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sdmmcvar.h revision 1.2.4.1
      1  1.2.4.1   rmind /*	$NetBSD: sdmmcvar.h,v 1.2.4.1 2010/05/30 05:17:43 rmind Exp $	*/
      2      1.1  nonaka /*	$OpenBSD: sdmmcvar.h,v 1.13 2009/01/09 10:55:22 jsg Exp $	*/
      3      1.1  nonaka 
      4      1.1  nonaka /*
      5      1.1  nonaka  * Copyright (c) 2006 Uwe Stuehler <uwe (at) openbsd.org>
      6      1.1  nonaka  *
      7      1.1  nonaka  * Permission to use, copy, modify, and distribute this software for any
      8      1.1  nonaka  * purpose with or without fee is hereby granted, provided that the above
      9      1.1  nonaka  * copyright notice and this permission notice appear in all copies.
     10      1.1  nonaka  *
     11      1.1  nonaka  * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
     12      1.1  nonaka  * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
     13      1.1  nonaka  * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR
     14      1.1  nonaka  * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
     15      1.1  nonaka  * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
     16      1.1  nonaka  * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF
     17      1.1  nonaka  * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
     18      1.1  nonaka  */
     19      1.1  nonaka 
     20      1.1  nonaka #ifndef	_SDMMCVAR_H_
     21      1.1  nonaka #define	_SDMMCVAR_H_
     22      1.1  nonaka 
     23      1.1  nonaka #include <sys/queue.h>
     24      1.1  nonaka #include <sys/mutex.h>
     25  1.2.4.1   rmind #include <sys/callout.h>
     26      1.1  nonaka 
     27      1.1  nonaka #include <machine/bus.h>
     28      1.1  nonaka 
     29      1.1  nonaka #include <dev/sdmmc/sdmmcchip.h>
     30      1.1  nonaka #include <dev/sdmmc/sdmmcreg.h>
     31      1.1  nonaka 
     32      1.2  nonaka #define	SDMMC_SECTOR_SIZE_SB	9
     33      1.2  nonaka #define	SDMMC_SECTOR_SIZE	(1 << SDMMC_SECTOR_SIZE_SB)	/* =512 */
     34      1.2  nonaka 
     35      1.1  nonaka struct sdmmc_csd {
     36      1.1  nonaka 	int	csdver;		/* CSD structure format */
     37      1.1  nonaka 	u_int	mmcver;		/* MMC version (for CID format) */
     38      1.1  nonaka 	int	capacity;	/* total number of sectors */
     39      1.1  nonaka 	int	read_bl_len;	/* block length for reads */
     40      1.1  nonaka 	int	write_bl_len;	/* block length for writes */
     41      1.1  nonaka 	int	r2w_factor;
     42      1.1  nonaka 	int	tran_speed;	/* transfer speed (kbit/s) */
     43      1.1  nonaka 	/* ... */
     44      1.1  nonaka };
     45      1.1  nonaka 
     46      1.1  nonaka struct sdmmc_cid {
     47      1.1  nonaka 	int	mid;		/* manufacturer identification number */
     48      1.1  nonaka 	int	oid;		/* OEM/product identification number */
     49      1.1  nonaka 	char	pnm[8];		/* product name (MMC v1 has the longest) */
     50      1.1  nonaka 	int	rev;		/* product revision */
     51      1.1  nonaka 	int	psn;		/* product serial number */
     52      1.1  nonaka 	int	mdt;		/* manufacturing date */
     53      1.1  nonaka };
     54      1.1  nonaka 
     55  1.2.4.1   rmind struct sdmmc_scr {
     56  1.2.4.1   rmind 	int	sd_spec;
     57  1.2.4.1   rmind 	int	bus_width;
     58  1.2.4.1   rmind };
     59  1.2.4.1   rmind 
     60      1.1  nonaka typedef uint32_t sdmmc_response[4];
     61      1.1  nonaka 
     62      1.1  nonaka struct sdmmc_softc;
     63      1.1  nonaka 
