1// SPDX-License-Identifier: ISC
2/*
3 * Copyright (C) 2018 Stanislaw Gruszka <stf_xl@wp.pl>
4 * Copyright (C) 2016 Felix Fietkau <nbd@nbd.name>
5 */
6
7#include <linux/module.h>
8#include "mt76x02.h"
9
10#define CCK_RATE(_idx, _rate) {					\
11	.bitrate = _rate,					\
12	.flags = IEEE80211_RATE_SHORT_PREAMBLE,			\
13	.hw_value = (MT_PHY_TYPE_CCK << 8) | (_idx),		\
14	.hw_value_short = (MT_PHY_TYPE_CCK << 8) | (8 + (_idx)),	\
15}
16
17#define OFDM_RATE(_idx, _rate) {				\
18	.bitrate = _rate,					\
19	.hw_value = (MT_PHY_TYPE_OFDM << 8) | (_idx),		\
20	.hw_value_short = (MT_PHY_TYPE_OFDM << 8) | (_idx),	\
21}
22
23struct ieee80211_rate mt76x02_rates[] = {
24	CCK_RATE(0, 10),
25	CCK_RATE(1, 20),
26	CCK_RATE(2, 55),
27	CCK_RATE(3, 110),
28	OFDM_RATE(0, 60),
29	OFDM_RATE(1, 90),
30	OFDM_RATE(2, 120),
31	OFDM_RATE(3, 180),
32	OFDM_RATE(4, 240),
33	OFDM_RATE(5, 360),
34	OFDM_RATE(6, 480),
35	OFDM_RATE(7, 540),
36};
37EXPORT_SYMBOL_GPL(mt76x02_rates);
38
39static const struct ieee80211_iface_limit mt76x02_if_limits[] = {
40	{
41		.max = 1,
42		.types = BIT(NL80211_IFTYPE_ADHOC)
43	}, {
44		.max = 8,
45		.types = BIT(NL80211_IFTYPE_STATION) |
46#ifdef CONFIG_MAC80211_MESH
47			 BIT(NL80211_IFTYPE_MESH_POINT) |
48#endif
49			 BIT(NL80211_IFTYPE_P2P_CLIENT) |
50			 BIT(NL80211_IFTYPE_P2P_GO) |
51			 BIT(NL80211_IFTYPE_AP)
52	 },
53};
54
55static const struct ieee80211_iface_limit mt76x02u_if_limits[] = {
56	{
57		.max = 1,
58		.types = BIT(NL80211_IFTYPE_ADHOC)
59	}, {
60		.max = 2,
61		.types = BIT(NL80211_IFTYPE_STATION) |
62#ifdef CONFIG_MAC80211_MESH
63			 BIT(NL80211_IFTYPE_MESH_POINT) |
64#endif
65			 BIT(NL80211_IFTYPE_P2P_CLIENT) |
66			 BIT(NL80211_IFTYPE_P2P_GO) |
67			 BIT(NL80211_IFTYPE_AP)
68	},
69};
70
71static const struct ieee80211_iface_combination mt76x02_if_comb[] = {
72	{
73		.limits = mt76x02_if_limits,
74		.n_limits = ARRAY_SIZE(mt76x02_if_limits),
75		.max_interfaces = 8,
76		.num_different_channels = 1,
77		.beacon_int_infra_match = true,
78		.radar_detect_widths = BIT(NL80211_CHAN_WIDTH_20_NOHT) |
79				       BIT(NL80211_CHAN_WIDTH_20) |
80				       BIT(NL80211_CHAN_WIDTH_40) |
81				       BIT(NL80211_CHAN_WIDTH_80),
82	}
83};
84
85static const struct ieee80211_iface_combination mt76x02u_if_comb[] = {
86	{
87		.limits = mt76x02u_if_limits,
88		.n_limits = ARRAY_SIZE(mt76x02u_if_limits),
89		.max_interfaces = 2,
90		.num_different_channels = 1,
91		.beacon_int_infra_match = true,
92	}
93};
94
95static void
