1dad0d04fSFariya Fatima /**
2dad0d04fSFariya Fatima  * Copyright (c) 2014 Redpine Signals Inc.
3dad0d04fSFariya Fatima  *
4dad0d04fSFariya Fatima  * Permission to use, copy, modify, and/or distribute this software for any
5dad0d04fSFariya Fatima  * purpose with or without fee is hereby granted, provided that the above
6dad0d04fSFariya Fatima  * copyright notice and this permission notice appear in all copies.
7dad0d04fSFariya Fatima  *
8dad0d04fSFariya Fatima  * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
9dad0d04fSFariya Fatima  * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
10dad0d04fSFariya Fatima  * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR
11dad0d04fSFariya Fatima  * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
12dad0d04fSFariya Fatima  * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
13dad0d04fSFariya Fatima  * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF
14dad0d04fSFariya Fatima  * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
15dad0d04fSFariya Fatima  */
16dad0d04fSFariya Fatima 
17dad0d04fSFariya Fatima #include <linux/etherdevice.h>
18dad0d04fSFariya Fatima #include "rsi_debugfs.h"
19dad0d04fSFariya Fatima #include "rsi_mgmt.h"
20dad0d04fSFariya Fatima #include "rsi_common.h"
21dad0d04fSFariya Fatima 
22dad0d04fSFariya Fatima static const struct ieee80211_channel rsi_2ghz_channels[] = {
23dad0d04fSFariya Fatima 	{ .band = IEEE80211_BAND_2GHZ, .center_freq = 2412,
24dad0d04fSFariya Fatima 	  .hw_value = 1 }, /* Channel 1 */
25dad0d04fSFariya Fatima 	{ .band = IEEE80211_BAND_2GHZ, .center_freq = 2417,
26dad0d04fSFariya Fatima 	  .hw_value = 2 }, /* Channel 2 */
27dad0d04fSFariya Fatima 	{ .band = IEEE80211_BAND_2GHZ, .center_freq = 2422,
28dad0d04fSFariya Fatima 	  .hw_value = 3 }, /* Channel 3 */
29dad0d04fSFariya Fatima 	{ .band = IEEE80211_BAND_2GHZ, .center_freq = 2427,
30dad0d04fSFariya Fatima 	  .hw_value = 4 }, /* Channel 4 */
31dad0d04fSFariya Fatima 	{ .band = IEEE80211_BAND_2GHZ, .center_freq = 2432,
32dad0d04fSFariya Fatima 	  .hw_value = 5 }, /* Channel 5 */
33dad0d04fSFariya Fatima 	{ .band = IEEE80211_BAND_2GHZ, .center_freq = 2437,
34dad0d04fSFariya Fatima 	  .hw_value = 6 }, /* Channel 6 */
35dad0d04fSFariya Fatima 	{ .band = IEEE80211_BAND_2GHZ, .center_freq = 2442,
36dad0d04fSFariya Fatima 	  .hw_value = 7 }, /* Channel 7 */
37dad0d04fSFariya Fatima 	{ .band = IEEE80211_BAND_2GHZ, .center_freq = 2447,
38dad0d04fSFariya Fatima 	  .hw_value = 8 }, /* Channel 8 */
39dad0d04fSFariya Fatima 	{ .band = IEEE80211_BAND_2GHZ, .center_freq = 2452,
40dad0d04fSFariya Fatima 	  .hw_value = 9 }, /* Channel 9 */
41dad0d04fSFariya Fatima 	{ .band = IEEE80211_BAND_2GHZ, .center_freq = 2457,
42dad0d04fSFariya Fatima 	  .hw_value = 10 }, /* Channel 10 */
43dad0d04fSFariya Fatima 	{ .band = IEEE80211_BAND_2GHZ, .center_freq = 2462,
44dad0d04fSFariya Fatima 	  .hw_value = 11 }, /* Channel 11 */
45dad0d04fSFariya Fatima 	{ .band = IEEE80211_BAND_2GHZ, .center_freq = 2467,
46dad0d04fSFariya Fatima 	  .hw_value = 12 }, /* Channel 12 */
47dad0d04fSFariya Fatima 	{ .band = IEEE80211_BAND_2GHZ, .center_freq = 2472,
48dad0d04fSFariya Fatima 	  .hw_value = 13 }, /* Channel 13 */
49dad0d04fSFariya Fatima 	{ .band = IEEE80211_BAND_2GHZ, .center_freq = 2484,
50dad0d04fSFariya Fatima 	  .hw_value = 14 }, /* Channel 14 */
51dad0d04fSFariya Fatima };
52dad0d04fSFariya Fatima 
53dad0d04fSFariya Fatima static const struct ieee80211_channel rsi_5ghz_channels[] = {
54dad0d04fSFariya Fatima 	{ .band = IEEE80211_BAND_5GHZ, .center_freq = 5180,
55dad0d04fSFariya Fatima 	  .hw_value = 36,  }, /* Channel 36 */
56dad0d04fSFariya Fatima 	{ .band = IEEE80211_BAND_5GHZ, .center_freq = 5200,
57dad0d04fSFariya Fatima 	  .hw_value = 40, }, /* Channel 40 */
58dad0d04fSFariya Fatima 	{ .band = IEEE80211_BAND_5GHZ, .center_freq = 5220,
59dad0d04fSFariya Fatima 	  .hw_value = 44, }, /* Channel 44 */
60dad0d04fSFariya Fatima 	{ .band = IEEE80211_BAND_5GHZ, .center_freq = 5240,
61dad0d04fSFariya Fatima 	  .hw_value = 48, }, /* Channel 48 */
62dad0d04fSFariya Fatima 	{ .band = IEEE80211_BAND_5GHZ, .center_freq = 5260,
63dad0d04fSFariya Fatima 	  .hw_value = 52, }, /* Channel 52 */
64dad0d04fSFariya Fatima 	{ .band = IEEE80211_BAND_5GHZ, .center_freq = 5280,
65dad0d04fSFariya Fatima 	  .hw_value = 56, }, /* Channel 56 */
66dad0d04fSFariya Fatima 	{ .band = IEEE80211_BAND_5GHZ, .center_freq = 5300,
67dad0d04fSFariya Fatima 	  .hw_value = 60, }, /* Channel 60 */
68dad0d04fSFariya Fatima 	{ .band = IEEE80211_BAND_5GHZ, .center_freq = 5320,
69dad0d04fSFariya Fatima 	  .hw_value = 64, }, /* Channel 64 */
70dad0d04fSFariya Fatima 	{ .band = IEEE80211_BAND_5GHZ, .center_freq = 5500,
71dad0d04fSFariya Fatima 	  .hw_value = 100, }, /* Channel 100 */
72dad0d04fSFariya Fatima 	{ .band = IEEE80211_BAND_5GHZ, .center_freq = 5520,
73dad0d04fSFariya Fatima 	  .hw_value = 104, }, /* Channel 104 */
74dad0d04fSFariya Fatima 	{ .band = IEEE80211_BAND_5GHZ, .center_freq = 5540,
75dad0d04fSFariya Fatima 	  .hw_value = 108, }, /* Channel 108 */
76dad0d04fSFariya Fatima 	{ .band = IEEE80211_BAND_5GHZ, .center_freq = 5560,
77dad0d04fSFariya Fatima 	  .hw_value = 112, }, /* Channel 112 */
78dad0d04fSFariya Fatima 	{ .band = IEEE80211_BAND_5GHZ, .center_freq = 5580,
79dad0d04fSFariya Fatima 	  .hw_value = 116, }, /* Channel 116 */
80dad0d04fSFariya Fatima 	{ .band = IEEE80211_BAND_5GHZ, .center_freq = 5600,
81dad0d04fSFariya Fatima 	  .hw_value = 120, }, /* Channel 120 */
82dad0d04fSFariya Fatima 	{ .band = IEEE80211_BAND_5GHZ, .center_freq = 5620,
83dad0d04fSFariya Fatima 	  .hw_value = 124, }, /* Channel 124 */
84dad0d04fSFariya Fatima 	{ .band = IEEE80211_BAND_5GHZ, .center_freq = 5640,
85dad0d04fSFariya Fatima 	  .hw_value = 128, }, /* Channel 128 */
86dad0d04fSFariya Fatima 	{ .band = IEEE80211_BAND_5GHZ, .center_freq = 5660,
87dad0d04fSFariya Fatima 	  .hw_value = 132, }, /* Channel 132 */
88dad0d04fSFariya Fatima 	{ .band = IEEE80211_BAND_5GHZ, .center_freq = 5680,
89dad0d04fSFariya Fatima 	  .hw_value = 136, }, /* Channel 136 */
90dad0d04fSFariya Fatima 	{ .band = IEEE80211_BAND_5GHZ, .center_freq = 5700,
91dad0d04fSFariya Fatima 	  .hw_value = 140, }, /* Channel 140 */
92dad0d04fSFariya Fatima 	{ .band = IEEE80211_BAND_5GHZ, .center_freq = 5745,
93dad0d04fSFariya Fatima 	  .hw_value = 149, }, /* Channel 149 */
94dad0d04fSFariya Fatima 	{ .band = IEEE80211_BAND_5GHZ, .center_freq = 5765,
95dad0d04fSFariya Fatima 	  .hw_value = 153, }, /* Channel 153 */
96dad0d04fSFariya Fatima 	{ .band = IEEE80211_BAND_5GHZ, .center_freq = 5785,
97dad0d04fSFariya Fatima 	  .hw_value = 157, }, /* Channel 157 */
98dad0d04fSFariya Fatima 	{ .band = IEEE80211_BAND_5GHZ, .center_freq = 5805,
99dad0d04fSFariya Fatima 	  .hw_value = 161, }, /* Channel 161 */
100dad0d04fSFariya Fatima 	{ .band = IEEE80211_BAND_5GHZ, .center_freq = 5825,
101dad0d04fSFariya Fatima 	  .hw_value = 165, }, /* Channel 165 */
102dad0d04fSFariya Fatima };
103dad0d04fSFariya Fatima 
104dad0d04fSFariya Fatima struct ieee80211_rate rsi_rates[12] = {
105dad0d04fSFariya Fatima 	{ .bitrate = STD_RATE_01  * 5, .hw_value = RSI_RATE_1 },
106dad0d04fSFariya Fatima 	{ .bitrate = STD_RATE_02  * 5, .hw_value = RSI_RATE_2 },
107dad0d04fSFariya Fatima 	{ .bitrate = STD_RATE_5_5 * 5, .hw_value = RSI_RATE_5_5 },
108dad0d04fSFariya Fatima 	{ .bitrate = STD_RATE_11  * 5, .hw_value = RSI_RATE_11 },
109dad0d04fSFariya Fatima 	{ .bitrate = STD_RATE_06  * 5, .hw_value = RSI_RATE_6 },
110dad0d04fSFariya Fatima 	{ .bitrate = STD_RATE_09  * 5, .hw_value = RSI_RATE_9 },
111dad0d04fSFariya Fatima 	{ .bitrate = STD_RATE_12  * 5, .hw_value = RSI_RATE_12 },
112dad0d04fSFariya Fatima 	{ .bitrate = STD_RATE_18  * 5, .hw_value = RSI_RATE_18 },
113dad0d04fSFariya Fatima 	{ .bitrate = STD_RATE_24  * 5, .hw_value = RSI_RATE_24 },
114dad0d04fSFariya Fatima 	{ .bitrate = STD_RATE_36  * 5, .hw_value = RSI_RATE_36 },
115dad0d04fSFariya Fatima 	{ .bitrate = STD_RATE_48  * 5, .hw_value = RSI_RATE_48 },
116dad0d04fSFariya Fatima 	{ .bitrate = STD_RATE_54  * 5, .hw_value = RSI_RATE_54 },
117dad0d04fSFariya Fatima };
118dad0d04fSFariya Fatima 
119dad0d04fSFariya Fatima const u16 rsi_mcsrates[8] = {
120dad0d04fSFariya Fatima 	RSI_RATE_MCS0, RSI_RATE_MCS1, RSI_RATE_MCS2, RSI_RATE_MCS3,
121dad0d04fSFariya Fatima 	RSI_RATE_MCS4, RSI_RATE_MCS5, RSI_RATE_MCS6, RSI_RATE_MCS7
122dad0d04fSFariya Fatima };
123dad0d04fSFariya Fatima 
124dad0d04fSFariya Fatima /**
125dad0d04fSFariya Fatima  * rsi_is_cipher_wep() -  This function determines if the cipher is WEP or not.
