eba.c 40.2 KB
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/*
 * Copyright (c) International Business Machines Corp., 2006
 *
 * This program is free software; you can redistribute it and/or modify
 * it under the terms of the GNU General Public License as published by
 * the Free Software Foundation; either version 2 of the License, or
 * (at your option) any later version.
 *
 * This program is distributed in the hope that it will be useful,
 * but WITHOUT ANY WARRANTY; without even the implied warranty of
 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See
 * the GNU General Public License for more details.
 *
 * You should have received a copy of the GNU General Public License
 * along with this program; if not, write to the Free Software
 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
 *
 * Author: Artem Bityutskiy (Битюцкий Артём)
 */

/*
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 * The UBI Eraseblock Association (EBA) sub-system.
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 *
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 * This sub-system is responsible for I/O to/from logical eraseblock.
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 *
 * Although in this implementation the EBA table is fully kept and managed in
 * RAM, which assumes poor scalability, it might be (partially) maintained on
 * flash in future implementations.
 *
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 * The EBA sub-system implements per-logical eraseblock locking. Before
 * accessing a logical eraseblock it is locked for reading or writing. The
 * per-logical eraseblock locking is implemented by means of the lock tree. The
 * lock tree is an RB-tree which refers all the currently locked logical
 * eraseblocks. The lock tree elements are &struct ubi_ltree_entry objects.
 * They are indexed by (@vol_id, @lnum) pairs.
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 *
 * EBA also maintains the global sequence counter which is incremented each
 * time a logical eraseblock is mapped to a physical eraseblock and it is
 * stored in the volume identifier header. This means that each VID header has
 * a unique sequence number. The sequence number is only increased an we assume
 * 64 bits is enough to never overflow.
 */

#include <linux/slab.h>
#include <linux/crc32.h>
#include <linux/err.h>
#include "ubi.h"

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/* Number of physical eraseblocks reserved for atomic LEB change operation */
#define EBA_RESERVED_PEBS 1

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/**
 * next_sqnum - get next sequence number.
 * @ubi: UBI device description object
 *
 * This function returns next sequence number to use, which is just the current
 * global sequence counter value. It also increases the global sequence
 * counter.
 */
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unsigned long long ubi_next_sqnum(struct ubi_device *ubi)
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{
	unsigned long long sqnum;

	spin_lock(&ubi->ltree_lock);
	sqnum = ubi->global_sqnum++;
	spin_unlock(&ubi->ltree_lock);

	return sqnum;
}

/**
 * ubi_get_compat - get compatibility flags of a volume.
 * @ubi: UBI device description object
 * @vol_id: volume ID
 *
 * This function returns compatibility flags for an internal volume. User
 * volumes have no compatibility flags, so %0 is returned.
 */
static int ubi_get_compat(const struct ubi_device *ubi, int vol_id)
{
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	if (vol_id == UBI_LAYOUT_VOLUME_ID)
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		return UBI_LAYOUT_VOLUME_COMPAT;
	return 0;
}

/**
 * ltree_lookup - look up the lock tree.
 * @ubi: UBI device description object
 * @vol_id: volume ID
 * @lnum: logical eraseblock number
 *
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 * This function returns a pointer to the corresponding &struct ubi_ltree_entry
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 * object if the logical eraseblock is locked and %NULL if it is not.
 * @ubi->ltree_lock has to be locked.
 */
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static struct ubi_ltree_entry *ltree_lookup(struct ubi_device *ubi, int vol_id,
					    int lnum)
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{
	struct rb_node *p;

	p = ubi->ltree.rb_node;
	while (p) {
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		struct ubi_ltree_entry *le;
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		le = rb_entry(p, struct ubi_ltree_entry, rb);
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		if (vol_id < le->vol_id)
			p = p->rb_left;
		else if (vol_id > le->vol_id)
			p = p->rb_right;
		else {
			if (lnum < le->lnum)
				p = p->rb_left;
			else if (lnum > le->lnum)
				p = p->rb_right;
			else
				return le;
		}
	}

	return NULL;
}

/**
 * ltree_add_entry - add new entry to the lock tree.
 * @ubi: UBI device description object
 * @vol_id: volume ID
 * @lnum: logical eraseblock number
 *
 * This function adds new entry for logical eraseblock (@vol_id, @lnum) to the
 * lock tree. If such entry is already there, its usage counter is increased.
 * Returns pointer to the lock tree entry or %-ENOMEM if memory allocation
 * failed.
 */
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static struct ubi_ltree_entry *ltree_add_entry(struct ubi_device *ubi,
					       int vol_id, int lnum)
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{
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	struct ubi_ltree_entry *le, *le1, *le_free;
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	le = kmalloc(sizeof(struct ubi_ltree_entry), GFP_NOFS);
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	if (!le)
		return ERR_PTR(-ENOMEM);

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	le->users = 0;
	init_rwsem(&le->mutex);
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	le->vol_id = vol_id;
	le->lnum = lnum;

	spin_lock(&ubi->ltree_lock);
	le1 = ltree_lookup(ubi, vol_id, lnum);

	if (le1) {
		/*
		 * This logical eraseblock is already locked. The newly
		 * allocated lock entry is not needed.
		 */
		le_free = le;
		le = le1;
	} else {
		struct rb_node **p, *parent = NULL;

		/*
		 * No lock entry, add the newly allocated one to the
		 * @ubi->ltree RB-tree.
		 */
		le_free = NULL;

		p = &ubi->ltree.rb_node;
		while (*p) {
			parent = *p;
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			le1 = rb_entry(parent, struct ubi_ltree_entry, rb);
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			if (vol_id < le1->vol_id)
				p = &(*p)->rb_left;
			else if (vol_id > le1->vol_id)
				p = &(*p)->rb_right;
			else {
				ubi_assert(lnum != le1->lnum);
				if (lnum < le1->lnum)
					p = &(*p)->rb_left;
				else
					p = &(*p)->rb_right;
			}
		}

		rb_link_node(&le->rb, parent, p);
		rb_insert_color(&le->rb, &ubi->ltree);
	}
	le->users += 1;
	spin_unlock(&ubi->ltree_lock);

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	kfree(le_free);
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	return le;
}

/**
 * leb_read_lock - lock logical eraseblock for reading.
 * @ubi: UBI device description object
 * @vol_id: volume ID
 * @lnum: logical eraseblock number
 *
 * This function locks a logical eraseblock for reading. Returns zero in case
 * of success and a negative error code in case of failure.
 */
static int leb_read_lock(struct ubi_device *ubi, int vol_id, int lnum)
{
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	struct ubi_ltree_entry *le;
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	le = ltree_add_entry(ubi, vol_id, lnum);
	if (IS_ERR(le))
		return PTR_ERR(le);
	down_read(&le->mutex);
	return 0;
}

/**
 * leb_read_unlock - unlock logical eraseblock.
 * @ubi: UBI device description object
 * @vol_id: volume ID
 * @lnum: logical eraseblock number
 */
static void leb_read_unlock(struct ubi_device *ubi, int vol_id, int lnum)
{
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	struct ubi_ltree_entry *le;
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	spin_lock(&ubi->ltree_lock);
	le = ltree_lookup(ubi, vol_id, lnum);
	le->users -= 1;
	ubi_assert(le->users >= 0);
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	up_read(&le->mutex);
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	if (le->users == 0) {
		rb_erase(&le->rb, &ubi->ltree);
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		kfree(le);
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	}
	spin_unlock(&ubi->ltree_lock);
}

/**
 * leb_write_lock - lock logical eraseblock for writing.
 * @ubi: UBI device description object
 * @vol_id: volume ID
 * @lnum: logical eraseblock number
 *
 * This function locks a logical eraseblock for writing. Returns zero in case
 * of success and a negative error code in case of failure.
 */
static int leb_write_lock(struct ubi_device *ubi, int vol_id, int lnum)
{
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	struct ubi_ltree_entry *le;
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	le = ltree_add_entry(ubi, vol_id, lnum);
	if (IS_ERR(le))
		return PTR_ERR(le);
	down_write(&le->mutex);
	return 0;
}

