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      1 /*
      2  * Wi-Fi Protected Setup - Registrar
      3  * Copyright (c) 2008-2013, Jouni Malinen <j (at) 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/base64.h"
     13 #include "utils/eloop.h"
     14 #include "utils/uuid.h"
     15 #include "utils/list.h"
     16 #include "crypto/crypto.h"
     17 #include "crypto/sha256.h"
     18 #include "crypto/random.h"
     19 #include "common/ieee802_11_defs.h"
     20 #include "wps_i.h"
     21 #include "wps_dev_attr.h"
     22 #include "wps_upnp.h"
     23 #include "wps_upnp_i.h"
     24 
     25 #ifndef CONFIG_WPS_STRICT
     26 #define WPS_WORKAROUNDS
     27 #endif /* CONFIG_WPS_STRICT */
     28 
     29 #ifdef CONFIG_WPS_NFC
     30 
     31 struct wps_nfc_pw_token {
     32 	struct dl_list list;
     33 	u8 pubkey_hash[WPS_OOB_PUBKEY_HASH_LEN];
     34 	unsigned int peer_pk_hash_known:1;
     35 	u16 pw_id;
     36 	u8 dev_pw[WPS_OOB_DEVICE_PASSWORD_LEN * 2 + 1];
     37 	size_t dev_pw_len;
     38 	int pk_hash_provided_oob; /* whether own PK hash was provided OOB */
     39 };
     40 
     41 
     42 static void wps_remove_nfc_pw_token(struct wps_nfc_pw_token *token)
     43 {
     44 	dl_list_del(&token->list);
     45 	bin_clear_free(token, sizeof(*token));
     46 }
     47 
     48 
     49 static void wps_free_nfc_pw_tokens(struct dl_list *tokens, u16 pw_id)
     50 {
     51 	struct wps_nfc_pw_token *token, *prev;
     52 	dl_list_for_each_safe(token, prev, tokens, struct wps_nfc_pw_token,
     53 			      list) {
     54 		if (pw_id == 0 || pw_id == token->pw_id)
     55 			wps_remove_nfc_pw_token(token);
     56 	}
     57 }
     58 
     59 
     60 static struct wps_nfc_pw_token * wps_get_nfc_pw_token(struct dl_list *tokens,
     61 						      u16 pw_id)
     62 {
     63 	struct wps_nfc_pw_token *token;
     64 	dl_list_for_each(token, tokens, struct wps_nfc_pw_token, list) {
     65 		if (pw_id == token->pw_id)
     66 			return token;
     67 	}
     68 	return NULL;
     69 }
     70 
     71 #else /* CONFIG_WPS_NFC */
     72 
     73 #define wps_free_nfc_pw_tokens(t, p) do { } while (0)
     74 
     75 #endif /* CONFIG_WPS_NFC */
     76 
     77 
     78 struct wps_uuid_pin {
     79 	struct dl_list list;
     80 	u8 uuid[WPS_UUID_LEN];
     81 	int wildcard_uuid;
     82 	u8 *pin;
     83 	size_t pin_len;
     84 #define PIN_LOCKED BIT(0)
     85 #define PIN_EXPIRES BIT(1)
     86 	int flags;
     87 	struct os_reltime expiration;
     88 	u8 enrollee_addr[ETH_ALEN];
     89 };
     90 
     91 
     92 static void wps_free_pin(struct wps_uuid_pin *pin)
     93 {
     94 	bin_clear_free(pin->pin, pin->pin_len);
     95 	os_free(pin);
     96 }
     97 
     98 
     99 static void wps_remove_pin(struct wps_uuid_pin *pin)
    100 {
    101 	dl_list_del(&pin->list);
    102 	wps_free_pin(pin);
    103 }
    104 
    105 
    106 static void wps_free_pins(struct dl_list *pins)
    107 {
    108 	struct wps_uuid_pin *pin, *prev;
    109 	dl_list_for_each_safe(pin, prev, pins, struct wps_uuid_pin, list)
    110 		wps_remove_pin(pin);
    111 }
    112 
    113 
    114 struct wps_pbc_session {
    115 	struct wps_pbc_session *next;
    116 	u8 addr[ETH_ALEN];
    117 	u8 uuid_e[WPS_UUID_LEN];
    118 	struct os_reltime timestamp;
    119 };
    120 
    121 
    122 static void wps_free_pbc_sessions(struct wps_pbc_session *pbc)
    123 {
    124 	struct wps_pbc_session *prev;
    125 
    126 	while (pbc) {
    127 		prev = pbc;
    128 		pbc = pbc->next;
    129 		os_free(prev);
    130 	}
    131 }
    132 
    133 
    134 struct wps_registrar_device {
    135 	struct wps_registrar_device *next;
    136 	struct wps_device_data dev;
    137 	u8 uuid[WPS_UUID_LEN];
    138 };
    139 
    140 
    141 struct wps_registrar {
    142 	struct wps_context *wps;
    143 
    144 	int pbc;
    145 	int selected_registrar;
    146 
    147 	int (*new_psk_cb)(void *ctx, const u8 *mac_addr, const u8 *p2p_dev_addr,
    148 			  const u8 *psk, size_t psk_len);
    149 	int (*set_ie_cb)(void *ctx, struct wpabuf *beacon_ie,
    150 			 struct wpabuf *probe_resp_ie);
    151 	void (*pin_needed_cb)(void *ctx, const u8 *uuid_e,
    152 			      const struct wps_device_data *dev);
    153 	void (*reg_success_cb)(void *ctx, const u8 *mac_addr,
    154 			       const u8 *uuid_e, const u8 *dev_pw,
    155 			       size_t dev_pw_len);
    156 	void (*set_sel_reg_cb)(void *ctx, int sel_reg, u16 dev_passwd_id,
    157 			       u16 sel_reg_config_methods);
    158 	void (*enrollee_seen_cb)(void *ctx, const u8 *addr, const u8 *uuid_e,
    159 				 const u8 *pri_dev_type, u16 config_methods,
    160 				 u16 dev_password_id, u8 request_type,
    161 				 const char *dev_name);
    162 	void *cb_ctx;
    163 
    164 	struct dl_list pins;
    165 	struct dl_list nfc_pw_tokens;
    166 	struct wps_pbc_session *pbc_sessions;
    167 
    168 	int skip_cred_build;
    169 	struct wpabuf *extra_cred;
    170 	int disable_auto_conf;
    171 	int sel_reg_union;
    172 	int sel_reg_dev_password_id_override;
    173 	int sel_reg_config_methods_override;
    174 	int static_wep_only;
    175 	int dualband;
    176 	int force_per_enrollee_psk;
    177 
    178 	struct wps_registrar_device *devices;
    179 
    180 	int force_pbc_overlap;
    181 
    182 	u8 authorized_macs[WPS_MAX_AUTHORIZED_MACS][ETH_ALEN];
    183 	u8 authorized_macs_union[WPS_MAX_AUTHORIZED_MACS][ETH_ALEN];
    184 
    185 	u8 p2p_dev_addr[ETH_ALEN];
    186 
    187 	u8 pbc_ignore_uuid[WPS_UUID_LEN];
    188 #ifdef WPS_WORKAROUNDS
    189 	struct os_reltime pbc_ignore_start;
    190 #endif /* WPS_WORKAROUNDS */
    191 };
    192 
    193 
    194 static int wps_set_ie(struct wps_registrar *reg);
    195 static void wps_registrar_pbc_timeout(void *eloop_ctx, void *timeout_ctx);
    196 static void wps_registrar_set_selected_timeout(void *eloop_ctx,
    197 					       void *timeout_ctx);
    198 static void wps_registrar_remove_pin(struct wps_registrar *reg,
    199 				     struct wps_uuid_pin *pin);
    200 
    201 
    202 static void wps_registrar_add_authorized_mac(struct wps_registrar *reg,
    203 					     const u8 *addr)
    204 {
    205 	int i;
    206 	wpa_printf(MSG_DEBUG, "WPS: Add authorized MAC " MACSTR,
    207 		   MAC2STR(addr));
    208 	for (i = 0; i < WPS_MAX_AUTHORIZED_MACS; i++)
    209 		if (os_memcmp(reg->authorized_macs[i], addr, ETH_ALEN) == 0) {
    210 			wpa_printf(MSG_DEBUG, "WPS: Authorized MAC was "
    211 				   "already in the list");
    212 			return; /* already in list */
    213 		}
    214 	for (i = WPS_MAX_AUTHORIZED_MACS - 1; i > 0; i--)
    215 		os_memcpy(reg->authorized_macs[i], reg->authorized_macs[i - 1],
    216 			  ETH_ALEN);
    217 	os_memcpy(reg->authorized_macs[0], addr, ETH_ALEN);
    218 	wpa_hexdump(MSG_DEBUG, "WPS: Authorized MACs",
    219 		    (u8 *) reg->authorized_macs, sizeof(reg->authorized_macs));
    220 }
    221 
    222 
    223 static void wps_registrar_remove_authorized_mac(struct wps_registrar *reg,
    224 						const u8 *addr)
    225 {
    226 	int i;
    227 	wpa_printf(MSG_DEBUG, "WPS: Remove authorized MAC " MACSTR,
    228 		   MAC2STR(addr));
    229 	for (i = 0; i < WPS_MAX_AUTHORIZED_MACS; i++) {
    230 		if (os_memcmp(reg->authorized_macs, addr, ETH_ALEN) == 0)
    231 			break;
    232 	}
    233 	if (i == WPS_MAX_AUTHORIZED_MACS) {
    234 		wpa_printf(MSG_DEBUG, "WPS: Authorized MAC was not in the "
    235 			   "list");
    236 		return; /* not in the list */
    237 	}
    238 	for (; i + 1 < WPS_MAX_AUTHORIZED_MACS; i++)
    239 		os_memcpy(reg->authorized_macs[i], reg->authorized_macs[i + 1],
    240 			  ETH_ALEN);
    241 	os_memset(reg->authorized_macs[WPS_MAX_AUTHORIZED_MACS - 1], 0,
    242 		  ETH_ALEN);
    243 	wpa_hexdump(MSG_DEBUG, "WPS: Authorized MACs",
    244 		    (u8 *) reg->authorized_macs, sizeof(reg->authorized_macs));
    245 }
    246 
    247 
    248 static void wps_free_devices(struct wps_registrar_device *dev)
    249 {
    250 	struct wps_registrar_device *prev;
    251 
    252 	while (dev) {
    253 		prev = dev;
    254 		dev = dev->next;
    255 		wps_device_data_free(&prev->dev);
    256 		os_free(prev);
    257 	}
    258 }
    259 
    260 
    261 static struct wps_registrar_device * wps_device_get(struct wps_registrar *reg,
    262 						    const u8 *addr)
    263 {
    264 	struct wps_registrar_device *dev;
    265 
    266 	for (dev = reg->devices; dev; dev = dev->next) {
    267 		if (os_memcmp(dev->dev.mac_addr, addr, ETH_ALEN) == 0)
    268 			return dev;
    269 	}
    270 	return NULL;
    271 }
    272 
    273 
    274 static void wps_device_clone_data(struct wps_device_data *dst,
    275 				  struct wps_device_data *src)
    276 {
    277 	os_memcpy(dst->mac_addr, src->mac_addr, ETH_ALEN);
    278 	os_memcpy(dst->pri_dev_type, src->pri_dev_type, WPS_DEV_TYPE_LEN);
    279 
    280 #define WPS_STRDUP(n) \
    281 	os_free(dst->n); \
    282 	dst->n = src->n ? os_strdup(src->n) : NULL
    283 
    284 	WPS_STRDUP(device_name);
    285 	WPS_STRDUP(manufacturer);
    286 	WPS_STRDUP(model_name);
    287 	WPS_STRDUP(model_number);
    288 	WPS_STRDUP(serial_number);
    289 #undef WPS_STRDUP
    290 }
    291 
    292 
    293 int wps_device_store(struct wps_registrar *reg,
    294 		     struct wps_device_data *dev, const u8 *uuid)
    295 {
    296 	struct wps_registrar_device *d;
    297 
    298 	d = wps_device_get(reg, dev->mac_addr);
    299 	if (d == NULL) {
    300 		d = os_zalloc(sizeof(*d));
    301 		if (d == NULL)
    302 			return -1;
    303 		d->next = reg->devices;
    304 		reg->devices = d;
    305 	}
    306 
    307 	wps_device_clone_data(&d->dev, dev);
    308 	os_memcpy(d->uuid, uuid, WPS_UUID_LEN);
    309 
    310 	return 0;
    311 }
    312 
    313 
    314 static void wps_registrar_add_pbc_session(struct wps_registrar *reg,
    315 					  const u8 *addr, const u8 *uuid_e)
    316 {
    317 	struct wps_pbc_session *pbc, *prev = NULL;
    318 	struct os_reltime now;
    319 
    320 	os_get_reltime(&now);
    321 
    322 	pbc = reg->pbc_sessions;
    323 	while (pbc) {
    324 		if (os_memcmp(pbc->addr, addr, ETH_ALEN) == 0 &&
    325 		    os_memcmp(pbc->uuid_e, uuid_e, WPS_UUID_LEN) == 0) {
    326 			if (prev)
    327 				prev->next = pbc->next;
    328 			else
    329 				reg->pbc_sessions = pbc->next;
    330 			break;
    331 		}
    332 		prev = pbc;
    333 		pbc = pbc->next;
    334 	}
    335 
    336 	if (!pbc) {
    337 		pbc = os_zalloc(sizeof(*pbc));
    338 		if (pbc == NULL)
    339 			return;
    340 		os_memcpy(pbc->addr, addr, ETH_ALEN);
    341 		if (uuid_e)
    342 			os_memcpy(pbc->uuid_e, uuid_e, WPS_UUID_LEN);
    343 	}
    344 
    345 	pbc->next = reg->pbc_sessions;
    346 	reg->pbc_sessions = pbc;
    347 	pbc->timestamp = now;
    348 
    349 	/* remove entries that have timed out */
    350 	prev = pbc;
    351 	pbc = pbc->next;
    352 
    353 	while (pbc) {
    354 		if (os_reltime_expired(&now, &pbc->timestamp,
    355 				       WPS_PBC_WALK_TIME)) {
    356 			prev->next = NULL;
    357 			wps_free_pbc_sessions(pbc);
    358 			break;
    359 		}
    360 		prev = pbc;
    361 		pbc = pbc->next;
    362 	}
    363 }
    364 
    365 
    366 static void wps_registrar_remove_pbc_session(struct wps_registrar *reg,
    367 					     const u8 *uuid_e,
    368 					     const u8 *p2p_dev_addr)
    369 {
    370 	struct wps_pbc_session *pbc, *prev = NULL, *tmp;
    371 
    372 	pbc = reg->pbc_sessions;
    373 	while (pbc) {
    374 		if (os_memcmp(pbc->uuid_e, uuid_e, WPS_UUID_LEN) == 0 ||
    375 		    (p2p_dev_addr && !is_zero_ether_addr(reg->p2p_dev_addr) &&
    376 		     os_memcmp(reg->p2p_dev_addr, p2p_dev_addr, ETH_ALEN) ==
    377 		     0)) {
    378 			if (prev)
    379 				prev->next = pbc->next;
    380 			else
    381 				reg->pbc_sessions = pbc->next;
    382 			tmp = pbc;
    383 			pbc = pbc->next;
    384 			wpa_printf(MSG_DEBUG, "WPS: Removing PBC session for "
    385 				   "addr=" MACSTR, MAC2STR(tmp->addr));
    386 			wpa_hexdump(MSG_DEBUG, "WPS: Removed UUID-E",
    387 				    tmp->uuid_e, WPS_UUID_LEN);
    388 			os_free(tmp);
    389 			continue;
    390 		}
    391 		prev = pbc;
    392 		pbc = pbc->next;
    393 	}
    394 }
    395 
    396 
    397 int wps_registrar_pbc_overlap(struct wps_registrar *reg,
    398 			      const u8 *addr, const u8 *uuid_e)
    399 {
    400 	int count = 0;
    401 	struct wps_pbc_session *pbc;
    402 	struct wps_pbc_session *first = NULL;
    403 	struct os_reltime now;
    404 
    405 	os_get_reltime(&now);
    406 
    407 	wpa_printf(MSG_DEBUG, "WPS: Checking active PBC sessions for overlap");
    408 
    409 	if (uuid_e) {
    410 		wpa_printf(MSG_DEBUG, "WPS: Add one for the requested UUID");
    411 		wpa_hexdump(MSG_DEBUG, "WPS: Requested UUID",
    412 			    uuid_e, WPS_UUID_LEN);
    413 		count++;
    414 	}
    415 
    416 	for (pbc = reg->pbc_sessions; pbc; pbc = pbc->next) {
    417 		wpa_printf(MSG_DEBUG, "WPS: Consider PBC session with " MACSTR,
    418 			   MAC2STR(pbc->addr));
    419 		wpa_hexdump(MSG_DEBUG, "WPS: UUID-E",
    420 			    pbc->uuid_e, WPS_UUID_LEN);
    421 		if (os_reltime_expired(&now, &pbc->timestamp,
    422 				       WPS_PBC_WALK_TIME)) {
    423 			wpa_printf(MSG_DEBUG, "WPS: PBC walk time has expired");
    424 			break;
    425 		}
    426 		if (first &&
    427 		    os_memcmp(pbc->uuid_e, first->uuid_e, WPS_UUID_LEN) == 0) {
    428 			wpa_printf(MSG_DEBUG, "WPS: Same Enrollee");
    429 			continue; /* same Enrollee */
    430 		}
    431 		if (uuid_e == NULL ||
    432 		    os_memcmp(uuid_e, pbc->uuid_e, WPS_UUID_LEN)) {
    433 			wpa_printf(MSG_DEBUG, "WPS: New Enrollee");
    434 			count++;
    435 		}
    436 		if (first == NULL)
    437 			first = pbc;
    438 	}
    439 
    440 	wpa_printf(MSG_DEBUG, "WPS: %u active PBC session(s) found", count);
    441 
    442 	return count > 1 ? 1 : 0;
    443 }
    444 
    445 
    446 static int wps_build_wps_state(struct wps_context *wps, struct wpabuf *msg)
    447 {
    448 	wpa_printf(MSG_DEBUG, "WPS:  * Wi-Fi Protected Setup State (%d)",
    449 		   wps->wps_state);
    450 	wpabuf_put_be16(msg, ATTR_WPS_STATE);
    451 	wpabuf_put_be16(msg, 1);
    452 	wpabuf_put_u8(msg, wps->wps_state);
    453 	return 0;
    454 }
    455 
    456 
    457 #ifdef CONFIG_WPS_UPNP
    458 static void wps_registrar_free_pending_m2(struct wps_context *wps)
    459 {
    460 	struct upnp_pending_message *p, *p2, *prev = NULL;
    461 	p = wps->upnp_msgs;
    462 	while (p) {
    463 		if (p->type == WPS_M2 || p->type == WPS_M2D) {
    464 			if (prev == NULL)
    465 				wps->upnp_msgs = p->next;
    466 			else
    467 				prev->next = p->next;
    468 			wpa_printf(MSG_DEBUG, "WPS UPnP: Drop pending M2/M2D");
    469 			p2 = p;
    470 			p = p->next;
    471 			wpabuf_free(p2->msg);
    472 			os_free(p2);
    473 			continue;
    474 		}
    475 		prev = p;
    476 		p = p->next;
    477 	}
    478 }
    479 #endif /* CONFIG_WPS_UPNP */
    480 
    481 
    482 static int wps_build_ap_setup_locked(struct wps_context *wps,
    483 				     struct wpabuf *msg)
    484 {
    485 	if (wps->ap_setup_locked && wps->ap_setup_locked != 2) {
    486 		wpa_printf(MSG_DEBUG, "WPS:  * AP Setup Locked");
    487 		wpabuf_put_be16(msg, ATTR_AP_SETUP_LOCKED);
    488 		wpabuf_put_be16(msg, 1);
    489 		wpabuf_put_u8(msg, 1);
    490 	}
    491 	return 0;
    492 }
    493 
    494 
    495 static int wps_build_selected_registrar(struct wps_registrar *reg,
    496 					struct wpabuf *msg)
    497 {
    498 	if (!reg->sel_reg_union)
    499 		return 0;
    500 	wpa_printf(MSG_DEBUG, "WPS:  * Selected Registrar");
    501 	wpabuf_put_be16(msg, ATTR_SELECTED_REGISTRAR);
    502 	wpabuf_put_be16(msg, 1);
    503 	wpabuf_put_u8(msg, 1);
    504 	return 0;
    505 }
    506 
    507 
    508 static int wps_build_sel_reg_dev_password_id(struct wps_registrar *reg,
    509 					     struct wpabuf *msg)
    510 {
    511 	u16 id = reg->pbc ? DEV_PW_PUSHBUTTON : DEV_PW_DEFAULT;
    512 	if (!reg->sel_reg_union)
    513 		return 0;
    514 	if (reg->sel_reg_dev_password_id_override >= 0)
    515 		id = reg->sel_reg_dev_password_id_override;
    516 	wpa_printf(MSG_DEBUG, "WPS:  * Device Password ID (%d)", id);
    517 	wpabuf_put_be16(msg, ATTR_DEV_PASSWORD_ID);
    518 	wpabuf_put_be16(msg, 2);
    519 	wpabuf_put_be16(msg, id);
    520 	return 0;
    521 }
    522 
    523 
    524 static int wps_build_sel_pbc_reg_uuid_e(struct wps_registrar *reg,
    525 					struct wpabuf *msg)
    526 {
    527 	u16 id = reg->pbc ? DEV_PW_PUSHBUTTON : DEV_PW_DEFAULT;
    528 	if (!reg->sel_reg_union)
    529 		return 0;
    530 	if (reg->sel_reg_dev_password_id_override >= 0)
    531 		id = reg->sel_reg_dev_password_id_override;
    532 	if (id != DEV_PW_PUSHBUTTON || !reg->dualband)
    533 		return 0;
    534 	return wps_build_uuid_e(msg, reg->wps->uuid);
    535 }
    536 
    537 
    538 static void wps_set_pushbutton(u16 *methods, u16 conf_methods)
    539 {
    540 	*methods |= WPS_CONFIG_PUSHBUTTON;
    541 	if ((conf_methods & WPS_CONFIG_VIRT_PUSHBUTTON) ==
    542 	    WPS_CONFIG_VIRT_PUSHBUTTON)
    543 		*methods |= WPS_CONFIG_VIRT_PUSHBUTTON;
    544 	if ((conf_methods & WPS_CONFIG_PHY_PUSHBUTTON) ==
    545 	    WPS_CONFIG_PHY_PUSHBUTTON)
    546 		*methods |= WPS_CONFIG_PHY_PUSHBUTTON;
    547 	if ((*methods & WPS_CONFIG_VIRT_PUSHBUTTON) !=
    548 	    WPS_CONFIG_VIRT_PUSHBUTTON &&
    549 	    (*methods & WPS_CONFIG_PHY_PUSHBUTTON) !=
    550 	    WPS_CONFIG_PHY_PUSHBUTTON) {
    551 		/*
    552 		 * Required to include virtual/physical flag, but we were not
    553 		 * configured with push button type, so have to default to one
    554 		 * of them.
