tvaudio.c 51 KB

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  1. /*
  2. * experimental driver for simple i2c audio chips.
  3. *
  4. * Copyright (c) 2000 Gerd Knorr
  5. * based on code by:
  6. * Eric Sandeen (eric_sandeen@bigfoot.com)
  7. * Steve VanDeBogart (vandebo@uclink.berkeley.edu)
  8. * Greg Alexander (galexand@acm.org)
  9. *
  10. * This code is placed under the terms of the GNU General Public License
  11. *
  12. * OPTIONS:
  13. * debug - set to 1 if you'd like to see debug messages
  14. *
  15. */
  16. #include <linux/config.h>
  17. #include <linux/module.h>
  18. #include <linux/moduleparam.h>
  19. #include <linux/kernel.h>
  20. #include <linux/sched.h>
  21. #include <linux/string.h>
  22. #include <linux/timer.h>
  23. #include <linux/delay.h>
  24. #include <linux/errno.h>
  25. #include <linux/slab.h>
  26. #include <linux/videodev.h>
  27. #include <linux/i2c.h>
  28. #include <linux/i2c-algo-bit.h>
  29. #include <linux/init.h>
  30. #include <linux/smp_lock.h>
  31. #include <media/audiochip.h>
  32. #include <media/id.h>
  33. #include "tvaudio.h"
  34. /* ---------------------------------------------------------------------- */
  35. /* insmod args */
  36. static int debug = 0; /* insmod parameter */
  37. module_param(debug, int, 0644);
  38. MODULE_DESCRIPTION("device driver for various i2c TV sound decoder / audiomux chips");
  39. MODULE_AUTHOR("Eric Sandeen, Steve VanDeBogart, Greg Alexander, Gerd Knorr");
  40. MODULE_LICENSE("GPL");
  41. #define UNSET (-1U)
  42. #define tvaudio_info(fmt, arg...) do {\
  43. printk(KERN_INFO "tvaudio %d-%04x: " fmt, \
  44. chip->c.adapter->nr, chip->c.addr , ##arg); } while (0)
  45. #define tvaudio_warn(fmt, arg...) do {\
  46. printk(KERN_WARNING "tvaudio %d-%04x: " fmt, \
  47. chip->c.adapter->nr, chip->c.addr , ##arg); } while (0)
  48. #define tvaudio_dbg(fmt, arg...) do {\
  49. if (debug) \
  50. printk(KERN_INFO "tvaudio %d-%04x: " fmt, \
  51. chip->c.adapter->nr, chip->c.addr , ##arg); } while (0)
  52. /* ---------------------------------------------------------------------- */
  53. /* our structs */
  54. #define MAXREGS 64
  55. struct CHIPSTATE;
  56. typedef int (*getvalue)(int);
  57. typedef int (*checkit)(struct CHIPSTATE*);
  58. typedef int (*initialize)(struct CHIPSTATE*);
  59. typedef int (*getmode)(struct CHIPSTATE*);
  60. typedef void (*setmode)(struct CHIPSTATE*, int mode);
  61. typedef void (*checkmode)(struct CHIPSTATE*);
  62. /* i2c command */
  63. typedef struct AUDIOCMD {
  64. int count; /* # of bytes to send */
  65. unsigned char bytes[MAXREGS+1]; /* addr, data, data, ... */
  66. } audiocmd;
  67. /* chip description */
  68. struct CHIPDESC {
  69. char *name; /* chip name */
  70. int id; /* ID */
  71. int addr_lo, addr_hi; /* i2c address range */
  72. int registers; /* # of registers */
  73. int *insmodopt;
  74. checkit checkit;
  75. initialize initialize;
  76. int flags;
  77. #define CHIP_HAS_VOLUME 1
  78. #define CHIP_HAS_BASSTREBLE 2
  79. #define CHIP_HAS_INPUTSEL 4
  80. /* various i2c command sequences */
  81. audiocmd init;
  82. /* which register has which value */
  83. int leftreg,rightreg,treblereg,bassreg;
  84. /* initialize with (defaults to 65535/65535/32768/32768 */
  85. int leftinit,rightinit,trebleinit,bassinit;
  86. /* functions to convert the values (v4l -> chip) */
  87. getvalue volfunc,treblefunc,bassfunc;
  88. /* get/set mode */
  89. getmode getmode;
  90. setmode setmode;
  91. /* check / autoswitch audio after channel switches */
  92. checkmode checkmode;
  93. /* input switch register + values for v4l inputs */
  94. int inputreg;
  95. int inputmap[8];
  96. int inputmute;
  97. int inputmask;
  98. };
  99. static struct CHIPDESC chiplist[];
  100. /* current state of the chip */
  101. struct CHIPSTATE {
  102. struct i2c_client c;
  103. /* index into CHIPDESC array */
  104. int type;
  105. /* shadow register set */
  106. audiocmd shadow;
  107. /* current settings */
  108. __u16 left,right,treble,bass,mode;
  109. int prevmode;
  110. int norm;
  111. /* thread */
  112. pid_t tpid;
  113. struct completion texit;
  114. wait_queue_head_t wq;
  115. struct timer_list wt;
  116. int done;
  117. int watch_stereo;
  118. };
  119. #define VIDEO_MODE_RADIO 16 /* norm magic for radio mode */
  120. /* ---------------------------------------------------------------------- */
  121. /* i2c addresses */
  122. static unsigned short normal_i2c[] = {
  123. I2C_TDA8425 >> 1,
  124. I2C_TEA6300 >> 1,
  125. I2C_TEA6420 >> 1,
  126. I2C_TDA9840 >> 1,
  127. I2C_TDA985x_L >> 1,
  128. I2C_TDA985x_H >> 1,
  129. I2C_TDA9874 >> 1,
  130. I2C_PIC16C54 >> 1,
  131. I2C_CLIENT_END };
  132. I2C_CLIENT_INSMOD;
  133. static struct i2c_driver driver;
  134. static struct i2c_client client_template;
  135. /* ---------------------------------------------------------------------- */
  136. /* i2c I/O functions */
  137. static int chip_write(struct CHIPSTATE *chip, int subaddr, int val)
  138. {
  139. unsigned char buffer[2];
  140. if (-1 == subaddr) {
  141. tvaudio_dbg("%s: chip_write: 0x%x\n",
  142. chip->c.name, val);
  143. chip->shadow.bytes[1] = val;
  144. buffer[0] = val;
  145. if (1 != i2c_master_send(&chip->c,buffer,1)) {
  146. tvaudio_warn("%s: I/O error (write 0x%x)\n",
  147. chip->c.name, val);
  148. return -1;
  149. }
  150. } else {
  151. tvaudio_dbg("%s: chip_write: reg%d=0x%x\n",
  152. chip->c.name, subaddr, val);
  153. chip->shadow.bytes[subaddr+1] = val;
  154. buffer[0] = subaddr;
  155. buffer[1] = val;
  156. if (2 != i2c_master_send(&chip->c,buffer,2)) {
  157. tvaudio_warn("%s: I/O error (write reg%d=0x%x)\n",
  158. chip->c.name, subaddr, val);
  159. return -1;
  160. }
  161. }
  162. return 0;
  163. }
  164. static int chip_write_masked(struct CHIPSTATE *chip, int subaddr, int val, int mask)
  165. {
  166. if (mask != 0) {
  167. if (-1 == subaddr) {
  168. val = (chip->shadow.bytes[1] & ~mask) | (val & mask);
  169. } else {
  170. val = (chip->shadow.bytes[subaddr+1] & ~mask) | (val & mask);
  171. }
  172. }
  173. return chip_write(chip, subaddr, val);
  174. }
  175. static int chip_read(struct CHIPSTATE *chip)
  176. {
  177. unsigned char buffer;
  178. if (1 != i2c_master_recv(&chip->c,&buffer,1)) {
  179. tvaudio_warn("%s: I/O error (read)\n",
  180. chip->c.name);
  181. return -1;
  182. }
  183. tvaudio_dbg("%s: chip_read: 0x%x\n",chip->c.name,buffer);
  184. return buffer;
  185. }
  186. static int chip_read2(struct CHIPSTATE *chip, int subaddr)
  187. {
  188. unsigned char write[1];
  189. unsigned char read[1];
  190. struct i2c_msg msgs[2] = {
  191. { chip->c.addr, 0, 1, write },
  192. { chip->c.addr, I2C_M_RD, 1, read }
  193. };
  194. write[0] = subaddr;
  195. if (2 != i2c_transfer(chip->c.adapter,msgs,2)) {
  196. tvaudio_warn("%s: I/O error (read2)\n", chip->c.name);
  197. return -1;
  198. }
  199. tvaudio_dbg("%s: chip_read2: reg%d=0x%x\n",
  200. chip->c.name,subaddr,read[0]);
  201. return read[0];
  202. }
  203. static int chip_cmd(struct CHIPSTATE *chip, char *name, audiocmd *cmd)
  204. {
  205. int i;
  206. if (0 == cmd->count)
  207. return 0;
  208. /* update our shadow register set; print bytes if (debug > 0) */
  209. tvaudio_dbg("%s: chip_cmd(%s): reg=%d, data:",
  210. chip->c.name,name,cmd->bytes[0]);
  211. for (i = 1; i < cmd->count; i++) {
  212. if (debug)
  213. printk(" 0x%x",cmd->bytes[i]);
  214. chip->shadow.bytes[i+cmd->bytes[0]] = cmd->bytes[i];
  215. }
  216. if (debug)
  217. printk("\n");
  218. /* send data to the chip */
  219. if (cmd->count != i2c_master_send(&chip->c,cmd->bytes,cmd->count)) {
  220. tvaudio_warn("%s: I/O error (%s)\n", chip->c.name, name);
  221. return -1;
  222. }
  223. return 0;
  224. }
  225. /* ---------------------------------------------------------------------- */
  226. /* kernel thread for doing i2c stuff asyncronly
  227. * right now it is used only to check the audio mode (mono/stereo/whatever)
  228. * some time after switching to another TV channel, then turn on stereo
  229. * if available, ...
