mirror of
https://github.com/samba-team/samba.git
synced 2024-12-29 11:21:54 +03:00
814e987c62
I think (my changes haven't affected this I believe). Initial support on the
server side for smbclient. Still doesn't work for w2k clients I think...
Work in progress..... (don't change).
Jeremy.
(This used to be commit e5714edc23
)
510 lines
14 KiB
C
510 lines
14 KiB
C
/*
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Unix SMB/CIFS implementation.
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Password and authentication handling
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Copyright (C) Andrew Tridgell 1992-1998
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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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/* users from session setup */
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static pstring session_users="";
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/* this holds info on user ids that are already validated for this VC */
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static user_struct *validated_users;
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static int next_vuid = VUID_OFFSET;
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static int num_validated_vuids;
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/****************************************************************************
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Check if a uid has been validated, and return an pointer to the user_struct
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if it has. NULL if not. vuid is biased by an offset. This allows us to
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tell random client vuid's (normally zero) from valid vuids.
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****************************************************************************/
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user_struct *get_valid_user_struct(uint16 vuid)
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{
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user_struct *usp;
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int count=0;
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if (vuid == UID_FIELD_INVALID)
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return NULL;
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for (usp=validated_users;usp;usp=usp->next,count++) {
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if (vuid == usp->vuid) {
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if (count > 10) {
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DLIST_PROMOTE(validated_users, usp);
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}
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return usp;
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}
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}
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return NULL;
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}
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/****************************************************************************
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Invalidate a uid.
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****************************************************************************/
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void invalidate_vuid(uint16 vuid)
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{
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user_struct *vuser = get_valid_user_struct(vuid);
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if (vuser == NULL)
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return;
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SAFE_FREE(vuser->homedir);
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SAFE_FREE(vuser->unix_homedir);
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SAFE_FREE(vuser->logon_script);
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session_yield(vuser);
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SAFE_FREE(vuser->session_keystr);
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free_server_info(&vuser->server_info);
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DLIST_REMOVE(validated_users, vuser);
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/* clear the vuid from the 'cache' on each connection, and
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from the vuid 'owner' of connections */
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conn_clear_vuid_cache(vuid);
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SAFE_FREE(vuser->groups);
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delete_nt_token(&vuser->nt_user_token);
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SAFE_FREE(vuser);
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num_validated_vuids--;
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}
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/****************************************************************************
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Invalidate all vuid entries for this process.
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****************************************************************************/
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void invalidate_all_vuids(void)
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{
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user_struct *usp, *next=NULL;
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for (usp=validated_users;usp;usp=next) {
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next = usp->next;
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invalidate_vuid(usp->vuid);
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}
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}
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/**
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* register that a valid login has been performed, establish 'session'.
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* @param server_info The token returned from the authentication process.
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* (now 'owned' by register_vuid)
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*
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* @return Newly allocated vuid, biased by an offset. (This allows us to
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* tell random client vuid's (normally zero) from valid vuids.)
