radius_server.c revision 8d520ff1dc2da35cdca849e982051b86468016d8
1/*
2 * RADIUS authentication server
3 * Copyright (c) 2005-2009, Jouni Malinen <j@w1.fi>
4 *
5 * This program is free software; you can redistribute it and/or modify
6 * it under the terms of the GNU General Public License version 2 as
7 * published by the Free Software Foundation.
8 *
9 * Alternatively, this software may be distributed under the terms of BSD
10 * license.
11 *
12 * See README and COPYING for more details.
13 */
14
15#include "includes.h"
16#include <net/if.h>
17
18#include "common.h"
19#include "radius.h"
20#include "eloop.h"
21#include "eap_server/eap.h"
22#include "radius_server.h"
23
24/**
25 * RADIUS_SESSION_TIMEOUT - Session timeout in seconds
26 */
27#define RADIUS_SESSION_TIMEOUT 60
28
29/**
30 * RADIUS_MAX_SESSION - Maximum number of active sessions
31 */
32#define RADIUS_MAX_SESSION 100
33
34/**
35 * RADIUS_MAX_MSG_LEN - Maximum message length for incoming RADIUS messages
36 */
37#define RADIUS_MAX_MSG_LEN 3000
38
39static struct eapol_callbacks radius_server_eapol_cb;
40
41struct radius_client;
42struct radius_server_data;
43
44/**
45 * struct radius_server_counters - RADIUS server statistics counters
46 */
47struct radius_server_counters {
48	u32 access_requests;
49	u32 invalid_requests;
50	u32 dup_access_requests;
51	u32 access_accepts;
52	u32 access_rejects;
53	u32 access_challenges;
54	u32 malformed_access_requests;
55	u32 bad_authenticators;
56	u32 packets_dropped;
57	u32 unknown_types;
58};
59
60/**
61 * struct radius_session - Internal RADIUS server data for a session
62 */
63struct radius_session {
64	struct radius_session *next;
65	struct radius_client *client;
66	struct radius_server_data *server;
67	unsigned int sess_id;
68	struct eap_sm *eap;
69	struct eap_eapol_interface *eap_if;
70
71	struct radius_msg *last_msg;
72	char *last_from_addr;
73	int last_from_port;
74	struct sockaddr_storage last_from;
75	socklen_t last_fromlen;
76	u8 last_identifier;
77	struct radius_msg *last_reply;
78	u8 last_authenticator[16];
79};
80
81/**
82 * struct radius_client - Internal RADIUS server data for a client
83 */
84struct radius_client {
85	struct radius_client *next;
86	struct in_addr addr;
87	struct in_addr mask;
88#ifdef CONFIG_IPV6
89	struct in6_addr addr6;
90	struct in6_addr mask6;
91#endif /* CONFIG_IPV6 */
92	char *shared_secret;
93	int shared_secret_len;
94	struct radius_session *sessions;
95	struct radius_server_counters counters;
96};
97
98/**
99 * struct radius_server_data - Internal RADIUS server data
100 */
101struct radius_server_data {
102	/**
103	 * auth_sock - Socket for RADIUS authentication messages
104	 */
105	int auth_sock;
106
107	/**
108	 * clients - List of authorized RADIUS clients
109	 */
110	struct radius_client *clients;
111
112	/**
113	 * next_sess_id - Next session identifier
114	 */
115	unsigned int next_sess_id;
116
117	/**
118	 * conf_ctx - Context pointer for callbacks
119	 *
120	 * This is used as the ctx argument in get_eap_user() calls.
121	 */
122	void *conf_ctx;
123
124	/**
125	 * num_sess - Number of active sessions
126	 */
127	int num_sess;
128
129	/**
130	 * eap_sim_db_priv - EAP-SIM/AKA database context
131	 *
132	 * This is passed to the EAP-SIM/AKA server implementation as a
133	 * callback context.
134	 */
135	void *eap_sim_db_priv;
136
137	/**
138	 * ssl_ctx - TLS context
139	 *
140	 * This is passed to the EAP server implementation as a callback
141	 * context for TLS operations.
142	 */
143	void *ssl_ctx;
144
145	/**
146	 * pac_opaque_encr_key - PAC-Opaque encryption key for EAP-FAST
147	 *
148	 * This parameter is used to set a key for EAP-FAST to encrypt the
149	 * PAC-Opaque data. It can be set to %NULL if EAP-FAST is not used. If
150	 * set, must point to a 16-octet key.
151	 */
152	u8 *pac_opaque_encr_key;
153
154	/**
155	 * eap_fast_a_id - EAP-FAST authority identity (A-ID)
156	 *
157	 * If EAP-FAST is not used, this can be set to %NULL. In theory, this
158	 * is a variable length field, but due to some existing implementations
159	 * requiring A-ID to be 16 octets in length, it is recommended to use
160	 * that length for the field to provide interoperability with deployed
161	 * peer implementations.
162	 */
163	u8 *eap_fast_a_id;
164
165	/**
166	 * eap_fast_a_id_len - Length of eap_fast_a_id buffer in octets
167	 */
168	size_t eap_fast_a_id_len;
169
170	/**
171	 * eap_fast_a_id_info - EAP-FAST authority identifier information
172	 *
173	 * This A-ID-Info contains a user-friendly name for the A-ID. For
174	 * example, this could be the enterprise and server names in
175	 * human-readable format. This field is encoded as UTF-8. If EAP-FAST
176	 * is not used, this can be set to %NULL.
177	 */
178	char *eap_fast_a_id_info;
179
180	/**
181	 * eap_fast_prov - EAP-FAST provisioning modes
182	 *
183	 * 0 = provisioning disabled, 1 = only anonymous provisioning allowed,
184	 * 2 = only authenticated provisioning allowed, 3 = both provisioning
185	 * modes allowed.
186	 */
187	int eap_fast_prov;
188
189	/**
190	 * pac_key_lifetime - EAP-FAST PAC-Key lifetime in seconds
191	 *
192	 * This is the hard limit on how long a provisioned PAC-Key can be
193	 * used.
194	 */
195	int pac_key_lifetime;
196
197	/**
198	 * pac_key_refresh_time - EAP-FAST PAC-Key refresh time in seconds
199	 *
200	 * This is a soft limit on the PAC-Key. The server will automatically
201	 * generate a new PAC-Key when this number of seconds (or fewer) of the
202	 * lifetime remains.
203	 */
204	int pac_key_refresh_time;
205
206	/**
207	 * eap_sim_aka_result_ind - EAP-SIM/AKA protected success indication
208	 *
209	 * This controls whether the protected success/failure indication
210	 * (AT_RESULT_IND) is used with EAP-SIM and EAP-AKA.
