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Kuninori Morimotoa4d7d552009-08-20 21:01:05 +09001/*
2 * Fifo-attached Serial Interface (FSI) support for SH7724
3 *
4 * Copyright (C) 2009 Renesas Solutions Corp.
5 * Kuninori Morimoto <morimoto.kuninori@renesas.com>
6 *
7 * Based on ssi.c
8 * Copyright (c) 2007 Manuel Lauss <mano@roarinelk.homelinux.net>
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 version 2 as
12 * published by the Free Software Foundation.
13 */
14
15#include <linux/init.h>
16#include <linux/module.h>
17#include <linux/platform_device.h>
18#include <linux/delay.h>
19#include <linux/list.h>
Kuninori Morimoto785d1c42009-11-30 20:24:48 +090020#include <linux/pm_runtime.h>
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +090021#include <linux/io.h>
22#include <sound/core.h>
23#include <sound/pcm.h>
24#include <sound/initval.h>
25#include <sound/soc.h>
26#include <sound/pcm_params.h>
27#include <sound/sh_fsi.h>
28#include <asm/atomic.h>
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +090029
30#define DO_FMT 0x0000
31#define DOFF_CTL 0x0004
32#define DOFF_ST 0x0008
33#define DI_FMT 0x000C
34#define DIFF_CTL 0x0010
35#define DIFF_ST 0x0014
36#define CKG1 0x0018
37#define CKG2 0x001C
38#define DIDT 0x0020
39#define DODT 0x0024
40#define MUTE_ST 0x0028
41#define REG_END MUTE_ST
42
43#define INT_ST 0x0200
44#define IEMSK 0x0204
45#define IMSK 0x0208
46#define MUTE 0x020C
47#define CLK_RST 0x0210
48#define SOFT_RST 0x0214
49#define MREG_START INT_ST
50#define MREG_END SOFT_RST
51
52/* DO_FMT */
53/* DI_FMT */
54#define CR_FMT(param) ((param) << 4)
55# define CR_MONO 0x0
56# define CR_MONO_D 0x1
57# define CR_PCM 0x2
58# define CR_I2S 0x3
59# define CR_TDM 0x4
60# define CR_TDM_D 0x5
61
62/* DOFF_CTL */
63/* DIFF_CTL */
64#define IRQ_HALF 0x00100000
65#define FIFO_CLR 0x00000001
66
67/* DOFF_ST */
68#define ERR_OVER 0x00000010
69#define ERR_UNDER 0x00000001
70
71/* CLK_RST */
72#define B_CLK 0x00000010
73#define A_CLK 0x00000001
74
75/* INT_ST */
76#define INT_B_IN (1 << 12)
77#define INT_B_OUT (1 << 8)
78#define INT_A_IN (1 << 4)
79#define INT_A_OUT (1 << 0)
80
81#define FSI_RATES SNDRV_PCM_RATE_8000_96000
82
83#define FSI_FMTS (SNDRV_PCM_FMTBIT_S24_LE | SNDRV_PCM_FMTBIT_S16_LE)
84
85/************************************************************************
86
87
88 struct
89
90
91************************************************************************/
92struct fsi_priv {
93 void __iomem *base;
94 struct snd_pcm_substream *substream;
Kuninori Morimoto71f6e062009-12-02 15:11:08 +090095 struct fsi_master *master;
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +090096
97 int fifo_max;
98 int chan;
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +090099
100 int byte_offset;
101 int period_len;
102 int buffer_len;
103 int periods;
104};
105
106struct fsi_master {
107 void __iomem *base;
108 int irq;
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900109 struct fsi_priv fsia;
110 struct fsi_priv fsib;
111 struct sh_fsi_platform_info *info;
112};
113
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900114/************************************************************************
115
116
117 basic read write function
118
119
120************************************************************************/
121static int __fsi_reg_write(u32 reg, u32 data)
122{
123 /* valid data area is 24bit */
124 data &= 0x00ffffff;
125
126 return ctrl_outl(data, reg);
127}
128
129static u32 __fsi_reg_read(u32 reg)
130{
131 return ctrl_inl(reg);
132}
133
134static int __fsi_reg_mask_set(u32 reg, u32 mask, u32 data)
135{
136 u32 val = __fsi_reg_read(reg);
137
138 val &= ~mask;
139 val |= data & mask;
140
141 return __fsi_reg_write(reg, val);
142}
143
144static int fsi_reg_write(struct fsi_priv *fsi, u32 reg, u32 data)
145{
146 if (reg > REG_END)
147 return -1;
148
149 return __fsi_reg_write((u32)(fsi->base + reg), data);
150}
151
152static u32 fsi_reg_read(struct fsi_priv *fsi, u32 reg)
153{
154 if (reg > REG_END)
155 return 0;
156
157 return __fsi_reg_read((u32)(fsi->base + reg));
158}
159
160static int fsi_reg_mask_set(struct fsi_priv *fsi, u32 reg, u32 mask, u32 data)
161{
162 if (reg > REG_END)
163 return -1;
164
