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torvalds
GitHub Repository: torvalds/linux
Path: blob/master/sound/isa/gus/gus_pcm.c
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1
// SPDX-License-Identifier: GPL-2.0-or-later
2
/*
3
* Copyright (c) by Jaroslav Kysela <[email protected]>
4
* Routines for control of GF1 chip (PCM things)
5
*
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* InterWave chips supports interleaved DMA, but this feature isn't used in
7
* this code.
8
*
9
* This code emulates autoinit DMA transfer for playback, recording by GF1
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* chip doesn't support autoinit DMA.
11
*/
12
13
#include <asm/dma.h>
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#include <linux/slab.h>
15
#include <linux/sched/signal.h>
16
17
#include <sound/core.h>
18
#include <sound/control.h>
19
#include <sound/gus.h>
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#include <sound/pcm_params.h>
21
#include "gus_tables.h"
22
23
/* maximum rate */
24
25
#define SNDRV_GF1_PCM_RATE 48000
26
27
#define SNDRV_GF1_PCM_PFLG_NONE 0
28
#define SNDRV_GF1_PCM_PFLG_ACTIVE (1<<0)
29
#define SNDRV_GF1_PCM_PFLG_NEUTRAL (2<<0)
30
31
struct gus_pcm_private {
32
struct snd_gus_card * gus;
33
struct snd_pcm_substream *substream;
34
spinlock_t lock;
35
unsigned int voices;
36
struct snd_gus_voice *pvoices[2];
37
unsigned int memory;
38
unsigned short flags;
39
unsigned char voice_ctrl, ramp_ctrl;
40
unsigned int bpos;
41
unsigned int blocks;
42
unsigned int block_size;
43
unsigned int dma_size;
44
wait_queue_head_t sleep;
45
atomic_t dma_count;
46
int final_volume;
47
};
48
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static void snd_gf1_pcm_block_change_ack(struct snd_gus_card * gus, void *private_data)
50
{
51
struct gus_pcm_private *pcmp = private_data;
52
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if (pcmp) {
54
atomic_dec(&pcmp->dma_count);
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wake_up(&pcmp->sleep);
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}
57
}
58
59
static int snd_gf1_pcm_block_change(struct snd_pcm_substream *substream,
60
unsigned int offset,
61
unsigned int addr,
62
unsigned int count)
63
{
64
struct snd_gf1_dma_block block;
65
struct snd_pcm_runtime *runtime = substream->runtime;
66
struct gus_pcm_private *pcmp = runtime->private_data;
67
68
count += offset & 31;
69
offset &= ~31;
70
memset(&block, 0, sizeof(block));
71
block.cmd = SNDRV_GF1_DMA_IRQ;
72
if (snd_pcm_format_unsigned(runtime->format))
73
block.cmd |= SNDRV_GF1_DMA_UNSIGNED;
74
if (snd_pcm_format_width(runtime->format) == 16)
75
block.cmd |= SNDRV_GF1_DMA_16BIT;
76
block.addr = addr & ~31;
77
block.buffer = runtime->dma_area + offset;
78
block.buf_addr = runtime->dma_addr + offset;
79
block.count = count;
80
block.private_data = pcmp;
81
block.ack = snd_gf1_pcm_block_change_ack;
82
if (!snd_gf1_dma_transfer_block(pcmp->gus, &block, 0, 0))
83
atomic_inc(&pcmp->dma_count);
84
return 0;
85
}
86
87
static void snd_gf1_pcm_trigger_up(struct snd_pcm_substream *substream)
88
{
89
struct snd_pcm_runtime *runtime = substream->runtime;
90
struct gus_pcm_private *pcmp = runtime->private_data;
91
struct snd_gus_card * gus = pcmp->gus;
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unsigned char voice_ctrl, ramp_ctrl;
93
unsigned short rate;
94
unsigned int curr, begin, end;
95
unsigned short vol;
96
unsigned char pan;
97
unsigned int voice;
98
99
scoped_guard(spinlock_irqsave, &pcmp->lock) {
100
if (pcmp->flags & SNDRV_GF1_PCM_PFLG_ACTIVE)
101
return;
102
pcmp->flags |= SNDRV_GF1_PCM_PFLG_ACTIVE;
103
pcmp->final_volume = 0;
104
}
105
rate = snd_gf1_translate_freq(gus, runtime->rate << 4);
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/* enable WAVE IRQ */
107