    555 		 */
    556 		*methods |= WPS_CONFIG_PHY_PUSHBUTTON;
    557 	}
    558 }
    559 
    560 
    561 static int wps_build_sel_reg_config_methods(struct wps_registrar *reg,
    562 					    struct wpabuf *msg)
    563 {
    564 	u16 methods;
    565 	if (!reg->sel_reg_union)
    566 		return 0;
    567 	methods = reg->wps->config_methods;
    568 	methods &= ~WPS_CONFIG_PUSHBUTTON;
    569 	methods &= ~(WPS_CONFIG_VIRT_PUSHBUTTON |
    570 		     WPS_CONFIG_PHY_PUSHBUTTON);
    571 	if (reg->pbc)
    572 		wps_set_pushbutton(&methods, reg->wps->config_methods);
    573 	if (reg->sel_reg_config_methods_override >= 0)
    574 		methods = reg->sel_reg_config_methods_override;
    575 	wpa_printf(MSG_DEBUG, "WPS:  * Selected Registrar Config Methods (%x)",
    576 		   methods);
    577 	wpabuf_put_be16(msg, ATTR_SELECTED_REGISTRAR_CONFIG_METHODS);
    578 	wpabuf_put_be16(msg, 2);
    579 	wpabuf_put_be16(msg, methods);
    580 	return 0;
    581 }
    582 
    583 
    584 static int wps_build_probe_config_methods(struct wps_registrar *reg,
    585 					  struct wpabuf *msg)
    586 {
    587 	u16 methods;
    588 	/*
    589 	 * These are the methods that the AP supports as an Enrollee for adding
    590 	 * external Registrars.
    591 	 */
    592 	methods = reg->wps->config_methods & ~WPS_CONFIG_PUSHBUTTON;
    593 	methods &= ~(WPS_CONFIG_VIRT_PUSHBUTTON |
    594 		     WPS_CONFIG_PHY_PUSHBUTTON);
    595 	wpa_printf(MSG_DEBUG, "WPS:  * Config Methods (%x)", methods);
    596 	wpabuf_put_be16(msg, ATTR_CONFIG_METHODS);
    597 	wpabuf_put_be16(msg, 2);
    598 	wpabuf_put_be16(msg, methods);
    599 	return 0;
    600 }
    601 
    602 
    603 static int wps_build_config_methods_r(struct wps_registrar *reg,
    604 				      struct wpabuf *msg)
    605 {
    606 	return wps_build_config_methods(msg, reg->wps->config_methods);
    607 }
    608 
    609 
    610 const u8 * wps_authorized_macs(struct wps_registrar *reg, size_t *count)
    611 {
    612 	*count = 0;
    613 
    614 	while (*count < WPS_MAX_AUTHORIZED_MACS) {
    615 		if (is_zero_ether_addr(reg->authorized_macs_union[*count]))
    616 			break;
    617 		(*count)++;
    618 	}
    619 
    620 	return (const u8 *) reg->authorized_macs_union;
    621 }
    622 
    623 
    624 /**
    625  * wps_registrar_init - Initialize WPS Registrar data
    626  * @wps: Pointer to longterm WPS context
    627  * @cfg: Registrar configuration
    628  * Returns: Pointer to allocated Registrar data or %NULL on failure
    629  *
    630  * This function is used to initialize WPS Registrar functionality. It can be
    631  * used for a single Registrar run (e.g., when run in a supplicant) or multiple
    632  * runs (e.g., when run as an internal Registrar in an AP). Caller is
    633  * responsible for freeing the returned data with wps_registrar_deinit() when
    634  * Registrar functionality is not needed anymore.
    635  */
    636 struct wps_registrar *
    637 wps_registrar_init(struct wps_context *wps,
    638 		   const struct wps_registrar_config *cfg)
    639 {
    640 	struct wps_registrar *reg = os_zalloc(sizeof(*reg));
    641 	if (reg == NULL)
    642 		return NULL;
    643 
    644 	dl_list_init(&reg->pins);
    645 	dl_list_init(&reg->nfc_pw_tokens);
    646 	reg->wps = wps;
    647 	reg->new_psk_cb = cfg->new_psk_cb;
    648 	reg->set_ie_cb = cfg->set_ie_cb;
    649 	reg->pin_needed_cb = cfg->pin_needed_cb;
    650 	reg->reg_success_cb = cfg->reg_success_cb;
    651 	reg->set_sel_reg_cb = cfg->set_sel_reg_cb;
    652 	reg->enrollee_seen_cb = cfg->enrollee_seen_cb;
    653 	reg->cb_ctx = cfg->cb_ctx;
    654 	reg->skip_cred_build = cfg->skip_cred_build;
    655 	if (cfg->extra_cred) {
    656 		reg->extra_cred = wpabuf_alloc_copy(cfg->extra_cred,
    657 						    cfg->extra_cred_len);
    658 		if (reg->extra_cred == NULL) {
    659 			os_free(reg);
    660 			return NULL;
    661 		}
    662 	}
    663 	reg->disable_auto_conf = cfg->disable_auto_conf;
    664 	reg->sel_reg_dev_password_id_override = -1;
    665 	reg->sel_reg_config_methods_override = -1;
    666 	reg->static_wep_only = cfg->static_wep_only;
    667 	reg->dualband = cfg->dualband;
    668 	reg->force_per_enrollee_psk = cfg->force_per_enrollee_psk;
    669 
    670 	if (wps_set_ie(reg)) {
    671 		wps_registrar_deinit(reg);
    672 		return NULL;
    673 	}
    674 
    675 	return reg;
    676 }
    677 
    678 
    679 /**
    680  * wps_registrar_deinit - Deinitialize WPS Registrar data
    681  * @reg: Registrar data from wps_registrar_init()
    682  */
    683 void wps_registrar_deinit(struct wps_registrar *reg)
    684 {
    685 	if (reg == NULL)
    686 		return;
    687 	eloop_cancel_timeout(wps_registrar_pbc_timeout, reg, NULL);
    688 	eloop_cancel_timeout(wps_registrar_set_selected_timeout, reg, NULL);
    689 	wps_free_pins(&reg->pins);
    690 	wps_free_nfc_pw_tokens(&reg->nfc_pw_tokens, 0);
    691 	wps_free_pbc_sessions(reg->pbc_sessions);
    692 	wpabuf_free(reg->extra_cred);
    693 	wps_free_devices(reg->devices);
    694 	os_free(reg);
    695 }
    696 
    697 
    698 static void wps_registrar_invalidate_unused(struct wps_registrar *reg)
    699 {
    700 	struct wps_uuid_pin *pin;
    701 
    702 	dl_list_for_each(pin, &reg->pins, struct wps_uuid_pin, list) {
    703 		if (pin->wildcard_uuid == 1 && !(pin->flags & PIN_LOCKED)) {
    704 			wpa_printf(MSG_DEBUG, "WPS: Invalidate previously "
    705 				   "configured wildcard PIN");
    706 			wps_registrar_remove_pin(reg, pin);
    707 			break;
    708 		}
    709 	}
    710 }
    711 
    712 
    713 /**
    714  * wps_registrar_add_pin - Configure a new PIN for Registrar
    715  * @reg: Registrar data from wps_registrar_init()
    716  * @addr: Enrollee MAC address or %NULL if not known
    717  * @uuid: UUID-E or %NULL for wildcard (any UUID)
    718  * @pin: PIN (Device Password)
    719  * @pin_len: Length of pin in octets
    720  * @timeout: Time (in seconds) when the PIN will be invalidated; 0 = no timeout
    721  * Returns: 0 on success, -1 on failure
    722  */
    723 int wps_registrar_add_pin(struct wps_registrar *reg, const u8 *addr,
    724 			  const u8 *uuid, const u8 *pin, size_t pin_len,
    725 			  int timeout)
    726 {
    727 	struct wps_uuid_pin *p;
    728 
    729 	p = os_zalloc(sizeof(*p));
    730 	if (p == NULL)
    731 		return -1;
    732 	if (addr)
    733 		os_memcpy(p->enrollee_addr, addr, ETH_ALEN);
    734 	if (uuid == NULL)
    735 		p->wildcard_uuid = 1;
    736 	else
    737 		os_memcpy(p->uuid, uuid, WPS_UUID_LEN);
    738 	p->pin = os_malloc(pin_len);
    739 	if (p->pin == NULL) {
    740 		os_free(p);
    741 		return -1;
    742 	}
    743 	os_memcpy(p->pin, pin, pin_len);
    744 	p->pin_len = pin_len;
    745 
    746 	if (timeout) {
    747 		p->flags |= PIN_EXPIRES;
    748 		os_get_reltime(&p->expiration);
    749 		p->expiration.sec += timeout;
    750 	}
    751 
    752 	if (p->wildcard_uuid)
    753 		wps_registrar_invalidate_unused(reg);
    754 
    755 	dl_list_add(&reg->pins, &p->list);
    756 
    757 	wpa_printf(MSG_DEBUG, "WPS: A new PIN configured (timeout=%d)",
    758 		   timeout);
    759 	wpa_hexdump(MSG_DEBUG, "WPS: UUID", uuid, WPS_UUID_LEN);
    760 	wpa_hexdump_ascii_key(MSG_DEBUG, "WPS: PIN", pin, pin_len);
    761 	reg->selected_registrar = 1;
    762 	reg->pbc = 0;
    763 	if (addr)
    764 		wps_registrar_add_authorized_mac(reg, addr);
    765 	else
    766 		wps_registrar_add_authorized_mac(
    767 			reg, (u8 *) "\xff\xff\xff\xff\xff\xff");
    768 	wps_registrar_selected_registrar_changed(reg, 0);
    769 	eloop_cancel_timeout(wps_registrar_set_selected_timeout, reg, NULL);
    770 	eloop_register_timeout(WPS_PBC_WALK_TIME, 0,
    771 			       wps_registrar_set_selected_timeout,
    772 			       reg, NULL);
    773 
    774 	return 0;
    775 }
    776 
    777 
    778 static void wps_registrar_remove_pin(struct wps_registrar *reg,
    779 				     struct wps_uuid_pin *pin)
    780 {
    781 	u8 *addr;
    782 	u8 bcast[ETH_ALEN] = { 0xff, 0xff, 0xff, 0xff, 0xff, 0xff };
    783 
    784 	if (is_zero_ether_addr(pin->enrollee_addr))
    785 		addr = bcast;
    786 	else
    787 		addr = pin->enrollee_addr;
    788 	wps_registrar_remove_authorized_mac(reg, addr);
    789 	wps_remove_pin(pin);
    790 	wps_registrar_selected_registrar_changed(reg, 0);
    791 }
    792 
    793 
    794 static void wps_registrar_expire_pins(struct wps_registrar *reg)
    795 {
    796 	struct wps_uuid_pin *pin, *prev;
    797 	struct os_reltime now;
    798 
    799 	os_get_reltime(&now);
    800 	dl_list_for_each_safe(pin, prev, &reg->pins, struct wps_uuid_pin, list)
    801 	{
    802 		if ((pin->flags & PIN_EXPIRES) &&
    803 		    os_reltime_before(&pin->expiration, &now)) {
    804 			wpa_hexdump(MSG_DEBUG, "WPS: Expired PIN for UUID",
    805 				    pin->uuid, WPS_UUID_LEN);
    806 			wps_registrar_remove_pin(reg, pin);
    807 		}
    808 	}
    809 }
    810 
    811 
    812 /**
    813  * wps_registrar_invalidate_wildcard_pin - Invalidate a wildcard PIN
    814  * @reg: Registrar data from wps_registrar_init()
    815  * @dev_pw: PIN to search for or %NULL to match any
    816  * @dev_pw_len: Length of dev_pw in octets
    817  * Returns: 0 on success, -1 if not wildcard PIN is enabled
    818  */
    819 static int wps_registrar_invalidate_wildcard_pin(struct wps_registrar *reg,
    820 						 const u8 *dev_pw,
    821 						 size_t dev_pw_len)
    822 {
    823 	struct wps_uuid_pin *pin, *prev;
    824 
    825 	dl_list_for_each_safe(pin, prev, &reg->pins, struct wps_uuid_pin, list)
    826 	{
    827 		if (dev_pw && pin->pin &&
    828 		    (dev_pw_len != pin->pin_len ||
    829 		     os_memcmp_const(dev_pw, pin->pin, dev_pw_len) != 0))
    830 			continue; /* different PIN */
    831 		if (pin->wildcard_uuid) {
    832 			wpa_hexdump(MSG_DEBUG, "WPS: Invalidated PIN for UUID",
    833 				    pin->uuid, WPS_UUID_LEN);
    834 			wps_registrar_remove_pin(reg, pin);
    835 			return 0;
    836 		}
    837 	}
    838 
    839 	return -1;
    840 }
    841 
    842 
    843 /**
    844  * wps_registrar_invalidate_pin - Invalidate a PIN for a specific UUID-E
    845  * @reg: Registrar data from wps_registrar_init()
    846  * @uuid: UUID-E
    847  * Returns: 0 on success, -1 on failure (e.g., PIN not found)
    848  */
    849 int wps_registrar_invalidate_pin(struct wps_registrar *reg, const u8 *uuid)
    850 {
    851 	struct wps_uuid_pin *pin, *prev;
    852 
    853 	dl_list_for_each_safe(pin, prev, &reg->pins, struct wps_uuid_pin, list)
    854 	{
    855 		if (os_memcmp(pin->uuid, uuid, WPS_UUID_LEN) == 0) {
    856 			wpa_hexdump(MSG_DEBUG, "WPS: Invalidated PIN for UUID",
    857 				    pin->uuid, WPS_UUID_LEN);
    858 			wps_registrar_remove_pin(reg, pin);
    859 			return 0;
    860 		}
    861 	}
    862 
    863 	return -1;
    864 }
    865 
    866 
    867 static const u8 * wps_registrar_get_pin(struct wps_registrar *reg,
    868 					const u8 *uuid, size_t *pin_len)
    869 {
    870 	struct wps_uuid_pin *pin, *found = NULL;
    871 
    872 	wps_registrar_expire_pins(reg);
    873 
    874 	dl_list_for_each(pin, &reg->pins, struct wps_uuid_pin, list) {
    875 		if (!pin->wildcard_uuid &&
    876 		    os_memcmp(pin->uuid, uuid, WPS_UUID_LEN) == 0) {
    877 			found = pin;
    878 			break;
    879 		}
    880 	}
    881 
    882 	if (!found) {
    883 		/* Check for wildcard UUIDs since none of the UUID-specific
    884 		 * PINs matched */
    885 		dl_list_for_each(pin, &reg->pins, struct wps_uuid_pin, list) {
    886 			if (pin->wildcard_uuid == 1 ||
    887 			    pin->wildcard_uuid == 2) {
    888 				wpa_printf(MSG_DEBUG, "WPS: Found a wildcard "
    889 					   "PIN. Assigned it for this UUID-E");
    890 				pin->wildcard_uuid++;
    891 				os_memcpy(pin->uuid, uuid, WPS_UUID_LEN);
    892 				found = pin;
    893 				break;
    894 			}
    895 		}
    896 	}
    897 
    898 	if (!found)
    899 		return NULL;
    900 
    901 	/*
    902 	 * Lock the PIN to avoid attacks based on concurrent re-use of the PIN
    903 	 * that could otherwise avoid PIN invalidations.
    904 	 */
    905 	if (found->flags & PIN_LOCKED) {
    906 		wpa_printf(MSG_DEBUG, "WPS: Selected PIN locked - do not "
    907 			   "allow concurrent re-use");
    908 		return NULL;
    909 	}
    910 	*pin_len = found->pin_len;
    911 	found->flags |= PIN_LOCKED;
    912 	return found->pin;
    913 }
    914 
    915 
    916 /**
    917  * wps_registrar_unlock_pin - Unlock a PIN for a specific UUID-E
    918  * @reg: Registrar data from wps_registrar_init()
    919  * @uuid: UUID-E
    920  * Returns: 0 on success, -1 on failure
    921  *
    922  * PINs are locked to enforce only one concurrent use. This function unlocks a
    923  * PIN to allow it to be used again. If the specified PIN was configured using
    924  * a wildcard UUID, it will be removed instead of allowing multiple uses.
    925  */
    926 int wps_registrar_unlock_pin(struct wps_registrar *reg, const u8 *uuid)
    927 {
    928 	struct wps_uuid_pin *pin;
    929 
    930 	dl_list_for_each(pin, &reg->pins, struct wps_uuid_pin, list) {
    931 		if (os_memcmp(pin->uuid, uuid, WPS_UUID_LEN) == 0) {
    932 			if (pin->wildcard_uuid == 3) {
    933 				wpa_printf(MSG_DEBUG, "WPS: Invalidating used "
    934 					   "wildcard PIN");
    935 				return wps_registrar_invalidate_pin(reg, uuid);
    936 			}
    937 			pin->flags &= ~PIN_LOCKED;
    938 			return 0;
    939 		}
    940 	}
    941 
    942 	return -1;
    943 }
    944 
    945 
    946 static void wps_registrar_stop_pbc(struct wps_registrar *reg)
    947 {
    948 	reg->selected_registrar = 0;
    949 	reg->pbc = 0;
    950 	os_memset(reg->p2p_dev_addr, 0, ETH_ALEN);
    951 	wps_registrar_remove_authorized_mac(reg,
    952 					    (u8 *) "\xff\xff\xff\xff\xff\xff");
    953 	wps_registrar_selected_registrar_changed(reg, 0);
    954 }
    955 
    956 
    957 static void wps_registrar_pbc_timeout(void *eloop_ctx, void *timeout_ctx)
    958 {
    959 	struct wps_registrar *reg = eloop_ctx;
    960 
    961 	wpa_printf(MSG_DEBUG, "WPS: PBC timed out - disable PBC mode");
    962 	wps_pbc_timeout_event(reg->wps);
    963 	wps_registrar_stop_pbc(reg);
    964 }
    965 
    966 
    967 /**
    968  * wps_registrar_button_pushed - Notify Registrar that AP button was pushed
    969  * @reg: Registrar data from wps_registrar_init()
    970  * @p2p_dev_addr: Limit allowed PBC devices to the specified P2P device, %NULL
    971  *	indicates no such filtering
    972  * Returns: 0 on success, -1 on failure, -2 on session overlap
    973  *
    974  * This function is called on an AP when a push button is pushed to activate
    975  * PBC mode. The PBC mode will be stopped after walk time (2 minutes) timeout
    976  * or when a PBC registration is completed. If more than one Enrollee in active
    977  * PBC mode has been detected during the monitor time (previous 2 minutes), the
    978  * PBC mode is not activated and -2 is returned to indicate session overlap.
    979  * This is skipped if a specific Enrollee is selected.
