ac97_codec.c 82 KB

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  1. /*
  2. * Copyright (c) by Jaroslav Kysela <perex@suse.cz>
  3. * Universal interface for Audio Codec '97
  4. *
  5. * For more details look to AC '97 component specification revision 2.2
  6. * by Intel Corporation (http://developer.intel.com).
  7. *
  8. *
  9. * This program is free software; you can redistribute it and/or modify
  10. * it under the terms of the GNU General Public License as published by
  11. * the Free Software Foundation; either version 2 of the License, or
  12. * (at your option) any later version.
  13. *
  14. * This program is distributed in the hope that it will be useful,
  15. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  16. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  17. * GNU General Public License for more details.
  18. *
  19. * You should have received a copy of the GNU General Public License
  20. * along with this program; if not, write to the Free Software
  21. * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
  22. *
  23. */
  24. #include <sound/driver.h>
  25. #include <linux/delay.h>
  26. #include <linux/init.h>
  27. #include <linux/slab.h>
  28. #include <linux/pci.h>
  29. #include <linux/moduleparam.h>
  30. #include <sound/core.h>
  31. #include <sound/pcm.h>
  32. #include <sound/ac97_codec.h>
  33. #include <sound/asoundef.h>
  34. #include <sound/initval.h>
  35. #include "ac97_local.h"
  36. #include "ac97_id.h"
  37. #include "ac97_patch.h"
  38. MODULE_AUTHOR("Jaroslav Kysela <perex@suse.cz>");
  39. MODULE_DESCRIPTION("Universal interface for Audio Codec '97");
  40. MODULE_LICENSE("GPL");
  41. static int enable_loopback;
  42. module_param(enable_loopback, bool, 0444);
  43. MODULE_PARM_DESC(enable_loopback, "Enable AC97 ADC/DAC Loopback Control");
  44. /*
  45. */
  46. typedef struct {
  47. unsigned int id;
  48. unsigned int mask;
  49. const char *name;
  50. int (*patch)(ac97_t *ac97);
  51. int (*mpatch)(ac97_t *ac97);
  52. unsigned int flags;
  53. } ac97_codec_id_t;
  54. static const ac97_codec_id_t snd_ac97_codec_id_vendors[] = {
  55. { 0x414b4d00, 0xffffff00, "Asahi Kasei", NULL, NULL },
  56. { 0x41445300, 0xffffff00, "Analog Devices", NULL, NULL },
  57. { 0x414c4300, 0xffffff00, "Realtek", NULL, NULL },
  58. { 0x414c4700, 0xffffff00, "Realtek", NULL, NULL },
  59. { 0x434d4900, 0xffffff00, "C-Media Electronics", NULL, NULL },
  60. { 0x43525900, 0xffffff00, "Cirrus Logic", NULL, NULL },
  61. { 0x43585400, 0xffffff00, "Conexant", NULL, NULL },
  62. { 0x44543000, 0xffffff00, "Diamond Technology", NULL, NULL },
  63. { 0x454d4300, 0xffffff00, "eMicro", NULL, NULL },
  64. { 0x45838300, 0xffffff00, "ESS Technology", NULL, NULL },
  65. { 0x48525300, 0xffffff00, "Intersil", NULL, NULL },
  66. { 0x49434500, 0xffffff00, "ICEnsemble", NULL, NULL },
  67. { 0x49544500, 0xffffff00, "ITE Tech.Inc", NULL, NULL },
  68. { 0x4e534300, 0xffffff00, "National Semiconductor", NULL, NULL },
  69. { 0x50534300, 0xffffff00, "Philips", NULL, NULL },
  70. { 0x53494c00, 0xffffff00, "Silicon Laboratory", NULL, NULL },
  71. { 0x54524100, 0xffffff00, "TriTech", NULL, NULL },
  72. { 0x54584e00, 0xffffff00, "Texas Instruments", NULL, NULL },
  73. { 0x56494100, 0xffffff00, "VIA Technologies", NULL, NULL },
  74. { 0x57454300, 0xffffff00, "Winbond", NULL, NULL },
  75. { 0x574d4c00, 0xffffff00, "Wolfson", NULL, NULL },
  76. { 0x594d4800, 0xffffff00, "Yamaha", NULL, NULL },
  77. { 0x83847600, 0xffffff00, "SigmaTel", NULL, NULL },
  78. { 0, 0, NULL, NULL, NULL }
  79. };
  80. static const ac97_codec_id_t snd_ac97_codec_ids[] = {
  81. { 0x414b4d00, 0xffffffff, "AK4540", NULL, NULL },
  82. { 0x414b4d01, 0xffffffff, "AK4542", NULL, NULL },
  83. { 0x414b4d02, 0xffffffff, "AK4543", NULL, NULL },
  84. { 0x414b4d06, 0xffffffff, "AK4544A", NULL, NULL },
  85. { 0x414b4d07, 0xffffffff, "AK4545", NULL, NULL },
  86. { 0x41445303, 0xffffffff, "AD1819", patch_ad1819, NULL },
  87. { 0x41445340, 0xffffffff, "AD1881", patch_ad1881, NULL },
  88. { 0x41445348, 0xffffffff, "AD1881A", patch_ad1881, NULL },
  89. { 0x41445360, 0xffffffff, "AD1885", patch_ad1885, NULL },
  90. { 0x41445361, 0xffffffff, "AD1886", patch_ad1886, NULL },
  91. { 0x41445362, 0xffffffff, "AD1887", patch_ad1881, NULL },
  92. { 0x41445363, 0xffffffff, "AD1886A", patch_ad1881, NULL },
  93. { 0x41445368, 0xffffffff, "AD1888", patch_ad1888, NULL },
  94. { 0x41445370, 0xffffffff, "AD1980", patch_ad1980, NULL },
  95. { 0x41445372, 0xffffffff, "AD1981A", patch_ad1981a, NULL },
  96. { 0x41445374, 0xffffffff, "AD1981B", patch_ad1981b, NULL },
  97. { 0x41445375, 0xffffffff, "AD1985", patch_ad1985, NULL },
  98. { 0x41445378, 0xffffffff, "AD1986", patch_ad1985, NULL },
  99. { 0x414c4300, 0xffffff00, "ALC100,100P", NULL, NULL },
  100. { 0x414c4710, 0xfffffff0, "ALC200,200P", NULL, NULL },
  101. { 0x414c4721, 0xffffffff, "ALC650D", NULL, NULL }, /* already patched */
  102. { 0x414c4722, 0xffffffff, "ALC650E", NULL, NULL }, /* already patched */
  103. { 0x414c4723, 0xffffffff, "ALC650F", NULL, NULL }, /* already patched */
  104. { 0x414c4720, 0xfffffff0, "ALC650", patch_alc650, NULL },
  105. { 0x414c4760, 0xfffffff0, "ALC655", patch_alc655, NULL },
  106. { 0x414c4780, 0xfffffff0, "ALC658", patch_alc655, NULL },
  107. { 0x414c4790, 0xfffffff0, "ALC850", patch_alc850, NULL },
  108. { 0x414c4730, 0xffffffff, "ALC101", NULL, NULL },
  109. { 0x414c4740, 0xfffffff0, "ALC202", NULL, NULL },
  110. { 0x414c4750, 0xfffffff0, "ALC250", NULL, NULL },
  111. { 0x414c4770, 0xfffffff0, "ALC203", NULL, NULL },
  112. { 0x434d4941, 0xffffffff, "CMI9738", patch_cm9738, NULL },
  113. { 0x434d4961, 0xffffffff, "CMI9739", patch_cm9739, NULL },
  114. { 0x434d4978, 0xffffffff, "CMI9761", patch_cm9761, NULL },
  115. { 0x434d4982, 0xffffffff, "CMI9761", patch_cm9761, NULL },
  116. { 0x434d4983, 0xffffffff, "CMI9761", patch_cm9761, NULL },
  117. { 0x43525900, 0xfffffff8, "CS4297", NULL, NULL },
  118. { 0x43525910, 0xfffffff8, "CS4297A", patch_cirrus_spdif, NULL },
  119. { 0x43525920, 0xfffffff8, "CS4298", patch_cirrus_spdif, NULL },
  120. { 0x43525928, 0xfffffff8, "CS4294", NULL, NULL },
  121. { 0x43525930, 0xfffffff8, "CS4299", patch_cirrus_cs4299, NULL },
  122. { 0x43525948, 0xfffffff8, "CS4201", NULL, NULL },
  123. { 0x43525958, 0xfffffff8, "CS4205", patch_cirrus_spdif, NULL },
  124. { 0x43525960, 0xfffffff8, "CS4291", NULL, NULL },
  125. { 0x43525970, 0xfffffff8, "CS4202", NULL, NULL },
  126. { 0x43585421, 0xffffffff, "HSD11246", NULL, NULL }, // SmartMC II
  127. { 0x43585428, 0xfffffff8, "Cx20468", patch_conexant, NULL }, // SmartAMC fixme: the mask might be different
  128. { 0x44543031, 0xfffffff0, "DT0398", NULL, NULL },
  129. { 0x454d4328, 0xffffffff, "28028", NULL, NULL }, // same as TR28028?
  130. { 0x45838308, 0xffffffff, "ESS1988", NULL, NULL },
  131. { 0x48525300, 0xffffff00, "HMP9701", NULL, NULL },
  132. { 0x49434501, 0xffffffff, "ICE1230", NULL, NULL },
  133. { 0x49434511, 0xffffffff, "ICE1232", NULL, NULL }, // alias VIA VT1611A?
  134. { 0x49434514, 0xffffffff, "ICE1232A", NULL, NULL },
  135. { 0x49434551, 0xffffffff, "VT1616", patch_vt1616, NULL },
  136. { 0x49434552, 0xffffffff, "VT1616i", patch_vt1616, NULL }, // VT1616 compatible (chipset integrated)
  137. { 0x49544520, 0xffffffff, "IT2226E", NULL, NULL },
  138. { 0x49544561, 0xffffffff, "IT2646E", patch_it2646, NULL },
  139. { 0x4e534300, 0xffffffff, "LM4540,43,45,46,48", NULL, NULL }, // only guess --jk
  140. { 0x4e534331, 0xffffffff, "LM4549", NULL, NULL },
  141. { 0x4e534350, 0xffffffff, "LM4550", NULL, NULL },
  142. { 0x50534304, 0xffffffff, "UCB1400", NULL, NULL },
  143. { 0x53494c20, 0xffffffe0, "Si3036,8", NULL, mpatch_si3036 },
  144. { 0x54524102, 0xffffffff, "TR28022", NULL, NULL },
  145. { 0x54524106, 0xffffffff, "TR28026", NULL, NULL },
  146. { 0x54524108, 0xffffffff, "TR28028", patch_tritech_tr28028, NULL }, // added by xin jin [07/09/99]
  147. { 0x54524123, 0xffffffff, "TR28602", NULL, NULL }, // only guess --jk [TR28023 = eMicro EM28023 (new CT1297)]
  148. { 0x54584e20, 0xffffffff, "TLC320AD9xC", NULL, NULL },
  149. { 0x56494161, 0xffffffff, "VIA1612A", NULL, NULL }, // modified ICE1232 with S/PDIF
  150. { 0x57454301, 0xffffffff, "W83971D", NULL, NULL },
  151. { 0x574d4c00, 0xffffffff, "WM9701A", NULL, NULL },
  152. { 0x574d4C03, 0xffffffff, "WM9703,WM9707,WM9708,WM9717", patch_wolfson03, NULL},
  153. { 0x574d4C04, 0xffffffff, "WM9704M,WM9704Q", patch_wolfson04, NULL},
  154. { 0x574d4C05, 0xffffffff, "WM9705,WM9710", patch_wolfson05, NULL},
  155. { 0x574d4C09, 0xffffffff, "WM9709", NULL, NULL},
  156. { 0x574d4C12, 0xffffffff, "WM9711,WM9712", patch_wolfson11, NULL},
  157. { 0x574d4c13, 0xffffffff, "WM9713,WM9714", patch_wolfson13, NULL, AC97_DEFAULT_POWER_OFF},
  158. { 0x594d4800, 0xffffffff, "YMF743", NULL, NULL },
  159. { 0x594d4802, 0xffffffff, "YMF752", NULL, NULL },
  160. { 0x594d4803, 0xffffffff, "YMF753", patch_yamaha_ymf753, NULL },
  161. { 0x83847600, 0xffffffff, "STAC9700,83,84", patch_sigmatel_stac9700, NULL },
  162. { 0x83847604, 0xffffffff, "STAC9701,3,4,5", NULL, NULL },
  163. { 0x83847605, 0xffffffff, "STAC9704", NULL, NULL },
  164. { 0x83847608, 0xffffffff, "STAC9708,11", patch_sigmatel_stac9708, NULL },
  165. { 0x83847609, 0xffffffff, "STAC9721,23", patch_sigmatel_stac9721, NULL },
  166. { 0x83847644, 0xffffffff, "STAC9744", patch_sigmatel_stac9744, NULL },
  167. { 0x83847650, 0xffffffff, "STAC9750,51", NULL, NULL }, // patch?
  168. { 0x83847652, 0xffffffff, "STAC9752,53", NULL, NULL }, // patch?
  169. { 0x83847656, 0xffffffff, "STAC9756,57", patch_sigmatel_stac9756, NULL },
  170. { 0x83847658, 0xffffffff, "STAC9758,59", patch_sigmatel_stac9758, NULL },
  171. { 0x83847666, 0xffffffff, "STAC9766,67", NULL, NULL }, // patch?
  172. { 0, 0, NULL, NULL, NULL }
  173. };
  174. const char *snd_ac97_stereo_enhancements[] =
  175. {
  176. /* 0 */ "No 3D Stereo Enhancement",
  177. /* 1 */ "Analog Devices Phat Stereo",
  178. /* 2 */ "Creative Stereo Enhancement",
  179. /* 3 */ "National Semi 3D Stereo Enhancement",
  180. /* 4 */ "YAMAHA Ymersion",
  181. /* 5 */ "BBE 3D Stereo Enhancement",
  182. /* 6 */ "Crystal Semi 3D Stereo Enhancement",
  183. /* 7 */ "Qsound QXpander",
  184. /* 8 */ "Spatializer 3D Stereo Enhancement",
  185. /* 9 */ "SRS 3D Stereo Enhancement",
  186. /* 10 */ "Platform Tech 3D Stereo Enhancement",
  187. /* 11 */ "AKM 3D Audio",
  188. /* 12 */ "Aureal Stereo Enhancement",
  189. /* 13 */ "Aztech 3D Enhancement",
  190. /* 14 */ "Binaura 3D Audio Enhancement",
  191. /* 15 */ "ESS Technology Stereo Enhancement",
  192. /* 16 */ "Harman International VMAx",
  193. /* 17 */ "Nvidea/IC Ensemble/KS Waves 3D Stereo Enhancement",
  194. /* 18 */ "Philips Incredible Sound",
  195. /* 19 */ "Texas Instruments 3D Stereo Enhancement",
  196. /* 20 */ "VLSI Technology 3D Stereo Enhancement",
  197. /* 21 */ "TriTech 3D Stereo Enhancement",
  198. /* 22 */ "Realtek 3D Stereo Enhancement",
  199. /* 23 */ "Samsung 3D Stereo Enhancement",
  200. /* 24 */ "Wolfson Microelectronics 3D Enhancement",
  201. /* 25 */ "Delta Integration 3D Enhancement",
  202. /* 26 */ "SigmaTel 3D Enhancement",
  203. /* 27 */ "IC Ensemble/KS Waves",
  204. /* 28 */ "Rockwell 3D Stereo Enhancement",
  205. /* 29 */ "Reserved 29",
  206. /* 30 */ "Reserved 30",
  207. /* 31 */ "Reserved 31"
  208. };
  209. /*
  210. * Shared AC97 controllers (ICH, ATIIXP...)
