UBI: introduce UBI_ALL constant
[deliverable/linux.git] / drivers / mtd / ubi / ubi.h
CommitLineData
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1/*
2 * Copyright (c) International Business Machines Corp., 2006
3 * Copyright (c) Nokia Corporation, 2006, 2007
4 *
5 * This program is free software; you can redistribute it and/or modify
6 * it under the terms of the GNU General Public License as published by
7 * the Free Software Foundation; either version 2 of the License, or
8 * (at your option) any later version.
9 *
10 * This program is distributed in the hope that it will be useful,
11 * but WITHOUT ANY WARRANTY; without even the implied warranty of
12 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See
13 * the GNU General Public License for more details.
14 *
15 * You should have received a copy of the GNU General Public License
16 * along with this program; if not, write to the Free Software
17 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
18 *
19 * Author: Artem Bityutskiy (Битюцкий Артём)
20 */
21
22#ifndef __UBI_UBI_H__
23#define __UBI_UBI_H__
24
25#include <linux/init.h>
26#include <linux/types.h>
27#include <linux/list.h>
28#include <linux/rbtree.h>
29#include <linux/sched.h>
30#include <linux/wait.h>
31#include <linux/mutex.h>
32#include <linux/rwsem.h>
33#include <linux/spinlock.h>
34#include <linux/fs.h>
35#include <linux/cdev.h>
36#include <linux/device.h>
5a0e3ad6 37#include <linux/slab.h>
801c135c 38#include <linux/string.h>
92ad8f37 39#include <linux/vmalloc.h>
d9dd0887 40#include <linux/notifier.h>
801c135c 41#include <linux/mtd/mtd.h>
801c135c 42#include <linux/mtd/ubi.h>
a7586743 43#include <asm/pgtable.h>
801c135c 44
92a74f1c 45#include "ubi-media.h"
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46
47/* Maximum number of supported UBI devices */
48#define UBI_MAX_DEVICES 32
49
50/* UBI name used for character devices, sysfs, etc */
51#define UBI_NAME_STR "ubi"
52
53/* Normal UBI messages */
54#define ubi_msg(fmt, ...) printk(KERN_NOTICE "UBI: " fmt "\n", ##__VA_ARGS__)
55/* UBI warning messages */
56#define ubi_warn(fmt, ...) printk(KERN_WARNING "UBI warning: %s: " fmt "\n", \
cb53b3b9 57 __func__, ##__VA_ARGS__)
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58/* UBI error messages */
59#define ubi_err(fmt, ...) printk(KERN_ERR "UBI error: %s: " fmt "\n", \
cb53b3b9 60 __func__, ##__VA_ARGS__)
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61
62/* Lowest number PEBs reserved for bad PEB handling */
63#define MIN_RESEVED_PEBS 2
64
65/* Background thread name pattern */
66#define UBI_BGT_NAME_PATTERN "ubi_bgt%dd"
67
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68/*
69 * This marker in the EBA table means that the LEB is um-mapped.
70 * NOTE! It has to have the same value as %UBI_ALL.
71 */
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72#define UBI_LEB_UNMAPPED -1
73
74/*
75 * In case of errors, UBI tries to repeat the operation several times before
76 * returning error. The below constant defines how many times UBI re-tries.
77 */
78#define UBI_IO_RETRIES 3
79
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80/*
81 * Length of the protection queue. The length is effectively equivalent to the
82 * number of (global) erase cycles PEBs are protected from the wear-leveling
83 * worker.
84 */
85#define UBI_PROT_QUEUE_LEN 10
86
05a3cb7d 87/* The volume ID/LEB number/erase counter is unknown */
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88#define UBI_UNKNOWN -1
89
801c135c 90/*
85c6e6e2 91 * Error codes returned by the I/O sub-system.
801c135c 92 *
74d82d26 93 * UBI_IO_FF: the read region of flash contains only 0xFFs
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94 * UBI_IO_FF_BITFLIPS: the same as %UBI_IO_FF, but also also there was a data
95 * integrity error reported by the MTD driver
96 * (uncorrectable ECC error in case of NAND)
786d7831 97 * UBI_IO_BAD_HDR: the EC or VID header is corrupted (bad magic or CRC)
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98 * UBI_IO_BAD_HDR_EBADMSG: the same as %UBI_IO_BAD_HDR, but also there was a
99 * data integrity error reported by the MTD driver
100 * (uncorrectable ECC error in case of NAND)
801c135c 101 * UBI_IO_BITFLIPS: bit-flips were detected and corrected
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102 *
103 * Note, it is probably better to have bit-flip and ebadmsg as flags which can
104 * be or'ed with other error code. But this is a big change because there are
105 * may callers, so it does not worth the risk of introducing a bug
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106 */
107enum {
74d82d26 108 UBI_IO_FF = 1,
92e1a7d9 109 UBI_IO_FF_BITFLIPS,
786d7831 110 UBI_IO_BAD_HDR,
756e1df1 111 UBI_IO_BAD_HDR_EBADMSG,
92e1a7d9 112 UBI_IO_BITFLIPS,
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113};
114
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115/*
116 * Return codes of the 'ubi_eba_copy_leb()' function.
