pam_ptimpl.c 17 KB

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  1. /** BEGIN COPYRIGHT BLOCK
  2. * This Program is free software; you can redistribute it and/or modify it under
  3. * the terms of the GNU General Public License as published by the Free Software
  4. * Foundation; version 2 of the License.
  5. *
  6. * This Program is distributed in the hope that it will be useful, but WITHOUT
  7. * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS
  8. * FOR A PARTICULAR PURPOSE. See the GNU General Public License for more details.
  9. *
  10. * You should have received a copy of the GNU General Public License along with
  11. * this Program; if not, write to the Free Software Foundation, Inc., 59 Temple
  12. * Place, Suite 330, Boston, MA 02111-1307 USA.
  13. *
  14. * In addition, as a special exception, Red Hat, Inc. gives You the additional
  15. * right to link the code of this Program with code not covered under the GNU
  16. * General Public License ("Non-GPL Code") and to distribute linked combinations
  17. * including the two, subject to the limitations in this paragraph. Non-GPL Code
  18. * permitted under this exception must only link to the code of this Program
  19. * through those well defined interfaces identified in the file named EXCEPTION
  20. * found in the source code files (the "Approved Interfaces"). The files of
  21. * Non-GPL Code may instantiate templates or use macros or inline functions from
  22. * the Approved Interfaces without causing the resulting work to be covered by
  23. * the GNU General Public License. Only Red Hat, Inc. may make changes or
  24. * additions to the list of Approved Interfaces. You must obey the GNU General
  25. * Public License in all respects for all of the Program code and other code used
  26. * in conjunction with the Program except the Non-GPL Code covered by this
  27. * exception. If you modify this file, you may extend this exception to your
  28. * version of the file, but you are not obligated to do so. If you do not wish to
  29. * provide this exception without modification, you must delete this exception
  30. * statement from your version and license this file solely under the GPL without
  31. * exception.
  32. *
  33. *
  34. * Copyright (C) 2005 Red Hat, Inc.
  35. * All rights reserved.
  36. * END COPYRIGHT BLOCK **/
  37. #ifdef HAVE_CONFIG_H
  38. # include <config.h>
  39. #endif
  40. #include <security/pam_appl.h>
  41. #include "pam_passthru.h"
  42. /*
  43. * PAM is not thread safe. We have to execute any PAM API calls in
  44. * a critical section. This is the lock that protects that code.
  45. */
  46. static Slapi_Mutex *PAMLock;
  47. /* Utility struct to wrap strings to avoid mallocs if possible - use
  48. stack allocated string space */
  49. #define MY_STATIC_BUF_SIZE 256
  50. typedef struct my_str_buf {
  51. char fixbuf[MY_STATIC_BUF_SIZE];
  52. char *str;
  53. } MyStrBuf;
  54. static char *
  55. init_my_str_buf(MyStrBuf *buf, const char *s)
  56. {
  57. PR_ASSERT(buf);
  58. if (s && (strlen(s) < sizeof(buf->fixbuf))) {
  59. strcpy(buf->fixbuf, s);
  60. buf->str = buf->fixbuf;
  61. } else {
  62. buf->str = slapi_ch_strdup(s);
  63. buf->fixbuf[0] = 0;
  64. }
  65. return buf->str;
  66. }
  67. static void
  68. delete_my_str_buf(MyStrBuf *buf)
  69. {
  70. if (buf->str != buf->fixbuf) {
  71. slapi_ch_free_string(&(buf->str));
  72. }
  73. }
  74. /* for third arg to pam_start */
  75. struct my_pam_conv_str {
  76. Slapi_PBlock *pb;
  77. char *pam_identity;
  78. };
  79. /*
  80. * Get the PAM identity from the value of the leftmost RDN in the BIND DN.
