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/*
Unix SMB/Netbios implementation.
Version 2
SMB agent/socket plugin
Copyright (C) Andrew Tridgell 1999
This program is free software; you can redistribute it and/or modify
it under the terms of the GNU General Public License as published by
the Free Software Foundation; either version 2 of the License, or
(at your option) any later version.
This program is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with this program; if not, write to the Free Software
Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
*/
#include "includes.h"
#include "smb.h"
#define SECURITY_MASK 0
#define SECURITY_SET 0
/* this forces non-unicode */
#define CAPABILITY_MASK CAP_UNICODE
#define CAPABILITY_SET 0
/* and non-unicode for the client too */
#define CLI_CAPABILITY_MASK CAP_UNICODE
#define CLI_CAPABILITY_SET 0
static char packet[BUFFER_SIZE];
extern int DEBUGLEVEL;
struct sock_redir
{
int c;
int s;
int mid_offset;
struct cli_state *n;
};
static uint32 num_socks = 0;
static struct sock_redir **socks = NULL;
static uint16 mid_offset = 0x0;
/****************************************************************************
terminate sockent connection
****************************************************************************/
static void sock_redir_free(struct sock_redir *sock)
{
close(sock->c);
sock->c = -1;
if (sock->n != NULL)
{
sock->n->fd = sock->s;
cli_net_use_del(sock->n->desthost, &sock->n->usr,
False, NULL);
sock->n = NULL;
}
free(sock);
}
/****************************************************************************
free a sockent array
****************************************************************************/
static void free_sock_array(uint32 num_entries, struct sock_redir **entries)
{
void(*fn)(void*) = (void(*)(void*))&sock_redir_free;
free_void_array(num_entries, (void**)entries, *fn);
}
/****************************************************************************
add a sockent state to the array
****************************************************************************/
static struct sock_redir* add_sock_to_array(uint32 *len,
struct sock_redir ***array,
struct sock_redir *sock)
{
int i;
for (i = 0; i < num_socks; i++)
{
if (socks[i] == NULL)
{
socks[i] = sock;
return sock;
}
}
return (struct sock_redir*)add_item_to_array(len,
(void***)array, (void*)sock);
}
/****************************************************************************
initiate sockent array
****************************************************************************/
void init_sock_redir(void)
{
socks = NULL;
num_socks = 0;
}
/****************************************************************************
terminate sockent array
****************************************************************************/
void free_sock_redir(void)
{
free_sock_array(num_socks, socks);
init_sock_redir();
}
/****************************************************************************
create a new sockent state from user credentials
****************************************************************************/
static struct sock_redir *sock_redir_get(int fd)
{
struct sock_redir *sock = (struct sock_redir*)malloc(sizeof(*sock));
if (sock == NULL)
{
return NULL;
}
ZERO_STRUCTP(sock);
sock->c = fd;
sock->n = NULL;
sock->mid_offset = mid_offset;
DEBUG(10,("sock_redir_get:\tfd:\t%d\tmidoff:\t%d\n", fd, mid_offset));
return sock;
}
/****************************************************************************
init sock state