117 *
118 * MOVE_CANCEL_RACE: canceled because the volume is being deleted, the source
119 * PEB was put meanwhile, or there is I/O on the source PEB
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120 * MOVE_SOURCE_RD_ERR: canceled because there was a read error from the source
121 * PEB
122 * MOVE_TARGET_RD_ERR: canceled because there was a read error from the target
123 * PEB
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124 * MOVE_TARGET_WR_ERR: canceled because there was a write error to the target
125 * PEB
cc831464 126 * MOVE_TARGET_BITFLIPS: canceled because a bit-flip was detected in the
90bf0265 127 * target PEB
e801e128 128 * MOVE_RETRY: retry scrubbing the PEB
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129 */
130enum {
131 MOVE_CANCEL_RACE = 1,
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132 MOVE_SOURCE_RD_ERR,
133 MOVE_TARGET_RD_ERR,
90bf0265 134 MOVE_TARGET_WR_ERR,
cc831464 135 MOVE_TARGET_BITFLIPS,
e801e128 136 MOVE_RETRY,
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137};
138
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139/**
140 * struct ubi_wl_entry - wear-leveling entry.
23553b2c 141 * @u.rb: link in the corresponding (free/used) RB-tree
7b6c32da 142 * @u.list: link in the protection queue
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143 * @ec: erase counter
144 * @pnum: physical eraseblock number
145 *
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146 * This data structure is used in the WL sub-system. Each physical eraseblock
147 * has a corresponding &struct wl_entry object which may be kept in different
148 * RB-trees. See WL sub-system for details.
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149 */
150struct ubi_wl_entry {
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151 union {
152 struct rb_node rb;
7b6c32da 153 struct list_head list;
23553b2c 154 } u;
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155 int ec;
156 int pnum;
157};
158
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159/**
160 * struct ubi_ltree_entry - an entry in the lock tree.
161 * @rb: links RB-tree nodes
162 * @vol_id: volume ID of the locked logical eraseblock
163 * @lnum: locked logical eraseblock number
164 * @users: how many tasks are using this logical eraseblock or wait for it
165 * @mutex: read/write mutex to implement read/write access serialization to
166 * the (@vol_id, @lnum) logical eraseblock
167 *
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168 * This data structure is used in the EBA sub-system to implement per-LEB
169 * locking. When a logical eraseblock is being locked - corresponding
3a8d4642 170 * &struct ubi_ltree_entry object is inserted to the lock tree (@ubi->ltree).
85c6e6e2 171 * See EBA sub-system for details.
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172 */
173struct ubi_ltree_entry {
174 struct rb_node rb;
175 int vol_id;
176 int lnum;
177 int users;
178 struct rw_semaphore mutex;
179};
180
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181/**
182 * struct ubi_rename_entry - volume re-name description data structure.
183 * @new_name_len: new volume name length
184 * @new_name: new volume name
185 * @remove: if not zero, this volume should be removed, not re-named
186 * @desc: descriptor of the volume
187 * @list: links re-name entries into a list
188 *
189 * This data structure is utilized in the multiple volume re-name code. Namely,
190 * UBI first creates a list of &struct ubi_rename_entry objects from the
191 * &struct ubi_rnvol_req request object, and then utilizes this list to do all
192 * the job.
193 */
194struct ubi_rename_entry {
195 int new_name_len;
196 char new_name[UBI_VOL_NAME_MAX + 1];
197 int remove;
198 struct ubi_volume_desc *desc;
199 struct list_head list;
200};
201
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202struct ubi_volume_desc;
203
204/**
205 * struct ubi_volume - UBI volume description data structure.
