xref: /linux/drivers/net/wireless/realtek/rtlwifi/rtl8821ae/hw.c (revision 91ec2035134982b98fab0609a9fd8480e8217dc1)
1 // SPDX-License-Identifier: GPL-2.0
2 /* Copyright(c) 2009-2010  Realtek Corporation.*/
3 
4 #include "../wifi.h"
5 #include "../efuse.h"
6 #include "../base.h"
7 #include "../regd.h"
8 #include "../cam.h"
9 #include "../ps.h"
10 #include "../pci.h"
11 #include "reg.h"
12 #include "def.h"
13 #include "phy.h"
14 #include "dm.h"
15 #include "fw.h"
16 #include "led.h"
17 #include "hw.h"
18 #include "../pwrseqcmd.h"
19 #include "pwrseq.h"
20 #include "../btcoexist/rtl_btc.h"
21 
22 #define LLT_CONFIG	5
23 
_rtl8821ae_return_beacon_queue_skb(struct ieee80211_hw * hw)24 static void _rtl8821ae_return_beacon_queue_skb(struct ieee80211_hw *hw)
25 {
26 	struct rtl_priv *rtlpriv = rtl_priv(hw);
27 	struct rtl_pci *rtlpci = rtl_pcidev(rtl_pcipriv(hw));
28 	struct rtl8192_tx_ring *ring = &rtlpci->tx_ring[BEACON_QUEUE];
29 	struct sk_buff_head free_list;
30 	unsigned long flags;
31 
32 	skb_queue_head_init(&free_list);
33 	spin_lock_irqsave(&rtlpriv->locks.irq_th_lock, flags);
34 	while (skb_queue_len(&ring->queue)) {
35 		struct rtl_tx_desc *entry = &ring->desc[ring->idx];
36 		struct sk_buff *skb = __skb_dequeue(&ring->queue);
37 
38 		dma_unmap_single(&rtlpci->pdev->dev,
39 				 rtlpriv->cfg->ops->get_desc(hw, (u8 *)entry,
40 						true, HW_DESC_TXBUFF_ADDR),
41 				 skb->len, DMA_TO_DEVICE);
42 		__skb_queue_tail(&free_list, skb);
43 		ring->idx = (ring->idx + 1) % ring->entries;
44 	}
45 	spin_unlock_irqrestore(&rtlpriv->locks.irq_th_lock, flags);
46 
47 	__skb_queue_purge(&free_list);
48 }
49 
_rtl8821ae_set_bcn_ctrl_reg(struct ieee80211_hw * hw,u8 set_bits,u8 clear_bits)50 static void _rtl8821ae_set_bcn_ctrl_reg(struct ieee80211_hw *hw,
51 					u8 set_bits, u8 clear_bits)
52 {
53 	struct rtl_pci *rtlpci = rtl_pcidev(rtl_pcipriv(hw));
54 	struct rtl_priv *rtlpriv = rtl_priv(hw);
55 
56 	rtlpci->reg_bcn_ctrl_val |= set_bits;
57 	rtlpci->reg_bcn_ctrl_val &= ~clear_bits;
58 
59 	rtl_write_byte(rtlpriv, REG_BCN_CTRL, (u8)rtlpci->reg_bcn_ctrl_val);
60 }
61 
_rtl8821ae_stop_tx_beacon(struct ieee80211_hw * hw)62 void _rtl8821ae_stop_tx_beacon(struct ieee80211_hw *hw)
63 {
64 	struct rtl_priv *rtlpriv = rtl_priv(hw);
65 	u8 tmp1byte;
66 
67 	tmp1byte = rtl_read_byte(rtlpriv, REG_FWHW_TXQ_CTRL + 2);
68 	rtl_write_byte(rtlpriv, REG_FWHW_TXQ_CTRL + 2, tmp1byte & (~BIT(6)));
69 	rtl_write_byte(rtlpriv, REG_TBTT_PROHIBIT + 1, 0x64);
70 	tmp1byte = rtl_read_byte(rtlpriv, REG_TBTT_PROHIBIT + 2);
71 	tmp1byte &= ~(BIT(0));
72 	rtl_write_byte(rtlpriv, REG_TBTT_PROHIBIT + 2, tmp1byte);
73 }
74 
_rtl8821ae_resume_tx_beacon(struct ieee80211_hw * hw)75 void _rtl8821ae_resume_tx_beacon(struct ieee80211_hw *hw)
76 {
77 	struct rtl_priv *rtlpriv = rtl_priv(hw);
78 	u8 tmp1byte;
79 
80 	tmp1byte = rtl_read_byte(rtlpriv, REG_FWHW_TXQ_CTRL + 2);
81 	rtl_write_byte(rtlpriv, REG_FWHW_TXQ_CTRL + 2, tmp1byte | BIT(6));
82 	rtl_write_byte(rtlpriv, REG_TBTT_PROHIBIT + 1, 0xff);
83 	tmp1byte = rtl_read_byte(rtlpriv, REG_TBTT_PROHIBIT + 2);
84 	tmp1byte |= BIT(0);
85 	rtl_write_byte(rtlpriv, REG_TBTT_PROHIBIT + 2, tmp1byte);
86 }
87 
_rtl8821ae_enable_bcn_sub_func(struct ieee80211_hw * hw)88 static void _rtl8821ae_enable_bcn_sub_func(struct ieee80211_hw *hw)
89 {
90 	_rtl8821ae_set_bcn_ctrl_reg(hw, 0, BIT(1));
91 }
92 
_rtl8821ae_disable_bcn_sub_func(struct ieee80211_hw * hw)93 static void _rtl8821ae_disable_bcn_sub_func(struct ieee80211_hw *hw)
94 {
95 	_rtl8821ae_set_bcn_ctrl_reg(hw, BIT(1), 0);
96 }
97 
_rtl8821ae_set_fw_clock_on(struct ieee80211_hw * hw,u8 rpwm_val,bool b_need_turn_off_ckk)98 static void _rtl8821ae_set_fw_clock_on(struct ieee80211_hw *hw,
99 				       u8 rpwm_val, bool b_need_turn_off_ckk)
100 {
101 	struct rtl_priv *rtlpriv = rtl_priv(hw);
102 	struct rtl_hal *rtlhal = rtl_hal(rtl_priv(hw));
103 	bool b_support_remote_wake_up;
104 	u32 count = 0, isr_regaddr, content;
105 	bool b_schedule_timer = b_need_turn_off_ckk;
106 
107 	rtlpriv->cfg->ops->get_hw_reg(hw, HAL_DEF_WOWLAN,
108 					(u8 *)(&b_support_remote_wake_up));
109 
110 	if (!rtlhal->fw_ready)
111 		return;
112 	if (!rtlpriv->psc.fw_current_inpsmode)
113 		return;
114 
115 	while (1) {
116 		spin_lock_bh(&rtlpriv->locks.fw_ps_lock);
117 		if (rtlhal->fw_clk_change_in_progress) {
118 			while (rtlhal->fw_clk_change_in_progress) {
119 				spin_unlock_bh(&rtlpriv->locks.fw_ps_lock);
120 				count++;
121 				udelay(100);
122 				if (count > 1000)
123 					goto change_done;
124 				spin_lock_bh(&rtlpriv->locks.fw_ps_lock);
125 			}
126 			spin_unlock_bh(&rtlpriv->locks.fw_ps_lock);
127 		} else {
128 			rtlhal->fw_clk_change_in_progress = false;
129 			spin_unlock_bh(&rtlpriv->locks.fw_ps_lock);
130 			goto change_done;
131 		}
132 	}
133 change_done:
134 	if (IS_IN_LOW_POWER_STATE_8821AE(rtlhal->fw_ps_state)) {
135 		rtlpriv->cfg->ops->get_hw_reg(hw, HW_VAR_SET_RPWM,
136 					(u8 *)(&rpwm_val));
137 		if (FW_PS_IS_ACK(rpwm_val)) {
138 			isr_regaddr = REG_HISR;
139 			content = rtl_read_dword(rtlpriv, isr_regaddr);
140 			while (!(content & IMR_CPWM) && (count < 500)) {
141 				udelay(50);
142 				count++;
143 				content = rtl_read_dword(rtlpriv, isr_regaddr);
144 			}
145 
146 			if (content & IMR_CPWM) {
147 				rtl_write_word(rtlpriv, isr_regaddr, 0x0100);
148 				rtlhal->fw_ps_state = FW_PS_STATE_RF_ON_8821AE;
149 				rtl_dbg(rtlpriv, COMP_POWER, DBG_LOUD,
150 					"Receive CPWM INT!!! Set rtlhal->FwPSState = %X\n",
151 					rtlhal->fw_ps_state);
152 			}
153 		}
154 
155 		spin_lock_bh(&rtlpriv->locks.fw_ps_lock);
156 		rtlhal->fw_clk_change_in_progress = false;
157 		spin_unlock_bh(&rtlpriv->locks.fw_ps_lock);
158 		if (b_schedule_timer)
159 			mod_timer(&rtlpriv->works.fw_clockoff_timer,
160 				  jiffies + MSECS(10));
161 	} else  {
162 		spin_lock_bh(&rtlpriv->locks.fw_ps_lock);
163 		rtlhal->fw_clk_change_in_progress = false;
164 		spin_unlock_bh(&rtlpriv->locks.fw_ps_lock);
165 	}
166 }
167 
_rtl8821ae_set_fw_clock_off(struct ieee80211_hw * hw,u8 rpwm_val)168 static void _rtl8821ae_set_fw_clock_off(struct ieee80211_hw *hw,
169 					u8 rpwm_val)
170 {
171 	struct rtl_priv *rtlpriv = rtl_priv(hw);
172 	struct rtl_hal *rtlhal = rtl_hal(rtl_priv(hw));
173 	struct rtl_pci *rtlpci = rtl_pcidev(rtl_pcipriv(hw));
174 	struct rtl8192_tx_ring *ring;
175 	enum rf_pwrstate rtstate;
176 	bool b_schedule_timer = false;
177 	u8 queue;
178 
179 	if (!rtlhal->fw_ready)
180 		return;
181 	if (!rtlpriv->psc.fw_current_inpsmode)
182 		return;
183 	if (!rtlhal->allow_sw_to_change_hwclc)
184 		return;
185 	rtlpriv->cfg->ops->get_hw_reg(hw, HW_VAR_RF_STATE, (u8 *)(&rtstate));
186 	if (rtstate == ERFOFF || rtlpriv->psc.inactive_pwrstate == ERFOFF)
187 		return;
188 
189 	for (queue = 0; queue < RTL_PCI_MAX_TX_QUEUE_COUNT; queue++) {
190 		ring = &rtlpci->tx_ring[queue];
191 		if (skb_queue_len(&ring->queue)) {
192 			b_schedule_timer = true;
193 			break;
194 		}
195 	}
196 
197 	if (b_schedule_timer) {
198 		mod_timer(&rtlpriv->works.fw_clockoff_timer,
199 			  jiffies + MSECS(10));
200 		return;
201 	}
202 
203 	if (FW_PS_STATE(rtlhal->fw_ps_state) !=
204 		FW_PS_STATE_RF_OFF_LOW_PWR_8821AE) {
205 		spin_lock_bh(&rtlpriv->locks.fw_ps_lock);
206 		if (!rtlhal->fw_clk_change_in_progress) {
207 			rtlhal->fw_clk_change_in_progress = true;
208 			spin_unlock_bh(&rtlpriv->locks.fw_ps_lock);
209 			rtlhal->fw_ps_state = FW_PS_STATE(rpwm_val);
210 			rtl_write_word(rtlpriv, REG_HISR, 0x0100);
211 			rtlpriv->cfg->ops->set_hw_reg(hw, HW_VAR_SET_RPWM,
212 						      (u8 *)(&rpwm_val));
213 			spin_lock_bh(&rtlpriv->locks.fw_ps_lock);
214 			rtlhal->fw_clk_change_in_progress = false;
215 			spin_unlock_bh(&rtlpriv->locks.fw_ps_lock);
216 		} else {
217 			spin_unlock_bh(&rtlpriv->locks.fw_ps_lock);
218 			mod_timer(&rtlpriv->works.fw_clockoff_timer,
219 				  jiffies + MSECS(10));
220 		}
221 	}
222 }
223 
_rtl8821ae_set_fw_ps_rf_on(struct ieee80211_hw * hw)224 static void _rtl8821ae_set_fw_ps_rf_on(struct ieee80211_hw *hw)
225 {
226 	u8 rpwm_val = 0;
227 
228 	rpwm_val |= (FW_PS_STATE_RF_OFF_8821AE | FW_PS_ACK);
229 	_rtl8821ae_set_fw_clock_on(hw, rpwm_val, true);
230 }
231 
_rtl8821ae_fwlps_leave(struct ieee80211_hw * hw)232 static void _rtl8821ae_fwlps_leave(struct ieee80211_hw *hw)
233 {
234 	struct rtl_priv *rtlpriv = rtl_priv(hw);
235 	struct rtl_ps_ctl *ppsc = rtl_psc(rtl_priv(hw));
236 	struct rtl_hal *rtlhal = rtl_hal(rtl_priv(hw));
237 	bool fw_current_inps = false;
238 	u8 rpwm_val = 0, fw_pwrmode = FW_PS_ACTIVE_MODE;
239 
240 	if (ppsc->low_power_enable) {
241 		rpwm_val = (FW_PS_STATE_ALL_ON_8821AE|FW_PS_ACK);/* RF on */
242 		_rtl8821ae_set_fw_clock_on(hw, rpwm_val, false);
243 		rtlhal->allow_sw_to_change_hwclc = false;
244 		rtlpriv->cfg->ops->set_hw_reg(hw, HW_VAR_H2C_FW_PWRMODE,
245 				(u8 *)(&fw_pwrmode));
246 		rtlpriv->cfg->ops->set_hw_reg(hw, HW_VAR_FW_PSMODE_STATUS,
247 				(u8 *)(&fw_current_inps));
248 	} else {
249 		rpwm_val = FW_PS_STATE_ALL_ON_8821AE;	/* RF on */
250 		rtlpriv->cfg->ops->set_hw_reg(hw, HW_VAR_SET_RPWM,
251 				(u8 *)(&rpwm_val));
252 		rtlpriv->cfg->ops->set_hw_reg(hw, HW_VAR_H2C_FW_PWRMODE,
253 				(u8 *)(&fw_pwrmode));
254 		rtlpriv->cfg->ops->set_hw_reg(hw, HW_VAR_FW_PSMODE_STATUS,
255 				(u8 *)(&fw_current_inps));
256 	}
257 }
258 
_rtl8821ae_fwlps_enter(struct ieee80211_hw * hw)259 static void _rtl8821ae_fwlps_enter(struct ieee80211_hw *hw)
260 {
261 	struct rtl_priv *rtlpriv = rtl_priv(hw);
262 	struct rtl_ps_ctl *ppsc = rtl_psc(rtl_priv(hw));
263 	struct rtl_hal *rtlhal = rtl_hal(rtl_priv(hw));
264 	bool fw_current_inps = true;
265 	u8 rpwm_val;
266 
267 	if (ppsc->low_power_enable) {
268 		rpwm_val = FW_PS_STATE_RF_OFF_LOW_PWR_8821AE;	/* RF off */
269 		rtlpriv->cfg->ops->set_hw_reg(hw,
270 				HW_VAR_FW_PSMODE_STATUS,
271 				(u8 *)(&fw_current_inps));
272 		rtlpriv->cfg->ops->set_hw_reg(hw,
273 				HW_VAR_H2C_FW_PWRMODE,
274 				(u8 *)(&ppsc->fwctrl_psmode));
275 		rtlhal->allow_sw_to_change_hwclc = true;
276 		_rtl8821ae_set_fw_clock_off(hw, rpwm_val);
277 	} else {
278 		rpwm_val = FW_PS_STATE_RF_OFF_8821AE;	/* RF off */
279 		rtlpriv->cfg->ops->set_hw_reg(hw,
280 				HW_VAR_FW_PSMODE_STATUS,
281 				(u8 *)(&fw_current_inps));
282 		rtlpriv->cfg->ops->set_hw_reg(hw,
283 				HW_VAR_H2C_FW_PWRMODE,
284 				(u8 *)(&ppsc->fwctrl_psmode));
285 		rtlpriv->cfg->ops->set_hw_reg(hw,
286 				HW_VAR_SET_RPWM,
287 				(u8 *)(&rpwm_val));
288 	}
289 }
290 
_rtl8821ae_download_rsvd_page(struct ieee80211_hw * hw,bool dl_whole_packets)291 static void _rtl8821ae_download_rsvd_page(struct ieee80211_hw *hw,
292 					  bool dl_whole_packets)
293 {
294 	struct rtl_priv *rtlpriv = rtl_priv(hw);
295 	struct rtl_hal *rtlhal = rtl_hal(rtlpriv);
296 	u8 tmp_regcr, tmp_reg422, bcnvalid_reg;
297 	u8 count = 0, dlbcn_count = 0;
298 	bool send_beacon = false;
299 
300 	tmp_regcr = rtl_read_byte(rtlpriv, REG_CR + 1);
301 	rtl_write_byte(rtlpriv, REG_CR + 1, (tmp_regcr | BIT(0)));
302 
303 	_rtl8821ae_set_bcn_ctrl_reg(hw, 0, BIT(3));
304 	_rtl8821ae_set_bcn_ctrl_reg(hw, BIT(4), 0);
305 
306 	tmp_reg422 = rtl_read_byte(rtlpriv, REG_FWHW_TXQ_CTRL + 2);
307 	rtl_write_byte(rtlpriv, REG_FWHW_TXQ_CTRL + 2,
308 		       tmp_reg422 & (~BIT(6)));
309 	if (tmp_reg422 & BIT(6))
310 		send_beacon = true;
311 
312 	do {
313 		bcnvalid_reg = rtl_read_byte(rtlpriv, REG_TDECTRL + 2);
314 		rtl_write_byte(rtlpriv, REG_TDECTRL + 2,
315 			       (bcnvalid_reg | BIT(0)));
316 		_rtl8821ae_return_beacon_queue_skb(hw);
317 
318 		if (rtlhal->hw_type == HARDWARE_TYPE_RTL8812AE)
319 			rtl8812ae_set_fw_rsvdpagepkt(hw, false,
320 						     dl_whole_packets);
321 		else
322 			rtl8821ae_set_fw_rsvdpagepkt(hw, false,
323 						     dl_whole_packets);
324 
325 		bcnvalid_reg = rtl_read_byte(rtlpriv, REG_TDECTRL + 2);
326 		count = 0;
327 		while (!(bcnvalid_reg & BIT(0)) && count < 20) {
328 			count++;
329 			udelay(10);
330 			bcnvalid_reg = rtl_read_byte(rtlpriv, REG_TDECTRL + 2);
331 		}
332 		dlbcn_count++;
333 	} while (!(bcnvalid_reg & BIT(0)) && dlbcn_count < 5);
334 
335 	if (!(bcnvalid_reg & BIT(0)))
336 		rtl_dbg(rtlpriv, COMP_INIT, DBG_LOUD,
337 			"Download RSVD page failed!\n");
338 	if (bcnvalid_reg & BIT(0) && rtlhal->enter_pnp_sleep) {
339 		rtl_write_byte(rtlpriv, REG_TDECTRL + 2, bcnvalid_reg | BIT(0));
340 		_rtl8821ae_return_beacon_queue_skb(hw);
341 		if (send_beacon) {
342 			dlbcn_count = 0;
343 			do {
344 				rtl_write_byte(rtlpriv, REG_TDECTRL + 2,
345 					       bcnvalid_reg | BIT(0));
346 
347 				_rtl8821ae_return_beacon_queue_skb(hw);
348 
349 				if (rtlhal->hw_type == HARDWARE_TYPE_RTL8812AE)
350 					rtl8812ae_set_fw_rsvdpagepkt(hw, true,
351 								     false);
352 				else
353 					rtl8821ae_set_fw_rsvdpagepkt(hw, true,
354 								     false);
355 
356 				/* check rsvd page download OK. */
357 				bcnvalid_reg = rtl_read_byte(rtlpriv,
358 							     REG_TDECTRL + 2);
359 				count = 0;
360 				while (!(bcnvalid_reg & BIT(0)) && count < 20) {
361 					count++;
362 					udelay(10);
363 					bcnvalid_reg =
364 					  rtl_read_byte(rtlpriv,
365 							REG_TDECTRL + 2);
366 				}
367 				dlbcn_count++;
368 			} while (!(bcnvalid_reg & BIT(0)) && dlbcn_count < 5);
369 
370 			if (!(bcnvalid_reg & BIT(0)))
371 				rtl_dbg(rtlpriv, COMP_INIT, DBG_LOUD,
372 					"2 Download RSVD page failed!\n");
373 		}
374 	}
375 
376 	if (bcnvalid_reg & BIT(0))
377 		rtl_write_byte(rtlpriv, REG_TDECTRL + 2, BIT(0));
378 
379 	_rtl8821ae_set_bcn_ctrl_reg(hw, BIT(3), 0);
380 	_rtl8821ae_set_bcn_ctrl_reg(hw, 0, BIT(4));
381 
382 	if (send_beacon)
383 		rtl_write_byte(rtlpriv, REG_FWHW_TXQ_CTRL + 2, tmp_reg422);
384 
385 	if (!rtlhal->enter_pnp_sleep) {
386 		tmp_regcr = rtl_read_byte(rtlpriv, REG_CR + 1);
387 		rtl_write_byte(rtlpriv, REG_CR + 1, (tmp_regcr & ~(BIT(0))));
388 	}
389 }
390 
rtl8821ae_get_hw_reg(struct ieee80211_hw * hw,u8 variable,u8 * val)391 void rtl8821ae_get_hw_reg(struct ieee80211_hw *hw, u8 variable, u8 *val)
392 {
393 	struct rtl_priv *rtlpriv = rtl_priv(hw);
394 	struct rtl_ps_ctl *ppsc = rtl_psc(rtl_priv(hw));
395 	struct rtl_pci *rtlpci = rtl_pcidev(rtl_pcipriv(hw));
396 	struct rtl_mac *mac = rtl_mac(rtl_priv(hw));
397 
398 	switch (variable) {
399 	case HW_VAR_ETHER_ADDR:
400 		*((u32 *)(val)) = rtl_read_dword(rtlpriv, REG_MACID);
401 		*((u16 *)(val+4)) = rtl_read_word(rtlpriv, REG_MACID + 4);
402 		break;
403 	case HW_VAR_BSSID:
404 		*((u32 *)(val)) = rtl_read_dword(rtlpriv, REG_BSSID);
405 		*((u16 *)(val+4)) = rtl_read_word(rtlpriv, REG_BSSID+4);
406 		break;
407 	case HW_VAR_MEDIA_STATUS:
408 		val[0] = rtl_read_byte(rtlpriv, MSR) & 0x3;
409 		break;
410 	case HW_VAR_SLOT_TIME:
411 		*((u8 *)(val)) = mac->slot_time;
412 		break;
413 	case HW_VAR_BEACON_INTERVAL:
414 		*((u16 *)(val)) = rtl_read_word(rtlpriv, REG_BCN_INTERVAL);
415 		break;
416 	case HW_VAR_ATIM_WINDOW:
417 		*((u16 *)(val)) =  rtl_read_word(rtlpriv, REG_ATIMWND);
418 		break;
419 	case HW_VAR_RCR:
420 		*((u32 *)(val)) = rtlpci->receive_config;
421 		break;
422 	case HW_VAR_RF_STATE:
423 		*((enum rf_pwrstate *)(val)) = ppsc->rfpwr_state;
424 		break;
425 	case HW_VAR_FWLPS_RF_ON:{
426 		enum rf_pwrstate rfstate;
427 		u32 val_rcr;
428 
429 		rtlpriv->cfg->ops->get_hw_reg(hw,
430 					      HW_VAR_RF_STATE,
431 					      (u8 *)(&rfstate));
432 		if (rfstate == ERFOFF) {
433 			*((bool *)(val)) = true;
434 		} else {
435 			val_rcr = rtl_read_dword(rtlpriv, REG_RCR);
436 			val_rcr &= 0x00070000;
437 			if (val_rcr)
438 				*((bool *)(val)) = false;
439 			else
440 				*((bool *)(val)) = true;
441 		}
442 		break; }
443 	case HW_VAR_FW_PSMODE_STATUS:
444 		*((bool *)(val)) = ppsc->fw_current_inpsmode;
445 		break;
446 	case HW_VAR_CORRECT_TSF:{
447 		u64 tsf;
448 		u32 *ptsf_low = (u32 *)&tsf;
449 		u32 *ptsf_high = ((u32 *)&tsf) + 1;
450 
451 		*ptsf_high = rtl_read_dword(rtlpriv, (REG_TSFTR + 4));
452 		*ptsf_low = rtl_read_dword(rtlpriv, REG_TSFTR);
453 
454 		*((u64 *)(val)) = tsf;
455 
456 		break; }
457 	case HAL_DEF_WOWLAN:
458 		if (ppsc->wo_wlan_mode)
459 			*((bool *)(val)) = true;
460 		else
461 			*((bool *)(val)) = false;
462 		break;
463 	default:
464 		rtl_dbg(rtlpriv, COMP_ERR, DBG_LOUD,
465 			"switch case %#x not processed\n", variable);
466 		break;
467 	}
468 }
469 
rtl8821ae_set_hw_reg(struct ieee80211_hw * hw,u8 variable,u8 * val)470 void rtl8821ae_set_hw_reg(struct ieee80211_hw *hw, u8 variable, u8 *val)
471 {
472 	struct rtl_priv *rtlpriv = rtl_priv(hw);
473 	struct rtl_pci *rtlpci = rtl_pcidev(rtl_pcipriv(hw));
474 	struct rtl_mac *mac = rtl_mac(rtl_priv(hw));
475 	struct rtl_efuse *rtlefuse = rtl_efuse(rtl_priv(hw));
476 	struct rtl_ps_ctl *ppsc = rtl_psc(rtl_priv(hw));
477 	struct rtl_hal *rtlhal = rtl_hal(rtl_priv(hw));
478 	u8 idx;
479 
480 	switch (variable) {
481 	case HW_VAR_ETHER_ADDR:{
482 			for (idx = 0; idx < ETH_ALEN; idx++) {
483 				rtl_write_byte(rtlpriv, (REG_MACID + idx),
484 					       val[idx]);
485 			}
486 			break;
487 		}
488 	case HW_VAR_BASIC_RATE:{
489 			u16 b_rate_cfg = ((u16 *)val)[0];
