xref: /openbmc/u-boot/drivers/mtd/ubi/kapi.c (revision e8f80a5a)
1*83d290c5STom Rini // SPDX-License-Identifier: GPL-2.0+
22d262c48SKyungmin Park /*
32d262c48SKyungmin Park  * Copyright (c) International Business Machines Corp., 2006
42d262c48SKyungmin Park  *
52d262c48SKyungmin Park  * Author: Artem Bityutskiy (Битюцкий Артём)
62d262c48SKyungmin Park  */
72d262c48SKyungmin Park 
82d262c48SKyungmin Park /* This file mostly implements UBI kernel API functions */
92d262c48SKyungmin Park 
10ff94bc40SHeiko Schocher #ifndef __UBOOT__
112d262c48SKyungmin Park #include <linux/module.h>
12ff94bc40SHeiko Schocher #include <linux/slab.h>
13ff94bc40SHeiko Schocher #include <linux/namei.h>
14ff94bc40SHeiko Schocher #include <linux/fs.h>
152d262c48SKyungmin Park #include <asm/div64.h>
16ff94bc40SHeiko Schocher #else
172d262c48SKyungmin Park #include <ubi_uboot.h>
18ff94bc40SHeiko Schocher #endif
19ff94bc40SHeiko Schocher #include <linux/err.h>
20ff94bc40SHeiko Schocher 
212d262c48SKyungmin Park #include "ubi.h"
222d262c48SKyungmin Park 
232d262c48SKyungmin Park /**
24ff94bc40SHeiko Schocher  * ubi_do_get_device_info - get information about UBI device.
25ff94bc40SHeiko Schocher  * @ubi: UBI device description object
26ff94bc40SHeiko Schocher  * @di: the information is stored here
27ff94bc40SHeiko Schocher  *
28ff94bc40SHeiko Schocher  * This function is the same as 'ubi_get_device_info()', but it assumes the UBI
29ff94bc40SHeiko Schocher  * device is locked and cannot disappear.
30ff94bc40SHeiko Schocher  */
ubi_do_get_device_info(struct ubi_device * ubi,struct ubi_device_info * di)31ff94bc40SHeiko Schocher void ubi_do_get_device_info(struct ubi_device *ubi, struct ubi_device_info *di)
32ff94bc40SHeiko Schocher {
33ff94bc40SHeiko Schocher 	di->ubi_num = ubi->ubi_num;
34ff94bc40SHeiko Schocher 	di->leb_size = ubi->leb_size;
35ff94bc40SHeiko Schocher 	di->leb_start = ubi->leb_start;
36ff94bc40SHeiko Schocher 	di->min_io_size = ubi->min_io_size;
37ff94bc40SHeiko Schocher 	di->max_write_size = ubi->max_write_size;
38ff94bc40SHeiko Schocher 	di->ro_mode = ubi->ro_mode;
39ff94bc40SHeiko Schocher #ifndef __UBOOT__
40ff94bc40SHeiko Schocher 	di->cdev = ubi->cdev.dev;
41ff94bc40SHeiko Schocher #endif
42ff94bc40SHeiko Schocher }
43ff94bc40SHeiko Schocher EXPORT_SYMBOL_GPL(ubi_do_get_device_info);
44ff94bc40SHeiko Schocher 
45ff94bc40SHeiko Schocher /**
462d262c48SKyungmin Park  * ubi_get_device_info - get information about UBI device.
472d262c48SKyungmin Park  * @ubi_num: UBI device number
482d262c48SKyungmin Park  * @di: the information is stored here
492d262c48SKyungmin Park  *
502d262c48SKyungmin Park  * This function returns %0 in case of success, %-EINVAL if the UBI device
512d262c48SKyungmin Park  * number is invalid, and %-ENODEV if there is no such UBI device.
522d262c48SKyungmin Park  */
ubi_get_device_info(int ubi_num,struct ubi_device_info * di)532d262c48SKyungmin Park int ubi_get_device_info(int ubi_num, struct ubi_device_info *di)
542d262c48SKyungmin Park {
552d262c48SKyungmin Park 	struct ubi_device *ubi;
562d262c48SKyungmin Park 
572d262c48SKyungmin Park 	if (ubi_num < 0 || ubi_num >= UBI_MAX_DEVICES)
582d262c48SKyungmin Park 		return -EINVAL;
592d262c48SKyungmin Park 	ubi = ubi_get_device(ubi_num);
602d262c48SKyungmin Park 	if (!ubi)
612d262c48SKyungmin Park 		return -ENODEV;
62ff94bc40SHeiko Schocher 	ubi_do_get_device_info(ubi, di);
632d262c48SKyungmin Park 	ubi_put_device(ubi);
642d262c48SKyungmin Park 	return 0;
652d262c48SKyungmin Park }
662d262c48SKyungmin Park EXPORT_SYMBOL_GPL(ubi_get_device_info);
672d262c48SKyungmin Park 
682d262c48SKyungmin Park /**
69ff94bc40SHeiko Schocher  * ubi_do_get_volume_info - get information about UBI volume.
70ff94bc40SHeiko Schocher  * @ubi: UBI device description object
71ff94bc40SHeiko Schocher  * @vol: volume description object
722d262c48SKyungmin Park  * @vi: the information is stored here
732d262c48SKyungmin Park  */
ubi_do_get_volume_info(struct ubi_device * ubi,struct ubi_volume * vol,struct ubi_volume_info * vi)74ff94bc40SHeiko Schocher void ubi_do_get_volume_info(struct ubi_device *ubi, struct ubi_volume *vol,
752d262c48SKyungmin Park 			    struct ubi_volume_info *vi)
762d262c48SKyungmin Park {
772d262c48SKyungmin Park 	vi->vol_id = vol->vol_id;
782d262c48SKyungmin Park 	vi->ubi_num = ubi->ubi_num;
792d262c48SKyungmin Park 	vi->size = vol->reserved_pebs;
802d262c48SKyungmin Park 	vi->used_bytes = vol->used_bytes;
812d262c48SKyungmin Park 	vi->vol_type = vol->vol_type;
822d262c48SKyungmin Park 	vi->corrupted = vol->corrupted;
832d262c48SKyungmin Park 	vi->upd_marker = vol->upd_marker;
842d262c48SKyungmin Park 	vi->alignment = vol->alignment;
852d262c48SKyungmin Park 	vi->usable_leb_size = vol->usable_leb_size;
862d262c48SKyungmin Park 	vi->name_len = vol->name_len;
872d262c48SKyungmin Park 	vi->name = vol->name;
882d262c48SKyungmin Park 	vi->cdev = vol->cdev.dev;
892d262c48SKyungmin Park }
90ff94bc40SHeiko Schocher 
91ff94bc40SHeiko Schocher /**
92ff94bc40SHeiko Schocher  * ubi_get_volume_info - get information about UBI volume.
93ff94bc40SHeiko Schocher  * @desc: volume descriptor
94ff94bc40SHeiko Schocher  * @vi: the information is stored here
95ff94bc40SHeiko Schocher  */
ubi_get_volume_info(struct ubi_volume_desc * desc,struct ubi_volume_info * vi)96ff94bc40SHeiko Schocher void ubi_get_volume_info(struct ubi_volume_desc *desc,
97ff94bc40SHeiko Schocher 			 struct ubi_volume_info *vi)
98ff94bc40SHeiko Schocher {
99ff94bc40SHeiko Schocher 	ubi_do_get_volume_info(desc->vol->ubi, desc->vol, vi);
100ff94bc40SHeiko Schocher }
1012d262c48SKyungmin Park EXPORT_SYMBOL_GPL(ubi_get_volume_info);
1022d262c48SKyungmin Park 
1032d262c48SKyungmin Park /**
1042d262c48SKyungmin Park  * ubi_open_volume - open UBI volume.