  230. */
  231. static void chip_thread_wake(unsigned long data)
  232. {
  233. struct CHIPSTATE *chip = (struct CHIPSTATE*)data;
  234. wake_up_interruptible(&chip->wq);
  235. }
  236. static int chip_thread(void *data)
  237. {
  238. DECLARE_WAITQUEUE(wait, current);
  239. struct CHIPSTATE *chip = data;
  240. struct CHIPDESC *desc = chiplist + chip->type;
  241. daemonize("%s", chip->c.name);
  242. allow_signal(SIGTERM);
  243. tvaudio_dbg("%s: thread started\n", chip->c.name);
  244. for (;;) {
  245. add_wait_queue(&chip->wq, &wait);
  246. if (!chip->done) {
  247. set_current_state(TASK_INTERRUPTIBLE);
  248. schedule();
  249. }
  250. remove_wait_queue(&chip->wq, &wait);
  251. try_to_freeze();
  252. if (chip->done || signal_pending(current))
  253. break;
  254. tvaudio_dbg("%s: thread wakeup\n", chip->c.name);
  255. /* don't do anything for radio or if mode != auto */
  256. if (chip->norm == VIDEO_MODE_RADIO || chip->mode != 0)
  257. continue;
  258. /* have a look what's going on */
  259. desc->checkmode(chip);
  260. /* schedule next check */
  261. mod_timer(&chip->wt, jiffies+2*HZ);
  262. }
  263. tvaudio_dbg("%s: thread exiting\n", chip->c.name);
  264. complete_and_exit(&chip->texit, 0);
  265. return 0;
  266. }
  267. static void generic_checkmode(struct CHIPSTATE *chip)
  268. {
  269. struct CHIPDESC *desc = chiplist + chip->type;
  270. int mode = desc->getmode(chip);
  271. if (mode == chip->prevmode)
  272. return;
  273. tvaudio_dbg("%s: thread checkmode\n", chip->c.name);
  274. chip->prevmode = mode;
  275. if (mode & VIDEO_SOUND_STEREO)
  276. desc->setmode(chip,VIDEO_SOUND_STEREO);
  277. else if (mode & VIDEO_SOUND_LANG1)
  278. desc->setmode(chip,VIDEO_SOUND_LANG1);
  279. else if (mode & VIDEO_SOUND_LANG2)
  280. desc->setmode(chip,VIDEO_SOUND_LANG2);
  281. else
  282. desc->setmode(chip,VIDEO_SOUND_MONO);
  283. }
  284. /* ---------------------------------------------------------------------- */
  285. /* audio chip descriptions - defines+functions for tda9840 */
  286. #define TDA9840_SW 0x00
  287. #define TDA9840_LVADJ 0x02
  288. #define TDA9840_STADJ 0x03
  289. #define TDA9840_TEST 0x04
  290. #define TDA9840_MONO 0x10
  291. #define TDA9840_STEREO 0x2a
  292. #define TDA9840_DUALA 0x12
  293. #define TDA9840_DUALB 0x1e
  294. #define TDA9840_DUALAB 0x1a
  295. #define TDA9840_DUALBA 0x16
  296. #define TDA9840_EXTERNAL 0x7a
  297. #define TDA9840_DS_DUAL 0x20 /* Dual sound identified */
  298. #define TDA9840_ST_STEREO 0x40 /* Stereo sound identified */
  299. #define TDA9840_PONRES 0x80 /* Power-on reset detected if = 1 */
  300. #define TDA9840_TEST_INT1SN 0x1 /* Integration time 0.5s when set */
  301. #define TDA9840_TEST_INTFU 0x02 /* Disables integrator function */
  302. static int tda9840_getmode(struct CHIPSTATE *chip)
  303. {
  304. int val, mode;
  305. val = chip_read(chip);
  306. mode = VIDEO_SOUND_MONO;
  307. if (val & TDA9840_DS_DUAL)
  308. mode |= VIDEO_SOUND_LANG1 | VIDEO_SOUND_LANG2;
  309. if (val & TDA9840_ST_STEREO)
  310. mode |= VIDEO_SOUND_STEREO;
  311. tvaudio_dbg ("tda9840_getmode(): raw chip read: %d, return: %d\n",
  312. val, mode);
  313. return mode;
  314. }
  315. static void tda9840_setmode(struct CHIPSTATE *chip, int mode)
  316. {
  317. int update = 1;
  318. int t = chip->shadow.bytes[TDA9840_SW + 1] & ~0x7e;
  319. switch (mode) {
  320. case VIDEO_SOUND_MONO:
  321. t |= TDA9840_MONO;
  322. break;
  323. case VIDEO_SOUND_STEREO:
  324. t |= TDA9840_STEREO;
  325. break;
  326. case VIDEO_SOUND_LANG1:
  327. t |= TDA9840_DUALA;
  328. break;
  329. case VIDEO_SOUND_LANG2:
  330. t |= TDA9840_DUALB;
  331. break;
  332. default:
  333. update = 0;
  334. }
  335. if (update)
  336. chip_write(chip, TDA9840_SW, t);
  337. }
  338. /* ---------------------------------------------------------------------- */
  339. /* audio chip descriptions - defines+functions for tda985x */
  340. /* subaddresses for TDA9855 */
  341. #define TDA9855_VR 0x00 /* Volume, right */
  342. #define TDA9855_VL 0x01 /* Volume, left */
  343. #define TDA9855_BA 0x02 /* Bass */
  344. #define TDA9855_TR 0x03 /* Treble */
  345. #define TDA9855_SW 0x04 /* Subwoofer - not connected on DTV2000 */
  346. /* subaddresses for TDA9850 */
  347. #define TDA9850_C4 0x04 /* Control 1 for TDA9850 */
  348. /* subaddesses for both chips */
  349. #define TDA985x_C5 0x05 /* Control 2 for TDA9850, Control 1 for TDA9855 */
  350. #define TDA985x_C6 0x06 /* Control 3 for TDA9850, Control 2 for TDA9855 */
  351. #define TDA985x_C7 0x07 /* Control 4 for TDA9850, Control 3 for TDA9855 */
  352. #define TDA985x_A1 0x08 /* Alignment 1 for both chips */
  353. #define TDA985x_A2 0x09 /* Alignment 2 for both chips */
  354. #define TDA985x_A3 0x0a /* Alignment 3 for both chips */
  355. /* Masks for bits in TDA9855 subaddresses */
  356. /* 0x00 - VR in TDA9855 */
  357. /* 0x01 - VL in TDA9855 */
  358. /* lower 7 bits control gain from -71dB (0x28) to 16dB (0x7f)
  359. * in 1dB steps - mute is 0x27 */
  360. /* 0x02 - BA in TDA9855 */
  361. /* lower 5 bits control bass gain from -12dB (0x06) to 16.5dB (0x19)
  362. * in .5dB steps - 0 is 0x0E */
  363. /* 0x03 - TR in TDA9855 */
  364. /* 4 bits << 1 control treble gain from -12dB (0x3) to 12dB (0xb)
  365. * in 3dB steps - 0 is 0x7 */
  366. /* Masks for bits in both chips' subaddresses */
  367. /* 0x04 - SW in TDA9855, C4/Control 1 in TDA9850 */
  368. /* Unique to TDA9855: */
  369. /* 4 bits << 2 control subwoofer/surround gain from -14db (0x1) to 14db (0xf)
  370. * in 3dB steps - mute is 0x0 */
  371. /* Unique to TDA9850: */
  372. /* lower 4 bits control stereo noise threshold, over which stereo turns off
  373. * set to values of 0x00 through 0x0f for Ster1 through Ster16 */
  374. /* 0x05 - C5 - Control 1 in TDA9855 , Control 2 in TDA9850*/
  375. /* Unique to TDA9855: */
  376. #define TDA9855_MUTE 1<<7 /* GMU, Mute at outputs */
  377. #define TDA9855_AVL 1<<6 /* AVL, Automatic Volume Level */
  378. #define TDA9855_LOUD 1<<5 /* Loudness, 1==off */
  379. #define TDA9855_SUR 1<<3 /* Surround / Subwoofer 1==.5(L-R) 0==.5(L+R) */
  380. /* Bits 0 to 3 select various combinations
  381. * of line in and line out, only the
  382. * interesting ones are defined */
  383. #define TDA9855_EXT 1<<2 /* Selects inputs LIR and LIL. Pins 41 & 12 */
  384. #define TDA9855_INT 0 /* Selects inputs LOR and LOL. (internal) */
  385. /* Unique to TDA9850: */
  386. /* lower 4 bits contol SAP noise threshold, over which SAP turns off
  387. * set to values of 0x00 through 0x0f for SAP1 through SAP16 */
  388. /* 0x06 - C6 - Control 2 in TDA9855, Control 3 in TDA9850 */
  389. /* Common to TDA9855 and TDA9850: */
  390. #define TDA985x_SAP 3<<6 /* Selects SAP output, mute if not received */
  391. #define TDA985x_STEREO 1<<6 /* Selects Stereo ouput, mono if not received */
  392. #define TDA985x_MONO 0 /* Forces Mono output */
  393. #define TDA985x_LMU 1<<3 /* Mute (LOR/LOL for 9855, OUTL/OUTR for 9850) */
  394. /* Unique to TDA9855: */
  395. #define TDA9855_TZCM 1<<5 /* If set, don't mute till zero crossing */
  396. #define TDA9855_VZCM 1<<4 /* If set, don't change volume till zero crossing*/
  397. #define TDA9855_LINEAR 0 /* Linear Stereo */
  398. #define TDA9855_PSEUDO 1 /* Pseudo Stereo */
  399. #define TDA9855_SPAT_30 2 /* Spatial Stereo, 30% anti-phase crosstalk */