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*
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*/
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int register_vuid(auth_serversupplied_info *server_info, DATA_BLOB response_blob, const char *smb_name)
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{
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user_struct *vuser = NULL;
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/* Ensure no vuid gets registered in share level security. */
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if(lp_security() == SEC_SHARE)
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return UID_FIELD_INVALID;
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/* Limit allowed vuids to 16bits - VUID_OFFSET. */
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if (num_validated_vuids >= 0xFFFF-VUID_OFFSET)
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return UID_FIELD_INVALID;
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if((vuser = (user_struct *)malloc( sizeof(user_struct) )) == NULL) {
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DEBUG(0,("Failed to malloc users struct!\n"));
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return UID_FIELD_INVALID;
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}
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ZERO_STRUCTP(vuser);
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/* Allocate a free vuid. Yes this is a linear search... :-) */
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while( get_valid_user_struct(next_vuid) != NULL ) {
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next_vuid++;
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/* Check for vuid wrap. */
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if (next_vuid == UID_FIELD_INVALID)
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next_vuid = VUID_OFFSET;
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}
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DEBUG(10,("register_vuid: allocated vuid = %u\n", (unsigned int)next_vuid ));
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vuser->vuid = next_vuid;
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/* the next functions should be done by a SID mapping system (SMS) as
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* the new real sam db won't have reference to unix uids or gids
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*/
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vuser->uid = server_info->uid;
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vuser->gid = server_info->gid;
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vuser->n_groups = server_info->n_groups;
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if (vuser->n_groups) {
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if (!(vuser->groups = memdup(server_info->groups, sizeof(gid_t) * vuser->n_groups))) {
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DEBUG(0,("register_vuid: failed to memdup vuser->groups\n"));
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free(vuser);
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free_server_info(&server_info);
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return UID_FIELD_INVALID;
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}
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}
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vuser->guest = server_info->guest;
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fstrcpy(vuser->user.unix_name, server_info->unix_name);
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/* This is a potentially untrusted username */
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alpha_strcpy(vuser->user.smb_name, smb_name, ". _-$", sizeof(vuser->user.smb_name));
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fstrcpy(vuser->user.domain, pdb_get_domain(server_info->sam_account));
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fstrcpy(vuser->user.full_name, pdb_get_fullname(server_info->sam_account));
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{
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/* Keep the homedir handy */
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const char *homedir = pdb_get_homedir(server_info->sam_account);
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const char *logon_script = pdb_get_logon_script(server_info->sam_account);
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if (!IS_SAM_DEFAULT(server_info->sam_account, PDB_UNIXHOMEDIR)) {
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const char *unix_homedir = pdb_get_unix_homedir(server_info->sam_account);
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if (unix_homedir) {
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vuser->unix_homedir = smb_xstrdup(unix_homedir);
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}
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} else {
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struct passwd *passwd = getpwnam_alloc(vuser->user.unix_name);
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if (passwd) {
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vuser->unix_homedir = smb_xstrdup(passwd->pw_dir);
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passwd_free(&passwd);
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}
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}
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if (homedir) {
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vuser->homedir = smb_xstrdup(homedir);
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}
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if (logon_script) {
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vuser->logon_script = smb_xstrdup(logon_script);
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}
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}
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memcpy(vuser->session_key, server_info->session_key, sizeof(vuser->session_key));
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DEBUG(10,("register_vuid: (%u,%u) %s %s %s guest=%d\n",
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(unsigned int)vuser->uid,
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(unsigned int)vuser->gid,
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vuser->user.unix_name, vuser->user.smb_name, vuser->user.domain, vuser->guest ));
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DEBUG(3, ("User name: %s\tReal name: %s\n",vuser->user.unix_name,vuser->user.full_name));
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if (server_info->ptok) {
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vuser->nt_user_token = dup_nt_token(server_info->ptok);
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} else {
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DEBUG(1, ("server_info does not contain a user_token - cannot continue\n"));
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free_server_info(&server_info);
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SAFE_FREE(vuser->homedir);
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SAFE_FREE(vuser->unix_homedir);
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SAFE_FREE(vuser->logon_script);
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SAFE_FREE(vuser);
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return UID_FIELD_INVALID;
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}
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/* use this to keep tabs on all our info from the authentication */
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vuser->server_info = server_info;
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DEBUG(3,("UNIX uid %d is UNIX user %s, and will be vuid %u\n",(int)vuser->uid,vuser->user.unix_name, vuser->vuid));
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next_vuid++;
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num_validated_vuids++;
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DLIST_ADD(validated_users, vuser);
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if (!session_claim(vuser)) {
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DEBUG(1,("Failed to claim session for vuid=%d\n", vuser->vuid));
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invalidate_vuid(vuser->vuid);
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return -1;
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}
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/* Register a home dir service for this user */
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if ((!vuser->guest) && vuser->unix_homedir && *(vuser->unix_homedir)) {
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DEBUG(3, ("Adding/updating homes service for user '%s' using home directory: '%s'\n",
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vuser->user.unix_name, vuser->unix_homedir));
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vuser->homes_snum = add_home_service(vuser->user.unix_name, vuser->user.unix_name, vuser->unix_homedir);
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} else {
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vuser->homes_snum = -1;
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}
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if (lp_server_signing() && !vuser->guest && !srv_is_signing_active()) {
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/* Try and turn on server signing on the first non-guest sessionsetup. */
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srv_set_signing(vuser->session_key, response_blob);
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}
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return vuser->vuid;
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}
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/****************************************************************************
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Add a name to the session users list.
