xref: /linux/drivers/net/wireless/realtek/rtw88/fw.c (revision 1a9239bb4253f9076b5b4b2a1a4e8d7defd77a95)
1 // SPDX-License-Identifier: GPL-2.0 OR BSD-3-Clause
2 /* Copyright(c) 2018-2019  Realtek Corporation
3  */
4 
5 #include <linux/iopoll.h>
6 
7 #include "main.h"
8 #include "coex.h"
9 #include "fw.h"
10 #include "tx.h"
11 #include "reg.h"
12 #include "sec.h"
13 #include "debug.h"
14 #include "util.h"
15 #include "wow.h"
16 #include "ps.h"
17 #include "phy.h"
18 #include "mac.h"
19 
20 static const struct rtw_hw_reg_desc fw_h2c_regs[] = {
21 	{REG_FWIMR, MASKDWORD, "FWIMR"},
22 	{REG_FWIMR, BIT_FS_H2CCMD_INT_EN, "FWIMR enable"},
23 	{REG_FWISR, MASKDWORD, "FWISR"},
24 	{REG_FWISR, BIT_FS_H2CCMD_INT, "FWISR enable"},
25 	{REG_HMETFR, BIT_INT_BOX_ALL, "BoxBitMap"},
26 	{REG_HMEBOX0, MASKDWORD, "MSG 0"},
27 	{REG_HMEBOX0_EX, MASKDWORD, "MSG_EX 0"},
28 	{REG_HMEBOX1, MASKDWORD, "MSG 1"},
29 	{REG_HMEBOX1_EX, MASKDWORD, "MSG_EX 1"},
30 	{REG_HMEBOX2, MASKDWORD, "MSG 2"},
31 	{REG_HMEBOX2_EX, MASKDWORD, "MSG_EX 2"},
32 	{REG_HMEBOX3, MASKDWORD, "MSG 3"},
33 	{REG_HMEBOX3_EX, MASKDWORD, "MSG_EX 3"},
34 	{REG_FT1IMR, MASKDWORD, "FT1IMR"},
35 	{REG_FT1IMR, BIT_FS_H2C_CMD_OK_INT_EN, "FT1IMR enable"},
36 	{REG_FT1ISR, MASKDWORD, "FT1ISR"},
37 	{REG_FT1ISR, BIT_FS_H2C_CMD_OK_INT, "FT1ISR enable "},
38 };
39 
40 static const struct rtw_hw_reg_desc fw_c2h_regs[] = {
41 	{REG_FWIMR, MASKDWORD, "FWIMR"},
42 	{REG_FWIMR, BIT_FS_H2CCMD_INT_EN, "CPWM"},
43 	{REG_FWIMR, BIT_FS_HRCV_INT_EN, "HRECV"},
44 	{REG_FWISR, MASKDWORD, "FWISR"},
45 	{REG_FWISR, BIT_FS_H2CCMD_INT, "CPWM"},
46 	{REG_FWISR, BIT_FS_HRCV_INT, "HRECV"},
47 	{REG_CPWM, MASKDWORD, "REG_CPWM"},
48 };
49 
50 static const struct rtw_hw_reg_desc fw_core_regs[] = {
51 	{REG_ARFR2_V1, MASKDWORD, "EPC"},
52 	{REG_ARFRH2_V1, MASKDWORD, "BADADDR"},
53 	{REG_ARFR3_V1, MASKDWORD, "CAUSE"},
54 	{REG_ARFR3_V1, BIT_EXC_CODE, "ExcCode"},
55 	{REG_ARFRH3_V1, MASKDWORD, "Status"},
56 	{REG_ARFR4, MASKDWORD, "SP"},
57 	{REG_ARFRH4, MASKDWORD, "RA"},
58 	{REG_FW_DBG6, MASKDWORD, "DBG 6"},
59 	{REG_FW_DBG7, MASKDWORD, "DBG 7"},
60 };
61 
_rtw_fw_dump_dbg_info(struct rtw_dev * rtwdev,const struct rtw_hw_reg_desc regs[],u32 size)62 static void _rtw_fw_dump_dbg_info(struct rtw_dev *rtwdev,
63 				  const struct rtw_hw_reg_desc regs[], u32 size)
64 {
65 	const struct rtw_hw_reg_desc *reg;
66 	u32 val;
67 	int i;
68 
69 	for (i = 0;  i < size; i++) {
70 		reg = &regs[i];
71 		val = rtw_read32_mask(rtwdev, reg->addr, reg->mask);
72 
73 		rtw_dbg(rtwdev, RTW_DBG_FW, "[%s]addr:0x%x mask:0x%x value:0x%x\n",
74 			reg->desc, reg->addr, reg->mask, val);
75 	}
76 }
77 
rtw_fw_dump_dbg_info(struct rtw_dev * rtwdev)78 void rtw_fw_dump_dbg_info(struct rtw_dev *rtwdev)
79 {
80 	int i;
81 
82 	if (!rtw_dbg_is_enabled(rtwdev, RTW_DBG_FW))
83 		return;
84 
85 	_rtw_fw_dump_dbg_info(rtwdev, fw_h2c_regs, ARRAY_SIZE(fw_h2c_regs));
86 	_rtw_fw_dump_dbg_info(rtwdev, fw_c2h_regs, ARRAY_SIZE(fw_c2h_regs));
87 	for (i = 0 ; i < RTW_DEBUG_DUMP_TIMES; i++) {
88 		rtw_dbg(rtwdev, RTW_DBG_FW, "Firmware Coredump %dth\n", i + 1);
89 		_rtw_fw_dump_dbg_info(rtwdev, fw_core_regs, ARRAY_SIZE(fw_core_regs));
90 	}
91 }
92 
rtw_fw_c2h_cmd_handle_ext(struct rtw_dev * rtwdev,struct sk_buff * skb)93 static void rtw_fw_c2h_cmd_handle_ext(struct rtw_dev *rtwdev,
94 				      struct sk_buff *skb)
95 {
96 	struct rtw_c2h_cmd *c2h;
97 	u8 sub_cmd_id;
98 
99 	c2h = get_c2h_from_skb(skb);
100 	sub_cmd_id = c2h->payload[0];
101 
102 	switch (sub_cmd_id) {
103 	case C2H_CCX_RPT:
104 		rtw_tx_report_handle(rtwdev, skb, C2H_CCX_RPT);
105 		break;
106 	case C2H_SCAN_STATUS_RPT:
107 		rtw_hw_scan_status_report(rtwdev, skb);
108 		break;
109 	case C2H_CHAN_SWITCH:
110 		rtw_hw_scan_chan_switch(rtwdev, skb);
111 		break;
112 	default:
113 		break;
114 	}
115 }
116 
get_max_amsdu_len(u32 bit_rate)117 static u16 get_max_amsdu_len(u32 bit_rate)
118 {
119 	/* lower than ofdm, do not aggregate */
120 	if (bit_rate < 550)
121 		return 1;
122 
123 	/* lower than 20M 2ss mcs8, make it small */
124 	if (bit_rate < 1800)
125 		return 1200;
126 
127 	/* lower than 40M 2ss mcs9, make it medium */
128 	if (bit_rate < 4000)
129 		return 2600;
130 
131 	/* not yet 80M 2ss mcs8/9, make it twice regular packet size */
132 	if (bit_rate < 7000)
133 		return 3500;
134 
135 	/* unlimited */
136 	return 0;
137 }
138 
139 struct rtw_fw_iter_ra_data {
140 	struct rtw_dev *rtwdev;
141 	u8 *payload;
142 	u8 length;
143 };
144 
rtw_fw_ra_report_iter(void * data,struct ieee80211_sta * sta)145 static void rtw_fw_ra_report_iter(void *data, struct ieee80211_sta *sta)
146 {
147 	struct rtw_fw_iter_ra_data *ra_data = data;
148 	struct rtw_c2h_ra_rpt *ra_rpt = (struct rtw_c2h_ra_rpt *)ra_data->payload;
149 	struct rtw_sta_info *si = (struct rtw_sta_info *)sta->drv_priv;
150 	u8 mac_id, rate, sgi, bw;
151 	u8 mcs, nss;
152 	u32 bit_rate;
153 
154 	mac_id = ra_rpt->mac_id;
155 	if (si->mac_id != mac_id)
156 		return;
157 
158 	si->ra_report.txrate.flags = 0;
159 
160 	rate = u8_get_bits(ra_rpt->rate_sgi, RTW_C2H_RA_RPT_RATE);
161 	sgi = u8_get_bits(ra_rpt->rate_sgi, RTW_C2H_RA_RPT_SGI);
162 	if (ra_data->length >= offsetofend(typeof(*ra_rpt), bw))
163 		bw = ra_rpt->bw;
164 	else
165 		bw = si->bw_mode;
166 
167 	if (rate < DESC_RATEMCS0) {
168 		si->ra_report.txrate.legacy = rtw_desc_to_bitrate(rate);
169 		goto legacy;
170 	}
171 
172 	rtw_desc_to_mcsrate(rate, &mcs, &nss);
173 	if (rate >= DESC_RATEVHT1SS_MCS0)
174 		si->ra_report.txrate.flags |= RATE_INFO_FLAGS_VHT_MCS;
175 	else if (rate >= DESC_RATEMCS0)
176 		si->ra_report.txrate.flags |= RATE_INFO_FLAGS_MCS;
177 
178 	if (rate >= DESC_RATEMCS0) {
179 		si->ra_report.txrate.mcs = mcs;
180 		si->ra_report.txrate.nss = nss;
181 	}
182 
183 	if (sgi)
184 		si->ra_report.txrate.flags |= RATE_INFO_FLAGS_SHORT_GI;
185 
186 	if (bw == RTW_CHANNEL_WIDTH_80)
187 		si->ra_report.txrate.bw = RATE_INFO_BW_80;
188 	else if (bw == RTW_CHANNEL_WIDTH_40)
189 		si->ra_report.txrate.bw = RATE_INFO_BW_40;
190 	else
191 		si->ra_report.txrate.bw = RATE_INFO_BW_20;
192 
193 legacy:
194 	bit_rate = cfg80211_calculate_bitrate(&si->ra_report.txrate);
195 
196 	si->ra_report.desc_rate = rate;
197 	si->ra_report.bit_rate = bit_rate;
198 
199 	sta->deflink.agg.max_rc_amsdu_len = get_max_amsdu_len(bit_rate);
200 }
201 
rtw_fw_ra_report_handle(struct rtw_dev * rtwdev,u8 * payload,u8 length)202 static void rtw_fw_ra_report_handle(struct rtw_dev *rtwdev, u8 *payload,
203 				    u8 length)
204 {
205 	struct rtw_c2h_ra_rpt *ra_rpt = (struct rtw_c2h_ra_rpt *)payload;
206 	struct rtw_fw_iter_ra_data ra_data;
207 
208 	if (WARN(length < rtwdev->chip->c2h_ra_report_size,
209 		 "invalid ra report c2h length %d\n", length))
210 		return;
211 
212 	rtwdev->dm_info.tx_rate = u8_get_bits(ra_rpt->rate_sgi,
213 					      RTW_C2H_RA_RPT_RATE);
214 	ra_data.rtwdev = rtwdev;
215 	ra_data.payload = payload;
216 	ra_data.length = length;
217 	rtw_iterate_stas_atomic(rtwdev, rtw_fw_ra_report_iter, &ra_data);
218 }
219 
220 struct rtw_beacon_filter_iter_data {
221 	struct rtw_dev *rtwdev;
222 	u8 *payload;
223 };
224 
rtw_fw_bcn_filter_notify_vif_iter(void * data,struct ieee80211_vif * vif)225 static void rtw_fw_bcn_filter_notify_vif_iter(void *data,
226 					      struct ieee80211_vif *vif)
227 {
228 	struct rtw_beacon_filter_iter_data *iter_data = data;
229 	struct rtw_dev *rtwdev = iter_data->rtwdev;
230 	u8 *payload = iter_data->payload;
231 	u8 type = GET_BCN_FILTER_NOTIFY_TYPE(payload);
232 	u8 event = GET_BCN_FILTER_NOTIFY_EVENT(payload);
233 	s8 sig = (s8)GET_BCN_FILTER_NOTIFY_RSSI(payload);
234 
235 	switch (type) {
236 	case BCN_FILTER_NOTIFY_SIGNAL_CHANGE:
237 		event = event ? NL80211_CQM_RSSI_THRESHOLD_EVENT_HIGH :
238 			NL80211_CQM_RSSI_THRESHOLD_EVENT_LOW;
239 		ieee80211_cqm_rssi_notify(vif, event, sig, GFP_KERNEL);
240 		break;
241 	case BCN_FILTER_CONNECTION_LOSS:
242 		ieee80211_connection_loss(vif);
243 		break;
244 	case BCN_FILTER_CONNECTED:
245 		rtwdev->beacon_loss = false;
246 		break;
247 	case BCN_FILTER_NOTIFY_BEACON_LOSS:
248 		rtwdev->beacon_loss = true;
249 		rtw_leave_lps(rtwdev);
250 		break;
251 	}
252 }
253 
rtw_fw_bcn_filter_notify(struct rtw_dev * rtwdev,u8 * payload,u8 length)254 static void rtw_fw_bcn_filter_notify(struct rtw_dev *rtwdev, u8 *payload,
255 				     u8 length)
256 {
257 	struct rtw_beacon_filter_iter_data dev_iter_data;
258 
259 	dev_iter_data.rtwdev = rtwdev;
260 	dev_iter_data.payload = payload;
261 	rtw_iterate_vifs(rtwdev, rtw_fw_bcn_filter_notify_vif_iter,
262 			 &dev_iter_data);
263 }
264 
rtw_fw_scan_result(struct rtw_dev * rtwdev,u8 * payload,u8 length)265 static void rtw_fw_scan_result(struct rtw_dev *rtwdev, u8 *payload,
266 			       u8 length)
267 {
268 	struct rtw_dm_info *dm_info = &rtwdev->dm_info;
269 
270 	dm_info->scan_density = payload[0];
271 
272 	rtw_dbg(rtwdev, RTW_DBG_FW, "scan.density = %x\n",
273 		dm_info->scan_density);
274 }
275 
rtw_fw_adaptivity_result(struct rtw_dev * rtwdev,u8 * payload,u8 length)276 static void rtw_fw_adaptivity_result(struct rtw_dev *rtwdev, u8 *payload,
277 				     u8 length)
278 {
279 	const struct rtw_hw_reg_offset *edcca_th = rtwdev->chip->edcca_th;
280 	struct rtw_c2h_adaptivity *result = (struct rtw_c2h_adaptivity *)payload;
281 
282 	rtw_dbg(rtwdev, RTW_DBG_ADAPTIVITY,
283 		"Adaptivity: density %x igi %x l2h_th_init %x l2h %x h2l %x option %x\n",
284 		result->density, result->igi, result->l2h_th_init, result->l2h,
285 		result->h2l, result->option);
286 
287 	rtw_dbg(rtwdev, RTW_DBG_ADAPTIVITY, "Reg Setting: L2H %x H2L %x\n",
288 		rtw_read32_mask(rtwdev, edcca_th[EDCCA_TH_L2H_IDX].hw_reg.addr,
289 				edcca_th[EDCCA_TH_L2H_IDX].hw_reg.mask),
290 		rtw_read32_mask(rtwdev, edcca_th[EDCCA_TH_H2L_IDX].hw_reg.addr,
291 				edcca_th[EDCCA_TH_H2L_IDX].hw_reg.mask));
292 
293 	rtw_dbg(rtwdev, RTW_DBG_ADAPTIVITY, "EDCCA Flag %s\n",
294 		rtw_read32_mask(rtwdev, REG_EDCCA_REPORT, BIT_EDCCA_FLAG) ?