206 * @dev: device object to make use of the the Linux device model
207 * @cdev: character device object to create character device
208 * @ubi: reference to the UBI device description object
209 * @vol_id: volume ID
d05c77a8 210 * @ref_count: volume reference count
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211 * @readers: number of users holding this volume in read-only mode
212 * @writers: number of users holding this volume in read-write mode
213 * @exclusive: whether somebody holds this volume in exclusive mode
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214 *
215 * @reserved_pebs: how many physical eraseblocks are reserved for this volume
216 * @vol_type: volume type (%UBI_DYNAMIC_VOLUME or %UBI_STATIC_VOLUME)
217 * @usable_leb_size: logical eraseblock size without padding
218 * @used_ebs: how many logical eraseblocks in this volume contain data
219 * @last_eb_bytes: how many bytes are stored in the last logical eraseblock
220 * @used_bytes: how many bytes of data this volume contains
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221 * @alignment: volume alignment
222 * @data_pad: how many bytes are not used at the end of physical eraseblocks to
d05c77a8 223 * satisfy the requested alignment
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224 * @name_len: volume name length
225 * @name: volume name
226 *
801c135c 227 * @upd_ebs: how many eraseblocks are expected to be updated
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228 * @ch_lnum: LEB number which is being changing by the atomic LEB change
229 * operation
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230 * @upd_bytes: how many bytes are expected to be received for volume update or
231 * atomic LEB change
232 * @upd_received: how many bytes were already received for volume update or
233 * atomic LEB change
234 * @upd_buf: update buffer which is used to collect update data or data for
235 * atomic LEB change
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236 *
237 * @eba_tbl: EBA table of this volume (LEB->PEB mapping)
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238 * @checked: %1 if this static volume was checked
239 * @corrupted: %1 if the volume is corrupted (static volumes only)
240 * @upd_marker: %1 if the update marker is set for this volume
241 * @updating: %1 if the volume is being updated
e653879c 242 * @changing_leb: %1 if the atomic LEB change ioctl command is in progress
766fb95b 243 * @direct_writes: %1 if direct writes are enabled for this volume
801c135c 244 *
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245 * The @corrupted field indicates that the volume's contents is corrupted.
246 * Since UBI protects only static volumes, this field is not relevant to
247 * dynamic volumes - it is user's responsibility to assure their data
248 * integrity.
249 *
250 * The @upd_marker flag indicates that this volume is either being updated at
251 * the moment or is damaged because of an unclean reboot.
252 */
253struct ubi_volume {
254 struct device dev;
255 struct cdev cdev;
256 struct ubi_device *ubi;
257 int vol_id;
d05c77a8 258 int ref_count;
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259 int readers;
260 int writers;
261 int exclusive;
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262
263 int reserved_pebs;
264 int vol_type;
265 int usable_leb_size;
266 int used_ebs;
267 int last_eb_bytes;
268 long long used_bytes;
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269 int alignment;
270 int data_pad;
271 int name_len;
f40ac9cd 272 char name[UBI_VOL_NAME_MAX + 1];
801c135c 273
801c135c 274 int upd_ebs;
e653879c 275 int ch_lnum;
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276 long long upd_bytes;
277 long long upd_received;
278 void *upd_buf;
279
280 int *eba_tbl;
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281 unsigned int checked:1;
282 unsigned int corrupted:1;
283 unsigned int upd_marker:1;
284 unsigned int updating:1;
285 unsigned int changing_leb:1;
766fb95b 286 unsigned int direct_writes:1;
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287};
288
289/**
85c6e6e2 290 * struct ubi_volume_desc - UBI volume descriptor returned when it is opened.
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291 * @vol: reference to the corresponding volume description object
292 * @mode: open mode (%UBI_READONLY, %UBI_READWRITE, or %UBI_EXCLUSIVE)
293 */
294struct ubi_volume_desc {
295 struct ubi_volume *vol;
296 int mode;
297};
298
299struct ubi_wl_entry;
300
301/**
302 * struct ubi_device - UBI device description structure
9f961b57 303 * @dev: UBI device object to use the the Linux device model
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304 * @cdev: character device object to create character device
305 * @ubi_num: UBI device number
306 * @ubi_name: UBI device name
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307 * @vol_count: number of volumes in this UBI device
308 * @volumes: volumes of this UBI device
309 * @volumes_lock: protects @volumes, @rsvd_pebs, @avail_pebs, beb_rsvd_pebs,
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310 * @beb_rsvd_level, @bad_peb_count, @good_peb_count, @vol_count,
311 * @vol->readers, @vol->writers, @vol->exclusive,
312 * @vol->ref_count, @vol->mapping and @vol->eba_tbl.
