xref: /linux/drivers/staging/rtl8723bs/core/rtw_mlme.c (revision 4708cac0e22cfd217f48f7cec3c35e5922efcccd)
1 // SPDX-License-Identifier: GPL-2.0
2 /******************************************************************************
3  *
4  * Copyright(c) 2007 - 2011 Realtek Corporation. All rights reserved.
5  *
6  ******************************************************************************/
7 #include <linux/etherdevice.h>
8 #include <drv_types.h>
9 #include <hal_btcoex.h>
10 #include <linux/jiffies.h>
11 
12 static void _dynamic_check_timer_handler(struct timer_list *t)
13 {
14 	struct adapter *adapter =
15 		timer_container_of(adapter, t, mlmepriv.dynamic_chk_timer);
16 
17 	rtw_dynamic_check_timer_handler(adapter);
18 
19 	_set_timer(&adapter->mlmepriv.dynamic_chk_timer, 2000);
20 }
21 
22 static void _rtw_set_scan_deny_timer_hdl(struct timer_list *t)
23 {
24 	struct adapter *adapter =
25 		timer_container_of(adapter, t, mlmepriv.set_scan_deny_timer);
26 
27 	rtw_clear_scan_deny(adapter);
28 }
29 
30 static void rtw_init_mlme_timer(struct adapter *padapter)
31 {
32 	struct	mlme_priv *pmlmepriv = &padapter->mlmepriv;
33 
34 	timer_setup(&pmlmepriv->assoc_timer, _rtw_join_timeout_handler, 0);
35 	timer_setup(&pmlmepriv->scan_to_timer, rtw_scan_timeout_handler, 0);
36 	timer_setup(&pmlmepriv->dynamic_chk_timer,
37 		    _dynamic_check_timer_handler, 0);
38 	timer_setup(&pmlmepriv->set_scan_deny_timer,
39 		    _rtw_set_scan_deny_timer_hdl, 0);
40 }
41 
42 int	rtw_init_mlme_priv(struct adapter *padapter)
43 {
44 	int	i;
45 	u8 *pbuf;
46 	struct wlan_network	*pnetwork;
47 	struct mlme_priv	*pmlmepriv = &padapter->mlmepriv;
48 	int	res = _SUCCESS;
49 
50 	pmlmepriv->nic_hdl = (u8 *)padapter;
51 
52 	pmlmepriv->pscanned = NULL;
53 	pmlmepriv->fw_state = WIFI_STATION_STATE; /*  Must sync with rtw_wdev_alloc() */
54 	pmlmepriv->cur_network.network.infrastructure_mode = Ndis802_11AutoUnknown;
55 	pmlmepriv->scan_mode = SCAN_ACTIVE;/*  1: active, 0: passive. Maybe someday we should rename this varable to "active_mode" (Jeff) */
56 
57 	spin_lock_init(&pmlmepriv->lock);
58 	INIT_LIST_HEAD(&pmlmepriv->free_bss_pool.queue);
59 	spin_lock_init(&pmlmepriv->free_bss_pool.lock);
60 	INIT_LIST_HEAD(&pmlmepriv->scanned_queue.queue);
61 	spin_lock_init(&pmlmepriv->scanned_queue.lock);
62 
63 	memset(&pmlmepriv->assoc_ssid, 0, sizeof(struct ndis_802_11_ssid));
64 
65 	pbuf = vzalloc(array_size(MAX_BSS_CNT, sizeof(struct wlan_network)));
66 
67 	if (!pbuf) {
68 		res = _FAIL;
69 		goto exit;
70 	}
71 	pmlmepriv->free_bss_buf = pbuf;
72 
73 	pnetwork = (struct wlan_network *)pbuf;
74 
75 	for (i = 0; i < MAX_BSS_CNT; i++) {
76 		INIT_LIST_HEAD(&pnetwork->list);
77 
78 		list_add_tail(&pnetwork->list, &pmlmepriv->free_bss_pool.queue);
79 
80 		pnetwork++;
81 	}
82 
83 	/* allocate DMA-able/Non-Page memory for cmd_buf and rsp_buf */
84 
85 	rtw_clear_scan_deny(padapter);
86 
87 	#define RTW_ROAM_SCAN_RESULT_EXP_MS 5000
88 	#define RTW_ROAM_RSSI_DIFF_TH 10
89 	#define RTW_ROAM_SCAN_INTERVAL_MS 10000
90 
91 	pmlmepriv->roam_flags = 0
92 		| RTW_ROAM_ON_EXPIRED
93 		| RTW_ROAM_ON_RESUME
94 		;
95 
96 	pmlmepriv->roam_scanr_exp_ms = RTW_ROAM_SCAN_RESULT_EXP_MS;
97 	pmlmepriv->roam_rssi_diff_th = RTW_ROAM_RSSI_DIFF_TH;
98 	pmlmepriv->roam_scan_int_ms = RTW_ROAM_SCAN_INTERVAL_MS;
99 
100 	rtw_init_mlme_timer(padapter);
101 
102 exit:
103 
104 	return res;
105 }
106 
107 static void rtw_free_mlme_ie_data(u8 **ppie, u32 *plen)
108 {
109 	if (*ppie) {
110 		kfree(*ppie);
111 		*plen = 0;
112 		*ppie = NULL;
113 	}
114 }
115 
116 void rtw_free_mlme_priv_ie_data(struct mlme_priv *pmlmepriv)
117 {
118 	rtw_buf_free(&pmlmepriv->assoc_req, &pmlmepriv->assoc_req_len);
119 	rtw_buf_free(&pmlmepriv->assoc_rsp, &pmlmepriv->assoc_rsp_len);
120 	rtw_free_mlme_ie_data(&pmlmepriv->wps_beacon_ie, &pmlmepriv->wps_beacon_ie_len);
121 	rtw_free_mlme_ie_data(&pmlmepriv->wps_probe_req_ie, &pmlmepriv->wps_probe_req_ie_len);
122 	rtw_free_mlme_ie_data(&pmlmepriv->wps_probe_resp_ie, &pmlmepriv->wps_probe_resp_ie_len);
123 	rtw_free_mlme_ie_data(&pmlmepriv->wps_assoc_resp_ie, &pmlmepriv->wps_assoc_resp_ie_len);
124 
125 	rtw_free_mlme_ie_data(&pmlmepriv->p2p_beacon_ie, &pmlmepriv->p2p_beacon_ie_len);
126 	rtw_free_mlme_ie_data(&pmlmepriv->p2p_probe_req_ie, &pmlmepriv->p2p_probe_req_ie_len);
127 	rtw_free_mlme_ie_data(&pmlmepriv->p2p_probe_resp_ie, &pmlmepriv->p2p_probe_resp_ie_len);
128 	rtw_free_mlme_ie_data(&pmlmepriv->p2p_go_probe_resp_ie, &pmlmepriv->p2p_go_probe_resp_ie_len);
129 	rtw_free_mlme_ie_data(&pmlmepriv->p2p_assoc_req_ie, &pmlmepriv->p2p_assoc_req_ie_len);
130 }
131 
132 void _rtw_free_mlme_priv(struct mlme_priv *pmlmepriv)
133 {
134 	if (pmlmepriv) {
135 		rtw_free_mlme_priv_ie_data(pmlmepriv);
136 		vfree(pmlmepriv->free_bss_buf);
137 	}
138 }
139 
140 struct	wlan_network *rtw_alloc_network(struct	mlme_priv *pmlmepriv)
141 {
142 	struct	wlan_network	*pnetwork;
143 	struct __queue *free_queue = &pmlmepriv->free_bss_pool;
144 	struct list_head *plist = NULL;
145 
146 	spin_lock_bh(&free_queue->lock);
147 
148 	if (list_empty(&free_queue->queue)) {
149 		pnetwork = NULL;
150 		goto exit;
151 	}
152 	plist = get_next(&free_queue->queue);
153 
154 	pnetwork = container_of(plist, struct wlan_network, list);
155 
156 	list_del_init(&pnetwork->list);
157 
158 	pnetwork->network_type = 0;
159 	pnetwork->fixed = false;
160 	pnetwork->last_scanned = jiffies;
161 	pnetwork->aid = 0;
162 	pnetwork->join_res = 0;
163 
164 exit:
165 	spin_unlock_bh(&free_queue->lock);
166 
167 	return pnetwork;
168 }
169 
170 void _rtw_free_network(struct	mlme_priv *pmlmepriv, struct wlan_network *pnetwork, u8 isfreeall)
171 {
172 	unsigned int delta_time;
173 	u32 lifetime = SCANQUEUE_LIFETIME;
174 	struct __queue *free_queue = &pmlmepriv->free_bss_pool;
175 
176 	if (!pnetwork)
177 		return;
178 
179 	if (pnetwork->fixed)
180 		return;
181 
182 	if (check_fwstate(pmlmepriv, WIFI_ADHOC_MASTER_STATE) ||
183 	    check_fwstate(pmlmepriv, WIFI_ADHOC_STATE))
184 		lifetime = 1;
185 
186 	if (!isfreeall) {
187 		delta_time = jiffies_to_msecs(jiffies - pnetwork->last_scanned);
188 		if (delta_time < lifetime)/*  unit:msec */
189 			return;
190 	}
191 
192 	spin_lock_bh(&free_queue->lock);
193 
194 	list_del_init(&pnetwork->list);
195 
196 	list_add_tail(&pnetwork->list, &free_queue->queue);
197 
198 	spin_unlock_bh(&free_queue->lock);
199 }
200 
201 void _rtw_free_network_nolock(struct	mlme_priv *pmlmepriv, struct wlan_network *pnetwork)
202 {
203 	struct __queue *free_queue = &pmlmepriv->free_bss_pool;
204 
205 	if (!pnetwork)
206 		return;
207 
208 	if (pnetwork->fixed)
209 		return;
210 
211 	list_del_init(&pnetwork->list);
212 
213 	list_add_tail(&pnetwork->list, get_list_head(free_queue));
214 }
215 
216 /*
217  * return the wlan_network with the matching addr
218  *
219  * Shall be called under atomic context... to avoid possible racing condition...
220  */
221 struct wlan_network *_rtw_find_network(struct __queue *scanned_queue, u8 *addr)
222 {
223 	struct list_head	*phead, *plist;
224 	struct	wlan_network *pnetwork = NULL;
225 
226 	if (is_zero_ether_addr(addr)) {
227 		pnetwork = NULL;
228 		goto exit;
229 	}
230 
231 	phead = get_list_head(scanned_queue);
232 	list_for_each(plist, phead) {
233 		pnetwork = list_entry(plist, struct wlan_network, list);
234 
235 		if (!memcmp(addr, pnetwork->network.mac_address, ETH_ALEN))
236 			break;
237 	}
238 
239 	if (plist == phead)
240 		pnetwork = NULL;
241 
242 exit:
243 	return pnetwork;
244 }
245 
246 void rtw_free_network_queue(struct adapter *padapter, u8 isfreeall)
247 {
248 	struct list_head *phead, *plist, *tmp;
249 	struct wlan_network *pnetwork;
250 	struct mlme_priv *pmlmepriv = &padapter->mlmepriv;
251 	struct __queue *scanned_queue = &pmlmepriv->scanned_queue;
252 
253 	spin_lock_bh(&scanned_queue->lock);
254 
255 	phead = get_list_head(scanned_queue);
256 	list_for_each_safe(plist, tmp, phead) {
257 		pnetwork = list_entry(plist, struct wlan_network, list);
258 
259 		_rtw_free_network(pmlmepriv, pnetwork, isfreeall);
260 	}
261 
262 	spin_unlock_bh(&scanned_queue->lock);
263 }
264 
265 bool rtw_if_up(struct adapter *padapter)
266 {
267 	if (padapter->bDriverStopped || padapter->bSurpriseRemoved ||
268 		!check_fwstate(&padapter->mlmepriv, _FW_LINKED))
269 		return false;
270 
271 	return true;
272 }
273 
274 void rtw_generate_random_ibss(u8 *pibss)
275 {
276 	unsigned long curtime = jiffies;
277 
278 	pibss[0] = 0x02;  /* in ad-hoc mode bit1 must set to 1 */
279 	pibss[1] = 0x11;
280 	pibss[2] = 0x87;
281 	pibss[3] = (u8)(curtime & 0xff) ;/* p[0]; */
282 	pibss[4] = (u8)((curtime >> 8) & 0xff) ;/* p[1]; */
283 	pibss[5] = (u8)((curtime >> 16) & 0xff) ;/* p[2]; */
284 }
285 
286 u8 *rtw_get_capability_from_ie(u8 *ie)
287 {
288 	return ie + 8 + 2;
289 }
290 
291 u16 rtw_get_capability(struct wlan_bssid_ex *bss)
292 {
293 	__le16	val;
294 
295 	memcpy((u8 *)&val, rtw_get_capability_from_ie(bss->ies), 2);
296 
297 	return le16_to_cpu(val);
298 }
299 
300 u8 *rtw_get_beacon_interval_from_ie(u8 *ie)
301 {
302 	return ie + 8;
303 }
304 
305 void rtw_free_mlme_priv(struct mlme_priv *pmlmepriv)
306 {
307 	_rtw_free_mlme_priv(pmlmepriv);
308 }
309 
310 void rtw_free_network_nolock(struct adapter *padapter, struct wlan_network *pnetwork);
311 void rtw_free_network_nolock(struct adapter *padapter, struct wlan_network *pnetwork)
312 {
313 	_rtw_free_network_nolock(&padapter->mlmepriv, pnetwork);
314 	rtw_cfg80211_unlink_bss(padapter, pnetwork);
315 }
316 
317 /*
318  * return the wlan_network with the matching addr
319  *
320  * Shall be called under atomic context... to avoid possible racing condition...
