mt20xx.c 13 KB

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  1. /*
  2. *
  3. * i2c tv tuner chip device driver
  4. * controls microtune tuners, mt2032 + mt2050 at the moment.
  5. */
  6. #include <linux/delay.h>
  7. #include <linux/i2c.h>
  8. #include <linux/videodev.h>
  9. #include <linux/moduleparam.h>
  10. #include <media/tuner.h>
  11. /* ---------------------------------------------------------------------- */
  12. static unsigned int optimize_vco = 1;
  13. module_param(optimize_vco, int, 0644);
  14. static unsigned int tv_antenna = 1;
  15. module_param(tv_antenna, int, 0644);
  16. static unsigned int radio_antenna = 0;
  17. module_param(radio_antenna, int, 0644);
  18. /* from tuner-core.c */
  19. extern int tuner_debug;
  20. /* ---------------------------------------------------------------------- */
  21. #define MT2032 0x04
  22. #define MT2030 0x06
  23. #define MT2040 0x07
  24. #define MT2050 0x42
  25. static char *microtune_part[] = {
  26. [ MT2030 ] = "MT2030",
  27. [ MT2032 ] = "MT2032",
  28. [ MT2040 ] = "MT2040",
  29. [ MT2050 ] = "MT2050",
  30. };
  31. struct microtune_priv {
  32. unsigned int xogc;
  33. unsigned int radio_if2;
  34. };
  35. // IsSpurInBand()?
  36. static int mt2032_spurcheck(struct i2c_client *c,
  37. int f1, int f2, int spectrum_from,int spectrum_to)
  38. {
  39. struct tuner *t = i2c_get_clientdata(c);
  40. int n1=1,n2,f;
  41. f1=f1/1000; //scale to kHz to avoid 32bit overflows
  42. f2=f2/1000;
  43. spectrum_from/=1000;
  44. spectrum_to/=1000;
  45. tuner_dbg("spurcheck f1=%d f2=%d from=%d to=%d\n",
  46. f1,f2,spectrum_from,spectrum_to);
  47. do {
  48. n2=-n1;
  49. f=n1*(f1-f2);
  50. do {
  51. n2--;
  52. f=f-f2;
  53. tuner_dbg("spurtest n1=%d n2=%d ftest=%d\n",n1,n2,f);
  54. if( (f>spectrum_from) && (f<spectrum_to))
  55. tuner_dbg("mt2032 spurcheck triggered: %d\n",n1);
  56. } while ( (f>(f2-spectrum_to)) || (n2>-5));
  57. n1++;
  58. } while (n1<5);
  59. return 1;
  60. }
  61. static int mt2032_compute_freq(struct i2c_client *c,
  62. unsigned int rfin,
  63. unsigned int if1, unsigned int if2,
  64. unsigned int spectrum_from,
  65. unsigned int spectrum_to,
  66. unsigned char *buf,
  67. int *ret_sel,
  68. unsigned int xogc) //all in Hz
  69. {
  70. struct tuner *t = i2c_get_clientdata(c);
  71. unsigned int fref,lo1,lo1n,lo1a,s,sel,lo1freq, desired_lo1,
  72. desired_lo2,lo2,lo2n,lo2a,lo2num,lo2freq;
  73. fref= 5250 *1000; //5.25MHz
  74. desired_lo1=rfin+if1;
  75. lo1=(2*(desired_lo1/1000)+(fref/1000)) / (2*fref/1000);
  76. lo1n=lo1/8;
  77. lo1a=lo1-(lo1n*8);
  78. s=rfin/1000/1000+1090;
  79. if(optimize_vco) {
  80. if(s>1890) sel=0;
  81. else if(s>1720) sel=1;
  82. else if(s>1530) sel=2;
  83. else if(s>1370) sel=3;
  84. else sel=4; // >1090
  85. }
  86. else {
  87. if(s>1790) sel=0; // <1958
  88. else if(s>1617) sel=1;
  89. else if(s>1449) sel=2;
  90. else if(s>1291) sel=3;
  91. else sel=4; // >1090
  92. }
  93. *ret_sel=sel;
  94. lo1freq=(lo1a+8*lo1n)*fref;
  95. tuner_dbg("mt2032: rfin=%d lo1=%d lo1n=%d lo1a=%d sel=%d, lo1freq=%d\n",
  96. rfin,lo1,lo1n,lo1a,sel,lo1freq);
  97. desired_lo2=lo1freq-rfin-if2;
  98. lo2=(desired_lo2)/fref;
  99. lo2n=lo2/8;
  100. lo2a=lo2-(lo2n*8);
  101. lo2num=((desired_lo2/1000)%(fref/1000))* 3780/(fref/1000); //scale to fit in 32bit arith
  102. lo2freq=(lo2a+8*lo2n)*fref + lo2num*(fref/1000)/3780*1000;
