xref: /linux/drivers/net/wireless/mediatek/mt76/mt7996/mcu.c (revision c7979c3917fa1326dae3607e1c6a04c12057b194)
1 // SPDX-License-Identifier: ISC
2 /*
3  * Copyright (C) 2022 MediaTek Inc.
4  */
5 
6 #include <linux/firmware.h>
7 #include <linux/fs.h>
8 #include "mt7996.h"
9 #include "mcu.h"
10 #include "mac.h"
11 #include "eeprom.h"
12 
13 #define fw_name(_dev, name, ...)	({			\
14 	char *_fw;						\
15 	switch (mt76_chip(&(_dev)->mt76)) {			\
16 	case MT7992_DEVICE_ID:						\
17 		switch ((_dev)->var.type) {			\
18 		case MT7992_VAR_TYPE_23:			\
19 			_fw = MT7992_##name##_23;		\
20 			break;					\
21 		default:					\
22 			_fw = MT7992_##name;			\
23 		}						\
24 		break;						\
25 	case MT7990_DEVICE_ID:					\
26 		_fw = MT7990_##name;				\
27 		break;						\
28 	case MT7996_DEVICE_ID:						\
29 	default:						\
30 		switch ((_dev)->var.type) {			\
31 		case MT7996_VAR_TYPE_233:			\
32 			_fw = MT7996_##name##_233;		\
33 			break;					\
34 		default:					\
35 			_fw = MT7996_##name;			\
36 		}						\
37 		break;						\
38 	}							\
39 	_fw;							\
40 })
41 
42 struct mt7996_patch_hdr {
43 	char build_date[16];
44 	char platform[4];
45 	__be32 hw_sw_ver;
46 	__be32 patch_ver;
47 	__be16 checksum;
48 	u16 reserved;
49 	struct {
50 		__be32 patch_ver;
51 		__be32 subsys;
52 		__be32 feature;
53 		__be32 n_region;
54 		__be32 crc;
55 		u32 reserved[11];
56 	} desc;
57 } __packed;
58 
59 struct mt7996_patch_sec {
60 	__be32 type;
61 	__be32 offs;
62 	__be32 size;
63 	union {
64 		__be32 spec[13];
65 		struct {
66 			__be32 addr;
67 			__be32 len;
68 			__be32 sec_key_idx;
69 			__be32 align_len;
70 			u32 reserved[9];
71 		} info;
72 	};
73 } __packed;
74 
75 struct mt7996_fw_trailer {
76 	u8 chip_id;
77 	u8 eco_code;
78 	u8 n_region;
79 	u8 format_ver;
80 	u8 format_flag;
81 	u8 reserved[2];
82 	char fw_ver[10];
83 	char build_date[15];
84 	u32 crc;
85 } __packed;
86 
87 struct mt7996_fw_region {
88 	__le32 decomp_crc;
89 	__le32 decomp_len;
90 	__le32 decomp_blk_sz;
91 	u8 reserved[4];
92 	__le32 addr;
93 	__le32 len;
94 	u8 feature_set;
95 	u8 reserved1[15];
96 } __packed;
97 
98 #define MCU_PATCH_ADDRESS		0x200000
99 
100 #define HE_PHY(p, c)			u8_get_bits(c, IEEE80211_HE_PHY_##p)
101 #define HE_MAC(m, c)			u8_get_bits(c, IEEE80211_HE_MAC_##m)
102 #define EHT_PHY(p, c)			u8_get_bits(c, IEEE80211_EHT_PHY_##p)
103 
104 static bool sr_scene_detect = true;
105 module_param(sr_scene_detect, bool, 0644);
106 MODULE_PARM_DESC(sr_scene_detect, "Enable firmware scene detection algorithm");
107 
108 static u8
mt7996_mcu_get_sta_nss(u16 mcs_map)109 mt7996_mcu_get_sta_nss(u16 mcs_map)
110 {
111 	u8 nss;
112 
113 	for (nss = 8; nss > 0; nss--) {
114 		u8 nss_mcs = (mcs_map >> (2 * (nss - 1))) & 3;
115 
116 		if (nss_mcs != IEEE80211_VHT_MCS_NOT_SUPPORTED)
117 			break;
118 	}
119 
120 	return nss - 1;
121 }
122 
123 static void
mt7996_mcu_set_sta_he_mcs(struct ieee80211_link_sta * link_sta,struct mt7996_vif_link * link,__le16 * he_mcs,u16 mcs_map)124 mt7996_mcu_set_sta_he_mcs(struct ieee80211_link_sta *link_sta,
125 			  struct mt7996_vif_link *link,
126 			  __le16 *he_mcs, u16 mcs_map)
127 {
128 	int nss, max_nss = link_sta->rx_nss > 3 ? 4 : link_sta->rx_nss;
129 	enum nl80211_band band = link->phy->mt76->chandef.chan->band;
130 	const u16 *mask = link->bitrate_mask.control[band].he_mcs;
131 
132 	for (nss = 0; nss < max_nss; nss++) {
133 		int mcs;
134 
135 		switch ((mcs_map >> (2 * nss)) & 0x3) {
136 		case IEEE80211_HE_MCS_SUPPORT_0_11:
137 			mcs = GENMASK(11, 0);
138 			break;
139 		case IEEE80211_HE_MCS_SUPPORT_0_9:
140 			mcs = GENMASK(9, 0);
141 			break;
142 		case IEEE80211_HE_MCS_SUPPORT_0_7:
143 			mcs = GENMASK(7, 0);
144 			break;
145 		default:
146 			mcs = 0;
147 		}
148 
149 		mcs = mcs ? fls(mcs & mask[nss]) - 1 : -1;
150 
151 		switch (mcs) {
152 		case 0 ... 7:
153 			mcs = IEEE80211_HE_MCS_SUPPORT_0_7;
154 			break;
155 		case 8 ... 9:
156 			mcs = IEEE80211_HE_MCS_SUPPORT_0_9;
157 			break;
158 		case 10 ... 11:
159 			mcs = IEEE80211_HE_MCS_SUPPORT_0_11;
160 			break;
161 		default:
162 			mcs = IEEE80211_HE_MCS_NOT_SUPPORTED;
163 			break;
164 		}
165 		mcs_map &= ~(0x3 << (nss * 2));
166 		mcs_map |= mcs << (nss * 2);
167 	}
168 
169 	*he_mcs = cpu_to_le16(mcs_map);
170 }
171 
172 static void
mt7996_mcu_set_sta_vht_mcs(struct ieee80211_link_sta * link_sta,__le16 * vht_mcs,const u16 * mask)173 mt7996_mcu_set_sta_vht_mcs(struct ieee80211_link_sta *link_sta,
174 			   __le16 *vht_mcs, const u16 *mask)
175 {
176 	u16 mcs, mcs_map = le16_to_cpu(link_sta->vht_cap.vht_mcs.rx_mcs_map);
177 	int nss, max_nss = link_sta->rx_nss > 3 ? 4 : link_sta->rx_nss;
178 
179 	for (nss = 0; nss < max_nss; nss++, mcs_map >>= 2) {
180 		switch (mcs_map & 0x3) {
181 		case IEEE80211_VHT_MCS_SUPPORT_0_9:
182 			mcs = GENMASK(9, 0);
183 			break;
184 		case IEEE80211_VHT_MCS_SUPPORT_0_8:
185 			mcs = GENMASK(8, 0);
186 			break;
187 		case IEEE80211_VHT_MCS_SUPPORT_0_7:
188 			mcs = GENMASK(7, 0);
189 			break;
190 		default:
191 			mcs = 0;
192 		}
193 
194 		vht_mcs[nss] = cpu_to_le16(mcs & mask[nss]);
195 	}
196 }
197 
198 static void
mt7996_mcu_set_sta_ht_mcs(struct ieee80211_link_sta * link_sta,u8 * ht_mcs,const u8 * mask)199 mt7996_mcu_set_sta_ht_mcs(struct ieee80211_link_sta *link_sta,
200 			  u8 *ht_mcs, const u8 *mask)
201 {
202 	int nss, max_nss = link_sta->rx_nss > 3 ? 4 : link_sta->rx_nss;
203 
204 	for (nss = 0; nss < max_nss; nss++)
205 		ht_mcs[nss] = link_sta->ht_cap.mcs.rx_mask[nss] & mask[nss];
206 }
207 
208 static int
mt7996_mcu_parse_response(struct mt76_dev * mdev,int cmd,struct sk_buff * skb,int seq)209 mt7996_mcu_parse_response(struct mt76_dev *mdev, int cmd,
210 			  struct sk_buff *skb, int seq)
211 {
212 	struct mt7996_mcu_rxd *rxd;
213 	struct mt7996_mcu_uni_event *event;
214 	int mcu_cmd = FIELD_GET(__MCU_CMD_FIELD_ID, cmd);
215 	int ret = 0;
216 
217 	if (!skb) {
218 		dev_err(mdev->dev, "Message %08x (seq %d) timeout\n",
219 			cmd, seq);
220 		return -ETIMEDOUT;
221 	}
222 
223 	rxd = (struct mt7996_mcu_rxd *)skb->data;
224 	if (seq != rxd->seq)
225 		return -EAGAIN;
226 
227 	if (cmd == MCU_CMD(PATCH_SEM_CONTROL)) {
228 		skb_pull(skb, sizeof(*rxd) - 4);
229 		ret = *skb->data;
230 	} else if ((rxd->option & MCU_UNI_CMD_EVENT) &&
231 		    rxd->eid == MCU_UNI_EVENT_RESULT) {
232 		skb_pull(skb, sizeof(*rxd));
233 		event = (struct mt7996_mcu_uni_event *)skb->data;
234 		ret = le32_to_cpu(event->status);
235 		/* skip invalid event */
236 		if (mcu_cmd != event->cid)
237 			ret = -EAGAIN;
238 	} else {
239 		skb_pull(skb, sizeof(struct mt7996_mcu_rxd));
240 	}
241 
242 	return ret;
243 }
244 
245 static int
mt7996_mcu_send_message(struct mt76_dev * mdev,struct sk_buff * skb,int cmd,int * wait_seq)246 mt7996_mcu_send_message(struct mt76_dev *mdev, struct sk_buff *skb,
247 			int cmd, int *wait_seq)
248 {
249 	struct mt7996_dev *dev = container_of(mdev, struct mt7996_dev, mt76);
250 	int txd_len, mcu_cmd = FIELD_GET(__MCU_CMD_FIELD_ID, cmd);
251 	struct mt76_connac2_mcu_uni_txd *uni_txd;
252 	struct mt76_connac2_mcu_txd *mcu_txd;
253 	enum mt76_mcuq_id qid;
254 	__le32 *txd;
255 	u32 val;
256 	u8 seq;
257 
258 	mdev->mcu.timeout = 20 * HZ;
259 
260 	seq = ++dev->mt76.mcu.msg_seq & 0xf;
261 	if (!seq)
262 		seq = ++dev->mt76.mcu.msg_seq & 0xf;
263 
264 	if (cmd == MCU_CMD(FW_SCATTER)) {
265 		qid = MT_MCUQ_FWDL;
266 		goto exit;
267 	}
268 
269 	txd_len = cmd & __MCU_CMD_FIELD_UNI ? sizeof(*uni_txd) : sizeof(*mcu_txd);
270 	txd = (__le32 *)skb_push(skb, txd_len);
271 	if (test_bit(MT76_STATE_MCU_RUNNING, &dev->mphy.state) && mt7996_has_wa(dev))
272 		qid = MT_MCUQ_WA;
273 	else
274 		qid = MT_MCUQ_WM;
275 
276 	val = FIELD_PREP(MT_TXD0_TX_BYTES, skb->len) |
277 	      FIELD_PREP(MT_TXD0_PKT_FMT, MT_TX_TYPE_CMD) |
278 	      FIELD_PREP(MT_TXD0_Q_IDX, MT_TX_MCU_PORT_RX_Q0);
279 	txd[0] = cpu_to_le32(val);
280 
281 	val = FIELD_PREP(MT_TXD1_HDR_FORMAT, MT_HDR_FORMAT_CMD);
282 	txd[1] = cpu_to_le32(val);
283 
284 	if (cmd & __MCU_CMD_FIELD_UNI) {
285 		uni_txd = (struct mt76_connac2_mcu_uni_txd *)txd;
286 		uni_txd->len = cpu_to_le16(skb->len - sizeof(uni_txd->txd));
287 		uni_txd->cid = cpu_to_le16(mcu_cmd);
288 		uni_txd->s2d_index = MCU_S2D_H2CN;
289 		uni_txd->pkt_type = MCU_PKT_ID;
290 		uni_txd->seq = seq;
291 
292 		if (cmd & __MCU_CMD_FIELD_QUERY)
293 			uni_txd->option = MCU_CMD_UNI_QUERY_ACK;
294 		else
295 			uni_txd->option = MCU_CMD_UNI_EXT_ACK;
296 
297 		if ((cmd & __MCU_CMD_FIELD_WA) && (cmd & __MCU_CMD_FIELD_WM))
298 			uni_txd->s2d_index = MCU_S2D_H2CN;
299 		else if (cmd & __MCU_CMD_FIELD_WA)
300 			uni_txd->s2d_index = MCU_S2D_H2C;
301 		else if (cmd & __MCU_CMD_FIELD_WM)
302 			uni_txd->s2d_index = MCU_S2D_H2N;
303 
304 		goto exit;
305 	}
306 
307 	mcu_txd = (struct mt76_connac2_mcu_txd *)txd;
308 	mcu_txd->len = cpu_to_le16(skb->len - sizeof(mcu_txd->txd));
309 	mcu_txd->pq_id = cpu_to_le16(MCU_PQ_ID(MT_TX_PORT_IDX_MCU,
310 					       MT_TX_MCU_PORT_RX_Q0));
311 	mcu_txd->pkt_type = MCU_PKT_ID;
312 	mcu_txd->seq = seq;
313 
314 	mcu_txd->cid = FIELD_GET(__MCU_CMD_FIELD_ID, cmd);
315 	mcu_txd->set_query = MCU_Q_NA;
316 	mcu_txd->ext_cid = FIELD_GET(__MCU_CMD_FIELD_EXT_ID, cmd);
317 	if (mcu_txd->ext_cid) {
318 		mcu_txd->ext_cid_ack = 1;
319 
320 		if (cmd & __MCU_CMD_FIELD_QUERY)
321 			mcu_txd->set_query = MCU_Q_QUERY;
322 		else
323 			mcu_txd->set_query = MCU_Q_SET;
324 	}
325 
326 	if (cmd & __MCU_CMD_FIELD_WA)
327 		mcu_txd->s2d_index = MCU_S2D_H2C;
328 	else
329 		mcu_txd->s2d_index = MCU_S2D_H2N;
330 
331 exit:
332 	if (wait_seq)
333 		*wait_seq = seq;
334 
335 	return mt76_tx_queue_skb_raw(dev, mdev->q_mcu[qid], skb, 0);
336 }
337 
mt7996_mcu_wa_cmd(struct mt7996_dev * dev,int cmd,u32 a1,u32 a2,u32 a3)338 int mt7996_mcu_wa_cmd(struct mt7996_dev *dev, int cmd, u32 a1, u32 a2, u32 a3)
339 {
340 	struct {
341 		u8 _rsv[4];
342 
343 		__le16 tag;
344 		__le16 len;
345 		__le32 args[3];
346 	} __packed req = {
347 		.args = {
348 			cpu_to_le32(a1),
349 			cpu_to_le32(a2),
350 			cpu_to_le32(a3),
351 		},
352 	};
353 
354 	if (mt7996_has_wa(dev))
355 		return mt76_mcu_send_msg(&dev->mt76, cmd, &req.args,
356 					 sizeof(req.args), false);
357 
358 	req.tag = cpu_to_le16(cmd == MCU_WA_PARAM_CMD(QUERY) ? UNI_CMD_SDO_QUERY :
359 							       UNI_CMD_SDO_SET);
360 	req.len = cpu_to_le16(sizeof(req) - 4);
361 
362 	return mt76_mcu_send_msg(&dev->mt76, MCU_WA_UNI_CMD(SDO), &req,
363 				 sizeof(req), false);
364 }
365 
366 static void
mt7996_mcu_csa_finish(void * priv,u8 * mac,struct ieee80211_vif * vif)367 mt7996_mcu_csa_finish(void *priv, u8 *mac, struct ieee80211_vif *vif)
368 {
369 	if (!vif->bss_conf.csa_active || vif->type == NL80211_IFTYPE_STATION)
370 		return;
371 
372 	ieee80211_csa_finish(vif, 0);
373 }
374 
375 static void
mt7996_mcu_rx_radar_detected(struct mt7996_dev * dev,struct sk_buff * skb)376 mt7996_mcu_rx_radar_detected(struct mt7996_dev *dev, struct sk_buff *skb)
377 {
378 	struct mt76_phy *mphy = &dev->mt76.phy;
379 	struct mt7996_mcu_rdd_report *r;
380 
381 	r = (struct mt7996_mcu_rdd_report *)skb->data;
382 
383 	switch (r->rdd_idx) {
384 	case MT_RDD_IDX_BAND2:
385 		mphy = dev->mt76.phys[MT_BAND2];
386 		break;
387 	case MT_RDD_IDX_BAND1:
388 		mphy = dev->mt76.phys[MT_BAND1];
389 		break;
390 	case MT_RDD_IDX_BACKGROUND:
391 		if (!dev->rdd2_phy)
392 			return;
393 		mphy = dev->rdd2_phy->mt76;
394 		break;
395 	default:
396 		dev_err(dev->mt76.dev, "Unknown RDD idx %d\n", r->rdd_idx);
397 		return;
398 	}
399 
400 	if (!mphy)
401 		return;
402 
403 	if (r->rdd_idx == MT_RDD_IDX_BACKGROUND)
404 		cfg80211_background_radar_event(mphy->hw->wiphy,
405 						&dev->rdd2_chandef,
406 						GFP_ATOMIC);
407 	else
408 		ieee80211_radar_detected(mphy->hw, NULL);
409 	dev->hw_pattern++;
410 }
411 
412 static void
mt7996_mcu_rx_log_message(struct mt7996_dev * dev,struct sk_buff * skb)413 mt7996_mcu_rx_log_message(struct mt7996_dev *dev, struct sk_buff *skb)
414 {
415 #define UNI_EVENT_FW_LOG_FORMAT 0
416 	struct mt7996_mcu_rxd *rxd = (struct mt7996_mcu_rxd *)skb->data;
417 	const char *data = (char *)&rxd[1] + 4, *type;
418 	struct tlv *tlv = (struct tlv *)data;
419 	int len;
420 
421 	if (!(rxd->option & MCU_UNI_CMD_EVENT)) {
422 		len = skb->len - sizeof(*rxd);
423 		data = (char *)&rxd[1];
424 		goto out;
425 	}
426 
427 	if (le16_to_cpu(tlv->tag) != UNI_EVENT_FW_LOG_FORMAT)
428 		return;
429 
430 	data += sizeof(*tlv) + 4;
431 	len = le16_to_cpu(tlv->len) - sizeof(*tlv) - 4;
432 
433 out:
434 	switch (rxd->s2d_index) {
435 	case 0:
436 		if (mt7996_debugfs_rx_log(dev, data, len))
437 			return;
438 
439 		type = "WM";
440 		break;
441 	case 2:
442 		type = "WA";
443 		break;
444 	default:
445 		type = "unknown";
446 		break;
447 	}
448 
449 	wiphy_info(mt76_hw(dev)->wiphy, "%s: %.*s", type, len, data);
450 }
451 
452 static void
mt7996_mcu_cca_finish(void * priv,u8 * mac,struct ieee80211_vif * vif)453 mt7996_mcu_cca_finish(void *priv, u8 *mac, struct ieee80211_vif *vif)
454 {
455 	if (!vif->bss_conf.color_change_active || vif->type == NL80211_IFTYPE_STATION)
456 		return;
457 
458 	ieee80211_color_change_finish(vif, 0);
459 }
460 
461 static void
mt7996_mcu_ie_countdown(struct mt7996_dev * dev,struct sk_buff * skb)462 mt7996_mcu_ie_countdown(struct mt7996_dev *dev, struct sk_buff *skb)
463 {
464 #define UNI_EVENT_IE_COUNTDOWN_CSA 0
465 #define UNI_EVENT_IE_COUNTDOWN_BCC 1
466 	struct header {
467 		u8 band;
468 		u8 rsv[3];
469 	};
470 	struct mt76_phy *mphy = &dev->mt76.phy;
471 	struct mt7996_mcu_rxd *rxd = (struct mt7996_mcu_rxd *)skb->data;
472 	const char *data = (char *)&rxd[1], *tail;
473 	struct header *hdr = (struct header *)data;
474 	struct tlv *tlv = (struct tlv *)(data + 4);
475 
476 	if (hdr->band >= ARRAY_SIZE(dev->mt76.phys))
477 		return;
478 
479 	if (hdr->band && dev->mt76.phys[hdr->band])
480 		mphy = dev->mt76.phys[hdr->band];
481 
482 	tail = skb->data + skb->len;
483 	data += sizeof(struct header);
484 	while (data + sizeof(struct tlv) < tail && le16_to_cpu(tlv->len)) {
485 		switch (le16_to_cpu(tlv->tag)) {
486 		case UNI_EVENT_IE_COUNTDOWN_CSA:
487 			ieee80211_iterate_active_interfaces_atomic(mphy->hw,
488 					IEEE80211_IFACE_ITER_RESUME_ALL,
489 					mt7996_mcu_csa_finish, mphy->hw);
490 			break;
491 		case UNI_EVENT_IE_COUNTDOWN_BCC:
492 			ieee80211_iterate_active_interfaces_atomic(mphy->hw,
493 					IEEE80211_IFACE_ITER_RESUME_ALL,
494 					mt7996_mcu_cca_finish, mphy->hw);
495 			break;
496 		}
497 
498 		data += le16_to_cpu(tlv->len);
499 		tlv = (struct tlv *)data;
500 	}
501 }
502 
503 static int
mt7996_mcu_update_tx_gi(struct rate_info * rate,struct all_sta_trx_rate * mcu_rate)504 mt7996_mcu_update_tx_gi(struct rate_info *rate, struct all_sta_trx_rate *mcu_rate)
505 {
506 	switch (mcu_rate->tx_mode) {
507 	case MT_PHY_TYPE_CCK:
508 	case MT_PHY_TYPE_OFDM:
509 		break;
510 	case MT_PHY_TYPE_HT:
511 	case MT_PHY_TYPE_HT_GF:
512 	case MT_PHY_TYPE_VHT:
513 		if (mcu_rate->tx_gi)
514 			rate->flags |= RATE_INFO_FLAGS_SHORT_GI;
515 		else
516 			rate->flags &= ~RATE_INFO_FLAGS_SHORT_GI;
517 		break;
518 	case MT_PHY_TYPE_HE_SU:
519 	case MT_PHY_TYPE_HE_EXT_SU:
520 	case MT_PHY_TYPE_HE_TB:
521 	case MT_PHY_TYPE_HE_MU:
522 		if (mcu_rate->tx_gi > NL80211_RATE_INFO_HE_GI_3_2)
523 			return -EINVAL;
524 		rate->he_gi = mcu_rate->tx_gi;
525 		break;
526 	case MT_PHY_TYPE_EHT_SU:
527 	case MT_PHY_TYPE_EHT_TRIG:
528 	case MT_PHY_TYPE_EHT_MU:
529 		if (mcu_rate->tx_gi > NL80211_RATE_INFO_EHT_GI_3_2)
530 			return -EINVAL;
531 		rate->eht_gi = mcu_rate->tx_gi;
532 		break;
533 	default:
534 		return -EINVAL;
535 	}
536 
537 	return 0;
538 }
539 
540 static void
mt7996_mcu_rx_all_sta_info_event(struct mt7996_dev * dev,struct sk_buff * skb)541 mt7996_mcu_rx_all_sta_info_event(struct mt7996_dev *dev, struct sk_buff *skb)
542 {
543 	struct mt7996_mcu_all_sta_info_event *res;
544 	u16 i;
545 
546 	skb_pull(skb, sizeof(struct mt7996_mcu_rxd));
547 
548 	res = (struct mt7996_mcu_all_sta_info_event *)skb->data;
549 
550 	for (i = 0; i < le16_to_cpu(res->sta_num); i++) {
551 		u8 ac;
552 		u16 wlan_idx;
553 		struct mt76_wcid *wcid;
554 
555 		switch (le16_to_cpu(res->tag)) {
556 		case UNI_ALL_STA_TXRX_RATE:
557 			wlan_idx = le16_to_cpu(res->rate[i].wlan_idx);
558 			wcid = mt76_wcid_ptr(dev, wlan_idx);
559 
560 			if (!wcid)
561 				break;
562 
563 			if (mt7996_mcu_update_tx_gi(&wcid->rate, &res->rate[i]))
564 				dev_err(dev->mt76.dev, "Failed to update TX GI\n");
565 			break;
566 		case UNI_ALL_STA_TXRX_ADM_STAT:
567 			wlan_idx = le16_to_cpu(res->adm_stat[i].wlan_idx);
568 			wcid = mt76_wcid_ptr(dev, wlan_idx);
569 
570 			if (!wcid)
571 				break;
572 
573 			for (ac = 0; ac < IEEE80211_NUM_ACS; ac++) {
574 				wcid->stats.tx_bytes +=
575 					le32_to_cpu(res->adm_stat[i].tx_bytes[ac]);
576 				wcid->stats.rx_bytes +=
577 					le32_to_cpu(res->adm_stat[i].rx_bytes[ac]);
578 			}
579 			break;
580 		case UNI_ALL_STA_TXRX_MSDU_COUNT:
581 			wlan_idx = le16_to_cpu(res->msdu_cnt[i].wlan_idx);
582 			wcid = mt76_wcid_ptr(dev, wlan_idx);
583 
584 			if (!wcid)
585 				break;
586 
587 			wcid->stats.tx_packets +=
588 				le32_to_cpu(res->msdu_cnt[i].tx_msdu_cnt);
589 			wcid->stats.rx_packets +=
590 				le32_to_cpu(res->msdu_cnt[i].rx_msdu_cnt);
591 			break;
592 		default:
593 			break;
594 		}
595 	}
596 }
597 
598 static void
mt7996_mcu_rx_thermal_notify(struct mt7996_dev * dev,struct sk_buff * skb)599 mt7996_mcu_rx_thermal_notify(struct mt7996_dev *dev, struct sk_buff *skb)
600 {
601 #define THERMAL_NOTIFY_TAG 0x4
602 #define THERMAL_NOTIFY 0x2
603 	struct mt76_phy *mphy = &dev->mt76.phy;
604 	struct mt7996_mcu_thermal_notify *n;
605 	struct mt7996_phy *phy;
606 
607 	n = (struct mt7996_mcu_thermal_notify *)skb->data;
608 
609 	if (le16_to_cpu(n->tag) != THERMAL_NOTIFY_TAG)
610 		return;
611 
612 	if (n->event_id != THERMAL_NOTIFY)
613 		return;
614 
615 	if (n->band_idx > MT_BAND2)
616 		return;
617 
618 	mphy = dev->mt76.phys[n->band_idx];
619 	if (!mphy)
620 		return;
621 
622 	phy = (struct mt7996_phy *)mphy->priv;
623 	phy->throttle_state = n->duty_percent;
624 }
625 
626 static void
mt7996_mcu_rx_ext_event(struct mt7996_dev * dev,struct sk_buff * skb)627 mt7996_mcu_rx_ext_event(struct mt7996_dev *dev, struct sk_buff *skb)
628 {
629 	struct mt7996_mcu_rxd *rxd = (struct mt7996_mcu_rxd *)skb->data;
630 
631 	switch (rxd->ext_eid) {
632 	case MCU_EXT_EVENT_FW_LOG_2_HOST:
633 		mt7996_mcu_rx_log_message(dev, skb);
634 		break;
635 	default:
636 		break;
637 	}
638 }
639 
640 static void
mt7996_mcu_rx_unsolicited_event(struct mt7996_dev * dev,struct sk_buff * skb)641 mt7996_mcu_rx_unsolicited_event(struct mt7996_dev *dev, struct sk_buff *skb)
642 {
643 	struct mt7996_mcu_rxd *rxd = (struct mt7996_mcu_rxd *)skb->data;
644 
645 	switch (rxd->eid) {
646 	case MCU_EVENT_EXT:
647 		mt7996_mcu_rx_ext_event(dev, skb);
648 		break;
649 	case MCU_UNI_EVENT_THERMAL:
650 		mt7996_mcu_rx_thermal_notify(dev, skb);
651 		break;
652 	default:
653 		break;
654 	}
655 	dev_kfree_skb(skb);
656 }
657 
658 static void
mt7996_mcu_wed_rro_event(struct mt7996_dev * dev,struct sk_buff * skb)659 mt7996_mcu_wed_rro_event(struct mt7996_dev *dev, struct sk_buff *skb)
660 {
661 	struct mt7996_mcu_wed_rro_event *event = (void *)skb->data;
662 
663 	if (!dev->has_rro)
664 		return;
665 
666 	skb_pull(skb, sizeof(struct mt7996_mcu_rxd) + 4);
667 
668 	switch (le16_to_cpu(event->tag)) {
669 	case UNI_WED_RRO_BA_SESSION_STATUS: {
670 		struct mt7996_mcu_wed_rro_ba_event *e;
671 
672 		while (skb->len >= sizeof(*e)) {
673 			struct mt76_rx_tid *tid;
674 			struct mt76_wcid *wcid;
675 			u16 idx;
676 
677 			e = (void *)skb->data;
678 			idx = le16_to_cpu(e->wlan_id);
679 			wcid = mt76_wcid_ptr(dev, idx);