e73f4459 313 * @ref_count: count of references on the UBI device
0c6c7fa1 314 * @image_seq: image sequence number recorded on EC headers
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315 *
316 * @rsvd_pebs: count of reserved physical eraseblocks
317 * @avail_pebs: count of available physical eraseblocks
318 * @beb_rsvd_pebs: how many physical eraseblocks are reserved for bad PEB
4ccf8cff 319 * handling
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320 * @beb_rsvd_level: normal level of PEBs reserved for bad PEB handling
321 *
4ccf8cff 322 * @autoresize_vol_id: ID of the volume which has to be auto-resized at the end
7b6c32da 323 * of UBI initialization
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324 * @vtbl_slots: how many slots are available in the volume table
325 * @vtbl_size: size of the volume table in bytes
326 * @vtbl: in-RAM volume table copy
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327 * @device_mutex: protects on-flash volume table and serializes volume
328 * creation, deletion, update, re-size, re-name and set
329 * property
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330 *
331 * @max_ec: current highest erase counter value
332 * @mean_ec: current mean erase counter value
333 *
e8823bd6 334 * @global_sqnum: global sequence number
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335 * @ltree_lock: protects the lock tree and @global_sqnum
336 * @ltree: the lock tree
e8823bd6 337 * @alc_mutex: serializes "atomic LEB change" operations
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338 *
339 * @used: RB-tree of used physical eraseblocks
b86a2c56 340 * @erroneous: RB-tree of erroneous used physical eraseblocks
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341 * @free: RB-tree of free physical eraseblocks
342 * @scrub: RB-tree of physical eraseblocks which need scrubbing
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343 * @pq: protection queue (contain physical eraseblocks which are temporarily
344 * protected from the wear-leveling worker)
345 * @pq_head: protection queue head
346 * @wl_lock: protects the @used, @free, @pq, @pq_head, @lookuptbl, @move_from,
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347 * @move_to, @move_to_put @erase_pending, @wl_scheduled, @works,
348 * @erroneous, and @erroneous_peb_count fields
43f9b25a 349 * @move_mutex: serializes eraseblock moves
7b6c32da 350 * @work_sem: synchronizes the WL worker with use tasks
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351 * @wl_scheduled: non-zero if the wear-leveling was scheduled
352 * @lookuptbl: a table to quickly find a &struct ubi_wl_entry object for any
d05c77a8 353 * physical eraseblock
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354 * @move_from: physical eraseblock from where the data is being moved
355 * @move_to: physical eraseblock where the data is being moved to
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356 * @move_to_put: if the "to" PEB was put
357 * @works: list of pending works
358 * @works_count: count of pending works
359 * @bgt_thread: background thread description object
360 * @thread_enabled: if the background thread is enabled
361 * @bgt_name: background thread name
362 *
363 * @flash_size: underlying MTD device size (in bytes)
364 * @peb_count: count of physical eraseblocks on the MTD device
365 * @peb_size: physical eraseblock size
366 * @bad_peb_count: count of bad physical eraseblocks
367 * @good_peb_count: count of good physical eraseblocks
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368 * @corr_peb_count: count of corrupted physical eraseblocks (preserved and not
369 * used by UBI)
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370 * @erroneous_peb_count: count of erroneous physical eraseblocks in @erroneous
371 * @max_erroneous: maximum allowed amount of erroneous physical eraseblocks
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372 * @min_io_size: minimal input/output unit size of the underlying MTD device
373 * @hdrs_min_io_size: minimal I/O unit size used for VID and EC headers
374 * @ro_mode: if the UBI device is in read-only mode
375 * @leb_size: logical eraseblock size
376 * @leb_start: starting offset of logical eraseblocks within physical
85c6e6e2 377 * eraseblocks
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378 * @ec_hdr_alsize: size of the EC header aligned to @hdrs_min_io_size
379 * @vid_hdr_alsize: size of the VID header aligned to @hdrs_min_io_size
380 * @vid_hdr_offset: starting offset of the volume identifier header (might be
85c6e6e2 381 * unaligned)
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382 * @vid_hdr_aloffset: starting offset of the VID header aligned to
383 * @hdrs_min_io_size
384 * @vid_hdr_shift: contains @vid_hdr_offset - @vid_hdr_aloffset
385 * @bad_allowed: whether the MTD device admits of bad physical eraseblocks or
d05c77a8 386 * not
ebf53f42 387 * @nor_flash: non-zero if working on top of NOR flash
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388 * @max_write_size: maximum amount of bytes the underlying flash can write at a
389 * time (MTD write buffer size)
801c135c 390 * @mtd: MTD device descriptor
e88d6e10 391 *
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392 * @peb_buf: a buffer of PEB size used for different purposes
393 * @buf_mutex: protects @peb_buf
f40ac9cd 394 * @ckvol_mutex: serializes static volume checking when opening
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395 *
396 * @dbg: debugging information for this UBI device
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397 */
398struct ubi_device {
399 struct cdev cdev;
400 struct device dev;
401 int ubi_num;
402 char ubi_name[sizeof(UBI_NAME_STR)+5];
