eap_server_aka.c revision d5e4923d04122f81300fa68fb07d64ede28fd44d
1/*
2 * hostapd / EAP-AKA (RFC 4187) and EAP-AKA' (RFC 5448)
3 * Copyright (c) 2005-2012, Jouni Malinen <j@w1.fi>
4 *
5 * This software may be distributed under the terms of the BSD license.
6 * See README for more details.
7 */
8
9#include "includes.h"
10
11#include "common.h"
12#include "crypto/sha256.h"
13#include "crypto/crypto.h"
14#include "crypto/random.h"
15#include "eap_common/eap_sim_common.h"
16#include "eap_server/eap_i.h"
17#include "eap_server/eap_sim_db.h"
18
19
20struct eap_aka_data {
21	u8 mk[EAP_SIM_MK_LEN];
22	u8 nonce_s[EAP_SIM_NONCE_S_LEN];
23	u8 k_aut[EAP_AKA_PRIME_K_AUT_LEN];
24	u8 k_encr[EAP_SIM_K_ENCR_LEN];
25	u8 k_re[EAP_AKA_PRIME_K_RE_LEN]; /* EAP-AKA' only */
26	u8 msk[EAP_SIM_KEYING_DATA_LEN];
27	u8 emsk[EAP_EMSK_LEN];
28	u8 rand[EAP_AKA_RAND_LEN];
29	u8 autn[EAP_AKA_AUTN_LEN];
30	u8 ck[EAP_AKA_CK_LEN];
31	u8 ik[EAP_AKA_IK_LEN];
32	u8 res[EAP_AKA_RES_MAX_LEN];
33	size_t res_len;
34	enum {
35		IDENTITY, CHALLENGE, REAUTH, NOTIFICATION, SUCCESS, FAILURE
36	} state;
37	char *next_pseudonym;
38	char *next_reauth_id;
39	u16 counter;
40	struct eap_sim_reauth *reauth;
41	int auts_reported; /* whether the current AUTS has been reported to the
42			    * eap_sim_db */
43	u16 notification;
44	int use_result_ind;
45
46	struct wpabuf *id_msgs;
47	int pending_id;
48	u8 eap_method;
49	u8 *network_name;
50	size_t network_name_len;
51	u16 kdf;
52	int identity_round;
53	char permanent[20]; /* Permanent username */
54};
55
56
57static void eap_aka_fullauth(struct eap_sm *sm, struct eap_aka_data *data);
58
59
60static const char * eap_aka_state_txt(int state)
61{
62	switch (state) {
63	case IDENTITY:
64		return "IDENTITY";
65	case CHALLENGE:
66		return "CHALLENGE";
67	case REAUTH:
68		return "REAUTH";
69	case SUCCESS:
70		return "SUCCESS";
71	case FAILURE:
72		return "FAILURE";
73	case NOTIFICATION:
74		return "NOTIFICATION";
75	default:
76		return "Unknown?!";
77	}
78}
79
80
81static void eap_aka_state(struct eap_aka_data *data, int state)
82{
83	wpa_printf(MSG_DEBUG, "EAP-AKA: %s -> %s",
84		   eap_aka_state_txt(data->state),
85		   eap_aka_state_txt(state));
86	data->state = state;
87}
88
89
90static int eap_aka_check_identity_reauth(struct eap_sm *sm,
91					 struct eap_aka_data *data,
92					 const char *username)
93{
94	if (data->eap_method == EAP_TYPE_AKA_PRIME &&
95	    username[0] != EAP_AKA_PRIME_REAUTH_ID_PREFIX)
96		return 0;
97	if (data->eap_method == EAP_TYPE_AKA &&
98	    username[0] != EAP_AKA_REAUTH_ID_PREFIX)
99		return 0;
100
101	wpa_printf(MSG_DEBUG, "EAP-AKA: Reauth username '%s'", username);
102	data->reauth = eap_sim_db_get_reauth_entry(sm->eap_sim_db_priv,
103						   username);
104	if (data->reauth == NULL) {
105		wpa_printf(MSG_DEBUG, "EAP-AKA: Unknown reauth identity - "
106			   "request full auth identity");
107		/* Remain in IDENTITY state for another round */
108		return 0;
109	}
110
111	wpa_printf(MSG_DEBUG, "EAP-AKA: Using fast re-authentication");
112	os_strlcpy(data->permanent, data->reauth->permanent,
113		   sizeof(data->permanent));
114	data->counter = data->reauth->counter;
115	if (data->eap_method == EAP_TYPE_AKA_PRIME) {
116		os_memcpy(data->k_encr, data->reauth->k_encr,
117			  EAP_SIM_K_ENCR_LEN);
118		os_memcpy(data->k_aut, data->reauth->k_aut,
119			  EAP_AKA_PRIME_K_AUT_LEN);
120		os_memcpy(data->k_re, data->reauth->k_re,
121			  EAP_AKA_PRIME_K_RE_LEN);
122	} else {
123		os_memcpy(data->mk, data->reauth->mk, EAP_SIM_MK_LEN);
124	}
125
126	eap_aka_state(data, REAUTH);
127	return 1;
128}
129
130
131static void eap_aka_check_identity(struct eap_sm *sm,
132				   struct eap_aka_data *data)
133{
134	char *username;
135
136	/* Check if we already know the identity from EAP-Response/Identity */
137
138	username = sim_get_username(sm->identity, sm->identity_len);
139	if (username == NULL)
140		return;
141
142	if (eap_aka_check_identity_reauth(sm, data, username) > 0) {
143		os_free(username);
144		/*
145		 * Since re-auth username was recognized, skip AKA/Identity
146		 * exchange.
147		 */
148		return;
149	}
150
151	if ((data->eap_method == EAP_TYPE_AKA_PRIME &&
152	     username[0] == EAP_AKA_PRIME_PSEUDONYM_PREFIX) ||
153	    (data->eap_method == EAP_TYPE_AKA &&
154	     username[0] == EAP_AKA_PSEUDONYM_PREFIX)) {
155		const char *permanent;
156		wpa_printf(MSG_DEBUG, "EAP-AKA: Pseudonym username '%s'",
157			   username);
158		permanent = eap_sim_db_get_permanent(
159			sm->eap_sim_db_priv, username);
160		if (permanent == NULL) {
161			os_free(username);
162			wpa_printf(MSG_DEBUG, "EAP-AKA: Unknown pseudonym "
163				   "identity - request permanent identity");
164			/* Remain in IDENTITY state for another round */
165			return;
166		}
167		os_strlcpy(data->permanent, permanent,
168			   sizeof(data->permanent));
169		/*
170		 * Since pseudonym username was recognized, skip AKA/Identity
171		 * exchange.
