xref: /netbsd-src/sys/dev/nand/nand.c (revision c7fb772b85b2b5d4cfb282f868f454b4701534fd)
1*c7fb772bSthorpej /*	$NetBSD: nand.c,v 1.29 2021/08/07 16:19:13 thorpej Exp $	*/
22b6ee221Sahoka 
32b6ee221Sahoka /*-
42b6ee221Sahoka  * Copyright (c) 2010 Department of Software Engineering,
52b6ee221Sahoka  *		      University of Szeged, Hungary
62b6ee221Sahoka  * Copyright (c) 2010 Adam Hoka <ahoka@NetBSD.org>
72b6ee221Sahoka  * All rights reserved.
82b6ee221Sahoka  *
92b6ee221Sahoka  * This code is derived from software contributed to The NetBSD Foundation
102b6ee221Sahoka  * by the Department of Software Engineering, University of Szeged, Hungary
112b6ee221Sahoka  *
122b6ee221Sahoka  * Redistribution and use in source and binary forms, with or without
132b6ee221Sahoka  * modification, are permitted provided that the following conditions
142b6ee221Sahoka  * are met:
152b6ee221Sahoka  * 1. Redistributions of source code must retain the above copyright
162b6ee221Sahoka  *    notice, this list of conditions and the following disclaimer.
172b6ee221Sahoka  * 2. Redistributions in binary form must reproduce the above copyright
182b6ee221Sahoka  *    notice, this list of conditions and the following disclaimer in the
192b6ee221Sahoka  *    documentation and/or other materials provided with the distribution.
202b6ee221Sahoka  *
212b6ee221Sahoka  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
222b6ee221Sahoka  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
232b6ee221Sahoka  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
242b6ee221Sahoka  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
252b6ee221Sahoka  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING,
262b6ee221Sahoka  * BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
272b6ee221Sahoka  * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED
282b6ee221Sahoka  * AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
292b6ee221Sahoka  * OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
302b6ee221Sahoka  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
312b6ee221Sahoka  * SUCH DAMAGE.
322b6ee221Sahoka  */
332b6ee221Sahoka 
342b6ee221Sahoka /* Common driver for NAND chips implementing the ONFI 2.2 specification */
352b6ee221Sahoka 
362b6ee221Sahoka #include <sys/cdefs.h>
37*c7fb772bSthorpej __KERNEL_RCSID(0, "$NetBSD: nand.c,v 1.29 2021/08/07 16:19:13 thorpej Exp $");
382b6ee221Sahoka 
392b6ee221Sahoka #include "locators.h"
402b6ee221Sahoka 
412b6ee221Sahoka #include <sys/param.h>
422b6ee221Sahoka #include <sys/types.h>
432b6ee221Sahoka #include <sys/device.h>
442b6ee221Sahoka #include <sys/kmem.h>
458f72be80Sahoka #include <sys/atomic.h>
462b6ee221Sahoka 
472b6ee221Sahoka #include <dev/flash/flash.h>
480e8f635bSahoka #include <dev/flash/flash_io.h>
492b6ee221Sahoka #include <dev/nand/nand.h>
502b6ee221Sahoka #include <dev/nand/onfi.h>
512b6ee221Sahoka #include <dev/nand/hamming.h>
522b6ee221Sahoka #include <dev/nand/nand_bbt.h>
532b6ee221Sahoka #include <dev/nand/nand_crc.h>
542b6ee221Sahoka 
552b6ee221Sahoka #include "opt_nand.h"
562b6ee221Sahoka 
57e43298d4Sahoka int nand_match(device_t, cfdata_t, void *);
58e43298d4Sahoka void nand_attach(device_t, device_t, void *);
59e43298d4Sahoka int nand_detach(device_t, int);
60e43298d4Sahoka bool nand_shutdown(device_t, int);
612b6ee221Sahoka 
62e43298d4Sahoka int nand_print(void *, const char *);
632b6ee221Sahoka 
64e43298d4Sahoka static int nand_search(device_t, cfdata_t, const int *, void *);
65e43298d4Sahoka static void nand_address_row(device_t, size_t);
66970906a8Skiyohara static inline uint8_t nand_get_status(device_t);
67e43298d4Sahoka static void nand_address_column(device_t, size_t, size_t);
68c68f5a83Sahoka static int nand_fill_chip_structure(device_t, struct nand_chip *);
69e43298d4Sahoka static int nand_scan_media(device_t, struct nand_chip *);
70e43298d4Sahoka static bool nand_check_wp(device_t);
712b6ee221Sahoka 
7250cd66ecSahoka CFATTACH_DECL_NEW(nand, sizeof(struct nand_softc),
7350cd66ecSahoka     nand_match, nand_attach, nand_detach, NULL);
742b6ee221Sahoka 
752b6ee221Sahoka #ifdef NAND_DEBUG
762b6ee221Sahoka int	nanddebug = NAND_DEBUG;
772b6ee221Sahoka #endif
782b6ee221Sahoka 
790e8f635bSahoka struct flash_interface nand_flash_if = {
800e8f635bSahoka 	.type = FLASH_TYPE_NAND,
810e8f635bSahoka 
820e8f635bSahoka 	.read = nand_flash_read,
830e8f635bSahoka 	.write = nand_flash_write,
840e8f635bSahoka 	.erase = nand_flash_erase,
850e8f635bSahoka 	.block_isbad = nand_flash_isbad,
860e8f635bSahoka 	.block_markbad = nand_flash_markbad,
870e8f635bSahoka 
88f1e7eb4dSahoka 	.submit = nand_flash_submit
890e8f635bSahoka };
902b6ee221Sahoka 
912b6ee221Sahoka const struct nand_manufacturer nand_mfrs[] = {
922b6ee221Sahoka 	{ NAND_MFR_AMD,		"AMD" },
932b6ee221Sahoka 	{ NAND_MFR_FUJITSU,	"Fujitsu" },
942b6ee221Sahoka 	{ NAND_MFR_RENESAS,	"Renesas" },
952b6ee221Sahoka 	{ NAND_MFR_STMICRO,	"ST Micro" },
962b6ee221Sahoka 	{ NAND_MFR_MICRON,	"Micron" },
972b6ee221Sahoka 	{ NAND_MFR_NATIONAL,	"National" },
982b6ee221Sahoka 	{ NAND_MFR_TOSHIBA,	"Toshiba" },
992b6ee221Sahoka 	{ NAND_MFR_HYNIX,	"Hynix" },
1002b6ee221Sahoka 	{ NAND_MFR_SAMSUNG,	"Samsung" },
1012b6ee221Sahoka 	{ NAND_MFR_UNKNOWN,	"Unknown" }
1022b6ee221Sahoka };
1032b6ee221Sahoka 
104c68f5a83Sahoka static const char *
nand_midtoname(int id)105c68f5a83Sahoka nand_midtoname(int id)
106c68f5a83Sahoka {
107c68f5a83Sahoka 	int i;
108c68f5a83Sahoka 
109c68f5a83Sahoka 	for (i = 0; nand_mfrs[i].id != 0; i++) {
110c68f5a83Sahoka 		if (nand_mfrs[i].id == id)
111c68f5a83Sahoka 			return nand_mfrs[i].name;
112c68f5a83Sahoka 	}
113c68f5a83Sahoka 
114c68f5a83Sahoka 	KASSERT(nand_mfrs[i].id == 0);
115c68f5a83Sahoka 
116c68f5a83Sahoka 	return nand_mfrs[i].name;
117c68f5a83Sahoka }
118c68f5a83Sahoka 
1192b6ee221Sahoka /* ARGSUSED */
1202b6ee221Sahoka int
nand_match(device_t parent,cfdata_t match,void * aux)1212b6ee221Sahoka nand_match(device_t parent, cfdata_t match, void *aux)
1222b6ee221Sahoka {
1232b6ee221Sahoka 	/* pseudo device, always attaches */
1242b6ee221Sahoka 	return 1;
1252b6ee221Sahoka }
1262b6ee221Sahoka 
1272b6ee221Sahoka void
nand_attach(device_t parent,device_t self,void * aux)1282b6ee221Sahoka nand_attach(device_t parent, device_t self, void *aux)
1292b6ee221Sahoka {
1302b6ee221Sahoka 	struct nand_softc *sc = device_private(self);
1312b6ee221Sahoka 	struct nand_attach_args *naa = aux;
1322b6ee221Sahoka 	struct nand_chip *chip = &sc->sc_chip;
1332b6ee221Sahoka 
1342b6ee221Sahoka 	sc->sc_dev = self;
135c68f5a83Sahoka 	sc->controller_dev = parent;
1362b6ee221Sahoka 	sc->nand_if = naa->naa_nand_if;
1372b6ee221Sahoka 
1382b6ee221Sahoka 	aprint_naive("\n");
1392b6ee221Sahoka 
1402b6ee221Sahoka 	if (nand_check_wp(self)) {
1412b6ee221Sahoka 		aprint_error("NAND chip is write protected!\n");
1422b6ee221Sahoka 		return;
1432b6ee221Sahoka 	}
14414ce4eccSahoka 
14514ce4eccSahoka 	if (nand_scan_media(self, chip)) {
1462b6ee221Sahoka 		return;
14714ce4eccSahoka 	}
1482b6ee221Sahoka 
1490e8f635bSahoka 	nand_flash_if.erasesize = chip->nc_block_size;
1500e8f635bSahoka 	nand_flash_if.page_size = chip->nc_page_size;
1510e8f635bSahoka 	nand_flash_if.writesize = chip->nc_page_size;
1520e8f635bSahoka 
1532b6ee221Sahoka 	/* allocate cache */
1542b6ee221Sahoka 	chip->nc_oob_cache = kmem_alloc(chip->nc_spare_size, KM_SLEEP);
1552b6ee221Sahoka 	chip->nc_page_cache = kmem_alloc(chip->nc_page_size, KM_SLEEP);
1562b6ee221Sahoka 
1572b6ee221Sahoka 	mutex_init(&sc->sc_device_lock, MUTEX_DEFAULT, IPL_NONE);
1582b6ee221Sahoka 
159fb19d2b7Scliff 	if (flash_sync_thread_init(&sc->sc_flash_io, self, &nand_flash_if)) {
1602b6ee221Sahoka 		goto error;
1612b6ee221Sahoka 	}
1622b6ee221Sahoka 
1632b6ee221Sahoka 	if (!pmf_device_register1(sc->sc_dev, NULL, NULL, nand_shutdown))
1642b6ee221Sahoka 		aprint_error_dev(sc->sc_dev,
1652b6ee221Sahoka 		    "couldn't establish power handler\n");
1662b6ee221Sahoka 
1672b6ee221Sahoka #ifdef NAND_BBT
1682b6ee221Sahoka 	nand_bbt_init(self);
1692b6ee221Sahoka 	nand_bbt_scan(self);
1702b6ee221Sahoka #endif
1712b6ee221Sahoka 
1722b6ee221Sahoka 	/*
1732b6ee221Sahoka 	 * Attach all our devices
1742b6ee221Sahoka 	 */
1752685996bSthorpej 	config_search(self, NULL,
176*c7fb772bSthorpej 	    CFARGS(.search = nand_search));
