fc8150_bb.c 20 KB

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  1. /*****************************************************************************
  2. Copyright(c) 2012 FCI Inc. All Rights Reserved
  3. File name : fc8150_bb.c
  4. Description : API of 1-SEG baseband module
  5. *******************************************************************************/
  6. #include "fci_types.h"
  7. #include "fci_oal.h"
  8. #include "fci_hal.h"
  9. #include "fci_tun.h"
  10. #include "fc8150_regs.h"
  11. static u8 filter_coef_6M[7][16] = {
  12. { 0x00, 0x00, 0x00, 0x07, 0x0f, 0x01, 0x03, 0x04
  13. , 0x01, 0x19, 0x14, 0x18, 0x0a, 0x26, 0x40, 0x4a},
  14. /*xtal_in : 24,16,32 (adc clk = 4.0000)*/
  15. { 0x00, 0x07, 0x07, 0x00, 0x01, 0x03, 0x03, 0x01
  16. , 0x1c, 0x17, 0x16, 0x1e, 0x10, 0x27, 0x3b, 0x43},
  17. /*xtal_in : 26 (adc clk = 4.3333)*/
  18. { 0x00, 0x07, 0x07, 0x00, 0x01, 0x03, 0x03, 0x00
  19. , 0x1b, 0x16, 0x16, 0x1f, 0x11, 0x27, 0x3a, 0x41},
  20. /*xtal_in : 27,18 (adc clk = 4.5000)*/
  21. { 0x00, 0x00, 0x07, 0x07, 0x00, 0x02, 0x03, 0x03
  22. , 0x1f, 0x18, 0x14, 0x1a, 0x0c, 0x26, 0x3e, 0x47},
  23. /*xtal_in : 16.384, 24.576 (adc clk = 4.0960)*/
  24. { 0x00, 0x07, 0x07, 0x00, 0x02, 0x03, 0x02, 0x0f
  25. , 0x1a, 0x16, 0x18, 0x02, 0x13, 0x27, 0x38, 0x3e},
  26. /*xtal_in : 19.2, 38.4 (adc clk = 4.8000)*/
  27. { 0x00, 0x07, 0x07, 0x00, 0x01, 0x03, 0x03, 0x00
  28. , 0x1b, 0x16, 0x16, 0x1f, 0x11, 0x27, 0x3a, 0x41},
  29. /*xtal_in : 27.12 (adc clk = 4.5200)*/
  30. { 0x00, 0x07, 0x07, 0x00, 0x02, 0x03, 0x03, 0x00
  31. , 0x1a, 0x16, 0x17, 0x01, 0x12, 0x27, 0x39, 0x3f}
  32. /*xtal_in : 37.4 (adc clk = 4.6750)*/
  33. };
  34. #if 0
  35. static u8 filter_coef_7M[7][16] = {
  36. { 0x00, 0x00, 0x00, 0x00, 0x0f, 0x0e, 0x00, 0x04, 0x05
  37. , 0x1f, 0x15, 0x12, 0x01, 0x22, 0x45, 0x55},
  38. /*xtal_in : 24,16,32 (adc clk = 4.0000)*/
  39. { 0x00, 0x00, 0x00, 0x07, 0x0e, 0x0f, 0x02, 0x05, 0x04
  40. , 0x1c, 0x14, 0x14, 0x05, 0x24, 0x43, 0x50},
  41. /*xtal_in : 26 (adc clk = 4.3333)*/
  42. { 0x00, 0x00, 0x00, 0x07, 0x0f, 0x00, 0x03, 0x05, 0x02
  43. , 0x1b, 0x14, 0x16, 0x07, 0x25, 0x42, 0x4d},
  44. /*xtal_in : 27,18 (adc clk = 4.5000)*/
  45. { 0x00, 0x00, 0x00, 0x00, 0x0f, 0x0f, 0x01, 0x04, 0x05
  46. , 0x1e, 0x15, 0x13, 0x02, 0x23, 0x44, 0x53},
  47. /*xtal_in : 16.384, 24.576 (adc clk = 4.0960)*/
  48. { 0x00, 0x00, 0x07, 0x07, 0x00, 0x02, 0x04, 0x03, 0x1f
  49. , 0x18, 0x14, 0x1a, 0x0c, 0x26, 0x3e, 0x47},
  50. /*xtal_in : 19.2, 38.4 (adc clk = 4.8000)*/
  51. { 0x00, 0x00, 0x00, 0x07, 0x0f, 0x00, 0x03, 0x05, 0x02
  52. , 0x1b, 0x14, 0x16, 0x07, 0x25, 0x41, 0x4d},
  53. /*xtal_in : 27.12 (adc clk = 4.5200)*/
  54. { 0x00, 0x00, 0x00, 0x07, 0x0f, 0x01, 0x03, 0x04, 0x00
  55. , 0x19, 0x14, 0x18, 0x0a, 0x26, 0x3f, 0x4a}
