lgs8gxx.c 25 KB

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  1. /*
  2. * Support for Legend Silicon GB20600 (a.k.a DMB-TH) demodulator
  3. * LGS8913, LGS8GL5, LGS8G75
  4. * experimental support LGS8G42, LGS8G52
  5. *
  6. * Copyright (C) 2007-2009 David T.L. Wong <davidtlwong@gmail.com>
  7. * Copyright (C) 2008 Sirius International (Hong Kong) Limited
  8. * Timothy Lee <timothy.lee@siriushk.com> (for initial work on LGS8GL5)
  9. *
  10. * This program is free software; you can redistribute it and/or modify
  11. * it under the terms of the GNU General Public License as published by
  12. * the Free Software Foundation; either version 2 of the License, or
  13. * (at your option) any later version.
  14. *
  15. * This program is distributed in the hope that it will be useful,
  16. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  17. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  18. * GNU General Public License for more details.
  19. *
  20. * You should have received a copy of the GNU General Public License
  21. * along with this program; if not, write to the Free Software
  22. * Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
  23. *
  24. */
  25. #include <asm/div64.h>
  26. #include "dvb_frontend.h"
  27. #include "lgs8gxx.h"
  28. #include "lgs8gxx_priv.h"
  29. #define dprintk(args...) \
  30. do { \
  31. if (debug) \
  32. printk(KERN_DEBUG "lgs8gxx: " args); \
  33. } while (0)
  34. static int debug;
  35. static int fake_signal_str = 1;
  36. module_param(debug, int, 0644);
  37. MODULE_PARM_DESC(debug, "Turn on/off frontend debugging (default:off).");
  38. module_param(fake_signal_str, int, 0644);
  39. MODULE_PARM_DESC(fake_signal_str, "fake signal strength for LGS8913."
  40. "Signal strength calculation is slow.(default:on).");
  41. static const u8 lgs8g75_initdat[] = {
  42. 0x01, 0x30, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF,
  43. 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF,
  44. 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF,
  45. 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF,
  46. 0x00, 0x01, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF,
  47. 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF,
  48. 0xE4, 0xF5, 0xA8, 0xF5, 0xB8, 0xF5, 0x88, 0xF5,
  49. 0x89, 0xF5, 0x87, 0x75, 0xD0, 0x00, 0x11, 0x50,
  50. 0x11, 0x50, 0xF4, 0xF5, 0x80, 0xF5, 0x90, 0xF5,
  51. 0xA0, 0xF5, 0xB0, 0x75, 0x81, 0x30, 0x80, 0x01,
  52. 0x32, 0x90, 0x80, 0x12, 0x74, 0xFF, 0xF0, 0x90,
  53. 0x80, 0x13, 0x74, 0x1F, 0xF0, 0x90, 0x80, 0x23,
  54. 0x74, 0x01, 0xF0, 0x90, 0x80, 0x22, 0xF0, 0x90,
  55. 0x00, 0x48, 0x74, 0x00, 0xF0, 0x90, 0x80, 0x4D,
  56. 0x74, 0x05, 0xF0, 0x90, 0x80, 0x09, 0xE0, 0x60,
  57. 0x21, 0x12, 0x00, 0xDD, 0x14, 0x60, 0x1B, 0x12,
  58. 0x00, 0xDD, 0x14, 0x60, 0x15, 0x12, 0x00, 0xDD,
  59. 0x14, 0x60, 0x0F, 0x12, 0x00, 0xDD, 0x14, 0x60,
  60. 0x09, 0x12, 0x00, 0xDD, 0x14, 0x60, 0x03, 0x12,
  61. 0x00, 0xDD, 0x90, 0x80, 0x42, 0xE0, 0x60, 0x0B,
  62. 0x14, 0x60, 0x0C, 0x14, 0x60, 0x0D, 0x14, 0x60,
  63. 0x0E, 0x01, 0xB3, 0x74, 0x04, 0x01, 0xB9, 0x74,
  64. 0x05, 0x01, 0xB9, 0x74, 0x07, 0x01, 0xB9, 0x74,
  65. 0x0A, 0xC0, 0xE0, 0x74, 0xC8, 0x12, 0x00, 0xE2,
  66. 0xD0, 0xE0, 0x14, 0x70, 0xF4, 0x90, 0x80, 0x09,
  67. 0xE0, 0x70, 0xAE, 0x12, 0x00, 0xF6, 0x12, 0x00,
  68. 0xFE, 0x90, 0x00, 0x48, 0xE0, 0x04, 0xF0, 0x90,
  69. 0x80, 0x4E, 0xF0, 0x01, 0x73, 0x90, 0x80, 0x08,
  70. 0xF0, 0x22, 0xF8, 0x7A, 0x0C, 0x79, 0xFD, 0x00,
  71. 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0xD9,
  72. 0xF6, 0xDA, 0xF2, 0xD8, 0xEE, 0x22, 0x90, 0x80,
  73. 0x65, 0xE0, 0x54, 0xFD, 0xF0, 0x22, 0x90, 0x80,
  74. 0x65, 0xE0, 0x44, 0xC2, 0xF0, 0x22
  75. };
  76. /* LGS8GXX internal helper functions */
  77. static int lgs8gxx_write_reg(struct lgs8gxx_state *priv, u8 reg, u8 data)