    980  */
    981 int wps_registrar_button_pushed(struct wps_registrar *reg,
    982 				const u8 *p2p_dev_addr)
    983 {
    984 	if (p2p_dev_addr == NULL &&
    985 	    wps_registrar_pbc_overlap(reg, NULL, NULL)) {
    986 		wpa_printf(MSG_DEBUG, "WPS: PBC overlap - do not start PBC "
    987 			   "mode");
    988 		wps_pbc_overlap_event(reg->wps);
    989 		return -2;
    990 	}
    991 	wpa_printf(MSG_DEBUG, "WPS: Button pushed - PBC mode started");
    992 	reg->force_pbc_overlap = 0;
    993 	reg->selected_registrar = 1;
    994 	reg->pbc = 1;
    995 	if (p2p_dev_addr)
    996 		os_memcpy(reg->p2p_dev_addr, p2p_dev_addr, ETH_ALEN);
    997 	else
    998 		os_memset(reg->p2p_dev_addr, 0, ETH_ALEN);
    999 	wps_registrar_add_authorized_mac(reg,
   1000 					 (u8 *) "\xff\xff\xff\xff\xff\xff");
   1001 	wps_registrar_selected_registrar_changed(reg, 0);
   1002 
   1003 	wps_pbc_active_event(reg->wps);
   1004 	eloop_cancel_timeout(wps_registrar_set_selected_timeout, reg, NULL);
   1005 	eloop_cancel_timeout(wps_registrar_pbc_timeout, reg, NULL);
   1006 	eloop_register_timeout(WPS_PBC_WALK_TIME, 0, wps_registrar_pbc_timeout,
   1007 			       reg, NULL);
   1008 	return 0;
   1009 }
   1010 
   1011 
   1012 static void wps_registrar_pbc_completed(struct wps_registrar *reg)
   1013 {
   1014 	wpa_printf(MSG_DEBUG, "WPS: PBC completed - stopping PBC mode");
   1015 	eloop_cancel_timeout(wps_registrar_pbc_timeout, reg, NULL);
   1016 	wps_registrar_stop_pbc(reg);
   1017 	wps_pbc_disable_event(reg->wps);
   1018 }
   1019 
   1020 
   1021 static void wps_registrar_pin_completed(struct wps_registrar *reg)
   1022 {
   1023 	wpa_printf(MSG_DEBUG, "WPS: PIN completed using internal Registrar");
   1024 	eloop_cancel_timeout(wps_registrar_set_selected_timeout, reg, NULL);
   1025 	reg->selected_registrar = 0;
   1026 	wps_registrar_selected_registrar_changed(reg, 0);
   1027 }
   1028 
   1029 
   1030 void wps_registrar_complete(struct wps_registrar *registrar, const u8 *uuid_e,
   1031 			    const u8 *dev_pw, size_t dev_pw_len)
   1032 {
   1033 	if (registrar->pbc) {
   1034 		wps_registrar_remove_pbc_session(registrar,
   1035 						 uuid_e, NULL);
   1036 		wps_registrar_pbc_completed(registrar);
   1037 #ifdef WPS_WORKAROUNDS
   1038 		os_get_reltime(&registrar->pbc_ignore_start);
   1039 #endif /* WPS_WORKAROUNDS */
   1040 		os_memcpy(registrar->pbc_ignore_uuid, uuid_e, WPS_UUID_LEN);
   1041 	} else {
   1042 		wps_registrar_pin_completed(registrar);
   1043 	}
   1044 
   1045 	if (dev_pw &&
   1046 	    wps_registrar_invalidate_wildcard_pin(registrar, dev_pw,
   1047 						  dev_pw_len) == 0) {
   1048 		wpa_hexdump_key(MSG_DEBUG, "WPS: Invalidated wildcard PIN",
   1049 				dev_pw, dev_pw_len);
   1050 	}
   1051 }
   1052 
   1053 
   1054 int wps_registrar_wps_cancel(struct wps_registrar *reg)
   1055 {
   1056 	if (reg->pbc) {
   1057 		wpa_printf(MSG_DEBUG, "WPS: PBC is set - cancelling it");
   1058 		wps_registrar_pbc_timeout(reg, NULL);
   1059 		eloop_cancel_timeout(wps_registrar_pbc_timeout, reg, NULL);
   1060 		return 1;
   1061 	} else if (reg->selected_registrar) {
   1062 		/* PIN Method */
   1063 		wpa_printf(MSG_DEBUG, "WPS: PIN is set - cancelling it");
   1064 		wps_registrar_pin_completed(reg);
   1065 		wps_registrar_invalidate_wildcard_pin(reg, NULL, 0);
   1066 		return 1;
   1067 	}
   1068 	return 0;
   1069 }
   1070 
   1071 
   1072 /**
   1073  * wps_registrar_probe_req_rx - Notify Registrar of Probe Request
   1074  * @reg: Registrar data from wps_registrar_init()
   1075  * @addr: MAC address of the Probe Request sender
   1076  * @wps_data: WPS IE contents
   1077  *
   1078  * This function is called on an AP when a Probe Request with WPS IE is
   1079  * received. This is used to track PBC mode use and to detect possible overlap
   1080  * situation with other WPS APs.
   1081  */
   1082 void wps_registrar_probe_req_rx(struct wps_registrar *reg, const u8 *addr,
   1083 				const struct wpabuf *wps_data,
   1084 				int p2p_wildcard)
   1085 {
   1086 	struct wps_parse_attr attr;
   1087 	int skip_add = 0;
   1088 
   1089 	wpa_hexdump_buf(MSG_MSGDUMP,
   1090 			"WPS: Probe Request with WPS data received",
   1091 			wps_data);
   1092 
   1093 	if (wps_parse_msg(wps_data, &attr) < 0)
   1094 		return;
   1095 
   1096 	if (attr.config_methods == NULL) {
   1097 		wpa_printf(MSG_DEBUG, "WPS: No Config Methods attribute in "
   1098 			   "Probe Request");
   1099 		return;
   1100 	}
   1101 
   1102 	if (attr.dev_password_id == NULL) {
   1103 		wpa_printf(MSG_DEBUG, "WPS: No Device Password Id attribute "
   1104 			   "in Probe Request");
   1105 		return;
   1106 	}
   1107 
   1108 	if (reg->enrollee_seen_cb && attr.uuid_e &&
   1109 	    attr.primary_dev_type && attr.request_type && !p2p_wildcard) {
   1110 		char *dev_name = NULL;
   1111 		if (attr.dev_name) {
   1112 			dev_name = os_zalloc(attr.dev_name_len + 1);
   1113 			if (dev_name) {
   1114 				os_memcpy(dev_name, attr.dev_name,
   1115 					  attr.dev_name_len);
   1116 			}
   1117 		}
   1118 		reg->enrollee_seen_cb(reg->cb_ctx, addr, attr.uuid_e,
   1119 				      attr.primary_dev_type,
   1120 				      WPA_GET_BE16(attr.config_methods),
   1121 				      WPA_GET_BE16(attr.dev_password_id),
   1122 				      *attr.request_type, dev_name);
   1123 		os_free(dev_name);
   1124 	}
   1125 
   1126 	if (WPA_GET_BE16(attr.dev_password_id) != DEV_PW_PUSHBUTTON)
   1127 		return; /* Not PBC */
   1128 
   1129 	wpa_printf(MSG_DEBUG, "WPS: Probe Request for PBC received from "
   1130 		   MACSTR, MAC2STR(addr));
   1131 	if (attr.uuid_e == NULL) {
   1132 		wpa_printf(MSG_DEBUG, "WPS: Invalid Probe Request WPS IE: No "
   1133 			   "UUID-E included");
   1134 		return;
   1135 	}
   1136 	wpa_hexdump(MSG_DEBUG, "WPS: UUID-E from Probe Request", attr.uuid_e,
   1137 		    WPS_UUID_LEN);
   1138 
   1139 #ifdef WPS_WORKAROUNDS
   1140 	if (reg->pbc_ignore_start.sec &&
   1141 	    os_memcmp(attr.uuid_e, reg->pbc_ignore_uuid, WPS_UUID_LEN) == 0) {
   1142 		struct os_reltime now, dur;
   1143 		os_get_reltime(&now);
   1144 		os_reltime_sub(&now, &reg->pbc_ignore_start, &dur);
   1145 		if (dur.sec >= 0 && dur.sec < 5) {
   1146 			wpa_printf(MSG_DEBUG, "WPS: Ignore PBC activation "
   1147 				   "based on Probe Request from the Enrollee "
   1148 				   "that just completed PBC provisioning");
   1149 			skip_add = 1;
   1150 		} else
   1151 			reg->pbc_ignore_start.sec = 0;
   1152 	}
   1153 #endif /* WPS_WORKAROUNDS */
   1154 
   1155 	if (!skip_add)
   1156 		wps_registrar_add_pbc_session(reg, addr, attr.uuid_e);
   1157 	if (wps_registrar_pbc_overlap(reg, addr, attr.uuid_e)) {
   1158 		wpa_printf(MSG_DEBUG, "WPS: PBC session overlap detected");
   1159 		reg->force_pbc_overlap = 1;
   1160 		wps_pbc_overlap_event(reg->wps);
   1161 	}
   1162 }
   1163 
   1164 
   1165 int wps_cb_new_psk(struct wps_registrar *reg, const u8 *mac_addr,
   1166 		   const u8 *p2p_dev_addr, const u8 *psk, size_t psk_len)
   1167 {
   1168 	if (reg->new_psk_cb == NULL)
   1169 		return 0;
   1170 
   1171 	return reg->new_psk_cb(reg->cb_ctx, mac_addr, p2p_dev_addr, psk,
   1172 			       psk_len);
   1173 }
   1174 
   1175 
   1176 static void wps_cb_pin_needed(struct wps_registrar *reg, const u8 *uuid_e,
   1177 			      const struct wps_device_data *dev)
   1178 {
   1179 	if (reg->pin_needed_cb == NULL)
   1180 		return;
   1181 
   1182 	reg->pin_needed_cb(reg->cb_ctx, uuid_e, dev);
   1183 }
   1184 
   1185 
   1186 static void wps_cb_reg_success(struct wps_registrar *reg, const u8 *mac_addr,
   1187 			       const u8 *uuid_e, const u8 *dev_pw,
   1188 			       size_t dev_pw_len)
   1189 {
   1190 	if (reg->reg_success_cb == NULL)
   1191 		return;
   1192 
   1193 	reg->reg_success_cb(reg->cb_ctx, mac_addr, uuid_e, dev_pw, dev_pw_len);
   1194 }
   1195 
   1196 
   1197 static int wps_cb_set_ie(struct wps_registrar *reg, struct wpabuf *beacon_ie,
   1198 			 struct wpabuf *probe_resp_ie)
   1199 {
   1200 	return reg->set_ie_cb(reg->cb_ctx, beacon_ie, probe_resp_ie);
   1201 }
   1202 
   1203 
   1204 static void wps_cb_set_sel_reg(struct wps_registrar *reg)
   1205 {
   1206 	u16 methods = 0;
   1207 	if (reg->set_sel_reg_cb == NULL)
   1208 		return;
   1209 
   1210 	if (reg->selected_registrar) {
   1211 		methods = reg->wps->config_methods & ~WPS_CONFIG_PUSHBUTTON;
   1212 		methods &= ~(WPS_CONFIG_VIRT_PUSHBUTTON |
   1213 			     WPS_CONFIG_PHY_PUSHBUTTON);
   1214 		if (reg->pbc)
   1215 			wps_set_pushbutton(&methods, reg->wps->config_methods);
   1216 	}
   1217 
   1218 	wpa_printf(MSG_DEBUG, "WPS: wps_cb_set_sel_reg: sel_reg=%d "
   1219 		   "config_methods=0x%x pbc=%d methods=0x%x",
   1220 		   reg->selected_registrar, reg->wps->config_methods,
   1221 		   reg->pbc, methods);
   1222 
   1223 	reg->set_sel_reg_cb(reg->cb_ctx, reg->selected_registrar,
   1224 			    reg->pbc ? DEV_PW_PUSHBUTTON : DEV_PW_DEFAULT,
   1225 			    methods);
   1226 }
   1227 
   1228 
   1229 static int wps_set_ie(struct wps_registrar *reg)
   1230 {
   1231 	struct wpabuf *beacon;
   1232 	struct wpabuf *probe;
   1233 	const u8 *auth_macs;
   1234 	size_t count;
   1235 	size_t vendor_len = 0;
   1236 	int i;
   1237 
   1238 	if (reg->set_ie_cb == NULL)
   1239 		return 0;
   1240 
   1241 	for (i = 0; i < MAX_WPS_VENDOR_EXTENSIONS; i++) {
   1242 		if (reg->wps->dev.vendor_ext[i]) {
   1243 			vendor_len += 2 + 2;
   1244 			vendor_len += wpabuf_len(reg->wps->dev.vendor_ext[i]);
   1245 		}
   1246 	}
   1247 
   1248 	beacon = wpabuf_alloc(400 + vendor_len);
   1249 	if (beacon == NULL)
   1250 		return -1;
   1251 	probe = wpabuf_alloc(500 + vendor_len);
   1252 	if (probe == NULL) {
   1253 		wpabuf_free(beacon);
   1254 		return -1;
   1255 	}
   1256 
   1257 	auth_macs = wps_authorized_macs(reg, &count);
   1258 
   1259 	wpa_printf(MSG_DEBUG, "WPS: Build Beacon IEs");
   1260 
   1261 	if (wps_build_version(beacon) ||
   1262 	    wps_build_wps_state(reg->wps, beacon) ||
   1263 	    wps_build_ap_setup_locked(reg->wps, beacon) ||
   1264 	    wps_build_selected_registrar(reg, beacon) ||
   1265 	    wps_build_sel_reg_dev_password_id(reg, beacon) ||
   1266 	    wps_build_sel_reg_config_methods(reg, beacon) ||
   1267 	    wps_build_sel_pbc_reg_uuid_e(reg, beacon) ||
   1268 	    (reg->dualband && wps_build_rf_bands(&reg->wps->dev, beacon, 0)) ||
   1269 	    wps_build_wfa_ext(beacon, 0, auth_macs, count) ||
   1270 	    wps_build_vendor_ext(&reg->wps->dev, beacon)) {
   1271 		wpabuf_free(beacon);
   1272 		wpabuf_free(probe);
   1273 		return -1;
   1274 	}
   1275 
   1276 #ifdef CONFIG_P2P
   1277 	if (wps_build_dev_name(&reg->wps->dev, beacon) ||
   1278 	    wps_build_primary_dev_type(&reg->wps->dev, beacon)) {
   1279 		wpabuf_free(beacon);
   1280 		wpabuf_free(probe);
   1281 		return -1;
   1282 	}
   1283 #endif /* CONFIG_P2P */
   1284 
   1285 	wpa_printf(MSG_DEBUG, "WPS: Build Probe Response IEs");
   1286 
   1287 	if (wps_build_version(probe) ||
   1288 	    wps_build_wps_state(reg->wps, probe) ||
   1289 	    wps_build_ap_setup_locked(reg->wps, probe) ||
   1290 	    wps_build_selected_registrar(reg, probe) ||
   1291 	    wps_build_sel_reg_dev_password_id(reg, probe) ||
   1292 	    wps_build_sel_reg_config_methods(reg, probe) ||
   1293 	    wps_build_resp_type(probe, reg->wps->ap ? WPS_RESP_AP :
   1294 				WPS_RESP_REGISTRAR) ||
   1295 	    wps_build_uuid_e(probe, reg->wps->uuid) ||
   1296 	    wps_build_device_attrs(&reg->wps->dev, probe) ||
   1297 	    wps_build_probe_config_methods(reg, probe) ||
   1298 	    (reg->dualband && wps_build_rf_bands(&reg->wps->dev, probe, 0)) ||
   1299 	    wps_build_wfa_ext(probe, 0, auth_macs, count) ||
   1300 	    wps_build_vendor_ext(&reg->wps->dev, probe)) {
   1301 		wpabuf_free(beacon);
   1302 		wpabuf_free(probe);
   1303 		return -1;
   1304 	}
   1305 
   1306 	beacon = wps_ie_encapsulate(beacon);
   1307 	probe = wps_ie_encapsulate(probe);
   1308 
   1309 	if (!beacon || !probe) {
   1310 		wpabuf_free(beacon);
   1311 		wpabuf_free(probe);
   1312 		return -1;
   1313 	}
   1314 
   1315 	if (reg->static_wep_only) {
   1316 		/*
   1317 		 * Windows XP and Vista clients can get confused about
   1318 		 * EAP-Identity/Request when they probe the network with
   1319 		 * EAPOL-Start. In such a case, they may assume the network is
   1320 		 * using IEEE 802.1X and prompt user for a certificate while
   1321 		 * the correct (non-WPS) behavior would be to ask for the
   1322 		 * static WEP key. As a workaround, use Microsoft Provisioning
   1323 		 * IE to advertise that legacy 802.1X is not supported.
   1324 		 */
   1325 		const u8 ms_wps[7] = {
   1326 			WLAN_EID_VENDOR_SPECIFIC, 5,
   1327 			/* Microsoft Provisioning IE (00:50:f2:5) */
   1328 			0x00, 0x50, 0xf2, 5,
   1329 			0x00 /* no legacy 802.1X or MS WPS */
   1330 		};
   1331 		wpa_printf(MSG_DEBUG, "WPS: Add Microsoft Provisioning IE "
   1332 			   "into Beacon/Probe Response frames");
   1333 		wpabuf_put_data(beacon, ms_wps, sizeof(ms_wps));
   1334 		wpabuf_put_data(probe, ms_wps, sizeof(ms_wps));
   1335 	}
   1336 
   1337 	return wps_cb_set_ie(reg, beacon, probe);
   1338 }
   1339 
   1340 
   1341 static int wps_get_dev_password(struct wps_data *wps)
   1342 {
   1343 	const u8 *pin;
   1344 	size_t pin_len = 0;
   1345 
   1346 	bin_clear_free(wps->dev_password, wps->dev_password_len);
   1347 	wps->dev_password = NULL;
   1348 
   1349 	if (wps->pbc) {
   1350 		wpa_printf(MSG_DEBUG, "WPS: Use default PIN for PBC");
   1351 		pin = (const u8 *) "00000000";
   1352 		pin_len = 8;
   1353 #ifdef CONFIG_WPS_NFC
   1354 	} else if (wps->nfc_pw_token) {
   1355 		if (wps->nfc_pw_token->pw_id == DEV_PW_NFC_CONNECTION_HANDOVER)
   1356 		{
   1357 			wpa_printf(MSG_DEBUG, "WPS: Using NFC connection "
   1358 				   "handover and abbreviated WPS handshake "
   1359 				   "without Device Password");
   1360 			return 0;
   1361 		}
   1362 		wpa_printf(MSG_DEBUG, "WPS: Use OOB Device Password from NFC "
   1363 			   "Password Token");
   1364 		pin = wps->nfc_pw_token->dev_pw;
   1365 		pin_len = wps->nfc_pw_token->dev_pw_len;
   1366 	} else if (wps->dev_pw_id >= 0x10 &&
   1367 		   wps->wps->ap_nfc_dev_pw_id == wps->dev_pw_id &&
   1368 		   wps->wps->ap_nfc_dev_pw) {
   1369 		wpa_printf(MSG_DEBUG, "WPS: Use OOB Device Password from own NFC Password Token");
   1370 		pin = wpabuf_head(wps->wps->ap_nfc_dev_pw);
   1371 		pin_len = wpabuf_len(wps->wps->ap_nfc_dev_pw);
   1372 #endif /* CONFIG_WPS_NFC */
   1373 	} else {
   1374 		pin = wps_registrar_get_pin(wps->wps->registrar, wps->uuid_e,
   1375 					    &pin_len);
   1376 		if (pin && wps->dev_pw_id >= 0x10) {
   1377 			wpa_printf(MSG_DEBUG, "WPS: No match for OOB Device "
   1378 				   "Password ID, but PIN found");
   1379 			/*
   1380 			 * See whether Enrollee is willing to use PIN instead.