voice_ctrl = snd_pcm_format_width(runtime->format) == 16 ? 0x24 : 0x20;
108
/* enable RAMP IRQ + rollover */
109
ramp_ctrl = 0x24;
110
if (pcmp->blocks == 1) {
111
voice_ctrl |= 0x08; /* loop enable */
112
ramp_ctrl &= ~0x04; /* disable rollover */
113
}
114
for (voice = 0; voice < pcmp->voices; voice++) {
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begin = pcmp->memory + voice * (pcmp->dma_size / runtime->channels);
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curr = begin + (pcmp->bpos * pcmp->block_size) / runtime->channels;
117
end = curr + (pcmp->block_size / runtime->channels);
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end -= snd_pcm_format_width(runtime->format) == 16 ? 2 : 1;
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pan = runtime->channels == 2 ? (!voice ? 1 : 14) : 8;
120
vol = !voice ? gus->gf1.pcm_volume_level_left : gus->gf1.pcm_volume_level_right;
121
guard(spinlock_irqsave)(&gus->reg_lock);
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snd_gf1_select_voice(gus, pcmp->pvoices[voice]->number);
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snd_gf1_write8(gus, SNDRV_GF1_VB_PAN, pan);
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snd_gf1_write16(gus, SNDRV_GF1_VW_FREQUENCY, rate);
125
snd_gf1_write_addr(gus, SNDRV_GF1_VA_START, begin << 4, voice_ctrl & 4);
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snd_gf1_write_addr(gus, SNDRV_GF1_VA_END, end << 4, voice_ctrl & 4);
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snd_gf1_write_addr(gus, SNDRV_GF1_VA_CURRENT, curr << 4, voice_ctrl & 4);
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snd_gf1_write16(gus, SNDRV_GF1_VW_VOLUME, SNDRV_GF1_MIN_VOLUME << 4);
129
snd_gf1_write8(gus, SNDRV_GF1_VB_VOLUME_RATE, 0x2f);
130
snd_gf1_write8(gus, SNDRV_GF1_VB_VOLUME_START, SNDRV_GF1_MIN_OFFSET);
131
snd_gf1_write8(gus, SNDRV_GF1_VB_VOLUME_END, vol >> 8);
132
snd_gf1_write8(gus, SNDRV_GF1_VB_VOLUME_CONTROL, ramp_ctrl);
133
if (!gus->gf1.enh_mode) {
134
snd_gf1_delay(gus);
135
snd_gf1_write8(gus, SNDRV_GF1_VB_VOLUME_CONTROL, ramp_ctrl);
136
}
137
}
138
139
guard(spinlock_irqsave)(&gus->reg_lock);
140
for (voice = 0; voice < pcmp->voices; voice++) {
141
snd_gf1_select_voice(gus, pcmp->pvoices[voice]->number);
142
if (gus->gf1.enh_mode)
143
snd_gf1_write8(gus, SNDRV_GF1_VB_MODE, 0x00); /* deactivate voice */
144
snd_gf1_write8(gus, SNDRV_GF1_VB_ADDRESS_CONTROL, voice_ctrl);
145
voice_ctrl &= ~0x20;
146
}
147
voice_ctrl |= 0x20;
148
if (!gus->gf1.enh_mode) {
149
snd_gf1_delay(gus);
150
for (voice = 0; voice < pcmp->voices; voice++) {
151
snd_gf1_select_voice(gus, pcmp->pvoices[voice]->number);
152
snd_gf1_write8(gus, SNDRV_GF1_VB_ADDRESS_CONTROL, voice_ctrl);
153
voice_ctrl &= ~0x20; /* disable IRQ for next voice */
154
}
155
}
156
}
157
158
static void snd_gf1_pcm_interrupt_wave(struct snd_gus_card * gus,
159
struct snd_gus_voice *pvoice)
160
{
161
struct gus_pcm_private * pcmp;
162
struct snd_pcm_runtime *runtime;
163
unsigned char voice_ctrl, ramp_ctrl;
164
unsigned int idx;
165
unsigned int end, step;
166
167
if (!pvoice->private_data) {
168
dev_dbg(gus->card->dev, "%s: unknown wave irq?\n", __func__);
169
snd_gf1_smart_stop_voice(gus, pvoice->number);
170
return;
171
}
172
pcmp = pvoice->private_data;
173
if (pcmp == NULL) {
174
dev_dbg(gus->card->dev, "%s: unknown wave irq?\n", __func__);
175
snd_gf1_smart_stop_voice(gus, pvoice->number);
176
return;
177
}
178
gus = pcmp->gus;
179
runtime = pcmp->substream->runtime;
180
181
scoped_guard(spinlock, &gus->reg_lock) {
182
snd_gf1_select_voice(gus, pvoice->number);
183
voice_ctrl = snd_gf1_read8(gus, SNDRV_GF1_VB_ADDRESS_CONTROL) & ~0x8b;
184
ramp_ctrl = (snd_gf1_read8(gus, SNDRV_GF1_VB_VOLUME_CONTROL) & ~0xa4) | 0x03;
185
#if 0
186
snd_gf1_select_voice(gus, pvoice->number);
