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8#include "odm_precomp.h"
9
10#define READ_AND_CONFIG READ_AND_CONFIG_MP
11
12#define READ_AND_CONFIG_MP(ic, txt) (ODM_ReadAndConfig##txt##ic(dm_odm))
13#define READ_AND_CONFIG_TC(ic, txt) (ODM_ReadAndConfig_TC##txt##ic(dm_odm))
14
15static u8 odm_query_rxpwrpercentage(s8 antpower)
16{
17 if ((antpower <= -100) || (antpower >= 20))
18 return 0;
19 else if (antpower >= 0)
20 return 100;
21 else
22 return 100 + antpower;
23}
24
25
26
27static s32 odm_signal_scale_mapping(struct odm_dm_struct *dm_odm, s32 currsig)
28{
29 s32 retsig = 0;
30
31 if (currsig >= 51 && currsig <= 100)
32 retsig = 100;
33 else if (currsig >= 41 && currsig <= 50)
34 retsig = 80 + ((currsig - 40) * 2);
35 else if (currsig >= 31 && currsig <= 40)
36 retsig = 66 + (currsig - 30);
37 else if (currsig >= 21 && currsig <= 30)
38 retsig = 54 + (currsig - 20);
39 else if (currsig >= 10 && currsig <= 20)
40 retsig = 42 + (((currsig - 10) * 2) / 3);
41 else if (currsig >= 5 && currsig <= 9)
42 retsig = 22 + (((currsig - 5) * 3) / 2);
43 else if (currsig >= 1 && currsig <= 4)
44 retsig = 6 + (((currsig - 1) * 3) / 2);
45 else
46 retsig = currsig;
47
48 return retsig;
49}
50
51static u8 odm_evm_db_to_percentage(s8 value)
52{
53
54 s8 ret_val = clamp(-value, 0, 33) * 3;
55
56 if (ret_val == 99)
57 ret_val = 100;
58
59 return ret_val;
60}
61
62static void odm_RxPhyStatus92CSeries_Parsing(struct odm_dm_struct *dm_odm,
63 struct odm_phy_status_info *pPhyInfo,
64 u8 *pPhyStatus,
65 struct odm_per_pkt_info *pPktinfo)
66{
67 struct sw_ant_switch *pDM_SWAT_Table = &dm_odm->DM_SWAT_Table;
68 u8 i, max_spatial_stream;
69 s8 rx_pwr[4], rx_pwr_all = 0;
70 u8 EVM, PWDB_ALL = 0, PWDB_ALL_BT;
71 u8 RSSI, total_rssi = 0;
72 bool is_cck_rate;
73 u8 rf_rx_num = 0;
74 u8 cck_highpwr = 0;
75 u8 LNA_idx, VGA_idx;
76
77 struct phy_status_rpt *pPhyStaRpt = (struct phy_status_rpt *)pPhyStatus;
78
79 is_cck_rate = pPktinfo->Rate >= DESC92C_RATE1M &&
80 pPktinfo->Rate <= DESC92C_RATE11M;
81
82 pPhyInfo->RxMIMOSignalQuality[RF_PATH_A] = -1;
83 pPhyInfo->RxMIMOSignalQuality[RF_PATH_B] = -1;
84
85 if (is_cck_rate) {
86 u8 cck_agc_rpt;
87
88 dm_odm->PhyDbgInfo.NumQryPhyStatusCCK++;
89
90
91
92 cck_highpwr = dm_odm->bCckHighPower;
93
94 cck_agc_rpt = pPhyStaRpt->cck_agc_rpt_ofdm_cfosho_a;
95
96
97
98
99 LNA_idx = (cck_agc_rpt & 0xE0) >> 5;
100 VGA_idx = cck_agc_rpt & 0x1F;
101 switch (LNA_idx) {
102 case 7:
103 if (VGA_idx <= 27)
104 rx_pwr_all = -100 + 2 * (27 - VGA_idx);
105 else
106 rx_pwr_all = -100;
107 break;
108 case 6:
109 rx_pwr_all = -48 + 2 * (2 - VGA_idx);
110 break;
111 case 5:
112 rx_pwr_all = -42 + 2 * (7 - VGA_idx);
113 break;
114 case 4:
115 rx_pwr_all = -36 + 2 * (7 - VGA_idx);
116 break;
117 case 3:
118 rx_pwr_all = -24 + 2 * (7 - VGA_idx);
119 break;
120 case 2:
121 if (cck_highpwr)