1052d262c48SKyungmin Park  * @ubi_num: UBI device number
1062d262c48SKyungmin Park  * @vol_id: volume ID
1072d262c48SKyungmin Park  * @mode: open mode
1082d262c48SKyungmin Park  *
1092d262c48SKyungmin Park  * The @mode parameter specifies if the volume should be opened in read-only
1102d262c48SKyungmin Park  * mode, read-write mode, or exclusive mode. The exclusive mode guarantees that
1112d262c48SKyungmin Park  * nobody else will be able to open this volume. UBI allows to have many volume
1122d262c48SKyungmin Park  * readers and one writer at a time.
1132d262c48SKyungmin Park  *
1142d262c48SKyungmin Park  * If a static volume is being opened for the first time since boot, it will be
1152d262c48SKyungmin Park  * checked by this function, which means it will be fully read and the CRC
1162d262c48SKyungmin Park  * checksum of each logical eraseblock will be checked.
1172d262c48SKyungmin Park  *
1182d262c48SKyungmin Park  * This function returns volume descriptor in case of success and a negative
1192d262c48SKyungmin Park  * error code in case of failure.
1202d262c48SKyungmin Park  */
ubi_open_volume(int ubi_num,int vol_id,int mode)1212d262c48SKyungmin Park struct ubi_volume_desc *ubi_open_volume(int ubi_num, int vol_id, int mode)
1222d262c48SKyungmin Park {
1232d262c48SKyungmin Park 	int err;
1242d262c48SKyungmin Park 	struct ubi_volume_desc *desc;
1252d262c48SKyungmin Park 	struct ubi_device *ubi;
1262d262c48SKyungmin Park 	struct ubi_volume *vol;
1272d262c48SKyungmin Park 
128ff94bc40SHeiko Schocher 	dbg_gen("open device %d, volume %d, mode %d", ubi_num, vol_id, mode);
1292d262c48SKyungmin Park 
1302d262c48SKyungmin Park 	if (ubi_num < 0 || ubi_num >= UBI_MAX_DEVICES)
1312d262c48SKyungmin Park 		return ERR_PTR(-EINVAL);
1322d262c48SKyungmin Park 
1332d262c48SKyungmin Park 	if (mode != UBI_READONLY && mode != UBI_READWRITE &&
1340195a7bbSHeiko Schocher 	    mode != UBI_EXCLUSIVE && mode != UBI_METAONLY)
1352d262c48SKyungmin Park 		return ERR_PTR(-EINVAL);
1362d262c48SKyungmin Park 
1372d262c48SKyungmin Park 	/*
1382d262c48SKyungmin Park 	 * First of all, we have to get the UBI device to prevent its removal.
1392d262c48SKyungmin Park 	 */
1402d262c48SKyungmin Park 	ubi = ubi_get_device(ubi_num);
1412d262c48SKyungmin Park 	if (!ubi)
1422d262c48SKyungmin Park 		return ERR_PTR(-ENODEV);
1432d262c48SKyungmin Park 
1442d262c48SKyungmin Park 	if (vol_id < 0 || vol_id >= ubi->vtbl_slots) {
1452d262c48SKyungmin Park 		err = -EINVAL;
1462d262c48SKyungmin Park 		goto out_put_ubi;
1472d262c48SKyungmin Park 	}
1482d262c48SKyungmin Park 
1492d262c48SKyungmin Park 	desc = kmalloc(sizeof(struct ubi_volume_desc), GFP_KERNEL);
1502d262c48SKyungmin Park 	if (!desc) {
1512d262c48SKyungmin Park 		err = -ENOMEM;
1522d262c48SKyungmin Park 		goto out_put_ubi;
1532d262c48SKyungmin Park 	}
1542d262c48SKyungmin Park 
1552d262c48SKyungmin Park 	err = -ENODEV;
1562d262c48SKyungmin Park 	if (!try_module_get(THIS_MODULE))
1572d262c48SKyungmin Park 		goto out_free;
1582d262c48SKyungmin Park 
1592d262c48SKyungmin Park 	spin_lock(&ubi->volumes_lock);
1602d262c48SKyungmin Park 	vol = ubi->volumes[vol_id];
1612d262c48SKyungmin Park 	if (!vol)
1622d262c48SKyungmin Park 		goto out_unlock;
1632d262c48SKyungmin Park 
1642d262c48SKyungmin Park 	err = -EBUSY;
1652d262c48SKyungmin Park 	switch (mode) {
1662d262c48SKyungmin Park 	case UBI_READONLY:
1672d262c48SKyungmin Park 		if (vol->exclusive)
1682d262c48SKyungmin Park 			goto out_unlock;
1692d262c48SKyungmin Park 		vol->readers += 1;
1702d262c48SKyungmin Park 		break;
1712d262c48SKyungmin Park 
1722d262c48SKyungmin Park 	case UBI_READWRITE:
1732d262c48SKyungmin Park 		if (vol->exclusive || vol->writers > 0)
1742d262c48SKyungmin Park 			goto out_unlock;
1752d262c48SKyungmin Park 		vol->writers += 1;
1762d262c48SKyungmin Park 		break;
1772d262c48SKyungmin Park 
1782d262c48SKyungmin Park 	case UBI_EXCLUSIVE:
1790195a7bbSHeiko Schocher 		if (vol->exclusive || vol->writers || vol->readers ||
1800195a7bbSHeiko Schocher 		    vol->metaonly)
1812d262c48SKyungmin Park 			goto out_unlock;
1822d262c48SKyungmin Park 		vol->exclusive = 1;
1832d262c48SKyungmin Park 		break;
1840195a7bbSHeiko Schocher 
1850195a7bbSHeiko Schocher 	case UBI_METAONLY:
1860195a7bbSHeiko Schocher 		if (vol->metaonly || vol->exclusive)
1870195a7bbSHeiko Schocher 			goto out_unlock;
1880195a7bbSHeiko Schocher 		vol->metaonly = 1;
1890195a7bbSHeiko Schocher 		break;
1902d262c48SKyungmin Park 	}
1912d262c48SKyungmin Park 	get_device(&vol->dev);
1922d262c48SKyungmin Park 	vol->ref_count += 1;
1932d262c48SKyungmin Park 	spin_unlock(&ubi->volumes_lock);
1942d262c48SKyungmin Park 
1952d262c48SKyungmin Park 	desc->vol = vol;
1962d262c48SKyungmin Park 	desc->mode = mode;
1972d262c48SKyungmin Park 
1982d262c48SKyungmin Park 	mutex_lock(&ubi->ckvol_mutex);
1992d262c48SKyungmin Park 	if (!vol->checked) {
2002d262c48SKyungmin Park 		/* This is the first open - check the volume */
2012d262c48SKyungmin Park 		err = ubi_check_volume(ubi, vol_id);
2022d262c48SKyungmin Park 		if (err < 0) {
2032d262c48SKyungmin Park 			mutex_unlock(&ubi->ckvol_mutex);
2042d262c48SKyungmin Park 			ubi_close_volume(desc);
2052d262c48SKyungmin Park 			return ERR_PTR(err);
2062d262c48SKyungmin Park 		}
2072d262c48SKyungmin Park 		if (err == 1) {
2080195a7bbSHeiko Schocher 			ubi_warn(ubi, "volume %d on UBI device %d is corrupted",
2092d262c48SKyungmin Park 				 vol_id, ubi->ubi_num);
2102d262c48SKyungmin Park 			vol->corrupted = 1;
2112d262c48SKyungmin Park 		}
2122d262c48SKyungmin Park 		vol->checked = 1;
2132d262c48SKyungmin Park 	}
2142d262c48SKyungmin Park 	mutex_unlock(&ubi->ckvol_mutex);
2152d262c48SKyungmin Park 
2162d262c48SKyungmin Park 	return desc;
2172d262c48SKyungmin Park 
2182d262c48SKyungmin Park out_unlock:
2192d262c48SKyungmin Park 	spin_unlock(&ubi->volumes_lock);
2202d262c48SKyungmin Park 	module_put(THIS_MODULE);
2212d262c48SKyungmin Park out_free:
2222d262c48SKyungmin Park 	kfree(desc);
2232d262c48SKyungmin Park out_put_ubi:
2242d262c48SKyungmin Park 	ubi_put_device(ubi);
2250195a7bbSHeiko Schocher 	ubi_err(ubi, "cannot open device %d, volume %d, error %d",
226ff94bc40SHeiko Schocher 		ubi_num, vol_id, err);
2272d262c48SKyungmin Park 	return ERR_PTR(err);
2282d262c48SKyungmin Park }
2292d262c48SKyungmin Park EXPORT_SYMBOL_GPL(ubi_open_volume);
2302d262c48SKyungmin Park 
2312d262c48SKyungmin Park /**
2322d262c48SKyungmin Park  * ubi_open_volume_nm - open UBI volume by name.
