Book a Demo!
CoCalc Logo Icon
StoreFeaturesDocsShareSupportNewsAboutPoliciesSign UpSign In
torvalds
GitHub Repository: torvalds/linux
Path: blob/master/sound/drivers/vx/vx_pcm.c
26424 views
1
// SPDX-License-Identifier: GPL-2.0-or-later
2
/*
3
* Driver for Digigram VX soundcards
4
*
5
* PCM part
6
*
7
* Copyright (c) 2002,2003 by Takashi Iwai <[email protected]>
8
*
9
* STRATEGY
10
* for playback, we send series of "chunks", which size is equal with the
11
* IBL size, typically 126 samples. at each end of chunk, the end-of-buffer
12
* interrupt is notified, and the interrupt handler will feed the next chunk.
13
*
14
* the current position is calculated from the sample count RMH.
15
* pipe->transferred is the counter of data which has been already transferred.
16
* if this counter reaches to the period size, snd_pcm_period_elapsed() will
17
* be issued.
18
*
19
* for capture, the situation is much easier.
20
* to get a low latency response, we'll check the capture streams at each
21
* interrupt (capture stream has no EOB notification). if the pending
22
* data is accumulated to the period size, snd_pcm_period_elapsed() is
23
* called and the pointer is updated.
24
*
25
* the current point of read buffer is kept in pipe->hw_ptr. note that
26
* this is in bytes.
27
*
28
* TODO
29
* - linked trigger for full-duplex mode.
30
* - scheduled action on the stream.
31
*/
32
33
#include <linux/slab.h>
34
#include <linux/delay.h>
35
#include <sound/core.h>
36
#include <sound/asoundef.h>
37
#include <sound/pcm.h>
38
#include <sound/vx_core.h>
39
#include "vx_cmd.h"
40
41
42
/*
43
* read three pending pcm bytes via inb()
44
*/
45
static void vx_pcm_read_per_bytes(struct vx_core *chip, struct snd_pcm_runtime *runtime,
46
struct vx_pipe *pipe)
47
{
48
int offset = pipe->hw_ptr;
49
unsigned char *buf = (unsigned char *)(runtime->dma_area + offset);
50
*buf++ = vx_inb(chip, RXH);
51
if (++offset >= pipe->buffer_bytes) {
52
offset = 0;
53
buf = (unsigned char *)runtime->dma_area;
54
}
55
*buf++ = vx_inb(chip, RXM);
56
if (++offset >= pipe->buffer_bytes) {
57
offset = 0;
58
buf = (unsigned char *)runtime->dma_area;
59
}
60
*buf++ = vx_inb(chip, RXL);
61
if (++offset >= pipe->buffer_bytes) {
62
offset = 0;
63
}
64
pipe->hw_ptr = offset;
65
}
66
67
/*
68
* vx_set_pcx_time - convert from the PC time to the RMH status time.
69
* @pc_time: the pointer for the PC-time to set
70
* @dsp_time: the pointer for RMH status time array
71
*/
72
static void vx_set_pcx_time(struct vx_core *chip, pcx_time_t *pc_time,
73
unsigned int *dsp_time)
74
{
75
dsp_time[0] = (unsigned int)((*pc_time) >> 24) & PCX_TIME_HI_MASK;
76
dsp_time[1] = (unsigned int)(*pc_time) & MASK_DSP_WORD;
77
}
78
79
/*
80
* vx_set_differed_time - set the differed time if specified
81
* @rmh: the rmh record to modify
82
* @pipe: the pipe to be checked
83
*
84
* if the pipe is programmed with the differed time, set the DSP time
85
* on the rmh and changes its command length.
86
*
87
* returns the increase of the command length.
88
*/
89
static int vx_set_differed_time(struct vx_core *chip, struct vx_rmh *rmh,
90
struct vx_pipe *pipe)
91
{
92
/* Update The length added to the RMH command by the timestamp */
93
if (! (pipe->differed_type & DC_DIFFERED_DELAY))
94
return 0;
95
96
/* Set the T bit */
97
rmh->Cmd[0] |= DSP_DIFFERED_COMMAND_MASK;
98
99
/* Time stamp is the 1st following parameter */
100
vx_set_pcx_time(chip, &pipe->pcx_time, &rmh->Cmd[1]);
101
102
/* Add the flags to a notified differed command */
103
if (pipe->differed_type & DC_NOTIFY_DELAY)
104
rmh->Cmd[1] |= NOTIFY_MASK_TIME_HIGH ;
105
106
/* Add the flags to a multiple differed command */
107
if (pipe->differed_type & DC_MULTIPLE_DELAY)
108
rmh->Cmd[1] |= MULTIPLE_MASK_TIME_HIGH;
109
110
/* Add the flags to a stream-time differed command */
111
if (pipe->differed_type & DC_STREAM_TIME_DELAY)
112
rmh->Cmd[1] |= STREAM_MASK_TIME_HIGH;
113
114
rmh->LgCmd += 2;
115
return 2;
116
}
117
118
/*
119
* vx_set_stream_format - send the stream format command
120
* @pipe: the affected pipe
121
* @data: format bitmask
122
*/
123
static int vx_set_stream_format(struct vx_core *chip, struct vx_pipe *pipe,
124
unsigned int data)
125
{
126
struct vx_rmh rmh;
127
128
vx_init_rmh(&rmh, pipe->is_capture ?
129
CMD_FORMAT_STREAM_IN : CMD_FORMAT_STREAM_OUT);
130
rmh.Cmd[0] |= pipe->number << FIELD_SIZE;
131
132
/* Command might be longer since we may have to add a timestamp */
133
vx_set_differed_time(chip, &rmh, pipe);
134
135
rmh.Cmd[rmh.LgCmd] = (data & 0xFFFFFF00) >> 8;
136
rmh.Cmd[rmh.LgCmd + 1] = (data & 0xFF) << 16 /*| (datal & 0xFFFF00) >> 8*/;
137
rmh.LgCmd += 2;
138
139
return vx_send_msg(chip, &rmh);
140
}
141
142
143
/*
144
* vx_set_format - set the format of a pipe
145
* @pipe: the affected pipe
146
* @runtime: pcm runtime instance to be referred
147
*
148
* returns 0 if successful, or a negative error code.
