lightnvm: NVM should depend on HAS_DMA
[deliverable/linux.git] / sound / soc / intel / atom / sst-atom-controls.h
1 /*
2 * sst-atom-controls.h - Intel MID Platform driver header file
3 *
4 * Copyright (C) 2013-14 Intel Corp
5 * Author: Ramesh Babu <ramesh.babu.koul@intel.com>
6 * Omair M Abdullah <omair.m.abdullah@intel.com>
7 * Samreen Nilofer <samreen.nilofer@intel.com>
8 * ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
9 *
10 * This program is free software; you can redistribute it and/or modify
11 * it under the terms of the GNU General Public License as published by
12 * the Free Software Foundation; version 2 of the License.
13 *
14 * This program is distributed in the hope that it will be useful, but
15 * WITHOUT ANY WARRANTY; without even the implied warranty of
16 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
17 * General Public License for more details.
18 *
19 * ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
20 *
21 */
22
23 #ifndef __SST_ATOM_CONTROLS_H__
24 #define __SST_ATOM_CONTROLS_H__
25
26 #include <sound/soc.h>
27 #include <sound/tlv.h>
28
29 enum {
30 MERR_DPCM_AUDIO = 0,
31 MERR_DPCM_DEEP_BUFFER,
32 MERR_DPCM_COMPR,
33 };
34
35 /* define a bit for each mixer input */
36 #define SST_MIX_IP(x) (x)
37
38 #define SST_IP_CODEC0 SST_MIX_IP(2)
39 #define SST_IP_CODEC1 SST_MIX_IP(3)
40 #define SST_IP_LOOP0 SST_MIX_IP(4)
41 #define SST_IP_LOOP1 SST_MIX_IP(5)
42 #define SST_IP_LOOP2 SST_MIX_IP(6)
43 #define SST_IP_PROBE SST_MIX_IP(7)
44 #define SST_IP_VOIP SST_MIX_IP(12)
45 #define SST_IP_PCM0 SST_MIX_IP(13)
46 #define SST_IP_PCM1 SST_MIX_IP(14)
47 #define SST_IP_MEDIA0 SST_MIX_IP(17)
48 #define SST_IP_MEDIA1 SST_MIX_IP(18)
49 #define SST_IP_MEDIA2 SST_MIX_IP(19)
50 #define SST_IP_MEDIA3 SST_MIX_IP(20)
51
52 #define SST_IP_LAST SST_IP_MEDIA3
53
54 #define SST_SWM_INPUT_COUNT (SST_IP_LAST + 1)
55 #define SST_CMD_SWM_MAX_INPUTS 6
56
57 #define SST_PATH_ID_SHIFT 8
58 #define SST_DEFAULT_LOCATION_ID 0xFFFF
59 #define SST_DEFAULT_CELL_NBR 0xFF
60 #define SST_DEFAULT_MODULE_ID 0xFFFF
61
62 /*
63 * Audio DSP Path Ids. Specified by the audio DSP FW
64 */
65 enum sst_path_index {
66 SST_PATH_INDEX_CODEC_OUT0 = (0x02 << SST_PATH_ID_SHIFT),
67 SST_PATH_INDEX_CODEC_OUT1 = (0x03 << SST_PATH_ID_SHIFT),
68
69 SST_PATH_INDEX_SPROT_LOOP_OUT = (0x04 << SST_PATH_ID_SHIFT),
70 SST_PATH_INDEX_MEDIA_LOOP1_OUT = (0x05 << SST_PATH_ID_SHIFT),
71 SST_PATH_INDEX_MEDIA_LOOP2_OUT = (0x06 << SST_PATH_ID_SHIFT),
72
73 SST_PATH_INDEX_VOIP_OUT = (0x0C << SST_PATH_ID_SHIFT),
74 SST_PATH_INDEX_PCM0_OUT = (0x0D << SST_PATH_ID_SHIFT),
75 SST_PATH_INDEX_PCM1_OUT = (0x0E << SST_PATH_ID_SHIFT),
76 SST_PATH_INDEX_PCM2_OUT = (0x0F << SST_PATH_ID_SHIFT),
77
78 SST_PATH_INDEX_MEDIA0_OUT = (0x12 << SST_PATH_ID_SHIFT),
79 SST_PATH_INDEX_MEDIA1_OUT = (0x13 << SST_PATH_ID_SHIFT),
80
81
82 /* Start of input paths */
83 SST_PATH_INDEX_CODEC_IN0 = (0x82 << SST_PATH_ID_SHIFT),
84 SST_PATH_INDEX_CODEC_IN1 = (0x83 << SST_PATH_ID_SHIFT),
85
86 SST_PATH_INDEX_SPROT_LOOP_IN = (0x84 << SST_PATH_ID_SHIFT),
87 SST_PATH_INDEX_MEDIA_LOOP1_IN = (0x85 << SST_PATH_ID_SHIFT),
88 SST_PATH_INDEX_MEDIA_LOOP2_IN = (0x86 << SST_PATH_ID_SHIFT),
89
90 SST_PATH_INDEX_VOIP_IN = (0x8C << SST_PATH_ID_SHIFT),
91
92 SST_PATH_INDEX_PCM0_IN = (0x8D << SST_PATH_ID_SHIFT),
93 SST_PATH_INDEX_PCM1_IN = (0x8E << SST_PATH_ID_SHIFT),
94
95 SST_PATH_INDEX_MEDIA0_IN = (0x8F << SST_PATH_ID_SHIFT),
96 SST_PATH_INDEX_MEDIA1_IN = (0x90 << SST_PATH_ID_SHIFT),
97 SST_PATH_INDEX_MEDIA2_IN = (0x91 << SST_PATH_ID_SHIFT),
98
99 SST_PATH_INDEX_MEDIA3_IN = (0x9C << SST_PATH_ID_SHIFT),
