1/*
2 * IEEE 802.11 RSN / WPA Authenticator
3 * Copyright (c) 2004-2015, 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 "utils/includes.h"
10
11#include "utils/common.h"
12#include "utils/eloop.h"
13#include "utils/state_machine.h"
14#include "utils/bitfield.h"
15#include "common/ieee802_11_defs.h"
16#include "crypto/aes_wrap.h"
17#include "crypto/crypto.h"
18#include "crypto/sha1.h"
19#include "crypto/sha256.h"
20#include "crypto/random.h"
21#include "eapol_auth/eapol_auth_sm.h"
22#include "ap_config.h"
23#include "ieee802_11.h"
24#include "wpa_auth.h"
25#include "pmksa_cache_auth.h"
26#include "wpa_auth_i.h"
27#include "wpa_auth_ie.h"
28
29#define STATE_MACHINE_DATA struct wpa_state_machine
30#define STATE_MACHINE_DEBUG_PREFIX "WPA"
31#define STATE_MACHINE_ADDR sm->addr
32
33
34static void wpa_send_eapol_timeout(void *eloop_ctx, void *timeout_ctx);
35static int wpa_sm_step(struct wpa_state_machine *sm);
36static int wpa_verify_key_mic(int akmp, struct wpa_ptk *PTK, u8 *data,
37			      size_t data_len);
38static void wpa_sm_call_step(void *eloop_ctx, void *timeout_ctx);
39static void wpa_group_sm_step(struct wpa_authenticator *wpa_auth,
40			      struct wpa_group *group);
41static void wpa_request_new_ptk(struct wpa_state_machine *sm);
42static int wpa_gtk_update(struct wpa_authenticator *wpa_auth,
43			  struct wpa_group *group);
44static int wpa_group_config_group_keys(struct wpa_authenticator *wpa_auth,
45				       struct wpa_group *group);
46static int wpa_derive_ptk(struct wpa_state_machine *sm, const u8 *snonce,
47			  const u8 *pmk, struct wpa_ptk *ptk);
48static void wpa_group_free(struct wpa_authenticator *wpa_auth,
49			   struct wpa_group *group);
50static void wpa_group_get(struct wpa_authenticator *wpa_auth,
51			  struct wpa_group *group);
52static void wpa_group_put(struct wpa_authenticator *wpa_auth,
53			  struct wpa_group *group);
54
55static const u32 dot11RSNAConfigGroupUpdateCount = 4;
56static const u32 dot11RSNAConfigPairwiseUpdateCount = 4;
57static const u32 eapol_key_timeout_first = 100; /* ms */
58static const u32 eapol_key_timeout_subseq = 1000; /* ms */
59static const u32 eapol_key_timeout_first_group = 500; /* ms */
60
61/* TODO: make these configurable */
62static const int dot11RSNAConfigPMKLifetime = 43200;
63static const int dot11RSNAConfigPMKReauthThreshold = 70;
64static const int dot11RSNAConfigSATimeout = 60;
65
66
67static inline int wpa_auth_mic_failure_report(
68	struct wpa_authenticator *wpa_auth, const u8 *addr)
69{
70	if (wpa_auth->cb.mic_failure_report)
71		return wpa_auth->cb.mic_failure_report(wpa_auth->cb.ctx, addr);
72	return 0;
73}
74
75
76static inline void wpa_auth_psk_failure_report(
77	struct wpa_authenticator *wpa_auth, const u8 *addr)
78{
79	if (wpa_auth->cb.psk_failure_report)
80		wpa_auth->cb.psk_failure_report(wpa_auth->cb.ctx, addr);
81}
82
83
84static inline void wpa_auth_set_eapol(struct wpa_authenticator *wpa_auth,
85				      const u8 *addr, wpa_eapol_variable var,
86				      int value)
87{
88	if (wpa_auth->cb.set_eapol)
89		wpa_auth->cb.set_eapol(wpa_auth->cb.ctx, addr, var, value);
90}
91
92
93static inline int wpa_auth_get_eapol(struct wpa_authenticator *wpa_auth,
94				     const u8 *addr, wpa_eapol_variable var)
95{
96	if (wpa_auth->cb.get_eapol == NULL)
97		return -1;
98	return wpa_auth->cb.get_eapol(wpa_auth->cb.ctx, addr, var);
99}
100
101
102static inline const u8 * wpa_auth_get_psk(struct wpa_authenticator *wpa_auth,
103					  const u8 *addr,
104					  const u8 *p2p_dev_addr,
105					  const u8 *prev_psk)
106{
107	if (wpa_auth->cb.get_psk == NULL)
108		return NULL;
109	return wpa_auth->cb.get_psk(wpa_auth->cb.ctx, addr, p2p_dev_addr,
110				    prev_psk);
111}
112
113
114static inline int wpa_auth_get_msk(struct wpa_authenticator *wpa_auth,
115				   const u8 *addr, u8 *msk, size_t *len)
116{
117	if (wpa_auth->cb.get_msk == NULL)
118		return -1;
119	return wpa_auth->cb.get_msk(wpa_auth->cb.ctx, addr, msk, len);
120}
121
122
123static inline int wpa_auth_set_key(struct wpa_authenticator *wpa_auth,
124				   int vlan_id,
125				   enum wpa_alg alg, const u8 *addr, int idx,
126				   u8 *key, size_t key_len)
127{
128	if (wpa_auth->cb.set_key == NULL)
129		return -1;
130	return wpa_auth->cb.set_key(wpa_auth->cb.ctx, vlan_id, alg, addr, idx,
131				    key, key_len);
132}
133
134
135static inline int wpa_auth_get_seqnum(struct wpa_authenticator *wpa_auth,
136				      const u8 *addr, int idx, u8 *seq)
137{
138	if (wpa_auth->cb.get_seqnum == NULL)
139		return -1;
140	return wpa_auth->cb.get_seqnum(wpa_auth->cb.ctx, addr, idx, seq);
141}
142
143
144static inline int
145wpa_auth_send_eapol(struct wpa_authenticator *wpa_auth, const u8 *addr,
146		    const u8 *data, size_t data_len, int encrypt)
147{
148	if (wpa_auth->cb.send_eapol == NULL)
149		return -1;
150	return wpa_auth->cb.send_eapol(wpa_auth->cb.ctx, addr, data, data_len,
151				       encrypt);
152}
153
154
155#ifdef CONFIG_MESH
156static inline int wpa_auth_start_ampe(struct wpa_authenticator *wpa_auth,
157				      const u8 *addr)
158{
159	if (wpa_auth->cb.start_ampe == NULL)
160		return -1;
161	return wpa_auth->cb.start_ampe(wpa_auth->cb.ctx, addr);
162}
163#endif /* CONFIG_MESH */
164
165
166int wpa_auth_for_each_sta(struct wpa_authenticator *wpa_auth,
167			  int (*cb)(struct wpa_state_machine *sm, void *ctx),
168			  void *cb_ctx)
169{
170	if (wpa_auth->cb.for_each_sta == NULL)
171		return 0;
172	return wpa_auth->cb.for_each_sta(wpa_auth->cb.ctx, cb, cb_ctx);
173}
174
175
176int wpa_auth_for_each_auth(struct wpa_authenticator *wpa_auth,
177			   int (*cb)(struct wpa_authenticator *a, void *ctx),
178			   void *cb_ctx)
179{
180	if (wpa_auth->cb.for_each_auth == NULL)
181		return 0;
182	return wpa_auth->cb.for_each_auth(wpa_auth->cb.ctx, cb, cb_ctx);
183}
184
185
186void wpa_auth_logger(struct wpa_authenticator *wpa_auth, const u8 *addr,
187		     logger_level level, const char *txt)
188{
189	if (wpa_auth->cb.logger == NULL)
190		return;
191	wpa_auth->cb.logger(wpa_auth->cb.ctx, addr, level, txt);
192}
193
194
195void wpa_auth_vlogger(struct wpa_authenticator *wpa_auth, const u8 *addr,
196		      logger_level level, const char *fmt, ...)
197{
198	char *format;
199	int maxlen;
200	va_list ap;
201
202	if (wpa_auth->cb.logger == NULL)
203		return;
204
205	maxlen = os_strlen(fmt) + 100;
206	format = os_malloc(maxlen);
207	if (!format)
208		return;
209
210	va_start(ap, fmt);
211	vsnprintf(format, maxlen, fmt, ap);
212	va_end(ap);
213
214	wpa_auth_logger(wpa_auth, addr, level, format);
215
216	os_free(format);
217}
218
219
220static void wpa_sta_disconnect(struct wpa_authenticator *wpa_auth,
221			       const u8 *addr)
222{
223	if (wpa_auth->cb.disconnect == NULL)
224		return;
225	wpa_printf(MSG_DEBUG, "wpa_sta_disconnect STA " MACSTR, MAC2STR(addr));
226	wpa_auth->cb.disconnect(wpa_auth->cb.ctx, addr,
227				WLAN_REASON_PREV_AUTH_NOT_VALID);
228}
229
230
231static int wpa_use_aes_cmac(struct wpa_state_machine *sm)
232{
233	int ret = 0;
234#ifdef CONFIG_IEEE80211R
235	if (wpa_key_mgmt_ft(sm->wpa_key_mgmt))
236		ret = 1;
237#endif /* CONFIG_IEEE80211R */
238#ifdef CONFIG_IEEE80211W
239	if (wpa_key_mgmt_sha256(sm->wpa_key_mgmt))
240		ret = 1;
241#endif /* CONFIG_IEEE80211W */
242	if (sm->wpa_key_mgmt == WPA_KEY_MGMT_OSEN)
243		ret = 1;
244	return ret;
245}
246
247
248static void wpa_rekey_gmk(void *eloop_ctx, void *timeout_ctx)
249{
250	struct wpa_authenticator *wpa_auth = eloop_ctx;
251
252	if (random_get_bytes(wpa_auth->group->GMK, WPA_GMK_LEN)) {
253		wpa_printf(MSG_ERROR, "Failed to get random data for WPA "
254			   "initialization.");
255	} else {
256		wpa_auth_logger(wpa_auth, NULL, LOGGER_DEBUG, "GMK rekeyd");
257		wpa_hexdump_key(MSG_DEBUG, "GMK",
258				wpa_auth->group->GMK, WPA_GMK_LEN);
259	}
260
261	if (wpa_auth->conf.wpa_gmk_rekey) {
262		eloop_register_timeout(wpa_auth->conf.wpa_gmk_rekey, 0,
263				       wpa_rekey_gmk, wpa_auth, NULL);
264	}
265}
266
267
268static void wpa_rekey_gtk(void *eloop_ctx, void *timeout_ctx)
269{
270	struct wpa_authenticator *wpa_auth = eloop_ctx;
271	struct wpa_group *group, *next;
272
273	wpa_auth_logger(wpa_auth, NULL, LOGGER_DEBUG, "rekeying GTK");
274	group = wpa_auth->group;
275	while (group) {
276		wpa_group_get(wpa_auth, group);
277
278		group->GTKReKey = TRUE;
279		do {
280			group->changed = FALSE;
281			wpa_group_sm_step(wpa_auth, group);
282		} while (group->changed);
283
284		next = group->next;
285		wpa_group_put(wpa_auth, group);
286		group = next;
287	}
288
289	if (wpa_auth->conf.wpa_group_rekey) {
290		eloop_register_timeout(wpa_auth->conf.wpa_group_rekey,
291				       0, wpa_rekey_gtk, wpa_auth, NULL);
292	}
293}
294
295
296static void wpa_rekey_ptk(void *eloop_ctx, void *timeout_ctx)
297{
298	struct wpa_authenticator *wpa_auth = eloop_ctx;
299	struct wpa_state_machine *sm = timeout_ctx;
300
301	wpa_auth_logger(wpa_auth, sm->addr, LOGGER_DEBUG, "rekeying PTK");
302	wpa_request_new_ptk(sm);
303	wpa_sm_step(sm);
304}
305
306
307static int wpa_auth_pmksa_clear_cb(struct wpa_state_machine *sm, void *ctx)
308{
309	if (sm->pmksa == ctx)
310		sm->pmksa = NULL;
311	return 0;
312}
313
314
315static void wpa_auth_pmksa_free_cb(struct rsn_pmksa_cache_entry *entry,
316				   void *ctx)
317{
318	struct wpa_authenticator *wpa_auth = ctx;
319	wpa_auth_for_each_sta(wpa_auth, wpa_auth_pmksa_clear_cb, entry);
320}
321
322
323static int wpa_group_init_gmk_and_counter(struct wpa_authenticator *wpa_auth,
324					  struct wpa_group *group)
325{
326	u8 buf[ETH_ALEN + 8 + sizeof(unsigned long)];
327	u8 rkey[32];
328	unsigned long ptr;
329
330	if (random_get_bytes(group->GMK, WPA_GMK_LEN) < 0)
331		return -1;
332	wpa_hexdump_key(MSG_DEBUG, "GMK", group->GMK, WPA_GMK_LEN);
333
334	/*
335	 * Counter = PRF-256(Random number, "Init Counter",
336	 *                   Local MAC Address || Time)
337	 */
338	os_memcpy(buf, wpa_auth->addr, ETH_ALEN);
339	wpa_get_ntp_timestamp(buf + ETH_ALEN);
340	ptr = (unsigned long) group;
341	os_memcpy(buf + ETH_ALEN + 8, &ptr, sizeof(ptr));
342	if (random_get_bytes(rkey, sizeof(rkey)) < 0)
343		return -1;
344
345	if (sha1_prf(rkey, sizeof(rkey), "Init Counter", buf, sizeof(buf),
346		     group->Counter, WPA_NONCE_LEN) < 0)
347		return -1;
348	wpa_hexdump_key(MSG_DEBUG, "Key Counter",
349			group->Counter, WPA_NONCE_LEN);
350
351	return 0;
352}
353
354
355static struct wpa_group * wpa_group_init(struct wpa_authenticator *wpa_auth,
356					 int vlan_id, int delay_init)
357{
358	struct wpa_group *group;
359
360	group = os_zalloc(sizeof(struct wpa_group));
361	if (group == NULL)
362		return NULL;
363
364	group->GTKAuthenticator = TRUE;
365	group->vlan_id = vlan_id;
366	group->GTK_len = wpa_cipher_key_len(wpa_auth->conf.wpa_group);
367
368	if (random_pool_ready() != 1) {
369		wpa_printf(MSG_INFO, "WPA: Not enough entropy in random pool "
370			   "for secure operations - update keys later when "
371			   "the first station connects");
372	}
373
374	/*
375	 * Set initial GMK/Counter value here. The actual values that will be
376	 * used in negotiations will be set once the first station tries to
377	 * connect. This allows more time for collecting additional randomness
378	 * on embedded devices.
379	 */
380	if (wpa_group_init_gmk_and_counter(wpa_auth, group) < 0) {
381		wpa_printf(MSG_ERROR, "Failed to get random data for WPA "
382			   "initialization.");
383		os_free(group);
384		return NULL;
385	}
386
387	group->GInit = TRUE;
388	if (delay_init) {
389		wpa_printf(MSG_DEBUG, "WPA: Delay group state machine start "
390			   "until Beacon frames have been configured");
391		/* Initialization is completed in wpa_init_keys(). */
392	} else {
393		wpa_group_sm_step(wpa_auth, group);
394		group->GInit = FALSE;
395		wpa_group_sm_step(wpa_auth, group);
396	}
397
398	return group;
399}
400
401
402/**
403 * wpa_init - Initialize WPA authenticator
404 * @addr: Authenticator address
405 * @conf: Configuration for WPA authenticator
406 * @cb: Callback functions for WPA authenticator
407 * Returns: Pointer to WPA authenticator data or %NULL on failure
408 */
409struct wpa_authenticator * wpa_init(const u8 *addr,
410				    struct wpa_auth_config *conf,
411				    struct wpa_auth_callbacks *cb)
412{
413	struct wpa_authenticator *wpa_auth;
414
415	wpa_auth = os_zalloc(sizeof(struct wpa_authenticator));
416	if (wpa_auth == NULL)
417		return NULL;
418	os_memcpy(wpa_auth->addr, addr, ETH_ALEN);
419	os_memcpy(&wpa_auth->conf, conf, sizeof(*conf));
420	os_memcpy(&wpa_auth->cb, cb, sizeof(*cb));
421
422	if (wpa_auth_gen_wpa_ie(wpa_auth)) {
423		wpa_printf(MSG_ERROR, "Could not generate WPA IE.");
424		os_free(wpa_auth);
425		return NULL;
426	}
427
428	wpa_auth->group = wpa_group_init(wpa_auth, 0, 1);
429	if (wpa_auth->group == NULL) {
430		os_free(wpa_auth->wpa_ie);
431		os_free(wpa_auth);
432		return NULL;
433	}
434
435	wpa_auth->pmksa = pmksa_cache_auth_init(wpa_auth_pmksa_free_cb,
436						wpa_auth);
437	if (wpa_auth->pmksa == NULL) {
438		wpa_printf(MSG_ERROR, "PMKSA cache initialization failed.");
439		os_free(wpa_auth->group);
440		os_free(wpa_auth->wpa_ie);
441		os_free(wpa_auth);
442		return NULL;
443	}
444
445#ifdef CONFIG_IEEE80211R
446	wpa_auth->ft_pmk_cache = wpa_ft_pmk_cache_init();
447	if (wpa_auth->ft_pmk_cache == NULL) {
448		wpa_printf(MSG_ERROR, "FT PMK cache initialization failed.");
449		os_free(wpa_auth->group);
450		os_free(wpa_auth->wpa_ie);
451		pmksa_cache_auth_deinit(wpa_auth->pmksa);
452		os_free(wpa_auth);
453		return NULL;
454	}
455#endif /* CONFIG_IEEE80211R */
456
457	if (wpa_auth->conf.wpa_gmk_rekey) {
458		eloop_register_timeout(wpa_auth->conf.wpa_gmk_rekey, 0,
459				       wpa_rekey_gmk, wpa_auth, NULL);
460	}
461
462	if (wpa_auth->conf.wpa_group_rekey) {
463		eloop_register_timeout(wpa_auth->conf.wpa_group_rekey, 0,
464				       wpa_rekey_gtk, wpa_auth, NULL);
465	}
466
467#ifdef CONFIG_P2P
468	if (WPA_GET_BE32(conf->ip_addr_start)) {
469		int count = WPA_GET_BE32(conf->ip_addr_end) -
470			WPA_GET_BE32(conf->ip_addr_start) + 1;
471		if (count > 1000)
472			count = 1000;
473		if (count > 0)
474			wpa_auth->ip_pool = bitfield_alloc(count);
475	}
476#endif /* CONFIG_P2P */
477
478	return wpa_auth;
479}
480
481
482int wpa_init_keys(struct wpa_authenticator *wpa_auth)
483{
484	struct wpa_group *group = wpa_auth->group;
485
486	wpa_printf(MSG_DEBUG, "WPA: Start group state machine to set initial "
487		   "keys");
488	wpa_group_sm_step(wpa_auth, group);
489	group->GInit = FALSE;
490	wpa_group_sm_step(wpa_auth, group);
491	if (group->wpa_group_state == WPA_GROUP_FATAL_FAILURE)
492		return -1;
493	return 0;
494}
495
496
497/**
498 * wpa_deinit - Deinitialize WPA authenticator
499 * @wpa_auth: Pointer to WPA authenticator data from wpa_init()
500 */
501void wpa_deinit(struct wpa_authenticator *wpa_auth)
502{
503	struct wpa_group *group, *prev;
504
505	eloop_cancel_timeout(wpa_rekey_gmk, wpa_auth, NULL);
506	eloop_cancel_timeout(wpa_rekey_gtk, wpa_auth, NULL);
507
508#ifdef CONFIG_PEERKEY
509	while (wpa_auth->stsl_negotiations)
510		wpa_stsl_remove(wpa_auth, wpa_auth->stsl_negotiations);
511#endif /* CONFIG_PEERKEY */
512
513	pmksa_cache_auth_deinit(wpa_auth->pmksa);
514
515#ifdef CONFIG_IEEE80211R
516	wpa_ft_pmk_cache_deinit(wpa_auth->ft_pmk_cache);
517	wpa_auth->ft_pmk_cache = NULL;
518#endif /* CONFIG_IEEE80211R */
519
520#ifdef CONFIG_P2P
521	bitfield_free(wpa_auth->ip_pool);
522#endif /* CONFIG_P2P */
523
524
525	os_free(wpa_auth->wpa_ie);
526
527	group = wpa_auth->group;
528	while (group) {
529		prev = group;
530		group = group->next;
531		os_free(prev);
532	}
533
534	os_free(wpa_auth);
535}
536
537
538/**
539 * wpa_reconfig - Update WPA authenticator configuration
540 * @wpa_auth: Pointer to WPA authenticator data from wpa_init()
541 * @conf: Configuration for WPA authenticator
542 */
543int wpa_reconfig(struct wpa_authenticator *wpa_auth,
544		 struct wpa_auth_config *conf)
545{
546	struct wpa_group *group;
547	if (wpa_auth == NULL)
548		return 0;
549
550	os_memcpy(&wpa_auth->conf, conf, sizeof(*conf));
551	if (wpa_auth_gen_wpa_ie(wpa_auth)) {
552		wpa_printf(MSG_ERROR, "Could not generate WPA IE.");
553		return -1;
554	}
555
556	/*
557	 * Reinitialize GTK to make sure it is suitable for the new
558	 * configuration.
