patch_analog.c 82 KB

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  1. /*
  2. * HD audio interface patch for AD1981HD, AD1983, AD1986A, AD1988
  3. *
  4. * Copyright (c) 2005 Takashi Iwai <tiwai@suse.de>
  5. *
  6. * This driver is free software; you can redistribute it and/or modify
  7. * it under the terms of the GNU General Public License as published by
  8. * the Free Software Foundation; either version 2 of the License, or
  9. * (at your option) any later version.
  10. *
  11. * This driver is distributed in the hope that it will be useful,
  12. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  13. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  14. * GNU General Public License for more details.
  15. *
  16. * You should have received a copy of the GNU General Public License
  17. * along with this program; if not, write to the Free Software
  18. * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
  19. */
  20. #include <sound/driver.h>
  21. #include <linux/init.h>
  22. #include <linux/delay.h>
  23. #include <linux/slab.h>
  24. #include <linux/pci.h>
  25. #include <linux/mutex.h>
  26. #include <sound/core.h>
  27. #include "hda_codec.h"
  28. #include "hda_local.h"
  29. struct ad198x_spec {
  30. struct snd_kcontrol_new *mixers[5];
  31. int num_mixers;
  32. const struct hda_verb *init_verbs[5]; /* initialization verbs
  33. * don't forget NULL termination!
  34. */
  35. unsigned int num_init_verbs;
  36. /* playback */
  37. struct hda_multi_out multiout; /* playback set-up
  38. * max_channels, dacs must be set
  39. * dig_out_nid and hp_nid are optional
  40. */
  41. unsigned int cur_eapd;
  42. /* capture */
  43. unsigned int num_adc_nids;
  44. hda_nid_t *adc_nids;
  45. hda_nid_t dig_in_nid; /* digital-in NID; optional */
  46. /* capture source */
  47. const struct hda_input_mux *input_mux;
  48. hda_nid_t *capsrc_nids;
  49. unsigned int cur_mux[3];
  50. /* channel model */
  51. const struct hda_channel_mode *channel_mode;
  52. int num_channel_mode;
  53. /* PCM information */
  54. struct hda_pcm pcm_rec[2]; /* used in alc_build_pcms() */
  55. struct mutex amp_mutex; /* PCM volume/mute control mutex */
  56. unsigned int spdif_route;
  57. /* dynamic controls, init_verbs and input_mux */
  58. struct auto_pin_cfg autocfg;
  59. unsigned int num_kctl_alloc, num_kctl_used;
  60. struct snd_kcontrol_new *kctl_alloc;
  61. struct hda_input_mux private_imux;
  62. hda_nid_t private_dac_nids[4];
  63. };
  64. /*
  65. * input MUX handling (common part)
  66. */
  67. static int ad198x_mux_enum_info(struct snd_kcontrol *kcontrol, struct snd_ctl_elem_info *uinfo)
  68. {
  69. struct hda_codec *codec = snd_kcontrol_chip(kcontrol);
  70. struct ad198x_spec *spec = codec->spec;
  71. return snd_hda_input_mux_info(spec->input_mux, uinfo);
  72. }
  73. static int ad198x_mux_enum_get(struct snd_kcontrol *kcontrol, struct snd_ctl_elem_value *ucontrol)
  74. {
  75. struct hda_codec *codec = snd_kcontrol_chip(kcontrol);
  76. struct ad198x_spec *spec = codec->spec;
  77. unsigned int adc_idx = snd_ctl_get_ioffidx(kcontrol, &ucontrol->id);
  78. ucontrol->value.enumerated.item[0] = spec->cur_mux[adc_idx];
  79. return 0;
  80. }
  81. static int ad198x_mux_enum_put(struct snd_kcontrol *kcontrol, struct snd_ctl_elem_value *ucontrol)
  82. {
  83. struct hda_codec *codec = snd_kcontrol_chip(kcontrol);
  84. struct ad198x_spec *spec = codec->spec;
  85. unsigned int adc_idx = snd_ctl_get_ioffidx(kcontrol, &ucontrol->id);
  86. return snd_hda_input_mux_put(codec, spec->input_mux, ucontrol,
  87. spec->capsrc_nids[adc_idx],
  88. &spec->cur_mux[adc_idx]);
  89. }
  90. /*
  91. * initialization (common callbacks)
  92. */
  93. static int ad198x_init(struct hda_codec *codec)
  94. {
  95. struct ad198x_spec *spec = codec->spec;
  96. int i;
  97. for (i = 0; i < spec->num_init_verbs; i++)
  98. snd_hda_sequence_write(codec, spec->init_verbs[i]);
  99. return 0;
  100. }
  101. static int ad198x_build_controls(struct hda_codec *codec)
  102. {
  103. struct ad198x_spec *spec = codec->spec;
  104. unsigned int i;
  105. int err;
  106. for (i = 0; i < spec->num_mixers; i++) {
  107. err = snd_hda_add_new_ctls(codec, spec->mixers[i]);
  108. if (err < 0)
  109. return err;
  110. }
  111. if (spec->multiout.dig_out_nid) {
  112. err = snd_hda_create_spdif_out_ctls(codec, spec->multiout.dig_out_nid);
  113. if (err < 0)
  114. return err;
  115. }
  116. if (spec->dig_in_nid) {
  117. err = snd_hda_create_spdif_in_ctls(codec, spec->dig_in_nid);
  118. if (err < 0)
  119. return err;
  120. }
  121. return 0;
  122. }
  123. /*
  124. * Analog playback callbacks
  125. */
  126. static int ad198x_playback_pcm_open(struct hda_pcm_stream *hinfo,
  127. struct hda_codec *codec,
  128. struct snd_pcm_substream *substream)
  129. {
  130. struct ad198x_spec *spec = codec->spec;
  131. return snd_hda_multi_out_analog_open(codec, &spec->multiout, substream);
  132. }
  133. static int ad198x_playback_pcm_prepare(struct hda_pcm_stream *hinfo,
  134. struct hda_codec *codec,
  135. unsigned int stream_tag,
  136. unsigned int format,
  137. struct snd_pcm_substream *substream)
  138. {
  139. struct ad198x_spec *spec = codec->spec;
  140. return snd_hda_multi_out_analog_prepare(codec, &spec->multiout, stream_tag,
  141. format, substream);
  142. }
  143. static int ad198x_playback_pcm_cleanup(struct hda_pcm_stream *hinfo,
  144. struct hda_codec *codec,
  145. struct snd_pcm_substream *substream)
  146. {
  147. struct ad198x_spec *spec = codec->spec;
  148. return snd_hda_multi_out_analog_cleanup(codec, &spec->multiout);
  149. }
  150. /*
  151. * Digital out
  152. */
  153. static int ad198x_dig_playback_pcm_open(struct hda_pcm_stream *hinfo,
  154. struct hda_codec *codec,
  155. struct snd_pcm_substream *substream)
  156. {
  157. struct ad198x_spec *spec = codec->spec;
  158. return snd_hda_multi_out_dig_open(codec, &spec->multiout);
  159. }
  160. static int ad198x_dig_playback_pcm_close(struct hda_pcm_stream *hinfo,
  161. struct hda_codec *codec,
  162. struct snd_pcm_substream *substream)
  163. {
  164. struct ad198x_spec *spec = codec->spec;
  165. return snd_hda_multi_out_dig_close(codec, &spec->multiout);
  166. }
  167. /*
  168. * Analog capture
  169. */
  170. static int ad198x_capture_pcm_prepare(struct hda_pcm_stream *hinfo,
  171. struct hda_codec *codec,
  172. unsigned int stream_tag,
  173. unsigned int format,
  174. struct snd_pcm_substream *substream)
  175. {
  176. struct ad198x_spec *spec = codec->spec;
  177. snd_hda_codec_setup_stream(codec, spec->adc_nids[substream->number],
  178. stream_tag, 0, format);
  179. return 0;
  180. }
  181. static int ad198x_capture_pcm_cleanup(struct hda_pcm_stream *hinfo,
  182. struct hda_codec *codec,
  183. struct snd_pcm_substream *substream)
  184. {
  185. struct ad198x_spec *spec = codec->spec;
  186. snd_hda_codec_setup_stream(codec, spec->adc_nids[substream->number],
  187. 0, 0, 0);
  188. return 0;
  189. }
  190. /*
  191. */
  192. static struct hda_pcm_stream ad198x_pcm_analog_playback = {
  193. .substreams = 1,
  194. .channels_min = 2,
  195. .channels_max = 6, /* changed later */
  196. .nid = 0, /* fill later */
  197. .ops = {
  198. .open = ad198x_playback_pcm_open,
  199. .prepare = ad198x_playback_pcm_prepare,
  200. .cleanup = ad198x_playback_pcm_cleanup
  201. },
  202. };
  203. static struct hda_pcm_stream ad198x_pcm_analog_capture = {
  204. .substreams = 1,
  205. .channels_min = 2,
  206. .channels_max = 2,
  207. .nid = 0, /* fill later */
  208. .ops = {
  209. .prepare = ad198x_capture_pcm_prepare,
  210. .cleanup = ad198x_capture_pcm_cleanup
  211. },
  212. };
  213. static struct hda_pcm_stream ad198x_pcm_digital_playback = {
  214. .substreams = 1,
  215. .channels_min = 2,
  216. .channels_max = 2,
  217. .nid = 0, /* fill later */
  218. .ops = {
  219. .open = ad198x_dig_playback_pcm_open,
  220. .close = ad198x_dig_playback_pcm_close
  221. },
  222. };
  223. static struct hda_pcm_stream ad198x_pcm_digital_capture = {
  224. .substreams = 1,
  225. .channels_min = 2,
  226. .channels_max = 2,
  227. /* NID is set in alc_build_pcms */
  228. };
  229. static int ad198x_build_pcms(struct hda_codec *codec)
  230. {
  231. struct ad198x_spec *spec = codec->spec;
  232. struct hda_pcm *info = spec->pcm_rec;
  233. codec->num_pcms = 1;
  234. codec->pcm_info = info;
  235. info->name = "AD198x Analog";
  236. info->stream[SNDRV_PCM_STREAM_PLAYBACK] = ad198x_pcm_analog_playback;
  237. info->stream[SNDRV_PCM_STREAM_PLAYBACK].channels_max = spec->multiout.max_channels;
  238. info->stream[SNDRV_PCM_STREAM_PLAYBACK].nid = spec->multiout.dac_nids[0];
  239. info->stream[SNDRV_PCM_STREAM_CAPTURE] = ad198x_pcm_analog_capture;
  240. info->stream[SNDRV_PCM_STREAM_CAPTURE].substreams = spec->num_adc_nids;
  241. info->stream[SNDRV_PCM_STREAM_CAPTURE].nid = spec->adc_nids[0];
  242. if (spec->multiout.dig_out_nid) {
  243. info++;
  244. codec->num_pcms++;
  245. info->name = "AD198x Digital";
  246. info->stream[SNDRV_PCM_STREAM_PLAYBACK] = ad198x_pcm_digital_playback;
  247. info->stream[SNDRV_PCM_STREAM_PLAYBACK].nid = spec->multiout.dig_out_nid;
  248. if (spec->dig_in_nid) {
  249. info->stream[SNDRV_PCM_STREAM_CAPTURE] = ad198x_pcm_digital_capture;
  250. info->stream[SNDRV_PCM_STREAM_CAPTURE].nid = spec->dig_in_nid;
  251. }
  252. }
  253. return 0;
  254. }
  255. static void ad198x_free(struct hda_codec *codec)
  256. {
  257. struct ad198x_spec *spec = codec->spec;
  258. unsigned int i;
  259. if (spec->kctl_alloc) {
  260. for (i = 0; i < spec->num_kctl_used; i++)
  261. kfree(spec->kctl_alloc[i].name);
  262. kfree(spec->kctl_alloc);
  263. }
  264. kfree(codec->spec);
  265. }
  266. #ifdef CONFIG_PM
  267. static int ad198x_resume(struct hda_codec *codec)
  268. {
  269. struct ad198x_spec *spec = codec->spec;
  270. int i;
  271. codec->patch_ops.init(codec);
  272. for (i = 0; i < spec->num_mixers; i++)
  273. snd_hda_resume_ctls(codec, spec->mixers[i]);
  274. if (spec->multiout.dig_out_nid)
  275. snd_hda_resume_spdif_out(codec);
  276. if (spec->dig_in_nid)
  277. snd_hda_resume_spdif_in(codec);
  278. return 0;
  279. }
  280. #endif
  281. static struct hda_codec_ops ad198x_patch_ops = {
  282. .build_controls = ad198x_build_controls,
  283. .build_pcms = ad198x_build_pcms,
  284. .init = ad198x_init,
  285. .free = ad198x_free,
  286. #ifdef CONFIG_PM
  287. .resume = ad198x_resume,
  288. #endif
  289. };
  290. /*
  291. * EAPD control
  292. * the private value = nid | (invert << 8)
  293. */
  294. static int ad198x_eapd_info(struct snd_kcontrol *kcontrol,
  295. struct snd_ctl_elem_info *uinfo)
  296. {
  297. uinfo->type = SNDRV_CTL_ELEM_TYPE_BOOLEAN;
  298. uinfo->count = 1;
  299. uinfo->value.integer.min = 0;
  300. uinfo->value.integer.max = 1;
  301. return 0;
  302. }
  303. static int ad198x_eapd_get(struct snd_kcontrol *kcontrol,
  304. struct snd_ctl_elem_value *ucontrol)
  305. {
  306. struct hda_codec *codec = snd_kcontrol_chip(kcontrol);
  307. struct ad198x_spec *spec = codec->spec;
  308. int invert = (kcontrol->private_value >> 8) & 1;
  309. if (invert)
  310. ucontrol->value.integer.value[0] = ! spec->cur_eapd;
  311. else
  312. ucontrol->value.integer.value[0] = spec->cur_eapd;
  313. return 0;
  314. }
  315. static int ad198x_eapd_put(struct snd_kcontrol *kcontrol,
  316. struct snd_ctl_elem_value *ucontrol)
  317. {
  318. struct hda_codec *codec = snd_kcontrol_chip(kcontrol);
  319. struct ad198x_spec *spec = codec->spec;
  320. int invert = (kcontrol->private_value >> 8) & 1;
  321. hda_nid_t nid = kcontrol->private_value & 0xff;
  322. unsigned int eapd;
  323. eapd = ucontrol->value.integer.value[0];
  324. if (invert)
  325. eapd = !eapd;
  326. if (eapd == spec->cur_eapd && ! codec->in_resume)
  327. return 0;
  328. spec->cur_eapd = eapd;
  329. snd_hda_codec_write(codec, nid,
  330. 0, AC_VERB_SET_EAPD_BTLENABLE,
  331. eapd ? 0x02 : 0x00);
  332. return 1;
  333. }
  334. static int ad198x_ch_mode_info(struct snd_kcontrol *kcontrol,
  335. struct snd_ctl_elem_info *uinfo);
  336. static int ad198x_ch_mode_get(struct snd_kcontrol *kcontrol,
  337. struct snd_ctl_elem_value *ucontrol);
  338. static int ad198x_ch_mode_put(struct snd_kcontrol *kcontrol,
  339. struct snd_ctl_elem_value *ucontrol);
  340. /*
  341. * AD1986A specific
  342. */
  343. #define AD1986A_SPDIF_OUT 0x02
  344. #define AD1986A_FRONT_DAC 0x03
  345. #define AD1986A_SURR_DAC 0x04
  346. #define AD1986A_CLFE_DAC 0x05
  347. #define AD1986A_ADC 0x06
  348. static hda_nid_t ad1986a_dac_nids[3] = {
  349. AD1986A_FRONT_DAC, AD1986A_SURR_DAC, AD1986A_CLFE_DAC
  350. };
  351. static hda_nid_t ad1986a_adc_nids[1] = { AD1986A_ADC };
