emufx.c 85 KB

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  1. /*
  2. * Copyright (c) by Jaroslav Kysela <perex@suse.cz>
  3. * Creative Labs, Inc.
  4. * Routines for effect processor FX8010
  5. *
  6. * BUGS:
  7. * --
  8. *
  9. * TODO:
  10. * --
  11. *
  12. * This program is free software; you can redistribute it and/or modify
  13. * it under the terms of the GNU General Public License as published by
  14. * the Free Software Foundation; either version 2 of the License, or
  15. * (at your option) any later version.
  16. *
  17. * This program is distributed in the hope that it will be useful,
  18. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  19. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  20. * GNU General Public License for more details.
  21. *
  22. * You should have received a copy of the GNU General Public License
  23. * along with this program; if not, write to the Free Software
  24. * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
  25. *
  26. */
  27. #include <sound/driver.h>
  28. #include <linux/pci.h>
  29. #include <linux/delay.h>
  30. #include <linux/slab.h>
  31. #include <linux/init.h>
  32. #include <sound/core.h>
  33. #include <sound/emu10k1.h>
  34. #if 0 /* for testing purposes - digital out -> capture */
  35. #define EMU10K1_CAPTURE_DIGITAL_OUT
  36. #endif
  37. #if 0 /* for testing purposes - set S/PDIF to AC3 output */
  38. #define EMU10K1_SET_AC3_IEC958
  39. #endif
  40. #if 0 /* for testing purposes - feed the front signal to Center/LFE outputs */
  41. #define EMU10K1_CENTER_LFE_FROM_FRONT
  42. #endif
  43. /*
  44. * Tables
  45. */
  46. static char *fxbuses[16] = {
  47. /* 0x00 */ "PCM Left",
  48. /* 0x01 */ "PCM Right",
  49. /* 0x02 */ "PCM Surround Left",
  50. /* 0x03 */ "PCM Surround Right",
  51. /* 0x04 */ "MIDI Left",
  52. /* 0x05 */ "MIDI Right",
  53. /* 0x06 */ "Center",
  54. /* 0x07 */ "LFE",
  55. /* 0x08 */ NULL,
  56. /* 0x09 */ NULL,
  57. /* 0x0a */ NULL,
  58. /* 0x0b */ NULL,
  59. /* 0x0c */ "MIDI Reverb",
  60. /* 0x0d */ "MIDI Chorus",
  61. /* 0x0e */ NULL,
  62. /* 0x0f */ NULL
  63. };
  64. static char *creative_ins[16] = {
  65. /* 0x00 */ "AC97 Left",
  66. /* 0x01 */ "AC97 Right",
  67. /* 0x02 */ "TTL IEC958 Left",
  68. /* 0x03 */ "TTL IEC958 Right",
  69. /* 0x04 */ "Zoom Video Left",
  70. /* 0x05 */ "Zoom Video Right",
  71. /* 0x06 */ "Optical IEC958 Left",
  72. /* 0x07 */ "Optical IEC958 Right",
  73. /* 0x08 */ "Line/Mic 1 Left",
  74. /* 0x09 */ "Line/Mic 1 Right",
  75. /* 0x0a */ "Coaxial IEC958 Left",
  76. /* 0x0b */ "Coaxial IEC958 Right",
  77. /* 0x0c */ "Line/Mic 2 Left",
  78. /* 0x0d */ "Line/Mic 2 Right",
  79. /* 0x0e */ NULL,
  80. /* 0x0f */ NULL
  81. };
  82. static char *audigy_ins[16] = {
  83. /* 0x00 */ "AC97 Left",
  84. /* 0x01 */ "AC97 Right",
  85. /* 0x02 */ "Audigy CD Left",
  86. /* 0x03 */ "Audigy CD Right",
  87. /* 0x04 */ "Optical IEC958 Left",
  88. /* 0x05 */ "Optical IEC958 Right",
  89. /* 0x06 */ NULL,
  90. /* 0x07 */ NULL,
  91. /* 0x08 */ "Line/Mic 2 Left",
  92. /* 0x09 */ "Line/Mic 2 Right",
  93. /* 0x0a */ "SPDIF Left",
  94. /* 0x0b */ "SPDIF Right",
  95. /* 0x0c */ "Aux2 Left",
  96. /* 0x0d */ "Aux2 Right",
  97. /* 0x0e */ NULL,
  98. /* 0x0f */ NULL
  99. };
  100. static char *creative_outs[32] = {
  101. /* 0x00 */ "AC97 Left",
  102. /* 0x01 */ "AC97 Right",
  103. /* 0x02 */ "Optical IEC958 Left",
  104. /* 0x03 */ "Optical IEC958 Right",
  105. /* 0x04 */ "Center",
  106. /* 0x05 */ "LFE",
  107. /* 0x06 */ "Headphone Left",
  108. /* 0x07 */ "Headphone Right",
  109. /* 0x08 */ "Surround Left",
  110. /* 0x09 */ "Surround Right",
  111. /* 0x0a */ "PCM Capture Left",
  112. /* 0x0b */ "PCM Capture Right",
  113. /* 0x0c */ "MIC Capture",
  114. /* 0x0d */ "AC97 Surround Left",
  115. /* 0x0e */ "AC97 Surround Right",
  116. /* 0x0f */ NULL,
  117. /* 0x10 */ NULL,
  118. /* 0x11 */ "Analog Center",
  119. /* 0x12 */ "Analog LFE",
  120. /* 0x13 */ NULL,
  121. /* 0x14 */ NULL,
  122. /* 0x15 */ NULL,
  123. /* 0x16 */ NULL,
  124. /* 0x17 */ NULL,
  125. /* 0x18 */ NULL,
  126. /* 0x19 */ NULL,
  127. /* 0x1a */ NULL,
  128. /* 0x1b */ NULL,
  129. /* 0x1c */ NULL,
  130. /* 0x1d */ NULL,
  131. /* 0x1e */ NULL,
  132. /* 0x1f */ NULL,
  133. };
  134. static char *audigy_outs[32] = {
  135. /* 0x00 */ "Digital Front Left",
  136. /* 0x01 */ "Digital Front Right",
  137. /* 0x02 */ "Digital Center",
  138. /* 0x03 */ "Digital LEF",
  139. /* 0x04 */ "Headphone Left",
  140. /* 0x05 */ "Headphone Right",
  141. /* 0x06 */ "Digital Rear Left",
  142. /* 0x07 */ "Digital Rear Right",
  143. /* 0x08 */ "Front Left",
  144. /* 0x09 */ "Front Right",
  145. /* 0x0a */ "Center",
  146. /* 0x0b */ "LFE",
  147. /* 0x0c */ NULL,
  148. /* 0x0d */ NULL,
  149. /* 0x0e */ "Rear Left",
  150. /* 0x0f */ "Rear Right",
  151. /* 0x10 */ "AC97 Front Left",
  152. /* 0x11 */ "AC97 Front Right",
  153. /* 0x12 */ "ADC Caputre Left",
  154. /* 0x13 */ "ADC Capture Right",
  155. /* 0x14 */ NULL,
  156. /* 0x15 */ NULL,
  157. /* 0x16 */ NULL,
  158. /* 0x17 */ NULL,
  159. /* 0x18 */ NULL,
  160. /* 0x19 */ NULL,
  161. /* 0x1a */ NULL,
  162. /* 0x1b */ NULL,
  163. /* 0x1c */ NULL,
  164. /* 0x1d */ NULL,
  165. /* 0x1e */ NULL,
  166. /* 0x1f */ NULL,
  167. };
  168. static const u32 bass_table[41][5] = {
  169. { 0x3e4f844f, 0x84ed4cc3, 0x3cc69927, 0x7b03553a, 0xc4da8486 },
  170. { 0x3e69a17a, 0x84c280fb, 0x3cd77cd4, 0x7b2f2a6f, 0xc4b08d1d },
  171. { 0x3e82ff42, 0x849991d5, 0x3ce7466b, 0x7b5917c6, 0xc48863ee },
  172. { 0x3e9bab3c, 0x847267f0, 0x3cf5ffe8, 0x7b813560, 0xc461f22c },
  173. { 0x3eb3b275, 0x844ced29, 0x3d03b295, 0x7ba79a1c, 0xc43d223b },
  174. { 0x3ecb2174, 0x84290c8b, 0x3d106714, 0x7bcc5ba3, 0xc419dfa5 },
  175. { 0x3ee2044b, 0x8406b244, 0x3d1c2561, 0x7bef8e77, 0xc3f8170f },
  176. { 0x3ef86698, 0x83e5cb96, 0x3d26f4d8, 0x7c114600, 0xc3d7b625 },
  177. { 0x3f0e5390, 0x83c646c9, 0x3d30dc39, 0x7c319498, 0xc3b8ab97 },
  178. { 0x3f23d60b, 0x83a81321, 0x3d39e1af, 0x7c508b9c, 0xc39ae704 },
  179. { 0x3f38f884, 0x838b20d2, 0x3d420ad2, 0x7c6e3b75, 0xc37e58f1 },
  180. { 0x3f4dc52c, 0x836f60ef, 0x3d495cab, 0x7c8ab3a6, 0xc362f2be },
  181. { 0x3f6245e8, 0x8354c565, 0x3d4fdbb8, 0x7ca602d6, 0xc348a69b },
  182. { 0x3f76845f, 0x833b40ec, 0x3d558bf0, 0x7cc036df, 0xc32f677c },
  183. { 0x3f8a8a03, 0x8322c6fb, 0x3d5a70c4, 0x7cd95cd7, 0xc317290b },
  184. { 0x3f9e6014, 0x830b4bc3, 0x3d5e8d25, 0x7cf1811a, 0xc2ffdfa5 },
  185. { 0x3fb20fae, 0x82f4c420, 0x3d61e37f, 0x7d08af56, 0xc2e9804a },
  186. { 0x3fc5a1cc, 0x82df2592, 0x3d6475c3, 0x7d1ef294, 0xc2d40096 },
  187. { 0x3fd91f55, 0x82ca6632, 0x3d664564, 0x7d345541, 0xc2bf56b9 },
  188. { 0x3fec9120, 0x82b67cac, 0x3d675356, 0x7d48e138, 0xc2ab796e },
  189. { 0x40000000, 0x82a36037, 0x3d67a012, 0x7d5c9fc9, 0xc2985fee },
  190. { 0x401374c7, 0x8291088a, 0x3d672b93, 0x7d6f99c3, 0xc28601f2 },
  191. { 0x4026f857, 0x827f6dd7, 0x3d65f559, 0x7d81d77c, 0xc27457a3 },
  192. { 0x403a939f, 0x826e88c5, 0x3d63fc63, 0x7d9360d4, 0xc2635996 },
  193. { 0x404e4faf, 0x825e5266, 0x3d613f32, 0x7da43d42, 0xc25300c6 },
  194. { 0x406235ba, 0x824ec434, 0x3d5dbbc3, 0x7db473d7, 0xc243468e },
  195. { 0x40764f1f, 0x823fd80c, 0x3d596f8f, 0x7dc40b44, 0xc23424a2 },
  196. { 0x408aa576, 0x82318824, 0x3d545787, 0x7dd309e2, 0xc2259509 },
  197. { 0x409f4296, 0x8223cf0b, 0x3d4e7012, 0x7de175b5, 0xc2179218 },
  198. { 0x40b430a0, 0x8216a7a1, 0x3d47b505, 0x7def5475, 0xc20a1670 },
  199. { 0x40c97a0a, 0x820a0d12, 0x3d4021a1, 0x7dfcab8d, 0xc1fd1cf5 },
  200. { 0x40df29a6, 0x81fdfad6, 0x3d37b08d, 0x7e098028, 0xc1f0a0ca },
  201. { 0x40f54ab1, 0x81f26ca9, 0x3d2e5bd1, 0x7e15d72b, 0xc1e49d52 },
  202. { 0x410be8da, 0x81e75e89, 0x3d241cce, 0x7e21b544, 0xc1d90e24 },
  203. { 0x41231051, 0x81dcccb3, 0x3d18ec37, 0x7e2d1ee6, 0xc1cdef10 },
  204. { 0x413acdd0, 0x81d2b39e, 0x3d0cc20a, 0x7e38184e, 0xc1c33c13 },
  205. { 0x41532ea7, 0x81c90ffb, 0x3cff9585, 0x7e42a58b, 0xc1b8f15a },
  206. { 0x416c40cd, 0x81bfdeb2, 0x3cf15d21, 0x7e4cca7c, 0xc1af0b3f },
  207. { 0x418612ea, 0x81b71cdc, 0x3ce20e85, 0x7e568ad3, 0xc1a58640 },
  208. { 0x41a0b465, 0x81aec7c5, 0x3cd19e7c, 0x7e5fea1e, 0xc19c5f03 },
  209. { 0x41bc3573, 0x81a6dcea, 0x3cc000e9, 0x7e68ebc2, 0xc1939250 }
  210. };
  211. static const u32 treble_table[41][5] = {
  212. { 0x0125cba9, 0xfed5debd, 0x00599b6c, 0x0d2506da, 0xfa85b354 },
  213. { 0x0142f67e, 0xfeb03163, 0x0066cd0f, 0x0d14c69d, 0xfa914473 },
  214. { 0x016328bd, 0xfe860158, 0x0075b7f2, 0x0d03eb27, 0xfa9d32d2 },
  215. { 0x0186b438, 0xfe56c982, 0x00869234, 0x0cf27048, 0xfaa97fca },
  216. { 0x01adf358, 0xfe21f5fe, 0x00999842, 0x0ce051c2, 0xfab62ca5 },
  217. { 0x01d949fa, 0xfde6e287, 0x00af0d8d, 0x0ccd8b4a, 0xfac33aa7 },
  218. { 0x02092669, 0xfda4d8bf, 0x00c73d4c, 0x0cba1884, 0xfad0ab07 },
  219. { 0x023e0268, 0xfd5b0e4a, 0x00e27b54, 0x0ca5f509, 0xfade7ef2 },
  220. { 0x0278645c, 0xfd08a2b0, 0x01012509, 0x0c911c63, 0xfaecb788 },
  221. { 0x02b8e091, 0xfcac9d1a, 0x0123a262, 0x0c7b8a14, 0xfafb55df },
  222. { 0x03001a9a, 0xfc45e9ce, 0x014a6709, 0x0c65398f, 0xfb0a5aff },
  223. { 0x034ec6d7, 0xfbd3576b, 0x0175f397, 0x0c4e2643, 0xfb19c7e4 },
  224. { 0x03a5ac15, 0xfb5393ee, 0x01a6d6ed, 0x0c364b94, 0xfb299d7c },
  225. { 0x0405a562, 0xfac52968, 0x01ddafae, 0x0c1da4e2, 0xfb39dca5 },
  226. { 0x046fa3fe, 0xfa267a66, 0x021b2ddd, 0x0c042d8d, 0xfb4a8631 },
  227. { 0x04e4b17f, 0xf975be0f, 0x0260149f, 0x0be9e0f2, 0xfb5b9ae0 },
  228. { 0x0565f220, 0xf8b0fbe5, 0x02ad3c29, 0x0bceba73, 0xfb6d1b60 },
  229. { 0x05f4a745, 0xf7d60722, 0x030393d4, 0x0bb2b578, 0xfb7f084d },
  230. { 0x06923236, 0xf6e279bd, 0x03642465, 0x0b95cd75, 0xfb916233 },
  231. { 0x07401713, 0xf5d3aef9, 0x03d01283, 0x0b77fded, 0xfba42984 },
  232. { 0x08000000, 0xf4a6bd88, 0x0448a161, 0x0b594278, 0xfbb75e9f },
  233. { 0x08d3c097, 0xf3587131, 0x04cf35a4, 0x0b3996c9, 0xfbcb01cb },
  234. { 0x09bd59a2, 0xf1e543f9, 0x05655880, 0x0b18f6b2, 0xfbdf1333 },
  235. { 0x0abefd0f, 0xf04956ca, 0x060cbb12, 0x0af75e2c, 0xfbf392e8 },
  236. { 0x0bdb123e, 0xee806984, 0x06c739fe, 0x0ad4c962, 0xfc0880dd },
  237. { 0x0d143a94, 0xec85d287, 0x0796e150, 0x0ab134b0, 0xfc1ddce5 },
  238. { 0x0e6d5664, 0xea547598, 0x087df0a0, 0x0a8c9cb6, 0xfc33a6ad },
  239. { 0x0fe98a2a, 0xe7e6ba35, 0x097edf83, 0x0a66fe5b, 0xfc49ddc2 },
  240. { 0x118c4421, 0xe536813a, 0x0a9c6248, 0x0a4056d7, 0xfc608185 },
  241. { 0x1359422e, 0xe23d19eb, 0x0bd96efb, 0x0a18a3bf, 0xfc77912c },
  242. { 0x1554982b, 0xdef33645, 0x0d3942bd, 0x09efe312, 0xfc8f0bc1 },
  243. { 0x1782b68a, 0xdb50deb1, 0x0ebf676d, 0x09c6133f, 0xfca6f019 },
  244. { 0x19e8715d, 0xd74d64fd, 0x106fb999, 0x099b3337, 0xfcbf3cd6 },
  245. { 0x1c8b07b8, 0xd2df56ab, 0x124e6ec8, 0x096f4274, 0xfcd7f060 },
  246. { 0x1f702b6d, 0xcdfc6e92, 0x14601c10, 0x0942410b, 0xfcf108e5 },
  247. { 0x229e0933, 0xc89985cd, 0x16a9bcfa, 0x09142fb5, 0xfd0a8451 },
  248. { 0x261b5118, 0xc2aa8409, 0x1930bab6, 0x08e50fdc, 0xfd24604d },
  249. { 0x29ef3f5d, 0xbc224f28, 0x1bfaf396, 0x08b4e3aa, 0xfd3e9a3b },
  250. { 0x2e21a59b, 0xb4f2ba46, 0x1f0ec2d6, 0x0883ae15, 0xfd592f33 },
  251. { 0x32baf44b, 0xad0c7429, 0x227308a3, 0x085172eb, 0xfd741bfd },
  252. { 0x37c4448b, 0xa45ef51d, 0x262f3267, 0x081e36dc, 0xfd8f5d14 }
  253. };
  254. static const u32 db_table[101] = {
  255. 0x00000000, 0x01571f82, 0x01674b41, 0x01783a1b, 0x0189f540,
  256. 0x019c8651, 0x01aff763, 0x01c45306, 0x01d9a446, 0x01eff6b8,
  257. 0x0207567a, 0x021fd03d, 0x0239714c, 0x02544792, 0x027061a1,
  258. 0x028dcebb, 0x02ac9edc, 0x02cce2bf, 0x02eeabe8, 0x03120cb0,
  259. 0x0337184e, 0x035de2df, 0x03868173, 0x03b10a18, 0x03dd93e9,
  260. 0x040c3713, 0x043d0cea, 0x04702ff3, 0x04a5bbf2, 0x04ddcdfb,
  261. 0x0518847f, 0x0555ff62, 0x05966005, 0x05d9c95d, 0x06206005,
  262. 0x066a4a52, 0x06b7b067, 0x0708bc4c, 0x075d9a01, 0x07b6779d,
  263. 0x08138561, 0x0874f5d5, 0x08dafde1, 0x0945d4ed, 0x09b5b4fd,
  264. 0x0a2adad1, 0x0aa58605, 0x0b25f936, 0x0bac7a24, 0x0c3951d8,
  265. 0x0ccccccc, 0x0d673b17, 0x0e08f093, 0x0eb24510, 0x0f639481,
  266. 0x101d3f2d, 0x10dfa9e6, 0x11ab3e3f, 0x12806ac3, 0x135fa333,
  267. 0x144960c5, 0x153e2266, 0x163e6cfe, 0x174acbb7, 0x1863d04d,
  268. 0x198a1357, 0x1abe349f, 0x1c00db77, 0x1d52b712, 0x1eb47ee6,
  269. 0x2026f30f, 0x21aadcb6, 0x23410e7e, 0x24ea64f9, 0x26a7c71d,
  270. 0x287a26c4, 0x2a62812c, 0x2c61df84, 0x2e795779, 0x30aa0bcf,
  271. 0x32f52cfe, 0x355bf9d8, 0x37dfc033, 0x3a81dda4, 0x3d43c038,
  272. 0x4026e73c, 0x432ce40f, 0x46575af8, 0x49a8040f, 0x4d20ac2a,
