cx88-tvaudio.c 28 KB

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  1. /*
  2. cx88x-audio.c - Conexant CX23880/23881 audio downstream driver driver
  3. (c) 2001 Michael Eskin, Tom Zakrajsek [Windows version]
  4. (c) 2002 Yurij Sysoev <yurij@naturesoft.net>
  5. (c) 2003 Gerd Knorr <kraxel@bytesex.org>
  6. -----------------------------------------------------------------------
  7. Lot of voodoo here. Even the data sheet doesn't help to
  8. understand what is going on here, the documentation for the audio
  9. part of the cx2388x chip is *very* bad.
  10. Some of this comes from party done linux driver sources I got from
  11. [undocumented].
  12. Some comes from the dscaler sources, one of the dscaler driver guy works
  13. for Conexant ...
  14. -----------------------------------------------------------------------
  15. This program is free software; you can redistribute it and/or modify
  16. it under the terms of the GNU General Public License as published by
  17. the Free Software Foundation; either version 2 of the License, or
  18. (at your option) any later version.
  19. This program is distributed in the hope that it will be useful,
  20. but WITHOUT ANY WARRANTY; without even the implied warranty of
  21. MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  22. GNU General Public License for more details.
  23. You should have received a copy of the GNU General Public License
  24. along with this program; if not, write to the Free Software
  25. Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
  26. */
  27. #include <linux/module.h>
  28. #include <linux/moduleparam.h>
  29. #include <linux/errno.h>
  30. #include <linux/kernel.h>
  31. #include <linux/slab.h>
  32. #include <linux/mm.h>
  33. #include <linux/poll.h>
  34. #include <linux/pci.h>
  35. #include <linux/signal.h>
  36. #include <linux/ioport.h>
  37. #include <linux/sched.h>
  38. #include <linux/types.h>
  39. #include <linux/interrupt.h>
  40. #include <linux/vmalloc.h>
  41. #include <linux/init.h>
  42. #include <linux/smp_lock.h>
  43. #include <linux/delay.h>
  44. #include <linux/kthread.h>
  45. #include "cx88.h"
  46. static unsigned int audio_debug = 0;
  47. module_param(audio_debug, int, 0644);
  48. MODULE_PARM_DESC(audio_debug, "enable debug messages [audio]");
  49. static unsigned int always_analog = 0;
  50. module_param(always_analog,int,0644);
  51. MODULE_PARM_DESC(always_analog,"force analog audio out");
  52. #define dprintk(fmt, arg...) if (audio_debug) \
  53. printk(KERN_DEBUG "%s/0: " fmt, core->name , ## arg)
  54. /* ----------------------------------------------------------- */
  55. static char *aud_ctl_names[64] = {
  56. [EN_BTSC_FORCE_MONO] = "BTSC_FORCE_MONO",
  57. [EN_BTSC_FORCE_STEREO] = "BTSC_FORCE_STEREO",
  58. [EN_BTSC_FORCE_SAP] = "BTSC_FORCE_SAP",
  59. [EN_BTSC_AUTO_STEREO] = "BTSC_AUTO_STEREO",
  60. [EN_BTSC_AUTO_SAP] = "BTSC_AUTO_SAP",
  61. [EN_A2_FORCE_MONO1] = "A2_FORCE_MONO1",
  62. [EN_A2_FORCE_MONO2] = "A2_FORCE_MONO2",
  63. [EN_A2_FORCE_STEREO] = "A2_FORCE_STEREO",
  64. [EN_A2_AUTO_MONO2] = "A2_AUTO_MONO2",
  65. [EN_A2_AUTO_STEREO] = "A2_AUTO_STEREO",
  66. [EN_EIAJ_FORCE_MONO1] = "EIAJ_FORCE_MONO1",
  67. [EN_EIAJ_FORCE_MONO2] = "EIAJ_FORCE_MONO2",
  68. [EN_EIAJ_FORCE_STEREO] = "EIAJ_FORCE_STEREO",
  69. [EN_EIAJ_AUTO_MONO2] = "EIAJ_AUTO_MONO2",
  70. [EN_EIAJ_AUTO_STEREO] = "EIAJ_AUTO_STEREO",
  71. [EN_NICAM_FORCE_MONO1] = "NICAM_FORCE_MONO1",
  72. [EN_NICAM_FORCE_MONO2] = "NICAM_FORCE_MONO2",
  73. [EN_NICAM_FORCE_STEREO] = "NICAM_FORCE_STEREO",
  74. [EN_NICAM_AUTO_MONO2] = "NICAM_AUTO_MONO2",
  75. [EN_NICAM_AUTO_STEREO] = "NICAM_AUTO_STEREO",
  76. [EN_FMRADIO_FORCE_MONO] = "FMRADIO_FORCE_MONO",
  77. [EN_FMRADIO_FORCE_STEREO] = "FMRADIO_FORCE_STEREO",
  78. [EN_FMRADIO_AUTO_STEREO] = "FMRADIO_AUTO_STEREO",
  79. };
  80. struct rlist {