  56. /*xtal_in : 37.4 (adc clk = 4.6750)*/
  57. };
  58. static u8 filter_coef_8M[7][16] = {
  59. { 0x00, 0x00, 0x00, 0x01, 0x01, 0x0f, 0x0d, 0x0f, 0x05
  60. , 0x06, 0x1d, 0x10, 0xf6, 0x1a, 0x4b, 0x62},
  61. /*xtal_in : 24,16,32 (adc clk = 4.0000)*/
  62. { 0x00, 0x00, 0x00, 0x01, 0x00, 0x0e, 0x0e, 0x02, 0x06
  63. , 0x04, 0x19, 0x10, 0xfb, 0x1e, 0x48, 0x5b},
  64. /*xtal_in : 26 (adc clk = 4.3333)*/
  65. { 0x00, 0x00, 0x00, 0x00, 0x0f, 0x0e, 0x00, 0x03, 0x05
  66. , 0x00, 0x16, 0x11, 0xff, 0x21, 0x46, 0x56},
  67. /*xtal_in : 27,18 (adc clk = 4.5000)*/
  68. { 0x00, 0x00, 0x00, 0x01, 0x00, 0x0f, 0x0d, 0x00, 0x05
  69. , 0x06, 0x1c, 0x10, 0xf7, 0x1b, 0x4a, 0x60},
  70. /*xtal_in : 16.384, 24.576 (adc clk = 4.0960)*/
  71. { 0x00, 0x00, 0x00, 0x07, 0x0e, 0x0f, 0x01, 0x05, 0x04
  72. , 0x1d, 0x14, 0x13, 0x04, 0x23, 0x44, 0x51},
  73. /*xtal_in : 19.2, 38.4 (adc clk = 4.8000)*/
  74. { 0x00, 0x00, 0x00, 0x00, 0x0f, 0x0e, 0x00, 0x04, 0x05
  75. , 0x00, 0x16, 0x12, 0x00, 0x21, 0x46, 0x56},
  76. /*xtal_in : 27.12 (adc clk = 4.5200)*/
  77. { 0x00, 0x00, 0x00, 0x00, 0x0f, 0x0f, 0x01, 0x04, 0x05
  78. , 0x1e, 0x15, 0x13, 0x02, 0x23, 0x44, 0x53}
  79. /*xtal_in : 37.4 (adc clk = 4.6750)*/
  80. };
  81. #endif
  82. static void fc8150_clock_mode(HANDLE hDevice)
  83. {
  84. int i;
  85. #if (BBM_XTAL_FREQ == 16000)
  86. bbm_write(hDevice, 0x0016, 0);
  87. #if (BBM_BAND_WIDTH == 6)
  88. bbm_word_write(hDevice, 0x1032, 0x30a4);
  89. bbm_long_write(hDevice, 0x103c, 0x1f800000);
  90. bbm_write(hDevice, 0x200a, 0x04);
  91. bbm_write(hDevice, 0x2009, 0x10);
  92. bbm_write(hDevice, 0x2008, 0x41);
  93. for (i = 0; i < 16; i++)
  94. bbm_write(hDevice, 0x1040+i, filter_coef_6M[0][i]);
  95. #elif (BBM_BAND_WIDTH == 7)
  96. bbm_word_write(hDevice, 0x1032, 0x30a4);
  97. bbm_long_write(hDevice, 0x103c, 0x1b000000);
  98. bbm_write(hDevice, 0x200a, 0x04);
  99. bbm_write(hDevice, 0x2009, 0xbd);
  100. bbm_write(hDevice, 0x2008, 0xa1);
  101. for (i = 0; i < 16; i++)
  102. bbm_write(hDevice, 0x1040+i, filter_coef_7M[0][i]);
  103. #else
  104. bbm_word_write(hDevice, 0x1032, 0x3ae1);
  105. bbm_long_write(hDevice, 0x103c, 0x17a00000);
  106. bbm_write(hDevice, 0x200a, 0x05);
  107. bbm_write(hDevice, 0x2009, 0x6b);
  108. bbm_write(hDevice, 0x2008, 0x01);
  109. for (i = 0; i < 16; i++)
  110. bbm_write(hDevice, 0x1040+i, filter_coef_8M[0][i]);
  111. #endif
  112. #elif (BBM_XTAL_FREQ == 16384)
  113. bbm_write(hDevice, 0x0016, 0);
  114. #if (BBM_BAND_WIDTH == 6)
  115. bbm_word_write(hDevice, 0x1032, 0x2f80);
  116. bbm_long_write(hDevice, 0x103c, 0x20418937);
  117. bbm_write(hDevice, 0x200a, 0x03);
  118. bbm_write(hDevice, 0x2009, 0xf7);
  119. bbm_write(hDevice, 0x2008, 0xdf);
  120. for (i = 0; i < 16; i++)
  121. bbm_write(hDevice, 0x1040+i, filter_coef_6M[3][i]);
