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nand.h revision 1.13.2.2
      1 /*	$NetBSD: nand.h,v 1.13.2.2 2011/07/26 03:22:27 matt Exp $	*/
      2 
      3 /*-
      4  * Copyright (c) 2010 Department of Software Engineering,
      5  *		      University of Szeged, Hungary
      6  * Copyright (c) 2010 Adam Hoka <ahoka (at) NetBSD.org>
      7  * All rights reserved.
      8  *
      9  * This code is derived from software contributed to The NetBSD Foundation
     10  * by the Department of Software Engineering, University of Szeged, Hungary
     11  *
     12  * Redistribution and use in source and binary forms, with or without
     13  * modification, are permitted provided that the following conditions
     14  * are met:
     15  * 1. Redistributions of source code must retain the above copyright
     16  *    notice, this list of conditions and the following disclaimer.
     17  * 2. Redistributions in binary form must reproduce the above copyright
     18  *    notice, this list of conditions and the following disclaimer in the
     19  *    documentation and/or other materials provided with the distribution.
     20  *
     21  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
     22  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
     23  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
     24  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
     25  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING,
     26  * BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
     27  * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED
     28  * AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
     29  * OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     30  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     31  * SUCH DAMAGE.
     32  */
     33 
     34 #ifndef _NAND_H_
     35 #define _NAND_H_
     36 
     37 #include <sys/param.h>
     38 #include <sys/cdefs.h>
     39 
     40 #include <sys/bufq.h>
     41 #include <sys/buf.h>
     42 #include <sys/time.h>
     43 
     44 #include <dev/nand/onfi.h>
     45 #include <dev/flash/flash.h>
     46 #include <dev/flash/flash_io.h>
     47 
     48 #ifdef NAND_DEBUG
     49 #define DPRINTF(x)	printf x
     50 #else
     51 #define DPRINTF(x)
     52 #endif
     53 
     54 /* same as in linux for compatibility */
     55 enum {
     56 	NAND_BAD_MARKER_OFFSET		= 0,
     57 	NAND_BAD_MARKER_OFFSET_SMALL	= 5
     58 };
     59 
     60 /* feature flags use in nc_flags */
     61 enum {
     62 	NC_BUSWIDTH_16		= (1<<0),
     63 	NC_SOURCE_SYNC		= (1<<2),
     64 	NC_INTERLEAVED_PE	= (1<<1),
     65 	NC_INTERLEAVED_R	= (1<<3),
     66 	NC_EXTENDED_PARAM	= (1<<4)
     67 };
     68 
     69 /* various quirks used in nc_quirks */
     70 enum {
     71 	NC_QUIRK_NO_READ_START = (1<<0)
     72 };
     73 
     74 enum {
     75 	NAND_ECC_READ,
     76 	NAND_ECC_WRITE
     77 };
     78 
     79 enum {
     80 	NAND_ECC_OK,
     81 	NAND_ECC_CORRECTED,
     82 	NAND_ECC_INVALID,
     83 	NAND_ECC_TWOBIT
     84 };
     85 
     86 enum {
     87 	NAND_ECC_TYPE_HW,
     88 	NAND_ECC_TYPE_SW
     89 };
     90 
     91 struct nand_bbt {
     92 	uint8_t *nbbt_bitmap;
     93 	size_t nbbt_size;
     94 };
     95 
     96 struct nand_ecc {
     97 	size_t necc_offset;		/* offset of ecc data in oob */
     98 	size_t necc_size;		/* size of ecc data in oob */
     99 	size_t necc_block_size;		/* block size used in ecc calc */
    100 	size_t necc_code_size;		/* reduntant bytes per block */
    101 	int necc_steps;			/* pagesize / code size */
    102 	int necc_type;			/* type of the ecc engine */
    103 };
    104 
    105 /**
    106  * nand_chip: structure containing the required information
    107  *	      about the NAND chip.