149
*/
150
static int vx_set_format(struct vx_core *chip, struct vx_pipe *pipe,
151
struct snd_pcm_runtime *runtime)
152
{
153
unsigned int header = HEADER_FMT_BASE;
154
155
if (runtime->channels == 1)
156
header |= HEADER_FMT_MONO;
157
if (snd_pcm_format_little_endian(runtime->format))
158
header |= HEADER_FMT_INTEL;
159
if (runtime->rate < 32000 && runtime->rate > 11025)
160
header |= HEADER_FMT_UPTO32;
161
else if (runtime->rate <= 11025)
162
header |= HEADER_FMT_UPTO11;
163
164
switch (snd_pcm_format_physical_width(runtime->format)) {
165
// case 8: break;
166
case 16: header |= HEADER_FMT_16BITS; break;
167
case 24: header |= HEADER_FMT_24BITS; break;
168
default :
169
snd_BUG();
170
return -EINVAL;
171
}
172
173
return vx_set_stream_format(chip, pipe, header);
174
}
175
176
/*
177
* set / query the IBL size
178
*/
179
static int vx_set_ibl(struct vx_core *chip, struct vx_ibl_info *info)
180
{
181
int err;
182
struct vx_rmh rmh;
183
184
vx_init_rmh(&rmh, CMD_IBL);
185
rmh.Cmd[0] |= info->size & 0x03ffff;
186
err = vx_send_msg(chip, &rmh);
187
if (err < 0)
188
return err;
189
info->size = rmh.Stat[0];
190
info->max_size = rmh.Stat[1];
191
info->min_size = rmh.Stat[2];
192
info->granularity = rmh.Stat[3];
193
dev_dbg(chip->card->dev,
194
"%s: size = %d, max = %d, min = %d, gran = %d\n",
195
__func__, info->size, info->max_size, info->min_size,
196
info->granularity);
197
return 0;
198
}
199
200
201
/*
202
* vx_get_pipe_state - get the state of a pipe
203
* @pipe: the pipe to be checked
204
* @state: the pointer for the returned state
205
*
206
* checks the state of a given pipe, and stores the state (1 = running,
207
* 0 = paused) on the given pointer.
208
*
209
* called from trigger callback only
210
*/
211
static int vx_get_pipe_state(struct vx_core *chip, struct vx_pipe *pipe, int *state)
212
{
213
int err;
214
struct vx_rmh rmh;
215
216
vx_init_rmh(&rmh, CMD_PIPE_STATE);
217
vx_set_pipe_cmd_params(&rmh, pipe->is_capture, pipe->number, 0);
218
err = vx_send_msg(chip, &rmh);
219
if (! err)
220
*state = (rmh.Stat[0] & (1 << pipe->number)) ? 1 : 0;
221
return err;
222
}
223
224
225
/*
226
* vx_query_hbuffer_size - query available h-buffer size in bytes
227
* @pipe: the pipe to be checked
228
*
229
* return the available size on h-buffer in bytes,
230
* or a negative error code.
231
*
232
* NOTE: calling this function always switches to the stream mode.
233
* you'll need to disconnect the host to get back to the
234
* normal mode.
235
*/
236
static int vx_query_hbuffer_size(struct vx_core *chip, struct vx_pipe *pipe)
237
{
238
int result;
239
struct vx_rmh rmh;
240
241
vx_init_rmh(&rmh, CMD_SIZE_HBUFFER);
242
vx_set_pipe_cmd_params(&rmh, pipe->is_capture, pipe->number, 0);
243
if (pipe->is_capture)
244
rmh.Cmd[0] |= 0x00000001;
245
result = vx_send_msg(chip, &rmh);
246
if (! result)
247
result = rmh.Stat[0] & 0xffff;
248
return result;
249
}
250
251
252
/*
253
* vx_pipe_can_start - query whether a pipe is ready for start
254
* @pipe: the pipe to be checked
255
*
256
* return 1 if ready, 0 if not ready, and negative value on error.
257
*
258
* called from trigger callback only
259
*/
260
static int vx_pipe_can_start(struct vx_core *chip, struct vx_pipe *pipe)
261
{
262
int err;
263
struct vx_rmh rmh;
264
265
vx_init_rmh(&rmh, CMD_CAN_START_PIPE);
266
vx_set_pipe_cmd_params(&rmh, pipe->is_capture, pipe->number, 0);
267
rmh.Cmd[0] |= 1;
268
269
err = vx_send_msg(chip, &rmh);
270
if (! err) {
271
if (rmh.Stat[0])
272
err = 1;
273
}
274
return err;
275
}
276
277
/*
278
* vx_conf_pipe - tell the pipe to stand by and wait for IRQA.
