dm.c 98 KB

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  1. /******************************************************************************
  2. *
  3. * Copyright(c) 2009-2010 Realtek Corporation.
  4. *
  5. * This program is free software; you can redistribute it and/or modify it
  6. * under the terms of version 2 of the GNU General Public License as
  7. * published by the Free Software Foundation.
  8. *
  9. * This program is distributed in the hope that it will be useful, but WITHOUT
  10. * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
  11. * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
  12. * more details.
  13. *
  14. * The full GNU General Public License is included in this distribution in the
  15. * file called LICENSE.
  16. *
  17. * Contact Information:
  18. * wlanfae <wlanfae@realtek.com>
  19. * Realtek Corporation, No. 2, Innovation Road II, Hsinchu Science Park,
  20. * Hsinchu 300, Taiwan.
  21. *
  22. * Larry Finger <Larry.Finger@lwfinger.net>
  23. *
  24. *****************************************************************************/
  25. #include "../wifi.h"
  26. #include "../base.h"
  27. #include "../pci.h"
  28. #include "reg.h"
  29. #include "def.h"
  30. #include "phy.h"
  31. #include "dm.h"
  32. #include "fw.h"
  33. #include "trx.h"
  34. #include "../btcoexist/rtl_btc.h"
  35. static const u32 txscaling_tbl[TXSCALE_TABLE_SIZE] = {
  36. 0x081, /* 0, -12.0dB */
  37. 0x088, /* 1, -11.5dB */
  38. 0x090, /* 2, -11.0dB */
  39. 0x099, /* 3, -10.5dB */
  40. 0x0A2, /* 4, -10.0dB */
  41. 0x0AC, /* 5, -9.5dB */
  42. 0x0B6, /* 6, -9.0dB */
  43. 0x0C0, /* 7, -8.5dB */
  44. 0x0CC, /* 8, -8.0dB */
  45. 0x0D8, /* 9, -7.5dB */
  46. 0x0E5, /* 10, -7.0dB */
  47. 0x0F2, /* 11, -6.5dB */
  48. 0x101, /* 12, -6.0dB */
  49. 0x110, /* 13, -5.5dB */
  50. 0x120, /* 14, -5.0dB */
  51. 0x131, /* 15, -4.5dB */
  52. 0x143, /* 16, -4.0dB */
  53. 0x156, /* 17, -3.5dB */
  54. 0x16A, /* 18, -3.0dB */
  55. 0x180, /* 19, -2.5dB */
  56. 0x197, /* 20, -2.0dB */
  57. 0x1AF, /* 21, -1.5dB */
  58. 0x1C8, /* 22, -1.0dB */
  59. 0x1E3, /* 23, -0.5dB */
  60. 0x200, /* 24, +0 dB */
  61. 0x21E, /* 25, +0.5dB */
  62. 0x23E, /* 26, +1.0dB */
  63. 0x261, /* 27, +1.5dB */
  64. 0x285, /* 28, +2.0dB */
  65. 0x2AB, /* 29, +2.5dB */
  66. 0x2D3, /* 30, +3.0dB */
  67. 0x2FE, /* 31, +3.5dB */
  68. 0x32B, /* 32, +4.0dB */
  69. 0x35C, /* 33, +4.5dB */
  70. 0x38E, /* 34, +5.0dB */
  71. 0x3C4, /* 35, +5.5dB */
  72. 0x3FE /* 36, +6.0dB */
  73. };
  74. static const u32 rtl8821ae_txscaling_table[TXSCALE_TABLE_SIZE] = {
  75. 0x081, /* 0, -12.0dB */
  76. 0x088, /* 1, -11.5dB */
  77. 0x090, /* 2, -11.0dB */
  78. 0x099, /* 3, -10.5dB */
  79. 0x0A2, /* 4, -10.0dB */
  80. 0x0AC, /* 5, -9.5dB */
  81. 0x0B6, /* 6, -9.0dB */
  82. 0x0C0, /* 7, -8.5dB */
  83. 0x0CC, /* 8, -8.0dB */
  84. 0x0D8, /* 9, -7.5dB */
  85. 0x0E5, /* 10, -7.0dB */
  86. 0x0F2, /* 11, -6.5dB */
  87. 0x101, /* 12, -6.0dB */
  88. 0x110, /* 13, -5.5dB */
  89. 0x120, /* 14, -5.0dB */
  90. 0x131, /* 15, -4.5dB */
  91. 0x143, /* 16, -4.0dB */
  92. 0x156, /* 17, -3.5dB */
  93. 0x16A, /* 18, -3.0dB */
  94. 0x180, /* 19, -2.5dB */
  95. 0x197, /* 20, -2.0dB */
  96. 0x1AF, /* 21, -1.5dB */
  97. 0x1C8, /* 22, -1.0dB */
  98. 0x1E3, /* 23, -0.5dB */
  99. 0x200, /* 24, +0 dB */
  100. 0x21E, /* 25, +0.5dB */
  101. 0x23E, /* 26, +1.0dB */
  102. 0x261, /* 27, +1.5dB */
  103. 0x285, /* 28, +2.0dB */
  104. 0x2AB, /* 29, +2.5dB */
  105. 0x2D3, /* 30, +3.0dB */
  106. 0x2FE, /* 31, +3.5dB */
  107. 0x32B, /* 32, +4.0dB */
  108. 0x35C, /* 33, +4.5dB */
  109. 0x38E, /* 34, +5.0dB */
  110. 0x3C4, /* 35, +5.5dB */
  111. 0x3FE /* 36, +6.0dB */
  112. };
  113. static const u32 ofdmswing_table[] = {
  114. 0x0b40002d, /* 0, -15.0dB */
  115. 0x0c000030, /* 1, -14.5dB */
  116. 0x0cc00033, /* 2, -14.0dB */
  117. 0x0d800036, /* 3, -13.5dB */
  118. 0x0e400039, /* 4, -13.0dB */
  119. 0x0f00003c, /* 5, -12.5dB */
  120. 0x10000040, /* 6, -12.0dB */
  121. 0x11000044, /* 7, -11.5dB */
  122. 0x12000048, /* 8, -11.0dB */
  123. 0x1300004c, /* 9, -10.5dB */
  124. 0x14400051, /* 10, -10.0dB */
  125. 0x15800056, /* 11, -9.5dB */
  126. 0x16c0005b, /* 12, -9.0dB */
  127. 0x18000060, /* 13, -8.5dB */
  128. 0x19800066, /* 14, -8.0dB */
  129. 0x1b00006c, /* 15, -7.5dB */
  130. 0x1c800072, /* 16, -7.0dB */
  131. 0x1e400079, /* 17, -6.5dB */
  132. 0x20000080, /* 18, -6.0dB */
  133. 0x22000088, /* 19, -5.5dB */
  134. 0x24000090, /* 20, -5.0dB */
  135. 0x26000098, /* 21, -4.5dB */
  136. 0x288000a2, /* 22, -4.0dB */
  137. 0x2ac000ab, /* 23, -3.5dB */
  138. 0x2d4000b5, /* 24, -3.0dB */
  139. 0x300000c0, /* 25, -2.5dB */
  140. 0x32c000cb, /* 26, -2.0dB */
  141. 0x35c000d7, /* 27, -1.5dB */
  142. 0x390000e4, /* 28, -1.0dB */
  143. 0x3c8000f2, /* 29, -0.5dB */
  144. 0x40000100, /* 30, +0dB */
  145. 0x43c0010f, /* 31, +0.5dB */
  146. 0x47c0011f, /* 32, +1.0dB */
  147. 0x4c000130, /* 33, +1.5dB */
  148. 0x50800142, /* 34, +2.0dB */
  149. 0x55400155, /* 35, +2.5dB */
  150. 0x5a400169, /* 36, +3.0dB */
  151. 0x5fc0017f, /* 37, +3.5dB */
  152. 0x65400195, /* 38, +4.0dB */
  153. 0x6b8001ae, /* 39, +4.5dB */
  154. 0x71c001c7, /* 40, +5.0dB */
  155. 0x788001e2, /* 41, +5.5dB */
  156. 0x7f8001fe /* 42, +6.0dB */
  157. };
  158. static const u8 cckswing_table_ch1ch13[CCK_TABLE_SIZE][8] = {
  159. {0x09, 0x08, 0x07, 0x06, 0x04, 0x03, 0x01, 0x01}, /* 0, -16.0dB */
  160. {0x09, 0x09, 0x08, 0x06, 0x05, 0x03, 0x01, 0x01}, /* 1, -15.5dB */
  161. {0x0a, 0x09, 0x08, 0x07, 0x05, 0x03, 0x02, 0x01}, /* 2, -15.0dB */
  162. {0x0a, 0x0a, 0x09, 0x07, 0x05, 0x03, 0x02, 0x01}, /* 3, -14.5dB */
  163. {0x0b, 0x0a, 0x09, 0x08, 0x06, 0x04, 0x02, 0x01}, /* 4, -14.0dB */
  164. {0x0b, 0x0b, 0x0a, 0x08, 0x06, 0x04, 0x02, 0x01}, /* 5, -13.5dB */
  165. {0x0c, 0x0c, 0x0a, 0x09, 0x06, 0x04, 0x02, 0x01}, /* 6, -13.0dB */
  166. {0x0d, 0x0c, 0x0b, 0x09, 0x07, 0x04, 0x02, 0x01}, /* 7, -12.5dB */
  167. {0x0d, 0x0d, 0x0c, 0x0a, 0x07, 0x05, 0x02, 0x01}, /* 8, -12.0dB */
  168. {0x0e, 0x0e, 0x0c, 0x0a, 0x08, 0x05, 0x02, 0x01}, /* 9, -11.5dB */
  169. {0x0f, 0x0f, 0x0d, 0x0b, 0x08, 0x05, 0x03, 0x01}, /* 10, -11.0dB */
  170. {0x10, 0x10, 0x0e, 0x0b, 0x08, 0x05, 0x03, 0x01}, /* 11, -10.5dB */
  171. {0x11, 0x11, 0x0f, 0x0c, 0x09, 0x06, 0x03, 0x01}, /* 12, -10.0dB */
  172. {0x12, 0x12, 0x0f, 0x0c, 0x09, 0x06, 0x03, 0x01}, /* 13, -9.5dB */
  173. {0x13, 0x13, 0x10, 0x0d, 0x0a, 0x06, 0x03, 0x01}, /* 14, -9.0dB */
  174. {0x14, 0x14, 0x11, 0x0e, 0x0b, 0x07, 0x03, 0x02}, /* 15, -8.5dB */
  175. {0x16, 0x15, 0x12, 0x0f, 0x0b, 0x07, 0x04, 0x01}, /* 16, -8.0dB */
  176. {0x17, 0x16, 0x13, 0x10, 0x0c, 0x08, 0x04, 0x02}, /* 17, -7.5dB */
  177. {0x18, 0x17, 0x15, 0x11, 0x0c, 0x08, 0x04, 0x02}, /* 18, -7.0dB */
  178. {0x1a, 0x19, 0x16, 0x12, 0x0d, 0x09, 0x04, 0x02}, /* 19, -6.5dB */
  179. {0x1b, 0x1a, 0x17, 0x13, 0x0e, 0x09, 0x04, 0x02}, /* 20, -6.0dB */
  180. {0x1d, 0x1c, 0x18, 0x14, 0x0f, 0x0a, 0x05, 0x02}, /* 21, -5.5dB */
  181. {0x1f, 0x1e, 0x1a, 0x15, 0x10, 0x0a, 0x05, 0x02}, /* 22, -5.0dB */
  182. {0x20, 0x20, 0x1b, 0x16, 0x11, 0x08, 0x05, 0x02}, /* 23, -4.5dB */
  183. {0x22, 0x21, 0x1d, 0x18, 0x11, 0x0b, 0x06, 0x02}, /* 24, -4.0dB */
  184. {0x24, 0x23, 0x1f, 0x19, 0x13, 0x0c, 0x06, 0x03}, /* 25, -3.5dB */
  185. {0x26, 0x25, 0x21, 0x1b, 0x14, 0x0d, 0x06, 0x03}, /* 26, -3.0dB */
  186. {0x28, 0x28, 0x22, 0x1c, 0x15, 0x0d, 0x07, 0x03}, /* 27, -2.5dB */
  187. {0x2b, 0x2a, 0x25, 0x1e, 0x16, 0x0e, 0x07, 0x03}, /* 28, -2.0dB */
  188. {0x2d, 0x2d, 0x27, 0x1f, 0x18, 0x0f, 0x08, 0x03}, /* 29, -1.5dB */
  189. {0x30, 0x2f, 0x29, 0x21, 0x19, 0x10, 0x08, 0x03}, /* 30, -1.0dB */
  190. {0x33, 0x32, 0x2b, 0x23, 0x1a, 0x11, 0x08, 0x04}, /* 31, -0.5dB */
  191. {0x36, 0x35, 0x2e, 0x25, 0x1c, 0x12, 0x09, 0x04} /* 32, +0dB */
  192. };
  193. static const u8 cckswing_table_ch14[CCK_TABLE_SIZE][8] = {
  194. {0x09, 0x08, 0x07, 0x04, 0x00, 0x00, 0x00, 0x00}, /* 0, -16.0dB */
  195. {0x09, 0x09, 0x08, 0x05, 0x00, 0x00, 0x00, 0x00}, /* 1, -15.5dB */
  196. {0x0a, 0x09, 0x08, 0x05, 0x00, 0x00, 0x00, 0x00}, /* 2, -15.0dB */
  197. {0x0a, 0x0a, 0x09, 0x05, 0x00, 0x00, 0x00, 0x00}, /* 3, -14.5dB */
  198. {0x0b, 0x0a, 0x09, 0x05, 0x00, 0x00, 0x00, 0x00}, /* 4, -14.0dB */
  199. {0x0b, 0x0b, 0x0a, 0x06, 0x00, 0x00, 0x00, 0x00}, /* 5, -13.5dB */
  200. {0x0c, 0x0c, 0x0a, 0x06, 0x00, 0x00, 0x00, 0x00}, /* 6, -13.0dB */
  201. {0x0d, 0x0c, 0x0b, 0x06, 0x00, 0x00, 0x00, 0x00}, /* 7, -12.5dB */
  202. {0x0d, 0x0d, 0x0c, 0x07, 0x00, 0x00, 0x00, 0x00}, /* 8, -12.0dB */
  203. {0x0e, 0x0e, 0x0c, 0x07, 0x00, 0x00, 0x00, 0x00}, /* 9, -11.5dB */
  204. {0x0f, 0x0f, 0x0d, 0x08, 0x00, 0x00, 0x00, 0x00}, /* 10, -11.0dB */
  205. {0x10, 0x10, 0x0e, 0x08, 0x00, 0x00, 0x00, 0x00}, /* 11, -10.5dB */
  206. {0x11, 0x11, 0x0f, 0x09, 0x00, 0x00, 0x00, 0x00}, /* 12, -10.0dB */
  207. {0x12, 0x12, 0x0f, 0x09, 0x00, 0x00, 0x00, 0x00}, /* 13, -9.5dB */
  208. {0x13, 0x13, 0x10, 0x0a, 0x00, 0x00, 0x00, 0x00}, /* 14, -9.0dB */
  209. {0x14, 0x14, 0x11, 0x0a, 0x00, 0x00, 0x00, 0x00}, /* 15, -8.5dB */
  210. {0x16, 0x15, 0x12, 0x0b, 0x00, 0x00, 0x00, 0x00}, /* 16, -8.0dB */
  211. {0x17, 0x16, 0x13, 0x0b, 0x00, 0x00, 0x00, 0x00}, /* 17, -7.5dB */
  212. {0x18, 0x17, 0x15, 0x0c, 0x00, 0x00, 0x00, 0x00}, /* 18, -7.0dB */
  213. {0x1a, 0x19, 0x16, 0x0d, 0x00, 0x00, 0x00, 0x00}, /* 19, -6.5dB */
  214. {0x1b, 0x1a, 0x17, 0x0e, 0x00, 0x00, 0x00, 0x00}, /* 20, -6.0dB */
  215. {0x1d, 0x1c, 0x18, 0x0e, 0x00, 0x00, 0x00, 0x00}, /* 21, -5.5dB */
  216. {0x1f, 0x1e, 0x1a, 0x0f, 0x00, 0x00, 0x00, 0x00}, /* 22, -5.0dB */
  217. {0x20, 0x20, 0x1b, 0x10, 0x00, 0x00, 0x00, 0x00}, /* 23, -4.5dB */
  218. {0x22, 0x21, 0x1d, 0x11, 0x00, 0x00, 0x00, 0x00}, /* 24, -4.0dB */
  219. {0x24, 0x23, 0x1f, 0x12, 0x00, 0x00, 0x00, 0x00}, /* 25, -3.5dB */
  220. {0x26, 0x25, 0x21, 0x13, 0x00, 0x00, 0x00, 0x00}, /* 26, -3.0dB */
  221. {0x28, 0x28, 0x24, 0x14, 0x00, 0x00, 0x00, 0x00}, /* 27, -2.5dB */
  222. {0x2b, 0x2a, 0x25, 0x15, 0x00, 0x00, 0x00, 0x00}, /* 28, -2.0dB */
  223. {0x2d, 0x2d, 0x17, 0x17, 0x00, 0x00, 0x00, 0x00}, /* 29, -1.5dB */
  224. {0x30, 0x2f, 0x29, 0x18, 0x00, 0x00, 0x00, 0x00}, /* 30, -1.0dB */
  225. {0x33, 0x32, 0x2b, 0x19, 0x00, 0x00, 0x00, 0x00}, /* 31, -0.5dB */
  226. {0x36, 0x35, 0x2e, 0x1b, 0x00, 0x00, 0x00, 0x00} /* 32, +0dB */
  227. };
  228. static const u32 edca_setting_dl[PEER_MAX] = {
  229. 0xa44f, /* 0 UNKNOWN */
  230. 0x5ea44f, /* 1 REALTEK_90 */
  231. 0x5e4322, /* 2 REALTEK_92SE */
  232. 0x5ea42b, /* 3 BROAD */
  233. 0xa44f, /* 4 RAL */
  234. 0xa630, /* 5 ATH */
  235. 0x5ea630, /* 6 CISCO */
