q_r, data + 0x18, data, 4, 0);
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fstrcpy(mach_acct, unistr2(q_r.uni_logon_clnt.buffer));
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strcat(mach_acct, "$");
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DEBUG(6,("q_r.clnt_chal.data: %lx %lx\n",
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q_r.clnt_chal.data[0], q_r.clnt_chal.data[1]));
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update_dcinfo(cnum, vuid, &(vuser->dc), &(q_r.clnt_chal), mach_acct);
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/* construct reply. return status is always 0x0 */
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*rdata_len = lsa_reply_req_chal(&q_r, *rdata + 0x18, *rdata,
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&(vuser->dc.srv_chal));
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}
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static void api_lsa_auth_2( user_struct *vuser,
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char *param, char *data,
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char **rdata, int *rdata_len )
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{
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LSA_Q_AUTH_2 q_a;
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DOM_CHAL srv_cred;
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UTIME srv_time;
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srv_time.time = 0;
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/* grab the challenge... */
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lsa_io_q_auth_2(True, &q_a, data + 0x18, data, 4, 0);
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/* check that the client credentials are valid */
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cred_assert(&(q_a.clnt_chal), vuser->dc.sess_key,
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&(vuser->dc.clnt_cred), srv_time);
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/* create server challenge for inclusion in the reply */
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cred_create(vuser->dc.sess_key, &(vuser->dc.srv_cred), srv_time, &srv_cred);
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/* copy the received client credentials for use next time */
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memcpy(vuser->dc.clnt_cred.data, &(q_a.clnt_chal.data), sizeof(q_a.clnt_chal.data));
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memcpy(vuser->dc.srv_cred .data, &(q_a.clnt_chal.data), sizeof(q_a.clnt_chal.data));
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/* construct reply. */
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*rdata_len = lsa_reply_auth_2(&q_a, *rdata + 0x18, *rdata,
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&srv_cred, 0x0);
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}
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static BOOL deal_with_credentials(user_struct *vuser,
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DOM_CRED *clnt_cred, DOM_CRED *srv_cred)
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{
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UTIME new_clnt_time;
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uint32 new_cred;
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DEBUG(5,("deal_with_credentials: %d\n", __LINE__));
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/* increment client time by one second */
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new_clnt_time.time = clnt_cred->timestamp.time + 1;
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/* first 4 bytes of the new seed is old client 4 bytes + clnt time + 1 */
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new_cred = IVAL(vuser->dc.clnt_cred.data, 0);
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new_cred += new_clnt_time.time;