680 			if (!wcid || !wcid->sta)
681 				break;
682 
683 			if (e->tid >= ARRAY_SIZE(wcid->aggr))
684 				break;
685 
686 			tid = rcu_dereference(wcid->aggr[e->tid]);
687 			if (!tid)
688 				break;
689 
690 			tid->id = le16_to_cpu(e->id);
691 			skb_pull(skb, sizeof(*e));
692 		}
693 		break;
694 	}
695 	case UNI_WED_RRO_BA_SESSION_DELETE: {
696 		struct mt7996_mcu_wed_rro_ba_delete_event *e;
697 
698 		while (skb->len >= sizeof(*e)) {
699 			struct mt7996_wed_rro_session_id *session;
700 
701 			e = (void *)skb->data;
702 			session = kzalloc(sizeof(*session), GFP_ATOMIC);
703 			if (!session)
704 				break;
705 
706 			session->id = le16_to_cpu(e->session_id);
707 
708 			spin_lock_bh(&dev->wed_rro.lock);
709 			list_add_tail(&session->list, &dev->wed_rro.poll_list);
710 			spin_unlock_bh(&dev->wed_rro.lock);
711 
712 			ieee80211_queue_work(mt76_hw(dev), &dev->wed_rro.work);
713 			skb_pull(skb, sizeof(*e));
714 		}
715 		break;
716 	}
717 	default:
718 		break;
719 	}
720 }
721 
722 static void
mt7996_mcu_uni_rx_unsolicited_event(struct mt7996_dev * dev,struct sk_buff * skb)723 mt7996_mcu_uni_rx_unsolicited_event(struct mt7996_dev *dev, struct sk_buff *skb)
724 {
725 	struct mt7996_mcu_rxd *rxd = (struct mt7996_mcu_rxd *)skb->data;
726 
727 	switch (rxd->eid) {
728 	case MCU_UNI_EVENT_FW_LOG_2_HOST:
729 		mt7996_mcu_rx_log_message(dev, skb);
730 		break;
731 	case MCU_UNI_EVENT_IE_COUNTDOWN:
732 		mt7996_mcu_ie_countdown(dev, skb);
733 		break;
734 	case MCU_UNI_EVENT_RDD_REPORT:
735 		mt7996_mcu_rx_radar_detected(dev, skb);
736 		break;
737 	case MCU_UNI_EVENT_ALL_STA_INFO:
738 		mt7996_mcu_rx_all_sta_info_event(dev, skb);
739 		break;
740 	case MCU_UNI_EVENT_WED_RRO:
741 		mt7996_mcu_wed_rro_event(dev, skb);
742 		break;
743 	default:
744 		break;
745 	}
746 	dev_kfree_skb(skb);
747 }
748 
mt7996_mcu_rx_event(struct mt7996_dev * dev,struct sk_buff * skb)749 void mt7996_mcu_rx_event(struct mt7996_dev *dev, struct sk_buff *skb)
750 {
751 	struct mt7996_mcu_rxd *rxd = (struct mt7996_mcu_rxd *)skb->data;
752 
753 	if (rxd->option & MCU_UNI_CMD_UNSOLICITED_EVENT) {
754 		mt7996_mcu_uni_rx_unsolicited_event(dev, skb);
755 		return;
756 	}
757 
758 	/* WA still uses legacy event*/
759 	if (rxd->ext_eid == MCU_EXT_EVENT_FW_LOG_2_HOST ||
760 	    !rxd->seq)
761 		mt7996_mcu_rx_unsolicited_event(dev, skb);
762 	else
763 		mt76_mcu_rx_event(&dev->mt76, skb);
764 }
765 
766 static struct tlv *
mt7996_mcu_add_uni_tlv(struct sk_buff * skb,u16 tag,u16 len)767 mt7996_mcu_add_uni_tlv(struct sk_buff *skb, u16 tag, u16 len)
768 {
769 	struct tlv *ptlv = skb_put_zero(skb, len);
770 
771 	ptlv->tag = cpu_to_le16(tag);
772 	ptlv->len = cpu_to_le16(len);
773 
774 	return ptlv;
775 }
776 
777 static void
mt7996_mcu_bss_rfch_tlv(struct sk_buff * skb,struct mt7996_phy * phy)778 mt7996_mcu_bss_rfch_tlv(struct sk_buff *skb, struct mt7996_phy *phy)
779 {
780 	static const u8 rlm_ch_band[] = {
781 		[NL80211_BAND_2GHZ] = 1,
782 		[NL80211_BAND_5GHZ] = 2,
783 		[NL80211_BAND_6GHZ] = 3,
784 	};
785 	struct cfg80211_chan_def *chandef = &phy->mt76->chandef;
786 	struct bss_rlm_tlv *ch;
787 	struct tlv *tlv;
788 	int freq1 = chandef->center_freq1;
789 
790 	tlv = mt7996_mcu_add_uni_tlv(skb, UNI_BSS_INFO_RLM, sizeof(*ch));
791 
792 	ch = (struct bss_rlm_tlv *)tlv;
793 	ch->control_channel = chandef->chan->hw_value;
794 	ch->center_chan = ieee80211_frequency_to_channel(freq1);
795 	ch->bw = mt76_connac_chan_bw(chandef);
796 	ch->tx_streams = hweight8(phy->mt76->antenna_mask);
797 	ch->rx_streams = hweight8(phy->mt76->antenna_mask);
798 	ch->band = rlm_ch_band[chandef->chan->band];
799 
800 	if (chandef->width == NL80211_CHAN_WIDTH_80P80) {
801 		int freq2 = chandef->center_freq2;
802 
803 		ch->center_chan2 = ieee80211_frequency_to_channel(freq2);
804 	}
805 }
806 
807 static void
mt7996_mcu_bss_ra_tlv(struct sk_buff * skb,struct mt7996_phy * phy)808 mt7996_mcu_bss_ra_tlv(struct sk_buff *skb, struct mt7996_phy *phy)
809 {
810 	struct bss_ra_tlv *ra;
811 	struct tlv *tlv;
812 
813 	tlv = mt7996_mcu_add_uni_tlv(skb, UNI_BSS_INFO_RA, sizeof(*ra));
814 
815 	ra = (struct bss_ra_tlv *)tlv;
816 	ra->short_preamble = true;
817 }
818 
819 static void
mt7996_mcu_bss_he_tlv(struct sk_buff * skb,struct ieee80211_vif * vif,struct ieee80211_bss_conf * link_conf,struct mt7996_phy * phy)820 mt7996_mcu_bss_he_tlv(struct sk_buff *skb, struct ieee80211_vif *vif,
821 		      struct ieee80211_bss_conf *link_conf,
822 		      struct mt7996_phy *phy)
823 {
824 #define DEFAULT_HE_PE_DURATION		4
825 #define DEFAULT_HE_DURATION_RTS_THRES	1023
826 	const struct ieee80211_sta_he_cap *cap;
827 	struct bss_info_uni_he *he;
828 	struct tlv *tlv;
829 
830 	cap = mt76_connac_get_he_phy_cap(phy->mt76, vif);
831 
832 	tlv = mt7996_mcu_add_uni_tlv(skb, UNI_BSS_INFO_HE_BASIC, sizeof(*he));
833 
834 	he = (struct bss_info_uni_he *)tlv;
835 	he->he_pe_duration = link_conf->htc_trig_based_pkt_ext;
836 	if (!he->he_pe_duration)
837 		he->he_pe_duration = DEFAULT_HE_PE_DURATION;
838 
839 	he->he_rts_thres = cpu_to_le16(link_conf->frame_time_rts_th);
840 	if (!he->he_rts_thres)
841 		he->he_rts_thres = cpu_to_le16(DEFAULT_HE_DURATION_RTS_THRES);
842 
843 	he->max_nss_mcs[CMD_HE_MCS_BW80] = cap->he_mcs_nss_supp.tx_mcs_80;
844 	he->max_nss_mcs[CMD_HE_MCS_BW160] = cap->he_mcs_nss_supp.tx_mcs_160;
845 	he->max_nss_mcs[CMD_HE_MCS_BW8080] = cap->he_mcs_nss_supp.tx_mcs_80p80;
846 }
847 
848 static void
mt7996_mcu_bss_mbssid_tlv(struct sk_buff * skb,struct ieee80211_bss_conf * link_conf,bool enable)849 mt7996_mcu_bss_mbssid_tlv(struct sk_buff *skb, struct ieee80211_bss_conf *link_conf,
850 			  bool enable)
851 {
852 	struct bss_info_uni_mbssid *mbssid;
853 	struct tlv *tlv;
854 
855 	if (!link_conf->bssid_indicator && enable)
856 		return;
857 
858 	tlv = mt7996_mcu_add_uni_tlv(skb, UNI_BSS_INFO_11V_MBSSID, sizeof(*mbssid));
859 
860 	mbssid = (struct bss_info_uni_mbssid *)tlv;
861 
862 	if (enable) {
863 		mbssid->max_indicator = link_conf->bssid_indicator;
864 		mbssid->mbss_idx = link_conf->bssid_index;
865 		mbssid->tx_bss_omac_idx = 0;
866 	}
867 }
868 
869 static void
mt7996_mcu_bss_bmc_tlv(struct sk_buff * skb,struct mt76_vif_link * mlink,struct mt7996_phy * phy)870 mt7996_mcu_bss_bmc_tlv(struct sk_buff *skb, struct mt76_vif_link *mlink,
871 		       struct mt7996_phy *phy)
872 {
873 	struct bss_rate_tlv *bmc;
874 	struct cfg80211_chan_def *chandef = &phy->mt76->chandef;
875 	enum nl80211_band band = chandef->chan->band;
876 	struct tlv *tlv;
877 	u8 idx = mlink->mcast_rates_idx ?
878 		 mlink->mcast_rates_idx : mlink->basic_rates_idx;
879 
880 	tlv = mt7996_mcu_add_uni_tlv(skb, UNI_BSS_INFO_RATE, sizeof(*bmc));
881 
882 	bmc = (struct bss_rate_tlv *)tlv;
883 
884 	bmc->short_preamble = (band == NL80211_BAND_2GHZ);
885 	bmc->bc_fixed_rate = idx;
886 	bmc->mc_fixed_rate = idx;
887 }
888 
889 static void
mt7996_mcu_bss_txcmd_tlv(struct sk_buff * skb,bool en)890 mt7996_mcu_bss_txcmd_tlv(struct sk_buff *skb, bool en)
891 {
892 	struct bss_txcmd_tlv *txcmd;
893 	struct tlv *tlv;
894 
895 	tlv = mt7996_mcu_add_uni_tlv(skb, UNI_BSS_INFO_TXCMD, sizeof(*txcmd));
896 
897 	txcmd = (struct bss_txcmd_tlv *)tlv;
898 	txcmd->txcmd_mode = en;
899 }
900 
901 static void
mt7996_mcu_bss_mld_tlv(struct sk_buff * skb,struct mt76_vif_link * mlink)902 mt7996_mcu_bss_mld_tlv(struct sk_buff *skb, struct mt76_vif_link *mlink)
903 {
904 	struct bss_mld_tlv *mld;
905 	struct tlv *tlv;
906 
907 	tlv = mt7996_mcu_add_uni_tlv(skb, UNI_BSS_INFO_MLD, sizeof(*mld));
908 
909 	mld = (struct bss_mld_tlv *)tlv;
910 	mld->group_mld_id = 0xff;
911 	mld->own_mld_id = mlink->idx;
912 	mld->remap_idx = 0xff;
913 }
914 
915 static void
mt7996_mcu_bss_sec_tlv(struct sk_buff * skb,struct mt76_vif_link * mlink)916 mt7996_mcu_bss_sec_tlv(struct sk_buff *skb, struct mt76_vif_link *mlink)
917 {
918 	struct bss_sec_tlv *sec;
919 	struct tlv *tlv;
920 
921 	tlv = mt7996_mcu_add_uni_tlv(skb, UNI_BSS_INFO_SEC, sizeof(*sec));
922 
923 	sec = (struct bss_sec_tlv *)tlv;
924 	sec->cipher = mlink->cipher;
925 }
926 
927 static int
mt7996_mcu_muar_config(struct mt7996_dev * dev,struct mt76_vif_link * mlink,const u8 * addr,bool bssid,bool enable)928 mt7996_mcu_muar_config(struct mt7996_dev *dev, struct mt76_vif_link *mlink,
929 		       const u8 *addr, bool bssid, bool enable)
930 {
931 #define UNI_MUAR_ENTRY 2
932 	u32 idx = mlink->omac_idx - REPEATER_BSSID_START;
933 	struct {
934 		struct {
935 			u8 band;
936 			u8 __rsv[3];
937 		} hdr;
938 
939 		__le16 tag;
940 		__le16 len;
941 
942 		bool smesh;
943 		u8 bssid;
944 		u8 index;
945 		u8 entry_add;
946 		u8 addr[ETH_ALEN];
947 		u8 __rsv[2];
948 	} __packed req = {
949 		.hdr.band = mlink->band_idx,
950 		.tag = cpu_to_le16(UNI_MUAR_ENTRY),
951 		.len = cpu_to_le16(sizeof(req) - sizeof(req.hdr)),
952 		.smesh = false,
953 		.index = idx * 2 + bssid,
954 		.entry_add = true,
955 	};
956 
957 	if (enable)
958 		memcpy(req.addr, addr, ETH_ALEN);
959 
960 	return mt76_mcu_send_msg(&dev->mt76, MCU_WM_UNI_CMD(REPT_MUAR), &req,
961 				 sizeof(req), true);
962 }
963 
964 static void
mt7996_mcu_bss_ifs_timing_tlv(struct sk_buff * skb,struct mt7996_phy * phy)965 mt7996_mcu_bss_ifs_timing_tlv(struct sk_buff *skb, struct mt7996_phy *phy)
966 {
967 	struct bss_ifs_time_tlv *ifs_time;
968 	struct tlv *tlv;
969 	bool is_2ghz = phy->mt76->chandef.chan->band == NL80211_BAND_2GHZ;
970 
971 	tlv = mt7996_mcu_add_uni_tlv(skb, UNI_BSS_INFO_IFS_TIME, sizeof(*ifs_time));
972 
973 	ifs_time = (struct bss_ifs_time_tlv *)tlv;
974 	ifs_time->slot_valid = true;
975 	ifs_time->sifs_valid = true;
976 	ifs_time->rifs_valid = true;
977 	ifs_time->eifs_valid = true;
978 
979 	ifs_time->slot_time = cpu_to_le16(phy->slottime);
980 	ifs_time->sifs_time = cpu_to_le16(10);
981 	ifs_time->rifs_time = cpu_to_le16(2);
982 	ifs_time->eifs_time = cpu_to_le16(is_2ghz ? 78 : 84);
983 
984 	if (is_2ghz) {
985 		ifs_time->eifs_cck_valid = true;
986 		ifs_time->eifs_cck_time = cpu_to_le16(314);
987 	}
988 }
989 
990 static int
mt7996_mcu_bss_basic_tlv(struct sk_buff * skb,struct ieee80211_vif * vif,struct ieee80211_bss_conf * link_conf,struct mt76_vif_link * mvif,struct mt76_phy * phy,u16 wlan_idx,bool enable)991 mt7996_mcu_bss_basic_tlv(struct sk_buff *skb,
992 			 struct ieee80211_vif *vif,
993 			 struct ieee80211_bss_conf *link_conf,
994 			 struct mt76_vif_link *mvif,
995 			 struct mt76_phy *phy, u16 wlan_idx,
996 			 bool enable)
997 {
998 	struct cfg80211_chan_def *chandef = &phy->chandef;
999 	struct mt76_connac_bss_basic_tlv *bss;
1000 	u32 type = CONNECTION_INFRA_AP;
1001 	u16 sta_wlan_idx = wlan_idx;
1002 	struct ieee80211_sta *sta;
1003 	struct tlv *tlv;
1004 	int idx;
1005 
1006 	switch (vif->type) {
1007 	case NL80211_IFTYPE_MESH_POINT:
1008 	case NL80211_IFTYPE_AP:
1009 	case NL80211_IFTYPE_MONITOR:
1010 		break;
1011 	case NL80211_IFTYPE_STATION:
1012 		if (enable) {
1013 			rcu_read_lock();
1014 			sta = ieee80211_find_sta(vif, vif->bss_conf.bssid);
1015 			/* TODO: enable BSS_INFO_UAPSD & BSS_INFO_PM */
1016 			if (sta) {
1017 				struct mt76_wcid *wcid;
1018 
1019 				wcid = (struct mt76_wcid *)sta->drv_priv;
1020 				sta_wlan_idx = wcid->idx;
1021 			}
1022 			rcu_read_unlock();
1023 		}
1024 		type = CONNECTION_INFRA_STA;
1025 		break;
1026 	case NL80211_IFTYPE_ADHOC:
1027 		type = CONNECTION_IBSS_ADHOC;
1028 		break;
1029 	default:
1030 		WARN_ON(1);
1031 		break;
1032 	}
1033 
1034 	tlv = mt7996_mcu_add_uni_tlv(skb, UNI_BSS_INFO_BASIC, sizeof(*bss));
1035 
1036 	bss = (struct mt76_connac_bss_basic_tlv *)tlv;
1037 	bss->bcn_interval = cpu_to_le16(link_conf->beacon_int);
1038 	bss->dtim_period = link_conf->dtim_period;
1039 	bss->bmc_tx_wlan_idx = cpu_to_le16(wlan_idx);
1040 	bss->sta_idx = cpu_to_le16(sta_wlan_idx);
1041 	bss->conn_type = cpu_to_le32(type);
1042 	bss->omac_idx = mvif->omac_idx;
1043 	bss->band_idx = mvif->band_idx;
1044 	bss->wmm_idx = mvif->wmm_idx;
1045 	bss->conn_state = !enable;
1046 	bss->active = enable;
1047 
1048 	idx = mvif->omac_idx > EXT_BSSID_START ? HW_BSSID_0 : mvif->omac_idx;
1049 	bss->hw_bss_idx = idx;
1050 
1051 	if (vif->type == NL80211_IFTYPE_MONITOR) {
1052 		memcpy(bss->bssid, phy->macaddr, ETH_ALEN);
1053 		return 0;
1054 	}
1055 
1056 	memcpy(bss->bssid, link_conf->bssid, ETH_ALEN);
1057 	bss->bcn_interval = cpu_to_le16(link_conf->beacon_int);
1058 	bss->dtim_period = vif->bss_conf.dtim_period;
1059 	bss->phymode = mt76_connac_get_phy_mode(phy, vif,
1060 						chandef->chan->band, NULL);
1061 	bss->phymode_ext = mt76_connac_get_phy_mode_ext(phy, &vif->bss_conf,
1062 							chandef->chan->band);
1063 
1064 	return 0;
1065 }
1066 
1067 static struct sk_buff *
__mt7996_mcu_alloc_bss_req(struct mt76_dev * dev,struct mt76_vif_link * mvif,int len)1068 __mt7996_mcu_alloc_bss_req(struct mt76_dev *dev, struct mt76_vif_link *mvif, int len)
1069 {
1070 	struct bss_req_hdr hdr = {
1071 		.bss_idx = mvif->idx,
1072 	};
1073 	struct sk_buff *skb;
1074 
1075 	skb = mt76_mcu_msg_alloc(dev, NULL, len);
1076 	if (!skb)
1077 		return ERR_PTR(-ENOMEM);
1078 
1079 	skb_put_data(skb, &hdr, sizeof(hdr));
1080 
1081 	return skb;
1082 }
1083 
mt7996_mcu_add_bss_info(struct mt7996_phy * phy,struct ieee80211_vif * vif,struct ieee80211_bss_conf * link_conf,struct mt76_vif_link * mlink,struct mt7996_sta_link * msta_link,int enable)1084 int mt7996_mcu_add_bss_info(struct mt7996_phy *phy, struct ieee80211_vif *vif,
1085 			    struct ieee80211_bss_conf *link_conf,
1086 			    struct mt76_vif_link *mlink,
1087 			    struct mt7996_sta_link *msta_link, int enable)
1088 {
1089 	struct mt7996_dev *dev = phy->dev;
1090 	struct sk_buff *skb;
1091 
1092 	if (mlink->omac_idx >= REPEATER_BSSID_START) {
1093 		mt7996_mcu_muar_config(dev, mlink, link_conf->addr, false, enable);
1094 		mt7996_mcu_muar_config(dev, mlink, link_conf->bssid, true, enable);
1095 	}
1096 
1097 	skb = __mt7996_mcu_alloc_bss_req(&dev->mt76, mlink,
1098 					 MT7996_BSS_UPDATE_MAX_SIZE);
1099 	if (IS_ERR(skb))
1100 		return PTR_ERR(skb);
1101 
1102 	/* bss_basic must be first */
1103 	mt7996_mcu_bss_basic_tlv(skb, vif, link_conf, mlink, phy->mt76,
1104 				 msta_link->wcid.idx, enable);
1105 	mt7996_mcu_bss_sec_tlv(skb, mlink);
1106 
1107 	if (vif->type == NL80211_IFTYPE_MONITOR)
1108 		goto out;
1109 
1110 	if (enable) {
1111 		mt7996_mcu_bss_rfch_tlv(skb, phy);
1112 		mt7996_mcu_bss_bmc_tlv(skb, mlink, phy);
1113 		mt7996_mcu_bss_ra_tlv(skb, phy);
1114 		mt7996_mcu_bss_txcmd_tlv(skb, true);
1115 		mt7996_mcu_bss_ifs_timing_tlv(skb, phy);
1116 
1117 		if (vif->bss_conf.he_support)
1118 			mt7996_mcu_bss_he_tlv(skb, vif, link_conf, phy);
1119 
1120 		/* this tag is necessary no matter if the vif is MLD */
1121 		mt7996_mcu_bss_mld_tlv(skb, mlink);
1122 	}
1123 
1124 	mt7996_mcu_bss_mbssid_tlv(skb, link_conf, enable);
1125 
1126 out:
1127 	return mt76_mcu_skb_send_msg(&dev->mt76, skb,
1128 				     MCU_WMWA_UNI_CMD(BSS_INFO_UPDATE), true);
1129 }
1130 
mt7996_mcu_set_timing(struct mt7996_phy * phy,struct ieee80211_vif * vif,struct ieee80211_bss_conf * link_conf)1131 int mt7996_mcu_set_timing(struct mt7996_phy *phy, struct ieee80211_vif *vif,
1132 			  struct ieee80211_bss_conf *link_conf)
1133 {
1134 	struct mt7996_dev *dev = phy->dev;
1135 	struct mt76_vif_link *mlink = mt76_vif_conf_link(&dev->mt76, vif, link_conf);
1136 	struct sk_buff *skb;
1137 
1138 	skb = __mt7996_mcu_alloc_bss_req(&dev->mt76, mlink,
1139 					 MT7996_BSS_UPDATE_MAX_SIZE);
1140 	if (IS_ERR(skb))
1141 		return PTR_ERR(skb);
1142 
1143 	mt7996_mcu_bss_ifs_timing_tlv(skb, phy);
1144 
1145 	return mt76_mcu_skb_send_msg(&dev->mt76, skb,
1146 				     MCU_WMWA_UNI_CMD(BSS_INFO_UPDATE), true);
1147 }
1148 
1149 static int
mt7996_mcu_sta_ba(struct mt7996_dev * dev,struct mt76_vif_link * mvif,struct ieee80211_ampdu_params * params,bool enable,bool tx)1150 mt7996_mcu_sta_ba(struct mt7996_dev *dev, struct mt76_vif_link *mvif,
1151 		  struct ieee80211_ampdu_params *params,
1152 		  bool enable, bool tx)
1153 {
1154 	struct mt76_wcid *wcid = (struct mt76_wcid *)params->sta->drv_priv;
1155 	struct sta_rec_ba_uni *ba;
1156 	struct sk_buff *skb;
1157 	struct tlv *tlv;
1158 
1159 	skb = __mt76_connac_mcu_alloc_sta_req(&dev->mt76, mvif, wcid,
1160 					      MT7996_STA_UPDATE_MAX_SIZE);
1161 	if (IS_ERR(skb))
1162 		return PTR_ERR(skb);
1163 
1164 	tlv = mt76_connac_mcu_add_tlv(skb, STA_REC_BA, sizeof(*ba));
1165 
1166 	ba = (struct sta_rec_ba_uni *)tlv;
1167 	ba->ba_type = tx ? MT_BA_TYPE_ORIGINATOR : MT_BA_TYPE_RECIPIENT;
1168 	ba->winsize = cpu_to_le16(params->buf_size);
1169 	ba->ssn = cpu_to_le16(params->ssn);
1170 	ba->ba_en = enable << params->tid;
1171 	ba->amsdu = params->amsdu;
1172 	ba->tid = params->tid;
1173 	ba->ba_rdd_rro = !tx && enable && dev->has_rro;
1174 
1175 	return mt76_mcu_skb_send_msg(&dev->mt76, skb,
1176 				     MCU_WMWA_UNI_CMD(STA_REC_UPDATE), true);
1177 }
1178 
1179 /** starec & wtbl **/
mt7996_mcu_add_tx_ba(struct mt7996_dev * dev,struct ieee80211_ampdu_params * params,struct mt7996_vif_link * link,struct mt7996_sta_link * msta_link,bool enable)1180 int mt7996_mcu_add_tx_ba(struct mt7996_dev *dev,
1181 			 struct ieee80211_ampdu_params *params,
1182 			 struct mt7996_vif_link *link,
1183 			 struct mt7996_sta_link *msta_link, bool enable)
1184 {
1185 	if (enable && !params->amsdu)
1186 		msta_link->wcid.amsdu = false;
1187 
1188 	return mt7996_mcu_sta_ba(dev, &link->mt76, params, enable, true);
1189 }
1190 
mt7996_mcu_add_rx_ba(struct mt7996_dev * dev,struct ieee80211_ampdu_params * params,struct mt7996_vif_link * link,bool enable)1191 int mt7996_mcu_add_rx_ba(struct mt7996_dev *dev,
1192 			 struct ieee80211_ampdu_params *params,
1193 			 struct mt7996_vif_link *link, bool enable)
1194 {
1195 	return mt7996_mcu_sta_ba(dev, &link->mt76, params, enable, false);
1196 }
1197 
1198 static void
mt7996_mcu_sta_he_tlv(struct sk_buff * skb,struct ieee80211_link_sta * link_sta,struct mt7996_vif_link * link)1199 mt7996_mcu_sta_he_tlv(struct sk_buff *skb,
1200 		      struct ieee80211_link_sta *link_sta,
1201 		      struct mt7996_vif_link *link)
1202 {
1203 	struct ieee80211_he_cap_elem *elem = &link_sta->he_cap.he_cap_elem;
1204 	struct ieee80211_he_mcs_nss_supp mcs_map;
1205 	struct sta_rec_he_v2 *he;
1206 	struct tlv *tlv;
1207 	int i = 0;
1208 
1209 	if (!link_sta->he_cap.has_he)
1210 		return;
1211 
1212 	tlv = mt76_connac_mcu_add_tlv(skb, STA_REC_HE_V2, sizeof(*he));
1213 
1214 	he = (struct sta_rec_he_v2 *)tlv;
1215 	for (i = 0; i < 11; i++) {
1216 		if (i < 6)
1217 			he->he_mac_cap[i] = elem->mac_cap_info[i];
1218 		he->he_phy_cap[i] = elem->phy_cap_info[i];
1219 	}
1220 
1221 	mcs_map = link_sta->he_cap.he_mcs_nss_supp;
1222 	switch (link_sta->bandwidth) {
1223 	case IEEE80211_STA_RX_BW_160:
1224 		if (elem->phy_cap_info[0] &
1225 		    IEEE80211_HE_PHY_CAP0_CHANNEL_WIDTH_SET_80PLUS80_MHZ_IN_5G)
1226 			mt7996_mcu_set_sta_he_mcs(link_sta, link,
1227 						  &he->max_nss_mcs[CMD_HE_MCS_BW8080],
1228 						  le16_to_cpu(mcs_map.rx_mcs_80p80));
1229 
1230 		mt7996_mcu_set_sta_he_mcs(link_sta, link,
1231 					  &he->max_nss_mcs[CMD_HE_MCS_BW160],
1232 					  le16_to_cpu(mcs_map.rx_mcs_160));
1233 		fallthrough;
1234 	default:
1235 		mt7996_mcu_set_sta_he_mcs(link_sta, link,
1236 					  &he->max_nss_mcs[CMD_HE_MCS_BW80],
1237 					  le16_to_cpu(mcs_map.rx_mcs_80));
1238 		break;
1239 	}
1240 
1241 	he->pkt_ext = 2;
1242 }
1243 
1244 static void
mt7996_mcu_sta_he_6g_tlv(struct sk_buff * skb,struct ieee80211_link_sta * link_sta)1245 mt7996_mcu_sta_he_6g_tlv(struct sk_buff *skb,
1246 			 struct ieee80211_link_sta *link_sta)
1247 {
1248 	struct sta_rec_he_6g_capa *he_6g;
1249 	struct tlv *tlv;
1250 
1251 	if (!link_sta->he_6ghz_capa.capa)
1252 		return;
1253 