****************************************************************************/
static void sock_add(int fd)
{
struct sock_redir *sock;
sock = sock_redir_get(fd);
if (sock != NULL)
{
add_sock_to_array(&num_socks, &socks, sock);
}
}
/****************************************************************************
delete a sockent state
****************************************************************************/
static BOOL sock_del(int fd)
{
int i;
for (i = 0; i < num_socks; i++)
{
if (socks[i] == NULL) continue;
if (socks[i]->c == fd)
{
sock_redir_free(socks[i]);
socks[i] = NULL;
return True;
}
}
return False;
}
static struct cli_state *init_client_connection(int c)
{
pstring buf;
uchar ntpw[16];
uchar lmpw[16];
fstring srv_name;
struct user_credentials usr;
char *p = buf;
int rl;
uint32 len;
uint16 version;
uint16 command;
BOOL new_con = False;
ZERO_STRUCT(usr);
DEBUG(10,("first request\n"));
rl = read(c, &buf, sizeof(len));
if (rl != sizeof(len))
{
DEBUG(0,("Unable to read length\n"));
dump_data(0, buf, sizeof(len));
return NULL;
}
len = IVAL(buf, 0);
if (len > sizeof(buf))
{
DEBUG(0,("length %d too long\n", len));
return NULL;
}
rl = read(c, buf, len);
if (rl < 0)
{
DEBUG(0,("Unable to read from connection\n"));
return NULL;
}
#ifdef DEBUG_PASSWORD
dump_data(100, buf, rl);
#endif
version = SVAL(p, 0);
p += 2;
command = SVAL(p, 0);
p += 2;
fstrcpy(srv_name, p);
p = skip_string(p, 1);
fstrcpy(usr.user_name, p);
p = skip_string(p, 1);
fstrcpy(usr.domain, p);
p = skip_string(p, 1);
if (PTR_DIFF(p, buf) < rl)
{
memcpy(lmpw, p, 16);
p += 16;
memcpy(ntpw, p, 16);
p += 16;
pwd_set_lm_nt_16(&usr.pwd, lmpw, ntpw);
}
else
{
pwd_set_nullpwd(&usr.pwd);
}
if (PTR_DIFF(p, buf) != rl)
{
DEBUG(0,("Buffer size %d %d!\n",
PTR_DIFF(p, buf), rl));
return NULL;
}
switch (command)
{
case AGENT_CMD_CON:
{
new_con = True;
break;
}
case AGENT_CMD_CON_REUSE:
{
new_con = True;
usr.reuse = True;
break;
}
default:
{
DEBUG(0,("unknown command %d\n", command));
return NULL;
}
}
if (new_con)
{
struct cli_state *n;
n = cli_net_use_add(srv_name, &usr, False);
if (n == NULL)
{
DEBUG(0,("Unable to connect to %s\n", srv_name));
return NULL;
}
mid_offset += MIN(MAX(n->max_mux, 1), MAX_MAX_MUX_LIMIT);
if (mid_offset > 0xffff)
{
mid_offset = 0x0;
}
DEBUG(10,("new mid offset: %d\n", mid_offset));
if (write(c, n, sizeof(*n)) < 0)
{
DEBUG(0,("Could not write connection down pipe.\n"));
cli_net_use_del(srv_name, &usr, False, NULL);
return NULL;
}
return n;
}
return NULL;
}
static void filter_reply(char *buf, int moff)
{
int msg_type = CVAL(buf,0);
int x;
if (msg_type != 0x0) return;
/* alter the mid */
x = SVAL(buf, smb_mid);
x += moff;
if (x < 0)
{
x += 0x10000;
}
if (x > 0xffff)
{
x -= 0x10000;
}
SCVAL(buf, smb_mid, x);
}
static BOOL process_cli_sock(struct sock_redir *sock)
{
struct cli_state *n = sock->n;
if (n == NULL)
{
n = init_client_connection(sock->c);
if (n == NULL)
{
return False;
}
sock->n = n;
}
else
{
if (!receive_smb(sock->c, packet, 0))
{
DEBUG(0,("client closed connection\n"));
return False;
}
filter_reply(packet, sock->mid_offset);
/* ignore keep-alives */
if (CVAL(packet, 0) != 0x85)
{
if (!send_smb(sock->s, packet))
{
DEBUG(0,("server is dead\n"));
return False;
}
}
}
return True;
}
static int get_smbmid(char *buf)
{
int msg_type = CVAL(buf,0);
if (msg_type != 0x0)
{
return -1;
}
return SVAL(buf,smb_mid);
}
static BOOL process_srv_sock(int fd)
{
int smbmid;
int i;
if (!receive_smb(fd, packet, 0))
{
DEBUG(0,("server closed connection\n"));