2332d262c48SKyungmin Park  * @ubi_num: UBI device number
2342d262c48SKyungmin Park  * @name: volume name
2352d262c48SKyungmin Park  * @mode: open mode
2362d262c48SKyungmin Park  *
2372d262c48SKyungmin Park  * This function is similar to 'ubi_open_volume()', but opens a volume by name.
2382d262c48SKyungmin Park  */
ubi_open_volume_nm(int ubi_num,const char * name,int mode)2392d262c48SKyungmin Park struct ubi_volume_desc *ubi_open_volume_nm(int ubi_num, const char *name,
2402d262c48SKyungmin Park 					   int mode)
2412d262c48SKyungmin Park {
2422d262c48SKyungmin Park 	int i, vol_id = -1, len;
2432d262c48SKyungmin Park 	struct ubi_device *ubi;
2442d262c48SKyungmin Park 	struct ubi_volume_desc *ret;
2452d262c48SKyungmin Park 
246ff94bc40SHeiko Schocher 	dbg_gen("open device %d, volume %s, mode %d", ubi_num, name, mode);
2472d262c48SKyungmin Park 
2482d262c48SKyungmin Park 	if (!name)
2492d262c48SKyungmin Park 		return ERR_PTR(-EINVAL);
2502d262c48SKyungmin Park 
2512d262c48SKyungmin Park 	len = strnlen(name, UBI_VOL_NAME_MAX + 1);
2522d262c48SKyungmin Park 	if (len > UBI_VOL_NAME_MAX)
2532d262c48SKyungmin Park 		return ERR_PTR(-EINVAL);
2542d262c48SKyungmin Park 
2552d262c48SKyungmin Park 	if (ubi_num < 0 || ubi_num >= UBI_MAX_DEVICES)
2562d262c48SKyungmin Park 		return ERR_PTR(-EINVAL);
2572d262c48SKyungmin Park 
2582d262c48SKyungmin Park 	ubi = ubi_get_device(ubi_num);
2592d262c48SKyungmin Park 	if (!ubi)
2602d262c48SKyungmin Park 		return ERR_PTR(-ENODEV);
2612d262c48SKyungmin Park 
2622d262c48SKyungmin Park 	spin_lock(&ubi->volumes_lock);
2632d262c48SKyungmin Park 	/* Walk all volumes of this UBI device */
2642d262c48SKyungmin Park 	for (i = 0; i < ubi->vtbl_slots; i++) {
2652d262c48SKyungmin Park 		struct ubi_volume *vol = ubi->volumes[i];
2662d262c48SKyungmin Park 
2672d262c48SKyungmin Park 		if (vol && len == vol->name_len && !strcmp(name, vol->name)) {
2682d262c48SKyungmin Park 			vol_id = i;
2692d262c48SKyungmin Park 			break;
2702d262c48SKyungmin Park 		}
2712d262c48SKyungmin Park 	}
2722d262c48SKyungmin Park 	spin_unlock(&ubi->volumes_lock);
2732d262c48SKyungmin Park 
2742d262c48SKyungmin Park 	if (vol_id >= 0)
2752d262c48SKyungmin Park 		ret = ubi_open_volume(ubi_num, vol_id, mode);
2762d262c48SKyungmin Park 	else
2772d262c48SKyungmin Park 		ret = ERR_PTR(-ENODEV);
2782d262c48SKyungmin Park 
2792d262c48SKyungmin Park 	/*
2802d262c48SKyungmin Park 	 * We should put the UBI device even in case of success, because
2812d262c48SKyungmin Park 	 * 'ubi_open_volume()' took a reference as well.
2822d262c48SKyungmin Park 	 */
2832d262c48SKyungmin Park 	ubi_put_device(ubi);
2842d262c48SKyungmin Park 	return ret;
2852d262c48SKyungmin Park }
2862d262c48SKyungmin Park EXPORT_SYMBOL_GPL(ubi_open_volume_nm);
2872d262c48SKyungmin Park 
288ff94bc40SHeiko Schocher #ifndef __UBOOT__
289ff94bc40SHeiko Schocher /**
290ff94bc40SHeiko Schocher  * ubi_open_volume_path - open UBI volume by its character device node path.
291ff94bc40SHeiko Schocher  * @pathname: volume character device node path
292ff94bc40SHeiko Schocher  * @mode: open mode
293ff94bc40SHeiko Schocher  *
294ff94bc40SHeiko Schocher  * This function is similar to 'ubi_open_volume()', but opens a volume the path
295ff94bc40SHeiko Schocher  * to its character device node.
296ff94bc40SHeiko Schocher  */
ubi_open_volume_path(const char * pathname,int mode)297ff94bc40SHeiko Schocher struct ubi_volume_desc *ubi_open_volume_path(const char *pathname, int mode)
298ff94bc40SHeiko Schocher {
299ff94bc40SHeiko Schocher 	int error, ubi_num, vol_id, mod;
300ff94bc40SHeiko Schocher 	struct inode *inode;
301ff94bc40SHeiko Schocher 	struct path path;
302ff94bc40SHeiko Schocher 
303ff94bc40SHeiko Schocher 	dbg_gen("open volume %s, mode %d", pathname, mode);
304ff94bc40SHeiko Schocher 
305ff94bc40SHeiko Schocher 	if (!pathname || !*pathname)
306ff94bc40SHeiko Schocher 		return ERR_PTR(-EINVAL);
307ff94bc40SHeiko Schocher 
308ff94bc40SHeiko Schocher 	error = kern_path(pathname, LOOKUP_FOLLOW, &path);
309ff94bc40SHeiko Schocher 	if (error)
310ff94bc40SHeiko Schocher 		return ERR_PTR(error);
311ff94bc40SHeiko Schocher 
3120195a7bbSHeiko Schocher 	inode = d_backing_inode(path.dentry);
313ff94bc40SHeiko Schocher 	mod = inode->i_mode;
314ff94bc40SHeiko Schocher 	ubi_num = ubi_major2num(imajor(inode));
315ff94bc40SHeiko Schocher 	vol_id = iminor(inode) - 1;
316ff94bc40SHeiko Schocher 	path_put(&path);
317ff94bc40SHeiko Schocher 
318ff94bc40SHeiko Schocher 	if (!S_ISCHR(mod))
319ff94bc40SHeiko Schocher 		return ERR_PTR(-EINVAL);
320ff94bc40SHeiko Schocher 	if (vol_id >= 0 && ubi_num >= 0)
321ff94bc40SHeiko Schocher 		return ubi_open_volume(ubi_num, vol_id, mode);
322ff94bc40SHeiko Schocher 	return ERR_PTR(-ENODEV);
323ff94bc40SHeiko Schocher }
324ff94bc40SHeiko Schocher EXPORT_SYMBOL_GPL(ubi_open_volume_path);
325ff94bc40SHeiko Schocher #endif
326ff94bc40SHeiko Schocher 
3272d262c48SKyungmin Park /**
3282d262c48SKyungmin Park  * ubi_close_volume - close UBI volume.