  81. u32 reg;
  82. u32 val;
  83. };
  84. static void set_audio_registers(struct cx88_core *core, const struct rlist *l)
  85. {
  86. int i;
  87. for (i = 0; l[i].reg; i++) {
  88. switch (l[i].reg) {
  89. case AUD_PDF_DDS_CNST_BYTE2:
  90. case AUD_PDF_DDS_CNST_BYTE1:
  91. case AUD_PDF_DDS_CNST_BYTE0:
  92. case AUD_QAM_MODE:
  93. case AUD_PHACC_FREQ_8MSB:
  94. case AUD_PHACC_FREQ_8LSB:
  95. cx_writeb(l[i].reg, l[i].val);
  96. break;
  97. default:
  98. cx_write(l[i].reg, l[i].val);
  99. break;
  100. }
  101. }
  102. }
  103. static void set_audio_start(struct cx88_core *core, u32 mode)
  104. {
  105. /* mute */
  106. cx_write(AUD_VOL_CTL, (1 << 6));
  107. /* start programming */
  108. cx_write(AUD_INIT, mode);
  109. cx_write(AUD_INIT_LD, 0x0001);
  110. cx_write(AUD_SOFT_RESET, 0x0001);
  111. }
  112. static void set_audio_finish(struct cx88_core *core, u32 ctl)
  113. {
  114. u32 volume;
  115. #ifndef USING_CX88_ALSA
  116. /* restart dma; This avoids buzz in NICAM and is good in others */
  117. cx88_stop_audio_dma(core);
  118. #endif
  119. cx_write(AUD_RATE_THRES_DMD, 0x000000C0);
  120. #ifndef USING_CX88_ALSA
  121. cx88_start_audio_dma(core);
  122. #endif
  123. if (cx88_boards[core->board].blackbird) {
  124. /* sets sound input from external adc */
  125. if (core->board == CX88_BOARD_HAUPPAUGE_ROSLYN)
  126. cx_clear(AUD_CTL, EN_I2SIN_ENABLE);
  127. else
  128. cx_set(AUD_CTL, EN_I2SIN_ENABLE);
  129. cx_write(AUD_I2SINPUTCNTL, 4);
  130. cx_write(AUD_BAUDRATE, 1);
  131. /* 'pass-thru mode': this enables the i2s output to the mpeg encoder */
  132. cx_set(AUD_CTL, EN_I2SOUT_ENABLE);
  133. cx_write(AUD_I2SOUTPUTCNTL, 1);
  134. cx_write(AUD_I2SCNTL, 0);
  135. /* cx_write(AUD_APB_IN_RATE_ADJ, 0); */
  136. }
  137. if ((always_analog) || (!cx88_boards[core->board].blackbird)) {
  138. ctl |= EN_DAC_ENABLE;
  139. cx_write(AUD_CTL, ctl);
  140. }
  141. /* finish programming */
  142. cx_write(AUD_SOFT_RESET, 0x0000);
  143. /* unmute */
  144. volume = cx_sread(SHADOW_AUD_VOL_CTL);
  145. cx_swrite(SHADOW_AUD_VOL_CTL, AUD_VOL_CTL, volume);
  146. }
  147. /* ----------------------------------------------------------- */
  148. static void set_audio_standard_BTSC(struct cx88_core *core, unsigned int sap,
  149. u32 mode)
  150. {
  151. static const struct rlist btsc[] = {
  152. {AUD_AFE_12DB_EN, 0x00000001},
  153. {AUD_OUT1_SEL, 0x00000013},
  154. {AUD_OUT1_SHIFT, 0x00000000},
  155. {AUD_POLY0_DDS_CONSTANT, 0x0012010c},
  156. {AUD_DMD_RA_DDS, 0x00c3e7aa},
  157. {AUD_DBX_IN_GAIN, 0x00004734},
  158. {AUD_DBX_WBE_GAIN, 0x00004640},
  159. {AUD_DBX_SE_GAIN, 0x00008d31},
  160. {AUD_DCOC_0_SRC, 0x0000001a},
  161. {AUD_IIR1_4_SEL, 0x00000021},
  162. {AUD_DCOC_PASS_IN, 0x00000003},
  163. {AUD_DCOC_0_SHIFT_IN0, 0x0000000a},
  164. {AUD_DCOC_0_SHIFT_IN1, 0x00000008},
  165. {AUD_DCOC_1_SHIFT_IN0, 0x0000000a},
  166. {AUD_DCOC_1_SHIFT_IN1, 0x00000008},
  167. {AUD_DN0_FREQ, 0x0000283b},
  168. {AUD_DN2_SRC_SEL, 0x00000008},
  169. {AUD_DN2_FREQ, 0x00003000},
  170. {AUD_DN2_AFC, 0x00000002},
  171. {AUD_DN2_SHFT, 0x00000000},
  172. {AUD_IIR2_2_SEL, 0x00000020},
  173. {AUD_IIR2_2_SHIFT, 0x00000000},
  174. {AUD_IIR2_3_SEL, 0x0000001f},
  175. {AUD_IIR2_3_SHIFT, 0x00000000},
  176. {AUD_CRDC1_SRC_SEL, 0x000003ce},
  177. {AUD_CRDC1_SHIFT, 0x00000000},
  178. {AUD_CORDIC_SHIFT_1, 0x00000007},
  179. {AUD_DCOC_1_SRC, 0x0000001b},
  180. {AUD_DCOC1_SHIFT, 0x00000000},
  181. {AUD_RDSI_SEL, 0x00000008},
  182. {AUD_RDSQ_SEL, 0x00000008},
  183. {AUD_RDSI_SHIFT, 0x00000000},
  184. {AUD_RDSQ_SHIFT, 0x00000000},
  185. {AUD_POLYPH80SCALEFAC, 0x00000003},
  186. { /* end of list */ },
  187. };
  188. static const struct rlist btsc_sap[] = {
  189. {AUD_AFE_12DB_EN, 0x00000001},
  190. {AUD_DBX_IN_GAIN, 0x00007200},
  191. {AUD_DBX_WBE_GAIN, 0x00006200},
  192. {AUD_DBX_SE_GAIN, 0x00006200},
