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Merge branch 'for-linus-4.10' of git://git.kernel.org/pub/scm/linux/kernel/git/mason...
[mirror_ubuntu-zesty-kernel.git] / drivers / mtd / mtdpart.c
CommitLineData
1da177e4
LT
1/*
2 * Simple MTD partitioning layer
3 *
a1452a37
DW
4 * Copyright © 2000 Nicolas Pitre <nico@fluxnic.net>
5 * Copyright © 2002 Thomas Gleixner <gleixner@linutronix.de>
6 * Copyright © 2000-2010 David Woodhouse <dwmw2@infradead.org>
1da177e4 7 *
a1452a37
DW
8 * This program is free software; you can redistribute it and/or modify
9 * it under the terms of the GNU General Public License as published by
10 * the Free Software Foundation; either version 2 of the License, or
11 * (at your option) any later version.
12 *
13 * This program is distributed in the hope that it will be useful,
14 * but WITHOUT ANY WARRANTY; without even the implied warranty of
15 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16 * GNU General Public License for more details.
17 *
18 * You should have received a copy of the GNU General Public License
19 * along with this program; if not, write to the Free Software
20 * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
1da177e4 21 *
97894cda 22 */
1da177e4
LT
23
24#include <linux/module.h>
25#include <linux/types.h>
26#include <linux/kernel.h>
27#include <linux/slab.h>
28#include <linux/list.h>
1da177e4
LT
29#include <linux/kmod.h>
30#include <linux/mtd/mtd.h>
31#include <linux/mtd/partitions.h>
5daa7b21 32#include <linux/err.h>
1da177e4 33
eea72d5f
JI
34#include "mtdcore.h"
35
1da177e4
LT
36/* Our partition linked list */
37static LIST_HEAD(mtd_partitions);
5daa7b21 38static DEFINE_MUTEX(mtd_partitions_mutex);
1da177e4
LT
39
40/* Our partition node structure */
41struct mtd_part {
42 struct mtd_info mtd;
43 struct mtd_info *master;
69423d99 44 uint64_t offset;
1da177e4 45 struct list_head list;
1da177e4
LT
46};
47
48/*
49 * Given a pointer to the MTD object in the mtd_part structure, we can retrieve
2524534d 50 * the pointer to that structure.
1da177e4 51 */
2524534d
BN
52static inline struct mtd_part *mtd_to_part(const struct mtd_info *mtd)
53{
54 return container_of(mtd, struct mtd_part, mtd);
55}
1da177e4 56
97894cda
TG
57
58/*
1da177e4
LT
59 * MTD methods which simply translate the effective address and pass through
60 * to the _real_ device.
61 */
62
b33a2887
AN
63static int part_read(struct mtd_info *mtd, loff_t from, size_t len,
64 size_t *retlen, u_char *buf)
1da177e4 65{
2524534d 66 struct mtd_part *part = mtd_to_part(mtd);
d8877f19 67 struct mtd_ecc_stats stats;
f1a28c02
TG
68 int res;
69
d8877f19 70 stats = part->master->ecc_stats;
994c8409
MD
71 res = part->master->_read(part->master, from + part->offset, len,
72 retlen, buf);
edbc4540
MD
73 if (unlikely(mtd_is_eccerr(res)))
74 mtd->ecc_stats.failed +=
75 part->master->ecc_stats.failed - stats.failed;
76 else
77 mtd->ecc_stats.corrected +=
78 part->master->ecc_stats.corrected - stats.corrected;
f1a28c02 79 return res;
1da177e4
LT
80}
81
b33a2887
AN
82static int part_point(struct mtd_info *mtd, loff_t from, size_t len,
83 size_t *retlen, void **virt, resource_size_t *phys)
1da177e4 84{
2524534d 85 struct mtd_part *part = mtd_to_part(mtd);
5def4898 86
994c8409
MD
87 return part->master->_point(part->master, from + part->offset, len,
88 retlen, virt, phys);
1da177e4 89}
9223a456 90
5e4e6e3f 91static int part_unpoint(struct mtd_info *mtd, loff_t from, size_t len)
1da177e4 92{
2524534d 93 struct mtd_part *part = mtd_to_part(mtd);
1da177e4 94
994c8409 95 return part->master->_unpoint(part->master, from + part->offset, len);
1da177e4
LT
96}
97
402d3265
DH
98static unsigned long part_get_unmapped_area(struct mtd_info *mtd,
99 unsigned long len,
100 unsigned long offset,
101 unsigned long flags)
102{
2524534d 103 struct mtd_part *part = mtd_to_part(mtd);
402d3265
DH
104
105 offset += part->offset;
994c8409
MD
106 return part->master->_get_unmapped_area(part->master, len, offset,
107 flags);
402d3265
DH
108}
109
8593fbc6 110static int part_read_oob(struct mtd_info *mtd, loff_t from,
b33a2887 111 struct mtd_oob_ops *ops)
1da177e4 112{
2524534d 113 struct mtd_part *part = mtd_to_part(mtd);
f1a28c02 114 int res;
8593fbc6 115
1da177e4 116 if (from >= mtd->size)
8593fbc6 117 return -EINVAL;
7014568b 118 if (ops->datbuf && from + ops->len > mtd->size)
8593fbc6 119 return -EINVAL;
f1a28c02 120
154bf89f
AB
121 /*
122 * If OOB is also requested, make sure that we do not read past the end
123 * of this partition.
