1 // SPDX-License-Identifier: GPL-2.0 OR BSD-3-Clause
2 /* Copyright(c) 2019-2022  Realtek Corporation
3  */
4 
5 #include "coex.h"
6 #include "debug.h"
7 #include "fw.h"
8 #include "mac.h"
9 #include "phy.h"
10 #include "reg.h"
11 #include "rtw8852c.h"
12 #include "rtw8852c_rfk.h"
13 #include "rtw8852c_table.h"
14 #include "util.h"
15 
16 static const struct rtw89_hfc_ch_cfg rtw8852c_hfc_chcfg_pcie[] = {
17 	{13, 1614, grp_0}, /* ACH 0 */
18 	{13, 1614, grp_0}, /* ACH 1 */
19 	{13, 1614, grp_0}, /* ACH 2 */
20 	{13, 1614, grp_0}, /* ACH 3 */
21 	{13, 1614, grp_1}, /* ACH 4 */
22 	{13, 1614, grp_1}, /* ACH 5 */
23 	{13, 1614, grp_1}, /* ACH 6 */
24 	{13, 1614, grp_1}, /* ACH 7 */
25 	{13, 1614, grp_0}, /* B0MGQ */
26 	{13, 1614, grp_0}, /* B0HIQ */
27 	{13, 1614, grp_1}, /* B1MGQ */
28 	{13, 1614, grp_1}, /* B1HIQ */
29 	{40, 0, 0} /* FWCMDQ */
30 };
31 
32 static const struct rtw89_hfc_pub_cfg rtw8852c_hfc_pubcfg_pcie = {
33 	1614, /* Group 0 */
34 	1614, /* Group 1 */
35 	3228, /* Public Max */
36 	0 /* WP threshold */
37 };
38 
39 static const struct rtw89_hfc_param_ini rtw8852c_hfc_param_ini_pcie[] = {
40 	[RTW89_QTA_SCC] = {rtw8852c_hfc_chcfg_pcie, &rtw8852c_hfc_pubcfg_pcie,
41 			   &rtw89_mac_size.hfc_preccfg_pcie, RTW89_HCIFC_POH},
42 	[RTW89_QTA_DLFW] = {NULL, NULL, &rtw89_mac_size.hfc_preccfg_pcie,
43 			    RTW89_HCIFC_POH},
44 	[RTW89_QTA_INVALID] = {NULL},
45 };
46 
47 static const struct rtw89_dle_mem rtw8852c_dle_mem_pcie[] = {
48 	[RTW89_QTA_SCC] = {RTW89_QTA_SCC, &rtw89_mac_size.wde_size19,
49 			   &rtw89_mac_size.ple_size19, &rtw89_mac_size.wde_qt18,
50 			   &rtw89_mac_size.wde_qt18, &rtw89_mac_size.ple_qt46,
51 			   &rtw89_mac_size.ple_qt47},
52 	[RTW89_QTA_DLFW] = {RTW89_QTA_DLFW, &rtw89_mac_size.wde_size18,
53 			    &rtw89_mac_size.ple_size18, &rtw89_mac_size.wde_qt17,
54 			    &rtw89_mac_size.wde_qt17, &rtw89_mac_size.ple_qt44,
55 			    &rtw89_mac_size.ple_qt45},
56 	[RTW89_QTA_INVALID] = {RTW89_QTA_INVALID, NULL, NULL, NULL, NULL, NULL,
57 			       NULL},
58 };
59 
60 static const u32 rtw8852c_h2c_regs[RTW89_H2CREG_MAX] = {
61 	R_AX_H2CREG_DATA0_V1, R_AX_H2CREG_DATA1_V1, R_AX_H2CREG_DATA2_V1,
62 	R_AX_H2CREG_DATA3_V1
63 };
64 
65 static const u32 rtw8852c_c2h_regs[RTW89_H2CREG_MAX] = {
66 	R_AX_C2HREG_DATA0_V1, R_AX_C2HREG_DATA1_V1, R_AX_C2HREG_DATA2_V1,
67 	R_AX_C2HREG_DATA3_V1
68 };
69 
70 static const struct rtw89_page_regs rtw8852c_page_regs = {
71 	.hci_fc_ctrl	= R_AX_HCI_FC_CTRL_V1,
72 	.ch_page_ctrl	= R_AX_CH_PAGE_CTRL_V1,
73 	.ach_page_ctrl	= R_AX_ACH0_PAGE_CTRL_V1,
74 	.ach_page_info	= R_AX_ACH0_PAGE_INFO_V1,
75 	.pub_page_info3	= R_AX_PUB_PAGE_INFO3_V1,
76 	.pub_page_ctrl1	= R_AX_PUB_PAGE_CTRL1_V1,
77 	.pub_page_ctrl2	= R_AX_PUB_PAGE_CTRL2_V1,
78 	.pub_page_info1	= R_AX_PUB_PAGE_INFO1_V1,
79 	.pub_page_info2 = R_AX_PUB_PAGE_INFO2_V1,
80 	.wp_page_ctrl1	= R_AX_WP_PAGE_CTRL1_V1,
81 	.wp_page_ctrl2	= R_AX_WP_PAGE_CTRL2_V1,
82 	.wp_page_info1	= R_AX_WP_PAGE_INFO1_V1,
83 };
84 
85 static const struct rtw89_reg_def rtw8852c_dcfo_comp = {
86 	R_DCFO_COMP_S0_V1, B_DCFO_COMP_S0_V1_MSK
87 };
88 
89 static const struct rtw89_imr_info rtw8852c_imr_info = {
90 	.wdrls_imr_set		= B_AX_WDRLS_IMR_SET_V1,
91 	.wsec_imr_reg		= R_AX_SEC_ERROR_FLAG_IMR,
92 	.wsec_imr_set		= B_AX_TX_HANG_IMR | B_AX_RX_HANG_IMR,
93 	.mpdu_tx_imr_set	= B_AX_MPDU_TX_IMR_SET_V1,
94 	.mpdu_rx_imr_set	= B_AX_MPDU_RX_IMR_SET_V1,
95 	.sta_sch_imr_set	= B_AX_STA_SCHEDULER_IMR_SET,
96 	.txpktctl_imr_b0_reg	= R_AX_TXPKTCTL_B0_ERRFLAG_IMR,
97 	.txpktctl_imr_b0_clr	= B_AX_TXPKTCTL_IMR_B0_CLR_V1,
98 	.txpktctl_imr_b0_set	= B_AX_TXPKTCTL_IMR_B0_SET_V1,
99 	.txpktctl_imr_b1_reg	= R_AX_TXPKTCTL_B1_ERRFLAG_IMR,
100 	.txpktctl_imr_b1_clr	= B_AX_TXPKTCTL_IMR_B1_CLR_V1,
101 	.txpktctl_imr_b1_set	= B_AX_TXPKTCTL_IMR_B1_SET_V1,
102 	.wde_imr_clr		= B_AX_WDE_IMR_CLR_V1,
103 	.wde_imr_set		= B_AX_WDE_IMR_SET_V1,
104 	.ple_imr_clr		= B_AX_PLE_IMR_CLR_V1,
105 	.ple_imr_set		= B_AX_PLE_IMR_SET_V1,
106 	.host_disp_imr_clr	= B_AX_HOST_DISP_IMR_CLR_V1,
107 	.host_disp_imr_set	= B_AX_HOST_DISP_IMR_SET_V1,
108 	.cpu_disp_imr_clr	= B_AX_CPU_DISP_IMR_CLR_V1,
109 	.cpu_disp_imr_set	= B_AX_CPU_DISP_IMR_SET_V1,
110 	.other_disp_imr_clr	= B_AX_OTHER_DISP_IMR_CLR_V1,
111 	.other_disp_imr_set	= B_AX_OTHER_DISP_IMR_SET_V1,
112 	.bbrpt_chinfo_err_imr_reg = R_AX_BBRPT_CHINFO_ERR_IMR,
113 	.bbrpt_err_imr_set	= R_AX_BBRPT_CHINFO_IMR_SET_V1,
114 	.bbrpt_dfs_err_imr_reg	= R_AX_BBRPT_DFS_ERR_IMR,
115 	.ptcl_imr_clr		= B_AX_PTCL_IMR_CLR_V1,
116 	.ptcl_imr_set		= B_AX_PTCL_IMR_SET_V1,
117 	.cdma_imr_0_reg		= R_AX_RX_ERR_FLAG_IMR,
118 	.cdma_imr_0_clr		= B_AX_RX_ERR_IMR_CLR_V1,
119 	.cdma_imr_0_set		= B_AX_RX_ERR_IMR_SET_V1,
120 	.cdma_imr_1_reg		= R_AX_TX_ERR_FLAG_IMR,
121 	.cdma_imr_1_clr		= B_AX_TX_ERR_IMR_CLR_V1,
122 	.cdma_imr_1_set		= B_AX_TX_ERR_IMR_SET_V1,
123 	.phy_intf_imr_reg	= R_AX_PHYINFO_ERR_IMR_V1,
124 	.phy_intf_imr_clr	= B_AX_PHYINFO_IMR_CLR_V1,
125 	.phy_intf_imr_set	= B_AX_PHYINFO_IMR_SET_V1,
126 	.rmac_imr_reg		= R_AX_RX_ERR_IMR,
127 	.rmac_imr_clr		= B_AX_RMAC_IMR_CLR_V1,
128 	.rmac_imr_set		= B_AX_RMAC_IMR_SET_V1,
129 	.tmac_imr_reg		= R_AX_TRXPTCL_ERROR_INDICA_MASK,
130 	.tmac_imr_clr		= B_AX_TMAC_IMR_CLR_V1,
131 	.tmac_imr_set		= B_AX_TMAC_IMR_SET_V1,
132 };
133 
134 static void rtw8852c_ctrl_btg(struct rtw89_dev *rtwdev, bool btg);
135 
136 static int rtw8852c_pwr_on_func(struct rtw89_dev *rtwdev)
137 {
138 	u32 val32;
139 	u32 ret;
140 
141 	val32 = rtw89_read32_mask(rtwdev, R_AX_SYS_STATUS1, B_AX_PAD_HCI_SEL_V2_MASK);
142 	if (val32 == MAC_AX_HCI_SEL_PCIE_USB)
143 		rtw89_write32_set(rtwdev, R_AX_LDO_AON_CTRL0, B_AX_PD_REGU_L);
144 
145 	rtw89_write32_clr(rtwdev, R_AX_SYS_PW_CTRL, B_AX_AFSM_WLSUS_EN |
146 						    B_AX_AFSM_PCIE_SUS_EN);
147 	rtw89_write32_set(rtwdev, R_AX_SYS_PW_CTRL, B_AX_DIS_WLBT_PDNSUSEN_SOPC);
148 	rtw89_write32_set(rtwdev, R_AX_WLLPS_CTRL, B_AX_DIS_WLBT_LPSEN_LOPC);
149 	rtw89_write32_clr(rtwdev, R_AX_SYS_PW_CTRL, B_AX_APDM_HPDN);
150 	rtw89_write32_clr(rtwdev, R_AX_SYS_PW_CTRL, B_AX_APFM_SWLPS);
151 
152 	ret = read_poll_timeout(rtw89_read32, val32, val32 & B_AX_RDY_SYSPWR,
153 				1000, 20000, false, rtwdev, R_AX_SYS_PW_CTRL);
154 	if (ret)
155 		return ret;
156 
157 	rtw89_write32_set(rtwdev, R_AX_SYS_PW_CTRL, B_AX_EN_WLON);
158 	rtw89_write32_set(rtwdev, R_AX_SYS_PW_CTRL, B_AX_APFN_ONMAC);
159 
160 	ret = read_poll_timeout(rtw89_read32, val32, !(val32 & B_AX_APFN_ONMAC),
161 				1000, 20000, false, rtwdev, R_AX_SYS_PW_CTRL);
162 	if (ret)
163 		return ret;
164 
165 	rtw89_write8_set(rtwdev, R_AX_PLATFORM_ENABLE, B_AX_PLATFORM_EN);
166 	rtw89_write8_clr(rtwdev, R_AX_PLATFORM_ENABLE, B_AX_PLATFORM_EN);
167 	rtw89_write8_set(rtwdev, R_AX_PLATFORM_ENABLE, B_AX_PLATFORM_EN);
168 	rtw89_write8_clr(rtwdev, R_AX_PLATFORM_ENABLE, B_AX_PLATFORM_EN);
169 
170 	rtw89_write8_set(rtwdev, R_AX_PLATFORM_ENABLE, B_AX_PLATFORM_EN);
171 	rtw89_write32_clr(rtwdev, R_AX_SYS_SDIO_CTRL, B_AX_PCIE_CALIB_EN_V1);
172 
173 	rtw89_write32_clr(rtwdev, R_AX_SYS_ISO_CTRL_EXTEND, B_AX_CMAC1_FEN);
174 	rtw89_write32_set(rtwdev, R_AX_SYS_ISO_CTRL_EXTEND, B_AX_R_SYM_ISO_CMAC12PP);
175 	rtw89_write32_clr(rtwdev, R_AX_AFE_CTRL1, B_AX_R_SYM_WLCMAC1_P4_PC_EN |
176 						  B_AX_R_SYM_WLCMAC1_P3_PC_EN |
177 						  B_AX_R_SYM_WLCMAC1_P2_PC_EN |
178 						  B_AX_R_SYM_WLCMAC1_P1_PC_EN |
179 						  B_AX_R_SYM_WLCMAC1_PC_EN);
180 	rtw89_write32_set(rtwdev, R_AX_SYS_ADIE_PAD_PWR_CTRL, B_AX_SYM_PADPDN_WL_PTA_1P3);
181 
182 	ret = rtw89_mac_write_xtal_si(rtwdev, XTAL_SI_ANAPAR_WL,
183 				      XTAL_SI_GND_SHDN_WL, XTAL_SI_GND_SHDN_WL);
184 	if (ret)
185 		return ret;
186 
187 	rtw89_write32_set(rtwdev, R_AX_SYS_ADIE_PAD_PWR_CTRL, B_AX_SYM_PADPDN_WL_RFC_1P3);
188 
189 	ret = rtw89_mac_write_xtal_si(rtwdev, XTAL_SI_ANAPAR_WL,
190 				      XTAL_SI_SHDN_WL, XTAL_SI_SHDN_WL);
191 	if (ret)
192 		return ret;
193 	ret = rtw89_mac_write_xtal_si(rtwdev, XTAL_SI_ANAPAR_WL, XTAL_SI_OFF_WEI,
194 				      XTAL_SI_OFF_WEI);
195 	if (ret)
196 		return ret;
197 	ret = rtw89_mac_write_xtal_si(rtwdev, XTAL_SI_ANAPAR_WL, XTAL_SI_OFF_EI,
198 				      XTAL_SI_OFF_EI);
199 	if (ret)
200 		return ret;
201 	ret = rtw89_mac_write_xtal_si(rtwdev, XTAL_SI_ANAPAR_WL, 0, XTAL_SI_RFC2RF);
202 	if (ret)
203 		return ret;
204 	ret = rtw89_mac_write_xtal_si(rtwdev, XTAL_SI_ANAPAR_WL, XTAL_SI_PON_WEI,
205 				      XTAL_SI_PON_WEI);
206 	if (ret)
207 		return ret;
208 	ret = rtw89_mac_write_xtal_si(rtwdev, XTAL_SI_ANAPAR_WL, XTAL_SI_PON_EI,
209 				      XTAL_SI_PON_EI);
210 	if (ret)
211 		return ret;
212 	ret = rtw89_mac_write_xtal_si(rtwdev, XTAL_SI_ANAPAR_WL, 0, XTAL_SI_SRAM2RFC);
213 	if (ret)
214 		return ret;
215 	ret = rtw89_mac_write_xtal_si(rtwdev, XTAL_SI_XTAL_XMD_2, 0, XTAL_SI_LDO_LPS);
216 	if (ret)
217 		return ret;
218 	ret = rtw89_mac_write_xtal_si(rtwdev, XTAL_SI_XTAL_XMD_4, 0, XTAL_SI_LPS_CAP);
219 	if (ret)
220 		return ret;
221 
222 	rtw89_write32_set(rtwdev, R_AX_PMC_DBG_CTRL2, B_AX_SYSON_DIS_PMCR_AX_WRMSK);
223 	rtw89_write32_set(rtwdev, R_AX_SYS_ISO_CTRL, B_AX_ISO_EB2CORE);
224 	rtw89_write32_clr(rtwdev, R_AX_SYS_ISO_CTRL, B_AX_PWC_EV2EF_B15);
225 
226 	fsleep(1000);
227 
228 	rtw89_write32_clr(rtwdev, R_AX_SYS_ISO_CTRL, B_AX_PWC_EV2EF_B14);
229 	rtw89_write32_clr(rtwdev, R_AX_PMC_DBG_CTRL2, B_AX_SYSON_DIS_PMCR_AX_WRMSK);
230 	rtw89_write32_set(rtwdev, R_AX_GPIO0_15_EECS_EESK_LED1_PULL_LOW_EN,
231 			  B_AX_EECS_PULL_LOW_EN | B_AX_EESK_PULL_LOW_EN |
232 			  B_AX_LED1_PULL_LOW_EN);
233 
234 	rtw89_write32_set(rtwdev, R_AX_DMAC_FUNC_EN,
235 			  B_AX_MAC_FUNC_EN | B_AX_DMAC_FUNC_EN | B_AX_MPDU_PROC_EN |
236 			  B_AX_WD_RLS_EN | B_AX_DLE_WDE_EN | B_AX_TXPKT_CTRL_EN |
237 			  B_AX_STA_SCH_EN | B_AX_DLE_PLE_EN | B_AX_PKT_BUF_EN |
238 			  B_AX_DMAC_TBL_EN | B_AX_PKT_IN_EN | B_AX_DLE_CPUIO_EN |
239 			  B_AX_DISPATCHER_EN | B_AX_BBRPT_EN | B_AX_MAC_SEC_EN |
240 			  B_AX_MAC_UN_EN | B_AX_H_AXIDMA_EN);
241 
242 	rtw89_write32_set(rtwdev, R_AX_CMAC_FUNC_EN,
243 			  B_AX_CMAC_EN | B_AX_CMAC_TXEN | B_AX_CMAC_RXEN |
244 			  B_AX_FORCE_CMACREG_GCKEN | B_AX_PHYINTF_EN |
245 			  B_AX_CMAC_DMA_EN | B_AX_PTCLTOP_EN | B_AX_SCHEDULER_EN |
246 			  B_AX_TMAC_EN | B_AX_RMAC_EN);
247 
248 	return 0;
249 }
250 
251 static int rtw8852c_pwr_off_func(struct rtw89_dev *rtwdev)
252 {
253 	u32 val32;
254 	u32 ret;
255 
256 	ret = rtw89_mac_write_xtal_si(rtwdev, XTAL_SI_ANAPAR_WL, XTAL_SI_RFC2RF,
257 				      XTAL_SI_RFC2RF);
258 	if (ret)
259 		return ret;
260 	ret = rtw89_mac_write_xtal_si(rtwdev, XTAL_SI_ANAPAR_WL, 0, XTAL_SI_OFF_EI);
261 	if (ret)
262 		return ret;
263 	ret = rtw89_mac_write_xtal_si(rtwdev, XTAL_SI_ANAPAR_WL, 0, XTAL_SI_OFF_WEI);
264 	if (ret)
265 		return ret;
266 	ret = rtw89_mac_write_xtal_si(rtwdev, XTAL_SI_WL_RFC_S0, 0, XTAL_SI_RF00);
267 	if (ret)
268 		return ret;
269 	ret = rtw89_mac_write_xtal_si(rtwdev, XTAL_SI_WL_RFC_S1, 0, XTAL_SI_RF10);
270 	if (ret)
271 		return ret;
272 	ret = rtw89_mac_write_xtal_si(rtwdev, XTAL_SI_ANAPAR_WL, XTAL_SI_SRAM2RFC,
273 				      XTAL_SI_SRAM2RFC);
274 	if (ret)
275 		return ret;
276 	ret = rtw89_mac_write_xtal_si(rtwdev, XTAL_SI_ANAPAR_WL, 0, XTAL_SI_PON_EI);
277 	if (ret)
278 		return ret;
279 	ret = rtw89_mac_write_xtal_si(rtwdev, XTAL_SI_ANAPAR_WL, 0, XTAL_SI_PON_WEI);
280 	if (ret)
281 		return ret;
282 
283 	rtw89_write32_set(rtwdev, R_AX_SYS_PW_CTRL, B_AX_EN_WLON);
284 	rtw89_write8_clr(rtwdev, R_AX_SYS_FUNC_EN, B_AX_FEN_BB_GLB_RSTN | B_AX_FEN_BBRSTB);
285 	rtw89_write32_clr(rtwdev, R_AX_SYS_ISO_CTRL_EXTEND,
286 			  B_AX_R_SYM_FEN_WLBBGLB_1 | B_AX_R_SYM_FEN_WLBBFUN_1);
287 	rtw89_write32_clr(rtwdev, R_AX_SYS_ADIE_PAD_PWR_CTRL, B_AX_SYM_PADPDN_WL_RFC_1P3);
288 
289 	ret = rtw89_mac_write_xtal_si(rtwdev, XTAL_SI_ANAPAR_WL, 0, XTAL_SI_SHDN_WL);
290 	if (ret)
291 		return ret;
292 
293 	rtw89_write32_clr(rtwdev, R_AX_SYS_ADIE_PAD_PWR_CTRL, B_AX_SYM_PADPDN_WL_PTA_1P3);
294 
295 	ret = rtw89_mac_write_xtal_si(rtwdev, XTAL_SI_ANAPAR_WL, 0, XTAL_SI_GND_SHDN_WL);
296 	if (ret)
297 		return ret;
298 
299 	rtw89_write32_set(rtwdev, R_AX_SYS_PW_CTRL, B_AX_APFM_OFFMAC);
300 
301 	ret = read_poll_timeout(rtw89_read32, val32, !(val32 & B_AX_APFM_OFFMAC),
302 				1000, 20000, false, rtwdev, R_AX_SYS_PW_CTRL);
303 	if (ret)
304 		return ret;
305 
306 	rtw89_write32(rtwdev, R_AX_WLLPS_CTRL, 0x0001A0B0);
307 	rtw89_write32_set(rtwdev, R_AX_SYS_PW_CTRL, B_AX_XTAL_OFF_A_DIE);
308 	rtw89_write32_set(rtwdev, R_AX_SYS_PW_CTRL, B_AX_APFM_SWLPS);
309 
310 	return 0;
311 }
312 
313 static void rtw8852c_e_efuse_parsing(struct rtw89_efuse *efuse,
314 				     struct rtw8852c_efuse *map)
315 {
316 	ether_addr_copy(efuse->addr, map->e.mac_addr);
317 	efuse->rfe_type = map->rfe_type;
318 	efuse->xtal_cap = map->xtal_k;
319 }
320 
321 static void rtw8852c_efuse_parsing_tssi(struct rtw89_dev *rtwdev,
322 					struct rtw8852c_efuse *map)
323 {
324 	struct rtw89_tssi_info *tssi = &rtwdev->tssi;
325 	struct rtw8852c_tssi_offset *ofst[] = {&map->path_a_tssi, &map->path_b_tssi};
326 	u8 *bw40_1s_tssi_6g_ofst[] = {map->bw40_1s_tssi_6g_a, map->bw40_1s_tssi_6g_b};
327 	u8 i, j;
328 
329 	tssi->thermal[RF_PATH_A] = map->path_a_therm;
330 	tssi->thermal[RF_PATH_B] = map->path_b_therm;
331 
332 	for (i = 0; i < RF_PATH_NUM_8852C; i++) {
333 		memcpy(tssi->tssi_cck[i], ofst[i]->cck_tssi,
334 		       sizeof(ofst[i]->cck_tssi));
335 
336 		for (j = 0; j < TSSI_CCK_CH_GROUP_NUM; j++)
337 			rtw89_debug(rtwdev, RTW89_DBG_TSSI,
338 				    "[TSSI][EFUSE] path=%d cck[%d]=0x%x\n",
339 				    i, j, tssi->tssi_cck[i][j]);
340 
341 		memcpy(tssi->tssi_mcs[i], ofst[i]->bw40_tssi,
342 		       sizeof(ofst[i]->bw40_tssi));
343 		memcpy(tssi->tssi_mcs[i] + TSSI_MCS_2G_CH_GROUP_NUM,
344 		       ofst[i]->bw40_1s_tssi_5g, sizeof(ofst[i]->bw40_1s_tssi_5g));