  400. #define TDA9855_SPAT_50 3 /* Spatial Stereo, 52% anti-phase crosstalk */
  401. #define TDA9855_E_MONO 7 /* Forced mono - mono select elseware, so useless*/
  402. /* 0x07 - C7 - Control 3 in TDA9855, Control 4 in TDA9850 */
  403. /* Common to both TDA9855 and TDA9850: */
  404. /* lower 4 bits control input gain from -3.5dB (0x0) to 4dB (0xF)
  405. * in .5dB steps - 0dB is 0x7 */
  406. /* 0x08, 0x09 - A1 and A2 (read/write) */
  407. /* Common to both TDA9855 and TDA9850: */
  408. /* lower 5 bites are wideband and spectral expander alignment
  409. * from 0x00 to 0x1f - nominal at 0x0f and 0x10 (read/write) */
  410. #define TDA985x_STP 1<<5 /* Stereo Pilot/detect (read-only) */
  411. #define TDA985x_SAPP 1<<6 /* SAP Pilot/detect (read-only) */
  412. #define TDA985x_STS 1<<7 /* Stereo trigger 1= <35mV 0= <30mV (write-only)*/
  413. /* 0x0a - A3 */
  414. /* Common to both TDA9855 and TDA9850: */
  415. /* lower 3 bits control timing current for alignment: -30% (0x0), -20% (0x1),
  416. * -10% (0x2), nominal (0x3), +10% (0x6), +20% (0x5), +30% (0x4) */
  417. #define TDA985x_ADJ 1<<7 /* Stereo adjust on/off (wideband and spectral */
  418. static int tda9855_volume(int val) { return val/0x2e8+0x27; }
  419. static int tda9855_bass(int val) { return val/0xccc+0x06; }
  420. static int tda9855_treble(int val) { return (val/0x1c71+0x3)<<1; }
  421. static int tda985x_getmode(struct CHIPSTATE *chip)
  422. {
  423. int mode;
  424. mode = ((TDA985x_STP | TDA985x_SAPP) &
  425. chip_read(chip)) >> 4;
  426. /* Add mono mode regardless of SAP and stereo */
  427. /* Allows forced mono */
  428. return mode | VIDEO_SOUND_MONO;
  429. }
  430. static void tda985x_setmode(struct CHIPSTATE *chip, int mode)
  431. {
  432. int update = 1;
  433. int c6 = chip->shadow.bytes[TDA985x_C6+1] & 0x3f;
  434. switch (mode) {
  435. case VIDEO_SOUND_MONO:
  436. c6 |= TDA985x_MONO;
  437. break;
  438. case VIDEO_SOUND_STEREO:
  439. c6 |= TDA985x_STEREO;
  440. break;
  441. case VIDEO_SOUND_LANG1:
  442. c6 |= TDA985x_SAP;
  443. break;
  444. default:
  445. update = 0;
  446. }
  447. if (update)
  448. chip_write(chip,TDA985x_C6,c6);
  449. }
  450. /* ---------------------------------------------------------------------- */
  451. /* audio chip descriptions - defines+functions for tda9873h */
  452. /* Subaddresses for TDA9873H */
  453. #define TDA9873_SW 0x00 /* Switching */
  454. #define TDA9873_AD 0x01 /* Adjust */
  455. #define TDA9873_PT 0x02 /* Port */
  456. /* Subaddress 0x00: Switching Data
  457. * B7..B0:
  458. *
  459. * B1, B0: Input source selection
  460. * 0, 0 internal
  461. * 1, 0 external stereo
  462. * 0, 1 external mono
  463. */
  464. #define TDA9873_INP_MASK 3
  465. #define TDA9873_INTERNAL 0
  466. #define TDA9873_EXT_STEREO 2
  467. #define TDA9873_EXT_MONO 1
  468. /* B3, B2: output signal select
  469. * B4 : transmission mode
  470. * 0, 0, 1 Mono
  471. * 1, 0, 0 Stereo
  472. * 1, 1, 1 Stereo (reversed channel)
  473. * 0, 0, 0 Dual AB
  474. * 0, 0, 1 Dual AA
  475. * 0, 1, 0 Dual BB
  476. * 0, 1, 1 Dual BA
  477. */
  478. #define TDA9873_TR_MASK (7 << 2)
  479. #define TDA9873_TR_MONO 4
  480. #define TDA9873_TR_STEREO 1 << 4
  481. #define TDA9873_TR_REVERSE (1 << 3) & (1 << 2)
  482. #define TDA9873_TR_DUALA 1 << 2
  483. #define TDA9873_TR_DUALB 1 << 3
  484. /* output level controls
  485. * B5: output level switch (0 = reduced gain, 1 = normal gain)
  486. * B6: mute (1 = muted)
  487. * B7: auto-mute (1 = auto-mute enabled)
  488. */
  489. #define TDA9873_GAIN_NORMAL 1 << 5
  490. #define TDA9873_MUTE 1 << 6
  491. #define TDA9873_AUTOMUTE 1 << 7
  492. /* Subaddress 0x01: Adjust/standard */
  493. /* Lower 4 bits (C3..C0) control stereo adjustment on R channel (-0.6 - +0.7 dB)
  494. * Recommended value is +0 dB
  495. */
  496. #define TDA9873_STEREO_ADJ 0x06 /* 0dB gain */
  497. /* Bits C6..C4 control FM stantard
  498. * C6, C5, C4
  499. * 0, 0, 0 B/G (PAL FM)
  500. * 0, 0, 1 M
  501. * 0, 1, 0 D/K(1)
  502. * 0, 1, 1 D/K(2)
  503. * 1, 0, 0 D/K(3)
  504. * 1, 0, 1 I
  505. */
  506. #define TDA9873_BG 0
  507. #define TDA9873_M 1
  508. #define TDA9873_DK1 2
  509. #define TDA9873_DK2 3
  510. #define TDA9873_DK3 4
  511. #define TDA9873_I 5
  512. /* C7 controls identification response time (1=fast/0=normal)
  513. */
  514. #define TDA9873_IDR_NORM 0
  515. #define TDA9873_IDR_FAST 1 << 7
  516. /* Subaddress 0x02: Port data */
  517. /* E1, E0 free programmable ports P1/P2
  518. 0, 0 both ports low
  519. 0, 1 P1 high
  520. 1, 0 P2 high
  521. 1, 1 both ports high
  522. */
  523. #define TDA9873_PORTS 3
  524. /* E2: test port */
  525. #define TDA9873_TST_PORT 1 << 2
  526. /* E5..E3 control mono output channel (together with transmission mode bit B4)
  527. *
  528. * E5 E4 E3 B4 OUTM
  529. * 0 0 0 0 mono
  530. * 0 0 1 0 DUAL B
  531. * 0 1 0 1 mono (from stereo decoder)
  532. */
  533. #define TDA9873_MOUT_MONO 0
  534. #define TDA9873_MOUT_FMONO 0
  535. #define TDA9873_MOUT_DUALA 0
  536. #define TDA9873_MOUT_DUALB 1 << 3
  537. #define TDA9873_MOUT_ST 1 << 4
  538. #define TDA9873_MOUT_EXTM (1 << 4 ) & (1 << 3)
  539. #define TDA9873_MOUT_EXTL 1 << 5
  540. #define TDA9873_MOUT_EXTR (1 << 5 ) & (1 << 3)
  541. #define TDA9873_MOUT_EXTLR (1 << 5 ) & (1 << 4)
  542. #define TDA9873_MOUT_MUTE (1 << 5 ) & (1 << 4) & (1 << 3)
  543. /* Status bits: (chip read) */
  544. #define TDA9873_PONR 0 /* Power-on reset detected if = 1 */
  545. #define TDA9873_STEREO 2 /* Stereo sound is identified */
  546. #define TDA9873_DUAL 4 /* Dual sound is identified */
  547. static int tda9873_getmode(struct CHIPSTATE *chip)
  548. {
  549. int val,mode;
  550. val = chip_read(chip);
  551. mode = VIDEO_SOUND_MONO;
  552. if (val & TDA9873_STEREO)
  553. mode |= VIDEO_SOUND_STEREO;
  554. if (val & TDA9873_DUAL)
  555. mode |= VIDEO_SOUND_LANG1 | VIDEO_SOUND_LANG2;
  556. tvaudio_dbg ("tda9873_getmode(): raw chip read: %d, return: %d\n",
  557. val, mode);
  558. return mode;
  559. }
  560. static void tda9873_setmode(struct CHIPSTATE *chip, int mode)
  561. {
  562. int sw_data = chip->shadow.bytes[TDA9873_SW+1] & ~ TDA9873_TR_MASK;
  563. /* int adj_data = chip->shadow.bytes[TDA9873_AD+1] ; */
  564. if ((sw_data & TDA9873_INP_MASK) != TDA9873_INTERNAL) {
  565. tvaudio_dbg("tda9873_setmode(): external input\n");
  566. return;
  567. }
  568. tvaudio_dbg("tda9873_setmode(): chip->shadow.bytes[%d] = %d\n", TDA9873_SW+1, chip->shadow.bytes[TDA9873_SW+1]);
  569. tvaudio_dbg("tda9873_setmode(): sw_data = %d\n", sw_data);
  570. switch (mode) {
  571. case VIDEO_SOUND_MONO:
  572. sw_data |= TDA9873_TR_MONO;
  573. break;
  574. case VIDEO_SOUND_STEREO:
  575. sw_data |= TDA9873_TR_STEREO;
  576. break;
  577. case VIDEO_SOUND_LANG1:
  578. sw_data |= TDA9873_TR_DUALA;
  579. break;
  580. case VIDEO_SOUND_LANG2:
  581. sw_data |= TDA9873_TR_DUALB;
  582. break;
  583. default:
  584. chip->mode = 0;
  585. return;
  586. }
  587. chip_write(chip, TDA9873_SW, sw_data);
  588. tvaudio_dbg("tda9873_setmode(): req. mode %d; chip_write: %d\n",
  589. mode, sw_data);
  590. }
  591. static int tda9873_checkit(struct CHIPSTATE *chip)
  592. {
  593. int rc;
  594. if (-1 == (rc = chip_read2(chip,254)))
  595. return 0;
  596. return (rc & ~0x1f) == 0x80;
  597. }
