xref: /rk3399_rockchip-uboot/include/linux/mtd/nand.h (revision d55257eea0279b321bb15c17c6e5c2966b97f8d8)
1ed99f773SBoris Brezillon /* SPDX-License-Identifier: GPL-2.0 */
2ed99f773SBoris Brezillon /*
3ed99f773SBoris Brezillon  *  Copyright 2017 - Free Electrons
4ed99f773SBoris Brezillon  *
5ed99f773SBoris Brezillon  *  Authors:
6ed99f773SBoris Brezillon  *	Boris Brezillon <boris.brezillon@free-electrons.com>
7ed99f773SBoris Brezillon  *	Peter Pan <peterpandong@micron.com>
8ed99f773SBoris Brezillon  */
9ed99f773SBoris Brezillon 
10ed99f773SBoris Brezillon #ifndef __LINUX_MTD_NAND_H
11ed99f773SBoris Brezillon #define __LINUX_MTD_NAND_H
12ed99f773SBoris Brezillon 
13ed99f773SBoris Brezillon #include <linux/mtd/mtd.h>
14ed99f773SBoris Brezillon 
15ed99f773SBoris Brezillon /**
16ed99f773SBoris Brezillon  * struct nand_memory_organization - Memory organization structure
17ed99f773SBoris Brezillon  * @bits_per_cell: number of bits per NAND cell
18ed99f773SBoris Brezillon  * @pagesize: page size
19ed99f773SBoris Brezillon  * @oobsize: OOB area size
20ed99f773SBoris Brezillon  * @pages_per_eraseblock: number of pages per eraseblock
21ed99f773SBoris Brezillon  * @eraseblocks_per_lun: number of eraseblocks per LUN (Logical Unit Number)
22ed99f773SBoris Brezillon  * @planes_per_lun: number of planes per LUN
23ed99f773SBoris Brezillon  * @luns_per_target: number of LUN per target (target is a synonym for die)
24ed99f773SBoris Brezillon  * @ntargets: total number of targets exposed by the NAND device
25ed99f773SBoris Brezillon  */
26ed99f773SBoris Brezillon struct nand_memory_organization {
27ed99f773SBoris Brezillon 	unsigned int bits_per_cell;
28ed99f773SBoris Brezillon 	unsigned int pagesize;
29ed99f773SBoris Brezillon 	unsigned int oobsize;
30ed99f773SBoris Brezillon 	unsigned int pages_per_eraseblock;
31ed99f773SBoris Brezillon 	unsigned int eraseblocks_per_lun;
32ed99f773SBoris Brezillon 	unsigned int planes_per_lun;
33ed99f773SBoris Brezillon 	unsigned int luns_per_target;
34ed99f773SBoris Brezillon 	unsigned int ntargets;
35ed99f773SBoris Brezillon };
36ed99f773SBoris Brezillon 
37ed99f773SBoris Brezillon #define NAND_MEMORG(bpc, ps, os, ppe, epl, ppl, lpt, nt)	\
38ed99f773SBoris Brezillon 	{							\
39ed99f773SBoris Brezillon 		.bits_per_cell = (bpc),				\
40ed99f773SBoris Brezillon 		.pagesize = (ps),				\
41ed99f773SBoris Brezillon 		.oobsize = (os),				\
42ed99f773SBoris Brezillon 		.pages_per_eraseblock = (ppe),			\
43ed99f773SBoris Brezillon 		.eraseblocks_per_lun = (epl),			\
44ed99f773SBoris Brezillon 		.planes_per_lun = (ppl),			\
45ed99f773SBoris Brezillon 		.luns_per_target = (lpt),			\
46ed99f773SBoris Brezillon 		.ntargets = (nt),				\
47ed99f773SBoris Brezillon 	}
48ed99f773SBoris Brezillon 
49ed99f773SBoris Brezillon /**
50ed99f773SBoris Brezillon  * struct nand_row_converter - Information needed to convert an absolute offset
51ed99f773SBoris Brezillon  *			       into a row address
52ed99f773SBoris Brezillon  * @lun_addr_shift: position of the LUN identifier in the row address
53ed99f773SBoris Brezillon  * @eraseblock_addr_shift: position of the eraseblock identifier in the row
54ed99f773SBoris Brezillon  *			   address
55ed99f773SBoris Brezillon  */
56ed99f773SBoris Brezillon struct nand_row_converter {
57ed99f773SBoris Brezillon 	unsigned int lun_addr_shift;
58ed99f773SBoris Brezillon 	unsigned int eraseblock_addr_shift;
59ed99f773SBoris Brezillon };
60ed99f773SBoris Brezillon 
61ed99f773SBoris Brezillon /**
62ed99f773SBoris Brezillon  * struct nand_pos - NAND position object
63ed99f773SBoris Brezillon  * @target: the NAND target/die
64ed99f773SBoris Brezillon  * @lun: the LUN identifier
65ed99f773SBoris Brezillon  * @plane: the plane within the LUN
66ed99f773SBoris Brezillon  * @eraseblock: the eraseblock within the LUN
67ed99f773SBoris Brezillon  * @page: the page within the LUN
68ed99f773SBoris Brezillon  *
69ed99f773SBoris Brezillon  * These information are usually used by specific sub-layers to select the
70ed99f773SBoris Brezillon  * appropriate target/die and generate a row address to pass to the device.
71ed99f773SBoris Brezillon  */
72ed99f773SBoris Brezillon struct nand_pos {
73ed99f773SBoris Brezillon 	unsigned int target;
74ed99f773SBoris Brezillon 	unsigned int lun;
75ed99f773SBoris Brezillon 	unsigned int plane;
76ed99f773SBoris Brezillon 	unsigned int eraseblock;
77ed99f773SBoris Brezillon 	unsigned int page;
78ed99f773SBoris Brezillon };
79ed99f773SBoris Brezillon 
80ed99f773SBoris Brezillon /**
81ed99f773SBoris Brezillon  * struct nand_page_io_req - NAND I/O request object
82ed99f773SBoris Brezillon  * @pos: the position this I/O request is targeting
83ed99f773SBoris Brezillon  * @dataoffs: the offset within the page
84ed99f773SBoris Brezillon  * @datalen: number of data bytes to read from/write to this page
85ed99f773SBoris Brezillon  * @databuf: buffer to store data in or get data from
86ed99f773SBoris Brezillon  * @ooboffs: the OOB offset within the page
87ed99f773SBoris Brezillon  * @ooblen: the number of OOB bytes to read from/write to this page
88ed99f773SBoris Brezillon  * @oobbuf: buffer to store OOB data in or get OOB data from
8987a1a21dSBoris Brezillon  * @mode: one of the %MTD_OPS_XXX mode
90ed99f773SBoris Brezillon  *
91ed99f773SBoris Brezillon  * This object is used to pass per-page I/O requests to NAND sub-layers. This
92ed99f773SBoris Brezillon  * way all useful information are already formatted in a useful way and
93ed99f773SBoris Brezillon  * specific NAND layers can focus on translating these information into
94ed99f773SBoris Brezillon  * specific commands/operations.
