tda827x.c 26 KB

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  1. /*
  2. *
  3. * (c) 2005 Hartmut Hackmann
  4. * (c) 2007 Michael Krufky
  5. *
  6. * This program is free software; you can redistribute it and/or modify
  7. * it under the terms of the GNU General Public License as published by
  8. * the Free Software Foundation; either version 2 of the License, or
  9. * (at your option) any later version.
  10. *
  11. * This program is distributed in the hope that it will be useful,
  12. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  13. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  14. * GNU General Public License for more details.
  15. *
  16. * You should have received a copy of the GNU General Public License
  17. * along with this program; if not, write to the Free Software
  18. * Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
  19. */
  20. #include <linux/module.h>
  21. #include <linux/slab.h>
  22. #include <asm/types.h>
  23. #include <linux/dvb/frontend.h>
  24. #include <linux/videodev2.h>
  25. #include "tda827x.h"
  26. static int debug;
  27. module_param(debug, int, 0644);
  28. MODULE_PARM_DESC(debug, "Turn on/off frontend debugging (default:off).");
  29. #define dprintk(args...) \
  30. do { \
  31. if (debug) printk(KERN_DEBUG "tda827x: " args); \
  32. } while (0)
  33. struct tda827x_priv {
  34. int i2c_addr;
  35. struct i2c_adapter *i2c_adap;
  36. struct tda827x_config *cfg;
  37. unsigned int sgIF;
  38. unsigned char lpsel;
  39. u32 frequency;
  40. u32 bandwidth;
  41. };
  42. static void tda827x_set_std(struct dvb_frontend *fe,
  43. struct analog_parameters *params)
  44. {
  45. struct tda827x_priv *priv = fe->tuner_priv;
  46. char *mode;
  47. priv->lpsel = 0;
  48. if (params->std & V4L2_STD_MN) {
  49. priv->sgIF = 92;
  50. priv->lpsel = 1;
  51. mode = "MN";
  52. } else if (params->std & V4L2_STD_B) {
  53. priv->sgIF = 108;
  54. mode = "B";
  55. } else if (params->std & V4L2_STD_GH) {
  56. priv->sgIF = 124;
  57. mode = "GH";
  58. } else if (params->std & V4L2_STD_PAL_I) {
  59. priv->sgIF = 124;
  60. mode = "I";
  61. } else if (params->std & V4L2_STD_DK) {
  62. priv->sgIF = 124;
  63. mode = "DK";
  64. } else if (params->std & V4L2_STD_SECAM_L) {
  65. priv->sgIF = 124;
  66. mode = "L";
  67. } else if (params->std & V4L2_STD_SECAM_LC) {
  68. priv->sgIF = 20;
  69. mode = "LC";
  70. } else {
  71. priv->sgIF = 124;
  72. mode = "xx";
  73. }
  74. if (params->mode == V4L2_TUNER_RADIO) {
  75. priv->sgIF = 88; /* if frequency is 5.5 MHz */
  76. dprintk("setting tda827x to radio FM\n");
  77. } else
  78. dprintk("setting tda827x to system %s\n", mode);
  79. }
  80. /* ------------------------------------------------------------------ */
  81. struct tda827x_data {
  82. u32 lomax;
  83. u8 spd;
  84. u8 bs;
  85. u8 bp;
  86. u8 cp;
  87. u8 gc3;
  88. u8 div1p5;
  89. };
  90. static const struct tda827x_data tda827x_table[] = {
  91. { .lomax = 62000000, .spd = 3, .bs = 2, .bp = 0, .cp = 0, .gc3 = 3, .div1p5 = 1},
  92. { .lomax = 66000000, .spd = 3, .bs = 3, .bp = 0, .cp = 0, .gc3 = 3, .div1p5 = 1},
  93. { .lomax = 76000000, .spd = 3, .bs = 1, .bp = 0, .cp = 0, .gc3 = 3, .div1p5 = 0},
  94. { .lomax = 84000000, .spd = 3, .bs = 2, .bp = 0, .cp = 0, .gc3 = 3, .div1p5 = 0},
  95. { .lomax = 93000000, .spd = 3, .bs = 2, .bp = 0, .cp = 0, .gc3 = 1, .div1p5 = 0},
  96. { .lomax = 98000000, .spd = 3, .bs = 3, .bp = 0, .cp = 0, .gc3 = 1, .div1p5 = 0},
  97. { .lomax = 109000000, .spd = 3, .bs = 3, .bp = 1, .cp = 0, .gc3 = 1, .div1p5 = 0},
  98. { .lomax = 123000000, .spd = 2, .bs = 2, .bp = 1, .cp = 0, .gc3 = 1, .div1p5 = 1},
  99. { .lomax = 133000000, .spd = 2, .bs = 3, .bp = 1, .cp = 0, .gc3 = 1, .div1p5 = 1},
  100. { .lomax = 151000000, .spd = 2, .bs = 1, .bp = 1, .cp = 0, .gc3 = 1, .div1p5 = 0},