165 return __fsi_reg_mask_set((u32)(fsi->base + reg), mask, data);
166}
167
Kuninori Morimoto71f6e062009-12-02 15:11:08 +0900168static int fsi_master_write(struct fsi_master *master, u32 reg, u32 data)
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900169{
170 if ((reg < MREG_START) ||
171 (reg > MREG_END))
172 return -1;
173
174 return __fsi_reg_write((u32)(master->base + reg), data);
175}
176
Kuninori Morimoto71f6e062009-12-02 15:11:08 +0900177static u32 fsi_master_read(struct fsi_master *master, u32 reg)
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900178{
179 if ((reg < MREG_START) ||
180 (reg > MREG_END))
181 return 0;
182
183 return __fsi_reg_read((u32)(master->base + reg));
184}
185
Kuninori Morimoto71f6e062009-12-02 15:11:08 +0900186static int fsi_master_mask_set(struct fsi_master *master,
187 u32 reg, u32 mask, u32 data)
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900188{
189 if ((reg < MREG_START) ||
190 (reg > MREG_END))
191 return -1;
192
193 return __fsi_reg_mask_set((u32)(master->base + reg), mask, data);
194}
195
196/************************************************************************
197
198
199 basic function
200
201
202************************************************************************/
Kuninori Morimoto71f6e062009-12-02 15:11:08 +0900203static struct fsi_master *fsi_get_master(struct fsi_priv *fsi)
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900204{
Kuninori Morimoto71f6e062009-12-02 15:11:08 +0900205 return fsi->master;
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900206}
207
208static int fsi_is_port_a(struct fsi_priv *fsi)
209{
Kuninori Morimoto71f6e062009-12-02 15:11:08 +0900210 return fsi->master->base == fsi->base;
211}
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900212
Kuninori Morimoto142e8172009-12-28 14:09:11 +0900213static struct snd_soc_dai *fsi_get_dai(struct snd_pcm_substream *substream)
Kuninori Morimoto71f6e062009-12-02 15:11:08 +0900214{
215 struct snd_soc_pcm_runtime *rtd = substream->private_data;
216 struct snd_soc_dai_link *machine = rtd->dai;
Kuninori Morimoto142e8172009-12-28 14:09:11 +0900217
218 return machine->cpu_dai;
219}
220
221static struct fsi_priv *fsi_get_priv(struct snd_pcm_substream *substream)
222{
223 struct snd_soc_dai *dai = fsi_get_dai(substream);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900224
Kuninori Morimoto71f6e062009-12-02 15:11:08 +0900225 return dai->private_data;
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900226}
227
228static u32 fsi_get_info_flags(struct fsi_priv *fsi)
229{
230 int is_porta = fsi_is_port_a(fsi);
Kuninori Morimoto71f6e062009-12-02 15:11:08 +0900231 struct fsi_master *master = fsi_get_master(fsi);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900232
233 return is_porta ? master->info->porta_flags :
234 master->info->portb_flags;
235}
236
237static int fsi_is_master_mode(struct fsi_priv *fsi, int is_play)
238{
239 u32 mode;
240 u32 flags = fsi_get_info_flags(fsi);
241
242 mode = is_play ? SH_FSI_OUT_SLAVE_MODE : SH_FSI_IN_SLAVE_MODE;
243
244 /* return
245 * 1 : master mode
246 * 0 : slave mode
247 */
248
249 return (mode & flags) != mode;
250}
251
252static u32 fsi_port_ab_io_bit(struct fsi_priv *fsi, int is_play)
253{
254 int is_porta = fsi_is_port_a(fsi);
255 u32 data;
256
257 if (is_porta)
258 data = is_play ? (1 << 0) : (1 << 4);
259 else
260 data = is_play ? (1 << 8) : (1 << 12);
261
262 return data;
263}
264
265static void fsi_stream_push(struct fsi_priv *fsi,
266 struct snd_pcm_substream *substream,
267 u32 buffer_len,
268 u32 period_len)
269{
270 fsi->substream = substream;
271 fsi->buffer_len = buffer_len;
272 fsi->period_len = period_len;
273 fsi->byte_offset = 0;
274 fsi->periods = 0;
275}
276
277static void fsi_stream_pop(struct fsi_priv *fsi)
278{
279 fsi->substream = NULL;
280 fsi->buffer_len = 0;
281 fsi->period_len = 0;
282 fsi->byte_offset = 0;
283 fsi->periods = 0;
284}
285
286static int fsi_get_fifo_residue(struct fsi_priv *fsi, int is_play)
287{
288 u32 status;
289 u32 reg = is_play ? DOFF_ST : DIFF_ST;
290 int residue;
291
292 status = fsi_reg_read(fsi, reg);
293 residue = 0x1ff & (status >> 8);
294 residue *= fsi->chan;
295
296 return residue;
297}
298