559	 */
560	group = wpa_auth->group;
561	group->GTK_len = wpa_cipher_key_len(wpa_auth->conf.wpa_group);
562	group->GInit = TRUE;
563	wpa_group_sm_step(wpa_auth, group);
564	group->GInit = FALSE;
565	wpa_group_sm_step(wpa_auth, group);
566
567	return 0;
568}
569
570
571struct wpa_state_machine *
572wpa_auth_sta_init(struct wpa_authenticator *wpa_auth, const u8 *addr,
573		  const u8 *p2p_dev_addr)
574{
575	struct wpa_state_machine *sm;
576
577	if (wpa_auth->group->wpa_group_state == WPA_GROUP_FATAL_FAILURE)
578		return NULL;
579
580	sm = os_zalloc(sizeof(struct wpa_state_machine));
581	if (sm == NULL)
582		return NULL;
583	os_memcpy(sm->addr, addr, ETH_ALEN);
584	if (p2p_dev_addr)
585		os_memcpy(sm->p2p_dev_addr, p2p_dev_addr, ETH_ALEN);
586
587	sm->wpa_auth = wpa_auth;
588	sm->group = wpa_auth->group;
589	wpa_group_get(sm->wpa_auth, sm->group);
590
591	return sm;
592}
593
594
595int wpa_auth_sta_associated(struct wpa_authenticator *wpa_auth,
596			    struct wpa_state_machine *sm)
597{
598	if (wpa_auth == NULL || !wpa_auth->conf.wpa || sm == NULL)
599		return -1;
600
601#ifdef CONFIG_IEEE80211R
602	if (sm->ft_completed) {
603		wpa_auth_logger(wpa_auth, sm->addr, LOGGER_DEBUG,
604				"FT authentication already completed - do not "
605				"start 4-way handshake");
606		/* Go to PTKINITDONE state to allow GTK rekeying */
607		sm->wpa_ptk_state = WPA_PTK_PTKINITDONE;
608		return 0;
609	}
610#endif /* CONFIG_IEEE80211R */
611
612	if (sm->started) {
613		os_memset(&sm->key_replay, 0, sizeof(sm->key_replay));
614		sm->ReAuthenticationRequest = TRUE;
615		return wpa_sm_step(sm);
616	}
617
618	wpa_auth_logger(wpa_auth, sm->addr, LOGGER_DEBUG,
619			"start authentication");
620	sm->started = 1;
621
622	sm->Init = TRUE;
623	if (wpa_sm_step(sm) == 1)
624		return 1; /* should not really happen */
625	sm->Init = FALSE;
626	sm->AuthenticationRequest = TRUE;
627	return wpa_sm_step(sm);
628}
629
630
631void wpa_auth_sta_no_wpa(struct wpa_state_machine *sm)
632{
633	/* WPA/RSN was not used - clear WPA state. This is needed if the STA
634	 * reassociates back to the same AP while the previous entry for the
635	 * STA has not yet been removed. */
636	if (sm == NULL)
637		return;
638
639	sm->wpa_key_mgmt = 0;
640}
641
642
643static void wpa_free_sta_sm(struct wpa_state_machine *sm)
644{
645#ifdef CONFIG_P2P
646	if (WPA_GET_BE32(sm->ip_addr)) {
647		u32 start;
648		wpa_printf(MSG_DEBUG, "P2P: Free assigned IP "
649			   "address %u.%u.%u.%u from " MACSTR,
650			   sm->ip_addr[0], sm->ip_addr[1],
651			   sm->ip_addr[2], sm->ip_addr[3],
652			   MAC2STR(sm->addr));
653		start = WPA_GET_BE32(sm->wpa_auth->conf.ip_addr_start);
654		bitfield_clear(sm->wpa_auth->ip_pool,
655			       WPA_GET_BE32(sm->ip_addr) - start);
656	}
657#endif /* CONFIG_P2P */
658	if (sm->GUpdateStationKeys) {
659		sm->group->GKeyDoneStations--;
660		sm->GUpdateStationKeys = FALSE;
661	}
662#ifdef CONFIG_IEEE80211R
663	os_free(sm->assoc_resp_ftie);
664	wpabuf_free(sm->ft_pending_req_ies);
665#endif /* CONFIG_IEEE80211R */
666	os_free(sm->last_rx_eapol_key);
667	os_free(sm->wpa_ie);
668	wpa_group_put(sm->wpa_auth, sm->group);
669	os_free(sm);
670}
671
672
673void wpa_auth_sta_deinit(struct wpa_state_machine *sm)
674{
675	if (sm == NULL)
676		return;
677
678	if (sm->wpa_auth->conf.wpa_strict_rekey && sm->has_GTK) {
679		wpa_auth_logger(sm->wpa_auth, sm->addr, LOGGER_DEBUG,
680				"strict rekeying - force GTK rekey since STA "
681				"is leaving");
682		eloop_cancel_timeout(wpa_rekey_gtk, sm->wpa_auth, NULL);
683		eloop_register_timeout(0, 500000, wpa_rekey_gtk, sm->wpa_auth,
684				       NULL);
685	}
686
687	eloop_cancel_timeout(wpa_send_eapol_timeout, sm->wpa_auth, sm);
688	sm->pending_1_of_4_timeout = 0;
689	eloop_cancel_timeout(wpa_sm_call_step, sm, NULL);
690	eloop_cancel_timeout(wpa_rekey_ptk, sm->wpa_auth, sm);
691	if (sm->in_step_loop) {
692		/* Must not free state machine while wpa_sm_step() is running.
693		 * Freeing will be completed in the end of wpa_sm_step(). */
694		wpa_printf(MSG_DEBUG, "WPA: Registering pending STA state "
695			   "machine deinit for " MACSTR, MAC2STR(sm->addr));
696		sm->pending_deinit = 1;
697	} else
698		wpa_free_sta_sm(sm);
699}
700
701
702static void wpa_request_new_ptk(struct wpa_state_machine *sm)
703{
704	if (sm == NULL)
705		return;
706
707	sm->PTKRequest = TRUE;
708	sm->PTK_valid = 0;
709}
710
711
712static int wpa_replay_counter_valid(struct wpa_key_replay_counter *ctr,
713				    const u8 *replay_counter)
714{
715	int i;
716	for (i = 0; i < RSNA_MAX_EAPOL_RETRIES; i++) {
717		if (!ctr[i].valid)
718			break;
719		if (os_memcmp(replay_counter, ctr[i].counter,
720			      WPA_REPLAY_COUNTER_LEN) == 0)
721			return 1;
722	}
723	return 0;
724}
725
726
727static void wpa_replay_counter_mark_invalid(struct wpa_key_replay_counter *ctr,
728					    const u8 *replay_counter)
729{
730	int i;
731	for (i = 0; i < RSNA_MAX_EAPOL_RETRIES; i++) {
732		if (ctr[i].valid &&
733		    (replay_counter == NULL ||
734		     os_memcmp(replay_counter, ctr[i].counter,
735			       WPA_REPLAY_COUNTER_LEN) == 0))
736			ctr[i].valid = FALSE;
737	}
738}
739
740
741#ifdef CONFIG_IEEE80211R
742static int ft_check_msg_2_of_4(struct wpa_authenticator *wpa_auth,
743			       struct wpa_state_machine *sm,
744			       struct wpa_eapol_ie_parse *kde)
745{
746	struct wpa_ie_data ie;
747	struct rsn_mdie *mdie;
748
749	if (wpa_parse_wpa_ie_rsn(kde->rsn_ie, kde->rsn_ie_len, &ie) < 0 ||
750	    ie.num_pmkid != 1 || ie.pmkid == NULL) {
751		wpa_printf(MSG_DEBUG, "FT: No PMKR1Name in "
752			   "FT 4-way handshake message 2/4");
753		return -1;
754	}
755
756	os_memcpy(sm->sup_pmk_r1_name, ie.pmkid, PMKID_LEN);
757	wpa_hexdump(MSG_DEBUG, "FT: PMKR1Name from Supplicant",
758		    sm->sup_pmk_r1_name, PMKID_LEN);
759
760	if (!kde->mdie || !kde->ftie) {
761		wpa_printf(MSG_DEBUG, "FT: No %s in FT 4-way handshake "
762			   "message 2/4", kde->mdie ? "FTIE" : "MDIE");
763		return -1;
764	}
765
766	mdie = (struct rsn_mdie *) (kde->mdie + 2);
767	if (kde->mdie[1] < sizeof(struct rsn_mdie) ||
768	    os_memcmp(wpa_auth->conf.mobility_domain, mdie->mobility_domain,
769		      MOBILITY_DOMAIN_ID_LEN) != 0) {
770		wpa_printf(MSG_DEBUG, "FT: MDIE mismatch");
771		return -1;
772	}
773
774	if (sm->assoc_resp_ftie &&
775	    (kde->ftie[1] != sm->assoc_resp_ftie[1] ||
776	     os_memcmp(kde->ftie, sm->assoc_resp_ftie,
777		       2 + sm->assoc_resp_ftie[1]) != 0)) {
778		wpa_printf(MSG_DEBUG, "FT: FTIE mismatch");
779		wpa_hexdump(MSG_DEBUG, "FT: FTIE in EAPOL-Key msg 2/4",
780			    kde->ftie, kde->ftie_len);
781		wpa_hexdump(MSG_DEBUG, "FT: FTIE in (Re)AssocResp",
782			    sm->assoc_resp_ftie, 2 + sm->assoc_resp_ftie[1]);
783		return -1;
784	}
785
786	return 0;
787}
788#endif /* CONFIG_IEEE80211R */
789
790
791static int wpa_receive_error_report(struct wpa_authenticator *wpa_auth,
792				    struct wpa_state_machine *sm, int group)
793{
794	/* Supplicant reported a Michael MIC error */
795	wpa_auth_vlogger(wpa_auth, sm->addr, LOGGER_INFO,
796			 "received EAPOL-Key Error Request "
797			 "(STA detected Michael MIC failure (group=%d))",
798			 group);
799
800	if (group && wpa_auth->conf.wpa_group != WPA_CIPHER_TKIP) {
801		wpa_auth_logger(wpa_auth, sm->addr, LOGGER_INFO,
802				"ignore Michael MIC failure report since "
803				"group cipher is not TKIP");
804	} else if (!group && sm->pairwise != WPA_CIPHER_TKIP) {
805		wpa_auth_logger(wpa_auth, sm->addr, LOGGER_INFO,
806				"ignore Michael MIC failure report since "
807				"pairwise cipher is not TKIP");
808	} else {
809		if (wpa_auth_mic_failure_report(wpa_auth, sm->addr) > 0)
810			return 1; /* STA entry was removed */
811		sm->dot11RSNAStatsTKIPRemoteMICFailures++;
812		wpa_auth->dot11RSNAStatsTKIPRemoteMICFailures++;
813	}
814
815	/*
816	 * Error report is not a request for a new key handshake, but since
817	 * Authenticator may do it, let's change the keys now anyway.
818	 */
819	wpa_request_new_ptk(sm);
820	return 0;
821}
822
823
824static int wpa_try_alt_snonce(struct wpa_state_machine *sm, u8 *data,
825			      size_t data_len)
826{
827	struct wpa_ptk PTK;
828	int ok = 0;
829	const u8 *pmk = NULL;
830
831	for (;;) {
832		if (wpa_key_mgmt_wpa_psk(sm->wpa_key_mgmt)) {
833			pmk = wpa_auth_get_psk(sm->wpa_auth, sm->addr,
834					       sm->p2p_dev_addr, pmk);
835			if (pmk == NULL)
836				break;
837		} else
838			pmk = sm->PMK;
839
840		wpa_derive_ptk(sm, sm->alt_SNonce, pmk, &PTK);
841
842		if (wpa_verify_key_mic(sm->wpa_key_mgmt, &PTK, data, data_len)
843		    == 0) {
844			ok = 1;
845			break;
846		}
847
848		if (!wpa_key_mgmt_wpa_psk(sm->wpa_key_mgmt))
849			break;
850	}
851
852	if (!ok) {
853		wpa_printf(MSG_DEBUG,
854			   "WPA: Earlier SNonce did not result in matching MIC");
855		return -1;
856	}
857
858	wpa_printf(MSG_DEBUG,
859		   "WPA: Earlier SNonce resulted in matching MIC");
860	sm->alt_snonce_valid = 0;
861	os_memcpy(sm->SNonce, sm->alt_SNonce, WPA_NONCE_LEN);
862	os_memcpy(&sm->PTK, &PTK, sizeof(PTK));
863	sm->PTK_valid = TRUE;
864
865	return 0;
866}
867
868
869void wpa_receive(struct wpa_authenticator *wpa_auth,
870		 struct wpa_state_machine *sm,
871		 u8 *data, size_t data_len)
872{
873	struct ieee802_1x_hdr *hdr;
874	struct wpa_eapol_key *key;
875	struct wpa_eapol_key_192 *key192;
876	u16 key_info, key_data_length;
877	enum { PAIRWISE_2, PAIRWISE_4, GROUP_2, REQUEST,
878	       SMK_M1, SMK_M3, SMK_ERROR } msg;
879	char *msgtxt;
880	struct wpa_eapol_ie_parse kde;
881	int ft;
882	const u8 *eapol_key_ie, *key_data;
883	size_t eapol_key_ie_len, keyhdrlen, mic_len;
884
885	if (wpa_auth == NULL || !wpa_auth->conf.wpa || sm == NULL)
886		return;
887
888	mic_len = wpa_mic_len(sm->wpa_key_mgmt);
889	keyhdrlen = mic_len == 24 ? sizeof(*key192) : sizeof(*key);
890
891	if (data_len < sizeof(*hdr) + keyhdrlen)
892		return;
893
894	hdr = (struct ieee802_1x_hdr *) data;
895	key = (struct wpa_eapol_key *) (hdr + 1);
896	key192 = (struct wpa_eapol_key_192 *) (hdr + 1);
897	key_info = WPA_GET_BE16(key->key_info);
898	if (mic_len == 24) {
899		key_data = (const u8 *) (key192 + 1);
900		key_data_length = WPA_GET_BE16(key192->key_data_length);
901	} else {
902		key_data = (const u8 *) (key + 1);
903		key_data_length = WPA_GET_BE16(key->key_data_length);
904	}
905	wpa_printf(MSG_DEBUG, "WPA: Received EAPOL-Key from " MACSTR
906		   " key_info=0x%x type=%u key_data_length=%u",
907		   MAC2STR(sm->addr), key_info, key->type, key_data_length);
908	if (key_data_length > data_len - sizeof(*hdr) - keyhdrlen) {
909		wpa_printf(MSG_INFO, "WPA: Invalid EAPOL-Key frame - "
910			   "key_data overflow (%d > %lu)",
911			   key_data_length,
912			   (unsigned long) (data_len - sizeof(*hdr) -
913					    keyhdrlen));
914		return;
915	}
916
917	if (sm->wpa == WPA_VERSION_WPA2) {
918		if (key->type == EAPOL_KEY_TYPE_WPA) {
919			/*
920			 * Some deployed station implementations seem to send
921			 * msg 4/4 with incorrect type value in WPA2 mode.