96mt76x02_led_set_config(struct mt76_dev *mdev, u8 delay_on,
97		       u8 delay_off)
98{
99	struct mt76x02_dev *dev = container_of(mdev, struct mt76x02_dev,
100					       mt76);
101	u32 val;
102
103	val = FIELD_PREP(MT_LED_STATUS_DURATION, 0xff) |
104	      FIELD_PREP(MT_LED_STATUS_OFF, delay_off) |
105	      FIELD_PREP(MT_LED_STATUS_ON, delay_on);
106
107	mt76_wr(dev, MT_LED_S0(mdev->led_pin), val);
108	mt76_wr(dev, MT_LED_S1(mdev->led_pin), val);
109
110	val = MT_LED_CTRL_REPLAY(mdev->led_pin) |
111	      MT_LED_CTRL_KICK(mdev->led_pin);
112	if (mdev->led_al)
113		val |= MT_LED_CTRL_POLARITY(mdev->led_pin);
114	mt76_wr(dev, MT_LED_CTRL, val);
115}
116
117static int
118mt76x02_led_set_blink(struct led_classdev *led_cdev,
119		      unsigned long *delay_on,
120		      unsigned long *delay_off)
121{
122	struct mt76_dev *mdev = container_of(led_cdev, struct mt76_dev,
123					     led_cdev);
124	u8 delta_on, delta_off;
125
126	delta_off = max_t(u8, *delay_off / 10, 1);
127	delta_on = max_t(u8, *delay_on / 10, 1);
128
129	mt76x02_led_set_config(mdev, delta_on, delta_off);
130
131	return 0;
132}
133
134static void
135mt76x02_led_set_brightness(struct led_classdev *led_cdev,
136			   enum led_brightness brightness)
137{
138	struct mt76_dev *mdev = container_of(led_cdev, struct mt76_dev,
139					     led_cdev);
140
141	if (!brightness)
142		mt76x02_led_set_config(mdev, 0, 0xff);
143	else
144		mt76x02_led_set_config(mdev, 0xff, 0);
145}
146
147void mt76x02_init_device(struct mt76x02_dev *dev)
148{
149	struct ieee80211_hw *hw = mt76_hw(dev);
150	struct wiphy *wiphy = hw->wiphy;
151
152	INIT_DELAYED_WORK(&dev->mt76.mac_work, mt76x02_mac_work);
153
154	hw->queues = 4;
155	hw->max_rates = 1;
156	hw->max_report_rates = 7;
157	hw->max_rate_tries = 1;
158	hw->extra_tx_headroom = 2;
159
160	if (mt76_is_usb(&dev->mt76)) {
161		hw->extra_tx_headroom += sizeof(struct mt76x02_txwi) +
162					 MT_DMA_HDR_LEN;
163		wiphy->iface_combinations = mt76x02u_if_comb;
164		wiphy->n_iface_combinations = ARRAY_SIZE(mt76x02u_if_comb);
165	} else {
166		INIT_DELAYED_WORK(&dev->wdt_work, mt76x02_wdt_work);
167
168		mt76x02_dfs_init_detector(dev);
169
170		wiphy->reg_notifier = mt76x02_regd_notifier;
171		wiphy->iface_combinations = mt76x02_if_comb;
172		wiphy->n_iface_combinations = ARRAY_SIZE(mt76x02_if_comb);
173
174		/* init led callbacks */
175		if (IS_ENABLED(CONFIG_MT76_LEDS)) {
176			dev->mt76.led_cdev.brightness_set =
177					mt76x02_led_set_brightness;