  103. tuner_dbg("mt2032: rfin=%d lo2=%d lo2n=%d lo2a=%d num=%d lo2freq=%d\n",
  104. rfin,lo2,lo2n,lo2a,lo2num,lo2freq);
  105. if(lo1a<0 || lo1a>7 || lo1n<17 ||lo1n>48 || lo2a<0 ||lo2a >7 ||lo2n<17 || lo2n>30) {
  106. tuner_info("mt2032: frequency parameters out of range: %d %d %d %d\n",
  107. lo1a, lo1n, lo2a,lo2n);
  108. return(-1);
  109. }
  110. mt2032_spurcheck(c, lo1freq, desired_lo2, spectrum_from, spectrum_to);
  111. // should recalculate lo1 (one step up/down)
  112. // set up MT2032 register map for transfer over i2c
  113. buf[0]=lo1n-1;
  114. buf[1]=lo1a | (sel<<4);
  115. buf[2]=0x86; // LOGC
  116. buf[3]=0x0f; //reserved
  117. buf[4]=0x1f;
  118. buf[5]=(lo2n-1) | (lo2a<<5);
  119. if(rfin >400*1000*1000)
  120. buf[6]=0xe4;
  121. else
  122. buf[6]=0xf4; // set PKEN per rev 1.2
  123. buf[7]=8+xogc;
  124. buf[8]=0xc3; //reserved
  125. buf[9]=0x4e; //reserved
  126. buf[10]=0xec; //reserved
  127. buf[11]=(lo2num&0xff);
  128. buf[12]=(lo2num>>8) |0x80; // Lo2RST
  129. return 0;
  130. }
  131. static int mt2032_check_lo_lock(struct i2c_client *c)
  132. {
  133. struct tuner *t = i2c_get_clientdata(c);
  134. int try,lock=0;
  135. unsigned char buf[2];
  136. for(try=0;try<10;try++) {
  137. buf[0]=0x0e;
  138. i2c_master_send(c,buf,1);
  139. i2c_master_recv(c,buf,1);
  140. tuner_dbg("mt2032 Reg.E=0x%02x\n",buf[0]);
  141. lock=buf[0] &0x06;
  142. if (lock==6)
  143. break;
  144. tuner_dbg("mt2032: pll wait 1ms for lock (0x%2x)\n",buf[0]);
  145. udelay(1000);
  146. }
  147. return lock;
  148. }
  149. static int mt2032_optimize_vco(struct i2c_client *c,int sel,int lock)
  150. {
  151. struct tuner *t = i2c_get_clientdata(c);
  152. unsigned char buf[2];
  153. int tad1;
  154. buf[0]=0x0f;
  155. i2c_master_send(c,buf,1);
  156. i2c_master_recv(c,buf,1);
  157. tuner_dbg("mt2032 Reg.F=0x%02x\n",buf[0]);
  158. tad1=buf[0]&0x07;
  159. if(tad1 ==0) return lock;
  160. if(tad1 ==1) return lock;
  161. if(tad1==2) {
  162. if(sel==0)
  163. return lock;
  164. else sel--;
  165. }
  166. else {
  167. if(sel<4)
  168. sel++;
  169. else
  170. return lock;
  171. }
  172. tuner_dbg("mt2032 optimize_vco: sel=%d\n",sel);
  173. buf[0]=0x0f;
  174. buf[1]=sel;
  175. i2c_master_send(c,buf,2);
  176. lock=mt2032_check_lo_lock(c);
  177. return lock;
  178. }
  179. static void mt2032_set_if_freq(struct i2c_client *c, unsigned int rfin,
  180. unsigned int if1, unsigned int if2,
  181. unsigned int from, unsigned int to)
  182. {
  183. unsigned char buf[21];
  184. int lint_try,ret,sel,lock=0;
  185. struct tuner *t = i2c_get_clientdata(c);
  186. struct microtune_priv *priv = t->priv;
  187. tuner_dbg("mt2032_set_if_freq rfin=%d if1=%d if2=%d from=%d to=%d\n",
  188. rfin,if1,if2,from,to);
  189. buf[0]=0;
  190. ret=i2c_master_send(c,buf,1);
  191. i2c_master_recv(c,buf,21);
  192. buf[0]=0;
  193. ret=mt2032_compute_freq(c,rfin,if1,if2,from,to,&buf[1],&sel,priv->xogc);
  194. if (ret<0)
  195. return;
  196. // send only the relevant registers per Rev. 1.2
  197. buf[0]=0;
  198. ret=i2c_master_send(c,buf,4);
  199. buf[5]=5;
  200. ret=i2c_master_send(c,buf+5,4);
  201. buf[11]=11;
  202. ret=i2c_master_send(c,buf+11,3);
  203. if(ret!=3)
  204. tuner_warn("i2c i/o error: rc == %d (should be 3)\n",ret);
  205. // wait for PLLs to lock (per manual), retry LINT if not.