1772b6ee221Sahoka 
1782b6ee221Sahoka 	return;
1792b6ee221Sahoka error:
1802b6ee221Sahoka 	kmem_free(chip->nc_oob_cache, chip->nc_spare_size);
1812b6ee221Sahoka 	kmem_free(chip->nc_page_cache, chip->nc_page_size);
1822b6ee221Sahoka 	mutex_destroy(&sc->sc_device_lock);
1832b6ee221Sahoka }
1842b6ee221Sahoka 
1852b6ee221Sahoka static int
nand_search(device_t parent,cfdata_t cf,const int * ldesc,void * aux)1862b6ee221Sahoka nand_search(device_t parent, cfdata_t cf, const int *ldesc, void *aux)
1872b6ee221Sahoka {
1882b6ee221Sahoka 	struct nand_softc *sc = device_private(parent);
1892b6ee221Sahoka 	struct nand_chip *chip = &sc->sc_chip;
1902b6ee221Sahoka 	struct flash_attach_args faa;
1912b6ee221Sahoka 
19210a1f0e4Sjmcneill 	if (cf->cf_loc[FLASHBUSCF_DYNAMIC] != 0)
19310a1f0e4Sjmcneill 		return 0;
19410a1f0e4Sjmcneill 
1950e8f635bSahoka 	faa.flash_if = &nand_flash_if;
1962b6ee221Sahoka 
19710a1f0e4Sjmcneill 	faa.partinfo.part_name = NULL;
1980e8f635bSahoka 	faa.partinfo.part_offset = cf->cf_loc[FLASHBUSCF_OFFSET];
1992b6ee221Sahoka 
2002b6ee221Sahoka 	if (cf->cf_loc[FLASHBUSCF_SIZE] == 0) {
2010e8f635bSahoka 		faa.partinfo.part_size = chip->nc_size -
2020e8f635bSahoka 		    faa.partinfo.part_offset;
2032b6ee221Sahoka 	} else {
2040e8f635bSahoka 		faa.partinfo.part_size = cf->cf_loc[FLASHBUSCF_SIZE];
2052b6ee221Sahoka 	}
2062b6ee221Sahoka 
2072b6ee221Sahoka 	if (cf->cf_loc[FLASHBUSCF_READONLY])
2080e8f635bSahoka 		faa.partinfo.part_flags = FLASH_PART_READONLY;
2092b6ee221Sahoka 	else
2100e8f635bSahoka 		faa.partinfo.part_flags = 0;
2112b6ee221Sahoka 
2122685996bSthorpej 	if (config_probe(parent, cf, &faa)) {
2132685996bSthorpej 		if (config_attach(parent, cf, &faa, nand_print,
214*c7fb772bSthorpej 				  CFARGS_NONE) != NULL) {
2152b6ee221Sahoka 			return 0;
2162b6ee221Sahoka 		} else {
2178f72be80Sahoka 			return 1;
2188f72be80Sahoka 		}
2192b6ee221Sahoka 	}
2202b6ee221Sahoka 
2212b6ee221Sahoka 	return 1;
2222b6ee221Sahoka }
2232b6ee221Sahoka 
22410a1f0e4Sjmcneill void
nand_attach_mtdparts(device_t parent,const char * mtd_id,const char * cmdline)22510a1f0e4Sjmcneill nand_attach_mtdparts(device_t parent, const char *mtd_id, const char *cmdline)
22610a1f0e4Sjmcneill {
22710a1f0e4Sjmcneill 	struct nand_softc *sc = device_private(parent);
22810a1f0e4Sjmcneill 	struct nand_chip *chip = &sc->sc_chip;
22910a1f0e4Sjmcneill 
23010a1f0e4Sjmcneill 	flash_attach_mtdparts(&nand_flash_if, parent, chip->nc_size,
23110a1f0e4Sjmcneill 	    mtd_id, cmdline);
23210a1f0e4Sjmcneill }
23310a1f0e4Sjmcneill 
2342b6ee221Sahoka int
nand_detach(device_t self,int flags)2352b6ee221Sahoka nand_detach(device_t self, int flags)
2362b6ee221Sahoka {
2372b6ee221Sahoka 	struct nand_softc *sc = device_private(self);
2382b6ee221Sahoka 	struct nand_chip *chip = &sc->sc_chip;
23950cd66ecSahoka 	int error = 0;
2402b6ee221Sahoka 
24150cd66ecSahoka 	error = config_detach_children(self, flags);
24250cd66ecSahoka 	if (error) {
24350cd66ecSahoka 		return error;
2448f72be80Sahoka 	}
2458f72be80Sahoka 
246f1e7eb4dSahoka 	flash_sync_thread_destroy(&sc->sc_flash_io);
2472b6ee221Sahoka #ifdef NAND_BBT
2482b6ee221Sahoka 	nand_bbt_detach(self);
2492b6ee221Sahoka #endif
2502b6ee221Sahoka 	/* free oob cache */
2512b6ee221Sahoka 	kmem_free(chip->nc_oob_cache, chip->nc_spare_size);
2522b6ee221Sahoka 	kmem_free(chip->nc_page_cache, chip->nc_page_size);
2532b6ee221Sahoka 	kmem_free(chip->nc_ecc_cache, chip->nc_ecc->necc_size);
2542b6ee221Sahoka 
2552b6ee221Sahoka 	mutex_destroy(&sc->sc_device_lock);
2562b6ee221Sahoka 
2572b6ee221Sahoka 	pmf_device_deregister(sc->sc_dev);
2582b6ee221Sahoka 
25950cd66ecSahoka 	return error;
2608f72be80Sahoka }
2618f72be80Sahoka 
2622b6ee221Sahoka int
nand_print(void * aux,const char * pnp)2632b6ee221Sahoka nand_print(void *aux, const char *pnp)
2642b6ee221Sahoka {
2652b6ee221Sahoka 	if (pnp != NULL)
2662b6ee221Sahoka 		aprint_normal("nand at %s\n", pnp);
2672b6ee221Sahoka 
2682b6ee221Sahoka 	return UNCONF;
2692b6ee221Sahoka }
2702b6ee221Sahoka 
271c68f5a83Sahoka /* ask for a nand driver to attach to the controller */
2722b6ee221Sahoka device_t
nand_attach_mi(struct nand_interface * nand_if,device_t parent)2732b6ee221Sahoka nand_attach_mi(struct nand_interface *nand_if, device_t parent)
2742b6ee221Sahoka {
2752b6ee221Sahoka 	struct nand_attach_args arg;
2762b6ee221Sahoka 
2772b6ee221Sahoka 	KASSERT(nand_if != NULL);
2782b6ee221Sahoka 
279c68f5a83Sahoka 	/* fill the defaults if we have null pointers */
280c68f5a83Sahoka 	if (nand_if->program_page == NULL) {
281c68f5a83Sahoka 		nand_if->program_page = &nand_default_program_page;
282c68f5a83Sahoka 	}
283c68f5a83Sahoka 
284c68f5a83Sahoka 	if (nand_if->read_page == NULL) {
285c68f5a83Sahoka 		nand_if->read_page = &nand_default_read_page;
286c68f5a83Sahoka 	}
287c68f5a83Sahoka 
2882b6ee221Sahoka 	arg.naa_nand_if = nand_if;
2892685996bSthorpej 	return config_found(parent, &arg, nand_print,
290*c7fb772bSthorpej 	    CFARGS(.iattr = "nandbus"));
2912b6ee221Sahoka }
2922b6ee221Sahoka 
293c68f5a83Sahoka /* default everything to reasonable values, to ease future api changes */
294c68f5a83Sahoka void
nand_init_interface(struct nand_interface * interface)295c68f5a83Sahoka nand_init_interface(struct nand_interface *interface)
2962b6ee221Sahoka {
297c68f5a83Sahoka 	interface->select = &nand_default_select;
298c68f5a83Sahoka 	interface->command = NULL;
299c68f5a83Sahoka 	interface->address = NULL;
30052682d39Sahoka 	interface->read_buf_1 = NULL;
30152682d39Sahoka 	interface->read_buf_2 = NULL;
30252682d39Sahoka 	interface->read_1 = NULL;
30352682d39Sahoka 	interface->read_2 = NULL;
30452682d39Sahoka 	interface->write_buf_1 = NULL;
30552682d39Sahoka 	interface->write_buf_2 = NULL;
30652682d39Sahoka 	interface->write_1 = NULL;
30752682d39Sahoka 	interface->write_2 = NULL;
308c68f5a83Sahoka 	interface->busy = NULL;
3092b6ee221Sahoka 
310c68f5a83Sahoka 	/*-
311c68f5a83Sahoka 	 * most drivers dont want to change this, but some implement
312c68f5a83Sahoka 	 * read/program in one step
313c68f5a83Sahoka 	 */
314c68f5a83Sahoka 	interface->program_page = &nand_default_program_page;
315c68f5a83Sahoka 	interface->read_page = &nand_default_read_page;
3162b6ee221Sahoka 
317c68f5a83Sahoka 	/* default to soft ecc, that should work everywhere */
318c68f5a83Sahoka 	interface->ecc_compute = &nand_default_ecc_compute;
319c68f5a83Sahoka 	interface->ecc_correct = &nand_default_ecc_correct;
320c68f5a83Sahoka 	interface->ecc_prepare = NULL;
321c68f5a83Sahoka 	interface->ecc.necc_code_size = 3;
322c68f5a83Sahoka 	interface->ecc.necc_block_size = 256;
323c68f5a83Sahoka 	interface->ecc.necc_type = NAND_ECC_TYPE_SW;
3242b6ee221Sahoka }
3252b6ee221Sahoka 
3262b6ee221Sahoka #if 0
3272b6ee221Sahoka /* handle quirks here */
3282b6ee221Sahoka static void
3292b6ee221Sahoka nand_quirks(device_t self, struct nand_chip *chip)
3302b6ee221Sahoka {
3312b6ee221Sahoka 	/* this is an example only! */
3322b6ee221Sahoka 	switch (chip->nc_manf_id) {
3332b6ee221Sahoka 	case NAND_MFR_SAMSUNG:
3342b6ee221Sahoka 		if (chip->nc_dev_id == 0x00) {
3352b6ee221Sahoka 			/* do something only samsung chips need */
3362b6ee221Sahoka 			/* or */
3372b6ee221Sahoka 			/* chip->nc_quirks |= NC_QUIRK_NO_READ_START */
3382b6ee221Sahoka 		}
3392b6ee221Sahoka 	}
3402b6ee221Sahoka 
3412b6ee221Sahoka 	return;
3422b6ee221Sahoka }
3432b6ee221Sahoka #endif
3442b6ee221Sahoka 
34514ce4eccSahoka static int
nand_fill_chip_structure_legacy(device_t self,struct nand_chip * chip)346c68f5a83Sahoka nand_fill_chip_structure_legacy(device_t self, struct nand_chip *chip)
34714ce4eccSahoka {
34814ce4eccSahoka 	switch (chip->nc_manf_id) {
34914ce4eccSahoka 	case NAND_MFR_MICRON:
35014ce4eccSahoka 		return nand_read_parameters_micron(self, chip);
35111d96520Sriz 	case NAND_MFR_SAMSUNG:
35211d96520Sriz 		return nand_read_parameters_samsung(self, chip);
35357ab95bfSjmcneill 	case NAND_MFR_TOSHIBA:
35457ab95bfSjmcneill 		return nand_read_parameters_toshiba(self, chip);
35514ce4eccSahoka 	default:
35614ce4eccSahoka 		return 1;
35714ce4eccSahoka 	}
35814ce4eccSahoka 
35914ce4eccSahoka 	return 0;
36014ce4eccSahoka }
36114ce4eccSahoka 
3622b6ee221Sahoka /**
3632b6ee221Sahoka  * scan media to determine the chip's properties
3642b6ee221Sahoka  * this function resets the device
3652b6ee221Sahoka  */