345 		memcpy(tssi->tssi_6g_mcs[i], bw40_1s_tssi_6g_ofst[i],
346 		       sizeof(tssi->tssi_6g_mcs[i]));
347 
348 		for (j = 0; j < TSSI_MCS_CH_GROUP_NUM; j++)
349 			rtw89_debug(rtwdev, RTW89_DBG_TSSI,
350 				    "[TSSI][EFUSE] path=%d mcs[%d]=0x%x\n",
351 				    i, j, tssi->tssi_mcs[i][j]);
352 	}
353 }
354 
355 static bool _decode_efuse_gain(u8 data, s8 *high, s8 *low)
356 {
357 	if (high)
358 		*high = sign_extend32(FIELD_GET(GENMASK(7,  4), data), 3);
359 	if (low)
360 		*low = sign_extend32(FIELD_GET(GENMASK(3,  0), data), 3);
361 
362 	return data != 0xff;
363 }
364 
365 static void rtw8852c_efuse_parsing_gain_offset(struct rtw89_dev *rtwdev,
366 					       struct rtw8852c_efuse *map)
367 {
368 	struct rtw89_phy_efuse_gain *gain = &rtwdev->efuse_gain;
369 	bool valid = false;
370 
371 	valid |= _decode_efuse_gain(map->rx_gain_2g_cck,
372 				    &gain->offset[RF_PATH_A][RTW89_GAIN_OFFSET_2G_CCK],
373 				    &gain->offset[RF_PATH_B][RTW89_GAIN_OFFSET_2G_CCK]);
374 	valid |= _decode_efuse_gain(map->rx_gain_2g_ofdm,
375 				    &gain->offset[RF_PATH_A][RTW89_GAIN_OFFSET_2G_OFDM],
376 				    &gain->offset[RF_PATH_B][RTW89_GAIN_OFFSET_2G_OFDM]);
377 	valid |= _decode_efuse_gain(map->rx_gain_5g_low,
378 				    &gain->offset[RF_PATH_A][RTW89_GAIN_OFFSET_5G_LOW],
379 				    &gain->offset[RF_PATH_B][RTW89_GAIN_OFFSET_5G_LOW]);
380 	valid |= _decode_efuse_gain(map->rx_gain_5g_mid,
381 				    &gain->offset[RF_PATH_A][RTW89_GAIN_OFFSET_5G_MID],
382 				    &gain->offset[RF_PATH_B][RTW89_GAIN_OFFSET_5G_MID]);
383 	valid |= _decode_efuse_gain(map->rx_gain_5g_high,
384 				    &gain->offset[RF_PATH_A][RTW89_GAIN_OFFSET_5G_HIGH],
385 				    &gain->offset[RF_PATH_B][RTW89_GAIN_OFFSET_5G_HIGH]);
386 
387 	gain->offset_valid = valid;
388 }
389 
390 static int rtw8852c_read_efuse(struct rtw89_dev *rtwdev, u8 *log_map)
391 {
392 	struct rtw89_efuse *efuse = &rtwdev->efuse;
393 	struct rtw8852c_efuse *map;
394 
395 	map = (struct rtw8852c_efuse *)log_map;
396 
397 	efuse->country_code[0] = map->country_code[0];
398 	efuse->country_code[1] = map->country_code[1];
399 	rtw8852c_efuse_parsing_tssi(rtwdev, map);
400 	rtw8852c_efuse_parsing_gain_offset(rtwdev, map);
401 
402 	switch (rtwdev->hci.type) {
403 	case RTW89_HCI_TYPE_PCIE:
404 		rtw8852c_e_efuse_parsing(efuse, map);
405 		break;
406 	default:
407 		return -ENOTSUPP;
408 	}
409 
410 	rtw89_info(rtwdev, "chip rfe_type is %d\n", efuse->rfe_type);
411 
412 	return 0;
413 }
414 
415 static void rtw8852c_phycap_parsing_tssi(struct rtw89_dev *rtwdev, u8 *phycap_map)
416 {
417 	struct rtw89_tssi_info *tssi = &rtwdev->tssi;
418 	static const u32 tssi_trim_addr[RF_PATH_NUM_8852C] = {0x5D6, 0x5AB};
419 	static const u32 tssi_trim_addr_6g[RF_PATH_NUM_8852C] = {0x5CE, 0x5A3};
420 	u32 addr = rtwdev->chip->phycap_addr;
421 	bool pg = false;
422 	u32 ofst;
423 	u8 i, j;
424 
425 	for (i = 0; i < RF_PATH_NUM_8852C; i++) {
426 		for (j = 0; j < TSSI_TRIM_CH_GROUP_NUM; j++) {
427 			/* addrs are in decreasing order */
428 			ofst = tssi_trim_addr[i] - addr - j;
429 			tssi->tssi_trim[i][j] = phycap_map[ofst];
430 
431 			if (phycap_map[ofst] != 0xff)
432 				pg = true;
433 		}
434 
435 		for (j = 0; j < TSSI_TRIM_CH_GROUP_NUM_6G; j++) {
436 			/* addrs are in decreasing order */
437 			ofst = tssi_trim_addr_6g[i] - addr - j;
438 			tssi->tssi_trim_6g[i][j] = phycap_map[ofst];
439 
440 			if (phycap_map[ofst] != 0xff)
441 				pg = true;
442 		}
443 	}
444 
445 	if (!pg) {
446 		memset(tssi->tssi_trim, 0, sizeof(tssi->tssi_trim));
447 		memset(tssi->tssi_trim_6g, 0, sizeof(tssi->tssi_trim_6g));
448 		rtw89_debug(rtwdev, RTW89_DBG_TSSI,
449 			    "[TSSI][TRIM] no PG, set all trim info to 0\n");
450 	}
451 
452 	for (i = 0; i < RF_PATH_NUM_8852C; i++)
453 		for (j = 0; j < TSSI_TRIM_CH_GROUP_NUM; j++)
454 			rtw89_debug(rtwdev, RTW89_DBG_TSSI,
455 				    "[TSSI] path=%d idx=%d trim=0x%x addr=0x%x\n",
456 				    i, j, tssi->tssi_trim[i][j],
457 				    tssi_trim_addr[i] - j);
458 }
459 
460 static void rtw8852c_phycap_parsing_thermal_trim(struct rtw89_dev *rtwdev,
461 						 u8 *phycap_map)
462 {
463 	struct rtw89_power_trim_info *info = &rtwdev->pwr_trim;
464 	static const u32 thm_trim_addr[RF_PATH_NUM_8852C] = {0x5DF, 0x5DC};
465 	u32 addr = rtwdev->chip->phycap_addr;
466 	u8 i;
467 
468 	for (i = 0; i < RF_PATH_NUM_8852C; i++) {
469 		info->thermal_trim[i] = phycap_map[thm_trim_addr[i] - addr];
470 
471 		rtw89_debug(rtwdev, RTW89_DBG_RFK,
472 			    "[THERMAL][TRIM] path=%d thermal_trim=0x%x\n",
473 			    i, info->thermal_trim[i]);
474 
475 		if (info->thermal_trim[i] != 0xff)
476 			info->pg_thermal_trim = true;
477 	}
478 }
479 
480 static void rtw8852c_thermal_trim(struct rtw89_dev *rtwdev)
481 {
482 #define __thm_setting(raw)				\
483 ({							\
484 	u8 __v = (raw);					\
485 	((__v & 0x1) << 3) | ((__v & 0x1f) >> 1);	\
486 })
487 	struct rtw89_power_trim_info *info = &rtwdev->pwr_trim;
488 	u8 i, val;
489 
490 	if (!info->pg_thermal_trim) {
491 		rtw89_debug(rtwdev, RTW89_DBG_RFK,
492 			    "[THERMAL][TRIM] no PG, do nothing\n");
493 
494 		return;
495 	}
496 
497 	for (i = 0; i < RF_PATH_NUM_8852C; i++) {
498 		val = __thm_setting(info->thermal_trim[i]);
499 		rtw89_write_rf(rtwdev, i, RR_TM2, RR_TM2_OFF, val);
500 
501 		rtw89_debug(rtwdev, RTW89_DBG_RFK,
502 			    "[THERMAL][TRIM] path=%d thermal_setting=0x%x\n",
503 			    i, val);
504 	}
505 #undef __thm_setting
506 }
507 
508 static void rtw8852c_phycap_parsing_pa_bias_trim(struct rtw89_dev *rtwdev,
509 						 u8 *phycap_map)
510 {
511 	struct rtw89_power_trim_info *info = &rtwdev->pwr_trim;
512 	static const u32 pabias_trim_addr[RF_PATH_NUM_8852C] = {0x5DE, 0x5DB};
513 	u32 addr = rtwdev->chip->phycap_addr;
514 	u8 i;
515 
516 	for (i = 0; i < RF_PATH_NUM_8852C; i++) {
517 		info->pa_bias_trim[i] = phycap_map[pabias_trim_addr[i] - addr];
518 
519 		rtw89_debug(rtwdev, RTW89_DBG_RFK,
520 			    "[PA_BIAS][TRIM] path=%d pa_bias_trim=0x%x\n",
521 			    i, info->pa_bias_trim[i]);
522 
523 		if (info->pa_bias_trim[i] != 0xff)
524 			info->pg_pa_bias_trim = true;
525 	}
526 }
527 
528 static void rtw8852c_pa_bias_trim(struct rtw89_dev *rtwdev)
529 {
530 	struct rtw89_power_trim_info *info = &rtwdev->pwr_trim;
531 	u8 pabias_2g, pabias_5g;
532 	u8 i;
533 
534 	if (!info->pg_pa_bias_trim) {
535 		rtw89_debug(rtwdev, RTW89_DBG_RFK,
536 			    "[PA_BIAS][TRIM] no PG, do nothing\n");
537 
538 		return;
539 	}
540 
541 	for (i = 0; i < RF_PATH_NUM_8852C; i++) {
542 		pabias_2g = FIELD_GET(GENMASK(3, 0), info->pa_bias_trim[i]);
543 		pabias_5g = FIELD_GET(GENMASK(7, 4), info->pa_bias_trim[i]);
544 
545 		rtw89_debug(rtwdev, RTW89_DBG_RFK,
546 			    "[PA_BIAS][TRIM] path=%d 2G=0x%x 5G=0x%x\n",
547 			    i, pabias_2g, pabias_5g);
548 
549 		rtw89_write_rf(rtwdev, i, RR_BIASA, RR_BIASA_TXG, pabias_2g);
550 		rtw89_write_rf(rtwdev, i, RR_BIASA, RR_BIASA_TXA, pabias_5g);
551 	}
552 }
553 
554 static int rtw8852c_read_phycap(struct rtw89_dev *rtwdev, u8 *phycap_map)
555 {
556 	rtw8852c_phycap_parsing_tssi(rtwdev, phycap_map);
557 	rtw8852c_phycap_parsing_thermal_trim(rtwdev, phycap_map);
558 	rtw8852c_phycap_parsing_pa_bias_trim(rtwdev, phycap_map);
559 
560 	return 0;
561 }
562 
563 static void rtw8852c_power_trim(struct rtw89_dev *rtwdev)
564 {
565 	rtw8852c_thermal_trim(rtwdev);
566 	rtw8852c_pa_bias_trim(rtwdev);
567 }
568 
569 static void rtw8852c_set_channel_mac(struct rtw89_dev *rtwdev,
570 				     const struct rtw89_chan *chan,
571 				     u8 mac_idx)
572 {
573 	u32 rf_mod = rtw89_mac_reg_by_idx(R_AX_WMAC_RFMOD, mac_idx);
574 	u32 sub_carr = rtw89_mac_reg_by_idx(R_AX_TX_SUB_CARRIER_VALUE,
575 					     mac_idx);
576 	u32 chk_rate = rtw89_mac_reg_by_idx(R_AX_TXRATE_CHK, mac_idx);
577 	u8 txsc20 = 0, txsc40 = 0, txsc80 = 0;
578 	u8 rf_mod_val = 0, chk_rate_mask = 0;
579 	u32 txsc;
580 
581 	switch (chan->band_width) {
582 	case RTW89_CHANNEL_WIDTH_160:
583 		txsc80 = rtw89_phy_get_txsc(rtwdev, chan,
584 					    RTW89_CHANNEL_WIDTH_80);
585 		fallthrough;
586 	case RTW89_CHANNEL_WIDTH_80:
587 		txsc40 = rtw89_phy_get_txsc(rtwdev, chan,
588 					    RTW89_CHANNEL_WIDTH_40);
589 		fallthrough;
590 	case RTW89_CHANNEL_WIDTH_40:
591 		txsc20 = rtw89_phy_get_txsc(rtwdev, chan,
592 					    RTW89_CHANNEL_WIDTH_20);
593 		break;
594 	default:
595 		break;
596 	}
597 
598 	switch (chan->band_width) {
599 	case RTW89_CHANNEL_WIDTH_160:
600 		rf_mod_val = AX_WMAC_RFMOD_160M;
601 		txsc = FIELD_PREP(B_AX_TXSC_20M_MASK, txsc20) |
602 		       FIELD_PREP(B_AX_TXSC_40M_MASK, txsc40) |
603 		       FIELD_PREP(B_AX_TXSC_80M_MASK, txsc80);
604 		break;
605 	case RTW89_CHANNEL_WIDTH_80:
606 		rf_mod_val = AX_WMAC_RFMOD_80M;
607 		txsc = FIELD_PREP(B_AX_TXSC_20M_MASK, txsc20) |
608 		       FIELD_PREP(B_AX_TXSC_40M_MASK, txsc40);
609 		break;
610 	case RTW89_CHANNEL_WIDTH_40:
611 		rf_mod_val = AX_WMAC_RFMOD_40M;
612 		txsc = FIELD_PREP(B_AX_TXSC_20M_MASK, txsc20);
613 		break;
614 	case RTW89_CHANNEL_WIDTH_20:
615 	default:
616 		rf_mod_val = AX_WMAC_RFMOD_20M;
617 		txsc = 0;
618 		break;
619 	}
620 	rtw89_write8_mask(rtwdev, rf_mod, B_AX_WMAC_RFMOD_MASK, rf_mod_val);
621 	rtw89_write32(rtwdev, sub_carr, txsc);
622 
623 	switch (chan->band_type) {
624 	case RTW89_BAND_2G:
625 		chk_rate_mask = B_AX_BAND_MODE;
626 		break;
627 	case RTW89_BAND_5G:
628 	case RTW89_BAND_6G:
629 		chk_rate_mask = B_AX_CHECK_CCK_EN | B_AX_RTS_LIMIT_IN_OFDM6;
630 		break;
631 	default:
632 		rtw89_warn(rtwdev, "Invalid band_type:%d\n", chan->band_type);
633 		return;
634 	}
635 	rtw89_write8_clr(rtwdev, chk_rate, B_AX_BAND_MODE | B_AX_CHECK_CCK_EN |
636 					   B_AX_RTS_LIMIT_IN_OFDM6);
637 	rtw89_write8_set(rtwdev, chk_rate, chk_rate_mask);
638 }
639 
640 static const u32 rtw8852c_sco_barker_threshold[14] = {
641 	0x1fe4f, 0x1ff5e, 0x2006c, 0x2017b, 0x2028a, 0x20399, 0x204a8, 0x205b6,
642 	0x206c5, 0x207d4, 0x208e3, 0x209f2, 0x20b00, 0x20d8a
643 };
644 
645 static const u32 rtw8852c_sco_cck_threshold[14] = {
646 	0x2bdac, 0x2bf21, 0x2c095, 0x2c209, 0x2c37e, 0x2c4f2, 0x2c666, 0x2c7db,
647 	0x2c94f, 0x2cac3, 0x2cc38, 0x2cdac, 0x2cf21, 0x2d29e
648 };
649 
650 static int rtw8852c_ctrl_sco_cck(struct rtw89_dev *rtwdev, u8 central_ch,
651 				 u8 primary_ch, enum rtw89_bandwidth bw)
652 {
653 	u8 ch_element;
654 
655 	if (bw == RTW89_CHANNEL_WIDTH_20) {
656 		ch_element = central_ch - 1;
657 	} else if (bw == RTW89_CHANNEL_WIDTH_40) {
658 		if (primary_ch == 1)
659 			ch_element = central_ch - 1 + 2;
660 		else
661 			ch_element = central_ch - 1 - 2;
662 	} else {
663 		rtw89_warn(rtwdev, "Invalid BW:%d for CCK\n", bw);
664 		return -EINVAL;
665 	}
666 	rtw89_phy_write32_mask(rtwdev, R_BK_FC0_INV_V1, B_BK_FC0_INV_MSK_V1,
667 			       rtw8852c_sco_barker_threshold[ch_element]);
668 	rtw89_phy_write32_mask(rtwdev, R_CCK_FC0_INV_V1, B_CCK_FC0_INV_MSK_V1,
669 			       rtw8852c_sco_cck_threshold[ch_element]);
670 
671 	return 0;
672 }
673 
674 struct rtw8852c_bb_gain {
675 	u32 gain_g[BB_PATH_NUM_8852C];
676 	u32 gain_a[BB_PATH_NUM_8852C];
677 	u32 gain_mask;
678 };
679 
680 static const struct rtw8852c_bb_gain bb_gain_lna[LNA_GAIN_NUM] = {
681 	{ .gain_g = {0x4678, 0x475C}, .gain_a = {0x45DC, 0x4740},
682 	  .gain_mask = 0x00ff0000 },
683 	{ .gain_g = {0x4678, 0x475C}, .gain_a = {0x45DC, 0x4740},
684 	  .gain_mask = 0xff000000 },
685 	{ .gain_g = {0x467C, 0x4760}, .gain_a = {0x4660, 0x4744},
686 	  .gain_mask = 0x000000ff },
687 	{ .gain_g = {0x467C, 0x4760}, .gain_a = {0x4660, 0x4744},
688 	  .gain_mask = 0x0000ff00 },
689 	{ .gain_g = {0x467C, 0x4760}, .gain_a = {0x4660, 0x4744},
690 	  .gain_mask = 0x00ff0000 },
691 	{ .gain_g = {0x467C, 0x4760}, .gain_a = {0x4660, 0x4744},
692 	  .gain_mask = 0xff000000 },
693 	{ .gain_g = {0x4680, 0x4764}, .gain_a = {0x4664, 0x4748},
694 	  .gain_mask = 0x000000ff },
695 };
696 
697 static const struct rtw8852c_bb_gain bb_gain_tia[TIA_GAIN_NUM] = {
698 	{ .gain_g = {0x4680, 0x4764}, .gain_a = {0x4664, 0x4748},
699 	  .gain_mask = 0x00ff0000 },
700 	{ .gain_g = {0x4680, 0x4764}, .gain_a = {0x4664, 0x4748},
701 	  .gain_mask = 0xff000000 },
702 };
703 
704 struct rtw8852c_bb_gain_bypass {
705 	u32 gain_g[BB_PATH_NUM_8852C];
706 	u32 gain_a[BB_PATH_NUM_8852C];
707 	u32 gain_mask_g;
708 	u32 gain_mask_a;
709 };
710 
711 static
712 const struct rtw8852c_bb_gain_bypass bb_gain_bypass_lna[LNA_GAIN_NUM] = {
713 	{ .gain_g = {0x4BB8, 0x4C7C}, .gain_a = {0x4BB4, 0x4C78},
714 	  .gain_mask_g = 0xff000000, .gain_mask_a = 0xff},
715 	{ .gain_g = {0x4BBC, 0x4C80}, .gain_a = {0x4BB4, 0x4C78},
716 	  .gain_mask_g = 0xff, .gain_mask_a = 0xff00},
717 	{ .gain_g = {0x4BBC, 0x4C80}, .gain_a = {0x4BB4, 0x4C78},
718 	  .gain_mask_g = 0xff00, .gain_mask_a = 0xff0000},
719 	{ .gain_g = {0x4BBC, 0x4C80}, .gain_a = {0x4BB4, 0x4C78},
720 	  .gain_mask_g = 0xff0000, .gain_mask_a = 0xff000000},
721 	{ .gain_g = {0x4BBC, 0x4C80}, .gain_a = {0x4BB8, 0x4C7C},
722 	  .gain_mask_g = 0xff000000, .gain_mask_a = 0xff},
723 	{ .gain_g = {0x4BC0, 0x4C84}, .gain_a = {0x4BB8, 0x4C7C},
724 	  .gain_mask_g = 0xff, .gain_mask_a = 0xff00},
725 	{ .gain_g = {0x4BC0, 0x4C84}, .gain_a = {0x4BB8, 0x4C7C},
726 	  .gain_mask_g = 0xff00, .gain_mask_a = 0xff0000},
727 };
728 
729 struct rtw8852c_bb_gain_op1db {
730 	struct {
731 		u32 lna[BB_PATH_NUM_8852C];
732 		u32 tia_lna[BB_PATH_NUM_8852C];
733 		u32 mask;
734 	} reg[LNA_GAIN_NUM];
735 	u32 reg_tia0_lna6[BB_PATH_NUM_8852C];
736 	u32 mask_tia0_lna6;
737 };
738 
739 static const struct rtw8852c_bb_gain_op1db bb_gain_op1db_a = {
740 	.reg = {
741 		{ .lna = {0x4668, 0x474c}, .tia_lna = {0x4670, 0x4754},
742 		  .mask = 0xff},
743 		{ .lna = {0x4668, 0x474c}, .tia_lna = {0x4670, 0x4754},
