main.c revision 7880377012ef48bf75498648c3bcbcb60460ff28
1/*
2 * Copyright (c) 2004-2011 Atheros Communications Inc.
3 * Copyright (c) 2011-2012 Qualcomm Atheros, Inc.
4 *
5 * Permission to use, copy, modify, and/or distribute this software for any
6 * purpose with or without fee is hereby granted, provided that the above
7 * copyright notice and this permission notice appear in all copies.
8 *
9 * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
10 * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
11 * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR
12 * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
13 * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
14 * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF
15 * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
16 */
17
18#define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
19
20#include "core.h"
21#include "hif-ops.h"
22#include "cfg80211.h"
23#include "target.h"
24#include "debug.h"
25
26struct ath6kl_sta *ath6kl_find_sta(struct ath6kl_vif *vif, u8 *node_addr)
27{
28	struct ath6kl *ar = vif->ar;
29	struct ath6kl_sta *conn = NULL;
30	u8 i, max_conn;
31
32	if (is_zero_ether_addr(node_addr))
33		return NULL;
34
35	max_conn = (vif->nw_type == AP_NETWORK) ? AP_MAX_NUM_STA : 0;
36
37	for (i = 0; i < max_conn; i++) {
38		if (memcmp(node_addr, ar->sta_list[i].mac, ETH_ALEN) == 0) {
39			conn = &ar->sta_list[i];
40			break;
41		}
42	}
43
44	return conn;
45}
46
47struct ath6kl_sta *ath6kl_find_sta_by_aid(struct ath6kl *ar, u8 aid)
48{
49	struct ath6kl_sta *conn = NULL;
50	u8 ctr;
51
52	for (ctr = 0; ctr < AP_MAX_NUM_STA; ctr++) {
53		if (ar->sta_list[ctr].aid == aid) {
54			conn = &ar->sta_list[ctr];
55			break;
56		}
57	}
58	return conn;
59}
60
61static void ath6kl_add_new_sta(struct ath6kl_vif *vif, u8 *mac, u16 aid,
62			       u8 *wpaie, size_t ielen, u8 keymgmt,
63			       u8 ucipher, u8 auth, u8 apsd_info)
64{
65	struct ath6kl *ar = vif->ar;
66	struct ath6kl_sta *sta;
67	u8 free_slot;
68
69	free_slot = aid - 1;
70
71	sta = &ar->sta_list[free_slot];
72	memcpy(sta->mac, mac, ETH_ALEN);
73	if (ielen <= ATH6KL_MAX_IE)
74		memcpy(sta->wpa_ie, wpaie, ielen);
75	sta->aid = aid;
76	sta->keymgmt = keymgmt;
77	sta->ucipher = ucipher;
78	sta->auth = auth;
79	sta->apsd_info = apsd_info;
80
81	ar->sta_list_index = ar->sta_list_index | (1 << free_slot);
82	ar->ap_stats.sta[free_slot].aid = cpu_to_le32(aid);
83	aggr_conn_init(vif, vif->aggr_cntxt, sta->aggr_conn);
84}
85
86static void ath6kl_sta_cleanup(struct ath6kl *ar, u8 i)
87{
88	struct ath6kl_sta *sta = &ar->sta_list[i];
89	struct ath6kl_mgmt_buff *entry, *tmp;
90
91	/* empty the queued pkts in the PS queue if any */
92	spin_lock_bh(&sta->psq_lock);
93	skb_queue_purge(&sta->psq);
94	skb_queue_purge(&sta->apsdq);
95
96	if (sta->mgmt_psq_len != 0) {
97		list_for_each_entry_safe(entry, tmp, &sta->mgmt_psq, list) {
98			kfree(entry);
99		}
100		INIT_LIST_HEAD(&sta->mgmt_psq);
101		sta->mgmt_psq_len = 0;
102	}
103
104	spin_unlock_bh(&sta->psq_lock);
105
106	memset(&ar->ap_stats.sta[sta->aid - 1], 0,
107	       sizeof(struct wmi_per_sta_stat));
108	memset(sta->mac, 0, ETH_ALEN);
109	memset(sta->wpa_ie, 0, ATH6KL_MAX_IE);
110	sta->aid = 0;
111	sta->sta_flags = 0;
112
113	ar->sta_list_index = ar->sta_list_index & ~(1 << i);
114	aggr_reset_state(sta->aggr_conn);
115}
116
117static u8 ath6kl_remove_sta(struct ath6kl *ar, u8 *mac, u16 reason)
118{
119	u8 i, removed = 0;
120
121	if (is_zero_ether_addr(mac))
122		return removed;
123
124	if (is_broadcast_ether_addr(mac)) {
125		ath6kl_dbg(ATH6KL_DBG_TRC, "deleting all station\n");
126
127		for (i = 0; i < AP_MAX_NUM_STA; i++) {
128			if (!is_zero_ether_addr(ar->sta_list[i].mac)) {
129				ath6kl_sta_cleanup(ar, i);
130				removed = 1;
131			}
132		}
133	} else {
134		for (i = 0; i < AP_MAX_NUM_STA; i++) {
135			if (memcmp(ar->sta_list[i].mac, mac, ETH_ALEN) == 0) {
136				ath6kl_dbg(ATH6KL_DBG_TRC,
137					   "deleting station %pM aid=%d reason=%d\n",
138					   mac, ar->sta_list[i].aid, reason);
139				ath6kl_sta_cleanup(ar, i);
140				removed = 1;
141				break;
142			}
143		}
144	}
145
146	return removed;
147}
148
149enum htc_endpoint_id ath6kl_ac2_endpoint_id(void *devt, u8 ac)
150{
151	struct ath6kl *ar = devt;
152	return ar->ac2ep_map[ac];
153}
154
155struct ath6kl_cookie *ath6kl_alloc_cookie(struct ath6kl *ar)
156{
157	struct ath6kl_cookie *cookie;
158
159	cookie = ar->cookie_list;
160	if (cookie != NULL) {
161		ar->cookie_list = cookie->arc_list_next;
162		ar->cookie_count--;
163	}
164
165	return cookie;
166}
167
168void ath6kl_cookie_init(struct ath6kl *ar)
169{
170	u32 i;
171
172	ar->cookie_list = NULL;
173	ar->cookie_count = 0;
174
175	memset(ar->cookie_mem, 0, sizeof(ar->cookie_mem));
176
177	for (i = 0; i < MAX_COOKIE_NUM; i++)
178		ath6kl_free_cookie(ar, &ar->cookie_mem[i]);
179}
180
181void ath6kl_cookie_cleanup(struct ath6kl *ar)
182{
183	ar->cookie_list = NULL;
184	ar->cookie_count = 0;
185}
186
187void ath6kl_free_cookie(struct ath6kl *ar, struct ath6kl_cookie *cookie)
188{
189	/* Insert first */
190
191	if (!ar || !cookie)
192		return;
193
194	cookie->arc_list_next = ar->cookie_list;
195	ar->cookie_list = cookie;
196	ar->cookie_count++;
197}
198
199/*
200 * Read from the hardware through its diagnostic window. No cooperation
201 * from the firmware is required for this.