   1381 			 */
   1382 			wps->dev_pw_id = DEV_PW_DEFAULT;
   1383 		}
   1384 	}
   1385 	if (pin == NULL) {
   1386 		wpa_printf(MSG_DEBUG, "WPS: No Device Password available for "
   1387 			   "the Enrollee (context %p registrar %p)",
   1388 			   wps->wps, wps->wps->registrar);
   1389 		wps_cb_pin_needed(wps->wps->registrar, wps->uuid_e,
   1390 				  &wps->peer_dev);
   1391 		return -1;
   1392 	}
   1393 
   1394 	wps->dev_password = os_malloc(pin_len);
   1395 	if (wps->dev_password == NULL)
   1396 		return -1;
   1397 	os_memcpy(wps->dev_password, pin, pin_len);
   1398 	wps->dev_password_len = pin_len;
   1399 
   1400 	return 0;
   1401 }
   1402 
   1403 
   1404 static int wps_build_uuid_r(struct wps_data *wps, struct wpabuf *msg)
   1405 {
   1406 	wpa_printf(MSG_DEBUG, "WPS:  * UUID-R");
   1407 	wpabuf_put_be16(msg, ATTR_UUID_R);
   1408 	wpabuf_put_be16(msg, WPS_UUID_LEN);
   1409 	wpabuf_put_data(msg, wps->uuid_r, WPS_UUID_LEN);
   1410 	return 0;
   1411 }
   1412 
   1413 
   1414 static int wps_build_r_hash(struct wps_data *wps, struct wpabuf *msg)
   1415 {
   1416 	u8 *hash;
   1417 	const u8 *addr[4];
   1418 	size_t len[4];
   1419 
   1420 	if (random_get_bytes(wps->snonce, 2 * WPS_SECRET_NONCE_LEN) < 0)
   1421 		return -1;
   1422 	wpa_hexdump(MSG_DEBUG, "WPS: R-S1", wps->snonce, WPS_SECRET_NONCE_LEN);
   1423 	wpa_hexdump(MSG_DEBUG, "WPS: R-S2",
   1424 		    wps->snonce + WPS_SECRET_NONCE_LEN, WPS_SECRET_NONCE_LEN);
   1425 
   1426 	if (wps->dh_pubkey_e == NULL || wps->dh_pubkey_r == NULL) {
   1427 		wpa_printf(MSG_DEBUG, "WPS: DH public keys not available for "
   1428 			   "R-Hash derivation");
   1429 		return -1;
   1430 	}
   1431 
   1432 	wpa_printf(MSG_DEBUG, "WPS:  * R-Hash1");
   1433 	wpabuf_put_be16(msg, ATTR_R_HASH1);
   1434 	wpabuf_put_be16(msg, SHA256_MAC_LEN);
   1435 	hash = wpabuf_put(msg, SHA256_MAC_LEN);
   1436 	/* R-Hash1 = HMAC_AuthKey(R-S1 || PSK1 || PK_E || PK_R) */
   1437 	addr[0] = wps->snonce;
   1438 	len[0] = WPS_SECRET_NONCE_LEN;
   1439 	addr[1] = wps->psk1;
   1440 	len[1] = WPS_PSK_LEN;
   1441 	addr[2] = wpabuf_head(wps->dh_pubkey_e);
   1442 	len[2] = wpabuf_len(wps->dh_pubkey_e);
   1443 	addr[3] = wpabuf_head(wps->dh_pubkey_r);
   1444 	len[3] = wpabuf_len(wps->dh_pubkey_r);
   1445 	hmac_sha256_vector(wps->authkey, WPS_AUTHKEY_LEN, 4, addr, len, hash);
   1446 	wpa_hexdump(MSG_DEBUG, "WPS: R-Hash1", hash, SHA256_MAC_LEN);
   1447 
   1448 	wpa_printf(MSG_DEBUG, "WPS:  * R-Hash2");
   1449 	wpabuf_put_be16(msg, ATTR_R_HASH2);
   1450 	wpabuf_put_be16(msg, SHA256_MAC_LEN);
   1451 	hash = wpabuf_put(msg, SHA256_MAC_LEN);
   1452 	/* R-Hash2 = HMAC_AuthKey(R-S2 || PSK2 || PK_E || PK_R) */
   1453 	addr[0] = wps->snonce + WPS_SECRET_NONCE_LEN;
   1454 	addr[1] = wps->psk2;
   1455 	hmac_sha256_vector(wps->authkey, WPS_AUTHKEY_LEN, 4, addr, len, hash);
   1456 	wpa_hexdump(MSG_DEBUG, "WPS: R-Hash2", hash, SHA256_MAC_LEN);
   1457 
   1458 	return 0;
   1459 }
   1460 
   1461 
   1462 static int wps_build_r_snonce1(struct wps_data *wps, struct wpabuf *msg)
   1463 {
   1464 	wpa_printf(MSG_DEBUG, "WPS:  * R-SNonce1");
   1465 	wpabuf_put_be16(msg, ATTR_R_SNONCE1);
   1466 	wpabuf_put_be16(msg, WPS_SECRET_NONCE_LEN);
   1467 	wpabuf_put_data(msg, wps->snonce, WPS_SECRET_NONCE_LEN);
   1468 	return 0;
   1469 }
   1470 
   1471 
   1472 static int wps_build_r_snonce2(struct wps_data *wps, struct wpabuf *msg)
   1473 {
   1474 	wpa_printf(MSG_DEBUG, "WPS:  * R-SNonce2");
   1475 	wpabuf_put_be16(msg, ATTR_R_SNONCE2);
   1476 	wpabuf_put_be16(msg, WPS_SECRET_NONCE_LEN);
   1477 	wpabuf_put_data(msg, wps->snonce + WPS_SECRET_NONCE_LEN,
   1478 			WPS_SECRET_NONCE_LEN);
   1479 	return 0;
   1480 }
   1481 
   1482 
   1483 static int wps_build_cred_network_idx(struct wpabuf *msg,
   1484 				      const struct wps_credential *cred)
   1485 {
   1486 	wpa_printf(MSG_DEBUG, "WPS:  * Network Index (1)");
   1487 	wpabuf_put_be16(msg, ATTR_NETWORK_INDEX);
   1488 	wpabuf_put_be16(msg, 1);
   1489 	wpabuf_put_u8(msg, 1);
   1490 	return 0;
   1491 }
   1492 
   1493 
   1494 static int wps_build_cred_ssid(struct wpabuf *msg,
   1495 			       const struct wps_credential *cred)
   1496 {
   1497 	wpa_printf(MSG_DEBUG, "WPS:  * SSID");
   1498 	wpa_hexdump_ascii(MSG_DEBUG, "WPS: SSID for Credential",
   1499 			  cred->ssid, cred->ssid_len);
   1500 	wpabuf_put_be16(msg, ATTR_SSID);
   1501 	wpabuf_put_be16(msg, cred->ssid_len);
   1502 	wpabuf_put_data(msg, cred->ssid, cred->ssid_len);
   1503 	return 0;
   1504 }
   1505 
   1506 
   1507 static int wps_build_cred_auth_type(struct wpabuf *msg,
   1508 				    const struct wps_credential *cred)
   1509 {
   1510 	wpa_printf(MSG_DEBUG, "WPS:  * Authentication Type (0x%x)",
   1511 		   cred->auth_type);
   1512 	wpabuf_put_be16(msg, ATTR_AUTH_TYPE);
   1513 	wpabuf_put_be16(msg, 2);
   1514 	wpabuf_put_be16(msg, cred->auth_type);
   1515 	return 0;
   1516 }
   1517 
   1518 
   1519 static int wps_build_cred_encr_type(struct wpabuf *msg,
   1520 				    const struct wps_credential *cred)
   1521 {
   1522 	wpa_printf(MSG_DEBUG, "WPS:  * Encryption Type (0x%x)",
   1523 		   cred->encr_type);
   1524 	wpabuf_put_be16(msg, ATTR_ENCR_TYPE);
   1525 	wpabuf_put_be16(msg, 2);
   1526 	wpabuf_put_be16(msg, cred->encr_type);
   1527 	return 0;
   1528 }
   1529 
   1530 
   1531 static int wps_build_cred_network_key(struct wpabuf *msg,
   1532 				      const struct wps_credential *cred)
   1533 {
   1534 	wpa_printf(MSG_DEBUG, "WPS:  * Network Key (len=%d)",
   1535 		   (int) cred->key_len);
   1536 	wpa_hexdump_key(MSG_DEBUG, "WPS: Network Key",
   1537 			cred->key, cred->key_len);
   1538 	wpabuf_put_be16(msg, ATTR_NETWORK_KEY);
   1539 	wpabuf_put_be16(msg, cred->key_len);
   1540 	wpabuf_put_data(msg, cred->key, cred->key_len);
   1541 	return 0;
   1542 }
   1543 
   1544 
   1545 static int wps_build_credential(struct wpabuf *msg,
   1546 				const struct wps_credential *cred)
   1547 {
   1548 	if (wps_build_cred_network_idx(msg, cred) ||
   1549 	    wps_build_cred_ssid(msg, cred) ||
   1550 	    wps_build_cred_auth_type(msg, cred) ||
   1551 	    wps_build_cred_encr_type(msg, cred) ||
   1552 	    wps_build_cred_network_key(msg, cred) ||
   1553 	    wps_build_mac_addr(msg, cred->mac_addr))
   1554 		return -1;
   1555 	return 0;
   1556 }
   1557 
   1558 
   1559 int wps_build_credential_wrap(struct wpabuf *msg,
   1560 			      const struct wps_credential *cred)
   1561 {
   1562 	struct wpabuf *wbuf;
   1563 	wbuf = wpabuf_alloc(200);
   1564 	if (wbuf == NULL)
   1565 		return -1;
   1566 	if (wps_build_credential(wbuf, cred)) {
   1567 		wpabuf_free(wbuf);
   1568 		return -1;
   1569 	}
   1570 	wpabuf_put_be16(msg, ATTR_CRED);
   1571 	wpabuf_put_be16(msg, wpabuf_len(wbuf));
   1572 	wpabuf_put_buf(msg, wbuf);
   1573 	wpabuf_free(wbuf);
   1574 	return 0;
   1575 }
   1576 
   1577 
   1578 int wps_build_cred(struct wps_data *wps, struct wpabuf *msg)
   1579 {
   1580 	struct wpabuf *cred;
   1581 
   1582 	if (wps->wps->registrar->skip_cred_build)
   1583 		goto skip_cred_build;
   1584 
   1585 	wpa_printf(MSG_DEBUG, "WPS:  * Credential");
   1586 	if (wps->use_cred) {
   1587 		os_memcpy(&wps->cred, wps->use_cred, sizeof(wps->cred));
   1588 		goto use_provided;
   1589 	}
   1590 	os_memset(&wps->cred, 0, sizeof(wps->cred));
   1591 
   1592 	os_memcpy(wps->cred.ssid, wps->wps->ssid, wps->wps->ssid_len);
   1593 	wps->cred.ssid_len = wps->wps->ssid_len;
   1594 
   1595 	/* Select the best authentication and encryption type */
   1596 	if (wps->auth_type & WPS_AUTH_WPA2PSK)
   1597 		wps->auth_type = WPS_AUTH_WPA2PSK;
   1598 	else if (wps->auth_type & WPS_AUTH_WPAPSK)
   1599 		wps->auth_type = WPS_AUTH_WPAPSK;
   1600 	else if (wps->auth_type & WPS_AUTH_OPEN)
   1601 		wps->auth_type = WPS_AUTH_OPEN;
   1602 	else {
   1603 		wpa_printf(MSG_DEBUG, "WPS: Unsupported auth_type 0x%x",
   1604 			   wps->auth_type);
   1605 		return -1;
   1606 	}
   1607 	wps->cred.auth_type = wps->auth_type;
   1608 
   1609 	if (wps->auth_type == WPS_AUTH_WPA2PSK ||
   1610 	    wps->auth_type == WPS_AUTH_WPAPSK) {
   1611 		if (wps->encr_type & WPS_ENCR_AES)
   1612 			wps->encr_type = WPS_ENCR_AES;
   1613 		else if (wps->encr_type & WPS_ENCR_TKIP)
   1614 			wps->encr_type = WPS_ENCR_TKIP;
   1615 		else {
   1616 			wpa_printf(MSG_DEBUG, "WPS: No suitable encryption "
   1617 				   "type for WPA/WPA2");
   1618 			return -1;
   1619 		}
   1620 	} else {
   1621 		if (wps->encr_type & WPS_ENCR_NONE)
   1622 			wps->encr_type = WPS_ENCR_NONE;
   1623 #ifdef CONFIG_TESTING_OPTIONS
   1624 		else if (wps->encr_type & WPS_ENCR_WEP)
   1625 			wps->encr_type = WPS_ENCR_WEP;
   1626 #endif /* CONFIG_TESTING_OPTIONS */
   1627 		else {
   1628 			wpa_printf(MSG_DEBUG, "WPS: No suitable encryption "
   1629 				   "type for non-WPA/WPA2 mode");
   1630 			return -1;
   1631 		}
   1632 	}
   1633 	wps->cred.encr_type = wps->encr_type;
   1634 	/*
   1635 	 * Set MAC address in the Credential to be the Enrollee's MAC address
   1636 	 */
   1637 	os_memcpy(wps->cred.mac_addr, wps->mac_addr_e, ETH_ALEN);
   1638 
   1639 	if (wps->wps->wps_state == WPS_STATE_NOT_CONFIGURED && wps->wps->ap &&
   1640 	    !wps->wps->registrar->disable_auto_conf) {
   1641 		u8 r[16];
   1642 		/* Generate a random passphrase */
   1643 		if (random_get_bytes(r, sizeof(r)) < 0)
   1644 			return -1;
   1645 		os_free(wps->new_psk);
   1646 		wps->new_psk = base64_encode(r, sizeof(r), &wps->new_psk_len);
   1647 		if (wps->new_psk == NULL)
   1648 			return -1;
   1649 		wps->new_psk_len--; /* remove newline */
   1650 		while (wps->new_psk_len &&
   1651 		       wps->new_psk[wps->new_psk_len - 1] == '=')
   1652 			wps->new_psk_len--;
   1653 		wpa_hexdump_ascii_key(MSG_DEBUG, "WPS: Generated passphrase",
   1654 				      wps->new_psk, wps->new_psk_len);
   1655 		os_memcpy(wps->cred.key, wps->new_psk, wps->new_psk_len);
   1656 		wps->cred.key_len = wps->new_psk_len;
   1657 	} else if (!wps->wps->registrar->force_per_enrollee_psk &&
   1658 		   wps->use_psk_key && wps->wps->psk_set) {
   1659 		char hex[65];
   1660 		wpa_printf(MSG_DEBUG, "WPS: Use PSK format for Network Key");
   1661 		wpa_snprintf_hex(hex, sizeof(hex), wps->wps->psk, 32);
   1662 		os_memcpy(wps->cred.key, hex, 32 * 2);
   1663 		wps->cred.key_len = 32 * 2;
   1664 	} else if (!wps->wps->registrar->force_per_enrollee_psk &&
   1665 		   wps->wps->network_key) {
   1666 		os_memcpy(wps->cred.key, wps->wps->network_key,
   1667 			  wps->wps->network_key_len);
   1668 		wps->cred.key_len = wps->wps->network_key_len;
   1669 	} else if (wps->auth_type & (WPS_AUTH_WPAPSK | WPS_AUTH_WPA2PSK)) {
   1670 		char hex[65];
   1671 		/* Generate a random per-device PSK */
   1672 		os_free(wps->new_psk);
   1673 		wps->new_psk_len = 32;
   1674 		wps->new_psk = os_malloc(wps->new_psk_len);
   1675 		if (wps->new_psk == NULL)
   1676 			return -1;
   1677 		if (random_get_bytes(wps->new_psk, wps->new_psk_len) < 0) {
   1678 			os_free(wps->new_psk);
   1679 			wps->new_psk = NULL;
   1680 			return -1;
   1681 		}
   1682 		wpa_hexdump_key(MSG_DEBUG, "WPS: Generated per-device PSK",
   1683 				wps->new_psk, wps->new_psk_len);
   1684 		wpa_snprintf_hex(hex, sizeof(hex), wps->new_psk,
   1685 				 wps->new_psk_len);
   1686 		os_memcpy(wps->cred.key, hex, wps->new_psk_len * 2);
   1687 		wps->cred.key_len = wps->new_psk_len * 2;
   1688 	}
   1689 
   1690 use_provided:
   1691 #ifdef CONFIG_WPS_TESTING
   1692 	if (wps_testing_dummy_cred)
   1693 		cred = wpabuf_alloc(200);
   1694 	else
   1695 		cred = NULL;
   1696 	if (cred) {
   1697 		struct wps_credential dummy;
   1698 		wpa_printf(MSG_DEBUG, "WPS: Add dummy credential");
   1699 		os_memset(&dummy, 0, sizeof(dummy));
   1700 		os_memcpy(dummy.ssid, "dummy", 5);
   1701 		dummy.ssid_len = 5;
   1702 		dummy.auth_type = WPS_AUTH_WPA2PSK;
   1703 		dummy.encr_type = WPS_ENCR_AES;
   1704 		os_memcpy(dummy.key, "dummy psk", 9);
   1705 		dummy.key_len = 9;
   1706 		os_memcpy(dummy.mac_addr, wps->mac_addr_e, ETH_ALEN);
   1707 		wps_build_credential(cred, &dummy);
   1708 		wpa_hexdump_buf(MSG_DEBUG, "WPS: Dummy Credential", cred);
   1709 
   1710 		wpabuf_put_be16(msg, ATTR_CRED);
   1711 		wpabuf_put_be16(msg, wpabuf_len(cred));
   1712 		wpabuf_put_buf(msg, cred);
   1713 
   1714 		wpabuf_free(cred);
   1715 	}
   1716 #endif /* CONFIG_WPS_TESTING */
   1717 
   1718 	cred = wpabuf_alloc(200);
   1719 	if (cred == NULL)
   1720 		return -1;
   1721 
   1722 	if (wps_build_credential(cred, &wps->cred)) {
   1723 		wpabuf_free(cred);
   1724 		return -1;
   1725 	}
   1726 
   1727 	wpabuf_put_be16(msg, ATTR_CRED);
   1728 	wpabuf_put_be16(msg, wpabuf_len(cred));
   1729 	wpabuf_put_buf(msg, cred);
   1730 	wpabuf_free(cred);
   1731 
   1732 skip_cred_build:
   1733 	if (wps->wps->registrar->extra_cred) {
   1734 		wpa_printf(MSG_DEBUG, "WPS:  * Credential (pre-configured)");
   1735 		wpabuf_put_buf(msg, wps->wps->registrar->extra_cred);
   1736 	}
   1737 
   1738 	return 0;
   1739 }
   1740 
   1741 
   1742 static int wps_build_ap_settings(struct wps_data *wps, struct wpabuf *msg)
   1743 {
   1744 	wpa_printf(MSG_DEBUG, "WPS:  * AP Settings");
   1745 
   1746 	if (wps_build_credential(msg, &wps->cred))
   1747 		return -1;
   1748 
   1749 	return 0;
   1750 }
   1751 
   1752 
   1753 static struct wpabuf * wps_build_ap_cred(struct wps_data *wps)
   1754 {
   1755 	struct wpabuf *msg, *plain;
   1756 
   1757 	msg = wpabuf_alloc(1000);
   1758 	if (msg == NULL)
   1759 		return NULL;
   1760 
   1761 	plain = wpabuf_alloc(200);
   1762 	if (plain == NULL) {
   1763 		wpabuf_free(msg);
   1764 		return NULL;
   1765 	}
   1766 
   1767 	if (wps_build_ap_settings(wps, plain)) {
   1768 		wpabuf_free(plain);
   1769 		wpabuf_free(msg);
   1770 		return NULL;
   1771 	}
   1772 
   1773 	wpabuf_put_be16(msg, ATTR_CRED);
   1774 	wpabuf_put_be16(msg, wpabuf_len(plain));
   1775 	wpabuf_put_buf(msg, plain);
   1776 	wpabuf_free(plain);
   1777 
   1778 	return msg;
   1779 }
   1780 
   1781 
   1782 static struct wpabuf * wps_build_m2(struct wps_data *wps)
   1783 {
   1784 	struct wpabuf *msg;
   1785 	int config_in_m2 = 0;
   1786 
   1787 	if (random_get_bytes(wps->nonce_r, WPS_NONCE_LEN) < 0)
   1788 		return NULL;
   1789 	wpa_hexdump(MSG_DEBUG, "WPS: Registrar Nonce",
   1790 		    wps->nonce_r, WPS_NONCE_LEN);
   1791 	wpa_hexdump(MSG_DEBUG, "WPS: UUID-R", wps->uuid_r, WPS_UUID_LEN);
   1792 
   1793 	wpa_printf(MSG_DEBUG, "WPS: Building Message M2");
   1794 	msg = wpabuf_alloc(1000);
   1795 	if (msg == NULL)
   1796 		return NULL;
   1797 
   1798 	if (wps_build_version(msg) ||
   1799 	    wps_build_msg_type(msg, WPS_M2) ||
   1800 	    wps_build_enrollee_nonce(wps, msg) ||
   1801 	    wps_build_registrar_nonce(wps, msg) ||
   1802 	    wps_build_uuid_r(wps, msg) ||
   1803 	    wps_build_public_key(wps, msg) ||
   1804 	    wps_derive_keys(wps) ||
   1805 	    wps_build_auth_type_flags(wps, msg) ||
   1806 	    wps_build_encr_type_flags(wps, msg) ||
   1807 	    wps_build_conn_type_flags(wps, msg) ||
   1808 	    wps_build_config_methods_r(wps->wps->registrar, msg) ||
   1809 	    wps_build_device_attrs(&wps->wps->dev, msg) ||
   1810 	    wps_build_rf_bands(&wps->wps->dev, msg,
   1811 			       wps->wps->rf_band_cb(wps->wps->cb_ctx)) ||
   1812 	    wps_build_assoc_state(wps, msg) ||
   1813 	    wps_build_config_error(msg, WPS_CFG_NO_ERROR) ||
   1814 	    wps_build_dev_password_id(msg, wps->dev_pw_id) ||
   1815 	    wps_build_os_version(&wps->wps->dev, msg) ||
   1816 	    wps_build_wfa_ext(msg, 0, NULL, 0)) {
   1817 		wpabuf_free(msg);
   1818 		return NULL;
   1819 	}
   1820 
   1821 #ifdef CONFIG_WPS_NFC
   1822 	if (wps->nfc_pw_token && wps->nfc_pw_token->pk_hash_provided_oob &&
   1823 	    wps->nfc_pw_token->pw_id == DEV_PW_NFC_CONNECTION_HANDOVER) {
   1824 		/*
   1825 		 * Use abbreviated handshake since public key hash allowed
   1826 		 * Enrollee to validate our public key similarly to how Enrollee
   1827 		 * public key was validated. There is no need to validate Device
   1828 		 * Password in this case.