744 		  .mask = 0xff00},
745 		{ .lna = {0x4668, 0x474c}, .tia_lna = {0x4670, 0x4754},
746 		  .mask = 0xff0000},
747 		{ .lna = {0x4668, 0x474c}, .tia_lna = {0x4670, 0x4754},
748 		  .mask = 0xff000000},
749 		{ .lna = {0x466c, 0x4750}, .tia_lna = {0x4674, 0x4758},
750 		  .mask = 0xff},
751 		{ .lna = {0x466c, 0x4750}, .tia_lna = {0x4674, 0x4758},
752 		  .mask = 0xff00},
753 		{ .lna = {0x466c, 0x4750}, .tia_lna = {0x4674, 0x4758},
754 		  .mask = 0xff0000},
755 	},
756 	.reg_tia0_lna6 = {0x4674, 0x4758},
757 	.mask_tia0_lna6 = 0xff000000,
758 };
759 
760 static enum rtw89_phy_bb_gain_band
761 rtw8852c_mapping_gain_band(enum rtw89_subband subband)
762 {
763 	switch (subband) {
764 	default:
765 	case RTW89_CH_2G:
766 		return RTW89_BB_GAIN_BAND_2G;
767 	case RTW89_CH_5G_BAND_1:
768 		return RTW89_BB_GAIN_BAND_5G_L;
769 	case RTW89_CH_5G_BAND_3:
770 		return RTW89_BB_GAIN_BAND_5G_M;
771 	case RTW89_CH_5G_BAND_4:
772 		return RTW89_BB_GAIN_BAND_5G_H;
773 	case RTW89_CH_6G_BAND_IDX0:
774 	case RTW89_CH_6G_BAND_IDX1:
775 		return RTW89_BB_GAIN_BAND_6G_L;
776 	case RTW89_CH_6G_BAND_IDX2:
777 	case RTW89_CH_6G_BAND_IDX3:
778 		return RTW89_BB_GAIN_BAND_6G_M;
779 	case RTW89_CH_6G_BAND_IDX4:
780 	case RTW89_CH_6G_BAND_IDX5:
781 		return RTW89_BB_GAIN_BAND_6G_H;
782 	case RTW89_CH_6G_BAND_IDX6:
783 	case RTW89_CH_6G_BAND_IDX7:
784 		return RTW89_BB_GAIN_BAND_6G_UH;
785 	}
786 }
787 
788 static void rtw8852c_set_gain_error(struct rtw89_dev *rtwdev,
789 				    enum rtw89_subband subband,
790 				    enum rtw89_rf_path path)
791 {
792 	const struct rtw89_phy_bb_gain_info *gain = &rtwdev->bb_gain;
793 	u8 gain_band = rtw8852c_mapping_gain_band(subband);
794 	s32 val;
795 	u32 reg;
796 	u32 mask;
797 	int i;
798 
799 	for (i = 0; i < LNA_GAIN_NUM; i++) {
800 		if (subband == RTW89_CH_2G)
801 			reg = bb_gain_lna[i].gain_g[path];
802 		else
803 			reg = bb_gain_lna[i].gain_a[path];
804 
805 		mask = bb_gain_lna[i].gain_mask;
806 		val = gain->lna_gain[gain_band][path][i];
807 		rtw89_phy_write32_mask(rtwdev, reg, mask, val);
808 
809 		if (subband == RTW89_CH_2G) {
810 			reg = bb_gain_bypass_lna[i].gain_g[path];
811 			mask = bb_gain_bypass_lna[i].gain_mask_g;
812 		} else {
813 			reg = bb_gain_bypass_lna[i].gain_a[path];
814 			mask = bb_gain_bypass_lna[i].gain_mask_a;
815 		}
816 
817 		val = gain->lna_gain_bypass[gain_band][path][i];
818 		rtw89_phy_write32_mask(rtwdev, reg, mask, val);
819 
820 		if (subband != RTW89_CH_2G) {
821 			reg = bb_gain_op1db_a.reg[i].lna[path];
822 			mask = bb_gain_op1db_a.reg[i].mask;
823 			val = gain->lna_op1db[gain_band][path][i];
824 			rtw89_phy_write32_mask(rtwdev, reg, mask, val);
825 
826 			reg = bb_gain_op1db_a.reg[i].tia_lna[path];
827 			mask = bb_gain_op1db_a.reg[i].mask;
828 			val = gain->tia_lna_op1db[gain_band][path][i];
829 			rtw89_phy_write32_mask(rtwdev, reg, mask, val);
830 		}
831 	}
832 
833 	if (subband != RTW89_CH_2G) {
834 		reg = bb_gain_op1db_a.reg_tia0_lna6[path];
835 		mask = bb_gain_op1db_a.mask_tia0_lna6;
836 		val = gain->tia_lna_op1db[gain_band][path][7];
837 		rtw89_phy_write32_mask(rtwdev, reg, mask, val);
838 	}
839 
840 	for (i = 0; i < TIA_GAIN_NUM; i++) {
841 		if (subband == RTW89_CH_2G)
842 			reg = bb_gain_tia[i].gain_g[path];
843 		else
844 			reg = bb_gain_tia[i].gain_a[path];
845 
846 		mask = bb_gain_tia[i].gain_mask;
847 		val = gain->tia_gain[gain_band][path][i];
848 		rtw89_phy_write32_mask(rtwdev, reg, mask, val);
849 	}
850 }
851 
852 static
853 const u8 rtw8852c_ch_base_table[16] = {1, 0xff,
854 				       36, 100, 132, 149, 0xff,
855 				       1, 33, 65, 97, 129, 161, 193, 225, 0xff};
856 #define RTW8852C_CH_BASE_IDX_2G		0
857 #define RTW8852C_CH_BASE_IDX_5G_FIRST	2
858 #define RTW8852C_CH_BASE_IDX_5G_LAST	5
859 #define RTW8852C_CH_BASE_IDX_6G_FIRST	7
860 #define RTW8852C_CH_BASE_IDX_6G_LAST	14
861 
862 #define RTW8852C_CH_BASE_IDX_MASK	GENMASK(7, 4)
863 #define RTW8852C_CH_OFFSET_MASK		GENMASK(3, 0)
864 
865 static u8 rtw8852c_encode_chan_idx(struct rtw89_dev *rtwdev, u8 central_ch, u8 band)
866 {
867 	u8 chan_idx;
868 	u8 last, first;
869 	u8 idx;
870 
871 	switch (band) {
872 	case RTW89_BAND_2G:
873 		chan_idx = FIELD_PREP(RTW8852C_CH_BASE_IDX_MASK, RTW8852C_CH_BASE_IDX_2G) |
874 			   FIELD_PREP(RTW8852C_CH_OFFSET_MASK, central_ch);
875 		return chan_idx;
876 	case RTW89_BAND_5G:
877 		first = RTW8852C_CH_BASE_IDX_5G_FIRST;
878 		last = RTW8852C_CH_BASE_IDX_5G_LAST;
879 		break;
880 	case RTW89_BAND_6G:
881 		first = RTW8852C_CH_BASE_IDX_6G_FIRST;
882 		last = RTW8852C_CH_BASE_IDX_6G_LAST;
883 		break;
884 	default:
885 		rtw89_warn(rtwdev, "Unsupported band %d\n", band);
886 		return 0;
887 	}
888 
889 	for (idx = last; idx >= first; idx--)
890 		if (central_ch >= rtw8852c_ch_base_table[idx])
891 			break;
892 
893 	if (idx < first) {
894 		rtw89_warn(rtwdev, "Unknown band %d channel %d\n", band, central_ch);
895 		return 0;
896 	}
897 
898 	chan_idx = FIELD_PREP(RTW8852C_CH_BASE_IDX_MASK, idx) |
899 		   FIELD_PREP(RTW8852C_CH_OFFSET_MASK,
900 			      (central_ch - rtw8852c_ch_base_table[idx]) >> 1);
901 	return chan_idx;
902 }
903 
904 static void rtw8852c_decode_chan_idx(struct rtw89_dev *rtwdev, u8 chan_idx,
905 				     u8 *ch, enum nl80211_band *band)
906 {
907 	u8 idx, offset;
908 
909 	idx = FIELD_GET(RTW8852C_CH_BASE_IDX_MASK, chan_idx);
910 	offset = FIELD_GET(RTW8852C_CH_OFFSET_MASK, chan_idx);
911 
912 	if (idx == RTW8852C_CH_BASE_IDX_2G) {
913 		*band = NL80211_BAND_2GHZ;
914 		*ch = offset;
915 		return;
916 	}
917 
918 	*band = idx <= RTW8852C_CH_BASE_IDX_5G_LAST ? NL80211_BAND_5GHZ : NL80211_BAND_6GHZ;
919 	*ch = rtw8852c_ch_base_table[idx] + (offset << 1);
920 }
921 
922 static void rtw8852c_set_gain_offset(struct rtw89_dev *rtwdev,
923 				     const struct rtw89_chan *chan,
924 				     enum rtw89_phy_idx phy_idx,
925 				     enum rtw89_rf_path path)
926 {
927 	static const u32 rssi_ofst_addr[2] = {R_PATH0_G_TIA0_LNA6_OP1DB_V1,
928 					      R_PATH1_G_TIA0_LNA6_OP1DB_V1};
929 	static const u32 rpl_mask[2] = {B_RPL_PATHA_MASK, B_RPL_PATHB_MASK};
930 	static const u32 rpl_tb_mask[2] = {B_RSSI_M_PATHA_MASK, B_RSSI_M_PATHB_MASK};
931 	struct rtw89_phy_efuse_gain *efuse_gain = &rtwdev->efuse_gain;
932 	enum rtw89_gain_offset gain_band;
933 	s32 offset_q0, offset_base_q4;
934 	s32 tmp = 0;
935 
936 	if (!efuse_gain->offset_valid)
937 		return;
938 
939 	if (rtwdev->dbcc_en && path == RF_PATH_B)
940 		phy_idx = RTW89_PHY_1;
941 
942 	if (chan->band_type == RTW89_BAND_2G) {
943 		offset_q0 = efuse_gain->offset[path][RTW89_GAIN_OFFSET_2G_CCK];
944 		offset_base_q4 = efuse_gain->offset_base[phy_idx];
945 
946 		tmp = clamp_t(s32, (-offset_q0 << 3) + (offset_base_q4 >> 1),
947 			      S8_MIN >> 1, S8_MAX >> 1);
948 		rtw89_phy_write32_mask(rtwdev, R_RPL_OFST, B_RPL_OFST_MASK, tmp & 0x7f);
949 	}
950 
951 	switch (chan->subband_type) {
952 	default:
953 	case RTW89_CH_2G:
954 		gain_band = RTW89_GAIN_OFFSET_2G_OFDM;
955 		break;
956 	case RTW89_CH_5G_BAND_1:
957 		gain_band = RTW89_GAIN_OFFSET_5G_LOW;
958 		break;
959 	case RTW89_CH_5G_BAND_3:
960 		gain_band = RTW89_GAIN_OFFSET_5G_MID;
961 		break;
962 	case RTW89_CH_5G_BAND_4:
963 		gain_band = RTW89_GAIN_OFFSET_5G_HIGH;
964 		break;
965 	}
966 
967 	offset_q0 = -efuse_gain->offset[path][gain_band];
968 	offset_base_q4 = efuse_gain->offset_base[phy_idx];
969 
970 	tmp = (offset_q0 << 2) + (offset_base_q4 >> 2);
971 	tmp = clamp_t(s32, -tmp, S8_MIN, S8_MAX);
972 	rtw89_phy_write32_mask(rtwdev, rssi_ofst_addr[path], B_PATH0_R_G_OFST_MASK, tmp & 0xff);
973 
974 	tmp = clamp_t(s32, offset_q0 << 4, S8_MIN, S8_MAX);
975 	rtw89_phy_write32_idx(rtwdev, R_RPL_PATHAB, rpl_mask[path], tmp & 0xff, phy_idx);
976 	rtw89_phy_write32_idx(rtwdev, R_RSSI_M_PATHAB, rpl_tb_mask[path], tmp & 0xff, phy_idx);
977 }
978 
979 static void rtw8852c_ctrl_ch(struct rtw89_dev *rtwdev,
980 			     const struct rtw89_chan *chan,
981 			     enum rtw89_phy_idx phy_idx)
982 {
983 	u8 sco;
984 	u16 central_freq = chan->freq;
985 	u8 central_ch = chan->channel;
986 	u8 band = chan->band_type;
987 	u8 subband = chan->subband_type;
988 	bool is_2g = band == RTW89_BAND_2G;
989 	u8 chan_idx;
990 
991 	if (!central_freq) {
992 		rtw89_warn(rtwdev, "Invalid central_freq\n");
993 		return;
994 	}
995 
996 	if (phy_idx == RTW89_PHY_0) {
997 		/* Path A */
998 		rtw8852c_set_gain_error(rtwdev, subband, RF_PATH_A);
999 		rtw8852c_set_gain_offset(rtwdev, chan, phy_idx, RF_PATH_A);
1000 
1001 		if (is_2g)
1002 			rtw89_phy_write32_idx(rtwdev, R_PATH0_BAND_SEL_V1,
1003 					      B_PATH0_BAND_SEL_MSK_V1, 1,
1004 					      phy_idx);
1005 		else
1006 			rtw89_phy_write32_idx(rtwdev, R_PATH0_BAND_SEL_V1,
1007 					      B_PATH0_BAND_SEL_MSK_V1, 0,
1008 					      phy_idx);
1009 		/* Path B */
1010 		if (!rtwdev->dbcc_en) {
1011 			rtw8852c_set_gain_error(rtwdev, subband, RF_PATH_B);
1012 			rtw8852c_set_gain_offset(rtwdev, chan, phy_idx, RF_PATH_B);
1013 
1014 			if (is_2g)
1015 				rtw89_phy_write32_idx(rtwdev,
1016 						      R_PATH1_BAND_SEL_V1,
1017 						      B_PATH1_BAND_SEL_MSK_V1,
1018 						      1, phy_idx);
1019 			else
1020 				rtw89_phy_write32_idx(rtwdev,
1021 						      R_PATH1_BAND_SEL_V1,
1022 						      B_PATH1_BAND_SEL_MSK_V1,
1023 						      0, phy_idx);
1024 			rtw89_phy_write32_clr(rtwdev, R_2P4G_BAND, B_2P4G_BAND_SEL);
1025 		} else {
1026 			if (is_2g)
1027 				rtw89_phy_write32_clr(rtwdev, R_2P4G_BAND, B_2P4G_BAND_SEL);
1028 			else
1029 				rtw89_phy_write32_set(rtwdev, R_2P4G_BAND, B_2P4G_BAND_SEL);
1030 		}
1031 		/* SCO compensate FC setting */
1032 		rtw89_phy_write32_idx(rtwdev, R_FC0_V1, B_FC0_MSK_V1,
1033 				      central_freq, phy_idx);
1034 		/* round_up((1/fc0)*pow(2,18)) */
1035 		sco = DIV_ROUND_CLOSEST(1 << 18, central_freq);
1036 		rtw89_phy_write32_idx(rtwdev, R_FC0_BW, B_FC0_BW_INV, sco,
1037 				      phy_idx);
1038 	} else {
1039 		/* Path B */
1040 		rtw8852c_set_gain_error(rtwdev, subband, RF_PATH_B);
1041 		rtw8852c_set_gain_offset(rtwdev, chan, phy_idx, RF_PATH_B);
1042 
1043 		if (is_2g)
1044 			rtw89_phy_write32_idx(rtwdev, R_PATH1_BAND_SEL_V1,
1045 					      B_PATH1_BAND_SEL_MSK_V1,
1046 					      1, phy_idx);
1047 		else
1048 			rtw89_phy_write32_idx(rtwdev, R_PATH1_BAND_SEL_V1,
1049 					      B_PATH1_BAND_SEL_MSK_V1,
1050 					      0, phy_idx);
1051 		/* SCO compensate FC setting */
1052 		rtw89_phy_write32_idx(rtwdev, R_FC0_V1, B_FC0_MSK_V1,
1053 				      central_freq, phy_idx);
1054 		/* round_up((1/fc0)*pow(2,18)) */
1055 		sco = DIV_ROUND_CLOSEST(1 << 18, central_freq);
1056 		rtw89_phy_write32_idx(rtwdev, R_FC0_BW, B_FC0_BW_INV, sco,
1057 				      phy_idx);
1058 	}
1059 	/* CCK parameters */
1060 	if (band == RTW89_BAND_2G) {
1061 		if (central_ch == 14) {
1062 			rtw89_phy_write32_mask(rtwdev, R_PCOEFF0_V1,
1063 					       B_PCOEFF01_MSK_V1, 0x3b13ff);
1064 			rtw89_phy_write32_mask(rtwdev, R_PCOEFF2_V1,
1065 					       B_PCOEFF23_MSK_V1, 0x1c42de);
1066 			rtw89_phy_write32_mask(rtwdev, R_PCOEFF4_V1,
1067 					       B_PCOEFF45_MSK_V1, 0xfdb0ad);
1068 			rtw89_phy_write32_mask(rtwdev, R_PCOEFF6_V1,
1069 					       B_PCOEFF67_MSK_V1, 0xf60f6e);
1070 			rtw89_phy_write32_mask(rtwdev, R_PCOEFF8_V1,
1071 					       B_PCOEFF89_MSK_V1, 0xfd8f92);
1072 			rtw89_phy_write32_mask(rtwdev, R_PCOEFFA_V1,
1073 					       B_PCOEFFAB_MSK_V1, 0x2d011);
1074 			rtw89_phy_write32_mask(rtwdev, R_PCOEFFC_V1,
1075 					       B_PCOEFFCD_MSK_V1, 0x1c02c);
1076 			rtw89_phy_write32_mask(rtwdev, R_PCOEFFE_V1,
1077 					       B_PCOEFFEF_MSK_V1, 0xfff00a);
1078 		} else {
1079 			rtw89_phy_write32_mask(rtwdev, R_PCOEFF0_V1,
1080 					       B_PCOEFF01_MSK_V1, 0x3d23ff);
1081 			rtw89_phy_write32_mask(rtwdev, R_PCOEFF2_V1,
1082 					       B_PCOEFF23_MSK_V1, 0x29b354);
1083 			rtw89_phy_write32_mask(rtwdev, R_PCOEFF4_V1,
1084 					       B_PCOEFF45_MSK_V1, 0xfc1c8);
1085 			rtw89_phy_write32_mask(rtwdev, R_PCOEFF6_V1,
1086 					       B_PCOEFF67_MSK_V1, 0xfdb053);
1087 			rtw89_phy_write32_mask(rtwdev, R_PCOEFF8_V1,
1088 					       B_PCOEFF89_MSK_V1, 0xf86f9a);
1089 			rtw89_phy_write32_mask(rtwdev, R_PCOEFFA_V1,
1090 					       B_PCOEFFAB_MSK_V1, 0xfaef92);
1091 			rtw89_phy_write32_mask(rtwdev, R_PCOEFFC_V1,
1092 					       B_PCOEFFCD_MSK_V1, 0xfe5fcc);
1093 			rtw89_phy_write32_mask(rtwdev, R_PCOEFFE_V1,
1094 					       B_PCOEFFEF_MSK_V1, 0xffdff5);
1095 		}
1096 	}
1097 
1098 	chan_idx = rtw8852c_encode_chan_idx(rtwdev, chan->primary_channel, band);
1099 	rtw89_phy_write32_idx(rtwdev, R_MAC_PIN_SEL, B_CH_IDX_SEG0, chan_idx, phy_idx);
1100 }
1101 
1102 static void rtw8852c_bw_setting(struct rtw89_dev *rtwdev, u8 bw, u8 path)
1103 {
1104 	static const u32 adc_sel[2] = {0xC0EC, 0xC1EC};
1105 	static const u32 wbadc_sel[2] = {0xC0E4, 0xC1E4};
1106 
1107 	switch (bw) {
1108 	case RTW89_CHANNEL_WIDTH_5:
1109 		rtw89_phy_write32_mask(rtwdev, adc_sel[path], 0x6000, 0x1);
1110 		rtw89_phy_write32_mask(rtwdev, wbadc_sel[path], 0x30, 0x0);
1111 		break;
1112 	case RTW89_CHANNEL_WIDTH_10:
1113 		rtw89_phy_write32_mask(rtwdev, adc_sel[path], 0x6000, 0x2);
1114 		rtw89_phy_write32_mask(rtwdev, wbadc_sel[path], 0x30, 0x1);
1115 		break;
1116 	case RTW89_CHANNEL_WIDTH_20:
1117 	case RTW89_CHANNEL_WIDTH_40:
1118 	case RTW89_CHANNEL_WIDTH_80:
1119 	case RTW89_CHANNEL_WIDTH_160:
1120 		rtw89_phy_write32_mask(rtwdev, adc_sel[path], 0x6000, 0x0);
1121 		rtw89_phy_write32_mask(rtwdev, wbadc_sel[path], 0x30, 0x2);
1122 		break;
1123 	default:
1124 		rtw89_warn(rtwdev, "Fail to set ADC\n");
1125 	}
1126 }
1127 
1128 static void rtw8852c_edcca_per20_bitmap_sifs(struct rtw89_dev *rtwdev, u8 bw,
1129 					     enum rtw89_phy_idx phy_idx)