211	 */
212	int eap_sim_aka_result_ind;
213
214	/**
215	 * tnc - Trusted Network Connect (TNC)
216	 *
217	 * This controls whether TNC is enabled and will be required before the
218	 * peer is allowed to connect. Note: This is only used with EAP-TTLS
219	 * and EAP-FAST. If any other EAP method is enabled, the peer will be
220	 * allowed to connect without TNC.
221	 */
222	int tnc;
223
224	/**
225	 * pwd_group - The D-H group assigned for EAP-pwd
226	 *
227	 * If EAP-pwd is not used it can be set to zero.
228	 */
229	u16 pwd_group;
230
231	/**
232	 * wps - Wi-Fi Protected Setup context
233	 *
234	 * If WPS is used with an external RADIUS server (which is quite
235	 * unlikely configuration), this is used to provide a pointer to WPS
236	 * context data. Normally, this can be set to %NULL.
237	 */
238	struct wps_context *wps;
239
240	/**
241	 * ipv6 - Whether to enable IPv6 support in the RADIUS server
242	 */
243	int ipv6;
244
245	/**
246	 * start_time - Timestamp of server start
247	 */
248	struct os_time start_time;
249
250	/**
251	 * counters - Statistics counters for server operations
252	 *
253	 * These counters are the sum over all clients.
254	 */
255	struct radius_server_counters counters;
256
257	/**
258	 * get_eap_user - Callback for fetching EAP user information
259	 * @ctx: Context data from conf_ctx
260	 * @identity: User identity
261	 * @identity_len: identity buffer length in octets
262	 * @phase2: Whether this is for Phase 2 identity
263	 * @user: Data structure for filling in the user information
264	 * Returns: 0 on success, -1 on failure
265	 *
266	 * This is used to fetch information from user database. The callback
267	 * will fill in information about allowed EAP methods and the user
268	 * password. The password field will be an allocated copy of the
269	 * password data and RADIUS server will free it after use.
270	 */
271	int (*get_eap_user)(void *ctx, const u8 *identity, size_t identity_len,
272			    int phase2, struct eap_user *user);
273
274	/**
275	 * eap_req_id_text - Optional data for EAP-Request/Identity
276	 *
277	 * This can be used to configure an optional, displayable message that
278	 * will be sent in EAP-Request/Identity. This string can contain an
279	 * ASCII-0 character (nul) to separate network infromation per RFC
280	 * 4284. The actual string length is explicit provided in
281	 * eap_req_id_text_len since nul character will not be used as a string
282	 * terminator.
283	 */
284	char *eap_req_id_text;
285
286	/**
287	 * eap_req_id_text_len - Length of eap_req_id_text buffer in octets
288	 */
289	size_t eap_req_id_text_len;
290
291	/*
292	 * msg_ctx - Context data for wpa_msg() calls
293	 */
294	void *msg_ctx;
295};
296
297
298extern int wpa_debug_level;
299
300#define RADIUS_DEBUG(args...) \
301wpa_printf(MSG_DEBUG, "RADIUS SRV: " args)
302#define RADIUS_ERROR(args...) \
303wpa_printf(MSG_ERROR, "RADIUS SRV: " args)
304#define RADIUS_DUMP(args...) \
305wpa_hexdump(MSG_MSGDUMP, "RADIUS SRV: " args)
306#define RADIUS_DUMP_ASCII(args...) \
307wpa_hexdump_ascii(MSG_MSGDUMP, "RADIUS SRV: " args)
308
309
310static void radius_server_session_timeout(void *eloop_ctx, void *timeout_ctx);
311static void radius_server_session_remove_timeout(void *eloop_ctx,
312						 void *timeout_ctx);
313
314
315static struct radius_client *
316radius_server_get_client(struct radius_server_data *data, struct in_addr *addr,
317			 int ipv6)
318{
319	struct radius_client *client = data->clients;
320
321	while (client) {
322#ifdef CONFIG_IPV6
323		if (ipv6) {
324			struct in6_addr *addr6;
325			int i;
326
327			addr6 = (struct in6_addr *) addr;
328			for (i = 0; i < 16; i++) {
329				if ((addr6->s6_addr[i] &
330				     client->mask6.s6_addr[i]) !=
331				    (client->addr6.s6_addr[i] &
332				     client->mask6.s6_addr[i])) {
333					i = 17;
334					break;
335				}
336			}
337			if (i == 16) {
338				break;
339			}
340		}
341#endif /* CONFIG_IPV6 */
342		if (!ipv6 && (client->addr.s_addr & client->mask.s_addr) ==
343		    (addr->s_addr & client->mask.s_addr)) {
344			break;
345		}
346
347		client = client->next;
348	}
349
350	return client;
351}
352
353
354static struct radius_session *
355radius_server_get_session(struct radius_client *client, unsigned int sess_id)
356{
357	struct radius_session *sess = client->sessions;
358
359	while (sess) {
360		if (sess->sess_id == sess_id) {
361			break;
362		}
363		sess = sess->next;
364	}
365
366	return sess;
367}
368
369
370static void radius_server_session_free(struct radius_server_data *data,
371				       struct radius_session *sess)
372{
373	eloop_cancel_timeout(radius_server_session_timeout, data, sess);
374	eloop_cancel_timeout(radius_server_session_remove_timeout, data, sess);
375	eap_server_sm_deinit(sess->eap);
376	radius_msg_free(sess->last_msg);
377	os_free(sess->last_from_addr);
378	radius_msg_free(sess->last_reply);
379	os_free(sess);
380	data->num_sess--;
381}
382
383
384static void radius_server_session_remove(struct radius_server_data *data,
385					 struct radius_session *sess)
386{
387	struct radius_client *client = sess->client;
388	struct radius_session *session, *prev;
389
390	eloop_cancel_timeout(radius_server_session_remove_timeout, data, sess);
391
392	prev = NULL;
393	session = client->sessions;
394	while (session) {
395		if (session == sess) {
396			if (prev == NULL) {
397				client->sessions = sess->next;
398			} else {