490 			b_rate_cfg = b_rate_cfg & 0x15f;
491 			rtl_write_word(rtlpriv, REG_RRSR, b_rate_cfg);
492 			break;
493 		}
494 	case HW_VAR_BSSID:{
495 			for (idx = 0; idx < ETH_ALEN; idx++) {
496 				rtl_write_byte(rtlpriv, (REG_BSSID + idx),
497 					       val[idx]);
498 			}
499 			break;
500 		}
501 	case HW_VAR_SIFS:
502 		rtl_write_byte(rtlpriv, REG_SIFS_CTX + 1, val[0]);
503 		rtl_write_byte(rtlpriv, REG_SIFS_TRX + 1, val[0]);
504 
505 		rtl_write_byte(rtlpriv, REG_SPEC_SIFS + 1, val[0]);
506 		rtl_write_byte(rtlpriv, REG_MAC_SPEC_SIFS + 1, val[0]);
507 
508 		rtl_write_byte(rtlpriv, REG_RESP_SIFS_OFDM + 1, val[0]);
509 		rtl_write_byte(rtlpriv, REG_RESP_SIFS_OFDM, val[0]);
510 		break;
511 	case HW_VAR_R2T_SIFS:
512 		rtl_write_byte(rtlpriv, REG_RESP_SIFS_OFDM + 1, val[0]);
513 		break;
514 	case HW_VAR_SLOT_TIME:{
515 		u8 e_aci;
516 
517 		rtl_dbg(rtlpriv, COMP_MLME, DBG_LOUD,
518 			"HW_VAR_SLOT_TIME %x\n", val[0]);
519 
520 		rtl_write_byte(rtlpriv, REG_SLOT, val[0]);
521 
522 		for (e_aci = 0; e_aci < AC_MAX; e_aci++) {
523 			rtlpriv->cfg->ops->set_hw_reg(hw,
524 						      HW_VAR_AC_PARAM,
525 						      (u8 *)(&e_aci));
526 		}
527 		break; }
528 	case HW_VAR_ACK_PREAMBLE:{
529 		u8 reg_tmp;
530 		u8 short_preamble = (bool)(*(u8 *)val);
531 
532 		reg_tmp = rtl_read_byte(rtlpriv, REG_TRXPTCL_CTL+2);
533 		if (short_preamble) {
534 			reg_tmp |= BIT(1);
535 			rtl_write_byte(rtlpriv, REG_TRXPTCL_CTL + 2,
536 				       reg_tmp);
537 		} else {
538 			reg_tmp &= (~BIT(1));
539 			rtl_write_byte(rtlpriv,
540 				REG_TRXPTCL_CTL + 2,
541 				reg_tmp);
542 		}
543 		break; }
544 	case HW_VAR_WPA_CONFIG:
545 		rtl_write_byte(rtlpriv, REG_SECCFG, *((u8 *)val));
546 		break;
547 	case HW_VAR_AMPDU_MIN_SPACE:{
548 		u8 min_spacing_to_set;
549 
550 		min_spacing_to_set = *((u8 *)val);
551 		if (min_spacing_to_set <= 7) {
552 
553 			mac->min_space_cfg = ((mac->min_space_cfg &
554 					       0xf8) |
555 					      min_spacing_to_set);
556 
557 			*val = min_spacing_to_set;
558 
559 			rtl_dbg(rtlpriv, COMP_MLME, DBG_LOUD,
560 				"Set HW_VAR_AMPDU_MIN_SPACE: %#x\n",
561 				mac->min_space_cfg);
562 
563 			rtl_write_byte(rtlpriv, REG_AMPDU_MIN_SPACE,
564 				       mac->min_space_cfg);
565 		}
566 		break; }
567 	case HW_VAR_SHORTGI_DENSITY:{
568 		u8 density_to_set;
569 
570 		density_to_set = *((u8 *)val);
571 		mac->min_space_cfg |= (density_to_set << 3);
572 
573 		rtl_dbg(rtlpriv, COMP_MLME, DBG_LOUD,
574 			"Set HW_VAR_SHORTGI_DENSITY: %#x\n",
575 			mac->min_space_cfg);
576 
577 		rtl_write_byte(rtlpriv, REG_AMPDU_MIN_SPACE,
578 			       mac->min_space_cfg);
579 
580 		break; }
581 	case HW_VAR_AMPDU_FACTOR:{
582 		u32	ampdu_len =  (*((u8 *)val));
583 
584 		if (rtlhal->hw_type == HARDWARE_TYPE_RTL8812AE) {
585 			if (ampdu_len < VHT_AGG_SIZE_128K)
586 				ampdu_len =
587 					(0x2000 << (*((u8 *)val))) - 1;
588 			else
589 				ampdu_len = 0x1ffff;
590 		} else if (rtlhal->hw_type == HARDWARE_TYPE_RTL8821AE) {
591 			if (ampdu_len < HT_AGG_SIZE_64K)
592 				ampdu_len =
593 					(0x2000 << (*((u8 *)val))) - 1;
594 			else
595 				ampdu_len = 0xffff;
596 		}
597 		ampdu_len |= BIT(31);
598 
599 		rtl_write_dword(rtlpriv,
600 			REG_AMPDU_MAX_LENGTH_8812, ampdu_len);
601 		break; }
602 	case HW_VAR_AC_PARAM:{
603 		u8 e_aci = *((u8 *)val);
604 
605 		rtl8821ae_dm_init_edca_turbo(hw);
606 		if (rtlpci->acm_method != EACMWAY2_SW)
607 			rtlpriv->cfg->ops->set_hw_reg(hw,
608 						      HW_VAR_ACM_CTRL,
609 						      (u8 *)(&e_aci));
610 		break; }
611 	case HW_VAR_ACM_CTRL:{
612 		u8 e_aci = *((u8 *)val);
613 		union aci_aifsn *p_aci_aifsn =
614 		    (union aci_aifsn *)(&mac->ac[0].aifs);
615 		u8 acm = p_aci_aifsn->f.acm;
616 		u8 acm_ctrl = rtl_read_byte(rtlpriv, REG_ACMHWCTRL);
617 
618 		acm_ctrl =
619 		    acm_ctrl | ((rtlpci->acm_method == 2) ? 0x0 : 0x1);
620 
621 		if (acm) {
622 			switch (e_aci) {
623 			case AC0_BE:
624 				acm_ctrl |= ACMHW_BEQEN;
625 				break;
626 			case AC2_VI:
627 				acm_ctrl |= ACMHW_VIQEN;
628 				break;
629 			case AC3_VO:
630 				acm_ctrl |= ACMHW_VOQEN;
631 				break;
632 			default:
633 				rtl_dbg(rtlpriv, COMP_ERR, DBG_WARNING,
634 					"HW_VAR_ACM_CTRL acm set failed: eACI is %d\n",
635 					acm);
636 				break;
637 			}
638 		} else {
639 			switch (e_aci) {
640 			case AC0_BE:
641 				acm_ctrl &= (~ACMHW_BEQEN);
642 				break;
643 			case AC2_VI:
644 				acm_ctrl &= (~ACMHW_VIQEN);
645 				break;
646 			case AC3_VO:
647 				acm_ctrl &= (~ACMHW_VOQEN);
648 				break;
649 			default:
650 				rtl_dbg(rtlpriv, COMP_ERR, DBG_LOUD,
651 					"switch case %#x not processed\n",
652 					e_aci);
653 				break;
654 			}
655 		}
656 
657 		rtl_dbg(rtlpriv, COMP_QOS, DBG_TRACE,
658 			"SetHwReg8190pci(): [HW_VAR_ACM_CTRL] Write 0x%X\n",
659 			acm_ctrl);
660 		rtl_write_byte(rtlpriv, REG_ACMHWCTRL, acm_ctrl);
661 		break; }
662 	case HW_VAR_RCR:
663 		rtl_write_dword(rtlpriv, REG_RCR, ((u32 *)(val))[0]);
664 		rtlpci->receive_config = ((u32 *)(val))[0];
665 		break;
666 	case HW_VAR_RETRY_LIMIT:{
667 		u8 retry_limit = ((u8 *)(val))[0];
668 
669 		rtl_write_word(rtlpriv, REG_RL,
670 			       retry_limit << RETRY_LIMIT_SHORT_SHIFT |
671 			       retry_limit << RETRY_LIMIT_LONG_SHIFT);
672 		break; }
673 	case HW_VAR_DUAL_TSF_RST:
674 		rtl_write_byte(rtlpriv, REG_DUAL_TSF_RST, (BIT(0) | BIT(1)));
675 		break;
676 	case HW_VAR_EFUSE_BYTES:
677 		rtlefuse->efuse_usedbytes = *((u16 *)val);
678 		break;
679 	case HW_VAR_EFUSE_USAGE:
680 		rtlefuse->efuse_usedpercentage = *((u8 *)val);
681 		break;
682 	case HW_VAR_IO_CMD:
683 		rtl8821ae_phy_set_io_cmd(hw, (*(enum io_type *)val));
684 		break;
685 	case HW_VAR_SET_RPWM:{
686 		u8 rpwm_val;
687 
688 		rpwm_val = rtl_read_byte(rtlpriv, REG_PCIE_HRPWM);
689 		udelay(1);
690 
691 		if (rpwm_val & BIT(7)) {
692 			rtl_write_byte(rtlpriv, REG_PCIE_HRPWM,
693 				       (*(u8 *)val));
694 		} else {
695 			rtl_write_byte(rtlpriv, REG_PCIE_HRPWM,
696 				       ((*(u8 *)val) | BIT(7)));
697 		}
698 
699 		break; }
700 	case HW_VAR_H2C_FW_PWRMODE:
701 		rtl8821ae_set_fw_pwrmode_cmd(hw, (*(u8 *)val));
702 		break;
703 	case HW_VAR_FW_PSMODE_STATUS:
704 		ppsc->fw_current_inpsmode = *((bool *)val);
705 		break;
706 	case HW_VAR_INIT_RTS_RATE:
707 		break;
708 	case HW_VAR_RESUME_CLK_ON:
709 		_rtl8821ae_set_fw_ps_rf_on(hw);
710 		break;
711 	case HW_VAR_FW_LPS_ACTION:{
712 		bool b_enter_fwlps = *((bool *)val);
713 
714 		if (b_enter_fwlps)
715 			_rtl8821ae_fwlps_enter(hw);
716 		 else
717 			_rtl8821ae_fwlps_leave(hw);
718 		 break; }
719 	case HW_VAR_H2C_FW_JOINBSSRPT:{
720 		u8 mstatus = (*(u8 *)val);
721 
722 		if (mstatus == RT_MEDIA_CONNECT) {
723 			rtlpriv->cfg->ops->set_hw_reg(hw, HW_VAR_AID,
724 						      NULL);
725 			_rtl8821ae_download_rsvd_page(hw, false);
726 		}
727 		rtl8821ae_set_fw_media_status_rpt_cmd(hw, mstatus);
728 
729 		break; }
730 	case HW_VAR_H2C_FW_P2P_PS_OFFLOAD:
731 		rtl8821ae_set_p2p_ps_offload_cmd(hw, (*(u8 *)val));
732 		break;
733 	case HW_VAR_AID:{
734 		u16 u2btmp;
735 		u2btmp = rtl_read_word(rtlpriv, REG_BCN_PSR_RPT);
736 		u2btmp &= 0xC000;
737 		rtl_write_word(rtlpriv, REG_BCN_PSR_RPT, (u2btmp |
738 			       mac->assoc_id));
739 		break; }
740 	case HW_VAR_CORRECT_TSF:{
741 		u8 btype_ibss = ((u8 *)(val))[0];
742 
743 		if (btype_ibss)
744 			_rtl8821ae_stop_tx_beacon(hw);
745 
746 		_rtl8821ae_set_bcn_ctrl_reg(hw, 0, BIT(3));
747 
748 		rtl_write_dword(rtlpriv, REG_TSFTR,
749 				(u32)(mac->tsf & 0xffffffff));
750 		rtl_write_dword(rtlpriv, REG_TSFTR + 4,
751 				(u32)((mac->tsf >> 32) & 0xffffffff));
752 
753 		_rtl8821ae_set_bcn_ctrl_reg(hw, BIT(3), 0);
754 
755 		if (btype_ibss)
756 			_rtl8821ae_resume_tx_beacon(hw);
757 		break; }
758 	case HW_VAR_NAV_UPPER: {
759 		u32	us_nav_upper = *(u32 *)val;
760 
761 		if (us_nav_upper > HAL_92C_NAV_UPPER_UNIT * 0xFF) {
762 			rtl_dbg(rtlpriv, COMP_INIT, DBG_WARNING,
763 				"The setting value (0x%08X us) of NAV_UPPER is larger than (%d * 0xFF)!!!\n",
764 				us_nav_upper, HAL_92C_NAV_UPPER_UNIT);
765 			break;
766 		}
767 		rtl_write_byte(rtlpriv, REG_NAV_UPPER,
768 			       ((u8)((us_nav_upper +
769 				HAL_92C_NAV_UPPER_UNIT - 1) /
770 				HAL_92C_NAV_UPPER_UNIT)));
771 		break; }
772 	case HW_VAR_KEEP_ALIVE: {
773 		u8 array[2];
774 		array[0] = 0xff;
775 		array[1] = *((u8 *)val);
776 		rtl8821ae_fill_h2c_cmd(hw, H2C_8821AE_KEEP_ALIVE_CTRL, 2,
777 				       array);
778 		break; }
779 	default:
780 		rtl_dbg(rtlpriv, COMP_ERR, DBG_LOUD,
781 			"switch case %#x not processed\n", variable);
782 		break;
783 	}
784 }
785 
_rtl8821ae_llt_write(struct ieee80211_hw * hw,u32 address,u32 data)786 static bool _rtl8821ae_llt_write(struct ieee80211_hw *hw, u32 address, u32 data)
787 {
788 	struct rtl_priv *rtlpriv = rtl_priv(hw);
789 	bool status = true;
790 	long count = 0;
791 	u32 value = _LLT_INIT_ADDR(address) | _LLT_INIT_DATA(data) |
792 		    _LLT_OP(_LLT_WRITE_ACCESS);
793 
794 	rtl_write_dword(rtlpriv, REG_LLT_INIT, value);
795 
796 	do {
797 		value = rtl_read_dword(rtlpriv, REG_LLT_INIT);
798 		if (_LLT_NO_ACTIVE == _LLT_OP_VALUE(value))
799 			break;
800 
801 		if (count > POLLING_LLT_THRESHOLD) {
802 			pr_err("Failed to polling write LLT done at address %d!\n",
803 			       address);
804 			status = false;
805 			break;
806 		}
807 	} while (++count);
808 
809 	return status;
810 }
811 
_rtl8821ae_llt_table_init(struct ieee80211_hw * hw)812 static bool _rtl8821ae_llt_table_init(struct ieee80211_hw *hw)
813 {
814 	struct rtl_priv *rtlpriv = rtl_priv(hw);
815 	unsigned short i;
816 	u8 txpktbuf_bndy;
817 	u32 rqpn;
818 	u8 maxpage;
819 	bool status;
820 
821 	maxpage = 255;
822 	txpktbuf_bndy = 0xF7;
823 	rqpn = 0x80e60808;
824 
825 	rtl_write_byte(rtlpriv, REG_TRXFF_BNDY, txpktbuf_bndy);
826 	rtl_write_word(rtlpriv, REG_TRXFF_BNDY + 2, MAX_RX_DMA_BUFFER_SIZE - 1);
827 
828 	rtl_write_byte(rtlpriv, REG_TDECTRL + 1, txpktbuf_bndy);
829 
830 	rtl_write_byte(rtlpriv, REG_TXPKTBUF_BCNQ_BDNY, txpktbuf_bndy);
831 	rtl_write_byte(rtlpriv, REG_TXPKTBUF_MGQ_BDNY, txpktbuf_bndy);
832 
833 	rtl_write_byte(rtlpriv, REG_PBP, 0x31);
834 	rtl_write_byte(rtlpriv, REG_RX_DRVINFO_SZ, 0x4);
835 
836 	for (i = 0; i < (txpktbuf_bndy - 1); i++) {
837 		status = _rtl8821ae_llt_write(hw, i, i + 1);
838 		if (!status)
839 			return status;
840 	}
841 
842 	status = _rtl8821ae_llt_write(hw, (txpktbuf_bndy - 1), 0xFF);
843 	if (!status)
844 		return status;
845 
846 	for (i = txpktbuf_bndy; i < maxpage; i++) {
847 		status = _rtl8821ae_llt_write(hw, i, (i + 1));
848 		if (!status)
849 			return status;
850 	}
851 
852 	status = _rtl8821ae_llt_write(hw, maxpage, txpktbuf_bndy);
853 	if (!status)
854 		return status;
855 
856 	rtl_write_dword(rtlpriv, REG_RQPN, rqpn);
857 
858 	rtl_write_byte(rtlpriv, REG_RQPN_NPQ, 0x00);
859 
860 	return true;
861 }
862 
_rtl8821ae_gen_refresh_led_state(struct ieee80211_hw * hw)863 static void _rtl8821ae_gen_refresh_led_state(struct ieee80211_hw *hw)
864 {
865 	struct rtl_priv *rtlpriv = rtl_priv(hw);
866 	struct rtl_ps_ctl *ppsc = rtl_psc(rtl_priv(hw));
867 	enum rtl_led_pin pin0 = rtlpriv->ledctl.sw_led0;
868 	struct rtl_hal *rtlhal = rtl_hal(rtl_priv(hw));
869 
870 	if (rtlpriv->rtlhal.up_first_time)
871 		return;
872 
873 	if (ppsc->rfoff_reason == RF_CHANGE_BY_IPS)
874 		if (rtlhal->hw_type == HARDWARE_TYPE_RTL8812AE)
875 			rtl8812ae_sw_led_on(hw, pin0);
876 		else
877 			rtl8821ae_sw_led_on(hw, pin0);
878 	else if (ppsc->rfoff_reason == RF_CHANGE_BY_INIT)
879 		if (rtlhal->hw_type == HARDWARE_TYPE_RTL8812AE)
880 			rtl8812ae_sw_led_on(hw, pin0);
881 		else
882 			rtl8821ae_sw_led_on(hw, pin0);
883 	else
884 		if (rtlhal->hw_type == HARDWARE_TYPE_RTL8812AE)
885 			rtl8812ae_sw_led_off(hw, pin0);
886 		else
887 			rtl8821ae_sw_led_off(hw, pin0);
888 }
889 
_rtl8821ae_init_mac(struct ieee80211_hw * hw)890 static bool _rtl8821ae_init_mac(struct ieee80211_hw *hw)
891 {
892 	struct rtl_priv *rtlpriv = rtl_priv(hw);
893 	struct rtl_pci *rtlpci = rtl_pcidev(rtl_pcipriv(hw));
894 	struct rtl_hal *rtlhal = rtl_hal(rtl_priv(hw));
895 
896 	u8 bytetmp = 0;
897 	u16 wordtmp = 0;
898 	bool mac_func_enable = rtlhal->mac_func_enable;
899 
900 	rtl_write_byte(rtlpriv, REG_RSV_CTRL, 0x00);
901 
902 	/*Auto Power Down to CHIP-off State*/
903 	bytetmp = rtl_read_byte(rtlpriv, REG_APS_FSMCO + 1) & (~BIT(7));
904 	rtl_write_byte(rtlpriv, REG_APS_FSMCO + 1, bytetmp);
905 
906 	if (rtlhal->hw_type == HARDWARE_TYPE_RTL8812AE) {
907 		/* HW Power on sequence*/
908 		if (!rtl_hal_pwrseqcmdparsing(rtlpriv, PWR_CUT_ALL_MSK,
909 					      PWR_FAB_ALL_MSK, PWR_INTF_PCI_MSK,
910 					      RTL8812_NIC_ENABLE_FLOW)) {
911 			rtl_dbg(rtlpriv, COMP_INIT, DBG_LOUD,
912 				"init 8812 MAC Fail as power on failure\n");
913 			return false;
914 		}
915 	} else {
916 		/* HW Power on sequence */
917 		if (!rtl_hal_pwrseqcmdparsing(rtlpriv, PWR_CUT_A_MSK,
918 					      PWR_FAB_ALL_MSK, PWR_INTF_PCI_MSK,
919 					      RTL8821A_NIC_ENABLE_FLOW)){
920 			rtl_dbg(rtlpriv, COMP_INIT, DBG_LOUD,
921 				"init 8821 MAC Fail as power on failure\n");
922 			return false;
923 		}
924 	}
925 
926 	bytetmp = rtl_read_byte(rtlpriv, REG_APS_FSMCO) | BIT(4);
927 	rtl_write_byte(rtlpriv, REG_APS_FSMCO, bytetmp);
928 
929 	bytetmp = rtl_read_byte(rtlpriv, REG_CR);
930 	bytetmp = 0xff;
931 	rtl_write_byte(rtlpriv, REG_CR, bytetmp);
932 	mdelay(2);
933 
934 	bytetmp = 0xff;
935 	rtl_write_byte(rtlpriv, REG_HWSEQ_CTRL, bytetmp);
936 	mdelay(2);
937 
938 	if (rtlhal->hw_type == HARDWARE_TYPE_RTL8821AE) {
939 		bytetmp = rtl_read_byte(rtlpriv, REG_SYS_CFG + 3);
940 		if (bytetmp & BIT(0)) {
941 			bytetmp = rtl_read_byte(rtlpriv, 0x7c);
942 			bytetmp |= BIT(6);
943 			rtl_write_byte(rtlpriv, 0x7c, bytetmp);
944 		}
945 	}
946 
947 	bytetmp = rtl_read_byte(rtlpriv, REG_GPIO_MUXCFG + 1);
948 	bytetmp &= ~BIT(4);
949 	rtl_write_byte(rtlpriv, REG_GPIO_MUXCFG + 1, bytetmp);
950 
951 	rtl_write_word(rtlpriv, REG_CR, 0x2ff);
952 
953 	if (!mac_func_enable) {
954 		if (!_rtl8821ae_llt_table_init(hw))
955 			return false;
956 	}
957 
958 	rtl_write_dword(rtlpriv, REG_HISR, 0xffffffff);
959 	rtl_write_dword(rtlpriv, REG_HISRE, 0xffffffff);
960 
961 	/* Enable FW Beamformer Interrupt */
962 	bytetmp = rtl_read_byte(rtlpriv, REG_FWIMR + 3);
963 	rtl_write_byte(rtlpriv, REG_FWIMR + 3, bytetmp | BIT(6));
964 
965 	wordtmp = rtl_read_word(rtlpriv, REG_TRXDMA_CTRL);
966 	wordtmp &= 0xf;
967 	wordtmp |= 0xF5B1;
968 	rtl_write_word(rtlpriv, REG_TRXDMA_CTRL, wordtmp);
969 
970 	rtl_write_byte(rtlpriv, REG_FWHW_TXQ_CTRL + 1, 0x1F);
971 	rtl_write_dword(rtlpriv, REG_RCR, rtlpci->receive_config);
972 	rtl_write_word(rtlpriv, REG_RXFLTMAP2, 0xFFFF);
973 	/*low address*/
974 	rtl_write_dword(rtlpriv, REG_BCNQ_DESA,
975 			rtlpci->tx_ring[BEACON_QUEUE].dma & DMA_BIT_MASK(32));
976 	rtl_write_dword(rtlpriv, REG_MGQ_DESA,
977 			rtlpci->tx_ring[MGNT_QUEUE].dma & DMA_BIT_MASK(32));
978 	rtl_write_dword(rtlpriv, REG_VOQ_DESA,
979 			rtlpci->tx_ring[VO_QUEUE].dma & DMA_BIT_MASK(32));
980 	rtl_write_dword(rtlpriv, REG_VIQ_DESA,
981 			rtlpci->tx_ring[VI_QUEUE].dma & DMA_BIT_MASK(32));
982 	rtl_write_dword(rtlpriv, REG_BEQ_DESA,
983 			rtlpci->tx_ring[BE_QUEUE].dma & DMA_BIT_MASK(32));
984 	rtl_write_dword(rtlpriv, REG_BKQ_DESA,
985 			rtlpci->tx_ring[BK_QUEUE].dma & DMA_BIT_MASK(32));
986 	rtl_write_dword(rtlpriv, REG_HQ_DESA,
987 			rtlpci->tx_ring[HIGH_QUEUE].dma & DMA_BIT_MASK(32));
988 	rtl_write_dword(rtlpriv, REG_RX_DESA,
989 			rtlpci->rx_ring[RX_MPDU_QUEUE].dma & DMA_BIT_MASK(32));
990 
991 	rtl_write_byte(rtlpriv, REG_PCIE_CTRL_REG + 3, 0x77);
992 
993 	rtl_write_dword(rtlpriv, REG_INT_MIG, 0);
994 
995 	rtl_write_dword(rtlpriv, REG_MCUTST_1, 0);
996 
997 	rtl_write_byte(rtlpriv, REG_SECONDARY_CCA_CTRL, 0x3);
998 	_rtl8821ae_gen_refresh_led_state(hw);
999 
1000 	return true;
1001 }
1002 
_rtl8821ae_hw_configure(struct ieee80211_hw * hw)1003 static void _rtl8821ae_hw_configure(struct ieee80211_hw *hw)
1004 {
1005 	struct rtl_priv *rtlpriv = rtl_priv(hw);
1006 	struct rtl_pci *rtlpci = rtl_pcidev(rtl_pcipriv(hw));
1007 	u32 reg_rrsr;
1008 
1009 	reg_rrsr = RATE_ALL_CCK | RATE_ALL_OFDM_AG;
1010 
1011 	rtl_write_dword(rtlpriv, REG_RRSR, reg_rrsr);
1012 	/* ARFB table 9 for 11ac 5G 2SS */
1013 	rtl_write_dword(rtlpriv, REG_ARFR0 + 4, 0xfffff000);
1014 	/* ARFB table 10 for 11ac 5G 1SS */
1015 	rtl_write_dword(rtlpriv, REG_ARFR1 + 4, 0x003ff000);
1016 	/* ARFB table 11 for 11ac 24G 1SS */
1017 	rtl_write_dword(rtlpriv, REG_ARFR2, 0x00000015);
1018 	rtl_write_dword(rtlpriv, REG_ARFR2 + 4, 0x003ff000);
1019 	/* ARFB table 12 for 11ac 24G 1SS */
1020 	rtl_write_dword(rtlpriv, REG_ARFR3, 0x00000015);
1021 	rtl_write_dword(rtlpriv, REG_ARFR3 + 4, 0xffcff000);
1022 	/* 0x420[7] = 0 , enable retry AMPDU in new AMPD not singal MPDU. */
1023 	rtl_write_word(rtlpriv, REG_FWHW_TXQ_CTRL, 0x1F00);
1024 	rtl_write_byte(rtlpriv, REG_AMPDU_MAX_TIME, 0x70);
1025 
1026 	/*Set retry limit*/
1027 	rtl_write_word(rtlpriv, REG_RL, 0x0707);
1028 
1029 	/* Set Data / Response auto rate fallback retry count*/
