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1 // SPDX-License-Identifier: GPL-2.0
2 //
3 // Renesas R-Car SSIU/SSI support
4 //
5 // Copyright (C) 2013 Renesas Solutions Corp.
6 // Kuninori Morimoto <kuninori.morimoto.gx@renesas.com>
7 //
8 // Based on fsi.c
9 // Kuninori Morimoto <morimoto.kuninori@renesas.com>
10 
11 /*
12  * you can enable below define if you don't need
13  * SSI interrupt status debug message when debugging
14  * see rsnd_dbg_irq_status()
15  *
16  * #define RSND_DEBUG_NO_IRQ_STATUS 1
17  */
18 
19 #include <sound/simple_card_utils.h>
20 #include <linux/delay.h>
21 #include "rsnd.h"
22 #define RSND_SSI_NAME_SIZE 16
23 
24 /*
25  * SSICR
26  */
27 #define	FORCE		(1 << 31)	/* Fixed */
28 #define	DMEN		(1 << 28)	/* DMA Enable */
29 #define	UIEN		(1 << 27)	/* Underflow Interrupt Enable */
30 #define	OIEN		(1 << 26)	/* Overflow Interrupt Enable */
31 #define	IIEN		(1 << 25)	/* Idle Mode Interrupt Enable */
32 #define	DIEN		(1 << 24)	/* Data Interrupt Enable */
33 #define	CHNL_4		(1 << 22)	/* Channels */
34 #define	CHNL_6		(2 << 22)	/* Channels */
35 #define	CHNL_8		(3 << 22)	/* Channels */
36 #define DWL_MASK	(7 << 19)	/* Data Word Length mask */
37 #define	DWL_8		(0 << 19)	/* Data Word Length */
38 #define	DWL_16		(1 << 19)	/* Data Word Length */
39 #define	DWL_18		(2 << 19)	/* Data Word Length */
40 #define	DWL_20		(3 << 19)	/* Data Word Length */
41 #define	DWL_22		(4 << 19)	/* Data Word Length */
42 #define	DWL_24		(5 << 19)	/* Data Word Length */
43 #define	DWL_32		(6 << 19)	/* Data Word Length */
44 
45 /*
46  * System word length
47  */
48 #define	SWL_16		(1 << 16)	/* R/W System Word Length */
49 #define	SWL_24		(2 << 16)	/* R/W System Word Length */
50 #define	SWL_32		(3 << 16)	/* R/W System Word Length */
51 
52 #define	SCKD		(1 << 15)	/* Serial Bit Clock Direction */
53 #define	SWSD		(1 << 14)	/* Serial WS Direction */
54 #define	SCKP		(1 << 13)	/* Serial Bit Clock Polarity */
55 #define	SWSP		(1 << 12)	/* Serial WS Polarity */
56 #define	SDTA		(1 << 10)	/* Serial Data Alignment */
57 #define	PDTA		(1 <<  9)	/* Parallel Data Alignment */
58 #define	DEL		(1 <<  8)	/* Serial Data Delay */
59 #define	CKDV(v)		(v <<  4)	/* Serial Clock Division Ratio */
60 #define	TRMD		(1 <<  1)	/* Transmit/Receive Mode Select */
61 #define	EN		(1 <<  0)	/* SSI Module Enable */
62 
63 /*
64  * SSISR
65  */
66 #define	UIRQ		(1 << 27)	/* Underflow Error Interrupt Status */
67 #define	OIRQ		(1 << 26)	/* Overflow Error Interrupt Status */
68 #define	IIRQ		(1 << 25)	/* Idle Mode Interrupt Status */
69 #define	DIRQ		(1 << 24)	/* Data Interrupt Status Flag */
70 
71 /*
72  * SSIWSR
73  */
74 #define CONT		(1 << 8)	/* WS Continue Function */
75 #define WS_MODE		(1 << 0)	/* WS Mode */
76 
77 #define SSI_NAME "ssi"
78 
79 struct rsnd_ssi {
80 	struct rsnd_mod mod;
81 
82 	u32 flags;
83 	u32 cr_own;
84 	u32 cr_clk;
85 	u32 cr_mode;
86 	u32 cr_en;
87 	u32 wsr;
88 	int chan;
89 	int rate;
90 	int irq;
91 	unsigned int usrcnt;
92 
93 	/* for PIO */
94 	int byte_pos;
95 	int byte_per_period;
96 	int next_period_byte;
97 };
98 
99 /* flags */
100 #define RSND_SSI_CLK_PIN_SHARE		(1 << 0)
101 #define RSND_SSI_NO_BUSIF		(1 << 1) /* SSI+DMA without BUSIF */
102 #define RSND_SSI_PROBED			(1 << 2)
103 
104 #define for_each_rsnd_ssi(pos, priv, i)					\
105 	for (i = 0;							\
106 	     (i < rsnd_ssi_nr(priv)) &&					\
107 		((pos) = ((struct rsnd_ssi *)(priv)->ssi + i));		\
108 	     i++)
109 
110 #define rsnd_ssi_get(priv, id) ((struct rsnd_ssi *)(priv->ssi) + id)
111 #define rsnd_ssi_nr(priv) ((priv)->ssi_nr)
112 #define rsnd_mod_to_ssi(_mod) container_of((_mod), struct rsnd_ssi, mod)
113 #define rsnd_ssi_is_parent(ssi, io) ((ssi) == rsnd_io_to_mod_ssip(io))
114 #define rsnd_ssi_is_multi_slave(mod, io) \
115 	(rsnd_ssi_multi_slaves(io) & (1 << rsnd_mod_id(mod)))
116 #define rsnd_ssi_is_run_mods(mod, io) \
117 	(rsnd_ssi_run_mods(io) & (1 << rsnd_mod_id(mod)))
118 #define rsnd_ssi_can_output_clk(mod) (!__rsnd_ssi_is_pin_sharing(mod))
119 
120 static int rsnd_ssi_is_dma_mode(struct rsnd_mod *mod);
121 
rsnd_ssi_use_busif(struct rsnd_dai_stream * io)122 int rsnd_ssi_use_busif(struct rsnd_dai_stream *io)
123 {
124 	struct rsnd_mod *mod = rsnd_io_to_mod_ssi(io);
125 	struct rsnd_ssi *ssi = rsnd_mod_to_ssi(mod);
126 	int use_busif = 0;
127 
128 	if (!rsnd_ssi_is_dma_mode(mod))
129 		return 0;
130 
131 	if (!(rsnd_flags_has(ssi, RSND_SSI_NO_BUSIF)))
132 		use_busif = 1;
133 	if (rsnd_io_to_mod_src(io))
134 		use_busif = 1;
135 
136 	return use_busif;
137 }
138 
rsnd_ssi_status_clear(struct rsnd_mod * mod)139 static void rsnd_ssi_status_clear(struct rsnd_mod *mod)
140 {
141 	rsnd_mod_write(mod, SSISR, 0);
142 }
143 
rsnd_ssi_status_get(struct rsnd_mod * mod)144 static u32 rsnd_ssi_status_get(struct rsnd_mod *mod)
145 {