     64      1.1  nonaka struct sdmmc_task {
     65      1.1  nonaka 	void (*func)(void *arg);
     66      1.1  nonaka 	void *arg;
     67      1.1  nonaka 	int onqueue;
     68      1.1  nonaka 	struct sdmmc_softc *sc;
     69      1.1  nonaka 	TAILQ_ENTRY(sdmmc_task) next;
     70      1.1  nonaka };
     71      1.1  nonaka 
     72      1.1  nonaka #define	sdmmc_init_task(xtask, xfunc, xarg)				\
     73      1.1  nonaka do {									\
     74      1.1  nonaka 	(xtask)->func = (xfunc);					\
     75      1.1  nonaka 	(xtask)->arg = (xarg);						\
     76      1.1  nonaka 	(xtask)->onqueue = 0;						\
     77      1.1  nonaka 	(xtask)->sc = NULL;						\
     78      1.1  nonaka } while (/*CONSTCOND*/0)
     79      1.1  nonaka 
     80      1.1  nonaka #define sdmmc_task_pending(xtask) ((xtask)->onqueue)
     81      1.1  nonaka 
     82      1.1  nonaka struct sdmmc_command {
     83      1.1  nonaka 	struct sdmmc_task c_task;	/* task queue entry */
     84      1.1  nonaka 	uint16_t	 c_opcode;	/* SD or MMC command index */
     85      1.1  nonaka 	uint32_t	 c_arg;		/* SD/MMC command argument */
     86      1.1  nonaka 	sdmmc_response	 c_resp;	/* response buffer */
     87      1.1  nonaka 	bus_dmamap_t	 c_dmamap;
     88      1.1  nonaka 	void		*c_data;	/* buffer to send or read into */
     89      1.1  nonaka 	int		 c_datalen;	/* length of data buffer */
     90      1.1  nonaka 	int		 c_blklen;	/* block length */
     91      1.1  nonaka 	int		 c_flags;	/* see below */
     92  1.2.4.1   rmind #define SCF_ITSDONE	(1U << 0)		/* command is complete */
     93  1.2.4.1   rmind #define SCF_RSP_PRESENT	(1U << 1)
     94  1.2.4.1   rmind #define SCF_RSP_BSY	(1U << 2)
     95  1.2.4.1   rmind #define SCF_RSP_136	(1U << 3)
     96  1.2.4.1   rmind #define SCF_RSP_CRC	(1U << 4)
     97  1.2.4.1   rmind #define SCF_RSP_IDX	(1U << 5)
     98  1.2.4.1   rmind #define SCF_CMD_READ	(1U << 6)	/* read command (data expected) */
     99  1.2.4.1   rmind /* non SPI */
    100  1.2.4.1   rmind #define SCF_CMD_AC	(0U << 8)
    101  1.2.4.1   rmind #define SCF_CMD_ADTC	(1U << 8)
    102  1.2.4.1   rmind #define SCF_CMD_BC	(2U << 8)
    103  1.2.4.1   rmind #define SCF_CMD_BCR	(3U << 8)
    104  1.2.4.1   rmind #define SCF_CMD_MASK	(3U << 8)
    105  1.2.4.1   rmind /* SPI */
    106  1.2.4.1   rmind #define SCF_RSP_SPI_S1	(1U << 10)
    107  1.2.4.1   rmind #define SCF_RSP_SPI_S2	(1U << 11)
    108  1.2.4.1   rmind #define SCF_RSP_SPI_B4	(1U << 12)
    109  1.2.4.1   rmind #define SCF_RSP_SPI_BSY	(1U << 13)
    110      1.1  nonaka /* response types */
    111      1.1  nonaka #define SCF_RSP_R0	0	/* none */
    112      1.1  nonaka #define SCF_RSP_R1	(SCF_RSP_PRESENT|SCF_RSP_CRC|SCF_RSP_IDX)
    113      1.1  nonaka #define SCF_RSP_R1B	(SCF_RSP_PRESENT|SCF_RSP_CRC|SCF_RSP_IDX|SCF_RSP_BSY)
    114      1.1  nonaka #define SCF_RSP_R2	(SCF_RSP_PRESENT|SCF_RSP_CRC|SCF_RSP_136)
    115      1.1  nonaka #define SCF_RSP_R3	(SCF_RSP_PRESENT)
    116      1.1  nonaka #define SCF_RSP_R4	(SCF_RSP_PRESENT)
    117      1.1  nonaka #define SCF_RSP_R5	(SCF_RSP_PRESENT|SCF_RSP_CRC|SCF_RSP_IDX)
    118      1.1  nonaka #define SCF_RSP_R5B	(SCF_RSP_PRESENT|SCF_RSP_CRC|SCF_RSP_IDX|SCF_RSP_BSY)
    119      1.1  nonaka #define SCF_RSP_R6	(SCF_RSP_PRESENT|SCF_RSP_CRC|SCF_RSP_IDX)
    120      1.1  nonaka #define SCF_RSP_R7	(SCF_RSP_PRESENT|SCF_RSP_CRC|SCF_RSP_IDX)
    121  1.2.4.1   rmind /* SPI */
    122  1.2.4.1   rmind #define SCF_RSP_SPI_R1	(SCF_RSP_SPI_S1)
