1/*
2 * Auvia BeOS Driver for Via VT82xx Southbridge audio
3 *
4 * Copyright (c) 2003, Jerome Duval (jerome.duval@free.fr)
5 *
6 * Original code : BeOS Driver for Intel ICH AC'97 Link interface
7 * Copyright (c) 2002, Marcus Overhagen <marcus@overhagen.de>
8 *
9 * All rights reserved.
10 * Redistribution and use in source and binary forms, with or without modification,
11 * are permitted provided that the following conditions are met:
12 *
13 * - Redistributions of source code must retain the above copyright notice,
14 *   this list of conditions and the following disclaimer.
15 * - Redistributions in binary form must reproduce the above copyright notice,
16 *   this list of conditions and the following disclaimer in the documentation
17 *   and/or other materials provided with the distribution.
18 *
19 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND
20 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
21 * WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
22 * DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE FOR
23 * ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
24 * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS
25 * OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
26 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING
27 * NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE,
28 * EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
29 *
30 */
31
32#include <OS.h>
33#include <string.h>
34#include <MediaDefs.h>
35#include "hmulti_audio.h"
36#include "multi.h"
37#include "ac97.h"
38
39//#define DEBUG 1
40
41#include "debug.h"
42#include "auvia.h"
43#include "util.h"
44#include "io.h"
45
46
47static void
48auvia_ac97_get_mix(void *card, const void *cookie, int32 type, float *values) {
49	auvia_dev *dev = (auvia_dev*)card;
50	ac97_source_info *info = (ac97_source_info *)cookie;
51	uint16 value, mask;
52	float gain;
53
54	switch (type) {
55		case B_MIX_GAIN:
56			value = auvia_codec_read(&dev->config, info->reg);
57			//PRINT(("B_MIX_GAIN value : %u\n", value));
58			if (info->type & B_MIX_STEREO) {
59				mask = ((1 << (info->bits + 1)) - 1) << 8;
60				gain = ((value & mask) >> 8) * info->granularity;
61				if (info->polarity == 1)
62					values[0] = info->max_gain - gain;
63				else
64					values[0] = gain - info->min_gain;
65
66				mask = ((1 << (info->bits + 1)) - 1);
67				gain = (value & mask) * info->granularity;
68				if (info->polarity == 1)
69					values[1] = info->max_gain - gain;
70				else
71					values[1] = gain - info->min_gain;
72			} else {
73				mask = ((1 << (info->bits + 1)) - 1);
74				gain = (value & mask) * info->granularity;
75				if (info->polarity == 1)
76					values[0] = info->max_gain - gain;
77				else
78					values[0] = gain - info->min_gain;
79			}
80			break;
81		case B_MIX_MUTE:
82			mask = ((1 << 1) - 1) << 15;
83			value = auvia_codec_read(&dev->config, info->reg);
84			//PRINT(("B_MIX_MUTE value : %u\n", value));
85			value &= mask;
86			values[0] = ((value >> 15) == 1) ? 1.0 : 0.0;
87			break;
88		case B_MIX_MICBOOST:
89			mask = ((1 << 1) - 1) << 6;
90			value = auvia_codec_read(&dev->config, info->reg);
91			//PRINT(("B_MIX_MICBOOST value : %u\n", value));
92			value &= mask;
93			values[0] = ((value >> 6) == 1) ? 1.0 : 0.0;
94			break;
95		case B_MIX_MUX:
96			mask = ((1 << 3) - 1);
97			value = auvia_codec_read(&dev->config, AC97_RECORD_SELECT);
98			value &= mask;
99			//PRINT(("B_MIX_MUX value : %u\n", value));
100			values[0] = (float)value;
101			break;
102	}
103}
104
105static void
106auvia_ac97_set_mix(void *card, const void *cookie, int32 type, float *values) {
107	auvia_dev *dev = (auvia_dev*)card;
108	ac97_source_info *info = (ac97_source_info *)cookie;
109	uint16 value, mask;
110	float gain;
111
112	switch (type) {
113		case B_MIX_GAIN:
114			value = auvia_codec_read(&dev->config, info->reg);
115			if (info->type & B_MIX_STEREO) {
116				mask = ((1 << (info->bits + 1)) - 1) << 8;
117				value &= ~mask;
118
119				if (info->polarity == 1)
120					gain = info->max_gain - values[0];
121				else
122					gain =  values[0] - info->min_gain;
123				value |= ((uint16)(gain	/ info->granularity) << 8) & mask;
124
125				mask = ((1 << (info->bits + 1)) - 1);
126				value &= ~mask;
127				if (info->polarity == 1)
128					gain = info->max_gain - values[1];
129				else
130					gain =  values[1] - info->min_gain;
131				value |= ((uint16)(gain / info->granularity)) & mask;
132			} else {
133				mask = ((1 << (info->bits + 1)) - 1);
134				value &= ~mask;
135				if (info->polarity == 1)
136					gain = info->max_gain - values[0];
137				else
138					gain =  values[0] - info->min_gain;
139				value |= ((uint16)(gain / info->granularity)) & mask;
140			}
141			//PRINT(("B_MIX_GAIN value : %u\n", value));
142			auvia_codec_write(&dev->config, info->reg, value);
143			break;
144		case B_MIX_MUTE:
145			mask = ((1 << 1) - 1) << 15;
146			value = auvia_codec_read(&dev->config, info->reg);
147			value &= ~mask;
148			value |= ((values[0] == 1.0 ? 1 : 0 ) << 15 & mask);
149			if (info->reg == AC97_SURR_VOLUME) {
150				// there is a independent mute for each channel
151				mask = ((1 << 1) - 1) << 7;
