xonar_pcm179x.c 23 KB

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  1. /*
  2. * card driver for models with PCM1796 DACs (Xonar D2/D2X/HDAV1.3/ST/STX)
  3. *
  4. * Copyright (c) Clemens Ladisch <clemens@ladisch.de>
  5. *
  6. *
  7. * This driver is free software; you can redistribute it and/or modify
  8. * it under the terms of the GNU General Public License, version 2.
  9. *
  10. * This driver is distributed in the hope that it will be useful,
  11. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  12. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  13. * GNU General Public License for more details.
  14. *
  15. * You should have received a copy of the GNU General Public License
  16. * along with this driver; if not, see <http://www.gnu.org/licenses/>.
  17. */
  18. /*
  19. * Xonar D2/D2X
  20. * ------------
  21. *
  22. * CMI8788:
  23. *
  24. * SPI 0 -> 1st PCM1796 (front)
  25. * SPI 1 -> 2nd PCM1796 (surround)
  26. * SPI 2 -> 3rd PCM1796 (center/LFE)
  27. * SPI 4 -> 4th PCM1796 (back)
  28. *
  29. * GPIO 2 -> M0 of CS5381
  30. * GPIO 3 -> M1 of CS5381
  31. * GPIO 5 <- external power present (D2X only)
  32. * GPIO 7 -> ALT
  33. * GPIO 8 -> enable output to speakers
  34. *
  35. * CM9780:
  36. *
  37. * GPO 0 -> route line-in (0) or AC97 output (1) to CS5381 input
  38. */
  39. /*
  40. * Xonar HDAV1.3 (Deluxe)
  41. * ----------------------
  42. *
  43. * CMI8788:
  44. *
  45. * I²C <-> PCM1796 (front)
  46. *
  47. * GPI 0 <- external power present
  48. *
  49. * GPIO 0 -> enable output to speakers
  50. * GPIO 2 -> M0 of CS5381
  51. * GPIO 3 -> M1 of CS5381
  52. * GPIO 8 -> route input jack to line-in (0) or mic-in (1)
  53. *
  54. * TXD -> HDMI controller
  55. * RXD <- HDMI controller
  56. *
  57. * PCM1796 front: AD1,0 <- 0,0
  58. *
  59. * CM9780:
  60. *
  61. * GPO 0 -> route line-in (0) or AC97 output (1) to CS5381 input
  62. *
  63. * no daughterboard
  64. * ----------------
  65. *
  66. * GPIO 4 <- 1
  67. *
  68. * H6 daughterboard
  69. * ----------------
  70. *
  71. * GPIO 4 <- 0
  72. * GPIO 5 <- 0
  73. *
  74. * I²C <-> PCM1796 (surround)
  75. * <-> PCM1796 (center/LFE)
  76. * <-> PCM1796 (back)
  77. *
  78. * PCM1796 surround: AD1,0 <- 0,1
  79. * PCM1796 center/LFE: AD1,0 <- 1,0
  80. * PCM1796 back: AD1,0 <- 1,1
  81. *
  82. * unknown daughterboard
  83. * ---------------------
  84. *
  85. * GPIO 4 <- 0
  86. * GPIO 5 <- 1
  87. *
  88. * I²C <-> CS4362A (surround, center/LFE, back)
  89. *
  90. * CS4362A: AD0 <- 0
  91. */
  92. /*
  93. * Xonar Essence ST (Deluxe)/STX
  94. * -----------------------------
  95. *
  96. * CMI8788:
  97. *
  98. * I²C <-> PCM1792A
  99. * <-> CS2000 (ST only)
  100. *
  101. * ADC1 MCLK -> REF_CLK of CS2000 (ST only)
  102. *
  103. * GPI 0 <- external power present (STX only)
  104. *
  105. * GPIO 0 -> enable output to speakers
  106. * GPIO 1 -> route HP to front panel (0) or rear jack (1)
  107. * GPIO 2 -> M0 of CS5381
  108. * GPIO 3 -> M1 of CS5381
  109. * GPIO 7 -> route output to speaker jacks (0) or HP (1)
  110. * GPIO 8 -> route input jack to line-in (0) or mic-in (1)
  111. *
  112. * PCM1792A:
  113. *
  114. * AD1,0 <- 0,0
  115. * SCK <- CLK_OUT of CS2000 (ST only)
  116. *
  117. * CS2000:
  118. *
  119. * AD0 <- 0
  120. *
  121. * CM9780:
  122. *
  123. * GPO 0 -> route line-in (0) or AC97 output (1) to CS5381 input
  124. *
  125. * H6 daughterboard
  126. * ----------------
  127. *
  128. * GPIO 4 <- 0
  129. * GPIO 5 <- 0