95ed99f773SBoris Brezillon  */
96ed99f773SBoris Brezillon struct nand_page_io_req {
97ed99f773SBoris Brezillon 	struct nand_pos pos;
98ed99f773SBoris Brezillon 	unsigned int dataoffs;
99ed99f773SBoris Brezillon 	unsigned int datalen;
100ed99f773SBoris Brezillon 	union {
101ed99f773SBoris Brezillon 		const void *out;
102ed99f773SBoris Brezillon 		void *in;
103ed99f773SBoris Brezillon 	} databuf;
104ed99f773SBoris Brezillon 	unsigned int ooboffs;
105ed99f773SBoris Brezillon 	unsigned int ooblen;
106ed99f773SBoris Brezillon 	union {
107ed99f773SBoris Brezillon 		const void *out;
108ed99f773SBoris Brezillon 		void *in;
109ed99f773SBoris Brezillon 	} oobbuf;
11087a1a21dSBoris Brezillon 	int mode;
111ed99f773SBoris Brezillon };
112ed99f773SBoris Brezillon 
113ed99f773SBoris Brezillon /**
114ed99f773SBoris Brezillon  * struct nand_ecc_req - NAND ECC requirements
115ed99f773SBoris Brezillon  * @strength: ECC strength
116ed99f773SBoris Brezillon  * @step_size: ECC step/block size
117ed99f773SBoris Brezillon  */
118ed99f773SBoris Brezillon struct nand_ecc_req {
119ed99f773SBoris Brezillon 	unsigned int strength;
120ed99f773SBoris Brezillon 	unsigned int step_size;
121ed99f773SBoris Brezillon };
122ed99f773SBoris Brezillon 
123ed99f773SBoris Brezillon #define NAND_ECCREQ(str, stp) { .strength = (str), .step_size = (stp) }
124ed99f773SBoris Brezillon 
125*d55257eeSJon Lin /* nand_bbt option */
126*d55257eeSJon Lin #define NANDDEV_BBT_USE_FLASH		BIT(0)
127*d55257eeSJon Lin #define NANDDEV_BBT_SCANNED		BIT(1)
128*d55257eeSJon Lin 
129*d55257eeSJon Lin /* The maximum number of blocks to scan for a bbt */
130*d55257eeSJon Lin #define NANDDEV_BBT_SCAN_MAXBLOCKS	4
131*d55257eeSJon Lin 
132ed99f773SBoris Brezillon /**
133ed99f773SBoris Brezillon  * struct nand_bbt - bad block table object
134ed99f773SBoris Brezillon  * @cache: in memory BBT cache
135*d55257eeSJon Lin  * @option: the option of BBT
136*d55257eeSJon Lin  * @version: current memory BBT cache version
137ed99f773SBoris Brezillon  */
138ed99f773SBoris Brezillon struct nand_bbt {
139ed99f773SBoris Brezillon 	unsigned long *cache;
140*d55257eeSJon Lin 	unsigned int option;
141*d55257eeSJon Lin 	unsigned int version;
142ed99f773SBoris Brezillon };
143ed99f773SBoris Brezillon 
144ed99f773SBoris Brezillon struct nand_device;
145ed99f773SBoris Brezillon 
146ed99f773SBoris Brezillon /**
147ed99f773SBoris Brezillon  * struct nand_ops - NAND operations
148ed99f773SBoris Brezillon  * @erase: erase a specific block. No need to check if the block is bad before
149ed99f773SBoris Brezillon  *	   erasing, this has been taken care of by the generic NAND layer
150ed99f773SBoris Brezillon  * @markbad: mark a specific block bad. No need to check if the block is
151ed99f773SBoris Brezillon  *	     already marked bad, this has been taken care of by the generic
152ed99f773SBoris Brezillon  *	     NAND layer. This method should just write the BBM (Bad Block
153ed99f773SBoris Brezillon  *	     Marker) so that future call to struct_nand_ops->isbad() return
154ed99f773SBoris Brezillon  *	     true
155ed99f773SBoris Brezillon  * @isbad: check whether a block is bad or not. This method should just read
156ed99f773SBoris Brezillon  *	   the BBM and return whether the block is bad or not based on what it
157ed99f773SBoris Brezillon  *	   reads
158ed99f773SBoris Brezillon  *
159ed99f773SBoris Brezillon  * These are all low level operations that should be implemented by specialized
160ed99f773SBoris Brezillon  * NAND layers (SPI NAND, raw NAND, ...).
161ed99f773SBoris Brezillon  */
162ed99f773SBoris Brezillon struct nand_ops {
163ed99f773SBoris Brezillon 	int (*erase)(struct nand_device *nand, const struct nand_pos *pos);
164ed99f773SBoris Brezillon 	int (*markbad)(struct nand_device *nand, const struct nand_pos *pos);
165ed99f773SBoris Brezillon 	bool (*isbad)(struct nand_device *nand, const struct nand_pos *pos);
166ed99f773SBoris Brezillon };
167ed99f773SBoris Brezillon 
168ed99f773SBoris Brezillon /**
169ed99f773SBoris Brezillon  * struct nand_device - NAND device
170ed99f773SBoris Brezillon  * @mtd: MTD instance attached to the NAND device
171ed99f773SBoris Brezillon  * @memorg: memory layout
172ed99f773SBoris Brezillon  * @eccreq: ECC requirements
173ed99f773SBoris Brezillon  * @rowconv: position to row address converter
174ed99f773SBoris Brezillon  * @bbt: bad block table info
175ed99f773SBoris Brezillon  * @ops: NAND operations attached to the NAND device
176ed99f773SBoris Brezillon  *
177ed99f773SBoris Brezillon  * Generic NAND object. Specialized NAND layers (raw NAND, SPI NAND, OneNAND)
178ed99f773SBoris Brezillon  * should declare their own NAND object embedding a nand_device struct (that's
179ed99f773SBoris Brezillon  * how inheritance is done).
180ed99f773SBoris Brezillon  * struct_nand_device->memorg and struct_nand_device->eccreq should be filled
181ed99f773SBoris Brezillon  * at device detection time to reflect the NAND device
182ed99f773SBoris Brezillon  * capabilities/requirements. Once this is done nanddev_init() can be called.
183ed99f773SBoris Brezillon  * It will take care of converting NAND information into MTD ones, which means
184ed99f773SBoris Brezillon  * the specialized NAND layers should never manually tweak
185ed99f773SBoris Brezillon  * struct_nand_device->mtd except for the ->_read/write() hooks.
