1/*
2 * EAP-FAST server (RFC 4851)
3 * Copyright (c) 2004-2008, 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
17#include "common.h"
18#include "crypto/aes_wrap.h"
19#include "crypto/sha1.h"
20#include "crypto/tls.h"
21#include "eap_common/eap_tlv_common.h"
22#include "eap_common/eap_fast_common.h"
23#include "eap_i.h"
24#include "eap_tls_common.h"
25
26
27static void eap_fast_reset(struct eap_sm *sm, void *priv);
28
29
30/* Private PAC-Opaque TLV types */
31#define PAC_OPAQUE_TYPE_PAD 0
32#define PAC_OPAQUE_TYPE_KEY 1
33#define PAC_OPAQUE_TYPE_LIFETIME 2
34#define PAC_OPAQUE_TYPE_IDENTITY 3
35
36struct eap_fast_data {
37	struct eap_ssl_data ssl;
38	enum {
39		START, PHASE1, PHASE2_START, PHASE2_ID, PHASE2_METHOD,
40		CRYPTO_BINDING, REQUEST_PAC, SUCCESS, FAILURE
41	} state;
42
43	int fast_version;
44	const struct eap_method *phase2_method;
45	void *phase2_priv;
46	int force_version;
47	int peer_version;
48
49	u8 crypto_binding_nonce[32];
50	int final_result;
51
52	struct eap_fast_key_block_provisioning *key_block_p;
53
54	u8 simck[EAP_FAST_SIMCK_LEN];
55	u8 cmk[EAP_FAST_CMK_LEN];
56	int simck_idx;
57
58	u8 pac_opaque_encr[16];
59	u8 *srv_id;
60	size_t srv_id_len;
61	char *srv_id_info;
62
63	int anon_provisioning;
64	int send_new_pac; /* server triggered re-keying of Tunnel PAC */
65	struct wpabuf *pending_phase2_resp;
66	u8 *identity; /* from PAC-Opaque */
67	size_t identity_len;
68	int eap_seq;
69	int tnc_started;
70
71	int pac_key_lifetime;
72	int pac_key_refresh_time;
73};
74
75
76static int eap_fast_process_phase2_start(struct eap_sm *sm,
77					 struct eap_fast_data *data);
78
79
80static const char * eap_fast_state_txt(int state)
81{
82	switch (state) {
83	case START:
84		return "START";
85	case PHASE1:
86		return "PHASE1";
87	case PHASE2_START:
88		return "PHASE2_START";
89	case PHASE2_ID:
90		return "PHASE2_ID";
91	case PHASE2_METHOD:
92		return "PHASE2_METHOD";
93	case CRYPTO_BINDING:
94		return "CRYPTO_BINDING";
95	case REQUEST_PAC:
96		return "REQUEST_PAC";
97	case SUCCESS:
98		return "SUCCESS";
99	case FAILURE:
100		return "FAILURE";
101	default:
102		return "Unknown?!";
103	}
104}
105
106
107static void eap_fast_state(struct eap_fast_data *data, int state)
108{
109	wpa_printf(MSG_DEBUG, "EAP-FAST: %s -> %s",
110		   eap_fast_state_txt(data->state),
111		   eap_fast_state_txt(state));
112	data->state = state;
113}
114
115
116static EapType eap_fast_req_failure(struct eap_sm *sm,
117				    struct eap_fast_data *data)
118{
119	/* TODO: send Result TLV(FAILURE) */
120	eap_fast_state(data, FAILURE);
121	return EAP_TYPE_NONE;
122}
123
124
125static int eap_fast_session_ticket_cb(void *ctx, const u8 *ticket, size_t len,
126				      const u8 *client_random,
127				      const u8 *server_random,
128				      u8 *master_secret)
129{
130	struct eap_fast_data *data = ctx;
131	const u8 *pac_opaque;
132	size_t pac_opaque_len;
133	u8 *buf, *pos, *end, *pac_key = NULL;
134	os_time_t lifetime = 0;
135	struct os_time now;
136	u8 *identity = NULL;
137	size_t identity_len = 0;
138
139	wpa_printf(MSG_DEBUG, "EAP-FAST: SessionTicket callback");
140	wpa_hexdump(MSG_DEBUG, "EAP-FAST: SessionTicket (PAC-Opaque)",
141		    ticket, len);
142
143	if (len < 4 || WPA_GET_BE16(ticket) != PAC_TYPE_PAC_OPAQUE) {
144		wpa_printf(MSG_DEBUG, "EAP-FAST: Ignore invalid "
145			   "SessionTicket");
146		return 0;
147	}
148
149	pac_opaque_len = WPA_GET_BE16(ticket + 2);
150	pac_opaque = ticket + 4;
151	if (pac_opaque_len < 8 || pac_opaque_len % 8 ||
152	    pac_opaque_len > len - 4) {
153		wpa_printf(MSG_DEBUG, "EAP-FAST: Ignore invalid PAC-Opaque "
154			   "(len=%lu left=%lu)",
155			   (unsigned long) pac_opaque_len,
156			   (unsigned long) len);
157		return 0;
158	}
159	wpa_hexdump(MSG_DEBUG, "EAP-FAST: Received PAC-Opaque",
160		    pac_opaque, pac_opaque_len);
161
162	buf = os_malloc(pac_opaque_len - 8);
163	if (buf == NULL) {
164		wpa_printf(MSG_DEBUG, "EAP-FAST: Failed to allocate memory "
165			   "for decrypting PAC-Opaque");
166		return 0;
167	}
168
169	if (aes_unwrap(data->pac_opaque_encr, (pac_opaque_len - 8) / 8,
170		       pac_opaque, buf) < 0) {
171		wpa_printf(MSG_DEBUG, "EAP-FAST: Failed to decrypt "
172			   "PAC-Opaque");
173		os_free(buf);
174		/*
175		 * This may have been caused by server changing the PAC-Opaque
176		 * encryption key, so just ignore this PAC-Opaque instead of
177		 * failing the authentication completely. Provisioning can now
178		 * be used to provision a new PAC.
179		 */
180		return 0;
181	}
182
183	end = buf + pac_opaque_len - 8;
184	wpa_hexdump_key(MSG_DEBUG, "EAP-FAST: Decrypted PAC-Opaque",
185			buf, end - buf);
186
187	pos = buf;
188	while (pos + 1 < end) {
189		if (pos + 2 + pos[1] > end)
190			break;
191
192		switch (*pos) {
193		case PAC_OPAQUE_TYPE_PAD:
194			pos = end;
195			break;
196		case PAC_OPAQUE_TYPE_KEY:
197			if (pos[1] != EAP_FAST_PAC_KEY_LEN) {
198				wpa_printf(MSG_DEBUG, "EAP-FAST: Invalid "
199					   "PAC-Key length %d", pos[1]);
200				os_free(buf);
201				return -1;
202			}
203			pac_key = pos + 2;
204			wpa_hexdump_key(MSG_DEBUG, "EAP-FAST: PAC-Key from "
205					"decrypted PAC-Opaque",
206					pac_key, EAP_FAST_PAC_KEY_LEN);
207			break;
208		case PAC_OPAQUE_TYPE_LIFETIME:
209			if (pos[1] != 4) {
210				wpa_printf(MSG_DEBUG, "EAP-FAST: Invalid "
211					   "PAC-Key lifetime length %d",
212					   pos[1]);
213				os_free(buf);
214				return -1;
215			}
216			lifetime = WPA_GET_BE32(pos + 2);
217			break;
218		case PAC_OPAQUE_TYPE_IDENTITY:
219			identity = pos + 2;
220			identity_len = pos[1];
221			break;
222		}
223
224		pos += 2 + pos[1];
225	}
226
227	if (pac_key == NULL) {
228		wpa_printf(MSG_DEBUG, "EAP-FAST: No PAC-Key included in "
229			   "PAC-Opaque");
230		os_free(buf);
231		return -1;
232	}
233
234	if (identity) {
235		wpa_hexdump_ascii(MSG_DEBUG, "EAP-FAST: Identity from "
236				  "PAC-Opaque", identity, identity_len);
237		os_free(data->identity);
238		data->identity = os_malloc(identity_len);
239		if (data->identity) {
240			os_memcpy(data->identity, identity, identity_len);
241			data->identity_len = identity_len;
242		}
243	}
244
245	if (os_get_time(&now) < 0 || lifetime <= 0 || now.sec > lifetime) {
246		wpa_printf(MSG_DEBUG, "EAP-FAST: PAC-Key not valid anymore "
247			   "(lifetime=%ld now=%ld)", lifetime, now.sec);
248		data->send_new_pac = 2;
249		/*
250		 * Allow PAC to be used to allow a PAC update with some level
251		 * of server authentication (i.e., do not fall back to full TLS
252		 * handshake since we cannot be sure that the peer would be
253		 * able to validate server certificate now). However, reject
254		 * the authentication since the PAC was not valid anymore. Peer
255		 * can connect again with the newly provisioned PAC after this.