1130 {
1131 	if (bw == RTW89_CHANNEL_WIDTH_20) {
1132 		rtw89_phy_write32_idx(rtwdev, R_SNDCCA_A1, B_SNDCCA_A1_EN, 0xff, phy_idx);
1133 		rtw89_phy_write32_idx(rtwdev, R_SNDCCA_A2, B_SNDCCA_A2_VAL, 0, phy_idx);
1134 	} else {
1135 		rtw89_phy_write32_idx(rtwdev, R_SNDCCA_A1, B_SNDCCA_A1_EN, 0, phy_idx);
1136 		rtw89_phy_write32_idx(rtwdev, R_SNDCCA_A2, B_SNDCCA_A2_VAL, 0, phy_idx);
1137 	}
1138 }
1139 
1140 static void
1141 rtw8852c_ctrl_bw(struct rtw89_dev *rtwdev, u8 pri_ch, u8 bw,
1142 		 enum rtw89_phy_idx phy_idx)
1143 {
1144 	u8 mod_sbw = 0;
1145 
1146 	switch (bw) {
1147 	case RTW89_CHANNEL_WIDTH_5:
1148 	case RTW89_CHANNEL_WIDTH_10:
1149 	case RTW89_CHANNEL_WIDTH_20:
1150 		if (bw == RTW89_CHANNEL_WIDTH_5)
1151 			mod_sbw = 0x1;
1152 		else if (bw == RTW89_CHANNEL_WIDTH_10)
1153 			mod_sbw = 0x2;
1154 		else if (bw == RTW89_CHANNEL_WIDTH_20)
1155 			mod_sbw = 0x0;
1156 		rtw89_phy_write32_idx(rtwdev, R_FC0_BW, B_FC0_BW_SET, 0x0,
1157 				      phy_idx);
1158 		rtw89_phy_write32_idx(rtwdev, R_CHBW_MOD, B_CHBW_MOD_SBW,
1159 				      mod_sbw, phy_idx);
1160 		rtw89_phy_write32_idx(rtwdev, R_CHBW_MOD, B_CHBW_MOD_PRICH, 0x0,
1161 				      phy_idx);
1162 		rtw89_phy_write32_mask(rtwdev, R_PATH0_SAMPL_DLY_T_V1,
1163 				       B_PATH0_SAMPL_DLY_T_MSK_V1, 0x3);
1164 		rtw89_phy_write32_mask(rtwdev, R_PATH1_SAMPL_DLY_T_V1,
1165 				       B_PATH1_SAMPL_DLY_T_MSK_V1, 0x3);
1166 		rtw89_phy_write32_mask(rtwdev, R_PATH0_BW_SEL_V1,
1167 				       B_PATH0_BW_SEL_MSK_V1, 0xf);
1168 		rtw89_phy_write32_mask(rtwdev, R_PATH1_BW_SEL_V1,
1169 				       B_PATH1_BW_SEL_MSK_V1, 0xf);
1170 		break;
1171 	case RTW89_CHANNEL_WIDTH_40:
1172 		rtw89_phy_write32_idx(rtwdev, R_FC0_BW, B_FC0_BW_SET, 0x1,
1173 				      phy_idx);
1174 		rtw89_phy_write32_idx(rtwdev, R_CHBW_MOD, B_CHBW_MOD_SBW, 0x0,
1175 				      phy_idx);
1176 		rtw89_phy_write32_idx(rtwdev, R_CHBW_MOD, B_CHBW_MOD_PRICH,
1177 				      pri_ch,
1178 				      phy_idx);
1179 		rtw89_phy_write32_mask(rtwdev, R_PATH0_SAMPL_DLY_T_V1,
1180 				       B_PATH0_SAMPL_DLY_T_MSK_V1, 0x3);
1181 		rtw89_phy_write32_mask(rtwdev, R_PATH1_SAMPL_DLY_T_V1,
1182 				       B_PATH1_SAMPL_DLY_T_MSK_V1, 0x3);
1183 		rtw89_phy_write32_mask(rtwdev, R_PATH0_BW_SEL_V1,
1184 				       B_PATH0_BW_SEL_MSK_V1, 0xf);
1185 		rtw89_phy_write32_mask(rtwdev, R_PATH1_BW_SEL_V1,
1186 				       B_PATH1_BW_SEL_MSK_V1, 0xf);
1187 		break;
1188 	case RTW89_CHANNEL_WIDTH_80:
1189 		rtw89_phy_write32_idx(rtwdev, R_FC0_BW, B_FC0_BW_SET, 0x2,
1190 				      phy_idx);
1191 		rtw89_phy_write32_idx(rtwdev, R_CHBW_MOD, B_CHBW_MOD_SBW, 0x0,
1192 				      phy_idx);
1193 		rtw89_phy_write32_idx(rtwdev, R_CHBW_MOD, B_CHBW_MOD_PRICH,
1194 				      pri_ch,
1195 				      phy_idx);
1196 		rtw89_phy_write32_mask(rtwdev, R_PATH0_SAMPL_DLY_T_V1,
1197 				       B_PATH0_SAMPL_DLY_T_MSK_V1, 0x2);
1198 		rtw89_phy_write32_mask(rtwdev, R_PATH1_SAMPL_DLY_T_V1,
1199 				       B_PATH1_SAMPL_DLY_T_MSK_V1, 0x2);
1200 		rtw89_phy_write32_mask(rtwdev, R_PATH0_BW_SEL_V1,
1201 				       B_PATH0_BW_SEL_MSK_V1, 0xd);
1202 		rtw89_phy_write32_mask(rtwdev, R_PATH1_BW_SEL_V1,
1203 				       B_PATH1_BW_SEL_MSK_V1, 0xd);
1204 		break;
1205 	case RTW89_CHANNEL_WIDTH_160:
1206 		rtw89_phy_write32_idx(rtwdev, R_FC0_BW, B_FC0_BW_SET, 0x3,
1207 				      phy_idx);
1208 		rtw89_phy_write32_idx(rtwdev, R_CHBW_MOD, B_CHBW_MOD_SBW, 0x0,
1209 				      phy_idx);
1210 		rtw89_phy_write32_idx(rtwdev, R_CHBW_MOD, B_CHBW_MOD_PRICH,
1211 				      pri_ch,
1212 				      phy_idx);
1213 		rtw89_phy_write32_mask(rtwdev, R_PATH0_SAMPL_DLY_T_V1,
1214 				       B_PATH0_SAMPL_DLY_T_MSK_V1, 0x1);
1215 		rtw89_phy_write32_mask(rtwdev, R_PATH1_SAMPL_DLY_T_V1,
1216 				       B_PATH1_SAMPL_DLY_T_MSK_V1, 0x1);
1217 		rtw89_phy_write32_mask(rtwdev, R_PATH0_BW_SEL_V1,
1218 				       B_PATH0_BW_SEL_MSK_V1, 0xb);
1219 		rtw89_phy_write32_mask(rtwdev, R_PATH1_BW_SEL_V1,
1220 				       B_PATH1_BW_SEL_MSK_V1, 0xb);
1221 		break;
1222 	default:
1223 		rtw89_warn(rtwdev, "Fail to switch bw (bw:%d, pri ch:%d)\n", bw,
1224 			   pri_ch);
1225 	}
1226 
1227 	if (bw == RTW89_CHANNEL_WIDTH_40) {
1228 		rtw89_phy_write32_idx(rtwdev, R_RX_BW40_2XFFT_EN_V1,
1229 				      B_RX_BW40_2XFFT_EN_MSK_V1, 0x1, phy_idx);
1230 		rtw89_phy_write32_idx(rtwdev, R_T2F_GI_COMB, B_T2F_GI_COMB_EN, 1, phy_idx);
1231 	} else {
1232 		rtw89_phy_write32_idx(rtwdev, R_RX_BW40_2XFFT_EN_V1,
1233 				      B_RX_BW40_2XFFT_EN_MSK_V1, 0x0, phy_idx);
1234 		rtw89_phy_write32_idx(rtwdev, R_T2F_GI_COMB, B_T2F_GI_COMB_EN, 0, phy_idx);
1235 	}
1236 
1237 	if (phy_idx == RTW89_PHY_0) {
1238 		rtw8852c_bw_setting(rtwdev, bw, RF_PATH_A);
1239 		if (!rtwdev->dbcc_en)
1240 			rtw8852c_bw_setting(rtwdev, bw, RF_PATH_B);
1241 	} else {
1242 		rtw8852c_bw_setting(rtwdev, bw, RF_PATH_B);
1243 	}
1244 
1245 	rtw8852c_edcca_per20_bitmap_sifs(rtwdev, bw, phy_idx);
1246 }
1247 
1248 static u32 rtw8852c_spur_freq(struct rtw89_dev *rtwdev,
1249 			      const struct rtw89_chan *chan)
1250 {
1251 	u8 center_chan = chan->channel;
1252 	u8 bw = chan->band_width;
1253 
1254 	switch (chan->band_type) {
1255 	case RTW89_BAND_2G:
1256 		if (bw == RTW89_CHANNEL_WIDTH_20) {
1257 			if (center_chan >= 5 && center_chan <= 8)
1258 				return 2440;
1259 			if (center_chan == 13)
1260 				return 2480;
1261 		} else if (bw == RTW89_CHANNEL_WIDTH_40) {
1262 			if (center_chan >= 3 && center_chan <= 10)
1263 				return 2440;
1264 		}
1265 		break;
1266 	case RTW89_BAND_5G:
1267 		if (center_chan == 151 || center_chan == 153 ||
1268 		    center_chan == 155 || center_chan == 163)
1269 			return 5760;
1270 		break;
1271 	case RTW89_BAND_6G:
1272 		if (center_chan == 195 || center_chan == 197 ||
1273 		    center_chan == 199 || center_chan == 207)
1274 			return 6920;
1275 		break;
1276 	default:
1277 		break;
1278 	}
1279 
1280 	return 0;
1281 }
1282 
1283 #define CARRIER_SPACING_312_5 312500 /* 312.5 kHz */
1284 #define CARRIER_SPACING_78_125 78125 /* 78.125 kHz */
1285 #define MAX_TONE_NUM 2048
1286 
1287 static void rtw8852c_set_csi_tone_idx(struct rtw89_dev *rtwdev,
1288 				      const struct rtw89_chan *chan,
1289 				      enum rtw89_phy_idx phy_idx)
1290 {
1291 	u32 spur_freq;
1292 	s32 freq_diff, csi_idx, csi_tone_idx;
1293 
1294 	spur_freq = rtw8852c_spur_freq(rtwdev, chan);
1295 	if (spur_freq == 0) {
1296 		rtw89_phy_write32_idx(rtwdev, R_SEG0CSI_EN, B_SEG0CSI_EN, 0, phy_idx);
1297 		return;
1298 	}
1299 
1300 	freq_diff = (spur_freq - chan->freq) * 1000000;
1301 	csi_idx = s32_div_u32_round_closest(freq_diff, CARRIER_SPACING_78_125);
1302 	s32_div_u32_round_down(csi_idx, MAX_TONE_NUM, &csi_tone_idx);
1303 
1304 	rtw89_phy_write32_idx(rtwdev, R_SEG0CSI, B_SEG0CSI_IDX, csi_tone_idx, phy_idx);
1305 	rtw89_phy_write32_idx(rtwdev, R_SEG0CSI_EN, B_SEG0CSI_EN, 1, phy_idx);
1306 }
1307 
1308 static const struct rtw89_nbi_reg_def rtw8852c_nbi_reg_def[] = {
1309 	[RF_PATH_A] = {
1310 		.notch1_idx = {0x4C14, 0xFF},
1311 		.notch1_frac_idx = {0x4C14, 0xC00},
1312 		.notch1_en = {0x4C14, 0x1000},
1313 		.notch2_idx = {0x4C20, 0xFF},
1314 		.notch2_frac_idx = {0x4C20, 0xC00},
1315 		.notch2_en = {0x4C20, 0x1000},
1316 	},
1317 	[RF_PATH_B] = {
1318 		.notch1_idx = {0x4CD8, 0xFF},
1319 		.notch1_frac_idx = {0x4CD8, 0xC00},
1320 		.notch1_en = {0x4CD8, 0x1000},
1321 		.notch2_idx = {0x4CE4, 0xFF},
1322 		.notch2_frac_idx = {0x4CE4, 0xC00},
1323 		.notch2_en = {0x4CE4, 0x1000},
1324 	},
1325 };
1326 
1327 static void rtw8852c_set_nbi_tone_idx(struct rtw89_dev *rtwdev,
1328 				      const struct rtw89_chan *chan,
1329 				      enum rtw89_rf_path path)
1330 {
1331 	const struct rtw89_nbi_reg_def *nbi = &rtw8852c_nbi_reg_def[path];
1332 	u32 spur_freq, fc;
1333 	s32 freq_diff;
1334 	s32 nbi_idx, nbi_tone_idx;
1335 	s32 nbi_frac_idx, nbi_frac_tone_idx;
1336 	bool notch2_chk = false;
1337 
1338 	spur_freq = rtw8852c_spur_freq(rtwdev, chan);
1339 	if (spur_freq == 0) {
1340 		rtw89_phy_write32_mask(rtwdev, nbi->notch1_en.addr, nbi->notch1_en.mask, 0);
1341 		rtw89_phy_write32_mask(rtwdev, nbi->notch1_en.addr, nbi->notch1_en.mask, 0);
1342 		return;
1343 	}
1344 
1345 	fc = chan->freq;
1346 	if (chan->band_width == RTW89_CHANNEL_WIDTH_160) {
1347 		fc = (spur_freq > fc) ? fc + 40 : fc - 40;
1348 		if ((fc > spur_freq &&
1349 		     chan->channel < chan->primary_channel) ||
1350 		    (fc < spur_freq &&
1351 		     chan->channel > chan->primary_channel))
1352 			notch2_chk = true;
1353 	}
1354 
1355 	freq_diff = (spur_freq - fc) * 1000000;
1356 	nbi_idx = s32_div_u32_round_down(freq_diff, CARRIER_SPACING_312_5, &nbi_frac_idx);
1357 
1358 	if (chan->band_width == RTW89_CHANNEL_WIDTH_20) {
1359 		s32_div_u32_round_down(nbi_idx + 32, 64, &nbi_tone_idx);
1360 	} else {
1361 		u16 tone_para = (chan->band_width == RTW89_CHANNEL_WIDTH_40) ?
1362 				128 : 256;
1363 
1364 		s32_div_u32_round_down(nbi_idx, tone_para, &nbi_tone_idx);
1365 	}
1366 	nbi_frac_tone_idx = s32_div_u32_round_closest(nbi_frac_idx, CARRIER_SPACING_78_125);
1367 
1368 	if (chan->band_width == RTW89_CHANNEL_WIDTH_160 && notch2_chk) {
1369 		rtw89_phy_write32_mask(rtwdev, nbi->notch2_idx.addr,
1370 				       nbi->notch2_idx.mask, nbi_tone_idx);
1371 		rtw89_phy_write32_mask(rtwdev, nbi->notch2_frac_idx.addr,
1372 				       nbi->notch2_frac_idx.mask, nbi_frac_tone_idx);
1373 		rtw89_phy_write32_mask(rtwdev, nbi->notch2_en.addr, nbi->notch2_en.mask, 0);
1374 		rtw89_phy_write32_mask(rtwdev, nbi->notch2_en.addr, nbi->notch2_en.mask, 1);
1375 		rtw89_phy_write32_mask(rtwdev, nbi->notch1_en.addr, nbi->notch1_en.mask, 0);
1376 	} else {
1377 		rtw89_phy_write32_mask(rtwdev, nbi->notch1_idx.addr,
1378 				       nbi->notch1_idx.mask, nbi_tone_idx);
1379 		rtw89_phy_write32_mask(rtwdev, nbi->notch1_frac_idx.addr,
1380 				       nbi->notch1_frac_idx.mask, nbi_frac_tone_idx);
1381 		rtw89_phy_write32_mask(rtwdev, nbi->notch1_en.addr, nbi->notch1_en.mask, 0);
1382 		rtw89_phy_write32_mask(rtwdev, nbi->notch1_en.addr, nbi->notch1_en.mask, 1);
1383 		rtw89_phy_write32_mask(rtwdev, nbi->notch2_en.addr, nbi->notch2_en.mask, 0);
1384 	}
1385 }
1386 
1387 static void rtw8852c_spur_notch(struct rtw89_dev *rtwdev, u32 val,
1388 				enum rtw89_phy_idx phy_idx)
1389 {
1390 	u32 notch;
1391 	u32 notch2;
1392 
1393 	if (phy_idx == RTW89_PHY_0) {
1394 		notch = R_PATH0_NOTCH;
1395 		notch2 = R_PATH0_NOTCH2;
1396 	} else {
1397 		notch = R_PATH1_NOTCH;
1398 		notch2 = R_PATH1_NOTCH2;
1399 	}
1400 
1401 	rtw89_phy_write32_mask(rtwdev, notch,
1402 			       B_PATH0_NOTCH_VAL | B_PATH0_NOTCH_EN, val);
1403 	rtw89_phy_write32_set(rtwdev, notch, B_PATH0_NOTCH_EN);
1404 	rtw89_phy_write32_mask(rtwdev, notch2,
1405 			       B_PATH0_NOTCH2_VAL | B_PATH0_NOTCH2_EN, val);
1406 	rtw89_phy_write32_set(rtwdev, notch2, B_PATH0_NOTCH2_EN);
1407 }
1408 
1409 static void rtw8852c_spur_elimination(struct rtw89_dev *rtwdev,
1410 				      const struct rtw89_chan *chan,
1411 				      u8 pri_ch_idx,
1412 				      enum rtw89_phy_idx phy_idx)
1413 {
1414 	rtw8852c_set_csi_tone_idx(rtwdev, chan, phy_idx);
1415 
1416 	if (phy_idx == RTW89_PHY_0) {
1417 		if (chan->band_width == RTW89_CHANNEL_WIDTH_160 &&
1418 		    (pri_ch_idx == RTW89_SC_20_LOWER ||
1419 		     pri_ch_idx == RTW89_SC_20_UP3X)) {
1420 			rtw8852c_spur_notch(rtwdev, 0xe7f, RTW89_PHY_0);
1421 			if (!rtwdev->dbcc_en)
1422 				rtw8852c_spur_notch(rtwdev, 0xe7f, RTW89_PHY_1);
1423 		} else if (chan->band_width == RTW89_CHANNEL_WIDTH_160 &&
1424 			   (pri_ch_idx == RTW89_SC_20_UPPER ||
1425 			    pri_ch_idx == RTW89_SC_20_LOW3X)) {
1426 			rtw8852c_spur_notch(rtwdev, 0x280, RTW89_PHY_0);
1427 			if (!rtwdev->dbcc_en)
1428 				rtw8852c_spur_notch(rtwdev, 0x280, RTW89_PHY_1);
1429 		} else {
1430 			rtw8852c_set_nbi_tone_idx(rtwdev, chan, RF_PATH_A);
1431 			if (!rtwdev->dbcc_en)
1432 				rtw8852c_set_nbi_tone_idx(rtwdev, chan,
1433 							  RF_PATH_B);
1434 		}
1435 	} else {
1436 		if (chan->band_width == RTW89_CHANNEL_WIDTH_160 &&
1437 		    (pri_ch_idx == RTW89_SC_20_LOWER ||
1438 		     pri_ch_idx == RTW89_SC_20_UP3X)) {
1439 			rtw8852c_spur_notch(rtwdev, 0xe7f, RTW89_PHY_1);
1440 		} else if (chan->band_width == RTW89_CHANNEL_WIDTH_160 &&
1441 			   (pri_ch_idx == RTW89_SC_20_UPPER ||
1442 			    pri_ch_idx == RTW89_SC_20_LOW3X)) {
1443 			rtw8852c_spur_notch(rtwdev, 0x280, RTW89_PHY_1);
1444 		} else {
1445 			rtw8852c_set_nbi_tone_idx(rtwdev, chan, RF_PATH_B);
1446 		}
1447 	}
1448 
1449 	if (pri_ch_idx == RTW89_SC_20_UP3X || pri_ch_idx == RTW89_SC_20_LOW3X)
1450 		rtw89_phy_write32_idx(rtwdev, R_PD_BOOST_EN, B_PD_BOOST_EN, 0, phy_idx);
1451 	else
1452 		rtw89_phy_write32_idx(rtwdev, R_PD_BOOST_EN, B_PD_BOOST_EN, 1, phy_idx);
1453 }
1454 
1455 static void rtw8852c_5m_mask(struct rtw89_dev *rtwdev,
1456 			     const struct rtw89_chan *chan,
1457 			     enum rtw89_phy_idx phy_idx)
1458 {
1459 	u8 pri_ch = chan->primary_channel;
1460 	bool mask_5m_low;
1461 	bool mask_5m_en;
1462 
1463 	switch (chan->band_width) {
1464 	case RTW89_CHANNEL_WIDTH_40:
1465 		mask_5m_en = true;
1466 		mask_5m_low = pri_ch == 2;
1467 		break;
1468 	case RTW89_CHANNEL_WIDTH_80:
1469 		mask_5m_en = ((pri_ch == 3) || (pri_ch == 4));
1470 		mask_5m_low = pri_ch == 4;
1471 		break;
1472 	default:
1473 		mask_5m_en = false;
1474 		mask_5m_low = false;
1475 		break;
1476 	}
1477 
1478 	if (!mask_5m_en) {
1479 		rtw89_phy_write32_mask(rtwdev, R_PATH0_5MDET, B_PATH0_5MDET_EN, 0x0);
1480 		rtw89_phy_write32_mask(rtwdev, R_PATH1_5MDET, B_PATH1_5MDET_EN, 0x0);
1481 		rtw89_phy_write32_idx(rtwdev, R_ASSIGN_SBD_OPT,
1482 				      B_ASSIGN_SBD_OPT_EN, 0x0, phy_idx);
1483 	} else {
1484 		if (mask_5m_low) {
1485 			rtw89_phy_write32_mask(rtwdev, R_PATH0_5MDET, B_PATH0_5MDET_TH, 0x4);