186ed99f773SBoris Brezillon  */
187ed99f773SBoris Brezillon struct nand_device {
188ed99f773SBoris Brezillon 	struct mtd_info *mtd;
189ed99f773SBoris Brezillon 	struct nand_memory_organization memorg;
190ed99f773SBoris Brezillon 	struct nand_ecc_req eccreq;
191ed99f773SBoris Brezillon 	struct nand_row_converter rowconv;
192ed99f773SBoris Brezillon 	struct nand_bbt bbt;
193ed99f773SBoris Brezillon 	const struct nand_ops *ops;
194ed99f773SBoris Brezillon };
195ed99f773SBoris Brezillon 
196ed99f773SBoris Brezillon /**
197ed99f773SBoris Brezillon  * struct nand_io_iter - NAND I/O iterator
198ed99f773SBoris Brezillon  * @req: current I/O request
199ed99f773SBoris Brezillon  * @oobbytes_per_page: maximum number of OOB bytes per page
200ed99f773SBoris Brezillon  * @dataleft: remaining number of data bytes to read/write
201ed99f773SBoris Brezillon  * @oobleft: remaining number of OOB bytes to read/write
202ed99f773SBoris Brezillon  *
203ed99f773SBoris Brezillon  * Can be used by specialized NAND layers to iterate over all pages covered
204ed99f773SBoris Brezillon  * by an MTD I/O request, which should greatly simplifies the boiler-plate
205ed99f773SBoris Brezillon  * code needed to read/write data from/to a NAND device.
206ed99f773SBoris Brezillon  */
207ed99f773SBoris Brezillon struct nand_io_iter {
208ed99f773SBoris Brezillon 	struct nand_page_io_req req;
209ed99f773SBoris Brezillon 	unsigned int oobbytes_per_page;
210ed99f773SBoris Brezillon 	unsigned int dataleft;
211ed99f773SBoris Brezillon 	unsigned int oobleft;
212ed99f773SBoris Brezillon };
213ed99f773SBoris Brezillon 
214ed99f773SBoris Brezillon /**
215ed99f773SBoris Brezillon  * mtd_to_nanddev() - Get the NAND device attached to the MTD instance
216ed99f773SBoris Brezillon  * @mtd: MTD instance
217ed99f773SBoris Brezillon  *
218ed99f773SBoris Brezillon  * Return: the NAND device embedding @mtd.
219ed99f773SBoris Brezillon  */
mtd_to_nanddev(struct mtd_info * mtd)220ed99f773SBoris Brezillon static inline struct nand_device *mtd_to_nanddev(struct mtd_info *mtd)
221ed99f773SBoris Brezillon {
222ed99f773SBoris Brezillon 	return mtd->priv;
223ed99f773SBoris Brezillon }
224ed99f773SBoris Brezillon 
225ed99f773SBoris Brezillon /**
226ed99f773SBoris Brezillon  * nanddev_to_mtd() - Get the MTD device attached to a NAND device
227ed99f773SBoris Brezillon  * @nand: NAND device
228ed99f773SBoris Brezillon  *
229ed99f773SBoris Brezillon  * Return: the MTD device embedded in @nand.
230ed99f773SBoris Brezillon  */
nanddev_to_mtd(struct nand_device * nand)231ed99f773SBoris Brezillon static inline struct mtd_info *nanddev_to_mtd(struct nand_device *nand)
232ed99f773SBoris Brezillon {
233ed99f773SBoris Brezillon 	return nand->mtd;
234ed99f773SBoris Brezillon }
235ed99f773SBoris Brezillon 
236ed99f773SBoris Brezillon /*
237ed99f773SBoris Brezillon  * nanddev_bits_per_cell() - Get the number of bits per cell
238ed99f773SBoris Brezillon  * @nand: NAND device
239ed99f773SBoris Brezillon  *
240ed99f773SBoris Brezillon  * Return: the number of bits per cell.
241ed99f773SBoris Brezillon  */
nanddev_bits_per_cell(const struct nand_device * nand)242ed99f773SBoris Brezillon static inline unsigned int nanddev_bits_per_cell(const struct nand_device *nand)
243ed99f773SBoris Brezillon {
244ed99f773SBoris Brezillon 	return nand->memorg.bits_per_cell;
245ed99f773SBoris Brezillon }
246ed99f773SBoris Brezillon 
247ed99f773SBoris Brezillon /**
248ed99f773SBoris Brezillon  * nanddev_page_size() - Get NAND page size
249ed99f773SBoris Brezillon  * @nand: NAND device
250ed99f773SBoris Brezillon  *
251ed99f773SBoris Brezillon  * Return: the page size.
252ed99f773SBoris Brezillon  */
nanddev_page_size(const struct nand_device * nand)253ed99f773SBoris Brezillon static inline size_t nanddev_page_size(const struct nand_device *nand)
254ed99f773SBoris Brezillon {
255ed99f773SBoris Brezillon 	return nand->memorg.pagesize;
256ed99f773SBoris Brezillon }
257ed99f773SBoris Brezillon 
258ed99f773SBoris Brezillon /**
259ed99f773SBoris Brezillon  * nanddev_per_page_oobsize() - Get NAND OOB size
260ed99f773SBoris Brezillon  * @nand: NAND device
261ed99f773SBoris Brezillon  *
262ed99f773SBoris Brezillon  * Return: the OOB size.
263ed99f773SBoris Brezillon  */
264ed99f773SBoris Brezillon static inline unsigned int
nanddev_per_page_oobsize(const struct nand_device * nand)265ed99f773SBoris Brezillon nanddev_per_page_oobsize(const struct nand_device *nand)
266ed99f773SBoris Brezillon {
267ed99f773SBoris Brezillon 	return nand->memorg.oobsize;
268ed99f773SBoris Brezillon }
269ed99f773SBoris Brezillon 
270ed99f773SBoris Brezillon /**
271ed99f773SBoris Brezillon  * nanddev_pages_per_eraseblock() - Get the number of pages per eraseblock
272ed99f773SBoris Brezillon  * @nand: NAND device
273ed99f773SBoris Brezillon  *
274ed99f773SBoris Brezillon  * Return: the number of pages per eraseblock.
275ed99f773SBoris Brezillon  */
276ed99f773SBoris Brezillon static inline unsigned int
nanddev_pages_per_eraseblock(const struct nand_device * nand)277ed99f773SBoris Brezillon nanddev_pages_per_eraseblock(const struct nand_device *nand)
278ed99f773SBoris Brezillon {
279ed99f773SBoris Brezillon 	return nand->memorg.pages_per_eraseblock;
280ed99f773SBoris Brezillon }
281ed99f773SBoris Brezillon 
282ed99f773SBoris Brezillon /**
283ed99f773SBoris Brezillon  * nanddev_per_page_oobsize() - Get NAND erase block size
284ed99f773SBoris Brezillon  * @nand: NAND device
285ed99f773SBoris Brezillon  *
286ed99f773SBoris Brezillon  * Return: the eraseblock size.