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403 int vol_count;
404 struct ubi_volume *volumes[UBI_MAX_VOLUMES+UBI_INT_VOL_COUNT];
405 spinlock_t volumes_lock;
e73f4459 406 int ref_count;
0c6c7fa1 407 int image_seq;
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408
409 int rsvd_pebs;
410 int avail_pebs;
411 int beb_rsvd_pebs;
412 int beb_rsvd_level;
413
4ccf8cff 414 int autoresize_vol_id;
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415 int vtbl_slots;
416 int vtbl_size;
417 struct ubi_vtbl_record *vtbl;
f089c0b2 418 struct mutex device_mutex;
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419
420 int max_ec;
85c6e6e2 421 /* Note, mean_ec is not updated run-time - should be fixed */
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422 int mean_ec;
423
85c6e6e2 424 /* EBA sub-system's stuff */
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425 unsigned long long global_sqnum;
426 spinlock_t ltree_lock;
427 struct rb_root ltree;
e8823bd6 428 struct mutex alc_mutex;
801c135c 429
85c6e6e2 430 /* Wear-leveling sub-system's stuff */
801c135c 431 struct rb_root used;
b86a2c56 432 struct rb_root erroneous;
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433 struct rb_root free;
434 struct rb_root scrub;
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435 struct list_head pq[UBI_PROT_QUEUE_LEN];
436 int pq_head;
801c135c 437 spinlock_t wl_lock;
43f9b25a 438 struct mutex move_mutex;
593dd33c 439 struct rw_semaphore work_sem;
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440 int wl_scheduled;
441 struct ubi_wl_entry **lookuptbl;
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442 struct ubi_wl_entry *move_from;
443 struct ubi_wl_entry *move_to;
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444 int move_to_put;
445 struct list_head works;
446 int works_count;
447 struct task_struct *bgt_thread;
448 int thread_enabled;
449 char bgt_name[sizeof(UBI_BGT_NAME_PATTERN)+2];
450
85c6e6e2 451 /* I/O sub-system's stuff */
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452 long long flash_size;
453 int peb_count;
454 int peb_size;
455 int bad_peb_count;
456 int good_peb_count;
5fc01ab6 457 int corr_peb_count;
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458 int erroneous_peb_count;
459 int max_erroneous;
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460 int min_io_size;
461 int hdrs_min_io_size;
462 int ro_mode;
463 int leb_size;
464 int leb_start;
465 int ec_hdr_alsize;
466 int vid_hdr_alsize;
467 int vid_hdr_offset;
468 int vid_hdr_aloffset;
469 int vid_hdr_shift;
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470 unsigned int bad_allowed:1;
471 unsigned int nor_flash:1;
30b542ef 472 int max_write_size;
801c135c 473 struct mtd_info *mtd;
e88d6e10 474
0ca39d74 475 void *peb_buf;
e88d6e10 476 struct mutex buf_mutex;
783b273a 477 struct mutex ckvol_mutex;
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478
479 struct ubi_debug_info *dbg;
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480};
481
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482/**
483 * struct ubi_ainf_peb - attach information about a physical eraseblock.
484 * @ec: erase counter (%UBI_UNKNOWN if it is unknown)
485 * @pnum: physical eraseblock number
6dd3bc7e 486 * @vol_id: ID of the volume this LEB belongs to
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487 * @lnum: logical eraseblock number
488 * @scrub: if this physical eraseblock needs scrubbing
489 * @copy_flag: this LEB is a copy (@copy_flag is set in VID header of this LEB)
490 * @sqnum: sequence number
491 * @u: unions RB-tree or @list links
492 * @u.rb: link in the per-volume RB-tree of &struct ubi_ainf_peb objects
493 * @u.list: link in one of the eraseblock lists
494 *
495 * One object of this type is allocated for each physical eraseblock when
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496 * attaching an MTD device. Note, if this PEB does not belong to any LEB /
497 * volume, the @vol_id and @lnum fields are initialized to %UBI_UNKNOWN.
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498 */
499struct ubi_ainf_peb {
500 int ec;
501 int pnum;
6dd3bc7e 502 int vol_id;
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503 int lnum;
504 unsigned int scrub:1;
505 unsigned int copy_flag:1;
506 unsigned long long sqnum;
507 union {
508 struct rb_node rb;
509 struct list_head list;
510 } u;
511};
512
513/**
514 * struct ubi_ainf_volume - attaching information about a volume.
515 * @vol_id: volume ID
516 * @highest_lnum: highest logical eraseblock number in this volume
517 * @leb_count: number of logical eraseblocks in this volume
518 * @vol_type: volume type
519 * @used_ebs: number of used logical eraseblocks in this volume (only for
520 * static volumes)
521 * @last_data_size: amount of data in the last logical eraseblock of this
522 * volume (always equivalent to the usable logical eraseblock
523 * size in case of dynamic volumes)
524 * @data_pad: how many bytes at the end of logical eraseblocks of this volume
525 * are not used (due to volume alignment)
526 * @compat: compatibility flags of this volume
527 * @rb: link in the volume RB-tree
528 * @root: root of the RB-tree containing all the eraseblock belonging to this
529 * volume (&struct ubi_ainf_peb objects)
530 *
531 * One object of this type is allocated for each volume when attaching an MTD
532 * device.
533 */
534struct ubi_ainf_volume {
535 int vol_id;
536 int highest_lnum;
537 int leb_count;
538 int vol_type;
539 int used_ebs;
540 int last_data_size;
541 int data_pad;
542 int compat;
543 struct rb_node rb;
544 struct rb_root root;
545};
546
547/**
548 * struct ubi_attach_info - MTD device attaching information.