  206. for(lint_try=0; lint_try<2; lint_try++) {
  207. lock=mt2032_check_lo_lock(c);
  208. if(optimize_vco)
  209. lock=mt2032_optimize_vco(c,sel,lock);
  210. if(lock==6) break;
  211. tuner_dbg("mt2032: re-init PLLs by LINT\n");
  212. buf[0]=7;
  213. buf[1]=0x80 +8+priv->xogc; // set LINT to re-init PLLs
  214. i2c_master_send(c,buf,2);
  215. mdelay(10);
  216. buf[1]=8+priv->xogc;
  217. i2c_master_send(c,buf,2);
  218. }
  219. if (lock!=6)
  220. tuner_warn("MT2032 Fatal Error: PLLs didn't lock.\n");
  221. buf[0]=2;
  222. buf[1]=0x20; // LOGC for optimal phase noise
  223. ret=i2c_master_send(c,buf,2);
  224. if (ret!=2)
  225. tuner_warn("i2c i/o error: rc == %d (should be 2)\n",ret);
  226. }
  227. static void mt2032_set_tv_freq(struct i2c_client *c, unsigned int freq)
  228. {
  229. struct tuner *t = i2c_get_clientdata(c);
  230. int if2,from,to;
  231. // signal bandwidth and picture carrier
  232. if (t->std & V4L2_STD_525_60) {
  233. // NTSC
  234. from = 40750*1000;
  235. to = 46750*1000;
  236. if2 = 45750*1000;
  237. } else {
  238. // PAL
  239. from = 32900*1000;
  240. to = 39900*1000;
  241. if2 = 38900*1000;
  242. }
  243. mt2032_set_if_freq(c, freq*62500 /* freq*1000*1000/16 */,
  244. 1090*1000*1000, if2, from, to);
  245. }
  246. static void mt2032_set_radio_freq(struct i2c_client *c, unsigned int freq)
  247. {
  248. struct tuner *t = i2c_get_clientdata(c);
  249. struct microtune_priv *priv = t->priv;
  250. int if2 = priv->radio_if2;
  251. // per Manual for FM tuning: first if center freq. 1085 MHz
  252. mt2032_set_if_freq(c, freq * 1000 / 16,
  253. 1085*1000*1000,if2,if2,if2);
  254. }
  255. // Initalization as described in "MT203x Programming Procedures", Rev 1.2, Feb.2001
  256. static int mt2032_init(struct i2c_client *c)
  257. {
  258. struct tuner *t = i2c_get_clientdata(c);
  259. struct microtune_priv *priv = t->priv;
  260. unsigned char buf[21];
  261. int ret,xogc,xok=0;
  262. // Initialize Registers per spec.