  101. { .lomax = 154000000, .spd = 2, .bs = 2, .bp = 1, .cp = 0, .gc3 = 1, .div1p5 = 0},
  102. { .lomax = 181000000, .spd = 2, .bs = 2, .bp = 1, .cp = 0, .gc3 = 0, .div1p5 = 0},
  103. { .lomax = 185000000, .spd = 2, .bs = 2, .bp = 2, .cp = 0, .gc3 = 1, .div1p5 = 0},
  104. { .lomax = 217000000, .spd = 2, .bs = 3, .bp = 2, .cp = 0, .gc3 = 1, .div1p5 = 0},
  105. { .lomax = 244000000, .spd = 1, .bs = 2, .bp = 2, .cp = 0, .gc3 = 1, .div1p5 = 1},
  106. { .lomax = 265000000, .spd = 1, .bs = 3, .bp = 2, .cp = 0, .gc3 = 1, .div1p5 = 1},
  107. { .lomax = 302000000, .spd = 1, .bs = 1, .bp = 2, .cp = 0, .gc3 = 1, .div1p5 = 0},
  108. { .lomax = 324000000, .spd = 1, .bs = 2, .bp = 2, .cp = 0, .gc3 = 1, .div1p5 = 0},
  109. { .lomax = 370000000, .spd = 1, .bs = 2, .bp = 3, .cp = 0, .gc3 = 1, .div1p5 = 0},
  110. { .lomax = 454000000, .spd = 1, .bs = 3, .bp = 3, .cp = 0, .gc3 = 1, .div1p5 = 0},
  111. { .lomax = 493000000, .spd = 0, .bs = 2, .bp = 3, .cp = 0, .gc3 = 1, .div1p5 = 1},
  112. { .lomax = 530000000, .spd = 0, .bs = 3, .bp = 3, .cp = 0, .gc3 = 1, .div1p5 = 1},
  113. { .lomax = 554000000, .spd = 0, .bs = 1, .bp = 3, .cp = 0, .gc3 = 1, .div1p5 = 0},
  114. { .lomax = 604000000, .spd = 0, .bs = 1, .bp = 4, .cp = 0, .gc3 = 0, .div1p5 = 0},
  115. { .lomax = 696000000, .spd = 0, .bs = 2, .bp = 4, .cp = 0, .gc3 = 0, .div1p5 = 0},
  116. { .lomax = 740000000, .spd = 0, .bs = 2, .bp = 4, .cp = 1, .gc3 = 0, .div1p5 = 0},
  117. { .lomax = 820000000, .spd = 0, .bs = 3, .bp = 4, .cp = 0, .gc3 = 0, .div1p5 = 0},
  118. { .lomax = 865000000, .spd = 0, .bs = 3, .bp = 4, .cp = 1, .gc3 = 0, .div1p5 = 0},
  119. { .lomax = 0, .spd = 0, .bs = 0, .bp = 0, .cp = 0, .gc3 = 0, .div1p5 = 0}
  120. };
  121. static int tuner_transfer(struct dvb_frontend *fe,
  122. struct i2c_msg *msg,
  123. const int size)
  124. {
  125. int rc;
  126. struct tda827x_priv *priv = fe->tuner_priv;
  127. if (fe->ops.i2c_gate_ctrl)
  128. fe->ops.i2c_gate_ctrl(fe, 1);
  129. rc = i2c_transfer(priv->i2c_adap, msg, size);
  130. if (fe->ops.i2c_gate_ctrl)
  131. fe->ops.i2c_gate_ctrl(fe, 0);
  132. if (rc >= 0 && rc != size)
  133. return -EIO;
  134. return rc;
  135. }
  136. static int tda827xo_set_params(struct dvb_frontend *fe,
  137. struct dvb_frontend_parameters *params)
  138. {
  139. struct tda827x_priv *priv = fe->tuner_priv;
  140. u8 buf[14];
  141. int rc;
  142. struct i2c_msg msg = { .addr = priv->i2c_addr, .flags = 0,
  143. .buf = buf, .len = sizeof(buf) };
  144. int i, tuner_freq, if_freq;
  145. u32 N;
  146. dprintk("%s:\n", __func__);
  147. switch (params->u.ofdm.bandwidth) {
  148. case BANDWIDTH_6_MHZ:
  149. if_freq = 4000000;
  150. break;
  151. case BANDWIDTH_7_MHZ:
  152. if_freq = 4500000;
  153. break;
  154. default: /* 8 MHz or Auto */
  155. if_freq = 5000000;
  156. break;
  157. }
  158. tuner_freq = params->frequency + if_freq;
  159. i = 0;
  160. while (tda827x_table[i].lomax < tuner_freq) {
  161. if (tda827x_table[i + 1].lomax == 0)
  162. break;
  163. i++;
  164. }
  165. N = ((tuner_freq + 125000) / 250000) << (tda827x_table[i].spd + 2);
  166. buf[0] = 0;
  167. buf[1] = (N>>8) | 0x40;
  168. buf[2] = N & 0xff;
  169. buf[3] = 0;
  170. buf[4] = 0x52;
  171. buf[5] = (tda827x_table[i].spd << 6) + (tda827x_table[i].div1p5 << 5) +
  172. (tda827x_table[i].bs << 3) +
  173. tda827x_table[i].bp;
  174. buf[6] = (tda827x_table[i].gc3 << 4) + 0x8f;
  175. buf[7] = 0xbf;
  176. buf[8] = 0x2a;
  177. buf[9] = 0x05;
  178. buf[10] = 0xff;
  179. buf[11] = 0x00;
  180. buf[12] = 0x00;
  181. buf[13] = 0x40;
  182. msg.len = 14;
  183. rc = tuner_transfer(fe, &msg, 1);
  184. if (rc < 0)
  185. goto err;
  186. msleep(500);
  187. /* correct CP value */
  188. buf[0] = 0x30;
  189. buf[1] = 0x50 + tda827x_table[i].cp;
  190. msg.len = 2;