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/**
 * leb_write_lock - lock logical eraseblock for writing.
 * @ubi: UBI device description object
 * @vol_id: volume ID
 * @lnum: logical eraseblock number
 *
 * This function locks a logical eraseblock for writing if there is no
 * contention and does nothing if there is contention. Returns %0 in case of
 * success, %1 in case of contention, and and a negative error code in case of
 * failure.
 */
static int leb_write_trylock(struct ubi_device *ubi, int vol_id, int lnum)
{
	struct ubi_ltree_entry *le;

	le = ltree_add_entry(ubi, vol_id, lnum);
	if (IS_ERR(le))
		return PTR_ERR(le);
	if (down_write_trylock(&le->mutex))
		return 0;

	/* Contention, cancel */
	spin_lock(&ubi->ltree_lock);
	le->users -= 1;
	ubi_assert(le->users >= 0);
	if (le->users == 0) {
		rb_erase(&le->rb, &ubi->ltree);
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		kfree(le);
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	}
	spin_unlock(&ubi->ltree_lock);
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	return 1;
}

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/**
 * leb_write_unlock - unlock logical eraseblock.
 * @ubi: UBI device description object
 * @vol_id: volume ID
 * @lnum: logical eraseblock number
 */
static void leb_write_unlock(struct ubi_device *ubi, int vol_id, int lnum)
{
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	struct ubi_ltree_entry *le;
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	spin_lock(&ubi->ltree_lock);
	le = ltree_lookup(ubi, vol_id, lnum);
	le->users -= 1;
	ubi_assert(le->users >= 0);
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	up_write(&le->mutex);
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	if (le->users == 0) {
		rb_erase(&le->rb, &ubi->ltree);
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		kfree(le);
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	}
	spin_unlock(&ubi->ltree_lock);
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}

/**
 * ubi_eba_unmap_leb - un-map logical eraseblock.
 * @ubi: UBI device description object
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 * @vol: volume description object
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 * @lnum: logical eraseblock number
 *
 * This function un-maps logical eraseblock @lnum and schedules corresponding
 * physical eraseblock for erasure. Returns zero in case of success and a
 * negative error code in case of failure.
 */
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int ubi_eba_unmap_leb(struct ubi_device *ubi, struct ubi_volume *vol,
		      int lnum)
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{
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	int err, pnum, vol_id = vol->vol_id;
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	if (ubi->ro_mode)
		return -EROFS;

	err = leb_write_lock(ubi, vol_id, lnum);
	if (err)
		return err;

	pnum = vol->eba_tbl[lnum];
	if (pnum < 0)
		/* This logical eraseblock is already unmapped */
		goto out_unlock;

	dbg_eba("erase LEB %d:%d, PEB %d", vol_id, lnum, pnum);

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	down_read(&ubi->fm_eba_sem);
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	vol->eba_tbl[lnum] = UBI_LEB_UNMAPPED;
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	up_read(&ubi->fm_eba_sem);
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	err = ubi_wl_put_peb(ubi, vol_id, lnum, pnum, 0);
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out_unlock:
	leb_write_unlock(ubi, vol_id, lnum);
	return err;
}

/**
 * ubi_eba_read_leb - read data.
 * @ubi: UBI device description object
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 * @vol: volume description object
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 * @lnum: logical eraseblock number
 * @buf: buffer to store the read data
 * @offset: offset from where to read
 * @len: how many bytes to read
 * @check: data CRC check flag
 *
 * If the logical eraseblock @lnum is unmapped, @buf is filled with 0xFF
 * bytes. The @check flag only makes sense for static volumes and forces
 * eraseblock data CRC checking.
 *
 * In case of success this function returns zero. In case of a static volume,
 * if data CRC mismatches - %-EBADMSG is returned. %-EBADMSG may also be
 * returned for any volume type if an ECC error was detected by the MTD device
 * driver. Other negative error cored may be returned in case of other errors.
 */
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int ubi_eba_read_leb(struct ubi_device *ubi, struct ubi_volume *vol, int lnum,
		     void *buf, int offset, int len, int check)
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{
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	int err, pnum, scrub = 0, vol_id = vol->vol_id;
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	struct ubi_vid_hdr *vid_hdr;
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	uint32_t uninitialized_var(crc);
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	err = leb_read_lock(ubi, vol_id, lnum);
	if (err)
		return err;

	pnum = vol->eba_tbl[lnum];
	if (pnum < 0) {
		/*
		 * The logical eraseblock is not mapped, fill the whole buffer
		 * with 0xFF bytes. The exception is static volumes for which
		 * it is an error to read unmapped logical eraseblocks.
		 */
		dbg_eba("read %d bytes from offset %d of LEB %d:%d (unmapped)",
			len, offset, vol_id, lnum);
		leb_read_unlock(ubi, vol_id, lnum);
		ubi_assert(vol->vol_type != UBI_STATIC_VOLUME);
		memset(buf, 0xFF, len);
		return 0;
	}

	dbg_eba("read %d bytes from offset %d of LEB %d:%d, PEB %d",
		len, offset, vol_id, lnum, pnum);

	if (vol->vol_type == UBI_DYNAMIC_VOLUME)
		check = 0;

retry:
	if (check) {
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		vid_hdr = ubi_zalloc_vid_hdr(ubi, GFP_NOFS);
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		if (!vid_hdr) {
			err = -ENOMEM;
			goto out_unlock;
		}

		err = ubi_io_read_vid_hdr(ubi, pnum, vid_hdr, 1);
		if (err && err != UBI_IO_BITFLIPS) {
			if (err > 0) {
				/*
				 * The header is either absent or corrupted.
				 * The former case means there is a bug -
				 * switch to read-only mode just in case.
				 * The latter case means a real corruption - we
				 * may try to recover data. FIXME: but this is
				 * not implemented.
				 */
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				if (err == UBI_IO_BAD_HDR_EBADMSG ||
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				    err == UBI_IO_BAD_HDR) {
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					ubi_warn(ubi, "corrupted VID header at PEB %d, LEB %d:%d",
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						 pnum, vol_id, lnum);
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					err = -EBADMSG;
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				} else {
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					err = -EINVAL;
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					ubi_ro_mode(ubi);
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				}
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			}
			goto out_free;
		} else if (err == UBI_IO_BITFLIPS)
			scrub = 1;

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		ubi_assert(lnum < be32_to_cpu(vid_hdr->used_ebs));
		ubi_assert(len == be32_to_cpu(vid_hdr->data_size));
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		crc = be32_to_cpu(vid_hdr->data_crc);
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		ubi_free_vid_hdr(ubi, vid_hdr);
	}

	err = ubi_io_read_data(ubi, buf, pnum, offset, len);
	if (err) {
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		if (err == UBI_IO_BITFLIPS)
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			scrub = 1;
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		else if (mtd_is_eccerr(err)) {
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			if (vol->vol_type == UBI_DYNAMIC_VOLUME)
				goto out_unlock;
			scrub = 1;
			if (!check) {
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				ubi_msg(ubi, "force data checking");
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				check = 1;
				goto retry;
			}
		} else
			goto out_unlock;
	}

	if (check) {
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		uint32_t crc1 = crc32(UBI_CRC32_INIT, buf, len);
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		if (crc1 != crc) {
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			ubi_warn(ubi, "CRC error: calculated %#08x, must be %#08x",
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				 crc1, crc);
			err = -EBADMSG;
			goto out_unlock;
		}
	}

	if (scrub)
		err = ubi_wl_scrub_peb(ubi, pnum);

	leb_read_unlock(ubi, vol_id, lnum);
	return err;

out_free:
	ubi_free_vid_hdr(ubi, vid_hdr);
out_unlock:
	leb_read_unlock(ubi, vol_id, lnum);
	return err;
}

