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364 lines
10 KiB
C
364 lines
10 KiB
C
/*
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Unix SMB/CIFS implementation.
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Manage connections_struct structures
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Copyright (C) Andrew Tridgell 1998
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Copyright (C) Alexander Bokovoy 2002
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Copyright (C) Jeremy Allison 2010
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This program is free software; you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation; either version 3 of the License, or
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(at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program. If not, see <http://www.gnu.org/licenses/>.
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*/
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#include "includes.h"
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#include "smbd/smbd.h"
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#include "smbd/globals.h"
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#include "lib/util/bitmap.h"
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/* The connections bitmap is expanded in increments of BITMAP_BLOCK_SZ. The
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* maximum size of the bitmap is the largest positive integer, but you will hit
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* the "max connections" limit, looong before that.
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*/
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#define BITMAP_BLOCK_SZ 128
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/****************************************************************************
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Init the conn structures.
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****************************************************************************/
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void conn_init(struct smbd_server_connection *sconn)
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{
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sconn->smb1.tcons.Connections = NULL;
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sconn->smb1.tcons.bmap = bitmap_talloc(sconn, BITMAP_BLOCK_SZ);
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}
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/****************************************************************************
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Return the number of open connections.
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****************************************************************************/
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int conn_num_open(struct smbd_server_connection *sconn)
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{
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return sconn->num_tcons_open;
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}
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/****************************************************************************
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Check if a snum is in use.
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****************************************************************************/
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bool conn_snum_used(struct smbd_server_connection *sconn,
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int snum)
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{
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if (sconn->using_smb2) {
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/* SMB2 */
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struct smbd_smb2_session *sess;
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for (sess = sconn->smb2.sessions.list; sess; sess = sess->next) {
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struct smbd_smb2_tcon *ptcon;
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for (ptcon = sess->tcons.list; ptcon; ptcon = ptcon->next) {
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if (ptcon->compat_conn &&
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ptcon->compat_conn->params &&
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(ptcon->compat_conn->params->service = snum)) {
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return true;
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}
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}
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}
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} else {
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/* SMB1 */
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connection_struct *conn;
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for (conn=sconn->smb1.tcons.Connections;conn;conn=conn->next) {
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if (conn->params->service == snum) {
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return true;
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}
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}
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}
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return false;
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}
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/****************************************************************************
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Find a conn given a cnum.
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****************************************************************************/
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connection_struct *conn_find(struct smbd_server_connection *sconn,unsigned cnum)
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{
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if (sconn->using_smb2) {
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/* SMB2 */
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struct smbd_smb2_session *sess;
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for (sess = sconn->smb2.sessions.list; sess; sess = sess->next) {
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struct smbd_smb2_tcon *ptcon;
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for (ptcon = sess->tcons.list; ptcon; ptcon = ptcon->next) {
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if (ptcon->compat_conn &&
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ptcon->compat_conn->cnum == cnum) {
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return ptcon->compat_conn;
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}
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}
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}
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} else {
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/* SMB1 */
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int count=0;
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connection_struct *conn;
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for (conn=sconn->smb1.tcons.Connections;conn;conn=conn->next,count++) {
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if (conn->cnum == cnum) {
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if (count > 10) {
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DLIST_PROMOTE(sconn->smb1.tcons.Connections,
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conn);
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}
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return conn;
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}
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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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Find first available connection slot, starting from a random position.
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The randomisation stops problems with the server dieing and clients
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thinking the server is still available.
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****************************************************************************/
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connection_struct *conn_new(struct smbd_server_connection *sconn)
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{
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connection_struct *conn;
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int i;
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int find_offset = 1;
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if (sconn->using_smb2) {
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/* SMB2 */
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if (!(conn=talloc_zero(NULL, connection_struct)) ||
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!(conn->params = talloc(conn, struct share_params))) {
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DEBUG(0,("TALLOC_ZERO() failed!\n"));
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TALLOC_FREE(conn);
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return NULL;
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}
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conn->sconn = sconn;
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return conn;
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}
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/* SMB1 */
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find_again:
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i = bitmap_find(sconn->smb1.tcons.bmap, find_offset);
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if (i == -1) {
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/* Expand the connections bitmap. */
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int oldsz = sconn->smb1.tcons.bmap->n;
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int newsz = sconn->smb1.tcons.bmap->n +
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BITMAP_BLOCK_SZ;
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struct bitmap * nbmap;
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if (newsz <= oldsz) {
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/* Integer wrap. */
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DEBUG(0,("ERROR! Out of connection structures\n"));
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return NULL;
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}
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DEBUG(4,("resizing connections bitmap from %d to %d\n",
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oldsz, newsz));
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nbmap = bitmap_talloc(sconn, newsz);
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if (!nbmap) {
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DEBUG(0,("ERROR! malloc fail.\n"));
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return NULL;
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}
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bitmap_copy(nbmap, sconn->smb1.tcons.bmap);
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TALLOC_FREE(sconn->smb1.tcons.bmap);
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sconn->smb1.tcons.bmap = nbmap;
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find_offset = oldsz; /* Start next search in the new portion. */
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goto find_again;
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}
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/* The bitmap position is used below as the connection number
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* conn->cnum). This ends up as the TID field in the SMB header,
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* which is limited to 16 bits (we skip 0xffff which is the
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* NULL TID).