549 * @volumes: root of the volume RB-tree
550 * @corr: list of corrupted physical eraseblocks
551 * @free: list of free physical eraseblocks
552 * @erase: list of physical eraseblocks which have to be erased
553 * @alien: list of physical eraseblocks which should not be used by UBI (e.g.,
554 * those belonging to "preserve"-compatible internal volumes)
555 * @corr_peb_count: count of PEBs in the @corr list
556 * @empty_peb_count: count of PEBs which are presumably empty (contain only
557 * 0xFF bytes)
558 * @alien_peb_count: count of PEBs in the @alien list
559 * @bad_peb_count: count of bad physical eraseblocks
560 * @maybe_bad_peb_count: count of bad physical eraseblocks which are not marked
561 * as bad yet, but which look like bad
562 * @vols_found: number of volumes found
563 * @highest_vol_id: highest volume ID
564 * @is_empty: flag indicating whether the MTD device is empty or not
565 * @min_ec: lowest erase counter value
566 * @max_ec: highest erase counter value
567 * @max_sqnum: highest sequence number value
568 * @mean_ec: mean erase counter value
569 * @ec_sum: a temporary variable used when calculating @mean_ec
570 * @ec_count: a temporary variable used when calculating @mean_ec
571 * @aeb_slab_cache: slab cache for &struct ubi_ainf_peb objects
572 *
573 * This data structure contains the result of attaching an MTD device and may
574 * be used by other UBI sub-systems to build final UBI data structures, further
575 * error-recovery and so on.
576 */
577struct ubi_attach_info {
578 struct rb_root volumes;
579 struct list_head corr;
580 struct list_head free;
581 struct list_head erase;
582 struct list_head alien;
583 int corr_peb_count;
584 int empty_peb_count;
585 int alien_peb_count;
586 int bad_peb_count;
587 int maybe_bad_peb_count;
588 int vols_found;
589 int highest_vol_id;
590 int is_empty;
591 int min_ec;
592 int max_ec;
593 unsigned long long max_sqnum;
594 int mean_ec;
595 uint64_t ec_sum;
596 int ec_count;
597 struct kmem_cache *aeb_slab_cache;
598};
599
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600#include "debug.h"
601
06b68ba1 602extern struct kmem_cache *ubi_wl_entry_slab;
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603extern const struct file_operations ubi_ctrl_cdev_operations;
604extern const struct file_operations ubi_cdev_operations;
605extern const struct file_operations ubi_vol_cdev_operations;
801c135c 606extern struct class *ubi_class;
cdfa788a 607extern struct mutex ubi_devices_mutex;
0e0ee1cc 608extern struct blocking_notifier_head ubi_notifiers;
801c135c 609
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610/* scan.c */
611int ubi_add_to_av(struct ubi_device *ubi, struct ubi_attach_info *ai, int pnum,
612 int ec, const struct ubi_vid_hdr *vid_hdr, int bitflips);
613struct ubi_ainf_volume *ubi_find_av(const struct ubi_attach_info *ai,
614 int vol_id);
615void ubi_remove_av(struct ubi_attach_info *ai, struct ubi_ainf_volume *av);
616struct ubi_ainf_peb *ubi_early_get_peb(struct ubi_device *ubi,
617 struct ubi_attach_info *ai);
618int ubi_attach(struct ubi_device *ubi);
619void ubi_destroy_ai(struct ubi_attach_info *ai);
620
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621/* vtbl.c */
622int ubi_change_vtbl_record(struct ubi_device *ubi, int idx,
623 struct ubi_vtbl_record *vtbl_rec);
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624int ubi_vtbl_rename_volumes(struct ubi_device *ubi,
625 struct list_head *rename_list);
a4e6042f 626int ubi_read_volume_table(struct ubi_device *ubi, struct ubi_attach_info *ai);
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627
628/* vmt.c */
629int ubi_create_volume(struct ubi_device *ubi, struct ubi_mkvol_req *req);
f40ac9cd 630int ubi_remove_volume(struct ubi_volume_desc *desc, int no_vtbl);
801c135c 631int ubi_resize_volume(struct ubi_volume_desc *desc, int reserved_pebs);
f40ac9cd 632int ubi_rename_volumes(struct ubi_device *ubi, struct list_head *rename_list);
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633int ubi_add_volume(struct ubi_device *ubi, struct ubi_volume *vol);
634void ubi_free_volume(struct ubi_device *ubi, struct ubi_volume *vol);
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635
636/* upd.c */
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637int ubi_start_update(struct ubi_device *ubi, struct ubi_volume *vol,
638 long long bytes);
639int ubi_more_update_data(struct ubi_device *ubi, struct ubi_volume *vol,
801c135c 640 const void __user *buf, int count);
