xref: /openbmc/u-boot/include/linux/mtd/onenand.h (revision 0a6deb3251a68b5be640ab1b848ca67e906b75ce)
1d7e8ce10SKyungmin Park /*
2d7e8ce10SKyungmin Park  *  linux/include/linux/mtd/onenand.h
3d7e8ce10SKyungmin Park  *
4d7e8ce10SKyungmin Park  *  Copyright (C) 2005-2007 Samsung Electronics
5d7e8ce10SKyungmin Park  *  Kyungmin Park <kyungmin.park@samsung.com>
6d7e8ce10SKyungmin Park  *
7d7e8ce10SKyungmin Park  * This program is free software; you can redistribute it and/or modify
8d7e8ce10SKyungmin Park  * it under the terms of the GNU General Public License version 2 as
9d7e8ce10SKyungmin Park  * published by the Free Software Foundation.
10d7e8ce10SKyungmin Park  */
11d7e8ce10SKyungmin Park 
12d7e8ce10SKyungmin Park #ifndef __LINUX_MTD_ONENAND_H
13d7e8ce10SKyungmin Park #define __LINUX_MTD_ONENAND_H
14d7e8ce10SKyungmin Park 
15d7e8ce10SKyungmin Park #include <linux/mtd/onenand_regs.h>
16d7e8ce10SKyungmin Park 
17d7e8ce10SKyungmin Park /* Note: The header order is impoertant */
18d7e8ce10SKyungmin Park #include <onenand_uboot.h>
19d7e8ce10SKyungmin Park 
20*7b15e2bbSMike Frysinger #include <linux/compat.h>
21d7e8ce10SKyungmin Park #include <linux/mtd/bbm.h>
22d7e8ce10SKyungmin Park 
23cacbe919SAmul Kumar Saha #define MAX_DIES		2
24d7e8ce10SKyungmin Park #define MAX_BUFFERRAM		2
25cacbe919SAmul Kumar Saha #define MAX_ONENAND_PAGESIZE	(4096 + 128)
26d7e8ce10SKyungmin Park 
27d7e8ce10SKyungmin Park /* Scan and identify a OneNAND device */
28d7e8ce10SKyungmin Park extern int onenand_scan (struct mtd_info *mtd, int max_chips);
29d7e8ce10SKyungmin Park /* Free resources held by the OneNAND device */
30d7e8ce10SKyungmin Park extern void onenand_release (struct mtd_info *mtd);
31d7e8ce10SKyungmin Park 
32d7e8ce10SKyungmin Park /**
33d7e8ce10SKyungmin Park  * struct onenand_bufferram - OneNAND BufferRAM Data
34ef0921d6SKyungmin Park  * @param blockpage	block & page address in BufferRAM
35d7e8ce10SKyungmin Park  */
36d7e8ce10SKyungmin Park struct onenand_bufferram {
37ef0921d6SKyungmin Park 	int blockpage;
38d7e8ce10SKyungmin Park };
39d7e8ce10SKyungmin Park 
40d7e8ce10SKyungmin Park /**
41d7e8ce10SKyungmin Park  * struct onenand_chip - OneNAND Private Flash Chip Data
42d7e8ce10SKyungmin Park  * @param base		[BOARDSPECIFIC] address to access OneNAND
43cacbe919SAmul Kumar Saha  * @dies:               [INTERN][FLEXONENAND] number of dies on chip
44cacbe919SAmul Kumar Saha  * @boundary:           [INTERN][FLEXONENAND] Boundary of the dies
45cacbe919SAmul Kumar Saha  * @diesize:            [INTERN][FLEXONENAND] Size of the dies
46d7e8ce10SKyungmin Park  * @param chipsize	[INTERN] the size of one chip for multichip arrays
47d7e8ce10SKyungmin Park  * @param device_id	[INTERN] device ID
48d7e8ce10SKyungmin Park  * @param verstion_id	[INTERN] version ID
49cacbe919SAmul Kumar Saha  * @technology		[INTERN] describes the internal NAND array technology such as SLC or MLC.