1486 			rtw89_phy_write32_mask(rtwdev, R_PATH0_5MDET, B_PATH0_5MDET_EN, 0x1);
1487 			rtw89_phy_write32_mask(rtwdev, R_PATH0_5MDET, B_PATH0_5MDET_SB2, 0x0);
1488 			rtw89_phy_write32_mask(rtwdev, R_PATH0_5MDET, B_PATH0_5MDET_SB0, 0x1);
1489 			rtw89_phy_write32_mask(rtwdev, R_PATH1_5MDET, B_PATH1_5MDET_TH, 0x4);
1490 			rtw89_phy_write32_mask(rtwdev, R_PATH1_5MDET, B_PATH1_5MDET_EN, 0x1);
1491 			rtw89_phy_write32_mask(rtwdev, R_PATH1_5MDET, B_PATH1_5MDET_SB2, 0x0);
1492 			rtw89_phy_write32_mask(rtwdev, R_PATH1_5MDET, B_PATH1_5MDET_SB0, 0x1);
1493 		} else {
1494 			rtw89_phy_write32_mask(rtwdev, R_PATH0_5MDET, B_PATH0_5MDET_TH, 0x4);
1495 			rtw89_phy_write32_mask(rtwdev, R_PATH0_5MDET, B_PATH0_5MDET_EN, 0x1);
1496 			rtw89_phy_write32_mask(rtwdev, R_PATH0_5MDET, B_PATH0_5MDET_SB2, 0x1);
1497 			rtw89_phy_write32_mask(rtwdev, R_PATH0_5MDET, B_PATH0_5MDET_SB0, 0x0);
1498 			rtw89_phy_write32_mask(rtwdev, R_PATH1_5MDET, B_PATH1_5MDET_TH, 0x4);
1499 			rtw89_phy_write32_mask(rtwdev, R_PATH1_5MDET, B_PATH1_5MDET_EN, 0x1);
1500 			rtw89_phy_write32_mask(rtwdev, R_PATH1_5MDET, B_PATH1_5MDET_SB2, 0x1);
1501 			rtw89_phy_write32_mask(rtwdev, R_PATH1_5MDET, B_PATH1_5MDET_SB0, 0x0);
1502 		}
1503 		rtw89_phy_write32_idx(rtwdev, R_ASSIGN_SBD_OPT, B_ASSIGN_SBD_OPT_EN, 0x1, phy_idx);
1504 	}
1505 }
1506 
1507 static void rtw8852c_bb_reset_all(struct rtw89_dev *rtwdev,
1508 				  enum rtw89_phy_idx phy_idx)
1509 {
1510 	/*HW SI reset*/
1511 	rtw89_phy_write32_mask(rtwdev, R_S0_HW_SI_DIS, B_S0_HW_SI_DIS_W_R_TRIG,
1512 			       0x7);
1513 	rtw89_phy_write32_mask(rtwdev, R_S1_HW_SI_DIS, B_S1_HW_SI_DIS_W_R_TRIG,
1514 			       0x7);
1515 
1516 	udelay(1);
1517 
1518 	rtw89_phy_write32_idx(rtwdev, R_RSTB_ASYNC, B_RSTB_ASYNC_ALL, 1,
1519 			      phy_idx);
1520 	rtw89_phy_write32_idx(rtwdev, R_RSTB_ASYNC, B_RSTB_ASYNC_ALL, 0,
1521 			      phy_idx);
1522 	/*HW SI reset*/
1523 	rtw89_phy_write32_mask(rtwdev, R_S0_HW_SI_DIS, B_S0_HW_SI_DIS_W_R_TRIG,
1524 			       0x0);
1525 	rtw89_phy_write32_mask(rtwdev, R_S1_HW_SI_DIS, B_S1_HW_SI_DIS_W_R_TRIG,
1526 			       0x0);
1527 
1528 	rtw89_phy_write32_idx(rtwdev, R_RSTB_ASYNC, B_RSTB_ASYNC_ALL, 1,
1529 			      phy_idx);
1530 }
1531 
1532 static void rtw8852c_bb_reset_en(struct rtw89_dev *rtwdev, enum rtw89_band band,
1533 				 enum rtw89_phy_idx phy_idx, bool en)
1534 {
1535 	if (en) {
1536 		rtw89_phy_write32_idx(rtwdev, R_S0_HW_SI_DIS,
1537 				      B_S0_HW_SI_DIS_W_R_TRIG, 0x0, phy_idx);
1538 		rtw89_phy_write32_idx(rtwdev, R_S1_HW_SI_DIS,
1539 				      B_S1_HW_SI_DIS_W_R_TRIG, 0x0, phy_idx);
1540 		rtw89_phy_write32_idx(rtwdev, R_RSTB_ASYNC, B_RSTB_ASYNC_ALL, 1,
1541 				      phy_idx);
1542 		if (band == RTW89_BAND_2G)
1543 			rtw89_phy_write32_mask(rtwdev, R_RXCCA_V1, B_RXCCA_DIS_V1, 0x0);
1544 		rtw89_phy_write32_mask(rtwdev, R_PD_CTRL, B_PD_HIT_DIS, 0x0);
1545 	} else {
1546 		rtw89_phy_write32_mask(rtwdev, R_RXCCA_V1, B_RXCCA_DIS_V1, 0x1);
1547 		rtw89_phy_write32_mask(rtwdev, R_PD_CTRL, B_PD_HIT_DIS, 0x1);
1548 		rtw89_phy_write32_idx(rtwdev, R_S0_HW_SI_DIS,
1549 				      B_S0_HW_SI_DIS_W_R_TRIG, 0x7, phy_idx);
1550 		rtw89_phy_write32_idx(rtwdev, R_S1_HW_SI_DIS,
1551 				      B_S1_HW_SI_DIS_W_R_TRIG, 0x7, phy_idx);
1552 		fsleep(1);
1553 		rtw89_phy_write32_idx(rtwdev, R_RSTB_ASYNC, B_RSTB_ASYNC_ALL, 0,
1554 				      phy_idx);
1555 	}
1556 }
1557 
1558 static void rtw8852c_bb_reset(struct rtw89_dev *rtwdev,
1559 			      enum rtw89_phy_idx phy_idx)
1560 {
1561 	rtw8852c_bb_reset_all(rtwdev, phy_idx);
1562 }
1563 
1564 static
1565 void rtw8852c_bb_gpio_trsw(struct rtw89_dev *rtwdev, enum rtw89_rf_path path,
1566 			   u8 tx_path_en, u8 trsw_tx,
1567 			   u8 trsw_rx, u8 trsw, u8 trsw_b)
1568 {
1569 	static const u32 path_cr_bases[] = {0x5868, 0x7868};
1570 	u32 mask_ofst = 16;
1571 	u32 cr;
1572 	u32 val;
1573 
1574 	if (path >= ARRAY_SIZE(path_cr_bases))
1575 		return;
1576 
1577 	cr = path_cr_bases[path];
1578 
1579 	mask_ofst += (tx_path_en * 4 + trsw_tx * 2 + trsw_rx) * 2;
1580 	val = FIELD_PREP(B_P0_TRSW_A, trsw) | FIELD_PREP(B_P0_TRSW_B, trsw_b);
1581 
1582 	rtw89_phy_write32_mask(rtwdev, cr, (B_P0_TRSW_A | B_P0_TRSW_B) << mask_ofst, val);
1583 }
1584 
1585 enum rtw8852c_rfe_src {
1586 	PAPE_RFM,
1587 	TRSW_RFM,
1588 	LNAON_RFM,
1589 };
1590 
1591 static
1592 void rtw8852c_bb_gpio_rfm(struct rtw89_dev *rtwdev, enum rtw89_rf_path path,
1593 			  enum rtw8852c_rfe_src src, u8 dis_tx_gnt_wl,
1594 			  u8 active_tx_opt, u8 act_bt_en, u8 rfm_output_val)
1595 {
1596 	static const u32 path_cr_bases[] = {0x5894, 0x7894};
1597 	static const u32 masks[] = {0, 8, 16};
1598 	u32 mask, mask_ofst;
1599 	u32 cr;
1600 	u32 val;
1601 
1602 	if (src >= ARRAY_SIZE(masks) || path >= ARRAY_SIZE(path_cr_bases))
1603 		return;
1604 
1605 	mask_ofst = masks[src];
1606 	cr = path_cr_bases[path];
1607 
1608 	val = FIELD_PREP(B_P0_RFM_DIS_WL, dis_tx_gnt_wl) |
1609 	      FIELD_PREP(B_P0_RFM_TX_OPT, active_tx_opt) |
1610 	      FIELD_PREP(B_P0_RFM_BT_EN, act_bt_en) |
1611 	      FIELD_PREP(B_P0_RFM_OUT, rfm_output_val);
1612 	mask = 0xff << mask_ofst;
1613 
1614 	rtw89_phy_write32_mask(rtwdev, cr, mask, val);
1615 }
1616 
1617 static void rtw8852c_bb_gpio_init(struct rtw89_dev *rtwdev)
1618 {
1619 	static const u32 cr_bases[] = {0x5800, 0x7800};
1620 	u32 addr;
1621 	u8 i;
1622 
1623 	for (i = 0; i < ARRAY_SIZE(cr_bases); i++) {
1624 		addr = cr_bases[i];
1625 		rtw89_phy_write32_set(rtwdev, (addr | 0x68), B_P0_TRSW_A);
1626 		rtw89_phy_write32_clr(rtwdev, (addr | 0x68), B_P0_TRSW_X);
1627 		rtw89_phy_write32_clr(rtwdev, (addr | 0x68), B_P0_TRSW_SO_A2);
1628 		rtw89_phy_write32(rtwdev, (addr | 0x80), 0x77777777);
1629 		rtw89_phy_write32(rtwdev, (addr | 0x84), 0x77777777);
1630 	}
1631 
1632 	rtw89_phy_write32(rtwdev, R_RFE_E_A2, 0xffffffff);
1633 	rtw89_phy_write32(rtwdev, R_RFE_O_SEL_A2, 0);
1634 	rtw89_phy_write32(rtwdev, R_RFE_SEL0_A2, 0);
1635 	rtw89_phy_write32(rtwdev, R_RFE_SEL32_A2, 0);
1636 
1637 	rtw8852c_bb_gpio_trsw(rtwdev, RF_PATH_A, 0, 0, 0, 0, 1);
1638 	rtw8852c_bb_gpio_trsw(rtwdev, RF_PATH_A, 0, 0, 1, 1, 0);
1639 	rtw8852c_bb_gpio_trsw(rtwdev, RF_PATH_A, 0, 1, 0, 1, 0);
1640 	rtw8852c_bb_gpio_trsw(rtwdev, RF_PATH_A, 0, 1, 1, 1, 0);
1641 	rtw8852c_bb_gpio_trsw(rtwdev, RF_PATH_A, 1, 0, 0, 0, 1);
1642 	rtw8852c_bb_gpio_trsw(rtwdev, RF_PATH_A, 1, 0, 1, 1, 0);
1643 	rtw8852c_bb_gpio_trsw(rtwdev, RF_PATH_A, 1, 1, 0, 1, 0);
1644 	rtw8852c_bb_gpio_trsw(rtwdev, RF_PATH_A, 1, 1, 1, 1, 0);
1645 
1646 	rtw8852c_bb_gpio_trsw(rtwdev, RF_PATH_B, 0, 0, 0, 0, 1);
1647 	rtw8852c_bb_gpio_trsw(rtwdev, RF_PATH_B, 0, 0, 1, 1, 0);
1648 	rtw8852c_bb_gpio_trsw(rtwdev, RF_PATH_B, 0, 1, 0, 1, 0);
1649 	rtw8852c_bb_gpio_trsw(rtwdev, RF_PATH_B, 0, 1, 1, 1, 0);
1650 	rtw8852c_bb_gpio_trsw(rtwdev, RF_PATH_B, 1, 0, 0, 0, 1);
1651 	rtw8852c_bb_gpio_trsw(rtwdev, RF_PATH_B, 1, 0, 1, 1, 0);
1652 	rtw8852c_bb_gpio_trsw(rtwdev, RF_PATH_B, 1, 1, 0, 1, 0);
1653 	rtw8852c_bb_gpio_trsw(rtwdev, RF_PATH_B, 1, 1, 1, 1, 0);
1654 
1655 	rtw8852c_bb_gpio_rfm(rtwdev, RF_PATH_A, PAPE_RFM, 0, 0, 0, 0x0);
1656 	rtw8852c_bb_gpio_rfm(rtwdev, RF_PATH_A, TRSW_RFM, 0, 0, 0, 0x4);
1657 	rtw8852c_bb_gpio_rfm(rtwdev, RF_PATH_A, LNAON_RFM, 0, 0, 0, 0x8);
1658 
1659 	rtw8852c_bb_gpio_rfm(rtwdev, RF_PATH_B, PAPE_RFM, 0, 0, 0, 0x0);
1660 	rtw8852c_bb_gpio_rfm(rtwdev, RF_PATH_B, TRSW_RFM, 0, 0, 0, 0x4);
1661 	rtw8852c_bb_gpio_rfm(rtwdev, RF_PATH_B, LNAON_RFM, 0, 0, 0, 0x8);
1662 }
1663 
1664 static void rtw8852c_bb_macid_ctrl_init(struct rtw89_dev *rtwdev,
1665 					enum rtw89_phy_idx phy_idx)
1666 {
1667 	u32 addr;
1668 
1669 	for (addr = R_AX_PWR_MACID_LMT_TABLE0;
1670 	     addr <= R_AX_PWR_MACID_LMT_TABLE127; addr += 4)
1671 		rtw89_mac_txpwr_write32(rtwdev, phy_idx, addr, 0);
1672 }
1673 
1674 static void rtw8852c_bb_sethw(struct rtw89_dev *rtwdev)
1675 {
1676 	struct rtw89_phy_efuse_gain *gain = &rtwdev->efuse_gain;
1677 
1678 	rtw89_phy_write32_set(rtwdev, R_DBCC_80P80_SEL_EVM_RPT,
1679 			      B_DBCC_80P80_SEL_EVM_RPT_EN);
1680 	rtw89_phy_write32_set(rtwdev, R_DBCC_80P80_SEL_EVM_RPT2,
1681 			      B_DBCC_80P80_SEL_EVM_RPT2_EN);
1682 
1683 	rtw8852c_bb_macid_ctrl_init(rtwdev, RTW89_PHY_0);
1684 	rtw8852c_bb_gpio_init(rtwdev);
1685 
1686 	/* read these registers after loading BB parameters */
1687 	gain->offset_base[RTW89_PHY_0] =
1688 		rtw89_phy_read32_mask(rtwdev, R_RPL_BIAS_COMP, B_RPL_BIAS_COMP_MASK);
1689 	gain->offset_base[RTW89_PHY_1] =
1690 		rtw89_phy_read32_mask(rtwdev, R_RPL_BIAS_COMP1, B_RPL_BIAS_COMP1_MASK);
1691 }
1692 
1693 static void rtw8852c_set_channel_bb(struct rtw89_dev *rtwdev,
1694 				    const struct rtw89_chan *chan,
1695 				    enum rtw89_phy_idx phy_idx)
1696 {
1697 	bool cck_en = chan->band_type == RTW89_BAND_2G;
1698 	u8 pri_ch_idx = chan->pri_ch_idx;
1699 	u32 mask, reg;
1700 	u32 ru_alloc_msk[2] = {B_P80_AT_HIGH_FREQ_RU_ALLOC_PHY0,
1701 			       B_P80_AT_HIGH_FREQ_RU_ALLOC_PHY1};
1702 
1703 	if (chan->band_type == RTW89_BAND_2G)
1704 		rtw8852c_ctrl_sco_cck(rtwdev, chan->channel,
1705 				      chan->primary_channel,
1706 				      chan->band_width);
1707 
1708 	rtw8852c_ctrl_ch(rtwdev, chan, phy_idx);
1709 	rtw8852c_ctrl_bw(rtwdev, pri_ch_idx, chan->band_width, phy_idx);
1710 	if (cck_en) {
1711 		rtw89_phy_write32_mask(rtwdev, R_UPD_CLK_ADC, B_ENABLE_CCK, 1);
1712 		rtw89_phy_write32_mask(rtwdev, R_RXCCA_V1, B_RXCCA_DIS_V1, 0);
1713 		rtw89_phy_write32_idx(rtwdev, R_PD_ARBITER_OFF,
1714 				      B_PD_ARBITER_OFF, 0x0, phy_idx);
1715 	} else {
1716 		rtw89_phy_write32_mask(rtwdev, R_UPD_CLK_ADC, B_ENABLE_CCK, 0);
1717 		rtw89_phy_write32_mask(rtwdev, R_RXCCA_V1, B_RXCCA_DIS_V1, 1);
1718 		rtw89_phy_write32_idx(rtwdev, R_PD_ARBITER_OFF,
1719 				      B_PD_ARBITER_OFF, 0x1, phy_idx);
1720 	}
1721 
1722 	rtw8852c_spur_elimination(rtwdev, chan, pri_ch_idx, phy_idx);
1723 	rtw8852c_ctrl_btg(rtwdev, chan->band_type == RTW89_BAND_2G);
1724 	rtw8852c_5m_mask(rtwdev, chan, phy_idx);
1725 
1726 	if (chan->band_width == RTW89_CHANNEL_WIDTH_160 &&
1727 	    rtwdev->hal.cv != CHIP_CAV) {
1728 		rtw89_phy_write32_idx(rtwdev, R_P80_AT_HIGH_FREQ,
1729 				      B_P80_AT_HIGH_FREQ, 0x0, phy_idx);
1730 		reg = rtw89_mac_reg_by_idx(R_P80_AT_HIGH_FREQ_BB_WRP,
1731 					   phy_idx);
1732 		if (chan->primary_channel > chan->channel) {
1733 			rtw89_phy_write32_mask(rtwdev,
1734 					       R_P80_AT_HIGH_FREQ_RU_ALLOC,
1735 					       ru_alloc_msk[phy_idx], 1);
1736 			rtw89_write32_mask(rtwdev, reg,
1737 					   B_P80_AT_HIGH_FREQ_BB_WRP, 1);
1738 		} else {
1739 			rtw89_phy_write32_mask(rtwdev,
1740 					       R_P80_AT_HIGH_FREQ_RU_ALLOC,
1741 					       ru_alloc_msk[phy_idx], 0);
1742 			rtw89_write32_mask(rtwdev, reg,
1743 					   B_P80_AT_HIGH_FREQ_BB_WRP, 0);
1744 		}
1745 	}
1746 
1747 	if (chan->band_type == RTW89_BAND_6G &&
1748 	    chan->band_width == RTW89_CHANNEL_WIDTH_160)
1749 		rtw89_phy_write32_idx(rtwdev, R_CDD_EVM_CHK_EN,
1750 				      B_CDD_EVM_CHK_EN, 0, phy_idx);
1751 	else
1752 		rtw89_phy_write32_idx(rtwdev, R_CDD_EVM_CHK_EN,
1753 				      B_CDD_EVM_CHK_EN, 1, phy_idx);
1754 
1755 	if (!rtwdev->dbcc_en) {
1756 		mask = B_P0_TXPW_RSTB_TSSI | B_P0_TXPW_RSTB_MANON;
1757 		rtw89_phy_write32_mask(rtwdev, R_P0_TXPW_RSTB, mask, 0x1);
1758 		rtw89_phy_write32_mask(rtwdev, R_P0_TXPW_RSTB, mask, 0x3);
1759 		mask = B_P1_TXPW_RSTB_TSSI | B_P1_TXPW_RSTB_MANON;
1760 		rtw89_phy_write32_mask(rtwdev, R_P1_TXPW_RSTB, mask, 0x1);
1761 		rtw89_phy_write32_mask(rtwdev, R_P1_TXPW_RSTB, mask, 0x3);
1762 	} else {
1763 		if (phy_idx == RTW89_PHY_0) {
1764 			mask = B_P0_TXPW_RSTB_TSSI | B_P0_TXPW_RSTB_MANON;
1765 			rtw89_phy_write32_mask(rtwdev, R_P0_TXPW_RSTB, mask, 0x1);
1766 			rtw89_phy_write32_mask(rtwdev, R_P0_TXPW_RSTB, mask, 0x3);
1767 		} else {
1768 			mask = B_P1_TXPW_RSTB_TSSI | B_P1_TXPW_RSTB_MANON;
1769 			rtw89_phy_write32_mask(rtwdev, R_P1_TXPW_RSTB, mask, 0x1);
1770 			rtw89_phy_write32_mask(rtwdev, R_P1_TXPW_RSTB, mask, 0x3);
1771 		}
1772 	}
1773 
1774 	rtw8852c_bb_reset_all(rtwdev, phy_idx);
1775 }
1776 
1777 static void rtw8852c_set_channel(struct rtw89_dev *rtwdev,
1778 				 const struct rtw89_chan *chan,
1779 				 enum rtw89_mac_idx mac_idx,
1780 				 enum rtw89_phy_idx phy_idx)
1781 {
1782 	rtw8852c_set_channel_mac(rtwdev, chan, mac_idx);
1783 	rtw8852c_set_channel_bb(rtwdev, chan, phy_idx);
1784 	rtw8852c_set_channel_rf(rtwdev, chan, phy_idx);
1785 }
1786 
1787 static void rtw8852c_dfs_en(struct rtw89_dev *rtwdev, bool en)
1788 {
1789 	if (en)
1790 		rtw89_phy_write32_mask(rtwdev, R_UPD_P0, B_UPD_P0_EN, 1);
1791 	else
1792 		rtw89_phy_write32_mask(rtwdev, R_UPD_P0, B_UPD_P0_EN, 0);
1793 }
1794 
1795 static void rtw8852c_adc_en(struct rtw89_dev *rtwdev, bool en)
1796 {
1797 	if (en)
1798 		rtw89_phy_write32_mask(rtwdev, R_ADC_FIFO, B_ADC_FIFO_RST,
1799 				       0x0);
1800 	else
1801 		rtw89_phy_write32_mask(rtwdev, R_ADC_FIFO, B_ADC_FIFO_RST,
1802 				       0xf);
1803 }
1804 
1805 static void rtw8852c_set_channel_help(struct rtw89_dev *rtwdev, bool enter,
1806 				      struct rtw89_channel_help_params *p,
1807 				      const struct rtw89_chan *chan,
1808 				      enum rtw89_mac_idx mac_idx,
1809 				      enum rtw89_phy_idx phy_idx)
1810 {
1811 	if (enter) {
1812 		rtw89_chip_stop_sch_tx(rtwdev, mac_idx, &p->tx_en,
1813 				       RTW89_SCH_TX_SEL_ALL);
1814 		rtw89_mac_cfg_ppdu_status(rtwdev, mac_idx, false);
1815 		rtw8852c_dfs_en(rtwdev, false);
1816 		rtw8852c_tssi_cont_en_phyidx(rtwdev, false, phy_idx);
1817 		rtw8852c_adc_en(rtwdev, false);
1818 		fsleep(40);
1819 		rtw8852c_bb_reset_en(rtwdev, chan->band_type, phy_idx, false);
1820 	} else {
1821 		rtw89_mac_cfg_ppdu_status(rtwdev, mac_idx, true);