287ed99f773SBoris Brezillon  */
nanddev_eraseblock_size(const struct nand_device * nand)288ed99f773SBoris Brezillon static inline size_t nanddev_eraseblock_size(const struct nand_device *nand)
289ed99f773SBoris Brezillon {
290ed99f773SBoris Brezillon 	return nand->memorg.pagesize * nand->memorg.pages_per_eraseblock;
291ed99f773SBoris Brezillon }
292ed99f773SBoris Brezillon 
293ed99f773SBoris Brezillon /**
294ed99f773SBoris Brezillon  * nanddev_eraseblocks_per_lun() - Get the number of eraseblocks per LUN
295ed99f773SBoris Brezillon  * @nand: NAND device
296ed99f773SBoris Brezillon  *
297ed99f773SBoris Brezillon  * Return: the number of eraseblocks per LUN.
298ed99f773SBoris Brezillon  */
299ed99f773SBoris Brezillon static inline unsigned int
nanddev_eraseblocks_per_lun(const struct nand_device * nand)300ed99f773SBoris Brezillon nanddev_eraseblocks_per_lun(const struct nand_device *nand)
301ed99f773SBoris Brezillon {
302ed99f773SBoris Brezillon 	return nand->memorg.eraseblocks_per_lun;
303ed99f773SBoris Brezillon }
304ed99f773SBoris Brezillon 
305ed99f773SBoris Brezillon /**
306ed99f773SBoris Brezillon  * nanddev_target_size() - Get the total size provided by a single target/die
307ed99f773SBoris Brezillon  * @nand: NAND device
308ed99f773SBoris Brezillon  *
309ed99f773SBoris Brezillon  * Return: the total size exposed by a single target/die in bytes.
310ed99f773SBoris Brezillon  */
nanddev_target_size(const struct nand_device * nand)311ed99f773SBoris Brezillon static inline u64 nanddev_target_size(const struct nand_device *nand)
312ed99f773SBoris Brezillon {
313ed99f773SBoris Brezillon 	return (u64)nand->memorg.luns_per_target *
314ed99f773SBoris Brezillon 	       nand->memorg.eraseblocks_per_lun *
315ed99f773SBoris Brezillon 	       nand->memorg.pages_per_eraseblock *
316ed99f773SBoris Brezillon 	       nand->memorg.pagesize;
317ed99f773SBoris Brezillon }
318ed99f773SBoris Brezillon 
319ed99f773SBoris Brezillon /**
320ed99f773SBoris Brezillon  * nanddev_ntarget() - Get the total of targets
321ed99f773SBoris Brezillon  * @nand: NAND device
322ed99f773SBoris Brezillon  *
323ed99f773SBoris Brezillon  * Return: the number of targets/dies exposed by @nand.
324ed99f773SBoris Brezillon  */
nanddev_ntargets(const struct nand_device * nand)325ed99f773SBoris Brezillon static inline unsigned int nanddev_ntargets(const struct nand_device *nand)
326ed99f773SBoris Brezillon {
327ed99f773SBoris Brezillon 	return nand->memorg.ntargets;
328ed99f773SBoris Brezillon }
329ed99f773SBoris Brezillon 
330ed99f773SBoris Brezillon /**
331ed99f773SBoris Brezillon  * nanddev_neraseblocks() - Get the total number of erasablocks
332ed99f773SBoris Brezillon  * @nand: NAND device
333ed99f773SBoris Brezillon  *
334ed99f773SBoris Brezillon  * Return: the total number of eraseblocks exposed by @nand.
335ed99f773SBoris Brezillon  */
nanddev_neraseblocks(const struct nand_device * nand)336ed99f773SBoris Brezillon static inline unsigned int nanddev_neraseblocks(const struct nand_device *nand)
337ed99f773SBoris Brezillon {
33885c83705SJon Lin 	return nand->memorg.ntargets * nand->memorg.luns_per_target *
33985c83705SJon Lin 	       nand->memorg.eraseblocks_per_lun;
340ed99f773SBoris Brezillon }
341ed99f773SBoris Brezillon 
342ed99f773SBoris Brezillon /**
343ed99f773SBoris Brezillon  * nanddev_size() - Get NAND size
344ed99f773SBoris Brezillon  * @nand: NAND device
345ed99f773SBoris Brezillon  *
346ed99f773SBoris Brezillon  * Return: the total size (in bytes) exposed by @nand.
347ed99f773SBoris Brezillon  */
nanddev_size(const struct nand_device * nand)348ed99f773SBoris Brezillon static inline u64 nanddev_size(const struct nand_device *nand)
349ed99f773SBoris Brezillon {
350ed99f773SBoris Brezillon 	return nanddev_target_size(nand) * nanddev_ntargets(nand);
351ed99f773SBoris Brezillon }
352ed99f773SBoris Brezillon 
353ed99f773SBoris Brezillon /**
354ed99f773SBoris Brezillon  * nanddev_get_memorg() - Extract memory organization info from a NAND device
355ed99f773SBoris Brezillon  * @nand: NAND device
356ed99f773SBoris Brezillon  *
357ed99f773SBoris Brezillon  * This can be used by the upper layer to fill the memorg info before calling
358ed99f773SBoris Brezillon  * nanddev_init().
359ed99f773SBoris Brezillon  *
360ed99f773SBoris Brezillon  * Return: the memorg object embedded in the NAND device.
361ed99f773SBoris Brezillon  */
362ed99f773SBoris Brezillon static inline struct nand_memory_organization *
nanddev_get_memorg(struct nand_device * nand)363ed99f773SBoris Brezillon nanddev_get_memorg(struct nand_device *nand)
364ed99f773SBoris Brezillon {
365ed99f773SBoris Brezillon 	return &nand->memorg;
366ed99f773SBoris Brezillon }
367ed99f773SBoris Brezillon 
368ed99f773SBoris Brezillon int nanddev_init(struct nand_device *nand, const struct nand_ops *ops,
369ed99f773SBoris Brezillon 		 struct module *owner);
370ed99f773SBoris Brezillon void nanddev_cleanup(struct nand_device *nand);
371ed99f773SBoris Brezillon 
372ed99f773SBoris Brezillon /**
373ed99f773SBoris Brezillon  * nanddev_register() - Register a NAND device
374ed99f773SBoris Brezillon  * @nand: NAND device
375ed99f773SBoris Brezillon  *
376ed99f773SBoris Brezillon  * Register a NAND device.
377ed99f773SBoris Brezillon  * This function is just a wrapper around mtd_device_register()
378ed99f773SBoris Brezillon  * registering the MTD device embedded in @nand.
379ed99f773SBoris Brezillon  *
380ed99f773SBoris Brezillon  * Return: 0 in case of success, a negative error code otherwise.
