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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
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +090015#include <linux/delay.h>
Kuninori Morimoto785d1c42009-11-30 20:24:48 +090016#include <linux/pm_runtime.h>
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +090017#include <linux/io.h>
Tejun Heo5a0e3ad2010-03-24 17:04:11 +090018#include <linux/slab.h>
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +090019#include <sound/soc.h>
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +090020#include <sound/sh_fsi.h>
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +090021
22#define DO_FMT 0x0000
23#define DOFF_CTL 0x0004
24#define DOFF_ST 0x0008
25#define DI_FMT 0x000C
26#define DIFF_CTL 0x0010
27#define DIFF_ST 0x0014
28#define CKG1 0x0018
29#define CKG2 0x001C
30#define DIDT 0x0020
31#define DODT 0x0024
32#define MUTE_ST 0x0028
Kuninori Morimoto3bc28072010-07-29 16:48:32 +090033#define OUT_SEL 0x0030
34#define REG_END OUT_SEL
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +090035
Kuninori Morimoto3bc28072010-07-29 16:48:32 +090036#define A_MST_CTLR 0x0180
37#define B_MST_CTLR 0x01A0
Kuninori Morimotocc780d32010-03-25 19:15:53 +090038#define CPU_INT_ST 0x01F4
39#define CPU_IEMSK 0x01F8
40#define CPU_IMSK 0x01FC
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +090041#define INT_ST 0x0200
42#define IEMSK 0x0204
43#define IMSK 0x0208
44#define MUTE 0x020C
45#define CLK_RST 0x0210
46#define SOFT_RST 0x0214
Kuninori Morimoto4a942b42010-03-25 19:15:51 +090047#define FIFO_SZ 0x0218
Kuninori Morimoto3bc28072010-07-29 16:48:32 +090048#define MREG_START A_MST_CTLR
Kuninori Morimoto4a942b42010-03-25 19:15:51 +090049#define MREG_END FIFO_SZ
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +090050
51/* DO_FMT */
52/* DI_FMT */
Kuninori Morimotoa7ffb522010-07-13 12:13:00 +090053#define CR_MONO (0x0 << 4)
54#define CR_MONO_D (0x1 << 4)
55#define CR_PCM (0x2 << 4)
56#define CR_I2S (0x3 << 4)
57#define CR_TDM (0x4 << 4)
58#define CR_TDM_D (0x5 << 4)
Kuninori Morimoto3bc28072010-07-29 16:48:32 +090059#define CR_SPDIF 0x00100120
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +090060
61/* DOFF_CTL */
62/* DIFF_CTL */
63#define IRQ_HALF 0x00100000
64#define FIFO_CLR 0x00000001
65
66/* DOFF_ST */
67#define ERR_OVER 0x00000010
68#define ERR_UNDER 0x00000001
Kuninori Morimoto59c3b002009-12-28 14:09:16 +090069#define ST_ERR (ERR_OVER | ERR_UNDER)
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +090070
Kuninori Morimotoccad7b42010-07-13 12:13:14 +090071/* CKG1 */
72#define ACKMD_MASK 0x00007000
73#define BPFMD_MASK 0x00000700
74
Kuninori Morimoto3bc28072010-07-29 16:48:32 +090075/* A/B MST_CTLR */
76#define BP (1 << 4) /* Fix the signal of Biphase output */
77#define SE (1 << 0) /* Fix the master clock */
78
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +090079/* CLK_RST */
80#define B_CLK 0x00000010
81#define A_CLK 0x00000001
82
83/* INT_ST */
84#define INT_B_IN (1 << 12)
85#define INT_B_OUT (1 << 8)
86#define INT_A_IN (1 << 4)
87#define INT_A_OUT (1 << 0)
88
Kuninori Morimotofeb58cf2010-03-24 15:27:24 +090089/* SOFT_RST */
90#define PBSR (1 << 12) /* Port B Software Reset */
91#define PASR (1 << 8) /* Port A Software Reset */
92#define IR (1 << 4) /* Interrupt Reset */
93#define FSISR (1 << 0) /* Software Reset */
94
Kuninori Morimoto4a942b42010-03-25 19:15:51 +090095/* FIFO_SZ */
96#define OUT_SZ_MASK 0x7
97#define BO_SZ_SHIFT 8
98#define AO_SZ_SHIFT 0
99
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900100#define FSI_RATES SNDRV_PCM_RATE_8000_96000
101
102#define FSI_FMTS (SNDRV_PCM_FMTBIT_S24_LE | SNDRV_PCM_FMTBIT_S16_LE)
103
104/************************************************************************
105
106
107 struct
108
109
110************************************************************************/
111struct fsi_priv {
112 void __iomem *base;
113 struct snd_pcm_substream *substream;
Kuninori Morimoto71f6e062009-12-02 15:11:08 +0900114 struct fsi_master *master;
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900115
116 int fifo_max;
117 int chan;
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900118
119 int byte_offset;
120 int period_len;
121 int buffer_len;
122 int periods;
Kuninori Morimoto3bc28072010-07-29 16:48:32 +0900123
124 u32 mst_ctrl;
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900125};
126
Kuninori Morimoto73b92c12010-07-13 12:13:04 +0900127struct fsi_core {
128 int ver;
129
Kuninori Morimotocc780d32010-03-25 19:15:53 +0900130 u32 int_st;
131 u32 iemsk;
132 u32 imsk;
133};
134
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900135struct fsi_master {
136 void __iomem *base;
137 int irq;
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900138 struct fsi_priv fsia;
139 struct fsi_priv fsib;
Kuninori Morimoto73b92c12010-07-13 12:13:04 +0900140 struct fsi_core *core;
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900141 struct sh_fsi_platform_info *info;
Kuninori Morimoto8fc176d2010-01-28 13:46:16 +0900142 spinlock_t lock;
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900143};
144
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900145/************************************************************************
146
147
148 basic read write function
149
150
151************************************************************************/
Guennadi Liakhovetski0f69d972010-02-03 17:37:23 +0100152static void __fsi_reg_write(u32 reg, u32 data)
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900153{
154 /* valid data area is 24bit */
155 data &= 0x00ffffff;
156
Guennadi Liakhovetski0f69d972010-02-03 17:37:23 +0100157 __raw_writel(data, reg);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900158}
159
160static u32 __fsi_reg_read(u32 reg)
161{
Guennadi Liakhovetski0f69d972010-02-03 17:37:23 +0100162 return __raw_readl(reg);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900163}
164
Guennadi Liakhovetski0f69d972010-02-03 17:37:23 +0100165static void __fsi_reg_mask_set(u32 reg, u32 mask, u32 data)
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900166{
167 u32 val = __fsi_reg_read(reg);
168
169 val &= ~mask;
170 val |= data & mask;
171
Guennadi Liakhovetski0f69d972010-02-03 17:37:23 +0100172 __fsi_reg_write(reg, val);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900173}
174
Guennadi Liakhovetski0f69d972010-02-03 17:37:23 +0100175static void fsi_reg_write(struct fsi_priv *fsi, u32 reg, u32 data)
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900176{
Kuninori Morimotod7854142010-07-13 12:13:09 +0900177 if (reg > REG_END) {