  598. /* ---------------------------------------------------------------------- */
  599. /* audio chip description - defines+functions for tda9874h and tda9874a */
  600. /* Dariusz Kowalewski <darekk@automex.pl> */
  601. /* Subaddresses for TDA9874H and TDA9874A (slave rx) */
  602. #define TDA9874A_AGCGR 0x00 /* AGC gain */
  603. #define TDA9874A_GCONR 0x01 /* general config */
  604. #define TDA9874A_MSR 0x02 /* monitor select */
  605. #define TDA9874A_C1FRA 0x03 /* carrier 1 freq. */
  606. #define TDA9874A_C1FRB 0x04 /* carrier 1 freq. */
  607. #define TDA9874A_C1FRC 0x05 /* carrier 1 freq. */
  608. #define TDA9874A_C2FRA 0x06 /* carrier 2 freq. */
  609. #define TDA9874A_C2FRB 0x07 /* carrier 2 freq. */
  610. #define TDA9874A_C2FRC 0x08 /* carrier 2 freq. */
  611. #define TDA9874A_DCR 0x09 /* demodulator config */
  612. #define TDA9874A_FMER 0x0a /* FM de-emphasis */
  613. #define TDA9874A_FMMR 0x0b /* FM dematrix */
  614. #define TDA9874A_C1OLAR 0x0c /* ch.1 output level adj. */
  615. #define TDA9874A_C2OLAR 0x0d /* ch.2 output level adj. */
  616. #define TDA9874A_NCONR 0x0e /* NICAM config */
  617. #define TDA9874A_NOLAR 0x0f /* NICAM output level adj. */
  618. #define TDA9874A_NLELR 0x10 /* NICAM lower error limit */
  619. #define TDA9874A_NUELR 0x11 /* NICAM upper error limit */
  620. #define TDA9874A_AMCONR 0x12 /* audio mute control */
  621. #define TDA9874A_SDACOSR 0x13 /* stereo DAC output select */
  622. #define TDA9874A_AOSR 0x14 /* analog output select */
  623. #define TDA9874A_DAICONR 0x15 /* digital audio interface config */
  624. #define TDA9874A_I2SOSR 0x16 /* I2S-bus output select */
  625. #define TDA9874A_I2SOLAR 0x17 /* I2S-bus output level adj. */
  626. #define TDA9874A_MDACOSR 0x18 /* mono DAC output select (tda9874a) */
  627. #define TDA9874A_ESP 0xFF /* easy standard progr. (tda9874a) */
  628. /* Subaddresses for TDA9874H and TDA9874A (slave tx) */
  629. #define TDA9874A_DSR 0x00 /* device status */
  630. #define TDA9874A_NSR 0x01 /* NICAM status */
  631. #define TDA9874A_NECR 0x02 /* NICAM error count */
  632. #define TDA9874A_DR1 0x03 /* add. data LSB */
  633. #define TDA9874A_DR2 0x04 /* add. data MSB */
  634. #define TDA9874A_LLRA 0x05 /* monitor level read-out LSB */
  635. #define TDA9874A_LLRB 0x06 /* monitor level read-out MSB */
  636. #define TDA9874A_SIFLR 0x07 /* SIF level */
  637. #define TDA9874A_TR2 252 /* test reg. 2 */
  638. #define TDA9874A_TR1 253 /* test reg. 1 */
  639. #define TDA9874A_DIC 254 /* device id. code */
  640. #define TDA9874A_SIC 255 /* software id. code */
  641. static int tda9874a_mode = 1; /* 0: A2, 1: NICAM */
  642. static int tda9874a_GCONR = 0xc0; /* default config. input pin: SIFSEL=0 */
  643. static int tda9874a_NCONR = 0x01; /* default NICAM config.: AMSEL=0,AMUTE=1 */
  644. static int tda9874a_ESP = 0x07; /* default standard: NICAM D/K */
  645. static int tda9874a_dic = -1; /* device id. code */
  646. /* insmod options for tda9874a */
  647. static unsigned int tda9874a_SIF = UNSET;
  648. static unsigned int tda9874a_AMSEL = UNSET;
  649. static unsigned int tda9874a_STD = UNSET;
  650. module_param(tda9874a_SIF, int, 0444);
  651. module_param(tda9874a_AMSEL, int, 0444);
  652. module_param(tda9874a_STD, int, 0444);
  653. /*
  654. * initialization table for tda9874 decoder:
  655. * - carrier 1 freq. registers (3 bytes)
  656. * - carrier 2 freq. registers (3 bytes)
  657. * - demudulator config register
  658. * - FM de-emphasis register (slow identification mode)
  659. * Note: frequency registers must be written in single i2c transfer.
  660. */
  661. static struct tda9874a_MODES {
  662. char *name;
  663. audiocmd cmd;
  664. } tda9874a_modelist[9] = {
  665. { "A2, B/G",
  666. { 9, { TDA9874A_C1FRA, 0x72,0x95,0x55, 0x77,0xA0,0x00, 0x00,0x00 }} },
  667. { "A2, M (Korea)",
  668. { 9, { TDA9874A_C1FRA, 0x5D,0xC0,0x00, 0x62,0x6A,0xAA, 0x20,0x22 }} },
  669. { "A2, D/K (1)",
  670. { 9, { TDA9874A_C1FRA, 0x87,0x6A,0xAA, 0x82,0x60,0x00, 0x00,0x00 }} },
  671. { "A2, D/K (2)",
  672. { 9, { TDA9874A_C1FRA, 0x87,0x6A,0xAA, 0x8C,0x75,0x55, 0x00,0x00 }} },
  673. { "A2, D/K (3)",
  674. { 9, { TDA9874A_C1FRA, 0x87,0x6A,0xAA, 0x77,0xA0,0x00, 0x00,0x00 }} },
  675. { "NICAM, I",
  676. { 9, { TDA9874A_C1FRA, 0x7D,0x00,0x00, 0x88,0x8A,0xAA, 0x08,0x33 }} },
  677. { "NICAM, B/G",
  678. { 9, { TDA9874A_C1FRA, 0x72,0x95,0x55, 0x79,0xEA,0xAA, 0x08,0x33 }} },
  679. { "NICAM, D/K", /* default */
  680. { 9, { TDA9874A_C1FRA, 0x87,0x6A,0xAA, 0x79,0xEA,0xAA, 0x08,0x33 }} },
  681. { "NICAM, L",
  682. { 9, { TDA9874A_C1FRA, 0x87,0x6A,0xAA, 0x79,0xEA,0xAA, 0x09,0x33 }} }
  683. };
  684. static int tda9874a_setup(struct CHIPSTATE *chip)
  685. {
  686. chip_write(chip, TDA9874A_AGCGR, 0x00); /* 0 dB */
  687. chip_write(chip, TDA9874A_GCONR, tda9874a_GCONR);
  688. chip_write(chip, TDA9874A_MSR, (tda9874a_mode) ? 0x03:0x02);
  689. if(tda9874a_dic == 0x11) {
  690. chip_write(chip, TDA9874A_FMMR, 0x80);
  691. } else { /* dic == 0x07 */
  692. chip_cmd(chip,"tda9874_modelist",&tda9874a_modelist[tda9874a_STD].cmd);
  693. chip_write(chip, TDA9874A_FMMR, 0x00);
  694. }
  695. chip_write(chip, TDA9874A_C1OLAR, 0x00); /* 0 dB */
  696. chip_write(chip, TDA9874A_C2OLAR, 0x00); /* 0 dB */
  697. chip_write(chip, TDA9874A_NCONR, tda9874a_NCONR);
  698. chip_write(chip, TDA9874A_NOLAR, 0x00); /* 0 dB */
  699. /* Note: If signal quality is poor you may want to change NICAM */
  700. /* error limit registers (NLELR and NUELR) to some greater values. */
  701. /* Then the sound would remain stereo, but won't be so clear. */
  702. chip_write(chip, TDA9874A_NLELR, 0x14); /* default */
  703. chip_write(chip, TDA9874A_NUELR, 0x50); /* default */
  704. if(tda9874a_dic == 0x11) {
  705. chip_write(chip, TDA9874A_AMCONR, 0xf9);
  706. chip_write(chip, TDA9874A_SDACOSR, (tda9874a_mode) ? 0x81:0x80);
  707. chip_write(chip, TDA9874A_AOSR, 0x80);
  708. chip_write(chip, TDA9874A_MDACOSR, (tda9874a_mode) ? 0x82:0x80);
  709. chip_write(chip, TDA9874A_ESP, tda9874a_ESP);
  710. } else { /* dic == 0x07 */
  711. chip_write(chip, TDA9874A_AMCONR, 0xfb);
  712. chip_write(chip, TDA9874A_SDACOSR, (tda9874a_mode) ? 0x81:0x80);
  713. chip_write(chip, TDA9874A_AOSR, 0x00); /* or 0x10 */
  714. }
  715. tvaudio_dbg("tda9874a_setup(): %s [0x%02X].\n",
  716. tda9874a_modelist[tda9874a_STD].name,tda9874a_STD);
  717. return 1;
  718. }
  719. static int tda9874a_getmode(struct CHIPSTATE *chip)
  720. {
  721. int dsr,nsr,mode;
  722. int necr; /* just for debugging */
  723. mode = VIDEO_SOUND_MONO;
  724. if(-1 == (dsr = chip_read2(chip,TDA9874A_DSR)))
  725. return mode;
  726. if(-1 == (nsr = chip_read2(chip,TDA9874A_NSR)))
  727. return mode;
  728. if(-1 == (necr = chip_read2(chip,TDA9874A_NECR)))
  729. return mode;
  730. /* need to store dsr/nsr somewhere */
  731. chip->shadow.bytes[MAXREGS-2] = dsr;
  732. chip->shadow.bytes[MAXREGS-1] = nsr;
  733. if(tda9874a_mode) {
  734. /* Note: DSR.RSSF and DSR.AMSTAT bits are also checked.
  735. * If NICAM auto-muting is enabled, DSR.AMSTAT=1 indicates
  736. * that sound has (temporarily) switched from NICAM to
  737. * mono FM (or AM) on 1st sound carrier due to high NICAM bit
  738. * error count. So in fact there is no stereo in this case :-(
  739. * But changing the mode to VIDEO_SOUND_MONO would switch
  740. * external 4052 multiplexer in audio_hook().