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900299/************************************************************************
300
301
302 ctrl function
303
304
305************************************************************************/
306static void fsi_irq_enable(struct fsi_priv *fsi, int is_play)
307{
308 u32 data = fsi_port_ab_io_bit(fsi, is_play);
Kuninori Morimoto71f6e062009-12-02 15:11:08 +0900309 struct fsi_master *master = fsi_get_master(fsi);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900310
Kuninori Morimoto71f6e062009-12-02 15:11:08 +0900311 fsi_master_mask_set(master, IMSK, data, data);
312 fsi_master_mask_set(master, IEMSK, data, data);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900313}
314
315static void fsi_irq_disable(struct fsi_priv *fsi, int is_play)
316{
317 u32 data = fsi_port_ab_io_bit(fsi, is_play);
Kuninori Morimoto71f6e062009-12-02 15:11:08 +0900318 struct fsi_master *master = fsi_get_master(fsi);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900319
Kuninori Morimoto71f6e062009-12-02 15:11:08 +0900320 fsi_master_mask_set(master, IMSK, data, 0);
321 fsi_master_mask_set(master, IEMSK, data, 0);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900322}
323
324static void fsi_clk_ctrl(struct fsi_priv *fsi, int enable)
325{
326 u32 val = fsi_is_port_a(fsi) ? (1 << 0) : (1 << 4);
Kuninori Morimoto71f6e062009-12-02 15:11:08 +0900327 struct fsi_master *master = fsi_get_master(fsi);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900328
329 if (enable)
Kuninori Morimoto71f6e062009-12-02 15:11:08 +0900330 fsi_master_mask_set(master, CLK_RST, val, val);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900331 else
Kuninori Morimoto71f6e062009-12-02 15:11:08 +0900332 fsi_master_mask_set(master, CLK_RST, val, 0);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900333}
334
335static void fsi_irq_init(struct fsi_priv *fsi, int is_play)
336{
337 u32 data;
338 u32 ctrl;
339
340 data = fsi_port_ab_io_bit(fsi, is_play);
341 ctrl = is_play ? DOFF_CTL : DIFF_CTL;
342
343 /* set IMSK */
344 fsi_irq_disable(fsi, is_play);
345
346 /* set interrupt generation factor */
347 fsi_reg_write(fsi, ctrl, IRQ_HALF);
348
349 /* clear FIFO */
350 fsi_reg_mask_set(fsi, ctrl, FIFO_CLR, FIFO_CLR);
351
352 /* clear interrupt factor */
Kuninori Morimoto71f6e062009-12-02 15:11:08 +0900353 fsi_master_mask_set(fsi_get_master(fsi), INT_ST, data, 0);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900354}
355
Kuninori Morimoto71f6e062009-12-02 15:11:08 +0900356static void fsi_soft_all_reset(struct fsi_master *master)
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900357{
Kuninori Morimoto71f6e062009-12-02 15:11:08 +0900358 u32 status = fsi_master_read(master, SOFT_RST);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900359
360 /* port AB reset */
361 status &= 0x000000ff;
Kuninori Morimoto71f6e062009-12-02 15:11:08 +0900362 fsi_master_write(master, SOFT_RST, status);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900363 mdelay(10);
364
365 /* soft reset */
366 status &= 0x000000f0;
Kuninori Morimoto71f6e062009-12-02 15:11:08 +0900367 fsi_master_write(master, SOFT_RST, status);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900368 status |= 0x00000001;
Kuninori Morimoto71f6e062009-12-02 15:11:08 +0900369 fsi_master_write(master, SOFT_RST, status);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900370 mdelay(10);
371}
372
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900373/* playback interrupt */
374static int fsi_data_push(struct fsi_priv *fsi)
375{
376 struct snd_pcm_runtime *runtime;
377 struct snd_pcm_substream *substream = NULL;
378 int send;
379 int fifo_free;
380 int width;
Kuninori Morimoto9ddc9aa2009-10-30 12:02:39 +0900381 u8 *start;
Kuninori Morimoto1c418d12009-12-28 14:09:05 +0900382 int i, over_period;
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900383
384 if (!fsi ||
385 !fsi->substream ||
386 !fsi->substream->runtime)
387 return -EINVAL;
388
Kuninori Morimoto1c418d12009-12-28 14:09:05 +0900389 over_period = 0;
390 substream = fsi->substream;
391 runtime = substream->runtime;
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900392
393 /* FSI FIFO has limit.