126dad0d04fSFariya Fatima  * @common: Pointer to the driver private structure.
127dad0d04fSFariya Fatima  *
128dad0d04fSFariya Fatima  * Return: If cipher type is WEP, a value of 1 is returned, else 0.
129dad0d04fSFariya Fatima  */
130dad0d04fSFariya Fatima 
131dad0d04fSFariya Fatima bool rsi_is_cipher_wep(struct rsi_common *common)
132dad0d04fSFariya Fatima {
133dad0d04fSFariya Fatima 	if (((common->secinfo.gtk_cipher == WLAN_CIPHER_SUITE_WEP104) ||
134dad0d04fSFariya Fatima 	     (common->secinfo.gtk_cipher == WLAN_CIPHER_SUITE_WEP40)) &&
135dad0d04fSFariya Fatima 	    (!common->secinfo.ptk_cipher))
136dad0d04fSFariya Fatima 		return true;
137dad0d04fSFariya Fatima 	else
138dad0d04fSFariya Fatima 		return false;
139dad0d04fSFariya Fatima }
140dad0d04fSFariya Fatima 
141dad0d04fSFariya Fatima /**
142dad0d04fSFariya Fatima  * rsi_register_rates_channels() - This function registers channels and rates.
143dad0d04fSFariya Fatima  * @adapter: Pointer to the adapter structure.
144dad0d04fSFariya Fatima  * @band: Operating band to be set.
145dad0d04fSFariya Fatima  *
146dad0d04fSFariya Fatima  * Return: None.
147dad0d04fSFariya Fatima  */
148dad0d04fSFariya Fatima static void rsi_register_rates_channels(struct rsi_hw *adapter, int band)
149dad0d04fSFariya Fatima {
150dad0d04fSFariya Fatima 	struct ieee80211_supported_band *sbands = &adapter->sbands[band];
151dad0d04fSFariya Fatima 	void *channels = NULL;
152dad0d04fSFariya Fatima 
153dad0d04fSFariya Fatima 	if (band == IEEE80211_BAND_2GHZ) {
154dad0d04fSFariya Fatima 		channels = kmalloc(sizeof(rsi_2ghz_channels), GFP_KERNEL);
155dad0d04fSFariya Fatima 		memcpy(channels,
156dad0d04fSFariya Fatima 		       rsi_2ghz_channels,
157dad0d04fSFariya Fatima 		       sizeof(rsi_2ghz_channels));
158dad0d04fSFariya Fatima 		sbands->band = IEEE80211_BAND_2GHZ;
159dad0d04fSFariya Fatima 		sbands->n_channels = ARRAY_SIZE(rsi_2ghz_channels);
160dad0d04fSFariya Fatima 		sbands->bitrates = rsi_rates;
161dad0d04fSFariya Fatima 		sbands->n_bitrates = ARRAY_SIZE(rsi_rates);
162dad0d04fSFariya Fatima 	} else {
163dad0d04fSFariya Fatima 		channels = kmalloc(sizeof(rsi_5ghz_channels), GFP_KERNEL);
164dad0d04fSFariya Fatima 		memcpy(channels,
165dad0d04fSFariya Fatima 		       rsi_5ghz_channels,
166dad0d04fSFariya Fatima 		       sizeof(rsi_5ghz_channels));
167dad0d04fSFariya Fatima 		sbands->band = IEEE80211_BAND_5GHZ;
168dad0d04fSFariya Fatima 		sbands->n_channels = ARRAY_SIZE(rsi_5ghz_channels);
169dad0d04fSFariya Fatima 		sbands->bitrates = &rsi_rates[4];
170dad0d04fSFariya Fatima 		sbands->n_bitrates = ARRAY_SIZE(rsi_rates) - 4;
171dad0d04fSFariya Fatima 	}
172dad0d04fSFariya Fatima 
173dad0d04fSFariya Fatima 	sbands->channels = channels;
174dad0d04fSFariya Fatima 
175dad0d04fSFariya Fatima 	memset(&sbands->ht_cap, 0, sizeof(struct ieee80211_sta_ht_cap));
176dad0d04fSFariya Fatima 	sbands->ht_cap.ht_supported = true;
177dad0d04fSFariya Fatima 	sbands->ht_cap.cap = (IEEE80211_HT_CAP_SUP_WIDTH_20_40 |
178dad0d04fSFariya Fatima 			      IEEE80211_HT_CAP_SGI_20 |
179dad0d04fSFariya Fatima 			      IEEE80211_HT_CAP_SGI_40);
180e8c58e7aSJahnavi Meher 	sbands->ht_cap.ampdu_factor = IEEE80211_HT_MAX_AMPDU_16K;
181dad0d04fSFariya Fatima 	sbands->ht_cap.ampdu_density = IEEE80211_HT_MPDU_DENSITY_NONE;
182dad0d04fSFariya Fatima 	sbands->ht_cap.mcs.rx_mask[0] = 0xff;
183dad0d04fSFariya Fatima 	sbands->ht_cap.mcs.tx_params = IEEE80211_HT_MCS_TX_DEFINED;
184dad0d04fSFariya Fatima 	/* sbands->ht_cap.mcs.rx_highest = 0x82; */
185dad0d04fSFariya Fatima }
186dad0d04fSFariya Fatima 
187dad0d04fSFariya Fatima /**
18819d2e619SJahnavi Meher  * rsi_mac80211_detach() - This function is used to de-initialize the
189dad0d04fSFariya Fatima  *			   Mac80211 stack.
190dad0d04fSFariya Fatima  * @adapter: Pointer to the adapter structure.
191dad0d04fSFariya Fatima  *
192dad0d04fSFariya Fatima  * Return: None.
193dad0d04fSFariya Fatima  */
194dad0d04fSFariya Fatima void rsi_mac80211_detach(struct rsi_hw *adapter)
195dad0d04fSFariya Fatima {
196dad0d04fSFariya Fatima 	struct ieee80211_hw *hw = adapter->hw;
197dad0d04fSFariya Fatima 
198dad0d04fSFariya Fatima 	if (hw) {
199dad0d04fSFariya Fatima 		ieee80211_stop_queues(hw);
200dad0d04fSFariya Fatima 		ieee80211_unregister_hw(hw);
201dad0d04fSFariya Fatima 		ieee80211_free_hw(hw);
202dad0d04fSFariya Fatima 	}
203dad0d04fSFariya Fatima 
204dad0d04fSFariya Fatima 	rsi_remove_dbgfs(adapter);
205dad0d04fSFariya Fatima }
206dad0d04fSFariya Fatima EXPORT_SYMBOL_GPL(rsi_mac80211_detach);
207dad0d04fSFariya Fatima 
208dad0d04fSFariya Fatima /**
209dad0d04fSFariya Fatima  * rsi_indicate_tx_status() - This function indicates the transmit status.
210dad0d04fSFariya Fatima  * @adapter: Pointer to the adapter structure.
211dad0d04fSFariya Fatima  * @skb: Pointer to the socket buffer structure.
212dad0d04fSFariya Fatima  * @status: Status
213dad0d04fSFariya Fatima  *
214dad0d04fSFariya Fatima  * Return: None.
215dad0d04fSFariya Fatima  */
216dad0d04fSFariya Fatima void rsi_indicate_tx_status(struct rsi_hw *adapter,
217dad0d04fSFariya Fatima 			    struct sk_buff *skb,
218dad0d04fSFariya Fatima 			    int status)
219dad0d04fSFariya Fatima {
220dad0d04fSFariya Fatima 	struct ieee80211_tx_info *info = IEEE80211_SKB_CB(skb);
221dad0d04fSFariya Fatima 
222dad0d04fSFariya Fatima 	memset(info->driver_data, 0, IEEE80211_TX_INFO_DRIVER_DATA_SIZE);
223dad0d04fSFariya Fatima 
224dad0d04fSFariya Fatima 	if (!status)
225dad0d04fSFariya Fatima 		info->flags |= IEEE80211_TX_STAT_ACK;
226dad0d04fSFariya Fatima 
227dad0d04fSFariya Fatima 	ieee80211_tx_status_irqsafe(adapter->hw, skb);
228dad0d04fSFariya Fatima }
229dad0d04fSFariya Fatima 
230dad0d04fSFariya Fatima /**
231dad0d04fSFariya Fatima  * rsi_mac80211_tx() - This is the handler that 802.11 module calls for each
232dad0d04fSFariya Fatima  *		       transmitted frame.SKB contains the buffer starting
233dad0d04fSFariya Fatima  *		       from the IEEE 802.11 header.
234dad0d04fSFariya Fatima  * @hw: Pointer to the ieee80211_hw structure.
235dad0d04fSFariya Fatima  * @control: Pointer to the ieee80211_tx_control structure
236dad0d04fSFariya Fatima  * @skb: Pointer to the socket buffer structure.