  191. rc = tuner_transfer(fe, &msg, 1);
  192. if (rc < 0)
  193. goto err;
  194. priv->frequency = params->frequency;
  195. priv->bandwidth = (fe->ops.info.type == FE_OFDM) ? params->u.ofdm.bandwidth : 0;
  196. return 0;
  197. err:
  198. printk(KERN_ERR "%s: could not write to tuner at addr: 0x%02x\n",
  199. __func__, priv->i2c_addr << 1);
  200. return rc;
  201. }
  202. static int tda827xo_sleep(struct dvb_frontend *fe)
  203. {
  204. struct tda827x_priv *priv = fe->tuner_priv;
  205. static u8 buf[] = { 0x30, 0xd0 };
  206. struct i2c_msg msg = { .addr = priv->i2c_addr, .flags = 0,
  207. .buf = buf, .len = sizeof(buf) };
  208. dprintk("%s:\n", __func__);
  209. tuner_transfer(fe, &msg, 1);
  210. if (priv->cfg && priv->cfg->sleep)
  211. priv->cfg->sleep(fe);
  212. return 0;
  213. }
  214. /* ------------------------------------------------------------------ */
  215. static int tda827xo_set_analog_params(struct dvb_frontend *fe,
  216. struct analog_parameters *params)
  217. {
  218. unsigned char tuner_reg[8];
  219. unsigned char reg2[2];
  220. u32 N;
  221. int i;
  222. struct tda827x_priv *priv = fe->tuner_priv;
  223. struct i2c_msg msg = { .addr = priv->i2c_addr, .flags = 0 };
  224. unsigned int freq = params->frequency;
  225. tda827x_set_std(fe, params);
  226. if (params->mode == V4L2_TUNER_RADIO)
  227. freq = freq / 1000;
  228. N = freq + priv->sgIF;
  229. i = 0;
  230. while (tda827x_table[i].lomax < N * 62500) {
  231. if (tda827x_table[i + 1].lomax == 0)
  232. break;
  233. i++;
  234. }
  235. N = N << tda827x_table[i].spd;
  236. tuner_reg[0] = 0;
  237. tuner_reg[1] = (unsigned char)(N>>8);
  238. tuner_reg[2] = (unsigned char) N;
  239. tuner_reg[3] = 0x40;
  240. tuner_reg[4] = 0x52 + (priv->lpsel << 5);
  241. tuner_reg[5] = (tda827x_table[i].spd << 6) +
  242. (tda827x_table[i].div1p5 << 5) +
  243. (tda827x_table[i].bs << 3) + tda827x_table[i].bp;
  244. tuner_reg[6] = 0x8f + (tda827x_table[i].gc3 << 4);
  245. tuner_reg[7] = 0x8f;
  246. msg.buf = tuner_reg;
  247. msg.len = 8;
  248. tuner_transfer(fe, &msg, 1);
  249. msg.buf = reg2;
  250. msg.len = 2;
  251. reg2[0] = 0x80;
  252. reg2[1] = 0;
  253. tuner_transfer(fe, &msg, 1);
  254. reg2[0] = 0x60;
  255. reg2[1] = 0xbf;
  256. tuner_transfer(fe, &msg, 1);
  257. reg2[0] = 0x30;
  258. reg2[1] = tuner_reg[4] + 0x80;
  259. tuner_transfer(fe, &msg, 1);
  260. msleep(1);
  261. reg2[0] = 0x30;
  262. reg2[1] = tuner_reg[4] + 4;
  263. tuner_transfer(fe, &msg, 1);
  264. msleep(1);
  265. reg2[0] = 0x30;
  266. reg2[1] = tuner_reg[4];
  267. tuner_transfer(fe, &msg, 1);
  268. msleep(550);
  269. reg2[0] = 0x30;
  270. reg2[1] = (tuner_reg[4] & 0xfc) + tda827x_table[i].cp;
  271. tuner_transfer(fe, &msg, 1);
  272. reg2[0] = 0x60;
  273. reg2[1] = 0x3f;
  274. tuner_transfer(fe, &msg, 1);
  275. reg2[0] = 0x80;
  276. reg2[1] = 0x08; /* Vsync en */
  277. tuner_transfer(fe, &msg, 1);
  278. priv->frequency = params->frequency;
  279. return 0;
  280. }
  281. static void tda827xo_agcf(struct dvb_frontend *fe)
  282. {
  283. struct tda827x_priv *priv = fe->tuner_priv;
  284. unsigned char data[] = { 0x80, 0x0c };
  285. struct i2c_msg msg = { .addr = priv->i2c_addr, .flags = 0,
  286. .buf = data, .len = 2};
  287. tuner_transfer(fe, &msg, 1);
  288. }
  289. /* ------------------------------------------------------------------ */
  290. struct tda827xa_data {
  291. u32 lomax;
  292. u8 svco;
  293. u8 spd;
  294. u8 scr;
  295. u8 sbs;
  296. u8 gc3;
  297. };
  298. static struct tda827xa_data tda827xa_dvbt[] = {
  299. { .lomax = 56875000, .svco = 3, .spd = 4, .scr = 0, .sbs = 0, .gc3 = 1},
  300. { .lomax = 67250000, .svco = 0, .spd = 3, .scr = 0, .sbs = 0, .gc3 = 1},
  301. { .lomax = 81250000, .svco = 1, .spd = 3, .scr = 0, .sbs = 0, .gc3 = 1},