381ed99f773SBoris Brezillon  */
nanddev_register(struct nand_device * nand)382ed99f773SBoris Brezillon static inline int nanddev_register(struct nand_device *nand)
383ed99f773SBoris Brezillon {
384ed99f773SBoris Brezillon 	return mtd_device_register(nand->mtd, NULL, 0);
385ed99f773SBoris Brezillon }
386ed99f773SBoris Brezillon 
387ed99f773SBoris Brezillon /**
388ed99f773SBoris Brezillon  * nanddev_unregister() - Unregister a NAND device
389ed99f773SBoris Brezillon  * @nand: NAND device
390ed99f773SBoris Brezillon  *
391ed99f773SBoris Brezillon  * Unregister a NAND device.
392ed99f773SBoris Brezillon  * This function is just a wrapper around mtd_device_unregister()
393ed99f773SBoris Brezillon  * unregistering the MTD device embedded in @nand.
394ed99f773SBoris Brezillon  *
395ed99f773SBoris Brezillon  * Return: 0 in case of success, a negative error code otherwise.
396ed99f773SBoris Brezillon  */
nanddev_unregister(struct nand_device * nand)397ed99f773SBoris Brezillon static inline int nanddev_unregister(struct nand_device *nand)
398ed99f773SBoris Brezillon {
399ed99f773SBoris Brezillon 	return mtd_device_unregister(nand->mtd);
400ed99f773SBoris Brezillon }
401ed99f773SBoris Brezillon 
402ed99f773SBoris Brezillon /**
403ed99f773SBoris Brezillon  * nanddev_set_of_node() - Attach a DT node to a NAND device
404ed99f773SBoris Brezillon  * @nand: NAND device
405ed99f773SBoris Brezillon  * @np: DT node
406ed99f773SBoris Brezillon  *
407ed99f773SBoris Brezillon  * Attach a DT node to a NAND device.
408ed99f773SBoris Brezillon  */
nanddev_set_of_node(struct nand_device * nand,const struct device_node * np)409ed99f773SBoris Brezillon static inline void nanddev_set_of_node(struct nand_device *nand,
410ed99f773SBoris Brezillon 				       const struct device_node *np)
411ed99f773SBoris Brezillon {
412ed99f773SBoris Brezillon 	mtd_set_of_node(nand->mtd, np);
413ed99f773SBoris Brezillon }
414ed99f773SBoris Brezillon 
415ed99f773SBoris Brezillon /**
416ed99f773SBoris Brezillon  * nanddev_get_of_node() - Retrieve the DT node attached to a NAND device
417ed99f773SBoris Brezillon  * @nand: NAND device
418ed99f773SBoris Brezillon  *
419ed99f773SBoris Brezillon  * Return: the DT node attached to @nand.
420ed99f773SBoris Brezillon  */
nanddev_get_of_node(struct nand_device * nand)421ed99f773SBoris Brezillon static inline const struct device_node *nanddev_get_of_node(struct nand_device *nand)
422ed99f773SBoris Brezillon {
423ed99f773SBoris Brezillon 	return mtd_get_of_node(nand->mtd);
424ed99f773SBoris Brezillon }
425ed99f773SBoris Brezillon 
426ed99f773SBoris Brezillon /**
427ed99f773SBoris Brezillon  * nanddev_offs_to_pos() - Convert an absolute NAND offset into a NAND position
428ed99f773SBoris Brezillon  * @nand: NAND device
429ed99f773SBoris Brezillon  * @offs: absolute NAND offset (usually passed by the MTD layer)
430ed99f773SBoris Brezillon  * @pos: a NAND position object to fill in
431ed99f773SBoris Brezillon  *
432ed99f773SBoris Brezillon  * Converts @offs into a nand_pos representation.
433ed99f773SBoris Brezillon  *
434ed99f773SBoris Brezillon  * Return: the offset within the NAND page pointed by @pos.
435ed99f773SBoris Brezillon  */
nanddev_offs_to_pos(struct nand_device * nand,loff_t offs,struct nand_pos * pos)436ed99f773SBoris Brezillon static inline unsigned int nanddev_offs_to_pos(struct nand_device *nand,
437ed99f773SBoris Brezillon 					       loff_t offs,
438ed99f773SBoris Brezillon 					       struct nand_pos *pos)
439ed99f773SBoris Brezillon {
440ed99f773SBoris Brezillon 	unsigned int pageoffs;
441ed99f773SBoris Brezillon 	u64 tmp = offs;
442ed99f773SBoris Brezillon 
443ed99f773SBoris Brezillon 	pageoffs = do_div(tmp, nand->memorg.pagesize);
444ed99f773SBoris Brezillon 	pos->page = do_div(tmp, nand->memorg.pages_per_eraseblock);
445ed99f773SBoris Brezillon 	pos->eraseblock = do_div(tmp, nand->memorg.eraseblocks_per_lun);
446ed99f773SBoris Brezillon 	pos->plane = pos->eraseblock % nand->memorg.planes_per_lun;
447ed99f773SBoris Brezillon 	pos->lun = do_div(tmp, nand->memorg.luns_per_target);
448ed99f773SBoris Brezillon 	pos->target = tmp;
449ed99f773SBoris Brezillon 
450ed99f773SBoris Brezillon 	return pageoffs;
451ed99f773SBoris Brezillon }
452ed99f773SBoris Brezillon 
453ed99f773SBoris Brezillon /**
454ed99f773SBoris Brezillon  * nanddev_pos_cmp() - Compare two NAND positions
455ed99f773SBoris Brezillon  * @a: First NAND position
456ed99f773SBoris Brezillon  * @b: Second NAND position
457ed99f773SBoris Brezillon  *
458ed99f773SBoris Brezillon  * Compares two NAND positions.
459ed99f773SBoris Brezillon  *
460ed99f773SBoris Brezillon  * Return: -1 if @a < @b, 0 if @a == @b and 1 if @a > @b.
461ed99f773SBoris Brezillon  */
nanddev_pos_cmp(const struct nand_pos * a,const struct nand_pos * b)462ed99f773SBoris Brezillon static inline int nanddev_pos_cmp(const struct nand_pos *a,
463ed99f773SBoris Brezillon 				  const struct nand_pos *b)
464ed99f773SBoris Brezillon {
465ed99f773SBoris Brezillon 	if (a->target != b->target)
466ed99f773SBoris Brezillon 		return a->target < b->target ? -1 : 1;
467ed99f773SBoris Brezillon 
468ed99f773SBoris Brezillon 	if (a->lun != b->lun)
469ed99f773SBoris Brezillon 		return a->lun < b->lun ? -1 : 1;
470ed99f773SBoris Brezillon 
471ed99f773SBoris Brezillon 	if (a->eraseblock != b->eraseblock)
472ed99f773SBoris Brezillon 		return a->eraseblock < b->eraseblock ? -1 : 1;
473ed99f773SBoris Brezillon 
474ed99f773SBoris Brezillon 	if (a->page != b->page)
475ed99f773SBoris Brezillon 		return a->page < b->page ? -1 : 1;
476ed99f773SBoris Brezillon 
477ed99f773SBoris Brezillon 	return 0;
478ed99f773SBoris Brezillon }
479ed99f773SBoris Brezillon 
480ed99f773SBoris Brezillon /**
481ed99f773SBoris Brezillon  * nanddev_pos_to_offs() - Convert a NAND position into an absolute offset
482ed99f773SBoris Brezillon  * @nand: NAND device
483ed99f773SBoris Brezillon  * @pos: the NAND position to convert
484ed99f773SBoris Brezillon  *
485ed99f773SBoris Brezillon  * Converts @pos NAND position into an absolute offset.