279
* @pipe: the pipe to be configured
280
*/
281
static int vx_conf_pipe(struct vx_core *chip, struct vx_pipe *pipe)
282
{
283
struct vx_rmh rmh;
284
285
vx_init_rmh(&rmh, CMD_CONF_PIPE);
286
if (pipe->is_capture)
287
rmh.Cmd[0] |= COMMAND_RECORD_MASK;
288
rmh.Cmd[1] = 1 << pipe->number;
289
return vx_send_msg(chip, &rmh);
290
}
291
292
/*
293
* vx_send_irqa - trigger IRQA
294
*/
295
static int vx_send_irqa(struct vx_core *chip)
296
{
297
struct vx_rmh rmh;
298
299
vx_init_rmh(&rmh, CMD_SEND_IRQA);
300
return vx_send_msg(chip, &rmh);
301
}
302
303
304
#define MAX_WAIT_FOR_DSP 250
305
/*
306
* vx boards do not support inter-card sync, besides
307
* only 126 samples require to be prepared before a pipe can start
308
*/
309
#define CAN_START_DELAY 2 /* wait 2ms only before asking if the pipe is ready*/
310
#define WAIT_STATE_DELAY 2 /* wait 2ms after irqA was requested and check if the pipe state toggled*/
311
312
/*
313
* vx_toggle_pipe - start / pause a pipe
314
* @pipe: the pipe to be triggered
315
* @state: start = 1, pause = 0
316
*
317
* called from trigger callback only
318
*
319
*/
320
static int vx_toggle_pipe(struct vx_core *chip, struct vx_pipe *pipe, int state)
321
{
322
int err, i, cur_state;
323
324
/* Check the pipe is not already in the requested state */
325
if (vx_get_pipe_state(chip, pipe, &cur_state) < 0)
326
return -EBADFD;
327
if (state == cur_state)
328
return 0;
329
330
/* If a start is requested, ask the DSP to get prepared
331
* and wait for a positive acknowledge (when there are
332
* enough sound buffer for this pipe)
333
*/
334
if (state) {
335
for (i = 0 ; i < MAX_WAIT_FOR_DSP; i++) {
336
err = vx_pipe_can_start(chip, pipe);
337
if (err > 0)
338
break;
339
/* Wait for a few, before asking again
340
* to avoid flooding the DSP with our requests
341
*/
342
mdelay(1);
343
}
344
}
345
346
err = vx_conf_pipe(chip, pipe);
347
if (err < 0)
348
return err;
349
350
err = vx_send_irqa(chip);
351
if (err < 0)
352
return err;
353
354
/* If it completes successfully, wait for the pipes
355
* reaching the expected state before returning
356
* Check one pipe only (since they are synchronous)
357
*/
358
for (i = 0; i < MAX_WAIT_FOR_DSP; i++) {
359
err = vx_get_pipe_state(chip, pipe, &cur_state);
360
if (err < 0 || cur_state == state)
361
break;
362
err = -EIO;
363
mdelay(1);
364
}
365
return err < 0 ? -EIO : 0;
366
}
367
368
369
/*
370
* vx_stop_pipe - stop a pipe
371
* @pipe: the pipe to be stopped
372
*
373
* called from trigger callback only
374
*/
375
static int vx_stop_pipe(struct vx_core *chip, struct vx_pipe *pipe)
376
{
377
struct vx_rmh rmh;
378
vx_init_rmh(&rmh, CMD_STOP_PIPE);
379
vx_set_pipe_cmd_params(&rmh, pipe->is_capture, pipe->number, 0);
380
return vx_send_msg(chip, &rmh);
381
}
382
383
384
/*
385
* vx_alloc_pipe - allocate a pipe and initialize the pipe instance
386
* @capture: 0 = playback, 1 = capture operation
387
* @audioid: the audio id to be assigned
388
* @num_audio: number of audio channels
389
* @pipep: the returned pipe instance
390
*
391
* return 0 on success, or a negative error code.
392
*/
393
static int vx_alloc_pipe(struct vx_core *chip, int capture,
394
int audioid, int num_audio,
395
struct vx_pipe **pipep)
396
{
397
int err;
398
struct vx_pipe *pipe;
399
struct vx_rmh rmh;
400
int data_mode;
401
402
*pipep = NULL;
403
vx_init_rmh(&rmh, CMD_RES_PIPE);
404
vx_set_pipe_cmd_params(&rmh, capture, audioid, num_audio);
405
#if 0 // NYI
406
if (underrun_skip_sound)
407
rmh.Cmd[0] |= BIT_SKIP_SOUND;
408
#endif // NYI
409
data_mode = (chip->uer_bits & IEC958_AES0_NONAUDIO) != 0;
410
if (! capture && data_mode)
411
rmh.Cmd[0] |= BIT_DATA_MODE;
412
err = vx_send_msg(chip, &rmh);
413
if (err < 0)
414
return err;
415
416
/* initialize the pipe record */
417
pipe = kzalloc(sizeof(*pipe), GFP_KERNEL);
418
if (! pipe) {
419
/* release the pipe */
420
vx_init_rmh(&rmh, CMD_FREE_PIPE);
421
vx_set_pipe_cmd_params(&rmh, capture, audioid, 0);
422
vx_send_msg(chip, &rmh);
423
return -ENOMEM;
424
}
425
426
/* the pipe index should be identical with the audio index */
427
pipe->number = audioid;
428
pipe->is_capture = capture;
429
pipe->channels = num_audio;
430
pipe->differed_type = 0;
431
pipe->pcx_time = 0;
432
pipe->data_mode = data_mode;
433
*pipep = pipe;
434
435
return 0;
436
}
437
438
439
/*
440
* vx_free_pipe - release a pipe
441
* @pipe: pipe to be released
442
*/
443
static int vx_free_pipe(struct vx_core *chip, struct vx_pipe *pipe)
444
{
445
struct vx_rmh rmh;
446
447
vx_init_rmh(&rmh, CMD_FREE_PIPE);
448
vx_set_pipe_cmd_params(&rmh, pipe->is_capture, pipe->number, 0);
449
vx_send_msg(chip, &rmh);
450
451
kfree(pipe);
452
return 0;
453
}
454
455
456
/*
457
* vx_start_stream - start the stream
458
*
459
* called from trigger callback only
460
*/
461
static int vx_start_stream(struct vx_core *chip, struct vx_pipe *pipe)
462
{
463
struct vx_rmh rmh;
464
465
vx_init_rmh(&rmh, CMD_START_ONE_STREAM);
466
vx_set_stream_cmd_params(&rmh, pipe->is_capture, pipe->number);
467
vx_set_differed_time(chip, &rmh, pipe);
468
return vx_send_msg(chip, &rmh);
469
}
470
