Merge tag 'ext4_for_linus_stable' of git://git.kernel.org/pub/scm/linux/kernel/git...
[sfrench/cifs-2.6.git] / Documentation / devicetree / bindings / sound / renesas,rsnd.txt
1 Renesas R-Car sound
2
3 =============================================
4 * Modules
5 =============================================
6
7 Renesas R-Car and RZ/G sound is constructed from below modules
8 (for Gen2 or later)
9
10  SCU            : Sampling Rate Converter Unit
11   - SRC         : Sampling Rate Converter
12   - CMD
13    - CTU        : Channel Transfer Unit
14    - MIX        : Mixer
15    - DVC        : Digital Volume and Mute Function
16  SSIU           : Serial Sound Interface Unit
17  SSI            : Serial Sound Interface
18
19 See detail of each module's channels, connection, limitation on datasheet
20
21 =============================================
22 * Multi channel
23 =============================================
24
25 Multi channel is supported by Multi-SSI, or TDM-SSI.
26
27  Multi-SSI      : 6ch case, you can use stereo x 3 SSI
28  TDM-SSI        : 6ch case, you can use TDM
29
30 =============================================
31 * Enable/Disable each modules
32 =============================================
33
34 See datasheet to check SRC/CTU/MIX/DVC connect-limitation.
35 DT controls enabling/disabling module.
36 ${LINUX}/arch/arm/boot/dts/r8a7790-lager.dts can be good example.
37 This is example of
38
39 Playback: [MEM] -> [SRC2] -> [DVC0] -> [SSIU0/SSI0] -> [codec]
40 Capture:  [MEM] <- [DVC1] <- [SRC3] <- [SSIU1/SSI1] <- [codec]
41
42         &rcar_sound {
43                 ...
44                 rcar_sound,dai {
45                         dai0 {
46                                 playback = <&ssi0 &src2 &dvc0>;
47                                 capture  = <&ssi1 &src3 &dvc1>;
48                         };
49                 };
50         };
51
52 You can use below.
53 ${LINUX}/arch/arm/boot/dts/r8a7790.dts can be good example.
54
55         &src0   &ctu00  &mix0   &dvc0   &ssi0
56         &src1   &ctu01  &mix1   &dvc1   &ssi1
57         &src2   &ctu02                  &ssi2
58         &src3   &ctu03                  &ssi3
59         &src4                           &ssi4
60         &src5   &ctu10                  &ssi5
61         &src6   &ctu11                  &ssi6
62         &src7   &ctu12                  &ssi7
63         &src8   &ctu13                  &ssi8
64         &src9                           &ssi9
65
66 =============================================
67 * SRC (Sampling Rate Converter)
68 =============================================
69
70  [xx]Hz        [yy]Hz
71  ------> [SRC] ------>
72
73 SRC can convert [xx]Hz to [yy]Hz. Then, it has below 2 modes
74
75  Asynchronous mode:     input data / output data are based on different clocks.
76                         you can use this mode on Playback / Capture
77  Synchronous mode:      input data / output data are based on same clocks.
78                         This mode will be used if system doesn't have its input clock,
79                         for example digital TV case.
80                         you can use this mode on Playback
81
82 ------------------
83 **     Asynchronous mode
84 ------------------
85
86 You need to use "simple-scu-audio-card" sound card for it.
87 example)
88
89         sound {
90                 compatible = "simple-scu-audio-card";
91                 ...
92                 /*
93                  * SRC Asynchronous mode setting
94                  * Playback:
95                  * All input data will be converted to 48kHz
96                  * Capture:
97                  * Inputed 48kHz data will be converted to
98                  * system specified Hz
99                  */
100                 simple-audio-card,convert-rate = <48000>;
101                 ...
102                 simple-audio-card,cpu {
103                         sound-dai = <&rcar_sound>;
104                 };
105                 simple-audio-card,codec {
106                         ...