  193. {AUD_IIR1_1_SEL, 0x00000000},
  194. {AUD_IIR1_3_SEL, 0x00000001},
  195. {AUD_DN1_SRC_SEL, 0x00000007},
  196. {AUD_IIR1_4_SHIFT, 0x00000006},
  197. {AUD_IIR2_1_SHIFT, 0x00000000},
  198. {AUD_IIR2_2_SHIFT, 0x00000000},
  199. {AUD_IIR3_0_SHIFT, 0x00000000},
  200. {AUD_IIR3_1_SHIFT, 0x00000000},
  201. {AUD_IIR3_0_SEL, 0x0000000d},
  202. {AUD_IIR3_1_SEL, 0x0000000e},
  203. {AUD_DEEMPH1_SRC_SEL, 0x00000014},
  204. {AUD_DEEMPH1_SHIFT, 0x00000000},
  205. {AUD_DEEMPH1_G0, 0x00004000},
  206. {AUD_DEEMPH1_A0, 0x00000000},
  207. {AUD_DEEMPH1_B0, 0x00000000},
  208. {AUD_DEEMPH1_A1, 0x00000000},
  209. {AUD_DEEMPH1_B1, 0x00000000},
  210. {AUD_OUT0_SEL, 0x0000003f},
  211. {AUD_OUT1_SEL, 0x0000003f},
  212. {AUD_DN1_AFC, 0x00000002},
  213. {AUD_DCOC_0_SHIFT_IN0, 0x0000000a},
  214. {AUD_DCOC_0_SHIFT_IN1, 0x00000008},
  215. {AUD_DCOC_1_SHIFT_IN0, 0x0000000a},
  216. {AUD_DCOC_1_SHIFT_IN1, 0x00000008},
  217. {AUD_IIR1_0_SEL, 0x0000001d},
  218. {AUD_IIR1_2_SEL, 0x0000001e},
  219. {AUD_IIR2_1_SEL, 0x00000002},
  220. {AUD_IIR2_2_SEL, 0x00000004},
  221. {AUD_IIR3_2_SEL, 0x0000000f},
  222. {AUD_DCOC2_SHIFT, 0x00000001},
  223. {AUD_IIR3_2_SHIFT, 0x00000001},
  224. {AUD_DEEMPH0_SRC_SEL, 0x00000014},
  225. {AUD_CORDIC_SHIFT_1, 0x00000006},
  226. {AUD_POLY0_DDS_CONSTANT, 0x000e4db2},
  227. {AUD_DMD_RA_DDS, 0x00f696e6},
  228. {AUD_IIR2_3_SEL, 0x00000025},
  229. {AUD_IIR1_4_SEL, 0x00000021},
  230. {AUD_DN1_FREQ, 0x0000c965},
  231. {AUD_DCOC_PASS_IN, 0x00000003},
  232. {AUD_DCOC_0_SRC, 0x0000001a},
  233. {AUD_DCOC_1_SRC, 0x0000001b},
  234. {AUD_DCOC1_SHIFT, 0x00000000},
  235. {AUD_RDSI_SEL, 0x00000009},
  236. {AUD_RDSQ_SEL, 0x00000009},
  237. {AUD_RDSI_SHIFT, 0x00000000},
  238. {AUD_RDSQ_SHIFT, 0x00000000},
  239. {AUD_POLYPH80SCALEFAC, 0x00000003},
  240. { /* end of list */ },
  241. };
  242. mode |= EN_FMRADIO_EN_RDS;
  243. if (sap) {
  244. dprintk("%s SAP (status: unknown)\n", __FUNCTION__);
  245. set_audio_start(core, SEL_SAP);
  246. set_audio_registers(core, btsc_sap);
  247. set_audio_finish(core, mode);
  248. } else {
  249. dprintk("%s (status: known-good)\n", __FUNCTION__);
  250. set_audio_start(core, SEL_BTSC);
  251. set_audio_registers(core, btsc);
  252. set_audio_finish(core, mode);
  253. }
  254. }
  255. static void set_audio_standard_NICAM(struct cx88_core *core, u32 mode)
  256. {
  257. static const struct rlist nicam_l[] = {
  258. {AUD_AFE_12DB_EN, 0x00000001},
  259. {AUD_RATE_ADJ1, 0x00000060},
  260. {AUD_RATE_ADJ2, 0x000000F9},
  261. {AUD_RATE_ADJ3, 0x000001CC},
  262. {AUD_RATE_ADJ4, 0x000002B3},
  263. {AUD_RATE_ADJ5, 0x00000726},
  264. {AUD_DEEMPHDENOM1_R, 0x0000F3D0},
  265. {AUD_DEEMPHDENOM2_R, 0x00000000},
  266. {AUD_ERRLOGPERIOD_R, 0x00000064},
  267. {AUD_ERRINTRPTTHSHLD1_R, 0x00000FFF},
  268. {AUD_ERRINTRPTTHSHLD2_R, 0x0000001F},
  269. {AUD_ERRINTRPTTHSHLD3_R, 0x0000000F},
  270. {AUD_POLYPH80SCALEFAC, 0x00000003},
  271. {AUD_DMD_RA_DDS, 0x00C00000},
  272. {AUD_PLL_INT, 0x0000001E},
  273. {AUD_PLL_DDS, 0x00000000},
  274. {AUD_PLL_FRAC, 0x0000E542},
  275. {AUD_START_TIMER, 0x00000000},
  276. {AUD_DEEMPHNUMER1_R, 0x000353DE},
  277. {AUD_DEEMPHNUMER2_R, 0x000001B1},
  278. {AUD_PDF_DDS_CNST_BYTE2, 0x06},
  279. {AUD_PDF_DDS_CNST_BYTE1, 0x82},
  280. {AUD_PDF_DDS_CNST_BYTE0, 0x12},
  281. {AUD_QAM_MODE, 0x05},
  282. {AUD_PHACC_FREQ_8MSB, 0x34},
  283. {AUD_PHACC_FREQ_8LSB, 0x4C},
  284. {AUD_DEEMPHGAIN_R, 0x00006680},
  285. {AUD_RATE_THRES_DMD, 0x000000C0},
  286. { /* end of list */ },
  287. };
  288. static const struct rlist nicam_bgdki_common[] = {
  289. {AUD_AFE_12DB_EN, 0x00000001},
  290. {AUD_RATE_ADJ1, 0x00000010},
  291. {AUD_RATE_ADJ2, 0x00000040},
  292. {AUD_RATE_ADJ3, 0x00000100},
  293. {AUD_RATE_ADJ4, 0x00000400},
  294. {AUD_RATE_ADJ5, 0x00001000},
  295. {AUD_ERRLOGPERIOD_R, 0x00000fff},