  741. */
  742. if(nsr & 0x02) /* NSR.S/MB=1 */
  743. mode |= VIDEO_SOUND_STEREO;
  744. if(nsr & 0x01) /* NSR.D/SB=1 */
  745. mode |= VIDEO_SOUND_LANG1 | VIDEO_SOUND_LANG2;
  746. } else {
  747. if(dsr & 0x02) /* DSR.IDSTE=1 */
  748. mode |= VIDEO_SOUND_STEREO;
  749. if(dsr & 0x04) /* DSR.IDDUA=1 */
  750. mode |= VIDEO_SOUND_LANG1 | VIDEO_SOUND_LANG2;
  751. }
  752. tvaudio_dbg("tda9874a_getmode(): DSR=0x%X, NSR=0x%X, NECR=0x%X, return: %d.\n",
  753. dsr, nsr, necr, mode);
  754. return mode;
  755. }
  756. static void tda9874a_setmode(struct CHIPSTATE *chip, int mode)
  757. {
  758. /* Disable/enable NICAM auto-muting (based on DSR.RSSF status bit). */
  759. /* If auto-muting is disabled, we can hear a signal of degrading quality. */
  760. if(tda9874a_mode) {
  761. if(chip->shadow.bytes[MAXREGS-2] & 0x20) /* DSR.RSSF=1 */
  762. tda9874a_NCONR &= 0xfe; /* enable */
  763. else
  764. tda9874a_NCONR |= 0x01; /* disable */
  765. chip_write(chip, TDA9874A_NCONR, tda9874a_NCONR);
  766. }
  767. /* Note: TDA9874A supports automatic FM dematrixing (FMMR register)
  768. * and has auto-select function for audio output (AOSR register).
  769. * Old TDA9874H doesn't support these features.
  770. * TDA9874A also has additional mono output pin (OUTM), which
  771. * on same (all?) tv-cards is not used, anyway (as well as MONOIN).
  772. */
  773. if(tda9874a_dic == 0x11) {
  774. int aosr = 0x80;
  775. int mdacosr = (tda9874a_mode) ? 0x82:0x80;
  776. switch(mode) {
  777. case VIDEO_SOUND_MONO:
  778. case VIDEO_SOUND_STEREO:
  779. break;
  780. case VIDEO_SOUND_LANG1:
  781. aosr = 0x80; /* auto-select, dual A/A */
  782. mdacosr = (tda9874a_mode) ? 0x82:0x80;
  783. break;
  784. case VIDEO_SOUND_LANG2:
  785. aosr = 0xa0; /* auto-select, dual B/B */
  786. mdacosr = (tda9874a_mode) ? 0x83:0x81;
  787. break;
  788. default:
  789. chip->mode = 0;
  790. return;
  791. }
  792. chip_write(chip, TDA9874A_AOSR, aosr);
  793. chip_write(chip, TDA9874A_MDACOSR, mdacosr);
  794. tvaudio_dbg("tda9874a_setmode(): req. mode %d; AOSR=0x%X, MDACOSR=0x%X.\n",
  795. mode, aosr, mdacosr);
  796. } else { /* dic == 0x07 */
  797. int fmmr,aosr;
  798. switch(mode) {
  799. case VIDEO_SOUND_MONO:
  800. fmmr = 0x00; /* mono */
  801. aosr = 0x10; /* A/A */
  802. break;
  803. case VIDEO_SOUND_STEREO:
  804. if(tda9874a_mode) {
  805. fmmr = 0x00;
  806. aosr = 0x00; /* handled by NICAM auto-mute */
  807. } else {
  808. fmmr = (tda9874a_ESP == 1) ? 0x05 : 0x04; /* stereo */
  809. aosr = 0x00;
  810. }
  811. break;
  812. case VIDEO_SOUND_LANG1:
  813. fmmr = 0x02; /* dual */
  814. aosr = 0x10; /* dual A/A */
  815. break;
  816. case VIDEO_SOUND_LANG2:
  817. fmmr = 0x02; /* dual */
  818. aosr = 0x20; /* dual B/B */
  819. break;
  820. default:
  821. chip->mode = 0;
  822. return;
  823. }
  824. chip_write(chip, TDA9874A_FMMR, fmmr);
  825. chip_write(chip, TDA9874A_AOSR, aosr);
  826. tvaudio_dbg("tda9874a_setmode(): req. mode %d; FMMR=0x%X, AOSR=0x%X.\n",
  827. mode, fmmr, aosr);
  828. }
  829. }
  830. static int tda9874a_checkit(struct CHIPSTATE *chip)
  831. {
  832. int dic,sic; /* device id. and software id. codes */
  833. if(-1 == (dic = chip_read2(chip,TDA9874A_DIC)))
  834. return 0;
  835. if(-1 == (sic = chip_read2(chip,TDA9874A_SIC)))
  836. return 0;
  837. tvaudio_dbg("tda9874a_checkit(): DIC=0x%X, SIC=0x%X.\n", dic, sic);
  838. if((dic == 0x11)||(dic == 0x07)) {
  839. tvaudio_info("found tda9874%s.\n", (dic == 0x11) ? "a":"h");
  840. tda9874a_dic = dic; /* remember device id. */
  841. return 1;
  842. }
  843. return 0; /* not found */
  844. }
  845. static int tda9874a_initialize(struct CHIPSTATE *chip)
  846. {
  847. if (tda9874a_SIF > 2)
  848. tda9874a_SIF = 1;
  849. if (tda9874a_STD > 8)
  850. tda9874a_STD = 0;
  851. if(tda9874a_AMSEL > 1)
  852. tda9874a_AMSEL = 0;
  853. if(tda9874a_SIF == 1)
  854. tda9874a_GCONR = 0xc0; /* sound IF input 1 */
  855. else
  856. tda9874a_GCONR = 0xc1; /* sound IF input 2 */
  857. tda9874a_ESP = tda9874a_STD;
  858. tda9874a_mode = (tda9874a_STD < 5) ? 0 : 1;
  859. if(tda9874a_AMSEL == 0)
  860. tda9874a_NCONR = 0x01; /* auto-mute: analog mono input */
  861. else
  862. tda9874a_NCONR = 0x05; /* auto-mute: 1st carrier FM or AM */
  863. tda9874a_setup(chip);
  864. return 0;
  865. }
  866. /* ---------------------------------------------------------------------- */
  867. /* audio chip descriptions - defines+functions for tea6420 */
  868. #define TEA6300_VL 0x00 /* volume left */
  869. #define TEA6300_VR 0x01 /* volume right */
  870. #define TEA6300_BA 0x02 /* bass */
  871. #define TEA6300_TR 0x03 /* treble */
  872. #define TEA6300_FA 0x04 /* fader control */
  873. #define TEA6300_S 0x05 /* switch register */
  874. /* values for those registers: */
  875. #define TEA6300_S_SA 0x01 /* stereo A input */
  876. #define TEA6300_S_SB 0x02 /* stereo B */
  877. #define TEA6300_S_SC 0x04 /* stereo C */
  878. #define TEA6300_S_GMU 0x80 /* general mute */
  879. #define TEA6320_V 0x00 /* volume (0-5)/loudness off (6)/zero crossing mute(7) */
  880. #define TEA6320_FFR 0x01 /* fader front right (0-5) */
  881. #define TEA6320_FFL 0x02 /* fader front left (0-5) */
  882. #define TEA6320_FRR 0x03 /* fader rear right (0-5) */
  883. #define TEA6320_FRL 0x04 /* fader rear left (0-5) */
  884. #define TEA6320_BA 0x05 /* bass (0-4) */
  885. #define TEA6320_TR 0x06 /* treble (0-4) */
  886. #define TEA6320_S 0x07 /* switch register */
  887. /* values for those registers: */
  888. #define TEA6320_S_SA 0x07 /* stereo A input */
  889. #define TEA6320_S_SB 0x06 /* stereo B */
  890. #define TEA6320_S_SC 0x05 /* stereo C */
  891. #define TEA6320_S_SD 0x04 /* stereo D */
  892. #define TEA6320_S_GMU 0x80 /* general mute */
  893. #define TEA6420_S_SA 0x00 /* stereo A input */
  894. #define TEA6420_S_SB 0x01 /* stereo B */
  895. #define TEA6420_S_SC 0x02 /* stereo C */
  896. #define TEA6420_S_SD 0x03 /* stereo D */
  897. #define TEA6420_S_SE 0x04 /* stereo E */
  898. #define TEA6420_S_GMU 0x05 /* general mute */
  899. static int tea6300_shift10(int val) { return val >> 10; }
  900. static int tea6300_shift12(int val) { return val >> 12; }
  901. /* Assumes 16bit input (values 0x3f to 0x0c are unique, values less than */
  902. /* 0x0c mirror those immediately higher) */
  903. static int tea6320_volume(int val) { return (val / (65535/(63-12)) + 12) & 0x3f; }
  904. static int tea6320_shift11(int val) { return val >> 11; }
  905. static int tea6320_initialize(struct CHIPSTATE * chip)
  906. {
  907. chip_write(chip, TEA6320_FFR, 0x3f);
  908. chip_write(chip, TEA6320_FFL, 0x3f);
  909. chip_write(chip, TEA6320_FRR, 0x3f);
  910. chip_write(chip, TEA6320_FRL, 0x3f);
  911. return 0;
  912. }
  913. /* ---------------------------------------------------------------------- */
  914. /* audio chip descriptions - defines+functions for tda8425 */
  915. #define TDA8425_VL 0x00 /* volume left */
  916. #define TDA8425_VR 0x01 /* volume right */
  917. #define TDA8425_BA 0x02 /* bass */
  918. #define TDA8425_TR 0x03 /* treble */
  919. #define TDA8425_S1 0x08 /* switch functions */
