emupcm.c 52 KB

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  1. /*
  2. * Copyright (c) by Jaroslav Kysela <perex@suse.cz>
  3. * Creative Labs, Inc.
  4. * Routines for control of EMU10K1 chips / PCM routines
  5. * Multichannel PCM support Copyright (c) Lee Revell <rlrevell@joe-job.com>
  6. *
  7. * BUGS:
  8. * --
  9. *
  10. * TODO:
  11. * --
  12. *
  13. * This program is free software; you can redistribute it and/or modify
  14. * it under the terms of the GNU General Public License as published by
  15. * the Free Software Foundation; either version 2 of the License, or
  16. * (at your option) any later version.
  17. *
  18. * This program is distributed in the hope that it will be useful,
  19. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  20. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  21. * GNU General Public License for more details.
  22. *
  23. * You should have received a copy of the GNU General Public License
  24. * along with this program; if not, write to the Free Software
  25. * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
  26. *
  27. */
  28. #include <sound/driver.h>
  29. #include <linux/pci.h>
  30. #include <linux/delay.h>
  31. #include <linux/slab.h>
  32. #include <linux/time.h>
  33. #include <linux/init.h>
  34. #include <sound/core.h>
  35. #include <sound/emu10k1.h>
  36. static void snd_emu10k1_pcm_interrupt(emu10k1_t *emu, emu10k1_voice_t *voice)
  37. {
  38. emu10k1_pcm_t *epcm;
  39. if ((epcm = voice->epcm) == NULL)
  40. return;
  41. if (epcm->substream == NULL)
  42. return;
  43. #if 0
  44. printk("IRQ: position = 0x%x, period = 0x%x, size = 0x%x\n",
  45. epcm->substream->runtime->hw->pointer(emu, epcm->substream),
  46. snd_pcm_lib_period_bytes(epcm->substream),
  47. snd_pcm_lib_buffer_bytes(epcm->substream));
  48. #endif
  49. snd_pcm_period_elapsed(epcm->substream);
  50. }
  51. static void snd_emu10k1_pcm_ac97adc_interrupt(emu10k1_t *emu, unsigned int status)
  52. {
  53. #if 0
  54. if (status & IPR_ADCBUFHALFFULL) {
  55. if (emu->pcm_capture_substream->runtime->mode == SNDRV_PCM_MODE_FRAME)
  56. return;
  57. }
  58. #endif
  59. snd_pcm_period_elapsed(emu->pcm_capture_substream);
  60. }
  61. static void snd_emu10k1_pcm_ac97mic_interrupt(emu10k1_t *emu, unsigned int status)
  62. {
  63. #if 0
  64. if (status & IPR_MICBUFHALFFULL) {
  65. if (emu->pcm_capture_mic_substream->runtime->mode == SNDRV_PCM_MODE_FRAME)
  66. return;
  67. }
  68. #endif
  69. snd_pcm_period_elapsed(emu->pcm_capture_mic_substream);
  70. }
  71. static void snd_emu10k1_pcm_efx_interrupt(emu10k1_t *emu, unsigned int status)
  72. {
  73. #if 0
  74. if (status & IPR_EFXBUFHALFFULL) {
  75. if (emu->pcm_capture_efx_substream->runtime->mode == SNDRV_PCM_MODE_FRAME)
  76. return;
  77. }
  78. #endif
  79. snd_pcm_period_elapsed(emu->pcm_capture_efx_substream);
  80. }
  81. static snd_pcm_uframes_t snd_emu10k1_efx_playback_pointer(snd_pcm_substream_t * substream)
  82. {
  83. emu10k1_t *emu = snd_pcm_substream_chip(substream);
  84. snd_pcm_runtime_t *runtime = substream->runtime;
  85. emu10k1_pcm_t *epcm = runtime->private_data;
  86. unsigned int ptr;
  87. if (!epcm->running)
  88. return 0;
  89. ptr = snd_emu10k1_ptr_read(emu, CCCA, epcm->voices[0]->number) & 0x00ffffff;
  90. ptr += runtime->buffer_size;
  91. ptr -= epcm->ccca_start_addr;
  92. ptr %= runtime->buffer_size;
  93. return ptr;
  94. }
  95. static int snd_emu10k1_pcm_channel_alloc(emu10k1_pcm_t * epcm, int voices)
  96. {
  97. int err, i;
  98. if (epcm->voices[1] != NULL && voices < 2) {
  99. snd_emu10k1_voice_free(epcm->emu, epcm->voices[1]);
  100. epcm->voices[1] = NULL;
  101. }
  102. for (i = 0; i < voices; i++) {
  103. if (epcm->voices[i] == NULL)
  104. break;
  105. }
  106. if (i == voices)
  107. return 0; /* already allocated */
  108. for (i = 0; i < ARRAY_SIZE(epcm->voices); i++) {
  109. if (epcm->voices[i]) {
  110. snd_emu10k1_voice_free(epcm->emu, epcm->voices[i]);
  111. epcm->voices[i] = NULL;
  112. }
  113. }
  114. err = snd_emu10k1_voice_alloc(epcm->emu,
  115. epcm->type == PLAYBACK_EMUVOICE ? EMU10K1_PCM : EMU10K1_EFX,
  116. voices,
  117. &epcm->voices[0]);
  118. if (err < 0)
  119. return err;
  120. epcm->voices[0]->epcm = epcm;
  121. if (voices > 1) {
  122. for (i = 1; i < voices; i++) {
  123. epcm->voices[i] = &epcm->emu->voices[epcm->voices[0]->number + i];
  124. epcm->voices[i]->epcm = epcm;
  125. }
  126. }
  127. if (epcm->extra == NULL) {
  128. err = snd_emu10k1_voice_alloc(epcm->emu,
  129. epcm->type == PLAYBACK_EMUVOICE ? EMU10K1_PCM : EMU10K1_EFX,
  130. 1,
  131. &epcm->extra);
  132. if (err < 0) {
  133. // printk("pcm_channel_alloc: failed extra: voices=%d, frame=%d\n", voices, frame);
  134. for (i = 0; i < voices; i++) {
  135. snd_emu10k1_voice_free(epcm->emu, epcm->voices[i]);
  136. epcm->voices[i] = NULL;
  137. }
  138. return err;
  139. }
  140. epcm->extra->epcm = epcm;
  141. epcm->extra->interrupt = snd_emu10k1_pcm_interrupt;
  142. }
  143. return 0;
  144. }
  145. static unsigned int capture_period_sizes[31] = {
  146. 384, 448, 512, 640,
  147. 384*2, 448*2, 512*2, 640*2,
  148. 384*4, 448*4, 512*4, 640*4,
  149. 384*8, 448*8, 512*8, 640*8,
  150. 384*16, 448*16, 512*16, 640*16,
  151. 384*32, 448*32, 512*32, 640*32,
  152. 384*64, 448*64, 512*64, 640*64,
  153. 384*128,448*128,512*128
  154. };
  155. static snd_pcm_hw_constraint_list_t hw_constraints_capture_period_sizes = {
  156. .count = 31,
  157. .list = capture_period_sizes,
  158. .mask = 0
  159. };
  160. static unsigned int capture_rates[8] = {
  161. 8000, 11025, 16000, 22050, 24000, 32000, 44100, 48000
  162. };
  163. static snd_pcm_hw_constraint_list_t hw_constraints_capture_rates = {
  164. .count = 8,
  165. .list = capture_rates,
  166. .mask = 0
  167. };
  168. static unsigned int snd_emu10k1_capture_rate_reg(unsigned int rate)
  169. {
  170. switch (rate) {
  171. case 8000: return ADCCR_SAMPLERATE_8;
  172. case 11025: return ADCCR_SAMPLERATE_11;
  173. case 16000: return ADCCR_SAMPLERATE_16;
  174. case 22050: return ADCCR_SAMPLERATE_22;
  175. case 24000: return ADCCR_SAMPLERATE_24;
  176. case 32000: return ADCCR_SAMPLERATE_32;
  177. case 44100: return ADCCR_SAMPLERATE_44;
  178. case 48000: return ADCCR_SAMPLERATE_48;
  179. default:
  180. snd_BUG();
  181. return ADCCR_SAMPLERATE_8;
  182. }
  183. }
  184. static unsigned int snd_emu10k1_audigy_capture_rate_reg(unsigned int rate)
  185. {
  186. switch (rate) {
  187. case 8000: return A_ADCCR_SAMPLERATE_8;
  188. case 11025: return A_ADCCR_SAMPLERATE_11;
  189. case 12000: return A_ADCCR_SAMPLERATE_12; /* really supported? */
  190. case 16000: return ADCCR_SAMPLERATE_16;
  191. case 22050: return ADCCR_SAMPLERATE_22;
  192. case 24000: return ADCCR_SAMPLERATE_24;
  193. case 32000: return ADCCR_SAMPLERATE_32;
  194. case 44100: return ADCCR_SAMPLERATE_44;
  195. case 48000: return ADCCR_SAMPLERATE_48;
  196. default:
  197. snd_BUG();
  198. return A_ADCCR_SAMPLERATE_8;
  199. }
  200. }
  201. static unsigned int emu10k1_calc_pitch_target(unsigned int rate)
  202. {
  203. unsigned int pitch_target;
  204. pitch_target = (rate << 8) / 375;
  205. pitch_target = (pitch_target >> 1) + (pitch_target & 1);
  206. return pitch_target;
  207. }
  208. #define PITCH_48000 0x00004000
  209. #define PITCH_96000 0x00008000
  210. #define PITCH_85000 0x00007155
  211. #define PITCH_80726 0x00006ba2
  212. #define PITCH_67882 0x00005a82
  213. #define PITCH_57081 0x00004c1c
  214. static unsigned int emu10k1_select_interprom(unsigned int pitch_target)
  215. {
  216. if (pitch_target == PITCH_48000)
  217. return CCCA_INTERPROM_0;
  218. else if (pitch_target < PITCH_48000)