172		 */
173		eap_aka_fullauth(sm, data);
174	}
175
176	os_free(username);
177}
178
179
180static void * eap_aka_init(struct eap_sm *sm)
181{
182	struct eap_aka_data *data;
183
184	if (sm->eap_sim_db_priv == NULL) {
185		wpa_printf(MSG_WARNING, "EAP-AKA: eap_sim_db not configured");
186		return NULL;
187	}
188
189	data = os_zalloc(sizeof(*data));
190	if (data == NULL)
191		return NULL;
192
193	data->eap_method = EAP_TYPE_AKA;
194
195	data->state = IDENTITY;
196	data->pending_id = -1;
197	eap_aka_check_identity(sm, data);
198
199	return data;
200}
201
202
203#ifdef EAP_SERVER_AKA_PRIME
204static void * eap_aka_prime_init(struct eap_sm *sm)
205{
206	struct eap_aka_data *data;
207	/* TODO: make ANID configurable; see 3GPP TS 24.302 */
208	char *network_name = "WLAN";
209
210	if (sm->eap_sim_db_priv == NULL) {
211		wpa_printf(MSG_WARNING, "EAP-AKA: eap_sim_db not configured");
212		return NULL;
213	}
214
215	data = os_zalloc(sizeof(*data));
216	if (data == NULL)
217		return NULL;
218
219	data->eap_method = EAP_TYPE_AKA_PRIME;
220	data->network_name = (u8 *) os_strdup(network_name);
221	if (data->network_name == NULL) {
222		os_free(data);
223		return NULL;
224	}
225
226	data->network_name_len = os_strlen(network_name);
227
228	data->state = IDENTITY;
229	data->pending_id = -1;
230	eap_aka_check_identity(sm, data);
231
232	return data;
233}
234#endif /* EAP_SERVER_AKA_PRIME */
235
236
237static void eap_aka_reset(struct eap_sm *sm, void *priv)
238{
239	struct eap_aka_data *data = priv;
240	os_free(data->next_pseudonym);
241	os_free(data->next_reauth_id);
242	wpabuf_free(data->id_msgs);
243	os_free(data->network_name);
244	os_free(data);
245}
246
247
248static int eap_aka_add_id_msg(struct eap_aka_data *data,
249			      const struct wpabuf *msg)
250{
251	if (msg == NULL)
252		return -1;
253
254	if (data->id_msgs == NULL) {
255		data->id_msgs = wpabuf_dup(msg);
256		return data->id_msgs == NULL ? -1 : 0;
257	}
258
259	if (wpabuf_resize(&data->id_msgs, wpabuf_len(msg)) < 0)
260		return -1;
261	wpabuf_put_buf(data->id_msgs, msg);
262
263	return 0;
264}
265
266
267static void eap_aka_add_checkcode(struct eap_aka_data *data,
268				  struct eap_sim_msg *msg)
269{
270	const u8 *addr;
271	size_t len;
272	u8 hash[SHA256_MAC_LEN];
273
274	wpa_printf(MSG_DEBUG, "   AT_CHECKCODE");
275
276	if (data->id_msgs == NULL) {
277		/*
278		 * No EAP-AKA/Identity packets were exchanged - send empty
279		 * checkcode.
280		 */
281		eap_sim_msg_add(msg, EAP_SIM_AT_CHECKCODE, 0, NULL, 0);
282		return;
283	}
284
285	/* Checkcode is SHA1 hash over all EAP-AKA/Identity packets. */
286	addr = wpabuf_head(data->id_msgs);
287	len = wpabuf_len(data->id_msgs);
288	wpa_hexdump(MSG_MSGDUMP, "EAP-AKA: AT_CHECKCODE data", addr, len);
289	if (data->eap_method == EAP_TYPE_AKA_PRIME)
290		sha256_vector(1, &addr, &len, hash);
291	else
292		sha1_vector(1, &addr, &len, hash);
293
294	eap_sim_msg_add(msg, EAP_SIM_AT_CHECKCODE, 0, hash,
295			data->eap_method == EAP_TYPE_AKA_PRIME ?
296			EAP_AKA_PRIME_CHECKCODE_LEN : EAP_AKA_CHECKCODE_LEN);
297}
298
299
300static int eap_aka_verify_checkcode(struct eap_aka_data *data,
301				    const u8 *checkcode, size_t checkcode_len)
302{
303	const u8 *addr;
304	size_t len;
305	u8 hash[SHA256_MAC_LEN];
306	size_t hash_len;
307
308	if (checkcode == NULL)
309		return -1;
310
311	if (data->id_msgs == NULL) {
312		if (checkcode_len != 0) {
313			wpa_printf(MSG_DEBUG, "EAP-AKA: Checkcode from peer "
314				   "indicates that AKA/Identity messages were "
315				   "used, but they were not");
316			return -1;
317		}
318		return 0;
319	}
320
321	hash_len = data->eap_method == EAP_TYPE_AKA_PRIME ?
322		EAP_AKA_PRIME_CHECKCODE_LEN : EAP_AKA_CHECKCODE_LEN;
323
324	if (checkcode_len != hash_len) {
325		wpa_printf(MSG_DEBUG, "EAP-AKA: Checkcode from peer indicates "
326			   "that AKA/Identity message were not used, but they "
327			   "were");
328		return -1;
329	}
330
331	/* Checkcode is SHA1 hash over all EAP-AKA/Identity packets. */
332	addr = wpabuf_head(data->id_msgs);
333	len = wpabuf_len(data->id_msgs);
334	if (data->eap_method == EAP_TYPE_AKA_PRIME)
335		sha256_vector(1, &addr, &len, hash);
336	else
337		sha1_vector(1, &addr, &len, hash);
338
339	if (os_memcmp(hash, checkcode, hash_len) != 0) {
340		wpa_printf(MSG_DEBUG, "EAP-AKA: Mismatch in AT_CHECKCODE");
341		return -1;
342	}
343
344	return 0;
345}
346
347
348static struct wpabuf * eap_aka_build_identity(struct eap_sm *sm,
349					      struct eap_aka_data *data, u8 id)
350{
351	struct eap_sim_msg *msg;
352	struct wpabuf *buf;
353
354	wpa_printf(MSG_DEBUG, "EAP-AKA: Generating Identity");
355	msg = eap_sim_msg_init(EAP_CODE_REQUEST, id, data->eap_method,
356			       EAP_AKA_SUBTYPE_IDENTITY);
357	data->identity_round++;
358	if (data->identity_round == 1) {
359		/*
360		 * RFC 4187, Chap. 4.1.4 recommends that identity from EAP is
361		 * ignored and the AKA/Identity is used to request the
362		 * identity.