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dev_dbg(gus->card->dev, "position = 0x%x\n",
188
(snd_gf1_read_addr(gus, SNDRV_GF1_VA_CURRENT, voice_ctrl & 4) >> 4));
189
snd_gf1_select_voice(gus, pcmp->pvoices[1]->number);
190
dev_dbg(gus->card->dev, "position = 0x%x\n",
191
(snd_gf1_read_addr(gus, SNDRV_GF1_VA_CURRENT, voice_ctrl & 4) >> 4));
192
snd_gf1_select_voice(gus, pvoice->number);
193
#endif
194
pcmp->bpos++;
195
pcmp->bpos %= pcmp->blocks;
196
if (pcmp->bpos + 1 >= pcmp->blocks) { /* last block? */
197
voice_ctrl |= 0x08; /* enable loop */
198
} else {
199
ramp_ctrl |= 0x04; /* enable rollover */
200
}
201
end = pcmp->memory + (((pcmp->bpos + 1) * pcmp->block_size) / runtime->channels);
202
end -= voice_ctrl & 4 ? 2 : 1;
203
step = pcmp->dma_size / runtime->channels;
204
voice_ctrl |= 0x20;
205
if (!pcmp->final_volume) {
206
ramp_ctrl |= 0x20;
207
ramp_ctrl &= ~0x03;
208
}
209
for (idx = 0; idx < pcmp->voices; idx++, end += step) {
210
snd_gf1_select_voice(gus, pcmp->pvoices[idx]->number);
211
snd_gf1_write_addr(gus, SNDRV_GF1_VA_END, end << 4, voice_ctrl & 4);
212
snd_gf1_write8(gus, SNDRV_GF1_VB_ADDRESS_CONTROL, voice_ctrl);
213
snd_gf1_write8(gus, SNDRV_GF1_VB_VOLUME_CONTROL, ramp_ctrl);
214
voice_ctrl &= ~0x20;
215
}
216
if (!gus->gf1.enh_mode) {
217
snd_gf1_delay(gus);
218
voice_ctrl |= 0x20;
219
for (idx = 0; idx < pcmp->voices; idx++) {
220
snd_gf1_select_voice(gus, pcmp->pvoices[idx]->number);
221
snd_gf1_write8(gus, SNDRV_GF1_VB_ADDRESS_CONTROL, voice_ctrl);
222
snd_gf1_write8(gus, SNDRV_GF1_VB_VOLUME_CONTROL, ramp_ctrl);
223
voice_ctrl &= ~0x20;
224
}
225
}
226
}
227
228
snd_pcm_period_elapsed(pcmp->substream);
229
#if 0
230
if ((runtime->flags & SNDRV_PCM_FLG_MMAP) &&
231
*runtime->state == SNDRV_PCM_STATE_RUNNING) {
232
end = pcmp->bpos * pcmp->block_size;
233
if (runtime->channels > 1) {
234
snd_gf1_pcm_block_change(pcmp->substream, end, pcmp->memory + (end / 2), pcmp->block_size / 2);
235
snd_gf1_pcm_block_change(pcmp->substream, end + (pcmp->block_size / 2), pcmp->memory + (pcmp->dma_size / 2) + (end / 2), pcmp->block_size / 2);
236
} else {
237
snd_gf1_pcm_block_change(pcmp->substream, end, pcmp->memory + end, pcmp->block_size);
238
}
239
}
240
#endif
241
}
242
243
static void snd_gf1_pcm_interrupt_volume(struct snd_gus_card * gus,
244
struct snd_gus_voice * pvoice)
245
{
246
unsigned short vol;
247
int cvoice;
248
struct gus_pcm_private *pcmp = pvoice->private_data;
249
250
/* stop ramp, but leave rollover bit untouched */
251
scoped_guard(spinlock, &gus->reg_lock) {
252
snd_gf1_select_voice(gus, pvoice->number);
253
snd_gf1_ctrl_stop(gus, SNDRV_GF1_VB_VOLUME_CONTROL);
254
}
255
if (pcmp == NULL)
256
return;
257
/* are we active? */
258
if (!(pcmp->flags & SNDRV_GF1_PCM_PFLG_ACTIVE))
259
return;
260
/* load real volume - better precision */
261
cvoice = pcmp->pvoices[0] == pvoice ? 0 : 1;
262
if (pcmp->substream == NULL)
263
return;
264
vol = !cvoice ? gus->gf1.pcm_volume_level_left : gus->gf1.pcm_volume_level_right;
265
guard(spinlock)(&gus->reg_lock);
266
snd_gf1_select_voice(gus, pvoice->number);
267
snd_gf1_write16(gus, SNDRV_GF1_VW_VOLUME, vol);
268
pcmp->final_volume = 1;
269
}
270
271
static void snd_gf1_pcm_volume_change(struct snd_gus_card * gus)
272
{
273
}
274
275
static int snd_gf1_pcm_poke_block(struct snd_gus_card *gus, unsigned char *buf,
276
unsigned int pos, unsigned int count,
277
int w16, int invert)
278
{
279
unsigned int len;
280
281
while (count > 0) {
282
len = count;
283
if (len > 512) /* limit, to allow IRQ */
284
len = 512;
285
count -= len;
286
if (gus->interwave) {
287
guard(spinlock_irqsave)(&gus->reg_lock);
288
snd_gf1_write8(gus, SNDRV_GF1_GB_MEMORY_CONTROL, 0x01 | (invert ? 0x08 : 0x00));
289
snd_gf1_dram_addr(gus, pos);
290
if (w16) {
291
outb(SNDRV_GF1_GW_DRAM_IO16, GUSP(gus, GF1REGSEL));
292
outsw(GUSP(gus, GF1DATALOW), buf, len >> 1);