922			 */
923			wpa_printf(MSG_DEBUG, "Workaround: Allow EAPOL-Key "
924				   "with unexpected WPA type in RSN mode");
925		} else if (key->type != EAPOL_KEY_TYPE_RSN) {
926			wpa_printf(MSG_DEBUG, "Ignore EAPOL-Key with "
927				   "unexpected type %d in RSN mode",
928				   key->type);
929			return;
930		}
931	} else {
932		if (key->type != EAPOL_KEY_TYPE_WPA) {
933			wpa_printf(MSG_DEBUG, "Ignore EAPOL-Key with "
934				   "unexpected type %d in WPA mode",
935				   key->type);
936			return;
937		}
938	}
939
940	wpa_hexdump(MSG_DEBUG, "WPA: Received Key Nonce", key->key_nonce,
941		    WPA_NONCE_LEN);
942	wpa_hexdump(MSG_DEBUG, "WPA: Received Replay Counter",
943		    key->replay_counter, WPA_REPLAY_COUNTER_LEN);
944
945	/* FIX: verify that the EAPOL-Key frame was encrypted if pairwise keys
946	 * are set */
947
948	if ((key_info & (WPA_KEY_INFO_SMK_MESSAGE | WPA_KEY_INFO_REQUEST)) ==
949	    (WPA_KEY_INFO_SMK_MESSAGE | WPA_KEY_INFO_REQUEST)) {
950		if (key_info & WPA_KEY_INFO_ERROR) {
951			msg = SMK_ERROR;
952			msgtxt = "SMK Error";
953		} else {
954			msg = SMK_M1;
955			msgtxt = "SMK M1";
956		}
957	} else if (key_info & WPA_KEY_INFO_SMK_MESSAGE) {
958		msg = SMK_M3;
959		msgtxt = "SMK M3";
960	} else if (key_info & WPA_KEY_INFO_REQUEST) {
961		msg = REQUEST;
962		msgtxt = "Request";
963	} else if (!(key_info & WPA_KEY_INFO_KEY_TYPE)) {
964		msg = GROUP_2;
965		msgtxt = "2/2 Group";
966	} else if (key_data_length == 0) {
967		msg = PAIRWISE_4;
968		msgtxt = "4/4 Pairwise";
969	} else {
970		msg = PAIRWISE_2;
971		msgtxt = "2/4 Pairwise";
972	}
973
974	/* TODO: key_info type validation for PeerKey */
975	if (msg == REQUEST || msg == PAIRWISE_2 || msg == PAIRWISE_4 ||
976	    msg == GROUP_2) {
977		u16 ver = key_info & WPA_KEY_INFO_TYPE_MASK;
978		if (sm->pairwise == WPA_CIPHER_CCMP ||
979		    sm->pairwise == WPA_CIPHER_GCMP) {
980			if (wpa_use_aes_cmac(sm) &&
981			    sm->wpa_key_mgmt != WPA_KEY_MGMT_OSEN &&
982			    !wpa_key_mgmt_suite_b(sm->wpa_key_mgmt) &&
983			    ver != WPA_KEY_INFO_TYPE_AES_128_CMAC) {
984				wpa_auth_logger(wpa_auth, sm->addr,
985						LOGGER_WARNING,
986						"advertised support for "
987						"AES-128-CMAC, but did not "
988						"use it");
989				return;
990			}
991
992			if (!wpa_use_aes_cmac(sm) &&
993			    ver != WPA_KEY_INFO_TYPE_HMAC_SHA1_AES) {
994				wpa_auth_logger(wpa_auth, sm->addr,
995						LOGGER_WARNING,
996						"did not use HMAC-SHA1-AES "
997						"with CCMP/GCMP");
998				return;
999			}
1000		}
1001
1002		if (wpa_key_mgmt_suite_b(sm->wpa_key_mgmt) &&
1003		    ver != WPA_KEY_INFO_TYPE_AKM_DEFINED) {
1004			wpa_auth_logger(wpa_auth, sm->addr, LOGGER_WARNING,
1005					"did not use EAPOL-Key descriptor version 0 as required for AKM-defined cases");
1006			return;
1007		}
1008	}
1009
1010	if (key_info & WPA_KEY_INFO_REQUEST) {
1011		if (sm->req_replay_counter_used &&
1012		    os_memcmp(key->replay_counter, sm->req_replay_counter,
1013			      WPA_REPLAY_COUNTER_LEN) <= 0) {
1014			wpa_auth_logger(wpa_auth, sm->addr, LOGGER_WARNING,
1015					"received EAPOL-Key request with "
1016					"replayed counter");
1017			return;
1018		}
1019	}
1020
1021	if (!(key_info & WPA_KEY_INFO_REQUEST) &&
1022	    !wpa_replay_counter_valid(sm->key_replay, key->replay_counter)) {
1023		int i;
1024
1025		if (msg == PAIRWISE_2 &&
1026		    wpa_replay_counter_valid(sm->prev_key_replay,
1027					     key->replay_counter) &&
1028		    sm->wpa_ptk_state == WPA_PTK_PTKINITNEGOTIATING &&
1029		    os_memcmp(sm->SNonce, key->key_nonce, WPA_NONCE_LEN) != 0)
1030		{
1031			/*
1032			 * Some supplicant implementations (e.g., Windows XP
1033			 * WZC) update SNonce for each EAPOL-Key 2/4. This
1034			 * breaks the workaround on accepting any of the
1035			 * pending requests, so allow the SNonce to be updated
1036			 * even if we have already sent out EAPOL-Key 3/4.
1037			 */
1038			wpa_auth_vlogger(wpa_auth, sm->addr, LOGGER_DEBUG,
1039					 "Process SNonce update from STA "
1040					 "based on retransmitted EAPOL-Key "
1041					 "1/4");
1042			sm->update_snonce = 1;
1043			os_memcpy(sm->alt_SNonce, sm->SNonce, WPA_NONCE_LEN);
1044			sm->alt_snonce_valid = TRUE;
1045			os_memcpy(sm->alt_replay_counter,
1046				  sm->key_replay[0].counter,
1047				  WPA_REPLAY_COUNTER_LEN);
1048			goto continue_processing;
1049		}
1050
1051		if (msg == PAIRWISE_4 && sm->alt_snonce_valid &&
1052		    sm->wpa_ptk_state == WPA_PTK_PTKINITNEGOTIATING &&
1053		    os_memcmp(key->replay_counter, sm->alt_replay_counter,
1054			      WPA_REPLAY_COUNTER_LEN) == 0) {
1055			/*
1056			 * Supplicant may still be using the old SNonce since
1057			 * there was two EAPOL-Key 2/4 messages and they had
1058			 * different SNonce values.
1059			 */
1060			wpa_auth_vlogger(wpa_auth, sm->addr, LOGGER_DEBUG,
1061					 "Try to process received EAPOL-Key 4/4 based on old Replay Counter and SNonce from an earlier EAPOL-Key 1/4");
1062			goto continue_processing;
1063		}
1064
1065		if (msg == PAIRWISE_2 &&
1066		    wpa_replay_counter_valid(sm->prev_key_replay,
1067					     key->replay_counter) &&
1068		    sm->wpa_ptk_state == WPA_PTK_PTKINITNEGOTIATING) {
1069			wpa_auth_vlogger(wpa_auth, sm->addr, LOGGER_DEBUG,
1070					 "ignore retransmitted EAPOL-Key %s - "
1071					 "SNonce did not change", msgtxt);
1072		} else {
1073			wpa_auth_vlogger(wpa_auth, sm->addr, LOGGER_DEBUG,
1074					 "received EAPOL-Key %s with "
1075					 "unexpected replay counter", msgtxt);
1076		}
1077		for (i = 0; i < RSNA_MAX_EAPOL_RETRIES; i++) {
1078			if (!sm->key_replay[i].valid)
1079				break;
1080			wpa_hexdump(MSG_DEBUG, "pending replay counter",
1081				    sm->key_replay[i].counter,
1082				    WPA_REPLAY_COUNTER_LEN);
1083		}
1084		wpa_hexdump(MSG_DEBUG, "received replay counter",
1085			    key->replay_counter, WPA_REPLAY_COUNTER_LEN);
1086		return;
1087	}
1088
1089continue_processing:
1090	switch (msg) {
1091	case PAIRWISE_2:
1092		if (sm->wpa_ptk_state != WPA_PTK_PTKSTART &&
1093		    sm->wpa_ptk_state != WPA_PTK_PTKCALCNEGOTIATING &&
1094		    (!sm->update_snonce ||
1095		     sm->wpa_ptk_state != WPA_PTK_PTKINITNEGOTIATING)) {
1096			wpa_auth_vlogger(wpa_auth, sm->addr, LOGGER_INFO,
1097					 "received EAPOL-Key msg 2/4 in "
1098					 "invalid state (%d) - dropped",
1099					 sm->wpa_ptk_state);
1100			return;
1101		}
1102		random_add_randomness(key->key_nonce, WPA_NONCE_LEN);
1103		if (sm->group->reject_4way_hs_for_entropy) {
1104			/*
1105			 * The system did not have enough entropy to generate
1106			 * strong random numbers. Reject the first 4-way
1107			 * handshake(s) and collect some entropy based on the
1108			 * information from it. Once enough entropy is
1109			 * available, the next atempt will trigger GMK/Key
1110			 * Counter update and the station will be allowed to
1111			 * continue.
1112			 */
1113			wpa_printf(MSG_DEBUG, "WPA: Reject 4-way handshake to "
1114				   "collect more entropy for random number "
1115				   "generation");
1116			random_mark_pool_ready();
1117			wpa_sta_disconnect(wpa_auth, sm->addr);
1118			return;
1119		}
1120		if (wpa_parse_kde_ies(key_data, key_data_length, &kde) < 0) {
1121			wpa_auth_vlogger(wpa_auth, sm->addr, LOGGER_INFO,
1122					 "received EAPOL-Key msg 2/4 with "
1123					 "invalid Key Data contents");
1124			return;
1125		}
1126		if (kde.rsn_ie) {
1127			eapol_key_ie = kde.rsn_ie;
1128			eapol_key_ie_len = kde.rsn_ie_len;
1129		} else if (kde.osen) {
1130			eapol_key_ie = kde.osen;
1131			eapol_key_ie_len = kde.osen_len;
1132		} else {
1133			eapol_key_ie = kde.wpa_ie;
1134			eapol_key_ie_len = kde.wpa_ie_len;
1135		}
1136		ft = sm->wpa == WPA_VERSION_WPA2 &&
1137			wpa_key_mgmt_ft(sm->wpa_key_mgmt);
1138		if (sm->wpa_ie == NULL ||
1139		    wpa_compare_rsn_ie(ft,
1140				       sm->wpa_ie, sm->wpa_ie_len,
1141				       eapol_key_ie, eapol_key_ie_len)) {
1142			wpa_auth_logger(wpa_auth, sm->addr, LOGGER_INFO,
1143					"WPA IE from (Re)AssocReq did not "
1144					"match with msg 2/4");
1145			if (sm->wpa_ie) {
1146				wpa_hexdump(MSG_DEBUG, "WPA IE in AssocReq",
1147					    sm->wpa_ie, sm->wpa_ie_len);
1148			}
1149			wpa_hexdump(MSG_DEBUG, "WPA IE in msg 2/4",
1150				    eapol_key_ie, eapol_key_ie_len);
1151			/* MLME-DEAUTHENTICATE.request */
1152			wpa_sta_disconnect(wpa_auth, sm->addr);
1153			return;
1154		}
1155#ifdef CONFIG_IEEE80211R
1156		if (ft && ft_check_msg_2_of_4(wpa_auth, sm, &kde) < 0) {
1157			wpa_sta_disconnect(wpa_auth, sm->addr);
1158			return;
1159		}
1160#endif /* CONFIG_IEEE80211R */
1161#ifdef CONFIG_P2P
1162		if (kde.ip_addr_req && kde.ip_addr_req[0] &&
1163		    wpa_auth->ip_pool && WPA_GET_BE32(sm->ip_addr) == 0) {
1164			int idx;
1165			wpa_printf(MSG_DEBUG, "P2P: IP address requested in "
1166				   "EAPOL-Key exchange");
1167			idx = bitfield_get_first_zero(wpa_auth->ip_pool);
1168			if (idx >= 0) {
1169				u32 start = WPA_GET_BE32(wpa_auth->conf.
1170							 ip_addr_start);
1171				bitfield_set(wpa_auth->ip_pool, idx);
1172				WPA_PUT_BE32(sm->ip_addr, start + idx);
1173				wpa_printf(MSG_DEBUG, "P2P: Assigned IP "
1174					   "address %u.%u.%u.%u to " MACSTR,
1175					   sm->ip_addr[0], sm->ip_addr[1],
1176					   sm->ip_addr[2], sm->ip_addr[3],
1177					   MAC2STR(sm->addr));
1178			}
1179		}
1180#endif /* CONFIG_P2P */
1181		break;
1182	case PAIRWISE_4:
1183		if (sm->wpa_ptk_state != WPA_PTK_PTKINITNEGOTIATING ||
1184		    !sm->PTK_valid) {
1185			wpa_auth_vlogger(wpa_auth, sm->addr, LOGGER_INFO,
1186					 "received EAPOL-Key msg 4/4 in "
1187					 "invalid state (%d) - dropped",
1188					 sm->wpa_ptk_state);
1189			return;
1190		}
1191		break;
1192	case GROUP_2:
1193		if (sm->wpa_ptk_group_state != WPA_PTK_GROUP_REKEYNEGOTIATING
1194		    || !sm->PTK_valid) {
1195			wpa_auth_vlogger(wpa_auth, sm->addr, LOGGER_INFO,
1196					 "received EAPOL-Key msg 2/2 in "
1197					 "invalid state (%d) - dropped",
1198					 sm->wpa_ptk_group_state);
1199			return;
1200		}
1201		break;
1202#ifdef CONFIG_PEERKEY
1203	case SMK_M1:
1204	case SMK_M3:
1205	case SMK_ERROR:
1206		if (!wpa_auth->conf.peerkey) {
1207			wpa_printf(MSG_DEBUG, "RSN: SMK M1/M3/Error, but "
1208				   "PeerKey use disabled - ignoring message");
1209			return;
1210		}
1211		if (!sm->PTK_valid) {
1212			wpa_auth_logger(wpa_auth, sm->addr, LOGGER_INFO,
1213					"received EAPOL-Key msg SMK in "
1214					"invalid state - dropped");
1215			return;
1216		}
1217		break;
1218#else /* CONFIG_PEERKEY */
1219	case SMK_M1:
1220	case SMK_M3:
1221	case SMK_ERROR:
1222		return; /* STSL disabled - ignore SMK messages */
1223#endif /* CONFIG_PEERKEY */
1224	case REQUEST:
1225		break;
1226	}
1227
1228	wpa_auth_vlogger(wpa_auth, sm->addr, LOGGER_DEBUG,
1229			 "received EAPOL-Key frame (%s)", msgtxt);
1230
1231	if (key_info & WPA_KEY_INFO_ACK) {
1232		wpa_auth_logger(wpa_auth, sm->addr, LOGGER_INFO,
1233				"received invalid EAPOL-Key: Key Ack set");
1234		return;
1235	}
1236
1237	if (!(key_info & WPA_KEY_INFO_MIC)) {
1238		wpa_auth_logger(wpa_auth, sm->addr, LOGGER_INFO,
1239				"received invalid EAPOL-Key: Key MIC not set");
1240		return;
1241	}
1242
1243	sm->MICVerified = FALSE;
1244	if (sm->PTK_valid && !sm->update_snonce) {
1245		if (wpa_verify_key_mic(sm->wpa_key_mgmt, &sm->PTK, data,
1246				       data_len) &&
1247		    (msg != PAIRWISE_4 || !sm->alt_snonce_valid ||
1248		     wpa_try_alt_snonce(sm, data, data_len))) {
1249			wpa_auth_logger(wpa_auth, sm->addr, LOGGER_INFO,
1250					"received EAPOL-Key with invalid MIC");
1251			return;
1252		}
1253		sm->MICVerified = TRUE;
1254		eloop_cancel_timeout(wpa_send_eapol_timeout, wpa_auth, sm);
1255		sm->pending_1_of_4_timeout = 0;
1256	}
1257
1258	if (key_info & WPA_KEY_INFO_REQUEST) {
1259		if (sm->MICVerified) {
1260			sm->req_replay_counter_used = 1;
1261			os_memcpy(sm->req_replay_counter, key->replay_counter,
1262				  WPA_REPLAY_COUNTER_LEN);
1263		} else {
1264			wpa_auth_logger(wpa_auth, sm->addr, LOGGER_INFO,
1265					"received EAPOL-Key request with "
1266					"invalid MIC");
1267			return;
1268		}
1269
1270		/*
1271		 * TODO: should decrypt key data field if encryption was used;
1272		 * even though MAC address KDE is not normally encrypted,
1273		 * supplicant is allowed to encrypt it.
1274		 */
1275		if (msg == SMK_ERROR) {
1276#ifdef CONFIG_PEERKEY
1277			wpa_smk_error(wpa_auth, sm, key_data, key_data_length);
1278#endif /* CONFIG_PEERKEY */
1279			return;
1280		} else if (key_info & WPA_KEY_INFO_ERROR) {
1281			if (wpa_receive_error_report(
1282				    wpa_auth, sm,
1283				    !(key_info & WPA_KEY_INFO_KEY_TYPE)) > 0)
1284				return; /* STA entry was removed */
1285		} else if (key_info & WPA_KEY_INFO_KEY_TYPE) {
1286			wpa_auth_logger(wpa_auth, sm->addr, LOGGER_INFO,
1287					"received EAPOL-Key Request for new "
1288					"4-Way Handshake");
1289			wpa_request_new_ptk(sm);
1290#ifdef CONFIG_PEERKEY
1291		} else if (msg == SMK_M1) {
1292			wpa_smk_m1(wpa_auth, sm, key, key_data,
1293				   key_data_length);
1294#endif /* CONFIG_PEERKEY */
1295		} else if (key_data_length > 0 &&
1296			   wpa_parse_kde_ies(key_data, key_data_length,
1297					     &kde) == 0 &&
1298			   kde.mac_addr) {
1299		} else {
1300			wpa_auth_logger(wpa_auth, sm->addr, LOGGER_INFO,
1301					"received EAPOL-Key Request for GTK "
1302					"rekeying");
1303			eloop_cancel_timeout(wpa_rekey_gtk, wpa_auth, NULL);
1304			wpa_rekey_gtk(wpa_auth, NULL);
1305		}
1306	} else {
1307		/* Do not allow the same key replay counter to be reused. */
1308		wpa_replay_counter_mark_invalid(sm->key_replay,
1309						key->replay_counter);
1310
1311		if (msg == PAIRWISE_2) {
1312			/*
1313			 * Maintain a copy of the pending EAPOL-Key frames in
1314			 * case the EAPOL-Key frame was retransmitted. This is
1315			 * needed to allow EAPOL-Key msg 2/4 reply to another
1316			 * pending msg 1/4 to update the SNonce to work around
1317			 * unexpected supplicant behavior.
1318			 */
1319			os_memcpy(sm->prev_key_replay, sm->key_replay,
1320				  sizeof(sm->key_replay));
1321		} else {
1322			os_memset(sm->prev_key_replay, 0,
1323				  sizeof(sm->prev_key_replay));
1324		}
1325
1326		/*
1327		 * Make sure old valid counters are not accepted anymore and
1328		 * do not get copied again.
1329		 */
1330		wpa_replay_counter_mark_invalid(sm->key_replay, NULL);
1331	}
1332
1333#ifdef CONFIG_PEERKEY
1334	if (msg == SMK_M3) {
1335		wpa_smk_m3(wpa_auth, sm, key, key_data, key_data_length);
1336		return;
1337	}
1338#endif /* CONFIG_PEERKEY */
1339
1340	os_free(sm->last_rx_eapol_key);
1341	sm->last_rx_eapol_key = os_malloc(data_len);
1342	if (sm->last_rx_eapol_key == NULL)
1343		return;
1344	os_memcpy(sm->last_rx_eapol_key, data, data_len);
1345	sm->last_rx_eapol_key_len = data_len;
1346
1347	sm->rx_eapol_key_secure = !!(key_info & WPA_KEY_INFO_SECURE);
1348	sm->EAPOLKeyReceived = TRUE;
1349	sm->EAPOLKeyPairwise = !!(key_info & WPA_KEY_INFO_KEY_TYPE);
1350	sm->EAPOLKeyRequest = !!(key_info & WPA_KEY_INFO_REQUEST);
1351	os_memcpy(sm->SNonce, key->key_nonce, WPA_NONCE_LEN);
1352	wpa_sm_step(sm);
1353}
1354
1355
1356static int wpa_gmk_to_gtk(const u8 *gmk, const char *label, const u8 *addr,
1357			  const u8 *gnonce, u8 *gtk, size_t gtk_len)
1358{
1359	u8 data[ETH_ALEN + WPA_NONCE_LEN + 8 + 16];
1360	u8 *pos;
1361	int ret = 0;
1362
1363	/* GTK = PRF-X(GMK, "Group key expansion",
1364	 *	AA || GNonce || Time || random data)
1365	 * The example described in the IEEE 802.11 standard uses only AA and
1366	 * GNonce as inputs here. Add some more entropy since this derivation
1367	 * is done only at the Authenticator and as such, does not need to be
1368	 * exactly same.