295 		"Set" : "Unset");
296 }
297 
rtw_fw_c2h_cmd_handle(struct rtw_dev * rtwdev,struct sk_buff * skb)298 void rtw_fw_c2h_cmd_handle(struct rtw_dev *rtwdev, struct sk_buff *skb)
299 {
300 	struct rtw_c2h_cmd *c2h;
301 	u32 pkt_offset;
302 	u8 len;
303 
304 	pkt_offset = *((u32 *)skb->cb);
305 	c2h = (struct rtw_c2h_cmd *)(skb->data + pkt_offset);
306 	len = skb->len - pkt_offset - 2;
307 
308 	mutex_lock(&rtwdev->mutex);
309 
310 	if (!test_bit(RTW_FLAG_RUNNING, rtwdev->flags))
311 		goto unlock;
312 
313 	switch (c2h->id) {
314 	case C2H_CCX_TX_RPT:
315 		rtw_tx_report_handle(rtwdev, skb, C2H_CCX_TX_RPT);
316 		break;
317 	case C2H_BT_INFO:
318 		rtw_coex_bt_info_notify(rtwdev, c2h->payload, len);
319 		break;
320 	case C2H_BT_HID_INFO:
321 		rtw_coex_bt_hid_info_notify(rtwdev, c2h->payload, len);
322 		break;
323 	case C2H_WLAN_INFO:
324 		rtw_coex_wl_fwdbginfo_notify(rtwdev, c2h->payload, len);
325 		break;
326 	case C2H_BCN_FILTER_NOTIFY:
327 		rtw_fw_bcn_filter_notify(rtwdev, c2h->payload, len);
328 		break;
329 	case C2H_HALMAC:
330 		rtw_fw_c2h_cmd_handle_ext(rtwdev, skb);
331 		break;
332 	case C2H_RA_RPT:
333 		rtw_fw_ra_report_handle(rtwdev, c2h->payload, len);
334 		break;
335 	case C2H_ADAPTIVITY:
336 		rtw_fw_adaptivity_result(rtwdev, c2h->payload, len);
337 		break;
338 	default:
339 		rtw_dbg(rtwdev, RTW_DBG_FW, "C2H 0x%x isn't handled\n", c2h->id);
340 		break;
341 	}
342 
343 unlock:
344 	mutex_unlock(&rtwdev->mutex);
345 }
346 
rtw_fw_c2h_cmd_rx_irqsafe(struct rtw_dev * rtwdev,u32 pkt_offset,struct sk_buff * skb)347 void rtw_fw_c2h_cmd_rx_irqsafe(struct rtw_dev *rtwdev, u32 pkt_offset,
348 			       struct sk_buff *skb)
349 {
350 	struct rtw_c2h_cmd *c2h;
351 	u8 len;
352 
353 	c2h = (struct rtw_c2h_cmd *)(skb->data + pkt_offset);
354 	len = skb->len - pkt_offset - 2;
355 	*((u32 *)skb->cb) = pkt_offset;
356 
357 	rtw_dbg(rtwdev, RTW_DBG_FW, "recv C2H, id=0x%02x, seq=0x%02x, len=%d\n",
358 		c2h->id, c2h->seq, len);
359 
360 	switch (c2h->id) {
361 	case C2H_BT_MP_INFO:
362 		rtw_coex_info_response(rtwdev, skb);
363 		break;
364 	case C2H_WLAN_RFON:
365 		complete(&rtwdev->lps_leave_check);
366 		dev_kfree_skb_any(skb);
367 		break;
368 	case C2H_SCAN_RESULT:
369 		complete(&rtwdev->fw_scan_density);
370 		rtw_fw_scan_result(rtwdev, c2h->payload, len);
371 		dev_kfree_skb_any(skb);
372 		break;
373 	default:
374 		/* pass offset for further operation */
375 		*((u32 *)skb->cb) = pkt_offset;
376 		skb_queue_tail(&rtwdev->c2h_queue, skb);
377 		ieee80211_queue_work(rtwdev->hw, &rtwdev->c2h_work);
378 		break;
379 	}
380 }
381 EXPORT_SYMBOL(rtw_fw_c2h_cmd_rx_irqsafe);
382 
rtw_fw_c2h_cmd_isr(struct rtw_dev * rtwdev)383 void rtw_fw_c2h_cmd_isr(struct rtw_dev *rtwdev)
384 {
385 	if (rtw_read8(rtwdev, REG_MCU_TST_CFG) == VAL_FW_TRIGGER)
386 		rtw_fw_recovery(rtwdev);
387 	else
388 		rtw_warn(rtwdev, "unhandled firmware c2h interrupt\n");
389 }
390 EXPORT_SYMBOL(rtw_fw_c2h_cmd_isr);
391 
rtw_fw_send_h2c_command_register(struct rtw_dev * rtwdev,struct rtw_h2c_register * h2c)392 static void rtw_fw_send_h2c_command_register(struct rtw_dev *rtwdev,
393 					     struct rtw_h2c_register *h2c)
394 {
395 	u32 box_reg, box_ex_reg;
396 	u8 box_state, box;
397 	int ret;
398 
399 	rtw_dbg(rtwdev, RTW_DBG_FW, "send H2C content %08x %08x\n", h2c->w0,
400 		h2c->w1);
401 
402 	lockdep_assert_held(&rtwdev->mutex);
403 
404 	box = rtwdev->h2c.last_box_num;
405 	switch (box) {
406 	case 0:
407 		box_reg = REG_HMEBOX0;
408 		box_ex_reg = REG_HMEBOX0_EX;
409 		break;
410 	case 1:
411 		box_reg = REG_HMEBOX1;
412 		box_ex_reg = REG_HMEBOX1_EX;
413 		break;
414 	case 2:
415 		box_reg = REG_HMEBOX2;
416 		box_ex_reg = REG_HMEBOX2_EX;
417 		break;
418 	case 3:
419 		box_reg = REG_HMEBOX3;
420 		box_ex_reg = REG_HMEBOX3_EX;
421 		break;
422 	default:
423 		WARN(1, "invalid h2c mail box number\n");
424 		return;
425 	}
426 
427 	ret = read_poll_timeout_atomic(rtw_read8, box_state,
428 				       !((box_state >> box) & 0x1), 100, 3000,
429 				       false, rtwdev, REG_HMETFR);
430 
431 	if (ret) {
432 		rtw_err(rtwdev, "failed to send h2c command\n");
433 		rtw_fw_dump_dbg_info(rtwdev);
434 		return;
435 	}
436 
437 	rtw_write32(rtwdev, box_ex_reg, h2c->w1);
438 	rtw_write32(rtwdev, box_reg, h2c->w0);
439 
440 	if (++rtwdev->h2c.last_box_num >= 4)
441 		rtwdev->h2c.last_box_num = 0;
442 }
443 
rtw_fw_send_h2c_command(struct rtw_dev * rtwdev,u8 * h2c)444 static void rtw_fw_send_h2c_command(struct rtw_dev *rtwdev,
445 				    u8 *h2c)
446 {
447 	struct rtw_h2c_cmd *h2c_cmd = (struct rtw_h2c_cmd *)h2c;
448 	u8 box;
449 	u8 box_state;
450 	u32 box_reg, box_ex_reg;
451 	int ret;
452 
453 	rtw_dbg(rtwdev, RTW_DBG_FW,
454 		"send H2C content %02x%02x%02x%02x %02x%02x%02x%02x\n",
455 		h2c[3], h2c[2], h2c[1], h2c[0],
456 		h2c[7], h2c[6], h2c[5], h2c[4]);
457 
458 	lockdep_assert_held(&rtwdev->mutex);
459 
460 	box = rtwdev->h2c.last_box_num;
461 	switch (box) {
462 	case 0:
463 		box_reg = REG_HMEBOX0;
464 		box_ex_reg = REG_HMEBOX0_EX;
465 		break;
466 	case 1:
467 		box_reg = REG_HMEBOX1;
468 		box_ex_reg = REG_HMEBOX1_EX;
469 		break;
470 	case 2:
471 		box_reg = REG_HMEBOX2;
472 		box_ex_reg = REG_HMEBOX2_EX;
473 		break;
474 	case 3:
475 		box_reg = REG_HMEBOX3;
476 		box_ex_reg = REG_HMEBOX3_EX;
477 		break;
478 	default:
479 		WARN(1, "invalid h2c mail box number\n");
480 		return;
481 	}
482 
483 	ret = read_poll_timeout_atomic(rtw_read8, box_state,
484 				       !((box_state >> box) & 0x1), 100, 3000,
485 				       false, rtwdev, REG_HMETFR);
486 
487 	if (ret) {
488 		rtw_err(rtwdev, "failed to send h2c command\n");
489 		return;
490 	}
491 
492 	rtw_write32(rtwdev, box_ex_reg, le32_to_cpu(h2c_cmd->msg_ext));
493 	rtw_write32(rtwdev, box_reg, le32_to_cpu(h2c_cmd->msg));
494 
495 	if (++rtwdev->h2c.last_box_num >= 4)
496 		rtwdev->h2c.last_box_num = 0;
497 }
498 
rtw_fw_h2c_cmd_dbg(struct rtw_dev * rtwdev,u8 * h2c)499 void rtw_fw_h2c_cmd_dbg(struct rtw_dev *rtwdev, u8 *h2c)
500 {
501 	rtw_fw_send_h2c_command(rtwdev, h2c);
502 }
503 
rtw_fw_send_h2c_packet(struct rtw_dev * rtwdev,u8 * h2c_pkt)504 static void rtw_fw_send_h2c_packet(struct rtw_dev *rtwdev, u8 *h2c_pkt)
505 {
506 	int ret;
507 
508 	lockdep_assert_held(&rtwdev->mutex);
509 
510 	FW_OFFLOAD_H2C_SET_SEQ_NUM(h2c_pkt, rtwdev->h2c.seq);
511 	ret = rtw_hci_write_data_h2c(rtwdev, h2c_pkt, H2C_PKT_SIZE);
512 	if (ret)
513 		rtw_err(rtwdev, "failed to send h2c packet\n");
514 	rtwdev->h2c.seq++;
515 }
516 
517 void
rtw_fw_send_general_info(struct rtw_dev * rtwdev)518 rtw_fw_send_general_info(struct rtw_dev *rtwdev)
519 {
520 	struct rtw_fifo_conf *fifo = &rtwdev->fifo;
521 	u8 h2c_pkt[H2C_PKT_SIZE] = {0};
522 	u16 total_size = H2C_PKT_HDR_SIZE + 4;
523 
524 	if (rtw_chip_wcpu_11n(rtwdev))
525 		return;
526 
527 	rtw_h2c_pkt_set_header(h2c_pkt, H2C_PKT_GENERAL_INFO);
528 
529 	SET_PKT_H2C_TOTAL_LEN(h2c_pkt, total_size);
530 
531 	GENERAL_INFO_SET_FW_TX_BOUNDARY(h2c_pkt,
532 					fifo->rsvd_fw_txbuf_addr -
533 					fifo->rsvd_boundary);
534 
535 	rtw_fw_send_h2c_packet(rtwdev, h2c_pkt);
536 }
537 
538 void
rtw_fw_send_phydm_info(struct rtw_dev * rtwdev)539 rtw_fw_send_phydm_info(struct rtw_dev *rtwdev)
540 {
541 	struct rtw_hal *hal = &rtwdev->hal;
542 	struct rtw_efuse *efuse = &rtwdev->efuse;
543 	u8 h2c_pkt[H2C_PKT_SIZE] = {0};
544 	u16 total_size = H2C_PKT_HDR_SIZE + 8;
545 	u8 fw_rf_type = 0;
546 
547 	if (rtw_chip_wcpu_11n(rtwdev))
548 		return;
549 
550 	if (hal->rf_type == RF_1T1R)
551 		fw_rf_type = FW_RF_1T1R;
552 	else if (hal->rf_type == RF_2T2R)
553 		fw_rf_type = FW_RF_2T2R;
554 
555 	rtw_h2c_pkt_set_header(h2c_pkt, H2C_PKT_PHYDM_INFO);
556 
557 	SET_PKT_H2C_TOTAL_LEN(h2c_pkt, total_size);
558 	PHYDM_INFO_SET_REF_TYPE(h2c_pkt, efuse->rfe_option);
559 	PHYDM_INFO_SET_RF_TYPE(h2c_pkt, fw_rf_type);
560 	PHYDM_INFO_SET_CUT_VER(h2c_pkt, hal->cut_version);
561 	PHYDM_INFO_SET_RX_ANT_STATUS(h2c_pkt, hal->antenna_tx);
562 	PHYDM_INFO_SET_TX_ANT_STATUS(h2c_pkt, hal->antenna_rx);
563 
564 	rtw_fw_send_h2c_packet(rtwdev, h2c_pkt);
565 }
566 
rtw_fw_do_iqk(struct rtw_dev * rtwdev,struct rtw_iqk_para * para)567 void rtw_fw_do_iqk(struct rtw_dev *rtwdev, struct rtw_iqk_para *para)
568 {
569 	u8 h2c_pkt[H2C_PKT_SIZE] = {0};
570 	u16 total_size = H2C_PKT_HDR_SIZE + 1;
571 
572 	rtw_h2c_pkt_set_header(h2c_pkt, H2C_PKT_IQK);
573 	SET_PKT_H2C_TOTAL_LEN(h2c_pkt, total_size);
574 	IQK_SET_CLEAR(h2c_pkt, para->clear);
575 	IQK_SET_SEGMENT_IQK(h2c_pkt, para->segment_iqk);
576 
577 	rtw_fw_send_h2c_packet(rtwdev, h2c_pkt);
578 }
579 EXPORT_SYMBOL(rtw_fw_do_iqk);
580 
rtw_fw_inform_rfk_status(struct rtw_dev * rtwdev,bool start)581 void rtw_fw_inform_rfk_status(struct rtw_dev *rtwdev, bool start)
582 {
583 	u8 h2c_pkt[H2C_PKT_SIZE] = {0};
584 
585 	SET_H2C_CMD_ID_CLASS(h2c_pkt, H2C_CMD_WIFI_CALIBRATION);
586 
587 	RFK_SET_INFORM_START(h2c_pkt, start);
588 
589 	rtw_fw_send_h2c_command(rtwdev, h2c_pkt);
590 }
591 EXPORT_SYMBOL(rtw_fw_inform_rfk_status);
592 
rtw_fw_query_bt_info(struct rtw_dev * rtwdev)593 void rtw_fw_query_bt_info(struct rtw_dev *rtwdev)
594 {
595 	u8 h2c_pkt[H2C_PKT_SIZE] = {0};
596 
597 	SET_H2C_CMD_ID_CLASS(h2c_pkt, H2C_CMD_QUERY_BT_INFO);
598 
599 	SET_QUERY_BT_INFO(h2c_pkt, true);
600 
601 	rtw_fw_send_h2c_command(rtwdev, h2c_pkt);
602 }
603 
rtw_fw_default_port(struct rtw_dev * rtwdev,struct rtw_vif * rtwvif)604 void rtw_fw_default_port(struct rtw_dev *rtwdev, struct rtw_vif *rtwvif)
605 {
606 	struct rtw_h2c_register h2c = {};
607 
608 	if (rtwvif->net_type != RTW_NET_MGD_LINKED)
609 		return;
610 
611 	/* Leave LPS before default port H2C so FW timer is correct */
612 	rtw_leave_lps(rtwdev);
613 
614 	h2c.w0 = u32_encode_bits(H2C_CMD_DEFAULT_PORT, RTW_H2C_W0_CMDID) |
615 		 u32_encode_bits(rtwvif->port, RTW_H2C_DEFAULT_PORT_W0_PORTID) |
616 		 u32_encode_bits(rtwvif->mac_id, RTW_H2C_DEFAULT_PORT_W0_MACID);
617 
618 	rtw_fw_send_h2c_command_register(rtwdev, &h2c);
619 }
620 
rtw_fw_wl_ch_info(struct rtw_dev * rtwdev,u8 link,u8 ch,u8 bw)621 void rtw_fw_wl_ch_info(struct rtw_dev *rtwdev, u8 link, u8 ch, u8 bw)
622 {
623 	u8 h2c_pkt[H2C_PKT_SIZE] = {0};
624 