237dad0d04fSFariya Fatima  *
238dad0d04fSFariya Fatima  * Return: None
239dad0d04fSFariya Fatima  */
240dad0d04fSFariya Fatima static void rsi_mac80211_tx(struct ieee80211_hw *hw,
241dad0d04fSFariya Fatima 			    struct ieee80211_tx_control *control,
242dad0d04fSFariya Fatima 			    struct sk_buff *skb)
243dad0d04fSFariya Fatima {
244dad0d04fSFariya Fatima 	struct rsi_hw *adapter = hw->priv;
245dad0d04fSFariya Fatima 	struct rsi_common *common = adapter->priv;
246dad0d04fSFariya Fatima 
247dad0d04fSFariya Fatima 	rsi_core_xmit(common, skb);
248dad0d04fSFariya Fatima }
249dad0d04fSFariya Fatima 
250dad0d04fSFariya Fatima /**
251dad0d04fSFariya Fatima  * rsi_mac80211_start() - This is first handler that 802.11 module calls, since
252dad0d04fSFariya Fatima  *			  the driver init is complete by then, just
253dad0d04fSFariya Fatima  *			  returns success.
254dad0d04fSFariya Fatima  * @hw: Pointer to the ieee80211_hw structure.
255dad0d04fSFariya Fatima  *
256dad0d04fSFariya Fatima  * Return: 0 as success.
257dad0d04fSFariya Fatima  */
258dad0d04fSFariya Fatima static int rsi_mac80211_start(struct ieee80211_hw *hw)
259dad0d04fSFariya Fatima {
260dad0d04fSFariya Fatima 	struct rsi_hw *adapter = hw->priv;
261dad0d04fSFariya Fatima 	struct rsi_common *common = adapter->priv;
262dad0d04fSFariya Fatima 
263dad0d04fSFariya Fatima 	mutex_lock(&common->mutex);
264dad0d04fSFariya Fatima 	common->iface_down = false;
265dad0d04fSFariya Fatima 	mutex_unlock(&common->mutex);
266dad0d04fSFariya Fatima 
267dad0d04fSFariya Fatima 	return 0;
268dad0d04fSFariya Fatima }
269dad0d04fSFariya Fatima 
270dad0d04fSFariya Fatima /**
271dad0d04fSFariya Fatima  * rsi_mac80211_stop() - This is the last handler that 802.11 module calls.
272dad0d04fSFariya Fatima  * @hw: Pointer to the ieee80211_hw structure.
273dad0d04fSFariya Fatima  *
274dad0d04fSFariya Fatima  * Return: None.
275dad0d04fSFariya Fatima  */
276dad0d04fSFariya Fatima static void rsi_mac80211_stop(struct ieee80211_hw *hw)
277dad0d04fSFariya Fatima {
278dad0d04fSFariya Fatima 	struct rsi_hw *adapter = hw->priv;
279dad0d04fSFariya Fatima 	struct rsi_common *common = adapter->priv;
280dad0d04fSFariya Fatima 
281dad0d04fSFariya Fatima 	mutex_lock(&common->mutex);
282dad0d04fSFariya Fatima 	common->iface_down = true;
283dad0d04fSFariya Fatima 	mutex_unlock(&common->mutex);
284dad0d04fSFariya Fatima }
285dad0d04fSFariya Fatima 
286dad0d04fSFariya Fatima /**
287dad0d04fSFariya Fatima  * rsi_mac80211_add_interface() - This function is called when a netdevice
288dad0d04fSFariya Fatima  *				  attached to the hardware is enabled.
289dad0d04fSFariya Fatima  * @hw: Pointer to the ieee80211_hw structure.
290dad0d04fSFariya Fatima  * @vif: Pointer to the ieee80211_vif structure.
291dad0d04fSFariya Fatima  *
292dad0d04fSFariya Fatima  * Return: ret: 0 on success, negative error code on failure.
293dad0d04fSFariya Fatima  */
294dad0d04fSFariya Fatima static int rsi_mac80211_add_interface(struct ieee80211_hw *hw,
295dad0d04fSFariya Fatima 				      struct ieee80211_vif *vif)
296dad0d04fSFariya Fatima {
297dad0d04fSFariya Fatima 	struct rsi_hw *adapter = hw->priv;
298dad0d04fSFariya Fatima 	struct rsi_common *common = adapter->priv;
299dad0d04fSFariya Fatima 	int ret = -EOPNOTSUPP;
300dad0d04fSFariya Fatima 
301dad0d04fSFariya Fatima 	mutex_lock(&common->mutex);
302dad0d04fSFariya Fatima 	switch (vif->type) {
303dad0d04fSFariya Fatima 	case NL80211_IFTYPE_STATION:
304dad0d04fSFariya Fatima 		if (!adapter->sc_nvifs) {
305dad0d04fSFariya Fatima 			++adapter->sc_nvifs;
306dad0d04fSFariya Fatima 			adapter->vifs[0] = vif;
307dad0d04fSFariya Fatima 			ret = rsi_set_vap_capabilities(common, STA_OPMODE);
308dad0d04fSFariya Fatima 		}
309dad0d04fSFariya Fatima 		break;
310dad0d04fSFariya Fatima 	default:
311dad0d04fSFariya Fatima 		rsi_dbg(ERR_ZONE,
312dad0d04fSFariya Fatima 			"%s: Interface type %d not supported\n", __func__,
313dad0d04fSFariya Fatima 			vif->type);
314dad0d04fSFariya Fatima 	}
315dad0d04fSFariya Fatima 	mutex_unlock(&common->mutex);
316dad0d04fSFariya Fatima 
317dad0d04fSFariya Fatima 	return ret;
318dad0d04fSFariya Fatima }
319dad0d04fSFariya Fatima 
320dad0d04fSFariya Fatima /**
321dad0d04fSFariya Fatima  * rsi_mac80211_remove_interface() - This function notifies driver that an
322dad0d04fSFariya Fatima  *				     interface is going down.
323dad0d04fSFariya Fatima  * @hw: Pointer to the ieee80211_hw structure.
324dad0d04fSFariya Fatima  * @vif: Pointer to the ieee80211_vif structure.
325dad0d04fSFariya Fatima  *
326dad0d04fSFariya Fatima  * Return: None.
327dad0d04fSFariya Fatima  */
328dad0d04fSFariya Fatima static void rsi_mac80211_remove_interface(struct ieee80211_hw *hw,
329dad0d04fSFariya Fatima 					  struct ieee80211_vif *vif)
330dad0d04fSFariya Fatima {
331dad0d04fSFariya Fatima 	struct rsi_hw *adapter = hw->priv;
332dad0d04fSFariya Fatima 	struct rsi_common *common = adapter->priv;
333dad0d04fSFariya Fatima 
334dad0d04fSFariya Fatima 	mutex_lock(&common->mutex);
335dad0d04fSFariya Fatima 	if (vif->type == NL80211_IFTYPE_STATION)
336dad0d04fSFariya Fatima 		adapter->sc_nvifs--;
337dad0d04fSFariya Fatima 
338dad0d04fSFariya Fatima 	if (!memcmp(adapter->vifs[0], vif, sizeof(struct ieee80211_vif)))
339dad0d04fSFariya Fatima 		adapter->vifs[0] = NULL;
340dad0d04fSFariya Fatima 	mutex_unlock(&common->mutex);
341dad0d04fSFariya Fatima }
342dad0d04fSFariya Fatima 
343dad0d04fSFariya Fatima /**
344686a2541SJahnavi Meher  * rsi_channel_change() - This function is a performs the checks
345686a2541SJahnavi Meher  *			  required for changing a channel and sets
346686a2541SJahnavi Meher  *			  the channel accordingly.
347686a2541SJahnavi Meher  * @hw: Pointer to the ieee80211_hw structure.
348686a2541SJahnavi Meher  *
349686a2541SJahnavi Meher  * Return: 0 on success, negative error code on failure.
350686a2541SJahnavi Meher  */
351686a2541SJahnavi Meher static int rsi_channel_change(struct ieee80211_hw *hw)
352686a2541SJahnavi Meher {
353686a2541SJahnavi Meher 	struct rsi_hw *adapter = hw->priv;
354686a2541SJahnavi Meher 	struct rsi_common *common = adapter->priv;
355686a2541SJahnavi Meher 	int status = -EOPNOTSUPP;
356686a2541SJahnavi Meher 	struct ieee80211_channel *curchan = hw->conf.chandef.chan;
357686a2541SJahnavi Meher 	u16 channel = curchan->hw_value;
358686a2541SJahnavi Meher 	struct ieee80211_bss_conf *bss = &adapter->vifs[0]->bss_conf;
359686a2541SJahnavi Meher 
360686a2541SJahnavi Meher 	rsi_dbg(INFO_ZONE,
361686a2541SJahnavi Meher 		"%s: Set channel: %d MHz type: %d channel_no %d\n",
362686a2541SJahnavi Meher 		__func__, curchan->center_freq,
363686a2541SJahnavi Meher 		curchan->flags, channel);
364686a2541SJahnavi Meher 
365686a2541SJahnavi Meher 	if (bss->assoc) {
366686a2541SJahnavi Meher 		if (!common->hw_data_qs_blocked &&
367686a2541SJahnavi Meher 		    (rsi_get_connected_channel(adapter) != channel)) {
368686a2541SJahnavi Meher 			rsi_dbg(INFO_ZONE, "blk data q %d\n", channel);
369686a2541SJahnavi Meher 			if (!rsi_send_block_unblock_frame(common, true))
370686a2541SJahnavi Meher 				common->hw_data_qs_blocked = true;
371686a2541SJahnavi Meher 		}
372686a2541SJahnavi Meher 	}
373686a2541SJahnavi Meher 
374686a2541SJahnavi Meher 	status = rsi_band_check(common);
375686a2541SJahnavi Meher 	if (!status)
376686a2541SJahnavi Meher 		status = rsi_set_channel(adapter->priv, channel);
377686a2541SJahnavi Meher 
378686a2541SJahnavi Meher 	if (bss->assoc) {
379686a2541SJahnavi Meher 		if (common->hw_data_qs_blocked &&
380686a2541SJahnavi Meher 		    (rsi_get_connected_channel(adapter) == channel)) {
381686a2541SJahnavi Meher 			rsi_dbg(INFO_ZONE, "unblk data q %d\n", channel);
382686a2541SJahnavi Meher 			if (!rsi_send_block_unblock_frame(common, false))
383686a2541SJahnavi Meher 				common->hw_data_qs_blocked = false;
384686a2541SJahnavi Meher 		}
385686a2541SJahnavi Meher 	} else {
386686a2541SJahnavi Meher 		if (common->hw_data_qs_blocked) {
387686a2541SJahnavi Meher 			rsi_dbg(INFO_ZONE, "unblk data q %d\n", channel);
388686a2541SJahnavi Meher 			if (!rsi_send_block_unblock_frame(common, false))
389686a2541SJahnavi Meher 				common->hw_data_qs_blocked = false;
390686a2541SJahnavi Meher 		}
391686a2541SJahnavi Meher 	}
392686a2541SJahnavi Meher 
393686a2541SJahnavi Meher 	return status;
394686a2541SJahnavi Meher }
395686a2541SJahnavi Meher 
396686a2541SJahnavi Meher /**
397dad0d04fSFariya Fatima  * rsi_mac80211_config() - This function is a handler for configuration
398dad0d04fSFariya Fatima  *			   requests. The stack calls this function to
399dad0d04fSFariya Fatima  *			   change hardware configuration, e.g., channel.