1254 	tlv = mt76_connac_mcu_add_tlv(skb, STA_REC_HE_6G, sizeof(*he_6g));
1255 
1256 	he_6g = (struct sta_rec_he_6g_capa *)tlv;
1257 	he_6g->capa = link_sta->he_6ghz_capa.capa;
1258 }
1259 
1260 static void
mt7996_mcu_sta_eht_tlv(struct sk_buff * skb,struct ieee80211_link_sta * link_sta)1261 mt7996_mcu_sta_eht_tlv(struct sk_buff *skb,
1262 		       struct ieee80211_link_sta *link_sta)
1263 {
1264 	struct mt7996_sta *msta = (struct mt7996_sta *)link_sta->sta->drv_priv;
1265 	struct ieee80211_vif *vif = container_of((void *)msta->vif,
1266 						 struct ieee80211_vif, drv_priv);
1267 	struct ieee80211_eht_mcs_nss_supp *mcs_map;
1268 	struct ieee80211_eht_cap_elem_fixed *elem;
1269 	struct sta_rec_eht *eht;
1270 	struct tlv *tlv;
1271 
1272 	if (!link_sta->eht_cap.has_eht)
1273 		return;
1274 
1275 	mcs_map = &link_sta->eht_cap.eht_mcs_nss_supp;
1276 	elem = &link_sta->eht_cap.eht_cap_elem;
1277 
1278 	tlv = mt76_connac_mcu_add_tlv(skb, STA_REC_EHT, sizeof(*eht));
1279 
1280 	eht = (struct sta_rec_eht *)tlv;
1281 	eht->tid_bitmap = 0xff;
1282 	eht->mac_cap = cpu_to_le16(*(u16 *)elem->mac_cap_info);
1283 	eht->phy_cap = cpu_to_le64(*(u64 *)elem->phy_cap_info);
1284 	eht->phy_cap_ext = cpu_to_le64(elem->phy_cap_info[8]);
1285 
1286 	if (vif->type != NL80211_IFTYPE_STATION &&
1287 	    (link_sta->he_cap.he_cap_elem.phy_cap_info[0] &
1288 	     (IEEE80211_HE_PHY_CAP0_CHANNEL_WIDTH_SET_40MHZ_IN_2G |
1289 	      IEEE80211_HE_PHY_CAP0_CHANNEL_WIDTH_SET_40MHZ_80MHZ_IN_5G |
1290 	      IEEE80211_HE_PHY_CAP0_CHANNEL_WIDTH_SET_160MHZ_IN_5G |
1291 	      IEEE80211_HE_PHY_CAP0_CHANNEL_WIDTH_SET_80PLUS80_MHZ_IN_5G)) == 0) {
1292 		memcpy(eht->mcs_map_bw20, &mcs_map->only_20mhz,
1293 		       sizeof(eht->mcs_map_bw20));
1294 		return;
1295 	}
1296 
1297 	memcpy(eht->mcs_map_bw80, &mcs_map->bw._80, sizeof(eht->mcs_map_bw80));
1298 	memcpy(eht->mcs_map_bw160, &mcs_map->bw._160, sizeof(eht->mcs_map_bw160));
1299 	memcpy(eht->mcs_map_bw320, &mcs_map->bw._320, sizeof(eht->mcs_map_bw320));
1300 }
1301 
1302 static void
mt7996_mcu_sta_ht_tlv(struct sk_buff * skb,struct ieee80211_link_sta * link_sta)1303 mt7996_mcu_sta_ht_tlv(struct sk_buff *skb, struct ieee80211_link_sta *link_sta)
1304 {
1305 	struct sta_rec_ht_uni *ht;
1306 	struct tlv *tlv;
1307 
1308 	if (!link_sta->ht_cap.ht_supported)
1309 		return;
1310 
1311 	tlv = mt76_connac_mcu_add_tlv(skb, STA_REC_HT, sizeof(*ht));
1312 
1313 	ht = (struct sta_rec_ht_uni *)tlv;
1314 	ht->ht_cap = cpu_to_le16(link_sta->ht_cap.cap);
1315 	ht->ampdu_param = u8_encode_bits(link_sta->ht_cap.ampdu_factor,
1316 					 IEEE80211_HT_AMPDU_PARM_FACTOR) |
1317 			  u8_encode_bits(link_sta->ht_cap.ampdu_density,
1318 					 IEEE80211_HT_AMPDU_PARM_DENSITY);
1319 }
1320 
1321 static void
mt7996_mcu_sta_vht_tlv(struct sk_buff * skb,struct ieee80211_link_sta * link_sta)1322 mt7996_mcu_sta_vht_tlv(struct sk_buff *skb, struct ieee80211_link_sta *link_sta)
1323 {
1324 	struct sta_rec_vht *vht;
1325 	struct tlv *tlv;
1326 
1327 	/* For 6G band, this tlv is necessary to let hw work normally */
1328 	if (!link_sta->he_6ghz_capa.capa && !link_sta->vht_cap.vht_supported)
1329 		return;
1330 
1331 	tlv = mt76_connac_mcu_add_tlv(skb, STA_REC_VHT, sizeof(*vht));
1332 
1333 	vht = (struct sta_rec_vht *)tlv;
1334 	vht->vht_cap = cpu_to_le32(link_sta->vht_cap.cap);
1335 	vht->vht_rx_mcs_map = link_sta->vht_cap.vht_mcs.rx_mcs_map;
1336 	vht->vht_tx_mcs_map = link_sta->vht_cap.vht_mcs.tx_mcs_map;
1337 }
1338 
1339 static void
mt7996_mcu_sta_amsdu_tlv(struct mt7996_dev * dev,struct sk_buff * skb,struct ieee80211_vif * vif,struct ieee80211_link_sta * link_sta,struct mt7996_sta_link * msta_link)1340 mt7996_mcu_sta_amsdu_tlv(struct mt7996_dev *dev, struct sk_buff *skb,
1341 			 struct ieee80211_vif *vif,
1342 			 struct ieee80211_link_sta *link_sta,
1343 			 struct mt7996_sta_link *msta_link)
1344 {
1345 	struct sta_rec_amsdu *amsdu;
1346 	struct tlv *tlv;
1347 
1348 	if (vif->type != NL80211_IFTYPE_STATION &&
1349 	    vif->type != NL80211_IFTYPE_MESH_POINT &&
1350 	    vif->type != NL80211_IFTYPE_AP)
1351 		return;
1352 
1353 	if (!link_sta->agg.max_amsdu_len)
1354 		return;
1355 
1356 	tlv = mt76_connac_mcu_add_tlv(skb, STA_REC_HW_AMSDU, sizeof(*amsdu));
1357 	amsdu = (struct sta_rec_amsdu *)tlv;
1358 	amsdu->max_amsdu_num = 8;
1359 	amsdu->amsdu_en = true;
1360 	msta_link->wcid.amsdu = true;
1361 
1362 	switch (link_sta->agg.max_amsdu_len) {
1363 	case IEEE80211_MAX_MPDU_LEN_VHT_11454:
1364 		amsdu->max_mpdu_size =
1365 			IEEE80211_VHT_CAP_MAX_MPDU_LENGTH_11454;
1366 		return;
1367 	case IEEE80211_MAX_MPDU_LEN_HT_7935:
1368 	case IEEE80211_MAX_MPDU_LEN_VHT_7991:
1369 		amsdu->max_mpdu_size = IEEE80211_VHT_CAP_MAX_MPDU_LENGTH_7991;
1370 		return;
1371 	default:
1372 		amsdu->max_mpdu_size = IEEE80211_VHT_CAP_MAX_MPDU_LENGTH_3895;
1373 		return;
1374 	}
1375 }
1376 
1377 static void
mt7996_mcu_sta_muru_tlv(struct mt7996_dev * dev,struct sk_buff * skb,struct ieee80211_bss_conf * link_conf,struct ieee80211_link_sta * link_sta)1378 mt7996_mcu_sta_muru_tlv(struct mt7996_dev *dev, struct sk_buff *skb,
1379 			struct ieee80211_bss_conf *link_conf,
1380 			struct ieee80211_link_sta *link_sta)
1381 {
1382 	struct ieee80211_he_cap_elem *elem = &link_sta->he_cap.he_cap_elem;
1383 	struct sta_rec_muru *muru;
1384 	struct tlv *tlv;
1385 
1386 	if (link_conf->vif->type != NL80211_IFTYPE_STATION &&
1387 	    link_conf->vif->type != NL80211_IFTYPE_AP)
1388 		return;
1389 
1390 	tlv = mt76_connac_mcu_add_tlv(skb, STA_REC_MURU, sizeof(*muru));
1391 
1392 	muru = (struct sta_rec_muru *)tlv;
1393 	muru->cfg.mimo_dl_en = link_conf->eht_mu_beamformer ||
1394 			       link_conf->he_mu_beamformer ||
1395 			       link_conf->vht_mu_beamformer ||
1396 			       link_conf->vht_mu_beamformee;
1397 	muru->cfg.ofdma_dl_en = true;
1398 
1399 	if (link_sta->vht_cap.vht_supported)
1400 		muru->mimo_dl.vht_mu_bfee =
1401 			!!(link_sta->vht_cap.cap & IEEE80211_VHT_CAP_MU_BEAMFORMEE_CAPABLE);
1402 
1403 	if (!link_sta->he_cap.has_he)
1404 		return;
1405 
1406 	muru->mimo_dl.partial_bw_dl_mimo =
1407 		HE_PHY(CAP6_PARTIAL_BANDWIDTH_DL_MUMIMO, elem->phy_cap_info[6]);
1408 
1409 	muru->mimo_ul.full_ul_mimo =
1410 		HE_PHY(CAP2_UL_MU_FULL_MU_MIMO, elem->phy_cap_info[2]);
1411 	muru->mimo_ul.partial_ul_mimo =
1412 		HE_PHY(CAP2_UL_MU_PARTIAL_MU_MIMO, elem->phy_cap_info[2]);
1413 
1414 	muru->ofdma_dl.punc_pream_rx =
1415 		HE_PHY(CAP1_PREAMBLE_PUNC_RX_MASK, elem->phy_cap_info[1]);
1416 	muru->ofdma_dl.he_20m_in_40m_2g =
1417 		HE_PHY(CAP8_20MHZ_IN_40MHZ_HE_PPDU_IN_2G, elem->phy_cap_info[8]);
1418 	muru->ofdma_dl.he_20m_in_160m =
1419 		HE_PHY(CAP8_20MHZ_IN_160MHZ_HE_PPDU, elem->phy_cap_info[8]);
1420 	muru->ofdma_dl.he_80m_in_160m =
1421 		HE_PHY(CAP8_80MHZ_IN_160MHZ_HE_PPDU, elem->phy_cap_info[8]);
1422 
1423 	muru->ofdma_ul.t_frame_dur =
1424 		HE_MAC(CAP1_TF_MAC_PAD_DUR_MASK, elem->mac_cap_info[1]);
1425 	muru->ofdma_ul.mu_cascading =
1426 		HE_MAC(CAP2_MU_CASCADING, elem->mac_cap_info[2]);
1427 	muru->ofdma_ul.uo_ra =
1428 		HE_MAC(CAP3_OFDMA_RA, elem->mac_cap_info[3]);
1429 	muru->ofdma_ul.rx_ctrl_frame_to_mbss =
1430 		HE_MAC(CAP3_RX_CTRL_FRAME_TO_MULTIBSS, elem->mac_cap_info[3]);
1431 }
1432 
1433 static inline bool
mt7996_is_ebf_supported(struct mt7996_phy * phy,struct ieee80211_bss_conf * link_conf,struct ieee80211_link_sta * link_sta,bool bfee)1434 mt7996_is_ebf_supported(struct mt7996_phy *phy,
1435 			struct ieee80211_bss_conf *link_conf,
1436 			struct ieee80211_link_sta *link_sta, bool bfee)
1437 {
1438 	int sts = hweight16(phy->mt76->chainmask);
1439 
1440 	if (link_conf->vif->type != NL80211_IFTYPE_STATION &&
1441 	    link_conf->vif->type != NL80211_IFTYPE_AP)
1442 		return false;
1443 
1444 	if (!bfee && sts < 2)
1445 		return false;
1446 
1447 	if (link_sta->eht_cap.has_eht) {
1448 		struct ieee80211_sta_eht_cap *pc = &link_sta->eht_cap;
1449 		struct ieee80211_eht_cap_elem_fixed *pe = &pc->eht_cap_elem;
1450 
1451 		if (bfee)
1452 			return link_conf->eht_su_beamformee &&
1453 			       EHT_PHY(CAP0_SU_BEAMFORMER, pe->phy_cap_info[0]);
1454 		else
1455 			return link_conf->eht_su_beamformer &&
1456 			       EHT_PHY(CAP0_SU_BEAMFORMEE, pe->phy_cap_info[0]);
1457 	}
1458 
1459 	if (link_sta->he_cap.has_he) {
1460 		struct ieee80211_he_cap_elem *pe = &link_sta->he_cap.he_cap_elem;
1461 
1462 		if (bfee)
1463 			return link_conf->he_su_beamformee &&
1464 			       HE_PHY(CAP3_SU_BEAMFORMER, pe->phy_cap_info[3]);
1465 		else
1466 			return link_conf->he_su_beamformer &&
1467 			       HE_PHY(CAP4_SU_BEAMFORMEE, pe->phy_cap_info[4]);
1468 	}
1469 
1470 	if (link_sta->vht_cap.vht_supported) {
1471 		u32 cap = link_sta->vht_cap.cap;
1472 
1473 		if (bfee)
1474 			return link_conf->vht_su_beamformee &&
1475 			       (cap & IEEE80211_VHT_CAP_SU_BEAMFORMER_CAPABLE);
1476 		else
1477 			return link_conf->vht_su_beamformer &&
1478 			       (cap & IEEE80211_VHT_CAP_SU_BEAMFORMEE_CAPABLE);
1479 	}
1480 
1481 	return false;
1482 }
1483 
1484 static void
mt7996_mcu_sta_sounding_rate(struct sta_rec_bf * bf,struct mt7996_phy * phy)1485 mt7996_mcu_sta_sounding_rate(struct sta_rec_bf *bf, struct mt7996_phy *phy)
1486 {
1487 	bf->sounding_phy = MT_PHY_TYPE_OFDM;
1488 	bf->ndp_rate = 0;				/* mcs0 */
1489 	if (is_mt7996(phy->mt76->dev))
1490 		bf->ndpa_rate = MT7996_CFEND_RATE_DEFAULT;	/* ofdm 24m */
1491 	else
1492 		bf->ndpa_rate = MT7992_CFEND_RATE_DEFAULT;	/* ofdm 6m */
1493 
1494 	bf->rept_poll_rate = MT7996_CFEND_RATE_DEFAULT;	/* ofdm 24m */
1495 }
1496 
1497 static void
mt7996_mcu_sta_bfer_ht(struct ieee80211_link_sta * link_sta,struct mt7996_phy * phy,struct sta_rec_bf * bf,bool explicit)1498 mt7996_mcu_sta_bfer_ht(struct ieee80211_link_sta *link_sta,
1499 		       struct mt7996_phy *phy, struct sta_rec_bf *bf,
1500 		       bool explicit)
1501 {
1502 	struct ieee80211_mcs_info *mcs = &link_sta->ht_cap.mcs;
1503 	u8 n = 0;
1504 
1505 	bf->tx_mode = MT_PHY_TYPE_HT;
1506 
1507 	if ((mcs->tx_params & IEEE80211_HT_MCS_TX_RX_DIFF) &&
1508 	    (mcs->tx_params & IEEE80211_HT_MCS_TX_DEFINED))
1509 		n = FIELD_GET(IEEE80211_HT_MCS_TX_MAX_STREAMS_MASK,
1510 			      mcs->tx_params);
1511 	else if (mcs->rx_mask[3])
1512 		n = 3;
1513 	else if (mcs->rx_mask[2])
1514 		n = 2;
1515 	else if (mcs->rx_mask[1])
1516 		n = 1;
1517 
1518 	bf->nrow = hweight8(phy->mt76->antenna_mask) - 1;
1519 	bf->ncol = min_t(u8, bf->nrow, n);
1520 	bf->ibf_ncol = explicit ? min_t(u8, MT7996_IBF_MAX_NC, bf->ncol) :
1521 				  min_t(u8, MT7996_IBF_MAX_NC, n);
1522 }
1523 
1524 static void
mt7996_mcu_sta_bfer_vht(struct ieee80211_link_sta * link_sta,struct mt7996_phy * phy,struct sta_rec_bf * bf,bool explicit)1525 mt7996_mcu_sta_bfer_vht(struct ieee80211_link_sta *link_sta,
1526 			struct mt7996_phy *phy, struct sta_rec_bf *bf,
1527 			bool explicit)
1528 {
1529 	struct ieee80211_sta_vht_cap *pc = &link_sta->vht_cap;
1530 	struct ieee80211_sta_vht_cap *vc = &phy->mt76->sband_5g.sband.vht_cap;
1531 	u16 mcs_map = le16_to_cpu(pc->vht_mcs.rx_mcs_map);
1532 	u8 nss_mcs = mt7996_mcu_get_sta_nss(mcs_map);
1533 	u8 tx_ant = hweight8(phy->mt76->antenna_mask) - 1;
1534 
1535 	bf->tx_mode = MT_PHY_TYPE_VHT;
1536 
1537 	if (explicit) {
1538 		u8 sts, snd_dim;
1539 
1540 		mt7996_mcu_sta_sounding_rate(bf, phy);
1541 
1542 		sts = FIELD_GET(IEEE80211_VHT_CAP_BEAMFORMEE_STS_MASK,
1543 				pc->cap);
1544 		snd_dim = FIELD_GET(IEEE80211_VHT_CAP_SOUNDING_DIMENSIONS_MASK,
1545 				    vc->cap);
1546 		bf->nrow = min_t(u8, min_t(u8, snd_dim, sts), tx_ant);
1547 		bf->ncol = min_t(u8, nss_mcs, bf->nrow);
1548 		bf->ibf_ncol = min_t(u8, MT7996_IBF_MAX_NC, bf->ncol);
1549 
1550 		if (link_sta->bandwidth == IEEE80211_STA_RX_BW_160)
1551 			bf->nrow = 1;
1552 	} else {
1553 		bf->nrow = tx_ant;
1554 		bf->ncol = min_t(u8, nss_mcs, bf->nrow);
1555 		bf->ibf_ncol = min_t(u8, MT7996_IBF_MAX_NC, nss_mcs);
1556 
1557 		if (link_sta->bandwidth == IEEE80211_STA_RX_BW_160)
1558 			bf->ibf_nrow = 1;
1559 	}
1560 }
1561 
1562 static void
mt7996_mcu_sta_bfer_he(struct ieee80211_link_sta * link_sta,struct ieee80211_vif * vif,struct mt7996_phy * phy,struct sta_rec_bf * bf,bool explicit)1563 mt7996_mcu_sta_bfer_he(struct ieee80211_link_sta *link_sta,
1564 		       struct ieee80211_vif *vif, struct mt7996_phy *phy,
1565 		       struct sta_rec_bf *bf, bool explicit)
1566 {
1567 	struct ieee80211_sta_he_cap *pc = &link_sta->he_cap;
1568 	struct ieee80211_he_cap_elem *pe = &pc->he_cap_elem;
1569 	const struct ieee80211_sta_he_cap *vc =
1570 		mt76_connac_get_he_phy_cap(phy->mt76, vif);
1571 	const struct ieee80211_he_cap_elem *ve = &vc->he_cap_elem;
1572 	u16 mcs_map = le16_to_cpu(pc->he_mcs_nss_supp.rx_mcs_80);
1573 	u8 nss_mcs = mt7996_mcu_get_sta_nss(mcs_map);
1574 	u8 snd_dim, sts;
1575 
1576 	if (!vc)
1577 		return;
1578 
1579 	bf->tx_mode = MT_PHY_TYPE_HE_SU;
1580 
1581 	mt7996_mcu_sta_sounding_rate(bf, phy);
1582 
1583 	bf->trigger_su = HE_PHY(CAP6_TRIG_SU_BEAMFORMING_FB,
1584 				pe->phy_cap_info[6]);
1585 	bf->trigger_mu = HE_PHY(CAP6_TRIG_MU_BEAMFORMING_PARTIAL_BW_FB,
1586 				pe->phy_cap_info[6]);
1587 	snd_dim = HE_PHY(CAP5_BEAMFORMEE_NUM_SND_DIM_UNDER_80MHZ_MASK,
1588 			 ve->phy_cap_info[5]);
1589 	sts = HE_PHY(CAP4_BEAMFORMEE_MAX_STS_UNDER_80MHZ_MASK,
1590 		     pe->phy_cap_info[4]);
1591 	bf->nrow = min_t(u8, snd_dim, sts);
1592 	bf->ncol = min_t(u8, nss_mcs, bf->nrow);
1593 	bf->ibf_ncol = explicit ? min_t(u8, MT7996_IBF_MAX_NC, bf->ncol) :
1594 				  min_t(u8, MT7996_IBF_MAX_NC, nss_mcs);
1595 
1596 	if (link_sta->bandwidth != IEEE80211_STA_RX_BW_160)
1597 		return;
1598 
1599 	/* go over for 160MHz and 80p80 */
1600 	if (pe->phy_cap_info[0] &
1601 	    IEEE80211_HE_PHY_CAP0_CHANNEL_WIDTH_SET_160MHZ_IN_5G) {
1602 		mcs_map = le16_to_cpu(pc->he_mcs_nss_supp.rx_mcs_160);
1603 		nss_mcs = mt7996_mcu_get_sta_nss(mcs_map);
1604 
1605 		bf->ncol_gt_bw80 = nss_mcs;
1606 	}
1607 
1608 	if (pe->phy_cap_info[0] &
1609 	    IEEE80211_HE_PHY_CAP0_CHANNEL_WIDTH_SET_80PLUS80_MHZ_IN_5G) {
1610 		mcs_map = le16_to_cpu(pc->he_mcs_nss_supp.rx_mcs_80p80);
1611 		nss_mcs = mt7996_mcu_get_sta_nss(mcs_map);
1612 
1613 		if (bf->ncol_gt_bw80)
1614 			bf->ncol_gt_bw80 = min_t(u8, bf->ncol_gt_bw80, nss_mcs);
1615 		else
1616 			bf->ncol_gt_bw80 = nss_mcs;
1617 	}
1618 
1619 	snd_dim = HE_PHY(CAP5_BEAMFORMEE_NUM_SND_DIM_ABOVE_80MHZ_MASK,
1620 			 ve->phy_cap_info[5]);
1621 	sts = HE_PHY(CAP4_BEAMFORMEE_MAX_STS_ABOVE_80MHZ_MASK,
1622 		     pe->phy_cap_info[4]);
1623 
1624 	bf->nrow_gt_bw80 = min_t(int, snd_dim, sts);
1625 }
1626 
1627 static void
mt7996_mcu_sta_bfer_eht(struct ieee80211_link_sta * link_sta,struct ieee80211_vif * vif,struct mt7996_phy * phy,struct sta_rec_bf * bf,bool explicit)1628 mt7996_mcu_sta_bfer_eht(struct ieee80211_link_sta *link_sta,
1629 			struct ieee80211_vif *vif, struct mt7996_phy *phy,
1630 			struct sta_rec_bf *bf, bool explicit)
1631 {
1632 	struct ieee80211_sta_eht_cap *pc = &link_sta->eht_cap;
1633 	struct ieee80211_eht_cap_elem_fixed *pe = &pc->eht_cap_elem;
1634 	struct ieee80211_eht_mcs_nss_supp *eht_nss = &pc->eht_mcs_nss_supp;
1635 	const struct ieee80211_sta_eht_cap *vc =
1636 		mt76_connac_get_eht_phy_cap(phy->mt76, vif);
1637 	const struct ieee80211_eht_cap_elem_fixed *ve = &vc->eht_cap_elem;
1638 	u8 nss_mcs = u8_get_bits(eht_nss->bw._80.rx_tx_mcs9_max_nss,
1639 				 IEEE80211_EHT_MCS_NSS_RX) - 1;
1640 	u8 snd_dim, sts;
1641 
1642 	bf->tx_mode = MT_PHY_TYPE_EHT_MU;
1643 
1644 	mt7996_mcu_sta_sounding_rate(bf, phy);
1645 
1646 	bf->trigger_su = EHT_PHY(CAP3_TRIG_SU_BF_FDBK, pe->phy_cap_info[3]);
1647 	bf->trigger_mu = EHT_PHY(CAP3_TRIG_MU_BF_PART_BW_FDBK, pe->phy_cap_info[3]);
1648 	snd_dim = EHT_PHY(CAP2_SOUNDING_DIM_80MHZ_MASK, ve->phy_cap_info[2]);
1649 	sts = EHT_PHY(CAP0_BEAMFORMEE_SS_80MHZ_MASK, pe->phy_cap_info[0]) +
1650 	      (EHT_PHY(CAP1_BEAMFORMEE_SS_80MHZ_MASK, pe->phy_cap_info[1]) << 1);
1651 	bf->nrow = min_t(u8, snd_dim, sts);
1652 	bf->ncol = min_t(u8, nss_mcs, bf->nrow);
1653 	bf->ibf_ncol = explicit ? min_t(u8, MT7996_IBF_MAX_NC, bf->ncol) :
1654 				  min_t(u8, MT7996_IBF_MAX_NC, nss_mcs);
1655 
1656 	if (link_sta->bandwidth < IEEE80211_STA_RX_BW_160)
1657 		return;
1658 
1659 	switch (link_sta->bandwidth) {
1660 	case IEEE80211_STA_RX_BW_160:
1661 		snd_dim = EHT_PHY(CAP2_SOUNDING_DIM_160MHZ_MASK, ve->phy_cap_info[2]);
1662 		sts = EHT_PHY(CAP1_BEAMFORMEE_SS_160MHZ_MASK, pe->phy_cap_info[1]);
1663 		nss_mcs = u8_get_bits(eht_nss->bw._160.rx_tx_mcs9_max_nss,
1664 				      IEEE80211_EHT_MCS_NSS_RX) - 1;
1665 
1666 		bf->nrow_gt_bw80 = min_t(u8, snd_dim, sts);
1667 		bf->ncol_gt_bw80 = nss_mcs;
1668 		break;
1669 	case IEEE80211_STA_RX_BW_320:
1670 		snd_dim = EHT_PHY(CAP2_SOUNDING_DIM_320MHZ_MASK, ve->phy_cap_info[2]) +
1671 			  (EHT_PHY(CAP3_SOUNDING_DIM_320MHZ_MASK,
1672 				   ve->phy_cap_info[3]) << 1);
1673 		sts = EHT_PHY(CAP1_BEAMFORMEE_SS_320MHZ_MASK, pe->phy_cap_info[1]);
1674 		nss_mcs = u8_get_bits(eht_nss->bw._320.rx_tx_mcs9_max_nss,
1675 				      IEEE80211_EHT_MCS_NSS_RX) - 1;
1676 
1677 		bf->nrow_gt_bw80 = min_t(u8, snd_dim, sts) << 4;
1678 		bf->ncol_gt_bw80 = nss_mcs << 4;
1679 		break;
1680 	default:
1681 		break;
1682 	}
1683 }
1684 
1685 static void
mt7996_mcu_sta_bfer_tlv(struct mt7996_dev * dev,struct sk_buff * skb,struct ieee80211_bss_conf * link_conf,struct ieee80211_link_sta * link_sta,struct mt7996_vif_link * link)1686 mt7996_mcu_sta_bfer_tlv(struct mt7996_dev *dev, struct sk_buff *skb,
1687 			struct ieee80211_bss_conf *link_conf,
1688 			struct ieee80211_link_sta *link_sta,
1689 			struct mt7996_vif_link *link)
1690 {
1691 #define EBF_MODE	BIT(0)
1692 #define IBF_MODE	BIT(1)
1693 #define BF_MAT_ORDER	4
1694 	struct ieee80211_vif *vif = link_conf->vif;
1695 	struct mt7996_phy *phy = link->phy;
1696 	int tx_ant = hweight16(phy->mt76->chainmask) - 1;
1697 	struct sta_rec_bf *bf;
1698 	struct tlv *tlv;
1699 	static const u8 matrix[BF_MAT_ORDER][BF_MAT_ORDER] = {
1700 		{0, 0, 0, 0},
1701 		{1, 1, 0, 0},	/* 2x1, 2x2, 2x3, 2x4 */
1702 		{2, 4, 4, 0},	/* 3x1, 3x2, 3x3, 3x4 */
1703 		{3, 5, 6, 0}	/* 4x1, 4x2, 4x3, 4x4 */
1704 	};
1705 	bool ebf;
1706 
1707 	if (!(link_sta->ht_cap.ht_supported || link_sta->he_cap.has_he))
1708 		return;
1709 
1710 	ebf = mt7996_is_ebf_supported(phy, link_conf, link_sta, false);
1711 	if (!ebf && !dev->ibf)
1712 		return;
1713 
1714 	tlv = mt76_connac_mcu_add_tlv(skb, STA_REC_BF, sizeof(*bf));
1715 	bf = (struct sta_rec_bf *)tlv;
1716 
1717 	/* he/eht: eBF only, except mt7992 that has 5T on 5GHz also supports iBF
1718 	 * vht: support eBF and iBF
1719 	 * ht: iBF only, since mac80211 lacks of eBF support
1720 	 */
1721 	if (link_sta->eht_cap.has_eht)
1722 		mt7996_mcu_sta_bfer_eht(link_sta, vif, link->phy, bf, ebf);
1723 	else if (link_sta->he_cap.has_he)
1724 		mt7996_mcu_sta_bfer_he(link_sta, vif, link->phy, bf, ebf);
1725 	else if (link_sta->vht_cap.vht_supported)
1726 		mt7996_mcu_sta_bfer_vht(link_sta, link->phy, bf, ebf);
1727 	else if (link_sta->ht_cap.ht_supported)
1728 		mt7996_mcu_sta_bfer_ht(link_sta, link->phy, bf, ebf);
1729 	else
1730 		return;
1731 
1732 	bf->bf_cap = ebf ? EBF_MODE : (dev->ibf ? IBF_MODE : 0);
1733 	if (is_mt7992(&dev->mt76) && tx_ant == 4)
1734 		bf->bf_cap |= IBF_MODE;
1735 
1736 	bf->bw = link_sta->bandwidth;
1737 	bf->ibf_dbw = link_sta->bandwidth;
1738 	bf->ibf_nrow = tx_ant;
1739 
1740 	if (link_sta->eht_cap.has_eht || link_sta->he_cap.has_he)
1741 		bf->ibf_timeout = is_mt7996(&dev->mt76) ? MT7996_IBF_TIMEOUT :
1742 							  MT7992_IBF_TIMEOUT;
1743 	else if (!ebf && link_sta->bandwidth <= IEEE80211_STA_RX_BW_40 && !bf->ncol)
1744 		bf->ibf_timeout = MT7996_IBF_TIMEOUT_LEGACY;
1745 	else
1746 		bf->ibf_timeout = MT7996_IBF_TIMEOUT;
1747 
1748 	if (bf->ncol < BF_MAT_ORDER) {
1749 		if (ebf)
1750 			bf->mem_20m = tx_ant < BF_MAT_ORDER ?
