blob: 1e517961d0ba744f8af6805ff7a9bc7354da0722 [file] [log] [blame]
Thomas Gleixnerd2912cb2019-06-04 10:11:33 +02001/* SPDX-License-Identifier: GPL-2.0-only */
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01002/*
3 * linux/include/linux/mtd/onenand.h
4 *
Amul Kumar Saha3cf60252009-10-21 17:00:05 +05305 * Copyright © 2005-2009 Samsung Electronics
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01006 * Kyungmin Park <kyungmin.park@samsung.com>
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01007 */
8
9#ifndef __LINUX_MTD_ONENAND_H
10#define __LINUX_MTD_ONENAND_H
11
12#include <linux/spinlock.h>
Kyungmin Park2c221202006-11-16 11:23:48 +090013#include <linux/completion.h>
Alessandro Rubini30631cb2009-09-20 23:28:14 +020014#include <linux/mtd/flashchip.h>
Kyungmin Parkcd5f6342005-07-11 11:41:53 +010015#include <linux/mtd/onenand_regs.h>
Kyungmin Parkcdc00132005-09-03 07:15:48 +010016#include <linux/mtd/bbm.h>
Kyungmin Parkcd5f6342005-07-11 11:41:53 +010017
Rohit Hagargundgi5988af22009-05-12 13:46:57 -070018#define MAX_DIES 2
Kyungmin Parkcd5f6342005-07-11 11:41:53 +010019#define MAX_BUFFERRAM 2
20
21/* Scan and identify a OneNAND device */
22extern int onenand_scan(struct mtd_info *mtd, int max_chips);
23/* Free resources held by the OneNAND device */
24extern void onenand_release(struct mtd_info *mtd);
25
Kyungmin Parkcd5f6342005-07-11 11:41:53 +010026/**
27 * struct onenand_bufferram - OneNAND BufferRAM Data
Kyungmin Parkabf3c0f2007-02-02 09:29:36 +090028 * @blockpage: block & page address in BufferRAM
Kyungmin Parkcd5f6342005-07-11 11:41:53 +010029 */
30struct onenand_bufferram {
Kyungmin Parkabf3c0f2007-02-02 09:29:36 +090031 int blockpage;
Kyungmin Parkcd5f6342005-07-11 11:41:53 +010032};
33
34/**
35 * struct onenand_chip - OneNAND Private Flash Chip Data
Randy Dunlapea9b6dc2006-06-28 21:48:38 -070036 * @base: [BOARDSPECIFIC] address to access OneNAND
Rohit Hagargundgi5988af22009-05-12 13:46:57 -070037 * @dies: [INTERN][FLEX-ONENAND] number of dies on chip
38 * @boundary: [INTERN][FLEX-ONENAND] Boundary of the dies
39 * @diesize: [INTERN][FLEX-ONENAND] Size of the dies
Randy Dunlapea9b6dc2006-06-28 21:48:38 -070040 * @chipsize: [INTERN] the size of one chip for multichip arrays
Rohit Hagargundgi5988af22009-05-12 13:46:57 -070041 * FIXME For Flex-OneNAND, chipsize holds maximum possible
42 * device size ie when all blocks are considered MLC
Randy Dunlapea9b6dc2006-06-28 21:48:38 -070043 * @device_id: [INTERN] device ID
44 * @density_mask: chip density, used for DDP devices
45 * @verstion_id: [INTERN] version ID
46 * @options: [BOARDSPECIFIC] various chip options. They can
47 * partly be set to inform onenand_scan about
48 * @erase_shift: [INTERN] number of address bits in a block
49 * @page_shift: [INTERN] number of address bits in a page
Randy Dunlapea9b6dc2006-06-28 21:48:38 -070050 * @page_mask: [INTERN] a page per block mask
Kyungmin Parkee9745f2007-06-30 13:57:49 +090051 * @writesize: [INTERN] a real page size
Randy Dunlapea9b6dc2006-06-28 21:48:38 -070052 * @bufferram_index: [INTERN] BufferRAM index
53 * @bufferram: [INTERN] BufferRAM info
54 * @readw: [REPLACEABLE] hardware specific function for read short
55 * @writew: [REPLACEABLE] hardware specific function for write short
56 * @command: [REPLACEABLE] hardware specific function for writing
57 * commands to the chip