  78. {
  79. int ret;
  80. u8 buf[] = { reg, data };
  81. struct i2c_msg msg = { .flags = 0, .buf = buf, .len = 2 };
  82. msg.addr = priv->config->demod_address;
  83. if (priv->config->prod != LGS8GXX_PROD_LGS8G75 && reg >= 0xC0)
  84. msg.addr += 0x02;
  85. if (debug >= 2)
  86. printk(KERN_DEBUG "%s: reg=0x%02X, data=0x%02X\n",
  87. __func__, reg, data);
  88. ret = i2c_transfer(priv->i2c, &msg, 1);
  89. if (ret != 1)
  90. dprintk(KERN_DEBUG "%s: error reg=0x%x, data=0x%x, ret=%i\n",
  91. __func__, reg, data, ret);
  92. return (ret != 1) ? -1 : 0;
  93. }
  94. static int lgs8gxx_read_reg(struct lgs8gxx_state *priv, u8 reg, u8 *p_data)
  95. {
  96. int ret;
  97. u8 dev_addr;
  98. u8 b0[] = { reg };
  99. u8 b1[] = { 0 };
  100. struct i2c_msg msg[] = {
  101. { .flags = 0, .buf = b0, .len = 1 },
  102. { .flags = I2C_M_RD, .buf = b1, .len = 1 },
  103. };
  104. dev_addr = priv->config->demod_address;
  105. if (priv->config->prod != LGS8GXX_PROD_LGS8G75 && reg >= 0xC0)
  106. dev_addr += 0x02;
  107. msg[1].addr = msg[0].addr = dev_addr;
  108. ret = i2c_transfer(priv->i2c, msg, 2);
  109. if (ret != 2) {
  110. dprintk(KERN_DEBUG "%s: error reg=0x%x, ret=%i\n",
  111. __func__, reg, ret);
  112. return -1;
  113. }
  114. *p_data = b1[0];
  115. if (debug >= 2)
  116. printk(KERN_DEBUG "%s: reg=0x%02X, data=0x%02X\n",
  117. __func__, reg, b1[0]);
  118. return 0;
  119. }
  120. static int lgs8gxx_soft_reset(struct lgs8gxx_state *priv)
  121. {
  122. lgs8gxx_write_reg(priv, 0x02, 0x00);
  123. msleep(1);
  124. lgs8gxx_write_reg(priv, 0x02, 0x01);
  125. msleep(100);
  126. return 0;
  127. }
  128. static int wait_reg_mask(struct lgs8gxx_state *priv, u8 reg, u8 mask,
  129. u8 val, u8 delay, u8 tries)
  130. {
  131. u8 t;
  132. int i;
  133. for (i = 0; i < tries; i++) {
  134. lgs8gxx_read_reg(priv, reg, &t);
  135. if ((t & mask) == val)
  136. return 0;
  137. msleep(delay);
  138. }
  139. return 1;
  140. }
  141. static int lgs8gxx_set_ad_mode(struct lgs8gxx_state *priv)
  142. {
  143. const struct lgs8gxx_config *config = priv->config;
  144. u8 if_conf;
  145. if_conf = 0x10; /* AGC output on, RF_AGC output off; */
  146. if_conf |=
  147. ((config->ext_adc) ? 0x80 : 0x00) |
  148. ((config->if_neg_center) ? 0x04 : 0x00) |
  149. ((config->if_freq == 0) ? 0x08 : 0x00) | /* Baseband */
  150. ((config->adc_signed) ? 0x02 : 0x00) |
  151. ((config->if_neg_edge) ? 0x01 : 0x00);
  152. if (config->ext_adc &&
  153. (config->prod == LGS8GXX_PROD_LGS8G52)) {
  154. lgs8gxx_write_reg(priv, 0xBA, 0x40);
  155. }
  156. lgs8gxx_write_reg(priv, 0x07, if_conf);
  157. return 0;
  158. }
  159. static int lgs8gxx_set_if_freq(struct lgs8gxx_state *priv, u32 freq /*in kHz*/)
  160. {
  161. u64 val;
  162. u32 v32;
  163. u32 if_clk;
  164. if_clk = priv->config->if_clk_freq;
  165. val = freq;
  166. if (freq != 0) {
  167. val <<= 32;
  168. if (if_clk != 0)
  169. do_div(val, if_clk);
  170. v32 = val & 0xFFFFFFFF;
  171. dprintk("Set IF Freq to %dkHz\n", freq);
  172. } else {
  173. v32 = 0;
  174. dprintk("Set IF Freq to baseband\n");
  175. }
  176. dprintk("AFC_INIT_FREQ = 0x%08X\n", v32);
  177. if (priv->config->prod == LGS8GXX_PROD_LGS8G75) {
  178. lgs8gxx_write_reg(priv, 0x08, 0xFF & (v32));
  179. lgs8gxx_write_reg(priv, 0x09, 0xFF & (v32 >> 8));
  180. lgs8gxx_write_reg(priv, 0x0A, 0xFF & (v32 >> 16));
  181. lgs8gxx_write_reg(priv, 0x0B, 0xFF & (v32 >> 24));
  182. } else {
  183. lgs8gxx_write_reg(priv, 0x09, 0xFF & (v32));
  184. lgs8gxx_write_reg(priv, 0x0A, 0xFF & (v32 >> 8));
  185. lgs8gxx_write_reg(priv, 0x0B, 0xFF & (v32 >> 16));
  186. lgs8gxx_write_reg(priv, 0x0C, 0xFF & (v32 >> 24));
  187. }
  188. return 0;
  189. }
  190. static int lgs8gxx_get_afc_phase(struct lgs8gxx_state *priv)
  191. {
  192. u64 val;