625 	SET_H2C_CMD_ID_CLASS(h2c_pkt, H2C_CMD_WL_CH_INFO);
626 
627 	SET_WL_CH_INFO_LINK(h2c_pkt, link);
628 	SET_WL_CH_INFO_CHNL(h2c_pkt, ch);
629 	SET_WL_CH_INFO_BW(h2c_pkt, bw);
630 
631 	rtw_fw_send_h2c_command(rtwdev, h2c_pkt);
632 }
633 
rtw_fw_query_bt_mp_info(struct rtw_dev * rtwdev,struct rtw_coex_info_req * req)634 void rtw_fw_query_bt_mp_info(struct rtw_dev *rtwdev,
635 			     struct rtw_coex_info_req *req)
636 {
637 	u8 h2c_pkt[H2C_PKT_SIZE] = {0};
638 
639 	SET_H2C_CMD_ID_CLASS(h2c_pkt, H2C_CMD_QUERY_BT_MP_INFO);
640 
641 	SET_BT_MP_INFO_SEQ(h2c_pkt, req->seq);
642 	SET_BT_MP_INFO_OP_CODE(h2c_pkt, req->op_code);
643 	SET_BT_MP_INFO_PARA1(h2c_pkt, req->para1);
644 	SET_BT_MP_INFO_PARA2(h2c_pkt, req->para2);
645 	SET_BT_MP_INFO_PARA3(h2c_pkt, req->para3);
646 
647 	rtw_fw_send_h2c_command(rtwdev, h2c_pkt);
648 }
649 
rtw_fw_force_bt_tx_power(struct rtw_dev * rtwdev,u8 bt_pwr_dec_lvl)650 void rtw_fw_force_bt_tx_power(struct rtw_dev *rtwdev, u8 bt_pwr_dec_lvl)
651 {
652 	u8 h2c_pkt[H2C_PKT_SIZE] = {0};
653 	u8 index = 0 - bt_pwr_dec_lvl;
654 
655 	SET_H2C_CMD_ID_CLASS(h2c_pkt, H2C_CMD_FORCE_BT_TX_POWER);
656 
657 	SET_BT_TX_POWER_INDEX(h2c_pkt, index);
658 
659 	rtw_fw_send_h2c_command(rtwdev, h2c_pkt);
660 }
661 
rtw_fw_bt_ignore_wlan_action(struct rtw_dev * rtwdev,bool enable)662 void rtw_fw_bt_ignore_wlan_action(struct rtw_dev *rtwdev, bool enable)
663 {
664 	u8 h2c_pkt[H2C_PKT_SIZE] = {0};
665 
666 	SET_H2C_CMD_ID_CLASS(h2c_pkt, H2C_CMD_IGNORE_WLAN_ACTION);
667 
668 	SET_IGNORE_WLAN_ACTION_EN(h2c_pkt, enable);
669 
670 	rtw_fw_send_h2c_command(rtwdev, h2c_pkt);
671 }
672 
rtw_fw_coex_tdma_type(struct rtw_dev * rtwdev,u8 para1,u8 para2,u8 para3,u8 para4,u8 para5)673 void rtw_fw_coex_tdma_type(struct rtw_dev *rtwdev,
674 			   u8 para1, u8 para2, u8 para3, u8 para4, u8 para5)
675 {
676 	u8 h2c_pkt[H2C_PKT_SIZE] = {0};
677 
678 	SET_H2C_CMD_ID_CLASS(h2c_pkt, H2C_CMD_COEX_TDMA_TYPE);
679 
680 	SET_COEX_TDMA_TYPE_PARA1(h2c_pkt, para1);
681 	SET_COEX_TDMA_TYPE_PARA2(h2c_pkt, para2);
682 	SET_COEX_TDMA_TYPE_PARA3(h2c_pkt, para3);
683 	SET_COEX_TDMA_TYPE_PARA4(h2c_pkt, para4);
684 	SET_COEX_TDMA_TYPE_PARA5(h2c_pkt, para5);
685 
686 	rtw_fw_send_h2c_command(rtwdev, h2c_pkt);
687 }
688 
rtw_fw_coex_query_hid_info(struct rtw_dev * rtwdev,u8 sub_id,u8 data)689 void rtw_fw_coex_query_hid_info(struct rtw_dev *rtwdev, u8 sub_id, u8 data)
690 {
691 	u8 h2c_pkt[H2C_PKT_SIZE] = {0};
692 
693 	SET_H2C_CMD_ID_CLASS(h2c_pkt, H2C_CMD_QUERY_BT_HID_INFO);
694 
695 	SET_COEX_QUERY_HID_INFO_SUBID(h2c_pkt, sub_id);
696 	SET_COEX_QUERY_HID_INFO_DATA1(h2c_pkt, data);
697 
698 	rtw_fw_send_h2c_command(rtwdev, h2c_pkt);
699 }
700 
rtw_fw_bt_wifi_control(struct rtw_dev * rtwdev,u8 op_code,u8 * data)701 void rtw_fw_bt_wifi_control(struct rtw_dev *rtwdev, u8 op_code, u8 *data)
702 {
703 	u8 h2c_pkt[H2C_PKT_SIZE] = {0};
704 
705 	SET_H2C_CMD_ID_CLASS(h2c_pkt, H2C_CMD_BT_WIFI_CONTROL);
706 
707 	SET_BT_WIFI_CONTROL_OP_CODE(h2c_pkt, op_code);
708 
709 	SET_BT_WIFI_CONTROL_DATA1(h2c_pkt, *data);
710 	SET_BT_WIFI_CONTROL_DATA2(h2c_pkt, *(data + 1));
711 	SET_BT_WIFI_CONTROL_DATA3(h2c_pkt, *(data + 2));
712 	SET_BT_WIFI_CONTROL_DATA4(h2c_pkt, *(data + 3));
713 	SET_BT_WIFI_CONTROL_DATA5(h2c_pkt, *(data + 4));
714 
715 	rtw_fw_send_h2c_command(rtwdev, h2c_pkt);
716 }
717 
rtw_fw_send_rssi_info(struct rtw_dev * rtwdev,struct rtw_sta_info * si)718 void rtw_fw_send_rssi_info(struct rtw_dev *rtwdev, struct rtw_sta_info *si)
719 {
720 	u8 h2c_pkt[H2C_PKT_SIZE] = {0};
721 	u8 rssi = ewma_rssi_read(&si->avg_rssi);
722 	bool stbc_en = si->stbc_en ? true : false;
723 
724 	SET_H2C_CMD_ID_CLASS(h2c_pkt, H2C_CMD_RSSI_MONITOR);
725 
726 	SET_RSSI_INFO_MACID(h2c_pkt, si->mac_id);
727 	SET_RSSI_INFO_RSSI(h2c_pkt, rssi);
728 	SET_RSSI_INFO_STBC(h2c_pkt, stbc_en);
729 
730 	rtw_fw_send_h2c_command(rtwdev, h2c_pkt);
731 }
732 
rtw_fw_send_ra_info(struct rtw_dev * rtwdev,struct rtw_sta_info * si,bool reset_ra_mask)733 void rtw_fw_send_ra_info(struct rtw_dev *rtwdev, struct rtw_sta_info *si,
734 			 bool reset_ra_mask)
735 {
736 	u8 h2c_pkt[H2C_PKT_SIZE] = {0};
737 	bool disable_pt = true;
738 	u32 mask_hi;
739 
740 	SET_H2C_CMD_ID_CLASS(h2c_pkt, H2C_CMD_RA_INFO);
741 
742 	SET_RA_INFO_MACID(h2c_pkt, si->mac_id);
743 	SET_RA_INFO_RATE_ID(h2c_pkt, si->rate_id);
744 	SET_RA_INFO_INIT_RA_LVL(h2c_pkt, si->init_ra_lv);
745 	SET_RA_INFO_SGI_EN(h2c_pkt, si->sgi_enable);
746 	SET_RA_INFO_BW_MODE(h2c_pkt, si->bw_mode);
747 	SET_RA_INFO_LDPC(h2c_pkt, !!si->ldpc_en);
748 	SET_RA_INFO_NO_UPDATE(h2c_pkt, !reset_ra_mask);
749 	SET_RA_INFO_VHT_EN(h2c_pkt, si->vht_enable);
750 	SET_RA_INFO_DIS_PT(h2c_pkt, disable_pt);
751 	SET_RA_INFO_RA_MASK0(h2c_pkt, (si->ra_mask & 0xff));
752 	SET_RA_INFO_RA_MASK1(h2c_pkt, (si->ra_mask & 0xff00) >> 8);
753 	SET_RA_INFO_RA_MASK2(h2c_pkt, (si->ra_mask & 0xff0000) >> 16);
754 	SET_RA_INFO_RA_MASK3(h2c_pkt, (si->ra_mask & 0xff000000) >> 24);
755 
756 	si->init_ra_lv = 0;
757 
758 	rtw_fw_send_h2c_command(rtwdev, h2c_pkt);
759 
760 	if (rtwdev->chip->id != RTW_CHIP_TYPE_8814A)
761 		return;
762 
763 	SET_H2C_CMD_ID_CLASS(h2c_pkt, H2C_CMD_RA_INFO_HI);
764 
765 	mask_hi = si->ra_mask >> 32;
766 
767 	SET_RA_INFO_RA_MASK0(h2c_pkt, (mask_hi & 0xff));
768 	SET_RA_INFO_RA_MASK1(h2c_pkt, (mask_hi & 0xff00) >> 8);
769 	SET_RA_INFO_RA_MASK2(h2c_pkt, (mask_hi & 0xff0000) >> 16);
770 	SET_RA_INFO_RA_MASK3(h2c_pkt, (mask_hi & 0xff000000) >> 24);
771 
772 	rtw_fw_send_h2c_command(rtwdev, h2c_pkt);
773 }
774 
rtw_fw_media_status_report(struct rtw_dev * rtwdev,u8 mac_id,bool connect)775 void rtw_fw_media_status_report(struct rtw_dev *rtwdev, u8 mac_id, bool connect)
776 {
777 	u8 h2c_pkt[H2C_PKT_SIZE] = {0};
778 
779 	SET_H2C_CMD_ID_CLASS(h2c_pkt, H2C_CMD_MEDIA_STATUS_RPT);
780 	MEDIA_STATUS_RPT_SET_OP_MODE(h2c_pkt, connect);
781 	MEDIA_STATUS_RPT_SET_MACID(h2c_pkt, mac_id);
782 
783 	rtw_fw_send_h2c_command(rtwdev, h2c_pkt);
784 }
785 
rtw_fw_update_wl_phy_info(struct rtw_dev * rtwdev)786 void rtw_fw_update_wl_phy_info(struct rtw_dev *rtwdev)
787 {
788 	struct rtw_traffic_stats *stats = &rtwdev->stats;
789 	struct rtw_dm_info *dm_info = &rtwdev->dm_info;
790 	u8 h2c_pkt[H2C_PKT_SIZE] = {0};
791 
792 	SET_H2C_CMD_ID_CLASS(h2c_pkt, H2C_CMD_WL_PHY_INFO);
793 	SET_WL_PHY_INFO_TX_TP(h2c_pkt, stats->tx_throughput);
794 	SET_WL_PHY_INFO_RX_TP(h2c_pkt, stats->rx_throughput);
795 	SET_WL_PHY_INFO_TX_RATE_DESC(h2c_pkt, dm_info->tx_rate);
796 	SET_WL_PHY_INFO_RX_RATE_DESC(h2c_pkt, dm_info->curr_rx_rate);
797 	SET_WL_PHY_INFO_RX_EVM(h2c_pkt, dm_info->rx_evm_dbm[RF_PATH_A]);
798 	rtw_fw_send_h2c_command(rtwdev, h2c_pkt);
799 }
800 
rtw_fw_beacon_filter_config(struct rtw_dev * rtwdev,bool connect,struct ieee80211_vif * vif)801 void rtw_fw_beacon_filter_config(struct rtw_dev *rtwdev, bool connect,
802 				 struct ieee80211_vif *vif)
803 {
804 	struct ieee80211_bss_conf *bss_conf = &vif->bss_conf;
805 	struct ieee80211_sta *sta = ieee80211_find_sta(vif, bss_conf->bssid);
806 	static const u8 rssi_min = 0, rssi_max = 100, rssi_offset = 100;
807 	struct rtw_sta_info *si =
808 		sta ? (struct rtw_sta_info *)sta->drv_priv : NULL;
809 	s32 thold = RTW_DEFAULT_CQM_THOLD;
810 	u32 hyst = RTW_DEFAULT_CQM_HYST;
811 	u8 h2c_pkt[H2C_PKT_SIZE] = {0};
812 
813 	if (!rtw_fw_feature_check(&rtwdev->fw, FW_FEATURE_BCN_FILTER))
814 		return;
815 
816 	if (bss_conf->cqm_rssi_thold)
817 		thold = bss_conf->cqm_rssi_thold;
818 	if (bss_conf->cqm_rssi_hyst)
819 		hyst = bss_conf->cqm_rssi_hyst;
820 
821 	if (!connect) {
822 		SET_H2C_CMD_ID_CLASS(h2c_pkt, H2C_CMD_BCN_FILTER_OFFLOAD_P1);
823 		SET_BCN_FILTER_OFFLOAD_P1_ENABLE(h2c_pkt, connect);
824 		rtw_fw_send_h2c_command(rtwdev, h2c_pkt);
825 
826 		return;
827 	}
828 
829 	if (!si)
830 		return;
831 
832 	SET_H2C_CMD_ID_CLASS(h2c_pkt, H2C_CMD_BCN_FILTER_OFFLOAD_P0);
833 	ether_addr_copy(&h2c_pkt[1], bss_conf->bssid);
834 	rtw_fw_send_h2c_command(rtwdev, h2c_pkt);
835 
836 	memset(h2c_pkt, 0, sizeof(h2c_pkt));
837 	thold = clamp_t(s32, thold + rssi_offset, rssi_min, rssi_max);
838 	SET_H2C_CMD_ID_CLASS(h2c_pkt, H2C_CMD_BCN_FILTER_OFFLOAD_P1);
839 	SET_BCN_FILTER_OFFLOAD_P1_ENABLE(h2c_pkt, connect);
840 	SET_BCN_FILTER_OFFLOAD_P1_OFFLOAD_MODE(h2c_pkt,
841 					       BCN_FILTER_OFFLOAD_MODE_DEFAULT);
842 	SET_BCN_FILTER_OFFLOAD_P1_THRESHOLD(h2c_pkt, thold);
843 	SET_BCN_FILTER_OFFLOAD_P1_BCN_LOSS_CNT(h2c_pkt, BCN_LOSS_CNT);
844 	SET_BCN_FILTER_OFFLOAD_P1_MACID(h2c_pkt, si->mac_id);
845 	SET_BCN_FILTER_OFFLOAD_P1_HYST(h2c_pkt, hyst);
846 	SET_BCN_FILTER_OFFLOAD_P1_BCN_INTERVAL(h2c_pkt, bss_conf->beacon_int);
847 	rtw_fw_send_h2c_command(rtwdev, h2c_pkt);
848 }
849 
rtw_fw_set_pwr_mode(struct rtw_dev * rtwdev)850 void rtw_fw_set_pwr_mode(struct rtw_dev *rtwdev)
851 {
852 	struct rtw_lps_conf *conf = &rtwdev->lps_conf;
853 	u8 h2c_pkt[H2C_PKT_SIZE] = {0};
854 
855 	SET_H2C_CMD_ID_CLASS(h2c_pkt, H2C_CMD_SET_PWR_MODE);
856 
857 	SET_PWR_MODE_SET_MODE(h2c_pkt, conf->mode);
858 	SET_PWR_MODE_SET_RLBM(h2c_pkt, conf->rlbm);
859 	SET_PWR_MODE_SET_SMART_PS(h2c_pkt, conf->smart_ps);
860 	SET_PWR_MODE_SET_AWAKE_INTERVAL(h2c_pkt, conf->awake_interval);
861 	SET_PWR_MODE_SET_PORT_ID(h2c_pkt, conf->port_id);
862 	SET_PWR_MODE_SET_PWR_STATE(h2c_pkt, conf->state);
863 
864 	rtw_fw_send_h2c_command(rtwdev, h2c_pkt);
865 }
866 
rtw_fw_set_keep_alive_cmd(struct rtw_dev * rtwdev,bool enable)867 void rtw_fw_set_keep_alive_cmd(struct rtw_dev *rtwdev, bool enable)
868 {
869 	u8 h2c_pkt[H2C_PKT_SIZE] = {0};
870 	struct rtw_fw_wow_keep_alive_para mode = {
871 		.adopt = true,
872 		.pkt_type = KEEP_ALIVE_NULL_PKT,
873 		.period = 5,
874 	};
875 
876 	SET_H2C_CMD_ID_CLASS(h2c_pkt, H2C_CMD_KEEP_ALIVE);
877 	SET_KEEP_ALIVE_ENABLE(h2c_pkt, enable);
878 	SET_KEEP_ALIVE_ADOPT(h2c_pkt, mode.adopt);
879 	SET_KEEP_ALIVE_PKT_TYPE(h2c_pkt, mode.pkt_type);
880 	SET_KEEP_ALIVE_CHECK_PERIOD(h2c_pkt, mode.period);
881 
882 	rtw_fw_send_h2c_command(rtwdev, h2c_pkt);
883 }
884 
rtw_fw_set_disconnect_decision_cmd(struct rtw_dev * rtwdev,bool enable)885 void rtw_fw_set_disconnect_decision_cmd(struct rtw_dev *rtwdev, bool enable)
886 {
887 	struct rtw_wow_param *rtw_wow = &rtwdev->wow;
888 	u8 h2c_pkt[H2C_PKT_SIZE] = {0};