178 pr_err("fsi: register access err (%s)\n", __func__);
Guennadi Liakhovetski0f69d972010-02-03 17:37:23 +0100179 return;
Kuninori Morimotod7854142010-07-13 12:13:09 +0900180 }
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900181
Guennadi Liakhovetski0f69d972010-02-03 17:37:23 +0100182 __fsi_reg_write((u32)(fsi->base + reg), data);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900183}
184
185static u32 fsi_reg_read(struct fsi_priv *fsi, u32 reg)
186{
Kuninori Morimotod7854142010-07-13 12:13:09 +0900187 if (reg > REG_END) {
188 pr_err("fsi: register access err (%s)\n", __func__);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900189 return 0;
Kuninori Morimotod7854142010-07-13 12:13:09 +0900190 }
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900191
192 return __fsi_reg_read((u32)(fsi->base + reg));
193}
194
Guennadi Liakhovetski0f69d972010-02-03 17:37:23 +0100195static void fsi_reg_mask_set(struct fsi_priv *fsi, u32 reg, u32 mask, u32 data)
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900196{
Kuninori Morimotod7854142010-07-13 12:13:09 +0900197 if (reg > REG_END) {
198 pr_err("fsi: register access err (%s)\n", __func__);
Guennadi Liakhovetski0f69d972010-02-03 17:37:23 +0100199 return;
Kuninori Morimotod7854142010-07-13 12:13:09 +0900200 }
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900201
Guennadi Liakhovetski0f69d972010-02-03 17:37:23 +0100202 __fsi_reg_mask_set((u32)(fsi->base + reg), mask, data);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900203}
204
Guennadi Liakhovetski0f69d972010-02-03 17:37:23 +0100205static void fsi_master_write(struct fsi_master *master, u32 reg, u32 data)
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900206{
Kuninori Morimoto8fc176d2010-01-28 13:46:16 +0900207 unsigned long flags;
208
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900209 if ((reg < MREG_START) ||
Kuninori Morimotod7854142010-07-13 12:13:09 +0900210 (reg > MREG_END)) {
211 pr_err("fsi: register access err (%s)\n", __func__);
Guennadi Liakhovetski0f69d972010-02-03 17:37:23 +0100212 return;
Kuninori Morimotod7854142010-07-13 12:13:09 +0900213 }
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900214
Kuninori Morimoto8fc176d2010-01-28 13:46:16 +0900215 spin_lock_irqsave(&master->lock, flags);
Guennadi Liakhovetski0f69d972010-02-03 17:37:23 +0100216 __fsi_reg_write((u32)(master->base + reg), data);
Kuninori Morimoto8fc176d2010-01-28 13:46:16 +0900217 spin_unlock_irqrestore(&master->lock, flags);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900218}
219
Kuninori Morimoto71f6e062009-12-02 15:11:08 +0900220static u32 fsi_master_read(struct fsi_master *master, u32 reg)
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900221{
Kuninori Morimoto8fc176d2010-01-28 13:46:16 +0900222 u32 ret;
223 unsigned long flags;
224
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900225 if ((reg < MREG_START) ||
Kuninori Morimotod7854142010-07-13 12:13:09 +0900226 (reg > MREG_END)) {
227 pr_err("fsi: register access err (%s)\n", __func__);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900228 return 0;
Kuninori Morimotod7854142010-07-13 12:13:09 +0900229 }
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900230
Kuninori Morimoto8fc176d2010-01-28 13:46:16 +0900231 spin_lock_irqsave(&master->lock, flags);
232 ret = __fsi_reg_read((u32)(master->base + reg));
233 spin_unlock_irqrestore(&master->lock, flags);
234
235 return ret;
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900236}
237
Guennadi Liakhovetski0f69d972010-02-03 17:37:23 +0100238static void fsi_master_mask_set(struct fsi_master *master,
Kuninori Morimoto71f6e062009-12-02 15:11:08 +0900239 u32 reg, u32 mask, u32 data)
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900240{
Kuninori Morimoto8fc176d2010-01-28 13:46:16 +0900241 unsigned long flags;
242
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900243 if ((reg < MREG_START) ||
Kuninori Morimotod7854142010-07-13 12:13:09 +0900244 (reg > MREG_END)) {
245 pr_err("fsi: register access err (%s)\n", __func__);
Guennadi Liakhovetski0f69d972010-02-03 17:37:23 +0100246 return;
Kuninori Morimotod7854142010-07-13 12:13:09 +0900247 }
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900248
Kuninori Morimoto8fc176d2010-01-28 13:46:16 +0900249 spin_lock_irqsave(&master->lock, flags);
Guennadi Liakhovetski0f69d972010-02-03 17:37:23 +0100250 __fsi_reg_mask_set((u32)(master->base + reg), mask, data);
Kuninori Morimoto8fc176d2010-01-28 13:46:16 +0900251 spin_unlock_irqrestore(&master->lock, flags);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900252}
253
254/************************************************************************
255
256
257 basic function
258
259
260************************************************************************/
Kuninori Morimoto71f6e062009-12-02 15:11:08 +0900261static struct fsi_master *fsi_get_master(struct fsi_priv *fsi)
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900262{
Kuninori Morimoto71f6e062009-12-02 15:11:08 +0900263 return fsi->master;
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900264}
265
266static int fsi_is_port_a(struct fsi_priv *fsi)
267{
Kuninori Morimoto71f6e062009-12-02 15:11:08 +0900268 return fsi->master->base == fsi->base;
269}
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900270
Kuninori Morimoto142e8172009-12-28 14:09:11 +0900271static struct snd_soc_dai *fsi_get_dai(struct snd_pcm_substream *substream)
Kuninori Morimoto71f6e062009-12-02 15:11:08 +0900272{
273 struct snd_soc_pcm_runtime *rtd = substream->private_data;
Kuninori Morimoto142e8172009-12-28 14:09:11 +0900274
Liam Girdwoodf0fba2a2010-03-17 20:15:21 +0000275 return rtd->cpu_dai;
Kuninori Morimoto142e8172009-12-28 14:09:11 +0900276}
277
278static struct fsi_priv *fsi_get_priv(struct snd_pcm_substream *substream)
279{
280 struct snd_soc_dai *dai = fsi_get_dai(substream);
Liam Girdwoodf0fba2a2010-03-17 20:15:21 +0000281 struct fsi_master *master = snd_soc_dai_get_drvdata(dai);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900282
Liam Girdwoodf0fba2a2010-03-17 20:15:21 +0000283 if (dai->id == 0)
284 return &master->fsia;
285 else
286 return &master->fsib;
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900287}
288
289static u32 fsi_get_info_flags(struct fsi_priv *fsi)
290{
291 int is_porta = fsi_is_port_a(fsi);
Kuninori Morimoto71f6e062009-12-02 15:11:08 +0900292 struct fsi_master *master = fsi_get_master(fsi);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900293
294 return is_porta ? master->info->porta_flags :