321  */
322 struct	wlan_network *rtw_find_network(struct __queue *scanned_queue, u8 *addr)
323 {
324 	struct	wlan_network *pnetwork = _rtw_find_network(scanned_queue, addr);
325 
326 	return pnetwork;
327 }
328 
329 bool rtw_is_same_ibss(struct adapter *adapter, struct wlan_network *pnetwork)
330 {
331 	struct security_priv *psecuritypriv = &adapter->securitypriv;
332 
333 	if ((psecuritypriv->dot11PrivacyAlgrthm != _NO_PRIVACY_) &&
334 		    (pnetwork->network.privacy == 0))
335 		return false;
336 	else if ((psecuritypriv->dot11PrivacyAlgrthm == _NO_PRIVACY_) &&
337 		 (pnetwork->network.privacy == 1))
338 		return false;
339 
340 	return true;
341 }
342 
343 inline int is_same_ess(struct wlan_bssid_ex *a, struct wlan_bssid_ex *b)
344 {
345 	return (a->ssid.ssid_length == b->ssid.ssid_length)
346 		&&  !memcmp(a->ssid.ssid, b->ssid.ssid, a->ssid.ssid_length);
347 }
348 
349 int is_same_network(struct wlan_bssid_ex *src, struct wlan_bssid_ex *dst, u8 feature)
350 {
351 	u16 s_cap, d_cap;
352 	__le16 tmps, tmpd;
353 
354 	memcpy((u8 *)&tmps, rtw_get_capability_from_ie(src->ies), 2);
355 	memcpy((u8 *)&tmpd, rtw_get_capability_from_ie(dst->ies), 2);
356 
357 	s_cap = le16_to_cpu(tmps);
358 	d_cap = le16_to_cpu(tmpd);
359 
360 	return (src->ssid.ssid_length == dst->ssid.ssid_length) &&
361 			((!memcmp(src->mac_address, dst->mac_address, ETH_ALEN))) &&
362 			((!memcmp(src->ssid.ssid, dst->ssid.ssid, src->ssid.ssid_length))) &&
363 			((s_cap & WLAN_CAPABILITY_IBSS) ==
364 			(d_cap & WLAN_CAPABILITY_IBSS)) &&
365 			((s_cap & WLAN_CAPABILITY_ESS) ==
366 			(d_cap & WLAN_CAPABILITY_ESS));
367 }
368 
369 struct wlan_network *_rtw_find_same_network(struct __queue *scanned_queue, struct wlan_network *network)
370 {
371 	struct list_head *phead, *plist;
372 	struct wlan_network *found = NULL;
373 
374 	phead = get_list_head(scanned_queue);
375 	list_for_each(plist, phead) {
376 		found = list_entry(plist, struct wlan_network, list);
377 
378 		if (is_same_network(&network->network, &found->network, 0))
379 			break;
380 	}
381 
382 	if (plist == phead)
383 		found = NULL;
384 
385 	return found;
386 }
387 
388 struct	wlan_network	*rtw_get_oldest_wlan_network(struct __queue *scanned_queue)
389 {
390 	struct list_head	*plist, *phead;
391 
392 	struct	wlan_network	*pwlan = NULL;
393 	struct	wlan_network	*oldest = NULL;
394 
395 	phead = get_list_head(scanned_queue);
396 
397 	list_for_each(plist, phead) {
398 		pwlan = list_entry(plist, struct wlan_network, list);
399 
400 		if (!pwlan->fixed) {
401 			if (!oldest || time_after(oldest->last_scanned, pwlan->last_scanned))
402 				oldest = pwlan;
403 		}
404 	}
405 	return oldest;
406 }
407 
408 void update_network(struct wlan_bssid_ex *dst, struct wlan_bssid_ex *src,
409 	struct adapter *padapter, bool update_ie)
410 {
411 	long rssi_ori = dst->rssi;
412 
413 	u8 sq_smp = src->phy_info.signal_quality;
414 
415 	u8 ss_final;
416 	u8 sq_final;
417 	long rssi_final;
418 
419 	/* The rule below is 1/5 for sample value, 4/5 for history value */
420 	if (check_fwstate(&padapter->mlmepriv, _FW_LINKED) && is_same_network(&padapter->mlmepriv.cur_network.network, src, 0)) {
421 		/* Take the recvpriv's value for the connected AP*/
422 		ss_final = padapter->recvpriv.signal_strength;
423 		sq_final = padapter->recvpriv.signal_qual;
424 		/* the rssi value here is undecorated, and will be used for antenna diversity */
425 		if (sq_smp != 101) /* from the right channel */
426 			rssi_final = (src->rssi + dst->rssi * 4) / 5;
427 		else
428 			rssi_final = rssi_ori;
429 	} else {
430 		if (sq_smp != 101) { /* from the right channel */
431 			ss_final = ((u32)(src->phy_info.signal_strength) + (u32)(dst->phy_info.signal_strength) * 4) / 5;
432 			sq_final = ((u32)(src->phy_info.signal_quality) + (u32)(dst->phy_info.signal_quality) * 4) / 5;
433 			rssi_final = (src->rssi + dst->rssi * 4) / 5;
434 		} else {
435 			/* bss info not receiving from the right channel, use the original RX signal infos */
436 			ss_final = dst->phy_info.signal_strength;
437 			sq_final = dst->phy_info.signal_quality;
438 			rssi_final = dst->rssi;
439 		}
440 	}
441 
442 	if (update_ie) {
443 		dst->reserved[0] = src->reserved[0];
444 		dst->reserved[1] = src->reserved[1];
445 		memcpy((u8 *)dst, (u8 *)src, get_wlan_bssid_ex_sz(src));
446 	}
447 
448 	dst->phy_info.signal_strength = ss_final;
449 	dst->phy_info.signal_quality = sq_final;
450 	dst->rssi = rssi_final;
451 }
452 
453 static void update_current_network(struct adapter *adapter, struct wlan_bssid_ex *pnetwork)
454 {
455 	struct	mlme_priv *pmlmepriv = &adapter->mlmepriv;
456 
457 	if (check_fwstate(pmlmepriv, _FW_LINKED) && (is_same_network(&pmlmepriv->cur_network.network, pnetwork, 0))) {
458 		update_network(&pmlmepriv->cur_network.network, pnetwork, adapter, true);
459 		if (pmlmepriv->cur_network.network.ie_length < sizeof(struct ndis_802_11_fix_ie))
460 			return;
461 
462 		rtw_update_protection(adapter, (pmlmepriv->cur_network.network.ies) + sizeof(struct ndis_802_11_fix_ie),
463 								pmlmepriv->cur_network.network.ie_length - sizeof(struct ndis_802_11_fix_ie));
464 	}
465 }
466 
467 /* Caller must hold pmlmepriv->lock first. */
468 void rtw_update_scanned_network(struct adapter *adapter, struct wlan_bssid_ex *target)
469 {
470 	struct list_head	*plist, *phead;
471 	u32 bssid_ex_sz;
472 	struct mlme_priv *pmlmepriv = &adapter->mlmepriv;
473 	struct __queue	*queue	= &pmlmepriv->scanned_queue;
474 	struct wlan_network	*pnetwork = NULL;
475 	struct wlan_network	*oldest = NULL;
476 	int target_find = 0;
477 	u8 feature = 0;
478 
479 	spin_lock_bh(&queue->lock);
480 	phead = get_list_head(queue);
481 	list_for_each(plist, phead) {
482 		pnetwork = list_entry(plist, struct wlan_network, list);
483 
484 		if (is_same_network(&pnetwork->network, target, feature)) {
485 			target_find = 1;
486 			break;
487 		}
488 
489 		if (rtw_roam_flags(adapter)) {
490 			/* TODO: don't select network in the same ess as oldest if it's new enough*/
491 		}
492 
493 		if (!oldest || time_after(oldest->last_scanned, pnetwork->last_scanned))
494 			oldest = pnetwork;
495 	}
496 
497 	/*
498 	 * If we didn't find a match, then get a new network slot to initialize
499 	 * with this beacon's information
500 	 */
501 	if (!target_find) {
502 		if (list_empty(&pmlmepriv->free_bss_pool.queue)) {
503 			/* If there are no more slots, expire the oldest */
504 			/* list_del_init(&oldest->list); */
505 			pnetwork = oldest;
506 			if (!pnetwork)
507 				goto exit;
508 
509 			memcpy(&pnetwork->network, target,  get_wlan_bssid_ex_sz(target));
510 			/*  variable initialize */
511 			pnetwork->fixed = false;
512 			pnetwork->last_scanned = jiffies;
513 
514 			pnetwork->network_type = 0;
515 			pnetwork->aid = 0;
516 			pnetwork->join_res = 0;
517 
518 			/* bss info not receiving from the right channel */
519 			if (pnetwork->network.phy_info.signal_quality == 101)
520 				pnetwork->network.phy_info.signal_quality = 0;
521 		} else {
522 			/* Otherwise just pull from the free list */
523 
524 			pnetwork = rtw_alloc_network(pmlmepriv); /*  will update scan_time */
525 
526 			if (!pnetwork)
527 				goto exit;
528 
529 			bssid_ex_sz = get_wlan_bssid_ex_sz(target);
530 			target->length = bssid_ex_sz;
531 			memcpy(&pnetwork->network, target, bssid_ex_sz);
532 
533 			pnetwork->last_scanned = jiffies;
534 
535 			/* bss info not receiving from the right channel */
536 			if (pnetwork->network.phy_info.signal_quality == 101)
537 				pnetwork->network.phy_info.signal_quality = 0;
538 
539 			list_add_tail(&pnetwork->list, &queue->queue);
540 		}
541 	} else {
542 		/* we have an entry and we are going to update it. But this entry may
543 		 * be already expired. In this case we do the same as we found a new
544 		 * net and call the new_net handler
545 		 */
546 		bool update_ie = true;
547 
548 		pnetwork->last_scanned = jiffies;
549 
550 		/* target.reserved[0]== 1, means that scanned network is a bcn frame. */
551 		if (pnetwork->network.ie_length > target->ie_length && target->reserved[0] == 1)
552 			update_ie = false;
553 
554 		/*  probe resp(3) > beacon(1) > probe req(2) */
555 		if (target->reserved[0] != 2 &&
556 		    target->reserved[0] >= pnetwork->network.reserved[0]) {
557 			update_ie = true;
558 		} else {
559 			update_ie = false;
560 		}
561 
562 		update_network(&pnetwork->network, target, adapter, update_ie);
563 	}
564 
565 exit:
566 	spin_unlock_bh(&queue->lock);
567 }
568 
569 void rtw_add_network(struct adapter *adapter, struct wlan_bssid_ex *pnetwork);
570 void rtw_add_network(struct adapter *adapter, struct wlan_bssid_ex *pnetwork)
571 {
572 	update_current_network(adapter, pnetwork);
573 	rtw_update_scanned_network(adapter, pnetwork);
574 }
575 
576 /* select the desired network based on the capability of the (i)bss.
577  * check items:
578  * (1) security
579  * (2) network_type
580  * (3) WMM
581  * (4) HT
582  * (5) others
583  */
584 static bool rtw_is_desired_network(struct adapter *adapter, struct wlan_network *pnetwork)
585 {
586 	struct security_priv *psecuritypriv = &adapter->securitypriv;
587 	struct mlme_priv *pmlmepriv = &adapter->mlmepriv;
588 	u32 desired_encmode;
589 	u32 privacy;
590 	uint wps_ielen;
591 	bool bselected = true;
592 
593 	desired_encmode = psecuritypriv->ndisencryptstatus;
594 	privacy = pnetwork->network.privacy;
595 
596 	if (check_fwstate(pmlmepriv, WIFI_UNDER_WPS)) {
597 		if (pnetwork->network.ie_length < _FIXED_IE_LENGTH_)
598 			return false;
599 		if (rtw_get_wps_ie(pnetwork->network.ies + _FIXED_IE_LENGTH_, pnetwork->network.ie_length - _FIXED_IE_LENGTH_, NULL, &wps_ielen))
600 			return true;
601 		else
602 			return false;
603 	}
604 
605 	if (adapter->registrypriv.wifi_spec == 1) { /* for  correct flow of 8021X  to do.... */
606 		u8 *p = NULL;
607 		uint ie_len = 0;
608 
609 		if ((desired_encmode == Ndis802_11EncryptionDisabled) && (privacy != 0))
610 			bselected = false;
611 
612 		if (psecuritypriv->ndisauthtype == Ndis802_11AuthModeWPA2PSK) {
613 			if (pnetwork->network.ie_length < _BEACON_IE_OFFSET_) {
614 				bselected = false;
615 			} else {
616 				p = rtw_get_ie(pnetwork->network.ies + _BEACON_IE_OFFSET_, WLAN_EID_RSN, &ie_len, (pnetwork->network.ie_length - _BEACON_IE_OFFSET_));
617 				if (p && ie_len > 0)
618 					bselected = true;
619 				else
620 					bselected = false;
621 			}
622 		}
623 	}
624 
625 	if ((desired_encmode != Ndis802_11EncryptionDisabled) && (privacy == 0))
626 		bselected = false;
627 
628 	if (check_fwstate(pmlmepriv, WIFI_ADHOC_STATE)) {
629 		if (pnetwork->network.infrastructure_mode != pmlmepriv->cur_network.network.infrastructure_mode)
630 			bselected = false;
631 	}
632 
633 	return bselected;
634 }
635 
636 /* TODO: Perry : For Power Management */
637 void rtw_atimdone_event_callback(struct adapter	*adapter, u8 *pbuf)
638 {
639 }
640 
641 void rtw_survey_event_callback(struct adapter	*adapter, u8 *pbuf)
642 {
643 	u32 len;
644 	struct wlan_bssid_ex *pnetwork;
645 	struct	mlme_priv *pmlmepriv = &adapter->mlmepriv;
646 
647 	pnetwork = (struct wlan_bssid_ex *)pbuf;
648 
649 	len = get_wlan_bssid_ex_sz(pnetwork);
650 	if (len > (sizeof(struct wlan_bssid_ex)))
651 		return;
652 
653 	spin_lock_bh(&pmlmepriv->lock);
654 
655 	/*  update IBSS_network 's timestamp */
656 	if (check_fwstate(pmlmepriv, WIFI_ADHOC_MASTER_STATE)) {