  81. */
  82. static char *
  83. derive_from_bind_dn(Slapi_PBlock *pb, char *binddn, MyStrBuf *pam_id)
  84. {
  85. Slapi_RDN *rdn;
  86. char *type = NULL;
  87. char *value = NULL;
  88. rdn = slapi_rdn_new_dn(binddn);
  89. slapi_rdn_get_first(rdn, &type, &value);
  90. init_my_str_buf(pam_id, value);
  91. slapi_rdn_free(&rdn);
  92. return pam_id->str;
  93. }
  94. static char *
  95. derive_from_bind_entry(Slapi_PBlock *pb, char *binddn, MyStrBuf *pam_id, char *map_ident_attr, int *locked)
  96. {
  97. char buf[BUFSIZ];
  98. Slapi_Entry *entry = NULL;
  99. Slapi_DN *sdn = slapi_sdn_new_dn_byref(binddn);
  100. char *attrs[] = { NULL, NULL };
  101. attrs[0] = map_ident_attr;
  102. int rc = slapi_search_internal_get_entry(sdn, attrs, &entry,
  103. pam_passthruauth_get_plugin_identity());
  104. slapi_sdn_free(&sdn);
  105. if (rc != LDAP_SUCCESS) {
  106. slapi_log_error(SLAPI_LOG_FATAL, PAM_PASSTHRU_PLUGIN_SUBSYSTEM,
  107. "Could not find BIND dn %s (error %d - %s)\n",
  108. escape_string(binddn, buf), rc, ldap_err2string(rc));
  109. init_my_str_buf(pam_id, NULL);
  110. } else if (NULL == entry) {
  111. slapi_log_error(SLAPI_LOG_FATAL, PAM_PASSTHRU_PLUGIN_SUBSYSTEM,
  112. "Could not find entry for BIND dn %s\n",
  113. escape_string(binddn, buf));
  114. init_my_str_buf(pam_id, NULL);
  115. } else if (slapi_check_account_lock( pb, entry, 0, 0, 0 ) == 1) {
  116. slapi_log_error(SLAPI_LOG_FATAL, PAM_PASSTHRU_PLUGIN_SUBSYSTEM,
  117. "Account %s inactivated.\n",
  118. escape_string(binddn, buf));
  119. init_my_str_buf(pam_id, NULL);
  120. *locked = 1;
  121. } else {
  122. char *val = slapi_entry_attr_get_charptr(entry, map_ident_attr);
  123. init_my_str_buf(pam_id, val);
  124. slapi_ch_free_string(&val);
  125. }
  126. slapi_entry_free(entry);
  127. return pam_id->str;
  128. }
  129. static void
  130. report_pam_error(char *str, int rc, pam_handle_t *pam_handle)
  131. {
  132. if (rc != PAM_SUCCESS) {
  133. slapi_log_error(SLAPI_LOG_FATAL, PAM_PASSTHRU_PLUGIN_SUBSYSTEM,
  134. "Error from PAM %s (%d: %s)\n",
  135. str, rc, pam_strerror(pam_handle, rc));
  136. }
  137. }
  138. /* returns a berval value as a null terminated string */
  139. static char *strdupbv(struct berval *bv)
  140. {
  141. char *str = slapi_ch_malloc(bv->bv_len+1);
  142. memcpy(str, bv->bv_val, bv->bv_len);
  143. str[bv->bv_len] = 0;
  144. return str;
  145. }
  146. static void
  147. free_pam_response(int nresp, struct pam_response *resp)
  148. {
  149. int ii;
  150. for (ii = 0; ii < nresp; ++ii) {
  151. if (resp[ii].resp) {
  152. slapi_ch_free((void **)&(resp[ii].resp));
  153. }
  154. }
  155. slapi_ch_free((void **)&resp);
  156. }
  157. /*
  158. * This is the conversation function passed into pam_start(). This is what sets the password
  159. * that PAM uses to authenticate. This function is sort of stupid - it assumes all echo off
  160. * or binary prompts are for the password, and other prompts are for the username. Time will
  161. * tell if this is actually the case.