363		 */
364		wpa_printf(MSG_DEBUG, "   AT_ANY_ID_REQ");
365		eap_sim_msg_add(msg, EAP_SIM_AT_ANY_ID_REQ, 0, NULL, 0);
366	} else if (data->identity_round > 3) {
367		/* Cannot use more than three rounds of Identity messages */
368		eap_sim_msg_free(msg);
369		return NULL;
370	} else if (sm->identity && sm->identity_len > 0 &&
371		   (sm->identity[0] == EAP_AKA_REAUTH_ID_PREFIX ||
372		    sm->identity[0] == EAP_AKA_PRIME_REAUTH_ID_PREFIX)) {
373		/* Reauth id may have expired - try fullauth */
374		wpa_printf(MSG_DEBUG, "   AT_FULLAUTH_ID_REQ");
375		eap_sim_msg_add(msg, EAP_SIM_AT_FULLAUTH_ID_REQ, 0, NULL, 0);
376	} else {
377		wpa_printf(MSG_DEBUG, "   AT_PERMANENT_ID_REQ");
378		eap_sim_msg_add(msg, EAP_SIM_AT_PERMANENT_ID_REQ, 0, NULL, 0);
379	}
380	buf = eap_sim_msg_finish(msg, NULL, NULL, 0);
381	if (eap_aka_add_id_msg(data, buf) < 0) {
382		wpabuf_free(buf);
383		return NULL;
384	}
385	data->pending_id = id;
386	return buf;
387}
388
389
390static int eap_aka_build_encr(struct eap_sm *sm, struct eap_aka_data *data,
391			      struct eap_sim_msg *msg, u16 counter,
392			      const u8 *nonce_s)
393{
394	os_free(data->next_pseudonym);
395	if (nonce_s == NULL) {
396		data->next_pseudonym =
397			eap_sim_db_get_next_pseudonym(
398				sm->eap_sim_db_priv,
399				data->eap_method == EAP_TYPE_AKA_PRIME ?
400				EAP_SIM_DB_AKA_PRIME : EAP_SIM_DB_AKA);
401	} else {
402		/* Do not update pseudonym during re-authentication */
403		data->next_pseudonym = NULL;
404	}
405	os_free(data->next_reauth_id);
406	if (data->counter <= EAP_AKA_MAX_FAST_REAUTHS) {
407		data->next_reauth_id =
408			eap_sim_db_get_next_reauth_id(
409				sm->eap_sim_db_priv,
410				data->eap_method == EAP_TYPE_AKA_PRIME ?
411				EAP_SIM_DB_AKA_PRIME : EAP_SIM_DB_AKA);
412	} else {
413		wpa_printf(MSG_DEBUG, "EAP-AKA: Max fast re-authentication "
414			   "count exceeded - force full authentication");
415		data->next_reauth_id = NULL;
416	}
417
418	if (data->next_pseudonym == NULL && data->next_reauth_id == NULL &&
419	    counter == 0 && nonce_s == NULL)
420		return 0;
421
422	wpa_printf(MSG_DEBUG, "   AT_IV");
423	wpa_printf(MSG_DEBUG, "   AT_ENCR_DATA");
424	eap_sim_msg_add_encr_start(msg, EAP_SIM_AT_IV, EAP_SIM_AT_ENCR_DATA);
425
426	if (counter > 0) {
427		wpa_printf(MSG_DEBUG, "   *AT_COUNTER (%u)", counter);
428		eap_sim_msg_add(msg, EAP_SIM_AT_COUNTER, counter, NULL, 0);
429	}
430
431	if (nonce_s) {
432		wpa_printf(MSG_DEBUG, "   *AT_NONCE_S");
433		eap_sim_msg_add(msg, EAP_SIM_AT_NONCE_S, 0, nonce_s,
434				EAP_SIM_NONCE_S_LEN);
435	}
436
437	if (data->next_pseudonym) {
438		wpa_printf(MSG_DEBUG, "   *AT_NEXT_PSEUDONYM (%s)",
439			   data->next_pseudonym);
440		eap_sim_msg_add(msg, EAP_SIM_AT_NEXT_PSEUDONYM,
441				os_strlen(data->next_pseudonym),
442				(u8 *) data->next_pseudonym,
443				os_strlen(data->next_pseudonym));
444	}
445
446	if (data->next_reauth_id) {
447		wpa_printf(MSG_DEBUG, "   *AT_NEXT_REAUTH_ID (%s)",
448			   data->next_reauth_id);
449		eap_sim_msg_add(msg, EAP_SIM_AT_NEXT_REAUTH_ID,
450				os_strlen(data->next_reauth_id),
451				(u8 *) data->next_reauth_id,
452				os_strlen(data->next_reauth_id));
453	}
454
455	if (eap_sim_msg_add_encr_end(msg, data->k_encr, EAP_SIM_AT_PADDING)) {
456		wpa_printf(MSG_WARNING, "EAP-AKA: Failed to encrypt "
457			   "AT_ENCR_DATA");
458		return -1;
459	}
460
461	return 0;
462}
463
464
465static struct wpabuf * eap_aka_build_challenge(struct eap_sm *sm,
466					       struct eap_aka_data *data,
467					       u8 id)
468{
469	struct eap_sim_msg *msg;
470
471	wpa_printf(MSG_DEBUG, "EAP-AKA: Generating Challenge");
472	msg = eap_sim_msg_init(EAP_CODE_REQUEST, id, data->eap_method,
473			       EAP_AKA_SUBTYPE_CHALLENGE);
474	wpa_printf(MSG_DEBUG, "   AT_RAND");
475	eap_sim_msg_add(msg, EAP_SIM_AT_RAND, 0, data->rand, EAP_AKA_RAND_LEN);
476	wpa_printf(MSG_DEBUG, "   AT_AUTN");
477	eap_sim_msg_add(msg, EAP_SIM_AT_AUTN, 0, data->autn, EAP_AKA_AUTN_LEN);
478	if (data->eap_method == EAP_TYPE_AKA_PRIME) {
479		if (data->kdf) {
480			/* Add the selected KDF into the beginning */
481			wpa_printf(MSG_DEBUG, "   AT_KDF");
482			eap_sim_msg_add(msg, EAP_SIM_AT_KDF, data->kdf,
483					NULL, 0);
484		}
485		wpa_printf(MSG_DEBUG, "   AT_KDF");
486		eap_sim_msg_add(msg, EAP_SIM_AT_KDF, EAP_AKA_PRIME_KDF,
487				NULL, 0);
488		wpa_printf(MSG_DEBUG, "   AT_KDF_INPUT");
489		eap_sim_msg_add(msg, EAP_SIM_AT_KDF_INPUT,
490				data->network_name_len,
491				data->network_name, data->network_name_len);
492	}
493
494	if (eap_aka_build_encr(sm, data, msg, 0, NULL)) {
495		eap_sim_msg_free(msg);
496		return NULL;
497	}
498
499	eap_aka_add_checkcode(data, msg);
500
501	if (sm->eap_sim_aka_result_ind) {
502		wpa_printf(MSG_DEBUG, "   AT_RESULT_IND");
503		eap_sim_msg_add(msg, EAP_SIM_AT_RESULT_IND, 0, NULL, 0);
504	}
505
506#ifdef EAP_SERVER_AKA_PRIME
507	if (data->eap_method == EAP_TYPE_AKA) {
508		u16 flags = 0;
509		int i;
510		int aka_prime_preferred = 0;
511
512		i = 0;
513		while (sm->user && i < EAP_MAX_METHODS &&
514		       (sm->user->methods[i].vendor != EAP_VENDOR_IETF ||
515			sm->user->methods[i].method != EAP_TYPE_NONE)) {
516			if (sm->user->methods[i].vendor == EAP_VENDOR_IETF) {
517				if (sm->user->methods[i].method ==
518				    EAP_TYPE_AKA)
519					break;