295 master->info->portb_flags;
296}
297
298static int fsi_is_master_mode(struct fsi_priv *fsi, int is_play)
299{
300 u32 mode;
301 u32 flags = fsi_get_info_flags(fsi);
302
303 mode = is_play ? SH_FSI_OUT_SLAVE_MODE : SH_FSI_IN_SLAVE_MODE;
304
305 /* return
306 * 1 : master mode
307 * 0 : slave mode
308 */
309
310 return (mode & flags) != mode;
311}
312
313static u32 fsi_port_ab_io_bit(struct fsi_priv *fsi, int is_play)
314{
315 int is_porta = fsi_is_port_a(fsi);
316 u32 data;
317
318 if (is_porta)
319 data = is_play ? (1 << 0) : (1 << 4);
320 else
321 data = is_play ? (1 << 8) : (1 << 12);
322
323 return data;
324}
325
326static void fsi_stream_push(struct fsi_priv *fsi,
327 struct snd_pcm_substream *substream,
328 u32 buffer_len,
329 u32 period_len)
330{
331 fsi->substream = substream;
332 fsi->buffer_len = buffer_len;
333 fsi->period_len = period_len;
334 fsi->byte_offset = 0;
335 fsi->periods = 0;
336}
337
338static void fsi_stream_pop(struct fsi_priv *fsi)
339{
340 fsi->substream = NULL;
341 fsi->buffer_len = 0;
342 fsi->period_len = 0;
343 fsi->byte_offset = 0;
344 fsi->periods = 0;
345}
346
347static int fsi_get_fifo_residue(struct fsi_priv *fsi, int is_play)
348{
349 u32 status;
350 u32 reg = is_play ? DOFF_ST : DIFF_ST;
351 int residue;
352
353 status = fsi_reg_read(fsi, reg);
354 residue = 0x1ff & (status >> 8);
355 residue *= fsi->chan;
356
357 return residue;
358}
359
Kuninori Morimotoc79eab32010-09-17 13:48:05 +0900360static u8 *fsi_dma_get_area(struct fsi_priv *fsi)
361{
362 return fsi->substream->runtime->dma_area + fsi->byte_offset;
363}
364
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900365/************************************************************************
366
367
Kuninori Morimoto10ea76c2010-03-23 11:47:54 +0900368 irq function
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900369
370
371************************************************************************/
372static void fsi_irq_enable(struct fsi_priv *fsi, int is_play)
373{
374 u32 data = fsi_port_ab_io_bit(fsi, is_play);
Kuninori Morimoto71f6e062009-12-02 15:11:08 +0900375 struct fsi_master *master = fsi_get_master(fsi);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900376
Kuninori Morimoto73b92c12010-07-13 12:13:04 +0900377 fsi_master_mask_set(master, master->core->imsk, data, data);
378 fsi_master_mask_set(master, master->core->iemsk, data, data);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900379}
380
381static void fsi_irq_disable(struct fsi_priv *fsi, int is_play)
382{
383 u32 data = fsi_port_ab_io_bit(fsi, is_play);
Kuninori Morimoto71f6e062009-12-02 15:11:08 +0900384 struct fsi_master *master = fsi_get_master(fsi);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900385
Kuninori Morimoto73b92c12010-07-13 12:13:04 +0900386 fsi_master_mask_set(master, master->core->imsk, data, 0);
387 fsi_master_mask_set(master, master->core->iemsk, data, 0);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900388}
389
Kuninori Morimoto10ea76c2010-03-23 11:47:54 +0900390static u32 fsi_irq_get_status(struct fsi_master *master)
391{
Kuninori Morimoto73b92c12010-07-13 12:13:04 +0900392 return fsi_master_read(master, master->core->int_st);
Kuninori Morimoto10ea76c2010-03-23 11:47:54 +0900393}
394
395static void fsi_irq_clear_all_status(struct fsi_master *master)
396{
Kuninori Morimoto73b92c12010-07-13 12:13:04 +0900397 fsi_master_write(master, master->core->int_st, 0);
Kuninori Morimoto10ea76c2010-03-23 11:47:54 +0900398}
399
400static void fsi_irq_clear_status(struct fsi_priv *fsi)
401{
402 u32 data = 0;
403 struct fsi_master *master = fsi_get_master(fsi);
404
405 data |= fsi_port_ab_io_bit(fsi, 0);
406 data |= fsi_port_ab_io_bit(fsi, 1);
407
408 /* clear interrupt factor */
Kuninori Morimoto73b92c12010-07-13 12:13:04 +0900409 fsi_master_mask_set(master, master->core->int_st, data, 0);
Kuninori Morimoto10ea76c2010-03-23 11:47:54 +0900410}
411
412/************************************************************************
413
414
Kuninori Morimoto3bc28072010-07-29 16:48:32 +0900415 SPDIF master clock function
416
417These functions are used later FSI2
418************************************************************************/
419static void fsi_spdif_clk_ctrl(struct fsi_priv *fsi, int enable)
420{
421 struct fsi_master *master = fsi_get_master(fsi);
422 u32 val = BP | SE;
423
424 if (master->core->ver < 2) {
425 pr_err("fsi: register access err (%s)\n", __func__);
426 return;
427 }
428
429 if (enable)
430 fsi_master_mask_set(master, fsi->mst_ctrl, val, val);
431 else
432 fsi_master_mask_set(master, fsi->mst_ctrl, val, 0);
433}
434
435/************************************************************************
436
437
Kuninori Morimoto10ea76c2010-03-23 11:47:54 +0900438 ctrl function
439
440
441************************************************************************/
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900442static void fsi_clk_ctrl(struct fsi_priv *fsi, int enable)
443{
444 u32 val = fsi_is_port_a(fsi) ? (1 << 0) : (1 << 4);
Kuninori Morimoto71f6e062009-12-02 15:11:08 +0900445 struct fsi_master *master = fsi_get_master(fsi);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900446
447 if (enable)
Kuninori Morimoto71f6e062009-12-02 15:11:08 +0900448 fsi_master_mask_set(master, CLK_RST, val, val);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900449 else
Kuninori Morimoto71f6e062009-12-02 15:11:08 +0900450 fsi_master_mask_set(master, CLK_RST, val, 0);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900451}
452
Kuninori Morimoto4a942b42010-03-25 19:15:51 +0900453static void fsi_fifo_init(struct fsi_priv *fsi,
454 int is_play,
455 struct snd_soc_dai *dai)
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900456{
Kuninori Morimoto4a942b42010-03-25 19:15:51 +0900457 struct fsi_master *master = fsi_get_master(fsi);
458 u32 ctrl, shift, i;
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900459
Kuninori Morimoto4a942b42010-03-25 19:15:51 +0900460 /* get on-chip RAM capacity */
461 shift = fsi_master_read(master, FIFO_SZ);
462 shift >>= fsi_is_port_a(fsi) ? AO_SZ_SHIFT : BO_SZ_SHIFT;
463 shift &= OUT_SZ_MASK;
464 fsi->fifo_max = 256 << shift;
465 dev_dbg(dai->dev, "fifo = %d words\n", fsi->fifo_max);
466
467 /*
468 * The maximum number of sample data varies depending
469 * on the number of channels selected for the format.
470 *
471 * FIFOs are used in 4-channel units in 3-channel mode
472 * and in 8-channel units in 5- to 7-channel mode
473 * meaning that more FIFOs than the required size of DPRAM
474 * are used.