  162. */
  163. static int
  164. pam_conv_func(int num_msg, const struct pam_message **msg, struct pam_response **resp, void *mydata)
  165. {
  166. int ii;
  167. struct berval *creds;
  168. struct my_pam_conv_str *my_data = (struct my_pam_conv_str *)mydata;
  169. struct pam_response *reply;
  170. int ret = PAM_SUCCESS;
  171. if (num_msg <= 0) {
  172. return PAM_CONV_ERR;
  173. }
  174. /* empty reply structure */
  175. reply = (struct pam_response *)slapi_ch_calloc(num_msg,
  176. sizeof(struct pam_response));
  177. slapi_pblock_get( my_data->pb, SLAPI_BIND_CREDENTIALS, &creds ); /* the password */
  178. for (ii = 0; ii < num_msg; ++ii) {
  179. slapi_log_error(SLAPI_LOG_PLUGIN, PAM_PASSTHRU_PLUGIN_SUBSYSTEM,
  180. "pam msg [%d] = %d %s\n", ii, msg[ii]->msg_style,
  181. msg[ii]->msg);
  182. /* hard to tell what prompt is for . . . */
  183. /* assume prompts for password are either BINARY or ECHO_OFF */
  184. if (msg[ii]->msg_style == PAM_PROMPT_ECHO_OFF) {
  185. reply[ii].resp = strdupbv(creds);
  186. #ifdef LINUX
  187. } else if (msg[ii]->msg_style == PAM_BINARY_PROMPT) {
  188. reply[ii].resp = strdupbv(creds);
  189. #endif
  190. } else if (msg[ii]->msg_style == PAM_PROMPT_ECHO_ON) { /* assume username */
  191. reply[ii].resp = slapi_ch_strdup(my_data->pam_identity);
  192. } else if (msg[ii]->msg_style == PAM_ERROR_MSG) {
  193. slapi_log_error(SLAPI_LOG_FATAL, PAM_PASSTHRU_PLUGIN_SUBSYSTEM,
  194. "pam msg [%d] error [%s]\n", ii, msg[ii]->msg);
  195. } else if (msg[ii]->msg_style == PAM_TEXT_INFO) {
  196. slapi_log_error(SLAPI_LOG_PLUGIN, PAM_PASSTHRU_PLUGIN_SUBSYSTEM,
  197. "pam msg [%d] text info [%s]\n", ii, msg[ii]->msg);
  198. } else {
  199. slapi_log_error(SLAPI_LOG_FATAL, PAM_PASSTHRU_PLUGIN_SUBSYSTEM,
  200. "Error: unknown pam message type (%d: %s)\n",
  201. msg[ii]->msg_style, msg[ii]->msg);
  202. ret = PAM_CONV_ERR;
  203. }
  204. }
  205. if (ret == PAM_CONV_ERR) {
  206. free_pam_response(num_msg, reply);
  207. reply = NULL;
  208. }
  209. *resp = reply;
  210. return ret;
  211. }
  212. /*
  213. * Do the actual work of authenticating with PAM. First, get the PAM identity
  214. * based on the method used to convert the BIND identity to the PAM identity.
  215. * Set up the structures that pam_start needs and call pam_start(). After
  216. * that, call pam_authenticate and pam_acct_mgmt. Check the various return
  217. * values from these functions and map them to their corresponding LDAP BIND
  218. * return values. Return the appropriate LDAP error code.
  219. * This function will also set the appropriate LDAP response controls in
  220. * the given pblock.
  221. * Since this function can be called multiple times, we only want to return
  222. * the errors and controls to the user if this is the final call, so the
  223. * final_method parameter tells us if this is the last one. Coupled with
  224. * the fallback argument, we can tell if we are able to send the response
  225. * back to the client.