   1829 		 */
   1830 		struct wpabuf *plain = wpabuf_alloc(500);
   1831 		if (plain == NULL ||
   1832 		    wps_build_cred(wps, plain) ||
   1833 		    wps_build_key_wrap_auth(wps, plain) ||
   1834 		    wps_build_encr_settings(wps, msg, plain)) {
   1835 			wpabuf_free(msg);
   1836 			wpabuf_free(plain);
   1837 			return NULL;
   1838 		}
   1839 		wpabuf_free(plain);
   1840 		config_in_m2 = 1;
   1841 	}
   1842 #endif /* CONFIG_WPS_NFC */
   1843 
   1844 	if (wps_build_authenticator(wps, msg)) {
   1845 		wpabuf_free(msg);
   1846 		return NULL;
   1847 	}
   1848 
   1849 	wps->int_reg = 1;
   1850 	wps->state = config_in_m2 ? RECV_DONE : RECV_M3;
   1851 	return msg;
   1852 }
   1853 
   1854 
   1855 static struct wpabuf * wps_build_m2d(struct wps_data *wps)
   1856 {
   1857 	struct wpabuf *msg;
   1858 	u16 err = wps->config_error;
   1859 
   1860 	wpa_printf(MSG_DEBUG, "WPS: Building Message M2D");
   1861 	msg = wpabuf_alloc(1000);
   1862 	if (msg == NULL)
   1863 		return NULL;
   1864 
   1865 	if (wps->wps->ap && wps->wps->ap_setup_locked &&
   1866 	    err == WPS_CFG_NO_ERROR)
   1867 		err = WPS_CFG_SETUP_LOCKED;
   1868 
   1869 	if (wps_build_version(msg) ||
   1870 	    wps_build_msg_type(msg, WPS_M2D) ||
   1871 	    wps_build_enrollee_nonce(wps, msg) ||
   1872 	    wps_build_registrar_nonce(wps, msg) ||
   1873 	    wps_build_uuid_r(wps, msg) ||
   1874 	    wps_build_auth_type_flags(wps, msg) ||
   1875 	    wps_build_encr_type_flags(wps, msg) ||
   1876 	    wps_build_conn_type_flags(wps, msg) ||
   1877 	    wps_build_config_methods_r(wps->wps->registrar, msg) ||
   1878 	    wps_build_device_attrs(&wps->wps->dev, msg) ||
   1879 	    wps_build_rf_bands(&wps->wps->dev, msg,
   1880 			       wps->wps->rf_band_cb(wps->wps->cb_ctx)) ||
   1881 	    wps_build_assoc_state(wps, msg) ||
   1882 	    wps_build_config_error(msg, err) ||
   1883 	    wps_build_os_version(&wps->wps->dev, msg) ||
   1884 	    wps_build_wfa_ext(msg, 0, NULL, 0)) {
   1885 		wpabuf_free(msg);
   1886 		return NULL;
   1887 	}
   1888 
   1889 	wps->state = RECV_M2D_ACK;
   1890 	return msg;
   1891 }
   1892 
   1893 
   1894 static struct wpabuf * wps_build_m4(struct wps_data *wps)
   1895 {
   1896 	struct wpabuf *msg, *plain;
   1897 
   1898 	wpa_printf(MSG_DEBUG, "WPS: Building Message M4");
   1899 
   1900 	wps_derive_psk(wps, wps->dev_password, wps->dev_password_len);
   1901 
   1902 	plain = wpabuf_alloc(200);
   1903 	if (plain == NULL)
   1904 		return NULL;
   1905 
   1906 	msg = wpabuf_alloc(1000);
   1907 	if (msg == NULL) {
   1908 		wpabuf_free(plain);
   1909 		return NULL;
   1910 	}
   1911 
   1912 	if (wps_build_version(msg) ||
   1913 	    wps_build_msg_type(msg, WPS_M4) ||
   1914 	    wps_build_enrollee_nonce(wps, msg) ||
   1915 	    wps_build_r_hash(wps, msg) ||
   1916 	    wps_build_r_snonce1(wps, plain) ||
   1917 	    wps_build_key_wrap_auth(wps, plain) ||
   1918 	    wps_build_encr_settings(wps, msg, plain) ||
   1919 	    wps_build_wfa_ext(msg, 0, NULL, 0) ||
   1920 	    wps_build_authenticator(wps, msg)) {
   1921 		wpabuf_free(plain);
   1922 		wpabuf_free(msg);
   1923 		return NULL;
   1924 	}
   1925 	wpabuf_free(plain);
   1926 
   1927 	wps->state = RECV_M5;
   1928 	return msg;
   1929 }
   1930 
   1931 
   1932 static struct wpabuf * wps_build_m6(struct wps_data *wps)
   1933 {
   1934 	struct wpabuf *msg, *plain;
   1935 
   1936 	wpa_printf(MSG_DEBUG, "WPS: Building Message M6");
   1937 
   1938 	plain = wpabuf_alloc(200);
   1939 	if (plain == NULL)
   1940 		return NULL;
   1941 
   1942 	msg = wpabuf_alloc(1000);
   1943 	if (msg == NULL) {
   1944 		wpabuf_free(plain);
   1945 		return NULL;
   1946 	}
   1947 
   1948 	if (wps_build_version(msg) ||
   1949 	    wps_build_msg_type(msg, WPS_M6) ||
   1950 	    wps_build_enrollee_nonce(wps, msg) ||
   1951 	    wps_build_r_snonce2(wps, plain) ||
   1952 	    wps_build_key_wrap_auth(wps, plain) ||
   1953 	    wps_build_encr_settings(wps, msg, plain) ||
   1954 	    wps_build_wfa_ext(msg, 0, NULL, 0) ||
   1955 	    wps_build_authenticator(wps, msg)) {
   1956 		wpabuf_free(plain);
   1957 		wpabuf_free(msg);
   1958 		return NULL;
   1959 	}
   1960 	wpabuf_free(plain);
   1961 
   1962 	wps->wps_pin_revealed = 1;
   1963 	wps->state = RECV_M7;
   1964 	return msg;
   1965 }
   1966 
   1967 
   1968 static struct wpabuf * wps_build_m8(struct wps_data *wps)
   1969 {
   1970 	struct wpabuf *msg, *plain;
   1971 
   1972 	wpa_printf(MSG_DEBUG, "WPS: Building Message M8");
   1973 
   1974 	plain = wpabuf_alloc(500);
   1975 	if (plain == NULL)
   1976 		return NULL;
   1977 
   1978 	msg = wpabuf_alloc(1000);
   1979 	if (msg == NULL) {
   1980 		wpabuf_free(plain);
   1981 		return NULL;
   1982 	}
   1983 
   1984 	if (wps_build_version(msg) ||
   1985 	    wps_build_msg_type(msg, WPS_M8) ||
   1986 	    wps_build_enrollee_nonce(wps, msg) ||
   1987 	    ((wps->wps->ap || wps->er) && wps_build_cred(wps, plain)) ||
   1988 	    (!wps->wps->ap && !wps->er && wps_build_ap_settings(wps, plain)) ||
   1989 	    wps_build_key_wrap_auth(wps, plain) ||
   1990 	    wps_build_encr_settings(wps, msg, plain) ||
   1991 	    wps_build_wfa_ext(msg, 0, NULL, 0) ||
   1992 	    wps_build_authenticator(wps, msg)) {
   1993 		wpabuf_free(plain);
   1994 		wpabuf_free(msg);
   1995 		return NULL;
   1996 	}
   1997 	wpabuf_free(plain);
   1998 
   1999 	wps->state = RECV_DONE;
   2000 	return msg;
   2001 }
   2002 
   2003 
   2004 struct wpabuf * wps_registrar_get_msg(struct wps_data *wps,
   2005 				      enum wsc_op_code *op_code)
   2006 {
   2007 	struct wpabuf *msg;
   2008 
   2009 #ifdef CONFIG_WPS_UPNP
   2010 	if (!wps->int_reg && wps->wps->wps_upnp) {
   2011 		struct upnp_pending_message *p, *prev = NULL;
   2012 		if (wps->ext_reg > 1)
   2013 			wps_registrar_free_pending_m2(wps->wps);
   2014 		p = wps->wps->upnp_msgs;
   2015 		/* TODO: check pending message MAC address */
   2016 		while (p && p->next) {
   2017 			prev = p;
   2018 			p = p->next;
   2019 		}
   2020 		if (p) {
   2021 			wpa_printf(MSG_DEBUG, "WPS: Use pending message from "
   2022 				   "UPnP");
   2023 			if (prev)
   2024 				prev->next = NULL;
   2025 			else
   2026 				wps->wps->upnp_msgs = NULL;
   2027 			msg = p->msg;
   2028 			switch (p->type) {
   2029 			case WPS_WSC_ACK:
   2030 				*op_code = WSC_ACK;
   2031 				break;
   2032 			case WPS_WSC_NACK:
   2033 				*op_code = WSC_NACK;
   2034 				break;
   2035 			default:
   2036 				*op_code = WSC_MSG;
   2037 				break;
   2038 			}
   2039 			os_free(p);
   2040 			if (wps->ext_reg == 0)
   2041 				wps->ext_reg = 1;
   2042 			return msg;
   2043 		}
   2044 	}
   2045 	if (wps->ext_reg) {
   2046 		wpa_printf(MSG_DEBUG, "WPS: Using external Registrar, but no "
   2047 			   "pending message available");
   2048 		return NULL;
   2049 	}
   2050 #endif /* CONFIG_WPS_UPNP */
   2051 
   2052 	switch (wps->state) {
   2053 	case SEND_M2:
   2054 		if (wps_get_dev_password(wps) < 0)
   2055 			msg = wps_build_m2d(wps);
   2056 		else
   2057 			msg = wps_build_m2(wps);
   2058 		*op_code = WSC_MSG;
   2059 		break;
   2060 	case SEND_M2D:
   2061 		msg = wps_build_m2d(wps);
   2062 		*op_code = WSC_MSG;
   2063 		break;
   2064 	case SEND_M4:
   2065 		msg = wps_build_m4(wps);
   2066 		*op_code = WSC_MSG;
   2067 		break;
   2068 	case SEND_M6:
   2069 		msg = wps_build_m6(wps);
   2070 		*op_code = WSC_MSG;
   2071 		break;
   2072 	case SEND_M8:
   2073 		msg = wps_build_m8(wps);
   2074 		*op_code = WSC_MSG;
   2075 		break;
   2076 	case RECV_DONE:
   2077 		msg = wps_build_wsc_ack(wps);
   2078 		*op_code = WSC_ACK;
   2079 		break;
   2080 	case SEND_WSC_NACK:
   2081 		msg = wps_build_wsc_nack(wps);
   2082 		*op_code = WSC_NACK;
   2083 		break;
   2084 	default:
   2085 		wpa_printf(MSG_DEBUG, "WPS: Unsupported state %d for building "
   2086 			   "a message", wps->state);
   2087 		msg = NULL;
   2088 		break;
   2089 	}
   2090 
   2091 	if (*op_code == WSC_MSG && msg) {
   2092 		/* Save a copy of the last message for Authenticator derivation
   2093 		 */
   2094 		wpabuf_free(wps->last_msg);
   2095 		wps->last_msg = wpabuf_dup(msg);
   2096 	}
   2097 
   2098 	return msg;
   2099 }
   2100 
   2101 
   2102 static int wps_process_enrollee_nonce(struct wps_data *wps, const u8 *e_nonce)
   2103 {
   2104 	if (e_nonce == NULL) {
   2105 		wpa_printf(MSG_DEBUG, "WPS: No Enrollee Nonce received");
   2106 		return -1;
   2107 	}
   2108 
   2109 	os_memcpy(wps->nonce_e, e_nonce, WPS_NONCE_LEN);
   2110 	wpa_hexdump(MSG_DEBUG, "WPS: Enrollee Nonce",
   2111 		    wps->nonce_e, WPS_NONCE_LEN);
   2112 
   2113 	return 0;
   2114 }
   2115 
   2116 
   2117 static int wps_process_registrar_nonce(struct wps_data *wps, const u8 *r_nonce)
   2118 {
   2119 	if (r_nonce == NULL) {
   2120 		wpa_printf(MSG_DEBUG, "WPS: No Registrar Nonce received");
   2121 		return -1;
   2122 	}
   2123 
   2124 	if (os_memcmp(wps->nonce_r, r_nonce, WPS_NONCE_LEN) != 0) {
   2125 		wpa_printf(MSG_DEBUG, "WPS: Invalid Registrar Nonce received");
   2126 		return -1;
   2127 	}
   2128 
   2129 	return 0;
   2130 }
   2131 
   2132 
   2133 static int wps_process_uuid_e(struct wps_data *wps, const u8 *uuid_e)
   2134 {
   2135 	if (uuid_e == NULL) {
   2136 		wpa_printf(MSG_DEBUG, "WPS: No UUID-E received");
   2137 		return -1;
   2138 	}
   2139 
   2140 	os_memcpy(wps->uuid_e, uuid_e, WPS_UUID_LEN);
   2141 	wpa_hexdump(MSG_DEBUG, "WPS: UUID-E", wps->uuid_e, WPS_UUID_LEN);
   2142 
   2143 	return 0;
   2144 }
   2145 
   2146 
   2147 static int wps_process_dev_password_id(struct wps_data *wps, const u8 *pw_id)
   2148 {
   2149 	if (pw_id == NULL) {
   2150 		wpa_printf(MSG_DEBUG, "WPS: No Device Password ID received");
   2151 		return -1;
   2152 	}
   2153 
   2154 	wps->dev_pw_id = WPA_GET_BE16(pw_id);
   2155 	wpa_printf(MSG_DEBUG, "WPS: Device Password ID %d", wps->dev_pw_id);
   2156 
   2157 	return 0;
   2158 }
   2159 
   2160 
   2161 static int wps_process_e_hash1(struct wps_data *wps, const u8 *e_hash1)
   2162 {
   2163 	if (e_hash1 == NULL) {
   2164 		wpa_printf(MSG_DEBUG, "WPS: No E-Hash1 received");
   2165 		return -1;
   2166 	}
   2167 
   2168 	os_memcpy(wps->peer_hash1, e_hash1, WPS_HASH_LEN);
   2169 	wpa_hexdump(MSG_DEBUG, "WPS: E-Hash1", wps->peer_hash1, WPS_HASH_LEN);
   2170 
   2171 	return 0;
   2172 }
   2173 
   2174 
   2175 static int wps_process_e_hash2(struct wps_data *wps, const u8 *e_hash2)
   2176 {
   2177 	if (e_hash2 == NULL) {
   2178 		wpa_printf(MSG_DEBUG, "WPS: No E-Hash2 received");
   2179 		return -1;
   2180 	}
   2181 
   2182 	os_memcpy(wps->peer_hash2, e_hash2, WPS_HASH_LEN);
   2183 	wpa_hexdump(MSG_DEBUG, "WPS: E-Hash2", wps->peer_hash2, WPS_HASH_LEN);
   2184 
   2185 	return 0;
   2186 }
   2187 
   2188 
   2189 static int wps_process_e_snonce1(struct wps_data *wps, const u8 *e_snonce1)
   2190 {
   2191 	u8 hash[SHA256_MAC_LEN];
   2192 	const u8 *addr[4];
   2193 	size_t len[4];
   2194 
   2195 	if (e_snonce1 == NULL) {
   2196 		wpa_printf(MSG_DEBUG, "WPS: No E-SNonce1 received");
   2197 		return -1;
   2198 	}
   2199 
   2200 	wpa_hexdump_key(MSG_DEBUG, "WPS: E-SNonce1", e_snonce1,
   2201 			WPS_SECRET_NONCE_LEN);
   2202 
   2203 	/* E-Hash1 = HMAC_AuthKey(E-S1 || PSK1 || PK_E || PK_R) */
   2204 	addr[0] = e_snonce1;
   2205 	len[0] = WPS_SECRET_NONCE_LEN;
   2206 	addr[1] = wps->psk1;
   2207 	len[1] = WPS_PSK_LEN;
   2208 	addr[2] = wpabuf_head(wps->dh_pubkey_e);
   2209 	len[2] = wpabuf_len(wps->dh_pubkey_e);
   2210 	addr[3] = wpabuf_head(wps->dh_pubkey_r);
   2211 	len[3] = wpabuf_len(wps->dh_pubkey_r);
   2212 	hmac_sha256_vector(wps->authkey, WPS_AUTHKEY_LEN, 4, addr, len, hash);
   2213 
   2214 	if (os_memcmp_const(wps->peer_hash1, hash, WPS_HASH_LEN) != 0) {
   2215 		wpa_printf(MSG_DEBUG, "WPS: E-Hash1 derived from E-S1 does "
   2216 			   "not match with the pre-committed value");
   2217 		wps->config_error = WPS_CFG_DEV_PASSWORD_AUTH_FAILURE;
   2218 		wps_pwd_auth_fail_event(wps->wps, 0, 1, wps->mac_addr_e);
   2219 		return -1;
   2220 	}
   2221 
   2222 	wpa_printf(MSG_DEBUG, "WPS: Enrollee proved knowledge of the first "
   2223 		   "half of the device password");
   2224 
   2225 	return 0;
   2226 }
   2227 
   2228 
   2229 static int wps_process_e_snonce2(struct wps_data *wps, const u8 *e_snonce2)
   2230 {
   2231 	u8 hash[SHA256_MAC_LEN];
   2232 	const u8 *addr[4];
   2233 	size_t len[4];
   2234 
   2235 	if (e_snonce2 == NULL) {
   2236 		wpa_printf(MSG_DEBUG, "WPS: No E-SNonce2 received");
   2237 		return -1;
   2238 	}
   2239 
   2240 	wpa_hexdump_key(MSG_DEBUG, "WPS: E-SNonce2", e_snonce2,
   2241 			WPS_SECRET_NONCE_LEN);
   2242 
   2243 	/* E-Hash2 = HMAC_AuthKey(E-S2 || PSK2 || PK_E || PK_R) */
   2244 	addr[0] = e_snonce2;
   2245 	len[0] = WPS_SECRET_NONCE_LEN;
   2246 	addr[1] = wps->psk2;
   2247 	len[1] = WPS_PSK_LEN;
   2248 	addr[2] = wpabuf_head(wps->dh_pubkey_e);
   2249 	len[2] = wpabuf_len(wps->dh_pubkey_e);
   2250 	addr[3] = wpabuf_head(wps->dh_pubkey_r);
   2251 	len[3] = wpabuf_len(wps->dh_pubkey_r);
   2252 	hmac_sha256_vector(wps->authkey, WPS_AUTHKEY_LEN, 4, addr, len, hash);
   2253 
   2254 	if (os_memcmp_const(wps->peer_hash2, hash, WPS_HASH_LEN) != 0) {
   2255 		wpa_printf(MSG_DEBUG, "WPS: E-Hash2 derived from E-S2 does "
   2256 			   "not match with the pre-committed value");
   2257 		wps_registrar_invalidate_pin(wps->wps->registrar, wps->uuid_e);
   2258 		wps->config_error = WPS_CFG_DEV_PASSWORD_AUTH_FAILURE;
   2259 		wps_pwd_auth_fail_event(wps->wps, 0, 2, wps->mac_addr_e);
   2260 		return -1;
   2261 	}
   2262 
   2263 	wpa_printf(MSG_DEBUG, "WPS: Enrollee proved knowledge of the second "
   2264 		   "half of the device password");
   2265 	wps->wps_pin_revealed = 0;
   2266 	wps_registrar_unlock_pin(wps->wps->registrar, wps->uuid_e);
   2267 
   2268 	/*
   2269 	 * In case wildcard PIN is used and WPS handshake succeeds in the first
   2270 	 * attempt, wps_registrar_unlock_pin() would not free the PIN, so make
   2271 	 * sure the PIN gets invalidated here.
   2272 	 */
   2273 	wps_registrar_invalidate_pin(wps->wps->registrar, wps->uuid_e);
   2274 
   2275 	return 0;
   2276 }
   2277 
   2278 
   2279 static int wps_process_mac_addr(struct wps_data *wps, const u8 *mac_addr)
   2280 {
   2281 	if (mac_addr == NULL) {
   2282 		wpa_printf(MSG_DEBUG, "WPS: No MAC Address received");
   2283 		return -1;
   2284 	}
   2285 
   2286 	wpa_printf(MSG_DEBUG, "WPS: Enrollee MAC Address " MACSTR,
   2287 		   MAC2STR(mac_addr));
   2288 	os_memcpy(wps->mac_addr_e, mac_addr, ETH_ALEN);
   2289 	os_memcpy(wps->peer_dev.mac_addr, mac_addr, ETH_ALEN);
   2290 
   2291 	return 0;
   2292 }
   2293 
   2294 
   2295 static int wps_process_pubkey(struct wps_data *wps, const u8 *pk,
   2296 			      size_t pk_len)
   2297 {
   2298 	if (pk == NULL || pk_len == 0) {
   2299 		wpa_printf(MSG_DEBUG, "WPS: No Public Key received");
   2300 		return -1;
   2301 	}
   2302 
   2303 	wpabuf_free(wps->dh_pubkey_e);
   2304 	wps->dh_pubkey_e = wpabuf_alloc_copy(pk, pk_len);
   2305 	if (wps->dh_pubkey_e == NULL)
   2306 		return -1;
   2307 
   2308 	return 0;
   2309 }
   2310 
   2311 
   2312 static int wps_process_auth_type_flags(struct wps_data *wps, const u8 *auth)
   2313 {
   2314 	u16 auth_types;
   2315 
   2316 	if (auth == NULL) {
   2317 		wpa_printf(MSG_DEBUG, "WPS: No Authentication Type flags "
   2318 			   "received");
   2319 		return -1;
   2320 	}
   2321 
   2322 	auth_types = WPA_GET_BE16(auth);
   2323 
   2324 	wpa_printf(MSG_DEBUG, "WPS: Enrollee Authentication Type flags 0x%x",
   2325 		   auth_types);
   2326 	wps->auth_type = wps->wps->auth_types & auth_types;
   2327 	if (wps->auth_type == 0) {
   2328 		wpa_printf(MSG_DEBUG, "WPS: No match in supported "
   2329 			   "authentication types (own 0x%x Enrollee 0x%x)",
   2330 			   wps->wps->auth_types, auth_types);
   2331 #ifdef WPS_WORKAROUNDS
   2332 		/*
   2333 		 * Some deployed implementations seem to advertise incorrect
   2334 		 * information in this attribute. For example, Linksys WRT350N
   2335 		 * seems to have a byteorder bug that breaks this negotiation.