  920. /* values for those registers: */
  921. #define TDA8425_S1_OFF 0xEE /* audio off (mute on) */
  922. #define TDA8425_S1_CH1 0xCE /* audio channel 1 (mute off) - "linear stereo" mode */
  923. #define TDA8425_S1_CH2 0xCF /* audio channel 2 (mute off) - "linear stereo" mode */
  924. #define TDA8425_S1_MU 0x20 /* mute bit */
  925. #define TDA8425_S1_STEREO 0x18 /* stereo bits */
  926. #define TDA8425_S1_STEREO_SPATIAL 0x18 /* spatial stereo */
  927. #define TDA8425_S1_STEREO_LINEAR 0x08 /* linear stereo */
  928. #define TDA8425_S1_STEREO_PSEUDO 0x10 /* pseudo stereo */
  929. #define TDA8425_S1_STEREO_MONO 0x00 /* forced mono */
  930. #define TDA8425_S1_ML 0x06 /* language selector */
  931. #define TDA8425_S1_ML_SOUND_A 0x02 /* sound a */
  932. #define TDA8425_S1_ML_SOUND_B 0x04 /* sound b */
  933. #define TDA8425_S1_ML_STEREO 0x06 /* stereo */
  934. #define TDA8425_S1_IS 0x01 /* channel selector */
  935. static int tda8425_shift10(int val) { return (val >> 10) | 0xc0; }
  936. static int tda8425_shift12(int val) { return (val >> 12) | 0xf0; }
  937. static int tda8425_initialize(struct CHIPSTATE *chip)
  938. {
  939. struct CHIPDESC *desc = chiplist + chip->type;
  940. int inputmap[8] = { /* tuner */ TDA8425_S1_CH2, /* radio */ TDA8425_S1_CH1,
  941. /* extern */ TDA8425_S1_CH1, /* intern */ TDA8425_S1_OFF,
  942. /* off */ TDA8425_S1_OFF, /* on */ TDA8425_S1_CH2};
  943. if (chip->c.adapter->id == I2C_HW_B_RIVA) {
  944. memcpy (desc->inputmap, inputmap, sizeof (inputmap));
  945. }
  946. return 0;
  947. }
  948. static void tda8425_setmode(struct CHIPSTATE *chip, int mode)
  949. {
  950. int s1 = chip->shadow.bytes[TDA8425_S1+1] & 0xe1;
  951. if (mode & VIDEO_SOUND_LANG1) {
  952. s1 |= TDA8425_S1_ML_SOUND_A;
  953. s1 |= TDA8425_S1_STEREO_PSEUDO;
  954. } else if (mode & VIDEO_SOUND_LANG2) {
  955. s1 |= TDA8425_S1_ML_SOUND_B;
  956. s1 |= TDA8425_S1_STEREO_PSEUDO;
  957. } else {
  958. s1 |= TDA8425_S1_ML_STEREO;
  959. if (mode & VIDEO_SOUND_MONO)
  960. s1 |= TDA8425_S1_STEREO_MONO;
  961. if (mode & VIDEO_SOUND_STEREO)
  962. s1 |= TDA8425_S1_STEREO_SPATIAL;
  963. }
  964. chip_write(chip,TDA8425_S1,s1);
  965. }
  966. /* ---------------------------------------------------------------------- */
  967. /* audio chip descriptions - defines+functions for pic16c54 (PV951) */
  968. /* the registers of 16C54, I2C sub address. */
  969. #define PIC16C54_REG_KEY_CODE 0x01 /* Not use. */
  970. #define PIC16C54_REG_MISC 0x02
  971. /* bit definition of the RESET register, I2C data. */
  972. #define PIC16C54_MISC_RESET_REMOTE_CTL 0x01 /* bit 0, Reset to receive the key */
  973. /* code of remote controller */
  974. #define PIC16C54_MISC_MTS_MAIN 0x02 /* bit 1 */
  975. #define PIC16C54_MISC_MTS_SAP 0x04 /* bit 2 */
  976. #define PIC16C54_MISC_MTS_BOTH 0x08 /* bit 3 */
  977. #define PIC16C54_MISC_SND_MUTE 0x10 /* bit 4, Mute Audio(Line-in and Tuner) */
  978. #define PIC16C54_MISC_SND_NOTMUTE 0x20 /* bit 5 */
  979. #define PIC16C54_MISC_SWITCH_TUNER 0x40 /* bit 6 , Switch to Line-in */
  980. #define PIC16C54_MISC_SWITCH_LINE 0x80 /* bit 7 , Switch to Tuner */
  981. /* ---------------------------------------------------------------------- */
  982. /* audio chip descriptions - defines+functions for TA8874Z */
  983. /* write 1st byte */
  984. #define TA8874Z_LED_STE 0x80
  985. #define TA8874Z_LED_BIL 0x40
  986. #define TA8874Z_LED_EXT 0x20
  987. #define TA8874Z_MONO_SET 0x10
  988. #define TA8874Z_MUTE 0x08
  989. #define TA8874Z_F_MONO 0x04
  990. #define TA8874Z_MODE_SUB 0x02
  991. #define TA8874Z_MODE_MAIN 0x01
  992. /* write 2nd byte */
  993. /*#define TA8874Z_TI 0x80 */ /* test mode */
  994. #define TA8874Z_SEPARATION 0x3f
  995. #define TA8874Z_SEPARATION_DEFAULT 0x10
  996. /* read */
  997. #define TA8874Z_B1 0x80
  998. #define TA8874Z_B0 0x40
  999. #define TA8874Z_CHAG_FLAG 0x20
  1000. /*
  1001. * B1 B0
  1002. * mono L H
  1003. * stereo L L
  1004. * BIL H L
  1005. */
  1006. static int ta8874z_getmode(struct CHIPSTATE *chip)
  1007. {
  1008. int val, mode;
  1009. val = chip_read(chip);
  1010. mode = VIDEO_SOUND_MONO;
  1011. if (val & TA8874Z_B1){
  1012. mode |= VIDEO_SOUND_LANG1 | VIDEO_SOUND_LANG2;
  1013. }else if (!(val & TA8874Z_B0)){
  1014. mode |= VIDEO_SOUND_STEREO;
  1015. }
  1016. /* tvaudio_dbg ("ta8874z_getmode(): raw chip read: 0x%02x, return: 0x%02x\n", val, mode); */
  1017. return mode;
  1018. }
  1019. static audiocmd ta8874z_stereo = { 2, {0, TA8874Z_SEPARATION_DEFAULT}};
  1020. static audiocmd ta8874z_mono = {2, { TA8874Z_MONO_SET, TA8874Z_SEPARATION_DEFAULT}};
  1021. static audiocmd ta8874z_main = {2, { 0, TA8874Z_SEPARATION_DEFAULT}};
  1022. static audiocmd ta8874z_sub = {2, { TA8874Z_MODE_SUB, TA8874Z_SEPARATION_DEFAULT}};
  1023. static void ta8874z_setmode(struct CHIPSTATE *chip, int mode)
  1024. {
  1025. int update = 1;
  1026. audiocmd *t = NULL;
  1027. tvaudio_dbg("ta8874z_setmode(): mode: 0x%02x\n", mode);
  1028. switch(mode){
  1029. case VIDEO_SOUND_MONO:
  1030. t = &ta8874z_mono;
  1031. break;
  1032. case VIDEO_SOUND_STEREO:
  1033. t = &ta8874z_stereo;
  1034. break;
  1035. case VIDEO_SOUND_LANG1:
  1036. t = &ta8874z_main;
  1037. break;
  1038. case VIDEO_SOUND_LANG2:
  1039. t = &ta8874z_sub;
  1040. break;
  1041. default:
  1042. update = 0;
  1043. }
  1044. if(update)
  1045. chip_cmd(chip, "TA8874Z", t);
  1046. }
  1047. static int ta8874z_checkit(struct CHIPSTATE *chip)
  1048. {
  1049. int rc;
  1050. rc = chip_read(chip);
  1051. return ((rc & 0x1f) == 0x1f) ? 1 : 0;
  1052. }
  1053. /* ---------------------------------------------------------------------- */
  1054. /* audio chip descriptions - struct CHIPDESC */
  1055. /* insmod options to enable/disable individual audio chips */
  1056. static int tda8425 = 1;
  1057. static int tda9840 = 1;
  1058. static int tda9850 = 1;
  1059. static int tda9855 = 1;
  1060. static int tda9873 = 1;
  1061. static int tda9874a = 1;
  1062. static int tea6300 = 0; /* address clash with msp34xx */
  1063. static int tea6320 = 0; /* address clash with msp34xx */
  1064. static int tea6420 = 1;
  1065. static int pic16c54 = 1;
  1066. static int ta8874z = 0; /* address clash with tda9840 */
  1067. module_param(tda8425, int, 0444);
  1068. module_param(tda9840, int, 0444);
  1069. module_param(tda9850, int, 0444);
  1070. module_param(tda9855, int, 0444);
  1071. module_param(tda9873, int, 0444);
  1072. module_param(tda9874a, int, 0444);
  1073. module_param(tea6300, int, 0444);
  1074. module_param(tea6320, int, 0444);
  1075. module_param(tea6420, int, 0444);
  1076. module_param(pic16c54, int, 0444);
  1077. module_param(ta8874z, int, 0444);
  1078. static struct CHIPDESC chiplist[] = {
  1079. {
  1080. .name = "tda9840",
  1081. .id = I2C_DRIVERID_TDA9840,
  1082. .insmodopt = &tda9840,
  1083. .addr_lo = I2C_TDA9840 >> 1,
  1084. .addr_hi = I2C_TDA9840 >> 1,
  1085. .registers = 5,
  1086. .getmode = tda9840_getmode,
  1087. .setmode = tda9840_setmode,
  1088. .checkmode = generic_checkmode,
  1089. .init = { 2, { TDA9840_TEST, TDA9840_TEST_INT1SN
  1090. /* ,TDA9840_SW, TDA9840_MONO */} }
  1091. },
  1092. {