  122. #elif (BBM_BAND_WIDTH == 7)
  123. bbm_word_write(hDevice, 0x1032, 0x2f80);
  124. bbm_long_write(hDevice, 0x103c, 0x1ba5e354);
  125. bbm_write(hDevice, 0x200a, 0x04);
  126. bbm_write(hDevice, 0x2009, 0xa1);
  127. bbm_write(hDevice, 0x2008, 0x2f);
  128. for (i = 0; i < 16; i++)
  129. bbm_write(hDevice, 0x1040+i, filter_coef_7M[3][i]);
  130. #else
  131. bbm_word_write(hDevice, 0x1032, 0x3980);
  132. bbm_long_write(hDevice, 0x103c, 0x183126e9);
  133. bbm_write(hDevice, 0x200a, 0x05);
  134. bbm_write(hDevice, 0x2009, 0x4a);
  135. bbm_write(hDevice, 0x2008, 0x7f);
  136. for (i = 0; i < 16; i++)
  137. bbm_write(hDevice, 0x1040+i, filter_coef_8M[3][i]);
  138. #endif
  139. #elif (BBM_XTAL_FREQ == 18000)
  140. bbm_write(hDevice, 0x0016, 0);
  141. #if (BBM_BAND_WIDTH == 6)
  142. bbm_word_write(hDevice, 0x1032, 0x2b3c);
  143. bbm_long_write(hDevice, 0x103c, 0x23700000);
  144. bbm_write(hDevice, 0x200a, 0x03);
  145. bbm_write(hDevice, 0x2009, 0x9c);
  146. bbm_write(hDevice, 0x2008, 0xac);
  147. for (i = 0; i < 16; i++)
  148. bbm_write(hDevice, 0x1040+i, filter_coef_6M[2][i]);
  149. #elif (BBM_BAND_WIDTH == 7)
  150. bbm_word_write(hDevice, 0x1032, 0x2b3c);
  151. bbm_long_write(hDevice, 0x103c, 0x1e600000);
  152. bbm_write(hDevice, 0x200a, 0x04);
  153. bbm_write(hDevice, 0x2009, 0x36);
  154. bbm_write(hDevice, 0x2008, 0xc8);
  155. for (i = 0; i < 16; i++)
  156. bbm_write(hDevice, 0x1040+i, filter_coef_7M[2][i]);
  157. #else
  158. bbm_word_write(hDevice, 0x1032, 0x3456);
  159. bbm_long_write(hDevice, 0x103c, 0x1a940000);
  160. bbm_write(hDevice, 0x200a, 0x04);
  161. bbm_write(hDevice, 0x2009, 0xd0);
  162. bbm_write(hDevice, 0x2008, 0xe5);
  163. for (i = 0; i < 16; i++)
  164. bbm_write(hDevice, 0x1040+i, filter_coef_8M[2][i]);
  165. #endif
  166. #elif (BBM_XTAL_FREQ == 19200)
  167. bbm_write(hDevice, 0x0016, 0);
  168. #if (BBM_BAND_WIDTH == 6)
  169. bbm_word_write(hDevice, 0x1032, 0x2889);
  170. bbm_long_write(hDevice, 0x103c, 0x25cccccd);
  171. bbm_write(hDevice, 0x200a, 0x03);
  172. bbm_write(hDevice, 0x2009, 0x62);
  173. bbm_write(hDevice, 0x2008, 0xe1);
  174. for (i = 0; i < 16; i++)
  175. bbm_write(hDevice, 0x1040+i, filter_coef_6M[4][i]);
  176. #elif (BBM_BAND_WIDTH == 7)
  177. bbm_word_write(hDevice, 0x1032, 0x2889);
  178. bbm_long_write(hDevice, 0x103c, 0x20666666);
  179. bbm_write(hDevice, 0x200a, 0x03);
  180. bbm_write(hDevice, 0x2009, 0xf3);
  181. bbm_write(hDevice, 0x2008, 0x5c);
  182. for (i = 0; i < 16; i++)
  183. bbm_write(hDevice, 0x1040+i, filter_coef_7M[4][i]);
  184. #else
  185. bbm_word_write(hDevice, 0x1032, 0x3111);
  186. bbm_long_write(hDevice, 0x103c, 0x1c59999a);
  187. bbm_write(hDevice, 0x200a, 0x04);
  188. bbm_write(hDevice, 0x2009, 0x83);