  211. */
  212. static DECLARE_MUTEX(shared_codec_mutex);
  213. static ac97_t *shared_codec[AC97_SHARED_TYPES][4];
  214. /*
  215. * I/O routines
  216. */
  217. static int snd_ac97_valid_reg(ac97_t *ac97, unsigned short reg)
  218. {
  219. if (ac97->limited_regs && ! test_bit(reg, ac97->reg_accessed))
  220. return 0;
  221. /* filter some registers for buggy codecs */
  222. switch (ac97->id) {
  223. case AC97_ID_AK4540:
  224. case AC97_ID_AK4542:
  225. if (reg <= 0x1c || reg == 0x20 || reg == 0x26 || reg >= 0x7c)
  226. return 1;
  227. return 0;
  228. case AC97_ID_AD1819: /* AD1819 */
  229. case AC97_ID_AD1881: /* AD1881 */
  230. case AC97_ID_AD1881A: /* AD1881A */
  231. if (reg >= 0x3a && reg <= 0x6e) /* 0x59 */
  232. return 0;
  233. return 1;
  234. case AC97_ID_AD1885: /* AD1885 */
  235. case AC97_ID_AD1886: /* AD1886 */
  236. case AC97_ID_AD1886A: /* AD1886A - !!verify!! --jk */
  237. case AC97_ID_AD1887: /* AD1887 - !!verify!! --jk */
  238. if (reg == 0x5a)
  239. return 1;
  240. if (reg >= 0x3c && reg <= 0x6e) /* 0x59 */
  241. return 0;
  242. return 1;
  243. case AC97_ID_STAC9700:
  244. case AC97_ID_STAC9704:
  245. case AC97_ID_STAC9705:
  246. case AC97_ID_STAC9708:
  247. case AC97_ID_STAC9721:
  248. case AC97_ID_STAC9744:
  249. case AC97_ID_STAC9756:
  250. if (reg <= 0x3a || reg >= 0x5a)
  251. return 1;
  252. return 0;
  253. }
  254. return 1;
  255. }
  256. /**
  257. * snd_ac97_write - write a value on the given register
  258. * @ac97: the ac97 instance
  259. * @reg: the register to change
  260. * @value: the value to set
  261. *
  262. * Writes a value on the given register. This will invoke the write
  263. * callback directly after the register check.
  264. * This function doesn't change the register cache unlike
  265. * #snd_ca97_write_cache(), so use this only when you don't want to
  266. * reflect the change to the suspend/resume state.
  267. */
  268. void snd_ac97_write(ac97_t *ac97, unsigned short reg, unsigned short value)
  269. {
  270. if (!snd_ac97_valid_reg(ac97, reg))
  271. return;
  272. if ((ac97->id & 0xffffff00) == AC97_ID_ALC100) {
  273. /* Fix H/W bug of ALC100/100P */
  274. if (reg == AC97_MASTER || reg == AC97_HEADPHONE)
  275. ac97->bus->ops->write(ac97, AC97_RESET, 0); /* reset audio codec */
  276. }
  277. ac97->bus->ops->write(ac97, reg, value);
  278. }
  279. /**
  280. * snd_ac97_read - read a value from the given register
  281. *
  282. * @ac97: the ac97 instance
  283. * @reg: the register to read
  284. *
  285. * Reads a value from the given register. This will invoke the read
  286. * callback directly after the register check.
  287. *
  288. * Returns the read value.
  289. */
  290. unsigned short snd_ac97_read(ac97_t *ac97, unsigned short reg)
  291. {
  292. if (!snd_ac97_valid_reg(ac97, reg))
  293. return 0;
  294. return ac97->bus->ops->read(ac97, reg);
  295. }
  296. /* read a register - return the cached value if already read */
  297. static inline unsigned short snd_ac97_read_cache(ac97_t *ac97, unsigned short reg)
  298. {
  299. if (! test_bit(reg, ac97->reg_accessed)) {
  300. ac97->regs[reg] = ac97->bus->ops->read(ac97, reg);
  301. // set_bit(reg, ac97->reg_accessed);
  302. }
  303. return ac97->regs[reg];
  304. }
  305. /**
  306. * snd_ac97_write_cache - write a value on the given register and update the cache
  307. * @ac97: the ac97 instance
  308. * @reg: the register to change
  309. * @value: the value to set
  310. *
  311. * Writes a value on the given register and updates the register
  312. * cache. The cached values are used for the cached-read and the
  313. * suspend/resume.
  314. */
  315. void snd_ac97_write_cache(ac97_t *ac97, unsigned short reg, unsigned short value)
  316. {
  317. if (!snd_ac97_valid_reg(ac97, reg))
  318. return;
  319. down(&ac97->reg_mutex);
  320. ac97->regs[reg] = value;
  321. ac97->bus->ops->write(ac97, reg, value);
  322. set_bit(reg, ac97->reg_accessed);
  323. up(&ac97->reg_mutex);
  324. }
  325. /**
  326. * snd_ac97_update - update the value on the given register
  327. * @ac97: the ac97 instance
  328. * @reg: the register to change
  329. * @value: the value to set
  330. *
  331. * Compares the value with the register cache and updates the value
  332. * only when the value is changed.
  333. *
  334. * Returns 1 if the value is changed, 0 if no change, or a negative
  335. * code on failure.
  336. */
  337. int snd_ac97_update(ac97_t *ac97, unsigned short reg, unsigned short value)
  338. {
  339. int change;
  340. if (!snd_ac97_valid_reg(ac97, reg))
  341. return -EINVAL;
  342. down(&ac97->reg_mutex);
  343. change = ac97->regs[reg] != value;
  344. if (change) {
  345. ac97->regs[reg] = value;
  346. ac97->bus->ops->write(ac97, reg, value);
  347. }
  348. up(&ac97->reg_mutex);
  349. return change;
  350. }
  351. /**
  352. * snd_ac97_update_bits - update the bits on the given register
  353. * @ac97: the ac97 instance
  354. * @reg: the register to change
  355. * @mask: the bit-mask to change
  356. * @value: the value to set
  357. *
  358. * Updates the masked-bits on the given register only when the value
  359. * is changed.
  360. *
  361. * Returns 1 if the bits are changed, 0 if no change, or a negative
  362. * code on failure.
  363. */
  364. int snd_ac97_update_bits(ac97_t *ac97, unsigned short reg, unsigned short mask, unsigned short value)
  365. {
  366. int change;
  367. if (!snd_ac97_valid_reg(ac97, reg))
  368. return -EINVAL;
  369. down(&ac97->reg_mutex);
  370. change = snd_ac97_update_bits_nolock(ac97, reg, mask, value);
  371. up(&ac97->reg_mutex);
  372. return change;
  373. }
  374. /* no lock version - see snd_ac97_updat_bits() */
  375. int snd_ac97_update_bits_nolock(ac97_t *ac97, unsigned short reg,
  376. unsigned short mask, unsigned short value)
  377. {
  378. int change;
  379. unsigned short old, new;
  380. old = snd_ac97_read_cache(ac97, reg);
  381. new = (old & ~mask) | value;
  382. change = old != new;
  383. if (change) {
  384. ac97->regs[reg] = new;
  385. ac97->bus->ops->write(ac97, reg, new);
  386. }
  387. return change;
  388. }
  389. static int snd_ac97_ad18xx_update_pcm_bits(ac97_t *ac97, int codec, unsigned short mask, unsigned short value)
  390. {
  391. int change;
  392. unsigned short old, new, cfg;
  393. down(&ac97->page_mutex);
  394. old = ac97->spec.ad18xx.pcmreg[codec];
  395. new = (old & ~mask) | value;
  396. change = old != new;
  397. if (change) {
  398. down(&ac97->reg_mutex);
  399. cfg = snd_ac97_read_cache(ac97, AC97_AD_SERIAL_CFG);
  400. ac97->spec.ad18xx.pcmreg[codec] = new;
  401. /* select single codec */
  402. ac97->bus->ops->write(ac97, AC97_AD_SERIAL_CFG,
  403. (cfg & ~0x7000) |
  404. ac97->spec.ad18xx.unchained[codec] | ac97->spec.ad18xx.chained[codec]);
  405. /* update PCM bits */
  406. ac97->bus->ops->write(ac97, AC97_PCM, new);
  407. /* select all codecs */
  408. ac97->bus->ops->write(ac97, AC97_AD_SERIAL_CFG,
  409. cfg | 0x7000);
  410. up(&ac97->reg_mutex);
  411. }
  412. up(&ac97->page_mutex);
  413. return change;
  414. }
  415. /*
  416. * Controls
  417. */
  418. int snd_ac97_info_enum_double(snd_kcontrol_t *kcontrol, snd_ctl_elem_info_t * uinfo)
  419. {
  420. struct ac97_enum *e = (struct ac97_enum *)kcontrol->private_value;
  421. uinfo->type = SNDRV_CTL_ELEM_TYPE_ENUMERATED;
  422. uinfo->count = e->shift_l == e->shift_r ? 1 : 2;
  423. uinfo->value.enumerated.items = e->mask;
  424. if (uinfo->value.enumerated.item > e->mask - 1)
  425. uinfo->value.enumerated.item = e->mask - 1;
  426. strcpy(uinfo->value.enumerated.name, e->texts[uinfo->value.enumerated.item]);
  427. return 0;
  428. }
  429. int snd_ac97_get_enum_double(snd_kcontrol_t * kcontrol, snd_ctl_elem_value_t * ucontrol)
  430. {
  431. ac97_t *ac97 = snd_kcontrol_chip(kcontrol);
  432. struct ac97_enum *e = (struct ac97_enum *)kcontrol->private_value;
  433. unsigned short val;
  434. val = snd_ac97_read_cache(ac97, e->reg);
  435. ucontrol->value.enumerated.item[0] = (val >> e->shift_l) & (e->mask - 1);
  436. if (e->shift_l != e->shift_r)
  437. ucontrol->value.enumerated.item[1] = (val >> e->shift_r) & (e->mask - 1);
  438. return 0;
  439. }
  440. int snd_ac97_put_enum_double(snd_kcontrol_t * kcontrol, snd_ctl_elem_value_t * ucontrol)
  441. {
  442. ac97_t *ac97 = snd_kcontrol_chip(kcontrol);
  443. struct ac97_enum *e = (struct ac97_enum *)kcontrol->private_value;
  444. unsigned short val;
  445. unsigned short mask;
  446. if (ucontrol->value.enumerated.item[0] > e->mask - 1)
  447. return -EINVAL;
  448. val = ucontrol->value.enumerated.item[0] << e->shift_l;
  449. mask = (e->mask - 1) << e->shift_l;
  450. if (e->shift_l != e->shift_r) {
  451. if (ucontrol->value.enumerated.item[1] > e->mask - 1)
  452. return -EINVAL;
  453. val |= ucontrol->value.enumerated.item[1] << e->shift_r;
  454. mask |= (e->mask - 1) << e->shift_r;
  455. }
  456. return snd_ac97_update_bits(ac97, e->reg, mask, val);
  457. }
  458. /* save/restore ac97 v2.3 paging */
  459. static int snd_ac97_page_save(ac97_t *ac97, int reg, snd_kcontrol_t *kcontrol)
  460. {
  461. int page_save = -1;
  462. if ((kcontrol->private_value & (1<<25)) &&
  463. (ac97->ext_id & AC97_EI_REV_MASK) >= AC97_EI_REV_23 &&
  464. (reg >= 0x60 && reg < 0x70)) {
  465. unsigned short page = (kcontrol->private_value >> 26) & 0x0f;
  466. down(&ac97->page_mutex); /* lock paging */
  467. page_save = snd_ac97_read(ac97, AC97_INT_PAGING) & AC97_PAGE_MASK;
  468. snd_ac97_update_bits(ac97, AC97_INT_PAGING, AC97_PAGE_MASK, page);
  469. }
  470. return page_save;
  471. }
  472. static void snd_ac97_page_restore(ac97_t *ac97, int page_save)
  473. {
  474. if (page_save >= 0) {
  475. snd_ac97_update_bits(ac97, AC97_INT_PAGING, AC97_PAGE_MASK, page_save);
  476. up(&ac97->page_mutex); /* unlock paging */
  477. }
  478. }
  479. /* volume and switch controls */
  480. int snd_ac97_info_volsw(snd_kcontrol_t *kcontrol, snd_ctl_elem_info_t * uinfo)
  481. {
  482. int mask = (kcontrol->private_value >> 16) & 0xff;
  483. int shift = (kcontrol->private_value >> 8) & 0x0f;
  484. int rshift = (kcontrol->private_value >> 12) & 0x0f;
  485. uinfo->type = mask == 1 ? SNDRV_CTL_ELEM_TYPE_BOOLEAN : SNDRV_CTL_ELEM_TYPE_INTEGER;
  486. uinfo->count = shift == rshift ? 1 : 2;
  487. uinfo->value.integer.min = 0;
  488. uinfo->value.integer.max = mask;
  489. return 0;
  490. }
  491. int snd_ac97_get_volsw(snd_kcontrol_t * kcontrol, snd_ctl_elem_value_t * ucontrol)
  492. {
  493. ac97_t *ac97 = snd_kcontrol_chip(kcontrol);
  494. int reg = kcontrol->private_value & 0xff;
  495. int shift = (kcontrol->private_value >> 8) & 0x0f;
  496. int rshift = (kcontrol->private_value >> 12) & 0x0f;
  497. int mask = (kcontrol->private_value >> 16) & 0xff;
  498. int invert = (kcontrol->private_value >> 24) & 0x01;
  499. int page_save;
  500. page_save = snd_ac97_page_save(ac97, reg, kcontrol);
  501. ucontrol->value.integer.value[0] = (snd_ac97_read_cache(ac97, reg) >> shift) & mask;
  502. if (shift != rshift)
  503. ucontrol->value.integer.value[1] = (snd_ac97_read_cache(ac97, reg) >> rshift) & mask;
  504. if (invert) {
  505. ucontrol->value.integer.value[0] = mask - ucontrol->value.integer.value[0];
  506. if (shift != rshift)
  507. ucontrol->value.integer.value[1] = mask - ucontrol->value.integer.value[1];
  508. }
  509. snd_ac97_page_restore(ac97, page_save);
  510. return 0;
  511. }
  512. int snd_ac97_put_volsw(snd_kcontrol_t * kcontrol, snd_ctl_elem_value_t * ucontrol)
  513. {
  514. ac97_t *ac97 = snd_kcontrol_chip(kcontrol);
  515. int reg = kcontrol->private_value & 0xff;
  516. int shift = (kcontrol->private_value >> 8) & 0x0f;
  517. int rshift = (kcontrol->private_value >> 12) & 0x0f;
  518. int mask = (kcontrol->private_value >> 16) & 0xff;
  519. int invert = (kcontrol->private_value >> 24) & 0x01;
  520. int err, page_save;
  521. unsigned short val, val2, val_mask;
  522. page_save = snd_ac97_page_save(ac97, reg, kcontrol);
  523. val = (ucontrol->value.integer.value[0] & mask);
  524. if (invert)
  525. val = mask - val;
  526. val_mask = mask << shift;
  527. val = val << shift;
  528. if (shift != rshift) {
  529. val2 = (ucontrol->value.integer.value[1] & mask);
  530. if (invert)
  531. val2 = mask - val2;
  532. val_mask |= mask << rshift;
  533. val |= val2 << rshift;
  534. }
  535. err = snd_ac97_update_bits(ac97, reg, val_mask, val);
  536. snd_ac97_page_restore(ac97, page_save);
  537. return err;
  538. }
  539. static const snd_kcontrol_new_t snd_ac97_controls_master_mono[2] = {
  540. AC97_SINGLE("Master Mono Playback Switch", AC97_MASTER_MONO, 15, 1, 1),