178			dev->mt76.led_cdev.blink_set = mt76x02_led_set_blink;
179		}
180	}
181
182	wiphy_ext_feature_set(wiphy, NL80211_EXT_FEATURE_VHT_IBSS);
183
184	hw->sta_data_size = sizeof(struct mt76x02_sta);
185	hw->vif_data_size = sizeof(struct mt76x02_vif);
186
187	ieee80211_hw_set(hw, SUPPORTS_HT_CCK_RATES);
188	ieee80211_hw_set(hw, HOST_BROADCAST_PS_BUFFERING);
189
190	dev->mt76.global_wcid.idx = 255;
191	dev->mt76.global_wcid.hw_key_idx = -1;
192	dev->slottime = 9;
193
194	if (is_mt76x2(dev)) {
195		dev->mphy.sband_2g.sband.ht_cap.cap |=
196				IEEE80211_HT_CAP_LDPC_CODING;
197		dev->mphy.sband_5g.sband.ht_cap.cap |=
198				IEEE80211_HT_CAP_LDPC_CODING;
199		dev->chainmask = 0x202;
200		dev->mphy.antenna_mask = 3;
201	} else {
202		dev->chainmask = 0x101;
203		dev->mphy.antenna_mask = 1;
204	}
205}
206EXPORT_SYMBOL_GPL(mt76x02_init_device);
207
208void mt76x02_configure_filter(struct ieee80211_hw *hw,
209			      unsigned int changed_flags,
210			      unsigned int *total_flags, u64 multicast)
211{
212	struct mt76x02_dev *dev = hw->priv;
213	u32 flags = 0;
214
215#define MT76_FILTER(_flag, _hw) do { \
216		flags |= *total_flags & FIF_##_flag;			\
217		dev->mt76.rxfilter &= ~(_hw);				\
218		dev->mt76.rxfilter |= !(flags & FIF_##_flag) * (_hw);	\
219	} while (0)
220
221	mutex_lock(&dev->mt76.mutex);
222
223	dev->mt76.rxfilter &= ~MT_RX_FILTR_CFG_OTHER_BSS;
224
225	MT76_FILTER(FCSFAIL, MT_RX_FILTR_CFG_CRC_ERR);
226	MT76_FILTER(PLCPFAIL, MT_RX_FILTR_CFG_PHY_ERR);
227	MT76_FILTER(CONTROL, MT_RX_FILTR_CFG_ACK |
228			     MT_RX_FILTR_CFG_CTS |
229			     MT_RX_FILTR_CFG_CFEND |
230			     MT_RX_FILTR_CFG_CFACK |
231			     MT_RX_FILTR_CFG_BA |
232			     MT_RX_FILTR_CFG_CTRL_RSV);
233	MT76_FILTER(PSPOLL, MT_RX_FILTR_CFG_PSPOLL);
234
235	*total_flags = flags;
236	mt76_wr(dev, MT_RX_FILTR_CFG, dev->mt76.rxfilter);
237
238	mutex_unlock(&dev->mt76.mutex);
239}
240EXPORT_SYMBOL_GPL(mt76x02_configure_filter);
241
242int mt76x02_sta_add(struct mt76_dev *mdev, struct ieee80211_vif *vif,
243		    struct ieee80211_sta *sta)
244{
245	struct mt76x02_dev *dev = container_of(mdev, struct mt76x02_dev, mt76);
246	struct mt76x02_sta *msta = (struct mt76x02_sta *)sta->drv_priv;
247	struct mt76x02_vif *mvif = (struct mt76x02_vif *)vif->drv_priv;
248	int idx = 0;
249
250	memset(msta, 0, sizeof(*msta));
251
252	idx = mt76_wcid_alloc(dev->mt76.wcid_mask, MT76x02_N_WCIDS);
253	if (idx < 0)
254		return -ENOSPC;
255
256	msta->vif = mvif;
257	msta->wcid.sta = 1;