122 rx_pwr_all = -12 + 2 * (5 - VGA_idx);
123 else
124 rx_pwr_all = -6 + 2 * (5 - VGA_idx);
125 break;
126 case 1:
127 rx_pwr_all = 8 - 2 * VGA_idx;
128 break;
129 case 0:
130 rx_pwr_all = 14 - 2 * VGA_idx;
131 break;
132 default:
133 break;
134 }
135 rx_pwr_all += 6;
136 PWDB_ALL = odm_query_rxpwrpercentage(rx_pwr_all);
137 if (!cck_highpwr) {
138 if (PWDB_ALL >= 80)
139 PWDB_ALL = ((PWDB_ALL - 80) << 1) + ((PWDB_ALL - 80) >> 1) + 80;
140 else if ((PWDB_ALL <= 78) && (PWDB_ALL >= 20))
141 PWDB_ALL += 3;
142 if (PWDB_ALL > 100)
143 PWDB_ALL = 100;
144 }
145
146 pPhyInfo->RxPWDBAll = PWDB_ALL;
147 pPhyInfo->BTRxRSSIPercentage = PWDB_ALL;
148 pPhyInfo->RecvSignalPower = rx_pwr_all;
149
150 if (pPktinfo->bPacketMatchBSSID) {
151 u8 SQ, SQ_rpt;
152
153 if (pPhyInfo->RxPWDBAll > 40 && !dm_odm->bInHctTest) {
154 SQ = 100;
155 } else {
156 SQ_rpt = pPhyStaRpt->cck_sig_qual_ofdm_pwdb_all;
157
158 if (SQ_rpt > 64)
159 SQ = 0;
160 else if (SQ_rpt < 20)
161 SQ = 100;
162 else
163 SQ = ((64 - SQ_rpt) * 100) / 44;
164 }
165 pPhyInfo->SignalQuality = SQ;
166 pPhyInfo->RxMIMOSignalQuality[RF_PATH_A] = SQ;
167 pPhyInfo->RxMIMOSignalQuality[RF_PATH_B] = -1;
168 }
169 } else {
170 dm_odm->PhyDbgInfo.NumQryPhyStatusOFDM++;
171
172
173
174 for (i = RF_PATH_A; i < RF_PATH_MAX; i++) {
175
176 if (dm_odm->RFPathRxEnable & BIT(i))
177 rf_rx_num++;
178
179 rx_pwr[i] = ((pPhyStaRpt->path_agc[i].gain & 0x3F) * 2) - 110;
180
181 pPhyInfo->RxPwr[i] = rx_pwr[i];
182
183
184 RSSI = odm_query_rxpwrpercentage(rx_pwr[i]);
185 total_rssi += RSSI;
186
187
188 if (dm_odm->BoardType == ODM_BOARD_HIGHPWR) {
189 if ((pPhyStaRpt->path_agc[i].trsw) == 1)
190 RSSI = (RSSI > 94) ? 100 : (RSSI + 6);
191 else
192 RSSI = (RSSI <= 16) ? (RSSI >> 3) : (RSSI - 16);
193
194 if ((RSSI <= 34) && (RSSI >= 4))
195 RSSI -= 4;
196 }
197
198 pPhyInfo->RxMIMOSignalStrength[i] = (u8)RSSI;
199
200
201 pPhyInfo->RxSNR[i] = (s32)(pPhyStaRpt->path_rxsnr[i] / 2);
202 dm_odm->PhyDbgInfo.RxSNRdB[i] = (s32)(pPhyStaRpt->path_rxsnr[i] / 2);
203 }
204
205 rx_pwr_all = (((pPhyStaRpt->cck_sig_qual_ofdm_pwdb_all) >> 1) & 0x7f) - 110;
206
207 PWDB_ALL = odm_query_rxpwrpercentage(rx_pwr_all);
208 PWDB_ALL_BT = PWDB_ALL;
209
210 pPhyInfo->RxPWDBAll = PWDB_ALL;
211 pPhyInfo->BTRxRSSIPercentage = PWDB_ALL_BT;
212 pPhyInfo->RxPower = rx_pwr_all;
213 pPhyInfo->RecvSignalPower = rx_pwr_all;
214
215
216 if (pPktinfo->Rate >= DESC92C_RATEMCS8 && pPktinfo->Rate <= DESC92C_RATEMCS15)
217 max_spatial_stream = 2;
218 else
219 max_spatial_stream = 1;
220
221 for (i = 0; i < max_spatial_stream; i++) {
222
223
224
225 EVM = odm_evm_db_to_percentage((pPhyStaRpt->stream_rxevm[i]));
226
227 if (pPktinfo->bPacketMatchBSSID) {
228 if (i == RF_PATH_A)
229 pPhyInfo->SignalQuality = (u8)(EVM & 0xff);
230 pPhyInfo->RxMIMOSignalQuality[i] = (u8)(EVM & 0xff);
231 }
232 }
233 }
234
235
236 if (is_cck_rate) {