400dad0d04fSFariya Fatima  * @hw: Pointer to the ieee80211_hw structure.
401dad0d04fSFariya Fatima  * @changed: Changed flags set.
402dad0d04fSFariya Fatima  *
403dad0d04fSFariya Fatima  * Return: 0 on success, negative error code on failure.
404dad0d04fSFariya Fatima  */
405dad0d04fSFariya Fatima static int rsi_mac80211_config(struct ieee80211_hw *hw,
406dad0d04fSFariya Fatima 			       u32 changed)
407dad0d04fSFariya Fatima {
408dad0d04fSFariya Fatima 	struct rsi_hw *adapter = hw->priv;
409dad0d04fSFariya Fatima 	struct rsi_common *common = adapter->priv;
410dad0d04fSFariya Fatima 	int status = -EOPNOTSUPP;
411dad0d04fSFariya Fatima 
412dad0d04fSFariya Fatima 	mutex_lock(&common->mutex);
413dad0d04fSFariya Fatima 
414686a2541SJahnavi Meher 	if (changed & IEEE80211_CONF_CHANGE_CHANNEL)
415686a2541SJahnavi Meher 		status = rsi_channel_change(hw);
416686a2541SJahnavi Meher 
417dad0d04fSFariya Fatima 	mutex_unlock(&common->mutex);
418dad0d04fSFariya Fatima 
419dad0d04fSFariya Fatima 	return status;
420dad0d04fSFariya Fatima }
421dad0d04fSFariya Fatima 
422dad0d04fSFariya Fatima /**
423dad0d04fSFariya Fatima  * rsi_get_connected_channel() - This function is used to get the current
424dad0d04fSFariya Fatima  *				 connected channel number.
425dad0d04fSFariya Fatima  * @adapter: Pointer to the adapter structure.
426dad0d04fSFariya Fatima  *
427dad0d04fSFariya Fatima  * Return: Current connected AP's channel number is returned.
428dad0d04fSFariya Fatima  */
429dad0d04fSFariya Fatima u16 rsi_get_connected_channel(struct rsi_hw *adapter)
430dad0d04fSFariya Fatima {
431dad0d04fSFariya Fatima 	struct ieee80211_vif *vif = adapter->vifs[0];
432dad0d04fSFariya Fatima 	if (vif) {
433dad0d04fSFariya Fatima 		struct ieee80211_bss_conf *bss = &vif->bss_conf;
434dad0d04fSFariya Fatima 		struct ieee80211_channel *channel = bss->chandef.chan;
435dad0d04fSFariya Fatima 		return channel->hw_value;
436dad0d04fSFariya Fatima 	}
437dad0d04fSFariya Fatima 
438dad0d04fSFariya Fatima 	return 0;
439dad0d04fSFariya Fatima }
440dad0d04fSFariya Fatima 
441dad0d04fSFariya Fatima /**
442dad0d04fSFariya Fatima  * rsi_mac80211_bss_info_changed() - This function is a handler for config
443dad0d04fSFariya Fatima  *				     requests related to BSS parameters that
444dad0d04fSFariya Fatima  *				     may vary during BSS's lifespan.
445dad0d04fSFariya Fatima  * @hw: Pointer to the ieee80211_hw structure.
446dad0d04fSFariya Fatima  * @vif: Pointer to the ieee80211_vif structure.
447dad0d04fSFariya Fatima  * @bss_conf: Pointer to the ieee80211_bss_conf structure.
448dad0d04fSFariya Fatima  * @changed: Changed flags set.
449dad0d04fSFariya Fatima  *
450dad0d04fSFariya Fatima  * Return: None.
451dad0d04fSFariya Fatima  */
452dad0d04fSFariya Fatima static void rsi_mac80211_bss_info_changed(struct ieee80211_hw *hw,
453dad0d04fSFariya Fatima 					  struct ieee80211_vif *vif,
454dad0d04fSFariya Fatima 					  struct ieee80211_bss_conf *bss_conf,
455dad0d04fSFariya Fatima 					  u32 changed)
456dad0d04fSFariya Fatima {
457dad0d04fSFariya Fatima 	struct rsi_hw *adapter = hw->priv;
458dad0d04fSFariya Fatima 	struct rsi_common *common = adapter->priv;
459dad0d04fSFariya Fatima 
460dad0d04fSFariya Fatima 	mutex_lock(&common->mutex);
461dad0d04fSFariya Fatima 	if (changed & BSS_CHANGED_ASSOC) {
462dad0d04fSFariya Fatima 		rsi_dbg(INFO_ZONE, "%s: Changed Association status: %d\n",
463dad0d04fSFariya Fatima 			__func__, bss_conf->assoc);
464dad0d04fSFariya Fatima 		rsi_inform_bss_status(common,
465dad0d04fSFariya Fatima 				      bss_conf->assoc,
466dad0d04fSFariya Fatima 				      bss_conf->bssid,
467dad0d04fSFariya Fatima 				      bss_conf->qos,
468dad0d04fSFariya Fatima 				      bss_conf->aid);
469dad0d04fSFariya Fatima 	}
470686a2541SJahnavi Meher 
471686a2541SJahnavi Meher 	if (changed & BSS_CHANGED_CQM) {
472686a2541SJahnavi Meher 		common->cqm_info.last_cqm_event_rssi = 0;
473686a2541SJahnavi Meher 		common->cqm_info.rssi_thold = bss_conf->cqm_rssi_thold;
474686a2541SJahnavi Meher 		common->cqm_info.rssi_hyst = bss_conf->cqm_rssi_hyst;
475686a2541SJahnavi Meher 		rsi_dbg(INFO_ZONE, "RSSI throld & hysteresis are: %d %d\n",
476686a2541SJahnavi Meher 			common->cqm_info.rssi_thold,
477686a2541SJahnavi Meher 			common->cqm_info.rssi_hyst);
478686a2541SJahnavi Meher 	}
479dad0d04fSFariya Fatima 	mutex_unlock(&common->mutex);
480dad0d04fSFariya Fatima }
481dad0d04fSFariya Fatima 
482dad0d04fSFariya Fatima /**
483dad0d04fSFariya Fatima  * rsi_mac80211_conf_filter() - This function configure the device's RX filter.
484dad0d04fSFariya Fatima  * @hw: Pointer to the ieee80211_hw structure.
485dad0d04fSFariya Fatima  * @changed: Changed flags set.
486dad0d04fSFariya Fatima  * @total_flags: Total initial flags set.
487dad0d04fSFariya Fatima  * @multicast: Multicast.
488dad0d04fSFariya Fatima  *
489dad0d04fSFariya Fatima  * Return: None.
490dad0d04fSFariya Fatima  */
491dad0d04fSFariya Fatima static void rsi_mac80211_conf_filter(struct ieee80211_hw *hw,
492dad0d04fSFariya Fatima 				     u32 changed_flags,
493dad0d04fSFariya Fatima 				     u32 *total_flags,
494dad0d04fSFariya Fatima 				     u64 multicast)
495dad0d04fSFariya Fatima {
496dad0d04fSFariya Fatima 	/* Not doing much here as of now */
497dad0d04fSFariya Fatima 	*total_flags &= RSI_SUPP_FILTERS;
498dad0d04fSFariya Fatima }
499dad0d04fSFariya Fatima 
500dad0d04fSFariya Fatima /**
501dad0d04fSFariya Fatima  * rsi_mac80211_conf_tx() - This function configures TX queue parameters
502dad0d04fSFariya Fatima  *			    (EDCF (aifs, cw_min, cw_max), bursting)
503dad0d04fSFariya Fatima  *			    for a hardware TX queue.
504dad0d04fSFariya Fatima  * @hw: Pointer to the ieee80211_hw structure
505dad0d04fSFariya Fatima  * @vif: Pointer to the ieee80211_vif structure.
506dad0d04fSFariya Fatima  * @queue: Queue number.
507dad0d04fSFariya Fatima  * @params: Pointer to ieee80211_tx_queue_params structure.
508dad0d04fSFariya Fatima  *
509dad0d04fSFariya Fatima  * Return: 0 on success, negative error code on failure.
510dad0d04fSFariya Fatima  */
511dad0d04fSFariya Fatima static int rsi_mac80211_conf_tx(struct ieee80211_hw *hw,
512dad0d04fSFariya Fatima 				struct ieee80211_vif *vif, u16 queue,
513dad0d04fSFariya Fatima 				const struct ieee80211_tx_queue_params *params)
514dad0d04fSFariya Fatima {
515dad0d04fSFariya Fatima 	struct rsi_hw *adapter = hw->priv;
516dad0d04fSFariya Fatima 	struct rsi_common *common = adapter->priv;
517dad0d04fSFariya Fatima 	u8 idx = 0;
518dad0d04fSFariya Fatima 
519dad0d04fSFariya Fatima 	if (queue >= IEEE80211_NUM_ACS)
520dad0d04fSFariya Fatima 		return 0;
521dad0d04fSFariya Fatima 
522dad0d04fSFariya Fatima 	rsi_dbg(INFO_ZONE,
523dad0d04fSFariya Fatima 		"%s: Conf queue %d, aifs: %d, cwmin: %d cwmax: %d, txop: %d\n",
524dad0d04fSFariya Fatima 		__func__, queue, params->aifs,
525dad0d04fSFariya Fatima 		params->cw_min, params->cw_max, params->txop);
526dad0d04fSFariya Fatima 
527dad0d04fSFariya Fatima 	mutex_lock(&common->mutex);
528dad0d04fSFariya Fatima 	/* Map into the way the f/w expects */
529dad0d04fSFariya Fatima 	switch (queue) {
530dad0d04fSFariya Fatima 	case IEEE80211_AC_VO:
531dad0d04fSFariya Fatima 		idx = VO_Q;
532dad0d04fSFariya Fatima 		break;
533dad0d04fSFariya Fatima 	case IEEE80211_AC_VI:
534dad0d04fSFariya Fatima 		idx = VI_Q;
535dad0d04fSFariya Fatima 		break;
536dad0d04fSFariya Fatima 	case IEEE80211_AC_BE:
537dad0d04fSFariya Fatima 		idx = BE_Q;
538dad0d04fSFariya Fatima 		break;
539dad0d04fSFariya Fatima 	case IEEE80211_AC_BK:
540dad0d04fSFariya Fatima 		idx = BK_Q;
541dad0d04fSFariya Fatima 		break;
542dad0d04fSFariya Fatima 	default:
543dad0d04fSFariya Fatima 		idx = BE_Q;
544dad0d04fSFariya Fatima 		break;
545dad0d04fSFariya Fatima 	}
546dad0d04fSFariya Fatima 
547dad0d04fSFariya Fatima 	memcpy(&common->edca_params[idx],
548dad0d04fSFariya Fatima 	       params,
549dad0d04fSFariya Fatima 	       sizeof(struct ieee80211_tx_queue_params));
550dad0d04fSFariya Fatima 	mutex_unlock(&common->mutex);
551dad0d04fSFariya Fatima 
552dad0d04fSFariya Fatima 	return 0;
553dad0d04fSFariya Fatima }
554dad0d04fSFariya Fatima 
555dad0d04fSFariya Fatima /**
556dad0d04fSFariya Fatima  * rsi_hal_key_config() - This function loads the keys into the firmware.