471
472
/*
473
* vx_stop_stream - stop the stream
474
*
475
* called from trigger callback only
476
*/
477
static int vx_stop_stream(struct vx_core *chip, struct vx_pipe *pipe)
478
{
479
struct vx_rmh rmh;
480
481
vx_init_rmh(&rmh, CMD_STOP_STREAM);
482
vx_set_stream_cmd_params(&rmh, pipe->is_capture, pipe->number);
483
return vx_send_msg(chip, &rmh);
484
}
485
486
487
/*
488
* playback hw information
489
*/
490
491
static const struct snd_pcm_hardware vx_pcm_playback_hw = {
492
.info = (SNDRV_PCM_INFO_MMAP | SNDRV_PCM_INFO_INTERLEAVED |
493
SNDRV_PCM_INFO_PAUSE | SNDRV_PCM_INFO_MMAP_VALID /*|*/
494
/*SNDRV_PCM_INFO_RESUME*/),
495
.formats = (/*SNDRV_PCM_FMTBIT_U8 |*/
496
SNDRV_PCM_FMTBIT_S16_LE | SNDRV_PCM_FMTBIT_S24_3LE),
497
.rates = SNDRV_PCM_RATE_CONTINUOUS | SNDRV_PCM_RATE_8000_48000,
498
.rate_min = 5000,
499
.rate_max = 48000,
500
.channels_min = 1,
501
.channels_max = 2,
502
.buffer_bytes_max = (128*1024),
503
.period_bytes_min = 126,
504
.period_bytes_max = (128*1024),
505
.periods_min = 2,
506
.periods_max = VX_MAX_PERIODS,
507
.fifo_size = 126,
508
};
509
510
511
/*
512
* vx_pcm_playback_open - open callback for playback
513
*/
514
static int vx_pcm_playback_open(struct snd_pcm_substream *subs)
515
{
516
struct snd_pcm_runtime *runtime = subs->runtime;
517
struct vx_core *chip = snd_pcm_substream_chip(subs);
518
struct vx_pipe *pipe = NULL;
519
unsigned int audio;
520
int err;
521
522
if (chip->chip_status & VX_STAT_IS_STALE)
523
return -EBUSY;
524
525
audio = subs->pcm->device * 2;
526
if (snd_BUG_ON(audio >= chip->audio_outs))
527
return -EINVAL;
528
529
/* playback pipe may have been already allocated for monitoring */
530
pipe = chip->playback_pipes[audio];
531
if (! pipe) {
532
/* not allocated yet */
533
err = vx_alloc_pipe(chip, 0, audio, 2, &pipe); /* stereo playback */
534
if (err < 0)
535
return err;
536
}
537
/* open for playback */
538
pipe->references++;
539
540
pipe->substream = subs;
541
chip->playback_pipes[audio] = pipe;
542
543
runtime->hw = vx_pcm_playback_hw;
544
runtime->hw.period_bytes_min = chip->ibl.size;
545
runtime->private_data = pipe;
546
547
/* align to 4 bytes (otherwise will be problematic when 24bit is used) */
548
snd_pcm_hw_constraint_step(runtime, 0, SNDRV_PCM_HW_PARAM_BUFFER_BYTES, 4);
549
snd_pcm_hw_constraint_step(runtime, 0, SNDRV_PCM_HW_PARAM_PERIOD_BYTES, 4);
550
551
return 0;
552
}
553
554
/*
555
* vx_pcm_playback_close - close callback for playback
556
*/
557
static int vx_pcm_playback_close(struct snd_pcm_substream *subs)
558
{
559
struct vx_core *chip = snd_pcm_substream_chip(subs);
560
struct vx_pipe *pipe;
561
562
if (! subs->runtime->private_data)
563
return -EINVAL;
564
565
pipe = subs->runtime->private_data;
566
567
if (--pipe->references == 0) {
568
chip->playback_pipes[pipe->number] = NULL;
569
vx_free_pipe(chip, pipe);
570
}
571
572
return 0;
573
574
}
575
576
577
/*
578
* vx_notify_end_of_buffer - send "end-of-buffer" notifier at the given pipe
579
* @pipe: the pipe to notify
580
*
581
* NB: call with a certain lock.
582
*/
583
static int vx_notify_end_of_buffer(struct vx_core *chip, struct vx_pipe *pipe)
584
{
585
int err;
586
struct vx_rmh rmh; /* use a temporary rmh here */
587
588
/* Toggle Dsp Host Interface into Message mode */
589
vx_send_rih_nolock(chip, IRQ_PAUSE_START_CONNECT);
590
vx_init_rmh(&rmh, CMD_NOTIFY_END_OF_BUFFER);
591
vx_set_stream_cmd_params(&rmh, 0, pipe->number);
592
err = vx_send_msg_nolock(chip, &rmh);
593
if (err < 0)
594
return err;
595
/* Toggle Dsp Host Interface back to sound transfer mode */
596
vx_send_rih_nolock(chip, IRQ_PAUSE_START_CONNECT);
597
return 0;
598
}
599
600
/*
601
* vx_pcm_playback_transfer_chunk - transfer a single chunk
602
* @subs: substream
603
* @pipe: the pipe to transfer
604
* @size: chunk size in bytes
605
*
606
* transfer a single buffer chunk. EOB notificaton is added after that.
607
* called from the interrupt handler, too.
608
*
609
* return 0 if ok.
610
*/
611
static int vx_pcm_playback_transfer_chunk(struct vx_core *chip,
612
struct snd_pcm_runtime *runtime,
613
struct vx_pipe *pipe, int size)
614
{
615
int space, err = 0;
616
617
space = vx_query_hbuffer_size(chip, pipe);
618
if (space < 0) {
619
/* disconnect the host, SIZE_HBUF command always switches to the stream mode */
620
vx_send_rih(chip, IRQ_CONNECT_STREAM_NEXT);
621
dev_dbg(chip->card->dev, "error hbuffer\n");
622
return space;
623
}
624
if (space < size) {
625
vx_send_rih(chip, IRQ_CONNECT_STREAM_NEXT);
626
dev_dbg(chip->card->dev, "no enough hbuffer space %d\n", space);
627
return -EIO; /* XRUN */
628
}
629
630
/* we don't need irqsave here, because this function
631
* is called from either trigger callback or irq handler
632
*/
633
mutex_lock(&chip->lock);
634
vx_pseudo_dma_write(chip, runtime, pipe, size);
635
err = vx_notify_end_of_buffer(chip, pipe);
636
/* disconnect the host, SIZE_HBUF command always switches to the stream mode */
637
vx_send_rih_nolock(chip, IRQ_CONNECT_STREAM_NEXT);
638
mutex_unlock(&chip->lock);
639
return err;
640
}
641
642
/*
643
* update the position of the given pipe.