  236. 0x5ea42b, /* 7 MARVELL */
  237. };
  238. static const u32 edca_setting_ul[PEER_MAX] = {
  239. 0x5e4322, /* 0 UNKNOWN */
  240. 0xa44f, /* 1 REALTEK_90 */
  241. 0x5ea44f, /* 2 REALTEK_92SE */
  242. 0x5ea32b, /* 3 BROAD */
  243. 0x5ea422, /* 4 RAL */
  244. 0x5ea322, /* 5 ATH */
  245. 0x3ea430, /* 6 CISCO */
  246. 0x5ea44f, /* 7 MARV */
  247. };
  248. static u8 rtl8818e_delta_swing_table_idx_24gb_p[] = {
  249. 0, 0, 0, 0, 1, 1, 2, 2, 3, 3, 4, 4, 4, 4, 4,
  250. 4, 4, 4, 5, 5, 7, 7, 8, 8, 8, 9, 9, 9, 9, 9};
  251. static u8 rtl8818e_delta_swing_table_idx_24gb_n[] = {
  252. 0, 0, 0, 2, 2, 3, 3, 4, 4, 4, 4, 5, 5, 6, 6,
  253. 7, 7, 7, 7, 8, 8, 9, 9, 10, 10, 10, 11, 11, 11, 11};
  254. static u8 rtl8812ae_delta_swing_table_idx_24gb_n[] = {
  255. 0, 1, 1, 1, 2, 2, 2, 3, 3, 3, 4, 4, 5, 5, 5, 6,
  256. 6, 6, 7, 8, 9, 9, 9, 9, 10, 10, 10, 10, 11, 11};
  257. static u8 rtl8812ae_delta_swing_table_idx_24gb_p[] = {
  258. 0, 0, 1, 1, 2, 2, 2, 2, 3, 3, 3, 4, 4, 5, 5, 6,
  259. 6, 6, 7, 7, 7, 8, 8, 8, 9, 9, 9, 9, 9, 9};
  260. static u8 rtl8812ae_delta_swing_table_idx_24ga_n[] = {
  261. 0, 1, 1, 1, 2, 2, 2, 3, 3, 3, 4, 4, 5, 5, 5, 6,
  262. 6, 6, 7, 8, 8, 9, 9, 9, 10, 10, 10, 10, 11, 11};
  263. static u8 rtl8812ae_delta_swing_table_idx_24ga_p[] = {
  264. 0, 0, 1, 1, 2, 2, 2, 2, 3, 3, 3, 4, 4, 5, 5, 6,
  265. 6, 6, 7, 7, 7, 8, 8, 8, 9, 9, 9, 9, 9, 9};
  266. static u8 rtl8812ae_delta_swing_table_idx_24gcckb_n[] = {
  267. 0, 1, 1, 1, 2, 2, 2, 3, 3, 3, 4, 4, 5, 5, 5, 6,
  268. 6, 6, 7, 8, 9, 9, 9, 9, 10, 10, 10, 10, 11, 11};
  269. static u8 rtl8812ae_delta_swing_table_idx_24gcckb_p[] = {
  270. 0, 0, 1, 1, 2, 2, 2, 2, 3, 3, 3, 4, 4, 5, 5, 6,
  271. 6, 6, 7, 7, 7, 8, 8, 8, 9, 9, 9, 9, 9, 9};
  272. static u8 rtl8812ae_delta_swing_table_idx_24gccka_n[] = {
  273. 0, 1, 1, 1, 2, 2, 2, 3, 3, 3, 4, 4, 5, 5, 5, 6,
  274. 6, 6, 7, 8, 8, 9, 9, 9, 10, 10, 10, 10, 11, 11};
  275. static u8 rtl8812ae_delta_swing_table_idx_24gccka_p[] = {
  276. 0, 0, 1, 1, 2, 2, 2, 2, 3, 3, 3, 4, 4, 5, 5, 6,
  277. 6, 6, 7, 7, 7, 8, 8, 8, 9, 9, 9, 9, 9, 9};
  278. static u8 rtl8812ae_delta_swing_table_idx_5gb_n[][DEL_SW_IDX_SZ] = {
  279. {0, 1, 1, 2, 2, 2, 3, 3, 4, 4, 5, 5, 6, 6, 6, 7, 7,
  280. 7, 8, 8, 9, 9, 9, 10, 10, 11, 11, 12, 12, 13},
  281. {0, 1, 1, 2, 2, 2, 3, 3, 4, 4, 4, 5, 5, 6, 6, 7,
  282. 7, 8, 8, 9, 9, 10, 10, 11, 11, 12, 12, 12, 13, 13},
  283. {0, 1, 1, 2, 3, 3, 4, 4, 5, 6, 6, 7, 8, 9, 10, 11,
  284. 12, 12, 13, 14, 14, 14, 15, 16, 17, 17, 17, 18, 18, 18},
  285. };
  286. static u8 rtl8812ae_delta_swing_table_idx_5gb_p[][DEL_SW_IDX_SZ] = {
  287. {0, 1, 1, 2, 2, 3, 3, 4, 4, 5, 5, 6, 6, 6, 7, 7, 8,
  288. 8, 9, 9, 10, 10, 11, 11, 11, 11, 11, 11, 11, 11},
  289. {0, 1, 1, 2, 2, 3, 3, 4, 4, 4, 5, 5, 6, 6, 7, 7, 8,
  290. 8, 9, 9, 10, 10, 11, 11, 11, 11, 11, 11, 11, 11},
  291. {0, 1, 1, 2, 2, 3, 3, 4, 4, 5, 5, 6, 7, 7, 8, 8, 9,
  292. 9, 10, 10, 11, 11, 11, 11, 11, 11, 11, 11, 11, 11},
  293. };
  294. static u8 rtl8812ae_delta_swing_table_idx_5ga_n[][DEL_SW_IDX_SZ] = {
  295. {0, 1, 1, 2, 2, 3, 3, 4, 4, 4, 5, 5, 6, 6, 7, 7, 8,
  296. 8, 9, 9, 10, 10, 11, 11, 12, 12, 12, 13, 13, 13},
  297. {0, 1, 1, 2, 2, 2, 3, 3, 4, 4, 5, 5, 6, 6, 7, 8, 9,
  298. 9, 10, 10, 11, 11, 11, 12, 12, 12, 12, 12, 13, 13},
  299. {0, 1, 1, 2, 2, 3, 3, 4, 5, 6, 7, 8, 8, 9, 10, 11,
  300. 12, 13, 14, 14, 15, 15, 15, 16, 16, 16, 17, 17, 18, 18},
  301. };
  302. static u8 rtl8812ae_delta_swing_table_idx_5ga_p[][DEL_SW_IDX_SZ] = {
  303. {0, 1, 1, 2, 2, 3, 3, 4, 4, 4, 4, 5, 5, 6, 7, 7, 8,
  304. 8, 9, 9, 10, 10, 11, 11, 11, 11, 11, 11, 11, 11},
  305. {0, 1, 1, 2, 2, 3, 3, 4, 4, 4, 5, 5, 6, 6, 7, 7, 8,
  306. 9, 9, 10, 11, 11, 11, 11, 11, 11, 11, 11, 11, 11},
  307. {0, 1, 1, 2, 3, 3, 4, 4, 5, 6, 6, 7, 7, 8, 9, 9,
  308. 10, 10, 11, 11, 11, 11, 11, 11, 11, 11, 11, 11, 11, 11},
  309. };
  310. static u8 rtl8821ae_delta_swing_table_idx_24gb_n[] = {
  311. 0, 1, 1, 2, 2, 2, 3, 3, 3, 4, 4, 4, 5, 5, 5, 6, 6,
  312. 6, 7, 7, 7, 8, 8, 8, 9, 9, 9, 10, 10, 10};
  313. static u8 rtl8821ae_delta_swing_table_idx_24gb_p[] = {
  314. 0, 0, 1, 1, 2, 2, 3, 3, 4, 4, 5, 5, 6, 6, 7, 7, 8,
  315. 8, 9, 9, 10, 10, 11, 11, 12, 12, 12, 12, 12, 12};
  316. static u8 rtl8821ae_delta_swing_table_idx_24ga_n[] = {
  317. 0, 1, 1, 2, 2, 2, 3, 3, 3, 4, 4, 4, 5, 5, 5, 6, 6,
  318. 6, 7, 7, 7, 8, 8, 8, 9, 9, 9, 10, 10, 10};
  319. static u8 rtl8821ae_delta_swing_table_idx_24ga_p[] = {
  320. 0, 0, 1, 1, 2, 2, 3, 3, 4, 4, 5, 5, 6, 6, 7, 7, 8,
  321. 8, 9, 9, 10, 10, 11, 11, 12, 12, 12, 12, 12, 12};
  322. static u8 rtl8821ae_delta_swing_table_idx_24gcckb_n[] = {
  323. 0, 1, 1, 2, 2, 2, 3, 3, 3, 4, 4, 4, 5, 5, 5, 6, 6,
  324. 6, 7, 7, 7, 8, 8, 8, 9, 9, 9, 10, 10, 10};
  325. static u8 rtl8821ae_delta_swing_table_idx_24gcckb_p[] = {
  326. 0, 0, 1, 1, 2, 2, 3, 3, 4, 4, 5, 5, 6, 6, 7, 7, 8,
  327. 8, 9, 9, 10, 10, 11, 11, 12, 12, 12, 12, 12, 12};
  328. static u8 rtl8821ae_delta_swing_table_idx_24gccka_n[] = {
  329. 0, 1, 1, 2, 2, 2, 3, 3, 3, 4, 4, 4, 5, 5, 5, 6, 6,
  330. 6, 7, 7, 7, 8, 8, 8, 9, 9, 9, 10, 10, 10};
  331. static u8 rtl8821ae_delta_swing_table_idx_24gccka_p[] = {
  332. 0, 0, 1, 1, 2, 2, 3, 3, 4, 4, 5, 5, 6, 6, 7, 7, 8,
  333. 8, 9, 9, 10, 10, 11, 11, 12, 12, 12, 12, 12, 12};
  334. static u8 rtl8821ae_delta_swing_table_idx_5gb_n[][DEL_SW_IDX_SZ] = {
  335. {0, 0, 1, 2, 3, 3, 4, 5, 6, 6, 7, 8, 9, 9, 10, 11,
  336. 12, 12, 13, 14, 15, 15, 16, 16, 16, 16, 16, 16, 16, 16},
  337. {0, 0, 1, 2, 3, 3, 4, 5, 6, 6, 7, 8, 9, 9, 10, 11,
  338. 12, 12, 13, 14, 15, 15, 16, 16, 16, 16, 16, 16, 16, 16},
  339. {0, 0, 1, 2, 3, 3, 4, 5, 6, 6, 7, 8, 9, 9, 10, 11,
  340. 12, 12, 13, 14, 15, 15, 16, 16, 16, 16, 16, 16, 16, 16},
  341. };
  342. static u8 rtl8821ae_delta_swing_table_idx_5gb_p[][DEL_SW_IDX_SZ] = {
  343. {0, 0, 1, 2, 3, 3, 4, 5, 6, 6, 7, 8, 9, 9, 10, 11,
  344. 12, 12, 13, 14, 15, 15, 16, 16, 16, 16, 16, 16, 16, 16},
  345. {0, 0, 1, 2, 3, 3, 4, 5, 6, 6, 7, 8, 9, 9, 10, 11,
  346. 12, 12, 13, 14, 15, 15, 16, 16, 16, 16, 16, 16, 16, 16},
  347. {0, 0, 1, 2, 3, 3, 4, 5, 6, 6, 7, 8, 9, 9, 10, 11,
  348. 12, 12, 13, 14, 15, 15, 16, 16, 16, 16, 16, 16, 16, 16},
  349. };
  350. static u8 rtl8821ae_delta_swing_table_idx_5ga_n[][DEL_SW_IDX_SZ] = {
  351. {0, 0, 1, 2, 3, 3, 4, 5, 6, 6, 7, 8, 9, 9, 10, 11,
  352. 12, 12, 13, 14, 15, 15, 16, 16, 16, 16, 16, 16, 16, 16},
  353. {0, 0, 1, 2, 3, 3, 4, 5, 6, 6, 7, 8, 9, 9, 10, 11,
  354. 12, 12, 13, 14, 15, 15, 16, 16, 16, 16, 16, 16, 16, 16},
  355. {0, 0, 1, 2, 3, 3, 4, 5, 6, 6, 7, 8, 9, 9, 10, 11,
  356. 12, 12, 13, 14, 15, 15, 16, 16, 16, 16, 16, 16, 16, 16},
  357. };
  358. static u8 rtl8821ae_delta_swing_table_idx_5ga_p[][DEL_SW_IDX_SZ] = {
  359. {0, 0, 1, 2, 3, 3, 4, 5, 6, 6, 7, 8, 9, 9, 10, 11,
  360. 12, 12, 13, 14, 15, 15, 16, 16, 16, 16, 16, 16, 16, 16},
  361. {0, 0, 1, 2, 3, 3, 4, 5, 6, 6, 7, 8, 9, 9, 10, 11,
  362. 12, 12, 13, 14, 15, 15, 16, 16, 16, 16, 16, 16, 16, 16},
  363. {0, 0, 1, 2, 3, 3, 4, 5, 6, 6, 7, 8, 9, 9, 10, 11,
  364. 12, 12, 13, 14, 15, 15, 16, 16, 16, 16, 16, 16, 16, 16},
  365. };
  366. void rtl8821ae_dm_txpower_track_adjust(struct ieee80211_hw *hw,
  367. u8 type, u8 *pdirection,
  368. u32 *poutwrite_val)
  369. {
  370. struct rtl_priv *rtlpriv = rtl_priv(hw);
  371. struct rtl_dm *rtldm = rtl_dm(rtl_priv(hw));
  372. u8 pwr_val = 0;
  373. if (type == 0) {
  374. if (rtlpriv->dm.swing_idx_ofdm[RF90_PATH_A] <=
  375. rtlpriv->dm.swing_idx_ofdm_base[RF90_PATH_A]) {
  376. *pdirection = 1;
  377. pwr_val = rtldm->swing_idx_ofdm_base[RF90_PATH_A] -
  378. rtldm->swing_idx_ofdm[RF90_PATH_A];
  379. } else {
  380. *pdirection = 2;
  381. pwr_val = rtldm->swing_idx_ofdm[RF90_PATH_A] -
  382. rtldm->swing_idx_ofdm_base[RF90_PATH_A];
  383. }
  384. } else if (type == 1) {
  385. if (rtldm->swing_idx_cck <= rtldm->swing_idx_cck_base) {
  386. *pdirection = 1;
  387. pwr_val = rtldm->swing_idx_cck_base -
  388. rtldm->swing_idx_cck;
  389. } else {
  390. *pdirection = 2;
  391. pwr_val = rtldm->swing_idx_cck -
  392. rtldm->swing_idx_cck_base;
  393. }
  394. }
  395. if (pwr_val >= TXPWRTRACK_MAX_IDX && (*pdirection == 1))
  396. pwr_val = TXPWRTRACK_MAX_IDX;
  397. *poutwrite_val = pwr_val | (pwr_val << 8)|
  398. (pwr_val << 16)|
  399. (pwr_val << 24);
  400. }
  401. void rtl8821ae_dm_clear_txpower_tracking_state(struct ieee80211_hw *hw)
  402. {
  403. struct rtl_priv *rtlpriv = rtl_priv(hw);
  404. struct rtl_dm *rtldm = rtl_dm(rtlpriv);
  405. struct rtl_efuse *rtlefuse = rtl_efuse(rtlpriv);
  406. u8 p = 0;
  407. rtldm->swing_idx_cck_base = rtldm->default_cck_index;
  408. rtldm->swing_idx_cck = rtldm->default_cck_index;
  409. rtldm->cck_index = 0;
  410. for (p = RF90_PATH_A; p <= RF90_PATH_B; ++p) {
  411. rtldm->swing_idx_ofdm_base[p] = rtldm->default_ofdm_index;
  412. rtldm->swing_idx_ofdm[p] = rtldm->default_ofdm_index;
  413. rtldm->ofdm_index[p] = rtldm->default_ofdm_index;
  414. rtldm->power_index_offset[p] = 0;
  415. rtldm->delta_power_index[p] = 0;
  416. rtldm->delta_power_index_last[p] = 0;
  417. /*Initial Mix mode power tracking*/
  418. rtldm->absolute_ofdm_swing_idx[p] = 0;
  419. rtldm->remnant_ofdm_swing_idx[p] = 0;
  420. }
  421. /*Initial at Modify Tx Scaling Mode*/
  422. rtldm->modify_txagc_flag_path_a = false;
  423. /*Initial at Modify Tx Scaling Mode*/
  424. rtldm->modify_txagc_flag_path_b = false;
  425. rtldm->remnant_cck_idx = 0;
  426. rtldm->thermalvalue = rtlefuse->eeprom_thermalmeter;
  427. rtldm->thermalvalue_iqk = rtlefuse->eeprom_thermalmeter;
  428. rtldm->thermalvalue_lck = rtlefuse->eeprom_thermalmeter;
  429. }
  430. static u8 rtl8821ae_dm_get_swing_index(struct ieee80211_hw *hw)
  431. {
  432. struct rtl_hal *rtlhal = rtl_hal(rtl_priv(hw));
  433. u8 i = 0;
  434. u32 bb_swing;
  435. bb_swing = phy_get_tx_swing_8812A(hw, rtlhal->current_bandtype,
  436. RF90_PATH_A);
  437. for (i = 0; i < TXSCALE_TABLE_SIZE; ++i)
  438. if (bb_swing == rtl8821ae_txscaling_table[i])
  439. break;
  440. return i;
  441. }
  442. void rtl8821ae_dm_initialize_txpower_tracking_thermalmeter(
  443. struct ieee80211_hw *hw)
  444. {
  445. struct rtl_priv *rtlpriv = rtl_priv(hw);
  446. struct rtl_dm *rtldm = rtl_dm(rtlpriv);
  447. struct rtl_efuse *rtlefuse = rtl_efuse(rtlpriv);
  448. u8 default_swing_index = 0;
  449. u8 p = 0;
  450. rtlpriv->dm.txpower_track_control = true;
  451. rtldm->thermalvalue = rtlefuse->eeprom_thermalmeter;
  452. rtldm->thermalvalue_iqk = rtlefuse->eeprom_thermalmeter;
  453. rtldm->thermalvalue_lck = rtlefuse->eeprom_thermalmeter;
  454. default_swing_index = rtl8821ae_dm_get_swing_index(hw);
  455. rtldm->default_ofdm_index =
  456. (default_swing_index == TXSCALE_TABLE_SIZE) ?