  352. static hda_nid_t ad1986a_capsrc_nids[1] = { 0x12 };
  353. static struct hda_input_mux ad1986a_capture_source = {
  354. .num_items = 7,
  355. .items = {
  356. { "Mic", 0x0 },
  357. { "CD", 0x1 },
  358. { "Aux", 0x3 },
  359. { "Line", 0x4 },
  360. { "Mix", 0x5 },
  361. { "Mono", 0x6 },
  362. { "Phone", 0x7 },
  363. },
  364. };
  365. /*
  366. * PCM control
  367. *
  368. * bind volumes/mutes of 3 DACs as a single PCM control for simplicity
  369. */
  370. #define ad1986a_pcm_amp_vol_info snd_hda_mixer_amp_volume_info
  371. static int ad1986a_pcm_amp_vol_get(struct snd_kcontrol *kcontrol, struct snd_ctl_elem_value *ucontrol)
  372. {
  373. struct hda_codec *codec = snd_kcontrol_chip(kcontrol);
  374. struct ad198x_spec *ad = codec->spec;
  375. mutex_lock(&ad->amp_mutex);
  376. snd_hda_mixer_amp_volume_get(kcontrol, ucontrol);
  377. mutex_unlock(&ad->amp_mutex);
  378. return 0;
  379. }
  380. static int ad1986a_pcm_amp_vol_put(struct snd_kcontrol *kcontrol, struct snd_ctl_elem_value *ucontrol)
  381. {
  382. struct hda_codec *codec = snd_kcontrol_chip(kcontrol);
  383. struct ad198x_spec *ad = codec->spec;
  384. int i, change = 0;
  385. mutex_lock(&ad->amp_mutex);
  386. for (i = 0; i < ARRAY_SIZE(ad1986a_dac_nids); i++) {
  387. kcontrol->private_value = HDA_COMPOSE_AMP_VAL(ad1986a_dac_nids[i], 3, 0, HDA_OUTPUT);
  388. change |= snd_hda_mixer_amp_volume_put(kcontrol, ucontrol);
  389. }
  390. kcontrol->private_value = HDA_COMPOSE_AMP_VAL(AD1986A_FRONT_DAC, 3, 0, HDA_OUTPUT);
  391. mutex_unlock(&ad->amp_mutex);
  392. return change;
  393. }
  394. #define ad1986a_pcm_amp_sw_info snd_hda_mixer_amp_switch_info
  395. static int ad1986a_pcm_amp_sw_get(struct snd_kcontrol *kcontrol, struct snd_ctl_elem_value *ucontrol)
  396. {
  397. struct hda_codec *codec = snd_kcontrol_chip(kcontrol);
  398. struct ad198x_spec *ad = codec->spec;
  399. mutex_lock(&ad->amp_mutex);
  400. snd_hda_mixer_amp_switch_get(kcontrol, ucontrol);
  401. mutex_unlock(&ad->amp_mutex);
  402. return 0;
  403. }
  404. static int ad1986a_pcm_amp_sw_put(struct snd_kcontrol *kcontrol, struct snd_ctl_elem_value *ucontrol)
  405. {
  406. struct hda_codec *codec = snd_kcontrol_chip(kcontrol);
  407. struct ad198x_spec *ad = codec->spec;
  408. int i, change = 0;
  409. mutex_lock(&ad->amp_mutex);
  410. for (i = 0; i < ARRAY_SIZE(ad1986a_dac_nids); i++) {
  411. kcontrol->private_value = HDA_COMPOSE_AMP_VAL(ad1986a_dac_nids[i], 3, 0, HDA_OUTPUT);
  412. change |= snd_hda_mixer_amp_switch_put(kcontrol, ucontrol);
  413. }
  414. kcontrol->private_value = HDA_COMPOSE_AMP_VAL(AD1986A_FRONT_DAC, 3, 0, HDA_OUTPUT);
  415. mutex_unlock(&ad->amp_mutex);
  416. return change;
  417. }
  418. /*
  419. * mixers
  420. */
  421. static struct snd_kcontrol_new ad1986a_mixers[] = {
  422. {
  423. .iface = SNDRV_CTL_ELEM_IFACE_MIXER,
  424. .name = "PCM Playback Volume",
  425. .info = ad1986a_pcm_amp_vol_info,
  426. .get = ad1986a_pcm_amp_vol_get,
  427. .put = ad1986a_pcm_amp_vol_put,
  428. .private_value = HDA_COMPOSE_AMP_VAL(AD1986A_FRONT_DAC, 3, 0, HDA_OUTPUT)
  429. },
  430. {
  431. .iface = SNDRV_CTL_ELEM_IFACE_MIXER,
  432. .name = "PCM Playback Switch",
  433. .info = ad1986a_pcm_amp_sw_info,
  434. .get = ad1986a_pcm_amp_sw_get,
  435. .put = ad1986a_pcm_amp_sw_put,
  436. .private_value = HDA_COMPOSE_AMP_VAL(AD1986A_FRONT_DAC, 3, 0, HDA_OUTPUT)
  437. },
  438. HDA_CODEC_VOLUME("Front Playback Volume", 0x1b, 0x0, HDA_OUTPUT),
  439. HDA_CODEC_MUTE("Front Playback Switch", 0x1b, 0x0, HDA_OUTPUT),
  440. HDA_CODEC_VOLUME("Surround Playback Volume", 0x1c, 0x0, HDA_OUTPUT),
  441. HDA_CODEC_MUTE("Surround Playback Switch", 0x1c, 0x0, HDA_OUTPUT),
  442. HDA_CODEC_VOLUME_MONO("Center Playback Volume", 0x1d, 1, 0x0, HDA_OUTPUT),
  443. HDA_CODEC_VOLUME_MONO("LFE Playback Volume", 0x1d, 2, 0x0, HDA_OUTPUT),
  444. HDA_CODEC_MUTE_MONO("Center Playback Switch", 0x1d, 1, 0x0, HDA_OUTPUT),
  445. HDA_CODEC_MUTE_MONO("LFE Playback Switch", 0x1d, 2, 0x0, HDA_OUTPUT),
  446. HDA_CODEC_VOLUME("Headphone Playback Volume", 0x1a, 0x0, HDA_OUTPUT),
  447. HDA_CODEC_MUTE("Headphone Playback Switch", 0x1a, 0x0, HDA_OUTPUT),
  448. HDA_CODEC_VOLUME("CD Playback Volume", 0x15, 0x0, HDA_OUTPUT),
  449. HDA_CODEC_MUTE("CD Playback Switch", 0x15, 0x0, HDA_OUTPUT),
  450. HDA_CODEC_VOLUME("Line Playback Volume", 0x17, 0x0, HDA_OUTPUT),
  451. HDA_CODEC_MUTE("Line Playback Switch", 0x17, 0x0, HDA_OUTPUT),
  452. HDA_CODEC_VOLUME("Aux Playback Volume", 0x16, 0x0, HDA_OUTPUT),
  453. HDA_CODEC_MUTE("Aux Playback Switch", 0x16, 0x0, HDA_OUTPUT),
  454. HDA_CODEC_VOLUME("Mic Playback Volume", 0x13, 0x0, HDA_OUTPUT),
  455. HDA_CODEC_MUTE("Mic Playback Switch", 0x13, 0x0, HDA_OUTPUT),
  456. HDA_CODEC_VOLUME("PC Speaker Playback Volume", 0x18, 0x0, HDA_OUTPUT),
  457. HDA_CODEC_MUTE("PC Speaker Playback Switch", 0x18, 0x0, HDA_OUTPUT),
  458. HDA_CODEC_VOLUME("Mono Playback Volume", 0x1e, 0x0, HDA_OUTPUT),
  459. HDA_CODEC_MUTE("Mono Playback Switch", 0x1e, 0x0, HDA_OUTPUT),
  460. HDA_CODEC_VOLUME("Capture Volume", 0x12, 0x0, HDA_OUTPUT),
  461. HDA_CODEC_MUTE("Capture Switch", 0x12, 0x0, HDA_OUTPUT),
  462. {
  463. .iface = SNDRV_CTL_ELEM_IFACE_MIXER,
  464. .name = "Capture Source",
  465. .info = ad198x_mux_enum_info,
  466. .get = ad198x_mux_enum_get,
  467. .put = ad198x_mux_enum_put,
  468. },
  469. HDA_CODEC_MUTE("Stereo Downmix Switch", 0x09, 0x0, HDA_OUTPUT),
  470. { } /* end */
  471. };
  472. /* additional mixers for 3stack mode */
  473. static struct snd_kcontrol_new ad1986a_3st_mixers[] = {
  474. {
  475. .iface = SNDRV_CTL_ELEM_IFACE_MIXER,
  476. .name = "Channel Mode",
  477. .info = ad198x_ch_mode_info,
  478. .get = ad198x_ch_mode_get,
  479. .put = ad198x_ch_mode_put,
  480. },
  481. { } /* end */
  482. };
  483. /* laptop model - 2ch only */
  484. static hda_nid_t ad1986a_laptop_dac_nids[1] = { AD1986A_FRONT_DAC };
  485. static struct snd_kcontrol_new ad1986a_laptop_mixers[] = {
  486. HDA_CODEC_VOLUME("PCM Playback Volume", 0x03, 0x0, HDA_OUTPUT),
  487. HDA_CODEC_MUTE("PCM Playback Switch", 0x03, 0x0, HDA_OUTPUT),
  488. HDA_CODEC_VOLUME("Master Playback Volume", 0x1b, 0x0, HDA_OUTPUT),
  489. HDA_CODEC_MUTE("Master Playback Switch", 0x1b, 0x0, HDA_OUTPUT),
  490. /* HDA_CODEC_VOLUME("Headphone Playback Volume", 0x1a, 0x0, HDA_OUTPUT),
  491. HDA_CODEC_MUTE("Headphone Playback Switch", 0x1a, 0x0, HDA_OUTPUT), */
  492. HDA_CODEC_VOLUME("CD Playback Volume", 0x15, 0x0, HDA_OUTPUT),
  493. HDA_CODEC_MUTE("CD Playback Switch", 0x15, 0x0, HDA_OUTPUT),
  494. HDA_CODEC_VOLUME("Line Playback Volume", 0x17, 0x0, HDA_OUTPUT),
  495. HDA_CODEC_MUTE("Line Playback Switch", 0x17, 0x0, HDA_OUTPUT),
  496. HDA_CODEC_VOLUME("Aux Playback Volume", 0x16, 0x0, HDA_OUTPUT),
  497. HDA_CODEC_MUTE("Aux Playback Switch", 0x16, 0x0, HDA_OUTPUT),
  498. HDA_CODEC_VOLUME("Mic Playback Volume", 0x13, 0x0, HDA_OUTPUT),
  499. HDA_CODEC_MUTE("Mic Playback Switch", 0x13, 0x0, HDA_OUTPUT),
  500. /* HDA_CODEC_VOLUME("PC Speaker Playback Volume", 0x18, 0x0, HDA_OUTPUT),
  501. HDA_CODEC_MUTE("PC Speaker Playback Switch", 0x18, 0x0, HDA_OUTPUT),
  502. HDA_CODEC_VOLUME("Mono Playback Volume", 0x1e, 0x0, HDA_OUTPUT),
  503. HDA_CODEC_MUTE("Mono Playback Switch", 0x1e, 0x0, HDA_OUTPUT), */
  504. HDA_CODEC_VOLUME("Capture Volume", 0x12, 0x0, HDA_OUTPUT),
  505. HDA_CODEC_MUTE("Capture Switch", 0x12, 0x0, HDA_OUTPUT),
  506. {
  507. .iface = SNDRV_CTL_ELEM_IFACE_MIXER,
  508. .name = "Capture Source",
  509. .info = ad198x_mux_enum_info,
  510. .get = ad198x_mux_enum_get,
  511. .put = ad198x_mux_enum_put,
  512. },
  513. { } /* end */
  514. };
  515. /* laptop-eapd model - 2ch only */
  516. /* master controls both pins 0x1a and 0x1b */
  517. static int ad1986a_laptop_master_vol_put(struct snd_kcontrol *kcontrol,
  518. struct snd_ctl_elem_value *ucontrol)
  519. {
  520. struct hda_codec *codec = snd_kcontrol_chip(kcontrol);
  521. long *valp = ucontrol->value.integer.value;
  522. int change;
  523. change = snd_hda_codec_amp_update(codec, 0x1a, 0, HDA_OUTPUT, 0,
  524. 0x7f, valp[0] & 0x7f);
  525. change |= snd_hda_codec_amp_update(codec, 0x1a, 1, HDA_OUTPUT, 0,
  526. 0x7f, valp[1] & 0x7f);
  527. snd_hda_codec_amp_update(codec, 0x1b, 0, HDA_OUTPUT, 0,
  528. 0x7f, valp[0] & 0x7f);
  529. snd_hda_codec_amp_update(codec, 0x1b, 1, HDA_OUTPUT, 0,
  530. 0x7f, valp[1] & 0x7f);
  531. return change;
  532. }
  533. static int ad1986a_laptop_master_sw_put(struct snd_kcontrol *kcontrol,
  534. struct snd_ctl_elem_value *ucontrol)
  535. {
  536. struct hda_codec *codec = snd_kcontrol_chip(kcontrol);
  537. long *valp = ucontrol->value.integer.value;
  538. int change;
  539. change = snd_hda_codec_amp_update(codec, 0x1a, 0, HDA_OUTPUT, 0,
  540. 0x80, valp[0] ? 0 : 0x80);
  541. change |= snd_hda_codec_amp_update(codec, 0x1a, 1, HDA_OUTPUT, 0,
  542. 0x80, valp[1] ? 0 : 0x80);
  543. snd_hda_codec_amp_update(codec, 0x1b, 0, HDA_OUTPUT, 0,
  544. 0x80, valp[0] ? 0 : 0x80);
  545. snd_hda_codec_amp_update(codec, 0x1b, 1, HDA_OUTPUT, 0,
  546. 0x80, valp[1] ? 0 : 0x80);
  547. return change;
  548. }
  549. static struct hda_input_mux ad1986a_laptop_eapd_capture_source = {
  550. .num_items = 3,
  551. .items = {
  552. { "Mic", 0x0 },
  553. { "Internal Mic", 0x4 },
  554. { "Mix", 0x5 },
  555. },
  556. };
  557. static struct snd_kcontrol_new ad1986a_laptop_eapd_mixers[] = {
  558. {
  559. .iface = SNDRV_CTL_ELEM_IFACE_MIXER,
  560. .name = "Master Playback Volume",
  561. .info = snd_hda_mixer_amp_volume_info,
  562. .get = snd_hda_mixer_amp_volume_get,
  563. .put = ad1986a_laptop_master_vol_put,
  564. .private_value = HDA_COMPOSE_AMP_VAL(0x1a, 3, 0, HDA_OUTPUT),
  565. },
  566. {
  567. .iface = SNDRV_CTL_ELEM_IFACE_MIXER,
  568. .name = "Master Playback Switch",
  569. .info = snd_hda_mixer_amp_switch_info,
  570. .get = snd_hda_mixer_amp_switch_get,
  571. .put = ad1986a_laptop_master_sw_put,
  572. .private_value = HDA_COMPOSE_AMP_VAL(0x1a, 3, 0, HDA_OUTPUT),
  573. },
  574. HDA_CODEC_VOLUME("PCM Playback Volume", 0x03, 0x0, HDA_OUTPUT),
  575. HDA_CODEC_MUTE("PCM Playback Switch", 0x03, 0x0, HDA_OUTPUT),
  576. HDA_CODEC_VOLUME("Internal Mic Playback Volume", 0x17, 0x0, HDA_OUTPUT),
  577. HDA_CODEC_MUTE("Internal Mic Playback Switch", 0x17, 0x0, HDA_OUTPUT),
  578. HDA_CODEC_VOLUME("Mic Playback Volume", 0x13, 0x0, HDA_OUTPUT),
  579. HDA_CODEC_MUTE("Mic Playback Switch", 0x13, 0x0, HDA_OUTPUT),
  580. HDA_CODEC_VOLUME("Capture Volume", 0x12, 0x0, HDA_OUTPUT),
  581. HDA_CODEC_MUTE("Capture Switch", 0x12, 0x0, HDA_OUTPUT),
  582. {
  583. .iface = SNDRV_CTL_ELEM_IFACE_MIXER,
  584. .name = "Capture Source",
  585. .info = ad198x_mux_enum_info,
  586. .get = ad198x_mux_enum_get,
  587. .put = ad198x_mux_enum_put,
  588. },
  589. {
  590. .iface = SNDRV_CTL_ELEM_IFACE_MIXER,
  591. .name = "External Amplifier",
  592. .info = ad198x_eapd_info,
  593. .get = ad198x_eapd_get,
  594. .put = ad198x_eapd_put,
  595. .private_value = 0x1b | (1 << 8), /* port-D, inversed */
  596. },
  597. { } /* end */
  598. };
  599. /*
  600. * initialization verbs
  601. */
  602. static struct hda_verb ad1986a_init_verbs[] = {
  603. /* Front, Surround, CLFE DAC; mute as default */
  604. {0x03, AC_VERB_SET_AMP_GAIN_MUTE, 0xb080},
  605. {0x04, AC_VERB_SET_AMP_GAIN_MUTE, 0xb080},
  606. {0x05, AC_VERB_SET_AMP_GAIN_MUTE, 0xb080},
  607. /* Downmix - off */
  608. {0x09, AC_VERB_SET_AMP_GAIN_MUTE, 0xb080},
  609. /* HP, Line-Out, Surround, CLFE selectors */
  610. {0x0a, AC_VERB_SET_CONNECT_SEL, 0x0},
  611. {0x0b, AC_VERB_SET_CONNECT_SEL, 0x0},
  612. {0x0c, AC_VERB_SET_CONNECT_SEL, 0x0},
  613. {0x0d, AC_VERB_SET_CONNECT_SEL, 0x0},
  614. /* Mono selector */
  615. {0x0e, AC_VERB_SET_CONNECT_SEL, 0x0},
  616. /* Mic selector: Mic 1/2 pin */
  617. {0x0f, AC_VERB_SET_CONNECT_SEL, 0x0},
  618. /* Line-in selector: Line-in */
  619. {0x10, AC_VERB_SET_CONNECT_SEL, 0x0},
  620. /* Mic 1/2 swap */
  621. {0x11, AC_VERB_SET_CONNECT_SEL, 0x0},
  622. /* Record selector: mic */
  623. {0x12, AC_VERB_SET_CONNECT_SEL, 0x0},
  624. /* Mic, Phone, CD, Aux, Line-In amp; mute as default */
  625. {0x13, AC_VERB_SET_AMP_GAIN_MUTE, 0xb080},
  626. {0x14, AC_VERB_SET_AMP_GAIN_MUTE, 0xb080},
  627. {0x15, AC_VERB_SET_AMP_GAIN_MUTE, 0xb080},
  628. {0x16, AC_VERB_SET_AMP_GAIN_MUTE, 0xb080},
  629. {0x17, AC_VERB_SET_AMP_GAIN_MUTE, 0xb080},
  630. /* PC beep */
  631. {0x18, AC_VERB_SET_CONNECT_SEL, 0x0},
  632. /* HP, Line-Out, Surround, CLFE, Mono pins; mute as default */
  633. {0x1a, AC_VERB_SET_AMP_GAIN_MUTE, 0xb080},
  634. {0x1b, AC_VERB_SET_AMP_GAIN_MUTE, 0xb080},
  635. {0x1c, AC_VERB_SET_AMP_GAIN_MUTE, 0xb080},
  636. {0x1d, AC_VERB_SET_AMP_GAIN_MUTE, 0xb080},