152				value &= ~mask;
153				value |= ((values[0] == 1.0 ? 1 : 0 ) << 7 & mask);
154			}
155			//PRINT(("B_MIX_MUTE value : %u\n", value));
156			auvia_codec_write(&dev->config, info->reg, value);
157			break;
158		case B_MIX_MICBOOST:
159			mask = ((1 << 1) - 1) << 6;
160			value = auvia_codec_read(&dev->config, info->reg);
161			value &= ~mask;
162			value |= ((values[0] == 1.0 ? 1 : 0 ) << 6 & mask);
163			//PRINT(("B_MIX_MICBOOST value : %u\n", value));
164			auvia_codec_write(&dev->config, info->reg, value);
165			break;
166		case B_MIX_MUX:
167			mask = ((1 << 3) - 1);
168			value = ((int32)values[0]) & mask;
169			value = value | (value << 8);
170			//PRINT(("B_MIX_MUX value : %u\n", value));
171			auvia_codec_write(&dev->config, AC97_RECORD_SELECT, value);
172			break;
173	}
174
175}
176
177
178static int32
179auvia_create_group_control(multi_dev *multi, int32 *index, int32 parent,
180	int32 string, const char* name)
181{
182	int32 i = *index;
183	(*index)++;
184	multi->controls[i].mix_control.id = EMU_MULTI_CONTROL_FIRSTID + i;
185	multi->controls[i].mix_control.parent = parent;
186	multi->controls[i].mix_control.flags = B_MULTI_MIX_GROUP;
187	multi->controls[i].mix_control.master = EMU_MULTI_CONTROL_MASTERID;
188	multi->controls[i].mix_control.string = string;
189	if (name)
190		strlcpy(multi->controls[i].mix_control.name, name,
191			sizeof(multi->controls[i].mix_control.name));
192
193	return multi->controls[i].mix_control.id;
194}
195
196
197static status_t
198auvia_create_controls_list(multi_dev *multi)
199{
200	uint32 	i = 0, index = 0, count, id, parent, parent2, parent3;
201	auvia_dev *card = (auvia_dev*)multi->card;
202	const ac97_source_info *info;
203
204	parent = auvia_create_group_control(multi, &index, 0, 0, "Record");
205
206	/* AC97 Record */
207	info = &source_info[0];
208	PRINT(("name : %s\n", info->name));
209
210	parent2 = auvia_create_group_control(multi, &index, parent, 0, info->name);
211
212	if (info->type & B_MIX_GAIN) {
213		if (info->type & B_MIX_MUTE) {
214			multi->controls[index].mix_control.id = EMU_MULTI_CONTROL_FIRSTID + index;
215			multi->controls[index].mix_control.flags = B_MULTI_MIX_ENABLE;
216			multi->controls[index].mix_control.master = EMU_MULTI_CONTROL_MASTERID;
217			multi->controls[index].mix_control.parent = parent2;
218			multi->controls[index].mix_control.string = S_MUTE;
219			multi->controls[index].cookie = info;
220			multi->controls[index].type = B_MIX_MUTE;
221			multi->controls[index].get = &auvia_ac97_get_mix;
222			multi->controls[index].set = &auvia_ac97_set_mix;
223			index++;
224		}
225
226		multi->controls[index].mix_control.id = EMU_MULTI_CONTROL_FIRSTID + index;
227		multi->controls[index].mix_control.flags = B_MULTI_MIX_GAIN;
228		multi->controls[index].mix_control.master = EMU_MULTI_CONTROL_MASTERID;
229		multi->controls[index].mix_control.parent = parent2;
230		strlcpy(multi->controls[index].mix_control.name, info->name,
231			sizeof(multi->controls[index].mix_control.name));
232		multi->controls[index].mix_control.u.gain.min_gain = info->min_gain;
233		multi->controls[index].mix_control.u.gain.max_gain = info->max_gain;
234		multi->controls[index].mix_control.u.gain.granularity = info->granularity;
235		multi->controls[index].cookie = info;
236		multi->controls[index].type = B_MIX_GAIN;
237		multi->controls[index].get = &auvia_ac97_get_mix;
238		multi->controls[index].set = &auvia_ac97_set_mix;
239		id = multi->controls[index].mix_control.id;
240		index++;
241
242		if (info->type & B_MIX_STEREO) {
243			multi->controls[index].mix_control.id = EMU_MULTI_CONTROL_FIRSTID + index;
244			multi->controls[index].mix_control.flags = B_MULTI_MIX_GAIN;
245			multi->controls[index].mix_control.master = id;
246			multi->controls[index].mix_control.parent = parent2;
247			strlcpy(multi->controls[index].mix_control.name, info->name,
248				sizeof(multi->controls[index].mix_control.name));
249			multi->controls[index].mix_control.u.gain.min_gain = info->min_gain;
250			multi->controls[index].mix_control.u.gain.max_gain = info->max_gain;
251			multi->controls[index].mix_control.u.gain.granularity = info->granularity;
252			multi->controls[index].cookie = info;
253			multi->controls[index].type = B_MIX_GAIN;
254			multi->controls[index].get = &auvia_ac97_get_mix;
255			multi->controls[index].set = &auvia_ac97_set_mix;
256			index++;
257		}
258
259		if (info->type & B_MIX_RECORDMUX) {
260			multi->controls[index].mix_control.id = EMU_MULTI_CONTROL_FIRSTID + index;
261			multi->controls[index].mix_control.flags = B_MULTI_MIX_MUX;
262			multi->controls[index].mix_control.parent = parent2;
263			strcpy(multi->controls[index].mix_control.name, "Record mux");
264			multi->controls[index].cookie = info;
265			multi->controls[index].type = B_MIX_MUX;
266			multi->controls[index].get = &auvia_ac97_get_mix;
267			multi->controls[index].set = &auvia_ac97_set_mix;
268			parent3 = multi->controls[index].mix_control.id;
269			index++;
270
271			multi->controls[index].mix_control.id = EMU_MULTI_CONTROL_FIRSTID + index;
272			multi->controls[index].mix_control.flags = B_MULTI_MIX_MUX_VALUE;
273			multi->controls[index].mix_control.parent = parent3;