657 		if (!memcmp(&pmlmepriv->cur_network.network.mac_address, pnetwork->mac_address, ETH_ALEN)) {
658 			struct wlan_network *ibss_wlan = NULL;
659 
660 			memcpy(pmlmepriv->cur_network.network.ies, pnetwork->ies, 8);
661 			spin_lock_bh(&pmlmepriv->scanned_queue.lock);
662 			ibss_wlan = rtw_find_network(&pmlmepriv->scanned_queue,  pnetwork->mac_address);
663 			if (ibss_wlan) {
664 				memcpy(ibss_wlan->network.ies, pnetwork->ies, 8);
665 				spin_unlock_bh(&pmlmepriv->scanned_queue.lock);
666 				goto exit;
667 			}
668 			spin_unlock_bh(&pmlmepriv->scanned_queue.lock);
669 		}
670 	}
671 
672 	/*  lock pmlmepriv->lock when you accessing network_q */
673 	if (!check_fwstate(pmlmepriv, _FW_UNDER_LINKING)) {
674 		if (pnetwork->ssid.ssid[0] == 0)
675 			pnetwork->ssid.ssid_length = 0;
676 		rtw_add_network(adapter, pnetwork);
677 	}
678 
679 exit:
680 
681 	spin_unlock_bh(&pmlmepriv->lock);
682 }
683 
684 void rtw_surveydone_event_callback(struct adapter	*adapter, u8 *pbuf)
685 {
686 	struct	mlme_priv *pmlmepriv = &adapter->mlmepriv;
687 
688 	spin_lock_bh(&pmlmepriv->lock);
689 	if (pmlmepriv->wps_probe_req_ie) {
690 		pmlmepriv->wps_probe_req_ie_len = 0;
691 		kfree(pmlmepriv->wps_probe_req_ie);
692 		pmlmepriv->wps_probe_req_ie = NULL;
693 	}
694 
695 	if (check_fwstate(pmlmepriv, _FW_UNDER_SURVEY)) {
696 		spin_unlock_bh(&pmlmepriv->lock);
697 		timer_delete_sync(&pmlmepriv->scan_to_timer);
698 		spin_lock_bh(&pmlmepriv->lock);
699 		_clr_fwstate_(pmlmepriv, _FW_UNDER_SURVEY);
700 	}
701 
702 	rtw_set_signal_stat_timer(&adapter->recvpriv);
703 
704 	if (pmlmepriv->to_join) {
705 		if (check_fwstate(pmlmepriv, WIFI_ADHOC_STATE)) {
706 			if (!check_fwstate(pmlmepriv, _FW_LINKED)) {
707 				set_fwstate(pmlmepriv, _FW_UNDER_LINKING);
708 
709 				if (rtw_select_and_join_from_scanned_queue(pmlmepriv) == _SUCCESS) {
710 					_set_timer(&pmlmepriv->assoc_timer, MAX_JOIN_TIMEOUT);
711 				} else {
712 					u8 ret = _SUCCESS;
713 					struct wlan_bssid_ex    *pdev_network = &adapter->registrypriv.dev_network;
714 					u8 *pibss = adapter->registrypriv.dev_network.mac_address;
715 
716 					/* pmlmepriv->fw_state ^= _FW_UNDER_SURVEY;because don't set assoc_timer */
717 					_clr_fwstate_(pmlmepriv, _FW_UNDER_SURVEY);
718 
719 					memcpy(&pdev_network->ssid, &pmlmepriv->assoc_ssid, sizeof(struct ndis_802_11_ssid));
720 
721 					rtw_update_registrypriv_dev_network(adapter);
722 					rtw_generate_random_ibss(pibss);
723 
724 					pmlmepriv->fw_state = WIFI_ADHOC_MASTER_STATE;
725 
726 					pmlmepriv->to_join = false;
727 
728 					ret = rtw_createbss_cmd(adapter);
729 					if (ret != _SUCCESS)
730 						goto unlock;
731 				}
732 			}
733 		} else {
734 			int s_ret;
735 
736 			set_fwstate(pmlmepriv, _FW_UNDER_LINKING);
737 			pmlmepriv->to_join = false;
738 			s_ret = rtw_select_and_join_from_scanned_queue(pmlmepriv);
739 			if (s_ret == _SUCCESS) {
740 				_set_timer(&pmlmepriv->assoc_timer, MAX_JOIN_TIMEOUT);
741 			} else if (s_ret == 2) {/* there is no need to wait for join */
742 				_clr_fwstate_(pmlmepriv, _FW_UNDER_LINKING);
743 				rtw_indicate_connect(adapter);
744 			} else {
745 				if (rtw_to_roam(adapter) != 0) {
746 					if (rtw_dec_to_roam(adapter) == 0 ||
747 					    rtw_sitesurvey_cmd(adapter, &pmlmepriv->assoc_ssid,
748 							       1, NULL, 0) != _SUCCESS) {
749 						rtw_set_to_roam(adapter, 0);
750 						rtw_free_assoc_resources(adapter, 1);
751 						rtw_indicate_disconnect(adapter);
752 					} else {
753 						pmlmepriv->to_join = true;
754 					}
755 				} else {
756 					rtw_indicate_disconnect(adapter);
757 				}
758 				_clr_fwstate_(pmlmepriv, _FW_UNDER_LINKING);
759 			}
760 		}
761 	} else {
762 		if (rtw_chk_roam_flags(adapter, RTW_ROAM_ACTIVE)) {
763 			if (check_fwstate(pmlmepriv, WIFI_STATION_STATE)
764 				&& check_fwstate(pmlmepriv, _FW_LINKED)) {
765 				if (rtw_select_roaming_candidate(pmlmepriv) == _SUCCESS) {
766 					receive_disconnect(adapter, pmlmepriv->cur_network.network.mac_address
767 						, WLAN_REASON_ACTIVE_ROAM);
768 				}
769 			}
770 		}
771 	}
772 
773 unlock:
774 	spin_unlock_bh(&pmlmepriv->lock);
775 
776 	rtw_os_xmit_schedule(adapter);
777 
778 	rtw_cfg80211_surveydone_event_callback(adapter);
779 
780 	rtw_indicate_scan_done(adapter, false);
781 }
782 
783 void rtw_dummy_event_callback(struct adapter *adapter, u8 *pbuf)
784 {
785 }
786 
787 void rtw_fwdbg_event_callback(struct adapter *adapter, u8 *pbuf)
788 {
789 }
790 
791 static void free_scanqueue(struct	mlme_priv *pmlmepriv)
792 {
793 	struct __queue *free_queue = &pmlmepriv->free_bss_pool;
794 	struct __queue *scan_queue = &pmlmepriv->scanned_queue;
795 	struct list_head	*plist, *phead, *ptemp;
796 
797 	spin_lock_bh(&scan_queue->lock);
798 	spin_lock_bh(&free_queue->lock);
799 
800 	phead = get_list_head(scan_queue);
801 	plist = get_next(phead);
802 
803 	while (plist != phead) {
804 		ptemp = get_next(plist);
805 		list_del_init(plist);
806 		list_add_tail(plist, &free_queue->queue);
807 		plist = ptemp;
808 	}
809 
810 	spin_unlock_bh(&free_queue->lock);
811 	spin_unlock_bh(&scan_queue->lock);
812 }
813 
814 static void find_network(struct adapter *adapter)
815 {
816 	struct wlan_network *pwlan = NULL;
817 	struct	mlme_priv *pmlmepriv = &adapter->mlmepriv;
818 	struct wlan_network *tgt_network = &pmlmepriv->cur_network;
819 
820 	pwlan = rtw_find_network(&pmlmepriv->scanned_queue, tgt_network->network.mac_address);
821 	if (!pwlan)
822 		return;
823 
824 	pwlan->fixed = false;
825 
826 	if (check_fwstate(pmlmepriv, WIFI_ADHOC_MASTER_STATE) &&
827 	    (adapter->stapriv.asoc_sta_count == 1))
828 		rtw_free_network_nolock(adapter, pwlan);
829 }
830 
831 /* rtw_free_assoc_resources: the caller has to lock pmlmepriv->lock */
832 void rtw_free_assoc_resources(struct adapter *adapter, int lock_scanned_queue)
833 {
834 	struct	mlme_priv *pmlmepriv = &adapter->mlmepriv;
835 	struct wlan_network *tgt_network = &pmlmepriv->cur_network;
836 
837 	if (check_fwstate(pmlmepriv, WIFI_STATION_STATE | WIFI_AP_STATE)) {
838 		struct sta_info *psta;
839 
840 		psta = rtw_get_stainfo(&adapter->stapriv, tgt_network->network.mac_address);
841 		rtw_free_stainfo(adapter,  psta);
842 	}
843 
844 	if (check_fwstate(pmlmepriv, WIFI_ADHOC_STATE | WIFI_ADHOC_MASTER_STATE | WIFI_AP_STATE)) {
845 		struct sta_info *psta;
846 
847 		rtw_free_all_stainfo(adapter);
848 
849 		psta = rtw_get_bcmc_stainfo(adapter);
850 		rtw_free_stainfo(adapter, psta);
851 
852 		rtw_init_bcmc_stainfo(adapter);
853 	}
854 
855 	find_network(adapter);
856 
857 	if (lock_scanned_queue)
858 		adapter->securitypriv.key_mask = 0;
859 }
860 
861 /* rtw_indicate_connect: the caller has to lock pmlmepriv->lock */
862 void rtw_indicate_connect(struct adapter *padapter)
863 {
864 	struct mlme_priv *pmlmepriv = &padapter->mlmepriv;
865 
866 	pmlmepriv->to_join = false;
867 
868 	if (!check_fwstate(&padapter->mlmepriv, _FW_LINKED)) {
869 		set_fwstate(pmlmepriv, _FW_LINKED);
870 
871 		if (check_fwstate(pmlmepriv, WIFI_ADHOC_MASTER_STATE) ||
872 		    check_fwstate(pmlmepriv, WIFI_ADHOC_STATE))
873 			rtw_cfg80211_ibss_indicate_connect(padapter);
874 		else
875 			rtw_cfg80211_indicate_connect(padapter);
876 
877 		netif_carrier_on(padapter->pnetdev);
878 
879 		if (padapter->pid[2] != 0)
880 			rtw_signal_process(padapter->pid[2], SIGALRM);
881 	}
882 
883 	rtw_set_to_roam(padapter, 0);
884 	rtw_set_scan_deny(padapter, 3000);
885 }
886 
887 /* rtw_indicate_disconnect: the caller has to lock pmlmepriv->lock */
888 void rtw_indicate_disconnect(struct adapter *padapter)
889 {
890 	struct	mlme_priv *pmlmepriv = &padapter->mlmepriv;
891 
892 	_clr_fwstate_(pmlmepriv, _FW_UNDER_LINKING | WIFI_UNDER_WPS);
893 
894 	if (rtw_to_roam(padapter) > 0)
895 		_clr_fwstate_(pmlmepriv, _FW_LINKED);
896 
897 	if (check_fwstate(&padapter->mlmepriv, _FW_LINKED) || rtw_to_roam(padapter) <= 0) {
898 		/*  Do it first for tx broadcast pkt after disconnection issue! */
899 		netif_carrier_off(padapter->pnetdev);
900 
901 		rtw_cfg80211_indicate_disconnect(padapter);
902 
903 		/* modify for CONFIG_IEEE80211W, none 11w also can use the same command */
904 		rtw_reset_securitypriv_cmd(padapter);
905 
906 		/* set ips_deny_time to avoid enter IPS before LPS leave */
907 		rtw_set_ips_deny(padapter, 3000);
908 
909 		_clr_fwstate_(pmlmepriv, _FW_LINKED);
910 
911 		rtw_clear_scan_deny(padapter);
912 	}
913 
914 	rtw_lps_ctrl_wk_cmd(padapter, LPS_CTRL_DISCONNECT, 1);
915 }
916 
917 inline void rtw_indicate_scan_done(struct adapter *padapter, bool aborted)
918 {
919 	rtw_cfg80211_indicate_scan_done(padapter, aborted);
920 
921 	if ((!adapter_to_pwrctl(padapter)->bInSuspend) &&
922 	    (!check_fwstate(&padapter->mlmepriv,
923 			    WIFI_ASOC_STATE | WIFI_UNDER_LINKING))) {
924 		rtw_set_ips_deny(padapter, 0);
925 		_set_timer(&padapter->mlmepriv.dynamic_chk_timer, 1);
926 	}
927 }
928 
929 void rtw_scan_abort(struct adapter *adapter)
930 {
931 	unsigned long start;
932 	struct mlme_priv *pmlmepriv = &adapter->mlmepriv;
933 	struct mlme_ext_priv *pmlmeext = &adapter->mlmeextpriv;
934 
935 	start = jiffies;
936 	pmlmeext->scan_abort = true;
937 	while (check_fwstate(pmlmepriv, _FW_UNDER_SURVEY)
938 		&& jiffies_to_msecs(start) <= 200) {
939 		if (adapter->bDriverStopped || adapter->bSurpriseRemoved)
940 			break;
941 
942 		msleep(20);
943 	}
944 
945 	if (check_fwstate(pmlmepriv, _FW_UNDER_SURVEY))
946 		rtw_indicate_scan_done(adapter, true);
947 
948 	pmlmeext->scan_abort = false;
949 }
950 
951 static struct sta_info *rtw_joinbss_update_stainfo(struct adapter *padapter, struct wlan_network *pnetwork)
952 {
953 	int i;
954 	struct sta_info *bmc_sta, *psta = NULL;
955 	struct recv_reorder_ctrl *preorder_ctrl;
956 	struct sta_priv *pstapriv = &padapter->stapriv;
957 	struct mlme_ext_priv *pmlmeext = &padapter->mlmeextpriv;
958 
959 	psta = rtw_get_stainfo(pstapriv, pnetwork->network.mac_address);
960 	if (!psta)
961 		psta = rtw_alloc_stainfo(pstapriv, pnetwork->network.mac_address);
962 
963 	if (psta) { /* update ptarget_sta */
964 
965 		psta->aid  = pnetwork->join_res;
966 
967 		update_sta_info(padapter, psta);
968 
969 		/* update station supportRate */
970 		psta->bssratelen = rtw_get_rateset_len(pnetwork->network.supported_rates);
971 		memcpy(psta->bssrateset, pnetwork->network.supported_rates, psta->bssratelen);
972 		rtw_hal_update_sta_rate_mask(padapter, psta);
973 
974 		psta->wireless_mode = pmlmeext->cur_wireless_mode;
975 		psta->raid = networktype_to_raid_ex(padapter, psta);
976 
977 		/* sta mode */
978 		rtw_hal_set_odm_var(padapter, HAL_ODM_STA_INFO, psta, true);
979 
980 		/* security related */
981 		if (padapter->securitypriv.dot11AuthAlgrthm == dot11AuthAlgrthm_8021X) {
982 			padapter->securitypriv.binstallGrpkey = false;
983 			padapter->securitypriv.busetkipkey = false;
984 			padapter->securitypriv.bgrpkey_handshake = false;
985 
986 			psta->ieee8021x_blocked = true;
987 			psta->dot118021XPrivacy = padapter->securitypriv.dot11PrivacyAlgrthm;
988 
989 			memset((u8 *)&psta->dot118021x_UncstKey, 0, sizeof(union Keytype));
990 
991 			memset((u8 *)&psta->dot11tkiprxmickey, 0, sizeof(union Keytype));
992 			memset((u8 *)&psta->dot11tkiptxmickey, 0, sizeof(union Keytype));
993 
994 			memset((u8 *)&psta->dot11txpn, 0, sizeof(union pn48));
995 			psta->dot11txpn.val = psta->dot11txpn.val + 1;
996 			memset((u8 *)&psta->dot11wtxpn, 0, sizeof(union pn48));