1751 				      matrix[tx_ant][bf->ncol] : 0;
1752 		else
1753 			bf->mem_20m = bf->nrow < BF_MAT_ORDER ?
1754 				      matrix[bf->nrow][bf->ncol] : 0;
1755 	}
1756 
1757 	switch (link_sta->bandwidth) {
1758 	case IEEE80211_STA_RX_BW_160:
1759 	case IEEE80211_STA_RX_BW_80:
1760 		bf->mem_total = bf->mem_20m * 2;
1761 		break;
1762 	case IEEE80211_STA_RX_BW_40:
1763 		bf->mem_total = bf->mem_20m;
1764 		break;
1765 	case IEEE80211_STA_RX_BW_20:
1766 	default:
1767 		break;
1768 	}
1769 }
1770 
1771 static void
mt7996_mcu_sta_bfee_tlv(struct mt7996_dev * dev,struct sk_buff * skb,struct ieee80211_bss_conf * link_conf,struct ieee80211_link_sta * link_sta,struct mt7996_vif_link * link)1772 mt7996_mcu_sta_bfee_tlv(struct mt7996_dev *dev, struct sk_buff *skb,
1773 			struct ieee80211_bss_conf *link_conf,
1774 			struct ieee80211_link_sta *link_sta,
1775 			struct mt7996_vif_link *link)
1776 {
1777 	struct mt7996_phy *phy = link->phy;
1778 	int tx_ant = hweight8(phy->mt76->antenna_mask) - 1;
1779 	struct sta_rec_bfee *bfee;
1780 	struct tlv *tlv;
1781 	u8 nrow = 0;
1782 
1783 	if (!(link_sta->vht_cap.vht_supported || link_sta->he_cap.has_he))
1784 		return;
1785 
1786 	if (!mt7996_is_ebf_supported(phy, link_conf, link_sta, true))
1787 		return;
1788 
1789 	tlv = mt76_connac_mcu_add_tlv(skb, STA_REC_BFEE, sizeof(*bfee));
1790 	bfee = (struct sta_rec_bfee *)tlv;
1791 
1792 	if (link_sta->he_cap.has_he) {
1793 		struct ieee80211_he_cap_elem *pe = &link_sta->he_cap.he_cap_elem;
1794 
1795 		nrow = HE_PHY(CAP5_BEAMFORMEE_NUM_SND_DIM_UNDER_80MHZ_MASK,
1796 			      pe->phy_cap_info[5]);
1797 	} else if (link_sta->vht_cap.vht_supported) {
1798 		struct ieee80211_sta_vht_cap *pc = &link_sta->vht_cap;
1799 
1800 		nrow = FIELD_GET(IEEE80211_VHT_CAP_SOUNDING_DIMENSIONS_MASK,
1801 				 pc->cap);
1802 	}
1803 
1804 	/* reply with identity matrix to avoid 2x2 BF negative gain */
1805 	bfee->fb_identity_matrix = (nrow == 1 && tx_ant == 2);
1806 }
1807 
1808 static void
mt7996_mcu_sta_tx_proc_tlv(struct sk_buff * skb)1809 mt7996_mcu_sta_tx_proc_tlv(struct sk_buff *skb)
1810 {
1811 	struct sta_rec_tx_proc *tx_proc;
1812 	struct tlv *tlv;
1813 
1814 	tlv = mt76_connac_mcu_add_tlv(skb, STA_REC_TX_PROC, sizeof(*tx_proc));
1815 
1816 	tx_proc = (struct sta_rec_tx_proc *)tlv;
1817 	tx_proc->flag = cpu_to_le32(0);
1818 }
1819 
1820 static void
mt7996_mcu_sta_hdrt_tlv(struct mt7996_dev * dev,struct sk_buff * skb)1821 mt7996_mcu_sta_hdrt_tlv(struct mt7996_dev *dev, struct sk_buff *skb)
1822 {
1823 	struct sta_rec_hdrt *hdrt;
1824 	struct tlv *tlv;
1825 
1826 	tlv = mt76_connac_mcu_add_tlv(skb, STA_REC_HDRT, sizeof(*hdrt));
1827 
1828 	hdrt = (struct sta_rec_hdrt *)tlv;
1829 	hdrt->hdrt_mode = 1;
1830 }
1831 
1832 static void
mt7996_mcu_sta_hdr_trans_tlv(struct mt7996_dev * dev,struct sk_buff * skb,struct ieee80211_vif * vif,struct mt76_wcid * wcid)1833 mt7996_mcu_sta_hdr_trans_tlv(struct mt7996_dev *dev, struct sk_buff *skb,
1834 			     struct ieee80211_vif *vif, struct mt76_wcid *wcid)
1835 {
1836 	struct sta_rec_hdr_trans *hdr_trans;
1837 	struct tlv *tlv;
1838 
1839 	tlv = mt76_connac_mcu_add_tlv(skb, STA_REC_HDR_TRANS, sizeof(*hdr_trans));
1840 	hdr_trans = (struct sta_rec_hdr_trans *)tlv;
1841 	hdr_trans->dis_rx_hdr_tran = true;
1842 
1843 	if (vif->type == NL80211_IFTYPE_STATION)
1844 		hdr_trans->to_ds = true;
1845 	else
1846 		hdr_trans->from_ds = true;
1847 
1848 	if (!wcid)
1849 		return;
1850 
1851 	hdr_trans->dis_rx_hdr_tran = !test_bit(MT_WCID_FLAG_HDR_TRANS, &wcid->flags);
1852 	if (test_bit(MT_WCID_FLAG_4ADDR, &wcid->flags)) {
1853 		hdr_trans->to_ds = true;
1854 		hdr_trans->from_ds = true;
1855 	}
1856 
1857 	if (vif->type == NL80211_IFTYPE_MESH_POINT) {
1858 		hdr_trans->to_ds = true;
1859 		hdr_trans->from_ds = true;
1860 		hdr_trans->mesh = true;
1861 	}
1862 }
1863 
1864 static enum mcu_mmps_mode
mt7996_mcu_get_mmps_mode(enum ieee80211_smps_mode smps)1865 mt7996_mcu_get_mmps_mode(enum ieee80211_smps_mode smps)
1866 {
1867 	switch (smps) {
1868 	case IEEE80211_SMPS_OFF:
1869 		return MCU_MMPS_DISABLE;
1870 	case IEEE80211_SMPS_STATIC:
1871 		return MCU_MMPS_STATIC;
1872 	case IEEE80211_SMPS_DYNAMIC:
1873 		return MCU_MMPS_DYNAMIC;
1874 	default:
1875 		return MCU_MMPS_DISABLE;
1876 	}
1877 }
1878 
mt7996_mcu_set_fixed_rate_ctrl(struct mt7996_dev * dev,void * data,u16 version)1879 int mt7996_mcu_set_fixed_rate_ctrl(struct mt7996_dev *dev,
1880 				   void *data, u16 version)
1881 {
1882 	struct ra_fixed_rate *req;
1883 	struct uni_header hdr;
1884 	struct sk_buff *skb;
1885 	struct tlv *tlv;
1886 	int len;
1887 
1888 	len = sizeof(hdr) + sizeof(*req);
1889 
1890 	skb = mt76_mcu_msg_alloc(&dev->mt76, NULL, len);
1891 	if (!skb)
1892 		return -ENOMEM;
1893 
1894 	skb_put_data(skb, &hdr, sizeof(hdr));
1895 
1896 	tlv = mt7996_mcu_add_uni_tlv(skb, UNI_RA_FIXED_RATE, sizeof(*req));
1897 	req = (struct ra_fixed_rate *)tlv;
1898 	req->version = cpu_to_le16(version);
1899 	memcpy(&req->rate, data, sizeof(req->rate));
1900 
1901 	return mt76_mcu_skb_send_msg(&dev->mt76, skb,
1902 				     MCU_WM_UNI_CMD(RA), true);
1903 }
1904 
mt7996_mcu_set_fixed_field(struct mt7996_dev * dev,struct mt7996_sta * msta,void * data,u8 link_id,u32 field)1905 int mt7996_mcu_set_fixed_field(struct mt7996_dev *dev, struct mt7996_sta *msta,
1906 			       void *data, u8 link_id, u32 field)
1907 {
1908 	struct mt7996_vif *mvif = msta->vif;
1909 	struct mt7996_sta_link *msta_link;
1910 	struct sta_rec_ra_fixed_uni *ra;
1911 	struct sta_phy_uni *phy = data;
1912 	struct mt76_vif_link *mlink;
1913 	struct sk_buff *skb;
1914 	int err = -ENODEV;
1915 	struct tlv *tlv;
1916 
1917 	rcu_read_lock();
1918 
1919 	mlink = rcu_dereference(mvif->mt76.link[link_id]);
1920 	if (!mlink)
1921 		goto error_unlock;
1922 
1923 	msta_link = rcu_dereference(msta->link[link_id]);
1924 	if (!msta_link)
1925 		goto error_unlock;
1926 
1927 	skb = __mt76_connac_mcu_alloc_sta_req(&dev->mt76, mlink,
1928 					      &msta_link->wcid,
1929 					      MT7996_STA_UPDATE_MAX_SIZE);
1930 	if (IS_ERR(skb)) {
1931 		err = PTR_ERR(skb);
1932 		goto error_unlock;
1933 	}
1934 
1935 	tlv = mt76_connac_mcu_add_tlv(skb, STA_REC_RA_UPDATE, sizeof(*ra));
1936 	ra = (struct sta_rec_ra_fixed_uni *)tlv;
1937 
1938 	switch (field) {
1939 	case RATE_PARAM_AUTO:
1940 		break;
1941 	case RATE_PARAM_FIXED:
1942 	case RATE_PARAM_FIXED_MCS:
1943 	case RATE_PARAM_FIXED_GI:
1944 	case RATE_PARAM_FIXED_HE_LTF:
1945 		if (phy)
1946 			ra->phy = *phy;
1947 		break;
1948 	case RATE_PARAM_MMPS_UPDATE: {
1949 		struct ieee80211_sta *sta = wcid_to_sta(&msta_link->wcid);
1950 		struct ieee80211_link_sta *link_sta;
1951 
1952 		link_sta = rcu_dereference(sta->link[link_id]);
1953 		if (!link_sta) {
1954 			dev_kfree_skb(skb);
1955 			goto error_unlock;
1956 		}
1957 
1958 		ra->mmps_mode = mt7996_mcu_get_mmps_mode(link_sta->smps_mode);
1959 		break;
1960 	}
1961 	default:
1962 		break;
1963 	}
1964 	ra->field = cpu_to_le32(field);
1965 
1966 	rcu_read_unlock();
1967 
1968 	return mt76_mcu_skb_send_msg(&dev->mt76, skb,
1969 				     MCU_WMWA_UNI_CMD(STA_REC_UPDATE), true);
1970 error_unlock:
1971 	rcu_read_unlock();
1972 
1973 	return err;
1974 }
1975 
1976 static int
mt7996_mcu_add_rate_ctrl_fixed(struct mt7996_dev * dev,struct mt7996_sta * msta,struct ieee80211_vif * vif,u8 link_id)1977 mt7996_mcu_add_rate_ctrl_fixed(struct mt7996_dev *dev, struct mt7996_sta *msta,
1978 			       struct ieee80211_vif *vif, u8 link_id)
1979 {
1980 	struct ieee80211_link_sta *link_sta;
1981 	struct cfg80211_bitrate_mask mask;
1982 	struct mt7996_sta_link *msta_link;
1983 	struct mt7996_vif_link *link;
1984 	struct sta_phy_uni phy = {};
1985 	struct ieee80211_sta *sta;
1986 	int ret, nrates = 0, idx;
1987 	enum nl80211_band band;
1988 	bool has_he;
1989 
1990 #define __sta_phy_bitrate_mask_check(_mcs, _gi, _ht, _he)			\
1991 	do {									\
1992 		u8 i, gi = mask.control[band]._gi;				\
1993 		gi = (_he) ? gi : gi == NL80211_TXRATE_FORCE_SGI;		\
1994 		phy.sgi = gi;							\
1995 		phy.he_ltf = mask.control[band].he_ltf;				\
1996 		for (i = 0; i < ARRAY_SIZE(mask.control[band]._mcs); i++) {	\
1997 			if (!mask.control[band]._mcs[i])			\
1998 				continue;					\
1999 			nrates += hweight16(mask.control[band]._mcs[i]);	\
2000 			phy.mcs = ffs(mask.control[band]._mcs[i]) - 1;		\
2001 			if (_ht)						\
2002 				phy.mcs += 8 * i;				\
2003 		}								\
2004 	} while (0)
2005 
2006 	rcu_read_lock();
2007 
2008 	link = mt7996_vif_link(dev, vif, link_id);
2009 	if (!link)
2010 		goto error_unlock;
2011 
2012 	msta_link = rcu_dereference(msta->link[link_id]);
2013 	if (!msta_link)
2014 		goto error_unlock;
2015 
2016 	sta = wcid_to_sta(&msta_link->wcid);
2017 	link_sta = rcu_dereference(sta->link[link_id]);
2018 	if (!link_sta)
2019 		goto error_unlock;
2020 
2021 	band = link->phy->mt76->chandef.chan->band;
2022 	has_he = link_sta->he_cap.has_he;
2023 	mask = link->bitrate_mask;
2024 	idx = msta_link->wcid.idx;
2025 
2026 	if (has_he) {
2027 		__sta_phy_bitrate_mask_check(he_mcs, he_gi, 0, 1);
2028 	} else if (link_sta->vht_cap.vht_supported) {
2029 		__sta_phy_bitrate_mask_check(vht_mcs, gi, 0, 0);
2030 	} else if (link_sta->ht_cap.ht_supported) {
2031 		__sta_phy_bitrate_mask_check(ht_mcs, gi, 1, 0);
2032 	} else {
2033 		nrates = hweight32(mask.control[band].legacy);
2034 		phy.mcs = ffs(mask.control[band].legacy) - 1;
2035 	}
2036 
2037 	rcu_read_unlock();
2038 
2039 #undef __sta_phy_bitrate_mask_check
2040 
2041 	/* fall back to auto rate control */
2042 	if (mask.control[band].gi == NL80211_TXRATE_DEFAULT_GI &&
2043 	    mask.control[band].he_gi == GENMASK(7, 0) &&
2044 	    mask.control[band].he_ltf == GENMASK(7, 0) &&
2045 	    nrates != 1)
2046 		return 0;
2047 
2048 	/* fixed single rate */
2049 	if (nrates == 1) {
2050 		ret = mt7996_mcu_set_fixed_field(dev, msta, &phy, link_id,
2051 						 RATE_PARAM_FIXED_MCS);
2052 		if (ret)
2053 			return ret;
2054 	}
2055 
2056 	/* fixed GI */
2057 	if (mask.control[band].gi != NL80211_TXRATE_DEFAULT_GI ||
2058 	    mask.control[band].he_gi != GENMASK(7, 0)) {
2059 		u32 addr;
2060 
2061 		/* firmware updates only TXCMD but doesn't take WTBL into
2062 		 * account, so driver should update here to reflect the
2063 		 * actual txrate hardware sends out.
2064 		 */
2065 		addr = mt7996_mac_wtbl_lmac_addr(dev, idx, 7);
2066 		if (has_he)
2067 			mt76_rmw_field(dev, addr, GENMASK(31, 24), phy.sgi);
2068 		else
2069 			mt76_rmw_field(dev, addr, GENMASK(15, 12), phy.sgi);
2070 
2071 		ret = mt7996_mcu_set_fixed_field(dev, msta, &phy, link_id,
2072 						 RATE_PARAM_FIXED_GI);
2073 		if (ret)
2074 			return ret;
2075 	}
2076 
2077 	/* fixed HE_LTF */
2078 	if (mask.control[band].he_ltf != GENMASK(7, 0)) {
2079 		ret = mt7996_mcu_set_fixed_field(dev, msta, &phy, link_id,
2080 						 RATE_PARAM_FIXED_HE_LTF);
2081 		if (ret)
2082 			return ret;
2083 	}
2084 
2085 	return 0;
2086 
2087 error_unlock:
2088 	rcu_read_unlock();
2089 
2090 	return -ENODEV;
2091 }
2092 
2093 static void
mt7996_mcu_sta_rate_ctrl_tlv(struct sk_buff * skb,struct mt7996_dev * dev,struct ieee80211_vif * vif,struct ieee80211_bss_conf * link_conf,struct ieee80211_link_sta * link_sta,struct mt7996_vif_link * link)2094 mt7996_mcu_sta_rate_ctrl_tlv(struct sk_buff *skb, struct mt7996_dev *dev,
2095 			     struct ieee80211_vif *vif,
2096 			     struct ieee80211_bss_conf *link_conf,
2097 			     struct ieee80211_link_sta *link_sta,
2098 			     struct mt7996_vif_link *link)
2099 {
2100 #define INIT_RCPI 180
2101 	struct mt76_phy *mphy = link->phy->mt76;
2102 	struct cfg80211_chan_def *chandef = &mphy->chandef;
2103 	struct cfg80211_bitrate_mask *mask = &link->bitrate_mask;
2104 	u32 cap = link_sta->sta->wme ? STA_CAP_WMM : 0;
2105 	enum nl80211_band band = chandef->chan->band;
2106 	struct sta_rec_ra_uni *ra;
2107 	struct tlv *tlv;
2108 	u32 supp_rate = link_sta->supp_rates[band];
2109 
2110 	tlv = mt76_connac_mcu_add_tlv(skb, STA_REC_RA, sizeof(*ra));
2111 	ra = (struct sta_rec_ra_uni *)tlv;
2112 
2113 	ra->valid = true;
2114 	ra->auto_rate = true;
2115 	ra->phy_mode = mt76_connac_get_phy_mode(mphy, vif, band, link_sta);
2116 	ra->channel = chandef->chan->hw_value;
2117 	ra->bw = (link_sta->bandwidth == IEEE80211_STA_RX_BW_320) ?
2118 		 CMD_CBW_320MHZ : link_sta->bandwidth;
2119 	ra->phy.bw = ra->bw;
2120 	ra->mmps_mode = mt7996_mcu_get_mmps_mode(link_sta->smps_mode);
2121 
2122 	if (supp_rate) {
2123 		supp_rate &= mask->control[band].legacy;
2124 		ra->rate_len = hweight32(supp_rate);
2125 
2126 		if (band == NL80211_BAND_2GHZ) {
2127 			ra->supp_mode = MODE_CCK;
2128 			ra->supp_cck_rate = supp_rate & GENMASK(3, 0);
2129 
2130 			if (ra->rate_len > 4) {
2131 				ra->supp_mode |= MODE_OFDM;
2132 				ra->supp_ofdm_rate = supp_rate >> 4;
2133 			}
2134 		} else {
2135 			ra->supp_mode = MODE_OFDM;
2136 			ra->supp_ofdm_rate = supp_rate;
2137 		}
2138 	}
2139 
2140 	if (link_sta->ht_cap.ht_supported) {
2141 		ra->supp_mode |= MODE_HT;
2142 		ra->af = link_sta->ht_cap.ampdu_factor;
2143 		ra->ht_gf = !!(link_sta->ht_cap.cap & IEEE80211_HT_CAP_GRN_FLD);
2144 
2145 		cap |= STA_CAP_HT;
2146 		if (link_sta->ht_cap.cap & IEEE80211_HT_CAP_SGI_20)
2147 			cap |= STA_CAP_SGI_20;
2148 		if (link_sta->ht_cap.cap & IEEE80211_HT_CAP_SGI_40)
2149 			cap |= STA_CAP_SGI_40;
2150 		if (link_sta->ht_cap.cap & IEEE80211_HT_CAP_TX_STBC)
2151 			cap |= STA_CAP_TX_STBC;
2152 		if (link_sta->ht_cap.cap & IEEE80211_HT_CAP_RX_STBC)
2153 			cap |= STA_CAP_RX_STBC;
2154 		if (link_conf->ht_ldpc &&
2155 		    (link_sta->ht_cap.cap & IEEE80211_HT_CAP_LDPC_CODING))
2156 			cap |= STA_CAP_LDPC;
2157 
2158 		mt7996_mcu_set_sta_ht_mcs(link_sta, ra->ht_mcs,
2159 					  mask->control[band].ht_mcs);
2160 		ra->supp_ht_mcs = *(__le32 *)ra->ht_mcs;
2161 	}
2162 
2163 	if (link_sta->vht_cap.vht_supported) {
2164 		u8 af;
2165 
2166 		ra->supp_mode |= MODE_VHT;
2167 		af = FIELD_GET(IEEE80211_VHT_CAP_MAX_A_MPDU_LENGTH_EXPONENT_MASK,
2168 			       link_sta->vht_cap.cap);
2169 		ra->af = max_t(u8, ra->af, af);
2170 
2171 		cap |= STA_CAP_VHT;
2172 		if (link_sta->vht_cap.cap & IEEE80211_VHT_CAP_SHORT_GI_80)
2173 			cap |= STA_CAP_VHT_SGI_80;
2174 		if (link_sta->vht_cap.cap & IEEE80211_VHT_CAP_SHORT_GI_160)
2175 			cap |= STA_CAP_VHT_SGI_160;
2176 		if (link_sta->vht_cap.cap & IEEE80211_VHT_CAP_TXSTBC)
2177 			cap |= STA_CAP_VHT_TX_STBC;
2178 		if (link_sta->vht_cap.cap & IEEE80211_VHT_CAP_RXSTBC_1)
2179 			cap |= STA_CAP_VHT_RX_STBC;
2180 		if ((vif->type != NL80211_IFTYPE_AP || link_conf->vht_ldpc) &&
2181 		    (link_sta->vht_cap.cap & IEEE80211_VHT_CAP_RXLDPC))
2182 			cap |= STA_CAP_VHT_LDPC;
2183 
2184 		mt7996_mcu_set_sta_vht_mcs(link_sta, ra->supp_vht_mcs,
2185 					   mask->control[band].vht_mcs);
2186 	}
2187 
2188 	if (link_sta->he_cap.has_he) {
2189 		ra->supp_mode |= MODE_HE;
2190 		cap |= STA_CAP_HE;
2191 
2192 		if (link_sta->he_6ghz_capa.capa)
2193 			ra->af = le16_get_bits(link_sta->he_6ghz_capa.capa,
2194 					       IEEE80211_HE_6GHZ_CAP_MAX_AMPDU_LEN_EXP);
2195 	}
2196 	ra->sta_cap = cpu_to_le32(cap);
2197 
2198 	memset(ra->rx_rcpi, INIT_RCPI, sizeof(ra->rx_rcpi));
2199 }
2200 
mt7996_mcu_add_rate_ctrl(struct mt7996_dev * dev,struct mt7996_sta * msta,struct ieee80211_vif * vif,u8 link_id,bool changed)2201 int mt7996_mcu_add_rate_ctrl(struct mt7996_dev *dev, struct mt7996_sta *msta,
2202 			     struct ieee80211_vif *vif, u8 link_id,
2203 			     bool changed)
2204 {
2205 	struct ieee80211_bss_conf *link_conf;
2206 	struct ieee80211_link_sta *link_sta;
2207 	struct mt7996_sta_link *msta_link;
2208 	struct mt7996_vif_link *link;
2209 	struct ieee80211_sta *sta;
2210 	struct sk_buff *skb;
2211 	int ret = -ENODEV;
2212 
2213 	rcu_read_lock();
2214 
2215 	link = mt7996_vif_link(dev, vif, link_id);
2216 	if (!link)
2217 		goto error_unlock;
2218 
2219 	msta_link = rcu_dereference(msta->link[link_id]);
2220 	if (!msta_link)
2221 		goto error_unlock;
2222 
2223 	sta = wcid_to_sta(&msta_link->wcid);
2224 	link_sta = rcu_dereference(sta->link[link_id]);
2225 	if (!link_sta)
2226 		goto error_unlock;
2227 
2228 	link_conf = rcu_dereference(vif->link_conf[link_id]);
2229 	if (!link_conf)
2230 		goto error_unlock;
2231 
2232 	skb = __mt76_connac_mcu_alloc_sta_req(&dev->mt76, &link->mt76,
2233 					      &msta_link->wcid,
2234 					      MT7996_STA_UPDATE_MAX_SIZE);
2235 	if (IS_ERR(skb)) {
2236 		ret = PTR_ERR(skb);
2237 		goto error_unlock;
2238 	}
2239 
2240 	/* firmware rc algorithm refers to sta_rec_he for HE control.
2241 	 * once dev->rc_work changes the settings driver should also
2242 	 * update sta_rec_he here.
2243 	 */
2244 	if (changed)
2245 		mt7996_mcu_sta_he_tlv(skb, link_sta, link);
2246 
2247 	/* sta_rec_ra accommodates BW, NSS and only MCS range format
2248 	 * i.e 0-{7,8,9} for VHT.