124 */
125 if (ops->oobbuf) {
126 size_t len, pages;
127
29f1058a 128 len = mtd_oobavail(mtd, ops);
154bf89f
AB
129 pages = mtd_div_by_ws(mtd->size, mtd);
130 pages -= mtd_div_by_ws(from, mtd);
131 if (ops->ooboffs + ops->ooblen > pages * len)
132 return -EINVAL;
133 }
134
994c8409 135 res = part->master->_read_oob(part->master, from + part->offset, ops);
f1a28c02 136 if (unlikely(res)) {
d57f4054 137 if (mtd_is_bitflip(res))
f1a28c02 138 mtd->ecc_stats.corrected++;
d57f4054 139 if (mtd_is_eccerr(res))
f1a28c02
TG
140 mtd->ecc_stats.failed++;
141 }
142 return res;
1da177e4
LT
143}
144
b33a2887
AN
145static int part_read_user_prot_reg(struct mtd_info *mtd, loff_t from,
146 size_t len, size_t *retlen, u_char *buf)
1da177e4 147{
2524534d 148 struct mtd_part *part = mtd_to_part(mtd);
994c8409
MD
149 return part->master->_read_user_prot_reg(part->master, from, len,
150 retlen, buf);
1da177e4
LT
151}
152
4b78fc42
CR
153static int part_get_user_prot_info(struct mtd_info *mtd, size_t len,
154 size_t *retlen, struct otp_info *buf)
f77814dd 155{
2524534d 156 struct mtd_part *part = mtd_to_part(mtd);
4b78fc42
CR
157 return part->master->_get_user_prot_info(part->master, len, retlen,
158 buf);
f77814dd
NP
159}
160
b33a2887
AN
161static int part_read_fact_prot_reg(struct mtd_info *mtd, loff_t from,
162 size_t len, size_t *retlen, u_char *buf)
1da177e4 163{
2524534d 164 struct mtd_part *part = mtd_to_part(mtd);
994c8409
MD
165 return part->master->_read_fact_prot_reg(part->master, from, len,
166 retlen, buf);
1da177e4
LT
167}
168
4b78fc42
CR
169static int part_get_fact_prot_info(struct mtd_info *mtd, size_t len,
170 size_t *retlen, struct otp_info *buf)
f77814dd 171{
2524534d 172 struct mtd_part *part = mtd_to_part(mtd);
4b78fc42
CR
173 return part->master->_get_fact_prot_info(part->master, len, retlen,
174 buf);
f77814dd
NP
175}
176
b33a2887
AN
177static int part_write(struct mtd_info *mtd, loff_t to, size_t len,
178 size_t *retlen, const u_char *buf)
1da177e4 179{
2524534d 180 struct mtd_part *part = mtd_to_part(mtd);
994c8409
MD
181 return part->master->_write(part->master, to + part->offset, len,
182 retlen, buf);
1da177e4
LT
183}
184
b33a2887
AN
185static int part_panic_write(struct mtd_info *mtd, loff_t to, size_t len,
186 size_t *retlen, const u_char *buf)
388bbb09 187{
2524534d 188 struct mtd_part *part = mtd_to_part(mtd);
994c8409
MD
189 return part->master->_panic_write(part->master, to + part->offset, len,
190 retlen, buf);
388bbb09
RP
191}
192
8593fbc6 193static int part_write_oob(struct mtd_info *mtd, loff_t to,
b33a2887 194 struct mtd_oob_ops *ops)
1da177e4 195{
2524534d 196 struct mtd_part *part = mtd_to_part(mtd);
8593fbc6 197
1da177e4 198 if (to >= mtd->size)
8593fbc6 199 return -EINVAL;
7014568b 200 if (ops->datbuf && to + ops->len > mtd->size)
8593fbc6 201 return -EINVAL;
994c8409 202 return part->master->_write_oob(part->master, to + part->offset, ops);
1da177e4
LT
203}
204
b33a2887
AN
205static int part_write_user_prot_reg(struct mtd_info *mtd, loff_t from,
206 size_t len, size_t *retlen, u_char *buf)
1da177e4 207{
2524534d 208 struct mtd_part *part = mtd_to_part(mtd);
994c8409
MD
209 return part->master->_write_user_prot_reg(part->master, from, len,
210 retlen, buf);
1da177e4
LT
211}
212
b33a2887
AN
213static int part_lock_user_prot_reg(struct mtd_info *mtd, loff_t from,
214 size_t len)
f77814dd 215{
2524534d 216 struct mtd_part *part = mtd_to_part(mtd);
994c8409 217 return part->master->_lock_user_prot_reg(part->master, from, len);
f77814dd
NP
218}
219
b33a2887
AN
220static int part_writev(struct mtd_info *mtd, const struct kvec *vecs,
221 unsigned long count, loff_t to, size_t *retlen)
1da177e4 222{
2524534d 223 struct mtd_part *part = mtd_to_part(mtd);
994c8409
MD
224 return part->master->_writev(part->master, vecs, count,
225 to + part->offset, retlen);
1da177e4
LT
226}
227
b33a2887 228static int part_erase(struct mtd_info *mtd, struct erase_info *instr)
1da177e4 229{
2524534d 230 struct mtd_part *part = mtd_to_part(mtd);
1da177e4 231 int ret;
664addc2 232
1da177e4 233 instr->addr += part->offset;