3662b6ee221Sahoka static int
nand_scan_media(device_t self,struct nand_chip * chip)3672b6ee221Sahoka nand_scan_media(device_t self, struct nand_chip *chip)
3682b6ee221Sahoka {
3692b6ee221Sahoka 	struct nand_softc *sc = device_private(self);
3702b6ee221Sahoka 	struct nand_ecc *ecc;
3712b6ee221Sahoka 	uint8_t onfi_signature[4];
3722b6ee221Sahoka 
3732b6ee221Sahoka 	nand_select(self, true);
3742b6ee221Sahoka 	nand_command(self, ONFI_RESET);
375970906a8Skiyohara 	KASSERT(nand_get_status(self) & ONFI_STATUS_RDY);
3762b6ee221Sahoka 	nand_select(self, false);
3772b6ee221Sahoka 
37814ce4eccSahoka 	/* check if the device implements the ONFI standard */
3792b6ee221Sahoka 	nand_select(self, true);
3802b6ee221Sahoka 	nand_command(self, ONFI_READ_ID);
3812b6ee221Sahoka 	nand_address(self, 0x20);
38252682d39Sahoka 	nand_read_1(self, &onfi_signature[0]);
38352682d39Sahoka 	nand_read_1(self, &onfi_signature[1]);
38452682d39Sahoka 	nand_read_1(self, &onfi_signature[2]);
38552682d39Sahoka 	nand_read_1(self, &onfi_signature[3]);
3862b6ee221Sahoka 	nand_select(self, false);
3872b6ee221Sahoka 
38857ab95bfSjmcneill #ifdef NAND_DEBUG
38957ab95bfSjmcneill 	device_printf(self, "signature: %02x %02x %02x %02x\n",
39057ab95bfSjmcneill 	    onfi_signature[0], onfi_signature[1],
39157ab95bfSjmcneill 	    onfi_signature[2], onfi_signature[3]);
39257ab95bfSjmcneill #endif
39357ab95bfSjmcneill 
3942b6ee221Sahoka 	if (onfi_signature[0] != 'O' || onfi_signature[1] != 'N' ||
3952b6ee221Sahoka 	    onfi_signature[2] != 'F' || onfi_signature[3] != 'I') {
39614ce4eccSahoka 		chip->nc_isonfi = false;
3972b6ee221Sahoka 
39814ce4eccSahoka 		aprint_normal(": Legacy NAND Flash\n");
3992b6ee221Sahoka 
400c68f5a83Sahoka 		nand_read_id(self, &chip->nc_manf_id, &chip->nc_dev_id);
4012b6ee221Sahoka 
402c68f5a83Sahoka 		if (nand_fill_chip_structure_legacy(self, chip)) {
40314ce4eccSahoka 			aprint_error_dev(self,
40414ce4eccSahoka 			    "can't read device parameters for legacy chip\n");
40514ce4eccSahoka 			return 1;
40614ce4eccSahoka 		}
40714ce4eccSahoka 	} else {
40814ce4eccSahoka 		chip->nc_isonfi = true;
4092b6ee221Sahoka 
41014ce4eccSahoka 		aprint_normal(": ONFI NAND Flash\n");
41114ce4eccSahoka 
412c68f5a83Sahoka 		nand_read_id(self, &chip->nc_manf_id, &chip->nc_dev_id);
413c68f5a83Sahoka 
414c68f5a83Sahoka 		if (nand_fill_chip_structure(self, chip)) {
415c68f5a83Sahoka 			aprint_error_dev(self,
416c68f5a83Sahoka 			    "can't read device parameters\n");
417c68f5a83Sahoka 			return 1;
418c68f5a83Sahoka 		}
41914ce4eccSahoka 	}
42014ce4eccSahoka 
42114ce4eccSahoka 	aprint_normal_dev(self,
4222b6ee221Sahoka 	    "manufacturer id: 0x%.2x (%s), device id: 0x%.2x\n",
4232b6ee221Sahoka 	    chip->nc_manf_id,
4242b6ee221Sahoka 	    nand_midtoname(chip->nc_manf_id),
4252b6ee221Sahoka 	    chip->nc_dev_id);
4262b6ee221Sahoka 
42714ce4eccSahoka 	aprint_normal_dev(self,
4283c5212aaSahoka 	    "page size: %" PRIu32 " bytes, spare size: %" PRIu32 " bytes, "
4293c5212aaSahoka 	    "block size: %" PRIu32 " bytes\n",
43014ce4eccSahoka 	    chip->nc_page_size, chip->nc_spare_size, chip->nc_block_size);
43114ce4eccSahoka 
43214ce4eccSahoka 	aprint_normal_dev(self,
433e01dc462Sahoka 	    "LUN size: %" PRIu32 " blocks, LUNs: %" PRIu8
4343c5212aaSahoka 	    ", total storage size: %" PRIu64 " MB\n",
43514ce4eccSahoka 	    chip->nc_lun_blocks, chip->nc_num_luns,
43614ce4eccSahoka 	    chip->nc_size / 1024 / 1024);
43714ce4eccSahoka 
438e01dc462Sahoka 	aprint_normal_dev(self, "column cycles: %" PRIu8 ", row cycles: %"
439e30fb1abSahoka 	    PRIu8 ", width: %s\n",
440e30fb1abSahoka 	    chip->nc_addr_cycles_column, chip->nc_addr_cycles_row,
441e30fb1abSahoka 	    (chip->nc_flags & NC_BUSWIDTH_16) ? "x16" : "x8");
4422b6ee221Sahoka 
4432b6ee221Sahoka 	ecc = chip->nc_ecc = &sc->nand_if->ecc;
4442b6ee221Sahoka 
4452b6ee221Sahoka 	/*
4462b6ee221Sahoka 	 * calculate the place of ecc data in oob
4472b6ee221Sahoka 	 * we try to be compatible with Linux here
4482b6ee221Sahoka 	 */
4492b6ee221Sahoka 	switch (chip->nc_spare_size) {
4502b6ee221Sahoka 	case 8:
4512b6ee221Sahoka 		ecc->necc_offset = 0;
4522b6ee221Sahoka 		break;
4532b6ee221Sahoka 	case 16:
4542b6ee221Sahoka 		ecc->necc_offset = 0;
4552b6ee221Sahoka 		break;
45690d75190Smatt 	case 32:
45790d75190Smatt 		ecc->necc_offset = 0;
45890d75190Smatt 		break;
4592b6ee221Sahoka 	case 64:
4602b6ee221Sahoka 		ecc->necc_offset = 40;
4612b6ee221Sahoka 		break;
4622b6ee221Sahoka 	case 128:
4632b6ee221Sahoka 		ecc->necc_offset = 80;
4642b6ee221Sahoka 		break;
4652b6ee221Sahoka 	default:
4663c5212aaSahoka 		panic("OOB size %" PRIu32 " is unexpected", chip->nc_spare_size);
4672b6ee221Sahoka 	}
4682b6ee221Sahoka 
4692b6ee221Sahoka 	ecc->necc_steps = chip->nc_page_size / ecc->necc_block_size;
4702b6ee221Sahoka 	ecc->necc_size = ecc->necc_steps * ecc->necc_code_size;
4712b6ee221Sahoka 
4722b6ee221Sahoka 	/* check if we fit in oob */
4732b6ee221Sahoka 	if (ecc->necc_offset + ecc->necc_size > chip->nc_spare_size) {
4742b6ee221Sahoka 		panic("NAND ECC bits dont fit in OOB");
4752b6ee221Sahoka 	}
4762b6ee221Sahoka 
4772b6ee221Sahoka 	/* TODO: mark free oob area available for file systems */
4782b6ee221Sahoka 
4792b6ee221Sahoka 	chip->nc_ecc_cache = kmem_zalloc(ecc->necc_size, KM_SLEEP);
4802b6ee221Sahoka 
4812b6ee221Sahoka 	/*
4822b6ee221Sahoka 	 * calculate badblock marker offset in oob
4832b6ee221Sahoka 	 * we try to be compatible with linux here
4842b6ee221Sahoka 	 */
4852b6ee221Sahoka 	if (chip->nc_page_size > 512)
4862b6ee221Sahoka 		chip->nc_badmarker_offs = 0;
4872b6ee221Sahoka 	else
4882b6ee221Sahoka 		chip->nc_badmarker_offs = 5;
4892b6ee221Sahoka 
4902b6ee221Sahoka 	/* Calculate page shift and mask */
4912b6ee221Sahoka 	chip->nc_page_shift = ffs(chip->nc_page_size) - 1;
4922b6ee221Sahoka 	chip->nc_page_mask = ~(chip->nc_page_size - 1);
4932b6ee221Sahoka 	/* same for block */
4942b6ee221Sahoka 	chip->nc_block_shift = ffs(chip->nc_block_size) - 1;
4952b6ee221Sahoka 	chip->nc_block_mask = ~(chip->nc_block_size - 1);
4962b6ee221Sahoka 
4972b6ee221Sahoka 	/* look for quirks here if needed in future */
4982b6ee221Sahoka 	/* nand_quirks(self, chip); */
4992b6ee221Sahoka 
5002b6ee221Sahoka 	return 0;
5012b6ee221Sahoka }
5022b6ee221Sahoka 
503c68f5a83Sahoka void
nand_read_id(device_t self,uint8_t * manf,uint8_t * dev)504c68f5a83Sahoka nand_read_id(device_t self, uint8_t *manf, uint8_t *dev)
5052b6ee221Sahoka {
5062b6ee221Sahoka 	nand_select(self, true);
5072b6ee221Sahoka 	nand_command(self, ONFI_READ_ID);
5082b6ee221Sahoka 	nand_address(self, 0x00);
50914ce4eccSahoka 
51052682d39Sahoka 	nand_read_1(self, manf);
51152682d39Sahoka 	nand_read_1(self, dev);
51214ce4eccSahoka 
5132b6ee221Sahoka 	nand_select(self, false);
5142b6ee221Sahoka }
5152b6ee221Sahoka 
516c68f5a83Sahoka int
nand_read_parameter_page(device_t self,struct onfi_parameter_page * params)517c68f5a83Sahoka nand_read_parameter_page(device_t self, struct onfi_parameter_page *params)
5182b6ee221Sahoka {
5192b6ee221Sahoka 	uint8_t *bufp;
5202b6ee221Sahoka 	uint16_t crc;
521c68f5a83Sahoka 	int i;//, tries = 0;
5222b6ee221Sahoka 
523c68f5a83Sahoka 	KASSERT(sizeof(*params) == 256);
524c68f5a83Sahoka 
525c68f5a83Sahoka //read_params:
526c68f5a83Sahoka //	tries++;
5272b6ee221Sahoka 
5282b6ee221Sahoka 	nand_select(self, true);
5292b6ee221Sahoka 	nand_command(self, ONFI_READ_PARAMETER_PAGE);
5302b6ee221Sahoka 	nand_address(self, 0x00);
5312b6ee221Sahoka 
5322b6ee221Sahoka 	nand_busy(self);
5332b6ee221Sahoka 
534c68f5a83Sahoka 	/* TODO check the signature if it contains at least 2 letters */
535c68f5a83Sahoka 
536c68f5a83Sahoka 	bufp = (uint8_t *)params;
537c68f5a83Sahoka 	/* XXX why i am not using read_buf? */
5382b6ee221Sahoka 	for (i = 0; i < 256; i++) {
53952682d39Sahoka 		nand_read_1(self, &bufp[i]);
5402b6ee221Sahoka 	}
5412b6ee221Sahoka 	nand_select(self, false);
5422b6ee221Sahoka 
5432b6ee221Sahoka 	/* validate the parameter page with the crc */
5442b6ee221Sahoka 	crc = nand_crc16(bufp, 254);
5452b6ee221Sahoka 
546c68f5a83Sahoka 	if (crc != params->param_integrity_crc) {
5472b6ee221Sahoka 		aprint_error_dev(self, "parameter page crc check failed\n");
5482b6ee221Sahoka 		/* TODO: we should read the next parameter page copy */
549c68f5a83Sahoka 		return 1;
550c68f5a83Sahoka 	}
551c68f5a83Sahoka 