644
* pipe->position is updated and wrapped within the buffer size.
645
* pipe->transferred is updated, too, but the size is not wrapped,
646
* so that the caller can check the total transferred size later
647
* (to call snd_pcm_period_elapsed).
648
*/
649
static int vx_update_pipe_position(struct vx_core *chip,
650
struct snd_pcm_runtime *runtime,
651
struct vx_pipe *pipe)
652
{
653
struct vx_rmh rmh;
654
int err, update;
655
u64 count;
656
657
vx_init_rmh(&rmh, CMD_STREAM_SAMPLE_COUNT);
658
vx_set_pipe_cmd_params(&rmh, pipe->is_capture, pipe->number, 0);
659
err = vx_send_msg(chip, &rmh);
660
if (err < 0)
661
return err;
662
663
count = ((u64)(rmh.Stat[0] & 0xfffff) << 24) | (u64)rmh.Stat[1];
664
update = (int)(count - pipe->cur_count);
665
pipe->cur_count = count;
666
pipe->position += update;
667
if (pipe->position >= (int)runtime->buffer_size)
668
pipe->position %= runtime->buffer_size;
669
pipe->transferred += update;
670
return 0;
671
}
672
673
/*
674
* transfer the pending playback buffer data to DSP
675
* called from interrupt handler
676
*/
677
static void vx_pcm_playback_transfer(struct vx_core *chip,
678
struct snd_pcm_substream *subs,
679
struct vx_pipe *pipe, int nchunks)
680
{
681
int i, err;
682
struct snd_pcm_runtime *runtime = subs->runtime;
683
684
if (! pipe->prepared || (chip->chip_status & VX_STAT_IS_STALE))
685
return;
686
for (i = 0; i < nchunks; i++) {
687
err = vx_pcm_playback_transfer_chunk(chip, runtime, pipe,
688
chip->ibl.size);
689
if (err < 0)
690
return;
691
}
692
}
693
694
/*
695
* update the playback position and call snd_pcm_period_elapsed() if necessary
696
* called from interrupt handler
697
*/
698
static void vx_pcm_playback_update(struct vx_core *chip,
699
struct snd_pcm_substream *subs,
700
struct vx_pipe *pipe)
701
{
702
int err;
703
struct snd_pcm_runtime *runtime = subs->runtime;
704
705
if (pipe->running && ! (chip->chip_status & VX_STAT_IS_STALE)) {
706
err = vx_update_pipe_position(chip, runtime, pipe);
707
if (err < 0)
708
return;
709
if (pipe->transferred >= (int)runtime->period_size) {
710
pipe->transferred %= runtime->period_size;
711
snd_pcm_period_elapsed(subs);
712
}
713
}
714
}
715
716
/*
717
* vx_pcm_playback_trigger - trigger callback for playback
718
*/
719
static int vx_pcm_trigger(struct snd_pcm_substream *subs, int cmd)
720
{
721
struct vx_core *chip = snd_pcm_substream_chip(subs);
722
struct vx_pipe *pipe = subs->runtime->private_data;
723
int err;
724
725
if (chip->chip_status & VX_STAT_IS_STALE)
726
return -EBUSY;
727
728
switch (cmd) {
729
case SNDRV_PCM_TRIGGER_START:
730
case SNDRV_PCM_TRIGGER_RESUME:
731
if (! pipe->is_capture)
732
vx_pcm_playback_transfer(chip, subs, pipe, 2);
733
err = vx_start_stream(chip, pipe);
734
if (err < 0) {
735
pr_debug("vx: cannot start stream\n");
736
return err;
737
}
738
err = vx_toggle_pipe(chip, pipe, 1);
739
if (err < 0) {
740
pr_debug("vx: cannot start pipe\n");
741
vx_stop_stream(chip, pipe);
742
return err;
743
}
744
chip->pcm_running++;
745
pipe->running = 1;
746
break;
747
case SNDRV_PCM_TRIGGER_STOP:
748
case SNDRV_PCM_TRIGGER_SUSPEND:
749
vx_toggle_pipe(chip, pipe, 0);
750
vx_stop_pipe(chip, pipe);
751
vx_stop_stream(chip, pipe);
752
chip->pcm_running--;
753
pipe->running = 0;
754
break;
755
case SNDRV_PCM_TRIGGER_PAUSE_PUSH:
756
err = vx_toggle_pipe(chip, pipe, 0);
757
if (err < 0)
758
return err;
759
break;
760
case SNDRV_PCM_TRIGGER_PAUSE_RELEASE:
761
err = vx_toggle_pipe(chip, pipe, 1);
762
if (err < 0)
763
return err;
764
break;
765
default:
766
return -EINVAL;
767
}
768
return 0;
769
}
770
771
/*
772
* vx_pcm_playback_pointer - pointer callback for playback
773
*/
774
static snd_pcm_uframes_t vx_pcm_playback_pointer(struct snd_pcm_substream *subs)
775
{
776
struct snd_pcm_runtime *runtime = subs->runtime;
777
struct vx_pipe *pipe = runtime->private_data;
778
return pipe->position;
779
}
780
781
/*
782
* vx_pcm_prepare - prepare callback for playback and capture
783
*/
784
static int vx_pcm_prepare(struct snd_pcm_substream *subs)
785
{
786
struct vx_core *chip = snd_pcm_substream_chip(subs);