100
101 SST_PATH_INDEX_RESERVED = (0xFF << SST_PATH_ID_SHIFT),
102 };
103
104 /*
105 * path IDs
106 */
107 enum sst_swm_inputs {
108 SST_SWM_IN_CODEC0 = (SST_PATH_INDEX_CODEC_IN0 | SST_DEFAULT_CELL_NBR),
109 SST_SWM_IN_CODEC1 = (SST_PATH_INDEX_CODEC_IN1 | SST_DEFAULT_CELL_NBR),
110 SST_SWM_IN_SPROT_LOOP = (SST_PATH_INDEX_SPROT_LOOP_IN | SST_DEFAULT_CELL_NBR),
111 SST_SWM_IN_MEDIA_LOOP1 = (SST_PATH_INDEX_MEDIA_LOOP1_IN | SST_DEFAULT_CELL_NBR),
112 SST_SWM_IN_MEDIA_LOOP2 = (SST_PATH_INDEX_MEDIA_LOOP2_IN | SST_DEFAULT_CELL_NBR),
113 SST_SWM_IN_VOIP = (SST_PATH_INDEX_VOIP_IN | SST_DEFAULT_CELL_NBR),
114 SST_SWM_IN_PCM0 = (SST_PATH_INDEX_PCM0_IN | SST_DEFAULT_CELL_NBR),
115 SST_SWM_IN_PCM1 = (SST_PATH_INDEX_PCM1_IN | SST_DEFAULT_CELL_NBR),
116 SST_SWM_IN_MEDIA0 = (SST_PATH_INDEX_MEDIA0_IN | SST_DEFAULT_CELL_NBR), /* Part of Media Mixer */
117 SST_SWM_IN_MEDIA1 = (SST_PATH_INDEX_MEDIA1_IN | SST_DEFAULT_CELL_NBR), /* Part of Media Mixer */
118 SST_SWM_IN_MEDIA2 = (SST_PATH_INDEX_MEDIA2_IN | SST_DEFAULT_CELL_NBR), /* Part of Media Mixer */
119 SST_SWM_IN_MEDIA3 = (SST_PATH_INDEX_MEDIA3_IN | SST_DEFAULT_CELL_NBR), /* Part of Media Mixer */
120 SST_SWM_IN_END = (SST_PATH_INDEX_RESERVED | SST_DEFAULT_CELL_NBR)
121 };
122
123 /*
124 * path IDs
125 */
126 enum sst_swm_outputs {
127 SST_SWM_OUT_CODEC0 = (SST_PATH_INDEX_CODEC_OUT0 | SST_DEFAULT_CELL_NBR),
128 SST_SWM_OUT_CODEC1 = (SST_PATH_INDEX_CODEC_OUT1 | SST_DEFAULT_CELL_NBR),
129 SST_SWM_OUT_SPROT_LOOP = (SST_PATH_INDEX_SPROT_LOOP_OUT | SST_DEFAULT_CELL_NBR),
130 SST_SWM_OUT_MEDIA_LOOP1 = (SST_PATH_INDEX_MEDIA_LOOP1_OUT | SST_DEFAULT_CELL_NBR),
131 SST_SWM_OUT_MEDIA_LOOP2 = (SST_PATH_INDEX_MEDIA_LOOP2_OUT | SST_DEFAULT_CELL_NBR),
132 SST_SWM_OUT_VOIP = (SST_PATH_INDEX_VOIP_OUT | SST_DEFAULT_CELL_NBR),
133 SST_SWM_OUT_PCM0 = (SST_PATH_INDEX_PCM0_OUT | SST_DEFAULT_CELL_NBR),
134 SST_SWM_OUT_PCM1 = (SST_PATH_INDEX_PCM1_OUT | SST_DEFAULT_CELL_NBR),
135 SST_SWM_OUT_PCM2 = (SST_PATH_INDEX_PCM2_OUT | SST_DEFAULT_CELL_NBR),
136 SST_SWM_OUT_MEDIA0 = (SST_PATH_INDEX_MEDIA0_OUT | SST_DEFAULT_CELL_NBR), /* Part of Media Mixer */
137 SST_SWM_OUT_MEDIA1 = (SST_PATH_INDEX_MEDIA1_OUT | SST_DEFAULT_CELL_NBR), /* Part of Media Mixer */
138 SST_SWM_OUT_END = (SST_PATH_INDEX_RESERVED | SST_DEFAULT_CELL_NBR),
139 };
140
141 enum sst_ipc_msg {
142 SST_IPC_IA_CMD = 1,
143 SST_IPC_IA_SET_PARAMS,
144 SST_IPC_IA_GET_PARAMS,
145 };
146
147 enum sst_cmd_type {
148 SST_CMD_BYTES_SET = 1,
149 SST_CMD_BYTES_GET = 2,
150 };
151
152 enum sst_task {
153 SST_TASK_SBA = 1,
154 SST_TASK_MMX = 3,
155 };
156
157 enum sst_type {
158 SST_TYPE_CMD = 1,
159 SST_TYPE_PARAMS,
160 };
161
162 enum sst_flag {
163 SST_FLAG_BLOCKED = 1,
164 SST_FLAG_NONBLOCK,
165 };
166
167 /*
168 * Enumeration for indexing the gain cells in VB_SET_GAIN DSP command
169 */
170 enum sst_gain_index {
171 /* GAIN IDs for SB task start here */
172 SST_GAIN_INDEX_CODEC_OUT0,
173 SST_GAIN_INDEX_CODEC_OUT1,
174 SST_GAIN_INDEX_CODEC_IN0,
175 SST_GAIN_INDEX_CODEC_IN1,
176
177 SST_GAIN_INDEX_SPROT_LOOP_OUT,
178 SST_GAIN_INDEX_MEDIA_LOOP1_OUT,
179 SST_GAIN_INDEX_MEDIA_LOOP2_OUT,
180
181 SST_GAIN_INDEX_PCM0_IN_LEFT,
182 SST_GAIN_INDEX_PCM0_IN_RIGHT,
183
184 SST_GAIN_INDEX_PCM1_OUT_LEFT,
185 SST_GAIN_INDEX_PCM1_OUT_RIGHT,
186 SST_GAIN_INDEX_PCM1_IN_LEFT,
187 SST_GAIN_INDEX_PCM1_IN_RIGHT,
188 SST_GAIN_INDEX_PCM2_OUT_LEFT,
189
190 SST_GAIN_INDEX_PCM2_OUT_RIGHT,
191 SST_GAIN_INDEX_VOIP_OUT,
192 SST_GAIN_INDEX_VOIP_IN,
193
194 /* Gain IDs for MMX task start here */
195 SST_GAIN_INDEX_MEDIA0_IN_LEFT,
196 SST_GAIN_INDEX_MEDIA0_IN_RIGHT,
197 SST_GAIN_INDEX_MEDIA1_IN_LEFT,
