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torvalds
GitHub Repository: torvalds/linux
Path: blob/master/sound/soc/qcom/qdsp6/q6asm.c
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1
// SPDX-License-Identifier: GPL-2.0
2
// Copyright (c) 2011-2017, The Linux Foundation. All rights reserved.
3
// Copyright (c) 2018, Linaro Limited
4
5
#include <dt-bindings/sound/qcom,q6asm.h>
6
#include <linux/mutex.h>
7
#include <linux/wait.h>
8
#include <linux/module.h>
9
#include <linux/atomic.h>
10
#include <linux/soc/qcom/apr.h>
11
#include <linux/device.h>
12
#include <linux/of_platform.h>
13
#include <linux/spinlock.h>
14
#include <linux/kref.h>
15
#include <linux/of.h>
16
#include <uapi/sound/asound.h>
17
#include <uapi/sound/compress_params.h>
18
#include <linux/delay.h>
19
#include <linux/slab.h>
20
#include <linux/mm.h>
21
#include "q6asm.h"
22
#include "q6core.h"
23
#include "q6dsp-errno.h"
24
#include "q6dsp-common.h"
25
26
#define ASM_STREAM_CMD_CLOSE 0x00010BCD
27
#define ASM_STREAM_CMD_FLUSH 0x00010BCE
28
#define ASM_SESSION_CMD_PAUSE 0x00010BD3
29
#define ASM_DATA_CMD_EOS 0x00010BDB
30
#define ASM_DATA_EVENT_RENDERED_EOS 0x00010C1C
31
#define ASM_NULL_POPP_TOPOLOGY 0x00010C68
32
#define ASM_STREAM_CMD_FLUSH_READBUFS 0x00010C09
33
#define ASM_STREAM_CMD_SET_ENCDEC_PARAM 0x00010C10
34
#define ASM_STREAM_POSTPROC_TOPO_ID_NONE 0x00010C68
35
#define ASM_CMD_SHARED_MEM_MAP_REGIONS 0x00010D92
36
#define ASM_CMDRSP_SHARED_MEM_MAP_REGIONS 0x00010D93
37
#define ASM_CMD_SHARED_MEM_UNMAP_REGIONS 0x00010D94
38
#define ASM_DATA_CMD_MEDIA_FMT_UPDATE_V2 0x00010D98
39
#define ASM_DATA_EVENT_WRITE_DONE_V2 0x00010D99
40
#define ASM_PARAM_ID_ENCDEC_ENC_CFG_BLK_V2 0x00010DA3
41
#define ASM_SESSION_CMD_RUN_V2 0x00010DAA
42
#define ASM_MEDIA_FMT_MULTI_CHANNEL_PCM_V2 0x00010DA5
43
#define ASM_MEDIA_FMT_MP3 0x00010BE9
44
#define ASM_MEDIA_FMT_FLAC 0x00010C16
45
#define ASM_MEDIA_FMT_WMA_V9 0x00010DA8
46
#define ASM_MEDIA_FMT_WMA_V10 0x00010DA7
47
#define ASM_DATA_CMD_WRITE_V2 0x00010DAB
48
#define ASM_DATA_CMD_READ_V2 0x00010DAC
49
#define ASM_SESSION_CMD_SUSPEND 0x00010DEC
50
#define ASM_STREAM_CMD_OPEN_WRITE_V3 0x00010DB3
51
#define ASM_STREAM_CMD_OPEN_READ_V3 0x00010DB4
52
#define ASM_DATA_EVENT_READ_DONE_V2 0x00010D9A
53
#define ASM_STREAM_CMD_OPEN_READWRITE_V2 0x00010D8D
54
#define ASM_MEDIA_FMT_ALAC 0x00012f31
55
#define ASM_MEDIA_FMT_APE 0x00012f32
56
#define ASM_DATA_CMD_REMOVE_INITIAL_SILENCE 0x00010D67
57
#define ASM_DATA_CMD_REMOVE_TRAILING_SILENCE 0x00010D68
58
59
60
#define ASM_LEGACY_STREAM_SESSION 0
61
/* Bit shift for the stream_perf_mode subfield. */
62
#define ASM_SHIFT_STREAM_PERF_MODE_FLAG_IN_OPEN_READ 29
63
#define ASM_END_POINT_DEVICE_MATRIX 0
64
#define ASM_DEFAULT_APP_TYPE 0
65
#define ASM_SYNC_IO_MODE 0x0001
66
#define ASM_ASYNC_IO_MODE 0x0002
67
#define ASM_TUN_READ_IO_MODE 0x0004 /* tunnel read write mode */
68
#define ASM_TUN_WRITE_IO_MODE 0x0008 /* tunnel read write mode */
69
#define ASM_SHIFT_GAPLESS_MODE_FLAG 31
70
#define ADSP_MEMORY_MAP_SHMEM8_4K_POOL 3
71
72
struct avs_cmd_shared_mem_map_regions {
73
u16 mem_pool_id;
74
u16 num_regions;
75
u32 property_flag;
76
} __packed;
77
78
struct avs_shared_map_region_payload {
79
u32 shm_addr_lsw;
80
u32 shm_addr_msw;
81
u32 mem_size_bytes;
82
} __packed;
83
84
struct avs_cmd_shared_mem_unmap_regions {
85
u32 mem_map_handle;
86
} __packed;
87
88
struct asm_data_cmd_media_fmt_update_v2 {
89
u32 fmt_blk_size;
90
} __packed;
91
92
struct asm_multi_channel_pcm_fmt_blk_v2 {
93
struct asm_data_cmd_media_fmt_update_v2 fmt_blk;
94
u16 num_channels;
95
u16 bits_per_sample;
96
u32 sample_rate;
97
u16 is_signed;
98
u16 reserved;
99
u8 channel_mapping[PCM_MAX_NUM_CHANNEL];
100
} __packed;
101
102
struct asm_flac_fmt_blk_v2 {
103
struct asm_data_cmd_media_fmt_update_v2 fmt_blk;
104
u16 is_stream_info_present;
105
u16 num_channels;
106
u16 min_blk_size;
107
u16 max_blk_size;
108
u16 md5_sum[8];
109
u32 sample_rate;
110
u32 min_frame_size;
111
u32 max_frame_size;
112
u16 sample_size;
113
u16 reserved;
114
} __packed;
115
116
struct asm_wmastdv9_fmt_blk_v2 {
117
struct asm_data_cmd_media_fmt_update_v2 fmt_blk;
118
u16 fmtag;
119
u16 num_channels;
120
u32 sample_rate;
121
u32 bytes_per_sec;
122
u16 blk_align;
123
u16 bits_per_sample;
124
u32 channel_mask;
125
u16 enc_options;
126
u16 reserved;
127
} __packed;
128
129
struct asm_wmaprov10_fmt_blk_v2 {
130
struct asm_data_cmd_media_fmt_update_v2 fmt_blk;
131
u16 fmtag;
132
u16 num_channels;
133
u32 sample_rate;
134
u32 bytes_per_sec;
135
u16 blk_align;
136
u16 bits_per_sample;
137
u32 channel_mask;
138
u16 enc_options;
139
u16 advanced_enc_options1;
140
u32 advanced_enc_options2;
141
} __packed;
142
143
struct asm_alac_fmt_blk_v2 {
144
struct asm_data_cmd_media_fmt_update_v2 fmt_blk;
145
u32 frame_length;
146
u8 compatible_version;
147
u8 bit_depth;
148
u8 pb;
149
u8 mb;
150
u8 kb;
151
u8 num_channels;
152
u16 max_run;
153
u32 max_frame_bytes;
154
u32 avg_bit_rate;
155
u32 sample_rate;
156
u32 channel_layout_tag;
157
} __packed;
158
159
struct asm_ape_fmt_blk_v2 {
160
struct asm_data_cmd_media_fmt_update_v2 fmt_blk;
161
u16 compatible_version;
162
u16 compression_level;
163
u32 format_flags;
164
u32 blocks_per_frame;
165
u32 final_frame_blocks;
166
u32 total_frames;
167
u16 bits_per_sample;