2249 	 */
2250 	mt7996_mcu_sta_rate_ctrl_tlv(skb, dev, vif, link_conf, link_sta, link);
2251 
2252 	rcu_read_unlock();
2253 
2254 	ret = mt76_mcu_skb_send_msg(&dev->mt76, skb,
2255 				    MCU_WMWA_UNI_CMD(STA_REC_UPDATE), true);
2256 	if (ret)
2257 		return ret;
2258 
2259 	return mt7996_mcu_add_rate_ctrl_fixed(dev, msta, vif, link_id);
2260 
2261 error_unlock:
2262 	rcu_read_unlock();
2263 
2264 	return ret;
2265 }
2266 
2267 static int
mt7996_mcu_add_group(struct mt7996_dev * dev,struct ieee80211_vif * vif,struct ieee80211_sta * sta)2268 mt7996_mcu_add_group(struct mt7996_dev *dev, struct ieee80211_vif *vif,
2269 		     struct ieee80211_sta *sta)
2270 {
2271 #define MT_STA_BSS_GROUP		1
2272 	struct mt7996_vif *mvif = (struct mt7996_vif *)vif->drv_priv;
2273 	struct mt7996_sta_link *msta_link;
2274 	struct mt7996_sta *msta;
2275 	struct {
2276 		u8 __rsv1[4];
2277 
2278 		__le16 tag;
2279 		__le16 len;
2280 		__le16 wlan_idx;
2281 		u8 __rsv2[2];
2282 		__le32 action;
2283 		__le32 val;
2284 		u8 __rsv3[8];
2285 	} __packed req = {
2286 		.tag = cpu_to_le16(UNI_VOW_DRR_CTRL),
2287 		.len = cpu_to_le16(sizeof(req) - 4),
2288 		.action = cpu_to_le32(MT_STA_BSS_GROUP),
2289 		.val = cpu_to_le32(mvif->deflink.mt76.idx % 16),
2290 	};
2291 
2292 	msta = sta ? (struct mt7996_sta *)sta->drv_priv : NULL;
2293 	msta_link = msta ? &msta->deflink : &mvif->deflink.msta_link;
2294 	req.wlan_idx = cpu_to_le16(msta_link->wcid.idx);
2295 
2296 	return mt76_mcu_send_msg(&dev->mt76, MCU_WM_UNI_CMD(VOW), &req,
2297 				 sizeof(req), true);
2298 }
2299 
2300 static void
mt7996_mcu_sta_mld_setup_tlv(struct mt7996_dev * dev,struct sk_buff * skb,struct ieee80211_sta * sta)2301 mt7996_mcu_sta_mld_setup_tlv(struct mt7996_dev *dev, struct sk_buff *skb,
2302 			     struct ieee80211_sta *sta)
2303 {
2304 	struct mt7996_sta *msta = (struct mt7996_sta *)sta->drv_priv;
2305 	unsigned long links = sta->valid_links;
2306 	unsigned int nlinks = hweight16(links);
2307 	struct mld_setup_link *mld_setup_link;
2308 	struct sta_rec_mld_setup *mld_setup;
2309 	struct mt7996_sta_link *msta_link;
2310 	struct ieee80211_vif *vif;
2311 	unsigned int link_id;
2312 	struct tlv *tlv;
2313 
2314 	msta_link = mt76_dereference(msta->link[msta->deflink_id], &dev->mt76);
2315 	if (!msta_link)
2316 		return;
2317 
2318 	tlv = mt76_connac_mcu_add_tlv(skb, STA_REC_MLD,
2319 				      sizeof(struct sta_rec_mld_setup) +
2320 				      sizeof(struct mld_setup_link) * nlinks);
2321 
2322 	mld_setup = (struct sta_rec_mld_setup *)tlv;
2323 	memcpy(mld_setup->mld_addr, sta->addr, ETH_ALEN);
2324 	mld_setup->setup_wcid = cpu_to_le16(msta_link->wcid.idx);
2325 	mld_setup->primary_id = cpu_to_le16(msta_link->wcid.idx);
2326 
2327 	if (nlinks > 1) {
2328 		link_id = __ffs(links & ~BIT(msta->deflink_id));
2329 		msta_link = mt76_dereference(msta->link[msta->deflink_id],
2330 					     &dev->mt76);
2331 		if (!msta_link)
2332 			return;
2333 	}
2334 	mld_setup->seconed_id = cpu_to_le16(msta_link->wcid.idx);
2335 	mld_setup->link_num = nlinks;
2336 
2337 	vif = container_of((void *)msta->vif, struct ieee80211_vif, drv_priv);
2338 	mld_setup_link = (struct mld_setup_link *)mld_setup->link_info;
2339 	for_each_set_bit(link_id, &links, IEEE80211_MLD_MAX_NUM_LINKS) {
2340 		struct mt7996_vif_link *link;
2341 
2342 		msta_link = mt76_dereference(msta->link[link_id], &dev->mt76);
2343 		if (!msta_link)
2344 			continue;
2345 
2346 		link = mt7996_vif_link(dev, vif, link_id);
2347 		if (!link)
2348 			continue;
2349 
2350 		mld_setup_link->wcid = cpu_to_le16(msta_link->wcid.idx);
2351 		mld_setup_link->bss_idx = link->mt76.idx;
2352 		mld_setup_link++;
2353 	}
2354 }
2355 
2356 static void
mt7996_mcu_sta_eht_mld_tlv(struct mt7996_dev * dev,struct sk_buff * skb,struct ieee80211_sta * sta)2357 mt7996_mcu_sta_eht_mld_tlv(struct mt7996_dev *dev, struct sk_buff *skb,
2358 			   struct ieee80211_sta *sta)
2359 {
2360 	struct sta_rec_eht_mld *eht_mld;
2361 	struct tlv *tlv;
2362 	int i;
2363 
2364 	tlv = mt76_connac_mcu_add_tlv(skb, STA_REC_EHT_MLD, sizeof(*eht_mld));
2365 	eht_mld = (struct sta_rec_eht_mld *)tlv;
2366 
2367 	for (i = 0; i < ARRAY_SIZE(eht_mld->str_cap); i++)
2368 		eht_mld->str_cap[i] = 0x7;
2369 }
2370 
mt7996_mcu_add_sta(struct mt7996_dev * dev,struct ieee80211_bss_conf * link_conf,struct ieee80211_link_sta * link_sta,struct mt7996_vif_link * link,struct mt7996_sta_link * msta_link,int conn_state,bool newly)2371 int mt7996_mcu_add_sta(struct mt7996_dev *dev,
2372 		       struct ieee80211_bss_conf *link_conf,
2373 		       struct ieee80211_link_sta *link_sta,
2374 		       struct mt7996_vif_link *link,
2375 		       struct mt7996_sta_link *msta_link,
2376 		       int conn_state, bool newly)
2377 {
2378 	struct mt76_wcid *wcid = msta_link ? &msta_link->wcid : link->mt76.wcid;
2379 	struct ieee80211_sta *sta = link_sta ? link_sta->sta : NULL;
2380 	struct sk_buff *skb;
2381 	int ret;
2382 
2383 	skb = __mt76_connac_mcu_alloc_sta_req(&dev->mt76, &link->mt76, wcid,
2384 					      MT7996_STA_UPDATE_MAX_SIZE);
2385 	if (IS_ERR(skb))
2386 		return PTR_ERR(skb);
2387 
2388 	/* starec basic */
2389 	mt76_connac_mcu_sta_basic_tlv(&dev->mt76, skb, link_conf, link_sta,
2390 				      conn_state, newly);
2391 
2392 	if (conn_state == CONN_STATE_DISCONNECT)
2393 		goto out;
2394 
2395 	/* starec hdr trans */
2396 	mt7996_mcu_sta_hdr_trans_tlv(dev, skb, link_conf->vif, wcid);
2397 	/* starec tx proc */
2398 	mt7996_mcu_sta_tx_proc_tlv(skb);
2399 
2400 	/* tag order is in accordance with firmware dependency. */
2401 	if (link_sta) {
2402 		/* starec hdrt mode */
2403 		mt7996_mcu_sta_hdrt_tlv(dev, skb);
2404 		if (conn_state == CONN_STATE_CONNECT) {
2405 			/* starec bfer */
2406 			mt7996_mcu_sta_bfer_tlv(dev, skb, link_conf, link_sta,
2407 						link);
2408 			/* starec bfee */
2409 			mt7996_mcu_sta_bfee_tlv(dev, skb, link_conf, link_sta,
2410 						link);
2411 		}
2412 		/* starec ht */
2413 		mt7996_mcu_sta_ht_tlv(skb, link_sta);
2414 		/* starec vht */
2415 		mt7996_mcu_sta_vht_tlv(skb, link_sta);
2416 		/* starec uapsd */
2417 		mt76_connac_mcu_sta_uapsd(skb, link_conf->vif, sta);
2418 		/* starec amsdu */
2419 		mt7996_mcu_sta_amsdu_tlv(dev, skb, link_conf->vif, link_sta,
2420 					 msta_link);
2421 		/* starec he */
2422 		mt7996_mcu_sta_he_tlv(skb, link_sta, link);
2423 		/* starec he 6g*/
2424 		mt7996_mcu_sta_he_6g_tlv(skb, link_sta);
2425 		/* starec eht */
2426 		mt7996_mcu_sta_eht_tlv(skb, link_sta);
2427 		/* starec muru */
2428 		mt7996_mcu_sta_muru_tlv(dev, skb, link_conf, link_sta);
2429 
2430 		if (sta->mlo) {
2431 			mt7996_mcu_sta_mld_setup_tlv(dev, skb, sta);
2432 			mt7996_mcu_sta_eht_mld_tlv(dev, skb, sta);
2433 		}
2434 	}
2435 
2436 	ret = mt7996_mcu_add_group(dev, link_conf->vif, sta);
2437 	if (ret) {
2438 		dev_kfree_skb(skb);
2439 		return ret;
2440 	}
2441 out:
2442 	return mt76_mcu_skb_send_msg(&dev->mt76, skb,
2443 				     MCU_WMWA_UNI_CMD(STA_REC_UPDATE), true);
2444 }
2445 
mt7996_mcu_teardown_mld_sta(struct mt7996_dev * dev,struct mt7996_vif_link * link,struct mt7996_sta_link * msta_link)2446 int mt7996_mcu_teardown_mld_sta(struct mt7996_dev *dev,
2447 				struct mt7996_vif_link *link,
2448 				struct mt7996_sta_link *msta_link)
2449 {
2450 	struct sk_buff *skb;
2451 
2452 	skb = __mt76_connac_mcu_alloc_sta_req(&dev->mt76, &link->mt76,
2453 					      &msta_link->wcid,
2454 					      MT7996_STA_UPDATE_MAX_SIZE);
2455 	if (IS_ERR(skb))
2456 		return PTR_ERR(skb);
2457 
2458 	mt76_connac_mcu_add_tlv(skb, STA_REC_MLD_OFF, sizeof(struct tlv));
2459 
2460 	return mt76_mcu_skb_send_msg(&dev->mt76, skb,
2461 				     MCU_WMWA_UNI_CMD(STA_REC_UPDATE), true);
2462 }
2463 
2464 static int
mt7996_mcu_sta_key_tlv(struct mt76_wcid * wcid,struct sk_buff * skb,struct ieee80211_key_conf * key,enum set_key_cmd cmd)2465 mt7996_mcu_sta_key_tlv(struct mt76_wcid *wcid,
2466 		       struct sk_buff *skb,
2467 		       struct ieee80211_key_conf *key,
2468 		       enum set_key_cmd cmd)
2469 {
2470 	struct sta_rec_sec_uni *sec;
2471 	struct tlv *tlv;
2472 
2473 	tlv = mt76_connac_mcu_add_tlv(skb, STA_REC_KEY_V2, sizeof(*sec));
2474 	sec = (struct sta_rec_sec_uni *)tlv;
2475 	sec->add = cmd;
2476 
2477 	if (cmd == SET_KEY) {
2478 		struct sec_key_uni *sec_key;
2479 		u8 cipher;
2480 
2481 		cipher = mt76_connac_mcu_get_cipher(key->cipher);
2482 		if (cipher == MCU_CIPHER_NONE)
2483 			return -EOPNOTSUPP;
2484 
2485 		sec_key = &sec->key[0];
2486 		sec_key->wlan_idx = cpu_to_le16(wcid->idx);
2487 		sec_key->mgmt_prot = 0;
2488 		sec_key->cipher_id = cipher;
2489 		sec_key->cipher_len = sizeof(*sec_key);
2490 		sec_key->key_id = key->keyidx;
2491 		sec_key->key_len = key->keylen;
2492 		sec_key->need_resp = 0;
2493 		memcpy(sec_key->key, key->key, key->keylen);
2494 
2495 		if (cipher == MCU_CIPHER_TKIP) {
2496 			/* Rx/Tx MIC keys are swapped */
2497 			memcpy(sec_key->key + 16, key->key + 24, 8);
2498 			memcpy(sec_key->key + 24, key->key + 16, 8);
2499 		}
2500 
2501 		sec->n_cipher = 1;
2502 	} else {
2503 		sec->n_cipher = 0;
2504 	}
2505 
2506 	return 0;
2507 }
2508 
mt7996_mcu_add_key(struct mt76_dev * dev,struct ieee80211_vif * vif,struct ieee80211_key_conf * key,int mcu_cmd,struct mt76_wcid * wcid,enum set_key_cmd cmd)2509 int mt7996_mcu_add_key(struct mt76_dev *dev, struct ieee80211_vif *vif,
2510 		       struct ieee80211_key_conf *key, int mcu_cmd,
2511 		       struct mt76_wcid *wcid, enum set_key_cmd cmd)
2512 {
2513 	struct mt76_vif_link *mvif = (struct mt76_vif_link *)vif->drv_priv;
2514 	struct sk_buff *skb;
2515 	int ret;
2516 
2517 	skb = __mt76_connac_mcu_alloc_sta_req(dev, mvif, wcid,
2518 					      MT7996_STA_UPDATE_MAX_SIZE);
2519 	if (IS_ERR(skb))
2520 		return PTR_ERR(skb);
2521 
2522 	ret = mt7996_mcu_sta_key_tlv(wcid, skb, key, cmd);
2523 	if (ret)
2524 		return ret;
2525 
2526 	return mt76_mcu_skb_send_msg(dev, skb, mcu_cmd, true);
2527 }
2528 
mt7996_mcu_get_pn(struct mt7996_dev * dev,struct mt7996_vif_link * link,struct mt7996_sta_link * msta_link,u8 * pn)2529 static int mt7996_mcu_get_pn(struct mt7996_dev *dev,
2530 			     struct mt7996_vif_link *link,
2531 			     struct mt7996_sta_link *msta_link, u8 *pn)
2532 {
2533 #define TSC_TYPE_BIGTK_PN 2
2534 	struct sta_rec_pn_info *pn_info;
2535 	struct sk_buff *skb, *rskb;
2536 	struct tlv *tlv;
2537 	int ret;
2538 
2539 	skb = mt76_connac_mcu_alloc_sta_req(&dev->mt76, &link->mt76,
2540 					    &msta_link->wcid);
2541 	if (IS_ERR(skb))
2542 		return PTR_ERR(skb);
2543 
2544 	tlv = mt76_connac_mcu_add_tlv(skb, STA_REC_PN_INFO, sizeof(*pn_info));
2545 	pn_info = (struct sta_rec_pn_info *)tlv;
2546 
2547 	pn_info->tsc_type = TSC_TYPE_BIGTK_PN;
2548 	ret = mt76_mcu_skb_send_and_get_msg(&dev->mt76, skb,
2549 					    MCU_WM_UNI_CMD_QUERY(STA_REC_UPDATE),
2550 					    true, &rskb);
2551 	if (ret)
2552 		return ret;
2553 
2554 	skb_pull(rskb, 4);
2555 
2556 	pn_info = (struct sta_rec_pn_info *)rskb->data;
2557 	if (le16_to_cpu(pn_info->tag) == STA_REC_PN_INFO)
2558 		memcpy(pn, pn_info->pn, 6);
2559 
2560 	dev_kfree_skb(rskb);
2561 	return 0;
2562 }
2563 
mt7996_mcu_bcn_prot_enable(struct mt7996_dev * dev,struct mt7996_vif_link * link,struct mt7996_sta_link * msta_link,struct ieee80211_key_conf * key)2564 int mt7996_mcu_bcn_prot_enable(struct mt7996_dev *dev,
2565 			       struct mt7996_vif_link *link,
2566 			       struct mt7996_sta_link *msta_link,
2567 			       struct ieee80211_key_conf *key)
2568 {
2569 	struct mt7996_mcu_bcn_prot_tlv *bcn_prot;
2570 	struct sk_buff *skb;
2571 	struct tlv *tlv;
2572 	u8 pn[6] = {};
2573 	int len = sizeof(struct bss_req_hdr) +
2574 		  sizeof(struct mt7996_mcu_bcn_prot_tlv);
2575 	int ret;
2576 
2577 	skb = __mt7996_mcu_alloc_bss_req(&dev->mt76, &link->mt76, len);
2578 	if (IS_ERR(skb))
2579 		return PTR_ERR(skb);
2580 
2581 	tlv = mt76_connac_mcu_add_tlv(skb, UNI_BSS_INFO_BCN_PROT, sizeof(*bcn_prot));
2582 
2583 	bcn_prot = (struct mt7996_mcu_bcn_prot_tlv *)tlv;
2584 
2585 	ret = mt7996_mcu_get_pn(dev, link, msta_link, pn);
2586 	if (ret) {
2587 		dev_kfree_skb(skb);
2588 		return ret;
2589 	}
2590 
2591 	switch (key->cipher) {
2592 	case WLAN_CIPHER_SUITE_AES_CMAC:
2593 		bcn_prot->cipher_id = MCU_CIPHER_BCN_PROT_CMAC_128;
2594 		break;
2595 	case WLAN_CIPHER_SUITE_BIP_GMAC_128:
2596 		bcn_prot->cipher_id = MCU_CIPHER_BCN_PROT_GMAC_128;
2597 		break;
2598 	case WLAN_CIPHER_SUITE_BIP_GMAC_256:
2599 		bcn_prot->cipher_id = MCU_CIPHER_BCN_PROT_GMAC_256;
2600 		break;
2601 	case WLAN_CIPHER_SUITE_BIP_CMAC_256:
2602 	default:
2603 		dev_err(dev->mt76.dev, "Not supported Bigtk Cipher\n");
2604 		dev_kfree_skb(skb);
2605 		return -EOPNOTSUPP;
2606 	}
2607 
2608 	pn[0]++;
2609 	memcpy(bcn_prot->pn, pn, 6);
2610 	bcn_prot->enable = BP_SW_MODE;
2611 	memcpy(bcn_prot->key, key->key, WLAN_MAX_KEY_LEN);
2612 	bcn_prot->key_id = key->keyidx;
2613 
2614 	return mt76_mcu_skb_send_msg(&dev->mt76, skb,
2615 				     MCU_WMWA_UNI_CMD(BSS_INFO_UPDATE), true);
2616 }
2617 
mt7996_mcu_add_dev_info(struct mt7996_phy * phy,struct ieee80211_vif * vif,struct ieee80211_bss_conf * link_conf,struct mt76_vif_link * mlink,bool enable)2618 int mt7996_mcu_add_dev_info(struct mt7996_phy *phy, struct ieee80211_vif *vif,
2619 			    struct ieee80211_bss_conf *link_conf,
2620 			    struct mt76_vif_link *mlink, bool enable)
2621 {
2622 	struct mt7996_dev *dev = phy->dev;
2623 	struct {
2624 		struct req_hdr {
2625 			u8 omac_idx;
2626 			u8 band_idx;
2627 			u8 __rsv[2];
2628 		} __packed hdr;
2629 		struct req_tlv {
2630 			__le16 tag;
2631 			__le16 len;
2632 			u8 active;
2633 			u8 __rsv;
2634 			u8 omac_addr[ETH_ALEN];
2635 		} __packed tlv;
2636 	} data = {
2637 		.hdr = {
2638 			.omac_idx = mlink->omac_idx,
2639 			.band_idx = mlink->band_idx,
2640 		},
2641 		.tlv = {
2642 			.tag = cpu_to_le16(DEV_INFO_ACTIVE),
2643 			.len = cpu_to_le16(sizeof(struct req_tlv)),
2644 			.active = enable,
2645 		},
2646 	};
2647 
2648 	if (mlink->omac_idx >= REPEATER_BSSID_START)
2649 		return mt7996_mcu_muar_config(dev, mlink, link_conf->addr, false, enable);
2650 
2651 	memcpy(data.tlv.omac_addr, link_conf->addr, ETH_ALEN);
2652 	return mt76_mcu_send_msg(&dev->mt76, MCU_WMWA_UNI_CMD(DEV_INFO_UPDATE),
2653 				 &data, sizeof(data), true);
2654 }
2655 
2656 static void
mt7996_mcu_beacon_cntdwn(struct sk_buff * rskb,struct sk_buff * skb,struct ieee80211_mutable_offsets * offs,bool csa)2657 mt7996_mcu_beacon_cntdwn(struct sk_buff *rskb, struct sk_buff *skb,
2658 			 struct ieee80211_mutable_offsets *offs,
2659 			 bool csa)
2660 {
2661 	struct bss_bcn_cntdwn_tlv *info;
2662 	struct tlv *tlv;
2663 	u16 tag;
2664 
2665 	if (!offs->cntdwn_counter_offs[0])
2666 		return;
2667 
2668 	tag = csa ? UNI_BSS_INFO_BCN_CSA : UNI_BSS_INFO_BCN_BCC;
2669 
2670 	tlv = mt7996_mcu_add_uni_tlv(rskb, tag, sizeof(*info));
2671 
2672 	info = (struct bss_bcn_cntdwn_tlv *)tlv;
2673 	info->cnt = skb->data[offs->cntdwn_counter_offs[0]];
2674 }
2675 
2676 static void
mt7996_mcu_beacon_mbss(struct sk_buff * rskb,struct sk_buff * skb,struct bss_bcn_content_tlv * bcn,struct ieee80211_mutable_offsets * offs)2677 mt7996_mcu_beacon_mbss(struct sk_buff *rskb, struct sk_buff *skb,
2678 		       struct bss_bcn_content_tlv *bcn,
2679 		       struct ieee80211_mutable_offsets *offs)
2680 {
2681 	struct bss_bcn_mbss_tlv *mbss;
2682 	const struct element *elem;
2683 	struct tlv *tlv;
2684 
2685 	tlv = mt7996_mcu_add_uni_tlv(rskb, UNI_BSS_INFO_BCN_MBSSID, sizeof(*mbss));
2686 
2687 	mbss = (struct bss_bcn_mbss_tlv *)tlv;
2688 	mbss->offset[0] = cpu_to_le16(offs->tim_offset);
2689 	mbss->bitmap = cpu_to_le32(1);
2690 
2691 	for_each_element_id(elem, WLAN_EID_MULTIPLE_BSSID,
2692 			    &skb->data[offs->mbssid_off],
2693 			    skb->len - offs->mbssid_off) {
2694 		const struct element *sub_elem;
2695 
2696 		if (elem->datalen < 2)
2697 			continue;
2698 
2699 		for_each_element(sub_elem, elem->data + 1, elem->datalen - 1) {
2700 			const struct ieee80211_bssid_index *idx;
2701 			const u8 *idx_ie;
2702 
2703 			/* not a valid BSS profile */
2704 			if (sub_elem->id || sub_elem->datalen < 4)
2705 				continue;
2706 
2707 			/* Find WLAN_EID_MULTI_BSSID_IDX
2708 			 * in the merged nontransmitted profile
2709 			 */
2710 			idx_ie = cfg80211_find_ie(WLAN_EID_MULTI_BSSID_IDX,
2711 						  sub_elem->data, sub_elem->datalen);
2712 			if (!idx_ie || idx_ie[1] < sizeof(*idx))
2713 				continue;
2714 
2715 			idx = (void *)(idx_ie + 2);
2716 			if (!idx->bssid_index || idx->bssid_index > 31)
2717 				continue;
2718 
2719 			mbss->offset[idx->bssid_index] = cpu_to_le16(idx_ie -
2720 								     skb->data);
2721 			mbss->bitmap |= cpu_to_le32(BIT(idx->bssid_index));
2722 		}
2723 	}
2724 }
2725 
2726 static void
mt7996_mcu_beacon_cont(struct mt7996_dev * dev,struct ieee80211_bss_conf * link_conf,struct sk_buff * rskb,struct sk_buff * skb,struct bss_bcn_content_tlv * bcn,struct ieee80211_mutable_offsets * offs)2727 mt7996_mcu_beacon_cont(struct mt7996_dev *dev,
2728 		       struct ieee80211_bss_conf *link_conf,
2729 		       struct sk_buff *rskb, struct sk_buff *skb,
2730 		       struct bss_bcn_content_tlv *bcn,
2731 		       struct ieee80211_mutable_offsets *offs)
2732 {
2733 	struct mt76_wcid *wcid = &dev->mt76.global_wcid;
2734 	u8 *buf;
2735 
2736 	bcn->pkt_len = cpu_to_le16(MT_TXD_SIZE + skb->len);
2737 	bcn->tim_ie_pos = cpu_to_le16(offs->tim_offset);
2738 
2739 	if (offs->cntdwn_counter_offs[0]) {
2740 		u16 offset = offs->cntdwn_counter_offs[0];
2741 
2742 		if (link_conf->csa_active)
2743 			bcn->csa_ie_pos = cpu_to_le16(offset - 4);
2744 		if (link_conf->color_change_active)
2745 			bcn->bcc_ie_pos = cpu_to_le16(offset - 3);
2746 	}
2747 
2748 	buf = (u8 *)bcn + sizeof(*bcn);
2749 	mt7996_mac_write_txwi(dev, (__le32 *)buf, skb, wcid, NULL, 0, 0,
2750 			      BSS_CHANGED_BEACON);
2751 
2752 	memcpy(buf + MT_TXD_SIZE, skb->data, skb->len);
2753 }
2754 
mt7996_mcu_add_beacon(struct ieee80211_hw * hw,struct ieee80211_vif * vif,struct ieee80211_bss_conf * link_conf)2755 int mt7996_mcu_add_beacon(struct ieee80211_hw *hw, struct ieee80211_vif *vif,
2756 			  struct ieee80211_bss_conf *link_conf)
2757 {
2758 	struct mt7996_dev *dev = mt7996_hw_dev(hw);
2759 	struct mt76_vif_link *mlink = mt76_vif_conf_link(&dev->mt76, vif, link_conf);
2760 	struct ieee80211_mutable_offsets offs;
2761 	struct ieee80211_tx_info *info;
2762 	struct sk_buff *skb, *rskb;
2763 	struct tlv *tlv;
2764 	struct bss_bcn_content_tlv *bcn;
2765 	int len, extra_len = 0;
2766 
2767 	if (link_conf->nontransmitted)
2768 		return 0;
2769 
2770 	if (!mlink)
2771 		return -EINVAL;
2772 
2773 	rskb = __mt7996_mcu_alloc_bss_req(&dev->mt76, mlink,
2774 					  MT7996_MAX_BSS_OFFLOAD_SIZE);
2775 	if (IS_ERR(rskb))
2776 		return PTR_ERR(rskb);
2777 
2778 	skb = ieee80211_beacon_get_template(hw, vif, &offs, link_conf->link_id);
2779 	if (link_conf->enable_beacon && !skb) {
2780 		dev_kfree_skb(rskb);
2781 		return -EINVAL;
2782 	}
2783 
2784 	if (skb) {
2785 		if (skb->len > MT7996_MAX_BEACON_SIZE) {
2786 			dev_err(dev->mt76.dev, "Bcn size limit exceed\n");
2787 			dev_kfree_skb(rskb);
2788 			dev_kfree_skb(skb);
2789 			return -EINVAL;
2790 		}
2791 
2792 		extra_len = skb->len;
2793 	}
2794 
2795 	len = ALIGN(sizeof(*bcn) + MT_TXD_SIZE + extra_len, 4);
2796 	tlv = mt7996_mcu_add_uni_tlv(rskb, UNI_BSS_INFO_BCN_CONTENT, len);
2797 	bcn = (struct bss_bcn_content_tlv *)tlv;
2798 	bcn->enable = link_conf->enable_beacon;
2799 	if (!bcn->enable)
2800 		goto out;
2801 
2802 	info = IEEE80211_SKB_CB(skb);
2803 	info->hw_queue |= FIELD_PREP(MT_TX_HW_QUEUE_PHY, mlink->band_idx);
2804 
2805 	mt7996_mcu_beacon_cont(dev, link_conf, rskb, skb, bcn, &offs);
2806 	if (link_conf->bssid_indicator)
2807 		mt7996_mcu_beacon_mbss(rskb, skb, bcn, &offs);
2808 	mt7996_mcu_beacon_cntdwn(rskb, skb, &offs, link_conf->csa_active);
2809 out:
2810 	dev_kfree_skb(skb);
2811 	return mt76_mcu_skb_send_msg(&dev->mt76, rskb,
2812 				     MCU_WMWA_UNI_CMD(BSS_INFO_UPDATE), true);
2813 }
2814 
mt7996_mcu_beacon_inband_discov(struct mt7996_dev * dev,struct ieee80211_bss_conf * link_conf,struct mt7996_vif_link * link,u32 changed)2815 int mt7996_mcu_beacon_inband_discov(struct mt7996_dev *dev,
2816 				    struct ieee80211_bss_conf *link_conf,
2817 				    struct mt7996_vif_link *link, u32 changed)
2818 {
2819 #define OFFLOAD_TX_MODE_SU	BIT(0)
2820 #define OFFLOAD_TX_MODE_MU	BIT(1)
2821 	struct ieee80211_vif *vif = link_conf->vif;
2822 	struct ieee80211_hw *hw = mt76_hw(dev);
2823 	struct mt7996_phy *phy = link->phy;
2824 	struct mt76_wcid *wcid = &dev->mt76.global_wcid;
2825 	struct bss_inband_discovery_tlv *discov;
2826 	struct ieee80211_tx_info *info;
2827 	struct sk_buff *rskb, *skb = NULL;
2828 	struct cfg80211_chan_def *chandef;
2829 	enum nl80211_band band;
2830 	struct tlv *tlv;
2831 	u8 *buf, interval;
2832 	int len;
2833 
2834 	if (!phy)
2835 		return -EINVAL;
2836 
2837 	chandef = &phy->mt76->chandef;
2838 	band = chandef->chan->band;