  130. */
  131. #include <linux/pci.h>
  132. #include <linux/delay.h>
  133. #include <linux/mutex.h>
  134. #include <sound/ac97_codec.h>
  135. #include <sound/control.h>
  136. #include <sound/core.h>
  137. #include <sound/pcm.h>
  138. #include <sound/pcm_params.h>
  139. #include <sound/tlv.h>
  140. #include "xonar.h"
  141. #include "cm9780.h"
  142. #include "pcm1796.h"
  143. #include "cs2000.h"
  144. #define GPIO_D2X_EXT_POWER 0x0020
  145. #define GPIO_D2_ALT 0x0080
  146. #define GPIO_D2_OUTPUT_ENABLE 0x0100
  147. #define GPI_EXT_POWER 0x01
  148. #define GPIO_INPUT_ROUTE 0x0100
  149. #define GPIO_HDAV_OUTPUT_ENABLE 0x0001
  150. #define GPIO_DB_MASK 0x0030
  151. #define GPIO_DB_H6 0x0000
  152. #define GPIO_ST_OUTPUT_ENABLE 0x0001
  153. #define GPIO_ST_HP_REAR 0x0002
  154. #define GPIO_ST_HP 0x0080
  155. #define I2C_DEVICE_PCM1796(i) (0x98 + ((i) << 1)) /* 10011, ii, /W=0 */
  156. #define I2C_DEVICE_CS2000 0x9c /* 100111, 0, /W=0 */
  157. #define PCM1796_REG_BASE 16
  158. struct xonar_pcm179x {
  159. struct xonar_generic generic;
  160. unsigned int dacs;
  161. u8 pcm1796_regs[4][5];
  162. bool hp_active;
  163. s8 hp_gain_offset;
  164. u8 cs2000_fun_cfg_1;
  165. };
  166. struct xonar_hdav {
  167. struct xonar_pcm179x pcm179x;
  168. struct xonar_hdmi hdmi;
  169. };
  170. static inline void pcm1796_write_spi(struct oxygen *chip, unsigned int codec,
  171. u8 reg, u8 value)
  172. {
  173. /* maps ALSA channel pair number to SPI output */
  174. static const u8 codec_map[4] = {
  175. 0, 1, 2, 4
  176. };
  177. oxygen_write_spi(chip, OXYGEN_SPI_TRIGGER |
  178. OXYGEN_SPI_DATA_LENGTH_2 |
  179. OXYGEN_SPI_CLOCK_160 |
  180. (codec_map[codec] << OXYGEN_SPI_CODEC_SHIFT) |
  181. OXYGEN_SPI_CEN_LATCH_CLOCK_HI,
  182. (reg << 8) | value);
  183. }
  184. static inline void pcm1796_write_i2c(struct oxygen *chip, unsigned int codec,
  185. u8 reg, u8 value)
  186. {
  187. oxygen_write_i2c(chip, I2C_DEVICE_PCM1796(codec), reg, value);
  188. }
  189. static void pcm1796_write(struct oxygen *chip, unsigned int codec,
  190. u8 reg, u8 value)
  191. {
  192. struct xonar_pcm179x *data = chip->model_data;
  193. if ((chip->model.function_flags & OXYGEN_FUNCTION_2WIRE_SPI_MASK) ==
  194. OXYGEN_FUNCTION_SPI)
  195. pcm1796_write_spi(chip, codec, reg, value);
  196. else
  197. pcm1796_write_i2c(chip, codec, reg, value);
  198. if ((unsigned int)(reg - PCM1796_REG_BASE)
  199. < ARRAY_SIZE(data->pcm1796_regs[codec]))
  200. data->pcm1796_regs[codec][reg - PCM1796_REG_BASE] = value;
  201. }
  202. static void pcm1796_write_cached(struct oxygen *chip, unsigned int codec,
  203. u8 reg, u8 value)
  204. {
  205. struct xonar_pcm179x *data = chip->model_data;
  206. if (value != data->pcm1796_regs[codec][reg - PCM1796_REG_BASE])
  207. pcm1796_write(chip, codec, reg, value);
  208. }
  209. static void cs2000_write(struct oxygen *chip, u8 reg, u8 value)
  210. {
  211. struct xonar_pcm179x *data = chip->model_data;
  212. oxygen_write_i2c(chip, I2C_DEVICE_CS2000, reg, value);
  213. if (reg == CS2000_FUN_CFG_1)
  214. data->cs2000_fun_cfg_1 = value;
  215. }
  216. static void cs2000_write_cached(struct oxygen *chip, u8 reg, u8 value)
  217. {
  218. struct xonar_pcm179x *data = chip->model_data;
  219. if (reg != CS2000_FUN_CFG_1 ||
  220. value != data->cs2000_fun_cfg_1)
  221. cs2000_write(chip, reg, value);
  222. }
  223. static void pcm1796_registers_init(struct oxygen *chip)
  224. {
  225. struct xonar_pcm179x *data = chip->model_data;