  296. {AUD_ERRINTRPTTHSHLD1_R, 0x000003ff},
  297. {AUD_ERRINTRPTTHSHLD2_R, 0x000000ff},
  298. {AUD_ERRINTRPTTHSHLD3_R, 0x0000003f},
  299. {AUD_POLYPH80SCALEFAC, 0x00000003},
  300. {AUD_DEEMPHGAIN_R, 0x000023c2},
  301. {AUD_DEEMPHNUMER1_R, 0x0002a7bc},
  302. {AUD_DEEMPHNUMER2_R, 0x0003023e},
  303. {AUD_DEEMPHDENOM1_R, 0x0000f3d0},
  304. {AUD_DEEMPHDENOM2_R, 0x00000000},
  305. {AUD_PDF_DDS_CNST_BYTE2, 0x06},
  306. {AUD_PDF_DDS_CNST_BYTE1, 0x82},
  307. {AUD_QAM_MODE, 0x05},
  308. { /* end of list */ },
  309. };
  310. static const struct rlist nicam_i[] = {
  311. {AUD_PDF_DDS_CNST_BYTE0, 0x12},
  312. {AUD_PHACC_FREQ_8MSB, 0x3a},
  313. {AUD_PHACC_FREQ_8LSB, 0x93},
  314. { /* end of list */ },
  315. };
  316. static const struct rlist nicam_default[] = {
  317. {AUD_PDF_DDS_CNST_BYTE0, 0x16},
  318. {AUD_PHACC_FREQ_8MSB, 0x34},
  319. {AUD_PHACC_FREQ_8LSB, 0x4c},
  320. { /* end of list */ },
  321. };
  322. set_audio_start(core,SEL_NICAM);
  323. switch (core->tvaudio) {
  324. case WW_L:
  325. dprintk("%s SECAM-L NICAM (status: devel)\n", __FUNCTION__);
  326. set_audio_registers(core, nicam_l);
  327. break;
  328. case WW_I:
  329. dprintk("%s PAL-I NICAM (status: known-good)\n", __FUNCTION__);
  330. set_audio_registers(core, nicam_bgdki_common);
  331. set_audio_registers(core, nicam_i);
  332. break;
  333. default:
  334. dprintk("%s PAL-BGDK NICAM (status: known-good)\n", __FUNCTION__);
  335. set_audio_registers(core, nicam_bgdki_common);
  336. set_audio_registers(core, nicam_default);
  337. break;
  338. };
  339. mode |= EN_DMTRX_LR | EN_DMTRX_BYPASS;
  340. set_audio_finish(core, mode);
  341. }
  342. static void set_audio_standard_A2(struct cx88_core *core, u32 mode)
  343. {
  344. static const struct rlist a2_bgdk_common[] = {
  345. {AUD_ERRLOGPERIOD_R, 0x00000064},
  346. {AUD_ERRINTRPTTHSHLD1_R, 0x00000fff},
  347. {AUD_ERRINTRPTTHSHLD2_R, 0x0000001f},
  348. {AUD_ERRINTRPTTHSHLD3_R, 0x0000000f},
  349. {AUD_PDF_DDS_CNST_BYTE2, 0x06},
  350. {AUD_PDF_DDS_CNST_BYTE1, 0x82},
  351. {AUD_PDF_DDS_CNST_BYTE0, 0x12},
  352. {AUD_QAM_MODE, 0x05},
  353. {AUD_PHACC_FREQ_8MSB, 0x34},
  354. {AUD_PHACC_FREQ_8LSB, 0x4c},
  355. {AUD_RATE_ADJ1, 0x00000100},
  356. {AUD_RATE_ADJ2, 0x00000200},
  357. {AUD_RATE_ADJ3, 0x00000300},
  358. {AUD_RATE_ADJ4, 0x00000400},
  359. {AUD_RATE_ADJ5, 0x00000500},
  360. {AUD_THR_FR, 0x00000000},
  361. {AAGC_HYST, 0x0000001a},
  362. {AUD_PILOT_BQD_1_K0, 0x0000755b},
  363. {AUD_PILOT_BQD_1_K1, 0x00551340},
  364. {AUD_PILOT_BQD_1_K2, 0x006d30be},
  365. {AUD_PILOT_BQD_1_K3, 0xffd394af},
  366. {AUD_PILOT_BQD_1_K4, 0x00400000},
  367. {AUD_PILOT_BQD_2_K0, 0x00040000},
  368. {AUD_PILOT_BQD_2_K1, 0x002a4841},
  369. {AUD_PILOT_BQD_2_K2, 0x00400000},
  370. {AUD_PILOT_BQD_2_K3, 0x00000000},
  371. {AUD_PILOT_BQD_2_K4, 0x00000000},
  372. {AUD_MODE_CHG_TIMER, 0x00000040},
  373. {AUD_AFE_12DB_EN, 0x00000001},
  374. {AUD_CORDIC_SHIFT_0, 0x00000007},
  375. {AUD_CORDIC_SHIFT_1, 0x00000007},
  376. {AUD_DEEMPH0_G0, 0x00000380},
  377. {AUD_DEEMPH1_G0, 0x00000380},
  378. {AUD_DCOC_0_SRC, 0x0000001a},
  379. {AUD_DCOC0_SHIFT, 0x00000000},
  380. {AUD_DCOC_0_SHIFT_IN0, 0x0000000a},
  381. {AUD_DCOC_0_SHIFT_IN1, 0x00000008},
  382. {AUD_DCOC_PASS_IN, 0x00000003},
  383. {AUD_IIR3_0_SEL, 0x00000021},
  384. {AUD_DN2_AFC, 0x00000002},
  385. {AUD_DCOC_1_SRC, 0x0000001b},
  386. {AUD_DCOC1_SHIFT, 0x00000000},
  387. {AUD_DCOC_1_SHIFT_IN0, 0x0000000a},
  388. {AUD_DCOC_1_SHIFT_IN1, 0x00000008},
  389. {AUD_IIR3_1_SEL, 0x00000023},
  390. {AUD_RDSI_SEL, 0x00000017},
  391. {AUD_RDSI_SHIFT, 0x00000000},
  392. {AUD_RDSQ_SEL, 0x00000017},
  393. {AUD_RDSQ_SHIFT, 0x00000000},
  394. {AUD_PLL_INT, 0x0000001e},
  395. {AUD_PLL_DDS, 0x00000000},
  396. {AUD_PLL_FRAC, 0x0000e542},
  397. {AUD_POLYPH80SCALEFAC, 0x00000001},
  398. {AUD_START_TIMER, 0x00000000},