107                 };
108         };
109
110 ------------------
111 **     Synchronous mode
112 ------------------
113
114         > amixer set "SRC Out Rate" on
115         > aplay xxxx.wav
116         > amixer set "SRC Out Rate" 48000
117         > amixer set "SRC Out Rate" 44100
118
119 =============================================
120 * CTU (Channel Transfer Unit)
121 =============================================
122
123  [xx]ch        [yy]ch
124  ------> [CTU] -------->
125
126 CTU can convert [xx]ch to [yy]ch, or exchange outputed channel.
127 CTU conversion needs matrix settings.
128 For more detail information, see below
129
130         Renesas R-Car datasheet
131          - Sampling Rate Converter Unit (SCU)
132           - SCU Operation
133            - CMD Block
134             - Functional Blocks in CMD
135
136         Renesas R-Car datasheet
137          - Sampling Rate Converter Unit (SCU)
138           - Register Description
139            - CTUn Scale Value exx Register (CTUn_SVxxR)
140
141         ${LINUX}/sound/soc/sh/rcar/ctu.c
142          - comment of header
143
144 You need to use "simple-scu-audio-card" sound card for it.
145 example)
146
147         sound {
148                 compatible = "simple-scu-audio-card";
149                 ...
150                 /*
151                  * CTU setting
152                  * All input data will be converted to 2ch
153                  * as output data
154                  */
155                 simple-audio-card,convert-channels = <2>;
156                 ...
157                 simple-audio-card,cpu {
158                         sound-dai = <&rcar_sound>;
159                 };
160                 simple-audio-card,codec {
161                         ...
162                 };
163         };
164
165 Ex) Exchange output channel
166  Input -> Output
167   1ch  ->  0ch
168   0ch  ->  1ch
169
170   example of using matrix
171         output 0ch = (input 0ch x 0) + (input 1ch x 1)
172         output 1ch = (input 0ch x 1) + (input 1ch x 0)
173
174         amixer set "CTU Reset" on
175         amixer set "CTU Pass" 9,10
176         amixer set "CTU SV0" 0,4194304
177         amixer set "CTU SV1" 4194304,0
178
179  example of changing connection
180         amixer set "CTU Reset" on
181         amixer set "CTU Pass" 2,1
182
183 =============================================
184 * MIX (Mixer)
185 =============================================
186
187 MIX merges 2 sounds path. You can see 2 sound interface on system,
188 and these sounds will be merged by MIX.
189
190         aplay -D plughw:0,0 xxxx.wav &
191         aplay -D plughw:0,1 yyyy.wav
192
193 You need to use "simple-scu-audio-card" sound card for it.
194 Ex)
195         [MEM] -> [SRC1] -> [CTU02] -+-> [MIX0] -> [DVC0] -> [SSI0]
196                                     |
197         [MEM] -> [SRC2] -> [CTU03] -+
198
199         sound {
200                 #address-cells = <1>;
201                 #size-cells = <0>;
202
203                 compatible = "simple-scu-audio-card";
204                 ...
205                 simple-audio-card,cpu@0 {
206                         reg = <0>;
207                         sound-dai = <&rcar_sound 0>;
208                 };
209                 simple-audio-card,cpu@1 {
210                         reg = <1>;
211                         sound-dai = <&rcar_sound 1>;
212                 };
213                 simple-audio-card,codec {
214                         ...
215                 };
216         };
217
218         &rcar_sound {
219                 ...
220                 rcar_sound,dai {
221                         dai0 {
222                                 playback = <&src1 &ctu02 &mix0 &dvc0 &ssi0>;
223                         };
224                         dai1 {
225                                 playback = <&src2 &ctu03 &mix0 &dvc0 &ssi0>;
226                         };
227                 };
228         };
229
230 =============================================
231 * DVC (Digital Volume and Mute Function)