486ed99f773SBoris Brezillon  *
487ed99f773SBoris Brezillon  * Return: the absolute offset. Note that @pos points to the beginning of a
488ed99f773SBoris Brezillon  *	   page, if one wants to point to a specific offset within this page
489ed99f773SBoris Brezillon  *	   the returned offset has to be adjusted manually.
490ed99f773SBoris Brezillon  */
nanddev_pos_to_offs(struct nand_device * nand,const struct nand_pos * pos)491ed99f773SBoris Brezillon static inline loff_t nanddev_pos_to_offs(struct nand_device *nand,
492ed99f773SBoris Brezillon 					 const struct nand_pos *pos)
493ed99f773SBoris Brezillon {
494ed99f773SBoris Brezillon 	unsigned int npages;
495ed99f773SBoris Brezillon 
496ed99f773SBoris Brezillon 	npages = pos->page +
497ed99f773SBoris Brezillon 		 ((pos->eraseblock +
498ed99f773SBoris Brezillon 		   (pos->lun +
499ed99f773SBoris Brezillon 		    (pos->target * nand->memorg.luns_per_target)) *
500ed99f773SBoris Brezillon 		   nand->memorg.eraseblocks_per_lun) *
501ed99f773SBoris Brezillon 		  nand->memorg.pages_per_eraseblock);
502ed99f773SBoris Brezillon 
503ed99f773SBoris Brezillon 	return (loff_t)npages * nand->memorg.pagesize;
504ed99f773SBoris Brezillon }
505ed99f773SBoris Brezillon 
506ed99f773SBoris Brezillon /**
507ed99f773SBoris Brezillon  * nanddev_pos_to_row() - Extract a row address from a NAND position
508ed99f773SBoris Brezillon  * @nand: NAND device
509ed99f773SBoris Brezillon  * @pos: the position to convert
510ed99f773SBoris Brezillon  *
511ed99f773SBoris Brezillon  * Converts a NAND position into a row address that can then be passed to the
512ed99f773SBoris Brezillon  * device.
513ed99f773SBoris Brezillon  *
514ed99f773SBoris Brezillon  * Return: the row address extracted from @pos.
515ed99f773SBoris Brezillon  */
nanddev_pos_to_row(struct nand_device * nand,const struct nand_pos * pos)516ed99f773SBoris Brezillon static inline unsigned int nanddev_pos_to_row(struct nand_device *nand,
517ed99f773SBoris Brezillon 					      const struct nand_pos *pos)
518ed99f773SBoris Brezillon {
519ed99f773SBoris Brezillon 	return (pos->lun << nand->rowconv.lun_addr_shift) |
520ed99f773SBoris Brezillon 	       (pos->eraseblock << nand->rowconv.eraseblock_addr_shift) |
521ed99f773SBoris Brezillon 	       pos->page;
522ed99f773SBoris Brezillon }
523ed99f773SBoris Brezillon 
524ed99f773SBoris Brezillon /**
525ed99f773SBoris Brezillon  * nanddev_pos_next_target() - Move a position to the next target/die
526ed99f773SBoris Brezillon  * @nand: NAND device
527ed99f773SBoris Brezillon  * @pos: the position to update
528ed99f773SBoris Brezillon  *
529ed99f773SBoris Brezillon  * Updates @pos to point to the start of the next target/die. Useful when you
530ed99f773SBoris Brezillon  * want to iterate over all targets/dies of a NAND device.
531ed99f773SBoris Brezillon  */
nanddev_pos_next_target(struct nand_device * nand,struct nand_pos * pos)532ed99f773SBoris Brezillon static inline void nanddev_pos_next_target(struct nand_device *nand,
533ed99f773SBoris Brezillon 					   struct nand_pos *pos)
534ed99f773SBoris Brezillon {
535ed99f773SBoris Brezillon 	pos->page = 0;
536ed99f773SBoris Brezillon 	pos->plane = 0;
537ed99f773SBoris Brezillon 	pos->eraseblock = 0;
538ed99f773SBoris Brezillon 	pos->lun = 0;
539ed99f773SBoris Brezillon 	pos->target++;
540ed99f773SBoris Brezillon }
541ed99f773SBoris Brezillon 
542ed99f773SBoris Brezillon /**
543ed99f773SBoris Brezillon  * nanddev_pos_next_lun() - Move a position to the next LUN
544ed99f773SBoris Brezillon  * @nand: NAND device
545ed99f773SBoris Brezillon  * @pos: the position to update
546ed99f773SBoris Brezillon  *
547ed99f773SBoris Brezillon  * Updates @pos to point to the start of the next LUN. Useful when you want to
548ed99f773SBoris Brezillon  * iterate over all LUNs of a NAND device.
549ed99f773SBoris Brezillon  */
nanddev_pos_next_lun(struct nand_device * nand,struct nand_pos * pos)550ed99f773SBoris Brezillon static inline void nanddev_pos_next_lun(struct nand_device *nand,
551ed99f773SBoris Brezillon 					struct nand_pos *pos)
552ed99f773SBoris Brezillon {
553ed99f773SBoris Brezillon 	if (pos->lun >= nand->memorg.luns_per_target - 1)
554ed99f773SBoris Brezillon 		return nanddev_pos_next_target(nand, pos);
555ed99f773SBoris Brezillon 
556ed99f773SBoris Brezillon 	pos->lun++;
557ed99f773SBoris Brezillon 	pos->page = 0;
558ed99f773SBoris Brezillon 	pos->plane = 0;
559ed99f773SBoris Brezillon 	pos->eraseblock = 0;
560ed99f773SBoris Brezillon }
561ed99f773SBoris Brezillon 
562ed99f773SBoris Brezillon /**
563ed99f773SBoris Brezillon  * nanddev_pos_next_eraseblock() - Move a position to the next eraseblock
564ed99f773SBoris Brezillon  * @nand: NAND device
565ed99f773SBoris Brezillon  * @pos: the position to update
566ed99f773SBoris Brezillon  *
567ed99f773SBoris Brezillon  * Updates @pos to point to the start of the next eraseblock. Useful when you
568ed99f773SBoris Brezillon  * want to iterate over all eraseblocks of a NAND device.