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DEBUG(5,("deal_with_credentials: new_cred[0]=%lx\n", new_cred));
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/* doesn't matter that server time is 0 */
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srv_cred->timestamp.time = 0;
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/* check that the client credentials are valid */
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if (!cred_assert(&(clnt_cred->challenge), vuser->dc.sess_key,
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&(vuser->dc.clnt_cred), clnt_cred->timestamp))
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{
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return False;
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}
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DEBUG(5,("deal_with_credentials: new_clnt_time=%lx\n", new_clnt_time.time));
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/* create server credentials for inclusion in the reply */
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cred_create(vuser->dc.sess_key, &(vuser->dc.clnt_cred), new_clnt_time,
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&(srv_cred->challenge));
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DEBUG(5,("deal_with_credentials: clnt_cred[0]=%lx\n",
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vuser->dc.clnt_cred.data[0]));
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/* store new seed in client and server credentials */
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SIVAL(vuser->dc.clnt_cred.data, 0, new_cred);
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SIVAL(vuser->dc.srv_cred .data, 0, new_cred);
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return True;
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}
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static void api_lsa_srv_pwset( user_struct *vuser,
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char *param, char *data,
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char **rdata, int *rdata_len )
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{
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LSA_Q_SRV_PWSET q_a;
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DOM_CRED srv_cred;
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/* grab the challenge and encrypted password ... */
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lsa_io_q_srv_pwset(True, &q_a, data + 0x18, data, 4, 0);
|
|
|
|
/* checks and updates credentials. creates reply credentials */
|
|
deal_with_credentials(vuser, &(q_a.clnt_id.cred), &srv_cred);
|
|
|
|
DEBUG(5,("api_lsa_srv_pwset: %d\n", __LINE__));
|
|
|
|
/* construct reply. always indicate failure. nt keeps going... */
|
|
*rdata_len = lsa_reply_srv_pwset(&q_a, *rdata + 0x18, *rdata,
|
|
&srv_cred,
|
|
NT_STATUS_WRONG_PASSWORD|0xC0000000);
|
|
}
|
|
|
|
|
|
static void api_lsa_sam_logoff( user_struct *vuser,
|
|
char *param, char *data,
|
|
char **rdata, int *rdata_len )
|
|
{
|
|
LSA_Q_SAM_LOGOFF q_l;
|
|
|
|
DOM_CRED srv_cred;
|
|
|
|
/* grab the challenge... */
|
|
lsa_io_q_sam_logoff(True, &q_l, data + 0x18, data, 4, 0);
|
|
|
|
/* checks and updates credentials. creates reply credentials */
|
|
deal_with_credentials(vuser, &(q_l.sam_id.client.cred), &srv_cred);
|
|
|
|
/* construct reply. always indicate success */
|
|
*rdata_len = lsa_reply_sam_logoff(&q_l, *rdata + 0x18, *rdata,
|
|
&srv_cred,
|
|
0x0);
|
|
}
|
|
|
|
|
|
static void api_lsa_sam_logon( user_struct *vuser,
|
|
char *param, char *data,
|
|
char **rdata, int *rdata_len )
|
|
{
|
|
LSA_Q_SAM_LOGON q_l;
|
|
LSA_USER_INFO usr_info;
|
|
|
|
DOM_CRED srv_creds;
|
|
|
|
lsa_io_q_sam_logon(True, &q_l, data + 0x18, data, 4, 0);
|
|
|
|
/* checks and updates credentials. creates reply credentials */
|
|
deal_with_credentials(vuser, &(q_l.sam_id.client.cred), &srv_creds);
|
|
|
|
if (vuser != NULL)
|
|