293
} else {
294
outsb(GUSP(gus, DRAM), buf, len);
295
}
296
buf += 512;
297
pos += 512;
298
} else {
299
invert = invert ? 0x80 : 0x00;
300
if (w16) {
301
len >>= 1;
302
while (len--) {
303
snd_gf1_poke(gus, pos++, *buf++);
304
snd_gf1_poke(gus, pos++, *buf++ ^ invert);
305
}
306
} else {
307
while (len--)
308
snd_gf1_poke(gus, pos++, *buf++ ^ invert);
309
}
310
}
311
if (count > 0 && !in_interrupt()) {
312
schedule_timeout_interruptible(1);
313
if (signal_pending(current))
314
return -EAGAIN;
315
}
316
}
317
return 0;
318
}
319
320
static int get_bpos(struct gus_pcm_private *pcmp, int voice, unsigned int pos,
321
unsigned int len)
322
{
323
unsigned int bpos = pos + (voice * (pcmp->dma_size / 2));
324
if (snd_BUG_ON(bpos > pcmp->dma_size))
325
return -EIO;
326
if (snd_BUG_ON(bpos + len > pcmp->dma_size))
327
return -EIO;
328
return bpos;
329
}
330
331
static int playback_copy_ack(struct snd_pcm_substream *substream,
332
unsigned int bpos, unsigned int len)
333
{
334
struct snd_pcm_runtime *runtime = substream->runtime;
335
struct gus_pcm_private *pcmp = runtime->private_data;
336
struct snd_gus_card *gus = pcmp->gus;
337
int w16, invert;
338
339
if (len > 32)
340
return snd_gf1_pcm_block_change(substream, bpos,
341
pcmp->memory + bpos, len);
342
343
w16 = (snd_pcm_format_width(runtime->format) == 16);
344
invert = snd_pcm_format_unsigned(runtime->format);
345
return snd_gf1_pcm_poke_block(gus, runtime->dma_area + bpos,
346
pcmp->memory + bpos, len, w16, invert);
347
}
348
349
static int snd_gf1_pcm_playback_copy(struct snd_pcm_substream *substream,
350
int voice, unsigned long pos,
351
struct iov_iter *src, unsigned long count)
352
{
353
struct snd_pcm_runtime *runtime = substream->runtime;
354
struct gus_pcm_private *pcmp = runtime->private_data;
355
unsigned int len = count;
356
int bpos;
357
358
bpos = get_bpos(pcmp, voice, pos, len);
359
if (bpos < 0)
360
return bpos;
361
if (copy_from_iter(runtime->dma_area + bpos, len, src) != len)
362
return -EFAULT;
363
return playback_copy_ack(substream, bpos, len);
364
}
365
366
static int snd_gf1_pcm_playback_silence(struct snd_pcm_substream *substream,
367
int voice, unsigned long pos,
368
unsigned long count)
369
{
370
struct snd_pcm_runtime *runtime = substream->runtime;
371
struct gus_pcm_private *pcmp = runtime->private_data;
372
unsigned int len = count;
373
int bpos;
374
375
bpos = get_bpos(pcmp, voice, pos, len);
376
if (bpos < 0)
377
return bpos;
378
snd_pcm_format_set_silence(runtime->format, runtime->dma_area + bpos,
379
bytes_to_samples(runtime, count));
380
return playback_copy_ack(substream, bpos, len);
381
}
382
383
static int snd_gf1_pcm_playback_hw_params(struct snd_pcm_substream *substream,
384
struct snd_pcm_hw_params *hw_params)
385
{
386
struct snd_gus_card *gus = snd_pcm_substream_chip(substream);
387
struct snd_pcm_runtime *runtime = substream->runtime;
388
struct gus_pcm_private *pcmp = runtime->private_data;
389
390
if (runtime->buffer_changed) {
391
struct snd_gf1_mem_block *block;
392
if (pcmp->memory > 0) {
393
snd_gf1_mem_free(&gus->gf1.mem_alloc, pcmp->memory);
394
pcmp->memory = 0;
395
}
396
block = snd_gf1_mem_alloc(&gus->gf1.mem_alloc,
397
SNDRV_GF1_MEM_OWNER_DRIVER,
398
"GF1 PCM",
399
runtime->dma_bytes, 1, 32,
400
NULL);
401
if (!block)
402
return -ENOMEM;
403
pcmp->memory = block->ptr;
404
}
405
pcmp->voices = params_channels(hw_params);
406
if (pcmp->pvoices[0] == NULL) {
407
pcmp->pvoices[0] = snd_gf1_alloc_voice(pcmp->gus, SNDRV_GF1_VOICE_TYPE_PCM, 0, 0);
408
if (!pcmp->pvoices[0])
409
return -ENOMEM;
410
pcmp->pvoices[0]->handler_wave = snd_gf1_pcm_interrupt_wave;
411
pcmp->pvoices[0]->handler_volume = snd_gf1_pcm_interrupt_volume;
412
pcmp->pvoices[0]->volume_change = snd_gf1_pcm_volume_change;
413
pcmp->pvoices[0]->private_data = pcmp;
414
}
415
if (pcmp->voices > 1 && pcmp->pvoices[1] == NULL) {