994c8409 234 ret = part->master->_erase(part->master, instr);
74641d75 235 if (ret) {
bb0eb217 236 if (instr->fail_addr != MTD_FAIL_ADDR_UNKNOWN)
74641d75
AH
237 instr->fail_addr -= part->offset;
238 instr->addr -= part->offset;
239 }
1da177e4
LT
240 return ret;
241}
242
243void mtd_erase_callback(struct erase_info *instr)
244{
3c3c10bb 245 if (instr->mtd->_erase == part_erase) {
2524534d 246 struct mtd_part *part = mtd_to_part(instr->mtd);
1da177e4 247
bb0eb217 248 if (instr->fail_addr != MTD_FAIL_ADDR_UNKNOWN)
1da177e4
LT
249 instr->fail_addr -= part->offset;
250 instr->addr -= part->offset;
251 }
252 if (instr->callback)
253 instr->callback(instr);
254}
255EXPORT_SYMBOL_GPL(mtd_erase_callback);
256
69423d99 257static int part_lock(struct mtd_info *mtd, loff_t ofs, uint64_t len)
1da177e4 258{
2524534d 259 struct mtd_part *part = mtd_to_part(mtd);
994c8409 260 return part->master->_lock(part->master, ofs + part->offset, len);
1da177e4
LT
261}
262
69423d99 263static int part_unlock(struct mtd_info *mtd, loff_t ofs, uint64_t len)
1da177e4 264{
2524534d 265 struct mtd_part *part = mtd_to_part(mtd);
994c8409 266 return part->master->_unlock(part->master, ofs + part->offset, len);
1da177e4
LT
267}
268
9938424f
RC
269static int part_is_locked(struct mtd_info *mtd, loff_t ofs, uint64_t len)
270{
2524534d 271 struct mtd_part *part = mtd_to_part(mtd);
994c8409 272 return part->master->_is_locked(part->master, ofs + part->offset, len);
9938424f
RC
273}
274
1da177e4
LT
275static void part_sync(struct mtd_info *mtd)
276{
2524534d 277 struct mtd_part *part = mtd_to_part(mtd);
994c8409 278 part->master->_sync(part->master);
1da177e4
LT
279}
280
281static int part_suspend(struct mtd_info *mtd)
282{
2524534d 283 struct mtd_part *part = mtd_to_part(mtd);
994c8409 284 return part->master->_suspend(part->master);
1da177e4
LT
285}
286
287static void part_resume(struct mtd_info *mtd)
288{
2524534d 289 struct mtd_part *part = mtd_to_part(mtd);
994c8409 290 part->master->_resume(part->master);
1da177e4
LT
291}
292
8471bb73
EG
293static int part_block_isreserved(struct mtd_info *mtd, loff_t ofs)
294{
2524534d 295 struct mtd_part *part = mtd_to_part(mtd);
8471bb73
EG
296 ofs += part->offset;
297 return part->master->_block_isreserved(part->master, ofs);
298}
299
b33a2887 300static int part_block_isbad(struct mtd_info *mtd, loff_t ofs)
1da177e4 301{
2524534d 302 struct mtd_part *part = mtd_to_part(mtd);
1da177e4 303 ofs += part->offset;
994c8409 304 return part->master->_block_isbad(part->master, ofs);
1da177e4
LT
305}
306
b33a2887 307static int part_block_markbad(struct mtd_info *mtd, loff_t ofs)
1da177e4 308{
2524534d 309 struct mtd_part *part = mtd_to_part(mtd);
f1a28c02
TG
310 int res;
311
1da177e4 312 ofs += part->offset;
994c8409 313 res = part->master->_block_markbad(part->master, ofs);
f1a28c02
TG
314 if (!res)
315 mtd->ecc_stats.badblocks++;
316 return res;
1da177e4
LT
317}
318
5e149073
RW
319static int part_get_device(struct mtd_info *mtd)
320{
321 struct mtd_part *part = mtd_to_part(mtd);
322 return part->master->_get_device(part->master);
323}
324
325static void part_put_device(struct mtd_info *mtd)
326{
327 struct mtd_part *part = mtd_to_part(mtd);
328 part->master->_put_device(part->master);
329}
330
adbbc3bc
BB
331static int part_ooblayout_ecc(struct mtd_info *mtd, int section,
332 struct mtd_oob_region *oobregion)
333{
334 struct mtd_part *part = mtd_to_part(mtd);
335
336 return mtd_ooblayout_ecc(part->master, section, oobregion);
337}
338
339static int part_ooblayout_free(struct mtd_info *mtd, int section,
340 struct mtd_oob_region *oobregion)
341{
342 struct mtd_part *part = mtd_to_part(mtd);
343
344 return mtd_ooblayout_free(part->master, section, oobregion);
345}
346
347static const struct mtd_ooblayout_ops part_ooblayout_ops = {
348 .ecc = part_ooblayout_ecc,
349 .free = part_ooblayout_free,
350};
351
5daa7b21
RT
352static inline void free_partition(struct mtd_part *p)
353{
354 kfree(p->mtd.name);
355 kfree(p);
356}
357
97894cda
TG
358/*
359 * This function unregisters and destroy all slave MTD objects which are
1da177e4
LT
360 * attached to the given master MTD object.