569ed99f773SBoris Brezillon  */
nanddev_pos_next_eraseblock(struct nand_device * nand,struct nand_pos * pos)570ed99f773SBoris Brezillon static inline void nanddev_pos_next_eraseblock(struct nand_device *nand,
571ed99f773SBoris Brezillon 					       struct nand_pos *pos)
572ed99f773SBoris Brezillon {
573ed99f773SBoris Brezillon 	if (pos->eraseblock >= nand->memorg.eraseblocks_per_lun - 1)
574ed99f773SBoris Brezillon 		return nanddev_pos_next_lun(nand, pos);
575ed99f773SBoris Brezillon 
576ed99f773SBoris Brezillon 	pos->eraseblock++;
577ed99f773SBoris Brezillon 	pos->page = 0;
578ed99f773SBoris Brezillon 	pos->plane = pos->eraseblock % nand->memorg.planes_per_lun;
579ed99f773SBoris Brezillon }
580ed99f773SBoris Brezillon 
581ed99f773SBoris Brezillon /**
582ed99f773SBoris Brezillon  * nanddev_pos_next_eraseblock() - Move a position to the next page
583ed99f773SBoris Brezillon  * @nand: NAND device
584ed99f773SBoris Brezillon  * @pos: the position to update
585ed99f773SBoris Brezillon  *
586ed99f773SBoris Brezillon  * Updates @pos to point to the start of the next page. Useful when you want to
587ed99f773SBoris Brezillon  * iterate over all pages of a NAND device.
588ed99f773SBoris Brezillon  */
nanddev_pos_next_page(struct nand_device * nand,struct nand_pos * pos)589ed99f773SBoris Brezillon static inline void nanddev_pos_next_page(struct nand_device *nand,
590ed99f773SBoris Brezillon 					 struct nand_pos *pos)
591ed99f773SBoris Brezillon {
592ed99f773SBoris Brezillon 	if (pos->page >= nand->memorg.pages_per_eraseblock - 1)
593ed99f773SBoris Brezillon 		return nanddev_pos_next_eraseblock(nand, pos);
594ed99f773SBoris Brezillon 
595ed99f773SBoris Brezillon 	pos->page++;
596ed99f773SBoris Brezillon }
597ed99f773SBoris Brezillon 
598ed99f773SBoris Brezillon /**
599ed99f773SBoris Brezillon  * nand_io_iter_init - Initialize a NAND I/O iterator
600ed99f773SBoris Brezillon  * @nand: NAND device
601ed99f773SBoris Brezillon  * @offs: absolute offset
602ed99f773SBoris Brezillon  * @req: MTD request
603ed99f773SBoris Brezillon  * @iter: NAND I/O iterator
604ed99f773SBoris Brezillon  *
605ed99f773SBoris Brezillon  * Initializes a NAND iterator based on the information passed by the MTD
606ed99f773SBoris Brezillon  * layer.
607ed99f773SBoris Brezillon  */
nanddev_io_iter_init(struct nand_device * nand,loff_t offs,struct mtd_oob_ops * req,struct nand_io_iter * iter)608ed99f773SBoris Brezillon static inline void nanddev_io_iter_init(struct nand_device *nand,
609ed99f773SBoris Brezillon 					loff_t offs, struct mtd_oob_ops *req,
610ed99f773SBoris Brezillon 					struct nand_io_iter *iter)
611ed99f773SBoris Brezillon {
612ed99f773SBoris Brezillon 	struct mtd_info *mtd = nanddev_to_mtd(nand);
613ed99f773SBoris Brezillon 
61487a1a21dSBoris Brezillon 	iter->req.mode = req->mode;
615ed99f773SBoris Brezillon 	iter->req.dataoffs = nanddev_offs_to_pos(nand, offs, &iter->req.pos);
616ed99f773SBoris Brezillon 	iter->req.ooboffs = req->ooboffs;
617ed99f773SBoris Brezillon 	iter->oobbytes_per_page = mtd_oobavail(mtd, req);
618ed99f773SBoris Brezillon 	iter->dataleft = req->len;
619ed99f773SBoris Brezillon 	iter->oobleft = req->ooblen;
620ed99f773SBoris Brezillon 	iter->req.databuf.in = req->datbuf;
621ed99f773SBoris Brezillon 	iter->req.datalen = min_t(unsigned int,
622ed99f773SBoris Brezillon 				  nand->memorg.pagesize - iter->req.dataoffs,
623ed99f773SBoris Brezillon 				  iter->dataleft);
624ed99f773SBoris Brezillon 	iter->req.oobbuf.in = req->oobbuf;
625ed99f773SBoris Brezillon 	iter->req.ooblen = min_t(unsigned int,
626ed99f773SBoris Brezillon 				 iter->oobbytes_per_page - iter->req.ooboffs,
627ed99f773SBoris Brezillon 				 iter->oobleft);
628ed99f773SBoris Brezillon }
629ed99f773SBoris Brezillon 
630ed99f773SBoris Brezillon /**
631ed99f773SBoris Brezillon  * nand_io_iter_next_page - Move to the next page
632ed99f773SBoris Brezillon  * @nand: NAND device
633ed99f773SBoris Brezillon  * @iter: NAND I/O iterator
634ed99f773SBoris Brezillon  *
635ed99f773SBoris Brezillon  * Updates the @iter to point to the next page.
636ed99f773SBoris Brezillon  */
nanddev_io_iter_next_page(struct nand_device * nand,struct nand_io_iter * iter)637ed99f773SBoris Brezillon static inline void nanddev_io_iter_next_page(struct nand_device *nand,
638ed99f773SBoris Brezillon 					     struct nand_io_iter *iter)
639ed99f773SBoris Brezillon {
640ed99f773SBoris Brezillon 	nanddev_pos_next_page(nand, &iter->req.pos);
641ed99f773SBoris Brezillon 	iter->dataleft -= iter->req.datalen;
642ed99f773SBoris Brezillon 	iter->req.databuf.in += iter->req.datalen;
643ed99f773SBoris Brezillon 	iter->oobleft -= iter->req.ooblen;
644ed99f773SBoris Brezillon 	iter->req.oobbuf.in += iter->req.ooblen;
645ed99f773SBoris Brezillon 	iter->req.dataoffs = 0;
646ed99f773SBoris Brezillon 	iter->req.ooboffs = 0;
647ed99f773SBoris Brezillon 	iter->req.datalen = min_t(unsigned int, nand->memorg.pagesize,
648ed99f773SBoris Brezillon 				  iter->dataleft);
649ed99f773SBoris Brezillon 	iter->req.ooblen = min_t(unsigned int, iter->oobbytes_per_page,
650ed99f773SBoris Brezillon 				 iter->oobleft);
651ed99f773SBoris Brezillon }
652ed99f773SBoris Brezillon 
653ed99f773SBoris Brezillon /**
654ed99f773SBoris Brezillon  * nand_io_iter_end - Should end iteration or not
655ed99f773SBoris Brezillon  * @nand: NAND device
656ed99f773SBoris Brezillon  * @iter: NAND I/O iterator
657ed99f773SBoris Brezillon  *
658ed99f773SBoris Brezillon  * Check whether @iter has reached the end of the NAND portion it was asked to
659ed99f773SBoris Brezillon  * iterate on or not.