  457. 24 : default_swing_index;
  458. rtldm->default_cck_index = 24;
  459. rtldm->swing_idx_cck_base = rtldm->default_cck_index;
  460. rtldm->cck_index = rtldm->default_cck_index;
  461. for (p = RF90_PATH_A; p < MAX_RF_PATH; ++p) {
  462. rtldm->swing_idx_ofdm_base[p] =
  463. rtldm->default_ofdm_index;
  464. rtldm->ofdm_index[p] = rtldm->default_ofdm_index;
  465. rtldm->delta_power_index[p] = 0;
  466. rtldm->power_index_offset[p] = 0;
  467. rtldm->delta_power_index_last[p] = 0;
  468. }
  469. }
  470. static void rtl8821ae_dm_diginit(struct ieee80211_hw *hw)
  471. {
  472. struct rtl_priv *rtlpriv = rtl_priv(hw);
  473. struct dig_t *dm_digtable = &rtlpriv->dm_digtable;
  474. dm_digtable->cur_igvalue = rtl_get_bbreg(hw, ROFDM0_XAAGCCORE1, 0x7f);
  475. dm_digtable->rssi_lowthresh = DM_DIG_THRESH_LOW;
  476. dm_digtable->rssi_highthresh = DM_DIG_THRESH_HIGH;
  477. dm_digtable->fa_lowthresh = DM_FALSEALARM_THRESH_LOW;
  478. dm_digtable->fa_highthresh = DM_FALSEALARM_THRESH_HIGH;
  479. dm_digtable->rx_gain_max = DM_DIG_MAX;
  480. dm_digtable->rx_gain_min = DM_DIG_MIN;
  481. dm_digtable->back_val = DM_DIG_BACKOFF_DEFAULT;
  482. dm_digtable->back_range_max = DM_DIG_BACKOFF_MAX;
  483. dm_digtable->back_range_min = DM_DIG_BACKOFF_MIN;
  484. dm_digtable->pre_cck_cca_thres = 0xff;
  485. dm_digtable->cur_cck_cca_thres = 0x83;
  486. dm_digtable->forbidden_igi = DM_DIG_MIN;
  487. dm_digtable->large_fa_hit = 0;
  488. dm_digtable->recover_cnt = 0;
  489. dm_digtable->dig_dynamic_min = DM_DIG_MIN;
  490. dm_digtable->dig_dynamic_min_1 = DM_DIG_MIN;
  491. dm_digtable->media_connect_0 = false;
  492. dm_digtable->media_connect_1 = false;
  493. rtlpriv->dm.dm_initialgain_enable = true;
  494. dm_digtable->bt30_cur_igi = 0x32;
  495. }
  496. void rtl8821ae_dm_init_edca_turbo(struct ieee80211_hw *hw)
  497. {
  498. struct rtl_priv *rtlpriv = rtl_priv(hw);
  499. rtlpriv->dm.current_turbo_edca = false;
  500. rtlpriv->dm.is_any_nonbepkts = false;
  501. rtlpriv->dm.is_cur_rdlstate = false;
  502. }
  503. void rtl8821ae_dm_init_rate_adaptive_mask(struct ieee80211_hw *hw)
  504. {
  505. struct rtl_priv *rtlpriv = rtl_priv(hw);
  506. struct rate_adaptive *p_ra = &rtlpriv->ra;
  507. p_ra->ratr_state = DM_RATR_STA_INIT;
  508. p_ra->pre_ratr_state = DM_RATR_STA_INIT;
  509. rtlpriv->dm.dm_type = DM_TYPE_BYDRIVER;
  510. if (rtlpriv->dm.dm_type == DM_TYPE_BYDRIVER)
  511. rtlpriv->dm.useramask = true;
  512. else
  513. rtlpriv->dm.useramask = false;
  514. p_ra->high_rssi_thresh_for_ra = 50;
  515. p_ra->low_rssi_thresh_for_ra40m = 20;
  516. }
  517. static void rtl8821ae_dm_init_dynamic_atc_switch(struct ieee80211_hw *hw)
  518. {
  519. struct rtl_priv *rtlpriv = rtl_priv(hw);
  520. rtlpriv->dm.crystal_cap = rtlpriv->efuse.crystalcap;
  521. rtlpriv->dm.atc_status = rtl_get_bbreg(hw, ROFDM1_CFOTRACKING, BIT(11));
  522. rtlpriv->dm.cfo_threshold = CFO_THRESHOLD_XTAL;
  523. }
  524. static void rtl8821ae_dm_common_info_self_init(struct ieee80211_hw *hw)
  525. {
  526. struct rtl_priv *rtlpriv = rtl_priv(hw);
  527. struct rtl_phy *rtlphy = &rtlpriv->phy;
  528. u8 tmp;
  529. rtlphy->cck_high_power =
  530. (bool)rtl_get_bbreg(hw, ODM_REG_CCK_RPT_FORMAT_11AC,
  531. ODM_BIT_CCK_RPT_FORMAT_11AC);
  532. tmp = (u8)rtl_get_bbreg(hw, ODM_REG_BB_RX_PATH_11AC,
  533. ODM_BIT_BB_RX_PATH_11AC);
  534. if (tmp & BIT(0))
  535. rtlpriv->dm.rfpath_rxenable[0] = true;
  536. if (tmp & BIT(1))
  537. rtlpriv->dm.rfpath_rxenable[1] = true;
  538. }
  539. void rtl8821ae_dm_init(struct ieee80211_hw *hw)
  540. {
  541. struct rtl_priv *rtlpriv = rtl_priv(hw);
  542. struct rtl_phy *rtlphy = &rtlpriv->phy;
  543. spin_lock(&rtlpriv->locks.iqk_lock);
  544. rtlphy->lck_inprogress = false;
  545. spin_unlock(&rtlpriv->locks.iqk_lock);
  546. rtlpriv->dm.dm_type = DM_TYPE_BYDRIVER;
  547. rtl8821ae_dm_common_info_self_init(hw);
  548. rtl8821ae_dm_diginit(hw);
  549. rtl8821ae_dm_init_rate_adaptive_mask(hw);
  550. rtl8821ae_dm_init_edca_turbo(hw);
  551. rtl8821ae_dm_initialize_txpower_tracking_thermalmeter(hw);
  552. rtl8821ae_dm_init_dynamic_atc_switch(hw);
  553. }
  554. static void rtl8821ae_dm_find_minimum_rssi(struct ieee80211_hw *hw)
  555. {
  556. struct rtl_priv *rtlpriv = rtl_priv(hw);
  557. struct dig_t *rtl_dm_dig = &rtlpriv->dm_digtable;
  558. struct rtl_mac *mac = rtl_mac(rtlpriv);
  559. /* Determine the minimum RSSI */
  560. if ((mac->link_state < MAC80211_LINKED) &&
  561. (rtlpriv->dm.entry_min_undec_sm_pwdb == 0)) {
  562. rtl_dm_dig->min_undec_pwdb_for_dm = 0;
  563. RT_TRACE(rtlpriv, COMP_BB_POWERSAVING, DBG_LOUD,
  564. "Not connected to any\n");
  565. }
  566. if (mac->link_state >= MAC80211_LINKED) {
  567. if (mac->opmode == NL80211_IFTYPE_AP ||
  568. mac->opmode == NL80211_IFTYPE_ADHOC) {
  569. rtl_dm_dig->min_undec_pwdb_for_dm =
  570. rtlpriv->dm.entry_min_undec_sm_pwdb;
  571. RT_TRACE(rtlpriv, COMP_BB_POWERSAVING, DBG_LOUD,
  572. "AP Client PWDB = 0x%lx\n",
  573. rtlpriv->dm.entry_min_undec_sm_pwdb);
  574. } else {
  575. rtl_dm_dig->min_undec_pwdb_for_dm =
  576. rtlpriv->dm.undec_sm_pwdb;
  577. RT_TRACE(rtlpriv, COMP_BB_POWERSAVING, DBG_LOUD,
  578. "STA Default Port PWDB = 0x%x\n",
  579. rtl_dm_dig->min_undec_pwdb_for_dm);
  580. }
  581. } else {
  582. rtl_dm_dig->min_undec_pwdb_for_dm =
  583. rtlpriv->dm.entry_min_undec_sm_pwdb;
  584. RT_TRACE(rtlpriv, COMP_BB_POWERSAVING, DBG_LOUD,
  585. "AP Ext Port or disconnet PWDB = 0x%x\n",
  586. rtl_dm_dig->min_undec_pwdb_for_dm);
  587. }
  588. RT_TRACE(rtlpriv, COMP_DIG, DBG_LOUD,
  589. "MinUndecoratedPWDBForDM =%d\n",
  590. rtl_dm_dig->min_undec_pwdb_for_dm);
  591. }
  592. static void rtl8812ae_dm_rssi_dump_to_register(struct ieee80211_hw *hw)
  593. {
  594. struct rtl_priv *rtlpriv = rtl_priv(hw);
  595. rtl_write_byte(rtlpriv, RA_RSSI_DUMP,
  596. rtlpriv->stats.rx_rssi_percentage[0]);
  597. rtl_write_byte(rtlpriv, RB_RSSI_DUMP,
  598. rtlpriv->stats.rx_rssi_percentage[1]);
  599. /* Rx EVM*/
  600. rtl_write_byte(rtlpriv, RS1_RX_EVM_DUMP,
  601. rtlpriv->stats.rx_evm_dbm[0]);
  602. rtl_write_byte(rtlpriv, RS2_RX_EVM_DUMP,
  603. rtlpriv->stats.rx_evm_dbm[1]);
  604. /*Rx SNR*/
  605. rtl_write_byte(rtlpriv, RA_RX_SNR_DUMP,
  606. (u8)(rtlpriv->stats.rx_snr_db[0]));
  607. rtl_write_byte(rtlpriv, RB_RX_SNR_DUMP,
  608. (u8)(rtlpriv->stats.rx_snr_db[1]));
  609. /*Rx Cfo_Short*/
  610. rtl_write_word(rtlpriv, RA_CFO_SHORT_DUMP,
  611. rtlpriv->stats.rx_cfo_short[0]);
  612. rtl_write_word(rtlpriv, RB_CFO_SHORT_DUMP,
  613. rtlpriv->stats.rx_cfo_short[1]);
  614. /*Rx Cfo_Tail*/
  615. rtl_write_word(rtlpriv, RA_CFO_LONG_DUMP,
  616. rtlpriv->stats.rx_cfo_tail[0]);
  617. rtl_write_word(rtlpriv, RB_CFO_LONG_DUMP,
  618. rtlpriv->stats.rx_cfo_tail[1]);
  619. }
  620. static void rtl8821ae_dm_check_rssi_monitor(struct ieee80211_hw *hw)
  621. {
  622. struct rtl_priv *rtlpriv = rtl_priv(hw);
  623. struct dig_t *dm_digtable = &rtlpriv->dm_digtable;
  624. struct rtl_hal *rtlhal = rtl_hal(rtlpriv);
  625. struct rtl_mac *mac = rtl_mac(rtl_priv(hw));
  626. struct rtl_sta_info *drv_priv;
  627. u8 h2c_parameter[4] = { 0 };
  628. long tmp_entry_max_pwdb = 0, tmp_entry_min_pwdb = 0xff;
  629. u8 stbc_tx = 0;
  630. u64 cur_txokcnt = 0, cur_rxokcnt = 0;
  631. static u64 last_txokcnt = 0, last_rxokcnt;
  632. cur_txokcnt = rtlpriv->stats.txbytesunicast - last_txokcnt;
  633. cur_rxokcnt = rtlpriv->stats.rxbytesunicast - last_rxokcnt;
  634. last_txokcnt = rtlpriv->stats.txbytesunicast;
  635. last_rxokcnt = rtlpriv->stats.rxbytesunicast;
  636. if (cur_rxokcnt > (last_txokcnt * 6))
  637. h2c_parameter[3] = 0x01;
  638. else
  639. h2c_parameter[3] = 0x00;
  640. /* AP & ADHOC & MESH */
  641. if (mac->opmode == NL80211_IFTYPE_AP ||
  642. mac->opmode == NL80211_IFTYPE_ADHOC ||
  643. mac->opmode == NL80211_IFTYPE_MESH_POINT) {
  644. spin_lock_bh(&rtlpriv->locks.entry_list_lock);
  645. list_for_each_entry(drv_priv, &rtlpriv->entry_list, list) {
  646. if (drv_priv->rssi_stat.undec_sm_pwdb <
  647. tmp_entry_min_pwdb)
  648. tmp_entry_min_pwdb =
  649. drv_priv->rssi_stat.undec_sm_pwdb;
  650. if (drv_priv->rssi_stat.undec_sm_pwdb >
  651. tmp_entry_max_pwdb)
  652. tmp_entry_max_pwdb =
  653. drv_priv->rssi_stat.undec_sm_pwdb;
  654. }
  655. spin_unlock_bh(&rtlpriv->locks.entry_list_lock);
  656. /* If associated entry is found */
  657. if (tmp_entry_max_pwdb != 0) {
  658. rtlpriv->dm.entry_max_undec_sm_pwdb =
  659. tmp_entry_max_pwdb;
  660. RTPRINT(rtlpriv, FDM, DM_PWDB,
  661. "EntryMaxPWDB = 0x%lx(%ld)\n",
  662. tmp_entry_max_pwdb, tmp_entry_max_pwdb);
  663. } else {
  664. rtlpriv->dm.entry_max_undec_sm_pwdb = 0;
  665. }
  666. /* If associated entry is found */
  667. if (tmp_entry_min_pwdb != 0xff) {
  668. rtlpriv->dm.entry_min_undec_sm_pwdb =
  669. tmp_entry_min_pwdb;
  670. RTPRINT(rtlpriv, FDM, DM_PWDB,
  671. "EntryMinPWDB = 0x%lx(%ld)\n",
  672. tmp_entry_min_pwdb, tmp_entry_min_pwdb);
  673. } else {
  674. rtlpriv->dm.entry_min_undec_sm_pwdb = 0;
  675. }
  676. }
  677. /* Indicate Rx signal strength to FW. */
  678. if (rtlpriv->dm.useramask) {
  679. if (rtlhal->hw_type == HARDWARE_TYPE_RTL8812AE) {
  680. if (mac->mode == WIRELESS_MODE_AC_24G ||
  681. mac->mode == WIRELESS_MODE_AC_5G ||
  682. mac->mode == WIRELESS_MODE_AC_ONLY)
  683. stbc_tx = (mac->vht_cur_stbc &
  684. STBC_VHT_ENABLE_TX) ? 1 : 0;
  685. else
  686. stbc_tx = (mac->ht_cur_stbc &
  687. STBC_HT_ENABLE_TX) ? 1 : 0;
  688. h2c_parameter[3] |= stbc_tx << 1;
  689. }
  690. h2c_parameter[2] =
  691. (u8)(rtlpriv->dm.undec_sm_pwdb & 0xFF);
  692. h2c_parameter[1] = 0x20;
  693. h2c_parameter[0] = 0;
  694. if (rtlhal->hw_type == HARDWARE_TYPE_RTL8812AE)
  695. rtl8821ae_fill_h2c_cmd(hw, H2C_RSSI_21AE_REPORT, 4,
  696. h2c_parameter);
  697. else
  698. rtl8821ae_fill_h2c_cmd(hw, H2C_RSSI_21AE_REPORT, 3,
  699. h2c_parameter);
  700. } else {
  701. rtl_write_byte(rtlpriv, 0x4fe, rtlpriv->dm.undec_sm_pwdb);
  702. }
  703. if (rtlhal->hw_type == HARDWARE_TYPE_RTL8812AE)
  704. rtl8812ae_dm_rssi_dump_to_register(hw);
  705. rtl8821ae_dm_find_minimum_rssi(hw);
  706. dm_digtable->rssi_val_min = rtlpriv->dm_digtable.min_undec_pwdb_for_dm;
  707. }
  708. void rtl8821ae_dm_write_cck_cca_thres(struct ieee80211_hw *hw, u8 current_cca)
  709. {
  710. struct rtl_priv *rtlpriv = rtl_priv(hw);
  711. struct dig_t *dm_digtable = &rtlpriv->dm_digtable;
  712. if (dm_digtable->cur_cck_cca_thres != current_cca)
  713. rtl_write_byte(rtlpriv, DM_REG_CCK_CCA_11AC, current_cca);
  714. dm_digtable->pre_cck_cca_thres = dm_digtable->cur_cck_cca_thres;
  715. dm_digtable->cur_cck_cca_thres = current_cca;
  716. }
  717. void rtl8821ae_dm_write_dig(struct ieee80211_hw *hw, u8 current_igi)
  718. {
  719. struct rtl_priv *rtlpriv = rtl_priv(hw);
  720. struct dig_t *dm_digtable = &rtlpriv->dm_digtable;
  721. if (dm_digtable->stop_dig)
  722. return;
  723. if (dm_digtable->cur_igvalue != current_igi) {
  724. rtl_set_bbreg(hw, DM_REG_IGI_A_11AC,
  725. DM_BIT_IGI_11AC, current_igi);
  726. if (rtlpriv->phy.rf_type != RF_1T1R)
  727. rtl_set_bbreg(hw, DM_REG_IGI_B_11AC,
  728. DM_BIT_IGI_11AC, current_igi);
  729. }
  730. dm_digtable->cur_igvalue = current_igi;
  731. }
  732. static void rtl8821ae_dm_dig(struct ieee80211_hw *hw)
  733. {
  734. struct rtl_priv *rtlpriv = rtl_priv(hw);
  735. struct dig_t *dm_digtable = &rtlpriv->dm_digtable;
  736. struct rtl_mac *mac = rtl_mac(rtl_priv(hw));
  737. struct rtl_hal *rtlhal = rtl_hal(rtl_priv(hw));
  738. u8 dig_dynamic_min;
  739. u8 dig_max_of_min;
  740. bool first_connect, first_disconnect;
  741. u8 dm_dig_max, dm_dig_min, offset;
  742. u8 current_igi = dm_digtable->cur_igvalue;
  743. RT_TRACE(rtlpriv, COMP_DIG, DBG_LOUD, "\n");
  744. if (mac->act_scanning) {
  745. RT_TRACE(rtlpriv, COMP_DIG, DBG_LOUD,
  746. "Return: In Scan Progress\n");
  747. return;
  748. }
  749. /*add by Neil Chen to avoid PSD is processing*/
  750. dig_dynamic_min = dm_digtable->dig_dynamic_min;
  751. first_connect = (mac->link_state >= MAC80211_LINKED) &&
  752. (!dm_digtable->media_connect_0);
  753. first_disconnect = (mac->link_state < MAC80211_LINKED) &&
  754. (dm_digtable->media_connect_0);
  755. /*1 Boundary Decision*/
  756. dm_dig_max = 0x5A;
  757. if (rtlhal->hw_type != HARDWARE_TYPE_RTL8821AE)
  758. dm_dig_min = DM_DIG_MIN;
  759. else
  760. dm_dig_min = 0x1C;
  761. dig_max_of_min = DM_DIG_MAX_AP;
  762. if (mac->link_state >= MAC80211_LINKED) {
  763. if (rtlhal->hw_type != HARDWARE_TYPE_RTL8821AE)
  764. offset = 20;
  765. else
  766. offset = 10;
  767. if ((dm_digtable->rssi_val_min + offset) > dm_dig_max)
  768. dm_digtable->rx_gain_max = dm_dig_max;
  769. else if ((dm_digtable->rssi_val_min + offset) < dm_dig_min)
  770. dm_digtable->rx_gain_max = dm_dig_min;
  771. else
  772. dm_digtable->rx_gain_max =
  773. dm_digtable->rssi_val_min + offset;
  774. RT_TRACE(rtlpriv, COMP_DIG, DBG_LOUD,
  775. "dm_digtable->rssi_val_min=0x%x,dm_digtable->rx_gain_max = 0x%x",
  776. dm_digtable->rssi_val_min,
  777. dm_digtable->rx_gain_max);
  778. if (rtlpriv->dm.one_entry_only) {
  779. offset = 0;
  780. if (dm_digtable->rssi_val_min - offset < dm_dig_min)
  781. dig_dynamic_min = dm_dig_min;
  782. else if (dm_digtable->rssi_val_min -
  783. offset > dig_max_of_min)
  784. dig_dynamic_min = dig_max_of_min;
  785. else
  786. dig_dynamic_min =
  787. dm_digtable->rssi_val_min - offset;
  788. RT_TRACE(rtlpriv, COMP_DIG, DBG_LOUD,
  789. "bOneEntryOnly=TRUE, dig_dynamic_min=0x%x\n",
  790. dig_dynamic_min);
  791. } else {
  792. dig_dynamic_min = dm_dig_min;
  793. }
  794. } else {
  795. dm_digtable->rx_gain_max = dm_dig_max;
  796. dig_dynamic_min = dm_dig_min;
  797. RT_TRACE(rtlpriv, COMP_DIG, DBG_LOUD,
  798. "No Link\n");
  799. }
  800. if (rtlpriv->falsealm_cnt.cnt_all > 10000) {
  801. RT_TRACE(rtlpriv, COMP_DIG, DBG_LOUD,
  802. "Abnornally false alarm case.\n");
  803. if (dm_digtable->large_fa_hit != 3)
  804. dm_digtable->large_fa_hit++;
  805. if (dm_digtable->forbidden_igi < current_igi) {
  806. dm_digtable->forbidden_igi = current_igi;
  807. dm_digtable->large_fa_hit = 1;
  808. }
  809. if (dm_digtable->large_fa_hit >= 3) {
  810. if ((dm_digtable->forbidden_igi + 1) >
  811. dm_digtable->rx_gain_max)
  812. dm_digtable->rx_gain_min =
  813. dm_digtable->rx_gain_max;
  814. else
  815. dm_digtable->rx_gain_min =
  816. (dm_digtable->forbidden_igi + 1);
  817. dm_digtable->recover_cnt = 3600;
  818. }
  819. } else {
  820. /*Recovery mechanism for IGI lower bound*/
  821. if (dm_digtable->recover_cnt != 0) {
  822. dm_digtable->recover_cnt--;
  823. } else {
  824. if (dm_digtable->large_fa_hit < 3) {
  825. if ((dm_digtable->forbidden_igi - 1) <
  826. dig_dynamic_min) {
  827. dm_digtable->forbidden_igi =
  828. dig_dynamic_min;
  829. dm_digtable->rx_gain_min =
  830. dig_dynamic_min;
  831. RT_TRACE(rtlpriv, COMP_DIG, DBG_LOUD,
  832. "Normal Case: At Lower Bound\n");
  833. } else {
  834. dm_digtable->forbidden_igi--;
  835. dm_digtable->rx_gain_min =
  836. (dm_digtable->forbidden_igi + 1);
  837. RT_TRACE(rtlpriv, COMP_DIG, DBG_LOUD,
  838. "Normal Case: Approach Lower Bound\n");
  839. }
  840. } else {
  841. dm_digtable->large_fa_hit = 0;
  842. }
  843. }
  844. }
  845. RT_TRACE(rtlpriv, COMP_DIG, DBG_LOUD,
  846. "pDM_DigTable->LargeFAHit=%d\n",
  847. dm_digtable->large_fa_hit);
  848. if (rtlpriv->dm.dbginfo.num_qry_beacon_pkt < 10)
  849. dm_digtable->rx_gain_min = dm_dig_min;
  850. if (dm_digtable->rx_gain_min > dm_digtable->rx_gain_max)
  851. dm_digtable->rx_gain_min = dm_digtable->rx_gain_max;
  852. /*Adjust initial gain by false alarm*/
  853. if (mac->link_state >= MAC80211_LINKED) {
  854. RT_TRACE(rtlpriv, COMP_DIG, DBG_LOUD,
  855. "DIG AfterLink\n");
  856. if (first_connect) {
  857. if (dm_digtable->rssi_val_min <= dig_max_of_min)
  858. current_igi = dm_digtable->rssi_val_min;
  859. else
  860. current_igi = dig_max_of_min;
  861. RT_TRACE(rtlpriv, COMP_DIG, DBG_LOUD,
  862. "First Connect\n");
  863. } else {
  864. if (rtlpriv->falsealm_cnt.cnt_all > DM_DIG_FA_TH2)
  865. current_igi = current_igi + 4;
  866. else if (rtlpriv->falsealm_cnt.cnt_all > DM_DIG_FA_TH1)
  867. current_igi = current_igi + 2;
  868. else if (rtlpriv->falsealm_cnt.cnt_all < DM_DIG_FA_TH0)
  869. current_igi = current_igi - 2;
  870. if ((rtlpriv->dm.dbginfo.num_qry_beacon_pkt < 10) &&
  871. (rtlpriv->falsealm_cnt.cnt_all < DM_DIG_FA_TH1)) {
  872. current_igi = dm_digtable->rx_gain_min;
  873. RT_TRACE(rtlpriv, COMP_DIG, DBG_LOUD,
  874. "Beacon is less than 10 and FA is less than 768, IGI GOES TO 0x1E!!!!!!!!!!!!\n");