    123  1.2.4.1   rmind #define SCF_RSP_SPI_R1B	(SCF_RSP_SPI_S1|SCF_RSP_SPI_BSY)
    124  1.2.4.1   rmind #define SCF_RSP_SPI_R2	(SCF_RSP_SPI_S1|SCF_RSP_SPI_S2)
    125  1.2.4.1   rmind #define SCF_RSP_SPI_R3	(SCF_RSP_SPI_S1|SCF_RSP_SPI_B4)
    126  1.2.4.1   rmind #define SCF_RSP_SPI_R4	(SCF_RSP_SPI_S1|SCF_RSP_SPI_B4)
    127  1.2.4.1   rmind #define SCF_RSP_SPI_R5	(SCF_RSP_SPI_S1|SCF_RSP_SPI_S2)
    128  1.2.4.1   rmind #define SCF_RSP_SPI_R7	(SCF_RSP_SPI_S1|SCF_RSP_SPI_B4)
    129      1.1  nonaka 	int		 c_error;	/* errno value on completion */
    130      1.1  nonaka 
    131      1.1  nonaka 	/* Host controller owned fields for data xfer in progress */
    132      1.1  nonaka 	int c_resid;			/* remaining I/O */
    133      1.1  nonaka 	u_char *c_buf;			/* remaining data */
    134      1.1  nonaka };
    135      1.1  nonaka 
    136      1.1  nonaka /*
    137      1.1  nonaka  * Decoded PC Card 16 based Card Information Structure (CIS),
    138      1.1  nonaka  * per card (function 0) and per function (1 and greater).
    139      1.1  nonaka  */
    140      1.1  nonaka struct sdmmc_cis {
    141      1.1  nonaka 	uint16_t	 manufacturer;
    142      1.1  nonaka #define SDMMC_VENDOR_INVALID	0xffff
    143      1.1  nonaka 	uint16_t	 product;
    144      1.1  nonaka #define SDMMC_PRODUCT_INVALID	0xffff
    145      1.1  nonaka 	uint8_t		 function;
    146      1.1  nonaka #define SDMMC_FUNCTION_INVALID	0xff
    147      1.1  nonaka 	u_char		 cis1_major;
    148      1.1  nonaka 	u_char		 cis1_minor;
    149      1.1  nonaka 	char		 cis1_info_buf[256];
    150      1.1  nonaka 	char		*cis1_info[4];
    151      1.1  nonaka };
    152      1.1  nonaka 
    153      1.1  nonaka /*
    154      1.1  nonaka  * Structure describing either an SD card I/O function or a SD/MMC
    155      1.1  nonaka  * memory card from a "stack of cards" that responded to CMD2.  For a
    156      1.1  nonaka  * combo card with one I/O function and one memory card, there will be
    157      1.1  nonaka  * two of these structures allocated.  Each card slot has such a list
    158      1.1  nonaka  * of sdmmc_function structures.
    159      1.1  nonaka  */
    160      1.1  nonaka struct sdmmc_function {
    161      1.1  nonaka 	/* common members */
    162      1.1  nonaka 	struct sdmmc_softc *sc;		/* card slot softc */
    163      1.1  nonaka 	uint16_t rca;			/* relative card address */
    164      1.1  nonaka 	int flags;
    165      1.1  nonaka #define SFF_ERROR		0x0001	/* function is poo; ignore it */
    166      1.1  nonaka #define SFF_SDHC		0x0002	/* SD High Capacity card */
    167      1.1  nonaka 	SIMPLEQ_ENTRY(sdmmc_function) sf_list;
    168      1.1  nonaka 	/* SD card I/O function members */
    169      1.1  nonaka 	int number;			/* I/O function number or -1 */
    170      1.1  nonaka 	device_t child;			/* function driver */
    171      1.1  nonaka 	struct sdmmc_cis cis;		/* decoded CIS */
    172      1.1  nonaka 	/* SD/MMC memory card members */
    173      1.1  nonaka 	struct sdmmc_csd csd;		/* decoded CSD value */
    174      1.1  nonaka 	struct sdmmc_cid cid;		/* decoded CID value */
    175      1.1  nonaka 	sdmmc_response raw_cid;		/* temp. storage for decoding */
    176  1.2.4.1   rmind 	uint32_t raw_scr[2];
    177  1.2.4.1   rmind 	struct sdmmc_scr scr;		/* decoded CSR value */
    178      1.1  nonaka };
    179      1.1  nonaka 
    180      1.1  nonaka /*
    181      1.1  nonaka  * Structure describing a single SD/MMC/SDIO card slot.