557dad0d04fSFariya Fatima  * @hw: Pointer to the ieee80211_hw structure.
558dad0d04fSFariya Fatima  * @vif: Pointer to the ieee80211_vif structure.
559dad0d04fSFariya Fatima  * @key: Pointer to the ieee80211_key_conf structure.
560dad0d04fSFariya Fatima  *
561dad0d04fSFariya Fatima  * Return: status: 0 on success, -1 on failure.
562dad0d04fSFariya Fatima  */
563dad0d04fSFariya Fatima static int rsi_hal_key_config(struct ieee80211_hw *hw,
564dad0d04fSFariya Fatima 			      struct ieee80211_vif *vif,
565dad0d04fSFariya Fatima 			      struct ieee80211_key_conf *key)
566dad0d04fSFariya Fatima {
567dad0d04fSFariya Fatima 	struct rsi_hw *adapter = hw->priv;
568dad0d04fSFariya Fatima 	int status;
569dad0d04fSFariya Fatima 	u8 key_type;
570dad0d04fSFariya Fatima 
571dad0d04fSFariya Fatima 	if (key->flags & IEEE80211_KEY_FLAG_PAIRWISE)
572dad0d04fSFariya Fatima 		key_type = RSI_PAIRWISE_KEY;
573dad0d04fSFariya Fatima 	else
574dad0d04fSFariya Fatima 		key_type = RSI_GROUP_KEY;
575dad0d04fSFariya Fatima 
576dad0d04fSFariya Fatima 	rsi_dbg(ERR_ZONE, "%s: Cipher 0x%x key_type: %d key_len: %d\n",
577dad0d04fSFariya Fatima 		__func__, key->cipher, key_type, key->keylen);
578dad0d04fSFariya Fatima 
579dad0d04fSFariya Fatima 	if ((key->cipher == WLAN_CIPHER_SUITE_WEP104) ||
580dad0d04fSFariya Fatima 	    (key->cipher == WLAN_CIPHER_SUITE_WEP40)) {
581dad0d04fSFariya Fatima 		status = rsi_hal_load_key(adapter->priv,
582dad0d04fSFariya Fatima 					  key->key,
583dad0d04fSFariya Fatima 					  key->keylen,
584dad0d04fSFariya Fatima 					  RSI_PAIRWISE_KEY,
585dad0d04fSFariya Fatima 					  key->keyidx,
586dad0d04fSFariya Fatima 					  key->cipher);
587dad0d04fSFariya Fatima 		if (status)
588dad0d04fSFariya Fatima 			return status;
589dad0d04fSFariya Fatima 	}
590dad0d04fSFariya Fatima 	return rsi_hal_load_key(adapter->priv,
591dad0d04fSFariya Fatima 				key->key,
592dad0d04fSFariya Fatima 				key->keylen,
593dad0d04fSFariya Fatima 				key_type,
594dad0d04fSFariya Fatima 				key->keyidx,
595dad0d04fSFariya Fatima 				key->cipher);
596dad0d04fSFariya Fatima }
597dad0d04fSFariya Fatima 
598dad0d04fSFariya Fatima /**
599dad0d04fSFariya Fatima  * rsi_mac80211_set_key() - This function sets type of key to be loaded.
600dad0d04fSFariya Fatima  * @hw: Pointer to the ieee80211_hw structure.
601dad0d04fSFariya Fatima  * @cmd: enum set_key_cmd.
602dad0d04fSFariya Fatima  * @vif: Pointer to the ieee80211_vif structure.
603dad0d04fSFariya Fatima  * @sta: Pointer to the ieee80211_sta structure.
604dad0d04fSFariya Fatima  * @key: Pointer to the ieee80211_key_conf structure.
605dad0d04fSFariya Fatima  *
606dad0d04fSFariya Fatima  * Return: status: 0 on success, negative error code on failure.
607dad0d04fSFariya Fatima  */
608dad0d04fSFariya Fatima static int rsi_mac80211_set_key(struct ieee80211_hw *hw,
609dad0d04fSFariya Fatima 				enum set_key_cmd cmd,
610dad0d04fSFariya Fatima 				struct ieee80211_vif *vif,
611dad0d04fSFariya Fatima 				struct ieee80211_sta *sta,
612dad0d04fSFariya Fatima 				struct ieee80211_key_conf *key)
613dad0d04fSFariya Fatima {
614dad0d04fSFariya Fatima 	struct rsi_hw *adapter = hw->priv;
615dad0d04fSFariya Fatima 	struct rsi_common *common = adapter->priv;
616dad0d04fSFariya Fatima 	struct security_info *secinfo = &common->secinfo;
617dad0d04fSFariya Fatima 	int status;
618dad0d04fSFariya Fatima 
619dad0d04fSFariya Fatima 	mutex_lock(&common->mutex);
620dad0d04fSFariya Fatima 	switch (cmd) {
621dad0d04fSFariya Fatima 	case SET_KEY:
622dad0d04fSFariya Fatima 		secinfo->security_enable = true;
623dad0d04fSFariya Fatima 		status = rsi_hal_key_config(hw, vif, key);
624dad0d04fSFariya Fatima 		if (status) {
625dad0d04fSFariya Fatima 			mutex_unlock(&common->mutex);
626dad0d04fSFariya Fatima 			return status;
627dad0d04fSFariya Fatima 		}
628dad0d04fSFariya Fatima 
629dad0d04fSFariya Fatima 		if (key->flags & IEEE80211_KEY_FLAG_PAIRWISE)
630dad0d04fSFariya Fatima 			secinfo->ptk_cipher = key->cipher;
631dad0d04fSFariya Fatima 		else
632dad0d04fSFariya Fatima 			secinfo->gtk_cipher = key->cipher;
633dad0d04fSFariya Fatima 
634dad0d04fSFariya Fatima 		key->hw_key_idx = key->keyidx;
635dad0d04fSFariya Fatima 		key->flags |= IEEE80211_KEY_FLAG_GENERATE_IV;
636dad0d04fSFariya Fatima 
637dad0d04fSFariya Fatima 		rsi_dbg(ERR_ZONE, "%s: RSI set_key\n", __func__);
638dad0d04fSFariya Fatima 		break;
639dad0d04fSFariya Fatima 
640dad0d04fSFariya Fatima 	case DISABLE_KEY:
641dad0d04fSFariya Fatima 		secinfo->security_enable = false;
642dad0d04fSFariya Fatima 		rsi_dbg(ERR_ZONE, "%s: RSI del key\n", __func__);
643dad0d04fSFariya Fatima 		memset(key, 0, sizeof(struct ieee80211_key_conf));
644dad0d04fSFariya Fatima 		status = rsi_hal_key_config(hw, vif, key);
645dad0d04fSFariya Fatima 		break;
646dad0d04fSFariya Fatima 
647dad0d04fSFariya Fatima 	default:
648dad0d04fSFariya Fatima 		status = -EOPNOTSUPP;
649dad0d04fSFariya Fatima 		break;
650dad0d04fSFariya Fatima 	}
651dad0d04fSFariya Fatima 
652dad0d04fSFariya Fatima 	mutex_unlock(&common->mutex);
653dad0d04fSFariya Fatima 	return status;
654dad0d04fSFariya Fatima }
655dad0d04fSFariya Fatima 
656dad0d04fSFariya Fatima /**
657dad0d04fSFariya Fatima  * rsi_mac80211_ampdu_action() - This function selects the AMPDU action for
658dad0d04fSFariya Fatima  *				 the corresponding mlme_action flag and
659dad0d04fSFariya Fatima  *				 informs the f/w regarding this.
660dad0d04fSFariya Fatima  * @hw: Pointer to the ieee80211_hw structure.
661dad0d04fSFariya Fatima  * @vif: Pointer to the ieee80211_vif structure.
662dad0d04fSFariya Fatima  * @action: ieee80211_ampdu_mlme_action enum.
663dad0d04fSFariya Fatima  * @sta: Pointer to the ieee80211_sta structure.
664dad0d04fSFariya Fatima  * @tid: Traffic identifier.
665dad0d04fSFariya Fatima  * @ssn: Pointer to ssn value.
666dad0d04fSFariya Fatima  * @buf_size: Buffer size (for kernel version > 2.6.38).
667dad0d04fSFariya Fatima  *
668dad0d04fSFariya Fatima  * Return: status: 0 on success, negative error code on failure.