  399. { /* end of list */ },
  400. };
  401. static const struct rlist a2_bg[] = {
  402. {AUD_DMD_RA_DDS, 0x002a4f2f},
  403. {AUD_C1_UP_THR, 0x00007000},
  404. {AUD_C1_LO_THR, 0x00005400},
  405. {AUD_C2_UP_THR, 0x00005400},
  406. {AUD_C2_LO_THR, 0x00003000},
  407. { /* end of list */ },
  408. };
  409. static const struct rlist a2_dk[] = {
  410. {AUD_DMD_RA_DDS, 0x002a4f2f},
  411. {AUD_C1_UP_THR, 0x00007000},
  412. {AUD_C1_LO_THR, 0x00005400},
  413. {AUD_C2_UP_THR, 0x00005400},
  414. {AUD_C2_LO_THR, 0x00003000},
  415. {AUD_DN0_FREQ, 0x00003a1c},
  416. {AUD_DN2_FREQ, 0x0000d2e0},
  417. { /* end of list */ },
  418. };
  419. static const struct rlist a1_i[] = {
  420. {AUD_ERRLOGPERIOD_R, 0x00000064},
  421. {AUD_ERRINTRPTTHSHLD1_R, 0x00000fff},
  422. {AUD_ERRINTRPTTHSHLD2_R, 0x0000001f},
  423. {AUD_ERRINTRPTTHSHLD3_R, 0x0000000f},
  424. {AUD_PDF_DDS_CNST_BYTE2, 0x06},
  425. {AUD_PDF_DDS_CNST_BYTE1, 0x82},
  426. {AUD_PDF_DDS_CNST_BYTE0, 0x12},
  427. {AUD_QAM_MODE, 0x05},
  428. {AUD_PHACC_FREQ_8MSB, 0x3a},
  429. {AUD_PHACC_FREQ_8LSB, 0x93},
  430. {AUD_DMD_RA_DDS, 0x002a4f2f},
  431. {AUD_PLL_INT, 0x0000001e},
  432. {AUD_PLL_DDS, 0x00000004},
  433. {AUD_PLL_FRAC, 0x0000e542},
  434. {AUD_RATE_ADJ1, 0x00000100},
  435. {AUD_RATE_ADJ2, 0x00000200},
  436. {AUD_RATE_ADJ3, 0x00000300},
  437. {AUD_RATE_ADJ4, 0x00000400},
  438. {AUD_RATE_ADJ5, 0x00000500},
  439. {AUD_THR_FR, 0x00000000},
  440. {AUD_PILOT_BQD_1_K0, 0x0000755b},
  441. {AUD_PILOT_BQD_1_K1, 0x00551340},
  442. {AUD_PILOT_BQD_1_K2, 0x006d30be},
  443. {AUD_PILOT_BQD_1_K3, 0xffd394af},
  444. {AUD_PILOT_BQD_1_K4, 0x00400000},
  445. {AUD_PILOT_BQD_2_K0, 0x00040000},
  446. {AUD_PILOT_BQD_2_K1, 0x002a4841},
  447. {AUD_PILOT_BQD_2_K2, 0x00400000},
  448. {AUD_PILOT_BQD_2_K3, 0x00000000},
  449. {AUD_PILOT_BQD_2_K4, 0x00000000},
  450. {AUD_MODE_CHG_TIMER, 0x00000060},
  451. {AUD_AFE_12DB_EN, 0x00000001},
  452. {AAGC_HYST, 0x0000000a},
  453. {AUD_CORDIC_SHIFT_0, 0x00000007},
  454. {AUD_CORDIC_SHIFT_1, 0x00000007},
  455. {AUD_C1_UP_THR, 0x00007000},
  456. {AUD_C1_LO_THR, 0x00005400},
  457. {AUD_C2_UP_THR, 0x00005400},
  458. {AUD_C2_LO_THR, 0x00003000},
  459. {AUD_DCOC_0_SRC, 0x0000001a},
  460. {AUD_DCOC0_SHIFT, 0x00000000},
  461. {AUD_DCOC_0_SHIFT_IN0, 0x0000000a},
  462. {AUD_DCOC_0_SHIFT_IN1, 0x00000008},
  463. {AUD_DCOC_PASS_IN, 0x00000003},
  464. {AUD_IIR3_0_SEL, 0x00000021},
  465. {AUD_DN2_AFC, 0x00000002},
  466. {AUD_DCOC_1_SRC, 0x0000001b},
  467. {AUD_DCOC1_SHIFT, 0x00000000},
  468. {AUD_DCOC_1_SHIFT_IN0, 0x0000000a},
  469. {AUD_DCOC_1_SHIFT_IN1, 0x00000008},
  470. {AUD_IIR3_1_SEL, 0x00000023},
  471. {AUD_DN0_FREQ, 0x000035a3},
  472. {AUD_DN2_FREQ, 0x000029c7},
  473. {AUD_CRDC0_SRC_SEL, 0x00000511},
  474. {AUD_IIR1_0_SEL, 0x00000001},
  475. {AUD_IIR1_1_SEL, 0x00000000},
  476. {AUD_IIR3_2_SEL, 0x00000003},
  477. {AUD_IIR3_2_SHIFT, 0x00000000},
  478. {AUD_IIR3_0_SEL, 0x00000002},
  479. {AUD_IIR2_0_SEL, 0x00000021},
  480. {AUD_IIR2_0_SHIFT, 0x00000002},
  481. {AUD_DEEMPH0_SRC_SEL, 0x0000000b},
  482. {AUD_DEEMPH1_SRC_SEL, 0x0000000b},
  483. {AUD_POLYPH80SCALEFAC, 0x00000001},
  484. {AUD_START_TIMER, 0x00000000},
  485. { /* end of list */ },
  486. };
  487. static const struct rlist am_l[] = {
  488. {AUD_ERRLOGPERIOD_R, 0x00000064},
  489. {AUD_ERRINTRPTTHSHLD1_R, 0x00000FFF},
  490. {AUD_ERRINTRPTTHSHLD2_R, 0x0000001F},
  491. {AUD_ERRINTRPTTHSHLD3_R, 0x0000000F},
  492. {AUD_PDF_DDS_CNST_BYTE2, 0x48},
  493. {AUD_PDF_DDS_CNST_BYTE1, 0x3D},
  494. {AUD_QAM_MODE, 0x00},
  495. {AUD_PDF_DDS_CNST_BYTE0, 0xf5},
  496. {AUD_PHACC_FREQ_8MSB, 0x3a},
  497. {AUD_PHACC_FREQ_8LSB, 0x4a},
  498. {AUD_DEEMPHGAIN_R, 0x00006680},
  499. {AUD_DEEMPHNUMER1_R, 0x000353DE},
  500. {AUD_DEEMPHNUMER2_R, 0x000001B1},
  501. {AUD_DEEMPHDENOM1_R, 0x0000F3D0},
  502. {AUD_DEEMPHDENOM2_R, 0x00000000},