  541. AC97_SINGLE("Master Mono Playback Volume", AC97_MASTER_MONO, 0, 31, 1)
  542. };
  543. static const snd_kcontrol_new_t snd_ac97_controls_tone[2] = {
  544. AC97_SINGLE("Tone Control - Bass", AC97_MASTER_TONE, 8, 15, 1),
  545. AC97_SINGLE("Tone Control - Treble", AC97_MASTER_TONE, 0, 15, 1)
  546. };
  547. static const snd_kcontrol_new_t snd_ac97_controls_pc_beep[2] = {
  548. AC97_SINGLE("PC Speaker Playback Switch", AC97_PC_BEEP, 15, 1, 1),
  549. AC97_SINGLE("PC Speaker Playback Volume", AC97_PC_BEEP, 1, 15, 1)
  550. };
  551. static const snd_kcontrol_new_t snd_ac97_controls_mic_boost =
  552. AC97_SINGLE("Mic Boost (+20dB)", AC97_MIC, 6, 1, 0);
  553. static const char* std_rec_sel[] = {"Mic", "CD", "Video", "Aux", "Line", "Mix", "Mix Mono", "Phone"};
  554. static const char* std_3d_path[] = {"pre 3D", "post 3D"};
  555. static const char* std_mix[] = {"Mix", "Mic"};
  556. static const char* std_mic[] = {"Mic1", "Mic2"};
  557. static const struct ac97_enum std_enum[] = {
  558. AC97_ENUM_DOUBLE(AC97_REC_SEL, 8, 0, 8, std_rec_sel),
  559. AC97_ENUM_SINGLE(AC97_GENERAL_PURPOSE, 15, 2, std_3d_path),
  560. AC97_ENUM_SINGLE(AC97_GENERAL_PURPOSE, 9, 2, std_mix),
  561. AC97_ENUM_SINGLE(AC97_GENERAL_PURPOSE, 8, 2, std_mic),
  562. };
  563. static const snd_kcontrol_new_t snd_ac97_control_capture_src =
  564. AC97_ENUM("Capture Source", std_enum[0]);
  565. static const snd_kcontrol_new_t snd_ac97_control_capture_vol =
  566. AC97_DOUBLE("Capture Volume", AC97_REC_GAIN, 8, 0, 15, 0);
  567. static const snd_kcontrol_new_t snd_ac97_controls_mic_capture[2] = {
  568. AC97_SINGLE("Mic Capture Switch", AC97_REC_GAIN_MIC, 15, 1, 1),
  569. AC97_SINGLE("Mic Capture Volume", AC97_REC_GAIN_MIC, 0, 15, 0)
  570. };
  571. typedef enum {
  572. AC97_GENERAL_PCM_OUT = 0,
  573. AC97_GENERAL_STEREO_ENHANCEMENT,
  574. AC97_GENERAL_3D,
  575. AC97_GENERAL_LOUDNESS,
  576. AC97_GENERAL_MONO,
  577. AC97_GENERAL_MIC,
  578. AC97_GENERAL_LOOPBACK
  579. } ac97_general_index_t;
  580. static const snd_kcontrol_new_t snd_ac97_controls_general[7] = {
  581. AC97_ENUM("PCM Out Path & Mute", std_enum[1]),
  582. AC97_SINGLE("Simulated Stereo Enhancement", AC97_GENERAL_PURPOSE, 14, 1, 0),
  583. AC97_SINGLE("3D Control - Switch", AC97_GENERAL_PURPOSE, 13, 1, 0),
  584. AC97_SINGLE("Loudness (bass boost)", AC97_GENERAL_PURPOSE, 12, 1, 0),
  585. AC97_ENUM("Mono Output Select", std_enum[2]),
  586. AC97_ENUM("Mic Select", std_enum[3]),
  587. AC97_SINGLE("ADC/DAC Loopback", AC97_GENERAL_PURPOSE, 7, 1, 0)
  588. };
  589. const snd_kcontrol_new_t snd_ac97_controls_3d[2] = {
  590. AC97_SINGLE("3D Control - Center", AC97_3D_CONTROL, 8, 15, 0),
  591. AC97_SINGLE("3D Control - Depth", AC97_3D_CONTROL, 0, 15, 0)
  592. };
  593. static const snd_kcontrol_new_t snd_ac97_controls_center[2] = {
  594. AC97_SINGLE("Center Playback Switch", AC97_CENTER_LFE_MASTER, 7, 1, 1),
  595. AC97_SINGLE("Center Playback Volume", AC97_CENTER_LFE_MASTER, 0, 31, 1)
  596. };
  597. static const snd_kcontrol_new_t snd_ac97_controls_lfe[2] = {
  598. AC97_SINGLE("LFE Playback Switch", AC97_CENTER_LFE_MASTER, 15, 1, 1),
  599. AC97_SINGLE("LFE Playback Volume", AC97_CENTER_LFE_MASTER, 8, 31, 1)
  600. };
  601. static const snd_kcontrol_new_t snd_ac97_control_eapd =
  602. AC97_SINGLE("External Amplifier", AC97_POWERDOWN, 15, 1, 1);
  603. /* change the existing EAPD control as inverted */
  604. static void set_inv_eapd(ac97_t *ac97, snd_kcontrol_t *kctl)
  605. {
  606. kctl->private_value = AC97_SINGLE_VALUE(AC97_POWERDOWN, 15, 1, 0);
  607. snd_ac97_update_bits(ac97, AC97_POWERDOWN, (1<<15), (1<<15)); /* EAPD up */
  608. ac97->scaps |= AC97_SCAP_INV_EAPD;
  609. }
  610. static int snd_ac97_spdif_mask_info(snd_kcontrol_t *kcontrol, snd_ctl_elem_info_t * uinfo)
  611. {
  612. uinfo->type = SNDRV_CTL_ELEM_TYPE_IEC958;
  613. uinfo->count = 1;
  614. return 0;
  615. }
  616. static int snd_ac97_spdif_cmask_get(snd_kcontrol_t *kcontrol, snd_ctl_elem_value_t * ucontrol)
  617. {
  618. ucontrol->value.iec958.status[0] = IEC958_AES0_PROFESSIONAL |
  619. IEC958_AES0_NONAUDIO |
  620. IEC958_AES0_CON_EMPHASIS_5015 |
  621. IEC958_AES0_CON_NOT_COPYRIGHT;
  622. ucontrol->value.iec958.status[1] = IEC958_AES1_CON_CATEGORY |
  623. IEC958_AES1_CON_ORIGINAL;
  624. ucontrol->value.iec958.status[3] = IEC958_AES3_CON_FS;
  625. return 0;
  626. }
  627. static int snd_ac97_spdif_pmask_get(snd_kcontrol_t *kcontrol, snd_ctl_elem_value_t * ucontrol)
  628. {
  629. /* FIXME: AC'97 spec doesn't say which bits are used for what */
  630. ucontrol->value.iec958.status[0] = IEC958_AES0_PROFESSIONAL |
  631. IEC958_AES0_NONAUDIO |
  632. IEC958_AES0_PRO_FS |
  633. IEC958_AES0_PRO_EMPHASIS_5015;
  634. return 0;
  635. }
  636. static int snd_ac97_spdif_default_get(snd_kcontrol_t *kcontrol, snd_ctl_elem_value_t * ucontrol)
  637. {
  638. ac97_t *ac97 = snd_kcontrol_chip(kcontrol);
  639. down(&ac97->reg_mutex);
  640. ucontrol->value.iec958.status[0] = ac97->spdif_status & 0xff;
  641. ucontrol->value.iec958.status[1] = (ac97->spdif_status >> 8) & 0xff;
  642. ucontrol->value.iec958.status[2] = (ac97->spdif_status >> 16) & 0xff;
  643. ucontrol->value.iec958.status[3] = (ac97->spdif_status >> 24) & 0xff;
  644. up(&ac97->reg_mutex);
  645. return 0;
  646. }
  647. static int snd_ac97_spdif_default_put(snd_kcontrol_t *kcontrol, snd_ctl_elem_value_t * ucontrol)
  648. {
  649. ac97_t *ac97 = snd_kcontrol_chip(kcontrol);
  650. unsigned int new = 0;
  651. unsigned short val = 0;
  652. int change;
  653. new = val = ucontrol->value.iec958.status[0] & (IEC958_AES0_PROFESSIONAL|IEC958_AES0_NONAUDIO);
  654. if (ucontrol->value.iec958.status[0] & IEC958_AES0_PROFESSIONAL) {
  655. new |= ucontrol->value.iec958.status[0] & (IEC958_AES0_PRO_FS|IEC958_AES0_PRO_EMPHASIS_5015);
  656. switch (new & IEC958_AES0_PRO_FS) {
  657. case IEC958_AES0_PRO_FS_44100: val |= 0<<12; break;
  658. case IEC958_AES0_PRO_FS_48000: val |= 2<<12; break;
  659. case IEC958_AES0_PRO_FS_32000: val |= 3<<12; break;
  660. default: val |= 1<<12; break;
  661. }
  662. if ((new & IEC958_AES0_PRO_EMPHASIS) == IEC958_AES0_PRO_EMPHASIS_5015)
  663. val |= 1<<3;
  664. } else {
  665. new |= ucontrol->value.iec958.status[0] & (IEC958_AES0_CON_EMPHASIS_5015|IEC958_AES0_CON_NOT_COPYRIGHT);
  666. new |= ((ucontrol->value.iec958.status[1] & (IEC958_AES1_CON_CATEGORY|IEC958_AES1_CON_ORIGINAL)) << 8);
  667. new |= ((ucontrol->value.iec958.status[3] & IEC958_AES3_CON_FS) << 24);
  668. if ((new & IEC958_AES0_CON_EMPHASIS) == IEC958_AES0_CON_EMPHASIS_5015)
  669. val |= 1<<3;
  670. if (!(new & IEC958_AES0_CON_NOT_COPYRIGHT))
  671. val |= 1<<2;
  672. val |= ((new >> 8) & 0xff) << 4; // category + original
  673. switch ((new >> 24) & 0xff) {
  674. case IEC958_AES3_CON_FS_44100: val |= 0<<12; break;
  675. case IEC958_AES3_CON_FS_48000: val |= 2<<12; break;
  676. case IEC958_AES3_CON_FS_32000: val |= 3<<12; break;
  677. default: val |= 1<<12; break;
  678. }
  679. }
  680. down(&ac97->reg_mutex);
  681. change = ac97->spdif_status != new;
  682. ac97->spdif_status = new;
  683. if (ac97->flags & AC97_CS_SPDIF) {
  684. int x = (val >> 12) & 0x03;
  685. switch (x) {
  686. case 0: x = 1; break; // 44.1
  687. case 2: x = 0; break; // 48.0
  688. default: x = 0; break; // illegal.
  689. }
  690. change |= snd_ac97_update_bits_nolock(ac97, AC97_CSR_SPDIF, 0x3fff, ((val & 0xcfff) | (x << 12)));
  691. } else if (ac97->flags & AC97_CX_SPDIF) {
  692. int v;
  693. v = new & (IEC958_AES0_CON_EMPHASIS_5015|IEC958_AES0_CON_NOT_COPYRIGHT) ? 0 : AC97_CXR_COPYRGT;
  694. v |= new & IEC958_AES0_NONAUDIO ? AC97_CXR_SPDIF_AC3 : AC97_CXR_SPDIF_PCM;
  695. change |= snd_ac97_update_bits_nolock(ac97, AC97_CXR_AUDIO_MISC,
  696. AC97_CXR_SPDIF_MASK | AC97_CXR_COPYRGT,
  697. v);
  698. } else {
  699. unsigned short extst = snd_ac97_read_cache(ac97, AC97_EXTENDED_STATUS);
  700. snd_ac97_update_bits_nolock(ac97, AC97_EXTENDED_STATUS, AC97_EA_SPDIF, 0); /* turn off */
  701. change |= snd_ac97_update_bits_nolock(ac97, AC97_SPDIF, 0x3fff, val);
  702. if (extst & AC97_EA_SPDIF) {
  703. snd_ac97_update_bits_nolock(ac97, AC97_EXTENDED_STATUS, AC97_EA_SPDIF, AC97_EA_SPDIF); /* turn on again */
  704. }
  705. }
  706. up(&ac97->reg_mutex);
  707. return change;
  708. }
  709. static int snd_ac97_put_spsa(snd_kcontrol_t *kcontrol, snd_ctl_elem_value_t *ucontrol)
  710. {
  711. ac97_t *ac97 = snd_kcontrol_chip(kcontrol);
  712. int reg = kcontrol->private_value & 0xff;
  713. int shift = (kcontrol->private_value >> 8) & 0xff;
  714. int mask = (kcontrol->private_value >> 16) & 0xff;
  715. // int invert = (kcontrol->private_value >> 24) & 0xff;
  716. unsigned short value, old, new;
  717. int change;
  718. value = (ucontrol->value.integer.value[0] & mask);
  719. down(&ac97->reg_mutex);
  720. mask <<= shift;
  721. value <<= shift;
  722. old = snd_ac97_read_cache(ac97, reg);
  723. new = (old & ~mask) | value;
  724. change = old != new;
  725. if (change) {
  726. unsigned short extst = snd_ac97_read_cache(ac97, AC97_EXTENDED_STATUS);
  727. snd_ac97_update_bits_nolock(ac97, AC97_EXTENDED_STATUS, AC97_EA_SPDIF, 0); /* turn off */
  728. change = snd_ac97_update_bits_nolock(ac97, reg, mask, value);
  729. if (extst & AC97_EA_SPDIF)
  730. snd_ac97_update_bits_nolock(ac97, AC97_EXTENDED_STATUS, AC97_EA_SPDIF, AC97_EA_SPDIF); /* turn on again */
  731. }
  732. up(&ac97->reg_mutex);
  733. return change;
  734. }
  735. const snd_kcontrol_new_t snd_ac97_controls_spdif[5] = {
  736. {
  737. .access = SNDRV_CTL_ELEM_ACCESS_READ,
  738. .iface = SNDRV_CTL_ELEM_IFACE_MIXER,
  739. .name = SNDRV_CTL_NAME_IEC958("",PLAYBACK,CON_MASK),
  740. .info = snd_ac97_spdif_mask_info,
  741. .get = snd_ac97_spdif_cmask_get,
  742. },
  743. {
  744. .access = SNDRV_CTL_ELEM_ACCESS_READ,
  745. .iface = SNDRV_CTL_ELEM_IFACE_MIXER,
  746. .name = SNDRV_CTL_NAME_IEC958("",PLAYBACK,PRO_MASK),
  747. .info = snd_ac97_spdif_mask_info,
  748. .get = snd_ac97_spdif_pmask_get,
  749. },
  750. {
  751. .iface = SNDRV_CTL_ELEM_IFACE_MIXER,
  752. .name = SNDRV_CTL_NAME_IEC958("",PLAYBACK,DEFAULT),
  753. .info = snd_ac97_spdif_mask_info,
  754. .get = snd_ac97_spdif_default_get,
  755. .put = snd_ac97_spdif_default_put,
  756. },
  757. AC97_SINGLE(SNDRV_CTL_NAME_IEC958("",PLAYBACK,SWITCH),AC97_EXTENDED_STATUS, 2, 1, 0),
  758. {
  759. .iface = SNDRV_CTL_ELEM_IFACE_MIXER,
  760. .name = SNDRV_CTL_NAME_IEC958("",PLAYBACK,NONE) "AC97-SPSA",
  761. .info = snd_ac97_info_volsw,
  762. .get = snd_ac97_get_volsw,
  763. .put = snd_ac97_put_spsa,
  764. .private_value = AC97_SINGLE_VALUE(AC97_EXTENDED_STATUS, 4, 3, 0)
  765. },
  766. };
  767. #define AD18XX_PCM_BITS(xname, codec, lshift, rshift, mask) \
  768. { .iface = SNDRV_CTL_ELEM_IFACE_MIXER, .name = xname, .info = snd_ac97_ad18xx_pcm_info_bits, \
  769. .get = snd_ac97_ad18xx_pcm_get_bits, .put = snd_ac97_ad18xx_pcm_put_bits, \
  770. .private_value = (codec) | ((lshift) << 8) | ((rshift) << 12) | ((mask) << 16) }
  771. static int snd_ac97_ad18xx_pcm_info_bits(snd_kcontrol_t *kcontrol, snd_ctl_elem_info_t * uinfo)
  772. {
  773. ac97_t *ac97 = snd_kcontrol_chip(kcontrol);
  774. int mask = (kcontrol->private_value >> 16) & 0x0f;
  775. int lshift = (kcontrol->private_value >> 8) & 0x0f;
  776. int rshift = (kcontrol->private_value >> 12) & 0x0f;
  777. uinfo->type = mask == 1 ? SNDRV_CTL_ELEM_TYPE_BOOLEAN : SNDRV_CTL_ELEM_TYPE_INTEGER;
  778. if (lshift != rshift && (ac97->flags & AC97_STEREO_MUTES))
  779. uinfo->count = 2;
  780. else
  781. uinfo->count = 1;
  782. uinfo->value.integer.min = 0;
  783. uinfo->value.integer.max = mask;
  784. return 0;
  785. }
  786. static int snd_ac97_ad18xx_pcm_get_bits(snd_kcontrol_t * kcontrol, snd_ctl_elem_value_t * ucontrol)
  787. {
  788. ac97_t *ac97 = snd_kcontrol_chip(kcontrol);
  789. int codec = kcontrol->private_value & 3;
  790. int lshift = (kcontrol->private_value >> 8) & 0x0f;
  791. int rshift = (kcontrol->private_value >> 12) & 0x0f;
  792. int mask = (kcontrol->private_value >> 16) & 0xff;
  793. ucontrol->value.integer.value[0] = mask - ((ac97->spec.ad18xx.pcmreg[codec] >> lshift) & mask);
  794. if (lshift != rshift && (ac97->flags & AC97_STEREO_MUTES))
  795. ucontrol->value.integer.value[1] = mask - ((ac97->spec.ad18xx.pcmreg[codec] >> rshift) & mask);
  796. return 0;
  797. }
  798. static int snd_ac97_ad18xx_pcm_put_bits(snd_kcontrol_t * kcontrol, snd_ctl_elem_value_t * ucontrol)
  799. {
  800. ac97_t *ac97 = snd_kcontrol_chip(kcontrol);
  801. int codec = kcontrol->private_value & 3;