    182      1.1  nonaka  */
    183      1.1  nonaka struct sdmmc_softc {
    184      1.1  nonaka 	device_t sc_dev;		/* base device */
    185      1.1  nonaka #define SDMMCDEVNAME(sc)	(device_xname(sc->sc_dev))
    186      1.1  nonaka 
    187      1.1  nonaka 	sdmmc_chipset_tag_t sc_sct;	/* host controller chipset tag */
    188  1.2.4.1   rmind 	sdmmc_spi_chipset_tag_t sc_spi_sct;
    189      1.1  nonaka 	sdmmc_chipset_handle_t sc_sch;	/* host controller chipset handle */
    190      1.1  nonaka 	bus_dma_tag_t sc_dmat;
    191      1.1  nonaka 	bus_dmamap_t sc_dmap;
    192  1.2.4.1   rmind #define	SDMMC_MAXNSEGS		17	/* (MAXPHYS / PAGE_SIZE) + 1 */
    193      1.1  nonaka 
    194      1.1  nonaka 	struct kmutex sc_mtx;		/* lock around host controller */
    195      1.1  nonaka 	int sc_dying;			/* bus driver is shutting down */
    196      1.1  nonaka 
    197      1.1  nonaka 	uint32_t sc_flags;
    198      1.1  nonaka #define SMF_INITED		0x0001
    199      1.1  nonaka #define SMF_SD_MODE		0x0002	/* host in SD mode (MMC otherwise) */
    200      1.1  nonaka #define SMF_IO_MODE		0x0004	/* host in I/O mode (SD mode only) */
    201      1.1  nonaka #define SMF_MEM_MODE		0x0008	/* host in memory mode (SD or MMC) */
    202      1.1  nonaka #define SMF_CARD_PRESENT	0x4000	/* card presence noticed */
    203      1.1  nonaka #define SMF_CARD_ATTACHED	0x8000	/* card driver(s) attached */
    204      1.1  nonaka 
    205      1.1  nonaka 	uint32_t sc_caps;		/* host capability */
    206      1.1  nonaka #define SMC_CAPS_AUTO_STOP	0x0001	/* send CMD12 automagically by host */
    207      1.1  nonaka #define SMC_CAPS_4BIT_MODE	0x0002	/* 4-bits data bus width */
    208      1.1  nonaka #define SMC_CAPS_DMA		0x0004	/* DMA transfer */
    209  1.2.4.1   rmind #define SMC_CAPS_SPI_MODE	0x0008	/* SPI mode */
    210  1.2.4.1   rmind #define SMC_CAPS_POLL_CARD_DET	0x0010	/* Polling card detect */
    211  1.2.4.1   rmind #define SMC_CAPS_SINGLE_ONLY	0x0020	/* only single read/write */
    212      1.1  nonaka 
    213      1.1  nonaka 	/* function */
    214      1.1  nonaka 	int sc_function_count;		/* number of I/O functions (SDIO) */
    215      1.1  nonaka 	struct sdmmc_function *sc_card;	/* selected card */
    216      1.1  nonaka 	struct sdmmc_function *sc_fn0;	/* function 0, the card itself */
    217      1.1  nonaka 	SIMPLEQ_HEAD(, sdmmc_function) sf_head; /* list of card functions */
    218      1.1  nonaka 
    219      1.1  nonaka 	/* task queue */
    220      1.1  nonaka 	struct lwp *sc_tskq_lwp;	/* asynchronous tasks */
    221      1.1  nonaka 	TAILQ_HEAD(, sdmmc_task) sc_tskq;   /* task thread work queue */
    222      1.1  nonaka 	struct kmutex sc_tskq_mtx;
    223      1.1  nonaka 	struct kcondvar sc_tskq_cv;
    224      1.1  nonaka 
    225      1.1  nonaka 	/* discover task */
    226      1.1  nonaka 	struct sdmmc_task sc_discover_task; /* card attach/detach task */
    227      1.1  nonaka 	struct kmutex sc_discover_task_mtx;
    228      1.1  nonaka 
    229      1.1  nonaka 	/* interrupt task */