  503. {AUD_FM_MODE_ENABLE, 0x00000007},
  504. {AUD_POLYPH80SCALEFAC, 0x00000003},
  505. {AUD_AFE_12DB_EN, 0x00000001},
  506. {AAGC_GAIN, 0x00000000},
  507. {AAGC_HYST, 0x00000018},
  508. {AAGC_DEF, 0x00000020},
  509. {AUD_DN0_FREQ, 0x00000000},
  510. {AUD_POLY0_DDS_CONSTANT, 0x000E4DB2},
  511. {AUD_DCOC_0_SRC, 0x00000021},
  512. {AUD_IIR1_0_SEL, 0x00000000},
  513. {AUD_IIR1_0_SHIFT, 0x00000007},
  514. {AUD_IIR1_1_SEL, 0x00000002},
  515. {AUD_IIR1_1_SHIFT, 0x00000000},
  516. {AUD_DCOC_1_SRC, 0x00000003},
  517. {AUD_DCOC1_SHIFT, 0x00000000},
  518. {AUD_DCOC_PASS_IN, 0x00000000},
  519. {AUD_IIR1_2_SEL, 0x00000023},
  520. {AUD_IIR1_2_SHIFT, 0x00000000},
  521. {AUD_IIR1_3_SEL, 0x00000004},
  522. {AUD_IIR1_3_SHIFT, 0x00000007},
  523. {AUD_IIR1_4_SEL, 0x00000005},
  524. {AUD_IIR1_4_SHIFT, 0x00000007},
  525. {AUD_IIR3_0_SEL, 0x00000007},
  526. {AUD_IIR3_0_SHIFT, 0x00000000},
  527. {AUD_DEEMPH0_SRC_SEL, 0x00000011},
  528. {AUD_DEEMPH0_SHIFT, 0x00000000},
  529. {AUD_DEEMPH0_G0, 0x00007000},
  530. {AUD_DEEMPH0_A0, 0x00000000},
  531. {AUD_DEEMPH0_B0, 0x00000000},
  532. {AUD_DEEMPH0_A1, 0x00000000},
  533. {AUD_DEEMPH0_B1, 0x00000000},
  534. {AUD_DEEMPH1_SRC_SEL, 0x00000011},
  535. {AUD_DEEMPH1_SHIFT, 0x00000000},
  536. {AUD_DEEMPH1_G0, 0x00007000},
  537. {AUD_DEEMPH1_A0, 0x00000000},
  538. {AUD_DEEMPH1_B0, 0x00000000},
  539. {AUD_DEEMPH1_A1, 0x00000000},
  540. {AUD_DEEMPH1_B1, 0x00000000},
  541. {AUD_OUT0_SEL, 0x0000003F},
  542. {AUD_OUT1_SEL, 0x0000003F},
  543. {AUD_DMD_RA_DDS, 0x00F5C285},
  544. {AUD_PLL_INT, 0x0000001E},
  545. {AUD_PLL_DDS, 0x00000000},
  546. {AUD_PLL_FRAC, 0x0000E542},
  547. {AUD_RATE_ADJ1, 0x00000100},
  548. {AUD_RATE_ADJ2, 0x00000200},
  549. {AUD_RATE_ADJ3, 0x00000300},
  550. {AUD_RATE_ADJ4, 0x00000400},
  551. {AUD_RATE_ADJ5, 0x00000500},
  552. {AUD_RATE_THRES_DMD, 0x000000C0},
  553. { /* end of list */ },
  554. };
  555. static const struct rlist a2_deemph50[] = {
  556. {AUD_DEEMPH0_G0, 0x00000380},
  557. {AUD_DEEMPH1_G0, 0x00000380},
  558. {AUD_DEEMPHGAIN_R, 0x000011e1},
  559. {AUD_DEEMPHNUMER1_R, 0x0002a7bc},
  560. {AUD_DEEMPHNUMER2_R, 0x0003023c},
  561. { /* end of list */ },
  562. };
  563. set_audio_start(core, SEL_A2);
  564. switch (core->tvaudio) {
  565. case WW_BG:
  566. dprintk("%s PAL-BG A1/2 (status: known-good)\n", __FUNCTION__);
  567. set_audio_registers(core, a2_bgdk_common);
  568. set_audio_registers(core, a2_bg);
  569. set_audio_registers(core, a2_deemph50);
  570. break;
  571. case WW_DK:
  572. dprintk("%s PAL-DK A1/2 (status: known-good)\n", __FUNCTION__);
  573. set_audio_registers(core, a2_bgdk_common);
  574. set_audio_registers(core, a2_dk);
  575. set_audio_registers(core, a2_deemph50);
  576. break;
  577. case WW_I:
  578. dprintk("%s PAL-I A1 (status: known-good)\n", __FUNCTION__);
  579. set_audio_registers(core, a1_i);
  580. set_audio_registers(core, a2_deemph50);
  581. break;
  582. case WW_L:
  583. dprintk("%s AM-L (status: devel)\n", __FUNCTION__);
  584. set_audio_registers(core, am_l);
  585. break;
  586. default:
  587. dprintk("%s Warning: wrong value\n", __FUNCTION__);
  588. return;
  589. break;
  590. };
  591. mode |= EN_FMRADIO_EN_RDS | EN_DMTRX_SUMDIFF;
  592. set_audio_finish(core, mode);
  593. }
  594. static void set_audio_standard_EIAJ(struct cx88_core *core)
  595. {
  596. static const struct rlist eiaj[] = {
  597. /* TODO: eiaj register settings are not there yet ... */
  598. { /* end of list */ },
  599. };
  600. dprintk("%s (status: unknown)\n", __FUNCTION__);
  601. set_audio_start(core, SEL_EIAJ);
  602. set_audio_registers(core, eiaj);
  603. set_audio_finish(core, EN_EIAJ_AUTO_STEREO);
  604. }
  605. static void set_audio_standard_FM(struct cx88_core *core,
  606. enum cx88_deemph_type deemph)
  607. {
  608. static const struct rlist fm_deemph_50[] = {
  609. {AUD_DEEMPH0_G0, 0x0C45},