416
pcmp->pvoices[1] = snd_gf1_alloc_voice(pcmp->gus, SNDRV_GF1_VOICE_TYPE_PCM, 0, 0);
417
if (!pcmp->pvoices[1])
418
return -ENOMEM;
419
pcmp->pvoices[1]->handler_wave = snd_gf1_pcm_interrupt_wave;
420
pcmp->pvoices[1]->handler_volume = snd_gf1_pcm_interrupt_volume;
421
pcmp->pvoices[1]->volume_change = snd_gf1_pcm_volume_change;
422
pcmp->pvoices[1]->private_data = pcmp;
423
} else if (pcmp->voices == 1) {
424
if (pcmp->pvoices[1]) {
425
snd_gf1_free_voice(pcmp->gus, pcmp->pvoices[1]);
426
pcmp->pvoices[1] = NULL;
427
}
428
}
429
return 0;
430
}
431
432
static int snd_gf1_pcm_playback_hw_free(struct snd_pcm_substream *substream)
433
{
434
struct snd_pcm_runtime *runtime = substream->runtime;
435
struct gus_pcm_private *pcmp = runtime->private_data;
436
437
if (pcmp->pvoices[0]) {
438
snd_gf1_free_voice(pcmp->gus, pcmp->pvoices[0]);
439
pcmp->pvoices[0] = NULL;
440
}
441
if (pcmp->pvoices[1]) {
442
snd_gf1_free_voice(pcmp->gus, pcmp->pvoices[1]);
443
pcmp->pvoices[1] = NULL;
444
}
445
if (pcmp->memory > 0) {
446
snd_gf1_mem_free(&pcmp->gus->gf1.mem_alloc, pcmp->memory);
447
pcmp->memory = 0;
448
}
449
return 0;
450
}
451
452
static int snd_gf1_pcm_playback_prepare(struct snd_pcm_substream *substream)
453
{
454
struct snd_pcm_runtime *runtime = substream->runtime;
455
struct gus_pcm_private *pcmp = runtime->private_data;
456
457
pcmp->bpos = 0;
458
pcmp->dma_size = snd_pcm_lib_buffer_bytes(substream);
459
pcmp->block_size = snd_pcm_lib_period_bytes(substream);
460
pcmp->blocks = pcmp->dma_size / pcmp->block_size;
461
return 0;
462
}
463
464
static int snd_gf1_pcm_playback_trigger(struct snd_pcm_substream *substream,
465
int cmd)
466
{
467
struct snd_gus_card *gus = snd_pcm_substream_chip(substream);
468
struct snd_pcm_runtime *runtime = substream->runtime;
469
struct gus_pcm_private *pcmp = runtime->private_data;
470
int voice;
471
472
if (cmd == SNDRV_PCM_TRIGGER_START) {
473
snd_gf1_pcm_trigger_up(substream);
474
} else if (cmd == SNDRV_PCM_TRIGGER_STOP) {
475
scoped_guard(spinlock, &pcmp->lock) {
476
pcmp->flags &= ~SNDRV_GF1_PCM_PFLG_ACTIVE;
477
}
478
voice = pcmp->pvoices[0]->number;
479
snd_gf1_stop_voices(gus, voice, voice);
480
if (pcmp->pvoices[1]) {
481
voice = pcmp->pvoices[1]->number;
482
snd_gf1_stop_voices(gus, voice, voice);
483
}
484
} else {
485
return -EINVAL;
486
}
487
return 0;
488
}
489
490
static snd_pcm_uframes_t snd_gf1_pcm_playback_pointer(struct snd_pcm_substream *substream)
491
{
492
struct snd_gus_card *gus = snd_pcm_substream_chip(substream);
493
struct snd_pcm_runtime *runtime = substream->runtime;
494
struct gus_pcm_private *pcmp = runtime->private_data;
495
unsigned int pos;
496
unsigned char voice_ctrl;
497
498
pos = 0;
499
guard(spinlock)(&gus->reg_lock);
500
if (pcmp->flags & SNDRV_GF1_PCM_PFLG_ACTIVE) {
501
snd_gf1_select_voice(gus, pcmp->pvoices[0]->number);
502
voice_ctrl = snd_gf1_read8(gus, SNDRV_GF1_VB_ADDRESS_CONTROL);
503
pos = (snd_gf1_read_addr(gus, SNDRV_GF1_VA_CURRENT, voice_ctrl & 4) >> 4) - pcmp->memory;
504
if (substream->runtime->channels > 1)
505
pos <<= 1;
506
pos = bytes_to_frames(runtime, pos);
507
}
508
return pos;
509
}
510
511
static const struct snd_ratnum clock = {
512
.num = 9878400/16,
513
.den_min = 2,
514
.den_max = 257,
515
.den_step = 1,
516
};
517
518
static const struct snd_pcm_hw_constraint_ratnums hw_constraints_clocks = {
519
.nrats = 1,
520
.rats = &clock,
521
};
522
523
static int snd_gf1_pcm_capture_hw_params(struct snd_pcm_substream *substream,
524
struct snd_pcm_hw_params *hw_params)
525
{
526
struct snd_gus_card *gus = snd_pcm_substream_chip(substream);
527
528
gus->c_dma_size = params_buffer_bytes(hw_params);
529
gus->c_period_size = params_period_bytes(hw_params);
530
gus->c_pos = 0;
531
gus->gf1.pcm_rcntrl_reg = 0x21; /* IRQ at end, enable & start */
532