399				prev->next = sess->next;
400			}
401			radius_server_session_free(data, sess);
402			break;
403		}
404		prev = session;
405		session = session->next;
406	}
407}
408
409
410static void radius_server_session_remove_timeout(void *eloop_ctx,
411						 void *timeout_ctx)
412{
413	struct radius_server_data *data = eloop_ctx;
414	struct radius_session *sess = timeout_ctx;
415	RADIUS_DEBUG("Removing completed session 0x%x", sess->sess_id);
416	radius_server_session_remove(data, sess);
417}
418
419
420static void radius_server_session_timeout(void *eloop_ctx, void *timeout_ctx)
421{
422	struct radius_server_data *data = eloop_ctx;
423	struct radius_session *sess = timeout_ctx;
424
425	RADIUS_DEBUG("Timing out authentication session 0x%x", sess->sess_id);
426	radius_server_session_remove(data, sess);
427}
428
429
430static struct radius_session *
431radius_server_new_session(struct radius_server_data *data,
432			  struct radius_client *client)
433{
434	struct radius_session *sess;
435
436	if (data->num_sess >= RADIUS_MAX_SESSION) {
437		RADIUS_DEBUG("Maximum number of existing session - no room "
438			     "for a new session");
439		return NULL;
440	}
441
442	sess = os_zalloc(sizeof(*sess));
443	if (sess == NULL)
444		return NULL;
445
446	sess->server = data;
447	sess->client = client;
448	sess->sess_id = data->next_sess_id++;
449	sess->next = client->sessions;
450	client->sessions = sess;
451	eloop_register_timeout(RADIUS_SESSION_TIMEOUT, 0,
452			       radius_server_session_timeout, data, sess);
453	data->num_sess++;
454	return sess;
455}
456
457
458static struct radius_session *
459radius_server_get_new_session(struct radius_server_data *data,
460			      struct radius_client *client,
461			      struct radius_msg *msg)
462{
463	u8 *user;
464	size_t user_len;
465	int res;
466	struct radius_session *sess;
467	struct eap_config eap_conf;
468
469	RADIUS_DEBUG("Creating a new session");
470
471	user = os_malloc(256);
472	if (user == NULL) {
473		return NULL;
474	}
475	res = radius_msg_get_attr(msg, RADIUS_ATTR_USER_NAME, user, 256);
476	if (res < 0 || res > 256) {
477		RADIUS_DEBUG("Could not get User-Name");
478		os_free(user);
479		return NULL;
480	}
481	user_len = res;
482	RADIUS_DUMP_ASCII("User-Name", user, user_len);
483
484	res = data->get_eap_user(data->conf_ctx, user, user_len, 0, NULL);
485	os_free(user);
486
487	if (res == 0) {
488		RADIUS_DEBUG("Matching user entry found");
489		sess = radius_server_new_session(data, client);
490		if (sess == NULL) {
491			RADIUS_DEBUG("Failed to create a new session");
492			return NULL;
493		}
494	} else {
495		RADIUS_DEBUG("User-Name not found from user database");
496		return NULL;
497	}
498
499	os_memset(&eap_conf, 0, sizeof(eap_conf));
500	eap_conf.ssl_ctx = data->ssl_ctx;
501	eap_conf.msg_ctx = data->msg_ctx;
502	eap_conf.eap_sim_db_priv = data->eap_sim_db_priv;
503	eap_conf.backend_auth = TRUE;
504	eap_conf.eap_server = 1;
505	eap_conf.pac_opaque_encr_key = data->pac_opaque_encr_key;
506	eap_conf.eap_fast_a_id = data->eap_fast_a_id;
507	eap_conf.eap_fast_a_id_len = data->eap_fast_a_id_len;
508	eap_conf.eap_fast_a_id_info = data->eap_fast_a_id_info;
509	eap_conf.eap_fast_prov = data->eap_fast_prov;
510	eap_conf.pac_key_lifetime = data->pac_key_lifetime;
511	eap_conf.pac_key_refresh_time = data->pac_key_refresh_time;
512	eap_conf.eap_sim_aka_result_ind = data->eap_sim_aka_result_ind;
513	eap_conf.tnc = data->tnc;
514	eap_conf.wps = data->wps;
515	eap_conf.pwd_group = data->pwd_group;
516	sess->eap = eap_server_sm_init(sess, &radius_server_eapol_cb,
517				       &eap_conf);
518	if (sess->eap == NULL) {
519		RADIUS_DEBUG("Failed to initialize EAP state machine for the "
520			     "new session");
521		radius_server_session_free(data, sess);
522		return NULL;
523	}
524	sess->eap_if = eap_get_interface(sess->eap);
525	sess->eap_if->eapRestart = TRUE;
526	sess->eap_if->portEnabled = TRUE;
527
528	RADIUS_DEBUG("New session 0x%x initialized", sess->sess_id);
529
530	return sess;
531}
532
533
534static struct radius_msg *
535radius_server_encapsulate_eap(struct radius_server_data *data,
536			      struct radius_client *client,
537			      struct radius_session *sess,
538			      struct radius_msg *request)
539{
540	struct radius_msg *msg;
541	int code;
542	unsigned int sess_id;
543	struct radius_hdr *hdr = radius_msg_get_hdr(request);
544
545	if (sess->eap_if->eapFail) {
546		sess->eap_if->eapFail = FALSE;
547		code = RADIUS_CODE_ACCESS_REJECT;
548	} else if (sess->eap_if->eapSuccess) {
549		sess->eap_if->eapSuccess = FALSE;
550		code = RADIUS_CODE_ACCESS_ACCEPT;
551	} else {
552		sess->eap_if->eapReq = FALSE;
553		code = RADIUS_CODE_ACCESS_CHALLENGE;
554	}
555
556	msg = radius_msg_new(code, hdr->identifier);
557	if (msg == NULL) {
558		RADIUS_DEBUG("Failed to allocate reply message");
559		return NULL;
560	}
561
562	sess_id = htonl(sess->sess_id);
563	if (code == RADIUS_CODE_ACCESS_CHALLENGE &&
564	    !radius_msg_add_attr(msg, RADIUS_ATTR_STATE,
565				 (u8 *) &sess_id, sizeof(sess_id))) {
566		RADIUS_DEBUG("Failed to add State attribute");
567	}
568
569	if (sess->eap_if->eapReqData &&
570	    !radius_msg_add_eap(msg, wpabuf_head(sess->eap_if->eapReqData),
571				wpabuf_len(sess->eap_if->eapReqData))) {
572		RADIUS_DEBUG("Failed to add EAP-Message attribute");
573	}
574
575	if (code == RADIUS_CODE_ACCESS_ACCEPT && sess->eap_if->eapKeyData) {
576		int len;
577		if (sess->eap_if->eapKeyDataLen > 64) {