198 SST_GAIN_INDEX_MEDIA1_IN_RIGHT,
199
200 SST_GAIN_INDEX_MEDIA2_IN_LEFT,
201 SST_GAIN_INDEX_MEDIA2_IN_RIGHT,
202
203 SST_GAIN_INDEX_GAIN_END
204 };
205
206 /*
207 * Audio DSP module IDs specified by FW spec
208 * TODO: Update with all modules
209 */
210 enum sst_module_id {
211 SST_MODULE_ID_PCM = 0x0001,
212 SST_MODULE_ID_MP3 = 0x0002,
213 SST_MODULE_ID_MP24 = 0x0003,
214 SST_MODULE_ID_AAC = 0x0004,
215 SST_MODULE_ID_AACP = 0x0005,
216 SST_MODULE_ID_EAACP = 0x0006,
217 SST_MODULE_ID_WMA9 = 0x0007,
218 SST_MODULE_ID_WMA10 = 0x0008,
219 SST_MODULE_ID_WMA10P = 0x0009,
220 SST_MODULE_ID_RA = 0x000A,
221 SST_MODULE_ID_DDAC3 = 0x000B,
222 SST_MODULE_ID_TRUE_HD = 0x000C,
223 SST_MODULE_ID_HD_PLUS = 0x000D,
224
225 SST_MODULE_ID_SRC = 0x0064,
226 SST_MODULE_ID_DOWNMIX = 0x0066,
227 SST_MODULE_ID_GAIN_CELL = 0x0067,
228 SST_MODULE_ID_SPROT = 0x006D,
229 SST_MODULE_ID_BASS_BOOST = 0x006E,
230 SST_MODULE_ID_STEREO_WDNG = 0x006F,
231 SST_MODULE_ID_AV_REMOVAL = 0x0070,
232 SST_MODULE_ID_MIC_EQ = 0x0071,
233 SST_MODULE_ID_SPL = 0x0072,
234 SST_MODULE_ID_ALGO_VTSV = 0x0073,
235 SST_MODULE_ID_NR = 0x0076,
236 SST_MODULE_ID_BWX = 0x0077,
237 SST_MODULE_ID_DRP = 0x0078,
238 SST_MODULE_ID_MDRP = 0x0079,
239
240 SST_MODULE_ID_ANA = 0x007A,
241 SST_MODULE_ID_AEC = 0x007B,
242 SST_MODULE_ID_NR_SNS = 0x007C,
243 SST_MODULE_ID_SER = 0x007D,
244 SST_MODULE_ID_AGC = 0x007E,
245
246 SST_MODULE_ID_CNI = 0x007F,
247 SST_MODULE_ID_CONTEXT_ALGO_AWARE = 0x0080,
248 SST_MODULE_ID_FIR_24 = 0x0081,
249 SST_MODULE_ID_IIR_24 = 0x0082,
250
251 SST_MODULE_ID_ASRC = 0x0083,
252 SST_MODULE_ID_TONE_GEN = 0x0084,
253 SST_MODULE_ID_BMF = 0x0086,
254 SST_MODULE_ID_EDL = 0x0087,
255 SST_MODULE_ID_GLC = 0x0088,
256
257 SST_MODULE_ID_FIR_16 = 0x0089,
258 SST_MODULE_ID_IIR_16 = 0x008A,
259 SST_MODULE_ID_DNR = 0x008B,
260
261 SST_MODULE_ID_VIRTUALIZER = 0x008C,
262 SST_MODULE_ID_VISUALIZATION = 0x008D,
263 SST_MODULE_ID_LOUDNESS_OPTIMIZER = 0x008E,
264 SST_MODULE_ID_REVERBERATION = 0x008F,
265
266 SST_MODULE_ID_CNI_TX = 0x0090,
267 SST_MODULE_ID_REF_LINE = 0x0091,
268 SST_MODULE_ID_VOLUME = 0x0092,
269 SST_MODULE_ID_FILT_DCR = 0x0094,
270 SST_MODULE_ID_SLV = 0x009A,
271 SST_MODULE_ID_NLF = 0x009B,
272 SST_MODULE_ID_TNR = 0x009C,
273 SST_MODULE_ID_WNR = 0x009D,
274
275 SST_MODULE_ID_LOG = 0xFF00,
276
277 SST_MODULE_ID_TASK = 0xFFFF,
278 };
279
280 enum sst_cmd {
281 SBA_IDLE = 14,
282 SBA_VB_SET_SPEECH_PATH = 26,
283 MMX_SET_GAIN = 33,
284 SBA_VB_SET_GAIN = 33,
285 FBA_VB_RX_CNI = 35,
286 MMX_SET_GAIN_TIMECONST = 36,
287 SBA_VB_SET_TIMECONST = 36,
288 SBA_VB_START = 85,
289 SBA_SET_SWM = 114,
290 SBA_SET_MDRP = 116,
291 SBA_HW_SET_SSP = 117,
292 SBA_SET_MEDIA_LOOP_MAP = 118,
293 SBA_SET_MEDIA_PATH = 119,
294 MMX_SET_MEDIA_PATH = 119,
295 SBA_VB_LPRO = 126,
296 SBA_VB_SET_FIR = 128,
297 SBA_VB_SET_IIR = 129,
298 SBA_SET_SSP_SLOT_MAP = 130,
299 };
300
301 enum sst_dsp_switch {
302 SST_SWITCH_OFF = 0,
303 SST_SWITCH_ON = 3,
304 };
305
306 enum sst_path_switch {
307 SST_PATH_OFF = 0,
308 SST_PATH_ON = 1,
309 };
310
311 enum sst_swm_state {
312 SST_SWM_OFF = 0,
313 SST_SWM_ON = 3,
314 };
315
316 #define SST_FILL_LOCATION_IDS(dst, cell_idx, pipe_id) do { \
317 dst.location_id.p.cell_nbr_idx = (cell_idx); \
318 dst.location_id.p.path_id = (pipe_id); \
319 } while (0)
320 #define SST_FILL_LOCATION_ID(dst, loc_id) (\
321 dst.location_id.f = (loc_id))
322 #define SST_FILL_MODULE_ID(dst, mod_id) (\
323 dst.module_id = (mod_id))
324
325 #define SST_FILL_DESTINATION1(dst, id) do { \
326 SST_FILL_LOCATION_ID(dst, (id) & 0xFFFF); \
327 SST_FILL_MODULE_ID(dst, ((id) & 0xFFFF0000) >> 16); \