361 */
362
363int del_mtd_partitions(struct mtd_info *master)
364{
71a928c0 365 struct mtd_part *slave, *next;
5daa7b21 366 int ret, err = 0;
1da177e4 367
5daa7b21 368 mutex_lock(&mtd_partitions_mutex);
71a928c0 369 list_for_each_entry_safe(slave, next, &mtd_partitions, list)
1da177e4 370 if (slave->master == master) {
5daa7b21
RT
371 ret = del_mtd_device(&slave->mtd);
372 if (ret < 0) {
373 err = ret;
374 continue;
375 }
71a928c0 376 list_del(&slave->list);
5daa7b21 377 free_partition(slave);
1da177e4 378 }
5daa7b21 379 mutex_unlock(&mtd_partitions_mutex);
1da177e4 380
5daa7b21 381 return err;
1da177e4
LT
382}
383
5daa7b21
RT
384static struct mtd_part *allocate_partition(struct mtd_info *master,
385 const struct mtd_partition *part, int partno,
386 uint64_t cur_offset)
7788ba71
AN
387{
388 struct mtd_part *slave;
5daa7b21 389 char *name;
7788ba71
AN
390
391 /* allocate the partition structure */
b33a2887 392 slave = kzalloc(sizeof(*slave), GFP_KERNEL);
5daa7b21
RT
393 name = kstrdup(part->name, GFP_KERNEL);
394 if (!name || !slave) {
b33a2887 395 printk(KERN_ERR"memory allocation error while creating partitions for \"%s\"\n",
5daa7b21
RT
396 master->name);
397 kfree(name);
398 kfree(slave);
399 return ERR_PTR(-ENOMEM);
7788ba71 400 }
7788ba71
AN
401
402 /* set up the MTD object for this partition */
403 slave->mtd.type = master->type;
404 slave->mtd.flags = master->flags & ~part->mask_flags;
405 slave->mtd.size = part->size;
406 slave->mtd.writesize = master->writesize;
7fa33ac0 407 slave->mtd.writebufsize = master->writebufsize;
7788ba71
AN
408 slave->mtd.oobsize = master->oobsize;
409 slave->mtd.oobavail = master->oobavail;
410 slave->mtd.subpage_sft = master->subpage_sft;
477b0229 411 slave->mtd.pairing = master->pairing;
7788ba71 412
5daa7b21 413 slave->mtd.name = name;
7788ba71
AN
414 slave->mtd.owner = master->owner;
415
727dc612
DE
416 /* NOTE: Historically, we didn't arrange MTDs as a tree out of
417 * concern for showing the same data in multiple partitions.
418 * However, it is very useful to have the master node present,
419 * so the MTD_PARTITIONED_MASTER option allows that. The master
420 * will have device nodes etc only if this is set, so make the
421 * parent conditional on that option. Note, this is a way to
422 * distinguish between the master and the partition in sysfs.
1f24b5a8 423 */
727dc612
DE
424 slave->mtd.dev.parent = IS_ENABLED(CONFIG_MTD_PARTITIONED_MASTER) ?