  875. }
  876. }
  877. } else {
  878. RT_TRACE(rtlpriv, COMP_DIG, DBG_LOUD,
  879. "DIG BeforeLink\n");
  880. if (first_disconnect) {
  881. current_igi = dm_digtable->rx_gain_min;
  882. RT_TRACE(rtlpriv, COMP_DIG, DBG_LOUD,
  883. "First DisConnect\n");
  884. } else {
  885. /* 2012.03.30 LukeLee: enable DIG before
  886. * link but with very high thresholds
  887. */
  888. if (rtlpriv->falsealm_cnt.cnt_all > 2000)
  889. current_igi = current_igi + 4;
  890. else if (rtlpriv->falsealm_cnt.cnt_all > 600)
  891. current_igi = current_igi + 2;
  892. else if (rtlpriv->falsealm_cnt.cnt_all < 300)
  893. current_igi = current_igi - 2;
  894. if (current_igi >= 0x3e)
  895. current_igi = 0x3e;
  896. RT_TRACE(rtlpriv, COMP_DIG, DBG_LOUD, "England DIG\n");
  897. }
  898. }
  899. RT_TRACE(rtlpriv, COMP_DIG, DBG_LOUD,
  900. "DIG End Adjust IGI\n");
  901. /* Check initial gain by upper/lower bound*/
  902. if (current_igi > dm_digtable->rx_gain_max)
  903. current_igi = dm_digtable->rx_gain_max;
  904. if (current_igi < dm_digtable->rx_gain_min)
  905. current_igi = dm_digtable->rx_gain_min;
  906. RT_TRACE(rtlpriv, COMP_DIG, DBG_LOUD,
  907. "rx_gain_max=0x%x, rx_gain_min=0x%x\n",
  908. dm_digtable->rx_gain_max, dm_digtable->rx_gain_min);
  909. RT_TRACE(rtlpriv, COMP_DIG, DBG_LOUD,
  910. "TotalFA=%d\n", rtlpriv->falsealm_cnt.cnt_all);
  911. RT_TRACE(rtlpriv, COMP_DIG, DBG_LOUD,
  912. "CurIGValue=0x%x\n", current_igi);
  913. rtl8821ae_dm_write_dig(hw, current_igi);
  914. dm_digtable->media_connect_0 =
  915. ((mac->link_state >= MAC80211_LINKED) ? true : false);
  916. dm_digtable->dig_dynamic_min = dig_dynamic_min;
  917. }
  918. static void rtl8821ae_dm_common_info_self_update(struct ieee80211_hw *hw)
  919. {
  920. struct rtl_priv *rtlpriv = rtl_priv(hw);
  921. u8 cnt = 0;
  922. struct rtl_sta_info *drv_priv;
  923. rtlpriv->dm.tx_rate = 0xff;
  924. rtlpriv->dm.one_entry_only = false;
  925. if (rtlpriv->mac80211.opmode == NL80211_IFTYPE_STATION &&
  926. rtlpriv->mac80211.link_state >= MAC80211_LINKED) {
  927. rtlpriv->dm.one_entry_only = true;
  928. return;
  929. }
  930. if (rtlpriv->mac80211.opmode == NL80211_IFTYPE_AP ||
  931. rtlpriv->mac80211.opmode == NL80211_IFTYPE_ADHOC ||
  932. rtlpriv->mac80211.opmode == NL80211_IFTYPE_MESH_POINT) {
  933. spin_lock_bh(&rtlpriv->locks.entry_list_lock);
  934. list_for_each_entry(drv_priv, &rtlpriv->entry_list, list)
  935. cnt++;
  936. spin_unlock_bh(&rtlpriv->locks.entry_list_lock);
  937. if (cnt == 1)
  938. rtlpriv->dm.one_entry_only = true;
  939. }
  940. }
  941. static void rtl8821ae_dm_false_alarm_counter_statistics(struct ieee80211_hw *hw)
  942. {
  943. struct rtl_priv *rtlpriv = rtl_priv(hw);
  944. struct false_alarm_statistics *falsealm_cnt = &rtlpriv->falsealm_cnt;
  945. u32 cck_enable = 0;
  946. /*read OFDM FA counter*/
  947. falsealm_cnt->cnt_ofdm_fail =
  948. rtl_get_bbreg(hw, ODM_REG_OFDM_FA_11AC, BMASKLWORD);
  949. falsealm_cnt->cnt_cck_fail =
  950. rtl_get_bbreg(hw, ODM_REG_CCK_FA_11AC, BMASKLWORD);
  951. cck_enable = rtl_get_bbreg(hw, ODM_REG_BB_RX_PATH_11AC, BIT(28));
  952. if (cck_enable) /*if(pDM_Odm->pBandType == ODM_BAND_2_4G)*/
  953. falsealm_cnt->cnt_all = falsealm_cnt->cnt_ofdm_fail +
  954. falsealm_cnt->cnt_cck_fail;
  955. else
  956. falsealm_cnt->cnt_all = falsealm_cnt->cnt_ofdm_fail;
  957. /*reset OFDM FA coutner*/
  958. rtl_set_bbreg(hw, ODM_REG_OFDM_FA_RST_11AC, BIT(17), 1);
  959. rtl_set_bbreg(hw, ODM_REG_OFDM_FA_RST_11AC, BIT(17), 0);
  960. /* reset CCK FA counter*/
  961. rtl_set_bbreg(hw, ODM_REG_CCK_FA_RST_11AC, BIT(15), 0);
  962. rtl_set_bbreg(hw, ODM_REG_CCK_FA_RST_11AC, BIT(15), 1);
  963. RT_TRACE(rtlpriv, COMP_DIG, DBG_LOUD, "Cnt_Cck_fail=%d\n",
  964. falsealm_cnt->cnt_cck_fail);
  965. RT_TRACE(rtlpriv, COMP_DIG, DBG_LOUD, "cnt_ofdm_fail=%d\n",
  966. falsealm_cnt->cnt_ofdm_fail);
  967. RT_TRACE(rtlpriv, COMP_DIG, DBG_LOUD, "Total False Alarm=%d\n",
  968. falsealm_cnt->cnt_all);
  969. }
  970. static void rtl8812ae_dm_check_txpower_tracking_thermalmeter(
  971. struct ieee80211_hw *hw)
  972. {
  973. struct rtl_priv *rtlpriv = rtl_priv(hw);
  974. static u8 tm_trigger;
  975. if (!tm_trigger) {
  976. rtl_set_rfreg(hw, RF90_PATH_A, RF_T_METER_88E,
  977. BIT(17) | BIT(16), 0x03);
  978. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  979. "Trigger 8812 Thermal Meter!!\n");
  980. tm_trigger = 1;
  981. return;
  982. }
  983. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  984. "Schedule TxPowerTracking direct call!!\n");
  985. rtl8812ae_dm_txpower_tracking_callback_thermalmeter(hw);
  986. tm_trigger = 0;
  987. }
  988. static void rtl8821ae_dm_iq_calibrate(struct ieee80211_hw *hw)
  989. {
  990. struct rtl_mac *mac = rtl_mac(rtl_priv(hw));
  991. struct rtl_dm *rtldm = rtl_dm(rtl_priv(hw));
  992. struct rtl_hal *rtlhal = rtl_hal(rtl_priv(hw));
  993. if (mac->link_state >= MAC80211_LINKED) {
  994. if (rtldm->linked_interval < 3)
  995. rtldm->linked_interval++;
  996. if (rtldm->linked_interval == 2) {
  997. if (rtlhal->hw_type == HARDWARE_TYPE_RTL8812AE)
  998. rtl8812ae_phy_iq_calibrate(hw, false);
  999. else
  1000. rtl8821ae_phy_iq_calibrate(hw, false);
  1001. }
  1002. } else {
  1003. rtldm->linked_interval = 0;
  1004. }
  1005. }
  1006. static void rtl8812ae_get_delta_swing_table(struct ieee80211_hw *hw,
  1007. u8 **up_a, u8 **down_a,
  1008. u8 **up_b, u8 **down_b)
  1009. {
  1010. struct rtl_priv *rtlpriv = rtl_priv(hw);
  1011. struct rtl_phy *rtlphy = &rtlpriv->phy;
  1012. struct rtl_dm *rtldm = rtl_dm(rtl_priv(hw));
  1013. u8 channel = rtlphy->current_channel;
  1014. u8 rate = rtldm->tx_rate;
  1015. if (1 <= channel && channel <= 14) {
  1016. if (RTL8821AE_RX_HAL_IS_CCK_RATE(rate)) {
  1017. *up_a = rtl8812ae_delta_swing_table_idx_24gccka_p;
  1018. *down_a = rtl8812ae_delta_swing_table_idx_24gccka_n;
  1019. *up_b = rtl8812ae_delta_swing_table_idx_24gcckb_p;
  1020. *down_b = rtl8812ae_delta_swing_table_idx_24gcckb_n;
  1021. } else {
  1022. *up_a = rtl8812ae_delta_swing_table_idx_24ga_p;
  1023. *down_a = rtl8812ae_delta_swing_table_idx_24ga_n;
  1024. *up_b = rtl8812ae_delta_swing_table_idx_24gb_p;
  1025. *down_b = rtl8812ae_delta_swing_table_idx_24gb_n;
  1026. }
  1027. } else if (36 <= channel && channel <= 64) {
  1028. *up_a = rtl8812ae_delta_swing_table_idx_5ga_p[0];
  1029. *down_a = rtl8812ae_delta_swing_table_idx_5ga_n[0];
  1030. *up_b = rtl8812ae_delta_swing_table_idx_5gb_p[0];
  1031. *down_b = rtl8812ae_delta_swing_table_idx_5gb_n[0];
  1032. } else if (100 <= channel && channel <= 140) {
  1033. *up_a = rtl8812ae_delta_swing_table_idx_5ga_p[1];
  1034. *down_a = rtl8812ae_delta_swing_table_idx_5ga_n[1];
  1035. *up_b = rtl8812ae_delta_swing_table_idx_5gb_p[1];
  1036. *down_b = rtl8812ae_delta_swing_table_idx_5gb_n[1];
  1037. } else if (149 <= channel && channel <= 173) {
  1038. *up_a = rtl8812ae_delta_swing_table_idx_5ga_p[2];
  1039. *down_a = rtl8812ae_delta_swing_table_idx_5ga_n[2];
  1040. *up_b = rtl8812ae_delta_swing_table_idx_5gb_p[2];
  1041. *down_b = rtl8812ae_delta_swing_table_idx_5gb_n[2];
  1042. } else {
  1043. *up_a = (u8 *)rtl8818e_delta_swing_table_idx_24gb_p;
  1044. *down_a = (u8 *)rtl8818e_delta_swing_table_idx_24gb_n;
  1045. *up_b = (u8 *)rtl8818e_delta_swing_table_idx_24gb_p;
  1046. *down_b = (u8 *)rtl8818e_delta_swing_table_idx_24gb_n;
  1047. }
  1048. }
  1049. void rtl8821ae_dm_update_init_rate(struct ieee80211_hw *hw, u8 rate)
  1050. {
  1051. struct rtl_priv *rtlpriv = rtl_priv(hw);
  1052. struct rtl_dm *rtldm = rtl_dm(rtl_priv(hw));
  1053. struct rtl_hal *rtlhal = rtl_hal(rtl_priv(hw));
  1054. u8 p = 0;
  1055. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  1056. "Get C2H Command! Rate=0x%x\n", rate);
  1057. rtldm->tx_rate = rate;
  1058. if (rtlhal->hw_type == HARDWARE_TYPE_RTL8821AE) {
  1059. rtl8821ae_dm_txpwr_track_set_pwr(hw, MIX_MODE, RF90_PATH_A, 0);
  1060. } else {
  1061. for (p = RF90_PATH_A; p < MAX_PATH_NUM_8812A; p++)
  1062. rtl8812ae_dm_txpwr_track_set_pwr(hw, MIX_MODE, p, 0);
  1063. }
  1064. }
  1065. u8 rtl8821ae_hw_rate_to_mrate(struct ieee80211_hw *hw, u8 rate)
  1066. {
  1067. struct rtl_priv *rtlpriv = rtl_priv(hw);
  1068. u8 ret_rate = MGN_1M;
  1069. switch (rate) {
  1070. case DESC_RATE1M:
  1071. ret_rate = MGN_1M;
  1072. break;
  1073. case DESC_RATE2M:
  1074. ret_rate = MGN_2M;
  1075. break;
  1076. case DESC_RATE5_5M:
  1077. ret_rate = MGN_5_5M;
  1078. break;
  1079. case DESC_RATE11M:
  1080. ret_rate = MGN_11M;
  1081. break;
  1082. case DESC_RATE6M:
  1083. ret_rate = MGN_6M;
  1084. break;
  1085. case DESC_RATE9M:
  1086. ret_rate = MGN_9M;
  1087. break;
  1088. case DESC_RATE12M:
  1089. ret_rate = MGN_12M;
  1090. break;
  1091. case DESC_RATE18M:
  1092. ret_rate = MGN_18M;
  1093. break;
  1094. case DESC_RATE24M:
  1095. ret_rate = MGN_24M;
  1096. break;
  1097. case DESC_RATE36M:
  1098. ret_rate = MGN_36M;
  1099. break;
  1100. case DESC_RATE48M:
  1101. ret_rate = MGN_48M;
  1102. break;
  1103. case DESC_RATE54M:
  1104. ret_rate = MGN_54M;
  1105. break;
  1106. case DESC_RATEMCS0:
  1107. ret_rate = MGN_MCS0;
  1108. break;
  1109. case DESC_RATEMCS1:
  1110. ret_rate = MGN_MCS1;
  1111. break;
  1112. case DESC_RATEMCS2:
  1113. ret_rate = MGN_MCS2;
  1114. break;
  1115. case DESC_RATEMCS3:
  1116. ret_rate = MGN_MCS3;
  1117. break;
  1118. case DESC_RATEMCS4:
  1119. ret_rate = MGN_MCS4;
  1120. break;
  1121. case DESC_RATEMCS5:
  1122. ret_rate = MGN_MCS5;
  1123. break;
  1124. case DESC_RATEMCS6:
  1125. ret_rate = MGN_MCS6;
  1126. break;
  1127. case DESC_RATEMCS7:
  1128. ret_rate = MGN_MCS7;
  1129. break;
  1130. case DESC_RATEMCS8:
  1131. ret_rate = MGN_MCS8;
  1132. break;
  1133. case DESC_RATEMCS9:
  1134. ret_rate = MGN_MCS9;
  1135. break;
  1136. case DESC_RATEMCS10:
  1137. ret_rate = MGN_MCS10;
  1138. break;
  1139. case DESC_RATEMCS11:
  1140. ret_rate = MGN_MCS11;
  1141. break;
  1142. case DESC_RATEMCS12:
  1143. ret_rate = MGN_MCS12;
  1144. break;
  1145. case DESC_RATEMCS13:
  1146. ret_rate = MGN_MCS13;
  1147. break;
  1148. case DESC_RATEMCS14:
  1149. ret_rate = MGN_MCS14;
  1150. break;
  1151. case DESC_RATEMCS15:
  1152. ret_rate = MGN_MCS15;
  1153. break;
  1154. case DESC_RATEVHT1SS_MCS0:
  1155. ret_rate = MGN_VHT1SS_MCS0;
  1156. break;
  1157. case DESC_RATEVHT1SS_MCS1:
  1158. ret_rate = MGN_VHT1SS_MCS1;
  1159. break;
  1160. case DESC_RATEVHT1SS_MCS2:
  1161. ret_rate = MGN_VHT1SS_MCS2;
  1162. break;
  1163. case DESC_RATEVHT1SS_MCS3:
  1164. ret_rate = MGN_VHT1SS_MCS3;
  1165. break;
  1166. case DESC_RATEVHT1SS_MCS4:
  1167. ret_rate = MGN_VHT1SS_MCS4;
  1168. break;
  1169. case DESC_RATEVHT1SS_MCS5:
  1170. ret_rate = MGN_VHT1SS_MCS5;
  1171. break;
  1172. case DESC_RATEVHT1SS_MCS6:
  1173. ret_rate = MGN_VHT1SS_MCS6;
  1174. break;
  1175. case DESC_RATEVHT1SS_MCS7:
  1176. ret_rate = MGN_VHT1SS_MCS7;
  1177. break;
  1178. case DESC_RATEVHT1SS_MCS8:
  1179. ret_rate = MGN_VHT1SS_MCS8;
  1180. break;
  1181. case DESC_RATEVHT1SS_MCS9:
  1182. ret_rate = MGN_VHT1SS_MCS9;
  1183. break;
  1184. case DESC_RATEVHT2SS_MCS0:
  1185. ret_rate = MGN_VHT2SS_MCS0;
  1186. break;
  1187. case DESC_RATEVHT2SS_MCS1:
  1188. ret_rate = MGN_VHT2SS_MCS1;
  1189. break;
  1190. case DESC_RATEVHT2SS_MCS2:
  1191. ret_rate = MGN_VHT2SS_MCS2;
  1192. break;
  1193. case DESC_RATEVHT2SS_MCS3:
  1194. ret_rate = MGN_VHT2SS_MCS3;
  1195. break;
  1196. case DESC_RATEVHT2SS_MCS4:
  1197. ret_rate = MGN_VHT2SS_MCS4;
  1198. break;
  1199. case DESC_RATEVHT2SS_MCS5:
  1200. ret_rate = MGN_VHT2SS_MCS5;
  1201. break;
  1202. case DESC_RATEVHT2SS_MCS6:
  1203. ret_rate = MGN_VHT2SS_MCS6;
  1204. break;
  1205. case DESC_RATEVHT2SS_MCS7:
  1206. ret_rate = MGN_VHT2SS_MCS7;
  1207. break;
  1208. case DESC_RATEVHT2SS_MCS8:
  1209. ret_rate = MGN_VHT2SS_MCS8;
  1210. break;
  1211. case DESC_RATEVHT2SS_MCS9:
  1212. ret_rate = MGN_VHT2SS_MCS9;
  1213. break;
  1214. default:
  1215. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  1216. "HwRateToMRate8812(): Non supported Rate [%x]!!!\n",
  1217. rate);
  1218. break;
  1219. }
  1220. return ret_rate;
  1221. }
  1222. /*-----------------------------------------------------------------------------
  1223. * Function: odm_TxPwrTrackSetPwr88E()
  1224. *
  1225. * Overview: 88E change all channel tx power accordign to flag.
  1226. * OFDM & CCK are all different.
  1227. *
  1228. * Input: NONE
  1229. *
  1230. * Output: NONE
  1231. *
  1232. * Return: NONE
  1233. *
  1234. * Revised History:
  1235. * When Who Remark
  1236. * 04/23/2012 MHC Create Version 0.
  1237. *
  1238. *---------------------------------------------------------------------------
  1239. */
  1240. void rtl8812ae_dm_txpwr_track_set_pwr(struct ieee80211_hw *hw,
  1241. enum pwr_track_control_method method,
  1242. u8 rf_path, u8 channel_mapped_index)
  1243. {
  1244. struct rtl_priv *rtlpriv = rtl_priv(hw);
  1245. struct rtl_dm *rtldm = rtl_dm(rtl_priv(hw));
  1246. struct rtl_phy *rtlphy = &rtlpriv->phy;
  1247. u32 final_swing_idx[2];
  1248. u8 pwr_tracking_limit = 26; /*+1.0dB*/
  1249. u8 tx_rate = 0xFF;
  1250. char final_ofdm_swing_index = 0;
  1251. if (rtldm->tx_rate != 0xFF)
  1252. tx_rate =
  1253. rtl8821ae_hw_rate_to_mrate(hw, rtldm->tx_rate);
  1254. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  1255. "===>rtl8812ae_dm_txpwr_track_set_pwr\n");
  1256. /*20130429 Mimic Modify High Rate BBSwing Limit.*/
  1257. if (tx_rate != 0xFF) {
  1258. /*CCK*/
  1259. if ((tx_rate >= MGN_1M) && (tx_rate <= MGN_11M))
  1260. pwr_tracking_limit = 32; /*+4dB*/
  1261. /*OFDM*/
  1262. else if ((tx_rate >= MGN_6M) && (tx_rate <= MGN_48M))
  1263. pwr_tracking_limit = 30; /*+3dB*/
  1264. else if (tx_rate == MGN_54M)
  1265. pwr_tracking_limit = 28; /*+2dB*/
  1266. /*HT*/
  1267. /*QPSK/BPSK*/
  1268. else if ((tx_rate >= MGN_MCS0) && (tx_rate <= MGN_MCS2))
  1269. pwr_tracking_limit = 34; /*+5dB*/
  1270. /*16QAM*/
  1271. else if ((tx_rate >= MGN_MCS3) && (tx_rate <= MGN_MCS4))
  1272. pwr_tracking_limit = 30; /*+3dB*/
  1273. /*64QAM*/
  1274. else if ((tx_rate >= MGN_MCS5) && (tx_rate <= MGN_MCS7))
  1275. pwr_tracking_limit = 28; /*+2dB*/
  1276. /*QPSK/BPSK*/
  1277. else if ((tx_rate >= MGN_MCS8) && (tx_rate <= MGN_MCS10))
  1278. pwr_tracking_limit = 34; /*+5dB*/
  1279. /*16QAM*/
  1280. else if ((tx_rate >= MGN_MCS11) && (tx_rate <= MGN_MCS12))
  1281. pwr_tracking_limit = 30; /*+3dB*/
  1282. /*64QAM*/
  1283. else if ((tx_rate >= MGN_MCS13) && (tx_rate <= MGN_MCS15))
  1284. pwr_tracking_limit = 28; /*+2dB*/
  1285. /*2 VHT*/
  1286. /*QPSK/BPSK*/
  1287. else if ((tx_rate >= MGN_VHT1SS_MCS0) &&
  1288. (tx_rate <= MGN_VHT1SS_MCS2))
  1289. pwr_tracking_limit = 34; /*+5dB*/
  1290. /*16QAM*/
  1291. else if ((tx_rate >= MGN_VHT1SS_MCS3) &&
  1292. (tx_rate <= MGN_VHT1SS_MCS4))
  1293. pwr_tracking_limit = 30; /*+3dB*/
  1294. /*64QAM*/
  1295. else if ((tx_rate >= MGN_VHT1SS_MCS5) &&
  1296. (tx_rate <= MGN_VHT1SS_MCS6))
  1297. pwr_tracking_limit = 28; /*+2dB*/
  1298. else if (tx_rate == MGN_VHT1SS_MCS7) /*64QAM*/
  1299. pwr_tracking_limit = 26; /*+1dB*/
  1300. else if (tx_rate == MGN_VHT1SS_MCS8) /*256QAM*/
  1301. pwr_tracking_limit = 24; /*+0dB*/
  1302. else if (tx_rate == MGN_VHT1SS_MCS9) /*256QAM*/
  1303. pwr_tracking_limit = 22; /*-1dB*/
  1304. /*QPSK/BPSK*/
  1305. else if ((tx_rate >= MGN_VHT2SS_MCS0) &&
  1306. (tx_rate <= MGN_VHT2SS_MCS2))
  1307. pwr_tracking_limit = 34; /*+5dB*/
  1308. /*16QAM*/
  1309. else if ((tx_rate >= MGN_VHT2SS_MCS3) &&
  1310. (tx_rate <= MGN_VHT2SS_MCS4))
  1311. pwr_tracking_limit = 30; /*+3dB*/
  1312. /*64QAM*/
  1313. else if ((tx_rate >= MGN_VHT2SS_MCS5) &&
  1314. (tx_rate <= MGN_VHT2SS_MCS6))
  1315. pwr_tracking_limit = 28; /*+2dB*/
  1316. else if (tx_rate == MGN_VHT2SS_MCS7) /*64QAM*/
  1317. pwr_tracking_limit = 26; /*+1dB*/
  1318. else if (tx_rate == MGN_VHT2SS_MCS8) /*256QAM*/
  1319. pwr_tracking_limit = 24; /*+0dB*/
  1320. else if (tx_rate == MGN_VHT2SS_MCS9) /*256QAM*/
  1321. pwr_tracking_limit = 22; /*-1dB*/
  1322. else
  1323. pwr_tracking_limit = 24;
  1324. }
  1325. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  1326. "TxRate=0x%x, PwrTrackingLimit=%d\n",
  1327. tx_rate, pwr_tracking_limit);
  1328. if (method == BBSWING) {
  1329. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  1330. "===>rtl8812ae_dm_txpwr_track_set_pwr\n");
  1331. if (rf_path == RF90_PATH_A) {
  1332. u32 tmp;
  1333. final_swing_idx[RF90_PATH_A] =
  1334. (rtldm->ofdm_index[RF90_PATH_A] >
  1335. pwr_tracking_limit) ?