  610. {AUD_DEEMPH0_A0, 0x6262},
  611. {AUD_DEEMPH0_B0, 0x1C29},
  612. {AUD_DEEMPH0_A1, 0x3FC66},
  613. {AUD_DEEMPH0_B1, 0x399A},
  614. {AUD_DEEMPH1_G0, 0x0D80},
  615. {AUD_DEEMPH1_A0, 0x6262},
  616. {AUD_DEEMPH1_B0, 0x1C29},
  617. {AUD_DEEMPH1_A1, 0x3FC66},
  618. {AUD_DEEMPH1_B1, 0x399A},
  619. {AUD_POLYPH80SCALEFAC, 0x0003},
  620. { /* end of list */ },
  621. };
  622. static const struct rlist fm_deemph_75[] = {
  623. {AUD_DEEMPH0_G0, 0x091B},
  624. {AUD_DEEMPH0_A0, 0x6B68},
  625. {AUD_DEEMPH0_B0, 0x11EC},
  626. {AUD_DEEMPH0_A1, 0x3FC66},
  627. {AUD_DEEMPH0_B1, 0x399A},
  628. {AUD_DEEMPH1_G0, 0x0AA0},
  629. {AUD_DEEMPH1_A0, 0x6B68},
  630. {AUD_DEEMPH1_B0, 0x11EC},
  631. {AUD_DEEMPH1_A1, 0x3FC66},
  632. {AUD_DEEMPH1_B1, 0x399A},
  633. {AUD_POLYPH80SCALEFAC, 0x0003},
  634. { /* end of list */ },
  635. };
  636. /* It is enough to leave default values? */
  637. static const struct rlist fm_no_deemph[] = {
  638. {AUD_POLYPH80SCALEFAC, 0x0003},
  639. { /* end of list */ },
  640. };
  641. dprintk("%s (status: unknown)\n", __FUNCTION__);
  642. set_audio_start(core, SEL_FMRADIO);
  643. switch (deemph) {
  644. case FM_NO_DEEMPH:
  645. set_audio_registers(core, fm_no_deemph);
  646. break;
  647. case FM_DEEMPH_50:
  648. set_audio_registers(core, fm_deemph_50);
  649. break;
  650. case FM_DEEMPH_75:
  651. set_audio_registers(core, fm_deemph_75);
  652. break;
  653. }
  654. set_audio_finish(core, EN_FMRADIO_AUTO_STEREO);
  655. }
  656. /* ----------------------------------------------------------- */
  657. int cx88_detect_nicam(struct cx88_core *core)
  658. {
  659. int i, j = 0;
  660. dprintk("start nicam autodetect.\n");
  661. for (i = 0; i < 6; i++) {
  662. /* if bit1=1 then nicam is detected */
  663. j += ((cx_read(AUD_NICAM_STATUS2) & 0x02) >> 1);
  664. if (j == 1) {
  665. dprintk("nicam is detected.\n");
  666. return 1;
  667. }
  668. /* wait a little bit for next reading status */
  669. msleep(10);
  670. }
  671. dprintk("nicam is not detected.\n");
  672. return 0;
  673. }
  674. void cx88_set_tvaudio(struct cx88_core *core)
  675. {
  676. switch (core->tvaudio) {
  677. case WW_BTSC:
  678. set_audio_standard_BTSC(core, 0, EN_BTSC_AUTO_STEREO);
  679. break;
  680. case WW_BG:
  681. case WW_DK:
  682. case WW_I:
  683. case WW_L:
  684. /* prepare all dsp registers */
  685. set_audio_standard_A2(core, EN_A2_FORCE_MONO1);
  686. /* set nicam mode - otherwise
  687. AUD_NICAM_STATUS2 contains wrong values */
  688. set_audio_standard_NICAM(core, EN_NICAM_AUTO_STEREO);
  689. if (0 == cx88_detect_nicam(core)) {
  690. /* fall back to fm / am mono */
  691. set_audio_standard_A2(core, EN_A2_FORCE_MONO1);
  692. core->use_nicam = 0;
  693. } else {
  694. core->use_nicam = 1;
  695. }
  696. break;
  697. case WW_EIAJ:
  698. set_audio_standard_EIAJ(core);
  699. break;
  700. case WW_FM:
  701. set_audio_standard_FM(core, FM_NO_DEEMPH);
  702. break;
  703. case WW_NONE:
  704. default:
  705. printk("%s/0: unknown tv audio mode [%d]\n",
  706. core->name, core->tvaudio);
  707. break;
  708. }
  709. return;
  710. }
  711. void cx88_newstation(struct cx88_core *core)
  712. {
  713. core->audiomode_manual = UNSET;
  714. }
  715. void cx88_get_stereo(struct cx88_core *core, struct v4l2_tuner *t)
  716. {
  717. static char *m[] = { "stereo", "dual mono", "mono", "sap" };
  718. static char *p[] = { "no pilot", "pilot c1", "pilot c2", "?" };
  719. u32 reg, mode, pilot;
  720. reg = cx_read(AUD_STATUS);
  721. mode = reg & 0x03;
  722. pilot = (reg >> 2) & 0x03;
  723. if (core->astat != reg)
  724. dprintk("AUD_STATUS: 0x%x [%s/%s] ctl=%s\n",
  725. reg, m[mode], p[pilot],
  726. aud_ctl_names[cx_read(AUD_CTL) & 63]);
  727. core->astat = reg;
  728. /* TODO
  729. Reading from AUD_STATUS is not enough
  730. for auto-detecting sap/dual-fm/nicam.