    108  */
    109 struct nand_chip {
    110 	struct nand_ecc *nc_ecc; 	/* ecc information */
    111 	uint8_t	*nc_oob_cache;		/* buffer for oob cache */
    112 	uint8_t *nc_page_cache;		/* buffer for page cache */
    113 	uint8_t *nc_ecc_cache;
    114 	size_t nc_size;			/* storage size in bytes */
    115 	size_t nc_page_size;		/* page size in bytes */
    116 	size_t nc_block_pages;		/* block size in pages */
    117 	size_t nc_block_size;		/* block size in bytes */
    118 	size_t nc_spare_size;		/* spare (oob) size in bytes */
    119 	uint32_t nc_lun_blocks;		/* LUN size in blocks */
    120 	uint32_t nc_flags;		/* bitfield flags */
    121 	uint32_t nc_quirks;		/* bitfield quirks */
    122 	unsigned int nc_page_shift;	/* page shift for page alignment */
    123 	unsigned int nc_page_mask;	/* page mask for page alignment */
    124 	unsigned int nc_block_shift;	/* write shift */
    125 	unsigned int nc_block_mask;	/* write mask */
    126 	uint8_t nc_num_luns;		/* number of LUNs */
    127 	uint8_t nc_manf_id;		/* manufacturer id */
    128 	uint8_t nc_dev_id;		/* device id  */
    129 	uint8_t nc_addr_cycles_row;	/* row cycles for addressing */
    130 	uint8_t nc_addr_cycles_column;	/* column cycles for addressing */
    131 	uint8_t nc_badmarker_offs;	/* offset for marking bad blocks */
    132 	bool nc_isonfi;			/* if the device is onfi compliant */
    133 };
    134 
    135 struct nand_write_cache {
    136 	struct bintime nwc_creation;
    137 	struct bintime nwc_last_write;
    138 	struct bufq_state *nwc_bufq;
    139 	uint8_t *nwc_data;
    140 	daddr_t nwc_block;
    141 	kmutex_t nwc_lock;
    142 	bool nwc_write_pending;
    143 	struct lwp *nwc_thread;
    144 	kcondvar_t nwc_cv;
    145 	bool nwc_exiting;
    146 };
    147 
    148 /* driver softc for nand */
    149 struct nand_softc {
    150 	device_t sc_dev;
    151 	device_t controller_dev;
    152 	struct nand_interface *nand_if;
    153 	void *nand_softc;
    154 	struct nand_chip sc_chip;
    155 	struct nand_bbt sc_bbt;
    156 	size_t sc_part_offset;
    157 	size_t sc_part_size;
    158 	kmutex_t sc_device_lock; /* serialize access to chip */
    159 	struct flash_io sc_flash_io;
    160 };
    161 
    162 /* structure holding the nand api */
    163 struct nand_interface {
    164 	/* basic nand controller commands */
    165 	void (*select) (device_t, bool); /* optional */
    166 	void (*command) (device_t, uint8_t);
    167 	void (*address) (device_t, uint8_t);
    168 	void (*read_buf_1) (device_t, void *, size_t);
    169 	void (*read_buf_2) (device_t, void *, size_t);
    170 	void (*read_1) (device_t, uint8_t *);
    171 	void (*read_2) (device_t, uint16_t *);
    172 	void (*write_buf_1) (device_t, const void *, size_t);
    173 	void (*write_buf_2) (device_t, const void *, size_t);
    174 	void (*write_1) (device_t, uint8_t);
    175 	void (*write_2) (device_t, uint16_t);
    176 	void (*busy) (device_t);
    177 
    178 	/* "smart" controllers may override read/program functions */
    179 	int (*read_page) (device_t, size_t, uint8_t *); /* optional */
    180 	int (*program_page) (device_t, size_t, const uint8_t *); /* optional */
    181 
    182 	/* functions specific to ecc computation */
    183 	int (*ecc_prepare)(device_t, int); /* optional */
    184 	int (*ecc_compute)(device_t, const uint8_t *, uint8_t *);
    185 	int (*ecc_correct)(device_t, uint8_t *, const uint8_t *,
    186 	    const uint8_t *);
    187 
    188 	/* information for the ecc engine */
