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[linux-2.6/linux-acpi-2.6/ibm-acpi-2.6.git] / include / linux / mmc / sh_mmcif.h
blob0222cd8ebe76cd6e089d342e7c8d7885c6907bb0
1 /*
2 * include/linux/mmc/sh_mmcif.h
4 * platform data for eMMC driver
6 * Copyright (C) 2010 Renesas Solutions Corp.
8 * This program is free software; you can redistribute it and/or modify
9 * it under the terms of the GNU General Public License as published by
10 * the Free Software Foundation; either version 2 of the License.
14 #ifndef LINUX_MMC_SH_MMCIF_H
15 #define LINUX_MMC_SH_MMCIF_H
17 #include <linux/io.h>
18 #include <linux/platform_device.h>
19 #include <linux/sh_dma.h>
22 * MMCIF : CE_CLK_CTRL [19:16]
23 * 1000 : Peripheral clock / 512
24 * 0111 : Peripheral clock / 256
25 * 0110 : Peripheral clock / 128
26 * 0101 : Peripheral clock / 64
27 * 0100 : Peripheral clock / 32
28 * 0011 : Peripheral clock / 16
29 * 0010 : Peripheral clock / 8
30 * 0001 : Peripheral clock / 4
31 * 0000 : Peripheral clock / 2
32 * 1111 : Peripheral clock (sup_pclk set '1')
35 struct sh_mmcif_dma {
36 struct sh_dmae_slave chan_priv_tx;
37 struct sh_dmae_slave chan_priv_rx;
40 struct sh_mmcif_plat_data {
41 void (*set_pwr)(struct platform_device *pdev, int state);
42 void (*down_pwr)(struct platform_device *pdev);
43 int (*get_cd)(struct platform_device *pdef);
44 struct sh_mmcif_dma *dma;
45 u8 sup_pclk; /* 1 :SH7757, 0: SH7724/SH7372 */
46 unsigned long caps;
47 u32 ocr;
50 #define MMCIF_CE_CMD_SET 0x00000000
51 #define MMCIF_CE_ARG 0x00000008
52 #define MMCIF_CE_ARG_CMD12 0x0000000C
53 #define MMCIF_CE_CMD_CTRL 0x00000010
54 #define MMCIF_CE_BLOCK_SET 0x00000014
55 #define MMCIF_CE_CLK_CTRL 0x00000018
56 #define MMCIF_CE_BUF_ACC 0x0000001C
57 #define MMCIF_CE_RESP3 0x00000020
58 #define MMCIF_CE_RESP2 0x00000024
59 #define MMCIF_CE_RESP1 0x00000028
60 #define MMCIF_CE_RESP0 0x0000002C
61 #define MMCIF_CE_RESP_CMD12 0x00000030
62 #define MMCIF_CE_DATA 0x00000034
63 #define MMCIF_CE_INT 0x00000040
64 #define MMCIF_CE_INT_MASK 0x00000044
65 #define MMCIF_CE_HOST_STS1 0x00000048
66 #define MMCIF_CE_HOST_STS2 0x0000004C
67 #define MMCIF_CE_VERSION 0x0000007C
69 /* CE_BUF_ACC */
70 #define BUF_ACC_DMAWEN (1 << 25)
71 #define BUF_ACC_DMAREN (1 << 24)
72 #define BUF_ACC_BUSW_32 (0 << 17)
73 #define BUF_ACC_BUSW_16 (1 << 17)
74 #define BUF_ACC_ATYP (1 << 16)
76 /* CE_CLK_CTRL */
77 #define CLK_ENABLE (1 << 24) /* 1: output mmc clock */
78 #define CLK_CLEAR ((1 << 19) | (1 << 18) | (1 << 17) | (1 << 16))
79 #define CLK_SUP_PCLK ((1 << 19) | (1 << 18) | (1 << 17) | (1 << 16))
80 #define CLKDIV_4 (1<<16) /* mmc clock frequency.