997 			memset((u8 *)&psta->dot11rxpn, 0, sizeof(union pn48));
998 		}
999 
1000 		/* When doing the WPS, the wps_ie_len won't equal to 0 */
1001 		/* And the Wi-Fi driver shouldn't allow the data packet to be transmitted. */
1002 		if (padapter->securitypriv.wps_ie_len != 0) {
1003 			psta->ieee8021x_blocked = true;
1004 			padapter->securitypriv.wps_ie_len = 0;
1005 		}
1006 
1007 		/* for A-MPDU Rx reordering buffer control for bmc_sta & sta_info */
1008 		/* if A-MPDU Rx is enabled, resetting  rx_ordering_ctrl wstart_b(indicate_seq) to default value = 0xffff */
1009 		/* todo: check if AP can send A-MPDU packets */
1010 		for (i = 0; i < 16 ; i++) {
1011 			preorder_ctrl = &psta->recvreorder_ctrl[i];
1012 			preorder_ctrl->enable = false;
1013 			preorder_ctrl->indicate_seq = 0xffff;
1014 			preorder_ctrl->wend_b = 0xffff;
1015 			preorder_ctrl->wsize_b = 64;/* max_ampdu_sz;ex. 32(kbytes) -> wsize_b =32 */
1016 		}
1017 
1018 		bmc_sta = rtw_get_bcmc_stainfo(padapter);
1019 		if (bmc_sta) {
1020 			for (i = 0; i < 16 ; i++) {
1021 				preorder_ctrl = &bmc_sta->recvreorder_ctrl[i];
1022 				preorder_ctrl->enable = false;
1023 				preorder_ctrl->indicate_seq = 0xffff;
1024 				preorder_ctrl->wend_b = 0xffff;
1025 				preorder_ctrl->wsize_b = 64;/* max_ampdu_sz;ex. 32(kbytes) -> wsize_b =32 */
1026 			}
1027 		}
1028 	}
1029 
1030 	return psta;
1031 }
1032 
1033 /* pnetwork : returns from rtw_joinbss_event_callback */
1034 /* ptarget_wlan: found from scanned_queue */
1035 static void rtw_joinbss_update_network(struct adapter *padapter, struct wlan_network *ptarget_wlan, struct wlan_network  *pnetwork)
1036 {
1037 	struct mlme_priv *pmlmepriv = &padapter->mlmepriv;
1038 	struct wlan_network  *cur_network = &pmlmepriv->cur_network;
1039 
1040 	/*  why not use ptarget_wlan?? */
1041 	memcpy(&cur_network->network, &pnetwork->network, pnetwork->network.length);
1042 	/*  some ies in pnetwork is wrong, so we should use ptarget_wlan ies */
1043 	cur_network->network.ie_length = ptarget_wlan->network.ie_length;
1044 	memcpy(&cur_network->network.ies[0], &ptarget_wlan->network.ies[0], MAX_IE_SZ);
1045 
1046 	cur_network->aid = pnetwork->join_res;
1047 
1048 	rtw_set_signal_stat_timer(&padapter->recvpriv);
1049 
1050 	padapter->recvpriv.signal_strength = ptarget_wlan->network.phy_info.signal_strength;
1051 	padapter->recvpriv.signal_qual = ptarget_wlan->network.phy_info.signal_quality;
1052 	/* the ptarget_wlan->network.rssi is raw data, we use ptarget_wlan->network.phy_info.signal_strength instead (has scaled) */
1053 	padapter->recvpriv.rssi = translate_percentage_to_dbm(ptarget_wlan->network.phy_info.signal_strength);
1054 
1055 	rtw_set_signal_stat_timer(&padapter->recvpriv);
1056 
1057 	/* update fw_state will clr _FW_UNDER_LINKING here indirectly */
1058 	switch (pnetwork->network.infrastructure_mode) {
1059 	case Ndis802_11Infrastructure:
1060 
1061 			if (pmlmepriv->fw_state & WIFI_UNDER_WPS)
1062 				pmlmepriv->fw_state = WIFI_STATION_STATE | WIFI_UNDER_WPS;
1063 			else
1064 				pmlmepriv->fw_state = WIFI_STATION_STATE;
1065 
1066 			break;
1067 	case Ndis802_11IBSS:
1068 			pmlmepriv->fw_state = WIFI_ADHOC_STATE;
1069 			break;
1070 	default:
1071 			pmlmepriv->fw_state = WIFI_NULL_STATE;
1072 			break;
1073 	}
1074 
1075 	if (cur_network->network.ie_length < sizeof(struct ndis_802_11_fix_ie))
1076 		return;
1077 
1078 	rtw_update_protection(padapter, (cur_network->network.ies) + sizeof(struct ndis_802_11_fix_ie),
1079 									(cur_network->network.ie_length - sizeof(struct ndis_802_11_fix_ie)));
1080 
1081 	rtw_update_ht_cap(padapter, cur_network->network.ies, cur_network->network.ie_length, (u8) cur_network->network.configuration.ds_config);
1082 }
1083 
1084 static struct rt_pmkid_list   backupPMKIDList[NUM_PMKID_CACHE];
1085 void rtw_reset_securitypriv(struct adapter *adapter)
1086 {
1087 	u8 backupPMKIDIndex = 0;
1088 	u8 backupTKIPCountermeasure = 0x00;
1089 	u32 backupTKIPcountermeasure_time = 0;
1090 	/*  add for CONFIG_IEEE80211W, none 11w also can use */
1091 	struct mlme_ext_priv *pmlmeext = &adapter->mlmeextpriv;
1092 
1093 	spin_lock_bh(&adapter->security_key_mutex);
1094 
1095 	if (adapter->securitypriv.dot11AuthAlgrthm == dot11AuthAlgrthm_8021X) {
1096 		/* 802.1x */
1097 		/*  Added by Albert 2009/02/18 */
1098 		/*  We have to backup the PMK information for WiFi PMK Caching test item. */
1099 		/*  */
1100 		/*  Backup the btkip_countermeasure information. */
1101 		/*  When the countermeasure is trigger, the driver have to disconnect with AP for 60 seconds. */
1102 
1103 		memcpy(&backupPMKIDList[0], &adapter->securitypriv.PMKIDList[0], sizeof(struct rt_pmkid_list) * NUM_PMKID_CACHE);
1104 		backupPMKIDIndex = adapter->securitypriv.PMKIDIndex;
1105 		backupTKIPCountermeasure = adapter->securitypriv.btkip_countermeasure;
1106 		backupTKIPcountermeasure_time = adapter->securitypriv.btkip_countermeasure_time;
1107 
1108 		/* reset RX BIP packet number */
1109 		pmlmeext->mgnt_80211w_IPN_rx = 0;
1110 
1111 		memset((unsigned char *)&adapter->securitypriv, 0, sizeof(struct security_priv));
1112 
1113 		/*  Added by Albert 2009/02/18 */
1114 		/*  Restore the PMK information to securitypriv structure for the following connection. */
1115 		memcpy(&adapter->securitypriv.PMKIDList[0], &backupPMKIDList[0], sizeof(struct rt_pmkid_list) * NUM_PMKID_CACHE);
1116 		adapter->securitypriv.PMKIDIndex = backupPMKIDIndex;
1117 		adapter->securitypriv.btkip_countermeasure = backupTKIPCountermeasure;
1118 		adapter->securitypriv.btkip_countermeasure_time = backupTKIPcountermeasure_time;
1119 
1120 		adapter->securitypriv.ndisauthtype = Ndis802_11AuthModeOpen;
1121 		adapter->securitypriv.ndisencryptstatus = Ndis802_11WEPDisabled;
1122 
1123 	} else {
1124 		/* reset values in securitypriv */
1125 		/* if (adapter->mlmepriv.fw_state & WIFI_STATION_STATE) */
1126 		/*  */
1127 		struct security_priv *psec_priv = &adapter->securitypriv;
1128 
1129 		psec_priv->dot11AuthAlgrthm = dot11AuthAlgrthm_Open;  /* open system */
1130 		psec_priv->dot11PrivacyAlgrthm = _NO_PRIVACY_;
1131 		psec_priv->dot11PrivacyKeyIndex = 0;
1132 
1133 		psec_priv->dot118021XGrpPrivacy = _NO_PRIVACY_;
1134 		psec_priv->dot118021XGrpKeyid = 1;
1135 
1136 		psec_priv->ndisauthtype = Ndis802_11AuthModeOpen;
1137 		psec_priv->ndisencryptstatus = Ndis802_11WEPDisabled;
1138 		/*  */
1139 	}
1140 	/*  add for CONFIG_IEEE80211W, none 11w also can use */
1141 	spin_unlock_bh(&adapter->security_key_mutex);
1142 }
1143 
1144 /* Notes: the function could be > passive_level (the same context as Rx tasklet) */
1145 /* pnetwork : returns from rtw_joinbss_event_callback */
1146 /* ptarget_wlan: found from scanned_queue */
1147 /* if join_res > 0, for (fw_state ==WIFI_STATION_STATE), we check if  "ptarget_sta" & "ptarget_wlan" exist. */
1148 /* if join_res > 0, for (fw_state ==WIFI_ADHOC_STATE), we only check if "ptarget_wlan" exist. */
1149 /* if join_res > 0, update "cur_network->network" from "pnetwork->network" if (ptarget_wlan != NULL). */
1150 /*  */
1151 void rtw_joinbss_event_prehandle(struct adapter *adapter, u8 *pbuf)
1152 {
1153 	struct sta_info *ptarget_sta = NULL, *pcur_sta = NULL;
1154 	struct	sta_priv *pstapriv = &adapter->stapriv;
1155 	struct	mlme_priv *pmlmepriv = &adapter->mlmepriv;
1156 	struct wlan_network	*pnetwork	= (struct wlan_network *)pbuf;
1157 	struct wlan_network	*cur_network = &pmlmepriv->cur_network;
1158 	struct wlan_network	*pcur_wlan = NULL, *ptarget_wlan = NULL;
1159 	unsigned int		the_same_macaddr = false;
1160 
1161 	the_same_macaddr = !memcmp(pnetwork->network.mac_address, cur_network->network.mac_address, ETH_ALEN);
1162 
1163 	pnetwork->network.length = get_wlan_bssid_ex_sz(&pnetwork->network);
1164 	if (pnetwork->network.length > sizeof(struct wlan_bssid_ex))
1165 		return;
1166 
1167 	spin_lock_bh(&pmlmepriv->lock);
1168 
1169 	pmlmepriv->link_detect_info.traffic_transition_count = 0;
1170 	pmlmepriv->link_detect_info.low_power_transition_count = 0;
1171 
1172 	if (pnetwork->join_res == -4) {
1173 		rtw_reset_securitypriv(adapter);
1174 		_set_timer(&pmlmepriv->assoc_timer, 1);
1175 
1176 		if (check_fwstate(pmlmepriv, _FW_UNDER_LINKING))
1177 			_clr_fwstate_(pmlmepriv, _FW_UNDER_LINKING);
1178 
1179 		spin_unlock_bh(&pmlmepriv->lock);
1180 		return;
1181 	}
1182 
1183 	if (pnetwork->join_res <= 0) { /* if join_res < 0 (join fails), then try again */
1184 		_set_timer(&pmlmepriv->assoc_timer, 1);
1185 		_clr_fwstate_(pmlmepriv, _FW_UNDER_LINKING);
1186 		spin_unlock_bh(&pmlmepriv->lock);
1187 		return;
1188 	}
1189 
1190 	spin_lock_bh(&pmlmepriv->scanned_queue.lock);
1191 
1192 	if (!check_fwstate(pmlmepriv, _FW_UNDER_LINKING)) {
1193 		spin_unlock_bh(&pmlmepriv->scanned_queue.lock);
1194 		spin_unlock_bh(&pmlmepriv->lock);
1195 		return;
1196 	}
1197 
1198 	/* s1. find ptarget_wlan */
1199 	if (check_fwstate(pmlmepriv, _FW_LINKED)) {
1200 		if (the_same_macaddr) {
1201 			ptarget_wlan = rtw_find_network(&pmlmepriv->scanned_queue, cur_network->network.mac_address);
1202 		} else {
1203 			pcur_wlan = rtw_find_network(&pmlmepriv->scanned_queue, cur_network->network.mac_address);
1204 			if (pcur_wlan)
1205 				pcur_wlan->fixed = false;
1206 
1207 			pcur_sta = rtw_get_stainfo(pstapriv, cur_network->network.mac_address);
1208 			if (pcur_sta)
1209 				rtw_free_stainfo(adapter, pcur_sta);
1210 
1211 			ptarget_wlan = rtw_find_network(&pmlmepriv->scanned_queue, pnetwork->network.mac_address);
1212 			if (check_fwstate(pmlmepriv, WIFI_STATION_STATE)) {
1213 				if (ptarget_wlan)
1214 					ptarget_wlan->fixed = true;
1215 			}
1216 		}
1217 	} else {
1218 		ptarget_wlan = _rtw_find_same_network(&pmlmepriv->scanned_queue, pnetwork);
1219 		if (check_fwstate(pmlmepriv, WIFI_STATION_STATE)) {
1220 			if (ptarget_wlan)
1221 				ptarget_wlan->fixed = true;
1222 		}
1223 	}
1224 
1225 	/* s2. update cur_network */
1226 	if (!ptarget_wlan) {
1227 		netdev_dbg(adapter->pnetdev,
1228 			   "Can't find ptarget_wlan when joinbss_event callback\n");
1229 		spin_unlock_bh(&pmlmepriv->scanned_queue.lock);
1230 		spin_unlock_bh(&pmlmepriv->lock);
1231 		return;
1232 	}
1233 
1234 	rtw_joinbss_update_network(adapter, ptarget_wlan, pnetwork);
1235 
1236 	/* s3. find ptarget_sta & update ptarget_sta after update cur_network only for station mode */
1237 	if (check_fwstate(pmlmepriv, WIFI_STATION_STATE)) {
1238 		ptarget_sta = rtw_joinbss_update_stainfo(adapter, pnetwork);
1239 		if (!ptarget_sta) {
1240 			spin_unlock_bh(&pmlmepriv->scanned_queue.lock);
1241 			spin_unlock_bh(&pmlmepriv->lock);
1242 			return;
1243 		}
1244 	}
1245 
1246 	/* s4. indicate connect */
1247 	if (check_fwstate(pmlmepriv, WIFI_STATION_STATE)) {
1248 		pmlmepriv->cur_network_scanned = ptarget_wlan;
1249 		rtw_indicate_connect(adapter);
1250 	}
1251 
1252 	spin_unlock_bh(&pmlmepriv->scanned_queue.lock);
1253 
1254 	spin_unlock_bh(&pmlmepriv->lock);
1255 	/* s5. Cancel assoc_timer */
1256 	timer_delete_sync(&pmlmepriv->assoc_timer);
1257 }
1258 
1259 void rtw_joinbss_event_callback(struct adapter *adapter, u8 *pbuf)
1260 {
1261 	struct wlan_network	*pnetwork	= (struct wlan_network *)pbuf;
1262 
1263 	mlmeext_joinbss_event_callback(adapter, pnetwork->join_res);
1264 
1265 	rtw_os_xmit_schedule(adapter);
1266 }
1267 
1268 /* FOR STA, AP , AD-HOC mode */
1269 void rtw_sta_media_status_rpt(struct adapter *adapter, struct sta_info *psta, u32 mstatus)