if (params_channels(hw_params) > 1)
533
gus->gf1.pcm_rcntrl_reg |= 2;
534
if (gus->gf1.dma2 > 3)
535
gus->gf1.pcm_rcntrl_reg |= 4;
536
if (snd_pcm_format_unsigned(params_format(hw_params)))
537
gus->gf1.pcm_rcntrl_reg |= 0x80;
538
return 0;
539
}
540
541
static int snd_gf1_pcm_capture_prepare(struct snd_pcm_substream *substream)
542
{
543
struct snd_gus_card *gus = snd_pcm_substream_chip(substream);
544
struct snd_pcm_runtime *runtime = substream->runtime;
545
546
snd_gf1_i_write8(gus, SNDRV_GF1_GB_RECORD_RATE, runtime->rate_den - 2);
547
snd_gf1_i_write8(gus, SNDRV_GF1_GB_REC_DMA_CONTROL, 0); /* disable sampling */
548
snd_gf1_i_look8(gus, SNDRV_GF1_GB_REC_DMA_CONTROL); /* Sampling Control Register */
549
snd_dma_program(gus->gf1.dma2, runtime->dma_addr, gus->c_period_size, DMA_MODE_READ);
550
return 0;
551
}
552
553
static int snd_gf1_pcm_capture_trigger(struct snd_pcm_substream *substream,
554
int cmd)
555
{
556
struct snd_gus_card *gus = snd_pcm_substream_chip(substream);
557
int val;
558
559
if (cmd == SNDRV_PCM_TRIGGER_START) {
560
val = gus->gf1.pcm_rcntrl_reg;
561
} else if (cmd == SNDRV_PCM_TRIGGER_STOP) {
562
val = 0;
563
} else {
564
return -EINVAL;
565
}
566
567
guard(spinlock)(&gus->reg_lock);
568
snd_gf1_write8(gus, SNDRV_GF1_GB_REC_DMA_CONTROL, val);
569
snd_gf1_look8(gus, SNDRV_GF1_GB_REC_DMA_CONTROL);
570
return 0;
571
}
572
573
static snd_pcm_uframes_t snd_gf1_pcm_capture_pointer(struct snd_pcm_substream *substream)
574
{
575
struct snd_gus_card *gus = snd_pcm_substream_chip(substream);
576
int pos = snd_dma_pointer(gus->gf1.dma2, gus->c_period_size);
577
pos = bytes_to_frames(substream->runtime, (gus->c_pos + pos) % gus->c_dma_size);
578
return pos;
579
}
580
581
static void snd_gf1_pcm_interrupt_dma_read(struct snd_gus_card * gus)
582
{
583
snd_gf1_i_write8(gus, SNDRV_GF1_GB_REC_DMA_CONTROL, 0); /* disable sampling */
584
snd_gf1_i_look8(gus, SNDRV_GF1_GB_REC_DMA_CONTROL); /* Sampling Control Register */
585
if (gus->pcm_cap_substream != NULL) {
586
snd_gf1_pcm_capture_prepare(gus->pcm_cap_substream);
587
snd_gf1_pcm_capture_trigger(gus->pcm_cap_substream, SNDRV_PCM_TRIGGER_START);
588
gus->c_pos += gus->c_period_size;
589
snd_pcm_period_elapsed(gus->pcm_cap_substream);
590
}
591
}
592
593
static const struct snd_pcm_hardware snd_gf1_pcm_playback =
594
{
595
.info = SNDRV_PCM_INFO_NONINTERLEAVED,
596
.formats = (SNDRV_PCM_FMTBIT_S8 | SNDRV_PCM_FMTBIT_U8 |
597
SNDRV_PCM_FMTBIT_S16_LE | SNDRV_PCM_FMTBIT_U16_LE),
598
.rates = SNDRV_PCM_RATE_CONTINUOUS | SNDRV_PCM_RATE_8000_48000,
599
.rate_min = 5510,
600
.rate_max = 48000,
601
.channels_min = 1,
602
.channels_max = 2,
603
.buffer_bytes_max = (128*1024),
604
.period_bytes_min = 64,
605
.period_bytes_max = (128*1024),
606
.periods_min = 1,
607
.periods_max = 1024,
608
.fifo_size = 0,
609
};
610
611
static const struct snd_pcm_hardware snd_gf1_pcm_capture =
612
{
613
.info = (SNDRV_PCM_INFO_MMAP | SNDRV_PCM_INFO_INTERLEAVED |
614
SNDRV_PCM_INFO_MMAP_VALID),
615
.formats = SNDRV_PCM_FMTBIT_S8 | SNDRV_PCM_FMTBIT_U8,
616
.rates = SNDRV_PCM_RATE_CONTINUOUS | SNDRV_PCM_RATE_8000_44100,
617
.rate_min = 5510,
618
.rate_max = 44100,
619
.channels_min = 1,
620
.channels_max = 2,
621
.buffer_bytes_max = (128*1024),
622
.period_bytes_min = 64,
623
.period_bytes_max = (128*1024),
624
.periods_min = 1,
625
.periods_max = 1024,
626
.fifo_size = 0,
627
};
628
629
static void snd_gf1_pcm_playback_free(struct snd_pcm_runtime *runtime)
630
{
631
kfree(runtime->private_data);
632
}
633
634
static int snd_gf1_pcm_playback_open(struct snd_pcm_substream *substream)
635
{
636
struct gus_pcm_private *pcmp;
637
struct snd_gus_card *gus = snd_pcm_substream_chip(substream);
638
struct snd_pcm_runtime *runtime = substream->runtime;
639
int err;
640
641
pcmp = kzalloc(sizeof(*pcmp), GFP_KERNEL);
642
if (pcmp == NULL)
643