889 	struct rtw_fw_wow_disconnect_para mode = {
890 		.adopt = true,
891 		.period = 30,
892 		.retry_count = 5,
893 	};
894 
895 	SET_H2C_CMD_ID_CLASS(h2c_pkt, H2C_CMD_DISCONNECT_DECISION);
896 
897 	if (test_bit(RTW_WOW_FLAG_EN_DISCONNECT, rtw_wow->flags)) {
898 		SET_DISCONNECT_DECISION_ENABLE(h2c_pkt, enable);
899 		SET_DISCONNECT_DECISION_ADOPT(h2c_pkt, mode.adopt);
900 		SET_DISCONNECT_DECISION_CHECK_PERIOD(h2c_pkt, mode.period);
901 		SET_DISCONNECT_DECISION_TRY_PKT_NUM(h2c_pkt, mode.retry_count);
902 	}
903 
904 	rtw_fw_send_h2c_command(rtwdev, h2c_pkt);
905 }
906 
rtw_fw_set_wowlan_ctrl_cmd(struct rtw_dev * rtwdev,bool enable)907 void rtw_fw_set_wowlan_ctrl_cmd(struct rtw_dev *rtwdev, bool enable)
908 {
909 	struct rtw_wow_param *rtw_wow = &rtwdev->wow;
910 	u8 h2c_pkt[H2C_PKT_SIZE] = {0};
911 
912 	SET_H2C_CMD_ID_CLASS(h2c_pkt, H2C_CMD_WOWLAN);
913 
914 	SET_WOWLAN_FUNC_ENABLE(h2c_pkt, enable);
915 	if (rtw_wow_mgd_linked(rtwdev)) {
916 		if (test_bit(RTW_WOW_FLAG_EN_MAGIC_PKT, rtw_wow->flags))
917 			SET_WOWLAN_MAGIC_PKT_ENABLE(h2c_pkt, enable);
918 		if (test_bit(RTW_WOW_FLAG_EN_DISCONNECT, rtw_wow->flags))
919 			SET_WOWLAN_DEAUTH_WAKEUP_ENABLE(h2c_pkt, enable);
920 		if (test_bit(RTW_WOW_FLAG_EN_REKEY_PKT, rtw_wow->flags))
921 			SET_WOWLAN_REKEY_WAKEUP_ENABLE(h2c_pkt, enable);
922 		if (rtw_wow->pattern_cnt)
923 			SET_WOWLAN_PATTERN_MATCH_ENABLE(h2c_pkt, enable);
924 	}
925 
926 	rtw_fw_send_h2c_command(rtwdev, h2c_pkt);
927 }
928 
rtw_fw_set_aoac_global_info_cmd(struct rtw_dev * rtwdev,u8 pairwise_key_enc,u8 group_key_enc)929 void rtw_fw_set_aoac_global_info_cmd(struct rtw_dev *rtwdev,
930 				     u8 pairwise_key_enc,
931 				     u8 group_key_enc)
932 {
933 	u8 h2c_pkt[H2C_PKT_SIZE] = {0};
934 
935 	SET_H2C_CMD_ID_CLASS(h2c_pkt, H2C_CMD_AOAC_GLOBAL_INFO);
936 
937 	SET_AOAC_GLOBAL_INFO_PAIRWISE_ENC_ALG(h2c_pkt, pairwise_key_enc);
938 	SET_AOAC_GLOBAL_INFO_GROUP_ENC_ALG(h2c_pkt, group_key_enc);
939 
940 	rtw_fw_send_h2c_command(rtwdev, h2c_pkt);
941 }
942 
rtw_fw_set_remote_wake_ctrl_cmd(struct rtw_dev * rtwdev,bool enable)943 void rtw_fw_set_remote_wake_ctrl_cmd(struct rtw_dev *rtwdev, bool enable)
944 {
945 	u8 h2c_pkt[H2C_PKT_SIZE] = {0};
946 
947 	SET_H2C_CMD_ID_CLASS(h2c_pkt, H2C_CMD_REMOTE_WAKE_CTRL);
948 
949 	SET_REMOTE_WAKECTRL_ENABLE(h2c_pkt, enable);
950 
951 	if (rtw_wow_no_link(rtwdev))
952 		SET_REMOTE_WAKE_CTRL_NLO_OFFLOAD_EN(h2c_pkt, enable);
953 
954 	rtw_fw_send_h2c_command(rtwdev, h2c_pkt);
955 }
956 
rtw_get_rsvd_page_location(struct rtw_dev * rtwdev,enum rtw_rsvd_packet_type type)957 static u8 rtw_get_rsvd_page_location(struct rtw_dev *rtwdev,
958 				     enum rtw_rsvd_packet_type type)
959 {
960 	struct rtw_rsvd_page *rsvd_pkt;
961 	u8 location = 0;
962 
963 	list_for_each_entry(rsvd_pkt, &rtwdev->rsvd_page_list, build_list) {
964 		if (type == rsvd_pkt->type)
965 			location = rsvd_pkt->page;
966 	}
967 
968 	return location;
969 }
970 
rtw_fw_set_nlo_info(struct rtw_dev * rtwdev,bool enable)971 void rtw_fw_set_nlo_info(struct rtw_dev *rtwdev, bool enable)
972 {
973 	u8 h2c_pkt[H2C_PKT_SIZE] = {0};
974 	u8 loc_nlo;
975 
976 	loc_nlo = rtw_get_rsvd_page_location(rtwdev, RSVD_NLO_INFO);
977 
978 	SET_H2C_CMD_ID_CLASS(h2c_pkt, H2C_CMD_NLO_INFO);
979 
980 	SET_NLO_FUN_EN(h2c_pkt, enable);
981 	if (enable) {
982 		if (rtw_get_lps_deep_mode(rtwdev) != LPS_DEEP_MODE_NONE)
983 			SET_NLO_PS_32K(h2c_pkt, enable);
984 		SET_NLO_IGNORE_SECURITY(h2c_pkt, enable);
985 		SET_NLO_LOC_NLO_INFO(h2c_pkt, loc_nlo);
986 	}
987 
988 	rtw_fw_send_h2c_command(rtwdev, h2c_pkt);
989 }
990 
rtw_fw_set_recover_bt_device(struct rtw_dev * rtwdev)991 void rtw_fw_set_recover_bt_device(struct rtw_dev *rtwdev)
992 {
993 	u8 h2c_pkt[H2C_PKT_SIZE] = {0};
994 
995 	SET_H2C_CMD_ID_CLASS(h2c_pkt, H2C_CMD_RECOVER_BT_DEV);
996 	SET_RECOVER_BT_DEV_EN(h2c_pkt, 1);
997 
998 	rtw_fw_send_h2c_command(rtwdev, h2c_pkt);
999 }
1000 
rtw_fw_set_pg_info(struct rtw_dev * rtwdev)1001 void rtw_fw_set_pg_info(struct rtw_dev *rtwdev)
1002 {
1003 	struct rtw_lps_conf *conf = &rtwdev->lps_conf;
1004 	u8 h2c_pkt[H2C_PKT_SIZE] = {0};
1005 	u8 loc_pg, loc_dpk;
1006 
1007 	loc_pg = rtw_get_rsvd_page_location(rtwdev, RSVD_LPS_PG_INFO);
1008 	loc_dpk = rtw_get_rsvd_page_location(rtwdev, RSVD_LPS_PG_DPK);
1009 
1010 	SET_H2C_CMD_ID_CLASS(h2c_pkt, H2C_CMD_LPS_PG_INFO);
1011 
1012 	LPS_PG_INFO_LOC(h2c_pkt, loc_pg);
1013 	LPS_PG_DPK_LOC(h2c_pkt, loc_dpk);
1014 	LPS_PG_SEC_CAM_EN(h2c_pkt, conf->sec_cam_backup);
1015 	LPS_PG_PATTERN_CAM_EN(h2c_pkt, conf->pattern_cam_backup);
1016 
1017 	rtw_fw_send_h2c_command(rtwdev, h2c_pkt);
1018 }
1019 
rtw_get_rsvd_page_probe_req_location(struct rtw_dev * rtwdev,struct cfg80211_ssid * ssid)1020 static u8 rtw_get_rsvd_page_probe_req_location(struct rtw_dev *rtwdev,
1021 					       struct cfg80211_ssid *ssid)
1022 {
1023 	struct rtw_rsvd_page *rsvd_pkt;
1024 	u8 location = 0;
1025 
1026 	list_for_each_entry(rsvd_pkt, &rtwdev->rsvd_page_list, build_list) {
1027 		if (rsvd_pkt->type != RSVD_PROBE_REQ)
1028 			continue;
1029 		if ((!ssid && !rsvd_pkt->ssid) ||
1030 		    cfg80211_ssid_eq(rsvd_pkt->ssid, ssid))
1031 			location = rsvd_pkt->page;
1032 	}
1033 
1034 	return location;
1035 }
1036 
rtw_get_rsvd_page_probe_req_size(struct rtw_dev * rtwdev,struct cfg80211_ssid * ssid)1037 static u16 rtw_get_rsvd_page_probe_req_size(struct rtw_dev *rtwdev,
1038 					    struct cfg80211_ssid *ssid)
1039 {
1040 	struct rtw_rsvd_page *rsvd_pkt;
1041 	u16 size = 0;
1042 
1043 	list_for_each_entry(rsvd_pkt, &rtwdev->rsvd_page_list, build_list) {
1044 		if (rsvd_pkt->type != RSVD_PROBE_REQ)
1045 			continue;
1046 		if ((!ssid && !rsvd_pkt->ssid) ||
1047 		    cfg80211_ssid_eq(rsvd_pkt->ssid, ssid))
1048 			size = rsvd_pkt->probe_req_size;
1049 	}
1050 
1051 	return size;
1052 }
1053 
rtw_send_rsvd_page_h2c(struct rtw_dev * rtwdev)1054 void rtw_send_rsvd_page_h2c(struct rtw_dev *rtwdev)
1055 {
1056 	u8 h2c_pkt[H2C_PKT_SIZE] = {0};
1057 	u8 location = 0;
1058 
1059 	SET_H2C_CMD_ID_CLASS(h2c_pkt, H2C_CMD_RSVD_PAGE);
1060 
1061 	location = rtw_get_rsvd_page_location(rtwdev, RSVD_PROBE_RESP);
1062 	*(h2c_pkt + 1) = location;
1063 	rtw_dbg(rtwdev, RTW_DBG_FW, "RSVD_PROBE_RESP loc: %d\n", location);
1064 
1065 	location = rtw_get_rsvd_page_location(rtwdev, RSVD_PS_POLL);
1066 	*(h2c_pkt + 2) = location;
1067 	rtw_dbg(rtwdev, RTW_DBG_FW, "RSVD_PS_POLL loc: %d\n", location);
1068 
1069 	location = rtw_get_rsvd_page_location(rtwdev, RSVD_NULL);
1070 	*(h2c_pkt + 3) = location;
1071 	rtw_dbg(rtwdev, RTW_DBG_FW, "RSVD_NULL loc: %d\n", location);
1072 
1073 	location = rtw_get_rsvd_page_location(rtwdev, RSVD_QOS_NULL);
1074 	*(h2c_pkt + 4) = location;
1075 	rtw_dbg(rtwdev, RTW_DBG_FW, "RSVD_QOS_NULL loc: %d\n", location);
1076 
1077 	rtw_fw_send_h2c_command(rtwdev, h2c_pkt);
1078 }
1079 
rtw_nlo_info_get(struct ieee80211_hw * hw)1080 static struct sk_buff *rtw_nlo_info_get(struct ieee80211_hw *hw)
1081 {
1082 	struct rtw_dev *rtwdev = hw->priv;
1083 	const struct rtw_chip_info *chip = rtwdev->chip;
1084 	struct rtw_pno_request *pno_req = &rtwdev->wow.pno_req;
1085 	struct rtw_nlo_info_hdr *nlo_hdr;
1086 	struct cfg80211_ssid *ssid;
1087 	struct sk_buff *skb;
1088 	u8 *pos, loc;
1089 	u32 size;
1090 	int i;
1091 
1092 	if (!pno_req->inited || !pno_req->match_set_cnt)
1093 		return NULL;
1094 
1095 	size = sizeof(struct rtw_nlo_info_hdr) + pno_req->match_set_cnt *
1096 		      IEEE80211_MAX_SSID_LEN + chip->tx_pkt_desc_sz;
1097 
1098 	skb = alloc_skb(size, GFP_KERNEL);
1099 	if (!skb)
1100 		return NULL;
1101 
1102 	skb_reserve(skb, chip->tx_pkt_desc_sz);
1103 
1104 	nlo_hdr = skb_put_zero(skb, sizeof(struct rtw_nlo_info_hdr));
1105 
1106 	nlo_hdr->nlo_count = pno_req->match_set_cnt;
1107 	nlo_hdr->hidden_ap_count = pno_req->match_set_cnt;
1108 
1109 	/* pattern check for firmware */
1110 	memset(nlo_hdr->pattern_check, 0xA5, FW_NLO_INFO_CHECK_SIZE);
1111 
1112 	for (i = 0; i < pno_req->match_set_cnt; i++)
1113 		nlo_hdr->ssid_len[i] = pno_req->match_sets[i].ssid.ssid_len;
1114 
1115 	for (i = 0; i < pno_req->match_set_cnt; i++) {
1116 		ssid = &pno_req->match_sets[i].ssid;
1117 		loc  = rtw_get_rsvd_page_probe_req_location(rtwdev, ssid);
1118 		if (!loc) {
1119 			rtw_err(rtwdev, "failed to get probe req rsvd loc\n");
1120 			kfree_skb(skb);
1121 			return NULL;
1122 		}
1123 		nlo_hdr->location[i] = loc;
1124 	}
1125 
1126 	for (i = 0; i < pno_req->match_set_cnt; i++) {
1127 		pos = skb_put_zero(skb, IEEE80211_MAX_SSID_LEN);
1128 		memcpy(pos, pno_req->match_sets[i].ssid.ssid,
1129 		       pno_req->match_sets[i].ssid.ssid_len);
1130 	}
1131 
1132 	return skb;
1133 }
1134 
rtw_cs_channel_info_get(struct ieee80211_hw * hw)1135 static struct sk_buff *rtw_cs_channel_info_get(struct ieee80211_hw *hw)
1136 {
1137 	struct rtw_dev *rtwdev = hw->priv;
1138 	const struct rtw_chip_info *chip = rtwdev->chip;
1139 	struct rtw_pno_request *pno_req = &rtwdev->wow.pno_req;
1140 	struct ieee80211_channel *channels = pno_req->channels;
1141 	struct sk_buff *skb;
1142 	int count =  pno_req->channel_cnt;
1143 	u8 *pos;
1144 	int i = 0;
1145 
1146 	skb = alloc_skb(4 * count + chip->tx_pkt_desc_sz, GFP_KERNEL);
1147 	if (!skb)
1148 		return NULL;
1149 
1150 	skb_reserve(skb, chip->tx_pkt_desc_sz);
1151 
1152 	for (i = 0; i < count; i++) {
1153 		pos = skb_put_zero(skb, 4);
1154 
1155 		CHSW_INFO_SET_CH(pos, channels[i].hw_value);
1156 
1157 		if (channels[i].flags & IEEE80211_CHAN_RADAR)
1158 			CHSW_INFO_SET_ACTION_ID(pos, 0);
1159 		else
1160 			CHSW_INFO_SET_ACTION_ID(pos, 1);
1161 		CHSW_INFO_SET_TIMEOUT(pos, 1);
1162 		CHSW_INFO_SET_PRI_CH_IDX(pos, 1);
1163 		CHSW_INFO_SET_BW(pos, 0);
1164 	}
1165 
1166 	return skb;
1167 }
1168 
rtw_lps_pg_dpk_get(struct ieee80211_hw * hw)1169 static struct sk_buff *rtw_lps_pg_dpk_get(struct ieee80211_hw *hw)
1170 {
1171 	struct rtw_dev *rtwdev = hw->priv;
1172 	const struct rtw_chip_info *chip = rtwdev->chip;
1173 	struct rtw_dpk_info *dpk_info = &rtwdev->dm_info.dpk_info;
1174 	struct rtw_lps_pg_dpk_hdr *dpk_hdr;
1175 	struct sk_buff *skb;
1176 	u32 size;
1177 
1178 	size = chip->tx_pkt_desc_sz + sizeof(*dpk_hdr);