  226. */
  227. static int
  228. do_one_pam_auth(
  229. Slapi_PBlock *pb,
  230. int method, /* get pam identity from ENTRY, RDN, or DN */
  231. PRBool final_method, /* which method is the last one to try */
  232. char *pam_service, /* name of service for pam_start() */
  233. char *map_ident_attr, /* for ENTRY method, name of attribute holding pam identity */
  234. PRBool fallback, /* if true, failure here should fallback to regular bind */
  235. int pw_response_requested /* do we need to send pwd policy resp control */
  236. )
  237. {
  238. MyStrBuf pam_id;
  239. char *binddn = NULL;
  240. int rc;
  241. int retcode = LDAP_SUCCESS;
  242. pam_handle_t *pam_handle;
  243. struct my_pam_conv_str my_data;
  244. struct pam_conv my_pam_conv = {pam_conv_func, NULL};
  245. char buf[BUFSIZ]; /* for error messages */
  246. char *errmsg = NULL; /* free with PR_smprintf_free */
  247. int locked = 0;
  248. slapi_pblock_get( pb, SLAPI_BIND_TARGET, &binddn );
  249. if (method == PAMPT_MAP_METHOD_RDN) {
  250. derive_from_bind_dn(pb, binddn, &pam_id);
  251. } else if (method == PAMPT_MAP_METHOD_ENTRY) {
  252. derive_from_bind_entry(pb, binddn, &pam_id, map_ident_attr, &locked);
  253. } else {
  254. init_my_str_buf(&pam_id, binddn);
  255. }
  256. if (locked) {
  257. errmsg = PR_smprintf("Account inactivated. Contact system administrator.");
  258. retcode = LDAP_UNWILLING_TO_PERFORM; /* user inactivated */
  259. goto done; /* skip the pam stuff */
  260. }
  261. if (!pam_id.str) {
  262. errmsg = PR_smprintf("Bind DN [%s] is invalid or not found",
  263. escape_string(binddn, buf));
  264. retcode = LDAP_NO_SUCH_OBJECT; /* user unknown */
  265. goto done; /* skip the pam stuff */
  266. }
  267. /* do the pam stuff */
  268. my_data.pb = pb;
  269. my_data.pam_identity = pam_id.str;
  270. my_pam_conv.appdata_ptr = &my_data;
  271. slapi_lock_mutex(PAMLock);
  272. /* from this point on we are in the critical section */
  273. rc = pam_start(pam_service, pam_id.str, &my_pam_conv, &pam_handle);
  274. report_pam_error("during pam_start", rc, pam_handle);
  275. if (rc == PAM_SUCCESS) {
  276. /* use PAM_SILENT - there is no user interaction at this point */
  277. rc = pam_authenticate(pam_handle, 0);
  278. report_pam_error("during pam_authenticate", rc, pam_handle);
  279. /* check different types of errors here */
  280. if (rc == PAM_USER_UNKNOWN) {
  281. errmsg = PR_smprintf("User id [%s] for bind DN [%s] does not exist in PAM",
  282. pam_id.str, escape_string(binddn, buf));
  283. retcode = LDAP_NO_SUCH_OBJECT; /* user unknown */
  284. } else if (rc == PAM_AUTH_ERR) {
  285. errmsg = PR_smprintf("Invalid PAM password for user id [%s], bind DN [%s]",
  286. pam_id.str, escape_string(binddn, buf));
  287. retcode = LDAP_INVALID_CREDENTIALS; /* invalid creds */
  288. } else if (rc == PAM_MAXTRIES) {
  289. errmsg = PR_smprintf("Authentication retry limit exceeded in PAM for "
  290. "user id [%s], bind DN [%s]",
  291. pam_id.str, escape_string(binddn, buf));
  292. if (pw_response_requested) {
  293. slapi_pwpolicy_make_response_control(pb, -1, -1, LDAP_PWPOLICY_ACCTLOCKED);
  294. }
  295. retcode = LDAP_CONSTRAINT_VIOLATION; /* max retries */
  296. } else if (rc != PAM_SUCCESS) {
  297. errmsg = PR_smprintf("Unknown PAM error [%s] for user id [%s], bind DN [%s]",
  298. pam_strerror(pam_handle, rc), pam_id.str, escape_string(binddn, buf));