146 	return rsnd_mod_read(mod, SSISR);
147 }
148 
rsnd_ssi_status_check(struct rsnd_mod * mod,u32 bit)149 static void rsnd_ssi_status_check(struct rsnd_mod *mod,
150 				  u32 bit)
151 {
152 	struct rsnd_priv *priv = rsnd_mod_to_priv(mod);
153 	struct device *dev = rsnd_priv_to_dev(priv);
154 	u32 status;
155 	int i;
156 
157 	for (i = 0; i < 1024; i++) {
158 		status = rsnd_ssi_status_get(mod);
159 		if (status & bit)
160 			return;
161 
162 		udelay(5);
163 	}
164 
165 	dev_warn(dev, "%s status check failed\n", rsnd_mod_name(mod));
166 }
167 
rsnd_ssi_multi_slaves(struct rsnd_dai_stream * io)168 static u32 rsnd_ssi_multi_slaves(struct rsnd_dai_stream *io)
169 {
170 	struct rsnd_mod *mod;
171 	enum rsnd_mod_type types[] = {
172 		RSND_MOD_SSIM1,
173 		RSND_MOD_SSIM2,
174 		RSND_MOD_SSIM3,
175 	};
176 	int i, mask;
177 
178 	mask = 0;
179 	for (i = 0; i < ARRAY_SIZE(types); i++) {
180 		mod = rsnd_io_to_mod(io, types[i]);
181 		if (!mod)
182 			continue;
183 
184 		mask |= 1 << rsnd_mod_id(mod);
185 	}
186 
187 	return mask;
188 }
189 
rsnd_ssi_run_mods(struct rsnd_dai_stream * io)190 static u32 rsnd_ssi_run_mods(struct rsnd_dai_stream *io)
191 {
192 	struct rsnd_mod *ssi_mod = rsnd_io_to_mod_ssi(io);
193 	struct rsnd_mod *ssi_parent_mod = rsnd_io_to_mod_ssip(io);
194 	u32 mods;
195 
196 	mods = rsnd_ssi_multi_slaves_runtime(io) |
197 		1 << rsnd_mod_id(ssi_mod);
198 
199 	if (ssi_parent_mod)
200 		mods |= 1 << rsnd_mod_id(ssi_parent_mod);
201 
202 	return mods;
203 }
204 
rsnd_ssi_multi_slaves_runtime(struct rsnd_dai_stream * io)205 u32 rsnd_ssi_multi_slaves_runtime(struct rsnd_dai_stream *io)
206 {
207 	if (rsnd_runtime_is_multi_ssi(io))
208 		return rsnd_ssi_multi_slaves(io);
209 
210 	return 0;
211 }
212 
rsnd_rdai_width_to_swl(struct rsnd_dai * rdai)213 static u32 rsnd_rdai_width_to_swl(struct rsnd_dai *rdai)
214 {
215 	struct rsnd_priv *priv = rsnd_rdai_to_priv(rdai);
216 	struct device *dev = rsnd_priv_to_dev(priv);
217 	int width = rsnd_rdai_width_get(rdai);
218 
219 	switch (width) {
220 	case 32: return SWL_32;
221 	case 24: return SWL_24;
222 	case 16: return SWL_16;
223 	}
224 
225 	dev_err(dev, "unsupported slot width value: %d\n", width);
226 	return 0;
227 }
228 
rsnd_ssi_clk_query(struct rsnd_dai * rdai,int param1,int param2,int * idx)229 unsigned int rsnd_ssi_clk_query(struct rsnd_dai *rdai,
230 		       int param1, int param2, int *idx)
231 {
232 	struct rsnd_priv *priv = rsnd_rdai_to_priv(rdai);
233 	int ssi_clk_mul_table[] = {
234 		1, 2, 4, 8, 16, 6, 12,
235 	};
236 	int j, ret;
237 	unsigned int main_rate;
238 	int width = rsnd_rdai_width_get(rdai);
239 
240 	for (j = 0; j < ARRAY_SIZE(ssi_clk_mul_table); j++) {
241 
242 		/*
243 		 * It will set SSIWSR.CONT here, but SSICR.CKDV = 000
244 		 * with it is not allowed. (SSIWSR.WS_MODE with
245 		 * SSICR.CKDV = 000 is not allowed either).
246 		 * Skip it. See SSICR.CKDV
247 		 */
248 		if (j == 0)
249 			continue;
250 
251 		main_rate = width * param1 * param2 * ssi_clk_mul_table[j];
252 
253 		ret = rsnd_adg_clk_query(priv, main_rate);
254 		if (ret < 0)
255 			continue;
256 
257 		if (idx)
258 			*idx = j;
259 
260 		return main_rate;
261 	}
262 
263 	return 0;
264 }
265 
rsnd_ssi_master_clk_start(struct rsnd_mod * mod,struct rsnd_dai_stream * io)266 static int rsnd_ssi_master_clk_start(struct rsnd_mod *mod,
267 				     struct rsnd_dai_stream *io)
268 {
269 	struct rsnd_priv *priv = rsnd_io_to_priv(io);
270 	struct device *dev = rsnd_priv_to_dev(priv);
271 	struct rsnd_dai *rdai = rsnd_io_to_rdai(io);
272 	struct rsnd_ssi *ssi = rsnd_mod_to_ssi(mod);
273 	int chan = rsnd_runtime_channel_for_ssi(io);
274 	int idx, ret;
275 	unsigned int main_rate;
276 	unsigned int rate = rsnd_io_is_play(io) ?
277 		rsnd_src_get_out_rate(priv, io) :
278 		rsnd_src_get_in_rate(priv, io);
279 
280 	if (!rsnd_rdai_is_clk_master(rdai))
281 		return 0;
282 
283 	if (!rsnd_ssi_can_output_clk(mod))
284 		return 0;
285 
286 	if (rsnd_ssi_is_multi_slave(mod, io))
287 		return 0;
288 
289 	if (rsnd_runtime_is_tdm_split(io))
290 		chan = rsnd_io_converted_chan(io);
291 
292 	chan = rsnd_channel_normalization(chan);
293 
294 	if (ssi->usrcnt > 0) {
295 		if (ssi->rate != rate) {
296 			dev_err(dev, "SSI parent/child should use same rate\n");
297 			return -EINVAL;
298 		}
299 
300 		if (ssi->chan != chan) {
301 			dev_err(dev, "SSI parent/child should use same chan\n");
302 			return -EINVAL;
303 		}
304 
305 		return 0;
306 	}
307 
308 	main_rate = rsnd_ssi_clk_query(rdai, rate, chan, &idx);
309 	if (!main_rate) {
310 		dev_err(dev, "unsupported clock rate\n");
311 		return -EIO;
312 	}
313 
314 	ret = rsnd_adg_ssi_clk_try_start(mod, main_rate);
315 	if (ret < 0)
316 		return ret;
317 
318 	/*
319 	 * SSI clock will be output contiguously
320 	 * by below settings.