274			multi->controls[index].mix_control.string = S_MIC;
275			index++;
276			multi->controls[index].mix_control.id = EMU_MULTI_CONTROL_FIRSTID + index;
277			multi->controls[index].mix_control.flags = B_MULTI_MIX_MUX_VALUE;
278			multi->controls[index].mix_control.parent = parent3;
279			strcpy(multi->controls[index].mix_control.name, "CD in");
280			index++;
281			multi->controls[index].mix_control.id = EMU_MULTI_CONTROL_FIRSTID + index;
282			multi->controls[index].mix_control.flags = B_MULTI_MIX_MUX_VALUE;
283			multi->controls[index].mix_control.parent = parent3;
284			strcpy(multi->controls[index].mix_control.name, "Video in");
285			index++;
286			multi->controls[index].mix_control.id = EMU_MULTI_CONTROL_FIRSTID + index;
287			multi->controls[index].mix_control.flags = B_MULTI_MIX_MUX_VALUE;
288			multi->controls[index].mix_control.parent = parent3;
289			strcpy(multi->controls[index].mix_control.name, "Aux in");
290			index++;
291			multi->controls[index].mix_control.id = EMU_MULTI_CONTROL_FIRSTID + index;
292			multi->controls[index].mix_control.flags = B_MULTI_MIX_MUX_VALUE;
293			multi->controls[index].mix_control.parent = parent3;
294			strcpy(multi->controls[index].mix_control.name, "Line in");
295			index++;
296			multi->controls[index].mix_control.id = EMU_MULTI_CONTROL_FIRSTID + index;
297			multi->controls[index].mix_control.flags = B_MULTI_MIX_MUX_VALUE;
298			multi->controls[index].mix_control.parent = parent3;
299			multi->controls[index].mix_control.string = S_STEREO_MIX;
300			index++;
301			multi->controls[index].mix_control.id = EMU_MULTI_CONTROL_FIRSTID + index;
302			multi->controls[index].mix_control.flags = B_MULTI_MIX_MUX_VALUE;
303			multi->controls[index].mix_control.parent = parent3;
304			multi->controls[index].mix_control.string = S_MONO_MIX;
305			index++;
306			multi->controls[index].mix_control.id = EMU_MULTI_CONTROL_FIRSTID + index;
307			multi->controls[index].mix_control.flags = B_MULTI_MIX_MUX_VALUE;
308			multi->controls[index].mix_control.parent = parent3;
309			strcpy(multi->controls[index].mix_control.name, "TAD");
310			index++;
311		}
312	}
313
314	parent = auvia_create_group_control(multi, &index, 0, 0, "AC97 mixer");
315
316	count = source_info_size;
317	count--;
318
319	for (i = 1; i < count ; i++) {
320		info = &source_info[i];
321		PRINT(("name : %s\n", info->name));
322
323		parent2 = auvia_create_group_control(multi, &index, parent, 0, info->name);
324
325		if (info->type & B_MIX_GAIN) {
326			if (info->type & B_MIX_MUTE) {
327				multi->controls[index].mix_control.id = EMU_MULTI_CONTROL_FIRSTID + index;
328				multi->controls[index].mix_control.flags = B_MULTI_MIX_ENABLE;
329				multi->controls[index].mix_control.master = EMU_MULTI_CONTROL_MASTERID;
330				multi->controls[index].mix_control.parent = parent2;
331				multi->controls[index].mix_control.string = S_MUTE;
332				multi->controls[index].cookie = info;
333				multi->controls[index].type = B_MIX_MUTE;
334				multi->controls[index].get = &auvia_ac97_get_mix;
335				multi->controls[index].set = &auvia_ac97_set_mix;
336				index++;
337			}
338
339			multi->controls[index].mix_control.id = EMU_MULTI_CONTROL_FIRSTID + index;
340			multi->controls[index].mix_control.flags = B_MULTI_MIX_GAIN;
341			multi->controls[index].mix_control.master = EMU_MULTI_CONTROL_MASTERID;
342			multi->controls[index].mix_control.parent = parent2;
343			strlcpy(multi->controls[index].mix_control.name, info->name,
344				sizeof(multi->controls[index].mix_control.name));
345			multi->controls[index].mix_control.u.gain.min_gain = info->min_gain;
346			multi->controls[index].mix_control.u.gain.max_gain = info->max_gain;
347			multi->controls[index].mix_control.u.gain.granularity = info->granularity;
348			multi->controls[index].cookie = info;
349			multi->controls[index].type = B_MIX_GAIN;
350			multi->controls[index].get = &auvia_ac97_get_mix;
351			multi->controls[index].set = &auvia_ac97_set_mix;
352			id = multi->controls[index].mix_control.id;
353			index++;
354
355			if (info->type & B_MIX_STEREO) {
356				multi->controls[index].mix_control.id = EMU_MULTI_CONTROL_FIRSTID + index;
357				multi->controls[index].mix_control.flags = B_MULTI_MIX_GAIN;
358				multi->controls[index].mix_control.master = id;
359				multi->controls[index].mix_control.parent = parent2;
360				strlcpy(multi->controls[index].mix_control.name, info->name,
361					sizeof(multi->controls[index].mix_control.name));
362				multi->controls[index].mix_control.u.gain.min_gain = info->min_gain;
363				multi->controls[index].mix_control.u.gain.max_gain = info->max_gain;
364				multi->controls[index].mix_control.u.gain.granularity = info->granularity;
365				multi->controls[index].cookie = info;
366				multi->controls[index].type = B_MIX_GAIN;
367				multi->controls[index].get = &auvia_ac97_get_mix;
368				multi->controls[index].set = &auvia_ac97_set_mix;
369				index++;
370			}
371		}
372	}
373
374	parent = auvia_create_group_control(multi, &index, 0, S_SETUP, NULL);
375
376	/* AC97 20db Boost Mic */
377	info = &source_info[6];
378
379	if (info->type & B_MIX_GAIN && info->type & B_MIX_MICBOOST) {