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/**
 * ubi_eba_read_leb_sg - read data into a scatter gather list.
 * @ubi: UBI device description object
 * @vol: volume description object
 * @lnum: logical eraseblock number
 * @sgl: UBI scatter gather list to store the read data
 * @offset: offset from where to read
 * @len: how many bytes to read
 * @check: data CRC check flag
 *
 * This function works exactly like ubi_eba_read_leb(). But instead of
 * storing the read data into a buffer it writes to an UBI scatter gather
 * list.
 */
int ubi_eba_read_leb_sg(struct ubi_device *ubi, struct ubi_volume *vol,
			struct ubi_sgl *sgl, int lnum, int offset, int len,
			int check)
{
	int to_read;
	int ret;
	struct scatterlist *sg;

	for (;;) {
		ubi_assert(sgl->list_pos < UBI_MAX_SG_COUNT);
		sg = &sgl->sg[sgl->list_pos];
		if (len < sg->length - sgl->page_pos)
			to_read = len;
		else
			to_read = sg->length - sgl->page_pos;

		ret = ubi_eba_read_leb(ubi, vol, lnum,
				       sg_virt(sg) + sgl->page_pos, offset,
				       to_read, check);
		if (ret < 0)
			return ret;

		offset += to_read;
		len -= to_read;
		if (!len) {
			sgl->page_pos += to_read;
			if (sgl->page_pos == sg->length) {
				sgl->list_pos++;
				sgl->page_pos = 0;
			}

			break;
		}

		sgl->list_pos++;
		sgl->page_pos = 0;
	}

	return ret;
}

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/**
 * recover_peb - recover from write failure.
 * @ubi: UBI device description object
 * @pnum: the physical eraseblock to recover
 * @vol_id: volume ID
 * @lnum: logical eraseblock number
 * @buf: data which was not written because of the write failure
 * @offset: offset of the failed write
 * @len: how many bytes should have been written
 *
 * This function is called in case of a write failure and moves all good data
 * from the potentially bad physical eraseblock to a good physical eraseblock.
 * This function also writes the data which was not written due to the failure.
 * Returns new physical eraseblock number in case of success, and a negative
 * error code in case of failure.
 */
static int recover_peb(struct ubi_device *ubi, int pnum, int vol_id, int lnum,
		       const void *buf, int offset, int len)
{
	int err, idx = vol_id2idx(ubi, vol_id), new_pnum, data_size, tries = 0;
	struct ubi_volume *vol = ubi->volumes[idx];
	struct ubi_vid_hdr *vid_hdr;

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	vid_hdr = ubi_zalloc_vid_hdr(ubi, GFP_NOFS);
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	if (!vid_hdr)
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		return -ENOMEM;

retry:
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	new_pnum = ubi_wl_get_peb(ubi);
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	if (new_pnum < 0) {
		ubi_free_vid_hdr(ubi, vid_hdr);
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		up_read(&ubi->fm_eba_sem);
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		return new_pnum;
	}

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	ubi_msg(ubi, "recover PEB %d, move data to PEB %d",
		pnum, new_pnum);
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	err = ubi_io_read_vid_hdr(ubi, pnum, vid_hdr, 1);
	if (err && err != UBI_IO_BITFLIPS) {
		if (err > 0)
			err = -EIO;
581
		up_read(&ubi->fm_eba_sem);
A
Artem B. Bityutskiy 已提交
582 583 584
		goto out_put;
	}

R
Richard Weinberger 已提交
585
	vid_hdr->sqnum = cpu_to_be64(ubi_next_sqnum(ubi));
A
Artem B. Bityutskiy 已提交
586
	err = ubi_io_write_vid_hdr(ubi, new_pnum, vid_hdr);
587
	if (err) {
588
		up_read(&ubi->fm_eba_sem);
A
Artem B. Bityutskiy 已提交
589
		goto write_error;
590
	}
A
Artem B. Bityutskiy 已提交
591 592

	data_size = offset + len;
A
Artem Bityutskiy 已提交
593
	mutex_lock(&ubi->buf_mutex);
594
	memset(ubi->peb_buf + offset, 0xFF, len);
A
Artem B. Bityutskiy 已提交
595 596 597

	/* Read everything before the area where the write failure happened */
	if (offset > 0) {
598
		err = ubi_io_read_data(ubi, ubi->peb_buf, pnum, 0, offset);
599
		if (err && err != UBI_IO_BITFLIPS) {
600
			up_read(&ubi->fm_eba_sem);
A
Artem Bityutskiy 已提交
601
			goto out_unlock;
602
		}
A
Artem B. Bityutskiy 已提交
603 604
	}

605
	memcpy(ubi->peb_buf + offset, buf, len);
A
Artem B. Bityutskiy 已提交
606

607
	err = ubi_io_write_data(ubi, ubi->peb_buf, new_pnum, 0, data_size);
A
Artem Bityutskiy 已提交
608 609
	if (err) {
		mutex_unlock(&ubi->buf_mutex);
610
		up_read(&ubi->fm_eba_sem);
A
Artem B. Bityutskiy 已提交
611
		goto write_error;
A
Artem Bityutskiy 已提交
612
	}
A
Artem B. Bityutskiy 已提交
613

614
	mutex_unlock(&ubi->buf_mutex);
A
Artem B. Bityutskiy 已提交
615 616 617
	ubi_free_vid_hdr(ubi, vid_hdr);

	vol->eba_tbl[lnum] = new_pnum;
618
	up_read(&ubi->fm_eba_sem);
619
	ubi_wl_put_peb(ubi, vol_id, lnum, pnum, 1);
A
Artem B. Bityutskiy 已提交
620

621
	ubi_msg(ubi, "data was successfully recovered");
A
Artem B. Bityutskiy 已提交
622 623
	return 0;

A
Artem Bityutskiy 已提交
624
out_unlock:
625
	mutex_unlock(&ubi->buf_mutex);
A
Artem Bityutskiy 已提交
626
out_put:
627
	ubi_wl_put_peb(ubi, vol_id, lnum, new_pnum, 1);
A
Artem B. Bityutskiy 已提交
628 629 630 631 632 633 634 635
	ubi_free_vid_hdr(ubi, vid_hdr);
	return err;

write_error:
	/*
	 * Bad luck? This physical eraseblock is bad too? Crud. Let's try to
	 * get another one.
	 */
636
	ubi_warn(ubi, "failed to write to PEB %d", new_pnum);
637
	ubi_wl_put_peb(ubi, vol_id, lnum, new_pnum, 1);
A
Artem B. Bityutskiy 已提交
638 639 640 641
	if (++tries > UBI_IO_RETRIES) {
		ubi_free_vid_hdr(ubi, vid_hdr);
		return err;
	}
642
	ubi_msg(ubi, "try again");
A
Artem B. Bityutskiy 已提交
643 644 645 646 647 648
	goto retry;
}

/**
 * ubi_eba_write_leb - write data to dynamic volume.
 * @ubi: UBI device description object
649
 * @vol: volume description object
A
Artem B. Bityutskiy 已提交
650 651 652 653 654 655
 * @lnum: logical eraseblock number
 * @buf: the data to write
 * @offset: offset within the logical eraseblock where to write
 * @len: how many bytes to write
 *
 * This function writes data to logical eraseblock @lnum of a dynamic volume
656
 * @vol. Returns zero in case of success and a negative error code in case
A
Artem B. Bityutskiy 已提交
657 658 659
 * of failure. In case of error, it is possible that something was still
 * written to the flash media, but may be some garbage.
 */
660
int ubi_eba_write_leb(struct ubi_device *ubi, struct ubi_volume *vol, int lnum,
R
Richard Weinberger 已提交
661
		      const void *buf, int offset, int len)
A
Artem B. Bityutskiy 已提交
662
{
663
	int err, pnum, tries = 0, vol_id = vol->vol_id;
A
Artem B. Bityutskiy 已提交
664 665 666 667 668 669 670 671 672 673 674 675 676 677 678 679
	struct ubi_vid_hdr *vid_hdr;

	if (ubi->ro_mode)
		return -EROFS;

	err = leb_write_lock(ubi, vol_id, lnum);
	if (err)
		return err;

	pnum = vol->eba_tbl[lnum];
	if (pnum >= 0) {
		dbg_eba("write %d bytes at offset %d of LEB %d:%d, PEB %d",
			len, offset, vol_id, lnum, pnum);

		err = ubi_io_write_data(ubi, buf, pnum, offset, len);
		if (err) {
680
			ubi_warn(ubi, "failed to write data to PEB %d", pnum);
A
Artem B. Bityutskiy 已提交
681
			if (err == -EIO && ubi->bad_allowed)
682 683
				err = recover_peb(ubi, pnum, vol_id, lnum, buf,
						  offset, len);
A
Artem B. Bityutskiy 已提交
684 685 686 687 688 689 690 691 692 693 694
			if (err)
				ubi_ro_mode(ubi);
		}
		leb_write_unlock(ubi, vol_id, lnum);
		return err;
	}