552c68f5a83Sahoka 	return 0;
553c68f5a83Sahoka }
554c68f5a83Sahoka 
555c68f5a83Sahoka static int
nand_fill_chip_structure(device_t self,struct nand_chip * chip)556c68f5a83Sahoka nand_fill_chip_structure(device_t self, struct nand_chip *chip)
557c68f5a83Sahoka {
558c68f5a83Sahoka 	struct onfi_parameter_page params;
559c68f5a83Sahoka 	uint8_t	vendor[13], model[21];
560c68f5a83Sahoka 	int i;
561c68f5a83Sahoka 
562c68f5a83Sahoka 	if (nand_read_parameter_page(self, &params)) {
563c68f5a83Sahoka 		return 1;
5642b6ee221Sahoka 	}
5652b6ee221Sahoka 
5662b6ee221Sahoka 	/* strip manufacturer and model string */
5672b6ee221Sahoka 	strlcpy(vendor, params.param_manufacturer, sizeof(vendor));
5682b6ee221Sahoka 	for (i = 11; i > 0 && vendor[i] == ' '; i--)
5692b6ee221Sahoka 		vendor[i] = 0;
5702b6ee221Sahoka 	strlcpy(model, params.param_model, sizeof(model));
5712b6ee221Sahoka 	for (i = 19; i > 0 && model[i] == ' '; i--)
5722b6ee221Sahoka 		model[i] = 0;
5732b6ee221Sahoka 
5742b6ee221Sahoka 	aprint_normal_dev(self, "vendor: %s, model: %s\n", vendor, model);
5752b6ee221Sahoka 
57657f2b3b2Sahoka 	chip->nc_page_size = le32toh(params.param_pagesize);
57757f2b3b2Sahoka 	chip->nc_block_size =
57857f2b3b2Sahoka 	    le32toh(params.param_blocksize) * chip->nc_page_size;
57957f2b3b2Sahoka 	chip->nc_spare_size = le16toh(params.param_sparesize);
58057f2b3b2Sahoka 	chip->nc_lun_blocks = le32toh(params.param_lunsize);
58114ce4eccSahoka 	chip->nc_num_luns = params.param_numluns;
5822b6ee221Sahoka 
58357f2b3b2Sahoka 	chip->nc_size =
58457f2b3b2Sahoka 	    chip->nc_block_size * chip->nc_lun_blocks * chip->nc_num_luns;
58557f2b3b2Sahoka 
5862b6ee221Sahoka 	/* the lower 4 bits contain the row address cycles */
5872b6ee221Sahoka 	chip->nc_addr_cycles_row = params.param_addr_cycles & 0x07;
5882b6ee221Sahoka 	/* the upper 4 bits contain the column address cycles */
5892b6ee221Sahoka 	chip->nc_addr_cycles_column = (params.param_addr_cycles & ~0x07) >> 4;
5902b6ee221Sahoka 
59157f2b3b2Sahoka 	uint16_t features = le16toh(params.param_features);
59257f2b3b2Sahoka 	if (features & ONFI_FEATURE_16BIT) {
5932b6ee221Sahoka 		chip->nc_flags |= NC_BUSWIDTH_16;
59457f2b3b2Sahoka 	}
5952b6ee221Sahoka 
59657f2b3b2Sahoka 	if (features & ONFI_FEATURE_EXTENDED_PARAM) {
5972b6ee221Sahoka 		chip->nc_flags |= NC_EXTENDED_PARAM;
59857f2b3b2Sahoka 	}
599c68f5a83Sahoka 
600c68f5a83Sahoka 	return 0;
6012b6ee221Sahoka }
6022b6ee221Sahoka 
6032b6ee221Sahoka /* ARGSUSED */
6042b6ee221Sahoka bool
nand_shutdown(device_t self,int howto)6052b6ee221Sahoka nand_shutdown(device_t self, int howto)
6062b6ee221Sahoka {
6072b6ee221Sahoka 	return true;
6082b6ee221Sahoka }
6092b6ee221Sahoka 
6102b6ee221Sahoka static void
nand_address_column(device_t self,size_t row,size_t column)6112b6ee221Sahoka nand_address_column(device_t self, size_t row, size_t column)
6122b6ee221Sahoka {
6132b6ee221Sahoka 	struct nand_softc *sc = device_private(self);
6142b6ee221Sahoka 	struct nand_chip *chip = &sc->sc_chip;
6152b6ee221Sahoka 	uint8_t i;
6162b6ee221Sahoka 
6173c5212aaSahoka 	DPRINTF(("addressing row: 0x%jx column: %" PRIu32 "\n",
6182b6ee221Sahoka 		(uintmax_t )row, column));
6192b6ee221Sahoka 
6202b6ee221Sahoka 	/* XXX TODO */
6212b6ee221Sahoka 	row >>= chip->nc_page_shift;
6222b6ee221Sahoka 
6232b6ee221Sahoka 	/* Write the column (subpage) address */
6242b6ee221Sahoka 	if (chip->nc_flags & NC_BUSWIDTH_16)
6252b6ee221Sahoka 		column >>= 1;
6262b6ee221Sahoka 	for (i = 0; i < chip->nc_addr_cycles_column; i++, column >>= 8)
6272b6ee221Sahoka 		nand_address(self, column & 0xff);
6282b6ee221Sahoka 
6292b6ee221Sahoka 	/* Write the row (page) address */
6302b6ee221Sahoka 	for (i = 0; i < chip->nc_addr_cycles_row; i++, row >>= 8)
6312b6ee221Sahoka 		nand_address(self, row & 0xff);
6322b6ee221Sahoka }
6332b6ee221Sahoka 
6342b6ee221Sahoka static void
nand_address_row(device_t self,size_t row)6352b6ee221Sahoka nand_address_row(device_t self, size_t row)
6362b6ee221Sahoka {
6372b6ee221Sahoka 	struct nand_softc *sc = device_private(self);
6382b6ee221Sahoka 	struct nand_chip *chip = &sc->sc_chip;
6396adb739dSahoka 	int i;
6402b6ee221Sahoka 
6412b6ee221Sahoka 	/* XXX TODO */
6422b6ee221Sahoka 	row >>= chip->nc_page_shift;
6432b6ee221Sahoka 
6442b6ee221Sahoka 	/* Write the row (page) address */
6452b6ee221Sahoka 	for (i = 0; i < chip->nc_addr_cycles_row; i++, row >>= 8)
6462b6ee221Sahoka 		nand_address(self, row & 0xff);
6472b6ee221Sahoka }
6482b6ee221Sahoka 
6492b6ee221Sahoka static inline uint8_t
nand_get_status(device_t self)6502b6ee221Sahoka nand_get_status(device_t self)
6512b6ee221Sahoka {
6522b6ee221Sahoka 	uint8_t status;
6532b6ee221Sahoka 
6542b6ee221Sahoka 	nand_command(self, ONFI_READ_STATUS);
6552b6ee221Sahoka 	nand_busy(self);
65652682d39Sahoka 	nand_read_1(self, &status);
6572b6ee221Sahoka 
6582b6ee221Sahoka 	return status;
6592b6ee221Sahoka }
6602b6ee221Sahoka 
6612b6ee221Sahoka static bool
nand_check_wp(device_t self)6622b6ee221Sahoka nand_check_wp(device_t self)
6632b6ee221Sahoka {
6644c5b9ccaSkiyohara 	if (nand_get_status(self) & ONFI_STATUS_WP)
6652b6ee221Sahoka 		return false;
6662b6ee221Sahoka 	else
6672b6ee221Sahoka 		return true;
6682b6ee221Sahoka }
6692b6ee221Sahoka 
6702b6ee221Sahoka static void
nand_prepare_read(device_t self,flash_off_t row,flash_off_t column)6716adb739dSahoka nand_prepare_read(device_t self, flash_off_t row, flash_off_t column)
6722b6ee221Sahoka {
6732b6ee221Sahoka 	nand_command(self, ONFI_READ);
6742b6ee221Sahoka 	nand_address_column(self, row, column);
6752b6ee221Sahoka 	nand_command(self, ONFI_READ_START);
6762b6ee221Sahoka 
6772b6ee221Sahoka 	nand_busy(self);
6782b6ee221Sahoka }
6792b6ee221Sahoka 
680c68f5a83Sahoka /* read a page with ecc correction, default implementation */
6812b6ee221Sahoka int
nand_default_read_page(device_t self,size_t offset,uint8_t * data)682c68f5a83Sahoka nand_default_read_page(device_t self, size_t offset, uint8_t *data)
6832b6ee221Sahoka {
6842b6ee221Sahoka 	struct nand_softc *sc = device_private(self);
6852b6ee221Sahoka 	struct nand_chip *chip = &sc->sc_chip;
6862b6ee221Sahoka 	size_t b, bs, e, cs;
6872b6ee221Sahoka 	uint8_t *ecc;
6882b6ee221Sahoka 	int result;
6892b6ee221Sahoka 
6902b6ee221Sahoka 	nand_prepare_read(self, offset, 0);
6912b6ee221Sahoka 
6922b6ee221Sahoka 	bs = chip->nc_ecc->necc_block_size;
6932b6ee221Sahoka 	cs = chip->nc_ecc->necc_code_size;
6942b6ee221Sahoka 
6952b6ee221Sahoka 	/* decide if we access by 8 or 16 bits */
6962b6ee221Sahoka 	if (chip->nc_flags & NC_BUSWIDTH_16) {
6972b6ee221Sahoka 		for (b = 0, e = 0; b < chip->nc_page_size; b += bs, e += cs) {
6982b6ee221Sahoka 			nand_ecc_prepare(self, NAND_ECC_READ);
69952682d39Sahoka 			nand_read_buf_2(self, data + b, bs);
7002b6ee221Sahoka 			nand_ecc_compute(self, data + b,
7012b6ee221Sahoka 			    chip->nc_ecc_cache + e);
7022b6ee221Sahoka 		}
7032b6ee221Sahoka 	} else {
7042b6ee221Sahoka 		for (b = 0, e = 0; b < chip->nc_page_size; b += bs, e += cs) {
7052b6ee221Sahoka 			nand_ecc_prepare(self, NAND_ECC_READ);
70652682d39Sahoka 			nand_read_buf_1(self, data + b, bs);
7072b6ee221Sahoka 			nand_ecc_compute(self, data + b,
7082b6ee221Sahoka 			    chip->nc_ecc_cache + e);
7092b6ee221Sahoka 		}
7102b6ee221Sahoka 	}
7112b6ee221Sahoka 
712e43298d4Sahoka 	/* for debugging new drivers */
713e43298d4Sahoka #if 0
714e43298d4Sahoka 	nand_dump_data("page", data, chip->nc_page_size);
715e43298d4Sahoka #endif
7162b6ee221Sahoka 
7172b6ee221Sahoka 	nand_read_oob(self, offset, chip->nc_oob_cache);
7182b6ee221Sahoka 	ecc = chip->nc_oob_cache + chip->nc_ecc->necc_offset;
7192b6ee221Sahoka 
7202b6ee221Sahoka 	/* useful for debugging new ecc drivers */
7212b6ee221Sahoka #if 0
7222b6ee221Sahoka 	printf("dumping ecc %d\n--------------\n", chip->nc_ecc->necc_steps);
7232b6ee221Sahoka 	for (e = 0; e < chip->nc_ecc->necc_steps; e++) {
7242b6ee221Sahoka 		printf("0x");
7252b6ee221Sahoka 		for (b = 0; b < cs; b++) {
7262b6ee221Sahoka 			printf("%.2hhx", ecc[e+b]);
7272b6ee221Sahoka 		}
7282b6ee221Sahoka 		printf(" 0x");
7292b6ee221Sahoka 		for (b = 0; b < cs; b++) {
7302b6ee221Sahoka 			printf("%.2hhx", chip->nc_ecc_cache[e+b]);
7312b6ee221Sahoka 		}
7322b6ee221Sahoka 		printf("\n");
7332b6ee221Sahoka 	}
7342b6ee221Sahoka 	printf("--------------\n");
7352b6ee221Sahoka #endif