425 &master->dev :
426 master->dev.parent;
1f24b5a8 427
3c3c10bb
AB
428 slave->mtd._read = part_read;
429 slave->mtd._write = part_write;
7788ba71 430
3c3c10bb
AB
431 if (master->_panic_write)
432 slave->mtd._panic_write = part_panic_write;
7788ba71 433
3c3c10bb
AB
434 if (master->_point && master->_unpoint) {
435 slave->mtd._point = part_point;
436 slave->mtd._unpoint = part_unpoint;
7788ba71
AN
437 }
438
3c3c10bb
AB
439 if (master->_get_unmapped_area)
440 slave->mtd._get_unmapped_area = part_get_unmapped_area;
441 if (master->_read_oob)
442 slave->mtd._read_oob = part_read_oob;
443 if (master->_write_oob)
444 slave->mtd._write_oob = part_write_oob;
445 if (master->_read_user_prot_reg)
446 slave->mtd._read_user_prot_reg = part_read_user_prot_reg;
447 if (master->_read_fact_prot_reg)
448 slave->mtd._read_fact_prot_reg = part_read_fact_prot_reg;
449 if (master->_write_user_prot_reg)
450 slave->mtd._write_user_prot_reg = part_write_user_prot_reg;
451 if (master->_lock_user_prot_reg)
452 slave->mtd._lock_user_prot_reg = part_lock_user_prot_reg;
453 if (master->_get_user_prot_info)
454 slave->mtd._get_user_prot_info = part_get_user_prot_info;
455 if (master->_get_fact_prot_info)
456 slave->mtd._get_fact_prot_info = part_get_fact_prot_info;
457 if (master->_sync)
458 slave->mtd._sync = part_sync;
459 if (!partno && !master->dev.class && master->_suspend &&
460 master->_resume) {
461 slave->mtd._suspend = part_suspend;
462 slave->mtd._resume = part_resume;
7788ba71 463 }
3c3c10bb
AB
464 if (master->_writev)
465 slave->mtd._writev = part_writev;
466 if (master->_lock)
467 slave->mtd._lock = part_lock;
468 if (master->_unlock)
469 slave->mtd._unlock = part_unlock;
470 if (master->_is_locked)
471 slave->mtd._is_locked = part_is_locked;
8471bb73
EG
472 if (master->_block_isreserved)
473 slave->mtd._block_isreserved = part_block_isreserved;
3c3c10bb
AB
474 if (master->_block_isbad)
475 slave->mtd._block_isbad = part_block_isbad;
476 if (master->_block_markbad)
477 slave->mtd._block_markbad = part_block_markbad;
5e149073
RW
478
479 if (master->_get_device)
480 slave->mtd._get_device = part_get_device;
481 if (master->_put_device)
482 slave->mtd._put_device = part_put_device;
483
3c3c10bb 484 slave->mtd._erase = part_erase;
7788ba71
AN
485 slave->master = master;
486 slave->offset = part->offset;
7788ba71
AN
487
488 if (slave->offset == MTDPART_OFS_APPEND)
489 slave->offset = cur_offset;
490 if (slave->offset == MTDPART_OFS_NXTBLK) {
491 slave->offset = cur_offset;
69423d99 492 if (mtd_mod_by_eb(cur_offset, master) != 0) {
7788ba71 493 /* Round up to next erasesize */
69423d99 494 slave->offset = (mtd_div_by_eb(cur_offset, master) + 1) * master->erasesize;
7788ba71 495 printk(KERN_NOTICE "Moving partition %d: "
69423d99
AH
496 "0x%012llx -> 0x%012llx\n", partno,
497 (unsigned long long)cur_offset, (unsigned long long)slave->offset);
7788ba71
AN
498 }
499 }
1a31368b
DES
500 if (slave->offset == MTDPART_OFS_RETAIN) {
501 slave->offset = cur_offset;
502 if (master->size - slave->offset >= slave->mtd.size) {
503 slave->mtd.size = master->size - slave->offset
504 - slave->mtd.size;
505 } else {
506 printk(KERN_ERR "mtd partition \"%s\" doesn't have enough space: %#llx < %#llx, disabled\n",
507 part->name, master->size - slave->offset,
508 slave->mtd.size);
509 /* register to preserve ordering */
510 goto out_register;
511 }
512 }
7788ba71
AN
513 if (slave->mtd.size == MTDPART_SIZ_FULL)
514 slave->mtd.size = master->size - slave->offset;
515
69423d99
AH
516 printk(KERN_NOTICE "0x%012llx-0x%012llx : \"%s\"\n", (unsigned long long)slave->offset,
517 (unsigned long long)(slave->offset + slave->mtd.size), slave->mtd.name);
7788ba71
AN
518
519 /* let's do some sanity checks */
520 if (slave->offset >= master->size) {
f636ffb4 521 /* let's register it anyway to preserve ordering */
7788ba71
AN
522 slave->offset = 0;
523 slave->mtd.size = 0;
b33a2887 524 printk(KERN_ERR"mtd: partition \"%s\" is out of reach -- disabled\n",
7788ba71 525 part->name);
f636ffb4 526 goto out_register;
7788ba71
AN
527 }
528 if (slave->offset + slave->mtd.size > master->size) {
529 slave->mtd.size = master->size - slave->offset;
69423d99
AH
530 printk(KERN_WARNING"mtd: partition \"%s\" extends beyond the end of device \"%s\" -- size truncated to %#llx\n",
531 part->name, master->name, (unsigned long long)slave->mtd.size);
7788ba71 532 }
b33a2887 533 if (master->numeraseregions > 1) {
7788ba71 534 /* Deal with variable erase size stuff */
6910c136 535 int i, max = master->numeraseregions;
69423d99 536 u64 end = slave->offset + slave->mtd.size;
7788ba71
AN
537 struct mtd_erase_region_info *regions = master->eraseregions;
538
6910c136
AN
539 /* Find the first erase regions which is part of this
540 * partition. */