258	msta->wcid.idx = idx;
259	msta->wcid.hw_key_idx = -1;
260	mt76x02_mac_wcid_setup(dev, idx, mvif->idx, sta->addr);
261	mt76x02_mac_wcid_set_drop(dev, idx, false);
262	ewma_pktlen_init(&msta->pktlen);
263
264	if (vif->type == NL80211_IFTYPE_AP)
265		set_bit(MT_WCID_FLAG_CHECK_PS, &msta->wcid.flags);
266
267	return 0;
268}
269EXPORT_SYMBOL_GPL(mt76x02_sta_add);
270
271void mt76x02_sta_remove(struct mt76_dev *mdev, struct ieee80211_vif *vif,
272			struct ieee80211_sta *sta)
273{
274	struct mt76x02_dev *dev = container_of(mdev, struct mt76x02_dev, mt76);
275	struct mt76_wcid *wcid = (struct mt76_wcid *)sta->drv_priv;
276	int idx = wcid->idx;
277
278	mt76x02_mac_wcid_set_drop(dev, idx, true);
279	mt76x02_mac_wcid_setup(dev, idx, 0, NULL);
280}
281EXPORT_SYMBOL_GPL(mt76x02_sta_remove);
282
283static void
284mt76x02_vif_init(struct mt76x02_dev *dev, struct ieee80211_vif *vif,
285		 unsigned int idx)
286{
287	struct mt76x02_vif *mvif = (struct mt76x02_vif *)vif->drv_priv;
288	struct mt76_txq *mtxq;
289
290	memset(mvif, 0, sizeof(*mvif));
291
292	mvif->idx = idx;
293	mvif->group_wcid.idx = MT_VIF_WCID(idx);
294	mvif->group_wcid.hw_key_idx = -1;
295	mtxq = (struct mt76_txq *)vif->txq->drv_priv;
296	mtxq->wcid = &mvif->group_wcid;
297}
298
299int
300mt76x02_add_interface(struct ieee80211_hw *hw, struct ieee80211_vif *vif)
301{
302	struct mt76x02_dev *dev = hw->priv;
303	unsigned int idx = 0;
304
305	/* Allow to change address in HW if we create first interface. */
306	if (!dev->mphy.vif_mask &&
307	    (((vif->addr[0] ^ dev->mt76.macaddr[0]) & ~GENMASK(4, 1)) ||
308	     memcmp(vif->addr + 1, dev->mt76.macaddr + 1, ETH_ALEN - 1)))
309		mt76x02_mac_setaddr(dev, vif->addr);
310
311	if (vif->addr[0] & BIT(1))
312		idx = 1 + (((dev->mt76.macaddr[0] ^ vif->addr[0]) >> 2) & 7);
313
314	/*
315	 * Client mode typically only has one configurable BSSID register,
316	 * which is used for bssidx=0. This is linked to the MAC address.
317	 * Since mac80211 allows changing interface types, and we cannot
318	 * force the use of the primary MAC address for a station mode
319	 * interface, we need some other way of configuring a per-interface
320	 * remote BSSID.
321	 * The hardware provides an AP-Client feature, where bssidx 0-7 are
322	 * used for AP mode and bssidx 8-15 for client mode.
323	 * We shift the station interface bss index by 8 to force the
324	 * hardware to recognize the BSSID.
325	 * The resulting bssidx mismatch for unicast frames is ignored by hw.