1270 {
1271 	u16 media_status_rpt;
1272 
1273 	if (!psta)
1274 		return;
1275 
1276 	media_status_rpt = (u16)((psta->mac_id << 8) | mstatus); /*   MACID|OPMODE:1 connect */
1277 	rtw_hal_set_hwreg(adapter, HW_VAR_H2C_MEDIA_STATUS_RPT, (u8 *)&media_status_rpt);
1278 }
1279 
1280 void rtw_stassoc_event_callback(struct adapter *adapter, u8 *pbuf)
1281 {
1282 	struct sta_info *psta;
1283 	struct mlme_priv *pmlmepriv = &adapter->mlmepriv;
1284 	struct stassoc_event	*pstassoc	= (struct stassoc_event *)pbuf;
1285 	struct wlan_network	*cur_network = &pmlmepriv->cur_network;
1286 	struct wlan_network	*ptarget_wlan = NULL;
1287 
1288 	if (!rtw_access_ctrl(adapter, pstassoc->macaddr))
1289 		return;
1290 
1291 	if (check_fwstate(pmlmepriv, WIFI_AP_STATE)) {
1292 		psta = rtw_get_stainfo(&adapter->stapriv, pstassoc->macaddr);
1293 		if (psta) {
1294 			u8 *passoc_req = NULL;
1295 			u32 assoc_req_len = 0;
1296 
1297 			rtw_sta_media_status_rpt(adapter, psta, 1);
1298 
1299 			ap_sta_info_defer_update(adapter, psta);
1300 
1301 			/* report to upper layer */
1302 			spin_lock_bh(&psta->lock);
1303 			if (psta->passoc_req && psta->assoc_req_len > 0) {
1304 				passoc_req = kmemdup(psta->passoc_req, psta->assoc_req_len, GFP_ATOMIC);
1305 				if (passoc_req) {
1306 					assoc_req_len = psta->assoc_req_len;
1307 
1308 					kfree(psta->passoc_req);
1309 					psta->passoc_req = NULL;
1310 					psta->assoc_req_len = 0;
1311 				}
1312 			}
1313 			spin_unlock_bh(&psta->lock);
1314 
1315 			if (passoc_req && assoc_req_len > 0) {
1316 				rtw_cfg80211_indicate_sta_assoc(adapter, passoc_req, assoc_req_len);
1317 
1318 				kfree(passoc_req);
1319 			}
1320 		}
1321 		return;
1322 	}
1323 
1324 	/* for AD-HOC mode */
1325 	psta = rtw_get_stainfo(&adapter->stapriv, pstassoc->macaddr);
1326 	if (psta) {
1327 		/* the sta have been in sta_info_queue => do nothing */
1328 
1329 		return; /* between drv has received this event before and  fw have not yet to set key to CAM_ENTRY) */
1330 	}
1331 
1332 	psta = rtw_alloc_stainfo(&adapter->stapriv, pstassoc->macaddr);
1333 	if (!psta)
1334 		return;
1335 
1336 	/* to do : init sta_info variable */
1337 	psta->qos_option = 0;
1338 	psta->mac_id = (uint)pstassoc->cam_id;
1339 
1340 	/* for ad-hoc mode */
1341 	rtw_hal_set_odm_var(adapter, HAL_ODM_STA_INFO, psta, true);
1342 
1343 	rtw_sta_media_status_rpt(adapter, psta, 1);
1344 
1345 	if (adapter->securitypriv.dot11AuthAlgrthm == dot11AuthAlgrthm_8021X)
1346 		psta->dot118021XPrivacy = adapter->securitypriv.dot11PrivacyAlgrthm;
1347 
1348 	psta->ieee8021x_blocked = false;
1349 
1350 	spin_lock_bh(&pmlmepriv->lock);
1351 
1352 	if (check_fwstate(pmlmepriv, WIFI_ADHOC_MASTER_STATE) ||
1353 	    check_fwstate(pmlmepriv, WIFI_ADHOC_STATE)) {
1354 		if (adapter->stapriv.asoc_sta_count == 2) {
1355 			spin_lock_bh(&pmlmepriv->scanned_queue.lock);
1356 			ptarget_wlan = rtw_find_network(&pmlmepriv->scanned_queue, cur_network->network.mac_address);
1357 			pmlmepriv->cur_network_scanned = ptarget_wlan;
1358 			if (ptarget_wlan)
1359 				ptarget_wlan->fixed = true;
1360 			spin_unlock_bh(&pmlmepriv->scanned_queue.lock);
1361 			/*  a sta + bc/mc_stainfo (not Ibss_stainfo) */
1362 			rtw_indicate_connect(adapter);
1363 		}
1364 	}
1365 
1366 	spin_unlock_bh(&pmlmepriv->lock);
1367 
1368 	mlmeext_sta_add_event_callback(adapter, psta);
1369 }
1370 
1371 void rtw_stadel_event_callback(struct adapter *adapter, u8 *pbuf)
1372 {
1373 	int mac_id = (-1);
1374 	struct sta_info *psta;
1375 	struct wlan_network *pwlan = NULL;
1376 	struct wlan_bssid_ex    *pdev_network = NULL;
1377 	u8 *pibss = NULL;
1378 	struct	mlme_priv *pmlmepriv = &adapter->mlmepriv;
1379 	struct	stadel_event *pstadel	= (struct stadel_event *)pbuf;
1380 	struct wlan_network *tgt_network = &pmlmepriv->cur_network;
1381 	struct mlme_ext_priv *pmlmeext = &adapter->mlmeextpriv;
1382 	struct mlme_ext_info *pmlmeinfo = &pmlmeext->mlmext_info;
1383 
1384 	psta = rtw_get_stainfo(&adapter->stapriv, pstadel->macaddr);
1385 	if (psta)
1386 		mac_id = psta->mac_id;
1387 	else
1388 		mac_id = pstadel->mac_id;
1389 
1390 	if (mac_id >= 0) {
1391 		u16 media_status;
1392 
1393 		media_status = (mac_id << 8) | 0; /*   MACID|OPMODE:0 means disconnect */
1394 		/* for STA, AP, ADHOC mode, report disconnect status to FW */
1395 		rtw_hal_set_hwreg(adapter, HW_VAR_H2C_MEDIA_STATUS_RPT, (u8 *)&media_status);
1396 	}
1397 
1398 	/* if (check_fwstate(pmlmepriv, WIFI_AP_STATE)) */
1399 	if ((pmlmeinfo->state & 0x03) == WIFI_FW_AP_STATE)
1400 		return;
1401 
1402 	mlmeext_sta_del_event_callback(adapter);
1403 
1404 	spin_lock_bh(&pmlmepriv->lock);
1405 
1406 	if (check_fwstate(pmlmepriv, WIFI_STATION_STATE)) {
1407 		u16 reason = *((unsigned short *)(pstadel->rsvd));
1408 		bool roam = false;
1409 		struct wlan_network *roam_target = NULL;
1410 
1411 		if (adapter->registrypriv.wifi_spec == 1) {
1412 			roam = false;
1413 		} else if (reason == WLAN_REASON_EXPIRATION_CHK && rtw_chk_roam_flags(adapter, RTW_ROAM_ON_EXPIRED)) {
1414 			roam = true;
1415 		} else if (reason == WLAN_REASON_ACTIVE_ROAM && rtw_chk_roam_flags(adapter, RTW_ROAM_ACTIVE)) {
1416 			roam = true;
1417 			roam_target = pmlmepriv->roam_network;
1418 		}
1419 
1420 		if (roam) {
1421 			if (rtw_to_roam(adapter) > 0)
1422 				rtw_dec_to_roam(adapter); /* this stadel_event is caused by roaming, decrease to_roam */
1423 			else if (rtw_to_roam(adapter) == 0)
1424 				rtw_set_to_roam(adapter, adapter->registrypriv.max_roaming_times);
1425 		} else {
1426 			rtw_set_to_roam(adapter, 0);
1427 		}
1428 
1429 		rtw_free_uc_swdec_pending_queue(adapter);
1430 
1431 		rtw_free_assoc_resources(adapter, 1);
1432 		rtw_indicate_disconnect(adapter);
1433 
1434 		spin_lock_bh(&pmlmepriv->scanned_queue.lock);
1435 		/*  remove the network entry in scanned_queue */
1436 		pwlan = rtw_find_network(&pmlmepriv->scanned_queue, tgt_network->network.mac_address);
1437 		if (pwlan) {
1438 			pwlan->fixed = false;
1439 			rtw_free_network_nolock(adapter, pwlan);
1440 		}
1441 		spin_unlock_bh(&pmlmepriv->scanned_queue.lock);
1442 
1443 		_rtw_roaming(adapter, roam_target);
1444 	}
1445 
1446 	if (check_fwstate(pmlmepriv, WIFI_ADHOC_MASTER_STATE) ||
1447 	      check_fwstate(pmlmepriv, WIFI_ADHOC_STATE)) {
1448 		rtw_free_stainfo(adapter,  psta);
1449 
1450 		if (adapter->stapriv.asoc_sta_count == 1) {/* a sta + bc/mc_stainfo (not Ibss_stainfo) */
1451 			u8 ret = _SUCCESS;
1452 
1453 			spin_lock_bh(&pmlmepriv->scanned_queue.lock);
1454 			/* free old ibss network */
1455 			pwlan = rtw_find_network(&pmlmepriv->scanned_queue, tgt_network->network.mac_address);
1456 			if (pwlan) {
1457 				pwlan->fixed = false;
1458 				rtw_free_network_nolock(adapter, pwlan);
1459 			}
1460 			spin_unlock_bh(&pmlmepriv->scanned_queue.lock);
1461 			/* re-create ibss */
1462 			pdev_network = &adapter->registrypriv.dev_network;
1463 			pibss = adapter->registrypriv.dev_network.mac_address;
1464 
1465 			memcpy(pdev_network, &tgt_network->network, get_wlan_bssid_ex_sz(&tgt_network->network));
1466 
1467 			memcpy(&pdev_network->ssid, &pmlmepriv->assoc_ssid, sizeof(struct ndis_802_11_ssid));
1468 
1469 			rtw_update_registrypriv_dev_network(adapter);
1470 
1471 			rtw_generate_random_ibss(pibss);
1472 
1473 			if (check_fwstate(pmlmepriv, WIFI_ADHOC_STATE)) {
1474 				set_fwstate(pmlmepriv, WIFI_ADHOC_MASTER_STATE);
1475 				_clr_fwstate_(pmlmepriv, WIFI_ADHOC_STATE);
1476 			}
1477 
1478 			ret = rtw_createbss_cmd(adapter);
1479 			if (ret != _SUCCESS)
1480 				goto unlock;
1481 		}
1482 	}
1483 
1484 unlock:
1485 	spin_unlock_bh(&pmlmepriv->lock);
1486 }
1487 
1488 void rtw_cpwm_event_callback(struct adapter *padapter, u8 *pbuf)
1489 {
1490 	struct reportpwrstate_parm *preportpwrstate;
1491 
1492 	preportpwrstate = (struct reportpwrstate_parm *)pbuf;
1493 	preportpwrstate->state |= (u8)(adapter_to_pwrctl(padapter)->cpwm_tog + 0x80);
1494 	cpwm_int_hdl(padapter, preportpwrstate);
1495 }
1496 
1497 void rtw_wmm_event_callback(struct adapter *padapter, u8 *pbuf)
1498 {
1499 	WMMOnAssocRsp(padapter);
1500 }
1501 
1502 /*
1503  * _rtw_join_timeout_handler - Timeout/failure handler for CMD JoinBss
1504  * @adapter: pointer to struct adapter structure
1505  */
1506 void _rtw_join_timeout_handler(struct timer_list *t)
1507 {
1508 	struct adapter *adapter = timer_container_of(adapter, t,
1509 						     mlmepriv.assoc_timer);
1510 	struct	mlme_priv *pmlmepriv = &adapter->mlmepriv;
1511 
1512 	if (adapter->bDriverStopped || adapter->bSurpriseRemoved)
1513 		return;
1514 
1515 	spin_lock_bh(&pmlmepriv->lock);
1516 
1517 	if (rtw_to_roam(adapter) > 0) { /* join timeout caused by roaming */
1518 		while (1) {
1519 			rtw_dec_to_roam(adapter);
1520 			if (rtw_to_roam(adapter) != 0) { /* try another */
1521 				int do_join_r;
1522 
1523 				do_join_r = rtw_do_join(adapter);
1524 				if (do_join_r != _SUCCESS)
1525 					continue;
1526 
1527 				break;
1528 			}
1529 
1530 			rtw_indicate_disconnect(adapter);
1531 			break;
1532 		}
1533 
1534 	} else {
1535 		rtw_indicate_disconnect(adapter);
1536 		free_scanqueue(pmlmepriv);/*  */
1537 
1538 		/* indicate disconnect for the case that join_timeout and check_fwstate != FW_LINKED */
1539 		rtw_cfg80211_indicate_disconnect(adapter);
1540 	}
1541 
1542 	spin_unlock_bh(&pmlmepriv->lock);
1543 }
1544 
1545 /*
1546  * rtw_scan_timeout_handler - Timeout/Failure handler for CMD SiteSurvey
1547  * @adapter: pointer to struct adapter structure
1548  */
1549 void rtw_scan_timeout_handler(struct timer_list *t)
1550 {
1551 	struct adapter *adapter = timer_container_of(adapter, t,
1552 						     mlmepriv.scan_to_timer);
1553 	struct	mlme_priv *pmlmepriv = &adapter->mlmepriv;
1554 
1555 	spin_lock_bh(&pmlmepriv->lock);
1556 
1557 	_clr_fwstate_(pmlmepriv, _FW_UNDER_SURVEY);
1558 
1559 	spin_unlock_bh(&pmlmepriv->lock);
1560 
1561 	rtw_indicate_scan_done(adapter, true);
1562 }
1563 
1564 void rtw_mlme_reset_auto_scan_int(struct adapter *adapter)
1565 {
1566 	struct mlme_priv *mlme = &adapter->mlmepriv;
1567 	struct mlme_ext_priv *pmlmeext = &adapter->mlmeextpriv;
1568 	struct mlme_ext_info *pmlmeinfo = &pmlmeext->mlmext_info;
1569 
1570 	if (pmlmeinfo->VHT_enable) {
1571 		/* disable auto scan when connect to 11AC AP */
1572 		mlme->auto_scan_int_ms = 0;
1573 	} else if (adapter->registrypriv.wifi_spec && is_client_associated_to_ap(adapter)) {
1574 		mlme->auto_scan_int_ms = 60 * 1000;
1575 	} else if (rtw_chk_roam_flags(adapter, RTW_ROAM_ACTIVE)) {
1576 		if (check_fwstate(mlme, WIFI_STATION_STATE) && check_fwstate(mlme, _FW_LINKED))
1577 			mlme->auto_scan_int_ms = mlme->roam_scan_int_ms;
1578 	} else {
1579 		mlme->auto_scan_int_ms = 0; /* disabled */
1580 	}
1581 }
1582 
1583 static void rtw_auto_scan_handler(struct adapter *padapter)
1584 {
1585 	struct mlme_priv *pmlmepriv = &padapter->mlmepriv;
1586 
1587 	rtw_mlme_reset_auto_scan_int(padapter);
1588 
1589 	if (pmlmepriv->auto_scan_int_ms != 0
1590 		&& jiffies_to_msecs(jiffies - pmlmepriv->scan_start_time) > pmlmepriv->auto_scan_int_ms) {
1591 		if (!padapter->registrypriv.wifi_spec) {
1592 			if (check_fwstate(pmlmepriv, _FW_UNDER_SURVEY | _FW_UNDER_LINKING))
1593 				goto exit;
1594 
1595 			if (pmlmepriv->link_detect_info.busy_traffic)
1596 				goto exit;
1597 		}
1598 
1599 		rtw_set_802_11_bssid_list_scan(padapter, NULL, 0);
1600 	}
1601 
1602 exit:
1603 	return;
1604 }
1605 
1606 void rtw_dynamic_check_timer_handler(struct adapter *adapter)
1607 {
1608 	if (!adapter)
1609 		return;
1610 
1611 	if (!adapter->hw_init_completed)
1612 		return;
1613 
1614 	if (adapter->bDriverStopped || adapter->bSurpriseRemoved)
1615 		return;
1616 
1617 	if (adapter->net_closed)
1618 		return;
1619 
1620 	if ((adapter_to_pwrctl(adapter)->fw_current_in_ps_mode)
1621 		&& !(hal_btcoex_IsBtControlLps(adapter))
1622 		) {
1623 		bool should_enter_ps;
1624 
1625 		linked_status_chk(adapter);
1626 
1627 		should_enter_ps = traffic_status_watchdog(adapter, true);
1628 		if (should_enter_ps) {
1629 			/* rtw_lps_ctrl_wk_cmd(adapter, LPS_CTRL_ENTER, 1); */
1630 			rtw_hal_dm_watchdog_in_lps(adapter);
1631 		} else {
1632 			/* call rtw_lps_ctrl_wk_cmd(padapter, LPS_CTRL_LEAVE, 1) in traffic_status_watchdog() */
1633 		}
1634 
1635 	} else {
1636 		rtw_dynamic_chk_wk_cmd(adapter);
1637 	}
1638 
1639 	/* auto site survey */
1640 	rtw_auto_scan_handler(adapter);
1641 }
1642 
1643 inline bool rtw_is_scan_deny(struct adapter *adapter)
1644 {
1645 	struct mlme_priv *mlmepriv = &adapter->mlmepriv;
1646 
1647 	return (atomic_read(&mlmepriv->set_scan_deny) != 0) ? true : false;
1648 }
1649 
1650 inline void rtw_clear_scan_deny(struct adapter *adapter)
1651 {
1652 	struct mlme_priv *mlmepriv = &adapter->mlmepriv;
1653 
1654 	atomic_set(&mlmepriv->set_scan_deny, 0);
1655 }
1656 
1657 void rtw_set_scan_deny(struct adapter *adapter, u32 ms)
1658 {
1659 	struct mlme_priv *mlmepriv = &adapter->mlmepriv;
1660 
1661 	atomic_set(&mlmepriv->set_scan_deny, 1);
1662 	_set_timer(&mlmepriv->set_scan_deny_timer, ms);
1663 }
1664 
1665 /*
1666  * Select a new roaming candidate from the original @param candidate and @param competitor
1667  * @return true: candidate is updated
1668  * @return false: candidate is not updated
1669  */
1670 static int rtw_check_roaming_candidate(struct mlme_priv *mlme
1671 	, struct wlan_network **candidate, struct wlan_network *competitor)
1672 {
1673 	int updated = false;
1674 	struct adapter *adapter = container_of(mlme, struct adapter, mlmepriv);
1675 
1676 	if (!is_same_ess(&competitor->network, &mlme->cur_network.network))
1677 		goto exit;
1678 
1679 	if (!rtw_is_desired_network(adapter, competitor))
1680 		goto exit;
1681 
1682 	/* got specific addr to roam */
1683 	if (!is_zero_ether_addr(mlme->roam_tgt_addr)) {
1684 		if (!memcmp(mlme->roam_tgt_addr, competitor->network.mac_address, ETH_ALEN))
1685 			goto update;
1686 		else
1687 			goto exit;
1688 	}
1689 	if (jiffies_to_msecs(jiffies - competitor->last_scanned) >= mlme->roam_scanr_exp_ms)
1690 		goto exit;
1691 
1692 	if (competitor->network.rssi - mlme->cur_network_scanned->network.rssi < mlme->roam_rssi_diff_th)
1693 		goto exit;
1694 
1695 	if (*candidate && (*candidate)->network.rssi >= competitor->network.rssi)
1696 		goto exit;
1697 
1698 update:
1699 	*candidate = competitor;
1700 	updated = true;
1701 
1702 exit:
1703 	return updated;
1704 }
1705 
1706 int rtw_select_roaming_candidate(struct mlme_priv *mlme)
1707 {
1708 	int ret = _FAIL;
1709 	struct list_head	*phead;
1710 	struct __queue	*queue	= &mlme->scanned_queue;
1711 	struct	wlan_network	*pnetwork = NULL;
1712 	struct	wlan_network	*candidate = NULL;
1713 
1714 	if (!mlme->cur_network_scanned) {
1715 		WARN_ON(1);
1716 		return ret;
1717 	}
1718 
1719 	spin_lock_bh(&mlme->scanned_queue.lock);
1720 	phead = get_list_head(queue);
1721 
1722 	list_for_each(mlme->pscanned, phead) {
1723 		pnetwork = list_entry(mlme->pscanned, struct wlan_network,
1724 				      list);
1725 
1726 		rtw_check_roaming_candidate(mlme, &candidate, pnetwork);
1727 	}
1728 
1729 	if (!candidate) {
1730 		ret = _FAIL;
1731 		goto exit;
1732 	} else {
1733 		mlme->roam_network = candidate;
1734 
1735 		if (!memcmp(candidate->network.mac_address, mlme->roam_tgt_addr, ETH_ALEN))
1736 			eth_zero_addr(mlme->roam_tgt_addr);
1737 	}
1738 
1739 	ret = _SUCCESS;
1740 exit:
1741 	spin_unlock_bh(&mlme->scanned_queue.lock);
1742 
1743 	return ret;
1744 }
1745 
1746 /*
1747  * Select a new join candidate from the original @param candidate and @param competitor
1748  * @return true: candidate is updated
1749  * @return false: candidate is not updated
1750  */
1751 static int rtw_check_join_candidate(struct mlme_priv *mlme
1752 	, struct wlan_network **candidate, struct wlan_network *competitor)
1753 {
1754 	int updated = false;
1755 	struct adapter *adapter = container_of(mlme, struct adapter, mlmepriv);
1756 
1757 	/* check bssid, if needed */
1758 	if (mlme->assoc_by_bssid) {
1759 		if (memcmp(competitor->network.mac_address, mlme->assoc_bssid, ETH_ALEN))
1760 			goto exit;
1761 	}
1762 
1763 	/* check ssid, if needed */
1764 	if (mlme->assoc_ssid.ssid[0] && mlme->assoc_ssid.ssid_length) {
1765 		if (competitor->network.ssid.ssid_length != mlme->assoc_ssid.ssid_length
1766 			|| memcmp(competitor->network.ssid.ssid, mlme->assoc_ssid.ssid, mlme->assoc_ssid.ssid_length)
1767 		)
1768 			goto exit;
1769 	}
1770 
1771 	if (!rtw_is_desired_network(adapter, competitor))
1772 		goto exit;
1773 
1774 	if (rtw_to_roam(adapter) > 0) {
1775 		if (jiffies_to_msecs(jiffies - competitor->last_scanned) >=
1776 		    mlme->roam_scanr_exp_ms ||
1777 		    !is_same_ess(&competitor->network, &mlme->cur_network.network))
1778 			goto exit;
1779 	}
1780 
1781 	if (!*candidate || (*candidate)->network.rssi < competitor->network.rssi) {
1782 		*candidate = competitor;
1783 		updated = true;
1784 	}
1785 
1786 exit:
1787 	return updated;
1788 }
1789 
1790 /*
1791  * Calling context:
1792  * The caller of the sub-routine will be in critical section...
1793  * The caller must hold the following spinlock
1794  * pmlmepriv->lock
1795  */
1796 
1797 int rtw_select_and_join_from_scanned_queue(struct mlme_priv *pmlmepriv)
1798 {
1799 	int ret;
1800 	struct list_head	*phead;
1801 	struct adapter *adapter;
1802 	struct __queue	*queue	= &pmlmepriv->scanned_queue;
1803 	struct	wlan_network	*pnetwork = NULL;
1804 	struct	wlan_network	*candidate = NULL;
1805 
1806 	adapter = (struct adapter *)pmlmepriv->nic_hdl;
1807 
1808 	spin_lock_bh(&pmlmepriv->scanned_queue.lock);
1809 
1810 	if (pmlmepriv->roam_network) {
1811 		candidate = pmlmepriv->roam_network;
1812 		pmlmepriv->roam_network = NULL;
1813 		goto candidate_exist;
1814 	}
1815 
1816 	phead = get_list_head(queue);
1817 	list_for_each(pmlmepriv->pscanned, phead) {
1818 		pnetwork = list_entry(pmlmepriv->pscanned,
1819 				      struct wlan_network, list);
1820 
1821 		rtw_check_join_candidate(pmlmepriv, &candidate, pnetwork);
1822 	}
1823 
1824 	if (!candidate) {
1825 		ret = _FAIL;
1826 		goto exit;
1827 	} else {
1828 		goto candidate_exist;
1829 	}
1830 
1831 candidate_exist:
1832 
1833 	/*  check for situation of  _FW_LINKED */
1834 	if (check_fwstate(pmlmepriv, _FW_LINKED)) {
1835 		rtw_disassoc_cmd(adapter, 0, true);
1836 		rtw_indicate_disconnect(adapter);
1837 		rtw_free_assoc_resources(adapter, 0);
1838 	}
1839 
1840 	set_fwstate(pmlmepriv, _FW_UNDER_LINKING);
1841 	ret = rtw_joinbss_cmd(adapter, candidate);
1842 
1843 exit:
1844 	spin_unlock_bh(&pmlmepriv->scanned_queue.lock);
1845 	return ret;
1846 }
1847 
1848 signed int rtw_set_auth(struct adapter *adapter, struct security_priv *psecuritypriv)
1849 {
1850 	struct	cmd_obj *pcmd;
1851 	struct	setauth_parm *psetauthparm;
1852 	struct	cmd_priv *pcmdpriv = &adapter->cmdpriv;
1853 	signed int		res = _SUCCESS;
1854 
1855 	pcmd = kzalloc_obj(*pcmd);
1856 	if (!pcmd) {
1857 		res = _FAIL;  /* try again */
1858 		goto exit;
1859 	}
1860 
1861 	psetauthparm = kzalloc_obj(*psetauthparm);
1862 	if (!psetauthparm) {
1863 		kfree(pcmd);
1864 		res = _FAIL;
1865 		goto exit;
1866 	}
1867 
1868 	psetauthparm->mode = (unsigned char)psecuritypriv->dot11AuthAlgrthm;
1869 
1870 	pcmd->cmdcode = _SetAuth_CMD_;
1871 	pcmd->parmbuf = (unsigned char *)psetauthparm;
1872 	pcmd->cmdsz =  (sizeof(struct setauth_parm));
1873 	pcmd->rsp = NULL;
1874 	pcmd->rspsz = 0;
1875 
1876 	INIT_LIST_HEAD(&pcmd->list);
1877 
1878 	res = rtw_enqueue_cmd(pcmdpriv, pcmd);
1879 
1880 exit:
1881 	return res;
1882 }
1883 
1884 signed int rtw_set_key(struct adapter *adapter, struct security_priv *psecuritypriv, signed int keyid, u8 set_tx, bool enqueue)
1885 {
1886 	u8 keylen;
1887 	struct cmd_obj *pcmd;
1888 	struct setkey_parm	*psetkeyparm;
1889 	struct cmd_priv *pcmdpriv = &adapter->cmdpriv;
1890 	signed int	res = _SUCCESS;
1891 
1892 	psetkeyparm = kzalloc_obj(*psetkeyparm);
1893 	if (!psetkeyparm) {
1894 		res = _FAIL;
1895 		goto exit;
1896 	}
1897 
1898 	if (psecuritypriv->dot11AuthAlgrthm == dot11AuthAlgrthm_8021X)
1899 		psetkeyparm->algorithm = (unsigned char)psecuritypriv->dot118021XGrpPrivacy;
1900 	else
1901 		psetkeyparm->algorithm = (u8)psecuritypriv->dot11PrivacyAlgrthm;
1902 
1903 	psetkeyparm->keyid = (u8)keyid;/* 0~3 */
1904 	psetkeyparm->set_tx = set_tx;
1905 	if (is_wep_enc(psetkeyparm->algorithm))
1906 		adapter->securitypriv.key_mask |= BIT(psetkeyparm->keyid);
1907 
1908 	switch (psetkeyparm->algorithm) {
1909 	case _WEP40_:
1910 		keylen = 5;
1911 		memcpy(&psetkeyparm->key[0], &psecuritypriv->dot11DefKey[keyid].skey[0], keylen);
1912 		break;
1913 	case _WEP104_:
1914 		keylen = 13;
1915 		memcpy(&psetkeyparm->key[0], &psecuritypriv->dot11DefKey[keyid].skey[0], keylen);
1916 		break;
1917 	case _TKIP_:
1918 		keylen = 16;
1919 		memcpy(&psetkeyparm->key, &psecuritypriv->dot118021XGrpKey[keyid], keylen);
1920 		psetkeyparm->grpkey = 1;
1921 		break;
1922 	case _AES_:
1923 		keylen = 16;
1924 		memcpy(&psetkeyparm->key, &psecuritypriv->dot118021XGrpKey[keyid], keylen);
1925 		psetkeyparm->grpkey = 1;
1926 		break;
1927 	default:
1928 		res = _FAIL;
1929 		kfree(psetkeyparm);
1930 		goto exit;
1931 	}
1932 
1933 	if (enqueue) {
1934 		pcmd = kzalloc_obj(*pcmd);
1935 		if (!pcmd) {
1936 			kfree(psetkeyparm);
1937 			res = _FAIL;  /* try again */
1938 			goto exit;
1939 		}
1940 
1941 		pcmd->cmdcode = _SetKey_CMD_;
1942 		pcmd->parmbuf = (u8 *)psetkeyparm;
1943 		pcmd->cmdsz =  (sizeof(struct setkey_parm));
1944 		pcmd->rsp = NULL;
1945 		pcmd->rspsz = 0;
1946 
1947 		INIT_LIST_HEAD(&pcmd->list);
1948 
1949 		res = rtw_enqueue_cmd(pcmdpriv, pcmd);
1950 	} else {
1951 		setkey_hdl(adapter, (u8 *)psetkeyparm);
1952 		kfree(psetkeyparm);
1953 	}
1954 exit:
1955 	return res;
1956 }
1957 
1958 /* adjust ies for rtw_joinbss_cmd in WMM */
1959 int rtw_restruct_wmm_ie(struct adapter *adapter, u8 *in_ie, u8 *out_ie, uint in_len, uint initial_out_len)
1960 {
1961 	unsigned	int ielength = 0;
1962 	unsigned int i, j;
1963 
1964 	i = 12; /* after the fixed IE */
1965 	while (i < in_len) {
1966 		ielength = initial_out_len;
1967 
1968 		if (i + 5 < in_len &&
1969 		    in_ie[i] == 0xDD && in_ie[i + 2] == 0x00 &&
1970 		    in_ie[i + 3] == 0x50 && in_ie[i + 4] == 0xF2 &&
1971 		    in_ie[i + 5] == 0x02) {
1972 			for (j = i; j < i + 9; j++) {
1973 				out_ie[ielength] = in_ie[j];
1974 				ielength++;
1975 			}
1976 			out_ie[initial_out_len + 1] = 0x07;
1977 			out_ie[initial_out_len + 6] = 0x00;
1978 			out_ie[initial_out_len + 8] = 0x00;
1979 
1980 			break;
1981 		}
1982 
1983 		i += (in_ie[i + 1] + 2); /*  to the next IE element */
1984 	}
1985 
1986 	return ielength;
1987 }
1988 
1989 /* Ported from 8185: IsInPreAuthKeyList().
1990  * (Renamed from SecIsInPreAuthKeyList(), 2006-10-13.)
1991  * Added by Annie, 2006-05-07.