  1336. pwr_tracking_limit :
  1337. rtldm->ofdm_index[RF90_PATH_A];
  1338. tmp = final_swing_idx[RF90_PATH_A];
  1339. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  1340. "pDM_Odm->RFCalibrateInfo.OFDM_index[ODM_RF_PATH_A]=%d,pDM_Odm->RealBbSwingIdx[ODM_RF_PATH_A]=%d\n",
  1341. rtldm->ofdm_index[RF90_PATH_A],
  1342. final_swing_idx[RF90_PATH_A]);
  1343. rtl_set_bbreg(hw, RA_TXSCALE, 0xFFE00000,
  1344. txscaling_tbl[tmp]);
  1345. } else {
  1346. u32 tmp;
  1347. final_swing_idx[RF90_PATH_B] =
  1348. rtldm->ofdm_index[RF90_PATH_B] >
  1349. pwr_tracking_limit ?
  1350. pwr_tracking_limit :
  1351. rtldm->ofdm_index[RF90_PATH_B];
  1352. tmp = final_swing_idx[RF90_PATH_B];
  1353. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  1354. "pDM_Odm->RFCalibrateInfo.OFDM_index[ODM_RF_PATH_B]=%d, pDM_Odm->RealBbSwingIdx[ODM_RF_PATH_B]=%d\n",
  1355. rtldm->ofdm_index[RF90_PATH_B],
  1356. final_swing_idx[RF90_PATH_B]);
  1357. rtl_set_bbreg(hw, RB_TXSCALE, 0xFFE00000,
  1358. txscaling_tbl[tmp]);
  1359. }
  1360. } else if (method == MIX_MODE) {
  1361. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  1362. "pDM_Odm->DefaultOfdmIndex=%d, pDM_Odm->Aboslute_OFDMSwingIdx[RFPath]=%d, RF_Path = %d\n",
  1363. rtldm->default_ofdm_index,
  1364. rtldm->absolute_ofdm_swing_idx[rf_path],
  1365. rf_path);
  1366. final_ofdm_swing_index = rtldm->default_ofdm_index +
  1367. rtldm->absolute_ofdm_swing_idx[rf_path];
  1368. if (rf_path == RF90_PATH_A) {
  1369. /*BBSwing higher then Limit*/
  1370. if (final_ofdm_swing_index > pwr_tracking_limit) {
  1371. rtldm->remnant_cck_idx =
  1372. final_ofdm_swing_index -
  1373. pwr_tracking_limit;
  1374. /* CCK Follow the same compensation value
  1375. * as Path A
  1376. */
  1377. rtldm->remnant_ofdm_swing_idx[rf_path] =
  1378. final_ofdm_swing_index -
  1379. pwr_tracking_limit;
  1380. rtl_set_bbreg(hw, RA_TXSCALE, 0xFFE00000,
  1381. txscaling_tbl[pwr_tracking_limit]);
  1382. rtldm->modify_txagc_flag_path_a = true;
  1383. /*Set TxAGC Page C{};*/
  1384. rtl8821ae_phy_set_txpower_level_by_path(hw,
  1385. rtlphy->current_channel,
  1386. RF90_PATH_A);
  1387. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  1388. "******Path_A Over BBSwing Limit ,PwrTrackingLimit = %d ,Remnant TxAGC Value = %d\n",
  1389. pwr_tracking_limit,
  1390. rtldm->remnant_ofdm_swing_idx[rf_path]);
  1391. } else if (final_ofdm_swing_index < 0) {
  1392. rtldm->remnant_cck_idx = final_ofdm_swing_index;
  1393. /* CCK Follow the same compensate value as Path A*/
  1394. rtldm->remnant_ofdm_swing_idx[rf_path] =
  1395. final_ofdm_swing_index;
  1396. rtl_set_bbreg(hw, RA_TXSCALE, 0xFFE00000,
  1397. txscaling_tbl[0]);
  1398. rtldm->modify_txagc_flag_path_a = true;
  1399. /*Set TxAGC Page C{};*/
  1400. rtl8821ae_phy_set_txpower_level_by_path(hw,
  1401. rtlphy->current_channel, RF90_PATH_A);
  1402. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  1403. "******Path_A Lower then BBSwing lower bound 0 , Remnant TxAGC Value = %d\n",
  1404. rtldm->remnant_ofdm_swing_idx[rf_path]);
  1405. } else {
  1406. rtl_set_bbreg(hw, RA_TXSCALE, 0xFFE00000,
  1407. txscaling_tbl[(u8)final_ofdm_swing_index]);
  1408. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  1409. "******Path_A Compensate with BBSwing, Final_OFDM_Swing_Index = %d\n",
  1410. final_ofdm_swing_index);
  1411. /*If TxAGC has changed, reset TxAGC again*/
  1412. if (rtldm->modify_txagc_flag_path_a) {
  1413. rtldm->remnant_cck_idx = 0;
  1414. rtldm->remnant_ofdm_swing_idx[rf_path] = 0;
  1415. /*Set TxAGC Page C{};*/
  1416. rtl8821ae_phy_set_txpower_level_by_path(hw,
  1417. rtlphy->current_channel, RF90_PATH_A);
  1418. rtldm->modify_txagc_flag_path_a = false;
  1419. RT_TRACE(rtlpriv, COMP_POWER_TRACKING,
  1420. DBG_LOUD,
  1421. "******Path_A pDM_Odm->Modify_TxAGC_Flag = FALSE\n");
  1422. }
  1423. }
  1424. }
  1425. /*BBSwing higher then Limit*/
  1426. if (rf_path == RF90_PATH_B) {
  1427. if (final_ofdm_swing_index > pwr_tracking_limit) {
  1428. rtldm->remnant_ofdm_swing_idx[rf_path] =
  1429. final_ofdm_swing_index -
  1430. pwr_tracking_limit;
  1431. rtl_set_bbreg(hw, RB_TXSCALE,
  1432. 0xFFE00000,
  1433. txscaling_tbl[pwr_tracking_limit]);
  1434. rtldm->modify_txagc_flag_path_b = true;
  1435. /*Set TxAGC Page E{};*/
  1436. rtl8821ae_phy_set_txpower_level_by_path(hw,
  1437. rtlphy->current_channel, RF90_PATH_B);
  1438. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  1439. "******Path_B Over BBSwing Limit , PwrTrackingLimit = %d , Remnant TxAGC Value = %d\n",
  1440. pwr_tracking_limit,
  1441. rtldm->remnant_ofdm_swing_idx[rf_path]);
  1442. } else if (final_ofdm_swing_index < 0) {
  1443. rtldm->remnant_ofdm_swing_idx[rf_path] =
  1444. final_ofdm_swing_index;
  1445. rtl_set_bbreg(hw, RB_TXSCALE, 0xFFE00000,
  1446. txscaling_tbl[0]);
  1447. rtldm->modify_txagc_flag_path_b = true;
  1448. /*Set TxAGC Page E{};*/
  1449. rtl8821ae_phy_set_txpower_level_by_path(hw,
  1450. rtlphy->current_channel, RF90_PATH_B);
  1451. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  1452. "******Path_B Lower then BBSwing lower bound 0 , Remnant TxAGC Value = %d\n",
  1453. rtldm->remnant_ofdm_swing_idx[rf_path]);
  1454. } else {
  1455. rtl_set_bbreg(hw, RB_TXSCALE, 0xFFE00000,
  1456. txscaling_tbl[(u8)final_ofdm_swing_index]);
  1457. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  1458. "******Path_B Compensate with BBSwing ,Final_OFDM_Swing_Index = %d\n",
  1459. final_ofdm_swing_index);
  1460. /*If TxAGC has changed, reset TxAGC again*/
  1461. if (rtldm->modify_txagc_flag_path_b) {
  1462. rtldm->remnant_ofdm_swing_idx[rf_path] = 0;
  1463. /*Set TxAGC Page E{};*/
  1464. rtl8821ae_phy_set_txpower_level_by_path(hw,
  1465. rtlphy->current_channel, RF90_PATH_B);
  1466. rtldm->modify_txagc_flag_path_b =
  1467. false;
  1468. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  1469. "******Path_B pDM_Odm->Modify_TxAGC_Flag = FALSE\n");
  1470. }
  1471. }
  1472. }
  1473. } else {
  1474. return;
  1475. }
  1476. }
  1477. void rtl8812ae_dm_txpower_tracking_callback_thermalmeter(
  1478. struct ieee80211_hw *hw)
  1479. {
  1480. struct rtl_priv *rtlpriv = rtl_priv(hw);
  1481. struct rtl_efuse *rtlefuse = rtl_efuse(rtl_priv(hw));
  1482. struct rtl_dm *rtldm = rtl_dm(rtl_priv(hw));
  1483. struct rtl_hal *rtlhal = rtl_hal(rtl_priv(hw));
  1484. u8 thermal_value = 0, delta, delta_lck, delta_iqk, p = 0, i = 0;
  1485. u8 thermal_value_avg_count = 0;
  1486. u32 thermal_value_avg = 0;
  1487. /* OFDM BB Swing should be less than +3.0dB, */
  1488. u8 ofdm_min_index = 6;
  1489. /* GetRightChnlPlaceforIQK(pHalData->CurrentChannel)*/
  1490. u8 index_for_channel = 0;
  1491. /* 1. The following TWO tables decide
  1492. * the final index of OFDM/CCK swing table.
  1493. */
  1494. u8 *delta_swing_table_idx_tup_a;
  1495. u8 *delta_swing_table_idx_tdown_a;
  1496. u8 *delta_swing_table_idx_tup_b;
  1497. u8 *delta_swing_table_idx_tdown_b;
  1498. /*2. Initilization ( 7 steps in total )*/
  1499. rtl8812ae_get_delta_swing_table(hw,
  1500. (u8 **)&delta_swing_table_idx_tup_a,
  1501. (u8 **)&delta_swing_table_idx_tdown_a,
  1502. (u8 **)&delta_swing_table_idx_tup_b,
  1503. (u8 **)&delta_swing_table_idx_tdown_b);
  1504. rtldm->txpower_trackinginit = true;
  1505. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  1506. "pDM_Odm->BbSwingIdxCckBase: %d, pDM_Odm->BbSwingIdxOfdmBase[A]:%d, pDM_Odm->DefaultOfdmIndex: %d\n",
  1507. rtldm->swing_idx_cck_base,
  1508. rtldm->swing_idx_ofdm_base[RF90_PATH_A],
  1509. rtldm->default_ofdm_index);
  1510. thermal_value = (u8)rtl_get_rfreg(hw, RF90_PATH_A,
  1511. /*0x42: RF Reg[15:10] 88E*/
  1512. RF_T_METER_8812A, 0xfc00);
  1513. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  1514. "Thermal Meter = 0x%X, EFUSE Thermal Base = 0x%X\n",
  1515. thermal_value, rtlefuse->eeprom_thermalmeter);
  1516. if (!rtldm->txpower_track_control ||
  1517. rtlefuse->eeprom_thermalmeter == 0 ||
  1518. rtlefuse->eeprom_thermalmeter == 0xFF)
  1519. return;
  1520. /* 3. Initialize ThermalValues of RFCalibrateInfo*/
  1521. if (rtlhal->reloadtxpowerindex)
  1522. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  1523. "reload ofdm index for band switch\n");
  1524. /*4. Calculate average thermal meter*/
  1525. rtldm->thermalvalue_avg[rtldm->thermalvalue_avg_index] = thermal_value;
  1526. rtldm->thermalvalue_avg_index++;
  1527. if (rtldm->thermalvalue_avg_index == AVG_THERMAL_NUM_8812A)
  1528. /*Average times = c.AverageThermalNum*/
  1529. rtldm->thermalvalue_avg_index = 0;
  1530. for (i = 0; i < AVG_THERMAL_NUM_8812A; i++) {
  1531. if (rtldm->thermalvalue_avg[i]) {
  1532. thermal_value_avg += rtldm->thermalvalue_avg[i];
  1533. thermal_value_avg_count++;
  1534. }
  1535. }
  1536. /*Calculate Average ThermalValue after average enough times*/
  1537. if (thermal_value_avg_count) {
  1538. thermal_value = (u8)(thermal_value_avg /
  1539. thermal_value_avg_count);
  1540. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  1541. "AVG Thermal Meter = 0x%X, EFUSE Thermal Base = 0x%X\n",
  1542. thermal_value, rtlefuse->eeprom_thermalmeter);
  1543. }
  1544. /*5. Calculate delta, delta_LCK, delta_IQK.
  1545. *"delta" here is used to determine whether
  1546. *thermal value changes or not.
  1547. */
  1548. delta = (thermal_value > rtldm->thermalvalue) ?
  1549. (thermal_value - rtldm->thermalvalue) :
  1550. (rtldm->thermalvalue - thermal_value);
  1551. delta_lck = (thermal_value > rtldm->thermalvalue_lck) ?
  1552. (thermal_value - rtldm->thermalvalue_lck) :
  1553. (rtldm->thermalvalue_lck - thermal_value);
  1554. delta_iqk = (thermal_value > rtldm->thermalvalue_iqk) ?
  1555. (thermal_value - rtldm->thermalvalue_iqk) :
  1556. (rtldm->thermalvalue_iqk - thermal_value);
  1557. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  1558. "(delta, delta_LCK, delta_IQK) = (%d, %d, %d)\n",
  1559. delta, delta_lck, delta_iqk);
  1560. /* 6. If necessary, do LCK.
  1561. * Delta temperature is equal to or larger than 20 centigrade.
  1562. */
  1563. if (delta_lck >= IQK_THRESHOLD) {
  1564. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  1565. "delta_LCK(%d) >= Threshold_IQK(%d)\n",
  1566. delta_lck, IQK_THRESHOLD);
  1567. rtldm->thermalvalue_lck = thermal_value;
  1568. rtl8821ae_phy_lc_calibrate(hw);
  1569. }
  1570. /*7. If necessary, move the index of swing table to adjust Tx power.*/
  1571. if (delta > 0 && rtldm->txpower_track_control) {
  1572. /* "delta" here is used to record the
  1573. * absolute value of differrence.
  1574. */
  1575. delta = thermal_value > rtlefuse->eeprom_thermalmeter ?