  802. int lshift = (kcontrol->private_value >> 8) & 0x0f;
  803. int rshift = (kcontrol->private_value >> 12) & 0x0f;
  804. int mask = (kcontrol->private_value >> 16) & 0xff;
  805. unsigned short val, valmask;
  806. val = (mask - (ucontrol->value.integer.value[0] & mask)) << lshift;
  807. valmask = mask << lshift;
  808. if (lshift != rshift && (ac97->flags & AC97_STEREO_MUTES)) {
  809. val |= (mask - (ucontrol->value.integer.value[1] & mask)) << rshift;
  810. valmask |= mask << rshift;
  811. }
  812. return snd_ac97_ad18xx_update_pcm_bits(ac97, codec, valmask, val);
  813. }
  814. #define AD18XX_PCM_VOLUME(xname, codec) \
  815. { .iface = SNDRV_CTL_ELEM_IFACE_MIXER, .name = xname, .info = snd_ac97_ad18xx_pcm_info_volume, \
  816. .get = snd_ac97_ad18xx_pcm_get_volume, .put = snd_ac97_ad18xx_pcm_put_volume, \
  817. .private_value = codec }
  818. static int snd_ac97_ad18xx_pcm_info_volume(snd_kcontrol_t *kcontrol, snd_ctl_elem_info_t * uinfo)
  819. {
  820. uinfo->type = SNDRV_CTL_ELEM_TYPE_INTEGER;
  821. uinfo->count = 2;
  822. uinfo->value.integer.min = 0;
  823. uinfo->value.integer.max = 31;
  824. return 0;
  825. }
  826. static int snd_ac97_ad18xx_pcm_get_volume(snd_kcontrol_t * kcontrol, snd_ctl_elem_value_t * ucontrol)
  827. {
  828. ac97_t *ac97 = snd_kcontrol_chip(kcontrol);
  829. int codec = kcontrol->private_value & 3;
  830. down(&ac97->page_mutex);
  831. ucontrol->value.integer.value[0] = 31 - ((ac97->spec.ad18xx.pcmreg[codec] >> 0) & 31);
  832. ucontrol->value.integer.value[1] = 31 - ((ac97->spec.ad18xx.pcmreg[codec] >> 8) & 31);
  833. up(&ac97->page_mutex);
  834. return 0;
  835. }
  836. static int snd_ac97_ad18xx_pcm_put_volume(snd_kcontrol_t * kcontrol, snd_ctl_elem_value_t * ucontrol)
  837. {
  838. ac97_t *ac97 = snd_kcontrol_chip(kcontrol);
  839. int codec = kcontrol->private_value & 3;
  840. unsigned short val1, val2;
  841. val1 = 31 - (ucontrol->value.integer.value[0] & 31);
  842. val2 = 31 - (ucontrol->value.integer.value[1] & 31);
  843. return snd_ac97_ad18xx_update_pcm_bits(ac97, codec, 0x1f1f, (val1 << 8) | val2);
  844. }
  845. static const snd_kcontrol_new_t snd_ac97_controls_ad18xx_pcm[2] = {
  846. AD18XX_PCM_BITS("PCM Playback Switch", 0, 15, 7, 1),
  847. AD18XX_PCM_VOLUME("PCM Playback Volume", 0)
  848. };
  849. static const snd_kcontrol_new_t snd_ac97_controls_ad18xx_surround[2] = {
  850. AD18XX_PCM_BITS("Surround Playback Switch", 1, 15, 7, 1),
  851. AD18XX_PCM_VOLUME("Surround Playback Volume", 1)
  852. };
  853. static const snd_kcontrol_new_t snd_ac97_controls_ad18xx_center[2] = {
  854. AD18XX_PCM_BITS("Center Playback Switch", 2, 15, 15, 1),
  855. AD18XX_PCM_BITS("Center Playback Volume", 2, 8, 8, 31)
  856. };
  857. static const snd_kcontrol_new_t snd_ac97_controls_ad18xx_lfe[2] = {
  858. AD18XX_PCM_BITS("LFE Playback Switch", 2, 7, 7, 1),
  859. AD18XX_PCM_BITS("LFE Playback Volume", 2, 0, 0, 31)
  860. };
  861. /*
  862. *
  863. */
  864. static void snd_ac97_powerdown(ac97_t *ac97);
  865. static int snd_ac97_bus_free(ac97_bus_t *bus)
  866. {
  867. if (bus) {
  868. snd_ac97_bus_proc_done(bus);
  869. kfree(bus->pcms);
  870. if (bus->private_free)
  871. bus->private_free(bus);
  872. kfree(bus);
  873. }
  874. return 0;
  875. }
  876. static int snd_ac97_bus_dev_free(snd_device_t *device)
  877. {
  878. ac97_bus_t *bus = device->device_data;
  879. return snd_ac97_bus_free(bus);
  880. }
  881. static int snd_ac97_free(ac97_t *ac97)
  882. {
  883. if (ac97) {
  884. snd_ac97_proc_done(ac97);
  885. if (ac97->bus) {
  886. ac97->bus->codec[ac97->num] = NULL;
  887. if (ac97->bus->shared_type) {
  888. down(&shared_codec_mutex);
  889. shared_codec[ac97->bus->shared_type-1][ac97->num] = NULL;
  890. up(&shared_codec_mutex);
  891. }
  892. }
  893. if (ac97->private_free)
  894. ac97->private_free(ac97);
  895. kfree(ac97);
  896. }
  897. return 0;
  898. }
  899. static int snd_ac97_dev_free(snd_device_t *device)
  900. {
  901. ac97_t *ac97 = device->device_data;
  902. snd_ac97_powerdown(ac97); /* for avoiding click noises during shut down */
  903. return snd_ac97_free(ac97);
  904. }
  905. static int snd_ac97_try_volume_mix(ac97_t * ac97, int reg)
  906. {
  907. unsigned short val, mask = 0x8000;
  908. if (! snd_ac97_valid_reg(ac97, reg))
  909. return 0;
  910. switch (reg) {
  911. case AC97_MASTER_TONE:
  912. return ac97->caps & 0x04 ? 1 : 0;
  913. case AC97_HEADPHONE:
  914. return ac97->caps & 0x10 ? 1 : 0;
  915. case AC97_REC_GAIN_MIC:
  916. return ac97->caps & 0x01 ? 1 : 0;
  917. case AC97_3D_CONTROL:
  918. if (ac97->caps & 0x7c00) {
  919. val = snd_ac97_read(ac97, reg);
  920. /* if nonzero - fixed and we can't set it */
  921. return val == 0;
  922. }
  923. return 0;
  924. case AC97_CENTER_LFE_MASTER: /* center */
  925. if ((ac97->ext_id & AC97_EI_CDAC) == 0)
  926. return 0;
  927. break;
  928. case AC97_CENTER_LFE_MASTER+1: /* lfe */
  929. if ((ac97->ext_id & AC97_EI_LDAC) == 0)
  930. return 0;
  931. reg = AC97_CENTER_LFE_MASTER;
  932. mask = 0x0080;
  933. break;
  934. case AC97_SURROUND_MASTER:
  935. if ((ac97->ext_id & AC97_EI_SDAC) == 0)
  936. return 0;
  937. break;
  938. }
  939. if (ac97->limited_regs && test_bit(reg, ac97->reg_accessed))
  940. return 1; /* allow without check */
  941. val = snd_ac97_read(ac97, reg);
  942. if (!(val & mask)) {
  943. /* nothing seems to be here - mute flag is not set */
  944. /* try another test */
  945. snd_ac97_write_cache(ac97, reg, val | mask);
  946. val = snd_ac97_read(ac97, reg);
  947. if (!(val & mask))
  948. return 0; /* nothing here */
  949. }
  950. return 1; /* success, useable */
  951. }
  952. static void check_volume_resolution(ac97_t *ac97, int reg, unsigned char *lo_max, unsigned char *hi_max)
  953. {
  954. unsigned short cbit[3] = { 0x20, 0x10, 0x01 };
  955. unsigned char max[3] = { 63, 31, 15 };
  956. int i;
  957. *lo_max = *hi_max = 0;
  958. for (i = 0 ; i < ARRAY_SIZE(cbit); i++) {
  959. unsigned short val;
  960. snd_ac97_write(ac97, reg, 0x8080 | cbit[i] | (cbit[i] << 8));
  961. val = snd_ac97_read(ac97, reg);
  962. if (! *lo_max && (val & 0x7f) == cbit[i])
  963. *lo_max = max[i];
  964. if (! *hi_max && ((val >> 8) & 0x7f) == cbit[i])
  965. *hi_max = max[i];
  966. if (*lo_max && *hi_max)
  967. break;
  968. }
  969. }
  970. int snd_ac97_try_bit(ac97_t * ac97, int reg, int bit)
  971. {
  972. unsigned short mask, val, orig, res;
  973. mask = 1 << bit;
  974. orig = snd_ac97_read(ac97, reg);
  975. val = orig ^ mask;
  976. snd_ac97_write(ac97, reg, val);
  977. res = snd_ac97_read(ac97, reg);
  978. snd_ac97_write_cache(ac97, reg, orig);
  979. return res == val;
  980. }
  981. /* check the volume resolution of center/lfe */
  982. static void snd_ac97_change_volume_params2(ac97_t * ac97, int reg, int shift, unsigned char *max)
  983. {
  984. unsigned short val, val1;
  985. *max = 63;
  986. val = 0x8080 | (0x20 << shift);
  987. snd_ac97_write(ac97, reg, val);
  988. val1 = snd_ac97_read(ac97, reg);
  989. if (val != val1) {
  990. *max = 31;
  991. }
  992. /* reset volume to zero */
  993. snd_ac97_write_cache(ac97, reg, 0x8080);
  994. }
  995. static inline int printable(unsigned int x)
  996. {
  997. x &= 0xff;
  998. if (x < ' ' || x >= 0x71) {
  999. if (x <= 0x89)
  1000. return x - 0x71 + 'A';
  1001. return '?';
  1002. }
  1003. return x;
  1004. }
  1005. snd_kcontrol_t *snd_ac97_cnew(const snd_kcontrol_new_t *_template, ac97_t * ac97)
  1006. {
  1007. snd_kcontrol_new_t template;
  1008. memcpy(&template, _template, sizeof(template));
  1009. snd_runtime_check(!template.index, return NULL);
  1010. template.index = ac97->num;
  1011. return snd_ctl_new1(&template, ac97);
  1012. }
  1013. /*
  1014. * create mute switch(es) for normal stereo controls
  1015. */
  1016. static int snd_ac97_cmute_new_stereo(snd_card_t *card, char *name, int reg, int check_stereo, ac97_t *ac97)
  1017. {
  1018. snd_kcontrol_t *kctl;
  1019. int err;
  1020. unsigned short val, val1, mute_mask;
  1021. if (! snd_ac97_valid_reg(ac97, reg))
  1022. return 0;
  1023. mute_mask = 0x8000;
  1024. val = snd_ac97_read(ac97, reg);
  1025. if (check_stereo || (ac97->flags & AC97_STEREO_MUTES)) {
  1026. /* check whether both mute bits work */
  1027. val1 = val | 0x8080;
  1028. snd_ac97_write(ac97, reg, val1);
  1029. if (val1 == snd_ac97_read(ac97, reg))
  1030. mute_mask = 0x8080;
  1031. }
  1032. if (mute_mask == 0x8080) {
  1033. snd_kcontrol_new_t tmp = AC97_DOUBLE(name, reg, 15, 7, 1, 1);
  1034. tmp.index = ac97->num;
  1035. kctl = snd_ctl_new1(&tmp, ac97);
  1036. } else {
  1037. snd_kcontrol_new_t tmp = AC97_SINGLE(name, reg, 15, 1, 1);
  1038. tmp.index = ac97->num;
  1039. kctl = snd_ctl_new1(&tmp, ac97);
  1040. }
  1041. err = snd_ctl_add(card, kctl);
  1042. if (err < 0)
  1043. return err;
  1044. /* mute as default */
  1045. snd_ac97_write_cache(ac97, reg, val | mute_mask);
  1046. return 0;
  1047. }
  1048. /*
  1049. * create a volume for normal stereo/mono controls
  1050. */
  1051. static int snd_ac97_cvol_new(snd_card_t *card, char *name, int reg, unsigned int lo_max,
  1052. unsigned int hi_max, ac97_t *ac97)
  1053. {
  1054. int err;
  1055. snd_kcontrol_t *kctl;
  1056. if (! snd_ac97_valid_reg(ac97, reg))
  1057. return 0;
  1058. if (hi_max) {
  1059. /* invert */
  1060. snd_kcontrol_new_t tmp = AC97_DOUBLE(name, reg, 8, 0, lo_max, 1);
  1061. tmp.index = ac97->num;
  1062. kctl = snd_ctl_new1(&tmp, ac97);
  1063. } else {
  1064. /* invert */
  1065. snd_kcontrol_new_t tmp = AC97_SINGLE(name, reg, 0, lo_max, 1);
  1066. tmp.index = ac97->num;
  1067. kctl = snd_ctl_new1(&tmp, ac97);
  1068. }
  1069. err = snd_ctl_add(card, kctl);
  1070. if (err < 0)
  1071. return err;
  1072. snd_ac97_write_cache(ac97, reg,
  1073. (snd_ac97_read(ac97, reg) & 0x8080) |
  1074. lo_max | (hi_max << 8));
  1075. return 0;
  1076. }
  1077. /*
  1078. * create a mute-switch and a volume for normal stereo/mono controls
  1079. */
  1080. static int snd_ac97_cmix_new_stereo(snd_card_t *card, const char *pfx, int reg, int check_stereo, ac97_t *ac97)
  1081. {
  1082. int err;
  1083. char name[44];
  1084. unsigned char lo_max, hi_max;
  1085. if (! snd_ac97_valid_reg(ac97, reg))
  1086. return 0;
  1087. if (snd_ac97_try_bit(ac97, reg, 15)) {
  1088. sprintf(name, "%s Switch", pfx);
  1089. if ((err = snd_ac97_cmute_new_stereo(card, name, reg, check_stereo, ac97)) < 0)
  1090. return err;
  1091. }
  1092. check_volume_resolution(ac97, reg, &lo_max, &hi_max);
  1093. if (lo_max) {
  1094. sprintf(name, "%s Volume", pfx);
  1095. if ((err = snd_ac97_cvol_new(card, name, reg, lo_max, hi_max, ac97)) < 0)
  1096. return err;
  1097. }
  1098. return 0;
  1099. }
  1100. #define snd_ac97_cmix_new(card, pfx, reg, ac97) snd_ac97_cmix_new_stereo(card, pfx, reg, 0, ac97)
  1101. #define snd_ac97_cmute_new(card, name, reg, ac97) snd_ac97_cmute_new_stereo(card, name, reg, 0, ac97)
  1102. static unsigned int snd_ac97_determine_spdif_rates(ac97_t *ac97);
  1103. static int snd_ac97_mixer_build(ac97_t * ac97)
  1104. {
  1105. snd_card_t *card = ac97->bus->card;
  1106. snd_kcontrol_t *kctl;
  1107. int err;
  1108. unsigned int idx;
  1109. unsigned char max;
  1110. /* build master controls */
  1111. /* AD claims to remove this control from AD1887, although spec v2.2 does not allow this */
  1112. if (snd_ac97_try_volume_mix(ac97, AC97_MASTER)) {
  1113. if (ac97->flags & AC97_HAS_NO_MASTER_VOL)
  1114. err = snd_ac97_cmute_new(card, "Master Playback Switch", AC97_MASTER, ac97);
  1115. else
  1116. err = snd_ac97_cmix_new(card, "Master Playback", AC97_MASTER, ac97);
  1117. if (err < 0)
  1118. return err;
  1119. }
  1120. ac97->regs[AC97_CENTER_LFE_MASTER] = 0x8080;
  1121. /* build center controls */
  1122. if (snd_ac97_try_volume_mix(ac97, AC97_CENTER_LFE_MASTER)) {
  1123. if ((err = snd_ctl_add(card, snd_ac97_cnew(&snd_ac97_controls_center[0], ac97))) < 0)
  1124. return err;
  1125. if ((err = snd_ctl_add(card, kctl = snd_ac97_cnew(&snd_ac97_controls_center[1], ac97))) < 0)
  1126. return err;
  1127. snd_ac97_change_volume_params2(ac97, AC97_CENTER_LFE_MASTER, 0, &max);
  1128. kctl->private_value &= ~(0xff << 16);
  1129. kctl->private_value |= (int)max << 16;
  1130. snd_ac97_write_cache(ac97, AC97_CENTER_LFE_MASTER, ac97->regs[AC97_CENTER_LFE_MASTER] | max);
  1131. }
  1132. /* build LFE controls */
  1133. if (snd_ac97_try_volume_mix(ac97, AC97_CENTER_LFE_MASTER+1)) {
  1134. if ((err = snd_ctl_add(card, snd_ac97_cnew(&snd_ac97_controls_lfe[0], ac97))) < 0)
  1135. return err;
  1136. if ((err = snd_ctl_add(card, kctl = snd_ac97_cnew(&snd_ac97_controls_lfe[1], ac97))) < 0)