	/*
	 * The logical eraseblock is not mapped. We have to get a free physical
	 * eraseblock and write the volume identifier header there first.
	 */
695
	vid_hdr = ubi_zalloc_vid_hdr(ubi, GFP_NOFS);
A
Artem B. Bityutskiy 已提交
696 697 698 699 700 701
	if (!vid_hdr) {
		leb_write_unlock(ubi, vol_id, lnum);
		return -ENOMEM;
	}

	vid_hdr->vol_type = UBI_VID_DYNAMIC;
R
Richard Weinberger 已提交
702
	vid_hdr->sqnum = cpu_to_be64(ubi_next_sqnum(ubi));
703 704
	vid_hdr->vol_id = cpu_to_be32(vol_id);
	vid_hdr->lnum = cpu_to_be32(lnum);
A
Artem B. Bityutskiy 已提交
705
	vid_hdr->compat = ubi_get_compat(ubi, vol_id);
706
	vid_hdr->data_pad = cpu_to_be32(vol->data_pad);
A
Artem B. Bityutskiy 已提交
707 708

retry:
R
Richard Weinberger 已提交
709
	pnum = ubi_wl_get_peb(ubi);
A
Artem B. Bityutskiy 已提交
710 711 712
	if (pnum < 0) {
		ubi_free_vid_hdr(ubi, vid_hdr);
		leb_write_unlock(ubi, vol_id, lnum);
713
		up_read(&ubi->fm_eba_sem);
A
Artem B. Bityutskiy 已提交
714 715 716 717 718 719 720 721
		return pnum;
	}

	dbg_eba("write VID hdr and %d bytes at offset %d of LEB %d:%d, PEB %d",
		len, offset, vol_id, lnum, pnum);

	err = ubi_io_write_vid_hdr(ubi, pnum, vid_hdr);
	if (err) {
722
		ubi_warn(ubi, "failed to write VID header to LEB %d:%d, PEB %d",
A
Artem B. Bityutskiy 已提交
723
			 vol_id, lnum, pnum);
724
		up_read(&ubi->fm_eba_sem);
A
Artem B. Bityutskiy 已提交
725 726 727
		goto write_error;
	}

A
Artem Bityutskiy 已提交
728 729 730
	if (len) {
		err = ubi_io_write_data(ubi, buf, pnum, offset, len);
		if (err) {
731
			ubi_warn(ubi, "failed to write %d bytes at offset %d of LEB %d:%d, PEB %d",
A
Artem Bityutskiy 已提交
732
				 len, offset, vol_id, lnum, pnum);
733
			up_read(&ubi->fm_eba_sem);
A
Artem Bityutskiy 已提交
734 735
			goto write_error;
		}
A
Artem B. Bityutskiy 已提交
736 737 738
	}

	vol->eba_tbl[lnum] = pnum;
739
	up_read(&ubi->fm_eba_sem);
A
Artem B. Bityutskiy 已提交
740 741 742 743 744 745 746 747 748 749 750 751 752 753 754 755 756 757

	leb_write_unlock(ubi, vol_id, lnum);
	ubi_free_vid_hdr(ubi, vid_hdr);
	return 0;

write_error:
	if (err != -EIO || !ubi->bad_allowed) {
		ubi_ro_mode(ubi);
		leb_write_unlock(ubi, vol_id, lnum);
		ubi_free_vid_hdr(ubi, vid_hdr);
		return err;
	}

	/*
	 * Fortunately, this is the first write operation to this physical
	 * eraseblock, so just put it and request a new one. We assume that if
	 * this physical eraseblock went bad, the erase code will handle that.
	 */
758
	err = ubi_wl_put_peb(ubi, vol_id, lnum, pnum, 1);
A
Artem B. Bityutskiy 已提交
759 760 761 762 763 764 765
	if (err || ++tries > UBI_IO_RETRIES) {
		ubi_ro_mode(ubi);
		leb_write_unlock(ubi, vol_id, lnum);
		ubi_free_vid_hdr(ubi, vid_hdr);
		return err;
	}

R
Richard Weinberger 已提交
766
	vid_hdr->sqnum = cpu_to_be64(ubi_next_sqnum(ubi));
767
	ubi_msg(ubi, "try another PEB");
A
Artem B. Bityutskiy 已提交
768 769 770 771 772 773
	goto retry;
}

/**
 * ubi_eba_write_leb_st - write data to static volume.
 * @ubi: UBI device description object
774
 * @vol: volume description object
A
Artem B. Bityutskiy 已提交
775 776 777 778 779 780
 * @lnum: logical eraseblock number
 * @buf: data to write
 * @len: how many bytes to write
 * @used_ebs: how many logical eraseblocks will this volume contain
 *
 * This function writes data to logical eraseblock @lnum of static volume
781
 * @vol. The @used_ebs argument should contain total number of logical
A
Artem B. Bityutskiy 已提交
782 783 784 785 786 787 788
 * eraseblock in this static volume.
 *
 * When writing to the last logical eraseblock, the @len argument doesn't have
 * to be aligned to the minimal I/O unit size. Instead, it has to be equivalent
 * to the real data size, although the @buf buffer has to contain the
 * alignment. In all other cases, @len has to be aligned.
 *
789
 * It is prohibited to write more than once to logical eraseblocks of static
A
Artem B. Bityutskiy 已提交
790 791 792
 * volumes. This function returns zero in case of success and a negative error
 * code in case of failure.
 */
793
int ubi_eba_write_leb_st(struct ubi_device *ubi, struct ubi_volume *vol,
R
Richard Weinberger 已提交
794
			 int lnum, const void *buf, int len, int used_ebs)
A
Artem B. Bityutskiy 已提交
795
{
796
	int err, pnum, tries = 0, data_size = len, vol_id = vol->vol_id;
A
Artem B. Bityutskiy 已提交
797 798 799 800 801 802 803 804 805 806
	struct ubi_vid_hdr *vid_hdr;
	uint32_t crc;

	if (ubi->ro_mode)
		return -EROFS;

	if (lnum == used_ebs - 1)
		/* If this is the last LEB @len may be unaligned */
		len = ALIGN(data_size, ubi->min_io_size);
	else
807
		ubi_assert(!(len & (ubi->min_io_size - 1)));
A
Artem B. Bityutskiy 已提交
808

809
	vid_hdr = ubi_zalloc_vid_hdr(ubi, GFP_NOFS);
A
Artem B. Bityutskiy 已提交
810 811 812 813 814 815 816 817 818
	if (!vid_hdr)
		return -ENOMEM;

	err = leb_write_lock(ubi, vol_id, lnum);
	if (err) {
		ubi_free_vid_hdr(ubi, vid_hdr);
		return err;
	}

R
Richard Weinberger 已提交
819
	vid_hdr->sqnum = cpu_to_be64(ubi_next_sqnum(ubi));
820 821
	vid_hdr->vol_id = cpu_to_be32(vol_id);
	vid_hdr->lnum = cpu_to_be32(lnum);
A
Artem B. Bityutskiy 已提交
822
	vid_hdr->compat = ubi_get_compat(ubi, vol_id);
823
	vid_hdr->data_pad = cpu_to_be32(vol->data_pad);
A
Artem B. Bityutskiy 已提交
824 825 826

	crc = crc32(UBI_CRC32_INIT, buf, data_size);
	vid_hdr->vol_type = UBI_VID_STATIC;
827 828 829
	vid_hdr->data_size = cpu_to_be32(data_size);
	vid_hdr->used_ebs = cpu_to_be32(used_ebs);
	vid_hdr->data_crc = cpu_to_be32(crc);
A
Artem B. Bityutskiy 已提交
830 831

retry:
R
Richard Weinberger 已提交
832
	pnum = ubi_wl_get_peb(ubi);
A
Artem B. Bityutskiy 已提交
833 834 835
	if (pnum < 0) {
		ubi_free_vid_hdr(ubi, vid_hdr);
		leb_write_unlock(ubi, vol_id, lnum);
836
		up_read(&ubi->fm_eba_sem);
A
Artem B. Bityutskiy 已提交
837 838 839 840 841 842 843 844
		return pnum;
	}

	dbg_eba("write VID hdr and %d bytes at LEB %d:%d, PEB %d, used_ebs %d",
		len, vol_id, lnum, pnum, used_ebs);

	err = ubi_io_write_vid_hdr(ubi, pnum, vid_hdr);
	if (err) {
845
		ubi_warn(ubi, "failed to write VID header to LEB %d:%d, PEB %d",
A
Artem B. Bityutskiy 已提交
846
			 vol_id, lnum, pnum);
847
		up_read(&ubi->fm_eba_sem);
A
Artem B. Bityutskiy 已提交
848 849 850 851 852
		goto write_error;
	}

	err = ubi_io_write_data(ubi, buf, pnum, 0, len);
	if (err) {
853
		ubi_warn(ubi, "failed to write %d bytes of data to PEB %d",
A
Artem B. Bityutskiy 已提交
854
			 len, pnum);
855
		up_read(&ubi->fm_eba_sem);
A
Artem B. Bityutskiy 已提交
856 857 858 859 860
		goto write_error;
	}

	ubi_assert(vol->eba_tbl[lnum] < 0);
	vol->eba_tbl[lnum] = pnum;
861
	up_read(&ubi->fm_eba_sem);
A
Artem B. Bityutskiy 已提交
862 863 864 865 866 867 868 869 870 871 872 873 874 875 876 877 878 879

	leb_write_unlock(ubi, vol_id, lnum);
	ubi_free_vid_hdr(ubi, vid_hdr);
	return 0;

write_error:
	if (err != -EIO || !ubi->bad_allowed) {
		/*
		 * This flash device does not admit of bad eraseblocks or
		 * something nasty and unexpected happened. Switch to read-only
		 * mode just in case.
		 */
		ubi_ro_mode(ubi);
		leb_write_unlock(ubi, vol_id, lnum);
		ubi_free_vid_hdr(ubi, vid_hdr);
		return err;
	}