  193. u32 v32 = 0;
  194. u8 reg_addr, t;
  195. int i;
  196. if (priv->config->prod == LGS8GXX_PROD_LGS8G75)
  197. reg_addr = 0x23;
  198. else
  199. reg_addr = 0x48;
  200. for (i = 0; i < 4; i++) {
  201. lgs8gxx_read_reg(priv, reg_addr, &t);
  202. v32 <<= 8;
  203. v32 |= t;
  204. reg_addr--;
  205. }
  206. val = v32;
  207. val *= priv->config->if_clk_freq;
  208. val >>= 32;
  209. dprintk("AFC = %u kHz\n", (u32)val);
  210. return 0;
  211. }
  212. static int lgs8gxx_set_mode_auto(struct lgs8gxx_state *priv)
  213. {
  214. u8 t;
  215. u8 prod = priv->config->prod;
  216. if (prod == LGS8GXX_PROD_LGS8913)
  217. lgs8gxx_write_reg(priv, 0xC6, 0x01);
  218. if (prod == LGS8GXX_PROD_LGS8G75) {
  219. lgs8gxx_read_reg(priv, 0x0C, &t);
  220. t &= (~0x04);
  221. lgs8gxx_write_reg(priv, 0x0C, t | 0x80);
  222. lgs8gxx_write_reg(priv, 0x39, 0x00);
  223. lgs8gxx_write_reg(priv, 0x3D, 0x04);
  224. } else if (prod == LGS8GXX_PROD_LGS8913 ||
  225. prod == LGS8GXX_PROD_LGS8GL5 ||
  226. prod == LGS8GXX_PROD_LGS8G42 ||
  227. prod == LGS8GXX_PROD_LGS8G52 ||
  228. prod == LGS8GXX_PROD_LGS8G54) {
  229. lgs8gxx_read_reg(priv, 0x7E, &t);
  230. lgs8gxx_write_reg(priv, 0x7E, t | 0x01);
  231. /* clear FEC self reset */
  232. lgs8gxx_read_reg(priv, 0xC5, &t);
  233. lgs8gxx_write_reg(priv, 0xC5, t & 0xE0);
  234. }
  235. if (prod == LGS8GXX_PROD_LGS8913) {
  236. /* FEC auto detect */
  237. lgs8gxx_write_reg(priv, 0xC1, 0x03);
  238. lgs8gxx_read_reg(priv, 0x7C, &t);
  239. t = (t & 0x8C) | 0x03;
  240. lgs8gxx_write_reg(priv, 0x7C, t);
  241. /* BER test mode */
  242. lgs8gxx_read_reg(priv, 0xC3, &t);
  243. t = (t & 0xEF) | 0x10;
  244. lgs8gxx_write_reg(priv, 0xC3, t);
  245. }
  246. if (priv->config->prod == LGS8GXX_PROD_LGS8G52)
  247. lgs8gxx_write_reg(priv, 0xD9, 0x40);
  248. return 0;
  249. }
  250. static int lgs8gxx_set_mode_manual(struct lgs8gxx_state *priv)
  251. {
  252. int ret = 0;
  253. u8 t;
  254. if (priv->config->prod == LGS8GXX_PROD_LGS8G75) {
  255. u8 t2;
  256. lgs8gxx_read_reg(priv, 0x0C, &t);
  257. t &= (~0x80);
  258. lgs8gxx_write_reg(priv, 0x0C, t);
  259. lgs8gxx_read_reg(priv, 0x0C, &t);
  260. lgs8gxx_read_reg(priv, 0x19, &t2);
  261. if (((t&0x03) == 0x01) && (t2&0x01)) {
  262. lgs8gxx_write_reg(priv, 0x6E, 0x05);
  263. lgs8gxx_write_reg(priv, 0x39, 0x02);
  264. lgs8gxx_write_reg(priv, 0x39, 0x03);
  265. lgs8gxx_write_reg(priv, 0x3D, 0x05);
  266. lgs8gxx_write_reg(priv, 0x3E, 0x28);
  267. lgs8gxx_write_reg(priv, 0x53, 0x80);
  268. } else {
  269. lgs8gxx_write_reg(priv, 0x6E, 0x3F);
  270. lgs8gxx_write_reg(priv, 0x39, 0x00);
  271. lgs8gxx_write_reg(priv, 0x3D, 0x04);
  272. }
  273. lgs8gxx_soft_reset(priv);
  274. return 0;
  275. }
  276. /* turn off auto-detect; manual settings */
  277. lgs8gxx_write_reg(priv, 0x7E, 0);
  278. if (priv->config->prod == LGS8GXX_PROD_LGS8913)
  279. lgs8gxx_write_reg(priv, 0xC1, 0);
  280. ret = lgs8gxx_read_reg(priv, 0xC5, &t);
  281. t = (t & 0xE0) | 0x06;
  282. lgs8gxx_write_reg(priv, 0xC5, t);
  283. lgs8gxx_soft_reset(priv);
  284. return 0;
  285. }
  286. static int lgs8gxx_is_locked(struct lgs8gxx_state *priv, u8 *locked)
  287. {
  288. int ret = 0;
  289. u8 t;
  290. if (priv->config->prod == LGS8GXX_PROD_LGS8G75)
  291. ret = lgs8gxx_read_reg(priv, 0x13, &t);
  292. else
  293. ret = lgs8gxx_read_reg(priv, 0x4B, &t);
  294. if (ret != 0)
  295. return ret;
  296. if (priv->config->prod == LGS8GXX_PROD_LGS8G75)
  297. *locked = ((t & 0x80) == 0x80) ? 1 : 0;
  298. else
  299. *locked = ((t & 0xC0) == 0xC0) ? 1 : 0;
  300. return 0;
  301. }
  302. /* Wait for Code Acquisition Lock */
  303. static int lgs8gxx_wait_ca_lock(struct lgs8gxx_state *priv, u8 *locked)
  304. {
  305. int ret = 0;
  306. u8 reg, mask, val;
  307. if (priv->config->prod == LGS8GXX_PROD_LGS8G75) {