  1576. (thermal_value - rtlefuse->eeprom_thermalmeter) :
  1577. (rtlefuse->eeprom_thermalmeter - thermal_value);
  1578. if (delta >= TXPWR_TRACK_TABLE_SIZE)
  1579. delta = TXPWR_TRACK_TABLE_SIZE - 1;
  1580. /*7.1 The Final Power Index = BaseIndex + PowerIndexOffset*/
  1581. if (thermal_value > rtlefuse->eeprom_thermalmeter) {
  1582. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  1583. "delta_swing_table_idx_tup_a[%d] = %d\n",
  1584. delta, delta_swing_table_idx_tup_a[delta]);
  1585. rtldm->delta_power_index_last[RF90_PATH_A] =
  1586. rtldm->delta_power_index[RF90_PATH_A];
  1587. rtldm->delta_power_index[RF90_PATH_A] =
  1588. delta_swing_table_idx_tup_a[delta];
  1589. rtldm->absolute_ofdm_swing_idx[RF90_PATH_A] =
  1590. delta_swing_table_idx_tup_a[delta];
  1591. /*Record delta swing for mix mode power tracking*/
  1592. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  1593. "******Temp is higher and pDM_Odm->Aboslute_OFDMSwingIdx[ODM_RF_PATH_A] = %d\n",
  1594. rtldm->absolute_ofdm_swing_idx[RF90_PATH_A]);
  1595. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  1596. "delta_swing_table_idx_tup_b[%d] = %d\n",
  1597. delta, delta_swing_table_idx_tup_b[delta]);
  1598. rtldm->delta_power_index_last[RF90_PATH_B] =
  1599. rtldm->delta_power_index[RF90_PATH_B];
  1600. rtldm->delta_power_index[RF90_PATH_B] =
  1601. delta_swing_table_idx_tup_b[delta];
  1602. rtldm->absolute_ofdm_swing_idx[RF90_PATH_B] =
  1603. delta_swing_table_idx_tup_b[delta];
  1604. /*Record delta swing for mix mode power tracking*/
  1605. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  1606. "******Temp is higher and pDM_Odm->Aboslute_OFDMSwingIdx[ODM_RF_PATH_B] = %d\n",
  1607. rtldm->absolute_ofdm_swing_idx[RF90_PATH_B]);
  1608. } else {
  1609. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  1610. "delta_swing_table_idx_tdown_a[%d] = %d\n",
  1611. delta, delta_swing_table_idx_tdown_a[delta]);
  1612. rtldm->delta_power_index_last[RF90_PATH_A] =
  1613. rtldm->delta_power_index[RF90_PATH_A];
  1614. rtldm->delta_power_index[RF90_PATH_A] =
  1615. -1 * delta_swing_table_idx_tdown_a[delta];
  1616. rtldm->absolute_ofdm_swing_idx[RF90_PATH_A] =
  1617. -1 * delta_swing_table_idx_tdown_a[delta];
  1618. /* Record delta swing for mix mode power tracking*/
  1619. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  1620. "******Temp is lower and pDM_Odm->Aboslute_OFDMSwingIdx[ODM_RF_PATH_A] = %d\n",
  1621. rtldm->absolute_ofdm_swing_idx[RF90_PATH_A]);
  1622. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  1623. "deltaSwingTableIdx_TDOWN_B[%d] = %d\n",
  1624. delta, delta_swing_table_idx_tdown_b[delta]);
  1625. rtldm->delta_power_index_last[RF90_PATH_B] =
  1626. rtldm->delta_power_index[RF90_PATH_B];
  1627. rtldm->delta_power_index[RF90_PATH_B] =
  1628. -1 * delta_swing_table_idx_tdown_b[delta];
  1629. rtldm->absolute_ofdm_swing_idx[RF90_PATH_B] =
  1630. -1 * delta_swing_table_idx_tdown_b[delta];
  1631. /*Record delta swing for mix mode power tracking*/
  1632. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  1633. "******Temp is lower and pDM_Odm->Aboslute_OFDMSwingIdx[ODM_RF_PATH_B] = %d\n",
  1634. rtldm->absolute_ofdm_swing_idx[RF90_PATH_B]);
  1635. }
  1636. for (p = RF90_PATH_A; p < MAX_PATH_NUM_8812A; p++) {
  1637. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  1638. "============================= [Path-%c]Calculating PowerIndexOffset =============================\n",
  1639. (p == RF90_PATH_A ? 'A' : 'B'));
  1640. if (rtldm->delta_power_index[p] ==
  1641. rtldm->delta_power_index_last[p])
  1642. /*If Thermal value changes but lookup
  1643. table value still the same*/
  1644. rtldm->power_index_offset[p] = 0;
  1645. else
  1646. rtldm->power_index_offset[p] =
  1647. rtldm->delta_power_index[p] -
  1648. rtldm->delta_power_index_last[p];
  1649. /* Power Index Diff between 2
  1650. * times Power Tracking
  1651. */
  1652. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  1653. "[Path-%c] PowerIndexOffset(%d) =DeltaPowerIndex(%d) -DeltaPowerIndexLast(%d)\n",
  1654. (p == RF90_PATH_A ? 'A' : 'B'),
  1655. rtldm->power_index_offset[p],
  1656. rtldm->delta_power_index[p] ,
  1657. rtldm->delta_power_index_last[p]);
  1658. rtldm->ofdm_index[p] =
  1659. rtldm->swing_idx_ofdm_base[p] +
  1660. rtldm->power_index_offset[p];
  1661. rtldm->cck_index =
  1662. rtldm->swing_idx_cck_base +
  1663. rtldm->power_index_offset[p];
  1664. rtldm->swing_idx_cck = rtldm->cck_index;
  1665. rtldm->swing_idx_ofdm[p] = rtldm->ofdm_index[p];
  1666. /****Print BB Swing Base and Index Offset */
  1667. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  1668. "The 'CCK' final index(%d) = BaseIndex(%d) + PowerIndexOffset(%d)\n",
  1669. rtldm->swing_idx_cck,
  1670. rtldm->swing_idx_cck_base,
  1671. rtldm->power_index_offset[p]);
  1672. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  1673. "The 'OFDM' final index(%d) = BaseIndex[%c](%d) + PowerIndexOffset(%d)\n",
  1674. rtldm->swing_idx_ofdm[p],
  1675. (p == RF90_PATH_A ? 'A' : 'B'),
  1676. rtldm->swing_idx_ofdm_base[p],
  1677. rtldm->power_index_offset[p]);
  1678. /*7.1 Handle boundary conditions of index.*/
  1679. if (rtldm->ofdm_index[p] > TXSCALE_TABLE_SIZE - 1)
  1680. rtldm->ofdm_index[p] = TXSCALE_TABLE_SIZE - 1;
  1681. else if (rtldm->ofdm_index[p] < ofdm_min_index)
  1682. rtldm->ofdm_index[p] = ofdm_min_index;
  1683. }
  1684. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  1685. "\n\n====================================================================================\n");
  1686. if (rtldm->cck_index > TXSCALE_TABLE_SIZE - 1)
  1687. rtldm->cck_index = TXSCALE_TABLE_SIZE - 1;
  1688. else if (rtldm->cck_index < 0)
  1689. rtldm->cck_index = 0;
  1690. } else {
  1691. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  1692. "The thermal meter is unchanged or TxPowerTracking OFF(%d): ThermalValue: %d , pDM_Odm->RFCalibrateInfo.ThermalValue: %d\n",
  1693. rtldm->txpower_track_control,
  1694. thermal_value,
  1695. rtldm->thermalvalue);
  1696. for (p = RF90_PATH_A; p < MAX_PATH_NUM_8812A; p++)
  1697. rtldm->power_index_offset[p] = 0;
  1698. }
  1699. /*Print Swing base & current*/
  1700. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  1701. "TxPowerTracking: [CCK] Swing Current Index: %d,Swing Base Index: %d\n",
  1702. rtldm->cck_index, rtldm->swing_idx_cck_base);
  1703. for (p = RF90_PATH_A; p < MAX_PATH_NUM_8812A; p++) {
  1704. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  1705. "TxPowerTracking: [OFDM] Swing Current Index: %d,Swing Base Index[%c]: %d\n",
  1706. rtldm->ofdm_index[p],
  1707. (p == RF90_PATH_A ? 'A' : 'B'),
  1708. rtldm->swing_idx_ofdm_base[p]);
  1709. }
  1710. if ((rtldm->power_index_offset[RF90_PATH_A] != 0 ||
  1711. rtldm->power_index_offset[RF90_PATH_B] != 0) &&
  1712. rtldm->txpower_track_control) {
  1713. /*7.2 Configure the Swing Table to adjust Tx Power.
  1714. *Always TRUE after Tx Power is adjusted by power tracking.
  1715. *
  1716. *2012/04/23 MH According to Luke's suggestion,
  1717. *we can not write BB digital
  1718. *to increase TX power. Otherwise, EVM will be bad.
  1719. *
  1720. *2012/04/25 MH Add for tx power tracking to set
  1721. *tx power in tx agc for 88E.
  1722. */
  1723. if (thermal_value > rtldm->thermalvalue) {
  1724. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  1725. "Temperature Increasing(A): delta_pi: %d , delta_t: %d, Now_t: %d,EFUSE_t: %d, Last_t: %d\n",
  1726. rtldm->power_index_offset[RF90_PATH_A],
  1727. delta, thermal_value,
  1728. rtlefuse->eeprom_thermalmeter,
  1729. rtldm->thermalvalue);
  1730. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  1731. "Temperature Increasing(B): delta_pi: %d ,delta_t: %d, Now_t: %d, EFUSE_t: %d, Last_t: %d\n",
  1732. rtldm->power_index_offset[RF90_PATH_B],
  1733. delta, thermal_value,
  1734. rtlefuse->eeprom_thermalmeter,
  1735. rtldm->thermalvalue);
  1736. } else if (thermal_value < rtldm->thermalvalue) { /*Low temperature*/
  1737. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  1738. "Temperature Decreasing(A): delta_pi: %d , delta_t: %d, Now_t: %d, EFUSE_t: %d, Last_t: %d\n",
  1739. rtldm->power_index_offset[RF90_PATH_A],
  1740. delta, thermal_value,
  1741. rtlefuse->eeprom_thermalmeter,
  1742. rtldm->thermalvalue);
  1743. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  1744. "Temperature Decreasing(B): delta_pi: %d , delta_t: %d, Now_t: %d, EFUSE_t: %d, Last_t: %d\n",
  1745. rtldm->power_index_offset[RF90_PATH_B],
  1746. delta, thermal_value,
  1747. rtlefuse->eeprom_thermalmeter,
  1748. rtldm->thermalvalue);
  1749. }
  1750. if (thermal_value > rtlefuse->eeprom_thermalmeter) {
  1751. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  1752. "Temperature(%d) higher than PG value(%d)\n",
  1753. thermal_value, rtlefuse->eeprom_thermalmeter);
  1754. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  1755. "**********Enter POWER Tracking MIX_MODE**********\n");
  1756. for (p = RF90_PATH_A; p < MAX_PATH_NUM_8812A; p++)
  1757. rtl8812ae_dm_txpwr_track_set_pwr(hw, MIX_MODE,
  1758. p, 0);
  1759. } else {
  1760. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  1761. "Temperature(%d) lower than PG value(%d)\n",
  1762. thermal_value, rtlefuse->eeprom_thermalmeter);
  1763. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  1764. "**********Enter POWER Tracking MIX_MODE**********\n");
  1765. for (p = RF90_PATH_A; p < MAX_PATH_NUM_8812A; p++)
  1766. rtl8812ae_dm_txpwr_track_set_pwr(hw, MIX_MODE,
  1767. p, index_for_channel);
  1768. }
  1769. /*Record last time Power Tracking result as base.*/
  1770. rtldm->swing_idx_cck_base = rtldm->swing_idx_cck;
  1771. for (p = RF90_PATH_A; p < MAX_PATH_NUM_8812A; p++)
  1772. rtldm->swing_idx_ofdm_base[p] =
  1773. rtldm->swing_idx_ofdm[p];
  1774. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  1775. "pDM_Odm->RFCalibrateInfo.ThermalValue =%d ThermalValue= %d\n",
  1776. rtldm->thermalvalue, thermal_value);
  1777. /*Record last Power Tracking Thermal Value*/
  1778. rtldm->thermalvalue = thermal_value;
  1779. }
  1780. /*Delta temperature is equal to or larger than
  1781. 20 centigrade (When threshold is 8).*/
  1782. if (delta_iqk >= IQK_THRESHOLD)
  1783. rtl8812ae_do_iqk(hw, delta_iqk, thermal_value, 8);
  1784. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  1785. "<===rtl8812ae_dm_txpower_tracking_callback_thermalmeter\n");
  1786. }
  1787. static void rtl8821ae_get_delta_swing_table(struct ieee80211_hw *hw, u8 **up_a,
  1788. u8 **down_a, u8 **up_b, u8 **down_b)
  1789. {
  1790. struct rtl_priv *rtlpriv = rtl_priv(hw);
  1791. struct rtl_phy *rtlphy = &rtlpriv->phy;
  1792. struct rtl_dm *rtldm = rtl_dm(rtl_priv(hw));
  1793. u8 channel = rtlphy->current_channel;
  1794. u8 rate = rtldm->tx_rate;
  1795. if (1 <= channel && channel <= 14) {
  1796. if (RTL8821AE_RX_HAL_IS_CCK_RATE(rate)) {
  1797. *up_a = rtl8821ae_delta_swing_table_idx_24gccka_p;
  1798. *down_a = rtl8821ae_delta_swing_table_idx_24gccka_n;
  1799. *up_b = rtl8821ae_delta_swing_table_idx_24gcckb_p;
  1800. *down_b = rtl8821ae_delta_swing_table_idx_24gcckb_n;
  1801. } else {
  1802. *up_a = rtl8821ae_delta_swing_table_idx_24ga_p;
  1803. *down_a = rtl8821ae_delta_swing_table_idx_24ga_n;
  1804. *up_b = rtl8821ae_delta_swing_table_idx_24gb_p;
  1805. *down_b = rtl8821ae_delta_swing_table_idx_24gb_n;
  1806. }
  1807. } else if (36 <= channel && channel <= 64) {
  1808. *up_a = rtl8821ae_delta_swing_table_idx_5ga_p[0];
  1809. *down_a = rtl8821ae_delta_swing_table_idx_5ga_n[0];
  1810. *up_b = rtl8821ae_delta_swing_table_idx_5gb_p[0];
  1811. *down_b = rtl8821ae_delta_swing_table_idx_5gb_n[0];
  1812. } else if (100 <= channel && channel <= 140) {
  1813. *up_a = rtl8821ae_delta_swing_table_idx_5ga_p[1];
  1814. *down_a = rtl8821ae_delta_swing_table_idx_5ga_n[1];
  1815. *up_b = rtl8821ae_delta_swing_table_idx_5gb_p[1];
  1816. *down_b = rtl8821ae_delta_swing_table_idx_5gb_n[1];
  1817. } else if (149 <= channel && channel <= 173) {
  1818. *up_a = rtl8821ae_delta_swing_table_idx_5ga_p[2];
  1819. *down_a = rtl8821ae_delta_swing_table_idx_5ga_n[2];
  1820. *up_b = rtl8821ae_delta_swing_table_idx_5gb_p[2];
  1821. *down_b = rtl8821ae_delta_swing_table_idx_5gb_n[2];
  1822. } else {
  1823. *up_a = (u8 *)rtl8818e_delta_swing_table_idx_24gb_p;
  1824. *down_a = (u8 *)rtl8818e_delta_swing_table_idx_24gb_n;
  1825. *up_b = (u8 *)rtl8818e_delta_swing_table_idx_24gb_p;
  1826. *down_b = (u8 *)rtl8818e_delta_swing_table_idx_24gb_n;
  1827. }
  1828. return;
  1829. }
  1830. /*-----------------------------------------------------------------------------
  1831. * Function: odm_TxPwrTrackSetPwr88E()
  1832. *
  1833. * Overview: 88E change all channel tx power accordign to flag.
  1834. * OFDM & CCK are all different.
  1835. *
  1836. * Input: NONE
  1837. *
  1838. * Output: NONE
  1839. *
  1840. * Return: NONE
  1841. *
  1842. * Revised History:
  1843. * When Who Remark
  1844. * 04/23/2012 MHC Create Version 0.
  1845. *
  1846. *---------------------------------------------------------------------------
  1847. */
  1848. void rtl8821ae_dm_txpwr_track_set_pwr(struct ieee80211_hw *hw,
  1849. enum pwr_track_control_method method,
  1850. u8 rf_path, u8 channel_mapped_index)
  1851. {
  1852. struct rtl_priv *rtlpriv = rtl_priv(hw);
  1853. struct rtl_dm *rtldm = rtl_dm(rtl_priv(hw));
  1854. struct rtl_phy *rtlphy = &rtlpriv->phy;
  1855. u32 final_swing_idx[1];
  1856. u8 pwr_tracking_limit = 26; /*+1.0dB*/
  1857. u8 tx_rate = 0xFF;
  1858. char final_ofdm_swing_index = 0;
  1859. if (rtldm->tx_rate != 0xFF)
  1860. tx_rate = rtl8821ae_hw_rate_to_mrate(hw, rtldm->tx_rate);
  1861. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD, "===>%s\n", __func__);
  1862. if (tx_rate != 0xFF) { /* Mimic Modify High Rate BBSwing Limit.*/
  1863. /*CCK*/
  1864. if ((tx_rate >= MGN_1M) && (tx_rate <= MGN_11M))
  1865. pwr_tracking_limit = 32; /*+4dB*/
  1866. /*OFDM*/
  1867. else if ((tx_rate >= MGN_6M) && (tx_rate <= MGN_48M))
  1868. pwr_tracking_limit = 30; /*+3dB*/
  1869. else if (tx_rate == MGN_54M)
  1870. pwr_tracking_limit = 28; /*+2dB*/
  1871. /*HT*/
  1872. /*QPSK/BPSK*/
  1873. else if ((tx_rate >= MGN_MCS0) && (tx_rate <= MGN_MCS2))
  1874. pwr_tracking_limit = 34; /*+5dB*/
  1875. /*16QAM*/
  1876. else if ((tx_rate >= MGN_MCS3) && (tx_rate <= MGN_MCS4))
  1877. pwr_tracking_limit = 30; /*+3dB*/
  1878. /*64QAM*/
  1879. else if ((tx_rate >= MGN_MCS5) && (tx_rate <= MGN_MCS7))
  1880. pwr_tracking_limit = 28; /*+2dB*/
  1881. /*2 VHT*/
  1882. /*QPSK/BPSK*/
  1883. else if ((tx_rate >= MGN_VHT1SS_MCS0) &&
  1884. (tx_rate <= MGN_VHT1SS_MCS2))
  1885. pwr_tracking_limit = 34; /*+5dB*/
  1886. /*16QAM*/
  1887. else if ((tx_rate >= MGN_VHT1SS_MCS3) &&
  1888. (tx_rate <= MGN_VHT1SS_MCS4))
  1889. pwr_tracking_limit = 30; /*+3dB*/
  1890. /*64QAM*/
  1891. else if ((tx_rate >= MGN_VHT1SS_MCS5) &&
  1892. (tx_rate <= MGN_VHT1SS_MCS6))
  1893. pwr_tracking_limit = 28; /*+2dB*/
  1894. else if (tx_rate == MGN_VHT1SS_MCS7) /*64QAM*/
  1895. pwr_tracking_limit = 26; /*+1dB*/
  1896. else if (tx_rate == MGN_VHT1SS_MCS8) /*256QAM*/
  1897. pwr_tracking_limit = 24; /*+0dB*/
  1898. else if (tx_rate == MGN_VHT1SS_MCS9) /*256QAM*/
  1899. pwr_tracking_limit = 22; /*-1dB*/
  1900. else
  1901. pwr_tracking_limit = 24;
  1902. }
  1903. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  1904. "TxRate=0x%x, PwrTrackingLimit=%d\n",
  1905. tx_rate, pwr_tracking_limit);
  1906. if (method == BBSWING) {
  1907. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  1908. "===>%s\n", __func__);
  1909. if (rf_path == RF90_PATH_A) {
  1910. final_swing_idx[RF90_PATH_A] =
  1911. (rtldm->ofdm_index[RF90_PATH_A] >
  1912. pwr_tracking_limit) ?
  1913. pwr_tracking_limit :
  1914. rtldm->ofdm_index[RF90_PATH_A];
  1915. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  1916. "pDM_Odm->RFCalibrateInfo.OFDM_index[ODM_RF_PATH_A]=%d,pDM_Odm->RealBbSwingIdx[ODM_RF_PATH_A]=%d\n",
  1917. rtldm->ofdm_index[RF90_PATH_A],
  1918. final_swing_idx[RF90_PATH_A]);
  1919. rtl_set_bbreg(hw, RA_TXSCALE, 0xFFE00000,
  1920. txscaling_tbl[final_swing_idx[RF90_PATH_A]]);
  1921. }
  1922. } else if (method == MIX_MODE) {
  1923. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  1924. "pDM_Odm->DefaultOfdmIndex=%d,pDM_Odm->Aboslute_OFDMSwingIdx[RFPath]=%d, RF_Path = %d\n",
  1925. rtldm->default_ofdm_index,
  1926. rtldm->absolute_ofdm_swing_idx[rf_path],
  1927. rf_path);
  1928. final_ofdm_swing_index =
  1929. rtldm->default_ofdm_index +
  1930. rtldm->absolute_ofdm_swing_idx[rf_path];
  1931. /*BBSwing higher then Limit*/
  1932. if (rf_path == RF90_PATH_A) {
  1933. if (final_ofdm_swing_index > pwr_tracking_limit) {
  1934. rtldm->remnant_cck_idx =
  1935. final_ofdm_swing_index -
  1936. pwr_tracking_limit;
  1937. /* CCK Follow the same compensate value as Path A*/
  1938. rtldm->remnant_ofdm_swing_idx[rf_path] =
  1939. final_ofdm_swing_index -
  1940. pwr_tracking_limit;
  1941. rtl_set_bbreg(hw, RA_TXSCALE,
  1942. 0xFFE00000,
  1943. txscaling_tbl[pwr_tracking_limit]);
  1944. rtldm->modify_txagc_flag_path_a = true;
  1945. /*Set TxAGC Page C{};*/
  1946. rtl8821ae_phy_set_txpower_level_by_path(hw,
  1947. rtlphy->current_channel,
  1948. RF90_PATH_A);
  1949. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  1950. " ******Path_A Over BBSwing Limit , PwrTrackingLimit = %d , Remnant TxAGC Value = %d\n",
  1951. pwr_tracking_limit,
  1952. rtldm->remnant_ofdm_swing_idx[rf_path]);
  1953. } else if (final_ofdm_swing_index < 0) {
  1954. rtldm->remnant_cck_idx = final_ofdm_swing_index;
  1955. /* CCK Follow the same compensate value as Path A*/
  1956. rtldm->remnant_ofdm_swing_idx[rf_path] =
  1957. final_ofdm_swing_index;
  1958. rtl_set_bbreg(hw, RA_TXSCALE, 0xFFE00000,
  1959. txscaling_tbl[0]);
  1960. rtldm->modify_txagc_flag_path_a = true;
  1961. /*Set TxAGC Page C{};*/
  1962. rtl8821ae_phy_set_txpower_level_by_path(hw,
  1963. rtlphy->current_channel, RF90_PATH_A);
  1964. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  1965. "******Path_A Lower then BBSwing lower bound 0 , Remnant TxAGC Value = %d\n",
  1966. rtldm->remnant_ofdm_swing_idx[rf_path]);
  1967. } else {
  1968. rtl_set_bbreg(hw, RA_TXSCALE, 0xFFE00000,
  1969. txscaling_tbl[(u8)final_ofdm_swing_index]);
  1970. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  1971. "******Path_A Compensate with BBSwing ,Final_OFDM_Swing_Index = %d\n",
  1972. final_ofdm_swing_index);
  1973. /*If TxAGC has changed, reset TxAGC again*/
  1974. if (rtldm->modify_txagc_flag_path_a) {
  1975. rtldm->remnant_cck_idx = 0;
  1976. rtldm->remnant_ofdm_swing_idx[rf_path] = 0;
  1977. /*Set TxAGC Page C{};*/
  1978. rtl8821ae_phy_set_txpower_level_by_path(hw,
  1979. rtlphy->current_channel, RF90_PATH_A);
  1980. rtldm->modify_txagc_flag_path_a = false;
  1981. RT_TRACE(rtlpriv, COMP_POWER_TRACKING,
  1982. DBG_LOUD,
  1983. "******Path_A pDM_Odm->Modify_TxAGC_Flag= FALSE\n");
  1984. }
  1985. }
  1986. }
  1987. } else {
  1988. return;
  1989. }
  1990. }
  1991. void rtl8821ae_dm_txpower_tracking_callback_thermalmeter(
  1992. struct ieee80211_hw *hw)
  1993. {
  1994. struct rtl_priv *rtlpriv = rtl_priv(hw);
  1995. struct rtl_efuse *rtlefuse = rtl_efuse(rtl_priv(hw));
  1996. struct rtl_dm *rtldm = rtl_dm(rtl_priv(hw));
  1997. struct rtl_hal *rtlhal = rtl_hal(rtl_priv(hw));
  1998. struct rtl_phy *rtlphy = &rtlpriv->phy;
  1999. u8 thermal_value = 0, delta, delta_lck, delta_iqk, p = 0, i = 0;
  2000. u8 thermal_value_avg_count = 0;
  2001. u32 thermal_value_avg = 0;
  2002. u8 ofdm_min_index = 6; /*OFDM BB Swing should be less than +3.0dB */
  2003. /* GetRightChnlPlaceforIQK(pHalData->CurrentChannel)*/
  2004. u8 index_for_channel = 0;
  2005. /* 1. The following TWO tables decide the final
  2006. * index of OFDM/CCK swing table.
