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support.c
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support.c
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/* support.c - support functions for pam_tacplus.c
*
* Copyright (C) 2010, Pawel Krawczyk <[email protected]> and
* Jeroen Nijhof <[email protected]>
*
* 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 - see the file COPYING.
*
* See `CHANGES' file for revision history.
*/
#define PAM_SM_AUTH
#define PAM_SM_ACCOUNT
#define PAM_SM_SESSION
#define PAM_SM_PASSWORD
#include "config.h"
#include "support.h"
#include "pam_tacplus.h"
#ifdef HAVE_LIMITS_H
#include <limits.h>
#endif
tacplus_server_t tac_srv[TAC_PLUS_MAXSERVERS];
unsigned int tac_srv_no = 0;
char tac_service[64];
char tac_protocol[64];
char tac_prompt[64];
struct addrinfo tac_srv_addr[TAC_PLUS_MAXSERVERS];
struct sockaddr tac_sock_addr[TAC_PLUS_MAXSERVERS];
struct sockaddr_in6 tac_sock6_addr[TAC_PLUS_MAXSERVERS];
char tac_srv_key[TAC_PLUS_MAXSERVERS][TAC_SECRET_MAX_LEN+1];
void _pam_log(int err, const char *format, ...) {
char msg[256];
va_list args;
va_start(args, format);
vsnprintf(msg, sizeof(msg), format, args);
syslog(err, "PAM-tacplus: %s", msg);
va_end(args);
}
char *_pam_get_user(pam_handle_t *pamh) {
int retval;
char *user;
retval = pam_get_user(pamh, (void *) &user, "Username: ");
if (retval != PAM_SUCCESS || user == NULL || *user == '\0') {
_pam_log(LOG_ERR, "unable to obtain username");
user = NULL;
}
return user;
}
char *_pam_get_terminal(pam_handle_t *pamh) {
int retval;
char *tty;
retval = pam_get_item(pamh, PAM_TTY, (void *) &tty);
if (retval != PAM_SUCCESS || tty == NULL || *tty == '\0') {
tty = ttyname(STDIN_FILENO);
if (tty == NULL || *tty == '\0')
tty = "unknown";
}
return tty;
}
char *_pam_get_rhost(pam_handle_t *pamh) {
int retval;
char *rhost;
retval = pam_get_item(pamh, PAM_RHOST, (void *) &rhost);
if (retval != PAM_SUCCESS || rhost == NULL || *rhost == '\0') {
rhost = "unknown";
}
return rhost;
}
int converse(pam_handle_t *pamh, int nargs, const struct pam_message *message,
struct pam_response **response) {
int retval;
struct pam_conv *conv;
if ((retval = pam_get_item(pamh, PAM_CONV, (const void **) &conv)) == PAM_SUCCESS) {
retval = conv->conv(nargs, &message, response, conv->appdata_ptr);
if (retval != PAM_SUCCESS) {
_pam_log(LOG_ERR, "(pam_tacplus) converse returned %d", retval);
_pam_log(LOG_ERR, "that is: %s", pam_strerror(pamh, retval));
}
} else {
_pam_log(LOG_ERR, "(pam_tacplus) converse failed to get pam_conv");
}
return retval;
}
/* stolen from pam_stress */
int tacacs_get_password(pam_handle_t *pamh, int flags __Unused,
int ctrl, char **password) {
(void) flags;
const void *pam_pass;
char *pass = NULL;
if (ctrl & PAM_TAC_DEBUG)
syslog(LOG_DEBUG, "%s: called", __FUNCTION__);
if ((ctrl & (PAM_TAC_TRY_FIRST_PASS | PAM_TAC_USE_FIRST_PASS))
&& (pam_get_item(pamh, PAM_AUTHTOK, &pam_pass) == PAM_SUCCESS)
&& (pam_pass != NULL)) {
if ((pass = strdup(pam_pass)) == NULL)
return PAM_BUF_ERR;
} else if ((ctrl & PAM_TAC_USE_FIRST_PASS)) {
_pam_log(LOG_WARNING, "no forwarded password");
return PAM_PERM_DENIED;
} else {
struct pam_message msg;
struct pam_response *resp = NULL;
int retval;
/* set up conversation call */
msg.msg_style = PAM_PROMPT_ECHO_OFF;
if (!tac_prompt[0]) {
msg.msg = "Password: ";
} else {
msg.msg = tac_prompt;
}
if ((retval = converse(pamh, 1, &msg, &resp)) != PAM_SUCCESS)
return retval;
if (resp != NULL) {
if (resp->resp == NULL && (ctrl & PAM_TAC_DEBUG))