787
struct snd_pcm_runtime *runtime = subs->runtime;
788
struct vx_pipe *pipe = runtime->private_data;
789
int err, data_mode;
790
// int max_size, nchunks;
791
792
if (chip->chip_status & VX_STAT_IS_STALE)
793
return -EBUSY;
794
795
data_mode = (chip->uer_bits & IEC958_AES0_NONAUDIO) != 0;
796
if (data_mode != pipe->data_mode && ! pipe->is_capture) {
797
/* IEC958 status (raw-mode) was changed */
798
/* we reopen the pipe */
799
struct vx_rmh rmh;
800
dev_dbg(chip->card->dev,
801
"reopen the pipe with data_mode = %d\n", data_mode);
802
vx_init_rmh(&rmh, CMD_FREE_PIPE);
803
vx_set_pipe_cmd_params(&rmh, 0, pipe->number, 0);
804
err = vx_send_msg(chip, &rmh);
805
if (err < 0)
806
return err;
807
vx_init_rmh(&rmh, CMD_RES_PIPE);
808
vx_set_pipe_cmd_params(&rmh, 0, pipe->number, pipe->channels);
809
if (data_mode)
810
rmh.Cmd[0] |= BIT_DATA_MODE;
811
err = vx_send_msg(chip, &rmh);
812
if (err < 0)
813
return err;
814
pipe->data_mode = data_mode;
815
}
816
817
if (chip->pcm_running && chip->freq != runtime->rate) {
818
dev_err(chip->card->dev,
819
"vx: cannot set different clock %d from the current %d\n",
820
runtime->rate, chip->freq);
821
return -EINVAL;
822
}
823
vx_set_clock(chip, runtime->rate);
824
825
err = vx_set_format(chip, pipe, runtime);
826
if (err < 0)
827
return err;
828
829
if (vx_is_pcmcia(chip)) {
830
pipe->align = 2; /* 16bit word */
831
} else {
832
pipe->align = 4; /* 32bit word */
833
}
834
835
pipe->buffer_bytes = frames_to_bytes(runtime, runtime->buffer_size);
836
pipe->period_bytes = frames_to_bytes(runtime, runtime->period_size);
837
pipe->hw_ptr = 0;
838
839
/* set the timestamp */
840
vx_update_pipe_position(chip, runtime, pipe);
841
/* clear again */
842
pipe->transferred = 0;
843
pipe->position = 0;
844
845
pipe->prepared = 1;
846
847
return 0;
848
}
849
850
851
/*
852
* operators for PCM playback
853
*/
854
static const struct snd_pcm_ops vx_pcm_playback_ops = {
855
.open = vx_pcm_playback_open,
856
.close = vx_pcm_playback_close,
857
.prepare = vx_pcm_prepare,
858
.trigger = vx_pcm_trigger,
859
.pointer = vx_pcm_playback_pointer,
860
};
861
862
863
/*
864
* playback hw information
865
*/
866
867
static const struct snd_pcm_hardware vx_pcm_capture_hw = {
868
.info = (SNDRV_PCM_INFO_MMAP | SNDRV_PCM_INFO_INTERLEAVED |
869
SNDRV_PCM_INFO_PAUSE | SNDRV_PCM_INFO_MMAP_VALID /*|*/
870
/*SNDRV_PCM_INFO_RESUME*/),
871
.formats = (/*SNDRV_PCM_FMTBIT_U8 |*/
872
SNDRV_PCM_FMTBIT_S16_LE | SNDRV_PCM_FMTBIT_S24_3LE),
873
.rates = SNDRV_PCM_RATE_CONTINUOUS | SNDRV_PCM_RATE_8000_48000,
874
.rate_min = 5000,
875
.rate_max = 48000,
876
.channels_min = 1,
877
.channels_max = 2,
878
.buffer_bytes_max = (128*1024),
879
.period_bytes_min = 126,
880
.period_bytes_max = (128*1024),
881
.periods_min = 2,
882
.periods_max = VX_MAX_PERIODS,
883
.fifo_size = 126,
884
};
885
886
887
/*
888
* vx_pcm_capture_open - open callback for capture
889
*/
890
static int vx_pcm_capture_open(struct snd_pcm_substream *subs)
891
{
892
struct snd_pcm_runtime *runtime = subs->runtime;
893
struct vx_core *chip = snd_pcm_substream_chip(subs);
894
struct vx_pipe *pipe;
895
struct vx_pipe *pipe_out_monitoring = NULL;
896
unsigned int audio;
897
int err;
898
899
if (chip->chip_status & VX_STAT_IS_STALE)
900
return -EBUSY;
901
902
audio = subs->pcm->device * 2;
903
if (snd_BUG_ON(audio >= chip->audio_ins))
904
return -EINVAL;
905
err = vx_alloc_pipe(chip, 1, audio, 2, &pipe);
906
if (err < 0)
907
return err;
908
pipe->substream = subs;
909
chip->capture_pipes[audio] = pipe;
910
911
/* check if monitoring is needed */
912
if (chip->audio_monitor_active[audio]) {
913
pipe_out_monitoring = chip->playback_pipes[audio];
914
if (! pipe_out_monitoring) {
915
/* allocate a pipe */
916
err = vx_alloc_pipe(chip, 0, audio, 2, &pipe_out_monitoring);
917
if (err < 0)
918
return err;
919
chip->playback_pipes[audio] = pipe_out_monitoring;
920
}
921
pipe_out_monitoring->references++;
922
/*
923
if an output pipe is available, it's audios still may need to be
924
unmuted. hence we'll have to call a mixer entry point.