394 * So, this driver can not send periods data at a time
395 */
396 if (fsi->byte_offset >=
397 fsi->period_len * (fsi->periods + 1)) {
398
Kuninori Morimoto1c418d12009-12-28 14:09:05 +0900399 over_period = 1;
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900400 fsi->periods = (fsi->periods + 1) % runtime->periods;
401
402 if (0 == fsi->periods)
403 fsi->byte_offset = 0;
404 }
405
406 /* get 1 channel data width */
407 width = frames_to_bytes(runtime, 1) / fsi->chan;
408
409 /* get send size for alsa */
410 send = (fsi->buffer_len - fsi->byte_offset) / width;
411
412 /* get FIFO free size */
413 fifo_free = (fsi->fifo_max * fsi->chan) - fsi_get_fifo_residue(fsi, 1);
414
415 /* size check */
416 if (fifo_free < send)
417 send = fifo_free;
418
Kuninori Morimoto9ddc9aa2009-10-30 12:02:39 +0900419 start = runtime->dma_area;
420 start += fsi->byte_offset;
421
422 switch (width) {
423 case 2:
424 for (i = 0; i < send; i++)
425 fsi_reg_write(fsi, DODT,
426 ((u32)*((u16 *)start + i) << 8));
427 break;
428 case 4:
429 for (i = 0; i < send; i++)
430 fsi_reg_write(fsi, DODT, *((u32 *)start + i));
431 break;
432 default:
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900433 return -EINVAL;
Kuninori Morimoto9ddc9aa2009-10-30 12:02:39 +0900434 }
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900435
436 fsi->byte_offset += send * width;
437
438 fsi_irq_enable(fsi, 1);
439
Kuninori Morimoto1c418d12009-12-28 14:09:05 +0900440 if (over_period)
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900441 snd_pcm_period_elapsed(substream);
442
443 return 0;
444}
445
Kuninori Morimoto07102f32009-10-30 12:02:44 +0900446static int fsi_data_pop(struct fsi_priv *fsi)
447{
448 struct snd_pcm_runtime *runtime;
449 struct snd_pcm_substream *substream = NULL;
450 int free;
451 int fifo_fill;
452 int width;
453 u8 *start;
Kuninori Morimoto1c418d12009-12-28 14:09:05 +0900454 int i, over_period;
Kuninori Morimoto07102f32009-10-30 12:02:44 +0900455
456 if (!fsi ||
457 !fsi->substream ||
458 !fsi->substream->runtime)
459 return -EINVAL;
460
Kuninori Morimoto1c418d12009-12-28 14:09:05 +0900461 over_period = 0;
462 substream = fsi->substream;
463 runtime = substream->runtime;
Kuninori Morimoto07102f32009-10-30 12:02:44 +0900464
465 /* FSI FIFO has limit.
466 * So, this driver can not send periods data at a time
467 */
468 if (fsi->byte_offset >=
469 fsi->period_len * (fsi->periods + 1)) {
470
Kuninori Morimoto1c418d12009-12-28 14:09:05 +0900471 over_period = 1;
Kuninori Morimoto07102f32009-10-30 12:02:44 +0900472 fsi->periods = (fsi->periods + 1) % runtime->periods;
473
474 if (0 == fsi->periods)
475 fsi->byte_offset = 0;
476 }
477
478 /* get 1 channel data width */
479 width = frames_to_bytes(runtime, 1) / fsi->chan;
480
481 /* get free space for alsa */
482 free = (fsi->buffer_len - fsi->byte_offset) / width;
483
484 /* get recv size */
485 fifo_fill = fsi_get_fifo_residue(fsi, 0);
486
487 if (free < fifo_fill)
488 fifo_fill = free;
489
490 start = runtime->dma_area;
491 start += fsi->byte_offset;
492
493 switch (width) {
494 case 2:
495 for (i = 0; i < fifo_fill; i++)
496 *((u16 *)start + i) =
497 (u16)(fsi_reg_read(fsi, DIDT) >> 8);
498 break;
499 case 4:
500 for (i = 0; i < fifo_fill; i++)
501 *((u32 *)start + i) = fsi_reg_read(fsi, DIDT);
502 break;
503 default:
504 return -EINVAL;
505 }
506
507 fsi->byte_offset += fifo_fill * width;
508
509 fsi_irq_enable(fsi, 0);
510
Kuninori Morimoto1c418d12009-12-28 14:09:05 +0900511 if (over_period)