1369	 */
1370	os_memcpy(data, addr, ETH_ALEN);
1371	os_memcpy(data + ETH_ALEN, gnonce, WPA_NONCE_LEN);
1372	pos = data + ETH_ALEN + WPA_NONCE_LEN;
1373	wpa_get_ntp_timestamp(pos);
1374	pos += 8;
1375	if (random_get_bytes(pos, 16) < 0)
1376		ret = -1;
1377
1378#ifdef CONFIG_IEEE80211W
1379	sha256_prf(gmk, WPA_GMK_LEN, label, data, sizeof(data), gtk, gtk_len);
1380#else /* CONFIG_IEEE80211W */
1381	if (sha1_prf(gmk, WPA_GMK_LEN, label, data, sizeof(data), gtk, gtk_len)
1382	    < 0)
1383		ret = -1;
1384#endif /* CONFIG_IEEE80211W */
1385
1386	return ret;
1387}
1388
1389
1390static void wpa_send_eapol_timeout(void *eloop_ctx, void *timeout_ctx)
1391{
1392	struct wpa_authenticator *wpa_auth = eloop_ctx;
1393	struct wpa_state_machine *sm = timeout_ctx;
1394
1395	sm->pending_1_of_4_timeout = 0;
1396	wpa_auth_logger(wpa_auth, sm->addr, LOGGER_DEBUG, "EAPOL-Key timeout");
1397	sm->TimeoutEvt = TRUE;
1398	wpa_sm_step(sm);
1399}
1400
1401
1402void __wpa_send_eapol(struct wpa_authenticator *wpa_auth,
1403		      struct wpa_state_machine *sm, int key_info,
1404		      const u8 *key_rsc, const u8 *nonce,
1405		      const u8 *kde, size_t kde_len,
1406		      int keyidx, int encr, int force_version)
1407{
1408	struct ieee802_1x_hdr *hdr;
1409	struct wpa_eapol_key *key;
1410	struct wpa_eapol_key_192 *key192;
1411	size_t len, mic_len, keyhdrlen;
1412	int alg;
1413	int key_data_len, pad_len = 0;
1414	u8 *buf, *pos;
1415	int version, pairwise;
1416	int i;
1417	u8 *key_data;
1418
1419	mic_len = wpa_mic_len(sm->wpa_key_mgmt);
1420	keyhdrlen = mic_len == 24 ? sizeof(*key192) : sizeof(*key);
1421
1422	len = sizeof(struct ieee802_1x_hdr) + keyhdrlen;
1423
1424	if (force_version)
1425		version = force_version;
1426	else if (sm->wpa_key_mgmt == WPA_KEY_MGMT_OSEN ||
1427		 wpa_key_mgmt_suite_b(sm->wpa_key_mgmt))
1428		version = WPA_KEY_INFO_TYPE_AKM_DEFINED;
1429	else if (wpa_use_aes_cmac(sm))
1430		version = WPA_KEY_INFO_TYPE_AES_128_CMAC;
1431	else if (sm->pairwise != WPA_CIPHER_TKIP)
1432		version = WPA_KEY_INFO_TYPE_HMAC_SHA1_AES;
1433	else
1434		version = WPA_KEY_INFO_TYPE_HMAC_MD5_RC4;
1435
1436	pairwise = !!(key_info & WPA_KEY_INFO_KEY_TYPE);
1437
1438	wpa_printf(MSG_DEBUG, "WPA: Send EAPOL(version=%d secure=%d mic=%d "
1439		   "ack=%d install=%d pairwise=%d kde_len=%lu keyidx=%d "
1440		   "encr=%d)",
1441		   version,
1442		   (key_info & WPA_KEY_INFO_SECURE) ? 1 : 0,
1443		   (key_info & WPA_KEY_INFO_MIC) ? 1 : 0,
1444		   (key_info & WPA_KEY_INFO_ACK) ? 1 : 0,
1445		   (key_info & WPA_KEY_INFO_INSTALL) ? 1 : 0,
1446		   pairwise, (unsigned long) kde_len, keyidx, encr);
1447
1448	key_data_len = kde_len;
1449
1450	if ((version == WPA_KEY_INFO_TYPE_HMAC_SHA1_AES ||
1451	     sm->wpa_key_mgmt == WPA_KEY_MGMT_OSEN ||
1452	     wpa_key_mgmt_suite_b(sm->wpa_key_mgmt) ||
1453	     version == WPA_KEY_INFO_TYPE_AES_128_CMAC) && encr) {
1454		pad_len = key_data_len % 8;
1455		if (pad_len)
1456			pad_len = 8 - pad_len;
1457		key_data_len += pad_len + 8;
1458	}
1459
1460	len += key_data_len;
1461
1462	hdr = os_zalloc(len);
1463	if (hdr == NULL)
1464		return;
1465	hdr->version = wpa_auth->conf.eapol_version;
1466	hdr->type = IEEE802_1X_TYPE_EAPOL_KEY;
1467	hdr->length = host_to_be16(len  - sizeof(*hdr));
1468	key = (struct wpa_eapol_key *) (hdr + 1);
1469	key192 = (struct wpa_eapol_key_192 *) (hdr + 1);
1470	key_data = ((u8 *) (hdr + 1)) + keyhdrlen;
1471
1472	key->type = sm->wpa == WPA_VERSION_WPA2 ?
1473		EAPOL_KEY_TYPE_RSN : EAPOL_KEY_TYPE_WPA;
1474	key_info |= version;
1475	if (encr && sm->wpa == WPA_VERSION_WPA2)
1476		key_info |= WPA_KEY_INFO_ENCR_KEY_DATA;
1477	if (sm->wpa != WPA_VERSION_WPA2)
1478		key_info |= keyidx << WPA_KEY_INFO_KEY_INDEX_SHIFT;
1479	WPA_PUT_BE16(key->key_info, key_info);
1480
1481	alg = pairwise ? sm->pairwise : wpa_auth->conf.wpa_group;
1482	WPA_PUT_BE16(key->key_length, wpa_cipher_key_len(alg));
1483	if (key_info & WPA_KEY_INFO_SMK_MESSAGE)
1484		WPA_PUT_BE16(key->key_length, 0);
1485
1486	/* FIX: STSL: what to use as key_replay_counter? */
1487	for (i = RSNA_MAX_EAPOL_RETRIES - 1; i > 0; i--) {
1488		sm->key_replay[i].valid = sm->key_replay[i - 1].valid;
1489		os_memcpy(sm->key_replay[i].counter,
1490			  sm->key_replay[i - 1].counter,
1491			  WPA_REPLAY_COUNTER_LEN);
1492	}
1493	inc_byte_array(sm->key_replay[0].counter, WPA_REPLAY_COUNTER_LEN);
1494	os_memcpy(key->replay_counter, sm->key_replay[0].counter,
1495		  WPA_REPLAY_COUNTER_LEN);
1496	wpa_hexdump(MSG_DEBUG, "WPA: Replay Counter",
1497		    key->replay_counter, WPA_REPLAY_COUNTER_LEN);
1498	sm->key_replay[0].valid = TRUE;
1499
1500	if (nonce)
1501		os_memcpy(key->key_nonce, nonce, WPA_NONCE_LEN);
1502
1503	if (key_rsc)
1504		os_memcpy(key->key_rsc, key_rsc, WPA_KEY_RSC_LEN);
1505
1506	if (kde && !encr) {
1507		os_memcpy(key_data, kde, kde_len);
1508		if (mic_len == 24)
1509			WPA_PUT_BE16(key192->key_data_length, kde_len);
1510		else
1511			WPA_PUT_BE16(key->key_data_length, kde_len);
1512	} else if (encr && kde) {
1513		buf = os_zalloc(key_data_len);
1514		if (buf == NULL) {
1515			os_free(hdr);
1516			return;
1517		}
1518		pos = buf;
1519		os_memcpy(pos, kde, kde_len);
1520		pos += kde_len;
1521
1522		if (pad_len)
1523			*pos++ = 0xdd;
1524
1525		wpa_hexdump_key(MSG_DEBUG, "Plaintext EAPOL-Key Key Data",
1526				buf, key_data_len);
1527		if (version == WPA_KEY_INFO_TYPE_HMAC_SHA1_AES ||
1528		    sm->wpa_key_mgmt == WPA_KEY_MGMT_OSEN ||
1529		    wpa_key_mgmt_suite_b(sm->wpa_key_mgmt) ||
1530		    version == WPA_KEY_INFO_TYPE_AES_128_CMAC) {
1531			if (aes_wrap(sm->PTK.kek, sm->PTK.kek_len,
1532				     (key_data_len - 8) / 8, buf, key_data)) {
1533				os_free(hdr);
1534				os_free(buf);
1535				return;
1536			}
1537			if (mic_len == 24)
1538				WPA_PUT_BE16(key192->key_data_length,
1539					     key_data_len);
1540			else
1541				WPA_PUT_BE16(key->key_data_length,
1542					     key_data_len);
1543		} else if (sm->PTK.kek_len == 16) {
1544			u8 ek[32];
1545			os_memcpy(key->key_iv,
1546				  sm->group->Counter + WPA_NONCE_LEN - 16, 16);
1547			inc_byte_array(sm->group->Counter, WPA_NONCE_LEN);
1548			os_memcpy(ek, key->key_iv, 16);
1549			os_memcpy(ek + 16, sm->PTK.kek, sm->PTK.kek_len);
1550			os_memcpy(key_data, buf, key_data_len);
1551			rc4_skip(ek, 32, 256, key_data, key_data_len);
1552			if (mic_len == 24)
1553				WPA_PUT_BE16(key192->key_data_length,
1554					     key_data_len);
1555			else
1556				WPA_PUT_BE16(key->key_data_length,
1557					     key_data_len);
1558		} else {
1559			os_free(hdr);
1560			os_free(buf);
1561			return;
1562		}
1563		os_free(buf);
1564	}
1565
1566	if (key_info & WPA_KEY_INFO_MIC) {
1567		u8 *key_mic;
1568
1569		if (!sm->PTK_valid) {
1570			wpa_auth_logger(wpa_auth, sm->addr, LOGGER_DEBUG,
1571					"PTK not valid when sending EAPOL-Key "
1572					"frame");
1573			os_free(hdr);
1574			return;
1575		}
1576
1577		key_mic = key192->key_mic; /* same offset for key and key192 */
1578		wpa_eapol_key_mic(sm->PTK.kck, sm->PTK.kck_len,
1579				  sm->wpa_key_mgmt, version,
1580				  (u8 *) hdr, len, key_mic);
1581#ifdef CONFIG_TESTING_OPTIONS
1582		if (!pairwise &&
1583		    wpa_auth->conf.corrupt_gtk_rekey_mic_probability > 0.0 &&
1584		    drand48() <
1585		    wpa_auth->conf.corrupt_gtk_rekey_mic_probability) {
1586			wpa_auth_logger(wpa_auth, sm->addr, LOGGER_INFO,
1587					"Corrupting group EAPOL-Key Key MIC");
1588			key_mic[0]++;
1589		}
1590#endif /* CONFIG_TESTING_OPTIONS */
1591	}
1592
1593	wpa_auth_set_eapol(sm->wpa_auth, sm->addr, WPA_EAPOL_inc_EapolFramesTx,
1594			   1);
1595	wpa_auth_send_eapol(wpa_auth, sm->addr, (u8 *) hdr, len,
1596			    sm->pairwise_set);
1597	os_free(hdr);
1598}
1599
1600
1601static void wpa_send_eapol(struct wpa_authenticator *wpa_auth,
1602			   struct wpa_state_machine *sm, int key_info,
1603			   const u8 *key_rsc, const u8 *nonce,
1604			   const u8 *kde, size_t kde_len,
1605			   int keyidx, int encr)
1606{
1607	int timeout_ms;
1608	int pairwise = key_info & WPA_KEY_INFO_KEY_TYPE;
1609	int ctr;
1610
1611	if (sm == NULL)
1612		return;
1613
1614	__wpa_send_eapol(wpa_auth, sm, key_info, key_rsc, nonce, kde, kde_len,
1615			 keyidx, encr, 0);
1616
1617	ctr = pairwise ? sm->TimeoutCtr : sm->GTimeoutCtr;
1618	if (ctr == 1 && wpa_auth->conf.tx_status)
1619		timeout_ms = pairwise ? eapol_key_timeout_first :
1620			eapol_key_timeout_first_group;
1621	else
1622		timeout_ms = eapol_key_timeout_subseq;
1623	if (pairwise && ctr == 1 && !(key_info & WPA_KEY_INFO_MIC))
1624		sm->pending_1_of_4_timeout = 1;
1625	wpa_printf(MSG_DEBUG, "WPA: Use EAPOL-Key timeout of %u ms (retry "
1626		   "counter %d)", timeout_ms, ctr);
1627	eloop_register_timeout(timeout_ms / 1000, (timeout_ms % 1000) * 1000,
1628			       wpa_send_eapol_timeout, wpa_auth, sm);
1629}
1630
1631
1632static int wpa_verify_key_mic(int akmp, struct wpa_ptk *PTK, u8 *data,
1633			      size_t data_len)
1634{
1635	struct ieee802_1x_hdr *hdr;
1636	struct wpa_eapol_key *key;
1637	struct wpa_eapol_key_192 *key192;
1638	u16 key_info;
1639	int ret = 0;
1640	u8 mic[WPA_EAPOL_KEY_MIC_MAX_LEN];
1641	size_t mic_len = wpa_mic_len(akmp);
1642
1643	if (data_len < sizeof(*hdr) + sizeof(*key))
1644		return -1;
1645
1646	hdr = (struct ieee802_1x_hdr *) data;
1647	key = (struct wpa_eapol_key *) (hdr + 1);
1648	key192 = (struct wpa_eapol_key_192 *) (hdr + 1);
1649	key_info = WPA_GET_BE16(key->key_info);
1650	os_memcpy(mic, key192->key_mic, mic_len);
1651	os_memset(key192->key_mic, 0, mic_len);
1652	if (wpa_eapol_key_mic(PTK->kck, PTK->kck_len, akmp,
1653			      key_info & WPA_KEY_INFO_TYPE_MASK,
1654			      data, data_len, key192->key_mic) ||
1655	    os_memcmp_const(mic, key192->key_mic, mic_len) != 0)
1656		ret = -1;
1657	os_memcpy(key192->key_mic, mic, mic_len);
1658	return ret;
1659}
1660
1661
1662void wpa_remove_ptk(struct wpa_state_machine *sm)
1663{
1664	sm->PTK_valid = FALSE;
1665	os_memset(&sm->PTK, 0, sizeof(sm->PTK));
1666	wpa_auth_set_key(sm->wpa_auth, 0, WPA_ALG_NONE, sm->addr, 0, NULL, 0);
1667	sm->pairwise_set = FALSE;
1668	eloop_cancel_timeout(wpa_rekey_ptk, sm->wpa_auth, sm);
1669}
1670
1671
1672int wpa_auth_sm_event(struct wpa_state_machine *sm, wpa_event event)
1673{
1674	int remove_ptk = 1;
1675
1676	if (sm == NULL)
1677		return -1;
1678
1679	wpa_auth_vlogger(sm->wpa_auth, sm->addr, LOGGER_DEBUG,
1680			 "event %d notification", event);
1681
1682	switch (event) {
1683	case WPA_AUTH:
1684#ifdef CONFIG_MESH
1685		/* PTKs are derived through AMPE */
1686		if (wpa_auth_start_ampe(sm->wpa_auth, sm->addr)) {
1687			/* not mesh */
1688			break;
1689		}
1690		return 0;
1691#endif /* CONFIG_MESH */
1692	case WPA_ASSOC:
1693		break;
1694	case WPA_DEAUTH:
1695	case WPA_DISASSOC:
1696		sm->DeauthenticationRequest = TRUE;
1697		break;
1698	case WPA_REAUTH:
1699	case WPA_REAUTH_EAPOL:
1700		if (!sm->started) {
1701			/*
1702			 * When using WPS, we may end up here if the STA
1703			 * manages to re-associate without the previous STA
1704			 * entry getting removed. Consequently, we need to make
1705			 * sure that the WPA state machines gets initialized
1706			 * properly at this point.
1707			 */
1708			wpa_printf(MSG_DEBUG, "WPA state machine had not been "
1709				   "started - initialize now");
1710			sm->started = 1;
1711			sm->Init = TRUE;
1712			if (wpa_sm_step(sm) == 1)
1713				return 1; /* should not really happen */
1714			sm->Init = FALSE;
1715			sm->AuthenticationRequest = TRUE;
1716			break;
1717		}
1718		if (sm->GUpdateStationKeys) {
1719			/*
1720			 * Reauthentication cancels the pending group key
1721			 * update for this STA.
1722			 */
1723			sm->group->GKeyDoneStations--;
1724			sm->GUpdateStationKeys = FALSE;
1725			sm->PtkGroupInit = TRUE;
1726		}
1727		sm->ReAuthenticationRequest = TRUE;
1728		break;
1729	case WPA_ASSOC_FT:
1730#ifdef CONFIG_IEEE80211R
1731		wpa_printf(MSG_DEBUG, "FT: Retry PTK configuration "
1732			   "after association");
1733		wpa_ft_install_ptk(sm);
1734
1735		/* Using FT protocol, not WPA auth state machine */
1736		sm->ft_completed = 1;
1737		return 0;
1738#else /* CONFIG_IEEE80211R */
1739		break;
1740#endif /* CONFIG_IEEE80211R */
1741	}
1742
1743#ifdef CONFIG_IEEE80211R
1744	sm->ft_completed = 0;
1745#endif /* CONFIG_IEEE80211R */
1746
1747#ifdef CONFIG_IEEE80211W
1748	if (sm->mgmt_frame_prot && event == WPA_AUTH)
1749		remove_ptk = 0;
1750#endif /* CONFIG_IEEE80211W */
1751
1752	if (remove_ptk) {
1753		sm->PTK_valid = FALSE;
1754		os_memset(&sm->PTK, 0, sizeof(sm->PTK));
1755
1756		if (event != WPA_REAUTH_EAPOL)
1757			wpa_remove_ptk(sm);
1758	}
1759
1760	return wpa_sm_step(sm);
1761}
1762
1763
1764SM_STATE(WPA_PTK, INITIALIZE)
1765{
1766	SM_ENTRY_MA(WPA_PTK, INITIALIZE, wpa_ptk);
1767	if (sm->Init) {
1768		/* Init flag is not cleared here, so avoid busy
1769		 * loop by claiming nothing changed. */
1770		sm->changed = FALSE;
1771	}
1772
1773	sm->keycount = 0;
1774	if (sm->GUpdateStationKeys)
1775		sm->group->GKeyDoneStations--;
1776	sm->GUpdateStationKeys = FALSE;
1777	if (sm->wpa == WPA_VERSION_WPA)
1778		sm->PInitAKeys = FALSE;
1779	if (1 /* Unicast cipher supported AND (ESS OR ((IBSS or WDS) and
1780	       * Local AA > Remote AA)) */) {
1781		sm->Pair = TRUE;
1782	}
1783	wpa_auth_set_eapol(sm->wpa_auth, sm->addr, WPA_EAPOL_portEnabled, 0);
1784	wpa_remove_ptk(sm);
1785	wpa_auth_set_eapol(sm->wpa_auth, sm->addr, WPA_EAPOL_portValid, 0);
1786	sm->TimeoutCtr = 0;
1787	if (wpa_key_mgmt_wpa_psk(sm->wpa_key_mgmt)) {
1788		wpa_auth_set_eapol(sm->wpa_auth, sm->addr,
1789				   WPA_EAPOL_authorized, 0);
1790	}
1791}
1792
1793
1794SM_STATE(WPA_PTK, DISCONNECT)
1795{
1796	SM_ENTRY_MA(WPA_PTK, DISCONNECT, wpa_ptk);
1797	sm->Disconnect = FALSE;
1798	wpa_sta_disconnect(sm->wpa_auth, sm->addr);
1799}
1800
1801
1802SM_STATE(WPA_PTK, DISCONNECTED)
1803{
1804	SM_ENTRY_MA(WPA_PTK, DISCONNECTED, wpa_ptk);
1805	sm->DeauthenticationRequest = FALSE;
1806}
1807
1808
1809SM_STATE(WPA_PTK, AUTHENTICATION)
1810{
1811	SM_ENTRY_MA(WPA_PTK, AUTHENTICATION, wpa_ptk);
1812	os_memset(&sm->PTK, 0, sizeof(sm->PTK));
1813	sm->PTK_valid = FALSE;
1814	wpa_auth_set_eapol(sm->wpa_auth, sm->addr, WPA_EAPOL_portControl_Auto,
1815			   1);
1816	wpa_auth_set_eapol(sm->wpa_auth, sm->addr, WPA_EAPOL_portEnabled, 1);
1817	sm->AuthenticationRequest = FALSE;
1818}
1819
1820
1821static void wpa_group_ensure_init(struct wpa_authenticator *wpa_auth,
1822				  struct wpa_group *group)
1823{
1824	if (group->first_sta_seen)
1825		return;
1826	/*
1827	 * System has run bit further than at the time hostapd was started
1828	 * potentially very early during boot up. This provides better chances
1829	 * of collecting more randomness on embedded systems. Re-initialize the
1830	 * GMK and Counter here to improve their strength if there was not
1831	 * enough entropy available immediately after system startup.