  273. 0x50c335d3, 0x54919a57, 0x588dead1, 0x5cba514a, 0x611911ea,
  274. 0x65ac8c2f, 0x6a773c39, 0x6f7bbc23, 0x74bcc56c, 0x7a3d3272,
  275. 0x7fffffff,
  276. };
  277. static const u32 onoff_table[2] = {
  278. 0x00000000, 0x00000001
  279. };
  280. /*
  281. */
  282. static inline mm_segment_t snd_enter_user(void)
  283. {
  284. mm_segment_t fs = get_fs();
  285. set_fs(get_ds());
  286. return fs;
  287. }
  288. static inline void snd_leave_user(mm_segment_t fs)
  289. {
  290. set_fs(fs);
  291. }
  292. /*
  293. * controls
  294. */
  295. static int snd_emu10k1_gpr_ctl_info(snd_kcontrol_t *kcontrol, snd_ctl_elem_info_t * uinfo)
  296. {
  297. snd_emu10k1_fx8010_ctl_t *ctl = (snd_emu10k1_fx8010_ctl_t *)kcontrol->private_value;
  298. if (ctl->min == 0 && ctl->max == 1)
  299. uinfo->type = SNDRV_CTL_ELEM_TYPE_BOOLEAN;
  300. else
  301. uinfo->type = SNDRV_CTL_ELEM_TYPE_INTEGER;
  302. uinfo->count = ctl->vcount;
  303. uinfo->value.integer.min = ctl->min;
  304. uinfo->value.integer.max = ctl->max;
  305. return 0;
  306. }
  307. static int snd_emu10k1_gpr_ctl_get(snd_kcontrol_t * kcontrol, snd_ctl_elem_value_t * ucontrol)
  308. {
  309. emu10k1_t *emu = snd_kcontrol_chip(kcontrol);
  310. snd_emu10k1_fx8010_ctl_t *ctl = (snd_emu10k1_fx8010_ctl_t *)kcontrol->private_value;
  311. unsigned long flags;
  312. unsigned int i;
  313. spin_lock_irqsave(&emu->reg_lock, flags);
  314. for (i = 0; i < ctl->vcount; i++)
  315. ucontrol->value.integer.value[i] = ctl->value[i];
  316. spin_unlock_irqrestore(&emu->reg_lock, flags);
  317. return 0;
  318. }
  319. static int snd_emu10k1_gpr_ctl_put(snd_kcontrol_t * kcontrol, snd_ctl_elem_value_t * ucontrol)
  320. {
  321. emu10k1_t *emu = snd_kcontrol_chip(kcontrol);
  322. snd_emu10k1_fx8010_ctl_t *ctl = (snd_emu10k1_fx8010_ctl_t *)kcontrol->private_value;
  323. unsigned long flags;
  324. unsigned int nval, val;
  325. unsigned int i, j;
  326. int change = 0;
  327. spin_lock_irqsave(&emu->reg_lock, flags);
  328. for (i = 0; i < ctl->vcount; i++) {
  329. nval = ucontrol->value.integer.value[i];
  330. if (nval < ctl->min)
  331. nval = ctl->min;
  332. if (nval > ctl->max)
  333. nval = ctl->max;
  334. if (nval != ctl->value[i])
  335. change = 1;
  336. val = ctl->value[i] = nval;
  337. switch (ctl->translation) {
  338. case EMU10K1_GPR_TRANSLATION_NONE:
  339. snd_emu10k1_ptr_write(emu, emu->gpr_base + ctl->gpr[i], 0, val);
  340. break;
  341. case EMU10K1_GPR_TRANSLATION_TABLE100:
  342. snd_emu10k1_ptr_write(emu, emu->gpr_base + ctl->gpr[i], 0, db_table[val]);
  343. break;
  344. case EMU10K1_GPR_TRANSLATION_BASS:
  345. if ((ctl->count % 5) != 0 || (ctl->count / 5) != ctl->vcount) {
  346. change = -EIO;
  347. goto __error;
  348. }
  349. for (j = 0; j < 5; j++)
  350. snd_emu10k1_ptr_write(emu, emu->gpr_base + ctl->gpr[j * ctl->vcount + i], 0, bass_table[val][j]);
  351. break;
  352. case EMU10K1_GPR_TRANSLATION_TREBLE:
  353. if ((ctl->count % 5) != 0 || (ctl->count / 5) != ctl->vcount) {
  354. change = -EIO;
  355. goto __error;
  356. }
  357. for (j = 0; j < 5; j++)
  358. snd_emu10k1_ptr_write(emu, emu->gpr_base + ctl->gpr[j * ctl->vcount + i], 0, treble_table[val][j]);
  359. break;
  360. case EMU10K1_GPR_TRANSLATION_ONOFF:
  361. snd_emu10k1_ptr_write(emu, emu->gpr_base + ctl->gpr[i], 0, onoff_table[val]);
  362. break;
  363. }
  364. }
  365. __error:
  366. spin_unlock_irqrestore(&emu->reg_lock, flags);
  367. return change;
  368. }
  369. /*
  370. * Interrupt handler
  371. */
  372. static void snd_emu10k1_fx8010_interrupt(emu10k1_t *emu)
  373. {
  374. snd_emu10k1_fx8010_irq_t *irq, *nirq;
  375. irq = emu->fx8010.irq_handlers;
  376. while (irq) {
  377. nirq = irq->next; /* irq ptr can be removed from list */
  378. if (snd_emu10k1_ptr_read(emu, emu->gpr_base + irq->gpr_running, 0) & 0xffff0000) {
  379. if (irq->handler)
  380. irq->handler(emu, irq->private_data);
  381. snd_emu10k1_ptr_write(emu, emu->gpr_base + irq->gpr_running, 0, 1);
  382. }
  383. irq = nirq;
  384. }
  385. }
  386. int snd_emu10k1_fx8010_register_irq_handler(emu10k1_t *emu,
  387. snd_fx8010_irq_handler_t *handler,
  388. unsigned char gpr_running,
  389. void *private_data,
  390. snd_emu10k1_fx8010_irq_t **r_irq)
  391. {
  392. snd_emu10k1_fx8010_irq_t *irq;
  393. unsigned long flags;
  394. irq = kmalloc(sizeof(*irq), GFP_ATOMIC);
  395. if (irq == NULL)
  396. return -ENOMEM;
  397. irq->handler = handler;
  398. irq->gpr_running = gpr_running;
  399. irq->private_data = private_data;
  400. irq->next = NULL;
  401. spin_lock_irqsave(&emu->fx8010.irq_lock, flags);
  402. if (emu->fx8010.irq_handlers == NULL) {
  403. emu->fx8010.irq_handlers = irq;
  404. emu->dsp_interrupt = snd_emu10k1_fx8010_interrupt;
  405. snd_emu10k1_intr_enable(emu, INTE_FXDSPENABLE);
  406. } else {
  407. irq->next = emu->fx8010.irq_handlers;
  408. emu->fx8010.irq_handlers = irq;
  409. }
  410. spin_unlock_irqrestore(&emu->fx8010.irq_lock, flags);
  411. if (r_irq)
  412. *r_irq = irq;
  413. return 0;
  414. }
  415. int snd_emu10k1_fx8010_unregister_irq_handler(emu10k1_t *emu,
  416. snd_emu10k1_fx8010_irq_t *irq)
  417. {
  418. snd_emu10k1_fx8010_irq_t *tmp;
  419. unsigned long flags;
  420. spin_lock_irqsave(&emu->fx8010.irq_lock, flags);
  421. if ((tmp = emu->fx8010.irq_handlers) == irq) {
  422. emu->fx8010.irq_handlers = tmp->next;
  423. if (emu->fx8010.irq_handlers == NULL) {
  424. snd_emu10k1_intr_disable(emu, INTE_FXDSPENABLE);
  425. emu->dsp_interrupt = NULL;
  426. }
  427. } else {
  428. while (tmp && tmp->next != irq)
  429. tmp = tmp->next;
  430. if (tmp)
  431. tmp->next = tmp->next->next;
  432. }
  433. spin_unlock_irqrestore(&emu->fx8010.irq_lock, flags);
  434. kfree(irq);
  435. return 0;
  436. }
  437. /*************************************************************************
  438. * EMU10K1 effect manager
  439. *************************************************************************/
  440. static void snd_emu10k1_write_op(emu10k1_fx8010_code_t *icode, unsigned int *ptr,
  441. u32 op, u32 r, u32 a, u32 x, u32 y)
  442. {
  443. u_int32_t *code;
  444. snd_assert(*ptr < 512, return);
  445. code = (u_int32_t __force *)icode->code + (*ptr) * 2;
  446. set_bit(*ptr, icode->code_valid);
  447. code[0] = ((x & 0x3ff) << 10) | (y & 0x3ff);
  448. code[1] = ((op & 0x0f) << 20) | ((r & 0x3ff) << 10) | (a & 0x3ff);
  449. (*ptr)++;
  450. }
  451. #define OP(icode, ptr, op, r, a, x, y) \
  452. snd_emu10k1_write_op(icode, ptr, op, r, a, x, y)
  453. static void snd_emu10k1_audigy_write_op(emu10k1_fx8010_code_t *icode, unsigned int *ptr,
  454. u32 op, u32 r, u32 a, u32 x, u32 y)
  455. {
  456. u_int32_t *code;
  457. snd_assert(*ptr < 1024, return);
  458. code = (u_int32_t __force *)icode->code + (*ptr) * 2;
  459. set_bit(*ptr, icode->code_valid);
  460. code[0] = ((x & 0x7ff) << 12) | (y & 0x7ff);
  461. code[1] = ((op & 0x0f) << 24) | ((r & 0x7ff) << 12) | (a & 0x7ff);
  462. (*ptr)++;
  463. }
  464. #define A_OP(icode, ptr, op, r, a, x, y) \
  465. snd_emu10k1_audigy_write_op(icode, ptr, op, r, a, x, y)
  466. static void snd_emu10k1_efx_write(emu10k1_t *emu, unsigned int pc, unsigned int data)
  467. {
  468. pc += emu->audigy ? A_MICROCODEBASE : MICROCODEBASE;
  469. snd_emu10k1_ptr_write(emu, pc, 0, data);
  470. }
  471. unsigned int snd_emu10k1_efx_read(emu10k1_t *emu, unsigned int pc)
  472. {
  473. pc += emu->audigy ? A_MICROCODEBASE : MICROCODEBASE;
  474. return snd_emu10k1_ptr_read(emu, pc, 0);
  475. }
  476. static int snd_emu10k1_gpr_poke(emu10k1_t *emu, emu10k1_fx8010_code_t *icode)
  477. {
  478. int gpr;
  479. u32 val;
  480. for (gpr = 0; gpr < (emu->audigy ? 0x200 : 0x100); gpr++) {
  481. if (!test_bit(gpr, icode->gpr_valid))
  482. continue;
  483. if (get_user(val, &icode->gpr_map[gpr]))
  484. return -EFAULT;
  485. snd_emu10k1_ptr_write(emu, emu->gpr_base + gpr, 0, val);
  486. }
  487. return 0;
  488. }
  489. static int snd_emu10k1_gpr_peek(emu10k1_t *emu, emu10k1_fx8010_code_t *icode)
  490. {
  491. int gpr;
  492. u32 val;
  493. for (gpr = 0; gpr < (emu->audigy ? 0x200 : 0x100); gpr++) {
  494. set_bit(gpr, icode->gpr_valid);
  495. val = snd_emu10k1_ptr_read(emu, emu->gpr_base + gpr, 0);
  496. if (put_user(val, &icode->gpr_map[gpr]))
  497. return -EFAULT;
  498. }
  499. return 0;
  500. }
  501. static int snd_emu10k1_tram_poke(emu10k1_t *emu, emu10k1_fx8010_code_t *icode)
  502. {
  503. int tram;
  504. u32 addr, val;
  505. for (tram = 0; tram < (emu->audigy ? 0x100 : 0xa0); tram++) {
  506. if (!test_bit(tram, icode->tram_valid))
  507. continue;
  508. if (get_user(val, &icode->tram_data_map[tram]) ||
  509. get_user(addr, &icode->tram_addr_map[tram]))
  510. return -EFAULT;
  511. snd_emu10k1_ptr_write(emu, TANKMEMDATAREGBASE + tram, 0, val);
  512. if (!emu->audigy) {
  513. snd_emu10k1_ptr_write(emu, TANKMEMADDRREGBASE + tram, 0, addr);
  514. } else {
  515. snd_emu10k1_ptr_write(emu, TANKMEMADDRREGBASE + tram, 0, addr << 12);
  516. snd_emu10k1_ptr_write(emu, A_TANKMEMCTLREGBASE + tram, 0, addr >> 20);
  517. }
  518. }
  519. return 0;
  520. }
  521. static int snd_emu10k1_tram_peek(emu10k1_t *emu, emu10k1_fx8010_code_t *icode)
  522. {
  523. int tram;
  524. u32 val, addr;
  525. memset(icode->tram_valid, 0, sizeof(icode->tram_valid));
  526. for (tram = 0; tram < (emu->audigy ? 0x100 : 0xa0); tram++) {
  527. set_bit(tram, icode->tram_valid);
  528. val = snd_emu10k1_ptr_read(emu, TANKMEMDATAREGBASE + tram, 0);
  529. if (!emu->audigy) {
  530. addr = snd_emu10k1_ptr_read(emu, TANKMEMADDRREGBASE + tram, 0);
  531. } else {
  532. addr = snd_emu10k1_ptr_read(emu, TANKMEMADDRREGBASE + tram, 0) >> 12;
  533. addr |= snd_emu10k1_ptr_read(emu, A_TANKMEMCTLREGBASE + tram, 0) << 20;
  534. }
  535. if (put_user(val, &icode->tram_data_map[tram]) ||
  536. put_user(addr, &icode->tram_addr_map[tram]))
  537. return -EFAULT;
  538. }
  539. return 0;
  540. }
  541. static int snd_emu10k1_code_poke(emu10k1_t *emu, emu10k1_fx8010_code_t *icode)
  542. {
  543. u32 pc, lo, hi;
  544. for (pc = 0; pc < (emu->audigy ? 2*1024 : 2*512); pc += 2) {
  545. if (!test_bit(pc / 2, icode->code_valid))
  546. continue;
  547. if (get_user(lo, &icode->code[pc + 0]) ||
  548. get_user(hi, &icode->code[pc + 1]))
  549. return -EFAULT;
  550. snd_emu10k1_efx_write(emu, pc + 0, lo);
  551. snd_emu10k1_efx_write(emu, pc + 1, hi);
  552. }
  553. return 0;
  554. }
  555. static int snd_emu10k1_code_peek(emu10k1_t *emu, emu10k1_fx8010_code_t *icode)
  556. {
  557. u32 pc;
  558. memset(icode->code_valid, 0, sizeof(icode->code_valid));
  559. for (pc = 0; pc < (emu->audigy ? 2*1024 : 2*512); pc += 2) {
  560. set_bit(pc / 2, icode->code_valid);
  561. if (put_user(snd_emu10k1_efx_read(emu, pc + 0), &icode->code[pc + 0]))
  562. return -EFAULT;
  563. if (put_user(snd_emu10k1_efx_read(emu, pc + 1), &icode->code[pc + 1]))
  564. return -EFAULT;
  565. }
  566. return 0;
  567. }
  568. static snd_emu10k1_fx8010_ctl_t *snd_emu10k1_look_for_ctl(emu10k1_t *emu, snd_ctl_elem_id_t *id)
  569. {
  570. snd_emu10k1_fx8010_ctl_t *ctl;
  571. snd_kcontrol_t *kcontrol;
  572. struct list_head *list;
  573. list_for_each(list, &emu->fx8010.gpr_ctl) {
  574. ctl = emu10k1_gpr_ctl(list);
  575. kcontrol = ctl->kcontrol;
  576. if (kcontrol->id.iface == id->iface &&
  577. !strcmp(kcontrol->id.name, id->name) &&
  578. kcontrol->id.index == id->index)
  579. return ctl;
  580. }
  581. return NULL;
  582. }
  583. static int snd_emu10k1_verify_controls(emu10k1_t *emu, emu10k1_fx8010_code_t *icode)
  584. {
  585. unsigned int i;
  586. snd_ctl_elem_id_t __user *_id;
  587. snd_ctl_elem_id_t id;
  588. emu10k1_fx8010_control_gpr_t __user *_gctl;
  589. emu10k1_fx8010_control_gpr_t *gctl;
  590. int err;
  591. for (i = 0, _id = icode->gpr_del_controls;
  592. i < icode->gpr_del_control_count; i++, _id++) {
  593. if (copy_from_user(&id, _id, sizeof(id)))
  594. return -EFAULT;
  595. if (snd_emu10k1_look_for_ctl(emu, &id) == NULL)
  596. return -ENOENT;
  597. }
  598. gctl = kmalloc(sizeof(*gctl), GFP_KERNEL);
  599. if (! gctl)
  600. return -ENOMEM;
  601. err = 0;
  602. for (i = 0, _gctl = icode->gpr_add_controls;
  603. i < icode->gpr_add_control_count; i++, _gctl++) {
  604. if (copy_from_user(gctl, _gctl, sizeof(*gctl))) {
  605. err = -EFAULT;
  606. goto __error;
  607. }
  608. if (snd_emu10k1_look_for_ctl(emu, &gctl->id))
  609. continue;