    189 	struct nand_ecc ecc;
    190 
    191 	/* flash partition information */
    192 	const struct flash_partition *part_info;
    193 	int part_num;
    194 };
    195 
    196 /* attach args */
    197 struct nand_attach_args {
    198 	struct nand_interface *naa_nand_if;
    199 };
    200 
    201 static inline void
    202 nand_busy(device_t device)
    203 {
    204 	struct nand_softc * const sc = device_private(device);
    205 
    206 	KASSERT(sc->nand_if->select != NULL);
    207 	KASSERT(sc->controller_dev != NULL);
    208 
    209 	sc->nand_if->select(sc->controller_dev, true);
    210 
    211 	if (sc->nand_if->busy != NULL) {
    212 		sc->nand_if->busy(sc->controller_dev);
    213 	}
    214 
    215 	sc->nand_if->select(sc->controller_dev, false);
    216 }
    217 
    218 static inline void
    219 nand_select(device_t self, bool enable)
    220 {
    221 	struct nand_softc * const sc = device_private(self);
    222 
    223 	KASSERT(sc->nand_if->select != NULL);
    224 	KASSERT(sc->controller_dev != NULL);
    225 
    226 	sc->nand_if->select(sc->controller_dev, enable);
    227 }
    228 
    229 static inline void
    230 nand_address(device_t self, uint32_t address)
    231 {
    232 	struct nand_softc * const sc = device_private(self);
    233 
    234 	KASSERT(sc->nand_if->address != NULL);
    235 	KASSERT(sc->controller_dev != NULL);
    236 
    237 	sc->nand_if->address(sc->controller_dev, address);
    238 }
    239 
    240 static inline void
    241 nand_command(device_t self, uint8_t command)
    242 {
    243 	struct nand_softc * const sc = device_private(self);
    244 
    245 	KASSERT(sc->nand_if->command != NULL);
    246 	KASSERT(sc->controller_dev != NULL);
    247 
    248 	sc->nand_if->command(sc->controller_dev, command);
    249 }
    250 
    251 static inline void
    252 nand_read_1(device_t self, uint8_t *data)
    253 {
    254 	struct nand_softc * const sc = device_private(self);
    255 
    256 	KASSERT(sc->nand_if->read_1 != NULL);
    257 	KASSERT(sc->controller_dev != NULL);
    258 
    259 	sc->nand_if->read_1(sc->controller_dev, data);
    260 }
    261 
    262 static inline void
    263 nand_write_1(device_t self, uint8_t data)
    264 {
    265 	struct nand_softc * const sc = device_private(self);
    266 
    267 	KASSERT(sc->nand_if->write_1 != NULL);
    268 	KASSERT(sc->controller_dev != NULL);
    269 
    270 	sc->nand_if->write_1(sc->controller_dev, data);
    271 }
    272 
    273 static inline void
    274 nand_read_2(device_t self, uint16_t *data)
    275 {
    276 	struct nand_softc * const sc = device_private(self);
    277 
    278 	KASSERT(sc->nand_if->read_2 != NULL);
    279 	KASSERT(sc->controller_dev != NULL);
    280 
    281 	sc->nand_if->read_2(sc->controller_dev, data);
    282 }
    283 
    284 static inline void
    285 nand_write_2(device_t self, uint16_t data)
    286 {
    287 	struct nand_softc * const sc = device_private(self);
    288 
    289 	KASSERT(sc->nand_if->write_2 != NULL);
    290 	KASSERT(sc->controller_dev != NULL);
    291 
    292 	sc->nand_if->write_2(sc->controller_dev, data);
    293 }
    294 
    295 static inline void
    296 nand_read_buf_1(device_t self, void *buf, size_t size)
    297 {
    298 	struct nand_softc * const sc = device_private(self);
    299 
    300 	KASSERT(sc->nand_if->read_buf_1 != NULL);
    301 	KASSERT(sc->controller_dev != NULL);
    302 
    303 	sc->nand_if->read_buf_1(sc->controller_dev, buf, size);