1030 	rtl_write_dword(rtlpriv, REG_DARFRC, 0x01000000);
1031 	rtl_write_dword(rtlpriv, REG_DARFRC + 4, 0x07060504);
1032 	rtl_write_dword(rtlpriv, REG_RARFRC, 0x01000000);
1033 	rtl_write_dword(rtlpriv, REG_RARFRC + 4, 0x07060504);
1034 
1035 	rtlpci->reg_bcn_ctrl_val = 0x1d;
1036 	rtl_write_byte(rtlpriv, REG_BCN_CTRL, rtlpci->reg_bcn_ctrl_val);
1037 
1038 	/* TBTT prohibit hold time. Suggested by designer TimChen. */
1039 	rtl_write_byte(rtlpriv, REG_TBTT_PROHIBIT + 1, 0xff);
1040 
1041 	/* AGGR_BK_TIME Reg51A 0x16 */
1042 	rtl_write_word(rtlpriv, REG_NAV_PROT_LEN, 0x0040);
1043 
1044 	/*For Rx TP. Suggested by SD1 Richard. Added by tynli. 2010.04.12.*/
1045 	rtl_write_dword(rtlpriv, REG_FAST_EDCA_CTRL, 0x03086666);
1046 
1047 	rtl_write_byte(rtlpriv, REG_HT_SINGLE_AMPDU, 0x80);
1048 	rtl_write_byte(rtlpriv, REG_RX_PKT_LIMIT, 0x20);
1049 	rtl_write_word(rtlpriv, REG_MAX_AGGR_NUM, 0x1F1F);
1050 }
1051 
_rtl8821ae_mdio_read(struct rtl_priv * rtlpriv,u8 addr)1052 static u16 _rtl8821ae_mdio_read(struct rtl_priv *rtlpriv, u8 addr)
1053 {
1054 	u16 ret = 0;
1055 	u8 tmp = 0, count = 0;
1056 
1057 	rtl_write_byte(rtlpriv, REG_MDIO_CTL, addr | BIT(6));
1058 	tmp = rtl_read_byte(rtlpriv, REG_MDIO_CTL) & BIT(6);
1059 	count = 0;
1060 	while (tmp && count < 20) {
1061 		udelay(10);
1062 		tmp = rtl_read_byte(rtlpriv, REG_MDIO_CTL) & BIT(6);
1063 		count++;
1064 	}
1065 	if (0 == tmp)
1066 		ret = rtl_read_word(rtlpriv, REG_MDIO_RDATA);
1067 
1068 	return ret;
1069 }
1070 
_rtl8821ae_mdio_write(struct rtl_priv * rtlpriv,u8 addr,u16 data)1071 static void _rtl8821ae_mdio_write(struct rtl_priv *rtlpriv, u8 addr, u16 data)
1072 {
1073 	u8 tmp = 0, count = 0;
1074 
1075 	rtl_write_word(rtlpriv, REG_MDIO_WDATA, data);
1076 	rtl_write_byte(rtlpriv, REG_MDIO_CTL, addr | BIT(5));
1077 	tmp = rtl_read_byte(rtlpriv, REG_MDIO_CTL) & BIT(5);
1078 	count = 0;
1079 	while (tmp && count < 20) {
1080 		udelay(10);
1081 		tmp = rtl_read_byte(rtlpriv, REG_MDIO_CTL) & BIT(5);
1082 		count++;
1083 	}
1084 }
1085 
_rtl8821ae_dbi_read(struct rtl_priv * rtlpriv,u16 addr)1086 static u8 _rtl8821ae_dbi_read(struct rtl_priv *rtlpriv, u16 addr)
1087 {
1088 	u16 read_addr = addr & 0xfffc;
1089 	u8 tmp = 0, count = 0, ret = 0;
1090 
1091 	rtl_write_word(rtlpriv, REG_DBI_ADDR, read_addr);
1092 	rtl_write_byte(rtlpriv, REG_DBI_FLAG, 0x2);
1093 	tmp = rtl_read_byte(rtlpriv, REG_DBI_FLAG);
1094 	count = 0;
1095 	while (tmp && count < 20) {
1096 		udelay(10);
1097 		tmp = rtl_read_byte(rtlpriv, REG_DBI_FLAG);
1098 		count++;
1099 	}
1100 	if (0 == tmp) {
1101 		read_addr = REG_DBI_RDATA + addr % 4;
1102 		ret = rtl_read_byte(rtlpriv, read_addr);
1103 	}
1104 	return ret;
1105 }
1106 
_rtl8821ae_dbi_write(struct rtl_priv * rtlpriv,u16 addr,u8 data)1107 static void _rtl8821ae_dbi_write(struct rtl_priv *rtlpriv, u16 addr, u8 data)
1108 {
1109 	u8 tmp = 0, count = 0;
1110 	u16 write_addr, remainder = addr % 4;
1111 
1112 	write_addr = REG_DBI_WDATA + remainder;
1113 	rtl_write_byte(rtlpriv, write_addr, data);
1114 
1115 	write_addr = (addr & 0xfffc) | (BIT(0) << (remainder + 12));
1116 	rtl_write_word(rtlpriv, REG_DBI_ADDR, write_addr);
1117 
1118 	rtl_write_byte(rtlpriv, REG_DBI_FLAG, 0x1);
1119 
1120 	tmp = rtl_read_byte(rtlpriv, REG_DBI_FLAG);
1121 	count = 0;
1122 	while (tmp && count < 20) {
1123 		udelay(10);
1124 		tmp = rtl_read_byte(rtlpriv, REG_DBI_FLAG);
1125 		count++;
1126 	}
1127 }
1128 
_rtl8821ae_enable_aspm_back_door(struct ieee80211_hw * hw)1129 static void _rtl8821ae_enable_aspm_back_door(struct ieee80211_hw *hw)
1130 {
1131 	struct rtl_priv *rtlpriv = rtl_priv(hw);
1132 	struct rtl_hal *rtlhal = rtl_hal(rtl_priv(hw));
1133 	u8 tmp;
1134 
1135 	if (rtlhal->hw_type == HARDWARE_TYPE_RTL8821AE) {
1136 		if (_rtl8821ae_mdio_read(rtlpriv, 0x04) != 0x8544)
1137 			_rtl8821ae_mdio_write(rtlpriv, 0x04, 0x8544);
1138 
1139 		if (_rtl8821ae_mdio_read(rtlpriv, 0x0b) != 0x0070)
1140 			_rtl8821ae_mdio_write(rtlpriv, 0x0b, 0x0070);
1141 	}
1142 
1143 	tmp = _rtl8821ae_dbi_read(rtlpriv, 0x70f);
1144 	_rtl8821ae_dbi_write(rtlpriv, 0x70f, tmp | BIT(7) |
1145 			     ASPM_L1_LATENCY << 3);
1146 
1147 	tmp = _rtl8821ae_dbi_read(rtlpriv, 0x719);
1148 	_rtl8821ae_dbi_write(rtlpriv, 0x719, tmp | BIT(3) | BIT(4));
1149 
1150 	if (rtlhal->hw_type == HARDWARE_TYPE_RTL8812AE) {
1151 		tmp  = _rtl8821ae_dbi_read(rtlpriv, 0x718);
1152 		_rtl8821ae_dbi_write(rtlpriv, 0x718, tmp|BIT(4));
1153 	}
1154 }
1155 
rtl8821ae_enable_hw_security_config(struct ieee80211_hw * hw)1156 void rtl8821ae_enable_hw_security_config(struct ieee80211_hw *hw)
1157 {
1158 	struct rtl_priv *rtlpriv = rtl_priv(hw);
1159 	u8 sec_reg_value;
1160 	u8 tmp;
1161 
1162 	rtl_dbg(rtlpriv, COMP_INIT, DBG_DMESG,
1163 		"PairwiseEncAlgorithm = %d GroupEncAlgorithm = %d\n",
1164 		rtlpriv->sec.pairwise_enc_algorithm,
1165 		rtlpriv->sec.group_enc_algorithm);
1166 
1167 	if (rtlpriv->cfg->mod_params->sw_crypto || rtlpriv->sec.use_sw_sec) {
1168 		rtl_dbg(rtlpriv, COMP_SEC, DBG_DMESG,
1169 			"not open hw encryption\n");
1170 		return;
1171 	}
1172 
1173 	sec_reg_value = SCR_TXENCENABLE | SCR_RXDECENABLE;
1174 
1175 	if (rtlpriv->sec.use_defaultkey) {
1176 		sec_reg_value |= SCR_TXUSEDK;
1177 		sec_reg_value |= SCR_RXUSEDK;
1178 	}
1179 
1180 	sec_reg_value |= (SCR_RXBCUSEDK | SCR_TXBCUSEDK);
1181 
1182 	tmp = rtl_read_byte(rtlpriv, REG_CR + 1);
1183 	rtl_write_byte(rtlpriv, REG_CR + 1, tmp | BIT(1));
1184 
1185 	rtl_dbg(rtlpriv, COMP_SEC, DBG_DMESG,
1186 		"The SECR-value %x\n", sec_reg_value);
1187 
1188 	rtlpriv->cfg->ops->set_hw_reg(hw, HW_VAR_WPA_CONFIG, &sec_reg_value);
1189 }
1190 
1191 /* Static MacID Mapping (cf. Used in MacIdDoStaticMapping) ---------- */
1192 #define MAC_ID_STATIC_FOR_DEFAULT_PORT				0
1193 #define MAC_ID_STATIC_FOR_BROADCAST_MULTICAST		1
1194 #define MAC_ID_STATIC_FOR_BT_CLIENT_START				2
1195 #define MAC_ID_STATIC_FOR_BT_CLIENT_END				3
1196 /* ----------------------------------------------------------- */
1197 
rtl8821ae_macid_initialize_mediastatus(struct ieee80211_hw * hw)1198 static void rtl8821ae_macid_initialize_mediastatus(struct ieee80211_hw *hw)
1199 {
1200 	struct rtl_priv *rtlpriv = rtl_priv(hw);
1201 	u8	media_rpt[4] = {RT_MEDIA_CONNECT, 1,
1202 		MAC_ID_STATIC_FOR_BROADCAST_MULTICAST,
1203 		MAC_ID_STATIC_FOR_BT_CLIENT_END};
1204 
1205 	rtlpriv->cfg->ops->set_hw_reg(hw,
1206 		HW_VAR_H2C_FW_MEDIASTATUSRPT, media_rpt);
1207 
1208 	rtl_dbg(rtlpriv, COMP_INIT, DBG_LOUD,
1209 		"Initialize MacId media status: from %d to %d\n",
1210 		MAC_ID_STATIC_FOR_BROADCAST_MULTICAST,
1211 		MAC_ID_STATIC_FOR_BT_CLIENT_END);
1212 }
1213 
_rtl8821ae_check_pcie_dma_hang(struct ieee80211_hw * hw)1214 static bool _rtl8821ae_check_pcie_dma_hang(struct ieee80211_hw *hw)
1215 {
1216 	struct rtl_priv *rtlpriv = rtl_priv(hw);
1217 	u8 tmp;
1218 
1219 	/* write reg 0x350 Bit[26]=1. Enable debug port. */
1220 	tmp = rtl_read_byte(rtlpriv, REG_DBI_CTRL + 3);
1221 	if (!(tmp & BIT(2))) {
1222 		rtl_write_byte(rtlpriv, REG_DBI_CTRL + 3, (tmp | BIT(2)));
1223 		mdelay(100);
1224 	}
1225 
1226 	/* read reg 0x350 Bit[25] if 1 : RX hang */
1227 	/* read reg 0x350 Bit[24] if 1 : TX hang */
1228 	tmp = rtl_read_byte(rtlpriv, REG_DBI_CTRL + 3);
1229 	if ((tmp & BIT(0)) || (tmp & BIT(1))) {
1230 		rtl_dbg(rtlpriv, COMP_INIT, DBG_LOUD,
1231 			"CheckPcieDMAHang8821AE(): true! Reset PCIE DMA!\n");
1232 		return true;
1233 	} else {
1234 		return false;
1235 	}
1236 }
1237 
_rtl8821ae_reset_pcie_interface_dma(struct ieee80211_hw * hw,bool mac_power_on,bool in_watchdog)1238 static bool _rtl8821ae_reset_pcie_interface_dma(struct ieee80211_hw *hw,
1239 					 bool mac_power_on,
1240 					 bool in_watchdog)
1241 {
1242 	struct rtl_priv *rtlpriv = rtl_priv(hw);
1243 	struct rtl_hal *rtlhal = rtl_hal(rtl_priv(hw));
1244 	u8 tmp;
1245 	bool release_mac_rx_pause;
1246 	u8 backup_pcie_dma_pause;
1247 
1248 	rtl_dbg(rtlpriv, COMP_INIT, DBG_LOUD, "\n");
1249 
1250 	/* 1. Disable register write lock. 0x1c[1] = 0 */
1251 	tmp = rtl_read_byte(rtlpriv, REG_RSV_CTRL);
1252 	tmp &= ~(BIT(1));
1253 	rtl_write_byte(rtlpriv, REG_RSV_CTRL, tmp);
1254 	if (rtlhal->hw_type == HARDWARE_TYPE_RTL8821AE) {
1255 		/* write 0xCC bit[2] = 1'b1 */
1256 		tmp = rtl_read_byte(rtlpriv, REG_PMC_DBG_CTRL2);
1257 		tmp |= BIT(2);
1258 		rtl_write_byte(rtlpriv, REG_PMC_DBG_CTRL2, tmp);
1259 	}
1260 
1261 	/* 2. Check and pause TRX DMA */
1262 	/* write 0x284 bit[18] = 1'b1 */
1263 	/* write 0x301 = 0xFF */
1264 	tmp = rtl_read_byte(rtlpriv, REG_RXDMA_CONTROL);
1265 	if (tmp & BIT(2)) {
1266 		/* Already pause before the function for another purpose. */
1267 		release_mac_rx_pause = false;
1268 	} else {
1269 		rtl_write_byte(rtlpriv, REG_RXDMA_CONTROL, (tmp | BIT(2)));
1270 		release_mac_rx_pause = true;
1271 	}
1272 	backup_pcie_dma_pause = rtl_read_byte(rtlpriv, REG_PCIE_CTRL_REG + 1);
1273 	if (backup_pcie_dma_pause != 0xFF)
1274 		rtl_write_byte(rtlpriv, REG_PCIE_CTRL_REG + 1, 0xFF);
1275 
1276 	if (mac_power_on) {
1277 		/* 3. reset TRX function */
1278 		/* write 0x100 = 0x00 */
1279 		rtl_write_byte(rtlpriv, REG_CR, 0);
1280 	}
1281 
1282 	/* 4. Reset PCIe DMA. 0x3[0] = 0 */
1283 	tmp = rtl_read_byte(rtlpriv, REG_SYS_FUNC_EN + 1);
1284 	tmp &= ~(BIT(0));
1285 	rtl_write_byte(rtlpriv, REG_SYS_FUNC_EN + 1, tmp);
1286 
1287 	/* 5. Enable PCIe DMA. 0x3[0] = 1 */
1288 	tmp = rtl_read_byte(rtlpriv, REG_SYS_FUNC_EN + 1);
1289 	tmp |= BIT(0);
1290 	rtl_write_byte(rtlpriv, REG_SYS_FUNC_EN + 1, tmp);
1291 
1292 	if (mac_power_on) {
1293 		/* 6. enable TRX function */
1294 		/* write 0x100 = 0xFF */
1295 		rtl_write_byte(rtlpriv, REG_CR, 0xFF);
1296 
1297 		/* We should init LLT & RQPN and
1298 		 * prepare Tx/Rx descriptor address later
1299 		 * because MAC function is reset.*/
1300 	}
1301 
1302 	/* 7. Restore PCIe autoload down bit */
1303 	/* 8812AE does not have the definition. */
1304 	if (rtlhal->hw_type == HARDWARE_TYPE_RTL8821AE) {
1305 		/* write 0xF8 bit[17] = 1'b1 */
1306 		tmp = rtl_read_byte(rtlpriv, REG_MAC_PHY_CTRL_NORMAL + 2);
1307 		tmp |= BIT(1);
1308 		rtl_write_byte(rtlpriv, REG_MAC_PHY_CTRL_NORMAL + 2, tmp);
1309 	}
1310 
1311 	/* In MAC power on state, BB and RF may be in ON state,
1312 	 * if we release TRx DMA here.
1313 	 * it will cause packets to be started to Tx/Rx,
1314 	 * so we release Tx/Rx DMA later.*/
1315 	if (!mac_power_on/* || in_watchdog*/) {
1316 		/* 8. release TRX DMA */
1317 		/* write 0x284 bit[18] = 1'b0 */
1318 		/* write 0x301 = 0x00 */
1319 		if (release_mac_rx_pause) {
1320 			tmp = rtl_read_byte(rtlpriv, REG_RXDMA_CONTROL);
1321 			rtl_write_byte(rtlpriv, REG_RXDMA_CONTROL,
1322 				       tmp & (~BIT(2)));
1323 		}
1324 		rtl_write_byte(rtlpriv, REG_PCIE_CTRL_REG + 1,
1325 			       backup_pcie_dma_pause);
1326 	}
1327 
1328 	if (rtlhal->hw_type == HARDWARE_TYPE_RTL8821AE) {
1329 		/* 9. lock system register */
1330 		/* write 0xCC bit[2] = 1'b0 */
1331 		tmp = rtl_read_byte(rtlpriv, REG_PMC_DBG_CTRL2);
1332 		tmp &= ~(BIT(2));
1333 		rtl_write_byte(rtlpriv, REG_PMC_DBG_CTRL2, tmp);
1334 	}
1335 	return true;
1336 }
1337 
_rtl8821ae_get_wakeup_reason(struct ieee80211_hw * hw)1338 static void _rtl8821ae_get_wakeup_reason(struct ieee80211_hw *hw)
1339 {
1340 	struct rtl_priv *rtlpriv = rtl_priv(hw);
1341 	struct rtl_hal *rtlhal = rtl_hal(rtl_priv(hw));
1342 	struct rtl_ps_ctl *ppsc = rtl_psc(rtlpriv);
1343 	u8 fw_reason = 0;
1344 
1345 	fw_reason = rtl_read_byte(rtlpriv, REG_MCUTST_WOWLAN);
1346 
1347 	rtl_dbg(rtlpriv, COMP_POWER, DBG_LOUD, "WOL Read 0x1c7 = %02X\n",
1348 		fw_reason);
1349 
1350 	ppsc->wakeup_reason = 0;
1351 
1352 	rtlhal->last_suspend_sec = ktime_get_real_seconds();
1353 
1354 	switch (fw_reason) {
1355 	case FW_WOW_V2_PTK_UPDATE_EVENT:
1356 		ppsc->wakeup_reason = WOL_REASON_PTK_UPDATE;
1357 		rtl_dbg(rtlpriv, COMP_POWER, DBG_DMESG,
1358 			"It's a WOL PTK Key update event!\n");
1359 		break;
1360 	case FW_WOW_V2_GTK_UPDATE_EVENT:
1361 		ppsc->wakeup_reason = WOL_REASON_GTK_UPDATE;
1362 		rtl_dbg(rtlpriv, COMP_POWER, DBG_DMESG,
1363 			"It's a WOL GTK Key update event!\n");
1364 		break;
1365 	case FW_WOW_V2_DISASSOC_EVENT:
1366 		ppsc->wakeup_reason = WOL_REASON_DISASSOC;
1367 		rtl_dbg(rtlpriv, COMP_POWER, DBG_DMESG,
1368 			"It's a disassociation event!\n");
1369 		break;
1370 	case FW_WOW_V2_DEAUTH_EVENT:
1371 		ppsc->wakeup_reason = WOL_REASON_DEAUTH;
1372 		rtl_dbg(rtlpriv, COMP_POWER, DBG_DMESG,
1373 			"It's a deauth event!\n");
1374 		break;
1375 	case FW_WOW_V2_FW_DISCONNECT_EVENT:
1376 		ppsc->wakeup_reason = WOL_REASON_AP_LOST;
1377 		rtl_dbg(rtlpriv, COMP_POWER, DBG_DMESG,
1378 			"It's a Fw disconnect decision (AP lost) event!\n");
1379 	break;
1380 	case FW_WOW_V2_MAGIC_PKT_EVENT:
1381 		ppsc->wakeup_reason = WOL_REASON_MAGIC_PKT;
1382 		rtl_dbg(rtlpriv, COMP_POWER, DBG_DMESG,
1383 			"It's a magic packet event!\n");
1384 		break;
1385 	case FW_WOW_V2_UNICAST_PKT_EVENT:
1386 		ppsc->wakeup_reason = WOL_REASON_UNICAST_PKT;
1387 		rtl_dbg(rtlpriv, COMP_POWER, DBG_DMESG,
1388 			"It's an unicast packet event!\n");
1389 		break;
1390 	case FW_WOW_V2_PATTERN_PKT_EVENT:
1391 		ppsc->wakeup_reason = WOL_REASON_PATTERN_PKT;
1392 		rtl_dbg(rtlpriv, COMP_POWER, DBG_DMESG,
1393 			"It's a pattern match event!\n");
1394 		break;
1395 	case FW_WOW_V2_RTD3_SSID_MATCH_EVENT:
1396 		ppsc->wakeup_reason = WOL_REASON_RTD3_SSID_MATCH;
1397 		rtl_dbg(rtlpriv, COMP_POWER, DBG_DMESG,
1398 			"It's an RTD3 Ssid match event!\n");
1399 		break;
1400 	case FW_WOW_V2_REALWOW_V2_WAKEUPPKT:
1401 		ppsc->wakeup_reason = WOL_REASON_REALWOW_V2_WAKEUPPKT;
1402 		rtl_dbg(rtlpriv, COMP_POWER, DBG_DMESG,
1403 			"It's an RealWoW wake packet event!\n");
1404 		break;
1405 	case FW_WOW_V2_REALWOW_V2_ACKLOST:
1406 		ppsc->wakeup_reason = WOL_REASON_REALWOW_V2_ACKLOST;
1407 		rtl_dbg(rtlpriv, COMP_POWER, DBG_DMESG,
1408 			"It's an RealWoW ack lost event!\n");
1409 		break;
1410 	default:
1411 		rtl_dbg(rtlpriv, COMP_POWER, DBG_DMESG,
1412 			"WOL Read 0x1c7 = %02X, Unknown reason!\n",
1413 			fw_reason);
1414 		break;
1415 	}
1416 }
1417 
_rtl8821ae_init_trx_desc_hw_address(struct ieee80211_hw * hw)1418 static void _rtl8821ae_init_trx_desc_hw_address(struct ieee80211_hw *hw)
1419 {
1420 	struct rtl_priv *rtlpriv = rtl_priv(hw);
1421 	struct rtl_pci *rtlpci = rtl_pcidev(rtl_pcipriv(hw));
1422 
1423 	/*low address*/
1424 	rtl_write_dword(rtlpriv, REG_BCNQ_DESA,
1425 			rtlpci->tx_ring[BEACON_QUEUE].dma & DMA_BIT_MASK(32));
1426 	rtl_write_dword(rtlpriv, REG_MGQ_DESA,
1427 			rtlpci->tx_ring[MGNT_QUEUE].dma & DMA_BIT_MASK(32));
1428 	rtl_write_dword(rtlpriv, REG_VOQ_DESA,
1429 			rtlpci->tx_ring[VO_QUEUE].dma & DMA_BIT_MASK(32));
1430 	rtl_write_dword(rtlpriv, REG_VIQ_DESA,
1431 			rtlpci->tx_ring[VI_QUEUE].dma & DMA_BIT_MASK(32));
1432 	rtl_write_dword(rtlpriv, REG_BEQ_DESA,
1433 			rtlpci->tx_ring[BE_QUEUE].dma & DMA_BIT_MASK(32));
1434 	rtl_write_dword(rtlpriv, REG_BKQ_DESA,
1435 			rtlpci->tx_ring[BK_QUEUE].dma & DMA_BIT_MASK(32));
1436 	rtl_write_dword(rtlpriv, REG_HQ_DESA,
1437 			rtlpci->tx_ring[HIGH_QUEUE].dma & DMA_BIT_MASK(32));
1438 	rtl_write_dword(rtlpriv, REG_RX_DESA,
1439 			rtlpci->rx_ring[RX_MPDU_QUEUE].dma & DMA_BIT_MASK(32));
1440 }
1441 
_rtl8821ae_init_llt_table(struct ieee80211_hw * hw,u32 boundary)1442 static bool _rtl8821ae_init_llt_table(struct ieee80211_hw *hw, u32 boundary)
1443 {
1444 	bool status = true;
1445 	u32 i;
1446 	u32 txpktbuf_bndy = boundary;
1447 	u32 last_entry_of_txpktbuf = LAST_ENTRY_OF_TX_PKT_BUFFER;
1448 
1449 	for (i = 0 ; i < (txpktbuf_bndy - 1) ; i++) {
1450 		status = _rtl8821ae_llt_write(hw, i , i + 1);
1451 		if (!status)
1452 			return status;
1453 	}
1454 
1455 	status = _rtl8821ae_llt_write(hw, (txpktbuf_bndy - 1), 0xFF);
1456 	if (!status)
1457 		return status;
1458 
1459 	for (i = txpktbuf_bndy ; i < last_entry_of_txpktbuf ; i++) {
1460 		status = _rtl8821ae_llt_write(hw, i, (i + 1));
1461 		if (!status)
1462 			return status;
1463 	}
1464 
1465 	return _rtl8821ae_llt_write(hw, last_entry_of_txpktbuf, txpktbuf_bndy);
1466 }
1467 
_rtl8821ae_dynamic_rqpn(struct ieee80211_hw * hw,u32 boundary,u16 npq_rqpn_value,u32 rqpn_val)1468 static bool _rtl8821ae_dynamic_rqpn(struct ieee80211_hw *hw, u32 boundary,
1469 			     u16 npq_rqpn_value, u32 rqpn_val)
1470 {
1471 	struct rtl_priv *rtlpriv = rtl_priv(hw);
1472 	u8 tmp;
1473 	bool ret = true;
1474 	u16 count = 0, tmp16;
1475 	bool support_remote_wakeup;
1476 
1477 	rtlpriv->cfg->ops->get_hw_reg(hw, HAL_DEF_WOWLAN,
1478 				      (u8 *)(&support_remote_wakeup));
1479 
1480 	rtl_dbg(rtlpriv, COMP_INIT, DBG_LOUD,
1481 		"boundary=%#X, NPQ_RQPNValue=%#X, RQPNValue=%#X\n",
1482 		boundary, npq_rqpn_value, rqpn_val);
1483 
1484 	/* stop PCIe DMA
1485 	 * 1. 0x301[7:0] = 0xFE */
1486 	rtl_write_byte(rtlpriv, REG_PCIE_CTRL_REG + 1, 0xFE);
1487 
1488 	/* wait TXFF empty
1489 	 * 2. polling till 0x41A[15:0]=0x07FF */
1490 	tmp16 = rtl_read_word(rtlpriv, REG_TXPKT_EMPTY);
1491 	while ((tmp16 & 0x07FF) != 0x07FF) {
1492 		udelay(100);
1493 		tmp16 = rtl_read_word(rtlpriv, REG_TXPKT_EMPTY);