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****************************************************************************/
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void add_session_user(const char *user)
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{
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fstring suser;
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struct passwd *passwd;
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if (!(passwd = Get_Pwnam(user)))
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return;
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fstrcpy(suser,passwd->pw_name);
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if (suser && *suser && !in_list(suser,session_users,False)) {
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if (strlen(suser) + strlen(session_users) + 2 >= sizeof(pstring)) {
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DEBUG(1,("Too many session users??\n"));
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} else {
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pstrcat(session_users," ");
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pstrcat(session_users,suser);
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}
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}
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}
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/****************************************************************************
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Check if a username is valid.
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****************************************************************************/
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BOOL user_ok(const char *user,int snum, gid_t *groups, size_t n_groups)
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{
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char **valid, **invalid;
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BOOL ret;
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valid = invalid = NULL;
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ret = True;
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if (lp_invalid_users(snum)) {
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str_list_copy(&invalid, lp_invalid_users(snum));
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if (invalid && str_list_substitute(invalid, "%S", lp_servicename(snum))) {
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ret = !user_in_list(user, (const char **)invalid, groups, n_groups);
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}
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}
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if (invalid)
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str_list_free (&invalid);
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if (ret && lp_valid_users(snum)) {
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str_list_copy(&valid, lp_valid_users(snum));
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if (valid && str_list_substitute(valid, "%S", lp_servicename(snum))) {
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ret = user_in_list(user, (const char **)valid, groups, n_groups);
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}
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}
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if (valid)
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str_list_free (&valid);
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if (ret && lp_onlyuser(snum)) {
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char **user_list = str_list_make (lp_username(snum), NULL);
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if (user_list && str_list_substitute(user_list, "%S", lp_servicename(snum))) {
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ret = user_in_list(user, (const char **)user_list, groups, n_groups);
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}
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if (user_list) str_list_free (&user_list);
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}
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return(ret);
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}
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/****************************************************************************
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Validate a group username entry. Return the username or NULL.
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****************************************************************************/
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static char *validate_group(char *group, DATA_BLOB password,int snum)
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{
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#ifdef HAVE_NETGROUP
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{
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char *host, *user, *domain;
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setnetgrent(group);
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while (getnetgrent(&host, &user, &domain)) {
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if (user) {
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if (user_ok(user, snum, NULL, 0) &&
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password_ok(user,password)) {
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endnetgrent();
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return(user);
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}
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}
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}
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endnetgrent();
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}
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#endif
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#ifdef HAVE_GETGRENT
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{
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struct group *gptr;
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setgrent();
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while ((gptr = (struct group *)getgrent())) {
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if (strequal(gptr->gr_name,group))
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break;
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}
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/*
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* As user_ok can recurse doing a getgrent(), we must
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* copy the member list into a pstring on the stack before
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* use. Bug pointed out by leon@eatworms.swmed.edu.