380		multi->controls[index].mix_control.id = EMU_MULTI_CONTROL_FIRSTID + index;
381		multi->controls[index].mix_control.flags = B_MULTI_MIX_ENABLE;
382		multi->controls[index].mix_control.master = EMU_MULTI_CONTROL_MASTERID;
383		multi->controls[index].mix_control.parent = parent;
384		strcpy(multi->controls[index].mix_control.name, "Mic +20dB");
385		multi->controls[index].cookie = info;
386		multi->controls[index].type = B_MIX_MICBOOST;
387		multi->controls[index].get = &auvia_ac97_get_mix;
388		multi->controls[index].set = &auvia_ac97_set_mix;
389		index++;
390	}
391
392	multi->control_count = index;
393	PRINT(("multi->control_count %lu\n", multi->control_count));
394	return B_OK;
395}
396
397
398static status_t
399auvia_get_mix(auvia_dev *card, multi_mix_value_info * mmvi)
400{
401	int32 i, id;
402	multi_mixer_control *control = NULL;
403	for (i = 0; i < mmvi->item_count; i++) {
404		id = mmvi->values[i].id - EMU_MULTI_CONTROL_FIRSTID;
405		if (id < 0 || id >= card->multi.control_count) {
406			PRINT(("auvia_get_mix : invalid control id requested : %li\n", id));
407			continue;
408		}
409		control = &card->multi.controls[id];
410
411		if (control->mix_control.flags & B_MULTI_MIX_GAIN) {
412			if (control->get) {
413				float values[2];
414				control->get(card, control->cookie, control->type, values);
415				if (control->mix_control.master == EMU_MULTI_CONTROL_MASTERID)
416					mmvi->values[i].u.gain = values[0];
417				else
418					mmvi->values[i].u.gain = values[1];
419			}
420		}
421
422		if (control->mix_control.flags & B_MULTI_MIX_ENABLE && control->get) {
423			float values[1];
424			control->get(card, control->cookie, control->type, values);
425			mmvi->values[i].u.enable = (values[0] == 1.0);
426		}
427
428		if (control->mix_control.flags & B_MULTI_MIX_MUX && control->get) {
429			float values[1];
430			control->get(card, control->cookie, control->type, values);
431			mmvi->values[i].u.mux = (int32)values[0];
432		}
433	}
434	return B_OK;
435}
436
437
438static status_t
439auvia_set_mix(auvia_dev *card, multi_mix_value_info * mmvi)
440{
441	int32 i, id;
442	multi_mixer_control *control = NULL;
443	for (i = 0; i < mmvi->item_count; i++) {
444		id = mmvi->values[i].id - EMU_MULTI_CONTROL_FIRSTID;
445		if (id < 0 || id >= card->multi.control_count) {
446			PRINT(("auvia_set_mix : invalid control id requested : %li\n", id));
447			continue;
448		}
449		control = &card->multi.controls[id];
450
451		if (control->mix_control.flags & B_MULTI_MIX_GAIN) {
452			multi_mixer_control *control2 = NULL;
453			if (i + 1 < mmvi->item_count) {
454				id = mmvi->values[i + 1].id - EMU_MULTI_CONTROL_FIRSTID;
455				if (id < 0 || id >= card->multi.control_count) {
456					PRINT(("auvia_set_mix : invalid control id requested : %li\n", id));
457				} else {
458					control2 = &card->multi.controls[id];
459					if (control2->mix_control.master != control->mix_control.id)
460						control2 = NULL;
461				}
462			}
463
464			if (control->set) {
465				float values[2];
466				values[0] = 0.0;
467				values[1] = 0.0;
468
469				if (control->mix_control.master == EMU_MULTI_CONTROL_MASTERID)
470					values[0] = mmvi->values[i].u.gain;
471				else
472					values[1] = mmvi->values[i].u.gain;
473
474				if (control2 && control2->mix_control.master != EMU_MULTI_CONTROL_MASTERID)
475					values[1] = mmvi->values[i + 1].u.gain;
476
477				control->set(card, control->cookie, control->type, values);
478			}
479
480			if (control2)
481				i++;
482		}
483
484		if (control->mix_control.flags & B_MULTI_MIX_ENABLE && control->set) {
485			float values[1];
486
487			values[0] = mmvi->values[i].u.enable ? 1.0 : 0.0;
488			control->set(card, control->cookie, control->type, values);
489		}
490
491		if (control->mix_control.flags & B_MULTI_MIX_MUX && control->set) {
492			float values[1];
493
494			values[0] = (float)mmvi->values[i].u.mux;
495			control->set(card, control->cookie, control->type, values);
496		}
497	}
498	return B_OK;
499}
500
501
502static status_t
503auvia_list_mix_controls(auvia_dev *card, multi_mix_control_info * mmci)
504{
505	multi_mix_control	*mmc;
506	int32 i;
507
508	mmc = mmci->controls;
509	if (mmci->control_count < 24)
510		return B_ERROR;
511
512	if (auvia_create_controls_list(&card->multi) < B_OK)
513		return B_ERROR;
514	for (i = 0; i < card->multi.control_count; i++) {
515		mmc[i] = card->multi.controls[i].mix_control;
516	}
517
518	mmci->control_count = card->multi.control_count;
519	return B_OK;
520}
521
522
523static status_t
524auvia_list_mix_connections(auvia_dev *card, multi_mix_connection_info * data)
525{
526	return B_ERROR;
527}
528
529
530static status_t
531auvia_list_mix_channels(auvia_dev *card, multi_mix_channel_info *data)
532{
533	return B_ERROR;
534}
535
536/*multi_channel_info chans[] = {
537{  0, B_MULTI_OUTPUT_CHANNEL, 	B_CHANNEL_LEFT | B_CHANNEL_STEREO_BUS, 0 },
538{  1, B_MULTI_OUTPUT_CHANNEL, 	B_CHANNEL_RIGHT | B_CHANNEL_STEREO_BUS, 0 },
539{  2, B_MULTI_OUTPUT_CHANNEL, 	B_CHANNEL_LEFT | B_CHANNEL_STEREO_BUS, 0 },
540{  3, B_MULTI_OUTPUT_CHANNEL, 	B_CHANNEL_RIGHT | B_CHANNEL_STEREO_BUS, 0 },
541{  4, B_MULTI_INPUT_CHANNEL, 	B_CHANNEL_LEFT | B_CHANNEL_STEREO_BUS, 0 },