520				if (sm->user->methods[i].method ==
521				    EAP_TYPE_AKA_PRIME) {
522					aka_prime_preferred = 1;
523					break;
524				}
525			}
526			i++;
527		}
528
529		if (aka_prime_preferred)
530			flags |= EAP_AKA_BIDDING_FLAG_D;
531		eap_sim_msg_add(msg, EAP_SIM_AT_BIDDING, flags, NULL, 0);
532	}
533#endif /* EAP_SERVER_AKA_PRIME */
534
535	wpa_printf(MSG_DEBUG, "   AT_MAC");
536	eap_sim_msg_add_mac(msg, EAP_SIM_AT_MAC);
537	return eap_sim_msg_finish(msg, data->k_aut, NULL, 0);
538}
539
540
541static struct wpabuf * eap_aka_build_reauth(struct eap_sm *sm,
542					    struct eap_aka_data *data, u8 id)
543{
544	struct eap_sim_msg *msg;
545
546	wpa_printf(MSG_DEBUG, "EAP-AKA: Generating Re-authentication");
547
548	if (random_get_bytes(data->nonce_s, EAP_SIM_NONCE_S_LEN))
549		return NULL;
550	wpa_hexdump_key(MSG_MSGDUMP, "EAP-AKA: NONCE_S",
551			data->nonce_s, EAP_SIM_NONCE_S_LEN);
552
553	if (data->eap_method == EAP_TYPE_AKA_PRIME) {
554		eap_aka_prime_derive_keys_reauth(data->k_re, data->counter,
555						 sm->identity,
556						 sm->identity_len,
557						 data->nonce_s,
558						 data->msk, data->emsk);
559	} else {
560		eap_sim_derive_keys(data->mk, data->k_encr, data->k_aut,
561				    data->msk, data->emsk);
562		eap_sim_derive_keys_reauth(data->counter, sm->identity,
563					   sm->identity_len, data->nonce_s,
564					   data->mk, data->msk, data->emsk);
565	}
566
567	msg = eap_sim_msg_init(EAP_CODE_REQUEST, id, data->eap_method,
568			       EAP_AKA_SUBTYPE_REAUTHENTICATION);
569
570	if (eap_aka_build_encr(sm, data, msg, data->counter, data->nonce_s)) {
571		eap_sim_msg_free(msg);
572		return NULL;
573	}
574
575	eap_aka_add_checkcode(data, msg);
576
577	if (sm->eap_sim_aka_result_ind) {
578		wpa_printf(MSG_DEBUG, "   AT_RESULT_IND");
579		eap_sim_msg_add(msg, EAP_SIM_AT_RESULT_IND, 0, NULL, 0);
580	}
581
582	wpa_printf(MSG_DEBUG, "   AT_MAC");
583	eap_sim_msg_add_mac(msg, EAP_SIM_AT_MAC);
584	return eap_sim_msg_finish(msg, data->k_aut, NULL, 0);
585}
586
587
588static struct wpabuf * eap_aka_build_notification(struct eap_sm *sm,
589						  struct eap_aka_data *data,
590						  u8 id)
591{
592	struct eap_sim_msg *msg;
593
594	wpa_printf(MSG_DEBUG, "EAP-AKA: Generating Notification");
595	msg = eap_sim_msg_init(EAP_CODE_REQUEST, id, data->eap_method,
596			       EAP_AKA_SUBTYPE_NOTIFICATION);
597	wpa_printf(MSG_DEBUG, "   AT_NOTIFICATION (%d)", data->notification);
598	eap_sim_msg_add(msg, EAP_SIM_AT_NOTIFICATION, data->notification,
599			NULL, 0);
600	if (data->use_result_ind) {
601		if (data->reauth) {
602			wpa_printf(MSG_DEBUG, "   AT_IV");
603			wpa_printf(MSG_DEBUG, "   AT_ENCR_DATA");
604			eap_sim_msg_add_encr_start(msg, EAP_SIM_AT_IV,
605						   EAP_SIM_AT_ENCR_DATA);
606			wpa_printf(MSG_DEBUG, "   *AT_COUNTER (%u)",
607				   data->counter);
608			eap_sim_msg_add(msg, EAP_SIM_AT_COUNTER, data->counter,
609					NULL, 0);
610
611			if (eap_sim_msg_add_encr_end(msg, data->k_encr,
612						     EAP_SIM_AT_PADDING)) {
613				wpa_printf(MSG_WARNING, "EAP-AKA: Failed to "
614					   "encrypt AT_ENCR_DATA");
615				eap_sim_msg_free(msg);
616				return NULL;
617			}
618		}
619
620		wpa_printf(MSG_DEBUG, "   AT_MAC");
621		eap_sim_msg_add_mac(msg, EAP_SIM_AT_MAC);
622	}
623	return eap_sim_msg_finish(msg, data->k_aut, NULL, 0);
624}
625
626
627static struct wpabuf * eap_aka_buildReq(struct eap_sm *sm, void *priv, u8 id)
628{
629	struct eap_aka_data *data = priv;
630
631	data->auts_reported = 0;
632	switch (data->state) {
633	case IDENTITY:
634		return eap_aka_build_identity(sm, data, id);
635	case CHALLENGE:
636		return eap_aka_build_challenge(sm, data, id);
637	case REAUTH:
638		return eap_aka_build_reauth(sm, data, id);
639	case NOTIFICATION:
640		return eap_aka_build_notification(sm, data, id);
641	default:
642		wpa_printf(MSG_DEBUG, "EAP-AKA: Unknown state %d in "
643			   "buildReq", data->state);
644		break;
645	}
646	return NULL;
647}
648
649
650static Boolean eap_aka_check(struct eap_sm *sm, void *priv,
651			     struct wpabuf *respData)
652{
653	struct eap_aka_data *data = priv;
654	const u8 *pos;
655	size_t len;
656
657	pos = eap_hdr_validate(EAP_VENDOR_IETF, data->eap_method, respData,
658			       &len);
659	if (pos == NULL || len < 3) {
660		wpa_printf(MSG_INFO, "EAP-AKA: Invalid frame");
661		return TRUE;
662	}
663
664	return FALSE;
665}
666
667
668static Boolean eap_aka_subtype_ok(struct eap_aka_data *data, u8 subtype)
669{
670	if (subtype == EAP_AKA_SUBTYPE_CLIENT_ERROR ||
671	    subtype == EAP_AKA_SUBTYPE_AUTHENTICATION_REJECT)
672		return FALSE;
673
674	switch (data->state) {
675	case IDENTITY:
676		if (subtype != EAP_AKA_SUBTYPE_IDENTITY) {
677			wpa_printf(MSG_INFO, "EAP-AKA: Unexpected response "
678				   "subtype %d", subtype);
679			return TRUE;
680		}
681		break;
682	case CHALLENGE:
683		if (subtype != EAP_AKA_SUBTYPE_CHALLENGE &&
684		    subtype != EAP_AKA_SUBTYPE_SYNCHRONIZATION_FAILURE) {
685			wpa_printf(MSG_INFO, "EAP-AKA: Unexpected response "
686				   "subtype %d", subtype);
687			return TRUE;
688		}
689		break;
690	case REAUTH:
691		if (subtype != EAP_AKA_SUBTYPE_REAUTHENTICATION) {
692			wpa_printf(MSG_INFO, "EAP-AKA: Unexpected response "
693				   "subtype %d", subtype);
694			return TRUE;
695		}
696		break;
697	case NOTIFICATION:
698		if (subtype != EAP_AKA_SUBTYPE_NOTIFICATION) {
699			wpa_printf(MSG_INFO, "EAP-AKA: Unexpected response "
700				   "subtype %d", subtype);
701			return TRUE;
702		}
703		break;
704	default:
705		wpa_printf(MSG_INFO, "EAP-AKA: Unexpected state (%d) for "
706			   "processing a response", data->state);
707		return TRUE;
708	}
709
710	return FALSE;
711}
712
713
714static void eap_aka_determine_identity(struct eap_sm *sm,
715				       struct eap_aka_data *data)
716{
717	char *username;
718
719	wpa_hexdump_ascii(MSG_DEBUG, "EAP-AKA: Identity",
720			  sm->identity, sm->identity_len);
721
722	username = sim_get_username(sm->identity, sm->identity_len);
723	if (username == NULL) {
724		data->notification = EAP_SIM_GENERAL_FAILURE_BEFORE_AUTH;
725		eap_aka_state(data, NOTIFICATION);
726		return;
727	}
728
729	if (eap_aka_check_identity_reauth(sm, data, username) > 0) {
730		os_free(username);
731		return;
732	}
733
734	if ((data->eap_method == EAP_TYPE_AKA_PRIME &&
735	     username[0] == EAP_AKA_PRIME_PSEUDONYM_PREFIX) ||
736	    (data->eap_method == EAP_TYPE_AKA &&
737	     username[0] == EAP_AKA_PSEUDONYM_PREFIX)) {
738		const char *permanent;
739		wpa_printf(MSG_DEBUG, "EAP-AKA: Pseudonym username '%s'",
740			   username);
741		permanent = eap_sim_db_get_permanent(
742			sm->eap_sim_db_priv, username);
743		os_free(username);
744		if (permanent == NULL) {
745			wpa_printf(MSG_DEBUG, "EAP-AKA: Unknown pseudonym "
746				   "identity - request permanent identity");
747			/* Remain in IDENTITY state for another round */
748			return;
749		}
750		os_strlcpy(data->permanent, permanent,
751			   sizeof(data->permanent));
752	} else if ((data->eap_method == EAP_TYPE_AKA_PRIME &&
753		    username[0] == EAP_AKA_PRIME_PERMANENT_PREFIX) ||
754		   (data->eap_method == EAP_TYPE_AKA &&
755		    username[0] == EAP_AKA_PERMANENT_PREFIX)) {
756		wpa_printf(MSG_DEBUG, "EAP-AKA: Permanent username '%s'",
757			   username);
758		os_strlcpy(data->permanent, username, sizeof(data->permanent));
759		os_free(username);
760	} else {
761		wpa_printf(MSG_DEBUG, "EAP-AKA: Unrecognized username '%s'",
762			   username);
763		os_free(username);
764		data->notification = EAP_SIM_GENERAL_FAILURE_BEFORE_AUTH;
765		eap_aka_state(data, NOTIFICATION);
766		return;
767	}
768
769	eap_aka_fullauth(sm, data);
770}
771
772
773static void eap_aka_fullauth(struct eap_sm *sm, struct eap_aka_data *data)
774{
775	size_t identity_len;
776	int res;
777
778	res = eap_sim_db_get_aka_auth(sm->eap_sim_db_priv, data->permanent,
779				      data->rand, data->autn, data->ik,
780				      data->ck, data->res, &data->res_len, sm);
781	if (res == EAP_SIM_DB_PENDING) {
782		wpa_printf(MSG_DEBUG, "EAP-AKA: AKA authentication data "
783			   "not yet available - pending request");
784		sm->method_pending = METHOD_PENDING_WAIT;
785		return;
786	}
787
788#ifdef EAP_SERVER_AKA_PRIME
789	if (data->eap_method == EAP_TYPE_AKA_PRIME) {
790		/* Note: AUTN = (SQN ^ AK) || AMF || MAC which gives us the
791		 * needed 6-octet SQN ^AK for CK',IK' derivation */
792		eap_aka_prime_derive_ck_ik_prime(data->ck, data->ik,
793						 data->autn,
794						 data->network_name,
795						 data->network_name_len);
796	}
797#endif /* EAP_SERVER_AKA_PRIME */
798
799	data->reauth = NULL;
800	data->counter = 0; /* reset re-auth counter since this is full auth */
801
802	if (res != 0) {
803		wpa_printf(MSG_INFO, "EAP-AKA: Failed to get AKA "
804			   "authentication data for the peer");
805		data->notification = EAP_SIM_GENERAL_FAILURE_BEFORE_AUTH;
806		eap_aka_state(data, NOTIFICATION);
807		return;
808	}
809	if (sm->method_pending == METHOD_PENDING_WAIT) {
810		wpa_printf(MSG_DEBUG, "EAP-AKA: AKA authentication data "
811			   "available - abort pending wait");
812		sm->method_pending = METHOD_PENDING_NONE;
813	}
814
815	identity_len = sm->identity_len;
816	while (identity_len > 0 && sm->identity[identity_len - 1] == '\0') {
817		wpa_printf(MSG_DEBUG, "EAP-AKA: Workaround - drop last null "
818			   "character from identity");
819		identity_len--;
820	}
821	wpa_hexdump_ascii(MSG_DEBUG, "EAP-AKA: Identity for MK derivation",
822			  sm->identity, identity_len);
823
824	if (data->eap_method == EAP_TYPE_AKA_PRIME) {
825		eap_aka_prime_derive_keys(sm->identity, identity_len, data->ik,
826					  data->ck, data->k_encr, data->k_aut,
827					  data->k_re, data->msk, data->emsk);
828	} else {
829		eap_aka_derive_mk(sm->identity, identity_len, data->ik,
830				  data->ck, data->mk);
831		eap_sim_derive_keys(data->mk, data->k_encr, data->k_aut,
832				    data->msk, data->emsk);
833	}
834
835	eap_aka_state(data, CHALLENGE);
836}
837
838
839static void eap_aka_process_identity(struct eap_sm *sm,
840				     struct eap_aka_data *data,
841				     struct wpabuf *respData,
842				     struct eap_sim_attrs *attr)
843{
844	u8 *new_identity;
845
846	wpa_printf(MSG_DEBUG, "EAP-AKA: Processing Identity");
847
848	if (attr->mac || attr->iv || attr->encr_data) {
849		wpa_printf(MSG_WARNING, "EAP-AKA: Unexpected attribute "
850			   "received in EAP-Response/AKA-Identity");
851		data->notification = EAP_SIM_GENERAL_FAILURE_BEFORE_AUTH;
852		eap_aka_state(data, NOTIFICATION);
853		return;
854	}
855
856	/*
857	 * We always request identity with AKA/Identity, so the peer is
858	 * required to have replied with one.