Kuninori Morimoto07102f32009-10-30 12:02:44 +0900512 snd_pcm_period_elapsed(substream);
513
514 return 0;
515}
516
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900517static irqreturn_t fsi_interrupt(int irq, void *data)
518{
Kuninori Morimoto71f6e062009-12-02 15:11:08 +0900519 struct fsi_master *master = data;
520 u32 status = fsi_master_read(master, SOFT_RST) & ~0x00000010;
521 u32 int_st = fsi_master_read(master, INT_ST);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900522
523 /* clear irq status */
Kuninori Morimoto71f6e062009-12-02 15:11:08 +0900524 fsi_master_write(master, SOFT_RST, status);
525 fsi_master_write(master, SOFT_RST, status | 0x00000010);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900526
527 if (int_st & INT_A_OUT)
528 fsi_data_push(&master->fsia);
529 if (int_st & INT_B_OUT)
530 fsi_data_push(&master->fsib);
Kuninori Morimoto07102f32009-10-30 12:02:44 +0900531 if (int_st & INT_A_IN)
532 fsi_data_pop(&master->fsia);
533 if (int_st & INT_B_IN)
534 fsi_data_pop(&master->fsib);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900535
Kuninori Morimoto71f6e062009-12-02 15:11:08 +0900536 fsi_master_write(master, INT_ST, 0x0000000);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900537
538 return IRQ_HANDLED;
539}
540
541/************************************************************************
542
543
544 dai ops
545
546
547************************************************************************/
548static int fsi_dai_startup(struct snd_pcm_substream *substream,
549 struct snd_soc_dai *dai)
550{
Kuninori Morimoto71f6e062009-12-02 15:11:08 +0900551 struct fsi_priv *fsi = fsi_get_priv(substream);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900552 const char *msg;
553 u32 flags = fsi_get_info_flags(fsi);
554 u32 fmt;
555 u32 reg;
556 u32 data;
557 int is_play = (substream->stream == SNDRV_PCM_STREAM_PLAYBACK);
558 int is_master;
559 int ret = 0;
560
Kuninori Morimoto785d1c42009-11-30 20:24:48 +0900561 pm_runtime_get_sync(dai->dev);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900562
563 /* CKG1 */
564 data = is_play ? (1 << 0) : (1 << 4);
565 is_master = fsi_is_master_mode(fsi, is_play);
566 if (is_master)
567 fsi_reg_mask_set(fsi, CKG1, data, data);
568 else
569 fsi_reg_mask_set(fsi, CKG1, data, 0);
570
571 /* clock inversion (CKG2) */
572 data = 0;
573 switch (SH_FSI_INVERSION_MASK & flags) {
574 case SH_FSI_LRM_INV:
575 data = 1 << 12;
576 break;
577 case SH_FSI_BRM_INV:
578 data = 1 << 8;
579 break;
580 case SH_FSI_LRS_INV:
581 data = 1 << 4;
582 break;
583 case SH_FSI_BRS_INV:
584 data = 1 << 0;
585 break;
586 }
587 fsi_reg_write(fsi, CKG2, data);
588
589 /* do fmt, di fmt */
590 data = 0;
591 reg = is_play ? DO_FMT : DI_FMT;
592 fmt = is_play ? SH_FSI_GET_OFMT(flags) : SH_FSI_GET_IFMT(flags);
593 switch (fmt) {
594 case SH_FSI_FMT_MONO:
595 msg = "MONO";
596 data = CR_FMT(CR_MONO);
597 fsi->chan = 1;
598 break;
599 case SH_FSI_FMT_MONO_DELAY:
600 msg = "MONO Delay";
601 data = CR_FMT(CR_MONO_D);
602 fsi->chan = 1;
603 break;
604 case SH_FSI_FMT_PCM:
605 msg = "PCM";
606 data = CR_FMT(CR_PCM);
607 fsi->chan = 2;
608 break;
609 case SH_FSI_FMT_I2S:
610 msg = "I2S";
611 data = CR_FMT(CR_I2S);
612 fsi->chan = 2;
613 break;
614 case SH_FSI_FMT_TDM:
615 msg = "TDM";
616 data = CR_FMT(CR_TDM) | (fsi->chan - 1);
617 fsi->chan = is_play ?
618 SH_FSI_GET_CH_O(flags) : SH_FSI_GET_CH_I(flags);
619 break;
620 case SH_FSI_FMT_TDM_DELAY:
621 msg = "TDM Delay";
622 data = CR_FMT(CR_TDM_D) | (fsi->chan - 1);
623 fsi->chan = is_play ?