321 	 * This means, rsnd_ssi_master_clk_start()
322 	 * and rsnd_ssi_register_setup() are necessary
323 	 * for SSI parent
324 	 *
325 	 * SSICR  : FORCE, SCKD, SWSD
326 	 * SSIWSR : CONT
327 	 */
328 	ssi->cr_clk = FORCE | rsnd_rdai_width_to_swl(rdai) |
329 			SCKD | SWSD | CKDV(idx);
330 	ssi->wsr = CONT;
331 	ssi->rate = rate;
332 	ssi->chan = chan;
333 
334 	dev_dbg(dev, "%s outputs %d chan %u Hz\n",
335 		rsnd_mod_name(mod), chan, rate);
336 
337 	return 0;
338 }
339 
rsnd_ssi_master_clk_stop(struct rsnd_mod * mod,struct rsnd_dai_stream * io)340 static void rsnd_ssi_master_clk_stop(struct rsnd_mod *mod,
341 				     struct rsnd_dai_stream *io)
342 {
343 	struct rsnd_dai *rdai = rsnd_io_to_rdai(io);
344 	struct rsnd_ssi *ssi = rsnd_mod_to_ssi(mod);
345 
346 	if (!rsnd_rdai_is_clk_master(rdai))
347 		return;
348 
349 	if (!rsnd_ssi_can_output_clk(mod))
350 		return;
351 
352 	if (ssi->usrcnt > 1)
353 		return;
354 
355 	ssi->cr_clk	= 0;
356 	ssi->rate	= 0;
357 	ssi->chan	= 0;
358 
359 	rsnd_adg_ssi_clk_stop(mod);
360 }
361 
rsnd_ssi_config_init(struct rsnd_mod * mod,struct rsnd_dai_stream * io)362 static void rsnd_ssi_config_init(struct rsnd_mod *mod,
363 				struct rsnd_dai_stream *io)
364 {
365 	struct rsnd_dai *rdai = rsnd_io_to_rdai(io);
366 	struct rsnd_priv *priv = rsnd_rdai_to_priv(rdai);
367 	struct device *dev = rsnd_priv_to_dev(priv);
368 	struct snd_pcm_runtime *runtime = rsnd_io_to_runtime(io);
369 	struct rsnd_ssi *ssi = rsnd_mod_to_ssi(mod);
370 	u32 cr_own	= ssi->cr_own;
371 	u32 cr_mode	= ssi->cr_mode;
372 	u32 wsr		= ssi->wsr;
373 	int width;
374 	int is_tdm, is_tdm_split;
375 	int id = rsnd_mod_id(mod);
376 	int i;
377 	u32 sys_int_enable = 0;
378 
379 	is_tdm		= rsnd_runtime_is_tdm(io);
380 	is_tdm_split	= rsnd_runtime_is_tdm_split(io);
381 
382 	if (is_tdm)
383 		dev_dbg(dev, "TDM mode\n");
384 	if (is_tdm_split)
385 		dev_dbg(dev, "TDM Split mode\n");
386 
387 	cr_own |= FORCE | rsnd_rdai_width_to_swl(rdai);
388 
389 	if (rdai->bit_clk_inv)
390 		cr_own |= SCKP;
391 	if (rdai->frm_clk_inv && !is_tdm)
392 		cr_own |= SWSP;
393 	if (rdai->data_alignment)
394 		cr_own |= SDTA;
395 	if (rdai->sys_delay)
396 		cr_own |= DEL;
397 
398 	/*
399 	 * TDM Mode
400 	 * see
401 	 *	rsnd_ssiu_init_gen2()
402 	 */
403 	wsr = ssi->wsr;
404 	if (is_tdm || is_tdm_split) {
405 		wsr	|= WS_MODE;
406 		cr_own	|= CHNL_8;
407 	}
408 
409 	/*
410 	 * We shouldn't exchange SWSP after running.
411 	 * This means, parent needs to care it.
412 	 */
413 	if (rsnd_ssi_is_parent(mod, io))
414 		goto init_end;
415 
416 	if (rsnd_io_is_play(io))
417 		cr_own |= TRMD;
418 
419 	cr_own &= ~DWL_MASK;
420 	width = snd_pcm_format_width(runtime->format);
421 	if (is_tdm_split) {
422 		/*
423 		 * The SWL and DWL bits in SSICR should be fixed at 32-bit
424 		 * setting when TDM split mode.
425 		 * see datasheet
426 		 *	Operation :: TDM Format Split Function (TDM Split Mode)
427 		 */
428 		width = 32;
429 	}
430 
431 	switch (width) {
432 	case 8:
433 		cr_own |= DWL_8;
434 		break;
435 	case 16:
436 		cr_own |= DWL_16;
437 		break;
438 	case 24:
439 		cr_own |= DWL_24;
440 		break;
441 	case 32:
442 		cr_own |= DWL_32;
443 		break;
444 	}
445 
446 	if (rsnd_ssi_is_dma_mode(mod)) {
447 		cr_mode = UIEN | OIEN |	/* over/under run */
448 			  DMEN;		/* DMA : enable DMA */
449 	} else {
450 		cr_mode = DIEN;		/* PIO : enable Data interrupt */
451 	}
452 
453 	/* enable busif buffer over/under run interrupt. */
454 	if (is_tdm || is_tdm_split) {
455 		switch (id) {
456 		case 0:
457 		case 1:
458 		case 2:
459 		case 3:
460 		case 4:
461 			for (i = 0; i < 4; i++) {
462 				sys_int_enable = rsnd_mod_read(mod,
463 					SSI_SYS_INT_ENABLE(i * 2));
464 				sys_int_enable |= 0xf << (id * 4);
465 				rsnd_mod_write(mod,
466 					       SSI_SYS_INT_ENABLE(i * 2),
467 					       sys_int_enable);
468 			}
469 
470 			break;
471 		case 9:
472 			for (i = 0; i < 4; i++) {
473 				sys_int_enable = rsnd_mod_read(mod,
474 					SSI_SYS_INT_ENABLE((i * 2) + 1));
475 				sys_int_enable |= 0xf << 4;
476 				rsnd_mod_write(mod,
477 					       SSI_SYS_INT_ENABLE((i * 2) + 1),
478 					       sys_int_enable);
479 			}
480 
481 			break;
482 		}
483 	}
484 
485 init_end:
486 	ssi->cr_own	= cr_own;
487 	ssi->cr_mode	= cr_mode;
488 	ssi->wsr	= wsr;
489 }
490 
rsnd_ssi_register_setup(struct rsnd_mod * mod)491 static void rsnd_ssi_register_setup(struct rsnd_mod *mod)
492 {
493 	struct rsnd_ssi *ssi = rsnd_mod_to_ssi(mod);
494 
495 	rsnd_mod_write(mod, SSIWSR,	ssi->wsr);
496 	rsnd_mod_write(mod, SSICR,	ssi->cr_own	|
497 					ssi->cr_clk	|
498 					ssi->cr_mode	|
499 					ssi->cr_en);
500 }
501 
502 /*
503  *	SSI mod common functions
504  */
rsnd_ssi_init(struct rsnd_mod * mod,struct rsnd_dai_stream * io,struct rsnd_priv * priv)505 static int rsnd_ssi_init(struct rsnd_mod *mod,