256		 */
257	} else if (lifetime - now.sec < data->pac_key_refresh_time) {
258		wpa_printf(MSG_DEBUG, "EAP-FAST: PAC-Key soft timeout; send "
259			   "an update if authentication succeeds");
260		data->send_new_pac = 1;
261	}
262
263	eap_fast_derive_master_secret(pac_key, server_random, client_random,
264				      master_secret);
265
266	os_free(buf);
267
268	return 1;
269}
270
271
272static void eap_fast_derive_key_auth(struct eap_sm *sm,
273				     struct eap_fast_data *data)
274{
275	u8 *sks;
276
277	/* RFC 4851, Section 5.1:
278	 * Extra key material after TLS key_block: session_key_seed[40]
279	 */
280
281	sks = eap_fast_derive_key(sm->ssl_ctx, data->ssl.conn, "key expansion",
282				  EAP_FAST_SKS_LEN);
283	if (sks == NULL) {
284		wpa_printf(MSG_DEBUG, "EAP-FAST: Failed to derive "
285			   "session_key_seed");
286		return;
287	}
288
289	/*
290	 * RFC 4851, Section 5.2:
291	 * S-IMCK[0] = session_key_seed
292	 */
293	wpa_hexdump_key(MSG_DEBUG,
294			"EAP-FAST: session_key_seed (SKS = S-IMCK[0])",
295			sks, EAP_FAST_SKS_LEN);
296	data->simck_idx = 0;
297	os_memcpy(data->simck, sks, EAP_FAST_SIMCK_LEN);
298	os_free(sks);
299}
300
301
302static void eap_fast_derive_key_provisioning(struct eap_sm *sm,
303					     struct eap_fast_data *data)
304{
305	os_free(data->key_block_p);
306	data->key_block_p = (struct eap_fast_key_block_provisioning *)
307		eap_fast_derive_key(sm->ssl_ctx, data->ssl.conn,
308				    "key expansion",
309				    sizeof(*data->key_block_p));
310	if (data->key_block_p == NULL) {
311		wpa_printf(MSG_DEBUG, "EAP-FAST: Failed to derive key block");
312		return;
313	}
314	/*
315	 * RFC 4851, Section 5.2:
316	 * S-IMCK[0] = session_key_seed
317	 */
318	wpa_hexdump_key(MSG_DEBUG,
319			"EAP-FAST: session_key_seed (SKS = S-IMCK[0])",
320			data->key_block_p->session_key_seed,
321			sizeof(data->key_block_p->session_key_seed));
322	data->simck_idx = 0;
323	os_memcpy(data->simck, data->key_block_p->session_key_seed,
324		  EAP_FAST_SIMCK_LEN);
325	wpa_hexdump_key(MSG_DEBUG, "EAP-FAST: server_challenge",
326			data->key_block_p->server_challenge,
327			sizeof(data->key_block_p->server_challenge));
328	wpa_hexdump_key(MSG_DEBUG, "EAP-FAST: client_challenge",
329			data->key_block_p->client_challenge,
330			sizeof(data->key_block_p->client_challenge));
331}
332
333
334static int eap_fast_get_phase2_key(struct eap_sm *sm,
335				   struct eap_fast_data *data,
336				   u8 *isk, size_t isk_len)
337{
338	u8 *key;
339	size_t key_len;
340
341	os_memset(isk, 0, isk_len);
342
343	if (data->phase2_method == NULL || data->phase2_priv == NULL) {
344		wpa_printf(MSG_DEBUG, "EAP-FAST: Phase 2 method not "
345			   "available");
346		return -1;
347	}
348
349	if (data->phase2_method->getKey == NULL)
350		return 0;
351
352	if ((key = data->phase2_method->getKey(sm, data->phase2_priv,
353					       &key_len)) == NULL) {
354		wpa_printf(MSG_DEBUG, "EAP-FAST: Could not get key material "
355			   "from Phase 2");
356		return -1;
357	}
358
359	if (key_len > isk_len)
360		key_len = isk_len;
361	if (key_len == 32 &&
362	    data->phase2_method->vendor == EAP_VENDOR_IETF &&
363	    data->phase2_method->method == EAP_TYPE_MSCHAPV2) {
364		/*
365		 * EAP-FAST uses reverse order for MS-MPPE keys when deriving
366		 * MSK from EAP-MSCHAPv2. Swap the keys here to get the correct
367		 * ISK for EAP-FAST cryptobinding.
368		 */
369		os_memcpy(isk, key + 16, 16);
370		os_memcpy(isk + 16, key, 16);
371	} else
372		os_memcpy(isk, key, key_len);
373	os_free(key);
374
375	return 0;
376}
377
378
379static int eap_fast_update_icmk(struct eap_sm *sm, struct eap_fast_data *data)
380{
381	u8 isk[32], imck[60];
382
383	wpa_printf(MSG_DEBUG, "EAP-FAST: Deriving ICMK[%d] (S-IMCK and CMK)",
384		   data->simck_idx + 1);
385
386	/*
387	 * RFC 4851, Section 5.2:
388	 * IMCK[j] = T-PRF(S-IMCK[j-1], "Inner Methods Compound Keys",
389	 *                 MSK[j], 60)
390	 * S-IMCK[j] = first 40 octets of IMCK[j]
391	 * CMK[j] = last 20 octets of IMCK[j]
392	 */
393
394	if (eap_fast_get_phase2_key(sm, data, isk, sizeof(isk)) < 0)
395		return -1;
396	wpa_hexdump_key(MSG_MSGDUMP, "EAP-FAST: ISK[j]", isk, sizeof(isk));
397	sha1_t_prf(data->simck, EAP_FAST_SIMCK_LEN,
398		   "Inner Methods Compound Keys",
399		   isk, sizeof(isk), imck, sizeof(imck));
400	data->simck_idx++;
401	os_memcpy(data->simck, imck, EAP_FAST_SIMCK_LEN);
402	wpa_hexdump_key(MSG_MSGDUMP, "EAP-FAST: S-IMCK[j]",
403			data->simck, EAP_FAST_SIMCK_LEN);
404	os_memcpy(data->cmk, imck + EAP_FAST_SIMCK_LEN, EAP_FAST_CMK_LEN);
405	wpa_hexdump_key(MSG_MSGDUMP, "EAP-FAST: CMK[j]",
406			data->cmk, EAP_FAST_CMK_LEN);
407
408	return 0;
409}
410
411
412static void * eap_fast_init(struct eap_sm *sm)
413{
414	struct eap_fast_data *data;
415	u8 ciphers[5] = {
416		TLS_CIPHER_ANON_DH_AES128_SHA,
417		TLS_CIPHER_AES128_SHA,
418		TLS_CIPHER_RSA_DHE_AES128_SHA,
419		TLS_CIPHER_RC4_SHA,
420		TLS_CIPHER_NONE
421	};
422
423	data = os_zalloc(sizeof(*data));
424	if (data == NULL)
425		return NULL;
426	data->fast_version = EAP_FAST_VERSION;
427	data->force_version = -1;
428	if (sm->user && sm->user->force_version >= 0) {
429		data->force_version = sm->user->force_version;
430		wpa_printf(MSG_DEBUG, "EAP-FAST: forcing version %d",
431			   data->force_version);
432		data->fast_version = data->force_version;
433	}
434	data->state = START;
435
436	if (eap_server_tls_ssl_init(sm, &data->ssl, 0)) {
437		wpa_printf(MSG_INFO, "EAP-FAST: Failed to initialize SSL.");
438		eap_fast_reset(sm, data);
439		return NULL;
440	}
441
442	if (tls_connection_set_cipher_list(sm->ssl_ctx, data->ssl.conn,
443					   ciphers) < 0) {
444		wpa_printf(MSG_INFO, "EAP-FAST: Failed to set TLS cipher "
445			   "suites");
446		eap_fast_reset(sm, data);
447		return NULL;
448	}
449
450	if (tls_connection_set_session_ticket_cb(sm->ssl_ctx, data->ssl.conn,
451						 eap_fast_session_ticket_cb,
452						 data) < 0) {
453		wpa_printf(MSG_INFO, "EAP-FAST: Failed to set SessionTicket "
454			   "callback");