return False;
}
smbmid = get_smbmid(packet);
DEBUG(10,("process_srv_sock:\tfd:\t%d\tmid:\t%d\n", fd, smbmid));
if (smbmid == -1)
{
return True;
}
for (i = 0; i < num_socks; i++)
{
int moff;
if (socks[i] == NULL || socks[i]->n == NULL)
{
continue;
}
moff = socks[i]->mid_offset;
DEBUG(10,("list:\tfd:\t%d\tmid:\t%d\tmoff:\t%d\n",
socks[i]->s,
socks[i]->n->mid,
moff));
if (smbmid != socks[i]->n->mid + moff)
{
continue;
}
filter_reply(packet, -moff);
if (!send_smb(socks[i]->c, packet))
{
DEBUG(0,("client is dead\n"));
return False;
}
return True;
}
return False;
}
static void start_agent(void)
{
int s, c;
struct sockaddr_un sa;
fstring path;
fstring dir;
CatchChild();
slprintf(dir, sizeof(dir)-1, "/tmp/.smb.%d", getuid());
mkdir(dir, S_IRUSR|S_IWUSR|S_IXUSR);
slprintf(path, sizeof(path)-1, "%s/agent", dir);
if (chmod(dir, S_IRUSR|S_IWUSR|S_IXUSR) < 0)
{
fprintf(stderr, "chmod on %s failed\n", sa.sun_path);
exit(1);
}
/* start listening on unix socket */
s = socket(AF_UNIX, SOCK_STREAM, 0);
if (s < 0)
{
fprintf(stderr, "socket open failed\n");
exit(1);
}
ZERO_STRUCT(sa);
sa.sun_family = AF_UNIX;
safe_strcpy(sa.sun_path, path, sizeof(sa.sun_path)-1);
if (bind(s, (struct sockaddr*) &sa, sizeof(sa)) < 0)
{
fprintf(stderr, "socket bind to %s failed\n", sa.sun_path);
close(s);
remove(path);
exit(1);
}
if (s == -1)
{
DEBUG(0,("bind failed\n"));
remove(path);
exit(1);
}
if (listen(s, 5) == -1)
{
DEBUG(0,("listen failed\n"));
remove(path);
}
while (1)
{
int i;
fd_set fds;
int num;
struct sockaddr_un addr;
int in_addrlen = sizeof(addr);
int maxfd = s;
FD_ZERO(&fds);
FD_SET(s, &fds);
for (i = 0; i < num_socks; i++)
{
if (socks[i] != NULL)
{
int fd = socks[i]->c;
FD_SET(fd, &fds);
maxfd = MAX(maxfd, fd);
if (socks[i]->n != NULL)
{
fd = socks[i]->s;
FD_SET(fd, &fds);
maxfd = MAX(fd, maxfd);
}
}
}
dbgflush();
num = sys_select(maxfd+1,&fds,NULL, NULL);
if (num <= 0)
{
continue;
}
if (FD_ISSET(s, &fds))
{
FD_CLR(s, &fds);
c = accept(s, (struct sockaddr*)&addr, &in_addrlen);
if (c != -1)
{
sock_add(c);
}
}
for (i = 0; i < num_socks; i++)
{
if (socks[i] == NULL)
{
continue;
}
if (FD_ISSET(socks[i]->c, &fds))
{
FD_CLR(socks[i]->c, &fds);
if (!process_cli_sock(socks[i]))
{
sock_redir_free(socks[i]);
socks[i] = NULL;
}
}
if (socks[i] == NULL)
{
continue;
}
if (socks[i]->n == NULL)
{
continue;
}
if (FD_ISSET(socks[i]->s, &fds))
{
FD_CLR(socks[i]->s, &fds);
if (!process_srv_sock(socks[i]->s))
{
sock_redir_free(socks[i]);
socks[i] = NULL;
}
}
}
}
}
/****************************************************************************
usage on the program
****************************************************************************/
static void usage(char *pname)
{
printf("Usage: %s [-D]", pname);
printf("\nVersion %s\n",VERSION);
printf("\t-D run as a daemon\n");
printf("\t-h usage\n");
printf("\n");
}
int main(int argc, char *argv[])
{
pstring configfile;
BOOL is_daemon = False;
int opt;
extern pstring debugf;
TimeInit();
pstrcpy(configfile,CONFIGFILE);
while ((opt = getopt(argc, argv, "Dh")) != EOF)
{
switch (opt)
{
case 'D':
{
is_daemon = True;
break;
}
case 'h':
default:
{
usage(argv[0]);
break;
}
}
}
slprintf(debugf, sizeof(debugf)-1, "log.%s", argv[0]);
setup_logging(argv[0], !is_daemon);
charset_initialise();
if (!lp_load(configfile,True,False,False))
{
DEBUG(0,("Unable to load config file\n"));
}
if (is_daemon)
{
DEBUG(0,("%s: becoming daemon\n", argv[0]));
become_daemon();
}
start_agent();
return 0;
}
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