  219. return CCCA_INTERPROM_1;
  220. else if (pitch_target >= PITCH_96000)
  221. return CCCA_INTERPROM_0;
  222. else if (pitch_target >= PITCH_85000)
  223. return CCCA_INTERPROM_6;
  224. else if (pitch_target >= PITCH_80726)
  225. return CCCA_INTERPROM_5;
  226. else if (pitch_target >= PITCH_67882)
  227. return CCCA_INTERPROM_4;
  228. else if (pitch_target >= PITCH_57081)
  229. return CCCA_INTERPROM_3;
  230. else
  231. return CCCA_INTERPROM_2;
  232. }
  233. /*
  234. * calculate cache invalidate size
  235. *
  236. * stereo: channel is stereo
  237. * w_16: using 16bit samples
  238. *
  239. * returns: cache invalidate size in samples
  240. */
  241. static inline int emu10k1_ccis(int stereo, int w_16)
  242. {
  243. if (w_16) {
  244. return stereo ? 24 : 26;
  245. } else {
  246. return stereo ? 24*2 : 26*2;
  247. }
  248. }
  249. static void snd_emu10k1_pcm_init_voice(emu10k1_t *emu,
  250. int master, int extra,
  251. emu10k1_voice_t *evoice,
  252. unsigned int start_addr,
  253. unsigned int end_addr,
  254. emu10k1_pcm_mixer_t *mix)
  255. {
  256. snd_pcm_substream_t *substream = evoice->epcm->substream;
  257. snd_pcm_runtime_t *runtime = substream->runtime;
  258. unsigned int silent_page, tmp;
  259. int voice, stereo, w_16;
  260. unsigned char attn, send_amount[8];
  261. unsigned char send_routing[8];
  262. unsigned long flags;
  263. unsigned int pitch_target;
  264. unsigned int ccis;
  265. voice = evoice->number;
  266. stereo = runtime->channels == 2;
  267. w_16 = snd_pcm_format_width(runtime->format) == 16;
  268. if (!extra && stereo) {
  269. start_addr >>= 1;
  270. end_addr >>= 1;
  271. }
  272. if (w_16) {
  273. start_addr >>= 1;
  274. end_addr >>= 1;
  275. }
  276. spin_lock_irqsave(&emu->reg_lock, flags);
  277. /* volume parameters */
  278. if (extra) {
  279. attn = 0;
  280. memset(send_routing, 0, sizeof(send_routing));
  281. send_routing[0] = 0;
  282. send_routing[1] = 1;
  283. send_routing[2] = 2;
  284. send_routing[3] = 3;
  285. memset(send_amount, 0, sizeof(send_amount));
  286. } else {
  287. /* mono, left, right (master voice = left) */
  288. tmp = stereo ? (master ? 1 : 2) : 0;
  289. memcpy(send_routing, &mix->send_routing[tmp][0], 8);
  290. memcpy(send_amount, &mix->send_volume[tmp][0], 8);
  291. }
  292. ccis = emu10k1_ccis(stereo, w_16);
  293. if (master) {
  294. evoice->epcm->ccca_start_addr = start_addr + ccis;
  295. if (extra) {
  296. start_addr += ccis;
  297. end_addr += ccis;
  298. }
  299. if (stereo && !extra) {
  300. snd_emu10k1_ptr_write(emu, CPF, voice, CPF_STEREO_MASK);
  301. snd_emu10k1_ptr_write(emu, CPF, (voice + 1), CPF_STEREO_MASK);
  302. } else {
  303. snd_emu10k1_ptr_write(emu, CPF, voice, 0);
  304. }
  305. }
  306. // setup routing
  307. if (emu->audigy) {
  308. snd_emu10k1_ptr_write(emu, A_FXRT1, voice,
  309. snd_emu10k1_compose_audigy_fxrt1(send_routing));
  310. snd_emu10k1_ptr_write(emu, A_FXRT2, voice,
  311. snd_emu10k1_compose_audigy_fxrt2(send_routing));
  312. snd_emu10k1_ptr_write(emu, A_SENDAMOUNTS, voice,
  313. ((unsigned int)send_amount[4] << 24) |
  314. ((unsigned int)send_amount[5] << 16) |
  315. ((unsigned int)send_amount[6] << 8) |
  316. (unsigned int)send_amount[7]);
  317. } else
  318. snd_emu10k1_ptr_write(emu, FXRT, voice,
  319. snd_emu10k1_compose_send_routing(send_routing));
  320. // Stop CA
  321. // Assumption that PT is already 0 so no harm overwriting
  322. snd_emu10k1_ptr_write(emu, PTRX, voice, (send_amount[0] << 8) | send_amount[1]);
  323. snd_emu10k1_ptr_write(emu, DSL, voice, end_addr | (send_amount[3] << 24));
  324. snd_emu10k1_ptr_write(emu, PSST, voice, start_addr | (send_amount[2] << 24));
  325. pitch_target = emu10k1_calc_pitch_target(runtime->rate);
  326. if (extra)
  327. snd_emu10k1_ptr_write(emu, CCCA, voice, start_addr |
  328. emu10k1_select_interprom(pitch_target) |
  329. (w_16 ? 0 : CCCA_8BITSELECT));
  330. else
  331. snd_emu10k1_ptr_write(emu, CCCA, voice, (start_addr + ccis) |
  332. emu10k1_select_interprom(pitch_target) |
  333. (w_16 ? 0 : CCCA_8BITSELECT));
  334. // Clear filter delay memory
  335. snd_emu10k1_ptr_write(emu, Z1, voice, 0);
  336. snd_emu10k1_ptr_write(emu, Z2, voice, 0);
  337. // invalidate maps
  338. silent_page = ((unsigned int)emu->silent_page.addr << 1) | MAP_PTI_MASK;
  339. snd_emu10k1_ptr_write(emu, MAPA, voice, silent_page);
  340. snd_emu10k1_ptr_write(emu, MAPB, voice, silent_page);
  341. // modulation envelope
  342. snd_emu10k1_ptr_write(emu, CVCF, voice, 0xffff);
  343. snd_emu10k1_ptr_write(emu, VTFT, voice, 0xffff);
  344. snd_emu10k1_ptr_write(emu, ATKHLDM, voice, 0);
  345. snd_emu10k1_ptr_write(emu, DCYSUSM, voice, 0x007f);
  346. snd_emu10k1_ptr_write(emu, LFOVAL1, voice, 0x8000);
  347. snd_emu10k1_ptr_write(emu, LFOVAL2, voice, 0x8000);
  348. snd_emu10k1_ptr_write(emu, FMMOD, voice, 0);
  349. snd_emu10k1_ptr_write(emu, TREMFRQ, voice, 0);
  350. snd_emu10k1_ptr_write(emu, FM2FRQ2, voice, 0);
  351. snd_emu10k1_ptr_write(emu, ENVVAL, voice, 0x8000);
  352. // volume envelope
  353. snd_emu10k1_ptr_write(emu, ATKHLDV, voice, 0x7f7f);
  354. snd_emu10k1_ptr_write(emu, ENVVOL, voice, 0x0000);
  355. // filter envelope
  356. snd_emu10k1_ptr_write(emu, PEFE_FILTERAMOUNT, voice, 0x7f);
  357. // pitch envelope
  358. snd_emu10k1_ptr_write(emu, PEFE_PITCHAMOUNT, voice, 0);
  359. spin_unlock_irqrestore(&emu->reg_lock, flags);
  360. }
  361. static int snd_emu10k1_playback_hw_params(snd_pcm_substream_t * substream,
  362. snd_pcm_hw_params_t * hw_params)
  363. {
  364. emu10k1_t *emu = snd_pcm_substream_chip(substream);
  365. snd_pcm_runtime_t *runtime = substream->runtime;
  366. emu10k1_pcm_t *epcm = runtime->private_data;
  367. int err;
  368. if ((err = snd_emu10k1_pcm_channel_alloc(epcm, params_channels(hw_params))) < 0)
  369. return err;
  370. if ((err = snd_pcm_lib_malloc_pages(substream, params_buffer_bytes(hw_params))) < 0)
  371. return err;
  372. if (err > 0) { /* change */
  373. snd_util_memblk_t *memblk;
  374. if (epcm->memblk != NULL)
  375. snd_emu10k1_free_pages(emu, epcm->memblk);
  376. memblk = snd_emu10k1_alloc_pages(emu, substream);
  377. if ((epcm->memblk = memblk) == NULL || ((emu10k1_memblk_t *)memblk)->mapped_page < 0) {
  378. epcm->start_addr = 0;
  379. return -ENOMEM;
  380. }
  381. epcm->start_addr = ((emu10k1_memblk_t *)memblk)->mapped_page << PAGE_SHIFT;
  382. }
  383. return 0;
  384. }
  385. static int snd_emu10k1_playback_hw_free(snd_pcm_substream_t * substream)
  386. {
  387. emu10k1_t *emu = snd_pcm_substream_chip(substream);
  388. snd_pcm_runtime_t *runtime = substream->runtime;
  389. emu10k1_pcm_t *epcm;
  390. if (runtime->private_data == NULL)
  391. return 0;
  392. epcm = runtime->private_data;
  393. if (epcm->extra) {
  394. snd_emu10k1_voice_free(epcm->emu, epcm->extra);
  395. epcm->extra = NULL;
  396. }
  397. if (epcm->voices[1]) {
  398. snd_emu10k1_voice_free(epcm->emu, epcm->voices[1]);
  399. epcm->voices[1] = NULL;
  400. }
  401. if (epcm->voices[0]) {
  402. snd_emu10k1_voice_free(epcm->emu, epcm->voices[0]);
  403. epcm->voices[0] = NULL;
  404. }
  405. if (epcm->memblk) {
  406. snd_emu10k1_free_pages(emu, epcm->memblk);
  407. epcm->memblk = NULL;
  408. epcm->start_addr = 0;
  409. }
  410. snd_pcm_lib_free_pages(substream);
  411. return 0;
  412. }
  413. static int snd_emu10k1_efx_playback_hw_free(snd_pcm_substream_t * substream)
  414. {
  415. emu10k1_t *emu = snd_pcm_substream_chip(substream);
  416. snd_pcm_runtime_t *runtime = substream->runtime;
  417. emu10k1_pcm_t *epcm;
  418. int i;
  419. if (runtime->private_data == NULL)
  420. return 0;
  421. epcm = runtime->private_data;