578			len = 32;
579		} else {
580			len = sess->eap_if->eapKeyDataLen / 2;
581		}
582		if (!radius_msg_add_mppe_keys(msg, hdr->authenticator,
583					      (u8 *) client->shared_secret,
584					      client->shared_secret_len,
585					      sess->eap_if->eapKeyData + len,
586					      len, sess->eap_if->eapKeyData,
587					      len)) {
588			RADIUS_DEBUG("Failed to add MPPE key attributes");
589		}
590	}
591
592	if (radius_msg_copy_attr(msg, request, RADIUS_ATTR_PROXY_STATE) < 0) {
593		RADIUS_DEBUG("Failed to copy Proxy-State attribute(s)");
594		radius_msg_free(msg);
595		return NULL;
596	}
597
598	if (radius_msg_finish_srv(msg, (u8 *) client->shared_secret,
599				  client->shared_secret_len,
600				  hdr->authenticator) < 0) {
601		RADIUS_DEBUG("Failed to add Message-Authenticator attribute");
602	}
603
604	return msg;
605}
606
607
608static int radius_server_reject(struct radius_server_data *data,
609				struct radius_client *client,
610				struct radius_msg *request,
611				struct sockaddr *from, socklen_t fromlen,
612				const char *from_addr, int from_port)
613{
614	struct radius_msg *msg;
615	int ret = 0;
616	struct eap_hdr eapfail;
617	struct wpabuf *buf;
618	struct radius_hdr *hdr = radius_msg_get_hdr(request);
619
620	RADIUS_DEBUG("Reject invalid request from %s:%d",
621		     from_addr, from_port);
622
623	msg = radius_msg_new(RADIUS_CODE_ACCESS_REJECT, hdr->identifier);
624	if (msg == NULL) {
625		return -1;
626	}
627
628	os_memset(&eapfail, 0, sizeof(eapfail));
629	eapfail.code = EAP_CODE_FAILURE;
630	eapfail.identifier = 0;
631	eapfail.length = host_to_be16(sizeof(eapfail));
632
633	if (!radius_msg_add_eap(msg, (u8 *) &eapfail, sizeof(eapfail))) {
634		RADIUS_DEBUG("Failed to add EAP-Message attribute");
635	}
636
637	if (radius_msg_copy_attr(msg, request, RADIUS_ATTR_PROXY_STATE) < 0) {
638		RADIUS_DEBUG("Failed to copy Proxy-State attribute(s)");
639		radius_msg_free(msg);
640		return -1;
641	}
642
643	if (radius_msg_finish_srv(msg, (u8 *) client->shared_secret,
644				  client->shared_secret_len,
645				  hdr->authenticator) <
646	    0) {
647		RADIUS_DEBUG("Failed to add Message-Authenticator attribute");
648	}
649
650	if (wpa_debug_level <= MSG_MSGDUMP) {
651		radius_msg_dump(msg);
652	}
653
654	data->counters.access_rejects++;
655	client->counters.access_rejects++;
656	buf = radius_msg_get_buf(msg);
657	if (sendto(data->auth_sock, wpabuf_head(buf), wpabuf_len(buf), 0,
658		   (struct sockaddr *) from, sizeof(*from)) < 0) {
659		perror("sendto[RADIUS SRV]");
660		ret = -1;
661	}
662
663	radius_msg_free(msg);
664
665	return ret;
666}
667
668
669static int radius_server_request(struct radius_server_data *data,
670				 struct radius_msg *msg,
671				 struct sockaddr *from, socklen_t fromlen,
672				 struct radius_client *client,
673				 const char *from_addr, int from_port,
674				 struct radius_session *force_sess)
675{
676	u8 *eap = NULL;
677	size_t eap_len;
678	int res, state_included = 0;
679	u8 statebuf[4];
680	unsigned int state;
681	struct radius_session *sess;
682	struct radius_msg *reply;
683	int is_complete = 0;
684
685	if (force_sess)
686		sess = force_sess;
687	else {
688		res = radius_msg_get_attr(msg, RADIUS_ATTR_STATE, statebuf,
689					  sizeof(statebuf));
690		state_included = res >= 0;
691		if (res == sizeof(statebuf)) {
692			state = WPA_GET_BE32(statebuf);
693			sess = radius_server_get_session(client, state);
694		} else {
695			sess = NULL;
696		}
697	}
698
699	if (sess) {
700		RADIUS_DEBUG("Request for session 0x%x", sess->sess_id);
701	} else if (state_included) {
702		RADIUS_DEBUG("State attribute included but no session found");
703		radius_server_reject(data, client, msg, from, fromlen,
704				     from_addr, from_port);
705		return -1;
706	} else {
707		sess = radius_server_get_new_session(data, client, msg);
708		if (sess == NULL) {
709			RADIUS_DEBUG("Could not create a new session");
710			radius_server_reject(data, client, msg, from, fromlen,
711					     from_addr, from_port);
712			return -1;
713		}
714	}
715
716	if (sess->last_from_port == from_port &&
717	    sess->last_identifier == radius_msg_get_hdr(msg)->identifier &&
718	    os_memcmp(sess->last_authenticator,
719		      radius_msg_get_hdr(msg)->authenticator, 16) == 0) {
720		RADIUS_DEBUG("Duplicate message from %s", from_addr);
721		data->counters.dup_access_requests++;
722		client->counters.dup_access_requests++;
723
724		if (sess->last_reply) {
725			struct wpabuf *buf;
726			buf = radius_msg_get_buf(sess->last_reply);
727			res = sendto(data->auth_sock, wpabuf_head(buf),
728				     wpabuf_len(buf), 0,
729				     (struct sockaddr *) from, fromlen);
730			if (res < 0) {
731				perror("sendto[RADIUS SRV]");
732			}
733			return 0;
734		}
735
736		RADIUS_DEBUG("No previous reply available for duplicate "
737			     "message");
738		return -1;
739	}
740
741	eap = radius_msg_get_eap(msg, &eap_len);
742	if (eap == NULL) {
743		RADIUS_DEBUG("No EAP-Message in RADIUS packet from %s",
744			     from_addr);
745		data->counters.packets_dropped++;
746		client->counters.packets_dropped++;
747		return -1;
748	}
749
750	RADIUS_DUMP("Received EAP data", eap, eap_len);
751
752	/* FIX: if Code is Request, Success, or Failure, send Access-Reject;
753	 * RFC3579 Sect. 2.6.2.
754	 * Include EAP-Response/Nak with no preferred method if
755	 * code == request.
756	 * If code is not 1-4, discard the packet silently.