  637. {0x1e, AC_VERB_SET_AMP_GAIN_MUTE, 0xb080},
  638. /* HP Pin */
  639. {0x1a, AC_VERB_SET_PIN_WIDGET_CONTROL, 0xc0 },
  640. /* Front, Surround, CLFE Pins */
  641. {0x1b, AC_VERB_SET_PIN_WIDGET_CONTROL, 0x40 },
  642. {0x1c, AC_VERB_SET_PIN_WIDGET_CONTROL, 0x40 },
  643. {0x1d, AC_VERB_SET_PIN_WIDGET_CONTROL, 0x40 },
  644. /* Mono Pin */
  645. {0x1e, AC_VERB_SET_PIN_WIDGET_CONTROL, 0x40 },
  646. /* Mic Pin */
  647. {0x1f, AC_VERB_SET_PIN_WIDGET_CONTROL, 0x24 },
  648. /* Line, Aux, CD, Beep-In Pin */
  649. {0x20, AC_VERB_SET_PIN_WIDGET_CONTROL, 0x20 },
  650. {0x21, AC_VERB_SET_PIN_WIDGET_CONTROL, 0x20 },
  651. {0x22, AC_VERB_SET_PIN_WIDGET_CONTROL, 0x20 },
  652. {0x23, AC_VERB_SET_PIN_WIDGET_CONTROL, 0x20 },
  653. {0x24, AC_VERB_SET_PIN_WIDGET_CONTROL, 0x20 },
  654. { } /* end */
  655. };
  656. /* additional verbs for 3-stack model */
  657. static struct hda_verb ad1986a_3st_init_verbs[] = {
  658. /* Mic and line-in selectors */
  659. {0x0f, AC_VERB_SET_CONNECT_SEL, 0x2},
  660. {0x10, AC_VERB_SET_CONNECT_SEL, 0x1},
  661. { } /* end */
  662. };
  663. static struct hda_verb ad1986a_ch2_init[] = {
  664. /* Surround out -> Line In */
  665. { 0x1c, AC_VERB_SET_PIN_WIDGET_CONTROL, 0x24 },
  666. { 0x1c, AC_VERB_SET_AMP_GAIN_MUTE, 0xb080},
  667. /* CLFE -> Mic in */
  668. { 0x1d, AC_VERB_SET_PIN_WIDGET_CONTROL, 0x24 },
  669. { 0x1d, AC_VERB_SET_AMP_GAIN_MUTE, 0xb080},
  670. { } /* end */
  671. };
  672. static struct hda_verb ad1986a_ch4_init[] = {
  673. /* Surround out -> Surround */
  674. { 0x1c, AC_VERB_SET_PIN_WIDGET_CONTROL, 0x40 },
  675. { 0x1c, AC_VERB_SET_AMP_GAIN_MUTE, 0xb000},
  676. /* CLFE -> Mic in */
  677. { 0x1d, AC_VERB_SET_PIN_WIDGET_CONTROL, 0x24 },
  678. { 0x1d, AC_VERB_SET_AMP_GAIN_MUTE, 0xb080},
  679. { } /* end */
  680. };
  681. static struct hda_verb ad1986a_ch6_init[] = {
  682. /* Surround out -> Surround out */
  683. { 0x1c, AC_VERB_SET_PIN_WIDGET_CONTROL, 0x40 },
  684. { 0x1c, AC_VERB_SET_AMP_GAIN_MUTE, 0xb000},
  685. /* CLFE -> CLFE */
  686. { 0x1d, AC_VERB_SET_PIN_WIDGET_CONTROL, 0x40 },
  687. { 0x1d, AC_VERB_SET_AMP_GAIN_MUTE, 0xb000},
  688. { } /* end */
  689. };
  690. static struct hda_channel_mode ad1986a_modes[3] = {
  691. { 2, ad1986a_ch2_init },
  692. { 4, ad1986a_ch4_init },
  693. { 6, ad1986a_ch6_init },
  694. };
  695. /* eapd initialization */
  696. static struct hda_verb ad1986a_eapd_init_verbs[] = {
  697. {0x1b, AC_VERB_SET_EAPD_BTLENABLE, 0x00},
  698. {}
  699. };
  700. /* models */
  701. enum { AD1986A_6STACK, AD1986A_3STACK, AD1986A_LAPTOP, AD1986A_LAPTOP_EAPD };
  702. static struct hda_board_config ad1986a_cfg_tbl[] = {
  703. { .modelname = "6stack", .config = AD1986A_6STACK },
  704. { .modelname = "3stack", .config = AD1986A_3STACK },
  705. { .pci_subvendor = 0x10de, .pci_subdevice = 0xcb84,
  706. .config = AD1986A_3STACK }, /* ASUS A8N-VM CSM */
  707. { .modelname = "laptop", .config = AD1986A_LAPTOP },
  708. { .pci_subvendor = 0x144d, .pci_subdevice = 0xc01e,
  709. .config = AD1986A_LAPTOP }, /* FSC V2060 */
  710. { .pci_subvendor = 0x17c0, .pci_subdevice = 0x2017,
  711. .config = AD1986A_LAPTOP }, /* Samsung M50 */
  712. { .pci_subvendor = 0x1043, .pci_subdevice = 0x818f,
  713. .config = AD1986A_LAPTOP }, /* ASUS P5GV-MX */
  714. { .modelname = "laptop-eapd", .config = AD1986A_LAPTOP_EAPD },
  715. { .pci_subvendor = 0x144d, .pci_subdevice = 0xc024,
  716. .config = AD1986A_LAPTOP_EAPD }, /* Samsung R65-T2300 Charis */
  717. { .pci_subvendor = 0x1043, .pci_subdevice = 0x1213,
  718. .config = AD1986A_LAPTOP_EAPD }, /* ASUS A6J */
  719. {}
  720. };
  721. static int patch_ad1986a(struct hda_codec *codec)
  722. {
  723. struct ad198x_spec *spec;
  724. int board_config;
  725. spec = kzalloc(sizeof(*spec), GFP_KERNEL);
  726. if (spec == NULL)
  727. return -ENOMEM;
  728. mutex_init(&spec->amp_mutex);
  729. codec->spec = spec;
  730. spec->multiout.max_channels = 6;
  731. spec->multiout.num_dacs = ARRAY_SIZE(ad1986a_dac_nids);
  732. spec->multiout.dac_nids = ad1986a_dac_nids;
  733. spec->multiout.dig_out_nid = AD1986A_SPDIF_OUT;
  734. spec->num_adc_nids = 1;
  735. spec->adc_nids = ad1986a_adc_nids;
  736. spec->capsrc_nids = ad1986a_capsrc_nids;
  737. spec->input_mux = &ad1986a_capture_source;
  738. spec->num_mixers = 1;
  739. spec->mixers[0] = ad1986a_mixers;
  740. spec->num_init_verbs = 1;
  741. spec->init_verbs[0] = ad1986a_init_verbs;
  742. codec->patch_ops = ad198x_patch_ops;
  743. /* override some parameters */
  744. board_config = snd_hda_check_board_config(codec, ad1986a_cfg_tbl);
  745. switch (board_config) {
  746. case AD1986A_3STACK:
  747. spec->num_mixers = 2;
  748. spec->mixers[1] = ad1986a_3st_mixers;
  749. spec->num_init_verbs = 2;
  750. spec->init_verbs[1] = ad1986a_3st_init_verbs;
  751. spec->channel_mode = ad1986a_modes;
  752. spec->num_channel_mode = ARRAY_SIZE(ad1986a_modes);
  753. break;
  754. case AD1986A_LAPTOP:
  755. spec->mixers[0] = ad1986a_laptop_mixers;
  756. spec->multiout.max_channels = 2;
  757. spec->multiout.num_dacs = 1;
  758. spec->multiout.dac_nids = ad1986a_laptop_dac_nids;
  759. break;
  760. case AD1986A_LAPTOP_EAPD:
  761. spec->mixers[0] = ad1986a_laptop_eapd_mixers;
  762. spec->num_init_verbs = 2;
  763. spec->init_verbs[1] = ad1986a_eapd_init_verbs;
  764. spec->multiout.max_channels = 2;
  765. spec->multiout.num_dacs = 1;
  766. spec->multiout.dac_nids = ad1986a_laptop_dac_nids;
  767. spec->multiout.dig_out_nid = 0;
  768. spec->input_mux = &ad1986a_laptop_eapd_capture_source;
  769. break;
  770. }
  771. return 0;
  772. }
  773. /*
  774. * AD1983 specific
  775. */
  776. #define AD1983_SPDIF_OUT 0x02
  777. #define AD1983_DAC 0x03
  778. #define AD1983_ADC 0x04
  779. static hda_nid_t ad1983_dac_nids[1] = { AD1983_DAC };
  780. static hda_nid_t ad1983_adc_nids[1] = { AD1983_ADC };
  781. static hda_nid_t ad1983_capsrc_nids[1] = { 0x15 };
  782. static struct hda_input_mux ad1983_capture_source = {
  783. .num_items = 4,
  784. .items = {
  785. { "Mic", 0x0 },
  786. { "Line", 0x1 },
  787. { "Mix", 0x2 },
  788. { "Mix Mono", 0x3 },
  789. },
  790. };
  791. /*
  792. * SPDIF playback route
  793. */
  794. static int ad1983_spdif_route_info(struct snd_kcontrol *kcontrol, struct snd_ctl_elem_info *uinfo)
  795. {
  796. static char *texts[] = { "PCM", "ADC" };
  797. uinfo->type = SNDRV_CTL_ELEM_TYPE_ENUMERATED;
  798. uinfo->count = 1;
  799. uinfo->value.enumerated.items = 2;
  800. if (uinfo->value.enumerated.item > 1)
  801. uinfo->value.enumerated.item = 1;
  802. strcpy(uinfo->value.enumerated.name, texts[uinfo->value.enumerated.item]);
  803. return 0;
  804. }
  805. static int ad1983_spdif_route_get(struct snd_kcontrol *kcontrol, struct snd_ctl_elem_value *ucontrol)
  806. {
  807. struct hda_codec *codec = snd_kcontrol_chip(kcontrol);
  808. struct ad198x_spec *spec = codec->spec;
  809. ucontrol->value.enumerated.item[0] = spec->spdif_route;
  810. return 0;
  811. }
  812. static int ad1983_spdif_route_put(struct snd_kcontrol *kcontrol, struct snd_ctl_elem_value *ucontrol)
  813. {
  814. struct hda_codec *codec = snd_kcontrol_chip(kcontrol);
  815. struct ad198x_spec *spec = codec->spec;
  816. if (spec->spdif_route != ucontrol->value.enumerated.item[0]) {
  817. spec->spdif_route = ucontrol->value.enumerated.item[0];
  818. snd_hda_codec_write(codec, spec->multiout.dig_out_nid, 0,
  819. AC_VERB_SET_CONNECT_SEL, spec->spdif_route);
  820. return 1;
  821. }
  822. return 0;
  823. }
  824. static struct snd_kcontrol_new ad1983_mixers[] = {
  825. HDA_CODEC_VOLUME("Front Playback Volume", 0x05, 0x0, HDA_OUTPUT),
  826. HDA_CODEC_MUTE("Front Playback Switch", 0x05, 0x0, HDA_OUTPUT),
  827. HDA_CODEC_VOLUME("Headphone Playback Volume", 0x06, 0x0, HDA_OUTPUT),
  828. HDA_CODEC_MUTE("Headphone Playback Switch", 0x06, 0x0, HDA_OUTPUT),
  829. HDA_CODEC_VOLUME_MONO("Mono Playback Volume", 0x07, 1, 0x0, HDA_OUTPUT),
  830. HDA_CODEC_MUTE_MONO("Mono Playback Switch", 0x07, 1, 0x0, HDA_OUTPUT),
  831. HDA_CODEC_VOLUME("PCM Playback Volume", 0x11, 0x0, HDA_OUTPUT),
  832. HDA_CODEC_MUTE("PCM Playback Switch", 0x11, 0x0, HDA_OUTPUT),
  833. HDA_CODEC_VOLUME("Mic Playback Volume", 0x12, 0x0, HDA_OUTPUT),
  834. HDA_CODEC_MUTE("Mic Playback Switch", 0x12, 0x0, HDA_OUTPUT),
  835. HDA_CODEC_VOLUME("Line Playback Volume", 0x13, 0x0, HDA_OUTPUT),
  836. HDA_CODEC_MUTE("Line Playback Switch", 0x13, 0x0, HDA_OUTPUT),
  837. HDA_CODEC_VOLUME_MONO("PC Speaker Playback Volume", 0x10, 1, 0x0, HDA_OUTPUT),
  838. HDA_CODEC_MUTE_MONO("PC Speaker Playback Switch", 0x10, 1, 0x0, HDA_OUTPUT),
  839. HDA_CODEC_VOLUME("Mic Boost", 0x0c, 0x0, HDA_OUTPUT),
  840. HDA_CODEC_VOLUME("Capture Volume", 0x15, 0x0, HDA_OUTPUT),
  841. HDA_CODEC_MUTE("Capture Switch", 0x15, 0x0, HDA_OUTPUT),
  842. {
  843. .iface = SNDRV_CTL_ELEM_IFACE_MIXER,
  844. .name = "Capture Source",
  845. .info = ad198x_mux_enum_info,
  846. .get = ad198x_mux_enum_get,
  847. .put = ad198x_mux_enum_put,
  848. },
  849. {
  850. .iface = SNDRV_CTL_ELEM_IFACE_MIXER,
  851. .name = SNDRV_CTL_NAME_IEC958("",PLAYBACK,NONE) "Route",
  852. .info = ad1983_spdif_route_info,
  853. .get = ad1983_spdif_route_get,
  854. .put = ad1983_spdif_route_put,
  855. },
  856. { } /* end */
  857. };
  858. static struct hda_verb ad1983_init_verbs[] = {
  859. /* Front, HP, Mono; mute as default */
  860. {0x05, AC_VERB_SET_AMP_GAIN_MUTE, 0xb080},
  861. {0x06, AC_VERB_SET_AMP_GAIN_MUTE, 0xb080},
  862. {0x07, AC_VERB_SET_AMP_GAIN_MUTE, 0xb080},
  863. /* Beep, PCM, Mic, Line-In: mute */
  864. {0x10, AC_VERB_SET_AMP_GAIN_MUTE, 0xb080},
  865. {0x11, AC_VERB_SET_AMP_GAIN_MUTE, 0xb080},
  866. {0x12, AC_VERB_SET_AMP_GAIN_MUTE, 0xb080},
  867. {0x13, AC_VERB_SET_AMP_GAIN_MUTE, 0xb080},
  868. /* Front, HP selectors; from Mix */
  869. {0x05, AC_VERB_SET_CONNECT_SEL, 0x01},
  870. {0x06, AC_VERB_SET_CONNECT_SEL, 0x01},
  871. /* Mono selector; from Mix */
  872. {0x0b, AC_VERB_SET_CONNECT_SEL, 0x03},
  873. /* Mic selector; Mic */
  874. {0x0c, AC_VERB_SET_CONNECT_SEL, 0x0},
  875. /* Line-in selector: Line-in */
  876. {0x0d, AC_VERB_SET_CONNECT_SEL, 0x0},
  877. /* Mic boost: 0dB */
  878. {0x0c, AC_VERB_SET_AMP_GAIN_MUTE, 0xb000},
  879. /* Record selector: mic */
  880. {0x15, AC_VERB_SET_CONNECT_SEL, 0x0},
  881. {0x15, AC_VERB_SET_AMP_GAIN_MUTE, 0xb080},
  882. /* SPDIF route: PCM */
  883. {0x02, AC_VERB_SET_CONNECT_SEL, 0x0},
  884. /* Front Pin */
  885. {0x05, AC_VERB_SET_PIN_WIDGET_CONTROL, 0x40 },
  886. /* HP Pin */
  887. {0x06, AC_VERB_SET_PIN_WIDGET_CONTROL, 0xc0 },
  888. /* Mono Pin */
  889. {0x07, AC_VERB_SET_PIN_WIDGET_CONTROL, 0x40 },
  890. /* Mic Pin */
  891. {0x08, AC_VERB_SET_PIN_WIDGET_CONTROL, 0x24 },
  892. /* Line Pin */
  893. {0x09, AC_VERB_SET_PIN_WIDGET_CONTROL, 0x20 },
  894. { } /* end */
  895. };
  896. static int patch_ad1983(struct hda_codec *codec)
  897. {
  898. struct ad198x_spec *spec;
  899. spec = kzalloc(sizeof(*spec), GFP_KERNEL);
  900. if (spec == NULL)
  901. return -ENOMEM;
  902. mutex_init(&spec->amp_mutex);
  903. codec->spec = spec;
  904. spec->multiout.max_channels = 2;
  905. spec->multiout.num_dacs = ARRAY_SIZE(ad1983_dac_nids);
  906. spec->multiout.dac_nids = ad1983_dac_nids;
  907. spec->multiout.dig_out_nid = AD1983_SPDIF_OUT;
  908. spec->num_adc_nids = 1;
  909. spec->adc_nids = ad1983_adc_nids;
  910. spec->capsrc_nids = ad1983_capsrc_nids;
  911. spec->input_mux = &ad1983_capture_source;
  912. spec->num_mixers = 1;
  913. spec->mixers[0] = ad1983_mixers;
  914. spec->num_init_verbs = 1;
  915. spec->init_verbs[0] = ad1983_init_verbs;
  916. spec->spdif_route = 0;
  917. codec->patch_ops = ad198x_patch_ops;
  918. return 0;
  919. }
  920. /*
  921. * AD1981 HD specific
  922. */
  923. #define AD1981_SPDIF_OUT 0x02
  924. #define AD1981_DAC 0x03
  925. #define AD1981_ADC 0x04
  926. static hda_nid_t ad1981_dac_nids[1] = { AD1981_DAC };
  927. static hda_nid_t ad1981_adc_nids[1] = { AD1981_ADC };
  928. static hda_nid_t ad1981_capsrc_nids[1] = { 0x15 };
  929. /* 0x0c, 0x09, 0x0e, 0x0f, 0x19, 0x05, 0x18, 0x17 */
  930. static struct hda_input_mux ad1981_capture_source = {
  931. .num_items = 7,
  932. .items = {
  933. { "Front Mic", 0x0 },
  934. { "Line", 0x1 },
  935. { "Mix", 0x2 },
  936. { "Mix Mono", 0x3 },
  937. { "CD", 0x4 },
  938. { "Mic", 0x6 },
  939. { "Aux", 0x7 },
  940. },
  941. };
  942. static struct snd_kcontrol_new ad1981_mixers[] = {
  943. HDA_CODEC_VOLUME("Front Playback Volume", 0x05, 0x0, HDA_OUTPUT),
  944. HDA_CODEC_MUTE("Front Playback Switch", 0x05, 0x0, HDA_OUTPUT),
  945. HDA_CODEC_VOLUME("Headphone Playback Volume", 0x06, 0x0, HDA_OUTPUT),
  946. HDA_CODEC_MUTE("Headphone Playback Switch", 0x06, 0x0, HDA_OUTPUT),