506 			 struct rsnd_dai_stream *io,
507 			 struct rsnd_priv *priv)
508 {
509 	struct rsnd_ssi *ssi = rsnd_mod_to_ssi(mod);
510 	int ret;
511 
512 	if (!rsnd_ssi_is_run_mods(mod, io))
513 		return 0;
514 
515 	ret = rsnd_ssi_master_clk_start(mod, io);
516 	if (ret < 0)
517 		return ret;
518 
519 	ssi->usrcnt++;
520 
521 	ret = rsnd_mod_power_on(mod);
522 	if (ret < 0)
523 		return ret;
524 
525 	rsnd_ssi_config_init(mod, io);
526 
527 	rsnd_ssi_register_setup(mod);
528 
529 	/* clear error status */
530 	rsnd_ssi_status_clear(mod);
531 
532 	return 0;
533 }
534 
rsnd_ssi_quit(struct rsnd_mod * mod,struct rsnd_dai_stream * io,struct rsnd_priv * priv)535 static int rsnd_ssi_quit(struct rsnd_mod *mod,
536 			 struct rsnd_dai_stream *io,
537 			 struct rsnd_priv *priv)
538 {
539 	struct rsnd_ssi *ssi = rsnd_mod_to_ssi(mod);
540 	struct device *dev = rsnd_priv_to_dev(priv);
541 	int is_tdm, is_tdm_split;
542 	int id = rsnd_mod_id(mod);
543 	int i;
544 	u32 sys_int_enable = 0;
545 
546 	is_tdm		= rsnd_runtime_is_tdm(io);
547 	is_tdm_split	= rsnd_runtime_is_tdm_split(io);
548 
549 	if (!rsnd_ssi_is_run_mods(mod, io))
550 		return 0;
551 
552 	if (!ssi->usrcnt) {
553 		dev_err(dev, "%s usrcnt error\n", rsnd_mod_name(mod));
554 		return -EIO;
555 	}
556 
557 	rsnd_ssi_master_clk_stop(mod, io);
558 
559 	rsnd_mod_power_off(mod);
560 
561 	ssi->usrcnt--;
562 
563 	if (!ssi->usrcnt) {
564 		ssi->cr_own	= 0;
565 		ssi->cr_mode	= 0;
566 		ssi->wsr	= 0;
567 	}
568 
569 	/* disable busif buffer over/under run interrupt. */
570 	if (is_tdm || is_tdm_split) {
571 		switch (id) {
572 		case 0:
573 		case 1:
574 		case 2:
575 		case 3:
576 		case 4:
577 			for (i = 0; i < 4; i++) {
578 				sys_int_enable = rsnd_mod_read(mod,
579 						SSI_SYS_INT_ENABLE(i * 2));
580 				sys_int_enable &= ~(0xf << (id * 4));
581 				rsnd_mod_write(mod,
582 					       SSI_SYS_INT_ENABLE(i * 2),
583 					       sys_int_enable);
584 			}
585 
586 			break;
587 		case 9:
588 			for (i = 0; i < 4; i++) {
589 				sys_int_enable = rsnd_mod_read(mod,
590 					SSI_SYS_INT_ENABLE((i * 2) + 1));
591 				sys_int_enable &= ~(0xf << 4);
592 				rsnd_mod_write(mod,
593 					       SSI_SYS_INT_ENABLE((i * 2) + 1),
594 					       sys_int_enable);
595 			}
596 
597 			break;
598 		}
599 	}
600 
601 	return 0;
602 }
603 
rsnd_ssi_hw_params(struct rsnd_mod * mod,struct rsnd_dai_stream * io,struct snd_pcm_substream * substream,struct snd_pcm_hw_params * params)604 static int rsnd_ssi_hw_params(struct rsnd_mod *mod,
605 			      struct rsnd_dai_stream *io,
606 			      struct snd_pcm_substream *substream,
607 			      struct snd_pcm_hw_params *params)
608 {
609 	struct rsnd_dai *rdai = rsnd_io_to_rdai(io);
610 	unsigned int fmt_width = snd_pcm_format_width(params_format(params));
611 
612 	if (fmt_width > rdai->chan_width) {
613 		struct rsnd_priv *priv = rsnd_io_to_priv(io);
614 		struct device *dev = rsnd_priv_to_dev(priv);
615 
616 		dev_err(dev, "invalid combination of slot-width and format-data-width\n");
617 		return -EINVAL;
618 	}
619 
620 	return 0;
621 }
622 
rsnd_ssi_start(struct rsnd_mod * mod,struct rsnd_dai_stream * io,struct rsnd_priv * priv)623 static int rsnd_ssi_start(struct rsnd_mod *mod,
624 			  struct rsnd_dai_stream *io,
625 			  struct rsnd_priv *priv)
626 {
627 	struct rsnd_ssi *ssi = rsnd_mod_to_ssi(mod);
628 
629 	if (!rsnd_ssi_is_run_mods(mod, io))
630 		return 0;
631 
632 	/*
633 	 * EN will be set via SSIU :: SSI_CONTROL
634 	 * if Multi channel mode
635 	 */
636 	if (rsnd_ssi_multi_slaves_runtime(io))
637 		return 0;
638 
639 	/*
640 	 * EN is for data output.
641 	 * SSI parent EN is not needed.
642 	 */
643 	if (rsnd_ssi_is_parent(mod, io))
644 		return 0;
645 
646 	ssi->cr_en = EN;
647 
648 	rsnd_mod_write(mod, SSICR,	ssi->cr_own	|
649 					ssi->cr_clk	|
650 					ssi->cr_mode	|
651 					ssi->cr_en);
652 
653 	return 0;
654 }
655 
rsnd_ssi_stop(struct rsnd_mod * mod,struct rsnd_dai_stream * io,struct rsnd_priv * priv)656 static int rsnd_ssi_stop(struct rsnd_mod *mod,
657 			 struct rsnd_dai_stream *io,
658 			 struct rsnd_priv *priv)
659 {
660 	struct rsnd_ssi *ssi = rsnd_mod_to_ssi(mod);
661 	u32 cr;
662 
663 	if (!rsnd_ssi_is_run_mods(mod, io))
664 		return 0;
665 
666 	if (rsnd_ssi_is_parent(mod, io))
667 		return 0;
668 
669 	cr  =	ssi->cr_own	|
670 		ssi->cr_clk;
671 
672 	/*
673 	 * disable all IRQ,
674 	 * Playback: Wait all data was sent
675 	 * Capture:  It might not receave data. Do nothing
676 	 */
677 	if (rsnd_io_is_play(io)) {
678 		rsnd_mod_write(mod, SSICR, cr | ssi->cr_en);
679 		rsnd_ssi_status_check(mod, DIRQ);
680 	}
681 
682 	/* In multi-SSI mode, stop is performed by setting ssi0129 in
683 	 * SSI_CONTROL to 0 (in rsnd_ssio_stop_gen2). Do nothing here.