    304 }
    305 
    306 static inline void
    307 nand_read_buf_2(device_t self, void *buf, size_t size)
    308 {
    309 	struct nand_softc * const sc = device_private(self);
    310 
    311 	KASSERT(sc->nand_if->read_buf_2 != NULL);
    312 	KASSERT(sc->controller_dev != NULL);
    313 
    314 	sc->nand_if->read_buf_2(sc->controller_dev, buf, size);
    315 }
    316 
    317 static inline void
    318 nand_write_buf_1(device_t self, const void *buf, size_t size)
    319 {
    320 	struct nand_softc * const sc = device_private(self);
    321 
    322 	KASSERT(sc->nand_if->write_buf_1 != NULL);
    323 	KASSERT(sc->controller_dev != NULL);
    324 
    325 	sc->nand_if->write_buf_1(sc->controller_dev, buf, size);
    326 }
    327 
    328 static inline void
    329 nand_write_buf_2(device_t self, const void *buf, size_t size)
    330 {
    331 	struct nand_softc * const sc = device_private(self);
    332 
    333 	KASSERT(sc->nand_if->write_buf_2 != NULL);
    334 	KASSERT(sc->controller_dev != NULL);
    335 
    336 	sc->nand_if->write_buf_2(sc->controller_dev, buf, size);
    337 }
    338 
    339 static inline int
    340 nand_ecc_correct(device_t self, uint8_t *data, const uint8_t *oldcode,
    341     const uint8_t *newcode)
    342 {
    343 	struct nand_softc * const sc = device_private(self);
    344 
    345 	KASSERT(sc->nand_if->ecc_correct != NULL);
    346 	KASSERT(sc->controller_dev != NULL);
    347 
    348 	return sc->nand_if->ecc_correct(sc->controller_dev, data, oldcode, newcode);
    349 }
    350 
    351 static inline void
    352 nand_ecc_compute(device_t self, const uint8_t *data, uint8_t *code)
    353 {
    354 	struct nand_softc * const sc = device_private(self);
    355 
    356 	KASSERT(sc->nand_if->ecc_compute != NULL);
    357 	KASSERT(sc->controller_dev != NULL);
    358 
    359 	sc->nand_if->ecc_compute(sc->controller_dev, data, code);
    360 }
    361 
    362 static inline void
    363 nand_ecc_prepare(device_t self, int mode)
    364 {
    365 	struct nand_softc * const sc = device_private(self);
    366 
    367 	KASSERT(sc->controller_dev != NULL);
    368 
    369 	if (sc->nand_if->ecc_prepare != NULL)
    370 		sc->nand_if->ecc_prepare(sc->controller_dev, mode);
    371 }
    372 
    373 static inline int
    374 nand_program_page(device_t self, size_t offset, const uint8_t *data)
    375 {
    376 	struct nand_softc * const sc = device_private(self);
    377 
    378 	KASSERT(sc->nand_if->program_page != NULL);
    379 
    380 	return sc->nand_if->program_page(self, offset, data);
    381 }
    382 
    383 static inline int
    384 nand_read_page(device_t self, size_t offset, uint8_t *data)
    385 {
    386 	struct nand_softc * const sc = device_private(self);
    387 
    388 	KASSERT(sc->nand_if->read_page != NULL);
    389 
    390 	return sc->nand_if->read_page(self, offset, data);
    391 }
    392 
    393 #if 0
    394 static inline bool
    395 nand_block_isbad(device_t self, flash_off_t block)
    396 {
    397 	struct nand_softc * const sc = device_private(self);
    398 
    399 	KASSERT(sc->nand_if->block_isbad != NULL);
    400 	KASSERT(sc->controller_dev != NULL);
    401 
    402 	return sc->nand_if->block_isbad(sc->controller_dev, block);
    403 }
    404 #endif
    405 
    406 /* Manufacturer IDs defined by JEDEC */
    407 enum {
    408 	NAND_MFR_UNKNOWN	= 0x00,
    409 	NAND_MFR_AMD		= 0x01,
    410 	NAND_MFR_FUJITSU	= 0x04,
    411 	NAND_MFR_RENESAS	= 0x07,
    412 	NAND_MFR_STMICRO	= 0x20,