475 *
476 * ex) if 256 words of DP-RAM is connected
477 * 1 channel: 256 (256 x 1 = 256)
478 * 2 channels: 128 (128 x 2 = 256)
479 * 3 channels: 64 ( 64 x 3 = 192)
480 * 4 channels: 64 ( 64 x 4 = 256)
481 * 5 channels: 32 ( 32 x 5 = 160)
482 * 6 channels: 32 ( 32 x 6 = 192)
483 * 7 channels: 32 ( 32 x 7 = 224)
484 * 8 channels: 32 ( 32 x 8 = 256)
485 */
486 for (i = 1; i < fsi->chan; i <<= 1)
487 fsi->fifo_max >>= 1;
488 dev_dbg(dai->dev, "%d channel %d store\n", fsi->chan, fsi->fifo_max);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900489
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900490 ctrl = is_play ? DOFF_CTL : DIFF_CTL;
491
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900492 /* set interrupt generation factor */
493 fsi_reg_write(fsi, ctrl, IRQ_HALF);
494
495 /* clear FIFO */
496 fsi_reg_mask_set(fsi, ctrl, FIFO_CLR, FIFO_CLR);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900497}
498
Kuninori Morimoto71f6e062009-12-02 15:11:08 +0900499static void fsi_soft_all_reset(struct fsi_master *master)
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900500{
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900501 /* port AB reset */
Kuninori Morimotofeb58cf2010-03-24 15:27:24 +0900502 fsi_master_mask_set(master, SOFT_RST, PASR | PBSR, 0);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900503 mdelay(10);
504
505 /* soft reset */
Kuninori Morimotofeb58cf2010-03-24 15:27:24 +0900506 fsi_master_mask_set(master, SOFT_RST, FSISR, 0);
507 fsi_master_mask_set(master, SOFT_RST, FSISR, FSISR);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900508 mdelay(10);
509}
510
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900511/* playback interrupt */
Kuninori Morimoto47fc9a02010-02-22 16:41:57 +0900512static int fsi_data_push(struct fsi_priv *fsi, int startup)
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900513{
514 struct snd_pcm_runtime *runtime;
515 struct snd_pcm_substream *substream = NULL;
Kuninori Morimoto59c3b002009-12-28 14:09:16 +0900516 u32 status;
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900517 int send;
518 int fifo_free;
519 int width;
Kuninori Morimoto9ddc9aa2009-10-30 12:02:39 +0900520 u8 *start;
Kuninori Morimoto47fc9a02010-02-22 16:41:57 +0900521 int i, over_period;
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900522
523 if (!fsi ||
524 !fsi->substream ||
525 !fsi->substream->runtime)
526 return -EINVAL;
527
Kuninori Morimoto1c418d12009-12-28 14:09:05 +0900528 over_period = 0;
529 substream = fsi->substream;
530 runtime = substream->runtime;
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900531
532 /* FSI FIFO has limit.
533 * So, this driver can not send periods data at a time
534 */
535 if (fsi->byte_offset >=
536 fsi->period_len * (fsi->periods + 1)) {
537
Kuninori Morimoto1c418d12009-12-28 14:09:05 +0900538 over_period = 1;
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900539 fsi->periods = (fsi->periods + 1) % runtime->periods;
540
541 if (0 == fsi->periods)
542 fsi->byte_offset = 0;
543 }
544
545 /* get 1 channel data width */
546 width = frames_to_bytes(runtime, 1) / fsi->chan;
547
548 /* get send size for alsa */
549 send = (fsi->buffer_len - fsi->byte_offset) / width;
550
551 /* get FIFO free size */
552 fifo_free = (fsi->fifo_max * fsi->chan) - fsi_get_fifo_residue(fsi, 1);
553
554 /* size check */
555 if (fifo_free < send)
556 send = fifo_free;
557
Kuninori Morimotoc79eab32010-09-17 13:48:05 +0900558 start = fsi_dma_get_area(fsi);
Kuninori Morimoto9ddc9aa2009-10-30 12:02:39 +0900559
560 switch (width) {
561 case 2:
562 for (i = 0; i < send; i++)
563 fsi_reg_write(fsi, DODT,
564 ((u32)*((u16 *)start + i) << 8));
565 break;
566 case 4:
567 for (i = 0; i < send; i++)
568 fsi_reg_write(fsi, DODT, *((u32 *)start + i));
569 break;
570 default:
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900571 return -EINVAL;
Kuninori Morimoto9ddc9aa2009-10-30 12:02:39 +0900572 }
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900573
574 fsi->byte_offset += send * width;
575
Kuninori Morimoto59c3b002009-12-28 14:09:16 +0900576 status = fsi_reg_read(fsi, DOFF_ST);
Kuninori Morimoto47fc9a02010-02-22 16:41:57 +0900577 if (!startup) {
Kuninori Morimoto59c3b002009-12-28 14:09:16 +0900578 struct snd_soc_dai *dai = fsi_get_dai(substream);
Kuninori Morimoto47fc9a02010-02-22 16:41:57 +0900579
580 if (status & ERR_OVER)
581 dev_err(dai->dev, "over run\n");
582 if (status & ERR_UNDER)
583 dev_err(dai->dev, "under run\n");
Kuninori Morimoto59c3b002009-12-28 14:09:16 +0900584 }
Kuninori Morimoto47fc9a02010-02-22 16:41:57 +0900585 fsi_reg_write(fsi, DOFF_ST, 0);
Kuninori Morimoto59c3b002009-12-28 14:09:16 +0900586
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900587 fsi_irq_enable(fsi, 1);
588
Kuninori Morimoto1c418d12009-12-28 14:09:05 +0900589 if (over_period)
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900590 snd_pcm_period_elapsed(substream);
591
Kuninori Morimoto47fc9a02010-02-22 16:41:57 +0900592 return 0;
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900593}
594
Kuninori Morimoto47fc9a02010-02-22 16:41:57 +0900595static int fsi_data_pop(struct fsi_priv *fsi, int startup)
Kuninori Morimoto07102f32009-10-30 12:02:44 +0900596{
597 struct snd_pcm_runtime *runtime;
598 struct snd_pcm_substream *substream = NULL;
Kuninori Morimoto59c3b002009-12-28 14:09:16 +0900599 u32 status;
Kuninori Morimoto07102f32009-10-30 12:02:44 +0900600 int free;
601 int fifo_fill;
602 int width;
603 u8 *start;
Kuninori Morimoto47fc9a02010-02-22 16:41:57 +0900604 int i, over_period;
Kuninori Morimoto07102f32009-10-30 12:02:44 +0900605
606 if (!fsi ||
607 !fsi->substream ||
608 !fsi->substream->runtime)
609 return -EINVAL;
610
Kuninori Morimoto1c418d12009-12-28 14:09:05 +0900611 over_period = 0;
612 substream = fsi->substream;
613 runtime = substream->runtime;
Kuninori Morimoto07102f32009-10-30 12:02:44 +0900614
615 /* FSI FIFO has limit.