7362b6ee221Sahoka 
7372b6ee221Sahoka 	for (b = 0, e = 0; b < chip->nc_page_size; b += bs, e += cs) {
7382b6ee221Sahoka 		result = nand_ecc_correct(self, data + b, ecc + e,
7392b6ee221Sahoka 		    chip->nc_ecc_cache + e);
7402b6ee221Sahoka 
7412b6ee221Sahoka 		switch (result) {
7422b6ee221Sahoka 		case NAND_ECC_OK:
7432b6ee221Sahoka 			break;
7442b6ee221Sahoka 		case NAND_ECC_CORRECTED:
7452b6ee221Sahoka 			aprint_error_dev(self,
7462b6ee221Sahoka 			    "data corrected with ECC at page offset 0x%jx "
74761a70aeeSpgoyette 			    "block %zu\n", (uintmax_t)offset, b);
7482b6ee221Sahoka 			break;
7492b6ee221Sahoka 		case NAND_ECC_TWOBIT:
7502b6ee221Sahoka 			aprint_error_dev(self,
7512b6ee221Sahoka 			    "uncorrectable ECC error at page offset 0x%jx "
75261a70aeeSpgoyette 			    "block %zu\n", (uintmax_t)offset, b);
7532b6ee221Sahoka 			return EIO;
7542b6ee221Sahoka 			break;
7552b6ee221Sahoka 		case NAND_ECC_INVALID:
7562b6ee221Sahoka 			aprint_error_dev(self,
7572b6ee221Sahoka 			    "invalid ECC in oob at page offset 0x%jx "
75861a70aeeSpgoyette 			    "block %zu\n", (uintmax_t)offset, b);
7592b6ee221Sahoka 			return EIO;
7602b6ee221Sahoka 			break;
7612b6ee221Sahoka 		default:
7622b6ee221Sahoka 			panic("invalid ECC correction errno");
7632b6ee221Sahoka 		}
7642b6ee221Sahoka 	}
7652b6ee221Sahoka 
7662b6ee221Sahoka 	return 0;
7672b6ee221Sahoka }
7682b6ee221Sahoka 
769c68f5a83Sahoka int
nand_default_program_page(device_t self,size_t page,const uint8_t * data)770c68f5a83Sahoka nand_default_program_page(device_t self, size_t page, const uint8_t *data)
7712b6ee221Sahoka {
7722b6ee221Sahoka 	struct nand_softc *sc = device_private(self);
7732b6ee221Sahoka 	struct nand_chip *chip = &sc->sc_chip;
7742b6ee221Sahoka 	size_t bs, cs, e, b;
7752b6ee221Sahoka 	uint8_t status;
7762b6ee221Sahoka 	uint8_t *ecc;
7772b6ee221Sahoka 
7782b6ee221Sahoka 	nand_command(self, ONFI_PAGE_PROGRAM);
7792b6ee221Sahoka 	nand_address_column(self, page, 0);
7802b6ee221Sahoka 
7812b6ee221Sahoka 	nand_busy(self);
7822b6ee221Sahoka 
7832b6ee221Sahoka 	bs = chip->nc_ecc->necc_block_size;
7842b6ee221Sahoka 	cs = chip->nc_ecc->necc_code_size;
7852b6ee221Sahoka 	ecc = chip->nc_oob_cache + chip->nc_ecc->necc_offset;
7862b6ee221Sahoka 
7872b6ee221Sahoka 	/* XXX code duplication */
7882b6ee221Sahoka 	/* decide if we access by 8 or 16 bits */
7892b6ee221Sahoka 	if (chip->nc_flags & NC_BUSWIDTH_16) {
7902b6ee221Sahoka 		for (b = 0, e = 0; b < chip->nc_page_size; b += bs, e += cs) {
7912b6ee221Sahoka 			nand_ecc_prepare(self, NAND_ECC_WRITE);
79252682d39Sahoka 			nand_write_buf_2(self, data + b, bs);
7932b6ee221Sahoka 			nand_ecc_compute(self, data + b, ecc + e);
7942b6ee221Sahoka 		}
7952b6ee221Sahoka 		/* write oob with ecc correction code */
79652682d39Sahoka 		nand_write_buf_2(self, chip->nc_oob_cache,
7972b6ee221Sahoka 		    chip->nc_spare_size);
7982b6ee221Sahoka 	} else {
7992b6ee221Sahoka 		for (b = 0, e = 0; b < chip->nc_page_size; b += bs, e += cs) {
8002b6ee221Sahoka 			nand_ecc_prepare(self, NAND_ECC_WRITE);
80152682d39Sahoka 			nand_write_buf_1(self, data + b, bs);
8022b6ee221Sahoka 			nand_ecc_compute(self, data + b, ecc + e);
8032b6ee221Sahoka 		}
8042b6ee221Sahoka 		/* write oob with ecc correction code */
80552682d39Sahoka 		nand_write_buf_1(self, chip->nc_oob_cache,
8062b6ee221Sahoka 		    chip->nc_spare_size);
8072b6ee221Sahoka 	}
8082b6ee221Sahoka 
8092b6ee221Sahoka 	nand_command(self, ONFI_PAGE_PROGRAM_START);
8102b6ee221Sahoka 
8112b6ee221Sahoka 	nand_busy(self);
8122b6ee221Sahoka 
813e43298d4Sahoka 	/* for debugging ecc */
8142b6ee221Sahoka #if 0
8152b6ee221Sahoka 	printf("dumping ecc %d\n--------------\n", chip->nc_ecc->necc_steps);
8162b6ee221Sahoka 	for (e = 0; e < chip->nc_ecc->necc_steps; e++) {
8172b6ee221Sahoka 		printf("0x");
8182b6ee221Sahoka 		for (b = 0; b < cs; b++) {
8192b6ee221Sahoka 			printf("%.2hhx", ecc[e+b]);
8202b6ee221Sahoka 		}
8212b6ee221Sahoka 		printf("\n");
8222b6ee221Sahoka 	}
8232b6ee221Sahoka 	printf("--------------\n");
8242b6ee221Sahoka #endif
8252b6ee221Sahoka 
8262b6ee221Sahoka 	status = nand_get_status(self);
8272b6ee221Sahoka 	KASSERT(status & ONFI_STATUS_RDY);
8282b6ee221Sahoka 	if (status & ONFI_STATUS_FAIL) {
8292b6ee221Sahoka 		aprint_error_dev(self, "page program failed!\n");
8302b6ee221Sahoka 		return EIO;
8312b6ee221Sahoka 	}
8322b6ee221Sahoka 
8332b6ee221Sahoka 	return 0;
8342b6ee221Sahoka }
8352b6ee221Sahoka 
836c68f5a83Sahoka /* read the OOB of a page */
8372b6ee221Sahoka int
nand_read_oob(device_t self,size_t page,uint8_t * oob)838c68f5a83Sahoka nand_read_oob(device_t self, size_t page, uint8_t *oob)
8392b6ee221Sahoka {
8402b6ee221Sahoka 	struct nand_softc *sc = device_private(self);
8412b6ee221Sahoka 	struct nand_chip *chip = &sc->sc_chip;
8422b6ee221Sahoka 
8432b6ee221Sahoka 	nand_prepare_read(self, page, chip->nc_page_size);
8442b6ee221Sahoka 
8452b6ee221Sahoka 	if (chip->nc_flags & NC_BUSWIDTH_16)
84652682d39Sahoka 		nand_read_buf_2(self, oob, chip->nc_spare_size);
8472b6ee221Sahoka 	else
84852682d39Sahoka 		nand_read_buf_1(self, oob, chip->nc_spare_size);
8492b6ee221Sahoka 
850e43298d4Sahoka 	/* for debugging drivers */
851e43298d4Sahoka #if 0
852e43298d4Sahoka 	nand_dump_data("oob", oob, chip->nc_spare_size);
853e43298d4Sahoka #endif
8542b6ee221Sahoka 
8552b6ee221Sahoka 	return 0;
8562b6ee221Sahoka }
8572b6ee221Sahoka 
8582b6ee221Sahoka static int
nand_write_oob(device_t self,size_t offset,const void * oob)8592b6ee221Sahoka nand_write_oob(device_t self, size_t offset, const void *oob)
8602b6ee221Sahoka {
8612b6ee221Sahoka 	struct nand_softc *sc = device_private(self);
8622b6ee221Sahoka 	struct nand_chip *chip = &sc->sc_chip;
8632b6ee221Sahoka 	uint8_t status;
8642b6ee221Sahoka 
8652b6ee221Sahoka 	nand_command(self, ONFI_PAGE_PROGRAM);
8662b6ee221Sahoka 	nand_address_column(self, offset, chip->nc_page_size);
8672b6ee221Sahoka 	nand_command(self, ONFI_PAGE_PROGRAM_START);
8682b6ee221Sahoka 
8692b6ee221Sahoka 	nand_busy(self);
8702b6ee221Sahoka 
8712b6ee221Sahoka 	if (chip->nc_flags & NC_BUSWIDTH_16)
87252682d39Sahoka 		nand_write_buf_2(self, oob, chip->nc_spare_size);
8732b6ee221Sahoka 	else
87452682d39Sahoka 		nand_write_buf_1(self, oob, chip->nc_spare_size);
8752b6ee221Sahoka 
8762b6ee221Sahoka 	status = nand_get_status(self);
8772b6ee221Sahoka 	KASSERT(status & ONFI_STATUS_RDY);
8782b6ee221Sahoka 	if (status & ONFI_STATUS_FAIL)
8792b6ee221Sahoka 		return EIO;
8802b6ee221Sahoka 	else
8812b6ee221Sahoka 		return 0;
8822b6ee221Sahoka }
8832b6ee221Sahoka 
8842b6ee221Sahoka void
nand_markbad(device_t self,size_t offset)8852b6ee221Sahoka nand_markbad(device_t self, size_t offset)
8862b6ee221Sahoka {
8872b6ee221Sahoka 	struct nand_softc *sc = device_private(self);
8882b6ee221Sahoka 	struct nand_chip *chip = &sc->sc_chip;
889e5cfe5deSchristos 	flash_off_t blockoffset;
8902b6ee221Sahoka #ifdef NAND_BBT
8916adb739dSahoka 	flash_off_t block;
8922b6ee221Sahoka 
8932b6ee221Sahoka 	block = offset / chip->nc_block_size;
8942b6ee221Sahoka 
8952b6ee221Sahoka 	nand_bbt_block_markbad(self, block);
8962b6ee221Sahoka #endif
8972b6ee221Sahoka 	blockoffset = offset & chip->nc_block_mask;
8982b6ee221Sahoka 
8992b6ee221Sahoka 	/* check if it is already marked bad */
9002b6ee221Sahoka 	if (nand_isbad(self, blockoffset))
9012b6ee221Sahoka 		return;
9022b6ee221Sahoka 
9032b6ee221Sahoka 	nand_read_oob(self, blockoffset, chip->nc_oob_cache);
9042b6ee221Sahoka 
9052b6ee221Sahoka 	chip->nc_oob_cache[chip->nc_badmarker_offs] = 0x00;
9062b6ee221Sahoka 	chip->nc_oob_cache[chip->nc_badmarker_offs + 1] = 0x00;
9072b6ee221Sahoka 
9082b6ee221Sahoka 	nand_write_oob(self, blockoffset, chip->nc_oob_cache);
9092b6ee221Sahoka }
9102b6ee221Sahoka 
9112b6ee221Sahoka bool
nand_isfactorybad(device_t self,flash_off_t offset)9126adb739dSahoka nand_isfactorybad(device_t self, flash_off_t offset)
9132b6ee221Sahoka {
9142b6ee221Sahoka 	struct nand_softc *sc = device_private(self);
9152b6ee221Sahoka 	struct nand_chip *chip = &sc->sc_chip;
9166adb739dSahoka 	flash_off_t block, first_page, last_page, page;
9172b6ee221Sahoka 	int i;
9182b6ee221Sahoka 
9192b6ee221Sahoka 	/* Check for factory bad blocks first
9202b6ee221Sahoka 	 * Factory bad blocks are marked in the first or last
9212b6ee221Sahoka 	 * page of the blocks, see: ONFI 2.2, 3.2.2.