1992  *
1993  * Search by BSSID,
1994  *
1995  * Return Value:
1996  * -1: if there is no pre-auth key in the  table
1997  * >=0: if there is pre-auth key, and return the entry id
1998  */
1999 static int SecIsInPMKIDList(struct adapter *Adapter, u8 *bssid)
2000 {
2001 	struct security_priv *p = &Adapter->securitypriv;
2002 	int i;
2003 
2004 	for (i = 0; i < NUM_PMKID_CACHE; i++)
2005 		if ((p->PMKIDList[i].bUsed) &&
2006 				(!memcmp(p->PMKIDList[i].Bssid, bssid, ETH_ALEN)))
2007 			return i;
2008 	return -1;
2009 }
2010 
2011 /*  */
2012 /*  Check the RSN IE length */
2013 /*  If the RSN IE length <= 20, the RSN IE didn't include the PMKID information */
2014 /*  0-11th element in the array are the fixed IE */
2015 /*  12th element in the array is the IE */
2016 /*  13th element in the array is the IE length */
2017 /*  */
2018 
2019 static int rtw_append_pmkid(struct adapter *Adapter, int iEntry, u8 *ie, uint ie_len)
2020 {
2021 	struct security_priv *psecuritypriv = &Adapter->securitypriv;
2022 
2023 	if (ie[13] <= 20) {
2024 		/*  The RSN IE didn't include the PMK ID, append the PMK information */
2025 		ie[ie_len] = 1;
2026 		ie_len++;
2027 		ie[ie_len] = 0;	/* PMKID count = 0x0100 */
2028 		ie_len++;
2029 		memcpy(&ie[ie_len], &psecuritypriv->PMKIDList[iEntry].PMKID, 16);
2030 		ie_len += 16;
2031 		ie[13] += 18;/* PMKID length = 2+16 */
2032 	}
2033 	return ie_len;
2034 }
2035 
2036 static void rtw_report_sec_ie(struct adapter *adapter, u8 authmode, u8 *sec_ie)
2037 {
2038 	uint	len;
2039 	u8 *buff, *p;
2040 	union iwreq_data wrqu;
2041 
2042 	buff = NULL;
2043 	if (authmode == WLAN_EID_VENDOR_SPECIFIC) {
2044 		buff = kzalloc(IW_CUSTOM_MAX, GFP_ATOMIC);
2045 		if (!buff)
2046 			return;
2047 
2048 		p = buff;
2049 
2050 		p += scnprintf(p, IW_CUSTOM_MAX - (p - buff), "ASSOCINFO(ReqIEs =");
2051 
2052 		len = sec_ie[1] + 2;
2053 		len = (len < IW_CUSTOM_MAX) ? len : IW_CUSTOM_MAX;
2054 
2055 		p += scnprintf(p, IW_CUSTOM_MAX - (p - buff), " %*ph", len, sec_ie);
2056 
2057 		p += scnprintf(p, IW_CUSTOM_MAX - (p - buff), ")");
2058 
2059 		memset(&wrqu, 0, sizeof(wrqu));
2060 
2061 		wrqu.data.length = p - buff;
2062 
2063 		wrqu.data.length = (wrqu.data.length < IW_CUSTOM_MAX) ? wrqu.data.length : IW_CUSTOM_MAX;
2064 
2065 		kfree(buff);
2066 	}
2067 }
2068 
2069 signed int rtw_restruct_sec_ie(struct adapter *adapter, u8 *in_ie, u8 *out_ie, uint in_len)
2070 {
2071 	u8 authmode = 0x0;
2072 	uint	ielength;
2073 	int iEntry;
2074 
2075 	struct mlme_priv *pmlmepriv = &adapter->mlmepriv;
2076 	struct security_priv *psecuritypriv = &adapter->securitypriv;
2077 	uint	ndisauthmode = psecuritypriv->ndisauthtype;
2078 
2079 	/* copy fixed ie only */
2080 	memcpy(out_ie, in_ie, 12);
2081 	ielength = 12;
2082 	if ((ndisauthmode == Ndis802_11AuthModeWPA) || (ndisauthmode == Ndis802_11AuthModeWPAPSK))
2083 		authmode = WLAN_EID_VENDOR_SPECIFIC;
2084 	if ((ndisauthmode == Ndis802_11AuthModeWPA2) || (ndisauthmode == Ndis802_11AuthModeWPA2PSK))
2085 		authmode = WLAN_EID_RSN;
2086 
2087 	if (check_fwstate(pmlmepriv, WIFI_UNDER_WPS)) {
2088 		memcpy(out_ie + ielength, psecuritypriv->wps_ie, psecuritypriv->wps_ie_len);
2089 
2090 		ielength += psecuritypriv->wps_ie_len;
2091 	} else if ((authmode == WLAN_EID_VENDOR_SPECIFIC) || (authmode == WLAN_EID_RSN)) {
2092 		/* copy RSN or SSN */
2093 		memcpy(&out_ie[ielength], &psecuritypriv->supplicant_ie[0], psecuritypriv->supplicant_ie[1] + 2);
2094 		ielength += psecuritypriv->supplicant_ie[1] + 2;
2095 		rtw_report_sec_ie(adapter, authmode, psecuritypriv->supplicant_ie);
2096 	}
2097 
2098 	iEntry = SecIsInPMKIDList(adapter, pmlmepriv->assoc_bssid);
2099 	if (iEntry < 0)
2100 		return ielength;
2101 
2102 	if (authmode == WLAN_EID_RSN)
2103 		ielength = rtw_append_pmkid(adapter, iEntry, out_ie, ielength);
2104 
2105 	return ielength;
2106 }
2107 
2108 void rtw_init_registrypriv_dev_network(struct adapter *adapter)
2109 {
2110 	struct registry_priv *pregistrypriv = &adapter->registrypriv;
2111 	struct eeprom_priv *peepriv = &adapter->eeprompriv;
2112 	struct wlan_bssid_ex    *pdev_network = &pregistrypriv->dev_network;
2113 	u8 *myhwaddr = myid(peepriv);
2114 
2115 	memcpy(pdev_network->mac_address, myhwaddr, ETH_ALEN);
2116 
2117 	memcpy(&pdev_network->ssid, &pregistrypriv->ssid, sizeof(struct ndis_802_11_ssid));
2118 
2119 	pdev_network->configuration.length = sizeof(struct ndis_802_11_conf);
2120 	pdev_network->configuration.beacon_period = 100;
2121 }
2122 
2123 void rtw_update_registrypriv_dev_network(struct adapter *adapter)
2124 {
2125 	int sz = 0;
2126 	struct registry_priv *pregistrypriv = &adapter->registrypriv;
2127 	struct wlan_bssid_ex    *pdev_network = &pregistrypriv->dev_network;
2128 	struct	security_priv *psecuritypriv = &adapter->securitypriv;
2129 	struct	wlan_network	*cur_network = &adapter->mlmepriv.cur_network;
2130 
2131 	pdev_network->privacy = (psecuritypriv->dot11PrivacyAlgrthm > 0 ? 1 : 0) ; /*  adhoc no 802.1x */
2132 
2133 	pdev_network->rssi = 0;
2134 
2135 	switch (pregistrypriv->wireless_mode) {
2136 	case WIRELESS_11B:
2137 		pdev_network->network_type_in_use = (Ndis802_11DS);
2138 		break;
2139 	case WIRELESS_11G:
2140 	case WIRELESS_11BG:
2141 	case WIRELESS_11_24N:
2142 	case WIRELESS_11G_24N:
2143 	case WIRELESS_11BG_24N:
2144 		pdev_network->network_type_in_use = (Ndis802_11OFDM24);
2145 		break;
2146 	default:
2147 		/*  TODO */
2148 		break;
2149 	}
2150 
2151 	pdev_network->configuration.ds_config = (pregistrypriv->channel);
2152 
2153 	if (cur_network->network.infrastructure_mode == Ndis802_11IBSS)
2154 		pdev_network->configuration.atim_window = (0);
2155 
2156 	pdev_network->infrastructure_mode = (cur_network->network.infrastructure_mode);
2157 
2158 	/*  1. Supported rates */
2159 	/*  2. IE */
2160 
2161 	/* rtw_set_supported_rate(pdev_network->supported_rates, pregistrypriv->wireless_mode) ;  will be called in rtw_generate_ie */
2162 	sz = rtw_generate_ie(pregistrypriv);
2163 
2164 	pdev_network->ie_length = sz;
2165 
2166 	pdev_network->length = get_wlan_bssid_ex_sz((struct wlan_bssid_ex  *)pdev_network);
2167 
2168 	/* notes: translate ie_length & length after assign the length to cmdsz in createbss_cmd(); */
2169 	/* pdev_network->ie_length = cpu_to_le32(sz); */
2170 }
2171 
2172 /* the function is at passive_level */
2173 void rtw_joinbss_reset(struct adapter *padapter)
2174 {
2175 	u8 threshold;
2176 	struct mlme_priv *pmlmepriv = &padapter->mlmepriv;
2177 
2178 	struct ht_priv *phtpriv = &pmlmepriv->htpriv;
2179 
2180 	/* todo: if you want to do something io/reg/hw setting before join_bss, please add code here */
2181 
2182 	pmlmepriv->num_FortyMHzIntolerant = 0;
2183 
2184 	pmlmepriv->num_sta_no_ht = 0;
2185 
2186 	phtpriv->ampdu_enable = false;/* reset to disabled */
2187 
2188 	/*  TH = 1 => means that invalidate usb rx aggregation */
2189 	/*  TH = 0 => means that validate usb rx aggregation, use init value. */
2190 	if (phtpriv->ht_option) {
2191 		if (padapter->registrypriv.wifi_spec == 1)
2192 			threshold = 1;
2193 		else
2194 			threshold = 0;
2195 		rtw_hal_set_hwreg(padapter, HW_VAR_RXDMA_AGG_PG_TH, (u8 *)(&threshold));
2196 	} else {
2197 		threshold = 1;
2198 		rtw_hal_set_hwreg(padapter, HW_VAR_RXDMA_AGG_PG_TH, (u8 *)(&threshold));
2199 	}
2200 }
2201 
2202 void rtw_ht_use_default_setting(struct adapter *padapter)
2203 {
2204 	struct mlme_priv *pmlmepriv = &padapter->mlmepriv;
2205 	struct ht_priv *phtpriv = &pmlmepriv->htpriv;
2206 	struct registry_priv *pregistrypriv = &padapter->registrypriv;
2207 	bool		bHwLDPCSupport = false, bHwSTBCSupport = false;
2208 	bool		bHwSupportBeamformer = false, bHwSupportBeamformee = false;
2209 
2210 	if (pregistrypriv->wifi_spec)
2211 		phtpriv->bss_coexist = 1;
2212 	else
2213 		phtpriv->bss_coexist = 0;
2214 
2215 	phtpriv->sgi_40m = TEST_FLAG(pregistrypriv->short_gi, BIT(1)) ? true : false;
2216 	phtpriv->sgi_20m = TEST_FLAG(pregistrypriv->short_gi, BIT(0)) ? true : false;
2217 
2218 	/*  LDPC support */
2219 	rtw_hal_get_def_var(padapter, HAL_DEF_RX_LDPC, (u8 *)&bHwLDPCSupport);
2220 	CLEAR_FLAGS(phtpriv->ldpc_cap);
2221 	if (bHwLDPCSupport) {
2222 		if (TEST_FLAG(pregistrypriv->ldpc_cap, BIT(4)))
2223 			SET_FLAG(phtpriv->ldpc_cap, LDPC_HT_ENABLE_RX);
2224 	}
2225 	rtw_hal_get_def_var(padapter, HAL_DEF_TX_LDPC, (u8 *)&bHwLDPCSupport);
2226 	if (bHwLDPCSupport) {
2227 		if (TEST_FLAG(pregistrypriv->ldpc_cap, BIT(5)))
2228 			SET_FLAG(phtpriv->ldpc_cap, LDPC_HT_ENABLE_TX);
2229 	}
2230 
2231 	/*  STBC */
2232 	rtw_hal_get_def_var(padapter, HAL_DEF_TX_STBC, (u8 *)&bHwSTBCSupport);
2233 	CLEAR_FLAGS(phtpriv->stbc_cap);
2234 	if (bHwSTBCSupport) {
2235 		if (TEST_FLAG(pregistrypriv->stbc_cap, BIT(5)))
2236 			SET_FLAG(phtpriv->stbc_cap, STBC_HT_ENABLE_TX);
2237 	}
2238 	rtw_hal_get_def_var(padapter, HAL_DEF_RX_STBC, (u8 *)&bHwSTBCSupport);
2239 	if (bHwSTBCSupport) {
2240 		if (TEST_FLAG(pregistrypriv->stbc_cap, BIT(4)))
2241 			SET_FLAG(phtpriv->stbc_cap, STBC_HT_ENABLE_RX);
2242 	}
2243 
2244 	/*  Beamforming setting */
2245 	rtw_hal_get_def_var(padapter, HAL_DEF_EXPLICIT_BEAMFORMER, (u8 *)&bHwSupportBeamformer);
2246 	rtw_hal_get_def_var(padapter, HAL_DEF_EXPLICIT_BEAMFORMEE, (u8 *)&bHwSupportBeamformee);
2247 	CLEAR_FLAGS(phtpriv->beamform_cap);
2248 	if (TEST_FLAG(pregistrypriv->beamform_cap, BIT(4)) && bHwSupportBeamformer)
2249 		SET_FLAG(phtpriv->beamform_cap, BEAMFORMING_HT_BEAMFORMER_ENABLE);
2250 
2251 	if (TEST_FLAG(pregistrypriv->beamform_cap, BIT(5)) && bHwSupportBeamformee)
2252 		SET_FLAG(phtpriv->beamform_cap, BEAMFORMING_HT_BEAMFORMEE_ENABLE);
2253 }
2254 
2255 void rtw_build_wmm_ie_ht(struct adapter *padapter, u8 *out_ie, uint *pout_len)
2256 {
2257 	unsigned char WMM_IE[] = {0x00, 0x50, 0xf2, 0x02, 0x00, 0x01, 0x00};
2258 	int out_len;
2259 
2260 	if (padapter->mlmepriv.qospriv.qos_option == 0) {
2261 		out_len = *pout_len;
2262 		rtw_set_ie(out_ie + out_len, WLAN_EID_VENDOR_SPECIFIC,
2263 			   _WMM_IE_Length_, WMM_IE, pout_len);
2264 
2265 		padapter->mlmepriv.qospriv.qos_option = 1;
2266 	}
2267 }
2268 
2269 /* the function is >= passive_level */
2270 unsigned int rtw_restructure_ht_ie(struct adapter *padapter, u8 *in_ie, u8 *out_ie, uint in_len, uint *pout_len, u8 channel)
2271 {
2272 	u32 ielen, out_len;
2273 	enum ieee80211_max_ampdu_length_exp max_rx_ampdu_factor;
2274 	unsigned char *p;
2275 	struct ieee80211_ht_cap ht_capie;
2276 	u8 cbw40_enable = 0, stbc_rx_enable = 0, operation_bw = 0;
2277 	struct registry_priv *pregistrypriv = &padapter->registrypriv;