  308. reg = 0x13;
  309. mask = 0x80;
  310. val = 0x80;
  311. } else {
  312. reg = 0x4B;
  313. mask = 0xC0;
  314. val = 0xC0;
  315. }
  316. ret = wait_reg_mask(priv, reg, mask, val, 50, 40);
  317. *locked = (ret == 0) ? 1 : 0;
  318. return 0;
  319. }
  320. static int lgs8gxx_is_autodetect_finished(struct lgs8gxx_state *priv,
  321. u8 *finished)
  322. {
  323. int ret = 0;
  324. u8 reg, mask, val;
  325. if (priv->config->prod == LGS8GXX_PROD_LGS8G75) {
  326. reg = 0x1f;
  327. mask = 0xC0;
  328. val = 0x80;
  329. } else {
  330. reg = 0xA4;
  331. mask = 0x03;
  332. val = 0x01;
  333. }
  334. ret = wait_reg_mask(priv, reg, mask, val, 10, 20);
  335. *finished = (ret == 0) ? 1 : 0;
  336. return 0;
  337. }
  338. static int lgs8gxx_autolock_gi(struct lgs8gxx_state *priv, u8 gi, u8 cpn,
  339. u8 *locked)
  340. {
  341. int err = 0;
  342. u8 ad_fini = 0;
  343. u8 t1, t2;
  344. if (gi == GI_945)
  345. dprintk("try GI 945\n");
  346. else if (gi == GI_595)
  347. dprintk("try GI 595\n");
  348. else if (gi == GI_420)
  349. dprintk("try GI 420\n");
  350. if (priv->config->prod == LGS8GXX_PROD_LGS8G75) {
  351. lgs8gxx_read_reg(priv, 0x0C, &t1);
  352. lgs8gxx_read_reg(priv, 0x18, &t2);
  353. t1 &= ~(GI_MASK);
  354. t1 |= gi;
  355. t2 &= 0xFE;
  356. t2 |= cpn ? 0x01 : 0x00;
  357. lgs8gxx_write_reg(priv, 0x0C, t1);
  358. lgs8gxx_write_reg(priv, 0x18, t2);
  359. } else {
  360. lgs8gxx_write_reg(priv, 0x04, gi);
  361. }
  362. lgs8gxx_soft_reset(priv);
  363. err = lgs8gxx_wait_ca_lock(priv, locked);
  364. if (err || !(*locked))
  365. return err;
  366. err = lgs8gxx_is_autodetect_finished(priv, &ad_fini);
  367. if (err != 0)
  368. return err;
  369. if (ad_fini) {
  370. dprintk("auto detect finished\n");
  371. } else
  372. *locked = 0;
  373. return 0;
  374. }
  375. static int lgs8gxx_auto_detect(struct lgs8gxx_state *priv,
  376. u8 *detected_param, u8 *gi)
  377. {
  378. int i, j;
  379. int err = 0;
  380. u8 locked = 0, tmp_gi;
  381. dprintk("%s\n", __func__);
  382. lgs8gxx_set_mode_auto(priv);
  383. if (priv->config->prod == LGS8GXX_PROD_LGS8G75) {
  384. lgs8gxx_write_reg(priv, 0x67, 0xAA);
  385. lgs8gxx_write_reg(priv, 0x6E, 0x3F);
  386. } else {
  387. /* Guard Interval */
  388. lgs8gxx_write_reg(priv, 0x03, 00);
  389. }
  390. for (i = 0; i < 2; i++) {
  391. for (j = 0; j < 2; j++) {
  392. tmp_gi = GI_945;
  393. err = lgs8gxx_autolock_gi(priv, GI_945, j, &locked);
  394. if (err)
  395. goto out;
  396. if (locked)
  397. goto locked;
  398. }
  399. for (j = 0; j < 2; j++) {
  400. tmp_gi = GI_420;
  401. err = lgs8gxx_autolock_gi(priv, GI_420, j, &locked);
  402. if (err)
  403. goto out;
  404. if (locked)
  405. goto locked;
  406. }
  407. tmp_gi = GI_595;
  408. err = lgs8gxx_autolock_gi(priv, GI_595, 1, &locked);
  409. if (err)
  410. goto out;
  411. if (locked)
  412. goto locked;
  413. }
  414. locked:
  415. if ((err == 0) && (locked == 1)) {
  416. u8 t;
  417. if (priv->config->prod != LGS8GXX_PROD_LGS8G75) {
  418. lgs8gxx_read_reg(priv, 0xA2, &t);
  419. *detected_param = t;
  420. } else {
  421. lgs8gxx_read_reg(priv, 0x1F, &t);
  422. *detected_param = t & 0x3F;
  423. }
  424. if (tmp_gi == GI_945)
  425. dprintk("GI 945 locked\n");
  426. else if (tmp_gi == GI_595)
  427. dprintk("GI 595 locked\n");
  428. else if (tmp_gi == GI_420)
  429. dprintk("GI 420 locked\n");
  430. *gi = tmp_gi;
  431. }
  432. if (!locked)
  433. err = -1;
  434. out:
  435. return err;
  436. }
  437. static void lgs8gxx_auto_lock(struct lgs8gxx_state *priv)
  438. {
  439. s8 err;
  440. u8 gi = 0x2;
  441. u8 detected_param = 0;
  442. err = lgs8gxx_auto_detect(priv, &detected_param, &gi);
  443. if (err != 0) {
  444. dprintk("lgs8gxx_auto_detect failed\n");
  445. } else