455		eap_fast_reset(sm, data);
456		return NULL;
457	}
458
459	if (sm->pac_opaque_encr_key == NULL) {
460		wpa_printf(MSG_INFO, "EAP-FAST: No PAC-Opaque encryption key "
461			   "configured");
462		eap_fast_reset(sm, data);
463		return NULL;
464	}
465	os_memcpy(data->pac_opaque_encr, sm->pac_opaque_encr_key,
466		  sizeof(data->pac_opaque_encr));
467
468	if (sm->eap_fast_a_id == NULL) {
469		wpa_printf(MSG_INFO, "EAP-FAST: No A-ID configured");
470		eap_fast_reset(sm, data);
471		return NULL;
472	}
473	data->srv_id = os_malloc(sm->eap_fast_a_id_len);
474	if (data->srv_id == NULL) {
475		eap_fast_reset(sm, data);
476		return NULL;
477	}
478	os_memcpy(data->srv_id, sm->eap_fast_a_id, sm->eap_fast_a_id_len);
479	data->srv_id_len = sm->eap_fast_a_id_len;
480
481	if (sm->eap_fast_a_id_info == NULL) {
482		wpa_printf(MSG_INFO, "EAP-FAST: No A-ID-Info configured");
483		eap_fast_reset(sm, data);
484		return NULL;
485	}
486	data->srv_id_info = os_strdup(sm->eap_fast_a_id_info);
487	if (data->srv_id_info == NULL) {
488		eap_fast_reset(sm, data);
489		return NULL;
490	}
491
492	/* PAC-Key lifetime in seconds (hard limit) */
493	data->pac_key_lifetime = sm->pac_key_lifetime;
494
495	/*
496	 * PAC-Key refresh time in seconds (soft limit on remaining hard
497	 * limit). The server will generate a new PAC-Key when this number of
498	 * seconds (or fewer) of the lifetime remains.
499	 */
500	data->pac_key_refresh_time = sm->pac_key_refresh_time;
501
502	return data;
503}
504
505
506static void eap_fast_reset(struct eap_sm *sm, void *priv)
507{
508	struct eap_fast_data *data = priv;
509	if (data == NULL)
510		return;
511	if (data->phase2_priv && data->phase2_method)
512		data->phase2_method->reset(sm, data->phase2_priv);
513	eap_server_tls_ssl_deinit(sm, &data->ssl);
514	os_free(data->srv_id);
515	os_free(data->srv_id_info);
516	os_free(data->key_block_p);
517	wpabuf_free(data->pending_phase2_resp);
518	os_free(data->identity);
519	os_free(data);
520}
521
522
523static struct wpabuf * eap_fast_build_start(struct eap_sm *sm,
524					    struct eap_fast_data *data, u8 id)
525{
526	struct wpabuf *req;
527
528	req = eap_msg_alloc(EAP_VENDOR_IETF, EAP_TYPE_FAST,
529			    1 + sizeof(struct pac_tlv_hdr) + data->srv_id_len,
530			    EAP_CODE_REQUEST, id);
531	if (req == NULL) {
532		wpa_printf(MSG_ERROR, "EAP-FAST: Failed to allocate memory for"
533			   " request");
534		eap_fast_state(data, FAILURE);
535		return NULL;
536	}
537
538	wpabuf_put_u8(req, EAP_TLS_FLAGS_START | data->fast_version);
539
540	/* RFC 4851, 4.1.1. Authority ID Data */
541	eap_fast_put_tlv(req, PAC_TYPE_A_ID, data->srv_id, data->srv_id_len);
542
543	eap_fast_state(data, PHASE1);
544
545	return req;
546}
547
548
549static int eap_fast_phase1_done(struct eap_sm *sm, struct eap_fast_data *data)
550{
551	char cipher[64];
552
553	wpa_printf(MSG_DEBUG, "EAP-FAST: Phase1 done, starting Phase2");
554
555	if (tls_get_cipher(sm->ssl_ctx, data->ssl.conn, cipher, sizeof(cipher))
556	    < 0) {
557		wpa_printf(MSG_DEBUG, "EAP-FAST: Failed to get cipher "
558			   "information");
559		eap_fast_state(data, FAILURE);
560		return -1;
561	}
562	data->anon_provisioning = os_strstr(cipher, "ADH") != NULL;
563
564	if (data->anon_provisioning) {
565		wpa_printf(MSG_DEBUG, "EAP-FAST: Anonymous provisioning");
566		eap_fast_derive_key_provisioning(sm, data);
567	} else
568		eap_fast_derive_key_auth(sm, data);
569
570	eap_fast_state(data, PHASE2_START);
571
572	return 0;
573}
574
575
576static struct wpabuf * eap_fast_build_phase2_req(struct eap_sm *sm,
577						 struct eap_fast_data *data,
578						 u8 id)
579{
580	struct wpabuf *req;
581
582	if (data->phase2_priv == NULL) {
583		wpa_printf(MSG_DEBUG, "EAP-FAST: Phase 2 method not "
584			   "initialized");
585		return NULL;
586	}
587	req = data->phase2_method->buildReq(sm, data->phase2_priv, id);
588	if (req == NULL)
589		return NULL;
590
591	wpa_hexdump_buf_key(MSG_MSGDUMP, "EAP-FAST: Phase 2 EAP-Request", req);
592	return eap_fast_tlv_eap_payload(req);
593}
594
595
596static struct wpabuf * eap_fast_build_crypto_binding(
597	struct eap_sm *sm, struct eap_fast_data *data)
598{
599	struct wpabuf *buf;
600	struct eap_tlv_result_tlv *result;
601	struct eap_tlv_crypto_binding_tlv *binding;
602
603	buf = wpabuf_alloc(2 * sizeof(*result) + sizeof(*binding));
604	if (buf == NULL)
605		return NULL;
606
607	if (data->send_new_pac || data->anon_provisioning ||
608	    data->phase2_method)
609		data->final_result = 0;
610	else
611		data->final_result = 1;
612
613	if (!data->final_result || data->eap_seq > 1) {
614		/* Intermediate-Result */
615		wpa_printf(MSG_DEBUG, "EAP-FAST: Add Intermediate-Result TLV "
616			   "(status=SUCCESS)");
617		result = wpabuf_put(buf, sizeof(*result));
618		result->tlv_type = host_to_be16(
619			EAP_TLV_TYPE_MANDATORY |
620			EAP_TLV_INTERMEDIATE_RESULT_TLV);
621		result->length = host_to_be16(2);
622		result->status = host_to_be16(EAP_TLV_RESULT_SUCCESS);
623	}
624
625	if (data->final_result) {
626		/* Result TLV */
627		wpa_printf(MSG_DEBUG, "EAP-FAST: Add Result TLV "
628			   "(status=SUCCESS)");
629		result = wpabuf_put(buf, sizeof(*result));
630		result->tlv_type = host_to_be16(EAP_TLV_TYPE_MANDATORY |
631						EAP_TLV_RESULT_TLV);
632		result->length = host_to_be16(2);
633		result->status = host_to_be16(EAP_TLV_RESULT_SUCCESS);
634	}
635
636	/* Crypto-Binding TLV */
637	binding = wpabuf_put(buf, sizeof(*binding));
638	binding->tlv_type = host_to_be16(EAP_TLV_TYPE_MANDATORY |
639					 EAP_TLV_CRYPTO_BINDING_TLV);
640	binding->length = host_to_be16(sizeof(*binding) -
641				       sizeof(struct eap_tlv_hdr));
642	binding->version = EAP_FAST_VERSION;
643	binding->received_version = data->peer_version;
644	binding->subtype = EAP_TLV_CRYPTO_BINDING_SUBTYPE_REQUEST;
645	if (os_get_random(binding->nonce, sizeof(binding->nonce)) < 0) {
646		wpabuf_free(buf);
647		return NULL;
648	}
649
650	/*
651	 * RFC 4851, Section 4.2.8:
652	 * The nonce in a request MUST have its least significant bit set to 0.