  189. bbm_write(hDevice, 0x2008, 0xd6);
  190. for (i = 0; i < 16; i++)
  191. bbm_write(hDevice, 0x1040+i, filter_coef_8M[4][i]);
  192. #endif
  193. #elif (BBM_XTAL_FREQ == 24000)
  194. bbm_write(hDevice, 0x0016, 2);
  195. #if (BBM_BAND_WIDTH == 6)
  196. bbm_word_write(hDevice, 0x1032, 0x30a4);
  197. bbm_long_write(hDevice, 0x103c, 0x1f800000);
  198. bbm_write(hDevice, 0x200a, 0x04);
  199. bbm_write(hDevice, 0x2009, 0x10);
  200. bbm_write(hDevice, 0x2008, 0x41);
  201. for (i = 0; i < 16; i++)
  202. bbm_write(hDevice, 0x1040+i, filter_coef_6M[0][i]);
  203. #elif (BBM_BAND_WIDTH == 7)
  204. bbm_word_write(hDevice, 0x1032, 0x30a4);
  205. bbm_long_write(hDevice, 0x103c, 0x1b000000);
  206. bbm_write(hDevice, 0x200a, 0x04);
  207. bbm_write(hDevice, 0x2009, 0xbd);
  208. bbm_write(hDevice, 0x2008, 0xa1);
  209. for (i = 0; i < 16; i++)
  210. bbm_write(hDevice, 0x1040+i, filter_coef_7M[0][i]);
  211. #else
  212. bbm_word_write(hDevice, 0x1032, 0x3ae1);
  213. bbm_long_write(hDevice, 0x103c, 0x17a00000);
  214. bbm_write(hDevice, 0x200a, 0x05);
  215. bbm_write(hDevice, 0x2009, 0x6b);
  216. bbm_write(hDevice, 0x2008, 0x01);
  217. for (i = 0; i < 16; i++)
  218. bbm_write(hDevice, 0x1040+i, filter_coef_8M[0][i]);
  219. #endif
  220. #elif (BBM_XTAL_FREQ == 26000)
  221. bbm_write(hDevice, 0x0016, 2);
  222. #if (BBM_BAND_WIDTH == 6)
  223. bbm_word_write(hDevice, 0x1032, 0x2ce6);
  224. bbm_long_write(hDevice, 0x103c, 0x221fffd4);
  225. bbm_write(hDevice, 0x200a, 0x03);
  226. bbm_write(hDevice, 0x2009, 0xc0);
  227. bbm_write(hDevice, 0x2008, 0x3c);
  228. for (i = 0; i < 16; i++)
  229. bbm_write(hDevice, 0x1040+i, filter_coef_6M[1][i]);
  230. #elif (BBM_BAND_WIDTH == 7)
  231. bbm_word_write(hDevice, 0x1032, 0x2ce6);
  232. bbm_long_write(hDevice, 0x103c, 0x1d3fffda);
  233. bbm_write(hDevice, 0x200a, 0x04);
  234. bbm_write(hDevice, 0x2009, 0x60);
  235. bbm_write(hDevice, 0x2008, 0x46);
  236. for (i = 0; i < 16; i++)
  237. bbm_write(hDevice, 0x1040+i, filter_coef_7M[1][i]);
  238. #else
  239. bbm_word_write(hDevice, 0x1032, 0x365a);
  240. bbm_long_write(hDevice, 0x103c, 0x1997ffdf);
  241. bbm_write(hDevice, 0x200a, 0x05);
  242. bbm_write(hDevice, 0x2009, 0x00);
  243. bbm_write(hDevice, 0x2008, 0x50);
  244. for (i = 0; i < 16; i++)
  245. bbm_write(hDevice, 0x1040+i, filter_coef_8M[1][i]);
  246. #endif
  247. #elif (BBM_XTAL_FREQ == 27000)
  248. bbm_write(hDevice, 0x0016, 2);
  249. #if (BBM_BAND_WIDTH == 6)
  250. bbm_word_write(hDevice, 0x1032, 0x2b3c);
  251. bbm_long_write(hDevice, 0x103c, 0x23700000);
  252. bbm_write(hDevice, 0x200a, 0x03);
  253. bbm_write(hDevice, 0x2009, 0x9c);
  254. bbm_write(hDevice, 0x2008, 0xac);
  255. for (i = 0; i < 16; i++)
  256. bbm_write(hDevice, 0x1040+i, filter_coef_6M[2][i]);