1832	 */
1833	wpa_printf(MSG_DEBUG, "WPA: Re-initialize GMK/Counter on first "
1834		   "station");
1835	if (random_pool_ready() != 1) {
1836		wpa_printf(MSG_INFO, "WPA: Not enough entropy in random pool "
1837			   "to proceed - reject first 4-way handshake");
1838		group->reject_4way_hs_for_entropy = TRUE;
1839	} else {
1840		group->first_sta_seen = TRUE;
1841		group->reject_4way_hs_for_entropy = FALSE;
1842	}
1843
1844	wpa_group_init_gmk_and_counter(wpa_auth, group);
1845	wpa_gtk_update(wpa_auth, group);
1846	wpa_group_config_group_keys(wpa_auth, group);
1847}
1848
1849
1850SM_STATE(WPA_PTK, AUTHENTICATION2)
1851{
1852	SM_ENTRY_MA(WPA_PTK, AUTHENTICATION2, wpa_ptk);
1853
1854	wpa_group_ensure_init(sm->wpa_auth, sm->group);
1855	sm->ReAuthenticationRequest = FALSE;
1856
1857	/*
1858	 * Definition of ANonce selection in IEEE Std 802.11i-2004 is somewhat
1859	 * ambiguous. The Authenticator state machine uses a counter that is
1860	 * incremented by one for each 4-way handshake. However, the security
1861	 * analysis of 4-way handshake points out that unpredictable nonces
1862	 * help in preventing precomputation attacks. Instead of the state
1863	 * machine definition, use an unpredictable nonce value here to provide
1864	 * stronger protection against potential precomputation attacks.
1865	 */
1866	if (random_get_bytes(sm->ANonce, WPA_NONCE_LEN)) {
1867		wpa_printf(MSG_ERROR, "WPA: Failed to get random data for "
1868			   "ANonce.");
1869		sm->Disconnect = TRUE;
1870		return;
1871	}
1872	wpa_hexdump(MSG_DEBUG, "WPA: Assign ANonce", sm->ANonce,
1873		    WPA_NONCE_LEN);
1874	/* IEEE 802.11i does not clear TimeoutCtr here, but this is more
1875	 * logical place than INITIALIZE since AUTHENTICATION2 can be
1876	 * re-entered on ReAuthenticationRequest without going through
1877	 * INITIALIZE. */
1878	sm->TimeoutCtr = 0;
1879}
1880
1881
1882SM_STATE(WPA_PTK, INITPMK)
1883{
1884	u8 msk[2 * PMK_LEN];
1885	size_t len = 2 * PMK_LEN;
1886
1887	SM_ENTRY_MA(WPA_PTK, INITPMK, wpa_ptk);
1888#ifdef CONFIG_IEEE80211R
1889	sm->xxkey_len = 0;
1890#endif /* CONFIG_IEEE80211R */
1891	if (sm->pmksa) {
1892		wpa_printf(MSG_DEBUG, "WPA: PMK from PMKSA cache");
1893		os_memcpy(sm->PMK, sm->pmksa->pmk, PMK_LEN);
1894	} else if (wpa_auth_get_msk(sm->wpa_auth, sm->addr, msk, &len) == 0) {
1895		wpa_printf(MSG_DEBUG, "WPA: PMK from EAPOL state machine "
1896			   "(len=%lu)", (unsigned long) len);
1897		os_memcpy(sm->PMK, msk, PMK_LEN);
1898#ifdef CONFIG_IEEE80211R
1899		if (len >= 2 * PMK_LEN) {
1900			os_memcpy(sm->xxkey, msk + PMK_LEN, PMK_LEN);
1901			sm->xxkey_len = PMK_LEN;
1902		}
1903#endif /* CONFIG_IEEE80211R */
1904	} else {
1905		wpa_printf(MSG_DEBUG, "WPA: Could not get PMK, get_msk: %p",
1906			   sm->wpa_auth->cb.get_msk);
1907		sm->Disconnect = TRUE;
1908		return;
1909	}
1910	os_memset(msk, 0, sizeof(msk));
1911
1912	sm->req_replay_counter_used = 0;
1913	/* IEEE 802.11i does not set keyRun to FALSE, but not doing this
1914	 * will break reauthentication since EAPOL state machines may not be
1915	 * get into AUTHENTICATING state that clears keyRun before WPA state
1916	 * machine enters AUTHENTICATION2 state and goes immediately to INITPMK
1917	 * state and takes PMK from the previously used AAA Key. This will
1918	 * eventually fail in 4-Way Handshake because Supplicant uses PMK
1919	 * derived from the new AAA Key. Setting keyRun = FALSE here seems to
1920	 * be good workaround for this issue. */
1921	wpa_auth_set_eapol(sm->wpa_auth, sm->addr, WPA_EAPOL_keyRun, 0);
1922}
1923
1924
1925SM_STATE(WPA_PTK, INITPSK)
1926{
1927	const u8 *psk;
1928	SM_ENTRY_MA(WPA_PTK, INITPSK, wpa_ptk);
1929	psk = wpa_auth_get_psk(sm->wpa_auth, sm->addr, sm->p2p_dev_addr, NULL);
1930	if (psk) {
1931		os_memcpy(sm->PMK, psk, PMK_LEN);
1932#ifdef CONFIG_IEEE80211R
1933		os_memcpy(sm->xxkey, psk, PMK_LEN);
1934		sm->xxkey_len = PMK_LEN;
1935#endif /* CONFIG_IEEE80211R */
1936	}
1937	sm->req_replay_counter_used = 0;
1938}
1939
1940
1941SM_STATE(WPA_PTK, PTKSTART)
1942{
1943	u8 buf[2 + RSN_SELECTOR_LEN + PMKID_LEN], *pmkid = NULL;
1944	size_t pmkid_len = 0;
1945
1946	SM_ENTRY_MA(WPA_PTK, PTKSTART, wpa_ptk);
1947	sm->PTKRequest = FALSE;
1948	sm->TimeoutEvt = FALSE;
1949	sm->alt_snonce_valid = FALSE;
1950
1951	sm->TimeoutCtr++;
1952	if (sm->TimeoutCtr > (int) dot11RSNAConfigPairwiseUpdateCount) {
1953		/* No point in sending the EAPOL-Key - we will disconnect
1954		 * immediately following this. */
1955		return;
1956	}
1957
1958	wpa_auth_logger(sm->wpa_auth, sm->addr, LOGGER_DEBUG,
1959			"sending 1/4 msg of 4-Way Handshake");
1960	/*
1961	 * TODO: Could add PMKID even with WPA2-PSK, but only if there is only
1962	 * one possible PSK for this STA.
1963	 */
1964	if (sm->wpa == WPA_VERSION_WPA2 &&
1965	    wpa_key_mgmt_wpa_ieee8021x(sm->wpa_key_mgmt) &&
1966	    sm->wpa_key_mgmt != WPA_KEY_MGMT_OSEN) {
1967		pmkid = buf;
1968		pmkid_len = 2 + RSN_SELECTOR_LEN + PMKID_LEN;
1969		pmkid[0] = WLAN_EID_VENDOR_SPECIFIC;
1970		pmkid[1] = RSN_SELECTOR_LEN + PMKID_LEN;
1971		RSN_SELECTOR_PUT(&pmkid[2], RSN_KEY_DATA_PMKID);
1972		if (sm->pmksa) {
1973			os_memcpy(&pmkid[2 + RSN_SELECTOR_LEN],
1974				  sm->pmksa->pmkid, PMKID_LEN);
1975		} else if (wpa_key_mgmt_suite_b(sm->wpa_key_mgmt)) {
1976			/* No KCK available to derive PMKID */
1977			pmkid = NULL;
1978		} else {
1979			/*
1980			 * Calculate PMKID since no PMKSA cache entry was
1981			 * available with pre-calculated PMKID.
1982			 */
1983			rsn_pmkid(sm->PMK, PMK_LEN, sm->wpa_auth->addr,
1984				  sm->addr, &pmkid[2 + RSN_SELECTOR_LEN],
1985				  wpa_key_mgmt_sha256(sm->wpa_key_mgmt));
1986		}
1987	}
1988	wpa_send_eapol(sm->wpa_auth, sm,
1989		       WPA_KEY_INFO_ACK | WPA_KEY_INFO_KEY_TYPE, NULL,
1990		       sm->ANonce, pmkid, pmkid_len, 0, 0);
1991}
1992
1993
1994static int wpa_derive_ptk(struct wpa_state_machine *sm, const u8 *snonce,
1995			  const u8 *pmk, struct wpa_ptk *ptk)
1996{
1997#ifdef CONFIG_IEEE80211R
1998	if (wpa_key_mgmt_ft(sm->wpa_key_mgmt))
1999		return wpa_auth_derive_ptk_ft(sm, pmk, ptk);
2000#endif /* CONFIG_IEEE80211R */
2001
2002	return wpa_pmk_to_ptk(pmk, PMK_LEN, "Pairwise key expansion",
2003			      sm->wpa_auth->addr, sm->addr, sm->ANonce, snonce,
2004			      ptk, sm->wpa_key_mgmt, sm->pairwise);
2005}
2006
2007
2008SM_STATE(WPA_PTK, PTKCALCNEGOTIATING)
2009{
2010	struct wpa_ptk PTK;
2011	int ok = 0, psk_found = 0;
2012	const u8 *pmk = NULL;
2013
2014	SM_ENTRY_MA(WPA_PTK, PTKCALCNEGOTIATING, wpa_ptk);
2015	sm->EAPOLKeyReceived = FALSE;
2016	sm->update_snonce = FALSE;
2017
2018	/* WPA with IEEE 802.1X: use the derived PMK from EAP
2019	 * WPA-PSK: iterate through possible PSKs and select the one matching
2020	 * the packet */
2021	for (;;) {
2022		if (wpa_key_mgmt_wpa_psk(sm->wpa_key_mgmt)) {
2023			pmk = wpa_auth_get_psk(sm->wpa_auth, sm->addr,
2024					       sm->p2p_dev_addr, pmk);
2025			if (pmk == NULL)
2026				break;
2027			psk_found = 1;
2028		} else
2029			pmk = sm->PMK;
2030
2031		wpa_derive_ptk(sm, sm->SNonce, pmk, &PTK);
2032
2033		if (wpa_verify_key_mic(sm->wpa_key_mgmt, &PTK,
2034				       sm->last_rx_eapol_key,
2035				       sm->last_rx_eapol_key_len) == 0) {
2036			ok = 1;
2037			break;
2038		}
2039
2040		if (!wpa_key_mgmt_wpa_psk(sm->wpa_key_mgmt))
2041			break;
2042	}
2043
2044	if (!ok) {
2045		wpa_auth_logger(sm->wpa_auth, sm->addr, LOGGER_DEBUG,
2046				"invalid MIC in msg 2/4 of 4-Way Handshake");
2047		if (psk_found)
2048			wpa_auth_psk_failure_report(sm->wpa_auth, sm->addr);
2049		return;
2050	}
2051
2052#ifdef CONFIG_IEEE80211R
2053	if (sm->wpa == WPA_VERSION_WPA2 && wpa_key_mgmt_ft(sm->wpa_key_mgmt)) {
2054		/*
2055		 * Verify that PMKR1Name from EAPOL-Key message 2/4 matches
2056		 * with the value we derived.
2057		 */
2058		if (os_memcmp_const(sm->sup_pmk_r1_name, sm->pmk_r1_name,
2059				    WPA_PMK_NAME_LEN) != 0) {
2060			wpa_auth_logger(sm->wpa_auth, sm->addr, LOGGER_DEBUG,
2061					"PMKR1Name mismatch in FT 4-way "
2062					"handshake");
2063			wpa_hexdump(MSG_DEBUG, "FT: PMKR1Name from "
2064				    "Supplicant",
2065				    sm->sup_pmk_r1_name, WPA_PMK_NAME_LEN);
2066			wpa_hexdump(MSG_DEBUG, "FT: Derived PMKR1Name",
2067				    sm->pmk_r1_name, WPA_PMK_NAME_LEN);
2068			return;
2069		}
2070	}
2071#endif /* CONFIG_IEEE80211R */
2072
2073	sm->pending_1_of_4_timeout = 0;
2074	eloop_cancel_timeout(wpa_send_eapol_timeout, sm->wpa_auth, sm);
2075
2076	if (wpa_key_mgmt_wpa_psk(sm->wpa_key_mgmt)) {
2077		/* PSK may have changed from the previous choice, so update
2078		 * state machine data based on whatever PSK was selected here.
2079		 */
2080		os_memcpy(sm->PMK, pmk, PMK_LEN);
2081	}
2082
2083	sm->MICVerified = TRUE;
2084
2085	os_memcpy(&sm->PTK, &PTK, sizeof(PTK));
2086	sm->PTK_valid = TRUE;
2087}
2088
2089
2090SM_STATE(WPA_PTK, PTKCALCNEGOTIATING2)
2091{
2092	SM_ENTRY_MA(WPA_PTK, PTKCALCNEGOTIATING2, wpa_ptk);
2093	sm->TimeoutCtr = 0;
2094}
2095
2096
2097#ifdef CONFIG_IEEE80211W
2098
2099static int ieee80211w_kde_len(struct wpa_state_machine *sm)
2100{
2101	if (sm->mgmt_frame_prot) {
2102		size_t len;
2103		len = wpa_cipher_key_len(sm->wpa_auth->conf.group_mgmt_cipher);
2104		return 2 + RSN_SELECTOR_LEN + WPA_IGTK_KDE_PREFIX_LEN + len;
2105	}
2106
2107	return 0;
2108}
2109
2110
2111static u8 * ieee80211w_kde_add(struct wpa_state_machine *sm, u8 *pos)
2112{
2113	struct wpa_igtk_kde igtk;
2114	struct wpa_group *gsm = sm->group;
2115	u8 rsc[WPA_KEY_RSC_LEN];
2116	size_t len = wpa_cipher_key_len(sm->wpa_auth->conf.group_mgmt_cipher);
2117
2118	if (!sm->mgmt_frame_prot)
2119		return pos;
2120
2121	igtk.keyid[0] = gsm->GN_igtk;
2122	igtk.keyid[1] = 0;
2123	if (gsm->wpa_group_state != WPA_GROUP_SETKEYSDONE ||
2124	    wpa_auth_get_seqnum(sm->wpa_auth, NULL, gsm->GN_igtk, rsc) < 0)
2125		os_memset(igtk.pn, 0, sizeof(igtk.pn));
2126	else
2127		os_memcpy(igtk.pn, rsc, sizeof(igtk.pn));
2128	os_memcpy(igtk.igtk, gsm->IGTK[gsm->GN_igtk - 4], len);
2129	if (sm->wpa_auth->conf.disable_gtk) {
2130		/*
2131		 * Provide unique random IGTK to each STA to prevent use of
2132		 * IGTK in the BSS.
2133		 */
2134		if (random_get_bytes(igtk.igtk, len) < 0)
2135			return pos;
2136	}
2137	pos = wpa_add_kde(pos, RSN_KEY_DATA_IGTK,
2138			  (const u8 *) &igtk, WPA_IGTK_KDE_PREFIX_LEN + len,
2139			  NULL, 0);
2140
2141	return pos;
2142}
2143
2144#else /* CONFIG_IEEE80211W */
2145
2146static int ieee80211w_kde_len(struct wpa_state_machine *sm)
2147{
2148	return 0;
2149}
2150
2151
2152static u8 * ieee80211w_kde_add(struct wpa_state_machine *sm, u8 *pos)
2153{
2154	return pos;
2155}
2156
2157#endif /* CONFIG_IEEE80211W */
2158
2159
2160SM_STATE(WPA_PTK, PTKINITNEGOTIATING)
2161{
2162	u8 rsc[WPA_KEY_RSC_LEN], *_rsc, *gtk, *kde, *pos, dummy_gtk[32];
2163	size_t gtk_len, kde_len;
2164	struct wpa_group *gsm = sm->group;
2165	u8 *wpa_ie;
2166	int wpa_ie_len, secure, keyidx, encr = 0;
2167
2168	SM_ENTRY_MA(WPA_PTK, PTKINITNEGOTIATING, wpa_ptk);
2169	sm->TimeoutEvt = FALSE;
2170
2171	sm->TimeoutCtr++;
2172	if (sm->TimeoutCtr > (int) dot11RSNAConfigPairwiseUpdateCount) {
2173		/* No point in sending the EAPOL-Key - we will disconnect
2174		 * immediately following this. */
2175		return;
2176	}
2177
2178	/* Send EAPOL(1, 1, 1, Pair, P, RSC, ANonce, MIC(PTK), RSNIE, [MDIE],
2179	   GTK[GN], IGTK, [FTIE], [TIE * 2])
2180	 */
2181	os_memset(rsc, 0, WPA_KEY_RSC_LEN);
2182	wpa_auth_get_seqnum(sm->wpa_auth, NULL, gsm->GN, rsc);
2183	/* If FT is used, wpa_auth->wpa_ie includes both RSNIE and MDIE */
2184	wpa_ie = sm->wpa_auth->wpa_ie;
2185	wpa_ie_len = sm->wpa_auth->wpa_ie_len;
2186	if (sm->wpa == WPA_VERSION_WPA &&
2187	    (sm->wpa_auth->conf.wpa & WPA_PROTO_RSN) &&
2188	    wpa_ie_len > wpa_ie[1] + 2 && wpa_ie[0] == WLAN_EID_RSN) {
2189		/* WPA-only STA, remove RSN IE and possible MDIE */
2190		wpa_ie = wpa_ie + wpa_ie[1] + 2;
2191		if (wpa_ie[0] == WLAN_EID_MOBILITY_DOMAIN)
2192			wpa_ie = wpa_ie + wpa_ie[1] + 2;
2193		wpa_ie_len = wpa_ie[1] + 2;
2194	}
2195	wpa_auth_logger(sm->wpa_auth, sm->addr, LOGGER_DEBUG,
2196			"sending 3/4 msg of 4-Way Handshake");
2197	if (sm->wpa == WPA_VERSION_WPA2) {
2198		/* WPA2 send GTK in the 4-way handshake */
2199		secure = 1;
2200		gtk = gsm->GTK[gsm->GN - 1];
2201		gtk_len = gsm->GTK_len;
2202		if (sm->wpa_auth->conf.disable_gtk) {
2203			/*
2204			 * Provide unique random GTK to each STA to prevent use
2205			 * of GTK in the BSS.