  422. if (epcm->extra) {
  423. snd_emu10k1_voice_free(epcm->emu, epcm->extra);
  424. epcm->extra = NULL;
  425. }
  426. for (i=0; i < NUM_EFX_PLAYBACK; i++) {
  427. if (epcm->voices[i]) {
  428. snd_emu10k1_voice_free(epcm->emu, epcm->voices[i]);
  429. epcm->voices[i] = NULL;
  430. }
  431. }
  432. if (epcm->memblk) {
  433. snd_emu10k1_free_pages(emu, epcm->memblk);
  434. epcm->memblk = NULL;
  435. epcm->start_addr = 0;
  436. }
  437. snd_pcm_lib_free_pages(substream);
  438. return 0;
  439. }
  440. static int snd_emu10k1_playback_prepare(snd_pcm_substream_t * substream)
  441. {
  442. emu10k1_t *emu = snd_pcm_substream_chip(substream);
  443. snd_pcm_runtime_t *runtime = substream->runtime;
  444. emu10k1_pcm_t *epcm = runtime->private_data;
  445. unsigned int start_addr, end_addr;
  446. start_addr = epcm->start_addr;
  447. end_addr = snd_pcm_lib_period_bytes(substream);
  448. if (runtime->channels == 2) {
  449. start_addr >>= 1;
  450. end_addr >>= 1;
  451. }
  452. end_addr += start_addr;
  453. snd_emu10k1_pcm_init_voice(emu, 1, 1, epcm->extra,
  454. start_addr, end_addr, NULL);
  455. start_addr = epcm->start_addr;
  456. end_addr = epcm->start_addr + snd_pcm_lib_buffer_bytes(substream);
  457. snd_emu10k1_pcm_init_voice(emu, 1, 0, epcm->voices[0],
  458. start_addr, end_addr,
  459. &emu->pcm_mixer[substream->number]);
  460. if (epcm->voices[1])
  461. snd_emu10k1_pcm_init_voice(emu, 0, 0, epcm->voices[1],
  462. start_addr, end_addr,
  463. &emu->pcm_mixer[substream->number]);
  464. return 0;
  465. }
  466. static int snd_emu10k1_efx_playback_prepare(snd_pcm_substream_t * substream)
  467. {
  468. emu10k1_t *emu = snd_pcm_substream_chip(substream);
  469. snd_pcm_runtime_t *runtime = substream->runtime;
  470. emu10k1_pcm_t *epcm = runtime->private_data;
  471. unsigned int start_addr, end_addr;
  472. unsigned int channel_size;
  473. int i;
  474. start_addr = epcm->start_addr;
  475. end_addr = epcm->start_addr + snd_pcm_lib_buffer_bytes(substream);
  476. /*
  477. * the kX driver leaves some space between voices
  478. */
  479. channel_size = ( end_addr - start_addr ) / NUM_EFX_PLAYBACK;
  480. snd_emu10k1_pcm_init_voice(emu, 1, 1, epcm->extra,
  481. start_addr, start_addr + (channel_size / 2), NULL);
  482. /* only difference with the master voice is we use it for the pointer */
  483. snd_emu10k1_pcm_init_voice(emu, 1, 0, epcm->voices[0],
  484. start_addr, start_addr + channel_size,
  485. &emu->efx_pcm_mixer[0]);
  486. start_addr += channel_size;
  487. for (i = 1; i < NUM_EFX_PLAYBACK; i++) {
  488. snd_emu10k1_pcm_init_voice(emu, 0, 0, epcm->voices[i],
  489. start_addr, start_addr + channel_size,
  490. &emu->efx_pcm_mixer[i]);
  491. start_addr += channel_size;
  492. }
  493. return 0;
  494. }
  495. static snd_pcm_hardware_t snd_emu10k1_efx_playback =
  496. {
  497. .info = (SNDRV_PCM_INFO_MMAP | SNDRV_PCM_INFO_NONINTERLEAVED |
  498. SNDRV_PCM_INFO_BLOCK_TRANSFER |
  499. SNDRV_PCM_INFO_MMAP_VALID | SNDRV_PCM_INFO_PAUSE),
  500. .formats = SNDRV_PCM_FMTBIT_S16_LE,
  501. .rates = SNDRV_PCM_RATE_48000,
  502. .rate_min = 48000,
  503. .rate_max = 48000,
  504. .channels_min = NUM_EFX_PLAYBACK,
  505. .channels_max = NUM_EFX_PLAYBACK,
  506. .buffer_bytes_max = (64*1024),
  507. .period_bytes_min = 64,
  508. .period_bytes_max = (64*1024),
  509. .periods_min = 2,
  510. .periods_max = 2,
  511. .fifo_size = 0,
  512. };
  513. static int snd_emu10k1_capture_hw_params(snd_pcm_substream_t * substream,
  514. snd_pcm_hw_params_t * hw_params)
  515. {
  516. return snd_pcm_lib_malloc_pages(substream, params_buffer_bytes(hw_params));
  517. }
  518. static int snd_emu10k1_capture_hw_free(snd_pcm_substream_t * substream)
  519. {
  520. return snd_pcm_lib_free_pages(substream);
  521. }
  522. static int snd_emu10k1_capture_prepare(snd_pcm_substream_t * substream)
  523. {
  524. emu10k1_t *emu = snd_pcm_substream_chip(substream);
  525. snd_pcm_runtime_t *runtime = substream->runtime;
  526. emu10k1_pcm_t *epcm = runtime->private_data;
  527. int idx;
  528. /* zeroing the buffer size will stop capture */
  529. snd_emu10k1_ptr_write(emu, epcm->capture_bs_reg, 0, 0);
  530. switch (epcm->type) {
  531. case CAPTURE_AC97ADC:
  532. snd_emu10k1_ptr_write(emu, ADCCR, 0, 0);
  533. break;
  534. case CAPTURE_EFX:
  535. if (emu->audigy) {
  536. snd_emu10k1_ptr_write(emu, A_FXWC1, 0, 0);
  537. snd_emu10k1_ptr_write(emu, A_FXWC2, 0, 0);
  538. } else
  539. snd_emu10k1_ptr_write(emu, FXWC, 0, 0);
  540. break;
  541. default:
  542. break;
  543. }
  544. snd_emu10k1_ptr_write(emu, epcm->capture_ba_reg, 0, runtime->dma_addr);
  545. epcm->capture_bufsize = snd_pcm_lib_buffer_bytes(substream);
  546. epcm->capture_bs_val = 0;
  547. for (idx = 0; idx < 31; idx++) {
  548. if (capture_period_sizes[idx] == epcm->capture_bufsize) {
  549. epcm->capture_bs_val = idx + 1;
  550. break;
  551. }
  552. }
  553. if (epcm->capture_bs_val == 0) {
  554. snd_BUG();
  555. epcm->capture_bs_val++;
  556. }
  557. if (epcm->type == CAPTURE_AC97ADC) {
  558. epcm->capture_cr_val = emu->audigy ? A_ADCCR_LCHANENABLE : ADCCR_LCHANENABLE;
  559. if (runtime->channels > 1)
  560. epcm->capture_cr_val |= emu->audigy ? A_ADCCR_RCHANENABLE : ADCCR_RCHANENABLE;
  561. epcm->capture_cr_val |= emu->audigy ?
  562. snd_emu10k1_audigy_capture_rate_reg(runtime->rate) :
  563. snd_emu10k1_capture_rate_reg(runtime->rate);
  564. }
  565. return 0;
  566. }
  567. static void snd_emu10k1_playback_invalidate_cache(emu10k1_t *emu, int extra, emu10k1_voice_t *evoice)
  568. {
  569. snd_pcm_runtime_t *runtime;
  570. unsigned int voice, stereo, i, ccis, cra = 64, cs, sample;
  571. if (evoice == NULL)
  572. return;
  573. runtime = evoice->epcm->substream->runtime;
  574. voice = evoice->number;
  575. stereo = (!extra && runtime->channels == 2);
  576. sample = snd_pcm_format_width(runtime->format) == 16 ? 0 : 0x80808080;
  577. ccis = emu10k1_ccis(stereo, sample == 0);
  578. // set cs to 2 * number of cache registers beside the invalidated
  579. cs = (sample == 0) ? (32-ccis) : (64-ccis+1) >> 1;
  580. if (cs > 16) cs = 16;
  581. for (i = 0; i < cs; i++) {
  582. snd_emu10k1_ptr_write(emu, CD0 + i, voice, sample);
  583. if (stereo) {
  584. snd_emu10k1_ptr_write(emu, CD0 + i, voice + 1, sample);
  585. }
  586. }
  587. // reset cache
  588. snd_emu10k1_ptr_write(emu, CCR_CACHEINVALIDSIZE, voice, 0);
  589. snd_emu10k1_ptr_write(emu, CCR_READADDRESS, voice, cra);
  590. if (stereo) {
  591. snd_emu10k1_ptr_write(emu, CCR_CACHEINVALIDSIZE, voice + 1, 0);
  592. snd_emu10k1_ptr_write(emu, CCR_READADDRESS, voice + 1, cra);
  593. }
  594. // fill cache
  595. snd_emu10k1_ptr_write(emu, CCR_CACHEINVALIDSIZE, voice, ccis);
  596. if (stereo) {
  597. snd_emu10k1_ptr_write(emu, CCR_CACHEINVALIDSIZE, voice+1, ccis);
  598. }
  599. }
  600. static void snd_emu10k1_playback_prepare_voice(emu10k1_t *emu, emu10k1_voice_t *evoice,
  601. int master, int extra,
  602. emu10k1_pcm_mixer_t *mix)
  603. {
  604. snd_pcm_substream_t *substream;
  605. snd_pcm_runtime_t *runtime;
  606. unsigned int attn, vattn;
  607. unsigned int voice, tmp;
  608. if (evoice == NULL) /* skip second voice for mono */
  609. return;
  610. substream = evoice->epcm->substream;
  611. runtime = substream->runtime;
  612. voice = evoice->number;
  613. attn = extra ? 0 : 0x00ff;
  614. tmp = runtime->channels == 2 ? (master ? 1 : 2) : 0;
  615. vattn = mix != NULL ? (mix->attn[tmp] << 16) : 0;
  616. snd_emu10k1_ptr_write(emu, IFATN, voice, attn);
  617. snd_emu10k1_ptr_write(emu, VTFT, voice, vattn | 0xffff);
  618. snd_emu10k1_ptr_write(emu, CVCF, voice, vattn | 0xffff);
  619. snd_emu10k1_ptr_write(emu, DCYSUSV, voice, 0x7f7f);