3292d262c48SKyungmin Park  * @desc: volume descriptor
3302d262c48SKyungmin Park  */
ubi_close_volume(struct ubi_volume_desc * desc)3312d262c48SKyungmin Park void ubi_close_volume(struct ubi_volume_desc *desc)
3322d262c48SKyungmin Park {
3332d262c48SKyungmin Park 	struct ubi_volume *vol = desc->vol;
3342d262c48SKyungmin Park 	struct ubi_device *ubi = vol->ubi;
3352d262c48SKyungmin Park 
336ff94bc40SHeiko Schocher 	dbg_gen("close device %d, volume %d, mode %d",
337ff94bc40SHeiko Schocher 		ubi->ubi_num, vol->vol_id, desc->mode);
3382d262c48SKyungmin Park 
3392d262c48SKyungmin Park 	spin_lock(&ubi->volumes_lock);
3402d262c48SKyungmin Park 	switch (desc->mode) {
3412d262c48SKyungmin Park 	case UBI_READONLY:
3422d262c48SKyungmin Park 		vol->readers -= 1;
3432d262c48SKyungmin Park 		break;
3442d262c48SKyungmin Park 	case UBI_READWRITE:
3452d262c48SKyungmin Park 		vol->writers -= 1;
3462d262c48SKyungmin Park 		break;
3472d262c48SKyungmin Park 	case UBI_EXCLUSIVE:
3482d262c48SKyungmin Park 		vol->exclusive = 0;
3490195a7bbSHeiko Schocher 		break;
3500195a7bbSHeiko Schocher 	case UBI_METAONLY:
3510195a7bbSHeiko Schocher 		vol->metaonly = 0;
3520195a7bbSHeiko Schocher 		break;
3532d262c48SKyungmin Park 	}
3542d262c48SKyungmin Park 	vol->ref_count -= 1;
3552d262c48SKyungmin Park 	spin_unlock(&ubi->volumes_lock);
3562d262c48SKyungmin Park 
3572d262c48SKyungmin Park 	kfree(desc);
3582d262c48SKyungmin Park 	put_device(&vol->dev);
3592d262c48SKyungmin Park 	ubi_put_device(ubi);
3602d262c48SKyungmin Park 	module_put(THIS_MODULE);
3612d262c48SKyungmin Park }
3622d262c48SKyungmin Park EXPORT_SYMBOL_GPL(ubi_close_volume);
3632d262c48SKyungmin Park 
3642d262c48SKyungmin Park /**
3650195a7bbSHeiko Schocher  * leb_read_sanity_check - does sanity checks on read requests.
3660195a7bbSHeiko Schocher  * @desc: volume descriptor
3670195a7bbSHeiko Schocher  * @lnum: logical eraseblock number to read from
3680195a7bbSHeiko Schocher  * @offset: offset within the logical eraseblock to read from
3690195a7bbSHeiko Schocher  * @len: how many bytes to read
3700195a7bbSHeiko Schocher  *
3710195a7bbSHeiko Schocher  * This function is used by ubi_leb_read() and ubi_leb_read_sg()
3720195a7bbSHeiko Schocher  * to perform sanity checks.
3730195a7bbSHeiko Schocher  */
leb_read_sanity_check(struct ubi_volume_desc * desc,int lnum,int offset,int len)3740195a7bbSHeiko Schocher static int leb_read_sanity_check(struct ubi_volume_desc *desc, int lnum,
3750195a7bbSHeiko Schocher 				 int offset, int len)
3760195a7bbSHeiko Schocher {
3770195a7bbSHeiko Schocher 	struct ubi_volume *vol = desc->vol;
3780195a7bbSHeiko Schocher 	struct ubi_device *ubi = vol->ubi;
3790195a7bbSHeiko Schocher 	int vol_id = vol->vol_id;
3800195a7bbSHeiko Schocher 
3810195a7bbSHeiko Schocher 	if (vol_id < 0 || vol_id >= ubi->vtbl_slots || lnum < 0 ||
3820195a7bbSHeiko Schocher 	    lnum >= vol->used_ebs || offset < 0 || len < 0 ||
3830195a7bbSHeiko Schocher 	    offset + len > vol->usable_leb_size)
3840195a7bbSHeiko Schocher 		return -EINVAL;
3850195a7bbSHeiko Schocher 
3860195a7bbSHeiko Schocher 	if (vol->vol_type == UBI_STATIC_VOLUME) {
3870195a7bbSHeiko Schocher 		if (vol->used_ebs == 0)
3880195a7bbSHeiko Schocher 			/* Empty static UBI volume */
3890195a7bbSHeiko Schocher 			return 0;
3900195a7bbSHeiko Schocher 		if (lnum == vol->used_ebs - 1 &&
3910195a7bbSHeiko Schocher 		    offset + len > vol->last_eb_bytes)
3920195a7bbSHeiko Schocher 			return -EINVAL;
3930195a7bbSHeiko Schocher 	}
3940195a7bbSHeiko Schocher 
3950195a7bbSHeiko Schocher 	if (vol->upd_marker)
3960195a7bbSHeiko Schocher 		return -EBADF;
3970195a7bbSHeiko Schocher 
3980195a7bbSHeiko Schocher 	return 0;
3990195a7bbSHeiko Schocher }
4000195a7bbSHeiko Schocher 
4010195a7bbSHeiko Schocher /**
4022d262c48SKyungmin Park  * ubi_leb_read - read data.
4032d262c48SKyungmin Park  * @desc: volume descriptor
4042d262c48SKyungmin Park  * @lnum: logical eraseblock number to read from
4052d262c48SKyungmin Park  * @buf: buffer where to store the read data
4062d262c48SKyungmin Park  * @offset: offset within the logical eraseblock to read from
4072d262c48SKyungmin Park  * @len: how many bytes to read
4082d262c48SKyungmin Park  * @check: whether UBI has to check the read data's CRC or not.
4092d262c48SKyungmin Park  *
4102d262c48SKyungmin Park  * This function reads data from offset @offset of logical eraseblock @lnum and
4112d262c48SKyungmin Park  * stores the data at @buf. When reading from static volumes, @check specifies
4122d262c48SKyungmin Park  * whether the data has to be checked or not. If yes, the whole logical
4132d262c48SKyungmin Park  * eraseblock will be read and its CRC checksum will be checked (i.e., the CRC
4142d262c48SKyungmin Park  * checksum is per-eraseblock). So checking may substantially slow down the
4152d262c48SKyungmin Park  * read speed. The @check argument is ignored for dynamic volumes.
4162d262c48SKyungmin Park  *
4172d262c48SKyungmin Park  * In case of success, this function returns zero. In case of failure, this
4182d262c48SKyungmin Park  * function returns a negative error code.
4192d262c48SKyungmin Park  *
4202d262c48SKyungmin Park  * %-EBADMSG error code is returned:
4212d262c48SKyungmin Park  * o for both static and dynamic volumes if MTD driver has detected a data
4222d262c48SKyungmin Park  *   integrity problem (unrecoverable ECC checksum mismatch in case of NAND);
4232d262c48SKyungmin Park  * o for static volumes in case of data CRC mismatch.
4242d262c48SKyungmin Park  *
4252d262c48SKyungmin Park  * If the volume is damaged because of an interrupted update this function just
4262d262c48SKyungmin Park  * returns immediately with %-EBADF error code.
4272d262c48SKyungmin Park  */
ubi_leb_read(struct ubi_volume_desc * desc,int lnum,char * buf,int offset,int len,int check)4282d262c48SKyungmin Park int ubi_leb_read(struct ubi_volume_desc *desc, int lnum, char *buf, int offset,
4292d262c48SKyungmin Park 		 int len, int check)
4302d262c48SKyungmin Park {
4312d262c48SKyungmin Park 	struct ubi_volume *vol = desc->vol;
4322d262c48SKyungmin Park 	struct ubi_device *ubi = vol->ubi;
4332d262c48SKyungmin Park 	int err, vol_id = vol->vol_id;
4342d262c48SKyungmin Park 
435ff94bc40SHeiko Schocher 	dbg_gen("read %d bytes from LEB %d:%d:%d", len, vol_id, lnum, offset);
4362d262c48SKyungmin Park 
4370195a7bbSHeiko Schocher 	err = leb_read_sanity_check(desc, lnum, offset, len);
4380195a7bbSHeiko Schocher 	if (err < 0)
4390195a7bbSHeiko Schocher 		return err;
4402d262c48SKyungmin Park 
4412d262c48SKyungmin Park 	if (len == 0)
4422d262c48SKyungmin Park 		return 0;
4432d262c48SKyungmin Park 
4442d262c48SKyungmin Park 	err = ubi_eba_read_leb(ubi, vol, lnum, buf, offset, len, check);
445dfe64e2cSSergey Lapin 	if (err && mtd_is_eccerr(err) && vol->vol_type == UBI_STATIC_VOLUME) {
4460195a7bbSHeiko Schocher 		ubi_warn(ubi, "mark volume %d as corrupted", vol_id);
4472d262c48SKyungmin Park 		vol->corrupted = 1;
4482d262c48SKyungmin Park 	}
4492d262c48SKyungmin Park 
4502d262c48SKyungmin Park 	return err;
4512d262c48SKyungmin Park }
4522d262c48SKyungmin Park EXPORT_SYMBOL_GPL(ubi_leb_read);
4532d262c48SKyungmin Park 
4540195a7bbSHeiko Schocher #ifndef __UBOOT__
4550195a7bbSHeiko Schocher /**
4560195a7bbSHeiko Schocher  * ubi_leb_read_sg - read data into a scatter gather list.