  947. HDA_CODEC_VOLUME_MONO("Mono Playback Volume", 0x07, 1, 0x0, HDA_OUTPUT),
  948. HDA_CODEC_MUTE_MONO("Mono Playback Switch", 0x07, 1, 0x0, HDA_OUTPUT),
  949. HDA_CODEC_VOLUME("PCM Playback Volume", 0x11, 0x0, HDA_OUTPUT),
  950. HDA_CODEC_MUTE("PCM Playback Switch", 0x11, 0x0, HDA_OUTPUT),
  951. HDA_CODEC_VOLUME("Front Mic Playback Volume", 0x12, 0x0, HDA_OUTPUT),
  952. HDA_CODEC_MUTE("Front Mic Playback Switch", 0x12, 0x0, HDA_OUTPUT),
  953. HDA_CODEC_VOLUME("Line Playback Volume", 0x13, 0x0, HDA_OUTPUT),
  954. HDA_CODEC_MUTE("Line Playback Switch", 0x13, 0x0, HDA_OUTPUT),
  955. HDA_CODEC_VOLUME("Aux Playback Volume", 0x1b, 0x0, HDA_OUTPUT),
  956. HDA_CODEC_MUTE("Aux Playback Switch", 0x1b, 0x0, HDA_OUTPUT),
  957. HDA_CODEC_VOLUME("Mic Playback Volume", 0x1c, 0x0, HDA_OUTPUT),
  958. HDA_CODEC_MUTE("Mic Playback Switch", 0x1c, 0x0, HDA_OUTPUT),
  959. HDA_CODEC_VOLUME("CD Playback Volume", 0x1d, 0x0, HDA_OUTPUT),
  960. HDA_CODEC_MUTE("CD Playback Switch", 0x1d, 0x0, HDA_OUTPUT),
  961. HDA_CODEC_VOLUME_MONO("PC Speaker Playback Volume", 0x0d, 1, 0x0, HDA_OUTPUT),
  962. HDA_CODEC_MUTE_MONO("PC Speaker Playback Switch", 0x0d, 1, 0x0, HDA_OUTPUT),
  963. HDA_CODEC_VOLUME("Front Mic Boost", 0x08, 0x0, HDA_INPUT),
  964. HDA_CODEC_VOLUME("Mic Boost", 0x18, 0x0, HDA_INPUT),
  965. HDA_CODEC_VOLUME("Capture Volume", 0x15, 0x0, HDA_OUTPUT),
  966. HDA_CODEC_MUTE("Capture Switch", 0x15, 0x0, HDA_OUTPUT),
  967. {
  968. .iface = SNDRV_CTL_ELEM_IFACE_MIXER,
  969. .name = "Capture Source",
  970. .info = ad198x_mux_enum_info,
  971. .get = ad198x_mux_enum_get,
  972. .put = ad198x_mux_enum_put,
  973. },
  974. /* identical with AD1983 */
  975. {
  976. .iface = SNDRV_CTL_ELEM_IFACE_MIXER,
  977. .name = SNDRV_CTL_NAME_IEC958("",PLAYBACK,NONE) "Route",
  978. .info = ad1983_spdif_route_info,
  979. .get = ad1983_spdif_route_get,
  980. .put = ad1983_spdif_route_put,
  981. },
  982. { } /* end */
  983. };
  984. static struct hda_verb ad1981_init_verbs[] = {
  985. /* Front, HP, Mono; mute as default */
  986. {0x05, AC_VERB_SET_AMP_GAIN_MUTE, 0xb080},
  987. {0x06, AC_VERB_SET_AMP_GAIN_MUTE, 0xb080},
  988. {0x07, AC_VERB_SET_AMP_GAIN_MUTE, 0xb080},
  989. /* Beep, PCM, Front Mic, Line, Rear Mic, Aux, CD-In: mute */
  990. {0x0d, AC_VERB_SET_AMP_GAIN_MUTE, 0xb080},
  991. {0x11, AC_VERB_SET_AMP_GAIN_MUTE, 0xb080},
  992. {0x12, AC_VERB_SET_AMP_GAIN_MUTE, 0xb080},
  993. {0x13, AC_VERB_SET_AMP_GAIN_MUTE, 0xb080},
  994. {0x1b, AC_VERB_SET_AMP_GAIN_MUTE, 0xb080},
  995. {0x1c, AC_VERB_SET_AMP_GAIN_MUTE, 0xb080},
  996. {0x1d, AC_VERB_SET_AMP_GAIN_MUTE, 0xb080},
  997. /* Front, HP selectors; from Mix */
  998. {0x05, AC_VERB_SET_CONNECT_SEL, 0x01},
  999. {0x06, AC_VERB_SET_CONNECT_SEL, 0x01},
  1000. /* Mono selector; from Mix */
  1001. {0x0b, AC_VERB_SET_CONNECT_SEL, 0x03},
  1002. /* Mic Mixer; select Front Mic */
  1003. {0x1e, AC_VERB_SET_AMP_GAIN_MUTE, 0xb000},
  1004. {0x1f, AC_VERB_SET_AMP_GAIN_MUTE, 0xb080},
  1005. /* Mic boost: 0dB */
  1006. {0x08, AC_VERB_SET_AMP_GAIN_MUTE, 0xb000},
  1007. {0x18, AC_VERB_SET_AMP_GAIN_MUTE, 0xb000},
  1008. /* Record selector: Front mic */
  1009. {0x15, AC_VERB_SET_CONNECT_SEL, 0x0},
  1010. {0x15, AC_VERB_SET_AMP_GAIN_MUTE, 0xb080},
  1011. /* SPDIF route: PCM */
  1012. {0x02, AC_VERB_SET_CONNECT_SEL, 0x0},
  1013. /* Front Pin */
  1014. {0x05, AC_VERB_SET_PIN_WIDGET_CONTROL, 0x40 },
  1015. /* HP Pin */
  1016. {0x06, AC_VERB_SET_PIN_WIDGET_CONTROL, 0xc0 },
  1017. /* Mono Pin */
  1018. {0x07, AC_VERB_SET_PIN_WIDGET_CONTROL, 0x40 },
  1019. /* Front & Rear Mic Pins */
  1020. {0x08, AC_VERB_SET_PIN_WIDGET_CONTROL, 0x24 },
  1021. {0x18, AC_VERB_SET_PIN_WIDGET_CONTROL, 0x24 },
  1022. /* Line Pin */
  1023. {0x09, AC_VERB_SET_PIN_WIDGET_CONTROL, 0x20 },
  1024. /* Digital Beep */
  1025. {0x0d, AC_VERB_SET_CONNECT_SEL, 0x00},
  1026. /* Line-Out as Input: disabled */
  1027. {0x1a, AC_VERB_SET_AMP_GAIN_MUTE, 0xb080},
  1028. { } /* end */
  1029. };
  1030. /*
  1031. * Patch for HP nx6320
  1032. *
  1033. * nx6320 uses EAPD in the reserve way - EAPD-on means the internal
  1034. * speaker output enabled _and_ mute-LED off.
  1035. */
  1036. #define AD1981_HP_EVENT 0x37
  1037. #define AD1981_MIC_EVENT 0x38
  1038. static struct hda_verb ad1981_hp_init_verbs[] = {
  1039. {0x05, AC_VERB_SET_EAPD_BTLENABLE, 0x00 }, /* default off */
  1040. /* pin sensing on HP and Mic jacks */
  1041. {0x06, AC_VERB_SET_UNSOLICITED_ENABLE, AC_USRSP_EN | AD1981_HP_EVENT},
  1042. {0x08, AC_VERB_SET_UNSOLICITED_ENABLE, AC_USRSP_EN | AD1981_MIC_EVENT},
  1043. {}
  1044. };
  1045. /* turn on/off EAPD (+ mute HP) as a master switch */
  1046. static int ad1981_hp_master_sw_put(struct snd_kcontrol *kcontrol,
  1047. struct snd_ctl_elem_value *ucontrol)
  1048. {
  1049. struct hda_codec *codec = snd_kcontrol_chip(kcontrol);
  1050. struct ad198x_spec *spec = codec->spec;
  1051. if (! ad198x_eapd_put(kcontrol, ucontrol))
  1052. return 0;
  1053. /* toggle HP mute appropriately */
  1054. snd_hda_codec_amp_update(codec, 0x06, 0, HDA_OUTPUT, 0,
  1055. 0x80, spec->cur_eapd ? 0 : 0x80);
  1056. snd_hda_codec_amp_update(codec, 0x06, 1, HDA_OUTPUT, 0,
  1057. 0x80, spec->cur_eapd ? 0 : 0x80);
  1058. return 1;
  1059. }
  1060. /* bind volumes of both NID 0x05 and 0x06 */
  1061. static int ad1981_hp_master_vol_put(struct snd_kcontrol *kcontrol,
  1062. struct snd_ctl_elem_value *ucontrol)
  1063. {
  1064. struct hda_codec *codec = snd_kcontrol_chip(kcontrol);
  1065. long *valp = ucontrol->value.integer.value;
  1066. int change;
  1067. change = snd_hda_codec_amp_update(codec, 0x05, 0, HDA_OUTPUT, 0,
  1068. 0x7f, valp[0] & 0x7f);
  1069. change |= snd_hda_codec_amp_update(codec, 0x05, 1, HDA_OUTPUT, 0,
  1070. 0x7f, valp[1] & 0x7f);
  1071. snd_hda_codec_amp_update(codec, 0x06, 0, HDA_OUTPUT, 0,
  1072. 0x7f, valp[0] & 0x7f);
  1073. snd_hda_codec_amp_update(codec, 0x06, 1, HDA_OUTPUT, 0,
  1074. 0x7f, valp[1] & 0x7f);
  1075. return change;
  1076. }
  1077. /* mute internal speaker if HP is plugged */
  1078. static void ad1981_hp_automute(struct hda_codec *codec)
  1079. {
  1080. unsigned int present;
  1081. present = snd_hda_codec_read(codec, 0x06, 0,
  1082. AC_VERB_GET_PIN_SENSE, 0) & 0x80000000;
  1083. snd_hda_codec_amp_update(codec, 0x05, 0, HDA_OUTPUT, 0,
  1084. 0x80, present ? 0x80 : 0);
  1085. snd_hda_codec_amp_update(codec, 0x05, 1, HDA_OUTPUT, 0,
  1086. 0x80, present ? 0x80 : 0);
  1087. }
  1088. /* toggle input of built-in and mic jack appropriately */
  1089. static void ad1981_hp_automic(struct hda_codec *codec)
  1090. {
  1091. static struct hda_verb mic_jack_on[] = {
  1092. {0x1f, AC_VERB_SET_AMP_GAIN_MUTE, 0xb080},
  1093. {0x1e, AC_VERB_SET_AMP_GAIN_MUTE, 0xb000},
  1094. {}
  1095. };
  1096. static struct hda_verb mic_jack_off[] = {
  1097. {0x1e, AC_VERB_SET_AMP_GAIN_MUTE, 0xb080},
  1098. {0x1f, AC_VERB_SET_AMP_GAIN_MUTE, 0xb000},
  1099. {}
  1100. };
  1101. unsigned int present;
  1102. present = snd_hda_codec_read(codec, 0x08, 0,
  1103. AC_VERB_GET_PIN_SENSE, 0) & 0x80000000;
  1104. if (present)
  1105. snd_hda_sequence_write(codec, mic_jack_on);
  1106. else
  1107. snd_hda_sequence_write(codec, mic_jack_off);
  1108. }
  1109. /* unsolicited event for HP jack sensing */
  1110. static void ad1981_hp_unsol_event(struct hda_codec *codec,
  1111. unsigned int res)
  1112. {
  1113. res >>= 26;
  1114. switch (res) {
  1115. case AD1981_HP_EVENT:
  1116. ad1981_hp_automute(codec);
  1117. break;
  1118. case AD1981_MIC_EVENT:
  1119. ad1981_hp_automic(codec);
  1120. break;
  1121. }
  1122. }
  1123. static struct hda_input_mux ad1981_hp_capture_source = {
  1124. .num_items = 3,
  1125. .items = {
  1126. { "Mic", 0x0 },
  1127. { "Docking-Station", 0x1 },
  1128. { "Mix", 0x2 },
  1129. },
  1130. };
  1131. static struct snd_kcontrol_new ad1981_hp_mixers[] = {
  1132. {
  1133. .iface = SNDRV_CTL_ELEM_IFACE_MIXER,
  1134. .name = "Master Playback Volume",
  1135. .info = snd_hda_mixer_amp_volume_info,
  1136. .get = snd_hda_mixer_amp_volume_get,
  1137. .put = ad1981_hp_master_vol_put,
  1138. .private_value = HDA_COMPOSE_AMP_VAL(0x05, 3, 0, HDA_OUTPUT),
  1139. },
  1140. {
  1141. .iface = SNDRV_CTL_ELEM_IFACE_MIXER,
  1142. .name = "Master Playback Switch",
  1143. .info = ad198x_eapd_info,
  1144. .get = ad198x_eapd_get,
  1145. .put = ad1981_hp_master_sw_put,
  1146. .private_value = 0x05,
  1147. },
  1148. HDA_CODEC_VOLUME("PCM Playback Volume", 0x11, 0x0, HDA_OUTPUT),
  1149. HDA_CODEC_MUTE("PCM Playback Switch", 0x11, 0x0, HDA_OUTPUT),
  1150. #if 0
  1151. /* FIXME: analog mic/line loopback doesn't work with my tests...
  1152. * (although recording is OK)
  1153. */
  1154. HDA_CODEC_VOLUME("Mic Playback Volume", 0x12, 0x0, HDA_OUTPUT),
  1155. HDA_CODEC_MUTE("Mic Playback Switch", 0x12, 0x0, HDA_OUTPUT),
  1156. HDA_CODEC_VOLUME("Docking-Station Playback Volume", 0x13, 0x0, HDA_OUTPUT),
  1157. HDA_CODEC_MUTE("Docking-Station Playback Switch", 0x13, 0x0, HDA_OUTPUT),
  1158. HDA_CODEC_VOLUME("Internal Mic Playback Volume", 0x1c, 0x0, HDA_OUTPUT),
  1159. HDA_CODEC_MUTE("Internal Mic Playback Switch", 0x1c, 0x0, HDA_OUTPUT),
  1160. /* FIXME: does this laptop have analog CD connection? */
  1161. HDA_CODEC_VOLUME("CD Playback Volume", 0x1d, 0x0, HDA_OUTPUT),
  1162. HDA_CODEC_MUTE("CD Playback Switch", 0x1d, 0x0, HDA_OUTPUT),
  1163. #endif
  1164. HDA_CODEC_VOLUME("Mic Boost", 0x08, 0x0, HDA_INPUT),
  1165. HDA_CODEC_VOLUME("Internal Mic Boost", 0x18, 0x0, HDA_INPUT),
  1166. HDA_CODEC_VOLUME("Capture Volume", 0x15, 0x0, HDA_OUTPUT),
  1167. HDA_CODEC_MUTE("Capture Switch", 0x15, 0x0, HDA_OUTPUT),
  1168. {
  1169. .iface = SNDRV_CTL_ELEM_IFACE_MIXER,
  1170. .name = "Capture Source",
  1171. .info = ad198x_mux_enum_info,
  1172. .get = ad198x_mux_enum_get,
  1173. .put = ad198x_mux_enum_put,
  1174. },
  1175. { } /* end */
  1176. };
  1177. /* initialize jack-sensing, too */
  1178. static int ad1981_hp_init(struct hda_codec *codec)
  1179. {
  1180. ad198x_init(codec);
  1181. ad1981_hp_automute(codec);
  1182. ad1981_hp_automic(codec);
  1183. return 0;
  1184. }
  1185. /* models */
  1186. enum { AD1981_BASIC, AD1981_HP };
  1187. static struct hda_board_config ad1981_cfg_tbl[] = {
  1188. { .modelname = "hp", .config = AD1981_HP },
  1189. { .pci_subvendor = 0x103c, .pci_subdevice = 0x30aa,
  1190. .config = AD1981_HP }, /* HP nx6320 */
  1191. { .pci_subvendor = 0x103c, .pci_subdevice = 0x309f,
  1192. .config = AD1981_HP }, /* HP nx9420 AngelFire */
  1193. { .modelname = "basic", .config = AD1981_BASIC },
  1194. {}
  1195. };
  1196. static int patch_ad1981(struct hda_codec *codec)
  1197. {
  1198. struct ad198x_spec *spec;
  1199. int board_config;
  1200. spec = kzalloc(sizeof(*spec), GFP_KERNEL);
  1201. if (spec == NULL)
  1202. return -ENOMEM;
  1203. mutex_init(&spec->amp_mutex);
  1204. codec->spec = spec;
  1205. spec->multiout.max_channels = 2;
  1206. spec->multiout.num_dacs = ARRAY_SIZE(ad1981_dac_nids);
  1207. spec->multiout.dac_nids = ad1981_dac_nids;
  1208. spec->multiout.dig_out_nid = AD1981_SPDIF_OUT;
  1209. spec->num_adc_nids = 1;
  1210. spec->adc_nids = ad1981_adc_nids;
  1211. spec->capsrc_nids = ad1981_capsrc_nids;
  1212. spec->input_mux = &ad1981_capture_source;
  1213. spec->num_mixers = 1;
  1214. spec->mixers[0] = ad1981_mixers;
  1215. spec->num_init_verbs = 1;
  1216. spec->init_verbs[0] = ad1981_init_verbs;
  1217. spec->spdif_route = 0;
  1218. codec->patch_ops = ad198x_patch_ops;
  1219. /* override some parameters */
  1220. board_config = snd_hda_check_board_config(codec, ad1981_cfg_tbl);
  1221. switch (board_config) {
  1222. case AD1981_HP:
  1223. spec->mixers[0] = ad1981_hp_mixers;
  1224. spec->num_init_verbs = 2;
  1225. spec->init_verbs[1] = ad1981_hp_init_verbs;
  1226. spec->multiout.dig_out_nid = 0;
  1227. spec->input_mux = &ad1981_hp_capture_source;
  1228. codec->patch_ops.init = ad1981_hp_init;
  1229. codec->patch_ops.unsol_event = ad1981_hp_unsol_event;
  1230. break;
  1231. }
  1232. return 0;
  1233. }
  1234. /*
  1235. * AD1988
  1236. *
  1237. * Output pins and routes
  1238. *
  1239. * Pin Mix Sel DAC (*)
  1240. * port-A 0x11 (mute/hp) <- 0x22 <- 0x37 <- 03/04/06
  1241. * port-B 0x14 (mute/hp) <- 0x2b <- 0x30 <- 03/04/06
  1242. * port-C 0x15 (mute) <- 0x2c <- 0x31 <- 05/0a
  1243. * port-D 0x12 (mute/hp) <- 0x29 <- 04
  1244. * port-E 0x17 (mute/hp) <- 0x26 <- 0x32 <- 05/0a
  1245. * port-F 0x16 (mute) <- 0x2a <- 06
  1246. * port-G 0x24 (mute) <- 0x27 <- 05
  1247. * port-H 0x25 (mute) <- 0x28 <- 0a
  1248. * mono 0x13 (mute/amp)<- 0x1e <- 0x36 <- 03/04/06
  1249. *
  1250. * DAC0 = 03h, DAC1 = 04h, DAC2 = 05h, DAC3 = 06h, DAC4 = 0ah
  1251. * (*) DAC2/3/4 are swapped to DAC3/4/2 on AD198A rev.2 due to a h/w bug.