669dad0d04fSFariya Fatima  */
670dad0d04fSFariya Fatima static int rsi_mac80211_ampdu_action(struct ieee80211_hw *hw,
671dad0d04fSFariya Fatima 				     struct ieee80211_vif *vif,
672dad0d04fSFariya Fatima 				     enum ieee80211_ampdu_mlme_action action,
673dad0d04fSFariya Fatima 				     struct ieee80211_sta *sta,
674dad0d04fSFariya Fatima 				     unsigned short tid,
675dad0d04fSFariya Fatima 				     unsigned short *ssn,
676dad0d04fSFariya Fatima 				     unsigned char buf_size)
677dad0d04fSFariya Fatima {
678dad0d04fSFariya Fatima 	int status = -EOPNOTSUPP;
679dad0d04fSFariya Fatima 	struct rsi_hw *adapter = hw->priv;
680dad0d04fSFariya Fatima 	struct rsi_common *common = adapter->priv;
681dad0d04fSFariya Fatima 	u16 seq_no = 0;
682dad0d04fSFariya Fatima 	u8 ii = 0;
683dad0d04fSFariya Fatima 
684dad0d04fSFariya Fatima 	for (ii = 0; ii < RSI_MAX_VIFS; ii++) {
685dad0d04fSFariya Fatima 		if (vif == adapter->vifs[ii])
686dad0d04fSFariya Fatima 			break;
687dad0d04fSFariya Fatima 	}
688dad0d04fSFariya Fatima 
689dad0d04fSFariya Fatima 	mutex_lock(&common->mutex);
690dad0d04fSFariya Fatima 	rsi_dbg(INFO_ZONE, "%s: AMPDU action %d called\n", __func__, action);
691dad0d04fSFariya Fatima 	if (ssn != NULL)
692dad0d04fSFariya Fatima 		seq_no = *ssn;
693dad0d04fSFariya Fatima 
694dad0d04fSFariya Fatima 	switch (action) {
695dad0d04fSFariya Fatima 	case IEEE80211_AMPDU_RX_START:
696dad0d04fSFariya Fatima 		status = rsi_send_aggregation_params_frame(common,
697dad0d04fSFariya Fatima 							   tid,
698dad0d04fSFariya Fatima 							   seq_no,
699dad0d04fSFariya Fatima 							   buf_size,
700dad0d04fSFariya Fatima 							   STA_RX_ADDBA_DONE);
701dad0d04fSFariya Fatima 		break;
702dad0d04fSFariya Fatima 
703dad0d04fSFariya Fatima 	case IEEE80211_AMPDU_RX_STOP:
704dad0d04fSFariya Fatima 		status = rsi_send_aggregation_params_frame(common,
705dad0d04fSFariya Fatima 							   tid,
706dad0d04fSFariya Fatima 							   0,
707dad0d04fSFariya Fatima 							   buf_size,
708dad0d04fSFariya Fatima 							   STA_RX_DELBA);
709dad0d04fSFariya Fatima 		break;
710dad0d04fSFariya Fatima 
711dad0d04fSFariya Fatima 	case IEEE80211_AMPDU_TX_START:
712dad0d04fSFariya Fatima 		common->vif_info[ii].seq_start = seq_no;
713dad0d04fSFariya Fatima 		ieee80211_start_tx_ba_cb_irqsafe(vif, sta->addr, tid);
7145f407acbSJahnavi Meher 		status = 0;
715dad0d04fSFariya Fatima 		break;
716dad0d04fSFariya Fatima 
717dad0d04fSFariya Fatima 	case IEEE80211_AMPDU_TX_STOP_CONT:
718dad0d04fSFariya Fatima 	case IEEE80211_AMPDU_TX_STOP_FLUSH:
719dad0d04fSFariya Fatima 	case IEEE80211_AMPDU_TX_STOP_FLUSH_CONT:
720dad0d04fSFariya Fatima 		status = rsi_send_aggregation_params_frame(common,
721dad0d04fSFariya Fatima 							   tid,
722dad0d04fSFariya Fatima 							   seq_no,
723dad0d04fSFariya Fatima 							   buf_size,
724dad0d04fSFariya Fatima 							   STA_TX_DELBA);
725dad0d04fSFariya Fatima 		if (!status)
726dad0d04fSFariya Fatima 			ieee80211_stop_tx_ba_cb_irqsafe(vif, sta->addr, tid);
727dad0d04fSFariya Fatima 		break;
728dad0d04fSFariya Fatima 
729dad0d04fSFariya Fatima 	case IEEE80211_AMPDU_TX_OPERATIONAL:
730dad0d04fSFariya Fatima 		status = rsi_send_aggregation_params_frame(common,
731dad0d04fSFariya Fatima 							   tid,
732dad0d04fSFariya Fatima 							   common->vif_info[ii]
733dad0d04fSFariya Fatima 								.seq_start,
734dad0d04fSFariya Fatima 							   buf_size,
735dad0d04fSFariya Fatima 							   STA_TX_ADDBA_DONE);
736dad0d04fSFariya Fatima 		break;
737dad0d04fSFariya Fatima 
738dad0d04fSFariya Fatima 	default:
739dad0d04fSFariya Fatima 		rsi_dbg(ERR_ZONE, "%s: Uknown AMPDU action\n", __func__);
740dad0d04fSFariya Fatima 		break;
741dad0d04fSFariya Fatima 	}
742dad0d04fSFariya Fatima 
743dad0d04fSFariya Fatima 	mutex_unlock(&common->mutex);
744dad0d04fSFariya Fatima 	return status;
745dad0d04fSFariya Fatima }
746dad0d04fSFariya Fatima 
747dad0d04fSFariya Fatima /**
748dad0d04fSFariya Fatima  * rsi_mac80211_set_rts_threshold() - This function sets rts threshold value.
749dad0d04fSFariya Fatima  * @hw: Pointer to the ieee80211_hw structure.
750dad0d04fSFariya Fatima  * @value: Rts threshold value.
751dad0d04fSFariya Fatima  *
752dad0d04fSFariya Fatima  * Return: 0 on success.
753dad0d04fSFariya Fatima  */
754dad0d04fSFariya Fatima static int rsi_mac80211_set_rts_threshold(struct ieee80211_hw *hw,
755dad0d04fSFariya Fatima 					  u32 value)
756dad0d04fSFariya Fatima {
757dad0d04fSFariya Fatima 	struct rsi_hw *adapter = hw->priv;
758dad0d04fSFariya Fatima 	struct rsi_common *common = adapter->priv;
759dad0d04fSFariya Fatima 
760dad0d04fSFariya Fatima 	mutex_lock(&common->mutex);
761dad0d04fSFariya Fatima 	common->rts_threshold = value;
762dad0d04fSFariya Fatima 	mutex_unlock(&common->mutex);
763dad0d04fSFariya Fatima 
764dad0d04fSFariya Fatima 	return 0;
765dad0d04fSFariya Fatima }
766dad0d04fSFariya Fatima 
767dad0d04fSFariya Fatima /**
768dad0d04fSFariya Fatima  * rsi_mac80211_set_rate_mask() - This function sets bitrate_mask to be used.
769dad0d04fSFariya Fatima  * @hw: Pointer to the ieee80211_hw structure
770dad0d04fSFariya Fatima  * @vif: Pointer to the ieee80211_vif structure.
771dad0d04fSFariya Fatima  * @mask: Pointer to the cfg80211_bitrate_mask structure.
772dad0d04fSFariya Fatima  *
773dad0d04fSFariya Fatima  * Return: 0 on success.
774dad0d04fSFariya Fatima  */
775dad0d04fSFariya Fatima static int rsi_mac80211_set_rate_mask(struct ieee80211_hw *hw,
776dad0d04fSFariya Fatima 				      struct ieee80211_vif *vif,
777dad0d04fSFariya Fatima 				      const struct cfg80211_bitrate_mask *mask)
778dad0d04fSFariya Fatima {
779dad0d04fSFariya Fatima 	struct rsi_hw *adapter = hw->priv;
780dad0d04fSFariya Fatima 	struct rsi_common *common = adapter->priv;
78185af5bf8SJahnavi Meher 	enum ieee80211_band band = hw->conf.chandef.chan->band;
782dad0d04fSFariya Fatima 
783dad0d04fSFariya Fatima 	mutex_lock(&common->mutex);
78485af5bf8SJahnavi Meher 	common->fixedrate_mask[band] = 0;
785dad0d04fSFariya Fatima 
78685af5bf8SJahnavi Meher 	if (mask->control[band].legacy == 0xfff) {
78785af5bf8SJahnavi Meher 		common->fixedrate_mask[band] =
78885af5bf8SJahnavi Meher 			(mask->control[band].ht_mcs[0] << 12);
789dad0d04fSFariya Fatima 	} else {
79085af5bf8SJahnavi Meher 		common->fixedrate_mask[band] =
79185af5bf8SJahnavi Meher 			mask->control[band].legacy;
792dad0d04fSFariya Fatima 	}
793dad0d04fSFariya Fatima 	mutex_unlock(&common->mutex);
794dad0d04fSFariya Fatima 
795dad0d04fSFariya Fatima 	return 0;
796dad0d04fSFariya Fatima }
797dad0d04fSFariya Fatima 
798dad0d04fSFariya Fatima /**
799686a2541SJahnavi Meher  * rsi_perform_cqm() - This function performs cqm.
800686a2541SJahnavi Meher  * @common: Pointer to the driver private structure.
801686a2541SJahnavi Meher  * @bssid: pointer to the bssid.
802686a2541SJahnavi Meher  * @rssi: RSSI value.
803686a2541SJahnavi Meher  */
804686a2541SJahnavi Meher static void rsi_perform_cqm(struct rsi_common *common,
805686a2541SJahnavi Meher 			    u8 *bssid,
806686a2541SJahnavi Meher 			    s8 rssi)
807686a2541SJahnavi Meher {
808686a2541SJahnavi Meher 	struct rsi_hw *adapter = common->priv;
809686a2541SJahnavi Meher 	s8 last_event = common->cqm_info.last_cqm_event_rssi;
810686a2541SJahnavi Meher 	int thold = common->cqm_info.rssi_thold;
811686a2541SJahnavi Meher 	u32 hyst = common->cqm_info.rssi_hyst;
812686a2541SJahnavi Meher 	enum nl80211_cqm_rssi_threshold_event event;
813686a2541SJahnavi Meher 
814686a2541SJahnavi Meher 	if (rssi < thold && (last_event == 0 || rssi < (last_event - hyst)))
815686a2541SJahnavi Meher 		event = NL80211_CQM_RSSI_THRESHOLD_EVENT_LOW;
816686a2541SJahnavi Meher 	else if (rssi > thold &&
817686a2541SJahnavi Meher 		 (last_event == 0 || rssi > (last_event + hyst)))
818686a2541SJahnavi Meher 		event = NL80211_CQM_RSSI_THRESHOLD_EVENT_HIGH;
819686a2541SJahnavi Meher 	else
820686a2541SJahnavi Meher 		return;
821686a2541SJahnavi Meher 
822686a2541SJahnavi Meher 	common->cqm_info.last_cqm_event_rssi = rssi;
823686a2541SJahnavi Meher 	rsi_dbg(INFO_ZONE, "CQM: Notifying event: %d\n", event);
824686a2541SJahnavi Meher 	ieee80211_cqm_rssi_notify(adapter->vifs[0], event, GFP_KERNEL);
825686a2541SJahnavi Meher 
826686a2541SJahnavi Meher 	return;
827686a2541SJahnavi Meher }
828686a2541SJahnavi Meher 
829686a2541SJahnavi Meher /**
830dad0d04fSFariya Fatima  * rsi_fill_rx_status() - This function fills rx status in
831dad0d04fSFariya Fatima  *			  ieee80211_rx_status structure.