168
u16 num_channels;
169
u32 sample_rate;
170
u32 seek_table_present;
171
} __packed;
172
173
struct asm_stream_cmd_set_encdec_param {
174
u32 param_id;
175
u32 param_size;
176
} __packed;
177
178
struct asm_enc_cfg_blk_param_v2 {
179
u32 frames_per_buf;
180
u32 enc_cfg_blk_size;
181
} __packed;
182
183
struct asm_multi_channel_pcm_enc_cfg_v2 {
184
struct asm_stream_cmd_set_encdec_param encdec;
185
struct asm_enc_cfg_blk_param_v2 encblk;
186
uint16_t num_channels;
187
uint16_t bits_per_sample;
188
uint32_t sample_rate;
189
uint16_t is_signed;
190
uint16_t reserved;
191
uint8_t channel_mapping[8];
192
} __packed;
193
194
struct asm_data_cmd_read_v2 {
195
u32 buf_addr_lsw;
196
u32 buf_addr_msw;
197
u32 mem_map_handle;
198
u32 buf_size;
199
u32 seq_id;
200
} __packed;
201
202
struct asm_data_cmd_read_v2_done {
203
u32 status;
204
u32 buf_addr_lsw;
205
u32 buf_addr_msw;
206
};
207
208
struct asm_stream_cmd_open_read_v3 {
209
u32 mode_flags;
210
u32 src_endpointype;
211
u32 preprocopo_id;
212
u32 enc_cfg_id;
213
u16 bits_per_sample;
214
u16 reserved;
215
} __packed;
216
217
struct asm_data_cmd_write_v2 {
218
u32 buf_addr_lsw;
219
u32 buf_addr_msw;
220
u32 mem_map_handle;
221
u32 buf_size;
222
u32 seq_id;
223
u32 timestamp_lsw;
224
u32 timestamp_msw;
225
u32 flags;
226
} __packed;
227
228
struct asm_stream_cmd_open_write_v3 {
229
uint32_t mode_flags;
230
uint16_t sink_endpointype;
231
uint16_t bits_per_sample;
232
uint32_t postprocopo_id;
233
uint32_t dec_fmt_id;
234
} __packed;
235
236
struct asm_session_cmd_run_v2 {
237
u32 flags;
238
u32 time_lsw;
239
u32 time_msw;
240
} __packed;
241
242
struct audio_buffer {
243
phys_addr_t phys;
244
uint32_t size; /* size of buffer */
245
};
246
247
struct audio_port_data {
248
struct audio_buffer *buf;
249
uint32_t num_periods;
250
uint32_t dsp_buf;
251
uint32_t mem_map_handle;
252
atomic_t hw_ptr;
253
};
254
255
struct q6asm {
256
struct apr_device *adev;
257
struct device *dev;
258
struct q6core_svc_api_info ainfo;
259
wait_queue_head_t mem_wait;
260
spinlock_t slock;
261
struct audio_client *session[MAX_SESSIONS + 1];
262
};
263
264
struct audio_client {
265
int session;
266
q6asm_cb cb;
267
void *priv;
268
uint32_t io_mode;
269
struct apr_device *adev;
270
struct mutex cmd_lock;
271
spinlock_t lock;
272
struct kref refcount;
273
/* idx:1 out port, 0: in port */
274
struct audio_port_data port[2];
275
wait_queue_head_t cmd_wait;
276
struct aprv2_ibasic_rsp_result_t result;
277
int perf_mode;
278
struct q6asm *q6asm;
279
struct device *dev;
280
};
281
282
static inline void q6asm_add_hdr(struct audio_client *ac, struct apr_hdr *hdr,
283
uint32_t pkt_size, bool cmd_flg,
284
uint32_t stream_id)
285
{
286
hdr->hdr_field = APR_SEQ_CMD_HDR_FIELD;
287
hdr->src_port = ((ac->session << 8) & 0xFF00) | (stream_id);
288
hdr->dest_port = ((ac->session << 8) & 0xFF00) | (stream_id);
289
hdr->pkt_size = pkt_size;
290
if (cmd_flg)
291
hdr->token = ac->session;
292
}
293
294
static int q6asm_apr_send_session_pkt(struct q6asm *a, struct audio_client *ac,
295
struct apr_pkt *pkt, uint32_t rsp_opcode)
296
{
297
struct apr_hdr *hdr = &pkt->hdr;
298
int rc;
299
300
mutex_lock(&ac->cmd_lock);
301
ac->result.opcode = 0;
302
ac->result.status = 0;
303
rc = apr_send_pkt(a->adev, pkt);
304
if (rc < 0)
305
goto err;
306
307
if (rsp_opcode)
308
rc = wait_event_timeout(a->mem_wait,
309
(ac->result.opcode == hdr->opcode) ||
310
(ac->result.opcode == rsp_opcode),
311
5 * HZ);
312
else
313
rc = wait_event_timeout(a->mem_wait,
314
(ac->result.opcode == hdr->opcode),
315
5 * HZ);
316
317
if (!rc) {
318
dev_err(a->dev, "CMD %x timeout\n", hdr->opcode);
319
rc = -ETIMEDOUT;
320
} else if (ac->result.status > 0) {
321
dev_err(a->dev, "DSP returned error[%x]\n",
322
ac->result.status);
323
rc = -EINVAL;
324
}
325
326
err:
327
mutex_unlock(&ac->cmd_lock);
328
return rc;
329
}
330
331
static int __q6asm_memory_unmap(struct audio_client *ac,
332
phys_addr_t buf_add, int dir)
333
{
334
struct avs_cmd_shared_mem_unmap_regions *mem_unmap;
335
struct q6asm *a = dev_get_drvdata(ac->dev->parent);
336
struct apr_pkt *pkt;
337
int rc, pkt_size;
338
339
if (ac->port[dir].mem_map_handle == 0) {
340
dev_err(ac->dev, "invalid mem handle\n");
341
return -EINVAL;
342
}
343
344
pkt_size = APR_HDR_SIZE + sizeof(*mem_unmap);
345
void *p __free(kfree) = kzalloc(pkt_size, GFP_KERNEL);
346
if (!p)
347
return -ENOMEM;
348
349
pkt = p;
350
mem_unmap = p + APR_HDR_SIZE;
351
352
pkt->hdr.hdr_field = APR_SEQ_CMD_HDR_FIELD;
353
pkt->hdr.src_port = 0;
354
pkt->hdr.dest_port = 0;
355
pkt->hdr.pkt_size = pkt_size;
356
pkt->hdr.token = ((ac->session << 8) | dir);
357
358
pkt->hdr.opcode = ASM_CMD_SHARED_MEM_UNMAP_REGIONS;
359
mem_unmap->mem_map_handle = ac->port[dir].mem_map_handle;
360
361
rc = q6asm_apr_send_session_pkt(a, ac, pkt, 0);
362
if (rc < 0)
363
return rc;
364
365
ac->port[dir].mem_map_handle = 0;
366
367
return 0;
368
}
369
370
371
static void q6asm_audio_client_free_buf(struct audio_client *ac,
372
struct audio_port_data *port)
373
{
374
unsigned long flags;
375
376
spin_lock_irqsave(&ac->lock, flags);
377
port->num_periods = 0;
378
spin_unlock_irqrestore(&ac->lock, flags);
379
kfree(port->buf);
380
port->buf = NULL;
381
}
382
383
/**
384
* q6asm_unmap_memory_regions() - unmap memory regions in the dsp.