  1252. *
  1253. * Input pins and routes
  1254. *
  1255. * pin boost mix input # / adc input #
  1256. * port-A 0x11 -> 0x38 -> mix 2, ADC 0
  1257. * port-B 0x14 -> 0x39 -> mix 0, ADC 1
  1258. * port-C 0x15 -> 0x3a -> 33:0 - mix 1, ADC 2
  1259. * port-D 0x12 -> 0x3d -> mix 3, ADC 8
  1260. * port-E 0x17 -> 0x3c -> 34:0 - mix 4, ADC 4
  1261. * port-F 0x16 -> 0x3b -> mix 5, ADC 3
  1262. * port-G 0x24 -> N/A -> 33:1 - mix 1, 34:1 - mix 4, ADC 6
  1263. * port-H 0x25 -> N/A -> 33:2 - mix 1, 34:2 - mix 4, ADC 7
  1264. *
  1265. *
  1266. * DAC assignment
  1267. * 6stack - front/surr/CLFE/side/opt DACs - 04/06/05/0a/03
  1268. * 3stack - front/surr/CLFE/opt DACs - 04/05/0a/03
  1269. *
  1270. * Inputs of Analog Mix (0x20)
  1271. * 0:Port-B (front mic)
  1272. * 1:Port-C/G/H (line-in)
  1273. * 2:Port-A
  1274. * 3:Port-D (line-in/2)
  1275. * 4:Port-E/G/H (mic-in)
  1276. * 5:Port-F (mic2-in)
  1277. * 6:CD
  1278. * 7:Beep
  1279. *
  1280. * ADC selection
  1281. * 0:Port-A
  1282. * 1:Port-B (front mic-in)
  1283. * 2:Port-C (line-in)
  1284. * 3:Port-F (mic2-in)
  1285. * 4:Port-E (mic-in)
  1286. * 5:CD
  1287. * 6:Port-G
  1288. * 7:Port-H
  1289. * 8:Port-D (line-in/2)
  1290. * 9:Mix
  1291. *
  1292. * Proposed pin assignments by the datasheet
  1293. *
  1294. * 6-stack
  1295. * Port-A front headphone
  1296. * B front mic-in
  1297. * C rear line-in
  1298. * D rear front-out
  1299. * E rear mic-in
  1300. * F rear surround
  1301. * G rear CLFE
  1302. * H rear side
  1303. *
  1304. * 3-stack
  1305. * Port-A front headphone
  1306. * B front mic
  1307. * C rear line-in/surround
  1308. * D rear front-out
  1309. * E rear mic-in/CLFE
  1310. *
  1311. * laptop
  1312. * Port-A headphone
  1313. * B mic-in
  1314. * C docking station
  1315. * D internal speaker (with EAPD)
  1316. * E/F quad mic array
  1317. */
  1318. /* models */
  1319. enum {
  1320. AD1988_6STACK,
  1321. AD1988_6STACK_DIG,
  1322. AD1988_3STACK,
  1323. AD1988_3STACK_DIG,
  1324. AD1988_LAPTOP,
  1325. AD1988_LAPTOP_DIG,
  1326. AD1988_AUTO,
  1327. AD1988_MODEL_LAST,
  1328. };
  1329. /* reivision id to check workarounds */
  1330. #define AD1988A_REV2 0x100200
  1331. /*
  1332. * mixers
  1333. */
  1334. static hda_nid_t ad1988_6stack_dac_nids[4] = {
  1335. 0x04, 0x06, 0x05, 0x0a
  1336. };
  1337. static hda_nid_t ad1988_3stack_dac_nids[3] = {
  1338. 0x04, 0x05, 0x0a
  1339. };
  1340. /* for AD1988A revision-2, DAC2-4 are swapped */
  1341. static hda_nid_t ad1988_6stack_dac_nids_rev2[4] = {
  1342. 0x04, 0x05, 0x0a, 0x06
  1343. };
  1344. static hda_nid_t ad1988_3stack_dac_nids_rev2[3] = {
  1345. 0x04, 0x0a, 0x06
  1346. };
  1347. static hda_nid_t ad1988_adc_nids[3] = {
  1348. 0x08, 0x09, 0x0f
  1349. };
  1350. static hda_nid_t ad1988_capsrc_nids[3] = {
  1351. 0x0c, 0x0d, 0x0e
  1352. };
  1353. #define AD1988_SPDIF_OUT 0x02
  1354. #define AD1988_SPDIF_IN 0x07
  1355. static struct hda_input_mux ad1988_6stack_capture_source = {
  1356. .num_items = 5,
  1357. .items = {
  1358. { "Front Mic", 0x0 },
  1359. { "Line", 0x1 },
  1360. { "Mic", 0x4 },
  1361. { "CD", 0x5 },
  1362. { "Mix", 0x9 },
  1363. },
  1364. };
  1365. static struct hda_input_mux ad1988_laptop_capture_source = {
  1366. .num_items = 3,
  1367. .items = {
  1368. { "Mic/Line", 0x0 },
  1369. { "CD", 0x5 },
  1370. { "Mix", 0x9 },
  1371. },
  1372. };
  1373. /*
  1374. */
  1375. static int ad198x_ch_mode_info(struct snd_kcontrol *kcontrol,
  1376. struct snd_ctl_elem_info *uinfo)
  1377. {
  1378. struct hda_codec *codec = snd_kcontrol_chip(kcontrol);
  1379. struct ad198x_spec *spec = codec->spec;
  1380. return snd_hda_ch_mode_info(codec, uinfo, spec->channel_mode,
  1381. spec->num_channel_mode);
  1382. }
  1383. static int ad198x_ch_mode_get(struct snd_kcontrol *kcontrol,
  1384. struct snd_ctl_elem_value *ucontrol)
  1385. {
  1386. struct hda_codec *codec = snd_kcontrol_chip(kcontrol);
  1387. struct ad198x_spec *spec = codec->spec;
  1388. return snd_hda_ch_mode_get(codec, ucontrol, spec->channel_mode,
  1389. spec->num_channel_mode, spec->multiout.max_channels);
  1390. }
  1391. static int ad198x_ch_mode_put(struct snd_kcontrol *kcontrol,
  1392. struct snd_ctl_elem_value *ucontrol)
  1393. {
  1394. struct hda_codec *codec = snd_kcontrol_chip(kcontrol);
  1395. struct ad198x_spec *spec = codec->spec;
  1396. return snd_hda_ch_mode_put(codec, ucontrol, spec->channel_mode,
  1397. spec->num_channel_mode, &spec->multiout.max_channels);
  1398. }
  1399. /* 6-stack mode */
  1400. static struct snd_kcontrol_new ad1988_6stack_mixers1[] = {
  1401. HDA_CODEC_VOLUME("Front Playback Volume", 0x04, 0x0, HDA_OUTPUT),
  1402. HDA_CODEC_VOLUME("Surround Playback Volume", 0x06, 0x0, HDA_OUTPUT),
  1403. HDA_CODEC_VOLUME_MONO("Center Playback Volume", 0x05, 1, 0x0, HDA_OUTPUT),
  1404. HDA_CODEC_VOLUME_MONO("LFE Playback Volume", 0x05, 2, 0x0, HDA_OUTPUT),
  1405. HDA_CODEC_VOLUME("Side Playback Volume", 0x0a, 0x0, HDA_OUTPUT),
  1406. };
  1407. static struct snd_kcontrol_new ad1988_6stack_mixers1_rev2[] = {
  1408. HDA_CODEC_VOLUME("Front Playback Volume", 0x04, 0x0, HDA_OUTPUT),
  1409. HDA_CODEC_VOLUME("Surround Playback Volume", 0x05, 0x0, HDA_OUTPUT),
  1410. HDA_CODEC_VOLUME_MONO("Center Playback Volume", 0x0a, 1, 0x0, HDA_OUTPUT),
  1411. HDA_CODEC_VOLUME_MONO("LFE Playback Volume", 0x0a, 2, 0x0, HDA_OUTPUT),
  1412. HDA_CODEC_VOLUME("Side Playback Volume", 0x06, 0x0, HDA_OUTPUT),
  1413. };
  1414. static struct snd_kcontrol_new ad1988_6stack_mixers2[] = {
  1415. HDA_BIND_MUTE("Front Playback Switch", 0x29, 2, HDA_INPUT),
  1416. HDA_BIND_MUTE("Surround Playback Switch", 0x2a, 2, HDA_INPUT),
  1417. HDA_BIND_MUTE_MONO("Center Playback Switch", 0x27, 1, 2, HDA_INPUT),
  1418. HDA_BIND_MUTE_MONO("LFE Playback Switch", 0x27, 2, 2, HDA_INPUT),
  1419. HDA_BIND_MUTE("Side Playback Switch", 0x28, 2, HDA_INPUT),
  1420. HDA_BIND_MUTE("Headphone Playback Switch", 0x22, 2, HDA_INPUT),
  1421. HDA_BIND_MUTE("Mono Playback Switch", 0x1e, 2, HDA_INPUT),
  1422. HDA_CODEC_VOLUME("CD Playback Volume", 0x20, 0x6, HDA_INPUT),
  1423. HDA_CODEC_MUTE("CD Playback Switch", 0x20, 0x6, HDA_INPUT),
  1424. HDA_CODEC_VOLUME("Front Mic Playback Volume", 0x20, 0x0, HDA_INPUT),
  1425. HDA_CODEC_MUTE("Front Mic Playback Switch", 0x20, 0x0, HDA_INPUT),
  1426. HDA_CODEC_VOLUME("Line Playback Volume", 0x20, 0x1, HDA_INPUT),
  1427. HDA_CODEC_MUTE("Line Playback Switch", 0x20, 0x1, HDA_INPUT),
  1428. HDA_CODEC_VOLUME("Mic Playback Volume", 0x20, 0x4, HDA_INPUT),
  1429. HDA_CODEC_MUTE("Mic Playback Switch", 0x20, 0x4, HDA_INPUT),
  1430. HDA_CODEC_VOLUME("Beep Playback Volume", 0x10, 0x0, HDA_OUTPUT),
  1431. HDA_CODEC_MUTE("Beep Playback Switch", 0x10, 0x0, HDA_OUTPUT),
  1432. HDA_CODEC_VOLUME("Analog Mix Playback Volume", 0x21, 0x0, HDA_OUTPUT),
  1433. HDA_CODEC_MUTE("Analog Mix Playback Switch", 0x21, 0x0, HDA_OUTPUT),
  1434. HDA_CODEC_VOLUME("Front Mic Boost", 0x39, 0x0, HDA_OUTPUT),
  1435. HDA_CODEC_VOLUME("Mic Boost", 0x3c, 0x0, HDA_OUTPUT),
  1436. { } /* end */
  1437. };
  1438. /* 3-stack mode */
  1439. static struct snd_kcontrol_new ad1988_3stack_mixers1[] = {
  1440. HDA_CODEC_VOLUME("Front Playback Volume", 0x04, 0x0, HDA_OUTPUT),
  1441. HDA_CODEC_VOLUME("Surround Playback Volume", 0x0a, 0x0, HDA_OUTPUT),
  1442. HDA_CODEC_VOLUME_MONO("Center Playback Volume", 0x05, 1, 0x0, HDA_OUTPUT),
  1443. HDA_CODEC_VOLUME_MONO("LFE Playback Volume", 0x05, 2, 0x0, HDA_OUTPUT),
  1444. };
  1445. static struct snd_kcontrol_new ad1988_3stack_mixers1_rev2[] = {
  1446. HDA_CODEC_VOLUME("Front Playback Volume", 0x04, 0x0, HDA_OUTPUT),
  1447. HDA_CODEC_VOLUME("Surround Playback Volume", 0x0a, 0x0, HDA_OUTPUT),
  1448. HDA_CODEC_VOLUME_MONO("Center Playback Volume", 0x06, 1, 0x0, HDA_OUTPUT),
  1449. HDA_CODEC_VOLUME_MONO("LFE Playback Volume", 0x06, 2, 0x0, HDA_OUTPUT),
  1450. };
  1451. static struct snd_kcontrol_new ad1988_3stack_mixers2[] = {
  1452. HDA_BIND_MUTE("Front Playback Switch", 0x29, 2, HDA_INPUT),
  1453. HDA_BIND_MUTE("Surround Playback Switch", 0x2c, 2, HDA_INPUT),
  1454. HDA_BIND_MUTE_MONO("Center Playback Switch", 0x26, 1, 2, HDA_INPUT),
  1455. HDA_BIND_MUTE_MONO("LFE Playback Switch", 0x26, 2, 2, HDA_INPUT),
  1456. HDA_BIND_MUTE("Headphone Playback Switch", 0x22, 2, HDA_INPUT),
  1457. HDA_BIND_MUTE("Mono Playback Switch", 0x1e, 2, HDA_INPUT),
  1458. HDA_CODEC_VOLUME("CD Playback Volume", 0x20, 0x6, HDA_INPUT),
  1459. HDA_CODEC_MUTE("CD Playback Switch", 0x20, 0x6, HDA_INPUT),
  1460. HDA_CODEC_VOLUME("Front Mic Playback Volume", 0x20, 0x0, HDA_INPUT),
  1461. HDA_CODEC_MUTE("Front Mic Playback Switch", 0x20, 0x0, HDA_INPUT),
  1462. HDA_CODEC_VOLUME("Line Playback Volume", 0x20, 0x1, HDA_INPUT),
  1463. HDA_CODEC_MUTE("Line Playback Switch", 0x20, 0x1, HDA_INPUT),
  1464. HDA_CODEC_VOLUME("Mic Playback Volume", 0x20, 0x4, HDA_INPUT),
  1465. HDA_CODEC_MUTE("Mic Playback Switch", 0x20, 0x4, HDA_INPUT),
  1466. HDA_CODEC_VOLUME("Beep Playback Volume", 0x10, 0x0, HDA_OUTPUT),
  1467. HDA_CODEC_MUTE("Beep Playback Switch", 0x10, 0x0, HDA_OUTPUT),
  1468. HDA_CODEC_VOLUME("Analog Mix Playback Volume", 0x21, 0x0, HDA_OUTPUT),
  1469. HDA_CODEC_MUTE("Analog Mix Playback Switch", 0x21, 0x0, HDA_OUTPUT),
  1470. HDA_CODEC_VOLUME("Front Mic Boost", 0x39, 0x0, HDA_OUTPUT),
  1471. HDA_CODEC_VOLUME("Mic Boost", 0x3c, 0x0, HDA_OUTPUT),
  1472. {
  1473. .iface = SNDRV_CTL_ELEM_IFACE_MIXER,
  1474. .name = "Channel Mode",
  1475. .info = ad198x_ch_mode_info,
  1476. .get = ad198x_ch_mode_get,
  1477. .put = ad198x_ch_mode_put,
  1478. },
  1479. { } /* end */
  1480. };
  1481. /* laptop mode */
  1482. static struct snd_kcontrol_new ad1988_laptop_mixers[] = {
  1483. HDA_CODEC_VOLUME("PCM Playback Volume", 0x04, 0x0, HDA_OUTPUT),
  1484. HDA_CODEC_MUTE("PCM Playback Switch", 0x29, 0x0, HDA_INPUT),
  1485. HDA_BIND_MUTE("Mono Playback Switch", 0x1e, 2, HDA_INPUT),
  1486. HDA_CODEC_VOLUME("CD Playback Volume", 0x20, 0x6, HDA_INPUT),
  1487. HDA_CODEC_MUTE("CD Playback Switch", 0x20, 0x6, HDA_INPUT),
  1488. HDA_CODEC_VOLUME("Mic Playback Volume", 0x20, 0x0, HDA_INPUT),
  1489. HDA_CODEC_MUTE("Mic Playback Switch", 0x20, 0x0, HDA_INPUT),
  1490. HDA_CODEC_VOLUME("Line Playback Volume", 0x20, 0x1, HDA_INPUT),
  1491. HDA_CODEC_MUTE("Line Playback Switch", 0x20, 0x1, HDA_INPUT),
  1492. HDA_CODEC_VOLUME("Beep Playback Volume", 0x10, 0x0, HDA_OUTPUT),
  1493. HDA_CODEC_MUTE("Beep Playback Switch", 0x10, 0x0, HDA_OUTPUT),
  1494. HDA_CODEC_VOLUME("Analog Mix Playback Volume", 0x21, 0x0, HDA_OUTPUT),
  1495. HDA_CODEC_MUTE("Analog Mix Playback Switch", 0x21, 0x0, HDA_OUTPUT),
  1496. HDA_CODEC_VOLUME("Mic Boost", 0x39, 0x0, HDA_OUTPUT),
  1497. {
  1498. .iface = SNDRV_CTL_ELEM_IFACE_MIXER,
  1499. .name = "External Amplifier",
  1500. .info = ad198x_eapd_info,
  1501. .get = ad198x_eapd_get,
  1502. .put = ad198x_eapd_put,
  1503. .private_value = 0x12 | (1 << 8), /* port-D, inversed */
  1504. },
  1505. { } /* end */
  1506. };
  1507. /* capture */
  1508. static struct snd_kcontrol_new ad1988_capture_mixers[] = {
  1509. HDA_CODEC_VOLUME("Capture Volume", 0x0c, 0x0, HDA_OUTPUT),
  1510. HDA_CODEC_MUTE("Capture Switch", 0x0c, 0x0, HDA_OUTPUT),
  1511. HDA_CODEC_VOLUME_IDX("Capture Volume", 1, 0x0d, 0x0, HDA_OUTPUT),
  1512. HDA_CODEC_MUTE_IDX("Capture Switch", 1, 0x0d, 0x0, HDA_OUTPUT),
  1513. HDA_CODEC_VOLUME_IDX("Capture Volume", 2, 0x0e, 0x0, HDA_OUTPUT),
  1514. HDA_CODEC_MUTE_IDX("Capture Switch", 2, 0x0e, 0x0, HDA_OUTPUT),
  1515. {
  1516. .iface = SNDRV_CTL_ELEM_IFACE_MIXER,
  1517. /* The multiple "Capture Source" controls confuse alsamixer
  1518. * So call somewhat different..