81 * n: bus clock/(2^(n+1)) */
82 #define CLKDIV_256 (7<<16) /* mmc clock frequency. (see above) */
83 #define SRSPTO_256 ((1 << 13) | (0 << 12)) /* resp timeout */
84 #define SRBSYTO_29 ((1 << 11) | (1 << 10) | \
85 (1 << 9) | (1 << 8)) /* resp busy timeout */
86 #define SRWDTO_29 ((1 << 7) | (1 << 6) | \
87 (1 << 5) | (1 << 4)) /* read/write timeout */
88 #define SCCSTO_29 ((1 << 3) | (1 << 2) | \
89 (1 << 1) | (1 << 0)) /* ccs timeout */
91 /* CE_VERSION */
92 #define SOFT_RST_ON (1 << 31)
93 #define SOFT_RST_OFF 0
95 static inline u32 sh_mmcif_readl(void __iomem *addr, int reg)
97 return __raw_readl(addr + reg);
100 static inline void sh_mmcif_writel(void __iomem *addr, int reg, u32 val)
102 __raw_writel(val, addr + reg);
105 #define SH_MMCIF_BBS 512 /* boot block size */
107 static inline void sh_mmcif_boot_cmd_send(void __iomem *base,
108 unsigned long cmd, unsigned long arg)
110 sh_mmcif_writel(base, MMCIF_CE_INT, 0);
111 sh_mmcif_writel(base, MMCIF_CE_ARG, arg);
112 sh_mmcif_writel(base, MMCIF_CE_CMD_SET, cmd);
115 static inline int sh_mmcif_boot_cmd_poll(void __iomem *base, unsigned long mask)
117 unsigned long tmp;
118 int cnt;
120 for (cnt = 0; cnt < 1000000; cnt++) {
121 tmp = sh_mmcif_readl(base, MMCIF_CE_INT);
122 if (tmp & mask) {
123 sh_mmcif_writel(base, MMCIF_CE_INT, tmp & ~mask);
124 return 0;
128 return -1;
131 static inline int sh_mmcif_boot_cmd(void __iomem *base,
132 unsigned long cmd, unsigned long arg)
134 sh_mmcif_boot_cmd_send(base, cmd, arg);
135 return sh_mmcif_boot_cmd_poll(base, 0x00010000);
138 static inline int sh_mmcif_boot_do_read_single(void __iomem *base,
139 unsigned int block_nr,
140 unsigned long *buf)
142 int k;
144 /* CMD13 - Status */
145 sh_mmcif_boot_cmd(base, 0x0d400000, 0x00010000);
147 if (sh_mmcif_readl(base, MMCIF_CE_RESP0) != 0x0900)
148 return -1;
150 /* CMD17 - Read */
151 sh_mmcif_boot_cmd(base, 0x11480000, block_nr * SH_MMCIF_BBS);
152 if (sh_mmcif_boot_cmd_poll(base, 0x00100000) < 0)
153 return -1;
155 for (k = 0; k < (SH_MMCIF_BBS / 4); k++)
156 buf[k] = sh_mmcif_readl(base, MMCIF_CE_DATA);
158 return 0;
161 static inline int sh_mmcif_boot_do_read(void __iomem *base,
162 unsigned long first_block,
163 unsigned long nr_blocks,
164 void *buf)
166 unsigned long k;
167 int ret = 0;
169 /* In data transfer mode: Set clock to Bus clock/4 (about 20Mhz) */
170 sh_mmcif_writel(base, MMCIF_CE_CLK_CTRL,
171 CLK_ENABLE | CLKDIV_4 | SRSPTO_256 |
172 SRBSYTO_29 | SRWDTO_29 | SCCSTO_29);
174 /* CMD9 - Get CSD */
175 sh_mmcif_boot_cmd(base, 0x09806000, 0x00010000);
177 /* CMD7 - Select the card */
178 sh_mmcif_boot_cmd(base, 0x07400000, 0x00010000);
180 /* CMD16 - Set the block size */
181 sh_mmcif_boot_cmd(base, 0x10400000, SH_MMCIF_BBS);
183 for (k = 0; !ret && k < nr_blocks; k++)
184 ret = sh_mmcif_boot_do_read_single(base, first_block + k,
185 buf + (k * SH_MMCIF_BBS));
187 return ret;
190 static inline void sh_mmcif_boot_init(void __iomem *base)
192 /* reset */
193 sh_mmcif_writel(base, MMCIF_CE_VERSION, SOFT_RST_ON);
194 sh_mmcif_writel(base, MMCIF_CE_VERSION, SOFT_RST_OFF);
196 /* byte swap */
197 sh_mmcif_writel(base, MMCIF_CE_BUF_ACC, BUF_ACC_ATYP);
199 /* Set block size in MMCIF hardware */
200 sh_mmcif_writel(base, MMCIF_CE_BLOCK_SET, SH_MMCIF_BBS);
202 /* Enable the clock, set it to Bus clock/256 (about 325Khz). */
203 sh_mmcif_writel(base, MMCIF_CE_CLK_CTRL,
204 CLK_ENABLE | CLKDIV_256 | SRSPTO_256 |
205 SRBSYTO_29 | SRWDTO_29 | SCCSTO_29);
207 /* CMD0 */
208 sh_mmcif_boot_cmd(base, 0x00000040, 0);
210 /* CMD1 - Get OCR */
211 do {
212 sh_mmcif_boot_cmd(base, 0x01405040, 0x40300000); /* CMD1 */
213 } while ((sh_mmcif_readl(base, MMCIF_CE_RESP0) & 0x80000000)
214 != 0x80000000);
216 /* CMD2 - Get CID */
217 sh_mmcif_boot_cmd(base, 0x02806040, 0);
219 /* CMD3 - Set card relative address */
220 sh_mmcif_boot_cmd(base, 0x03400040, 0x00010000);
223 #endif /* LINUX_MMC_SH_MMCIF_H */