  446. dprintk("detected param = 0x%02X\n", detected_param);
  447. /* Apply detected parameters */
  448. if (priv->config->prod == LGS8GXX_PROD_LGS8913) {
  449. u8 inter_leave_len = detected_param & TIM_MASK ;
  450. /* Fix 8913 time interleaver detection bug */
  451. inter_leave_len = (inter_leave_len == TIM_MIDDLE) ? 0x60 : 0x40;
  452. detected_param &= CF_MASK | SC_MASK | LGS_FEC_MASK;
  453. detected_param |= inter_leave_len;
  454. }
  455. if (priv->config->prod == LGS8GXX_PROD_LGS8G75) {
  456. u8 t;
  457. lgs8gxx_read_reg(priv, 0x19, &t);
  458. t &= 0x81;
  459. t |= detected_param << 1;
  460. lgs8gxx_write_reg(priv, 0x19, t);
  461. } else {
  462. lgs8gxx_write_reg(priv, 0x7D, detected_param);
  463. if (priv->config->prod == LGS8GXX_PROD_LGS8913)
  464. lgs8gxx_write_reg(priv, 0xC0, detected_param);
  465. }
  466. /* lgs8gxx_soft_reset(priv); */
  467. /* Enter manual mode */
  468. lgs8gxx_set_mode_manual(priv);
  469. switch (gi) {
  470. case GI_945:
  471. priv->curr_gi = 945; break;
  472. case GI_595:
  473. priv->curr_gi = 595; break;
  474. case GI_420:
  475. priv->curr_gi = 420; break;
  476. default:
  477. priv->curr_gi = 945; break;
  478. }
  479. }
  480. static int lgs8gxx_set_mpeg_mode(struct lgs8gxx_state *priv,
  481. u8 serial, u8 clk_pol, u8 clk_gated)
  482. {
  483. int ret = 0;
  484. u8 t, reg_addr;
  485. reg_addr = (priv->config->prod == LGS8GXX_PROD_LGS8G75) ? 0x30 : 0xC2;
  486. ret = lgs8gxx_read_reg(priv, reg_addr, &t);
  487. if (ret != 0)
  488. return ret;
  489. t &= 0xF8;
  490. t |= serial ? TS_SERIAL : TS_PARALLEL;
  491. t |= clk_pol ? TS_CLK_INVERTED : TS_CLK_NORMAL;
  492. t |= clk_gated ? TS_CLK_GATED : TS_CLK_FREERUN;
  493. ret = lgs8gxx_write_reg(priv, reg_addr, t);
  494. if (ret != 0)
  495. return ret;
  496. return 0;
  497. }
  498. /* A/D input peak-to-peak voltage range */
  499. static int lgs8g75_set_adc_vpp(struct lgs8gxx_state *priv,
  500. u8 sel)
  501. {
  502. u8 r26 = 0x73, r27 = 0x90;
  503. if (priv->config->prod != LGS8GXX_PROD_LGS8G75)
  504. return 0;
  505. r26 |= (sel & 0x01) << 7;
  506. r27 |= (sel & 0x02) >> 1;
  507. lgs8gxx_write_reg(priv, 0x26, r26);
  508. lgs8gxx_write_reg(priv, 0x27, r27);
  509. return 0;
  510. }
  511. /* LGS8913 demod frontend functions */
  512. static int lgs8913_init(struct lgs8gxx_state *priv)
  513. {
  514. u8 t;
  515. /* LGS8913 specific */
  516. lgs8gxx_write_reg(priv, 0xc1, 0x3);
  517. lgs8gxx_read_reg(priv, 0x7c, &t);
  518. lgs8gxx_write_reg(priv, 0x7c, (t&0x8c) | 0x3);
  519. /* LGS8913 specific */
  520. lgs8gxx_read_reg(priv, 0xc3, &t);
  521. lgs8gxx_write_reg(priv, 0xc3, t&0x10);
  522. return 0;
  523. }
  524. static int lgs8g75_init_data(struct lgs8gxx_state *priv)
  525. {
  526. const u8 *p = lgs8g75_initdat;
  527. int i;
  528. lgs8gxx_write_reg(priv, 0xC6, 0x40);
  529. lgs8gxx_write_reg(priv, 0x3D, 0x04);
  530. lgs8gxx_write_reg(priv, 0x39, 0x00);
  531. lgs8gxx_write_reg(priv, 0x3A, 0x00);
  532. lgs8gxx_write_reg(priv, 0x38, 0x00);
  533. lgs8gxx_write_reg(priv, 0x3B, 0x00);
  534. lgs8gxx_write_reg(priv, 0x38, 0x00);
  535. for (i = 0; i < sizeof(lgs8g75_initdat); i++) {
  536. lgs8gxx_write_reg(priv, 0x38, 0x00);
  537. lgs8gxx_write_reg(priv, 0x3A, (u8)(i&0xff));
  538. lgs8gxx_write_reg(priv, 0x3B, (u8)(i>>8));
  539. lgs8gxx_write_reg(priv, 0x3C, *p);
  540. p++;
  541. }
  542. lgs8gxx_write_reg(priv, 0x38, 0x00);
  543. return 0;
  544. }
  545. static int lgs8gxx_init(struct dvb_frontend *fe)
  546. {
  547. struct lgs8gxx_state *priv =
  548. (struct lgs8gxx_state *)fe->demodulator_priv;
  549. const struct lgs8gxx_config *config = priv->config;
  550. u8 data = 0;
  551. s8 err;
  552. dprintk("%s\n", __func__);
  553. lgs8gxx_read_reg(priv, 0, &data);
  554. dprintk("reg 0 = 0x%02X\n", data);
  555. if (config->prod == LGS8GXX_PROD_LGS8G75)