616 * So, this driver can not send periods data at a time
617 */
618 if (fsi->byte_offset >=
619 fsi->period_len * (fsi->periods + 1)) {
620
Kuninori Morimoto1c418d12009-12-28 14:09:05 +0900621 over_period = 1;
Kuninori Morimoto07102f32009-10-30 12:02:44 +0900622 fsi->periods = (fsi->periods + 1) % runtime->periods;
623
624 if (0 == fsi->periods)
625 fsi->byte_offset = 0;
626 }
627
628 /* get 1 channel data width */
629 width = frames_to_bytes(runtime, 1) / fsi->chan;
630
631 /* get free space for alsa */
632 free = (fsi->buffer_len - fsi->byte_offset) / width;
633
634 /* get recv size */
635 fifo_fill = fsi_get_fifo_residue(fsi, 0);
636
637 if (free < fifo_fill)
638 fifo_fill = free;
639
Kuninori Morimotoc79eab32010-09-17 13:48:05 +0900640 start = fsi_dma_get_area(fsi);
Kuninori Morimoto07102f32009-10-30 12:02:44 +0900641
642 switch (width) {
643 case 2:
644 for (i = 0; i < fifo_fill; i++)
645 *((u16 *)start + i) =
646 (u16)(fsi_reg_read(fsi, DIDT) >> 8);
647 break;
648 case 4:
649 for (i = 0; i < fifo_fill; i++)
650 *((u32 *)start + i) = fsi_reg_read(fsi, DIDT);
651 break;
652 default:
653 return -EINVAL;
654 }
655
656 fsi->byte_offset += fifo_fill * width;
657
Kuninori Morimoto59c3b002009-12-28 14:09:16 +0900658 status = fsi_reg_read(fsi, DIFF_ST);
Kuninori Morimoto47fc9a02010-02-22 16:41:57 +0900659 if (!startup) {
Kuninori Morimoto59c3b002009-12-28 14:09:16 +0900660 struct snd_soc_dai *dai = fsi_get_dai(substream);
Kuninori Morimoto47fc9a02010-02-22 16:41:57 +0900661
662 if (status & ERR_OVER)
663 dev_err(dai->dev, "over run\n");
664 if (status & ERR_UNDER)
665 dev_err(dai->dev, "under run\n");
Kuninori Morimoto59c3b002009-12-28 14:09:16 +0900666 }
Kuninori Morimoto47fc9a02010-02-22 16:41:57 +0900667 fsi_reg_write(fsi, DIFF_ST, 0);
Kuninori Morimoto59c3b002009-12-28 14:09:16 +0900668
Kuninori Morimoto07102f32009-10-30 12:02:44 +0900669 fsi_irq_enable(fsi, 0);
670
Kuninori Morimoto1c418d12009-12-28 14:09:05 +0900671 if (over_period)
Kuninori Morimoto07102f32009-10-30 12:02:44 +0900672 snd_pcm_period_elapsed(substream);
673
Kuninori Morimoto47fc9a02010-02-22 16:41:57 +0900674 return 0;
Kuninori Morimoto07102f32009-10-30 12:02:44 +0900675}
676
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900677static irqreturn_t fsi_interrupt(int irq, void *data)
678{
Kuninori Morimoto71f6e062009-12-02 15:11:08 +0900679 struct fsi_master *master = data;
Kuninori Morimoto10ea76c2010-03-23 11:47:54 +0900680 u32 int_st = fsi_irq_get_status(master);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900681
682 /* clear irq status */
Kuninori Morimotofeb58cf2010-03-24 15:27:24 +0900683 fsi_master_mask_set(master, SOFT_RST, IR, 0);
684 fsi_master_mask_set(master, SOFT_RST, IR, IR);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900685
686 if (int_st & INT_A_OUT)
Kuninori Morimoto47fc9a02010-02-22 16:41:57 +0900687 fsi_data_push(&master->fsia, 0);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900688 if (int_st & INT_B_OUT)
Kuninori Morimoto47fc9a02010-02-22 16:41:57 +0900689 fsi_data_push(&master->fsib, 0);
Kuninori Morimoto07102f32009-10-30 12:02:44 +0900690 if (int_st & INT_A_IN)
Kuninori Morimoto47fc9a02010-02-22 16:41:57 +0900691 fsi_data_pop(&master->fsia, 0);
Kuninori Morimoto07102f32009-10-30 12:02:44 +0900692 if (int_st & INT_B_IN)
Kuninori Morimoto47fc9a02010-02-22 16:41:57 +0900693 fsi_data_pop(&master->fsib, 0);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900694
Kuninori Morimoto10ea76c2010-03-23 11:47:54 +0900695 fsi_irq_clear_all_status(master);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900696
697 return IRQ_HANDLED;
698}
699
700/************************************************************************
701
702
703 dai ops
704
705
706************************************************************************/
707static int fsi_dai_startup(struct snd_pcm_substream *substream,
708 struct snd_soc_dai *dai)
709{
Kuninori Morimoto71f6e062009-12-02 15:11:08 +0900710 struct fsi_priv *fsi = fsi_get_priv(substream);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900711 u32 flags = fsi_get_info_flags(fsi);
Kuninori Morimoto3bc28072010-07-29 16:48:32 +0900712 struct fsi_master *master = fsi_get_master(fsi);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900713 u32 fmt;
714 u32 reg;
715 u32 data;
716 int is_play = (substream->stream == SNDRV_PCM_STREAM_PLAYBACK);
717 int is_master;
718 int ret = 0;
719
Kuninori Morimoto785d1c42009-11-30 20:24:48 +0900720 pm_runtime_get_sync(dai->dev);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900721
722 /* CKG1 */
723 data = is_play ? (1 << 0) : (1 << 4);
724 is_master = fsi_is_master_mode(fsi, is_play);
725 if (is_master)
726 fsi_reg_mask_set(fsi, CKG1, data, data);
727 else
728 fsi_reg_mask_set(fsi, CKG1, data, 0);
729
730 /* clock inversion (CKG2) */
731 data = 0;
Kuninori Morimotob427b442010-07-13 12:01:15 +0900732 if (SH_FSI_LRM_INV & flags)
733 data |= 1 << 12;
734 if (SH_FSI_BRM_INV & flags)
735 data |= 1 << 8;
736 if (SH_FSI_LRS_INV & flags)
737 data |= 1 << 4;
738 if (SH_FSI_BRS_INV & flags)
739 data |= 1 << 0;
740
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900741 fsi_reg_write(fsi, CKG2, data);
742
743 /* do fmt, di fmt */
744 data = 0;
745 reg = is_play ? DO_FMT : DI_FMT;
746 fmt = is_play ? SH_FSI_GET_OFMT(flags) : SH_FSI_GET_IFMT(flags);
747 switch (fmt) {
748 case SH_FSI_FMT_MONO:
Kuninori Morimotoa7ffb522010-07-13 12:13:00 +0900749 data = CR_MONO;
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900750 fsi->chan = 1;
751 break;
752 case SH_FSI_FMT_MONO_DELAY:
Kuninori Morimotoa7ffb522010-07-13 12:13:00 +0900753 data = CR_MONO_D;
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900754 fsi->chan = 1;
755 break;
756 case SH_FSI_FMT_PCM:
Kuninori Morimotoa7ffb522010-07-13 12:13:00 +0900757 data = CR_PCM;
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900758 fsi->chan = 2;
759 break;
760 case SH_FSI_FMT_I2S:
Kuninori Morimotoa7ffb522010-07-13 12:13:00 +0900761 data = CR_I2S;
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900762 fsi->chan = 2;
763 break;
764 case SH_FSI_FMT_TDM:
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900765 fsi->chan = is_play ?