1822 		rtw8852c_adc_en(rtwdev, true);
1823 		rtw8852c_dfs_en(rtwdev, true);
1824 		rtw8852c_tssi_cont_en_phyidx(rtwdev, true, phy_idx);
1825 		rtw8852c_bb_reset_en(rtwdev, chan->band_type, phy_idx, true);
1826 		rtw89_chip_resume_sch_tx(rtwdev, mac_idx, p->tx_en);
1827 	}
1828 }
1829 
1830 static void rtw8852c_rfk_init(struct rtw89_dev *rtwdev)
1831 {
1832 	struct rtw89_mcc_info *mcc_info = &rtwdev->mcc;
1833 
1834 	rtwdev->is_tssi_mode[RF_PATH_A] = false;
1835 	rtwdev->is_tssi_mode[RF_PATH_B] = false;
1836 	memset(mcc_info, 0, sizeof(*mcc_info));
1837 	rtw8852c_lck_init(rtwdev);
1838 
1839 	rtw8852c_rck(rtwdev);
1840 	rtw8852c_dack(rtwdev);
1841 	rtw8852c_rx_dck(rtwdev, RTW89_PHY_0, false);
1842 }
1843 
1844 static void rtw8852c_rfk_channel(struct rtw89_dev *rtwdev)
1845 {
1846 	enum rtw89_phy_idx phy_idx = RTW89_PHY_0;
1847 
1848 	rtw8852c_mcc_get_ch_info(rtwdev, phy_idx);
1849 	rtw8852c_rx_dck(rtwdev, phy_idx, false);
1850 	rtw8852c_iqk(rtwdev, phy_idx);
1851 	rtw8852c_tssi(rtwdev, phy_idx);
1852 	rtw8852c_dpk(rtwdev, phy_idx);
1853 	rtw89_fw_h2c_rf_ntfy_mcc(rtwdev);
1854 }
1855 
1856 static void rtw8852c_rfk_band_changed(struct rtw89_dev *rtwdev,
1857 				      enum rtw89_phy_idx phy_idx)
1858 {
1859 	rtw8852c_tssi_scan(rtwdev, phy_idx);
1860 }
1861 
1862 static void rtw8852c_rfk_scan(struct rtw89_dev *rtwdev, bool start)
1863 {
1864 	rtw8852c_wifi_scan_notify(rtwdev, start, RTW89_PHY_0);
1865 }
1866 
1867 static void rtw8852c_rfk_track(struct rtw89_dev *rtwdev)
1868 {
1869 	rtw8852c_dpk_track(rtwdev);
1870 	rtw8852c_lck_track(rtwdev);
1871 	rtw8852c_rx_dck_track(rtwdev);
1872 }
1873 
1874 static u32 rtw8852c_bb_cal_txpwr_ref(struct rtw89_dev *rtwdev,
1875 				     enum rtw89_phy_idx phy_idx, s16 ref)
1876 {
1877 	s8 ofst_int = 0;
1878 	u8 base_cw_0db = 0x27;
1879 	u16 tssi_16dbm_cw = 0x12c;
1880 	s16 pwr_s10_3 = 0;
1881 	s16 rf_pwr_cw = 0;
1882 	u16 bb_pwr_cw = 0;
1883 	u32 pwr_cw = 0;
1884 	u32 tssi_ofst_cw = 0;
1885 
1886 	pwr_s10_3 = (ref << 1) + (s16)(ofst_int) + (s16)(base_cw_0db << 3);
1887 	bb_pwr_cw = FIELD_GET(GENMASK(2, 0), pwr_s10_3);
1888 	rf_pwr_cw = FIELD_GET(GENMASK(8, 3), pwr_s10_3);
1889 	rf_pwr_cw = clamp_t(s16, rf_pwr_cw, 15, 63);
1890 	pwr_cw = (rf_pwr_cw << 3) | bb_pwr_cw;
1891 
1892 	tssi_ofst_cw = (u32)((s16)tssi_16dbm_cw + (ref << 1) - (16 << 3));
1893 	rtw89_debug(rtwdev, RTW89_DBG_TXPWR,
1894 		    "[TXPWR] tssi_ofst_cw=%d rf_cw=0x%x bb_cw=0x%x\n",
1895 		    tssi_ofst_cw, rf_pwr_cw, bb_pwr_cw);
1896 
1897 	return (tssi_ofst_cw << 18) | (pwr_cw << 9) | (ref & GENMASK(8, 0));
1898 }
1899 
1900 static
1901 void rtw8852c_set_txpwr_ul_tb_offset(struct rtw89_dev *rtwdev,
1902 				     s8 pw_ofst, enum rtw89_mac_idx mac_idx)
1903 {
1904 	s8 pw_ofst_2tx;
1905 	s8 val_1t;
1906 	s8 val_2t;
1907 	u32 reg;
1908 	u8 i;
1909 
1910 	if (pw_ofst < -32 || pw_ofst > 31) {
1911 		rtw89_warn(rtwdev, "[ULTB] Err pwr_offset=%d\n", pw_ofst);
1912 		return;
1913 	}
1914 	val_1t = pw_ofst << 2;
1915 	pw_ofst_2tx = max(pw_ofst - 3, -32);
1916 	val_2t = pw_ofst_2tx << 2;
1917 
1918 	rtw89_debug(rtwdev, RTW89_DBG_TXPWR, "[ULTB] val_1tx=0x%x\n", val_1t);
1919 	rtw89_debug(rtwdev, RTW89_DBG_TXPWR, "[ULTB] val_2tx=0x%x\n", val_2t);
1920 
1921 	for (i = 0; i < 4; i++) {
1922 		/* 1TX */
1923 		reg = rtw89_mac_reg_by_idx(R_AX_PWR_UL_TB_1T, mac_idx);
1924 		rtw89_write32_mask(rtwdev, reg,
1925 				   B_AX_PWR_UL_TB_1T_V1_MASK << (8 * i),
1926 				   val_1t);
1927 		/* 2TX */
1928 		reg = rtw89_mac_reg_by_idx(R_AX_PWR_UL_TB_2T, mac_idx);
1929 		rtw89_write32_mask(rtwdev, reg,
1930 				   B_AX_PWR_UL_TB_2T_V1_MASK << (8 * i),
1931 				   val_2t);
1932 	}
1933 }
1934 
1935 static void rtw8852c_set_txpwr_ref(struct rtw89_dev *rtwdev,
1936 				   enum rtw89_phy_idx phy_idx)
1937 {
1938 	static const u32 addr[RF_PATH_NUM_8852C] = {0x5800, 0x7800};
1939 	const u32 mask = 0x7FFFFFF;
1940 	const u8 ofst_ofdm = 0x4;
1941 	const u8 ofst_cck = 0x8;
1942 	s16 ref_ofdm = 0;
1943 	s16 ref_cck = 0;
1944 	u32 val;
1945 	u8 i;
1946 
1947 	rtw89_debug(rtwdev, RTW89_DBG_TXPWR, "[TXPWR] set txpwr reference\n");
1948 
1949 	rtw89_mac_txpwr_write32_mask(rtwdev, phy_idx, R_AX_PWR_RATE_CTRL,
1950 				     GENMASK(27, 10), 0x0);
1951 
1952 	rtw89_debug(rtwdev, RTW89_DBG_TXPWR, "[TXPWR] set bb ofdm txpwr ref\n");
1953 	val = rtw8852c_bb_cal_txpwr_ref(rtwdev, phy_idx, ref_ofdm);
1954 
1955 	for (i = 0; i < RF_PATH_NUM_8852C; i++)
1956 		rtw89_phy_write32_idx(rtwdev, addr[i] + ofst_ofdm, mask, val,
1957 				      phy_idx);
1958 
1959 	rtw89_debug(rtwdev, RTW89_DBG_TXPWR, "[TXPWR] set bb cck txpwr ref\n");
1960 	val = rtw8852c_bb_cal_txpwr_ref(rtwdev, phy_idx, ref_cck);
1961 
1962 	for (i = 0; i < RF_PATH_NUM_8852C; i++)
1963 		rtw89_phy_write32_idx(rtwdev, addr[i] + ofst_cck, mask, val,
1964 				      phy_idx);
1965 }
1966 
1967 static void rtw8852c_set_txpwr_byrate(struct rtw89_dev *rtwdev,
1968 				      const struct rtw89_chan *chan,
1969 				      enum rtw89_phy_idx phy_idx)
1970 {
1971 	u8 band = chan->band_type;
1972 	u8 ch = chan->channel;
1973 	static const u8 rs[] = {
1974 		RTW89_RS_CCK,
1975 		RTW89_RS_OFDM,
1976 		RTW89_RS_MCS,
1977 		RTW89_RS_HEDCM,
1978 	};
1979 	s8 tmp;
1980 	u8 i, j;
1981 	u32 val, shf, addr = R_AX_PWR_BY_RATE;
1982 	struct rtw89_rate_desc cur;
1983 
1984 	rtw89_debug(rtwdev, RTW89_DBG_TXPWR,
1985 		    "[TXPWR] set txpwr byrate with ch=%d\n", ch);
1986 
1987 	for (cur.nss = 0; cur.nss <= RTW89_NSS_2; cur.nss++) {
1988 		for (i = 0; i < ARRAY_SIZE(rs); i++) {
1989 			if (cur.nss >= rtw89_rs_nss_max[rs[i]])
1990 				continue;
1991 
1992 			val = 0;
1993 			cur.rs = rs[i];
1994 
1995 			for (j = 0; j < rtw89_rs_idx_max[rs[i]]; j++) {
1996 				cur.idx = j;
1997 				shf = (j % 4) * 8;
1998 				tmp = rtw89_phy_read_txpwr_byrate(rtwdev, band,
1999 								  &cur);
2000 				val |= (tmp << shf);
2001 
2002 				if ((j + 1) % 4)
2003 					continue;
2004 
2005 				rtw89_mac_txpwr_write32(rtwdev, phy_idx, addr, val);
2006 				val = 0;
2007 				addr += 4;
2008 			}
2009 		}
2010 	}
2011 }
2012 
2013 static void rtw8852c_set_txpwr_offset(struct rtw89_dev *rtwdev,
2014 				      const struct rtw89_chan *chan,
2015 				      enum rtw89_phy_idx phy_idx)
2016 {
2017 	u8 band = chan->band_type;
2018 	struct rtw89_rate_desc desc = {
2019 		.nss = RTW89_NSS_1,
2020 		.rs = RTW89_RS_OFFSET,
2021 	};
2022 	u32 val = 0;
2023 	s8 v;
2024 
2025 	rtw89_debug(rtwdev, RTW89_DBG_TXPWR, "[TXPWR] set txpwr offset\n");
2026 
2027 	for (desc.idx = 0; desc.idx < RTW89_RATE_OFFSET_MAX; desc.idx++) {
2028 		v = rtw89_phy_read_txpwr_byrate(rtwdev, band, &desc);
2029 		val |= ((v & 0xf) << (4 * desc.idx));
2030 	}
2031 
2032 	rtw89_mac_txpwr_write32_mask(rtwdev, phy_idx, R_AX_PWR_RATE_OFST_CTRL,
2033 				     GENMASK(19, 0), val);
2034 }
2035 
2036 static void rtw8852c_bb_set_tx_shape_dfir(struct rtw89_dev *rtwdev,
2037 					  u8 tx_shape_idx,
2038 					  enum rtw89_phy_idx phy_idx)
2039 {
2040 #define __DFIR_CFG_MASK 0xffffff
2041 #define __DFIR_CFG_NR 8
2042 #define __DECL_DFIR_VAR(_prefix, _name, _val...) \
2043 	static const u32 _prefix ## _ ## _name[] = {_val}; \
2044 	static_assert(ARRAY_SIZE(_prefix ## _ ## _name) == __DFIR_CFG_NR)
2045 #define __DECL_DFIR_PARAM(_name, _val...) __DECL_DFIR_VAR(param, _name, _val)
2046 #define __DECL_DFIR_ADDR(_name, _val...) __DECL_DFIR_VAR(addr, _name, _val)
2047 
2048 	__DECL_DFIR_PARAM(flat,
2049 			  0x003D23FF, 0x0029B354, 0x000FC1C8, 0x00FDB053,
2050 			  0x00F86F9A, 0x00FAEF92, 0x00FE5FCC, 0x00FFDFF5);
2051 	__DECL_DFIR_PARAM(sharp,
2052 			  0x003D83FF, 0x002C636A, 0x0013F204, 0x00008090,
2053 			  0x00F87FB0, 0x00F99F83, 0x00FDBFBA, 0x00003FF5);
2054 	__DECL_DFIR_PARAM(sharp_14,
2055 			  0x003B13FF, 0x001C42DE, 0x00FDB0AD, 0x00F60F6E,
2056 			  0x00FD8F92, 0x0002D011, 0x0001C02C, 0x00FFF00A);
2057 	__DECL_DFIR_ADDR(filter,
2058 			 0x45BC, 0x45CC, 0x45D0, 0x45D4, 0x45D8, 0x45C0,
2059 			 0x45C4, 0x45C8);
2060 	const struct rtw89_chan *chan = rtw89_chan_get(rtwdev, RTW89_SUB_ENTITY_0);
2061 	u8 ch = chan->channel;
2062 	const u32 *param;
2063 	int i;
2064 
2065 	if (ch > 14) {
2066 		rtw89_warn(rtwdev,
2067 			   "set tx shape dfir by unknown ch: %d on 2G\n", ch);
2068 		return;
2069 	}
2070 
2071 	if (ch == 14)
2072 		param = param_sharp_14;
2073 	else
2074 		param = tx_shape_idx == 0 ? param_flat : param_sharp;
2075 
2076 	for (i = 0; i < __DFIR_CFG_NR; i++) {
2077 		rtw89_debug(rtwdev, RTW89_DBG_TXPWR,
2078 			    "set tx shape dfir: 0x%x: 0x%x\n", addr_filter[i],
2079 			    param[i]);
2080 		rtw89_phy_write32_idx(rtwdev, addr_filter[i], __DFIR_CFG_MASK,
2081 				      param[i], phy_idx);
2082 	}
2083 
2084 #undef __DECL_DFIR_ADDR
2085 #undef __DECL_DFIR_PARAM
2086 #undef __DECL_DFIR_VAR
2087 #undef __DFIR_CFG_NR
2088 #undef __DFIR_CFG_MASK
2089 }
2090 
2091 static void rtw8852c_set_tx_shape(struct rtw89_dev *rtwdev,
2092 				  const struct rtw89_chan *chan,
2093 				  enum rtw89_phy_idx phy_idx)
2094 {
2095 	u8 band = chan->band_type;
2096 	u8 regd = rtw89_regd_get(rtwdev, band);
2097 	u8 tx_shape_cck = rtw89_8852c_tx_shape[band][RTW89_RS_CCK][regd];
2098 	u8 tx_shape_ofdm = rtw89_8852c_tx_shape[band][RTW89_RS_OFDM][regd];
2099 
2100 	if (band == RTW89_BAND_2G)
2101 		rtw8852c_bb_set_tx_shape_dfir(rtwdev, tx_shape_cck, phy_idx);
2102 
2103 	rtw89_phy_tssi_ctrl_set_bandedge_cfg(rtwdev,
2104 					     (enum rtw89_mac_idx)phy_idx,
2105 					     tx_shape_ofdm);
2106 }
2107 
2108 static void rtw8852c_set_txpwr_limit(struct rtw89_dev *rtwdev,
2109 				     const struct rtw89_chan *chan,
2110 				     enum rtw89_phy_idx phy_idx)
2111 {
2112 #define __MAC_TXPWR_LMT_PAGE_SIZE 40
2113 	u8 ch = chan->channel;
2114 	u8 bw = chan->band_width;
2115 	struct rtw89_txpwr_limit lmt[NTX_NUM_8852C];
2116 	u32 addr, val;
2117 	const s8 *ptr;
2118 	u8 i, j;
2119 
2120 	rtw89_debug(rtwdev, RTW89_DBG_TXPWR,
2121 		    "[TXPWR] set txpwr limit with ch=%d bw=%d\n", ch, bw);
2122 
2123 	for (i = 0; i < NTX_NUM_8852C; i++) {
2124 		rtw89_phy_fill_txpwr_limit(rtwdev, chan, &lmt[i], i);
2125 
2126 		for (j = 0; j < __MAC_TXPWR_LMT_PAGE_SIZE; j += 4) {
2127 			addr = R_AX_PWR_LMT + j + __MAC_TXPWR_LMT_PAGE_SIZE * i;
2128 			ptr = (s8 *)&lmt[i] + j;
2129 
2130 			val = FIELD_PREP(GENMASK(7, 0), ptr[0]) |
2131 			      FIELD_PREP(GENMASK(15, 8), ptr[1]) |
2132 			      FIELD_PREP(GENMASK(23, 16), ptr[2]) |
2133 			      FIELD_PREP(GENMASK(31, 24), ptr[3]);
2134 
2135 			rtw89_mac_txpwr_write32(rtwdev, phy_idx, addr, val);
2136 		}
2137 	}
2138 #undef __MAC_TXPWR_LMT_PAGE_SIZE
2139 }
2140 
2141 static void rtw8852c_set_txpwr_limit_ru(struct rtw89_dev *rtwdev,
2142 					const struct rtw89_chan *chan,
2143 					enum rtw89_phy_idx phy_idx)
2144 {
2145 #define __MAC_TXPWR_LMT_RU_PAGE_SIZE 24
2146 	u8 ch = chan->channel;
2147 	u8 bw = chan->band_width;
2148 	struct rtw89_txpwr_limit_ru lmt_ru[NTX_NUM_8852C];
2149 	u32 addr, val;
2150 	const s8 *ptr;
2151 	u8 i, j;
2152 
2153 	rtw89_debug(rtwdev, RTW89_DBG_TXPWR,
2154 		    "[TXPWR] set txpwr limit ru with ch=%d bw=%d\n", ch, bw);
2155 
2156 	for (i = 0; i < NTX_NUM_8852C; i++) {
2157 		rtw89_phy_fill_txpwr_limit_ru(rtwdev, chan, &lmt_ru[i], i);
2158 
2159 		for (j = 0; j < __MAC_TXPWR_LMT_RU_PAGE_SIZE; j += 4) {
2160 			addr = R_AX_PWR_RU_LMT + j +
2161 			       __MAC_TXPWR_LMT_RU_PAGE_SIZE * i;
2162 			ptr = (s8 *)&lmt_ru[i] + j;
2163 
2164 			val = FIELD_PREP(GENMASK(7, 0), ptr[0]) |
2165 			      FIELD_PREP(GENMASK(15, 8), ptr[1]) |
2166 			      FIELD_PREP(GENMASK(23, 16), ptr[2]) |
2167 			      FIELD_PREP(GENMASK(31, 24), ptr[3]);
2168 
2169 			rtw89_mac_txpwr_write32(rtwdev, phy_idx, addr, val);
2170 		}
2171 	}
2172 
2173 #undef __MAC_TXPWR_LMT_RU_PAGE_SIZE
2174 }
2175 
2176 static void rtw8852c_set_txpwr(struct rtw89_dev *rtwdev,
2177 			       const struct rtw89_chan *chan,
2178 			       enum rtw89_phy_idx phy_idx)
2179 {
2180 	rtw8852c_set_txpwr_byrate(rtwdev, chan, phy_idx);
2181 	rtw8852c_set_txpwr_offset(rtwdev, chan, phy_idx);
2182 	rtw8852c_set_tx_shape(rtwdev, chan, phy_idx);
2183 	rtw8852c_set_txpwr_limit(rtwdev, chan, phy_idx);
2184 	rtw8852c_set_txpwr_limit_ru(rtwdev, chan, phy_idx);
2185 }
2186 
2187 static void rtw8852c_set_txpwr_ctrl(struct rtw89_dev *rtwdev,
2188 				    enum rtw89_phy_idx phy_idx)
2189 {
2190 	rtw8852c_set_txpwr_ref(rtwdev, phy_idx);
2191 }
2192 
2193 static void
2194 rtw8852c_init_tssi_ctrl(struct rtw89_dev *rtwdev, enum rtw89_phy_idx phy_idx)
2195 {
2196 	static const struct rtw89_reg2_def ctrl_ini[] = {
2197 		{0xD938, 0x00010100},
2198 		{0xD93C, 0x0500D500},
2199 		{0xD940, 0x00000500},
2200 		{0xD944, 0x00000005},
2201 		{0xD94C, 0x00220000},
2202 		{0xD950, 0x00030000},
2203 	};
2204 	u32 addr;
2205 	int i;
2206 
2207 	for (addr = R_AX_TSSI_CTRL_HEAD; addr <= R_AX_TSSI_CTRL_TAIL; addr += 4)
2208 		rtw89_mac_txpwr_write32(rtwdev, phy_idx, addr, 0);
2209 
2210 	for (i = 0; i < ARRAY_SIZE(ctrl_ini); i++)
2211 		rtw89_mac_txpwr_write32(rtwdev, phy_idx, ctrl_ini[i].addr,
2212 					ctrl_ini[i].data);
2213 
2214 	rtw89_phy_tssi_ctrl_set_bandedge_cfg(rtwdev,
2215 					     (enum rtw89_mac_idx)phy_idx,
2216 					     RTW89_TSSI_BANDEDGE_FLAT);
2217 }
2218 
2219 static int
2220 rtw8852c_init_txpwr_unit(struct rtw89_dev *rtwdev, enum rtw89_phy_idx phy_idx)
2221 {
2222 	int ret;
2223 
2224 	ret = rtw89_mac_txpwr_write32(rtwdev, phy_idx, R_AX_PWR_UL_CTRL2, 0x07763333);
2225 	if (ret)
2226 		return ret;
2227 
2228 	ret = rtw89_mac_txpwr_write32(rtwdev, phy_idx, R_AX_PWR_COEXT_CTRL, 0x01ebf000);
2229 	if (ret)
2230 		return ret;
2231 
2232 	ret = rtw89_mac_txpwr_write32(rtwdev, phy_idx, R_AX_PWR_UL_CTRL0, 0x0002f8ff);
2233 	if (ret)
2234 		return ret;
2235 
2236 	rtw8852c_set_txpwr_ul_tb_offset(rtwdev, 0, phy_idx == RTW89_PHY_1 ?