    413 	NAND_MFR_MICRON		= 0x2c,
    414 	NAND_MFR_NATIONAL	= 0x8f,
    415 	NAND_MFR_TOSHIBA	= 0x98,
    416 	NAND_MFR_HYNIX		= 0xad,
    417 	NAND_MFR_SAMSUNG	= 0xec
    418 };
    419 
    420 struct nand_manufacturer {
    421 	int id;
    422 	const char *name;
    423 };
    424 
    425 extern const struct nand_manufacturer nand_mfrs[];
    426 
    427 /*
    428  * Manufacturer specific parameter functions
    429  */
    430 int nand_read_parameters_micron(device_t, struct nand_chip *);
    431 
    432 /* debug inlines */
    433 
    434 static inline void
    435 nand_dump_data(const char *name, void *data, size_t len)
    436 {
    437 	uint8_t *dump = data;
    438 	int i;
    439 
    440 	printf("dumping %s\n--------------\n", name);
    441 	for (i = 0; i < len; i++) {
    442 		printf("0x%.2hhx ", *dump);
    443 		dump++;
    444 	}
    445 	printf("\n--------------\n");
    446 }
    447 
    448 /* flash interface implementation */
    449 int nand_flash_isbad(device_t, flash_off_t, bool *);
    450 int nand_flash_markbad(device_t, flash_off_t);
    451 int nand_flash_write(device_t, flash_off_t, size_t, size_t *, const u_char *);
    452 int nand_flash_read(device_t, flash_off_t, size_t, size_t *, uint8_t *);
    453 int nand_flash_erase(device_t, struct flash_erase_instruction *);
    454 int nand_flash_submit(device_t, struct buf *);
    455 
    456 /* nand specific functions */
    457 int nand_erase_block(device_t, size_t);
    458 
    459 bool nand_isfactorybad(device_t, flash_off_t);
    460 bool nand_iswornoutbad(device_t, flash_off_t);
    461 bool nand_isbad(device_t, flash_off_t);
    462 void nand_markbad(device_t, size_t);
    463 
    464 //int nand_read_page(device_t, size_t, uint8_t *);
    465 int nand_read_oob(device_t, size_t, uint8_t *);
    466 //int nand_program_page(device_t, size_t, const uint8_t *);
    467 
    468 device_t nand_attach_mi(struct nand_interface *, device_t);
    469 void nand_init_interface(struct nand_interface *);
    470 
    471 /* controller drivers may use these functions to get info about the chip */
    472 void nand_read_id(device_t, uint8_t *, uint8_t *);
    473 int nand_read_parameter_page(device_t, struct onfi_parameter_page *);
    474 
    475 /*
    476  * default functions for driver development
    477  */
    478 void nand_default_select(device_t, bool);
    479 int nand_default_ecc_compute(device_t, const uint8_t *, uint8_t *);
    480 int nand_default_ecc_correct(device_t, uint8_t *, const uint8_t *,
    481     const uint8_t *);
    482 int nand_default_read_page(device_t, size_t, uint8_t *);
    483 int nand_default_program_page(device_t, size_t, const uint8_t *);
    484 
    485 static inline void nand_busy(device_t);
    486 static inline void nand_select(device_t, bool);
    487 static inline void nand_command(device_t, uint8_t);
    488 static inline void nand_address(device_t, uint32_t);
    489 static inline void nand_read_buf_1(device_t, void *, size_t);
    490 static inline void nand_read_buf_2(device_t, void *, size_t);
    491 static inline void nand_read_1(device_t, uint8_t *);
    492 static inline void nand_write_buf_1(device_t, const void *, size_t);
    493 static inline void nand_write_buf_2(device_t, const void *, size_t);
    494 //static inline bool nand_block_isbad(device_t, off_t);
    495 //static inline void nand_block_markbad(device_t, off_t);
    496 //static inline bool nand_isbusy(device_t);
    497 
    498 #endif	/* _NAND_H_ */
    499