2206			 */
2207			if (random_get_bytes(dummy_gtk, gtk_len) < 0)
2208				return;
2209			gtk = dummy_gtk;
2210		}
2211		keyidx = gsm->GN;
2212		_rsc = rsc;
2213		encr = 1;
2214	} else {
2215		/* WPA does not include GTK in msg 3/4 */
2216		secure = 0;
2217		gtk = NULL;
2218		gtk_len = 0;
2219		keyidx = 0;
2220		_rsc = NULL;
2221		if (sm->rx_eapol_key_secure) {
2222			/*
2223			 * It looks like Windows 7 supplicant tries to use
2224			 * Secure bit in msg 2/4 after having reported Michael
2225			 * MIC failure and it then rejects the 4-way handshake
2226			 * if msg 3/4 does not set Secure bit. Work around this
2227			 * by setting the Secure bit here even in the case of
2228			 * WPA if the supplicant used it first.
2229			 */
2230			wpa_auth_logger(sm->wpa_auth, sm->addr, LOGGER_DEBUG,
2231					"STA used Secure bit in WPA msg 2/4 - "
2232					"set Secure for 3/4 as workaround");
2233			secure = 1;
2234		}
2235	}
2236
2237	kde_len = wpa_ie_len + ieee80211w_kde_len(sm);
2238	if (gtk)
2239		kde_len += 2 + RSN_SELECTOR_LEN + 2 + gtk_len;
2240#ifdef CONFIG_IEEE80211R
2241	if (wpa_key_mgmt_ft(sm->wpa_key_mgmt)) {
2242		kde_len += 2 + PMKID_LEN; /* PMKR1Name into RSN IE */
2243		kde_len += 300; /* FTIE + 2 * TIE */
2244	}
2245#endif /* CONFIG_IEEE80211R */
2246#ifdef CONFIG_P2P
2247	if (WPA_GET_BE32(sm->ip_addr) > 0)
2248		kde_len += 2 + RSN_SELECTOR_LEN + 3 * 4;
2249#endif /* CONFIG_P2P */
2250	kde = os_malloc(kde_len);
2251	if (kde == NULL)
2252		return;
2253
2254	pos = kde;
2255	os_memcpy(pos, wpa_ie, wpa_ie_len);
2256	pos += wpa_ie_len;
2257#ifdef CONFIG_IEEE80211R
2258	if (wpa_key_mgmt_ft(sm->wpa_key_mgmt)) {
2259		int res = wpa_insert_pmkid(kde, pos - kde, sm->pmk_r1_name);
2260		if (res < 0) {
2261			wpa_printf(MSG_ERROR, "FT: Failed to insert "
2262				   "PMKR1Name into RSN IE in EAPOL-Key data");
2263			os_free(kde);
2264			return;
2265		}
2266		pos += res;
2267	}
2268#endif /* CONFIG_IEEE80211R */
2269	if (gtk) {
2270		u8 hdr[2];
2271		hdr[0] = keyidx & 0x03;
2272		hdr[1] = 0;
2273		pos = wpa_add_kde(pos, RSN_KEY_DATA_GROUPKEY, hdr, 2,
2274				  gtk, gtk_len);
2275	}
2276	pos = ieee80211w_kde_add(sm, pos);
2277
2278#ifdef CONFIG_IEEE80211R
2279	if (wpa_key_mgmt_ft(sm->wpa_key_mgmt)) {
2280		int res;
2281		struct wpa_auth_config *conf;
2282
2283		conf = &sm->wpa_auth->conf;
2284		res = wpa_write_ftie(conf, conf->r0_key_holder,
2285				     conf->r0_key_holder_len,
2286				     NULL, NULL, pos, kde + kde_len - pos,
2287				     NULL, 0);
2288		if (res < 0) {
2289			wpa_printf(MSG_ERROR, "FT: Failed to insert FTIE "
2290				   "into EAPOL-Key Key Data");
2291			os_free(kde);
2292			return;
2293		}
2294		pos += res;
2295
2296		/* TIE[ReassociationDeadline] (TU) */
2297		*pos++ = WLAN_EID_TIMEOUT_INTERVAL;
2298		*pos++ = 5;
2299		*pos++ = WLAN_TIMEOUT_REASSOC_DEADLINE;
2300		WPA_PUT_LE32(pos, conf->reassociation_deadline);
2301		pos += 4;
2302
2303		/* TIE[KeyLifetime] (seconds) */
2304		*pos++ = WLAN_EID_TIMEOUT_INTERVAL;
2305		*pos++ = 5;
2306		*pos++ = WLAN_TIMEOUT_KEY_LIFETIME;
2307		WPA_PUT_LE32(pos, conf->r0_key_lifetime * 60);
2308		pos += 4;
2309	}
2310#endif /* CONFIG_IEEE80211R */
2311#ifdef CONFIG_P2P
2312	if (WPA_GET_BE32(sm->ip_addr) > 0) {
2313		u8 addr[3 * 4];
2314		os_memcpy(addr, sm->ip_addr, 4);
2315		os_memcpy(addr + 4, sm->wpa_auth->conf.ip_addr_mask, 4);
2316		os_memcpy(addr + 8, sm->wpa_auth->conf.ip_addr_go, 4);
2317		pos = wpa_add_kde(pos, WFA_KEY_DATA_IP_ADDR_ALLOC,
2318				  addr, sizeof(addr), NULL, 0);
2319	}
2320#endif /* CONFIG_P2P */
2321
2322	wpa_send_eapol(sm->wpa_auth, sm,
2323		       (secure ? WPA_KEY_INFO_SECURE : 0) | WPA_KEY_INFO_MIC |
2324		       WPA_KEY_INFO_ACK | WPA_KEY_INFO_INSTALL |
2325		       WPA_KEY_INFO_KEY_TYPE,
2326		       _rsc, sm->ANonce, kde, pos - kde, keyidx, encr);
2327	os_free(kde);
2328}
2329
2330
2331SM_STATE(WPA_PTK, PTKINITDONE)
2332{
2333	SM_ENTRY_MA(WPA_PTK, PTKINITDONE, wpa_ptk);
2334	sm->EAPOLKeyReceived = FALSE;
2335	if (sm->Pair) {
2336		enum wpa_alg alg = wpa_cipher_to_alg(sm->pairwise);
2337		int klen = wpa_cipher_key_len(sm->pairwise);
2338		if (wpa_auth_set_key(sm->wpa_auth, 0, alg, sm->addr, 0,
2339				     sm->PTK.tk, klen)) {
2340			wpa_sta_disconnect(sm->wpa_auth, sm->addr);
2341			return;
2342		}
2343		/* FIX: MLME-SetProtection.Request(TA, Tx_Rx) */
2344		sm->pairwise_set = TRUE;
2345
2346		if (sm->wpa_auth->conf.wpa_ptk_rekey) {
2347			eloop_cancel_timeout(wpa_rekey_ptk, sm->wpa_auth, sm);
2348			eloop_register_timeout(sm->wpa_auth->conf.
2349					       wpa_ptk_rekey, 0, wpa_rekey_ptk,
2350					       sm->wpa_auth, sm);
2351		}
2352
2353		if (wpa_key_mgmt_wpa_psk(sm->wpa_key_mgmt)) {
2354			wpa_auth_set_eapol(sm->wpa_auth, sm->addr,
2355					   WPA_EAPOL_authorized, 1);
2356		}
2357	}
2358
2359	if (0 /* IBSS == TRUE */) {
2360		sm->keycount++;
2361		if (sm->keycount == 2) {
2362			wpa_auth_set_eapol(sm->wpa_auth, sm->addr,
2363					   WPA_EAPOL_portValid, 1);
2364		}
2365	} else {
2366		wpa_auth_set_eapol(sm->wpa_auth, sm->addr, WPA_EAPOL_portValid,
2367				   1);
2368	}
2369	wpa_auth_set_eapol(sm->wpa_auth, sm->addr, WPA_EAPOL_keyAvailable, 0);
2370	wpa_auth_set_eapol(sm->wpa_auth, sm->addr, WPA_EAPOL_keyDone, 1);
2371	if (sm->wpa == WPA_VERSION_WPA)
2372		sm->PInitAKeys = TRUE;
2373	else
2374		sm->has_GTK = TRUE;
2375	wpa_auth_vlogger(sm->wpa_auth, sm->addr, LOGGER_INFO,
2376			 "pairwise key handshake completed (%s)",
2377			 sm->wpa == WPA_VERSION_WPA ? "WPA" : "RSN");
2378
2379#ifdef CONFIG_IEEE80211R
2380	wpa_ft_push_pmk_r1(sm->wpa_auth, sm->addr);
2381#endif /* CONFIG_IEEE80211R */
2382}
2383
2384
2385SM_STEP(WPA_PTK)
2386{
2387	struct wpa_authenticator *wpa_auth = sm->wpa_auth;
2388
2389	if (sm->Init)
2390		SM_ENTER(WPA_PTK, INITIALIZE);
2391	else if (sm->Disconnect
2392		 /* || FIX: dot11RSNAConfigSALifetime timeout */) {
2393		wpa_auth_logger(wpa_auth, sm->addr, LOGGER_DEBUG,
2394				"WPA_PTK: sm->Disconnect");
2395		SM_ENTER(WPA_PTK, DISCONNECT);
2396	}
2397	else if (sm->DeauthenticationRequest)
2398		SM_ENTER(WPA_PTK, DISCONNECTED);
2399	else if (sm->AuthenticationRequest)
2400		SM_ENTER(WPA_PTK, AUTHENTICATION);
2401	else if (sm->ReAuthenticationRequest)
2402		SM_ENTER(WPA_PTK, AUTHENTICATION2);
2403	else if (sm->PTKRequest)
2404		SM_ENTER(WPA_PTK, PTKSTART);
2405	else switch (sm->wpa_ptk_state) {
2406	case WPA_PTK_INITIALIZE:
2407		break;
2408	case WPA_PTK_DISCONNECT:
2409		SM_ENTER(WPA_PTK, DISCONNECTED);
2410		break;
2411	case WPA_PTK_DISCONNECTED:
2412		SM_ENTER(WPA_PTK, INITIALIZE);
2413		break;
2414	case WPA_PTK_AUTHENTICATION:
2415		SM_ENTER(WPA_PTK, AUTHENTICATION2);
2416		break;
2417	case WPA_PTK_AUTHENTICATION2:
2418		if (wpa_key_mgmt_wpa_ieee8021x(sm->wpa_key_mgmt) &&
2419		    wpa_auth_get_eapol(sm->wpa_auth, sm->addr,
2420				       WPA_EAPOL_keyRun) > 0)
2421			SM_ENTER(WPA_PTK, INITPMK);
2422		else if (wpa_key_mgmt_wpa_psk(sm->wpa_key_mgmt)
2423			 /* FIX: && 802.1X::keyRun */)
2424			SM_ENTER(WPA_PTK, INITPSK);
2425		break;
2426	case WPA_PTK_INITPMK:
2427		if (wpa_auth_get_eapol(sm->wpa_auth, sm->addr,
2428				       WPA_EAPOL_keyAvailable) > 0)
2429			SM_ENTER(WPA_PTK, PTKSTART);
2430		else {
2431			wpa_auth->dot11RSNA4WayHandshakeFailures++;
2432			wpa_auth_logger(sm->wpa_auth, sm->addr, LOGGER_INFO,
2433					"INITPMK - keyAvailable = false");
2434			SM_ENTER(WPA_PTK, DISCONNECT);
2435		}
2436		break;
2437	case WPA_PTK_INITPSK:
2438		if (wpa_auth_get_psk(sm->wpa_auth, sm->addr, sm->p2p_dev_addr,
2439				     NULL))
2440			SM_ENTER(WPA_PTK, PTKSTART);
2441		else {
2442			wpa_auth_logger(sm->wpa_auth, sm->addr, LOGGER_INFO,
2443					"no PSK configured for the STA");
2444			wpa_auth->dot11RSNA4WayHandshakeFailures++;
2445			SM_ENTER(WPA_PTK, DISCONNECT);
2446		}
2447		break;
2448	case WPA_PTK_PTKSTART:
2449		if (sm->EAPOLKeyReceived && !sm->EAPOLKeyRequest &&
2450		    sm->EAPOLKeyPairwise)
2451			SM_ENTER(WPA_PTK, PTKCALCNEGOTIATING);
2452		else if (sm->TimeoutCtr >
2453			 (int) dot11RSNAConfigPairwiseUpdateCount) {
2454			wpa_auth->dot11RSNA4WayHandshakeFailures++;
2455			wpa_auth_vlogger(sm->wpa_auth, sm->addr, LOGGER_DEBUG,
2456					 "PTKSTART: Retry limit %d reached",
2457					 dot11RSNAConfigPairwiseUpdateCount);
2458			SM_ENTER(WPA_PTK, DISCONNECT);
2459		} else if (sm->TimeoutEvt)
2460			SM_ENTER(WPA_PTK, PTKSTART);
2461		break;
2462	case WPA_PTK_PTKCALCNEGOTIATING:
2463		if (sm->MICVerified)
2464			SM_ENTER(WPA_PTK, PTKCALCNEGOTIATING2);
2465		else if (sm->EAPOLKeyReceived && !sm->EAPOLKeyRequest &&
2466			 sm->EAPOLKeyPairwise)
2467			SM_ENTER(WPA_PTK, PTKCALCNEGOTIATING);
2468		else if (sm->TimeoutEvt)
2469			SM_ENTER(WPA_PTK, PTKSTART);
2470		break;
2471	case WPA_PTK_PTKCALCNEGOTIATING2:
2472		SM_ENTER(WPA_PTK, PTKINITNEGOTIATING);
2473		break;
2474	case WPA_PTK_PTKINITNEGOTIATING:
2475		if (sm->update_snonce)
2476			SM_ENTER(WPA_PTK, PTKCALCNEGOTIATING);
2477		else if (sm->EAPOLKeyReceived && !sm->EAPOLKeyRequest &&
2478			 sm->EAPOLKeyPairwise && sm->MICVerified)
2479			SM_ENTER(WPA_PTK, PTKINITDONE);
2480		else if (sm->TimeoutCtr >
2481			 (int) dot11RSNAConfigPairwiseUpdateCount) {
2482			wpa_auth->dot11RSNA4WayHandshakeFailures++;
2483			wpa_auth_vlogger(sm->wpa_auth, sm->addr, LOGGER_DEBUG,
2484					 "PTKINITNEGOTIATING: Retry limit %d "
2485					 "reached",
2486					 dot11RSNAConfigPairwiseUpdateCount);
2487			SM_ENTER(WPA_PTK, DISCONNECT);
2488		} else if (sm->TimeoutEvt)
2489			SM_ENTER(WPA_PTK, PTKINITNEGOTIATING);
2490		break;
2491	case WPA_PTK_PTKINITDONE:
2492		break;
2493	}
2494}
2495
2496
2497SM_STATE(WPA_PTK_GROUP, IDLE)
2498{
2499	SM_ENTRY_MA(WPA_PTK_GROUP, IDLE, wpa_ptk_group);
2500	if (sm->Init) {
2501		/* Init flag is not cleared here, so avoid busy
2502		 * loop by claiming nothing changed. */
2503		sm->changed = FALSE;
2504	}
2505	sm->GTimeoutCtr = 0;
2506}
2507
2508
2509SM_STATE(WPA_PTK_GROUP, REKEYNEGOTIATING)
2510{
2511	u8 rsc[WPA_KEY_RSC_LEN];
2512	struct wpa_group *gsm = sm->group;
2513	const u8 *kde;
2514	u8 *kde_buf = NULL, *pos, hdr[2];
2515	size_t kde_len;
2516	u8 *gtk, dummy_gtk[32];
2517
2518	SM_ENTRY_MA(WPA_PTK_GROUP, REKEYNEGOTIATING, wpa_ptk_group);
2519
2520	sm->GTimeoutCtr++;
2521	if (sm->GTimeoutCtr > (int) dot11RSNAConfigGroupUpdateCount) {
2522		/* No point in sending the EAPOL-Key - we will disconnect
2523		 * immediately following this. */
2524		return;
2525	}
2526
2527	if (sm->wpa == WPA_VERSION_WPA)
2528		sm->PInitAKeys = FALSE;
2529	sm->TimeoutEvt = FALSE;
2530	/* Send EAPOL(1, 1, 1, !Pair, G, RSC, GNonce, MIC(PTK), GTK[GN]) */
2531	os_memset(rsc, 0, WPA_KEY_RSC_LEN);
2532	if (gsm->wpa_group_state == WPA_GROUP_SETKEYSDONE)
2533		wpa_auth_get_seqnum(sm->wpa_auth, NULL, gsm->GN, rsc);
2534	wpa_auth_logger(sm->wpa_auth, sm->addr, LOGGER_DEBUG,
2535			"sending 1/2 msg of Group Key Handshake");
2536
2537	gtk = gsm->GTK[gsm->GN - 1];
2538	if (sm->wpa_auth->conf.disable_gtk) {
2539		/*
2540		 * Provide unique random GTK to each STA to prevent use
2541		 * of GTK in the BSS.