326	 */
327	if (vif->type == NL80211_IFTYPE_STATION)
328		idx += 8;
329
330	/* vif is already set or idx is 8 for AP/Mesh/... */
331	if (dev->mphy.vif_mask & BIT(idx) ||
332	    (vif->type != NL80211_IFTYPE_STATION && idx > 7))
333		return -EBUSY;
334
335	dev->mphy.vif_mask |= BIT(idx);
336
337	mt76x02_vif_init(dev, vif, idx);
338	return 0;
339}
340EXPORT_SYMBOL_GPL(mt76x02_add_interface);
341
342void mt76x02_remove_interface(struct ieee80211_hw *hw,
343			      struct ieee80211_vif *vif)
344{
345	struct mt76x02_dev *dev = hw->priv;
346	struct mt76x02_vif *mvif = (struct mt76x02_vif *)vif->drv_priv;
347
348	dev->mphy.vif_mask &= ~BIT(mvif->idx);
349}
350EXPORT_SYMBOL_GPL(mt76x02_remove_interface);
351
352int mt76x02_ampdu_action(struct ieee80211_hw *hw, struct ieee80211_vif *vif,
353			 struct ieee80211_ampdu_params *params)
354{
355	enum ieee80211_ampdu_mlme_action action = params->action;
356	struct ieee80211_sta *sta = params->sta;
357	struct mt76x02_dev *dev = hw->priv;
358	struct mt76x02_sta *msta = (struct mt76x02_sta *)sta->drv_priv;
359	struct ieee80211_txq *txq = sta->txq[params->tid];
360	u16 tid = params->tid;
361	u16 ssn = params->ssn;
362	struct mt76_txq *mtxq;
363	int ret = 0;
364
365	if (!txq)
366		return -EINVAL;
367
368	mtxq = (struct mt76_txq *)txq->drv_priv;
369
370	mutex_lock(&dev->mt76.mutex);
371	switch (action) {
372	case IEEE80211_AMPDU_RX_START:
373		mt76_rx_aggr_start(&dev->mt76, &msta->wcid, tid,
374				   ssn, params->buf_size);
375		mt76_set(dev, MT_WCID_ADDR(msta->wcid.idx) + 4, BIT(16 + tid));
376		break;
377	case IEEE80211_AMPDU_RX_STOP:
378		mt76_rx_aggr_stop(&dev->mt76, &msta->wcid, tid);
379		mt76_clear(dev, MT_WCID_ADDR(msta->wcid.idx) + 4,
380			   BIT(16 + tid));
381		break;
382	case IEEE80211_AMPDU_TX_OPERATIONAL:
383		mtxq->aggr = true;
384		mtxq->send_bar = false;
385		ieee80211_send_bar(vif, sta->addr, tid, mtxq->agg_ssn);
386		break;
387	case IEEE80211_AMPDU_TX_STOP_FLUSH:
388	case IEEE80211_AMPDU_TX_STOP_FLUSH_CONT:
389		mtxq->aggr = false;
390		break;
391	case IEEE80211_AMPDU_TX_START:
392		mtxq->agg_ssn = IEEE80211_SN_TO_SEQ(ssn);
393		ret = IEEE80211_AMPDU_TX_START_IMMEDIATE;
394		break;
395	case IEEE80211_AMPDU_TX_STOP_CONT:
396		mtxq->aggr = false;
397		ieee80211_stop_tx_ba_cb_irqsafe(vif, sta->addr, tid);
398		break;
399	}
400	mutex_unlock(&dev->mt76.mutex);
401
402	return ret;
403}
404EXPORT_SYMBOL_GPL(mt76x02_ampdu_action);
405
406int mt76x02_set_key(struct ieee80211_hw *hw, enum set_key_cmd cmd,
407		    struct ieee80211_vif *vif, struct ieee80211_sta *sta,
408		    struct ieee80211_key_conf *key)
409{
410	struct mt76x02_dev *dev = hw->priv;
411	struct mt76x02_vif *mvif = (struct mt76x02_vif *)vif->drv_priv;
412	struct mt76x02_sta *msta;
413	struct mt76_wcid *wcid;
414	int idx = key->keyidx;
415	int ret;
416
417	/* fall back to sw encryption for unsupported ciphers */
418	switch (key->cipher) {
419	case WLAN_CIPHER_SUITE_WEP40:
420	case WLAN_CIPHER_SUITE_WEP104:
421	case WLAN_CIPHER_SUITE_TKIP:
422	case WLAN_CIPHER_SUITE_CCMP:
423		break;
424	default:
425		return -EOPNOTSUPP;
426	}
427
428	/*
429	 * The hardware does not support per-STA RX GTK, fall back
430	 * to software mode for these.
431	 */
432	if ((vif->type == NL80211_IFTYPE_ADHOC ||
433	     vif->type == NL80211_IFTYPE_MESH_POINT) &&
434	    (key->cipher == WLAN_CIPHER_SUITE_TKIP ||
435	     key->cipher == WLAN_CIPHER_SUITE_CCMP) &&
436	    !(key->flags & IEEE80211_KEY_FLAG_PAIRWISE))
437		return -EOPNOTSUPP;
438
439	/*
440	 * In USB AP mode, broadcast/multicast frames are setup in beacon
441	 * data registers and sent via HW beacons engine, they require to
442	 * be already encrypted.