4570195a7bbSHeiko Schocher  * @desc: volume descriptor
4580195a7bbSHeiko Schocher  * @lnum: logical eraseblock number to read from
4590195a7bbSHeiko Schocher  * @buf: buffer where to store the read data
4600195a7bbSHeiko Schocher  * @offset: offset within the logical eraseblock to read from
4610195a7bbSHeiko Schocher  * @len: how many bytes to read
4620195a7bbSHeiko Schocher  * @check: whether UBI has to check the read data's CRC or not.
4630195a7bbSHeiko Schocher  *
4640195a7bbSHeiko Schocher  * This function works exactly like ubi_leb_read_sg(). But instead of
4650195a7bbSHeiko Schocher  * storing the read data into a buffer it writes to an UBI scatter gather
4660195a7bbSHeiko Schocher  * list.
4670195a7bbSHeiko Schocher  */
ubi_leb_read_sg(struct ubi_volume_desc * desc,int lnum,struct ubi_sgl * sgl,int offset,int len,int check)4680195a7bbSHeiko Schocher int ubi_leb_read_sg(struct ubi_volume_desc *desc, int lnum, struct ubi_sgl *sgl,
4690195a7bbSHeiko Schocher 		    int offset, int len, int check)
4700195a7bbSHeiko Schocher {
4710195a7bbSHeiko Schocher 	struct ubi_volume *vol = desc->vol;
4720195a7bbSHeiko Schocher 	struct ubi_device *ubi = vol->ubi;
4730195a7bbSHeiko Schocher 	int err, vol_id = vol->vol_id;
4740195a7bbSHeiko Schocher 
4750195a7bbSHeiko Schocher 	dbg_gen("read %d bytes from LEB %d:%d:%d", len, vol_id, lnum, offset);
4760195a7bbSHeiko Schocher 
4770195a7bbSHeiko Schocher 	err = leb_read_sanity_check(desc, lnum, offset, len);
4780195a7bbSHeiko Schocher 	if (err < 0)
4790195a7bbSHeiko Schocher 		return err;
4800195a7bbSHeiko Schocher 
4810195a7bbSHeiko Schocher 	if (len == 0)
4820195a7bbSHeiko Schocher 		return 0;
4830195a7bbSHeiko Schocher 
4840195a7bbSHeiko Schocher 	err = ubi_eba_read_leb_sg(ubi, vol, sgl, lnum, offset, len, check);
4850195a7bbSHeiko Schocher 	if (err && mtd_is_eccerr(err) && vol->vol_type == UBI_STATIC_VOLUME) {
4860195a7bbSHeiko Schocher 		ubi_warn(ubi, "mark volume %d as corrupted", vol_id);
4870195a7bbSHeiko Schocher 		vol->corrupted = 1;
4880195a7bbSHeiko Schocher 	}
4890195a7bbSHeiko Schocher 
4900195a7bbSHeiko Schocher 	return err;
4910195a7bbSHeiko Schocher }
4920195a7bbSHeiko Schocher EXPORT_SYMBOL_GPL(ubi_leb_read_sg);
4930195a7bbSHeiko Schocher #endif
4940195a7bbSHeiko Schocher 
4952d262c48SKyungmin Park /**
4962d262c48SKyungmin Park  * ubi_leb_write - write data.
4972d262c48SKyungmin Park  * @desc: volume descriptor
4982d262c48SKyungmin Park  * @lnum: logical eraseblock number to write to
4992d262c48SKyungmin Park  * @buf: data to write
5002d262c48SKyungmin Park  * @offset: offset within the logical eraseblock where to write
5012d262c48SKyungmin Park  * @len: how many bytes to write
5022d262c48SKyungmin Park  *
5032d262c48SKyungmin Park  * This function writes @len bytes of data from @buf to offset @offset of
504ff94bc40SHeiko Schocher  * logical eraseblock @lnum.
5052d262c48SKyungmin Park  *
5062d262c48SKyungmin Park  * This function takes care of physical eraseblock write failures. If write to
5072d262c48SKyungmin Park  * the physical eraseblock write operation fails, the logical eraseblock is
5082d262c48SKyungmin Park  * re-mapped to another physical eraseblock, the data is recovered, and the
5092d262c48SKyungmin Park  * write finishes. UBI has a pool of reserved physical eraseblocks for this.
5102d262c48SKyungmin Park  *
5112d262c48SKyungmin Park  * If all the data were successfully written, zero is returned. If an error
5122d262c48SKyungmin Park  * occurred and UBI has not been able to recover from it, this function returns
5132d262c48SKyungmin Park  * a negative error code. Note, in case of an error, it is possible that
5142d262c48SKyungmin Park  * something was still written to the flash media, but that may be some
5152d262c48SKyungmin Park  * garbage.
5162d262c48SKyungmin Park  *
5172d262c48SKyungmin Park  * If the volume is damaged because of an interrupted update this function just
5182d262c48SKyungmin Park  * returns immediately with %-EBADF code.
5192d262c48SKyungmin Park  */
ubi_leb_write(struct ubi_volume_desc * desc,int lnum,const void * buf,int offset,int len)5202d262c48SKyungmin Park int ubi_leb_write(struct ubi_volume_desc *desc, int lnum, const void *buf,
521ff94bc40SHeiko Schocher 		  int offset, int len)
5222d262c48SKyungmin Park {
5232d262c48SKyungmin Park 	struct ubi_volume *vol = desc->vol;
5242d262c48SKyungmin Park 	struct ubi_device *ubi = vol->ubi;
5252d262c48SKyungmin Park 	int vol_id = vol->vol_id;
5262d262c48SKyungmin Park 
527ff94bc40SHeiko Schocher 	dbg_gen("write %d bytes to LEB %d:%d:%d", len, vol_id, lnum, offset);
5282d262c48SKyungmin Park 
5292d262c48SKyungmin Park 	if (vol_id < 0 || vol_id >= ubi->vtbl_slots)
5302d262c48SKyungmin Park 		return -EINVAL;
5312d262c48SKyungmin Park 
5322d262c48SKyungmin Park 	if (desc->mode == UBI_READONLY || vol->vol_type == UBI_STATIC_VOLUME)
5332d262c48SKyungmin Park 		return -EROFS;
5342d262c48SKyungmin Park 
5352d262c48SKyungmin Park 	if (lnum < 0 || lnum >= vol->reserved_pebs || offset < 0 || len < 0 ||
5362d262c48SKyungmin Park 	    offset + len > vol->usable_leb_size ||
5372d262c48SKyungmin Park 	    offset & (ubi->min_io_size - 1) || len & (ubi->min_io_size - 1))
5382d262c48SKyungmin Park 		return -EINVAL;
5392d262c48SKyungmin Park 
5402d262c48SKyungmin Park 	if (vol->upd_marker)
5412d262c48SKyungmin Park 		return -EBADF;
5422d262c48SKyungmin Park 
5432d262c48SKyungmin Park 	if (len == 0)
5442d262c48SKyungmin Park 		return 0;
5452d262c48SKyungmin Park 
546ff94bc40SHeiko Schocher 	return ubi_eba_write_leb(ubi, vol, lnum, buf, offset, len);
5472d262c48SKyungmin Park }
5482d262c48SKyungmin Park EXPORT_SYMBOL_GPL(ubi_leb_write);
5492d262c48SKyungmin Park 
5502d262c48SKyungmin Park /*
5512d262c48SKyungmin Park  * ubi_leb_change - change logical eraseblock atomically.