684 	 */
685 	if (rsnd_ssi_multi_slaves_runtime(io))
686 		return 0;
687 
688 	/*
689 	 * disable SSI,
690 	 * and, wait idle state
691 	 */
692 	rsnd_mod_write(mod, SSICR, cr);	/* disabled all */
693 	rsnd_ssi_status_check(mod, IIRQ);
694 
695 	ssi->cr_en = 0;
696 
697 	return 0;
698 }
699 
rsnd_ssi_irq(struct rsnd_mod * mod,struct rsnd_dai_stream * io,struct rsnd_priv * priv,int enable)700 static int rsnd_ssi_irq(struct rsnd_mod *mod,
701 			struct rsnd_dai_stream *io,
702 			struct rsnd_priv *priv,
703 			int enable)
704 {
705 	u32 val = 0;
706 	int is_tdm, is_tdm_split;
707 	int id = rsnd_mod_id(mod);
708 
709 	is_tdm		= rsnd_runtime_is_tdm(io);
710 	is_tdm_split	= rsnd_runtime_is_tdm_split(io);
711 
712 	if (rsnd_is_gen1(priv))
713 		return 0;
714 
715 	if (rsnd_ssi_is_parent(mod, io))
716 		return 0;
717 
718 	if (!rsnd_ssi_is_run_mods(mod, io))
719 		return 0;
720 
721 	if (enable)
722 		val = rsnd_ssi_is_dma_mode(mod) ? 0x0e000000 : 0x0f000000;
723 
724 	if (is_tdm || is_tdm_split) {
725 		switch (id) {
726 		case 0:
727 		case 1:
728 		case 2:
729 		case 3:
730 		case 4:
731 		case 9:
732 			val |= 0x0000ff00;
733 			break;
734 		}
735 	}
736 
737 	rsnd_mod_write(mod, SSI_INT_ENABLE, val);
738 
739 	return 0;
740 }
741 
742 static bool rsnd_ssi_pio_interrupt(struct rsnd_mod *mod,
743 				   struct rsnd_dai_stream *io);
__rsnd_ssi_interrupt(struct rsnd_mod * mod,struct rsnd_dai_stream * io)744 static void __rsnd_ssi_interrupt(struct rsnd_mod *mod,
745 				 struct rsnd_dai_stream *io)
746 {
747 	struct rsnd_priv *priv = rsnd_mod_to_priv(mod);
748 	struct device *dev = rsnd_priv_to_dev(priv);
749 	int is_dma = rsnd_ssi_is_dma_mode(mod);
750 	u32 status;
751 	bool elapsed = false;
752 	bool stop = false;
753 	int id = rsnd_mod_id(mod);
754 	int i;
755 	int is_tdm, is_tdm_split;
756 
757 	is_tdm		= rsnd_runtime_is_tdm(io);
758 	is_tdm_split	= rsnd_runtime_is_tdm_split(io);
759 
760 	spin_lock(&priv->lock);
761 
762 	/* ignore all cases if not working */
763 	if (!rsnd_io_is_working(io))
764 		goto rsnd_ssi_interrupt_out;
765 
766 	status = rsnd_ssi_status_get(mod);
767 
768 	/* PIO only */
769 	if (!is_dma && (status & DIRQ))
770 		elapsed = rsnd_ssi_pio_interrupt(mod, io);
771 
772 	/* DMA only */
773 	if (is_dma && (status & (UIRQ | OIRQ))) {
774 		rsnd_dbg_irq_status(dev, "%s err status : 0x%08x\n",
775 			rsnd_mod_name(mod), status);
776 
777 		stop = true;
778 	}
779 
780 	status = 0;
781 
782 	if (is_tdm || is_tdm_split) {
783 		switch (id) {
784 		case 0:
785 		case 1:
786 		case 2:
787 		case 3:
788 		case 4:
789 			for (i = 0; i < 4; i++) {
790 				status = rsnd_mod_read(mod,
791 						       SSI_SYS_STATUS(i * 2));
792 				status &= 0xf << (id * 4);
793 
794 				if (status) {
795 					rsnd_dbg_irq_status(dev,
796 						"%s err status : 0x%08x\n",
797 						rsnd_mod_name(mod), status);
798 					rsnd_mod_write(mod,
799 						       SSI_SYS_STATUS(i * 2),
800 						       0xf << (id * 4));
801 					stop = true;
802 				}
803 			}
804 			break;
805 		case 9:
806 			for (i = 0; i < 4; i++) {
807 				status = rsnd_mod_read(mod,
808 						SSI_SYS_STATUS((i * 2) + 1));
809 				status &= 0xf << 4;
810 
811 				if (status) {
812 					rsnd_dbg_irq_status(dev,
813 						"%s err status : 0x%08x\n",
814 						rsnd_mod_name(mod), status);
815 					rsnd_mod_write(mod,
816 						SSI_SYS_STATUS((i * 2) + 1),
817 						0xf << 4);
818 					stop = true;
819 				}
820 			}
821 			break;
822 		}
823 	}
824 
825 	rsnd_ssi_status_clear(mod);
826 rsnd_ssi_interrupt_out:
827 	spin_unlock(&priv->lock);
828 
829 	if (elapsed)
830 		rsnd_dai_period_elapsed(io);
831 
832 	if (stop)
833 		snd_pcm_stop_xrun(io->substream);
834 
835 }
836 
rsnd_ssi_interrupt(int irq,void * data)837 static irqreturn_t rsnd_ssi_interrupt(int irq, void *data)
838 {
839 	struct rsnd_mod *mod = data;
840 
841 	rsnd_mod_interrupt(mod, __rsnd_ssi_interrupt);
842 
843 	return IRQ_HANDLED;
844 }
845 
rsnd_ssi_get_status(struct rsnd_mod * mod,struct rsnd_dai_stream * io,enum rsnd_mod_type type)846 static u32 *rsnd_ssi_get_status(struct rsnd_mod *mod,
847 				struct rsnd_dai_stream *io,
848 				enum rsnd_mod_type type)
849 {
850 	/*
851 	 * SSIP (= SSI parent) needs to be special, otherwise,
852 	 * 2nd SSI might doesn't start. see also rsnd_mod_call()
853 	 *
854 	 * We can't include parent SSI status on SSI, because we don't know
855 	 * how many SSI requests parent SSI. Thus, it is localed on "io" now.
856 	 * ex) trouble case
857 	 *	Playback: SSI0
858 	 *	Capture : SSI1 (needs SSI0)
859 	 *
860 	 * 1) start Capture  ->	SSI0/SSI1 are started.