  257. #elif (BBM_BAND_WIDTH == 7)
  258. bbm_word_write(hDevice, 0x1032, 0x2b3c);
  259. bbm_long_write(hDevice, 0x103c, 0x1e600000);
  260. bbm_write(hDevice, 0x200a, 0x04);
  261. bbm_write(hDevice, 0x2009, 0x36);
  262. bbm_write(hDevice, 0x2008, 0xc8);
  263. for (i = 0; i < 16; i++)
  264. bbm_write(hDevice, 0x1040+i, filter_coef_7M[2][i]);
  265. #else
  266. bbm_word_write(hDevice, 0x1032, 0x3456);
  267. bbm_long_write(hDevice, 0x103c, 0x1a940000);
  268. bbm_write(hDevice, 0x200a, 0x04);
  269. bbm_write(hDevice, 0x2009, 0xd0);
  270. bbm_write(hDevice, 0x2008, 0xe5);
  271. for (i = 0; i < 16; i++)
  272. bbm_write(hDevice, 0x1040+i, filter_coef_8M[2][i]);
  273. #endif
  274. #elif (BBM_XTAL_FREQ == 27120)
  275. bbm_write(hDevice, 0x0016, 2);
  276. #if (BBM_BAND_WIDTH == 6)
  277. bbm_word_write(hDevice, 0x1032, 0x2b0b);
  278. bbm_long_write(hDevice, 0x103c, 0x239851ec);
  279. bbm_write(hDevice, 0x200a, 0x03);
  280. bbm_write(hDevice, 0x2009, 0x98);
  281. bbm_write(hDevice, 0x2008, 0x94);
  282. for (i = 0; i < 16; i++)
  283. bbm_write(hDevice, 0x1040+i, filter_coef_6M[5][i]);
  284. #elif (BBM_BAND_WIDTH == 7)
  285. bbm_word_write(hDevice, 0x1032, 0x2b0b);
  286. bbm_long_write(hDevice, 0x103c, 0x1e828f5c);
  287. bbm_write(hDevice, 0x200a, 0x04);
  288. bbm_write(hDevice, 0x2009, 0x32);
  289. bbm_write(hDevice, 0x2008, 0x02);
  290. for (i = 0; i < 16; i++)
  291. bbm_write(hDevice, 0x1040+i, filter_coef_7M[5][i]);
  292. #else
  293. bbm_word_write(hDevice, 0x1032, 0x341b);
  294. bbm_long_write(hDevice, 0x103c, 0x1ab23d71);
  295. bbm_write(hDevice, 0x200a, 0x04);
  296. bbm_write(hDevice, 0x2009, 0xcb);
  297. bbm_write(hDevice, 0x2008, 0x70);
  298. for (i = 0; i < 16; i++)
  299. bbm_write(hDevice, 0x1040+i, filter_coef_8M[5][i]);
  300. #endif
  301. #elif (BBM_XTAL_FREQ == 24576)
  302. bbm_write(hDevice, 0x0016, 2);
  303. #if (BBM_BAND_WIDTH == 6)
  304. bbm_word_write(hDevice, 0x1032, 0x2f80);
  305. bbm_long_write(hDevice, 0x103c, 0x20418937);
  306. bbm_write(hDevice, 0x200a, 0x03);
  307. bbm_write(hDevice, 0x2009, 0xf7);
  308. bbm_write(hDevice, 0x2008, 0xdf);
  309. for (i = 0; i < 16; i++)
  310. bbm_write(hDevice, 0x1040+i, filter_coef_6M[3][i]);
  311. #elif (BBM_BAND_WIDTH == 7)
  312. bbm_word_write(hDevice, 0x1032, 0x2f80);
  313. bbm_long_write(hDevice, 0x103c, 0x1ba5e354);
  314. bbm_write(hDevice, 0x200a, 0x04);
  315. bbm_write(hDevice, 0x2009, 0xa1);
  316. bbm_write(hDevice, 0x2008, 0x2f);
  317. for (i = 0; i < 16; i++)
  318. bbm_write(hDevice, 0x1040+i, filter_coef_7M[3][i]);
  319. #else
  320. bbm_word_write(hDevice, 0x1032, 0x3980);
  321. bbm_long_write(hDevice, 0x103c, 0x183126e9);
  322. bbm_write(hDevice, 0x200a, 0x05);
  323. bbm_write(hDevice, 0x2009, 0x4a);
  324. bbm_write(hDevice, 0x2008, 0x7f);