202 */
203int ath6kl_diag_read32(struct ath6kl *ar, u32 address, u32 *value)
204{
205	int ret;
206
207	ret = ath6kl_hif_diag_read32(ar, address, value);
208	if (ret) {
209		ath6kl_warn("failed to read32 through diagnose window: %d\n",
210			    ret);
211		return ret;
212	}
213
214	return 0;
215}
216
217/*
218 * Write to the ATH6KL through its diagnostic window. No cooperation from
219 * the Target is required for this.
220 */
221int ath6kl_diag_write32(struct ath6kl *ar, u32 address, __le32 value)
222{
223	int ret;
224
225	ret = ath6kl_hif_diag_write32(ar, address, value);
226
227	if (ret) {
228		ath6kl_err("failed to write 0x%x during diagnose window to 0x%d\n",
229			   address, value);
230		return ret;
231	}
232
233	return 0;
234}
235
236int ath6kl_diag_read(struct ath6kl *ar, u32 address, void *data, u32 length)
237{
238	u32 count, *buf = data;
239	int ret;
240
241	if (WARN_ON(length % 4))
242		return -EINVAL;
243
244	for (count = 0; count < length / 4; count++, address += 4) {
245		ret = ath6kl_diag_read32(ar, address, &buf[count]);
246		if (ret)
247			return ret;
248	}
249
250	return 0;
251}
252
253int ath6kl_diag_write(struct ath6kl *ar, u32 address, void *data, u32 length)
254{
255	u32 count;
256	__le32 *buf = data;
257	int ret;
258
259	if (WARN_ON(length % 4))
260		return -EINVAL;
261
262	for (count = 0; count < length / 4; count++, address += 4) {
263		ret = ath6kl_diag_write32(ar, address, buf[count]);
264		if (ret)
265			return ret;
266	}
267
268	return 0;
269}
270
271int ath6kl_read_fwlogs(struct ath6kl *ar)
272{
273	struct ath6kl_dbglog_hdr debug_hdr;
274	struct ath6kl_dbglog_buf debug_buf;
275	u32 address, length, dropped, firstbuf, debug_hdr_addr;
276	int ret, loop;
277	u8 *buf;
278
279	buf = kmalloc(ATH6KL_FWLOG_PAYLOAD_SIZE, GFP_KERNEL);
280	if (!buf)
281		return -ENOMEM;
282
283	address = TARG_VTOP(ar->target_type,
284			    ath6kl_get_hi_item_addr(ar,
285						    HI_ITEM(hi_dbglog_hdr)));
286
287	ret = ath6kl_diag_read32(ar, address, &debug_hdr_addr);
288	if (ret)
289		goto out;
290
291	/* Get the contents of the ring buffer */
292	if (debug_hdr_addr == 0) {
293		ath6kl_warn("Invalid address for debug_hdr_addr\n");
294		ret = -EINVAL;
295		goto out;
296	}
297
298	address = TARG_VTOP(ar->target_type, debug_hdr_addr);
299	ret = ath6kl_diag_read(ar, address, &debug_hdr, sizeof(debug_hdr));
300	if (ret)
301		goto out;
302
303	address = TARG_VTOP(ar->target_type,
304			    le32_to_cpu(debug_hdr.dbuf_addr));
305	firstbuf = address;
306	dropped = le32_to_cpu(debug_hdr.dropped);
307	ret = ath6kl_diag_read(ar, address, &debug_buf, sizeof(debug_buf));
308	if (ret)
309		goto out;
310
311	loop = 100;
312
313	do {
314		address = TARG_VTOP(ar->target_type,
315				    le32_to_cpu(debug_buf.buffer_addr));
316		length = le32_to_cpu(debug_buf.length);
317
318		if (length != 0 && (le32_to_cpu(debug_buf.length) <=
319				    le32_to_cpu(debug_buf.bufsize))) {
320			length = ALIGN(length, 4);
321
322			ret = ath6kl_diag_read(ar, address,
323					       buf, length);
324			if (ret)
325				goto out;
326
327			ath6kl_debug_fwlog_event(ar, buf, length);
328		}
329
330		address = TARG_VTOP(ar->target_type,
331				    le32_to_cpu(debug_buf.next));
332		ret = ath6kl_diag_read(ar, address, &debug_buf,
333				       sizeof(debug_buf));
334		if (ret)
335			goto out;
336
337		loop--;
338
339		if (WARN_ON(loop == 0)) {
340			ret = -ETIMEDOUT;
341			goto out;
342		}
343	} while (address != firstbuf);
344
345out:
346	kfree(buf);
347
348	return ret;
349}
350
351static void ath6kl_install_static_wep_keys(struct ath6kl_vif *vif)
352{
353	u8 index;
354	u8 keyusage;
355
356	for (index = 0; index <= WMI_MAX_KEY_INDEX; index++) {
357		if (vif->wep_key_list[index].key_len) {
358			keyusage = GROUP_USAGE;
359			if (index == vif->def_txkey_index)
360				keyusage |= TX_USAGE;
361
362			ath6kl_wmi_addkey_cmd(vif->ar->wmi, vif->fw_vif_idx,
363					      index,
364					      WEP_CRYPT,
365					      keyusage,
366					      vif->wep_key_list[index].key_len,
367					      NULL, 0,
368					      vif->wep_key_list[index].key,
369					      KEY_OP_INIT_VAL, NULL,
370					      NO_SYNC_WMIFLAG);
371		}
372	}
373}
374
375void ath6kl_connect_ap_mode_bss(struct ath6kl_vif *vif, u16 channel)
376{
377	struct ath6kl *ar = vif->ar;
378	struct ath6kl_req_key *ik;
379	int res;
380	u8 key_rsc[ATH6KL_KEY_SEQ_LEN];
381
382	ik = &ar->ap_mode_bkey;
383
384	ath6kl_dbg(ATH6KL_DBG_WLAN_CFG, "AP mode started on %u MHz\n", channel);
385
386	switch (vif->auth_mode) {
387	case NONE_AUTH:
388		if (vif->prwise_crypto == WEP_CRYPT)
389			ath6kl_install_static_wep_keys(vif);
390		if (!ik->valid || ik->key_type != WAPI_CRYPT)
391			break;
392		/* for WAPI, we need to set the delayed group key, continue: */
393	case WPA_PSK_AUTH:
394	case WPA2_PSK_AUTH:
395	case (WPA_PSK_AUTH | WPA2_PSK_AUTH):
396		if (!ik->valid)
397			break;
398
399		ath6kl_dbg(ATH6KL_DBG_WLAN_CFG,
400			   "Delayed addkey for the initial group key for AP mode\n");
401		memset(key_rsc, 0, sizeof(key_rsc));
402		res = ath6kl_wmi_addkey_cmd(
403			ar->wmi, vif->fw_vif_idx, ik->key_index, ik->key_type,
404			GROUP_USAGE, ik->key_len, key_rsc, ATH6KL_KEY_SEQ_LEN,
405			ik->key,
406			KEY_OP_INIT_VAL, NULL, SYNC_BOTH_WMIFLAG);
407		if (res) {
408			ath6kl_dbg(ATH6KL_DBG_WLAN_CFG,
409				   "Delayed addkey failed: %d\n", res);
410		}
411		break;
412	}
413