  610. down_read(&emu->card->controls_rwsem);
  611. if (snd_ctl_find_id(emu->card, &gctl->id) != NULL) {
  612. up_read(&emu->card->controls_rwsem);
  613. err = -EEXIST;
  614. goto __error;
  615. }
  616. up_read(&emu->card->controls_rwsem);
  617. if (gctl->id.iface != SNDRV_CTL_ELEM_IFACE_MIXER &&
  618. gctl->id.iface != SNDRV_CTL_ELEM_IFACE_PCM) {
  619. err = -EINVAL;
  620. goto __error;
  621. }
  622. }
  623. for (i = 0, _gctl = icode->gpr_list_controls;
  624. i < icode->gpr_list_control_count; i++, _gctl++) {
  625. /* FIXME: we need to check the WRITE access */
  626. if (copy_from_user(gctl, _gctl, sizeof(*gctl))) {
  627. err = -EFAULT;
  628. goto __error;
  629. }
  630. }
  631. __error:
  632. kfree(gctl);
  633. return err;
  634. }
  635. static void snd_emu10k1_ctl_private_free(snd_kcontrol_t *kctl)
  636. {
  637. snd_emu10k1_fx8010_ctl_t *ctl;
  638. ctl = (snd_emu10k1_fx8010_ctl_t *)kctl->private_value;
  639. kctl->private_value = 0;
  640. list_del(&ctl->list);
  641. kfree(ctl);
  642. }
  643. static int snd_emu10k1_add_controls(emu10k1_t *emu, emu10k1_fx8010_code_t *icode)
  644. {
  645. unsigned int i, j;
  646. emu10k1_fx8010_control_gpr_t __user *_gctl;
  647. emu10k1_fx8010_control_gpr_t *gctl;
  648. snd_emu10k1_fx8010_ctl_t *ctl, *nctl;
  649. snd_kcontrol_new_t knew;
  650. snd_kcontrol_t *kctl;
  651. snd_ctl_elem_value_t *val;
  652. int err = 0;
  653. val = (snd_ctl_elem_value_t *)kmalloc(sizeof(*val), GFP_KERNEL);
  654. gctl = kmalloc(sizeof(*gctl), GFP_KERNEL);
  655. nctl = kmalloc(sizeof(*nctl), GFP_KERNEL);
  656. if (!val || !gctl || !nctl) {
  657. err = -ENOMEM;
  658. goto __error;
  659. }
  660. for (i = 0, _gctl = icode->gpr_add_controls;
  661. i < icode->gpr_add_control_count; i++, _gctl++) {
  662. if (copy_from_user(gctl, _gctl, sizeof(*gctl))) {
  663. err = -EFAULT;
  664. goto __error;
  665. }
  666. if (gctl->id.iface != SNDRV_CTL_ELEM_IFACE_MIXER &&
  667. gctl->id.iface != SNDRV_CTL_ELEM_IFACE_PCM) {
  668. err = -EINVAL;
  669. goto __error;
  670. }
  671. if (! gctl->id.name[0]) {
  672. err = -EINVAL;
  673. goto __error;
  674. }
  675. ctl = snd_emu10k1_look_for_ctl(emu, &gctl->id);
  676. memset(&knew, 0, sizeof(knew));
  677. knew.iface = gctl->id.iface;
  678. knew.name = gctl->id.name;
  679. knew.index = gctl->id.index;
  680. knew.device = gctl->id.device;
  681. knew.subdevice = gctl->id.subdevice;
  682. knew.info = snd_emu10k1_gpr_ctl_info;
  683. knew.get = snd_emu10k1_gpr_ctl_get;
  684. knew.put = snd_emu10k1_gpr_ctl_put;
  685. memset(nctl, 0, sizeof(*nctl));
  686. nctl->vcount = gctl->vcount;
  687. nctl->count = gctl->count;
  688. for (j = 0; j < 32; j++) {
  689. nctl->gpr[j] = gctl->gpr[j];
  690. nctl->value[j] = ~gctl->value[j]; /* inverted, we want to write new value in gpr_ctl_put() */
  691. val->value.integer.value[j] = gctl->value[j];
  692. }
  693. nctl->min = gctl->min;
  694. nctl->max = gctl->max;
  695. nctl->translation = gctl->translation;
  696. if (ctl == NULL) {
  697. ctl = (snd_emu10k1_fx8010_ctl_t *)kmalloc(sizeof(*ctl), GFP_KERNEL);
  698. if (ctl == NULL) {
  699. err = -ENOMEM;
  700. goto __error;
  701. }
  702. knew.private_value = (unsigned long)ctl;
  703. *ctl = *nctl;
  704. if ((err = snd_ctl_add(emu->card, kctl = snd_ctl_new1(&knew, emu))) < 0) {
  705. kfree(ctl);
  706. goto __error;
  707. }
  708. kctl->private_free = snd_emu10k1_ctl_private_free;
  709. ctl->kcontrol = kctl;
  710. list_add_tail(&ctl->list, &emu->fx8010.gpr_ctl);
  711. } else {
  712. /* overwrite */
  713. nctl->list = ctl->list;
  714. nctl->kcontrol = ctl->kcontrol;
  715. *ctl = *nctl;
  716. snd_ctl_notify(emu->card, SNDRV_CTL_EVENT_MASK_VALUE |
  717. SNDRV_CTL_EVENT_MASK_INFO, &ctl->kcontrol->id);
  718. }
  719. snd_emu10k1_gpr_ctl_put(ctl->kcontrol, val);
  720. }
  721. __error:
  722. kfree(nctl);
  723. kfree(gctl);
  724. kfree(val);
  725. return err;
  726. }
  727. static int snd_emu10k1_del_controls(emu10k1_t *emu, emu10k1_fx8010_code_t *icode)
  728. {
  729. unsigned int i;
  730. snd_ctl_elem_id_t id;
  731. snd_ctl_elem_id_t __user *_id;
  732. snd_emu10k1_fx8010_ctl_t *ctl;
  733. snd_card_t *card = emu->card;
  734. for (i = 0, _id = icode->gpr_del_controls;
  735. i < icode->gpr_del_control_count; i++, _id++) {
  736. if (copy_from_user(&id, _id, sizeof(id)))
  737. return -EFAULT;
  738. down_write(&card->controls_rwsem);
  739. ctl = snd_emu10k1_look_for_ctl(emu, &id);
  740. if (ctl)
  741. snd_ctl_remove(card, ctl->kcontrol);
  742. up_write(&card->controls_rwsem);
  743. }
  744. return 0;
  745. }
  746. static int snd_emu10k1_list_controls(emu10k1_t *emu, emu10k1_fx8010_code_t *icode)
  747. {
  748. unsigned int i = 0, j;
  749. unsigned int total = 0;
  750. emu10k1_fx8010_control_gpr_t *gctl;
  751. emu10k1_fx8010_control_gpr_t __user *_gctl;
  752. snd_emu10k1_fx8010_ctl_t *ctl;
  753. snd_ctl_elem_id_t *id;
  754. struct list_head *list;
  755. gctl = kmalloc(sizeof(*gctl), GFP_KERNEL);
  756. if (! gctl)
  757. return -ENOMEM;
  758. _gctl = icode->gpr_list_controls;
  759. list_for_each(list, &emu->fx8010.gpr_ctl) {
  760. ctl = emu10k1_gpr_ctl(list);
  761. total++;
  762. if (_gctl && i < icode->gpr_list_control_count) {
  763. memset(gctl, 0, sizeof(*gctl));
  764. id = &ctl->kcontrol->id;
  765. gctl->id.iface = id->iface;
  766. strlcpy(gctl->id.name, id->name, sizeof(gctl->id.name));
  767. gctl->id.index = id->index;
  768. gctl->id.device = id->device;
  769. gctl->id.subdevice = id->subdevice;
  770. gctl->vcount = ctl->vcount;
  771. gctl->count = ctl->count;
  772. for (j = 0; j < 32; j++) {
  773. gctl->gpr[j] = ctl->gpr[j];
  774. gctl->value[j] = ctl->value[j];
  775. }
  776. gctl->min = ctl->min;
  777. gctl->max = ctl->max;
  778. gctl->translation = ctl->translation;
  779. if (copy_to_user(_gctl, gctl, sizeof(*gctl))) {
  780. kfree(gctl);
  781. return -EFAULT;
  782. }
  783. _gctl++;
  784. i++;
  785. }
  786. }
  787. icode->gpr_list_control_total = total;
  788. kfree(gctl);
  789. return 0;
  790. }
  791. static int snd_emu10k1_icode_poke(emu10k1_t *emu, emu10k1_fx8010_code_t *icode)
  792. {
  793. int err = 0;
  794. down(&emu->fx8010.lock);
  795. if ((err = snd_emu10k1_verify_controls(emu, icode)) < 0)
  796. goto __error;
  797. strlcpy(emu->fx8010.name, icode->name, sizeof(emu->fx8010.name));
  798. /* stop FX processor - this may be dangerous, but it's better to miss
  799. some samples than generate wrong ones - [jk] */
  800. if (emu->audigy)
  801. snd_emu10k1_ptr_write(emu, A_DBG, 0, emu->fx8010.dbg | A_DBG_SINGLE_STEP);
  802. else
  803. snd_emu10k1_ptr_write(emu, DBG, 0, emu->fx8010.dbg | EMU10K1_DBG_SINGLE_STEP);
  804. /* ok, do the main job */
  805. if ((err = snd_emu10k1_del_controls(emu, icode)) < 0 ||
  806. (err = snd_emu10k1_gpr_poke(emu, icode)) < 0 ||
  807. (err = snd_emu10k1_tram_poke(emu, icode)) < 0 ||
  808. (err = snd_emu10k1_code_poke(emu, icode)) < 0 ||
  809. (err = snd_emu10k1_add_controls(emu, icode)) < 0)
  810. goto __error;
  811. /* start FX processor when the DSP code is updated */
  812. if (emu->audigy)
  813. snd_emu10k1_ptr_write(emu, A_DBG, 0, emu->fx8010.dbg);
  814. else
  815. snd_emu10k1_ptr_write(emu, DBG, 0, emu->fx8010.dbg);
  816. __error:
  817. up(&emu->fx8010.lock);
  818. return err;
  819. }
  820. static int snd_emu10k1_icode_peek(emu10k1_t *emu, emu10k1_fx8010_code_t *icode)
  821. {
  822. int err;
  823. down(&emu->fx8010.lock);
  824. strlcpy(icode->name, emu->fx8010.name, sizeof(icode->name));
  825. /* ok, do the main job */
  826. err = snd_emu10k1_gpr_peek(emu, icode);
  827. if (err >= 0)
  828. err = snd_emu10k1_tram_peek(emu, icode);
  829. if (err >= 0)
  830. err = snd_emu10k1_code_peek(emu, icode);
  831. if (err >= 0)
  832. err = snd_emu10k1_list_controls(emu, icode);
  833. up(&emu->fx8010.lock);
  834. return err;
  835. }
  836. static int snd_emu10k1_ipcm_poke(emu10k1_t *emu, emu10k1_fx8010_pcm_t *ipcm)
  837. {
  838. unsigned int i;
  839. int err = 0;
  840. snd_emu10k1_fx8010_pcm_t *pcm;
  841. if (ipcm->substream >= EMU10K1_FX8010_PCM_COUNT)
  842. return -EINVAL;
  843. if (ipcm->channels > 32)
  844. return -EINVAL;
  845. pcm = &emu->fx8010.pcm[ipcm->substream];
  846. down(&emu->fx8010.lock);
  847. spin_lock_irq(&emu->reg_lock);
  848. if (pcm->opened) {
  849. err = -EBUSY;
  850. goto __error;
  851. }
  852. if (ipcm->channels == 0) { /* remove */
  853. pcm->valid = 0;
  854. } else {
  855. /* FIXME: we need to add universal code to the PCM transfer routine */
  856. if (ipcm->channels != 2) {
  857. err = -EINVAL;
  858. goto __error;
  859. }
  860. pcm->valid = 1;
  861. pcm->opened = 0;
  862. pcm->channels = ipcm->channels;
  863. pcm->tram_start = ipcm->tram_start;
  864. pcm->buffer_size = ipcm->buffer_size;
  865. pcm->gpr_size = ipcm->gpr_size;
  866. pcm->gpr_count = ipcm->gpr_count;
  867. pcm->gpr_tmpcount = ipcm->gpr_tmpcount;
  868. pcm->gpr_ptr = ipcm->gpr_ptr;
  869. pcm->gpr_trigger = ipcm->gpr_trigger;
  870. pcm->gpr_running = ipcm->gpr_running;
  871. for (i = 0; i < pcm->channels; i++)
  872. pcm->etram[i] = ipcm->etram[i];
  873. }
  874. __error:
  875. spin_unlock_irq(&emu->reg_lock);
  876. up(&emu->fx8010.lock);
  877. return err;
  878. }
  879. static int snd_emu10k1_ipcm_peek(emu10k1_t *emu, emu10k1_fx8010_pcm_t *ipcm)
  880. {
  881. unsigned int i;
  882. int err = 0;
  883. snd_emu10k1_fx8010_pcm_t *pcm;
  884. if (ipcm->substream >= EMU10K1_FX8010_PCM_COUNT)
  885. return -EINVAL;
  886. pcm = &emu->fx8010.pcm[ipcm->substream];
  887. down(&emu->fx8010.lock);
  888. spin_lock_irq(&emu->reg_lock);
  889. ipcm->channels = pcm->channels;
  890. ipcm->tram_start = pcm->tram_start;
  891. ipcm->buffer_size = pcm->buffer_size;
  892. ipcm->gpr_size = pcm->gpr_size;
  893. ipcm->gpr_ptr = pcm->gpr_ptr;
  894. ipcm->gpr_count = pcm->gpr_count;
  895. ipcm->gpr_tmpcount = pcm->gpr_tmpcount;
  896. ipcm->gpr_trigger = pcm->gpr_trigger;
  897. ipcm->gpr_running = pcm->gpr_running;
  898. for (i = 0; i < pcm->channels; i++)
  899. ipcm->etram[i] = pcm->etram[i];
  900. ipcm->res1 = ipcm->res2 = 0;
  901. ipcm->pad = 0;
  902. spin_unlock_irq(&emu->reg_lock);
  903. up(&emu->fx8010.lock);
  904. return err;
  905. }
  906. #define SND_EMU10K1_GPR_CONTROLS 44
  907. #define SND_EMU10K1_INPUTS 12
  908. #define SND_EMU10K1_PLAYBACK_CHANNELS 8
  909. #define SND_EMU10K1_CAPTURE_CHANNELS 4
  910. static void __devinit snd_emu10k1_init_mono_control(emu10k1_fx8010_control_gpr_t *ctl, const char *name, int gpr, int defval)
  911. {
  912. ctl->id.iface = SNDRV_CTL_ELEM_IFACE_MIXER;
  913. strcpy(ctl->id.name, name);
  914. ctl->vcount = ctl->count = 1;
  915. ctl->gpr[0] = gpr + 0; ctl->value[0] = defval;
  916. ctl->min = 0;
  917. ctl->max = 100;
  918. ctl->translation = EMU10K1_GPR_TRANSLATION_TABLE100;
  919. }
  920. static void __devinit snd_emu10k1_init_stereo_control(emu10k1_fx8010_control_gpr_t *ctl, const char *name, int gpr, int defval)
  921. {
  922. ctl->id.iface = SNDRV_CTL_ELEM_IFACE_MIXER;
  923. strcpy(ctl->id.name, name);
  924. ctl->vcount = ctl->count = 2;
  925. ctl->gpr[0] = gpr + 0; ctl->value[0] = defval;
  926. ctl->gpr[1] = gpr + 1; ctl->value[1] = defval;
  927. ctl->min = 0;
  928. ctl->max = 100;
  929. ctl->translation = EMU10K1_GPR_TRANSLATION_TABLE100;
  930. }
  931. static void __devinit snd_emu10k1_init_mono_onoff_control(emu10k1_fx8010_control_gpr_t *ctl, const char *name, int gpr, int defval)
  932. {
  933. ctl->id.iface = SNDRV_CTL_ELEM_IFACE_MIXER;
  934. strcpy(ctl->id.name, name);
  935. ctl->vcount = ctl->count = 1;
  936. ctl->gpr[0] = gpr + 0; ctl->value[0] = defval;
  937. ctl->min = 0;
  938. ctl->max = 1;
  939. ctl->translation = EMU10K1_GPR_TRANSLATION_ONOFF;
  940. }
  941. static void __devinit snd_emu10k1_init_stereo_onoff_control(emu10k1_fx8010_control_gpr_t *ctl, const char *name, int gpr, int defval)
  942. {
  943. ctl->id.iface = SNDRV_CTL_ELEM_IFACE_MIXER;
  944. strcpy(ctl->id.name, name);
  945. ctl->vcount = ctl->count = 2;
  946. ctl->gpr[0] = gpr + 0; ctl->value[0] = defval;
  947. ctl->gpr[1] = gpr + 1; ctl->value[1] = defval;
  948. ctl->min = 0;
  949. ctl->max = 1;
  950. ctl->translation = EMU10K1_GPR_TRANSLATION_ONOFF;
  951. }
  952. /*
  953. * initial DSP configuration for Audigy
  954. */
  955. static int __devinit _snd_emu10k1_audigy_init_efx(emu10k1_t *emu)
  956. {
  957. int err, i, z, gpr, nctl;