50cacbe919SAmul Kumar Saha  * @density_mask:	[INTERN] chip density, used for DDP devices
51d7e8ce10SKyungmin Park  * @param options	[BOARDSPECIFIC] various chip options. They can partly be set to inform onenand_scan about
52d7e8ce10SKyungmin Park  * @param erase_shift	[INTERN] number of address bits in a block
53d7e8ce10SKyungmin Park  * @param page_shift	[INTERN] number of address bits in a page
54d7e8ce10SKyungmin Park  * @param ppb_shift	[INTERN] number of address bits in a pages per block
55d7e8ce10SKyungmin Park  * @param page_mask	[INTERN] a page per block mask
56c45912d8SScott Wood  * @param writesize	[INTERN] a real page size
57d7e8ce10SKyungmin Park  * @param bufferam_index	[INTERN] BufferRAM index
58d7e8ce10SKyungmin Park  * @param bufferam	[INTERN] BufferRAM info
59d7e8ce10SKyungmin Park  * @param readw		[REPLACEABLE] hardware specific function for read short
60d7e8ce10SKyungmin Park  * @param writew	[REPLACEABLE] hardware specific function for write short
61d7e8ce10SKyungmin Park  * @param command	[REPLACEABLE] hardware specific function for writing commands to the chip
62d7e8ce10SKyungmin Park  * @param wait		[REPLACEABLE] hardware specific function for wait on ready
63d7e8ce10SKyungmin Park  * @param read_bufferram	[REPLACEABLE] hardware specific function for BufferRAM Area
64d7e8ce10SKyungmin Park  * @param write_bufferram	[REPLACEABLE] hardware specific function for BufferRAM Area
65d7e8ce10SKyungmin Park  * @param chip_lock	[INTERN] spinlock used to protect access to this structure and the chip
66d7e8ce10SKyungmin Park  * @param wq		[INTERN] wait queue to sleep on if a OneNAND operation is in progress
67d7e8ce10SKyungmin Park  * @param state		[INTERN] the current state of the OneNAND device
68d7e8ce10SKyungmin Park  * @param autooob	[REPLACEABLE] the default (auto)placement scheme
69d7e8ce10SKyungmin Park  * @param priv		[OPTIONAL] pointer to private chip date
70d7e8ce10SKyungmin Park  */
71d7e8ce10SKyungmin Park struct onenand_chip {
72d7e8ce10SKyungmin Park 	void __iomem *base;
73cacbe919SAmul Kumar Saha 	unsigned int dies;
74cacbe919SAmul Kumar Saha 	unsigned int boundary[MAX_DIES];
75cacbe919SAmul Kumar Saha 	unsigned int diesize[MAX_DIES];
76d7e8ce10SKyungmin Park 	unsigned int chipsize;
77d7e8ce10SKyungmin Park 	unsigned int device_id;
78ef0921d6SKyungmin Park 	unsigned int version_id;
79cacbe919SAmul Kumar Saha 	unsigned int technology;
80ef0921d6SKyungmin Park 	unsigned int density_mask;
81d7e8ce10SKyungmin Park 	unsigned int options;
82d7e8ce10SKyungmin Park 
83d7e8ce10SKyungmin Park 	unsigned int erase_shift;
84d7e8ce10SKyungmin Park 	unsigned int page_shift;
85d7e8ce10SKyungmin Park 	unsigned int ppb_shift;	/* Pages per block shift */
86d7e8ce10SKyungmin Park 	unsigned int page_mask;
87bfd7f386SKyungmin Park 	unsigned int writesize;
88d7e8ce10SKyungmin Park 
89d7e8ce10SKyungmin Park 	unsigned int bufferram_index;
90d7e8ce10SKyungmin Park 	struct onenand_bufferram bufferram[MAX_BUFFERRAM];
91d7e8ce10SKyungmin Park 
92d7e8ce10SKyungmin Park 	int (*command) (struct mtd_info *mtd, int cmd, loff_t address,
93d7e8ce10SKyungmin Park 			size_t len);
94d7e8ce10SKyungmin Park 	int (*wait) (struct mtd_info *mtd, int state);
95ef0921d6SKyungmin Park 	int (*bbt_wait) (struct mtd_info *mtd, int state);
96ce3277a6SKyungmin Park 	void (*unlock_all)(struct mtd_info *mtd);
97ef0921d6SKyungmin Park 	int (*read_bufferram) (struct mtd_info *mtd, loff_t addr, int area,
98d7e8ce10SKyungmin Park 			       unsigned char *buffer, int offset, size_t count);
99ef0921d6SKyungmin Park 	int (*write_bufferram) (struct mtd_info *mtd, loff_t addr, int area,
100d7e8ce10SKyungmin Park 				const unsigned char *buffer, int offset,
101d7e8ce10SKyungmin Park 				size_t count);
102d7e8ce10SKyungmin Park 	unsigned short (*read_word) (void __iomem *addr);
103d7e8ce10SKyungmin Park 	void (*write_word) (unsigned short value, void __iomem *addr);
1046b3967bbSLukasz Majewski 	int (*chip_probe)(struct mtd_info *mtd);
105d7e8ce10SKyungmin Park 	void (*mmcontrol) (struct mtd_info *mtd, int sync_read);