return -ENOMEM;
644
pcmp->gus = gus;
645
spin_lock_init(&pcmp->lock);
646
init_waitqueue_head(&pcmp->sleep);
647
atomic_set(&pcmp->dma_count, 0);
648
649
runtime->private_data = pcmp;
650
runtime->private_free = snd_gf1_pcm_playback_free;
651
652
#if 0
653
dev_dbg(gus->card->dev,
654
"playback.buffer = 0x%lx, gf1.pcm_buffer = 0x%lx\n",
655
(long) pcm->playback.buffer, (long) gus->gf1.pcm_buffer);
656
#endif
657
err = snd_gf1_dma_init(gus);
658
if (err < 0)
659
return err;
660
pcmp->flags = SNDRV_GF1_PCM_PFLG_NONE;
661
pcmp->substream = substream;
662
runtime->hw = snd_gf1_pcm_playback;
663
snd_pcm_limit_isa_dma_size(gus->gf1.dma1, &runtime->hw.buffer_bytes_max);
664
snd_pcm_limit_isa_dma_size(gus->gf1.dma1, &runtime->hw.period_bytes_max);
665
snd_pcm_hw_constraint_step(runtime, 0, SNDRV_PCM_HW_PARAM_PERIOD_BYTES, 64);
666
return 0;
667
}
668
669
static int snd_gf1_pcm_playback_close(struct snd_pcm_substream *substream)
670
{
671
struct snd_gus_card *gus = snd_pcm_substream_chip(substream);
672
struct snd_pcm_runtime *runtime = substream->runtime;
673
struct gus_pcm_private *pcmp = runtime->private_data;
674
675
if (!wait_event_timeout(pcmp->sleep, (atomic_read(&pcmp->dma_count) <= 0), 2*HZ))
676
dev_err(gus->card->dev, "gf1 pcm - serious DMA problem\n");
677
678
snd_gf1_dma_done(gus);
679
return 0;
680
}
681
682
static int snd_gf1_pcm_capture_open(struct snd_pcm_substream *substream)
683
{
684
struct snd_pcm_runtime *runtime = substream->runtime;
685
struct snd_gus_card *gus = snd_pcm_substream_chip(substream);
686
687
gus->gf1.interrupt_handler_dma_read = snd_gf1_pcm_interrupt_dma_read;
688
gus->pcm_cap_substream = substream;
689
substream->runtime->hw = snd_gf1_pcm_capture;
690
snd_pcm_limit_isa_dma_size(gus->gf1.dma2, &runtime->hw.buffer_bytes_max);
691
snd_pcm_limit_isa_dma_size(gus->gf1.dma2, &runtime->hw.period_bytes_max);
692
snd_pcm_hw_constraint_ratnums(runtime, 0, SNDRV_PCM_HW_PARAM_RATE,
693
&hw_constraints_clocks);
694
return 0;
695
}
696
697
static int snd_gf1_pcm_capture_close(struct snd_pcm_substream *substream)
698
{
699
struct snd_gus_card *gus = snd_pcm_substream_chip(substream);
700
701
gus->pcm_cap_substream = NULL;
702
snd_gf1_set_default_handlers(gus, SNDRV_GF1_HANDLER_DMA_READ);
703
return 0;
704
}
705
706
static int snd_gf1_pcm_volume_info(struct snd_kcontrol *kcontrol, struct snd_ctl_elem_info *uinfo)
707
{
708
uinfo->type = SNDRV_CTL_ELEM_TYPE_INTEGER;
709
uinfo->count = 2;
710
uinfo->value.integer.min = 0;
711
uinfo->value.integer.max = 127;
712
return 0;
713
}
714
715
static int snd_gf1_pcm_volume_get(struct snd_kcontrol *kcontrol, struct snd_ctl_elem_value *ucontrol)
716
{
717
struct snd_gus_card *gus = snd_kcontrol_chip(kcontrol);
718
719
guard(spinlock_irqsave)(&gus->pcm_volume_level_lock);
720
ucontrol->value.integer.value[0] = gus->gf1.pcm_volume_level_left1;
721
ucontrol->value.integer.value[1] = gus->gf1.pcm_volume_level_right1;
722
return 0;
723
}
724
725
static int snd_gf1_pcm_volume_put(struct snd_kcontrol *kcontrol, struct snd_ctl_elem_value *ucontrol)
726
{
727
struct snd_gus_card *gus = snd_kcontrol_chip(kcontrol);
728
int change;
729
unsigned int idx;
730
unsigned short val1, val2, vol;
731
struct gus_pcm_private *pcmp;
732
struct snd_gus_voice *pvoice;
733
734
val1 = ucontrol->value.integer.value[0] & 127;
735
val2 = ucontrol->value.integer.value[1] & 127;
736
scoped_guard(spinlock_irqsave, &gus->pcm_volume_level_lock) {
737
change = val1 != gus->gf1.pcm_volume_level_left1 ||
738
val2 != gus->gf1.pcm_volume_level_right1;
739
gus->gf1.pcm_volume_level_left1 = val1;
740
gus->gf1.pcm_volume_level_right1 = val2;
741
gus->gf1.pcm_volume_level_left = snd_gf1_lvol_to_gvol_raw(val1 << 9) << 4;
742
gus->gf1.pcm_volume_level_right = snd_gf1_lvol_to_gvol_raw(val2 << 9) << 4;
743
}
744
/* are we active? */
745