  731. Add some code here later.
  732. */
  733. # if 0
  734. t->capability = V4L2_TUNER_CAP_STEREO | V4L2_TUNER_CAP_SAP |
  735. V4L2_TUNER_CAP_LANG1 | V4L2_TUNER_CAP_LANG2;
  736. t->rxsubchans = V4L2_TUNER_SUB_MONO;
  737. t->audmode = V4L2_TUNER_MODE_MONO;
  738. switch (core->tvaudio) {
  739. case WW_BTSC:
  740. t->capability = V4L2_TUNER_CAP_STEREO | V4L2_TUNER_CAP_SAP;
  741. t->rxsubchans = V4L2_TUNER_SUB_STEREO;
  742. if (1 == pilot) {
  743. /* SAP */
  744. t->rxsubchans |= V4L2_TUNER_SUB_SAP;
  745. }
  746. break;
  747. case WW_A2_BG:
  748. case WW_A2_DK:
  749. case WW_A2_M:
  750. if (1 == pilot) {
  751. /* stereo */
  752. t->rxsubchans =
  753. V4L2_TUNER_SUB_MONO | V4L2_TUNER_SUB_STEREO;
  754. if (0 == mode)
  755. t->audmode = V4L2_TUNER_MODE_STEREO;
  756. }
  757. if (2 == pilot) {
  758. /* dual language -- FIXME */
  759. t->rxsubchans =
  760. V4L2_TUNER_SUB_LANG1 | V4L2_TUNER_SUB_LANG2;
  761. t->audmode = V4L2_TUNER_MODE_LANG1;
  762. }
  763. break;
  764. case WW_NICAM_BGDKL:
  765. if (0 == mode) {
  766. t->audmode = V4L2_TUNER_MODE_STEREO;
  767. t->rxsubchans |= V4L2_TUNER_SUB_STEREO;
  768. }
  769. break;
  770. case WW_SYSTEM_L_AM:
  771. if (0x0 == mode && !(cx_read(AUD_INIT) & 0x04)) {
  772. t->audmode = V4L2_TUNER_MODE_STEREO;
  773. t->rxsubchans |= V4L2_TUNER_SUB_STEREO;
  774. }
  775. break;
  776. default:
  777. /* nothing */
  778. break;
  779. }
  780. # endif
  781. return;
  782. }
  783. void cx88_set_stereo(struct cx88_core *core, u32 mode, int manual)
  784. {
  785. u32 ctl = UNSET;
  786. u32 mask = UNSET;
  787. if (manual) {
  788. core->audiomode_manual = mode;
  789. } else {
  790. if (UNSET != core->audiomode_manual)
  791. return;
  792. }
  793. core->audiomode_current = mode;
  794. switch (core->tvaudio) {
  795. case WW_BTSC:
  796. switch (mode) {
  797. case V4L2_TUNER_MODE_MONO:
  798. set_audio_standard_BTSC(core, 0, EN_BTSC_FORCE_MONO);
  799. break;
  800. case V4L2_TUNER_MODE_LANG1:
  801. set_audio_standard_BTSC(core, 0, EN_BTSC_AUTO_STEREO);
  802. break;
  803. case V4L2_TUNER_MODE_LANG2:
  804. set_audio_standard_BTSC(core, 1, EN_BTSC_FORCE_SAP);
  805. break;
  806. case V4L2_TUNER_MODE_STEREO:
  807. case V4L2_TUNER_MODE_LANG1_LANG2:
  808. set_audio_standard_BTSC(core, 0, EN_BTSC_FORCE_STEREO);
  809. break;
  810. }
  811. break;
  812. case WW_BG:
  813. case WW_DK:
  814. case WW_I:
  815. case WW_L:
  816. if (1 == core->use_nicam) {
  817. switch (mode) {
  818. case V4L2_TUNER_MODE_MONO:
  819. case V4L2_TUNER_MODE_LANG1:
  820. set_audio_standard_NICAM(core,
  821. EN_NICAM_FORCE_MONO1);
  822. break;
  823. case V4L2_TUNER_MODE_LANG2:
  824. set_audio_standard_NICAM(core,
  825. EN_NICAM_FORCE_MONO2);
  826. break;
  827. case V4L2_TUNER_MODE_STEREO:
  828. case V4L2_TUNER_MODE_LANG1_LANG2:
  829. set_audio_standard_NICAM(core,
  830. EN_NICAM_FORCE_STEREO);
  831. break;
  832. }
  833. } else {
  834. if ((core->tvaudio == WW_I) || (core->tvaudio == WW_L)) {
  835. /* fall back to fm / am mono */
  836. set_audio_standard_A2(core, EN_A2_FORCE_MONO1);
  837. } else {
  838. /* TODO: Add A2 autodection */
  839. switch (mode) {
  840. case V4L2_TUNER_MODE_MONO:
  841. case V4L2_TUNER_MODE_LANG1:
  842. set_audio_standard_A2(core,
  843. EN_A2_FORCE_MONO1);
  844. break;
  845. case V4L2_TUNER_MODE_LANG2:
  846. set_audio_standard_A2(core,
  847. EN_A2_FORCE_MONO2);
  848. break;
  849. case V4L2_TUNER_MODE_STEREO:
  850. case V4L2_TUNER_MODE_LANG1_LANG2:
  851. set_audio_standard_A2(core,
  852. EN_A2_FORCE_STEREO);
  853. break;
  854. }
  855. }
  856. }
  857. break;
  858. case WW_FM:
  859. switch (mode) {
  860. case V4L2_TUNER_MODE_MONO:
  861. ctl = EN_FMRADIO_FORCE_MONO;
  862. mask = 0x3f;
  863. break;
  864. case V4L2_TUNER_MODE_STEREO:
  865. ctl = EN_FMRADIO_AUTO_STEREO;
  866. mask = 0x3f;
  867. break;
  868. }
  869. break;
  870. }
  871. if (UNSET != ctl) {
  872. dprintk("cx88_set_stereo: mask 0x%x, ctl 0x%x "
  873. "[status=0x%x,ctl=0x%x,vol=0x%x]\n",
  874. mask, ctl, cx_read(AUD_STATUS),
  875. cx_read(AUD_CTL), cx_sread(SHADOW_AUD_VOL_CTL));
  876. cx_andor(AUD_CTL, mask, ctl);
  877. }
  878. return;
  879. }
  880. int cx88_audio_thread(void *data)
  881. {
  882. struct cx88_core *core = data;
  883. struct v4l2_tuner t;
  884. u32 mode = 0;
  885. dprintk("cx88: tvaudio thread started\n");
  886. for (;;) {
  887. msleep_interruptible(1000);
  888. if (kthread_should_stop())
  889. break;
  890. /* just monitor the audio status for now ... */
  891. memset(&t, 0, sizeof(t));
  892. cx88_get_stereo(core, &t);
  893. if (UNSET != core->audiomode_manual)
  894. /* manually set, don't do anything. */
  895. continue;
  896. /* monitor signal */
  897. if (t.rxsubchans & V4L2_TUNER_SUB_STEREO)
  898. mode = V4L2_TUNER_MODE_STEREO;
  899. else
  900. mode = V4L2_TUNER_MODE_MONO;
  901. if (mode == core->audiomode_current)
  902. continue;
  903. /* automatically switch to best available mode */
  904. cx88_set_stereo(core, mode, 0);
  905. }
  906. dprintk("cx88: tvaudio thread exiting\n");
  907. return 0;
  908. }
  909. /* ----------------------------------------------------------- */
  910. EXPORT_SYMBOL(cx88_set_tvaudio);
  911. EXPORT_SYMBOL(cx88_newstation);
  912. EXPORT_SYMBOL(cx88_set_stereo);
  913. EXPORT_SYMBOL(cx88_get_stereo);
  914. EXPORT_SYMBOL(cx88_audio_thread);
  915. /*
  916. * Local variables:
  917. * c-basic-offset: 8
  918. * End:
  919. * kate: eol "unix"; indent-width 3; remove-trailing-space on; replace-trailing-space-save on; tab-width 8; replace-tabs off; space-indent off; mixed-indent off
  920. */