  1137. return err;
  1138. snd_ac97_change_volume_params2(ac97, AC97_CENTER_LFE_MASTER, 8, &max);
  1139. kctl->private_value &= ~(0xff << 16);
  1140. kctl->private_value |= (int)max << 16;
  1141. snd_ac97_write_cache(ac97, AC97_CENTER_LFE_MASTER, ac97->regs[AC97_CENTER_LFE_MASTER] | max << 8);
  1142. }
  1143. /* build surround controls */
  1144. if (snd_ac97_try_volume_mix(ac97, AC97_SURROUND_MASTER)) {
  1145. /* Surround Master (0x38) is with stereo mutes */
  1146. if ((err = snd_ac97_cmix_new_stereo(card, "Surround Playback", AC97_SURROUND_MASTER, 1, ac97)) < 0)
  1147. return err;
  1148. }
  1149. /* build headphone controls */
  1150. if (snd_ac97_try_volume_mix(ac97, AC97_HEADPHONE)) {
  1151. if ((err = snd_ac97_cmix_new(card, "Headphone Playback", AC97_HEADPHONE, ac97)) < 0)
  1152. return err;
  1153. }
  1154. /* build master mono controls */
  1155. if (snd_ac97_try_volume_mix(ac97, AC97_MASTER_MONO)) {
  1156. if ((err = snd_ac97_cmix_new(card, "Master Mono Playback", AC97_MASTER_MONO, ac97)) < 0)
  1157. return err;
  1158. }
  1159. /* build master tone controls */
  1160. if (snd_ac97_try_volume_mix(ac97, AC97_MASTER_TONE)) {
  1161. for (idx = 0; idx < 2; idx++) {
  1162. if ((err = snd_ctl_add(card, kctl = snd_ac97_cnew(&snd_ac97_controls_tone[idx], ac97))) < 0)
  1163. return err;
  1164. if (ac97->id == AC97_ID_YMF753) {
  1165. kctl->private_value &= ~(0xff << 16);
  1166. kctl->private_value |= 7 << 16;
  1167. }
  1168. }
  1169. snd_ac97_write_cache(ac97, AC97_MASTER_TONE, 0x0f0f);
  1170. }
  1171. /* build PC Speaker controls */
  1172. if (!(ac97->flags & AC97_HAS_NO_PC_BEEP) &&
  1173. ((ac97->flags & AC97_HAS_PC_BEEP) ||
  1174. snd_ac97_try_volume_mix(ac97, AC97_PC_BEEP))) {
  1175. for (idx = 0; idx < 2; idx++)
  1176. if ((err = snd_ctl_add(card, snd_ac97_cnew(&snd_ac97_controls_pc_beep[idx], ac97))) < 0)
  1177. return err;
  1178. snd_ac97_write_cache(ac97, AC97_PC_BEEP,
  1179. snd_ac97_read(ac97, AC97_PC_BEEP) | 0x801e);
  1180. }
  1181. /* build Phone controls */
  1182. if (!(ac97->flags & AC97_HAS_NO_PHONE)) {
  1183. if (snd_ac97_try_volume_mix(ac97, AC97_PHONE)) {
  1184. if ((err = snd_ac97_cmix_new(card, "Phone Playback", AC97_PHONE, ac97)) < 0)
  1185. return err;
  1186. }
  1187. }
  1188. /* build MIC controls */
  1189. if (snd_ac97_try_volume_mix(ac97, AC97_MIC)) {
  1190. if ((err = snd_ac97_cmix_new(card, "Mic Playback", AC97_MIC, ac97)) < 0)
  1191. return err;
  1192. if ((err = snd_ctl_add(card, snd_ac97_cnew(&snd_ac97_controls_mic_boost, ac97))) < 0)
  1193. return err;
  1194. }
  1195. /* build Line controls */
  1196. if (snd_ac97_try_volume_mix(ac97, AC97_LINE)) {
  1197. if ((err = snd_ac97_cmix_new(card, "Line Playback", AC97_LINE, ac97)) < 0)
  1198. return err;
  1199. }
  1200. /* build CD controls */
  1201. if (!(ac97->flags & AC97_HAS_NO_CD)) {
  1202. if (snd_ac97_try_volume_mix(ac97, AC97_CD)) {
  1203. if ((err = snd_ac97_cmix_new(card, "CD Playback", AC97_CD, ac97)) < 0)
  1204. return err;
  1205. }
  1206. }
  1207. /* build Video controls */
  1208. if (!(ac97->flags & AC97_HAS_NO_VIDEO)) {
  1209. if (snd_ac97_try_volume_mix(ac97, AC97_VIDEO)) {
  1210. if ((err = snd_ac97_cmix_new(card, "Video Playback", AC97_VIDEO, ac97)) < 0)
  1211. return err;
  1212. }
  1213. }
  1214. /* build Aux controls */
  1215. if (snd_ac97_try_volume_mix(ac97, AC97_AUX)) {
  1216. if ((err = snd_ac97_cmix_new(card, "Aux Playback", AC97_AUX, ac97)) < 0)
  1217. return err;
  1218. }
  1219. /* build PCM controls */
  1220. if (ac97->flags & AC97_AD_MULTI) {
  1221. unsigned short init_val;
  1222. if (ac97->flags & AC97_STEREO_MUTES)
  1223. init_val = 0x9f9f;
  1224. else
  1225. init_val = 0x9f1f;
  1226. for (idx = 0; idx < 2; idx++)
  1227. if ((err = snd_ctl_add(card, snd_ac97_cnew(&snd_ac97_controls_ad18xx_pcm[idx], ac97))) < 0)
  1228. return err;
  1229. ac97->spec.ad18xx.pcmreg[0] = init_val;
  1230. if (ac97->scaps & AC97_SCAP_SURROUND_DAC) {
  1231. for (idx = 0; idx < 2; idx++)
  1232. if ((err = snd_ctl_add(card, snd_ac97_cnew(&snd_ac97_controls_ad18xx_surround[idx], ac97))) < 0)
  1233. return err;
  1234. ac97->spec.ad18xx.pcmreg[1] = init_val;
  1235. }
  1236. if (ac97->scaps & AC97_SCAP_CENTER_LFE_DAC) {
  1237. for (idx = 0; idx < 2; idx++)
  1238. if ((err = snd_ctl_add(card, snd_ac97_cnew(&snd_ac97_controls_ad18xx_center[idx], ac97))) < 0)
  1239. return err;
  1240. for (idx = 0; idx < 2; idx++)
  1241. if ((err = snd_ctl_add(card, snd_ac97_cnew(&snd_ac97_controls_ad18xx_lfe[idx], ac97))) < 0)
  1242. return err;
  1243. ac97->spec.ad18xx.pcmreg[2] = init_val;
  1244. }
  1245. snd_ac97_write_cache(ac97, AC97_PCM, init_val);
  1246. } else {
  1247. if (ac97->flags & AC97_HAS_NO_PCM_VOL)
  1248. err = snd_ac97_cmute_new(card, "PCM Playback Switch", AC97_PCM, ac97);
  1249. else
  1250. err = snd_ac97_cmix_new(card, "PCM Playback", AC97_PCM, ac97);
  1251. if (err < 0)
  1252. return err;
  1253. }
  1254. /* build Capture controls */
  1255. if (!(ac97->flags & AC97_HAS_NO_REC_GAIN)) {
  1256. if ((err = snd_ctl_add(card, snd_ac97_cnew(&snd_ac97_control_capture_src, ac97))) < 0)
  1257. return err;
  1258. if (snd_ac97_try_bit(ac97, AC97_REC_GAIN, 15)) {
  1259. if ((err = snd_ac97_cmute_new(card, "Capture Switch", AC97_REC_GAIN, ac97)) < 0)
  1260. return err;
  1261. }
  1262. if ((err = snd_ctl_add(card, snd_ac97_cnew(&snd_ac97_control_capture_vol, ac97))) < 0)
  1263. return err;
  1264. snd_ac97_write_cache(ac97, AC97_REC_SEL, 0x0000);
  1265. snd_ac97_write_cache(ac97, AC97_REC_GAIN, 0x0000);
  1266. }
  1267. /* build MIC Capture controls */
  1268. if (snd_ac97_try_volume_mix(ac97, AC97_REC_GAIN_MIC)) {
  1269. for (idx = 0; idx < 2; idx++)
  1270. if ((err = snd_ctl_add(card, snd_ac97_cnew(&snd_ac97_controls_mic_capture[idx], ac97))) < 0)
  1271. return err;
  1272. snd_ac97_write_cache(ac97, AC97_REC_GAIN_MIC, 0x0000);
  1273. }
  1274. /* build PCM out path & mute control */
  1275. if (snd_ac97_try_bit(ac97, AC97_GENERAL_PURPOSE, 15)) {
  1276. if ((err = snd_ctl_add(card, snd_ac97_cnew(&snd_ac97_controls_general[AC97_GENERAL_PCM_OUT], ac97))) < 0)
  1277. return err;
  1278. }
  1279. /* build Simulated Stereo Enhancement control */
  1280. if (ac97->caps & 0x0008) {
  1281. if ((err = snd_ctl_add(card, snd_ac97_cnew(&snd_ac97_controls_general[AC97_GENERAL_STEREO_ENHANCEMENT], ac97))) < 0)
  1282. return err;
  1283. }
  1284. /* build 3D Stereo Enhancement control */
  1285. if (snd_ac97_try_bit(ac97, AC97_GENERAL_PURPOSE, 13)) {
  1286. if ((err = snd_ctl_add(card, snd_ac97_cnew(&snd_ac97_controls_general[AC97_GENERAL_3D], ac97))) < 0)
  1287. return err;
  1288. }
  1289. /* build Loudness control */
  1290. if (ac97->caps & 0x0020) {
  1291. if ((err = snd_ctl_add(card, snd_ac97_cnew(&snd_ac97_controls_general[AC97_GENERAL_LOUDNESS], ac97))) < 0)
  1292. return err;
  1293. }
  1294. /* build Mono output select control */
  1295. if (snd_ac97_try_bit(ac97, AC97_GENERAL_PURPOSE, 9)) {
  1296. if ((err = snd_ctl_add(card, snd_ac97_cnew(&snd_ac97_controls_general[AC97_GENERAL_MONO], ac97))) < 0)
  1297. return err;
  1298. }
  1299. /* build Mic select control */
  1300. if (snd_ac97_try_bit(ac97, AC97_GENERAL_PURPOSE, 8)) {
  1301. if ((err = snd_ctl_add(card, snd_ac97_cnew(&snd_ac97_controls_general[AC97_GENERAL_MIC], ac97))) < 0)
  1302. return err;
  1303. }
  1304. /* build ADC/DAC loopback control */
  1305. if (enable_loopback && snd_ac97_try_bit(ac97, AC97_GENERAL_PURPOSE, 7)) {
  1306. if ((err = snd_ctl_add(card, snd_ac97_cnew(&snd_ac97_controls_general[AC97_GENERAL_LOOPBACK], ac97))) < 0)
  1307. return err;
  1308. }
  1309. snd_ac97_update_bits(ac97, AC97_GENERAL_PURPOSE, ~AC97_GP_DRSS_MASK, 0x0000);
  1310. /* build 3D controls */
  1311. if (ac97->build_ops->build_3d) {
  1312. ac97->build_ops->build_3d(ac97);
  1313. } else {
  1314. if (snd_ac97_try_volume_mix(ac97, AC97_3D_CONTROL)) {
  1315. unsigned short val;
  1316. val = 0x0707;
  1317. snd_ac97_write(ac97, AC97_3D_CONTROL, val);
  1318. val = snd_ac97_read(ac97, AC97_3D_CONTROL);
  1319. val = val == 0x0606;
  1320. if ((err = snd_ctl_add(card, kctl = snd_ac97_cnew(&snd_ac97_controls_3d[0], ac97))) < 0)
  1321. return err;
  1322. if (val)
  1323. kctl->private_value = AC97_3D_CONTROL | (9 << 8) | (7 << 16);
  1324. if ((err = snd_ctl_add(card, kctl = snd_ac97_cnew(&snd_ac97_controls_3d[1], ac97))) < 0)
  1325. return err;
  1326. if (val)
  1327. kctl->private_value = AC97_3D_CONTROL | (1 << 8) | (7 << 16);
  1328. snd_ac97_write_cache(ac97, AC97_3D_CONTROL, 0x0000);
  1329. }
  1330. }
  1331. /* build S/PDIF controls */
  1332. if ((ac97->ext_id & AC97_EI_SPDIF) && !(ac97->scaps & AC97_SCAP_NO_SPDIF)) {
  1333. if (ac97->build_ops->build_spdif) {
  1334. if ((err = ac97->build_ops->build_spdif(ac97)) < 0)
  1335. return err;
  1336. } else {
  1337. for (idx = 0; idx < 5; idx++)
  1338. if ((err = snd_ctl_add(card, snd_ac97_cnew(&snd_ac97_controls_spdif[idx], ac97))) < 0)
  1339. return err;
  1340. if (ac97->build_ops->build_post_spdif) {
  1341. if ((err = ac97->build_ops->build_post_spdif(ac97)) < 0)
  1342. return err;
  1343. }
  1344. /* set default PCM S/PDIF params */
  1345. /* consumer,PCM audio,no copyright,no preemphasis,PCM coder,original,48000Hz */
  1346. snd_ac97_write_cache(ac97, AC97_SPDIF, 0x2a20);
  1347. ac97->rates[AC97_RATES_SPDIF] = snd_ac97_determine_spdif_rates(ac97);
  1348. }
  1349. ac97->spdif_status = SNDRV_PCM_DEFAULT_CON_SPDIF;
  1350. }
  1351. /* build chip specific controls */
  1352. if (ac97->build_ops->build_specific)
  1353. if ((err = ac97->build_ops->build_specific(ac97)) < 0)
  1354. return err;
  1355. if (snd_ac97_try_bit(ac97, AC97_POWERDOWN, 15)) {
  1356. kctl = snd_ac97_cnew(&snd_ac97_control_eapd, ac97);
  1357. if (! kctl)
  1358. return -ENOMEM;
  1359. if (ac97->scaps & AC97_SCAP_INV_EAPD)
  1360. set_inv_eapd(ac97, kctl);
  1361. if ((err = snd_ctl_add(card, kctl)) < 0)
  1362. return err;
  1363. }
  1364. return 0;
  1365. }
  1366. static int snd_ac97_modem_build(snd_card_t * card, ac97_t * ac97)
  1367. {
  1368. /* TODO */
  1369. //printk("AC97_GPIO_CFG = %x\n",snd_ac97_read(ac97,AC97_GPIO_CFG));
  1370. snd_ac97_write(ac97, AC97_GPIO_CFG, 0xffff & ~(AC97_GPIO_LINE1_OH));
  1371. snd_ac97_write(ac97, AC97_GPIO_POLARITY, 0xffff & ~(AC97_GPIO_LINE1_OH));
  1372. snd_ac97_write(ac97, AC97_GPIO_STICKY, 0xffff);
  1373. snd_ac97_write(ac97, AC97_GPIO_WAKEUP, 0x0);
  1374. snd_ac97_write(ac97, AC97_MISC_AFE, 0x0);
  1375. return 0;
  1376. }
  1377. static int snd_ac97_test_rate(ac97_t *ac97, int reg, int shadow_reg, int rate)
  1378. {
  1379. unsigned short val;
  1380. unsigned int tmp;
  1381. tmp = ((unsigned int)rate * ac97->bus->clock) / 48000;
  1382. snd_ac97_write_cache(ac97, reg, tmp & 0xffff);
  1383. if (shadow_reg)
  1384. snd_ac97_write_cache(ac97, shadow_reg, tmp & 0xffff);
  1385. val = snd_ac97_read(ac97, reg);
  1386. return val == (tmp & 0xffff);
  1387. }
  1388. static void snd_ac97_determine_rates(ac97_t *ac97, int reg, int shadow_reg, unsigned int *r_result)
  1389. {
  1390. unsigned int result = 0;
  1391. unsigned short saved;
  1392. if (ac97->bus->no_vra) {
  1393. *r_result = SNDRV_PCM_RATE_48000;
  1394. if ((ac97->flags & AC97_DOUBLE_RATE) &&
  1395. reg == AC97_PCM_FRONT_DAC_RATE)
  1396. *r_result |= SNDRV_PCM_RATE_96000;
  1397. return;
  1398. }
  1399. saved = snd_ac97_read(ac97, reg);
  1400. if ((ac97->ext_id & AC97_EI_DRA) && reg == AC97_PCM_FRONT_DAC_RATE)
  1401. snd_ac97_update_bits(ac97, AC97_EXTENDED_STATUS,
  1402. AC97_EA_DRA, 0);
  1403. /* test a non-standard rate */
  1404. if (snd_ac97_test_rate(ac97, reg, shadow_reg, 11000))
  1405. result |= SNDRV_PCM_RATE_CONTINUOUS;
  1406. /* let's try to obtain standard rates */
  1407. if (snd_ac97_test_rate(ac97, reg, shadow_reg, 8000))
  1408. result |= SNDRV_PCM_RATE_8000;
  1409. if (snd_ac97_test_rate(ac97, reg, shadow_reg, 11025))
  1410. result |= SNDRV_PCM_RATE_11025;
  1411. if (snd_ac97_test_rate(ac97, reg, shadow_reg, 16000))
  1412. result |= SNDRV_PCM_RATE_16000;
  1413. if (snd_ac97_test_rate(ac97, reg, shadow_reg, 22050))
  1414. result |= SNDRV_PCM_RATE_22050;
  1415. if (snd_ac97_test_rate(ac97, reg, shadow_reg, 32000))
  1416. result |= SNDRV_PCM_RATE_32000;
  1417. if (snd_ac97_test_rate(ac97, reg, shadow_reg, 44100))
  1418. result |= SNDRV_PCM_RATE_44100;
  1419. if (snd_ac97_test_rate(ac97, reg, shadow_reg, 48000))
  1420. result |= SNDRV_PCM_RATE_48000;
  1421. if ((ac97->flags & AC97_DOUBLE_RATE) &&
  1422. reg == AC97_PCM_FRONT_DAC_RATE) {