scoped_guard(spinlock_irqsave, &gus->voice_alloc) {
746
for (idx = 0; idx < 32; idx++) {
747
pvoice = &gus->gf1.voices[idx];
748
if (!pvoice->pcm)
749
continue;
750
pcmp = pvoice->private_data;
751
if (!(pcmp->flags & SNDRV_GF1_PCM_PFLG_ACTIVE))
752
continue;
753
/* load real volume - better precision */
754
guard(spinlock)(&gus->reg_lock);
755
snd_gf1_select_voice(gus, pvoice->number);
756
snd_gf1_ctrl_stop(gus, SNDRV_GF1_VB_VOLUME_CONTROL);
757
vol = pvoice == pcmp->pvoices[0] ? gus->gf1.pcm_volume_level_left : gus->gf1.pcm_volume_level_right;
758
snd_gf1_write16(gus, SNDRV_GF1_VW_VOLUME, vol);
759
pcmp->final_volume = 1;
760
}
761
}
762
return change;
763
}
764
765
static const struct snd_kcontrol_new snd_gf1_pcm_volume_control =
766
{
767
.iface = SNDRV_CTL_ELEM_IFACE_MIXER,
768
.name = "PCM Playback Volume",
769
.info = snd_gf1_pcm_volume_info,
770
.get = snd_gf1_pcm_volume_get,
771
.put = snd_gf1_pcm_volume_put
772
};
773
774
static const struct snd_kcontrol_new snd_gf1_pcm_volume_control1 =
775
{
776
.iface = SNDRV_CTL_ELEM_IFACE_MIXER,
777
.name = "GPCM Playback Volume",
778
.info = snd_gf1_pcm_volume_info,
779
.get = snd_gf1_pcm_volume_get,
780
.put = snd_gf1_pcm_volume_put
781
};
782
783
static const struct snd_pcm_ops snd_gf1_pcm_playback_ops = {
784
.open = snd_gf1_pcm_playback_open,
785
.close = snd_gf1_pcm_playback_close,
786
.hw_params = snd_gf1_pcm_playback_hw_params,
787
.hw_free = snd_gf1_pcm_playback_hw_free,
788
.prepare = snd_gf1_pcm_playback_prepare,
789
.trigger = snd_gf1_pcm_playback_trigger,
790
.pointer = snd_gf1_pcm_playback_pointer,
791
.copy = snd_gf1_pcm_playback_copy,
792
.fill_silence = snd_gf1_pcm_playback_silence,
793
};
794
795
static const struct snd_pcm_ops snd_gf1_pcm_capture_ops = {
796
.open = snd_gf1_pcm_capture_open,
797
.close = snd_gf1_pcm_capture_close,
798
.hw_params = snd_gf1_pcm_capture_hw_params,
799
.prepare = snd_gf1_pcm_capture_prepare,
800
.trigger = snd_gf1_pcm_capture_trigger,
801
.pointer = snd_gf1_pcm_capture_pointer,
802
};
803
804
int snd_gf1_pcm_new(struct snd_gus_card *gus, int pcm_dev, int control_index)
805
{
806
struct snd_card *card;
807
struct snd_kcontrol *kctl;
808
struct snd_pcm *pcm;
809
struct snd_pcm_substream *substream;
810
int capture, err;
811
812
card = gus->card;
813
capture = !gus->interwave && !gus->ess_flag && !gus->ace_flag ? 1 : 0;
814
err = snd_pcm_new(card,
815
gus->interwave ? "AMD InterWave" : "GF1",
816
pcm_dev,
817
gus->gf1.pcm_channels / 2,
818
capture,
819
&pcm);
820
if (err < 0)
821
return err;
822
pcm->private_data = gus;
823
/* playback setup */
824
snd_pcm_set_ops(pcm, SNDRV_PCM_STREAM_PLAYBACK, &snd_gf1_pcm_playback_ops);
825
826
for (substream = pcm->streams[SNDRV_PCM_STREAM_PLAYBACK].substream; substream; substream = substream->next)
827
snd_pcm_set_managed_buffer(substream, SNDRV_DMA_TYPE_DEV,
828
card->dev,
829
64*1024, gus->gf1.dma1 > 3 ? 128*1024 : 64*1024);
830
831
pcm->info_flags = 0;
832
pcm->dev_subclass = SNDRV_PCM_SUBCLASS_GENERIC_MIX;
833
if (capture) {
834
snd_pcm_set_ops(pcm, SNDRV_PCM_STREAM_CAPTURE, &snd_gf1_pcm_capture_ops);
835
if (gus->gf1.dma2 == gus->gf1.dma1)
836
pcm->info_flags |= SNDRV_PCM_INFO_HALF_DUPLEX;
837
snd_pcm_set_managed_buffer(pcm->streams[SNDRV_PCM_STREAM_CAPTURE].substream,
838
SNDRV_DMA_TYPE_DEV, card->dev,
839
64*1024, gus->gf1.dma2 > 3 ? 128*1024 : 64*1024);
840
}
841
strscpy(pcm->name, pcm->id);
842
if (gus->interwave) {
843
sprintf(pcm->name + strlen(pcm->name), " rev %c", gus->revision + 'A');
844
}
845
strcat(pcm->name, " (synth)");
846
gus->pcm = pcm;
847
848
if (gus->codec_flag)
849
kctl = snd_ctl_new1(&snd_gf1_pcm_volume_control1, gus);
850
else
851
kctl = snd_ctl_new1(&snd_gf1_pcm_volume_control, gus);
852
kctl->id.index = control_index;
853
err = snd_ctl_add(card, kctl);
854
if (err < 0)
855
return err;
856
857
return 0;
858
}
859
860
861