542{  5, B_MULTI_INPUT_CHANNEL, 	B_CHANNEL_RIGHT | B_CHANNEL_STEREO_BUS, 0 },
543{  6, B_MULTI_INPUT_CHANNEL, 	B_CHANNEL_LEFT | B_CHANNEL_STEREO_BUS, 0 },
544{  7, B_MULTI_INPUT_CHANNEL, 	B_CHANNEL_RIGHT | B_CHANNEL_STEREO_BUS, 0 },
545{  8, B_MULTI_OUTPUT_BUS, 		B_CHANNEL_LEFT | B_CHANNEL_STEREO_BUS, 	B_CHANNEL_MINI_JACK_STEREO },
546{  9, B_MULTI_OUTPUT_BUS, 		B_CHANNEL_RIGHT | B_CHANNEL_STEREO_BUS, B_CHANNEL_MINI_JACK_STEREO },
547{  10, B_MULTI_INPUT_BUS, 		B_CHANNEL_LEFT | B_CHANNEL_STEREO_BUS, 	B_CHANNEL_MINI_JACK_STEREO },
548{  11, B_MULTI_INPUT_BUS, 		B_CHANNEL_RIGHT | B_CHANNEL_STEREO_BUS, B_CHANNEL_MINI_JACK_STEREO },
549};*/
550
551/*multi_channel_info chans[] = {
552{  0, B_MULTI_OUTPUT_CHANNEL, 	B_CHANNEL_LEFT | B_CHANNEL_STEREO_BUS, 0 },
553{  1, B_MULTI_OUTPUT_CHANNEL, 	B_CHANNEL_RIGHT | B_CHANNEL_STEREO_BUS, 0 },
554{  2, B_MULTI_OUTPUT_CHANNEL, 	B_CHANNEL_LEFT | B_CHANNEL_SURROUND_BUS, 0 },
555{  3, B_MULTI_OUTPUT_CHANNEL, 	B_CHANNEL_RIGHT | B_CHANNEL_SURROUND_BUS, 0 },
556{  4, B_MULTI_OUTPUT_CHANNEL, 	B_CHANNEL_REARLEFT | B_CHANNEL_SURROUND_BUS, 0 },
557{  5, B_MULTI_OUTPUT_CHANNEL, 	B_CHANNEL_REARRIGHT | B_CHANNEL_SURROUND_BUS, 0 },
558{  6, B_MULTI_INPUT_CHANNEL, 	B_CHANNEL_LEFT | B_CHANNEL_STEREO_BUS, 0 },
559{  7, B_MULTI_INPUT_CHANNEL, 	B_CHANNEL_RIGHT | B_CHANNEL_STEREO_BUS, 0 },
560{  8, B_MULTI_INPUT_CHANNEL, 	B_CHANNEL_LEFT | B_CHANNEL_STEREO_BUS, 0 },
561{  9, B_MULTI_INPUT_CHANNEL, 	B_CHANNEL_RIGHT | B_CHANNEL_STEREO_BUS, 0 },
562{  10, B_MULTI_OUTPUT_BUS, 		B_CHANNEL_LEFT | B_CHANNEL_STEREO_BUS, 	B_CHANNEL_MINI_JACK_STEREO },
563{  11, B_MULTI_OUTPUT_BUS, 		B_CHANNEL_RIGHT | B_CHANNEL_STEREO_BUS, B_CHANNEL_MINI_JACK_STEREO },
564{  12, B_MULTI_INPUT_BUS, 		B_CHANNEL_LEFT | B_CHANNEL_STEREO_BUS, 	B_CHANNEL_MINI_JACK_STEREO },
565{  13, B_MULTI_INPUT_BUS, 		B_CHANNEL_RIGHT | B_CHANNEL_STEREO_BUS, B_CHANNEL_MINI_JACK_STEREO },
566};*/
567
568
569static void
570auvia_create_channels_list(multi_dev *multi)
571{
572	auvia_stream *stream;
573	uint32 index, i, mode, designations;
574	multi_channel_info *chans;
575	uint32 chan_designations[] = {
576		B_CHANNEL_LEFT,
577		B_CHANNEL_RIGHT,
578		B_CHANNEL_REARLEFT,
579		B_CHANNEL_REARRIGHT,
580		B_CHANNEL_CENTER,
581		B_CHANNEL_SUB
582	};
583
584	chans = multi->chans;
585	index = 0;
586
587	for (mode = AUVIA_USE_PLAY; mode != -1;
588		mode = (mode == AUVIA_USE_PLAY) ? AUVIA_USE_RECORD : -1) {
589		LIST_FOREACH(stream, &((auvia_dev*)multi->card)->streams, next) {
590			if ((stream->use & mode) == 0)
591				continue;
592
593			if (stream->channels == 2)
594				designations = B_CHANNEL_STEREO_BUS;
595			else
596				designations = B_CHANNEL_SURROUND_BUS;
597
598			for (i = 0; i < stream->channels; i++) {
599				chans[index].channel_id = index;
600				chans[index].kind = (mode == AUVIA_USE_PLAY) ? B_MULTI_OUTPUT_CHANNEL : B_MULTI_INPUT_CHANNEL;
601				chans[index].designations = designations | chan_designations[i];
602				chans[index].connectors = 0;
603				index++;
604			}
605		}
606
607		if (mode == AUVIA_USE_PLAY) {
608			multi->output_channel_count = index;
609		} else {
610			multi->input_channel_count = index - multi->output_channel_count;
611		}
612	}
613
614	chans[index].channel_id = index;
615	chans[index].kind = B_MULTI_OUTPUT_BUS;
616	chans[index].designations = B_CHANNEL_LEFT | B_CHANNEL_STEREO_BUS;
617	chans[index].connectors = B_CHANNEL_MINI_JACK_STEREO;
618	index++;
619
620	chans[index].channel_id = index;
621	chans[index].kind = B_MULTI_OUTPUT_BUS;
622	chans[index].designations = B_CHANNEL_RIGHT | B_CHANNEL_STEREO_BUS;
623	chans[index].connectors = B_CHANNEL_MINI_JACK_STEREO;
624	index++;
625
626	multi->output_bus_channel_count = index - multi->output_channel_count
627		- multi->input_channel_count;
628
629	chans[index].channel_id = index;
630	chans[index].kind = B_MULTI_INPUT_BUS;
631	chans[index].designations = B_CHANNEL_LEFT | B_CHANNEL_STEREO_BUS;
632	chans[index].connectors = B_CHANNEL_MINI_JACK_STEREO;
633	index++;
634
635	chans[index].channel_id = index;
636	chans[index].kind = B_MULTI_INPUT_BUS;
637	chans[index].designations = B_CHANNEL_RIGHT | B_CHANNEL_STEREO_BUS;
638	chans[index].connectors = B_CHANNEL_MINI_JACK_STEREO;
639	index++;
640
641	multi->input_bus_channel_count = index - multi->output_channel_count
642		- multi->input_channel_count - multi->output_bus_channel_count;
643
644	multi->aux_bus_channel_count = 0;
645}
646
647
648static status_t
649auvia_get_description(auvia_dev *card, multi_description *data)
650{
651	uint32 size;
652
653	data->interface_version = B_CURRENT_INTERFACE_VERSION;
654	data->interface_minimum = B_CURRENT_INTERFACE_VERSION;
655
656	if (IS_686(&card->config))
657		strncpy(data->friendly_name, FRIENDLY_NAME_686, 32);
658	else if (IS_8233(&card->config)) {
659		switch (card->info.revision) {
660			case VIATECH_8233_AC97_REV_8233_10:
661				strncpy(data->friendly_name, FRIENDLY_NAME_8233, 32);
662				break;
663			case VIATECH_8233_AC97_REV_8233C:
664				strncpy(data->friendly_name, FRIENDLY_NAME_8233C, 32);
665				break;
666			case VIATECH_8233_AC97_REV_8233:
667				strncpy(data->friendly_name, FRIENDLY_NAME_8233, 32);
668				break;