757	 * Or is this already done by the EAP state machine? */
758
759	wpabuf_free(sess->eap_if->eapRespData);
760	sess->eap_if->eapRespData = wpabuf_alloc_ext_data(eap, eap_len);
761	if (sess->eap_if->eapRespData == NULL)
762		os_free(eap);
763	eap = NULL;
764	sess->eap_if->eapResp = TRUE;
765	eap_server_sm_step(sess->eap);
766
767	if ((sess->eap_if->eapReq || sess->eap_if->eapSuccess ||
768	     sess->eap_if->eapFail) && sess->eap_if->eapReqData) {
769		RADIUS_DUMP("EAP data from the state machine",
770			    wpabuf_head(sess->eap_if->eapReqData),
771			    wpabuf_len(sess->eap_if->eapReqData));
772	} else if (sess->eap_if->eapFail) {
773		RADIUS_DEBUG("No EAP data from the state machine, but eapFail "
774			     "set");
775	} else if (eap_sm_method_pending(sess->eap)) {
776		radius_msg_free(sess->last_msg);
777		sess->last_msg = msg;
778		sess->last_from_port = from_port;
779		os_free(sess->last_from_addr);
780		sess->last_from_addr = os_strdup(from_addr);
781		sess->last_fromlen = fromlen;
782		os_memcpy(&sess->last_from, from, fromlen);
783		return -2;
784	} else {
785		RADIUS_DEBUG("No EAP data from the state machine - ignore this"
786			     " Access-Request silently (assuming it was a "
787			     "duplicate)");
788		data->counters.packets_dropped++;
789		client->counters.packets_dropped++;
790		return -1;
791	}
792
793	if (sess->eap_if->eapSuccess || sess->eap_if->eapFail)
794		is_complete = 1;
795
796	reply = radius_server_encapsulate_eap(data, client, sess, msg);
797
798	if (reply) {
799		struct wpabuf *buf;
800		struct radius_hdr *hdr;
801
802		RADIUS_DEBUG("Reply to %s:%d", from_addr, from_port);
803		if (wpa_debug_level <= MSG_MSGDUMP) {
804			radius_msg_dump(reply);
805		}
806
807		switch (radius_msg_get_hdr(reply)->code) {
808		case RADIUS_CODE_ACCESS_ACCEPT:
809			data->counters.access_accepts++;
810			client->counters.access_accepts++;
811			break;
812		case RADIUS_CODE_ACCESS_REJECT:
813			data->counters.access_rejects++;
814			client->counters.access_rejects++;
815			break;
816		case RADIUS_CODE_ACCESS_CHALLENGE:
817			data->counters.access_challenges++;
818			client->counters.access_challenges++;
819			break;
820		}
821		buf = radius_msg_get_buf(reply);
822		res = sendto(data->auth_sock, wpabuf_head(buf),
823			     wpabuf_len(buf), 0,
824			     (struct sockaddr *) from, fromlen);
825		if (res < 0) {
826			perror("sendto[RADIUS SRV]");
827		}
828		radius_msg_free(sess->last_reply);
829		sess->last_reply = reply;
830		sess->last_from_port = from_port;
831		hdr = radius_msg_get_hdr(msg);
832		sess->last_identifier = hdr->identifier;
833		os_memcpy(sess->last_authenticator, hdr->authenticator, 16);
834	} else {
835		data->counters.packets_dropped++;
836		client->counters.packets_dropped++;
837	}
838
839	if (is_complete) {
840		RADIUS_DEBUG("Removing completed session 0x%x after timeout",
841			     sess->sess_id);
842		eloop_cancel_timeout(radius_server_session_remove_timeout,
843				     data, sess);
844		eloop_register_timeout(10, 0,
845				       radius_server_session_remove_timeout,
846				       data, sess);
847	}
848
849	return 0;
850}
851
852
853static void radius_server_receive_auth(int sock, void *eloop_ctx,
854				       void *sock_ctx)
855{
856	struct radius_server_data *data = eloop_ctx;
857	u8 *buf = NULL;
858	union {
859		struct sockaddr_storage ss;
860		struct sockaddr_in sin;
861#ifdef CONFIG_IPV6
862		struct sockaddr_in6 sin6;
863#endif /* CONFIG_IPV6 */
864	} from;
865	socklen_t fromlen;
866	int len;
867	struct radius_client *client = NULL;
868	struct radius_msg *msg = NULL;
869	char abuf[50];
870	int from_port = 0;
871
872	buf = os_malloc(RADIUS_MAX_MSG_LEN);
873	if (buf == NULL) {
874		goto fail;
875	}
876
877	fromlen = sizeof(from);
878	len = recvfrom(sock, buf, RADIUS_MAX_MSG_LEN, 0,
879		       (struct sockaddr *) &from.ss, &fromlen);
880	if (len < 0) {
881		perror("recvfrom[radius_server]");
882		goto fail;
883	}
884
885#ifdef CONFIG_IPV6
886	if (data->ipv6) {
887		if (inet_ntop(AF_INET6, &from.sin6.sin6_addr, abuf,
888			      sizeof(abuf)) == NULL)
889			abuf[0] = '\0';
890		from_port = ntohs(from.sin6.sin6_port);
891		RADIUS_DEBUG("Received %d bytes from %s:%d",
892			     len, abuf, from_port);
893
894		client = radius_server_get_client(data,
895						  (struct in_addr *)
896						  &from.sin6.sin6_addr, 1);
897	}
898#endif /* CONFIG_IPV6 */
899
900	if (!data->ipv6) {
901		os_strlcpy(abuf, inet_ntoa(from.sin.sin_addr), sizeof(abuf));
902		from_port = ntohs(from.sin.sin_port);
903		RADIUS_DEBUG("Received %d bytes from %s:%d",
904			     len, abuf, from_port);
905
906		client = radius_server_get_client(data, &from.sin.sin_addr, 0);
907	}
908
909	RADIUS_DUMP("Received data", buf, len);
910
911	if (client == NULL) {
912		RADIUS_DEBUG("Unknown client %s - packet ignored", abuf);
913		data->counters.invalid_requests++;
914		goto fail;
915	}
916
917	msg = radius_msg_parse(buf, len);
918	if (msg == NULL) {
919		RADIUS_DEBUG("Parsing incoming RADIUS frame failed");
920		data->counters.malformed_access_requests++;
921		client->counters.malformed_access_requests++;
922		goto fail;
923	}
924
925	os_free(buf);
926	buf = NULL;
927
928	if (wpa_debug_level <= MSG_MSGDUMP) {
929		radius_msg_dump(msg);
930	}
931
932	if (radius_msg_get_hdr(msg)->code != RADIUS_CODE_ACCESS_REQUEST) {
933		RADIUS_DEBUG("Unexpected RADIUS code %d",
934			     radius_msg_get_hdr(msg)->code);
935		data->counters.unknown_types++;
936		client->counters.unknown_types++;
937		goto fail;
938	}
939
940	data->counters.access_requests++;
941	client->counters.access_requests++;
942
943	if (radius_msg_verify_msg_auth(msg, (u8 *) client->shared_secret,
944				       client->shared_secret_len, NULL)) {
945		RADIUS_DEBUG("Invalid Message-Authenticator from %s", abuf);
946		data->counters.bad_authenticators++;
947		client->counters.bad_authenticators++;
948		goto fail;
949	}
950
951	if (radius_server_request(data, msg, (struct sockaddr *) &from,
952				  fromlen, client, abuf, from_port, NULL) ==
953	    -2)
954		return; /* msg was stored with the session */
955
956fail:
957	radius_msg_free(msg);
958	os_free(buf);
959}
960
961
962static int radius_server_disable_pmtu_discovery(int s)
963{
964	int r = -1;
965#if defined(IP_MTU_DISCOVER) && defined(IP_PMTUDISC_DONT)
966	/* Turn off Path MTU discovery on IPv4/UDP sockets. */