861 	 * 2) start Playback ->	SSI0 doesn't work, because it is already
862 	 *			marked as "started" on 1)
863 	 *
864 	 * OTOH, using each mod's status is good for MUX case.
865 	 * It doesn't need to start in 2nd start
866 	 * ex)
867 	 *	IO-0: SRC0 -> CTU1 -+-> MUX -> DVC -> SSIU -> SSI0
868 	 *			    |
869 	 *	IO-1: SRC1 -> CTU2 -+
870 	 *
871 	 * 1) start IO-0 ->	start SSI0
872 	 * 2) start IO-1 ->	SSI0 doesn't need to start, because it is
873 	 *			already started on 1)
874 	 */
875 	if (type == RSND_MOD_SSIP)
876 		return &io->parent_ssi_status;
877 
878 	return rsnd_mod_get_status(mod, io, type);
879 }
880 
881 /*
882  *		SSI PIO
883  */
rsnd_ssi_parent_attach(struct rsnd_mod * mod,struct rsnd_dai_stream * io)884 static void rsnd_ssi_parent_attach(struct rsnd_mod *mod,
885 				   struct rsnd_dai_stream *io)
886 {
887 	struct rsnd_dai *rdai = rsnd_io_to_rdai(io);
888 	struct rsnd_priv *priv = rsnd_mod_to_priv(mod);
889 
890 	if (!__rsnd_ssi_is_pin_sharing(mod))
891 		return;
892 
893 	if (!rsnd_rdai_is_clk_master(rdai))
894 		return;
895 
896 	if (rsnd_ssi_is_multi_slave(mod, io))
897 		return;
898 
899 	switch (rsnd_mod_id(mod)) {
900 	case 1:
901 	case 2:
902 	case 9:
903 		rsnd_dai_connect(rsnd_ssi_mod_get(priv, 0), io, RSND_MOD_SSIP);
904 		break;
905 	case 4:
906 		rsnd_dai_connect(rsnd_ssi_mod_get(priv, 3), io, RSND_MOD_SSIP);
907 		break;
908 	case 8:
909 		rsnd_dai_connect(rsnd_ssi_mod_get(priv, 7), io, RSND_MOD_SSIP);
910 		break;
911 	}
912 }
913 
rsnd_ssi_pcm_new(struct rsnd_mod * mod,struct rsnd_dai_stream * io,struct snd_soc_pcm_runtime * rtd)914 static int rsnd_ssi_pcm_new(struct rsnd_mod *mod,
915 			    struct rsnd_dai_stream *io,
916 			    struct snd_soc_pcm_runtime *rtd)
917 {
918 	/*
919 	 * rsnd_rdai_is_clk_master() will be enabled after set_fmt,
920 	 * and, pcm_new will be called after it.
921 	 * This function reuse pcm_new at this point.
922 	 */
923 	rsnd_ssi_parent_attach(mod, io);
924 
925 	return 0;
926 }
927 
rsnd_ssi_common_probe(struct rsnd_mod * mod,struct rsnd_dai_stream * io,struct rsnd_priv * priv)928 static int rsnd_ssi_common_probe(struct rsnd_mod *mod,
929 				 struct rsnd_dai_stream *io,
930 				 struct rsnd_priv *priv)
931 {
932 	struct device *dev = rsnd_priv_to_dev(priv);
933 	struct rsnd_ssi *ssi = rsnd_mod_to_ssi(mod);
934 	int ret = 0;
935 
936 	/*
937 	 * SSIP/SSIU/IRQ are not needed on
938 	 * SSI Multi slaves
939 	 */
940 	if (rsnd_ssi_is_multi_slave(mod, io))
941 		return 0;
942 
943 	/*
944 	 * It can't judge ssi parent at this point
945 	 * see rsnd_ssi_pcm_new()
946 	 */
947 
948 	/*
949 	 * SSI might be called again as PIO fallback
950 	 * It is easy to manual handling for IRQ request/free
951 	 *
952 	 * OTOH, this function might be called many times if platform is
953 	 * using MIX. It needs xxx_attach() many times on xxx_probe().
954 	 * Because of it, we can't control .probe/.remove calling count by
955 	 * mod->status.
956 	 * But it don't need to call request_irq() many times.
957 	 * Let's control it by RSND_SSI_PROBED flag.
958 	 */
959 	if (!rsnd_flags_has(ssi, RSND_SSI_PROBED)) {
960 		ret = request_irq(ssi->irq,
961 				  rsnd_ssi_interrupt,
962 				  IRQF_SHARED,
963 				  dev_name(dev), mod);
964 
965 		rsnd_flags_set(ssi, RSND_SSI_PROBED);
966 	}
967 
968 	return ret;
969 }
970 
rsnd_ssi_common_remove(struct rsnd_mod * mod,struct rsnd_dai_stream * io,struct rsnd_priv * priv)971 static int rsnd_ssi_common_remove(struct rsnd_mod *mod,
972 				  struct rsnd_dai_stream *io,
973 				  struct rsnd_priv *priv)
974 {
975 	struct rsnd_ssi *ssi = rsnd_mod_to_ssi(mod);
976 	struct rsnd_mod *pure_ssi_mod = rsnd_io_to_mod_ssi(io);
977 
978 	/* Do nothing if non SSI (= SSI parent, multi SSI) mod */
979 	if (pure_ssi_mod != mod)
980 		return 0;
981 
982 	/* PIO will request IRQ again */
983 	if (rsnd_flags_has(ssi, RSND_SSI_PROBED)) {
984 		free_irq(ssi->irq, mod);
985 
986 		rsnd_flags_del(ssi, RSND_SSI_PROBED);
987 	}
988 
989 	return 0;
990 }
991 
992 /*
993  *	SSI PIO functions
994  */
rsnd_ssi_pio_interrupt(struct rsnd_mod * mod,struct rsnd_dai_stream * io)995 static bool rsnd_ssi_pio_interrupt(struct rsnd_mod *mod,
996 				   struct rsnd_dai_stream *io)
997 {
998 	struct snd_pcm_runtime *runtime = rsnd_io_to_runtime(io);
999 	struct rsnd_ssi *ssi = rsnd_mod_to_ssi(mod);