9222b6ee221Sahoka 	 */
9232b6ee221Sahoka 	block = offset / chip->nc_block_size;
9242b6ee221Sahoka 	first_page = block * chip->nc_block_size;
9252b6ee221Sahoka 	last_page = (block + 1) * chip->nc_block_size
9262b6ee221Sahoka 	    - chip->nc_page_size;
9272b6ee221Sahoka 
9282b6ee221Sahoka 	for (i = 0, page = first_page; i < 2; i++, page = last_page) {
9292b6ee221Sahoka 		/* address OOB */
9302b6ee221Sahoka 		nand_prepare_read(self, page, chip->nc_page_size);
9312b6ee221Sahoka 
9322b6ee221Sahoka 		if (chip->nc_flags & NC_BUSWIDTH_16) {
9332b6ee221Sahoka 			uint16_t word;
93452682d39Sahoka 			nand_read_2(self, &word);
9352b6ee221Sahoka 			if (word == 0x0000)
9362b6ee221Sahoka 				return true;
9372b6ee221Sahoka 		} else {
9382b6ee221Sahoka 			uint8_t byte;
93952682d39Sahoka 			nand_read_1(self, &byte);
9402b6ee221Sahoka 			if (byte == 0x00)
9412b6ee221Sahoka 				return true;
9422b6ee221Sahoka 		}
9432b6ee221Sahoka 	}
9442b6ee221Sahoka 
9452b6ee221Sahoka 	return false;
9462b6ee221Sahoka }
9472b6ee221Sahoka 
9482b6ee221Sahoka bool
nand_iswornoutbad(device_t self,flash_off_t offset)9496adb739dSahoka nand_iswornoutbad(device_t self, flash_off_t offset)
9502b6ee221Sahoka {
9512b6ee221Sahoka 	struct nand_softc *sc = device_private(self);
9522b6ee221Sahoka 	struct nand_chip *chip = &sc->sc_chip;
9536adb739dSahoka 	flash_off_t block;
9542b6ee221Sahoka 
9552b6ee221Sahoka 	/* we inspect the first page of the block */
9562b6ee221Sahoka 	block = offset & chip->nc_block_mask;
9572b6ee221Sahoka 
9582b6ee221Sahoka 	/* Linux/u-boot compatible badblock handling */
9592b6ee221Sahoka 	if (chip->nc_flags & NC_BUSWIDTH_16) {
9602b6ee221Sahoka 		uint16_t word, mark;
9612b6ee221Sahoka 
9622b6ee221Sahoka 		nand_prepare_read(self, block,
9632b6ee221Sahoka 		    chip->nc_page_size + (chip->nc_badmarker_offs & 0xfe));
9642b6ee221Sahoka 
96552682d39Sahoka 		nand_read_2(self, &word);
9662b6ee221Sahoka 		mark = htole16(word);
9672b6ee221Sahoka 		if (chip->nc_badmarker_offs & 0x01)
9682b6ee221Sahoka 			mark >>= 8;
9692b6ee221Sahoka 		if ((mark & 0xff) != 0xff)
9702b6ee221Sahoka 			return true;
9712b6ee221Sahoka 	} else {
9722b6ee221Sahoka 		uint8_t byte;
9732b6ee221Sahoka 
9742b6ee221Sahoka 		nand_prepare_read(self, block,
9752b6ee221Sahoka 		    chip->nc_page_size + chip->nc_badmarker_offs);
9762b6ee221Sahoka 
97752682d39Sahoka 		nand_read_1(self, &byte);
9782b6ee221Sahoka 		if (byte != 0xff)
9792b6ee221Sahoka 			return true;
9802b6ee221Sahoka 	}
9812b6ee221Sahoka 
9822b6ee221Sahoka 	return false;
9832b6ee221Sahoka }
9842b6ee221Sahoka 
9852b6ee221Sahoka bool
nand_isbad(device_t self,flash_off_t offset)9866adb739dSahoka nand_isbad(device_t self, flash_off_t offset)
9872b6ee221Sahoka {
9882b6ee221Sahoka #ifdef NAND_BBT
9892b6ee221Sahoka 	struct nand_softc *sc = device_private(self);
9902b6ee221Sahoka 	struct nand_chip *chip = &sc->sc_chip;
9916adb739dSahoka 	flash_off_t block;
9922b6ee221Sahoka 
9932b6ee221Sahoka 	block = offset / chip->nc_block_size;
9942b6ee221Sahoka 
9952b6ee221Sahoka 	return nand_bbt_block_isbad(self, block);
9962b6ee221Sahoka #else
9972b6ee221Sahoka 	/* ONFI host requirement */
9982b6ee221Sahoka 	if (nand_isfactorybad(self, offset))
9992b6ee221Sahoka 		return true;
10002b6ee221Sahoka 
10012b6ee221Sahoka 	/* Look for Linux/U-Boot compatible bad marker */
10022b6ee221Sahoka 	if (nand_iswornoutbad(self, offset))
10032b6ee221Sahoka 		return true;
10042b6ee221Sahoka 
10052b6ee221Sahoka 	return false;
10062b6ee221Sahoka #endif
10072b6ee221Sahoka }
10082b6ee221Sahoka 
10092b6ee221Sahoka int
nand_erase_block(device_t self,size_t offset)10102b6ee221Sahoka nand_erase_block(device_t self, size_t offset)
10112b6ee221Sahoka {
10122b6ee221Sahoka 	uint8_t status;
10132b6ee221Sahoka 
10142b6ee221Sahoka 	/* xxx calculate first page of block for address? */
10152b6ee221Sahoka 
10162b6ee221Sahoka 	nand_command(self, ONFI_BLOCK_ERASE);
10172b6ee221Sahoka 	nand_address_row(self, offset);
10182b6ee221Sahoka 	nand_command(self, ONFI_BLOCK_ERASE_START);
10192b6ee221Sahoka 
10202b6ee221Sahoka 	nand_busy(self);
10212b6ee221Sahoka 
10222b6ee221Sahoka 	status = nand_get_status(self);
10232b6ee221Sahoka 	KASSERT(status & ONFI_STATUS_RDY);
10242b6ee221Sahoka 	if (status & ONFI_STATUS_FAIL) {
10252b6ee221Sahoka 		aprint_error_dev(self, "block erase failed!\n");
10262b6ee221Sahoka 		nand_markbad(self, offset);
10272b6ee221Sahoka 		return EIO;
10282b6ee221Sahoka 	} else {
10292b6ee221Sahoka 		return 0;
10302b6ee221Sahoka 	}
10312b6ee221Sahoka }
10322b6ee221Sahoka 
10332b6ee221Sahoka /* default functions for driver development */
10342b6ee221Sahoka 
10352b6ee221Sahoka /* default ECC using hamming code of 256 byte chunks */
10362b6ee221Sahoka int
nand_default_ecc_compute(device_t self,const uint8_t * data,uint8_t * code)10372b6ee221Sahoka nand_default_ecc_compute(device_t self, const uint8_t *data, uint8_t *code)
10382b6ee221Sahoka {
10392b6ee221Sahoka 	hamming_compute_256(data, code);
10402b6ee221Sahoka 
10412b6ee221Sahoka 	return 0;
10422b6ee221Sahoka }
10432b6ee221Sahoka 
10442b6ee221Sahoka int
nand_default_ecc_correct(device_t self,uint8_t * data,const uint8_t * origcode,const uint8_t * compcode)10452b6ee221Sahoka nand_default_ecc_correct(device_t self, uint8_t *data, const uint8_t *origcode,
10462b6ee221Sahoka 	const uint8_t *compcode)
10472b6ee221Sahoka {
10482b6ee221Sahoka 	return hamming_correct_256(data, origcode, compcode);
10492b6ee221Sahoka }
10502b6ee221Sahoka 
10512b6ee221Sahoka void
nand_default_select(device_t self,bool enable)10522b6ee221Sahoka nand_default_select(device_t self, bool enable)
10532b6ee221Sahoka {
10542b6ee221Sahoka 	/* do nothing */
10552b6ee221Sahoka 	return;
10562b6ee221Sahoka }
10572b6ee221Sahoka 
10582b6ee221Sahoka /* implementation of the block device API */
10592b6ee221Sahoka 
1060f1e7eb4dSahoka int
nand_flash_submit(device_t self,struct buf * const bp)1061fb19d2b7Scliff nand_flash_submit(device_t self, struct buf * const bp)
1062f1e7eb4dSahoka {
1063f1e7eb4dSahoka 	struct nand_softc *sc = device_private(self);
1064f1e7eb4dSahoka 
1065f1e7eb4dSahoka 	return flash_io_submit(&sc->sc_flash_io, bp);
1066f1e7eb4dSahoka }
1067f1e7eb4dSahoka 
10682b6ee221Sahoka /*
10692b6ee221Sahoka  * handle (page) unaligned write to nand
10702b6ee221Sahoka  */
10712b6ee221Sahoka static int
nand_flash_write_unaligned(device_t self,flash_off_t offset,size_t len,size_t * retlen,const uint8_t * buf)10726adb739dSahoka nand_flash_write_unaligned(device_t self, flash_off_t offset, size_t len,
10732b6ee221Sahoka     size_t *retlen, const uint8_t *buf)
10742b6ee221Sahoka {
10752b6ee221Sahoka 	struct nand_softc *sc = device_private(self);
10762b6ee221Sahoka 	struct nand_chip *chip = &sc->sc_chip;
10776adb739dSahoka 	flash_off_t first, last, firstoff;
10782b6ee221Sahoka 	const uint8_t *bufp;
10796adb739dSahoka 	flash_off_t addr;
10802b6ee221Sahoka 	size_t left, count;
10814e870ad5Sahoka 	int error = 0, i;
10822b6ee221Sahoka 
10832b6ee221Sahoka 	first = offset & chip->nc_page_mask;
10842b6ee221Sahoka 	firstoff = offset & ~chip->nc_page_mask;
10852b6ee221Sahoka 	/* XXX check if this should be len - 1 */
10862b6ee221Sahoka 	last = (offset + len) & chip->nc_page_mask;
10872b6ee221Sahoka 	count = last - first + 1;
10882b6ee221Sahoka 
10892b6ee221Sahoka 	addr = first;
10902b6ee221Sahoka 	*retlen = 0;
10912b6ee221Sahoka 
10924e870ad5Sahoka 	mutex_enter(&sc->sc_device_lock);
10932b6ee221Sahoka 	if (count == 1) {
10942b6ee221Sahoka 		if (nand_isbad(self, addr)) {
10952b6ee221Sahoka 			aprint_error_dev(self,
10962b6ee221Sahoka 			    "nand_flash_write_unaligned: "
10972b6ee221Sahoka 			    "bad block encountered\n");
10984e870ad5Sahoka 			error = EIO;
10994e870ad5Sahoka 			goto out;
11002b6ee221Sahoka 		}
11012b6ee221Sahoka 
11022b6ee221Sahoka 		error = nand_read_page(self, addr, chip->nc_page_cache);
11034e870ad5Sahoka 		if (error) {
11044e870ad5Sahoka 			goto out;
11054e870ad5Sahoka 		}
11062b6ee221Sahoka 
11072b6ee221Sahoka 		memcpy(chip->nc_page_cache + firstoff, buf, len);
11082b6ee221Sahoka 
11092b6ee221Sahoka 		error = nand_program_page(self, addr, chip->nc_page_cache);
11104e870ad5Sahoka 		if (error) {
11114e870ad5Sahoka 			goto out;
11124e870ad5Sahoka 		}
11132b6ee221Sahoka 
11142b6ee221Sahoka 		*retlen = len;
11154e870ad5Sahoka 		goto out;
11162b6ee221Sahoka 	}
11172b6ee221Sahoka 
11182b6ee221Sahoka 	bufp = buf;
11192b6ee221Sahoka 	left = len;
11202b6ee221Sahoka 
11212b6ee221Sahoka 	for (i = 0; i < count && left != 0; i++) {
11222b6ee221Sahoka 		if (nand_isbad(self, addr)) {
11232b6ee221Sahoka 			aprint_error_dev(self,
11242b6ee221Sahoka 			    "nand_flash_write_unaligned: "
11252b6ee221Sahoka 			    "bad block encountered\n");
11264e870ad5Sahoka 			error = EIO;
11274e870ad5Sahoka 			goto out;
11282b6ee221Sahoka 		}
11292b6ee221Sahoka 