2839 
2840 	if (link_conf->nontransmitted)
2841 		return 0;
2842 
2843 	rskb = __mt7996_mcu_alloc_bss_req(&dev->mt76, &link->mt76,
2844 					  MT7996_MAX_BSS_OFFLOAD_SIZE);
2845 	if (IS_ERR(rskb))
2846 		return PTR_ERR(rskb);
2847 
2848 	if (changed & BSS_CHANGED_FILS_DISCOVERY &&
2849 	    link_conf->fils_discovery.max_interval) {
2850 		interval = link_conf->fils_discovery.max_interval;
2851 		skb = ieee80211_get_fils_discovery_tmpl(hw, vif);
2852 	} else if (changed & BSS_CHANGED_UNSOL_BCAST_PROBE_RESP &&
2853 		   link_conf->unsol_bcast_probe_resp_interval) {
2854 		interval = link_conf->unsol_bcast_probe_resp_interval;
2855 		skb = ieee80211_get_unsol_bcast_probe_resp_tmpl(hw, vif);
2856 	}
2857 
2858 	if (!skb) {
2859 		dev_kfree_skb(rskb);
2860 		return -EINVAL;
2861 	}
2862 
2863 	if (skb->len > MT7996_MAX_BEACON_SIZE) {
2864 		dev_err(dev->mt76.dev, "inband discovery size limit exceed\n");
2865 		dev_kfree_skb(rskb);
2866 		dev_kfree_skb(skb);
2867 		return -EINVAL;
2868 	}
2869 
2870 	info = IEEE80211_SKB_CB(skb);
2871 	info->control.vif = vif;
2872 	info->band = band;
2873 	info->hw_queue |= FIELD_PREP(MT_TX_HW_QUEUE_PHY, phy->mt76->band_idx);
2874 
2875 	len = ALIGN(sizeof(*discov) + MT_TXD_SIZE + skb->len, 4);
2876 	tlv = mt7996_mcu_add_uni_tlv(rskb, UNI_BSS_INFO_OFFLOAD, len);
2877 
2878 	discov = (struct bss_inband_discovery_tlv *)tlv;
2879 	discov->tx_mode = OFFLOAD_TX_MODE_SU;
2880 	/* 0: UNSOL PROBE RESP, 1: FILS DISCOV */
2881 	discov->tx_type = !!(changed & BSS_CHANGED_FILS_DISCOVERY);
2882 	discov->tx_interval = interval;
2883 	discov->prob_rsp_len = cpu_to_le16(MT_TXD_SIZE + skb->len);
2884 	discov->enable = true;
2885 	discov->wcid = cpu_to_le16(MT7996_WTBL_RESERVED);
2886 
2887 	buf = (u8 *)tlv + sizeof(*discov);
2888 
2889 	mt7996_mac_write_txwi(dev, (__le32 *)buf, skb, wcid, NULL, 0, 0, changed);
2890 
2891 	memcpy(buf + MT_TXD_SIZE, skb->data, skb->len);
2892 
2893 	dev_kfree_skb(skb);
2894 
2895 	return mt76_mcu_skb_send_msg(&dev->mt76, rskb,
2896 				     MCU_WMWA_UNI_CMD(BSS_INFO_UPDATE), true);
2897 }
2898 
mt7996_driver_own(struct mt7996_dev * dev,u8 band)2899 static int mt7996_driver_own(struct mt7996_dev *dev, u8 band)
2900 {
2901 	mt76_wr(dev, MT_TOP_LPCR_HOST_BAND(band), MT_TOP_LPCR_HOST_DRV_OWN);
2902 	if (!mt76_poll_msec(dev, MT_TOP_LPCR_HOST_BAND(band),
2903 			    MT_TOP_LPCR_HOST_FW_OWN_STAT, 0, 500)) {
2904 		dev_err(dev->mt76.dev, "Timeout for driver own\n");
2905 		return -EIO;
2906 	}
2907 
2908 	/* clear irq when the driver own success */
2909 	mt76_wr(dev, MT_TOP_LPCR_HOST_BAND_IRQ_STAT(band),
2910 		MT_TOP_LPCR_HOST_BAND_STAT);
2911 
2912 	return 0;
2913 }
2914 
mt7996_patch_sec_mode(u32 key_info)2915 static u32 mt7996_patch_sec_mode(u32 key_info)
2916 {
2917 	u32 sec = u32_get_bits(key_info, MT7996_PATCH_SEC), key = 0;
2918 
2919 	if (key_info == GENMASK(31, 0) || sec == MT7996_SEC_MODE_PLAIN)
2920 		return 0;
2921 
2922 	if (sec == MT7996_SEC_MODE_AES)
2923 		key = u32_get_bits(key_info, MT7996_PATCH_AES_KEY);
2924 	else
2925 		key = u32_get_bits(key_info, MT7996_PATCH_SCRAMBLE_KEY);
2926 
2927 	return MT7996_SEC_ENCRYPT | MT7996_SEC_IV |
2928 	       u32_encode_bits(key, MT7996_SEC_KEY_IDX);
2929 }
2930 
mt7996_load_patch(struct mt7996_dev * dev)2931 static int mt7996_load_patch(struct mt7996_dev *dev)
2932 {
2933 	const struct mt7996_patch_hdr *hdr;
2934 	const struct firmware *fw = NULL;
2935 	int i, ret, sem;
2936 
2937 	sem = mt76_connac_mcu_patch_sem_ctrl(&dev->mt76, 1);
2938 	switch (sem) {
2939 	case PATCH_IS_DL:
2940 		return 0;
2941 	case PATCH_NOT_DL_SEM_SUCCESS:
2942 		break;
2943 	default:
2944 		dev_err(dev->mt76.dev, "Failed to get patch semaphore\n");
2945 		return -EAGAIN;
2946 	}
2947 
2948 	ret = request_firmware(&fw, fw_name(dev, ROM_PATCH), dev->mt76.dev);
2949 	if (ret)
2950 		goto out;
2951 
2952 	if (!fw || !fw->data || fw->size < sizeof(*hdr)) {
2953 		dev_err(dev->mt76.dev, "Invalid firmware\n");
2954 		ret = -EINVAL;
2955 		goto out;
2956 	}
2957 
2958 	hdr = (const struct mt7996_patch_hdr *)(fw->data);
2959 
2960 	dev_info(dev->mt76.dev, "HW/SW Version: 0x%x, Build Time: %.16s\n",
2961 		 be32_to_cpu(hdr->hw_sw_ver), hdr->build_date);
2962 
2963 	for (i = 0; i < be32_to_cpu(hdr->desc.n_region); i++) {
2964 		struct mt7996_patch_sec *sec;
2965 		const u8 *dl;
2966 		u32 len, addr, sec_key_idx, mode = DL_MODE_NEED_RSP;
2967 
2968 		sec = (struct mt7996_patch_sec *)(fw->data + sizeof(*hdr) +
2969 						  i * sizeof(*sec));
2970 		if ((be32_to_cpu(sec->type) & PATCH_SEC_TYPE_MASK) !=
2971 		    PATCH_SEC_TYPE_INFO) {
2972 			ret = -EINVAL;
2973 			goto out;
2974 		}
2975 
2976 		addr = be32_to_cpu(sec->info.addr);
2977 		len = be32_to_cpu(sec->info.len);
2978 		sec_key_idx = be32_to_cpu(sec->info.sec_key_idx);
2979 		dl = fw->data + be32_to_cpu(sec->offs);
2980 
2981 		mode |= mt7996_patch_sec_mode(sec_key_idx);
2982 
2983 		ret = mt76_connac_mcu_init_download(&dev->mt76, addr, len,
2984 						    mode);
2985 		if (ret) {
2986 			dev_err(dev->mt76.dev, "Download request failed\n");
2987 			goto out;
2988 		}
2989 
2990 		ret = __mt76_mcu_send_firmware(&dev->mt76, MCU_CMD(FW_SCATTER),
2991 					       dl, len, 4096);
2992 		if (ret) {
2993 			dev_err(dev->mt76.dev, "Failed to send patch\n");
2994 			goto out;
2995 		}
2996 	}
2997 
2998 	ret = mt76_connac_mcu_start_patch(&dev->mt76);
2999 	if (ret)
3000 		dev_err(dev->mt76.dev, "Failed to start patch\n");
3001 
3002 out:
3003 	sem = mt76_connac_mcu_patch_sem_ctrl(&dev->mt76, 0);
3004 	switch (sem) {
3005 	case PATCH_REL_SEM_SUCCESS:
3006 		break;
3007 	default:
3008 		ret = -EAGAIN;
3009 		dev_err(dev->mt76.dev, "Failed to release patch semaphore\n");
3010 		break;
3011 	}
3012 	release_firmware(fw);
3013 
3014 	return ret;
3015 }
3016 
3017 static int
mt7996_mcu_send_ram_firmware(struct mt7996_dev * dev,const struct mt7996_fw_trailer * hdr,const u8 * data,enum mt7996_ram_type type)3018 mt7996_mcu_send_ram_firmware(struct mt7996_dev *dev,
3019 			     const struct mt7996_fw_trailer *hdr,
3020 			     const u8 *data, enum mt7996_ram_type type)
3021 {
3022 	int i, offset = 0;
3023 	u32 override = 0, option = 0;
3024 
3025 	for (i = 0; i < hdr->n_region; i++) {
3026 		const struct mt7996_fw_region *region;
3027 		int err;
3028 		u32 len, addr, mode;
3029 
3030 		region = (const struct mt7996_fw_region *)((const u8 *)hdr -
3031 			 (hdr->n_region - i) * sizeof(*region));
3032 		/* DSP and WA use same mode */
3033 		mode = mt76_connac_mcu_gen_dl_mode(&dev->mt76,
3034 						   region->feature_set,
3035 						   type != MT7996_RAM_TYPE_WM);
3036 		len = le32_to_cpu(region->len);
3037 		addr = le32_to_cpu(region->addr);
3038 
3039 		if (region->feature_set & FW_FEATURE_OVERRIDE_ADDR)
3040 			override = addr;
3041 
3042 		err = mt76_connac_mcu_init_download(&dev->mt76, addr, len,
3043 						    mode);
3044 		if (err) {
3045 			dev_err(dev->mt76.dev, "Download request failed\n");
3046 			return err;
3047 		}
3048 
3049 		err = __mt76_mcu_send_firmware(&dev->mt76, MCU_CMD(FW_SCATTER),
3050 					       data + offset, len, 4096);
3051 		if (err) {
3052 			dev_err(dev->mt76.dev, "Failed to send firmware.\n");
3053 			return err;
3054 		}
3055 
3056 		offset += len;
3057 	}
3058 
3059 	if (override)
3060 		option |= FW_START_OVERRIDE;
3061 
3062 	if (type == MT7996_RAM_TYPE_WA)
3063 		option |= FW_START_WORKING_PDA_CR4;
3064 	else if (type == MT7996_RAM_TYPE_DSP)
3065 		option |= FW_START_WORKING_PDA_DSP;
3066 
3067 	return mt76_connac_mcu_start_firmware(&dev->mt76, override, option);
3068 }
3069 
__mt7996_load_ram(struct mt7996_dev * dev,const char * fw_type,const char * fw_file,enum mt7996_ram_type ram_type)3070 static int __mt7996_load_ram(struct mt7996_dev *dev, const char *fw_type,
3071 			     const char *fw_file, enum mt7996_ram_type ram_type)
3072 {
3073 	const struct mt7996_fw_trailer *hdr;
3074 	const struct firmware *fw;
3075 	int ret;
3076 
3077 	ret = request_firmware(&fw, fw_file, dev->mt76.dev);
3078 	if (ret)
3079 		return ret;
3080 
3081 	if (!fw || !fw->data || fw->size < sizeof(*hdr)) {
3082 		dev_err(dev->mt76.dev, "Invalid firmware\n");
3083 		ret = -EINVAL;
3084 		goto out;
3085 	}
3086 
3087 	hdr = (const void *)(fw->data + fw->size - sizeof(*hdr));
3088 	dev_info(dev->mt76.dev, "%s Firmware Version: %.10s, Build Time: %.15s\n",
3089 		 fw_type, hdr->fw_ver, hdr->build_date);
3090 
3091 	ret = mt7996_mcu_send_ram_firmware(dev, hdr, fw->data, ram_type);
3092 	if (ret) {
3093 		dev_err(dev->mt76.dev, "Failed to start %s firmware\n", fw_type);
3094 		goto out;
3095 	}
3096 
3097 	snprintf(dev->mt76.hw->wiphy->fw_version,
3098 		 sizeof(dev->mt76.hw->wiphy->fw_version),
3099 		 "%.10s-%.15s", hdr->fw_ver, hdr->build_date);
3100 
3101 out:
3102 	release_firmware(fw);
3103 
3104 	return ret;
3105 }
3106 
mt7996_load_ram(struct mt7996_dev * dev)3107 static int mt7996_load_ram(struct mt7996_dev *dev)
3108 {
3109 	int ret;
3110 
3111 	ret = __mt7996_load_ram(dev, "WM", fw_name(dev, FIRMWARE_WM),
3112 				MT7996_RAM_TYPE_WM);
3113 	if (ret)
3114 		return ret;
3115 
3116 	if (!mt7996_has_wa(dev))
3117 		return 0;
3118 
3119 	ret = __mt7996_load_ram(dev, "DSP", fw_name(dev, FIRMWARE_DSP),
3120 				MT7996_RAM_TYPE_DSP);
3121 	if (ret)
3122 		return ret;
3123 
3124 	return __mt7996_load_ram(dev, "WA", fw_name(dev, FIRMWARE_WA),
3125 				 MT7996_RAM_TYPE_WA);
3126 }
3127 
3128 static int
mt7996_firmware_state(struct mt7996_dev * dev,u8 fw_state)3129 mt7996_firmware_state(struct mt7996_dev *dev, u8 fw_state)
3130 {
3131 	u32 state = FIELD_PREP(MT_TOP_MISC_FW_STATE, fw_state);
3132 
3133 	if (!mt76_poll_msec(dev, MT_TOP_MISC, MT_TOP_MISC_FW_STATE,
3134 			    state, 1000)) {
3135 		dev_err(dev->mt76.dev, "Timeout for initializing firmware\n");
3136 		return -EIO;
3137 	}
3138 	return 0;
3139 }
3140 
3141 static int
mt7996_mcu_restart(struct mt76_dev * dev)3142 mt7996_mcu_restart(struct mt76_dev *dev)
3143 {
3144 	struct {
3145 		u8 __rsv1[4];
3146 
3147 		__le16 tag;
3148 		__le16 len;
3149 		u8 power_mode;
3150 		u8 __rsv2[3];
3151 	} __packed req = {
3152 		.tag = cpu_to_le16(UNI_POWER_OFF),
3153 		.len = cpu_to_le16(sizeof(req) - 4),
3154 		.power_mode = 1,
3155 	};
3156 
3157 	return mt76_mcu_send_msg(dev, MCU_WM_UNI_CMD(POWER_CTRL), &req,
3158 				 sizeof(req), false);
3159 }
3160 
mt7996_load_firmware(struct mt7996_dev * dev)3161 static int mt7996_load_firmware(struct mt7996_dev *dev)
3162 {
3163 	u8 fw_state;
3164 	int ret;
3165 
3166 	/* make sure fw is download state */
3167 	if (mt7996_firmware_state(dev, FW_STATE_FW_DOWNLOAD)) {
3168 		/* restart firmware once */
3169 		mt7996_mcu_restart(&dev->mt76);
3170 		ret = mt7996_firmware_state(dev, FW_STATE_FW_DOWNLOAD);
3171 		if (ret) {
3172 			dev_err(dev->mt76.dev,
3173 				"Firmware is not ready for download\n");
3174 			return ret;
3175 		}
3176 	}
3177 
3178 	ret = mt7996_load_patch(dev);
3179 	if (ret)
3180 		return ret;
3181 
3182 	ret = mt7996_load_ram(dev);
3183 	if (ret)
3184 		return ret;
3185 
3186 	fw_state = mt7996_has_wa(dev) ? FW_STATE_RDY : FW_STATE_NORMAL_TRX;
3187 	ret = mt7996_firmware_state(dev, fw_state);
3188 	if (ret)
3189 		return ret;
3190 
3191 	mt76_queue_tx_cleanup(dev, dev->mt76.q_mcu[MT_MCUQ_FWDL], false);
3192 
3193 	dev_dbg(dev->mt76.dev, "Firmware init done\n");
3194 
3195 	return 0;
3196 }
3197 
mt7996_mcu_fw_log_2_host(struct mt7996_dev * dev,u8 type,u8 ctrl)3198 int mt7996_mcu_fw_log_2_host(struct mt7996_dev *dev, u8 type, u8 ctrl)
3199 {
3200 	struct {
3201 		u8 _rsv[4];
3202 
3203 		__le16 tag;
3204 		__le16 len;
3205 		u8 ctrl;
3206 		u8 interval;
3207 		u8 _rsv2[2];
3208 	} __packed data = {
3209 		.tag = cpu_to_le16(UNI_WSYS_CONFIG_FW_LOG_CTRL),
3210 		.len = cpu_to_le16(sizeof(data) - 4),
3211 		.ctrl = ctrl,
3212 	};
3213 
3214 	if (type == MCU_FW_LOG_WA)
3215 		return mt76_mcu_send_msg(&dev->mt76, MCU_WA_UNI_CMD(WSYS_CONFIG),
3216 					 &data, sizeof(data), true);
3217 
3218 	return mt76_mcu_send_msg(&dev->mt76, MCU_WM_UNI_CMD(WSYS_CONFIG), &data,
3219 				 sizeof(data), true);
3220 }
3221 
mt7996_mcu_fw_dbg_ctrl(struct mt7996_dev * dev,u32 module,u8 level)3222 int mt7996_mcu_fw_dbg_ctrl(struct mt7996_dev *dev, u32 module, u8 level)
3223 {
3224 	struct {
3225 		u8 _rsv[4];
3226 
3227 		__le16 tag;
3228 		__le16 len;
3229 		__le32 module_idx;
3230 		u8 level;
3231 		u8 _rsv2[3];
3232 	} data = {
3233 		.tag = cpu_to_le16(UNI_WSYS_CONFIG_FW_DBG_CTRL),
3234 		.len = cpu_to_le16(sizeof(data) - 4),
3235 		.module_idx = cpu_to_le32(module),
3236 		.level = level,
3237 	};
3238 
3239 	return mt76_mcu_send_msg(&dev->mt76, MCU_WM_UNI_CMD(WSYS_CONFIG), &data,
3240 				 sizeof(data), false);
3241 }
3242 
mt7996_mcu_set_mwds(struct mt7996_dev * dev,bool enabled)3243 static int mt7996_mcu_set_mwds(struct mt7996_dev *dev, bool enabled)
3244 {
3245 	struct {
3246 		u8 enable;
3247 		u8 _rsv[3];
3248 	} __packed req = {
3249 		.enable = enabled
3250 	};
3251 
3252 	return mt76_mcu_send_msg(&dev->mt76, MCU_WA_EXT_CMD(MWDS_SUPPORT), &req,
3253 				 sizeof(req), false);
3254 }
3255 
mt7996_add_rx_airtime_tlv(struct sk_buff * skb,u8 band_idx)3256 static void mt7996_add_rx_airtime_tlv(struct sk_buff *skb, u8 band_idx)
3257 {
3258 	struct vow_rx_airtime *req;
3259 	struct tlv *tlv;
3260 
3261 	tlv = mt7996_mcu_add_uni_tlv(skb, UNI_VOW_RX_AT_AIRTIME_CLR_EN, sizeof(*req));
3262 	req = (struct vow_rx_airtime *)tlv;
3263 	req->enable = true;
3264 	req->band = band_idx;
3265 
3266 	tlv = mt7996_mcu_add_uni_tlv(skb, UNI_VOW_RX_AT_AIRTIME_EN, sizeof(*req));
3267 	req = (struct vow_rx_airtime *)tlv;
3268 	req->enable = true;
3269 	req->band = band_idx;
3270 }
3271 
3272 static int
mt7996_mcu_init_rx_airtime(struct mt7996_dev * dev)3273 mt7996_mcu_init_rx_airtime(struct mt7996_dev *dev)
3274 {
3275 	struct uni_header hdr = {};
3276 	struct sk_buff *skb;
3277 	int len, num, i;
3278 
3279 	num = 2 + 2 * (mt7996_band_valid(dev, MT_BAND1) +
3280 		       mt7996_band_valid(dev, MT_BAND2));
3281 	len = sizeof(hdr) + num * sizeof(struct vow_rx_airtime);
3282 	skb = mt76_mcu_msg_alloc(&dev->mt76, NULL, len);
3283 	if (!skb)
3284 		return -ENOMEM;
3285 
3286 	skb_put_data(skb, &hdr, sizeof(hdr));
3287 
3288 	for (i = 0; i < __MT_MAX_BAND; i++) {
3289 		if (mt7996_band_valid(dev, i))
3290 			mt7996_add_rx_airtime_tlv(skb, i);
3291 	}
3292 
3293 	return mt76_mcu_skb_send_msg(&dev->mt76, skb,
3294 				     MCU_WM_UNI_CMD(VOW), true);
3295 }
3296 
mt7996_mcu_init_firmware(struct mt7996_dev * dev)3297 int mt7996_mcu_init_firmware(struct mt7996_dev *dev)
3298 {
3299 	int ret;
3300 
3301 	/* force firmware operation mode into normal state,
3302 	 * which should be set before firmware download stage.
3303 	 */
3304 	mt76_wr(dev, MT_SWDEF_MODE, MT_SWDEF_NORMAL_MODE);
3305 
3306 	ret = mt7996_driver_own(dev, 0);
3307 	if (ret)
3308 		return ret;
3309 	/* set driver own for band1 when two hif exist */
3310 	if (dev->hif2) {
3311 		ret = mt7996_driver_own(dev, 1);
3312 		if (ret)
3313 			return ret;
3314 	}
3315 
3316 	ret = mt7996_load_firmware(dev);
3317 	if (ret)
3318 		return ret;
3319 
3320 	set_bit(MT76_STATE_MCU_RUNNING, &dev->mphy.state);
3321 	ret = mt7996_mcu_fw_log_2_host(dev, MCU_FW_LOG_WM, 0);
3322 	if (ret)
3323 		return ret;
3324 
3325 	if (mt7996_has_wa(dev)) {
3326 		ret = mt7996_mcu_fw_log_2_host(dev, MCU_FW_LOG_WA, 0);
3327 		if (ret)
3328 			return ret;
3329 
3330 		ret = mt7996_mcu_set_mwds(dev, 1);
3331 		if (ret)
3332 			return ret;
3333 	}
3334 
3335 	ret = mt7996_mcu_init_rx_airtime(dev);
3336 	if (ret)
3337 		return ret;
3338 
3339 	return mt7996_mcu_wa_cmd(dev, MCU_WA_PARAM_CMD(SET),
3340 				 MCU_WA_PARAM_RED, 0, 0);
3341 }
3342 
mt7996_mcu_init(struct mt7996_dev * dev)3343 int mt7996_mcu_init(struct mt7996_dev *dev)
3344 {
3345 	static const struct mt76_mcu_ops mt7996_mcu_ops = {
3346 		.headroom = sizeof(struct mt76_connac2_mcu_txd), /* reuse */
3347 		.mcu_skb_send_msg = mt7996_mcu_send_message,
3348 		.mcu_parse_response = mt7996_mcu_parse_response,
3349 	};
3350 
3351 	dev->mt76.mcu_ops = &mt7996_mcu_ops;
3352 
3353 	return mt7996_mcu_init_firmware(dev);
3354 }
3355 
mt7996_mcu_exit(struct mt7996_dev * dev)3356 void mt7996_mcu_exit(struct mt7996_dev *dev)
3357 {
3358 	mt7996_mcu_restart(&dev->mt76);
3359 	if (mt7996_firmware_state(dev, FW_STATE_FW_DOWNLOAD)) {
3360 		dev_err(dev->mt76.dev, "Failed to exit mcu\n");
3361 		goto out;
3362 	}
3363 
3364 	mt76_wr(dev, MT_TOP_LPCR_HOST_BAND(0), MT_TOP_LPCR_HOST_FW_OWN);
3365 	if (dev->hif2)
3366 		mt76_wr(dev, MT_TOP_LPCR_HOST_BAND(1),
3367 			MT_TOP_LPCR_HOST_FW_OWN);
3368 out:
3369 	skb_queue_purge(&dev->mt76.mcu.res_q);
3370 }
3371 
mt7996_mcu_set_hdr_trans(struct mt7996_dev * dev,bool hdr_trans)3372 int mt7996_mcu_set_hdr_trans(struct mt7996_dev *dev, bool hdr_trans)
3373 {
3374 	struct {
3375 		u8 __rsv[4];
3376 	} __packed hdr;
3377 	struct hdr_trans_blacklist *req_blacklist;
3378 	struct hdr_trans_en *req_en;
3379 	struct sk_buff *skb;
3380 	struct tlv *tlv;
3381 	int len = MT7996_HDR_TRANS_MAX_SIZE + sizeof(hdr);
3382 
3383 	skb = mt76_mcu_msg_alloc(&dev->mt76, NULL, len);
3384 	if (!skb)
3385 		return -ENOMEM;
3386 
3387 	skb_put_data(skb, &hdr, sizeof(hdr));
3388 
3389 	tlv = mt7996_mcu_add_uni_tlv(skb, UNI_HDR_TRANS_EN, sizeof(*req_en));
3390 	req_en = (struct hdr_trans_en *)tlv;
3391 	req_en->enable = hdr_trans;
3392 
3393 	tlv = mt7996_mcu_add_uni_tlv(skb, UNI_HDR_TRANS_VLAN,
3394 				     sizeof(struct hdr_trans_vlan));
3395 
3396 	if (hdr_trans) {
3397 		tlv = mt7996_mcu_add_uni_tlv(skb, UNI_HDR_TRANS_BLACKLIST,
3398 					     sizeof(*req_blacklist));
3399 		req_blacklist = (struct hdr_trans_blacklist *)tlv;
3400 		req_blacklist->enable = 1;
3401 		req_blacklist->type = cpu_to_le16(ETH_P_PAE);
3402 	}
3403 
3404 	return mt76_mcu_skb_send_msg(&dev->mt76, skb,
3405 				     MCU_WM_UNI_CMD(RX_HDR_TRANS), true);
3406 }
3407 
mt7996_mcu_set_tx(struct mt7996_dev * dev,struct ieee80211_vif * vif,struct ieee80211_bss_conf * link_conf)3408 int mt7996_mcu_set_tx(struct mt7996_dev *dev, struct ieee80211_vif *vif,
3409 		      struct ieee80211_bss_conf *link_conf)
3410 {
3411 #define MCU_EDCA_AC_PARAM	0
3412 #define WMM_AIFS_SET		BIT(0)
3413 #define WMM_CW_MIN_SET		BIT(1)
3414 #define WMM_CW_MAX_SET		BIT(2)
3415 #define WMM_TXOP_SET		BIT(3)
3416 #define WMM_PARAM_SET		(WMM_AIFS_SET | WMM_CW_MIN_SET | \
3417 				 WMM_CW_MAX_SET | WMM_TXOP_SET)
3418 	struct mt7996_vif_link *link = mt7996_vif_conf_link(dev, vif, link_conf);
3419 	struct {
3420 		u8 bss_idx;
3421 		u8 __rsv[3];
3422 	} __packed hdr = {
3423 		.bss_idx = link->mt76.idx,
3424 	};
3425 	struct sk_buff *skb;
3426 	int len = sizeof(hdr) + IEEE80211_NUM_ACS * sizeof(struct edca);
3427 	int ac;
3428 
3429 	skb = mt76_mcu_msg_alloc(&dev->mt76, NULL, len);
3430 	if (!skb)
3431 		return -ENOMEM;
3432 
3433 	skb_put_data(skb, &hdr, sizeof(hdr));
3434 
3435 	for (ac = 0; ac < IEEE80211_NUM_ACS; ac++) {
3436 		struct ieee80211_tx_queue_params *q = &link->queue_params[ac];
3437 		struct edca *e;
3438 		struct tlv *tlv;
3439 
3440 		tlv = mt7996_mcu_add_uni_tlv(skb, MCU_EDCA_AC_PARAM, sizeof(*e));
3441 
3442 		e = (struct edca *)tlv;
3443 		e->set = WMM_PARAM_SET;
3444 		e->queue = ac;
3445 		e->aifs = q->aifs;
3446 		e->txop = cpu_to_le16(q->txop);
3447 
3448 		if (q->cw_min)
3449 			e->cw_min = fls(q->cw_min);
3450 		else
3451 			e->cw_min = 5;
3452 
3453 		if (q->cw_max)
3454 			e->cw_max = fls(q->cw_max);
3455 		else
3456 			e->cw_max = 10;
3457 	}
3458 
3459 	return mt76_mcu_skb_send_msg(&dev->mt76, skb,
3460 				     MCU_WM_UNI_CMD(EDCA_UPDATE), true);
3461 }
3462 
mt7996_mcu_set_fcc5_lpn(struct mt7996_dev * dev,int val)3463 int mt7996_mcu_set_fcc5_lpn(struct mt7996_dev *dev, int val)
3464 {
3465 	struct {
3466 		u8 _rsv[4];
3467 
3468 		__le16 tag;
3469 		__le16 len;
3470 
3471 		__le32 ctrl;
3472 		__le16 min_lpn;
3473 		u8 rsv[2];
3474 	} __packed req = {
3475 		.tag = cpu_to_le16(UNI_RDD_CTRL_SET_TH),
3476 		.len = cpu_to_le16(sizeof(req) - 4),
3477 
3478 		.ctrl = cpu_to_le32(0x1),
3479 		.min_lpn = cpu_to_le16(val),
3480 	};
3481 
3482 	return mt76_mcu_send_msg(&dev->mt76, MCU_WM_UNI_CMD(RDD_CTRL),
3483 				 &req, sizeof(req), true);
3484 }
3485 
mt7996_mcu_set_pulse_th(struct mt7996_dev * dev,const struct mt7996_dfs_pulse * pulse)3486 int mt7996_mcu_set_pulse_th(struct mt7996_dev *dev,
3487 			    const struct mt7996_dfs_pulse *pulse)
3488 {
3489 	struct {
3490 		u8 _rsv[4];
3491 
3492 		__le16 tag;
3493 		__le16 len;
3494 
3495 		__le32 ctrl;
3496 
3497 		__le32 max_width;		/* us */
3498 		__le32 max_pwr;			/* dbm */
3499 		__le32 min_pwr;			/* dbm */
3500 		__le32 min_stgr_pri;		/* us */
3501 		__le32 max_stgr_pri;		/* us */
3502 		__le32 min_cr_pri;		/* us */
3503 		__le32 max_cr_pri;		/* us */
3504 	} __packed req = {
3505 		.tag = cpu_to_le16(UNI_RDD_CTRL_SET_TH),
3506 		.len = cpu_to_le16(sizeof(req) - 4),
3507 
3508 		.ctrl = cpu_to_le32(0x3),
3509 
3510 #define __req_field(field) .field = cpu_to_le32(pulse->field)