967	int action = IP_PMTUDISC_DONT;
968	r = setsockopt(s, IPPROTO_IP, IP_MTU_DISCOVER, &action,
969		       sizeof(action));
970	if (r == -1)
971		wpa_printf(MSG_ERROR, "Failed to set IP_MTU_DISCOVER: "
972			   "%s", strerror(errno));
973#endif
974	return r;
975}
976
977
978static int radius_server_open_socket(int port)
979{
980	int s;
981	struct sockaddr_in addr;
982
983	s = socket(PF_INET, SOCK_DGRAM, 0);
984	if (s < 0) {
985		perror("socket");
986		return -1;
987	}
988
989	radius_server_disable_pmtu_discovery(s);
990
991	os_memset(&addr, 0, sizeof(addr));
992	addr.sin_family = AF_INET;
993	addr.sin_port = htons(port);
994	if (bind(s, (struct sockaddr *) &addr, sizeof(addr)) < 0) {
995		perror("bind");
996		close(s);
997		return -1;
998	}
999
1000	return s;
1001}
1002
1003
1004#ifdef CONFIG_IPV6
1005static int radius_server_open_socket6(int port)
1006{
1007	int s;
1008	struct sockaddr_in6 addr;
1009
1010	s = socket(PF_INET6, SOCK_DGRAM, 0);
1011	if (s < 0) {
1012		perror("socket[IPv6]");
1013		return -1;
1014	}
1015
1016	os_memset(&addr, 0, sizeof(addr));
1017	addr.sin6_family = AF_INET6;
1018	os_memcpy(&addr.sin6_addr, &in6addr_any, sizeof(in6addr_any));
1019	addr.sin6_port = htons(port);
1020	if (bind(s, (struct sockaddr *) &addr, sizeof(addr)) < 0) {
1021		perror("bind");
1022		close(s);
1023		return -1;
1024	}
1025
1026	return s;
1027}
1028#endif /* CONFIG_IPV6 */
1029
1030
1031static void radius_server_free_sessions(struct radius_server_data *data,
1032					struct radius_session *sessions)
1033{
1034	struct radius_session *session, *prev;
1035
1036	session = sessions;
1037	while (session) {
1038		prev = session;
1039		session = session->next;
1040		radius_server_session_free(data, prev);
1041	}
1042}
1043
1044
1045static void radius_server_free_clients(struct radius_server_data *data,
1046				       struct radius_client *clients)
1047{
1048	struct radius_client *client, *prev;
1049
1050	client = clients;
1051	while (client) {
1052		prev = client;
1053		client = client->next;
1054
1055		radius_server_free_sessions(data, prev->sessions);
1056		os_free(prev->shared_secret);
1057		os_free(prev);
1058	}
1059}
1060
1061
1062static struct radius_client *
1063radius_server_read_clients(const char *client_file, int ipv6)
1064{
1065	FILE *f;
1066	const int buf_size = 1024;
1067	char *buf, *pos;
1068	struct radius_client *clients, *tail, *entry;
1069	int line = 0, mask, failed = 0, i;
1070	struct in_addr addr;
1071#ifdef CONFIG_IPV6
1072	struct in6_addr addr6;
1073#endif /* CONFIG_IPV6 */
1074	unsigned int val;
1075
1076	f = fopen(client_file, "r");
1077	if (f == NULL) {
1078		RADIUS_ERROR("Could not open client file '%s'", client_file);
1079		return NULL;
1080	}
1081
1082	buf = os_malloc(buf_size);
1083	if (buf == NULL) {
1084		fclose(f);
1085		return NULL;
1086	}
1087
1088	clients = tail = NULL;
1089	while (fgets(buf, buf_size, f)) {
1090		/* Configuration file format:
1091		 * 192.168.1.0/24 secret
1092		 * 192.168.1.2 secret
1093		 * fe80::211:22ff:fe33:4455/64 secretipv6
1094		 */
1095		line++;
1096		buf[buf_size - 1] = '\0';
1097		pos = buf;
1098		while (*pos != '\0' && *pos != '\n')
1099			pos++;
1100		if (*pos == '\n')
1101			*pos = '\0';
1102		if (*buf == '\0' || *buf == '#')
1103			continue;
1104
1105		pos = buf;
1106		while ((*pos >= '0' && *pos <= '9') || *pos == '.' ||
1107		       (*pos >= 'a' && *pos <= 'f') || *pos == ':' ||
1108		       (*pos >= 'A' && *pos <= 'F')) {
1109			pos++;
1110		}
1111
1112		if (*pos == '\0') {
1113			failed = 1;
1114			break;
1115		}
1116
1117		if (*pos == '/') {
1118			char *end;
1119			*pos++ = '\0';
1120			mask = strtol(pos, &end, 10);
1121			if ((pos == end) ||
1122			    (mask < 0 || mask > (ipv6 ? 128 : 32))) {
1123				failed = 1;
1124				break;
1125			}
1126			pos = end;
1127		} else {
1128			mask = ipv6 ? 128 : 32;
1129			*pos++ = '\0';
1130		}
1131
1132		if (!ipv6 && inet_aton(buf, &addr) == 0) {
1133			failed = 1;
1134			break;
1135		}
1136#ifdef CONFIG_IPV6
1137		if (ipv6 && inet_pton(AF_INET6, buf, &addr6) <= 0) {
1138			if (inet_pton(AF_INET, buf, &addr) <= 0) {
1139				failed = 1;
1140				break;
1141			}
1142			/* Convert IPv4 address to IPv6 */
1143			if (mask <= 32)
1144				mask += (128 - 32);
1145			os_memset(addr6.s6_addr, 0, 10);
1146			addr6.s6_addr[10] = 0xff;
1147			addr6.s6_addr[11] = 0xff;
1148			os_memcpy(addr6.s6_addr + 12, (char *) &addr.s_addr,
1149				  4);
1150		}
1151#endif /* CONFIG_IPV6 */
1152
1153		while (*pos == ' ' || *pos == '\t') {
1154			pos++;
1155		}
1156
1157		if (*pos == '\0') {
1158			failed = 1;
1159			break;
1160		}
1161
1162		entry = os_zalloc(sizeof(*entry));
1163		if (entry == NULL) {
1164			failed = 1;
1165			break;
1166		}
1167		entry->shared_secret = os_strdup(pos);
1168		if (entry->shared_secret == NULL) {
1169			failed = 1;
1170			os_free(entry);
1171			break;
1172		}
1173		entry->shared_secret_len = os_strlen(entry->shared_secret);
1174		entry->addr.s_addr = addr.s_addr;
1175		if (!ipv6) {
1176			val = 0;
1177			for (i = 0; i < mask; i++)
1178				val |= 1 << (31 - i);
1179			entry->mask.s_addr = htonl(val);
1180		}
1181#ifdef CONFIG_IPV6
1182		if (ipv6) {
1183			int offset = mask / 8;
1184
1185			os_memcpy(entry->addr6.s6_addr, addr6.s6_addr, 16);
1186			os_memset(entry->mask6.s6_addr, 0xff, offset);
1187			val = 0;
1188			for (i = 0; i < (mask % 8); i++)
1189				val |= 1 << (7 - i);
1190			if (offset < 16)
1191				entry->mask6.s6_addr[offset] = val;
1192		}
1193#endif /* CONFIG_IPV6 */
1194
1195		if (tail == NULL) {
1196			clients = tail = entry;
1197		} else {
1198			tail->next = entry;
1199			tail = entry;
1200		}
1201	}
1202
1203	if (failed) {
1204		RADIUS_ERROR("Invalid line %d in '%s'", line, client_file);
1205		radius_server_free_clients(NULL, clients);
1206		clients = NULL;
1207	}
1208
1209	os_free(buf);
1210	fclose(f);
1211
1212	return clients;
1213}
1214
1215
1216/**
1217 * radius_server_init - Initialize RADIUS server
1218 * @conf: Configuration for the RADIUS server
1219 * Returns: Pointer to private RADIUS server context or %NULL on failure
1220 *
1221 * This initializes a RADIUS server instance and returns a context pointer that
1222 * will be used in other calls to the RADIUS server module. The server can be
1223 * deinitialize by calling radius_server_deinit().