  620. snd_emu10k1_voice_clear_loop_stop(emu, voice);
  621. }
  622. static void snd_emu10k1_playback_trigger_voice(emu10k1_t *emu, emu10k1_voice_t *evoice, int master, int extra)
  623. {
  624. snd_pcm_substream_t *substream;
  625. snd_pcm_runtime_t *runtime;
  626. unsigned int voice, pitch, pitch_target;
  627. if (evoice == NULL) /* skip second voice for mono */
  628. return;
  629. substream = evoice->epcm->substream;
  630. runtime = substream->runtime;
  631. voice = evoice->number;
  632. pitch = snd_emu10k1_rate_to_pitch(runtime->rate) >> 8;
  633. pitch_target = emu10k1_calc_pitch_target(runtime->rate);
  634. snd_emu10k1_ptr_write(emu, PTRX_PITCHTARGET, voice, pitch_target);
  635. if (master || evoice->epcm->type == PLAYBACK_EFX)
  636. snd_emu10k1_ptr_write(emu, CPF_CURRENTPITCH, voice, pitch_target);
  637. snd_emu10k1_ptr_write(emu, IP, voice, pitch);
  638. if (extra)
  639. snd_emu10k1_voice_intr_enable(emu, voice);
  640. }
  641. static void snd_emu10k1_playback_stop_voice(emu10k1_t *emu, emu10k1_voice_t *evoice)
  642. {
  643. unsigned int voice;
  644. if (evoice == NULL)
  645. return;
  646. voice = evoice->number;
  647. snd_emu10k1_voice_intr_disable(emu, voice);
  648. snd_emu10k1_ptr_write(emu, PTRX_PITCHTARGET, voice, 0);
  649. snd_emu10k1_ptr_write(emu, CPF_CURRENTPITCH, voice, 0);
  650. snd_emu10k1_ptr_write(emu, IFATN, voice, 0xffff);
  651. snd_emu10k1_ptr_write(emu, VTFT, voice, 0xffff);
  652. snd_emu10k1_ptr_write(emu, CVCF, voice, 0xffff);
  653. snd_emu10k1_ptr_write(emu, IP, voice, 0);
  654. }
  655. static int snd_emu10k1_playback_trigger(snd_pcm_substream_t * substream,
  656. int cmd)
  657. {
  658. emu10k1_t *emu = snd_pcm_substream_chip(substream);
  659. snd_pcm_runtime_t *runtime = substream->runtime;
  660. emu10k1_pcm_t *epcm = runtime->private_data;
  661. emu10k1_pcm_mixer_t *mix;
  662. int result = 0;
  663. // printk("trigger - emu10k1 = 0x%x, cmd = %i, pointer = %i\n", (int)emu, cmd, substream->ops->pointer(substream));
  664. spin_lock(&emu->reg_lock);
  665. switch (cmd) {
  666. case SNDRV_PCM_TRIGGER_START:
  667. snd_emu10k1_playback_invalidate_cache(emu, 1, epcm->extra); /* do we need this? */
  668. snd_emu10k1_playback_invalidate_cache(emu, 0, epcm->voices[0]);
  669. /* follow thru */
  670. case SNDRV_PCM_TRIGGER_PAUSE_RELEASE:
  671. mix = &emu->pcm_mixer[substream->number];
  672. snd_emu10k1_playback_prepare_voice(emu, epcm->voices[0], 1, 0, mix);
  673. snd_emu10k1_playback_prepare_voice(emu, epcm->voices[1], 0, 0, mix);
  674. snd_emu10k1_playback_prepare_voice(emu, epcm->extra, 1, 1, NULL);
  675. snd_emu10k1_playback_trigger_voice(emu, epcm->voices[0], 1, 0);
  676. snd_emu10k1_playback_trigger_voice(emu, epcm->voices[1], 0, 0);
  677. snd_emu10k1_playback_trigger_voice(emu, epcm->extra, 1, 1);
  678. epcm->running = 1;
  679. break;
  680. case SNDRV_PCM_TRIGGER_STOP:
  681. case SNDRV_PCM_TRIGGER_PAUSE_PUSH:
  682. epcm->running = 0;
  683. snd_emu10k1_playback_stop_voice(emu, epcm->voices[0]);
  684. snd_emu10k1_playback_stop_voice(emu, epcm->voices[1]);
  685. snd_emu10k1_playback_stop_voice(emu, epcm->extra);
  686. break;
  687. default:
  688. result = -EINVAL;
  689. break;
  690. }
  691. spin_unlock(&emu->reg_lock);
  692. return result;
  693. }
  694. static int snd_emu10k1_capture_trigger(snd_pcm_substream_t * substream,
  695. int cmd)
  696. {
  697. emu10k1_t *emu = snd_pcm_substream_chip(substream);
  698. snd_pcm_runtime_t *runtime = substream->runtime;
  699. emu10k1_pcm_t *epcm = runtime->private_data;
  700. int result = 0;
  701. spin_lock(&emu->reg_lock);
  702. switch (cmd) {
  703. case SNDRV_PCM_TRIGGER_START:
  704. // hmm this should cause full and half full interrupt to be raised?
  705. outl(epcm->capture_ipr, emu->port + IPR);
  706. snd_emu10k1_intr_enable(emu, epcm->capture_inte);
  707. // printk("adccr = 0x%x, adcbs = 0x%x\n", epcm->adccr, epcm->adcbs);
  708. switch (epcm->type) {
  709. case CAPTURE_AC97ADC:
  710. snd_emu10k1_ptr_write(emu, ADCCR, 0, epcm->capture_cr_val);
  711. break;
  712. case CAPTURE_EFX:
  713. if (emu->audigy) {
  714. snd_emu10k1_ptr_write(emu, A_FXWC1, 0, epcm->capture_cr_val);
  715. snd_emu10k1_ptr_write(emu, A_FXWC2, 0, epcm->capture_cr_val2);
  716. } else
  717. snd_emu10k1_ptr_write(emu, FXWC, 0, epcm->capture_cr_val);
  718. break;
  719. default:
  720. break;
  721. }
  722. snd_emu10k1_ptr_write(emu, epcm->capture_bs_reg, 0, epcm->capture_bs_val);
  723. epcm->running = 1;
  724. epcm->first_ptr = 1;
  725. break;
  726. case SNDRV_PCM_TRIGGER_STOP:
  727. epcm->running = 0;
  728. snd_emu10k1_intr_disable(emu, epcm->capture_inte);
  729. outl(epcm->capture_ipr, emu->port + IPR);
  730. snd_emu10k1_ptr_write(emu, epcm->capture_bs_reg, 0, 0);
  731. switch (epcm->type) {
  732. case CAPTURE_AC97ADC:
  733. snd_emu10k1_ptr_write(emu, ADCCR, 0, 0);
  734. break;
  735. case CAPTURE_EFX:
  736. if (emu->audigy) {
  737. snd_emu10k1_ptr_write(emu, A_FXWC1, 0, 0);
  738. snd_emu10k1_ptr_write(emu, A_FXWC2, 0, 0);
  739. } else
  740. snd_emu10k1_ptr_write(emu, FXWC, 0, 0);
  741. break;
  742. default:
  743. break;
  744. }
  745. break;
  746. default:
  747. result = -EINVAL;
  748. }
  749. spin_unlock(&emu->reg_lock);
  750. return result;
  751. }
  752. static snd_pcm_uframes_t snd_emu10k1_playback_pointer(snd_pcm_substream_t * substream)
  753. {
  754. emu10k1_t *emu = snd_pcm_substream_chip(substream);
  755. snd_pcm_runtime_t *runtime = substream->runtime;
  756. emu10k1_pcm_t *epcm = runtime->private_data;
  757. unsigned int ptr;
  758. if (!epcm->running)
  759. return 0;
  760. ptr = snd_emu10k1_ptr_read(emu, CCCA, epcm->voices[0]->number) & 0x00ffffff;
  761. #if 0 /* Perex's code */
  762. ptr += runtime->buffer_size;
  763. ptr -= epcm->ccca_start_addr;
  764. ptr %= runtime->buffer_size;
  765. #else /* EMU10K1 Open Source code from Creative */
  766. if (ptr < epcm->ccca_start_addr)
  767. ptr += runtime->buffer_size - epcm->ccca_start_addr;
  768. else {
  769. ptr -= epcm->ccca_start_addr;
  770. if (ptr >= runtime->buffer_size)
  771. ptr -= runtime->buffer_size;
  772. }
  773. #endif
  774. // printk("ptr = 0x%x, buffer_size = 0x%x, period_size = 0x%x\n", ptr, runtime->buffer_size, runtime->period_size);
  775. return ptr;
  776. }
  777. static int snd_emu10k1_efx_playback_trigger(snd_pcm_substream_t * substream,
  778. int cmd)
  779. {
  780. emu10k1_t *emu = snd_pcm_substream_chip(substream);
  781. snd_pcm_runtime_t *runtime = substream->runtime;
  782. emu10k1_pcm_t *epcm = runtime->private_data;
  783. int i;
  784. int result = 0;
  785. spin_lock(&emu->reg_lock);
  786. switch (cmd) {
  787. case SNDRV_PCM_TRIGGER_START:
  788. // prepare voices
  789. for (i = 0; i < NUM_EFX_PLAYBACK; i++) {
  790. snd_emu10k1_playback_invalidate_cache(emu, 0, epcm->voices[i]);
  791. }
  792. snd_emu10k1_playback_invalidate_cache(emu, 1, epcm->extra);
  793. /* follow thru */
  794. case SNDRV_PCM_TRIGGER_PAUSE_RELEASE:
  795. snd_emu10k1_playback_prepare_voice(emu, epcm->extra, 1, 1, NULL);
  796. snd_emu10k1_playback_prepare_voice(emu, epcm->voices[0], 0, 0,
  797. &emu->efx_pcm_mixer[0]);
  798. for (i = 1; i < NUM_EFX_PLAYBACK; i++)
  799. snd_emu10k1_playback_prepare_voice(emu, epcm->voices[i], 0, 0,
  800. &emu->efx_pcm_mixer[i]);
  801. snd_emu10k1_playback_trigger_voice(emu, epcm->voices[0], 0, 0);
  802. snd_emu10k1_playback_trigger_voice(emu, epcm->extra, 1, 1);
  803. for (i = 1; i < NUM_EFX_PLAYBACK; i++)
  804. snd_emu10k1_playback_trigger_voice(emu, epcm->voices[i], 0, 0);
  805. epcm->running = 1;
  806. break;
  807. case SNDRV_PCM_TRIGGER_STOP:
  808. case SNDRV_PCM_TRIGGER_PAUSE_PUSH:
  809. epcm->running = 0;