328 } while (0)
329 #define SST_FILL_DESTINATION2(dst, loc_id, mod_id) do { \
330 SST_FILL_LOCATION_ID(dst, loc_id); \
331 SST_FILL_MODULE_ID(dst, mod_id); \
332 } while (0)
333 #define SST_FILL_DESTINATION3(dst, cell_idx, path_id, mod_id) do { \
334 SST_FILL_LOCATION_IDS(dst, cell_idx, path_id); \
335 SST_FILL_MODULE_ID(dst, mod_id); \
336 } while (0)
337
338 #define SST_FILL_DESTINATION(level, dst, ...) \
339 SST_FILL_DESTINATION##level(dst, __VA_ARGS__)
340 #define SST_FILL_DEFAULT_DESTINATION(dst) \
341 SST_FILL_DESTINATION(2, dst, SST_DEFAULT_LOCATION_ID, SST_DEFAULT_MODULE_ID)
342
343 struct sst_destination_id {
344 union sst_location_id {
345 struct {
346 u8 cell_nbr_idx; /* module index */
347 u8 path_id; /* pipe_id */
348 } __packed p; /* part */
349 u16 f; /* full */
350 } __packed location_id;
351 u16 module_id;
352 } __packed;
353 struct sst_dsp_header {
354 struct sst_destination_id dst;
355 u16 command_id;
356 u16 length;
357 } __packed;
358
359 /*
360 *
361 * Common Commands
362 *
363 */
364 struct sst_cmd_generic {
365 struct sst_dsp_header header;
366 } __packed;
367
368 struct swm_input_ids {
369 struct sst_destination_id input_id;
370 } __packed;
371
372 struct sst_cmd_set_swm {
373 struct sst_dsp_header header;
374 struct sst_destination_id output_id;
375 u16 switch_state;
376 u16 nb_inputs;
377 struct swm_input_ids input[SST_CMD_SWM_MAX_INPUTS];
378 } __packed;
379
380 struct sst_cmd_set_media_path {
381 struct sst_dsp_header header;
382 u16 switch_state;
383 } __packed;
384
385 struct pcm_cfg {
386 u8 s_length:2;
387 u8 rate:3;
388 u8 format:3;
389 } __packed;
390
391 struct sst_cmd_set_speech_path {
392 struct sst_dsp_header header;
393 u16 switch_state;
394 struct {
395 u16 rsvd:8;
396 struct pcm_cfg cfg;
397 } config;
398 } __packed;
399
400 struct gain_cell {
401 struct sst_destination_id dest;
402 s16 cell_gain_left;
403 s16 cell_gain_right;
404 u16 gain_time_constant;
405 } __packed;
406
407 #define NUM_GAIN_CELLS 1
408 struct sst_cmd_set_gain_dual {
409 struct sst_dsp_header header;
410 u16 gain_cell_num;
411 struct gain_cell cell_gains[NUM_GAIN_CELLS];
412 } __packed;
413 struct sst_cmd_set_params {
414 struct sst_destination_id dst;
415 u16 command_id;
416 char params[0];
417 } __packed;
418
419
420 struct sst_cmd_sba_vb_start {
421 struct sst_dsp_header header;
422 } __packed;
423
424 union sba_media_loop_params {
425 struct {
426 u16 rsvd:8;
427 struct pcm_cfg cfg;
428 } part;
429 u16 full;
430 } __packed;
431
432 struct sst_cmd_sba_set_media_loop_map {
433 struct sst_dsp_header header;
434 u16 switch_state;
435 union sba_media_loop_params param;
436 u16 map;
437 } __packed;
438
439 struct sst_cmd_tone_stop {
440 struct sst_dsp_header header;
441 u16 switch_state;
442 } __packed;
443
444 enum sst_ssp_mode {
445 SSP_MODE_MASTER = 0,
446 SSP_MODE_SLAVE = 1,
447 };
448
449 enum sst_ssp_pcm_mode {
450 SSP_PCM_MODE_NORMAL = 0,
451 SSP_PCM_MODE_NETWORK = 1,
452 };
453
454 enum sst_ssp_duplex {
455 SSP_DUPLEX = 0,
456 SSP_RX = 1,
457 SSP_TX = 2,
458 };
459
460 enum sst_ssp_fs_frequency {
461 SSP_FS_8_KHZ = 0,
462 SSP_FS_16_KHZ = 1,
463 SSP_FS_44_1_KHZ = 2,
464 SSP_FS_48_KHZ = 3,
465 };
466
467 enum sst_ssp_fs_polarity {
468 SSP_FS_ACTIVE_LOW = 0,
469 SSP_FS_ACTIVE_HIGH = 1,
470 };
471
472 enum sst_ssp_protocol {
473 SSP_MODE_PCM = 0,
474 SSP_MODE_I2S = 1,
475 };
476
477 enum sst_ssp_port_id {
478 SSP_MODEM = 0,
479 SSP_BT = 1,
480 SSP_FM = 2,
481 SSP_CODEC = 3,
482 };
483
484 struct sst_cmd_sba_hw_set_ssp {
485 struct sst_dsp_header header;
486 u16 selection; /* 0:SSP0(def), 1:SSP1, 2:SSP2 */