    230      1.1  nonaka 	struct sdmmc_task sc_intr_task;	/* card interrupt task */
    231      1.1  nonaka 	struct kmutex sc_intr_task_mtx;
    232      1.1  nonaka 	TAILQ_HEAD(, sdmmc_intr_handler) sc_intrq; /* interrupt handlers */
    233      1.1  nonaka 
    234      1.1  nonaka 	u_int sc_clkmin;		/* host min bus clock */
    235      1.1  nonaka 	u_int sc_clkmax;		/* host max bus clock */
    236      1.1  nonaka 	u_int sc_busclk;		/* host bus clock */
    237      1.1  nonaka 	int sc_buswidth;		/* host bus width */
    238  1.2.4.1   rmind 
    239  1.2.4.1   rmind 	callout_t sc_card_detect_ch;	/* polling card insert/remove */
    240      1.1  nonaka };
    241      1.1  nonaka 
    242      1.1  nonaka /*
    243      1.1  nonaka  * Attach devices at the sdmmc bus.
    244      1.1  nonaka  */
    245      1.1  nonaka struct sdmmc_attach_args {
    246      1.1  nonaka 	uint16_t manufacturer;
    247      1.1  nonaka 	uint16_t product;
    248      1.1  nonaka 	struct sdmmc_function *sf;
    249      1.1  nonaka };
    250      1.1  nonaka 
    251      1.1  nonaka struct sdmmc_product {
    252      1.1  nonaka 	uint16_t	pp_vendor;
    253      1.1  nonaka 	uint16_t	pp_product;
    254      1.1  nonaka 	const char	*pp_cisinfo[4];
    255      1.1  nonaka };
    256      1.1  nonaka 
    257      1.1  nonaka #ifndef	IPL_SDMMC
    258      1.1  nonaka #define IPL_SDMMC	IPL_BIO
    259      1.1  nonaka #endif
    260      1.1  nonaka 
    261      1.1  nonaka #ifndef	splsdmmc
    262      1.1  nonaka #define splsdmmc()	splbio()
    263      1.1  nonaka #endif
    264      1.1  nonaka 
    265      1.1  nonaka #define	SDMMC_LOCK(sc)
    266      1.1  nonaka #define	SDMMC_UNLOCK(sc)
    267      1.1  nonaka 
    268      1.1  nonaka #ifdef SDMMC_DEBUG
    269      1.1  nonaka extern int sdmmcdebug;
    270      1.1  nonaka #endif
    271      1.1  nonaka 
    272      1.1  nonaka void	sdmmc_add_task(struct sdmmc_softc *, struct sdmmc_task *);
    273      1.1  nonaka void	sdmmc_del_task(struct sdmmc_task *);
    274      1.1  nonaka 
    275      1.1  nonaka struct	sdmmc_function *sdmmc_function_alloc(struct sdmmc_softc *);
    276      1.1  nonaka void	sdmmc_function_free(struct sdmmc_function *);
    277      1.1  nonaka int	sdmmc_set_bus_power(struct sdmmc_softc *, uint32_t, uint32_t);
    278      1.1  nonaka int	sdmmc_mmc_command(struct sdmmc_softc *, struct sdmmc_command *);
    279  1.2.4.1   rmind int	sdmmc_app_command(struct sdmmc_softc *, struct sdmmc_function *,
    280  1.2.4.1   rmind 	    struct sdmmc_command *);
    281      1.1  nonaka void	sdmmc_go_idle_state(struct sdmmc_softc *);
    282      1.1  nonaka int	sdmmc_select_card(struct sdmmc_softc *, struct sdmmc_function *);
    283  1.2.4.1   rmind int	sdmmc_set_relative_addr(struct sdmmc_softc *, struct sdmmc_function *);
    284      1.1  nonaka 
    285      1.1  nonaka void	sdmmc_intr_enable(struct sdmmc_function *);
    286      1.1  nonaka void	sdmmc_intr_disable(struct sdmmc_function *);
    287      1.1  nonaka void	*sdmmc_intr_establish(device_t, int (*)(void *), void *, const char *);