232 =============================================
233
234 DVC controls Playback/Capture volume.
235
236 Playback Volume
237         amixer set "DVC Out" 100%
238
239 Capture Volume
240         amixer set "DVC In" 100%
241
242 Playback Mute
243         amixer set "DVC Out Mute" on
244
245 Capture Mute
246         amixer set "DVC In Mute" on
247
248 Volume Ramp
249         amixer set "DVC Out Ramp Up Rate"   "0.125 dB/64 steps"
250         amixer set "DVC Out Ramp Down Rate" "0.125 dB/512 steps"
251         amixer set "DVC Out Ramp" on
252         aplay xxx.wav &
253         amixer set "DVC Out"  80%  // Volume Down
254         amixer set "DVC Out" 100%  // Volume Up
255
256 =============================================
257 * SSIU (Serial Sound Interface Unit)
258 =============================================
259
260 There is no DT settings for SSIU, because SSIU will be automatically
261 selected via SSI.
262 SSIU can avoid some under/over run error, because it has some buffer.
263 But you can't use it if SSI was PIO mode.
264 In DMA mode, you can select not to use SSIU by using "no-busif" on DT.
265
266         &ssi0 {
267                 no-busif;
268         };
269
270 =============================================
271 * SSI (Serial Sound Interface)
272 =============================================
273
274 **  PIO mode
275
276 You can use PIO mode which is for connection check by using.
277 Note: The system will drop non-SSI modules in PIO mode
278 even though if DT is selecting other modules.
279
280         &ssi0 {
281                 pio-transfer
282         };
283
284 ** DMA mode without SSIU
285
286 You can use DMA without SSIU.
287 Note: under/over run, or noise are likely to occur
288
289         &ssi0 {
290                 no-busif;
291         };
292
293 ** PIN sharing
294
295 Each SSI can share WS pin. It is based on platform.
296 This is example if SSI1 want to share WS pin with SSI0
297
298         &ssi1 {
299                 shared-pin;
300         };
301
302 ** Multi-SSI
303
304 You can use Multi-SSI.
305 This is example of SSI0/SSI1/SSI2 (= for 6ch)
306
307         &rcar_sound {
308                 ...
309                 rcar_sound,dai {
310                         dai0 {
311                                 playback = <&ssi0 &ssi1 &ssi2 &src0 &dvc0>;
312                         };
313                 };
314         };
315
316 ** TDM-SSI
317
318 You can use TDM with SSI.
319 This is example of TDM 6ch.
320 Driver can automatically switches TDM <-> stereo mode in this case.
321
322         rsnd_tdm: sound {
323                 compatible = "simple-audio-card";
324                 ...
325                 simple-audio-card,cpu {
326                         /* system can use TDM 6ch */
327                         dai-tdm-slot-num = <6>;
328                         sound-dai = <&rcar_sound>;
329                 };
330                 simple-audio-card,codec {
331                         ...
332                 };
333         };
334
335
336 =============================================
337 Required properties:
338 =============================================
339
340 - compatible                    : "renesas,rcar_sound-<soctype>", fallbacks
341                                   "renesas,rcar_sound-gen1" if generation1, and
342                                   "renesas,rcar_sound-gen2" if generation2 (or RZ/G1)
343                                   "renesas,rcar_sound-gen3" if generation3 (or RZ/G2)
344                                   Examples with soctypes are:
345                                     - "renesas,rcar_sound-r8a7743" (RZ/G1M)
346                                     - "renesas,rcar_sound-r8a7744" (RZ/G1N)
347                                     - "renesas,rcar_sound-r8a7745" (RZ/G1E)
348                                     - "renesas,rcar_sound-r8a774a1" (RZ/G2M)
349                                     - "renesas,rcar_sound-r8a7778" (R-Car M1A)
350                                     - "renesas,rcar_sound-r8a7779" (R-Car H1)
351                                     - "renesas,rcar_sound-r8a7790" (R-Car H2)
352                                     - "renesas,rcar_sound-r8a7791" (R-Car M2-W)
353                                     - "renesas,rcar_sound-r8a7793" (R-Car M2-N)
354                                     - "renesas,rcar_sound-r8a7794" (R-Car E2)
355                                     - "renesas,rcar_sound-r8a7795" (R-Car H3)
356                                     - "renesas,rcar_sound-r8a7796" (R-Car M3-W)
357                                     - "renesas,rcar_sound-r8a77965" (R-Car M3-N)
358                                     - "renesas,rcar_sound-r8a77990" (R-Car E3)
359 - reg                           : Should contain the register physical address.