  1519. * FIXME: the controls appear in the "playback" view!
  1520. */
  1521. /* .name = "Capture Source", */
  1522. .name = "Input Source",
  1523. .count = 3,
  1524. .info = ad198x_mux_enum_info,
  1525. .get = ad198x_mux_enum_get,
  1526. .put = ad198x_mux_enum_put,
  1527. },
  1528. { } /* end */
  1529. };
  1530. static int ad1988_spdif_playback_source_info(struct snd_kcontrol *kcontrol,
  1531. struct snd_ctl_elem_info *uinfo)
  1532. {
  1533. static char *texts[] = {
  1534. "PCM", "ADC1", "ADC2", "ADC3"
  1535. };
  1536. uinfo->type = SNDRV_CTL_ELEM_TYPE_ENUMERATED;
  1537. uinfo->count = 1;
  1538. uinfo->value.enumerated.items = 4;
  1539. if (uinfo->value.enumerated.item >= 4)
  1540. uinfo->value.enumerated.item = 3;
  1541. strcpy(uinfo->value.enumerated.name, texts[uinfo->value.enumerated.item]);
  1542. return 0;
  1543. }
  1544. static int ad1988_spdif_playback_source_get(struct snd_kcontrol *kcontrol,
  1545. struct snd_ctl_elem_value *ucontrol)
  1546. {
  1547. struct hda_codec *codec = snd_kcontrol_chip(kcontrol);
  1548. unsigned int sel;
  1549. sel = snd_hda_codec_read(codec, 0x02, 0, AC_VERB_GET_CONNECT_SEL, 0);
  1550. if (sel > 0) {
  1551. sel = snd_hda_codec_read(codec, 0x0b, 0, AC_VERB_GET_CONNECT_SEL, 0);
  1552. if (sel <= 3)
  1553. sel++;
  1554. else
  1555. sel = 0;
  1556. }
  1557. ucontrol->value.enumerated.item[0] = sel;
  1558. return 0;
  1559. }
  1560. static int ad1988_spdif_playback_source_put(struct snd_kcontrol *kcontrol,
  1561. struct snd_ctl_elem_value *ucontrol)
  1562. {
  1563. struct hda_codec *codec = snd_kcontrol_chip(kcontrol);
  1564. unsigned int sel;
  1565. int change;
  1566. sel = snd_hda_codec_read(codec, 0x02, 0, AC_VERB_GET_CONNECT_SEL, 0);
  1567. if (! ucontrol->value.enumerated.item[0]) {
  1568. change = sel != 0;
  1569. if (change)
  1570. snd_hda_codec_write(codec, 0x02, 0, AC_VERB_SET_CONNECT_SEL, 0);
  1571. } else {
  1572. change = sel == 0;
  1573. if (change)
  1574. snd_hda_codec_write(codec, 0x02, 0, AC_VERB_SET_CONNECT_SEL, 1);
  1575. sel = snd_hda_codec_read(codec, 0x0b, 0, AC_VERB_GET_CONNECT_SEL, 0) + 1;
  1576. change |= sel == ucontrol->value.enumerated.item[0];
  1577. if (change)
  1578. snd_hda_codec_write(codec, 0x02, 0, AC_VERB_SET_CONNECT_SEL,
  1579. ucontrol->value.enumerated.item[0] - 1);
  1580. }
  1581. return change;
  1582. }
  1583. static struct snd_kcontrol_new ad1988_spdif_out_mixers[] = {
  1584. HDA_CODEC_VOLUME("IEC958 Playback Volume", 0x1b, 0x0, HDA_OUTPUT),
  1585. {
  1586. .iface = SNDRV_CTL_ELEM_IFACE_MIXER,
  1587. .name = "IEC958 Playback Source",
  1588. .info = ad1988_spdif_playback_source_info,
  1589. .get = ad1988_spdif_playback_source_get,
  1590. .put = ad1988_spdif_playback_source_put,
  1591. },
  1592. { } /* end */
  1593. };
  1594. static struct snd_kcontrol_new ad1988_spdif_in_mixers[] = {
  1595. HDA_CODEC_VOLUME("IEC958 Capture Volume", 0x1c, 0x0, HDA_INPUT),
  1596. { } /* end */
  1597. };
  1598. /*
  1599. * initialization verbs
  1600. */
  1601. /*
  1602. * for 6-stack (+dig)
  1603. */
  1604. static struct hda_verb ad1988_6stack_init_verbs[] = {
  1605. /* Front, Surround, CLFE, side DAC; unmute as default */
  1606. {0x04, AC_VERB_SET_AMP_GAIN_MUTE, AMP_OUT_UNMUTE},
  1607. {0x06, AC_VERB_SET_AMP_GAIN_MUTE, AMP_OUT_UNMUTE},
  1608. {0x05, AC_VERB_SET_AMP_GAIN_MUTE, AMP_OUT_UNMUTE},
  1609. {0x0a, AC_VERB_SET_AMP_GAIN_MUTE, AMP_OUT_UNMUTE},
  1610. /* Port-A front headphon path */
  1611. {0x37, AC_VERB_SET_CONNECT_SEL, 0x01}, /* DAC1:04h */
  1612. {0x22, AC_VERB_SET_AMP_GAIN_MUTE, AMP_IN_MUTE(0)},
  1613. {0x22, AC_VERB_SET_AMP_GAIN_MUTE, AMP_IN_MUTE(1)},
  1614. {0x11, AC_VERB_SET_AMP_GAIN_MUTE, AMP_OUT_UNMUTE},
  1615. {0x11, AC_VERB_SET_PIN_WIDGET_CONTROL, PIN_HP},
  1616. /* Port-D line-out path */
  1617. {0x29, AC_VERB_SET_AMP_GAIN_MUTE, AMP_IN_MUTE(0)},
  1618. {0x29, AC_VERB_SET_AMP_GAIN_MUTE, AMP_IN_MUTE(1)},
  1619. {0x12, AC_VERB_SET_AMP_GAIN_MUTE, AMP_OUT_UNMUTE},
  1620. {0x12, AC_VERB_SET_PIN_WIDGET_CONTROL, PIN_OUT},
  1621. /* Port-F surround path */
  1622. {0x2a, AC_VERB_SET_AMP_GAIN_MUTE, AMP_IN_MUTE(0)},
  1623. {0x2a, AC_VERB_SET_AMP_GAIN_MUTE, AMP_IN_MUTE(1)},
  1624. {0x16, AC_VERB_SET_AMP_GAIN_MUTE, AMP_OUT_UNMUTE},
  1625. {0x16, AC_VERB_SET_PIN_WIDGET_CONTROL, PIN_OUT},
  1626. /* Port-G CLFE path */
  1627. {0x27, AC_VERB_SET_AMP_GAIN_MUTE, AMP_IN_MUTE(0)},
  1628. {0x27, AC_VERB_SET_AMP_GAIN_MUTE, AMP_IN_MUTE(1)},
  1629. {0x24, AC_VERB_SET_AMP_GAIN_MUTE, AMP_OUT_UNMUTE},
  1630. {0x24, AC_VERB_SET_PIN_WIDGET_CONTROL, PIN_OUT},
  1631. /* Port-H side path */
  1632. {0x28, AC_VERB_SET_AMP_GAIN_MUTE, AMP_IN_MUTE(0)},
  1633. {0x28, AC_VERB_SET_AMP_GAIN_MUTE, AMP_IN_MUTE(1)},
  1634. {0x25, AC_VERB_SET_AMP_GAIN_MUTE, AMP_OUT_UNMUTE},
  1635. {0x25, AC_VERB_SET_PIN_WIDGET_CONTROL, PIN_OUT},
  1636. /* Mono out path */
  1637. {0x36, AC_VERB_SET_CONNECT_SEL, 0x1}, /* DAC1:04h */
  1638. {0x1e, AC_VERB_SET_AMP_GAIN_MUTE, AMP_IN_MUTE(0)},
  1639. {0x1e, AC_VERB_SET_AMP_GAIN_MUTE, AMP_IN_MUTE(1)},
  1640. {0x13, AC_VERB_SET_PIN_WIDGET_CONTROL, PIN_OUT},
  1641. {0x13, AC_VERB_SET_AMP_GAIN_MUTE, 0xb01f}, /* unmute, 0dB */
  1642. /* Port-B front mic-in path */
  1643. {0x14, AC_VERB_SET_AMP_GAIN_MUTE, AMP_OUT_MUTE},
  1644. {0x14, AC_VERB_SET_PIN_WIDGET_CONTROL, PIN_VREF80},
  1645. {0x39, AC_VERB_SET_AMP_GAIN_MUTE, AMP_OUT_ZERO},
  1646. /* Port-C line-in path */
  1647. {0x15, AC_VERB_SET_AMP_GAIN_MUTE, AMP_OUT_MUTE},
  1648. {0x15, AC_VERB_SET_PIN_WIDGET_CONTROL, PIN_IN},
  1649. {0x3a, AC_VERB_SET_AMP_GAIN_MUTE, AMP_OUT_ZERO},
  1650. {0x33, AC_VERB_SET_CONNECT_SEL, 0x0},
  1651. /* Port-E mic-in path */
  1652. {0x17, AC_VERB_SET_AMP_GAIN_MUTE, AMP_OUT_MUTE},
  1653. {0x17, AC_VERB_SET_PIN_WIDGET_CONTROL, PIN_VREF80},
  1654. {0x3c, AC_VERB_SET_AMP_GAIN_MUTE, AMP_OUT_ZERO},
  1655. {0x34, AC_VERB_SET_CONNECT_SEL, 0x0},
  1656. { }
  1657. };
  1658. static struct hda_verb ad1988_capture_init_verbs[] = {
  1659. /* mute analog mix */
  1660. {0x20, AC_VERB_SET_AMP_GAIN_MUTE, AMP_IN_MUTE(0)},
  1661. {0x20, AC_VERB_SET_AMP_GAIN_MUTE, AMP_IN_MUTE(1)},
  1662. {0x20, AC_VERB_SET_AMP_GAIN_MUTE, AMP_IN_MUTE(2)},
  1663. {0x20, AC_VERB_SET_AMP_GAIN_MUTE, AMP_IN_MUTE(3)},
  1664. {0x20, AC_VERB_SET_AMP_GAIN_MUTE, AMP_IN_MUTE(4)},
  1665. {0x20, AC_VERB_SET_AMP_GAIN_MUTE, AMP_IN_MUTE(5)},
  1666. {0x20, AC_VERB_SET_AMP_GAIN_MUTE, AMP_IN_MUTE(6)},
  1667. {0x20, AC_VERB_SET_AMP_GAIN_MUTE, AMP_IN_MUTE(7)},
  1668. /* select ADCs - front-mic */
  1669. {0x0c, AC_VERB_SET_CONNECT_SEL, 0x1},
  1670. {0x0d, AC_VERB_SET_CONNECT_SEL, 0x1},
  1671. {0x0e, AC_VERB_SET_CONNECT_SEL, 0x1},
  1672. /* ADCs; muted */
  1673. {0x08, AC_VERB_SET_AMP_GAIN_MUTE, AMP_OUT_MUTE},
  1674. {0x09, AC_VERB_SET_AMP_GAIN_MUTE, AMP_OUT_MUTE},
  1675. {0x0f, AC_VERB_SET_AMP_GAIN_MUTE, AMP_OUT_MUTE},
  1676. { }
  1677. };
  1678. static struct hda_verb ad1988_spdif_init_verbs[] = {
  1679. /* SPDIF out sel */
  1680. {0x02, AC_VERB_SET_CONNECT_SEL, 0x0}, /* PCM */
  1681. {0x0b, AC_VERB_SET_CONNECT_SEL, 0x0}, /* ADC1 */
  1682. {0x1d, AC_VERB_SET_AMP_GAIN_MUTE, AMP_IN_UNMUTE(0)},
  1683. {0x1d, AC_VERB_SET_AMP_GAIN_MUTE, AMP_IN_UNMUTE(1)},
  1684. /* SPDIF out pin */
  1685. {0x1b, AC_VERB_SET_AMP_GAIN_MUTE, AMP_OUT_UNMUTE | 0x27}, /* 0dB */
  1686. {0x1b, AC_VERB_SET_AMP_GAIN_MUTE, AMP_IN_UNMUTE(0) | 0x17}, /* 0dB */
  1687. { }
  1688. };
  1689. /*
  1690. * verbs for 3stack (+dig)
  1691. */
  1692. static struct hda_verb ad1988_3stack_ch2_init[] = {
  1693. /* set port-C to line-in */
  1694. { 0x15, AC_VERB_SET_AMP_GAIN_MUTE, AMP_OUT_MUTE },
  1695. { 0x15, AC_VERB_SET_PIN_WIDGET_CONTROL, PIN_IN },
  1696. /* set port-E to mic-in */
  1697. { 0x17, AC_VERB_SET_AMP_GAIN_MUTE, AMP_OUT_MUTE },
  1698. { 0x17, AC_VERB_SET_PIN_WIDGET_CONTROL, PIN_VREF80 },
  1699. { } /* end */
  1700. };
  1701. static struct hda_verb ad1988_3stack_ch6_init[] = {
  1702. /* set port-C to surround out */
  1703. { 0x15, AC_VERB_SET_PIN_WIDGET_CONTROL, PIN_OUT },
  1704. { 0x15, AC_VERB_SET_AMP_GAIN_MUTE, AMP_OUT_UNMUTE },
  1705. /* set port-E to CLFE out */
  1706. { 0x17, AC_VERB_SET_PIN_WIDGET_CONTROL, PIN_OUT },
  1707. { 0x17, AC_VERB_SET_AMP_GAIN_MUTE, AMP_OUT_UNMUTE },
  1708. { } /* end */
  1709. };
  1710. static struct hda_channel_mode ad1988_3stack_modes[2] = {
  1711. { 2, ad1988_3stack_ch2_init },
  1712. { 6, ad1988_3stack_ch6_init },
  1713. };
  1714. static struct hda_verb ad1988_3stack_init_verbs[] = {
  1715. /* Front, Surround, CLFE, side DAC; unmute as default */
  1716. {0x04, AC_VERB_SET_AMP_GAIN_MUTE, AMP_OUT_UNMUTE},
  1717. {0x06, AC_VERB_SET_AMP_GAIN_MUTE, AMP_OUT_UNMUTE},
  1718. {0x05, AC_VERB_SET_AMP_GAIN_MUTE, AMP_OUT_UNMUTE},
  1719. {0x0a, AC_VERB_SET_AMP_GAIN_MUTE, AMP_OUT_UNMUTE},
  1720. /* Port-A front headphon path */
  1721. {0x37, AC_VERB_SET_CONNECT_SEL, 0x01}, /* DAC1:04h */
  1722. {0x22, AC_VERB_SET_AMP_GAIN_MUTE, AMP_IN_MUTE(0)},
  1723. {0x22, AC_VERB_SET_AMP_GAIN_MUTE, AMP_IN_MUTE(1)},
  1724. {0x11, AC_VERB_SET_AMP_GAIN_MUTE, AMP_OUT_UNMUTE},
  1725. {0x11, AC_VERB_SET_PIN_WIDGET_CONTROL, PIN_HP},
  1726. /* Port-D line-out path */
  1727. {0x29, AC_VERB_SET_AMP_GAIN_MUTE, AMP_IN_MUTE(0)},
  1728. {0x29, AC_VERB_SET_AMP_GAIN_MUTE, AMP_IN_MUTE(1)},
  1729. {0x12, AC_VERB_SET_AMP_GAIN_MUTE, AMP_OUT_UNMUTE},
  1730. {0x12, AC_VERB_SET_PIN_WIDGET_CONTROL, PIN_OUT},
  1731. /* Mono out path */
  1732. {0x36, AC_VERB_SET_CONNECT_SEL, 0x1}, /* DAC1:04h */
  1733. {0x1e, AC_VERB_SET_AMP_GAIN_MUTE, AMP_IN_MUTE(0)},
  1734. {0x1e, AC_VERB_SET_AMP_GAIN_MUTE, AMP_IN_MUTE(1)},
  1735. {0x13, AC_VERB_SET_PIN_WIDGET_CONTROL, PIN_OUT},
  1736. {0x13, AC_VERB_SET_AMP_GAIN_MUTE, 0xb01f}, /* unmute, 0dB */
  1737. /* Port-B front mic-in path */
  1738. {0x14, AC_VERB_SET_AMP_GAIN_MUTE, AMP_OUT_MUTE},
  1739. {0x14, AC_VERB_SET_PIN_WIDGET_CONTROL, PIN_VREF80},
  1740. {0x39, AC_VERB_SET_AMP_GAIN_MUTE, AMP_OUT_ZERO},
  1741. /* Port-C line-in/surround path - 6ch mode as default */
  1742. {0x15, AC_VERB_SET_PIN_WIDGET_CONTROL, PIN_OUT},
  1743. {0x15, AC_VERB_SET_AMP_GAIN_MUTE, AMP_OUT_UNMUTE},
  1744. {0x3a, AC_VERB_SET_AMP_GAIN_MUTE, AMP_OUT_ZERO},
  1745. {0x31, AC_VERB_SET_CONNECT_SEL, 0x0}, /* output sel: DAC 0x05 */
  1746. {0x33, AC_VERB_SET_CONNECT_SEL, 0x0},
  1747. /* Port-E mic-in/CLFE path - 6ch mode as default */
  1748. {0x17, AC_VERB_SET_PIN_WIDGET_CONTROL, PIN_OUT},
  1749. {0x17, AC_VERB_SET_AMP_GAIN_MUTE, AMP_OUT_UNMUTE},
  1750. {0x3c, AC_VERB_SET_AMP_GAIN_MUTE, AMP_OUT_ZERO},
  1751. {0x32, AC_VERB_SET_CONNECT_SEL, 0x1}, /* output sel: DAC 0x0a */
  1752. {0x34, AC_VERB_SET_CONNECT_SEL, 0x0},
  1753. /* mute analog mix */
  1754. {0x20, AC_VERB_SET_AMP_GAIN_MUTE, AMP_IN_MUTE(0)},
  1755. {0x20, AC_VERB_SET_AMP_GAIN_MUTE, AMP_IN_MUTE(1)},
  1756. {0x20, AC_VERB_SET_AMP_GAIN_MUTE, AMP_IN_MUTE(2)},
  1757. {0x20, AC_VERB_SET_AMP_GAIN_MUTE, AMP_IN_MUTE(3)},
  1758. {0x20, AC_VERB_SET_AMP_GAIN_MUTE, AMP_IN_MUTE(4)},
  1759. {0x20, AC_VERB_SET_AMP_GAIN_MUTE, AMP_IN_MUTE(5)},
  1760. {0x20, AC_VERB_SET_AMP_GAIN_MUTE, AMP_IN_MUTE(6)},
  1761. {0x20, AC_VERB_SET_AMP_GAIN_MUTE, AMP_IN_MUTE(7)},
  1762. /* select ADCs - front-mic */
  1763. {0x0c, AC_VERB_SET_CONNECT_SEL, 0x1},
  1764. {0x0d, AC_VERB_SET_CONNECT_SEL, 0x1},
  1765. {0x0e, AC_VERB_SET_CONNECT_SEL, 0x1},
  1766. /* ADCs; muted */
  1767. {0x08, AC_VERB_SET_AMP_GAIN_MUTE, AMP_OUT_MUTE},
  1768. {0x09, AC_VERB_SET_AMP_GAIN_MUTE, AMP_OUT_MUTE},
  1769. {0x0f, AC_VERB_SET_AMP_GAIN_MUTE, AMP_OUT_MUTE},