  1423. /* test standard double rates */
  1424. snd_ac97_update_bits(ac97, AC97_EXTENDED_STATUS,
  1425. AC97_EA_DRA, AC97_EA_DRA);
  1426. if (snd_ac97_test_rate(ac97, reg, shadow_reg, 64000 / 2))
  1427. result |= SNDRV_PCM_RATE_64000;
  1428. if (snd_ac97_test_rate(ac97, reg, shadow_reg, 88200 / 2))
  1429. result |= SNDRV_PCM_RATE_88200;
  1430. if (snd_ac97_test_rate(ac97, reg, shadow_reg, 96000 / 2))
  1431. result |= SNDRV_PCM_RATE_96000;
  1432. /* some codecs don't support variable double rates */
  1433. if (!snd_ac97_test_rate(ac97, reg, shadow_reg, 76100 / 2))
  1434. result &= ~SNDRV_PCM_RATE_CONTINUOUS;
  1435. snd_ac97_update_bits(ac97, AC97_EXTENDED_STATUS,
  1436. AC97_EA_DRA, 0);
  1437. }
  1438. /* restore the default value */
  1439. snd_ac97_write_cache(ac97, reg, saved);
  1440. if (shadow_reg)
  1441. snd_ac97_write_cache(ac97, shadow_reg, saved);
  1442. *r_result = result;
  1443. }
  1444. /* check AC97_SPDIF register to accept which sample rates */
  1445. static unsigned int snd_ac97_determine_spdif_rates(ac97_t *ac97)
  1446. {
  1447. unsigned int result = 0;
  1448. int i;
  1449. static unsigned short ctl_bits[] = {
  1450. AC97_SC_SPSR_44K, AC97_SC_SPSR_32K, AC97_SC_SPSR_48K
  1451. };
  1452. static unsigned int rate_bits[] = {
  1453. SNDRV_PCM_RATE_44100, SNDRV_PCM_RATE_32000, SNDRV_PCM_RATE_48000
  1454. };
  1455. for (i = 0; i < (int)ARRAY_SIZE(ctl_bits); i++) {
  1456. snd_ac97_update_bits(ac97, AC97_SPDIF, AC97_SC_SPSR_MASK, ctl_bits[i]);
  1457. if ((snd_ac97_read(ac97, AC97_SPDIF) & AC97_SC_SPSR_MASK) == ctl_bits[i])
  1458. result |= rate_bits[i];
  1459. }
  1460. return result;
  1461. }
  1462. /* look for the codec id table matching with the given id */
  1463. static const ac97_codec_id_t *look_for_codec_id(const ac97_codec_id_t *table,
  1464. unsigned int id)
  1465. {
  1466. const ac97_codec_id_t *pid;
  1467. for (pid = table; pid->id; pid++)
  1468. if (pid->id == (id & pid->mask))
  1469. return pid;
  1470. return NULL;
  1471. }
  1472. void snd_ac97_get_name(ac97_t *ac97, unsigned int id, char *name, int modem)
  1473. {
  1474. const ac97_codec_id_t *pid;
  1475. sprintf(name, "0x%x %c%c%c", id,
  1476. printable(id >> 24),
  1477. printable(id >> 16),
  1478. printable(id >> 8));
  1479. pid = look_for_codec_id(snd_ac97_codec_id_vendors, id);
  1480. if (! pid)
  1481. return;
  1482. strcpy(name, pid->name);
  1483. if (ac97 && pid->patch) {
  1484. if ((modem && (pid->flags & AC97_MODEM_PATCH)) ||
  1485. (! modem && ! (pid->flags & AC97_MODEM_PATCH)))
  1486. pid->patch(ac97);
  1487. }
  1488. pid = look_for_codec_id(snd_ac97_codec_ids, id);
  1489. if (pid) {
  1490. strcat(name, " ");
  1491. strcat(name, pid->name);
  1492. if (pid->mask != 0xffffffff)
  1493. sprintf(name + strlen(name), " rev %d", id & ~pid->mask);
  1494. if (ac97 && pid->patch) {
  1495. if ((modem && (pid->flags & AC97_MODEM_PATCH)) ||
  1496. (! modem && ! (pid->flags & AC97_MODEM_PATCH)))
  1497. pid->patch(ac97);
  1498. }
  1499. } else
  1500. sprintf(name + strlen(name), " id %x", id & 0xff);
  1501. }
  1502. /**
  1503. * snd_ac97_get_short_name - retrieve codec name
  1504. * @ac97: the codec instance
  1505. *
  1506. * Returns the short identifying name of the codec.
  1507. */
  1508. const char *snd_ac97_get_short_name(ac97_t *ac97)
  1509. {
  1510. const ac97_codec_id_t *pid;
  1511. for (pid = snd_ac97_codec_ids; pid->id; pid++)
  1512. if (pid->id == (ac97->id & pid->mask))
  1513. return pid->name;
  1514. return "unknown codec";
  1515. }
  1516. /* wait for a while until registers are accessible after RESET
  1517. * return 0 if ok, negative not ready
  1518. */
  1519. static int ac97_reset_wait(ac97_t *ac97, int timeout, int with_modem)
  1520. {
  1521. unsigned long end_time;
  1522. unsigned short val;
  1523. end_time = jiffies + timeout;
  1524. do {
  1525. /* use preliminary reads to settle the communication */
  1526. snd_ac97_read(ac97, AC97_RESET);
  1527. snd_ac97_read(ac97, AC97_VENDOR_ID1);
  1528. snd_ac97_read(ac97, AC97_VENDOR_ID2);
  1529. /* modem? */
  1530. if (with_modem) {
  1531. val = snd_ac97_read(ac97, AC97_EXTENDED_MID);
  1532. if (val != 0xffff && (val & 1) != 0)
  1533. return 0;
  1534. }
  1535. if (ac97->scaps & AC97_SCAP_DETECT_BY_VENDOR) {
  1536. /* probably only Xbox issue - all registers are read as zero */
  1537. val = snd_ac97_read(ac97, AC97_VENDOR_ID1);
  1538. if (val != 0 && val != 0xffff)
  1539. return 0;
  1540. } else {
  1541. /* because the PCM or MASTER volume registers can be modified,
  1542. * the REC_GAIN register is used for tests
  1543. */
  1544. /* test if we can write to the record gain volume register */
  1545. snd_ac97_write_cache(ac97, AC97_REC_GAIN, 0x8a05);
  1546. if ((snd_ac97_read(ac97, AC97_REC_GAIN) & 0x7fff) == 0x0a05)
  1547. return 0;
  1548. }
  1549. set_current_state(TASK_UNINTERRUPTIBLE);
  1550. schedule_timeout(1);
  1551. } while (time_after_eq(end_time, jiffies));
  1552. return -ENODEV;
  1553. }
  1554. /**
  1555. * snd_ac97_bus - create an AC97 bus component
  1556. * @card: the card instance
  1557. * @num: the bus number
  1558. * @ops: the bus callbacks table
  1559. * @private_data: private data pointer for the new instance
  1560. * @rbus: the pointer to store the new AC97 bus instance.
  1561. *
  1562. * Creates an AC97 bus component. An ac97_bus_t instance is newly
  1563. * allocated and initialized.
  1564. *
  1565. * The ops table must include valid callbacks (at least read and
  1566. * write). The other callbacks, wait and reset, are not mandatory.
  1567. *
  1568. * The clock is set to 48000. If another clock is needed, set
  1569. * (*rbus)->clock manually.
  1570. *
  1571. * The AC97 bus instance is registered as a low-level device, so you don't
  1572. * have to release it manually.
  1573. *
  1574. * Returns zero if successful, or a negative error code on failure.
  1575. */
  1576. int snd_ac97_bus(snd_card_t *card, int num, ac97_bus_ops_t *ops,
  1577. void *private_data, ac97_bus_t **rbus)
  1578. {
  1579. int err;
  1580. ac97_bus_t *bus;
  1581. static snd_device_ops_t dev_ops = {
  1582. .dev_free = snd_ac97_bus_dev_free,
  1583. };
  1584. snd_assert(card != NULL, return -EINVAL);
  1585. snd_assert(rbus != NULL, return -EINVAL);
  1586. bus = kcalloc(1, sizeof(*bus), GFP_KERNEL);
  1587. if (bus == NULL)
  1588. return -ENOMEM;
  1589. bus->card = card;
  1590. bus->num = num;
  1591. bus->ops = ops;
  1592. bus->private_data = private_data;
  1593. bus->clock = 48000;
  1594. spin_lock_init(&bus->bus_lock);
  1595. snd_ac97_bus_proc_init(bus);
  1596. if ((err = snd_device_new(card, SNDRV_DEV_BUS, bus, &dev_ops)) < 0) {
  1597. snd_ac97_bus_free(bus);
  1598. return err;
  1599. }
  1600. *rbus = bus;
  1601. return 0;
  1602. }
  1603. /* build_ops to do nothing */
  1604. static struct snd_ac97_build_ops null_build_ops;
  1605. /**
  1606. * snd_ac97_mixer - create an Codec97 component
  1607. * @bus: the AC97 bus which codec is attached to
  1608. * @template: the template of ac97, including index, callbacks and
  1609. * the private data.
  1610. * @rac97: the pointer to store the new ac97 instance.
  1611. *
  1612. * Creates an Codec97 component. An ac97_t instance is newly
  1613. * allocated and initialized from the template. The codec
  1614. * is then initialized by the standard procedure.
  1615. *
  1616. * The template must include the codec number (num) and address (addr),
  1617. * and the private data (private_data).
  1618. *
  1619. * The ac97 instance is registered as a low-level device, so you don't
  1620. * have to release it manually.
  1621. *
  1622. * Returns zero if successful, or a negative error code on failure.
  1623. */
  1624. int snd_ac97_mixer(ac97_bus_t *bus, ac97_template_t *template, ac97_t **rac97)
  1625. {
  1626. int err;
  1627. ac97_t *ac97;
  1628. snd_card_t *card;
  1629. char name[64];
  1630. unsigned long end_time;
  1631. unsigned int reg;
  1632. const ac97_codec_id_t *pid;
  1633. static snd_device_ops_t ops = {
  1634. .dev_free = snd_ac97_dev_free,
  1635. };
  1636. snd_assert(rac97 != NULL, return -EINVAL);
  1637. *rac97 = NULL;
  1638. snd_assert(bus != NULL && template != NULL, return -EINVAL);
  1639. snd_assert(template->num < 4 && bus->codec[template->num] == NULL, return -EINVAL);
  1640. snd_assert(bus->shared_type <= AC97_SHARED_TYPES, return -EINVAL);
  1641. if (bus->shared_type) {
  1642. /* already shared? */
  1643. down(&shared_codec_mutex);
  1644. ac97 = shared_codec[bus->shared_type-1][template->num];
  1645. if (ac97) {
  1646. if ((ac97_is_audio(ac97) && (template->scaps & AC97_SCAP_SKIP_AUDIO)) ||
  1647. (ac97_is_modem(ac97) && (template->scaps & AC97_SCAP_SKIP_MODEM))) {
  1648. up(&shared_codec_mutex);
  1649. return -EACCES; /* skip this */
  1650. }
  1651. }
  1652. up(&shared_codec_mutex);
  1653. }
  1654. card = bus->card;
  1655. ac97 = kcalloc(1, sizeof(*ac97), GFP_KERNEL);
  1656. if (ac97 == NULL)
  1657. return -ENOMEM;
  1658. ac97->private_data = template->private_data;
  1659. ac97->private_free = template->private_free;
  1660. ac97->bus = bus;
  1661. ac97->pci = template->pci;
  1662. ac97->num = template->num;
  1663. ac97->addr = template->addr;
  1664. ac97->scaps = template->scaps;
  1665. ac97->limited_regs = template->limited_regs;
  1666. memcpy(ac97->reg_accessed, template->reg_accessed, sizeof(ac97->reg_accessed));
  1667. bus->codec[ac97->num] = ac97;
  1668. init_MUTEX(&ac97->reg_mutex);
  1669. init_MUTEX(&ac97->page_mutex);
  1670. if (ac97->pci) {
  1671. pci_read_config_word(ac97->pci, PCI_SUBSYSTEM_VENDOR_ID, &ac97->subsystem_vendor);
  1672. pci_read_config_word(ac97->pci, PCI_SUBSYSTEM_ID, &ac97->subsystem_device);
  1673. }
  1674. if (bus->ops->reset) {
  1675. bus->ops->reset(ac97);
  1676. goto __access_ok;
  1677. }
  1678. ac97->id = snd_ac97_read(ac97, AC97_VENDOR_ID1) << 16;
  1679. ac97->id |= snd_ac97_read(ac97, AC97_VENDOR_ID2);
  1680. if (ac97->id && ac97->id != (unsigned int)-1) {
  1681. pid = look_for_codec_id(snd_ac97_codec_ids, ac97->id);
  1682. if (pid && (pid->flags & AC97_DEFAULT_POWER_OFF))
  1683. goto __access_ok;
  1684. }
  1685. snd_ac97_write(ac97, AC97_RESET, 0); /* reset to defaults */
  1686. if (bus->ops->wait)
  1687. bus->ops->wait(ac97);
  1688. else {
  1689. udelay(50);
  1690. if (ac97->scaps & AC97_SCAP_SKIP_AUDIO)
  1691. err = ac97_reset_wait(ac97, HZ/2, 1);
  1692. else {
  1693. err = ac97_reset_wait(ac97, HZ/2, 0);
  1694. if (err < 0)
  1695. err = ac97_reset_wait(ac97, HZ/2, 1);
  1696. }
  1697. if (err < 0) {
  1698. snd_printk(KERN_WARNING "AC'97 %d does not respond - RESET\n", ac97->num);
  1699. /* proceed anyway - it's often non-critical */
  1700. }
  1701. }
  1702. __access_ok:
  1703. ac97->id = snd_ac97_read(ac97, AC97_VENDOR_ID1) << 16;
  1704. ac97->id |= snd_ac97_read(ac97, AC97_VENDOR_ID2);
  1705. if (! (ac97->scaps & AC97_SCAP_DETECT_BY_VENDOR) &&
  1706. (ac97->id == 0x00000000 || ac97->id == 0xffffffff)) {
  1707. snd_printk(KERN_ERR "AC'97 %d access is not valid [0x%x], removing mixer.\n", ac97->num, ac97->id);
  1708. snd_ac97_free(ac97);
  1709. return -EIO;
  1710. }
  1711. pid = look_for_codec_id(snd_ac97_codec_ids, ac97->id);
  1712. if (pid)
  1713. ac97->flags |= pid->flags;
  1714. /* test for AC'97 */
  1715. if (!(ac97->scaps & AC97_SCAP_SKIP_AUDIO) && !(ac97->scaps & AC97_SCAP_AUDIO)) {
  1716. /* test if we can write to the record gain volume register */
  1717. snd_ac97_write_cache(ac97, AC97_REC_GAIN, 0x8a06);
  1718. if (((err = snd_ac97_read(ac97, AC97_REC_GAIN)) & 0x7fff) == 0x0a06)
  1719. ac97->scaps |= AC97_SCAP_AUDIO;
  1720. }
  1721. if (ac97->scaps & AC97_SCAP_AUDIO) {
  1722. ac97->caps = snd_ac97_read(ac97, AC97_RESET);
  1723. ac97->ext_id = snd_ac97_read(ac97, AC97_EXTENDED_ID);
  1724. if (ac97->ext_id == 0xffff) /* invalid combination */
  1725. ac97->ext_id = 0;
  1726. }
  1727. /* test for MC'97 */
  1728. if (!(ac97->scaps & AC97_SCAP_SKIP_MODEM) && !(ac97->scaps & AC97_SCAP_MODEM)) {
  1729. ac97->ext_mid = snd_ac97_read(ac97, AC97_EXTENDED_MID);
  1730. if (ac97->ext_mid == 0xffff) /* invalid combination */
  1731. ac97->ext_mid = 0;
  1732. if (ac97->ext_mid & 1)
  1733. ac97->scaps |= AC97_SCAP_MODEM;
  1734. }
  1735. if (!ac97_is_audio(ac97) && !ac97_is_modem(ac97)) {
  1736. if (!(ac97->scaps & (AC97_SCAP_SKIP_AUDIO|AC97_SCAP_SKIP_MODEM)))
  1737. snd_printk(KERN_ERR "AC'97 %d access error (not audio or modem codec)\n", ac97->num);
  1738. snd_ac97_free(ac97);
  1739. return -EACCES;
  1740. }
  1741. if (bus->ops->reset) // FIXME: always skipping?