385
*
386
* @dir: direction of audio stream
387
* @ac: audio client instanace
388
*
389
* Return: Will be an negative value on failure or zero on success
390
*/
391
int q6asm_unmap_memory_regions(unsigned int dir, struct audio_client *ac)
392
{
393
struct audio_port_data *port;
394
int cnt = 0;
395
int rc = 0;
396
397
port = &ac->port[dir];
398
if (!port->buf) {
399
rc = -EINVAL;
400
goto err;
401
}
402
403
cnt = port->num_periods - 1;
404
if (cnt >= 0) {
405
rc = __q6asm_memory_unmap(ac, port->buf[dir].phys, dir);
406
if (rc < 0) {
407
dev_err(ac->dev, "%s: Memory_unmap_regions failed %d\n",
408
__func__, rc);
409
goto err;
410
}
411
}
412
413
q6asm_audio_client_free_buf(ac, port);
414
415
err:
416
return rc;
417
}
418
EXPORT_SYMBOL_GPL(q6asm_unmap_memory_regions);
419
420
static int __q6asm_memory_map_regions(struct audio_client *ac, int dir,
421
size_t period_sz, unsigned int periods,
422
bool is_contiguous)
423
{
424
struct avs_cmd_shared_mem_map_regions *cmd = NULL;
425
struct avs_shared_map_region_payload *mregions = NULL;
426
struct q6asm *a = dev_get_drvdata(ac->dev->parent);
427
struct audio_port_data *port = NULL;
428
struct audio_buffer *ab = NULL;
429
struct apr_pkt *pkt;
430
unsigned long flags;
431
uint32_t num_regions, buf_sz;
432
int i, pkt_size;
433
434
if (is_contiguous) {
435
num_regions = 1;
436
buf_sz = period_sz * periods;
437
} else {
438
buf_sz = period_sz;
439
num_regions = periods;
440
}
441
442
/* DSP expects size should be aligned to 4K */
443
buf_sz = ALIGN(buf_sz, 4096);
444
445
pkt_size = APR_HDR_SIZE + sizeof(*cmd) +
446
(sizeof(*mregions) * num_regions);
447
448
void *p __free(kfree) = kzalloc(pkt_size, GFP_KERNEL);
449
if (!p)
450
return -ENOMEM;
451
452
pkt = p;
453
cmd = p + APR_HDR_SIZE;
454
mregions = p + APR_HDR_SIZE + sizeof(*cmd);
455
456
pkt->hdr.hdr_field = APR_SEQ_CMD_HDR_FIELD;
457
pkt->hdr.src_port = 0;
458
pkt->hdr.dest_port = 0;
459
pkt->hdr.pkt_size = pkt_size;
460
pkt->hdr.token = ((ac->session << 8) | dir);
461
pkt->hdr.opcode = ASM_CMD_SHARED_MEM_MAP_REGIONS;
462
463
cmd->mem_pool_id = ADSP_MEMORY_MAP_SHMEM8_4K_POOL;
464
cmd->num_regions = num_regions;
465
cmd->property_flag = 0x00;
466
467
spin_lock_irqsave(&ac->lock, flags);
468
port = &ac->port[dir];
469
470
for (i = 0; i < num_regions; i++) {
471
ab = &port->buf[i];
472
mregions->shm_addr_lsw = lower_32_bits(ab->phys);
473
mregions->shm_addr_msw = upper_32_bits(ab->phys);
474
mregions->mem_size_bytes = buf_sz;
475
++mregions;
476
}
477
spin_unlock_irqrestore(&ac->lock, flags);
478
479
return q6asm_apr_send_session_pkt(a, ac, pkt, ASM_CMDRSP_SHARED_MEM_MAP_REGIONS);
480
}
481
482
/**
483
* q6asm_map_memory_regions() - map memory regions in the dsp.
484
*
485
* @dir: direction of audio stream
486
* @ac: audio client instanace
487
* @phys: physical address that needs mapping.
488
* @period_sz: audio period size
489
* @periods: number of periods
490
*
491
* Return: Will be an negative value on failure or zero on success
492
*/
493
int q6asm_map_memory_regions(unsigned int dir, struct audio_client *ac,
494
phys_addr_t phys,
495
size_t period_sz, unsigned int periods)
496
{
497
struct audio_buffer *buf;
498
unsigned long flags;
499
int cnt;
500
int rc;
501
502
spin_lock_irqsave(&ac->lock, flags);
503
if (ac->port[dir].buf) {
504
dev_err(ac->dev, "Buffer already allocated\n");
505
spin_unlock_irqrestore(&ac->lock, flags);
506
return 0;
507
}
508
509
buf = kcalloc(periods, sizeof(*buf), GFP_ATOMIC);
510
if (!buf) {
511
spin_unlock_irqrestore(&ac->lock, flags);
512
return -ENOMEM;
513
}
514
515
516
ac->port[dir].buf = buf;
517
518
buf[0].phys = phys;
519
buf[0].size = period_sz;
520
521
for (cnt = 1; cnt < periods; cnt++) {
522
if (period_sz > 0) {
523
buf[cnt].phys = buf[0].phys + (cnt * period_sz);
524
buf[cnt].size = period_sz;
525
}
526
}
527
ac->port[dir].num_periods = periods;
528
529
spin_unlock_irqrestore(&ac->lock, flags);
530
531
rc = __q6asm_memory_map_regions(ac, dir, period_sz, periods, 1);
532
if (rc < 0) {
533
dev_err(ac->dev, "Memory_map_regions failed\n");
534
q6asm_audio_client_free_buf(ac, &ac->port[dir]);
535
}
536
537
return rc;
538
}
539
EXPORT_SYMBOL_GPL(q6asm_map_memory_regions);
540
541
static void q6asm_audio_client_release(struct kref *ref)
542
{
543
struct audio_client *ac;
544
struct q6asm *a;
545
unsigned long flags;
546
547
ac = container_of(ref, struct audio_client, refcount);
548
a = ac->q6asm;
549
550
spin_lock_irqsave(&a->slock, flags);
551
a->session[ac->session] = NULL;
552
spin_unlock_irqrestore(&a->slock, flags);
553
554
kfree(ac);
555
}
556
557
/**
558
* q6asm_audio_client_free() - Freee allocated audio client
559
*
560
* @ac: audio client to free
561
*/
562
void q6asm_audio_client_free(struct audio_client *ac)
563
{
564
kref_put(&ac->refcount, q6asm_audio_client_release);
565
}
566
EXPORT_SYMBOL_GPL(q6asm_audio_client_free);
567
568
static struct audio_client *q6asm_get_audio_client(struct q6asm *a,
569
int session_id)
570
{
571
struct audio_client *ac = NULL;
572
573
guard(spinlock_irqsave)(&a->slock);
574
if ((session_id <= 0) || (session_id > MAX_SESSIONS)) {
575
dev_err(a->dev, "invalid session: %d\n", session_id);
576
goto err;
577
}
578
579
/* check for valid session */
580
if (!a->session[session_id])
581
goto err;
582
else if (a->session[session_id]->session != session_id)
583
goto err;
584
585
ac = a->session[session_id];
586
kref_get(&ac->refcount);
587
err:
588
return ac;
589
}
590
591
int q6asm_get_hw_pointer(struct audio_client *ac, unsigned int dir)
592
{
593
struct audio_port_data *data = &ac->port[dir];
594
595
return (int)atomic_read(&data->hw_ptr);
596
}
597
EXPORT_SYMBOL_GPL(q6asm_get_hw_pointer);
598
599
static int32_t q6asm_stream_callback(struct apr_device *adev,
600
const struct apr_resp_pkt *data,
601
int session_id)
602
{
603
struct q6asm *q6asm = dev_get_drvdata(&adev->dev);
604
const struct aprv2_ibasic_rsp_result_t *result;
605
const struct apr_hdr *hdr = &data->hdr;
606
struct audio_port_data *port;
607
struct audio_client *ac;
608
uint32_t client_event = 0;
609
int ret = 0;
610
611