487
488 u16 switch_state;
489
490 u16 nb_bits_per_slots:6; /* 0-32 bits, 24 (def) */
491 u16 nb_slots:4; /* 0-8: slots per frame */
492 u16 mode:3; /* 0:Master, 1: Slave */
493 u16 duplex:3;
494
495 u16 active_tx_slot_map:8; /* Bit map, 0:off, 1:on */
496 u16 reserved1:8;
497
498 u16 active_rx_slot_map:8; /* Bit map 0: Off, 1:On */
499 u16 reserved2:8;
500
501 u16 frame_sync_frequency;
502
503 u16 frame_sync_polarity:8;
504 u16 data_polarity:8;
505
506 u16 frame_sync_width; /* 1 to N clocks */
507 u16 ssp_protocol:8;
508 u16 start_delay:8; /* Start delay in terms of clock ticks */
509 } __packed;
510
511 #define SST_MAX_TDM_SLOTS 8
512
513 struct sst_param_sba_ssp_slot_map {
514 struct sst_dsp_header header;
515
516 u16 param_id;
517 u16 param_len;
518 u16 ssp_index;
519
520 u8 rx_slot_map[SST_MAX_TDM_SLOTS];
521 u8 tx_slot_map[SST_MAX_TDM_SLOTS];
522 } __packed;
523
524 enum {
525 SST_PROBE_EXTRACTOR = 0,
526 SST_PROBE_INJECTOR = 1,
527 };
528
529 /**** widget defines *****/
530
531 #define SST_MODULE_GAIN 1
532 #define SST_MODULE_ALGO 2
533
534 #define SST_FMT_MONO 0
535 #define SST_FMT_STEREO 3
536
537 /* physical SSP numbers */
538 enum {
539 SST_SSP0 = 0,
540 SST_SSP1,
541 SST_SSP2,
542 SST_SSP_LAST = SST_SSP2,
543 };
544
545 #define SST_NUM_SSPS (SST_SSP_LAST + 1) /* physical SSPs */
546 #define SST_MAX_SSP_MUX 2 /* single SSP muxed between pipes */
547 #define SST_MAX_SSP_DOMAINS 2 /* domains present in each pipe */
548
549 struct sst_module {
550 struct snd_kcontrol *kctl;
551 struct list_head node;
552 };
553
554 struct sst_ssp_config {
555 u8 ssp_id;
556 u8 bits_per_slot;
557 u8 slots;
558 u8 ssp_mode;
559 u8 pcm_mode;
560 u8 duplex;
561 u8 ssp_protocol;
562 u8 fs_frequency;
563 u8 active_slot_map;
564 u8 start_delay;
565 u16 fs_width;
566 u8 frame_sync_polarity;
567 u8 data_polarity;
568 };
569
570 struct sst_ssp_cfg {
571 const u8 ssp_number;
572 const int *mux_shift;
573 const int (*domain_shift)[SST_MAX_SSP_MUX];
574 const struct sst_ssp_config (*ssp_config)[SST_MAX_SSP_MUX][SST_MAX_SSP_DOMAINS];
575 };
576
577 struct sst_ids {
578 u16 location_id;
579 u16 module_id;
580 u8 task_id;
581 u8 format;
582 u8 reg;
583 const char *parent_wname;
584 struct snd_soc_dapm_widget *parent_w;
585 struct list_head algo_list;
586 struct list_head gain_list;
587 const struct sst_pcm_format *pcm_fmt;
588 };
589
590
591 #define SST_AIF_IN(wname, wevent) \
592 { .id = snd_soc_dapm_aif_in, .name = wname, .sname = NULL, \
593 .reg = SND_SOC_NOPM, .shift = 0, \
594 .on_val = 1, .off_val = 0, \
595 .event = wevent, .event_flags = SND_SOC_DAPM_PRE_PMU | SND_SOC_DAPM_POST_PMD, \
596 .priv = (void *)&(struct sst_ids) { .task_id = 0, .location_id = 0 } \
597 }
598
599 #define SST_AIF_OUT(wname, wevent) \
600 { .id = snd_soc_dapm_aif_out, .name = wname, .sname = NULL, \
601 .reg = SND_SOC_NOPM, .shift = 0, \
602 .on_val = 1, .off_val = 0, \
603 .event = wevent, .event_flags = SND_SOC_DAPM_PRE_PMU | SND_SOC_DAPM_POST_PMD, \
604 .priv = (void *)&(struct sst_ids) { .task_id = 0, .location_id = 0 } \
605 }
606
607 #define SST_INPUT(wname, wevent) \
608 { .id = snd_soc_dapm_input, .name = wname, .sname = NULL, \
609 .reg = SND_SOC_NOPM, .shift = 0, \
610 .on_val = 1, .off_val = 0, \
611 .event = wevent, .event_flags = SND_SOC_DAPM_PRE_PMU | SND_SOC_DAPM_POST_PMD, \
612 .priv = (void *)&(struct sst_ids) { .task_id = 0, .location_id = 0 } \
613 }
614
615 #define SST_OUTPUT(wname, wevent) \
616 { .id = snd_soc_dapm_output, .name = wname, .sname = NULL, \
617 .reg = SND_SOC_NOPM, .shift = 0, \
618 .on_val = 1, .off_val = 0, \