925
*/
926
vx_set_monitor_level(chip, audio, chip->audio_monitor[audio],
927
chip->audio_monitor_active[audio]);
928
/* assuming stereo */
929
vx_set_monitor_level(chip, audio+1, chip->audio_monitor[audio+1],
930
chip->audio_monitor_active[audio+1]);
931
}
932
933
pipe->monitoring_pipe = pipe_out_monitoring; /* default value NULL */
934
935
runtime->hw = vx_pcm_capture_hw;
936
runtime->hw.period_bytes_min = chip->ibl.size;
937
runtime->private_data = pipe;
938
939
/* align to 4 bytes (otherwise will be problematic when 24bit is used) */
940
snd_pcm_hw_constraint_step(runtime, 0, SNDRV_PCM_HW_PARAM_BUFFER_BYTES, 4);
941
snd_pcm_hw_constraint_step(runtime, 0, SNDRV_PCM_HW_PARAM_PERIOD_BYTES, 4);
942
943
return 0;
944
}
945
946
/*
947
* vx_pcm_capture_close - close callback for capture
948
*/
949
static int vx_pcm_capture_close(struct snd_pcm_substream *subs)
950
{
951
struct vx_core *chip = snd_pcm_substream_chip(subs);
952
struct vx_pipe *pipe;
953
struct vx_pipe *pipe_out_monitoring;
954
955
if (! subs->runtime->private_data)
956
return -EINVAL;
957
pipe = subs->runtime->private_data;
958
chip->capture_pipes[pipe->number] = NULL;
959
960
pipe_out_monitoring = pipe->monitoring_pipe;
961
962
/*
963
if an output pipe is attached to this input,
964
check if it needs to be released.
965
*/
966
if (pipe_out_monitoring) {
967
if (--pipe_out_monitoring->references == 0) {
968
vx_free_pipe(chip, pipe_out_monitoring);
969
chip->playback_pipes[pipe->number] = NULL;
970
pipe->monitoring_pipe = NULL;
971
}
972
}
973
974
vx_free_pipe(chip, pipe);
975
return 0;
976
}
977
978
979
980
#define DMA_READ_ALIGN 6 /* hardware alignment for read */
981
982
/*
983
* vx_pcm_capture_update - update the capture buffer
984
*/
985
static void vx_pcm_capture_update(struct vx_core *chip, struct snd_pcm_substream *subs,
986
struct vx_pipe *pipe)
987
{
988
int size, space, count;
989
struct snd_pcm_runtime *runtime = subs->runtime;
990
991
if (!pipe->running || (chip->chip_status & VX_STAT_IS_STALE))
992
return;
993
994
size = runtime->buffer_size - snd_pcm_capture_avail(runtime);
995
if (! size)
996
return;
997
size = frames_to_bytes(runtime, size);
998
space = vx_query_hbuffer_size(chip, pipe);
999
if (space < 0)
1000
goto _error;
1001
if (size > space)
1002
size = space;
1003
size = (size / 3) * 3; /* align to 3 bytes */
1004
if (size < DMA_READ_ALIGN)
1005
goto _error;
1006
1007
/* keep the last 6 bytes, they will be read after disconnection */
1008
count = size - DMA_READ_ALIGN;
1009
/* read bytes until the current pointer reaches to the aligned position
1010
* for word-transfer
1011
*/
1012
while (count > 0) {
1013
if ((pipe->hw_ptr % pipe->align) == 0)
1014
break;
1015
if (vx_wait_for_rx_full(chip) < 0)
1016
goto _error;
1017
vx_pcm_read_per_bytes(chip, runtime, pipe);
1018
count -= 3;
1019
}
1020
if (count > 0) {
1021
/* ok, let's accelerate! */
1022
int align = pipe->align * 3;
1023
space = (count / align) * align;
1024
if (space > 0) {
1025
vx_pseudo_dma_read(chip, runtime, pipe, space);
1026
count -= space;
1027
}
1028
}
1029
/* read the rest of bytes */
1030
while (count > 0) {
1031
if (vx_wait_for_rx_full(chip) < 0)
1032
goto _error;
1033
vx_pcm_read_per_bytes(chip, runtime, pipe);
1034
count -= 3;
1035
}
1036
/* disconnect the host, SIZE_HBUF command always switches to the stream mode */
1037
vx_send_rih(chip, IRQ_CONNECT_STREAM_NEXT);
1038
/* read the last pending 6 bytes */
1039
count = DMA_READ_ALIGN;
1040
while (count > 0) {
1041
vx_pcm_read_per_bytes(chip, runtime, pipe);
1042
count -= 3;
1043
}
1044
/* update the position */
1045
pipe->transferred += size;
1046
if (pipe->transferred >= pipe->period_bytes) {
1047
pipe->transferred %= pipe->period_bytes;
1048
snd_pcm_period_elapsed(subs);
1049
}
1050
return;
1051
1052
_error:
1053
/* disconnect the host, SIZE_HBUF command always switches to the stream mode */
1054
vx_send_rih(chip, IRQ_CONNECT_STREAM_NEXT);
1055
return;
1056
}
1057
1058
/*
1059
* vx_pcm_capture_pointer - pointer callback for capture
1060
*/
1061
static snd_pcm_uframes_t vx_pcm_capture_pointer(struct snd_pcm_substream *subs)
1062
{
1063
struct snd_pcm_runtime *runtime = subs->runtime;
1064
struct vx_pipe *pipe = runtime->private_data;
1065
return bytes_to_frames(runtime, pipe->hw_ptr);
1066
}
1067
1068
/*
1069
* operators for PCM capture
1070
*/
1071
static const struct snd_pcm_ops vx_pcm_capture_ops = {
1072
.open = vx_pcm_capture_open,
1073
.close = vx_pcm_capture_close,
1074
.prepare = vx_pcm_prepare,
1075
.trigger = vx_pcm_trigger,
1076
.pointer = vx_pcm_capture_pointer,
1077