360                                   required register is
361                                    SRU/ADG/SSI      if generation1
362                                    SRU/ADG/SSIU/SSI if generation2
363 - rcar_sound,ssi                : Should contain SSI feature.
364                                   The number of SSI subnode should be same as HW.
365                                   see below for detail.
366 - rcar_sound,src                : Should contain SRC feature.
367                                   The number of SRC subnode should be same as HW.
368                                   see below for detail.
369 - rcar_sound,ctu                : Should contain CTU feature.
370                                   The number of CTU subnode should be same as HW.
371                                   see below for detail.
372 - rcar_sound,mix                : Should contain MIX feature.
373                                   The number of MIX subnode should be same as HW.
374                                   see below for detail.
375 - rcar_sound,dvc                : Should contain DVC feature.
376                                   The number of DVC subnode should be same as HW.
377                                   see below for detail.
378 - rcar_sound,dai                : DAI contents.
379                                   The number of DAI subnode should be same as HW.
380                                   see below for detail.
381 - #sound-dai-cells              : it must be 0 if your system is using single DAI
382                                   it must be 1 if your system is using multi  DAI
383 - clocks                        : References to SSI/SRC/MIX/CTU/DVC/AUDIO_CLK clocks.
384 - clock-names                   : List of necessary clock names.
385                                   "ssi-all", "ssi.X", "src.X", "mix.X", "ctu.X",
386                                   "dvc.X", "clk_a", "clk_b", "clk_c", "clk_i"
387
388 Optional properties:
389 - #clock-cells                  : it must be 0 if your system has audio_clkout
390                                   it must be 1 if your system has audio_clkout0/1/2/3
391 - clock-frequency               : for all audio_clkout0/1/2/3
392 - clkout-lr-asynchronous        : boolean property. it indicates that audio_clkoutn
393                                   is asynchronizes with lr-clock.
394 - resets                        : References to SSI resets.
395 - reset-names                   : List of valid reset names.
396                                   "ssi-all", "ssi.X"
397
398 SSI subnode properties:
399 - interrupts                    : Should contain SSI interrupt for PIO transfer
400 - shared-pin                    : if shared clock pin
401 - pio-transfer                  : use PIO transfer mode
402 - no-busif                      : BUSIF is not ussed when [mem -> SSI] via DMA case
403 - dma                           : Should contain Audio DMAC entry
404 - dma-names                     : SSI  case "rx"  (=playback), "tx"  (=capture)
405                                   SSIU case "rxu" (=playback), "txu" (=capture)
406
407 SRC subnode properties:
408 - dma                           : Should contain Audio DMAC entry
409 - dma-names                     : "rx" (=playback), "tx" (=capture)
410
411 DVC subnode properties:
412 - dma                           : Should contain Audio DMAC entry
413 - dma-names                     : "tx" (=playback/capture)
414
415 DAI subnode properties:
416 - playback                      : list of playback modules
417 - capture                       : list of capture  modules
418
419
420 =============================================
421 Example:
422 =============================================
423
424 rcar_sound: sound@ec500000 {
425         #sound-dai-cells = <1>;