  2007. */
  2008. u8 *delta_swing_table_idx_tup_a;
  2009. u8 *delta_swing_table_idx_tdown_a;
  2010. u8 *delta_swing_table_idx_tup_b;
  2011. u8 *delta_swing_table_idx_tdown_b;
  2012. /*2. Initilization ( 7 steps in total )*/
  2013. rtl8821ae_get_delta_swing_table(hw, (u8 **)&delta_swing_table_idx_tup_a,
  2014. (u8 **)&delta_swing_table_idx_tdown_a,
  2015. (u8 **)&delta_swing_table_idx_tup_b,
  2016. (u8 **)&delta_swing_table_idx_tdown_b);
  2017. rtldm->txpower_trackinginit = true;
  2018. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  2019. "===>%s,\n pDM_Odm->BbSwingIdxCckBase: %d,pDM_Odm->BbSwingIdxOfdmBase[A]:%d, pDM_Odm->DefaultOfdmIndex: %d\n",
  2020. __func__,
  2021. rtldm->swing_idx_cck_base,
  2022. rtldm->swing_idx_ofdm_base[RF90_PATH_A],
  2023. rtldm->default_ofdm_index);
  2024. /*0x42: RF Reg[15:10] 88E*/
  2025. thermal_value = (u8)rtl_get_rfreg(hw,
  2026. RF90_PATH_A, RF_T_METER_8812A, 0xfc00);
  2027. if (!rtldm->txpower_track_control ||
  2028. rtlefuse->eeprom_thermalmeter == 0 ||
  2029. rtlefuse->eeprom_thermalmeter == 0xFF)
  2030. return;
  2031. /* 3. Initialize ThermalValues of RFCalibrateInfo*/
  2032. if (rtlhal->reloadtxpowerindex) {
  2033. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  2034. "reload ofdm index for band switch\n");
  2035. }
  2036. /*4. Calculate average thermal meter*/
  2037. rtldm->thermalvalue_avg[rtldm->thermalvalue_avg_index] = thermal_value;
  2038. rtldm->thermalvalue_avg_index++;
  2039. if (rtldm->thermalvalue_avg_index == AVG_THERMAL_NUM_8812A)
  2040. /*Average times = c.AverageThermalNum*/
  2041. rtldm->thermalvalue_avg_index = 0;
  2042. for (i = 0; i < AVG_THERMAL_NUM_8812A; i++) {
  2043. if (rtldm->thermalvalue_avg[i]) {
  2044. thermal_value_avg += rtldm->thermalvalue_avg[i];
  2045. thermal_value_avg_count++;
  2046. }
  2047. }
  2048. /*Calculate Average ThermalValue after average enough times*/
  2049. if (thermal_value_avg_count) {
  2050. thermal_value = (u8)(thermal_value_avg /
  2051. thermal_value_avg_count);
  2052. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  2053. "AVG Thermal Meter = 0x%X, EFUSE Thermal Base = 0x%X\n",
  2054. thermal_value, rtlefuse->eeprom_thermalmeter);
  2055. }
  2056. /*5. Calculate delta, delta_LCK, delta_IQK.
  2057. *"delta" here is used to determine whether
  2058. * thermal value changes or not.
  2059. */
  2060. delta = (thermal_value > rtldm->thermalvalue) ?
  2061. (thermal_value - rtldm->thermalvalue) :
  2062. (rtldm->thermalvalue - thermal_value);
  2063. delta_lck = (thermal_value > rtldm->thermalvalue_lck) ?
  2064. (thermal_value - rtldm->thermalvalue_lck) :
  2065. (rtldm->thermalvalue_lck - thermal_value);
  2066. delta_iqk = (thermal_value > rtldm->thermalvalue_iqk) ?
  2067. (thermal_value - rtldm->thermalvalue_iqk) :
  2068. (rtldm->thermalvalue_iqk - thermal_value);
  2069. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  2070. "(delta, delta_LCK, delta_IQK) = (%d, %d, %d)\n",
  2071. delta, delta_lck, delta_iqk);
  2072. /* 6. If necessary, do LCK. */
  2073. /*Delta temperature is equal to or larger than 20 centigrade.*/
  2074. if (delta_lck >= IQK_THRESHOLD) {
  2075. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  2076. "delta_LCK(%d) >= Threshold_IQK(%d)\n",
  2077. delta_lck, IQK_THRESHOLD);
  2078. rtldm->thermalvalue_lck = thermal_value;
  2079. rtl8821ae_phy_lc_calibrate(hw);
  2080. }
  2081. /*7. If necessary, move the index of swing table to adjust Tx power.*/
  2082. if (delta > 0 && rtldm->txpower_track_control) {
  2083. /*"delta" here is used to record the
  2084. * absolute value of differrence.
  2085. */
  2086. delta = thermal_value > rtlefuse->eeprom_thermalmeter ?
  2087. (thermal_value - rtlefuse->eeprom_thermalmeter) :
  2088. (rtlefuse->eeprom_thermalmeter - thermal_value);
  2089. if (delta >= TXSCALE_TABLE_SIZE)
  2090. delta = TXSCALE_TABLE_SIZE - 1;
  2091. /*7.1 The Final Power Index = BaseIndex + PowerIndexOffset*/
  2092. if (thermal_value > rtlefuse->eeprom_thermalmeter) {
  2093. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  2094. "delta_swing_table_idx_tup_a[%d] = %d\n",
  2095. delta, delta_swing_table_idx_tup_a[delta]);
  2096. rtldm->delta_power_index_last[RF90_PATH_A] =
  2097. rtldm->delta_power_index[RF90_PATH_A];
  2098. rtldm->delta_power_index[RF90_PATH_A] =
  2099. delta_swing_table_idx_tup_a[delta];
  2100. rtldm->absolute_ofdm_swing_idx[RF90_PATH_A] =
  2101. delta_swing_table_idx_tup_a[delta];
  2102. /*Record delta swing for mix mode power tracking*/
  2103. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  2104. "******Temp is higher and pDM_Odm->Aboslute_OFDMSwingIdx[ODM_RF_PATH_A] = %d\n",
  2105. rtldm->absolute_ofdm_swing_idx[RF90_PATH_A]);
  2106. } else {
  2107. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  2108. "delta_swing_table_idx_tdown_a[%d] = %d\n",
  2109. delta, delta_swing_table_idx_tdown_a[delta]);
  2110. rtldm->delta_power_index_last[RF90_PATH_A] =
  2111. rtldm->delta_power_index[RF90_PATH_A];
  2112. rtldm->delta_power_index[RF90_PATH_A] =
  2113. -1 * delta_swing_table_idx_tdown_a[delta];
  2114. rtldm->absolute_ofdm_swing_idx[RF90_PATH_A] =
  2115. -1 * delta_swing_table_idx_tdown_a[delta];
  2116. /* Record delta swing for mix mode power tracking*/
  2117. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  2118. "******Temp is lower and pDM_Odm->Aboslute_OFDMSwingIdx[ODM_RF_PATH_A] = %d\n",
  2119. rtldm->absolute_ofdm_swing_idx[RF90_PATH_A]);
  2120. }
  2121. for (p = RF90_PATH_A; p < MAX_PATH_NUM_8821A; p++) {
  2122. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  2123. "\n\n================================ [Path-%c]Calculating PowerIndexOffset ================================\n",
  2124. (p == RF90_PATH_A ? 'A' : 'B'));
  2125. /*If Thermal value changes but lookup table value
  2126. * still the same
  2127. */
  2128. if (rtldm->delta_power_index[p] ==
  2129. rtldm->delta_power_index_last[p])
  2130. rtldm->power_index_offset[p] = 0;
  2131. else
  2132. rtldm->power_index_offset[p] =
  2133. rtldm->delta_power_index[p] -
  2134. rtldm->delta_power_index_last[p];
  2135. /*Power Index Diff between 2 times Power Tracking*/
  2136. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  2137. "[Path-%c] PowerIndexOffset(%d) = DeltaPowerIndex(%d) - DeltaPowerIndexLast(%d)\n",
  2138. (p == RF90_PATH_A ? 'A' : 'B'),
  2139. rtldm->power_index_offset[p],
  2140. rtldm->delta_power_index[p] ,
  2141. rtldm->delta_power_index_last[p]);
  2142. rtldm->ofdm_index[p] =
  2143. rtldm->swing_idx_ofdm_base[p] +
  2144. rtldm->power_index_offset[p];
  2145. rtldm->cck_index =
  2146. rtldm->swing_idx_cck_base +
  2147. rtldm->power_index_offset[p];
  2148. rtldm->swing_idx_cck = rtldm->cck_index;
  2149. rtldm->swing_idx_ofdm[p] = rtldm->ofdm_index[p];
  2150. /*********Print BB Swing Base and Index Offset********/
  2151. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  2152. "The 'CCK' final index(%d) = BaseIndex(%d) + PowerIndexOffset(%d)\n",
  2153. rtldm->swing_idx_cck,
  2154. rtldm->swing_idx_cck_base,
  2155. rtldm->power_index_offset[p]);
  2156. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  2157. "The 'OFDM' final index(%d) = BaseIndex[%c](%d) + PowerIndexOffset(%d)\n",
  2158. rtldm->swing_idx_ofdm[p],
  2159. (p == RF90_PATH_A ? 'A' : 'B'),
  2160. rtldm->swing_idx_ofdm_base[p],
  2161. rtldm->power_index_offset[p]);
  2162. /*7.1 Handle boundary conditions of index.*/
  2163. if (rtldm->ofdm_index[p] > TXSCALE_TABLE_SIZE - 1)
  2164. rtldm->ofdm_index[p] = TXSCALE_TABLE_SIZE - 1;
  2165. else if (rtldm->ofdm_index[p] < ofdm_min_index)
  2166. rtldm->ofdm_index[p] = ofdm_min_index;
  2167. }
  2168. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  2169. "\n\n========================================================================================================\n");
  2170. if (rtldm->cck_index > TXSCALE_TABLE_SIZE - 1)
  2171. rtldm->cck_index = TXSCALE_TABLE_SIZE - 1;
  2172. else if (rtldm->cck_index < 0)
  2173. rtldm->cck_index = 0;
  2174. } else {
  2175. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  2176. "The thermal meter is unchanged or TxPowerTracking OFF(%d):ThermalValue: %d , pDM_Odm->RFCalibrateInfo.ThermalValue: %d\n",
  2177. rtldm->txpower_track_control,
  2178. thermal_value,
  2179. rtldm->thermalvalue);
  2180. for (p = RF90_PATH_A; p < MAX_PATH_NUM_8821A; p++)
  2181. rtldm->power_index_offset[p] = 0;
  2182. }
  2183. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  2184. "TxPowerTracking: [CCK] Swing Current Index: %d, Swing Base Index: %d\n",
  2185. /*Print Swing base & current*/
  2186. rtldm->cck_index, rtldm->swing_idx_cck_base);
  2187. for (p = RF90_PATH_A; p < MAX_PATH_NUM_8821A; p++) {
  2188. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  2189. "TxPowerTracking: [OFDM] Swing Current Index: %d, Swing Base Index[%c]: %d\n",
  2190. rtldm->ofdm_index[p],
  2191. (p == RF90_PATH_A ? 'A' : 'B'),
  2192. rtldm->swing_idx_ofdm_base[p]);
  2193. }
  2194. if ((rtldm->power_index_offset[RF90_PATH_A] != 0 ||
  2195. rtldm->power_index_offset[RF90_PATH_B] != 0) &&
  2196. rtldm->txpower_track_control) {
  2197. /*7.2 Configure the Swing Table to adjust Tx Power.*/
  2198. /*Always TRUE after Tx Power is adjusted by power tracking.*/
  2199. /*
  2200. * 2012/04/23 MH According to Luke's suggestion,
  2201. * we can not write BB digital
  2202. * to increase TX power. Otherwise, EVM will be bad.
  2203. *
  2204. * 2012/04/25 MH Add for tx power tracking to
  2205. * set tx power in tx agc for 88E.
  2206. */
  2207. if (thermal_value > rtldm->thermalvalue) {
  2208. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  2209. "Temperature Increasing(A): delta_pi: %d , delta_t: %d,Now_t: %d, EFUSE_t: %d, Last_t: %d\n",
  2210. rtldm->power_index_offset[RF90_PATH_A],
  2211. delta, thermal_value,
  2212. rtlefuse->eeprom_thermalmeter,
  2213. rtldm->thermalvalue);
  2214. } else if (thermal_value < rtldm->thermalvalue) { /*Low temperature*/
  2215. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  2216. "Temperature Decreasing(A): delta_pi: %d , delta_t: %d, Now_t: %d, EFUSE_t: %d, Last_t: %d\n",
  2217. rtldm->power_index_offset[RF90_PATH_A],
  2218. delta, thermal_value,
  2219. rtlefuse->eeprom_thermalmeter,
  2220. rtldm->thermalvalue);
  2221. }
  2222. if (thermal_value > rtlefuse->eeprom_thermalmeter) {
  2223. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  2224. "Temperature(%d) higher than PG value(%d)\n",
  2225. thermal_value, rtlefuse->eeprom_thermalmeter);
  2226. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  2227. "****Enter POWER Tracking MIX_MODE****\n");
  2228. for (p = RF90_PATH_A; p < MAX_PATH_NUM_8821A; p++)
  2229. rtl8821ae_dm_txpwr_track_set_pwr(hw,
  2230. MIX_MODE, p, index_for_channel);
  2231. } else {
  2232. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  2233. "Temperature(%d) lower than PG value(%d)\n",
  2234. thermal_value, rtlefuse->eeprom_thermalmeter);
  2235. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  2236. "*****Enter POWER Tracking MIX_MODE*****\n");
  2237. for (p = RF90_PATH_A; p < MAX_PATH_NUM_8821A; p++)
  2238. rtl8812ae_dm_txpwr_track_set_pwr(hw,
  2239. MIX_MODE, p, index_for_channel);
  2240. }
  2241. /*Record last time Power Tracking result as base.*/
  2242. rtldm->swing_idx_cck_base = rtldm->swing_idx_cck;
  2243. for (p = RF90_PATH_A; p < MAX_PATH_NUM_8821A; p++)
  2244. rtldm->swing_idx_ofdm_base[p] = rtldm->swing_idx_ofdm[p];
  2245. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  2246. "pDM_Odm->RFCalibrateInfo.ThermalValue = %d ThermalValue= %d\n",
  2247. rtldm->thermalvalue, thermal_value);
  2248. /*Record last Power Tracking Thermal Value*/
  2249. rtldm->thermalvalue = thermal_value;
  2250. }
  2251. /* Delta temperature is equal to or larger than
  2252. * 20 centigrade (When threshold is 8).