1179 	skb = alloc_skb(size, GFP_KERNEL);
1180 	if (!skb)
1181 		return NULL;
1182 
1183 	skb_reserve(skb, chip->tx_pkt_desc_sz);
1184 	dpk_hdr = skb_put_zero(skb, sizeof(*dpk_hdr));
1185 	dpk_hdr->dpk_ch = dpk_info->dpk_ch;
1186 	dpk_hdr->dpk_path_ok = dpk_info->dpk_path_ok[0];
1187 	memcpy(dpk_hdr->dpk_txagc, dpk_info->dpk_txagc, 2);
1188 	memcpy(dpk_hdr->dpk_gs, dpk_info->dpk_gs, 4);
1189 	memcpy(dpk_hdr->coef, dpk_info->coef, 160);
1190 
1191 	return skb;
1192 }
1193 
rtw_lps_pg_info_get(struct ieee80211_hw * hw)1194 static struct sk_buff *rtw_lps_pg_info_get(struct ieee80211_hw *hw)
1195 {
1196 	struct rtw_dev *rtwdev = hw->priv;
1197 	const struct rtw_chip_info *chip = rtwdev->chip;
1198 	struct rtw_lps_conf *conf = &rtwdev->lps_conf;
1199 	struct rtw_lps_pg_info_hdr *pg_info_hdr;
1200 	struct rtw_wow_param *rtw_wow = &rtwdev->wow;
1201 	struct sk_buff *skb;
1202 	u32 size;
1203 
1204 	size = chip->tx_pkt_desc_sz + sizeof(*pg_info_hdr);
1205 	skb = alloc_skb(size, GFP_KERNEL);
1206 	if (!skb)
1207 		return NULL;
1208 
1209 	skb_reserve(skb, chip->tx_pkt_desc_sz);
1210 	pg_info_hdr = skb_put_zero(skb, sizeof(*pg_info_hdr));
1211 	pg_info_hdr->tx_bu_page_count = rtwdev->fifo.rsvd_drv_pg_num;
1212 	pg_info_hdr->macid = find_first_bit(rtwdev->mac_id_map, RTW_MAX_MAC_ID_NUM);
1213 	pg_info_hdr->sec_cam_count =
1214 		rtw_sec_cam_pg_backup(rtwdev, pg_info_hdr->sec_cam);
1215 	pg_info_hdr->pattern_count = rtw_wow->pattern_cnt;
1216 
1217 	conf->sec_cam_backup = pg_info_hdr->sec_cam_count != 0;
1218 	conf->pattern_cam_backup = rtw_wow->pattern_cnt != 0;
1219 
1220 	return skb;
1221 }
1222 
rtw_get_rsvd_page_skb(struct ieee80211_hw * hw,struct rtw_rsvd_page * rsvd_pkt)1223 static struct sk_buff *rtw_get_rsvd_page_skb(struct ieee80211_hw *hw,
1224 					     struct rtw_rsvd_page *rsvd_pkt)
1225 {
1226 	struct ieee80211_vif *vif;
1227 	struct rtw_vif *rtwvif;
1228 	struct sk_buff *skb_new;
1229 	struct cfg80211_ssid *ssid;
1230 	u16 tim_offset = 0;
1231 
1232 	if (rsvd_pkt->type == RSVD_DUMMY) {
1233 		skb_new = alloc_skb(1, GFP_KERNEL);
1234 		if (!skb_new)
1235 			return NULL;
1236 
1237 		skb_put(skb_new, 1);
1238 		return skb_new;
1239 	}
1240 
1241 	rtwvif = rsvd_pkt->rtwvif;
1242 	if (!rtwvif)
1243 		return NULL;
1244 
1245 	vif = rtwvif_to_vif(rtwvif);
1246 
1247 	switch (rsvd_pkt->type) {
1248 	case RSVD_BEACON:
1249 		skb_new = ieee80211_beacon_get_tim(hw, vif, &tim_offset, NULL, 0);
1250 		rsvd_pkt->tim_offset = tim_offset;
1251 		break;
1252 	case RSVD_PS_POLL:
1253 		skb_new = ieee80211_pspoll_get(hw, vif);
1254 		break;
1255 	case RSVD_PROBE_RESP:
1256 		skb_new = ieee80211_proberesp_get(hw, vif);
1257 		break;
1258 	case RSVD_NULL:
1259 		skb_new = ieee80211_nullfunc_get(hw, vif, -1, false);
1260 		break;
1261 	case RSVD_QOS_NULL:
1262 		skb_new = ieee80211_nullfunc_get(hw, vif, -1, true);
1263 		break;
1264 	case RSVD_LPS_PG_DPK:
1265 		skb_new = rtw_lps_pg_dpk_get(hw);
1266 		break;
1267 	case RSVD_LPS_PG_INFO:
1268 		skb_new = rtw_lps_pg_info_get(hw);
1269 		break;
1270 	case RSVD_PROBE_REQ:
1271 		ssid = (struct cfg80211_ssid *)rsvd_pkt->ssid;
1272 		if (ssid)
1273 			skb_new = ieee80211_probereq_get(hw, vif->addr,
1274 							 ssid->ssid,
1275 							 ssid->ssid_len, 0);
1276 		else
1277 			skb_new = ieee80211_probereq_get(hw, vif->addr, NULL, 0, 0);
1278 		if (skb_new)
1279 			rsvd_pkt->probe_req_size = (u16)skb_new->len;
1280 		break;
1281 	case RSVD_NLO_INFO:
1282 		skb_new = rtw_nlo_info_get(hw);
1283 		break;
1284 	case RSVD_CH_INFO:
1285 		skb_new = rtw_cs_channel_info_get(hw);
1286 		break;
1287 	default:
1288 		return NULL;
1289 	}
1290 
1291 	if (!skb_new)
1292 		return NULL;
1293 
1294 	return skb_new;
1295 }
1296 
rtw_fill_rsvd_page_desc(struct rtw_dev * rtwdev,struct sk_buff * skb,enum rtw_rsvd_packet_type type)1297 static void rtw_fill_rsvd_page_desc(struct rtw_dev *rtwdev, struct sk_buff *skb,
1298 				    enum rtw_rsvd_packet_type type)
1299 {
1300 	struct rtw_tx_pkt_info pkt_info = {0};
1301 	const struct rtw_chip_info *chip = rtwdev->chip;
1302 	u8 *pkt_desc;
1303 
1304 	rtw_tx_rsvd_page_pkt_info_update(rtwdev, &pkt_info, skb, type);
1305 	pkt_desc = skb_push(skb, chip->tx_pkt_desc_sz);
1306 	memset(pkt_desc, 0, chip->tx_pkt_desc_sz);
1307 	rtw_tx_fill_tx_desc(rtwdev, &pkt_info, skb);
1308 }
1309 
rtw_len_to_page(unsigned int len,u16 page_size)1310 static inline u8 rtw_len_to_page(unsigned int len, u16 page_size)
1311 {
1312 	return DIV_ROUND_UP(len, page_size);
1313 }
1314 
rtw_rsvd_page_list_to_buf(struct rtw_dev * rtwdev,u16 page_size,u16 page_margin,u32 page,u8 * buf,struct rtw_rsvd_page * rsvd_pkt)1315 static void rtw_rsvd_page_list_to_buf(struct rtw_dev *rtwdev, u16 page_size,
1316 				      u16 page_margin, u32 page, u8 *buf,
1317 				      struct rtw_rsvd_page *rsvd_pkt)
1318 {
1319 	struct sk_buff *skb = rsvd_pkt->skb;
1320 
1321 	if (page >= 1)
1322 		memcpy(buf + page_margin + page_size * (page - 1),
1323 		       skb->data, skb->len);
1324 	else
1325 		memcpy(buf, skb->data, skb->len);
1326 }
1327 
rtw_alloc_rsvd_page(struct rtw_dev * rtwdev,enum rtw_rsvd_packet_type type,bool txdesc)1328 static struct rtw_rsvd_page *rtw_alloc_rsvd_page(struct rtw_dev *rtwdev,
1329 						 enum rtw_rsvd_packet_type type,
1330 						 bool txdesc)
1331 {
1332 	struct rtw_rsvd_page *rsvd_pkt = NULL;
1333 
1334 	rsvd_pkt = kzalloc(sizeof(*rsvd_pkt), GFP_KERNEL);
1335 
1336 	if (!rsvd_pkt)
1337 		return NULL;
1338 
1339 	INIT_LIST_HEAD(&rsvd_pkt->vif_list);
1340 	INIT_LIST_HEAD(&rsvd_pkt->build_list);
1341 	rsvd_pkt->type = type;
1342 	rsvd_pkt->add_txdesc = txdesc;
1343 
1344 	return rsvd_pkt;
1345 }
1346 
rtw_insert_rsvd_page(struct rtw_dev * rtwdev,struct rtw_vif * rtwvif,struct rtw_rsvd_page * rsvd_pkt)1347 static void rtw_insert_rsvd_page(struct rtw_dev *rtwdev,
1348 				 struct rtw_vif *rtwvif,
1349 				 struct rtw_rsvd_page *rsvd_pkt)
1350 {
1351 	lockdep_assert_held(&rtwdev->mutex);
1352 
1353 	list_add_tail(&rsvd_pkt->vif_list, &rtwvif->rsvd_page_list);
1354 }
1355 
rtw_add_rsvd_page(struct rtw_dev * rtwdev,struct rtw_vif * rtwvif,enum rtw_rsvd_packet_type type,bool txdesc)1356 static void rtw_add_rsvd_page(struct rtw_dev *rtwdev,
1357 			      struct rtw_vif *rtwvif,
1358 			      enum rtw_rsvd_packet_type type,
1359 			      bool txdesc)
1360 {
1361 	struct rtw_rsvd_page *rsvd_pkt;
1362 
1363 	rsvd_pkt = rtw_alloc_rsvd_page(rtwdev, type, txdesc);
1364 	if (!rsvd_pkt) {
1365 		rtw_err(rtwdev, "failed to alloc rsvd page %d\n", type);
1366 		return;
1367 	}
1368 
1369 	rsvd_pkt->rtwvif = rtwvif;
1370 	rtw_insert_rsvd_page(rtwdev, rtwvif, rsvd_pkt);
1371 }
1372 
rtw_add_rsvd_page_probe_req(struct rtw_dev * rtwdev,struct rtw_vif * rtwvif,struct cfg80211_ssid * ssid)1373 static void rtw_add_rsvd_page_probe_req(struct rtw_dev *rtwdev,
1374 					struct rtw_vif *rtwvif,
1375 					struct cfg80211_ssid *ssid)
1376 {
1377 	struct rtw_rsvd_page *rsvd_pkt;
1378 
1379 	rsvd_pkt = rtw_alloc_rsvd_page(rtwdev, RSVD_PROBE_REQ, true);
1380 	if (!rsvd_pkt) {
1381 		rtw_err(rtwdev, "failed to alloc probe req rsvd page\n");
1382 		return;
1383 	}
1384 
1385 	rsvd_pkt->rtwvif = rtwvif;
1386 	rsvd_pkt->ssid = ssid;
1387 	rtw_insert_rsvd_page(rtwdev, rtwvif, rsvd_pkt);
1388 }
1389 
rtw_remove_rsvd_page(struct rtw_dev * rtwdev,struct rtw_vif * rtwvif)1390 void rtw_remove_rsvd_page(struct rtw_dev *rtwdev,
1391 			  struct rtw_vif *rtwvif)
1392 {
1393 	struct rtw_rsvd_page *rsvd_pkt, *tmp;
1394 
1395 	lockdep_assert_held(&rtwdev->mutex);
1396 
1397 	/* remove all of the rsvd pages for vif */
1398 	list_for_each_entry_safe(rsvd_pkt, tmp, &rtwvif->rsvd_page_list,
1399 				 vif_list) {
1400 		list_del(&rsvd_pkt->vif_list);
1401 		if (!list_empty(&rsvd_pkt->build_list))
1402 			list_del(&rsvd_pkt->build_list);
1403 		kfree(rsvd_pkt);
1404 	}
1405 }
1406 
rtw_add_rsvd_page_bcn(struct rtw_dev * rtwdev,struct rtw_vif * rtwvif)1407 void rtw_add_rsvd_page_bcn(struct rtw_dev *rtwdev,
1408 			   struct rtw_vif *rtwvif)
1409 {
1410 	struct ieee80211_vif *vif = rtwvif_to_vif(rtwvif);
1411 
1412 	if (vif->type != NL80211_IFTYPE_AP &&
1413 	    vif->type != NL80211_IFTYPE_ADHOC &&
1414 	    vif->type != NL80211_IFTYPE_MESH_POINT) {
1415 		rtw_warn(rtwdev, "Cannot add beacon rsvd page for %d\n",
1416 			 vif->type);
1417 		return;
1418 	}
1419 
1420 	rtw_add_rsvd_page(rtwdev, rtwvif, RSVD_BEACON, false);
1421 }
1422 
rtw_add_rsvd_page_pno(struct rtw_dev * rtwdev,struct rtw_vif * rtwvif)1423 void rtw_add_rsvd_page_pno(struct rtw_dev *rtwdev,
1424 			   struct rtw_vif *rtwvif)
1425 {
1426 	struct ieee80211_vif *vif = rtwvif_to_vif(rtwvif);
1427 	struct rtw_wow_param *rtw_wow = &rtwdev->wow;
1428 	struct rtw_pno_request *rtw_pno_req = &rtw_wow->pno_req;
1429 	struct cfg80211_ssid *ssid;
1430 	int i;
1431 
1432 	if (vif->type != NL80211_IFTYPE_STATION) {
1433 		rtw_warn(rtwdev, "Cannot add PNO rsvd page for %d\n",
1434 			 vif->type);
1435 		return;
1436 	}
1437 
1438 	for (i = 0 ; i < rtw_pno_req->match_set_cnt; i++) {
1439 		ssid = &rtw_pno_req->match_sets[i].ssid;
1440 		rtw_add_rsvd_page_probe_req(rtwdev, rtwvif, ssid);
1441 	}
1442 
1443 	rtw_add_rsvd_page_probe_req(rtwdev, rtwvif, NULL);
1444 	rtw_add_rsvd_page(rtwdev, rtwvif, RSVD_NLO_INFO, false);
1445 	rtw_add_rsvd_page(rtwdev, rtwvif, RSVD_CH_INFO, true);
1446 }
1447 
rtw_add_rsvd_page_sta(struct rtw_dev * rtwdev,struct rtw_vif * rtwvif)1448 void rtw_add_rsvd_page_sta(struct rtw_dev *rtwdev,
1449 			   struct rtw_vif *rtwvif)
1450 {
1451 	struct ieee80211_vif *vif = rtwvif_to_vif(rtwvif);
1452 
1453 	if (vif->type != NL80211_IFTYPE_STATION) {
1454 		rtw_warn(rtwdev, "Cannot add sta rsvd page for %d\n",
1455 			 vif->type);
1456 		return;
1457 	}
1458 
1459 	rtw_add_rsvd_page(rtwdev, rtwvif, RSVD_PS_POLL, true);
1460 	rtw_add_rsvd_page(rtwdev, rtwvif, RSVD_QOS_NULL, true);
1461 	rtw_add_rsvd_page(rtwdev, rtwvif, RSVD_NULL, true);
1462 	rtw_add_rsvd_page(rtwdev, rtwvif, RSVD_LPS_PG_DPK, true);
1463 	rtw_add_rsvd_page(rtwdev, rtwvif, RSVD_LPS_PG_INFO, true);
1464 }
1465 
rtw_fw_write_data_rsvd_page(struct rtw_dev * rtwdev,u16 pg_addr,u8 * buf,u32 size)1466 int rtw_fw_write_data_rsvd_page(struct rtw_dev *rtwdev, u16 pg_addr,