426         compatible = "renesas,rcar_sound-r8a7791", "renesas,rcar_sound-gen2";
427         reg =   <0 0xec500000 0 0x1000>, /* SCU */
428                 <0 0xec5a0000 0 0x100>,  /* ADG */
429                 <0 0xec540000 0 0x1000>, /* SSIU */
430                 <0 0xec541000 0 0x1280>, /* SSI */
431                 <0 0xec740000 0 0x200>;  /* Audio DMAC peri peri*/
432         reg-names = "scu", "adg", "ssiu", "ssi", "audmapp";
433
434         clocks = <&mstp10_clks R8A7790_CLK_SSI_ALL>,
435                 <&mstp10_clks R8A7790_CLK_SSI9>, <&mstp10_clks R8A7790_CLK_SSI8>,
436                 <&mstp10_clks R8A7790_CLK_SSI7>, <&mstp10_clks R8A7790_CLK_SSI6>,
437                 <&mstp10_clks R8A7790_CLK_SSI5>, <&mstp10_clks R8A7790_CLK_SSI4>,
438                 <&mstp10_clks R8A7790_CLK_SSI3>, <&mstp10_clks R8A7790_CLK_SSI2>,
439                 <&mstp10_clks R8A7790_CLK_SSI1>, <&mstp10_clks R8A7790_CLK_SSI0>,
440                 <&mstp10_clks R8A7790_CLK_SCU_SRC9>, <&mstp10_clks R8A7790_CLK_SCU_SRC8>,
441                 <&mstp10_clks R8A7790_CLK_SCU_SRC7>, <&mstp10_clks R8A7790_CLK_SCU_SRC6>,
442                 <&mstp10_clks R8A7790_CLK_SCU_SRC5>, <&mstp10_clks R8A7790_CLK_SCU_SRC4>,
443                 <&mstp10_clks R8A7790_CLK_SCU_SRC3>, <&mstp10_clks R8A7790_CLK_SCU_SRC2>,
444                 <&mstp10_clks R8A7790_CLK_SCU_SRC1>, <&mstp10_clks R8A7790_CLK_SCU_SRC0>,
445                 <&mstp10_clks R8A7790_CLK_SCU_DVC0>, <&mstp10_clks R8A7790_CLK_SCU_DVC1>,
446                 <&audio_clk_a>, <&audio_clk_b>, <&audio_clk_c>, <&m2_clk>;
447         clock-names = "ssi-all",
448                         "ssi.9", "ssi.8", "ssi.7", "ssi.6", "ssi.5",
449                         "ssi.4", "ssi.3", "ssi.2", "ssi.1", "ssi.0",
450                         "src.9", "src.8", "src.7", "src.6", "src.5",
451                         "src.4", "src.3", "src.2", "src.1", "src.0",
452                         "dvc.0", "dvc.1",
453                         "clk_a", "clk_b", "clk_c", "clk_i";
454
455         rcar_sound,dvc {
456                 dvc0: dvc-0 {
457                         dmas = <&audma0 0xbc>;
458                         dma-names = "tx";
459                 };
460                 dvc1: dvc-1 {
461                         dmas = <&audma0 0xbe>;
462                         dma-names = "tx";
463                 };
464         };
465
466         rcar_sound,mix {
467                 mix0: mix-0 { };
468                 mix1: mix-1 { };
469         };
470
471         rcar_sound,ctu {
472                 ctu00: ctu-0 { };
473                 ctu01: ctu-1 { };
474                 ctu02: ctu-2 { };
475                 ctu03: ctu-3 { };
476                 ctu10: ctu-4 { };
477                 ctu11: ctu-5 { };
478                 ctu12: ctu-6 { };
479                 ctu13: ctu-7 { };
480         };
481
482         rcar_sound,src {
483                 src0: src-0 {
484                         interrupts = <0 352 IRQ_TYPE_LEVEL_HIGH>;
485                         dmas = <&audma0 0x85>, <&audma1 0x9a>;
486                         dma-names = "rx", "tx";
487                 };
488                 src1: src-1 {
489                         interrupts = <0 353 IRQ_TYPE_LEVEL_HIGH>;
490                         dmas = <&audma0 0x87>, <&audma1 0x9c>;
491                         dma-names = "rx", "tx";
492                 };
493                 src2: src-2 {
494                         interrupts = <0 354 IRQ_TYPE_LEVEL_HIGH>;
495                         dmas = <&audma0 0x89>, <&audma1 0x9e>;
496                         dma-names = "rx", "tx";
497                 };
498                 src3: src-3 {
499                         interrupts = <0 355 IRQ_TYPE_LEVEL_HIGH>;
500                         dmas = <&audma0 0x8b>, <&audma1 0xa0>;