766 SH_FSI_GET_CH_O(flags) : SH_FSI_GET_CH_I(flags);
Kuninori Morimotoa7ffb522010-07-13 12:13:00 +0900767 data = CR_TDM | (fsi->chan - 1);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900768 break;
769 case SH_FSI_FMT_TDM_DELAY:
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900770 fsi->chan = is_play ?
771 SH_FSI_GET_CH_O(flags) : SH_FSI_GET_CH_I(flags);
Kuninori Morimotoa7ffb522010-07-13 12:13:00 +0900772 data = CR_TDM_D | (fsi->chan - 1);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900773 break;
Kuninori Morimoto3bc28072010-07-29 16:48:32 +0900774 case SH_FSI_FMT_SPDIF:
775 if (master->core->ver < 2) {
776 dev_err(dai->dev, "This FSI can not use SPDIF\n");
777 return -EINVAL;
778 }
779 data = CR_SPDIF;
780 fsi->chan = 2;
781 fsi_spdif_clk_ctrl(fsi, 1);
782 fsi_reg_mask_set(fsi, OUT_SEL, 0x0010, 0x0010);
783 break;
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900784 default:
785 dev_err(dai->dev, "unknown format.\n");
786 return -EINVAL;
787 }
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900788 fsi_reg_write(fsi, reg, data);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900789
Kuninori Morimoto10ea76c2010-03-23 11:47:54 +0900790 /* irq clear */
791 fsi_irq_disable(fsi, is_play);
792 fsi_irq_clear_status(fsi);
793
794 /* fifo init */
Kuninori Morimoto4a942b42010-03-25 19:15:51 +0900795 fsi_fifo_init(fsi, is_play, dai);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900796
797 return ret;
798}
799
800static void fsi_dai_shutdown(struct snd_pcm_substream *substream,
801 struct snd_soc_dai *dai)
802{
Kuninori Morimoto71f6e062009-12-02 15:11:08 +0900803 struct fsi_priv *fsi = fsi_get_priv(substream);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900804 int is_play = substream->stream == SNDRV_PCM_STREAM_PLAYBACK;
805
806 fsi_irq_disable(fsi, is_play);
807 fsi_clk_ctrl(fsi, 0);
808
Kuninori Morimoto785d1c42009-11-30 20:24:48 +0900809 pm_runtime_put_sync(dai->dev);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900810}
811
812static int fsi_dai_trigger(struct snd_pcm_substream *substream, int cmd,
813 struct snd_soc_dai *dai)
814{
Kuninori Morimoto71f6e062009-12-02 15:11:08 +0900815 struct fsi_priv *fsi = fsi_get_priv(substream);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900816 struct snd_pcm_runtime *runtime = substream->runtime;
817 int is_play = substream->stream == SNDRV_PCM_STREAM_PLAYBACK;
818 int ret = 0;
819
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900820 switch (cmd) {
821 case SNDRV_PCM_TRIGGER_START:
822 fsi_stream_push(fsi, substream,
823 frames_to_bytes(runtime, runtime->buffer_size),
824 frames_to_bytes(runtime, runtime->period_size));
Kuninori Morimoto47fc9a02010-02-22 16:41:57 +0900825 ret = is_play ? fsi_data_push(fsi, 1) : fsi_data_pop(fsi, 1);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900826 break;
827 case SNDRV_PCM_TRIGGER_STOP:
828 fsi_irq_disable(fsi, is_play);
829 fsi_stream_pop(fsi);
830 break;
831 }
832
833 return ret;
834}
835
Kuninori Morimotoccad7b42010-07-13 12:13:14 +0900836static int fsi_dai_hw_params(struct snd_pcm_substream *substream,
837 struct snd_pcm_hw_params *params,
838 struct snd_soc_dai *dai)
839{
840 struct fsi_priv *fsi = fsi_get_priv(substream);
841 struct fsi_master *master = fsi_get_master(fsi);
842 int (*set_rate)(int is_porta, int rate) = master->info->set_rate;
843 int fsi_ver = master->core->ver;
844 int is_play = (substream->stream == SNDRV_PCM_STREAM_PLAYBACK);
845 int ret;
846
847 /* if slave mode, set_rate is not needed */
848 if (!fsi_is_master_mode(fsi, is_play))
849 return 0;
850
851 /* it is error if no set_rate */
852 if (!set_rate)
853 return -EIO;
854
Kuninori Morimotoccad7b42010-07-13 12:13:14 +0900855 ret = set_rate(fsi_is_port_a(fsi), params_rate(params));
856 if (ret > 0) {
857 u32 data = 0;
858
859 switch (ret & SH_FSI_ACKMD_MASK) {
860 default:
861 /* FALL THROUGH */
862 case SH_FSI_ACKMD_512:
863 data |= (0x0 << 12);
864 break;
865 case SH_FSI_ACKMD_256:
866 data |= (0x1 << 12);
867 break;
868 case SH_FSI_ACKMD_128:
869 data |= (0x2 << 12);
870 break;
871 case SH_FSI_ACKMD_64:
872 data |= (0x3 << 12);
873 break;
874 case SH_FSI_ACKMD_32:
875 if (fsi_ver < 2)
876 dev_err(dai->dev, "unsupported ACKMD\n");
877 else
878 data |= (0x4 << 12);
879 break;
880 }
881
882 switch (ret & SH_FSI_BPFMD_MASK) {
883 default:
884 /* FALL THROUGH */
885 case SH_FSI_BPFMD_32:
886 data |= (0x0 << 8);
887 break;
888 case SH_FSI_BPFMD_64:
889 data |= (0x1 << 8);
890 break;
891 case SH_FSI_BPFMD_128:
892 data |= (0x2 << 8);
893 break;
894 case SH_FSI_BPFMD_256:
895 data |= (0x3 << 8);
896 break;
897 case SH_FSI_BPFMD_512:
898 data |= (0x4 << 8);
899 break;
900 case SH_FSI_BPFMD_16:
901 if (fsi_ver < 2)
902 dev_err(dai->dev, "unsupported ACKMD\n");
903 else
904 data |= (0x7 << 8);
905 break;
906 }
907
908 fsi_reg_mask_set(fsi, CKG1, (ACKMD_MASK | BPFMD_MASK) , data);
909 udelay(10);
910 fsi_clk_ctrl(fsi, 1);
911 ret = 0;
912 }
Kuninori Morimotoccad7b42010-07-13 12:13:14 +0900913
914 return ret;
915
916}
917
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900918static struct snd_soc_dai_ops fsi_dai_ops = {
919 .startup = fsi_dai_startup,
920 .shutdown = fsi_dai_shutdown,
921 .trigger = fsi_dai_trigger,
Kuninori Morimotoccad7b42010-07-13 12:13:14 +0900922 .hw_params = fsi_dai_hw_params,
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900923};
924
925/************************************************************************
926
927
928 pcm ops
929
930
931************************************************************************/
932static struct snd_pcm_hardware fsi_pcm_hardware = {
933 .info = SNDRV_PCM_INFO_INTERLEAVED |
934 SNDRV_PCM_INFO_MMAP |
935 SNDRV_PCM_INFO_MMAP_VALID |
936 SNDRV_PCM_INFO_PAUSE,
937 .formats = FSI_FMTS,
938 .rates = FSI_RATES,
939 .rate_min = 8000,
940 .rate_max = 192000,
941 .channels_min = 1,
942 .channels_max = 2,