  299. retcode = LDAP_OPERATIONS_ERROR; /* pam config or network problem */
  300. }
  301. }
  302. /* if user authenticated successfully, see if there is anything we need
  303. to report back w.r.t. password or account lockout */
  304. if (rc == PAM_SUCCESS) {
  305. rc = pam_acct_mgmt(pam_handle, 0);
  306. report_pam_error("during pam_acct_mgmt", rc, pam_handle);
  307. /* check different types of errors here */
  308. if (rc == PAM_USER_UNKNOWN) {
  309. errmsg = PR_smprintf("User id [%s] for bind DN [%s] does not exist in PAM",
  310. pam_id.str, escape_string(binddn, buf));
  311. retcode = LDAP_NO_SUCH_OBJECT; /* user unknown */
  312. } else if (rc == PAM_AUTH_ERR) {
  313. errmsg = PR_smprintf("Invalid PAM password for user id [%s], bind DN [%s]",
  314. pam_id.str, escape_string(binddn, buf));
  315. retcode = LDAP_INVALID_CREDENTIALS; /* invalid creds */
  316. } else if (rc == PAM_PERM_DENIED) {
  317. errmsg = PR_smprintf("Access denied for PAM user id [%s], bind DN [%s]"
  318. " - see administrator",
  319. pam_id.str, escape_string(binddn, buf));
  320. if (pw_response_requested) {
  321. slapi_pwpolicy_make_response_control(pb, -1, -1, LDAP_PWPOLICY_ACCTLOCKED);
  322. }
  323. retcode = LDAP_UNWILLING_TO_PERFORM;
  324. } else if (rc == PAM_ACCT_EXPIRED) {
  325. errmsg = PR_smprintf("Expired PAM password for user id [%s], bind DN [%s]: "
  326. "reset required",
  327. pam_id.str, escape_string(binddn, buf));
  328. slapi_add_pwd_control(pb, LDAP_CONTROL_PWEXPIRED, 0);
  329. if (pw_response_requested) {
  330. slapi_pwpolicy_make_response_control(pb, -1, -1, LDAP_PWPOLICY_PWDEXPIRED);
  331. }
  332. retcode = LDAP_INVALID_CREDENTIALS;
  333. } else if (rc == PAM_NEW_AUTHTOK_REQD) { /* handled same way as ACCT_EXPIRED */
  334. errmsg = PR_smprintf("Expired PAM password for user id [%s], bind DN [%s]: "
  335. "reset required",
  336. pam_id.str, escape_string(binddn, buf));
  337. slapi_add_pwd_control(pb, LDAP_CONTROL_PWEXPIRED, 0);
  338. if (pw_response_requested) {
  339. slapi_pwpolicy_make_response_control(pb, -1, -1, LDAP_PWPOLICY_PWDEXPIRED);
  340. }
  341. retcode = LDAP_INVALID_CREDENTIALS;
  342. } else if (rc != PAM_SUCCESS) {
  343. errmsg = PR_smprintf("Unknown PAM error [%s] for user id [%s], bind DN [%s]",
  344. pam_strerror(pam_handle, rc), pam_id.str, escape_string(binddn, buf));
  345. retcode = LDAP_OPERATIONS_ERROR; /* unknown */
  346. }
  347. }
  348. rc = pam_end(pam_handle, rc);
  349. report_pam_error("during pam_end", rc, pam_handle);
  350. slapi_unlock_mutex(PAMLock);
  351. /* not in critical section any more */
  352. done:
  353. delete_my_str_buf(&pam_id);
  354. if ((retcode == LDAP_SUCCESS) && (rc != PAM_SUCCESS)) {
  355. errmsg = PR_smprintf("Unknown PAM error [%d] for user id [%s], bind DN [%s]",
  356. rc, pam_id.str, escape_string(binddn, buf));
  357. retcode = LDAP_OPERATIONS_ERROR;
  358. }
  359. if (retcode != LDAP_SUCCESS) {
  360. slapi_log_error(SLAPI_LOG_FATAL, PAM_PASSTHRU_PLUGIN_SUBSYSTEM,
  361. "%s\n", errmsg);
  362. if (final_method && !fallback) {
  363. slapi_send_ldap_result(pb, retcode, NULL, errmsg, 0, NULL);
  364. }
  365. }
  366. if (errmsg) {
  367. PR_smprintf_free(errmsg);
  368. }
  369. return retcode;
  370. }
  371. /*
  372. * Perform any PAM subsystem initialization that must be done at startup time.