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641int ubi_start_leb_change(struct ubi_device *ubi, struct ubi_volume *vol,
642 const struct ubi_leb_change_req *req);
643int ubi_more_leb_change_data(struct ubi_device *ubi, struct ubi_volume *vol,
644 const void __user *buf, int count);
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645
646/* misc.c */
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647int ubi_calc_data_len(const struct ubi_device *ubi, const void *buf,
648 int length);
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649int ubi_check_volume(struct ubi_device *ubi, int vol_id);
650void ubi_calculate_reserved(struct ubi_device *ubi);
bb00e180 651int ubi_check_pattern(const void *buf, uint8_t patt, int size);
801c135c 652
801c135c 653/* eba.c */
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654int ubi_eba_unmap_leb(struct ubi_device *ubi, struct ubi_volume *vol,
655 int lnum);
656int ubi_eba_read_leb(struct ubi_device *ubi, struct ubi_volume *vol, int lnum,
657 void *buf, int offset, int len, int check);
658int ubi_eba_write_leb(struct ubi_device *ubi, struct ubi_volume *vol, int lnum,
b36a261e 659 const void *buf, int offset, int len);
89b96b69 660int ubi_eba_write_leb_st(struct ubi_device *ubi, struct ubi_volume *vol,
b36a261e 661 int lnum, const void *buf, int len, int used_ebs);
89b96b69 662int ubi_eba_atomic_leb_change(struct ubi_device *ubi, struct ubi_volume *vol,
b36a261e 663 int lnum, const void *buf, int len);
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664int ubi_eba_copy_leb(struct ubi_device *ubi, int from, int to,
665 struct ubi_vid_hdr *vid_hdr);
41e0cd9d 666int ubi_eba_init(struct ubi_device *ubi, struct ubi_attach_info *ai);
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667
668/* wl.c */
b36a261e 669int ubi_wl_get_peb(struct ubi_device *ubi);
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670int ubi_wl_put_peb(struct ubi_device *ubi, int vol_id, int lnum,
671 int pnum, int torture);
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672int ubi_wl_flush(struct ubi_device *ubi);
673int ubi_wl_scrub_peb(struct ubi_device *ubi, int pnum);
41e0cd9d 674int ubi_wl_init(struct ubi_device *ubi, struct ubi_attach_info *ai);
801c135c 675void ubi_wl_close(struct ubi_device *ubi);
cdfa788a 676int ubi_thread(void *u);
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677
678/* io.c */
679int ubi_io_read(const struct ubi_device *ubi, void *buf, int pnum, int offset,
680 int len);
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681int ubi_io_write(struct ubi_device *ubi, const void *buf, int pnum, int offset,
682 int len);
683int ubi_io_sync_erase(struct ubi_device *ubi, int pnum, int torture);
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684int ubi_io_is_bad(const struct ubi_device *ubi, int pnum);
685int ubi_io_mark_bad(const struct ubi_device *ubi, int pnum);
e88d6e10 686int ubi_io_read_ec_hdr(struct ubi_device *ubi, int pnum,
801c135c 687 struct ubi_ec_hdr *ec_hdr, int verbose);
e88d6e10 688int ubi_io_write_ec_hdr(struct ubi_device *ubi, int pnum,
801c135c 689 struct ubi_ec_hdr *ec_hdr);
e88d6e10 690int ubi_io_read_vid_hdr(struct ubi_device *ubi, int pnum,
801c135c 691 struct ubi_vid_hdr *vid_hdr, int verbose);
e88d6e10 692int ubi_io_write_vid_hdr(struct ubi_device *ubi, int pnum,
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693 struct ubi_vid_hdr *vid_hdr);
694
e73f4459 695/* build.c */
897a316c 696int ubi_attach_mtd_dev(struct mtd_info *mtd, int ubi_num, int vid_hdr_offset);
cdfa788a 697int ubi_detach_mtd_dev(int ubi_num, int anyway);
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698struct ubi_device *ubi_get_device(int ubi_num);
699void ubi_put_device(struct ubi_device *ubi);
700struct ubi_device *ubi_get_by_major(int major);
701int ubi_major2num(int major);
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702int ubi_volume_notify(struct ubi_device *ubi, struct ubi_volume *vol,
703 int ntype);
704int ubi_notify_all(struct ubi_device *ubi, int ntype,
705 struct notifier_block *nb);
706int ubi_enumerate_volumes(struct notifier_block *nb);
47e1ec70 707void ubi_free_internal_volumes(struct ubi_device *ubi);
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708
709/* kapi.c */
710void ubi_do_get_device_info(struct ubi_device *ubi, struct ubi_device_info *di);
711void ubi_do_get_volume_info(struct ubi_device *ubi, struct ubi_volume *vol,
712 struct ubi_volume_info *vi);
e73f4459 713
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714/*
715 * ubi_rb_for_each_entry - walk an RB-tree.