1224 */
1225struct radius_server_data *
1226radius_server_init(struct radius_server_conf *conf)
1227{
1228	struct radius_server_data *data;
1229
1230#ifndef CONFIG_IPV6
1231	if (conf->ipv6) {
1232		fprintf(stderr, "RADIUS server compiled without IPv6 "
1233			"support.\n");
1234		return NULL;
1235	}
1236#endif /* CONFIG_IPV6 */
1237
1238	data = os_zalloc(sizeof(*data));
1239	if (data == NULL)
1240		return NULL;
1241
1242	os_get_time(&data->start_time);
1243	data->conf_ctx = conf->conf_ctx;
1244	data->eap_sim_db_priv = conf->eap_sim_db_priv;
1245	data->ssl_ctx = conf->ssl_ctx;
1246	data->msg_ctx = conf->msg_ctx;
1247	data->ipv6 = conf->ipv6;
1248	if (conf->pac_opaque_encr_key) {
1249		data->pac_opaque_encr_key = os_malloc(16);
1250		os_memcpy(data->pac_opaque_encr_key, conf->pac_opaque_encr_key,
1251			  16);
1252	}
1253	if (conf->eap_fast_a_id) {
1254		data->eap_fast_a_id = os_malloc(conf->eap_fast_a_id_len);
1255		if (data->eap_fast_a_id) {
1256			os_memcpy(data->eap_fast_a_id, conf->eap_fast_a_id,
1257				  conf->eap_fast_a_id_len);
1258			data->eap_fast_a_id_len = conf->eap_fast_a_id_len;
1259		}
1260	}
1261	if (conf->eap_fast_a_id_info)
1262		data->eap_fast_a_id_info = os_strdup(conf->eap_fast_a_id_info);
1263	data->eap_fast_prov = conf->eap_fast_prov;
1264	data->pac_key_lifetime = conf->pac_key_lifetime;
1265	data->pac_key_refresh_time = conf->pac_key_refresh_time;
1266	data->get_eap_user = conf->get_eap_user;
1267	data->eap_sim_aka_result_ind = conf->eap_sim_aka_result_ind;
1268	data->tnc = conf->tnc;
1269	data->wps = conf->wps;
1270	data->pwd_group = conf->pwd_group;
1271	if (conf->eap_req_id_text) {
1272		data->eap_req_id_text = os_malloc(conf->eap_req_id_text_len);
1273		if (data->eap_req_id_text) {
1274			os_memcpy(data->eap_req_id_text, conf->eap_req_id_text,
1275				  conf->eap_req_id_text_len);
1276			data->eap_req_id_text_len = conf->eap_req_id_text_len;
1277		}
1278	}
1279
1280	data->clients = radius_server_read_clients(conf->client_file,
1281						   conf->ipv6);
1282	if (data->clients == NULL) {
1283		printf("No RADIUS clients configured.\n");
1284		radius_server_deinit(data);
1285		return NULL;
1286	}
1287
1288#ifdef CONFIG_IPV6
1289	if (conf->ipv6)
1290		data->auth_sock = radius_server_open_socket6(conf->auth_port);
1291	else
1292#endif /* CONFIG_IPV6 */
1293	data->auth_sock = radius_server_open_socket(conf->auth_port);
1294	if (data->auth_sock < 0) {
1295		printf("Failed to open UDP socket for RADIUS authentication "
1296		       "server\n");
1297		radius_server_deinit(data);
1298		return NULL;
1299	}
1300	if (eloop_register_read_sock(data->auth_sock,
1301				     radius_server_receive_auth,
1302				     data, NULL)) {
1303		radius_server_deinit(data);
1304		return NULL;
1305	}
1306
1307	return data;
1308}
1309
1310
1311/**
1312 * radius_server_deinit - Deinitialize RADIUS server
1313 * @data: RADIUS server context from radius_server_init()
1314 */
1315void radius_server_deinit(struct radius_server_data *data)
1316{
1317	if (data == NULL)
1318		return;
1319
1320	if (data->auth_sock >= 0) {
1321		eloop_unregister_read_sock(data->auth_sock);
1322		close(data->auth_sock);
1323	}
1324
1325	radius_server_free_clients(data, data->clients);
1326
1327	os_free(data->pac_opaque_encr_key);
1328	os_free(data->eap_fast_a_id);
1329	os_free(data->eap_fast_a_id_info);
1330	os_free(data->eap_req_id_text);
1331	os_free(data);
1332}
1333
1334
1335/**
1336 * radius_server_get_mib - Get RADIUS server MIB information
1337 * @data: RADIUS server context from radius_server_init()
1338 * @buf: Buffer for returning the MIB data in text format
1339 * @buflen: buf length in octets
1340 * Returns: Number of octets written into buf
1341 */
1342int radius_server_get_mib(struct radius_server_data *data, char *buf,
1343			  size_t buflen)
1344{
1345	int ret, uptime;
1346	unsigned int idx;
1347	char *end, *pos;
1348	struct os_time now;
1349	struct radius_client *cli;
1350
1351	/* RFC 2619 - RADIUS Authentication Server MIB */
1352
1353	if (data == NULL || buflen == 0)
1354		return 0;
1355
1356	pos = buf;
1357	end = buf + buflen;
1358
1359	os_get_time(&now);
1360	uptime = (now.sec - data->start_time.sec) * 100 +
1361		((now.usec - data->start_time.usec) / 10000) % 100;
1362	ret = os_snprintf(pos, end - pos,
1363			  "RADIUS-AUTH-SERVER-MIB\n"
1364			  "radiusAuthServIdent=hostapd\n"
1365			  "radiusAuthServUpTime=%d\n"
1366			  "radiusAuthServResetTime=0\n"
1367			  "radiusAuthServConfigReset=4\n",
1368			  uptime);
1369	if (ret < 0 || ret >= end - pos) {
1370		*pos = '\0';
1371		return pos - buf;
1372	}
1373	pos += ret;
1374
1375	ret = os_snprintf(pos, end - pos,
1376			  "radiusAuthServTotalAccessRequests=%u\n"
1377			  "radiusAuthServTotalInvalidRequests=%u\n"
1378			  "radiusAuthServTotalDupAccessRequests=%u\n"