  325. for (i = 0; i < 16; i++)
  326. bbm_write(hDevice, 0x1040+i, filter_coef_8M[3][i]);
  327. #endif
  328. #elif (BBM_XTAL_FREQ == 32000)
  329. /* Default Clock */
  330. bbm_write(hDevice, 0x0016, 1);
  331. #if (BBM_BAND_WIDTH == 6)
  332. /* Default Band-width */
  333. bbm_word_write(hDevice, 0x1032, 0x30a4);
  334. bbm_long_write(hDevice, 0x103c, 0x1f800000);
  335. bbm_write(hDevice, 0x200a, 0x04);
  336. bbm_write(hDevice, 0x2009, 0x10);
  337. bbm_write(hDevice, 0x2008, 0x41);
  338. for (i = 0; i < 16; i++)
  339. bbm_write(hDevice, 0x1040+i, filter_coef_6M[0][i]);
  340. #elif (BBM_BAND_WIDTH == 7)
  341. bbm_word_write(hDevice, 0x1032, 0x30a4);
  342. bbm_long_write(hDevice, 0x103c, 0x1b000000);
  343. bbm_write(hDevice, 0x200a, 0x04);
  344. bbm_write(hDevice, 0x2009, 0xbd);
  345. bbm_write(hDevice, 0x2008, 0xa1);
  346. for (i = 0; i < 16; i++)
  347. bbm_write(hDevice, 0x1040+i, filter_coef_7M[0][i]);
  348. #else
  349. bbm_word_write(hDevice, 0x1032, 0x3ae1);
  350. bbm_long_write(hDevice, 0x103c, 0x17a00000);
  351. bbm_write(hDevice, 0x200a, 0x05);
  352. bbm_write(hDevice, 0x2009, 0x6b);
  353. bbm_write(hDevice, 0x2008, 0x01);
  354. for (i = 0; i < 16; i++)
  355. bbm_write(hDevice, 0x1040+i, filter_coef_8M[0][i]);
  356. #endif
  357. #elif (BBM_XTAL_FREQ == 37400)
  358. bbm_write(hDevice, 0x0016, 1);
  359. #if (BBM_BAND_WIDTH == 6)
  360. bbm_word_write(hDevice, 0x1032, 0x299e);
  361. bbm_long_write(hDevice, 0x103c, 0x24d0cccd);
  362. bbm_write(hDevice, 0x200a, 0x03);
  363. bbm_write(hDevice, 0x2009, 0x7a);
  364. bbm_write(hDevice, 0x2008, 0x0f);
  365. for (i = 0; i < 16; i++)
  366. bbm_write(hDevice, 0x1040+i, filter_coef_6M[6][i]);
  367. #elif (BBM_BAND_WIDTH == 7)
  368. bbm_word_write(hDevice, 0x1032, 0x299e);
  369. bbm_long_write(hDevice, 0x103c, 0x1f8e6666);
  370. bbm_write(hDevice, 0x200a, 0x04);
  371. bbm_write(hDevice, 0x2009, 0x0e);
  372. bbm_write(hDevice, 0x2008, 0x66);
  373. for (i = 0; i < 16; i++)
  374. bbm_write(hDevice, 0x1040+i, filter_coef_7M[6][i]);
  375. #else
  376. bbm_word_write(hDevice, 0x1032, 0x3261);
  377. bbm_long_write(hDevice, 0x103c, 0x1b9c999a);
  378. bbm_write(hDevice, 0x200a, 0x04);
  379. bbm_write(hDevice, 0x2009, 0xa2);
  380. bbm_write(hDevice, 0x2008, 0xbe);
  381. for (i = 0; i < 16; i++)
  382. bbm_write(hDevice, 0x1040+i, filter_coef_8M[6][i]);
  383. #endif
  384. #elif (BBM_XTAL_FREQ == 38400)
  385. bbm_write(hDevice, 0x0016, 1);
  386. #if (BBM_BAND_WIDTH == 6)
  387. bbm_word_write(hDevice, 0x1032, 0x2889);
  388. bbm_long_write(hDevice, 0x103c, 0x25cccccd);
  389. bbm_write(hDevice, 0x200a, 0x03);
  390. bbm_write(hDevice, 0x2009, 0x62);
  391. bbm_write(hDevice, 0x2008, 0xe1);
  392. for (i = 0; i < 16; i++)