832dad0d04fSFariya Fatima  * @hw: Pointer to the ieee80211_hw structure.
833dad0d04fSFariya Fatima  * @skb: Pointer to the socket buffer structure.
834dad0d04fSFariya Fatima  * @common: Pointer to the driver private structure.
835dad0d04fSFariya Fatima  * @rxs: Pointer to the ieee80211_rx_status structure.
836dad0d04fSFariya Fatima  *
837dad0d04fSFariya Fatima  * Return: None.
838dad0d04fSFariya Fatima  */
839dad0d04fSFariya Fatima static void rsi_fill_rx_status(struct ieee80211_hw *hw,
840dad0d04fSFariya Fatima 			       struct sk_buff *skb,
841dad0d04fSFariya Fatima 			       struct rsi_common *common,
842dad0d04fSFariya Fatima 			       struct ieee80211_rx_status *rxs)
843dad0d04fSFariya Fatima {
844686a2541SJahnavi Meher 	struct ieee80211_bss_conf *bss = &common->priv->vifs[0]->bss_conf;
845dad0d04fSFariya Fatima 	struct ieee80211_tx_info *info = IEEE80211_SKB_CB(skb);
846dad0d04fSFariya Fatima 	struct skb_info *rx_params = (struct skb_info *)info->driver_data;
847dad0d04fSFariya Fatima 	struct ieee80211_hdr *hdr;
848dad0d04fSFariya Fatima 	char rssi = rx_params->rssi;
849dad0d04fSFariya Fatima 	u8 hdrlen = 0;
850dad0d04fSFariya Fatima 	u8 channel = rx_params->channel;
851dad0d04fSFariya Fatima 	s32 freq;
852dad0d04fSFariya Fatima 
853dad0d04fSFariya Fatima 	hdr = ((struct ieee80211_hdr *)(skb->data));
854dad0d04fSFariya Fatima 	hdrlen = ieee80211_hdrlen(hdr->frame_control);
855dad0d04fSFariya Fatima 
856dad0d04fSFariya Fatima 	memset(info, 0, sizeof(struct ieee80211_tx_info));
857dad0d04fSFariya Fatima 
858dad0d04fSFariya Fatima 	rxs->signal = -(rssi);
859dad0d04fSFariya Fatima 
860aabd3ad4SJahnavi Meher 	rxs->band = common->band;
861dad0d04fSFariya Fatima 
862dad0d04fSFariya Fatima 	freq = ieee80211_channel_to_frequency(channel, rxs->band);
863dad0d04fSFariya Fatima 
864dad0d04fSFariya Fatima 	if (freq)
865dad0d04fSFariya Fatima 		rxs->freq = freq;
866dad0d04fSFariya Fatima 
867dad0d04fSFariya Fatima 	if (ieee80211_has_protected(hdr->frame_control)) {
868dad0d04fSFariya Fatima 		if (rsi_is_cipher_wep(common)) {
869dad0d04fSFariya Fatima 			memmove(skb->data + 4, skb->data, hdrlen);
870dad0d04fSFariya Fatima 			skb_pull(skb, 4);
871dad0d04fSFariya Fatima 		} else {
872dad0d04fSFariya Fatima 			memmove(skb->data + 8, skb->data, hdrlen);
873dad0d04fSFariya Fatima 			skb_pull(skb, 8);
874dad0d04fSFariya Fatima 			rxs->flag |= RX_FLAG_MMIC_STRIPPED;
875dad0d04fSFariya Fatima 		}
876dad0d04fSFariya Fatima 		rxs->flag |= RX_FLAG_DECRYPTED;
877dad0d04fSFariya Fatima 		rxs->flag |= RX_FLAG_IV_STRIPPED;
878dad0d04fSFariya Fatima 	}
879686a2541SJahnavi Meher 
880686a2541SJahnavi Meher 	/* CQM only for connected AP beacons, the RSSI is a weighted avg */
881686a2541SJahnavi Meher 	if (bss->assoc && !(memcmp(bss->bssid, hdr->addr2, ETH_ALEN))) {
882686a2541SJahnavi Meher 		if (ieee80211_is_beacon(hdr->frame_control))
883686a2541SJahnavi Meher 			rsi_perform_cqm(common, hdr->addr2, rxs->signal);
884686a2541SJahnavi Meher 	}
885686a2541SJahnavi Meher 
886686a2541SJahnavi Meher 	return;
887dad0d04fSFariya Fatima }
888dad0d04fSFariya Fatima 
889dad0d04fSFariya Fatima /**
890dad0d04fSFariya Fatima  * rsi_indicate_pkt_to_os() - This function sends recieved packet to mac80211.
891dad0d04fSFariya Fatima  * @common: Pointer to the driver private structure.
892dad0d04fSFariya Fatima  * @skb: Pointer to the socket buffer structure.
893dad0d04fSFariya Fatima  *
894dad0d04fSFariya Fatima  * Return: None.
895dad0d04fSFariya Fatima  */
896dad0d04fSFariya Fatima void rsi_indicate_pkt_to_os(struct rsi_common *common,
897dad0d04fSFariya Fatima 			    struct sk_buff *skb)
898dad0d04fSFariya Fatima {
899dad0d04fSFariya Fatima 	struct rsi_hw *adapter = common->priv;
900dad0d04fSFariya Fatima 	struct ieee80211_hw *hw = adapter->hw;
901dad0d04fSFariya Fatima 	struct ieee80211_rx_status *rx_status = IEEE80211_SKB_RXCB(skb);
902dad0d04fSFariya Fatima 
903dad0d04fSFariya Fatima 	if ((common->iface_down) || (!adapter->sc_nvifs)) {
904dad0d04fSFariya Fatima 		dev_kfree_skb(skb);
905dad0d04fSFariya Fatima 		return;
906dad0d04fSFariya Fatima 	}
907dad0d04fSFariya Fatima 
908dad0d04fSFariya Fatima 	/* filling in the ieee80211_rx_status flags */
909dad0d04fSFariya Fatima 	rsi_fill_rx_status(hw, skb, common, rx_status);
910dad0d04fSFariya Fatima 
911dad0d04fSFariya Fatima 	ieee80211_rx_irqsafe(hw, skb);
912dad0d04fSFariya Fatima }
913dad0d04fSFariya Fatima 
914dad0d04fSFariya Fatima static void rsi_set_min_rate(struct ieee80211_hw *hw,
915dad0d04fSFariya Fatima 			     struct ieee80211_sta *sta,
916dad0d04fSFariya Fatima 			     struct rsi_common *common)
917dad0d04fSFariya Fatima {
918dad0d04fSFariya Fatima 	u8 band = hw->conf.chandef.chan->band;
919dad0d04fSFariya Fatima 	u8 ii;
920dad0d04fSFariya Fatima 	u32 rate_bitmap;
921dad0d04fSFariya Fatima 	bool matched = false;
922dad0d04fSFariya Fatima 
923dad0d04fSFariya Fatima 	common->bitrate_mask[band] = sta->supp_rates[band];
924dad0d04fSFariya Fatima 
925dad0d04fSFariya Fatima 	rate_bitmap = (common->fixedrate_mask[band] & sta->supp_rates[band]);
926dad0d04fSFariya Fatima 
927dad0d04fSFariya Fatima 	if (rate_bitmap & 0xfff) {
928dad0d04fSFariya Fatima 		/* Find out the min rate */
929dad0d04fSFariya Fatima 		for (ii = 0; ii < ARRAY_SIZE(rsi_rates); ii++) {
930dad0d04fSFariya Fatima 			if (rate_bitmap & BIT(ii)) {
931dad0d04fSFariya Fatima 				common->min_rate = rsi_rates[ii].hw_value;
932dad0d04fSFariya Fatima 				matched = true;
933dad0d04fSFariya Fatima 				break;
934dad0d04fSFariya Fatima 			}
935dad0d04fSFariya Fatima 		}
936dad0d04fSFariya Fatima 	}
937dad0d04fSFariya Fatima 
938dad0d04fSFariya Fatima 	common->vif_info[0].is_ht = sta->ht_cap.ht_supported;
939dad0d04fSFariya Fatima 
940dad0d04fSFariya Fatima 	if ((common->vif_info[0].is_ht) && (rate_bitmap >> 12)) {
941dad0d04fSFariya Fatima 		for (ii = 0; ii < ARRAY_SIZE(rsi_mcsrates); ii++) {
942dad0d04fSFariya Fatima 			if ((rate_bitmap >> 12) & BIT(ii)) {
943dad0d04fSFariya Fatima 				common->min_rate = rsi_mcsrates[ii];
944dad0d04fSFariya Fatima 				matched = true;
945dad0d04fSFariya Fatima 				break;
946dad0d04fSFariya Fatima 			}
947dad0d04fSFariya Fatima 		}
948dad0d04fSFariya Fatima 	}
949dad0d04fSFariya Fatima 
950dad0d04fSFariya Fatima 	if (!matched)
951dad0d04fSFariya Fatima 		common->min_rate = 0xffff;
952dad0d04fSFariya Fatima }
953dad0d04fSFariya Fatima 
954dad0d04fSFariya Fatima /**
955dad0d04fSFariya Fatima  * rsi_mac80211_sta_add() - This function notifies driver about a peer getting
956dad0d04fSFariya Fatima  *			    connected.
957dad0d04fSFariya Fatima  * @hw: pointer to the ieee80211_hw structure.
958dad0d04fSFariya Fatima  * @vif: Pointer to the ieee80211_vif structure.
959dad0d04fSFariya Fatima  * @sta: Pointer to the ieee80211_sta structure.
960dad0d04fSFariya Fatima  *
961dad0d04fSFariya Fatima  * Return: 0 on success, -1 on failure.