  302. { .lomax = 97500000, .svco = 2, .spd = 3, .scr = 0, .sbs = 0, .gc3 = 1},
  303. { .lomax = 113750000, .svco = 3, .spd = 3, .scr = 0, .sbs = 1, .gc3 = 1},
  304. { .lomax = 134500000, .svco = 0, .spd = 2, .scr = 0, .sbs = 1, .gc3 = 1},
  305. { .lomax = 154000000, .svco = 1, .spd = 2, .scr = 0, .sbs = 1, .gc3 = 1},
  306. { .lomax = 162500000, .svco = 1, .spd = 2, .scr = 0, .sbs = 1, .gc3 = 1},
  307. { .lomax = 183000000, .svco = 2, .spd = 2, .scr = 0, .sbs = 1, .gc3 = 1},
  308. { .lomax = 195000000, .svco = 2, .spd = 2, .scr = 0, .sbs = 2, .gc3 = 1},
  309. { .lomax = 227500000, .svco = 3, .spd = 2, .scr = 0, .sbs = 2, .gc3 = 1},
  310. { .lomax = 269000000, .svco = 0, .spd = 1, .scr = 0, .sbs = 2, .gc3 = 1},
  311. { .lomax = 290000000, .svco = 1, .spd = 1, .scr = 0, .sbs = 2, .gc3 = 1},
  312. { .lomax = 325000000, .svco = 1, .spd = 1, .scr = 0, .sbs = 3, .gc3 = 1},
  313. { .lomax = 390000000, .svco = 2, .spd = 1, .scr = 0, .sbs = 3, .gc3 = 1},
  314. { .lomax = 455000000, .svco = 3, .spd = 1, .scr = 0, .sbs = 3, .gc3 = 1},
  315. { .lomax = 520000000, .svco = 0, .spd = 0, .scr = 0, .sbs = 3, .gc3 = 1},
  316. { .lomax = 538000000, .svco = 0, .spd = 0, .scr = 1, .sbs = 3, .gc3 = 1},
  317. { .lomax = 550000000, .svco = 1, .spd = 0, .scr = 0, .sbs = 3, .gc3 = 1},
  318. { .lomax = 620000000, .svco = 1, .spd = 0, .scr = 0, .sbs = 4, .gc3 = 0},
  319. { .lomax = 650000000, .svco = 1, .spd = 0, .scr = 1, .sbs = 4, .gc3 = 0},
  320. { .lomax = 700000000, .svco = 2, .spd = 0, .scr = 0, .sbs = 4, .gc3 = 0},
  321. { .lomax = 780000000, .svco = 2, .spd = 0, .scr = 1, .sbs = 4, .gc3 = 0},
  322. { .lomax = 820000000, .svco = 3, .spd = 0, .scr = 0, .sbs = 4, .gc3 = 0},
  323. { .lomax = 870000000, .svco = 3, .spd = 0, .scr = 1, .sbs = 4, .gc3 = 0},
  324. { .lomax = 911000000, .svco = 3, .spd = 0, .scr = 2, .sbs = 4, .gc3 = 0},
  325. { .lomax = 0, .svco = 0, .spd = 0, .scr = 0, .sbs = 0, .gc3 = 0}
  326. };
  327. static struct tda827xa_data tda827xa_dvbc[] = {
  328. { .lomax = 50125000, .svco = 2, .spd = 4, .scr = 2, .sbs = 0, .gc3 = 3},
  329. { .lomax = 58500000, .svco = 3, .spd = 4, .scr = 2, .sbs = 0, .gc3 = 3},
  330. { .lomax = 69250000, .svco = 0, .spd = 3, .scr = 2, .sbs = 0, .gc3 = 3},
  331. { .lomax = 83625000, .svco = 1, .spd = 3, .scr = 2, .sbs = 0, .gc3 = 3},
  332. { .lomax = 97500000, .svco = 2, .spd = 3, .scr = 2, .sbs = 0, .gc3 = 3},
  333. { .lomax = 100250000, .svco = 2, .spd = 3, .scr = 2, .sbs = 1, .gc3 = 1},
  334. { .lomax = 117000000, .svco = 3, .spd = 3, .scr = 2, .sbs = 1, .gc3 = 1},
  335. { .lomax = 138500000, .svco = 0, .spd = 2, .scr = 2, .sbs = 1, .gc3 = 1},
  336. { .lomax = 167250000, .svco = 1, .spd = 2, .scr = 2, .sbs = 1, .gc3 = 1},
  337. { .lomax = 187000000, .svco = 2, .spd = 2, .scr = 2, .sbs = 1, .gc3 = 1},
  338. { .lomax = 200500000, .svco = 2, .spd = 2, .scr = 2, .sbs = 2, .gc3 = 1},
  339. { .lomax = 234000000, .svco = 3, .spd = 2, .scr = 2, .sbs = 2, .gc3 = 3},
  340. { .lomax = 277000000, .svco = 0, .spd = 1, .scr = 2, .sbs = 2, .gc3 = 3},
  341. { .lomax = 325000000, .svco = 1, .spd = 1, .scr = 2, .sbs = 2, .gc3 = 1},
  342. { .lomax = 334500000, .svco = 1, .spd = 1, .scr = 2, .sbs = 3, .gc3 = 3},
  343. { .lomax = 401000000, .svco = 2, .spd = 1, .scr = 2, .sbs = 3, .gc3 = 3},
  344. { .lomax = 468000000, .svco = 3, .spd = 1, .scr = 2, .sbs = 3, .gc3 = 1},
  345. { .lomax = 535000000, .svco = 0, .spd = 0, .scr = 1, .sbs = 3, .gc3 = 1},
  346. { .lomax = 554000000, .svco = 0, .spd = 0, .scr = 2, .sbs = 3, .gc3 = 1},
  347. { .lomax = 638000000, .svco = 1, .spd = 0, .scr = 1, .sbs = 4, .gc3 = 1},
  348. { .lomax = 669000000, .svco = 1, .spd = 0, .scr = 2, .sbs = 4, .gc3 = 1},
  349. { .lomax = 720000000, .svco = 2, .spd = 0, .scr = 1, .sbs = 4, .gc3 = 1},
  350. { .lomax = 802000000, .svco = 2, .spd = 0, .scr = 2, .sbs = 4, .gc3 = 1},