237 pPhyInfo->SignalStrength = (u8)(odm_signal_scale_mapping(dm_odm, PWDB_ALL));
238 } else {
239 if (rf_rx_num != 0)
240 pPhyInfo->SignalStrength = (u8)(odm_signal_scale_mapping(dm_odm, total_rssi /= rf_rx_num));
241 }
242
243
244 pDM_SWAT_Table->antsel = pPhyStaRpt->ant_sel;
245
246 dm_odm->DM_FatTable.antsel_rx_keep_0 = pPhyStaRpt->ant_sel;
247 dm_odm->DM_FatTable.antsel_rx_keep_1 = pPhyStaRpt->ant_sel_b;
248 dm_odm->DM_FatTable.antsel_rx_keep_2 = pPhyStaRpt->antsel_rx_keep_2;
249}
250
251static void odm_Process_RSSIForDM(struct odm_dm_struct *dm_odm,
252 struct odm_phy_status_info *pPhyInfo,
253 struct odm_per_pkt_info *pPktinfo)
254{
255 s32 UndecoratedSmoothedPWDB, UndecoratedSmoothedCCK;
256 s32 UndecoratedSmoothedOFDM, RSSI_Ave;
257 bool is_cck_rate;
258 u8 RSSI_max, RSSI_min, i;
259 u32 OFDM_pkt = 0;
260 u32 Weighting = 0;
261 struct sta_info *pEntry;
262 u8 antsel_tr_mux;
263 struct fast_ant_train *pDM_FatTable = &dm_odm->DM_FatTable;
264
265 if (pPktinfo->StationID == 0xFF)
266 return;
267 pEntry = dm_odm->pODM_StaInfo[pPktinfo->StationID];
268 if (!IS_STA_VALID(pEntry))
269 return;
270 if ((!pPktinfo->bPacketMatchBSSID))
271 return;
272
273 is_cck_rate = pPktinfo->Rate >= DESC92C_RATE1M &&
274 pPktinfo->Rate <= DESC92C_RATE11M;
275
276
277
278 if (dm_odm->AntDivType == CG_TRX_SMART_ANTDIV) {
279 if (pDM_FatTable->FAT_State == FAT_TRAINING_STATE) {
280 if (pPktinfo->bPacketToSelf) {
281 antsel_tr_mux = (pDM_FatTable->antsel_rx_keep_2 << 2) |
282 (pDM_FatTable->antsel_rx_keep_1 << 1) |
283 pDM_FatTable->antsel_rx_keep_0;
284 pDM_FatTable->antSumRSSI[antsel_tr_mux] += pPhyInfo->RxPWDBAll;
285 pDM_FatTable->antRSSIcnt[antsel_tr_mux]++;
286 }
287 }
288 } else if ((dm_odm->AntDivType == CG_TRX_HW_ANTDIV) || (dm_odm->AntDivType == CGCS_RX_HW_ANTDIV)) {
289 if (pPktinfo->bPacketToSelf || pPktinfo->bPacketBeacon) {
290 antsel_tr_mux = (pDM_FatTable->antsel_rx_keep_2 << 2) |
291 (pDM_FatTable->antsel_rx_keep_1 << 1) | pDM_FatTable->antsel_rx_keep_0;
292 rtl88eu_dm_ant_sel_statistics(dm_odm, antsel_tr_mux, pPktinfo->StationID, pPhyInfo->RxPWDBAll);
293 }
294 }
295
296
297 UndecoratedSmoothedCCK = pEntry->rssi_stat.UndecoratedSmoothedCCK;
298 UndecoratedSmoothedOFDM = pEntry->rssi_stat.UndecoratedSmoothedOFDM;
299 UndecoratedSmoothedPWDB = pEntry->rssi_stat.UndecoratedSmoothedPWDB;
300
301 if (pPktinfo->bPacketToSelf || pPktinfo->bPacketBeacon) {
302 if (!is_cck_rate) {
303 if (pPhyInfo->RxMIMOSignalStrength[RF_PATH_B] == 0) {
304 RSSI_Ave = pPhyInfo->RxMIMOSignalStrength[RF_PATH_A];
305 } else {
306 if (pPhyInfo->RxMIMOSignalStrength[RF_PATH_A] > pPhyInfo->RxMIMOSignalStrength[RF_PATH_B]) {
307 RSSI_max = pPhyInfo->RxMIMOSignalStrength[RF_PATH_A];
308 RSSI_min = pPhyInfo->RxMIMOSignalStrength[RF_PATH_B];
309 } else {
310 RSSI_max = pPhyInfo->RxMIMOSignalStrength[RF_PATH_B];