669			case VIATECH_8233_AC97_REV_8233A:
670				strncpy(data->friendly_name, FRIENDLY_NAME_8233A, 32);
671				break;
672			case VIATECH_8233_AC97_REV_8235:
673				strncpy(data->friendly_name, FRIENDLY_NAME_8235, 32);
674				break;
675			case VIATECH_8233_AC97_REV_8237:
676				strncpy(data->friendly_name, FRIENDLY_NAME_8237, 32);
677				break;
678			default:
679				strncpy(data->friendly_name, FRIENDLY_NAME, 32);
680		}
681	}
682	strcpy(data->vendor_info, AUTHOR);
683
684	/*data->output_channel_count = 6;
685	data->input_channel_count = 4;
686	data->output_bus_channel_count = 2;
687	data->input_bus_channel_count = 2;
688	data->aux_bus_channel_count = 0;*/
689
690	data->output_channel_count = card->multi.output_channel_count;
691	data->input_channel_count = card->multi.input_channel_count;
692	data->output_bus_channel_count = card->multi.output_bus_channel_count;
693	data->input_bus_channel_count = card->multi.input_bus_channel_count;
694	data->aux_bus_channel_count = card->multi.aux_bus_channel_count;
695
696	size = card->multi.output_channel_count + card->multi.input_channel_count
697			+ card->multi.output_bus_channel_count + card->multi.input_bus_channel_count
698			+ card->multi.aux_bus_channel_count;
699
700	// for each channel, starting with the first output channel,
701	// then the second, third..., followed by the first input
702	// channel, second, third, ..., followed by output bus
703	// channels and input bus channels and finally auxillary channels,
704
705	LOG(("request_channel_count = %d\n",data->request_channel_count));
706	if (data->request_channel_count >= size) {
707		LOG(("copying data\n"));
708		memcpy(data->channels, card->multi.chans, size * sizeof(card->multi.chans[0]));
709	}
710
711	data->output_rates = B_SR_48000;// | B_SR_44100 | B_SR_CVSR;
712	data->input_rates = B_SR_48000;// | B_SR_44100 | B_SR_CVSR;
713	//data->output_rates = B_SR_44100;
714	//data->input_rates = B_SR_44100;
715	data->min_cvsr_rate = 0;
716	data->max_cvsr_rate = 48000;
717	//data->max_cvsr_rate = 44100;
718
719	data->output_formats = B_FMT_16BIT;
720	data->input_formats = B_FMT_16BIT;
721	data->lock_sources = B_MULTI_LOCK_INTERNAL;
722	data->timecode_sources = 0;
723	data->interface_flags = B_MULTI_INTERFACE_PLAYBACK | B_MULTI_INTERFACE_RECORD;
724	data->start_latency = 3000;
725
726	strcpy(data->control_panel, "");
727
728	return B_OK;
729}
730
731
732static status_t
733auvia_get_enabled_channels(auvia_dev *card, multi_channel_enable *data)
734{
735	B_SET_CHANNEL(data->enable_bits, 0, true);
736	B_SET_CHANNEL(data->enable_bits, 1, true);
737	B_SET_CHANNEL(data->enable_bits, 2, true);
738	B_SET_CHANNEL(data->enable_bits, 3, true);
739	data->lock_source = B_MULTI_LOCK_INTERNAL;
740/*
741	uint32			lock_source;
742	int32			lock_data;
743	uint32			timecode_source;
744	uint32 *		connectors;
745*/
746	return B_OK;
747}
748
749
750static status_t
751auvia_set_enabled_channels(auvia_dev *card, multi_channel_enable *data)
752{
753	PRINT(("set_enabled_channels 0 : %s\n", B_TEST_CHANNEL(data->enable_bits, 0) ? "enabled": "disabled"));
754	PRINT(("set_enabled_channels 1 : %s\n", B_TEST_CHANNEL(data->enable_bits, 1) ? "enabled": "disabled"));
755	PRINT(("set_enabled_channels 2 : %s\n", B_TEST_CHANNEL(data->enable_bits, 2) ? "enabled": "disabled"));
756	PRINT(("set_enabled_channels 3 : %s\n", B_TEST_CHANNEL(data->enable_bits, 3) ? "enabled": "disabled"));
757	return B_OK;
758}
759
760
761static status_t
762auvia_get_global_format(auvia_dev *card, multi_format_info *data)
763{
764	data->output_latency = 0;
765	data->input_latency = 0;
766	data->timecode_kind = 0;
767	data->input.rate = B_SR_48000;
768	data->input.cvsr = 48000;
769	data->input.format = B_FMT_16BIT;
770	data->output.rate = B_SR_48000;
771	data->output.cvsr = 48000;
772	data->output.format = B_FMT_16BIT;
773	/*data->input.rate = B_SR_44100;
774	data->input.cvsr = 44100;
775	data->input.format = B_FMT_16BIT;
776	data->output.rate = B_SR_44100;
777	data->output.cvsr = 44100;
778	data->output.format = B_FMT_16BIT;*/
779	return B_OK;
780}
781
782
783static status_t
784auvia_get_buffers(auvia_dev *card, multi_buffer_list *data)
785{
786	uint32 i, j, pchannels, rchannels;
787
788	LOG(("flags = %#x\n",data->flags));
789	LOG(("request_playback_buffers = %#x\n",data->request_playback_buffers));
790	LOG(("request_playback_channels = %#x\n",data->request_playback_channels));
791	LOG(("request_playback_buffer_size = %#x\n",data->request_playback_buffer_size));
792	LOG(("request_record_buffers = %#x\n",data->request_record_buffers));
793	LOG(("request_record_channels = %#x\n",data->request_record_channels));
794	LOG(("request_record_buffer_size = %#x\n",data->request_record_buffer_size));
795
796	pchannels = card->pstream->channels;
797	rchannels = card->rstream->channels;
798
799	if (data->request_playback_buffers < BUFFER_COUNT ||
800		data->request_playback_channels < (pchannels) ||
801		data->request_record_buffers < BUFFER_COUNT ||
802		data->request_record_channels < (rchannels)) {
803		LOG(("not enough channels/buffers\n"));
804	}
805
806	ASSERT(BUFFER_COUNT == 2);
807
808	data->flags = B_MULTI_BUFFER_PLAYBACK | B_MULTI_BUFFER_RECORD; // XXX ???