624 SH_FSI_GET_CH_O(flags) : SH_FSI_GET_CH_I(flags);
625 break;
626 default:
627 dev_err(dai->dev, "unknown format.\n");
628 return -EINVAL;
629 }
630
631 switch (fsi->chan) {
632 case 1:
633 fsi->fifo_max = 256;
634 break;
635 case 2:
636 fsi->fifo_max = 128;
637 break;
638 case 3:
639 case 4:
640 fsi->fifo_max = 64;
641 break;
642 case 5:
643 case 6:
644 case 7:
645 case 8:
646 fsi->fifo_max = 32;
647 break;
648 default:
649 dev_err(dai->dev, "channel size error.\n");
650 return -EINVAL;
651 }
652
653 fsi_reg_write(fsi, reg, data);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900654
655 /*
656 * clear clk reset if master mode
657 */
658 if (is_master)
659 fsi_clk_ctrl(fsi, 1);
660
661 /* irq setting */
662 fsi_irq_init(fsi, is_play);
663
664 return ret;
665}
666
667static void fsi_dai_shutdown(struct snd_pcm_substream *substream,
668 struct snd_soc_dai *dai)
669{
Kuninori Morimoto71f6e062009-12-02 15:11:08 +0900670 struct fsi_priv *fsi = fsi_get_priv(substream);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900671 int is_play = substream->stream == SNDRV_PCM_STREAM_PLAYBACK;
672
673 fsi_irq_disable(fsi, is_play);
674 fsi_clk_ctrl(fsi, 0);
675
Kuninori Morimoto785d1c42009-11-30 20:24:48 +0900676 pm_runtime_put_sync(dai->dev);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900677}
678
679static int fsi_dai_trigger(struct snd_pcm_substream *substream, int cmd,
680 struct snd_soc_dai *dai)
681{
Kuninori Morimoto71f6e062009-12-02 15:11:08 +0900682 struct fsi_priv *fsi = fsi_get_priv(substream);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900683 struct snd_pcm_runtime *runtime = substream->runtime;
684 int is_play = substream->stream == SNDRV_PCM_STREAM_PLAYBACK;
685 int ret = 0;
686
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900687 switch (cmd) {
688 case SNDRV_PCM_TRIGGER_START:
689 fsi_stream_push(fsi, substream,
690 frames_to_bytes(runtime, runtime->buffer_size),
691 frames_to_bytes(runtime, runtime->period_size));
Kuninori Morimoto07102f32009-10-30 12:02:44 +0900692 ret = is_play ? fsi_data_push(fsi) : fsi_data_pop(fsi);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900693 break;
694 case SNDRV_PCM_TRIGGER_STOP:
695 fsi_irq_disable(fsi, is_play);
696 fsi_stream_pop(fsi);
697 break;
698 }
699
700 return ret;
701}
702
703static struct snd_soc_dai_ops fsi_dai_ops = {
704 .startup = fsi_dai_startup,
705 .shutdown = fsi_dai_shutdown,
706 .trigger = fsi_dai_trigger,
707};
708
709/************************************************************************
710
711
712 pcm ops
713
714
715************************************************************************/
716static struct snd_pcm_hardware fsi_pcm_hardware = {
717 .info = SNDRV_PCM_INFO_INTERLEAVED |
718 SNDRV_PCM_INFO_MMAP |
719 SNDRV_PCM_INFO_MMAP_VALID |
720 SNDRV_PCM_INFO_PAUSE,
721 .formats = FSI_FMTS,
722 .rates = FSI_RATES,
723 .rate_min = 8000,
724 .rate_max = 192000,
725 .channels_min = 1,
726 .channels_max = 2,
727 .buffer_bytes_max = 64 * 1024,
728 .period_bytes_min = 32,
729 .period_bytes_max = 8192,
730 .periods_min = 1,
731 .periods_max = 32,
732 .fifo_size = 256,
733};
734
735static int fsi_pcm_open(struct snd_pcm_substream *substream)
736{
737 struct snd_pcm_runtime *runtime = substream->runtime;
738 int ret = 0;
739
740 snd_soc_set_runtime_hwparams(substream, &fsi_pcm_hardware);
741
742 ret = snd_pcm_hw_constraint_integer(runtime,
743 SNDRV_PCM_HW_PARAM_PERIODS);
744
745 return ret;
746}
747
748static int fsi_hw_params(struct snd_pcm_substream *substream,
749 struct snd_pcm_hw_params *hw_params)
750{
751 return snd_pcm_lib_malloc_pages(substream,
752 params_buffer_bytes(hw_params));
753}
754
755static int fsi_hw_free(struct snd_pcm_substream *substream)
756{
757 return snd_pcm_lib_free_pages(substream);
758}
759
760static snd_pcm_uframes_t fsi_pointer(struct snd_pcm_substream *substream)
761{
762 struct snd_pcm_runtime *runtime = substream->runtime;
Kuninori Morimoto71f6e062009-12-02 15:11:08 +0900763 struct fsi_priv *fsi = fsi_get_priv(substream);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900764 long location;