  810. for (i = 0; i < NUM_EFX_PLAYBACK; i++) {
  811. snd_emu10k1_playback_stop_voice(emu, epcm->voices[i]);
  812. }
  813. snd_emu10k1_playback_stop_voice(emu, epcm->extra);
  814. break;
  815. default:
  816. result = -EINVAL;
  817. break;
  818. }
  819. spin_unlock(&emu->reg_lock);
  820. return result;
  821. }
  822. static snd_pcm_uframes_t snd_emu10k1_capture_pointer(snd_pcm_substream_t * substream)
  823. {
  824. emu10k1_t *emu = snd_pcm_substream_chip(substream);
  825. snd_pcm_runtime_t *runtime = substream->runtime;
  826. emu10k1_pcm_t *epcm = runtime->private_data;
  827. unsigned int ptr;
  828. if (!epcm->running)
  829. return 0;
  830. if (epcm->first_ptr) {
  831. udelay(50); // hack, it takes awhile until capture is started
  832. epcm->first_ptr = 0;
  833. }
  834. ptr = snd_emu10k1_ptr_read(emu, epcm->capture_idx_reg, 0) & 0x0000ffff;
  835. return bytes_to_frames(runtime, ptr);
  836. }
  837. /*
  838. * Playback support device description
  839. */
  840. static snd_pcm_hardware_t snd_emu10k1_playback =
  841. {
  842. .info = (SNDRV_PCM_INFO_MMAP | SNDRV_PCM_INFO_INTERLEAVED |
  843. SNDRV_PCM_INFO_BLOCK_TRANSFER |
  844. SNDRV_PCM_INFO_MMAP_VALID | SNDRV_PCM_INFO_PAUSE),
  845. .formats = SNDRV_PCM_FMTBIT_U8 | SNDRV_PCM_FMTBIT_S16_LE,
  846. .rates = SNDRV_PCM_RATE_CONTINUOUS | SNDRV_PCM_RATE_8000_96000,
  847. .rate_min = 4000,
  848. .rate_max = 96000,
  849. .channels_min = 1,
  850. .channels_max = 2,
  851. .buffer_bytes_max = (128*1024),
  852. .period_bytes_min = 64,
  853. .period_bytes_max = (128*1024),
  854. .periods_min = 1,
  855. .periods_max = 1024,
  856. .fifo_size = 0,
  857. };
  858. /*
  859. * Capture support device description
  860. */
  861. static snd_pcm_hardware_t snd_emu10k1_capture =
  862. {
  863. .info = (SNDRV_PCM_INFO_MMAP | SNDRV_PCM_INFO_INTERLEAVED |
  864. SNDRV_PCM_INFO_BLOCK_TRANSFER |
  865. SNDRV_PCM_INFO_MMAP_VALID),
  866. .formats = SNDRV_PCM_FMTBIT_S16_LE,
  867. .rates = SNDRV_PCM_RATE_8000_48000,
  868. .rate_min = 8000,
  869. .rate_max = 48000,
  870. .channels_min = 1,
  871. .channels_max = 2,
  872. .buffer_bytes_max = (64*1024),
  873. .period_bytes_min = 384,
  874. .period_bytes_max = (64*1024),
  875. .periods_min = 2,
  876. .periods_max = 2,
  877. .fifo_size = 0,
  878. };
  879. /*
  880. *
  881. */
  882. static void snd_emu10k1_pcm_mixer_notify1(emu10k1_t *emu, snd_kcontrol_t *kctl, int idx, int activate)
  883. {
  884. snd_ctl_elem_id_t id;
  885. snd_runtime_check(kctl != NULL, return);
  886. if (activate)
  887. kctl->vd[idx].access &= ~SNDRV_CTL_ELEM_ACCESS_INACTIVE;
  888. else
  889. kctl->vd[idx].access |= SNDRV_CTL_ELEM_ACCESS_INACTIVE;
  890. snd_ctl_notify(emu->card, SNDRV_CTL_EVENT_MASK_VALUE |
  891. SNDRV_CTL_EVENT_MASK_INFO,
  892. snd_ctl_build_ioff(&id, kctl, idx));
  893. }
  894. static void snd_emu10k1_pcm_mixer_notify(emu10k1_t *emu, int idx, int activate)
  895. {
  896. snd_emu10k1_pcm_mixer_notify1(emu, emu->ctl_send_routing, idx, activate);
  897. snd_emu10k1_pcm_mixer_notify1(emu, emu->ctl_send_volume, idx, activate);
  898. snd_emu10k1_pcm_mixer_notify1(emu, emu->ctl_attn, idx, activate);
  899. }
  900. static void snd_emu10k1_pcm_efx_mixer_notify(emu10k1_t *emu, int idx, int activate)
  901. {
  902. snd_emu10k1_pcm_mixer_notify1(emu, emu->ctl_efx_send_routing, idx, activate);
  903. snd_emu10k1_pcm_mixer_notify1(emu, emu->ctl_efx_send_volume, idx, activate);
  904. snd_emu10k1_pcm_mixer_notify1(emu, emu->ctl_efx_attn, idx, activate);
  905. }
  906. static void snd_emu10k1_pcm_free_substream(snd_pcm_runtime_t *runtime)
  907. {
  908. kfree(runtime->private_data);
  909. }
  910. static int snd_emu10k1_efx_playback_close(snd_pcm_substream_t * substream)
  911. {
  912. emu10k1_t *emu = snd_pcm_substream_chip(substream);
  913. emu10k1_pcm_mixer_t *mix;
  914. int i;
  915. for (i=0; i < NUM_EFX_PLAYBACK; i++) {
  916. mix = &emu->efx_pcm_mixer[i];
  917. mix->epcm = NULL;
  918. snd_emu10k1_pcm_efx_mixer_notify(emu, i, 0);
  919. }
  920. return 0;
  921. }
  922. static int snd_emu10k1_efx_playback_open(snd_pcm_substream_t * substream)
  923. {
  924. emu10k1_t *emu = snd_pcm_substream_chip(substream);
  925. emu10k1_pcm_t *epcm;
  926. emu10k1_pcm_mixer_t *mix;
  927. snd_pcm_runtime_t *runtime = substream->runtime;
  928. int i;
  929. epcm = kcalloc(1, sizeof(*epcm), GFP_KERNEL);
  930. if (epcm == NULL)
  931. return -ENOMEM;
  932. epcm->emu = emu;
  933. epcm->type = PLAYBACK_EFX;
  934. epcm->substream = substream;
  935. emu->pcm_playback_efx_substream = substream;
  936. runtime->private_data = epcm;
  937. runtime->private_free = snd_emu10k1_pcm_free_substream;
  938. runtime->hw = snd_emu10k1_efx_playback;
  939. for (i=0; i < NUM_EFX_PLAYBACK; i++) {
  940. mix = &emu->efx_pcm_mixer[i];
  941. mix->send_routing[0][0] = i;
  942. memset(&mix->send_volume, 0, sizeof(mix->send_volume));
  943. mix->send_volume[0][0] = 255;
  944. mix->attn[0] = 0xffff;
  945. mix->epcm = epcm;
  946. snd_emu10k1_pcm_efx_mixer_notify(emu, i, 1);
  947. }
  948. return 0;
  949. }
  950. static int snd_emu10k1_playback_open(snd_pcm_substream_t * substream)
  951. {
  952. emu10k1_t *emu = snd_pcm_substream_chip(substream);
  953. emu10k1_pcm_t *epcm;
  954. emu10k1_pcm_mixer_t *mix;
  955. snd_pcm_runtime_t *runtime = substream->runtime;
  956. int i, err;
  957. epcm = kcalloc(1, sizeof(*epcm), GFP_KERNEL);
  958. if (epcm == NULL)
  959. return -ENOMEM;
  960. epcm->emu = emu;
  961. epcm->type = PLAYBACK_EMUVOICE;
  962. epcm->substream = substream;
  963. runtime->private_data = epcm;
  964. runtime->private_free = snd_emu10k1_pcm_free_substream;
  965. runtime->hw = snd_emu10k1_playback;
  966. if ((err = snd_pcm_hw_constraint_integer(runtime, SNDRV_PCM_HW_PARAM_PERIODS)) < 0) {
  967. kfree(epcm);
  968. return err;
  969. }
  970. if ((err = snd_pcm_hw_constraint_minmax(runtime, SNDRV_PCM_HW_PARAM_BUFFER_BYTES, 256, UINT_MAX)) < 0) {
  971. kfree(epcm);
  972. return err;
  973. }
  974. mix = &emu->pcm_mixer[substream->number];
  975. for (i = 0; i < 4; i++)
  976. mix->send_routing[0][i] = mix->send_routing[1][i] = mix->send_routing[2][i] = i;
  977. memset(&mix->send_volume, 0, sizeof(mix->send_volume));
  978. mix->send_volume[0][0] = mix->send_volume[0][1] =
  979. mix->send_volume[1][0] = mix->send_volume[2][1] = 255;
  980. mix->attn[0] = mix->attn[1] = mix->attn[2] = 0xffff;
  981. mix->epcm = epcm;
  982. snd_emu10k1_pcm_mixer_notify(emu, substream->number, 1);
  983. return 0;
  984. }
  985. static int snd_emu10k1_playback_close(snd_pcm_substream_t * substream)
  986. {
  987. emu10k1_t *emu = snd_pcm_substream_chip(substream);
  988. emu10k1_pcm_mixer_t *mix = &emu->pcm_mixer[substream->number];
  989. mix->epcm = NULL;
  990. snd_emu10k1_pcm_mixer_notify(emu, substream->number, 0);
  991. return 0;
  992. }
  993. static int snd_emu10k1_capture_open(snd_pcm_substream_t * substream)
  994. {
  995. emu10k1_t *emu = snd_pcm_substream_chip(substream);
  996. snd_pcm_runtime_t *runtime = substream->runtime;
  997. emu10k1_pcm_t *epcm;
  998. epcm = kcalloc(1, sizeof(*epcm), GFP_KERNEL);
  999. if (epcm == NULL)
  1000. return -ENOMEM;
  1001. epcm->emu = emu;
  1002. epcm->type = CAPTURE_AC97ADC;
  1003. epcm->substream = substream;
  1004. epcm->capture_ipr = IPR_ADCBUFFULL|IPR_ADCBUFHALFFULL;
  1005. epcm->capture_inte = INTE_ADCBUFENABLE;
  1006. epcm->capture_ba_reg = ADCBA;
  1007. epcm->capture_bs_reg = ADCBS;
  1008. epcm->capture_idx_reg = emu->audigy ? A_ADCIDX : ADCIDX;
  1009. runtime->private_data = epcm;
  1010. runtime->private_free = snd_emu10k1_pcm_free_substream;
  1011. runtime->hw = snd_emu10k1_capture;