ac = q6asm_get_audio_client(q6asm, session_id);
612
if (!ac)/* Audio client might already be freed by now */
613
return 0;
614
615
result = data->payload;
616
617
switch (hdr->opcode) {
618
case APR_BASIC_RSP_RESULT:
619
switch (result->opcode) {
620
case ASM_SESSION_CMD_PAUSE:
621
client_event = ASM_CLIENT_EVENT_CMD_PAUSE_DONE;
622
break;
623
case ASM_SESSION_CMD_SUSPEND:
624
client_event = ASM_CLIENT_EVENT_CMD_SUSPEND_DONE;
625
break;
626
case ASM_STREAM_CMD_FLUSH:
627
client_event = ASM_CLIENT_EVENT_CMD_FLUSH_DONE;
628
break;
629
case ASM_SESSION_CMD_RUN_V2:
630
client_event = ASM_CLIENT_EVENT_CMD_RUN_DONE;
631
break;
632
case ASM_STREAM_CMD_CLOSE:
633
client_event = ASM_CLIENT_EVENT_CMD_CLOSE_DONE;
634
break;
635
case ASM_STREAM_CMD_FLUSH_READBUFS:
636
client_event = ASM_CLIENT_EVENT_CMD_OUT_FLUSH_DONE;
637
break;
638
case ASM_STREAM_CMD_OPEN_WRITE_V3:
639
case ASM_STREAM_CMD_OPEN_READ_V3:
640
case ASM_STREAM_CMD_OPEN_READWRITE_V2:
641
case ASM_STREAM_CMD_SET_ENCDEC_PARAM:
642
case ASM_DATA_CMD_MEDIA_FMT_UPDATE_V2:
643
case ASM_DATA_CMD_REMOVE_INITIAL_SILENCE:
644
case ASM_DATA_CMD_REMOVE_TRAILING_SILENCE:
645
if (result->status != 0) {
646
dev_err(ac->dev,
647
"cmd = 0x%x returned error = 0x%x\n",
648
result->opcode, result->status);
649
ac->result = *result;
650
wake_up(&ac->cmd_wait);
651
ret = 0;
652
goto done;
653
}
654
break;
655
case ASM_DATA_CMD_EOS:
656
case ASM_DATA_CMD_READ_V2:
657
case ASM_DATA_CMD_WRITE_V2:
658
/* response as result of close stream */
659
goto done;
660
default:
661
dev_err(ac->dev, "command[0x%x] not expecting rsp\n",
662
result->opcode);
663
break;
664
}
665
666
ac->result = *result;
667
wake_up(&ac->cmd_wait);
668
669
if (ac->cb)
670
ac->cb(client_event, hdr->token,
671
data->payload, ac->priv);
672
673
ret = 0;
674
goto done;
675
676
case ASM_DATA_EVENT_WRITE_DONE_V2:
677
client_event = ASM_CLIENT_EVENT_DATA_WRITE_DONE;
678
if (ac->io_mode & ASM_SYNC_IO_MODE) {
679
phys_addr_t phys;
680
int token = hdr->token & ASM_WRITE_TOKEN_MASK;
681
682
guard(spinlock_irqsave)(&ac->lock);
683
684
port = &ac->port[SNDRV_PCM_STREAM_PLAYBACK];
685
686
if (!port->buf) {
687
ret = 0;
688
goto done;
689
}
690
691
phys = port->buf[token].phys;
692
693
if (lower_32_bits(phys) != result->opcode ||
694
upper_32_bits(phys) != result->status) {
695
dev_err(ac->dev, "Expected addr %pa\n",
696
&port->buf[token].phys);
697
ret = -EINVAL;
698
goto done;
699
}
700
atomic_set(&port->hw_ptr, token + 1);
701
}
702
break;
703
case ASM_DATA_EVENT_READ_DONE_V2:
704
client_event = ASM_CLIENT_EVENT_DATA_READ_DONE;
705
if (ac->io_mode & ASM_SYNC_IO_MODE) {
706
struct asm_data_cmd_read_v2_done *done = data->payload;
707
phys_addr_t phys;
708
709
guard(spinlock_irqsave)(&ac->lock);
710
port = &ac->port[SNDRV_PCM_STREAM_CAPTURE];
711
if (!port->buf) {
712
ret = 0;
713
goto done;
714
}
715
716
phys = port->buf[hdr->token].phys;
717
atomic_set(&port->hw_ptr, hdr->token + 1);
718
719
if (upper_32_bits(phys) != done->buf_addr_msw ||
720
lower_32_bits(phys) != done->buf_addr_lsw) {
721
dev_err(ac->dev, "Expected addr %pa %08x-%08x\n",
722
&port->buf[hdr->token].phys,
723
done->buf_addr_lsw,
724
done->buf_addr_msw);
725
ret = -EINVAL;
726
goto done;
727
}
728
}
729
730
break;
731
case ASM_DATA_EVENT_RENDERED_EOS:
732
client_event = ASM_CLIENT_EVENT_CMD_EOS_DONE;
733
break;
734
}
735
736
if (ac->cb)
737
ac->cb(client_event, hdr->token, data->payload, ac->priv);
738
739
done:
740
kref_put(&ac->refcount, q6asm_audio_client_release);
741
return ret;
742
}
743
744
static int q6asm_srvc_callback(struct apr_device *adev,
745
const struct apr_resp_pkt *data)
746
{
747
struct q6asm *q6asm = dev_get_drvdata(&adev->dev);
748
struct aprv2_ibasic_rsp_result_t *result;
749
struct audio_port_data *port;
750
struct audio_client *ac = NULL;
751
const struct apr_hdr *hdr = &data->hdr;
752
struct q6asm *a;
753
uint32_t sid = 0;
754
uint32_t dir = 0;
755
int session_id;
756
757
session_id = (hdr->dest_port >> 8) & 0xFF;
758
if (session_id)
759
return q6asm_stream_callback(adev, data, session_id);
760
761
sid = (hdr->token >> 8) & 0x0F;
762
ac = q6asm_get_audio_client(q6asm, sid);
763
if (!ac) {
764
dev_err(&adev->dev, "Audio Client not active\n");
765
return 0;
766
}
767
768
a = dev_get_drvdata(ac->dev->parent);
769
dir = (hdr->token & 0x0F);
770
port = &ac->port[dir];
771
result = data->payload;
772
773
switch (hdr->opcode) {
774
case APR_BASIC_RSP_RESULT:
775
switch (result->opcode) {
776
case ASM_CMD_SHARED_MEM_MAP_REGIONS:
777
case ASM_CMD_SHARED_MEM_UNMAP_REGIONS:
778
ac->result = *result;
779
wake_up(&a->mem_wait);
780
break;
781
default:
782
dev_err(&adev->dev, "command[0x%x] not expecting rsp\n",
783
result->opcode);
784
break;
785
}
786
goto done;
787
case ASM_CMDRSP_SHARED_MEM_MAP_REGIONS:
788
ac->result.status = 0;
789
ac->result.opcode = hdr->opcode;
790
port->mem_map_handle = result->opcode;
791
wake_up(&a->mem_wait);
792
break;
793
case ASM_CMD_SHARED_MEM_UNMAP_REGIONS:
794
ac->result.opcode = hdr->opcode;
795
ac->result.status = 0;
796
port->mem_map_handle = 0;
797
wake_up(&a->mem_wait);
798
break;
799
default:
800
dev_dbg(&adev->dev, "command[0x%x]success [0x%x]\n",
801
result->opcode, result->status);
802
break;
803
}
804
805
if (ac->cb)
806
ac->cb(hdr->opcode, hdr->token, data->payload, ac->priv);
807
808
done:
809
kref_put(&ac->refcount, q6asm_audio_client_release);
810
811
return 0;
812
}
813
814
/**
815
* q6asm_get_session_id() - get session id for audio client
816
*
817
* @c: audio client pointer
818
*
819
* Return: Will be an session id of the audio client.
820
*/
821
int q6asm_get_session_id(struct audio_client *c)
822
{
823
return c->session;
824
}
825
EXPORT_SYMBOL_GPL(q6asm_get_session_id);
826
827
/**
828
* q6asm_audio_client_alloc() - Allocate a new audio client
829
*
830
* @dev: Pointer to asm child device.
831
* @cb: event callback.
832
* @priv: private data associated with this client.
833
* @session_id: session id
834
* @perf_mode: performace mode for this client
835
*
836
* Return: Will be an error pointer on error or a valid audio client
837
* on success.