{
|
|
NTTIME dummy_time;
|
|
pstring logon_script;
|
|
pstring profile_path;
|
|
pstring home_dir;
|
|
pstring home_drive;
|
|
pstring my_name;
|
|
pstring my_workgroup;
|
|
pstring dom_sid;
|
|
extern pstring myname;
|
|
|
|
dummy_time.low = 0xffffffff;
|
|
dummy_time.high = 0x7fffffff;
|
|
|
|
get_myname(myname, NULL);
|
|
|
|
pstrcpy(samlogon_user, unistr2(q_l.sam_id.auth.id1.uni_user_name.buffer));
|
|
|
|
/* hack to get standard_sub_basic() to use the sam logon username */
|
|
sam_logon_in_ssb = True;
|
|
|
|
pstrcpy(logon_script, lp_logon_script());
|
|
pstrcpy(profile_path, lp_logon_path ());
|
|
pstrcpy(dom_sid , lp_domainsid ());
|
|
pstrcpy(my_workgroup, lp_workgroup ());
|
|
|
|
pstrcpy(my_name , myname );
|
|
strupper(my_name);
|
|
|
|
pstrcpy(home_drive , "a:" );
|
|
|
|
#if (defined(NETGROUP) && defined(AUTOMOUNT))
|
|
pstrcpy(home_dir , vuser->home_share);
|
|
#else
|
|
pstrcpy(home_dir , "\\\\%L\\%U");
|
|
#endif
|
|
standard_sub_basic(home_dir);
|
|
|
|
sam_logon_in_ssb = False;
|
|
|
|
make_lsa_user_info(&usr_info,
|
|
|
|
&dummy_time, /* logon_time */
|
|
&dummy_time, /* logoff_time */
|
|
&dummy_time, /* kickoff_time */
|
|
&dummy_time, /* pass_last_set_time */
|
|
&dummy_time, /* pass_can_change_time */
|
|
&dummy_time, /* pass_must_change_time */
|
|
|
|
samlogon_user, /* user_name */
|
|
vuser->real_name, /* full_name */
|
|
logon_script, /* logon_script */
|
|
profile_path, /* profile_path */
|
|
home_dir, /* home_dir */
|
|
home_drive, /* dir_drive */
|
|
|
|
0, /* logon_count */
|
|
0, /* bad_pw_count */
|
|
|
|
vuser->uid, /* uint32 user_id */
|
|
vuser->gid, /* uint32 group_id */
|
|
0, /* uint32 num_groups */
|
|
NULL, /* DOM_GID *gids */
|
|
0x20, /* uint32 user_flgs */
|
|
|
|
NULL, /* char sess_key[16] */
|
|
|
|
my_name, /* char *logon_srv */
|
|
my_workgroup, /* char *logon_dom */
|
|
|
|
dom_sid, /* char *dom_sid */
|
|
NULL); /* char *other_sids */
|
|
}
|
|
else
|
|
{
|
|
usr_info.ptr_user_info = 0;
|
|
}
|
|
|
|
*rdata_len = lsa_reply_sam_logon(&q_l, *rdata + 0x18, *rdata,
|
|
&srv_creds, &usr_info);
|
|
}
|
|
|
|
|
|
BOOL api_netlogrpcTNP(int cnum,int uid, char *param,char *data,
|
|
int mdrcnt,int mprcnt,
|
|
char **rdata,char **rparam,
|
|
int *rdata_len,int *rparam_len)
|
|
{
|
|
uint16 opnum = SVAL(data,22);
|
|
int pkttype = CVAL(data, 2);
|
|
|
|
user_struct *vuser;
|
|
|
|
if (pkttype == 0x0b) /* RPC BIND */
|
|
{
|
|
DEBUG(4,("netlogon rpc bind %x\n",pkttype));
|
|
LsarpcTNP1(data,rdata,rdata_len);
|
|
return True;
|
|
}
|
|
|
|
DEBUG(4,("netlogon TransactNamedPipe op %x\n",opnum));
|
|
|
|
if ((vuser = get_valid_user_struct(uid)) == NULL) return False;
|
|
|
|
DEBUG(3,("Username of UID %d is %s\n", vuser->uid, vuser->name));
|
|
#if defined(NETGROUP) && defined(AUTOMOUNT)
|
|
DEBUG(3,("HOMESHR for %s is %s\n", vuser->name, vuser->home_share));
|
|
#endif
|
|
|
|
switch (opnum)
|
|
{
|
|
case LSA_REQCHAL:
|
|
{
|
|
DEBUG(3,("LSA_REQCHAL\n"));
|
|
api_lsa_req_chal(cnum, uid, vuser, param, data, rdata, rdata_len);
|
|
make_rpc_reply(data, *rdata, *rdata_len);
|
|
break;
|
|
}
|
|
|
|
case LSA_AUTH2:
|
|
{
|
|
DEBUG(3,("LSA_AUTH2\n"));
|
|
api_lsa_auth_2(vuser, param, data, rdata, rdata_len);
|
|
make_rpc_reply(data, *rdata, *rdata_len);
|
|
break;
|
|
}
|
|
|
|
case LSA_SRVPWSET:
|
|
{
|
|
DEBUG(3,("LSA_SRVPWSET\n"));
|
|
api_lsa_srv_pwset(vuser, param, data, rdata, rdata_len);
|
|
make_rpc_reply(data, *rdata, *rdata_len);
|
|
break;
|
|
}
|
|
|
|
case LSA_SAMLOGON:
|
|
{
|
|
DEBUG(3,("LSA_SAMLOGON\n"));
|
|
api_lsa_sam_logon(vuser, param, data, rdata, rdata_len);
|
|
make_rpc_reply(data, *rdata, *rdata_len);
|
|
break;
|
|
}
|
|
|
|
case LSA_SAMLOGOFF:
|
|
{
|
|
DEBUG(3,("LSA_SAMLOGOFF\n"));
|
|
api_lsa_sam_logoff(vuser, param, data, rdata, rdata_len);
|
|
break;
|
|
}
|
|
|
|
default:
|
|
{
|
|
DEBUG(4, ("**** netlogon, unknown code: %lx\n", opnum));
|
|
break;
|
|
}
|
|
}
|
|
|
|
return True;
|
|
}
|
|
|
|
#endif /* NTDOMAIN */
|