  393. bbm_write(hDevice, 0x1040+i, filter_coef_6M[4][i]);
  394. #elif (BBM_BAND_WIDTH == 7)
  395. bbm_word_write(hDevice, 0x1032, 0x2889);
  396. bbm_long_write(hDevice, 0x103c, 0x20666666);
  397. bbm_write(hDevice, 0x200a, 0x03);
  398. bbm_write(hDevice, 0x2009, 0xf3);
  399. bbm_write(hDevice, 0x2008, 0x5c);
  400. for (i = 0; i < 16; i++)
  401. bbm_write(hDevice, 0x1040+i, filter_coef_7M[4][i]);
  402. #else
  403. bbm_word_write(hDevice, 0x1032, 0x3111);
  404. bbm_long_write(hDevice, 0x103c, 0x1c59999a);
  405. bbm_write(hDevice, 0x200a, 0x04);
  406. bbm_write(hDevice, 0x2009, 0x83);
  407. bbm_write(hDevice, 0x2008, 0xd6);
  408. for (i = 0; i < 16; i++)
  409. bbm_write(hDevice, 0x1040+i, filter_coef_8M[4][i]);
  410. #endif
  411. #endif
  412. }
  413. int fc8150_reset(HANDLE hDevice)
  414. {
  415. bbm_write(hDevice, BBM_SW_RESET, 0x7f);
  416. bbm_write(hDevice, BBM_SW_RESET, 0xff);
  417. return BBM_OK;
  418. }
  419. int fc8150_probe(HANDLE hDevice)
  420. {
  421. u16 ver;
  422. bbm_word_read(hDevice, BBM_CHIP_ID_L, &ver);
  423. return (ver == 0x8150) ? BBM_OK : BBM_NOK;
  424. }
  425. int fc8150_init(HANDLE hDevice)
  426. {
  427. bbm_write(hDevice, 0x00b0, 0x03);
  428. bbm_write(hDevice, 0x00b1, 0x00);
  429. bbm_write(hDevice, 0x00b2, 0x05);
  430. fc8150_reset(hDevice);
  431. fc8150_clock_mode(hDevice);
  432. bbm_write(hDevice, 0x1000, 0x27);
  433. bbm_write(hDevice, 0x1004, 0x4d);
  434. bbm_write(hDevice, 0x1069, 0x09);
  435. bbm_write(hDevice, 0x1075, 0x00);
  436. bbm_write(hDevice, 0x1083, 0x14);
  437. bbm_write(hDevice, 0x1084, 0x0f);
  438. bbm_word_write(hDevice, 0x00b4, 0x0000);
  439. /*bbm_write(hDevice, 0x00b6, 0x03);*/ /* Default 0x03, 0x00, 0x07*/
  440. bbm_write(hDevice, 0x00b9, 0x00);
  441. bbm_write(hDevice, 0x00ba, 0x01);
  442. bbm_write(hDevice, 0x2004, 0x41);
  443. bbm_write(hDevice, 0x2106, 0x1f);
  444. bbm_write(hDevice, 0x5010, 0x00);
  445. bbm_write(hDevice, BBM_RS_FAIL_TX, 0x00); /* RS FAILURE TX: 0x02*/
  446. bbm_word_write(hDevice, BBM_BUF_TS_START, TS_BUF_START);
  447. bbm_word_write(hDevice, BBM_BUF_TS_END, TS_BUF_END);
  448. bbm_word_write(hDevice, BBM_BUF_TS_THR, TS_BUF_THR);
  449. /*bbm_word_write(hDevice, BBM_BUF_AC_START, AC_BUF_START);*/
  450. /*bbm_word_write(hDevice, BBM_BUF_AC_END, AC_BUF_END);*/
  451. /*bbm_word_write(hDevice, BBM_BUF_AC_THR, AC_BUF_THR);*/
  452. /*bbm_write(hDevice, BBM_INT_POLAR_SEL, 0x00);*/
  453. bbm_write(hDevice, BBM_INT_AUTO_CLEAR, 0x01);
  454. #ifdef FEATURE_INT_AUTO_MODE
  455. bbm_write(hDevice, BBM_STATUS_AUTO_CLEAR_EN, 0x00);
  456. #endif
  457. bbm_write(hDevice, BBM_BUF_ENABLE, 0x01);
  458. bbm_write(hDevice, BBM_BUF_INT, 0x01);
  459. bbm_write(hDevice, BBM_INT_MASK, 0x07);
  460. bbm_write(hDevice, BBM_INT_STS_EN, 0x01);
  461. return BBM_OK;