58 * @wait: [REPLACEABLE] hardware specific function for wait on ready
Kyungmin Park31bb9992009-05-12 13:46:57 -070059 * @bbt_wait: [REPLACEABLE] hardware specific function for bbt wait on ready
60 * @unlock_all: [REPLACEABLE] hardware specific function for unlock all
Randy Dunlapea9b6dc2006-06-28 21:48:38 -070061 * @read_bufferram: [REPLACEABLE] hardware specific function for BufferRAM Area
62 * @write_bufferram: [REPLACEABLE] hardware specific function for BufferRAM Area
63 * @read_word: [REPLACEABLE] hardware specific function for read
64 * register of OneNAND
65 * @write_word: [REPLACEABLE] hardware specific function for write
66 * register of OneNAND
67 * @mmcontrol: sync burst read function
Kyungmin Parkad0d3632010-05-28 11:03:11 +090068 * @chip_probe: [REPLACEABLE] hardware specific function for chip probe
Randy Dunlapea9b6dc2006-06-28 21:48:38 -070069 * @block_markbad: function to mark a block as bad
70 * @scan_bbt: [REPLACEALBE] hardware specific function for scanning
71 * Bad block Table
72 * @chip_lock: [INTERN] spinlock used to protect access to this
73 * structure and the chip
74 * @wq: [INTERN] wait queue to sleep on if a OneNAND
75 * operation is in progress
76 * @state: [INTERN] the current state of the OneNAND device
Kyungmin Park470bc842007-03-09 10:08:11 +090077 * @page_buf: [INTERN] page main data buffer
78 * @oob_buf: [INTERN] page oob data buffer
Kyungmin Park60d84f92006-12-22 16:21:54 +090079 * @subpagesize: [INTERN] holds the subpagesize
Randy Dunlapea9b6dc2006-06-28 21:48:38 -070080 * @bbm: [REPLACEABLE] pointer to Bad Block Management
81 * @priv: [OPTIONAL] pointer to private chip date
Kyungmin Parkcd5f6342005-07-11 11:41:53 +010082 */
83struct onenand_chip {
84 void __iomem *base;
Rohit Hagargundgi5988af22009-05-12 13:46:57 -070085 unsigned dies;
86 unsigned boundary[MAX_DIES];
87 loff_t diesize[MAX_DIES];
Kyungmin Parkcd5f6342005-07-11 11:41:53 +010088 unsigned int chipsize;
89 unsigned int device_id;
Kyungmin Park28b79ff2006-09-26 09:45:28 +000090 unsigned int version_id;
Rohit Hagargundgi5988af22009-05-12 13:46:57 -070091 unsigned int technology;
Kyungmin Park83a36832005-09-29 04:53:16 +010092 unsigned int density_mask;
Kyungmin Parkcd5f6342005-07-11 11:41:53 +010093 unsigned int options;
Frieder Schrempfbfd15c92019-04-17 12:36:35 +000094 unsigned int badblockpos;
Kyungmin Parkcd5f6342005-07-11 11:41:53 +010095
96 unsigned int erase_shift;
97 unsigned int page_shift;
Kyungmin Parkcd5f6342005-07-11 11:41:53 +010098 unsigned int page_mask;
Kyungmin Parkee9745f2007-06-30 13:57:49 +090099 unsigned int writesize;
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100100
101 unsigned int bufferram_index;
102 struct onenand_bufferram bufferram[MAX_BUFFERRAM];
103
104 int (*command)(struct mtd_info *mtd, int cmd, loff_t address, size_t len);
105 int (*wait)(struct mtd_info *mtd, int state);
Kyungmin Park31bb9992009-05-12 13:46:57 -0700106 int (*bbt_wait)(struct mtd_info *mtd, int state);
107 void (*unlock_all)(struct mtd_info *mtd);
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100108 int (*read_bufferram)(struct mtd_info *mtd, int area,
109 unsigned char *buffer, int offset, size_t count);
110 int (*write_bufferram)(struct mtd_info *mtd, int area,
111 const unsigned char *buffer, int offset, size_t count);
112 unsigned short (*read_word)(void __iomem *addr);