  958. const int playback = 10;
  959. const int capture = playback + (SND_EMU10K1_PLAYBACK_CHANNELS * 2); /* we reserve 10 voices */
  960. const int stereo_mix = capture + 2;
  961. const int tmp = 0x88;
  962. u32 ptr;
  963. emu10k1_fx8010_code_t *icode = NULL;
  964. emu10k1_fx8010_control_gpr_t *controls = NULL, *ctl;
  965. u32 *gpr_map;
  966. mm_segment_t seg;
  967. spin_lock_init(&emu->fx8010.irq_lock);
  968. INIT_LIST_HEAD(&emu->fx8010.gpr_ctl);
  969. if ((icode = kzalloc(sizeof(*icode), GFP_KERNEL)) == NULL ||
  970. (icode->gpr_map = (u_int32_t __user *)kcalloc(512 + 256 + 256 + 2 * 1024, sizeof(u_int32_t), GFP_KERNEL)) == NULL ||
  971. (controls = kcalloc(SND_EMU10K1_GPR_CONTROLS, sizeof(*controls), GFP_KERNEL)) == NULL) {
  972. err = -ENOMEM;
  973. goto __err;
  974. }
  975. gpr_map = (u32 __force *)icode->gpr_map;
  976. icode->tram_data_map = icode->gpr_map + 512;
  977. icode->tram_addr_map = icode->tram_data_map + 256;
  978. icode->code = icode->tram_addr_map + 256;
  979. /* clear free GPRs */
  980. for (i = 0; i < 512; i++)
  981. set_bit(i, icode->gpr_valid);
  982. /* clear TRAM data & address lines */
  983. for (i = 0; i < 256; i++)
  984. set_bit(i, icode->tram_valid);
  985. strcpy(icode->name, "Audigy DSP code for ALSA");
  986. ptr = 0;
  987. nctl = 0;
  988. gpr = stereo_mix + 10;
  989. /* stop FX processor */
  990. snd_emu10k1_ptr_write(emu, A_DBG, 0, (emu->fx8010.dbg = 0) | A_DBG_SINGLE_STEP);
  991. /* PCM front Playback Volume (independent from stereo mix) */
  992. A_OP(icode, &ptr, iMAC0, A_GPR(playback), A_C_00000000, A_GPR(gpr), A_FXBUS(FXBUS_PCM_LEFT_FRONT));
  993. A_OP(icode, &ptr, iMAC0, A_GPR(playback+1), A_C_00000000, A_GPR(gpr+1), A_FXBUS(FXBUS_PCM_RIGHT_FRONT));
  994. snd_emu10k1_init_stereo_control(&controls[nctl++], "PCM Front Playback Volume", gpr, 100);
  995. gpr += 2;
  996. /* PCM Surround Playback (independent from stereo mix) */
  997. A_OP(icode, &ptr, iMAC0, A_GPR(playback+2), A_C_00000000, A_GPR(gpr), A_FXBUS(FXBUS_PCM_LEFT_REAR));
  998. A_OP(icode, &ptr, iMAC0, A_GPR(playback+3), A_C_00000000, A_GPR(gpr+1), A_FXBUS(FXBUS_PCM_RIGHT_REAR));
  999. snd_emu10k1_init_stereo_control(&controls[nctl++], "PCM Surround Playback Volume", gpr, 100);
  1000. gpr += 2;
  1001. /* PCM Side Playback (independent from stereo mix) */
  1002. if (emu->card_capabilities->spk71) {
  1003. A_OP(icode, &ptr, iMAC0, A_GPR(playback+6), A_C_00000000, A_GPR(gpr), A_FXBUS(FXBUS_PCM_LEFT_SIDE));
  1004. A_OP(icode, &ptr, iMAC0, A_GPR(playback+7), A_C_00000000, A_GPR(gpr+1), A_FXBUS(FXBUS_PCM_RIGHT_SIDE));
  1005. snd_emu10k1_init_stereo_control(&controls[nctl++], "PCM Side Playback Volume", gpr, 100);
  1006. gpr += 2;
  1007. }
  1008. /* PCM Center Playback (independent from stereo mix) */
  1009. A_OP(icode, &ptr, iMAC0, A_GPR(playback+4), A_C_00000000, A_GPR(gpr), A_FXBUS(FXBUS_PCM_CENTER));
  1010. snd_emu10k1_init_mono_control(&controls[nctl++], "PCM Center Playback Volume", gpr, 100);
  1011. gpr++;
  1012. /* PCM LFE Playback (independent from stereo mix) */
  1013. A_OP(icode, &ptr, iMAC0, A_GPR(playback+5), A_C_00000000, A_GPR(gpr), A_FXBUS(FXBUS_PCM_LFE));
  1014. snd_emu10k1_init_mono_control(&controls[nctl++], "PCM LFE Playback Volume", gpr, 100);
  1015. gpr++;
  1016. /*
  1017. * Stereo Mix
  1018. */
  1019. /* Wave (PCM) Playback Volume (will be renamed later) */
  1020. A_OP(icode, &ptr, iMAC0, A_GPR(stereo_mix), A_C_00000000, A_GPR(gpr), A_FXBUS(FXBUS_PCM_LEFT));
  1021. A_OP(icode, &ptr, iMAC0, A_GPR(stereo_mix+1), A_C_00000000, A_GPR(gpr+1), A_FXBUS(FXBUS_PCM_RIGHT));
  1022. snd_emu10k1_init_stereo_control(&controls[nctl++], "Wave Playback Volume", gpr, 100);
  1023. gpr += 2;
  1024. /* Synth Playback */
  1025. A_OP(icode, &ptr, iMAC0, A_GPR(stereo_mix+0), A_GPR(stereo_mix+0), A_GPR(gpr), A_FXBUS(FXBUS_MIDI_LEFT));
  1026. A_OP(icode, &ptr, iMAC0, A_GPR(stereo_mix+1), A_GPR(stereo_mix+1), A_GPR(gpr+1), A_FXBUS(FXBUS_MIDI_RIGHT));
  1027. snd_emu10k1_init_stereo_control(&controls[nctl++], "Synth Playback Volume", gpr, 100);
  1028. gpr += 2;
  1029. /* Wave (PCM) Capture */
  1030. A_OP(icode, &ptr, iMAC0, A_GPR(capture+0), A_C_00000000, A_GPR(gpr), A_FXBUS(FXBUS_PCM_LEFT));
  1031. A_OP(icode, &ptr, iMAC0, A_GPR(capture+1), A_C_00000000, A_GPR(gpr+1), A_FXBUS(FXBUS_PCM_RIGHT));
  1032. snd_emu10k1_init_stereo_control(&controls[nctl++], "PCM Capture Volume", gpr, 0);
  1033. gpr += 2;
  1034. /* Synth Capture */
  1035. A_OP(icode, &ptr, iMAC0, A_GPR(capture+0), A_GPR(capture+0), A_GPR(gpr), A_FXBUS(FXBUS_MIDI_LEFT));
  1036. A_OP(icode, &ptr, iMAC0, A_GPR(capture+1), A_GPR(capture+1), A_GPR(gpr+1), A_FXBUS(FXBUS_MIDI_RIGHT));
  1037. snd_emu10k1_init_stereo_control(&controls[nctl++], "Synth Capture Volume", gpr, 0);
  1038. gpr += 2;
  1039. /*
  1040. * inputs
  1041. */
  1042. #define A_ADD_VOLUME_IN(var,vol,input) \
  1043. A_OP(icode, &ptr, iMAC0, A_GPR(var), A_GPR(var), A_GPR(vol), A_EXTIN(input))
  1044. /* AC'97 Playback Volume - used only for mic (renamed later) */
  1045. A_ADD_VOLUME_IN(stereo_mix, gpr, A_EXTIN_AC97_L);
  1046. A_ADD_VOLUME_IN(stereo_mix+1, gpr+1, A_EXTIN_AC97_R);
  1047. snd_emu10k1_init_stereo_control(&controls[nctl++], "AMic Playback Volume", gpr, 0);
  1048. gpr += 2;
  1049. /* AC'97 Capture Volume - used only for mic */
  1050. A_ADD_VOLUME_IN(capture, gpr, A_EXTIN_AC97_L);
  1051. A_ADD_VOLUME_IN(capture+1, gpr+1, A_EXTIN_AC97_R);
  1052. snd_emu10k1_init_stereo_control(&controls[nctl++], "Mic Capture Volume", gpr, 0);
  1053. gpr += 2;
  1054. /* mic capture buffer */
  1055. A_OP(icode, &ptr, iINTERP, A_EXTOUT(A_EXTOUT_MIC_CAP), A_EXTIN(A_EXTIN_AC97_L), 0xcd, A_EXTIN(A_EXTIN_AC97_R));
  1056. /* Audigy CD Playback Volume */
  1057. A_ADD_VOLUME_IN(stereo_mix, gpr, A_EXTIN_SPDIF_CD_L);
  1058. A_ADD_VOLUME_IN(stereo_mix+1, gpr+1, A_EXTIN_SPDIF_CD_R);
  1059. snd_emu10k1_init_stereo_control(&controls[nctl++],
  1060. emu->card_capabilities->ac97_chip ? "Audigy CD Playback Volume" : "CD Playback Volume",
  1061. gpr, 0);
  1062. gpr += 2;
  1063. /* Audigy CD Capture Volume */
  1064. A_ADD_VOLUME_IN(capture, gpr, A_EXTIN_SPDIF_CD_L);
  1065. A_ADD_VOLUME_IN(capture+1, gpr+1, A_EXTIN_SPDIF_CD_R);
  1066. snd_emu10k1_init_stereo_control(&controls[nctl++],
  1067. emu->card_capabilities->ac97_chip ? "Audigy CD Capture Volume" : "CD Capture Volume",
  1068. gpr, 0);
  1069. gpr += 2;
  1070. /* Optical SPDIF Playback Volume */
  1071. A_ADD_VOLUME_IN(stereo_mix, gpr, A_EXTIN_OPT_SPDIF_L);
  1072. A_ADD_VOLUME_IN(stereo_mix+1, gpr+1, A_EXTIN_OPT_SPDIF_R);
  1073. snd_emu10k1_init_stereo_control(&controls[nctl++], SNDRV_CTL_NAME_IEC958("Optical ",PLAYBACK,VOLUME), gpr, 0);
  1074. gpr += 2;
  1075. /* Optical SPDIF Capture Volume */
  1076. A_ADD_VOLUME_IN(capture, gpr, A_EXTIN_OPT_SPDIF_L);
  1077. A_ADD_VOLUME_IN(capture+1, gpr+1, A_EXTIN_OPT_SPDIF_R);
  1078. snd_emu10k1_init_stereo_control(&controls[nctl++], SNDRV_CTL_NAME_IEC958("Optical ",CAPTURE,VOLUME), gpr, 0);
  1079. gpr += 2;
  1080. /* Line2 Playback Volume */
  1081. A_ADD_VOLUME_IN(stereo_mix, gpr, A_EXTIN_LINE2_L);
  1082. A_ADD_VOLUME_IN(stereo_mix+1, gpr+1, A_EXTIN_LINE2_R);
  1083. snd_emu10k1_init_stereo_control(&controls[nctl++],
  1084. emu->card_capabilities->ac97_chip ? "Line2 Playback Volume" : "Line Playback Volume",
  1085. gpr, 0);
  1086. gpr += 2;
  1087. /* Line2 Capture Volume */
  1088. A_ADD_VOLUME_IN(capture, gpr, A_EXTIN_LINE2_L);
  1089. A_ADD_VOLUME_IN(capture+1, gpr+1, A_EXTIN_LINE2_R);
  1090. snd_emu10k1_init_stereo_control(&controls[nctl++],
  1091. emu->card_capabilities->ac97_chip ? "Line2 Capture Volume" : "Line Capture Volume",
  1092. gpr, 0);
  1093. gpr += 2;
  1094. /* Philips ADC Playback Volume */
  1095. A_ADD_VOLUME_IN(stereo_mix, gpr, A_EXTIN_ADC_L);
  1096. A_ADD_VOLUME_IN(stereo_mix+1, gpr+1, A_EXTIN_ADC_R);
  1097. snd_emu10k1_init_stereo_control(&controls[nctl++], "Analog Mix Playback Volume", gpr, 0);
  1098. gpr += 2;
  1099. /* Philips ADC Capture Volume */
  1100. A_ADD_VOLUME_IN(capture, gpr, A_EXTIN_ADC_L);
  1101. A_ADD_VOLUME_IN(capture+1, gpr+1, A_EXTIN_ADC_R);
  1102. snd_emu10k1_init_stereo_control(&controls[nctl++], "Analog Mix Capture Volume", gpr, 0);
  1103. gpr += 2;
  1104. /* Aux2 Playback Volume */
  1105. A_ADD_VOLUME_IN(stereo_mix, gpr, A_EXTIN_AUX2_L);
  1106. A_ADD_VOLUME_IN(stereo_mix+1, gpr+1, A_EXTIN_AUX2_R);
  1107. snd_emu10k1_init_stereo_control(&controls[nctl++],
  1108. emu->card_capabilities->ac97_chip ? "Aux2 Playback Volume" : "Aux Playback Volume",
  1109. gpr, 0);
  1110. gpr += 2;
  1111. /* Aux2 Capture Volume */
  1112. A_ADD_VOLUME_IN(capture, gpr, A_EXTIN_AUX2_L);
  1113. A_ADD_VOLUME_IN(capture+1, gpr+1, A_EXTIN_AUX2_R);
  1114. snd_emu10k1_init_stereo_control(&controls[nctl++],
  1115. emu->card_capabilities->ac97_chip ? "Aux2 Capture Volume" : "Aux Capture Volume",
  1116. gpr, 0);
  1117. gpr += 2;
  1118. /* Stereo Mix Front Playback Volume */
  1119. A_OP(icode, &ptr, iMAC0, A_GPR(playback), A_GPR(playback), A_GPR(gpr), A_GPR(stereo_mix));
  1120. A_OP(icode, &ptr, iMAC0, A_GPR(playback+1), A_GPR(playback+1), A_GPR(gpr+1), A_GPR(stereo_mix+1));
  1121. snd_emu10k1_init_stereo_control(&controls[nctl++], "Front Playback Volume", gpr, 100);
  1122. gpr += 2;
  1123. /* Stereo Mix Surround Playback */
  1124. A_OP(icode, &ptr, iMAC0, A_GPR(playback+2), A_GPR(playback+2), A_GPR(gpr), A_GPR(stereo_mix));
  1125. A_OP(icode, &ptr, iMAC0, A_GPR(playback+3), A_GPR(playback+3), A_GPR(gpr+1), A_GPR(stereo_mix+1));
  1126. snd_emu10k1_init_stereo_control(&controls[nctl++], "Surround Playback Volume", gpr, 0);
  1127. gpr += 2;
  1128. /* Stereo Mix Center Playback */
  1129. /* Center = sub = Left/2 + Right/2 */
  1130. A_OP(icode, &ptr, iINTERP, A_GPR(tmp), A_GPR(stereo_mix), 0xcd, A_GPR(stereo_mix+1));
  1131. A_OP(icode, &ptr, iMAC0, A_GPR(playback+4), A_GPR(playback+4), A_GPR(gpr), A_GPR(tmp));
  1132. snd_emu10k1_init_mono_control(&controls[nctl++], "Center Playback Volume", gpr, 0);
  1133. gpr++;
  1134. /* Stereo Mix LFE Playback */
  1135. A_OP(icode, &ptr, iMAC0, A_GPR(playback+5), A_GPR(playback+5), A_GPR(gpr), A_GPR(tmp));
  1136. snd_emu10k1_init_mono_control(&controls[nctl++], "LFE Playback Volume", gpr, 0);
  1137. gpr++;
  1138. if (emu->card_capabilities->spk71) {
  1139. /* Stereo Mix Side Playback */
  1140. A_OP(icode, &ptr, iMAC0, A_GPR(playback+6), A_GPR(playback+6), A_GPR(gpr), A_GPR(stereo_mix));
  1141. A_OP(icode, &ptr, iMAC0, A_GPR(playback+7), A_GPR(playback+7), A_GPR(gpr+1), A_GPR(stereo_mix+1));
  1142. snd_emu10k1_init_stereo_control(&controls[nctl++], "Side Playback Volume", gpr, 0);
  1143. gpr += 2;
  1144. }
  1145. /*
  1146. * outputs
  1147. */
  1148. #define A_PUT_OUTPUT(out,src) A_OP(icode, &ptr, iACC3, A_EXTOUT(out), A_C_00000000, A_C_00000000, A_GPR(src))
  1149. #define A_PUT_STEREO_OUTPUT(out1,out2,src) \
  1150. {A_PUT_OUTPUT(out1,src); A_PUT_OUTPUT(out2,src+1);}
  1151. #define _A_SWITCH(icode, ptr, dst, src, sw) \
  1152. A_OP((icode), ptr, iMACINT0, dst, A_C_00000000, src, sw);
  1153. #define A_SWITCH(icode, ptr, dst, src, sw) \
  1154. _A_SWITCH(icode, ptr, A_GPR(dst), A_GPR(src), A_GPR(sw))
  1155. #define _A_SWITCH_NEG(icode, ptr, dst, src) \
  1156. A_OP((icode), ptr, iANDXOR, dst, src, A_C_00000001, A_C_00000001);
  1157. #define A_SWITCH_NEG(icode, ptr, dst, src) \
  1158. _A_SWITCH_NEG(icode, ptr, A_GPR(dst), A_GPR(src))
  1159. /*
  1160. * Process tone control
  1161. */
  1162. A_OP(icode, &ptr, iACC3, A_GPR(playback + SND_EMU10K1_PLAYBACK_CHANNELS + 0), A_GPR(playback + 0), A_C_00000000, A_C_00000000); /* left */
  1163. A_OP(icode, &ptr, iACC3, A_GPR(playback + SND_EMU10K1_PLAYBACK_CHANNELS + 1), A_GPR(playback + 1), A_C_00000000, A_C_00000000); /* right */
  1164. A_OP(icode, &ptr, iACC3, A_GPR(playback + SND_EMU10K1_PLAYBACK_CHANNELS + 2), A_GPR(playback + 2), A_C_00000000, A_C_00000000); /* rear left */
  1165. A_OP(icode, &ptr, iACC3, A_GPR(playback + SND_EMU10K1_PLAYBACK_CHANNELS + 3), A_GPR(playback + 3), A_C_00000000, A_C_00000000); /* rear right */
  1166. A_OP(icode, &ptr, iACC3, A_GPR(playback + SND_EMU10K1_PLAYBACK_CHANNELS + 4), A_GPR(playback + 4), A_C_00000000, A_C_00000000); /* center */
  1167. A_OP(icode, &ptr, iACC3, A_GPR(playback + SND_EMU10K1_PLAYBACK_CHANNELS + 5), A_GPR(playback + 5), A_C_00000000, A_C_00000000); /* LFE */
  1168. if (emu->card_capabilities->spk71) {