  351. { .lomax = 835000000, .svco = 3, .spd = 0, .scr = 1, .sbs = 4, .gc3 = 1},
  352. { .lomax = 885000000, .svco = 3, .spd = 0, .scr = 1, .sbs = 4, .gc3 = 1},
  353. { .lomax = 911000000, .svco = 3, .spd = 0, .scr = 2, .sbs = 4, .gc3 = 1},
  354. { .lomax = 0, .svco = 0, .spd = 0, .scr = 0, .sbs = 0, .gc3 = 0}
  355. };
  356. static struct tda827xa_data tda827xa_analog[] = {
  357. { .lomax = 56875000, .svco = 3, .spd = 4, .scr = 0, .sbs = 0, .gc3 = 3},
  358. { .lomax = 67250000, .svco = 0, .spd = 3, .scr = 0, .sbs = 0, .gc3 = 3},
  359. { .lomax = 81250000, .svco = 1, .spd = 3, .scr = 0, .sbs = 0, .gc3 = 3},
  360. { .lomax = 97500000, .svco = 2, .spd = 3, .scr = 0, .sbs = 0, .gc3 = 3},
  361. { .lomax = 113750000, .svco = 3, .spd = 3, .scr = 0, .sbs = 1, .gc3 = 1},
  362. { .lomax = 134500000, .svco = 0, .spd = 2, .scr = 0, .sbs = 1, .gc3 = 1},
  363. { .lomax = 154000000, .svco = 1, .spd = 2, .scr = 0, .sbs = 1, .gc3 = 1},
  364. { .lomax = 162500000, .svco = 1, .spd = 2, .scr = 0, .sbs = 1, .gc3 = 1},
  365. { .lomax = 183000000, .svco = 2, .spd = 2, .scr = 0, .sbs = 1, .gc3 = 1},
  366. { .lomax = 195000000, .svco = 2, .spd = 2, .scr = 0, .sbs = 2, .gc3 = 1},
  367. { .lomax = 227500000, .svco = 3, .spd = 2, .scr = 0, .sbs = 2, .gc3 = 3},
  368. { .lomax = 269000000, .svco = 0, .spd = 1, .scr = 0, .sbs = 2, .gc3 = 3},
  369. { .lomax = 325000000, .svco = 1, .spd = 1, .scr = 0, .sbs = 2, .gc3 = 1},
  370. { .lomax = 390000000, .svco = 2, .spd = 1, .scr = 0, .sbs = 3, .gc3 = 3},
  371. { .lomax = 455000000, .svco = 3, .spd = 1, .scr = 0, .sbs = 3, .gc3 = 3},
  372. { .lomax = 520000000, .svco = 0, .spd = 0, .scr = 0, .sbs = 3, .gc3 = 1},
  373. { .lomax = 538000000, .svco = 0, .spd = 0, .scr = 1, .sbs = 3, .gc3 = 1},
  374. { .lomax = 554000000, .svco = 1, .spd = 0, .scr = 0, .sbs = 3, .gc3 = 1},
  375. { .lomax = 620000000, .svco = 1, .spd = 0, .scr = 0, .sbs = 4, .gc3 = 0},
  376. { .lomax = 650000000, .svco = 1, .spd = 0, .scr = 1, .sbs = 4, .gc3 = 0},
  377. { .lomax = 700000000, .svco = 2, .spd = 0, .scr = 0, .sbs = 4, .gc3 = 0},
  378. { .lomax = 780000000, .svco = 2, .spd = 0, .scr = 1, .sbs = 4, .gc3 = 0},
  379. { .lomax = 820000000, .svco = 3, .spd = 0, .scr = 0, .sbs = 4, .gc3 = 0},
  380. { .lomax = 870000000, .svco = 3, .spd = 0, .scr = 1, .sbs = 4, .gc3 = 0},
  381. { .lomax = 911000000, .svco = 3, .spd = 0, .scr = 2, .sbs = 4, .gc3 = 0},
  382. { .lomax = 0, .svco = 0, .spd = 0, .scr = 0, .sbs = 0, .gc3 = 0}
  383. };
  384. static int tda827xa_sleep(struct dvb_frontend *fe)
  385. {
  386. struct tda827x_priv *priv = fe->tuner_priv;
  387. static u8 buf[] = { 0x30, 0x90 };
  388. struct i2c_msg msg = { .addr = priv->i2c_addr, .flags = 0,
  389. .buf = buf, .len = sizeof(buf) };
  390. dprintk("%s:\n", __func__);
  391. tuner_transfer(fe, &msg, 1);
  392. if (priv->cfg && priv->cfg->sleep)
  393. priv->cfg->sleep(fe);
  394. return 0;
  395. }
  396. static void tda827xa_lna_gain(struct dvb_frontend *fe, int high,
  397. struct analog_parameters *params)
  398. {
  399. struct tda827x_priv *priv = fe->tuner_priv;
  400. unsigned char buf[] = {0x22, 0x01};
  401. int arg;
  402. int gp_func;
  403. struct i2c_msg msg = { .flags = 0, .buf = buf, .len = sizeof(buf) };
  404. if (NULL == priv->cfg) {
  405. dprintk("tda827x_config not defined, cannot set LNA gain!\n");
  406. return;
  407. }
  408. msg.addr = priv->cfg->switch_addr;
  409. if (priv->cfg->config) {
  410. if (high)
  411. dprintk("setting LNA to high gain\n");
  412. else
  413. dprintk("setting LNA to low gain\n");
  414. }
  415. switch (priv->cfg->config) {
  416. case 0: /* no LNA */
  417. break;
  418. case 1: /* switch is GPIO 0 of tda8290 */
  419. case 2:
  420. if (params == NULL) {
  421. gp_func = 0;
  422. arg = 0;
  423. } else {
  424. /* turn Vsync on */