619 .event = wevent, .event_flags = SND_SOC_DAPM_PRE_PMU | SND_SOC_DAPM_POST_PMD, \
620 .priv = (void *)&(struct sst_ids) { .task_id = 0, .location_id = 0 } \
621 }
622
623 #define SST_DAPM_OUTPUT(wname, wloc_id, wtask_id, wformat, wevent) \
624 { .id = snd_soc_dapm_output, .name = wname, .sname = NULL, \
625 .reg = SND_SOC_NOPM, .shift = 0, \
626 .on_val = 1, .off_val = 0, \
627 .event = wevent, .event_flags = SND_SOC_DAPM_PRE_PMU | SND_SOC_DAPM_POST_PMD, \
628 .priv = (void *)&(struct sst_ids) { .location_id = wloc_id, .task_id = wtask_id,\
629 .pcm_fmt = wformat, } \
630 }
631
632 #define SST_PATH(wname, wtask, wloc_id, wevent, wflags) \
633 { .id = snd_soc_dapm_pga, .name = wname, .reg = SND_SOC_NOPM, .shift = 0, \
634 .kcontrol_news = NULL, .num_kcontrols = 0, \
635 .on_val = 1, .off_val = 0, \
636 .event = wevent, .event_flags = wflags, \
637 .priv = (void *)&(struct sst_ids) { .task_id = wtask, .location_id = wloc_id, } \
638 }
639
640 #define SST_LINKED_PATH(wname, wtask, wloc_id, linked_wname, wevent, wflags) \
641 { .id = snd_soc_dapm_pga, .name = wname, .reg = SND_SOC_NOPM, .shift = 0, \
642 .kcontrol_news = NULL, .num_kcontrols = 0, \
643 .on_val = 1, .off_val = 0, \
644 .event = wevent, .event_flags = wflags, \
645 .priv = (void *)&(struct sst_ids) { .task_id = wtask, .location_id = wloc_id, \
646 .parent_wname = linked_wname} \
647 }
648
649 #define SST_PATH_MEDIA_LOOP(wname, wtask, wloc_id, wformat, wevent, wflags) \
650 { .id = snd_soc_dapm_pga, .name = wname, .reg = SND_SOC_NOPM, .shift = 0, \
651 .kcontrol_news = NULL, .num_kcontrols = 0, \
652 .event = wevent, .event_flags = wflags, \
653 .priv = (void *)&(struct sst_ids) { .task_id = wtask, .location_id = wloc_id, \
654 .format = wformat,} \
655 }
656
657 /* output is triggered before input */
658 #define SST_PATH_INPUT(name, task_id, loc_id, event) \
659 SST_PATH(name, task_id, loc_id, event, SND_SOC_DAPM_POST_PMU | SND_SOC_DAPM_PRE_PMD)
660
661 #define SST_PATH_LINKED_INPUT(name, task_id, loc_id, linked_wname, event) \
662 SST_LINKED_PATH(name, task_id, loc_id, linked_wname, event, \
663 SND_SOC_DAPM_POST_PMU | SND_SOC_DAPM_PRE_PMD)
664
665 #define SST_PATH_OUTPUT(name, task_id, loc_id, event) \
666 SST_PATH(name, task_id, loc_id, event, SND_SOC_DAPM_PRE_PMU | SND_SOC_DAPM_POST_PMD)
667
668 #define SST_PATH_LINKED_OUTPUT(name, task_id, loc_id, linked_wname, event) \
669 SST_LINKED_PATH(name, task_id, loc_id, linked_wname, event, \
670 SND_SOC_DAPM_PRE_PMU | SND_SOC_DAPM_POST_PMD)
671
672 #define SST_PATH_MEDIA_LOOP_OUTPUT(name, task_id, loc_id, format, event) \
673 SST_PATH_MEDIA_LOOP(name, task_id, loc_id, format, event, SND_SOC_DAPM_PRE_PMU | SND_SOC_DAPM_POST_PMD)
674
675
676 #define SST_SWM_MIXER(wname, wreg, wtask, wloc_id, wcontrols, wevent) \
677 { .id = snd_soc_dapm_mixer, .name = wname, .reg = SND_SOC_NOPM, .shift = 0, \
678 .kcontrol_news = wcontrols, .num_kcontrols = ARRAY_SIZE(wcontrols),\
679 .event = wevent, .event_flags = SND_SOC_DAPM_PRE_PMU | SND_SOC_DAPM_POST_PMD | \
680 SND_SOC_DAPM_POST_REG, \
681 .priv = (void *)&(struct sst_ids) { .task_id = wtask, .location_id = wloc_id, \
682 .reg = wreg } \
683 }
684
685 enum sst_gain_kcontrol_type {
686 SST_GAIN_TLV,
687 SST_GAIN_MUTE,
688 SST_GAIN_RAMP_DURATION,
689 };
690
691 struct sst_gain_mixer_control {
692 bool stereo;
693 enum sst_gain_kcontrol_type type;
694 struct sst_gain_value *gain_val;
695 int max;
696 int min;
697 u16 instance_id;
698 u16 module_id;
699 u16 pipe_id;
700 u16 task_id;
701 char pname[SNDRV_CTL_ELEM_ID_NAME_MAXLEN];
702 struct snd_soc_dapm_widget *w;
703 };
704