  1742. goto __ready_ok;
  1743. /* FIXME: add powerdown control */
  1744. if (ac97_is_audio(ac97)) {
  1745. /* nothing should be in powerdown mode */
  1746. snd_ac97_write_cache(ac97, AC97_POWERDOWN, 0);
  1747. if (! (ac97->flags & AC97_DEFAULT_POWER_OFF)) {
  1748. snd_ac97_write_cache(ac97, AC97_RESET, 0); /* reset to defaults */
  1749. udelay(100);
  1750. snd_ac97_write_cache(ac97, AC97_POWERDOWN, 0);
  1751. }
  1752. /* nothing should be in powerdown mode */
  1753. snd_ac97_write_cache(ac97, AC97_GENERAL_PURPOSE, 0);
  1754. end_time = jiffies + (HZ / 10);
  1755. do {
  1756. if ((snd_ac97_read(ac97, AC97_POWERDOWN) & 0x0f) == 0x0f)
  1757. goto __ready_ok;
  1758. set_current_state(TASK_UNINTERRUPTIBLE);
  1759. schedule_timeout(1);
  1760. } while (time_after_eq(end_time, jiffies));
  1761. snd_printk(KERN_WARNING "AC'97 %d analog subsections not ready\n", ac97->num);
  1762. }
  1763. /* FIXME: add powerdown control */
  1764. if (ac97_is_modem(ac97)) {
  1765. unsigned char tmp;
  1766. /* nothing should be in powerdown mode */
  1767. /* note: it's important to set the rate at first */
  1768. tmp = AC97_MEA_GPIO;
  1769. if (ac97->ext_mid & AC97_MEI_LINE1) {
  1770. snd_ac97_write_cache(ac97, AC97_LINE1_RATE, 12000);
  1771. tmp |= AC97_MEA_ADC1 | AC97_MEA_DAC1;
  1772. }
  1773. if (ac97->ext_mid & AC97_MEI_LINE2) {
  1774. snd_ac97_write_cache(ac97, AC97_LINE2_RATE, 12000);
  1775. tmp |= AC97_MEA_ADC2 | AC97_MEA_DAC2;
  1776. }
  1777. if (ac97->ext_mid & AC97_MEI_HANDSET) {
  1778. snd_ac97_write_cache(ac97, AC97_HANDSET_RATE, 12000);
  1779. tmp |= AC97_MEA_HADC | AC97_MEA_HDAC;
  1780. }
  1781. snd_ac97_write_cache(ac97, AC97_EXTENDED_MSTATUS, 0xff00 & ~(tmp << 8));
  1782. udelay(100);
  1783. /* nothing should be in powerdown mode */
  1784. snd_ac97_write_cache(ac97, AC97_EXTENDED_MSTATUS, 0xff00 & ~(tmp << 8));
  1785. end_time = jiffies + (HZ / 10);
  1786. do {
  1787. if ((snd_ac97_read(ac97, AC97_EXTENDED_MSTATUS) & tmp) == tmp)
  1788. goto __ready_ok;
  1789. set_current_state(TASK_UNINTERRUPTIBLE);
  1790. schedule_timeout(1);
  1791. } while (time_after_eq(end_time, jiffies));
  1792. snd_printk(KERN_WARNING "MC'97 %d converters and GPIO not ready (0x%x)\n", ac97->num, snd_ac97_read(ac97, AC97_EXTENDED_MSTATUS));
  1793. }
  1794. __ready_ok:
  1795. if (ac97_is_audio(ac97))
  1796. ac97->addr = (ac97->ext_id & AC97_EI_ADDR_MASK) >> AC97_EI_ADDR_SHIFT;
  1797. else
  1798. ac97->addr = (ac97->ext_mid & AC97_MEI_ADDR_MASK) >> AC97_MEI_ADDR_SHIFT;
  1799. if (ac97->ext_id & 0x01c9) { /* L/R, MIC, SDAC, LDAC VRA support */
  1800. reg = snd_ac97_read(ac97, AC97_EXTENDED_STATUS);
  1801. reg |= ac97->ext_id & 0x01c0; /* LDAC/SDAC/CDAC */
  1802. if (! bus->no_vra)
  1803. reg |= ac97->ext_id & 0x0009; /* VRA/VRM */
  1804. snd_ac97_write_cache(ac97, AC97_EXTENDED_STATUS, reg);
  1805. }
  1806. if ((ac97->ext_id & AC97_EI_DRA) && bus->dra) {
  1807. /* Intel controllers require double rate data to be put in
  1808. * slots 7+8, so let's hope the codec supports it. */
  1809. snd_ac97_update_bits(ac97, AC97_GENERAL_PURPOSE, AC97_GP_DRSS_MASK, AC97_GP_DRSS_78);
  1810. if ((snd_ac97_read(ac97, AC97_GENERAL_PURPOSE) & AC97_GP_DRSS_MASK) == AC97_GP_DRSS_78)
  1811. ac97->flags |= AC97_DOUBLE_RATE;
  1812. }
  1813. if (ac97->ext_id & AC97_EI_VRA) { /* VRA support */
  1814. snd_ac97_determine_rates(ac97, AC97_PCM_FRONT_DAC_RATE, 0, &ac97->rates[AC97_RATES_FRONT_DAC]);
  1815. snd_ac97_determine_rates(ac97, AC97_PCM_LR_ADC_RATE, 0, &ac97->rates[AC97_RATES_ADC]);
  1816. } else {
  1817. ac97->rates[AC97_RATES_FRONT_DAC] = SNDRV_PCM_RATE_48000;
  1818. if (ac97->flags & AC97_DOUBLE_RATE)
  1819. ac97->rates[AC97_RATES_FRONT_DAC] |= SNDRV_PCM_RATE_96000;
  1820. ac97->rates[AC97_RATES_ADC] = SNDRV_PCM_RATE_48000;
  1821. }
  1822. if (ac97->ext_id & AC97_EI_SPDIF) {
  1823. /* codec specific code (patch) should override these values */
  1824. ac97->rates[AC97_RATES_SPDIF] = SNDRV_PCM_RATE_48000 | SNDRV_PCM_RATE_44100 | SNDRV_PCM_RATE_32000;
  1825. }
  1826. if (ac97->ext_id & AC97_EI_VRM) { /* MIC VRA support */
  1827. snd_ac97_determine_rates(ac97, AC97_PCM_MIC_ADC_RATE, 0, &ac97->rates[AC97_RATES_MIC_ADC]);
  1828. } else {
  1829. ac97->rates[AC97_RATES_MIC_ADC] = SNDRV_PCM_RATE_48000;
  1830. }
  1831. if (ac97->ext_id & AC97_EI_SDAC) { /* SDAC support */
  1832. snd_ac97_determine_rates(ac97, AC97_PCM_SURR_DAC_RATE, AC97_PCM_FRONT_DAC_RATE, &ac97->rates[AC97_RATES_SURR_DAC]);
  1833. ac97->scaps |= AC97_SCAP_SURROUND_DAC;
  1834. }
  1835. if (ac97->ext_id & AC97_EI_LDAC) { /* LDAC support */
  1836. snd_ac97_determine_rates(ac97, AC97_PCM_LFE_DAC_RATE, AC97_PCM_FRONT_DAC_RATE, &ac97->rates[AC97_RATES_LFE_DAC]);
  1837. ac97->scaps |= AC97_SCAP_CENTER_LFE_DAC;
  1838. }
  1839. /* additional initializations */
  1840. if (bus->ops->init)
  1841. bus->ops->init(ac97);
  1842. snd_ac97_get_name(ac97, ac97->id, name, !ac97_is_audio(ac97));
  1843. snd_ac97_get_name(NULL, ac97->id, name, !ac97_is_audio(ac97)); // ac97->id might be changed in the special setup code
  1844. if (! ac97->build_ops)
  1845. ac97->build_ops = &null_build_ops;
  1846. if (ac97_is_audio(ac97)) {
  1847. char comp[16];
  1848. if (card->mixername[0] == '\0') {
  1849. strcpy(card->mixername, name);
  1850. } else {
  1851. if (strlen(card->mixername) + 1 + strlen(name) + 1 <= sizeof(card->mixername)) {
  1852. strcat(card->mixername, ",");
  1853. strcat(card->mixername, name);
  1854. }
  1855. }
  1856. sprintf(comp, "AC97a:%08x", ac97->id);
  1857. if ((err = snd_component_add(card, comp)) < 0) {
  1858. snd_ac97_free(ac97);
  1859. return err;
  1860. }
  1861. if (snd_ac97_mixer_build(ac97) < 0) {
  1862. snd_ac97_free(ac97);
  1863. return -ENOMEM;
  1864. }
  1865. }
  1866. if (ac97_is_modem(ac97)) {
  1867. char comp[16];
  1868. if (card->mixername[0] == '\0') {
  1869. strcpy(card->mixername, name);
  1870. } else {
  1871. if (strlen(card->mixername) + 1 + strlen(name) + 1 <= sizeof(card->mixername)) {
  1872. strcat(card->mixername, ",");
  1873. strcat(card->mixername, name);
  1874. }
  1875. }
  1876. sprintf(comp, "AC97m:%08x", ac97->id);
  1877. if ((err = snd_component_add(card, comp)) < 0) {
  1878. snd_ac97_free(ac97);
  1879. return err;
  1880. }
  1881. if (snd_ac97_modem_build(card, ac97) < 0) {
  1882. snd_ac97_free(ac97);
  1883. return -ENOMEM;
  1884. }
  1885. }
  1886. /* make sure the proper powerdown bits are cleared */
  1887. if (ac97->scaps) {
  1888. reg = snd_ac97_read(ac97, AC97_EXTENDED_STATUS);
  1889. if (ac97->scaps & AC97_SCAP_SURROUND_DAC)
  1890. reg &= ~AC97_EA_PRJ;
  1891. if (ac97->scaps & AC97_SCAP_CENTER_LFE_DAC)
  1892. reg &= ~(AC97_EA_PRI | AC97_EA_PRK);
  1893. snd_ac97_write_cache(ac97, AC97_EXTENDED_STATUS, reg);
  1894. }
  1895. snd_ac97_proc_init(ac97);
  1896. if ((err = snd_device_new(card, SNDRV_DEV_CODEC, ac97, &ops)) < 0) {
  1897. snd_ac97_free(ac97);
  1898. return err;
  1899. }
  1900. *rac97 = ac97;
  1901. if (bus->shared_type) {
  1902. down(&shared_codec_mutex);
  1903. shared_codec[bus->shared_type-1][ac97->num] = ac97;
  1904. up(&shared_codec_mutex);
  1905. }
  1906. return 0;
  1907. }
  1908. /*
  1909. * Power down the chip.
  1910. *
  1911. * MASTER and HEADPHONE registers are muted but the register cache values
  1912. * are not changed, so that the values can be restored in snd_ac97_resume().
  1913. */
  1914. static void snd_ac97_powerdown(ac97_t *ac97)
  1915. {
  1916. unsigned short power;
  1917. if (ac97_is_audio(ac97)) {
  1918. /* some codecs have stereo mute bits */
  1919. snd_ac97_write(ac97, AC97_MASTER, 0x9f9f);
  1920. snd_ac97_write(ac97, AC97_HEADPHONE, 0x9f9f);
  1921. }
  1922. power = ac97->regs[AC97_POWERDOWN] | 0x8000; /* EAPD */
  1923. power |= 0x4000; /* Headphone amplifier powerdown */
  1924. power |= 0x0300; /* ADC & DAC powerdown */
  1925. snd_ac97_write(ac97, AC97_POWERDOWN, power);
  1926. udelay(100);
  1927. power |= 0x0400; /* Analog Mixer powerdown (Vref on) */
  1928. snd_ac97_write(ac97, AC97_POWERDOWN, power);
  1929. udelay(100);
  1930. #if 0
  1931. /* FIXME: this causes click noises on some boards at resume */
  1932. power |= 0x3800; /* AC-link powerdown, internal Clk disable */
  1933. snd_ac97_write(ac97, AC97_POWERDOWN, power);
  1934. #endif
  1935. }
  1936. #ifdef CONFIG_PM
  1937. /**
  1938. * snd_ac97_suspend - General suspend function for AC97 codec
  1939. * @ac97: the ac97 instance
  1940. *
  1941. * Suspends the codec, power down the chip.
  1942. */
  1943. void snd_ac97_suspend(ac97_t *ac97)
  1944. {
  1945. if (ac97->build_ops->suspend)
  1946. ac97->build_ops->suspend(ac97);
  1947. snd_ac97_powerdown(ac97);
  1948. }
  1949. /*
  1950. * restore ac97 status
  1951. */
  1952. void snd_ac97_restore_status(ac97_t *ac97)
  1953. {
  1954. int i;
  1955. for (i = 2; i < 0x7c ; i += 2) {
  1956. if (i == AC97_POWERDOWN || i == AC97_EXTENDED_ID)
  1957. continue;
  1958. /* restore only accessible registers
  1959. * some chip (e.g. nm256) may hang up when unsupported registers
  1960. * are accessed..!
  1961. */
  1962. if (test_bit(i, ac97->reg_accessed)) {
  1963. snd_ac97_write(ac97, i, ac97->regs[i]);
  1964. snd_ac97_read(ac97, i);
  1965. }
  1966. }
  1967. }
  1968. /*
  1969. * restore IEC958 status
  1970. */
  1971. void snd_ac97_restore_iec958(ac97_t *ac97)
  1972. {
  1973. if (ac97->ext_id & AC97_EI_SPDIF) {
  1974. if (ac97->regs[AC97_EXTENDED_STATUS] & AC97_EA_SPDIF) {
  1975. /* reset spdif status */
  1976. snd_ac97_update_bits(ac97, AC97_EXTENDED_STATUS, AC97_EA_SPDIF, 0);
  1977. snd_ac97_write(ac97, AC97_EXTENDED_STATUS, ac97->regs[AC97_EXTENDED_STATUS]);
  1978. if (ac97->flags & AC97_CS_SPDIF)
  1979. snd_ac97_write(ac97, AC97_CSR_SPDIF, ac97->regs[AC97_CSR_SPDIF]);
  1980. else
  1981. snd_ac97_write(ac97, AC97_SPDIF, ac97->regs[AC97_SPDIF]);
  1982. snd_ac97_update_bits(ac97, AC97_EXTENDED_STATUS, AC97_EA_SPDIF, AC97_EA_SPDIF); /* turn on again */
  1983. }
  1984. }
  1985. }
  1986. /**
  1987. * snd_ac97_resume - General resume function for AC97 codec
  1988. * @ac97: the ac97 instance
  1989. *
  1990. * Do the standard resume procedure, power up and restoring the
  1991. * old register values.