  425. gp_func = 1;
  426. if (params->std & V4L2_STD_MN)
  427. arg = 1;
  428. else
  429. arg = 0;
  430. }
  431. if (fe->callback)
  432. fe->callback(priv->i2c_adap->algo_data,
  433. DVB_FRONTEND_COMPONENT_TUNER,
  434. gp_func, arg);
  435. buf[1] = high ? 0 : 1;
  436. if (priv->cfg->config == 2)
  437. buf[1] = high ? 1 : 0;
  438. tuner_transfer(fe, &msg, 1);
  439. break;
  440. case 3: /* switch with GPIO of saa713x */
  441. if (fe->callback)
  442. fe->callback(priv->i2c_adap->algo_data,
  443. DVB_FRONTEND_COMPONENT_TUNER, 0, high);
  444. break;
  445. }
  446. }
  447. static int tda827xa_set_params(struct dvb_frontend *fe,
  448. struct dvb_frontend_parameters *params)
  449. {
  450. struct tda827x_priv *priv = fe->tuner_priv;
  451. struct tda827xa_data *frequency_map = tda827xa_dvbt;
  452. u8 buf[11];
  453. struct i2c_msg msg = { .addr = priv->i2c_addr, .flags = 0,
  454. .buf = buf, .len = sizeof(buf) };
  455. int i, tuner_freq, if_freq, rc;
  456. u32 N;
  457. dprintk("%s:\n", __func__);
  458. tda827xa_lna_gain(fe, 1, NULL);
  459. msleep(20);
  460. switch (params->u.ofdm.bandwidth) {
  461. case BANDWIDTH_6_MHZ:
  462. if_freq = 4000000;
  463. break;
  464. case BANDWIDTH_7_MHZ:
  465. if_freq = 4500000;
  466. break;
  467. default: /* 8 MHz or Auto */
  468. if_freq = 5000000;
  469. break;
  470. }
  471. tuner_freq = params->frequency + if_freq;
  472. if (fe->ops.info.type == FE_QAM) {
  473. dprintk("%s select tda827xa_dvbc\n", __func__);
  474. frequency_map = tda827xa_dvbc;
  475. }
  476. i = 0;
  477. while (frequency_map[i].lomax < tuner_freq) {
  478. if (frequency_map[i + 1].lomax == 0)
  479. break;
  480. i++;
  481. }
  482. N = ((tuner_freq + 31250) / 62500) << frequency_map[i].spd;
  483. buf[0] = 0; // subaddress
  484. buf[1] = N >> 8;
  485. buf[2] = N & 0xff;
  486. buf[3] = 0;
  487. buf[4] = 0x16;
  488. buf[5] = (frequency_map[i].spd << 5) + (frequency_map[i].svco << 3) +
  489. frequency_map[i].sbs;
  490. buf[6] = 0x4b + (frequency_map[i].gc3 << 4);
  491. buf[7] = 0x1c;
  492. buf[8] = 0x06;
  493. buf[9] = 0x24;
  494. buf[10] = 0x00;
  495. msg.len = 11;
  496. rc = tuner_transfer(fe, &msg, 1);
  497. if (rc < 0)
  498. goto err;
  499. buf[0] = 0x90;
  500. buf[1] = 0xff;
  501. buf[2] = 0x60;
  502. buf[3] = 0x00;
  503. buf[4] = 0x59; // lpsel, for 6MHz + 2
  504. msg.len = 5;
  505. rc = tuner_transfer(fe, &msg, 1);
  506. if (rc < 0)
  507. goto err;
  508. buf[0] = 0xa0;
  509. buf[1] = 0x40;
  510. msg.len = 2;
  511. rc = tuner_transfer(fe, &msg, 1);
  512. if (rc < 0)
  513. goto err;
  514. msleep(11);
  515. msg.flags = I2C_M_RD;
  516. rc = tuner_transfer(fe, &msg, 1);
  517. if (rc < 0)
  518. goto err;
  519. msg.flags = 0;
  520. buf[1] >>= 4;
  521. dprintk("tda8275a AGC2 gain is: %d\n", buf[1]);
  522. if ((buf[1]) < 2) {
  523. tda827xa_lna_gain(fe, 0, NULL);
  524. buf[0] = 0x60;
  525. buf[1] = 0x0c;
  526. rc = tuner_transfer(fe, &msg, 1);
  527. if (rc < 0)
  528. goto err;
  529. }
  530. buf[0] = 0xc0;
  531. buf[1] = 0x99; // lpsel, for 6MHz + 2
  532. rc = tuner_transfer(fe, &msg, 1);
  533. if (rc < 0)
  534. goto err;
  535. buf[0] = 0x60;
  536. buf[1] = 0x3c;
  537. rc = tuner_transfer(fe, &msg, 1);
  538. if (rc < 0)
  539. goto err;
  540. /* correct CP value */
  541. buf[0] = 0x30;
  542. buf[1] = 0x10 + frequency_map[i].scr;
  543. rc = tuner_transfer(fe, &msg, 1);
  544. if (rc < 0)
  545. goto err;
  546. msleep(163);
  547. buf[0] = 0xc0;
  548. buf[1] = 0x39; // lpsel, for 6MHz + 2
  549. rc = tuner_transfer(fe, &msg, 1);
  550. if (rc < 0)
  551. goto err;
  552. msleep(3);
  553. /* freeze AGC1 */
  554. buf[0] = 0x50;
  555. buf[1] = 0x4f + (frequency_map[i].gc3 << 4);
  556. rc = tuner_transfer(fe, &msg, 1);
  557. if (rc < 0)
  558. goto err;