838
*/
839
struct audio_client *q6asm_audio_client_alloc(struct device *dev, q6asm_cb cb,
840
void *priv, int session_id,
841
int perf_mode)
842
{
843
struct q6asm *a = dev_get_drvdata(dev->parent);
844
struct audio_client *ac;
845
unsigned long flags;
846
847
ac = q6asm_get_audio_client(a, session_id + 1);
848
if (ac) {
849
dev_err(dev, "Audio Client already active\n");
850
return ac;
851
}
852
853
ac = kzalloc(sizeof(*ac), GFP_KERNEL);
854
if (!ac)
855
return ERR_PTR(-ENOMEM);
856
857
spin_lock_irqsave(&a->slock, flags);
858
a->session[session_id + 1] = ac;
859
spin_unlock_irqrestore(&a->slock, flags);
860
ac->session = session_id + 1;
861
ac->cb = cb;
862
ac->dev = dev;
863
ac->q6asm = a;
864
ac->priv = priv;
865
ac->io_mode = ASM_SYNC_IO_MODE;
866
ac->perf_mode = perf_mode;
867
ac->adev = a->adev;
868
kref_init(&ac->refcount);
869
870
init_waitqueue_head(&ac->cmd_wait);
871
mutex_init(&ac->cmd_lock);
872
spin_lock_init(&ac->lock);
873
874
return ac;
875
}
876
EXPORT_SYMBOL_GPL(q6asm_audio_client_alloc);
877
878
static int q6asm_ac_send_cmd_sync(struct audio_client *ac, struct apr_pkt *pkt)
879
{
880
struct apr_hdr *hdr = &pkt->hdr;
881
int rc;
882
883
mutex_lock(&ac->cmd_lock);
884
ac->result.opcode = 0;
885
ac->result.status = 0;
886
887
rc = apr_send_pkt(ac->adev, pkt);
888
if (rc < 0)
889
goto err;
890
891
rc = wait_event_timeout(ac->cmd_wait,
892
(ac->result.opcode == hdr->opcode), 5 * HZ);
893
if (!rc) {
894
dev_err(ac->dev, "CMD %x timeout\n", hdr->opcode);
895
rc = -ETIMEDOUT;
896
goto err;
897
}
898
899
if (ac->result.status > 0) {
900
dev_err(ac->dev, "DSP returned error[%x]\n",
901
ac->result.status);
902
rc = -EINVAL;
903
} else {
904
rc = 0;
905
}
906
907
908
err:
909
mutex_unlock(&ac->cmd_lock);
910
return rc;
911
}
912
913
/**
914
* q6asm_open_write() - Open audio client for writing
915
* @ac: audio client pointer
916
* @stream_id: stream id of q6asm session
917
* @format: audio sample format
918
* @codec_profile: compressed format profile
919
* @bits_per_sample: bits per sample
920
* @is_gapless: flag to indicate if this is a gapless stream
921
*
922
* Return: Will be an negative value on error or zero on success
923
*/
924
int q6asm_open_write(struct audio_client *ac, uint32_t stream_id,
925
uint32_t format, u32 codec_profile,
926
uint16_t bits_per_sample, bool is_gapless)
927
{
928
struct asm_stream_cmd_open_write_v3 *open;
929
struct apr_pkt *pkt;
930
int rc, pkt_size = APR_HDR_SIZE + sizeof(*open);
931
932
void *p __free(kfree) = kzalloc(pkt_size, GFP_KERNEL);
933
if (!p)
934
return -ENOMEM;
935
936
pkt = p;
937
open = p + APR_HDR_SIZE;
938
q6asm_add_hdr(ac, &pkt->hdr, pkt_size, true, stream_id);
939
940
pkt->hdr.opcode = ASM_STREAM_CMD_OPEN_WRITE_V3;
941
open->mode_flags = 0x00;
942
open->mode_flags |= ASM_LEGACY_STREAM_SESSION;
943
if (is_gapless)
944
open->mode_flags |= BIT(ASM_SHIFT_GAPLESS_MODE_FLAG);
945
946
/* source endpoint : matrix */
947
open->sink_endpointype = ASM_END_POINT_DEVICE_MATRIX;
948
open->bits_per_sample = bits_per_sample;
949
open->postprocopo_id = ASM_NULL_POPP_TOPOLOGY;
950
951
switch (format) {
952
case SND_AUDIOCODEC_MP3:
953
open->dec_fmt_id = ASM_MEDIA_FMT_MP3;
954
break;
955
case FORMAT_LINEAR_PCM:
956
open->dec_fmt_id = ASM_MEDIA_FMT_MULTI_CHANNEL_PCM_V2;
957
break;
958
case SND_AUDIOCODEC_FLAC:
959
open->dec_fmt_id = ASM_MEDIA_FMT_FLAC;
960
break;
961
case SND_AUDIOCODEC_WMA:
962
switch (codec_profile) {
963
case SND_AUDIOPROFILE_WMA9:
964
open->dec_fmt_id = ASM_MEDIA_FMT_WMA_V9;
965
break;
966
case SND_AUDIOPROFILE_WMA10:
967
case SND_AUDIOPROFILE_WMA9_PRO:
968
case SND_AUDIOPROFILE_WMA9_LOSSLESS:
969
case SND_AUDIOPROFILE_WMA10_LOSSLESS:
970
open->dec_fmt_id = ASM_MEDIA_FMT_WMA_V10;
971
break;
972
default:
973
dev_err(ac->dev, "Invalid codec profile 0x%x\n",
974
codec_profile);
975
rc = -EINVAL;
976
goto err;
977
}
978
break;
979
case SND_AUDIOCODEC_ALAC:
980
open->dec_fmt_id = ASM_MEDIA_FMT_ALAC;
981
break;
982
case SND_AUDIOCODEC_APE:
983
open->dec_fmt_id = ASM_MEDIA_FMT_APE;
984
break;
985
default:
986
dev_err(ac->dev, "Invalid format 0x%x\n", format);
987
rc = -EINVAL;
988
goto err;
989
}
990
991
rc = q6asm_ac_send_cmd_sync(ac, pkt);
992
if (rc < 0)
993
goto err;
994
995
ac->io_mode |= ASM_TUN_WRITE_IO_MODE;
996
997
err:
998
return rc;
999
}
1000
EXPORT_SYMBOL_GPL(q6asm_open_write);
1001
1002
static int __q6asm_run(struct audio_client *ac, uint32_t stream_id,
1003
uint32_t flags, uint32_t msw_ts, uint32_t lsw_ts,
1004
bool wait)
1005
{
1006
struct asm_session_cmd_run_v2 *run;
1007
struct apr_pkt *pkt;
1008
int rc, pkt_size = APR_HDR_SIZE + sizeof(*run);
1009
1010
void *p __free(kfree) = kzalloc(pkt_size, GFP_ATOMIC);
1011
if (!p)
1012
return -ENOMEM;
1013
1014
pkt = p;
1015
run = p + APR_HDR_SIZE;
1016
1017
q6asm_add_hdr(ac, &pkt->hdr, pkt_size, true, stream_id);
1018
1019
pkt->hdr.opcode = ASM_SESSION_CMD_RUN_V2;
1020
run->flags = flags;
1021
run->time_lsw = lsw_ts;
1022
run->time_msw = msw_ts;
1023
if (wait) {
1024
rc = q6asm_ac_send_cmd_sync(ac, pkt);
1025
} else {
1026
rc = apr_send_pkt(ac->adev, pkt);
1027
if (rc == pkt_size)
1028
rc = 0;
1029
}
1030
1031
return rc;
1032
}
1033
1034
/**
1035
* q6asm_run() - start the audio client
1036
*
1037
* @ac: audio client pointer
1038
* @stream_id: stream id of q6asm session
1039
* @flags: flags associated with write
1040
* @msw_ts: timestamp msw
1041
* @lsw_ts: timestamp lsw
1042
*
1043
* Return: Will be an negative value on error or zero on success
1044
*/
1045
int q6asm_run(struct audio_client *ac, uint32_t stream_id, uint32_t flags,
1046
uint32_t msw_ts, uint32_t lsw_ts)
1047
{
1048
return __q6asm_run(ac, stream_id, flags, msw_ts, lsw_ts, true);
1049
}
1050
EXPORT_SYMBOL_GPL(q6asm_run);
1051
1052
/**
1053
* q6asm_run_nowait() - start the audio client withou blocking
1054
*
1055
* @ac: audio client pointer
1056
* @stream_id: stream id
1057
* @flags: flags associated with write
1058
* @msw_ts: timestamp msw
1059
* @lsw_ts: timestamp lsw
1060
*
1061
* Return: Will be an negative value on error or zero on success
1062
*/
1063
int q6asm_run_nowait(struct audio_client *ac, uint32_t stream_id,
1064
uint32_t flags, uint32_t msw_ts, uint32_t lsw_ts)
1065
{
1066
return __q6asm_run(ac, stream_id, flags, msw_ts, lsw_ts, false);
1067
}
1068
EXPORT_SYMBOL_GPL(q6asm_run_nowait);
1069
1070
/**
1071
* q6asm_media_format_block_multi_ch_pcm() - setup pcm configuration
1072
*
1073
* @ac: audio client pointer
1074
* @stream_id: stream id
1075
* @rate: audio sample rate
1076
* @channels: number of audio channels.