541 for (i = 0; i < max && regions[i].offset <= slave->offset; i++)
7788ba71 542 ;
6910c136 543 /* The loop searched for the region _behind_ the first one */
a57ca046
RK
544 if (i > 0)
545 i--;
7788ba71 546
6910c136
AN
547 /* Pick biggest erasesize */
548 for (; i < max && regions[i].offset < end; i++) {
7788ba71
AN
549 if (slave->mtd.erasesize < regions[i].erasesize) {
550 slave->mtd.erasesize = regions[i].erasesize;
551 }
552 }
6910c136 553 BUG_ON(slave->mtd.erasesize == 0);
7788ba71
AN
554 } else {
555 /* Single erase size */
556 slave->mtd.erasesize = master->erasesize;
557 }
558
559 if ((slave->mtd.flags & MTD_WRITEABLE) &&
69423d99 560 mtd_mod_by_eb(slave->offset, &slave->mtd)) {
7788ba71 561 /* Doesn't start on a boundary of major erase size */
b33a2887
AN
562 /* FIXME: Let it be writable if it is on a boundary of
563 * _minor_ erase size though */
7788ba71 564 slave->mtd.flags &= ~MTD_WRITEABLE;
b33a2887 565 printk(KERN_WARNING"mtd: partition \"%s\" doesn't start on an erase block boundary -- force read-only\n",
7788ba71
AN
566 part->name);
567 }
568 if ((slave->mtd.flags & MTD_WRITEABLE) &&
69423d99 569 mtd_mod_by_eb(slave->mtd.size, &slave->mtd)) {
7788ba71 570 slave->mtd.flags &= ~MTD_WRITEABLE;
b33a2887 571 printk(KERN_WARNING"mtd: partition \"%s\" doesn't end on an erase block -- force read-only\n",
7788ba71
AN
572 part->name);
573 }
574
adbbc3bc 575 mtd_set_ooblayout(&slave->mtd, &part_ooblayout_ops);
bdf69c47 576 slave->mtd.ecc_step_size = master->ecc_step_size;
6a918bad 577 slave->mtd.ecc_strength = master->ecc_strength;
d062d4ed
MD
578 slave->mtd.bitflip_threshold = master->bitflip_threshold;
579
3c3c10bb 580 if (master->_block_isbad) {
69423d99 581 uint64_t offs = 0;
7788ba71 582
b33a2887 583 while (offs < slave->mtd.size) {
fdf43a42
EG
584 if (mtd_block_isreserved(master, offs + slave->offset))
585 slave->mtd.ecc_stats.bbtblocks++;
586 else if (mtd_block_isbad(master, offs + slave->offset))
7788ba71
AN
587 slave->mtd.ecc_stats.badblocks++;
588 offs += slave->mtd.erasesize;
589 }
590 }
591
f636ffb4 592out_register:
7788ba71
AN
593 return slave;
594}
595
a62c24d7
DE
596static ssize_t mtd_partition_offset_show(struct device *dev,
597 struct device_attribute *attr, char *buf)
598{
599 struct mtd_info *mtd = dev_get_drvdata(dev);
2524534d 600 struct mtd_part *part = mtd_to_part(mtd);
a62c24d7
DE
601 return snprintf(buf, PAGE_SIZE, "%lld\n", part->offset);
602}
603
604static DEVICE_ATTR(offset, S_IRUGO, mtd_partition_offset_show, NULL);
605
606static const struct attribute *mtd_partition_attrs[] = {
607 &dev_attr_offset.attr,
608 NULL
609};
610
611static int mtd_add_partition_attrs(struct mtd_part *new)
612{
613 int ret = sysfs_create_files(&new->mtd.dev.kobj, mtd_partition_attrs);
614 if (ret)
615 printk(KERN_WARNING
616 "mtd: failed to create partition attrs, err=%d\n", ret);
617 return ret;
618}
619
26a6d240 620int mtd_add_partition(struct mtd_info *master, const char *name,
5daa7b21
RT
621 long long offset, long long length)
622{
623 struct mtd_partition part;
3a434f66 624 struct mtd_part *new;
5daa7b21
RT
625 int ret = 0;
626
627 /* the direct offset is expected */
628 if (offset == MTDPART_OFS_APPEND ||
629 offset == MTDPART_OFS_NXTBLK)
630 return -EINVAL;
631
632 if (length == MTDPART_SIZ_FULL)
633 length = master->size - offset;
634
635 if (length <= 0)
636 return -EINVAL;
637
93867233 638 memset(&part, 0, sizeof(part));
5daa7b21
RT
639 part.name = name;
640 part.size = length;
641 part.offset = offset;
5daa7b21
RT
642
643 new = allocate_partition(master, &part, -1, offset);
644 if (IS_ERR(new))
645 return PTR_ERR(new);
646
5daa7b21 647 mutex_lock(&mtd_partitions_mutex);
5daa7b21
RT
648 list_add(&new->list, &mtd_partitions);
649 mutex_unlock(&mtd_partitions_mutex);
650
651 add_mtd_device(&new->mtd);
652
a62c24d7
DE
653 mtd_add_partition_attrs(new);
654
5daa7b21 655 return ret;
5daa7b21
RT
656}
657EXPORT_SYMBOL_GPL(mtd_add_partition);
658
659int mtd_del_partition(struct mtd_info *master, int partno)
660{
661 struct mtd_part *slave, *next;
662 int ret = -EINVAL;
663
664 mutex_lock(&mtd_partitions_mutex);
665 list_for_each_entry_safe(slave, next, &mtd_partitions, list)
666 if ((slave->master == master) &&
667 (slave->mtd.index == partno)) {
a62c24d7
DE
668 sysfs_remove_files(&slave->mtd.dev.kobj,
669 mtd_partition_attrs);
5daa7b21
RT
670 ret = del_mtd_device(&slave->mtd);
671 if (ret < 0)
672 break;
673
674 list_del(&slave->list);
675 free_partition(slave);
676 break;
677 }
678 mutex_unlock(&mtd_partitions_mutex);
679
680 return ret;
681}
682EXPORT_SYMBOL_GPL(mtd_del_partition);
683
1da177e4
LT
684/*
685 * This function, given a master MTD object and a partition table, creates
686 * and registers slave MTD objects which are bound to the master according to
687 * the partition definitions.