311 RSSI_min = pPhyInfo->RxMIMOSignalStrength[RF_PATH_A];
312 }
313 if ((RSSI_max - RSSI_min) < 3)
314 RSSI_Ave = RSSI_max;
315 else if ((RSSI_max - RSSI_min) < 6)
316 RSSI_Ave = RSSI_max - 1;
317 else if ((RSSI_max - RSSI_min) < 10)
318 RSSI_Ave = RSSI_max - 2;
319 else
320 RSSI_Ave = RSSI_max - 3;
321 }
322
323
324 if (UndecoratedSmoothedOFDM <= 0) {
325 UndecoratedSmoothedOFDM = pPhyInfo->RxPWDBAll;
326 } else {
327 if (pPhyInfo->RxPWDBAll > (u32)UndecoratedSmoothedOFDM) {
328 UndecoratedSmoothedOFDM =
329 (((UndecoratedSmoothedOFDM) * (Rx_Smooth_Factor - 1)) +
330 (RSSI_Ave)) / (Rx_Smooth_Factor);
331 UndecoratedSmoothedOFDM = UndecoratedSmoothedOFDM + 1;
332 } else {
333 UndecoratedSmoothedOFDM =
334 (((UndecoratedSmoothedOFDM) * (Rx_Smooth_Factor - 1)) +
335 (RSSI_Ave)) / (Rx_Smooth_Factor);
336 }
337 }
338
339 pEntry->rssi_stat.PacketMap = (pEntry->rssi_stat.PacketMap << 1) | BIT(0);
340
341 } else {
342 RSSI_Ave = pPhyInfo->RxPWDBAll;
343
344
345 if (UndecoratedSmoothedCCK <= 0) {
346 UndecoratedSmoothedCCK = pPhyInfo->RxPWDBAll;
347 } else {
348 if (pPhyInfo->RxPWDBAll > (u32)UndecoratedSmoothedCCK) {
349 UndecoratedSmoothedCCK =
350 ((UndecoratedSmoothedCCK * (Rx_Smooth_Factor - 1)) +
351 pPhyInfo->RxPWDBAll) / Rx_Smooth_Factor;
352 UndecoratedSmoothedCCK = UndecoratedSmoothedCCK + 1;
353 } else {
354 UndecoratedSmoothedCCK =
355 ((UndecoratedSmoothedCCK * (Rx_Smooth_Factor - 1)) +
356 pPhyInfo->RxPWDBAll) / Rx_Smooth_Factor;
357 }
358 }
359 pEntry->rssi_stat.PacketMap = pEntry->rssi_stat.PacketMap << 1;
360 }
361
362 if (pEntry->rssi_stat.ValidBit >= 64)
363 pEntry->rssi_stat.ValidBit = 64;
364 else
365 pEntry->rssi_stat.ValidBit++;
366
367 for (i = 0; i < pEntry->rssi_stat.ValidBit; i++)
368 OFDM_pkt += (u8)(pEntry->rssi_stat.PacketMap >> i) & BIT(0);
369
370 if (pEntry->rssi_stat.ValidBit == 64) {
371 Weighting = min_t(u32, OFDM_pkt << 4, 64);
372 UndecoratedSmoothedPWDB = (Weighting * UndecoratedSmoothedOFDM + (64 - Weighting) * UndecoratedSmoothedCCK) >> 6;
373 } else {
374 if (pEntry->rssi_stat.ValidBit != 0)
375 UndecoratedSmoothedPWDB = (OFDM_pkt * UndecoratedSmoothedOFDM +
376 (pEntry->rssi_stat.ValidBit - OFDM_pkt) *
377 UndecoratedSmoothedCCK) / pEntry->rssi_stat.ValidBit;
378 else
379 UndecoratedSmoothedPWDB = 0;
380 }
381 pEntry->rssi_stat.UndecoratedSmoothedCCK = UndecoratedSmoothedCCK;
382 pEntry->rssi_stat.UndecoratedSmoothedOFDM = UndecoratedSmoothedOFDM;
383 pEntry->rssi_stat.UndecoratedSmoothedPWDB = UndecoratedSmoothedPWDB;
384 }
385}
386
387
388void ODM_PhyStatusQuery(struct odm_dm_struct *dm_odm,
389 struct odm_phy_status_info *pPhyInfo,
390 u8 *pPhyStatus, struct odm_per_pkt_info *pPktinfo)
391{
392 odm_RxPhyStatus92CSeries_Parsing(dm_odm, pPhyInfo, pPhyStatus,
393 pPktinfo);
394 if (dm_odm->RSSI_test)
395 ;
396 else
397 odm_Process_RSSIForDM(dm_odm, pPhyInfo, pPktinfo);
398}
399