1077
* @channel_map: channel map pointer
1078
* @bits_per_sample: bits per sample
1079
*
1080
* Return: Will be an negative value on error or zero on success
1081
*/
1082
int q6asm_media_format_block_multi_ch_pcm(struct audio_client *ac,
1083
uint32_t stream_id,
1084
uint32_t rate, uint32_t channels,
1085
u8 channel_map[PCM_MAX_NUM_CHANNEL],
1086
uint16_t bits_per_sample)
1087
{
1088
struct asm_multi_channel_pcm_fmt_blk_v2 *fmt;
1089
struct apr_pkt *pkt;
1090
u8 *channel_mapping;
1091
int pkt_size = APR_HDR_SIZE + sizeof(*fmt);
1092
1093
void *p __free(kfree) = kzalloc(pkt_size, GFP_KERNEL);
1094
if (!p)
1095
return -ENOMEM;
1096
1097
pkt = p;
1098
fmt = p + APR_HDR_SIZE;
1099
1100
q6asm_add_hdr(ac, &pkt->hdr, pkt_size, true, stream_id);
1101
1102
pkt->hdr.opcode = ASM_DATA_CMD_MEDIA_FMT_UPDATE_V2;
1103
fmt->fmt_blk.fmt_blk_size = sizeof(*fmt) - sizeof(fmt->fmt_blk);
1104
fmt->num_channels = channels;
1105
fmt->bits_per_sample = bits_per_sample;
1106
fmt->sample_rate = rate;
1107
fmt->is_signed = 1;
1108
1109
channel_mapping = fmt->channel_mapping;
1110
1111
if (channel_map) {
1112
memcpy(channel_mapping, channel_map, PCM_MAX_NUM_CHANNEL);
1113
} else {
1114
if (q6dsp_map_channels(channel_mapping, channels)) {
1115
dev_err(ac->dev, " map channels failed %d\n", channels);
1116
return -EINVAL;
1117
}
1118
}
1119
1120
return q6asm_ac_send_cmd_sync(ac, pkt);
1121
}
1122
EXPORT_SYMBOL_GPL(q6asm_media_format_block_multi_ch_pcm);
1123
1124
int q6asm_stream_media_format_block_flac(struct audio_client *ac,
1125
uint32_t stream_id,
1126
struct q6asm_flac_cfg *cfg)
1127
{
1128
struct asm_flac_fmt_blk_v2 *fmt;
1129
struct apr_pkt *pkt;
1130
int pkt_size = APR_HDR_SIZE + sizeof(*fmt);
1131
1132
void *p __free(kfree) = kzalloc(pkt_size, GFP_KERNEL);
1133
if (!p)
1134
return -ENOMEM;
1135
1136
pkt = p;
1137
fmt = p + APR_HDR_SIZE;
1138
1139
q6asm_add_hdr(ac, &pkt->hdr, pkt_size, true, stream_id);
1140
1141
pkt->hdr.opcode = ASM_DATA_CMD_MEDIA_FMT_UPDATE_V2;
1142
fmt->fmt_blk.fmt_blk_size = sizeof(*fmt) - sizeof(fmt->fmt_blk);
1143
fmt->is_stream_info_present = cfg->stream_info_present;
1144
fmt->num_channels = cfg->ch_cfg;
1145
fmt->min_blk_size = cfg->min_blk_size;
1146
fmt->max_blk_size = cfg->max_blk_size;
1147
fmt->sample_rate = cfg->sample_rate;
1148
fmt->min_frame_size = cfg->min_frame_size;
1149
fmt->max_frame_size = cfg->max_frame_size;
1150
fmt->sample_size = cfg->sample_size;
1151
1152
return q6asm_ac_send_cmd_sync(ac, pkt);
1153
}
1154
EXPORT_SYMBOL_GPL(q6asm_stream_media_format_block_flac);
1155
1156
int q6asm_stream_media_format_block_wma_v9(struct audio_client *ac,
1157
uint32_t stream_id,
1158
struct q6asm_wma_cfg *cfg)
1159
{
1160
struct asm_wmastdv9_fmt_blk_v2 *fmt;
1161
struct apr_pkt *pkt;
1162
int pkt_size = APR_HDR_SIZE + sizeof(*fmt);
1163
1164
void *p __free(kfree) = kzalloc(pkt_size, GFP_KERNEL);
1165
if (!p)
1166
return -ENOMEM;
1167
1168
pkt = p;
1169
fmt = p + APR_HDR_SIZE;
1170
1171
q6asm_add_hdr(ac, &pkt->hdr, pkt_size, true, stream_id);
1172
1173
pkt->hdr.opcode = ASM_DATA_CMD_MEDIA_FMT_UPDATE_V2;
1174
fmt->fmt_blk.fmt_blk_size = sizeof(*fmt) - sizeof(fmt->fmt_blk);
1175
fmt->fmtag = cfg->fmtag;
1176
fmt->num_channels = cfg->num_channels;
1177
fmt->sample_rate = cfg->sample_rate;
1178
fmt->bytes_per_sec = cfg->bytes_per_sec;
1179
fmt->blk_align = cfg->block_align;
1180
fmt->bits_per_sample = cfg->bits_per_sample;
1181
fmt->channel_mask = cfg->channel_mask;
1182
fmt->enc_options = cfg->enc_options;
1183
fmt->reserved = 0;
1184
1185
return q6asm_ac_send_cmd_sync(ac, pkt);
1186
}
1187
EXPORT_SYMBOL_GPL(q6asm_stream_media_format_block_wma_v9);
1188
1189
int q6asm_stream_media_format_block_wma_v10(struct audio_client *ac,
1190
uint32_t stream_id,
1191
struct q6asm_wma_cfg *cfg)
1192
{
1193
struct asm_wmaprov10_fmt_blk_v2 *fmt;
1194
struct apr_pkt *pkt;
1195
int pkt_size = APR_HDR_SIZE + sizeof(*fmt);
1196
1197
void *p __free(kfree) = kzalloc(pkt_size, GFP_KERNEL);
1198
if (!p)
1199
return -ENOMEM;
1200
1201
pkt = p;
1202
fmt = p + APR_HDR_SIZE;
1203
1204
q6asm_add_hdr(ac, &pkt->hdr, pkt_size, true, stream_id);
1205
1206
pkt->hdr.opcode = ASM_DATA_CMD_MEDIA_FMT_UPDATE_V2;
1207
fmt->fmt_blk.fmt_blk_size = sizeof(*fmt) - sizeof(fmt->fmt_blk);
1208
fmt->fmtag = cfg->fmtag;
1209
fmt->num_channels = cfg->num_channels;
1210
fmt->sample_rate = cfg->sample_rate;
1211
fmt->bytes_per_sec = cfg->bytes_per_sec;
1212
fmt->blk_align = cfg->block_align;
1213
fmt->bits_per_sample = cfg->bits_per_sample;
1214
fmt->channel_mask = cfg->channel_mask;
1215
fmt->enc_options = cfg->enc_options;
1216
fmt->advanced_enc_options1 = cfg->adv_enc_options;
1217
fmt->advanced_enc_options2 = cfg->adv_enc_options2;
1218
1219
return q6asm_ac_send_cmd_sync(ac, pkt);
1220
}
1221
EXPORT_SYMBOL_GPL(q6asm_stream_media_format_block_wma_v10);
1222
1223
int q6asm_stream_media_format_block_alac(struct audio_client *ac,
1224
uint32_t stream_id,
1225
struct q6asm_alac_cfg *cfg)
1226
{
1227
struct asm_alac_fmt_blk_v2 *fmt;
1228
struct apr_pkt *pkt;
1229
int pkt_size = APR_HDR_SIZE + sizeof(*fmt);
1230
1231
void *p __free(kfree) = kzalloc(pkt_size, GFP_KERNEL);
1232
if (!p)
1233
return -ENOMEM;
1234
1235
pkt = p;
1236
fmt = p + APR_HDR_SIZE;
1237
1238
q6asm_add_hdr(ac, &pkt->hdr, pkt_size, true, stream_id);
1239
1240
pkt->hdr.opcode = ASM_DATA_CMD_MEDIA_FMT_UPDATE_V2;
1241
fmt->fmt_blk.fmt_blk_size = sizeof(*fmt) - sizeof(fmt->fmt_blk);
1242
1243
fmt->frame_length = cfg->frame_length;
1244
fmt->compatible_version = cfg->compatible_version;
1245
fmt->bit_depth = cfg->bit_depth;
1246
fmt->num_channels = cfg->num_channels;
1247
fmt->max_run = cfg->max_run;
1248
fmt->max_frame_bytes = cfg->max_frame_bytes;
1249
fmt->avg_bit_rate = cfg->avg_bit_rate;
1250
fmt->sample_rate = cfg->sample_rate;
1251
fmt->channel_layout_tag = cfg->channel_layout_tag;
1252
fmt->pb = cfg->pb;
1253
fmt->mb = cfg->mb;
1254
fmt->kb = cfg->kb;
1255
1256
return q6asm_ac_send_cmd_sync(ac, pkt);
1257
}
1258
EXPORT_SYMBOL_GPL(q6asm_stream_media_format_block_alac);
1259
1260
int q6asm_stream_media_format_block_ape(struct audio_client *ac,
1261
uint32_t stream_id,
1262
struct q6asm_ape_cfg *cfg)
1263
{
1264
struct asm_ape_fmt_blk_v2 *fmt;
1265
struct apr_pkt *pkt;
1266