  226. unsigned int i;
  227. s8 gain_offset;
  228. gain_offset = data->hp_active ? data->hp_gain_offset : 0;
  229. for (i = 0; i < data->dacs; ++i) {
  230. /* set ATLD before ATL/ATR */
  231. pcm1796_write(chip, i, 18,
  232. data->pcm1796_regs[0][18 - PCM1796_REG_BASE]);
  233. pcm1796_write(chip, i, 16, chip->dac_volume[i * 2]
  234. + gain_offset);
  235. pcm1796_write(chip, i, 17, chip->dac_volume[i * 2 + 1]
  236. + gain_offset);
  237. pcm1796_write(chip, i, 19, PCM1796_FLT_SHARP | PCM1796_ATS_1);
  238. pcm1796_write(chip, i, 20,
  239. data->pcm1796_regs[0][20 - PCM1796_REG_BASE]);
  240. pcm1796_write(chip, i, 21, 0);
  241. }
  242. }
  243. static void pcm1796_init(struct oxygen *chip)
  244. {
  245. struct xonar_pcm179x *data = chip->model_data;
  246. data->pcm1796_regs[0][18 - PCM1796_REG_BASE] = PCM1796_MUTE |
  247. PCM1796_DMF_DISABLED | PCM1796_FMT_24_LJUST | PCM1796_ATLD;
  248. data->pcm1796_regs[0][20 - PCM1796_REG_BASE] = PCM1796_OS_64;
  249. pcm1796_registers_init(chip);
  250. }
  251. static void xonar_d2_init(struct oxygen *chip)
  252. {
  253. struct xonar_pcm179x *data = chip->model_data;
  254. data->generic.anti_pop_delay = 300;
  255. data->generic.output_enable_bit = GPIO_D2_OUTPUT_ENABLE;
  256. data->dacs = 4;
  257. pcm1796_init(chip);
  258. oxygen_set_bits16(chip, OXYGEN_GPIO_CONTROL, GPIO_D2_ALT);
  259. oxygen_clear_bits16(chip, OXYGEN_GPIO_DATA, GPIO_D2_ALT);
  260. oxygen_ac97_set_bits(chip, 0, CM9780_JACK, CM9780_FMIC2MIC);
  261. xonar_init_cs53x1(chip);
  262. xonar_enable_output(chip);
  263. snd_component_add(chip->card, "PCM1796");
  264. snd_component_add(chip->card, "CS5381");
  265. }
  266. static void xonar_d2x_init(struct oxygen *chip)
  267. {
  268. struct xonar_pcm179x *data = chip->model_data;
  269. data->generic.ext_power_reg = OXYGEN_GPIO_DATA;
  270. data->generic.ext_power_int_reg = OXYGEN_GPIO_INTERRUPT_MASK;
  271. data->generic.ext_power_bit = GPIO_D2X_EXT_POWER;
  272. oxygen_clear_bits16(chip, OXYGEN_GPIO_CONTROL, GPIO_D2X_EXT_POWER);
  273. xonar_init_ext_power(chip);
  274. xonar_d2_init(chip);
  275. }
  276. static void xonar_hdav_init(struct oxygen *chip)
  277. {
  278. struct xonar_hdav *data = chip->model_data;
  279. oxygen_write16(chip, OXYGEN_2WIRE_BUS_STATUS,
  280. OXYGEN_2WIRE_LENGTH_8 |
  281. OXYGEN_2WIRE_INTERRUPT_MASK |
  282. OXYGEN_2WIRE_SPEED_FAST);
  283. data->pcm179x.generic.anti_pop_delay = 100;
  284. data->pcm179x.generic.output_enable_bit = GPIO_HDAV_OUTPUT_ENABLE;
  285. data->pcm179x.generic.ext_power_reg = OXYGEN_GPI_DATA;
  286. data->pcm179x.generic.ext_power_int_reg = OXYGEN_GPI_INTERRUPT_MASK;
  287. data->pcm179x.generic.ext_power_bit = GPI_EXT_POWER;
  288. data->pcm179x.dacs = chip->model.private_data ? 4 : 1;
  289. pcm1796_init(chip);
  290. oxygen_set_bits16(chip, OXYGEN_GPIO_CONTROL, GPIO_INPUT_ROUTE);
  291. oxygen_clear_bits16(chip, OXYGEN_GPIO_DATA, GPIO_INPUT_ROUTE);
  292. xonar_init_cs53x1(chip);
  293. xonar_init_ext_power(chip);
  294. xonar_hdmi_init(chip, &data->hdmi);
  295. xonar_enable_output(chip);
  296. snd_component_add(chip->card, "PCM1796");
  297. snd_component_add(chip->card, "CS5381");
  298. }
  299. static void xonar_st_init_i2c(struct oxygen *chip)
  300. {
  301. oxygen_write16(chip, OXYGEN_2WIRE_BUS_STATUS,
  302. OXYGEN_2WIRE_LENGTH_8 |
  303. OXYGEN_2WIRE_INTERRUPT_MASK |
  304. OXYGEN_2WIRE_SPEED_FAST);
  305. }
  306. static void xonar_st_init_common(struct oxygen *chip)
  307. {
  308. struct xonar_pcm179x *data = chip->model_data;