443	 */
444	if (mt76_is_usb(&dev->mt76) &&
445	    vif->type == NL80211_IFTYPE_AP &&
446	    !(key->flags & IEEE80211_KEY_FLAG_PAIRWISE))
447		return -EOPNOTSUPP;
448
449	/* MT76x0 GTK offloading does not work with more than one VIF */
450	if (is_mt76x0(dev) && !(key->flags & IEEE80211_KEY_FLAG_PAIRWISE))
451		return -EOPNOTSUPP;
452
453	msta = sta ? (struct mt76x02_sta *)sta->drv_priv : NULL;
454	wcid = msta ? &msta->wcid : &mvif->group_wcid;
455
456	if (cmd == SET_KEY) {
457		key->hw_key_idx = wcid->idx;
458		wcid->hw_key_idx = idx;
459		if (key->flags & IEEE80211_KEY_FLAG_RX_MGMT) {
460			key->flags |= IEEE80211_KEY_FLAG_SW_MGMT_TX;
461			wcid->sw_iv = true;
462		}
463	} else {
464		if (idx == wcid->hw_key_idx) {
465			wcid->hw_key_idx = -1;
466			wcid->sw_iv = false;
467		}
468
469		key = NULL;
470	}
471	mt76_wcid_key_setup(&dev->mt76, wcid, key);
472
473	if (!msta) {
474		if (key || wcid->hw_key_idx == idx) {
475			ret = mt76x02_mac_wcid_set_key(dev, wcid->idx, key);
476			if (ret)
477				return ret;
478		}
479
480		return mt76x02_mac_shared_key_setup(dev, mvif->idx, idx, key);
481	}
482
483	return mt76x02_mac_wcid_set_key(dev, msta->wcid.idx, key);
484}
485EXPORT_SYMBOL_GPL(mt76x02_set_key);
486
487int mt76x02_conf_tx(struct ieee80211_hw *hw, struct ieee80211_vif *vif,
488		    u16 queue, const struct ieee80211_tx_queue_params *params)
489{
490	struct mt76x02_dev *dev = hw->priv;
491	u8 cw_min = 5, cw_max = 10, qid;
492	u32 val;
493
494	qid = dev->mt76.q_tx[queue]->hw_idx;
495
496	if (params->cw_min)
497		cw_min = fls(params->cw_min);
498	if (params->cw_max)
499		cw_max = fls(params->cw_max);
500
501	val = FIELD_PREP(MT_EDCA_CFG_TXOP, params->txop) |
502	      FIELD_PREP(MT_EDCA_CFG_AIFSN, params->aifs) |
503	      FIELD_PREP(MT_EDCA_CFG_CWMIN, cw_min) |
504	      FIELD_PREP(MT_EDCA_CFG_CWMAX, cw_max);
505	mt76_wr(dev, MT_EDCA_CFG_AC(qid), val);
506
507	val = mt76_rr(dev, MT_WMM_TXOP(qid));
508	val &= ~(MT_WMM_TXOP_MASK << MT_WMM_TXOP_SHIFT(qid));
509	val |= params->txop << MT_WMM_TXOP_SHIFT(qid);
510	mt76_wr(dev, MT_WMM_TXOP(qid), val);
511
512	val = mt76_rr(dev, MT_WMM_AIFSN);
513	val &= ~(MT_WMM_AIFSN_MASK << MT_WMM_AIFSN_SHIFT(qid));
514	val |= params->aifs << MT_WMM_AIFSN_SHIFT(qid);
515	mt76_wr(dev, MT_WMM_AIFSN, val);
516
517	val = mt76_rr(dev, MT_WMM_CWMIN);
518	val &= ~(MT_WMM_CWMIN_MASK << MT_WMM_CWMIN_SHIFT(qid));
519	val |= cw_min << MT_WMM_CWMIN_SHIFT(qid);
520	mt76_wr(dev, MT_WMM_CWMIN, val);
521
522	val = mt76_rr(dev, MT_WMM_CWMAX);
523	val &= ~(MT_WMM_CWMAX_MASK << MT_WMM_CWMAX_SHIFT(qid));