fd589a8f 716 * @rb: a pointer to type 'struct rb_node' to use as a loop counter
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717 * @pos: a pointer to RB-tree entry type to use as a loop counter
718 * @root: RB-tree's root
719 * @member: the name of the 'struct rb_node' within the RB-tree entry
720 */
721#define ubi_rb_for_each_entry(rb, pos, root, member) \
722 for (rb = rb_first(root), \
723 pos = (rb ? container_of(rb, typeof(*pos), member) : NULL); \
724 rb; \
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725 rb = rb_next(rb), \
726 pos = (rb ? container_of(rb, typeof(*pos), member) : NULL))
801c135c 727
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728/*
729 * ubi_move_aeb_to_list - move a PEB from the volume tree to a list.
730 *
731 * @av: volume attaching information
732 * @aeb: attaching eraseblock information
733 * @list: the list to move to
734 */
735static inline void ubi_move_aeb_to_list(struct ubi_ainf_volume *av,
736 struct ubi_ainf_peb *aeb,
737 struct list_head *list)
738{
739 rb_erase(&aeb->u.rb, &av->root);
740 list_add_tail(&aeb->u.list, list);
741}
742
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743/**
744 * ubi_zalloc_vid_hdr - allocate a volume identifier header object.
745 * @ubi: UBI device description object
33818bbb 746 * @gfp_flags: GFP flags to allocate with
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747 *
748 * This function returns a pointer to the newly allocated and zero-filled
749 * volume identifier header object in case of success and %NULL in case of
750 * failure.
751 */
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752static inline struct ubi_vid_hdr *
753ubi_zalloc_vid_hdr(const struct ubi_device *ubi, gfp_t gfp_flags)
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754{
755 void *vid_hdr;
756
33818bbb 757 vid_hdr = kzalloc(ubi->vid_hdr_alsize, gfp_flags);
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758 if (!vid_hdr)
759 return NULL;
760
761 /*
762 * VID headers may be stored at un-aligned flash offsets, so we shift
763 * the pointer.
764 */
765 return vid_hdr + ubi->vid_hdr_shift;
766}
767
768/**
769 * ubi_free_vid_hdr - free a volume identifier header object.
770 * @ubi: UBI device description object
771 * @vid_hdr: the object to free
772 */
773static inline void ubi_free_vid_hdr(const struct ubi_device *ubi,
774 struct ubi_vid_hdr *vid_hdr)
775{
776 void *p = vid_hdr;
777
778 if (!p)
779 return;
780
781 kfree(p - ubi->vid_hdr_shift);
782}
783
784/*
785 * This function is equivalent to 'ubi_io_read()', but @offset is relative to
786 * the beginning of the logical eraseblock, not to the beginning of the
787 * physical eraseblock.
788 */
789static inline int ubi_io_read_data(const struct ubi_device *ubi, void *buf,
790 int pnum, int offset, int len)
791{
792 ubi_assert(offset >= 0);
793 return ubi_io_read(ubi, buf, pnum, offset + ubi->leb_start, len);
794}
795
796/*
797 * This function is equivalent to 'ubi_io_write()', but @offset is relative to
798 * the beginning of the logical eraseblock, not to the beginning of the
799 * physical eraseblock.
800 */
e88d6e10 801static inline int ubi_io_write_data(struct ubi_device *ubi, const void *buf,
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802 int pnum, int offset, int len)
803{
804 ubi_assert(offset >= 0);
805 return ubi_io_write(ubi, buf, pnum, offset + ubi->leb_start, len);
806}
807
808/**
809 * ubi_ro_mode - switch to read-only mode.
810 * @ubi: UBI device description object
811 */
812static inline void ubi_ro_mode(struct ubi_device *ubi)
813{
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814 if (!ubi->ro_mode) {
815 ubi->ro_mode = 1;
816 ubi_warn("switch to read-only mode");
25886a36 817 dump_stack();
43f9b25a 818 }
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819}
820
821/**
822 * vol_id2idx - get table index by volume ID.
823 * @ubi: UBI device description object
824 * @vol_id: volume ID
825 */
826static inline int vol_id2idx(const struct ubi_device *ubi, int vol_id)
827{
828 if (vol_id >= UBI_INTERNAL_VOL_START)
829 return vol_id - UBI_INTERNAL_VOL_START + ubi->vtbl_slots;
830 else
831 return vol_id;
832}
833
834/**
835 * idx2vol_id - get volume ID by table index.
836 * @ubi: UBI device description object
837 * @idx: table index
838 */
839static inline int idx2vol_id(const struct ubi_device *ubi, int idx)
840{
841 if (idx >= ubi->vtbl_slots)
842 return idx - ubi->vtbl_slots + UBI_INTERNAL_VOL_START;
843 else
844 return idx;
845}
846
847#endif /* !__UBI_UBI_H__ */
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