859	 */
860	if (!attr->identity || attr->identity_len == 0) {
861		wpa_printf(MSG_DEBUG, "EAP-AKA: Peer did not provide any "
862			   "identity");
863		data->notification = EAP_SIM_GENERAL_FAILURE_BEFORE_AUTH;
864		eap_aka_state(data, NOTIFICATION);
865		return;
866	}
867
868	new_identity = os_malloc(attr->identity_len);
869	if (new_identity == NULL) {
870		data->notification = EAP_SIM_GENERAL_FAILURE_BEFORE_AUTH;
871		eap_aka_state(data, NOTIFICATION);
872		return;
873	}
874	os_free(sm->identity);
875	sm->identity = new_identity;
876	os_memcpy(sm->identity, attr->identity, attr->identity_len);
877	sm->identity_len = attr->identity_len;
878
879	eap_aka_determine_identity(sm, data);
880	if (eap_get_id(respData) == data->pending_id) {
881		data->pending_id = -1;
882		eap_aka_add_id_msg(data, respData);
883	}
884}
885
886
887static int eap_aka_verify_mac(struct eap_aka_data *data,
888			      const struct wpabuf *req,
889			      const u8 *mac, const u8 *extra,
890			      size_t extra_len)
891{
892	if (data->eap_method == EAP_TYPE_AKA_PRIME)
893		return eap_sim_verify_mac_sha256(data->k_aut, req, mac, extra,
894						 extra_len);
895	return eap_sim_verify_mac(data->k_aut, req, mac, extra, extra_len);
896}
897
898
899static void eap_aka_process_challenge(struct eap_sm *sm,
900				      struct eap_aka_data *data,
901				      struct wpabuf *respData,
902				      struct eap_sim_attrs *attr)
903{
904	wpa_printf(MSG_DEBUG, "EAP-AKA: Processing Challenge");
905
906#ifdef EAP_SERVER_AKA_PRIME
907#if 0
908	/* KDF negotiation; to be enabled only after more than one KDF is
909	 * supported */
910	if (data->eap_method == EAP_TYPE_AKA_PRIME &&
911	    attr->kdf_count == 1 && attr->mac == NULL) {
912		if (attr->kdf[0] != EAP_AKA_PRIME_KDF) {
913			wpa_printf(MSG_WARNING, "EAP-AKA': Peer selected "
914				   "unknown KDF");
915			data->notification =
916				EAP_SIM_GENERAL_FAILURE_BEFORE_AUTH;
917			eap_aka_state(data, NOTIFICATION);
918			return;
919		}
920
921		data->kdf = attr->kdf[0];
922
923		/* Allow negotiation to continue with the selected KDF by
924		 * sending another Challenge message */
925		wpa_printf(MSG_DEBUG, "EAP-AKA': KDF %d selected", data->kdf);
926		return;
927	}
928#endif
929#endif /* EAP_SERVER_AKA_PRIME */
930
931	if (attr->checkcode &&
932	    eap_aka_verify_checkcode(data, attr->checkcode,
933				     attr->checkcode_len)) {
934		wpa_printf(MSG_WARNING, "EAP-AKA: Invalid AT_CHECKCODE in the "
935			   "message");
936		data->notification = EAP_SIM_GENERAL_FAILURE_BEFORE_AUTH;
937		eap_aka_state(data, NOTIFICATION);
938		return;
939	}
940	if (attr->mac == NULL ||
941	    eap_aka_verify_mac(data, respData, attr->mac, NULL, 0)) {
942		wpa_printf(MSG_WARNING, "EAP-AKA: Challenge message "
943			   "did not include valid AT_MAC");
944		data->notification = EAP_SIM_GENERAL_FAILURE_BEFORE_AUTH;
945		eap_aka_state(data, NOTIFICATION);
946		return;
947	}
948
949	/*
950	 * AT_RES is padded, so verify that there is enough room for RES and
951	 * that the RES length in bits matches with the expected RES.