414	if (ar->last_ch != channel)
415		/* we actually don't know the phymode, default to HT20 */
416		ath6kl_cfg80211_ch_switch_notify(vif, channel, WMI_11G_HT20);
417
418	ath6kl_wmi_bssfilter_cmd(ar->wmi, vif->fw_vif_idx, NONE_BSS_FILTER, 0);
419	set_bit(CONNECTED, &vif->flags);
420	netif_carrier_on(vif->ndev);
421}
422
423void ath6kl_connect_ap_mode_sta(struct ath6kl_vif *vif, u16 aid, u8 *mac_addr,
424				u8 keymgmt, u8 ucipher, u8 auth,
425				u8 assoc_req_len, u8 *assoc_info, u8 apsd_info)
426{
427	u8 *ies = NULL, *wpa_ie = NULL, *pos;
428	size_t ies_len = 0;
429	struct station_info sinfo;
430
431	ath6kl_dbg(ATH6KL_DBG_TRC, "new station %pM aid=%d\n", mac_addr, aid);
432
433	if (assoc_req_len > sizeof(struct ieee80211_hdr_3addr)) {
434		struct ieee80211_mgmt *mgmt =
435			(struct ieee80211_mgmt *) assoc_info;
436		if (ieee80211_is_assoc_req(mgmt->frame_control) &&
437		    assoc_req_len >= sizeof(struct ieee80211_hdr_3addr) +
438		    sizeof(mgmt->u.assoc_req)) {
439			ies = mgmt->u.assoc_req.variable;
440			ies_len = assoc_info + assoc_req_len - ies;
441		} else if (ieee80211_is_reassoc_req(mgmt->frame_control) &&
442			   assoc_req_len >= sizeof(struct ieee80211_hdr_3addr)
443			   + sizeof(mgmt->u.reassoc_req)) {
444			ies = mgmt->u.reassoc_req.variable;
445			ies_len = assoc_info + assoc_req_len - ies;
446		}
447	}
448
449	pos = ies;
450	while (pos && pos + 1 < ies + ies_len) {
451		if (pos + 2 + pos[1] > ies + ies_len)
452			break;
453		if (pos[0] == WLAN_EID_RSN)
454			wpa_ie = pos; /* RSN IE */
455		else if (pos[0] == WLAN_EID_VENDOR_SPECIFIC &&
456			 pos[1] >= 4 &&
457			 pos[2] == 0x00 && pos[3] == 0x50 && pos[4] == 0xf2) {
458			if (pos[5] == 0x01)
459				wpa_ie = pos; /* WPA IE */
460			else if (pos[5] == 0x04) {
461				wpa_ie = pos; /* WPS IE */
462				break; /* overrides WPA/RSN IE */
463			}
464		} else if (pos[0] == 0x44 && wpa_ie == NULL) {
465			/*
466			 * Note: WAPI Parameter Set IE re-uses Element ID that
467			 * was officially allocated for BSS AC Access Delay. As
468			 * such, we need to be a bit more careful on when
469			 * parsing the frame. However, BSS AC Access Delay
470			 * element is not supposed to be included in
471			 * (Re)Association Request frames, so this should not
472			 * cause problems.
473			 */
474			wpa_ie = pos; /* WAPI IE */
475			break;
476		}
477		pos += 2 + pos[1];
478	}
479
480	ath6kl_add_new_sta(vif, mac_addr, aid, wpa_ie,
481			   wpa_ie ? 2 + wpa_ie[1] : 0,
482			   keymgmt, ucipher, auth, apsd_info);
483
484	/* send event to application */
485	memset(&sinfo, 0, sizeof(sinfo));
486
487	/* TODO: sinfo.generation */
488
489	sinfo.assoc_req_ies = ies;
490	sinfo.assoc_req_ies_len = ies_len;
491	sinfo.filled |= STATION_INFO_ASSOC_REQ_IES;
492
493	cfg80211_new_sta(vif->ndev, mac_addr, &sinfo, GFP_KERNEL);
494
495	netif_wake_queue(vif->ndev);
496}
497
498void disconnect_timer_handler(unsigned long ptr)
499{
500	struct net_device *dev = (struct net_device *)ptr;
501	struct ath6kl_vif *vif = netdev_priv(dev);
502
503	ath6kl_init_profile_info(vif);
504	ath6kl_disconnect(vif);
505}
506
507void ath6kl_disconnect(struct ath6kl_vif *vif)
508{
509	if (test_bit(CONNECTED, &vif->flags) ||
510	    test_bit(CONNECT_PEND, &vif->flags)) {
511		ath6kl_wmi_disconnect_cmd(vif->ar->wmi, vif->fw_vif_idx);
512		/*
513		 * Disconnect command is issued, clear the connect pending
514		 * flag. The connected flag will be cleared in
515		 * disconnect event notification.
516		 */
517		clear_bit(CONNECT_PEND, &vif->flags);
518	}
519}
520
521/* WMI Event handlers */
522
523void ath6kl_ready_event(void *devt, u8 *datap, u32 sw_ver, u32 abi_ver,
524			enum wmi_phy_cap cap)
525{
526	struct ath6kl *ar = devt;
527
528	memcpy(ar->mac_addr, datap, ETH_ALEN);
529
530	ath6kl_dbg(ATH6KL_DBG_BOOT,
531		   "ready event mac addr %pM sw_ver 0x%x abi_ver 0x%x cap 0x%x\n",
532		   ar->mac_addr, sw_ver, abi_ver, cap);
533
534	ar->version.wlan_ver = sw_ver;
535	ar->version.abi_ver = abi_ver;
536	ar->hw.cap = cap;
537
538	if (strlen(ar->wiphy->fw_version) == 0) {
539		snprintf(ar->wiphy->fw_version,
540			 sizeof(ar->wiphy->fw_version),
541			 "%u.%u.%u.%u",
542			 (ar->version.wlan_ver & 0xf0000000) >> 28,
543			 (ar->version.wlan_ver & 0x0f000000) >> 24,
544			 (ar->version.wlan_ver & 0x00ff0000) >> 16,
545			 (ar->version.wlan_ver & 0x0000ffff));
546	}
547
548	/* indicate to the waiting thread that the ready event was received */
549	set_bit(WMI_READY, &ar->flag);
550	wake_up(&ar->event_wq);
551}
552
553void ath6kl_scan_complete_evt(struct ath6kl_vif *vif, int status)
554{
555	struct ath6kl *ar = vif->ar;
556	bool aborted = false;
557
558	if (status != WMI_SCAN_STATUS_SUCCESS)
559		aborted = true;
560
561	ath6kl_cfg80211_scan_complete_event(vif, aborted);
562
563	if (!ar->usr_bss_filter) {
564		clear_bit(CLEAR_BSSFILTER_ON_BEACON, &vif->flags);
565		ath6kl_wmi_bssfilter_cmd(ar->wmi, vif->fw_vif_idx,
566					 NONE_BSS_FILTER, 0);
567	}
568
569	ath6kl_dbg(ATH6KL_DBG_WLAN_CFG, "scan complete: %d\n", status);
570}
571
572static int ath6kl_commit_ch_switch(struct ath6kl_vif *vif, u16 channel)
573{
574	struct ath6kl *ar = vif->ar;
575
576	vif->profile.ch = cpu_to_le16(channel);
577
578	switch (vif->nw_type) {
579	case AP_NETWORK:
580		/*
581		 * reconfigure any saved RSN IE capabilites in the beacon /
582		 * probe response to stay in sync with the supplicant.