  309. data->generic.anti_pop_delay = 100;
  310. data->generic.output_enable_bit = GPIO_ST_OUTPUT_ENABLE;
  311. data->dacs = chip->model.private_data ? 4 : 1;
  312. data->hp_gain_offset = 2*-18;
  313. pcm1796_init(chip);
  314. oxygen_set_bits16(chip, OXYGEN_GPIO_CONTROL,
  315. GPIO_INPUT_ROUTE | GPIO_ST_HP_REAR | GPIO_ST_HP);
  316. oxygen_clear_bits16(chip, OXYGEN_GPIO_DATA,
  317. GPIO_INPUT_ROUTE | GPIO_ST_HP_REAR | GPIO_ST_HP);
  318. xonar_init_cs53x1(chip);
  319. xonar_enable_output(chip);
  320. snd_component_add(chip->card, "PCM1792A");
  321. snd_component_add(chip->card, "CS5381");
  322. }
  323. static void cs2000_registers_init(struct oxygen *chip)
  324. {
  325. struct xonar_pcm179x *data = chip->model_data;
  326. cs2000_write(chip, CS2000_GLOBAL_CFG, CS2000_FREEZE);
  327. cs2000_write(chip, CS2000_DEV_CTRL, 0);
  328. cs2000_write(chip, CS2000_DEV_CFG_1,
  329. CS2000_R_MOD_SEL_1 |
  330. (0 << CS2000_R_SEL_SHIFT) |
  331. CS2000_AUX_OUT_SRC_REF_CLK |
  332. CS2000_EN_DEV_CFG_1);
  333. cs2000_write(chip, CS2000_DEV_CFG_2,
  334. (0 << CS2000_LOCK_CLK_SHIFT) |
  335. CS2000_FRAC_N_SRC_STATIC);
  336. cs2000_write(chip, CS2000_RATIO_0 + 0, 0x00); /* 1.0 */
  337. cs2000_write(chip, CS2000_RATIO_0 + 1, 0x10);
  338. cs2000_write(chip, CS2000_RATIO_0 + 2, 0x00);
  339. cs2000_write(chip, CS2000_RATIO_0 + 3, 0x00);
  340. cs2000_write(chip, CS2000_FUN_CFG_1, data->cs2000_fun_cfg_1);
  341. cs2000_write(chip, CS2000_FUN_CFG_2, 0);
  342. cs2000_write(chip, CS2000_GLOBAL_CFG, CS2000_EN_DEV_CFG_2);
  343. }
  344. static void xonar_st_init(struct oxygen *chip)
  345. {
  346. struct xonar_pcm179x *data = chip->model_data;
  347. data->cs2000_fun_cfg_1 = CS2000_REF_CLK_DIV_1;
  348. oxygen_write16(chip, OXYGEN_I2S_A_FORMAT,
  349. OXYGEN_RATE_48000 | OXYGEN_I2S_FORMAT_I2S |
  350. OXYGEN_I2S_MCLK_128 | OXYGEN_I2S_BITS_16 |
  351. OXYGEN_I2S_MASTER | OXYGEN_I2S_BCLK_64);
  352. xonar_st_init_i2c(chip);
  353. cs2000_registers_init(chip);
  354. xonar_st_init_common(chip);
  355. snd_component_add(chip->card, "CS2000");
  356. }
  357. static void xonar_stx_init(struct oxygen *chip)
  358. {
  359. struct xonar_pcm179x *data = chip->model_data;
  360. xonar_st_init_i2c(chip);
  361. data->generic.ext_power_reg = OXYGEN_GPI_DATA;
  362. data->generic.ext_power_int_reg = OXYGEN_GPI_INTERRUPT_MASK;
  363. data->generic.ext_power_bit = GPI_EXT_POWER;
  364. xonar_init_ext_power(chip);
  365. xonar_st_init_common(chip);
  366. }
  367. static void xonar_d2_cleanup(struct oxygen *chip)
  368. {
  369. xonar_disable_output(chip);
  370. }
  371. static void xonar_hdav_cleanup(struct oxygen *chip)
  372. {
  373. xonar_hdmi_cleanup(chip);
  374. xonar_disable_output(chip);
  375. msleep(2);
  376. }
  377. static void xonar_st_cleanup(struct oxygen *chip)
  378. {
  379. xonar_disable_output(chip);
  380. }
  381. static void xonar_d2_suspend(struct oxygen *chip)
  382. {
  383. xonar_d2_cleanup(chip);
  384. }
  385. static void xonar_hdav_suspend(struct oxygen *chip)
  386. {
  387. xonar_hdav_cleanup(chip);
  388. }
  389. static void xonar_st_suspend(struct oxygen *chip)
  390. {
  391. xonar_st_cleanup(chip);
  392. }
  393. static void xonar_d2_resume(struct oxygen *chip)
  394. {
  395. pcm1796_registers_init(chip);
  396. xonar_enable_output(chip);
  397. }
  398. static void xonar_hdav_resume(struct oxygen *chip)
  399. {
  400. struct xonar_hdav *data = chip->model_data;
  401. pcm1796_registers_init(chip);
  402. xonar_hdmi_resume(chip, &data->hdmi);