    288      1.1  nonaka void	sdmmc_intr_disestablish(void *);
    289      1.1  nonaka void	sdmmc_intr_task(void *);
    290      1.1  nonaka 
    291      1.1  nonaka int	sdmmc_decode_csd(struct sdmmc_softc *, sdmmc_response,
    292      1.1  nonaka 	    struct sdmmc_function *);
    293      1.1  nonaka int	sdmmc_decode_cid(struct sdmmc_softc *, sdmmc_response,
    294      1.1  nonaka 	    struct sdmmc_function *);
    295      1.1  nonaka void	sdmmc_print_cid(struct sdmmc_cid *);
    296  1.2.4.1   rmind #ifdef SDMMC_DUMP_CSD
    297  1.2.4.1   rmind void	sdmmc_print_csd(sdmmc_response, struct sdmmc_csd *);
    298  1.2.4.1   rmind #endif
    299  1.2.4.1   rmind void	sdmmc_dump_data(const char *, void *, size_t);
    300      1.1  nonaka 
    301      1.1  nonaka int	sdmmc_io_enable(struct sdmmc_softc *);
    302      1.1  nonaka void	sdmmc_io_scan(struct sdmmc_softc *);
    303      1.1  nonaka int	sdmmc_io_init(struct sdmmc_softc *, struct sdmmc_function *);
    304      1.1  nonaka uint8_t sdmmc_io_read_1(struct sdmmc_function *, int);
    305      1.1  nonaka uint16_t sdmmc_io_read_2(struct sdmmc_function *, int);
    306      1.1  nonaka uint32_t sdmmc_io_read_4(struct sdmmc_function *, int);
    307      1.1  nonaka int	sdmmc_io_read_multi_1(struct sdmmc_function *, int, u_char *, int);
    308      1.1  nonaka void	sdmmc_io_write_1(struct sdmmc_function *, int, uint8_t);
    309      1.1  nonaka void	sdmmc_io_write_2(struct sdmmc_function *, int, uint16_t);
    310      1.1  nonaka void	sdmmc_io_write_4(struct sdmmc_function *, int, uint32_t);
    311      1.1  nonaka int	sdmmc_io_write_multi_1(struct sdmmc_function *, int, u_char *, int);
    312      1.1  nonaka int	sdmmc_io_function_enable(struct sdmmc_function *);
    313      1.1  nonaka void	sdmmc_io_function_disable(struct sdmmc_function *);
    314      1.1  nonaka 
    315      1.1  nonaka int	sdmmc_read_cis(struct sdmmc_function *, struct sdmmc_cis *);
    316      1.1  nonaka void	sdmmc_print_cis(struct sdmmc_function *);
    317      1.1  nonaka void	sdmmc_check_cis_quirks(struct sdmmc_function *);
    318      1.1  nonaka 
    319      1.1  nonaka int	sdmmc_mem_enable(struct sdmmc_softc *);
    320      1.1  nonaka void	sdmmc_mem_scan(struct sdmmc_softc *);
    321      1.1  nonaka int	sdmmc_mem_init(struct sdmmc_softc *, struct sdmmc_function *);
    322  1.2.4.1   rmind int	sdmmc_mem_send_op_cond(struct sdmmc_softc *, uint32_t, uint32_t *);
    323  1.2.4.1   rmind int	sdmmc_mem_send_if_cond(struct sdmmc_softc *, uint32_t, uint32_t *);
    324  1.2.4.1   rmind int	sdmmc_mem_set_blocklen(struct sdmmc_softc *, struct sdmmc_function *);
    325  1.2.4.1   rmind int	sdmmc_mem_send_extcsd(struct sdmmc_softc *sc);
    326      1.1  nonaka int	sdmmc_mem_read_block(struct sdmmc_function *, uint32_t, u_char *,
    327      1.1  nonaka 	    size_t);
    328      1.1  nonaka int	sdmmc_mem_write_block(struct sdmmc_function *, uint32_t, u_char *,
    329      1.1  nonaka 	    size_t);
    330      1.1  nonaka 
    331      1.1  nonaka #endif	/* _SDMMCVAR_H_ */
    332