113 void (*write_word)(unsigned short value, void __iomem *addr);
Kyungmin Park52b0eea2005-09-03 07:07:19 +0100114 void (*mmcontrol)(struct mtd_info *mtd, int sync_read);
Kyungmin Parkad0d3632010-05-28 11:03:11 +0900115 int (*chip_probe)(struct mtd_info *mtd);
Kyungmin Parkcdc00132005-09-03 07:15:48 +0100116 int (*block_markbad)(struct mtd_info *mtd, loff_t ofs);
117 int (*scan_bbt)(struct mtd_info *mtd);
Adrian Huntercf24dc82010-02-19 15:39:52 +0100118 int (*enable)(struct mtd_info *mtd);
119 int (*disable)(struct mtd_info *mtd);
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100120
Kyungmin Park2c221202006-11-16 11:23:48 +0900121 struct completion complete;
122 int irq;
123
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100124 spinlock_t chip_lock;
125 wait_queue_head_t wq;
Alessandro Rubini30631cb2009-09-20 23:28:14 +0200126 flstate_t state;
Kyungmin Park532a37c2005-12-16 11:17:29 +0900127 unsigned char *page_buf;
Kyungmin Park470bc842007-03-09 10:08:11 +0900128 unsigned char *oob_buf;
Kyungmin Park4a8ce0b2010-04-28 17:46:46 +0200129#ifdef CONFIG_MTD_ONENAND_VERIFY_WRITE
130 unsigned char *verify_buf;
131#endif
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100132
Kyungmin Park60d84f92006-12-22 16:21:54 +0900133 int subpagesize;
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100134
Thomas Gleixner5bd34c02006-05-27 22:16:10 +0200135 void *bbm;
Kyungmin Parkcdc00132005-09-03 07:15:48 +0100136
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100137 void *priv;
Roman Tereshonkov3e3198f2010-11-03 12:55:19 +0200138
139 /*
140 * Shows that the current operation is composed
141 * of sequence of commands. For example, cache program.
142 * Such command status OnGo bit is checked at the end of
143 * sequence.
144 */
145 unsigned int ongoing;
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100146};
147
Kyungmin Parkfcc31472005-09-03 07:20:08 +0100148/*
149 * Helper macros
150 */
Amul Kumar Saha3cf60252009-10-21 17:00:05 +0530151#define ONENAND_PAGES_PER_BLOCK (1<<6)
152
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100153#define ONENAND_CURRENT_BUFFERRAM(this) (this->bufferram_index)
154#define ONENAND_NEXT_BUFFERRAM(this) (this->bufferram_index ^ 1)
155#define ONENAND_SET_NEXT_BUFFERRAM(this) (this->bufferram_index ^= 1)
Adrian Huntera8de85d2007-01-04 09:51:26 +0200156#define ONENAND_SET_PREV_BUFFERRAM(this) (this->bufferram_index ^= 1)
Kyungmin Parkee9745f2007-06-30 13:57:49 +0900157#define ONENAND_SET_BUFFERRAM0(this) (this->bufferram_index = 0)
158#define ONENAND_SET_BUFFERRAM1(this) (this->bufferram_index = 1)
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100159
Rohit Hagargundgi5988af22009-05-12 13:46:57 -0700160#define FLEXONENAND(this) \
161 (this->device_id & DEVICE_IS_FLEXONENAND)
Kyungmin Parkfcc31472005-09-03 07:20:08 +0100162#define ONENAND_GET_SYS_CFG1(this) \
163 (this->read_word(this->base + ONENAND_REG_SYS_CFG1))
164#define ONENAND_SET_SYS_CFG1(v, this) \
165 (this->write_word(v, this->base + ONENAND_REG_SYS_CFG1))
166
Kyungmin Park738d61f2007-01-15 17:09:14 +0900167#define ONENAND_IS_DDP(this) \
168 (this->device_id & ONENAND_DEVICE_IS_DDP)
169
Rohit Hagargundgi5988af22009-05-12 13:46:57 -0700170#define ONENAND_IS_MLC(this) \
171 (this->technology & ONENAND_TECHNOLOGY_IS_MLC)
172
Kyungmin Parkee9745f2007-06-30 13:57:49 +0900173#ifdef CONFIG_MTD_ONENAND_2X_PROGRAM