2278 	struct mlme_priv *pmlmepriv = &padapter->mlmepriv;
2279 	struct ht_priv *phtpriv = &pmlmepriv->htpriv;
2280 	struct mlme_ext_priv *pmlmeext = &padapter->mlmeextpriv;
2281 
2282 	phtpriv->ht_option = false;
2283 
2284 	out_len = *pout_len;
2285 
2286 	memset(&ht_capie, 0, sizeof(struct ieee80211_ht_cap));
2287 
2288 	ht_capie.cap_info = cpu_to_le16(IEEE80211_HT_CAP_DSSSCCK40);
2289 
2290 	if (phtpriv->sgi_20m)
2291 		ht_capie.cap_info |= cpu_to_le16(IEEE80211_HT_CAP_SGI_20);
2292 
2293 	/* Get HT BW */
2294 	if (!in_ie) {
2295 		/* TDLS: TODO 20/40 issue */
2296 		if (check_fwstate(pmlmepriv, WIFI_STATION_STATE)) {
2297 			operation_bw = padapter->mlmeextpriv.cur_bwmode;
2298 			if (operation_bw > CHANNEL_WIDTH_40)
2299 				operation_bw = CHANNEL_WIDTH_40;
2300 		} else {
2301 			/* TDLS: TODO 40? */
2302 			operation_bw = CHANNEL_WIDTH_40;
2303 		}
2304 	} else {
2305 		p = rtw_get_ie(in_ie, WLAN_EID_HT_OPERATION, &ielen, in_len);
2306 		if (p && (ielen == sizeof(struct ieee80211_ht_addt_info))) {
2307 			struct HT_info_element *pht_info = (struct HT_info_element *)(p + 2);
2308 
2309 			if (pht_info->infos[0] & BIT(2)) {
2310 				switch (pht_info->infos[0] & 0x3) {
2311 				case 1:
2312 				case 3:
2313 					operation_bw = CHANNEL_WIDTH_40;
2314 					break;
2315 				default:
2316 					operation_bw = CHANNEL_WIDTH_20;
2317 					break;
2318 				}
2319 			} else {
2320 				operation_bw = CHANNEL_WIDTH_20;
2321 			}
2322 		}
2323 	}
2324 
2325 	/* to disable 40M Hz support while gd_bw_40MHz_en = 0 */
2326 	if ((pregistrypriv->bw_mode & 0x0f) > 0)
2327 		cbw40_enable = 1;
2328 
2329 	if ((cbw40_enable == 1) && (operation_bw == CHANNEL_WIDTH_40)) {
2330 		ht_capie.cap_info |= cpu_to_le16(IEEE80211_HT_CAP_SUP_WIDTH);
2331 		if (phtpriv->sgi_40m)
2332 			ht_capie.cap_info |= cpu_to_le16(IEEE80211_HT_CAP_SGI_40);
2333 	}
2334 
2335 	if (TEST_FLAG(phtpriv->stbc_cap, STBC_HT_ENABLE_TX))
2336 		ht_capie.cap_info |= cpu_to_le16(IEEE80211_HT_CAP_TX_STBC);
2337 
2338 	/* todo: disable SM power save mode */
2339 	ht_capie.cap_info |= cpu_to_le16(IEEE80211_HT_CAP_SM_PS);
2340 
2341 	if (TEST_FLAG(phtpriv->stbc_cap, STBC_HT_ENABLE_RX)) {
2342 		if ((channel <= 14 && pregistrypriv->rx_stbc == 0x1) ||	/* enable for 2.4GHz */
2343 			(pregistrypriv->wifi_spec == 1))
2344 			stbc_rx_enable = 1;
2345 	}
2346 
2347 	/* fill default supported_mcs_set */
2348 	memcpy(&ht_capie.mcs, pmlmeext->default_supported_mcs_set, 16);
2349 
2350 	/* update default supported_mcs_set */
2351 	if (stbc_rx_enable)
2352 		ht_capie.cap_info |= cpu_to_le16(IEEE80211_HT_CAP_RX_STBC_1R);/* RX STBC One spatial stream */
2353 
2354 	set_mcs_rate_by_mask(ht_capie.mcs.rx_mask, MCS_RATE_1R);
2355 
2356 	{
2357 		u32 rx_packet_offset, max_recvbuf_sz;
2358 
2359 		rtw_hal_get_def_var(padapter, HAL_DEF_RX_PACKET_OFFSET, &rx_packet_offset);
2360 		rtw_hal_get_def_var(padapter, HAL_DEF_MAX_RECVBUF_SZ, &max_recvbuf_sz);
2361 	}
2362 
2363 	if (padapter->driver_rx_ampdu_factor != 0xFF)
2364 		max_rx_ampdu_factor =
2365 		  (enum ieee80211_max_ampdu_length_exp)padapter->driver_rx_ampdu_factor;
2366 	else
2367 		rtw_hal_get_def_var(padapter, HW_VAR_MAX_RX_AMPDU_FACTOR,
2368 				    &max_rx_ampdu_factor);
2369 
2370 	ht_capie.ampdu_params_info = (max_rx_ampdu_factor & 0x03);
2371 
2372 	if (padapter->securitypriv.dot11PrivacyAlgrthm == _AES_)
2373 		ht_capie.ampdu_params_info |= (IEEE80211_HT_CAP_AMPDU_DENSITY & (0x07 << 2));
2374 	else
2375 		ht_capie.ampdu_params_info |= (IEEE80211_HT_CAP_AMPDU_DENSITY & 0x00);
2376 
2377 	rtw_set_ie(out_ie + out_len, WLAN_EID_HT_CAPABILITY,
2378 		   sizeof(struct ieee80211_ht_cap), (unsigned char *)&ht_capie, pout_len);
2379 
2380 	phtpriv->ht_option = true;
2381 
2382 	if (in_ie) {
2383 		p = rtw_get_ie(in_ie, WLAN_EID_HT_OPERATION, &ielen, in_len);
2384 		if (p && (ielen == sizeof(struct ieee80211_ht_addt_info))) {
2385 			out_len = *pout_len;
2386 			rtw_set_ie(out_ie + out_len, WLAN_EID_HT_OPERATION, ielen, p + 2, pout_len);
2387 		}
2388 	}
2389 
2390 	return phtpriv->ht_option;
2391 }
2392 
2393 /* the function is > passive_level (in critical_section) */
2394 void rtw_update_ht_cap(struct adapter *padapter, u8 *pie, uint ie_len, u8 channel)
2395 {
2396 	u8 *p, max_ampdu_sz;
2397 	int len;
2398 	struct ieee80211_ht_cap *pht_capie;
2399 	struct mlme_priv *pmlmepriv = &padapter->mlmepriv;
2400 	struct ht_priv *phtpriv = &pmlmepriv->htpriv;
2401 	struct registry_priv *pregistrypriv = &padapter->registrypriv;
2402 	struct mlme_ext_priv *pmlmeext = &padapter->mlmeextpriv;
2403 	struct mlme_ext_info *pmlmeinfo = &pmlmeext->mlmext_info;
2404 	u8 cbw40_enable = 0;
2405 
2406 	if (!phtpriv->ht_option)
2407 		return;
2408 
2409 	if ((!pmlmeinfo->HT_info_enable) || (!pmlmeinfo->HT_caps_enable))
2410 		return;
2411 
2412 	/* maybe needs check if ap supports rx ampdu. */
2413 	if (!(phtpriv->ampdu_enable) && pregistrypriv->ampdu_enable == 1)
2414 		phtpriv->ampdu_enable = true;
2415 
2416 	/* check Max Rx A-MPDU Size */
2417 	len = 0;
2418 	p = rtw_get_ie(pie + sizeof(struct ndis_802_11_fix_ie), WLAN_EID_HT_CAPABILITY, &len, ie_len - sizeof(struct ndis_802_11_fix_ie));
2419 	if (p && len > 0) {
2420 		pht_capie = (struct ieee80211_ht_cap *)(p + 2);
2421 		max_ampdu_sz = (pht_capie->ampdu_params_info & IEEE80211_HT_CAP_AMPDU_FACTOR);
2422 		max_ampdu_sz = 1 << (max_ampdu_sz + 3); /*  max_ampdu_sz (kbytes); */
2423 
2424 		phtpriv->rx_ampdu_maxlen = max_ampdu_sz;
2425 	}
2426 
2427 	len = 0;
2428 	p = rtw_get_ie(pie + sizeof(struct ndis_802_11_fix_ie), WLAN_EID_HT_OPERATION, &len, ie_len - sizeof(struct ndis_802_11_fix_ie));
2429 	if (p && len > 0) {
2430 		/* todo: */
2431 	}
2432 
2433 	if ((pregistrypriv->bw_mode & 0x0f) > 0)
2434 		cbw40_enable = 1;
2435 
2436 	/* update cur_bwmode & cur_ch_offset */
2437 	if ((cbw40_enable) &&
2438 	    (le16_to_cpu(pmlmeinfo->HT_caps.u.HT_cap_element.HT_caps_info) &
2439 	      BIT(1)) && (pmlmeinfo->HT_info.infos[0] & BIT(2))) {
2440 		int i;
2441 
2442 		/* update the MCS set */
2443 		for (i = 0; i < 16; i++)
2444 			pmlmeinfo->HT_caps.u.HT_cap_element.MCS_rate[i] &= pmlmeext->default_supported_mcs_set[i];
2445 
2446 		/* update the MCS rates */
2447 		set_mcs_rate_by_mask(pmlmeinfo->HT_caps.u.HT_cap_element.MCS_rate, MCS_RATE_1R);
2448 
2449 		/* switch to the 40M Hz mode according to the AP */
2450 		/* pmlmeext->cur_bwmode = CHANNEL_WIDTH_40; */
2451 		switch ((pmlmeinfo->HT_info.infos[0] & 0x3)) {
2452 		case EXTCHNL_OFFSET_UPPER:
2453 			pmlmeext->cur_ch_offset = HAL_PRIME_CHNL_OFFSET_LOWER;
2454 			break;
2455 
2456 		case EXTCHNL_OFFSET_LOWER:
2457 			pmlmeext->cur_ch_offset = HAL_PRIME_CHNL_OFFSET_UPPER;
2458 			break;
2459 
2460 		default:
2461 			pmlmeext->cur_ch_offset = HAL_PRIME_CHNL_OFFSET_DONT_CARE;
2462 			break;
2463 		}
2464 	}
2465 
2466 	/*  */
2467 	/*  Config SM Power Save setting */
2468 	/*  */
2469 	pmlmeinfo->SM_PS =
2470 		(le16_to_cpu(pmlmeinfo->HT_caps.u.HT_cap_element.HT_caps_info) &
2471 		 0x0C) >> 2;
2472 
2473 	/*  */
2474 	/*  Config current HT Protection mode. */
2475 	/*  */
2476 	pmlmeinfo->HT_protection = pmlmeinfo->HT_info.infos[1] & 0x3;
2477 }
2478 
2479 void rtw_issue_addbareq_cmd(struct adapter *padapter, struct xmit_frame *pxmitframe)
2480 {
2481 	u8 issued;
2482 	int priority;
2483 	struct sta_info *psta;
2484 	struct ht_priv *phtpriv;
2485 	struct pkt_attrib *pattrib = &pxmitframe->attrib;
2486 	s32 bmcst = is_multicast_ether_addr(pattrib->ra);
2487 
2488 	if (bmcst || (padapter->mlmepriv.link_detect_info.num_tx_ok_in_period < 100))
2489 		return;
2490 
2491 	priority = pattrib->priority;
2492 
2493 	psta = rtw_get_stainfo(&padapter->stapriv, pattrib->ra);
2494 	if (pattrib->psta != psta)
2495 		return;
2496 
2497 	if (!psta)
2498 		return;
2499 
2500 	if (!(psta->state & _FW_LINKED))
2501 		return;
2502 
2503 	phtpriv = &psta->htpriv;
2504 
2505 	if (phtpriv->ht_option && phtpriv->ampdu_enable) {
2506 		issued = (phtpriv->agg_enable_bitmap >> priority) & 0x1;
2507 		issued |= (phtpriv->candidate_tid_bitmap >> priority) & 0x1;
2508 
2509 		if (issued == 0) {
2510 			psta->htpriv.candidate_tid_bitmap |= BIT((u8)priority);
2511 			rtw_addbareq_cmd(padapter, (u8) priority, pattrib->ra);
2512 		}
2513 	}
2514 }
2515 
2516 void rtw_append_exented_cap(struct adapter *padapter, u8 *out_ie, uint *pout_len)
2517 {
2518 	struct mlme_priv *pmlmepriv = &padapter->mlmepriv;
2519 	struct ht_priv *phtpriv = &pmlmepriv->htpriv;
2520 	u8 cap_content[8] = {0};
2521 
2522 	if (phtpriv->bss_coexist)
2523 		SET_EXT_CAPABILITY_ELE_BSS_COEXIST(cap_content, 1);
2524 
2525 	rtw_set_ie(out_ie + *pout_len, WLAN_EID_EXT_CAPABILITY, 8, cap_content, pout_len);
2526 }
2527 
2528 inline void rtw_set_to_roam(struct adapter *adapter, u8 to_roam)
2529 {
2530 	if (to_roam == 0)
2531 		adapter->mlmepriv.to_join = false;
2532 	adapter->mlmepriv.to_roam = to_roam;
2533 }
2534 
2535 inline u8 rtw_dec_to_roam(struct adapter *adapter)
2536 {
2537 	adapter->mlmepriv.to_roam--;
2538 	return adapter->mlmepriv.to_roam;
2539 }
2540 
2541 inline u8 rtw_to_roam(struct adapter *adapter)
2542 {
2543 	return adapter->mlmepriv.to_roam;
2544 }
2545 
2546 void rtw_roaming(struct adapter *padapter, struct wlan_network *tgt_network)
2547 {
2548 	struct mlme_priv *pmlmepriv = &padapter->mlmepriv;
2549 
2550 	spin_lock_bh(&pmlmepriv->lock);
2551 	_rtw_roaming(padapter, tgt_network);
2552 	spin_unlock_bh(&pmlmepriv->lock);
2553 }
2554 
2555 void _rtw_roaming(struct adapter *padapter, struct wlan_network *tgt_network)
2556 {
2557 	struct mlme_priv *pmlmepriv = &padapter->mlmepriv;
2558 	struct wlan_network *cur_network = &pmlmepriv->cur_network;
2559 
2560 	if (rtw_to_roam(padapter) > 0) {
2561 		memcpy(&pmlmepriv->assoc_ssid, &cur_network->network.ssid, sizeof(struct ndis_802_11_ssid));
2562 
2563 		pmlmepriv->assoc_by_bssid = false;
2564 
2565 		while (rtw_do_join(padapter) != _SUCCESS) {
2566 			rtw_dec_to_roam(padapter);
2567 			if (rtw_to_roam(padapter) <= 0) {
2568 				rtw_indicate_disconnect(padapter);
2569 				break;
2570 			}
2571 		}
2572 	}
2573 }
2574 
2575 bool rtw_linked_check(struct adapter *padapter)
2576 {
2577 	if (check_fwstate(&padapter->mlmepriv, WIFI_AP_STATE) ||
2578 	    check_fwstate(&padapter->mlmepriv, WIFI_ADHOC_STATE | WIFI_ADHOC_MASTER_STATE)) {
2579 		if (padapter->stapriv.asoc_sta_count > 2)
2580 			return true;
2581 	} else {	/* Station mode */
2582 		if (check_fwstate(&padapter->mlmepriv, _FW_LINKED))
2583 			return true;
2584 	}
2585 	return false;
2586 }
2587