11302b6ee221Sahoka 		if (i == 0) {
11312b6ee221Sahoka 			error = nand_read_page(self,
11322b6ee221Sahoka 			    addr, chip->nc_page_cache);
11334e870ad5Sahoka 			if (error) {
11344e870ad5Sahoka 				goto out;
11354e870ad5Sahoka 			}
11362b6ee221Sahoka 
11372b6ee221Sahoka 			memcpy(chip->nc_page_cache + firstoff,
11382b6ee221Sahoka 			    bufp, chip->nc_page_size - firstoff);
11392b6ee221Sahoka 
11402b6ee221Sahoka 			printf("program page: %s: %d\n", __FILE__, __LINE__);
11412b6ee221Sahoka 			error = nand_program_page(self,
11422b6ee221Sahoka 			    addr, chip->nc_page_cache);
11434e870ad5Sahoka 			if (error) {
11444e870ad5Sahoka 				goto out;
11454e870ad5Sahoka 			}
11462b6ee221Sahoka 
11472b6ee221Sahoka 			bufp += chip->nc_page_size - firstoff;
11482b6ee221Sahoka 			left -= chip->nc_page_size - firstoff;
11492b6ee221Sahoka 			*retlen += chip->nc_page_size - firstoff;
11502b6ee221Sahoka 
11512b6ee221Sahoka 		} else if (i == count - 1) {
11522b6ee221Sahoka 			error = nand_read_page(self,
11532b6ee221Sahoka 			    addr, chip->nc_page_cache);
11544e870ad5Sahoka 			if (error) {
11554e870ad5Sahoka 				goto out;
11564e870ad5Sahoka 			}
11572b6ee221Sahoka 
11582b6ee221Sahoka 			memcpy(chip->nc_page_cache, bufp, left);
11592b6ee221Sahoka 
11602b6ee221Sahoka 			error = nand_program_page(self,
11612b6ee221Sahoka 			    addr, chip->nc_page_cache);
11624e870ad5Sahoka 			if (error) {
11634e870ad5Sahoka 				goto out;
11644e870ad5Sahoka 			}
11652b6ee221Sahoka 
11662b6ee221Sahoka 			*retlen += left;
11672b6ee221Sahoka 			KASSERT(left < chip->nc_page_size);
11682b6ee221Sahoka 
11692b6ee221Sahoka 		} else {
11702b6ee221Sahoka 			/* XXX debug */
11712b6ee221Sahoka 			if (left > chip->nc_page_size) {
117261a70aeeSpgoyette 				printf("left: %zu, i: %d, count: %zu\n",
11733c5212aaSahoka 				    left, i, count);
11742b6ee221Sahoka 			}
11752b6ee221Sahoka 			KASSERT(left > chip->nc_page_size);
11762b6ee221Sahoka 
11772b6ee221Sahoka 			error = nand_program_page(self, addr, bufp);
11784e870ad5Sahoka 			if (error) {
11794e870ad5Sahoka 				goto out;
11804e870ad5Sahoka 			}
11812b6ee221Sahoka 
11822b6ee221Sahoka 			bufp += chip->nc_page_size;
11832b6ee221Sahoka 			left -= chip->nc_page_size;
11842b6ee221Sahoka 			*retlen += chip->nc_page_size;
11852b6ee221Sahoka 		}
11862b6ee221Sahoka 
11872b6ee221Sahoka 		addr += chip->nc_page_size;
11882b6ee221Sahoka 	}
11892b6ee221Sahoka 
11902b6ee221Sahoka 	KASSERT(*retlen == len);
11914e870ad5Sahoka out:
11924e870ad5Sahoka 	mutex_exit(&sc->sc_device_lock);
11932b6ee221Sahoka 
11944e870ad5Sahoka 	return error;
11952b6ee221Sahoka }
11962b6ee221Sahoka 
11972b6ee221Sahoka int
nand_flash_write(device_t self,flash_off_t offset,size_t len,size_t * retlen,const uint8_t * buf)11986adb739dSahoka nand_flash_write(device_t self, flash_off_t offset, size_t len, size_t *retlen,
11992b6ee221Sahoka     const uint8_t *buf)
12002b6ee221Sahoka {
12012b6ee221Sahoka 	struct nand_softc *sc = device_private(self);
12022b6ee221Sahoka 	struct nand_chip *chip = &sc->sc_chip;
12032b6ee221Sahoka 	const uint8_t *bufp;
12042b6ee221Sahoka 	size_t pages, page;
12052b6ee221Sahoka 	daddr_t addr;
12062b6ee221Sahoka 	int error = 0;
12072b6ee221Sahoka 
12082b6ee221Sahoka 	if ((offset + len) > chip->nc_size) {
12092b6ee221Sahoka 		DPRINTF(("nand_flash_write: write (off: 0x%jx, len: %ju),"
12102b6ee221Sahoka 			" is over device size (0x%jx)\n",
12112b6ee221Sahoka 			(uintmax_t)offset, (uintmax_t)len,
12122b6ee221Sahoka 			(uintmax_t)chip->nc_size));
12132b6ee221Sahoka 		return EINVAL;
12142b6ee221Sahoka 	}
12152b6ee221Sahoka 
12162b6ee221Sahoka 	if (len % chip->nc_page_size != 0 ||
12172b6ee221Sahoka 	    offset % chip->nc_page_size != 0) {
12182b6ee221Sahoka 		return nand_flash_write_unaligned(self,
12192b6ee221Sahoka 		    offset, len, retlen, buf);
12202b6ee221Sahoka 	}
12212b6ee221Sahoka 
12222b6ee221Sahoka 	pages = len / chip->nc_page_size;
12232b6ee221Sahoka 	KASSERT(pages != 0);
12242b6ee221Sahoka 	*retlen = 0;
12252b6ee221Sahoka 
12262b6ee221Sahoka 	addr = offset;
12272b6ee221Sahoka 	bufp = buf;
12282b6ee221Sahoka 
12292b6ee221Sahoka 	mutex_enter(&sc->sc_device_lock);
12302b6ee221Sahoka 	for (page = 0; page < pages; page++) {
12312b6ee221Sahoka 		/* do we need this check here? */
12322b6ee221Sahoka 		if (nand_isbad(self, addr)) {
12332b6ee221Sahoka 			aprint_error_dev(self,
12342b6ee221Sahoka 			    "nand_flash_write: bad block encountered\n");
12352b6ee221Sahoka 
12362b6ee221Sahoka 			error = EIO;
12372b6ee221Sahoka 			goto out;
12382b6ee221Sahoka 		}
12392b6ee221Sahoka 
12402b6ee221Sahoka 		error = nand_program_page(self, addr, bufp);
12414e870ad5Sahoka 		if (error) {
12422b6ee221Sahoka 			goto out;
12434e870ad5Sahoka 		}
12442b6ee221Sahoka 
12452b6ee221Sahoka 		addr += chip->nc_page_size;
12462b6ee221Sahoka 		bufp += chip->nc_page_size;
12472b6ee221Sahoka 		*retlen += chip->nc_page_size;
12482b6ee221Sahoka 	}
12492b6ee221Sahoka out:
12502b6ee221Sahoka 	mutex_exit(&sc->sc_device_lock);
12513c5212aaSahoka 	DPRINTF(("page programming: retlen: %" PRIu32 ", len: %" PRIu32 "\n", *retlen, len));
12522b6ee221Sahoka 
12532b6ee221Sahoka 	return error;
12542b6ee221Sahoka }
12552b6ee221Sahoka 
12562b6ee221Sahoka /*
12572b6ee221Sahoka  * handle (page) unaligned read from nand
12582b6ee221Sahoka  */
12592b6ee221Sahoka static int
nand_flash_read_unaligned(device_t self,size_t offset,size_t len,size_t * retlen,uint8_t * buf)12602b6ee221Sahoka nand_flash_read_unaligned(device_t self, size_t offset,
12612b6ee221Sahoka     size_t len, size_t *retlen, uint8_t *buf)
12622b6ee221Sahoka {
12632b6ee221Sahoka 	struct nand_softc *sc = device_private(self);
12642b6ee221Sahoka 	struct nand_chip *chip = &sc->sc_chip;
12652b6ee221Sahoka 	daddr_t first, last, count, firstoff;
12662b6ee221Sahoka 	uint8_t *bufp;
12672b6ee221Sahoka 	daddr_t addr;
12682b6ee221Sahoka 	size_t left;
12692b6ee221Sahoka 	int error = 0, i;
12702b6ee221Sahoka 
12712b6ee221Sahoka 	first = offset & chip->nc_page_mask;
12722b6ee221Sahoka 	firstoff = offset & ~chip->nc_page_mask;
12732b6ee221Sahoka 	last = (offset + len) & chip->nc_page_mask;
12742b6ee221Sahoka 	count = (last - first) / chip->nc_page_size + 1;
12752b6ee221Sahoka 
12762b6ee221Sahoka 	addr = first;
12772b6ee221Sahoka 	bufp = buf;
12782b6ee221Sahoka 	left = len;
12792b6ee221Sahoka 	*retlen = 0;
12802b6ee221Sahoka 
12812b6ee221Sahoka 	mutex_enter(&sc->sc_device_lock);
12822b6ee221Sahoka 	if (count == 1) {
12832b6ee221Sahoka 		error = nand_read_page(self, addr, chip->nc_page_cache);
12844e870ad5Sahoka 		if (error) {
12852b6ee221Sahoka 			goto out;
12864e870ad5Sahoka 		}
12872b6ee221Sahoka 
12882b6ee221Sahoka 		memcpy(bufp, chip->nc_page_cache + firstoff, len);
12892b6ee221Sahoka 
12902b6ee221Sahoka 		*retlen = len;
12912b6ee221Sahoka 		goto out;
12922b6ee221Sahoka 	}
12932b6ee221Sahoka 
12942b6ee221Sahoka 	for (i = 0; i < count && left != 0; i++) {
12952b6ee221Sahoka 		error = nand_read_page(self, addr, chip->nc_page_cache);
12964e870ad5Sahoka 		if (error) {
12972b6ee221Sahoka 			goto out;
12984e870ad5Sahoka 		}
12992b6ee221Sahoka 
13002b6ee221Sahoka 		if (i == 0) {
13012b6ee221Sahoka 			memcpy(bufp, chip->nc_page_cache + firstoff,
13022b6ee221Sahoka 			    chip->nc_page_size - firstoff);
13032b6ee221Sahoka 
13042b6ee221Sahoka 			bufp += chip->nc_page_size - firstoff;
13052b6ee221Sahoka 			left -= chip->nc_page_size - firstoff;
13062b6ee221Sahoka 			*retlen += chip->nc_page_size - firstoff;
13072b6ee221Sahoka 
13082b6ee221Sahoka 		} else if (i == count - 1) {
13092b6ee221Sahoka 			memcpy(bufp, chip->nc_page_cache, left);
13102b6ee221Sahoka 			*retlen += left;
13112b6ee221Sahoka 			KASSERT(left < chip->nc_page_size);
13122b6ee221Sahoka 
13132b6ee221Sahoka 		} else {
13142b6ee221Sahoka 			memcpy(bufp, chip->nc_page_cache, chip->nc_page_size);
13152b6ee221Sahoka 
13162b6ee221Sahoka 			bufp += chip->nc_page_size;
13172b6ee221Sahoka 			left -= chip->nc_page_size;
13182b6ee221Sahoka 			*retlen += chip->nc_page_size;
13192b6ee221Sahoka 		}
13202b6ee221Sahoka 
13212b6ee221Sahoka 		addr += chip->nc_page_size;
13222b6ee221Sahoka 	}
13232b6ee221Sahoka 	KASSERT(*retlen == len);
13242b6ee221Sahoka out:
13252b6ee221Sahoka 	mutex_exit(&sc->sc_device_lock);
13262b6ee221Sahoka 
13272b6ee221Sahoka 	return error;
13282b6ee221Sahoka }
13292b6ee221Sahoka 
13302b6ee221Sahoka int
nand_flash_read(device_t self,flash_off_t offset,size_t len,size_t * retlen,uint8_t * buf)13316adb739dSahoka nand_flash_read(device_t self, flash_off_t offset, size_t len, size_t *retlen,
13322b6ee221Sahoka     uint8_t *buf)
13332b6ee221Sahoka {
13342b6ee221Sahoka 	struct nand_softc *sc = device_private(self);
13352b6ee221Sahoka 	struct nand_chip *chip = &sc->sc_chip;
13362b6ee221Sahoka 	uint8_t *bufp;
13372b6ee221Sahoka 	size_t addr;
13382b6ee221Sahoka 	size_t i, pages;