174#define ONENAND_IS_2PLANE(this) \
175 (this->options & ONENAND_HAS_2PLANE)
176#else
177#define ONENAND_IS_2PLANE(this) (0)
178#endif
179
Roman Tereshonkov3e3198f2010-11-03 12:55:19 +0200180#define ONENAND_IS_CACHE_PROGRAM(this) \
181 (this->options & ONENAND_HAS_CACHE_PROGRAM)
182
Kyungmin Parke1c10242011-06-22 14:16:49 +0900183#define ONENAND_IS_NOP_1(this) \
184 (this->options & ONENAND_HAS_NOP_1)
185
Kyungmin Park9c01f87d2006-05-12 17:02:31 +0300186/* Check byte access in OneNAND */
187#define ONENAND_CHECK_BYTE_ACCESS(addr) (addr & 0x1)
188
Frieder Schrempfbfd15c92019-04-17 12:36:35 +0000189#define ONENAND_BADBLOCK_POS 0
190
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100191/*
192 * Options bits
193 */
Kyungmin Park28b79ff2006-09-26 09:45:28 +0000194#define ONENAND_HAS_CONT_LOCK (0x0001)
195#define ONENAND_HAS_UNLOCK_ALL (0x0002)
Kyungmin Parkee9745f2007-06-30 13:57:49 +0900196#define ONENAND_HAS_2PLANE (0x0004)
Kyungmin Park6a88c472010-04-28 17:46:45 +0200197#define ONENAND_HAS_4KB_PAGE (0x0008)
Roman Tereshonkov3e3198f2010-11-03 12:55:19 +0200198#define ONENAND_HAS_CACHE_PROGRAM (0x0010)
Kyungmin Parke1c10242011-06-22 14:16:49 +0900199#define ONENAND_HAS_NOP_1 (0x0020)
Kyungmin Park31bb9992009-05-12 13:46:57 -0700200#define ONENAND_SKIP_UNLOCK_CHECK (0x0100)
Kyungmin Park532a37c2005-12-16 11:17:29 +0900201#define ONENAND_PAGEBUF_ALLOC (0x1000)
Kyungmin Park470bc842007-03-09 10:08:11 +0900202#define ONENAND_OOBBUF_ALLOC (0x2000)
Roman Tereshonkovb3dcfd352011-02-17 13:44:41 +0200203#define ONENAND_SKIP_INITIAL_UNLOCKING (0x4000)
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100204
Kyungmin Park6a88c472010-04-28 17:46:45 +0200205#define ONENAND_IS_4KB_PAGE(this) \
206 (this->options & ONENAND_HAS_4KB_PAGE)
207
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100208/*
209 * OneNAND Flash Manufacturer ID Codes
210 */
211#define ONENAND_MFR_SAMSUNG 0xec
Adrian Hunteree8f3762009-05-05 11:04:19 +0300212#define ONENAND_MFR_NUMONYX 0x20
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100213
214/**
Randy Dunlapea9b6dc2006-06-28 21:48:38 -0700215 * struct onenand_manufacturers - NAND Flash Manufacturer ID Structure
216 * @name: Manufacturer name
217 * @id: manufacturer ID code of device.
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100218*/
219struct onenand_manufacturers {
220 int id;
221 char *name;
222};
223
Adrian Bunk607d1cb2008-04-14 17:20:38 +0300224int onenand_bbt_read_oob(struct mtd_info *mtd, loff_t from,
225 struct mtd_oob_ops *ops);
Rohit Hagargundgi5988af22009-05-12 13:46:57 -0700226unsigned onenand_block(struct onenand_chip *this, loff_t addr);
227loff_t onenand_addr(struct onenand_chip *this, int block);
228int flexonenand_region(struct mtd_info *mtd, loff_t addr);
Adrian Bunk607d1cb2008-04-14 17:20:38 +0300229
Magnus Damm778dbcc2009-09-18 12:51:44 -0700230struct mtd_partition;
231
232struct onenand_platform_data {
233 void (*mmcontrol)(struct mtd_info *mtd, int sync_read);
Kyungmin Park3328dc32010-04-28 17:46:47 +0200234 int (*read_bufferram)(struct mtd_info *mtd, int area,
235 unsigned char *buffer, int offset, size_t count);
Magnus Damm778dbcc2009-09-18 12:51:44 -0700236 struct mtd_partition *parts;
237 unsigned int nr_parts;
238};
239
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100240#endif /* __LINUX_MTD_ONENAND_H */