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*/
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if (i > 65534) {
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DEBUG(0, ("Maximum connection limit reached\n"));
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return NULL;
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}
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if (!(conn=talloc_zero(NULL, connection_struct)) ||
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!(conn->params = talloc(conn, struct share_params))) {
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DEBUG(0,("TALLOC_ZERO() failed!\n"));
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TALLOC_FREE(conn);
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return NULL;
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}
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conn->sconn = sconn;
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conn->cnum = i;
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conn->force_group_gid = (gid_t)-1;
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bitmap_set(sconn->smb1.tcons.bmap, i);
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sconn->num_tcons_open++;
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string_set(&conn->connectpath,"");
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string_set(&conn->origpath,"");
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DLIST_ADD(sconn->smb1.tcons.Connections, conn);
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return conn;
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}
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/****************************************************************************
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Clear a vuid out of the connection's vuid cache
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****************************************************************************/
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static void conn_clear_vuid_cache(connection_struct *conn, uint16_t vuid)
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{
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int i;
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for (i=0; i<VUID_CACHE_SIZE; i++) {
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struct vuid_cache_entry *ent;
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ent = &conn->vuid_cache.array[i];
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if (ent->vuid == vuid) {
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ent->vuid = UID_FIELD_INVALID;
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/*
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* We need to keep conn->session_info around
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* if it's equal to ent->session_info as a SMBulogoff
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* is often followed by a SMBtdis (with an invalid
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* vuid). The debug code (or regular code in
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* vfs_full_audit) wants to refer to the
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* conn->session_info pointer to print debug
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* statements. Theoretically this is a bug,
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* as once the vuid is gone the session_info
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* on the conn struct isn't valid any more,
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* but there's enough code that assumes
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* conn->session_info is never null that
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* it's easier to hold onto the old pointer
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* until we get a new sessionsetupX.
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* As everything is hung off the
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* conn pointer as a talloc context we're not
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* leaking memory here. See bug #6315. JRA.
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*/
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if (conn->session_info == ent->session_info) {
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ent->session_info = NULL;
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} else {
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TALLOC_FREE(ent->session_info);
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}
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ent->read_only = False;
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}
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}
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}
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/****************************************************************************
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Clear a vuid out of the validity cache, and as the 'owner' of a connection.
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Called from invalidate_vuid()
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****************************************************************************/
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void conn_clear_vuid_caches(struct smbd_server_connection *sconn,uint16_t vuid)
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{
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connection_struct *conn;
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if (sconn->using_smb2) {
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/* SMB2 */
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struct smbd_smb2_session *sess;
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for (sess = sconn->smb2.sessions.list; sess; sess = sess->next) {
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struct smbd_smb2_tcon *ptcon;
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for (ptcon = sess->tcons.list; ptcon; ptcon = ptcon->next) {
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if (ptcon->compat_conn) {
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if (ptcon->compat_conn->vuid == vuid) {
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ptcon->compat_conn->vuid = UID_FIELD_INVALID;
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}
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conn_clear_vuid_cache(ptcon->compat_conn, vuid);
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}
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}
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}
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} else {
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/* SMB1 */
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for (conn=sconn->smb1.tcons.Connections;conn;conn=conn->next) {
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if (conn->vuid == vuid) {
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conn->vuid = UID_FIELD_INVALID;
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}
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conn_clear_vuid_cache(conn, vuid);
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}
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}
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}
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/****************************************************************************
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Free a conn structure - internal part.
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****************************************************************************/
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static void conn_free_internal(connection_struct *conn)
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{
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vfs_handle_struct *handle = NULL, *thandle = NULL;
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struct trans_state *state = NULL;
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/* Free vfs_connection_struct */
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handle = conn->vfs_handles;
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while(handle) {
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thandle = handle->next;
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DLIST_REMOVE(conn->vfs_handles, handle);
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if (handle->free_data)
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handle->free_data(&handle->data);
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handle = thandle;
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}
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/* Free any pending transactions stored on this conn. */
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for (state = conn->pending_trans; state; state = state->next) {
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/* state->setup is a talloc child of state. */
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SAFE_FREE(state->param);
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SAFE_FREE(state->data);
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}
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free_namearray(conn->veto_list);
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free_namearray(conn->hide_list);
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free_namearray(conn->veto_oplock_list);
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free_namearray(conn->aio_write_behind_list);
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string_free(&conn->connectpath);
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string_free(&conn->origpath);
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ZERO_STRUCTP(conn);
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talloc_destroy(conn);
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}
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/****************************************************************************
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Free a conn structure.
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****************************************************************************/
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void conn_free(connection_struct *conn)
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{
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if (conn->sconn == NULL) {
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conn_free_internal(conn);
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return;
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}
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if (conn->sconn->using_smb2) {
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/* SMB2 */
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conn_free_internal(conn);
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return;
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}
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/* SMB1 */
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DLIST_REMOVE(conn->sconn->smb1.tcons.Connections, conn);
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if (conn->sconn->smb1.tcons.bmap != NULL) {
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/*
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* Can be NULL for fake connections created by
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* create_conn_struct()
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*/
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bitmap_clear(conn->sconn->smb1.tcons.bmap, conn->cnum);
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}
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SMB_ASSERT(conn->sconn->num_tcons_open > 0);
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conn->sconn->num_tcons_open--;
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conn_free_internal(conn);
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}
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