583		 */
584		if (vif->rsn_capab &&
585		    test_bit(ATH6KL_FW_CAPABILITY_RSN_CAP_OVERRIDE,
586			     ar->fw_capabilities))
587			ath6kl_wmi_set_ie_cmd(ar->wmi, vif->fw_vif_idx,
588					      WLAN_EID_RSN, WMI_RSN_IE_CAPB,
589					      (const u8 *) &vif->rsn_capab,
590					      sizeof(vif->rsn_capab));
591
592		return ath6kl_wmi_ap_profile_commit(ar->wmi, vif->fw_vif_idx,
593						    &vif->profile);
594	default:
595		ath6kl_err("won't switch channels nw_type=%d\n", vif->nw_type);
596		return -ENOTSUPP;
597	}
598}
599
600static void ath6kl_check_ch_switch(struct ath6kl *ar, u16 channel)
601{
602	struct ath6kl_vif *vif;
603	int res = 0;
604
605	if (!ar->want_ch_switch)
606		return;
607
608	spin_lock_bh(&ar->list_lock);
609	list_for_each_entry(vif, &ar->vif_list, list) {
610		if (ar->want_ch_switch & (1 << vif->fw_vif_idx))
611			res = ath6kl_commit_ch_switch(vif, channel);
612
613		/* if channel switch failed, oh well we tried */
614		ar->want_ch_switch &= ~(1 << vif->fw_vif_idx);
615
616		if (res)
617			ath6kl_err("channel switch failed nw_type %d res %d\n",
618				   vif->nw_type, res);
619	}
620	spin_unlock_bh(&ar->list_lock);
621}
622
623void ath6kl_connect_event(struct ath6kl_vif *vif, u16 channel, u8 *bssid,
624			  u16 listen_int, u16 beacon_int,
625			  enum network_type net_type, u8 beacon_ie_len,
626			  u8 assoc_req_len, u8 assoc_resp_len,
627			  u8 *assoc_info)
628{
629	struct ath6kl *ar = vif->ar;
630
631	ath6kl_cfg80211_connect_event(vif, channel, bssid,
632				      listen_int, beacon_int,
633				      net_type, beacon_ie_len,
634				      assoc_req_len, assoc_resp_len,
635				      assoc_info);
636
637	memcpy(vif->bssid, bssid, sizeof(vif->bssid));
638	vif->bss_ch = channel;
639
640	if ((vif->nw_type == INFRA_NETWORK)) {
641		ath6kl_wmi_listeninterval_cmd(ar->wmi, vif->fw_vif_idx,
642					      vif->listen_intvl_t, 0);
643		ath6kl_check_ch_switch(ar, channel);
644	}
645
646	netif_wake_queue(vif->ndev);
647
648	/* Update connect & link status atomically */
649	spin_lock_bh(&vif->if_lock);
650	set_bit(CONNECTED, &vif->flags);
651	clear_bit(CONNECT_PEND, &vif->flags);
652	netif_carrier_on(vif->ndev);
653	spin_unlock_bh(&vif->if_lock);
654
655	aggr_reset_state(vif->aggr_cntxt->aggr_conn);
656	vif->reconnect_flag = 0;
657
658	if ((vif->nw_type == ADHOC_NETWORK) && ar->ibss_ps_enable) {
659		memset(ar->node_map, 0, sizeof(ar->node_map));
660		ar->node_num = 0;
661		ar->next_ep_id = ENDPOINT_2;
662	}
663
664	if (!ar->usr_bss_filter) {
665		set_bit(CLEAR_BSSFILTER_ON_BEACON, &vif->flags);
666		ath6kl_wmi_bssfilter_cmd(ar->wmi, vif->fw_vif_idx,
667					 CURRENT_BSS_FILTER, 0);
668	}
669}
670
671void ath6kl_tkip_micerr_event(struct ath6kl_vif *vif, u8 keyid, bool ismcast)
672{
673	struct ath6kl_sta *sta;
674	struct ath6kl *ar = vif->ar;
675	u8 tsc[6];
676
677	/*
678	 * For AP case, keyid will have aid of STA which sent pkt with
679	 * MIC error. Use this aid to get MAC & send it to hostapd.