524	val |= cw_max << MT_WMM_CWMAX_SHIFT(qid);
525	mt76_wr(dev, MT_WMM_CWMAX, val);
526
527	return 0;
528}
529EXPORT_SYMBOL_GPL(mt76x02_conf_tx);
530
531void mt76x02_set_tx_ackto(struct mt76x02_dev *dev)
532{
533	u8 ackto, sifs, slottime = dev->slottime;
534
535	/* As defined by IEEE 802.11-2007 17.3.8.6 */
536	slottime += 3 * dev->coverage_class;
537	mt76_rmw_field(dev, MT_BKOFF_SLOT_CFG,
538		       MT_BKOFF_SLOT_CFG_SLOTTIME, slottime);
539
540	sifs = mt76_get_field(dev, MT_XIFS_TIME_CFG,
541			      MT_XIFS_TIME_CFG_OFDM_SIFS);
542
543	ackto = slottime + sifs;
544	mt76_rmw_field(dev, MT_TX_TIMEOUT_CFG,
545		       MT_TX_TIMEOUT_CFG_ACKTO, ackto);
546}
547EXPORT_SYMBOL_GPL(mt76x02_set_tx_ackto);
548
549void mt76x02_set_coverage_class(struct ieee80211_hw *hw,
550				s16 coverage_class)
551{
552	struct mt76x02_dev *dev = hw->priv;
553
554	mutex_lock(&dev->mt76.mutex);
555	dev->coverage_class = max_t(s16, coverage_class, 0);
556	mt76x02_set_tx_ackto(dev);
557	mutex_unlock(&dev->mt76.mutex);
558}
559EXPORT_SYMBOL_GPL(mt76x02_set_coverage_class);
560
561int mt76x02_set_rts_threshold(struct ieee80211_hw *hw, u32 val)
562{
563	struct mt76x02_dev *dev = hw->priv;
564
565	if (val != ~0 && val > 0xffff)
566		return -EINVAL;
567
568	mutex_lock(&dev->mt76.mutex);
569	mt76x02_mac_set_rts_thresh(dev, val);
570	mutex_unlock(&dev->mt76.mutex);
571
572	return 0;
573}
574EXPORT_SYMBOL_GPL(mt76x02_set_rts_threshold);
575
576void mt76x02_sta_rate_tbl_update(struct ieee80211_hw *hw,
577				 struct ieee80211_vif *vif,
578				 struct ieee80211_sta *sta)
579{
580	struct mt76x02_dev *dev = hw->priv;
581	struct mt76x02_sta *msta = (struct mt76x02_sta *)sta->drv_priv;
582	struct ieee80211_sta_rates *rates = rcu_dereference(sta->rates);
583	struct ieee80211_tx_rate rate = {};
584
585	if (!rates)
586		return;
587
588	rate.idx = rates->rate[0].idx;
589	rate.flags = rates->rate[0].flags;
590	mt76x02_mac_wcid_set_rate(dev, &msta->wcid, &rate);
591}
592EXPORT_SYMBOL_GPL(mt76x02_sta_rate_tbl_update);
593
594void mt76x02_remove_hdr_pad(struct sk_buff *skb, int len)
595{
596	int hdrlen;
597
598	if (!len)
599		return;
600
601	hdrlen = ieee80211_get_hdrlen_from_skb(skb);
602	memmove(skb->data + len, skb->data, hdrlen);
603	skb_pull(skb, len);
604}
605EXPORT_SYMBOL_GPL(mt76x02_remove_hdr_pad);
606
607void mt76x02_sw_scan_complete(struct ieee80211_hw *hw,
608			      struct ieee80211_vif *vif)
609{
610	struct mt76x02_dev *dev = hw->priv;
611
612	clear_bit(MT76_SCANNING, &dev->mphy.state);
613	if (dev->cal.gain_init_done) {