3511 		__req_field(max_width),
3512 		__req_field(max_pwr),
3513 		__req_field(min_pwr),
3514 		__req_field(min_stgr_pri),
3515 		__req_field(max_stgr_pri),
3516 		__req_field(min_cr_pri),
3517 		__req_field(max_cr_pri),
3518 #undef __req_field
3519 	};
3520 
3521 	return mt76_mcu_send_msg(&dev->mt76, MCU_WM_UNI_CMD(RDD_CTRL),
3522 				 &req, sizeof(req), true);
3523 }
3524 
mt7996_mcu_set_radar_th(struct mt7996_dev * dev,int index,const struct mt7996_dfs_pattern * pattern)3525 int mt7996_mcu_set_radar_th(struct mt7996_dev *dev, int index,
3526 			    const struct mt7996_dfs_pattern *pattern)
3527 {
3528 	struct {
3529 		u8 _rsv[4];
3530 
3531 		__le16 tag;
3532 		__le16 len;
3533 
3534 		__le32 ctrl;
3535 		__le16 radar_type;
3536 
3537 		u8 enb;
3538 		u8 stgr;
3539 		u8 min_crpn;
3540 		u8 max_crpn;
3541 		u8 min_crpr;
3542 		u8 min_pw;
3543 		__le32 min_pri;
3544 		__le32 max_pri;
3545 		u8 max_pw;
3546 		u8 min_crbn;
3547 		u8 max_crbn;
3548 		u8 min_stgpn;
3549 		u8 max_stgpn;
3550 		u8 min_stgpr;
3551 		u8 rsv[2];
3552 		__le32 min_stgpr_diff;
3553 	} __packed req = {
3554 		.tag = cpu_to_le16(UNI_RDD_CTRL_SET_TH),
3555 		.len = cpu_to_le16(sizeof(req) - 4),
3556 
3557 		.ctrl = cpu_to_le32(0x2),
3558 		.radar_type = cpu_to_le16(index),
3559 
3560 #define __req_field_u8(field) .field = pattern->field
3561 #define __req_field_u32(field) .field = cpu_to_le32(pattern->field)
3562 		__req_field_u8(enb),
3563 		__req_field_u8(stgr),
3564 		__req_field_u8(min_crpn),
3565 		__req_field_u8(max_crpn),
3566 		__req_field_u8(min_crpr),
3567 		__req_field_u8(min_pw),
3568 		__req_field_u32(min_pri),
3569 		__req_field_u32(max_pri),
3570 		__req_field_u8(max_pw),
3571 		__req_field_u8(min_crbn),
3572 		__req_field_u8(max_crbn),
3573 		__req_field_u8(min_stgpn),
3574 		__req_field_u8(max_stgpn),
3575 		__req_field_u8(min_stgpr),
3576 		__req_field_u32(min_stgpr_diff),
3577 #undef __req_field_u8
3578 #undef __req_field_u32
3579 	};
3580 
3581 	return mt76_mcu_send_msg(&dev->mt76, MCU_WM_UNI_CMD(RDD_CTRL),
3582 				 &req, sizeof(req), true);
3583 }
3584 
3585 static int
mt7996_mcu_background_chain_ctrl(struct mt7996_phy * phy,struct cfg80211_chan_def * chandef,int cmd)3586 mt7996_mcu_background_chain_ctrl(struct mt7996_phy *phy,
3587 				 struct cfg80211_chan_def *chandef,
3588 				 int cmd)
3589 {
3590 	struct mt7996_dev *dev = phy->dev;
3591 	struct mt76_phy *mphy = phy->mt76;
3592 	struct ieee80211_channel *chan = mphy->chandef.chan;
3593 	int freq = mphy->chandef.center_freq1;
3594 	struct mt7996_mcu_background_chain_ctrl req = {
3595 		.tag = cpu_to_le16(0),
3596 		.len = cpu_to_le16(sizeof(req) - 4),
3597 		.monitor_scan_type = 2, /* simple rx */
3598 	};
3599 
3600 	if (!chandef && cmd != CH_SWITCH_BACKGROUND_SCAN_STOP)
3601 		return -EINVAL;
3602 
3603 	if (!cfg80211_chandef_valid(&mphy->chandef))
3604 		return -EINVAL;
3605 
3606 	switch (cmd) {
3607 	case CH_SWITCH_BACKGROUND_SCAN_START: {
3608 		req.chan = chan->hw_value;
3609 		req.central_chan = ieee80211_frequency_to_channel(freq);
3610 		req.bw = mt76_connac_chan_bw(&mphy->chandef);
3611 		req.monitor_chan = chandef->chan->hw_value;
3612 		req.monitor_central_chan =
3613 			ieee80211_frequency_to_channel(chandef->center_freq1);
3614 		req.monitor_bw = mt76_connac_chan_bw(chandef);
3615 		req.band_idx = phy->mt76->band_idx;
3616 		req.scan_mode = 1;
3617 		break;
3618 	}
3619 	case CH_SWITCH_BACKGROUND_SCAN_RUNNING:
3620 		req.monitor_chan = chandef->chan->hw_value;
3621 		req.monitor_central_chan =
3622 			ieee80211_frequency_to_channel(chandef->center_freq1);
3623 		req.band_idx = phy->mt76->band_idx;
3624 		req.scan_mode = 2;
3625 		break;
3626 	case CH_SWITCH_BACKGROUND_SCAN_STOP:
3627 		req.chan = chan->hw_value;
3628 		req.central_chan = ieee80211_frequency_to_channel(freq);
3629 		req.bw = mt76_connac_chan_bw(&mphy->chandef);
3630 		req.tx_stream = hweight8(mphy->antenna_mask);
3631 		req.rx_stream = mphy->antenna_mask;
3632 		break;
3633 	default:
3634 		return -EINVAL;
3635 	}
3636 	req.band = chandef ? chandef->chan->band == NL80211_BAND_5GHZ : 1;
3637 
3638 	return mt76_mcu_send_msg(&dev->mt76, MCU_WM_UNI_CMD(OFFCH_SCAN_CTRL),
3639 				 &req, sizeof(req), false);
3640 }
3641 
mt7996_mcu_rdd_background_enable(struct mt7996_phy * phy,struct cfg80211_chan_def * chandef)3642 int mt7996_mcu_rdd_background_enable(struct mt7996_phy *phy,
3643 				     struct cfg80211_chan_def *chandef)
3644 {
3645 	struct mt7996_dev *dev = phy->dev;
3646 	int err, region, rdd_idx = mt7996_get_rdd_idx(phy, true);
3647 
3648 	if (!chandef) { /* disable offchain */
3649 		err = mt7996_mcu_rdd_cmd(dev, RDD_STOP, rdd_idx, 0);
3650 		if (err)
3651 			return err;
3652 
3653 		return mt7996_mcu_background_chain_ctrl(phy, NULL,
3654 				CH_SWITCH_BACKGROUND_SCAN_STOP);
3655 	}
3656 
3657 	err = mt7996_mcu_background_chain_ctrl(phy, chandef,
3658 					       CH_SWITCH_BACKGROUND_SCAN_START);
3659 	if (err)
3660 		return err;
3661 
3662 	switch (dev->mt76.region) {
3663 	case NL80211_DFS_ETSI:
3664 		region = 0;
3665 		break;
3666 	case NL80211_DFS_JP:
3667 		region = 2;
3668 		break;
3669 	case NL80211_DFS_FCC:
3670 	default:
3671 		region = 1;
3672 		break;
3673 	}
3674 
3675 	return mt7996_mcu_rdd_cmd(dev, RDD_START, rdd_idx, region);
3676 }
3677 
mt7996_mcu_set_chan_info(struct mt7996_phy * phy,u16 tag)3678 int mt7996_mcu_set_chan_info(struct mt7996_phy *phy, u16 tag)
3679 {
3680 	static const u8 ch_band[] = {
3681 		[NL80211_BAND_2GHZ] = 0,
3682 		[NL80211_BAND_5GHZ] = 1,
3683 		[NL80211_BAND_6GHZ] = 2,
3684 	};
3685 	struct mt7996_dev *dev = phy->dev;
3686 	struct cfg80211_chan_def *chandef = &phy->mt76->chandef;
3687 	int freq1 = chandef->center_freq1;
3688 	u8 band_idx = phy->mt76->band_idx;
3689 	struct {
3690 		/* fixed field */
3691 		u8 __rsv[4];
3692 
3693 		__le16 tag;
3694 		__le16 len;
3695 		u8 control_ch;
3696 		u8 center_ch;
3697 		u8 bw;
3698 		u8 tx_path_num;
3699 		u8 rx_path;	/* mask or num */
3700 		u8 switch_reason;
3701 		u8 band_idx;
3702 		u8 center_ch2;	/* for 80+80 only */
3703 		__le16 cac_case;
3704 		u8 channel_band;
3705 		u8 rsv0;
3706 		__le32 outband_freq;
3707 		u8 txpower_drop;
3708 		u8 ap_bw;
3709 		u8 ap_center_ch;
3710 		u8 rsv1[53];
3711 	} __packed req = {
3712 		.tag = cpu_to_le16(tag),
3713 		.len = cpu_to_le16(sizeof(req) - 4),
3714 		.control_ch = chandef->chan->hw_value,
3715 		.center_ch = ieee80211_frequency_to_channel(freq1),
3716 		.bw = mt76_connac_chan_bw(chandef),
3717 		.tx_path_num = hweight16(phy->mt76->chainmask),
3718 		.rx_path = mt7996_rx_chainmask(phy) >> dev->chainshift[band_idx],
3719 		.band_idx = band_idx,
3720 		.channel_band = ch_band[chandef->chan->band],
3721 	};
3722 
3723 	if (phy->mt76->hw->conf.flags & IEEE80211_CONF_MONITOR)
3724 		req.switch_reason = CH_SWITCH_NORMAL;
3725 	else if (phy->mt76->offchannel ||
3726 		 phy->mt76->hw->conf.flags & IEEE80211_CONF_IDLE)
3727 		req.switch_reason = CH_SWITCH_SCAN_BYPASS_DPD;
3728 	else if (!cfg80211_reg_can_beacon(phy->mt76->hw->wiphy, chandef,
3729 					  NL80211_IFTYPE_AP))
3730 		req.switch_reason = CH_SWITCH_DFS;
3731 	else
3732 		req.switch_reason = CH_SWITCH_NORMAL;
3733 
3734 	if (tag == UNI_CHANNEL_SWITCH)
3735 		req.rx_path = hweight8(req.rx_path);
3736 
3737 	if (chandef->width == NL80211_CHAN_WIDTH_80P80) {
3738 		int freq2 = chandef->center_freq2;
3739 
3740 		req.center_ch2 = ieee80211_frequency_to_channel(freq2);
3741 	}
3742 
3743 	return mt76_mcu_send_msg(&dev->mt76, MCU_WMWA_UNI_CMD(CHANNEL_SWITCH),
3744 				 &req, sizeof(req), true);
3745 }
3746 
mt7996_mcu_set_eeprom_flash(struct mt7996_dev * dev)3747 static int mt7996_mcu_set_eeprom_flash(struct mt7996_dev *dev)
3748 {
3749 #define MAX_PAGE_IDX_MASK	GENMASK(7, 5)
3750 #define PAGE_IDX_MASK		GENMASK(4, 2)
3751 #define PER_PAGE_SIZE		0x400
3752 	struct mt7996_mcu_eeprom req = {
3753 		.tag = cpu_to_le16(UNI_EFUSE_BUFFER_MODE),
3754 		.buffer_mode = EE_MODE_BUFFER
3755 	};
3756 	u16 eeprom_size = MT7996_EEPROM_SIZE;
3757 	u8 total = DIV_ROUND_UP(eeprom_size, PER_PAGE_SIZE);
3758 	u8 *eep = (u8 *)dev->mt76.eeprom.data;
3759 	int eep_len, i;
3760 
3761 	for (i = 0; i < total; i++, eep += eep_len) {
3762 		struct sk_buff *skb;
3763 		int ret, msg_len;
3764 
3765 		if (i == total - 1 && !!(eeprom_size % PER_PAGE_SIZE))
3766 			eep_len = eeprom_size % PER_PAGE_SIZE;
3767 		else
3768 			eep_len = PER_PAGE_SIZE;
3769 
3770 		msg_len = sizeof(req) + eep_len;
3771 		skb = mt76_mcu_msg_alloc(&dev->mt76, NULL, msg_len);
3772 		if (!skb)
3773 			return -ENOMEM;
3774 
3775 		req.len = cpu_to_le16(msg_len - 4);
3776 		req.format = FIELD_PREP(MAX_PAGE_IDX_MASK, total - 1) |
3777 			     FIELD_PREP(PAGE_IDX_MASK, i) | EE_FORMAT_WHOLE;
3778 		req.buf_len = cpu_to_le16(eep_len);
3779 
3780 		skb_put_data(skb, &req, sizeof(req));
3781 		skb_put_data(skb, eep, eep_len);
3782 
3783 		ret = mt76_mcu_skb_send_msg(&dev->mt76, skb,
3784 					    MCU_WM_UNI_CMD(EFUSE_CTRL), true);
3785 		if (ret)
3786 			return ret;
3787 	}
3788 
3789 	return 0;
3790 }
3791 
mt7996_mcu_set_eeprom(struct mt7996_dev * dev)3792 int mt7996_mcu_set_eeprom(struct mt7996_dev *dev)
3793 {
3794 	struct mt7996_mcu_eeprom req = {
3795 		.tag = cpu_to_le16(UNI_EFUSE_BUFFER_MODE),
3796 		.len = cpu_to_le16(sizeof(req) - 4),
3797 		.buffer_mode = EE_MODE_EFUSE,
3798 		.format = EE_FORMAT_WHOLE
3799 	};
3800 
3801 	if (dev->flash_mode)
3802 		return mt7996_mcu_set_eeprom_flash(dev);
3803 
3804 	return mt76_mcu_send_msg(&dev->mt76, MCU_WM_UNI_CMD(EFUSE_CTRL),
3805 				 &req, sizeof(req), true);
3806 }
3807 
mt7996_mcu_get_eeprom(struct mt7996_dev * dev,u32 offset,u8 * buf,u32 buf_len)3808 int mt7996_mcu_get_eeprom(struct mt7996_dev *dev, u32 offset, u8 *buf, u32 buf_len)
3809 {
3810 	struct {
3811 		u8 _rsv[4];
3812 
3813 		__le16 tag;
3814 		__le16 len;
3815 		__le32 addr;
3816 		__le32 valid;
3817 		u8 data[16];
3818 	} __packed req = {
3819 		.tag = cpu_to_le16(UNI_EFUSE_ACCESS),
3820 		.len = cpu_to_le16(sizeof(req) - 4),
3821 		.addr = cpu_to_le32(round_down(offset,
3822 				    MT7996_EEPROM_BLOCK_SIZE)),
3823 	};
3824 	struct sk_buff *skb;
3825 	bool valid;
3826 	int ret;
3827 
3828 	ret = mt76_mcu_send_and_get_msg(&dev->mt76,
3829 					MCU_WM_UNI_CMD_QUERY(EFUSE_CTRL),
3830 					&req, sizeof(req), true, &skb);
3831 	if (ret)
3832 		return ret;
3833 
3834 	valid = le32_to_cpu(*(__le32 *)(skb->data + 16));
3835 	if (valid) {
3836 		u32 addr = le32_to_cpu(*(__le32 *)(skb->data + 12));
3837 
3838 		if (!buf)
3839 			buf = (u8 *)dev->mt76.eeprom.data + addr;
3840 		if (!buf_len || buf_len > MT7996_EEPROM_BLOCK_SIZE)
3841 			buf_len = MT7996_EEPROM_BLOCK_SIZE;
3842 
3843 		skb_pull(skb, 48);
3844 		memcpy(buf, skb->data, buf_len);
3845 	} else {
3846 		ret = -EINVAL;
3847 	}
3848 
3849 	dev_kfree_skb(skb);
3850 
3851 	return ret;
3852 }
3853 
mt7996_mcu_get_eeprom_free_block(struct mt7996_dev * dev,u8 * block_num)3854 int mt7996_mcu_get_eeprom_free_block(struct mt7996_dev *dev, u8 *block_num)
3855 {
3856 	struct {
3857 		u8 _rsv[4];
3858 
3859 		__le16 tag;
3860 		__le16 len;
3861 		u8 num;
3862 		u8 version;
3863 		u8 die_idx;
3864 		u8 _rsv2;
3865 	} __packed req = {
3866 		.tag = cpu_to_le16(UNI_EFUSE_FREE_BLOCK),
3867 		.len = cpu_to_le16(sizeof(req) - 4),
3868 		.version = 2,
3869 	};
3870 	struct sk_buff *skb;
3871 	int ret;
3872 
3873 	ret = mt76_mcu_send_and_get_msg(&dev->mt76, MCU_WM_UNI_CMD_QUERY(EFUSE_CTRL), &req,
3874 					sizeof(req), true, &skb);
3875 	if (ret)
3876 		return ret;
3877 
3878 	*block_num = *(u8 *)(skb->data + 8);
3879 	dev_kfree_skb(skb);
3880 
3881 	return 0;
3882 }
3883 
mt7996_mcu_get_chip_config(struct mt7996_dev * dev,u32 * cap)3884 int mt7996_mcu_get_chip_config(struct mt7996_dev *dev, u32 *cap)
3885 {
3886 #define NIC_CAP	3
3887 #define UNI_EVENT_CHIP_CONFIG_EFUSE_VERSION	0x21
3888 	struct {
3889 		u8 _rsv[4];
3890 
3891 		__le16 tag;
3892 		__le16 len;
3893 	} __packed req = {
3894 		.tag = cpu_to_le16(NIC_CAP),
3895 		.len = cpu_to_le16(sizeof(req) - 4),
3896 	};
3897 	struct sk_buff *skb;
3898 	u8 *buf;
3899 	int ret;
3900 
3901 	ret = mt76_mcu_send_and_get_msg(&dev->mt76,
3902 					MCU_WM_UNI_CMD_QUERY(CHIP_CONFIG), &req,
3903 					sizeof(req), true, &skb);
3904 	if (ret)
3905 		return ret;
3906 
3907 	/* fixed field */
3908 	skb_pull(skb, 4);
3909 
3910 	buf = skb->data;
3911 	while (buf - skb->data < skb->len) {
3912 		struct tlv *tlv = (struct tlv *)buf;
3913 
3914 		switch (le16_to_cpu(tlv->tag)) {
3915 		case UNI_EVENT_CHIP_CONFIG_EFUSE_VERSION:
3916 			*cap = le32_to_cpu(*(__le32 *)(buf + sizeof(*tlv)));
3917 			break;
3918 		default:
3919 			break;
3920 		}
3921 
3922 		buf += le16_to_cpu(tlv->len);
3923 	}
3924 
3925 	dev_kfree_skb(skb);
3926 
3927 	return 0;
3928 }
3929 
mt7996_mcu_get_chan_mib_info(struct mt7996_phy * phy,bool chan_switch)3930 int mt7996_mcu_get_chan_mib_info(struct mt7996_phy *phy, bool chan_switch)
3931 {
3932 	enum {
3933 		IDX_TX_TIME,
3934 		IDX_RX_TIME,
3935 		IDX_OBSS_AIRTIME,
3936 		IDX_NON_WIFI_TIME,
3937 		IDX_NUM
3938 	};
3939 	struct {
3940 		struct {
3941 			u8 band;
3942 			u8 __rsv[3];
3943 		} hdr;
3944 		struct {
3945 			__le16 tag;
3946 			__le16 len;
3947 			__le32 offs;
3948 		} data[IDX_NUM];
3949 	} __packed req = {
3950 		.hdr.band = phy->mt76->band_idx,
3951 	};
3952 	static const u32 offs[] = {
3953 		[IDX_TX_TIME] = UNI_MIB_TX_TIME,
3954 		[IDX_RX_TIME] = UNI_MIB_RX_TIME,
3955 		[IDX_OBSS_AIRTIME] = UNI_MIB_OBSS_AIRTIME,
3956 		[IDX_NON_WIFI_TIME] = UNI_MIB_NON_WIFI_TIME,
3957 	};
3958 	struct mt76_channel_state *state = phy->mt76->chan_state;
3959 	struct mt76_channel_state *state_ts = &phy->state_ts;
3960 	struct mt7996_dev *dev = phy->dev;
3961 	struct mt7996_mcu_mib *res;
3962 	struct sk_buff *skb;
3963 	int i, ret;
3964 
3965 	for (i = 0; i < IDX_NUM; i++) {
3966 		req.data[i].tag = cpu_to_le16(UNI_CMD_MIB_DATA);
3967 		req.data[i].len = cpu_to_le16(sizeof(req.data[i]));
3968 		req.data[i].offs = cpu_to_le32(offs[i]);
3969 	}
3970 
3971 	ret = mt76_mcu_send_and_get_msg(&dev->mt76, MCU_WM_UNI_CMD_QUERY(GET_MIB_INFO),
3972 					&req, sizeof(req), true, &skb);
3973 	if (ret)
3974 		return ret;
3975 
3976 	skb_pull(skb, sizeof(req.hdr));
3977 
3978 	res = (struct mt7996_mcu_mib *)(skb->data);
3979 
3980 	if (chan_switch)
3981 		goto out;
3982 
3983 #define __res_u64(s) le64_to_cpu(res[s].data)
3984 	state->cc_tx += __res_u64(IDX_TX_TIME) - state_ts->cc_tx;
3985 	state->cc_bss_rx += __res_u64(IDX_RX_TIME) - state_ts->cc_bss_rx;
3986 	state->cc_rx += __res_u64(IDX_RX_TIME) +
3987 			__res_u64(IDX_OBSS_AIRTIME) -
3988 			state_ts->cc_rx;
3989 	state->cc_busy += __res_u64(IDX_TX_TIME) +
3990 			  __res_u64(IDX_RX_TIME) +
3991 			  __res_u64(IDX_OBSS_AIRTIME) +
3992 			  __res_u64(IDX_NON_WIFI_TIME) -
3993 			  state_ts->cc_busy;
3994 out:
3995 	state_ts->cc_tx = __res_u64(IDX_TX_TIME);
3996 	state_ts->cc_bss_rx = __res_u64(IDX_RX_TIME);
3997 	state_ts->cc_rx = __res_u64(IDX_RX_TIME) + __res_u64(IDX_OBSS_AIRTIME);
3998 	state_ts->cc_busy = __res_u64(IDX_TX_TIME) +
3999 			    __res_u64(IDX_RX_TIME) +
4000 			    __res_u64(IDX_OBSS_AIRTIME) +
4001 			    __res_u64(IDX_NON_WIFI_TIME);
4002 #undef __res_u64
4003 
4004 	dev_kfree_skb(skb);
4005 
4006 	return 0;
4007 }
4008 
mt7996_mcu_get_temperature(struct mt7996_phy * phy)4009 int mt7996_mcu_get_temperature(struct mt7996_phy *phy)
4010 {
4011 #define TEMPERATURE_QUERY 0
4012 #define GET_TEMPERATURE 0
4013 	struct {
4014 		u8 _rsv[4];
4015 
4016 		__le16 tag;
4017 		__le16 len;
4018 
4019 		u8 rsv1;
4020 		u8 action;
4021 		u8 band_idx;
4022 		u8 rsv2;
4023 	} req = {
4024 		.tag = cpu_to_le16(TEMPERATURE_QUERY),
4025 		.len = cpu_to_le16(sizeof(req) - 4),
4026 		.action = GET_TEMPERATURE,
4027 		.band_idx = phy->mt76->band_idx,
4028 	};
4029 	struct mt7996_mcu_thermal {
4030 		u8 _rsv[4];
4031 
4032 		__le16 tag;
4033 		__le16 len;
4034 
4035 		__le32 rsv;
4036 		__le32 temperature;
4037 	} __packed * res;
4038 	struct sk_buff *skb;
4039 	int ret;
4040 	u32 temp;
4041 
4042 	ret = mt76_mcu_send_and_get_msg(&phy->dev->mt76, MCU_WM_UNI_CMD(THERMAL),
4043 					&req, sizeof(req), true, &skb);
4044 	if (ret)
4045 		return ret;
4046 
4047 	res = (void *)skb->data;
4048 	temp = le32_to_cpu(res->temperature);
4049 	dev_kfree_skb(skb);
4050 
4051 	return temp;
4052 }
4053 
mt7996_mcu_set_thermal_throttling(struct mt7996_phy * phy,u8 state)4054 int mt7996_mcu_set_thermal_throttling(struct mt7996_phy *phy, u8 state)
4055 {
4056 	struct {
4057 		u8 _rsv[4];
4058 
4059 		__le16 tag;
4060 		__le16 len;
4061 
4062 		struct mt7996_mcu_thermal_ctrl ctrl;
4063 	} __packed req = {
4064 		.tag = cpu_to_le16(UNI_CMD_THERMAL_PROTECT_DUTY_CONFIG),
4065 		.len = cpu_to_le16(sizeof(req) - 4),
4066 		.ctrl = {
4067 			.band_idx = phy->mt76->band_idx,
4068 		},
4069 	};
4070 	int level, ret;
4071 
4072 	/* set duty cycle and level */
4073 	for (level = 0; level < 4; level++) {
4074 		req.ctrl.duty.duty_level = level;
4075 		req.ctrl.duty.duty_cycle = state;
4076 		state /= 2;
4077 
4078 		ret = mt76_mcu_send_msg(&phy->dev->mt76, MCU_WM_UNI_CMD(THERMAL),
4079 					&req, sizeof(req), false);
4080 		if (ret)
4081 			return ret;
4082 	}
4083 
4084 	return 0;
4085 }
4086 
mt7996_mcu_set_thermal_protect(struct mt7996_phy * phy,bool enable)4087 int mt7996_mcu_set_thermal_protect(struct mt7996_phy *phy, bool enable)
4088 {
4089 #define SUSTAIN_PERIOD		10
4090 	struct {
4091 		u8 _rsv[4];
4092 
4093 		__le16 tag;
4094 		__le16 len;
4095 
4096 		struct mt7996_mcu_thermal_ctrl ctrl;
4097 		struct mt7996_mcu_thermal_enable enable;
4098 	} __packed req = {
4099 		.len = cpu_to_le16(sizeof(req) - 4 - sizeof(req.enable)),
4100 		.ctrl = {
4101 			.band_idx = phy->mt76->band_idx,
4102 			.type.protect_type = 1,
4103 			.type.trigger_type = 1,
4104 		},
4105 	};
4106 	int ret;
4107 
4108 	req.tag = cpu_to_le16(UNI_CMD_THERMAL_PROTECT_DISABLE);
4109 
4110 	ret = mt76_mcu_send_msg(&phy->dev->mt76, MCU_WM_UNI_CMD(THERMAL),
4111 				&req, sizeof(req) - sizeof(req.enable), false);
4112 	if (ret || !enable)
4113 		return ret;
4114 
4115 	/* set high-temperature trigger threshold */
4116 	req.tag = cpu_to_le16(UNI_CMD_THERMAL_PROTECT_ENABLE);
4117 	req.enable.restore_temp = cpu_to_le32(phy->throttle_temp[0]);
4118 	req.enable.trigger_temp = cpu_to_le32(phy->throttle_temp[1]);
4119 	req.enable.sustain_time = cpu_to_le16(SUSTAIN_PERIOD);
4120 
4121 	req.len = cpu_to_le16(sizeof(req) - 4);
4122 
4123 	return mt76_mcu_send_msg(&phy->dev->mt76, MCU_WM_UNI_CMD(THERMAL),
4124 				 &req, sizeof(req), false);
4125 }
4126 
mt7996_mcu_set_ser(struct mt7996_dev * dev,u8 action,u8 val,u8 band)4127 int mt7996_mcu_set_ser(struct mt7996_dev *dev, u8 action, u8 val, u8 band)
4128 {
4129 	struct {
4130 		u8 rsv[4];
4131 
4132 		__le16 tag;
4133 		__le16 len;
4134 
4135 		union {
4136 			struct {
4137 				__le32 mask;
4138 			} __packed set;
4139 
4140 			struct {
4141 				u8 method;
4142 				u8 band;
4143 				u8 rsv2[2];
4144 			} __packed trigger;
4145 		};
4146 	} __packed req = {
4147 		.tag = cpu_to_le16(action),
4148 		.len = cpu_to_le16(sizeof(req) - 4),
4149 	};
4150 
4151 	switch (action) {
4152 	case UNI_CMD_SER_SET:
4153 		req.set.mask = cpu_to_le32(val);
4154 		break;
4155 	case UNI_CMD_SER_TRIGGER:
4156 		req.trigger.method = val;
4157 		req.trigger.band = band;
4158 		break;
4159 	default:
4160 		return -EINVAL;
4161 	}
4162 
4163 	return mt76_mcu_send_msg(&dev->mt76, MCU_WM_UNI_CMD(SER),
4164 				 &req, sizeof(req), false);
4165 }
4166 
mt7996_mcu_set_txbf(struct mt7996_dev * dev,u8 action)4167 int mt7996_mcu_set_txbf(struct mt7996_dev *dev, u8 action)
4168 {
4169 #define MT7996_BF_MAX_SIZE	sizeof(union bf_tag_tlv)
4170 #define BF_PROCESSING	4
4171 	struct uni_header hdr;
4172 	struct sk_buff *skb;
4173 	struct tlv *tlv;
4174 	int len = sizeof(hdr) + MT7996_BF_MAX_SIZE;
4175 
4176 	memset(&hdr, 0, sizeof(hdr));
4177 
4178 	skb = mt76_mcu_msg_alloc(&dev->mt76, NULL, len);
4179 	if (!skb)
4180 		return -ENOMEM;
4181 
4182 	skb_put_data(skb, &hdr, sizeof(hdr));
4183 
4184 	switch (action) {
4185 	case BF_SOUNDING_ON: {
4186 		struct bf_sounding_on *req_snd_on;
4187 
4188 		tlv = mt7996_mcu_add_uni_tlv(skb, action, sizeof(*req_snd_on));
4189 		req_snd_on = (struct bf_sounding_on *)tlv;
4190 		req_snd_on->snd_mode = BF_PROCESSING;
4191 		break;
4192 	}
4193 	case BF_HW_EN_UPDATE: {
4194 		struct bf_hw_en_status_update *req_hw_en;
4195 
4196 		tlv = mt7996_mcu_add_uni_tlv(skb, action, sizeof(*req_hw_en));
4197 		req_hw_en = (struct bf_hw_en_status_update *)tlv;
4198 		req_hw_en->ebf = true;
4199 		req_hw_en->ibf = dev->ibf;
4200 		break;
4201 	}
4202 	case BF_MOD_EN_CTRL: {
4203 		struct bf_mod_en_ctrl *req_mod_en;
4204 
4205 		tlv = mt7996_mcu_add_uni_tlv(skb, action, sizeof(*req_mod_en));
4206 		req_mod_en = (struct bf_mod_en_ctrl *)tlv;
4207 		req_mod_en->bf_num = mt7996_band_valid(dev, MT_BAND2) ? 3 : 2;
4208 		req_mod_en->bf_bitmap = mt7996_band_valid(dev, MT_BAND2) ?