  263. buf[1]=2; // Index to register 2
  264. buf[2]=0xff;
  265. buf[3]=0x0f;
  266. buf[4]=0x1f;
  267. ret=i2c_master_send(c,buf+1,4);
  268. buf[5]=6; // Index register 6
  269. buf[6]=0xe4;
  270. buf[7]=0x8f;
  271. buf[8]=0xc3;
  272. buf[9]=0x4e;
  273. buf[10]=0xec;
  274. ret=i2c_master_send(c,buf+5,6);
  275. buf[12]=13; // Index register 13
  276. buf[13]=0x32;
  277. ret=i2c_master_send(c,buf+12,2);
  278. // Adjust XOGC (register 7), wait for XOK
  279. xogc=7;
  280. do {
  281. tuner_dbg("mt2032: xogc = 0x%02x\n",xogc&0x07);
  282. mdelay(10);
  283. buf[0]=0x0e;
  284. i2c_master_send(c,buf,1);
  285. i2c_master_recv(c,buf,1);
  286. xok=buf[0]&0x01;
  287. tuner_dbg("mt2032: xok = 0x%02x\n",xok);
  288. if (xok == 1) break;
  289. xogc--;
  290. tuner_dbg("mt2032: xogc = 0x%02x\n",xogc&0x07);
  291. if (xogc == 3) {
  292. xogc=4; // min. 4 per spec
  293. break;
  294. }
  295. buf[0]=0x07;
  296. buf[1]=0x88 + xogc;
  297. ret=i2c_master_send(c,buf,2);
  298. if (ret!=2)
  299. tuner_warn("i2c i/o error: rc == %d (should be 2)\n",ret);
  300. } while (xok != 1 );
  301. priv->xogc=xogc;
  302. t->ops.set_tv_freq = mt2032_set_tv_freq;
  303. t->ops.set_radio_freq = mt2032_set_radio_freq;
  304. return(1);
  305. }
  306. static void mt2050_set_antenna(struct i2c_client *c, unsigned char antenna)
  307. {
  308. struct tuner *t = i2c_get_clientdata(c);
  309. unsigned char buf[2];
  310. int ret;
  311. buf[0] = 6;
  312. buf[1] = antenna ? 0x11 : 0x10;
  313. ret=i2c_master_send(c,buf,2);
  314. tuner_dbg("mt2050: enabled antenna connector %d\n", antenna);
  315. }
  316. static void mt2050_set_if_freq(struct i2c_client *c,unsigned int freq, unsigned int if2)
  317. {
  318. struct tuner *t = i2c_get_clientdata(c);
  319. unsigned int if1=1218*1000*1000;
  320. unsigned int f_lo1,f_lo2,lo1,lo2,f_lo1_modulo,f_lo2_modulo,num1,num2,div1a,div1b,div2a,div2b;
  321. int ret;
  322. unsigned char buf[6];
  323. tuner_dbg("mt2050_set_if_freq freq=%d if1=%d if2=%d\n",
  324. freq,if1,if2);
  325. f_lo1=freq+if1;
  326. f_lo1=(f_lo1/1000000)*1000000;
  327. f_lo2=f_lo1-freq-if2;
  328. f_lo2=(f_lo2/50000)*50000;
  329. lo1=f_lo1/4000000;
  330. lo2=f_lo2/4000000;
  331. f_lo1_modulo= f_lo1-(lo1*4000000);
  332. f_lo2_modulo= f_lo2-(lo2*4000000);
  333. num1=4*f_lo1_modulo/4000000;
  334. num2=4096*(f_lo2_modulo/1000)/4000;
  335. // todo spurchecks
  336. div1a=(lo1/12)-1;
  337. div1b=lo1-(div1a+1)*12;
  338. div2a=(lo2/8)-1;
  339. div2b=lo2-(div2a+1)*8;
  340. if (tuner_debug > 1) {
  341. tuner_dbg("lo1 lo2 = %d %d\n", lo1, lo2);
  342. tuner_dbg("num1 num2 div1a div1b div2a div2b= %x %x %x %x %x %x\n",
  343. num1,num2,div1a,div1b,div2a,div2b);
  344. }
  345. buf[0]=1;
  346. buf[1]= 4*div1b + num1;
  347. if(freq<275*1000*1000) buf[1] = buf[1]|0x80;
  348. buf[2]=div1a;
  349. buf[3]=32*div2b + num2/256;
  350. buf[4]=num2-(num2/256)*256;
  351. buf[5]=div2a;
  352. if(num2!=0) buf[5]=buf[5]|0x40;
  353. if (tuner_debug > 1) {
  354. int i;
  355. tuner_dbg("bufs is: ");
  356. for(i=0;i<6;i++)
  357. printk("%x ",buf[i]);
  358. printk("\n");
  359. }
  360. ret=i2c_master_send(c,buf,6);
  361. if (ret!=6)
  362. tuner_warn("i2c i/o error: rc == %d (should be 6)\n",ret);
  363. }
  364. static void mt2050_set_tv_freq(struct i2c_client *c, unsigned int freq)
  365. {
  366. struct tuner *t = i2c_get_clientdata(c);
  367. unsigned int if2;
  368. if (t->std & V4L2_STD_525_60) {