501                         dma-names = "rx", "tx";
502                 };
503                 src4: src-4 {
504                         interrupts = <0 356 IRQ_TYPE_LEVEL_HIGH>;
505                         dmas = <&audma0 0x8d>, <&audma1 0xb0>;
506                         dma-names = "rx", "tx";
507                 };
508                 src5: src-5 {
509                         interrupts = <0 357 IRQ_TYPE_LEVEL_HIGH>;
510                         dmas = <&audma0 0x8f>, <&audma1 0xb2>;
511                         dma-names = "rx", "tx";
512                 };
513                 src6: src-6 {
514                         interrupts = <0 358 IRQ_TYPE_LEVEL_HIGH>;
515                         dmas = <&audma0 0x91>, <&audma1 0xb4>;
516                         dma-names = "rx", "tx";
517                 };
518                 src7: src-7 {
519                         interrupts = <0 359 IRQ_TYPE_LEVEL_HIGH>;
520                         dmas = <&audma0 0x93>, <&audma1 0xb6>;
521                         dma-names = "rx", "tx";
522                 };
523                 src8: src-8 {
524                         interrupts = <0 360 IRQ_TYPE_LEVEL_HIGH>;
525                         dmas = <&audma0 0x95>, <&audma1 0xb8>;
526                         dma-names = "rx", "tx";
527                 };
528                 src9: src-9 {
529                         interrupts = <0 361 IRQ_TYPE_LEVEL_HIGH>;
530                         dmas = <&audma0 0x97>, <&audma1 0xba>;
531                         dma-names = "rx", "tx";
532                 };
533         };
534
535         rcar_sound,ssi {
536                 ssi0: ssi-0 {
537                         interrupts = <0 370 IRQ_TYPE_LEVEL_HIGH>;
538                         dmas = <&audma0 0x01>, <&audma1 0x02>, <&audma0 0x15>, <&audma1 0x16>;
539                         dma-names = "rx", "tx", "rxu", "txu";
540                 };
541                 ssi1: ssi-1 {
542                         interrupts = <0 371 IRQ_TYPE_LEVEL_HIGH>;
543                         dmas = <&audma0 0x03>, <&audma1 0x04>, <&audma0 0x49>, <&audma1 0x4a>;
544                         dma-names = "rx", "tx", "rxu", "txu";
545                 };
546                 ssi2: ssi-2 {
547                         interrupts = <0 372 IRQ_TYPE_LEVEL_HIGH>;
548                         dmas = <&audma0 0x05>, <&audma1 0x06>, <&audma0 0x63>, <&audma1 0x64>;
549                         dma-names = "rx", "tx", "rxu", "txu";
550                 };
551                 ssi3: ssi-3 {
552                         interrupts = <0 373 IRQ_TYPE_LEVEL_HIGH>;
553                         dmas = <&audma0 0x07>, <&audma1 0x08>, <&audma0 0x6f>, <&audma1 0x70>;
554                         dma-names = "rx", "tx", "rxu", "txu";
555                 };
556                 ssi4: ssi-4 {
557                         interrupts = <0 374 IRQ_TYPE_LEVEL_HIGH>;
558                         dmas = <&audma0 0x09>, <&audma1 0x0a>, <&audma0 0x71>, <&audma1 0x72>;
559                         dma-names = "rx", "tx", "rxu", "txu";
560                 };
561                 ssi5: ssi-5 {
562                         interrupts = <0 375 IRQ_TYPE_LEVEL_HIGH>;
563                         dmas = <&audma0 0x0b>, <&audma1 0x0c>, <&audma0 0x73>, <&audma1 0x74>;
564                         dma-names = "rx", "tx", "rxu", "txu";
565                 };
566                 ssi6: ssi-6 {
567                         interrupts = <0 376 IRQ_TYPE_LEVEL_HIGH>;
568                         dmas = <&audma0 0x0d>, <&audma1 0x0e>, <&audma0 0x75>, <&audma1 0x76>;
569                         dma-names = "rx", "tx", "rxu", "txu";
570                 };
571                 ssi7: ssi-7 {
572                         interrupts = <0 377 IRQ_TYPE_LEVEL_HIGH>;
573                         dmas = <&audma0 0x0f>, <&audma1 0x10>, <&audma0 0x79>, <&audma1 0x7a>;