  403. xonar_enable_output(chip);
  404. }
  405. static void xonar_stx_resume(struct oxygen *chip)
  406. {
  407. pcm1796_registers_init(chip);
  408. xonar_enable_output(chip);
  409. }
  410. static void xonar_st_resume(struct oxygen *chip)
  411. {
  412. cs2000_registers_init(chip);
  413. xonar_stx_resume(chip);
  414. }
  415. static void set_pcm1796_params(struct oxygen *chip,
  416. struct snd_pcm_hw_params *params)
  417. {
  418. struct xonar_pcm179x *data = chip->model_data;
  419. unsigned int i;
  420. u8 reg;
  421. reg = params_rate(params) >= 96000 ? PCM1796_OS_32 : PCM1796_OS_64;
  422. for (i = 0; i < data->dacs; ++i)
  423. pcm1796_write_cached(chip, i, 20, reg);
  424. }
  425. static void update_pcm1796_volume(struct oxygen *chip)
  426. {
  427. struct xonar_pcm179x *data = chip->model_data;
  428. unsigned int i;
  429. s8 gain_offset;
  430. gain_offset = data->hp_active ? data->hp_gain_offset : 0;
  431. for (i = 0; i < data->dacs; ++i) {
  432. pcm1796_write_cached(chip, i, 16, chip->dac_volume[i * 2]
  433. + gain_offset);
  434. pcm1796_write_cached(chip, i, 17, chip->dac_volume[i * 2 + 1]
  435. + gain_offset);
  436. }
  437. }
  438. static void update_pcm1796_mute(struct oxygen *chip)
  439. {
  440. struct xonar_pcm179x *data = chip->model_data;
  441. unsigned int i;
  442. u8 value;
  443. value = PCM1796_DMF_DISABLED | PCM1796_FMT_24_LJUST | PCM1796_ATLD;
  444. if (chip->dac_mute)
  445. value |= PCM1796_MUTE;
  446. for (i = 0; i < data->dacs; ++i)
  447. pcm1796_write_cached(chip, i, 18, value);
  448. }
  449. static void set_cs2000_params(struct oxygen *chip,
  450. struct snd_pcm_hw_params *params)
  451. {
  452. /* XXX Why is the I2S A MCLK half the actual I2S multich MCLK? */
  453. static const u8 rate_mclks[] = {
  454. [OXYGEN_RATE_32000] = OXYGEN_RATE_32000 | OXYGEN_I2S_MCLK_128,
  455. [OXYGEN_RATE_44100] = OXYGEN_RATE_44100 | OXYGEN_I2S_MCLK_128,
  456. [OXYGEN_RATE_48000] = OXYGEN_RATE_48000 | OXYGEN_I2S_MCLK_128,
  457. [OXYGEN_RATE_64000] = OXYGEN_RATE_32000 | OXYGEN_I2S_MCLK_256,
  458. [OXYGEN_RATE_88200] = OXYGEN_RATE_44100 | OXYGEN_I2S_MCLK_256,
  459. [OXYGEN_RATE_96000] = OXYGEN_RATE_48000 | OXYGEN_I2S_MCLK_256,
  460. [OXYGEN_RATE_176400] = OXYGEN_RATE_44100 | OXYGEN_I2S_MCLK_256,
  461. [OXYGEN_RATE_192000] = OXYGEN_RATE_48000 | OXYGEN_I2S_MCLK_256,
  462. };
  463. unsigned int rate_index;
  464. u8 rate_mclk, reg;
  465. rate_index = oxygen_read16(chip, OXYGEN_I2S_MULTICH_FORMAT)
  466. & OXYGEN_I2S_RATE_MASK;
  467. rate_mclk = rate_mclks[rate_index];
  468. oxygen_write16_masked(chip, OXYGEN_I2S_A_FORMAT, rate_mclk,
  469. OXYGEN_I2S_RATE_MASK | OXYGEN_I2S_MCLK_MASK);
  470. if ((rate_mclk & OXYGEN_I2S_MCLK_MASK) <= OXYGEN_I2S_MCLK_128)
  471. reg = CS2000_REF_CLK_DIV_1;
  472. else
  473. reg = CS2000_REF_CLK_DIV_2;
  474. cs2000_write_cached(chip, CS2000_FUN_CFG_1, reg);
  475. }
  476. static void set_st_params(struct oxygen *chip,
  477. struct snd_pcm_hw_params *params)
  478. {
  479. set_cs2000_params(chip, params);
  480. set_pcm1796_params(chip, params);
  481. }
  482. static void set_hdav_params(struct oxygen *chip,
  483. struct snd_pcm_hw_params *params)
  484. {
  485. struct xonar_hdav *data = chip->model_data;
  486. set_pcm1796_params(chip, params);
  487. xonar_set_hdmi_params(chip, &data->hdmi, params);
  488. }
  489. static const struct snd_kcontrol_new alt_switch = {
  490. .iface = SNDRV_CTL_ELEM_IFACE_MIXER,
  491. .name = "Analog Loopback Switch",
  492. .info = snd_ctl_boolean_mono_info,