653	 */
654	binding->nonce[sizeof(binding->nonce) - 1] &= ~0x01;
655
656	os_memcpy(data->crypto_binding_nonce, binding->nonce,
657		  sizeof(binding->nonce));
658
659	/*
660	 * RFC 4851, Section 5.3:
661	 * CMK = CMK[j]
662	 * Compound-MAC = HMAC-SHA1( CMK, Crypto-Binding TLV )
663	 */
664
665	hmac_sha1(data->cmk, EAP_FAST_CMK_LEN,
666		  (u8 *) binding, sizeof(*binding),
667		  binding->compound_mac);
668
669	wpa_printf(MSG_DEBUG, "EAP-FAST: Add Crypto-Binding TLV: Version %d "
670		   "Received Version %d SubType %d",
671		   binding->version, binding->received_version,
672		   binding->subtype);
673	wpa_hexdump(MSG_MSGDUMP, "EAP-FAST: NONCE",
674		    binding->nonce, sizeof(binding->nonce));
675	wpa_hexdump(MSG_MSGDUMP, "EAP-FAST: Compound MAC",
676		    binding->compound_mac, sizeof(binding->compound_mac));
677
678	return buf;
679}
680
681
682static struct wpabuf * eap_fast_build_pac(struct eap_sm *sm,
683					  struct eap_fast_data *data)
684{
685	u8 pac_key[EAP_FAST_PAC_KEY_LEN];
686	u8 *pac_buf, *pac_opaque;
687	struct wpabuf *buf;
688	u8 *pos;
689	size_t buf_len, srv_id_info_len, pac_len;
690	struct eap_tlv_hdr *pac_tlv;
691	struct pac_tlv_hdr *pac_info;
692	struct eap_tlv_result_tlv *result;
693	struct os_time now;
694
695	if (os_get_random(pac_key, EAP_FAST_PAC_KEY_LEN) < 0 ||
696	    os_get_time(&now) < 0)
697		return NULL;
698	wpa_hexdump_key(MSG_DEBUG, "EAP-FAST: Generated PAC-Key",
699			pac_key, EAP_FAST_PAC_KEY_LEN);
700
701	pac_len = (2 + EAP_FAST_PAC_KEY_LEN) + (2 + 4) +
702		(2 + sm->identity_len) + 8;
703	pac_buf = os_malloc(pac_len);
704	if (pac_buf == NULL)
705		return NULL;
706
707	srv_id_info_len = os_strlen(data->srv_id_info);
708
709	pos = pac_buf;
710	*pos++ = PAC_OPAQUE_TYPE_KEY;
711	*pos++ = EAP_FAST_PAC_KEY_LEN;
712	os_memcpy(pos, pac_key, EAP_FAST_PAC_KEY_LEN);
713	pos += EAP_FAST_PAC_KEY_LEN;
714
715	*pos++ = PAC_OPAQUE_TYPE_LIFETIME;
716	*pos++ = 4;
717	WPA_PUT_BE32(pos, now.sec + data->pac_key_lifetime);
718	pos += 4;
719
720	if (sm->identity) {
721		*pos++ = PAC_OPAQUE_TYPE_IDENTITY;
722		*pos++ = sm->identity_len;
723		os_memcpy(pos, sm->identity, sm->identity_len);
724		pos += sm->identity_len;
725	}
726
727	pac_len = pos - pac_buf;
728	while (pac_len % 8) {
729		*pos++ = PAC_OPAQUE_TYPE_PAD;
730		pac_len++;
731	}
732
733	pac_opaque = os_malloc(pac_len + 8);
734	if (pac_opaque == NULL) {
735		os_free(pac_buf);
736		return NULL;
737	}
738	if (aes_wrap(data->pac_opaque_encr, pac_len / 8, pac_buf,
739		     pac_opaque) < 0) {
740		os_free(pac_buf);
741		os_free(pac_opaque);
742		return NULL;
743	}
744	os_free(pac_buf);
745
746	pac_len += 8;
747	wpa_hexdump(MSG_DEBUG, "EAP-FAST: PAC-Opaque",
748		    pac_opaque, pac_len);
749
750	buf_len = sizeof(*pac_tlv) +
751		sizeof(struct pac_tlv_hdr) + EAP_FAST_PAC_KEY_LEN +
752		sizeof(struct pac_tlv_hdr) + pac_len +
753		data->srv_id_len + srv_id_info_len + 100 + sizeof(*result);
754	buf = wpabuf_alloc(buf_len);
755	if (buf == NULL) {
756		os_free(pac_opaque);
757		return NULL;
758	}
759
760	/* Result TLV */
761	wpa_printf(MSG_DEBUG, "EAP-FAST: Add Result TLV (status=SUCCESS)");
762	result = wpabuf_put(buf, sizeof(*result));
763	WPA_PUT_BE16((u8 *) &result->tlv_type,
764		     EAP_TLV_TYPE_MANDATORY | EAP_TLV_RESULT_TLV);
765	WPA_PUT_BE16((u8 *) &result->length, 2);
766	WPA_PUT_BE16((u8 *) &result->status, EAP_TLV_RESULT_SUCCESS);
767
768	/* PAC TLV */
769	wpa_printf(MSG_DEBUG, "EAP-FAST: Add PAC TLV");
770	pac_tlv = wpabuf_put(buf, sizeof(*pac_tlv));
771	pac_tlv->tlv_type = host_to_be16(EAP_TLV_TYPE_MANDATORY |
772					 EAP_TLV_PAC_TLV);
773
774	/* PAC-Key */
775	eap_fast_put_tlv(buf, PAC_TYPE_PAC_KEY, pac_key, EAP_FAST_PAC_KEY_LEN);
776
777	/* PAC-Opaque */
778	eap_fast_put_tlv(buf, PAC_TYPE_PAC_OPAQUE, pac_opaque, pac_len);
779	os_free(pac_opaque);
780
781	/* PAC-Info */
782	pac_info = wpabuf_put(buf, sizeof(*pac_info));
783	pac_info->type = host_to_be16(PAC_TYPE_PAC_INFO);
784
785	/* PAC-Lifetime (inside PAC-Info) */
786	eap_fast_put_tlv_hdr(buf, PAC_TYPE_CRED_LIFETIME, 4);
787	wpabuf_put_be32(buf, now.sec + data->pac_key_lifetime);
788
789	/* A-ID (inside PAC-Info) */
790	eap_fast_put_tlv(buf, PAC_TYPE_A_ID, data->srv_id, data->srv_id_len);
791
792	/* Note: headers may be misaligned after A-ID */
793
794	if (sm->identity) {
795		eap_fast_put_tlv(buf, PAC_TYPE_I_ID, sm->identity,
796				 sm->identity_len);
797	}
798
799	/* A-ID-Info (inside PAC-Info) */
800	eap_fast_put_tlv(buf, PAC_TYPE_A_ID_INFO, data->srv_id_info,
801			 srv_id_info_len);
802
803	/* PAC-Type (inside PAC-Info) */
804	eap_fast_put_tlv_hdr(buf, PAC_TYPE_PAC_TYPE, 2);
805	wpabuf_put_be16(buf, PAC_TYPE_TUNNEL_PAC);
806
807	/* Update PAC-Info and PAC TLV Length fields */
808	pos = wpabuf_put(buf, 0);
809	pac_info->len = host_to_be16(pos - (u8 *) (pac_info + 1));
810	pac_tlv->length = host_to_be16(pos - (u8 *) (pac_tlv + 1));
811
812	return buf;
813}
814
815
816static int eap_fast_encrypt_phase2(struct eap_sm *sm,
817				   struct eap_fast_data *data,
818				   struct wpabuf *plain, int piggyback)
819{
820	struct wpabuf *encr;
821
822	wpa_hexdump_buf_key(MSG_DEBUG, "EAP-FAST: Encrypting Phase 2 TLVs",
823			    plain);
824	encr = eap_server_tls_encrypt(sm, &data->ssl, plain);
825	wpabuf_free(plain);
826
827	if (data->ssl.tls_out && piggyback) {
828		wpa_printf(MSG_DEBUG, "EAP-FAST: Piggyback Phase 2 data "
829			   "(len=%d) with last Phase 1 Message (len=%d "
830			   "used=%d)",
831			   (int) wpabuf_len(encr),
832			   (int) wpabuf_len(data->ssl.tls_out),
833			   (int) data->ssl.tls_out_pos);
834		if (wpabuf_resize(&data->ssl.tls_out, wpabuf_len(encr)) < 0) {
835			wpa_printf(MSG_WARNING, "EAP-FAST: Failed to resize "
836				   "output buffer");
837			wpabuf_free(encr);
838			return -1;
839		}
840		wpabuf_put_buf(data->ssl.tls_out, encr);
841		wpabuf_free(encr);
842	} else {
843		wpabuf_free(data->ssl.tls_out);
844		data->ssl.tls_out_pos = 0;
845		data->ssl.tls_out = encr;
846	}
847
848	return 0;
849}
850
851
852static struct wpabuf * eap_fast_buildReq(struct eap_sm *sm, void *priv, u8 id)