  2253. */
  2254. if (delta_iqk >= IQK_THRESHOLD) {
  2255. if (!rtlphy->lck_inprogress) {
  2256. spin_lock(&rtlpriv->locks.iqk_lock);
  2257. rtlphy->lck_inprogress = true;
  2258. spin_unlock(&rtlpriv->locks.iqk_lock);
  2259. rtl8821ae_do_iqk(hw, delta_iqk, thermal_value, 8);
  2260. spin_lock(&rtlpriv->locks.iqk_lock);
  2261. rtlphy->lck_inprogress = false;
  2262. spin_unlock(&rtlpriv->locks.iqk_lock);
  2263. }
  2264. }
  2265. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD, "<===%s\n", __func__);
  2266. }
  2267. void rtl8821ae_dm_check_txpower_tracking_thermalmeter(struct ieee80211_hw *hw)
  2268. {
  2269. struct rtl_priv *rtlpriv = rtl_priv(hw);
  2270. static u8 tm_trigger;
  2271. if (!tm_trigger) {
  2272. rtl_set_rfreg(hw, RF90_PATH_A, RF_T_METER_88E, BIT(17)|BIT(16),
  2273. 0x03);
  2274. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  2275. "Trigger 8821ae Thermal Meter!!\n");
  2276. tm_trigger = 1;
  2277. return;
  2278. } else {
  2279. RT_TRACE(rtlpriv, COMP_POWER_TRACKING, DBG_LOUD,
  2280. "Schedule TxPowerTracking !!\n");
  2281. rtl8821ae_dm_txpower_tracking_callback_thermalmeter(hw);
  2282. tm_trigger = 0;
  2283. }
  2284. }
  2285. static void rtl8821ae_dm_refresh_rate_adaptive_mask(struct ieee80211_hw *hw)
  2286. {
  2287. struct rtl_priv *rtlpriv = rtl_priv(hw);
  2288. struct rtl_hal *rtlhal = rtl_hal(rtl_priv(hw));
  2289. struct rtl_mac *mac = rtl_mac(rtl_priv(hw));
  2290. struct rate_adaptive *p_ra = &rtlpriv->ra;
  2291. u32 low_rssithresh_for_ra = p_ra->low2high_rssi_thresh_for_ra40m;
  2292. u32 high_rssithresh_for_ra = p_ra->high_rssi_thresh_for_ra;
  2293. u8 go_up_gap = 5;
  2294. struct ieee80211_sta *sta = NULL;
  2295. if (is_hal_stop(rtlhal)) {
  2296. RT_TRACE(rtlpriv, COMP_RATE, DBG_LOUD,
  2297. "driver is going to unload\n");
  2298. return;
  2299. }
  2300. if (!rtlpriv->dm.useramask) {
  2301. RT_TRACE(rtlpriv, COMP_RATE, DBG_LOUD,
  2302. "driver does not control rate adaptive mask\n");
  2303. return;
  2304. }
  2305. if (mac->link_state == MAC80211_LINKED &&
  2306. mac->opmode == NL80211_IFTYPE_STATION) {
  2307. switch (p_ra->pre_ratr_state) {
  2308. case DM_RATR_STA_MIDDLE:
  2309. high_rssithresh_for_ra += go_up_gap;
  2310. break;
  2311. case DM_RATR_STA_LOW:
  2312. high_rssithresh_for_ra += go_up_gap;
  2313. low_rssithresh_for_ra += go_up_gap;
  2314. break;
  2315. default:
  2316. break;
  2317. }
  2318. if (rtlpriv->dm.undec_sm_pwdb >
  2319. (long)high_rssithresh_for_ra)
  2320. p_ra->ratr_state = DM_RATR_STA_HIGH;
  2321. else if (rtlpriv->dm.undec_sm_pwdb >
  2322. (long)low_rssithresh_for_ra)
  2323. p_ra->ratr_state = DM_RATR_STA_MIDDLE;
  2324. else
  2325. p_ra->ratr_state = DM_RATR_STA_LOW;
  2326. if (p_ra->pre_ratr_state != p_ra->ratr_state) {
  2327. RT_TRACE(rtlpriv, COMP_RATE, DBG_LOUD,
  2328. "RSSI = %ld\n",
  2329. rtlpriv->dm.undec_sm_pwdb);
  2330. RT_TRACE(rtlpriv, COMP_RATE, DBG_LOUD,
  2331. "RSSI_LEVEL = %d\n", p_ra->ratr_state);
  2332. RT_TRACE(rtlpriv, COMP_RATE, DBG_LOUD,
  2333. "PreState = %d, CurState = %d\n",
  2334. p_ra->pre_ratr_state, p_ra->ratr_state);
  2335. rcu_read_lock();
  2336. sta = rtl_find_sta(hw, mac->bssid);
  2337. if (sta)
  2338. rtlpriv->cfg->ops->update_rate_tbl(hw,
  2339. sta, p_ra->ratr_state);
  2340. rcu_read_unlock();
  2341. p_ra->pre_ratr_state = p_ra->ratr_state;
  2342. }
  2343. }
  2344. }
  2345. static void rtl8821ae_dm_refresh_basic_rate_mask(struct ieee80211_hw *hw)
  2346. {
  2347. struct rtl_priv *rtlpriv = rtl_priv(hw);
  2348. struct dig_t *dm_digtable = &rtlpriv->dm_digtable;
  2349. struct rtl_mac *mac = &rtlpriv->mac80211;
  2350. static u8 stage;
  2351. u8 cur_stage = 0;
  2352. u16 basic_rate = RRSR_1M | RRSR_2M | RRSR_5_5M | RRSR_11M | RRSR_6M;
  2353. if (mac->link_state < MAC80211_LINKED)
  2354. cur_stage = 0;
  2355. else if (dm_digtable->rssi_val_min < 25)
  2356. cur_stage = 1;
  2357. else if (dm_digtable->rssi_val_min > 30)
  2358. cur_stage = 3;
  2359. else
  2360. cur_stage = 2;
  2361. if (cur_stage != stage) {
  2362. if (cur_stage == 1) {
  2363. basic_rate &= (!(basic_rate ^ mac->basic_rates));
  2364. rtlpriv->cfg->ops->set_hw_reg(hw,
  2365. HW_VAR_BASIC_RATE, (u8 *)&basic_rate);
  2366. } else if (cur_stage == 3 && (stage == 1 || stage == 2)) {
  2367. rtlpriv->cfg->ops->set_hw_reg(hw,
  2368. HW_VAR_BASIC_RATE, (u8 *)&mac->basic_rates);
  2369. }
  2370. }
  2371. stage = cur_stage;
  2372. }
  2373. static void rtl8821ae_dm_edca_choose_traffic_idx(
  2374. struct ieee80211_hw *hw, u64 cur_tx_bytes,
  2375. u64 cur_rx_bytes, bool b_bias_on_rx,
  2376. bool *pb_is_cur_rdl_state)
  2377. {
  2378. struct rtl_priv *rtlpriv = rtl_priv(hw);
  2379. if (b_bias_on_rx) {
  2380. if (cur_tx_bytes > (cur_rx_bytes*4)) {
  2381. *pb_is_cur_rdl_state = false;
  2382. RT_TRACE(rtlpriv, COMP_TURBO, DBG_LOUD,
  2383. "Uplink Traffic\n ");
  2384. } else {
  2385. *pb_is_cur_rdl_state = true;
  2386. RT_TRACE(rtlpriv, COMP_TURBO, DBG_LOUD,
  2387. "Balance Traffic\n");
  2388. }
  2389. } else {
  2390. if (cur_rx_bytes > (cur_tx_bytes*4)) {
  2391. *pb_is_cur_rdl_state = true;
  2392. RT_TRACE(rtlpriv, COMP_TURBO, DBG_LOUD,
  2393. "Downlink Traffic\n");
  2394. } else {
  2395. *pb_is_cur_rdl_state = false;
  2396. RT_TRACE(rtlpriv, COMP_TURBO, DBG_LOUD,
  2397. "Balance Traffic\n");
  2398. }
  2399. }
  2400. return;
  2401. }
  2402. static void rtl8821ae_dm_check_edca_turbo(struct ieee80211_hw *hw)
  2403. {
  2404. struct rtl_priv *rtlpriv = rtl_priv(hw);
  2405. struct rtl_mac *mac = rtl_mac(rtl_priv(hw));
  2406. struct rtl_dm *rtldm = rtl_dm(rtl_priv(hw));
  2407. /*Keep past Tx/Rx packet count for RT-to-RT EDCA turbo.*/
  2408. u64 cur_tx_ok_cnt = 0;
  2409. u64 cur_rx_ok_cnt = 0;
  2410. u32 edca_be_ul = 0x5ea42b;
  2411. u32 edca_be_dl = 0x5ea42b;
  2412. u32 edca_be = 0x5ea42b;
  2413. u8 iot_peer = 0;
  2414. bool *pb_is_cur_rdl_state = NULL;
  2415. bool b_last_is_cur_rdl_state = false;
  2416. bool b_bias_on_rx = false;
  2417. bool b_edca_turbo_on = false;
  2418. RT_TRACE(rtlpriv, COMP_TURBO, DBG_LOUD,
  2419. "rtl8821ae_dm_check_edca_turbo=====>");
  2420. RT_TRACE(rtlpriv, COMP_TURBO, DBG_LOUD,
  2421. "Orginial BE PARAM: 0x%x\n",
  2422. rtl_read_dword(rtlpriv, DM_REG_EDCA_BE_11N));
  2423. if (rtlpriv->dm.dbginfo.num_non_be_pkt > 0x100)
  2424. rtlpriv->dm.is_any_nonbepkts = true;
  2425. rtlpriv->dm.dbginfo.num_non_be_pkt = 0;
  2426. /*===============================
  2427. * list paramter for different platform
  2428. *===============================
  2429. */
  2430. b_last_is_cur_rdl_state = rtlpriv->dm.is_cur_rdlstate;
  2431. pb_is_cur_rdl_state = &rtlpriv->dm.is_cur_rdlstate;
  2432. cur_tx_ok_cnt = rtlpriv->stats.txbytesunicast - rtldm->last_tx_ok_cnt;
  2433. cur_rx_ok_cnt = rtlpriv->stats.rxbytesunicast - rtldm->last_rx_ok_cnt;
  2434. rtldm->last_tx_ok_cnt = rtlpriv->stats.txbytesunicast;
  2435. rtldm->last_rx_ok_cnt = rtlpriv->stats.rxbytesunicast;
  2436. iot_peer = rtlpriv->mac80211.vendor;
  2437. b_bias_on_rx = false;
  2438. b_edca_turbo_on = ((!rtlpriv->dm.is_any_nonbepkts) &&
  2439. (!rtlpriv->dm.disable_framebursting)) ?
  2440. true : false;
  2441. if (rtlpriv->rtlhal.hw_type != HARDWARE_TYPE_RTL8812AE) {
  2442. if ((iot_peer == PEER_CISCO) &&
  2443. (mac->mode == WIRELESS_MODE_N_24G)) {
  2444. edca_be_dl = edca_setting_dl[iot_peer];
  2445. edca_be_ul = edca_setting_ul[iot_peer];
  2446. }
  2447. }
  2448. RT_TRACE(rtlpriv, COMP_TURBO, DBG_LOUD,
  2449. "bIsAnyNonBEPkts : 0x%x bDisableFrameBursting : 0x%x\n",
  2450. rtlpriv->dm.is_any_nonbepkts,
  2451. rtlpriv->dm.disable_framebursting);
  2452. RT_TRACE(rtlpriv, COMP_TURBO, DBG_LOUD,
  2453. "bEdcaTurboOn : 0x%x bBiasOnRx : 0x%x\n",
  2454. b_edca_turbo_on, b_bias_on_rx);
  2455. if (b_edca_turbo_on) {
  2456. RT_TRACE(rtlpriv, COMP_TURBO, DBG_LOUD,
  2457. "curTxOkCnt : 0x%llx\n", cur_tx_ok_cnt);
  2458. RT_TRACE(rtlpriv, COMP_TURBO, DBG_LOUD,
  2459. "curRxOkCnt : 0x%llx\n", cur_rx_ok_cnt);
  2460. if (b_bias_on_rx)
  2461. rtl8821ae_dm_edca_choose_traffic_idx(hw, cur_tx_ok_cnt,
  2462. cur_rx_ok_cnt, true, pb_is_cur_rdl_state);
  2463. else
  2464. rtl8821ae_dm_edca_choose_traffic_idx(hw, cur_tx_ok_cnt,
  2465. cur_rx_ok_cnt, false, pb_is_cur_rdl_state);
  2466. edca_be = (*pb_is_cur_rdl_state) ? edca_be_dl : edca_be_ul;
  2467. rtl_write_dword(rtlpriv, DM_REG_EDCA_BE_11N, edca_be);
  2468. RT_TRACE(rtlpriv, COMP_TURBO, DBG_LOUD,
  2469. "EDCA Turbo on: EDCA_BE:0x%x\n", edca_be);
  2470. rtlpriv->dm.current_turbo_edca = true;
  2471. RT_TRACE(rtlpriv, COMP_TURBO, DBG_LOUD,
  2472. "EDCA_BE_DL : 0x%x EDCA_BE_UL : 0x%x EDCA_BE : 0x%x\n",
  2473. edca_be_dl, edca_be_ul, edca_be);
  2474. } else {
  2475. if (rtlpriv->dm.current_turbo_edca) {
  2476. u8 tmp = AC0_BE;
  2477. rtlpriv->cfg->ops->set_hw_reg(hw, HW_VAR_AC_PARAM,
  2478. (u8 *)(&tmp));
  2479. }
  2480. rtlpriv->dm.current_turbo_edca = false;
  2481. }
  2482. rtlpriv->dm.is_any_nonbepkts = false;
  2483. rtldm->last_tx_ok_cnt = rtlpriv->stats.txbytesunicast;
  2484. rtldm->last_rx_ok_cnt = rtlpriv->stats.rxbytesunicast;
  2485. }
  2486. static void rtl8821ae_dm_cck_packet_detection_thresh(struct ieee80211_hw *hw)
  2487. {
  2488. struct rtl_priv *rtlpriv = rtl_priv(hw);
  2489. struct dig_t *dm_digtable = &rtlpriv->dm_digtable;
  2490. u8 cur_cck_cca_thresh;
  2491. if (rtlpriv->mac80211.link_state >= MAC80211_LINKED) {
  2492. if (dm_digtable->rssi_val_min > 25) {
  2493. cur_cck_cca_thresh = 0xcd;
  2494. } else if ((dm_digtable->rssi_val_min <= 25) &&
  2495. (dm_digtable->rssi_val_min > 10)) {
  2496. cur_cck_cca_thresh = 0x83;
  2497. } else {
  2498. if (rtlpriv->falsealm_cnt.cnt_cck_fail > 1000)
  2499. cur_cck_cca_thresh = 0x83;
  2500. else
  2501. cur_cck_cca_thresh = 0x40;
  2502. }
  2503. } else {
  2504. if (rtlpriv->falsealm_cnt.cnt_cck_fail > 1000)
  2505. cur_cck_cca_thresh = 0x83;
  2506. else
  2507. cur_cck_cca_thresh = 0x40;
  2508. }
  2509. if (dm_digtable->cur_cck_cca_thres != cur_cck_cca_thresh)
  2510. rtl_write_byte(rtlpriv, ODM_REG_CCK_CCA_11AC,
  2511. cur_cck_cca_thresh);
  2512. dm_digtable->pre_cck_cca_thres = dm_digtable->cur_cck_cca_thres;
  2513. dm_digtable->cur_cck_cca_thres = cur_cck_cca_thresh;
  2514. RT_TRACE(rtlpriv, COMP_DIG, DBG_TRACE,
  2515. "CCK cca thresh hold =%x\n", dm_digtable->cur_cck_cca_thres);
  2516. }
  2517. static void rtl8821ae_dm_dynamic_atc_switch(struct ieee80211_hw *hw)
  2518. {
  2519. struct rtl_priv *rtlpriv = rtl_priv(hw);
  2520. struct rtl_dm *rtldm = rtl_dm(rtl_priv(hw));
  2521. u8 crystal_cap;
  2522. u32 packet_count;
  2523. int cfo_khz_a, cfo_khz_b, cfo_ave = 0, adjust_xtal = 0;
  2524. int cfo_ave_diff;
  2525. if (rtlpriv->mac80211.link_state < MAC80211_LINKED) {
  2526. /*1.Enable ATC*/
  2527. if (rtldm->atc_status == ATC_STATUS_OFF) {
  2528. rtl_set_bbreg(hw, RFC_AREA, BIT(14), ATC_STATUS_ON);
  2529. rtldm->atc_status = ATC_STATUS_ON;
  2530. }
  2531. RT_TRACE(rtlpriv, COMP_DIG, DBG_LOUD, "No link!!\n");
  2532. RT_TRACE(rtlpriv, COMP_DIG, DBG_LOUD,
  2533. "atc_status = %d\n", rtldm->atc_status);
  2534. if (rtldm->crystal_cap != rtlpriv->efuse.crystalcap) {
  2535. rtldm->crystal_cap = rtlpriv->efuse.crystalcap;
  2536. crystal_cap = rtldm->crystal_cap & 0x3f;
  2537. crystal_cap = crystal_cap & 0x3f;
  2538. if (rtlpriv->rtlhal.hw_type == HARDWARE_TYPE_RTL8812AE)
  2539. rtl_set_bbreg(hw, REG_MAC_PHY_CTRL,
  2540. 0x7ff80000, (crystal_cap |
  2541. (crystal_cap << 6)));
  2542. else
  2543. rtl_set_bbreg(hw, REG_MAC_PHY_CTRL,
  2544. 0xfff000, (crystal_cap |
  2545. (crystal_cap << 6)));
  2546. }
  2547. RT_TRACE(rtlpriv, COMP_DIG, DBG_LOUD, "crystal_cap = 0x%x\n",
  2548. rtldm->crystal_cap);
  2549. } else{
  2550. /*1. Calculate CFO for path-A & path-B*/
  2551. cfo_khz_a = (int)(rtldm->cfo_tail[0] * 3125) / 1280;
  2552. cfo_khz_b = (int)(rtldm->cfo_tail[1] * 3125) / 1280;
  2553. packet_count = rtldm->packet_count;
  2554. /*2.No new packet*/
  2555. if (packet_count == rtldm->packet_count_pre) {
  2556. RT_TRACE(rtlpriv, COMP_DIG, DBG_LOUD,
  2557. "packet counter doesn't change\n");
  2558. return;
  2559. }
  2560. rtldm->packet_count_pre = packet_count;
  2561. RT_TRACE(rtlpriv, COMP_DIG, DBG_LOUD,
  2562. "packet counter = %d\n",
  2563. rtldm->packet_count);
  2564. /*3.Average CFO*/
  2565. if (rtlpriv->phy.rf_type == RF_1T1R)
  2566. cfo_ave = cfo_khz_a;
  2567. else
  2568. cfo_ave = (cfo_khz_a + cfo_khz_b) >> 1;
  2569. RT_TRACE(rtlpriv, COMP_DIG, DBG_LOUD,
  2570. "cfo_khz_a = %dkHz, cfo_khz_b = %dkHz, cfo_ave = %dkHz\n",
  2571. cfo_khz_a, cfo_khz_b, cfo_ave);
  2572. /*4.Avoid abnormal large CFO*/
  2573. cfo_ave_diff = (rtldm->cfo_ave_pre >= cfo_ave) ?
  2574. (rtldm->cfo_ave_pre - cfo_ave) :
  2575. (cfo_ave - rtldm->cfo_ave_pre);
  2576. if (cfo_ave_diff > 20 && rtldm->large_cfo_hit == 0) {
  2577. RT_TRACE(rtlpriv, COMP_DIG, DBG_LOUD,
  2578. "first large CFO hit\n");
  2579. rtldm->large_cfo_hit = 1;
  2580. return;
  2581. } else
  2582. rtldm->large_cfo_hit = 0;
  2583. rtldm->cfo_ave_pre = cfo_ave;
  2584. /*CFO tracking by adjusting Xtal cap.*/
  2585. /*1.Dynamic Xtal threshold*/
  2586. if (cfo_ave >= -rtldm->cfo_threshold &&
  2587. cfo_ave <= rtldm->cfo_threshold &&
  2588. rtldm->is_freeze == 0) {
  2589. if (rtldm->cfo_threshold == CFO_THRESHOLD_XTAL) {
  2590. rtldm->cfo_threshold = CFO_THRESHOLD_XTAL + 10;
  2591. rtldm->is_freeze = 1;
  2592. } else {
  2593. rtldm->cfo_threshold = CFO_THRESHOLD_XTAL;
  2594. }
  2595. }
  2596. RT_TRACE(rtlpriv, COMP_DIG, DBG_LOUD,
  2597. "Dynamic threshold = %d\n",
  2598. rtldm->cfo_threshold);
  2599. /* 2.Calculate Xtal offset*/
  2600. if (cfo_ave > rtldm->cfo_threshold && rtldm->crystal_cap < 0x3f)
  2601. adjust_xtal = ((cfo_ave - CFO_THRESHOLD_XTAL) >> 2) + 1;
  2602. else if ((cfo_ave < -rtlpriv->dm.cfo_threshold) &&
  2603. rtlpriv->dm.crystal_cap > 0)
  2604. adjust_xtal = ((cfo_ave + CFO_THRESHOLD_XTAL) >> 2) - 1;
  2605. RT_TRACE(rtlpriv, COMP_DIG, DBG_LOUD,
  2606. "Crystal cap = 0x%x, Crystal cap offset = %d\n",
  2607. rtldm->crystal_cap, adjust_xtal);
  2608. /*3.Adjudt Crystal Cap.*/
  2609. if (adjust_xtal != 0) {
  2610. rtldm->is_freeze = 0;
  2611. rtldm->crystal_cap += adjust_xtal;
  2612. if (rtldm->crystal_cap > 0x3f)
  2613. rtldm->crystal_cap = 0x3f;
  2614. else if (rtldm->crystal_cap < 0)
  2615. rtldm->crystal_cap = 0;
  2616. crystal_cap = rtldm->crystal_cap & 0x3f;
  2617. crystal_cap = crystal_cap & 0x3f;
  2618. if (rtlpriv->rtlhal.hw_type == HARDWARE_TYPE_RTL8812AE)
  2619. rtl_set_bbreg(hw, REG_MAC_PHY_CTRL,
  2620. 0x7ff80000, (crystal_cap |
  2621. (crystal_cap << 6)));
  2622. else
  2623. rtl_set_bbreg(hw, REG_MAC_PHY_CTRL,
  2624. 0xfff000, (crystal_cap |
  2625. (crystal_cap << 6)));
  2626. RT_TRACE(rtlpriv, COMP_DIG, DBG_LOUD,
  2627. "New crystal cap = 0x%x\n",
  2628. rtldm->crystal_cap);
  2629. }
  2630. }
  2631. }
  2632. void rtl8821ae_dm_watchdog(struct ieee80211_hw *hw)
  2633. {
  2634. struct rtl_priv *rtlpriv = rtl_priv(hw);
  2635. struct rtl_ps_ctl *ppsc = rtl_psc(rtl_priv(hw));
  2636. struct rtl_hal *rtlhal = rtl_hal(rtl_priv(hw));
  2637. bool fw_current_inpsmode = false;
  2638. bool fw_ps_awake = true;
  2639. rtlpriv->cfg->ops->get_hw_reg(hw, HW_VAR_FW_PSMODE_STATUS,
  2640. (u8 *)(&fw_current_inpsmode));
  2641. rtlpriv->cfg->ops->get_hw_reg(hw, HW_VAR_FWLPS_RF_ON,
  2642. (u8 *)(&fw_ps_awake));
  2643. if (ppsc->p2p_ps_info.p2p_ps_mode)
  2644. fw_ps_awake = false;
  2645. if ((ppsc->rfpwr_state == ERFON) &&
  2646. ((!fw_current_inpsmode) && fw_ps_awake) &&
  2647. (!ppsc->rfchange_inprogress)) {
  2648. rtl8821ae_dm_common_info_self_update(hw);
  2649. rtl8821ae_dm_false_alarm_counter_statistics(hw);
  2650. rtl8821ae_dm_check_rssi_monitor(hw);
  2651. rtl8821ae_dm_dig(hw);
  2652. rtl8821ae_dm_cck_packet_detection_thresh(hw);
  2653. rtl8821ae_dm_refresh_rate_adaptive_mask(hw);
  2654. rtl8821ae_dm_refresh_basic_rate_mask(hw);
  2655. rtl8821ae_dm_check_edca_turbo(hw);
  2656. rtl8821ae_dm_dynamic_atc_switch(hw);
  2657. if (rtlhal->hw_type == HARDWARE_TYPE_RTL8812AE)
  2658. rtl8812ae_dm_check_txpower_tracking_thermalmeter(hw);
  2659. else
  2660. rtl8821ae_dm_check_txpower_tracking_thermalmeter(hw);
  2661. rtl8821ae_dm_iq_calibrate(hw);
  2662. }
  2663. rtlpriv->dm.dbginfo.num_qry_beacon_pkt = 0;
  2664. RT_TRACE(rtlpriv, COMP_DIG, DBG_DMESG, "\n");
  2665. }
  2666. void rtl8821ae_dm_set_tx_ant_by_tx_info(struct ieee80211_hw *hw,
  2667. u8 *pdesc, u32 mac_id)
  2668. {
  2669. struct rtl_efuse *rtlefuse = rtl_efuse(rtl_priv(hw));
  2670. struct rtl_hal *rtlhal = rtl_hal(rtl_priv(hw));
  2671. struct rtl_dm *rtldm = rtl_dm(rtl_priv(hw));
  2672. struct fast_ant_training *pfat_table = &rtldm->fat_table;
  2673. if (rtlhal->hw_type != HARDWARE_TYPE_RTL8812AE)
  2674. return;
  2675. if (rtlefuse->antenna_div_type == CG_TRX_HW_ANTDIV)
  2676. SET_TX_DESC_TX_ANT(pdesc, pfat_table->antsel_a[mac_id]);
  2677. }