  493. .get = xonar_gpio_bit_switch_get,
  494. .put = xonar_gpio_bit_switch_put,
  495. .private_value = GPIO_D2_ALT,
  496. };
  497. static int st_output_switch_info(struct snd_kcontrol *ctl,
  498. struct snd_ctl_elem_info *info)
  499. {
  500. static const char *const names[3] = {
  501. "Speakers", "Headphones", "FP Headphones"
  502. };
  503. info->type = SNDRV_CTL_ELEM_TYPE_ENUMERATED;
  504. info->count = 1;
  505. info->value.enumerated.items = 3;
  506. if (info->value.enumerated.item >= 3)
  507. info->value.enumerated.item = 2;
  508. strcpy(info->value.enumerated.name, names[info->value.enumerated.item]);
  509. return 0;
  510. }
  511. static int st_output_switch_get(struct snd_kcontrol *ctl,
  512. struct snd_ctl_elem_value *value)
  513. {
  514. struct oxygen *chip = ctl->private_data;
  515. u16 gpio;
  516. gpio = oxygen_read16(chip, OXYGEN_GPIO_DATA);
  517. if (!(gpio & GPIO_ST_HP))
  518. value->value.enumerated.item[0] = 0;
  519. else if (gpio & GPIO_ST_HP_REAR)
  520. value->value.enumerated.item[0] = 1;
  521. else
  522. value->value.enumerated.item[0] = 2;
  523. return 0;
  524. }
  525. static int st_output_switch_put(struct snd_kcontrol *ctl,
  526. struct snd_ctl_elem_value *value)
  527. {
  528. struct oxygen *chip = ctl->private_data;
  529. struct xonar_pcm179x *data = chip->model_data;
  530. u16 gpio_old, gpio;
  531. mutex_lock(&chip->mutex);
  532. gpio_old = oxygen_read16(chip, OXYGEN_GPIO_DATA);
  533. gpio = gpio_old;
  534. switch (value->value.enumerated.item[0]) {
  535. case 0:
  536. gpio &= ~(GPIO_ST_HP | GPIO_ST_HP_REAR);
  537. break;
  538. case 1:
  539. gpio |= GPIO_ST_HP | GPIO_ST_HP_REAR;
  540. break;
  541. case 2:
  542. gpio = (gpio | GPIO_ST_HP) & ~GPIO_ST_HP_REAR;
  543. break;
  544. }
  545. oxygen_write16(chip, OXYGEN_GPIO_DATA, gpio);
  546. data->hp_active = gpio & GPIO_ST_HP;
  547. update_pcm1796_volume(chip);
  548. mutex_unlock(&chip->mutex);
  549. return gpio != gpio_old;
  550. }
  551. static int st_hp_volume_offset_info(struct snd_kcontrol *ctl,
  552. struct snd_ctl_elem_info *info)
  553. {
  554. static const char *const names[3] = {
  555. "< 64 ohms", "64-300 ohms", "300-600 ohms"
  556. };
  557. info->type = SNDRV_CTL_ELEM_TYPE_ENUMERATED;
  558. info->count = 1;
  559. info->value.enumerated.items = 3;
  560. if (info->value.enumerated.item > 2)
  561. info->value.enumerated.item = 2;
  562. strcpy(info->value.enumerated.name, names[info->value.enumerated.item]);
  563. return 0;
  564. }
  565. static int st_hp_volume_offset_get(struct snd_kcontrol *ctl,
  566. struct snd_ctl_elem_value *value)
  567. {
  568. struct oxygen *chip = ctl->private_data;
  569. struct xonar_pcm179x *data = chip->model_data;
  570. mutex_lock(&chip->mutex);
  571. if (data->hp_gain_offset < 2*-6)
  572. value->value.enumerated.item[0] = 0;
  573. else if (data->hp_gain_offset < 0)
  574. value->value.enumerated.item[0] = 1;
  575. else
  576. value->value.enumerated.item[0] = 2;
  577. mutex_unlock(&chip->mutex);
  578. return 0;
  579. }
  580. static int st_hp_volume_offset_put(struct snd_kcontrol *ctl,
  581. struct snd_ctl_elem_value *value)
  582. {
  583. static const s8 offsets[] = { 2*-18, 2*-6, 0 };
  584. struct oxygen *chip = ctl->private_data;
  585. struct xonar_pcm179x *data = chip->model_data;
  586. s8 offset;
  587. int changed;
  588. if (value->value.enumerated.item[0] > 2)
  589. return -EINVAL;
  590. offset = offsets[value->value.enumerated.item[0]];