5522d262c48SKyungmin Park  * @desc: volume descriptor
5532d262c48SKyungmin Park  * @lnum: logical eraseblock number to change
5542d262c48SKyungmin Park  * @buf: data to write
5552d262c48SKyungmin Park  * @len: how many bytes to write
5562d262c48SKyungmin Park  *
5572d262c48SKyungmin Park  * This function changes the contents of a logical eraseblock atomically. @buf
5582d262c48SKyungmin Park  * has to contain new logical eraseblock data, and @len - the length of the
559ff94bc40SHeiko Schocher  * data, which has to be aligned. The length may be shorter than the logical
5602d262c48SKyungmin Park  * eraseblock size, ant the logical eraseblock may be appended to more times
5612d262c48SKyungmin Park  * later on. This function guarantees that in case of an unclean reboot the old
5622d262c48SKyungmin Park  * contents is preserved. Returns zero in case of success and a negative error
5632d262c48SKyungmin Park  * code in case of failure.
5642d262c48SKyungmin Park  */
ubi_leb_change(struct ubi_volume_desc * desc,int lnum,const void * buf,int len)5652d262c48SKyungmin Park int ubi_leb_change(struct ubi_volume_desc *desc, int lnum, const void *buf,
566ff94bc40SHeiko Schocher 		   int len)
5672d262c48SKyungmin Park {
5682d262c48SKyungmin Park 	struct ubi_volume *vol = desc->vol;
5692d262c48SKyungmin Park 	struct ubi_device *ubi = vol->ubi;
5702d262c48SKyungmin Park 	int vol_id = vol->vol_id;
5712d262c48SKyungmin Park 
572ff94bc40SHeiko Schocher 	dbg_gen("atomically write %d bytes to LEB %d:%d", len, vol_id, lnum);
5732d262c48SKyungmin Park 
5742d262c48SKyungmin Park 	if (vol_id < 0 || vol_id >= ubi->vtbl_slots)
5752d262c48SKyungmin Park 		return -EINVAL;
5762d262c48SKyungmin Park 
5772d262c48SKyungmin Park 	if (desc->mode == UBI_READONLY || vol->vol_type == UBI_STATIC_VOLUME)
5782d262c48SKyungmin Park 		return -EROFS;
5792d262c48SKyungmin Park 
5802d262c48SKyungmin Park 	if (lnum < 0 || lnum >= vol->reserved_pebs || len < 0 ||
5812d262c48SKyungmin Park 	    len > vol->usable_leb_size || len & (ubi->min_io_size - 1))
5822d262c48SKyungmin Park 		return -EINVAL;
5832d262c48SKyungmin Park 
5842d262c48SKyungmin Park 	if (vol->upd_marker)
5852d262c48SKyungmin Park 		return -EBADF;
5862d262c48SKyungmin Park 
5872d262c48SKyungmin Park 	if (len == 0)
5882d262c48SKyungmin Park 		return 0;
5892d262c48SKyungmin Park 
590ff94bc40SHeiko Schocher 	return ubi_eba_atomic_leb_change(ubi, vol, lnum, buf, len);
5912d262c48SKyungmin Park }
5922d262c48SKyungmin Park EXPORT_SYMBOL_GPL(ubi_leb_change);
5932d262c48SKyungmin Park 
5942d262c48SKyungmin Park /**
5952d262c48SKyungmin Park  * ubi_leb_erase - erase logical eraseblock.
5962d262c48SKyungmin Park  * @desc: volume descriptor
5972d262c48SKyungmin Park  * @lnum: logical eraseblock number
5982d262c48SKyungmin Park  *
5992d262c48SKyungmin Park  * This function un-maps logical eraseblock @lnum and synchronously erases the
6002d262c48SKyungmin Park  * correspondent physical eraseblock. Returns zero in case of success and a
6012d262c48SKyungmin Park  * negative error code in case of failure.
6022d262c48SKyungmin Park  *
6032d262c48SKyungmin Park  * If the volume is damaged because of an interrupted update this function just
6042d262c48SKyungmin Park  * returns immediately with %-EBADF code.
6052d262c48SKyungmin Park  */
ubi_leb_erase(struct ubi_volume_desc * desc,int lnum)6062d262c48SKyungmin Park int ubi_leb_erase(struct ubi_volume_desc *desc, int lnum)
6072d262c48SKyungmin Park {
6082d262c48SKyungmin Park 	struct ubi_volume *vol = desc->vol;
6092d262c48SKyungmin Park 	struct ubi_device *ubi = vol->ubi;
6102d262c48SKyungmin Park 	int err;
6112d262c48SKyungmin Park 
612ff94bc40SHeiko Schocher 	dbg_gen("erase LEB %d:%d", vol->vol_id, lnum);
6132d262c48SKyungmin Park 
6142d262c48SKyungmin Park 	if (desc->mode == UBI_READONLY || vol->vol_type == UBI_STATIC_VOLUME)
6152d262c48SKyungmin Park 		return -EROFS;
6162d262c48SKyungmin Park 
6172d262c48SKyungmin Park 	if (lnum < 0 || lnum >= vol->reserved_pebs)
6182d262c48SKyungmin Park 		return -EINVAL;
6192d262c48SKyungmin Park 
6202d262c48SKyungmin Park 	if (vol->upd_marker)
6212d262c48SKyungmin Park 		return -EBADF;
6222d262c48SKyungmin Park 
6232d262c48SKyungmin Park 	err = ubi_eba_unmap_leb(ubi, vol, lnum);
6242d262c48SKyungmin Park 	if (err)
6252d262c48SKyungmin Park 		return err;
6262d262c48SKyungmin Park 
627ff94bc40SHeiko Schocher 	return ubi_wl_flush(ubi, vol->vol_id, lnum);
6282d262c48SKyungmin Park }
6292d262c48SKyungmin Park EXPORT_SYMBOL_GPL(ubi_leb_erase);
6302d262c48SKyungmin Park 
6312d262c48SKyungmin Park /**
6322d262c48SKyungmin Park  * ubi_leb_unmap - un-map logical eraseblock.
6332d262c48SKyungmin Park  * @desc: volume descriptor
6342d262c48SKyungmin Park  * @lnum: logical eraseblock number
6352d262c48SKyungmin Park  *
6362d262c48SKyungmin Park  * This function un-maps logical eraseblock @lnum and schedules the
6372d262c48SKyungmin Park  * corresponding physical eraseblock for erasure, so that it will eventually be
638ff94bc40SHeiko Schocher  * physically erased in background. This operation is much faster than the
6392d262c48SKyungmin Park  * erase operation.
6402d262c48SKyungmin Park  *
6412d262c48SKyungmin Park  * Unlike erase, the un-map operation does not guarantee that the logical
6422d262c48SKyungmin Park  * eraseblock will contain all 0xFF bytes when UBI is initialized again. For
6432d262c48SKyungmin Park  * example, if several logical eraseblocks are un-mapped, and an unclean reboot
6442d262c48SKyungmin Park  * happens after this, the logical eraseblocks will not necessarily be
6452d262c48SKyungmin Park  * un-mapped again when this MTD device is attached. They may actually be
6462d262c48SKyungmin Park  * mapped to the same physical eraseblocks again. So, this function has to be
6472d262c48SKyungmin Park  * used with care.
6482d262c48SKyungmin Park  *
6492d262c48SKyungmin Park  * In other words, when un-mapping a logical eraseblock, UBI does not store
6502d262c48SKyungmin Park  * any information about this on the flash media, it just marks the logical
6512d262c48SKyungmin Park  * eraseblock as "un-mapped" in RAM. If UBI is detached before the physical
6522d262c48SKyungmin Park  * eraseblock is physically erased, it will be mapped again to the same logical
6532d262c48SKyungmin Park  * eraseblock when the MTD device is attached again.