  1012. emu->capture_interrupt = snd_emu10k1_pcm_ac97adc_interrupt;
  1013. emu->pcm_capture_substream = substream;
  1014. snd_pcm_hw_constraint_list(runtime, 0, SNDRV_PCM_HW_PARAM_PERIOD_BYTES, &hw_constraints_capture_period_sizes);
  1015. snd_pcm_hw_constraint_list(runtime, 0, SNDRV_PCM_HW_PARAM_RATE, &hw_constraints_capture_rates);
  1016. return 0;
  1017. }
  1018. static int snd_emu10k1_capture_close(snd_pcm_substream_t * substream)
  1019. {
  1020. emu10k1_t *emu = snd_pcm_substream_chip(substream);
  1021. emu->capture_interrupt = NULL;
  1022. emu->pcm_capture_substream = NULL;
  1023. return 0;
  1024. }
  1025. static int snd_emu10k1_capture_mic_open(snd_pcm_substream_t * substream)
  1026. {
  1027. emu10k1_t *emu = snd_pcm_substream_chip(substream);
  1028. emu10k1_pcm_t *epcm;
  1029. snd_pcm_runtime_t *runtime = substream->runtime;
  1030. epcm = kcalloc(1, sizeof(*epcm), GFP_KERNEL);
  1031. if (epcm == NULL)
  1032. return -ENOMEM;
  1033. epcm->emu = emu;
  1034. epcm->type = CAPTURE_AC97MIC;
  1035. epcm->substream = substream;
  1036. epcm->capture_ipr = IPR_MICBUFFULL|IPR_MICBUFHALFFULL;
  1037. epcm->capture_inte = INTE_MICBUFENABLE;
  1038. epcm->capture_ba_reg = MICBA;
  1039. epcm->capture_bs_reg = MICBS;
  1040. epcm->capture_idx_reg = emu->audigy ? A_MICIDX : MICIDX;
  1041. substream->runtime->private_data = epcm;
  1042. substream->runtime->private_free = snd_emu10k1_pcm_free_substream;
  1043. runtime->hw = snd_emu10k1_capture;
  1044. runtime->hw.rates = SNDRV_PCM_RATE_8000;
  1045. runtime->hw.rate_min = runtime->hw.rate_max = 8000;
  1046. runtime->hw.channels_min = 1;
  1047. emu->capture_mic_interrupt = snd_emu10k1_pcm_ac97mic_interrupt;
  1048. emu->pcm_capture_mic_substream = substream;
  1049. snd_pcm_hw_constraint_list(runtime, 0, SNDRV_PCM_HW_PARAM_PERIOD_BYTES, &hw_constraints_capture_period_sizes);
  1050. return 0;
  1051. }
  1052. static int snd_emu10k1_capture_mic_close(snd_pcm_substream_t * substream)
  1053. {
  1054. emu10k1_t *emu = snd_pcm_substream_chip(substream);
  1055. emu->capture_interrupt = NULL;
  1056. emu->pcm_capture_mic_substream = NULL;
  1057. return 0;
  1058. }
  1059. static int snd_emu10k1_capture_efx_open(snd_pcm_substream_t * substream)
  1060. {
  1061. emu10k1_t *emu = snd_pcm_substream_chip(substream);
  1062. emu10k1_pcm_t *epcm;
  1063. snd_pcm_runtime_t *runtime = substream->runtime;
  1064. int nefx = emu->audigy ? 64 : 32;
  1065. int idx;
  1066. epcm = kcalloc(1, sizeof(*epcm), GFP_KERNEL);
  1067. if (epcm == NULL)
  1068. return -ENOMEM;
  1069. epcm->emu = emu;
  1070. epcm->type = CAPTURE_EFX;
  1071. epcm->substream = substream;
  1072. epcm->capture_ipr = IPR_EFXBUFFULL|IPR_EFXBUFHALFFULL;
  1073. epcm->capture_inte = INTE_EFXBUFENABLE;
  1074. epcm->capture_ba_reg = FXBA;
  1075. epcm->capture_bs_reg = FXBS;
  1076. epcm->capture_idx_reg = FXIDX;
  1077. substream->runtime->private_data = epcm;
  1078. substream->runtime->private_free = snd_emu10k1_pcm_free_substream;
  1079. runtime->hw = snd_emu10k1_capture;
  1080. runtime->hw.rates = SNDRV_PCM_RATE_48000;
  1081. runtime->hw.rate_min = runtime->hw.rate_max = 48000;
  1082. spin_lock_irq(&emu->reg_lock);
  1083. runtime->hw.channels_min = runtime->hw.channels_max = 0;
  1084. for (idx = 0; idx < nefx; idx++) {
  1085. if (emu->efx_voices_mask[idx/32] & (1 << (idx%32))) {
  1086. runtime->hw.channels_min++;
  1087. runtime->hw.channels_max++;
  1088. }
  1089. }
  1090. epcm->capture_cr_val = emu->efx_voices_mask[0];
  1091. epcm->capture_cr_val2 = emu->efx_voices_mask[1];
  1092. spin_unlock_irq(&emu->reg_lock);
  1093. emu->capture_efx_interrupt = snd_emu10k1_pcm_efx_interrupt;
  1094. emu->pcm_capture_efx_substream = substream;
  1095. snd_pcm_hw_constraint_list(runtime, 0, SNDRV_PCM_HW_PARAM_PERIOD_BYTES, &hw_constraints_capture_period_sizes);
  1096. return 0;
  1097. }
  1098. static int snd_emu10k1_capture_efx_close(snd_pcm_substream_t * substream)
  1099. {
  1100. emu10k1_t *emu = snd_pcm_substream_chip(substream);
  1101. emu->capture_interrupt = NULL;
  1102. emu->pcm_capture_efx_substream = NULL;
  1103. return 0;
  1104. }
  1105. static snd_pcm_ops_t snd_emu10k1_playback_ops = {
  1106. .open = snd_emu10k1_playback_open,
  1107. .close = snd_emu10k1_playback_close,
  1108. .ioctl = snd_pcm_lib_ioctl,
  1109. .hw_params = snd_emu10k1_playback_hw_params,
  1110. .hw_free = snd_emu10k1_playback_hw_free,
  1111. .prepare = snd_emu10k1_playback_prepare,
  1112. .trigger = snd_emu10k1_playback_trigger,
  1113. .pointer = snd_emu10k1_playback_pointer,
  1114. .page = snd_pcm_sgbuf_ops_page,
  1115. };
  1116. static snd_pcm_ops_t snd_emu10k1_capture_ops = {
  1117. .open = snd_emu10k1_capture_open,
  1118. .close = snd_emu10k1_capture_close,
  1119. .ioctl = snd_pcm_lib_ioctl,
  1120. .hw_params = snd_emu10k1_capture_hw_params,
  1121. .hw_free = snd_emu10k1_capture_hw_free,
  1122. .prepare = snd_emu10k1_capture_prepare,
  1123. .trigger = snd_emu10k1_capture_trigger,
  1124. .pointer = snd_emu10k1_capture_pointer,
  1125. };
  1126. /* EFX playback */
  1127. static snd_pcm_ops_t snd_emu10k1_efx_playback_ops = {
  1128. .open = snd_emu10k1_efx_playback_open,
  1129. .close = snd_emu10k1_efx_playback_close,
  1130. .ioctl = snd_pcm_lib_ioctl,
  1131. .hw_params = snd_emu10k1_playback_hw_params,
  1132. .hw_free = snd_emu10k1_efx_playback_hw_free,
  1133. .prepare = snd_emu10k1_efx_playback_prepare,
  1134. .trigger = snd_emu10k1_efx_playback_trigger,
  1135. .pointer = snd_emu10k1_efx_playback_pointer,
  1136. .page = snd_pcm_sgbuf_ops_page,
  1137. };
  1138. static void snd_emu10k1_pcm_free(snd_pcm_t *pcm)
  1139. {
  1140. emu10k1_t *emu = pcm->private_data;
  1141. emu->pcm = NULL;
  1142. snd_pcm_lib_preallocate_free_for_all(pcm);
  1143. }
  1144. int __devinit snd_emu10k1_pcm(emu10k1_t * emu, int device, snd_pcm_t ** rpcm)
  1145. {
  1146. snd_pcm_t *pcm;
  1147. snd_pcm_substream_t *substream;
  1148. int err;
  1149. if (rpcm)
  1150. *rpcm = NULL;
  1151. if ((err = snd_pcm_new(emu->card, "emu10k1", device, 32, 1, &pcm)) < 0)
  1152. return err;
  1153. pcm->private_data = emu;
  1154. pcm->private_free = snd_emu10k1_pcm_free;
  1155. snd_pcm_set_ops(pcm, SNDRV_PCM_STREAM_PLAYBACK, &snd_emu10k1_playback_ops);
  1156. snd_pcm_set_ops(pcm, SNDRV_PCM_STREAM_CAPTURE, &snd_emu10k1_capture_ops);
  1157. pcm->info_flags = 0;
  1158. pcm->dev_subclass = SNDRV_PCM_SUBCLASS_GENERIC_MIX;
  1159. strcpy(pcm->name, "ADC Capture/Standard PCM Playback");
  1160. emu->pcm = pcm;
  1161. for (substream = pcm->streams[SNDRV_PCM_STREAM_PLAYBACK].substream; substream; substream = substream->next)
  1162. if ((err = snd_pcm_lib_preallocate_pages(substream, SNDRV_DMA_TYPE_DEV_SG, snd_dma_pci_data(emu->pci), 64*1024, 64*1024)) < 0)
  1163. return err;
  1164. for (substream = pcm->streams[SNDRV_PCM_STREAM_CAPTURE].substream; substream; substream = substream->next)
  1165. snd_pcm_lib_preallocate_pages(substream, SNDRV_DMA_TYPE_DEV, snd_dma_pci_data(emu->pci), 64*1024, 64*1024);
  1166. if (rpcm)
  1167. *rpcm = pcm;
  1168. return 0;
  1169. }
  1170. int __devinit snd_emu10k1_pcm_multi(emu10k1_t * emu, int device, snd_pcm_t ** rpcm)
  1171. {
  1172. snd_pcm_t *pcm;
  1173. snd_pcm_substream_t *substream;
  1174. int err;
  1175. if (rpcm)
  1176. *rpcm = NULL;
  1177. if ((err = snd_pcm_new(emu->card, "emu10k1", device, 1, 0, &pcm)) < 0)
  1178. return err;
  1179. pcm->private_data = emu;
  1180. pcm->private_free = snd_emu10k1_pcm_free;
  1181. snd_pcm_set_ops(pcm, SNDRV_PCM_STREAM_PLAYBACK, &snd_emu10k1_efx_playback_ops);
  1182. pcm->info_flags = 0;
  1183. pcm->dev_subclass = SNDRV_PCM_SUBCLASS_GENERIC_MIX;
  1184. strcpy(pcm->name, "Multichannel Playback");
  1185. emu->pcm = pcm;