  1992. */
  1993. void snd_ac97_resume(ac97_t *ac97)
  1994. {
  1995. int i;
  1996. if (ac97->bus->ops->reset) {
  1997. ac97->bus->ops->reset(ac97);
  1998. goto __reset_ready;
  1999. }
  2000. snd_ac97_write(ac97, AC97_POWERDOWN, 0);
  2001. if (! (ac97->flags & AC97_DEFAULT_POWER_OFF)) {
  2002. snd_ac97_write(ac97, AC97_RESET, 0);
  2003. udelay(100);
  2004. snd_ac97_write(ac97, AC97_POWERDOWN, 0);
  2005. }
  2006. snd_ac97_write(ac97, AC97_GENERAL_PURPOSE, 0);
  2007. snd_ac97_write(ac97, AC97_POWERDOWN, ac97->regs[AC97_POWERDOWN]);
  2008. if (ac97_is_audio(ac97)) {
  2009. ac97->bus->ops->write(ac97, AC97_MASTER, 0x8101);
  2010. for (i = HZ/10; i >= 0; i--) {
  2011. if (snd_ac97_read(ac97, AC97_MASTER) == 0x8101)
  2012. break;
  2013. set_current_state(TASK_UNINTERRUPTIBLE);
  2014. schedule_timeout(1);
  2015. }
  2016. /* FIXME: extra delay */
  2017. ac97->bus->ops->write(ac97, AC97_MASTER, 0x8000);
  2018. if (snd_ac97_read(ac97, AC97_MASTER) != 0x8000) {
  2019. set_current_state(TASK_UNINTERRUPTIBLE);
  2020. schedule_timeout(HZ/4);
  2021. }
  2022. } else {
  2023. for (i = HZ/10; i >= 0; i--) {
  2024. unsigned short val = snd_ac97_read(ac97, AC97_EXTENDED_MID);
  2025. if (val != 0xffff && (val & 1) != 0)
  2026. break;
  2027. set_current_state(TASK_UNINTERRUPTIBLE);
  2028. schedule_timeout(1);
  2029. }
  2030. }
  2031. __reset_ready:
  2032. if (ac97->bus->ops->init)
  2033. ac97->bus->ops->init(ac97);
  2034. if (ac97->build_ops->resume)
  2035. ac97->build_ops->resume(ac97);
  2036. else {
  2037. snd_ac97_restore_status(ac97);
  2038. snd_ac97_restore_iec958(ac97);
  2039. }
  2040. }
  2041. #endif
  2042. /*
  2043. * Hardware tuning
  2044. */
  2045. static void set_ctl_name(char *dst, const char *src, const char *suffix)
  2046. {
  2047. if (suffix)
  2048. sprintf(dst, "%s %s", src, suffix);
  2049. else
  2050. strcpy(dst, src);
  2051. }
  2052. /* remove the control with the given name and optional suffix */
  2053. int snd_ac97_remove_ctl(ac97_t *ac97, const char *name, const char *suffix)
  2054. {
  2055. snd_ctl_elem_id_t id;
  2056. memset(&id, 0, sizeof(id));
  2057. set_ctl_name(id.name, name, suffix);
  2058. id.iface = SNDRV_CTL_ELEM_IFACE_MIXER;
  2059. return snd_ctl_remove_id(ac97->bus->card, &id);
  2060. }
  2061. static snd_kcontrol_t *ctl_find(ac97_t *ac97, const char *name, const char *suffix)
  2062. {
  2063. snd_ctl_elem_id_t sid;
  2064. memset(&sid, 0, sizeof(sid));
  2065. set_ctl_name(sid.name, name, suffix);
  2066. sid.iface = SNDRV_CTL_ELEM_IFACE_MIXER;
  2067. return snd_ctl_find_id(ac97->bus->card, &sid);
  2068. }
  2069. /* rename the control with the given name and optional suffix */
  2070. int snd_ac97_rename_ctl(ac97_t *ac97, const char *src, const char *dst, const char *suffix)
  2071. {
  2072. snd_kcontrol_t *kctl = ctl_find(ac97, src, suffix);
  2073. if (kctl) {
  2074. set_ctl_name(kctl->id.name, dst, suffix);
  2075. return 0;
  2076. }
  2077. return -ENOENT;
  2078. }
  2079. /* rename both Volume and Switch controls - don't check the return value */
  2080. void snd_ac97_rename_vol_ctl(ac97_t *ac97, const char *src, const char *dst)
  2081. {
  2082. snd_ac97_rename_ctl(ac97, src, dst, "Switch");
  2083. snd_ac97_rename_ctl(ac97, src, dst, "Volume");
  2084. }
  2085. /* swap controls */
  2086. int snd_ac97_swap_ctl(ac97_t *ac97, const char *s1, const char *s2, const char *suffix)
  2087. {
  2088. snd_kcontrol_t *kctl1, *kctl2;
  2089. kctl1 = ctl_find(ac97, s1, suffix);
  2090. kctl2 = ctl_find(ac97, s2, suffix);
  2091. if (kctl1 && kctl2) {
  2092. set_ctl_name(kctl1->id.name, s2, suffix);
  2093. set_ctl_name(kctl2->id.name, s1, suffix);
  2094. return 0;
  2095. }
  2096. return -ENOENT;
  2097. }
  2098. #if 1
  2099. /* bind hp and master controls instead of using only hp control */
  2100. static int bind_hp_volsw_put(snd_kcontrol_t *kcontrol, snd_ctl_elem_value_t *ucontrol)
  2101. {
  2102. int err = snd_ac97_put_volsw(kcontrol, ucontrol);
  2103. if (err > 0) {
  2104. unsigned long priv_saved = kcontrol->private_value;
  2105. kcontrol->private_value = (kcontrol->private_value & ~0xff) | AC97_HEADPHONE;
  2106. snd_ac97_put_volsw(kcontrol, ucontrol);
  2107. kcontrol->private_value = priv_saved;
  2108. }
  2109. return err;
  2110. }
  2111. /* ac97 tune: bind Master and Headphone controls */
  2112. static int tune_hp_only(ac97_t *ac97)
  2113. {
  2114. snd_kcontrol_t *msw = ctl_find(ac97, "Master Playback Switch", NULL);
  2115. snd_kcontrol_t *mvol = ctl_find(ac97, "Master Playback Volume", NULL);
  2116. if (! msw || ! mvol)
  2117. return -ENOENT;
  2118. msw->put = bind_hp_volsw_put;
  2119. mvol->put = bind_hp_volsw_put;
  2120. snd_ac97_remove_ctl(ac97, "Headphone Playback", "Switch");
  2121. snd_ac97_remove_ctl(ac97, "Headphone Playback", "Volume");
  2122. return 0;
  2123. }
  2124. #else
  2125. /* ac97 tune: use Headphone control as master */
  2126. static int tune_hp_only(ac97_t *ac97)
  2127. {
  2128. if (ctl_find(ac97, "Headphone Playback Switch", NULL) == NULL)
  2129. return -ENOENT;
  2130. snd_ac97_remove_ctl(ac97, "Master Playback", "Switch");
  2131. snd_ac97_remove_ctl(ac97, "Master Playback", "Volume");
  2132. snd_ac97_rename_vol_ctl(ac97, "Headphone Playback", "Master Playback");
  2133. return 0;
  2134. }
  2135. #endif
  2136. /* ac97 tune: swap Headphone and Master controls */
  2137. static int tune_swap_hp(ac97_t *ac97)
  2138. {
  2139. if (ctl_find(ac97, "Headphone Playback Switch", NULL) == NULL)
  2140. return -ENOENT;
  2141. snd_ac97_rename_vol_ctl(ac97, "Master Playback", "Line-Out Playback");
  2142. snd_ac97_rename_vol_ctl(ac97, "Headphone Playback", "Master Playback");
  2143. return 0;
  2144. }
  2145. /* ac97 tune: swap Surround and Master controls */
  2146. static int tune_swap_surround(ac97_t *ac97)
  2147. {
  2148. if (snd_ac97_swap_ctl(ac97, "Master Playback", "Surround Playback", "Switch") ||
  2149. snd_ac97_swap_ctl(ac97, "Master Playback", "Surround Playback", "Volume"))
  2150. return -ENOENT;
  2151. return 0;
  2152. }
  2153. /* ac97 tune: set up mic sharing for AD codecs */
  2154. static int tune_ad_sharing(ac97_t *ac97)
  2155. {
  2156. unsigned short scfg;
  2157. if ((ac97->id & 0xffffff00) != 0x41445300) {
  2158. snd_printk(KERN_ERR "ac97_quirk AD_SHARING is only for AD codecs\n");
  2159. return -EINVAL;
  2160. }
  2161. /* Turn on OMS bit to route microphone to back panel */
  2162. scfg = snd_ac97_read(ac97, AC97_AD_SERIAL_CFG);
  2163. snd_ac97_write_cache(ac97, AC97_AD_SERIAL_CFG, scfg | 0x0200);
  2164. return 0;
  2165. }
  2166. static const snd_kcontrol_new_t snd_ac97_alc_jack_detect =
  2167. AC97_SINGLE("Jack Detect", AC97_ALC650_CLOCK, 5, 1, 0);
  2168. /* ac97 tune: set up ALC jack-select */
  2169. static int tune_alc_jack(ac97_t *ac97)
  2170. {
  2171. if ((ac97->id & 0xffffff00) != 0x414c4700) {
  2172. snd_printk(KERN_ERR "ac97_quirk ALC_JACK is only for Realtek codecs\n");
  2173. return -EINVAL;
  2174. }
  2175. snd_ac97_update_bits(ac97, 0x7a, 0x20, 0x20); /* select jack detect function */
  2176. snd_ac97_update_bits(ac97, 0x7a, 0x01, 0x01); /* Line-out auto mute */
  2177. return snd_ctl_add(ac97->bus->card, snd_ac97_cnew(&snd_ac97_alc_jack_detect, ac97));
  2178. }
  2179. /* ac97 tune: inversed EAPD bit */
  2180. static int tune_inv_eapd(ac97_t *ac97)
  2181. {
  2182. snd_kcontrol_t *kctl = ctl_find(ac97, "External Amplifier", NULL);
  2183. if (! kctl)
  2184. return -ENOENT;
  2185. set_inv_eapd(ac97, kctl);
  2186. return 0;
  2187. }
  2188. static int master_mute_sw_put(snd_kcontrol_t *kcontrol, snd_ctl_elem_value_t *ucontrol)
  2189. {
  2190. int err = snd_ac97_put_volsw(kcontrol, ucontrol);
  2191. if (err > 0) {
  2192. ac97_t *ac97 = snd_kcontrol_chip(kcontrol);
  2193. int shift = (kcontrol->private_value >> 8) & 0x0f;
  2194. int rshift = (kcontrol->private_value >> 12) & 0x0f;
  2195. unsigned short mask;
  2196. if (shift != rshift)
  2197. mask = 0x8080;
  2198. else
  2199. mask = 0x8000;
  2200. snd_ac97_update_bits(ac97, AC97_POWERDOWN, 0x8000,
  2201. (ac97->regs[AC97_MASTER] & mask) == mask ?
  2202. 0x8000 : 0);
  2203. }
  2204. return err;
  2205. }
  2206. /* ac97 tune: EAPD controls mute LED bound with the master mute */
  2207. static int tune_mute_led(ac97_t *ac97)
  2208. {
  2209. snd_kcontrol_t *msw = ctl_find(ac97, "Master Playback Switch", NULL);
  2210. if (! msw)
  2211. return -ENOENT;
  2212. msw->put = master_mute_sw_put;
  2213. snd_ac97_remove_ctl(ac97, "External Amplifier", NULL);
  2214. snd_ac97_update_bits(ac97, AC97_POWERDOWN, 0x8000, 0x8000); /* mute LED on */
  2215. return 0;
  2216. }
  2217. struct quirk_table {
  2218. const char *name;
  2219. int (*func)(ac97_t *);
  2220. };
  2221. static struct quirk_table applicable_quirks[] = {
  2222. { "none", NULL },
  2223. { "hp_only", tune_hp_only },
  2224. { "swap_hp", tune_swap_hp },
  2225. { "swap_surround", tune_swap_surround },
  2226. { "ad_sharing", tune_ad_sharing },
  2227. { "alc_jack", tune_alc_jack },
  2228. { "inv_eapd", tune_inv_eapd },
  2229. { "mute_led", tune_mute_led },
  2230. };
  2231. /* apply the quirk with the given type */
  2232. static int apply_quirk(ac97_t *ac97, int type)
  2233. {
  2234. if (type <= 0)
  2235. return 0;
  2236. else if (type >= ARRAY_SIZE(applicable_quirks))
  2237. return -EINVAL;
  2238. if (applicable_quirks[type].func)
  2239. return applicable_quirks[type].func(ac97);
  2240. return 0;
  2241. }
  2242. /* apply the quirk with the given name */
  2243. static int apply_quirk_str(ac97_t *ac97, const char *typestr)
  2244. {
  2245. int i;
  2246. struct quirk_table *q;
  2247. for (i = 0; i < ARRAY_SIZE(applicable_quirks); i++) {
  2248. q = &applicable_quirks[i];
  2249. if (q->name && ! strcmp(typestr, q->name))
  2250. return apply_quirk(ac97, i);
  2251. }
  2252. /* for compatibility, accept the numbers, too */
  2253. if (*typestr >= '0' && *typestr <= '9')
  2254. return apply_quirk(ac97, (int)simple_strtoul(typestr, NULL, 10));
  2255. return -EINVAL;
  2256. }
  2257. /**
  2258. * snd_ac97_tune_hardware - tune up the hardware
  2259. * @ac97: the ac97 instance
  2260. * @quirk: quirk list
  2261. * @override: explicit quirk value (overrides the list if non-NULL)
  2262. *
  2263. * Do some workaround for each pci device, such as renaming of the
  2264. * headphone (true line-out) control as "Master".
  2265. * The quirk-list must be terminated with a zero-filled entry.
  2266. *
  2267. * Returns zero if successful, or a negative error code on failure.
  2268. */
  2269. int snd_ac97_tune_hardware(ac97_t *ac97, struct ac97_quirk *quirk, const char *override)
  2270. {
  2271. int result;
  2272. snd_assert(quirk, return -EINVAL);
  2273. /* quirk overriden? */
  2274. if (override && strcmp(override, "-1") && strcmp(override, "default")) {
  2275. result = apply_quirk_str(ac97, override);
  2276. if (result < 0)
  2277. snd_printk(KERN_ERR "applying quirk type %s failed (%d)\n", override, result);
  2278. return result;
  2279. }
  2280. for (; quirk->vendor; quirk++) {
  2281. if (quirk->vendor != ac97->subsystem_vendor)
  2282. continue;
  2283. if ((! quirk->mask && quirk->device == ac97->subsystem_device) ||
  2284. quirk->device == (quirk->mask & ac97->subsystem_device)) {
  2285. if (quirk->codec_id && quirk->codec_id != ac97->id)
  2286. continue;
  2287. snd_printdd("ac97 quirk for %s (%04x:%04x)\n", quirk->name, ac97->subsystem_vendor, ac97->subsystem_device);
  2288. result = apply_quirk(ac97, quirk->type);
  2289. if (result < 0)
  2290. snd_printk(KERN_ERR "applying quirk type %d for %s failed (%d)\n", quirk->type, quirk->name, result);
  2291. return result;
  2292. }
  2293. }
  2294. return 0;
  2295. }
  2296. /*
  2297. * Exported symbols
  2298. */
  2299. EXPORT_SYMBOL(snd_ac97_write);
  2300. EXPORT_SYMBOL(snd_ac97_read);
  2301. EXPORT_SYMBOL(snd_ac97_write_cache);
  2302. EXPORT_SYMBOL(snd_ac97_update);
  2303. EXPORT_SYMBOL(snd_ac97_update_bits);
  2304. EXPORT_SYMBOL(snd_ac97_get_short_name);
  2305. EXPORT_SYMBOL(snd_ac97_bus);
  2306. EXPORT_SYMBOL(snd_ac97_mixer);
  2307. EXPORT_SYMBOL(snd_ac97_pcm_assign);
  2308. EXPORT_SYMBOL(snd_ac97_pcm_open);
  2309. EXPORT_SYMBOL(snd_ac97_pcm_close);
  2310. EXPORT_SYMBOL(snd_ac97_pcm_double_rate_rules);
  2311. EXPORT_SYMBOL(snd_ac97_tune_hardware);
  2312. EXPORT_SYMBOL(snd_ac97_set_rate);
  2313. #ifdef CONFIG_PM
  2314. EXPORT_SYMBOL(snd_ac97_resume);
  2315. EXPORT_SYMBOL(snd_ac97_suspend);
  2316. #endif
  2317. /*
  2318. * INIT part
  2319. */
  2320. static int __init alsa_ac97_init(void)
  2321. {
  2322. return 0;
  2323. }
  2324. static void __exit alsa_ac97_exit(void)
  2325. {
  2326. }
  2327. module_init(alsa_ac97_init)
  2328. module_exit(alsa_ac97_exit)