6542d262c48SKyungmin Park  *
6552d262c48SKyungmin Park  * The main and obvious use-case of this function is when the contents of a
6562d262c48SKyungmin Park  * logical eraseblock has to be re-written. Then it is much more efficient to
657ff94bc40SHeiko Schocher  * first un-map it, then write new data, rather than first erase it, then write
6582d262c48SKyungmin Park  * new data. Note, once new data has been written to the logical eraseblock,
6592d262c48SKyungmin Park  * UBI guarantees that the old contents has gone forever. In other words, if an
6602d262c48SKyungmin Park  * unclean reboot happens after the logical eraseblock has been un-mapped and
6612d262c48SKyungmin Park  * then written to, it will contain the last written data.
6622d262c48SKyungmin Park  *
6632d262c48SKyungmin Park  * This function returns zero in case of success and a negative error code in
6642d262c48SKyungmin Park  * case of failure. If the volume is damaged because of an interrupted update
6652d262c48SKyungmin Park  * this function just returns immediately with %-EBADF code.
6662d262c48SKyungmin Park  */
ubi_leb_unmap(struct ubi_volume_desc * desc,int lnum)6672d262c48SKyungmin Park int ubi_leb_unmap(struct ubi_volume_desc *desc, int lnum)
6682d262c48SKyungmin Park {
6692d262c48SKyungmin Park 	struct ubi_volume *vol = desc->vol;
6702d262c48SKyungmin Park 	struct ubi_device *ubi = vol->ubi;
6712d262c48SKyungmin Park 
672ff94bc40SHeiko Schocher 	dbg_gen("unmap LEB %d:%d", vol->vol_id, lnum);
6732d262c48SKyungmin Park 
6742d262c48SKyungmin Park 	if (desc->mode == UBI_READONLY || vol->vol_type == UBI_STATIC_VOLUME)
6752d262c48SKyungmin Park 		return -EROFS;
6762d262c48SKyungmin Park 
6772d262c48SKyungmin Park 	if (lnum < 0 || lnum >= vol->reserved_pebs)
6782d262c48SKyungmin Park 		return -EINVAL;
6792d262c48SKyungmin Park 
6802d262c48SKyungmin Park 	if (vol->upd_marker)
6812d262c48SKyungmin Park 		return -EBADF;
6822d262c48SKyungmin Park 
6832d262c48SKyungmin Park 	return ubi_eba_unmap_leb(ubi, vol, lnum);
6842d262c48SKyungmin Park }
6852d262c48SKyungmin Park EXPORT_SYMBOL_GPL(ubi_leb_unmap);
6862d262c48SKyungmin Park 
6872d262c48SKyungmin Park /**
688ff94bc40SHeiko Schocher  * ubi_leb_map - map logical eraseblock to a physical eraseblock.
6892d262c48SKyungmin Park  * @desc: volume descriptor
6902d262c48SKyungmin Park  * @lnum: logical eraseblock number
6912d262c48SKyungmin Park  *
6922d262c48SKyungmin Park  * This function maps an un-mapped logical eraseblock @lnum to a physical
693ff94bc40SHeiko Schocher  * eraseblock. This means, that after a successful invocation of this
6942d262c48SKyungmin Park  * function the logical eraseblock @lnum will be empty (contain only %0xFF
6952d262c48SKyungmin Park  * bytes) and be mapped to a physical eraseblock, even if an unclean reboot
6962d262c48SKyungmin Park  * happens.
6972d262c48SKyungmin Park  *
6982d262c48SKyungmin Park  * This function returns zero in case of success, %-EBADF if the volume is
6992d262c48SKyungmin Park  * damaged because of an interrupted update, %-EBADMSG if the logical
7002d262c48SKyungmin Park  * eraseblock is already mapped, and other negative error codes in case of
7012d262c48SKyungmin Park  * other failures.
7022d262c48SKyungmin Park  */
ubi_leb_map(struct ubi_volume_desc * desc,int lnum)703ff94bc40SHeiko Schocher int ubi_leb_map(struct ubi_volume_desc *desc, int lnum)
7042d262c48SKyungmin Park {
7052d262c48SKyungmin Park 	struct ubi_volume *vol = desc->vol;
7062d262c48SKyungmin Park 	struct ubi_device *ubi = vol->ubi;
7072d262c48SKyungmin Park 
708ff94bc40SHeiko Schocher 	dbg_gen("unmap LEB %d:%d", vol->vol_id, lnum);
7092d262c48SKyungmin Park 
7102d262c48SKyungmin Park 	if (desc->mode == UBI_READONLY || vol->vol_type == UBI_STATIC_VOLUME)
7112d262c48SKyungmin Park 		return -EROFS;
7122d262c48SKyungmin Park 
7132d262c48SKyungmin Park 	if (lnum < 0 || lnum >= vol->reserved_pebs)
7142d262c48SKyungmin Park 		return -EINVAL;
7152d262c48SKyungmin Park 
7162d262c48SKyungmin Park 	if (vol->upd_marker)
7172d262c48SKyungmin Park 		return -EBADF;
7182d262c48SKyungmin Park 
7192d262c48SKyungmin Park 	if (vol->eba_tbl[lnum] >= 0)
7202d262c48SKyungmin Park 		return -EBADMSG;
7212d262c48SKyungmin Park 
722ff94bc40SHeiko Schocher 	return ubi_eba_write_leb(ubi, vol, lnum, NULL, 0, 0);
7232d262c48SKyungmin Park }
7242d262c48SKyungmin Park EXPORT_SYMBOL_GPL(ubi_leb_map);
7252d262c48SKyungmin Park 
7262d262c48SKyungmin Park /**
7272d262c48SKyungmin Park  * ubi_is_mapped - check if logical eraseblock is mapped.
7282d262c48SKyungmin Park  * @desc: volume descriptor
7292d262c48SKyungmin Park  * @lnum: logical eraseblock number
7302d262c48SKyungmin Park  *
7312d262c48SKyungmin Park  * This function checks if logical eraseblock @lnum is mapped to a physical
7322d262c48SKyungmin Park  * eraseblock. If a logical eraseblock is un-mapped, this does not necessarily
7332d262c48SKyungmin Park  * mean it will still be un-mapped after the UBI device is re-attached. The
7342d262c48SKyungmin Park  * logical eraseblock may become mapped to the physical eraseblock it was last
7352d262c48SKyungmin Park  * mapped to.
7362d262c48SKyungmin Park  *
7372d262c48SKyungmin Park  * This function returns %1 if the LEB is mapped, %0 if not, and a negative
7382d262c48SKyungmin Park  * error code in case of failure. If the volume is damaged because of an
7392d262c48SKyungmin Park  * interrupted update this function just returns immediately with %-EBADF error
7402d262c48SKyungmin Park  * code.
7412d262c48SKyungmin Park  */
ubi_is_mapped(struct ubi_volume_desc * desc,int lnum)7422d262c48SKyungmin Park int ubi_is_mapped(struct ubi_volume_desc *desc, int lnum)
7432d262c48SKyungmin Park {
7442d262c48SKyungmin Park 	struct ubi_volume *vol = desc->vol;
7452d262c48SKyungmin Park 
746ff94bc40SHeiko Schocher 	dbg_gen("test LEB %d:%d", vol->vol_id, lnum);
7472d262c48SKyungmin Park 
7482d262c48SKyungmin Park 	if (lnum < 0 || lnum >= vol->reserved_pebs)
7492d262c48SKyungmin Park 		return -EINVAL;
7502d262c48SKyungmin Park 
7512d262c48SKyungmin Park 	if (vol->upd_marker)
7522d262c48SKyungmin Park 		return -EBADF;
7532d262c48SKyungmin Park 
7542d262c48SKyungmin Park 	return vol->eba_tbl[lnum] >= 0;
7552d262c48SKyungmin Park }
7562d262c48SKyungmin Park EXPORT_SYMBOL_GPL(ubi_is_mapped);
757ff94bc40SHeiko Schocher 
758ff94bc40SHeiko Schocher /**
759ff94bc40SHeiko Schocher  * ubi_sync - synchronize UBI device buffers.