943 .buffer_bytes_max = 64 * 1024,
944 .period_bytes_min = 32,
945 .period_bytes_max = 8192,
946 .periods_min = 1,
947 .periods_max = 32,
948 .fifo_size = 256,
949};
950
951static int fsi_pcm_open(struct snd_pcm_substream *substream)
952{
953 struct snd_pcm_runtime *runtime = substream->runtime;
954 int ret = 0;
955
956 snd_soc_set_runtime_hwparams(substream, &fsi_pcm_hardware);
957
958 ret = snd_pcm_hw_constraint_integer(runtime,
959 SNDRV_PCM_HW_PARAM_PERIODS);
960
961 return ret;
962}
963
964static int fsi_hw_params(struct snd_pcm_substream *substream,
965 struct snd_pcm_hw_params *hw_params)
966{
967 return snd_pcm_lib_malloc_pages(substream,
968 params_buffer_bytes(hw_params));
969}
970
971static int fsi_hw_free(struct snd_pcm_substream *substream)
972{
973 return snd_pcm_lib_free_pages(substream);
974}
975
976static snd_pcm_uframes_t fsi_pointer(struct snd_pcm_substream *substream)
977{
978 struct snd_pcm_runtime *runtime = substream->runtime;
Kuninori Morimoto71f6e062009-12-02 15:11:08 +0900979 struct fsi_priv *fsi = fsi_get_priv(substream);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900980 long location;
981
Kuninori Morimoto9ddc9aa2009-10-30 12:02:39 +0900982 location = (fsi->byte_offset - 1);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +0900983 if (location < 0)
984 location = 0;
985
986 return bytes_to_frames(runtime, location);
987}
988
989static struct snd_pcm_ops fsi_pcm_ops = {
990 .open = fsi_pcm_open,
991 .ioctl = snd_pcm_lib_ioctl,
992 .hw_params = fsi_hw_params,
993 .hw_free = fsi_hw_free,
994 .pointer = fsi_pointer,
995};
996
997/************************************************************************
998
999
1000 snd_soc_platform
1001
1002
1003************************************************************************/
1004#define PREALLOC_BUFFER (32 * 1024)
1005#define PREALLOC_BUFFER_MAX (32 * 1024)
1006
1007static void fsi_pcm_free(struct snd_pcm *pcm)
1008{
1009 snd_pcm_lib_preallocate_free_for_all(pcm);
1010}
1011
1012static int fsi_pcm_new(struct snd_card *card,
1013 struct snd_soc_dai *dai,
1014 struct snd_pcm *pcm)
1015{
1016 /*
1017 * dont use SNDRV_DMA_TYPE_DEV, since it will oops the SH kernel
1018 * in MMAP mode (i.e. aplay -M)
1019 */
1020 return snd_pcm_lib_preallocate_pages_for_all(
1021 pcm,
1022 SNDRV_DMA_TYPE_CONTINUOUS,
1023 snd_dma_continuous_data(GFP_KERNEL),
1024 PREALLOC_BUFFER, PREALLOC_BUFFER_MAX);
1025}
1026
1027/************************************************************************
1028
1029
1030 alsa struct
1031
1032
1033************************************************************************/
Liam Girdwoodf0fba2a2010-03-17 20:15:21 +00001034static struct snd_soc_dai_driver fsi_soc_dai[] = {
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +09001035 {
Liam Girdwoodf0fba2a2010-03-17 20:15:21 +00001036 .name = "fsia-dai",
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +09001037 .playback = {
1038 .rates = FSI_RATES,
1039 .formats = FSI_FMTS,
1040 .channels_min = 1,
1041 .channels_max = 8,
1042 },
Kuninori Morimoto07102f32009-10-30 12:02:44 +09001043 .capture = {
1044 .rates = FSI_RATES,
1045 .formats = FSI_FMTS,
1046 .channels_min = 1,
1047 .channels_max = 8,
1048 },
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +09001049 .ops = &fsi_dai_ops,
1050 },
1051 {
Liam Girdwoodf0fba2a2010-03-17 20:15:21 +00001052 .name = "fsib-dai",
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +09001053 .playback = {
1054 .rates = FSI_RATES,
1055 .formats = FSI_FMTS,
1056 .channels_min = 1,
1057 .channels_max = 8,
1058 },
Kuninori Morimoto07102f32009-10-30 12:02:44 +09001059 .capture = {
1060 .rates = FSI_RATES,
1061 .formats = FSI_FMTS,
1062 .channels_min = 1,
1063 .channels_max = 8,
1064 },
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +09001065 .ops = &fsi_dai_ops,
1066 },
1067};
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +09001068
Liam Girdwoodf0fba2a2010-03-17 20:15:21 +00001069static struct snd_soc_platform_driver fsi_soc_platform = {
1070 .ops = &fsi_pcm_ops,
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +09001071 .pcm_new = fsi_pcm_new,
1072 .pcm_free = fsi_pcm_free,
1073};
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +09001074
1075/************************************************************************
1076
1077
1078 platform function
1079
1080
1081************************************************************************/
1082static int fsi_probe(struct platform_device *pdev)
1083{
Kuninori Morimoto71f6e062009-12-02 15:11:08 +09001084 struct fsi_master *master;
Kuninori Morimotocc780d32010-03-25 19:15:53 +09001085 const struct platform_device_id *id_entry;
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +09001086 struct resource *res;
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +09001087 unsigned int irq;
1088 int ret;
1089
Kuninori Morimotocc780d32010-03-25 19:15:53 +09001090 id_entry = pdev->id_entry;
1091 if (!id_entry) {
1092 dev_err(&pdev->dev, "unknown fsi device\n");
1093 return -ENODEV;
1094 }
1095
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +09001096 res = platform_get_resource(pdev, IORESOURCE_MEM, 0);
1097 irq = platform_get_irq(pdev, 0);
Uwe Kleine-Königb6aa1792009-12-16 17:10:09 +01001098 if (!res || (int)irq <= 0) {
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +09001099 dev_err(&pdev->dev, "Not enough FSI platform resources.\n");
1100 ret = -ENODEV;
1101 goto exit;
1102 }
1103
1104 master = kzalloc(sizeof(*master), GFP_KERNEL);
1105 if (!master) {
1106 dev_err(&pdev->dev, "Could not allocate master\n");
1107 ret = -ENOMEM;
1108 goto exit;
1109 }
1110
1111 master->base = ioremap_nocache(res->start, resource_size(res));
1112 if (!master->base) {
1113 ret = -ENXIO;
1114 dev_err(&pdev->dev, "Unable to ioremap FSI registers.\n");
1115 goto exit_kfree;
1116 }
1117
Kuninori Morimoto3bc28072010-07-29 16:48:32 +09001118 /* master setting */