  559. priv->frequency = params->frequency;
  560. priv->bandwidth = (fe->ops.info.type == FE_OFDM) ? params->u.ofdm.bandwidth : 0;
  561. return 0;
  562. err:
  563. printk(KERN_ERR "%s: could not write to tuner at addr: 0x%02x\n",
  564. __func__, priv->i2c_addr << 1);
  565. return rc;
  566. }
  567. static int tda827xa_set_analog_params(struct dvb_frontend *fe,
  568. struct analog_parameters *params)
  569. {
  570. unsigned char tuner_reg[11];
  571. u32 N;
  572. int i;
  573. struct tda827x_priv *priv = fe->tuner_priv;
  574. struct i2c_msg msg = { .addr = priv->i2c_addr, .flags = 0,
  575. .buf = tuner_reg, .len = sizeof(tuner_reg) };
  576. unsigned int freq = params->frequency;
  577. tda827x_set_std(fe, params);
  578. tda827xa_lna_gain(fe, 1, params);
  579. msleep(10);
  580. if (params->mode == V4L2_TUNER_RADIO)
  581. freq = freq / 1000;
  582. N = freq + priv->sgIF;
  583. i = 0;
  584. while (tda827xa_analog[i].lomax < N * 62500) {
  585. if (tda827xa_analog[i + 1].lomax == 0)
  586. break;
  587. i++;
  588. }
  589. N = N << tda827xa_analog[i].spd;
  590. tuner_reg[0] = 0;
  591. tuner_reg[1] = (unsigned char)(N>>8);
  592. tuner_reg[2] = (unsigned char) N;
  593. tuner_reg[3] = 0;
  594. tuner_reg[4] = 0x16;
  595. tuner_reg[5] = (tda827xa_analog[i].spd << 5) +
  596. (tda827xa_analog[i].svco << 3) +
  597. tda827xa_analog[i].sbs;
  598. tuner_reg[6] = 0x8b + (tda827xa_analog[i].gc3 << 4);
  599. tuner_reg[7] = 0x1c;
  600. tuner_reg[8] = 4;
  601. tuner_reg[9] = 0x20;
  602. tuner_reg[10] = 0x00;
  603. msg.len = 11;
  604. tuner_transfer(fe, &msg, 1);
  605. tuner_reg[0] = 0x90;
  606. tuner_reg[1] = 0xff;
  607. tuner_reg[2] = 0xe0;
  608. tuner_reg[3] = 0;
  609. tuner_reg[4] = 0x99 + (priv->lpsel << 1);
  610. msg.len = 5;
  611. tuner_transfer(fe, &msg, 1);
  612. tuner_reg[0] = 0xa0;
  613. tuner_reg[1] = 0xc0;
  614. msg.len = 2;
  615. tuner_transfer(fe, &msg, 1);
  616. tuner_reg[0] = 0x30;
  617. tuner_reg[1] = 0x10 + tda827xa_analog[i].scr;
  618. tuner_transfer(fe, &msg, 1);
  619. msg.flags = I2C_M_RD;
  620. tuner_transfer(fe, &msg, 1);
  621. msg.flags = 0;
  622. tuner_reg[1] >>= 4;
  623. dprintk("AGC2 gain is: %d\n", tuner_reg[1]);
  624. if (tuner_reg[1] < 1)
  625. tda827xa_lna_gain(fe, 0, params);
  626. msleep(100);
  627. tuner_reg[0] = 0x60;
  628. tuner_reg[1] = 0x3c;
  629. tuner_transfer(fe, &msg, 1);
  630. msleep(163);
  631. tuner_reg[0] = 0x50;
  632. tuner_reg[1] = 0x8f + (tda827xa_analog[i].gc3 << 4);
  633. tuner_transfer(fe, &msg, 1);
  634. tuner_reg[0] = 0x80;
  635. tuner_reg[1] = 0x28;
  636. tuner_transfer(fe, &msg, 1);
  637. tuner_reg[0] = 0xb0;
  638. tuner_reg[1] = 0x01;
  639. tuner_transfer(fe, &msg, 1);
  640. tuner_reg[0] = 0xc0;
  641. tuner_reg[1] = 0x19 + (priv->lpsel << 1);
  642. tuner_transfer(fe, &msg, 1);
  643. priv->frequency = params->frequency;
  644. return 0;
  645. }
  646. static void tda827xa_agcf(struct dvb_frontend *fe)
  647. {
  648. struct tda827x_priv *priv = fe->tuner_priv;
  649. unsigned char data[] = {0x80, 0x2c};
  650. struct i2c_msg msg = {.addr = priv->i2c_addr, .flags = 0,
  651. .buf = data, .len = 2};
  652. tuner_transfer(fe, &msg, 1);
  653. }
  654. /* ------------------------------------------------------------------ */
  655. static int tda827x_release(struct dvb_frontend *fe)
  656. {
  657. kfree(fe->tuner_priv);
  658. fe->tuner_priv = NULL;
  659. return 0;
  660. }
  661. static int tda827x_get_frequency(struct dvb_frontend *fe, u32 *frequency)
  662. {
  663. struct tda827x_priv *priv = fe->tuner_priv;
  664. *frequency = priv->frequency;
  665. return 0;
  666. }
  667. static int tda827x_get_bandwidth(struct dvb_frontend *fe, u32 *bandwidth)
  668. {
  669. struct tda827x_priv *priv = fe->tuner_priv;
  670. *bandwidth = priv->bandwidth;
  671. return 0;
  672. }