1494 		count++;
1495 		if ((count % 200) == 0) {
1496 			rtl_dbg(rtlpriv, COMP_INIT, DBG_LOUD,
1497 				"Tx queue is not empty for 20ms!\n");
1498 		}
1499 		if (count >= 1000) {
1500 			rtl_dbg(rtlpriv, COMP_INIT, DBG_LOUD,
1501 				"Wait for Tx FIFO empty timeout!\n");
1502 			break;
1503 		}
1504 	}
1505 
1506 	/* TX pause
1507 	 * 3. reg 0x522=0xFF */
1508 	rtl_write_byte(rtlpriv, REG_TXPAUSE, 0xFF);
1509 
1510 	/* Wait TX State Machine OK
1511 	 * 4. polling till reg 0x5FB~0x5F8 = 0x00000000 for 50ms */
1512 	count = 0;
1513 	while (rtl_read_byte(rtlpriv, REG_SCH_TXCMD) != 0) {
1514 		udelay(100);
1515 		count++;
1516 		if (count >= 500) {
1517 			rtl_dbg(rtlpriv, COMP_INIT, DBG_LOUD,
1518 				"Wait for TX State Machine ready timeout !!\n");
1519 			break;
1520 		}
1521 	}
1522 
1523 	/* stop RX DMA path
1524 	 * 5.	0x284[18] = 1
1525 	 * 6.	wait till 0x284[17] == 1
1526 	 * wait RX DMA idle */
1527 	count = 0;
1528 	tmp = rtl_read_byte(rtlpriv, REG_RXDMA_CONTROL);
1529 	rtl_write_byte(rtlpriv, REG_RXDMA_CONTROL, (tmp | BIT(2)));
1530 	do {
1531 		tmp = rtl_read_byte(rtlpriv, REG_RXDMA_CONTROL);
1532 		udelay(10);
1533 		count++;
1534 	} while (!(tmp & BIT(1)) && count < 100);
1535 
1536 	rtl_dbg(rtlpriv, COMP_INIT, DBG_LOUD,
1537 		"Wait until Rx DMA Idle. count=%d REG[0x286]=0x%x\n",
1538 		count, tmp);
1539 
1540 	/* reset BB
1541 	 * 7.	0x02 [0] = 0 */
1542 	tmp = rtl_read_byte(rtlpriv, REG_SYS_FUNC_EN);
1543 	tmp &= ~(BIT(0));
1544 	rtl_write_byte(rtlpriv, REG_SYS_FUNC_EN, tmp);
1545 
1546 	/* Reset TRX MAC
1547 	 * 8.	 0x100 = 0x00
1548 	 * Delay (1ms) */
1549 	rtl_write_byte(rtlpriv, REG_CR, 0x00);
1550 	udelay(1000);
1551 
1552 	/* Disable MAC Security Engine
1553 	 * 9.	0x100 bit[9]=0 */
1554 	tmp = rtl_read_byte(rtlpriv, REG_CR + 1);
1555 	tmp &= ~(BIT(1));
1556 	rtl_write_byte(rtlpriv, REG_CR + 1, tmp);
1557 
1558 	/* To avoid DD-Tim Circuit hang
1559 	 * 10.	0x553 bit[5]=1 */
1560 	tmp = rtl_read_byte(rtlpriv, REG_DUAL_TSF_RST);
1561 	rtl_write_byte(rtlpriv, REG_DUAL_TSF_RST, (tmp | BIT(5)));
1562 
1563 	/* Enable MAC Security Engine
1564 	 * 11.	0x100 bit[9]=1 */
1565 	tmp = rtl_read_byte(rtlpriv, REG_CR + 1);
1566 	rtl_write_byte(rtlpriv, REG_CR + 1, (tmp | BIT(1)));
1567 
1568 	/* Enable TRX MAC
1569 	 * 12.	 0x100 = 0xFF
1570 	 *	Delay (1ms) */
1571 	rtl_write_byte(rtlpriv, REG_CR, 0xFF);
1572 	udelay(1000);
1573 
1574 	/* Enable BB
1575 	 * 13.	0x02 [0] = 1 */
1576 	tmp = rtl_read_byte(rtlpriv, REG_SYS_FUNC_EN);
1577 	rtl_write_byte(rtlpriv, REG_SYS_FUNC_EN, (tmp | BIT(0)));
1578 
1579 	/* beacon setting
1580 	 * 14,15. set beacon head page (reg 0x209 and 0x424) */
1581 	rtl_write_byte(rtlpriv, REG_TDECTRL + 1, (u8)boundary);
1582 	rtl_write_byte(rtlpriv, REG_TXPKTBUF_BCNQ_BDNY, (u8)boundary);
1583 	rtl_write_byte(rtlpriv, REG_TXPKTBUF_MGQ_BDNY, (u8)boundary);
1584 
1585 	/* 16.	WMAC_LBK_BF_HD 0x45D[7:0]
1586 	 * WMAC_LBK_BF_HD */
1587 	rtl_write_byte(rtlpriv, REG_TXPKTBUF_WMAC_LBK_BF_HD,
1588 		       (u8)boundary);
1589 
1590 	rtl_write_word(rtlpriv, REG_TRXFF_BNDY, boundary);
1591 
1592 	/* init LLT
1593 	 * 17. init LLT */
1594 	if (!_rtl8821ae_init_llt_table(hw, boundary)) {
1595 		rtl_dbg(rtlpriv, COMP_INIT, DBG_WARNING,
1596 			"Failed to init LLT table!\n");
1597 		return false;
1598 	}
1599 
1600 	/* reallocate RQPN
1601 	 * 18. reallocate RQPN and init LLT */
1602 	rtl_write_word(rtlpriv, REG_RQPN_NPQ, npq_rqpn_value);
1603 	rtl_write_dword(rtlpriv, REG_RQPN, rqpn_val);
1604 
1605 	/* release Tx pause
1606 	 * 19. 0x522=0x00 */
1607 	rtl_write_byte(rtlpriv, REG_TXPAUSE, 0x00);
1608 
1609 	/* enable PCIE DMA
1610 	 * 20. 0x301[7:0] = 0x00
1611 	 * 21. 0x284[18] = 0 */
1612 	rtl_write_byte(rtlpriv, REG_PCIE_CTRL_REG + 1, 0x00);
1613 	tmp = rtl_read_byte(rtlpriv, REG_RXDMA_CONTROL);
1614 	rtl_write_byte(rtlpriv, REG_RXDMA_CONTROL, (tmp&~BIT(2)));
1615 
1616 	rtl_dbg(rtlpriv, COMP_INIT, DBG_LOUD, "End.\n");
1617 	return ret;
1618 }
1619 
_rtl8821ae_simple_initialize_adapter(struct ieee80211_hw * hw)1620 static void _rtl8821ae_simple_initialize_adapter(struct ieee80211_hw *hw)
1621 {
1622 	struct rtl_priv *rtlpriv = rtl_priv(hw);
1623 	struct rtl_hal *rtlhal = rtl_hal(rtlpriv);
1624 	struct rtl_ps_ctl *ppsc = rtl_psc(rtlpriv);
1625 
1626 #if (USE_SPECIFIC_FW_TO_SUPPORT_WOWLAN == 1)
1627 	/* Re-download normal Fw. */
1628 	rtl8821ae_set_fw_related_for_wowlan(hw, false);
1629 #endif
1630 
1631 	/* Re-Initialize LLT table. */
1632 	if (rtlhal->re_init_llt_table) {
1633 		u32 rqpn = 0x80e70808;
1634 		u8 rqpn_npq = 0, boundary = 0xF8;
1635 		if (rtlhal->hw_type == HARDWARE_TYPE_RTL8812AE) {
1636 			rqpn = 0x80e90808;
1637 			boundary = 0xFA;
1638 		}
1639 		if (_rtl8821ae_dynamic_rqpn(hw, boundary, rqpn_npq, rqpn))
1640 			rtlhal->re_init_llt_table = false;
1641 	}
1642 
1643 	ppsc->rfpwr_state = ERFON;
1644 }
1645 
_rtl8821ae_enable_l1off(struct ieee80211_hw * hw)1646 static void _rtl8821ae_enable_l1off(struct ieee80211_hw *hw)
1647 {
1648 	u8 tmp  = 0;
1649 	struct rtl_priv *rtlpriv = rtl_priv(hw);
1650 
1651 	rtl_dbg(rtlpriv, COMP_INIT, DBG_LOUD, "--->\n");
1652 
1653 	tmp = _rtl8821ae_dbi_read(rtlpriv, 0x160);
1654 	if (!(tmp & (BIT(2) | BIT(3)))) {
1655 		rtl_dbg(rtlpriv, COMP_POWER | COMP_INIT, DBG_LOUD,
1656 			"0x160(%#x)return!!\n", tmp);
1657 		return;
1658 	}
1659 
1660 	tmp = _rtl8821ae_mdio_read(rtlpriv, 0x1b);
1661 	_rtl8821ae_mdio_write(rtlpriv, 0x1b, (tmp | BIT(4)));
1662 
1663 	tmp = _rtl8821ae_dbi_read(rtlpriv, 0x718);
1664 	_rtl8821ae_dbi_write(rtlpriv, 0x718, tmp | BIT(5));
1665 
1666 	rtl_dbg(rtlpriv, COMP_INIT, DBG_LOUD, "<---\n");
1667 }
1668 
_rtl8821ae_enable_ltr(struct ieee80211_hw * hw)1669 static void _rtl8821ae_enable_ltr(struct ieee80211_hw *hw)
1670 {
1671 	u8 tmp  = 0;
1672 	struct rtl_priv *rtlpriv = rtl_priv(hw);
1673 
1674 	rtl_dbg(rtlpriv, COMP_INIT, DBG_LOUD, "--->\n");
1675 
1676 	/* Check 0x98[10] */
1677 	tmp = _rtl8821ae_dbi_read(rtlpriv, 0x99);
1678 	if (!(tmp & BIT(2))) {
1679 		rtl_dbg(rtlpriv, COMP_INIT, DBG_LOUD,
1680 			"<---0x99(%#x) return!!\n", tmp);
1681 		return;
1682 	}
1683 
1684 	/* LTR idle latency, 0x90 for 144us */
1685 	rtl_write_dword(rtlpriv, 0x798, 0x88908890);
1686 
1687 	/* LTR active latency, 0x3c for 60us */
1688 	rtl_write_dword(rtlpriv, 0x79c, 0x883c883c);
1689 
1690 	tmp = rtl_read_byte(rtlpriv, 0x7a4);
1691 	rtl_write_byte(rtlpriv, 0x7a4, (tmp | BIT(4)));
1692 
1693 	tmp = rtl_read_byte(rtlpriv, 0x7a4);
1694 	rtl_write_byte(rtlpriv, 0x7a4, (tmp & (~BIT(0))));
1695 	rtl_write_byte(rtlpriv, 0x7a4, (tmp | BIT(0)));
1696 
1697 	rtl_dbg(rtlpriv, COMP_INIT, DBG_LOUD, "<---\n");
1698 }
1699 
_rtl8821ae_wowlan_initialize_adapter(struct ieee80211_hw * hw)1700 static bool _rtl8821ae_wowlan_initialize_adapter(struct ieee80211_hw *hw)
1701 {
1702 	struct rtl_priv *rtlpriv = rtl_priv(hw);
1703 	struct rtl_hal *rtlhal = rtl_hal(rtlpriv);
1704 	bool init_finished = true;
1705 	u8 tmp = 0;
1706 
1707 	/* Get Fw wake up reason. */
1708 	_rtl8821ae_get_wakeup_reason(hw);
1709 
1710 	/* Patch Pcie Rx DMA hang after S3/S4 several times.
1711 	 * The root cause has not been found. */
1712 	if (_rtl8821ae_check_pcie_dma_hang(hw))
1713 		_rtl8821ae_reset_pcie_interface_dma(hw, true, false);
1714 
1715 	/* Prepare Tx/Rx Desc Hw address. */
1716 	_rtl8821ae_init_trx_desc_hw_address(hw);
1717 
1718 	/* Release Pcie Interface Rx DMA to allow wake packet DMA. */
1719 	rtl_write_byte(rtlpriv, REG_PCIE_CTRL_REG + 1, 0xFE);
1720 	rtl_dbg(rtlpriv, COMP_POWER, DBG_LOUD, "Enable PCIE Rx DMA.\n");
1721 
1722 	/* Check wake up event.
1723 	 * We should check wake packet bit before disable wowlan by H2C or
1724 	 * Fw will clear the bit. */
1725 	tmp = rtl_read_byte(rtlpriv, REG_FTISR + 3);
1726 	rtl_dbg(rtlpriv, COMP_POWER, DBG_LOUD,
1727 		"Read REG_FTISR 0x13f = %#X\n", tmp);
1728 
1729 	/* Set the WoWLAN related function control disable. */
1730 	rtl8821ae_set_fw_wowlan_mode(hw, false);
1731 	rtl8821ae_set_fw_remote_wake_ctrl_cmd(hw, 0);
1732 
1733 	if (rtlhal->hw_rof_enable) {
1734 		tmp = rtl_read_byte(rtlpriv, REG_HSISR + 3);
1735 		if (tmp & BIT(1)) {
1736 			/* Clear GPIO9 ISR */
1737 			rtl_write_byte(rtlpriv, REG_HSISR + 3, tmp | BIT(1));
1738 			init_finished = false;
1739 		} else {
1740 			init_finished = true;
1741 		}
1742 	}
1743 
1744 	if (init_finished) {
1745 		_rtl8821ae_simple_initialize_adapter(hw);
1746 
1747 		/* Release Pcie Interface Tx DMA. */
1748 		rtl_write_byte(rtlpriv, REG_PCIE_CTRL_REG + 1, 0x00);
1749 		/* Release Pcie RX DMA */
1750 		rtl_write_byte(rtlpriv, REG_RXDMA_CONTROL, 0x02);
1751 
1752 		tmp = rtl_read_byte(rtlpriv, REG_CR + 1);
1753 		rtl_write_byte(rtlpriv, REG_CR + 1, (tmp & (~BIT(0))));
1754 
1755 		_rtl8821ae_enable_l1off(hw);
1756 		_rtl8821ae_enable_ltr(hw);
1757 	}
1758 
1759 	return init_finished;
1760 }
1761 
_rtl8812ae_bb8812_config_1t(struct ieee80211_hw * hw)1762 static void _rtl8812ae_bb8812_config_1t(struct ieee80211_hw *hw)
1763 {
1764 	/* BB OFDM RX Path_A */
1765 	rtl_set_bbreg(hw, 0x808, 0xff, 0x11);
1766 	/* BB OFDM TX Path_A */
1767 	rtl_set_bbreg(hw, 0x80c, MASKLWORD, 0x1111);
1768 	/* BB CCK R/Rx Path_A */
1769 	rtl_set_bbreg(hw, 0xa04, 0x0c000000, 0x0);
1770 	/* MCS support */
1771 	rtl_set_bbreg(hw, 0x8bc, 0xc0000060, 0x4);
1772 	/* RF Path_B HSSI OFF */
1773 	rtl_set_bbreg(hw, 0xe00, 0xf, 0x4);
1774 	/* RF Path_B Power Down */
1775 	rtl_set_bbreg(hw, 0xe90, MASKDWORD, 0);
1776 	/* ADDA Path_B OFF */
1777 	rtl_set_bbreg(hw, 0xe60, MASKDWORD, 0);
1778 	rtl_set_bbreg(hw, 0xe64, MASKDWORD, 0);
1779 }
1780 
_rtl8821ae_poweroff_adapter(struct ieee80211_hw * hw)1781 static void _rtl8821ae_poweroff_adapter(struct ieee80211_hw *hw)
1782 {
1783 	struct rtl_priv *rtlpriv = rtl_priv(hw);
1784 	struct rtl_hal *rtlhal = rtl_hal(rtl_priv(hw));
1785 	u8 u1b_tmp;
1786 
1787 	rtlhal->mac_func_enable = false;
1788 
1789 	if (rtlhal->hw_type == HARDWARE_TYPE_RTL8821AE) {
1790 		/* Combo (PCIe + USB) Card and PCIe-MF Card */
1791 		/* 1. Run LPS WL RFOFF flow */
1792 		/* rtl_dbg(rtlpriv, COMP_INIT, DBG_LOUD,
1793 		"=====>CardDisableRTL8812E,RTL8821A_NIC_LPS_ENTER_FLOW\n");
1794 		*/
1795 		rtl_hal_pwrseqcmdparsing(rtlpriv,
1796 			PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK,
1797 			PWR_INTF_PCI_MSK, RTL8821A_NIC_LPS_ENTER_FLOW);
1798 	}
1799 	/* 2. 0x1F[7:0] = 0 */
1800 	/* turn off RF */
1801 	/* rtl_write_byte(rtlpriv, REG_RF_CTRL, 0x00); */
1802 	if ((rtl_read_byte(rtlpriv, REG_MCUFWDL) & BIT(7)) &&
1803 		rtlhal->fw_ready) {
1804 		rtl8821ae_firmware_selfreset(hw);
1805 	}
1806 
1807 	/* Reset MCU. Suggested by Filen. */
1808 	u1b_tmp = rtl_read_byte(rtlpriv, REG_SYS_FUNC_EN+1);
1809 	rtl_write_byte(rtlpriv, REG_SYS_FUNC_EN+1, (u1b_tmp & (~BIT(2))));
1810 
1811 	/* g.	MCUFWDL 0x80[1:0]=0	 */
1812 	/* reset MCU ready status */
1813 	rtl_write_byte(rtlpriv, REG_MCUFWDL, 0x00);
1814 
1815 	if (rtlhal->hw_type == HARDWARE_TYPE_RTL8821AE) {
1816 		/* HW card disable configuration. */
1817 		rtl_hal_pwrseqcmdparsing(rtlpriv, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK,
1818 			PWR_INTF_PCI_MSK, RTL8821A_NIC_DISABLE_FLOW);
1819 	} else {
1820 		/* HW card disable configuration. */
1821 		rtl_hal_pwrseqcmdparsing(rtlpriv, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK,
1822 			PWR_INTF_PCI_MSK, RTL8812_NIC_DISABLE_FLOW);
1823 	}
1824 
1825 	/* Reset MCU IO Wrapper */
1826 	u1b_tmp = rtl_read_byte(rtlpriv, REG_RSV_CTRL + 1);
1827 	rtl_write_byte(rtlpriv, REG_RSV_CTRL + 1, (u1b_tmp & (~BIT(0))));
1828 	u1b_tmp = rtl_read_byte(rtlpriv, REG_RSV_CTRL + 1);
1829 	rtl_write_byte(rtlpriv, REG_RSV_CTRL + 1, u1b_tmp | BIT(0));
1830 
1831 	/* 7. RSV_CTRL 0x1C[7:0] = 0x0E */
1832 	/* lock ISO/CLK/Power control register */
1833 	rtl_write_byte(rtlpriv, REG_RSV_CTRL, 0x0e);
1834 }
1835 
rtl8821ae_hw_init(struct ieee80211_hw * hw)1836 int rtl8821ae_hw_init(struct ieee80211_hw *hw)
1837 {
1838 	struct rtl_priv *rtlpriv = rtl_priv(hw);
1839 	struct rtl_hal *rtlhal = rtl_hal(rtl_priv(hw));
1840 	struct rtl_mac *mac = rtl_mac(rtl_priv(hw));
1841 	struct rtl_ps_ctl *ppsc = rtl_psc(rtl_priv(hw));
1842 	bool rtstatus = true;
1843 	int err;
1844 	u8 tmp_u1b;
1845 	bool support_remote_wakeup;
1846 	u32 nav_upper = WIFI_NAV_UPPER_US;
1847 
1848 	rtlhal->being_init_adapter = true;
1849 	rtlpriv->cfg->ops->get_hw_reg(hw, HAL_DEF_WOWLAN,
1850 				      (u8 *)(&support_remote_wakeup));
1851 	rtlpriv->intf_ops->disable_aspm(hw);
1852 
1853 	/*YP wowlan not considered*/
1854 
1855 	tmp_u1b = rtl_read_byte(rtlpriv, REG_CR);
1856 	if (tmp_u1b != 0 && tmp_u1b != 0xEA) {
1857 		rtlhal->mac_func_enable = true;
1858 		rtl_dbg(rtlpriv, COMP_INIT, DBG_LOUD,
1859 			"MAC has already power on.\n");
1860 	} else {
1861 		rtlhal->mac_func_enable = false;
1862 		rtlhal->fw_ps_state = FW_PS_STATE_ALL_ON_8821AE;
1863 	}
1864 
1865 	if (support_remote_wakeup &&
1866 		rtlhal->wake_from_pnp_sleep &&
1867 		rtlhal->mac_func_enable) {
1868 		if (_rtl8821ae_wowlan_initialize_adapter(hw)) {
1869 			rtlhal->being_init_adapter = false;
1870 			return 0;
1871 		}
1872 	}
1873 
1874 	if (_rtl8821ae_check_pcie_dma_hang(hw)) {
1875 		_rtl8821ae_reset_pcie_interface_dma(hw,
1876 						    rtlhal->mac_func_enable,
1877 						    false);
1878 		rtlhal->mac_func_enable = false;
1879 	}
1880 
1881 	/* Reset MAC/BB/RF status if it is not powered off
1882 	 * before calling initialize Hw flow to prevent
1883 	 * from interface and MAC status mismatch.
1884 	 * 2013.06.21, by tynli. Suggested by SD1 JackieLau. */
1885 	if (rtlhal->mac_func_enable) {
1886 		_rtl8821ae_poweroff_adapter(hw);
1887 		rtlhal->mac_func_enable = false;
1888 	}
1889 
1890 	rtstatus = _rtl8821ae_init_mac(hw);
1891 	if (!rtstatus) {
1892 		pr_err("Init MAC failed\n");
1893 		err = 1;
1894 		return err;
1895 	}
1896 
1897 	tmp_u1b = rtl_read_byte(rtlpriv, REG_SYS_CFG);
1898 	tmp_u1b &= 0x7F;
1899 	rtl_write_byte(rtlpriv, REG_SYS_CFG, tmp_u1b);
1900 
1901 	err = rtl8821ae_download_fw(hw, false);
1902 	if (err) {
1903 		rtl_dbg(rtlpriv, COMP_ERR, DBG_WARNING,
1904 			"Failed to download FW. Init HW without FW now\n");
1905 		err = 1;
1906 		rtlhal->fw_ready = false;
1907 		return err;
1908 	} else {
1909 		rtlhal->fw_ready = true;
1910 	}
1911 	ppsc->fw_current_inpsmode = false;
1912 	rtlhal->fw_ps_state = FW_PS_STATE_ALL_ON_8821AE;
1913 	rtlhal->fw_clk_change_in_progress = false;
1914 	rtlhal->allow_sw_to_change_hwclc = false;
1915 	rtlhal->last_hmeboxnum = 0;
1916 
1917 	/*SIC_Init(Adapter);
1918 	if(rtlhal->AMPDUBurstMode)
1919 		rtl_write_byte(rtlpriv,REG_AMPDU_BURST_MODE_8812,  0x7F);*/
1920 
1921 	rtl8821ae_phy_mac_config(hw);
1922 	/* because last function modify RCR, so we update
1923 	 * rcr var here, or TP will unstable for receive_config
1924 	 * is wrong, RX RCR_ACRC32 will cause TP unstable & Rx
1925 	 * RCR_APP_ICV will cause mac80211 unassoc for cisco 1252
1926 	rtlpci->receive_config = rtl_read_dword(rtlpriv, REG_RCR);
1927 	rtlpci->receive_config &= ~(RCR_ACRC32 | RCR_AICV);
1928 	rtl_write_dword(rtlpriv, REG_RCR, rtlpci->receive_config);*/
1929 	rtl8821ae_phy_bb_config(hw);
1930 
1931 	rtl8821ae_phy_rf_config(hw);
1932 
1933 	if (rtlpriv->phy.rf_type == RF_1T1R &&
1934 		rtlhal->hw_type == HARDWARE_TYPE_RTL8812AE)
1935 		_rtl8812ae_bb8812_config_1t(hw);
1936 
1937 	_rtl8821ae_hw_configure(hw);
1938 
1939 	rtl8821ae_phy_switch_wirelessband(hw, BAND_ON_2_4G);
1940 
1941 	/*set wireless mode*/
1942 
1943 	rtlhal->mac_func_enable = true;
1944 
1945 	rtl_cam_reset_all_entry(hw);
1946 
1947 	rtl8821ae_enable_hw_security_config(hw);
1948 
1949 	ppsc->rfpwr_state = ERFON;
1950 
1951 	rtlpriv->cfg->ops->set_hw_reg(hw, HW_VAR_ETHER_ADDR, mac->mac_addr);
1952 	_rtl8821ae_enable_aspm_back_door(hw);
1953 	rtlpriv->intf_ops->enable_aspm(hw);
1954 
1955 	if (rtlhal->hw_type == HARDWARE_TYPE_RTL8812AE &&
1956 	    (rtlhal->rfe_type == 1 || rtlhal->rfe_type == 5))
1957 		rtl_set_bbreg(hw, 0x900, 0x00000303, 0x0302);
1958 
1959 	rtl8821ae_bt_hw_init(hw);
1960 	rtlpriv->rtlhal.being_init_adapter = false;
1961 
1962 	rtlpriv->cfg->ops->set_hw_reg(hw, HW_VAR_NAV_UPPER, (u8 *)&nav_upper);
1963 
1964 	/* rtl8821ae_dm_check_txpower_tracking(hw); */
1965 	/* rtl8821ae_phy_lc_calibrate(hw); */
1966 	if (support_remote_wakeup)
1967 		rtl_write_byte(rtlpriv, REG_WOW_CTRL, 0);
1968 
1969 	/* Release Rx DMA*/
1970 	tmp_u1b = rtl_read_byte(rtlpriv, REG_RXDMA_CONTROL);
1971 	if (tmp_u1b & BIT(2)) {
1972 		/* Release Rx DMA if needed*/
1973 		tmp_u1b &= ~BIT(2);
1974 		rtl_write_byte(rtlpriv, REG_RXDMA_CONTROL, tmp_u1b);
1975 	}
1976 
1977 	/* Release Tx/Rx PCIE DMA if*/
1978 	rtl_write_byte(rtlpriv, REG_PCIE_CTRL_REG + 1, 0);
1979 
1980 	rtl8821ae_dm_init(hw);
1981 	rtl8821ae_macid_initialize_mediastatus(hw);
1982 
1983 	rtl_dbg(rtlpriv, COMP_INIT, DBG_LOUD, "%s() <====\n", __func__);
1984 	return err;
1985 }
1986 
_rtl8821ae_read_chip_version(struct ieee80211_hw * hw)1987 static enum version_8821ae _rtl8821ae_read_chip_version(struct ieee80211_hw *hw)
1988 {
1989 	struct rtl_priv *rtlpriv = rtl_priv(hw);
1990 	struct rtl_phy *rtlphy = &rtlpriv->phy;