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*/
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if (gptr) {
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pstring member_list;
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char *member;
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size_t copied_len = 0;
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int i;
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*member_list = '\0';
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member = member_list;
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for(i = 0; gptr->gr_mem && gptr->gr_mem[i]; i++) {
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size_t member_len = strlen(gptr->gr_mem[i]) + 1;
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if( copied_len + member_len < sizeof(pstring)) {
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DEBUG(10,("validate_group: = gr_mem = %s\n", gptr->gr_mem[i]));
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safe_strcpy(member, gptr->gr_mem[i], sizeof(pstring) - copied_len - 1);
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copied_len += member_len;
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member += copied_len;
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} else {
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*member = '\0';
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}
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}
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endgrent();
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member = member_list;
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while (*member) {
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static fstring name;
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fstrcpy(name,member);
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if (user_ok(name,snum, NULL, 0) &&
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password_ok(name,password)) {
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endgrent();
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return(&name[0]);
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}
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DEBUG(10,("validate_group = member = %s\n", member));
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member += strlen(member) + 1;
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}
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} else {
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endgrent();
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return NULL;
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}
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}
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#endif
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return(NULL);
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}
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/****************************************************************************
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Check for authority to login to a service with a given username/password.
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Note this is *NOT* used when logging on using sessionsetup_and_X.
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****************************************************************************/
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BOOL authorise_login(int snum, fstring user, DATA_BLOB password,
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BOOL *guest)
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{
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BOOL ok = False;
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#if DEBUG_PASSWORD
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DEBUG(100,("authorise_login: checking authorisation on user=%s pass=%s\n",
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user,password.data));
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#endif
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*guest = False;
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/* there are several possibilities:
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1) login as the given user with given password
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2) login as a previously registered username with the given password
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3) login as a session list username with the given password
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4) login as a previously validated user/password pair
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5) login as the "user =" user with given password
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6) login as the "user =" user with no password (guest connection)
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7) login as guest user with no password
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if the service is guest_only then steps 1 to 5 are skipped
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*/
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/* now check the list of session users */
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if (!ok) {
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char *auser;
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char *user_list = strdup(session_users);
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if (!user_list)
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return(False);
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for (auser=strtok(user_list,LIST_SEP); !ok && auser;
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auser = strtok(NULL,LIST_SEP)) {
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fstring user2;
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fstrcpy(user2,auser);
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if (!user_ok(user2,snum, NULL, 0))
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continue;
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if (password_ok(user2,password)) {
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ok = True;
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fstrcpy(user,user2);
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DEBUG(3,("authorise_login: ACCEPTED: session list username (%s) \
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and given password ok\n", user));
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}
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}
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SAFE_FREE(user_list);
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}
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/* check the user= fields and the given password */
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if (!ok && lp_username(snum)) {
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char *auser;
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pstring user_list;
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pstrcpy(user_list,lp_username(snum));
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pstring_sub(user_list,"%S",lp_servicename(snum));
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for (auser=strtok(user_list,LIST_SEP); auser && !ok;
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auser = strtok(NULL,LIST_SEP)) {
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if (*auser == '@') {
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auser = validate_group(auser+1,password,snum);
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if (auser) {
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ok = True;
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fstrcpy(user,auser);
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DEBUG(3,("authorise_login: ACCEPTED: group username \
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and given password ok (%s)\n", user));
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}
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} else {
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fstring user2;
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fstrcpy(user2,auser);
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if (user_ok(user2,snum, NULL, 0) && password_ok(user2,password)) {
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ok = True;
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fstrcpy(user,user2);
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DEBUG(3,("authorise_login: ACCEPTED: user list username \
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and given password ok (%s)\n", user));
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}
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}
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}
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}
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/* check for a normal guest connection */
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if (!ok && GUEST_OK(snum)) {
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fstring guestname;
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fstrcpy(guestname,lp_guestaccount());
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if (Get_Pwnam(guestname)) {
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fstrcpy(user,guestname);
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ok = True;
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DEBUG(3,("authorise_login: ACCEPTED: guest account and guest ok (%s)\n",
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user));
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} else {
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DEBUG(0,("authorise_login: Invalid guest account %s??\n",guestname));
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}
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*guest = True;
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}
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if (ok && !user_ok(user, snum, NULL, 0)) {
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DEBUG(0,("authorise_login: rejected invalid user %s\n",user));
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ok = False;
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}
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return(ok);
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}
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