853{
854	struct eap_fast_data *data = priv;
855	struct wpabuf *req = NULL;
856	int piggyback = 0;
857
858	if (data->ssl.state == FRAG_ACK) {
859		return eap_server_tls_build_ack(id, EAP_TYPE_FAST,
860						data->fast_version);
861	}
862
863	if (data->ssl.state == WAIT_FRAG_ACK) {
864		return eap_server_tls_build_msg(&data->ssl, EAP_TYPE_FAST,
865						data->fast_version, id);
866	}
867
868	switch (data->state) {
869	case START:
870		return eap_fast_build_start(sm, data, id);
871	case PHASE1:
872		if (tls_connection_established(sm->ssl_ctx, data->ssl.conn)) {
873			if (eap_fast_phase1_done(sm, data) < 0)
874				return NULL;
875			if (data->state == PHASE2_START) {
876				/*
877				 * Try to generate Phase 2 data to piggyback
878				 * with the end of Phase 1 to avoid extra
879				 * roundtrip.
880				 */
881				wpa_printf(MSG_DEBUG, "EAP-FAST: Try to start "
882					   "Phase 2");
883				if (eap_fast_process_phase2_start(sm, data))
884					break;
885				req = eap_fast_build_phase2_req(sm, data, id);
886				piggyback = 1;
887			}
888		}
889		break;
890	case PHASE2_ID:
891	case PHASE2_METHOD:
892		req = eap_fast_build_phase2_req(sm, data, id);
893		break;
894	case CRYPTO_BINDING:
895		req = eap_fast_build_crypto_binding(sm, data);
896		if (data->phase2_method) {
897			/*
898			 * Include the start of the next EAP method in the
899			 * sequence in the same message with Crypto-Binding to
900			 * save a round-trip.
901			 */
902			struct wpabuf *eap;
903			eap = eap_fast_build_phase2_req(sm, data, id);
904			req = wpabuf_concat(req, eap);
905			eap_fast_state(data, PHASE2_METHOD);
906		}
907		break;
908	case REQUEST_PAC:
909		req = eap_fast_build_pac(sm, data);
910		break;
911	default:
912		wpa_printf(MSG_DEBUG, "EAP-FAST: %s - unexpected state %d",
913			   __func__, data->state);
914		return NULL;
915	}
916
917	if (req &&
918	    eap_fast_encrypt_phase2(sm, data, req, piggyback) < 0)
919		return NULL;
920
921	return eap_server_tls_build_msg(&data->ssl, EAP_TYPE_FAST,
922					data->fast_version, id);
923}
924
925
926static Boolean eap_fast_check(struct eap_sm *sm, void *priv,
927			      struct wpabuf *respData)
928{
929	const u8 *pos;
930	size_t len;
931
932	pos = eap_hdr_validate(EAP_VENDOR_IETF, EAP_TYPE_FAST, respData, &len);
933	if (pos == NULL || len < 1) {
934		wpa_printf(MSG_INFO, "EAP-FAST: Invalid frame");
935		return TRUE;
936	}
937
938	return FALSE;
939}
940
941
942static int eap_fast_phase2_init(struct eap_sm *sm, struct eap_fast_data *data,
943				EapType eap_type)
944{
945	if (data->phase2_priv && data->phase2_method) {
946		data->phase2_method->reset(sm, data->phase2_priv);
947		data->phase2_method = NULL;
948		data->phase2_priv = NULL;
949	}
950	data->phase2_method = eap_server_get_eap_method(EAP_VENDOR_IETF,
951							eap_type);
952	if (!data->phase2_method)
953		return -1;
954
955	if (data->key_block_p) {
956		sm->auth_challenge = data->key_block_p->server_challenge;
957		sm->peer_challenge = data->key_block_p->client_challenge;
958	}
959	sm->init_phase2 = 1;
960	data->phase2_priv = data->phase2_method->init(sm);
961	sm->init_phase2 = 0;
962	sm->auth_challenge = NULL;
963	sm->peer_challenge = NULL;
964
965	return data->phase2_priv == NULL ? -1 : 0;
966}
967
968
969static void eap_fast_process_phase2_response(struct eap_sm *sm,
970					     struct eap_fast_data *data,
971					     u8 *in_data, size_t in_len)
972{
973	u8 next_type = EAP_TYPE_NONE;
974	struct eap_hdr *hdr;
975	u8 *pos;
976	size_t left;
977	struct wpabuf buf;
978	const struct eap_method *m = data->phase2_method;
979	void *priv = data->phase2_priv;
980
981	if (priv == NULL) {
982		wpa_printf(MSG_DEBUG, "EAP-FAST: %s - Phase2 not "
983			   "initialized?!", __func__);
984		return;
985	}
986
987	hdr = (struct eap_hdr *) in_data;
988	pos = (u8 *) (hdr + 1);
989
990	if (in_len > sizeof(*hdr) && *pos == EAP_TYPE_NAK) {
991		left = in_len - sizeof(*hdr);
992		wpa_hexdump(MSG_DEBUG, "EAP-FAST: Phase2 type Nak'ed; "
993			    "allowed types", pos + 1, left - 1);
994#ifdef EAP_SERVER_TNC
995		if (m && m->vendor == EAP_VENDOR_IETF &&
996		    m->method == EAP_TYPE_TNC) {
997			wpa_printf(MSG_DEBUG, "EAP-FAST: Peer Nak'ed required "
998				   "TNC negotiation");
999			next_type = eap_fast_req_failure(sm, data);
1000			eap_fast_phase2_init(sm, data, next_type);
1001			return;
1002		}
1003#endif /* EAP_SERVER_TNC */
1004		eap_sm_process_nak(sm, pos + 1, left - 1);
1005		if (sm->user && sm->user_eap_method_index < EAP_MAX_METHODS &&
1006		    sm->user->methods[sm->user_eap_method_index].method !=
1007		    EAP_TYPE_NONE) {
1008			next_type = sm->user->methods[
1009				sm->user_eap_method_index++].method;
1010			wpa_printf(MSG_DEBUG, "EAP-FAST: try EAP type %d",
1011				   next_type);
1012		} else {
1013			next_type = eap_fast_req_failure(sm, data);
1014		}
1015		eap_fast_phase2_init(sm, data, next_type);
1016		return;
1017	}
1018
1019	wpabuf_set(&buf, in_data, in_len);
1020
1021	if (m->check(sm, priv, &buf)) {
1022		wpa_printf(MSG_DEBUG, "EAP-FAST: Phase2 check() asked to "
1023			   "ignore the packet");
1024		next_type = eap_fast_req_failure(sm, data);
1025		return;
1026	}
1027
1028	m->process(sm, priv, &buf);
1029
1030	if (!m->isDone(sm, priv))
1031		return;
1032
1033	if (!m->isSuccess(sm, priv)) {
1034		wpa_printf(MSG_DEBUG, "EAP-FAST: Phase2 method failed");
1035		next_type = eap_fast_req_failure(sm, data);
1036		eap_fast_phase2_init(sm, data, next_type);
1037		return;
1038	}
1039
1040	switch (data->state) {
1041	case PHASE2_ID:
1042		if (eap_user_get(sm, sm->identity, sm->identity_len, 1) != 0) {
1043			wpa_hexdump_ascii(MSG_DEBUG, "EAP-FAST: Phase2 "
1044					  "Identity not found in the user "
1045					  "database",
1046					  sm->identity, sm->identity_len);
1047			next_type = eap_fast_req_failure(sm, data);
1048			break;
1049		}
1050
1051		eap_fast_state(data, PHASE2_METHOD);
1052		if (data->anon_provisioning) {
1053			/*
1054			 * Only EAP-MSCHAPv2 is allowed for anonymous
1055			 * provisioning.