1f24b5a8 688 *
727dc612
DE
689 * For historical reasons, this function's caller only registers the master
690 * if the MTD_PARTITIONED_MASTER config option is set.
1da177e4
LT
691 */
692
97894cda 693int add_mtd_partitions(struct mtd_info *master,
1da177e4
LT
694 const struct mtd_partition *parts,
695 int nbparts)
696{
697 struct mtd_part *slave;
69423d99 698 uint64_t cur_offset = 0;
1da177e4
LT
699 int i;
700
b33a2887 701 printk(KERN_NOTICE "Creating %d MTD partitions on \"%s\":\n", nbparts, master->name);
1da177e4
LT
702
703 for (i = 0; i < nbparts; i++) {
5daa7b21 704 slave = allocate_partition(master, parts + i, i, cur_offset);
e5bae867
BB
705 if (IS_ERR(slave)) {
706 del_mtd_partitions(master);
5daa7b21 707 return PTR_ERR(slave);
e5bae867 708 }
5daa7b21
RT
709
710 mutex_lock(&mtd_partitions_mutex);
711 list_add(&slave->list, &mtd_partitions);
712 mutex_unlock(&mtd_partitions_mutex);
713
714 add_mtd_device(&slave->mtd);
a62c24d7 715 mtd_add_partition_attrs(slave);
5daa7b21 716
1da177e4 717 cur_offset = slave->offset + slave->mtd.size;
1da177e4
LT
718 }
719
720 return 0;
721}
1da177e4
LT
722
723static DEFINE_SPINLOCK(part_parser_lock);
724static LIST_HEAD(part_parsers);
725
5531ae48 726static struct mtd_part_parser *mtd_part_parser_get(const char *name)
1da177e4 727{
71a928c0 728 struct mtd_part_parser *p, *ret = NULL;
1da177e4 729
71a928c0 730 spin_lock(&part_parser_lock);
1da177e4 731
71a928c0 732 list_for_each_entry(p, &part_parsers, list)
1da177e4
LT
733 if (!strcmp(p->name, name) && try_module_get(p->owner)) {
734 ret = p;
735 break;
736 }
71a928c0 737
1da177e4
LT
738 spin_unlock(&part_parser_lock);
739
740 return ret;
741}
742
5531ae48
BN
743static inline void mtd_part_parser_put(const struct mtd_part_parser *p)
744{
745 module_put(p->owner);
746}
953b3bd1 747
adc83bf8
BN
748/*
749 * Many partition parsers just expected the core to kfree() all their data in
750 * one chunk. Do that by default.
751 */
752static void mtd_part_parser_cleanup_default(const struct mtd_partition *pparts,
753 int nr_parts)
754{
755 kfree(pparts);
756}
757
b9eab011 758int __register_mtd_parser(struct mtd_part_parser *p, struct module *owner)
1da177e4 759{
b9eab011
BN
760 p->owner = owner;
761
adc83bf8
BN
762 if (!p->cleanup)
763 p->cleanup = &mtd_part_parser_cleanup_default;
764
1da177e4
LT
765 spin_lock(&part_parser_lock);
766 list_add(&p->list, &part_parsers);
767 spin_unlock(&part_parser_lock);
b9eab011
BN
768
769 return 0;
1da177e4 770}
b9eab011 771EXPORT_SYMBOL_GPL(__register_mtd_parser);
1da177e4 772
cf3b2b1e 773void deregister_mtd_parser(struct mtd_part_parser *p)
1da177e4
LT
774{
775 spin_lock(&part_parser_lock);
776 list_del(&p->list);
777 spin_unlock(&part_parser_lock);
1da177e4 778}
b33a2887 779EXPORT_SYMBOL_GPL(deregister_mtd_parser);
1da177e4 780
ad274cec
AB
781/*
782 * Do not forget to update 'parse_mtd_partitions()' kerneldoc comment if you
783 * are changing this array!