880
	err = ubi_wl_put_peb(ubi, vol_id, lnum, pnum, 1);
A
Artem B. Bityutskiy 已提交
881 882 883 884 885 886 887
	if (err || ++tries > UBI_IO_RETRIES) {
		ubi_ro_mode(ubi);
		leb_write_unlock(ubi, vol_id, lnum);
		ubi_free_vid_hdr(ubi, vid_hdr);
		return err;
	}

R
Richard Weinberger 已提交
888
	vid_hdr->sqnum = cpu_to_be64(ubi_next_sqnum(ubi));
889
	ubi_msg(ubi, "try another PEB");
A
Artem B. Bityutskiy 已提交
890 891 892 893 894 895
	goto retry;
}

/*
 * ubi_eba_atomic_leb_change - change logical eraseblock atomically.
 * @ubi: UBI device description object
A
Artem Bityutskiy 已提交
896
 * @vol: volume description object
A
Artem B. Bityutskiy 已提交
897 898 899 900 901 902 903 904 905
 * @lnum: logical eraseblock number
 * @buf: data to write
 * @len: how many bytes to write
 *
 * This function changes the contents of a logical eraseblock atomically. @buf
 * has to contain new logical eraseblock data, and @len - the length of the
 * data, which has to be aligned. This function guarantees that in case of an
 * unclean reboot the old contents is preserved. Returns zero in case of
 * success and a negative error code in case of failure.
906 907 908
 *
 * UBI reserves one LEB for the "atomic LEB change" operation, so only one
 * LEB change may be done at a time. This is ensured by @ubi->alc_mutex.
A
Artem B. Bityutskiy 已提交
909
 */
910
int ubi_eba_atomic_leb_change(struct ubi_device *ubi, struct ubi_volume *vol,
R
Richard Weinberger 已提交
911
			      int lnum, const void *buf, int len)
A
Artem B. Bityutskiy 已提交
912
{
913
	int err, pnum, old_pnum, tries = 0, vol_id = vol->vol_id;
A
Artem B. Bityutskiy 已提交
914 915 916 917 918 919
	struct ubi_vid_hdr *vid_hdr;
	uint32_t crc;

	if (ubi->ro_mode)
		return -EROFS;

A
Artem Bityutskiy 已提交
920 921 922 923 924 925 926 927
	if (len == 0) {
		/*
		 * Special case when data length is zero. In this case the LEB
		 * has to be unmapped and mapped somewhere else.
		 */
		err = ubi_eba_unmap_leb(ubi, vol, lnum);
		if (err)
			return err;
R
Richard Weinberger 已提交
928
		return ubi_eba_write_leb(ubi, vol, lnum, NULL, 0, 0);
A
Artem Bityutskiy 已提交
929 930
	}

931
	vid_hdr = ubi_zalloc_vid_hdr(ubi, GFP_NOFS);
A
Artem B. Bityutskiy 已提交
932 933 934
	if (!vid_hdr)
		return -ENOMEM;

935
	mutex_lock(&ubi->alc_mutex);
A
Artem B. Bityutskiy 已提交
936
	err = leb_write_lock(ubi, vol_id, lnum);
937 938
	if (err)
		goto out_mutex;
A
Artem B. Bityutskiy 已提交
939

R
Richard Weinberger 已提交
940
	vid_hdr->sqnum = cpu_to_be64(ubi_next_sqnum(ubi));
941 942
	vid_hdr->vol_id = cpu_to_be32(vol_id);
	vid_hdr->lnum = cpu_to_be32(lnum);
A
Artem B. Bityutskiy 已提交
943
	vid_hdr->compat = ubi_get_compat(ubi, vol_id);
944
	vid_hdr->data_pad = cpu_to_be32(vol->data_pad);
A
Artem B. Bityutskiy 已提交
945 946

	crc = crc32(UBI_CRC32_INIT, buf, len);
947
	vid_hdr->vol_type = UBI_VID_DYNAMIC;
948
	vid_hdr->data_size = cpu_to_be32(len);
A
Artem B. Bityutskiy 已提交
949
	vid_hdr->copy_flag = 1;
950
	vid_hdr->data_crc = cpu_to_be32(crc);
A
Artem B. Bityutskiy 已提交
951 952

retry:
R
Richard Weinberger 已提交
953
	pnum = ubi_wl_get_peb(ubi);
A
Artem B. Bityutskiy 已提交
954
	if (pnum < 0) {
955
		err = pnum;
956
		up_read(&ubi->fm_eba_sem);
957
		goto out_leb_unlock;
A
Artem B. Bityutskiy 已提交
958 959 960 961 962 963 964
	}

	dbg_eba("change LEB %d:%d, PEB %d, write VID hdr to PEB %d",
		vol_id, lnum, vol->eba_tbl[lnum], pnum);

	err = ubi_io_write_vid_hdr(ubi, pnum, vid_hdr);
	if (err) {
965
		ubi_warn(ubi, "failed to write VID header to LEB %d:%d, PEB %d",
A
Artem B. Bityutskiy 已提交
966
			 vol_id, lnum, pnum);
967
		up_read(&ubi->fm_eba_sem);
A
Artem B. Bityutskiy 已提交
968 969 970 971 972
		goto write_error;
	}

	err = ubi_io_write_data(ubi, buf, pnum, 0, len);
	if (err) {
973
		ubi_warn(ubi, "failed to write %d bytes of data to PEB %d",
A
Artem B. Bityutskiy 已提交
974
			 len, pnum);
975
		up_read(&ubi->fm_eba_sem);
A
Artem B. Bityutskiy 已提交
976 977 978
		goto write_error;
	}

979
	old_pnum = vol->eba_tbl[lnum];
A
Artem B. Bityutskiy 已提交
980
	vol->eba_tbl[lnum] = pnum;
981
	up_read(&ubi->fm_eba_sem);
982

983 984 985 986 987 988
	if (old_pnum >= 0) {
		err = ubi_wl_put_peb(ubi, vol_id, lnum, old_pnum, 0);
		if (err)
			goto out_leb_unlock;
	}

989
out_leb_unlock:
A
Artem B. Bityutskiy 已提交
990
	leb_write_unlock(ubi, vol_id, lnum);
991 992
out_mutex:
	mutex_unlock(&ubi->alc_mutex);
A
Artem B. Bityutskiy 已提交
993
	ubi_free_vid_hdr(ubi, vid_hdr);
994
	return err;
A
Artem B. Bityutskiy 已提交
995 996 997 998 999 1000 1001 1002 1003

write_error:
	if (err != -EIO || !ubi->bad_allowed) {
		/*
		 * This flash device does not admit of bad eraseblocks or
		 * something nasty and unexpected happened. Switch to read-only
		 * mode just in case.
		 */
		ubi_ro_mode(ubi);
1004
		goto out_leb_unlock;
A
Artem B. Bityutskiy 已提交
1005 1006
	}

1007
	err = ubi_wl_put_peb(ubi, vol_id, lnum, pnum, 1);
A
Artem B. Bityutskiy 已提交
1008 1009
	if (err || ++tries > UBI_IO_RETRIES) {
		ubi_ro_mode(ubi);
1010
		goto out_leb_unlock;
A
Artem B. Bityutskiy 已提交
1011 1012
	}