  1169. A_OP(icode, &ptr, iACC3, A_GPR(playback + SND_EMU10K1_PLAYBACK_CHANNELS + 6), A_GPR(playback + 6), A_C_00000000, A_C_00000000); /* side left */
  1170. A_OP(icode, &ptr, iACC3, A_GPR(playback + SND_EMU10K1_PLAYBACK_CHANNELS + 7), A_GPR(playback + 7), A_C_00000000, A_C_00000000); /* side right */
  1171. }
  1172. ctl = &controls[nctl + 0];
  1173. ctl->id.iface = SNDRV_CTL_ELEM_IFACE_MIXER;
  1174. strcpy(ctl->id.name, "Tone Control - Bass");
  1175. ctl->vcount = 2;
  1176. ctl->count = 10;
  1177. ctl->min = 0;
  1178. ctl->max = 40;
  1179. ctl->value[0] = ctl->value[1] = 20;
  1180. ctl->translation = EMU10K1_GPR_TRANSLATION_BASS;
  1181. ctl = &controls[nctl + 1];
  1182. ctl->id.iface = SNDRV_CTL_ELEM_IFACE_MIXER;
  1183. strcpy(ctl->id.name, "Tone Control - Treble");
  1184. ctl->vcount = 2;
  1185. ctl->count = 10;
  1186. ctl->min = 0;
  1187. ctl->max = 40;
  1188. ctl->value[0] = ctl->value[1] = 20;
  1189. ctl->translation = EMU10K1_GPR_TRANSLATION_TREBLE;
  1190. #define BASS_GPR 0x8c
  1191. #define TREBLE_GPR 0x96
  1192. for (z = 0; z < 5; z++) {
  1193. int j;
  1194. for (j = 0; j < 2; j++) {
  1195. controls[nctl + 0].gpr[z * 2 + j] = BASS_GPR + z * 2 + j;
  1196. controls[nctl + 1].gpr[z * 2 + j] = TREBLE_GPR + z * 2 + j;
  1197. }
  1198. }
  1199. for (z = 0; z < 4; z++) { /* front/rear/center-lfe/side */
  1200. int j, k, l, d;
  1201. for (j = 0; j < 2; j++) { /* left/right */
  1202. k = 0xb0 + (z * 8) + (j * 4);
  1203. l = 0xe0 + (z * 8) + (j * 4);
  1204. d = playback + SND_EMU10K1_PLAYBACK_CHANNELS + z * 2 + j;
  1205. A_OP(icode, &ptr, iMAC0, A_C_00000000, A_C_00000000, A_GPR(d), A_GPR(BASS_GPR + 0 + j));
  1206. A_OP(icode, &ptr, iMACMV, A_GPR(k+1), A_GPR(k), A_GPR(k+1), A_GPR(BASS_GPR + 4 + j));
  1207. A_OP(icode, &ptr, iMACMV, A_GPR(k), A_GPR(d), A_GPR(k), A_GPR(BASS_GPR + 2 + j));
  1208. A_OP(icode, &ptr, iMACMV, A_GPR(k+3), A_GPR(k+2), A_GPR(k+3), A_GPR(BASS_GPR + 8 + j));
  1209. A_OP(icode, &ptr, iMAC0, A_GPR(k+2), A_GPR_ACCU, A_GPR(k+2), A_GPR(BASS_GPR + 6 + j));
  1210. A_OP(icode, &ptr, iACC3, A_GPR(k+2), A_GPR(k+2), A_GPR(k+2), A_C_00000000);
  1211. A_OP(icode, &ptr, iMAC0, A_C_00000000, A_C_00000000, A_GPR(k+2), A_GPR(TREBLE_GPR + 0 + j));
  1212. A_OP(icode, &ptr, iMACMV, A_GPR(l+1), A_GPR(l), A_GPR(l+1), A_GPR(TREBLE_GPR + 4 + j));
  1213. A_OP(icode, &ptr, iMACMV, A_GPR(l), A_GPR(k+2), A_GPR(l), A_GPR(TREBLE_GPR + 2 + j));
  1214. A_OP(icode, &ptr, iMACMV, A_GPR(l+3), A_GPR(l+2), A_GPR(l+3), A_GPR(TREBLE_GPR + 8 + j));
  1215. A_OP(icode, &ptr, iMAC0, A_GPR(l+2), A_GPR_ACCU, A_GPR(l+2), A_GPR(TREBLE_GPR + 6 + j));
  1216. A_OP(icode, &ptr, iMACINT0, A_GPR(l+2), A_C_00000000, A_GPR(l+2), A_C_00000010);
  1217. A_OP(icode, &ptr, iACC3, A_GPR(d), A_GPR(l+2), A_C_00000000, A_C_00000000);
  1218. if (z == 2) /* center */
  1219. break;
  1220. }
  1221. }
  1222. nctl += 2;
  1223. #undef BASS_GPR
  1224. #undef TREBLE_GPR
  1225. for (z = 0; z < 8; z++) {
  1226. A_SWITCH(icode, &ptr, tmp + 0, playback + SND_EMU10K1_PLAYBACK_CHANNELS + z, gpr + 0);
  1227. A_SWITCH_NEG(icode, &ptr, tmp + 1, gpr + 0);
  1228. A_SWITCH(icode, &ptr, tmp + 1, playback + z, tmp + 1);
  1229. A_OP(icode, &ptr, iACC3, A_GPR(playback + SND_EMU10K1_PLAYBACK_CHANNELS + z), A_GPR(tmp + 0), A_GPR(tmp + 1), A_C_00000000);
  1230. }
  1231. snd_emu10k1_init_stereo_onoff_control(controls + nctl++, "Tone Control - Switch", gpr, 0);
  1232. gpr += 2;
  1233. /* Master volume (will be renamed later) */
  1234. A_OP(icode, &ptr, iMAC0, A_GPR(playback+0+SND_EMU10K1_PLAYBACK_CHANNELS), A_C_00000000, A_GPR(gpr), A_GPR(playback+0+SND_EMU10K1_PLAYBACK_CHANNELS));
  1235. A_OP(icode, &ptr, iMAC0, A_GPR(playback+1+SND_EMU10K1_PLAYBACK_CHANNELS), A_C_00000000, A_GPR(gpr), A_GPR(playback+1+SND_EMU10K1_PLAYBACK_CHANNELS));
  1236. A_OP(icode, &ptr, iMAC0, A_GPR(playback+2+SND_EMU10K1_PLAYBACK_CHANNELS), A_C_00000000, A_GPR(gpr), A_GPR(playback+2+SND_EMU10K1_PLAYBACK_CHANNELS));
  1237. A_OP(icode, &ptr, iMAC0, A_GPR(playback+3+SND_EMU10K1_PLAYBACK_CHANNELS), A_C_00000000, A_GPR(gpr), A_GPR(playback+3+SND_EMU10K1_PLAYBACK_CHANNELS));
  1238. A_OP(icode, &ptr, iMAC0, A_GPR(playback+4+SND_EMU10K1_PLAYBACK_CHANNELS), A_C_00000000, A_GPR(gpr), A_GPR(playback+4+SND_EMU10K1_PLAYBACK_CHANNELS));
  1239. A_OP(icode, &ptr, iMAC0, A_GPR(playback+5+SND_EMU10K1_PLAYBACK_CHANNELS), A_C_00000000, A_GPR(gpr), A_GPR(playback+5+SND_EMU10K1_PLAYBACK_CHANNELS));
  1240. A_OP(icode, &ptr, iMAC0, A_GPR(playback+6+SND_EMU10K1_PLAYBACK_CHANNELS), A_C_00000000, A_GPR(gpr), A_GPR(playback+6+SND_EMU10K1_PLAYBACK_CHANNELS));
  1241. A_OP(icode, &ptr, iMAC0, A_GPR(playback+7+SND_EMU10K1_PLAYBACK_CHANNELS), A_C_00000000, A_GPR(gpr), A_GPR(playback+7+SND_EMU10K1_PLAYBACK_CHANNELS));
  1242. snd_emu10k1_init_mono_control(&controls[nctl++], "Wave Master Playback Volume", gpr, 0);
  1243. gpr += 2;
  1244. /* analog speakers */
  1245. A_PUT_STEREO_OUTPUT(A_EXTOUT_AFRONT_L, A_EXTOUT_AFRONT_R, playback + SND_EMU10K1_PLAYBACK_CHANNELS);
  1246. A_PUT_STEREO_OUTPUT(A_EXTOUT_AREAR_L, A_EXTOUT_AREAR_R, playback+2 + SND_EMU10K1_PLAYBACK_CHANNELS);
  1247. A_PUT_OUTPUT(A_EXTOUT_ACENTER, playback+4 + SND_EMU10K1_PLAYBACK_CHANNELS);
  1248. A_PUT_OUTPUT(A_EXTOUT_ALFE, playback+5 + SND_EMU10K1_PLAYBACK_CHANNELS);
  1249. if (emu->card_capabilities->spk71)
  1250. A_PUT_STEREO_OUTPUT(A_EXTOUT_ASIDE_L, A_EXTOUT_ASIDE_R, playback+6 + SND_EMU10K1_PLAYBACK_CHANNELS);
  1251. /* headphone */
  1252. A_PUT_STEREO_OUTPUT(A_EXTOUT_HEADPHONE_L, A_EXTOUT_HEADPHONE_R, playback + SND_EMU10K1_PLAYBACK_CHANNELS);
  1253. /* digital outputs */
  1254. /* A_PUT_STEREO_OUTPUT(A_EXTOUT_FRONT_L, A_EXTOUT_FRONT_R, playback + SND_EMU10K1_PLAYBACK_CHANNELS); */
  1255. /* IEC958 Optical Raw Playback Switch */
  1256. gpr_map[gpr++] = 0;
  1257. gpr_map[gpr++] = 0x1008;
  1258. gpr_map[gpr++] = 0xffff0000;
  1259. for (z = 0; z < 2; z++) {
  1260. A_OP(icode, &ptr, iMAC0, A_GPR(tmp + 2), A_FXBUS(FXBUS_PT_LEFT + z), A_C_00000000, A_C_00000000);
  1261. A_OP(icode, &ptr, iSKIP, A_GPR_COND, A_GPR_COND, A_GPR(gpr - 2), A_C_00000001);
  1262. A_OP(icode, &ptr, iACC3, A_GPR(tmp + 2), A_C_00000000, A_C_00010000, A_GPR(tmp + 2));
  1263. A_OP(icode, &ptr, iANDXOR, A_GPR(tmp + 2), A_GPR(tmp + 2), A_GPR(gpr - 1), A_C_00000000);
  1264. A_SWITCH(icode, &ptr, tmp + 0, tmp + 2, gpr + z);
  1265. A_SWITCH_NEG(icode, &ptr, tmp + 1, gpr + z);
  1266. A_SWITCH(icode, &ptr, tmp + 1, playback + SND_EMU10K1_PLAYBACK_CHANNELS + z, tmp + 1);
  1267. if ((z==1) && (emu->card_capabilities->spdif_bug)) {
  1268. /* Due to a SPDIF output bug on some Audigy cards, this code delays the Right channel by 1 sample */
  1269. snd_printk(KERN_INFO "Installing spdif_bug patch: %s\n", emu->card_capabilities->name);
  1270. A_OP(icode, &ptr, iACC3, A_EXTOUT(A_EXTOUT_FRONT_L + z), A_GPR(gpr - 3), A_C_00000000, A_C_00000000);
  1271. A_OP(icode, &ptr, iACC3, A_GPR(gpr - 3), A_GPR(tmp + 0), A_GPR(tmp + 1), A_C_00000000);
  1272. } else {
  1273. A_OP(icode, &ptr, iACC3, A_EXTOUT(A_EXTOUT_FRONT_L + z), A_GPR(tmp + 0), A_GPR(tmp + 1), A_C_00000000);
  1274. }
  1275. }
  1276. snd_emu10k1_init_stereo_onoff_control(controls + nctl++, SNDRV_CTL_NAME_IEC958("Optical Raw ",PLAYBACK,SWITCH), gpr, 0);
  1277. gpr += 2;
  1278. A_PUT_STEREO_OUTPUT(A_EXTOUT_REAR_L, A_EXTOUT_REAR_R, playback+2 + SND_EMU10K1_PLAYBACK_CHANNELS);
  1279. A_PUT_OUTPUT(A_EXTOUT_CENTER, playback+4 + SND_EMU10K1_PLAYBACK_CHANNELS);
  1280. A_PUT_OUTPUT(A_EXTOUT_LFE, playback+5 + SND_EMU10K1_PLAYBACK_CHANNELS);
  1281. /* ADC buffer */
  1282. #ifdef EMU10K1_CAPTURE_DIGITAL_OUT
  1283. A_PUT_STEREO_OUTPUT(A_EXTOUT_ADC_CAP_L, A_EXTOUT_ADC_CAP_R, playback + SND_EMU10K1_PLAYBACK_CHANNELS);
  1284. #else
  1285. A_PUT_OUTPUT(A_EXTOUT_ADC_CAP_L, capture);
  1286. A_PUT_OUTPUT(A_EXTOUT_ADC_CAP_R, capture+1);
  1287. #endif
  1288. /* EFX capture - capture the 16 EXTINs */
  1289. for (z = 0; z < 16; z++) {
  1290. A_OP(icode, &ptr, iACC3, A_FXBUS2(z), A_C_00000000, A_C_00000000, A_EXTIN(z));
  1291. }
  1292. /*
  1293. * ok, set up done..
  1294. */
  1295. if (gpr > tmp) {
  1296. snd_BUG();
  1297. err = -EIO;
  1298. goto __err;
  1299. }
  1300. /* clear remaining instruction memory */
  1301. while (ptr < 0x400)
  1302. A_OP(icode, &ptr, 0x0f, 0xc0, 0xc0, 0xcf, 0xc0);
  1303. seg = snd_enter_user();
  1304. icode->gpr_add_control_count = nctl;
  1305. icode->gpr_add_controls = (emu10k1_fx8010_control_gpr_t __user *)controls;
  1306. err = snd_emu10k1_icode_poke(emu, icode);
  1307. snd_leave_user(seg);
  1308. __err:
  1309. kfree(controls);
  1310. if (icode != NULL) {
  1311. kfree((void __force *)icode->gpr_map);
  1312. kfree(icode);
  1313. }
  1314. return err;
  1315. }
  1316. /*
  1317. * initial DSP configuration for Emu10k1
  1318. */
  1319. /* when volume = max, then copy only to avoid volume modification */
  1320. /* with iMAC0 (negative values) */
  1321. static void __devinit _volume(emu10k1_fx8010_code_t *icode, u32 *ptr, u32 dst, u32 src, u32 vol)
  1322. {
  1323. OP(icode, ptr, iMAC0, dst, C_00000000, src, vol);
  1324. OP(icode, ptr, iANDXOR, C_00000000, vol, C_ffffffff, C_7fffffff);
  1325. OP(icode, ptr, iSKIP, GPR_COND, GPR_COND, CC_REG_NONZERO, C_00000001);
  1326. OP(icode, ptr, iACC3, dst, src, C_00000000, C_00000000);
  1327. }
  1328. static void __devinit _volume_add(emu10k1_fx8010_code_t *icode, u32 *ptr, u32 dst, u32 src, u32 vol)
  1329. {
  1330. OP(icode, ptr, iANDXOR, C_00000000, vol, C_ffffffff, C_7fffffff);
  1331. OP(icode, ptr, iSKIP, GPR_COND, GPR_COND, CC_REG_NONZERO, C_00000002);
  1332. OP(icode, ptr, iMACINT0, dst, dst, src, C_00000001);
  1333. OP(icode, ptr, iSKIP, C_00000000, C_7fffffff, C_7fffffff, C_00000001);
  1334. OP(icode, ptr, iMAC0, dst, dst, src, vol);
  1335. }
  1336. static void __devinit _volume_out(emu10k1_fx8010_code_t *icode, u32 *ptr, u32 dst, u32 src, u32 vol)
  1337. {
  1338. OP(icode, ptr, iANDXOR, C_00000000, vol, C_ffffffff, C_7fffffff);
  1339. OP(icode, ptr, iSKIP, GPR_COND, GPR_COND, CC_REG_NONZERO, C_00000002);
  1340. OP(icode, ptr, iACC3, dst, src, C_00000000, C_00000000);
  1341. OP(icode, ptr, iSKIP, C_00000000, C_7fffffff, C_7fffffff, C_00000001);
  1342. OP(icode, ptr, iMAC0, dst, C_00000000, src, vol);
  1343. }
  1344. #define VOLUME(icode, ptr, dst, src, vol) \
  1345. _volume(icode, ptr, GPR(dst), GPR(src), GPR(vol))
  1346. #define VOLUME_IN(icode, ptr, dst, src, vol) \
  1347. _volume(icode, ptr, GPR(dst), EXTIN(src), GPR(vol))
  1348. #define VOLUME_ADD(icode, ptr, dst, src, vol) \
  1349. _volume_add(icode, ptr, GPR(dst), GPR(src), GPR(vol))
  1350. #define VOLUME_ADDIN(icode, ptr, dst, src, vol) \
  1351. _volume_add(icode, ptr, GPR(dst), EXTIN(src), GPR(vol))
  1352. #define VOLUME_OUT(icode, ptr, dst, src, vol) \
  1353. _volume_out(icode, ptr, EXTOUT(dst), GPR(src), GPR(vol))
  1354. #define _SWITCH(icode, ptr, dst, src, sw) \
  1355. OP((icode), ptr, iMACINT0, dst, C_00000000, src, sw);
  1356. #define SWITCH(icode, ptr, dst, src, sw) \
  1357. _SWITCH(icode, ptr, GPR(dst), GPR(src), GPR(sw))
  1358. #define SWITCH_IN(icode, ptr, dst, src, sw) \
  1359. _SWITCH(icode, ptr, GPR(dst), EXTIN(src), GPR(sw))
  1360. #define _SWITCH_NEG(icode, ptr, dst, src) \
  1361. OP((icode), ptr, iANDXOR, dst, src, C_00000001, C_00000001);
  1362. #define SWITCH_NEG(icode, ptr, dst, src) \
  1363. _SWITCH_NEG(icode, ptr, GPR(dst), GPR(src))
  1364. static int __devinit _snd_emu10k1_init_efx(emu10k1_t *emu)
  1365. {
  1366. int err, i, z, gpr, tmp, playback, capture;
  1367. u32 ptr;
  1368. emu10k1_fx8010_code_t *icode;
  1369. emu10k1_fx8010_pcm_t *ipcm = NULL;
  1370. emu10k1_fx8010_control_gpr_t *controls = NULL, *ctl;
  1371. u32 *gpr_map;
  1372. mm_segment_t seg;
  1373. spin_lock_init(&emu->fx8010.irq_lock);
  1374. INIT_LIST_HEAD(&emu->fx8010.gpr_ctl);
  1375. if ((icode = kzalloc(sizeof(*icode), GFP_KERNEL)) == NULL)
  1376. return -ENOMEM;
  1377. if ((icode->gpr_map = (u_int32_t __user *)kcalloc(256 + 160 + 160 + 2 * 512, sizeof(u_int32_t), GFP_KERNEL)) == NULL ||
  1378. (controls = kcalloc(SND_EMU10K1_GPR_CONTROLS, sizeof(emu10k1_fx8010_control_gpr_t), GFP_KERNEL)) == NULL ||
  1379. (ipcm = kzalloc(sizeof(*ipcm), GFP_KERNEL)) == NULL) {
  1380. err = -ENOMEM;
  1381. goto __err;
  1382. }
  1383. gpr_map = (u32 __force *)icode->gpr_map;
  1384. icode->tram_data_map = icode->gpr_map + 256;
  1385. icode->tram_addr_map = icode->tram_data_map + 160;
  1386. icode->code = icode->tram_addr_map + 160;
  1387. /* clear free GPRs */
  1388. for (i = 0; i < 256; i++)