1056			 */
1057			next_type = EAP_TYPE_MSCHAPV2;
1058			sm->user_eap_method_index = 0;
1059		} else {
1060			next_type = sm->user->methods[0].method;
1061			sm->user_eap_method_index = 1;
1062		}
1063		wpa_printf(MSG_DEBUG, "EAP-FAST: try EAP type %d", next_type);
1064		break;
1065	case PHASE2_METHOD:
1066	case CRYPTO_BINDING:
1067		eap_fast_update_icmk(sm, data);
1068		eap_fast_state(data, CRYPTO_BINDING);
1069		data->eap_seq++;
1070		next_type = EAP_TYPE_NONE;
1071#ifdef EAP_SERVER_TNC
1072		if (sm->tnc && !data->tnc_started) {
1073			wpa_printf(MSG_DEBUG, "EAP-FAST: Initialize TNC");
1074			next_type = EAP_TYPE_TNC;
1075			data->tnc_started = 1;
1076		}
1077#endif /* EAP_SERVER_TNC */
1078		break;
1079	case FAILURE:
1080		break;
1081	default:
1082		wpa_printf(MSG_DEBUG, "EAP-FAST: %s - unexpected state %d",
1083			   __func__, data->state);
1084		break;
1085	}
1086
1087	eap_fast_phase2_init(sm, data, next_type);
1088}
1089
1090
1091static void eap_fast_process_phase2_eap(struct eap_sm *sm,
1092					struct eap_fast_data *data,
1093					u8 *in_data, size_t in_len)
1094{
1095	struct eap_hdr *hdr;
1096	size_t len;
1097
1098	hdr = (struct eap_hdr *) in_data;
1099	if (in_len < (int) sizeof(*hdr)) {
1100		wpa_printf(MSG_INFO, "EAP-FAST: Too short Phase 2 "
1101			   "EAP frame (len=%lu)", (unsigned long) in_len);
1102		eap_fast_req_failure(sm, data);
1103		return;
1104	}
1105	len = be_to_host16(hdr->length);
1106	if (len > in_len) {
1107		wpa_printf(MSG_INFO, "EAP-FAST: Length mismatch in "
1108			   "Phase 2 EAP frame (len=%lu hdr->length=%lu)",
1109			   (unsigned long) in_len, (unsigned long) len);
1110		eap_fast_req_failure(sm, data);
1111		return;
1112	}
1113	wpa_printf(MSG_DEBUG, "EAP-FAST: Received Phase 2: code=%d "
1114		   "identifier=%d length=%lu", hdr->code, hdr->identifier,
1115		   (unsigned long) len);
1116	switch (hdr->code) {
1117	case EAP_CODE_RESPONSE:
1118		eap_fast_process_phase2_response(sm, data, (u8 *) hdr, len);
1119		break;
1120	default:
1121		wpa_printf(MSG_INFO, "EAP-FAST: Unexpected code=%d in "
1122			   "Phase 2 EAP header", hdr->code);
1123		break;
1124	}
1125}
1126
1127
1128static int eap_fast_parse_tlvs(struct wpabuf *data,
1129			       struct eap_fast_tlv_parse *tlv)
1130{
1131	int mandatory, tlv_type, len, res;
1132	u8 *pos, *end;
1133
1134	os_memset(tlv, 0, sizeof(*tlv));
1135
1136	pos = wpabuf_mhead(data);
1137	end = pos + wpabuf_len(data);
1138	while (pos + 4 < end) {
1139		mandatory = pos[0] & 0x80;
1140		tlv_type = WPA_GET_BE16(pos) & 0x3fff;
1141		pos += 2;
1142		len = WPA_GET_BE16(pos);
1143		pos += 2;
1144		if (pos + len > end) {
1145			wpa_printf(MSG_INFO, "EAP-FAST: TLV overflow");
1146			return -1;
1147		}
1148		wpa_printf(MSG_DEBUG, "EAP-FAST: Received Phase 2: "
1149			   "TLV type %d length %d%s",
1150			   tlv_type, len, mandatory ? " (mandatory)" : "");
1151
1152		res = eap_fast_parse_tlv(tlv, tlv_type, pos, len);
1153		if (res == -2)
1154			break;
1155		if (res < 0) {
1156			if (mandatory) {
1157				wpa_printf(MSG_DEBUG, "EAP-FAST: Nak unknown "
1158					   "mandatory TLV type %d", tlv_type);
1159				/* TODO: generate Nak TLV */
1160				break;
1161			} else {
1162				wpa_printf(MSG_DEBUG, "EAP-FAST: Ignored "
1163					   "unknown optional TLV type %d",
1164					   tlv_type);
1165			}
1166		}
1167
1168		pos += len;
1169	}
1170
1171	return 0;
1172}
1173
1174
1175static int eap_fast_validate_crypto_binding(
1176	struct eap_fast_data *data, struct eap_tlv_crypto_binding_tlv *b,
1177	size_t bind_len)
1178{
1179	u8 cmac[SHA1_MAC_LEN];
1180
1181	wpa_printf(MSG_DEBUG, "EAP-FAST: Reply Crypto-Binding TLV: "
1182		   "Version %d Received Version %d SubType %d",
1183		   b->version, b->received_version, b->subtype);
1184	wpa_hexdump(MSG_MSGDUMP, "EAP-FAST: NONCE",
1185		    b->nonce, sizeof(b->nonce));
1186	wpa_hexdump(MSG_MSGDUMP, "EAP-FAST: Compound MAC",
1187		    b->compound_mac, sizeof(b->compound_mac));
1188
1189	if (b->version != EAP_FAST_VERSION ||
1190	    b->received_version != EAP_FAST_VERSION) {
1191		wpa_printf(MSG_DEBUG, "EAP-FAST: Unexpected version "
1192			   "in Crypto-Binding: version %d "
1193			   "received_version %d", b->version,
1194			   b->received_version);
1195		return -1;
1196	}
1197
1198	if (b->subtype != EAP_TLV_CRYPTO_BINDING_SUBTYPE_RESPONSE) {
1199		wpa_printf(MSG_DEBUG, "EAP-FAST: Unexpected subtype in "
1200			   "Crypto-Binding: %d", b->subtype);
1201		return -1;
1202	}
1203
1204	if (os_memcmp(data->crypto_binding_nonce, b->nonce, 31) != 0 ||
1205	    (data->crypto_binding_nonce[31] | 1) != b->nonce[31]) {
1206		wpa_printf(MSG_DEBUG, "EAP-FAST: Invalid nonce in "
1207			   "Crypto-Binding");
1208		return -1;
1209	}
1210
1211	os_memcpy(cmac, b->compound_mac, sizeof(cmac));
1212	os_memset(b->compound_mac, 0, sizeof(cmac));
1213	wpa_hexdump(MSG_MSGDUMP, "EAP-FAST: Crypto-Binding TLV for "
1214		    "Compound MAC calculation",
1215		    (u8 *) b, bind_len);
1216	hmac_sha1(data->cmk, EAP_FAST_CMK_LEN, (u8 *) b, bind_len,
1217		  b->compound_mac);
1218	if (os_memcmp(cmac, b->compound_mac, sizeof(cmac)) != 0) {
1219		wpa_hexdump(MSG_MSGDUMP,
1220			    "EAP-FAST: Calculated Compound MAC",
1221			    b->compound_mac, sizeof(cmac));
1222		wpa_printf(MSG_INFO, "EAP-FAST: Compound MAC did not "
1223			   "match");
1224		return -1;
1225	}
1226
1227	return 0;
1228}
1229
1230
1231static int eap_fast_pac_type(u8 *pac, size_t len, u16 type)
1232{
1233	struct eap_tlv_pac_type_tlv *tlv;
1234
1235	if (pac == NULL || len != sizeof(*tlv))
1236		return 0;
1237
1238	tlv = (struct eap_tlv_pac_type_tlv *) pac;
1239
1240	return be_to_host16(tlv->tlv_type) == PAC_TYPE_PAC_TYPE &&