int pkt_size = APR_HDR_SIZE + sizeof(*fmt);
1267
1268
void *p __free(kfree) = kzalloc(pkt_size, GFP_KERNEL);
1269
if (!p)
1270
return -ENOMEM;
1271
1272
pkt = p;
1273
fmt = p + APR_HDR_SIZE;
1274
1275
q6asm_add_hdr(ac, &pkt->hdr, pkt_size, true, stream_id);
1276
1277
pkt->hdr.opcode = ASM_DATA_CMD_MEDIA_FMT_UPDATE_V2;
1278
fmt->fmt_blk.fmt_blk_size = sizeof(*fmt) - sizeof(fmt->fmt_blk);
1279
1280
fmt->compatible_version = cfg->compatible_version;
1281
fmt->compression_level = cfg->compression_level;
1282
fmt->format_flags = cfg->format_flags;
1283
fmt->blocks_per_frame = cfg->blocks_per_frame;
1284
fmt->final_frame_blocks = cfg->final_frame_blocks;
1285
fmt->total_frames = cfg->total_frames;
1286
fmt->bits_per_sample = cfg->bits_per_sample;
1287
fmt->num_channels = cfg->num_channels;
1288
fmt->sample_rate = cfg->sample_rate;
1289
fmt->seek_table_present = cfg->seek_table_present;
1290
1291
return q6asm_ac_send_cmd_sync(ac, pkt);
1292
}
1293
EXPORT_SYMBOL_GPL(q6asm_stream_media_format_block_ape);
1294
1295
static int q6asm_stream_remove_silence(struct audio_client *ac, uint32_t stream_id,
1296
uint32_t cmd,
1297
uint32_t num_samples)
1298
{
1299
uint32_t *samples;
1300
struct apr_pkt *pkt;
1301
int rc, pkt_size = APR_HDR_SIZE + sizeof(uint32_t);
1302
1303
void *p __free(kfree) = kzalloc(pkt_size, GFP_ATOMIC);
1304
if (!p)
1305
return -ENOMEM;
1306
1307
pkt = p;
1308
samples = p + APR_HDR_SIZE;
1309
1310
q6asm_add_hdr(ac, &pkt->hdr, pkt_size, true, stream_id);
1311
1312
pkt->hdr.opcode = cmd;
1313
*samples = num_samples;
1314
rc = apr_send_pkt(ac->adev, pkt);
1315
if (rc == pkt_size)
1316
rc = 0;
1317
1318
return rc;
1319
}
1320
1321
int q6asm_stream_remove_initial_silence(struct audio_client *ac,
1322
uint32_t stream_id,
1323
uint32_t initial_samples)
1324
{
1325
return q6asm_stream_remove_silence(ac, stream_id,
1326
ASM_DATA_CMD_REMOVE_INITIAL_SILENCE,
1327
initial_samples);
1328
}
1329
EXPORT_SYMBOL_GPL(q6asm_stream_remove_initial_silence);
1330
1331
int q6asm_stream_remove_trailing_silence(struct audio_client *ac, uint32_t stream_id,
1332
uint32_t trailing_samples)
1333
{
1334
return q6asm_stream_remove_silence(ac, stream_id,
1335
ASM_DATA_CMD_REMOVE_TRAILING_SILENCE,
1336
trailing_samples);
1337
}
1338
EXPORT_SYMBOL_GPL(q6asm_stream_remove_trailing_silence);
1339
1340
/**
1341
* q6asm_enc_cfg_blk_pcm_format_support() - setup pcm configuration for capture
1342
*
1343
* @ac: audio client pointer
1344
* @stream_id: stream id
1345
* @rate: audio sample rate
1346
* @channels: number of audio channels.
1347
* @bits_per_sample: bits per sample
1348
*
1349
* Return: Will be an negative value on error or zero on success
1350
*/
1351
int q6asm_enc_cfg_blk_pcm_format_support(struct audio_client *ac,
1352
uint32_t stream_id, uint32_t rate,
1353
uint32_t channels,
1354
uint16_t bits_per_sample)
1355
{
1356
struct asm_multi_channel_pcm_enc_cfg_v2 *enc_cfg;
1357
struct apr_pkt *pkt;
1358
u8 *channel_mapping;
1359
u32 frames_per_buf = 0;
1360
int pkt_size = APR_HDR_SIZE + sizeof(*enc_cfg);
1361
1362
void *p __free(kfree) = kzalloc(pkt_size, GFP_KERNEL);
1363
if (!p)
1364
return -ENOMEM;
1365
1366
pkt = p;
1367
enc_cfg = p + APR_HDR_SIZE;
1368
q6asm_add_hdr(ac, &pkt->hdr, pkt_size, true, stream_id);
1369
1370
pkt->hdr.opcode = ASM_STREAM_CMD_SET_ENCDEC_PARAM;
1371
enc_cfg->encdec.param_id = ASM_PARAM_ID_ENCDEC_ENC_CFG_BLK_V2;
1372
enc_cfg->encdec.param_size = sizeof(*enc_cfg) - sizeof(enc_cfg->encdec);
1373
enc_cfg->encblk.frames_per_buf = frames_per_buf;
1374
enc_cfg->encblk.enc_cfg_blk_size = enc_cfg->encdec.param_size -
1375
sizeof(struct asm_enc_cfg_blk_param_v2);
1376
1377
enc_cfg->num_channels = channels;
1378
enc_cfg->bits_per_sample = bits_per_sample;
1379
enc_cfg->sample_rate = rate;
1380
enc_cfg->is_signed = 1;
1381
channel_mapping = enc_cfg->channel_mapping;
1382
1383
if (q6dsp_map_channels(channel_mapping, channels))
1384
return -EINVAL;
1385
1386
return q6asm_ac_send_cmd_sync(ac, pkt);
1387
}
1388
EXPORT_SYMBOL_GPL(q6asm_enc_cfg_blk_pcm_format_support);
1389
1390
1391
/**
1392
* q6asm_read() - read data of period size from audio client
1393
*
1394
* @ac: audio client pointer
1395
* @stream_id: stream id
1396
*
1397
* Return: Will be an negative value on error or zero on success
1398
*/
1399
int q6asm_read(struct audio_client *ac, uint32_t stream_id)
1400
{
1401
struct asm_data_cmd_read_v2 *read;
1402
struct audio_port_data *port;
1403
struct audio_buffer *ab;
1404
struct apr_pkt *pkt;
1405
unsigned long flags;
1406
int pkt_size = APR_HDR_SIZE + sizeof(*read);
1407
int rc = 0;
1408
1409
void *p __free(kfree) = kzalloc(pkt_size, GFP_ATOMIC);
1410
if (!p)
1411
return -ENOMEM;
1412
1413
pkt = p;
1414
read = p + APR_HDR_SIZE;
1415
1416
spin_lock_irqsave(&ac->lock, flags);
1417
port = &ac->port[SNDRV_PCM_STREAM_CAPTURE];
1418
q6asm_add_hdr(ac, &pkt->hdr, pkt_size, false, stream_id);
1419
ab = &port->buf[port->dsp_buf];
1420
pkt->hdr.opcode = ASM_DATA_CMD_READ_V2;
1421
read->buf_addr_lsw = lower_32_bits(ab->phys);
1422
read->buf_addr_msw = upper_32_bits(ab->phys);
1423
read->mem_map_handle = port->mem_map_handle;
1424
1425
read->buf_size = ab->size;
1426
read->seq_id = port->dsp_buf;
1427
pkt->hdr.token = port->dsp_buf;
1428
1429
port->dsp_buf++;
1430
1431
if (port->dsp_buf >= port->num_periods)
1432
port->dsp_buf = 0;
1433
1434
spin_unlock_irqrestore(&ac->lock, flags);
1435
rc = apr_send_pkt(ac->adev, pkt);
1436
if (rc == pkt_size)
1437
rc = 0;
1438
else
1439
pr_err("read op[0x%x]rc[%d]\n", pkt->hdr.opcode, rc);
1440
1441
return rc;
1442
}
1443
EXPORT_SYMBOL_GPL(q6asm_read);
1444
1445
static int __q6asm_open_read(struct audio_client *ac, uint32_t stream_id,
1446
uint32_t format, uint16_t bits_per_sample)
1447
{
1448
struct asm_stream_cmd_open_read_v3 *open;
1449
struct apr_pkt *pkt;
1450
int pkt_size = APR_HDR_SIZE + sizeof(*open);
1451
1452
void *p __free(kfree) = kzalloc(pkt_size, GFP_KERNEL);
1453
if (!p)
1454
return -ENOMEM;
1455
1456
pkt = p;
1457
open = p + APR_HDR_SIZE;
1458
1459
q6asm_add_hdr(ac, &pkt->hdr, pkt_size, true, stream_id);
1460
pkt->hdr.opcode = ASM_STREAM_CMD_OPEN_READ_V3;
1461
/* Stream prio : High, provide meta info with encoded frames */
1462
open->src_endpointype = ASM_END_POINT_DEVICE_MATRIX;
1463
1464