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +09001119 master->irq = irq;
1120 master->info = pdev->dev.platform_data;
Kuninori Morimoto73b92c12010-07-13 12:13:04 +09001121 master->core = (struct fsi_core *)id_entry->driver_data;
Kuninori Morimoto8fc176d2010-01-28 13:46:16 +09001122 spin_lock_init(&master->lock);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +09001123
Kuninori Morimoto3bc28072010-07-29 16:48:32 +09001124 /* FSI A setting */
1125 master->fsia.base = master->base;
1126 master->fsia.master = master;
1127 master->fsia.mst_ctrl = A_MST_CTLR;
1128
1129 /* FSI B setting */
1130 master->fsib.base = master->base + 0x40;
1131 master->fsib.master = master;
1132 master->fsib.mst_ctrl = B_MST_CTLR;
1133
Kuninori Morimoto785d1c42009-11-30 20:24:48 +09001134 pm_runtime_enable(&pdev->dev);
1135 pm_runtime_resume(&pdev->dev);
Liam Girdwoodf0fba2a2010-03-17 20:15:21 +00001136 dev_set_drvdata(&pdev->dev, master);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +09001137
Kuninori Morimoto71f6e062009-12-02 15:11:08 +09001138 fsi_soft_all_reset(master);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +09001139
Kuninori Morimotocc780d32010-03-25 19:15:53 +09001140 ret = request_irq(irq, &fsi_interrupt, IRQF_DISABLED,
1141 id_entry->name, master);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +09001142 if (ret) {
1143 dev_err(&pdev->dev, "irq request err\n");
Kuninori Morimoto9ddc9aa2009-10-30 12:02:39 +09001144 goto exit_iounmap;
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +09001145 }
1146
Liam Girdwoodf0fba2a2010-03-17 20:15:21 +00001147 ret = snd_soc_register_platform(&pdev->dev, &fsi_soc_platform);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +09001148 if (ret < 0) {
1149 dev_err(&pdev->dev, "cannot snd soc register\n");
1150 goto exit_free_irq;
1151 }
1152
Liam Girdwoodf0fba2a2010-03-17 20:15:21 +00001153 return snd_soc_register_dais(&pdev->dev, fsi_soc_dai, ARRAY_SIZE(fsi_soc_dai));
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +09001154
1155exit_free_irq:
1156 free_irq(irq, master);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +09001157exit_iounmap:
1158 iounmap(master->base);
Kuninori Morimoto785d1c42009-11-30 20:24:48 +09001159 pm_runtime_disable(&pdev->dev);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +09001160exit_kfree:
1161 kfree(master);
1162 master = NULL;
1163exit:
1164 return ret;
1165}
1166
1167static int fsi_remove(struct platform_device *pdev)
1168{
Kuninori Morimoto71f6e062009-12-02 15:11:08 +09001169 struct fsi_master *master;
1170
Liam Girdwoodf0fba2a2010-03-17 20:15:21 +00001171 master = dev_get_drvdata(&pdev->dev);
Kuninori Morimoto71f6e062009-12-02 15:11:08 +09001172
Liam Girdwoodf0fba2a2010-03-17 20:15:21 +00001173 snd_soc_unregister_dais(&pdev->dev, ARRAY_SIZE(fsi_soc_dai));
1174 snd_soc_unregister_platform(&pdev->dev);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +09001175
Kuninori Morimoto785d1c42009-11-30 20:24:48 +09001176 pm_runtime_disable(&pdev->dev);
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +09001177
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +09001178 free_irq(master->irq, master);
1179
1180 iounmap(master->base);
1181 kfree(master);
Kuninori Morimoto71f6e062009-12-02 15:11:08 +09001182
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +09001183 return 0;
1184}
1185
Kuninori Morimoto785d1c42009-11-30 20:24:48 +09001186static int fsi_runtime_nop(struct device *dev)
1187{
1188 /* Runtime PM callback shared between ->runtime_suspend()
1189 * and ->runtime_resume(). Simply returns success.
1190 *
1191 * This driver re-initializes all registers after
1192 * pm_runtime_get_sync() anyway so there is no need
1193 * to save and restore registers here.
1194 */
1195 return 0;
1196}
1197
1198static struct dev_pm_ops fsi_pm_ops = {
1199 .runtime_suspend = fsi_runtime_nop,
1200 .runtime_resume = fsi_runtime_nop,
1201};
1202
Kuninori Morimoto73b92c12010-07-13 12:13:04 +09001203static struct fsi_core fsi1_core = {
1204 .ver = 1,
1205
1206 /* Interrupt */
Kuninori Morimotocc780d32010-03-25 19:15:53 +09001207 .int_st = INT_ST,
1208 .iemsk = IEMSK,
1209 .imsk = IMSK,
1210};
1211
Kuninori Morimoto73b92c12010-07-13 12:13:04 +09001212static struct fsi_core fsi2_core = {
1213 .ver = 2,
1214
1215 /* Interrupt */
Kuninori Morimotocc780d32010-03-25 19:15:53 +09001216 .int_st = CPU_INT_ST,
1217 .iemsk = CPU_IEMSK,
1218 .imsk = CPU_IMSK,
1219};
1220
1221static struct platform_device_id fsi_id_table[] = {
Kuninori Morimoto73b92c12010-07-13 12:13:04 +09001222 { "sh_fsi", (kernel_ulong_t)&fsi1_core },
1223 { "sh_fsi2", (kernel_ulong_t)&fsi2_core },
Kuninori Morimotocc780d32010-03-25 19:15:53 +09001224};
Dzianis Kahanovichd85a6d72010-09-17 16:42:05 +03001225MODULE_DEVICE_TABLE(platform, fsi_id_table);
Kuninori Morimotocc780d32010-03-25 19:15:53 +09001226
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +09001227static struct platform_driver fsi_driver = {
1228 .driver = {
Liam Girdwoodf0fba2a2010-03-17 20:15:21 +00001229 .name = "fsi-pcm-audio",
Kuninori Morimoto785d1c42009-11-30 20:24:48 +09001230 .pm = &fsi_pm_ops,
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +09001231 },
1232 .probe = fsi_probe,
1233 .remove = fsi_remove,
Kuninori Morimotocc780d32010-03-25 19:15:53 +09001234 .id_table = fsi_id_table,
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +09001235};
1236
1237static int __init fsi_mobile_init(void)
1238{
1239 return platform_driver_register(&fsi_driver);
1240}
1241
1242static void __exit fsi_mobile_exit(void)
1243{
1244 platform_driver_unregister(&fsi_driver);
1245}
Dzianis Kahanovichd85a6d72010-09-17 16:42:05 +03001246
Kuninori Morimotoa4d7d552009-08-20 21:01:05 +09001247module_init(fsi_mobile_init);
1248module_exit(fsi_mobile_exit);
1249
1250MODULE_LICENSE("GPL");
1251MODULE_DESCRIPTION("SuperH onchip FSI audio driver");
1252MODULE_AUTHOR("Kuninori Morimoto <morimoto.kuninori@renesas.com>");