765
Kuninori Morimoto9ddc9aa2009-10-30 12:02:39 +0900766 location = (fsi->byte_offset - 1);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900767 if (location < 0)
768 location = 0;
769
770 return bytes_to_frames(runtime, location);
771}
772
773static struct snd_pcm_ops fsi_pcm_ops = {
774 .open = fsi_pcm_open,
775 .ioctl = snd_pcm_lib_ioctl,
776 .hw_params = fsi_hw_params,
777 .hw_free = fsi_hw_free,
778 .pointer = fsi_pointer,
779};
780
781/************************************************************************
782
783
784 snd_soc_platform
785
786
787************************************************************************/
788#define PREALLOC_BUFFER (32 * 1024)
789#define PREALLOC_BUFFER_MAX (32 * 1024)
790
791static void fsi_pcm_free(struct snd_pcm *pcm)
792{
793 snd_pcm_lib_preallocate_free_for_all(pcm);
794}
795
796static int fsi_pcm_new(struct snd_card *card,
797 struct snd_soc_dai *dai,
798 struct snd_pcm *pcm)
799{
800 /*
801 * dont use SNDRV_DMA_TYPE_DEV, since it will oops the SH kernel
802 * in MMAP mode (i.e. aplay -M)
803 */
804 return snd_pcm_lib_preallocate_pages_for_all(
805 pcm,
806 SNDRV_DMA_TYPE_CONTINUOUS,
807 snd_dma_continuous_data(GFP_KERNEL),
808 PREALLOC_BUFFER, PREALLOC_BUFFER_MAX);
809}
810
811/************************************************************************
812
813
814 alsa struct
815
816
817************************************************************************/
818struct snd_soc_dai fsi_soc_dai[] = {
819 {
820 .name = "FSIA",
821 .id = 0,
822 .playback = {
823 .rates = FSI_RATES,
824 .formats = FSI_FMTS,
825 .channels_min = 1,
826 .channels_max = 8,
827 },
Kuninori Morimoto07102f32009-10-30 12:02:44 +0900828 .capture = {
829 .rates = FSI_RATES,
830 .formats = FSI_FMTS,
831 .channels_min = 1,
832 .channels_max = 8,
833 },
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900834 .ops = &fsi_dai_ops,
835 },
836 {
837 .name = "FSIB",
838 .id = 1,
839 .playback = {
840 .rates = FSI_RATES,
841 .formats = FSI_FMTS,
842 .channels_min = 1,
843 .channels_max = 8,
844 },
Kuninori Morimoto07102f32009-10-30 12:02:44 +0900845 .capture = {
846 .rates = FSI_RATES,
847 .formats = FSI_FMTS,
848 .channels_min = 1,
849 .channels_max = 8,
850 },
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900851 .ops = &fsi_dai_ops,
852 },
853};
854EXPORT_SYMBOL_GPL(fsi_soc_dai);
855
856struct snd_soc_platform fsi_soc_platform = {
857 .name = "fsi-pcm",
858 .pcm_ops = &fsi_pcm_ops,
859 .pcm_new = fsi_pcm_new,
860 .pcm_free = fsi_pcm_free,
861};
862EXPORT_SYMBOL_GPL(fsi_soc_platform);
863
864/************************************************************************
865
866
867 platform function
868
869
870************************************************************************/
871static int fsi_probe(struct platform_device *pdev)
872{
Kuninori Morimoto71f6e062009-12-02 15:11:08 +0900873 struct fsi_master *master;
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900874 struct resource *res;
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900875 unsigned int irq;
876 int ret;
877
Kuninori Morimoto71f6e062009-12-02 15:11:08 +0900878 if (0 != pdev->id) {
879 dev_err(&pdev->dev, "current fsi support id 0 only now\n");
880 return -ENODEV;
881 }
882
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900883 res = platform_get_resource(pdev, IORESOURCE_MEM, 0);
884 irq = platform_get_irq(pdev, 0);
885 if (!res || !irq) {
886 dev_err(&pdev->dev, "Not enough FSI platform resources.\n");
887 ret = -ENODEV;
888 goto exit;
889 }
890
891 master = kzalloc(sizeof(*master), GFP_KERNEL);
892 if (!master) {
893 dev_err(&pdev->dev, "Could not allocate master\n");
894 ret = -ENOMEM;
895 goto exit;
896 }
897
898 master->base = ioremap_nocache(res->start, resource_size(res));
899 if (!master->base) {
900 ret = -ENXIO;
901 dev_err(&pdev->dev, "Unable to ioremap FSI registers.\n");
902 goto exit_kfree;
903 }
904
905 master->irq = irq;
906 master->info = pdev->dev.platform_data;
907 master->fsia.base = master->base;
Kuninori Morimoto71f6e062009-12-02 15:11:08 +0900908 master->fsia.master = master;