  556. lgs8g75_set_adc_vpp(priv, config->adc_vpp);
  557. /* Setup MPEG output format */
  558. err = lgs8gxx_set_mpeg_mode(priv, config->serial_ts,
  559. config->ts_clk_pol,
  560. config->ts_clk_gated);
  561. if (err != 0)
  562. return -EIO;
  563. if (config->prod == LGS8GXX_PROD_LGS8913)
  564. lgs8913_init(priv);
  565. lgs8gxx_set_if_freq(priv, priv->config->if_freq);
  566. lgs8gxx_set_ad_mode(priv);
  567. return 0;
  568. }
  569. static void lgs8gxx_release(struct dvb_frontend *fe)
  570. {
  571. struct lgs8gxx_state *state = fe->demodulator_priv;
  572. dprintk("%s\n", __func__);
  573. kfree(state);
  574. }
  575. static int lgs8gxx_write(struct dvb_frontend *fe, u8 *buf, int len)
  576. {
  577. struct lgs8gxx_state *priv = fe->demodulator_priv;
  578. if (len != 2)
  579. return -EINVAL;
  580. return lgs8gxx_write_reg(priv, buf[0], buf[1]);
  581. }
  582. static int lgs8gxx_set_fe(struct dvb_frontend *fe,
  583. struct dvb_frontend_parameters *fe_params)
  584. {
  585. struct lgs8gxx_state *priv = fe->demodulator_priv;
  586. dprintk("%s\n", __func__);
  587. /* set frequency */
  588. if (fe->ops.tuner_ops.set_params) {
  589. fe->ops.tuner_ops.set_params(fe, fe_params);
  590. if (fe->ops.i2c_gate_ctrl)
  591. fe->ops.i2c_gate_ctrl(fe, 0);
  592. }
  593. /* start auto lock */
  594. lgs8gxx_auto_lock(priv);
  595. msleep(10);
  596. return 0;
  597. }
  598. static int lgs8gxx_get_fe(struct dvb_frontend *fe,
  599. struct dvb_frontend_parameters *fe_params)
  600. {
  601. dprintk("%s\n", __func__);
  602. /* TODO: get real readings from device */
  603. /* inversion status */
  604. fe_params->inversion = INVERSION_OFF;
  605. /* bandwidth */
  606. fe_params->u.ofdm.bandwidth = BANDWIDTH_8_MHZ;
  607. fe_params->u.ofdm.code_rate_HP = FEC_AUTO;
  608. fe_params->u.ofdm.code_rate_LP = FEC_AUTO;
  609. fe_params->u.ofdm.constellation = QAM_AUTO;
  610. /* transmission mode */
  611. fe_params->u.ofdm.transmission_mode = TRANSMISSION_MODE_AUTO;
  612. /* guard interval */
  613. fe_params->u.ofdm.guard_interval = GUARD_INTERVAL_AUTO;
  614. /* hierarchy */
  615. fe_params->u.ofdm.hierarchy_information = HIERARCHY_NONE;
  616. return 0;
  617. }
  618. static
  619. int lgs8gxx_get_tune_settings(struct dvb_frontend *fe,
  620. struct dvb_frontend_tune_settings *fesettings)
  621. {
  622. /* FIXME: copy from tda1004x.c */
  623. fesettings->min_delay_ms = 800;
  624. fesettings->step_size = 0;
  625. fesettings->max_drift = 0;
  626. return 0;
  627. }
  628. static int lgs8gxx_read_status(struct dvb_frontend *fe, fe_status_t *fe_status)
  629. {
  630. struct lgs8gxx_state *priv = fe->demodulator_priv;
  631. s8 ret;
  632. u8 t, locked = 0;
  633. dprintk("%s\n", __func__);
  634. *fe_status = 0;
  635. lgs8gxx_get_afc_phase(priv);
  636. lgs8gxx_is_locked(priv, &locked);
  637. if (priv->config->prod == LGS8GXX_PROD_LGS8G75) {
  638. if (locked)
  639. *fe_status |= FE_HAS_SIGNAL | FE_HAS_CARRIER |
  640. FE_HAS_VITERBI | FE_HAS_SYNC | FE_HAS_LOCK;
  641. return 0;
  642. }
  643. ret = lgs8gxx_read_reg(priv, 0x4B, &t);
  644. if (ret != 0)
  645. return -EIO;
  646. dprintk("Reg 0x4B: 0x%02X\n", t);
  647. *fe_status = 0;
  648. if (priv->config->prod == LGS8GXX_PROD_LGS8913) {
  649. if ((t & 0x40) == 0x40)
  650. *fe_status |= FE_HAS_SIGNAL | FE_HAS_CARRIER;
  651. if ((t & 0x80) == 0x80)
  652. *fe_status |= FE_HAS_VITERBI | FE_HAS_SYNC |
  653. FE_HAS_LOCK;
  654. } else {
  655. if ((t & 0x80) == 0x80)
  656. *fe_status |= FE_HAS_SIGNAL | FE_HAS_CARRIER |
  657. FE_HAS_VITERBI | FE_HAS_SYNC | FE_HAS_LOCK;
  658. }
  659. /* success */
  660. dprintk("%s: fe_status=0x%x\n", __func__, *fe_status);
  661. return 0;
  662. }
  663. static int lgs8gxx_read_signal_agc(struct lgs8gxx_state *priv, u16 *signal)
  664. {
  665. u16 v;