952	 */
953	if (attr->res == NULL || attr->res_len < data->res_len ||
954	    attr->res_len_bits != data->res_len * 8 ||
955	    os_memcmp(attr->res, data->res, data->res_len) != 0) {
956		wpa_printf(MSG_WARNING, "EAP-AKA: Challenge message did not "
957			   "include valid AT_RES (attr len=%lu, res len=%lu "
958			   "bits, expected %lu bits)",
959			   (unsigned long) attr->res_len,
960			   (unsigned long) attr->res_len_bits,
961			   (unsigned long) data->res_len * 8);
962		data->notification = EAP_SIM_GENERAL_FAILURE_BEFORE_AUTH;
963		eap_aka_state(data, NOTIFICATION);
964		return;
965	}
966
967	wpa_printf(MSG_DEBUG, "EAP-AKA: Challenge response includes the "
968		   "correct AT_MAC");
969	if (sm->eap_sim_aka_result_ind && attr->result_ind) {
970		data->use_result_ind = 1;
971		data->notification = EAP_SIM_SUCCESS;
972		eap_aka_state(data, NOTIFICATION);
973	} else
974		eap_aka_state(data, SUCCESS);
975
976	if (data->next_pseudonym) {
977		eap_sim_db_add_pseudonym(sm->eap_sim_db_priv, data->permanent,
978					 data->next_pseudonym);
979		data->next_pseudonym = NULL;
980	}
981	if (data->next_reauth_id) {
982		if (data->eap_method == EAP_TYPE_AKA_PRIME) {
983#ifdef EAP_SERVER_AKA_PRIME
984			eap_sim_db_add_reauth_prime(sm->eap_sim_db_priv,
985						    data->permanent,
986						    data->next_reauth_id,
987						    data->counter + 1,
988						    data->k_encr, data->k_aut,
989						    data->k_re);
990#endif /* EAP_SERVER_AKA_PRIME */
991		} else {
992			eap_sim_db_add_reauth(sm->eap_sim_db_priv,
993					      data->permanent,
994					      data->next_reauth_id,
995					      data->counter + 1,
996					      data->mk);
997		}
998		data->next_reauth_id = NULL;
999	}
1000}
1001
1002
1003static void eap_aka_process_sync_failure(struct eap_sm *sm,
1004					 struct eap_aka_data *data,
1005					 struct wpabuf *respData,
1006					 struct eap_sim_attrs *attr)
1007{
1008	wpa_printf(MSG_DEBUG, "EAP-AKA: Processing Synchronization-Failure");
1009
1010	if (attr->auts == NULL) {
1011		wpa_printf(MSG_WARNING, "EAP-AKA: Synchronization-Failure "
1012			   "message did not include valid AT_AUTS");
1013		data->notification = EAP_SIM_GENERAL_FAILURE_BEFORE_AUTH;
1014		eap_aka_state(data, NOTIFICATION);
1015		return;
1016	}
1017
1018	/* Avoid re-reporting AUTS when processing pending EAP packet by
1019	 * maintaining a local flag stating whether this AUTS has already been
1020	 * reported. */
1021	if (!data->auts_reported &&
1022	    eap_sim_db_resynchronize(sm->eap_sim_db_priv, data->permanent,
1023				     attr->auts, data->rand)) {
1024		wpa_printf(MSG_WARNING, "EAP-AKA: Resynchronization failed");
1025		data->notification = EAP_SIM_GENERAL_FAILURE_BEFORE_AUTH;
1026		eap_aka_state(data, NOTIFICATION);
1027		return;
1028	}
1029	data->auts_reported = 1;
1030
1031	/* Remain in CHALLENGE state to re-try after resynchronization */
1032}
1033
1034
1035static void eap_aka_process_reauth(struct eap_sm *sm,
1036				   struct eap_aka_data *data,
1037				   struct wpabuf *respData,
1038				   struct eap_sim_attrs *attr)
1039{
1040	struct eap_sim_attrs eattr;
1041	u8 *decrypted = NULL;
1042
1043	wpa_printf(MSG_DEBUG, "EAP-AKA: Processing Reauthentication");
1044
1045	if (attr->mac == NULL ||
1046	    eap_aka_verify_mac(data, respData, attr->mac, data->nonce_s,
1047			       EAP_SIM_NONCE_S_LEN)) {
1048		wpa_printf(MSG_WARNING, "EAP-AKA: Re-authentication message "
1049			   "did not include valid AT_MAC");
1050		goto fail;
1051	}
1052
1053	if (attr->encr_data == NULL || attr->iv == NULL) {
1054		wpa_printf(MSG_WARNING, "EAP-AKA: Reauthentication "
1055			   "message did not include encrypted data");
1056		goto fail;
1057	}
1058
1059	decrypted = eap_sim_parse_encr(data->k_encr, attr->encr_data,
1060				       attr->encr_data_len, attr->iv, &eattr,
1061				       0);
1062	if (decrypted == NULL) {
1063		wpa_printf(MSG_WARNING, "EAP-AKA: Failed to parse encrypted "
1064			   "data from reauthentication message");
1065		goto fail;
1066	}
1067
1068	if (eattr.counter != data->counter) {
1069		wpa_printf(MSG_WARNING, "EAP-AKA: Re-authentication message "
1070			   "used incorrect counter %u, expected %u",
1071			   eattr.counter, data->counter);
1072		goto fail;
1073	}
1074	os_free(decrypted);
1075	decrypted = NULL;
1076
1077	wpa_printf(MSG_DEBUG, "EAP-AKA: Re-authentication response includes "
1078		   "the correct AT_MAC");
1079
1080	if (eattr.counter_too_small) {
1081		wpa_printf(MSG_DEBUG, "EAP-AKA: Re-authentication response "
1082			   "included AT_COUNTER_TOO_SMALL - starting full "
1083			   "authentication");
1084		eap_aka_fullauth(sm, data);
1085		return;
1086	}
1087
1088	if (sm->eap_sim_aka_result_ind && attr->result_ind) {
1089		data->use_result_ind = 1;
1090		data->notification = EAP_SIM_SUCCESS;
1091		eap_aka_state(data, NOTIFICATION);
1092	} else
1093		eap_aka_state(data, SUCCESS);
1094
1095	if (data->next_reauth_id) {
1096		if (data->eap_method == EAP_TYPE_AKA_PRIME) {
1097#ifdef EAP_SERVER_AKA_PRIME
1098			eap_sim_db_add_reauth_prime(sm->eap_sim_db_priv,
1099						    data->permanent,
1100						    data->next_reauth_id,
1101						    data->counter + 1,
1102						    data->k_encr, data->k_aut,
1103						    data->k_re);
1104#endif /* EAP_SERVER_AKA_PRIME */
1105		} else {
1106			eap_sim_db_add_reauth(sm->eap_sim_db_priv,
1107					      data->permanent,
1108					      data->next_reauth_id,
1109					      data->counter + 1,
1110					      data->mk);
1111		}
1112		data->next_reauth_id = NULL;
1113	} else {
1114		eap_sim_db_remove_reauth(sm->eap_sim_db_priv, data->reauth);
1115		data->reauth = NULL;
1116	}
1117
1118	return;
1119
1120fail:
1121	data->notification = EAP_SIM_GENERAL_FAILURE_BEFORE_AUTH;
1122	eap_aka_state(data, NOTIFICATION);
1123	eap_sim_db_remove_reauth(sm->eap_sim_db_priv, data->reauth);
1124	data->reauth = NULL;
1125	os_free(decrypted);
1126}
1127
1128
1129static void eap_aka_process_client_error(struct eap_sm *sm,