2542		 */
2543		if (random_get_bytes(dummy_gtk, gsm->GTK_len) < 0)
2544			return;
2545		gtk = dummy_gtk;
2546	}
2547	if (sm->wpa == WPA_VERSION_WPA2) {
2548		kde_len = 2 + RSN_SELECTOR_LEN + 2 + gsm->GTK_len +
2549			ieee80211w_kde_len(sm);
2550		kde_buf = os_malloc(kde_len);
2551		if (kde_buf == NULL)
2552			return;
2553
2554		kde = pos = kde_buf;
2555		hdr[0] = gsm->GN & 0x03;
2556		hdr[1] = 0;
2557		pos = wpa_add_kde(pos, RSN_KEY_DATA_GROUPKEY, hdr, 2,
2558				  gtk, gsm->GTK_len);
2559		pos = ieee80211w_kde_add(sm, pos);
2560		kde_len = pos - kde;
2561	} else {
2562		kde = gtk;
2563		kde_len = gsm->GTK_len;
2564	}
2565
2566	wpa_send_eapol(sm->wpa_auth, sm,
2567		       WPA_KEY_INFO_SECURE | WPA_KEY_INFO_MIC |
2568		       WPA_KEY_INFO_ACK |
2569		       (!sm->Pair ? WPA_KEY_INFO_INSTALL : 0),
2570		       rsc, gsm->GNonce, kde, kde_len, gsm->GN, 1);
2571
2572	os_free(kde_buf);
2573}
2574
2575
2576SM_STATE(WPA_PTK_GROUP, REKEYESTABLISHED)
2577{
2578	SM_ENTRY_MA(WPA_PTK_GROUP, REKEYESTABLISHED, wpa_ptk_group);
2579	sm->EAPOLKeyReceived = FALSE;
2580	if (sm->GUpdateStationKeys)
2581		sm->group->GKeyDoneStations--;
2582	sm->GUpdateStationKeys = FALSE;
2583	sm->GTimeoutCtr = 0;
2584	/* FIX: MLME.SetProtection.Request(TA, Tx_Rx) */
2585	wpa_auth_vlogger(sm->wpa_auth, sm->addr, LOGGER_INFO,
2586			 "group key handshake completed (%s)",
2587			 sm->wpa == WPA_VERSION_WPA ? "WPA" : "RSN");
2588	sm->has_GTK = TRUE;
2589}
2590
2591
2592SM_STATE(WPA_PTK_GROUP, KEYERROR)
2593{
2594	SM_ENTRY_MA(WPA_PTK_GROUP, KEYERROR, wpa_ptk_group);
2595	if (sm->GUpdateStationKeys)
2596		sm->group->GKeyDoneStations--;
2597	sm->GUpdateStationKeys = FALSE;
2598	sm->Disconnect = TRUE;
2599}
2600
2601
2602SM_STEP(WPA_PTK_GROUP)
2603{
2604	if (sm->Init || sm->PtkGroupInit) {
2605		SM_ENTER(WPA_PTK_GROUP, IDLE);
2606		sm->PtkGroupInit = FALSE;
2607	} else switch (sm->wpa_ptk_group_state) {
2608	case WPA_PTK_GROUP_IDLE:
2609		if (sm->GUpdateStationKeys ||
2610		    (sm->wpa == WPA_VERSION_WPA && sm->PInitAKeys))
2611			SM_ENTER(WPA_PTK_GROUP, REKEYNEGOTIATING);
2612		break;
2613	case WPA_PTK_GROUP_REKEYNEGOTIATING:
2614		if (sm->EAPOLKeyReceived && !sm->EAPOLKeyRequest &&
2615		    !sm->EAPOLKeyPairwise && sm->MICVerified)
2616			SM_ENTER(WPA_PTK_GROUP, REKEYESTABLISHED);
2617		else if (sm->GTimeoutCtr >
2618			 (int) dot11RSNAConfigGroupUpdateCount)
2619			SM_ENTER(WPA_PTK_GROUP, KEYERROR);
2620		else if (sm->TimeoutEvt)
2621			SM_ENTER(WPA_PTK_GROUP, REKEYNEGOTIATING);
2622		break;
2623	case WPA_PTK_GROUP_KEYERROR:
2624		SM_ENTER(WPA_PTK_GROUP, IDLE);
2625		break;
2626	case WPA_PTK_GROUP_REKEYESTABLISHED:
2627		SM_ENTER(WPA_PTK_GROUP, IDLE);
2628		break;
2629	}
2630}
2631
2632
2633static int wpa_gtk_update(struct wpa_authenticator *wpa_auth,
2634			  struct wpa_group *group)
2635{
2636	int ret = 0;
2637
2638	os_memcpy(group->GNonce, group->Counter, WPA_NONCE_LEN);
2639	inc_byte_array(group->Counter, WPA_NONCE_LEN);
2640	if (wpa_gmk_to_gtk(group->GMK, "Group key expansion",
2641			   wpa_auth->addr, group->GNonce,
2642			   group->GTK[group->GN - 1], group->GTK_len) < 0)
2643		ret = -1;
2644	wpa_hexdump_key(MSG_DEBUG, "GTK",
2645			group->GTK[group->GN - 1], group->GTK_len);
2646
2647#ifdef CONFIG_IEEE80211W
2648	if (wpa_auth->conf.ieee80211w != NO_MGMT_FRAME_PROTECTION) {
2649		size_t len;
2650		len = wpa_cipher_key_len(wpa_auth->conf.group_mgmt_cipher);
2651		os_memcpy(group->GNonce, group->Counter, WPA_NONCE_LEN);
2652		inc_byte_array(group->Counter, WPA_NONCE_LEN);
2653		if (wpa_gmk_to_gtk(group->GMK, "IGTK key expansion",
2654				   wpa_auth->addr, group->GNonce,
2655				   group->IGTK[group->GN_igtk - 4], len) < 0)
2656			ret = -1;
2657		wpa_hexdump_key(MSG_DEBUG, "IGTK",
2658				group->IGTK[group->GN_igtk - 4], len);
2659	}
2660#endif /* CONFIG_IEEE80211W */
2661
2662	return ret;
2663}
2664
2665
2666static void wpa_group_gtk_init(struct wpa_authenticator *wpa_auth,
2667			       struct wpa_group *group)
2668{
2669	wpa_printf(MSG_DEBUG, "WPA: group state machine entering state "
2670		   "GTK_INIT (VLAN-ID %d)", group->vlan_id);
2671	group->changed = FALSE; /* GInit is not cleared here; avoid loop */
2672	group->wpa_group_state = WPA_GROUP_GTK_INIT;
2673
2674	/* GTK[0..N] = 0 */
2675	os_memset(group->GTK, 0, sizeof(group->GTK));
2676	group->GN = 1;
2677	group->GM = 2;
2678#ifdef CONFIG_IEEE80211W
2679	group->GN_igtk = 4;
2680	group->GM_igtk = 5;
2681#endif /* CONFIG_IEEE80211W */
2682	/* GTK[GN] = CalcGTK() */
2683	wpa_gtk_update(wpa_auth, group);
2684}
2685
2686
2687static int wpa_group_update_sta(struct wpa_state_machine *sm, void *ctx)
2688{
2689	if (ctx != NULL && ctx != sm->group)
2690		return 0;
2691
2692	if (sm->wpa_ptk_state != WPA_PTK_PTKINITDONE) {
2693		wpa_auth_logger(sm->wpa_auth, sm->addr, LOGGER_DEBUG,
2694				"Not in PTKINITDONE; skip Group Key update");
2695		sm->GUpdateStationKeys = FALSE;
2696		return 0;
2697	}
2698	if (sm->GUpdateStationKeys) {
2699		/*
2700		 * This should not really happen, so add a debug log entry.
2701		 * Since we clear the GKeyDoneStations before the loop, the
2702		 * station needs to be counted here anyway.
2703		 */
2704		wpa_auth_logger(sm->wpa_auth, sm->addr, LOGGER_DEBUG,
2705				"GUpdateStationKeys was already set when "
2706				"marking station for GTK rekeying");
2707	}
2708
2709	/* Do not rekey GTK/IGTK when STA is in WNM-Sleep Mode */
2710	if (sm->is_wnmsleep)
2711		return 0;
2712
2713	sm->group->GKeyDoneStations++;
2714	sm->GUpdateStationKeys = TRUE;
2715
2716	wpa_sm_step(sm);
2717	return 0;
2718}
2719
2720
2721#ifdef CONFIG_WNM
2722/* update GTK when exiting WNM-Sleep Mode */
2723void wpa_wnmsleep_rekey_gtk(struct wpa_state_machine *sm)
2724{
2725	if (sm == NULL || sm->is_wnmsleep)
2726		return;
2727
2728	wpa_group_update_sta(sm, NULL);
2729}
2730
2731
2732void wpa_set_wnmsleep(struct wpa_state_machine *sm, int flag)
2733{
2734	if (sm)
2735		sm->is_wnmsleep = !!flag;
2736}
2737
2738
2739int wpa_wnmsleep_gtk_subelem(struct wpa_state_machine *sm, u8 *pos)
2740{
2741	struct wpa_group *gsm = sm->group;
2742	u8 *start = pos;
2743
2744	/*
2745	 * GTK subelement:
2746	 * Sub-elem ID[1] | Length[1] | Key Info[2] | Key Length[1] | RSC[8] |
2747	 * Key[5..32]
2748	 */
2749	*pos++ = WNM_SLEEP_SUBELEM_GTK;
2750	*pos++ = 11 + gsm->GTK_len;
2751	/* Key ID in B0-B1 of Key Info */
2752	WPA_PUT_LE16(pos, gsm->GN & 0x03);
2753	pos += 2;
2754	*pos++ = gsm->GTK_len;
2755	if (wpa_auth_get_seqnum(sm->wpa_auth, NULL, gsm->GN, pos) != 0)
2756		return 0;
2757	pos += 8;
2758	os_memcpy(pos, gsm->GTK[gsm->GN - 1], gsm->GTK_len);
2759	pos += gsm->GTK_len;
2760
2761	wpa_printf(MSG_DEBUG, "WNM: GTK Key ID %u in WNM-Sleep Mode exit",
2762		   gsm->GN);
2763	wpa_hexdump_key(MSG_DEBUG, "WNM: GTK in WNM-Sleep Mode exit",
2764			gsm->GTK[gsm->GN - 1], gsm->GTK_len);
2765
2766	return pos - start;
2767}
2768
2769
2770#ifdef CONFIG_IEEE80211W
2771int wpa_wnmsleep_igtk_subelem(struct wpa_state_machine *sm, u8 *pos)
2772{
2773	struct wpa_group *gsm = sm->group;
2774	u8 *start = pos;
2775	size_t len = wpa_cipher_key_len(sm->wpa_auth->conf.group_mgmt_cipher);
2776
2777	/*
2778	 * IGTK subelement:
2779	 * Sub-elem ID[1] | Length[1] | KeyID[2] | PN[6] | Key[16]
2780	 */
2781	*pos++ = WNM_SLEEP_SUBELEM_IGTK;
2782	*pos++ = 2 + 6 + len;
2783	WPA_PUT_LE16(pos, gsm->GN_igtk);
2784	pos += 2;
2785	if (wpa_auth_get_seqnum(sm->wpa_auth, NULL, gsm->GN_igtk, pos) != 0)
2786		return 0;
2787	pos += 6;
2788
2789	os_memcpy(pos, gsm->IGTK[gsm->GN_igtk - 4], len);
2790	pos += len;
2791
2792	wpa_printf(MSG_DEBUG, "WNM: IGTK Key ID %u in WNM-Sleep Mode exit",
2793		   gsm->GN_igtk);
2794	wpa_hexdump_key(MSG_DEBUG, "WNM: IGTK in WNM-Sleep Mode exit",
2795			gsm->IGTK[gsm->GN_igtk - 4], len);
2796
2797	return pos - start;
2798}
2799#endif /* CONFIG_IEEE80211W */
2800#endif /* CONFIG_WNM */
2801
2802
2803static void wpa_group_setkeys(struct wpa_authenticator *wpa_auth,
2804			      struct wpa_group *group)
2805{
2806	int tmp;
2807
2808	wpa_printf(MSG_DEBUG, "WPA: group state machine entering state "
2809		   "SETKEYS (VLAN-ID %d)", group->vlan_id);
2810	group->changed = TRUE;
2811	group->wpa_group_state = WPA_GROUP_SETKEYS;
2812	group->GTKReKey = FALSE;
2813	tmp = group->GM;
2814	group->GM = group->GN;
2815	group->GN = tmp;
2816#ifdef CONFIG_IEEE80211W
2817	tmp = group->GM_igtk;
2818	group->GM_igtk = group->GN_igtk;
2819	group->GN_igtk = tmp;
2820#endif /* CONFIG_IEEE80211W */
2821	/* "GKeyDoneStations = GNoStations" is done in more robust way by
2822	 * counting the STAs that are marked with GUpdateStationKeys instead of
2823	 * including all STAs that could be in not-yet-completed state. */
2824	wpa_gtk_update(wpa_auth, group);
2825
2826	if (group->GKeyDoneStations) {
2827		wpa_printf(MSG_DEBUG, "wpa_group_setkeys: Unexpected "
2828			   "GKeyDoneStations=%d when starting new GTK rekey",
2829			   group->GKeyDoneStations);
2830		group->GKeyDoneStations = 0;
2831	}
2832	wpa_auth_for_each_sta(wpa_auth, wpa_group_update_sta, group);
2833	wpa_printf(MSG_DEBUG, "wpa_group_setkeys: GKeyDoneStations=%d",
2834		   group->GKeyDoneStations);
2835}
2836
2837
2838static int wpa_group_config_group_keys(struct wpa_authenticator *wpa_auth,
2839				       struct wpa_group *group)
2840{
2841	int ret = 0;
2842
2843	if (wpa_auth_set_key(wpa_auth, group->vlan_id,
2844			     wpa_cipher_to_alg(wpa_auth->conf.wpa_group),
2845			     broadcast_ether_addr, group->GN,
2846			     group->GTK[group->GN - 1], group->GTK_len) < 0)
2847		ret = -1;
2848
2849#ifdef CONFIG_IEEE80211W
2850	if (wpa_auth->conf.ieee80211w != NO_MGMT_FRAME_PROTECTION) {
2851		enum wpa_alg alg;
2852		size_t len;
2853
2854		alg = wpa_cipher_to_alg(wpa_auth->conf.group_mgmt_cipher);
2855		len = wpa_cipher_key_len(wpa_auth->conf.group_mgmt_cipher);
2856
2857		if (ret == 0 &&
2858		    wpa_auth_set_key(wpa_auth, group->vlan_id, alg,
2859				     broadcast_ether_addr, group->GN_igtk,
2860				     group->IGTK[group->GN_igtk - 4], len) < 0)
2861			ret = -1;
2862	}
2863#endif /* CONFIG_IEEE80211W */
2864
2865	return ret;
2866}
2867
2868
2869static int wpa_group_disconnect_cb(struct wpa_state_machine *sm, void *ctx)
2870{
2871	if (sm->group == ctx) {
2872		wpa_printf(MSG_DEBUG, "WPA: Mark STA " MACSTR
2873			   " for discconnection due to fatal failure",
2874			   MAC2STR(sm->addr));
2875		sm->Disconnect = TRUE;
2876	}
2877
2878	return 0;
2879}
2880
2881
2882static void wpa_group_fatal_failure(struct wpa_authenticator *wpa_auth,
2883				    struct wpa_group *group)
2884{
2885	wpa_printf(MSG_DEBUG, "WPA: group state machine entering state FATAL_FAILURE");
2886	group->changed = TRUE;
2887	group->wpa_group_state = WPA_GROUP_FATAL_FAILURE;
2888	wpa_auth_for_each_sta(wpa_auth, wpa_group_disconnect_cb, group);
2889}
2890
2891
2892static int wpa_group_setkeysdone(struct wpa_authenticator *wpa_auth,
2893				 struct wpa_group *group)
2894{
2895	wpa_printf(MSG_DEBUG, "WPA: group state machine entering state "
2896		   "SETKEYSDONE (VLAN-ID %d)", group->vlan_id);
2897	group->changed = TRUE;
2898	group->wpa_group_state = WPA_GROUP_SETKEYSDONE;
2899
2900	if (wpa_group_config_group_keys(wpa_auth, group) < 0) {
2901		wpa_group_fatal_failure(wpa_auth, group);
2902		return -1;
2903	}
2904
2905	return 0;
2906}
2907
2908
2909static void wpa_group_sm_step(struct wpa_authenticator *wpa_auth,
2910			      struct wpa_group *group)
2911{
2912	if (group->GInit) {
2913		wpa_group_gtk_init(wpa_auth, group);
2914	} else if (group->wpa_group_state == WPA_GROUP_FATAL_FAILURE) {
2915		/* Do not allow group operations */
2916	} else if (group->wpa_group_state == WPA_GROUP_GTK_INIT &&
2917		   group->GTKAuthenticator) {
2918		wpa_group_setkeysdone(wpa_auth, group);
2919	} else if (group->wpa_group_state == WPA_GROUP_SETKEYSDONE &&
2920		   group->GTKReKey) {
2921		wpa_group_setkeys(wpa_auth, group);
2922	} else if (group->wpa_group_state == WPA_GROUP_SETKEYS) {
2923		if (group->GKeyDoneStations == 0)
2924			wpa_group_setkeysdone(wpa_auth, group);
2925		else if (group->GTKReKey)
2926			wpa_group_setkeys(wpa_auth, group);
2927	}
2928}
2929
2930
2931static int wpa_sm_step(struct wpa_state_machine *sm)
2932{
2933	if (sm == NULL)
2934		return 0;
2935
2936	if (sm->in_step_loop) {
2937		/* This should not happen, but if it does, make sure we do not
2938		 * end up freeing the state machine too early by exiting the
2939		 * recursive call. */
2940		wpa_printf(MSG_ERROR, "WPA: wpa_sm_step() called recursively");
2941		return 0;
2942	}
2943
2944	sm->in_step_loop = 1;
2945	do {
2946		if (sm->pending_deinit)
2947			break;
2948
2949		sm->changed = FALSE;
2950		sm->wpa_auth->group->changed = FALSE;
2951
2952		SM_STEP_RUN(WPA_PTK);
2953		if (sm->pending_deinit)
2954			break;
2955		SM_STEP_RUN(WPA_PTK_GROUP);
2956		if (sm->pending_deinit)
2957			break;
2958		wpa_group_sm_step(sm->wpa_auth, sm->group);
2959	} while (sm->changed || sm->wpa_auth->group->changed);
2960	sm->in_step_loop = 0;
2961
2962	if (sm->pending_deinit) {
2963		wpa_printf(MSG_DEBUG, "WPA: Completing pending STA state "
2964			   "machine deinit for " MACSTR, MAC2STR(sm->addr));
2965		wpa_free_sta_sm(sm);
2966		return 1;
2967	}
2968	return 0;
2969}
2970
2971
2972static void wpa_sm_call_step(void *eloop_ctx, void *timeout_ctx)
2973{
2974	struct wpa_state_machine *sm = eloop_ctx;
2975	wpa_sm_step(sm);
2976}
2977
2978
2979void wpa_auth_sm_notify(struct wpa_state_machine *sm)
2980{
2981	if (sm == NULL)
2982		return;
2983	eloop_register_timeout(0, 0, wpa_sm_call_step, sm, NULL);
2984}
2985
2986
2987void wpa_gtk_rekey(struct wpa_authenticator *wpa_auth)
2988{
2989	int tmp, i;
2990	struct wpa_group *group;
2991
2992	if (wpa_auth == NULL)
2993		return;
2994
2995	group = wpa_auth->group;
2996
2997	for (i = 0; i < 2; i++) {
2998		tmp = group->GM;
2999		group->GM = group->GN;
3000		group->GN = tmp;
3001#ifdef CONFIG_IEEE80211W
3002		tmp = group->GM_igtk;
3003		group->GM_igtk = group->GN_igtk;
3004		group->GN_igtk = tmp;
3005#endif /* CONFIG_IEEE80211W */
3006		wpa_gtk_update(wpa_auth, group);
3007		wpa_group_config_group_keys(wpa_auth, group);