R
Richard Weinberger 已提交
1013
	vid_hdr->sqnum = cpu_to_be64(ubi_next_sqnum(ubi));
1014
	ubi_msg(ubi, "try another PEB");
A
Artem B. Bityutskiy 已提交
1015 1016 1017
	goto retry;
}

A
Artem Bityutskiy 已提交
1018 1019 1020 1021 1022 1023 1024 1025 1026 1027 1028 1029 1030 1031 1032 1033 1034 1035 1036 1037 1038
/**
 * is_error_sane - check whether a read error is sane.
 * @err: code of the error happened during reading
 *
 * This is a helper function for 'ubi_eba_copy_leb()' which is called when we
 * cannot read data from the target PEB (an error @err happened). If the error
 * code is sane, then we treat this error as non-fatal. Otherwise the error is
 * fatal and UBI will be switched to R/O mode later.
 *
 * The idea is that we try not to switch to R/O mode if the read error is
 * something which suggests there was a real read problem. E.g., %-EIO. Or a
 * memory allocation failed (-%ENOMEM). Otherwise, it is safer to switch to R/O
 * mode, simply because we do not know what happened at the MTD level, and we
 * cannot handle this. E.g., the underlying driver may have become crazy, and
 * it is safer to switch to R/O mode to preserve the data.
 *
 * And bear in mind, this is about reading from the target PEB, i.e. the PEB
 * which we have just written.
 */
static int is_error_sane(int err)
{
A
Artem Bityutskiy 已提交
1039
	if (err == -EIO || err == -ENOMEM || err == UBI_IO_BAD_HDR ||
A
Artem Bityutskiy 已提交
1040
	    err == UBI_IO_BAD_HDR_EBADMSG || err == -ETIMEDOUT)
A
Artem Bityutskiy 已提交
1041 1042 1043 1044
		return 0;
	return 1;
}

A
Artem B. Bityutskiy 已提交
1045 1046 1047 1048 1049 1050 1051 1052 1053
/**
 * ubi_eba_copy_leb - copy logical eraseblock.
 * @ubi: UBI device description object
 * @from: physical eraseblock number from where to copy
 * @to: physical eraseblock number where to copy
 * @vid_hdr: VID header of the @from physical eraseblock
 *
 * This function copies logical eraseblock from physical eraseblock @from to
 * physical eraseblock @to. The @vid_hdr buffer may be changed by this
1054
 * function. Returns:
1055
 *   o %0 in case of success;
1056
 *   o %MOVE_CANCEL_RACE, %MOVE_TARGET_WR_ERR, %MOVE_TARGET_BITFLIPS, etc;
1057
 *   o a negative error code in case of failure.
A
Artem B. Bityutskiy 已提交
1058 1059 1060 1061
 */
int ubi_eba_copy_leb(struct ubi_device *ubi, int from, int to,
		     struct ubi_vid_hdr *vid_hdr)
{
1062
	int err, vol_id, lnum, data_size, aldata_size, idx;
A
Artem B. Bityutskiy 已提交
1063 1064 1065
	struct ubi_volume *vol;
	uint32_t crc;

1066 1067
	vol_id = be32_to_cpu(vid_hdr->vol_id);
	lnum = be32_to_cpu(vid_hdr->lnum);
A
Artem B. Bityutskiy 已提交
1068

1069
	dbg_wl("copy LEB %d:%d, PEB %d to PEB %d", vol_id, lnum, from, to);
A
Artem B. Bityutskiy 已提交
1070 1071

	if (vid_hdr->vol_type == UBI_VID_STATIC) {
1072
		data_size = be32_to_cpu(vid_hdr->data_size);
A
Artem B. Bityutskiy 已提交
1073 1074 1075
		aldata_size = ALIGN(data_size, ubi->min_io_size);
	} else
		data_size = aldata_size =
1076
			    ubi->leb_size - be32_to_cpu(vid_hdr->data_pad);
A
Artem B. Bityutskiy 已提交
1077 1078

	idx = vol_id2idx(ubi, vol_id);
1079
	spin_lock(&ubi->volumes_lock);
A
Artem B. Bityutskiy 已提交
1080
	/*
1081 1082
	 * Note, we may race with volume deletion, which means that the volume
	 * this logical eraseblock belongs to might be being deleted. Since the
1083
	 * volume deletion un-maps all the volume's logical eraseblocks, it will
1084
	 * be locked in 'ubi_wl_put_peb()' and wait for the WL worker to finish.
A
Artem B. Bityutskiy 已提交
1085 1086
	 */
	vol = ubi->volumes[idx];
A
Artem Bityutskiy 已提交
1087
	spin_unlock(&ubi->volumes_lock);
A
Artem B. Bityutskiy 已提交
1088
	if (!vol) {
1089
		/* No need to do further work, cancel */
1090
		dbg_wl("volume %d is being removed, cancel", vol_id);
A
Artem Bityutskiy 已提交
1091
		return MOVE_CANCEL_RACE;
A
Artem B. Bityutskiy 已提交
1092 1093
	}

1094 1095 1096 1097 1098 1099 1100 1101 1102 1103
	/*
	 * We do not want anybody to write to this logical eraseblock while we
	 * are moving it, so lock it.
	 *
	 * Note, we are using non-waiting locking here, because we cannot sleep
	 * on the LEB, since it may cause deadlocks. Indeed, imagine a task is
	 * unmapping the LEB which is mapped to the PEB we are going to move
	 * (@from). This task locks the LEB and goes sleep in the
	 * 'ubi_wl_put_peb()' function on the @ubi->move_mutex. In turn, we are
	 * holding @ubi->move_mutex and go sleep on the LEB lock. So, if the
A
Artem Bityutskiy 已提交
1104
	 * LEB is already locked, we just do not move it and return
1105 1106 1107
	 * %MOVE_RETRY. Note, we do not return %MOVE_CANCEL_RACE here because
	 * we do not know the reasons of the contention - it may be just a
	 * normal I/O on this LEB, so we want to re-try.
1108 1109 1110
	 */
	err = leb_write_trylock(ubi, vol_id, lnum);
	if (err) {
1111
		dbg_wl("contention on LEB %d:%d, cancel", vol_id, lnum);
1112
		return MOVE_RETRY;
A
Artem B. Bityutskiy 已提交
1113 1114
	}

1115 1116 1117 1118 1119 1120
	/*
	 * The LEB might have been put meanwhile, and the task which put it is
	 * probably waiting on @ubi->move_mutex. No need to continue the work,
	 * cancel it.
	 */
	if (vol->eba_tbl[lnum] != from) {
A
Artem Bityutskiy 已提交
1121 1122
		dbg_wl("LEB %d:%d is no longer mapped to PEB %d, mapped to PEB %d, cancel",
		       vol_id, lnum, from, vol->eba_tbl[lnum]);
A
Artem Bityutskiy 已提交
1123
		err = MOVE_CANCEL_RACE;
1124 1125
		goto out_unlock_leb;
	}
A
Artem B. Bityutskiy 已提交
1126

1127
	/*
Z
Zoltan Sogor 已提交
1128
	 * OK, now the LEB is locked and we can safely start moving it. Since
1129
	 * this function utilizes the @ubi->peb_buf buffer which is shared
A
Artem Bityutskiy 已提交
1130
	 * with some other functions - we lock the buffer by taking the
1131 1132 1133
	 * @ubi->buf_mutex.
	 */
	mutex_lock(&ubi->buf_mutex);
1134
	dbg_wl("read %d bytes of data", aldata_size);
1135
	err = ubi_io_read_data(ubi, ubi->peb_buf, from, 0, aldata_size);
A
Artem B. Bityutskiy 已提交
1136
	if (err && err != UBI_IO_BITFLIPS) {
1137
		ubi_warn(ubi, "error %d while reading data from PEB %d",
A
Artem B. Bityutskiy 已提交
1138
			 err, from);
A
Artem Bityutskiy 已提交
1139
		err = MOVE_SOURCE_RD_ERR;
1140
		goto out_unlock_buf;
A
Artem B. Bityutskiy 已提交
1141 1142 1143
	}