13392b6ee221Sahoka 	int error = 0;
13402b6ee221Sahoka 
13412b6ee221Sahoka 	*retlen = 0;
13422b6ee221Sahoka 
13433c5212aaSahoka 	DPRINTF(("nand_flash_read: off: 0x%jx, len: %" PRIu32 "\n",
13442b6ee221Sahoka 		(uintmax_t)offset, len));
13452b6ee221Sahoka 
13462b6ee221Sahoka 	if (__predict_false((offset + len) > chip->nc_size)) {
13473c5212aaSahoka 		DPRINTF(("nand_flash_read: read (off: 0x%jx, len: %" PRIu32 "),"
13482b6ee221Sahoka 			" is over device size (%ju)\n", (uintmax_t)offset,
13492b6ee221Sahoka 			len, (uintmax_t)chip->nc_size));
13502b6ee221Sahoka 		return EINVAL;
13512b6ee221Sahoka 	}
13522b6ee221Sahoka 
13532b6ee221Sahoka 	/* Handle unaligned access, shouldnt be needed when using the
13542b6ee221Sahoka 	 * block device, as strategy handles it, so only low level
13552b6ee221Sahoka 	 * accesses will use this path
13562b6ee221Sahoka 	 */
1357e43298d4Sahoka 	/* XXX^2 */
1358e43298d4Sahoka #if 0
1359e43298d4Sahoka 	if (len < chip->nc_page_size)
1360e43298d4Sahoka 		panic("TODO page size is larger than read size");
1361e43298d4Sahoka #endif
1362e43298d4Sahoka 
13632b6ee221Sahoka 	if (len % chip->nc_page_size != 0 ||
13642b6ee221Sahoka 	    offset % chip->nc_page_size != 0) {
13652b6ee221Sahoka 		return nand_flash_read_unaligned(self,
13662b6ee221Sahoka 		    offset, len, retlen, buf);
13672b6ee221Sahoka 	}
13682b6ee221Sahoka 
13692b6ee221Sahoka 	bufp = buf;
13702b6ee221Sahoka 	addr = offset;
13712b6ee221Sahoka 	pages = len / chip->nc_page_size;
13722b6ee221Sahoka 
13732b6ee221Sahoka 	mutex_enter(&sc->sc_device_lock);
13742b6ee221Sahoka 	for (i = 0; i < pages; i++) {
1375e43298d4Sahoka 		/* XXX do we need this check here? */
13762b6ee221Sahoka 		if (nand_isbad(self, addr)) {
13772b6ee221Sahoka 			aprint_error_dev(self, "bad block encountered\n");
13782b6ee221Sahoka 			error = EIO;
13792b6ee221Sahoka 			goto out;
13802b6ee221Sahoka 		}
13812b6ee221Sahoka 		error = nand_read_page(self, addr, bufp);
13822b6ee221Sahoka 		if (error)
13832b6ee221Sahoka 			goto out;
13842b6ee221Sahoka 
13852b6ee221Sahoka 		bufp += chip->nc_page_size;
13862b6ee221Sahoka 		addr += chip->nc_page_size;
13872b6ee221Sahoka 		*retlen += chip->nc_page_size;
13882b6ee221Sahoka 	}
13892b6ee221Sahoka out:
13902b6ee221Sahoka 	mutex_exit(&sc->sc_device_lock);
13912b6ee221Sahoka 
13922b6ee221Sahoka 	return error;
13932b6ee221Sahoka }
13942b6ee221Sahoka 
13952b6ee221Sahoka int
nand_flash_isbad(device_t self,flash_off_t ofs,bool * is_bad)1396dc728170Smartin nand_flash_isbad(device_t self, flash_off_t ofs, bool *is_bad)
13972b6ee221Sahoka {
13982b6ee221Sahoka 	struct nand_softc *sc = device_private(self);
13992b6ee221Sahoka 	struct nand_chip *chip = &sc->sc_chip;
14002b6ee221Sahoka 	bool result;
14012b6ee221Sahoka 
14022b6ee221Sahoka 	if (ofs > chip->nc_size) {
14032b6ee221Sahoka 		DPRINTF(("nand_flash_isbad: offset 0x%jx is larger than"
14042b6ee221Sahoka 			" device size (0x%jx)\n", (uintmax_t)ofs,
14052b6ee221Sahoka 			(uintmax_t)chip->nc_size));
14062b6ee221Sahoka 		return EINVAL;
14072b6ee221Sahoka 	}
14082b6ee221Sahoka 
14092b6ee221Sahoka 	if (ofs % chip->nc_block_size != 0) {
1410fb19d2b7Scliff 		DPRINTF(("offset (0x%jx) is not a multiple of block size "
14116adb739dSahoka 			"(%ju)",
14126adb739dSahoka 			(uintmax_t)ofs, (uintmax_t)chip->nc_block_size));
14136adb739dSahoka 		return EINVAL;
14142b6ee221Sahoka 	}
14152b6ee221Sahoka 
14162b6ee221Sahoka 	mutex_enter(&sc->sc_device_lock);
14172b6ee221Sahoka 	result = nand_isbad(self, ofs);
14182b6ee221Sahoka 	mutex_exit(&sc->sc_device_lock);
14192b6ee221Sahoka 
1420dc728170Smartin 	*is_bad = result;
14216adb739dSahoka 
14222b6ee221Sahoka 	return 0;
14232b6ee221Sahoka }
14242b6ee221Sahoka 
14252b6ee221Sahoka int
nand_flash_markbad(device_t self,flash_off_t ofs)14266adb739dSahoka nand_flash_markbad(device_t self, flash_off_t ofs)
14272b6ee221Sahoka {
14282b6ee221Sahoka 	struct nand_softc *sc = device_private(self);
14292b6ee221Sahoka 	struct nand_chip *chip = &sc->sc_chip;
14302b6ee221Sahoka 
14312b6ee221Sahoka 	if (ofs > chip->nc_size) {
14322b6ee221Sahoka 		DPRINTF(("nand_flash_markbad: offset 0x%jx is larger than"
14332b6ee221Sahoka 			" device size (0x%jx)\n", ofs,
14342b6ee221Sahoka 			(uintmax_t)chip->nc_size));
14352b6ee221Sahoka 		return EINVAL;
14362b6ee221Sahoka 	}
14372b6ee221Sahoka 
14382b6ee221Sahoka 	if (ofs % chip->nc_block_size != 0) {
1439fb19d2b7Scliff 		panic("offset (%ju) is not a multiple of block size (%ju)",
14402b6ee221Sahoka 		    (uintmax_t)ofs, (uintmax_t)chip->nc_block_size);
14412b6ee221Sahoka 	}
14422b6ee221Sahoka 
14432b6ee221Sahoka 	mutex_enter(&sc->sc_device_lock);
14442b6ee221Sahoka 	nand_markbad(self, ofs);
14452b6ee221Sahoka 	mutex_exit(&sc->sc_device_lock);
14462b6ee221Sahoka 
14472b6ee221Sahoka 	return 0;
14482b6ee221Sahoka }
14492b6ee221Sahoka 
14502b6ee221Sahoka int
nand_flash_erase(device_t self,struct flash_erase_instruction * ei)14512b6ee221Sahoka nand_flash_erase(device_t self,
14522b6ee221Sahoka     struct flash_erase_instruction *ei)
14532b6ee221Sahoka {
14542b6ee221Sahoka 	struct nand_softc *sc = device_private(self);
14552b6ee221Sahoka 	struct nand_chip *chip = &sc->sc_chip;
14566adb739dSahoka 	flash_off_t addr;
14574e870ad5Sahoka 	int error = 0;
14582b6ee221Sahoka 
14592b6ee221Sahoka 	if (ei->ei_addr < 0 || ei->ei_len < chip->nc_block_size)
14602b6ee221Sahoka 		return EINVAL;
14612b6ee221Sahoka 
14622b6ee221Sahoka 	if (ei->ei_addr + ei->ei_len > chip->nc_size) {
14632b6ee221Sahoka 		DPRINTF(("nand_flash_erase: erase address is over the end"
14642b6ee221Sahoka 			" of the device\n"));
14652b6ee221Sahoka 		return EINVAL;
14662b6ee221Sahoka 	}
14672b6ee221Sahoka 
14682b6ee221Sahoka 	if (ei->ei_addr % chip->nc_block_size != 0) {
14692b6ee221Sahoka 		aprint_error_dev(self,
14702b6ee221Sahoka 		    "nand_flash_erase: ei_addr (%ju) is not"
1471fb19d2b7Scliff 		    " a multiple of block size (%ju)",
14722b6ee221Sahoka 		    (uintmax_t)ei->ei_addr,
14732b6ee221Sahoka 		    (uintmax_t)chip->nc_block_size);
14742b6ee221Sahoka 		return EINVAL;
14752b6ee221Sahoka 	}
14762b6ee221Sahoka 
14772b6ee221Sahoka 	if (ei->ei_len % chip->nc_block_size != 0) {
14782b6ee221Sahoka 		aprint_error_dev(self,
14792b6ee221Sahoka 		    "nand_flash_erase: ei_len (%ju) is not"
1480fb19d2b7Scliff 		    " a multiple of block size (%ju)",
1481fb19d2b7Scliff 		    (uintmax_t)ei->ei_len,
14822b6ee221Sahoka 		    (uintmax_t)chip->nc_block_size);
14832b6ee221Sahoka 		return EINVAL;
14842b6ee221Sahoka 	}
14852b6ee221Sahoka 
14862b6ee221Sahoka 	mutex_enter(&sc->sc_device_lock);
14872b6ee221Sahoka 	addr = ei->ei_addr;
14882b6ee221Sahoka 	while (addr < ei->ei_addr + ei->ei_len) {
14892b6ee221Sahoka 		if (nand_isbad(self, addr)) {
14902b6ee221Sahoka 			aprint_error_dev(self, "bad block encountered\n");
14912b6ee221Sahoka 			ei->ei_state = FLASH_ERASE_FAILED;
14924e870ad5Sahoka 			error = EIO;
14934e870ad5Sahoka 			goto out;
14942b6ee221Sahoka 		}
14952b6ee221Sahoka 
14962b6ee221Sahoka 		error = nand_erase_block(self, addr);
14972b6ee221Sahoka 		if (error) {
14982b6ee221Sahoka 			ei->ei_state = FLASH_ERASE_FAILED;
14994e870ad5Sahoka 			goto out;
15002b6ee221Sahoka 		}
15012b6ee221Sahoka 
15022b6ee221Sahoka 		addr += chip->nc_block_size;
15032b6ee221Sahoka 	}
15042b6ee221Sahoka 	mutex_exit(&sc->sc_device_lock);
15052b6ee221Sahoka 
15062b6ee221Sahoka 	ei->ei_state = FLASH_ERASE_DONE;
15074e870ad5Sahoka 	if (ei->ei_callback != NULL) {
15082b6ee221Sahoka 		ei->ei_callback(ei);
15094e870ad5Sahoka 	}
15102b6ee221Sahoka 
15112b6ee221Sahoka 	return 0;
15124e870ad5Sahoka out:
15134e870ad5Sahoka 	mutex_exit(&sc->sc_device_lock);
15144e870ad5Sahoka 
15154e870ad5Sahoka 	return error;
15162b6ee221Sahoka }
15172b6ee221Sahoka 
15182b6ee221Sahoka MODULE(MODULE_CLASS_DRIVER, nand, "flash");
15192b6ee221Sahoka 
15202b6ee221Sahoka #ifdef _MODULE
15212b6ee221Sahoka #include "ioconf.c"
15222b6ee221Sahoka #endif
15232b6ee221Sahoka 
15242b6ee221Sahoka static int
nand_modcmd(modcmd_t cmd,void * opaque)15252b6ee221Sahoka nand_modcmd(modcmd_t cmd, void *opaque)
15262b6ee221Sahoka {
15272b6ee221Sahoka 	switch (cmd) {
15282b6ee221Sahoka 	case MODULE_CMD_INIT:
15292b6ee221Sahoka #ifdef _MODULE
15302b6ee221Sahoka 		return config_init_component(cfdriver_ioconf_nand,
15312b6ee221Sahoka 		    cfattach_ioconf_nand, cfdata_ioconf_nand);
15322b6ee221Sahoka #else
15332b6ee221Sahoka 		return 0;
15342b6ee221Sahoka #endif
15352b6ee221Sahoka 	case MODULE_CMD_FINI:
15362b6ee221Sahoka #ifdef _MODULE
15372b6ee221Sahoka 		return config_fini_component(cfdriver_ioconf_nand,
15382b6ee221Sahoka 		    cfattach_ioconf_nand, cfdata_ioconf_nand);
15392b6ee221Sahoka #else
15402b6ee221Sahoka 		return 0;
15412b6ee221Sahoka #endif
15422b6ee221Sahoka 	default:
15432b6ee221Sahoka 		return ENOTTY;
15442b6ee221Sahoka 	}
15452b6ee221Sahoka }
1546