1991 	struct rtl_hal *rtlhal = rtl_hal(rtl_priv(hw));
1992 	enum version_8821ae version = VERSION_UNKNOWN;
1993 	u32 value32;
1994 
1995 	value32 = rtl_read_dword(rtlpriv, REG_SYS_CFG);
1996 	rtl_dbg(rtlpriv, COMP_INIT, DBG_LOUD,
1997 		"ReadChipVersion8812A 0xF0 = 0x%x\n", value32);
1998 
1999 	if (rtlhal->hw_type == HARDWARE_TYPE_RTL8812AE)
2000 		rtlphy->rf_type = RF_2T2R;
2001 	else if (rtlhal->hw_type == HARDWARE_TYPE_RTL8821AE)
2002 		rtlphy->rf_type = RF_1T1R;
2003 
2004 	rtl_dbg(rtlpriv, COMP_INIT, DBG_LOUD,
2005 		"RF_Type is %x!!\n", rtlphy->rf_type);
2006 
2007 	if (value32 & TRP_VAUX_EN) {
2008 		if (rtlhal->hw_type == HARDWARE_TYPE_RTL8812AE) {
2009 			if (rtlphy->rf_type == RF_2T2R)
2010 				version = VERSION_TEST_CHIP_2T2R_8812;
2011 			else
2012 				version = VERSION_TEST_CHIP_1T1R_8812;
2013 		} else
2014 			version = VERSION_TEST_CHIP_8821;
2015 	} else {
2016 		if (rtlhal->hw_type == HARDWARE_TYPE_RTL8812AE) {
2017 			u32 rtl_id = ((value32 & CHIP_VER_RTL_MASK) >> 12) + 1;
2018 
2019 			if (rtlphy->rf_type == RF_2T2R)
2020 				version =
2021 					(enum version_8821ae)(CHIP_8812
2022 					| NORMAL_CHIP |
2023 					RF_TYPE_2T2R);
2024 			else
2025 				version = (enum version_8821ae)(CHIP_8812
2026 					| NORMAL_CHIP);
2027 
2028 			version = (enum version_8821ae)(version | (rtl_id << 12));
2029 		} else if (rtlhal->hw_type == HARDWARE_TYPE_RTL8821AE) {
2030 			u32 rtl_id = value32 & CHIP_VER_RTL_MASK;
2031 
2032 			version = (enum version_8821ae)(CHIP_8821
2033 				| NORMAL_CHIP | rtl_id);
2034 		}
2035 	}
2036 
2037 	if (rtlhal->hw_type == HARDWARE_TYPE_RTL8821AE) {
2038 		/*WL_HWROF_EN.*/
2039 		value32 = rtl_read_dword(rtlpriv, REG_MULTI_FUNC_CTRL);
2040 		rtlhal->hw_rof_enable = ((value32 & WL_HWROF_EN) ? 1 : 0);
2041 	}
2042 
2043 	switch (version) {
2044 	case VERSION_TEST_CHIP_1T1R_8812:
2045 		rtl_dbg(rtlpriv, COMP_INIT, DBG_LOUD,
2046 			"Chip Version ID: VERSION_TEST_CHIP_1T1R_8812\n");
2047 		break;
2048 	case VERSION_TEST_CHIP_2T2R_8812:
2049 		rtl_dbg(rtlpriv, COMP_INIT, DBG_LOUD,
2050 			"Chip Version ID: VERSION_TEST_CHIP_2T2R_8812\n");
2051 		break;
2052 	case VERSION_NORMAL_TSMC_CHIP_1T1R_8812:
2053 		rtl_dbg(rtlpriv, COMP_INIT, DBG_LOUD,
2054 			"Chip Version ID:VERSION_NORMAL_TSMC_CHIP_1T1R_8812\n");
2055 		break;
2056 	case VERSION_NORMAL_TSMC_CHIP_2T2R_8812:
2057 		rtl_dbg(rtlpriv, COMP_INIT, DBG_LOUD,
2058 			"Chip Version ID: VERSION_NORMAL_TSMC_CHIP_2T2R_8812\n");
2059 		break;
2060 	case VERSION_NORMAL_TSMC_CHIP_1T1R_8812_C_CUT:
2061 		rtl_dbg(rtlpriv, COMP_INIT, DBG_LOUD,
2062 			"Chip Version ID: VERSION_NORMAL_TSMC_CHIP_1T1R_8812 C CUT\n");
2063 		break;
2064 	case VERSION_NORMAL_TSMC_CHIP_2T2R_8812_C_CUT:
2065 		rtl_dbg(rtlpriv, COMP_INIT, DBG_LOUD,
2066 			"Chip Version ID: VERSION_NORMAL_TSMC_CHIP_2T2R_8812 C CUT\n");
2067 		break;
2068 	case VERSION_TEST_CHIP_8821:
2069 		rtl_dbg(rtlpriv, COMP_INIT, DBG_LOUD,
2070 			"Chip Version ID: VERSION_TEST_CHIP_8821\n");
2071 		break;
2072 	case VERSION_NORMAL_TSMC_CHIP_8821:
2073 		rtl_dbg(rtlpriv, COMP_INIT, DBG_LOUD,
2074 			"Chip Version ID: VERSION_NORMAL_TSMC_CHIP_8821 A CUT\n");
2075 		break;
2076 	case VERSION_NORMAL_TSMC_CHIP_8821_B_CUT:
2077 		rtl_dbg(rtlpriv, COMP_INIT, DBG_LOUD,
2078 			"Chip Version ID: VERSION_NORMAL_TSMC_CHIP_8821 B CUT\n");
2079 		break;
2080 	default:
2081 		rtl_dbg(rtlpriv, COMP_INIT, DBG_LOUD,
2082 			"Chip Version ID: Unknown (0x%X)\n", version);
2083 		break;
2084 	}
2085 
2086 	return version;
2087 }
2088 
_rtl8821ae_set_media_status(struct ieee80211_hw * hw,enum nl80211_iftype type)2089 static int _rtl8821ae_set_media_status(struct ieee80211_hw *hw,
2090 				     enum nl80211_iftype type)
2091 {
2092 	struct rtl_priv *rtlpriv = rtl_priv(hw);
2093 	u8 bt_msr = rtl_read_byte(rtlpriv, MSR);
2094 	enum led_ctl_mode ledaction = LED_CTL_NO_LINK;
2095 	bt_msr &= 0xfc;
2096 
2097 	rtl_write_dword(rtlpriv, REG_BCN_CTRL, 0);
2098 	rtl_dbg(rtlpriv, COMP_BEACON, DBG_LOUD,
2099 		"clear 0x550 when set HW_VAR_MEDIA_STATUS\n");
2100 
2101 	if (type == NL80211_IFTYPE_UNSPECIFIED ||
2102 	    type == NL80211_IFTYPE_STATION) {
2103 		_rtl8821ae_stop_tx_beacon(hw);
2104 		_rtl8821ae_enable_bcn_sub_func(hw);
2105 	} else if (type == NL80211_IFTYPE_ADHOC ||
2106 		type == NL80211_IFTYPE_AP) {
2107 		_rtl8821ae_resume_tx_beacon(hw);
2108 		_rtl8821ae_disable_bcn_sub_func(hw);
2109 	} else {
2110 		rtl_dbg(rtlpriv, COMP_ERR, DBG_WARNING,
2111 			"Set HW_VAR_MEDIA_STATUS: No such media status(%x).\n",
2112 			type);
2113 	}
2114 
2115 	switch (type) {
2116 	case NL80211_IFTYPE_UNSPECIFIED:
2117 		bt_msr |= MSR_NOLINK;
2118 		ledaction = LED_CTL_LINK;
2119 		rtl_dbg(rtlpriv, COMP_INIT, DBG_TRACE,
2120 			"Set Network type to NO LINK!\n");
2121 		break;
2122 	case NL80211_IFTYPE_ADHOC:
2123 		bt_msr |= MSR_ADHOC;
2124 		rtl_dbg(rtlpriv, COMP_INIT, DBG_TRACE,
2125 			"Set Network type to Ad Hoc!\n");
2126 		break;
2127 	case NL80211_IFTYPE_STATION:
2128 		bt_msr |= MSR_INFRA;
2129 		ledaction = LED_CTL_LINK;
2130 		rtl_dbg(rtlpriv, COMP_INIT, DBG_TRACE,
2131 			"Set Network type to STA!\n");
2132 		break;
2133 	case NL80211_IFTYPE_AP:
2134 		bt_msr |= MSR_AP;
2135 		rtl_dbg(rtlpriv, COMP_INIT, DBG_TRACE,
2136 			"Set Network type to AP!\n");
2137 		break;
2138 	default:
2139 		pr_err("Network type %d not support!\n", type);
2140 		return 1;
2141 	}
2142 
2143 	rtl_write_byte(rtlpriv, MSR, bt_msr);
2144 	rtlpriv->cfg->ops->led_control(hw, ledaction);
2145 	if ((bt_msr & MSR_MASK) == MSR_AP)
2146 		rtl_write_byte(rtlpriv, REG_BCNTCFG + 1, 0x00);
2147 	else
2148 		rtl_write_byte(rtlpriv, REG_BCNTCFG + 1, 0x66);
2149 
2150 	return 0;
2151 }
2152 
rtl8821ae_set_check_bssid(struct ieee80211_hw * hw,bool check_bssid)2153 void rtl8821ae_set_check_bssid(struct ieee80211_hw *hw, bool check_bssid)
2154 {
2155 	struct rtl_priv *rtlpriv = rtl_priv(hw);
2156 	struct rtl_pci *rtlpci = rtl_pcidev(rtl_pcipriv(hw));
2157 	u32 reg_rcr = rtlpci->receive_config;
2158 
2159 	if (rtlpriv->psc.rfpwr_state != ERFON)
2160 		return;
2161 
2162 	if (check_bssid) {
2163 		reg_rcr |= (RCR_CBSSID_DATA | RCR_CBSSID_BCN);
2164 		rtlpriv->cfg->ops->set_hw_reg(hw, HW_VAR_RCR,
2165 					      (u8 *)(&reg_rcr));
2166 		_rtl8821ae_set_bcn_ctrl_reg(hw, 0, BIT(4));
2167 	} else if (!check_bssid) {
2168 		reg_rcr &= (~(RCR_CBSSID_DATA | RCR_CBSSID_BCN));
2169 		_rtl8821ae_set_bcn_ctrl_reg(hw, BIT(4), 0);
2170 		rtlpriv->cfg->ops->set_hw_reg(hw,
2171 			HW_VAR_RCR, (u8 *)(&reg_rcr));
2172 	}
2173 }
2174 
rtl8821ae_set_network_type(struct ieee80211_hw * hw,enum nl80211_iftype type)2175 int rtl8821ae_set_network_type(struct ieee80211_hw *hw, enum nl80211_iftype type)
2176 {
2177 	struct rtl_priv *rtlpriv = rtl_priv(hw);
2178 
2179 	rtl_dbg(rtlpriv, COMP_INIT, DBG_LOUD, "%s!\n", __func__);
2180 
2181 	if (_rtl8821ae_set_media_status(hw, type))
2182 		return -EOPNOTSUPP;
2183 
2184 	if (rtlpriv->mac80211.link_state == MAC80211_LINKED) {
2185 		if (type != NL80211_IFTYPE_AP)
2186 			rtl8821ae_set_check_bssid(hw, true);
2187 	} else {
2188 		rtl8821ae_set_check_bssid(hw, false);
2189 	}
2190 
2191 	return 0;
2192 }
2193 
2194 /* don't set REG_EDCA_BE_PARAM here because mac80211 will send pkt when scan */
rtl8821ae_set_qos(struct ieee80211_hw * hw,int aci)2195 void rtl8821ae_set_qos(struct ieee80211_hw *hw, int aci)
2196 {
2197 	struct rtl_priv *rtlpriv = rtl_priv(hw);
2198 	rtl8821ae_dm_init_edca_turbo(hw);
2199 	switch (aci) {
2200 	case AC1_BK:
2201 		rtl_write_dword(rtlpriv, REG_EDCA_BK_PARAM, 0xa44f);
2202 		break;
2203 	case AC0_BE:
2204 		/* rtl_write_dword(rtlpriv, REG_EDCA_BE_PARAM, u4b_ac_param); */
2205 		break;
2206 	case AC2_VI:
2207 		rtl_write_dword(rtlpriv, REG_EDCA_VI_PARAM, 0x5e4322);
2208 		break;
2209 	case AC3_VO:
2210 		rtl_write_dword(rtlpriv, REG_EDCA_VO_PARAM, 0x2f3222);
2211 		break;
2212 	default:
2213 		WARN_ONCE(true, "rtl8821ae: invalid aci: %d !\n", aci);
2214 		break;
2215 	}
2216 }
2217 
rtl8821ae_clear_interrupt(struct ieee80211_hw * hw)2218 static void rtl8821ae_clear_interrupt(struct ieee80211_hw *hw)
2219 {
2220 	struct rtl_priv *rtlpriv = rtl_priv(hw);
2221 	u32 tmp = rtl_read_dword(rtlpriv, REG_HISR);
2222 
2223 	rtl_write_dword(rtlpriv, REG_HISR, tmp);
2224 
2225 	tmp = rtl_read_dword(rtlpriv, REG_HISRE);
2226 	rtl_write_dword(rtlpriv, REG_HISRE, tmp);
2227 
2228 	tmp = rtl_read_dword(rtlpriv, REG_HSISR);
2229 	rtl_write_dword(rtlpriv, REG_HSISR, tmp);
2230 }
2231 
rtl8821ae_enable_interrupt(struct ieee80211_hw * hw)2232 void rtl8821ae_enable_interrupt(struct ieee80211_hw *hw)
2233 {
2234 	struct rtl_priv *rtlpriv = rtl_priv(hw);
2235 	struct rtl_pci *rtlpci = rtl_pcidev(rtl_pcipriv(hw));
2236 
2237 	if (rtlpci->int_clear)
2238 		rtl8821ae_clear_interrupt(hw);/*clear it here first*/
2239 
2240 	rtl_write_dword(rtlpriv, REG_HIMR, rtlpci->irq_mask[0] & 0xFFFFFFFF);
2241 	rtl_write_dword(rtlpriv, REG_HIMRE, rtlpci->irq_mask[1] & 0xFFFFFFFF);
2242 	rtlpci->irq_enabled = true;
2243 	/* there are some C2H CMDs have been sent before
2244 	system interrupt is enabled, e.g., C2H, CPWM.
2245 	*So we need to clear all C2H events that FW has
2246 	notified, otherwise FW won't schedule any commands anymore.
2247 	*/
2248 	/* rtl_write_byte(rtlpriv, REG_C2HEVT_CLEAR, 0); */
2249 	/*enable system interrupt*/
2250 	rtl_write_dword(rtlpriv, REG_HSIMR, rtlpci->sys_irq_mask & 0xFFFFFFFF);
2251 }
2252 
rtl8821ae_disable_interrupt(struct ieee80211_hw * hw)2253 void rtl8821ae_disable_interrupt(struct ieee80211_hw *hw)
2254 {
2255 	struct rtl_priv *rtlpriv = rtl_priv(hw);
2256 	struct rtl_pci *rtlpci = rtl_pcidev(rtl_pcipriv(hw));
2257 
2258 	rtl_write_dword(rtlpriv, REG_HIMR, IMR_DISABLED);
2259 	rtl_write_dword(rtlpriv, REG_HIMRE, IMR_DISABLED);
2260 	rtlpci->irq_enabled = false;
2261 	/*synchronize_irq(rtlpci->pdev->irq);*/
2262 }
2263 
_rtl8821ae_clear_pci_pme_status(struct ieee80211_hw * hw)2264 static void _rtl8821ae_clear_pci_pme_status(struct ieee80211_hw *hw)
2265 {
2266 	struct rtl_priv *rtlpriv = rtl_priv(hw);
2267 	struct rtl_pci *rtlpci = rtl_pcidev(rtl_pcipriv(hw));
2268 	struct pci_dev *pdev = rtlpci->pdev;
2269 	u16 pmcs_reg;
2270 	u8 pm_cap;
2271 
2272 	pm_cap = pci_find_capability(pdev, PCI_CAP_ID_PM);
2273 	if (!pm_cap) {
2274 		rtl_dbg(rtlpriv, COMP_INIT, DBG_WARNING,
2275 			"Cannot find PME Capability\n");
2276 		return;
2277 	}
2278 
2279 	pci_read_config_word(pdev, pm_cap + PCI_PM_CTRL, &pmcs_reg);
2280 	if (pmcs_reg & PCI_PM_CTRL_PME_STATUS) {
2281 		/* Clear PME_Status with write */
2282 		pci_write_config_word(pdev, pm_cap + PCI_PM_CTRL, pmcs_reg);
2283 		pci_read_config_word(pdev, pm_cap + PCI_PM_CTRL, &pmcs_reg);
2284 		rtl_dbg(rtlpriv, COMP_INIT, DBG_DMESG,
2285 			"Cleared PME status, PMCS reg = 0x%4x\n", pmcs_reg);
2286 	} else {
2287 		rtl_dbg(rtlpriv, COMP_INIT, DBG_DMESG,
2288 			"PMCS reg = 0x%4x\n", pmcs_reg);
2289 	}
2290 }
2291 
rtl8821ae_card_disable(struct ieee80211_hw * hw)2292 void rtl8821ae_card_disable(struct ieee80211_hw *hw)
2293 {
2294 	struct rtl_priv *rtlpriv = rtl_priv(hw);
2295 	struct rtl_hal *rtlhal = rtl_hal(rtlpriv);
2296 	struct rtl_ps_ctl *ppsc = rtl_psc(rtlpriv);
2297 	struct rtl_mac *mac = rtl_mac(rtlpriv);
2298 	enum nl80211_iftype opmode;
2299 	bool support_remote_wakeup;
2300 	u8 tmp;
2301 	u32 count = 0;
2302 
2303 	rtlpriv->cfg->ops->get_hw_reg(hw, HAL_DEF_WOWLAN,
2304 				      (u8 *)(&support_remote_wakeup));
2305 
2306 	RT_SET_PS_LEVEL(ppsc, RT_RF_OFF_LEVL_HALT_NIC);
2307 
2308 	if (!(support_remote_wakeup && mac->opmode == NL80211_IFTYPE_STATION)
2309 	    || !rtlhal->enter_pnp_sleep) {
2310 		rtl_dbg(rtlpriv, COMP_INIT, DBG_DMESG, "Normal Power off\n");
2311 		mac->link_state = MAC80211_NOLINK;
2312 		opmode = NL80211_IFTYPE_UNSPECIFIED;
2313 		_rtl8821ae_set_media_status(hw, opmode);
2314 		_rtl8821ae_poweroff_adapter(hw);
2315 	} else {
2316 		rtl_dbg(rtlpriv, COMP_INIT, DBG_DMESG, "Wowlan Supported.\n");
2317 		/* 3 <1> Prepare for configuring wowlan related infomations */
2318 		/* Clear Fw WoWLAN event. */
2319 		rtl_write_byte(rtlpriv, REG_MCUTST_WOWLAN, 0x0);
2320 
2321 #if (USE_SPECIFIC_FW_TO_SUPPORT_WOWLAN == 1)
2322 		rtl8821ae_set_fw_related_for_wowlan(hw, true);
2323 #endif
2324 		/* Dynamically adjust Tx packet boundary
2325 		 * for download reserved page packet.
2326 		 * reserve 30 pages for rsvd page */
2327 		if (_rtl8821ae_dynamic_rqpn(hw, 0xE0, 0x3, 0x80c20d0d))
2328 			rtlhal->re_init_llt_table = true;
2329 
2330 		/* 3 <2> Set Fw related H2C cmd. */
2331 
2332 		/* Set WoWLAN related security information. */
2333 		rtl8821ae_set_fw_global_info_cmd(hw);
2334 
2335 		_rtl8821ae_download_rsvd_page(hw, true);
2336 
2337 		/* Just enable AOAC related functions when we connect to AP. */
2338 		printk("mac->link_state = %d\n", mac->link_state);
2339 		if (mac->link_state >= MAC80211_LINKED &&
2340 		    mac->opmode == NL80211_IFTYPE_STATION) {
2341 			rtlpriv->cfg->ops->set_hw_reg(hw, HW_VAR_AID, NULL);
2342 			rtl8821ae_set_fw_media_status_rpt_cmd(hw,
2343 							      RT_MEDIA_CONNECT);
2344 
2345 			rtl8821ae_set_fw_wowlan_mode(hw, true);
2346 			/* Enable Fw Keep alive mechanism. */
2347 			rtl8821ae_set_fw_keep_alive_cmd(hw, true);
2348 
2349 			/* Enable disconnect decision control. */
2350 			rtl8821ae_set_fw_disconnect_decision_ctrl_cmd(hw, true);
2351 		}
2352 
2353 		/* 3 <3> Hw Configurations */
2354 
2355 		/* Wait until Rx DMA Finished before host sleep.
2356 		 * FW Pause Rx DMA may happen when received packet doing DMA.
2357 		 */
2358 		rtl_write_byte(rtlpriv, REG_RXDMA_CONTROL, BIT(2));
2359 
2360 		tmp = rtl_read_byte(rtlpriv, REG_RXDMA_CONTROL);
2361 		count = 0;
2362 		while (!(tmp & BIT(1)) && (count++ < 100)) {
2363 			udelay(10);
2364 			tmp = rtl_read_byte(rtlpriv, REG_RXDMA_CONTROL);
2365 		}
2366 		rtl_dbg(rtlpriv, COMP_INIT, DBG_LOUD,
2367 			"Wait Rx DMA Finished before host sleep. count=%d\n",
2368 			count);
2369 
2370 		/* reset trx ring */
2371 		rtlpriv->intf_ops->reset_trx_ring(hw);
2372 
2373 		rtl_write_byte(rtlpriv, REG_APS_FSMCO + 1, 0x0);
2374 
2375 		_rtl8821ae_clear_pci_pme_status(hw);
2376 		tmp = rtl_read_byte(rtlpriv, REG_SYS_CLKR);
2377 		rtl_write_byte(rtlpriv, REG_SYS_CLKR, tmp | BIT(3));
2378 		/* prevent 8051 to be reset by PERST */
2379 		rtl_write_byte(rtlpriv, REG_RSV_CTRL, 0x20);
2380 		rtl_write_byte(rtlpriv, REG_RSV_CTRL, 0x60);
2381 	}
2382 
2383 	if (rtlpriv->rtlhal.driver_is_goingto_unload ||
2384 	    ppsc->rfoff_reason > RF_CHANGE_BY_PS)
2385 		rtlpriv->cfg->ops->led_control(hw, LED_CTL_POWER_OFF);
2386 	/* For wowlan+LPS+32k. */
2387 	if (support_remote_wakeup && rtlhal->enter_pnp_sleep) {
2388 		/* Set the WoWLAN related function control enable.
2389 		 * It should be the last H2C cmd in the WoWLAN flow. */
2390 		rtl8821ae_set_fw_remote_wake_ctrl_cmd(hw, 1);
2391 
2392 		/* Stop Pcie Interface Tx DMA. */
2393 		rtl_write_byte(rtlpriv, REG_PCIE_CTRL_REG + 1, 0xff);
2394 		rtl_dbg(rtlpriv, COMP_POWER, DBG_LOUD, "Stop PCIE Tx DMA.\n");
2395 
2396 		/* Wait for TxDMA idle. */
2397 		count = 0;
2398 		do {
2399 			tmp = rtl_read_byte(rtlpriv, REG_PCIE_CTRL_REG);
2400 			udelay(10);
2401 			count++;
2402 		} while ((tmp != 0) && (count < 100));
2403 		rtl_dbg(rtlpriv, COMP_INIT, DBG_LOUD,
2404 			"Wait Tx DMA Finished before host sleep. count=%d\n",
2405 			count);
2406 
2407 		if (rtlhal->hw_rof_enable) {
2408 			printk("hw_rof_enable\n");
2409 			tmp = rtl_read_byte(rtlpriv, REG_HSISR + 3);
2410 			rtl_write_byte(rtlpriv, REG_HSISR + 3, tmp | BIT(1));
2411 		}
2412 	}
2413 	/* after power off we should do iqk again */
2414 	rtlpriv->phy.iqk_initialized = false;
2415 }
2416 
rtl8821ae_interrupt_recognized(struct ieee80211_hw * hw,struct rtl_int * intvec)2417 void rtl8821ae_interrupt_recognized(struct ieee80211_hw *hw,
2418 				    struct rtl_int *intvec)
2419 {
2420 	struct rtl_priv *rtlpriv = rtl_priv(hw);
2421 	struct rtl_pci *rtlpci = rtl_pcidev(rtl_pcipriv(hw));
2422 
2423 	intvec->inta = rtl_read_dword(rtlpriv, ISR) & rtlpci->irq_mask[0];
2424 	rtl_write_dword(rtlpriv, ISR, intvec->inta);
2425 
2426 	intvec->intb = rtl_read_dword(rtlpriv, REG_HISRE) & rtlpci->irq_mask[1];
2427 	rtl_write_dword(rtlpriv, REG_HISRE, intvec->intb);
2428 }
2429 
rtl8821ae_set_beacon_related_registers(struct ieee80211_hw * hw)2430 void rtl8821ae_set_beacon_related_registers(struct ieee80211_hw *hw)
2431 {
2432 	struct rtl_priv *rtlpriv = rtl_priv(hw);
2433 	struct rtl_mac *mac = rtl_mac(rtl_priv(hw));
2434 	struct rtl_pci *rtlpci = rtl_pcidev(rtl_pcipriv(hw));
2435 	u16 bcn_interval, atim_window;
2436 
2437 	bcn_interval = mac->beacon_interval;
2438 	atim_window = 2;	/*FIX MERGE */
2439 	rtl8821ae_disable_interrupt(hw);
2440 	rtl_write_word(rtlpriv, REG_ATIMWND, atim_window);
2441 	rtl_write_word(rtlpriv, REG_BCN_INTERVAL, bcn_interval);
2442 	rtl_write_word(rtlpriv, REG_BCNTCFG, 0x660f);
2443 	rtl_write_byte(rtlpriv, REG_RXTSF_OFFSET_CCK, 0x18);
2444 	rtl_write_byte(rtlpriv, REG_RXTSF_OFFSET_OFDM, 0x18);
2445 	rtl_write_byte(rtlpriv, 0x606, 0x30);
2446 	rtlpci->reg_bcn_ctrl_val |= BIT(3);