784 */
ccef4dcc 785static const char * const default_mtd_part_types[] = {
d26c87d6
DES
786 "cmdlinepart",
787 "ofpart",
788 NULL
789};
5c4eefbd 790
ad274cec
AB
791/**
792 * parse_mtd_partitions - parse MTD partitions
793 * @master: the master partition (describes whole MTD device)
794 * @types: names of partition parsers to try or %NULL
07fd2f87 795 * @pparts: info about partitions found is returned here
c7975330 796 * @data: MTD partition parser-specific data
ad274cec
AB
797 *
798 * This function tries to find partition on MTD device @master. It uses MTD
799 * partition parsers, specified in @types. However, if @types is %NULL, then
800 * the default list of parsers is used. The default list contains only the
d26c87d6 801 * "cmdlinepart" and "ofpart" parsers ATM.
c51803dd
HS
802 * Note: If there are more then one parser in @types, the kernel only takes the
803 * partitions parsed out by the first parser.
ad274cec
AB
804 *
805 * This function may return:
806 * o a negative error code in case of failure
07fd2f87 807 * o zero otherwise, and @pparts will describe the partitions, number of
adc83bf8
BN
808 * partitions, and the parser which parsed them. Caller must release
809 * resources with mtd_part_parser_cleanup() when finished with the returned
810 * data.
ad274cec 811 */
26a47346 812int parse_mtd_partitions(struct mtd_info *master, const char *const *types,
07fd2f87 813 struct mtd_partitions *pparts,
c7975330 814 struct mtd_part_parser_data *data)
1da177e4
LT
815{
816 struct mtd_part_parser *parser;
5a2415b0 817 int ret, err = 0;
97894cda 818
5c4eefbd
DES
819 if (!types)
820 types = default_mtd_part_types;
821
5a2415b0 822 for ( ; *types; types++) {
8e2c992b 823 pr_debug("%s: parsing partitions %s\n", master->name, *types);
5531ae48 824 parser = mtd_part_parser_get(*types);
1da177e4 825 if (!parser && !request_module("%s", *types))
5531ae48 826 parser = mtd_part_parser_get(*types);
8e2c992b
MS
827 pr_debug("%s: got parser %s\n", master->name,
828 parser ? parser->name : NULL);
7c802fbd 829 if (!parser)
1da177e4 830 continue;
07fd2f87 831 ret = (*parser->parse_fn)(master, &pparts->parts, data);
8e2c992b
MS
832 pr_debug("%s: parser %s: %i\n",
833 master->name, parser->name, ret);
1da177e4 834 if (ret > 0) {
97894cda 835 printk(KERN_NOTICE "%d %s partitions found on MTD device %s\n",
1da177e4 836 ret, parser->name, master->name);
07fd2f87
BN
837 pparts->nr_parts = ret;
838 pparts->parser = parser;
839 return 0;
1da177e4 840 }
adc83bf8 841 mtd_part_parser_put(parser);
5a2415b0
BN
842 /*
843 * Stash the first error we see; only report it if no parser
844 * succeeds
845 */
846 if (ret < 0 && !err)
847 err = ret;
1da177e4 848 }
5a2415b0 849 return err;
1da177e4 850}
5daa7b21 851
adc83bf8
BN
852void mtd_part_parser_cleanup(struct mtd_partitions *parts)
853{
854 const struct mtd_part_parser *parser;
855
856 if (!parts)
857 return;
858
859 parser = parts->parser;
860 if (parser) {
861 if (parser->cleanup)
862 parser->cleanup(parts->parts, parts->nr_parts);
863
864 mtd_part_parser_put(parser);
865 }
866}
867
5dee4674 868int mtd_is_partition(const struct mtd_info *mtd)
5daa7b21
RT
869{
870 struct mtd_part *part;
a7e93dcd 871 int ispart = 0;
5daa7b21
RT
872
873 mutex_lock(&mtd_partitions_mutex);
874 list_for_each_entry(part, &mtd_partitions, list)
875 if (&part->mtd == mtd) {
a7e93dcd 876 ispart = 1;
5daa7b21
RT
877 break;
878 }
879 mutex_unlock(&mtd_partitions_mutex);
880
a7e93dcd 881 return ispart;
5daa7b21 882}
a7e93dcd 883EXPORT_SYMBOL_GPL(mtd_is_partition);
62082e56
RG
884
885/* Returns the size of the entire flash chip */
886uint64_t mtd_get_device_size(const struct mtd_info *mtd)
887{
888 if (!mtd_is_partition(mtd))
889 return mtd->size;
890
2524534d 891 return mtd_to_part(mtd)->master->size;
62082e56
RG
892}
893EXPORT_SYMBOL_GPL(mtd_get_device_size);