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900909 master->fsib.base = master->base + 0x40;
Kuninori Morimoto71f6e062009-12-02 15:11:08 +0900910 master->fsib.master = master;
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900911
Kuninori Morimoto785d1c42009-11-30 20:24:48 +0900912 pm_runtime_enable(&pdev->dev);
913 pm_runtime_resume(&pdev->dev);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900914
915 fsi_soc_dai[0].dev = &pdev->dev;
Kuninori Morimoto71f6e062009-12-02 15:11:08 +0900916 fsi_soc_dai[0].private_data = &master->fsia;
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900917 fsi_soc_dai[1].dev = &pdev->dev;
Kuninori Morimoto71f6e062009-12-02 15:11:08 +0900918 fsi_soc_dai[1].private_data = &master->fsib;
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900919
Kuninori Morimoto71f6e062009-12-02 15:11:08 +0900920 fsi_soft_all_reset(master);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900921
922 ret = request_irq(irq, &fsi_interrupt, IRQF_DISABLED, "fsi", master);
923 if (ret) {
924 dev_err(&pdev->dev, "irq request err\n");
Kuninori Morimoto9ddc9aa2009-10-30 12:02:39 +0900925 goto exit_iounmap;
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900926 }
927
928 ret = snd_soc_register_platform(&fsi_soc_platform);
929 if (ret < 0) {
930 dev_err(&pdev->dev, "cannot snd soc register\n");
931 goto exit_free_irq;
932 }
933
934 return snd_soc_register_dais(fsi_soc_dai, ARRAY_SIZE(fsi_soc_dai));
935
936exit_free_irq:
937 free_irq(irq, master);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900938exit_iounmap:
939 iounmap(master->base);
Kuninori Morimoto785d1c42009-11-30 20:24:48 +0900940 pm_runtime_disable(&pdev->dev);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900941exit_kfree:
942 kfree(master);
943 master = NULL;
944exit:
945 return ret;
946}
947
948static int fsi_remove(struct platform_device *pdev)
949{
Kuninori Morimoto71f6e062009-12-02 15:11:08 +0900950 struct fsi_master *master;
951
952 master = fsi_get_master(fsi_soc_dai[0].private_data);
953
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900954 snd_soc_unregister_dais(fsi_soc_dai, ARRAY_SIZE(fsi_soc_dai));
955 snd_soc_unregister_platform(&fsi_soc_platform);
956
Kuninori Morimoto785d1c42009-11-30 20:24:48 +0900957 pm_runtime_disable(&pdev->dev);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900958
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900959 free_irq(master->irq, master);
960
961 iounmap(master->base);
962 kfree(master);
Kuninori Morimoto71f6e062009-12-02 15:11:08 +0900963
964 fsi_soc_dai[0].dev = NULL;
965 fsi_soc_dai[0].private_data = NULL;
966 fsi_soc_dai[1].dev = NULL;
967 fsi_soc_dai[1].private_data = NULL;
968
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900969 return 0;
970}
971
Kuninori Morimoto785d1c42009-11-30 20:24:48 +0900972static int fsi_runtime_nop(struct device *dev)
973{
974 /* Runtime PM callback shared between ->runtime_suspend()
975 * and ->runtime_resume(). Simply returns success.
976 *
977 * This driver re-initializes all registers after
978 * pm_runtime_get_sync() anyway so there is no need
979 * to save and restore registers here.
980 */
981 return 0;
982}
983
984static struct dev_pm_ops fsi_pm_ops = {
985 .runtime_suspend = fsi_runtime_nop,
986 .runtime_resume = fsi_runtime_nop,
987};
988
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900989static struct platform_driver fsi_driver = {
990 .driver = {
991 .name = "sh_fsi",
Kuninori Morimoto785d1c42009-11-30 20:24:48 +0900992 .pm = &fsi_pm_ops,
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900993 },
994 .probe = fsi_probe,
995 .remove = fsi_remove,
996};
997
998static int __init fsi_mobile_init(void)
999{
1000 return platform_driver_register(&fsi_driver);
1001}
1002
1003static void __exit fsi_mobile_exit(void)
1004{
1005 platform_driver_unregister(&fsi_driver);
1006}
1007module_init(fsi_mobile_init);
1008module_exit(fsi_mobile_exit);
1009
1010MODULE_LICENSE("GPL");
1011MODULE_DESCRIPTION("SuperH onchip FSI audio driver");
1012MODULE_AUTHOR("Kuninori Morimoto <morimoto.kuninori@renesas.com>");