  1186. for (substream = pcm->streams[SNDRV_PCM_STREAM_PLAYBACK].substream; substream; substream = substream->next)
  1187. if ((err = snd_pcm_lib_preallocate_pages(substream, SNDRV_DMA_TYPE_DEV_SG, snd_dma_pci_data(emu->pci), 64*1024, 64*1024)) < 0)
  1188. return err;
  1189. if (rpcm)
  1190. *rpcm = pcm;
  1191. return 0;
  1192. }
  1193. static snd_pcm_ops_t snd_emu10k1_capture_mic_ops = {
  1194. .open = snd_emu10k1_capture_mic_open,
  1195. .close = snd_emu10k1_capture_mic_close,
  1196. .ioctl = snd_pcm_lib_ioctl,
  1197. .hw_params = snd_emu10k1_capture_hw_params,
  1198. .hw_free = snd_emu10k1_capture_hw_free,
  1199. .prepare = snd_emu10k1_capture_prepare,
  1200. .trigger = snd_emu10k1_capture_trigger,
  1201. .pointer = snd_emu10k1_capture_pointer,
  1202. };
  1203. static void snd_emu10k1_pcm_mic_free(snd_pcm_t *pcm)
  1204. {
  1205. emu10k1_t *emu = pcm->private_data;
  1206. emu->pcm_mic = NULL;
  1207. snd_pcm_lib_preallocate_free_for_all(pcm);
  1208. }
  1209. int __devinit snd_emu10k1_pcm_mic(emu10k1_t * emu, int device, snd_pcm_t ** rpcm)
  1210. {
  1211. snd_pcm_t *pcm;
  1212. int err;
  1213. if (rpcm)
  1214. *rpcm = NULL;
  1215. if ((err = snd_pcm_new(emu->card, "emu10k1 mic", device, 0, 1, &pcm)) < 0)
  1216. return err;
  1217. pcm->private_data = emu;
  1218. pcm->private_free = snd_emu10k1_pcm_mic_free;
  1219. snd_pcm_set_ops(pcm, SNDRV_PCM_STREAM_CAPTURE, &snd_emu10k1_capture_mic_ops);
  1220. pcm->info_flags = 0;
  1221. strcpy(pcm->name, "Mic Capture");
  1222. emu->pcm_mic = pcm;
  1223. snd_pcm_lib_preallocate_pages_for_all(pcm, SNDRV_DMA_TYPE_DEV, snd_dma_pci_data(emu->pci), 64*1024, 64*1024);
  1224. if (rpcm)
  1225. *rpcm = pcm;
  1226. return 0;
  1227. }
  1228. static int snd_emu10k1_pcm_efx_voices_mask_info(snd_kcontrol_t *kcontrol, snd_ctl_elem_info_t * uinfo)
  1229. {
  1230. emu10k1_t *emu = snd_kcontrol_chip(kcontrol);
  1231. int nefx = emu->audigy ? 64 : 32;
  1232. uinfo->type = SNDRV_CTL_ELEM_TYPE_BOOLEAN;
  1233. uinfo->count = nefx;
  1234. uinfo->value.integer.min = 0;
  1235. uinfo->value.integer.max = 1;
  1236. return 0;
  1237. }
  1238. static int snd_emu10k1_pcm_efx_voices_mask_get(snd_kcontrol_t * kcontrol, snd_ctl_elem_value_t * ucontrol)
  1239. {
  1240. emu10k1_t *emu = snd_kcontrol_chip(kcontrol);
  1241. int nefx = emu->audigy ? 64 : 32;
  1242. int idx;
  1243. spin_lock_irq(&emu->reg_lock);
  1244. for (idx = 0; idx < nefx; idx++)
  1245. ucontrol->value.integer.value[idx] = (emu->efx_voices_mask[idx / 32] & (1 << (idx % 32))) ? 1 : 0;
  1246. spin_unlock_irq(&emu->reg_lock);
  1247. return 0;
  1248. }
  1249. static int snd_emu10k1_pcm_efx_voices_mask_put(snd_kcontrol_t * kcontrol, snd_ctl_elem_value_t * ucontrol)
  1250. {
  1251. emu10k1_t *emu = snd_kcontrol_chip(kcontrol);
  1252. unsigned int nval[2], bits;
  1253. int nefx = emu->audigy ? 64 : 32;
  1254. int nefxb = emu->audigy ? 7 : 6;
  1255. int change, idx;
  1256. nval[0] = nval[1] = 0;
  1257. for (idx = 0, bits = 0; idx < nefx; idx++)
  1258. if (ucontrol->value.integer.value[idx]) {
  1259. nval[idx / 32] |= 1 << (idx % 32);
  1260. bits++;
  1261. }
  1262. for (idx = 0; idx < nefxb; idx++)
  1263. if (1 << idx == bits)
  1264. break;
  1265. if (idx >= nefxb)
  1266. return -EINVAL;
  1267. spin_lock_irq(&emu->reg_lock);
  1268. change = (nval[0] != emu->efx_voices_mask[0]) ||
  1269. (nval[1] != emu->efx_voices_mask[1]);
  1270. emu->efx_voices_mask[0] = nval[0];
  1271. emu->efx_voices_mask[1] = nval[1];
  1272. spin_unlock_irq(&emu->reg_lock);
  1273. return change;
  1274. }
  1275. static snd_kcontrol_new_t snd_emu10k1_pcm_efx_voices_mask = {
  1276. .iface = SNDRV_CTL_ELEM_IFACE_PCM,
  1277. .name = "Captured FX8010 Outputs",
  1278. .info = snd_emu10k1_pcm_efx_voices_mask_info,
  1279. .get = snd_emu10k1_pcm_efx_voices_mask_get,
  1280. .put = snd_emu10k1_pcm_efx_voices_mask_put
  1281. };
  1282. static snd_pcm_ops_t snd_emu10k1_capture_efx_ops = {
  1283. .open = snd_emu10k1_capture_efx_open,
  1284. .close = snd_emu10k1_capture_efx_close,
  1285. .ioctl = snd_pcm_lib_ioctl,
  1286. .hw_params = snd_emu10k1_capture_hw_params,
  1287. .hw_free = snd_emu10k1_capture_hw_free,
  1288. .prepare = snd_emu10k1_capture_prepare,
  1289. .trigger = snd_emu10k1_capture_trigger,
  1290. .pointer = snd_emu10k1_capture_pointer,
  1291. };
  1292. /* EFX playback */
  1293. #define INITIAL_TRAM_SHIFT 14
  1294. #define INITIAL_TRAM_POS(size) ((((size) / 2) - INITIAL_TRAM_SHIFT) - 1)
  1295. static void snd_emu10k1_fx8010_playback_irq(emu10k1_t *emu, void *private_data)
  1296. {
  1297. snd_pcm_substream_t *substream = private_data;
  1298. snd_pcm_period_elapsed(substream);
  1299. }
  1300. static void snd_emu10k1_fx8010_playback_tram_poke1(unsigned short *dst_left,
  1301. unsigned short *dst_right,
  1302. unsigned short *src,
  1303. unsigned int count,
  1304. unsigned int tram_shift)
  1305. {
  1306. // printk("tram_poke1: dst_left = 0x%p, dst_right = 0x%p, src = 0x%p, count = 0x%x\n", dst_left, dst_right, src, count);
  1307. if ((tram_shift & 1) == 0) {
  1308. while (count--) {
  1309. *dst_left-- = *src++;
  1310. *dst_right-- = *src++;
  1311. }
  1312. } else {
  1313. while (count--) {
  1314. *dst_right-- = *src++;
  1315. *dst_left-- = *src++;
  1316. }
  1317. }
  1318. }
  1319. static void fx8010_pb_trans_copy(snd_pcm_substream_t *substream,
  1320. snd_pcm_indirect_t *rec, size_t bytes)
  1321. {
  1322. emu10k1_t *emu = snd_pcm_substream_chip(substream);
  1323. snd_emu10k1_fx8010_pcm_t *pcm = &emu->fx8010.pcm[substream->number];
  1324. unsigned int tram_size = pcm->buffer_size;
  1325. unsigned short *src = (unsigned short *)(substream->runtime->dma_area + rec->sw_data);
  1326. unsigned int frames = bytes >> 2, count;
  1327. unsigned int tram_pos = pcm->tram_pos;
  1328. unsigned int tram_shift = pcm->tram_shift;
  1329. while (frames > tram_pos) {
  1330. count = tram_pos + 1;
  1331. snd_emu10k1_fx8010_playback_tram_poke1((unsigned short *)emu->fx8010.etram_pages.area + tram_pos,
  1332. (unsigned short *)emu->fx8010.etram_pages.area + tram_pos + tram_size / 2,
  1333. src, count, tram_shift);
  1334. src += count * 2;
  1335. frames -= count;
  1336. tram_pos = (tram_size / 2) - 1;
  1337. tram_shift++;
  1338. }
  1339. snd_emu10k1_fx8010_playback_tram_poke1((unsigned short *)emu->fx8010.etram_pages.area + tram_pos,
  1340. (unsigned short *)emu->fx8010.etram_pages.area + tram_pos + tram_size / 2,
  1341. src, frames, tram_shift);
  1342. tram_pos -= frames;
  1343. pcm->tram_pos = tram_pos;
  1344. pcm->tram_shift = tram_shift;
  1345. }
  1346. static int snd_emu10k1_fx8010_playback_transfer(snd_pcm_substream_t *substream)
  1347. {
  1348. emu10k1_t *emu = snd_pcm_substream_chip(substream);
  1349. snd_emu10k1_fx8010_pcm_t *pcm = &emu->fx8010.pcm[substream->number];
  1350. snd_pcm_indirect_playback_transfer(substream, &pcm->pcm_rec, fx8010_pb_trans_copy);
  1351. return 0;
  1352. }
  1353. static int snd_emu10k1_fx8010_playback_hw_params(snd_pcm_substream_t * substream,
  1354. snd_pcm_hw_params_t * hw_params)
  1355. {
  1356. return snd_pcm_lib_malloc_pages(substream, params_buffer_bytes(hw_params));
  1357. }
  1358. static int snd_emu10k1_fx8010_playback_hw_free(snd_pcm_substream_t * substream)
  1359. {
  1360. emu10k1_t *emu = snd_pcm_substream_chip(substream);
  1361. snd_emu10k1_fx8010_pcm_t *pcm = &emu->fx8010.pcm[substream->number];
  1362. unsigned int i;
  1363. for (i = 0; i < pcm->channels; i++)
  1364. snd_emu10k1_ptr_write(emu, TANKMEMADDRREGBASE + 0x80 + pcm->etram[i], 0, 0);
  1365. snd_pcm_lib_free_pages(substream);
  1366. return 0;
  1367. }
  1368. static int snd_emu10k1_fx8010_playback_prepare(snd_pcm_substream_t * substream)