   2336 		 * In order to interoperate with existing implementations,
   2337 		 * assume that the Enrollee supports everything we do.
   2338 		 */
   2339 		wpa_printf(MSG_DEBUG, "WPS: Workaround - assume Enrollee "
   2340 			   "does not advertise supported authentication types "
   2341 			   "correctly");
   2342 		wps->auth_type = wps->wps->auth_types;
   2343 #else /* WPS_WORKAROUNDS */
   2344 		return -1;
   2345 #endif /* WPS_WORKAROUNDS */
   2346 	}
   2347 
   2348 	return 0;
   2349 }
   2350 
   2351 
   2352 static int wps_process_encr_type_flags(struct wps_data *wps, const u8 *encr)
   2353 {
   2354 	u16 encr_types;
   2355 
   2356 	if (encr == NULL) {
   2357 		wpa_printf(MSG_DEBUG, "WPS: No Encryption Type flags "
   2358 			   "received");
   2359 		return -1;
   2360 	}
   2361 
   2362 	encr_types = WPA_GET_BE16(encr);
   2363 
   2364 	wpa_printf(MSG_DEBUG, "WPS: Enrollee Encryption Type flags 0x%x",
   2365 		   encr_types);
   2366 	wps->encr_type = wps->wps->encr_types & encr_types;
   2367 	if (wps->encr_type == 0) {
   2368 		wpa_printf(MSG_DEBUG, "WPS: No match in supported "
   2369 			   "encryption types (own 0x%x Enrollee 0x%x)",
   2370 			   wps->wps->encr_types, encr_types);
   2371 #ifdef WPS_WORKAROUNDS
   2372 		/*
   2373 		 * Some deployed implementations seem to advertise incorrect
   2374 		 * information in this attribute. For example, Linksys WRT350N
   2375 		 * seems to have a byteorder bug that breaks this negotiation.
   2376 		 * In order to interoperate with existing implementations,
   2377 		 * assume that the Enrollee supports everything we do.
   2378 		 */
   2379 		wpa_printf(MSG_DEBUG, "WPS: Workaround - assume Enrollee "
   2380 			   "does not advertise supported encryption types "
   2381 			   "correctly");
   2382 		wps->encr_type = wps->wps->encr_types;
   2383 #else /* WPS_WORKAROUNDS */
   2384 		return -1;
   2385 #endif /* WPS_WORKAROUNDS */
   2386 	}
   2387 
   2388 	return 0;
   2389 }
   2390 
   2391 
   2392 static int wps_process_conn_type_flags(struct wps_data *wps, const u8 *conn)
   2393 {
   2394 	if (conn == NULL) {
   2395 		wpa_printf(MSG_DEBUG, "WPS: No Connection Type flags "
   2396 			   "received");
   2397 		return -1;
   2398 	}
   2399 
   2400 	wpa_printf(MSG_DEBUG, "WPS: Enrollee Connection Type flags 0x%x",
   2401 		   *conn);
   2402 
   2403 	return 0;
   2404 }
   2405 
   2406 
   2407 static int wps_process_config_methods(struct wps_data *wps, const u8 *methods)
   2408 {
   2409 	u16 m;
   2410 
   2411 	if (methods == NULL) {
   2412 		wpa_printf(MSG_DEBUG, "WPS: No Config Methods received");
   2413 		return -1;
   2414 	}
   2415 
   2416 	m = WPA_GET_BE16(methods);
   2417 
   2418 	wpa_printf(MSG_DEBUG, "WPS: Enrollee Config Methods 0x%x"
   2419 		   "%s%s%s%s%s%s%s%s%s", m,
   2420 		   m & WPS_CONFIG_USBA ? " [USBA]" : "",
   2421 		   m & WPS_CONFIG_ETHERNET ? " [Ethernet]" : "",
   2422 		   m & WPS_CONFIG_LABEL ? " [Label]" : "",
   2423 		   m & WPS_CONFIG_DISPLAY ? " [Display]" : "",
   2424 		   m & WPS_CONFIG_EXT_NFC_TOKEN ? " [Ext NFC Token]" : "",
   2425 		   m & WPS_CONFIG_INT_NFC_TOKEN ? " [Int NFC Token]" : "",
   2426 		   m & WPS_CONFIG_NFC_INTERFACE ? " [NFC]" : "",
   2427 		   m & WPS_CONFIG_PUSHBUTTON ? " [PBC]" : "",
   2428 		   m & WPS_CONFIG_KEYPAD ? " [Keypad]" : "");
   2429 
   2430 	if (!(m & WPS_CONFIG_DISPLAY) && !wps->use_psk_key) {
   2431 		/*
   2432 		 * The Enrollee does not have a display so it is unlikely to be
   2433 		 * able to show the passphrase to a user and as such, could
   2434 		 * benefit from receiving PSK to reduce key derivation time.
   2435 		 */
   2436 		wpa_printf(MSG_DEBUG, "WPS: Prefer PSK format key due to "
   2437 			   "Enrollee not supporting display");
   2438 		wps->use_psk_key = 1;
   2439 	}
   2440 
   2441 	return 0;
   2442 }
   2443 
   2444 
   2445 static int wps_process_wps_state(struct wps_data *wps, const u8 *state)
   2446 {
   2447 	if (state == NULL) {
   2448 		wpa_printf(MSG_DEBUG, "WPS: No Wi-Fi Protected Setup State "
   2449 			   "received");
   2450 		return -1;
   2451 	}
   2452 
   2453 	wpa_printf(MSG_DEBUG, "WPS: Enrollee Wi-Fi Protected Setup State %d",
   2454 		   *state);
   2455 
   2456 	return 0;
   2457 }
   2458 
   2459 
   2460 static int wps_process_assoc_state(struct wps_data *wps, const u8 *assoc)
   2461 {
   2462 	u16 a;
   2463 
   2464 	if (assoc == NULL) {
   2465 		wpa_printf(MSG_DEBUG, "WPS: No Association State received");
   2466 		return -1;
   2467 	}
   2468 
   2469 	a = WPA_GET_BE16(assoc);
   2470 	wpa_printf(MSG_DEBUG, "WPS: Enrollee Association State %d", a);
   2471 
   2472 	return 0;
   2473 }
   2474 
   2475 
   2476 static int wps_process_config_error(struct wps_data *wps, const u8 *err)
   2477 {
   2478 	u16 e;
   2479 
   2480 	if (err == NULL) {
   2481 		wpa_printf(MSG_DEBUG, "WPS: No Configuration Error received");
   2482 		return -1;
   2483 	}
   2484 
   2485 	e = WPA_GET_BE16(err);
   2486 	wpa_printf(MSG_DEBUG, "WPS: Enrollee Configuration Error %d", e);
   2487 
   2488 	return 0;
   2489 }
   2490 
   2491 
   2492 static int wps_registrar_p2p_dev_addr_match(struct wps_data *wps)
   2493 {
   2494 #ifdef CONFIG_P2P
   2495 	struct wps_registrar *reg = wps->wps->registrar;
   2496 
   2497 	if (is_zero_ether_addr(reg->p2p_dev_addr))
   2498 		return 1; /* no filtering in use */
   2499 
   2500 	if (os_memcmp(reg->p2p_dev_addr, wps->p2p_dev_addr, ETH_ALEN) != 0) {
   2501 		wpa_printf(MSG_DEBUG, "WPS: No match on P2P Device Address "
   2502 			   "filtering for PBC: expected " MACSTR " was "
   2503 			   MACSTR " - indicate PBC session overlap",
   2504 			   MAC2STR(reg->p2p_dev_addr),
   2505 			   MAC2STR(wps->p2p_dev_addr));
   2506 		return 0;
   2507 	}
   2508 #endif /* CONFIG_P2P */
   2509 	return 1;
   2510 }
   2511 
   2512 
   2513 static int wps_registrar_skip_overlap(struct wps_data *wps)
   2514 {
   2515 #ifdef CONFIG_P2P
   2516 	struct wps_registrar *reg = wps->wps->registrar;
   2517 
   2518 	if (is_zero_ether_addr(reg->p2p_dev_addr))
   2519 		return 0; /* no specific Enrollee selected */
   2520 
   2521 	if (os_memcmp(reg->p2p_dev_addr, wps->p2p_dev_addr, ETH_ALEN) == 0) {
   2522 		wpa_printf(MSG_DEBUG, "WPS: Skip PBC overlap due to selected "
   2523 			   "Enrollee match");
   2524 		return 1;
   2525 	}
   2526 #endif /* CONFIG_P2P */
   2527 	return 0;
   2528 }
   2529 
   2530 
   2531 static enum wps_process_res wps_process_m1(struct wps_data *wps,
   2532 					   struct wps_parse_attr *attr)
   2533 {
   2534 	wpa_printf(MSG_DEBUG, "WPS: Received M1");
   2535 
   2536 	if (wps->state != RECV_M1) {
   2537 		wpa_printf(MSG_DEBUG, "WPS: Unexpected state (%d) for "
   2538 			   "receiving M1", wps->state);
   2539 		return WPS_FAILURE;
   2540 	}
   2541 
   2542 	if (wps_process_uuid_e(wps, attr->uuid_e) ||
   2543 	    wps_process_mac_addr(wps, attr->mac_addr) ||
   2544 	    wps_process_enrollee_nonce(wps, attr->enrollee_nonce) ||
   2545 	    wps_process_pubkey(wps, attr->public_key, attr->public_key_len) ||
   2546 	    wps_process_auth_type_flags(wps, attr->auth_type_flags) ||
   2547 	    wps_process_encr_type_flags(wps, attr->encr_type_flags) ||
   2548 	    wps_process_conn_type_flags(wps, attr->conn_type_flags) ||
   2549 	    wps_process_config_methods(wps, attr->config_methods) ||
   2550 	    wps_process_wps_state(wps, attr->wps_state) ||
   2551 	    wps_process_device_attrs(&wps->peer_dev, attr) ||
   2552 	    wps_process_rf_bands(&wps->peer_dev, attr->rf_bands) ||
   2553 	    wps_process_assoc_state(wps, attr->assoc_state) ||
   2554 	    wps_process_dev_password_id(wps, attr->dev_password_id) ||
   2555 	    wps_process_config_error(wps, attr->config_error) ||
   2556 	    wps_process_os_version(&wps->peer_dev, attr->os_version))
   2557 		return WPS_FAILURE;
   2558 
   2559 	if (wps->dev_pw_id < 0x10 &&
   2560 	    wps->dev_pw_id != DEV_PW_DEFAULT &&
   2561 	    wps->dev_pw_id != DEV_PW_USER_SPECIFIED &&
   2562 	    wps->dev_pw_id != DEV_PW_MACHINE_SPECIFIED &&
   2563 	    wps->dev_pw_id != DEV_PW_REGISTRAR_SPECIFIED &&
   2564 #ifdef CONFIG_WPS_NFC
   2565 	    wps->dev_pw_id != DEV_PW_NFC_CONNECTION_HANDOVER &&
   2566 #endif /* CONFIG_WPS_NFC */
   2567 	    (wps->dev_pw_id != DEV_PW_PUSHBUTTON ||
   2568 	     !wps->wps->registrar->pbc)) {
   2569 		wpa_printf(MSG_DEBUG, "WPS: Unsupported Device Password ID %d",
   2570 			   wps->dev_pw_id);
   2571 		wps->state = SEND_M2D;
   2572 		return WPS_CONTINUE;
   2573 	}
   2574 
   2575 #ifdef CONFIG_WPS_NFC
   2576 	if (wps->dev_pw_id >= 0x10 ||
   2577 	    wps->dev_pw_id == DEV_PW_NFC_CONNECTION_HANDOVER) {
   2578 		struct wps_nfc_pw_token *token;
   2579 		const u8 *addr[1];
   2580 		u8 hash[WPS_HASH_LEN];
   2581 
   2582 		wpa_printf(MSG_DEBUG, "WPS: Searching for NFC token match for id=%d (ctx %p registrar %p)",
   2583 			   wps->dev_pw_id, wps->wps, wps->wps->registrar);
   2584 		token = wps_get_nfc_pw_token(
   2585 			&wps->wps->registrar->nfc_pw_tokens, wps->dev_pw_id);
   2586 		if (token && token->peer_pk_hash_known) {
   2587 			wpa_printf(MSG_DEBUG, "WPS: Found matching NFC "
   2588 				   "Password Token");
   2589 			dl_list_del(&token->list);
   2590 			wps->nfc_pw_token = token;
   2591 
   2592 			addr[0] = attr->public_key;
   2593 			sha256_vector(1, addr, &attr->public_key_len, hash);
   2594 			if (os_memcmp_const(hash,
   2595 					    wps->nfc_pw_token->pubkey_hash,
   2596 					    WPS_OOB_PUBKEY_HASH_LEN) != 0) {
   2597 				wpa_printf(MSG_ERROR, "WPS: Public Key hash "
   2598 					   "mismatch");
   2599 				wps->state = SEND_M2D;
   2600 				wps->config_error =
   2601 					WPS_CFG_PUBLIC_KEY_HASH_MISMATCH;
   2602 				return WPS_CONTINUE;
   2603 			}
   2604 		} else if (token) {
   2605 			wpa_printf(MSG_DEBUG, "WPS: Found matching NFC "
   2606 				   "Password Token (no peer PK hash)");
   2607 			wps->nfc_pw_token = token;
   2608 		} else if (wps->dev_pw_id >= 0x10 &&
   2609 			   wps->wps->ap_nfc_dev_pw_id == wps->dev_pw_id &&
   2610 			   wps->wps->ap_nfc_dev_pw) {
   2611 			wpa_printf(MSG_DEBUG, "WPS: Found match with own NFC Password Token");
   2612 		}
   2613 	}
   2614 #endif /* CONFIG_WPS_NFC */
   2615 
   2616 	if (wps->dev_pw_id == DEV_PW_PUSHBUTTON) {
   2617 		if ((wps->wps->registrar->force_pbc_overlap ||
   2618 		     wps_registrar_pbc_overlap(wps->wps->registrar,
   2619 					       wps->mac_addr_e, wps->uuid_e) ||
   2620 		     !wps_registrar_p2p_dev_addr_match(wps)) &&
   2621 		    !wps_registrar_skip_overlap(wps)) {
   2622 			wpa_printf(MSG_DEBUG, "WPS: PBC overlap - deny PBC "
   2623 				   "negotiation");
   2624 			wps->state = SEND_M2D;
   2625 			wps->config_error = WPS_CFG_MULTIPLE_PBC_DETECTED;
   2626 			wps_pbc_overlap_event(wps->wps);
   2627 			wps_fail_event(wps->wps, WPS_M1,
   2628 				       WPS_CFG_MULTIPLE_PBC_DETECTED,
   2629 				       WPS_EI_NO_ERROR, wps->mac_addr_e);
   2630 			wps->wps->registrar->force_pbc_overlap = 1;
   2631 			return WPS_CONTINUE;
   2632 		}
   2633 		wps_registrar_add_pbc_session(wps->wps->registrar,
   2634 					      wps->mac_addr_e, wps->uuid_e);
   2635 		wps->pbc = 1;
   2636 	}
   2637 
   2638 #ifdef WPS_WORKAROUNDS
   2639 	/*
   2640 	 * It looks like Mac OS X 10.6.3 and 10.6.4 do not like Network Key in
   2641 	 * passphrase format. To avoid interop issues, force PSK format to be
   2642 	 * used.
   2643 	 */
   2644 	if (!wps->use_psk_key &&
   2645 	    wps->peer_dev.manufacturer &&
   2646 	    os_strncmp(wps->peer_dev.manufacturer, "Apple ", 6) == 0 &&
   2647 	    wps->peer_dev.model_name &&
   2648 	    os_strcmp(wps->peer_dev.model_name, "AirPort") == 0) {
   2649 		wpa_printf(MSG_DEBUG, "WPS: Workaround - Force Network Key in "
   2650 			   "PSK format");
   2651 		wps->use_psk_key = 1;
   2652 	}
   2653 #endif /* WPS_WORKAROUNDS */
   2654 
   2655 	wps->state = SEND_M2;
   2656 	return WPS_CONTINUE;
   2657 }
   2658 
   2659 
   2660 static enum wps_process_res wps_process_m3(struct wps_data *wps,
   2661 					   const struct wpabuf *msg,
   2662 					   struct wps_parse_attr *attr)
   2663 {
   2664 	wpa_printf(MSG_DEBUG, "WPS: Received M3");
   2665 
   2666 	if (wps->state != RECV_M3) {
   2667 		wpa_printf(MSG_DEBUG, "WPS: Unexpected state (%d) for "
   2668 			   "receiving M3", wps->state);
   2669 		wps->state = SEND_WSC_NACK;
   2670 		return WPS_CONTINUE;
   2671 	}
   2672 
   2673 	if (wps->pbc && wps->wps->registrar->force_pbc_overlap &&
   2674 	    !wps_registrar_skip_overlap(wps)) {
   2675 		wpa_printf(MSG_DEBUG, "WPS: Reject negotiation due to PBC "
   2676 			   "session overlap");
   2677 		wps->state = SEND_WSC_NACK;
   2678 		wps->config_error = WPS_CFG_MULTIPLE_PBC_DETECTED;
   2679 		return WPS_CONTINUE;
   2680 	}
   2681 
   2682 	if (wps_process_registrar_nonce(wps, attr->registrar_nonce) ||
   2683 	    wps_process_authenticator(wps, attr->authenticator, msg) ||
   2684 	    wps_process_e_hash1(wps, attr->e_hash1) ||
   2685 	    wps_process_e_hash2(wps, attr->e_hash2)) {
   2686 		wps->state = SEND_WSC_NACK;
   2687 		return WPS_CONTINUE;
   2688 	}
   2689 
   2690 	wps->state = SEND_M4;
   2691 	return WPS_CONTINUE;
   2692 }
   2693 
   2694 
   2695 static enum wps_process_res wps_process_m5(struct wps_data *wps,
   2696 					   const struct wpabuf *msg,
   2697 					   struct wps_parse_attr *attr)
   2698 {
   2699 	struct wpabuf *decrypted;
   2700 	struct wps_parse_attr eattr;
   2701 
   2702 	wpa_printf(MSG_DEBUG, "WPS: Received M5");
   2703 
   2704 	if (wps->state != RECV_M5) {
   2705 		wpa_printf(MSG_DEBUG, "WPS: Unexpected state (%d) for "
   2706 			   "receiving M5", wps->state);
   2707 		wps->state = SEND_WSC_NACK;
   2708 		return WPS_CONTINUE;
   2709 	}
   2710 
   2711 	if (wps->pbc && wps->wps->registrar->force_pbc_overlap &&
   2712 	    !wps_registrar_skip_overlap(wps)) {
   2713 		wpa_printf(MSG_DEBUG, "WPS: Reject negotiation due to PBC "
   2714 			   "session overlap");
   2715 		wps->state = SEND_WSC_NACK;
   2716 		wps->config_error = WPS_CFG_MULTIPLE_PBC_DETECTED;
   2717 		return WPS_CONTINUE;
   2718 	}
   2719 
   2720 	if (wps_process_registrar_nonce(wps, attr->registrar_nonce) ||
   2721 	    wps_process_authenticator(wps, attr->authenticator, msg)) {
   2722 		wps->state = SEND_WSC_NACK;
   2723 		return WPS_CONTINUE;
   2724 	}
   2725 
   2726 	decrypted = wps_decrypt_encr_settings(wps, attr->encr_settings,
   2727 					      attr->encr_settings_len);
   2728 	if (decrypted == NULL) {
   2729 		wpa_printf(MSG_DEBUG, "WPS: Failed to decrypted Encrypted "
   2730 			   "Settings attribute");
   2731 		wps->state = SEND_WSC_NACK;
   2732 		return WPS_CONTINUE;
   2733 	}
   2734 
   2735 	if (wps_validate_m5_encr(decrypted, attr->version2 != NULL) < 0) {
   2736 		wpabuf_free(decrypted);
   2737 		wps->state = SEND_WSC_NACK;
   2738 		return WPS_CONTINUE;
   2739 	}
   2740 
   2741 	wpa_printf(MSG_DEBUG, "WPS: Processing decrypted Encrypted Settings "
   2742 		   "attribute");
   2743 	if (wps_parse_msg(decrypted, &eattr) < 0 ||
   2744 	    wps_process_key_wrap_auth(wps, decrypted, eattr.key_wrap_auth) ||
   2745 	    wps_process_e_snonce1(wps, eattr.e_snonce1)) {
   2746 		wpabuf_free(decrypted);
   2747 		wps->state = SEND_WSC_NACK;
   2748 		return WPS_CONTINUE;
   2749 	}
   2750 	wpabuf_free(decrypted);
   2751 
   2752 	wps->state = SEND_M6;
   2753 	return WPS_CONTINUE;
   2754 }
   2755 
   2756 
   2757 static void wps_sta_cred_cb(struct wps_data *wps)
   2758 {
   2759 	/*
   2760 	 * Update credential to only include a single authentication and
   2761 	 * encryption type in case the AP configuration includes more than one
   2762 	 * option.