1130					 struct eap_aka_data *data,
1131					 struct wpabuf *respData,
1132					 struct eap_sim_attrs *attr)
1133{
1134	wpa_printf(MSG_DEBUG, "EAP-AKA: Client reported error %d",
1135		   attr->client_error_code);
1136	if (data->notification == EAP_SIM_SUCCESS && data->use_result_ind)
1137		eap_aka_state(data, SUCCESS);
1138	else
1139		eap_aka_state(data, FAILURE);
1140}
1141
1142
1143static void eap_aka_process_authentication_reject(
1144	struct eap_sm *sm, struct eap_aka_data *data,
1145	struct wpabuf *respData, struct eap_sim_attrs *attr)
1146{
1147	wpa_printf(MSG_DEBUG, "EAP-AKA: Client rejected authentication");
1148	eap_aka_state(data, FAILURE);
1149}
1150
1151
1152static void eap_aka_process_notification(struct eap_sm *sm,
1153					 struct eap_aka_data *data,
1154					 struct wpabuf *respData,
1155					 struct eap_sim_attrs *attr)
1156{
1157	wpa_printf(MSG_DEBUG, "EAP-AKA: Client replied to notification");
1158	if (data->notification == EAP_SIM_SUCCESS && data->use_result_ind)
1159		eap_aka_state(data, SUCCESS);
1160	else
1161		eap_aka_state(data, FAILURE);
1162}
1163
1164
1165static void eap_aka_process(struct eap_sm *sm, void *priv,
1166			    struct wpabuf *respData)
1167{
1168	struct eap_aka_data *data = priv;
1169	const u8 *pos, *end;
1170	u8 subtype;
1171	size_t len;
1172	struct eap_sim_attrs attr;
1173
1174	pos = eap_hdr_validate(EAP_VENDOR_IETF, data->eap_method, respData,
1175			       &len);
1176	if (pos == NULL || len < 3)
1177		return;
1178
1179	end = pos + len;
1180	subtype = *pos;
1181	pos += 3;
1182
1183	if (eap_aka_subtype_ok(data, subtype)) {
1184		wpa_printf(MSG_DEBUG, "EAP-AKA: Unrecognized or unexpected "
1185			   "EAP-AKA Subtype in EAP Response");
1186		data->notification = EAP_SIM_GENERAL_FAILURE_BEFORE_AUTH;
1187		eap_aka_state(data, NOTIFICATION);
1188		return;
1189	}
1190
1191	if (eap_sim_parse_attr(pos, end, &attr,
1192			       data->eap_method == EAP_TYPE_AKA_PRIME ? 2 : 1,
1193			       0)) {
1194		wpa_printf(MSG_DEBUG, "EAP-AKA: Failed to parse attributes");
1195		data->notification = EAP_SIM_GENERAL_FAILURE_BEFORE_AUTH;
1196		eap_aka_state(data, NOTIFICATION);
1197		return;
1198	}
1199
1200	if (subtype == EAP_AKA_SUBTYPE_CLIENT_ERROR) {
1201		eap_aka_process_client_error(sm, data, respData, &attr);
1202		return;
1203	}
1204
1205	if (subtype == EAP_AKA_SUBTYPE_AUTHENTICATION_REJECT) {
1206		eap_aka_process_authentication_reject(sm, data, respData,
1207						      &attr);
1208		return;
1209	}
1210
1211	switch (data->state) {
1212	case IDENTITY:
1213		eap_aka_process_identity(sm, data, respData, &attr);
1214		break;
1215	case CHALLENGE:
1216		if (subtype == EAP_AKA_SUBTYPE_SYNCHRONIZATION_FAILURE) {
1217			eap_aka_process_sync_failure(sm, data, respData,
1218						     &attr);
1219		} else {
1220			eap_aka_process_challenge(sm, data, respData, &attr);
1221		}
1222		break;
1223	case REAUTH:
1224		eap_aka_process_reauth(sm, data, respData, &attr);
1225		break;
1226	case NOTIFICATION:
1227		eap_aka_process_notification(sm, data, respData, &attr);
1228		break;
1229	default:
1230		wpa_printf(MSG_DEBUG, "EAP-AKA: Unknown state %d in "
1231			   "process", data->state);
1232		break;
1233	}
1234}
1235
1236
1237static Boolean eap_aka_isDone(struct eap_sm *sm, void *priv)
1238{
1239	struct eap_aka_data *data = priv;
1240	return data->state == SUCCESS || data->state == FAILURE;
1241}
1242
1243
1244static u8 * eap_aka_getKey(struct eap_sm *sm, void *priv, size_t *len)
1245{
1246	struct eap_aka_data *data = priv;
1247	u8 *key;
1248
1249	if (data->state != SUCCESS)
1250		return NULL;
1251
1252	key = os_malloc(EAP_SIM_KEYING_DATA_LEN);
1253	if (key == NULL)
1254		return NULL;
1255	os_memcpy(key, data->msk, EAP_SIM_KEYING_DATA_LEN);
1256	*len = EAP_SIM_KEYING_DATA_LEN;
1257	return key;
1258}
1259
1260
1261static u8 * eap_aka_get_emsk(struct eap_sm *sm, void *priv, size_t *len)
1262{
1263	struct eap_aka_data *data = priv;
1264	u8 *key;
1265
1266	if (data->state != SUCCESS)
1267		return NULL;
1268
1269	key = os_malloc(EAP_EMSK_LEN);
1270	if (key == NULL)
1271		return NULL;
1272	os_memcpy(key, data->emsk, EAP_EMSK_LEN);
1273	*len = EAP_EMSK_LEN;
1274	return key;
1275}
1276
1277
1278static Boolean eap_aka_isSuccess(struct eap_sm *sm, void *priv)
1279{
1280	struct eap_aka_data *data = priv;
1281	return data->state == SUCCESS;
1282}
1283
1284
1285int eap_server_aka_register(void)
1286{
1287	struct eap_method *eap;
1288	int ret;
1289
1290	eap = eap_server_method_alloc(EAP_SERVER_METHOD_INTERFACE_VERSION,
1291				      EAP_VENDOR_IETF, EAP_TYPE_AKA, "AKA");
1292	if (eap == NULL)
1293		return -1;
1294
1295	eap->init = eap_aka_init;
1296	eap->reset = eap_aka_reset;
1297	eap->buildReq = eap_aka_buildReq;
1298	eap->check = eap_aka_check;
1299	eap->process = eap_aka_process;
1300	eap->isDone = eap_aka_isDone;
1301	eap->getKey = eap_aka_getKey;
1302	eap->isSuccess = eap_aka_isSuccess;
1303	eap->get_emsk = eap_aka_get_emsk;
1304
1305	ret = eap_server_method_register(eap);
1306	if (ret)
1307		eap_server_method_free(eap);
1308	return ret;
1309}
1310
1311
1312#ifdef EAP_SERVER_AKA_PRIME
1313int eap_server_aka_prime_register(void)
1314{
1315	struct eap_method *eap;
1316	int ret;
1317
1318	eap = eap_server_method_alloc(EAP_SERVER_METHOD_INTERFACE_VERSION,
1319				      EAP_VENDOR_IETF, EAP_TYPE_AKA_PRIME,
1320				      "AKA'");
1321	if (eap == NULL)
1322		return -1;
1323
1324	eap->init = eap_aka_prime_init;
1325	eap->reset = eap_aka_reset;
1326	eap->buildReq = eap_aka_buildReq;
1327	eap->check = eap_aka_check;
1328	eap->process = eap_aka_process;
1329	eap->isDone = eap_aka_isDone;
1330	eap->getKey = eap_aka_getKey;
1331	eap->isSuccess = eap_aka_isSuccess;
1332	eap->get_emsk = eap_aka_get_emsk;
1333
1334	ret = eap_server_method_register(eap);
1335	if (ret)
1336		eap_server_method_free(eap);
1337
1338	return ret;
1339}
1340#endif /* EAP_SERVER_AKA_PRIME */
1341