3008	}
3009}
3010
3011
3012static const char * wpa_bool_txt(int val)
3013{
3014	return val ? "TRUE" : "FALSE";
3015}
3016
3017
3018#define RSN_SUITE "%02x-%02x-%02x-%d"
3019#define RSN_SUITE_ARG(s) \
3020((s) >> 24) & 0xff, ((s) >> 16) & 0xff, ((s) >> 8) & 0xff, (s) & 0xff
3021
3022int wpa_get_mib(struct wpa_authenticator *wpa_auth, char *buf, size_t buflen)
3023{
3024	int len = 0, ret;
3025	char pmkid_txt[PMKID_LEN * 2 + 1];
3026#ifdef CONFIG_RSN_PREAUTH
3027	const int preauth = 1;
3028#else /* CONFIG_RSN_PREAUTH */
3029	const int preauth = 0;
3030#endif /* CONFIG_RSN_PREAUTH */
3031
3032	if (wpa_auth == NULL)
3033		return len;
3034
3035	ret = os_snprintf(buf + len, buflen - len,
3036			  "dot11RSNAOptionImplemented=TRUE\n"
3037			  "dot11RSNAPreauthenticationImplemented=%s\n"
3038			  "dot11RSNAEnabled=%s\n"
3039			  "dot11RSNAPreauthenticationEnabled=%s\n",
3040			  wpa_bool_txt(preauth),
3041			  wpa_bool_txt(wpa_auth->conf.wpa & WPA_PROTO_RSN),
3042			  wpa_bool_txt(wpa_auth->conf.rsn_preauth));
3043	if (os_snprintf_error(buflen - len, ret))
3044		return len;
3045	len += ret;
3046
3047	wpa_snprintf_hex(pmkid_txt, sizeof(pmkid_txt),
3048			 wpa_auth->dot11RSNAPMKIDUsed, PMKID_LEN);
3049
3050	ret = os_snprintf(
3051		buf + len, buflen - len,
3052		"dot11RSNAConfigVersion=%u\n"
3053		"dot11RSNAConfigPairwiseKeysSupported=9999\n"
3054		/* FIX: dot11RSNAConfigGroupCipher */
3055		/* FIX: dot11RSNAConfigGroupRekeyMethod */
3056		/* FIX: dot11RSNAConfigGroupRekeyTime */
3057		/* FIX: dot11RSNAConfigGroupRekeyPackets */
3058		"dot11RSNAConfigGroupRekeyStrict=%u\n"
3059		"dot11RSNAConfigGroupUpdateCount=%u\n"
3060		"dot11RSNAConfigPairwiseUpdateCount=%u\n"
3061		"dot11RSNAConfigGroupCipherSize=%u\n"
3062		"dot11RSNAConfigPMKLifetime=%u\n"
3063		"dot11RSNAConfigPMKReauthThreshold=%u\n"
3064		"dot11RSNAConfigNumberOfPTKSAReplayCounters=0\n"
3065		"dot11RSNAConfigSATimeout=%u\n"
3066		"dot11RSNAAuthenticationSuiteSelected=" RSN_SUITE "\n"
3067		"dot11RSNAPairwiseCipherSelected=" RSN_SUITE "\n"
3068		"dot11RSNAGroupCipherSelected=" RSN_SUITE "\n"
3069		"dot11RSNAPMKIDUsed=%s\n"
3070		"dot11RSNAAuthenticationSuiteRequested=" RSN_SUITE "\n"
3071		"dot11RSNAPairwiseCipherRequested=" RSN_SUITE "\n"
3072		"dot11RSNAGroupCipherRequested=" RSN_SUITE "\n"
3073		"dot11RSNATKIPCounterMeasuresInvoked=%u\n"
3074		"dot11RSNA4WayHandshakeFailures=%u\n"
3075		"dot11RSNAConfigNumberOfGTKSAReplayCounters=0\n",
3076		RSN_VERSION,
3077		!!wpa_auth->conf.wpa_strict_rekey,
3078		dot11RSNAConfigGroupUpdateCount,
3079		dot11RSNAConfigPairwiseUpdateCount,
3080		wpa_cipher_key_len(wpa_auth->conf.wpa_group) * 8,
3081		dot11RSNAConfigPMKLifetime,
3082		dot11RSNAConfigPMKReauthThreshold,
3083		dot11RSNAConfigSATimeout,
3084		RSN_SUITE_ARG(wpa_auth->dot11RSNAAuthenticationSuiteSelected),
3085		RSN_SUITE_ARG(wpa_auth->dot11RSNAPairwiseCipherSelected),
3086		RSN_SUITE_ARG(wpa_auth->dot11RSNAGroupCipherSelected),
3087		pmkid_txt,
3088		RSN_SUITE_ARG(wpa_auth->dot11RSNAAuthenticationSuiteRequested),
3089		RSN_SUITE_ARG(wpa_auth->dot11RSNAPairwiseCipherRequested),
3090		RSN_SUITE_ARG(wpa_auth->dot11RSNAGroupCipherRequested),
3091		wpa_auth->dot11RSNATKIPCounterMeasuresInvoked,
3092		wpa_auth->dot11RSNA4WayHandshakeFailures);
3093	if (os_snprintf_error(buflen - len, ret))
3094		return len;
3095	len += ret;
3096
3097	/* TODO: dot11RSNAConfigPairwiseCiphersTable */
3098	/* TODO: dot11RSNAConfigAuthenticationSuitesTable */
3099
3100	/* Private MIB */
3101	ret = os_snprintf(buf + len, buflen - len, "hostapdWPAGroupState=%d\n",
3102			  wpa_auth->group->wpa_group_state);
3103	if (os_snprintf_error(buflen - len, ret))
3104		return len;
3105	len += ret;
3106
3107	return len;
3108}
3109
3110
3111int wpa_get_mib_sta(struct wpa_state_machine *sm, char *buf, size_t buflen)
3112{
3113	int len = 0, ret;
3114	u32 pairwise = 0;
3115
3116	if (sm == NULL)
3117		return 0;
3118
3119	/* TODO: FF-FF-FF-FF-FF-FF entry for broadcast/multicast stats */
3120
3121	/* dot11RSNAStatsEntry */
3122
3123	pairwise = wpa_cipher_to_suite(sm->wpa == WPA_VERSION_WPA2 ?
3124				       WPA_PROTO_RSN : WPA_PROTO_WPA,
3125				       sm->pairwise);
3126	if (pairwise == 0)
3127		return 0;
3128
3129	ret = os_snprintf(
3130		buf + len, buflen - len,
3131		/* TODO: dot11RSNAStatsIndex */
3132		"dot11RSNAStatsSTAAddress=" MACSTR "\n"
3133		"dot11RSNAStatsVersion=1\n"
3134		"dot11RSNAStatsSelectedPairwiseCipher=" RSN_SUITE "\n"
3135		/* TODO: dot11RSNAStatsTKIPICVErrors */
3136		"dot11RSNAStatsTKIPLocalMICFailures=%u\n"
3137		"dot11RSNAStatsTKIPRemoteMICFailures=%u\n"
3138		/* TODO: dot11RSNAStatsCCMPReplays */
3139		/* TODO: dot11RSNAStatsCCMPDecryptErrors */
3140		/* TODO: dot11RSNAStatsTKIPReplays */,
3141		MAC2STR(sm->addr),
3142		RSN_SUITE_ARG(pairwise),
3143		sm->dot11RSNAStatsTKIPLocalMICFailures,
3144		sm->dot11RSNAStatsTKIPRemoteMICFailures);
3145	if (os_snprintf_error(buflen - len, ret))
3146		return len;
3147	len += ret;
3148
3149	/* Private MIB */
3150	ret = os_snprintf(buf + len, buflen - len,
3151			  "hostapdWPAPTKState=%d\n"
3152			  "hostapdWPAPTKGroupState=%d\n",
3153			  sm->wpa_ptk_state,
3154			  sm->wpa_ptk_group_state);
3155	if (os_snprintf_error(buflen - len, ret))
3156		return len;
3157	len += ret;
3158
3159	return len;
3160}
3161
3162
3163void wpa_auth_countermeasures_start(struct wpa_authenticator *wpa_auth)
3164{
3165	if (wpa_auth)
3166		wpa_auth->dot11RSNATKIPCounterMeasuresInvoked++;
3167}
3168
3169
3170int wpa_auth_pairwise_set(struct wpa_state_machine *sm)
3171{
3172	return sm && sm->pairwise_set;
3173}
3174
3175
3176int wpa_auth_get_pairwise(struct wpa_state_machine *sm)
3177{
3178	return sm->pairwise;
3179}
3180
3181
3182int wpa_auth_sta_key_mgmt(struct wpa_state_machine *sm)
3183{
3184	if (sm == NULL)
3185		return -1;
3186	return sm->wpa_key_mgmt;
3187}
3188
3189
3190int wpa_auth_sta_wpa_version(struct wpa_state_machine *sm)
3191{
3192	if (sm == NULL)
3193		return 0;
3194	return sm->wpa;
3195}
3196
3197
3198int wpa_auth_sta_clear_pmksa(struct wpa_state_machine *sm,
3199			     struct rsn_pmksa_cache_entry *entry)
3200{
3201	if (sm == NULL || sm->pmksa != entry)
3202		return -1;
3203	sm->pmksa = NULL;
3204	return 0;
3205}
3206
3207
3208struct rsn_pmksa_cache_entry *
3209wpa_auth_sta_get_pmksa(struct wpa_state_machine *sm)
3210{
3211	return sm ? sm->pmksa : NULL;
3212}
3213
3214
3215void wpa_auth_sta_local_mic_failure_report(struct wpa_state_machine *sm)
3216{
3217	if (sm)
3218		sm->dot11RSNAStatsTKIPLocalMICFailures++;
3219}
3220
3221
3222const u8 * wpa_auth_get_wpa_ie(struct wpa_authenticator *wpa_auth, size_t *len)
3223{
3224	if (wpa_auth == NULL)
3225		return NULL;
3226	*len = wpa_auth->wpa_ie_len;
3227	return wpa_auth->wpa_ie;
3228}
3229
3230
3231int wpa_auth_pmksa_add(struct wpa_state_machine *sm, const u8 *pmk,
3232		       int session_timeout, struct eapol_state_machine *eapol)
3233{
3234	if (sm == NULL || sm->wpa != WPA_VERSION_WPA2 ||
3235	    sm->wpa_auth->conf.disable_pmksa_caching)
3236		return -1;
3237
3238	if (pmksa_cache_auth_add(sm->wpa_auth->pmksa, pmk, PMK_LEN,
3239				 sm->PTK.kck, sm->PTK.kck_len,
3240				 sm->wpa_auth->addr, sm->addr, session_timeout,
3241				 eapol, sm->wpa_key_mgmt))
3242		return 0;
3243
3244	return -1;
3245}
3246
3247
3248int wpa_auth_pmksa_add_preauth(struct wpa_authenticator *wpa_auth,
3249			       const u8 *pmk, size_t len, const u8 *sta_addr,
3250			       int session_timeout,
3251			       struct eapol_state_machine *eapol)
3252{
3253	if (wpa_auth == NULL)
3254		return -1;
3255
3256	if (pmksa_cache_auth_add(wpa_auth->pmksa, pmk, len,
3257				 NULL, 0,
3258				 wpa_auth->addr,
3259				 sta_addr, session_timeout, eapol,
3260				 WPA_KEY_MGMT_IEEE8021X))
3261		return 0;
3262
3263	return -1;
3264}
3265
3266
3267int wpa_auth_pmksa_add_sae(struct wpa_authenticator *wpa_auth, const u8 *addr,
3268			   const u8 *pmk)
3269{
3270	if (wpa_auth->conf.disable_pmksa_caching)
3271		return -1;
3272
3273	if (pmksa_cache_auth_add(wpa_auth->pmksa, pmk, PMK_LEN,
3274				 NULL, 0,
3275				 wpa_auth->addr, addr, 0, NULL,
3276				 WPA_KEY_MGMT_SAE))
3277		return 0;
3278
3279	return -1;
3280}
3281
3282
3283void wpa_auth_pmksa_remove(struct wpa_authenticator *wpa_auth,
3284			   const u8 *sta_addr)
3285{
3286	struct rsn_pmksa_cache_entry *pmksa;
3287
3288	if (wpa_auth == NULL || wpa_auth->pmksa == NULL)
3289		return;
3290	pmksa = pmksa_cache_auth_get(wpa_auth->pmksa, sta_addr, NULL);
3291	if (pmksa) {
3292		wpa_printf(MSG_DEBUG, "WPA: Remove PMKSA cache entry for "
3293			   MACSTR " based on request", MAC2STR(sta_addr));
3294		pmksa_cache_free_entry(wpa_auth->pmksa, pmksa);
3295	}
3296}
3297
3298
3299/*
3300 * Remove and free the group from wpa_authenticator. This is triggered by a
3301 * callback to make sure nobody is currently iterating the group list while it
3302 * gets modified.
3303 */
3304static void wpa_group_free(struct wpa_authenticator *wpa_auth,
3305			   struct wpa_group *group)
3306{
3307	struct wpa_group *prev = wpa_auth->group;
3308
3309	wpa_printf(MSG_DEBUG, "WPA: Remove group state machine for VLAN-ID %d",
3310		   group->vlan_id);
3311
3312	while (prev) {
3313		if (prev->next == group) {
3314			/* This never frees the special first group as needed */
3315			prev->next = group->next;
3316			os_free(group);
3317			break;
3318		}
3319		prev = prev->next;
3320	}
3321
3322}
3323
3324
3325/* Increase the reference counter for group */
3326static void wpa_group_get(struct wpa_authenticator *wpa_auth,
3327			  struct wpa_group *group)
3328{
3329	/* Skip the special first group */
3330	if (wpa_auth->group == group)
3331		return;
3332
3333	group->references++;
3334}
3335
3336
3337/* Decrease the reference counter and maybe free the group */
3338static void wpa_group_put(struct wpa_authenticator *wpa_auth,
3339			  struct wpa_group *group)
3340{
3341	/* Skip the special first group */
3342	if (wpa_auth->group == group)
3343		return;
3344
3345	group->references--;
3346	if (group->references)
3347		return;
3348	wpa_group_free(wpa_auth, group);
3349}
3350
3351
3352/*
3353 * Add a group that has its references counter set to zero. Caller needs to
3354 * call wpa_group_get() on the return value to mark the entry in use.
3355 */
3356static struct wpa_group *
3357wpa_auth_add_group(struct wpa_authenticator *wpa_auth, int vlan_id)
3358{
3359	struct wpa_group *group;
3360
3361	if (wpa_auth == NULL || wpa_auth->group == NULL)
3362		return NULL;
3363
3364	wpa_printf(MSG_DEBUG, "WPA: Add group state machine for VLAN-ID %d",
3365		   vlan_id);
3366	group = wpa_group_init(wpa_auth, vlan_id, 0);
3367	if (group == NULL)
3368		return NULL;
3369
3370	group->next = wpa_auth->group->next;
3371	wpa_auth->group->next = group;
3372
3373	return group;
3374}
3375
3376
3377int wpa_auth_sta_set_vlan(struct wpa_state_machine *sm, int vlan_id)
3378{
3379	struct wpa_group *group;
3380
3381	if (sm == NULL || sm->wpa_auth == NULL)
3382		return 0;
3383
3384	group = sm->wpa_auth->group;
3385	while (group) {
3386		if (group->vlan_id == vlan_id)
3387			break;
3388		group = group->next;
3389	}
3390
3391	if (group == NULL) {
3392		group = wpa_auth_add_group(sm->wpa_auth, vlan_id);
3393		if (group == NULL)
3394			return -1;
3395	}
3396
3397	if (sm->group == group)
3398		return 0;
3399
3400	if (group->wpa_group_state == WPA_GROUP_FATAL_FAILURE)
3401		return -1;
3402
3403	wpa_printf(MSG_DEBUG, "WPA: Moving STA " MACSTR " to use group state "
3404		   "machine for VLAN ID %d", MAC2STR(sm->addr), vlan_id);
3405
3406	wpa_group_get(sm->wpa_auth, group);
3407	wpa_group_put(sm->wpa_auth, sm->group);
3408	sm->group = group;
3409
3410	return 0;
3411}
3412
3413
3414void wpa_auth_eapol_key_tx_status(struct wpa_authenticator *wpa_auth,
3415				  struct wpa_state_machine *sm, int ack)
3416{
3417	if (wpa_auth == NULL || sm == NULL)
3418		return;
3419	wpa_printf(MSG_DEBUG, "WPA: EAPOL-Key TX status for STA " MACSTR
3420		   " ack=%d", MAC2STR(sm->addr), ack);
3421	if (sm->pending_1_of_4_timeout && ack) {
3422		/*
3423		 * Some deployed supplicant implementations update their SNonce
3424		 * for each EAPOL-Key 2/4 message even within the same 4-way
3425		 * handshake and then fail to use the first SNonce when
3426		 * deriving the PTK. This results in unsuccessful 4-way
3427		 * handshake whenever the relatively short initial timeout is
3428		 * reached and EAPOL-Key 1/4 is retransmitted. Try to work
3429		 * around this by increasing the timeout now that we know that
3430		 * the station has received the frame.
3431		 */
3432		int timeout_ms = eapol_key_timeout_subseq;
3433		wpa_printf(MSG_DEBUG, "WPA: Increase initial EAPOL-Key 1/4 "
3434			   "timeout by %u ms because of acknowledged frame",
3435			   timeout_ms);
3436		eloop_cancel_timeout(wpa_send_eapol_timeout, wpa_auth, sm);
3437		eloop_register_timeout(timeout_ms / 1000,
3438				       (timeout_ms % 1000) * 1000,
3439				       wpa_send_eapol_timeout, wpa_auth, sm);
3440	}
3441}
3442
3443
3444int wpa_auth_uses_sae(struct wpa_state_machine *sm)
3445{
3446	if (sm == NULL)
3447		return 0;
3448	return wpa_key_mgmt_sae(sm->wpa_key_mgmt);
3449}
3450
3451
3452int wpa_auth_uses_ft_sae(struct wpa_state_machine *sm)
3453{
3454	if (sm == NULL)
3455		return 0;
3456	return sm->wpa_key_mgmt == WPA_KEY_MGMT_FT_SAE;
3457}
3458
3459
3460#ifdef CONFIG_P2P
3461int wpa_auth_get_ip_addr(struct wpa_state_machine *sm, u8 *addr)
3462{
3463	if (sm == NULL || WPA_GET_BE32(sm->ip_addr) == 0)
3464		return -1;
3465	os_memcpy(addr, sm->ip_addr, 4);
3466	return 0;
3467}
3468#endif /* CONFIG_P2P */
3469
3470
3471int wpa_auth_radius_das_disconnect_pmksa(struct wpa_authenticator *wpa_auth,
3472					 struct radius_das_attrs *attr)
3473{
3474	return pmksa_cache_auth_radius_das_disconnect(wpa_auth->pmksa, attr);
3475}
3476
3477
3478void wpa_auth_reconfig_group_keys(struct wpa_authenticator *wpa_auth)
3479{
3480	struct wpa_group *group;
3481
3482	if (!wpa_auth)
3483		return;
3484	for (group = wpa_auth->group; group; group = group->next)
3485		wpa_group_config_group_keys(wpa_auth, group);
3486}
3487