   2763 	 */
   2764 	if (wps->cred.auth_type & WPS_AUTH_WPA2PSK)
   2765 		wps->cred.auth_type = WPS_AUTH_WPA2PSK;
   2766 	else if (wps->cred.auth_type & WPS_AUTH_WPAPSK)
   2767 		wps->cred.auth_type = WPS_AUTH_WPAPSK;
   2768 	if (wps->cred.encr_type & WPS_ENCR_AES)
   2769 		wps->cred.encr_type = WPS_ENCR_AES;
   2770 	else if (wps->cred.encr_type & WPS_ENCR_TKIP)
   2771 		wps->cred.encr_type = WPS_ENCR_TKIP;
   2772 	wpa_printf(MSG_DEBUG, "WPS: Update local configuration based on the "
   2773 		   "AP configuration");
   2774 	if (wps->wps->cred_cb)
   2775 		wps->wps->cred_cb(wps->wps->cb_ctx, &wps->cred);
   2776 }
   2777 
   2778 
   2779 static void wps_cred_update(struct wps_credential *dst,
   2780 			    struct wps_credential *src)
   2781 {
   2782 	os_memcpy(dst->ssid, src->ssid, sizeof(dst->ssid));
   2783 	dst->ssid_len = src->ssid_len;
   2784 	dst->auth_type = src->auth_type;
   2785 	dst->encr_type = src->encr_type;
   2786 	dst->key_idx = src->key_idx;
   2787 	os_memcpy(dst->key, src->key, sizeof(dst->key));
   2788 	dst->key_len = src->key_len;
   2789 }
   2790 
   2791 
   2792 static int wps_process_ap_settings_r(struct wps_data *wps,
   2793 				     struct wps_parse_attr *attr)
   2794 {
   2795 	struct wpabuf *msg;
   2796 
   2797 	if (wps->wps->ap || wps->er)
   2798 		return 0;
   2799 
   2800 	/* AP Settings Attributes in M7 when Enrollee is an AP */
   2801 	if (wps_process_ap_settings(attr, &wps->cred) < 0)
   2802 		return -1;
   2803 
   2804 	wpa_printf(MSG_INFO, "WPS: Received old AP configuration from AP");
   2805 
   2806 	if (wps->new_ap_settings) {
   2807 		wpa_printf(MSG_INFO, "WPS: Update AP configuration based on "
   2808 			   "new settings");
   2809 		wps_cred_update(&wps->cred, wps->new_ap_settings);
   2810 		return 0;
   2811 	} else {
   2812 		/*
   2813 		 * Use the AP PIN only to receive the current AP settings, not
   2814 		 * to reconfigure the AP.
   2815 		 */
   2816 
   2817 		/*
   2818 		 * Clear selected registrar here since we do not get to
   2819 		 * WSC_Done in this protocol run.
   2820 		 */
   2821 		wps_registrar_pin_completed(wps->wps->registrar);
   2822 
   2823 		msg = wps_build_ap_cred(wps);
   2824 		if (msg == NULL)
   2825 			return -1;
   2826 		wps->cred.cred_attr = wpabuf_head(msg);
   2827 		wps->cred.cred_attr_len = wpabuf_len(msg);
   2828 
   2829 		if (wps->ap_settings_cb) {
   2830 			wps->ap_settings_cb(wps->ap_settings_cb_ctx,
   2831 					    &wps->cred);
   2832 			wpabuf_free(msg);
   2833 			return 1;
   2834 		}
   2835 		wps_sta_cred_cb(wps);
   2836 
   2837 		wps->cred.cred_attr = NULL;
   2838 		wps->cred.cred_attr_len = 0;
   2839 		wpabuf_free(msg);
   2840 
   2841 		return 1;
   2842 	}
   2843 }
   2844 
   2845 
   2846 static enum wps_process_res wps_process_m7(struct wps_data *wps,
   2847 					   const struct wpabuf *msg,
   2848 					   struct wps_parse_attr *attr)
   2849 {
   2850 	struct wpabuf *decrypted;
   2851 	struct wps_parse_attr eattr;
   2852 
   2853 	wpa_printf(MSG_DEBUG, "WPS: Received M7");
   2854 
   2855 	if (wps->state != RECV_M7) {
   2856 		wpa_printf(MSG_DEBUG, "WPS: Unexpected state (%d) for "
   2857 			   "receiving M7", wps->state);
   2858 		wps->state = SEND_WSC_NACK;
   2859 		return WPS_CONTINUE;
   2860 	}
   2861 
   2862 	if (wps->pbc && wps->wps->registrar->force_pbc_overlap &&
   2863 	    !wps_registrar_skip_overlap(wps)) {
   2864 		wpa_printf(MSG_DEBUG, "WPS: Reject negotiation due to PBC "
   2865 			   "session overlap");
   2866 		wps->state = SEND_WSC_NACK;
   2867 		wps->config_error = WPS_CFG_MULTIPLE_PBC_DETECTED;
   2868 		return WPS_CONTINUE;
   2869 	}
   2870 
   2871 	if (wps_process_registrar_nonce(wps, attr->registrar_nonce) ||
   2872 	    wps_process_authenticator(wps, attr->authenticator, msg)) {
   2873 		wps->state = SEND_WSC_NACK;
   2874 		return WPS_CONTINUE;
   2875 	}
   2876 
   2877 	decrypted = wps_decrypt_encr_settings(wps, attr->encr_settings,
   2878 					      attr->encr_settings_len);
   2879 	if (decrypted == NULL) {
   2880 		wpa_printf(MSG_DEBUG, "WPS: Failed to decrypt Encrypted "
   2881 			   "Settings attribute");
   2882 		wps->state = SEND_WSC_NACK;
   2883 		return WPS_CONTINUE;
   2884 	}
   2885 
   2886 	if (wps_validate_m7_encr(decrypted, wps->wps->ap || wps->er,
   2887 				 attr->version2 != NULL) < 0) {
   2888 		wpabuf_free(decrypted);
   2889 		wps->state = SEND_WSC_NACK;
   2890 		return WPS_CONTINUE;
   2891 	}
   2892 
   2893 	wpa_printf(MSG_DEBUG, "WPS: Processing decrypted Encrypted Settings "
   2894 		   "attribute");
   2895 	if (wps_parse_msg(decrypted, &eattr) < 0 ||
   2896 	    wps_process_key_wrap_auth(wps, decrypted, eattr.key_wrap_auth) ||
   2897 	    wps_process_e_snonce2(wps, eattr.e_snonce2) ||
   2898 	    wps_process_ap_settings_r(wps, &eattr)) {
   2899 		wpabuf_free(decrypted);
   2900 		wps->state = SEND_WSC_NACK;
   2901 		return WPS_CONTINUE;
   2902 	}
   2903 
   2904 	wpabuf_free(decrypted);
   2905 
   2906 	wps->state = SEND_M8;
   2907 	return WPS_CONTINUE;
   2908 }
   2909 
   2910 
   2911 static enum wps_process_res wps_process_wsc_msg(struct wps_data *wps,
   2912 						const struct wpabuf *msg)
   2913 {
   2914 	struct wps_parse_attr attr;
   2915 	enum wps_process_res ret = WPS_CONTINUE;
   2916 
   2917 	wpa_printf(MSG_DEBUG, "WPS: Received WSC_MSG");
   2918 
   2919 	if (wps_parse_msg(msg, &attr) < 0)
   2920 		return WPS_FAILURE;
   2921 
   2922 	if (attr.msg_type == NULL) {
   2923 		wpa_printf(MSG_DEBUG, "WPS: No Message Type attribute");
   2924 		wps->state = SEND_WSC_NACK;
   2925 		return WPS_CONTINUE;
   2926 	}
   2927 
   2928 	if (*attr.msg_type != WPS_M1 &&
   2929 	    (attr.registrar_nonce == NULL ||
   2930 	     os_memcmp(wps->nonce_r, attr.registrar_nonce,
   2931 		       WPS_NONCE_LEN) != 0)) {
   2932 		wpa_printf(MSG_DEBUG, "WPS: Mismatch in registrar nonce");
   2933 		return WPS_FAILURE;
   2934 	}
   2935 
   2936 	switch (*attr.msg_type) {
   2937 	case WPS_M1:
   2938 		if (wps_validate_m1(msg) < 0)
   2939 			return WPS_FAILURE;
   2940 #ifdef CONFIG_WPS_UPNP
   2941 		if (wps->wps->wps_upnp && attr.mac_addr) {
   2942 			/* Remove old pending messages when starting new run */
   2943 			wps_free_pending_msgs(wps->wps->upnp_msgs);
   2944 			wps->wps->upnp_msgs = NULL;
   2945 
   2946 			upnp_wps_device_send_wlan_event(
   2947 				wps->wps->wps_upnp, attr.mac_addr,
   2948 				UPNP_WPS_WLANEVENT_TYPE_EAP, msg);
   2949 		}
   2950 #endif /* CONFIG_WPS_UPNP */
   2951 		ret = wps_process_m1(wps, &attr);
   2952 		break;
   2953 	case WPS_M3:
   2954 		if (wps_validate_m3(msg) < 0)
   2955 			return WPS_FAILURE;
   2956 		ret = wps_process_m3(wps, msg, &attr);
   2957 		if (ret == WPS_FAILURE || wps->state == SEND_WSC_NACK)
   2958 			wps_fail_event(wps->wps, WPS_M3, wps->config_error,
   2959 				       wps->error_indication, wps->mac_addr_e);
   2960 		break;
   2961 	case WPS_M5:
   2962 		if (wps_validate_m5(msg) < 0)
   2963 			return WPS_FAILURE;
   2964 		ret = wps_process_m5(wps, msg, &attr);
   2965 		if (ret == WPS_FAILURE || wps->state == SEND_WSC_NACK)
   2966 			wps_fail_event(wps->wps, WPS_M5, wps->config_error,
   2967 				       wps->error_indication, wps->mac_addr_e);
   2968 		break;
   2969 	case WPS_M7:
   2970 		if (wps_validate_m7(msg) < 0)
   2971 			return WPS_FAILURE;
   2972 		ret = wps_process_m7(wps, msg, &attr);
   2973 		if (ret == WPS_FAILURE || wps->state == SEND_WSC_NACK)
   2974 			wps_fail_event(wps->wps, WPS_M7, wps->config_error,
   2975 				       wps->error_indication, wps->mac_addr_e);
   2976 		break;
   2977 	default:
   2978 		wpa_printf(MSG_DEBUG, "WPS: Unsupported Message Type %d",
   2979 			   *attr.msg_type);
   2980 		return WPS_FAILURE;
   2981 	}
   2982 
   2983 	if (ret == WPS_CONTINUE) {
   2984 		/* Save a copy of the last message for Authenticator derivation
   2985 		 */
   2986 		wpabuf_free(wps->last_msg);
   2987 		wps->last_msg = wpabuf_dup(msg);
   2988 	}
   2989 
   2990 	return ret;
   2991 }
   2992 
   2993 
   2994 static enum wps_process_res wps_process_wsc_ack(struct wps_data *wps,
   2995 						const struct wpabuf *msg)
   2996 {
   2997 	struct wps_parse_attr attr;
   2998 
   2999 	wpa_printf(MSG_DEBUG, "WPS: Received WSC_ACK");
   3000 
   3001 	if (wps_parse_msg(msg, &attr) < 0)
   3002 		return WPS_FAILURE;
   3003 
   3004 	if (attr.msg_type == NULL) {
   3005 		wpa_printf(MSG_DEBUG, "WPS: No Message Type attribute");
   3006 		return WPS_FAILURE;
   3007 	}
   3008 
   3009 	if (*attr.msg_type != WPS_WSC_ACK) {
   3010 		wpa_printf(MSG_DEBUG, "WPS: Invalid Message Type %d",
   3011 			   *attr.msg_type);
   3012 		return WPS_FAILURE;
   3013 	}
   3014 
   3015 #ifdef CONFIG_WPS_UPNP
   3016 	if (wps->wps->wps_upnp && wps->ext_reg && wps->state == RECV_M2D_ACK &&
   3017 	    upnp_wps_subscribers(wps->wps->wps_upnp)) {
   3018 		if (wps->wps->upnp_msgs)
   3019 			return WPS_CONTINUE;
   3020 		wpa_printf(MSG_DEBUG, "WPS: Wait for response from an "
   3021 			   "external Registrar");
   3022 		return WPS_PENDING;
   3023 	}
   3024 #endif /* CONFIG_WPS_UPNP */
   3025 
   3026 	if (attr.registrar_nonce == NULL ||
   3027 	    os_memcmp(wps->nonce_r, attr.registrar_nonce, WPS_NONCE_LEN) != 0)
   3028 	{
   3029 		wpa_printf(MSG_DEBUG, "WPS: Mismatch in registrar nonce");
   3030 		return WPS_FAILURE;
   3031 	}
   3032 
   3033 	if (attr.enrollee_nonce == NULL ||
   3034 	    os_memcmp(wps->nonce_e, attr.enrollee_nonce, WPS_NONCE_LEN) != 0) {
   3035 		wpa_printf(MSG_DEBUG, "WPS: Mismatch in enrollee nonce");
   3036 		return WPS_FAILURE;
   3037 	}
   3038 
   3039 	if (wps->state == RECV_M2D_ACK) {
   3040 #ifdef CONFIG_WPS_UPNP
   3041 		if (wps->wps->wps_upnp &&
   3042 		    upnp_wps_subscribers(wps->wps->wps_upnp)) {
   3043 			if (wps->wps->upnp_msgs)
   3044 				return WPS_CONTINUE;
   3045 			if (wps->ext_reg == 0)
   3046 				wps->ext_reg = 1;
   3047 			wpa_printf(MSG_DEBUG, "WPS: Wait for response from an "
   3048 				   "external Registrar");
   3049 			return WPS_PENDING;
   3050 		}
   3051 #endif /* CONFIG_WPS_UPNP */
   3052 
   3053 		wpa_printf(MSG_DEBUG, "WPS: No more registrars available - "
   3054 			   "terminate negotiation");
   3055 	}
   3056 
   3057 	return WPS_FAILURE;
   3058 }
   3059 
   3060 
   3061 static enum wps_process_res wps_process_wsc_nack(struct wps_data *wps,
   3062 						 const struct wpabuf *msg)
   3063 {
   3064 	struct wps_parse_attr attr;
   3065 	int old_state;
   3066 	u16 config_error;
   3067 
   3068 	wpa_printf(MSG_DEBUG, "WPS: Received WSC_NACK");
   3069 
   3070 	old_state = wps->state;
   3071 	wps->state = SEND_WSC_NACK;
   3072 
   3073 	if (wps_parse_msg(msg, &attr) < 0)
   3074 		return WPS_FAILURE;
   3075 
   3076 	if (attr.msg_type == NULL) {
   3077 		wpa_printf(MSG_DEBUG, "WPS: No Message Type attribute");
   3078 		return WPS_FAILURE;
   3079 	}
   3080 
   3081 	if (*attr.msg_type != WPS_WSC_NACK) {
   3082 		wpa_printf(MSG_DEBUG, "WPS: Invalid Message Type %d",
   3083 			   *attr.msg_type);
   3084 		return WPS_FAILURE;
   3085 	}
   3086 
   3087 #ifdef CONFIG_WPS_UPNP
   3088 	if (wps->wps->wps_upnp && wps->ext_reg) {
   3089 		wpa_printf(MSG_DEBUG, "WPS: Negotiation using external "
   3090 			   "Registrar terminated by the Enrollee");
   3091 		return WPS_FAILURE;
   3092 	}
   3093 #endif /* CONFIG_WPS_UPNP */
   3094 
   3095 	if (attr.registrar_nonce == NULL ||
   3096 	    os_memcmp(wps->nonce_r, attr.registrar_nonce, WPS_NONCE_LEN) != 0)
   3097 	{
   3098 		wpa_printf(MSG_DEBUG, "WPS: Mismatch in registrar nonce");
   3099 		return WPS_FAILURE;
   3100 	}
   3101 
   3102 	if (attr.enrollee_nonce == NULL ||
   3103 	    os_memcmp(wps->nonce_e, attr.enrollee_nonce, WPS_NONCE_LEN) != 0) {
   3104 		wpa_printf(MSG_DEBUG, "WPS: Mismatch in enrollee nonce");
   3105 		return WPS_FAILURE;
   3106 	}
   3107 
   3108 	if (attr.config_error == NULL) {
   3109 		wpa_printf(MSG_DEBUG, "WPS: No Configuration Error attribute "
   3110 			   "in WSC_NACK");
   3111 		return WPS_FAILURE;
   3112 	}
   3113 
   3114 	config_error = WPA_GET_BE16(attr.config_error);
   3115 	wpa_printf(MSG_DEBUG, "WPS: Enrollee terminated negotiation with "
   3116 		   "Configuration Error %d", config_error);
   3117 
   3118 	switch (old_state) {
   3119 	case RECV_M3:
   3120 		wps_fail_event(wps->wps, WPS_M2, config_error,
   3121 			       wps->error_indication, wps->mac_addr_e);
   3122 		break;
   3123 	case RECV_M5:
   3124 		wps_fail_event(wps->wps, WPS_M4, config_error,
   3125 			       wps->error_indication, wps->mac_addr_e);
   3126 		break;
   3127 	case RECV_M7:
   3128 		wps_fail_event(wps->wps, WPS_M6, config_error,
   3129 			       wps->error_indication, wps->mac_addr_e);
   3130 		break;
   3131 	case RECV_DONE:
   3132 		wps_fail_event(wps->wps, WPS_M8, config_error,
   3133 			       wps->error_indication, wps->mac_addr_e);
   3134 		break;
   3135 	default:
   3136 		break;
   3137 	}
   3138 
   3139 	return WPS_FAILURE;
   3140 }
   3141 
   3142 
   3143 static enum wps_process_res wps_process_wsc_done(struct wps_data *wps,
   3144 						 const struct wpabuf *msg)
   3145 {
   3146 	struct wps_parse_attr attr;
   3147 
   3148 	wpa_printf(MSG_DEBUG, "WPS: Received WSC_Done");
   3149 
   3150 	if (wps->state != RECV_DONE &&
   3151 	    (!wps->wps->wps_upnp || !wps->ext_reg)) {
   3152 		wpa_printf(MSG_DEBUG, "WPS: Unexpected state (%d) for "
   3153 			   "receiving WSC_Done", wps->state);
   3154 		return WPS_FAILURE;
   3155 	}
   3156 
   3157 	if (wps_parse_msg(msg, &attr) < 0)
   3158 		return WPS_FAILURE;
   3159 
   3160 	if (attr.msg_type == NULL) {
   3161 		wpa_printf(MSG_DEBUG, "WPS: No Message Type attribute");
   3162 		return WPS_FAILURE;
   3163 	}
   3164 
   3165 	if (*attr.msg_type != WPS_WSC_DONE) {
   3166 		wpa_printf(MSG_DEBUG, "WPS: Invalid Message Type %d",
   3167 			   *attr.msg_type);
   3168 		return WPS_FAILURE;
   3169 	}
   3170 
   3171 #ifdef CONFIG_WPS_UPNP
   3172 	if (wps->wps->wps_upnp && wps->ext_reg) {
   3173 		wpa_printf(MSG_DEBUG, "WPS: Negotiation using external "
   3174 			   "Registrar completed successfully");
   3175 		wps_device_store(wps->wps->registrar, &wps->peer_dev,
   3176 				 wps->uuid_e);
   3177 		return WPS_DONE;
   3178 	}
   3179 #endif /* CONFIG_WPS_UPNP */
   3180 
   3181 	if (attr.registrar_nonce == NULL ||
   3182 	    os_memcmp(wps->nonce_r, attr.registrar_nonce, WPS_NONCE_LEN) != 0)
   3183 	{
   3184 		wpa_printf(MSG_DEBUG, "WPS: Mismatch in registrar nonce");
   3185 		return WPS_FAILURE;
   3186 	}
   3187 
   3188 	if (attr.enrollee_nonce == NULL ||
   3189 	    os_memcmp(wps->nonce_e, attr.enrollee_nonce, WPS_NONCE_LEN) != 0) {
   3190 		wpa_printf(MSG_DEBUG, "WPS: Mismatch in enrollee nonce");
   3191 		return WPS_FAILURE;
   3192 	}
   3193 
   3194 	wpa_printf(MSG_DEBUG, "WPS: Negotiation completed successfully");
   3195 	wps_device_store(wps->wps->registrar, &wps->peer_dev,
   3196 			 wps->uuid_e);
   3197 
   3198 	if (wps->wps->wps_state == WPS_STATE_NOT_CONFIGURED && wps->new_psk &&
   3199 	    wps->wps->ap && !wps->wps->registrar->disable_auto_conf) {
   3200 		struct wps_credential cred;
   3201 
   3202 		wpa_printf(MSG_DEBUG, "WPS: Moving to Configured state based "
   3203 			   "on first Enrollee connection");
   3204 
   3205 		os_memset(&cred, 0, sizeof(cred));
   3206 		os_memcpy(cred.ssid, wps->wps->ssid, wps->wps->ssid_len);
   3207 		cred.ssid_len = wps->wps->ssid_len;
   3208 		cred.auth_type = WPS_AUTH_WPAPSK | WPS_AUTH_WPA2PSK;
   3209 		cred.encr_type = WPS_ENCR_TKIP | WPS_ENCR_AES;
   3210 		os_memcpy(cred.key, wps->new_psk, wps->new_psk_len);
   3211 		cred.key_len = wps->new_psk_len;