680	 */
681	if (vif->nw_type == AP_NETWORK) {
682		sta = ath6kl_find_sta_by_aid(ar, (keyid >> 2));
683		if (!sta)
684			return;
685
686		ath6kl_dbg(ATH6KL_DBG_TRC,
687			   "ap tkip mic error received from aid=%d\n", keyid);
688
689		memset(tsc, 0, sizeof(tsc)); /* FIX: get correct TSC */
690		cfg80211_michael_mic_failure(vif->ndev, sta->mac,
691					     NL80211_KEYTYPE_PAIRWISE, keyid,
692					     tsc, GFP_KERNEL);
693	} else {
694		ath6kl_cfg80211_tkip_micerr_event(vif, keyid, ismcast);
695	}
696}
697
698static void ath6kl_update_target_stats(struct ath6kl_vif *vif, u8 *ptr, u32 len)
699{
700	struct wmi_target_stats *tgt_stats =
701		(struct wmi_target_stats *) ptr;
702	struct ath6kl *ar = vif->ar;
703	struct target_stats *stats = &vif->target_stats;
704	struct tkip_ccmp_stats *ccmp_stats;
705	s32 rate;
706	u8 ac;
707
708	if (len < sizeof(*tgt_stats))
709		return;
710
711	ath6kl_dbg(ATH6KL_DBG_TRC, "updating target stats\n");
712
713	stats->tx_pkt += le32_to_cpu(tgt_stats->stats.tx.pkt);
714	stats->tx_byte += le32_to_cpu(tgt_stats->stats.tx.byte);
715	stats->tx_ucast_pkt += le32_to_cpu(tgt_stats->stats.tx.ucast_pkt);
716	stats->tx_ucast_byte += le32_to_cpu(tgt_stats->stats.tx.ucast_byte);
717	stats->tx_mcast_pkt += le32_to_cpu(tgt_stats->stats.tx.mcast_pkt);
718	stats->tx_mcast_byte += le32_to_cpu(tgt_stats->stats.tx.mcast_byte);
719	stats->tx_bcast_pkt  += le32_to_cpu(tgt_stats->stats.tx.bcast_pkt);
720	stats->tx_bcast_byte += le32_to_cpu(tgt_stats->stats.tx.bcast_byte);
721	stats->tx_rts_success_cnt +=
722		le32_to_cpu(tgt_stats->stats.tx.rts_success_cnt);
723
724	for (ac = 0; ac < WMM_NUM_AC; ac++)
725		stats->tx_pkt_per_ac[ac] +=
726			le32_to_cpu(tgt_stats->stats.tx.pkt_per_ac[ac]);
727
728	stats->tx_err += le32_to_cpu(tgt_stats->stats.tx.err);
729	stats->tx_fail_cnt += le32_to_cpu(tgt_stats->stats.tx.fail_cnt);
730	stats->tx_retry_cnt += le32_to_cpu(tgt_stats->stats.tx.retry_cnt);
731	stats->tx_mult_retry_cnt +=
732		le32_to_cpu(tgt_stats->stats.tx.mult_retry_cnt);
733	stats->tx_rts_fail_cnt +=
734		le32_to_cpu(tgt_stats->stats.tx.rts_fail_cnt);
735
736	rate = a_sle32_to_cpu(tgt_stats->stats.tx.ucast_rate);
737	stats->tx_ucast_rate = ath6kl_wmi_get_rate(ar->wmi, rate);
738
739	stats->rx_pkt += le32_to_cpu(tgt_stats->stats.rx.pkt);
740	stats->rx_byte += le32_to_cpu(tgt_stats->stats.rx.byte);
741	stats->rx_ucast_pkt += le32_to_cpu(tgt_stats->stats.rx.ucast_pkt);
742	stats->rx_ucast_byte += le32_to_cpu(tgt_stats->stats.rx.ucast_byte);
743	stats->rx_mcast_pkt += le32_to_cpu(tgt_stats->stats.rx.mcast_pkt);
744	stats->rx_mcast_byte += le32_to_cpu(tgt_stats->stats.rx.mcast_byte);
745	stats->rx_bcast_pkt += le32_to_cpu(tgt_stats->stats.rx.bcast_pkt);
746	stats->rx_bcast_byte += le32_to_cpu(tgt_stats->stats.rx.bcast_byte);
747	stats->rx_frgment_pkt += le32_to_cpu(tgt_stats->stats.rx.frgment_pkt);
748	stats->rx_err += le32_to_cpu(tgt_stats->stats.rx.err);
749	stats->rx_crc_err += le32_to_cpu(tgt_stats->stats.rx.crc_err);
750	stats->rx_key_cache_miss +=
751		le32_to_cpu(tgt_stats->stats.rx.key_cache_miss);
752	stats->rx_decrypt_err += le32_to_cpu(tgt_stats->stats.rx.decrypt_err);
753	stats->rx_dupl_frame += le32_to_cpu(tgt_stats->stats.rx.dupl_frame);
754
755	rate = a_sle32_to_cpu(tgt_stats->stats.rx.ucast_rate);
756	stats->rx_ucast_rate = ath6kl_wmi_get_rate(ar->wmi, rate);
757
758	ccmp_stats = &tgt_stats->stats.tkip_ccmp_stats;
759
760	stats->tkip_local_mic_fail +=
761		le32_to_cpu(ccmp_stats->tkip_local_mic_fail);
762	stats->tkip_cnter_measures_invoked +=
763		le32_to_cpu(ccmp_stats->tkip_cnter_measures_invoked);
764	stats->tkip_fmt_err += le32_to_cpu(ccmp_stats->tkip_fmt_err);
765
766	stats->ccmp_fmt_err += le32_to_cpu(ccmp_stats->ccmp_fmt_err);
767	stats->ccmp_replays += le32_to_cpu(ccmp_stats->ccmp_replays);
768
769	stats->pwr_save_fail_cnt +=
770		le32_to_cpu(tgt_stats->pm_stats.pwr_save_failure_cnt);
771	stats->noise_floor_calib =
772		a_sle32_to_cpu(tgt_stats->noise_floor_calib);
773
774	stats->cs_bmiss_cnt +=
775		le32_to_cpu(tgt_stats->cserv_stats.cs_bmiss_cnt);
776	stats->cs_low_rssi_cnt +=
777		le32_to_cpu(tgt_stats->cserv_stats.cs_low_rssi_cnt);
778	stats->cs_connect_cnt +=
779		le16_to_cpu(tgt_stats->cserv_stats.cs_connect_cnt);
780	stats->cs_discon_cnt +=
781		le16_to_cpu(tgt_stats->cserv_stats.cs_discon_cnt);
782
783	stats->cs_ave_beacon_rssi =
784		a_sle16_to_cpu(tgt_stats->cserv_stats.cs_ave_beacon_rssi);
785
786	stats->cs_last_roam_msec =
787		tgt_stats->cserv_stats.cs_last_roam_msec;
788	stats->cs_snr = tgt_stats->cserv_stats.cs_snr;