962dad0d04fSFariya Fatima  */
963dad0d04fSFariya Fatima static int rsi_mac80211_sta_add(struct ieee80211_hw *hw,
964dad0d04fSFariya Fatima 				struct ieee80211_vif *vif,
965dad0d04fSFariya Fatima 				struct ieee80211_sta *sta)
966dad0d04fSFariya Fatima {
967dad0d04fSFariya Fatima 	struct rsi_hw *adapter = hw->priv;
968dad0d04fSFariya Fatima 	struct rsi_common *common = adapter->priv;
969dad0d04fSFariya Fatima 
970dad0d04fSFariya Fatima 	mutex_lock(&common->mutex);
971dad0d04fSFariya Fatima 
972dad0d04fSFariya Fatima 	rsi_set_min_rate(hw, sta, common);
973dad0d04fSFariya Fatima 
974dad0d04fSFariya Fatima 	if ((sta->ht_cap.cap & IEEE80211_HT_CAP_SGI_20) ||
975dad0d04fSFariya Fatima 	    (sta->ht_cap.cap & IEEE80211_HT_CAP_SGI_40)) {
976dad0d04fSFariya Fatima 		common->vif_info[0].sgi = true;
977dad0d04fSFariya Fatima 	}
978dad0d04fSFariya Fatima 
979dad0d04fSFariya Fatima 	if (sta->ht_cap.ht_supported)
980dad0d04fSFariya Fatima 		ieee80211_start_tx_ba_session(sta, 0, 0);
981dad0d04fSFariya Fatima 
982dad0d04fSFariya Fatima 	mutex_unlock(&common->mutex);
983dad0d04fSFariya Fatima 
984dad0d04fSFariya Fatima 	return 0;
985dad0d04fSFariya Fatima }
986dad0d04fSFariya Fatima 
987dad0d04fSFariya Fatima /**
988dad0d04fSFariya Fatima  * rsi_mac80211_sta_remove() - This function notifies driver about a peer
989dad0d04fSFariya Fatima  *			       getting disconnected.
990dad0d04fSFariya Fatima  * @hw: Pointer to the ieee80211_hw structure.
991dad0d04fSFariya Fatima  * @vif: Pointer to the ieee80211_vif structure.
992dad0d04fSFariya Fatima  * @sta: Pointer to the ieee80211_sta structure.
993dad0d04fSFariya Fatima  *
994dad0d04fSFariya Fatima  * Return: 0 on success, -1 on failure.
995dad0d04fSFariya Fatima  */
996dad0d04fSFariya Fatima static int rsi_mac80211_sta_remove(struct ieee80211_hw *hw,
997dad0d04fSFariya Fatima 				   struct ieee80211_vif *vif,
998dad0d04fSFariya Fatima 				   struct ieee80211_sta *sta)
999dad0d04fSFariya Fatima {
1000dad0d04fSFariya Fatima 	struct rsi_hw *adapter = hw->priv;
1001dad0d04fSFariya Fatima 	struct rsi_common *common = adapter->priv;
1002dad0d04fSFariya Fatima 
1003dad0d04fSFariya Fatima 	mutex_lock(&common->mutex);
1004dad0d04fSFariya Fatima 	/* Resetting all the fields to default values */
1005dad0d04fSFariya Fatima 	common->bitrate_mask[IEEE80211_BAND_2GHZ] = 0;
1006dad0d04fSFariya Fatima 	common->bitrate_mask[IEEE80211_BAND_5GHZ] = 0;
1007dad0d04fSFariya Fatima 	common->min_rate = 0xffff;
1008dad0d04fSFariya Fatima 	common->vif_info[0].is_ht = false;
1009dad0d04fSFariya Fatima 	common->vif_info[0].sgi = false;
1010dad0d04fSFariya Fatima 	common->vif_info[0].seq_start = 0;
1011dad0d04fSFariya Fatima 	common->secinfo.ptk_cipher = 0;
1012dad0d04fSFariya Fatima 	common->secinfo.gtk_cipher = 0;
1013dad0d04fSFariya Fatima 	mutex_unlock(&common->mutex);
1014dad0d04fSFariya Fatima 
1015dad0d04fSFariya Fatima 	return 0;
1016dad0d04fSFariya Fatima }
1017dad0d04fSFariya Fatima 
1018dad0d04fSFariya Fatima static struct ieee80211_ops mac80211_ops = {
1019dad0d04fSFariya Fatima 	.tx = rsi_mac80211_tx,
1020dad0d04fSFariya Fatima 	.start = rsi_mac80211_start,
1021dad0d04fSFariya Fatima 	.stop = rsi_mac80211_stop,
1022dad0d04fSFariya Fatima 	.add_interface = rsi_mac80211_add_interface,
1023dad0d04fSFariya Fatima 	.remove_interface = rsi_mac80211_remove_interface,
1024dad0d04fSFariya Fatima 	.config = rsi_mac80211_config,
1025dad0d04fSFariya Fatima 	.bss_info_changed = rsi_mac80211_bss_info_changed,
1026dad0d04fSFariya Fatima 	.conf_tx = rsi_mac80211_conf_tx,
1027dad0d04fSFariya Fatima 	.configure_filter = rsi_mac80211_conf_filter,
1028dad0d04fSFariya Fatima 	.set_key = rsi_mac80211_set_key,
1029dad0d04fSFariya Fatima 	.set_rts_threshold = rsi_mac80211_set_rts_threshold,
1030dad0d04fSFariya Fatima 	.set_bitrate_mask = rsi_mac80211_set_rate_mask,
1031dad0d04fSFariya Fatima 	.ampdu_action = rsi_mac80211_ampdu_action,
1032dad0d04fSFariya Fatima 	.sta_add = rsi_mac80211_sta_add,
1033dad0d04fSFariya Fatima 	.sta_remove = rsi_mac80211_sta_remove,
1034dad0d04fSFariya Fatima };
1035dad0d04fSFariya Fatima 
1036dad0d04fSFariya Fatima /**
1037dad0d04fSFariya Fatima  * rsi_mac80211_attach() - This function is used to initialize Mac80211 stack.
1038dad0d04fSFariya Fatima  * @common: Pointer to the driver private structure.
1039dad0d04fSFariya Fatima  *
1040dad0d04fSFariya Fatima  * Return: 0 on success, -1 on failure.
1041dad0d04fSFariya Fatima  */
1042dad0d04fSFariya Fatima int rsi_mac80211_attach(struct rsi_common *common)
1043dad0d04fSFariya Fatima {
1044dad0d04fSFariya Fatima 	int status = 0;
1045dad0d04fSFariya Fatima 	struct ieee80211_hw *hw = NULL;
1046dad0d04fSFariya Fatima 	struct wiphy *wiphy = NULL;
1047dad0d04fSFariya Fatima 	struct rsi_hw *adapter = common->priv;
1048dad0d04fSFariya Fatima 	u8 addr_mask[ETH_ALEN] = {0x0, 0x0, 0x0, 0x0, 0x0, 0x3};
1049dad0d04fSFariya Fatima 
1050dad0d04fSFariya Fatima 	rsi_dbg(INIT_ZONE, "%s: Performing mac80211 attach\n", __func__);
1051dad0d04fSFariya Fatima 
1052dad0d04fSFariya Fatima 	hw = ieee80211_alloc_hw(sizeof(struct rsi_hw), &mac80211_ops);
1053dad0d04fSFariya Fatima 	if (!hw) {
1054dad0d04fSFariya Fatima 		rsi_dbg(ERR_ZONE, "%s: ieee80211 hw alloc failed\n", __func__);
1055dad0d04fSFariya Fatima 		return -ENOMEM;
1056dad0d04fSFariya Fatima 	}
1057dad0d04fSFariya Fatima 
1058dad0d04fSFariya Fatima 	wiphy = hw->wiphy;
1059dad0d04fSFariya Fatima 
1060dad0d04fSFariya Fatima 	SET_IEEE80211_DEV(hw, adapter->device);
1061dad0d04fSFariya Fatima 
1062dad0d04fSFariya Fatima 	hw->priv = adapter;
1063dad0d04fSFariya Fatima 	adapter->hw = hw;
1064dad0d04fSFariya Fatima 
106530686bf7SJohannes Berg 	ieee80211_hw_set(hw, SIGNAL_DBM);
106630686bf7SJohannes Berg 	ieee80211_hw_set(hw, HAS_RATE_CONTROL);
106730686bf7SJohannes Berg 	ieee80211_hw_set(hw, AMPDU_AGGREGATION);
1068dad0d04fSFariya Fatima 
1069dad0d04fSFariya Fatima 	hw->queues = MAX_HW_QUEUES;
1070dad0d04fSFariya Fatima 	hw->extra_tx_headroom = RSI_NEEDED_HEADROOM;
1071dad0d04fSFariya Fatima 
1072dad0d04fSFariya Fatima 	hw->max_rates = 1;
1073dad0d04fSFariya Fatima 	hw->max_rate_tries = MAX_RETRIES;
1074dad0d04fSFariya Fatima 
1075dad0d04fSFariya Fatima 	hw->max_tx_aggregation_subframes = 6;
1076dad0d04fSFariya Fatima 	rsi_register_rates_channels(adapter, IEEE80211_BAND_2GHZ);
107785af5bf8SJahnavi Meher 	rsi_register_rates_channels(adapter, IEEE80211_BAND_5GHZ);
1078dad0d04fSFariya Fatima 	hw->rate_control_algorithm = "AARF";
1079dad0d04fSFariya Fatima 
1080dad0d04fSFariya Fatima 	SET_IEEE80211_PERM_ADDR(hw, common->mac_addr);
1081dad0d04fSFariya Fatima 	ether_addr_copy(hw->wiphy->addr_mask, addr_mask);
1082dad0d04fSFariya Fatima 
1083dad0d04fSFariya Fatima 	wiphy->interface_modes = BIT(NL80211_IFTYPE_STATION);
1084dad0d04fSFariya Fatima 	wiphy->signal_type = CFG80211_SIGNAL_TYPE_MBM;
1085dad0d04fSFariya Fatima 	wiphy->retry_short = RETRY_SHORT;
1086dad0d04fSFariya Fatima 	wiphy->retry_long  = RETRY_LONG;
1087dad0d04fSFariya Fatima 	wiphy->frag_threshold = IEEE80211_MAX_FRAG_THRESHOLD;
1088dad0d04fSFariya Fatima 	wiphy->rts_threshold = IEEE80211_MAX_RTS_THRESHOLD;
1089dad0d04fSFariya Fatima 	wiphy->flags = 0;
1090dad0d04fSFariya Fatima 
1091dad0d04fSFariya Fatima 	wiphy->available_antennas_rx = 1;
1092dad0d04fSFariya Fatima 	wiphy->available_antennas_tx = 1;
1093dad0d04fSFariya Fatima 	wiphy->bands[IEEE80211_BAND_2GHZ] =
1094dad0d04fSFariya Fatima 		&adapter->sbands[IEEE80211_BAND_2GHZ];
109585af5bf8SJahnavi Meher 	wiphy->bands[IEEE80211_BAND_5GHZ] =
109685af5bf8SJahnavi Meher 		&adapter->sbands[IEEE80211_BAND_5GHZ];
1097dad0d04fSFariya Fatima 
1098dad0d04fSFariya Fatima 	status = ieee80211_register_hw(hw);
1099dad0d04fSFariya Fatima 	if (status)
1100dad0d04fSFariya Fatima 		return status;
1101dad0d04fSFariya Fatima 
1102dad0d04fSFariya Fatima 	return rsi_init_dbgfs(adapter);
1103dad0d04fSFariya Fatima }
1104