  666. u8 agc_lvl[2], cat;
  667. dprintk("%s()\n", __func__);
  668. lgs8gxx_read_reg(priv, 0x3F, &agc_lvl[0]);
  669. lgs8gxx_read_reg(priv, 0x3E, &agc_lvl[1]);
  670. v = agc_lvl[0];
  671. v <<= 8;
  672. v |= agc_lvl[1];
  673. dprintk("agc_lvl: 0x%04X\n", v);
  674. if (v < 0x100)
  675. cat = 0;
  676. else if (v < 0x190)
  677. cat = 5;
  678. else if (v < 0x2A8)
  679. cat = 4;
  680. else if (v < 0x381)
  681. cat = 3;
  682. else if (v < 0x400)
  683. cat = 2;
  684. else if (v == 0x400)
  685. cat = 1;
  686. else
  687. cat = 0;
  688. *signal = cat * 65535 / 5;
  689. return 0;
  690. }
  691. static int lgs8913_read_signal_strength(struct lgs8gxx_state *priv, u16 *signal)
  692. {
  693. u8 t; s8 ret;
  694. s16 max_strength = 0;
  695. u8 str;
  696. u16 i, gi = priv->curr_gi;
  697. dprintk("%s\n", __func__);
  698. ret = lgs8gxx_read_reg(priv, 0x4B, &t);
  699. if (ret != 0)
  700. return -EIO;
  701. if (fake_signal_str) {
  702. if ((t & 0xC0) == 0xC0) {
  703. dprintk("Fake signal strength\n");
  704. *signal = 0x7FFF;
  705. } else
  706. *signal = 0;
  707. return 0;
  708. }
  709. dprintk("gi = %d\n", gi);
  710. for (i = 0; i < gi; i++) {
  711. if ((i & 0xFF) == 0)
  712. lgs8gxx_write_reg(priv, 0x84, 0x03 & (i >> 8));
  713. lgs8gxx_write_reg(priv, 0x83, i & 0xFF);
  714. lgs8gxx_read_reg(priv, 0x94, &str);
  715. if (max_strength < str)
  716. max_strength = str;
  717. }
  718. *signal = max_strength;
  719. dprintk("%s: signal=0x%02X\n", __func__, *signal);
  720. lgs8gxx_read_reg(priv, 0x95, &t);
  721. dprintk("%s: AVG Noise=0x%02X\n", __func__, t);
  722. return 0;
  723. }
  724. static int lgs8g75_read_signal_strength(struct lgs8gxx_state *priv, u16 *signal)
  725. {
  726. u8 t;
  727. s16 v = 0;
  728. dprintk("%s\n", __func__);
  729. lgs8gxx_read_reg(priv, 0xB1, &t);
  730. v |= t;
  731. v <<= 8;
  732. lgs8gxx_read_reg(priv, 0xB0, &t);
  733. v |= t;
  734. *signal = v;
  735. dprintk("%s: signal=0x%02X\n", __func__, *signal);
  736. return 0;
  737. }
  738. static int lgs8gxx_read_signal_strength(struct dvb_frontend *fe, u16 *signal)
  739. {
  740. struct lgs8gxx_state *priv = fe->demodulator_priv;
  741. if (priv->config->prod == LGS8GXX_PROD_LGS8913)
  742. return lgs8913_read_signal_strength(priv, signal);
  743. else if (priv->config->prod == LGS8GXX_PROD_LGS8G75)
  744. return lgs8g75_read_signal_strength(priv, signal);
  745. else
  746. return lgs8gxx_read_signal_agc(priv, signal);
  747. }
  748. static int lgs8gxx_read_snr(struct dvb_frontend *fe, u16 *snr)
  749. {
  750. struct lgs8gxx_state *priv = fe->demodulator_priv;
  751. u8 t;
  752. *snr = 0;
  753. if (priv->config->prod == LGS8GXX_PROD_LGS8G75)
  754. lgs8gxx_read_reg(priv, 0x34, &t);
  755. else
  756. lgs8gxx_read_reg(priv, 0x95, &t);
  757. dprintk("AVG Noise=0x%02X\n", t);
  758. *snr = 256 - t;
  759. *snr <<= 8;
  760. dprintk("snr=0x%x\n", *snr);
  761. return 0;
  762. }
  763. static int lgs8gxx_read_ucblocks(struct dvb_frontend *fe, u32 *ucblocks)
  764. {
  765. *ucblocks = 0;
  766. dprintk("%s: ucblocks=0x%x\n", __func__, *ucblocks);
  767. return 0;
  768. }
  769. static void packet_counter_start(struct lgs8gxx_state *priv)
  770. {
  771. u8 orig, t;
  772. if (priv->config->prod == LGS8GXX_PROD_LGS8G75) {
  773. lgs8gxx_read_reg(priv, 0x30, &orig);
  774. orig &= 0xE7;
  775. t = orig | 0x10;
  776. lgs8gxx_write_reg(priv, 0x30, t);
  777. t = orig | 0x18;
  778. lgs8gxx_write_reg(priv, 0x30, t);
  779. t = orig | 0x10;
  780. lgs8gxx_write_reg(priv, 0x30, t);
  781. } else {
  782. lgs8gxx_write_reg(priv, 0xC6, 0x01);
  783. lgs8gxx_write_reg(priv, 0xC6, 0x41);
  784. lgs8gxx_write_reg(priv, 0xC6, 0x01);
  785. }
  786. }
  787. static void packet_counter_stop(struct lgs8gxx_state *priv)
  788. {
  789. u8 t;