1000 	u32 *buf = (u32 *)(runtime->dma_area + ssi->byte_pos);
1001 	int shift = 0;
1002 	int byte_pos;
1003 	bool elapsed = false;
1004 
1005 	if (snd_pcm_format_width(runtime->format) == 24)
1006 		shift = 8;
1007 
1008 	/*
1009 	 * 8/16/32 data can be assesse to TDR/RDR register
1010 	 * directly as 32bit data
1011 	 * see rsnd_ssi_init()
1012 	 */
1013 	if (rsnd_io_is_play(io))
1014 		rsnd_mod_write(mod, SSITDR, (*buf) << shift);
1015 	else
1016 		*buf = (rsnd_mod_read(mod, SSIRDR) >> shift);
1017 
1018 	byte_pos = ssi->byte_pos + sizeof(*buf);
1019 
1020 	if (byte_pos >= ssi->next_period_byte) {
1021 		int period_pos = byte_pos / ssi->byte_per_period;
1022 
1023 		if (period_pos >= runtime->periods) {
1024 			byte_pos = 0;
1025 			period_pos = 0;
1026 		}
1027 
1028 		ssi->next_period_byte = (period_pos + 1) * ssi->byte_per_period;
1029 
1030 		elapsed = true;
1031 	}
1032 
1033 	WRITE_ONCE(ssi->byte_pos, byte_pos);
1034 
1035 	return elapsed;
1036 }
1037 
rsnd_ssi_pio_init(struct rsnd_mod * mod,struct rsnd_dai_stream * io,struct rsnd_priv * priv)1038 static int rsnd_ssi_pio_init(struct rsnd_mod *mod,
1039 			     struct rsnd_dai_stream *io,
1040 			     struct rsnd_priv *priv)
1041 {
1042 	struct snd_pcm_runtime *runtime = rsnd_io_to_runtime(io);
1043 	struct rsnd_ssi *ssi = rsnd_mod_to_ssi(mod);
1044 
1045 	if (!rsnd_ssi_is_parent(mod, io)) {
1046 		ssi->byte_pos		= 0;
1047 		ssi->byte_per_period	= runtime->period_size *
1048 					  runtime->channels *
1049 					  samples_to_bytes(runtime, 1);
1050 		ssi->next_period_byte	= ssi->byte_per_period;
1051 	}
1052 
1053 	return rsnd_ssi_init(mod, io, priv);
1054 }
1055 
rsnd_ssi_pio_pointer(struct rsnd_mod * mod,struct rsnd_dai_stream * io,snd_pcm_uframes_t * pointer)1056 static int rsnd_ssi_pio_pointer(struct rsnd_mod *mod,
1057 			    struct rsnd_dai_stream *io,
1058 			    snd_pcm_uframes_t *pointer)
1059 {
1060 	struct rsnd_ssi *ssi = rsnd_mod_to_ssi(mod);
1061 	struct snd_pcm_runtime *runtime = rsnd_io_to_runtime(io);
1062 
1063 	*pointer = bytes_to_frames(runtime, READ_ONCE(ssi->byte_pos));
1064 
1065 	return 0;
1066 }
1067 
1068 static struct rsnd_mod_ops rsnd_ssi_pio_ops = {
1069 	.name		= SSI_NAME,
1070 	.probe		= rsnd_ssi_common_probe,
1071 	.remove		= rsnd_ssi_common_remove,
1072 	.init		= rsnd_ssi_pio_init,
1073 	.quit		= rsnd_ssi_quit,
1074 	.start		= rsnd_ssi_start,
1075 	.stop		= rsnd_ssi_stop,
1076 	.irq		= rsnd_ssi_irq,
1077 	.pointer	= rsnd_ssi_pio_pointer,
1078 	.pcm_new	= rsnd_ssi_pcm_new,
1079 	.hw_params	= rsnd_ssi_hw_params,
1080 	.get_status	= rsnd_ssi_get_status,
1081 };
1082 
rsnd_ssi_dma_probe(struct rsnd_mod * mod,struct rsnd_dai_stream * io,struct rsnd_priv * priv)1083 static int rsnd_ssi_dma_probe(struct rsnd_mod *mod,
1084 			      struct rsnd_dai_stream *io,
1085 			      struct rsnd_priv *priv)
1086 {
1087 	int ret;
1088 
1089 	/*
1090 	 * SSIP/SSIU/IRQ/DMA are not needed on
1091 	 * SSI Multi slaves
1092 	 */
1093 	if (rsnd_ssi_is_multi_slave(mod, io))
1094 		return 0;
1095 
1096 	ret = rsnd_ssi_common_probe(mod, io, priv);
1097 	if (ret)
1098 		return ret;
1099 
1100 	/* SSI probe might be called many times in MUX multi path */
1101 	ret = rsnd_dma_attach(io, mod, &io->dma);
1102 
1103 	return ret;
1104 }
1105 
rsnd_ssi_fallback(struct rsnd_mod * mod,struct rsnd_dai_stream * io,struct rsnd_priv * priv)1106 static int rsnd_ssi_fallback(struct rsnd_mod *mod,
1107 			     struct rsnd_dai_stream *io,
1108 			     struct rsnd_priv *priv)
1109 {
1110 	struct device *dev = rsnd_priv_to_dev(priv);
1111 
1112 	/*
1113 	 * fallback to PIO
1114 	 *
1115 	 * SSI .probe might be called again.
1116 	 * see
1117 	 *	rsnd_rdai_continuance_probe()
1118 	 */
1119 	mod->ops = &rsnd_ssi_pio_ops;
1120 
1121 	dev_info(dev, "%s fallback to PIO mode\n", rsnd_mod_name(mod));
1122 
1123 	return 0;
1124 }
1125 
rsnd_ssi_dma_req(struct rsnd_dai_stream * io,struct rsnd_mod * mod)1126 static struct dma_chan *rsnd_ssi_dma_req(struct rsnd_dai_stream *io,
1127 					 struct rsnd_mod *mod)
1128 {
1129 	struct rsnd_priv *priv = rsnd_mod_to_priv(mod);
1130 	int is_play = rsnd_io_is_play(io);
1131 	char *name;
1132 
1133 	/*
1134 	 * It should use "rcar_sound,ssiu" on DT.
1135 	 * But, we need to keep compatibility for old version.
1136 	 *
1137 	 * If it has "rcar_sound.ssiu", it will be used.
1138 	 * If not, "rcar_sound.ssi" will be used.