705 struct sst_gain_value {
706 u16 ramp_duration;
707 s16 l_gain;
708 s16 r_gain;
709 bool mute;
710 };
711 #define SST_GAIN_VOLUME_DEFAULT (-1440)
712 #define SST_GAIN_RAMP_DURATION_DEFAULT 5 /* timeconstant */
713 #define SST_GAIN_MUTE_DEFAULT true
714
715 #define SST_GAIN_KCONTROL_TLV(xname, xhandler_get, xhandler_put, \
716 xmod, xpipe, xinstance, xtask, tlv_array, xgain_val, \
717 xmin, xmax, xpname) \
718 .iface = SNDRV_CTL_ELEM_IFACE_MIXER, .name = xname, \
719 .access = SNDRV_CTL_ELEM_ACCESS_TLV_READ | \
720 SNDRV_CTL_ELEM_ACCESS_READWRITE, \
721 .tlv.p = (tlv_array), \
722 .info = sst_gain_ctl_info,\
723 .get = xhandler_get, .put = xhandler_put, \
724 .private_value = (unsigned long)&(struct sst_gain_mixer_control) \
725 { .stereo = true, .max = xmax, .min = xmin, .type = SST_GAIN_TLV, \
726 .module_id = xmod, .pipe_id = xpipe, .task_id = xtask,\
727 .instance_id = xinstance, .gain_val = xgain_val, .pname = xpname}
728
729 #define SST_GAIN_KCONTROL_INT(xname, xhandler_get, xhandler_put, \
730 xmod, xpipe, xinstance, xtask, xtype, xgain_val, \
731 xmin, xmax, xpname) \
732 .iface = SNDRV_CTL_ELEM_IFACE_MIXER, .name = xname, \
733 .info = sst_gain_ctl_info, \
734 .get = xhandler_get, .put = xhandler_put, \
735 .private_value = (unsigned long)&(struct sst_gain_mixer_control) \
736 { .stereo = false, .max = xmax, .min = xmin, .type = xtype, \
737 .module_id = xmod, .pipe_id = xpipe, .task_id = xtask,\
738 .instance_id = xinstance, .gain_val = xgain_val, .pname = xpname}
739
740 #define SST_GAIN_KCONTROL_BOOL(xname, xhandler_get, xhandler_put,\
741 xmod, xpipe, xinstance, xtask, xgain_val, xpname) \
742 .iface = SNDRV_CTL_ELEM_IFACE_MIXER, .name = xname, \
743 .info = snd_soc_info_bool_ext, \
744 .get = xhandler_get, .put = xhandler_put, \
745 .private_value = (unsigned long)&(struct sst_gain_mixer_control) \
746 { .stereo = false, .type = SST_GAIN_MUTE, \
747 .module_id = xmod, .pipe_id = xpipe, .task_id = xtask,\
748 .instance_id = xinstance, .gain_val = xgain_val, .pname = xpname}
749 #define SST_CONTROL_NAME(xpname, xmname, xinstance, xtype) \
750 xpname " " xmname " " #xinstance " " xtype
751
752 #define SST_COMBO_CONTROL_NAME(xpname, xmname, xinstance, xtype, xsubmodule) \
753 xpname " " xmname " " #xinstance " " xtype " " xsubmodule
754
755 /*
756 * 3 Controls for each Gain module
757 * e.g. - pcm0_in Gain 0 Volume
758 * - pcm0_in Gain 0 Ramp Delay
759 * - pcm0_in Gain 0 Switch
760 */
761 #define SST_GAIN_KCONTROLS(xpname, xmname, xmin_gain, xmax_gain, xmin_tc, xmax_tc, \
762 xhandler_get, xhandler_put, \
763 xmod, xpipe, xinstance, xtask, tlv_array, xgain_val) \
764 { SST_GAIN_KCONTROL_INT(SST_CONTROL_NAME(xpname, xmname, xinstance, "Ramp Delay"), \
765 xhandler_get, xhandler_put, xmod, xpipe, xinstance, xtask, SST_GAIN_RAMP_DURATION, \
766 xgain_val, xmin_tc, xmax_tc, xpname) }, \
767 { SST_GAIN_KCONTROL_BOOL(SST_CONTROL_NAME(xpname, xmname, xinstance, "Switch"), \
768 xhandler_get, xhandler_put, xmod, xpipe, xinstance, xtask, \
769 xgain_val, xpname) } ,\
770 { SST_GAIN_KCONTROL_TLV(SST_CONTROL_NAME(xpname, xmname, xinstance, "Volume"), \
771 xhandler_get, xhandler_put, xmod, xpipe, xinstance, xtask, tlv_array, \
772 xgain_val, xmin_gain, xmax_gain, xpname) }
773
774 #define SST_GAIN_TC_MIN 5
775 #define SST_GAIN_TC_MAX 5000
776 #define SST_GAIN_MIN_VALUE -1440 /* in 0.1 DB units */
777 #define SST_GAIN_MAX_VALUE 360
778
779 enum sst_algo_kcontrol_type {
780 SST_ALGO_PARAMS,
781 SST_ALGO_BYPASS,
782 };
783
784 struct sst_algo_control {
785 enum sst_algo_kcontrol_type type;
786 int max;
787 u16 module_id;