  1770. { }
  1771. };
  1772. /*
  1773. * verbs for laptop mode (+dig)
  1774. */
  1775. static struct hda_verb ad1988_laptop_hp_on[] = {
  1776. /* unmute port-A and mute port-D */
  1777. { 0x11, AC_VERB_SET_AMP_GAIN_MUTE, AMP_OUT_UNMUTE },
  1778. { 0x12, AC_VERB_SET_AMP_GAIN_MUTE, AMP_OUT_MUTE },
  1779. { } /* end */
  1780. };
  1781. static struct hda_verb ad1988_laptop_hp_off[] = {
  1782. /* mute port-A and unmute port-D */
  1783. { 0x11, AC_VERB_SET_AMP_GAIN_MUTE, AMP_OUT_MUTE },
  1784. { 0x12, AC_VERB_SET_AMP_GAIN_MUTE, AMP_OUT_UNMUTE },
  1785. { } /* end */
  1786. };
  1787. #define AD1988_HP_EVENT 0x01
  1788. static struct hda_verb ad1988_laptop_init_verbs[] = {
  1789. /* Front, Surround, CLFE, side DAC; unmute as default */
  1790. {0x04, AC_VERB_SET_AMP_GAIN_MUTE, AMP_OUT_UNMUTE},
  1791. {0x06, AC_VERB_SET_AMP_GAIN_MUTE, AMP_OUT_UNMUTE},
  1792. {0x05, AC_VERB_SET_AMP_GAIN_MUTE, AMP_OUT_UNMUTE},
  1793. {0x0a, AC_VERB_SET_AMP_GAIN_MUTE, AMP_OUT_UNMUTE},
  1794. /* Port-A front headphon path */
  1795. {0x37, AC_VERB_SET_CONNECT_SEL, 0x01}, /* DAC1:04h */
  1796. {0x22, AC_VERB_SET_AMP_GAIN_MUTE, AMP_IN_MUTE(0)},
  1797. {0x22, AC_VERB_SET_AMP_GAIN_MUTE, AMP_IN_MUTE(1)},
  1798. {0x11, AC_VERB_SET_AMP_GAIN_MUTE, AMP_OUT_UNMUTE},
  1799. {0x11, AC_VERB_SET_PIN_WIDGET_CONTROL, PIN_HP},
  1800. /* unsolicited event for pin-sense */
  1801. {0x11, AC_VERB_SET_UNSOLICITED_ENABLE, AC_USRSP_EN | AD1988_HP_EVENT },
  1802. /* Port-D line-out path + EAPD */
  1803. {0x29, AC_VERB_SET_AMP_GAIN_MUTE, AMP_IN_MUTE(0)},
  1804. {0x29, AC_VERB_SET_AMP_GAIN_MUTE, AMP_IN_MUTE(1)},
  1805. {0x12, AC_VERB_SET_AMP_GAIN_MUTE, AMP_OUT_UNMUTE},
  1806. {0x12, AC_VERB_SET_PIN_WIDGET_CONTROL, PIN_OUT},
  1807. {0x12, AC_VERB_SET_EAPD_BTLENABLE, 0x00}, /* EAPD-off */
  1808. /* Mono out path */
  1809. {0x36, AC_VERB_SET_CONNECT_SEL, 0x1}, /* DAC1:04h */
  1810. {0x1e, AC_VERB_SET_AMP_GAIN_MUTE, AMP_IN_MUTE(0)},
  1811. {0x1e, AC_VERB_SET_AMP_GAIN_MUTE, AMP_IN_MUTE(1)},
  1812. {0x13, AC_VERB_SET_PIN_WIDGET_CONTROL, PIN_OUT},
  1813. {0x13, AC_VERB_SET_AMP_GAIN_MUTE, 0xb01f}, /* unmute, 0dB */
  1814. /* Port-B mic-in path */
  1815. {0x14, AC_VERB_SET_AMP_GAIN_MUTE, AMP_OUT_MUTE},
  1816. {0x14, AC_VERB_SET_PIN_WIDGET_CONTROL, PIN_VREF80},
  1817. {0x39, AC_VERB_SET_AMP_GAIN_MUTE, AMP_OUT_ZERO},
  1818. /* Port-C docking station - try to output */
  1819. {0x15, AC_VERB_SET_AMP_GAIN_MUTE, AMP_OUT_UNMUTE},
  1820. {0x15, AC_VERB_SET_PIN_WIDGET_CONTROL, PIN_OUT},
  1821. {0x3a, AC_VERB_SET_AMP_GAIN_MUTE, AMP_OUT_ZERO},
  1822. {0x33, AC_VERB_SET_CONNECT_SEL, 0x0},
  1823. /* mute analog mix */
  1824. {0x20, AC_VERB_SET_AMP_GAIN_MUTE, AMP_IN_MUTE(0)},
  1825. {0x20, AC_VERB_SET_AMP_GAIN_MUTE, AMP_IN_MUTE(1)},
  1826. {0x20, AC_VERB_SET_AMP_GAIN_MUTE, AMP_IN_MUTE(2)},
  1827. {0x20, AC_VERB_SET_AMP_GAIN_MUTE, AMP_IN_MUTE(3)},
  1828. {0x20, AC_VERB_SET_AMP_GAIN_MUTE, AMP_IN_MUTE(4)},
  1829. {0x20, AC_VERB_SET_AMP_GAIN_MUTE, AMP_IN_MUTE(5)},
  1830. {0x20, AC_VERB_SET_AMP_GAIN_MUTE, AMP_IN_MUTE(6)},
  1831. {0x20, AC_VERB_SET_AMP_GAIN_MUTE, AMP_IN_MUTE(7)},
  1832. /* select ADCs - mic */
  1833. {0x0c, AC_VERB_SET_CONNECT_SEL, 0x1},
  1834. {0x0d, AC_VERB_SET_CONNECT_SEL, 0x1},
  1835. {0x0e, AC_VERB_SET_CONNECT_SEL, 0x1},
  1836. /* ADCs; muted */
  1837. {0x08, AC_VERB_SET_AMP_GAIN_MUTE, AMP_OUT_MUTE},
  1838. {0x09, AC_VERB_SET_AMP_GAIN_MUTE, AMP_OUT_MUTE},
  1839. {0x0f, AC_VERB_SET_AMP_GAIN_MUTE, AMP_OUT_MUTE},
  1840. { }
  1841. };
  1842. static void ad1988_laptop_unsol_event(struct hda_codec *codec, unsigned int res)
  1843. {
  1844. if ((res >> 26) != AD1988_HP_EVENT)
  1845. return;
  1846. if (snd_hda_codec_read(codec, 0x11, 0, AC_VERB_GET_PIN_SENSE, 0) & (1 << 31))
  1847. snd_hda_sequence_write(codec, ad1988_laptop_hp_on);
  1848. else
  1849. snd_hda_sequence_write(codec, ad1988_laptop_hp_off);
  1850. }
  1851. /*
  1852. * Automatic parse of I/O pins from the BIOS configuration
  1853. */
  1854. #define NUM_CONTROL_ALLOC 32
  1855. #define NUM_VERB_ALLOC 32
  1856. enum {
  1857. AD_CTL_WIDGET_VOL,
  1858. AD_CTL_WIDGET_MUTE,
  1859. AD_CTL_BIND_MUTE,
  1860. };
  1861. static struct snd_kcontrol_new ad1988_control_templates[] = {
  1862. HDA_CODEC_VOLUME(NULL, 0, 0, 0),
  1863. HDA_CODEC_MUTE(NULL, 0, 0, 0),
  1864. HDA_BIND_MUTE(NULL, 0, 0, 0),
  1865. };
  1866. /* add dynamic controls */
  1867. static int add_control(struct ad198x_spec *spec, int type, const char *name,
  1868. unsigned long val)
  1869. {
  1870. struct snd_kcontrol_new *knew;
  1871. if (spec->num_kctl_used >= spec->num_kctl_alloc) {
  1872. int num = spec->num_kctl_alloc + NUM_CONTROL_ALLOC;
  1873. knew = kcalloc(num + 1, sizeof(*knew), GFP_KERNEL); /* array + terminator */
  1874. if (! knew)
  1875. return -ENOMEM;
  1876. if (spec->kctl_alloc) {
  1877. memcpy(knew, spec->kctl_alloc, sizeof(*knew) * spec->num_kctl_alloc);
  1878. kfree(spec->kctl_alloc);
  1879. }
  1880. spec->kctl_alloc = knew;
  1881. spec->num_kctl_alloc = num;
  1882. }
  1883. knew = &spec->kctl_alloc[spec->num_kctl_used];
  1884. *knew = ad1988_control_templates[type];
  1885. knew->name = kstrdup(name, GFP_KERNEL);
  1886. if (! knew->name)
  1887. return -ENOMEM;
  1888. knew->private_value = val;
  1889. spec->num_kctl_used++;
  1890. return 0;
  1891. }
  1892. #define AD1988_PIN_CD_NID 0x18
  1893. #define AD1988_PIN_BEEP_NID 0x10
  1894. static hda_nid_t ad1988_mixer_nids[8] = {
  1895. /* A B C D E F G H */
  1896. 0x22, 0x2b, 0x2c, 0x29, 0x26, 0x2a, 0x27, 0x28
  1897. };
  1898. static inline hda_nid_t ad1988_idx_to_dac(struct hda_codec *codec, int idx)
  1899. {
  1900. static hda_nid_t idx_to_dac[8] = {
  1901. /* A B C D E F G H */
  1902. 0x04, 0x06, 0x05, 0x04, 0x0a, 0x06, 0x05, 0x0a
  1903. };
  1904. static hda_nid_t idx_to_dac_rev2[8] = {
  1905. /* A B C D E F G H */
  1906. 0x04, 0x05, 0x0a, 0x04, 0x06, 0x05, 0x0a, 0x06
  1907. };
  1908. if (codec->revision_id == AD1988A_REV2)
  1909. return idx_to_dac_rev2[idx];
  1910. else
  1911. return idx_to_dac[idx];
  1912. }
  1913. static hda_nid_t ad1988_boost_nids[8] = {
  1914. 0x38, 0x39, 0x3a, 0x3d, 0x3c, 0x3b, 0, 0
  1915. };
  1916. static int ad1988_pin_idx(hda_nid_t nid)
  1917. {
  1918. static hda_nid_t ad1988_io_pins[8] = {
  1919. 0x11, 0x14, 0x15, 0x12, 0x17, 0x16, 0x24, 0x25
  1920. };
  1921. int i;
  1922. for (i = 0; i < ARRAY_SIZE(ad1988_io_pins); i++)
  1923. if (ad1988_io_pins[i] == nid)
  1924. return i;
  1925. return 0; /* should be -1 */
  1926. }
  1927. static int ad1988_pin_to_loopback_idx(hda_nid_t nid)
  1928. {
  1929. static int loopback_idx[8] = {
  1930. 2, 0, 1, 3, 4, 5, 1, 4
  1931. };
  1932. switch (nid) {
  1933. case AD1988_PIN_CD_NID:
  1934. return 6;
  1935. default:
  1936. return loopback_idx[ad1988_pin_idx(nid)];
  1937. }
  1938. }
  1939. static int ad1988_pin_to_adc_idx(hda_nid_t nid)
  1940. {
  1941. static int adc_idx[8] = {
  1942. 0, 1, 2, 8, 4, 3, 6, 7
  1943. };
  1944. switch (nid) {
  1945. case AD1988_PIN_CD_NID:
  1946. return 5;
  1947. default:
  1948. return adc_idx[ad1988_pin_idx(nid)];
  1949. }
  1950. }
  1951. /* fill in the dac_nids table from the parsed pin configuration */
  1952. static int ad1988_auto_fill_dac_nids(struct hda_codec *codec,
  1953. const struct auto_pin_cfg *cfg)
  1954. {
  1955. struct ad198x_spec *spec = codec->spec;
  1956. int i, idx;
  1957. spec->multiout.dac_nids = spec->private_dac_nids;
  1958. /* check the pins hardwired to audio widget */
  1959. for (i = 0; i < cfg->line_outs; i++) {
  1960. idx = ad1988_pin_idx(cfg->line_out_pins[i]);
  1961. spec->multiout.dac_nids[i] = ad1988_idx_to_dac(codec, idx);
  1962. }
  1963. spec->multiout.num_dacs = cfg->line_outs;
  1964. return 0;
  1965. }
  1966. /* add playback controls from the parsed DAC table */
  1967. static int ad1988_auto_create_multi_out_ctls(struct ad198x_spec *spec,
  1968. const struct auto_pin_cfg *cfg)
  1969. {
  1970. char name[32];
  1971. static const char *chname[4] = { "Front", "Surround", NULL /*CLFE*/, "Side" };
  1972. hda_nid_t nid;
  1973. int i, err;
  1974. for (i = 0; i < cfg->line_outs; i++) {
  1975. hda_nid_t dac = spec->multiout.dac_nids[i];
  1976. if (! dac)
  1977. continue;
  1978. nid = ad1988_mixer_nids[ad1988_pin_idx(cfg->line_out_pins[i])];
  1979. if (i == 2) {
  1980. /* Center/LFE */
  1981. err = add_control(spec, AD_CTL_WIDGET_VOL,
  1982. "Center Playback Volume",
  1983. HDA_COMPOSE_AMP_VAL(dac, 1, 0, HDA_OUTPUT));
  1984. if (err < 0)
  1985. return err;
  1986. err = add_control(spec, AD_CTL_WIDGET_VOL,
  1987. "LFE Playback Volume",
  1988. HDA_COMPOSE_AMP_VAL(dac, 2, 0, HDA_OUTPUT));
  1989. if (err < 0)
  1990. return err;
  1991. err = add_control(spec, AD_CTL_BIND_MUTE,
  1992. "Center Playback Switch",
  1993. HDA_COMPOSE_AMP_VAL(nid, 1, 2, HDA_INPUT));
  1994. if (err < 0)
  1995. return err;
  1996. err = add_control(spec, AD_CTL_BIND_MUTE,
  1997. "LFE Playback Switch",
  1998. HDA_COMPOSE_AMP_VAL(nid, 2, 2, HDA_INPUT));
  1999. if (err < 0)
  2000. return err;
  2001. } else {
  2002. sprintf(name, "%s Playback Volume", chname[i]);
  2003. err = add_control(spec, AD_CTL_WIDGET_VOL, name,
  2004. HDA_COMPOSE_AMP_VAL(dac, 3, 0, HDA_OUTPUT));
  2005. if (err < 0)
  2006. return err;
  2007. sprintf(name, "%s Playback Switch", chname[i]);
  2008. err = add_control(spec, AD_CTL_BIND_MUTE, name,
  2009. HDA_COMPOSE_AMP_VAL(nid, 3, 2, HDA_INPUT));
  2010. if (err < 0)
  2011. return err;
  2012. }
  2013. }
  2014. return 0;
  2015. }
  2016. /* add playback controls for speaker and HP outputs */
  2017. static int ad1988_auto_create_extra_out(struct hda_codec *codec, hda_nid_t pin,
  2018. const char *pfx)
  2019. {
  2020. struct ad198x_spec *spec = codec->spec;
  2021. hda_nid_t nid;
  2022. int idx, err;
  2023. char name[32];
  2024. if (! pin)
  2025. return 0;
  2026. idx = ad1988_pin_idx(pin);
  2027. nid = ad1988_idx_to_dac(codec, idx);
  2028. /* specify the DAC as the extra output */
  2029. if (! spec->multiout.hp_nid)
  2030. spec->multiout.hp_nid = nid;
  2031. else
  2032. spec->multiout.extra_out_nid[0] = nid;
  2033. /* control HP volume/switch on the output mixer amp */
  2034. sprintf(name, "%s Playback Volume", pfx);
  2035. if ((err = add_control(spec, AD_CTL_WIDGET_VOL, name,
  2036. HDA_COMPOSE_AMP_VAL(nid, 3, 0, HDA_OUTPUT))) < 0)
  2037. return err;
  2038. nid = ad1988_mixer_nids[idx];
  2039. sprintf(name, "%s Playback Switch", pfx);
  2040. if ((err = add_control(spec, AD_CTL_BIND_MUTE, name,
  2041. HDA_COMPOSE_AMP_VAL(nid, 3, 2, HDA_INPUT))) < 0)
  2042. return err;
  2043. return 0;
  2044. }
  2045. /* create input playback/capture controls for the given pin */
  2046. static int new_analog_input(struct ad198x_spec *spec, hda_nid_t pin,
  2047. const char *ctlname, int boost)
  2048. {
  2049. char name[32];
  2050. int err, idx;
  2051. sprintf(name, "%s Playback Volume", ctlname);
  2052. idx = ad1988_pin_to_loopback_idx(pin);
  2053. if ((err = add_control(spec, AD_CTL_WIDGET_VOL, name,
  2054. HDA_COMPOSE_AMP_VAL(0x20, 3, idx, HDA_INPUT))) < 0)
  2055. return err;
  2056. sprintf(name, "%s Playback Switch", ctlname);
  2057. if ((err = add_control(spec, AD_CTL_WIDGET_MUTE, name,
  2058. HDA_COMPOSE_AMP_VAL(0x20, 3, idx, HDA_INPUT))) < 0)
  2059. return err;
  2060. if (boost) {
  2061. hda_nid_t bnid;
  2062. idx = ad1988_pin_idx(pin);
  2063. bnid = ad1988_boost_nids[idx];
  2064. if (bnid) {
  2065. sprintf(name, "%s Boost", ctlname);