  373. * For now, this means only the PAM mutex since PAM is not thread safe.
  374. */
  375. int
  376. pam_passthru_pam_init( void )
  377. {
  378. if (!(PAMLock = slapi_new_mutex())) {
  379. return LDAP_LOCAL_ERROR;
  380. }
  381. return 0;
  382. }
  383. /*
  384. * Entry point into the PAM auth code. Shields the rest of the app
  385. * from PAM API code. Get our config params, then call the actual
  386. * code that does the PAM auth. Can call that code up to 3 times,
  387. * depending on what methods are set in the config.
  388. */
  389. int
  390. pam_passthru_do_pam_auth(Slapi_PBlock *pb, Pam_PassthruConfig *cfg)
  391. {
  392. int rc = LDAP_SUCCESS;
  393. MyStrBuf pam_id_attr; /* avoid malloc if possible */
  394. MyStrBuf pam_service; /* avoid malloc if possible */
  395. int method1, method2, method3;
  396. PRBool final_method;
  397. PRBool fallback = PR_FALSE;
  398. int pw_response_requested;
  399. LDAPControl **reqctrls = NULL;
  400. /* first lock and get the methods and other info */
  401. /* we do this so we can acquire and release the lock quickly to
  402. avoid potential deadlocks */
  403. slapi_lock_mutex(cfg->lock);
  404. method1 = cfg->pamptconfig_map_method1;
  405. method2 = cfg->pamptconfig_map_method2;
  406. method3 = cfg->pamptconfig_map_method3;
  407. init_my_str_buf(&pam_id_attr, cfg->pamptconfig_pam_ident_attr);
  408. init_my_str_buf(&pam_service, cfg->pamptconfig_service);
  409. fallback = cfg->pamptconfig_fallback;
  410. slapi_unlock_mutex(cfg->lock);
  411. slapi_pblock_get (pb, SLAPI_REQCONTROLS, &reqctrls);
  412. slapi_pblock_get (pb, SLAPI_PWPOLICY, &pw_response_requested);
  413. /* figure out which method is the last one - we only return error codes, controls
  414. to the client and send a response on the last method */
  415. final_method = (method2 == PAMPT_MAP_METHOD_NONE);
  416. rc = do_one_pam_auth(pb, method1, final_method, pam_service.str, pam_id_attr.str, fallback,
  417. pw_response_requested);
  418. if ((rc != LDAP_SUCCESS) && !final_method) {
  419. final_method = (method3 == PAMPT_MAP_METHOD_NONE);
  420. rc = do_one_pam_auth(pb, method2, final_method, pam_service.str, pam_id_attr.str, fallback,
  421. pw_response_requested);
  422. if ((rc != LDAP_SUCCESS) && !final_method) {
  423. final_method = PR_TRUE;
  424. rc = do_one_pam_auth(pb, method3, final_method, pam_service.str, pam_id_attr.str, fallback,
  425. pw_response_requested);
  426. }
  427. }
  428. delete_my_str_buf(&pam_id_attr);
  429. delete_my_str_buf(&pam_service);
  430. return rc;
  431. }