   3212 
   3213 		wps->wps->wps_state = WPS_STATE_CONFIGURED;
   3214 		wpa_hexdump_ascii_key(MSG_DEBUG,
   3215 				      "WPS: Generated random passphrase",
   3216 				      wps->new_psk, wps->new_psk_len);
   3217 		if (wps->wps->cred_cb)
   3218 			wps->wps->cred_cb(wps->wps->cb_ctx, &cred);
   3219 
   3220 		os_free(wps->new_psk);
   3221 		wps->new_psk = NULL;
   3222 	}
   3223 
   3224 	if (!wps->wps->ap && !wps->er)
   3225 		wps_sta_cred_cb(wps);
   3226 
   3227 	if (wps->new_psk) {
   3228 		if (wps_cb_new_psk(wps->wps->registrar, wps->mac_addr_e,
   3229 				   wps->p2p_dev_addr, wps->new_psk,
   3230 				   wps->new_psk_len)) {
   3231 			wpa_printf(MSG_DEBUG, "WPS: Failed to configure the "
   3232 				   "new PSK");
   3233 		}
   3234 		os_free(wps->new_psk);
   3235 		wps->new_psk = NULL;
   3236 	}
   3237 
   3238 	wps_cb_reg_success(wps->wps->registrar, wps->mac_addr_e, wps->uuid_e,
   3239 			   wps->dev_password, wps->dev_password_len);
   3240 
   3241 	if (wps->pbc) {
   3242 		wps_registrar_remove_pbc_session(wps->wps->registrar,
   3243 						 wps->uuid_e,
   3244 						 wps->p2p_dev_addr);
   3245 		wps_registrar_pbc_completed(wps->wps->registrar);
   3246 #ifdef WPS_WORKAROUNDS
   3247 		os_get_reltime(&wps->wps->registrar->pbc_ignore_start);
   3248 #endif /* WPS_WORKAROUNDS */
   3249 		os_memcpy(wps->wps->registrar->pbc_ignore_uuid, wps->uuid_e,
   3250 			  WPS_UUID_LEN);
   3251 	} else {
   3252 		wps_registrar_pin_completed(wps->wps->registrar);
   3253 	}
   3254 	/* TODO: maintain AuthorizedMACs somewhere separately for each ER and
   3255 	 * merge them into APs own list.. */
   3256 
   3257 	wps_success_event(wps->wps, wps->mac_addr_e);
   3258 
   3259 	return WPS_DONE;
   3260 }
   3261 
   3262 
   3263 enum wps_process_res wps_registrar_process_msg(struct wps_data *wps,
   3264 					       enum wsc_op_code op_code,
   3265 					       const struct wpabuf *msg)
   3266 {
   3267 	enum wps_process_res ret;
   3268 
   3269 	wpa_printf(MSG_DEBUG, "WPS: Processing received message (len=%lu "
   3270 		   "op_code=%d)",
   3271 		   (unsigned long) wpabuf_len(msg), op_code);
   3272 
   3273 #ifdef CONFIG_WPS_UPNP
   3274 	if (wps->wps->wps_upnp && op_code == WSC_MSG && wps->ext_reg == 1) {
   3275 		struct wps_parse_attr attr;
   3276 		if (wps_parse_msg(msg, &attr) == 0 && attr.msg_type &&
   3277 		    *attr.msg_type == WPS_M3)
   3278 			wps->ext_reg = 2; /* past M2/M2D phase */
   3279 	}
   3280 	if (wps->ext_reg > 1)
   3281 		wps_registrar_free_pending_m2(wps->wps);
   3282 	if (wps->wps->wps_upnp && wps->ext_reg &&
   3283 	    wps->wps->upnp_msgs == NULL &&
   3284 	    (op_code == WSC_MSG || op_code == WSC_Done || op_code == WSC_NACK))
   3285 	{
   3286 		struct wps_parse_attr attr;
   3287 		int type;
   3288 		if (wps_parse_msg(msg, &attr) < 0 || attr.msg_type == NULL)
   3289 			type = -1;
   3290 		else
   3291 			type = *attr.msg_type;
   3292 		wpa_printf(MSG_DEBUG, "WPS: Sending received message (type %d)"
   3293 			   " to external Registrar for processing", type);
   3294 		upnp_wps_device_send_wlan_event(wps->wps->wps_upnp,
   3295 						wps->mac_addr_e,
   3296 						UPNP_WPS_WLANEVENT_TYPE_EAP,
   3297 						msg);
   3298 		if (op_code == WSC_MSG)
   3299 			return WPS_PENDING;
   3300 	} else if (wps->wps->wps_upnp && wps->ext_reg && op_code == WSC_MSG) {
   3301 		wpa_printf(MSG_DEBUG, "WPS: Skip internal processing - using "
   3302 			   "external Registrar");
   3303 		return WPS_CONTINUE;
   3304 	}
   3305 #endif /* CONFIG_WPS_UPNP */
   3306 
   3307 	switch (op_code) {
   3308 	case WSC_MSG:
   3309 		return wps_process_wsc_msg(wps, msg);
   3310 	case WSC_ACK:
   3311 		if (wps_validate_wsc_ack(msg) < 0)
   3312 			return WPS_FAILURE;
   3313 		return wps_process_wsc_ack(wps, msg);
   3314 	case WSC_NACK:
   3315 		if (wps_validate_wsc_nack(msg) < 0)
   3316 			return WPS_FAILURE;
   3317 		return wps_process_wsc_nack(wps, msg);
   3318 	case WSC_Done:
   3319 		if (wps_validate_wsc_done(msg) < 0)
   3320 			return WPS_FAILURE;
   3321 		ret = wps_process_wsc_done(wps, msg);
   3322 		if (ret == WPS_FAILURE) {
   3323 			wps->state = SEND_WSC_NACK;
   3324 			wps_fail_event(wps->wps, WPS_WSC_DONE,
   3325 				       wps->config_error,
   3326 				       wps->error_indication, wps->mac_addr_e);
   3327 		}
   3328 		return ret;
   3329 	default:
   3330 		wpa_printf(MSG_DEBUG, "WPS: Unsupported op_code %d", op_code);
   3331 		return WPS_FAILURE;
   3332 	}
   3333 }
   3334 
   3335 
   3336 int wps_registrar_update_ie(struct wps_registrar *reg)
   3337 {
   3338 	return wps_set_ie(reg);
   3339 }
   3340 
   3341 
   3342 static void wps_registrar_set_selected_timeout(void *eloop_ctx,
   3343 					       void *timeout_ctx)
   3344 {
   3345 	struct wps_registrar *reg = eloop_ctx;
   3346 
   3347 	wpa_printf(MSG_DEBUG, "WPS: Selected Registrar timeout - "
   3348 		   "unselect internal Registrar");
   3349 	reg->selected_registrar = 0;
   3350 	reg->pbc = 0;
   3351 	wps_registrar_selected_registrar_changed(reg, 0);
   3352 }
   3353 
   3354 
   3355 #ifdef CONFIG_WPS_UPNP
   3356 static void wps_registrar_sel_reg_add(struct wps_registrar *reg,
   3357 				      struct subscription *s)
   3358 {
   3359 	int i, j;
   3360 	wpa_printf(MSG_DEBUG, "WPS: External Registrar selected (dev_pw_id=%d "
   3361 		   "config_methods=0x%x)",
   3362 		   s->dev_password_id, s->config_methods);
   3363 	reg->sel_reg_union = 1;
   3364 	if (reg->sel_reg_dev_password_id_override != DEV_PW_PUSHBUTTON)
   3365 		reg->sel_reg_dev_password_id_override = s->dev_password_id;
   3366 	if (reg->sel_reg_config_methods_override == -1)
   3367 		reg->sel_reg_config_methods_override = 0;
   3368 	reg->sel_reg_config_methods_override |= s->config_methods;
   3369 	for (i = 0; i < WPS_MAX_AUTHORIZED_MACS; i++)
   3370 		if (is_zero_ether_addr(reg->authorized_macs_union[i]))
   3371 			break;
   3372 	for (j = 0; i < WPS_MAX_AUTHORIZED_MACS && j < WPS_MAX_AUTHORIZED_MACS;
   3373 	     j++) {
   3374 		if (is_zero_ether_addr(s->authorized_macs[j]))
   3375 			break;
   3376 		wpa_printf(MSG_DEBUG, "WPS: Add authorized MAC into union: "
   3377 			   MACSTR, MAC2STR(s->authorized_macs[j]));
   3378 		os_memcpy(reg->authorized_macs_union[i],
   3379 			  s->authorized_macs[j], ETH_ALEN);
   3380 		i++;
   3381 	}
   3382 	wpa_hexdump(MSG_DEBUG, "WPS: Authorized MACs union",
   3383 		    (u8 *) reg->authorized_macs_union,
   3384 		    sizeof(reg->authorized_macs_union));
   3385 }
   3386 #endif /* CONFIG_WPS_UPNP */
   3387 
   3388 
   3389 static void wps_registrar_sel_reg_union(struct wps_registrar *reg)
   3390 {
   3391 #ifdef CONFIG_WPS_UPNP
   3392 	struct subscription *s;
   3393 
   3394 	if (reg->wps->wps_upnp == NULL)
   3395 		return;
   3396 
   3397 	dl_list_for_each(s, &reg->wps->wps_upnp->subscriptions,
   3398 			 struct subscription, list) {
   3399 		struct subscr_addr *sa;
   3400 		sa = dl_list_first(&s->addr_list, struct subscr_addr, list);
   3401 		if (sa) {
   3402 			wpa_printf(MSG_DEBUG, "WPS: External Registrar %s:%d",
   3403 				   inet_ntoa(sa->saddr.sin_addr),
   3404 				   ntohs(sa->saddr.sin_port));
   3405 		}
   3406 		if (s->selected_registrar)
   3407 			wps_registrar_sel_reg_add(reg, s);
   3408 		else
   3409 			wpa_printf(MSG_DEBUG, "WPS: External Registrar not "
   3410 				   "selected");
   3411 	}
   3412 #endif /* CONFIG_WPS_UPNP */
   3413 }
   3414 
   3415 
   3416 /**
   3417  * wps_registrar_selected_registrar_changed - SetSelectedRegistrar change
   3418  * @reg: Registrar data from wps_registrar_init()
   3419  *
   3420  * This function is called when selected registrar state changes, e.g., when an
   3421  * AP receives a SetSelectedRegistrar UPnP message.
   3422  */
   3423 void wps_registrar_selected_registrar_changed(struct wps_registrar *reg,
   3424 					      u16 dev_pw_id)
   3425 {
   3426 	wpa_printf(MSG_DEBUG, "WPS: Selected registrar information changed");
   3427 
   3428 	reg->sel_reg_union = reg->selected_registrar;
   3429 	reg->sel_reg_dev_password_id_override = -1;
   3430 	reg->sel_reg_config_methods_override = -1;
   3431 	os_memcpy(reg->authorized_macs_union, reg->authorized_macs,
   3432 		  WPS_MAX_AUTHORIZED_MACS * ETH_ALEN);
   3433 	wpa_hexdump(MSG_DEBUG, "WPS: Authorized MACs union (start with own)",
   3434 		    (u8 *) reg->authorized_macs_union,
   3435 		    sizeof(reg->authorized_macs_union));
   3436 	if (reg->selected_registrar) {
   3437 		u16 methods;
   3438 
   3439 		methods = reg->wps->config_methods & ~WPS_CONFIG_PUSHBUTTON;
   3440 		methods &= ~(WPS_CONFIG_VIRT_PUSHBUTTON |
   3441 			     WPS_CONFIG_PHY_PUSHBUTTON);
   3442 		if (reg->pbc) {
   3443 			reg->sel_reg_dev_password_id_override =
   3444 				DEV_PW_PUSHBUTTON;
   3445 			wps_set_pushbutton(&methods, reg->wps->config_methods);
   3446 		} else if (dev_pw_id)
   3447 			reg->sel_reg_dev_password_id_override = dev_pw_id;
   3448 		wpa_printf(MSG_DEBUG, "WPS: Internal Registrar selected "
   3449 			   "(pbc=%d)", reg->pbc);
   3450 		reg->sel_reg_config_methods_override = methods;
   3451 	} else
   3452 		wpa_printf(MSG_DEBUG, "WPS: Internal Registrar not selected");
   3453 
   3454 	wps_registrar_sel_reg_union(reg);
   3455 
   3456 	wps_set_ie(reg);
   3457 	wps_cb_set_sel_reg(reg);
   3458 }
   3459 
   3460 
   3461 int wps_registrar_get_info(struct wps_registrar *reg, const u8 *addr,
   3462 			   char *buf, size_t buflen)
   3463 {
   3464 	struct wps_registrar_device *d;
   3465 	int len = 0, ret;
   3466 	char uuid[40];
   3467 	char devtype[WPS_DEV_TYPE_BUFSIZE];
   3468 
   3469 	d = wps_device_get(reg, addr);
   3470 	if (d == NULL)
   3471 		return 0;
   3472 	if (uuid_bin2str(d->uuid, uuid, sizeof(uuid)))
   3473 		return 0;
   3474 
   3475 	ret = os_snprintf(buf + len, buflen - len,
   3476 			  "wpsUuid=%s\n"
   3477 			  "wpsPrimaryDeviceType=%s\n"
   3478 			  "wpsDeviceName=%s\n"
   3479 			  "wpsManufacturer=%s\n"
   3480 			  "wpsModelName=%s\n"
   3481 			  "wpsModelNumber=%s\n"
   3482 			  "wpsSerialNumber=%s\n",
   3483 			  uuid,
   3484 			  wps_dev_type_bin2str(d->dev.pri_dev_type, devtype,
   3485 					       sizeof(devtype)),
   3486 			  d->dev.device_name ? d->dev.device_name : "",
   3487 			  d->dev.manufacturer ? d->dev.manufacturer : "",
   3488 			  d->dev.model_name ? d->dev.model_name : "",
   3489 			  d->dev.model_number ? d->dev.model_number : "",
   3490 			  d->dev.serial_number ? d->dev.serial_number : "");
   3491 	if (ret < 0 || (size_t) ret >= buflen - len)
   3492 		return len;
   3493 	len += ret;
   3494 
   3495 	return len;
   3496 }
   3497 
   3498 
   3499 int wps_registrar_config_ap(struct wps_registrar *reg,
   3500 			    struct wps_credential *cred)
   3501 {
   3502 	wpa_printf(MSG_DEBUG, "WPS: encr_type=0x%x", cred->encr_type);
   3503 	if (!(cred->encr_type & (WPS_ENCR_NONE | WPS_ENCR_TKIP |
   3504 				 WPS_ENCR_AES))) {
   3505 		if (cred->encr_type & WPS_ENCR_WEP) {
   3506 			wpa_printf(MSG_INFO, "WPS: Reject new AP settings "
   3507 				   "due to WEP configuration");
   3508 			return -1;
   3509 		}
   3510 
   3511 		wpa_printf(MSG_INFO, "WPS: Reject new AP settings due to "
   3512 			   "invalid encr_type 0x%x", cred->encr_type);
   3513 		return -1;
   3514 	}
   3515 
   3516 	if ((cred->encr_type & (WPS_ENCR_TKIP | WPS_ENCR_AES)) ==
   3517 	    WPS_ENCR_TKIP) {
   3518 		wpa_printf(MSG_DEBUG, "WPS: Upgrade encr_type TKIP -> "
   3519 			   "TKIP+AES");
   3520 		cred->encr_type |= WPS_ENCR_AES;
   3521 	}
   3522 
   3523 	if ((cred->auth_type & (WPS_AUTH_WPAPSK | WPS_AUTH_WPA2PSK)) ==
   3524 	    WPS_AUTH_WPAPSK) {
   3525 		wpa_printf(MSG_DEBUG, "WPS: Upgrade auth_type WPAPSK -> "
   3526 			   "WPAPSK+WPA2PSK");
   3527 		cred->auth_type |= WPS_AUTH_WPA2PSK;
   3528 	}
   3529 
   3530 	if (reg->wps->cred_cb)
   3531 		return reg->wps->cred_cb(reg->wps->cb_ctx, cred);
   3532 
   3533 	return -1;
   3534 }
   3535 
   3536 
   3537 #ifdef CONFIG_WPS_NFC
   3538 
   3539 int wps_registrar_add_nfc_pw_token(struct wps_registrar *reg,
   3540 				   const u8 *pubkey_hash, u16 pw_id,
   3541 				   const u8 *dev_pw, size_t dev_pw_len,
   3542 				   int pk_hash_provided_oob)
   3543 {
   3544 	struct wps_nfc_pw_token *token;
   3545 
   3546 	if (dev_pw_len > WPS_OOB_DEVICE_PASSWORD_LEN)
   3547 		return -1;
   3548 
   3549 	if (pw_id == DEV_PW_NFC_CONNECTION_HANDOVER &&
   3550 	    (pubkey_hash == NULL || !pk_hash_provided_oob)) {
   3551 		wpa_printf(MSG_DEBUG, "WPS: Unexpected NFC Password Token "
   3552 			   "addition - missing public key hash");
   3553 		return -1;
   3554 	}
   3555 
   3556 	wps_free_nfc_pw_tokens(&reg->nfc_pw_tokens, pw_id);
   3557 
   3558 	token = os_zalloc(sizeof(*token));
   3559 	if (token == NULL)
   3560 		return -1;
   3561 
   3562 	token->peer_pk_hash_known = pubkey_hash != NULL;
   3563 	if (pubkey_hash)
   3564 		os_memcpy(token->pubkey_hash, pubkey_hash,
   3565 			  WPS_OOB_PUBKEY_HASH_LEN);
   3566 	token->pw_id = pw_id;
   3567 	token->pk_hash_provided_oob = pk_hash_provided_oob;
   3568 	if (dev_pw) {
   3569 		wpa_snprintf_hex_uppercase((char *) token->dev_pw,
   3570 					   sizeof(token->dev_pw),
   3571 					   dev_pw, dev_pw_len);
   3572 		token->dev_pw_len = dev_pw_len * 2;
   3573 	}
   3574 
   3575 	dl_list_add(&reg->nfc_pw_tokens, &token->list);
   3576 
   3577 	reg->selected_registrar = 1;
   3578 	reg->pbc = 0;
   3579 	wps_registrar_add_authorized_mac(reg,
   3580 					 (u8 *) "\xff\xff\xff\xff\xff\xff");
   3581 	wps_registrar_selected_registrar_changed(reg, pw_id);
   3582 	eloop_cancel_timeout(wps_registrar_set_selected_timeout, reg, NULL);
   3583 	eloop_register_timeout(WPS_PBC_WALK_TIME, 0,
   3584 			       wps_registrar_set_selected_timeout,
   3585 			       reg, NULL);
   3586 
   3587 	wpa_printf(MSG_DEBUG, "WPS: Added NFC Device Password %u to Registrar",
   3588 		   pw_id);
   3589 
   3590 	return 0;
   3591 }
   3592 
   3593 
   3594 int wps_registrar_add_nfc_password_token(struct wps_registrar *reg,
   3595 					 const u8 *oob_dev_pw,
   3596 					 size_t oob_dev_pw_len)
   3597 {
   3598 	const u8 *pos, *hash, *dev_pw;
   3599 	u16 id;
   3600 	size_t dev_pw_len;
   3601 
   3602 	if (oob_dev_pw_len < WPS_OOB_PUBKEY_HASH_LEN + 2 ||
   3603 	    oob_dev_pw_len > WPS_OOB_PUBKEY_HASH_LEN + 2 +
   3604 	    WPS_OOB_DEVICE_PASSWORD_LEN)
   3605 		return -1;
   3606 
   3607 	hash = oob_dev_pw;
   3608 	pos = oob_dev_pw + WPS_OOB_PUBKEY_HASH_LEN;
   3609 	id = WPA_GET_BE16(pos);
   3610 	dev_pw = pos + 2;
   3611 	dev_pw_len = oob_dev_pw + oob_dev_pw_len - dev_pw;
   3612 
   3613 	wpa_printf(MSG_DEBUG, "WPS: Add NFC Password Token for Password ID %u",
   3614 		   id);
   3615 
   3616 	wpa_hexdump(MSG_DEBUG, "WPS: Public Key Hash",
   3617 		    hash, WPS_OOB_PUBKEY_HASH_LEN);
   3618 	wpa_hexdump_key(MSG_DEBUG, "WPS: Device Password", dev_pw, dev_pw_len);
   3619 
   3620 	return wps_registrar_add_nfc_pw_token(reg, hash, id, dev_pw,
   3621 					      dev_pw_len, 0);
   3622 }
   3623 
   3624 
   3625 void wps_registrar_remove_nfc_pw_token(struct wps_registrar *reg,
   3626 				       struct wps_nfc_pw_token *token)
   3627 {
   3628 	wps_registrar_remove_authorized_mac(reg,
   3629 					    (u8 *) "\xff\xff\xff\xff\xff\xff");
   3630 	wps_registrar_selected_registrar_changed(reg, 0);
   3631 
   3632 	/*
   3633 	 * Free the NFC password token if it was used only for a single protocol
   3634 	 * run. The static handover case uses the same password token multiple
   3635 	 * times, so do not free that case here.
   3636 	 */
   3637 	if (token->peer_pk_hash_known)
   3638 		os_free(token);
   3639 }
   3640 
   3641 #endif /* CONFIG_WPS_NFC */
   3642