2447 	rtl_write_byte(rtlpriv, REG_BCN_CTRL, (u8)rtlpci->reg_bcn_ctrl_val);
2448 	rtl8821ae_enable_interrupt(hw);
2449 }
2450 
rtl8821ae_set_beacon_interval(struct ieee80211_hw * hw)2451 void rtl8821ae_set_beacon_interval(struct ieee80211_hw *hw)
2452 {
2453 	struct rtl_priv *rtlpriv = rtl_priv(hw);
2454 	struct rtl_mac *mac = rtl_mac(rtl_priv(hw));
2455 	u16 bcn_interval = mac->beacon_interval;
2456 
2457 	rtl_dbg(rtlpriv, COMP_BEACON, DBG_DMESG,
2458 		"beacon_interval:%d\n", bcn_interval);
2459 	rtl8821ae_disable_interrupt(hw);
2460 	rtl_write_word(rtlpriv, REG_BCN_INTERVAL, bcn_interval);
2461 	rtl8821ae_enable_interrupt(hw);
2462 }
2463 
rtl8821ae_update_interrupt_mask(struct ieee80211_hw * hw,u32 add_msr,u32 rm_msr)2464 void rtl8821ae_update_interrupt_mask(struct ieee80211_hw *hw,
2465 				   u32 add_msr, u32 rm_msr)
2466 {
2467 	struct rtl_priv *rtlpriv = rtl_priv(hw);
2468 	struct rtl_pci *rtlpci = rtl_pcidev(rtl_pcipriv(hw));
2469 
2470 	rtl_dbg(rtlpriv, COMP_INTR, DBG_LOUD,
2471 		"add_msr:%x, rm_msr:%x\n", add_msr, rm_msr);
2472 
2473 	if (add_msr)
2474 		rtlpci->irq_mask[0] |= add_msr;
2475 	if (rm_msr)
2476 		rtlpci->irq_mask[0] &= (~rm_msr);
2477 	rtl8821ae_disable_interrupt(hw);
2478 	rtl8821ae_enable_interrupt(hw);
2479 }
2480 
_rtl8821ae_get_chnl_group(u8 chnl)2481 static u8 _rtl8821ae_get_chnl_group(u8 chnl)
2482 {
2483 	u8 group = 0;
2484 
2485 	if (chnl <= 14) {
2486 		if (1 <= chnl && chnl <= 2)
2487 			group = 0;
2488 	else if (3 <= chnl && chnl <= 5)
2489 			group = 1;
2490 	else if (6 <= chnl && chnl <= 8)
2491 			group = 2;
2492 	else if (9 <= chnl && chnl <= 11)
2493 			group = 3;
2494 	else /*if (12 <= chnl && chnl <= 14)*/
2495 			group = 4;
2496 	} else {
2497 		if (36 <= chnl && chnl <= 42)
2498 			group = 0;
2499 	else if (44 <= chnl && chnl <= 48)
2500 			group = 1;
2501 	else if (50 <= chnl && chnl <= 58)
2502 			group = 2;
2503 	else if (60 <= chnl && chnl <= 64)
2504 			group = 3;
2505 	else if (100 <= chnl && chnl <= 106)
2506 			group = 4;
2507 	else if (108 <= chnl && chnl <= 114)
2508 			group = 5;
2509 	else if (116 <= chnl && chnl <= 122)
2510 			group = 6;
2511 	else if (124 <= chnl && chnl <= 130)
2512 			group = 7;
2513 	else if (132 <= chnl && chnl <= 138)
2514 			group = 8;
2515 	else if (140 <= chnl && chnl <= 144)
2516 			group = 9;
2517 	else if (149 <= chnl && chnl <= 155)
2518 			group = 10;
2519 	else if (157 <= chnl && chnl <= 161)
2520 			group = 11;
2521 	else if (165 <= chnl && chnl <= 171)
2522 			group = 12;
2523 	else if (173 <= chnl && chnl <= 177)
2524 			group = 13;
2525 	else
2526 		WARN_ONCE(true,
2527 			  "rtl8821ae: 5G, Channel %d in Group not found\n",
2528 			  chnl);
2529 	}
2530 	return group;
2531 }
2532 
_rtl8821ae_read_power_value_fromprom(struct ieee80211_hw * hw,struct txpower_info_2g * pwrinfo24g,struct txpower_info_5g * pwrinfo5g,bool autoload_fail,u8 * hwinfo)2533 static void _rtl8821ae_read_power_value_fromprom(struct ieee80211_hw *hw,
2534 	struct txpower_info_2g *pwrinfo24g,
2535 	struct txpower_info_5g *pwrinfo5g,
2536 	bool autoload_fail,
2537 	u8 *hwinfo)
2538 {
2539 	struct rtl_priv *rtlpriv = rtl_priv(hw);
2540 	u32 rfpath, eeaddr = EEPROM_TX_PWR_INX, group, txcount = 0;
2541 
2542 	rtl_dbg(rtlpriv, COMP_INIT, DBG_LOUD,
2543 		"hal_ReadPowerValueFromPROM8821ae(): hwinfo[0x%x]=0x%x\n",
2544 		(eeaddr + 1), hwinfo[eeaddr + 1]);
2545 	if (hwinfo[eeaddr + 1] == 0xFF)  /*YJ,add,120316*/
2546 		autoload_fail = true;
2547 
2548 	if (autoload_fail) {
2549 		rtl_dbg(rtlpriv, COMP_INIT, DBG_LOUD,
2550 			"auto load fail : Use Default value!\n");
2551 		for (rfpath = 0 ; rfpath < MAX_RF_PATH ; rfpath++) {
2552 			/*2.4G default value*/
2553 			for (group = 0 ; group < MAX_CHNL_GROUP_24G; group++) {
2554 				pwrinfo24g->index_cck_base[rfpath][group] = 0x2D;
2555 				pwrinfo24g->index_bw40_base[rfpath][group] = 0x2D;
2556 			}
2557 			for (txcount = 0; txcount < MAX_TX_COUNT; txcount++) {
2558 				if (txcount == 0) {
2559 					pwrinfo24g->bw20_diff[rfpath][0] = 0x02;
2560 					pwrinfo24g->ofdm_diff[rfpath][0] = 0x04;
2561 				} else {
2562 					pwrinfo24g->bw20_diff[rfpath][txcount] = 0xFE;
2563 					pwrinfo24g->bw40_diff[rfpath][txcount] = 0xFE;
2564 					pwrinfo24g->cck_diff[rfpath][txcount] =	0xFE;
2565 					pwrinfo24g->ofdm_diff[rfpath][txcount] = 0xFE;
2566 				}
2567 			}
2568 			/*5G default value*/
2569 			for (group = 0 ; group < MAX_CHNL_GROUP_5G; group++)
2570 				pwrinfo5g->index_bw40_base[rfpath][group] = 0x2A;
2571 
2572 			for (txcount = 0; txcount < MAX_TX_COUNT; txcount++) {
2573 				if (txcount == 0) {
2574 					pwrinfo5g->ofdm_diff[rfpath][0] = 0x04;
2575 					pwrinfo5g->bw20_diff[rfpath][0] = 0x00;
2576 					pwrinfo5g->bw80_diff[rfpath][0] = 0xFE;
2577 					pwrinfo5g->bw160_diff[rfpath][0] = 0xFE;
2578 				} else {
2579 					pwrinfo5g->ofdm_diff[rfpath][0] = 0xFE;
2580 					pwrinfo5g->bw20_diff[rfpath][0] = 0xFE;
2581 					pwrinfo5g->bw40_diff[rfpath][0] = 0xFE;
2582 					pwrinfo5g->bw80_diff[rfpath][0] = 0xFE;
2583 					pwrinfo5g->bw160_diff[rfpath][0] = 0xFE;
2584 				}
2585 			}
2586 		}
2587 		return;
2588 	}
2589 
2590 	rtl_priv(hw)->efuse.txpwr_fromeprom = true;
2591 
2592 	for (rfpath = 0 ; rfpath < MAX_RF_PATH ; rfpath++) {
2593 		/*2.4G default value*/
2594 		for (group = 0 ; group < MAX_CHNL_GROUP_24G; group++) {
2595 			pwrinfo24g->index_cck_base[rfpath][group] = hwinfo[eeaddr++];
2596 			if (pwrinfo24g->index_cck_base[rfpath][group] == 0xFF)
2597 				pwrinfo24g->index_cck_base[rfpath][group] = 0x2D;
2598 		}
2599 		for (group = 0 ; group < MAX_CHNL_GROUP_24G - 1; group++) {
2600 			pwrinfo24g->index_bw40_base[rfpath][group] = hwinfo[eeaddr++];
2601 			if (pwrinfo24g->index_bw40_base[rfpath][group] == 0xFF)
2602 				pwrinfo24g->index_bw40_base[rfpath][group] = 0x2D;
2603 		}
2604 		for (txcount = 0; txcount < MAX_TX_COUNT; txcount++) {
2605 			if (txcount == 0) {
2606 				pwrinfo24g->bw40_diff[rfpath][txcount] = 0;
2607 				/*bit sign number to 8 bit sign number*/
2608 				pwrinfo24g->bw20_diff[rfpath][txcount] = (hwinfo[eeaddr] & 0xf0) >> 4;
2609 				if (pwrinfo24g->bw20_diff[rfpath][txcount] & BIT(3))
2610 					pwrinfo24g->bw20_diff[rfpath][txcount] |= 0xF0;
2611 				/*bit sign number to 8 bit sign number*/
2612 				pwrinfo24g->ofdm_diff[rfpath][txcount] = (hwinfo[eeaddr] & 0x0f);
2613 				if (pwrinfo24g->ofdm_diff[rfpath][txcount] & BIT(3))
2614 					pwrinfo24g->ofdm_diff[rfpath][txcount] |= 0xF0;
2615 
2616 				pwrinfo24g->cck_diff[rfpath][txcount] = 0;
2617 				eeaddr++;
2618 			} else {
2619 				pwrinfo24g->bw40_diff[rfpath][txcount] = (hwinfo[eeaddr] & 0xf0) >> 4;
2620 				if (pwrinfo24g->bw40_diff[rfpath][txcount] & BIT(3))
2621 					pwrinfo24g->bw40_diff[rfpath][txcount] |= 0xF0;
2622 
2623 				pwrinfo24g->bw20_diff[rfpath][txcount] = (hwinfo[eeaddr] & 0x0f);
2624 				if (pwrinfo24g->bw20_diff[rfpath][txcount] & BIT(3))
2625 					pwrinfo24g->bw20_diff[rfpath][txcount] |= 0xF0;
2626 
2627 				eeaddr++;
2628 
2629 				pwrinfo24g->ofdm_diff[rfpath][txcount] = (hwinfo[eeaddr] & 0xf0) >> 4;
2630 				if (pwrinfo24g->ofdm_diff[rfpath][txcount] & BIT(3))
2631 					pwrinfo24g->ofdm_diff[rfpath][txcount] |= 0xF0;
2632 
2633 				pwrinfo24g->cck_diff[rfpath][txcount] =	(hwinfo[eeaddr] & 0x0f);
2634 				if (pwrinfo24g->cck_diff[rfpath][txcount] & BIT(3))
2635 					pwrinfo24g->cck_diff[rfpath][txcount] |= 0xF0;
2636 
2637 				eeaddr++;
2638 			}
2639 		}
2640 
2641 		/*5G default value*/
2642 		for (group = 0 ; group < MAX_CHNL_GROUP_5G; group++) {
2643 			pwrinfo5g->index_bw40_base[rfpath][group] = hwinfo[eeaddr++];
2644 			if (pwrinfo5g->index_bw40_base[rfpath][group] == 0xFF)
2645 				pwrinfo5g->index_bw40_base[rfpath][group] = 0xFE;
2646 		}
2647 
2648 		for (txcount = 0; txcount < MAX_TX_COUNT; txcount++) {
2649 			if (txcount == 0) {
2650 				pwrinfo5g->bw40_diff[rfpath][txcount] = 0;
2651 
2652 				pwrinfo5g->bw20_diff[rfpath][0] = (hwinfo[eeaddr] & 0xf0) >> 4;
2653 				if (pwrinfo5g->bw20_diff[rfpath][txcount] & BIT(3))
2654 					pwrinfo5g->bw20_diff[rfpath][txcount] |= 0xF0;
2655 
2656 				pwrinfo5g->ofdm_diff[rfpath][0] = (hwinfo[eeaddr] & 0x0f);
2657 				if (pwrinfo5g->ofdm_diff[rfpath][txcount] & BIT(3))
2658 					pwrinfo5g->ofdm_diff[rfpath][txcount] |= 0xF0;
2659 
2660 				eeaddr++;
2661 			} else {
2662 				pwrinfo5g->bw40_diff[rfpath][txcount] = (hwinfo[eeaddr] & 0xf0) >> 4;
2663 				if (pwrinfo5g->bw40_diff[rfpath][txcount] & BIT(3))
2664 					pwrinfo5g->bw40_diff[rfpath][txcount] |= 0xF0;
2665 
2666 				pwrinfo5g->bw20_diff[rfpath][txcount] = (hwinfo[eeaddr] & 0x0f);
2667 				if (pwrinfo5g->bw20_diff[rfpath][txcount] & BIT(3))
2668 					pwrinfo5g->bw20_diff[rfpath][txcount] |= 0xF0;
2669 
2670 				eeaddr++;
2671 			}
2672 		}
2673 
2674 		pwrinfo5g->ofdm_diff[rfpath][1] =	(hwinfo[eeaddr] & 0xf0) >> 4;
2675 		pwrinfo5g->ofdm_diff[rfpath][2] =	(hwinfo[eeaddr] & 0x0f);
2676 
2677 		eeaddr++;
2678 
2679 		pwrinfo5g->ofdm_diff[rfpath][3] = (hwinfo[eeaddr] & 0x0f);
2680 
2681 		eeaddr++;
2682 
2683 		for (txcount = 1; txcount < MAX_TX_COUNT; txcount++) {
2684 			if (pwrinfo5g->ofdm_diff[rfpath][txcount] & BIT(3))
2685 				pwrinfo5g->ofdm_diff[rfpath][txcount] |= 0xF0;
2686 		}
2687 		for (txcount = 0; txcount < MAX_TX_COUNT; txcount++) {
2688 			pwrinfo5g->bw80_diff[rfpath][txcount] =	(hwinfo[eeaddr] & 0xf0) >> 4;
2689 			/* 4bit sign number to 8 bit sign number */
2690 			if (pwrinfo5g->bw80_diff[rfpath][txcount] & BIT(3))
2691 				pwrinfo5g->bw80_diff[rfpath][txcount] |= 0xF0;
2692 			/* 4bit sign number to 8 bit sign number */
2693 			pwrinfo5g->bw160_diff[rfpath][txcount] = (hwinfo[eeaddr] & 0x0f);
2694 			if (pwrinfo5g->bw160_diff[rfpath][txcount] & BIT(3))
2695 				pwrinfo5g->bw160_diff[rfpath][txcount] |= 0xF0;
2696 
2697 			eeaddr++;
2698 		}
2699 	}
2700 }
2701 #if 0
2702 static void _rtl8812ae_read_txpower_info_from_hwpg(struct ieee80211_hw *hw,
2703 						 bool autoload_fail,
2704 						 u8 *hwinfo)
2705 {
2706 	struct rtl_priv *rtlpriv = rtl_priv(hw);
2707 	struct rtl_efuse *rtlefuse = rtl_efuse(rtl_priv(hw));
2708 	struct txpower_info_2g pwrinfo24g;
2709 	struct txpower_info_5g pwrinfo5g;
2710 	u8 rf_path, index;
2711 	u8 i;
2712 
2713 	_rtl8821ae_read_power_value_fromprom(hw, &pwrinfo24g,
2714 					&pwrinfo5g, autoload_fail, hwinfo);
2715 
2716 	for (rf_path = 0; rf_path < 2; rf_path++) {
2717 		for (i = 0; i < CHANNEL_MAX_NUMBER_2G; i++) {
2718 			index = _rtl8821ae_get_chnl_group(i + 1);
2719 
2720 			if (i == CHANNEL_MAX_NUMBER_2G - 1) {
2721 				rtlefuse->txpwrlevel_cck[rf_path][i] =
2722 					pwrinfo24g.index_cck_base[rf_path][5];
2723 				rtlefuse->txpwrlevel_ht40_1s[rf_path][i] =
2724 					pwrinfo24g.index_bw40_base[rf_path][index];
2725 			} else {
2726 				rtlefuse->txpwrlevel_cck[rf_path][i] =
2727 					pwrinfo24g.index_cck_base[rf_path][index];
2728 				rtlefuse->txpwrlevel_ht40_1s[rf_path][i] =
2729 					pwrinfo24g.index_bw40_base[rf_path][index];
2730 			}
2731 		}
2732 
2733 		for (i = 0; i < CHANNEL_MAX_NUMBER_5G; i++) {
2734 			index = _rtl8821ae_get_chnl_group(channel5g[i]);
2735 			rtlefuse->txpwr_5g_bw40base[rf_path][i] =
2736 					pwrinfo5g.index_bw40_base[rf_path][index];
2737 		}
2738 		for (i = 0; i < CHANNEL_MAX_NUMBER_5G_80M; i++) {
2739 			u8 upper, lower;
2740 			index = _rtl8821ae_get_chnl_group(channel5g_80m[i]);
2741 			upper = pwrinfo5g.index_bw40_base[rf_path][index];
2742 			lower = pwrinfo5g.index_bw40_base[rf_path][index + 1];
2743 
2744 			rtlefuse->txpwr_5g_bw80base[rf_path][i] = (upper + lower) / 2;
2745 		}
2746 		for (i = 0; i < MAX_TX_COUNT; i++) {
2747 			rtlefuse->txpwr_cckdiff[rf_path][i] =
2748 				pwrinfo24g.cck_diff[rf_path][i];
2749 			rtlefuse->txpwr_legacyhtdiff[rf_path][i] =
2750 				pwrinfo24g.ofdm_diff[rf_path][i];
2751 			rtlefuse->txpwr_ht20diff[rf_path][i] =
2752 				pwrinfo24g.bw20_diff[rf_path][i];
2753 			rtlefuse->txpwr_ht40diff[rf_path][i] =
2754 				pwrinfo24g.bw40_diff[rf_path][i];
2755 
2756 			rtlefuse->txpwr_5g_ofdmdiff[rf_path][i] =
2757 				pwrinfo5g.ofdm_diff[rf_path][i];
2758 			rtlefuse->txpwr_5g_bw20diff[rf_path][i] =
2759 				pwrinfo5g.bw20_diff[rf_path][i];
2760 			rtlefuse->txpwr_5g_bw40diff[rf_path][i] =
2761 				pwrinfo5g.bw40_diff[rf_path][i];
2762 			rtlefuse->txpwr_5g_bw80diff[rf_path][i] =
2763 				pwrinfo5g.bw80_diff[rf_path][i];
2764 		}
2765 	}
2766 
2767 	if (!autoload_fail) {
2768 		rtlefuse->eeprom_regulatory =
2769 			hwinfo[EEPROM_RF_BOARD_OPTION] & 0x07;/*bit0~2*/
2770 		if (hwinfo[EEPROM_RF_BOARD_OPTION] == 0xFF)
2771 			rtlefuse->eeprom_regulatory = 0;
2772 	} else {
2773 		rtlefuse->eeprom_regulatory = 0;
2774 	}
2775 
2776 	RTPRINT(rtlpriv, FINIT, INIT_TXPOWER,
2777 	"eeprom_regulatory = 0x%x\n", rtlefuse->eeprom_regulatory);
2778 }
2779 #endif
2780 static noinline_for_stack void
_rtl8821ae_read_txpower_info_from_hwpg(struct ieee80211_hw * hw,bool autoload_fail,u8 * hwinfo)2781 _rtl8821ae_read_txpower_info_from_hwpg(struct ieee80211_hw *hw,
2782 				       bool autoload_fail, u8 *hwinfo)
2783 {
2784 	struct rtl_priv *rtlpriv = rtl_priv(hw);
2785 	struct rtl_efuse *rtlefuse = rtl_efuse(rtl_priv(hw));
2786 	struct txpower_info_2g pwrinfo24g;
2787 	struct txpower_info_5g pwrinfo5g;
2788 	u8 rf_path, index;
2789 	u8 i;
2790 
2791 	_rtl8821ae_read_power_value_fromprom(hw, &pwrinfo24g,
2792 		&pwrinfo5g, autoload_fail, hwinfo);
2793 
2794 	for (rf_path = 0; rf_path < 2; rf_path++) {
2795 		for (i = 0; i < CHANNEL_MAX_NUMBER_2G; i++) {
2796 			index = _rtl8821ae_get_chnl_group(i + 1);
2797 
2798 			if (i == CHANNEL_MAX_NUMBER_2G - 1) {
2799 				rtlefuse->txpwrlevel_cck[rf_path][i] =
2800 					pwrinfo24g.index_cck_base[rf_path][5];
2801 				rtlefuse->txpwrlevel_ht40_1s[rf_path][i] =
2802 					pwrinfo24g.index_bw40_base[rf_path][index];
2803 			} else {
2804 				rtlefuse->txpwrlevel_cck[rf_path][i] =
2805 					pwrinfo24g.index_cck_base[rf_path][index];
2806 				rtlefuse->txpwrlevel_ht40_1s[rf_path][i] =
2807 					pwrinfo24g.index_bw40_base[rf_path][index];
2808 			}
2809 		}
2810 
2811 		for (i = 0; i < CHANNEL_MAX_NUMBER_5G; i++) {
2812 			index = _rtl8821ae_get_chnl_group(channel5g[i]);
2813 			rtlefuse->txpwr_5g_bw40base[rf_path][i] =
2814 				pwrinfo5g.index_bw40_base[rf_path][index];
2815 		}
2816 		for (i = 0; i < CHANNEL_MAX_NUMBER_5G_80M; i++) {
2817 			u8 upper, lower;
2818 			index = _rtl8821ae_get_chnl_group(channel5g_80m[i]);
2819 			upper = pwrinfo5g.index_bw40_base[rf_path][index];
2820 			lower = pwrinfo5g.index_bw40_base[rf_path][index + 1];
2821 
2822 			rtlefuse->txpwr_5g_bw80base[rf_path][i] = (upper + lower) / 2;
2823 		}
2824 		for (i = 0; i < MAX_TX_COUNT; i++) {
2825 			rtlefuse->txpwr_cckdiff[rf_path][i] =
2826 				pwrinfo24g.cck_diff[rf_path][i];
2827 			rtlefuse->txpwr_legacyhtdiff[rf_path][i] =
2828 				pwrinfo24g.ofdm_diff[rf_path][i];
2829 			rtlefuse->txpwr_ht20diff[rf_path][i] =
2830 				pwrinfo24g.bw20_diff[rf_path][i];
2831 			rtlefuse->txpwr_ht40diff[rf_path][i] =
2832 				pwrinfo24g.bw40_diff[rf_path][i];
2833 
2834 			rtlefuse->txpwr_5g_ofdmdiff[rf_path][i] =
2835 				pwrinfo5g.ofdm_diff[rf_path][i];
2836 			rtlefuse->txpwr_5g_bw20diff[rf_path][i] =
2837 				pwrinfo5g.bw20_diff[rf_path][i];
2838 			rtlefuse->txpwr_5g_bw40diff[rf_path][i] =
2839 				pwrinfo5g.bw40_diff[rf_path][i];
2840 			rtlefuse->txpwr_5g_bw80diff[rf_path][i] =
2841 				pwrinfo5g.bw80_diff[rf_path][i];
2842 		}
2843 	}
2844 	/*bit0~2*/
2845 	if (!autoload_fail) {
2846 		rtlefuse->eeprom_regulatory = hwinfo[EEPROM_RF_BOARD_OPTION] & 0x07;
2847 		if (hwinfo[EEPROM_RF_BOARD_OPTION] == 0xFF)
2848 			rtlefuse->eeprom_regulatory = 0;
2849 	} else {
2850 		rtlefuse->eeprom_regulatory = 0;
2851 	}
2852 
2853 	RTPRINT(rtlpriv, FINIT, INIT_TXPOWER,
2854 	"eeprom_regulatory = 0x%x\n", rtlefuse->eeprom_regulatory);
2855 }
2856 
_rtl8812ae_read_pa_type(struct ieee80211_hw * hw,u8 * hwinfo,bool autoload_fail)2857 static void _rtl8812ae_read_pa_type(struct ieee80211_hw *hw, u8 *hwinfo,
2858 				    bool autoload_fail)
2859 {
2860 	struct rtl_priv *rtlpriv = rtl_priv(hw);
2861 	struct rtl_hal *rtlhal = rtl_hal(rtlpriv);
2862 
2863 	if (!autoload_fail) {
2864 		rtlhal->pa_type_2g = hwinfo[0XBC];
2865 		rtlhal->lna_type_2g = hwinfo[0XBD];
2866 		if (rtlhal->pa_type_2g == 0xFF && rtlhal->lna_type_2g == 0xFF) {
2867 			rtlhal->pa_type_2g = 0;
2868 			rtlhal->lna_type_2g = 0;
2869 		}
2870 		rtlhal->external_pa_2g = ((rtlhal->pa_type_2g & BIT(5)) &&
2871 					  (rtlhal->pa_type_2g & BIT(4))) ?
2872 					 1 : 0;
2873 		rtlhal->external_lna_2g = ((rtlhal->lna_type_2g & BIT(7)) &&
2874 					   (rtlhal->lna_type_2g & BIT(3))) ?
2875 					  1 : 0;
2876 
2877 		rtlhal->pa_type_5g = hwinfo[0XBC];
2878 		rtlhal->lna_type_5g = hwinfo[0XBF];
2879 		if (rtlhal->pa_type_5g == 0xFF && rtlhal->lna_type_5g == 0xFF) {
2880 			rtlhal->pa_type_5g = 0;
2881 			rtlhal->lna_type_5g = 0;
2882 		}
2883 		rtlhal->external_pa_5g = ((rtlhal->pa_type_5g & BIT(1)) &&
2884 					  (rtlhal->pa_type_5g & BIT(0))) ?
2885 					 1 : 0;
2886 		rtlhal->external_lna_5g = ((rtlhal->lna_type_5g & BIT(7)) &&
2887 					   (rtlhal->lna_type_5g & BIT(3))) ?