788 u16 pipe_id;
789 u16 task_id;
790 u16 cmd_id;
791 bool bypass;
792 unsigned char *params;
793 struct snd_soc_dapm_widget *w;
794 };
795
796 /* size of the control = size of params + size of length field */
797 #define SST_ALGO_CTL_VALUE(xcount, xtype, xpipe, xmod, xtask, xcmd) \
798 (struct sst_algo_control){ \
799 .max = xcount + sizeof(u16), .type = xtype, .module_id = xmod, \
800 .pipe_id = xpipe, .task_id = xtask, .cmd_id = xcmd, \
801 }
802
803 #define SST_ALGO_KCONTROL(xname, xcount, xmod, xpipe, \
804 xtask, xcmd, xtype, xinfo, xget, xput) \
805 { .iface = SNDRV_CTL_ELEM_IFACE_MIXER, \
806 .name = xname, \
807 .info = xinfo, .get = xget, .put = xput, \
808 .private_value = (unsigned long)& \
809 SST_ALGO_CTL_VALUE(xcount, xtype, xpipe, \
810 xmod, xtask, xcmd), \
811 }
812
813 #define SST_ALGO_KCONTROL_BYTES(xpname, xmname, xcount, xmod, \
814 xpipe, xinstance, xtask, xcmd) \
815 SST_ALGO_KCONTROL(SST_CONTROL_NAME(xpname, xmname, xinstance, "params"), \
816 xcount, xmod, xpipe, xtask, xcmd, SST_ALGO_PARAMS, \
817 sst_algo_bytes_ctl_info, \
818 sst_algo_control_get, sst_algo_control_set)
819
820 #define SST_ALGO_KCONTROL_BOOL(xpname, xmname, xmod, xpipe, xinstance, xtask) \
821 SST_ALGO_KCONTROL(SST_CONTROL_NAME(xpname, xmname, xinstance, "bypass"), \
822 0, xmod, xpipe, xtask, 0, SST_ALGO_BYPASS, \
823 snd_soc_info_bool_ext, \
824 sst_algo_control_get, sst_algo_control_set)
825
826 #define SST_ALGO_BYPASS_PARAMS(xpname, xmname, xcount, xmod, xpipe, \
827 xinstance, xtask, xcmd) \
828 SST_ALGO_KCONTROL_BOOL(xpname, xmname, xmod, xpipe, xinstance, xtask), \
829 SST_ALGO_KCONTROL_BYTES(xpname, xmname, xcount, xmod, xpipe, xinstance, xtask, xcmd)
830
831 #define SST_COMBO_ALGO_KCONTROL_BYTES(xpname, xmname, xsubmod, xcount, xmod, \
832 xpipe, xinstance, xtask, xcmd) \
833 SST_ALGO_KCONTROL(SST_COMBO_CONTROL_NAME(xpname, xmname, xinstance, "params", \
834 xsubmod), \
835 xcount, xmod, xpipe, xtask, xcmd, SST_ALGO_PARAMS, \
836 sst_algo_bytes_ctl_info, \
837 sst_algo_control_get, sst_algo_control_set)
838
839
840 struct sst_enum {
841 bool tx;
842 unsigned short reg;
843 unsigned int max;
844 const char * const *texts;
845 struct snd_soc_dapm_widget *w;
846 };
847
848 /* only 4 slots/channels supported atm */
849 #define SST_SSP_SLOT_ENUM(s_ch_no, is_tx, xtexts) \
850 (struct sst_enum){ .reg = s_ch_no, .tx = is_tx, .max = 4+1, .texts = xtexts, }
851
852 #define SST_SLOT_CTL_NAME(xpname, xmname, s_ch_name) \
853 xpname " " xmname " " s_ch_name
854
855 #define SST_SSP_SLOT_CTL(xpname, xmname, s_ch_name, s_ch_no, is_tx, xtexts, xget, xput) \
856 { .iface = SNDRV_CTL_ELEM_IFACE_MIXER, \
857 .name = SST_SLOT_CTL_NAME(xpname, xmname, s_ch_name), \
858 .info = sst_slot_enum_info, \
859 .get = xget, .put = xput, \
860 .private_value = (unsigned long)&SST_SSP_SLOT_ENUM(s_ch_no, is_tx, xtexts), \
861 }
862
863 #define SST_MUX_CTL_NAME(xpname, xinstance) \
864 xpname " " #xinstance
865
866 #define SST_SSP_MUX_ENUM(xreg, xshift, xtexts) \
867 (struct soc_enum) SOC_ENUM_DOUBLE(xreg, xshift, xshift, ARRAY_SIZE(xtexts), xtexts)
868
869 #define SST_SSP_MUX_CTL(xpname, xinstance, xreg, xshift, xtexts) \
870 SOC_DAPM_ENUM(SST_MUX_CTL_NAME(xpname, xinstance), \
871 SST_SSP_MUX_ENUM(xreg, xshift, xtexts))
872
873 int sst_fill_ssp_slot(struct snd_soc_dai *dai, unsigned int tx_mask,
874 unsigned int rx_mask, int slots, int slot_width);
875 int sst_fill_ssp_config(struct snd_soc_dai *dai, unsigned int fmt);
876 void sst_fill_ssp_defaults(struct snd_soc_dai *dai);
877
878 #endif
This page took 0.05417 seconds and 5 git commands to generate.