106d438d508SKyungmin Park 	int (*block_markbad)(struct mtd_info *mtd, loff_t ofs);
107d438d508SKyungmin Park 	int (*scan_bbt)(struct mtd_info *mtd);
108d7e8ce10SKyungmin Park 
109ef0921d6SKyungmin Park 	unsigned char		*main_buf;
110ef0921d6SKyungmin Park 	unsigned char		*spare_buf;
111ef0921d6SKyungmin Park #ifdef DONT_USE_UBOOT
112ef0921d6SKyungmin Park 	spinlock_t chip_lock;
113ef0921d6SKyungmin Park 	wait_queue_head_t wq;
114ef0921d6SKyungmin Park #endif
115d438d508SKyungmin Park 	int state;
116bfd7f386SKyungmin Park 	unsigned char		*page_buf;
117bfd7f386SKyungmin Park 	unsigned char		*oob_buf;
118d7e8ce10SKyungmin Park 
119d7e8ce10SKyungmin Park 	struct nand_oobinfo *autooob;
1201ae39862SStefan Roese 	int			subpagesize;
121bfd7f386SKyungmin Park 	struct nand_ecclayout	*ecclayout;
122d7e8ce10SKyungmin Park 
123d7e8ce10SKyungmin Park 	void *bbm;
124d7e8ce10SKyungmin Park 
125d7e8ce10SKyungmin Park 	void *priv;
126d7e8ce10SKyungmin Park };
127d7e8ce10SKyungmin Park 
128bfd7f386SKyungmin Park /*
129bfd7f386SKyungmin Park  * Helper macros
130bfd7f386SKyungmin Park  */
131d7e8ce10SKyungmin Park #define ONENAND_CURRENT_BUFFERRAM(this)		(this->bufferram_index)
132d7e8ce10SKyungmin Park #define ONENAND_NEXT_BUFFERRAM(this)		(this->bufferram_index ^ 1)
133d7e8ce10SKyungmin Park #define ONENAND_SET_NEXT_BUFFERRAM(this)	(this->bufferram_index ^= 1)
134bfd7f386SKyungmin Park #define ONENAND_SET_PREV_BUFFERRAM(this)	(this->bufferram_index ^= 1)
135bfd7f386SKyungmin Park #define ONENAND_SET_BUFFERRAM0(this)		(this->bufferram_index = 0)
136bfd7f386SKyungmin Park #define ONENAND_SET_BUFFERRAM1(this)		(this->bufferram_index = 1)
137bfd7f386SKyungmin Park 
138cacbe919SAmul Kumar Saha #define FLEXONENAND(this)	(this->device_id & DEVICE_IS_FLEXONENAND)
139cacbe919SAmul Kumar Saha #define ONENAND_IS_MLC(this)	(this->technology & ONENAND_TECHNOLOGY_IS_MLC)
140bfd7f386SKyungmin Park #define ONENAND_IS_DDP(this)						\
141bfd7f386SKyungmin Park 	(this->device_id & ONENAND_DEVICE_IS_DDP)
142bfd7f386SKyungmin Park 
143e26fd3d3SLukasz Majewski #define ONENAND_IS_4KB_PAGE(this)					\
144e26fd3d3SLukasz Majewski 	(this->options & ONENAND_HAS_4KB_PAGE)
145e26fd3d3SLukasz Majewski 
146bfd7f386SKyungmin Park #define ONENAND_IS_2PLANE(this)			(0)
147d7e8ce10SKyungmin Park 
148d7e8ce10SKyungmin Park /*
149d7e8ce10SKyungmin Park  * Options bits
150d7e8ce10SKyungmin Park  */
151ef0921d6SKyungmin Park #define ONENAND_HAS_CONT_LOCK		(0x0001)
152ef0921d6SKyungmin Park #define ONENAND_HAS_UNLOCK_ALL		(0x0002)
153ef0921d6SKyungmin Park #define ONENAND_HAS_2PLANE		(0x0004)
154e26fd3d3SLukasz Majewski #define ONENAND_HAS_4KB_PAGE            (0x0008)
1554678d674SMinkyu Kang #define ONENAND_RUNTIME_BADBLOCK_CHECK	(0x0200)
156bfd7f386SKyungmin Park #define ONENAND_PAGEBUF_ALLOC		(0x1000)
157bfd7f386SKyungmin Park #define ONENAND_OOBBUF_ALLOC		(0x2000)
158d7e8ce10SKyungmin Park 
159d7e8ce10SKyungmin Park /*
160d7e8ce10SKyungmin Park  * OneNAND Flash Manufacturer ID Codes
161d7e8ce10SKyungmin Park  */
162456be17dSEnric Balletbo i Serra #define ONENAND_MFR_NUMONYX	0x20
163d7e8ce10SKyungmin Park #define ONENAND_MFR_SAMSUNG	0xec
164d7e8ce10SKyungmin Park 
165d7e8ce10SKyungmin Park /**
166d7e8ce10SKyungmin Park  * struct nand_manufacturers - NAND Flash Manufacturer ID Structure
167d7e8ce10SKyungmin Park  * @param name:		Manufacturer name
168d7e8ce10SKyungmin Park  * @param id:		manufacturer ID code of device.
169d7e8ce10SKyungmin Park */
170d7e8ce10SKyungmin Park struct onenand_manufacturers {
171d7e8ce10SKyungmin Park 	int id;
172d7e8ce10SKyungmin Park 	char *name;
173d7e8ce10SKyungmin Park };
174d7e8ce10SKyungmin Park 
175bfd7f386SKyungmin Park int onenand_bbt_read_oob(struct mtd_info *mtd, loff_t from,
176bfd7f386SKyungmin Park 			struct mtd_oob_ops *ops);
177bfd7f386SKyungmin Park 
178cacbe919SAmul Kumar Saha unsigned int onenand_block(struct onenand_chip *this, loff_t addr);
179cacbe919SAmul Kumar Saha int flexonenand_region(struct mtd_info *mtd, loff_t addr);
180d7e8ce10SKyungmin Park #endif				/* __LINUX_MTD_ONENAND_H */
181