  673. static int tda827x_init(struct dvb_frontend *fe)
  674. {
  675. struct tda827x_priv *priv = fe->tuner_priv;
  676. dprintk("%s:\n", __func__);
  677. if (priv->cfg && priv->cfg->init)
  678. priv->cfg->init(fe);
  679. return 0;
  680. }
  681. static int tda827x_probe_version(struct dvb_frontend *fe);
  682. static int tda827x_initial_init(struct dvb_frontend *fe)
  683. {
  684. int ret;
  685. ret = tda827x_probe_version(fe);
  686. if (ret)
  687. return ret;
  688. return fe->ops.tuner_ops.init(fe);
  689. }
  690. static int tda827x_initial_sleep(struct dvb_frontend *fe)
  691. {
  692. int ret;
  693. ret = tda827x_probe_version(fe);
  694. if (ret)
  695. return ret;
  696. return fe->ops.tuner_ops.sleep(fe);
  697. }
  698. static struct dvb_tuner_ops tda827xo_tuner_ops = {
  699. .info = {
  700. .name = "Philips TDA827X",
  701. .frequency_min = 55000000,
  702. .frequency_max = 860000000,
  703. .frequency_step = 250000
  704. },
  705. .release = tda827x_release,
  706. .init = tda827x_initial_init,
  707. .sleep = tda827x_initial_sleep,
  708. .set_params = tda827xo_set_params,
  709. .set_analog_params = tda827xo_set_analog_params,
  710. .get_frequency = tda827x_get_frequency,
  711. .get_bandwidth = tda827x_get_bandwidth,
  712. };
  713. static struct dvb_tuner_ops tda827xa_tuner_ops = {
  714. .info = {
  715. .name = "Philips TDA827XA",
  716. .frequency_min = 44000000,
  717. .frequency_max = 906000000,
  718. .frequency_step = 62500
  719. },
  720. .release = tda827x_release,
  721. .init = tda827x_init,
  722. .sleep = tda827xa_sleep,
  723. .set_params = tda827xa_set_params,
  724. .set_analog_params = tda827xa_set_analog_params,
  725. .get_frequency = tda827x_get_frequency,
  726. .get_bandwidth = tda827x_get_bandwidth,
  727. };
  728. static int tda827x_probe_version(struct dvb_frontend *fe)
  729. {
  730. u8 data;
  731. int rc;
  732. struct tda827x_priv *priv = fe->tuner_priv;
  733. struct i2c_msg msg = { .addr = priv->i2c_addr, .flags = I2C_M_RD,
  734. .buf = &data, .len = 1 };
  735. rc = tuner_transfer(fe, &msg, 1);
  736. if (rc < 0) {
  737. printk("%s: could not read from tuner at addr: 0x%02x\n",
  738. __func__, msg.addr << 1);
  739. return rc;
  740. }
  741. if ((data & 0x3c) == 0) {
  742. dprintk("tda827x tuner found\n");
  743. fe->ops.tuner_ops.init = tda827x_init;
  744. fe->ops.tuner_ops.sleep = tda827xo_sleep;
  745. if (priv->cfg)
  746. priv->cfg->agcf = tda827xo_agcf;
  747. } else {
  748. dprintk("tda827xa tuner found\n");
  749. memcpy(&fe->ops.tuner_ops, &tda827xa_tuner_ops, sizeof(struct dvb_tuner_ops));
  750. if (priv->cfg)
  751. priv->cfg->agcf = tda827xa_agcf;
  752. }
  753. return 0;
  754. }
  755. struct dvb_frontend *tda827x_attach(struct dvb_frontend *fe, int addr,
  756. struct i2c_adapter *i2c,
  757. struct tda827x_config *cfg)
  758. {
  759. struct tda827x_priv *priv = NULL;
  760. dprintk("%s:\n", __func__);
  761. priv = kzalloc(sizeof(struct tda827x_priv), GFP_KERNEL);
  762. if (priv == NULL)
  763. return NULL;
  764. priv->i2c_addr = addr;
  765. priv->i2c_adap = i2c;
  766. priv->cfg = cfg;
  767. memcpy(&fe->ops.tuner_ops, &tda827xo_tuner_ops, sizeof(struct dvb_tuner_ops));
  768. fe->tuner_priv = priv;
  769. dprintk("type set to %s\n", fe->ops.tuner_ops.info.name);
  770. return fe;
  771. }
  772. EXPORT_SYMBOL_GPL(tda827x_attach);
  773. MODULE_DESCRIPTION("DVB TDA827x driver");
  774. MODULE_AUTHOR("Hartmut Hackmann <hartmut.hackmann@t-online.de>");
  775. MODULE_AUTHOR("Michael Krufky <mkrufky@linuxtv.org>");
  776. MODULE_LICENSE("GPL");
  777. /*
  778. * Overrides for Emacs so that we follow Linus's tabbing style.
  779. * ---------------------------------------------------------------------------
  780. * Local variables:
  781. * c-basic-offset: 8
  782. * End:
  783. */