760ff94bc40SHeiko Schocher  * @ubi_num: UBI device to synchronize
761ff94bc40SHeiko Schocher  *
762ff94bc40SHeiko Schocher  * The underlying MTD device may cache data in hardware or in software. This
763ff94bc40SHeiko Schocher  * function ensures the caches are flushed. Returns zero in case of success and
764ff94bc40SHeiko Schocher  * a negative error code in case of failure.
765ff94bc40SHeiko Schocher  */
ubi_sync(int ubi_num)766ff94bc40SHeiko Schocher int ubi_sync(int ubi_num)
767ff94bc40SHeiko Schocher {
768ff94bc40SHeiko Schocher 	struct ubi_device *ubi;
769ff94bc40SHeiko Schocher 
770ff94bc40SHeiko Schocher 	ubi = ubi_get_device(ubi_num);
771ff94bc40SHeiko Schocher 	if (!ubi)
772ff94bc40SHeiko Schocher 		return -ENODEV;
773ff94bc40SHeiko Schocher 
774ff94bc40SHeiko Schocher 	mtd_sync(ubi->mtd);
775ff94bc40SHeiko Schocher 	ubi_put_device(ubi);
776ff94bc40SHeiko Schocher 	return 0;
777ff94bc40SHeiko Schocher }
778ff94bc40SHeiko Schocher EXPORT_SYMBOL_GPL(ubi_sync);
779ff94bc40SHeiko Schocher 
780ff94bc40SHeiko Schocher /**
781ff94bc40SHeiko Schocher  * ubi_flush - flush UBI work queue.
782ff94bc40SHeiko Schocher  * @ubi_num: UBI device to flush work queue
783ff94bc40SHeiko Schocher  * @vol_id: volume id to flush for
784ff94bc40SHeiko Schocher  * @lnum: logical eraseblock number to flush for
785ff94bc40SHeiko Schocher  *
786ff94bc40SHeiko Schocher  * This function executes all pending works for a particular volume id / logical
787ff94bc40SHeiko Schocher  * eraseblock number pair. If either value is set to %UBI_ALL, then it acts as
788ff94bc40SHeiko Schocher  * a wildcard for all of the corresponding volume numbers or logical
789ff94bc40SHeiko Schocher  * eraseblock numbers. It returns zero in case of success and a negative error
790ff94bc40SHeiko Schocher  * code in case of failure.
791ff94bc40SHeiko Schocher  */
ubi_flush(int ubi_num,int vol_id,int lnum)792ff94bc40SHeiko Schocher int ubi_flush(int ubi_num, int vol_id, int lnum)
793ff94bc40SHeiko Schocher {
794ff94bc40SHeiko Schocher 	struct ubi_device *ubi;
795ff94bc40SHeiko Schocher 	int err = 0;
796ff94bc40SHeiko Schocher 
797ff94bc40SHeiko Schocher 	ubi = ubi_get_device(ubi_num);
798ff94bc40SHeiko Schocher 	if (!ubi)
799ff94bc40SHeiko Schocher 		return -ENODEV;
800ff94bc40SHeiko Schocher 
801ff94bc40SHeiko Schocher 	err = ubi_wl_flush(ubi, vol_id, lnum);
802ff94bc40SHeiko Schocher 	ubi_put_device(ubi);
803ff94bc40SHeiko Schocher 	return err;
804ff94bc40SHeiko Schocher }
805ff94bc40SHeiko Schocher EXPORT_SYMBOL_GPL(ubi_flush);
806ff94bc40SHeiko Schocher 
807ff94bc40SHeiko Schocher #ifndef __UBOOT__
808ff94bc40SHeiko Schocher BLOCKING_NOTIFIER_HEAD(ubi_notifiers);
809ff94bc40SHeiko Schocher 
810ff94bc40SHeiko Schocher /**
811ff94bc40SHeiko Schocher  * ubi_register_volume_notifier - register a volume notifier.
812ff94bc40SHeiko Schocher  * @nb: the notifier description object
813ff94bc40SHeiko Schocher  * @ignore_existing: if non-zero, do not send "added" notification for all
814ff94bc40SHeiko Schocher  *                   already existing volumes
815ff94bc40SHeiko Schocher  *
816ff94bc40SHeiko Schocher  * This function registers a volume notifier, which means that
817ff94bc40SHeiko Schocher  * 'nb->notifier_call()' will be invoked when an UBI  volume is created,
818ff94bc40SHeiko Schocher  * removed, re-sized, re-named, or updated. The first argument of the function
819ff94bc40SHeiko Schocher  * is the notification type. The second argument is pointer to a
820ff94bc40SHeiko Schocher  * &struct ubi_notification object which describes the notification event.
821ff94bc40SHeiko Schocher  * Using UBI API from the volume notifier is prohibited.
822ff94bc40SHeiko Schocher  *
823ff94bc40SHeiko Schocher  * This function returns zero in case of success and a negative error code
824ff94bc40SHeiko Schocher  * in case of failure.
825ff94bc40SHeiko Schocher  */
ubi_register_volume_notifier(struct notifier_block * nb,int ignore_existing)826ff94bc40SHeiko Schocher int ubi_register_volume_notifier(struct notifier_block *nb,
827ff94bc40SHeiko Schocher 				 int ignore_existing)
828ff94bc40SHeiko Schocher {
829ff94bc40SHeiko Schocher 	int err;
830ff94bc40SHeiko Schocher 
831ff94bc40SHeiko Schocher 	err = blocking_notifier_chain_register(&ubi_notifiers, nb);
832ff94bc40SHeiko Schocher 	if (err != 0)
833ff94bc40SHeiko Schocher 		return err;
834ff94bc40SHeiko Schocher 	if (ignore_existing)
835ff94bc40SHeiko Schocher 		return 0;
836ff94bc40SHeiko Schocher 
837ff94bc40SHeiko Schocher 	/*
838ff94bc40SHeiko Schocher 	 * We are going to walk all UBI devices and all volumes, and
839ff94bc40SHeiko Schocher 	 * notify the user about existing volumes by the %UBI_VOLUME_ADDED
840ff94bc40SHeiko Schocher 	 * event. We have to lock the @ubi_devices_mutex to make sure UBI
841ff94bc40SHeiko Schocher 	 * devices do not disappear.
842ff94bc40SHeiko Schocher 	 */
843ff94bc40SHeiko Schocher 	mutex_lock(&ubi_devices_mutex);
844ff94bc40SHeiko Schocher 	ubi_enumerate_volumes(nb);
845ff94bc40SHeiko Schocher 	mutex_unlock(&ubi_devices_mutex);
846ff94bc40SHeiko Schocher 
847ff94bc40SHeiko Schocher 	return err;
848ff94bc40SHeiko Schocher }
849ff94bc40SHeiko Schocher EXPORT_SYMBOL_GPL(ubi_register_volume_notifier);
850ff94bc40SHeiko Schocher 
851ff94bc40SHeiko Schocher /**
852ff94bc40SHeiko Schocher  * ubi_unregister_volume_notifier - unregister the volume notifier.
853ff94bc40SHeiko Schocher  * @nb: the notifier description object
854ff94bc40SHeiko Schocher  *
855ff94bc40SHeiko Schocher  * This function unregisters volume notifier @nm and returns zero in case of
856ff94bc40SHeiko Schocher  * success and a negative error code in case of failure.
857ff94bc40SHeiko Schocher  */
ubi_unregister_volume_notifier(struct notifier_block * nb)858ff94bc40SHeiko Schocher int ubi_unregister_volume_notifier(struct notifier_block *nb)
859ff94bc40SHeiko Schocher {
860ff94bc40SHeiko Schocher 	return blocking_notifier_chain_unregister(&ubi_notifiers, nb);
861ff94bc40SHeiko Schocher }
862ff94bc40SHeiko Schocher EXPORT_SYMBOL_GPL(ubi_unregister_volume_notifier);
863ff94bc40SHeiko Schocher #endif
864