789	stats->cs_rssi = a_sle16_to_cpu(tgt_stats->cserv_stats.cs_rssi);
790
791	stats->lq_val = le32_to_cpu(tgt_stats->lq_val);
792
793	stats->wow_pkt_dropped +=
794		le32_to_cpu(tgt_stats->wow_stats.wow_pkt_dropped);
795	stats->wow_host_pkt_wakeups +=
796		tgt_stats->wow_stats.wow_host_pkt_wakeups;
797	stats->wow_host_evt_wakeups +=
798		tgt_stats->wow_stats.wow_host_evt_wakeups;
799	stats->wow_evt_discarded +=
800		le16_to_cpu(tgt_stats->wow_stats.wow_evt_discarded);
801
802	stats->arp_received = le32_to_cpu(tgt_stats->arp_stats.arp_received);
803	stats->arp_replied = le32_to_cpu(tgt_stats->arp_stats.arp_replied);
804	stats->arp_matched = le32_to_cpu(tgt_stats->arp_stats.arp_matched);
805
806	if (test_bit(STATS_UPDATE_PEND, &vif->flags)) {
807		clear_bit(STATS_UPDATE_PEND, &vif->flags);
808		wake_up(&ar->event_wq);
809	}
810}
811
812static void ath6kl_add_le32(__le32 *var, __le32 val)
813{
814	*var = cpu_to_le32(le32_to_cpu(*var) + le32_to_cpu(val));
815}
816
817void ath6kl_tgt_stats_event(struct ath6kl_vif *vif, u8 *ptr, u32 len)
818{
819	struct wmi_ap_mode_stat *p = (struct wmi_ap_mode_stat *) ptr;
820	struct ath6kl *ar = vif->ar;
821	struct wmi_ap_mode_stat *ap = &ar->ap_stats;
822	struct wmi_per_sta_stat *st_ap, *st_p;
823	u8 ac;
824
825	if (vif->nw_type == AP_NETWORK) {
826		if (len < sizeof(*p))
827			return;
828
829		for (ac = 0; ac < AP_MAX_NUM_STA; ac++) {
830			st_ap = &ap->sta[ac];
831			st_p = &p->sta[ac];
832
833			ath6kl_add_le32(&st_ap->tx_bytes, st_p->tx_bytes);
834			ath6kl_add_le32(&st_ap->tx_pkts, st_p->tx_pkts);
835			ath6kl_add_le32(&st_ap->tx_error, st_p->tx_error);
836			ath6kl_add_le32(&st_ap->tx_discard, st_p->tx_discard);
837			ath6kl_add_le32(&st_ap->rx_bytes, st_p->rx_bytes);
838			ath6kl_add_le32(&st_ap->rx_pkts, st_p->rx_pkts);
839			ath6kl_add_le32(&st_ap->rx_error, st_p->rx_error);
840			ath6kl_add_le32(&st_ap->rx_discard, st_p->rx_discard);
841		}
842
843	} else {
844		ath6kl_update_target_stats(vif, ptr, len);
845	}
846}
847
848void ath6kl_wakeup_event(void *dev)
849{
850	struct ath6kl *ar = (struct ath6kl *) dev;
851
852	wake_up(&ar->event_wq);
853}
854
855void ath6kl_txpwr_rx_evt(void *devt, u8 tx_pwr)
856{
857	struct ath6kl *ar = (struct ath6kl *) devt;
858
859	ar->tx_pwr = tx_pwr;
860	wake_up(&ar->event_wq);
861}
862
863void ath6kl_pspoll_event(struct ath6kl_vif *vif, u8 aid)
864{
865	struct ath6kl_sta *conn;
866	struct sk_buff *skb;
867	bool psq_empty = false;
868	struct ath6kl *ar = vif->ar;
869	struct ath6kl_mgmt_buff *mgmt_buf;
870
871	conn = ath6kl_find_sta_by_aid(ar, aid);
872
873	if (!conn)
874		return;
875	/*
876	 * Send out a packet queued on ps queue. When the ps queue
877	 * becomes empty update the PVB for this station.
878	 */
879	spin_lock_bh(&conn->psq_lock);
880	psq_empty  = skb_queue_empty(&conn->psq) && (conn->mgmt_psq_len == 0);
881	spin_unlock_bh(&conn->psq_lock);
882
883	if (psq_empty)
884		/* TODO: Send out a NULL data frame */
885		return;
886
887	spin_lock_bh(&conn->psq_lock);
888	if (conn->mgmt_psq_len > 0) {
889		mgmt_buf = list_first_entry(&conn->mgmt_psq,
890					struct ath6kl_mgmt_buff, list);
891		list_del(&mgmt_buf->list);
892		conn->mgmt_psq_len--;
893		spin_unlock_bh(&conn->psq_lock);
894
895		conn->sta_flags |= STA_PS_POLLED;
896		ath6kl_wmi_send_mgmt_cmd(ar->wmi, vif->fw_vif_idx,
897					 mgmt_buf->id, mgmt_buf->freq,
898					 mgmt_buf->wait, mgmt_buf->buf,
899					 mgmt_buf->len, mgmt_buf->no_cck);
900		conn->sta_flags &= ~STA_PS_POLLED;
901		kfree(mgmt_buf);
902	} else {
903		skb = skb_dequeue(&conn->psq);
904		spin_unlock_bh(&conn->psq_lock);
905
906		conn->sta_flags |= STA_PS_POLLED;
907		ath6kl_data_tx(skb, vif->ndev);
908		conn->sta_flags &= ~STA_PS_POLLED;
909	}
910
911	spin_lock_bh(&conn->psq_lock);
912	psq_empty  = skb_queue_empty(&conn->psq) && (conn->mgmt_psq_len == 0);
913	spin_unlock_bh(&conn->psq_lock);
914
915	if (psq_empty)
916		ath6kl_wmi_set_pvb_cmd(ar->wmi, vif->fw_vif_idx, conn->aid, 0);
917}
918
919void ath6kl_dtimexpiry_event(struct ath6kl_vif *vif)
920{
921	bool mcastq_empty = false;
922	struct sk_buff *skb;
923	struct ath6kl *ar = vif->ar;
924
925	/*
926	 * If there are no associated STAs, ignore the DTIM expiry event.
927	 * There can be potential race conditions where the last associated
928	 * STA may disconnect & before the host could clear the 'Indicate
929	 * DTIM' request to the firmware, the firmware would have just
930	 * indicated a DTIM expiry event. The race is between 'clear DTIM
931	 * expiry cmd' going from the host to the firmware & the DTIM
932	 * expiry event happening from the firmware to the host.