  2066. return add_control(spec, AD_CTL_WIDGET_VOL, name,
  2067. HDA_COMPOSE_AMP_VAL(bnid, 3, idx, HDA_OUTPUT));
  2068. }
  2069. }
  2070. return 0;
  2071. }
  2072. /* create playback/capture controls for input pins */
  2073. static int ad1988_auto_create_analog_input_ctls(struct ad198x_spec *spec,
  2074. const struct auto_pin_cfg *cfg)
  2075. {
  2076. struct hda_input_mux *imux = &spec->private_imux;
  2077. int i, err;
  2078. for (i = 0; i < AUTO_PIN_LAST; i++) {
  2079. err = new_analog_input(spec, cfg->input_pins[i],
  2080. auto_pin_cfg_labels[i],
  2081. i <= AUTO_PIN_FRONT_MIC);
  2082. if (err < 0)
  2083. return err;
  2084. imux->items[imux->num_items].label = auto_pin_cfg_labels[i];
  2085. imux->items[imux->num_items].index = ad1988_pin_to_adc_idx(cfg->input_pins[i]);
  2086. imux->num_items++;
  2087. }
  2088. imux->items[imux->num_items].label = "Mix";
  2089. imux->items[imux->num_items].index = 9;
  2090. imux->num_items++;
  2091. if ((err = add_control(spec, AD_CTL_WIDGET_VOL,
  2092. "Analog Mix Playback Volume",
  2093. HDA_COMPOSE_AMP_VAL(0x21, 3, 0x0, HDA_OUTPUT))) < 0)
  2094. return err;
  2095. if ((err = add_control(spec, AD_CTL_WIDGET_MUTE,
  2096. "Analog Mix Playback Switch",
  2097. HDA_COMPOSE_AMP_VAL(0x21, 3, 0x0, HDA_OUTPUT))) < 0)
  2098. return err;
  2099. return 0;
  2100. }
  2101. static void ad1988_auto_set_output_and_unmute(struct hda_codec *codec,
  2102. hda_nid_t nid, int pin_type,
  2103. int dac_idx)
  2104. {
  2105. /* set as output */
  2106. snd_hda_codec_write(codec, nid, 0, AC_VERB_SET_PIN_WIDGET_CONTROL, pin_type);
  2107. snd_hda_codec_write(codec, nid, 0, AC_VERB_SET_AMP_GAIN_MUTE, AMP_OUT_UNMUTE);
  2108. switch (nid) {
  2109. case 0x11: /* port-A - DAC 04 */
  2110. snd_hda_codec_write(codec, 0x37, 0, AC_VERB_SET_CONNECT_SEL, 0x01);
  2111. break;
  2112. case 0x14: /* port-B - DAC 06 */
  2113. snd_hda_codec_write(codec, 0x30, 0, AC_VERB_SET_CONNECT_SEL, 0x02);
  2114. break;
  2115. case 0x15: /* port-C - DAC 05 */
  2116. snd_hda_codec_write(codec, 0x31, 0, AC_VERB_SET_CONNECT_SEL, 0x00);
  2117. break;
  2118. case 0x17: /* port-E - DAC 0a */
  2119. snd_hda_codec_write(codec, 0x32, 0, AC_VERB_SET_CONNECT_SEL, 0x01);
  2120. break;
  2121. case 0x13: /* mono - DAC 04 */
  2122. snd_hda_codec_write(codec, 0x36, 0, AC_VERB_SET_CONNECT_SEL, 0x01);
  2123. break;
  2124. }
  2125. }
  2126. static void ad1988_auto_init_multi_out(struct hda_codec *codec)
  2127. {
  2128. struct ad198x_spec *spec = codec->spec;
  2129. int i;
  2130. for (i = 0; i < spec->autocfg.line_outs; i++) {
  2131. hda_nid_t nid = spec->autocfg.line_out_pins[i];
  2132. ad1988_auto_set_output_and_unmute(codec, nid, PIN_OUT, i);
  2133. }
  2134. }
  2135. static void ad1988_auto_init_extra_out(struct hda_codec *codec)
  2136. {
  2137. struct ad198x_spec *spec = codec->spec;
  2138. hda_nid_t pin;
  2139. pin = spec->autocfg.speaker_pins[0];
  2140. if (pin) /* connect to front */
  2141. ad1988_auto_set_output_and_unmute(codec, pin, PIN_OUT, 0);
  2142. pin = spec->autocfg.hp_pin;
  2143. if (pin) /* connect to front */
  2144. ad1988_auto_set_output_and_unmute(codec, pin, PIN_HP, 0);
  2145. }
  2146. static void ad1988_auto_init_analog_input(struct hda_codec *codec)
  2147. {
  2148. struct ad198x_spec *spec = codec->spec;
  2149. int i, idx;
  2150. for (i = 0; i < AUTO_PIN_LAST; i++) {
  2151. hda_nid_t nid = spec->autocfg.input_pins[i];
  2152. if (! nid)
  2153. continue;
  2154. switch (nid) {
  2155. case 0x15: /* port-C */
  2156. snd_hda_codec_write(codec, 0x33, 0, AC_VERB_SET_CONNECT_SEL, 0x0);
  2157. break;
  2158. case 0x17: /* port-E */
  2159. snd_hda_codec_write(codec, 0x34, 0, AC_VERB_SET_CONNECT_SEL, 0x0);
  2160. break;
  2161. }
  2162. snd_hda_codec_write(codec, nid, 0, AC_VERB_SET_PIN_WIDGET_CONTROL,
  2163. i <= AUTO_PIN_FRONT_MIC ? PIN_VREF80 : PIN_IN);
  2164. if (nid != AD1988_PIN_CD_NID)
  2165. snd_hda_codec_write(codec, nid, 0, AC_VERB_SET_AMP_GAIN_MUTE,
  2166. AMP_OUT_MUTE);
  2167. idx = ad1988_pin_idx(nid);
  2168. if (ad1988_boost_nids[idx])
  2169. snd_hda_codec_write(codec, ad1988_boost_nids[idx], 0,
  2170. AC_VERB_SET_AMP_GAIN_MUTE,
  2171. AMP_OUT_ZERO);
  2172. }
  2173. }
  2174. /* parse the BIOS configuration and set up the alc_spec */
  2175. /* return 1 if successful, 0 if the proper config is not found, or a negative error code */
  2176. static int ad1988_parse_auto_config(struct hda_codec *codec)
  2177. {
  2178. struct ad198x_spec *spec = codec->spec;
  2179. int err;
  2180. if ((err = snd_hda_parse_pin_def_config(codec, &spec->autocfg, NULL)) < 0)
  2181. return err;
  2182. if ((err = ad1988_auto_fill_dac_nids(codec, &spec->autocfg)) < 0)
  2183. return err;
  2184. if (! spec->autocfg.line_outs)
  2185. return 0; /* can't find valid BIOS pin config */
  2186. if ((err = ad1988_auto_create_multi_out_ctls(spec, &spec->autocfg)) < 0 ||
  2187. (err = ad1988_auto_create_extra_out(codec,
  2188. spec->autocfg.speaker_pins[0],
  2189. "Speaker")) < 0 ||
  2190. (err = ad1988_auto_create_extra_out(codec, spec->autocfg.hp_pin,
  2191. "Headphone")) < 0 ||
  2192. (err = ad1988_auto_create_analog_input_ctls(spec, &spec->autocfg)) < 0)
  2193. return err;
  2194. spec->multiout.max_channels = spec->multiout.num_dacs * 2;
  2195. if (spec->autocfg.dig_out_pin)
  2196. spec->multiout.dig_out_nid = AD1988_SPDIF_OUT;
  2197. if (spec->autocfg.dig_in_pin)
  2198. spec->dig_in_nid = AD1988_SPDIF_IN;
  2199. if (spec->kctl_alloc)
  2200. spec->mixers[spec->num_mixers++] = spec->kctl_alloc;
  2201. spec->init_verbs[spec->num_init_verbs++] = ad1988_6stack_init_verbs;
  2202. spec->input_mux = &spec->private_imux;
  2203. return 1;
  2204. }
  2205. /* init callback for auto-configuration model -- overriding the default init */
  2206. static int ad1988_auto_init(struct hda_codec *codec)
  2207. {
  2208. ad198x_init(codec);
  2209. ad1988_auto_init_multi_out(codec);
  2210. ad1988_auto_init_extra_out(codec);
  2211. ad1988_auto_init_analog_input(codec);
  2212. return 0;
  2213. }
  2214. /*
  2215. */
  2216. static struct hda_board_config ad1988_cfg_tbl[] = {
  2217. { .modelname = "6stack", .config = AD1988_6STACK },
  2218. { .modelname = "6stack-dig", .config = AD1988_6STACK_DIG },
  2219. { .modelname = "3stack", .config = AD1988_3STACK },
  2220. { .modelname = "3stack-dig", .config = AD1988_3STACK_DIG },
  2221. { .modelname = "laptop", .config = AD1988_LAPTOP },
  2222. { .modelname = "laptop-dig", .config = AD1988_LAPTOP_DIG },
  2223. { .modelname = "auto", .config = AD1988_AUTO },
  2224. {}
  2225. };
  2226. static int patch_ad1988(struct hda_codec *codec)
  2227. {
  2228. struct ad198x_spec *spec;
  2229. int board_config;
  2230. spec = kzalloc(sizeof(*spec), GFP_KERNEL);
  2231. if (spec == NULL)
  2232. return -ENOMEM;
  2233. mutex_init(&spec->amp_mutex);
  2234. codec->spec = spec;
  2235. if (codec->revision_id == AD1988A_REV2)
  2236. snd_printk(KERN_INFO "patch_analog: AD1988A rev.2 is detected, enable workarounds\n");
  2237. board_config = snd_hda_check_board_config(codec, ad1988_cfg_tbl);
  2238. if (board_config < 0 || board_config >= AD1988_MODEL_LAST) {
  2239. printk(KERN_INFO "hda_codec: Unknown model for AD1988, trying auto-probe from BIOS...\n");
  2240. board_config = AD1988_AUTO;
  2241. }
  2242. if (board_config == AD1988_AUTO) {
  2243. /* automatic parse from the BIOS config */
  2244. int err = ad1988_parse_auto_config(codec);
  2245. if (err < 0) {
  2246. ad198x_free(codec);
  2247. return err;
  2248. } else if (! err) {
  2249. printk(KERN_INFO "hda_codec: Cannot set up configuration from BIOS. Using 6-stack mode...\n");
  2250. board_config = AD1988_6STACK;
  2251. }
  2252. }
  2253. switch (board_config) {
  2254. case AD1988_6STACK:
  2255. case AD1988_6STACK_DIG:
  2256. spec->multiout.max_channels = 8;
  2257. spec->multiout.num_dacs = 4;
  2258. if (codec->revision_id == AD1988A_REV2)
  2259. spec->multiout.dac_nids = ad1988_6stack_dac_nids_rev2;
  2260. else
  2261. spec->multiout.dac_nids = ad1988_6stack_dac_nids;
  2262. spec->input_mux = &ad1988_6stack_capture_source;
  2263. spec->num_mixers = 2;
  2264. if (codec->revision_id == AD1988A_REV2)
  2265. spec->mixers[0] = ad1988_6stack_mixers1_rev2;
  2266. else
  2267. spec->mixers[0] = ad1988_6stack_mixers1;
  2268. spec->mixers[1] = ad1988_6stack_mixers2;
  2269. spec->num_init_verbs = 1;
  2270. spec->init_verbs[0] = ad1988_6stack_init_verbs;
  2271. if (board_config == AD1988_6STACK_DIG) {
  2272. spec->multiout.dig_out_nid = AD1988_SPDIF_OUT;
  2273. spec->dig_in_nid = AD1988_SPDIF_IN;
  2274. }
  2275. break;
  2276. case AD1988_3STACK:
  2277. case AD1988_3STACK_DIG:
  2278. spec->multiout.max_channels = 6;
  2279. spec->multiout.num_dacs = 3;
  2280. if (codec->revision_id == AD1988A_REV2)
  2281. spec->multiout.dac_nids = ad1988_3stack_dac_nids_rev2;
  2282. else
  2283. spec->multiout.dac_nids = ad1988_3stack_dac_nids;
  2284. spec->input_mux = &ad1988_6stack_capture_source;
  2285. spec->channel_mode = ad1988_3stack_modes;
  2286. spec->num_channel_mode = ARRAY_SIZE(ad1988_3stack_modes);
  2287. spec->num_mixers = 2;
  2288. if (codec->revision_id == AD1988A_REV2)
  2289. spec->mixers[0] = ad1988_3stack_mixers1_rev2;
  2290. else
  2291. spec->mixers[0] = ad1988_3stack_mixers1;
  2292. spec->mixers[1] = ad1988_3stack_mixers2;
  2293. spec->num_init_verbs = 1;
  2294. spec->init_verbs[0] = ad1988_3stack_init_verbs;
  2295. if (board_config == AD1988_3STACK_DIG)
  2296. spec->multiout.dig_out_nid = AD1988_SPDIF_OUT;
  2297. break;
  2298. case AD1988_LAPTOP:
  2299. case AD1988_LAPTOP_DIG:
  2300. spec->multiout.max_channels = 2;
  2301. spec->multiout.num_dacs = 1;
  2302. spec->multiout.dac_nids = ad1988_3stack_dac_nids;
  2303. spec->input_mux = &ad1988_laptop_capture_source;
  2304. spec->num_mixers = 1;
  2305. spec->mixers[0] = ad1988_laptop_mixers;
  2306. spec->num_init_verbs = 1;
  2307. spec->init_verbs[0] = ad1988_laptop_init_verbs;
  2308. if (board_config == AD1988_LAPTOP_DIG)
  2309. spec->multiout.dig_out_nid = AD1988_SPDIF_OUT;
  2310. break;
  2311. }
  2312. spec->num_adc_nids = ARRAY_SIZE(ad1988_adc_nids);
  2313. spec->adc_nids = ad1988_adc_nids;
  2314. spec->capsrc_nids = ad1988_capsrc_nids;
  2315. spec->mixers[spec->num_mixers++] = ad1988_capture_mixers;
  2316. spec->init_verbs[spec->num_init_verbs++] = ad1988_capture_init_verbs;
  2317. if (spec->multiout.dig_out_nid) {
  2318. spec->mixers[spec->num_mixers++] = ad1988_spdif_out_mixers;
  2319. spec->init_verbs[spec->num_init_verbs++] = ad1988_spdif_init_verbs;
  2320. }
  2321. if (spec->dig_in_nid)
  2322. spec->mixers[spec->num_mixers++] = ad1988_spdif_in_mixers;
  2323. codec->patch_ops = ad198x_patch_ops;
  2324. switch (board_config) {
  2325. case AD1988_AUTO:
  2326. codec->patch_ops.init = ad1988_auto_init;
  2327. break;
  2328. case AD1988_LAPTOP:
  2329. case AD1988_LAPTOP_DIG:
  2330. codec->patch_ops.unsol_event = ad1988_laptop_unsol_event;
  2331. break;
  2332. }
  2333. return 0;
  2334. }
  2335. /*
  2336. * patch entries
  2337. */
  2338. struct hda_codec_preset snd_hda_preset_analog[] = {
  2339. { .id = 0x11d41981, .name = "AD1981", .patch = patch_ad1981 },
  2340. { .id = 0x11d41983, .name = "AD1983", .patch = patch_ad1983 },
  2341. { .id = 0x11d41986, .name = "AD1986A", .patch = patch_ad1986a },
  2342. { .id = 0x11d41988, .name = "AD1988", .patch = patch_ad1988 },
  2343. {} /* terminator */
  2344. };