_pam_log(LOG_DEBUG, "pam_sm_authenticate: NULL authtok given");
pass = resp->resp; /* remember this! */
resp->resp = NULL;
free(resp);
resp = NULL;
} else {
if (ctrl & PAM_TAC_DEBUG) {
_pam_log(LOG_DEBUG, "pam_sm_authenticate: no error reported");
_pam_log(LOG_DEBUG, "getting password, but NULL returned!?");
}
return PAM_CONV_ERR;
}
}
*password = pass; /* this *MUST* be free()'d by this module */
if (ctrl & PAM_TAC_DEBUG)
syslog(LOG_DEBUG, "%s: obtained password", __FUNCTION__);
return PAM_SUCCESS;
}
void tac_copy_addr_info(struct addrinfo *p_dst, const struct addrinfo *p_src) {
if (p_dst && p_src) {
p_dst->ai_flags = p_src->ai_flags;
p_dst->ai_family = p_src->ai_family;
p_dst->ai_socktype = p_src->ai_socktype;
p_dst->ai_protocol = p_src->ai_protocol;
p_dst->ai_addrlen = p_src->ai_addrlen;
/* ipv6 check */
if (p_dst->ai_family == AF_INET6) {
memcpy (p_dst->ai_addr, p_src->ai_addr, sizeof(struct sockaddr_in6));
memset ((struct sockaddr_in6*)p_dst->ai_addr, 0 , sizeof(struct sockaddr_in6));
memcpy ((struct sockaddr_in6*)p_dst->ai_addr, (struct sockaddr_in6*)p_src->ai_addr, sizeof(struct sockaddr_in6));
} else {
memcpy (p_dst->ai_addr, p_src->ai_addr, sizeof(struct sockaddr));
}
p_dst->ai_canonname = NULL; /* we do not care it */
p_dst->ai_next = NULL; /* no more chain */
}
}
static void set_tac_srv_addr (unsigned int srv_no, const struct addrinfo *addr)
{
_pam_log(LOG_DEBUG, "%s: server [%s]", __FUNCTION__,
tac_ntop(addr->ai_addr));
if (srv_no < TAC_PLUS_MAXSERVERS) {
if (addr) {
if (addr->ai_family == AF_INET6) {
tac_srv_addr[srv_no].ai_addr = (struct sockaddr *)&tac_sock6_addr[srv_no];
} else {
tac_srv_addr[srv_no].ai_addr = &tac_sock_addr[srv_no];
}
tac_copy_addr_info (&tac_srv_addr[srv_no], addr);
tac_srv[srv_no].addr = &tac_srv_addr[srv_no];
/*this code will copy the ipv6 address to a temp variable */
/*and copies to global tac_srv array*/
if (addr->ai_family == AF_INET6) {
memset (&tac_sock6_addr[srv_no], 0, sizeof(struct sockaddr_in6));
memcpy (&tac_sock6_addr[srv_no], (struct sockaddr_in6*)addr->ai_addr, sizeof(struct sockaddr_in6));
tac_srv[srv_no].addr->ai_addr = (struct sockaddr *)&tac_sock6_addr[srv_no];
}
_pam_log(LOG_DEBUG, "%s: server %d after copy [%s]", __FUNCTION__, srv_no,
tac_ntop(tac_srv[srv_no].addr->ai_addr));
}
else {
tac_srv[srv_no].addr = NULL;
}
}
}
static void set_tac_srv_key(unsigned int srv_no, const char *key) {
if (srv_no < TAC_PLUS_MAXSERVERS) {
if (key) {
strncpy(tac_srv_key[srv_no], key, TAC_SECRET_MAX_LEN - 1);
tac_srv[srv_no].key = tac_srv_key[srv_no];
}
else {
_pam_log(LOG_DEBUG, "%s: server %d key is null; address [%s]", __FUNCTION__,srv_no,
tac_ntop(tac_srv[srv_no].addr->ai_addr));
tac_srv[srv_no].key = NULL;
}
}
}
int _pam_parse(int argc, const char **argv) {
int ctrl = 0;
const char *current_secret = NULL;
/* otherwise the list will grow with each call */
memset(tac_srv, 0, sizeof(tacplus_server_t) * TAC_PLUS_MAXSERVERS);
memset(&tac_srv_addr, 0, sizeof(struct addrinfo) * TAC_PLUS_MAXSERVERS);
memset(&tac_sock_addr, 0, sizeof(struct sockaddr) * TAC_PLUS_MAXSERVERS);
memset(&tac_sock6_addr, 0, sizeof(struct sockaddr_in6) * TAC_PLUS_MAXSERVERS);
tac_srv_no = 0;
tac_service[0] = 0;
tac_protocol[0] = 0;
tac_prompt[0] = 0;
tac_login[0] = 0;
for (ctrl = 0; argc-- > 0; ++argv) {
if (!strcmp(*argv, "debug")) { /* all */
ctrl |= PAM_TAC_DEBUG;
} else if (!strcmp(*argv, "use_first_pass")) {
ctrl |= PAM_TAC_USE_FIRST_PASS;
} else if (!strcmp(*argv, "try_first_pass")) {
ctrl |= PAM_TAC_TRY_FIRST_PASS;
} else if (!strncmp(*argv, "service=", 8)) { /* author & acct */