2237 							      RTW89_MAC_1 :
2238 							      RTW89_MAC_0);
2239 	rtw8852c_init_tssi_ctrl(rtwdev, phy_idx);
2240 
2241 	return 0;
2242 }
2243 
2244 static void rtw8852c_bb_cfg_rx_path(struct rtw89_dev *rtwdev, u8 rx_path)
2245 {
2246 	const struct rtw89_chan *chan = rtw89_chan_get(rtwdev, RTW89_SUB_ENTITY_0);
2247 	u8 band = chan->band_type;
2248 	u32 rst_mask0 = B_P0_TXPW_RSTB_MANON | B_P0_TXPW_RSTB_TSSI;
2249 	u32 rst_mask1 = B_P1_TXPW_RSTB_MANON | B_P1_TXPW_RSTB_TSSI;
2250 
2251 	if (rtwdev->dbcc_en) {
2252 		rtw89_phy_write32_mask(rtwdev, R_CHBW_MOD, B_ANT_RX_SEG0, 1);
2253 		rtw89_phy_write32_idx(rtwdev, R_CHBW_MOD, B_ANT_RX_SEG0, 2,
2254 				      RTW89_PHY_1);
2255 
2256 		rtw89_phy_write32_mask(rtwdev, R_FC0_BW, B_ANT_RX_1RCCA_SEG0,
2257 				       1);
2258 		rtw89_phy_write32_mask(rtwdev, R_FC0_BW, B_ANT_RX_1RCCA_SEG1,
2259 				       1);
2260 		rtw89_phy_write32_idx(rtwdev, R_FC0_BW, B_ANT_RX_1RCCA_SEG0, 2,
2261 				      RTW89_PHY_1);
2262 		rtw89_phy_write32_idx(rtwdev, R_FC0_BW, B_ANT_RX_1RCCA_SEG1, 2,
2263 				      RTW89_PHY_1);
2264 
2265 		rtw89_phy_write32_mask(rtwdev, R_RXHT_MCS_LIMIT,
2266 				       B_RXHT_MCS_LIMIT, 0);
2267 		rtw89_phy_write32_mask(rtwdev, R_RXVHT_MCS_LIMIT,
2268 				       B_RXVHT_MCS_LIMIT, 0);
2269 		rtw89_phy_write32_mask(rtwdev, R_RXHE, B_RXHE_USER_MAX, 8);
2270 		rtw89_phy_write32_mask(rtwdev, R_RXHE, B_RXHE_MAX_NSS, 0);
2271 		rtw89_phy_write32_mask(rtwdev, R_RXHE, B_RXHETB_MAX_NSS, 0);
2272 
2273 		rtw89_phy_write32_idx(rtwdev, R_RXHT_MCS_LIMIT,
2274 				      B_RXHT_MCS_LIMIT, 0, RTW89_PHY_1);
2275 		rtw89_phy_write32_idx(rtwdev, R_RXVHT_MCS_LIMIT,
2276 				      B_RXVHT_MCS_LIMIT, 0, RTW89_PHY_1);
2277 		rtw89_phy_write32_idx(rtwdev, R_RXHE, B_RXHE_USER_MAX, 1,
2278 				      RTW89_PHY_1);
2279 		rtw89_phy_write32_idx(rtwdev, R_RXHE, B_RXHE_MAX_NSS, 0,
2280 				      RTW89_PHY_1);
2281 		rtw89_phy_write32_idx(rtwdev, R_RXHE, B_RXHETB_MAX_NSS, 0,
2282 				      RTW89_PHY_1);
2283 		rtw89_phy_write32_mask(rtwdev, R_P0_TXPW_RSTB, rst_mask0, 1);
2284 		rtw89_phy_write32_mask(rtwdev, R_P0_TXPW_RSTB, rst_mask0, 3);
2285 		rtw89_phy_write32_mask(rtwdev, R_P1_TXPW_RSTB, rst_mask1, 1);
2286 		rtw89_phy_write32_mask(rtwdev, R_P1_TXPW_RSTB, rst_mask1, 3);
2287 	} else {
2288 		if (rx_path == RF_PATH_A) {
2289 			rtw89_phy_write32_mask(rtwdev, R_CHBW_MOD,
2290 					       B_ANT_RX_SEG0, 1);
2291 			rtw89_phy_write32_mask(rtwdev, R_FC0_BW,
2292 					       B_ANT_RX_1RCCA_SEG0, 1);
2293 			rtw89_phy_write32_mask(rtwdev, R_FC0_BW,
2294 					       B_ANT_RX_1RCCA_SEG1, 1);
2295 			rtw89_phy_write32_mask(rtwdev, R_RXHT_MCS_LIMIT,
2296 					       B_RXHT_MCS_LIMIT, 0);
2297 			rtw89_phy_write32_mask(rtwdev, R_RXVHT_MCS_LIMIT,
2298 					       B_RXVHT_MCS_LIMIT, 0);
2299 			rtw89_phy_write32_mask(rtwdev, R_RXHE, B_RXHE_MAX_NSS,
2300 					       0);
2301 			rtw89_phy_write32_mask(rtwdev, R_RXHE, B_RXHETB_MAX_NSS,
2302 					       0);
2303 			rtw89_phy_write32_mask(rtwdev, R_P0_TXPW_RSTB,
2304 					       rst_mask0, 1);
2305 			rtw89_phy_write32_mask(rtwdev, R_P0_TXPW_RSTB,
2306 					       rst_mask0, 3);
2307 		} else if (rx_path == RF_PATH_B) {
2308 			rtw89_phy_write32_mask(rtwdev, R_CHBW_MOD,
2309 					       B_ANT_RX_SEG0, 2);
2310 			rtw89_phy_write32_mask(rtwdev, R_FC0_BW,
2311 					       B_ANT_RX_1RCCA_SEG0, 2);
2312 			rtw89_phy_write32_mask(rtwdev, R_FC0_BW,
2313 					       B_ANT_RX_1RCCA_SEG1, 2);
2314 			rtw89_phy_write32_mask(rtwdev, R_RXHT_MCS_LIMIT,
2315 					       B_RXHT_MCS_LIMIT, 0);
2316 			rtw89_phy_write32_mask(rtwdev, R_RXVHT_MCS_LIMIT,
2317 					       B_RXVHT_MCS_LIMIT, 0);
2318 			rtw89_phy_write32_mask(rtwdev, R_RXHE, B_RXHE_MAX_NSS,
2319 					       0);
2320 			rtw89_phy_write32_mask(rtwdev, R_RXHE, B_RXHETB_MAX_NSS,
2321 					       0);
2322 			rtw89_phy_write32_mask(rtwdev, R_P1_TXPW_RSTB,
2323 					       rst_mask1, 1);
2324 			rtw89_phy_write32_mask(rtwdev, R_P1_TXPW_RSTB,
2325 					       rst_mask1, 3);
2326 		} else {
2327 			rtw89_phy_write32_mask(rtwdev, R_CHBW_MOD,
2328 					       B_ANT_RX_SEG0, 3);
2329 			rtw89_phy_write32_mask(rtwdev, R_FC0_BW,
2330 					       B_ANT_RX_1RCCA_SEG0, 3);
2331 			rtw89_phy_write32_mask(rtwdev, R_FC0_BW,
2332 					       B_ANT_RX_1RCCA_SEG1, 3);
2333 			rtw89_phy_write32_mask(rtwdev, R_RXHT_MCS_LIMIT,
2334 					       B_RXHT_MCS_LIMIT, 1);
2335 			rtw89_phy_write32_mask(rtwdev, R_RXVHT_MCS_LIMIT,
2336 					       B_RXVHT_MCS_LIMIT, 1);
2337 			rtw89_phy_write32_mask(rtwdev, R_RXHE, B_RXHE_MAX_NSS,
2338 					       1);
2339 			rtw89_phy_write32_mask(rtwdev, R_RXHE, B_RXHETB_MAX_NSS,
2340 					       1);
2341 			rtw8852c_ctrl_btg(rtwdev, band == RTW89_BAND_2G);
2342 			rtw89_phy_write32_mask(rtwdev, R_P0_TXPW_RSTB,
2343 					       rst_mask0, 1);
2344 			rtw89_phy_write32_mask(rtwdev, R_P0_TXPW_RSTB,
2345 					       rst_mask0, 3);
2346 			rtw89_phy_write32_mask(rtwdev, R_P1_TXPW_RSTB,
2347 					       rst_mask1, 1);
2348 			rtw89_phy_write32_mask(rtwdev, R_P1_TXPW_RSTB,
2349 					       rst_mask1, 3);
2350 		}
2351 		rtw89_phy_write32_mask(rtwdev, R_RXHE, B_RXHE_USER_MAX, 8);
2352 	}
2353 }
2354 
2355 static void rtw8852c_ctrl_tx_path_tmac(struct rtw89_dev *rtwdev, u8 tx_path,
2356 				       enum rtw89_mac_idx mac_idx)
2357 {
2358 	struct rtw89_reg2_def path_com[] = {
2359 		{R_AX_PATH_COM0, AX_PATH_COM0_DFVAL},
2360 		{R_AX_PATH_COM1, AX_PATH_COM1_DFVAL},
2361 		{R_AX_PATH_COM2, AX_PATH_COM2_DFVAL},
2362 		{R_AX_PATH_COM3, AX_PATH_COM3_DFVAL},
2363 		{R_AX_PATH_COM4, AX_PATH_COM4_DFVAL},
2364 		{R_AX_PATH_COM5, AX_PATH_COM5_DFVAL},
2365 		{R_AX_PATH_COM6, AX_PATH_COM6_DFVAL},
2366 		{R_AX_PATH_COM7, AX_PATH_COM7_DFVAL},
2367 		{R_AX_PATH_COM8, AX_PATH_COM8_DFVAL},
2368 		{R_AX_PATH_COM9, AX_PATH_COM9_DFVAL},
2369 		{R_AX_PATH_COM10, AX_PATH_COM10_DFVAL},
2370 		{R_AX_PATH_COM11, AX_PATH_COM11_DFVAL},
2371 	};
2372 	u32 addr;
2373 	u32 reg;
2374 	u8 cr_size = ARRAY_SIZE(path_com);
2375 	u8 i = 0;
2376 
2377 	rtw89_phy_write32_idx(rtwdev, R_MAC_SEL, B_MAC_SEL_MOD, 0, RTW89_PHY_0);
2378 	rtw89_phy_write32_idx(rtwdev, R_MAC_SEL, B_MAC_SEL_MOD, 0, RTW89_PHY_1);
2379 
2380 	for (addr = R_AX_MACID_ANT_TABLE;
2381 	     addr <= R_AX_MACID_ANT_TABLE_LAST; addr += 4) {
2382 		reg = rtw89_mac_reg_by_idx(addr, mac_idx);
2383 		rtw89_write32(rtwdev, reg, 0);
2384 	}
2385 
2386 	if (tx_path == RF_A) {
2387 		path_com[0].data = AX_PATH_COM0_PATHA;
2388 		path_com[1].data = AX_PATH_COM1_PATHA;
2389 		path_com[2].data = AX_PATH_COM2_PATHA;
2390 		path_com[7].data = AX_PATH_COM7_PATHA;
2391 		path_com[8].data = AX_PATH_COM8_PATHA;
2392 	} else if (tx_path == RF_B) {
2393 		path_com[0].data = AX_PATH_COM0_PATHB;
2394 		path_com[1].data = AX_PATH_COM1_PATHB;
2395 		path_com[2].data = AX_PATH_COM2_PATHB;
2396 		path_com[7].data = AX_PATH_COM7_PATHB;
2397 		path_com[8].data = AX_PATH_COM8_PATHB;
2398 	} else if (tx_path == RF_AB) {
2399 		path_com[0].data = AX_PATH_COM0_PATHAB;
2400 		path_com[1].data = AX_PATH_COM1_PATHAB;
2401 		path_com[2].data = AX_PATH_COM2_PATHAB;
2402 		path_com[7].data = AX_PATH_COM7_PATHAB;
2403 		path_com[8].data = AX_PATH_COM8_PATHAB;
2404 	} else {
2405 		rtw89_warn(rtwdev, "[Invalid Tx Path]Tx Path: %d\n", tx_path);
2406 		return;
2407 	}
2408 
2409 	for (i = 0; i < cr_size; i++) {
2410 		rtw89_debug(rtwdev, RTW89_DBG_TSSI, "0x%x = 0x%x\n",
2411 			    path_com[i].addr, path_com[i].data);
2412 		reg = rtw89_mac_reg_by_idx(path_com[i].addr, mac_idx);
2413 		rtw89_write32(rtwdev, reg, path_com[i].data);
2414 	}
2415 }
2416 
2417 static void rtw8852c_bb_ctrl_btc_preagc(struct rtw89_dev *rtwdev, bool bt_en)
2418 {
2419 	if (bt_en) {
2420 		rtw89_phy_write32_mask(rtwdev, R_PATH0_FRC_FIR_TYPE_V1,
2421 				       B_PATH0_FRC_FIR_TYPE_MSK_V1, 0x3);
2422 		rtw89_phy_write32_mask(rtwdev, R_PATH1_FRC_FIR_TYPE_V1,
2423 				       B_PATH1_FRC_FIR_TYPE_MSK_V1, 0x3);
2424 		rtw89_phy_write32_mask(rtwdev, R_PATH0_RXBB_V1,
2425 				       B_PATH0_RXBB_MSK_V1, 0xf);
2426 		rtw89_phy_write32_mask(rtwdev, R_PATH1_RXBB_V1,
2427 				       B_PATH1_RXBB_MSK_V1, 0xf);
2428 		rtw89_phy_write32_mask(rtwdev, R_PATH0_G_LNA6_OP1DB_V1,
2429 				       B_PATH0_G_LNA6_OP1DB_V1, 0x80);
2430 		rtw89_phy_write32_mask(rtwdev, R_PATH1_G_LNA6_OP1DB_V1,
2431 				       B_PATH1_G_LNA6_OP1DB_V1, 0x80);
2432 		rtw89_phy_write32_mask(rtwdev, R_PATH0_G_TIA0_LNA6_OP1DB_V1,
2433 				       B_PATH0_G_TIA0_LNA6_OP1DB_V1, 0x80);
2434 		rtw89_phy_write32_mask(rtwdev, R_PATH0_G_TIA1_LNA6_OP1DB_V1,
2435 				       B_PATH0_G_TIA1_LNA6_OP1DB_V1, 0x80);
2436 		rtw89_phy_write32_mask(rtwdev, R_PATH1_G_TIA0_LNA6_OP1DB_V1,
2437 				       B_PATH1_G_TIA0_LNA6_OP1DB_V1, 0x80);
2438 		rtw89_phy_write32_mask(rtwdev, R_PATH1_G_TIA1_LNA6_OP1DB_V1,
2439 				       B_PATH1_G_TIA1_LNA6_OP1DB_V1, 0x80);
2440 		rtw89_phy_write32_mask(rtwdev, R_PATH0_BT_BACKOFF_V1,
2441 				       B_PATH0_BT_BACKOFF_V1, 0x780D1E);
2442 		rtw89_phy_write32_mask(rtwdev, R_PATH1_BT_BACKOFF_V1,
2443 				       B_PATH1_BT_BACKOFF_V1, 0x780D1E);
2444 		rtw89_phy_write32_mask(rtwdev, R_P0_BACKOFF_IBADC_V1,
2445 				       B_P0_BACKOFF_IBADC_V1, 0x34);
2446 		rtw89_phy_write32_mask(rtwdev, R_P1_BACKOFF_IBADC_V1,
2447 				       B_P1_BACKOFF_IBADC_V1, 0x34);
2448 	} else {
2449 		rtw89_phy_write32_mask(rtwdev, R_PATH0_FRC_FIR_TYPE_V1,
2450 				       B_PATH0_FRC_FIR_TYPE_MSK_V1, 0x0);
2451 		rtw89_phy_write32_mask(rtwdev, R_PATH1_FRC_FIR_TYPE_V1,
2452 				       B_PATH1_FRC_FIR_TYPE_MSK_V1, 0x0);
2453 		rtw89_phy_write32_mask(rtwdev, R_PATH0_RXBB_V1,
2454 				       B_PATH0_RXBB_MSK_V1, 0x60);
2455 		rtw89_phy_write32_mask(rtwdev, R_PATH1_RXBB_V1,
2456 				       B_PATH1_RXBB_MSK_V1, 0x60);
2457 		rtw89_phy_write32_mask(rtwdev, R_PATH0_G_LNA6_OP1DB_V1,
2458 				       B_PATH0_G_LNA6_OP1DB_V1, 0x1a);
2459 		rtw89_phy_write32_mask(rtwdev, R_PATH1_G_LNA6_OP1DB_V1,
2460 				       B_PATH1_G_LNA6_OP1DB_V1, 0x1a);
2461 		rtw89_phy_write32_mask(rtwdev, R_PATH0_G_TIA0_LNA6_OP1DB_V1,
2462 				       B_PATH0_G_TIA0_LNA6_OP1DB_V1, 0x2a);
2463 		rtw89_phy_write32_mask(rtwdev, R_PATH0_G_TIA1_LNA6_OP1DB_V1,
2464 				       B_PATH0_G_TIA1_LNA6_OP1DB_V1, 0x2a);
2465 		rtw89_phy_write32_mask(rtwdev, R_PATH1_G_TIA0_LNA6_OP1DB_V1,
2466 				       B_PATH1_G_TIA0_LNA6_OP1DB_V1, 0x2a);
2467 		rtw89_phy_write32_mask(rtwdev, R_PATH1_G_TIA1_LNA6_OP1DB_V1,
2468 				       B_PATH1_G_TIA1_LNA6_OP1DB_V1, 0x2a);
2469 		rtw89_phy_write32_mask(rtwdev, R_PATH0_BT_BACKOFF_V1,
2470 				       B_PATH0_BT_BACKOFF_V1, 0x79E99E);
2471 		rtw89_phy_write32_mask(rtwdev, R_PATH1_BT_BACKOFF_V1,
2472 				       B_PATH1_BT_BACKOFF_V1, 0x79E99E);
2473 		rtw89_phy_write32_mask(rtwdev, R_P0_BACKOFF_IBADC_V1,
2474 				       B_P0_BACKOFF_IBADC_V1, 0x26);
2475 		rtw89_phy_write32_mask(rtwdev, R_P1_BACKOFF_IBADC_V1,
2476 				       B_P1_BACKOFF_IBADC_V1, 0x26);
2477 	}
2478 }
2479 
2480 static void rtw8852c_bb_cfg_txrx_path(struct rtw89_dev *rtwdev)
2481 {
2482 	struct rtw89_hal *hal = &rtwdev->hal;
2483 	u8 ntx_path = hal->antenna_tx ? hal->antenna_tx : RF_AB;
2484 
2485 	rtw8852c_bb_cfg_rx_path(rtwdev, RF_PATH_AB);
2486 
2487 	if (hal->rx_nss == 1) {
2488 		rtw89_phy_write32_mask(rtwdev, R_RXHT_MCS_LIMIT, B_RXHT_MCS_LIMIT, 0);
2489 		rtw89_phy_write32_mask(rtwdev, R_RXVHT_MCS_LIMIT, B_RXVHT_MCS_LIMIT, 0);
2490 		rtw89_phy_write32_mask(rtwdev, R_RXHE, B_RXHE_MAX_NSS, 0);
2491 		rtw89_phy_write32_mask(rtwdev, R_RXHE, B_RXHETB_MAX_NSS, 0);
2492 	} else {
2493 		rtw89_phy_write32_mask(rtwdev, R_RXHT_MCS_LIMIT, B_RXHT_MCS_LIMIT, 1);
2494 		rtw89_phy_write32_mask(rtwdev, R_RXVHT_MCS_LIMIT, B_RXVHT_MCS_LIMIT, 1);
2495 		rtw89_phy_write32_mask(rtwdev, R_RXHE, B_RXHE_MAX_NSS, 1);
2496 		rtw89_phy_write32_mask(rtwdev, R_RXHE, B_RXHETB_MAX_NSS, 1);
2497 	}
2498 
2499 	rtw8852c_ctrl_tx_path_tmac(rtwdev, ntx_path, RTW89_MAC_0);
2500 }
2501 
2502 static u8 rtw8852c_get_thermal(struct rtw89_dev *rtwdev, enum rtw89_rf_path rf_path)
2503 {
2504 	rtw89_write_rf(rtwdev, rf_path, RR_TM, RR_TM_TRI, 0x1);
2505 	rtw89_write_rf(rtwdev, rf_path, RR_TM, RR_TM_TRI, 0x0);
2506 	rtw89_write_rf(rtwdev, rf_path, RR_TM, RR_TM_TRI, 0x1);
2507 
2508 	fsleep(200);
2509 
2510 	return rtw89_read_rf(rtwdev, rf_path, RR_TM, RR_TM_VAL);
2511 }
2512 
2513 static void rtw8852c_btc_set_rfe(struct rtw89_dev *rtwdev)
2514 {
2515 	struct rtw89_btc *btc = &rtwdev->btc;
2516 	struct rtw89_btc_module *module = &btc->mdinfo;
2517 
2518 	module->rfe_type = rtwdev->efuse.rfe_type;
2519 	module->cv = rtwdev->hal.cv;
2520 	module->bt_solo = 0;
2521 	module->switch_type = BTC_SWITCH_INTERNAL;
2522 
2523 	if (module->rfe_type > 0)
2524 		module->ant.num = (module->rfe_type % 2 ? 2 : 3);
2525 	else
2526 		module->ant.num = 2;
2527 
2528 	module->ant.diversity = 0;
2529 	module->ant.isolation = 10;
2530 
2531 	if (module->ant.num == 3) {
2532 		module->ant.type = BTC_ANT_DEDICATED;
2533 		module->bt_pos = BTC_BT_ALONE;
2534 	} else {
2535 		module->ant.type = BTC_ANT_SHARED;
2536 		module->bt_pos = BTC_BT_BTG;
2537 	}
2538 }
2539 
2540 static void rtw8852c_ctrl_btg(struct rtw89_dev *rtwdev, bool btg)
2541 {
2542 	if (btg) {
2543 		rtw89_phy_write32_mask(rtwdev, R_PATH0_BT_SHARE_V1,
2544 				       B_PATH0_BT_SHARE_V1, 0x1);
2545 		rtw89_phy_write32_mask(rtwdev, R_PATH0_BTG_PATH_V1,
2546 				       B_PATH0_BTG_PATH_V1, 0x0);
2547 		rtw89_phy_write32_mask(rtwdev, R_PATH1_G_LNA6_OP1DB_V1,
2548 				       B_PATH1_G_LNA6_OP1DB_V1, 0x20);
2549 		rtw89_phy_write32_mask(rtwdev, R_PATH1_G_TIA0_LNA6_OP1DB_V1,
2550 				       B_PATH1_G_TIA0_LNA6_OP1DB_V1, 0x30);
2551 		rtw89_phy_write32_mask(rtwdev, R_PATH1_BT_SHARE_V1,
2552 				       B_PATH1_BT_SHARE_V1, 0x1);
2553 		rtw89_phy_write32_mask(rtwdev, R_PATH1_BTG_PATH_V1,
2554 				       B_PATH1_BTG_PATH_V1, 0x1);
2555 		rtw89_phy_write32_mask(rtwdev, R_PMAC_GNT, B_PMAC_GNT_P1, 0x0);
2556 		rtw89_phy_write32_mask(rtwdev, R_CHBW_MOD, B_BT_SHARE, 0x1);
2557 		rtw89_phy_write32_mask(rtwdev, R_FC0_BW, B_ANT_RX_BT_SEG0, 0x2);
2558 		rtw89_phy_write32_mask(rtwdev, R_BT_DYN_DC_EST_EN,
2559 				       B_BT_DYN_DC_EST_EN_MSK, 0x1);
2560 		rtw89_phy_write32_mask(rtwdev, R_GNT_BT_WGT_EN, B_GNT_BT_WGT_EN,
2561 				       0x1);
2562 	} else {
2563 		rtw89_phy_write32_mask(rtwdev, R_PATH0_BT_SHARE_V1,
2564 				       B_PATH0_BT_SHARE_V1, 0x0);
2565 		rtw89_phy_write32_mask(rtwdev, R_PATH0_BTG_PATH_V1,
2566 				       B_PATH0_BTG_PATH_V1, 0x0);
2567 		rtw89_phy_write32_mask(rtwdev, R_PATH1_G_LNA6_OP1DB_V1,
2568 				       B_PATH1_G_LNA6_OP1DB_V1, 0x1a);
2569 		rtw89_phy_write32_mask(rtwdev, R_PATH1_G_TIA0_LNA6_OP1DB_V1,
2570 				       B_PATH1_G_TIA0_LNA6_OP1DB_V1, 0x2a);
2571 		rtw89_phy_write32_mask(rtwdev, R_PATH1_BT_SHARE_V1,
2572 				       B_PATH1_BT_SHARE_V1, 0x0);
2573 		rtw89_phy_write32_mask(rtwdev, R_PATH1_BTG_PATH_V1,
2574 				       B_PATH1_BTG_PATH_V1, 0x0);
2575 		rtw89_phy_write32_mask(rtwdev, R_PMAC_GNT, B_PMAC_GNT_P1, 0xf);
2576 		rtw89_phy_write32_mask(rtwdev, R_PMAC_GNT, B_PMAC_GNT_P2, 0x4);
2577 		rtw89_phy_write32_mask(rtwdev, R_CHBW_MOD, B_BT_SHARE, 0x0);
2578 		rtw89_phy_write32_mask(rtwdev, R_FC0_BW, B_ANT_RX_BT_SEG0, 0x0);
2579 		rtw89_phy_write32_mask(rtwdev, R_BT_DYN_DC_EST_EN,
2580 				       B_BT_DYN_DC_EST_EN_MSK, 0x0);
2581 		rtw89_phy_write32_mask(rtwdev, R_GNT_BT_WGT_EN, B_GNT_BT_WGT_EN,
2582 				       0x0);
2583 	}
2584 }
2585 
2586 static
2587 void rtw8852c_set_trx_mask(struct rtw89_dev *rtwdev, u8 path, u8 group, u32 val)
2588 {
2589 	rtw89_write_rf(rtwdev, path, RR_LUTWE, RFREG_MASK, 0x20000);
2590 	rtw89_write_rf(rtwdev, path, RR_LUTWA, RFREG_MASK, group);
2591 	rtw89_write_rf(rtwdev, path, RR_LUTWD0, RFREG_MASK, val);
2592 	rtw89_write_rf(rtwdev, path, RR_LUTWE, RFREG_MASK, 0x0);
2593 }
2594 
2595 static void rtw8852c_btc_init_cfg(struct rtw89_dev *rtwdev)