  1093. .name = "tda9873h",
  1094. .id = I2C_DRIVERID_TDA9873,
  1095. .checkit = tda9873_checkit,
  1096. .insmodopt = &tda9873,
  1097. .addr_lo = I2C_TDA985x_L >> 1,
  1098. .addr_hi = I2C_TDA985x_H >> 1,
  1099. .registers = 3,
  1100. .flags = CHIP_HAS_INPUTSEL,
  1101. .getmode = tda9873_getmode,
  1102. .setmode = tda9873_setmode,
  1103. .checkmode = generic_checkmode,
  1104. .init = { 4, { TDA9873_SW, 0xa4, 0x06, 0x03 } },
  1105. .inputreg = TDA9873_SW,
  1106. .inputmute = TDA9873_MUTE | TDA9873_AUTOMUTE,
  1107. .inputmap = {0xa0, 0xa2, 0xa0, 0xa0, 0xc0},
  1108. .inputmask = TDA9873_INP_MASK|TDA9873_MUTE|TDA9873_AUTOMUTE,
  1109. },
  1110. {
  1111. .name = "tda9874h/a",
  1112. .id = I2C_DRIVERID_TDA9874,
  1113. .checkit = tda9874a_checkit,
  1114. .initialize = tda9874a_initialize,
  1115. .insmodopt = &tda9874a,
  1116. .addr_lo = I2C_TDA9874 >> 1,
  1117. .addr_hi = I2C_TDA9874 >> 1,
  1118. .getmode = tda9874a_getmode,
  1119. .setmode = tda9874a_setmode,
  1120. .checkmode = generic_checkmode,
  1121. },
  1122. {
  1123. .name = "tda9850",
  1124. .id = I2C_DRIVERID_TDA9850,
  1125. .insmodopt = &tda9850,
  1126. .addr_lo = I2C_TDA985x_L >> 1,
  1127. .addr_hi = I2C_TDA985x_H >> 1,
  1128. .registers = 11,
  1129. .getmode = tda985x_getmode,
  1130. .setmode = tda985x_setmode,
  1131. .init = { 8, { TDA9850_C4, 0x08, 0x08, TDA985x_STEREO, 0x07, 0x10, 0x10, 0x03 } }
  1132. },
  1133. {
  1134. .name = "tda9855",
  1135. .id = I2C_DRIVERID_TDA9855,
  1136. .insmodopt = &tda9855,
  1137. .addr_lo = I2C_TDA985x_L >> 1,
  1138. .addr_hi = I2C_TDA985x_H >> 1,
  1139. .registers = 11,
  1140. .flags = CHIP_HAS_VOLUME | CHIP_HAS_BASSTREBLE,
  1141. .leftreg = TDA9855_VL,
  1142. .rightreg = TDA9855_VR,
  1143. .bassreg = TDA9855_BA,
  1144. .treblereg = TDA9855_TR,
  1145. .volfunc = tda9855_volume,
  1146. .bassfunc = tda9855_bass,
  1147. .treblefunc = tda9855_treble,
  1148. .getmode = tda985x_getmode,
  1149. .setmode = tda985x_setmode,
  1150. .init = { 12, { 0, 0x6f, 0x6f, 0x0e, 0x07<<1, 0x8<<2,
  1151. TDA9855_MUTE | TDA9855_AVL | TDA9855_LOUD | TDA9855_INT,
  1152. TDA985x_STEREO | TDA9855_LINEAR | TDA9855_TZCM | TDA9855_VZCM,
  1153. 0x07, 0x10, 0x10, 0x03 }}
  1154. },
  1155. {
  1156. .name = "tea6300",
  1157. .id = I2C_DRIVERID_TEA6300,
  1158. .insmodopt = &tea6300,
  1159. .addr_lo = I2C_TEA6300 >> 1,
  1160. .addr_hi = I2C_TEA6300 >> 1,
  1161. .registers = 6,
  1162. .flags = CHIP_HAS_VOLUME | CHIP_HAS_BASSTREBLE | CHIP_HAS_INPUTSEL,
  1163. .leftreg = TEA6300_VR,
  1164. .rightreg = TEA6300_VL,
  1165. .bassreg = TEA6300_BA,
  1166. .treblereg = TEA6300_TR,
  1167. .volfunc = tea6300_shift10,
  1168. .bassfunc = tea6300_shift12,
  1169. .treblefunc = tea6300_shift12,
  1170. .inputreg = TEA6300_S,
  1171. .inputmap = { TEA6300_S_SA, TEA6300_S_SB, TEA6300_S_SC },
  1172. .inputmute = TEA6300_S_GMU,
  1173. },
  1174. {
  1175. .name = "tea6320",
  1176. .id = I2C_DRIVERID_TEA6300,
  1177. .initialize = tea6320_initialize,
  1178. .insmodopt = &tea6320,
  1179. .addr_lo = I2C_TEA6300 >> 1,
  1180. .addr_hi = I2C_TEA6300 >> 1,
  1181. .registers = 8,
  1182. .flags = CHIP_HAS_VOLUME | CHIP_HAS_BASSTREBLE | CHIP_HAS_INPUTSEL,
  1183. .leftreg = TEA6320_V,
  1184. .rightreg = TEA6320_V,
  1185. .bassreg = TEA6320_BA,
  1186. .treblereg = TEA6320_TR,
  1187. .volfunc = tea6320_volume,
  1188. .bassfunc = tea6320_shift11,
  1189. .treblefunc = tea6320_shift11,
  1190. .inputreg = TEA6320_S,
  1191. .inputmap = { TEA6320_S_SA, TEA6420_S_SB, TEA6300_S_SC, TEA6320_S_SD },
  1192. .inputmute = TEA6300_S_GMU,
  1193. },
  1194. {
  1195. .name = "tea6420",
  1196. .id = I2C_DRIVERID_TEA6420,
  1197. .insmodopt = &tea6420,
  1198. .addr_lo = I2C_TEA6420 >> 1,
  1199. .addr_hi = I2C_TEA6420 >> 1,
  1200. .registers = 1,
  1201. .flags = CHIP_HAS_INPUTSEL,
  1202. .inputreg = -1,
  1203. .inputmap = { TEA6420_S_SA, TEA6420_S_SB, TEA6420_S_SC },
  1204. .inputmute = TEA6300_S_GMU,
  1205. },
  1206. {
  1207. .name = "tda8425",
  1208. .id = I2C_DRIVERID_TDA8425,
  1209. .insmodopt = &tda8425,
  1210. .addr_lo = I2C_TDA8425 >> 1,
  1211. .addr_hi = I2C_TDA8425 >> 1,
  1212. .registers = 9,
  1213. .flags = CHIP_HAS_VOLUME | CHIP_HAS_BASSTREBLE | CHIP_HAS_INPUTSEL,
  1214. .leftreg = TDA8425_VL,
  1215. .rightreg = TDA8425_VR,
  1216. .bassreg = TDA8425_BA,
  1217. .treblereg = TDA8425_TR,
  1218. .volfunc = tda8425_shift10,
  1219. .bassfunc = tda8425_shift12,
  1220. .treblefunc = tda8425_shift12,
  1221. .inputreg = TDA8425_S1,
  1222. .inputmap = { TDA8425_S1_CH1, TDA8425_S1_CH1, TDA8425_S1_CH1 },
  1223. .inputmute = TDA8425_S1_OFF,
  1224. .setmode = tda8425_setmode,
  1225. .initialize = tda8425_initialize,
  1226. },
  1227. {
  1228. .name = "pic16c54 (PV951)",
  1229. .id = I2C_DRIVERID_PIC16C54_PV951,
  1230. .insmodopt = &pic16c54,
  1231. .addr_lo = I2C_PIC16C54 >> 1,
  1232. .addr_hi = I2C_PIC16C54>> 1,
  1233. .registers = 2,
  1234. .flags = CHIP_HAS_INPUTSEL,
  1235. .inputreg = PIC16C54_REG_MISC,
  1236. .inputmap = {PIC16C54_MISC_SND_NOTMUTE|PIC16C54_MISC_SWITCH_TUNER,
  1237. PIC16C54_MISC_SND_NOTMUTE|PIC16C54_MISC_SWITCH_LINE,
  1238. PIC16C54_MISC_SND_NOTMUTE|PIC16C54_MISC_SWITCH_LINE,
  1239. PIC16C54_MISC_SND_MUTE,PIC16C54_MISC_SND_MUTE,
  1240. PIC16C54_MISC_SND_NOTMUTE},
  1241. .inputmute = PIC16C54_MISC_SND_MUTE,
  1242. },
  1243. {
  1244. .name = "ta8874z",
  1245. .id = -1,
  1246. /*.id = I2C_DRIVERID_TA8874Z, */
  1247. .checkit = ta8874z_checkit,
  1248. .insmodopt = &ta8874z,
  1249. .addr_lo = I2C_TDA9840 >> 1,
  1250. .addr_hi = I2C_TDA9840 >> 1,
  1251. .registers = 2,
  1252. .getmode = ta8874z_getmode,
  1253. .setmode = ta8874z_setmode,
  1254. .checkmode = generic_checkmode,
  1255. .init = {2, { TA8874Z_MONO_SET, TA8874Z_SEPARATION_DEFAULT}},
  1256. },
  1257. { .name = NULL } /* EOF */
  1258. };
  1259. /* ---------------------------------------------------------------------- */
  1260. /* i2c registration */
  1261. static int chip_attach(struct i2c_adapter *adap, int addr, int kind)
  1262. {
  1263. struct CHIPSTATE *chip;
  1264. struct CHIPDESC *desc;
  1265. chip = kmalloc(sizeof(*chip),GFP_KERNEL);
  1266. if (!chip)
  1267. return -ENOMEM;
  1268. memset(chip,0,sizeof(*chip));
  1269. memcpy(&chip->c,&client_template,sizeof(struct i2c_client));
  1270. chip->c.adapter = adap;
  1271. chip->c.addr = addr;
  1272. i2c_set_clientdata(&chip->c, chip);
  1273. /* find description for the chip */
  1274. tvaudio_dbg("chip found @ 0x%x\n", addr<<1);
  1275. for (desc = chiplist; desc->name != NULL; desc++) {
  1276. if (0 == *(desc->insmodopt))
  1277. continue;
  1278. if (addr < desc->addr_lo ||
  1279. addr > desc->addr_hi)
  1280. continue;
  1281. if (desc->checkit && !desc->checkit(chip))
  1282. continue;
  1283. break;
  1284. }
  1285. if (desc->name == NULL) {
  1286. tvaudio_dbg("no matching chip description found\n");
  1287. return -EIO;
  1288. }
  1289. tvaudio_info("%s found @ 0x%x (%s)\n", desc->name, addr<<1, adap->name);
  1290. if (desc->flags) {
  1291. tvaudio_dbg("matches:%s%s%s.\n",
  1292. (desc->flags & CHIP_HAS_VOLUME) ? " volume" : "",
  1293. (desc->flags & CHIP_HAS_BASSTREBLE) ? " bass/treble" : "",