1139 	 * see
1140 	 *	rsnd_ssiu_dma_req()
1141 	 *	rsnd_dma_of_path()
1142 	 */
1143 
1144 	if (rsnd_ssi_use_busif(io))
1145 		name = is_play ? "rxu" : "txu";
1146 	else
1147 		name = is_play ? "rx" : "tx";
1148 
1149 	return rsnd_dma_request_channel(rsnd_ssi_of_node(priv),
1150 					mod, name);
1151 }
1152 
1153 static struct rsnd_mod_ops rsnd_ssi_dma_ops = {
1154 	.name		= SSI_NAME,
1155 	.dma_req	= rsnd_ssi_dma_req,
1156 	.probe		= rsnd_ssi_dma_probe,
1157 	.remove		= rsnd_ssi_common_remove,
1158 	.init		= rsnd_ssi_init,
1159 	.quit		= rsnd_ssi_quit,
1160 	.start		= rsnd_ssi_start,
1161 	.stop		= rsnd_ssi_stop,
1162 	.irq		= rsnd_ssi_irq,
1163 	.pcm_new	= rsnd_ssi_pcm_new,
1164 	.fallback	= rsnd_ssi_fallback,
1165 	.hw_params	= rsnd_ssi_hw_params,
1166 	.get_status	= rsnd_ssi_get_status,
1167 };
1168 
rsnd_ssi_is_dma_mode(struct rsnd_mod * mod)1169 static int rsnd_ssi_is_dma_mode(struct rsnd_mod *mod)
1170 {
1171 	return mod->ops == &rsnd_ssi_dma_ops;
1172 }
1173 
1174 /*
1175  *		ssi mod function
1176  */
rsnd_ssi_connect(struct rsnd_mod * mod,struct rsnd_dai_stream * io)1177 static void rsnd_ssi_connect(struct rsnd_mod *mod,
1178 			     struct rsnd_dai_stream *io)
1179 {
1180 	struct rsnd_dai *rdai = rsnd_io_to_rdai(io);
1181 	enum rsnd_mod_type types[] = {
1182 		RSND_MOD_SSI,
1183 		RSND_MOD_SSIM1,
1184 		RSND_MOD_SSIM2,
1185 		RSND_MOD_SSIM3,
1186 	};
1187 	enum rsnd_mod_type type;
1188 	int i;
1189 
1190 	/* try SSI -> SSIM1 -> SSIM2 -> SSIM3 */
1191 	for (i = 0; i < ARRAY_SIZE(types); i++) {
1192 		type = types[i];
1193 		if (!rsnd_io_to_mod(io, type)) {
1194 			rsnd_dai_connect(mod, io, type);
1195 			rsnd_rdai_channels_set(rdai, (i + 1) * 2);
1196 			rsnd_rdai_ssi_lane_set(rdai, (i + 1));
1197 			return;
1198 		}
1199 	}
1200 }
1201 
rsnd_parse_connect_ssi(struct rsnd_dai * rdai,struct device_node * playback,struct device_node * capture)1202 void rsnd_parse_connect_ssi(struct rsnd_dai *rdai,
1203 			    struct device_node *playback,
1204 			    struct device_node *capture)
1205 {
1206 	struct rsnd_priv *priv = rsnd_rdai_to_priv(rdai);
1207 	struct device_node *node;
1208 	struct device_node *np;
1209 	struct rsnd_mod *mod;
1210 	int i;
1211 
1212 	node = rsnd_ssi_of_node(priv);
1213 	if (!node)
1214 		return;
1215 
1216 	i = 0;
1217 	for_each_child_of_node(node, np) {
1218 		mod = rsnd_ssi_mod_get(priv, i);
1219 		if (np == playback)
1220 			rsnd_ssi_connect(mod, &rdai->playback);
1221 		if (np == capture)
1222 			rsnd_ssi_connect(mod, &rdai->capture);
1223 		i++;
1224 	}
1225 
1226 	of_node_put(node);
1227 }
1228 
rsnd_ssi_mod_get(struct rsnd_priv * priv,int id)1229 struct rsnd_mod *rsnd_ssi_mod_get(struct rsnd_priv *priv, int id)
1230 {
1231 	if (WARN_ON(id < 0 || id >= rsnd_ssi_nr(priv)))
1232 		id = 0;
1233 
1234 	return rsnd_mod_get(rsnd_ssi_get(priv, id));
1235 }
1236 
__rsnd_ssi_is_pin_sharing(struct rsnd_mod * mod)1237 int __rsnd_ssi_is_pin_sharing(struct rsnd_mod *mod)
1238 {
1239 	if (!mod)
1240 		return 0;
1241 
1242 	return !!(rsnd_flags_has(rsnd_mod_to_ssi(mod), RSND_SSI_CLK_PIN_SHARE));
1243 }
1244 
rsnd_ssi_probe(struct rsnd_priv * priv)1245 int rsnd_ssi_probe(struct rsnd_priv *priv)
1246 {
1247 	struct device_node *node;
1248 	struct device_node *np;
1249 	struct device *dev = rsnd_priv_to_dev(priv);
1250 	struct rsnd_mod_ops *ops;
1251 	struct clk *clk;
1252 	struct rsnd_ssi *ssi;
1253 	char name[RSND_SSI_NAME_SIZE];
1254 	int i, nr, ret;
1255 
1256 	node = rsnd_ssi_of_node(priv);
1257 	if (!node)
1258 		return -EINVAL;
1259 
1260 	nr = of_get_child_count(node);
1261 	if (!nr) {
1262 		ret = -EINVAL;
1263 		goto rsnd_ssi_probe_done;
1264 	}
1265 
1266 	ssi	= devm_kcalloc(dev, nr, sizeof(*ssi), GFP_KERNEL);
1267 	if (!ssi) {
1268 		ret = -ENOMEM;
1269 		goto rsnd_ssi_probe_done;
1270 	}
1271 
1272 	priv->ssi	= ssi;
1273 	priv->ssi_nr	= nr;
1274 
1275 	i = 0;
1276 	for_each_child_of_node(node, np) {
1277 		if (!of_device_is_available(np))
1278 			goto skip;
1279 
1280 		ssi = rsnd_ssi_get(priv, i);
1281 
1282 		snprintf(name, RSND_SSI_NAME_SIZE, "%s.%d",
1283 			 SSI_NAME, i);
1284 
1285 		clk = devm_clk_get(dev, name);
1286 		if (IS_ERR(clk)) {
1287 			ret = PTR_ERR(clk);
1288 			of_node_put(np);
1289 			goto rsnd_ssi_probe_done;
1290 		}
1291 
1292 		if (of_get_property(np, "shared-pin", NULL))
1293 			rsnd_flags_set(ssi, RSND_SSI_CLK_PIN_SHARE);
1294 
1295 		if (of_get_property(np, "no-busif", NULL))
1296 			rsnd_flags_set(ssi, RSND_SSI_NO_BUSIF);
1297 
1298 		ssi->irq = irq_of_parse_and_map(np, 0);
1299 		if (!ssi->irq) {
1300 			ret = -EINVAL;
1301 			of_node_put(np);
1302 			goto rsnd_ssi_probe_done;
1303 		}
1304 
1305 		if (of_property_read_bool(np, "pio-transfer"))
1306 			ops = &rsnd_ssi_pio_ops;
1307 		else
1308 			ops = &rsnd_ssi_dma_ops;
1309 
1310 		ret = rsnd_mod_init(priv, rsnd_mod_get(ssi), ops, clk,
1311 				    RSND_MOD_SSI, i);
1312 		if (ret) {
1313 			of_node_put(np);
1314 			goto rsnd_ssi_probe_done;
1315 		}
1316 skip:
1317 		i++;
1318 	}
1319 
1320 	ret = 0;
1321 
1322 rsnd_ssi_probe_done:
1323 	of_node_put(node);
1324 
1325 	return ret;
1326 }
1327 
rsnd_ssi_remove(struct rsnd_priv * priv)1328 void rsnd_ssi_remove(struct rsnd_priv *priv)
1329 {
1330 	struct rsnd_ssi *ssi;
1331 	int i;
1332 
1333 	for_each_rsnd_ssi(ssi, priv, i) {
1334 		rsnd_mod_quit(rsnd_mod_get(ssi));
1335 	}
1336 }
1337