  591. mutex_lock(&chip->mutex);
  592. changed = offset != data->hp_gain_offset;
  593. if (changed) {
  594. data->hp_gain_offset = offset;
  595. update_pcm1796_volume(chip);
  596. }
  597. mutex_unlock(&chip->mutex);
  598. return changed;
  599. }
  600. static const struct snd_kcontrol_new st_controls[] = {
  601. {
  602. .iface = SNDRV_CTL_ELEM_IFACE_MIXER,
  603. .name = "Analog Output",
  604. .info = st_output_switch_info,
  605. .get = st_output_switch_get,
  606. .put = st_output_switch_put,
  607. },
  608. {
  609. .iface = SNDRV_CTL_ELEM_IFACE_MIXER,
  610. .name = "Headphones Impedance Playback Enum",
  611. .info = st_hp_volume_offset_info,
  612. .get = st_hp_volume_offset_get,
  613. .put = st_hp_volume_offset_put,
  614. },
  615. };
  616. static void xonar_line_mic_ac97_switch(struct oxygen *chip,
  617. unsigned int reg, unsigned int mute)
  618. {
  619. if (reg == AC97_LINE) {
  620. spin_lock_irq(&chip->reg_lock);
  621. oxygen_write16_masked(chip, OXYGEN_GPIO_DATA,
  622. mute ? GPIO_INPUT_ROUTE : 0,
  623. GPIO_INPUT_ROUTE);
  624. spin_unlock_irq(&chip->reg_lock);
  625. }
  626. }
  627. static const DECLARE_TLV_DB_SCALE(pcm1796_db_scale, -6000, 50, 0);
  628. static int xonar_d2_control_filter(struct snd_kcontrol_new *template)
  629. {
  630. if (!strncmp(template->name, "CD Capture ", 11))
  631. /* CD in is actually connected to the video in pin */
  632. template->private_value ^= AC97_CD ^ AC97_VIDEO;
  633. return 0;
  634. }
  635. static int xonar_st_control_filter(struct snd_kcontrol_new *template)
  636. {
  637. if (!strncmp(template->name, "CD Capture ", 11))
  638. return 1; /* no CD input */
  639. return 0;
  640. }
  641. static int xonar_d2_mixer_init(struct oxygen *chip)
  642. {
  643. return snd_ctl_add(chip->card, snd_ctl_new1(&alt_switch, chip));
  644. }
  645. static int xonar_st_mixer_init(struct oxygen *chip)
  646. {
  647. unsigned int i;
  648. int err;
  649. for (i = 0; i < ARRAY_SIZE(st_controls); ++i) {
  650. err = snd_ctl_add(chip->card,
  651. snd_ctl_new1(&st_controls[i], chip));
  652. if (err < 0)
  653. return err;
  654. }
  655. return 0;
  656. }
  657. static const struct oxygen_model model_xonar_d2 = {
  658. .longname = "Asus Virtuoso 200",
  659. .chip = "AV200",
  660. .init = xonar_d2_init,
  661. .control_filter = xonar_d2_control_filter,
  662. .mixer_init = xonar_d2_mixer_init,
  663. .cleanup = xonar_d2_cleanup,
  664. .suspend = xonar_d2_suspend,
  665. .resume = xonar_d2_resume,
  666. .set_dac_params = set_pcm1796_params,
  667. .set_adc_params = xonar_set_cs53x1_params,
  668. .update_dac_volume = update_pcm1796_volume,
  669. .update_dac_mute = update_pcm1796_mute,
  670. .dac_tlv = pcm1796_db_scale,
  671. .model_data_size = sizeof(struct xonar_pcm179x),
  672. .device_config = PLAYBACK_0_TO_I2S |
  673. PLAYBACK_1_TO_SPDIF |
  674. CAPTURE_0_FROM_I2S_2 |
  675. CAPTURE_1_FROM_SPDIF |
  676. MIDI_OUTPUT |
  677. MIDI_INPUT,
  678. .dac_channels = 8,
  679. .dac_volume_min = 255 - 2*60,
  680. .dac_volume_max = 255,
  681. .misc_flags = OXYGEN_MISC_MIDI,
  682. .function_flags = OXYGEN_FUNCTION_SPI |
  683. OXYGEN_FUNCTION_ENABLE_SPI_4_5,
  684. .dac_i2s_format = OXYGEN_I2S_FORMAT_LJUST,
  685. .adc_i2s_format = OXYGEN_I2S_FORMAT_LJUST,
  686. };
  687. static const struct oxygen_model model_xonar_hdav = {
  688. .longname = "Asus Virtuoso 200",
  689. .chip = "AV200",
  690. .init = xonar_hdav_init,
  691. .cleanup = xonar_hdav_cleanup,
  692. .suspend = xonar_hdav_suspend,
  693. .resume = xonar_hdav_resume,