660ed99f773SBoris Brezillon  *
661ed99f773SBoris Brezillon  * Return: true if @iter has reached the end of the iteration request, false
662ed99f773SBoris Brezillon  *	   otherwise.
663ed99f773SBoris Brezillon  */
nanddev_io_iter_end(struct nand_device * nand,const struct nand_io_iter * iter)664ed99f773SBoris Brezillon static inline bool nanddev_io_iter_end(struct nand_device *nand,
665ed99f773SBoris Brezillon 				       const struct nand_io_iter *iter)
666ed99f773SBoris Brezillon {
667ed99f773SBoris Brezillon 	if (iter->dataleft || iter->oobleft)
668ed99f773SBoris Brezillon 		return false;
669ed99f773SBoris Brezillon 
670ed99f773SBoris Brezillon 	return true;
671ed99f773SBoris Brezillon }
672ed99f773SBoris Brezillon 
673ed99f773SBoris Brezillon /**
674ed99f773SBoris Brezillon  * nand_io_for_each_page - Iterate over all NAND pages contained in an MTD I/O
675ed99f773SBoris Brezillon  *			   request
676ed99f773SBoris Brezillon  * @nand: NAND device
677ed99f773SBoris Brezillon  * @start: start address to read/write from
678ed99f773SBoris Brezillon  * @req: MTD I/O request
679ed99f773SBoris Brezillon  * @iter: NAND I/O iterator
680ed99f773SBoris Brezillon  *
681ed99f773SBoris Brezillon  * Should be used for iterate over pages that are contained in an MTD request.
682ed99f773SBoris Brezillon  */
683ed99f773SBoris Brezillon #define nanddev_io_for_each_page(nand, start, req, iter)		\
684ed99f773SBoris Brezillon 	for (nanddev_io_iter_init(nand, start, req, iter);		\
685ed99f773SBoris Brezillon 	     !nanddev_io_iter_end(nand, iter);				\
686ed99f773SBoris Brezillon 	     nanddev_io_iter_next_page(nand, iter))
687ed99f773SBoris Brezillon 
688ed99f773SBoris Brezillon bool nanddev_isbad(struct nand_device *nand, const struct nand_pos *pos);
689ed99f773SBoris Brezillon bool nanddev_isreserved(struct nand_device *nand, const struct nand_pos *pos);
690ed99f773SBoris Brezillon int nanddev_erase(struct nand_device *nand, const struct nand_pos *pos);
691ed99f773SBoris Brezillon int nanddev_markbad(struct nand_device *nand, const struct nand_pos *pos);
692ed99f773SBoris Brezillon 
693ed99f773SBoris Brezillon /* BBT related functions */
694ed99f773SBoris Brezillon enum nand_bbt_block_status {
695ed99f773SBoris Brezillon 	NAND_BBT_BLOCK_STATUS_UNKNOWN,
696ed99f773SBoris Brezillon 	NAND_BBT_BLOCK_GOOD,
697ed99f773SBoris Brezillon 	NAND_BBT_BLOCK_WORN,
698ed99f773SBoris Brezillon 	NAND_BBT_BLOCK_RESERVED,
699ed99f773SBoris Brezillon 	NAND_BBT_BLOCK_FACTORY_BAD,
700ed99f773SBoris Brezillon 	NAND_BBT_BLOCK_NUM_STATUS,
701ed99f773SBoris Brezillon };
702ed99f773SBoris Brezillon 
703ed99f773SBoris Brezillon int nanddev_bbt_init(struct nand_device *nand);
704ed99f773SBoris Brezillon void nanddev_bbt_cleanup(struct nand_device *nand);
705ed99f773SBoris Brezillon int nanddev_bbt_update(struct nand_device *nand);
706ed99f773SBoris Brezillon int nanddev_bbt_get_block_status(const struct nand_device *nand,
707ed99f773SBoris Brezillon 				 unsigned int entry);
708ed99f773SBoris Brezillon int nanddev_bbt_set_block_status(struct nand_device *nand, unsigned int entry,
709ed99f773SBoris Brezillon 				 enum nand_bbt_block_status status);
710ed99f773SBoris Brezillon int nanddev_bbt_markbad(struct nand_device *nand, unsigned int block);
711ed99f773SBoris Brezillon 
712ed99f773SBoris Brezillon /**
713ed99f773SBoris Brezillon  * nanddev_bbt_pos_to_entry() - Convert a NAND position into a BBT entry
714ed99f773SBoris Brezillon  * @nand: NAND device
715ed99f773SBoris Brezillon  * @pos: the NAND position we want to get BBT entry for
716ed99f773SBoris Brezillon  *
717ed99f773SBoris Brezillon  * Return the BBT entry used to store information about the eraseblock pointed
718ed99f773SBoris Brezillon  * by @pos.
719ed99f773SBoris Brezillon  *
720ed99f773SBoris Brezillon  * Return: the BBT entry storing information about eraseblock pointed by @pos.
721ed99f773SBoris Brezillon  */
nanddev_bbt_pos_to_entry(struct nand_device * nand,const struct nand_pos * pos)722ed99f773SBoris Brezillon static inline unsigned int nanddev_bbt_pos_to_entry(struct nand_device *nand,
723ed99f773SBoris Brezillon 						    const struct nand_pos *pos)
724ed99f773SBoris Brezillon {
725ed99f773SBoris Brezillon 	return pos->eraseblock +
726ed99f773SBoris Brezillon 	       ((pos->lun + (pos->target * nand->memorg.luns_per_target)) *
727ed99f773SBoris Brezillon 		nand->memorg.eraseblocks_per_lun);
728ed99f773SBoris Brezillon }
729ed99f773SBoris Brezillon 
730ed99f773SBoris Brezillon /**
731ed99f773SBoris Brezillon  * nanddev_bbt_is_initialized() - Check if the BBT has been initialized
732ed99f773SBoris Brezillon  * @nand: NAND device
733ed99f773SBoris Brezillon  *
734ed99f773SBoris Brezillon  * Return: true if the BBT has been initialized, false otherwise.
735ed99f773SBoris Brezillon  */
nanddev_bbt_is_initialized(struct nand_device * nand)736ed99f773SBoris Brezillon static inline bool nanddev_bbt_is_initialized(struct nand_device *nand)
737ed99f773SBoris Brezillon {
738ed99f773SBoris Brezillon 	return !!nand->bbt.cache;
739ed99f773SBoris Brezillon }
740ed99f773SBoris Brezillon 
741ed99f773SBoris Brezillon /* MTD -> NAND helper functions. */
742ed99f773SBoris Brezillon int nanddev_mtd_erase(struct mtd_info *mtd, struct erase_info *einfo);
743ed99f773SBoris Brezillon 
744ed99f773SBoris Brezillon #endif /* __LINUX_MTD_NAND_H */
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