1379			  "radiusAuthServTotalAccessAccepts=%u\n"
1380			  "radiusAuthServTotalAccessRejects=%u\n"
1381			  "radiusAuthServTotalAccessChallenges=%u\n"
1382			  "radiusAuthServTotalMalformedAccessRequests=%u\n"
1383			  "radiusAuthServTotalBadAuthenticators=%u\n"
1384			  "radiusAuthServTotalPacketsDropped=%u\n"
1385			  "radiusAuthServTotalUnknownTypes=%u\n",
1386			  data->counters.access_requests,
1387			  data->counters.invalid_requests,
1388			  data->counters.dup_access_requests,
1389			  data->counters.access_accepts,
1390			  data->counters.access_rejects,
1391			  data->counters.access_challenges,
1392			  data->counters.malformed_access_requests,
1393			  data->counters.bad_authenticators,
1394			  data->counters.packets_dropped,
1395			  data->counters.unknown_types);
1396	if (ret < 0 || ret >= end - pos) {
1397		*pos = '\0';
1398		return pos - buf;
1399	}
1400	pos += ret;
1401
1402	for (cli = data->clients, idx = 0; cli; cli = cli->next, idx++) {
1403		char abuf[50], mbuf[50];
1404#ifdef CONFIG_IPV6
1405		if (data->ipv6) {
1406			if (inet_ntop(AF_INET6, &cli->addr6, abuf,
1407				      sizeof(abuf)) == NULL)
1408				abuf[0] = '\0';
1409			if (inet_ntop(AF_INET6, &cli->mask6, abuf,
1410				      sizeof(mbuf)) == NULL)
1411				mbuf[0] = '\0';
1412		}
1413#endif /* CONFIG_IPV6 */
1414		if (!data->ipv6) {
1415			os_strlcpy(abuf, inet_ntoa(cli->addr), sizeof(abuf));
1416			os_strlcpy(mbuf, inet_ntoa(cli->mask), sizeof(mbuf));
1417		}
1418
1419		ret = os_snprintf(pos, end - pos,
1420				  "radiusAuthClientIndex=%u\n"
1421				  "radiusAuthClientAddress=%s/%s\n"
1422				  "radiusAuthServAccessRequests=%u\n"
1423				  "radiusAuthServDupAccessRequests=%u\n"
1424				  "radiusAuthServAccessAccepts=%u\n"
1425				  "radiusAuthServAccessRejects=%u\n"
1426				  "radiusAuthServAccessChallenges=%u\n"
1427				  "radiusAuthServMalformedAccessRequests=%u\n"
1428				  "radiusAuthServBadAuthenticators=%u\n"
1429				  "radiusAuthServPacketsDropped=%u\n"
1430				  "radiusAuthServUnknownTypes=%u\n",
1431				  idx,
1432				  abuf, mbuf,
1433				  cli->counters.access_requests,
1434				  cli->counters.dup_access_requests,
1435				  cli->counters.access_accepts,
1436				  cli->counters.access_rejects,
1437				  cli->counters.access_challenges,
1438				  cli->counters.malformed_access_requests,
1439				  cli->counters.bad_authenticators,
1440				  cli->counters.packets_dropped,
1441				  cli->counters.unknown_types);
1442		if (ret < 0 || ret >= end - pos) {
1443			*pos = '\0';
1444			return pos - buf;
1445		}
1446		pos += ret;
1447	}
1448
1449	return pos - buf;
1450}
1451
1452
1453static int radius_server_get_eap_user(void *ctx, const u8 *identity,
1454				      size_t identity_len, int phase2,
1455				      struct eap_user *user)
1456{
1457	struct radius_session *sess = ctx;
1458	struct radius_server_data *data = sess->server;
1459
1460	return data->get_eap_user(data->conf_ctx, identity, identity_len,
1461				  phase2, user);
1462}
1463
1464
1465static const char * radius_server_get_eap_req_id_text(void *ctx, size_t *len)
1466{
1467	struct radius_session *sess = ctx;
1468	struct radius_server_data *data = sess->server;
1469	*len = data->eap_req_id_text_len;
1470	return data->eap_req_id_text;
1471}
1472
1473
1474static struct eapol_callbacks radius_server_eapol_cb =
1475{
1476	.get_eap_user = radius_server_get_eap_user,
1477	.get_eap_req_id_text = radius_server_get_eap_req_id_text,
1478};
1479
1480
1481/**
1482 * radius_server_eap_pending_cb - Pending EAP data notification
1483 * @data: RADIUS server context from radius_server_init()
1484 * @ctx: Pending EAP context pointer
1485 *
1486 * This function is used to notify EAP server module that a pending operation
1487 * has been completed and processing of the EAP session can proceed.
1488 */
1489void radius_server_eap_pending_cb(struct radius_server_data *data, void *ctx)
1490{
1491	struct radius_client *cli;
1492	struct radius_session *s, *sess = NULL;
1493	struct radius_msg *msg;
1494
1495	if (data == NULL)
1496		return;
1497
1498	for (cli = data->clients; cli; cli = cli->next) {
1499		for (s = cli->sessions; s; s = s->next) {
1500			if (s->eap == ctx && s->last_msg) {
1501				sess = s;
1502				break;
1503			}
1504			if (sess)
1505				break;
1506		}
1507		if (sess)
1508			break;
1509	}
1510
1511	if (sess == NULL) {
1512		RADIUS_DEBUG("No session matched callback ctx");
1513		return;
1514	}
1515
1516	msg = sess->last_msg;
1517	sess->last_msg = NULL;
1518	eap_sm_pending_cb(sess->eap);
1519	if (radius_server_request(data, msg,
1520				  (struct sockaddr *) &sess->last_from,
1521				  sess->last_fromlen, cli,
1522				  sess->last_from_addr,
1523				  sess->last_from_port, sess) == -2)
1524		return; /* msg was stored with the session */
1525
1526	radius_msg_free(msg);
1527}
1528