  462. }
  463. int fc8150_deinit(HANDLE hDevice)
  464. {
  465. bbm_write(hDevice, BBM_SW_RESET, 0x00);
  466. return BBM_OK;
  467. }
  468. int fc8150_scan_status(HANDLE hDevice)
  469. {
  470. u32 ifagc_timeout = 7;
  471. u32 ofdm_timeout = 16;
  472. u32 ffs_lock_timeout = 10;
  473. u32 dagc_timeout = 100; /* always done*/
  474. u32 cfs_timeout = 12;
  475. u32 tmcc_timeout = 105;
  476. u32 ts_err_free_timeout = 0;
  477. int rssi;
  478. u8 data, data1;
  479. u8 lay0_mod, lay0_cr;
  480. int i;
  481. for (i = 0; i < ifagc_timeout; i++) {
  482. bbm_read(hDevice, 0x3025, &data);
  483. if (data & 0x01)
  484. break;
  485. msWait(10);
  486. }
  487. if (i == ifagc_timeout)
  488. return BBM_NOK;
  489. tuner_get_rssi(hDevice, &rssi);
  490. if (rssi < -107)
  491. return BBM_NOK;
  492. for (; i < ofdm_timeout; i++) {
  493. bbm_read(hDevice, 0x3025, &data);
  494. if (data & 0x08)
  495. break;
  496. msWait(10);
  497. }
  498. if (i == ofdm_timeout)
  499. return BBM_NOK;
  500. if (0 == (data & 0x04))
  501. return BBM_NOK;
  502. for (; i < ffs_lock_timeout; i++) {
  503. bbm_read(hDevice, 0x3026, &data);
  504. if (data & 0x10)
  505. break;
  506. msWait(10);
  507. }
  508. if (i == ffs_lock_timeout)
  509. return BBM_NOK;
  510. /* DAGC Lock*/
  511. for (i = 0; i < dagc_timeout; i++) {
  512. bbm_read(hDevice, 0x3026, &data);
  513. if (data & 0x01)
  514. break;
  515. msWait(10);
  516. }
  517. if (i == dagc_timeout)
  518. return BBM_NOK;
  519. for (i = 0; i < cfs_timeout; i++) {
  520. bbm_read(hDevice, 0x3025, &data);
  521. if (data & 0x40)
  522. break;
  523. msWait(10);
  524. }
  525. if (i == cfs_timeout)
  526. return BBM_NOK;
  527. bbm_read(hDevice, 0x2023, &data1);
  528. if (data1 & 1)
  529. return BBM_NOK;
  530. for (i = 0; i < tmcc_timeout; i++) {
  531. bbm_read(hDevice, 0x3026, &data);
  532. if (data & 0x02)
  533. break;
  534. msWait(10);
  535. }
  536. if (i == tmcc_timeout)
  537. return BBM_NOK;
  538. bbm_read(hDevice, 0x4113, &data);
  539. bbm_read(hDevice, 0x4114, &data1);
  540. if (((data >> 3) & 0x1) == 0)
  541. return BBM_NOK;
  542. lay0_mod = ((data & 0x10) >> 2) |
  543. ((data & 0x20) >> 4) |
  544. ((data & 0x40) >> 6);
  545. lay0_cr = ((data & 0x80) >> 5) |
  546. ((data1 & 0x01) << 1) |
  547. ((data1 & 0x02) >> 1);
  548. if (!((lay0_mod == 1) || (lay0_mod == 2)))
  549. return BBM_NOK;
  550. if (((0x70 & data) == 0x40) && ((0x1c & data1) == 0x18))
  551. ts_err_free_timeout = 40;
  552. else
  553. ts_err_free_timeout = 65;
  554. for (i = 0; i < ts_err_free_timeout; i++) {
  555. bbm_read(hDevice, 0x5053, &data);
  556. if (data & 0x01)
  557. break;
  558. msWait(10);
  559. }
  560. if (i == ts_err_free_timeout)
  561. return BBM_NOK;
  562. return BBM_OK;
  563. }