  369. // NTSC
  370. if2 = 45750*1000;
  371. } else {
  372. // PAL
  373. if2 = 38900*1000;
  374. }
  375. if (V4L2_TUNER_DIGITAL_TV == t->mode) {
  376. // DVB (pinnacle 300i)
  377. if2 = 36150*1000;
  378. }
  379. mt2050_set_if_freq(c, freq*62500, if2);
  380. mt2050_set_antenna(c, tv_antenna);
  381. }
  382. static void mt2050_set_radio_freq(struct i2c_client *c, unsigned int freq)
  383. {
  384. struct tuner *t = i2c_get_clientdata(c);
  385. struct microtune_priv *priv = t->priv;
  386. int if2 = priv->radio_if2;
  387. mt2050_set_if_freq(c, freq * 1000 / 16, if2);
  388. mt2050_set_antenna(c, radio_antenna);
  389. }
  390. static int mt2050_init(struct i2c_client *c)
  391. {
  392. struct tuner *t = i2c_get_clientdata(c);
  393. unsigned char buf[2];
  394. int ret;
  395. buf[0]=6;
  396. buf[1]=0x10;
  397. ret=i2c_master_send(c,buf,2); // power
  398. buf[0]=0x0f;
  399. buf[1]=0x0f;
  400. ret=i2c_master_send(c,buf,2); // m1lo
  401. buf[0]=0x0d;
  402. ret=i2c_master_send(c,buf,1);
  403. i2c_master_recv(c,buf,1);
  404. tuner_dbg("mt2050: sro is %x\n",buf[0]);
  405. t->ops.set_tv_freq = mt2050_set_tv_freq;
  406. t->ops.set_radio_freq = mt2050_set_radio_freq;
  407. return 0;
  408. }
  409. static void microtune_release(struct i2c_client *c)
  410. {
  411. struct tuner *t = i2c_get_clientdata(c);
  412. kfree(t->priv);
  413. t->priv = NULL;
  414. }
  415. int microtune_init(struct i2c_client *c)
  416. {
  417. struct microtune_priv *priv = NULL;
  418. struct tuner *t = i2c_get_clientdata(c);
  419. char *name;
  420. unsigned char buf[21];
  421. int company_code;
  422. priv = kzalloc(sizeof(struct microtune_priv), GFP_KERNEL);
  423. if (priv == NULL)
  424. return -ENOMEM;
  425. t->priv = priv;
  426. priv->radio_if2 = 10700 * 1000; /* 10.7MHz - FM radio */
  427. memset(buf,0,sizeof(buf));
  428. t->ops.set_tv_freq = NULL;
  429. t->ops.set_radio_freq = NULL;
  430. t->ops.standby = NULL;
  431. t->ops.release = microtune_release;
  432. if (t->std & V4L2_STD_525_60) {
  433. tuner_dbg("pinnacle ntsc\n");
  434. priv->radio_if2 = 41300 * 1000;
  435. } else {
  436. tuner_dbg("pinnacle pal\n");
  437. priv->radio_if2 = 33300 * 1000;
  438. }
  439. name = "unknown";
  440. i2c_master_send(c,buf,1);
  441. i2c_master_recv(c,buf,21);
  442. if (tuner_debug) {
  443. int i;
  444. tuner_dbg("MT20xx hexdump:");
  445. for(i=0;i<21;i++) {
  446. printk(" %02x",buf[i]);
  447. if(((i+1)%8)==0) printk(" ");
  448. }
  449. printk("\n");
  450. }
  451. company_code = buf[0x11] << 8 | buf[0x12];
  452. tuner_info("microtune: companycode=%04x part=%02x rev=%02x\n",
  453. company_code,buf[0x13],buf[0x14]);
  454. if (buf[0x13] < ARRAY_SIZE(microtune_part) &&
  455. NULL != microtune_part[buf[0x13]])
  456. name = microtune_part[buf[0x13]];
  457. switch (buf[0x13]) {
  458. case MT2032:
  459. mt2032_init(c);
  460. break;
  461. case MT2050:
  462. mt2050_init(c);
  463. break;
  464. default:
  465. tuner_info("microtune %s found, not (yet?) supported, sorry :-/\n",
  466. name);
  467. return 0;
  468. }
  469. strlcpy(c->name, name, sizeof(c->name));
  470. tuner_info("microtune %s found, OK\n",name);
  471. return 0;
  472. }
  473. /*
  474. * Overrides for Emacs so that we follow Linus's tabbing style.
  475. * ---------------------------------------------------------------------------
  476. * Local variables:
  477. * c-basic-offset: 8
  478. * End:
  479. */