	/*
1144
	 * Now we have got to calculate how much data we have to copy. In
A
Artem B. Bityutskiy 已提交
1145 1146 1147 1148 1149 1150 1151 1152 1153 1154
	 * case of a static volume it is fairly easy - the VID header contains
	 * the data size. In case of a dynamic volume it is more difficult - we
	 * have to read the contents, cut 0xFF bytes from the end and copy only
	 * the first part. We must do this to avoid writing 0xFF bytes as it
	 * may have some side-effects. And not only this. It is important not
	 * to include those 0xFFs to CRC because later the they may be filled
	 * by data.
	 */
	if (vid_hdr->vol_type == UBI_VID_DYNAMIC)
		aldata_size = data_size =
1155
			ubi_calc_data_len(ubi, ubi->peb_buf, data_size);
A
Artem B. Bityutskiy 已提交
1156 1157

	cond_resched();
1158
	crc = crc32(UBI_CRC32_INIT, ubi->peb_buf, data_size);
A
Artem B. Bityutskiy 已提交
1159 1160 1161
	cond_resched();

	/*
A
Artem Bityutskiy 已提交
1162
	 * It may turn out to be that the whole @from physical eraseblock
A
Artem B. Bityutskiy 已提交
1163 1164 1165 1166 1167 1168
	 * contains only 0xFF bytes. Then we have to only write the VID header
	 * and do not write any data. This also means we should not set
	 * @vid_hdr->copy_flag, @vid_hdr->data_size, and @vid_hdr->data_crc.
	 */
	if (data_size > 0) {
		vid_hdr->copy_flag = 1;
1169 1170
		vid_hdr->data_size = cpu_to_be32(data_size);
		vid_hdr->data_crc = cpu_to_be32(crc);
A
Artem B. Bityutskiy 已提交
1171
	}
R
Richard Weinberger 已提交
1172
	vid_hdr->sqnum = cpu_to_be64(ubi_next_sqnum(ubi));
A
Artem B. Bityutskiy 已提交
1173 1174

	err = ubi_io_write_vid_hdr(ubi, to, vid_hdr);
1175 1176
	if (err) {
		if (err == -EIO)
A
Artem Bityutskiy 已提交
1177
			err = MOVE_TARGET_WR_ERR;
1178
		goto out_unlock_buf;
1179
	}
A
Artem B. Bityutskiy 已提交
1180 1181 1182 1183 1184 1185

	cond_resched();

	/* Read the VID header back and check if it was written correctly */
	err = ubi_io_read_vid_hdr(ubi, to, vid_hdr, 1);
	if (err) {
1186
		if (err != UBI_IO_BITFLIPS) {
1187
			ubi_warn(ubi, "error %d while reading VID header back from PEB %d",
A
Artem Bityutskiy 已提交
1188
				 err, to);
A
Artem Bityutskiy 已提交
1189
			if (is_error_sane(err))
1190 1191
				err = MOVE_TARGET_RD_ERR;
		} else
1192
			err = MOVE_TARGET_BITFLIPS;
1193
		goto out_unlock_buf;
A
Artem B. Bityutskiy 已提交
1194 1195 1196
	}

	if (data_size > 0) {
1197
		err = ubi_io_write_data(ubi, ubi->peb_buf, to, 0, aldata_size);
1198 1199
		if (err) {
			if (err == -EIO)
A
Artem Bityutskiy 已提交
1200
				err = MOVE_TARGET_WR_ERR;
1201
			goto out_unlock_buf;
1202
		}
A
Artem B. Bityutskiy 已提交
1203

1204 1205
		cond_resched();

A
Artem B. Bityutskiy 已提交
1206 1207 1208 1209
		/*
		 * We've written the data and are going to read it back to make
		 * sure it was written correctly.
		 */
1210 1211
		memset(ubi->peb_buf, 0xFF, aldata_size);
		err = ubi_io_read_data(ubi, ubi->peb_buf, to, 0, aldata_size);
A
Artem B. Bityutskiy 已提交
1212
		if (err) {
1213
			if (err != UBI_IO_BITFLIPS) {
1214
				ubi_warn(ubi, "error %d while reading data back from PEB %d",
A
Artem Bityutskiy 已提交
1215
					 err, to);
A
Artem Bityutskiy 已提交
1216
				if (is_error_sane(err))
1217 1218
					err = MOVE_TARGET_RD_ERR;
			} else
1219
				err = MOVE_TARGET_BITFLIPS;
1220
			goto out_unlock_buf;
A
Artem B. Bityutskiy 已提交
1221 1222 1223 1224
		}

		cond_resched();

1225
		if (crc != crc32(UBI_CRC32_INIT, ubi->peb_buf, data_size)) {
1226
			ubi_warn(ubi, "read data back from PEB %d and it is different",
A
Artem Bityutskiy 已提交
1227
				 to);
1228
			err = -EINVAL;
1229
			goto out_unlock_buf;
A
Artem B. Bityutskiy 已提交
1230 1231 1232 1233
		}
	}

	ubi_assert(vol->eba_tbl[lnum] == from);
1234
	down_read(&ubi->fm_eba_sem);
A
Artem B. Bityutskiy 已提交
1235
	vol->eba_tbl[lnum] = to;
1236
	up_read(&ubi->fm_eba_sem);
A
Artem B. Bityutskiy 已提交
1237

1238
out_unlock_buf:
1239
	mutex_unlock(&ubi->buf_mutex);
1240
out_unlock_leb:
A
Artem B. Bityutskiy 已提交
1241 1242 1243 1244
	leb_write_unlock(ubi, vol_id, lnum);
	return err;
}

1245 1246 1247 1248
/**
 * print_rsvd_warning - warn about not having enough reserved PEBs.
 * @ubi: UBI device description object
 *
1249
 * This is a helper function for 'ubi_eba_init()' which is called when UBI
1250 1251 1252 1253 1254 1255 1256 1257 1258 1259 1260 1261 1262 1263
 * cannot reserve enough PEBs for bad block handling. This function makes a
 * decision whether we have to print a warning or not. The algorithm is as
 * follows:
 *   o if this is a new UBI image, then just print the warning
 *   o if this is an UBI image which has already been used for some time, print
 *     a warning only if we can reserve less than 10% of the expected amount of
 *     the reserved PEB.
 *
 * The idea is that when UBI is used, PEBs become bad, and the reserved pool
 * of PEBs becomes smaller, which is normal and we do not want to scare users
 * with a warning every time they attach the MTD device. This was an issue
 * reported by real users.
 */
static void print_rsvd_warning(struct ubi_device *ubi,
A
Artem Bityutskiy 已提交
1264
			       struct ubi_attach_info *ai)
1265 1266 1267 1268 1269
{
	/*
	 * The 1 << 18 (256KiB) number is picked randomly, just a reasonably
	 * large number to distinguish between newly flashed and used images.
	 */
A
Artem Bityutskiy 已提交
1270
	if (ai->max_sqnum > (1 << 18)) {
1271 1272 1273 1274 1275 1276 1277 1278
		int min = ubi->beb_rsvd_level / 10;

		if (!min)
			min = 1;
		if (ubi->beb_rsvd_pebs > min)
			return;
	}

1279
	ubi_warn(ubi, "cannot reserve enough PEBs for bad PEB handling, reserved %d, need %d",
A
Artem Bityutskiy 已提交
1280
		 ubi->beb_rsvd_pebs, ubi->beb_rsvd_level);
A
Artem Bityutskiy 已提交
1281
	if (ubi->corr_peb_count)
1282
		ubi_warn(ubi, "%d PEBs are corrupted and not used",
A
Artem Bityutskiy 已提交
1283
			 ubi->corr_peb_count);
1284 1285
}