  1389. set_bit(i, icode->gpr_valid);
  1390. /* clear TRAM data & address lines */
  1391. for (i = 0; i < 160; i++)
  1392. set_bit(i, icode->tram_valid);
  1393. strcpy(icode->name, "SB Live! FX8010 code for ALSA v1.2 by Jaroslav Kysela");
  1394. ptr = 0; i = 0;
  1395. /* we have 12 inputs */
  1396. playback = SND_EMU10K1_INPUTS;
  1397. /* we have 6 playback channels and tone control doubles */
  1398. capture = playback + (SND_EMU10K1_PLAYBACK_CHANNELS * 2);
  1399. gpr = capture + SND_EMU10K1_CAPTURE_CHANNELS;
  1400. tmp = 0x88; /* we need 4 temporary GPR */
  1401. /* from 0x8c to 0xff is the area for tone control */
  1402. /* stop FX processor */
  1403. snd_emu10k1_ptr_write(emu, DBG, 0, (emu->fx8010.dbg = 0) | EMU10K1_DBG_SINGLE_STEP);
  1404. /*
  1405. * Process FX Buses
  1406. */
  1407. OP(icode, &ptr, iMACINT0, GPR(0), C_00000000, FXBUS(FXBUS_PCM_LEFT), C_00000004);
  1408. OP(icode, &ptr, iMACINT0, GPR(1), C_00000000, FXBUS(FXBUS_PCM_RIGHT), C_00000004);
  1409. OP(icode, &ptr, iMACINT0, GPR(2), C_00000000, FXBUS(FXBUS_MIDI_LEFT), C_00000004);
  1410. OP(icode, &ptr, iMACINT0, GPR(3), C_00000000, FXBUS(FXBUS_MIDI_RIGHT), C_00000004);
  1411. OP(icode, &ptr, iMACINT0, GPR(4), C_00000000, FXBUS(FXBUS_PCM_LEFT_REAR), C_00000004);
  1412. OP(icode, &ptr, iMACINT0, GPR(5), C_00000000, FXBUS(FXBUS_PCM_RIGHT_REAR), C_00000004);
  1413. OP(icode, &ptr, iMACINT0, GPR(6), C_00000000, FXBUS(FXBUS_PCM_CENTER), C_00000004);
  1414. OP(icode, &ptr, iMACINT0, GPR(7), C_00000000, FXBUS(FXBUS_PCM_LFE), C_00000004);
  1415. OP(icode, &ptr, iMACINT0, GPR(8), C_00000000, C_00000000, C_00000000); /* S/PDIF left */
  1416. OP(icode, &ptr, iMACINT0, GPR(9), C_00000000, C_00000000, C_00000000); /* S/PDIF right */
  1417. OP(icode, &ptr, iMACINT0, GPR(10), C_00000000, FXBUS(FXBUS_PCM_LEFT_FRONT), C_00000004);
  1418. OP(icode, &ptr, iMACINT0, GPR(11), C_00000000, FXBUS(FXBUS_PCM_RIGHT_FRONT), C_00000004);
  1419. /* Raw S/PDIF PCM */
  1420. ipcm->substream = 0;
  1421. ipcm->channels = 2;
  1422. ipcm->tram_start = 0;
  1423. ipcm->buffer_size = (64 * 1024) / 2;
  1424. ipcm->gpr_size = gpr++;
  1425. ipcm->gpr_ptr = gpr++;
  1426. ipcm->gpr_count = gpr++;
  1427. ipcm->gpr_tmpcount = gpr++;
  1428. ipcm->gpr_trigger = gpr++;
  1429. ipcm->gpr_running = gpr++;
  1430. ipcm->etram[0] = 0;
  1431. ipcm->etram[1] = 1;
  1432. gpr_map[gpr + 0] = 0xfffff000;
  1433. gpr_map[gpr + 1] = 0xffff0000;
  1434. gpr_map[gpr + 2] = 0x70000000;
  1435. gpr_map[gpr + 3] = 0x00000007;
  1436. gpr_map[gpr + 4] = 0x001f << 11;
  1437. gpr_map[gpr + 5] = 0x001c << 11;
  1438. gpr_map[gpr + 6] = (0x22 - 0x01) - 1; /* skip at 01 to 22 */
  1439. gpr_map[gpr + 7] = (0x22 - 0x06) - 1; /* skip at 06 to 22 */
  1440. gpr_map[gpr + 8] = 0x2000000 + (2<<11);
  1441. gpr_map[gpr + 9] = 0x4000000 + (2<<11);
  1442. gpr_map[gpr + 10] = 1<<11;
  1443. gpr_map[gpr + 11] = (0x24 - 0x0a) - 1; /* skip at 0a to 24 */
  1444. gpr_map[gpr + 12] = 0;
  1445. /* if the trigger flag is not set, skip */
  1446. /* 00: */ OP(icode, &ptr, iMAC0, C_00000000, GPR(ipcm->gpr_trigger), C_00000000, C_00000000);
  1447. /* 01: */ OP(icode, &ptr, iSKIP, GPR_COND, GPR_COND, CC_REG_ZERO, GPR(gpr + 6));
  1448. /* if the running flag is set, we're running */
  1449. /* 02: */ OP(icode, &ptr, iMAC0, C_00000000, GPR(ipcm->gpr_running), C_00000000, C_00000000);
  1450. /* 03: */ OP(icode, &ptr, iSKIP, GPR_COND, GPR_COND, CC_REG_NONZERO, C_00000004);
  1451. /* wait until ((GPR_DBAC>>11) & 0x1f) == 0x1c) */
  1452. /* 04: */ OP(icode, &ptr, iANDXOR, GPR(tmp + 0), GPR_DBAC, GPR(gpr + 4), C_00000000);
  1453. /* 05: */ OP(icode, &ptr, iMACINT0, C_00000000, GPR(tmp + 0), C_ffffffff, GPR(gpr + 5));
  1454. /* 06: */ OP(icode, &ptr, iSKIP, GPR_COND, GPR_COND, CC_REG_NONZERO, GPR(gpr + 7));
  1455. /* 07: */ OP(icode, &ptr, iACC3, GPR(gpr + 12), C_00000010, C_00000001, C_00000000);
  1456. /* 08: */ OP(icode, &ptr, iANDXOR, GPR(ipcm->gpr_running), GPR(ipcm->gpr_running), C_00000000, C_00000001);
  1457. /* 09: */ OP(icode, &ptr, iACC3, GPR(gpr + 12), GPR(gpr + 12), C_ffffffff, C_00000000);
  1458. /* 0a: */ OP(icode, &ptr, iSKIP, GPR_COND, GPR_COND, CC_REG_NONZERO, GPR(gpr + 11));
  1459. /* 0b: */ OP(icode, &ptr, iACC3, GPR(gpr + 12), C_00000001, C_00000000, C_00000000);
  1460. /* 0c: */ OP(icode, &ptr, iANDXOR, GPR(tmp + 0), ETRAM_DATA(ipcm->etram[0]), GPR(gpr + 0), C_00000000);
  1461. /* 0d: */ OP(icode, &ptr, iLOG, GPR(tmp + 0), GPR(tmp + 0), GPR(gpr + 3), C_00000000);
  1462. /* 0e: */ OP(icode, &ptr, iANDXOR, GPR(8), GPR(tmp + 0), GPR(gpr + 1), GPR(gpr + 2));
  1463. /* 0f: */ OP(icode, &ptr, iSKIP, C_00000000, GPR_COND, CC_REG_MINUS, C_00000001);
  1464. /* 10: */ OP(icode, &ptr, iANDXOR, GPR(8), GPR(8), GPR(gpr + 1), GPR(gpr + 2));
  1465. /* 11: */ OP(icode, &ptr, iANDXOR, GPR(tmp + 0), ETRAM_DATA(ipcm->etram[1]), GPR(gpr + 0), C_00000000);
  1466. /* 12: */ OP(icode, &ptr, iLOG, GPR(tmp + 0), GPR(tmp + 0), GPR(gpr + 3), C_00000000);
  1467. /* 13: */ OP(icode, &ptr, iANDXOR, GPR(9), GPR(tmp + 0), GPR(gpr + 1), GPR(gpr + 2));
  1468. /* 14: */ OP(icode, &ptr, iSKIP, C_00000000, GPR_COND, CC_REG_MINUS, C_00000001);
  1469. /* 15: */ OP(icode, &ptr, iANDXOR, GPR(9), GPR(9), GPR(gpr + 1), GPR(gpr + 2));
  1470. /* 16: */ OP(icode, &ptr, iACC3, GPR(tmp + 0), GPR(ipcm->gpr_ptr), C_00000001, C_00000000);
  1471. /* 17: */ OP(icode, &ptr, iMACINT0, C_00000000, GPR(tmp + 0), C_ffffffff, GPR(ipcm->gpr_size));
  1472. /* 18: */ OP(icode, &ptr, iSKIP, GPR_COND, GPR_COND, CC_REG_MINUS, C_00000001);
  1473. /* 19: */ OP(icode, &ptr, iACC3, GPR(tmp + 0), C_00000000, C_00000000, C_00000000);
  1474. /* 1a: */ OP(icode, &ptr, iACC3, GPR(ipcm->gpr_ptr), GPR(tmp + 0), C_00000000, C_00000000);
  1475. /* 1b: */ OP(icode, &ptr, iACC3, GPR(ipcm->gpr_tmpcount), GPR(ipcm->gpr_tmpcount), C_ffffffff, C_00000000);
  1476. /* 1c: */ OP(icode, &ptr, iSKIP, GPR_COND, GPR_COND, CC_REG_NONZERO, C_00000002);
  1477. /* 1d: */ OP(icode, &ptr, iACC3, GPR(ipcm->gpr_tmpcount), GPR(ipcm->gpr_count), C_00000000, C_00000000);
  1478. /* 1e: */ OP(icode, &ptr, iACC3, GPR_IRQ, C_80000000, C_00000000, C_00000000);
  1479. /* 1f: */ OP(icode, &ptr, iANDXOR, GPR(ipcm->gpr_running), GPR(ipcm->gpr_running), C_00000001, C_00010000);
  1480. /* 20: */ OP(icode, &ptr, iANDXOR, GPR(ipcm->gpr_running), GPR(ipcm->gpr_running), C_00010000, C_00000001);
  1481. /* 21: */ OP(icode, &ptr, iSKIP, C_00000000, C_7fffffff, C_7fffffff, C_00000002);
  1482. /* 22: */ OP(icode, &ptr, iMACINT1, ETRAM_ADDR(ipcm->etram[0]), GPR(gpr + 8), GPR_DBAC, C_ffffffff);
  1483. /* 23: */ OP(icode, &ptr, iMACINT1, ETRAM_ADDR(ipcm->etram[1]), GPR(gpr + 9), GPR_DBAC, C_ffffffff);
  1484. /* 24: */
  1485. gpr += 13;
  1486. /* Wave Playback Volume */
  1487. for (z = 0; z < 2; z++)
  1488. VOLUME(icode, &ptr, playback + z, z, gpr + z);
  1489. snd_emu10k1_init_stereo_control(controls + i++, "Wave Playback Volume", gpr, 100);
  1490. gpr += 2;
  1491. /* Wave Surround Playback Volume */
  1492. for (z = 0; z < 2; z++)
  1493. VOLUME(icode, &ptr, playback + 2 + z, z, gpr + z);
  1494. snd_emu10k1_init_stereo_control(controls + i++, "Wave Surround Playback Volume", gpr, 0);
  1495. gpr += 2;
  1496. /* Wave Center/LFE Playback Volume */
  1497. OP(icode, &ptr, iACC3, GPR(tmp + 0), FXBUS(FXBUS_PCM_LEFT), FXBUS(FXBUS_PCM_RIGHT), C_00000000);
  1498. OP(icode, &ptr, iMACINT0, GPR(tmp + 0), C_00000000, GPR(tmp + 0), C_00000002);
  1499. VOLUME(icode, &ptr, playback + 4, tmp + 0, gpr);
  1500. snd_emu10k1_init_mono_control(controls + i++, "Wave Center Playback Volume", gpr++, 0);
  1501. VOLUME(icode, &ptr, playback + 5, tmp + 0, gpr);
  1502. snd_emu10k1_init_mono_control(controls + i++, "Wave LFE Playback Volume", gpr++, 0);
  1503. /* Wave Capture Volume + Switch */
  1504. for (z = 0; z < 2; z++) {
  1505. SWITCH(icode, &ptr, tmp + 0, z, gpr + 2 + z);
  1506. VOLUME(icode, &ptr, capture + z, tmp + 0, gpr + z);
  1507. }
  1508. snd_emu10k1_init_stereo_control(controls + i++, "Wave Capture Volume", gpr, 0);
  1509. snd_emu10k1_init_stereo_onoff_control(controls + i++, "Wave Capture Switch", gpr + 2, 0);
  1510. gpr += 4;
  1511. /* Synth Playback Volume */
  1512. for (z = 0; z < 2; z++)
  1513. VOLUME_ADD(icode, &ptr, playback + z, 2 + z, gpr + z);
  1514. snd_emu10k1_init_stereo_control(controls + i++, "Synth Playback Volume", gpr, 100);
  1515. gpr += 2;
  1516. /* Synth Capture Volume + Switch */
  1517. for (z = 0; z < 2; z++) {
  1518. SWITCH(icode, &ptr, tmp + 0, 2 + z, gpr + 2 + z);
  1519. VOLUME_ADD(icode, &ptr, capture + z, tmp + 0, gpr + z);
  1520. }
  1521. snd_emu10k1_init_stereo_control(controls + i++, "Synth Capture Volume", gpr, 0);
  1522. snd_emu10k1_init_stereo_onoff_control(controls + i++, "Synth Capture Switch", gpr + 2, 0);
  1523. gpr += 4;
  1524. /* Surround Digital Playback Volume (renamed later without Digital) */
  1525. for (z = 0; z < 2; z++)
  1526. VOLUME_ADD(icode, &ptr, playback + 2 + z, 4 + z, gpr + z);
  1527. snd_emu10k1_init_stereo_control(controls + i++, "Surround Digital Playback Volume", gpr, 100);
  1528. gpr += 2;
  1529. /* Surround Capture Volume + Switch */
  1530. for (z = 0; z < 2; z++) {
  1531. SWITCH(icode, &ptr, tmp + 0, 4 + z, gpr + 2 + z);
  1532. VOLUME_ADD(icode, &ptr, capture + z, tmp + 0, gpr + z);
  1533. }
  1534. snd_emu10k1_init_stereo_control(controls + i++, "Surround Capture Volume", gpr, 0);
  1535. snd_emu10k1_init_stereo_onoff_control(controls + i++, "Surround Capture Switch", gpr + 2, 0);
  1536. gpr += 4;
  1537. /* Center Playback Volume (renamed later without Digital) */
  1538. VOLUME_ADD(icode, &ptr, playback + 4, 6, gpr);
  1539. snd_emu10k1_init_mono_control(controls + i++, "Center Digital Playback Volume", gpr++, 100);
  1540. /* LFE Playback Volume + Switch (renamed later without Digital) */
  1541. VOLUME_ADD(icode, &ptr, playback + 5, 7, gpr);
  1542. snd_emu10k1_init_mono_control(controls + i++, "LFE Digital Playback Volume", gpr++, 100);
  1543. /* Front Playback Volume */
  1544. for (z = 0; z < 2; z++)
  1545. VOLUME_ADD(icode, &ptr, playback + z, 10 + z, gpr + z);
  1546. snd_emu10k1_init_stereo_control(controls + i++, "Front Playback Volume", gpr, 100);
  1547. gpr += 2;
  1548. /* Front Capture Volume + Switch */
  1549. for (z = 0; z < 2; z++) {
  1550. SWITCH(icode, &ptr, tmp + 0, 10 + z, gpr + 2);
  1551. VOLUME_ADD(icode, &ptr, capture + z, tmp + 0, gpr + z);
  1552. }
  1553. snd_emu10k1_init_stereo_control(controls + i++, "Front Capture Volume", gpr, 0);
  1554. snd_emu10k1_init_mono_onoff_control(controls + i++, "Front Capture Switch", gpr + 2, 0);
  1555. gpr += 3;
  1556. /*
  1557. * Process inputs
  1558. */
  1559. if (emu->fx8010.extin_mask & ((1<<EXTIN_AC97_L)|(1<<EXTIN_AC97_R))) {
  1560. /* AC'97 Playback Volume */
  1561. VOLUME_ADDIN(icode, &ptr, playback + 0, EXTIN_AC97_L, gpr); gpr++;
  1562. VOLUME_ADDIN(icode, &ptr, playback + 1, EXTIN_AC97_R, gpr); gpr++;
  1563. snd_emu10k1_init_stereo_control(controls + i++, "AC97 Playback Volume", gpr-2, 0);
  1564. /* AC'97 Capture Volume */
  1565. VOLUME_ADDIN(icode, &ptr, capture + 0, EXTIN_AC97_L, gpr); gpr++;
  1566. VOLUME_ADDIN(icode, &ptr, capture + 1, EXTIN_AC97_R, gpr); gpr++;
  1567. snd_emu10k1_init_stereo_control(controls + i++, "AC97 Capture Volume", gpr-2, 100);
  1568. }
  1569. if (emu->fx8010.extin_mask & ((1<<EXTIN_SPDIF_CD_L)|(1<<EXTIN_SPDIF_CD_R))) {
  1570. /* IEC958 TTL Playback Volume */
  1571. for (z = 0; z < 2; z++)
  1572. VOLUME_ADDIN(icode, &ptr, playback + z, EXTIN_SPDIF_CD_L + z, gpr + z);
  1573. snd_emu10k1_init_stereo_control(controls + i++, SNDRV_CTL_NAME_IEC958("TTL ",PLAYBACK,VOLUME), gpr, 0);
  1574. gpr += 2;
  1575. /* IEC958 TTL Capture Volume + Switch */
  1576. for (z = 0; z < 2; z++) {
  1577. SWITCH_IN(icode, &ptr, tmp + 0, EXTIN_SPDIF_CD_L + z, gpr + 2 + z);
  1578. VOLUME_ADD(icode, &ptr, capture + z, tmp + 0, gpr + z);
  1579. }
  1580. snd_emu10k1_init_stereo_control(controls + i++, SNDRV_CTL_NAME_IEC958("TTL ",CAPTURE,VOLUME), gpr, 0);
  1581. snd_emu10k1_init_stereo_onoff_control(controls + i++, SNDRV_CTL_NAME_IEC958("TTL ",CAPTURE,SWITCH), gpr + 2, 0);
  1582. gpr += 4;
  1583. }
  1584. if (emu->fx8010.extin_mask & ((1<<EXTIN_ZOOM_L)|(1<<EXTIN_ZOOM_R))) {
  1585. /* Zoom Video Playback Volume */
  1586. for (z = 0; z < 2; z++)
  1587. VOLUME_ADDIN(icode, &ptr, playback + z, EXTIN_ZOOM_L + z, gpr + z);
  1588. snd_emu10k1_init_stereo_control(controls + i++, "Zoom Video Playback Volume", gpr, 0);