open->preprocopo_id = ASM_STREAM_POSTPROC_TOPO_ID_NONE;
1465
open->bits_per_sample = bits_per_sample;
1466
open->mode_flags = 0x0;
1467
1468
open->mode_flags |= ASM_LEGACY_STREAM_SESSION <<
1469
ASM_SHIFT_STREAM_PERF_MODE_FLAG_IN_OPEN_READ;
1470
1471
switch (format) {
1472
case FORMAT_LINEAR_PCM:
1473
open->mode_flags |= 0x00;
1474
open->enc_cfg_id = ASM_MEDIA_FMT_MULTI_CHANNEL_PCM_V2;
1475
break;
1476
default:
1477
pr_err("Invalid format[%d]\n", format);
1478
}
1479
1480
return q6asm_ac_send_cmd_sync(ac, pkt);
1481
}
1482
1483
/**
1484
* q6asm_open_read() - Open audio client for reading
1485
*
1486
* @ac: audio client pointer
1487
* @stream_id: stream id
1488
* @format: audio sample format
1489
* @bits_per_sample: bits per sample
1490
*
1491
* Return: Will be an negative value on error or zero on success
1492
*/
1493
int q6asm_open_read(struct audio_client *ac, uint32_t stream_id,
1494
uint32_t format, uint16_t bits_per_sample)
1495
{
1496
return __q6asm_open_read(ac, stream_id, format, bits_per_sample);
1497
}
1498
EXPORT_SYMBOL_GPL(q6asm_open_read);
1499
1500
/**
1501
* q6asm_write_async() - non blocking write
1502
*
1503
* @ac: audio client pointer
1504
* @stream_id: stream id
1505
* @len: length in bytes
1506
* @msw_ts: timestamp msw
1507
* @lsw_ts: timestamp lsw
1508
* @wflags: flags associated with write
1509
*
1510
* Return: Will be an negative value on error or zero on success
1511
*/
1512
int q6asm_write_async(struct audio_client *ac, uint32_t stream_id, uint32_t len,
1513
uint32_t msw_ts, uint32_t lsw_ts, uint32_t wflags)
1514
{
1515
struct asm_data_cmd_write_v2 *write;
1516
struct audio_port_data *port;
1517
struct audio_buffer *ab;
1518
unsigned long flags;
1519
struct apr_pkt *pkt;
1520
int pkt_size = APR_HDR_SIZE + sizeof(*write);
1521
int rc = 0;
1522
1523
void *p __free(kfree) = kzalloc(pkt_size, GFP_ATOMIC);
1524
if (!p)
1525
return -ENOMEM;
1526
1527
pkt = p;
1528
write = p + APR_HDR_SIZE;
1529
1530
spin_lock_irqsave(&ac->lock, flags);
1531
port = &ac->port[SNDRV_PCM_STREAM_PLAYBACK];
1532
q6asm_add_hdr(ac, &pkt->hdr, pkt_size, false, stream_id);
1533
1534
ab = &port->buf[port->dsp_buf];
1535
pkt->hdr.token = port->dsp_buf | (len << ASM_WRITE_TOKEN_LEN_SHIFT);
1536
pkt->hdr.opcode = ASM_DATA_CMD_WRITE_V2;
1537
write->buf_addr_lsw = lower_32_bits(ab->phys);
1538
write->buf_addr_msw = upper_32_bits(ab->phys);
1539
write->buf_size = len;
1540
write->seq_id = port->dsp_buf;
1541
write->timestamp_lsw = lsw_ts;
1542
write->timestamp_msw = msw_ts;
1543
write->mem_map_handle =
1544
ac->port[SNDRV_PCM_STREAM_PLAYBACK].mem_map_handle;
1545
1546
write->flags = wflags;
1547
1548
port->dsp_buf++;
1549
1550
if (port->dsp_buf >= port->num_periods)
1551
port->dsp_buf = 0;
1552
1553
spin_unlock_irqrestore(&ac->lock, flags);
1554
rc = apr_send_pkt(ac->adev, pkt);
1555
if (rc == pkt_size)
1556
rc = 0;
1557
1558
return rc;
1559
}
1560
EXPORT_SYMBOL_GPL(q6asm_write_async);
1561
1562
static void q6asm_reset_buf_state(struct audio_client *ac)
1563
{
1564
struct audio_port_data *port;
1565
1566
guard(spinlock_irqsave)(&ac->lock);
1567
port = &ac->port[SNDRV_PCM_STREAM_PLAYBACK];
1568
port->dsp_buf = 0;
1569
port = &ac->port[SNDRV_PCM_STREAM_CAPTURE];
1570
port->dsp_buf = 0;
1571
}
1572
1573
static int __q6asm_cmd(struct audio_client *ac, uint32_t stream_id, int cmd,
1574
bool wait)
1575
{
1576
struct apr_pkt pkt;
1577
int rc;
1578
1579
q6asm_add_hdr(ac, &pkt.hdr, APR_HDR_SIZE, true, stream_id);
1580
1581
switch (cmd) {
1582
case CMD_PAUSE:
1583
pkt.hdr.opcode = ASM_SESSION_CMD_PAUSE;
1584
break;
1585
case CMD_SUSPEND:
1586
pkt.hdr.opcode = ASM_SESSION_CMD_SUSPEND;
1587
break;
1588
case CMD_FLUSH:
1589
pkt.hdr.opcode = ASM_STREAM_CMD_FLUSH;
1590
break;
1591
case CMD_OUT_FLUSH:
1592
pkt.hdr.opcode = ASM_STREAM_CMD_FLUSH_READBUFS;
1593
break;
1594
case CMD_EOS:
1595
pkt.hdr.opcode = ASM_DATA_CMD_EOS;
1596
break;
1597
case CMD_CLOSE:
1598
pkt.hdr.opcode = ASM_STREAM_CMD_CLOSE;
1599
break;
1600
default:
1601
return -EINVAL;
1602
}
1603
1604
if (wait)
1605
rc = q6asm_ac_send_cmd_sync(ac, &pkt);
1606
else
1607
return apr_send_pkt(ac->adev, &pkt);
1608
1609
if (rc < 0)
1610
return rc;
1611
1612
if (cmd == CMD_FLUSH)
1613
q6asm_reset_buf_state(ac);
1614
1615
return 0;
1616
}
1617
1618
/**
1619
* q6asm_cmd() - run cmd on audio client
1620
*
1621
* @ac: audio client pointer
1622
* @stream_id: stream id
1623
* @cmd: command to run on audio client.
1624
*
1625
* Return: Will be an negative value on error or zero on success
1626
*/
1627
int q6asm_cmd(struct audio_client *ac, uint32_t stream_id, int cmd)
1628
{
1629
return __q6asm_cmd(ac, stream_id, cmd, true);
1630
}
1631
EXPORT_SYMBOL_GPL(q6asm_cmd);
1632
1633
/**
1634
* q6asm_cmd_nowait() - non blocking, run cmd on audio client
1635
*
1636
* @ac: audio client pointer
1637
* @stream_id: stream id
1638
* @cmd: command to run on audio client.
1639
*
1640
* Return: Will be an negative value on error or zero on success
1641
*/
1642
int q6asm_cmd_nowait(struct audio_client *ac, uint32_t stream_id, int cmd)
1643
{
1644
return __q6asm_cmd(ac, stream_id, cmd, false);
1645
}
1646
EXPORT_SYMBOL_GPL(q6asm_cmd_nowait);
1647
1648
static int q6asm_probe(struct apr_device *adev)
1649
{
1650
struct device *dev = &adev->dev;
1651
struct q6asm *q6asm;
1652
1653
q6asm = devm_kzalloc(dev, sizeof(*q6asm), GFP_KERNEL);
1654
if (!q6asm)
1655
return -ENOMEM;
1656
1657
q6core_get_svc_api_info(adev->svc_id, &q6asm->ainfo);
1658
1659
q6asm->dev = dev;
1660
q6asm->adev = adev;
1661
init_waitqueue_head(&q6asm->mem_wait);
1662
spin_lock_init(&q6asm->slock);
1663
dev_set_drvdata(dev, q6asm);
1664
1665
return devm_of_platform_populate(dev);
1666
}
1667
1668
#ifdef CONFIG_OF
1669
static const struct of_device_id q6asm_device_id[] = {
1670
{ .compatible = "qcom,q6asm" },
1671
{},
1672
};
1673
MODULE_DEVICE_TABLE(of, q6asm_device_id);
1674
#endif
1675
1676
static struct apr_driver qcom_q6asm_driver = {
1677
.probe = q6asm_probe,
1678
.callback = q6asm_srvc_callback,
1679
.driver = {
1680
.name = "qcom-q6asm",
1681
.of_match_table = of_match_ptr(q6asm_device_id),
1682
},
1683
};
1684
1685
module_apr_driver(qcom_q6asm_driver);
1686
MODULE_DESCRIPTION("Q6 Audio Stream Manager driver");
1687
MODULE_LICENSE("GPL v2");
1688
1689