1241		be_to_host16(tlv->length) == 2 &&
1242		be_to_host16(tlv->pac_type) == type;
1243}
1244
1245
1246static void eap_fast_process_phase2_tlvs(struct eap_sm *sm,
1247					 struct eap_fast_data *data,
1248					 struct wpabuf *in_data)
1249{
1250	struct eap_fast_tlv_parse tlv;
1251	int check_crypto_binding = data->state == CRYPTO_BINDING;
1252
1253	if (eap_fast_parse_tlvs(in_data, &tlv) < 0) {
1254		wpa_printf(MSG_DEBUG, "EAP-FAST: Failed to parse received "
1255			   "Phase 2 TLVs");
1256		return;
1257	}
1258
1259	if (tlv.result == EAP_TLV_RESULT_FAILURE) {
1260		wpa_printf(MSG_DEBUG, "EAP-FAST: Result TLV indicated "
1261			   "failure");
1262		eap_fast_state(data, FAILURE);
1263		return;
1264	}
1265
1266	if (data->state == REQUEST_PAC) {
1267		u16 type, len, res;
1268		if (tlv.pac == NULL || tlv.pac_len < 6) {
1269			wpa_printf(MSG_DEBUG, "EAP-FAST: No PAC "
1270				   "Acknowledgement received");
1271			eap_fast_state(data, FAILURE);
1272			return;
1273		}
1274
1275		type = WPA_GET_BE16(tlv.pac);
1276		len = WPA_GET_BE16(tlv.pac + 2);
1277		res = WPA_GET_BE16(tlv.pac + 4);
1278
1279		if (type != PAC_TYPE_PAC_ACKNOWLEDGEMENT || len != 2 ||
1280		    res != EAP_TLV_RESULT_SUCCESS) {
1281			wpa_printf(MSG_DEBUG, "EAP-FAST: PAC TLV did not "
1282				   "contain acknowledgement");
1283			eap_fast_state(data, FAILURE);
1284			return;
1285		}
1286
1287		wpa_printf(MSG_DEBUG, "EAP-FAST: PAC-Acknowledgement received "
1288			   "- PAC provisioning succeeded");
1289		eap_fast_state(data, (data->anon_provisioning ||
1290				      data->send_new_pac == 2) ?
1291			       FAILURE : SUCCESS);
1292		return;
1293	}
1294
1295	if (check_crypto_binding) {
1296		if (tlv.crypto_binding == NULL) {
1297			wpa_printf(MSG_DEBUG, "EAP-FAST: No Crypto-Binding "
1298				   "TLV received");
1299			eap_fast_state(data, FAILURE);
1300			return;
1301		}
1302
1303		if (data->final_result &&
1304		    tlv.result != EAP_TLV_RESULT_SUCCESS) {
1305			wpa_printf(MSG_DEBUG, "EAP-FAST: Crypto-Binding TLV "
1306				   "without Success Result");
1307			eap_fast_state(data, FAILURE);
1308			return;
1309		}
1310
1311		if (!data->final_result &&
1312		    tlv.iresult != EAP_TLV_RESULT_SUCCESS) {
1313			wpa_printf(MSG_DEBUG, "EAP-FAST: Crypto-Binding TLV "
1314				   "without intermediate Success Result");
1315			eap_fast_state(data, FAILURE);
1316			return;
1317		}
1318
1319		if (eap_fast_validate_crypto_binding(data, tlv.crypto_binding,
1320						     tlv.crypto_binding_len)) {
1321			eap_fast_state(data, FAILURE);
1322			return;
1323		}
1324
1325		wpa_printf(MSG_DEBUG, "EAP-FAST: Valid Crypto-Binding TLV "
1326			   "received");
1327		if (data->final_result) {
1328			wpa_printf(MSG_DEBUG, "EAP-FAST: Authentication "
1329				   "completed successfully");
1330		}
1331
1332		if (data->anon_provisioning &&
1333		    sm->eap_fast_prov != ANON_PROV &&
1334		    sm->eap_fast_prov != BOTH_PROV) {
1335			wpa_printf(MSG_DEBUG, "EAP-FAST: Client is trying to "
1336				   "use unauthenticated provisioning which is "
1337				   "disabled");
1338			eap_fast_state(data, FAILURE);
1339			return;
1340		}
1341
1342		if (sm->eap_fast_prov != AUTH_PROV &&
1343		    sm->eap_fast_prov != BOTH_PROV &&
1344		    tlv.request_action == EAP_TLV_ACTION_PROCESS_TLV &&
1345		    eap_fast_pac_type(tlv.pac, tlv.pac_len,
1346				      PAC_TYPE_TUNNEL_PAC)) {
1347			wpa_printf(MSG_DEBUG, "EAP-FAST: Client is trying to "
1348				   "use authenticated provisioning which is "
1349				   "disabled");
1350			eap_fast_state(data, FAILURE);
1351			return;
1352		}
1353
1354		if (data->anon_provisioning ||
1355		    (tlv.request_action == EAP_TLV_ACTION_PROCESS_TLV &&
1356		     eap_fast_pac_type(tlv.pac, tlv.pac_len,
1357				       PAC_TYPE_TUNNEL_PAC))) {
1358			wpa_printf(MSG_DEBUG, "EAP-FAST: Requested a new "
1359				   "Tunnel PAC");
1360			eap_fast_state(data, REQUEST_PAC);
1361		} else if (data->send_new_pac) {
1362			wpa_printf(MSG_DEBUG, "EAP-FAST: Server triggered "
1363				   "re-keying of Tunnel PAC");
1364			eap_fast_state(data, REQUEST_PAC);
1365		} else if (data->final_result)
1366			eap_fast_state(data, SUCCESS);
1367	}
1368
1369	if (tlv.eap_payload_tlv) {
1370		eap_fast_process_phase2_eap(sm, data, tlv.eap_payload_tlv,
1371					    tlv.eap_payload_tlv_len);
1372	}
1373}
1374
1375
1376static void eap_fast_process_phase2(struct eap_sm *sm,
1377				    struct eap_fast_data *data,
1378				    struct wpabuf *in_buf)
1379{
1380	struct wpabuf *in_decrypted;
1381
1382	wpa_printf(MSG_DEBUG, "EAP-FAST: Received %lu bytes encrypted data for"
1383		   " Phase 2", (unsigned long) wpabuf_len(in_buf));
1384
1385	if (data->pending_phase2_resp) {
1386		wpa_printf(MSG_DEBUG, "EAP-PEAP: Pending Phase 2 response - "
1387			   "skip decryption and use old data");
1388		eap_fast_process_phase2_tlvs(sm, data,
1389					     data->pending_phase2_resp);
1390		wpabuf_free(data->pending_phase2_resp);
1391		data->pending_phase2_resp = NULL;
1392		return;
1393	}
1394
1395	in_decrypted = tls_connection_decrypt(sm->ssl_ctx, data->ssl.conn,
1396					      in_buf);
1397	if (in_decrypted == NULL) {
1398		wpa_printf(MSG_INFO, "EAP-FAST: Failed to decrypt Phase 2 "
1399			   "data");
1400		eap_fast_state(data, FAILURE);
1401		return;
1402	}
1403
1404	wpa_hexdump_buf_key(MSG_DEBUG, "EAP-FAST: Decrypted Phase 2 TLVs",
1405			    in_decrypted);
1406
1407	eap_fast_process_phase2_tlvs(sm, data, in_decrypted);
1408
1409	if (sm->method_pending == METHOD_PENDING_WAIT) {
1410		wpa_printf(MSG_DEBUG, "EAP-FAST: Phase2 method is in "
1411			   "pending wait state - save decrypted response");
1412		wpabuf_free(data->pending_phase2_resp);
1413		data->pending_phase2_resp = in_decrypted;