614		/* Restore AGC gain and resume calibration after scanning. */
615		dev->cal.low_gain = -1;
616		ieee80211_queue_delayed_work(hw, &dev->cal_work, 0);
617	}
618}
619EXPORT_SYMBOL_GPL(mt76x02_sw_scan_complete);
620
621void mt76x02_sta_ps(struct mt76_dev *mdev, struct ieee80211_sta *sta,
622		    bool ps)
623{
624	struct mt76x02_dev *dev = container_of(mdev, struct mt76x02_dev, mt76);
625	struct mt76x02_sta *msta = (struct mt76x02_sta *)sta->drv_priv;
626	int idx = msta->wcid.idx;
627
628	mt76_stop_tx_queues(&dev->mt76, sta, true);
629	if (mt76_is_mmio(mdev))
630		mt76x02_mac_wcid_set_drop(dev, idx, ps);
631}
632EXPORT_SYMBOL_GPL(mt76x02_sta_ps);
633
634void mt76x02_bss_info_changed(struct ieee80211_hw *hw,
635			      struct ieee80211_vif *vif,
636			      struct ieee80211_bss_conf *info,
637			      u32 changed)
638{
639	struct mt76x02_vif *mvif = (struct mt76x02_vif *)vif->drv_priv;
640	struct mt76x02_dev *dev = hw->priv;
641
642	mutex_lock(&dev->mt76.mutex);
643
644	if (changed & BSS_CHANGED_BSSID)
645		mt76x02_mac_set_bssid(dev, mvif->idx, info->bssid);
646
647	if (changed & BSS_CHANGED_HT || changed & BSS_CHANGED_ERP_CTS_PROT)
648		mt76x02_mac_set_tx_protection(dev, info->use_cts_prot,
649					      info->ht_operation_mode);
650
651	if (changed & BSS_CHANGED_BEACON_INT) {
652		mt76_rmw_field(dev, MT_BEACON_TIME_CFG,
653			       MT_BEACON_TIME_CFG_INTVAL,
654			       info->beacon_int << 4);
655		dev->mt76.beacon_int = info->beacon_int;
656	}
657
658	if (changed & BSS_CHANGED_BEACON_ENABLED)
659		mt76x02_mac_set_beacon_enable(dev, vif, info->enable_beacon);
660
661	if (changed & BSS_CHANGED_ERP_PREAMBLE)
662		mt76x02_mac_set_short_preamble(dev, info->use_short_preamble);
663
664	if (changed & BSS_CHANGED_ERP_SLOT) {
665		int slottime = info->use_short_slot ? 9 : 20;
666
667		dev->slottime = slottime;
668		mt76x02_set_tx_ackto(dev);
669	}
670
671	mutex_unlock(&dev->mt76.mutex);
672}
673EXPORT_SYMBOL_GPL(mt76x02_bss_info_changed);
674
675void mt76x02_config_mac_addr_list(struct mt76x02_dev *dev)
676{
677	struct ieee80211_hw *hw = mt76_hw(dev);
678	struct wiphy *wiphy = hw->wiphy;
679	int i;
680
681	for (i = 0; i < ARRAY_SIZE(dev->macaddr_list); i++) {
682		u8 *addr = dev->macaddr_list[i].addr;
683
684		memcpy(addr, dev->mt76.macaddr, ETH_ALEN);
685
686		if (!i)
687			continue;
688
689		addr[0] |= BIT(1);
690		addr[0] ^= ((i - 1) << 2);
691	}
692	wiphy->addresses = dev->macaddr_list;
693	wiphy->n_addresses = ARRAY_SIZE(dev->macaddr_list);
694}
695EXPORT_SYMBOL_GPL(mt76x02_config_mac_addr_list);
696
697MODULE_LICENSE("Dual BSD/GPL");
698