809//	data->flags = 0;
810
811	data->return_playback_buffers = BUFFER_COUNT;	/* playback_buffers[b][] */
812	data->return_playback_channels = pchannels;		/* playback_buffers[][c] */
813	data->return_playback_buffer_size = BUFFER_FRAMES;		/* frames */
814
815	for (i = 0; i < BUFFER_COUNT; i++)
816		for (j = 0; j < pchannels; j++)
817			auvia_stream_get_nth_buffer(card->pstream, j, i,
818				&data->playback_buffers[i][j].base,
819				&data->playback_buffers[i][j].stride);
820
821	data->return_record_buffers = BUFFER_COUNT;
822	data->return_record_channels = rchannels;
823	data->return_record_buffer_size = BUFFER_FRAMES;	/* frames */
824
825	for (i = 0; i < BUFFER_COUNT; i++)
826		for (j = 0; j<rchannels; j++)
827			auvia_stream_get_nth_buffer(card->rstream, j, i,
828				&data->record_buffers[i][j].base,
829				&data->record_buffers[i][j].stride);
830
831	return B_OK;
832}
833
834
835static void
836auvia_play_inth(void* inthparams)
837{
838	auvia_stream *stream = (auvia_stream *)inthparams;
839	//int32 count;
840
841	//TRACE(("auvia_play_inth\n"));
842
843	acquire_spinlock(&slock);
844	stream->real_time = system_time();
845	stream->frames_count += BUFFER_FRAMES;
846	stream->buffer_cycle = (stream->trigblk
847		+ stream->blkmod - 1) % stream->blkmod;
848	stream->update_needed = true;
849	release_spinlock(&slock);
850
851	//get_sem_count(stream->card->buffer_ready_sem, &count);
852	//if (count <= 0)
853		release_sem_etc(stream->card->buffer_ready_sem, 1, B_DO_NOT_RESCHEDULE);
854}
855
856
857static void
858auvia_record_inth(void* inthparams)
859{
860	auvia_stream *stream = (auvia_stream *)inthparams;
861	//int32 count;
862
863	//TRACE(("auvia_record_inth\n"));
864
865	acquire_spinlock(&slock);
866	stream->real_time = system_time();
867	stream->frames_count += BUFFER_FRAMES;
868	stream->buffer_cycle = (stream->trigblk
869		+ stream->blkmod - 1) % stream->blkmod;
870	stream->update_needed = true;
871	release_spinlock(&slock);
872
873	//get_sem_count(stream->card->buffer_ready_sem, &count);
874	//if (count <= 0)
875		release_sem_etc(stream->card->buffer_ready_sem, 1, B_DO_NOT_RESCHEDULE);
876}
877
878
879static status_t
880auvia_buffer_exchange(auvia_dev *card, multi_buffer_info *data)
881{
882	cpu_status status;
883	auvia_stream *pstream, *rstream;
884	multi_buffer_info buffer_info;
885
886#ifdef __HAIKU__
887	if (user_memcpy(&buffer_info, data, sizeof(buffer_info)) < B_OK)
888		return B_BAD_ADDRESS;
889#else
890	memcpy(&buffer_info, data, sizeof(buffer_info));
891#endif
892
893	buffer_info.flags = B_MULTI_BUFFER_PLAYBACK | B_MULTI_BUFFER_RECORD;
894
895	if (!(card->pstream->state & AUVIA_STATE_STARTED))
896		auvia_stream_start(card->pstream, auvia_play_inth, card->pstream);
897
898	if (!(card->rstream->state & AUVIA_STATE_STARTED))
899		auvia_stream_start(card->rstream, auvia_record_inth, card->rstream);
900
901	if (acquire_sem_etc(card->buffer_ready_sem, 1, B_RELATIVE_TIMEOUT | B_CAN_INTERRUPT, 50000)
902		== B_TIMED_OUT) {
903		LOG(("buffer_exchange timeout ff\n"));
904	}
905
906	status = lock();
907
908	LIST_FOREACH(pstream, &card->streams, next) {
909		if ((pstream->use & AUVIA_USE_PLAY) == 0 ||
910			(pstream->state & AUVIA_STATE_STARTED) == 0)
911			continue;
912		if (pstream->update_needed)
913			break;
914	}
915
916	LIST_FOREACH(rstream, &card->streams, next) {
917		if ((rstream->use & AUVIA_USE_RECORD) == 0 ||
918			(rstream->state & AUVIA_STATE_STARTED) == 0)
919			continue;
920		if (rstream->update_needed)
921			break;
922	}
923
924	if (!pstream)
925		pstream = card->pstream;
926	if (!rstream)
927		rstream = card->rstream;
928
929	/* do playback */
930	buffer_info.playback_buffer_cycle = pstream->buffer_cycle;
931	buffer_info.played_real_time = pstream->real_time;
932	buffer_info.played_frames_count = pstream->frames_count;
933	buffer_info._reserved_0 = pstream->first_channel;
934	pstream->update_needed = false;
935
936	/* do record */
937	buffer_info.record_buffer_cycle = rstream->buffer_cycle;
938	buffer_info.recorded_frames_count = rstream->frames_count;
939	buffer_info.recorded_real_time = rstream->real_time;
940	buffer_info._reserved_1 = rstream->first_channel;
941	rstream->update_needed = false;
942	unlock(status);
943
944#ifdef __HAIKU__
945	if (user_memcpy(data, &buffer_info, sizeof(buffer_info)) < B_OK)
946		return B_BAD_ADDRESS;
947#else
948	memcpy(data, &buffer_info, sizeof(buffer_info));
949#endif
950
951	//TRACE(("buffer_exchange ended\n"));
952	return B_OK;
953}
954
955
956static status_t
957auvia_buffer_force_stop(auvia_dev *card)
958{
959	//auvia_voice_halt(card->pvoice);
960	return B_OK;
961}
962
963
964static status_t
965auvia_multi_control(void *cookie, uint32 op, void *data, size_t length)
966{
967	auvia_dev *card = (auvia_dev *)cookie;
968
969    switch (op) {
970		case B_MULTI_GET_DESCRIPTION:
971			LOG(("B_MULTI_GET_DESCRIPTION\n"));
972			return auvia_get_description(card, (multi_description *)data);
973		case B_MULTI_GET_EVENT_INFO:
974			LOG(("B_MULTI_GET_EVENT_INFO\n"));
975			return B_ERROR;
976		case B_MULTI_SET_EVENT_INFO:
977			LOG(("B_MULTI_SET_EVENT_INFO\n"));
978			return B_ERROR;
979		case B_MULTI_GET_EVENT:
980			LOG(("B_MULTI_GET_EVENT\n"));
981			return B_ERROR;
982		case B_MULTI_GET_ENABLED_CHANNELS:
983			LOG(("B_MULTI_GET_ENABLED_CHANNELS\n"));
984			return auvia_get_enabled_channels(card, (multi_channel_enable *)data);
985		case B_MULTI_SET_ENABLED_CHANNELS:
986			LOG(("B_MULTI_SET_ENABLED_CHANNELS\n"));
987			return auvia_set_enabled_channels(card, (multi_channel_enable *)data);
988		case B_MULTI_GET_GLOBAL_FORMAT:
989			LOG(("B_MULTI_GET_GLOBAL_FORMAT\n"));
990			return auvia_get_global_format(card, (multi_format_info *)data);
991		case B_MULTI_SET_GLOBAL_FORMAT:
992			LOG(("B_MULTI_SET_GLOBAL_FORMAT\n"));