  1294. (desc->flags & CHIP_HAS_INPUTSEL) ? " audiomux" : "");
  1295. }
  1296. /* fill required data structures */
  1297. strcpy(chip->c.name,desc->name);
  1298. chip->type = desc-chiplist;
  1299. chip->shadow.count = desc->registers+1;
  1300. chip->prevmode = -1;
  1301. /* register */
  1302. i2c_attach_client(&chip->c);
  1303. /* initialization */
  1304. if (desc->initialize != NULL)
  1305. desc->initialize(chip);
  1306. else
  1307. chip_cmd(chip,"init",&desc->init);
  1308. if (desc->flags & CHIP_HAS_VOLUME) {
  1309. chip->left = desc->leftinit ? desc->leftinit : 65535;
  1310. chip->right = desc->rightinit ? desc->rightinit : 65535;
  1311. chip_write(chip,desc->leftreg,desc->volfunc(chip->left));
  1312. chip_write(chip,desc->rightreg,desc->volfunc(chip->right));
  1313. }
  1314. if (desc->flags & CHIP_HAS_BASSTREBLE) {
  1315. chip->treble = desc->trebleinit ? desc->trebleinit : 32768;
  1316. chip->bass = desc->bassinit ? desc->bassinit : 32768;
  1317. chip_write(chip,desc->bassreg,desc->bassfunc(chip->bass));
  1318. chip_write(chip,desc->treblereg,desc->treblefunc(chip->treble));
  1319. }
  1320. chip->tpid = -1;
  1321. if (desc->checkmode) {
  1322. /* start async thread */
  1323. init_timer(&chip->wt);
  1324. chip->wt.function = chip_thread_wake;
  1325. chip->wt.data = (unsigned long)chip;
  1326. init_waitqueue_head(&chip->wq);
  1327. init_completion(&chip->texit);
  1328. chip->tpid = kernel_thread(chip_thread,(void *)chip,0);
  1329. if (chip->tpid < 0)
  1330. tvaudio_warn("%s: kernel_thread() failed\n",
  1331. chip->c.name);
  1332. wake_up_interruptible(&chip->wq);
  1333. }
  1334. return 0;
  1335. }
  1336. static int chip_probe(struct i2c_adapter *adap)
  1337. {
  1338. /* don't attach on saa7146 based cards,
  1339. because dedicated drivers are used */
  1340. if ((adap->id == I2C_HW_SAA7146))
  1341. return 0;
  1342. #ifdef I2C_CLASS_TV_ANALOG
  1343. if (adap->class & I2C_CLASS_TV_ANALOG)
  1344. return i2c_probe(adap, &addr_data, chip_attach);
  1345. #else
  1346. switch (adap->id) {
  1347. case I2C_HW_B_BT848:
  1348. case I2C_HW_B_RIVA:
  1349. case I2C_HW_SAA7134:
  1350. return i2c_probe(adap, &addr_data, chip_attach);
  1351. }
  1352. #endif
  1353. return 0;
  1354. }
  1355. static int chip_detach(struct i2c_client *client)
  1356. {
  1357. struct CHIPSTATE *chip = i2c_get_clientdata(client);
  1358. del_timer_sync(&chip->wt);
  1359. if (chip->tpid >= 0) {
  1360. /* shutdown async thread */
  1361. chip->done = 1;
  1362. wake_up_interruptible(&chip->wq);
  1363. wait_for_completion(&chip->texit);
  1364. }
  1365. i2c_detach_client(&chip->c);
  1366. kfree(chip);
  1367. return 0;
  1368. }
  1369. /* ---------------------------------------------------------------------- */
  1370. /* video4linux interface */
  1371. static int chip_command(struct i2c_client *client,
  1372. unsigned int cmd, void *arg)
  1373. {
  1374. __u16 *sarg = arg;
  1375. struct CHIPSTATE *chip = i2c_get_clientdata(client);
  1376. struct CHIPDESC *desc = chiplist + chip->type;
  1377. tvaudio_dbg("%s: chip_command 0x%x\n",chip->c.name,cmd);
  1378. switch (cmd) {
  1379. case AUDC_SET_INPUT:
  1380. if (desc->flags & CHIP_HAS_INPUTSEL) {
  1381. if (*sarg & 0x80)
  1382. chip_write_masked(chip,desc->inputreg,desc->inputmute,desc->inputmask);
  1383. else
  1384. chip_write_masked(chip,desc->inputreg,desc->inputmap[*sarg],desc->inputmask);
  1385. }
  1386. break;
  1387. case AUDC_SET_RADIO:
  1388. chip->norm = VIDEO_MODE_RADIO;
  1389. chip->watch_stereo = 0;
  1390. /* del_timer(&chip->wt); */
  1391. break;
  1392. /* --- v4l ioctls --- */
  1393. /* take care: bttv does userspace copying, we'll get a
  1394. kernel pointer here... */
  1395. case VIDIOCGAUDIO:
  1396. {
  1397. struct video_audio *va = arg;
  1398. if (desc->flags & CHIP_HAS_VOLUME) {
  1399. va->flags |= VIDEO_AUDIO_VOLUME;
  1400. va->volume = max(chip->left,chip->right);
  1401. if (va->volume)
  1402. va->balance = (32768*min(chip->left,chip->right))/
  1403. va->volume;
  1404. else
  1405. va->balance = 32768;
  1406. }
  1407. if (desc->flags & CHIP_HAS_BASSTREBLE) {
  1408. va->flags |= VIDEO_AUDIO_BASS | VIDEO_AUDIO_TREBLE;
  1409. va->bass = chip->bass;
  1410. va->treble = chip->treble;
  1411. }
  1412. if (chip->norm != VIDEO_MODE_RADIO) {
  1413. if (desc->getmode)
  1414. va->mode = desc->getmode(chip);
  1415. else
  1416. va->mode = VIDEO_SOUND_MONO;
  1417. }
  1418. break;
  1419. }
  1420. case VIDIOCSAUDIO:
  1421. {
  1422. struct video_audio *va = arg;
  1423. if (desc->flags & CHIP_HAS_VOLUME) {
  1424. chip->left = (min(65536 - va->balance,32768) *
  1425. va->volume) / 32768;
  1426. chip->right = (min(va->balance,(__u16)32768) *
  1427. va->volume) / 32768;
  1428. chip_write(chip,desc->leftreg,desc->volfunc(chip->left));
  1429. chip_write(chip,desc->rightreg,desc->volfunc(chip->right));
  1430. }
  1431. if (desc->flags & CHIP_HAS_BASSTREBLE) {
  1432. chip->bass = va->bass;
  1433. chip->treble = va->treble;
  1434. chip_write(chip,desc->bassreg,desc->bassfunc(chip->bass));
  1435. chip_write(chip,desc->treblereg,desc->treblefunc(chip->treble));
  1436. }
  1437. if (desc->setmode && va->mode) {
  1438. chip->watch_stereo = 0;
  1439. /* del_timer(&chip->wt); */
  1440. chip->mode = va->mode;
  1441. desc->setmode(chip,va->mode);
  1442. }
  1443. break;
  1444. }
  1445. case VIDIOCSCHAN:
  1446. {
  1447. struct video_channel *vc = arg;
  1448. chip->norm = vc->norm;
  1449. break;
  1450. }
  1451. case VIDIOCSFREQ:
  1452. {
  1453. chip->mode = 0; /* automatic */
  1454. if (desc->checkmode) {
  1455. desc->setmode(chip,VIDEO_SOUND_MONO);
  1456. if (chip->prevmode != VIDEO_SOUND_MONO)
  1457. chip->prevmode = -1; /* reset previous mode */
  1458. mod_timer(&chip->wt, jiffies+2*HZ);
  1459. /* the thread will call checkmode() later */
  1460. }
  1461. }
  1462. }
  1463. return 0;
  1464. }
  1465. static struct i2c_driver driver = {
  1466. .owner = THIS_MODULE,
  1467. .name = "generic i2c audio driver",
  1468. .id = I2C_DRIVERID_TVAUDIO,
  1469. .flags = I2C_DF_NOTIFY,
  1470. .attach_adapter = chip_probe,
  1471. .detach_client = chip_detach,
  1472. .command = chip_command,
  1473. };
  1474. static struct i2c_client client_template =
  1475. {
  1476. .name = "(unset)",
  1477. .flags = I2C_CLIENT_ALLOW_USE,
  1478. .driver = &driver,
  1479. };
  1480. static int __init audiochip_init_module(void)
  1481. {
  1482. struct CHIPDESC *desc;
  1483. if (debug) {
  1484. printk(KERN_INFO "tvaudio: TV audio decoder + audio/video mux driver\n");
  1485. printk(KERN_INFO "tvaudio: known chips: ");
  1486. for (desc = chiplist; desc->name != NULL; desc++)
  1487. printk("%s%s", (desc == chiplist) ? "" : ", ", desc->name);
  1488. printk("\n");
  1489. }
  1490. return i2c_add_driver(&driver);
  1491. }
  1492. static void __exit audiochip_cleanup_module(void)
  1493. {
  1494. i2c_del_driver(&driver);
  1495. }
  1496. module_init(audiochip_init_module);
  1497. module_exit(audiochip_cleanup_module);
  1498. /*
  1499. * Local variables:
  1500. * c-basic-offset: 8
  1501. * End:
  1502. */