  790. if (priv->config->prod == LGS8GXX_PROD_LGS8G75) {
  791. lgs8gxx_read_reg(priv, 0x30, &t);
  792. t &= 0xE7;
  793. lgs8gxx_write_reg(priv, 0x30, t);
  794. } else {
  795. lgs8gxx_write_reg(priv, 0xC6, 0x81);
  796. }
  797. }
  798. static int lgs8gxx_read_ber(struct dvb_frontend *fe, u32 *ber)
  799. {
  800. struct lgs8gxx_state *priv = fe->demodulator_priv;
  801. u8 reg_err, reg_total, t;
  802. u32 total_cnt = 0, err_cnt = 0;
  803. int i;
  804. dprintk("%s\n", __func__);
  805. packet_counter_start(priv);
  806. msleep(200);
  807. packet_counter_stop(priv);
  808. if (priv->config->prod == LGS8GXX_PROD_LGS8G75) {
  809. reg_total = 0x28; reg_err = 0x2C;
  810. } else {
  811. reg_total = 0xD0; reg_err = 0xD4;
  812. }
  813. for (i = 0; i < 4; i++) {
  814. total_cnt <<= 8;
  815. lgs8gxx_read_reg(priv, reg_total+3-i, &t);
  816. total_cnt |= t;
  817. }
  818. for (i = 0; i < 4; i++) {
  819. err_cnt <<= 8;
  820. lgs8gxx_read_reg(priv, reg_err+3-i, &t);
  821. err_cnt |= t;
  822. }
  823. dprintk("error=%d total=%d\n", err_cnt, total_cnt);
  824. if (total_cnt == 0)
  825. *ber = 0;
  826. else
  827. *ber = err_cnt * 100 / total_cnt;
  828. dprintk("%s: ber=0x%x\n", __func__, *ber);
  829. return 0;
  830. }
  831. static int lgs8gxx_i2c_gate_ctrl(struct dvb_frontend *fe, int enable)
  832. {
  833. struct lgs8gxx_state *priv = fe->demodulator_priv;
  834. if (priv->config->tuner_address == 0)
  835. return 0;
  836. if (enable) {
  837. u8 v = 0x80 | priv->config->tuner_address;
  838. return lgs8gxx_write_reg(priv, 0x01, v);
  839. }
  840. return lgs8gxx_write_reg(priv, 0x01, 0);
  841. }
  842. static struct dvb_frontend_ops lgs8gxx_ops = {
  843. .info = {
  844. .name = "Legend Silicon LGS8913/LGS8GXX DMB-TH",
  845. .type = FE_OFDM,
  846. .frequency_min = 474000000,
  847. .frequency_max = 858000000,
  848. .frequency_stepsize = 10000,
  849. .caps =
  850. FE_CAN_FEC_AUTO |
  851. FE_CAN_QAM_AUTO |
  852. FE_CAN_TRANSMISSION_MODE_AUTO |
  853. FE_CAN_GUARD_INTERVAL_AUTO
  854. },
  855. .release = lgs8gxx_release,
  856. .init = lgs8gxx_init,
  857. .write = lgs8gxx_write,
  858. .i2c_gate_ctrl = lgs8gxx_i2c_gate_ctrl,
  859. .set_frontend = lgs8gxx_set_fe,
  860. .get_frontend = lgs8gxx_get_fe,
  861. .get_tune_settings = lgs8gxx_get_tune_settings,
  862. .read_status = lgs8gxx_read_status,
  863. .read_ber = lgs8gxx_read_ber,
  864. .read_signal_strength = lgs8gxx_read_signal_strength,
  865. .read_snr = lgs8gxx_read_snr,
  866. .read_ucblocks = lgs8gxx_read_ucblocks,
  867. };
  868. struct dvb_frontend *lgs8gxx_attach(const struct lgs8gxx_config *config,
  869. struct i2c_adapter *i2c)
  870. {
  871. struct lgs8gxx_state *priv = NULL;
  872. u8 data = 0;
  873. dprintk("%s()\n", __func__);
  874. if (config == NULL || i2c == NULL)
  875. return NULL;
  876. priv = kzalloc(sizeof(struct lgs8gxx_state), GFP_KERNEL);
  877. if (priv == NULL)
  878. goto error_out;
  879. priv->config = config;
  880. priv->i2c = i2c;
  881. /* check if the demod is there */
  882. if (lgs8gxx_read_reg(priv, 0, &data) != 0) {
  883. dprintk("%s lgs8gxx not found at i2c addr 0x%02X\n",
  884. __func__, priv->config->demod_address);
  885. goto error_out;
  886. }
  887. lgs8gxx_read_reg(priv, 1, &data);
  888. memcpy(&priv->frontend.ops, &lgs8gxx_ops,
  889. sizeof(struct dvb_frontend_ops));
  890. priv->frontend.demodulator_priv = priv;
  891. if (config->prod == LGS8GXX_PROD_LGS8G75)
  892. lgs8g75_init_data(priv);
  893. return &priv->frontend;
  894. error_out:
  895. dprintk("%s() error_out\n", __func__);
  896. kfree(priv);
  897. return NULL;
  898. }
  899. EXPORT_SYMBOL(lgs8gxx_attach);
  900. MODULE_DESCRIPTION("Legend Silicon LGS8913/LGS8GXX DMB-TH demodulator driver");
  901. MODULE_AUTHOR("David T. L. Wong <davidtlwong@gmail.com>");
  902. MODULE_LICENSE("GPL");