933	 */
934	if (!ar->sta_list_index)
935		return;
936
937	spin_lock_bh(&ar->mcastpsq_lock);
938	mcastq_empty = skb_queue_empty(&ar->mcastpsq);
939	spin_unlock_bh(&ar->mcastpsq_lock);
940
941	if (mcastq_empty)
942		return;
943
944	/* set the STA flag to dtim_expired for the frame to go out */
945	set_bit(DTIM_EXPIRED, &vif->flags);
946
947	spin_lock_bh(&ar->mcastpsq_lock);
948	while ((skb = skb_dequeue(&ar->mcastpsq)) != NULL) {
949		spin_unlock_bh(&ar->mcastpsq_lock);
950
951		ath6kl_data_tx(skb, vif->ndev);
952
953		spin_lock_bh(&ar->mcastpsq_lock);
954	}
955	spin_unlock_bh(&ar->mcastpsq_lock);
956
957	clear_bit(DTIM_EXPIRED, &vif->flags);
958
959	/* clear the LSB of the BitMapCtl field of the TIM IE */
960	ath6kl_wmi_set_pvb_cmd(ar->wmi, vif->fw_vif_idx, MCAST_AID, 0);
961}
962
963void ath6kl_disconnect_event(struct ath6kl_vif *vif, u8 reason, u8 *bssid,
964			     u8 assoc_resp_len, u8 *assoc_info,
965			     u16 prot_reason_status)
966{
967	struct ath6kl *ar = vif->ar;
968
969	if (vif->nw_type == AP_NETWORK) {
970		/* disconnect due to other STA vif switching channels */
971		if (reason == BSS_DISCONNECTED &&
972		    prot_reason_status == WMI_AP_REASON_STA_ROAM) {
973			ar->want_ch_switch |= 1 << vif->fw_vif_idx;
974			/* bail back to this channel if STA vif fails connect */
975			ar->last_ch = le16_to_cpu(vif->profile.ch);
976		}
977
978		if (prot_reason_status == WMI_AP_REASON_MAX_STA) {
979			/* send max client reached notification to user space */
980			cfg80211_conn_failed(vif->ndev, bssid,
981					     NL80211_CONN_FAIL_MAX_CLIENTS,
982					     GFP_KERNEL);
983		}
984
985		if (prot_reason_status == WMI_AP_REASON_ACL) {
986			/* send blocked client notification to user space */
987			cfg80211_conn_failed(vif->ndev, bssid,
988					     NL80211_CONN_FAIL_BLOCKED_CLIENT,
989					     GFP_KERNEL);
990		}
991
992		if (!ath6kl_remove_sta(ar, bssid, prot_reason_status))
993			return;
994
995		/* if no more associated STAs, empty the mcast PS q */
996		if (ar->sta_list_index == 0) {
997			spin_lock_bh(&ar->mcastpsq_lock);
998			skb_queue_purge(&ar->mcastpsq);
999			spin_unlock_bh(&ar->mcastpsq_lock);
1000
1001			/* clear the LSB of the TIM IE's BitMapCtl field */
1002			if (test_bit(WMI_READY, &ar->flag))
1003				ath6kl_wmi_set_pvb_cmd(ar->wmi, vif->fw_vif_idx,
1004						       MCAST_AID, 0);
1005		}
1006
1007		if (!is_broadcast_ether_addr(bssid)) {
1008			/* send event to application */
1009			cfg80211_del_sta(vif->ndev, bssid, GFP_KERNEL);
1010		}
1011
1012		if (memcmp(vif->ndev->dev_addr, bssid, ETH_ALEN) == 0) {
1013			memset(vif->wep_key_list, 0, sizeof(vif->wep_key_list));
1014			clear_bit(CONNECTED, &vif->flags);
1015		}
1016		return;
1017	}
1018
1019	ath6kl_cfg80211_disconnect_event(vif, reason, bssid,
1020					 assoc_resp_len, assoc_info,
1021					 prot_reason_status);
1022
1023	aggr_reset_state(vif->aggr_cntxt->aggr_conn);
1024
1025	del_timer(&vif->disconnect_timer);
1026
1027	ath6kl_dbg(ATH6KL_DBG_WLAN_CFG, "disconnect reason is %d\n", reason);
1028
1029	/*
1030	 * If the event is due to disconnect cmd from the host, only they
1031	 * the target would stop trying to connect. Under any other
1032	 * condition, target would keep trying to connect.
1033	 */
1034	if (reason == DISCONNECT_CMD) {
1035		if (!ar->usr_bss_filter && test_bit(WMI_READY, &ar->flag))
1036			ath6kl_wmi_bssfilter_cmd(ar->wmi, vif->fw_vif_idx,
1037						 NONE_BSS_FILTER, 0);
1038	} else {
1039		set_bit(CONNECT_PEND, &vif->flags);
1040		if (((reason == ASSOC_FAILED) &&
1041		     (prot_reason_status == 0x11)) ||
1042		    ((reason == ASSOC_FAILED) && (prot_reason_status == 0x0) &&
1043		     (vif->reconnect_flag == 1))) {
1044			set_bit(CONNECTED, &vif->flags);
1045			return;
1046		}
1047	}
1048
1049	/* restart disconnected concurrent vifs waiting for new channel */
1050	ath6kl_check_ch_switch(ar, ar->last_ch);
1051
1052	/* update connect & link status atomically */
1053	spin_lock_bh(&vif->if_lock);
1054	clear_bit(CONNECTED, &vif->flags);
1055	netif_carrier_off(vif->ndev);
1056	spin_unlock_bh(&vif->if_lock);
1057
1058	if ((reason != CSERV_DISCONNECT) || (vif->reconnect_flag != 1))
1059		vif->reconnect_flag = 0;
1060
1061	if (reason != CSERV_DISCONNECT)
1062		ar->user_key_ctrl = 0;
1063
1064	netif_stop_queue(vif->ndev);
1065	memset(vif->bssid, 0, sizeof(vif->bssid));
1066	vif->bss_ch = 0;
1067
1068	ath6kl_tx_data_cleanup(ar);
1069}
1070
1071struct ath6kl_vif *ath6kl_vif_first(struct ath6kl *ar)
1072{
1073	struct ath6kl_vif *vif;
1074
1075	spin_lock_bh(&ar->list_lock);
1076	if (list_empty(&ar->vif_list)) {
1077		spin_unlock_bh(&ar->list_lock);
1078		return NULL;
1079	}
1080
1081	vif = list_first_entry(&ar->vif_list, struct ath6kl_vif, list);
1082
1083	spin_unlock_bh(&ar->list_lock);
1084
1085	return vif;
1086}
1087
1088static int ath6kl_open(struct net_device *dev)
1089{
1090	struct ath6kl_vif *vif = netdev_priv(dev);
1091
1092	set_bit(WLAN_ENABLED, &vif->flags);
1093
1094	if (test_bit(CONNECTED, &vif->flags)) {
1095		netif_carrier_on(dev);
1096		netif_wake_queue(dev);
1097	} else {
1098		netif_carrier_off(dev);
1099	}
1100
1101	return 0;
1102}
1103
1104static int ath6kl_close(struct net_device *dev)
1105{
1106	struct ath6kl_vif *vif = netdev_priv(dev);
1107
1108	netif_stop_queue(dev);
1109
1110	ath6kl_cfg80211_stop(vif);
1111
1112	clear_bit(WLAN_ENABLED, &vif->flags);
1113
1114	return 0;
1115}
1116
1117static struct net_device_stats *ath6kl_get_stats(struct net_device *dev)
1118{
1119	struct ath6kl_vif *vif = netdev_priv(dev);
1120
1121	return &vif->net_stats;
1122}
1123
1124static int ath6kl_set_features(struct net_device *dev,
1125			       netdev_features_t features)
1126{