1467 				u8 *buf, u32 size)
1468 {
1469 	u8 bckp[2];
1470 	u8 val;
1471 	u16 rsvd_pg_head;
1472 	u32 bcn_valid_addr;
1473 	u32 bcn_valid_mask;
1474 	int ret;
1475 
1476 	lockdep_assert_held(&rtwdev->mutex);
1477 
1478 	if (!size)
1479 		return -EINVAL;
1480 
1481 	if (rtw_chip_wcpu_11n(rtwdev)) {
1482 		rtw_write32_set(rtwdev, REG_DWBCN0_CTRL, BIT_BCN_VALID);
1483 	} else {
1484 		pg_addr &= BIT_MASK_BCN_HEAD_1_V1;
1485 		pg_addr |= BIT_BCN_VALID_V1;
1486 		rtw_write16(rtwdev, REG_FIFOPAGE_CTRL_2, pg_addr);
1487 	}
1488 
1489 	val = rtw_read8(rtwdev, REG_CR + 1);
1490 	bckp[0] = val;
1491 	val |= BIT_ENSWBCN >> 8;
1492 	rtw_write8(rtwdev, REG_CR + 1, val);
1493 
1494 	if (rtw_hci_type(rtwdev) == RTW_HCI_TYPE_PCIE) {
1495 		val = rtw_read8(rtwdev, REG_FWHW_TXQ_CTRL + 2);
1496 		bckp[1] = val;
1497 		val &= ~(BIT_EN_BCNQ_DL >> 16);
1498 		rtw_write8(rtwdev, REG_FWHW_TXQ_CTRL + 2, val);
1499 	}
1500 
1501 	ret = rtw_hci_write_data_rsvd_page(rtwdev, buf, size);
1502 	if (ret) {
1503 		rtw_err(rtwdev, "failed to write data to rsvd page\n");
1504 		goto restore;
1505 	}
1506 
1507 	if (rtw_chip_wcpu_11n(rtwdev)) {
1508 		bcn_valid_addr = REG_DWBCN0_CTRL;
1509 		bcn_valid_mask = BIT_BCN_VALID;
1510 	} else {
1511 		bcn_valid_addr = REG_FIFOPAGE_CTRL_2;
1512 		bcn_valid_mask = BIT_BCN_VALID_V1;
1513 	}
1514 
1515 	if (!check_hw_ready(rtwdev, bcn_valid_addr, bcn_valid_mask, 1)) {
1516 		rtw_err(rtwdev, "error beacon valid\n");
1517 		ret = -EBUSY;
1518 	}
1519 
1520 restore:
1521 	rsvd_pg_head = rtwdev->fifo.rsvd_boundary;
1522 	rtw_write16(rtwdev, REG_FIFOPAGE_CTRL_2,
1523 		    rsvd_pg_head | BIT_BCN_VALID_V1);
1524 	if (rtw_hci_type(rtwdev) == RTW_HCI_TYPE_PCIE)
1525 		rtw_write8(rtwdev, REG_FWHW_TXQ_CTRL + 2, bckp[1]);
1526 	rtw_write8(rtwdev, REG_CR + 1, bckp[0]);
1527 
1528 	return ret;
1529 }
1530 
rtw_download_drv_rsvd_page(struct rtw_dev * rtwdev,u8 * buf,u32 size)1531 static int rtw_download_drv_rsvd_page(struct rtw_dev *rtwdev, u8 *buf, u32 size)
1532 {
1533 	u32 pg_size;
1534 	u32 pg_num = 0;
1535 	u16 pg_addr = 0;
1536 
1537 	pg_size = rtwdev->chip->page_size;
1538 	pg_num = size / pg_size + ((size & (pg_size - 1)) ? 1 : 0);
1539 	if (pg_num > rtwdev->fifo.rsvd_drv_pg_num)
1540 		return -ENOMEM;
1541 
1542 	pg_addr = rtwdev->fifo.rsvd_drv_addr;
1543 
1544 	return rtw_fw_write_data_rsvd_page(rtwdev, pg_addr, buf, size);
1545 }
1546 
__rtw_build_rsvd_page_reset(struct rtw_dev * rtwdev)1547 static void __rtw_build_rsvd_page_reset(struct rtw_dev *rtwdev)
1548 {
1549 	struct rtw_rsvd_page *rsvd_pkt, *tmp;
1550 
1551 	list_for_each_entry_safe(rsvd_pkt, tmp, &rtwdev->rsvd_page_list,
1552 				 build_list) {
1553 		list_del_init(&rsvd_pkt->build_list);
1554 
1555 		/* Don't free except for the dummy rsvd page,
1556 		 * others will be freed when removing vif
1557 		 */
1558 		if (rsvd_pkt->type == RSVD_DUMMY)
1559 			kfree(rsvd_pkt);
1560 	}
1561 }
1562 
rtw_build_rsvd_page_iter(void * data,u8 * mac,struct ieee80211_vif * vif)1563 static void rtw_build_rsvd_page_iter(void *data, u8 *mac,
1564 				     struct ieee80211_vif *vif)
1565 {
1566 	struct rtw_dev *rtwdev = data;
1567 	struct rtw_vif *rtwvif = (struct rtw_vif *)vif->drv_priv;
1568 	struct rtw_rsvd_page *rsvd_pkt;
1569 
1570 	/* AP not yet started, don't gather its rsvd pages */
1571 	if (vif->type == NL80211_IFTYPE_AP && !rtwdev->ap_active)
1572 		return;
1573 
1574 	list_for_each_entry(rsvd_pkt, &rtwvif->rsvd_page_list, vif_list) {
1575 		if (rsvd_pkt->type == RSVD_BEACON)
1576 			list_add(&rsvd_pkt->build_list,
1577 				 &rtwdev->rsvd_page_list);
1578 		else
1579 			list_add_tail(&rsvd_pkt->build_list,
1580 				      &rtwdev->rsvd_page_list);
1581 	}
1582 }
1583 
__rtw_build_rsvd_page_from_vifs(struct rtw_dev * rtwdev)1584 static int  __rtw_build_rsvd_page_from_vifs(struct rtw_dev *rtwdev)
1585 {
1586 	struct rtw_rsvd_page *rsvd_pkt;
1587 
1588 	__rtw_build_rsvd_page_reset(rtwdev);
1589 
1590 	/* gather rsvd page from vifs */
1591 	rtw_iterate_vifs_atomic(rtwdev, rtw_build_rsvd_page_iter, rtwdev);
1592 
1593 	rsvd_pkt = list_first_entry_or_null(&rtwdev->rsvd_page_list,
1594 					    struct rtw_rsvd_page, build_list);
1595 	if (!rsvd_pkt) {
1596 		WARN(1, "Should not have an empty reserved page\n");
1597 		return -EINVAL;
1598 	}
1599 
1600 	/* the first rsvd should be beacon, otherwise add a dummy one */
1601 	if (rsvd_pkt->type != RSVD_BEACON) {
1602 		struct rtw_rsvd_page *dummy_pkt;
1603 
1604 		dummy_pkt = rtw_alloc_rsvd_page(rtwdev, RSVD_DUMMY, false);
1605 		if (!dummy_pkt) {
1606 			rtw_err(rtwdev, "failed to alloc dummy rsvd page\n");
1607 			return -ENOMEM;
1608 		}
1609 
1610 		list_add(&dummy_pkt->build_list, &rtwdev->rsvd_page_list);
1611 	}
1612 
1613 	return 0;
1614 }
1615 
rtw_build_rsvd_page(struct rtw_dev * rtwdev,u32 * size)1616 static u8 *rtw_build_rsvd_page(struct rtw_dev *rtwdev, u32 *size)
1617 {
1618 	const struct rtw_chip_info *chip = rtwdev->chip;
1619 	struct ieee80211_hw *hw = rtwdev->hw;
1620 	struct rtw_rsvd_page *rsvd_pkt;
1621 	struct sk_buff *iter;
1622 	u16 page_size, page_margin, tx_desc_sz;
1623 	u8 total_page = 0;
1624 	u32 page = 0;
1625 	u8 *buf;
1626 	int ret;
1627 
1628 	page_size = chip->page_size;
1629 	tx_desc_sz = chip->tx_pkt_desc_sz;
1630 	page_margin = page_size - tx_desc_sz;
1631 
1632 	ret = __rtw_build_rsvd_page_from_vifs(rtwdev);
1633 	if (ret) {
1634 		rtw_err(rtwdev,
1635 			"failed to build rsvd page from vifs, ret %d\n", ret);
1636 		return NULL;
1637 	}
1638 
1639 	list_for_each_entry(rsvd_pkt, &rtwdev->rsvd_page_list, build_list) {
1640 		iter = rtw_get_rsvd_page_skb(hw, rsvd_pkt);
1641 		if (!iter) {
1642 			rtw_err(rtwdev, "failed to build rsvd packet\n");
1643 			goto release_skb;
1644 		}
1645 
1646 		/* Fill the tx_desc for the rsvd pkt that requires one.
1647 		 * And iter->len will be added with size of tx_desc_sz.
1648 		 */
1649 		if (rsvd_pkt->add_txdesc)
1650 			rtw_fill_rsvd_page_desc(rtwdev, iter, rsvd_pkt->type);
1651 
1652 		rsvd_pkt->skb = iter;
1653 		rsvd_pkt->page = total_page;
1654 
1655 		/* Reserved page is downloaded via TX path, and TX path will
1656 		 * generate a tx_desc at the header to describe length of
1657 		 * the buffer. If we are not counting page numbers with the
1658 		 * size of tx_desc added at the first rsvd_pkt (usually a
1659 		 * beacon, firmware default refer to the first page as the
1660 		 * content of beacon), we could generate a buffer which size
1661 		 * is smaller than the actual size of the whole rsvd_page
1662 		 */
1663 		if (total_page == 0) {
1664 			if (rsvd_pkt->type != RSVD_BEACON &&
1665 			    rsvd_pkt->type != RSVD_DUMMY) {
1666 				rtw_err(rtwdev, "first page should be a beacon\n");
1667 				goto release_skb;
1668 			}
1669 			total_page += rtw_len_to_page(iter->len + tx_desc_sz,
1670 						      page_size);
1671 		} else {
1672 			total_page += rtw_len_to_page(iter->len, page_size);
1673 		}
1674 	}
1675 
1676 	if (total_page > rtwdev->fifo.rsvd_drv_pg_num) {
1677 		rtw_err(rtwdev, "rsvd page over size: %d\n", total_page);
1678 		goto release_skb;
1679 	}
1680 
1681 	*size = (total_page - 1) * page_size + page_margin;
1682 	buf = kzalloc(*size, GFP_KERNEL);
1683 	if (!buf)
1684 		goto release_skb;
1685 
1686 	/* Copy the content of each rsvd_pkt to the buf, and they should
1687 	 * be aligned to the pages.
1688 	 *
1689 	 * Note that the first rsvd_pkt is a beacon no matter what vif->type.
1690 	 * And that rsvd_pkt does not require tx_desc because when it goes
1691 	 * through TX path, the TX path will generate one for it.
1692 	 */
1693 	list_for_each_entry(rsvd_pkt, &rtwdev->rsvd_page_list, build_list) {
1694 		rtw_rsvd_page_list_to_buf(rtwdev, page_size, page_margin,
1695 					  page, buf, rsvd_pkt);
1696 		if (page == 0)
1697 			page += rtw_len_to_page(rsvd_pkt->skb->len +
1698 						tx_desc_sz, page_size);
1699 		else
1700 			page += rtw_len_to_page(rsvd_pkt->skb->len, page_size);
1701 
1702 		kfree_skb(rsvd_pkt->skb);
1703 		rsvd_pkt->skb = NULL;
1704 	}
1705 
1706 	return buf;
1707 
1708 release_skb:
1709 	list_for_each_entry(rsvd_pkt, &rtwdev->rsvd_page_list, build_list) {
1710 		kfree_skb(rsvd_pkt->skb);
1711 		rsvd_pkt->skb = NULL;
1712 	}
1713 
1714 	return NULL;
1715 }
1716 
rtw_download_beacon(struct rtw_dev * rtwdev)1717 static int rtw_download_beacon(struct rtw_dev *rtwdev)
1718 {
1719 	struct ieee80211_hw *hw = rtwdev->hw;
1720 	struct rtw_rsvd_page *rsvd_pkt;
1721 	struct sk_buff *skb;
1722 	int ret = 0;
1723 
1724 	rsvd_pkt = list_first_entry_or_null(&rtwdev->rsvd_page_list,
1725 					    struct rtw_rsvd_page, build_list);
1726 	if (!rsvd_pkt) {
1727 		rtw_err(rtwdev, "failed to get rsvd page from build list\n");
1728 		return -ENOENT;
1729 	}
1730 
1731 	if (rsvd_pkt->type != RSVD_BEACON &&
1732 	    rsvd_pkt->type != RSVD_DUMMY) {
1733 		rtw_err(rtwdev, "invalid rsvd page type %d, should be beacon or dummy\n",
1734 			rsvd_pkt->type);
1735 		return -EINVAL;
1736 	}
1737 
1738 	skb = rtw_get_rsvd_page_skb(hw, rsvd_pkt);
1739 	if (!skb) {
1740 		rtw_err(rtwdev, "failed to get beacon skb\n");
1741 		return -ENOMEM;
1742 	}
1743 
1744 	ret = rtw_download_drv_rsvd_page(rtwdev, skb->data, skb->len);
1745 	if (ret)
1746 		rtw_err(rtwdev, "failed to download drv rsvd page\n");
1747 
1748 	dev_kfree_skb(skb);
1749 
1750 	return ret;
1751 }
1752 
rtw_fw_download_rsvd_page(struct rtw_dev * rtwdev)1753 int rtw_fw_download_rsvd_page(struct rtw_dev *rtwdev)
1754 {
1755 	u8 *buf;
1756 	u32 size;
1757 	int ret;
1758 
1759 	buf = rtw_build_rsvd_page(rtwdev, &size);
1760 	if (!buf) {
1761 		rtw_err(rtwdev, "failed to build rsvd page pkt\n");
1762 		return -ENOMEM;
1763 	}
1764 
1765 	ret = rtw_download_drv_rsvd_page(rtwdev, buf, size);
1766 	if (ret) {
1767 		rtw_err(rtwdev, "failed to download drv rsvd page\n");
1768 		goto free;
1769 	}
1770 
1771 	/* The last thing is to download the *ONLY* beacon again, because
1772 	 * the previous tx_desc is to describe the total rsvd page. Download
1773 	 * the beacon again to replace the TX desc header, and we will get
1774 	 * a correct tx_desc for the beacon in the rsvd page.