  694. .pcm_hardware_filter = xonar_hdmi_pcm_hardware_filter,
  695. .set_dac_params = set_hdav_params,
  696. .set_adc_params = xonar_set_cs53x1_params,
  697. .update_dac_volume = update_pcm1796_volume,
  698. .update_dac_mute = update_pcm1796_mute,
  699. .uart_input = xonar_hdmi_uart_input,
  700. .ac97_switch = xonar_line_mic_ac97_switch,
  701. .dac_tlv = pcm1796_db_scale,
  702. .model_data_size = sizeof(struct xonar_hdav),
  703. .device_config = PLAYBACK_0_TO_I2S |
  704. PLAYBACK_1_TO_SPDIF |
  705. CAPTURE_0_FROM_I2S_2 |
  706. CAPTURE_1_FROM_SPDIF,
  707. .dac_channels = 8,
  708. .dac_volume_min = 255 - 2*60,
  709. .dac_volume_max = 255,
  710. .misc_flags = OXYGEN_MISC_MIDI,
  711. .function_flags = OXYGEN_FUNCTION_2WIRE,
  712. .dac_i2s_format = OXYGEN_I2S_FORMAT_LJUST,
  713. .adc_i2s_format = OXYGEN_I2S_FORMAT_LJUST,
  714. };
  715. static const struct oxygen_model model_xonar_st = {
  716. .longname = "Asus Virtuoso 100",
  717. .chip = "AV200",
  718. .init = xonar_st_init,
  719. .control_filter = xonar_st_control_filter,
  720. .mixer_init = xonar_st_mixer_init,
  721. .cleanup = xonar_st_cleanup,
  722. .suspend = xonar_st_suspend,
  723. .resume = xonar_st_resume,
  724. .set_dac_params = set_st_params,
  725. .set_adc_params = xonar_set_cs53x1_params,
  726. .update_dac_volume = update_pcm1796_volume,
  727. .update_dac_mute = update_pcm1796_mute,
  728. .ac97_switch = xonar_line_mic_ac97_switch,
  729. .dac_tlv = pcm1796_db_scale,
  730. .model_data_size = sizeof(struct xonar_pcm179x),
  731. .device_config = PLAYBACK_0_TO_I2S |
  732. PLAYBACK_1_TO_SPDIF |
  733. CAPTURE_0_FROM_I2S_2,
  734. .dac_channels = 2,
  735. .dac_volume_min = 255 - 2*60,
  736. .dac_volume_max = 255,
  737. .function_flags = OXYGEN_FUNCTION_2WIRE,
  738. .dac_i2s_format = OXYGEN_I2S_FORMAT_LJUST,
  739. .adc_i2s_format = OXYGEN_I2S_FORMAT_LJUST,
  740. };
  741. int __devinit get_xonar_pcm179x_model(struct oxygen *chip,
  742. const struct pci_device_id *id)
  743. {
  744. switch (id->subdevice) {
  745. case 0x8269:
  746. chip->model = model_xonar_d2;
  747. chip->model.shortname = "Xonar D2";
  748. break;
  749. case 0x82b7:
  750. chip->model = model_xonar_d2;
  751. chip->model.shortname = "Xonar D2X";
  752. chip->model.init = xonar_d2x_init;
  753. break;
  754. case 0x8314:
  755. chip->model = model_xonar_hdav;
  756. oxygen_clear_bits16(chip, OXYGEN_GPIO_CONTROL, GPIO_DB_MASK);
  757. switch (oxygen_read16(chip, OXYGEN_GPIO_DATA) & GPIO_DB_MASK) {
  758. default:
  759. chip->model.shortname = "Xonar HDAV1.3";
  760. break;
  761. case GPIO_DB_H6:
  762. chip->model.shortname = "Xonar HDAV1.3+H6";
  763. chip->model.private_data = 1;
  764. break;
  765. }
  766. break;
  767. case 0x835d:
  768. chip->model = model_xonar_st;
  769. oxygen_clear_bits16(chip, OXYGEN_GPIO_CONTROL, GPIO_DB_MASK);
  770. switch (oxygen_read16(chip, OXYGEN_GPIO_DATA) & GPIO_DB_MASK) {
  771. default:
  772. chip->model.shortname = "Xonar ST";
  773. break;
  774. case GPIO_DB_H6:
  775. chip->model.shortname = "Xonar ST+H6";
  776. chip->model.dac_channels = 8;
  777. chip->model.private_data = 1;
  778. break;
  779. }
  780. break;
  781. case 0x835c:
  782. chip->model = model_xonar_st;
  783. chip->model.shortname = "Xonar STX";
  784. chip->model.init = xonar_stx_init;
  785. chip->model.resume = xonar_stx_resume;
  786. chip->model.set_dac_params = set_pcm1796_params;
  787. break;
  788. default:
  789. return -EINVAL;
  790. }
  791. return 0;
  792. }