993			return B_OK; /* XXX BUG! we *MUST* return B_OK, returning B_ERROR will prevent
994						  * BeOS to accept the format returned in B_MULTI_GET_GLOBAL_FORMAT
995						  */
996		case B_MULTI_GET_CHANNEL_FORMATS:
997			LOG(("B_MULTI_GET_CHANNEL_FORMATS\n"));
998			return B_ERROR;
999		case B_MULTI_SET_CHANNEL_FORMATS:	/* only implemented if possible */
1000			LOG(("B_MULTI_SET_CHANNEL_FORMATS\n"));
1001			return B_ERROR;
1002		case B_MULTI_GET_MIX:
1003			LOG(("B_MULTI_GET_MIX\n"));
1004			return auvia_get_mix(card, (multi_mix_value_info *)data);
1005		case B_MULTI_SET_MIX:
1006			LOG(("B_MULTI_SET_MIX\n"));
1007			return auvia_set_mix(card, (multi_mix_value_info *)data);
1008		case B_MULTI_LIST_MIX_CHANNELS:
1009			LOG(("B_MULTI_LIST_MIX_CHANNELS\n"));
1010			return auvia_list_mix_channels(card, (multi_mix_channel_info *)data);
1011		case B_MULTI_LIST_MIX_CONTROLS:
1012			LOG(("B_MULTI_LIST_MIX_CONTROLS\n"));
1013			return auvia_list_mix_controls(card, (multi_mix_control_info *)data);
1014		case B_MULTI_LIST_MIX_CONNECTIONS:
1015			LOG(("B_MULTI_LIST_MIX_CONNECTIONS\n"));
1016			return auvia_list_mix_connections(card, (multi_mix_connection_info *)data);
1017		case B_MULTI_GET_BUFFERS:			/* Fill out the struct for the first time; doesn't start anything. */
1018			LOG(("B_MULTI_GET_BUFFERS\n"));
1019			return auvia_get_buffers(card, data);
1020		case B_MULTI_SET_BUFFERS:			/* Set what buffers to use, if the driver supports soft buffers. */
1021			LOG(("B_MULTI_SET_BUFFERS\n"));
1022			return B_ERROR; /* we do not support soft buffers */
1023		case B_MULTI_SET_START_TIME:			/* When to actually start */
1024			LOG(("B_MULTI_SET_START_TIME\n"));
1025			return B_ERROR;
1026		case B_MULTI_BUFFER_EXCHANGE:		/* stop and go are derived from this being called */
1027			//TRACE(("B_MULTI_BUFFER_EXCHANGE\n"));
1028			return auvia_buffer_exchange(card, (multi_buffer_info *)data);
1029		case B_MULTI_BUFFER_FORCE_STOP:		/* force stop of playback, nothing in data */
1030			LOG(("B_MULTI_BUFFER_FORCE_STOP\n"));
1031			return auvia_buffer_force_stop(card);
1032	}
1033	LOG(("ERROR: unknown multi_control %#x\n",op));
1034	return B_ERROR;
1035}
1036
1037static status_t auvia_open(const char *name, uint32 flags, void** cookie);
1038static status_t auvia_close(void* cookie);
1039static status_t auvia_free(void* cookie);
1040static status_t auvia_control(void* cookie, uint32 op, void* arg, size_t len);
1041static status_t auvia_read(void* cookie, off_t position, void *buf, size_t* num_bytes);
1042static status_t auvia_write(void* cookie, off_t position, const void* buffer, size_t* num_bytes);
1043
1044device_hooks multi_hooks = {
1045	auvia_open, 			/* -> open entry point */
1046	auvia_close, 			/* -> close entry point */
1047	auvia_free,			/* -> free cookie */
1048	auvia_control, 		/* -> control entry point */
1049	auvia_read,			/* -> read entry point */
1050	auvia_write,			/* -> write entry point */
1051	NULL,					/* start select */
1052	NULL,					/* stop select */
1053	NULL,					/* scatter-gather read from the device */
1054	NULL					/* scatter-gather write to the device */
1055};
1056
1057
1058static status_t
1059auvia_open(const char *name, uint32 flags, void** cookie)
1060{
1061	auvia_dev *card = NULL;
1062	int ix;
1063
1064	LOG(("open()\n"));
1065
1066	for (ix=0; ix<num_cards; ix++) {
1067		if (!strcmp(cards[ix].name, name)) {
1068			card = &cards[ix];
1069		}
1070	}
1071
1072	if (card == NULL) {
1073		LOG(("open() card not found %s\n", name));
1074		for (ix=0; ix<num_cards; ix++) {
1075			LOG(("open() card available %s\n", cards[ix].name));
1076		}
1077		return B_ERROR;
1078	}
1079
1080	LOG(("open() got card\n"));
1081
1082	if (card->pstream !=NULL)
1083		return B_ERROR;
1084	if (card->rstream !=NULL)
1085		return B_ERROR;
1086
1087	*cookie = card;
1088	card->multi.card = card;
1089
1090	LOG(("stream_new\n"));
1091
1092	card->rstream = auvia_stream_new(card, AUVIA_USE_RECORD, BUFFER_FRAMES, BUFFER_COUNT);
1093	card->pstream = auvia_stream_new(card, AUVIA_USE_PLAY, BUFFER_FRAMES, BUFFER_COUNT);
1094
1095	card->buffer_ready_sem = create_sem(0, "pbuffer ready");
1096
1097	LOG(("stream_setaudio\n"));
1098
1099	auvia_stream_set_audioparms(card->pstream, 2, true, 48000);
1100	auvia_stream_set_audioparms(card->rstream, 2, true, 48000);
1101
1102	card->pstream->first_channel = 0;
1103	card->rstream->first_channel = 2;
1104
1105	auvia_stream_commit_parms(card->pstream);
1106	auvia_stream_commit_parms(card->rstream);
1107
1108	auvia_create_channels_list(&card->multi);
1109
1110	return B_OK;
1111}
1112
1113
1114static status_t
1115auvia_close(void* cookie)
1116{
1117	//auvia_dev *card = cookie;
1118	LOG(("close()\n"));
1119
1120	return B_OK;
1121}
1122
1123
1124static status_t
1125auvia_free(void* cookie)
1126{
1127	auvia_dev *card = cookie;
1128	auvia_stream *stream;
1129	LOG(("free()\n"));
1130
1131	if (card->buffer_ready_sem > B_OK)
1132			delete_sem(card->buffer_ready_sem);
1133
1134	LIST_FOREACH(stream, &card->streams, next) {
1135		auvia_stream_halt(stream);
1136	}
1137
1138	while (!LIST_EMPTY(&card->streams)) {
1139		auvia_stream_delete(LIST_FIRST(&card->streams));
1140	}
1141
1142	card->pstream = NULL;
1143	card->rstream = NULL;
1144
1145	return B_OK;
1146}
1147
1148
1149static status_t
1150auvia_control(void* cookie, uint32 op, void* arg, size_t len)
1151{
1152	return auvia_multi_control(cookie, op, arg, len);
1153}
1154
1155
1156static status_t
1157auvia_read(void* cookie, off_t position, void *buf, size_t* num_bytes)
1158{
1159	*num_bytes = 0;				/* tell caller nothing was read */
1160	return B_IO_ERROR;
1161}
1162
1163
1164static status_t
1165auvia_write(void* cookie, off_t position, const void* buffer, size_t* num_bytes)
1166{
1167	*num_bytes = 0;				/* tell caller nothing was written */
1168	return B_IO_ERROR;
1169}
1170