574                         dma-names = "rx", "tx", "rxu", "txu";
575                 };
576                 ssi8: ssi-8 {
577                         interrupts = <0 378 IRQ_TYPE_LEVEL_HIGH>;
578                         dmas = <&audma0 0x11>, <&audma1 0x12>, <&audma0 0x7b>, <&audma1 0x7c>;
579                         dma-names = "rx", "tx", "rxu", "txu";
580                 };
581                 ssi9: ssi-9 {
582                         interrupts = <0 379 IRQ_TYPE_LEVEL_HIGH>;
583                         dmas = <&audma0 0x13>, <&audma1 0x14>, <&audma0 0x7d>, <&audma1 0x7e>;
584                         dma-names = "rx", "tx", "rxu", "txu";
585                 };
586         };
587
588         rcar_sound,dai {
589                 dai0 {
590                         playback = <&ssi5 &src5>;
591                         capture  = <&ssi6>;
592                 };
593                 dai1 {
594                         playback = <&ssi3>;
595                 };
596                 dai2 {
597                         capture  = <&ssi4>;
598                 };
599                 dai3 {
600                         playback = <&ssi7>;
601                 };
602                 dai4 {
603                         capture  = <&ssi8>;
604                 };
605         };
606 };
607
608 =============================================
609 Example: simple sound card
610 =============================================
611
612         rsnd_ak4643: sound {
613                 compatible = "simple-audio-card";
614
615                 simple-audio-card,format = "left_j";
616                 simple-audio-card,bitclock-master = <&sndcodec>;
617                 simple-audio-card,frame-master = <&sndcodec>;
618
619                 sndcpu: simple-audio-card,cpu {
620                         sound-dai = <&rcar_sound>;
621                 };
622
623                 sndcodec: simple-audio-card,codec {
624                         sound-dai = <&ak4643>;
625                         clocks = <&audio_clock>;
626                 };
627         };
628
629 &rcar_sound {
630         pinctrl-0 = <&sound_pins &sound_clk_pins>;
631         pinctrl-names = "default";
632
633         /* Single DAI */
634         #sound-dai-cells = <0>;
635
636
637         rcar_sound,dai {
638                 dai0 {
639                         playback = <&ssi0 &src2 &dvc0>;
640                         capture  = <&ssi1 &src3 &dvc1>;
641                 };
642         };
643 };
644
645 &ssi1 {
646         shared-pin;
647 };
648
649 =============================================
650 Example: simple sound card for TDM
651 =============================================
652
653         rsnd_tdm: sound {
654                 compatible = "simple-audio-card";
655
656                 simple-audio-card,format = "left_j";
657                 simple-audio-card,bitclock-master = <&sndcodec>;
658                 simple-audio-card,frame-master = <&sndcodec>;
659
660                 sndcpu: simple-audio-card,cpu {
661                         sound-dai = <&rcar_sound>;
662                         dai-tdm-slot-num = <6>;
663                 };
664
665                 sndcodec: simple-audio-card,codec {
666                         sound-dai = <&xxx>;
667                 };
668         };
669
670 =============================================
671 Example: simple sound card for Multi channel
672 =============================================
673
674 &rcar_sound {
675         pinctrl-0 = <&sound_pins &sound_clk_pins>;
676         pinctrl-names = "default";
677
678         /* Single DAI */
679         #sound-dai-cells = <0>;
680
681
682         rcar_sound,dai {
683                 dai0 {
684                         playback = <&ssi0 &ssi1 &ssi2 &src0 &dvc0>;
685                 };
686         };
687 };