1775 	 */
1776 	ret = rtw_download_beacon(rtwdev);
1777 	if (ret) {
1778 		rtw_err(rtwdev, "failed to download beacon\n");
1779 		goto free;
1780 	}
1781 
1782 free:
1783 	kfree(buf);
1784 
1785 	return ret;
1786 }
1787 
rtw_fw_update_beacon_work(struct work_struct * work)1788 void rtw_fw_update_beacon_work(struct work_struct *work)
1789 {
1790 	struct rtw_dev *rtwdev = container_of(work, struct rtw_dev,
1791 					      update_beacon_work);
1792 
1793 	mutex_lock(&rtwdev->mutex);
1794 	rtw_fw_download_rsvd_page(rtwdev);
1795 	rtw_send_rsvd_page_h2c(rtwdev);
1796 	mutex_unlock(&rtwdev->mutex);
1797 }
1798 
rtw_fw_read_fifo_page(struct rtw_dev * rtwdev,u32 offset,u32 size,u32 * buf,u32 residue,u16 start_pg)1799 static void rtw_fw_read_fifo_page(struct rtw_dev *rtwdev, u32 offset, u32 size,
1800 				  u32 *buf, u32 residue, u16 start_pg)
1801 {
1802 	u32 i;
1803 	u16 idx = 0;
1804 	u16 ctl;
1805 
1806 	ctl = rtw_read16(rtwdev, REG_PKTBUF_DBG_CTRL) & 0xf000;
1807 	/* disable rx clock gate */
1808 	rtw_write32_set(rtwdev, REG_RCR, BIT_DISGCLK);
1809 
1810 	do {
1811 		rtw_write16(rtwdev, REG_PKTBUF_DBG_CTRL, start_pg | ctl);
1812 
1813 		for (i = FIFO_DUMP_ADDR + residue;
1814 		     i < FIFO_DUMP_ADDR + FIFO_PAGE_SIZE; i += 4) {
1815 			buf[idx++] = rtw_read32(rtwdev, i);
1816 			size -= 4;
1817 			if (size == 0)
1818 				goto out;
1819 		}
1820 
1821 		residue = 0;
1822 		start_pg++;
1823 	} while (size);
1824 
1825 out:
1826 	rtw_write16(rtwdev, REG_PKTBUF_DBG_CTRL, ctl);
1827 	/* restore rx clock gate */
1828 	rtw_write32_clr(rtwdev, REG_RCR, BIT_DISGCLK);
1829 }
1830 
rtw_fw_read_fifo(struct rtw_dev * rtwdev,enum rtw_fw_fifo_sel sel,u32 offset,u32 size,u32 * buf)1831 static void rtw_fw_read_fifo(struct rtw_dev *rtwdev, enum rtw_fw_fifo_sel sel,
1832 			     u32 offset, u32 size, u32 *buf)
1833 {
1834 	const struct rtw_chip_info *chip = rtwdev->chip;
1835 	u32 start_pg, residue;
1836 
1837 	if (sel >= RTW_FW_FIFO_MAX) {
1838 		rtw_dbg(rtwdev, RTW_DBG_FW, "wrong fw fifo sel\n");
1839 		return;
1840 	}
1841 	if (sel == RTW_FW_FIFO_SEL_RSVD_PAGE)
1842 		offset += rtwdev->fifo.rsvd_boundary << TX_PAGE_SIZE_SHIFT;
1843 	residue = offset & (FIFO_PAGE_SIZE - 1);
1844 	start_pg = (offset >> FIFO_PAGE_SIZE_SHIFT) + chip->fw_fifo_addr[sel];
1845 
1846 	rtw_fw_read_fifo_page(rtwdev, offset, size, buf, residue, start_pg);
1847 }
1848 
rtw_fw_dump_check_size(struct rtw_dev * rtwdev,enum rtw_fw_fifo_sel sel,u32 start_addr,u32 size)1849 static bool rtw_fw_dump_check_size(struct rtw_dev *rtwdev,
1850 				   enum rtw_fw_fifo_sel sel,
1851 				   u32 start_addr, u32 size)
1852 {
1853 	switch (sel) {
1854 	case RTW_FW_FIFO_SEL_TX:
1855 	case RTW_FW_FIFO_SEL_RX:
1856 		if ((start_addr + size) > rtwdev->chip->fw_fifo_addr[sel])
1857 			return false;
1858 		fallthrough;
1859 	default:
1860 		return true;
1861 	}
1862 }
1863 
rtw_fw_dump_fifo(struct rtw_dev * rtwdev,u8 fifo_sel,u32 addr,u32 size,u32 * buffer)1864 int rtw_fw_dump_fifo(struct rtw_dev *rtwdev, u8 fifo_sel, u32 addr, u32 size,
1865 		     u32 *buffer)
1866 {
1867 	if (!rtwdev->chip->fw_fifo_addr[0]) {
1868 		rtw_dbg(rtwdev, RTW_DBG_FW, "chip not support dump fw fifo\n");
1869 		return -ENOTSUPP;
1870 	}
1871 
1872 	if (size == 0 || !buffer)
1873 		return -EINVAL;
1874 
1875 	if (size & 0x3) {
1876 		rtw_dbg(rtwdev, RTW_DBG_FW, "not 4byte alignment\n");
1877 		return -EINVAL;
1878 	}
1879 
1880 	if (!rtw_fw_dump_check_size(rtwdev, fifo_sel, addr, size)) {
1881 		rtw_dbg(rtwdev, RTW_DBG_FW, "fw fifo dump size overflow\n");
1882 		return -EINVAL;
1883 	}
1884 
1885 	rtw_fw_read_fifo(rtwdev, fifo_sel, addr, size, buffer);
1886 
1887 	return 0;
1888 }
1889 
__rtw_fw_update_pkt(struct rtw_dev * rtwdev,u8 pkt_id,u16 size,u8 location)1890 static void __rtw_fw_update_pkt(struct rtw_dev *rtwdev, u8 pkt_id, u16 size,
1891 				u8 location)
1892 {
1893 	const struct rtw_chip_info *chip = rtwdev->chip;
1894 	u8 h2c_pkt[H2C_PKT_SIZE] = {0};
1895 	u16 total_size = H2C_PKT_HDR_SIZE + H2C_PKT_UPDATE_PKT_LEN;
1896 
1897 	rtw_h2c_pkt_set_header(h2c_pkt, H2C_PKT_UPDATE_PKT);
1898 
1899 	SET_PKT_H2C_TOTAL_LEN(h2c_pkt, total_size);
1900 	UPDATE_PKT_SET_PKT_ID(h2c_pkt, pkt_id);
1901 	UPDATE_PKT_SET_LOCATION(h2c_pkt, location);
1902 
1903 	/* include txdesc size */
1904 	size += chip->tx_pkt_desc_sz;
1905 	UPDATE_PKT_SET_SIZE(h2c_pkt, size);
1906 
1907 	rtw_fw_send_h2c_packet(rtwdev, h2c_pkt);
1908 }
1909 
rtw_fw_update_pkt_probe_req(struct rtw_dev * rtwdev,struct cfg80211_ssid * ssid)1910 void rtw_fw_update_pkt_probe_req(struct rtw_dev *rtwdev,
1911 				 struct cfg80211_ssid *ssid)
1912 {
1913 	u8 loc;
1914 	u16 size;
1915 
1916 	loc = rtw_get_rsvd_page_probe_req_location(rtwdev, ssid);
1917 	if (!loc) {
1918 		rtw_err(rtwdev, "failed to get probe_req rsvd loc\n");
1919 		return;
1920 	}
1921 
1922 	size = rtw_get_rsvd_page_probe_req_size(rtwdev, ssid);
1923 	if (!size) {
1924 		rtw_err(rtwdev, "failed to get probe_req rsvd size\n");
1925 		return;
1926 	}
1927 
1928 	__rtw_fw_update_pkt(rtwdev, RTW_PACKET_PROBE_REQ, size, loc);
1929 }
1930 
rtw_fw_channel_switch(struct rtw_dev * rtwdev,bool enable)1931 void rtw_fw_channel_switch(struct rtw_dev *rtwdev, bool enable)
1932 {
1933 	struct rtw_pno_request *rtw_pno_req = &rtwdev->wow.pno_req;
1934 	u8 h2c_pkt[H2C_PKT_SIZE] = {0};
1935 	u16 total_size = H2C_PKT_HDR_SIZE + H2C_PKT_CH_SWITCH_LEN;
1936 	u8 loc_ch_info;
1937 	const struct rtw_ch_switch_option cs_option = {
1938 		.dest_ch_en = 1,
1939 		.dest_ch = 1,
1940 		.periodic_option = 2,
1941 		.normal_period = 5,
1942 		.normal_period_sel = 0,
1943 		.normal_cycle = 10,
1944 		.slow_period = 1,
1945 		.slow_period_sel = 1,
1946 	};
1947 
1948 	rtw_h2c_pkt_set_header(h2c_pkt, H2C_PKT_CH_SWITCH);
1949 	SET_PKT_H2C_TOTAL_LEN(h2c_pkt, total_size);
1950 
1951 	CH_SWITCH_SET_START(h2c_pkt, enable);
1952 	CH_SWITCH_SET_DEST_CH_EN(h2c_pkt, cs_option.dest_ch_en);
1953 	CH_SWITCH_SET_DEST_CH(h2c_pkt, cs_option.dest_ch);
1954 	CH_SWITCH_SET_NORMAL_PERIOD(h2c_pkt, cs_option.normal_period);
1955 	CH_SWITCH_SET_NORMAL_PERIOD_SEL(h2c_pkt, cs_option.normal_period_sel);
1956 	CH_SWITCH_SET_SLOW_PERIOD(h2c_pkt, cs_option.slow_period);
1957 	CH_SWITCH_SET_SLOW_PERIOD_SEL(h2c_pkt, cs_option.slow_period_sel);
1958 	CH_SWITCH_SET_NORMAL_CYCLE(h2c_pkt, cs_option.normal_cycle);
1959 	CH_SWITCH_SET_PERIODIC_OPT(h2c_pkt, cs_option.periodic_option);
1960 
1961 	CH_SWITCH_SET_CH_NUM(h2c_pkt, rtw_pno_req->channel_cnt);
1962 	CH_SWITCH_SET_INFO_SIZE(h2c_pkt, rtw_pno_req->channel_cnt * 4);
1963 
1964 	loc_ch_info = rtw_get_rsvd_page_location(rtwdev, RSVD_CH_INFO);
1965 	CH_SWITCH_SET_INFO_LOC(h2c_pkt, loc_ch_info);
1966 
1967 	rtw_fw_send_h2c_packet(rtwdev, h2c_pkt);
1968 }
1969 
rtw_fw_adaptivity(struct rtw_dev * rtwdev)1970 void rtw_fw_adaptivity(struct rtw_dev *rtwdev)
1971 {
1972 	struct rtw_dm_info *dm_info = &rtwdev->dm_info;
1973 	u8 h2c_pkt[H2C_PKT_SIZE] = {0};
1974 
1975 	if (!rtw_edcca_enabled) {
1976 		dm_info->edcca_mode = RTW_EDCCA_NORMAL;
1977 		rtw_dbg(rtwdev, RTW_DBG_ADAPTIVITY,
1978 			"EDCCA disabled by debugfs\n");
1979 	}
1980 
1981 	SET_H2C_CMD_ID_CLASS(h2c_pkt, H2C_CMD_ADAPTIVITY);
1982 	SET_ADAPTIVITY_MODE(h2c_pkt, dm_info->edcca_mode);
1983 	SET_ADAPTIVITY_OPTION(h2c_pkt, 1);
1984 	SET_ADAPTIVITY_IGI(h2c_pkt, dm_info->igi_history[0]);
1985 	SET_ADAPTIVITY_L2H(h2c_pkt, dm_info->l2h_th_ini);
1986 	SET_ADAPTIVITY_DENSITY(h2c_pkt, dm_info->scan_density);
1987 
1988 	rtw_fw_send_h2c_command(rtwdev, h2c_pkt);
1989 }
1990 
rtw_fw_scan_notify(struct rtw_dev * rtwdev,bool start)1991 void rtw_fw_scan_notify(struct rtw_dev *rtwdev, bool start)
1992 {
1993 	u8 h2c_pkt[H2C_PKT_SIZE] = {0};
1994 
1995 	SET_H2C_CMD_ID_CLASS(h2c_pkt, H2C_CMD_SCAN);
1996 	SET_SCAN_START(h2c_pkt, start);
1997 
1998 	rtw_fw_send_h2c_command(rtwdev, h2c_pkt);
1999 }
2000 
rtw_append_probe_req_ie(struct rtw_dev * rtwdev,struct sk_buff * skb,struct sk_buff_head * list,u8 * bands,struct rtw_vif * rtwvif)2001 static int rtw_append_probe_req_ie(struct rtw_dev *rtwdev, struct sk_buff *skb,
2002 				   struct sk_buff_head *list, u8 *bands,
2003 				   struct rtw_vif *rtwvif)
2004 {
2005 	const struct rtw_chip_info *chip = rtwdev->chip;
2006 	struct ieee80211_scan_ies *ies = rtwvif->scan_ies;
2007 	struct sk_buff *new;
2008 	u8 idx;
2009 
2010 	for (idx = NL80211_BAND_2GHZ; idx < NUM_NL80211_BANDS; idx++) {
2011 		if (!(BIT(idx) & chip->band))
2012 			continue;
2013 		new = skb_copy(skb, GFP_KERNEL);
2014 		if (!new)
2015 			return -ENOMEM;
2016 		skb_put_data(new, ies->ies[idx], ies->len[idx]);
2017 		skb_put_data(new, ies->common_ies, ies->common_ie_len);
2018 		skb_queue_tail(list, new);
2019 		(*bands)++;
2020 	}
2021 
2022 	return 0;
2023 }
2024 
_rtw_hw_scan_update_probe_req(struct rtw_dev * rtwdev,u8 num_probes,struct sk_buff_head * probe_req_list)2025 static int _rtw_hw_scan_update_probe_req(struct rtw_dev *rtwdev, u8 num_probes,
2026 					 struct sk_buff_head *probe_req_list)
2027 {
2028 	const struct rtw_chip_info *chip = rtwdev->chip;
2029 	struct sk_buff *skb, *tmp;
2030 	u16 pg_addr = rtwdev->fifo.rsvd_h2c_info_addr, loc;
2031 	u8 tx_desc_sz = chip->tx_pkt_desc_sz;
2032 	u16 page_size = chip->page_size;
2033 	u8 page_offset = 1, *buf;
2034 	u16 buf_offset = page_size * page_offset;
2035 	unsigned int pkt_len;
2036 	u8 page_cnt, pages;
2037 	int ret;
2038 
2039 	if (rtw_fw_feature_ext_check(&rtwdev->fw, FW_FEATURE_EXT_OLD_PAGE_NUM))
2040 		page_cnt = RTW_OLD_PROBE_PG_CNT;
2041 	else
2042 		page_cnt = RTW_PROBE_PG_CNT;
2043 
2044 	pages = page_offset + num_probes * page_cnt;
2045 
2046 	buf = kzalloc(page_size * pages, GFP_KERNEL);
2047 	if (!buf)
2048 		return -ENOMEM;
2049 
2050 	buf_offset -= tx_desc_sz;
2051 	skb_queue_walk_safe(probe_req_list, skb, tmp) {
2052 		skb_unlink(skb, probe_req_list);
2053 		rtw_fill_rsvd_page_desc(rtwdev, skb, RSVD_PROBE_REQ);
2054 		if (skb->len > page_size * page_cnt) {
2055 			ret = -EINVAL;
2056 			goto out;
2057 		}
2058 
2059 		memcpy(buf + buf_offset, skb->data, skb->len);
2060 		pkt_len = skb->len - tx_desc_sz;
2061 		loc = pg_addr - rtwdev->fifo.rsvd_boundary + page_offset;
2062 		__rtw_fw_update_pkt(rtwdev, RTW_PACKET_PROBE_REQ, pkt_len, loc);
2063 
2064 		buf_offset += page_cnt * page_size;
2065 		page_offset += page_cnt;
2066 		kfree_skb(skb);
2067 	}
2068 
2069 	ret = rtw_fw_write_data_rsvd_page(rtwdev, pg_addr, buf, buf_offset);
2070 	if (ret) {
2071 		rtw_err(rtwdev, "Download probe request to firmware failed\n");
2072 		goto out;
2073 	}
2074 
2075 	rtwdev->scan_info.probe_pg_size = page_offset;
2076 out:
2077 	kfree(buf);
2078 	skb_queue_walk_safe(probe_req_list, skb, tmp)
2079 		kfree_skb(skb);
2080 
2081 	return ret;
2082 }
2083 
rtw_hw_scan_update_probe_req(struct rtw_dev * rtwdev,struct rtw_vif * rtwvif)2084 static int rtw_hw_scan_update_probe_req(struct rtw_dev *rtwdev,
2085 					struct rtw_vif *rtwvif)
2086 {
2087 	struct cfg80211_scan_request *req = rtwvif->scan_req;
2088 	struct sk_buff_head list;
2089 	struct sk_buff *skb, *tmp;
2090 	u8 num = req->n_ssids, i, bands = 0;
2091 	int ret;
2092 
2093 	skb_queue_head_init(&list);
2094 	for (i = 0; i < num; i++) {
2095 		skb = ieee80211_probereq_get(rtwdev->hw, rtwvif->mac_addr,
2096 					     req->ssids[i].ssid,
2097 					     req->ssids[i].ssid_len,
2098 					     req->ie_len);
2099 		if (!skb) {
2100 			ret = -ENOMEM;
2101 			goto out;
2102 		}
2103 		ret = rtw_append_probe_req_ie(rtwdev, skb, &list, &bands,
2104 					      rtwvif);
2105 		if (ret)
2106 			goto out;
2107 
2108 		kfree_skb(skb);
2109 	}
2110 
2111 	return _rtw_hw_scan_update_probe_req(rtwdev, num * bands, &list);
2112 
2113 out:
2114 	skb_queue_walk_safe(&list, skb, tmp)
2115 		kfree_skb(skb);
2116 
2117 	return ret;
2118 }
2119 
rtw_add_chan_info(struct rtw_dev * rtwdev,struct rtw_chan_info * info,struct rtw_chan_list * list,u8 * buf)2120 static int rtw_add_chan_info(struct rtw_dev *rtwdev, struct rtw_chan_info *info,
2121 			     struct rtw_chan_list *list, u8 *buf)
2122 {
2123 	u8 *chan = &buf[list->size];
2124 	u8 info_size = RTW_CH_INFO_SIZE;
2125 
2126 	if (list->size > list->buf_size)
2127 		return -ENOMEM;
2128 
2129 	CH_INFO_SET_CH(chan, info->channel);
2130 	CH_INFO_SET_PRI_CH_IDX(chan, info->pri_ch_idx);
2131 	CH_INFO_SET_BW(chan, info->bw);
2132 	CH_INFO_SET_TIMEOUT(chan, info->timeout);
2133 	CH_INFO_SET_ACTION_ID(chan, info->action_id);
2134 	CH_INFO_SET_EXTRA_INFO(chan, info->extra_info);
2135 	if (info->extra_info) {
2136 		EXTRA_CH_INFO_SET_ID(chan, RTW_SCAN_EXTRA_ID_DFS);
2137 		EXTRA_CH_INFO_SET_INFO(chan, RTW_SCAN_EXTRA_ACTION_SCAN);
2138 		EXTRA_CH_INFO_SET_SIZE(chan, RTW_EX_CH_INFO_SIZE -
2139 				       RTW_EX_CH_INFO_HDR_SIZE);
2140 		EXTRA_CH_INFO_SET_DFS_EXT_TIME(chan, RTW_DFS_CHAN_TIME);
2141 		info_size += RTW_EX_CH_INFO_SIZE;
2142 	}
2143 	list->size += info_size;
2144 	list->ch_num++;
2145 
2146 	return 0;
2147 }
2148 
rtw_add_chan_list(struct rtw_dev * rtwdev,struct rtw_vif * rtwvif,struct rtw_chan_list * list,u8 * buf)2149 static int rtw_add_chan_list(struct rtw_dev *rtwdev, struct rtw_vif *rtwvif,
2150 			     struct rtw_chan_list *list, u8 *buf)
2151 {
2152 	struct cfg80211_scan_request *req = rtwvif->scan_req;
2153 	struct rtw_fifo_conf *fifo = &rtwdev->fifo;
2154 	struct ieee80211_channel *channel;
2155 	int i, ret = 0;
2156 
2157 	for (i = 0; i < req->n_channels; i++) {
2158 		struct rtw_chan_info ch_info = {0};
2159 
2160 		channel = req->channels[i];
2161 		ch_info.channel = channel->hw_value;
2162 		ch_info.bw = RTW_SCAN_WIDTH;
2163 		ch_info.pri_ch_idx = RTW_PRI_CH_IDX;
2164 		ch_info.timeout = req->duration_mandatory ?