  1589. gpr += 2;
  1590. /* Zoom Video Capture Volume + Switch */
  1591. for (z = 0; z < 2; z++) {
  1592. SWITCH_IN(icode, &ptr, tmp + 0, EXTIN_ZOOM_L + z, gpr + 2 + z);
  1593. VOLUME_ADD(icode, &ptr, capture + z, tmp + 0, gpr + z);
  1594. }
  1595. snd_emu10k1_init_stereo_control(controls + i++, "Zoom Video Capture Volume", gpr, 0);
  1596. snd_emu10k1_init_stereo_onoff_control(controls + i++, "Zoom Video Capture Switch", gpr + 2, 0);
  1597. gpr += 4;
  1598. }
  1599. if (emu->fx8010.extin_mask & ((1<<EXTIN_TOSLINK_L)|(1<<EXTIN_TOSLINK_R))) {
  1600. /* IEC958 Optical Playback Volume */
  1601. for (z = 0; z < 2; z++)
  1602. VOLUME_ADDIN(icode, &ptr, playback + z, EXTIN_TOSLINK_L + z, gpr + z);
  1603. snd_emu10k1_init_stereo_control(controls + i++, SNDRV_CTL_NAME_IEC958("LiveDrive ",PLAYBACK,VOLUME), gpr, 0);
  1604. gpr += 2;
  1605. /* IEC958 Optical Capture Volume */
  1606. for (z = 0; z < 2; z++) {
  1607. SWITCH_IN(icode, &ptr, tmp + 0, EXTIN_TOSLINK_L + z, gpr + 2 + z);
  1608. VOLUME_ADD(icode, &ptr, capture + z, tmp + 0, gpr + z);
  1609. }
  1610. snd_emu10k1_init_stereo_control(controls + i++, SNDRV_CTL_NAME_IEC958("LiveDrive ",CAPTURE,VOLUME), gpr, 0);
  1611. snd_emu10k1_init_stereo_onoff_control(controls + i++, SNDRV_CTL_NAME_IEC958("LiveDrive ",CAPTURE,SWITCH), gpr + 2, 0);
  1612. gpr += 4;
  1613. }
  1614. if (emu->fx8010.extin_mask & ((1<<EXTIN_LINE1_L)|(1<<EXTIN_LINE1_R))) {
  1615. /* Line LiveDrive Playback Volume */
  1616. for (z = 0; z < 2; z++)
  1617. VOLUME_ADDIN(icode, &ptr, playback + z, EXTIN_LINE1_L + z, gpr + z);
  1618. snd_emu10k1_init_stereo_control(controls + i++, "Line LiveDrive Playback Volume", gpr, 0);
  1619. gpr += 2;
  1620. /* Line LiveDrive Capture Volume + Switch */
  1621. for (z = 0; z < 2; z++) {
  1622. SWITCH_IN(icode, &ptr, tmp + 0, EXTIN_LINE1_L + z, gpr + 2 + z);
  1623. VOLUME_ADD(icode, &ptr, capture + z, tmp + 0, gpr + z);
  1624. }
  1625. snd_emu10k1_init_stereo_control(controls + i++, "Line LiveDrive Capture Volume", gpr, 0);
  1626. snd_emu10k1_init_stereo_onoff_control(controls + i++, "Line LiveDrive Capture Switch", gpr + 2, 0);
  1627. gpr += 4;
  1628. }
  1629. if (emu->fx8010.extin_mask & ((1<<EXTIN_COAX_SPDIF_L)|(1<<EXTIN_COAX_SPDIF_R))) {
  1630. /* IEC958 Coax Playback Volume */
  1631. for (z = 0; z < 2; z++)
  1632. VOLUME_ADDIN(icode, &ptr, playback + z, EXTIN_COAX_SPDIF_L + z, gpr + z);
  1633. snd_emu10k1_init_stereo_control(controls + i++, SNDRV_CTL_NAME_IEC958("Coaxial ",PLAYBACK,VOLUME), gpr, 0);
  1634. gpr += 2;
  1635. /* IEC958 Coax Capture Volume + Switch */
  1636. for (z = 0; z < 2; z++) {
  1637. SWITCH_IN(icode, &ptr, tmp + 0, EXTIN_COAX_SPDIF_L + z, gpr + 2 + z);
  1638. VOLUME_ADD(icode, &ptr, capture + z, tmp + 0, gpr + z);
  1639. }
  1640. snd_emu10k1_init_stereo_control(controls + i++, SNDRV_CTL_NAME_IEC958("Coaxial ",CAPTURE,VOLUME), gpr, 0);
  1641. snd_emu10k1_init_stereo_onoff_control(controls + i++, SNDRV_CTL_NAME_IEC958("Coaxial ",CAPTURE,SWITCH), gpr + 2, 0);
  1642. gpr += 4;
  1643. }
  1644. if (emu->fx8010.extin_mask & ((1<<EXTIN_LINE2_L)|(1<<EXTIN_LINE2_R))) {
  1645. /* Line LiveDrive Playback Volume */
  1646. for (z = 0; z < 2; z++)
  1647. VOLUME_ADDIN(icode, &ptr, playback + z, EXTIN_LINE2_L + z, gpr + z);
  1648. snd_emu10k1_init_stereo_control(controls + i++, "Line2 LiveDrive Playback Volume", gpr, 0);
  1649. controls[i-1].id.index = 1;
  1650. gpr += 2;
  1651. /* Line LiveDrive Capture Volume */
  1652. for (z = 0; z < 2; z++) {
  1653. SWITCH_IN(icode, &ptr, tmp + 0, EXTIN_LINE2_L + z, gpr + 2 + z);
  1654. VOLUME_ADD(icode, &ptr, capture + z, tmp + 0, gpr + z);
  1655. }
  1656. snd_emu10k1_init_stereo_control(controls + i++, "Line2 LiveDrive Capture Volume", gpr, 0);
  1657. controls[i-1].id.index = 1;
  1658. snd_emu10k1_init_stereo_onoff_control(controls + i++, "Line2 LiveDrive Capture Switch", gpr + 2, 0);
  1659. controls[i-1].id.index = 1;
  1660. gpr += 4;
  1661. }
  1662. /*
  1663. * Process tone control
  1664. */
  1665. OP(icode, &ptr, iACC3, GPR(playback + SND_EMU10K1_PLAYBACK_CHANNELS + 0), GPR(playback + 0), C_00000000, C_00000000); /* left */
  1666. OP(icode, &ptr, iACC3, GPR(playback + SND_EMU10K1_PLAYBACK_CHANNELS + 1), GPR(playback + 1), C_00000000, C_00000000); /* right */
  1667. OP(icode, &ptr, iACC3, GPR(playback + SND_EMU10K1_PLAYBACK_CHANNELS + 2), GPR(playback + 2), C_00000000, C_00000000); /* rear left */
  1668. OP(icode, &ptr, iACC3, GPR(playback + SND_EMU10K1_PLAYBACK_CHANNELS + 3), GPR(playback + 3), C_00000000, C_00000000); /* rear right */
  1669. OP(icode, &ptr, iACC3, GPR(playback + SND_EMU10K1_PLAYBACK_CHANNELS + 4), GPR(playback + 4), C_00000000, C_00000000); /* center */
  1670. OP(icode, &ptr, iACC3, GPR(playback + SND_EMU10K1_PLAYBACK_CHANNELS + 5), GPR(playback + 5), C_00000000, C_00000000); /* LFE */
  1671. ctl = &controls[i + 0];
  1672. ctl->id.iface = SNDRV_CTL_ELEM_IFACE_MIXER;
  1673. strcpy(ctl->id.name, "Tone Control - Bass");
  1674. ctl->vcount = 2;
  1675. ctl->count = 10;
  1676. ctl->min = 0;
  1677. ctl->max = 40;
  1678. ctl->value[0] = ctl->value[1] = 20;
  1679. ctl->translation = EMU10K1_GPR_TRANSLATION_BASS;
  1680. ctl = &controls[i + 1];
  1681. ctl->id.iface = SNDRV_CTL_ELEM_IFACE_MIXER;
  1682. strcpy(ctl->id.name, "Tone Control - Treble");
  1683. ctl->vcount = 2;
  1684. ctl->count = 10;
  1685. ctl->min = 0;
  1686. ctl->max = 40;
  1687. ctl->value[0] = ctl->value[1] = 20;
  1688. ctl->translation = EMU10K1_GPR_TRANSLATION_TREBLE;
  1689. #define BASS_GPR 0x8c
  1690. #define TREBLE_GPR 0x96
  1691. for (z = 0; z < 5; z++) {
  1692. int j;
  1693. for (j = 0; j < 2; j++) {
  1694. controls[i + 0].gpr[z * 2 + j] = BASS_GPR + z * 2 + j;
  1695. controls[i + 1].gpr[z * 2 + j] = TREBLE_GPR + z * 2 + j;
  1696. }
  1697. }
  1698. for (z = 0; z < 3; z++) { /* front/rear/center-lfe */
  1699. int j, k, l, d;
  1700. for (j = 0; j < 2; j++) { /* left/right */
  1701. k = 0xa0 + (z * 8) + (j * 4);
  1702. l = 0xd0 + (z * 8) + (j * 4);
  1703. d = playback + SND_EMU10K1_PLAYBACK_CHANNELS + z * 2 + j;
  1704. OP(icode, &ptr, iMAC0, C_00000000, C_00000000, GPR(d), GPR(BASS_GPR + 0 + j));
  1705. OP(icode, &ptr, iMACMV, GPR(k+1), GPR(k), GPR(k+1), GPR(BASS_GPR + 4 + j));
  1706. OP(icode, &ptr, iMACMV, GPR(k), GPR(d), GPR(k), GPR(BASS_GPR + 2 + j));
  1707. OP(icode, &ptr, iMACMV, GPR(k+3), GPR(k+2), GPR(k+3), GPR(BASS_GPR + 8 + j));
  1708. OP(icode, &ptr, iMAC0, GPR(k+2), GPR_ACCU, GPR(k+2), GPR(BASS_GPR + 6 + j));
  1709. OP(icode, &ptr, iACC3, GPR(k+2), GPR(k+2), GPR(k+2), C_00000000);
  1710. OP(icode, &ptr, iMAC0, C_00000000, C_00000000, GPR(k+2), GPR(TREBLE_GPR + 0 + j));
  1711. OP(icode, &ptr, iMACMV, GPR(l+1), GPR(l), GPR(l+1), GPR(TREBLE_GPR + 4 + j));
  1712. OP(icode, &ptr, iMACMV, GPR(l), GPR(k+2), GPR(l), GPR(TREBLE_GPR + 2 + j));
  1713. OP(icode, &ptr, iMACMV, GPR(l+3), GPR(l+2), GPR(l+3), GPR(TREBLE_GPR + 8 + j));
  1714. OP(icode, &ptr, iMAC0, GPR(l+2), GPR_ACCU, GPR(l+2), GPR(TREBLE_GPR + 6 + j));
  1715. OP(icode, &ptr, iMACINT0, GPR(l+2), C_00000000, GPR(l+2), C_00000010);
  1716. OP(icode, &ptr, iACC3, GPR(d), GPR(l+2), C_00000000, C_00000000);
  1717. if (z == 2) /* center */
  1718. break;
  1719. }
  1720. }
  1721. i += 2;
  1722. #undef BASS_GPR
  1723. #undef TREBLE_GPR
  1724. for (z = 0; z < 6; z++) {
  1725. SWITCH(icode, &ptr, tmp + 0, playback + SND_EMU10K1_PLAYBACK_CHANNELS + z, gpr + 0);
  1726. SWITCH_NEG(icode, &ptr, tmp + 1, gpr + 0);
  1727. SWITCH(icode, &ptr, tmp + 1, playback + z, tmp + 1);
  1728. OP(icode, &ptr, iACC3, GPR(playback + SND_EMU10K1_PLAYBACK_CHANNELS + z), GPR(tmp + 0), GPR(tmp + 1), C_00000000);
  1729. }
  1730. snd_emu10k1_init_stereo_onoff_control(controls + i++, "Tone Control - Switch", gpr, 0);
  1731. gpr += 2;
  1732. /*
  1733. * Process outputs
  1734. */
  1735. if (emu->fx8010.extout_mask & ((1<<EXTOUT_AC97_L)|(1<<EXTOUT_AC97_R))) {
  1736. /* AC'97 Playback Volume */
  1737. for (z = 0; z < 2; z++)
  1738. OP(icode, &ptr, iACC3, EXTOUT(EXTOUT_AC97_L + z), GPR(playback + SND_EMU10K1_PLAYBACK_CHANNELS + z), C_00000000, C_00000000);
  1739. }
  1740. if (emu->fx8010.extout_mask & ((1<<EXTOUT_TOSLINK_L)|(1<<EXTOUT_TOSLINK_R))) {
  1741. /* IEC958 Optical Raw Playback Switch */
  1742. for (z = 0; z < 2; z++) {
  1743. SWITCH(icode, &ptr, tmp + 0, 8 + z, gpr + z);
  1744. SWITCH_NEG(icode, &ptr, tmp + 1, gpr + z);
  1745. SWITCH(icode, &ptr, tmp + 1, playback + SND_EMU10K1_PLAYBACK_CHANNELS + z, tmp + 1);
  1746. OP(icode, &ptr, iACC3, EXTOUT(EXTOUT_TOSLINK_L + z), GPR(tmp + 0), GPR(tmp + 1), C_00000000);
  1747. #ifdef EMU10K1_CAPTURE_DIGITAL_OUT
  1748. OP(icode, &ptr, iACC3, EXTOUT(EXTOUT_ADC_CAP_L + z), GPR(tmp + 0), GPR(tmp + 1), C_00000000);
  1749. #endif
  1750. }
  1751. snd_emu10k1_init_stereo_onoff_control(controls + i++, SNDRV_CTL_NAME_IEC958("Optical Raw ",PLAYBACK,SWITCH), gpr, 0);
  1752. gpr += 2;
  1753. }
  1754. if (emu->fx8010.extout_mask & ((1<<EXTOUT_HEADPHONE_L)|(1<<EXTOUT_HEADPHONE_R))) {
  1755. /* Headphone Playback Volume */
  1756. for (z = 0; z < 2; z++) {
  1757. SWITCH(icode, &ptr, tmp + 0, playback + SND_EMU10K1_PLAYBACK_CHANNELS + 4 + z, gpr + 2 + z);
  1758. SWITCH_NEG(icode, &ptr, tmp + 1, gpr + 2 + z);
  1759. SWITCH(icode, &ptr, tmp + 1, playback + SND_EMU10K1_PLAYBACK_CHANNELS + z, tmp + 1);
  1760. OP(icode, &ptr, iACC3, GPR(tmp + 0), GPR(tmp + 0), GPR(tmp + 1), C_00000000);
  1761. VOLUME_OUT(icode, &ptr, EXTOUT_HEADPHONE_L + z, tmp + 0, gpr + z);
  1762. }
  1763. snd_emu10k1_init_stereo_control(controls + i++, "Headphone Playback Volume", gpr + 0, 0);
  1764. controls[i-1].id.index = 1; /* AC'97 can have also Headphone control */
  1765. snd_emu10k1_init_mono_onoff_control(controls + i++, "Headphone Center Playback Switch", gpr + 2, 0);
  1766. controls[i-1].id.index = 1;
  1767. snd_emu10k1_init_mono_onoff_control(controls + i++, "Headphone LFE Playback Switch", gpr + 3, 0);
  1768. controls[i-1].id.index = 1;
  1769. gpr += 4;
  1770. }
  1771. if (emu->fx8010.extout_mask & ((1<<EXTOUT_REAR_L)|(1<<EXTOUT_REAR_R)))
  1772. for (z = 0; z < 2; z++)
  1773. OP(icode, &ptr, iACC3, EXTOUT(EXTOUT_REAR_L + z), GPR(playback + SND_EMU10K1_PLAYBACK_CHANNELS + 2 + z), C_00000000, C_00000000);
  1774. if (emu->fx8010.extout_mask & ((1<<EXTOUT_AC97_REAR_L)|(1<<EXTOUT_AC97_REAR_R)))
  1775. for (z = 0; z < 2; z++)
  1776. OP(icode, &ptr, iACC3, EXTOUT(EXTOUT_AC97_REAR_L + z), GPR(playback + SND_EMU10K1_PLAYBACK_CHANNELS + 2 + z), C_00000000, C_00000000);
  1777. if (emu->fx8010.extout_mask & (1<<EXTOUT_AC97_CENTER)) {
  1778. #ifndef EMU10K1_CENTER_LFE_FROM_FRONT
  1779. OP(icode, &ptr, iACC3, EXTOUT(EXTOUT_AC97_CENTER), GPR(playback + SND_EMU10K1_PLAYBACK_CHANNELS + 4), C_00000000, C_00000000);
  1780. OP(icode, &ptr, iACC3, EXTOUT(EXTOUT_ACENTER), GPR(playback + SND_EMU10K1_PLAYBACK_CHANNELS + 4), C_00000000, C_00000000);
  1781. #else
  1782. OP(icode, &ptr, iACC3, EXTOUT(EXTOUT_AC97_CENTER), GPR(playback + SND_EMU10K1_PLAYBACK_CHANNELS + 0), C_00000000, C_00000000);
  1783. OP(icode, &ptr, iACC3, EXTOUT(EXTOUT_ACENTER), GPR(playback + SND_EMU10K1_PLAYBACK_CHANNELS + 0), C_00000000, C_00000000);
  1784. #endif
  1785. }
  1786. if (emu->fx8010.extout_mask & (1<<EXTOUT_AC97_LFE)) {
  1787. #ifndef EMU10K1_CENTER_LFE_FROM_FRONT
  1788. OP(icode, &ptr, iACC3, EXTOUT(EXTOUT_AC97_LFE), GPR(playback + SND_EMU10K1_PLAYBACK_CHANNELS + 5), C_00000000, C_00000000);
  1789. OP(icode, &ptr, iACC3, EXTOUT(EXTOUT_ALFE), GPR(playback + SND_EMU10K1_PLAYBACK_CHANNELS + 5), C_00000000, C_00000000);
  1790. #else
  1791. OP(icode, &ptr, iACC3, EXTOUT(EXTOUT_AC97_LFE), GPR(playback + SND_EMU10K1_PLAYBACK_CHANNELS + 1), C_00000000, C_00000000);
  1792. OP(icode, &ptr, iACC3, EXTOUT(EXTOUT_ALFE), GPR(playback + SND_EMU10K1_PLAYBACK_CHANNELS + 1), C_00000000, C_00000000);
  1793. #endif
  1794. }
  1795. #ifndef EMU10K1_CAPTURE_DIGITAL_OUT
  1796. for (z = 0; z < 2; z++)
  1797. OP(icode, &ptr, iACC3, EXTOUT(EXTOUT_ADC_CAP_L + z), GPR(capture + z), C_00000000, C_00000000);
  1798. #endif
  1799. if (emu->fx8010.extout_mask & (1<<EXTOUT_MIC_CAP))
  1800. OP(icode, &ptr, iACC3, EXTOUT(EXTOUT_MIC_CAP), GPR(capture + 2), C_00000000, C_00000000);
  1801. /* EFX capture - capture the 16 EXTINS */
  1802. if (emu->card_capabilities->sblive51) {
  1803. /* On the Live! 5.1, FXBUS2(1) and FXBUS(2) are shared with EXTOUT_ACENTER
  1804. * and EXTOUT_ALFE, so we can't connect inputs to them for multitrack recording.