};
1078
1079
1080
/*
1081
* interrupt handler for pcm streams
1082
*/
1083
void vx_pcm_update_intr(struct vx_core *chip, unsigned int events)
1084
{
1085
unsigned int i;
1086
struct vx_pipe *pipe;
1087
1088
#define EVENT_MASK (END_OF_BUFFER_EVENTS_PENDING|ASYNC_EVENTS_PENDING)
1089
1090
if (events & EVENT_MASK) {
1091
vx_init_rmh(&chip->irq_rmh, CMD_ASYNC);
1092
if (events & ASYNC_EVENTS_PENDING)
1093
chip->irq_rmh.Cmd[0] |= 0x00000001; /* SEL_ASYNC_EVENTS */
1094
if (events & END_OF_BUFFER_EVENTS_PENDING)
1095
chip->irq_rmh.Cmd[0] |= 0x00000002; /* SEL_END_OF_BUF_EVENTS */
1096
1097
if (vx_send_msg(chip, &chip->irq_rmh) < 0) {
1098
dev_dbg(chip->card->dev, "msg send error!!\n");
1099
return;
1100
}
1101
1102
i = 1;
1103
while (i < chip->irq_rmh.LgStat) {
1104
int p, buf, capture, eob;
1105
p = chip->irq_rmh.Stat[i] & MASK_FIRST_FIELD;
1106
capture = (chip->irq_rmh.Stat[i] & 0x400000) ? 1 : 0;
1107
eob = (chip->irq_rmh.Stat[i] & 0x800000) ? 1 : 0;
1108
i++;
1109
if (events & ASYNC_EVENTS_PENDING)
1110
i++;
1111
buf = 1; /* force to transfer */
1112
if (events & END_OF_BUFFER_EVENTS_PENDING) {
1113
if (eob)
1114
buf = chip->irq_rmh.Stat[i];
1115
i++;
1116
}
1117
if (capture)
1118
continue;
1119
if (snd_BUG_ON(p < 0 || p >= chip->audio_outs))
1120
continue;
1121
pipe = chip->playback_pipes[p];
1122
if (pipe && pipe->substream) {
1123
vx_pcm_playback_update(chip, pipe->substream, pipe);
1124
vx_pcm_playback_transfer(chip, pipe->substream, pipe, buf);
1125
}
1126
}
1127
}
1128
1129
/* update the capture pcm pointers as frequently as possible */
1130
for (i = 0; i < chip->audio_ins; i++) {
1131
pipe = chip->capture_pipes[i];
1132
if (pipe && pipe->substream)
1133
vx_pcm_capture_update(chip, pipe->substream, pipe);
1134
}
1135
}
1136
1137
1138
/*
1139
* vx_init_audio_io - check the available audio i/o and allocate pipe arrays
1140
*/
1141
static int vx_init_audio_io(struct vx_core *chip)
1142
{
1143
struct vx_rmh rmh;
1144
int preferred;
1145
1146
vx_init_rmh(&rmh, CMD_SUPPORTED);
1147
if (vx_send_msg(chip, &rmh) < 0) {
1148
dev_err(chip->card->dev,
1149
"vx: cannot get the supported audio data\n");
1150
return -ENXIO;
1151
}
1152
1153
chip->audio_outs = rmh.Stat[0] & MASK_FIRST_FIELD;
1154
chip->audio_ins = (rmh.Stat[0] >> (FIELD_SIZE*2)) & MASK_FIRST_FIELD;
1155
chip->audio_info = rmh.Stat[1];
1156
1157
/* allocate pipes */
1158
chip->playback_pipes = kcalloc(chip->audio_outs, sizeof(struct vx_pipe *), GFP_KERNEL);
1159
if (!chip->playback_pipes)
1160
return -ENOMEM;
1161
chip->capture_pipes = kcalloc(chip->audio_ins, sizeof(struct vx_pipe *), GFP_KERNEL);
1162
if (!chip->capture_pipes) {
1163
kfree(chip->playback_pipes);
1164
return -ENOMEM;
1165
}
1166
1167
preferred = chip->ibl.size;
1168
chip->ibl.size = 0;
1169
vx_set_ibl(chip, &chip->ibl); /* query the info */
1170
if (preferred > 0) {
1171
chip->ibl.size = roundup(preferred, chip->ibl.granularity);
1172
if (chip->ibl.size > chip->ibl.max_size)
1173
chip->ibl.size = chip->ibl.max_size;
1174
} else
1175
chip->ibl.size = chip->ibl.min_size; /* set to the minimum */
1176
vx_set_ibl(chip, &chip->ibl);
1177
1178
return 0;
1179
}
1180
1181
1182
/*
1183
* free callback for pcm
1184
*/
1185
static void snd_vx_pcm_free(struct snd_pcm *pcm)
1186
{
1187
struct vx_core *chip = pcm->private_data;
1188
chip->pcm[pcm->device] = NULL;
1189
kfree(chip->playback_pipes);
1190
chip->playback_pipes = NULL;
1191
kfree(chip->capture_pipes);
1192
chip->capture_pipes = NULL;
1193
}
1194
1195
/*
1196
* snd_vx_pcm_new - create and initialize a pcm
1197
*/
1198
int snd_vx_pcm_new(struct vx_core *chip)
1199
{
1200
struct snd_pcm *pcm;
1201
unsigned int i;
1202
int err;
1203
1204
err = vx_init_audio_io(chip);
1205
if (err < 0)
1206
return err;
1207
1208
for (i = 0; i < chip->hw->num_codecs; i++) {
1209
unsigned int outs, ins;
1210
outs = chip->audio_outs > i * 2 ? 1 : 0;
1211
ins = chip->audio_ins > i * 2 ? 1 : 0;
1212
if (! outs && ! ins)
1213
break;
1214
err = snd_pcm_new(chip->card, "VX PCM", i,
1215
outs, ins, &pcm);
1216
if (err < 0)
1217
return err;
1218
if (outs)
1219
snd_pcm_set_ops(pcm, SNDRV_PCM_STREAM_PLAYBACK, &vx_pcm_playback_ops);
1220
if (ins)
1221
snd_pcm_set_ops(pcm, SNDRV_PCM_STREAM_CAPTURE, &vx_pcm_capture_ops);
1222
snd_pcm_set_managed_buffer_all(pcm, SNDRV_DMA_TYPE_VMALLOC,
1223
NULL, 0, 0);
1224
1225
pcm->private_data = chip;
1226
pcm->private_free = snd_vx_pcm_free;
1227
pcm->info_flags = 0;
1228
pcm->nonatomic = true;
1229
strscpy(pcm->name, chip->card->shortname);
1230
chip->pcm[i] = pcm;
1231
}
1232
1233
return 0;
1234
}
1235
1236