4209 					GENMASK(2, 0) : GENMASK(1, 0);
4210 		break;
4211 	}
4212 	default:
4213 		return -EINVAL;
4214 	}
4215 
4216 	return mt76_mcu_skb_send_msg(&dev->mt76, skb, MCU_WM_UNI_CMD(BF), true);
4217 }
4218 
4219 static int
mt7996_mcu_enable_obss_spr(struct mt7996_phy * phy,u16 action,u8 val)4220 mt7996_mcu_enable_obss_spr(struct mt7996_phy *phy, u16 action, u8 val)
4221 {
4222 	struct mt7996_dev *dev = phy->dev;
4223 	struct {
4224 		u8 band_idx;
4225 		u8 __rsv[3];
4226 
4227 		__le16 tag;
4228 		__le16 len;
4229 
4230 		__le32 val;
4231 	} __packed req = {
4232 		.band_idx = phy->mt76->band_idx,
4233 		.tag = cpu_to_le16(action),
4234 		.len = cpu_to_le16(sizeof(req) - 4),
4235 		.val = cpu_to_le32(val),
4236 	};
4237 
4238 	return mt76_mcu_send_msg(&dev->mt76, MCU_WM_UNI_CMD(SR),
4239 				 &req, sizeof(req), true);
4240 }
4241 
4242 static int
mt7996_mcu_set_obss_spr_pd(struct mt7996_phy * phy,struct ieee80211_he_obss_pd * he_obss_pd)4243 mt7996_mcu_set_obss_spr_pd(struct mt7996_phy *phy,
4244 			   struct ieee80211_he_obss_pd *he_obss_pd)
4245 {
4246 	struct mt7996_dev *dev = phy->dev;
4247 	u8 max_th = 82, non_srg_max_th = 62;
4248 	struct {
4249 		u8 band_idx;
4250 		u8 __rsv[3];
4251 
4252 		__le16 tag;
4253 		__le16 len;
4254 
4255 		u8 pd_th_non_srg;
4256 		u8 pd_th_srg;
4257 		u8 period_offs;
4258 		u8 rcpi_src;
4259 		__le16 obss_pd_min;
4260 		__le16 obss_pd_min_srg;
4261 		u8 resp_txpwr_mode;
4262 		u8 txpwr_restrict_mode;
4263 		u8 txpwr_ref;
4264 		u8 __rsv2[3];
4265 	} __packed req = {
4266 		.band_idx = phy->mt76->band_idx,
4267 		.tag = cpu_to_le16(UNI_CMD_SR_SET_PARAM),
4268 		.len = cpu_to_le16(sizeof(req) - 4),
4269 		.obss_pd_min = cpu_to_le16(max_th),
4270 		.obss_pd_min_srg = cpu_to_le16(max_th),
4271 		.txpwr_restrict_mode = 2,
4272 		.txpwr_ref = 21
4273 	};
4274 	int ret;
4275 
4276 	/* disable firmware dynamical PD asjustment */
4277 	ret = mt7996_mcu_enable_obss_spr(phy, UNI_CMD_SR_ENABLE_DPD, false);
4278 	if (ret)
4279 		return ret;
4280 
4281 	if (he_obss_pd->sr_ctrl &
4282 	    IEEE80211_HE_SPR_NON_SRG_OBSS_PD_SR_DISALLOWED)
4283 		req.pd_th_non_srg = max_th;
4284 	else if (he_obss_pd->sr_ctrl & IEEE80211_HE_SPR_NON_SRG_OFFSET_PRESENT)
4285 		req.pd_th_non_srg  = max_th - he_obss_pd->non_srg_max_offset;
4286 	else
4287 		req.pd_th_non_srg  = non_srg_max_th;
4288 
4289 	if (he_obss_pd->sr_ctrl & IEEE80211_HE_SPR_SRG_INFORMATION_PRESENT)
4290 		req.pd_th_srg = max_th - he_obss_pd->max_offset;
4291 
4292 	return mt76_mcu_send_msg(&dev->mt76, MCU_WM_UNI_CMD(SR),
4293 				 &req, sizeof(req), true);
4294 }
4295 
4296 static int
mt7996_mcu_set_obss_spr_siga(struct mt7996_phy * phy,struct mt7996_vif_link * link,struct ieee80211_he_obss_pd * he_obss_pd)4297 mt7996_mcu_set_obss_spr_siga(struct mt7996_phy *phy,
4298 			     struct mt7996_vif_link *link,
4299 			     struct ieee80211_he_obss_pd *he_obss_pd)
4300 {
4301 	struct mt7996_dev *dev = phy->dev;
4302 	u8 omac = link->mt76.omac_idx;
4303 	struct {
4304 		u8 band_idx;
4305 		u8 __rsv[3];
4306 
4307 		__le16 tag;
4308 		__le16 len;
4309 
4310 		u8 omac;
4311 		u8 __rsv2[3];
4312 		u8 flag[20];
4313 	} __packed req = {
4314 		.band_idx = phy->mt76->band_idx,
4315 		.tag = cpu_to_le16(UNI_CMD_SR_SET_SIGA),
4316 		.len = cpu_to_le16(sizeof(req) - 4),
4317 		.omac = omac > HW_BSSID_MAX ? omac - 12 : omac,
4318 	};
4319 	int ret;
4320 
4321 	if (he_obss_pd->sr_ctrl & IEEE80211_HE_SPR_HESIGA_SR_VAL15_ALLOWED)
4322 		req.flag[req.omac] = 0xf;
4323 	else
4324 		return 0;
4325 
4326 	/* switch to normal AP mode */
4327 	ret = mt7996_mcu_enable_obss_spr(phy, UNI_CMD_SR_ENABLE_MODE, 0);
4328 	if (ret)
4329 		return ret;
4330 
4331 	return mt76_mcu_send_msg(&dev->mt76, MCU_WM_UNI_CMD(SR),
4332 				 &req, sizeof(req), true);
4333 }
4334 
4335 static int
mt7996_mcu_set_obss_spr_bitmap(struct mt7996_phy * phy,struct ieee80211_he_obss_pd * he_obss_pd)4336 mt7996_mcu_set_obss_spr_bitmap(struct mt7996_phy *phy,
4337 			       struct ieee80211_he_obss_pd *he_obss_pd)
4338 {
4339 	struct mt7996_dev *dev = phy->dev;
4340 	struct {
4341 		u8 band_idx;
4342 		u8 __rsv[3];
4343 
4344 		__le16 tag;
4345 		__le16 len;
4346 
4347 		__le32 color_l[2];
4348 		__le32 color_h[2];
4349 		__le32 bssid_l[2];
4350 		__le32 bssid_h[2];
4351 	} __packed req = {
4352 		.band_idx = phy->mt76->band_idx,
4353 		.tag = cpu_to_le16(UNI_CMD_SR_SET_SRG_BITMAP),
4354 		.len = cpu_to_le16(sizeof(req) - 4),
4355 	};
4356 	u32 bitmap;
4357 
4358 	memcpy(&bitmap, he_obss_pd->bss_color_bitmap, sizeof(bitmap));
4359 	req.color_l[req.band_idx] = cpu_to_le32(bitmap);
4360 
4361 	memcpy(&bitmap, he_obss_pd->bss_color_bitmap + 4, sizeof(bitmap));
4362 	req.color_h[req.band_idx] = cpu_to_le32(bitmap);
4363 
4364 	memcpy(&bitmap, he_obss_pd->partial_bssid_bitmap, sizeof(bitmap));
4365 	req.bssid_l[req.band_idx] = cpu_to_le32(bitmap);
4366 
4367 	memcpy(&bitmap, he_obss_pd->partial_bssid_bitmap + 4, sizeof(bitmap));
4368 	req.bssid_h[req.band_idx] = cpu_to_le32(bitmap);
4369 
4370 	return mt76_mcu_send_msg(&dev->mt76, MCU_WM_UNI_CMD(SR), &req,
4371 				 sizeof(req), true);
4372 }
4373 
mt7996_mcu_add_obss_spr(struct mt7996_phy * phy,struct mt7996_vif_link * link,struct ieee80211_he_obss_pd * he_obss_pd)4374 int mt7996_mcu_add_obss_spr(struct mt7996_phy *phy,
4375 			    struct mt7996_vif_link *link,
4376 			    struct ieee80211_he_obss_pd *he_obss_pd)
4377 {
4378 	int ret;
4379 
4380 	/* enable firmware scene detection algorithms */
4381 	ret = mt7996_mcu_enable_obss_spr(phy, UNI_CMD_SR_ENABLE_SD,
4382 					 sr_scene_detect);
4383 	if (ret)
4384 		return ret;
4385 
4386 	/* firmware dynamically adjusts PD threshold so skip manual control */
4387 	if (sr_scene_detect && !he_obss_pd->enable)
4388 		return 0;
4389 
4390 	/* enable spatial reuse */
4391 	ret = mt7996_mcu_enable_obss_spr(phy, UNI_CMD_SR_ENABLE,
4392 					 he_obss_pd->enable);
4393 	if (ret)
4394 		return ret;
4395 
4396 	if (sr_scene_detect || !he_obss_pd->enable)
4397 		return 0;
4398 
4399 	ret = mt7996_mcu_enable_obss_spr(phy, UNI_CMD_SR_ENABLE_TX, true);
4400 	if (ret)
4401 		return ret;
4402 
4403 	/* set SRG/non-SRG OBSS PD threshold */
4404 	ret = mt7996_mcu_set_obss_spr_pd(phy, he_obss_pd);
4405 	if (ret)
4406 		return ret;
4407 
4408 	/* Set SR prohibit */
4409 	ret = mt7996_mcu_set_obss_spr_siga(phy, link, he_obss_pd);
4410 	if (ret)
4411 		return ret;
4412 
4413 	/* set SRG BSS color/BSSID bitmap */
4414 	return mt7996_mcu_set_obss_spr_bitmap(phy, he_obss_pd);
4415 }
4416 
mt7996_mcu_update_bss_color(struct mt7996_dev * dev,struct mt76_vif_link * mlink,struct cfg80211_he_bss_color * he_bss_color)4417 int mt7996_mcu_update_bss_color(struct mt7996_dev *dev,
4418 				struct mt76_vif_link *mlink,
4419 				struct cfg80211_he_bss_color *he_bss_color)
4420 {
4421 	int len = sizeof(struct bss_req_hdr) + sizeof(struct bss_color_tlv);
4422 	struct bss_color_tlv *bss_color;
4423 	struct sk_buff *skb;
4424 	struct tlv *tlv;
4425 
4426 	skb = __mt7996_mcu_alloc_bss_req(&dev->mt76, mlink, len);
4427 	if (IS_ERR(skb))
4428 		return PTR_ERR(skb);
4429 
4430 	tlv = mt76_connac_mcu_add_tlv(skb, UNI_BSS_INFO_BSS_COLOR,
4431 				      sizeof(*bss_color));
4432 	bss_color = (struct bss_color_tlv *)tlv;
4433 	bss_color->enable = he_bss_color->enabled;
4434 	bss_color->color = he_bss_color->color;
4435 
4436 	return mt76_mcu_skb_send_msg(&dev->mt76, skb,
4437 				     MCU_WMWA_UNI_CMD(BSS_INFO_UPDATE), true);
4438 }
4439 
4440 #define TWT_AGRT_TRIGGER	BIT(0)
4441 #define TWT_AGRT_ANNOUNCE	BIT(1)
4442 #define TWT_AGRT_PROTECT	BIT(2)
4443 
mt7996_mcu_twt_agrt_update(struct mt7996_dev * dev,struct mt7996_vif_link * link,struct mt7996_twt_flow * flow,int cmd)4444 int mt7996_mcu_twt_agrt_update(struct mt7996_dev *dev,
4445 			       struct mt7996_vif_link *link,
4446 			       struct mt7996_twt_flow *flow,
4447 			       int cmd)
4448 {
4449 	struct {
4450 		/* fixed field */
4451 		u8 bss;
4452 		u8 _rsv[3];
4453 
4454 		__le16 tag;
4455 		__le16 len;
4456 		u8 tbl_idx;
4457 		u8 cmd;
4458 		u8 own_mac_idx;
4459 		u8 flowid; /* 0xff for group id */
4460 		__le16 peer_id; /* specify the peer_id (msb=0)
4461 				 * or group_id (msb=1)
4462 				 */
4463 		u8 duration; /* 256 us */
4464 		u8 bss_idx;
4465 		__le64 start_tsf;
4466 		__le16 mantissa;
4467 		u8 exponent;
4468 		u8 is_ap;
4469 		u8 agrt_params;
4470 		u8 __rsv2[23];
4471 	} __packed req = {
4472 		.tag = cpu_to_le16(UNI_CMD_TWT_ARGT_UPDATE),
4473 		.len = cpu_to_le16(sizeof(req) - 4),
4474 		.tbl_idx = flow->table_id,
4475 		.cmd = cmd,
4476 		.own_mac_idx = link->mt76.omac_idx,
4477 		.flowid = flow->id,
4478 		.peer_id = cpu_to_le16(flow->wcid),
4479 		.duration = flow->duration,
4480 		.bss = link->mt76.idx,
4481 		.bss_idx = link->mt76.idx,
4482 		.start_tsf = cpu_to_le64(flow->tsf),
4483 		.mantissa = flow->mantissa,
4484 		.exponent = flow->exp,
4485 		.is_ap = true,
4486 	};
4487 
4488 	if (flow->protection)
4489 		req.agrt_params |= TWT_AGRT_PROTECT;
4490 	if (!flow->flowtype)
4491 		req.agrt_params |= TWT_AGRT_ANNOUNCE;
4492 	if (flow->trigger)
4493 		req.agrt_params |= TWT_AGRT_TRIGGER;
4494 
4495 	return mt76_mcu_send_msg(&dev->mt76, MCU_WM_UNI_CMD(TWT),
4496 				 &req, sizeof(req), true);
4497 }
4498 
mt7996_mcu_set_rts_thresh(struct mt7996_phy * phy,u32 val)4499 int mt7996_mcu_set_rts_thresh(struct mt7996_phy *phy, u32 val)
4500 {
4501 	struct {
4502 		u8 band_idx;
4503 		u8 _rsv[3];
4504 
4505 		__le16 tag;
4506 		__le16 len;
4507 		__le32 len_thresh;
4508 		__le32 pkt_thresh;
4509 	} __packed req = {
4510 		.band_idx = phy->mt76->band_idx,
4511 		.tag = cpu_to_le16(UNI_BAND_CONFIG_RTS_THRESHOLD),
4512 		.len = cpu_to_le16(sizeof(req) - 4),
4513 		.len_thresh = cpu_to_le32(val),
4514 		.pkt_thresh = cpu_to_le32(0x2),
4515 	};
4516 
4517 	return mt76_mcu_send_msg(&phy->dev->mt76, MCU_WM_UNI_CMD(BAND_CONFIG),
4518 				 &req, sizeof(req), true);
4519 }
4520 
mt7996_mcu_set_radio_en(struct mt7996_phy * phy,bool enable)4521 int mt7996_mcu_set_radio_en(struct mt7996_phy *phy, bool enable)
4522 {
4523 	struct {
4524 		u8 band_idx;
4525 		u8 _rsv[3];
4526 
4527 		__le16 tag;
4528 		__le16 len;
4529 		u8 enable;
4530 		u8 _rsv2[3];
4531 	} __packed req = {
4532 		.band_idx = phy->mt76->band_idx,
4533 		.tag = cpu_to_le16(UNI_BAND_CONFIG_RADIO_ENABLE),
4534 		.len = cpu_to_le16(sizeof(req) - 4),
4535 		.enable = enable,
4536 	};
4537 
4538 	return mt76_mcu_send_msg(&phy->dev->mt76, MCU_WM_UNI_CMD(BAND_CONFIG),
4539 				 &req, sizeof(req), true);
4540 }
4541 
mt7996_mcu_rdd_cmd(struct mt7996_dev * dev,int cmd,u8 rdd_idx,u8 val)4542 int mt7996_mcu_rdd_cmd(struct mt7996_dev *dev, int cmd, u8 rdd_idx, u8 val)
4543 {
4544 	struct {
4545 		u8 _rsv[4];
4546 
4547 		__le16 tag;
4548 		__le16 len;
4549 
4550 		u8 ctrl;
4551 		u8 rdd_idx;
4552 		u8 rdd_rx_sel;
4553 		u8 val;
4554 		u8 rsv[4];
4555 	} __packed req = {
4556 		.tag = cpu_to_le16(UNI_RDD_CTRL_PARM),
4557 		.len = cpu_to_le16(sizeof(req) - 4),
4558 		.ctrl = cmd,
4559 		.rdd_idx = rdd_idx,
4560 		.val = val,
4561 	};
4562 
4563 	return mt76_mcu_send_msg(&dev->mt76, MCU_WM_UNI_CMD(RDD_CTRL),
4564 				 &req, sizeof(req), true);
4565 }
4566 
mt7996_mcu_wtbl_update_hdr_trans(struct mt7996_dev * dev,struct ieee80211_vif * vif,struct mt7996_vif_link * link,struct mt7996_sta_link * msta_link)4567 int mt7996_mcu_wtbl_update_hdr_trans(struct mt7996_dev *dev,
4568 				     struct ieee80211_vif *vif,
4569 				     struct mt7996_vif_link *link,
4570 				     struct mt7996_sta_link *msta_link)
4571 {
4572 	struct sk_buff *skb;
4573 
4574 	skb = __mt76_connac_mcu_alloc_sta_req(&dev->mt76, &link->mt76,
4575 					      &msta_link->wcid,
4576 					      MT7996_STA_UPDATE_MAX_SIZE);
4577 	if (IS_ERR(skb))
4578 		return PTR_ERR(skb);
4579 
4580 	/* starec hdr trans */
4581 	mt7996_mcu_sta_hdr_trans_tlv(dev, skb, vif, &msta_link->wcid);
4582 	return mt76_mcu_skb_send_msg(&dev->mt76, skb,
4583 				     MCU_WMWA_UNI_CMD(STA_REC_UPDATE), true);
4584 }
4585 
mt7996_mcu_set_fixed_rate_table(struct mt7996_phy * phy,u8 table_idx,u16 rate_idx,bool beacon)4586 int mt7996_mcu_set_fixed_rate_table(struct mt7996_phy *phy, u8 table_idx,
4587 				    u16 rate_idx, bool beacon)
4588 {
4589 #define UNI_FIXED_RATE_TABLE_SET	0
4590 #define SPE_IXD_SELECT_TXD		0
4591 #define SPE_IXD_SELECT_BMC_WTBL		1
4592 	struct mt7996_dev *dev = phy->dev;
4593 	struct fixed_rate_table_ctrl req = {
4594 		.tag = cpu_to_le16(UNI_FIXED_RATE_TABLE_SET),
4595 		.len = cpu_to_le16(sizeof(req) - 4),
4596 		.table_idx = table_idx,
4597 		.rate_idx = cpu_to_le16(rate_idx),
4598 		.gi = 1,
4599 		.he_ltf = 1,
4600 	};
4601 	u8 band_idx = phy->mt76->band_idx;
4602 
4603 	if (beacon) {
4604 		req.spe_idx_sel = SPE_IXD_SELECT_TXD;
4605 		req.spe_idx = 24 + band_idx;
4606 		phy->beacon_rate = rate_idx;
4607 	} else {
4608 		req.spe_idx_sel = SPE_IXD_SELECT_BMC_WTBL;
4609 	}
4610 
4611 	return mt76_mcu_send_msg(&dev->mt76, MCU_WM_UNI_CMD(FIXED_RATE_TABLE),
4612 				 &req, sizeof(req), false);
4613 }
4614 
mt7996_mcu_rf_regval(struct mt7996_dev * dev,u32 regidx,u32 * val,bool set)4615 int mt7996_mcu_rf_regval(struct mt7996_dev *dev, u32 regidx, u32 *val, bool set)
4616 {
4617 	struct {
4618 		u8 __rsv1[4];
4619 
4620 		__le16 tag;
4621 		__le16 len;
4622 		__le16 idx;
4623 		u8 __rsv2[2];
4624 		__le32 ofs;
4625 		__le32 data;
4626 	} __packed *res, req = {
4627 		.tag = cpu_to_le16(UNI_CMD_ACCESS_RF_REG_BASIC),
4628 		.len = cpu_to_le16(sizeof(req) - 4),
4629 
4630 		.idx = cpu_to_le16(u32_get_bits(regidx, GENMASK(31, 24))),
4631 		.ofs = cpu_to_le32(u32_get_bits(regidx, GENMASK(23, 0))),
4632 		.data = set ? cpu_to_le32(*val) : 0,
4633 	};
4634 	struct sk_buff *skb;
4635 	int ret;
4636 
4637 	if (set)
4638 		return mt76_mcu_send_msg(&dev->mt76, MCU_WM_UNI_CMD(REG_ACCESS),
4639 					 &req, sizeof(req), true);
4640 
4641 	ret = mt76_mcu_send_and_get_msg(&dev->mt76,
4642 					MCU_WM_UNI_CMD_QUERY(REG_ACCESS),
4643 					&req, sizeof(req), true, &skb);
4644 	if (ret)
4645 		return ret;
4646 
4647 	res = (void *)skb->data;
4648 	*val = le32_to_cpu(res->data);
4649 	dev_kfree_skb(skb);
4650 
4651 	return 0;
4652 }
4653 
mt7996_mcu_trigger_assert(struct mt7996_dev * dev)4654 int mt7996_mcu_trigger_assert(struct mt7996_dev *dev)
4655 {
4656 	struct {
4657 		__le16 tag;
4658 		__le16 len;
4659 		u8 enable;
4660 		u8 rsv[3];
4661 	} __packed req = {
4662 		.len = cpu_to_le16(sizeof(req) - 4),
4663 		.enable = true,
4664 	};
4665 
4666 	return mt76_mcu_send_msg(&dev->mt76, MCU_WM_UNI_CMD(ASSERT_DUMP),
4667 				 &req, sizeof(req), false);
4668 }
4669 
mt7996_mcu_set_rro(struct mt7996_dev * dev,u16 tag,u16 val)4670 int mt7996_mcu_set_rro(struct mt7996_dev *dev, u16 tag, u16 val)
4671 {
4672 	struct {
4673 		u8 __rsv1[4];
4674 		__le16 tag;
4675 		__le16 len;
4676 		union {
4677 			struct {
4678 				u8 type;
4679 				u8 __rsv2[3];
4680 			} __packed platform_type;
4681 			struct {
4682 				u8 type;
4683 				u8 dest;
4684 				u8 __rsv2[2];
4685 			} __packed bypass_mode;
4686 			struct {
4687 				u8 path;
4688 				u8 __rsv2[3];
4689 			} __packed txfree_path;
4690 			struct {
4691 				__le16 flush_one;
4692 				__le16 flush_all;
4693 				u8 __rsv2[4];
4694 			} __packed timeout;
4695 		};
4696 	} __packed req = {
4697 		.tag = cpu_to_le16(tag),
4698 		.len = cpu_to_le16(sizeof(req) - 4),
4699 	};
4700 
4701 	switch (tag) {
4702 	case UNI_RRO_SET_PLATFORM_TYPE:
4703 		req.platform_type.type = val;
4704 		break;
4705 	case UNI_RRO_SET_BYPASS_MODE:
4706 		req.bypass_mode.type = val;
4707 		break;
4708 	case UNI_RRO_SET_TXFREE_PATH:
4709 		req.txfree_path.path = val;
4710 		break;
4711 	case UNI_RRO_SET_FLUSH_TIMEOUT:
4712 		req.timeout.flush_one = cpu_to_le16(val);
4713 		req.timeout.flush_all = cpu_to_le16(2 * val);
4714 		break;
4715 	default:
4716 		return -EINVAL;
4717 	}
4718 
4719 	return mt76_mcu_send_msg(&dev->mt76, MCU_WM_UNI_CMD(RRO), &req,
4720 				 sizeof(req), true);
4721 }
4722 
mt7996_mcu_get_all_sta_info(struct mt7996_phy * phy,u16 tag)4723 int mt7996_mcu_get_all_sta_info(struct mt7996_phy *phy, u16 tag)
4724 {
4725 	struct mt7996_dev *dev = phy->dev;
4726 	struct {
4727 		u8 _rsv[4];
4728 
4729 		__le16 tag;
4730 		__le16 len;
4731 	} __packed req = {
4732 		.tag = cpu_to_le16(tag),
4733 		.len = cpu_to_le16(sizeof(req) - 4),
4734 	};
4735 
4736 	return mt76_mcu_send_msg(&dev->mt76, MCU_WM_UNI_CMD(ALL_STA_INFO),
4737 				 &req, sizeof(req), false);
4738 }
4739 
mt7996_mcu_wed_rro_reset_sessions(struct mt7996_dev * dev,u16 id)4740 int mt7996_mcu_wed_rro_reset_sessions(struct mt7996_dev *dev, u16 id)
4741 {
4742 	struct {
4743 		u8 __rsv[4];
4744 
4745 		__le16 tag;
4746 		__le16 len;
4747 		__le16 session_id;
4748 		u8 pad[4];
4749 	} __packed req = {
4750 		.tag = cpu_to_le16(UNI_RRO_DEL_BA_SESSION),
4751 		.len = cpu_to_le16(sizeof(req) - 4),
4752 		.session_id = cpu_to_le16(id),
4753 	};
4754 
4755 	return mt76_mcu_send_msg(&dev->mt76, MCU_WM_UNI_CMD(RRO), &req,
4756 				 sizeof(req), true);
4757 }
4758 
mt7996_mcu_set_sniffer_mode(struct mt7996_phy * phy,bool enabled)4759 int mt7996_mcu_set_sniffer_mode(struct mt7996_phy *phy, bool enabled)
4760 {
4761 	struct mt7996_dev *dev = phy->dev;
4762 	struct {
4763 		u8 band_idx;
4764 		u8 _rsv[3];
4765 		__le16 tag;
4766 		__le16 len;
4767 		u8 enable;
4768 		u8 _pad[3];
4769 	} __packed req = {
4770 		.band_idx = phy->mt76->band_idx,
4771 		.tag = 0,
4772 		.len = cpu_to_le16(sizeof(req) - 4),
4773 		.enable = enabled,
4774 	};
4775 
4776 	return mt76_mcu_send_msg(&dev->mt76, MCU_WM_UNI_CMD(SNIFFER), &req,
4777 				 sizeof(req), true);
4778 }
4779 
mt7996_mcu_set_txpower_sku(struct mt7996_phy * phy)4780 int mt7996_mcu_set_txpower_sku(struct mt7996_phy *phy)
4781 {
4782 #define TX_POWER_LIMIT_TABLE_RATE	0
4783 	struct mt7996_dev *dev = phy->dev;
4784 	struct mt76_phy *mphy = phy->mt76;
4785 	struct tx_power_limit_table_ctrl {
4786 		u8 __rsv1[4];
4787 
4788 		__le16 tag;
4789 		__le16 len;
4790 		u8 power_ctrl_id;
4791 		u8 power_limit_type;
4792 		u8 band_idx;
4793 	} __packed req = {
4794 		.tag = cpu_to_le16(UNI_TXPOWER_POWER_LIMIT_TABLE_CTRL),
4795 		.len = cpu_to_le16(sizeof(req) + MT7996_SKU_PATH_NUM - 4),
4796 		.power_ctrl_id = UNI_TXPOWER_POWER_LIMIT_TABLE_CTRL,
4797 		.power_limit_type = TX_POWER_LIMIT_TABLE_RATE,
4798 		.band_idx = phy->mt76->band_idx,
4799 	};
4800 	struct mt76_power_limits la = {};
4801 	struct sk_buff *skb;
4802 	int i, tx_power;
4803 
4804 	tx_power = mt76_get_power_bound(mphy, phy->txpower);
4805 	tx_power = mt76_get_rate_power_limits(mphy, mphy->chandef.chan,
4806 					      &la, tx_power);
4807 	mphy->txpower_cur = tx_power;
4808 
4809 	skb = mt76_mcu_msg_alloc(&dev->mt76, NULL,
4810 				 sizeof(req) + MT7996_SKU_PATH_NUM);
4811 	if (!skb)
4812 		return -ENOMEM;
4813 
4814 	skb_put_data(skb, &req, sizeof(req));
4815 	/* cck and ofdm */
4816 	skb_put_data(skb, &la.cck, sizeof(la.cck));
4817 	skb_put_data(skb, &la.ofdm, sizeof(la.ofdm));
4818 	/* ht20 */
4819 	skb_put_data(skb, &la.mcs[0], 8);
4820 	/* ht40 */
4821 	skb_put_data(skb, &la.mcs[1], 9);
4822 
4823 	/* vht */
4824 	for (i = 0; i < 4; i++) {
4825 		skb_put_data(skb, &la.mcs[i], sizeof(la.mcs[i]));
4826 		skb_put_zero(skb, 2);  /* padding */
4827 	}
4828 
4829 	/* he */
4830 	skb_put_data(skb, &la.ru[0], sizeof(la.ru));
4831 	/* eht */
4832 	skb_put_data(skb, &la.eht[0], sizeof(la.eht));
4833 
4834 	/* padding */
4835 	skb_put_zero(skb, MT7996_SKU_PATH_NUM - MT7996_SKU_RATE_NUM);
4836 
4837 	return mt76_mcu_skb_send_msg(&dev->mt76, skb,
4838 				     MCU_WM_UNI_CMD(TXPOWER), true);
4839 }
4840 
mt7996_mcu_cp_support(struct mt7996_dev * dev,u8 mode)4841 int mt7996_mcu_cp_support(struct mt7996_dev *dev, u8 mode)
4842 {
4843 	__le32 cp_mode;
4844 
4845 	if (mode < mt76_connac_lmac_mapping(IEEE80211_AC_BE) ||
4846 	    mode > mt76_connac_lmac_mapping(IEEE80211_AC_VO))
4847 		return -EINVAL;
4848 
4849 	if (!mt7996_has_wa(dev)) {
4850 		struct {
4851 			u8 _rsv[4];
4852 
4853 			__le16 tag;
4854 			__le16 len;
4855 			u8 cp_mode;
4856 			u8 rsv[3];
4857 		} __packed req = {
4858 			.tag = cpu_to_le16(UNI_CMD_SDO_CP_MODE),
4859 			.len = cpu_to_le16(sizeof(req) - 4),
4860 			.cp_mode = mode,
4861 		};
4862 
4863 		return mt76_mcu_send_msg(&dev->mt76, MCU_WA_UNI_CMD(SDO),
4864 					 &req, sizeof(req), false);
4865 	}
4866 
4867 	cp_mode = cpu_to_le32(mode);
4868 
4869 	return mt76_mcu_send_msg(&dev->mt76, MCU_WA_EXT_CMD(CP_SUPPORT),
4870 				 &cp_mode, sizeof(cp_mode), true);
4871 }
4872