xstrcpy(tac_service, *argv + 8, sizeof(tac_service));
} else if (!strncmp(*argv, "protocol=", 9)) { /* author & acct */
xstrcpy(tac_protocol, *argv + 9, sizeof(tac_protocol));
} else if (!strncmp(*argv, "prompt=", 7)) { /* authentication */
xstrcpy(tac_prompt, *argv + 7, sizeof(tac_prompt));
/* Replace _ with space */
unsigned long chr;
for (chr = 0; chr < strlen(tac_prompt); chr++) {
if (tac_prompt[chr] == '_') {
tac_prompt[chr] = ' ';
}
}
} else if (!strncmp(*argv, "login=", 6)) {
xstrcpy(tac_login, *argv + 6, sizeof(tac_login));
} else if (!strcmp(*argv, "acct_all")) {
ctrl |= PAM_TAC_ACCT;
} else if (!strncmp(*argv, "server=", 7)) { /* authen & acct */
if (tac_srv_no < TAC_PLUS_MAXSERVERS) {
struct addrinfo hints, *servers, *server;
int rv;
char *close_bracket, *server_name, *port, server_buf[256];
memset(&hints, 0, sizeof hints);
memset(&server_buf, 0, sizeof(server_buf));
hints.ai_family = AF_UNSPEC; /* use IPv4 or IPv6, whichever */
hints.ai_socktype = SOCK_STREAM;
if (strlen(*argv + 7) >= sizeof(server_buf)) {
_pam_log(LOG_ERR, "server address too long, sorry");
continue;
}
strcpy(server_buf, *argv + 7);
if (*server_buf == '[' &&
(close_bracket = strchr(server_buf, ']')) != NULL) { /* Check for URI syntax */
server_name = server_buf + 1;
_pam_log (LOG_ERR,
"reading server address as: %s ",
server_name);
port = strchr(close_bracket, ':');
*close_bracket = '\0';
} else { /* Fall back to traditional syntax */
server_name = server_buf;
port = strchr(server_buf, ':');
}
if (port != NULL) {
*port = '\0';
port++;
}
_pam_log (LOG_DEBUG,
"sending server address to getaddrinfo as: %s ",
server_name);
if ((rv = getaddrinfo(server_name, (port == NULL) ? "49" : port, &hints, &servers)) == 0) {
for (server = servers;
server != NULL && tac_srv_no < TAC_PLUS_MAXSERVERS; server = server->ai_next) {
set_tac_srv_addr(tac_srv_no, server);
set_tac_srv_key(tac_srv_no, current_secret);
tac_srv_no++;
}
_pam_log(LOG_DEBUG, "%s: server index %d ", __FUNCTION__, tac_srv_no);
freeaddrinfo (servers);
} else {
_pam_log(LOG_ERR,
"skip invalid server: %s (getaddrinfo: %s)",
server_name, gai_strerror(rv));
}
} else {
_pam_log(LOG_ERR, "maximum number of servers (%d) exceeded, skipping",
TAC_PLUS_MAXSERVERS);
}
} else if (!strncmp(*argv, "secret=", 7)) {
current_secret = *argv + 7; /* points right into argv (which is const) */
// this is possible because server structure is initialized only on the server= occurence
if (tac_srv_no == 0) {
_pam_log(LOG_ERR, "secret set but no servers configured yet");
} else {
// set secret for the last server configured
set_tac_srv_key(tac_srv_no - 1, current_secret);
}
} else if (!strncmp(*argv, "timeout=", 8)) {
#ifdef HAVE_STRTOL
tac_timeout = strtol(*argv + 8, NULL, 10);
#else
tac_timeout = atoi(*argv + 8);
#endif
if (tac_timeout == LONG_MAX) {
_pam_log(LOG_ERR, "timeout parameter cannot be parsed as integer: %s", *argv);
tac_timeout = 0;
} else {
tac_readtimeout_enable = 1;
}
} else {
_pam_log(LOG_WARNING, "unrecognized option: %s", *argv);
}
}
if (ctrl & PAM_TAC_DEBUG) {
unsigned long n;
_pam_log(LOG_DEBUG, "%d servers defined", tac_srv_no);
for (n = 0; n < tac_srv_no; n++) {
_pam_log(LOG_DEBUG, "server[%lu] { addr=%s, key='********' }", n,
tac_ntop(tac_srv[n].addr->ai_addr));
}
_pam_log(LOG_DEBUG, "tac_service='%s'", tac_service);
_pam_log(LOG_DEBUG, "tac_protocol='%s'", tac_protocol);
_pam_log(LOG_DEBUG, "tac_prompt='%s'", tac_prompt);
_pam_log(LOG_DEBUG, "tac_login='%s'", tac_login);
}
return ctrl;
} /* _pam_parse */