2596 {
2597 	struct rtw89_btc *btc = &rtwdev->btc;
2598 	struct rtw89_btc_module *module = &btc->mdinfo;
2599 	const struct rtw89_chip_info *chip = rtwdev->chip;
2600 	const struct rtw89_mac_ax_coex coex_params = {
2601 		.pta_mode = RTW89_MAC_AX_COEX_RTK_MODE,
2602 		.direction = RTW89_MAC_AX_COEX_INNER,
2603 	};
2604 
2605 	/* PTA init  */
2606 	rtw89_mac_coex_init_v1(rtwdev, &coex_params);
2607 
2608 	/* set WL Tx response = Hi-Pri */
2609 	chip->ops->btc_set_wl_pri(rtwdev, BTC_PRI_MASK_TX_RESP, true);
2610 	chip->ops->btc_set_wl_pri(rtwdev, BTC_PRI_MASK_BEACON, true);
2611 
2612 	/* set rf gnt debug off */
2613 	rtw89_write_rf(rtwdev, RF_PATH_A, RR_WLSEL, RFREG_MASK, 0x0);
2614 	rtw89_write_rf(rtwdev, RF_PATH_B, RR_WLSEL, RFREG_MASK, 0x0);
2615 
2616 	/* set WL Tx thru in TRX mask table if GNT_WL = 0 && BT_S1 = ss group */
2617 	if (module->ant.type == BTC_ANT_SHARED) {
2618 		rtw8852c_set_trx_mask(rtwdev,
2619 				      RF_PATH_A, BTC_BT_SS_GROUP, 0x5ff);
2620 		rtw8852c_set_trx_mask(rtwdev,
2621 				      RF_PATH_B, BTC_BT_SS_GROUP, 0x5ff);
2622 		/* set path-A(S0) Tx/Rx no-mask if GNT_WL=0 && BT_S1=tx group */
2623 		rtw8852c_set_trx_mask(rtwdev,
2624 				      RF_PATH_A, BTC_BT_TX_GROUP, 0x5ff);
2625 	} else { /* set WL Tx stb if GNT_WL = 0 && BT_S1 = ss group for 3-ant */
2626 		rtw8852c_set_trx_mask(rtwdev,
2627 				      RF_PATH_A, BTC_BT_SS_GROUP, 0x5df);
2628 		rtw8852c_set_trx_mask(rtwdev,
2629 				      RF_PATH_B, BTC_BT_SS_GROUP, 0x5df);
2630 	}
2631 
2632 	/* set PTA break table */
2633 	rtw89_write32(rtwdev, R_AX_BT_BREAK_TABLE, BTC_BREAK_PARAM);
2634 
2635 	 /* enable BT counter 0xda10[1:0] = 2b'11 */
2636 	rtw89_write32_set(rtwdev,
2637 			  R_AX_BT_CNT_CFG, B_AX_BT_CNT_EN |
2638 			  B_AX_BT_CNT_RST_V1);
2639 	btc->cx.wl.status.map.init_ok = true;
2640 }
2641 
2642 static
2643 void rtw8852c_btc_set_wl_pri(struct rtw89_dev *rtwdev, u8 map, bool state)
2644 {
2645 	u32 bitmap = 0;
2646 	u32 reg = 0;
2647 
2648 	switch (map) {
2649 	case BTC_PRI_MASK_TX_RESP:
2650 		reg = R_BTC_COEX_WL_REQ;
2651 		bitmap = B_BTC_RSP_ACK_HI;
2652 		break;
2653 	case BTC_PRI_MASK_BEACON:
2654 		reg = R_BTC_COEX_WL_REQ;
2655 		bitmap = B_BTC_TX_BCN_HI;
2656 		break;
2657 	default:
2658 		return;
2659 	}
2660 
2661 	if (state)
2662 		rtw89_write32_set(rtwdev, reg, bitmap);
2663 	else
2664 		rtw89_write32_clr(rtwdev, reg, bitmap);
2665 }
2666 
2667 union rtw8852c_btc_wl_txpwr_ctrl {
2668 	u32 txpwr_val;
2669 	struct {
2670 		union {
2671 			u16 ctrl_all_time;
2672 			struct {
2673 				s16 data:9;
2674 				u16 rsvd:6;
2675 				u16 flag:1;
2676 			} all_time;
2677 		};
2678 		union {
2679 			u16 ctrl_gnt_bt;
2680 			struct {
2681 				s16 data:9;
2682 				u16 rsvd:7;
2683 			} gnt_bt;
2684 		};
2685 	};
2686 } __packed;
2687 
2688 static void
2689 rtw8852c_btc_set_wl_txpwr_ctrl(struct rtw89_dev *rtwdev, u32 txpwr_val)
2690 {
2691 	union rtw8852c_btc_wl_txpwr_ctrl arg = { .txpwr_val = txpwr_val };
2692 	s32 val;
2693 
2694 #define __write_ctrl(_reg, _msk, _val, _en, _cond)		\
2695 do {								\
2696 	u32 _wrt = FIELD_PREP(_msk, _val);			\
2697 	BUILD_BUG_ON((_msk & _en) != 0);			\
2698 	if (_cond)						\
2699 		_wrt |= _en;					\
2700 	else							\
2701 		_wrt &= ~_en;					\
2702 	rtw89_mac_txpwr_write32_mask(rtwdev, RTW89_PHY_0, _reg,	\
2703 				     _msk | _en, _wrt);		\
2704 } while (0)
2705 
2706 	switch (arg.ctrl_all_time) {
2707 	case 0xffff:
2708 		val = 0;
2709 		break;
2710 	default:
2711 		val = arg.all_time.data;
2712 		break;
2713 	}
2714 
2715 	__write_ctrl(R_AX_PWR_RATE_CTRL, B_AX_FORCE_PWR_BY_RATE_VALUE_MASK,
2716 		     val, B_AX_FORCE_PWR_BY_RATE_EN,
2717 		     arg.ctrl_all_time != 0xffff);
2718 
2719 	switch (arg.ctrl_gnt_bt) {
2720 	case 0xffff:
2721 		val = 0;
2722 		break;
2723 	default:
2724 		val = arg.gnt_bt.data;
2725 		break;
2726 	}
2727 
2728 	__write_ctrl(R_AX_PWR_COEXT_CTRL, B_AX_TXAGC_BT_MASK, val,
2729 		     B_AX_TXAGC_BT_EN, arg.ctrl_gnt_bt != 0xffff);
2730 
2731 #undef __write_ctrl
2732 }
2733 
2734 static
2735 s8 rtw8852c_btc_get_bt_rssi(struct rtw89_dev *rtwdev, s8 val)
2736 {
2737 	return clamp_t(s8, val, -100, 0) + 100;
2738 }
2739 
2740 static const struct rtw89_btc_rf_trx_para rtw89_btc_8852c_rf_ul[] = {
2741 	{255, 0, 0, 7}, /* 0 -> original */
2742 	{255, 2, 0, 7}, /* 1 -> for BT-connected ACI issue && BTG co-rx */
2743 	{255, 0, 0, 7}, /* 2 ->reserved for shared-antenna */
2744 	{255, 0, 0, 7}, /* 3- >reserved for shared-antenna */
2745 	{255, 0, 0, 7}, /* 4 ->reserved for shared-antenna */
2746 	{255, 0, 0, 7}, /* the below id is for non-shared-antenna free-run */
2747 	{6, 1, 0, 7},
2748 	{13, 1, 0, 7},
2749 	{13, 1, 0, 7}
2750 };
2751 
2752 static const struct rtw89_btc_rf_trx_para rtw89_btc_8852c_rf_dl[] = {
2753 	{255, 0, 0, 7}, /* 0 -> original */
2754 	{255, 2, 0, 7}, /* 1 -> reserved for shared-antenna */
2755 	{255, 0, 0, 7}, /* 2 ->reserved for shared-antenna */
2756 	{255, 0, 0, 7}, /* 3- >reserved for shared-antenna */
2757 	{255, 0, 0, 7}, /* 4 ->reserved for shared-antenna */
2758 	{255, 0, 0, 7}, /* the below id is for non-shared-antenna free-run */
2759 	{255, 1, 0, 7},
2760 	{255, 1, 0, 7},
2761 	{255, 1, 0, 7}
2762 };
2763 
2764 static const u8 rtw89_btc_8852c_wl_rssi_thres[BTC_WL_RSSI_THMAX] = {60, 50, 40, 30};
2765 static const u8 rtw89_btc_8852c_bt_rssi_thres[BTC_BT_RSSI_THMAX] = {40, 36, 31, 28};
2766 
2767 static const struct rtw89_btc_fbtc_mreg rtw89_btc_8852c_mon_reg[] = {
2768 	RTW89_DEF_FBTC_MREG(REG_MAC, 4, 0xda00),
2769 	RTW89_DEF_FBTC_MREG(REG_MAC, 4, 0xda04),
2770 	RTW89_DEF_FBTC_MREG(REG_MAC, 4, 0xda24),
2771 	RTW89_DEF_FBTC_MREG(REG_MAC, 4, 0xda30),
2772 	RTW89_DEF_FBTC_MREG(REG_MAC, 4, 0xda34),
2773 	RTW89_DEF_FBTC_MREG(REG_MAC, 4, 0xda38),
2774 	RTW89_DEF_FBTC_MREG(REG_MAC, 4, 0xda44),
2775 	RTW89_DEF_FBTC_MREG(REG_MAC, 4, 0xda48),
2776 	RTW89_DEF_FBTC_MREG(REG_MAC, 4, 0xda4c),
2777 	RTW89_DEF_FBTC_MREG(REG_MAC, 4, 0xd200),
2778 	RTW89_DEF_FBTC_MREG(REG_MAC, 4, 0xd220),
2779 	RTW89_DEF_FBTC_MREG(REG_BB, 4, 0x980),
2780 };
2781 
2782 static
2783 void rtw8852c_btc_bt_aci_imp(struct rtw89_dev *rtwdev)
2784 {
2785 	struct rtw89_btc *btc = &rtwdev->btc;
2786 	struct rtw89_btc_dm *dm = &btc->dm;
2787 	struct rtw89_btc_bt_info *bt = &btc->cx.bt;
2788 	struct rtw89_btc_bt_link_info *b = &bt->link_info;
2789 
2790 	/* fix LNA2 = level-5 for BT ACI issue at BTG */
2791 	if (btc->dm.wl_btg_rx && b->profile_cnt.now != 0)
2792 		dm->trx_para_level = 1;
2793 }
2794 
2795 static
2796 void rtw8852c_btc_update_bt_cnt(struct rtw89_dev *rtwdev)
2797 {
2798 	/* Feature move to firmware */
2799 }
2800 
2801 static
2802 void rtw8852c_btc_wl_s1_standby(struct rtw89_dev *rtwdev, bool state)
2803 {
2804 	rtw89_write_rf(rtwdev, RF_PATH_B, RR_LUTWE, RFREG_MASK, 0x80000);
2805 	rtw89_write_rf(rtwdev, RF_PATH_B, RR_LUTWA, RFREG_MASK, 0x1);
2806 	rtw89_write_rf(rtwdev, RF_PATH_B, RR_LUTWD1, RFREG_MASK, 0x620);
2807 
2808 	/* set WL standby = Rx for GNT_BT_Tx = 1->0 settle issue */
2809 	if (state)
2810 		rtw89_write_rf(rtwdev, RF_PATH_B, RR_LUTWD0,
2811 			       RFREG_MASK, 0x179c);
2812 	else
2813 		rtw89_write_rf(rtwdev, RF_PATH_B, RR_LUTWD0,
2814 			       RFREG_MASK, 0x208);
2815 
2816 	rtw89_write_rf(rtwdev, RF_PATH_B, RR_LUTWE, RFREG_MASK, 0x0);
2817 }
2818 
2819 static void rtw8852c_fill_freq_with_ppdu(struct rtw89_dev *rtwdev,
2820 					 struct rtw89_rx_phy_ppdu *phy_ppdu,
2821 					 struct ieee80211_rx_status *status)
2822 {
2823 	u8 chan_idx = phy_ppdu->chan_idx;
2824 	enum nl80211_band band;
2825 	u8 ch;
2826 
2827 	if (chan_idx == 0)
2828 		return;
2829 
2830 	rtw8852c_decode_chan_idx(rtwdev, chan_idx, &ch, &band);
2831 	status->freq = ieee80211_channel_to_frequency(ch, band);
2832 	status->band = band;
2833 }
2834 
2835 static void rtw8852c_query_ppdu(struct rtw89_dev *rtwdev,
2836 				struct rtw89_rx_phy_ppdu *phy_ppdu,
2837 				struct ieee80211_rx_status *status)
2838 {
2839 	u8 path;
2840 	s8 *rx_power = phy_ppdu->rssi;
2841 
2842 	status->signal = max_t(s8, rx_power[RF_PATH_A], rx_power[RF_PATH_B]);
2843 	for (path = 0; path < rtwdev->chip->rf_path_num; path++) {
2844 		status->chains |= BIT(path);
2845 		status->chain_signal[path] = rx_power[path];
2846 	}
2847 	if (phy_ppdu->valid)
2848 		rtw8852c_fill_freq_with_ppdu(rtwdev, phy_ppdu, status);
2849 }
2850 
2851 static int rtw8852c_mac_enable_bb_rf(struct rtw89_dev *rtwdev)
2852 {
2853 	int ret;
2854 
2855 	rtw89_write8_set(rtwdev, R_AX_SYS_FUNC_EN,
2856 			 B_AX_FEN_BBRSTB | B_AX_FEN_BB_GLB_RSTN);
2857 
2858 	rtw89_write32_set(rtwdev, R_AX_WLRF_CTRL, B_AX_AFC_AFEDIG);
2859 	rtw89_write32_clr(rtwdev, R_AX_WLRF_CTRL, B_AX_AFC_AFEDIG);
2860 	rtw89_write32_set(rtwdev, R_AX_WLRF_CTRL, B_AX_AFC_AFEDIG);
2861 
2862 	rtw89_write32_mask(rtwdev, R_AX_AFE_OFF_CTRL1, B_AX_S0_LDO_VSEL_F_MASK, 0x1);
2863 	rtw89_write32_mask(rtwdev, R_AX_AFE_OFF_CTRL1, B_AX_S1_LDO_VSEL_F_MASK, 0x1);
2864 
2865 	ret = rtw89_mac_write_xtal_si(rtwdev, XTAL0, 0x7, FULL_BIT_MASK);
2866 	if (ret)
2867 		return ret;
2868 
2869 	ret = rtw89_mac_write_xtal_si(rtwdev, XTAL_SI_ANAPAR_WL, 0x6c, FULL_BIT_MASK);
2870 	if (ret)
2871 		return ret;
2872 
2873 	ret = rtw89_mac_write_xtal_si(rtwdev, XTAL_SI_WL_RFC_S0, 0xc7, FULL_BIT_MASK);
2874 	if (ret)
2875 		return ret;
2876 
2877 	ret = rtw89_mac_write_xtal_si(rtwdev, XTAL_SI_WL_RFC_S1, 0xc7, FULL_BIT_MASK);
2878 	if (ret)
2879 		return ret;
2880 
2881 	ret = rtw89_mac_write_xtal_si(rtwdev, XTAL3, 0xd, FULL_BIT_MASK);
2882 	if (ret)
2883 		return ret;
2884 
2885 	return 0;
2886 }
2887 
2888 static void rtw8852c_mac_disable_bb_rf(struct rtw89_dev *rtwdev)
2889 {
2890 	rtw89_write8_clr(rtwdev, R_AX_SYS_FUNC_EN,
2891 			 B_AX_FEN_BBRSTB | B_AX_FEN_BB_GLB_RSTN);
2892 }
2893 
2894 static const struct rtw89_chip_ops rtw8852c_chip_ops = {
2895 	.enable_bb_rf		= rtw8852c_mac_enable_bb_rf,
2896 	.disable_bb_rf		= rtw8852c_mac_disable_bb_rf,
2897 	.bb_reset		= rtw8852c_bb_reset,
2898 	.bb_sethw		= rtw8852c_bb_sethw,
2899 	.read_rf		= rtw89_phy_read_rf_v1,
2900 	.write_rf		= rtw89_phy_write_rf_v1,
2901 	.set_channel		= rtw8852c_set_channel,
2902 	.set_channel_help	= rtw8852c_set_channel_help,
2903 	.read_efuse		= rtw8852c_read_efuse,
2904 	.read_phycap		= rtw8852c_read_phycap,
2905 	.fem_setup		= NULL,
2906 	.rfk_init		= rtw8852c_rfk_init,
2907 	.rfk_channel		= rtw8852c_rfk_channel,
2908 	.rfk_band_changed	= rtw8852c_rfk_band_changed,
2909 	.rfk_scan		= rtw8852c_rfk_scan,
2910 	.rfk_track		= rtw8852c_rfk_track,
2911 	.power_trim		= rtw8852c_power_trim,
2912 	.set_txpwr		= rtw8852c_set_txpwr,
2913 	.set_txpwr_ctrl		= rtw8852c_set_txpwr_ctrl,
2914 	.init_txpwr_unit	= rtw8852c_init_txpwr_unit,
2915 	.get_thermal		= rtw8852c_get_thermal,
2916 	.ctrl_btg		= rtw8852c_ctrl_btg,
2917 	.query_ppdu		= rtw8852c_query_ppdu,
2918 	.bb_ctrl_btc_preagc	= rtw8852c_bb_ctrl_btc_preagc,
2919 	.cfg_txrx_path		= rtw8852c_bb_cfg_txrx_path,
2920 	.set_txpwr_ul_tb_offset	= rtw8852c_set_txpwr_ul_tb_offset,
2921 	.pwr_on_func		= rtw8852c_pwr_on_func,
2922 	.pwr_off_func		= rtw8852c_pwr_off_func,
2923 	.fill_txdesc		= rtw89_core_fill_txdesc_v1,
2924 	.fill_txdesc_fwcmd	= rtw89_core_fill_txdesc_fwcmd_v1,
2925 	.cfg_ctrl_path		= rtw89_mac_cfg_ctrl_path_v1,
2926 	.mac_cfg_gnt		= rtw89_mac_cfg_gnt_v1,
2927 	.stop_sch_tx		= rtw89_mac_stop_sch_tx_v1,
2928 	.resume_sch_tx		= rtw89_mac_resume_sch_tx_v1,
2929 	.h2c_dctl_sec_cam	= rtw89_fw_h2c_dctl_sec_cam_v1,
2930 
2931 	.btc_set_rfe		= rtw8852c_btc_set_rfe,
2932 	.btc_init_cfg		= rtw8852c_btc_init_cfg,
2933 	.btc_set_wl_pri		= rtw8852c_btc_set_wl_pri,
2934 	.btc_set_wl_txpwr_ctrl	= rtw8852c_btc_set_wl_txpwr_ctrl,
2935 	.btc_get_bt_rssi	= rtw8852c_btc_get_bt_rssi,
2936 	.btc_bt_aci_imp		= rtw8852c_btc_bt_aci_imp,
2937 	.btc_update_bt_cnt	= rtw8852c_btc_update_bt_cnt,
2938 	.btc_wl_s1_standby	= rtw8852c_btc_wl_s1_standby,
2939 	.btc_set_policy		= rtw89_btc_set_policy_v1,
2940 };
2941 
2942 const struct rtw89_chip_info rtw8852c_chip_info = {
2943 	.chip_id		= RTL8852C,
2944 	.ops			= &rtw8852c_chip_ops,
2945 	.fw_name		= "rtw89/rtw8852c_fw.bin",
2946 	.fifo_size		= 458752,
2947 	.max_amsdu_limit	= 8000,
2948 	.dis_2g_40m_ul_ofdma	= false,
2949 	.rsvd_ple_ofst		= 0x6f800,
2950 	.hfc_param_ini		= rtw8852c_hfc_param_ini_pcie,
2951 	.dle_mem		= rtw8852c_dle_mem_pcie,
2952 	.rf_base_addr		= {0xe000, 0xf000},
2953 	.pwr_on_seq		= NULL,
2954 	.pwr_off_seq		= NULL,
2955 	.bb_table		= &rtw89_8852c_phy_bb_table,
2956 	.bb_gain_table		= &rtw89_8852c_phy_bb_gain_table,
2957 	.rf_table		= {&rtw89_8852c_phy_radiob_table,
2958 				   &rtw89_8852c_phy_radioa_table,},
2959 	.nctl_table		= &rtw89_8852c_phy_nctl_table,
2960 	.byr_table		= &rtw89_8852c_byr_table,
2961 	.txpwr_lmt_2g		= &rtw89_8852c_txpwr_lmt_2g,
2962 	.txpwr_lmt_5g		= &rtw89_8852c_txpwr_lmt_5g,
2963 	.txpwr_lmt_6g		= &rtw89_8852c_txpwr_lmt_6g,
2964 	.txpwr_lmt_ru_2g	= &rtw89_8852c_txpwr_lmt_ru_2g,
2965 	.txpwr_lmt_ru_5g	= &rtw89_8852c_txpwr_lmt_ru_5g,
2966 	.txpwr_lmt_ru_6g	= &rtw89_8852c_txpwr_lmt_ru_6g,
2967 	.txpwr_factor_rf	= 2,
2968 	.txpwr_factor_mac	= 1,
2969 	.dig_table		= NULL,
2970 	.tssi_dbw_table		= &rtw89_8852c_tssi_dbw_table,
2971 	.support_chanctx_num	= 1,
2972 	.support_bands		= BIT(NL80211_BAND_2GHZ) |
2973 				  BIT(NL80211_BAND_5GHZ) |
2974 				  BIT(NL80211_BAND_6GHZ),
2975 	.support_bw160		= true,
2976 	.hw_sec_hdr		= true,
2977 	.rf_path_num		= 2,
2978 	.tx_nss			= 2,
2979 	.rx_nss			= 2,
2980 	.acam_num		= 128,
2981 	.bcam_num		= 20,
2982 	.scam_num		= 128,
2983 	.bacam_num		= 8,
2984 	.bacam_dynamic_num	= 8,
2985 	.bacam_v1		= true,
2986 	.sec_ctrl_efuse_size	= 4,
2987 	.physical_efuse_size	= 1216,
2988 	.logical_efuse_size	= 2048,
2989 	.limit_efuse_size	= 1280,
2990 	.dav_phy_efuse_size	= 96,
2991 	.dav_log_efuse_size	= 16,
2992 	.phycap_addr		= 0x590,
2993 	.phycap_size		= 0x60,
2994 	.para_ver		= 0x05050764,
2995 	.wlcx_desired		= 0x05050000,
2996 	.btcx_desired		= 0x5,
2997 	.scbd			= 0x1,
2998 	.mailbox		= 0x1,
2999 
3000 	.fcxbtcrpt_ver		= 4,
3001 	.fcxtdma_ver		= 3,
3002 	.fcxslots_ver		= 1,
3003 	.fcxcysta_ver		= 3,
3004 	.fcxstep_ver		= 3,
3005 	.fcxnullsta_ver		= 2,
3006 	.fcxmreg_ver		= 1,
3007 	.fcxgpiodbg_ver		= 1,
3008 	.fcxbtver_ver		= 1,
3009 	.fcxbtscan_ver		= 1,
3010 	.fcxbtafh_ver		= 1,
3011 	.fcxbtdevinfo_ver	= 1,
3012 
3013 	.afh_guard_ch		= 6,
3014 	.wl_rssi_thres		= rtw89_btc_8852c_wl_rssi_thres,
3015 	.bt_rssi_thres		= rtw89_btc_8852c_bt_rssi_thres,
3016 	.rssi_tol		= 2,
3017 	.mon_reg_num		= ARRAY_SIZE(rtw89_btc_8852c_mon_reg),
3018 	.mon_reg		= rtw89_btc_8852c_mon_reg,
3019 	.rf_para_ulink_num	= ARRAY_SIZE(rtw89_btc_8852c_rf_ul),
3020 	.rf_para_ulink		= rtw89_btc_8852c_rf_ul,
3021 	.rf_para_dlink_num	= ARRAY_SIZE(rtw89_btc_8852c_rf_dl),
3022 	.rf_para_dlink		= rtw89_btc_8852c_rf_dl,
3023 	.ps_mode_supported	= 0,
3024 	.low_power_hci_modes	= BIT(RTW89_PS_MODE_CLK_GATED) |
3025 				  BIT(RTW89_PS_MODE_PWR_GATED),
3026 	.h2c_cctl_func_id	= H2C_FUNC_MAC_CCTLINFO_UD_V1,
3027 	.hci_func_en_addr	= R_AX_HCI_FUNC_EN_V1,
3028 	.h2c_desc_size		= sizeof(struct rtw89_rxdesc_short),
3029 	.txwd_body_size		= sizeof(struct rtw89_txwd_body_v1),
3030 	.h2c_ctrl_reg		= R_AX_H2CREG_CTRL_V1,
3031 	.h2c_regs		= rtw8852c_h2c_regs,
3032 	.c2h_ctrl_reg		= R_AX_C2HREG_CTRL_V1,
3033 	.c2h_regs		= rtw8852c_c2h_regs,
3034 	.page_regs		= &rtw8852c_page_regs,
3035 	.dcfo_comp		= &rtw8852c_dcfo_comp,
3036 	.dcfo_comp_sft		= 5,
3037 	.imr_info		= &rtw8852c_imr_info
3038 };
3039 EXPORT_SYMBOL(rtw8852c_chip_info);
3040 
3041 MODULE_FIRMWARE("rtw89/rtw8852c_fw.bin");
3042 MODULE_AUTHOR("Realtek Corporation");
3043 MODULE_DESCRIPTION("Realtek 802.11ax wireless 8852C driver");
3044 MODULE_LICENSE("Dual BSD/GPL");
3045