  1369. {
  1370. emu10k1_t *emu = snd_pcm_substream_chip(substream);
  1371. snd_pcm_runtime_t *runtime = substream->runtime;
  1372. snd_emu10k1_fx8010_pcm_t *pcm = &emu->fx8010.pcm[substream->number];
  1373. unsigned int i;
  1374. // printk("prepare: etram_pages = 0x%p, dma_area = 0x%x, buffer_size = 0x%x (0x%x)\n", emu->fx8010.etram_pages, runtime->dma_area, runtime->buffer_size, runtime->buffer_size << 2);
  1375. memset(&pcm->pcm_rec, 0, sizeof(pcm->pcm_rec));
  1376. pcm->pcm_rec.hw_buffer_size = pcm->buffer_size * 2; /* byte size */
  1377. pcm->pcm_rec.sw_buffer_size = snd_pcm_lib_buffer_bytes(substream);
  1378. pcm->tram_pos = INITIAL_TRAM_POS(pcm->buffer_size);
  1379. pcm->tram_shift = 0;
  1380. snd_emu10k1_ptr_write(emu, emu->gpr_base + pcm->gpr_running, 0, 0); /* reset */
  1381. snd_emu10k1_ptr_write(emu, emu->gpr_base + pcm->gpr_trigger, 0, 0); /* reset */
  1382. snd_emu10k1_ptr_write(emu, emu->gpr_base + pcm->gpr_size, 0, runtime->buffer_size);
  1383. snd_emu10k1_ptr_write(emu, emu->gpr_base + pcm->gpr_ptr, 0, 0); /* reset ptr number */
  1384. snd_emu10k1_ptr_write(emu, emu->gpr_base + pcm->gpr_count, 0, runtime->period_size);
  1385. snd_emu10k1_ptr_write(emu, emu->gpr_base + pcm->gpr_tmpcount, 0, runtime->period_size);
  1386. for (i = 0; i < pcm->channels; i++)
  1387. snd_emu10k1_ptr_write(emu, TANKMEMADDRREGBASE + 0x80 + pcm->etram[i], 0, (TANKMEMADDRREG_READ|TANKMEMADDRREG_ALIGN) + i * (runtime->buffer_size / pcm->channels));
  1388. return 0;
  1389. }
  1390. static int snd_emu10k1_fx8010_playback_trigger(snd_pcm_substream_t * substream, int cmd)
  1391. {
  1392. emu10k1_t *emu = snd_pcm_substream_chip(substream);
  1393. snd_emu10k1_fx8010_pcm_t *pcm = &emu->fx8010.pcm[substream->number];
  1394. int result = 0;
  1395. spin_lock(&emu->reg_lock);
  1396. switch (cmd) {
  1397. case SNDRV_PCM_TRIGGER_START:
  1398. /* follow thru */
  1399. case SNDRV_PCM_TRIGGER_PAUSE_RELEASE:
  1400. #ifdef EMU10K1_SET_AC3_IEC958
  1401. {
  1402. int i;
  1403. for (i = 0; i < 3; i++) {
  1404. unsigned int bits;
  1405. bits = SPCS_CLKACCY_1000PPM | SPCS_SAMPLERATE_48 |
  1406. SPCS_CHANNELNUM_LEFT | SPCS_SOURCENUM_UNSPEC | SPCS_GENERATIONSTATUS |
  1407. 0x00001200 | SPCS_EMPHASIS_NONE | SPCS_COPYRIGHT | SPCS_NOTAUDIODATA;
  1408. snd_emu10k1_ptr_write(emu, SPCS0 + i, 0, bits);
  1409. }
  1410. }
  1411. #endif
  1412. result = snd_emu10k1_fx8010_register_irq_handler(emu, snd_emu10k1_fx8010_playback_irq, pcm->gpr_running, substream, &pcm->irq);
  1413. if (result < 0)
  1414. goto __err;
  1415. snd_emu10k1_fx8010_playback_transfer(substream); /* roll the ball */
  1416. snd_emu10k1_ptr_write(emu, emu->gpr_base + pcm->gpr_trigger, 0, 1);
  1417. break;
  1418. case SNDRV_PCM_TRIGGER_STOP:
  1419. case SNDRV_PCM_TRIGGER_PAUSE_PUSH:
  1420. snd_emu10k1_fx8010_unregister_irq_handler(emu, pcm->irq); pcm->irq = NULL;
  1421. snd_emu10k1_ptr_write(emu, emu->gpr_base + pcm->gpr_trigger, 0, 0);
  1422. pcm->tram_pos = INITIAL_TRAM_POS(pcm->buffer_size);
  1423. pcm->tram_shift = 0;
  1424. break;
  1425. default:
  1426. result = -EINVAL;
  1427. break;
  1428. }
  1429. __err:
  1430. spin_unlock(&emu->reg_lock);
  1431. return result;
  1432. }
  1433. static snd_pcm_uframes_t snd_emu10k1_fx8010_playback_pointer(snd_pcm_substream_t * substream)
  1434. {
  1435. emu10k1_t *emu = snd_pcm_substream_chip(substream);
  1436. snd_emu10k1_fx8010_pcm_t *pcm = &emu->fx8010.pcm[substream->number];
  1437. size_t ptr; /* byte pointer */
  1438. if (!snd_emu10k1_ptr_read(emu, emu->gpr_base + pcm->gpr_trigger, 0))
  1439. return 0;
  1440. ptr = snd_emu10k1_ptr_read(emu, emu->gpr_base + pcm->gpr_ptr, 0) << 2;
  1441. return snd_pcm_indirect_playback_pointer(substream, &pcm->pcm_rec, ptr);
  1442. }
  1443. static snd_pcm_hardware_t snd_emu10k1_fx8010_playback =
  1444. {
  1445. .info = (SNDRV_PCM_INFO_MMAP | SNDRV_PCM_INFO_INTERLEAVED |
  1446. /* SNDRV_PCM_INFO_MMAP_VALID | */ SNDRV_PCM_INFO_PAUSE),
  1447. .formats = SNDRV_PCM_FMTBIT_U8 | SNDRV_PCM_FMTBIT_S16_LE,
  1448. .rates = SNDRV_PCM_RATE_48000,
  1449. .rate_min = 48000,
  1450. .rate_max = 48000,
  1451. .channels_min = 1,
  1452. .channels_max = 1,
  1453. .buffer_bytes_max = (128*1024),
  1454. .period_bytes_min = 1024,
  1455. .period_bytes_max = (128*1024),
  1456. .periods_min = 1,
  1457. .periods_max = 1024,
  1458. .fifo_size = 0,
  1459. };
  1460. static int snd_emu10k1_fx8010_playback_open(snd_pcm_substream_t * substream)
  1461. {
  1462. emu10k1_t *emu = snd_pcm_substream_chip(substream);
  1463. snd_pcm_runtime_t *runtime = substream->runtime;
  1464. snd_emu10k1_fx8010_pcm_t *pcm = &emu->fx8010.pcm[substream->number];
  1465. runtime->hw = snd_emu10k1_fx8010_playback;
  1466. runtime->hw.channels_min = runtime->hw.channels_max = pcm->channels;
  1467. runtime->hw.period_bytes_max = (pcm->buffer_size * 2) / 2;
  1468. spin_lock_irq(&emu->reg_lock);
  1469. if (pcm->valid == 0) {
  1470. spin_unlock_irq(&emu->reg_lock);
  1471. return -ENODEV;
  1472. }
  1473. pcm->opened = 1;
  1474. spin_unlock_irq(&emu->reg_lock);
  1475. return 0;
  1476. }
  1477. static int snd_emu10k1_fx8010_playback_close(snd_pcm_substream_t * substream)
  1478. {
  1479. emu10k1_t *emu = snd_pcm_substream_chip(substream);
  1480. snd_emu10k1_fx8010_pcm_t *pcm = &emu->fx8010.pcm[substream->number];
  1481. spin_lock_irq(&emu->reg_lock);
  1482. pcm->opened = 0;
  1483. spin_unlock_irq(&emu->reg_lock);
  1484. return 0;
  1485. }
  1486. static snd_pcm_ops_t snd_emu10k1_fx8010_playback_ops = {
  1487. .open = snd_emu10k1_fx8010_playback_open,
  1488. .close = snd_emu10k1_fx8010_playback_close,
  1489. .ioctl = snd_pcm_lib_ioctl,
  1490. .hw_params = snd_emu10k1_fx8010_playback_hw_params,
  1491. .hw_free = snd_emu10k1_fx8010_playback_hw_free,
  1492. .prepare = snd_emu10k1_fx8010_playback_prepare,
  1493. .trigger = snd_emu10k1_fx8010_playback_trigger,
  1494. .pointer = snd_emu10k1_fx8010_playback_pointer,
  1495. .ack = snd_emu10k1_fx8010_playback_transfer,
  1496. };
  1497. static void snd_emu10k1_pcm_efx_free(snd_pcm_t *pcm)
  1498. {
  1499. emu10k1_t *emu = pcm->private_data;
  1500. emu->pcm_efx = NULL;
  1501. snd_pcm_lib_preallocate_free_for_all(pcm);
  1502. }
  1503. int __devinit snd_emu10k1_pcm_efx(emu10k1_t * emu, int device, snd_pcm_t ** rpcm)
  1504. {
  1505. snd_pcm_t *pcm;
  1506. snd_kcontrol_t *kctl;
  1507. int err;
  1508. if (rpcm)
  1509. *rpcm = NULL;
  1510. if ((err = snd_pcm_new(emu->card, "emu10k1 efx", device, 8, 1, &pcm)) < 0)
  1511. return err;
  1512. pcm->private_data = emu;
  1513. pcm->private_free = snd_emu10k1_pcm_efx_free;
  1514. snd_pcm_set_ops(pcm, SNDRV_PCM_STREAM_PLAYBACK, &snd_emu10k1_fx8010_playback_ops);
  1515. snd_pcm_set_ops(pcm, SNDRV_PCM_STREAM_CAPTURE, &snd_emu10k1_capture_efx_ops);
  1516. pcm->info_flags = 0;
  1517. strcpy(pcm->name, "Multichannel Capture/PT Playback");
  1518. emu->pcm_efx = pcm;
  1519. if (rpcm)
  1520. *rpcm = pcm;
  1521. /* EFX capture - record the "FXBUS2" channels, by default we connect the EXTINs
  1522. * to these
  1523. */
  1524. /* emu->efx_voices_mask[0] = FXWC_DEFAULTROUTE_C | FXWC_DEFAULTROUTE_A; */
  1525. if (emu->audigy) {
  1526. emu->efx_voices_mask[0] = 0;
  1527. emu->efx_voices_mask[1] = 0xffff;
  1528. } else {
  1529. emu->efx_voices_mask[0] = 0xffff0000;
  1530. emu->efx_voices_mask[1] = 0;
  1531. }
  1532. kctl = snd_ctl_new1(&snd_emu10k1_pcm_efx_voices_mask, emu);
  1533. if (!kctl)
  1534. return -ENOMEM;
  1535. kctl->id.device = device;
  1536. snd_ctl_add(emu->card, kctl);
  1537. snd_pcm_lib_preallocate_pages_for_all(pcm, SNDRV_DMA_TYPE_DEV, snd_dma_pci_data(emu->pci), 64*1024, 64*1024);
  1538. return 0;
  1539. }