2888 					  1 : 0;
2889 	} else {
2890 		rtlhal->external_pa_2g  = 0;
2891 		rtlhal->external_lna_2g = 0;
2892 		rtlhal->external_pa_5g  = 0;
2893 		rtlhal->external_lna_5g = 0;
2894 	}
2895 }
2896 
_rtl8812ae_read_amplifier_type(struct ieee80211_hw * hw,u8 * hwinfo,bool autoload_fail)2897 static void _rtl8812ae_read_amplifier_type(struct ieee80211_hw *hw, u8 *hwinfo,
2898 					   bool autoload_fail)
2899 {
2900 	struct rtl_priv *rtlpriv = rtl_priv(hw);
2901 	struct rtl_hal *rtlhal = rtl_hal(rtlpriv);
2902 
2903 	u8 ext_type_pa_2g_a  = (hwinfo[0XBD] & BIT(2))      >> 2; /* 0XBD[2] */
2904 	u8 ext_type_pa_2g_b  = (hwinfo[0XBD] & BIT(6))      >> 6; /* 0XBD[6] */
2905 	u8 ext_type_pa_5g_a  = (hwinfo[0XBF] & BIT(2))      >> 2; /* 0XBF[2] */
2906 	u8 ext_type_pa_5g_b  = (hwinfo[0XBF] & BIT(6))      >> 6; /* 0XBF[6] */
2907 	/* 0XBD[1:0] */
2908 	u8 ext_type_lna_2g_a = (hwinfo[0XBD] & (BIT(1) | BIT(0))) >> 0;
2909 	/* 0XBD[5:4] */
2910 	u8 ext_type_lna_2g_b = (hwinfo[0XBD] & (BIT(5) | BIT(4))) >> 4;
2911 	/* 0XBF[1:0] */
2912 	u8 ext_type_lna_5g_a = (hwinfo[0XBF] & (BIT(1) | BIT(0))) >> 0;
2913 	/* 0XBF[5:4] */
2914 	u8 ext_type_lna_5g_b = (hwinfo[0XBF] & (BIT(5) | BIT(4))) >> 4;
2915 
2916 	_rtl8812ae_read_pa_type(hw, hwinfo, autoload_fail);
2917 
2918 	/* [2.4G] Path A and B are both extPA */
2919 	if ((rtlhal->pa_type_2g & (BIT(5) | BIT(4))) == (BIT(5) | BIT(4)))
2920 		rtlhal->type_gpa  = ext_type_pa_2g_b  << 2 | ext_type_pa_2g_a;
2921 
2922 	/* [5G] Path A and B are both extPA */
2923 	if ((rtlhal->pa_type_5g & (BIT(1) | BIT(0))) == (BIT(1) | BIT(0)))
2924 		rtlhal->type_apa  = ext_type_pa_5g_b  << 2 | ext_type_pa_5g_a;
2925 
2926 	/* [2.4G] Path A and B are both extLNA */
2927 	if ((rtlhal->lna_type_2g & (BIT(7) | BIT(3))) == (BIT(7) | BIT(3)))
2928 		rtlhal->type_glna = ext_type_lna_2g_b << 2 | ext_type_lna_2g_a;
2929 
2930 	/* [5G] Path A and B are both extLNA */
2931 	if ((rtlhal->lna_type_5g & (BIT(7) | BIT(3))) == (BIT(7) | BIT(3)))
2932 		rtlhal->type_alna = ext_type_lna_5g_b << 2 | ext_type_lna_5g_a;
2933 }
2934 
_rtl8821ae_read_pa_type(struct ieee80211_hw * hw,u8 * hwinfo,bool autoload_fail)2935 static void _rtl8821ae_read_pa_type(struct ieee80211_hw *hw, u8 *hwinfo,
2936 				    bool autoload_fail)
2937 {
2938 	struct rtl_priv *rtlpriv = rtl_priv(hw);
2939 	struct rtl_hal *rtlhal = rtl_hal(rtlpriv);
2940 
2941 	if (!autoload_fail) {
2942 		rtlhal->pa_type_2g = hwinfo[0XBC];
2943 		rtlhal->lna_type_2g = hwinfo[0XBD];
2944 		if (rtlhal->pa_type_2g == 0xFF && rtlhal->lna_type_2g == 0xFF) {
2945 			rtlhal->pa_type_2g = 0;
2946 			rtlhal->lna_type_2g = 0;
2947 		}
2948 		rtlhal->external_pa_2g = (rtlhal->pa_type_2g & BIT(5)) ? 1 : 0;
2949 		rtlhal->external_lna_2g = (rtlhal->lna_type_2g & BIT(7)) ? 1 : 0;
2950 
2951 		rtlhal->pa_type_5g = hwinfo[0XBC];
2952 		rtlhal->lna_type_5g = hwinfo[0XBF];
2953 		if (rtlhal->pa_type_5g == 0xFF && rtlhal->lna_type_5g == 0xFF) {
2954 			rtlhal->pa_type_5g = 0;
2955 			rtlhal->lna_type_5g = 0;
2956 		}
2957 		rtlhal->external_pa_5g = (rtlhal->pa_type_5g & BIT(1)) ? 1 : 0;
2958 		rtlhal->external_lna_5g = (rtlhal->lna_type_5g & BIT(7)) ? 1 : 0;
2959 	} else {
2960 		rtlhal->external_pa_2g  = 0;
2961 		rtlhal->external_lna_2g = 0;
2962 		rtlhal->external_pa_5g  = 0;
2963 		rtlhal->external_lna_5g = 0;
2964 	}
2965 }
2966 
_rtl8821ae_read_rfe_type(struct ieee80211_hw * hw,u8 * hwinfo,bool autoload_fail)2967 static void _rtl8821ae_read_rfe_type(struct ieee80211_hw *hw, u8 *hwinfo,
2968 			      bool autoload_fail)
2969 {
2970 	struct rtl_priv *rtlpriv = rtl_priv(hw);
2971 	struct rtl_hal *rtlhal = rtl_hal(rtlpriv);
2972 
2973 	if (!autoload_fail) {
2974 		if (hwinfo[EEPROM_RFE_OPTION] & BIT(7)) {
2975 			if (rtlhal->external_lna_5g) {
2976 				if (rtlhal->external_pa_5g) {
2977 					if (rtlhal->external_lna_2g &&
2978 					    rtlhal->external_pa_2g)
2979 						rtlhal->rfe_type = 3;
2980 					else
2981 						rtlhal->rfe_type = 0;
2982 				} else {
2983 					rtlhal->rfe_type = 2;
2984 				}
2985 			} else {
2986 				rtlhal->rfe_type = 4;
2987 			}
2988 		} else {
2989 			rtlhal->rfe_type = hwinfo[EEPROM_RFE_OPTION] & 0x3F;
2990 
2991 			if (rtlhal->rfe_type == 4 &&
2992 			    (rtlhal->external_pa_5g ||
2993 			     rtlhal->external_pa_2g ||
2994 			     rtlhal->external_lna_5g ||
2995 			     rtlhal->external_lna_2g)) {
2996 				if (rtlhal->hw_type == HARDWARE_TYPE_RTL8812AE)
2997 					rtlhal->rfe_type = 2;
2998 			}
2999 		}
3000 	} else {
3001 		rtlhal->rfe_type = 0x04;
3002 	}
3003 
3004 	rtl_dbg(rtlpriv, COMP_INIT, DBG_LOUD,
3005 		"RFE Type: 0x%2x\n", rtlhal->rfe_type);
3006 }
3007 
_rtl8812ae_read_bt_coexist_info_from_hwpg(struct ieee80211_hw * hw,bool auto_load_fail,u8 * hwinfo)3008 static void _rtl8812ae_read_bt_coexist_info_from_hwpg(struct ieee80211_hw *hw,
3009 					      bool auto_load_fail, u8 *hwinfo)
3010 {
3011 	struct rtl_priv *rtlpriv = rtl_priv(hw);
3012 	u8 value;
3013 
3014 	if (!auto_load_fail) {
3015 		value = *(u8 *)&hwinfo[EEPROM_RF_BOARD_OPTION];
3016 		if (((value & 0xe0) >> 5) == 0x1)
3017 			rtlpriv->btcoexist.btc_info.btcoexist = 1;
3018 		else
3019 			rtlpriv->btcoexist.btc_info.btcoexist = 0;
3020 		rtlpriv->btcoexist.btc_info.bt_type = BT_RTL8812A;
3021 
3022 		value = hwinfo[EEPROM_RF_BT_SETTING];
3023 		rtlpriv->btcoexist.btc_info.ant_num = (value & 0x1);
3024 	} else {
3025 		rtlpriv->btcoexist.btc_info.btcoexist = 0;
3026 		rtlpriv->btcoexist.btc_info.bt_type = BT_RTL8812A;
3027 		rtlpriv->btcoexist.btc_info.ant_num = ANT_X2;
3028 	}
3029 	/*move BT_InitHalVars() to init_sw_vars*/
3030 }
3031 
_rtl8821ae_read_bt_coexist_info_from_hwpg(struct ieee80211_hw * hw,bool auto_load_fail,u8 * hwinfo)3032 static void _rtl8821ae_read_bt_coexist_info_from_hwpg(struct ieee80211_hw *hw,
3033 					      bool auto_load_fail, u8 *hwinfo)
3034 {
3035 	struct rtl_priv *rtlpriv = rtl_priv(hw);
3036 	u8 value;
3037 	u32 tmpu_32;
3038 
3039 	if (!auto_load_fail) {
3040 		tmpu_32 = rtl_read_dword(rtlpriv, REG_MULTI_FUNC_CTRL);
3041 		if (tmpu_32 & BIT(18))
3042 			rtlpriv->btcoexist.btc_info.btcoexist = 1;
3043 		else
3044 			rtlpriv->btcoexist.btc_info.btcoexist = 0;
3045 		rtlpriv->btcoexist.btc_info.bt_type = BT_RTL8821A;
3046 
3047 		value = hwinfo[EEPROM_RF_BT_SETTING];
3048 		rtlpriv->btcoexist.btc_info.ant_num = (value & 0x1);
3049 	} else {
3050 		rtlpriv->btcoexist.btc_info.btcoexist = 0;
3051 		rtlpriv->btcoexist.btc_info.bt_type = BT_RTL8821A;
3052 		rtlpriv->btcoexist.btc_info.ant_num = ANT_X2;
3053 	}
3054 	/*move BT_InitHalVars() to init_sw_vars*/
3055 }
3056 
_rtl8821ae_read_adapter_info(struct ieee80211_hw * hw,bool b_pseudo_test)3057 static void _rtl8821ae_read_adapter_info(struct ieee80211_hw *hw, bool b_pseudo_test)
3058 {
3059 	struct rtl_priv *rtlpriv = rtl_priv(hw);
3060 	struct rtl_efuse *rtlefuse = rtl_efuse(rtl_priv(hw));
3061 	struct rtl_hal *rtlhal = rtl_hal(rtl_priv(hw));
3062 	static const int params[] = {
3063 		RTL_EEPROM_ID, EEPROM_VID, EEPROM_DID,
3064 		EEPROM_SVID, EEPROM_SMID, EEPROM_MAC_ADDR,
3065 		EEPROM_CHANNELPLAN, EEPROM_VERSION, EEPROM_CUSTOMER_ID,
3066 		COUNTRY_CODE_WORLD_WIDE_13
3067 	};
3068 	u8 *hwinfo;
3069 
3070 	if (b_pseudo_test) {
3071 		;/* need add */
3072 	}
3073 
3074 	hwinfo = kzalloc(HWSET_MAX_SIZE, GFP_KERNEL);
3075 	if (!hwinfo)
3076 		return;
3077 
3078 	if (rtl_get_hwinfo(hw, rtlpriv, HWSET_MAX_SIZE, hwinfo, params))
3079 		goto exit;
3080 
3081 	_rtl8821ae_read_txpower_info_from_hwpg(hw, rtlefuse->autoload_failflag,
3082 					       hwinfo);
3083 
3084 	if (rtlhal->hw_type == HARDWARE_TYPE_RTL8812AE) {
3085 		_rtl8812ae_read_amplifier_type(hw, hwinfo,
3086 					       rtlefuse->autoload_failflag);
3087 		_rtl8812ae_read_bt_coexist_info_from_hwpg(hw,
3088 				rtlefuse->autoload_failflag, hwinfo);
3089 	} else {
3090 		_rtl8821ae_read_pa_type(hw, hwinfo, rtlefuse->autoload_failflag);
3091 		_rtl8821ae_read_bt_coexist_info_from_hwpg(hw,
3092 				rtlefuse->autoload_failflag, hwinfo);
3093 	}
3094 
3095 	_rtl8821ae_read_rfe_type(hw, hwinfo, rtlefuse->autoload_failflag);
3096 	/*board type*/
3097 	rtlefuse->board_type = ODM_BOARD_DEFAULT;
3098 	if (rtlhal->external_lna_2g != 0)
3099 		rtlefuse->board_type |= ODM_BOARD_EXT_LNA;
3100 	if (rtlhal->external_lna_5g != 0)
3101 		rtlefuse->board_type |= ODM_BOARD_EXT_LNA_5G;
3102 	if (rtlhal->external_pa_2g != 0)
3103 		rtlefuse->board_type |= ODM_BOARD_EXT_PA;
3104 	if (rtlhal->external_pa_5g != 0)
3105 		rtlefuse->board_type |= ODM_BOARD_EXT_PA_5G;
3106 
3107 	if (rtlpriv->btcoexist.btc_info.btcoexist == 1)
3108 		rtlefuse->board_type |= ODM_BOARD_BT;
3109 
3110 	rtlhal->board_type = rtlefuse->board_type;
3111 	rtl_dbg(rtlpriv, COMP_INIT, DBG_LOUD,
3112 		"board_type = 0x%x\n", rtlefuse->board_type);
3113 
3114 	rtlefuse->eeprom_channelplan = *(u8 *)&hwinfo[EEPROM_CHANNELPLAN];
3115 	if (rtlefuse->eeprom_channelplan == 0xff)
3116 		rtlefuse->eeprom_channelplan = 0x7F;
3117 
3118 	/* set channel plan from efuse */
3119 	rtlefuse->channel_plan = rtlefuse->eeprom_channelplan;
3120 
3121 	/*parse xtal*/
3122 	rtlefuse->crystalcap = hwinfo[EEPROM_XTAL_8821AE];
3123 	if (rtlefuse->crystalcap == 0xFF)
3124 		rtlefuse->crystalcap = 0x20;
3125 
3126 	rtlefuse->eeprom_thermalmeter = *(u8 *)&hwinfo[EEPROM_THERMAL_METER];
3127 	if ((rtlefuse->eeprom_thermalmeter == 0xff) ||
3128 	    rtlefuse->autoload_failflag) {
3129 		rtlefuse->apk_thermalmeterignore = true;
3130 		rtlefuse->eeprom_thermalmeter = 0xff;
3131 	}
3132 
3133 	rtlefuse->thermalmeter[0] = rtlefuse->eeprom_thermalmeter;
3134 	rtl_dbg(rtlpriv, COMP_INIT, DBG_LOUD,
3135 		"thermalmeter = 0x%x\n", rtlefuse->eeprom_thermalmeter);
3136 
3137 	if (!rtlefuse->autoload_failflag) {
3138 		rtlefuse->antenna_div_cfg =
3139 		  (hwinfo[EEPROM_RF_BOARD_OPTION] & 0x18) >> 3;
3140 		if (hwinfo[EEPROM_RF_BOARD_OPTION] == 0xff)
3141 			rtlefuse->antenna_div_cfg = 0;
3142 
3143 		if (rtlpriv->btcoexist.btc_info.btcoexist == 1 &&
3144 		    rtlpriv->btcoexist.btc_info.ant_num == ANT_X1)
3145 			rtlefuse->antenna_div_cfg = 0;
3146 
3147 		rtlefuse->antenna_div_type = hwinfo[EEPROM_RF_ANTENNA_OPT_88E];
3148 		if (rtlefuse->antenna_div_type == 0xff)
3149 			rtlefuse->antenna_div_type = FIXED_HW_ANTDIV;
3150 	} else {
3151 		rtlefuse->antenna_div_cfg = 0;
3152 		rtlefuse->antenna_div_type = 0;
3153 	}
3154 
3155 	rtl_dbg(rtlpriv, COMP_INIT, DBG_LOUD,
3156 		"SWAS: bHwAntDiv = %x, TRxAntDivType = %x\n",
3157 		rtlefuse->antenna_div_cfg, rtlefuse->antenna_div_type);
3158 
3159 	rtlpriv->ledctl.led_opendrain = true;
3160 
3161 	if (rtlhal->oem_id == RT_CID_DEFAULT) {
3162 		switch (rtlefuse->eeprom_oemid) {
3163 		case RT_CID_DEFAULT:
3164 			break;
3165 		case EEPROM_CID_TOSHIBA:
3166 			rtlhal->oem_id = RT_CID_TOSHIBA;
3167 			break;
3168 		case EEPROM_CID_CCX:
3169 			rtlhal->oem_id = RT_CID_CCX;
3170 			break;
3171 		case EEPROM_CID_QMI:
3172 			rtlhal->oem_id = RT_CID_819X_QMI;
3173 			break;
3174 		case EEPROM_CID_WHQL:
3175 			break;
3176 		default:
3177 			break;
3178 		}
3179 	}
3180 exit:
3181 	kfree(hwinfo);
3182 }
3183 
3184 /*static void _rtl8821ae_hal_customized_behavior(struct ieee80211_hw *hw)
3185 {
3186 	struct rtl_priv *rtlpriv = rtl_priv(hw);
3187 	struct rtl_pci_priv *pcipriv = rtl_pcipriv(hw);
3188 	struct rtl_hal *rtlhal = rtl_hal(rtl_priv(hw));
3189 
3190 	rtlpriv->ledctl.led_opendrain = true;
3191 	switch (rtlhal->oem_id) {
3192 	case RT_CID_819X_HP:
3193 		rtlpriv->ledctl.led_opendrain = true;
3194 		break;
3195 	case RT_CID_819X_LENOVO:
3196 	case RT_CID_DEFAULT:
3197 	case RT_CID_TOSHIBA:
3198 	case RT_CID_CCX:
3199 	case RT_CID_819X_ACER:
3200 	case RT_CID_WHQL:
3201 	default:
3202 		break;
3203 	}
3204 	rtl_dbg(rtlpriv, COMP_INIT, DBG_DMESG,
3205 		"RT Customized ID: 0x%02X\n", rtlhal->oem_id);
3206 }*/
3207 
rtl8821ae_read_eeprom_info(struct ieee80211_hw * hw)3208 void rtl8821ae_read_eeprom_info(struct ieee80211_hw *hw)
3209 {
3210 	struct rtl_priv *rtlpriv = rtl_priv(hw);
3211 	struct rtl_efuse *rtlefuse = rtl_efuse(rtl_priv(hw));
3212 	struct rtl_phy *rtlphy = &rtlpriv->phy;
3213 	struct rtl_hal *rtlhal = rtl_hal(rtl_priv(hw));
3214 	u8 tmp_u1b;
3215 
3216 	rtlhal->version = _rtl8821ae_read_chip_version(hw);
3217 	if (get_rf_type(rtlphy) == RF_1T1R)
3218 		rtlpriv->dm.rfpath_rxenable[0] = true;
3219 	else
3220 		rtlpriv->dm.rfpath_rxenable[0] =
3221 		    rtlpriv->dm.rfpath_rxenable[1] = true;
3222 	rtl_dbg(rtlpriv, COMP_INIT, DBG_LOUD, "VersionID = 0x%4x\n",
3223 		rtlhal->version);
3224 
3225 	tmp_u1b = rtl_read_byte(rtlpriv, REG_9346CR);
3226 	if (tmp_u1b & BIT(4)) {
3227 		rtl_dbg(rtlpriv, COMP_INIT, DBG_DMESG, "Boot from EEPROM\n");
3228 		rtlefuse->epromtype = EEPROM_93C46;
3229 	} else {
3230 		rtl_dbg(rtlpriv, COMP_INIT, DBG_DMESG, "Boot from EFUSE\n");
3231 		rtlefuse->epromtype = EEPROM_BOOT_EFUSE;
3232 	}
3233 
3234 	if (tmp_u1b & BIT(5)) {
3235 		rtl_dbg(rtlpriv, COMP_INIT, DBG_LOUD, "Autoload OK\n");
3236 		rtlefuse->autoload_failflag = false;
3237 		_rtl8821ae_read_adapter_info(hw, false);
3238 	} else {
3239 		pr_err("Autoload ERR!!\n");
3240 	}
3241 	/*hal_ReadRFType_8812A()*/
3242 	/* _rtl8821ae_hal_customized_behavior(hw); */
3243 }
3244 
rtl8821ae_update_hal_rate_table(struct ieee80211_hw * hw,struct ieee80211_sta * sta)3245 static void rtl8821ae_update_hal_rate_table(struct ieee80211_hw *hw,
3246 		struct ieee80211_sta *sta)
3247 {
3248 	struct rtl_priv *rtlpriv = rtl_priv(hw);
3249 	struct rtl_phy *rtlphy = &rtlpriv->phy;
3250 	struct rtl_mac *mac = rtl_mac(rtl_priv(hw));
3251 	struct rtl_hal *rtlhal = rtl_hal(rtl_priv(hw));
3252 	u32 ratr_value;
3253 	u8 ratr_index = 0;
3254 	u8 b_nmode = mac->ht_enable;
3255 	u16 shortgi_rate;
3256 	u32 tmp_ratr_value;
3257 	u32 ratr_mask;
3258 	u8 curtxbw_40mhz = mac->bw_40;
3259 	u8 b_curshortgi_40mhz = (sta->deflink.ht_cap.cap & IEEE80211_HT_CAP_SGI_40) ?
3260 				1 : 0;
3261 	u8 b_curshortgi_20mhz = (sta->deflink.ht_cap.cap & IEEE80211_HT_CAP_SGI_20) ?
3262 				1 : 0;
3263 	enum wireless_mode wirelessmode = mac->mode;
3264 
3265 	if (rtlhal->current_bandtype == BAND_ON_5G)
3266 		ratr_value = sta->deflink.supp_rates[1] << 4;
3267 	else
3268 		ratr_value = sta->deflink.supp_rates[0];
3269 	if (mac->opmode == NL80211_IFTYPE_ADHOC)
3270 		ratr_value = 0xfff;
3271 	ratr_value |= (sta->deflink.ht_cap.mcs.rx_mask[1] << 20 |
3272 			sta->deflink.ht_cap.mcs.rx_mask[0] << 12);
3273 	switch (wirelessmode) {
3274 	case WIRELESS_MODE_B:
3275 		if (ratr_value & 0x0000000c)
3276 			ratr_value &= 0x0000000d;
3277 		else
3278 			ratr_value &= 0x0000000f;
3279 		break;
3280 	case WIRELESS_MODE_G:
3281 		ratr_value &= 0x00000FF5;
3282 		break;
3283 	case WIRELESS_MODE_N_24G:
3284 	case WIRELESS_MODE_N_5G:
3285 		b_nmode = 1;
3286 
3287 		if (get_rf_type(rtlphy) == RF_1T2R ||
3288 		    get_rf_type(rtlphy) == RF_1T1R)
3289 			ratr_mask = 0x000ff005;
3290 		else
3291 			ratr_mask = 0x0f0ff005;
3292 
3293 		ratr_value &= ratr_mask;
3294 		break;
3295 	default:
3296 		if (rtlphy->rf_type == RF_1T2R)
3297 			ratr_value &= 0x000ff0ff;
3298 		else
3299 			ratr_value &= 0x0f0ff0ff;
3300 
3301 		break;
3302 	}
3303 
3304 	if ((rtlpriv->btcoexist.bt_coexistence) &&
3305 	     (rtlpriv->btcoexist.bt_coexist_type == BT_CSR_BC4) &&
3306 	     (rtlpriv->btcoexist.bt_cur_state) &&
3307 	     (rtlpriv->btcoexist.bt_ant_isolation) &&
3308 	     ((rtlpriv->btcoexist.bt_service == BT_SCO) ||
3309 	     (rtlpriv->btcoexist.bt_service == BT_BUSY)))
3310 		ratr_value &= 0x0fffcfc0;
3311 	else
3312 		ratr_value &= 0x0FFFFFFF;
3313 
3314 	if (b_nmode && ((curtxbw_40mhz &&
3315 			 b_curshortgi_40mhz) || (!curtxbw_40mhz &&
3316 						 b_curshortgi_20mhz))) {
3317 		ratr_value |= 0x10000000;
3318 		tmp_ratr_value = (ratr_value >> 12);
3319 
3320 		for (shortgi_rate = 15; shortgi_rate > 0; shortgi_rate--) {
3321 			if ((1 << shortgi_rate) & tmp_ratr_value)
3322 				break;
3323 		}
3324 
3325 		shortgi_rate = (shortgi_rate << 12) | (shortgi_rate << 8) |
3326 		    (shortgi_rate << 4) | (shortgi_rate);
3327 	}
3328 
3329 	rtl_write_dword(rtlpriv, REG_ARFR0 + ratr_index * 4, ratr_value);
3330 
3331 	rtl_dbg(rtlpriv, COMP_RATR, DBG_DMESG,
3332 		"%x\n", rtl_read_dword(rtlpriv, REG_ARFR0));
3333 }
3334 
_rtl8821ae_rate_to_bitmap_2ssvht(__le16 vht_rate)3335 static u32 _rtl8821ae_rate_to_bitmap_2ssvht(__le16 vht_rate)
3336 {
3337 	u8 i, j, tmp_rate;
3338 	u32 rate_bitmap = 0;
3339 
3340 	for (i = j = 0; i < 4; i += 2, j += 10) {
3341 		tmp_rate = (le16_to_cpu(vht_rate) >> i) & 3;
3342 
3343 		switch (tmp_rate) {
3344 		case 2:
3345 			rate_bitmap = rate_bitmap | (0x03ff << j);
3346 			break;
3347 		case 1:
3348 			rate_bitmap = rate_bitmap | (0x01ff << j);
3349 			break;
3350 		case 0:
3351 			rate_bitmap = rate_bitmap | (0x00ff << j);
3352 			break;
3353 		default:
3354 			break;
3355 		}
3356 	}
3357 
3358 	return rate_bitmap;
3359 }
3360 
_rtl8821ae_set_ra_vht_ratr_bitmap(struct ieee80211_hw * hw,enum wireless_mode wirelessmode,u32 ratr_bitmap)3361 static u32 _rtl8821ae_set_ra_vht_ratr_bitmap(struct ieee80211_hw *hw,
3362 					     enum wireless_mode wirelessmode,
3363 					     u32 ratr_bitmap)
3364 {
3365 	struct rtl_priv *rtlpriv = rtl_priv(hw);
3366 	struct rtl_phy *rtlphy = &rtlpriv->phy;
3367 	u32 ret_bitmap = ratr_bitmap;
3368 
3369 	if (rtlphy->current_chan_bw == HT_CHANNEL_WIDTH_20_40
3370 		|| rtlphy->current_chan_bw == HT_CHANNEL_WIDTH_80)
3371 		ret_bitmap = ratr_bitmap;
3372 	else if (wirelessmode == WIRELESS_MODE_AC_5G
3373 		|| wirelessmode == WIRELESS_MODE_AC_24G) {
3374 		if (rtlphy->rf_type == RF_1T1R)
3375 			ret_bitmap = ratr_bitmap & (~BIT21);
3376 		else
3377 			ret_bitmap = ratr_bitmap & (~(BIT31|BIT21));
3378 	}
3379 
3380 	return ret_bitmap;
3381 }
3382 
_rtl8821ae_get_vht_eni(enum wireless_mode wirelessmode,u32 ratr_bitmap)3383 static u8 _rtl8821ae_get_vht_eni(enum wireless_mode wirelessmode,
3384 			u32 ratr_bitmap)
3385 {
3386 	u8 ret = 0;
3387 	if (wirelessmode < WIRELESS_MODE_N_24G)
3388 		ret =  0;
3389 	else if (wirelessmode == WIRELESS_MODE_AC_24G) {
3390 		if (ratr_bitmap & 0xfff00000)	/* Mix , 2SS */
3391 			ret = 3;
3392 		else					/* Mix, 1SS */
3393 			ret = 2;
3394 	} else if (wirelessmode == WIRELESS_MODE_AC_5G) {
3395 			ret = 1;
3396 	} /* VHT */
3397 
3398 	return ret << 4;
3399 }
3400 
_rtl8821ae_get_ra_ldpc(struct ieee80211_hw * hw,u8 mac_id,struct rtl_sta_info * sta_entry,enum wireless_mode wirelessmode)3401 static u8 _rtl8821ae_get_ra_ldpc(struct ieee80211_hw *hw,
3402 			     u8 mac_id, struct rtl_sta_info *sta_entry,
3403 			     enum wireless_mode wirelessmode)
3404 {
3405 	u8 b_ldpc = 0;
3406 	/*not support ldpc, do not open*/
3407 	return b_ldpc << 2;
3408 }
3409 
_rtl8821ae_get_ra_rftype(struct ieee80211_hw * hw,enum wireless_mode wirelessmode,u32 ratr_bitmap)3410 static u8 _rtl8821ae_get_ra_rftype(struct ieee80211_hw *hw,
3411 			  enum wireless_mode wirelessmode,
3412 			  u32 ratr_bitmap)
3413 {
3414 	struct rtl_priv *rtlpriv = rtl_priv(hw);
3415 	struct rtl_phy *rtlphy = &rtlpriv->phy;
3416 	u8 rf_type = RF_1T1R;
3417 
3418 	if (rtlphy->rf_type == RF_1T1R)
3419 		rf_type = RF_1T1R;
3420 	else if (wirelessmode == WIRELESS_MODE_AC_5G
3421 		|| wirelessmode == WIRELESS_MODE_AC_24G
3422 		|| wirelessmode == WIRELESS_MODE_AC_ONLY) {
3423 		if (ratr_bitmap & 0xffc00000)
3424 			rf_type = RF_2T2R;
3425 	} else if (wirelessmode == WIRELESS_MODE_N_5G
3426 		|| wirelessmode == WIRELESS_MODE_N_24G) {
3427 		if (ratr_bitmap & 0xfff00000)
3428 			rf_type = RF_2T2R;
3429 	}
3430 
3431 	return rf_type;
3432 }
3433 
_rtl8821ae_get_ra_shortgi(struct ieee80211_hw * hw,struct ieee80211_sta * sta,u8 mac_id)3434 static bool _rtl8821ae_get_ra_shortgi(struct ieee80211_hw *hw, struct ieee80211_sta *sta,
3435 			      u8 mac_id)
3436 {
3437 	bool b_short_gi = false;
3438 	u8 b_curshortgi_40mhz = (sta->deflink.ht_cap.cap & IEEE80211_HT_CAP_SGI_40) ?
3439 				1 : 0;
3440 	u8 b_curshortgi_20mhz = (sta->deflink.ht_cap.cap & IEEE80211_HT_CAP_SGI_20) ?