R
Richard Weinberger 已提交
1286 1287 1288 1289 1290 1291 1292 1293 1294 1295 1296 1297 1298 1299 1300 1301 1302 1303 1304 1305 1306 1307 1308 1309 1310 1311 1312 1313 1314 1315 1316 1317 1318 1319 1320 1321 1322 1323 1324 1325 1326 1327 1328 1329 1330 1331 1332 1333 1334 1335 1336 1337 1338 1339 1340 1341 1342 1343 1344 1345 1346 1347 1348 1349 1350 1351 1352 1353 1354 1355 1356 1357 1358 1359
/**
 * self_check_eba - run a self check on the EBA table constructed by fastmap.
 * @ubi: UBI device description object
 * @ai_fastmap: UBI attach info object created by fastmap
 * @ai_scan: UBI attach info object created by scanning
 *
 * Returns < 0 in case of an internal error, 0 otherwise.
 * If a bad EBA table entry was found it will be printed out and
 * ubi_assert() triggers.
 */
int self_check_eba(struct ubi_device *ubi, struct ubi_attach_info *ai_fastmap,
		   struct ubi_attach_info *ai_scan)
{
	int i, j, num_volumes, ret = 0;
	int **scan_eba, **fm_eba;
	struct ubi_ainf_volume *av;
	struct ubi_volume *vol;
	struct ubi_ainf_peb *aeb;
	struct rb_node *rb;

	num_volumes = ubi->vtbl_slots + UBI_INT_VOL_COUNT;

	scan_eba = kmalloc(sizeof(*scan_eba) * num_volumes, GFP_KERNEL);
	if (!scan_eba)
		return -ENOMEM;

	fm_eba = kmalloc(sizeof(*fm_eba) * num_volumes, GFP_KERNEL);
	if (!fm_eba) {
		kfree(scan_eba);
		return -ENOMEM;
	}

	for (i = 0; i < num_volumes; i++) {
		vol = ubi->volumes[i];
		if (!vol)
			continue;

		scan_eba[i] = kmalloc(vol->reserved_pebs * sizeof(**scan_eba),
				      GFP_KERNEL);
		if (!scan_eba[i]) {
			ret = -ENOMEM;
			goto out_free;
		}

		fm_eba[i] = kmalloc(vol->reserved_pebs * sizeof(**fm_eba),
				    GFP_KERNEL);
		if (!fm_eba[i]) {
			ret = -ENOMEM;
			goto out_free;
		}

		for (j = 0; j < vol->reserved_pebs; j++)
			scan_eba[i][j] = fm_eba[i][j] = UBI_LEB_UNMAPPED;

		av = ubi_find_av(ai_scan, idx2vol_id(ubi, i));
		if (!av)
			continue;

		ubi_rb_for_each_entry(rb, aeb, &av->root, u.rb)
			scan_eba[i][aeb->lnum] = aeb->pnum;

		av = ubi_find_av(ai_fastmap, idx2vol_id(ubi, i));
		if (!av)
			continue;

		ubi_rb_for_each_entry(rb, aeb, &av->root, u.rb)
			fm_eba[i][aeb->lnum] = aeb->pnum;

		for (j = 0; j < vol->reserved_pebs; j++) {
			if (scan_eba[i][j] != fm_eba[i][j]) {
				if (scan_eba[i][j] == UBI_LEB_UNMAPPED ||
					fm_eba[i][j] == UBI_LEB_UNMAPPED)
					continue;

1360
				ubi_err(ubi, "LEB:%i:%i is PEB:%i instead of %i!",
R
Richard Weinberger 已提交
1361
					vol->vol_id, j, fm_eba[i][j],
R
Richard Weinberger 已提交
1362 1363 1364 1365 1366 1367 1368 1369 1370 1371 1372 1373 1374 1375 1376 1377 1378 1379 1380 1381
					scan_eba[i][j]);
				ubi_assert(0);
			}
		}
	}

out_free:
	for (i = 0; i < num_volumes; i++) {
		if (!ubi->volumes[i])
			continue;

		kfree(scan_eba[i]);
		kfree(fm_eba[i]);
	}

	kfree(scan_eba);
	kfree(fm_eba);
	return ret;
}

A
Artem B. Bityutskiy 已提交
1382
/**
1383
 * ubi_eba_init - initialize the EBA sub-system using attaching information.
A
Artem B. Bityutskiy 已提交
1384
 * @ubi: UBI device description object
A
Artem Bityutskiy 已提交
1385
 * @ai: attaching information
A
Artem B. Bityutskiy 已提交
1386 1387 1388 1389
 *
 * This function returns zero in case of success and a negative error code in
 * case of failure.
 */
1390
int ubi_eba_init(struct ubi_device *ubi, struct ubi_attach_info *ai)
A
Artem B. Bityutskiy 已提交
1391 1392
{
	int i, j, err, num_volumes;
A
Artem Bityutskiy 已提交
1393
	struct ubi_ainf_volume *av;
A
Artem B. Bityutskiy 已提交
1394
	struct ubi_volume *vol;
A
Artem Bityutskiy 已提交
1395
	struct ubi_ainf_peb *aeb;
A
Artem B. Bityutskiy 已提交
1396 1397
	struct rb_node *rb;

A
Artem Bityutskiy 已提交
1398
	dbg_eba("initialize EBA sub-system");
A
Artem B. Bityutskiy 已提交
1399 1400

	spin_lock_init(&ubi->ltree_lock);
1401
	mutex_init(&ubi->alc_mutex);
A
Artem B. Bityutskiy 已提交
1402 1403
	ubi->ltree = RB_ROOT;

A
Artem Bityutskiy 已提交
1404
	ubi->global_sqnum = ai->max_sqnum + 1;
A
Artem B. Bityutskiy 已提交
1405 1406 1407 1408 1409 1410 1411 1412 1413 1414 1415 1416 1417 1418 1419 1420 1421 1422 1423
	num_volumes = ubi->vtbl_slots + UBI_INT_VOL_COUNT;

	for (i = 0; i < num_volumes; i++) {
		vol = ubi->volumes[i];
		if (!vol)
			continue;

		cond_resched();

		vol->eba_tbl = kmalloc(vol->reserved_pebs * sizeof(int),
				       GFP_KERNEL);
		if (!vol->eba_tbl) {
			err = -ENOMEM;
			goto out_free;
		}

		for (j = 0; j < vol->reserved_pebs; j++)
			vol->eba_tbl[j] = UBI_LEB_UNMAPPED;

A
Artem Bityutskiy 已提交
1424
		av = ubi_find_av(ai, idx2vol_id(ubi, i));
A
Artem Bityutskiy 已提交
1425
		if (!av)
A
Artem B. Bityutskiy 已提交
1426 1427
			continue;

A
Artem Bityutskiy 已提交
1428
		ubi_rb_for_each_entry(rb, aeb, &av->root, u.rb) {
A
Artem Bityutskiy 已提交
1429
			if (aeb->lnum >= vol->reserved_pebs)
A
Artem B. Bityutskiy 已提交
1430 1431 1432 1433
				/*
				 * This may happen in case of an unclean reboot
				 * during re-size.
				 */
1434
				ubi_move_aeb_to_list(av, aeb, &ai->erase);
B
Brian Norris 已提交
1435 1436
			else
				vol->eba_tbl[aeb->lnum] = aeb->pnum;
A
Artem B. Bityutskiy 已提交
1437 1438 1439
		}
	}

1440
	if (ubi->avail_pebs < EBA_RESERVED_PEBS) {
1441
		ubi_err(ubi, "no enough physical eraseblocks (%d, need %d)",
1442
			ubi->avail_pebs, EBA_RESERVED_PEBS);
A
Artem Bityutskiy 已提交
1443
		if (ubi->corr_peb_count)
1444
			ubi_err(ubi, "%d PEBs are corrupted and not used",
A
Artem Bityutskiy 已提交
1445
				ubi->corr_peb_count);
1446 1447 1448 1449 1450 1451
		err = -ENOSPC;
		goto out_free;
	}
	ubi->avail_pebs -= EBA_RESERVED_PEBS;
	ubi->rsvd_pebs += EBA_RESERVED_PEBS;

A
Artem B. Bityutskiy 已提交
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	if (ubi->bad_allowed) {
		ubi_calculate_reserved(ubi);

		if (ubi->avail_pebs < ubi->beb_rsvd_level) {
			/* No enough free physical eraseblocks */
			ubi->beb_rsvd_pebs = ubi->avail_pebs;
A
Artem Bityutskiy 已提交
1458
			print_rsvd_warning(ubi, ai);
A
Artem B. Bityutskiy 已提交
1459 1460 1461 1462 1463 1464 1465
		} else
			ubi->beb_rsvd_pebs = ubi->beb_rsvd_level;

		ubi->avail_pebs -= ubi->beb_rsvd_pebs;
		ubi->rsvd_pebs  += ubi->beb_rsvd_pebs;
	}

A
Artem Bityutskiy 已提交
1466
	dbg_eba("EBA sub-system is initialized");
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Artem B. Bityutskiy 已提交
1467 1468 1469 1470 1471 1472 1473
	return 0;

out_free:
	for (i = 0; i < num_volumes; i++) {
		if (!ubi->volumes[i])
			continue;
		kfree(ubi->volumes[i]->eba_tbl);
1474
		ubi->volumes[i]->eba_tbl = NULL;
A
Artem B. Bityutskiy 已提交
1475 1476 1477
	}
	return err;
}