  1805. *
  1806. * Since only 14 of the 16 EXTINs are used, this is not a big problem.
  1807. * We route AC97L and R to FX capture 14 and 15, SPDIF CD in to FX capture
  1808. * 0 and 3, then the rest of the EXTINs to the corresponding FX capture
  1809. * channel. Multitrack recorders will still see the center/lfe output signal
  1810. * on the second and third channels.
  1811. */
  1812. OP(icode, &ptr, iACC3, FXBUS2(14), C_00000000, C_00000000, EXTIN(0));
  1813. OP(icode, &ptr, iACC3, FXBUS2(15), C_00000000, C_00000000, EXTIN(1));
  1814. OP(icode, &ptr, iACC3, FXBUS2(0), C_00000000, C_00000000, EXTIN(2));
  1815. OP(icode, &ptr, iACC3, FXBUS2(3), C_00000000, C_00000000, EXTIN(3));
  1816. for (z = 4; z < 14; z++)
  1817. OP(icode, &ptr, iACC3, FXBUS2(z), C_00000000, C_00000000, EXTIN(z));
  1818. } else {
  1819. for (z = 0; z < 16; z++)
  1820. OP(icode, &ptr, iACC3, FXBUS2(z), C_00000000, C_00000000, EXTIN(z));
  1821. }
  1822. if (gpr > tmp) {
  1823. snd_BUG();
  1824. err = -EIO;
  1825. goto __err;
  1826. }
  1827. if (i > SND_EMU10K1_GPR_CONTROLS) {
  1828. snd_BUG();
  1829. err = -EIO;
  1830. goto __err;
  1831. }
  1832. /* clear remaining instruction memory */
  1833. while (ptr < 0x200)
  1834. OP(icode, &ptr, iACC3, C_00000000, C_00000000, C_00000000, C_00000000);
  1835. if ((err = snd_emu10k1_fx8010_tram_setup(emu, ipcm->buffer_size)) < 0)
  1836. goto __err;
  1837. seg = snd_enter_user();
  1838. icode->gpr_add_control_count = i;
  1839. icode->gpr_add_controls = (emu10k1_fx8010_control_gpr_t __user *)controls;
  1840. err = snd_emu10k1_icode_poke(emu, icode);
  1841. snd_leave_user(seg);
  1842. if (err >= 0)
  1843. err = snd_emu10k1_ipcm_poke(emu, ipcm);
  1844. __err:
  1845. kfree(ipcm);
  1846. kfree(controls);
  1847. if (icode != NULL) {
  1848. kfree((void __force *)icode->gpr_map);
  1849. kfree(icode);
  1850. }
  1851. return err;
  1852. }
  1853. int __devinit snd_emu10k1_init_efx(emu10k1_t *emu)
  1854. {
  1855. if (emu->audigy)
  1856. return _snd_emu10k1_audigy_init_efx(emu);
  1857. else
  1858. return _snd_emu10k1_init_efx(emu);
  1859. }
  1860. void snd_emu10k1_free_efx(emu10k1_t *emu)
  1861. {
  1862. /* stop processor */
  1863. if (emu->audigy)
  1864. snd_emu10k1_ptr_write(emu, A_DBG, 0, emu->fx8010.dbg = A_DBG_SINGLE_STEP);
  1865. else
  1866. snd_emu10k1_ptr_write(emu, DBG, 0, emu->fx8010.dbg = EMU10K1_DBG_SINGLE_STEP);
  1867. }
  1868. #if 0 // FIXME: who use them?
  1869. int snd_emu10k1_fx8010_tone_control_activate(emu10k1_t *emu, int output)
  1870. {
  1871. if (output < 0 || output >= 6)
  1872. return -EINVAL;
  1873. snd_emu10k1_ptr_write(emu, emu->gpr_base + 0x94 + output, 0, 1);
  1874. return 0;
  1875. }
  1876. int snd_emu10k1_fx8010_tone_control_deactivate(emu10k1_t *emu, int output)
  1877. {
  1878. if (output < 0 || output >= 6)
  1879. return -EINVAL;
  1880. snd_emu10k1_ptr_write(emu, emu->gpr_base + 0x94 + output, 0, 0);
  1881. return 0;
  1882. }
  1883. #endif
  1884. int snd_emu10k1_fx8010_tram_setup(emu10k1_t *emu, u32 size)
  1885. {
  1886. u8 size_reg = 0;
  1887. /* size is in samples */
  1888. if (size != 0) {
  1889. size = (size - 1) >> 13;
  1890. while (size) {
  1891. size >>= 1;
  1892. size_reg++;
  1893. }
  1894. size = 0x2000 << size_reg;
  1895. }
  1896. if ((emu->fx8010.etram_pages.bytes / 2) == size)
  1897. return 0;
  1898. spin_lock_irq(&emu->emu_lock);
  1899. outl(HCFG_LOCKTANKCACHE_MASK | inl(emu->port + HCFG), emu->port + HCFG);
  1900. spin_unlock_irq(&emu->emu_lock);
  1901. snd_emu10k1_ptr_write(emu, TCB, 0, 0);
  1902. snd_emu10k1_ptr_write(emu, TCBS, 0, 0);
  1903. if (emu->fx8010.etram_pages.area != NULL) {
  1904. snd_dma_free_pages(&emu->fx8010.etram_pages);
  1905. emu->fx8010.etram_pages.area = NULL;
  1906. emu->fx8010.etram_pages.bytes = 0;
  1907. }
  1908. if (size > 0) {
  1909. if (snd_dma_alloc_pages(SNDRV_DMA_TYPE_DEV, snd_dma_pci_data(emu->pci),
  1910. size * 2, &emu->fx8010.etram_pages) < 0)
  1911. return -ENOMEM;
  1912. memset(emu->fx8010.etram_pages.area, 0, size * 2);
  1913. snd_emu10k1_ptr_write(emu, TCB, 0, emu->fx8010.etram_pages.addr);
  1914. snd_emu10k1_ptr_write(emu, TCBS, 0, size_reg);
  1915. spin_lock_irq(&emu->emu_lock);
  1916. outl(inl(emu->port + HCFG) & ~HCFG_LOCKTANKCACHE_MASK, emu->port + HCFG);
  1917. spin_unlock_irq(&emu->emu_lock);
  1918. }
  1919. return 0;
  1920. }
  1921. static int snd_emu10k1_fx8010_open(snd_hwdep_t * hw, struct file *file)
  1922. {
  1923. return 0;
  1924. }
  1925. static void copy_string(char *dst, char *src, char *null, int idx)
  1926. {
  1927. if (src == NULL)
  1928. sprintf(dst, "%s %02X", null, idx);
  1929. else
  1930. strcpy(dst, src);
  1931. }
  1932. static int snd_emu10k1_fx8010_info(emu10k1_t *emu, emu10k1_fx8010_info_t *info)
  1933. {
  1934. char **fxbus, **extin, **extout;
  1935. unsigned short fxbus_mask, extin_mask, extout_mask;
  1936. int res;
  1937. memset(info, 0, sizeof(info));
  1938. info->internal_tram_size = emu->fx8010.itram_size;
  1939. info->external_tram_size = emu->fx8010.etram_pages.bytes / 2;
  1940. fxbus = fxbuses;
  1941. extin = emu->audigy ? audigy_ins : creative_ins;
  1942. extout = emu->audigy ? audigy_outs : creative_outs;
  1943. fxbus_mask = emu->fx8010.fxbus_mask;
  1944. extin_mask = emu->fx8010.extin_mask;
  1945. extout_mask = emu->fx8010.extout_mask;
  1946. for (res = 0; res < 16; res++, fxbus++, extin++, extout++) {
  1947. copy_string(info->fxbus_names[res], fxbus_mask & (1 << res) ? *fxbus : NULL, "FXBUS", res);
  1948. copy_string(info->extin_names[res], extin_mask & (1 << res) ? *extin : NULL, "Unused", res);
  1949. copy_string(info->extout_names[res], extout_mask & (1 << res) ? *extout : NULL, "Unused", res);
  1950. }
  1951. for (res = 16; res < 32; res++, extout++)
  1952. copy_string(info->extout_names[res], extout_mask & (1 << res) ? *extout : NULL, "Unused", res);
  1953. info->gpr_controls = emu->fx8010.gpr_count;
  1954. return 0;
  1955. }
  1956. static int snd_emu10k1_fx8010_ioctl(snd_hwdep_t * hw, struct file *file, unsigned int cmd, unsigned long arg)
  1957. {
  1958. emu10k1_t *emu = hw->private_data;
  1959. emu10k1_fx8010_info_t *info;
  1960. emu10k1_fx8010_code_t *icode;
  1961. emu10k1_fx8010_pcm_t *ipcm;
  1962. unsigned int addr;
  1963. void __user *argp = (void __user *)arg;
  1964. int res;
  1965. switch (cmd) {
  1966. case SNDRV_EMU10K1_IOCTL_INFO:
  1967. info = (emu10k1_fx8010_info_t *)kmalloc(sizeof(*info), GFP_KERNEL);
  1968. if (!info)
  1969. return -ENOMEM;
  1970. if ((res = snd_emu10k1_fx8010_info(emu, info)) < 0) {
  1971. kfree(info);
  1972. return res;
  1973. }
  1974. if (copy_to_user(argp, info, sizeof(*info))) {
  1975. kfree(info);
  1976. return -EFAULT;
  1977. }
  1978. kfree(info);
  1979. return 0;
  1980. case SNDRV_EMU10K1_IOCTL_CODE_POKE:
  1981. if (!capable(CAP_SYS_ADMIN))
  1982. return -EPERM;
  1983. icode = (emu10k1_fx8010_code_t *)kmalloc(sizeof(*icode), GFP_KERNEL);
  1984. if (icode == NULL)
  1985. return -ENOMEM;
  1986. if (copy_from_user(icode, argp, sizeof(*icode))) {
  1987. kfree(icode);
  1988. return -EFAULT;
  1989. }
  1990. res = snd_emu10k1_icode_poke(emu, icode);
  1991. kfree(icode);
  1992. return res;
  1993. case SNDRV_EMU10K1_IOCTL_CODE_PEEK:
  1994. icode = (emu10k1_fx8010_code_t *)kmalloc(sizeof(*icode), GFP_KERNEL);
  1995. if (icode == NULL)
  1996. return -ENOMEM;
  1997. if (copy_from_user(icode, argp, sizeof(*icode))) {
  1998. kfree(icode);
  1999. return -EFAULT;
  2000. }
  2001. res = snd_emu10k1_icode_peek(emu, icode);
  2002. if (res == 0 && copy_to_user(argp, icode, sizeof(*icode))) {
  2003. kfree(icode);
  2004. return -EFAULT;
  2005. }
  2006. kfree(icode);
  2007. return res;
  2008. case SNDRV_EMU10K1_IOCTL_PCM_POKE:
  2009. ipcm = (emu10k1_fx8010_pcm_t *)kmalloc(sizeof(*ipcm), GFP_KERNEL);
  2010. if (ipcm == NULL)
  2011. return -ENOMEM;
  2012. if (copy_from_user(ipcm, argp, sizeof(*ipcm))) {
  2013. kfree(ipcm);
  2014. return -EFAULT;
  2015. }
  2016. res = snd_emu10k1_ipcm_poke(emu, ipcm);
  2017. kfree(ipcm);
  2018. return res;
  2019. case SNDRV_EMU10K1_IOCTL_PCM_PEEK:
  2020. ipcm = kzalloc(sizeof(*ipcm), GFP_KERNEL);
  2021. if (ipcm == NULL)
  2022. return -ENOMEM;
  2023. if (copy_from_user(ipcm, argp, sizeof(*ipcm))) {
  2024. kfree(ipcm);
  2025. return -EFAULT;
  2026. }
  2027. res = snd_emu10k1_ipcm_peek(emu, ipcm);
  2028. if (res == 0 && copy_to_user(argp, ipcm, sizeof(*ipcm))) {
  2029. kfree(ipcm);
  2030. return -EFAULT;
  2031. }
  2032. kfree(ipcm);
  2033. return res;
  2034. case SNDRV_EMU10K1_IOCTL_TRAM_SETUP:
  2035. if (!capable(CAP_SYS_ADMIN))
  2036. return -EPERM;
  2037. if (get_user(addr, (unsigned int __user *)argp))
  2038. return -EFAULT;
  2039. down(&emu->fx8010.lock);
  2040. res = snd_emu10k1_fx8010_tram_setup(emu, addr);
  2041. up(&emu->fx8010.lock);
  2042. return res;
  2043. case SNDRV_EMU10K1_IOCTL_STOP:
  2044. if (!capable(CAP_SYS_ADMIN))
  2045. return -EPERM;
  2046. if (emu->audigy)
  2047. snd_emu10k1_ptr_write(emu, A_DBG, 0, emu->fx8010.dbg |= A_DBG_SINGLE_STEP);
  2048. else
  2049. snd_emu10k1_ptr_write(emu, DBG, 0, emu->fx8010.dbg |= EMU10K1_DBG_SINGLE_STEP);
  2050. return 0;
  2051. case SNDRV_EMU10K1_IOCTL_CONTINUE:
  2052. if (!capable(CAP_SYS_ADMIN))
  2053. return -EPERM;
  2054. if (emu->audigy)
  2055. snd_emu10k1_ptr_write(emu, A_DBG, 0, emu->fx8010.dbg = 0);
  2056. else
  2057. snd_emu10k1_ptr_write(emu, DBG, 0, emu->fx8010.dbg = 0);
  2058. return 0;
  2059. case SNDRV_EMU10K1_IOCTL_ZERO_TRAM_COUNTER:
  2060. if (!capable(CAP_SYS_ADMIN))
  2061. return -EPERM;
  2062. if (emu->audigy)
  2063. snd_emu10k1_ptr_write(emu, A_DBG, 0, emu->fx8010.dbg | A_DBG_ZC);
  2064. else
  2065. snd_emu10k1_ptr_write(emu, DBG, 0, emu->fx8010.dbg | EMU10K1_DBG_ZC);
  2066. udelay(10);
  2067. if (emu->audigy)
  2068. snd_emu10k1_ptr_write(emu, A_DBG, 0, emu->fx8010.dbg);
  2069. else
  2070. snd_emu10k1_ptr_write(emu, DBG, 0, emu->fx8010.dbg);
  2071. return 0;
  2072. case SNDRV_EMU10K1_IOCTL_SINGLE_STEP:
  2073. if (!capable(CAP_SYS_ADMIN))
  2074. return -EPERM;
  2075. if (get_user(addr, (unsigned int __user *)argp))
  2076. return -EFAULT;
  2077. if (addr > 0x1ff)
  2078. return -EINVAL;
  2079. if (emu->audigy)
  2080. snd_emu10k1_ptr_write(emu, A_DBG, 0, emu->fx8010.dbg |= A_DBG_SINGLE_STEP | addr);
  2081. else
  2082. snd_emu10k1_ptr_write(emu, DBG, 0, emu->fx8010.dbg |= EMU10K1_DBG_SINGLE_STEP | addr);
  2083. udelay(10);
  2084. if (emu->audigy)
  2085. snd_emu10k1_ptr_write(emu, A_DBG, 0, emu->fx8010.dbg |= A_DBG_SINGLE_STEP | A_DBG_STEP_ADDR | addr);
  2086. else
  2087. snd_emu10k1_ptr_write(emu, DBG, 0, emu->fx8010.dbg |= EMU10K1_DBG_SINGLE_STEP | EMU10K1_DBG_STEP | addr);
  2088. return 0;
  2089. case SNDRV_EMU10K1_IOCTL_DBG_READ:
  2090. if (emu->audigy)
  2091. addr = snd_emu10k1_ptr_read(emu, A_DBG, 0);
  2092. else
  2093. addr = snd_emu10k1_ptr_read(emu, DBG, 0);
  2094. if (put_user(addr, (unsigned int __user *)argp))
  2095. return -EFAULT;
  2096. return 0;
  2097. }
  2098. return -ENOTTY;
  2099. }
  2100. static int snd_emu10k1_fx8010_release(snd_hwdep_t * hw, struct file *file)
  2101. {
  2102. return 0;
  2103. }
  2104. int __devinit snd_emu10k1_fx8010_new(emu10k1_t *emu, int device, snd_hwdep_t ** rhwdep)
  2105. {
  2106. snd_hwdep_t *hw;
  2107. int err;
  2108. if (rhwdep)
  2109. *rhwdep = NULL;
  2110. if ((err = snd_hwdep_new(emu->card, "FX8010", device, &hw)) < 0)
  2111. return err;
  2112. strcpy(hw->name, "EMU10K1 (FX8010)");
  2113. hw->iface = SNDRV_HWDEP_IFACE_EMU10K1;
  2114. hw->ops.open = snd_emu10k1_fx8010_open;
  2115. hw->ops.ioctl = snd_emu10k1_fx8010_ioctl;
  2116. hw->ops.release = snd_emu10k1_fx8010_release;
  2117. hw->private_data = emu;
  2118. if (rhwdep)
  2119. *rhwdep = hw;
  2120. return 0;
  2121. }