3441 				1 : 0;
3442 	u8 b_curshortgi_80mhz = 0;
3443 	b_curshortgi_80mhz = (sta->deflink.vht_cap.cap &
3444 			      IEEE80211_VHT_CAP_SHORT_GI_80) ? 1 : 0;
3445 
3446 	if (mac_id == MAC_ID_STATIC_FOR_BROADCAST_MULTICAST)
3447 			b_short_gi = false;
3448 
3449 	if (b_curshortgi_40mhz || b_curshortgi_80mhz
3450 		|| b_curshortgi_20mhz)
3451 		b_short_gi = true;
3452 
3453 	return b_short_gi;
3454 }
3455 
rtl8821ae_update_hal_rate_mask(struct ieee80211_hw * hw,struct ieee80211_sta * sta,u8 rssi_level,bool update_bw)3456 static void rtl8821ae_update_hal_rate_mask(struct ieee80211_hw *hw,
3457 		struct ieee80211_sta *sta, u8 rssi_level, bool update_bw)
3458 {
3459 	struct rtl_priv *rtlpriv = rtl_priv(hw);
3460 	struct rtl_phy *rtlphy = &rtlpriv->phy;
3461 	struct rtl_mac *mac = rtl_mac(rtl_priv(hw));
3462 	struct rtl_sta_info *sta_entry = NULL;
3463 	u32 ratr_bitmap;
3464 	u8 ratr_index;
3465 	enum wireless_mode wirelessmode = 0;
3466 	u8 curtxbw_40mhz = (sta->deflink.ht_cap.cap & IEEE80211_HT_CAP_SUP_WIDTH_20_40)
3467 				? 1 : 0;
3468 	bool b_shortgi = false;
3469 	u8 rate_mask[7];
3470 	u8 macid = 0;
3471 	u8 mimo_ps = IEEE80211_SMPS_OFF;
3472 	u8 rf_type;
3473 
3474 	sta_entry = (struct rtl_sta_info *)sta->drv_priv;
3475 	wirelessmode = sta_entry->wireless_mode;
3476 
3477 	rtl_dbg(rtlpriv, COMP_RATR, DBG_LOUD,
3478 		"wireless mode = 0x%x\n", wirelessmode);
3479 	if (mac->opmode == NL80211_IFTYPE_STATION ||
3480 		mac->opmode == NL80211_IFTYPE_MESH_POINT) {
3481 		curtxbw_40mhz = mac->bw_40;
3482 	} else if (mac->opmode == NL80211_IFTYPE_AP ||
3483 		mac->opmode == NL80211_IFTYPE_ADHOC)
3484 		macid = sta->aid + 1;
3485 	if (wirelessmode == WIRELESS_MODE_N_5G ||
3486 	    wirelessmode == WIRELESS_MODE_AC_5G ||
3487 	    wirelessmode == WIRELESS_MODE_A)
3488 		ratr_bitmap = sta->deflink.supp_rates[NL80211_BAND_5GHZ] << 4;
3489 	else
3490 		ratr_bitmap = sta->deflink.supp_rates[NL80211_BAND_2GHZ];
3491 
3492 	if (mac->opmode == NL80211_IFTYPE_ADHOC)
3493 		ratr_bitmap = 0xfff;
3494 
3495 	if (wirelessmode == WIRELESS_MODE_N_24G
3496 		|| wirelessmode == WIRELESS_MODE_N_5G)
3497 		ratr_bitmap |= (sta->deflink.ht_cap.mcs.rx_mask[1] << 20 |
3498 				sta->deflink.ht_cap.mcs.rx_mask[0] << 12);
3499 	else if (wirelessmode == WIRELESS_MODE_AC_24G
3500 		|| wirelessmode == WIRELESS_MODE_AC_5G
3501 		|| wirelessmode == WIRELESS_MODE_AC_ONLY)
3502 		ratr_bitmap |= _rtl8821ae_rate_to_bitmap_2ssvht(
3503 				sta->deflink.vht_cap.vht_mcs.rx_mcs_map) << 12;
3504 
3505 	b_shortgi = _rtl8821ae_get_ra_shortgi(hw, sta, macid);
3506 	rf_type = _rtl8821ae_get_ra_rftype(hw, wirelessmode, ratr_bitmap);
3507 
3508 /*mac id owner*/
3509 	switch (wirelessmode) {
3510 	case WIRELESS_MODE_B:
3511 		ratr_index = RATR_INX_WIRELESS_B;
3512 		if (ratr_bitmap & 0x0000000c)
3513 			ratr_bitmap &= 0x0000000d;
3514 		else
3515 			ratr_bitmap &= 0x0000000f;
3516 		break;
3517 	case WIRELESS_MODE_G:
3518 		ratr_index = RATR_INX_WIRELESS_GB;
3519 
3520 		if (rssi_level == 1)
3521 			ratr_bitmap &= 0x00000f00;
3522 		else if (rssi_level == 2)
3523 			ratr_bitmap &= 0x00000ff0;
3524 		else
3525 			ratr_bitmap &= 0x00000ff5;
3526 		break;
3527 	case WIRELESS_MODE_A:
3528 		ratr_index = RATR_INX_WIRELESS_G;
3529 		ratr_bitmap &= 0x00000ff0;
3530 		break;
3531 	case WIRELESS_MODE_N_24G:
3532 	case WIRELESS_MODE_N_5G:
3533 		if (wirelessmode == WIRELESS_MODE_N_24G)
3534 			ratr_index = RATR_INX_WIRELESS_NGB;
3535 		else
3536 			ratr_index = RATR_INX_WIRELESS_NG;
3537 
3538 		if (mimo_ps == IEEE80211_SMPS_STATIC
3539 			|| mimo_ps == IEEE80211_SMPS_DYNAMIC) {
3540 			if (rssi_level == 1)
3541 				ratr_bitmap &= 0x000f0000;
3542 			else if (rssi_level == 2)
3543 				ratr_bitmap &= 0x000ff000;
3544 			else
3545 				ratr_bitmap &= 0x000ff005;
3546 		} else {
3547 			if (rf_type == RF_1T1R) {
3548 				if (curtxbw_40mhz) {
3549 					if (rssi_level == 1)
3550 						ratr_bitmap &= 0x000f0000;
3551 					else if (rssi_level == 2)
3552 						ratr_bitmap &= 0x000ff000;
3553 					else
3554 						ratr_bitmap &= 0x000ff015;
3555 				} else {
3556 					if (rssi_level == 1)
3557 						ratr_bitmap &= 0x000f0000;
3558 					else if (rssi_level == 2)
3559 						ratr_bitmap &= 0x000ff000;
3560 					else
3561 						ratr_bitmap &= 0x000ff005;
3562 				}
3563 			} else {
3564 				if (curtxbw_40mhz) {
3565 					if (rssi_level == 1)
3566 						ratr_bitmap &= 0x0fff0000;
3567 					else if (rssi_level == 2)
3568 						ratr_bitmap &= 0x0ffff000;
3569 					else
3570 						ratr_bitmap &= 0x0ffff015;
3571 				} else {
3572 					if (rssi_level == 1)
3573 						ratr_bitmap &= 0x0fff0000;
3574 					else if (rssi_level == 2)
3575 						ratr_bitmap &= 0x0ffff000;
3576 					else
3577 						ratr_bitmap &= 0x0ffff005;
3578 				}
3579 			}
3580 		}
3581 		break;
3582 
3583 	case WIRELESS_MODE_AC_24G:
3584 		ratr_index = RATR_INX_WIRELESS_AC_24N;
3585 		if (rssi_level == 1)
3586 			ratr_bitmap &= 0xfc3f0000;
3587 		else if (rssi_level == 2)
3588 			ratr_bitmap &= 0xfffff000;
3589 		else
3590 			ratr_bitmap &= 0xffffffff;
3591 		break;
3592 
3593 	case WIRELESS_MODE_AC_5G:
3594 		ratr_index = RATR_INX_WIRELESS_AC_5N;
3595 
3596 		if (rf_type == RF_1T1R) {
3597 			if (rssi_level == 1)	/*add by Gary for ac-series*/
3598 				ratr_bitmap &= 0x003f8000;
3599 			else if (rssi_level == 2)
3600 				ratr_bitmap &= 0x003ff000;
3601 			else
3602 				ratr_bitmap &= 0x003ff010;
3603 		} else {
3604 			if (rssi_level == 1)
3605 				ratr_bitmap &= 0xfe3f8000;
3606 			else if (rssi_level == 2)
3607 				ratr_bitmap &= 0xfffff000;
3608 			else
3609 				ratr_bitmap &= 0xfffff010;
3610 		}
3611 		break;
3612 
3613 	default:
3614 		ratr_index = RATR_INX_WIRELESS_NGB;
3615 
3616 		if (rf_type == RF_1T2R)
3617 			ratr_bitmap &= 0x000ff0ff;
3618 		else
3619 			ratr_bitmap &= 0x0f8ff0ff;
3620 		break;
3621 	}
3622 
3623 	ratr_index = rtl_mrate_idx_to_arfr_id(hw, ratr_index, wirelessmode);
3624 	sta_entry->ratr_index = ratr_index;
3625 	ratr_bitmap = _rtl8821ae_set_ra_vht_ratr_bitmap(hw, wirelessmode,
3626 							ratr_bitmap);
3627 
3628 	rtl_dbg(rtlpriv, COMP_RATR, DBG_LOUD,
3629 		"ratr_bitmap :%x\n", ratr_bitmap);
3630 
3631 	/* *(u32 *)& rate_mask = EF4BYTE((ratr_bitmap & 0x0fffffff) |
3632 				       (ratr_index << 28)); */
3633 
3634 	rate_mask[0] = macid;
3635 	rate_mask[1] = ratr_index | (b_shortgi ? 0x80 : 0x00);
3636 	rate_mask[2] = rtlphy->current_chan_bw | ((!update_bw) << 3)
3637 			   | _rtl8821ae_get_vht_eni(wirelessmode, ratr_bitmap)
3638 			   | _rtl8821ae_get_ra_ldpc(hw, macid, sta_entry, wirelessmode);
3639 
3640 	rate_mask[3] = (u8)(ratr_bitmap & 0x000000ff);
3641 	rate_mask[4] = (u8)((ratr_bitmap & 0x0000ff00) >> 8);
3642 	rate_mask[5] = (u8)((ratr_bitmap & 0x00ff0000) >> 16);
3643 	rate_mask[6] = (u8)((ratr_bitmap & 0xff000000) >> 24);
3644 
3645 	rtl_dbg(rtlpriv, COMP_RATR, DBG_DMESG,
3646 		"Rate_index:%x, ratr_val:%x, %x:%x:%x:%x:%x:%x:%x\n",
3647 		ratr_index, ratr_bitmap,
3648 		rate_mask[0], rate_mask[1],
3649 		 rate_mask[2], rate_mask[3],
3650 		 rate_mask[4], rate_mask[5],
3651 		 rate_mask[6]);
3652 	rtl8821ae_fill_h2c_cmd(hw, H2C_8821AE_RA_MASK, 7, rate_mask);
3653 	_rtl8821ae_set_bcn_ctrl_reg(hw, BIT(3), 0);
3654 }
3655 
rtl8821ae_update_hal_rate_tbl(struct ieee80211_hw * hw,struct ieee80211_sta * sta,u8 rssi_level,bool update_bw)3656 void rtl8821ae_update_hal_rate_tbl(struct ieee80211_hw *hw,
3657 		struct ieee80211_sta *sta, u8 rssi_level, bool update_bw)
3658 {
3659 	struct rtl_priv *rtlpriv = rtl_priv(hw);
3660 	if (rtlpriv->dm.useramask)
3661 		rtl8821ae_update_hal_rate_mask(hw, sta, rssi_level, update_bw);
3662 	else
3663 		/*rtl_dbg(rtlpriv, COMP_RATR,DBG_LOUD,
3664 			   "rtl8821ae_update_hal_rate_tbl() Error! 8821ae FW RA Only\n");*/
3665 		rtl8821ae_update_hal_rate_table(hw, sta);
3666 }
3667 
rtl8821ae_update_channel_access_setting(struct ieee80211_hw * hw)3668 void rtl8821ae_update_channel_access_setting(struct ieee80211_hw *hw)
3669 {
3670 	struct rtl_priv *rtlpriv = rtl_priv(hw);
3671 	struct rtl_mac *mac = rtl_mac(rtl_priv(hw));
3672 	u16 wireless_mode = mac->mode;
3673 	u8 sifs_timer, r2t_sifs;
3674 
3675 	rtlpriv->cfg->ops->set_hw_reg(hw, HW_VAR_SLOT_TIME,
3676 				      (u8 *)&mac->slot_time);
3677 	if (wireless_mode == WIRELESS_MODE_G)
3678 		sifs_timer = 0x0a;
3679 	else
3680 		sifs_timer = 0x0e;
3681 	rtlpriv->cfg->ops->set_hw_reg(hw, HW_VAR_SIFS, (u8 *)&sifs_timer);
3682 
3683 	r2t_sifs = 0xa;
3684 
3685 	if (wireless_mode == WIRELESS_MODE_AC_5G &&
3686 	    (mac->vht_ldpc_cap & LDPC_VHT_ENABLE_RX) &&
3687 	    (mac->vht_stbc_cap & STBC_VHT_ENABLE_RX)) {
3688 		if (mac->vendor == PEER_ATH)
3689 			r2t_sifs = 0x8;
3690 		else
3691 			r2t_sifs = 0xa;
3692 	} else if (wireless_mode == WIRELESS_MODE_AC_5G) {
3693 		r2t_sifs = 0xa;
3694 	}
3695 
3696 	rtlpriv->cfg->ops->set_hw_reg(hw, HW_VAR_R2T_SIFS, (u8 *)&r2t_sifs);
3697 }
3698 
rtl8821ae_gpio_radio_on_off_checking(struct ieee80211_hw * hw,u8 * valid)3699 bool rtl8821ae_gpio_radio_on_off_checking(struct ieee80211_hw *hw, u8 *valid)
3700 {
3701 	struct rtl_priv *rtlpriv = rtl_priv(hw);
3702 	struct rtl_ps_ctl *ppsc = rtl_psc(rtl_priv(hw));
3703 	struct rtl_phy *rtlphy = &rtlpriv->phy;
3704 	enum rf_pwrstate e_rfpowerstate_toset;
3705 	u8 u1tmp = 0;
3706 	bool b_actuallyset = false;
3707 
3708 	if (rtlpriv->rtlhal.being_init_adapter)
3709 		return false;
3710 
3711 	if (ppsc->swrf_processing)
3712 		return false;
3713 
3714 	spin_lock(&rtlpriv->locks.rf_ps_lock);
3715 	if (ppsc->rfchange_inprogress) {
3716 		spin_unlock(&rtlpriv->locks.rf_ps_lock);
3717 		return false;
3718 	} else {
3719 		ppsc->rfchange_inprogress = true;
3720 		spin_unlock(&rtlpriv->locks.rf_ps_lock);
3721 	}
3722 
3723 	rtl_write_byte(rtlpriv, REG_GPIO_IO_SEL_2,
3724 			rtl_read_byte(rtlpriv,
3725 					REG_GPIO_IO_SEL_2) & ~(BIT(1)));
3726 
3727 	u1tmp = rtl_read_byte(rtlpriv, REG_GPIO_PIN_CTRL_2);
3728 
3729 	if (rtlphy->polarity_ctl)
3730 		e_rfpowerstate_toset = (u1tmp & BIT(1)) ? ERFOFF : ERFON;
3731 	else
3732 		e_rfpowerstate_toset = (u1tmp & BIT(1)) ? ERFON : ERFOFF;
3733 
3734 	if ((ppsc->hwradiooff) && (e_rfpowerstate_toset == ERFON)) {
3735 		rtl_dbg(rtlpriv, COMP_RF, DBG_DMESG,
3736 			"GPIOChangeRF  - HW Radio ON, RF ON\n");
3737 
3738 		e_rfpowerstate_toset = ERFON;
3739 		ppsc->hwradiooff = false;
3740 		b_actuallyset = true;
3741 	} else if ((!ppsc->hwradiooff)
3742 		   && (e_rfpowerstate_toset == ERFOFF)) {
3743 		rtl_dbg(rtlpriv, COMP_RF, DBG_DMESG,
3744 			"GPIOChangeRF  - HW Radio OFF, RF OFF\n");
3745 
3746 		e_rfpowerstate_toset = ERFOFF;
3747 		ppsc->hwradiooff = true;
3748 		b_actuallyset = true;
3749 	}
3750 
3751 	if (b_actuallyset) {
3752 		spin_lock(&rtlpriv->locks.rf_ps_lock);
3753 		ppsc->rfchange_inprogress = false;
3754 		spin_unlock(&rtlpriv->locks.rf_ps_lock);
3755 	} else {
3756 		if (ppsc->reg_rfps_level & RT_RF_OFF_LEVL_HALT_NIC)
3757 			RT_SET_PS_LEVEL(ppsc, RT_RF_OFF_LEVL_HALT_NIC);
3758 
3759 		spin_lock(&rtlpriv->locks.rf_ps_lock);
3760 		ppsc->rfchange_inprogress = false;
3761 		spin_unlock(&rtlpriv->locks.rf_ps_lock);
3762 	}
3763 
3764 	*valid = 1;
3765 	return !ppsc->hwradiooff;
3766 }
3767 
rtl8821ae_set_key(struct ieee80211_hw * hw,u32 key_index,u8 * p_macaddr,bool is_group,u8 enc_algo,bool is_wepkey,bool clear_all)3768 void rtl8821ae_set_key(struct ieee80211_hw *hw, u32 key_index,
3769 		     u8 *p_macaddr, bool is_group, u8 enc_algo,
3770 		     bool is_wepkey, bool clear_all)
3771 {
3772 	struct rtl_priv *rtlpriv = rtl_priv(hw);
3773 	struct rtl_mac *mac = rtl_mac(rtl_priv(hw));
3774 	struct rtl_efuse *rtlefuse = rtl_efuse(rtl_priv(hw));
3775 	u8 *macaddr = p_macaddr;
3776 	u32 entry_id = 0;
3777 	bool is_pairwise = false;
3778 
3779 	static u8 cam_const_addr[4][6] = {
3780 		{0x00, 0x00, 0x00, 0x00, 0x00, 0x00},
3781 		{0x00, 0x00, 0x00, 0x00, 0x00, 0x01},
3782 		{0x00, 0x00, 0x00, 0x00, 0x00, 0x02},
3783 		{0x00, 0x00, 0x00, 0x00, 0x00, 0x03}
3784 	};
3785 	static u8 cam_const_broad[] = {
3786 		0xff, 0xff, 0xff, 0xff, 0xff, 0xff
3787 	};
3788 
3789 	if (clear_all) {
3790 		u8 idx = 0;
3791 		u8 cam_offset = 0;
3792 		u8 clear_number = 5;
3793 
3794 		rtl_dbg(rtlpriv, COMP_SEC, DBG_DMESG, "clear_all\n");
3795 
3796 		for (idx = 0; idx < clear_number; idx++) {
3797 			rtl_cam_mark_invalid(hw, cam_offset + idx);
3798 			rtl_cam_empty_entry(hw, cam_offset + idx);
3799 
3800 			if (idx < 5) {
3801 				memset(rtlpriv->sec.key_buf[idx], 0,
3802 				       MAX_KEY_LEN);
3803 				rtlpriv->sec.key_len[idx] = 0;
3804 			}
3805 		}
3806 	} else {
3807 		switch (enc_algo) {
3808 		case WEP40_ENCRYPTION:
3809 			enc_algo = CAM_WEP40;
3810 			break;
3811 		case WEP104_ENCRYPTION:
3812 			enc_algo = CAM_WEP104;
3813 			break;
3814 		case TKIP_ENCRYPTION:
3815 			enc_algo = CAM_TKIP;
3816 			break;
3817 		case AESCCMP_ENCRYPTION:
3818 			enc_algo = CAM_AES;
3819 			break;
3820 		default:
3821 			rtl_dbg(rtlpriv, COMP_ERR, DBG_LOUD,
3822 				"switch case %#x not processed\n", enc_algo);
3823 			enc_algo = CAM_TKIP;
3824 			break;
3825 		}
3826 
3827 		if (is_wepkey || rtlpriv->sec.use_defaultkey) {
3828 			macaddr = cam_const_addr[key_index];
3829 			entry_id = key_index;
3830 		} else {
3831 			if (is_group) {
3832 				macaddr = cam_const_broad;
3833 				entry_id = key_index;
3834 			} else {
3835 				if (mac->opmode == NL80211_IFTYPE_AP) {
3836 					entry_id = rtl_cam_get_free_entry(hw, p_macaddr);
3837 					if (entry_id >=  TOTAL_CAM_ENTRY) {
3838 						pr_err("an not find free hwsecurity cam entry\n");
3839 						return;
3840 					}
3841 				} else {
3842 					entry_id = CAM_PAIRWISE_KEY_POSITION;
3843 				}
3844 
3845 				key_index = PAIRWISE_KEYIDX;
3846 				is_pairwise = true;
3847 			}
3848 		}
3849 
3850 		if (rtlpriv->sec.key_len[key_index] == 0) {
3851 			rtl_dbg(rtlpriv, COMP_SEC, DBG_DMESG,
3852 				"delete one entry, entry_id is %d\n",
3853 				entry_id);
3854 			if (mac->opmode == NL80211_IFTYPE_AP)
3855 				rtl_cam_del_entry(hw, p_macaddr);
3856 			rtl_cam_delete_one_entry(hw, p_macaddr, entry_id);
3857 		} else {
3858 			rtl_dbg(rtlpriv, COMP_SEC, DBG_DMESG,
3859 				"add one entry\n");
3860 			if (is_pairwise) {
3861 				rtl_dbg(rtlpriv, COMP_SEC, DBG_DMESG,
3862 					"set Pairwise key\n");
3863 
3864 				rtl_cam_add_one_entry(hw, macaddr, key_index,
3865 						      entry_id, enc_algo,
3866 						      CAM_CONFIG_NO_USEDK,
3867 						      rtlpriv->sec.key_buf[key_index]);
3868 			} else {
3869 				rtl_dbg(rtlpriv, COMP_SEC, DBG_DMESG,
3870 					"set group key\n");
3871 
3872 				if (mac->opmode == NL80211_IFTYPE_ADHOC) {
3873 					rtl_cam_add_one_entry(hw,
3874 							rtlefuse->dev_addr,
3875 							PAIRWISE_KEYIDX,
3876 							CAM_PAIRWISE_KEY_POSITION,
3877 							enc_algo,
3878 							CAM_CONFIG_NO_USEDK,
3879 							rtlpriv->sec.key_buf
3880 							[entry_id]);
3881 				}
3882 
3883 				rtl_cam_add_one_entry(hw, macaddr, key_index,
3884 						entry_id, enc_algo,
3885 						CAM_CONFIG_NO_USEDK,
3886 						rtlpriv->sec.key_buf[entry_id]);
3887 			}
3888 		}
3889 	}
3890 }
3891 
rtl8821ae_bt_reg_init(struct ieee80211_hw * hw)3892 void rtl8821ae_bt_reg_init(struct ieee80211_hw *hw)
3893 {
3894 	struct rtl_priv *rtlpriv = rtl_priv(hw);
3895 
3896 	/* 0:Low, 1:High, 2:From Efuse. */
3897 	rtlpriv->btcoexist.reg_bt_iso = 2;
3898 	/* 0:Idle, 1:None-SCO, 2:SCO, 3:From Counter. */
3899 	rtlpriv->btcoexist.reg_bt_sco = 3;
3900 	/* 0:Disable BT control A-MPDU, 1:Enable BT control A-MPDU. */
3901 	rtlpriv->btcoexist.reg_bt_sco = 0;
3902 }
3903 
rtl8821ae_bt_hw_init(struct ieee80211_hw * hw)3904 void rtl8821ae_bt_hw_init(struct ieee80211_hw *hw)
3905 {
3906 	struct rtl_priv *rtlpriv = rtl_priv(hw);
3907 
3908 	if (rtlpriv->cfg->ops->get_btc_status())
3909 		rtlpriv->btcoexist.btc_ops->btc_init_hw_config(rtlpriv);
3910 }
3911 
rtl8821ae_suspend(struct ieee80211_hw * hw)3912 void rtl8821ae_suspend(struct ieee80211_hw *hw)
3913 {
3914 }
3915 
rtl8821ae_resume(struct ieee80211_hw * hw)3916 void rtl8821ae_resume(struct ieee80211_hw *hw)
3917 {
3918 }
3919 
3920 /* Turn on AAP (RCR:bit 0) for promiscuous mode. */
rtl8821ae_allow_all_destaddr(struct ieee80211_hw * hw,bool allow_all_da,bool write_into_reg)3921 void rtl8821ae_allow_all_destaddr(struct ieee80211_hw *hw,
3922 	bool allow_all_da, bool write_into_reg)
3923 {
3924 	struct rtl_priv *rtlpriv = rtl_priv(hw);
3925 	struct rtl_pci *rtlpci = rtl_pcidev(rtl_pcipriv(hw));
3926 
3927 	if (allow_all_da) /* Set BIT0 */
3928 		rtlpci->receive_config |= RCR_AAP;
3929 	else /* Clear BIT0 */
3930 		rtlpci->receive_config &= ~RCR_AAP;
3931 
3932 	if (write_into_reg)
3933 		rtl_write_dword(rtlpriv, REG_RCR, rtlpci->receive_config);
3934 
3935 	rtl_dbg(rtlpriv, COMP_TURBO | COMP_INIT, DBG_LOUD,
3936 		"receive_config=0x%08X, write_into_reg=%d\n",
3937 		rtlpci->receive_config, write_into_reg);
3938 }
3939 
3940 /* WKFMCAMAddAllEntry8812 */
rtl8821ae_add_wowlan_pattern(struct ieee80211_hw * hw,struct rtl_wow_pattern * rtl_pattern,u8 index)3941 void rtl8821ae_add_wowlan_pattern(struct ieee80211_hw *hw,
3942 				  struct rtl_wow_pattern *rtl_pattern,
3943 				  u8 index)
3944 {
3945 	struct rtl_priv *rtlpriv = rtl_priv(hw);
3946 	u32 cam = 0;
3947 	u8 addr = 0;
3948 	u16 rxbuf_addr;
3949 	u8 tmp, count = 0;
3950 	u16 cam_start;
3951 	u16 offset;
3952 
3953 	/* Count the WFCAM entry start offset. */
3954 
3955 	/* RX page size = 128 byte */
3956 	offset = MAX_RX_DMA_BUFFER_SIZE_8812 / 128;
3957 	/* We should start from the boundary */
3958 	cam_start = offset * 128;
3959 
3960 	/* Enable Rx packet buffer access. */
3961 	rtl_write_byte(rtlpriv, REG_PKT_BUFF_ACCESS_CTRL, RXPKT_BUF_SELECT);
3962 	for (addr = 0; addr < WKFMCAM_ADDR_NUM; addr++) {
3963 		/* Set Rx packet buffer offset.
3964 		 * RXBufer pointer increases 1,
3965 		 * we can access 8 bytes in Rx packet buffer.
3966 		 * CAM start offset (unit: 1 byte) =  index*WKFMCAM_SIZE
3967 		 * RXBufer addr = (CAM start offset +
3968 		 *                 per entry offset of a WKFM CAM)/8
3969 		 *	* index: The index of the wake up frame mask
3970 		 *	* WKFMCAM_SIZE: the total size of one WKFM CAM
3971 		 *	* per entry offset of a WKFM CAM: Addr*4 bytes
3972 		 */
3973 		rxbuf_addr = (cam_start + index * WKFMCAM_SIZE + addr * 4) >> 3;
3974 		/* Set R/W start offset */
3975 		rtl_write_word(rtlpriv, REG_PKTBUF_DBG_CTRL, rxbuf_addr);
3976 
3977 		if (addr == 0) {
3978 			cam = BIT(31) | rtl_pattern->crc;
3979 
3980 			if (rtl_pattern->type == UNICAST_PATTERN)
3981 				cam |= BIT(24);
3982 			else if (rtl_pattern->type == MULTICAST_PATTERN)
3983 				cam |= BIT(25);
3984 			else if (rtl_pattern->type == BROADCAST_PATTERN)
3985 				cam |= BIT(26);
3986 
3987 			rtl_write_dword(rtlpriv, REG_PKTBUF_DBG_DATA_L, cam);
3988 			rtl_dbg(rtlpriv, COMP_POWER, DBG_TRACE,
3989 				"WRITE entry[%d] 0x%x: %x\n", addr,
3990 				REG_PKTBUF_DBG_DATA_L, cam);
3991 
3992 			/* Write to Rx packet buffer. */
3993 			rtl_write_word(rtlpriv, REG_RXPKTBUF_CTRL, 0x0f01);
3994 		} else if (addr == 2 || addr == 4) {/* WKFM[127:0] */
3995 			cam = rtl_pattern->mask[addr - 2];
3996 
3997 			rtl_write_dword(rtlpriv, REG_PKTBUF_DBG_DATA_L, cam);
3998 			rtl_dbg(rtlpriv, COMP_POWER, DBG_TRACE,
3999 				"WRITE entry[%d] 0x%x: %x\n", addr,
4000 				REG_PKTBUF_DBG_DATA_L, cam);
4001 
4002 			rtl_write_word(rtlpriv, REG_RXPKTBUF_CTRL, 0x0f01);
4003 		} else if (addr == 3 || addr == 5) {/* WKFM[127:0] */
4004 			cam = rtl_pattern->mask[addr - 2];
4005 
4006 			rtl_write_dword(rtlpriv, REG_PKTBUF_DBG_DATA_H, cam);
4007 			rtl_dbg(rtlpriv, COMP_POWER, DBG_TRACE,
4008 				"WRITE entry[%d] 0x%x: %x\n", addr,
4009 				REG_PKTBUF_DBG_DATA_H, cam);
4010 
4011 			rtl_write_word(rtlpriv, REG_RXPKTBUF_CTRL, 0xf001);
4012 		}
4013 
4014 		count = 0;
4015 		do {
4016 			tmp = rtl_read_byte(rtlpriv, REG_RXPKTBUF_CTRL);
4017 			udelay(2);
4018 			count++;
4019 		} while (tmp && count < 100);
4020 
4021 		WARN_ONCE((count >= 100),
4022 			  "rtl8821ae: Write wake up frame mask FAIL %d value!\n",
4023 			  tmp);
4024 	}
4025 	/* Disable Rx packet buffer access. */
4026 	rtl_write_byte(rtlpriv, REG_PKT_BUFF_ACCESS_CTRL,
4027 		       DISABLE_TRXPKT_BUF_ACCESS);
4028 }
4029