1414		return;
1415	}
1416
1417	wpabuf_free(in_decrypted);
1418}
1419
1420
1421static int eap_fast_process_version(struct eap_sm *sm, void *priv,
1422				    int peer_version)
1423{
1424	struct eap_fast_data *data = priv;
1425
1426	data->peer_version = peer_version;
1427
1428	if (data->force_version >= 0 && peer_version != data->force_version) {
1429		wpa_printf(MSG_INFO, "EAP-FAST: peer did not select the forced"
1430			   " version (forced=%d peer=%d) - reject",
1431			   data->force_version, peer_version);
1432		return -1;
1433	}
1434
1435	if (peer_version < data->fast_version) {
1436		wpa_printf(MSG_DEBUG, "EAP-FAST: peer ver=%d, own ver=%d; "
1437			   "use version %d",
1438			   peer_version, data->fast_version, peer_version);
1439		data->fast_version = peer_version;
1440	}
1441
1442	return 0;
1443}
1444
1445
1446static int eap_fast_process_phase1(struct eap_sm *sm,
1447				   struct eap_fast_data *data)
1448{
1449	if (eap_server_tls_phase1(sm, &data->ssl) < 0) {
1450		wpa_printf(MSG_INFO, "EAP-FAST: TLS processing failed");
1451		eap_fast_state(data, FAILURE);
1452		return -1;
1453	}
1454
1455	if (!tls_connection_established(sm->ssl_ctx, data->ssl.conn) ||
1456	    wpabuf_len(data->ssl.tls_out) > 0)
1457		return 1;
1458
1459	/*
1460	 * Phase 1 was completed with the received message (e.g., when using
1461	 * abbreviated handshake), so Phase 2 can be started immediately
1462	 * without having to send through an empty message to the peer.
1463	 */
1464
1465	return eap_fast_phase1_done(sm, data);
1466}
1467
1468
1469static int eap_fast_process_phase2_start(struct eap_sm *sm,
1470					 struct eap_fast_data *data)
1471{
1472	u8 next_type;
1473
1474	if (data->identity) {
1475		os_free(sm->identity);
1476		sm->identity = data->identity;
1477		data->identity = NULL;
1478		sm->identity_len = data->identity_len;
1479		data->identity_len = 0;
1480		sm->require_identity_match = 1;
1481		if (eap_user_get(sm, sm->identity, sm->identity_len, 1) != 0) {
1482			wpa_hexdump_ascii(MSG_DEBUG, "EAP-FAST: "
1483					  "Phase2 Identity not found "
1484					  "in the user database",
1485					  sm->identity, sm->identity_len);
1486			next_type = eap_fast_req_failure(sm, data);
1487		} else {
1488			wpa_printf(MSG_DEBUG, "EAP-FAST: Identity already "
1489				   "known - skip Phase 2 Identity Request");
1490			next_type = sm->user->methods[0].method;
1491			sm->user_eap_method_index = 1;
1492		}
1493
1494		eap_fast_state(data, PHASE2_METHOD);
1495	} else {
1496		eap_fast_state(data, PHASE2_ID);
1497		next_type = EAP_TYPE_IDENTITY;
1498	}
1499
1500	return eap_fast_phase2_init(sm, data, next_type);
1501}
1502
1503
1504static void eap_fast_process_msg(struct eap_sm *sm, void *priv,
1505				 const struct wpabuf *respData)
1506{
1507	struct eap_fast_data *data = priv;
1508
1509	switch (data->state) {
1510	case PHASE1:
1511		if (eap_fast_process_phase1(sm, data))
1512			break;
1513
1514		/* fall through to PHASE2_START */
1515	case PHASE2_START:
1516		eap_fast_process_phase2_start(sm, data);
1517		break;
1518	case PHASE2_ID:
1519	case PHASE2_METHOD:
1520	case CRYPTO_BINDING:
1521	case REQUEST_PAC:
1522		eap_fast_process_phase2(sm, data, data->ssl.tls_in);
1523		break;
1524	default:
1525		wpa_printf(MSG_DEBUG, "EAP-FAST: Unexpected state %d in %s",
1526			   data->state, __func__);
1527		break;
1528	}
1529}
1530
1531
1532static void eap_fast_process(struct eap_sm *sm, void *priv,
1533			     struct wpabuf *respData)
1534{
1535	struct eap_fast_data *data = priv;
1536	if (eap_server_tls_process(sm, &data->ssl, respData, data,
1537				   EAP_TYPE_FAST, eap_fast_process_version,
1538				   eap_fast_process_msg) < 0)
1539		eap_fast_state(data, FAILURE);
1540}
1541
1542
1543static Boolean eap_fast_isDone(struct eap_sm *sm, void *priv)
1544{
1545	struct eap_fast_data *data = priv;
1546	return data->state == SUCCESS || data->state == FAILURE;
1547}
1548
1549
1550static u8 * eap_fast_getKey(struct eap_sm *sm, void *priv, size_t *len)
1551{
1552	struct eap_fast_data *data = priv;
1553	u8 *eapKeyData;
1554
1555	if (data->state != SUCCESS)
1556		return NULL;
1557
1558	eapKeyData = os_malloc(EAP_FAST_KEY_LEN);
1559	if (eapKeyData == NULL)
1560		return NULL;
1561
1562	eap_fast_derive_eap_msk(data->simck, eapKeyData);
1563	*len = EAP_FAST_KEY_LEN;
1564
1565	return eapKeyData;
1566}
1567
1568
1569static u8 * eap_fast_get_emsk(struct eap_sm *sm, void *priv, size_t *len)
1570{
1571	struct eap_fast_data *data = priv;
1572	u8 *eapKeyData;
1573
1574	if (data->state != SUCCESS)
1575		return NULL;
1576
1577	eapKeyData = os_malloc(EAP_EMSK_LEN);
1578	if (eapKeyData == NULL)
1579		return NULL;
1580
1581	eap_fast_derive_eap_emsk(data->simck, eapKeyData);
1582	*len = EAP_EMSK_LEN;
1583
1584	return eapKeyData;
1585}
1586
1587
1588static Boolean eap_fast_isSuccess(struct eap_sm *sm, void *priv)
1589{
1590	struct eap_fast_data *data = priv;
1591	return data->state == SUCCESS;
1592}
1593
1594
1595int eap_server_fast_register(void)
1596{
1597	struct eap_method *eap;
1598	int ret;
1599
1600	eap = eap_server_method_alloc(EAP_SERVER_METHOD_INTERFACE_VERSION,
1601				      EAP_VENDOR_IETF, EAP_TYPE_FAST, "FAST");
1602	if (eap == NULL)
1603		return -1;
1604
1605	eap->init = eap_fast_init;
1606	eap->reset = eap_fast_reset;
1607	eap->buildReq = eap_fast_buildReq;
1608	eap->check = eap_fast_check;
1609	eap->process = eap_fast_process;
1610	eap->isDone = eap_fast_isDone;
1611	eap->getKey = eap_fast_getKey;
1612	eap->get_emsk = eap_fast_get_emsk;
1613	eap->isSuccess = eap_fast_isSuccess;
1614
1615	ret = eap_server_method_register(eap);
1616	if (ret)
1617		eap_server_method_free(eap);
1618	return ret;
1619}
1620