1127	struct ath6kl_vif *vif = netdev_priv(dev);
1128	struct ath6kl *ar = vif->ar;
1129	int err = 0;
1130
1131	if ((features & NETIF_F_RXCSUM) &&
1132	    (ar->rx_meta_ver != WMI_META_VERSION_2)) {
1133		ar->rx_meta_ver = WMI_META_VERSION_2;
1134		err = ath6kl_wmi_set_rx_frame_format_cmd(ar->wmi,
1135							 vif->fw_vif_idx,
1136							 ar->rx_meta_ver, 0, 0);
1137		if (err) {
1138			dev->features = features & ~NETIF_F_RXCSUM;
1139			return err;
1140		}
1141	} else if (!(features & NETIF_F_RXCSUM) &&
1142		   (ar->rx_meta_ver == WMI_META_VERSION_2)) {
1143		ar->rx_meta_ver = 0;
1144		err = ath6kl_wmi_set_rx_frame_format_cmd(ar->wmi,
1145							 vif->fw_vif_idx,
1146							 ar->rx_meta_ver, 0, 0);
1147		if (err) {
1148			dev->features = features | NETIF_F_RXCSUM;
1149			return err;
1150		}
1151	}
1152
1153	return err;
1154}
1155
1156static void ath6kl_set_multicast_list(struct net_device *ndev)
1157{
1158	struct ath6kl_vif *vif = netdev_priv(ndev);
1159	bool mc_all_on = false;
1160	int mc_count = netdev_mc_count(ndev);
1161	struct netdev_hw_addr *ha;
1162	bool found;
1163	struct ath6kl_mc_filter *mc_filter, *tmp;
1164	struct list_head mc_filter_new;
1165	int ret;
1166
1167	if (!test_bit(WMI_READY, &vif->ar->flag) ||
1168	    !test_bit(WLAN_ENABLED, &vif->flags))
1169		return;
1170
1171	/* Enable multicast-all filter. */
1172	mc_all_on = !!(ndev->flags & IFF_PROMISC) ||
1173		    !!(ndev->flags & IFF_ALLMULTI) ||
1174		    !!(mc_count > ATH6K_MAX_MC_FILTERS_PER_LIST);
1175
1176	if (mc_all_on)
1177		set_bit(NETDEV_MCAST_ALL_ON, &vif->flags);
1178	else
1179		clear_bit(NETDEV_MCAST_ALL_ON, &vif->flags);
1180
1181	if (test_bit(ATH6KL_FW_CAPABILITY_WOW_MULTICAST_FILTER,
1182		     vif->ar->fw_capabilities)) {
1183		mc_all_on = mc_all_on || (vif->ar->state == ATH6KL_STATE_ON);
1184	}
1185
1186	if (!(ndev->flags & IFF_MULTICAST)) {
1187		mc_all_on = false;
1188		set_bit(NETDEV_MCAST_ALL_OFF, &vif->flags);
1189	} else {
1190		clear_bit(NETDEV_MCAST_ALL_OFF, &vif->flags);
1191	}
1192
1193	/* Enable/disable "multicast-all" filter*/
1194	ath6kl_dbg(ATH6KL_DBG_TRC, "%s multicast-all filter\n",
1195		   mc_all_on ? "enabling" : "disabling");
1196
1197	ret = ath6kl_wmi_mcast_filter_cmd(vif->ar->wmi, vif->fw_vif_idx,
1198						  mc_all_on);
1199	if (ret) {
1200		ath6kl_warn("Failed to %s multicast-all receive\n",
1201			    mc_all_on ? "enable" : "disable");
1202		return;
1203	}
1204
1205	if (test_bit(NETDEV_MCAST_ALL_ON, &vif->flags))
1206		return;
1207
1208	/* Keep the driver and firmware mcast list in sync. */
1209	list_for_each_entry_safe(mc_filter, tmp, &vif->mc_filter, list) {
1210		found = false;
1211		netdev_for_each_mc_addr(ha, ndev) {
1212			if (memcmp(ha->addr, mc_filter->hw_addr,
1213				   ATH6KL_MCAST_FILTER_MAC_ADDR_SIZE) == 0) {
1214				found = true;
1215				break;
1216			}
1217		}
1218
1219		if (!found) {
1220			/*
1221			 * Delete the filter which was previously set
1222			 * but not in the new request.
1223			 */
1224			ath6kl_dbg(ATH6KL_DBG_TRC,
1225				   "Removing %pM from multicast filter\n",
1226				   mc_filter->hw_addr);
1227			ret = ath6kl_wmi_add_del_mcast_filter_cmd(vif->ar->wmi,
1228					vif->fw_vif_idx, mc_filter->hw_addr,
1229					false);
1230			if (ret) {
1231				ath6kl_warn("Failed to remove multicast filter:%pM\n",
1232					    mc_filter->hw_addr);
1233				return;
1234			}
1235
1236			list_del(&mc_filter->list);
1237			kfree(mc_filter);
1238		}
1239	}
1240
1241	INIT_LIST_HEAD(&mc_filter_new);
1242
1243	netdev_for_each_mc_addr(ha, ndev) {
1244		found = false;
1245		list_for_each_entry(mc_filter, &vif->mc_filter, list) {
1246			if (memcmp(ha->addr, mc_filter->hw_addr,
1247				   ATH6KL_MCAST_FILTER_MAC_ADDR_SIZE) == 0) {
1248				found = true;
1249				break;
1250			}
1251		}
1252
1253		if (!found) {
1254			mc_filter = kzalloc(sizeof(struct ath6kl_mc_filter),
1255					    GFP_ATOMIC);
1256			if (!mc_filter) {
1257				WARN_ON(1);
1258				goto out;
1259			}
1260
1261			memcpy(mc_filter->hw_addr, ha->addr,
1262			       ATH6KL_MCAST_FILTER_MAC_ADDR_SIZE);
1263			/* Set the multicast filter */
1264			ath6kl_dbg(ATH6KL_DBG_TRC,
1265				   "Adding %pM to multicast filter list\n",
1266				   mc_filter->hw_addr);
1267			ret = ath6kl_wmi_add_del_mcast_filter_cmd(vif->ar->wmi,
1268					vif->fw_vif_idx, mc_filter->hw_addr,
1269					true);
1270			if (ret) {
1271				ath6kl_warn("Failed to add multicast filter :%pM\n",
1272					    mc_filter->hw_addr);
1273				kfree(mc_filter);
1274				goto out;
1275			}
1276
1277			list_add_tail(&mc_filter->list, &mc_filter_new);
1278		}
1279	}
1280
1281out:
1282	list_splice_tail(&mc_filter_new, &vif->mc_filter);
1283}
1284
1285static const struct net_device_ops ath6kl_netdev_ops = {
1286	.ndo_open               = ath6kl_open,
1287	.ndo_stop               = ath6kl_close,
1288	.ndo_start_xmit         = ath6kl_data_tx,
1289	.ndo_get_stats          = ath6kl_get_stats,
1290	.ndo_set_features       = ath6kl_set_features,
1291	.ndo_set_rx_mode	= ath6kl_set_multicast_list,
1292};
1293
1294void init_netdev(struct net_device *dev)
1295{
1296	struct ath6kl *ar = ath6kl_priv(dev);
1297
1298	dev->netdev_ops = &ath6kl_netdev_ops;
1299	dev->destructor = free_netdev;
1300	dev->watchdog_timeo = ATH6KL_TX_TIMEOUT;
1301
1302	dev->needed_headroom = ETH_HLEN;
1303	dev->needed_headroom += roundup(sizeof(struct ath6kl_llc_snap_hdr) +
1304					sizeof(struct wmi_data_hdr) +
1305					HTC_HDR_LENGTH +
1306					WMI_MAX_TX_META_SZ +
1307					ATH6KL_HTC_ALIGN_BYTES, 4);
1308
1309	if (!test_bit(ATH6KL_FW_CAPABILITY_NO_IP_CHECKSUM,
1310		      ar->fw_capabilities))
1311		dev->hw_features |= NETIF_F_IP_CSUM | NETIF_F_RXCSUM;
1312
1313	return;
1314}
1315