2165 				  req->duration : RTW_CHANNEL_TIME;
2166 
2167 		if (channel->flags & (IEEE80211_CHAN_RADAR | IEEE80211_CHAN_NO_IR)) {
2168 			ch_info.action_id = RTW_CHANNEL_RADAR;
2169 			ch_info.extra_info = 1;
2170 			/* Overwrite duration for passive scans if necessary */
2171 			ch_info.timeout = ch_info.timeout > RTW_PASS_CHAN_TIME ?
2172 					  ch_info.timeout : RTW_PASS_CHAN_TIME;
2173 		} else {
2174 			ch_info.action_id = RTW_CHANNEL_ACTIVE;
2175 		}
2176 
2177 		ret = rtw_add_chan_info(rtwdev, &ch_info, list, buf);
2178 		if (ret)
2179 			return ret;
2180 	}
2181 
2182 	if (list->size > fifo->rsvd_pg_num << TX_PAGE_SIZE_SHIFT) {
2183 		rtw_err(rtwdev, "List exceeds rsvd page total size\n");
2184 		return -EINVAL;
2185 	}
2186 
2187 	list->addr = fifo->rsvd_h2c_info_addr + rtwdev->scan_info.probe_pg_size;
2188 	ret = rtw_fw_write_data_rsvd_page(rtwdev, list->addr, buf, list->size);
2189 	if (ret)
2190 		rtw_err(rtwdev, "Download channel list failed\n");
2191 
2192 	return ret;
2193 }
2194 
rtw_fw_set_scan_offload(struct rtw_dev * rtwdev,struct rtw_ch_switch_option * opt,struct rtw_vif * rtwvif,struct rtw_chan_list * list)2195 static void rtw_fw_set_scan_offload(struct rtw_dev *rtwdev,
2196 				    struct rtw_ch_switch_option *opt,
2197 				    struct rtw_vif *rtwvif,
2198 				    struct rtw_chan_list *list)
2199 {
2200 	struct rtw_hw_scan_info *scan_info = &rtwdev->scan_info;
2201 	struct cfg80211_scan_request *req = rtwvif->scan_req;
2202 	struct rtw_fifo_conf *fifo = &rtwdev->fifo;
2203 	/* reserve one dummy page at the beginning for tx descriptor */
2204 	u8 pkt_loc = fifo->rsvd_h2c_info_addr - fifo->rsvd_boundary + 1;
2205 	bool random_seq = req->flags & NL80211_SCAN_FLAG_RANDOM_SN;
2206 	u8 h2c_pkt[H2C_PKT_SIZE] = {0};
2207 
2208 	rtw_h2c_pkt_set_header(h2c_pkt, H2C_PKT_SCAN_OFFLOAD);
2209 	SET_PKT_H2C_TOTAL_LEN(h2c_pkt, H2C_PKT_CH_SWITCH_LEN);
2210 
2211 	SCAN_OFFLOAD_SET_START(h2c_pkt, opt->switch_en);
2212 	SCAN_OFFLOAD_SET_BACK_OP_EN(h2c_pkt, opt->back_op_en);
2213 	SCAN_OFFLOAD_SET_RANDOM_SEQ_EN(h2c_pkt, random_seq);
2214 	SCAN_OFFLOAD_SET_NO_CCK_EN(h2c_pkt, req->no_cck);
2215 	SCAN_OFFLOAD_SET_CH_NUM(h2c_pkt, list->ch_num);
2216 	SCAN_OFFLOAD_SET_CH_INFO_SIZE(h2c_pkt, list->size);
2217 	SCAN_OFFLOAD_SET_CH_INFO_LOC(h2c_pkt, list->addr - fifo->rsvd_boundary);
2218 	SCAN_OFFLOAD_SET_OP_CH(h2c_pkt, scan_info->op_chan);
2219 	SCAN_OFFLOAD_SET_OP_PRI_CH_IDX(h2c_pkt, scan_info->op_pri_ch_idx);
2220 	SCAN_OFFLOAD_SET_OP_BW(h2c_pkt, scan_info->op_bw);
2221 	SCAN_OFFLOAD_SET_OP_PORT_ID(h2c_pkt, rtwvif->port);
2222 	SCAN_OFFLOAD_SET_OP_DWELL_TIME(h2c_pkt, req->duration_mandatory ?
2223 				       req->duration : RTW_CHANNEL_TIME);
2224 	SCAN_OFFLOAD_SET_OP_GAP_TIME(h2c_pkt, RTW_OFF_CHAN_TIME);
2225 	SCAN_OFFLOAD_SET_SSID_NUM(h2c_pkt, req->n_ssids);
2226 	SCAN_OFFLOAD_SET_PKT_LOC(h2c_pkt, pkt_loc);
2227 
2228 	rtw_fw_send_h2c_packet(rtwdev, h2c_pkt);
2229 }
2230 
rtw_hw_scan_start(struct rtw_dev * rtwdev,struct ieee80211_vif * vif,struct ieee80211_scan_request * scan_req)2231 void rtw_hw_scan_start(struct rtw_dev *rtwdev, struct ieee80211_vif *vif,
2232 		       struct ieee80211_scan_request *scan_req)
2233 {
2234 	struct rtw_vif *rtwvif = (struct rtw_vif *)vif->drv_priv;
2235 	struct cfg80211_scan_request *req = &scan_req->req;
2236 	u8 mac_addr[ETH_ALEN];
2237 
2238 	rtwdev->scan_info.scanning_vif = vif;
2239 	rtwvif->scan_ies = &scan_req->ies;
2240 	rtwvif->scan_req = req;
2241 
2242 	ieee80211_stop_queues(rtwdev->hw);
2243 	rtw_leave_lps_deep(rtwdev);
2244 	rtw_hci_flush_all_queues(rtwdev, false);
2245 	rtw_mac_flush_all_queues(rtwdev, false);
2246 	if (req->flags & NL80211_SCAN_FLAG_RANDOM_ADDR)
2247 		get_random_mask_addr(mac_addr, req->mac_addr,
2248 				     req->mac_addr_mask);
2249 	else
2250 		ether_addr_copy(mac_addr, vif->addr);
2251 
2252 	rtw_core_scan_start(rtwdev, rtwvif, mac_addr, true);
2253 
2254 	rtwdev->hal.rcr &= ~BIT_CBSSID_BCN;
2255 	rtw_write32(rtwdev, REG_RCR, rtwdev->hal.rcr);
2256 }
2257 
rtw_hw_scan_complete(struct rtw_dev * rtwdev,struct ieee80211_vif * vif,bool aborted)2258 void rtw_hw_scan_complete(struct rtw_dev *rtwdev, struct ieee80211_vif *vif,
2259 			  bool aborted)
2260 {
2261 	struct cfg80211_scan_info info = {
2262 		.aborted = aborted,
2263 	};
2264 	struct rtw_hw_scan_info *scan_info = &rtwdev->scan_info;
2265 	struct rtw_hal *hal = &rtwdev->hal;
2266 	struct rtw_vif *rtwvif;
2267 	u8 chan = scan_info->op_chan;
2268 
2269 	if (!vif)
2270 		return;
2271 
2272 	rtwdev->hal.rcr |= BIT_CBSSID_BCN;
2273 	rtw_write32(rtwdev, REG_RCR, rtwdev->hal.rcr);
2274 
2275 	rtw_core_scan_complete(rtwdev, vif, true);
2276 
2277 	rtwvif = (struct rtw_vif *)vif->drv_priv;
2278 	if (chan)
2279 		rtw_store_op_chan(rtwdev, false);
2280 	rtw_phy_set_tx_power_level(rtwdev, hal->current_channel);
2281 	ieee80211_wake_queues(rtwdev->hw);
2282 	ieee80211_scan_completed(rtwdev->hw, &info);
2283 
2284 	rtwvif->scan_req = NULL;
2285 	rtwvif->scan_ies = NULL;
2286 	rtwdev->scan_info.scanning_vif = NULL;
2287 }
2288 
rtw_hw_scan_prehandle(struct rtw_dev * rtwdev,struct rtw_vif * rtwvif,struct rtw_chan_list * list)2289 static int rtw_hw_scan_prehandle(struct rtw_dev *rtwdev, struct rtw_vif *rtwvif,
2290 				 struct rtw_chan_list *list)
2291 {
2292 	struct cfg80211_scan_request *req = rtwvif->scan_req;
2293 	int size = req->n_channels * (RTW_CH_INFO_SIZE + RTW_EX_CH_INFO_SIZE);
2294 	u8 *buf;
2295 	int ret;
2296 
2297 	buf = kmalloc(size, GFP_KERNEL);
2298 	if (!buf)
2299 		return -ENOMEM;
2300 
2301 	ret = rtw_hw_scan_update_probe_req(rtwdev, rtwvif);
2302 	if (ret) {
2303 		rtw_err(rtwdev, "Update probe request failed\n");
2304 		goto out;
2305 	}
2306 
2307 	list->buf_size = size;
2308 	list->size = 0;
2309 	list->ch_num = 0;
2310 	ret = rtw_add_chan_list(rtwdev, rtwvif, list, buf);
2311 out:
2312 	kfree(buf);
2313 
2314 	return ret;
2315 }
2316 
rtw_hw_scan_offload(struct rtw_dev * rtwdev,struct ieee80211_vif * vif,bool enable)2317 int rtw_hw_scan_offload(struct rtw_dev *rtwdev, struct ieee80211_vif *vif,
2318 			bool enable)
2319 {
2320 	struct rtw_vif *rtwvif = vif ? (struct rtw_vif *)vif->drv_priv : NULL;
2321 	struct rtw_hw_scan_info *scan_info = &rtwdev->scan_info;
2322 	struct rtw_ch_switch_option cs_option = {0};
2323 	struct rtw_chan_list chan_list = {0};
2324 	int ret = 0;
2325 
2326 	if (!rtwvif)
2327 		return -EINVAL;
2328 
2329 	cs_option.switch_en = enable;
2330 	cs_option.back_op_en = scan_info->op_chan != 0;
2331 	if (enable) {
2332 		ret = rtw_hw_scan_prehandle(rtwdev, rtwvif, &chan_list);
2333 		if (ret)
2334 			goto out;
2335 	}
2336 	rtw_fw_set_scan_offload(rtwdev, &cs_option, rtwvif, &chan_list);
2337 out:
2338 	if (rtwdev->ap_active) {
2339 		ret = rtw_download_beacon(rtwdev);
2340 		if (ret)
2341 			rtw_err(rtwdev, "HW scan download beacon failed\n");
2342 	}
2343 
2344 	return ret;
2345 }
2346 
rtw_hw_scan_abort(struct rtw_dev * rtwdev)2347 void rtw_hw_scan_abort(struct rtw_dev *rtwdev)
2348 {
2349 	struct ieee80211_vif *vif = rtwdev->scan_info.scanning_vif;
2350 
2351 	if (!rtw_fw_feature_check(&rtwdev->fw, FW_FEATURE_SCAN_OFFLOAD))
2352 		return;
2353 
2354 	rtw_hw_scan_offload(rtwdev, vif, false);
2355 	rtw_hw_scan_complete(rtwdev, vif, true);
2356 }
2357 
rtw_hw_scan_status_report(struct rtw_dev * rtwdev,struct sk_buff * skb)2358 void rtw_hw_scan_status_report(struct rtw_dev *rtwdev, struct sk_buff *skb)
2359 {
2360 	struct ieee80211_vif *vif = rtwdev->scan_info.scanning_vif;
2361 	struct rtw_c2h_cmd *c2h;
2362 	bool aborted;
2363 	u8 rc;
2364 
2365 	if (!test_bit(RTW_FLAG_SCANNING, rtwdev->flags))
2366 		return;
2367 
2368 	c2h = get_c2h_from_skb(skb);
2369 	rc = GET_SCAN_REPORT_RETURN_CODE(c2h->payload);
2370 	aborted = rc != RTW_SCAN_REPORT_SUCCESS;
2371 	rtw_hw_scan_complete(rtwdev, vif, aborted);
2372 
2373 	if (aborted)
2374 		rtw_dbg(rtwdev, RTW_DBG_HW_SCAN, "HW scan aborted with code: %d\n", rc);
2375 }
2376 
rtw_store_op_chan(struct rtw_dev * rtwdev,bool backup)2377 void rtw_store_op_chan(struct rtw_dev *rtwdev, bool backup)
2378 {
2379 	struct rtw_hw_scan_info *scan_info = &rtwdev->scan_info;
2380 	struct rtw_hal *hal = &rtwdev->hal;
2381 	u8 band;
2382 
2383 	if (backup) {
2384 		scan_info->op_chan = hal->current_channel;
2385 		scan_info->op_bw = hal->current_band_width;
2386 		scan_info->op_pri_ch_idx = hal->current_primary_channel_index;
2387 		scan_info->op_pri_ch = hal->primary_channel;
2388 	} else {
2389 		band = scan_info->op_chan > 14 ? RTW_BAND_5G : RTW_BAND_2G;
2390 		rtw_update_channel(rtwdev, scan_info->op_chan,
2391 				   scan_info->op_pri_ch,
2392 				   band, scan_info->op_bw);
2393 	}
2394 }
2395 
rtw_clear_op_chan(struct rtw_dev * rtwdev)2396 void rtw_clear_op_chan(struct rtw_dev *rtwdev)
2397 {
2398 	struct rtw_hw_scan_info *scan_info = &rtwdev->scan_info;
2399 
2400 	scan_info->op_chan = 0;
2401 	scan_info->op_bw = 0;
2402 	scan_info->op_pri_ch_idx = 0;
2403 	scan_info->op_pri_ch = 0;
2404 }
2405 
rtw_is_op_chan(struct rtw_dev * rtwdev,u8 channel)2406 static bool rtw_is_op_chan(struct rtw_dev *rtwdev, u8 channel)
2407 {
2408 	struct rtw_hw_scan_info *scan_info = &rtwdev->scan_info;
2409 
2410 	return channel == scan_info->op_chan;
2411 }
2412 
rtw_hw_scan_chan_switch(struct rtw_dev * rtwdev,struct sk_buff * skb)2413 void rtw_hw_scan_chan_switch(struct rtw_dev *rtwdev, struct sk_buff *skb)
2414 {
2415 	struct rtw_hal *hal = &rtwdev->hal;
2416 	struct rtw_c2h_cmd *c2h;
2417 	enum rtw_scan_notify_id id;
2418 	u8 chan, band, status;
2419 
2420 	if (!test_bit(RTW_FLAG_SCANNING, rtwdev->flags))
2421 		return;
2422 
2423 	c2h = get_c2h_from_skb(skb);
2424 	chan = GET_CHAN_SWITCH_CENTRAL_CH(c2h->payload);
2425 	id = GET_CHAN_SWITCH_ID(c2h->payload);
2426 	status = GET_CHAN_SWITCH_STATUS(c2h->payload);
2427 
2428 	if (id == RTW_SCAN_NOTIFY_ID_POSTSWITCH) {
2429 		band = chan > 14 ? RTW_BAND_5G : RTW_BAND_2G;
2430 		rtw_update_channel(rtwdev, chan, chan, band,
2431 				   RTW_CHANNEL_WIDTH_20);
2432 		if (rtw_is_op_chan(rtwdev, chan)) {
2433 			rtw_store_op_chan(rtwdev, false);
2434 			ieee80211_wake_queues(rtwdev->hw);
2435 			rtw_core_enable_beacon(rtwdev, true);
2436 		}
2437 	} else if (id == RTW_SCAN_NOTIFY_ID_PRESWITCH) {
2438 		if (IS_CH_5G_BAND(chan)) {
2439 			rtw_coex_switchband_notify(rtwdev, COEX_SWITCH_TO_5G);
2440 		} else if (IS_CH_2G_BAND(chan)) {
2441 			u8 chan_type;
2442 
2443 			if (test_bit(RTW_FLAG_SCANNING, rtwdev->flags))
2444 				chan_type = COEX_SWITCH_TO_24G;
2445 			else
2446 				chan_type = COEX_SWITCH_TO_24G_NOFORSCAN;
2447 			rtw_coex_switchband_notify(rtwdev, chan_type);
2448 		}
2449 		/* The channel of C2H RTW_SCAN_NOTIFY_ID_PRESWITCH is next
2450 		 * channel that hardware will switch. We need to stop queue
2451 		 * if next channel is non-op channel.
2452 		 */
2453 		if (!rtw_is_op_chan(rtwdev, chan) &&
2454 		    rtw_is_op_chan(rtwdev, hal->current_channel)) {
2455 			rtw_core_enable_beacon(rtwdev, false);
2456 			ieee80211_stop_queues(rtwdev->hw);
2457 		}
2458 	}
2459 
2460 	rtw_dbg(rtwdev, RTW_DBG_HW_SCAN,
2461 		"Chan switch: %x, id: %x, status: %x\n", chan, id, status);
2462 }
2463