super.c 157 KB
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/*
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 *  linux/fs/ext4/super.c
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 *
 * Copyright (C) 1992, 1993, 1994, 1995
 * Remy Card (card@masi.ibp.fr)
 * Laboratoire MASI - Institut Blaise Pascal
 * Universite Pierre et Marie Curie (Paris VI)
 *
 *  from
 *
 *  linux/fs/minix/inode.c
 *
 *  Copyright (C) 1991, 1992  Linus Torvalds
 *
 *  Big-endian to little-endian byte-swapping/bitmaps by
 *        David S. Miller (davem@caip.rutgers.edu), 1995
 */

#include <linux/module.h>
#include <linux/string.h>
#include <linux/fs.h>
#include <linux/time.h>
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#include <linux/vmalloc.h>
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#include <linux/slab.h>
#include <linux/init.h>
#include <linux/blkdev.h>
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#include <linux/backing-dev.h>
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#include <linux/parser.h>
#include <linux/buffer_head.h>
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#include <linux/exportfs.h>
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#include <linux/vfs.h>
#include <linux/random.h>
#include <linux/mount.h>
#include <linux/namei.h>
#include <linux/quotaops.h>
#include <linux/seq_file.h>
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#include <linux/ctype.h>
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#include <linux/log2.h>
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#include <linux/crc16.h>
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#include <linux/cleancache.h>
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#include <linux/user_namespace.h>
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#include <asm/uaccess.h>

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#include <linux/kthread.h>
#include <linux/freezer.h>

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#include "ext4.h"
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#include "ext4_extents.h"	/* Needed for trace points definition */
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#include "ext4_jbd2.h"
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#include "xattr.h"
#include "acl.h"
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#include "mballoc.h"
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#define CREATE_TRACE_POINTS
#include <trace/events/ext4.h>

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static struct ext4_lazy_init *ext4_li_info;
static struct mutex ext4_li_mtx;
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static struct ratelimit_state ext4_mount_msg_ratelimit;
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static int ext4_load_journal(struct super_block *, struct ext4_super_block *,
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			     unsigned long journal_devnum);
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static int ext4_show_options(struct seq_file *seq, struct dentry *root);
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static int ext4_commit_super(struct super_block *sb, int sync);
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static void ext4_mark_recovery_complete(struct super_block *sb,
					struct ext4_super_block *es);
static void ext4_clear_journal_err(struct super_block *sb,
				   struct ext4_super_block *es);
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static int ext4_sync_fs(struct super_block *sb, int wait);
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static int ext4_remount(struct super_block *sb, int *flags, char *data);
static int ext4_statfs(struct dentry *dentry, struct kstatfs *buf);
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static int ext4_unfreeze(struct super_block *sb);
static int ext4_freeze(struct super_block *sb);
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static struct dentry *ext4_mount(struct file_system_type *fs_type, int flags,
		       const char *dev_name, void *data);
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static inline int ext2_feature_set_ok(struct super_block *sb);
static inline int ext3_feature_set_ok(struct super_block *sb);
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static int ext4_feature_set_ok(struct super_block *sb, int readonly);
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static void ext4_destroy_lazyinit_thread(void);
static void ext4_unregister_li_request(struct super_block *sb);
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static void ext4_clear_request_list(void);
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static bool userns_mounts = false;
module_param(userns_mounts, bool, 0644);
MODULE_PARM_DESC(userns_mounts, "Allow mounts from unprivileged user namespaces");

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#if !defined(CONFIG_EXT2_FS) && !defined(CONFIG_EXT2_FS_MODULE) && defined(CONFIG_EXT4_USE_FOR_EXT2)
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static struct file_system_type ext2_fs_type = {
	.owner		= THIS_MODULE,
	.name		= "ext2",
	.mount		= ext4_mount,
	.kill_sb	= kill_block_super,
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	.fs_flags	= FS_REQUIRES_DEV | FS_USERNS_MOUNT,
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};
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MODULE_ALIAS_FS("ext2");
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MODULE_ALIAS("ext2");
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#define IS_EXT2_SB(sb) ((sb)->s_bdev->bd_holder == &ext2_fs_type)
#else
#define IS_EXT2_SB(sb) (0)
#endif


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static struct file_system_type ext3_fs_type = {
	.owner		= THIS_MODULE,
	.name		= "ext3",
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	.mount		= ext4_mount,
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	.kill_sb	= kill_block_super,
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	.fs_flags	= FS_REQUIRES_DEV | FS_USERNS_MOUNT,
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};
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MODULE_ALIAS_FS("ext3");
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MODULE_ALIAS("ext3");
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#define IS_EXT3_SB(sb) ((sb)->s_bdev->bd_holder == &ext3_fs_type)
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static int ext4_verify_csum_type(struct super_block *sb,
				 struct ext4_super_block *es)
{
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	if (!ext4_has_feature_metadata_csum(sb))
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		return 1;

	return es->s_checksum_type == EXT4_CRC32C_CHKSUM;
}

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static __le32 ext4_superblock_csum(struct super_block *sb,
				   struct ext4_super_block *es)
{
	struct ext4_sb_info *sbi = EXT4_SB(sb);
	int offset = offsetof(struct ext4_super_block, s_checksum);
	__u32 csum;

	csum = ext4_chksum(sbi, ~0, (char *)es, offset);

	return cpu_to_le32(csum);
}

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static int ext4_superblock_csum_verify(struct super_block *sb,
				       struct ext4_super_block *es)
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{
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	if (!ext4_has_metadata_csum(sb))
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		return 1;

	return es->s_checksum == ext4_superblock_csum(sb, es);
}

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void ext4_superblock_csum_set(struct super_block *sb)
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{
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	struct ext4_super_block *es = EXT4_SB(sb)->s_es;

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	if (!ext4_has_metadata_csum(sb))
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		return;

	es->s_checksum = ext4_superblock_csum(sb, es);
}

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void *ext4_kvmalloc(size_t size, gfp_t flags)
{
	void *ret;

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	ret = kmalloc(size, flags | __GFP_NOWARN);
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	if (!ret)
		ret = __vmalloc(size, flags, PAGE_KERNEL);
	return ret;
}

void *ext4_kvzalloc(size_t size, gfp_t flags)
{
	void *ret;

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	ret = kzalloc(size, flags | __GFP_NOWARN);
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	if (!ret)
		ret = __vmalloc(size, flags | __GFP_ZERO, PAGE_KERNEL);
	return ret;
}

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ext4_fsblk_t ext4_block_bitmap(struct super_block *sb,
			       struct ext4_group_desc *bg)
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{
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	return le32_to_cpu(bg->bg_block_bitmap_lo) |
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		(EXT4_DESC_SIZE(sb) >= EXT4_MIN_DESC_SIZE_64BIT ?
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		 (ext4_fsblk_t)le32_to_cpu(bg->bg_block_bitmap_hi) << 32 : 0);
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}

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ext4_fsblk_t ext4_inode_bitmap(struct super_block *sb,
			       struct ext4_group_desc *bg)
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{
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	return le32_to_cpu(bg->bg_inode_bitmap_lo) |
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		(EXT4_DESC_SIZE(sb) >= EXT4_MIN_DESC_SIZE_64BIT ?
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		 (ext4_fsblk_t)le32_to_cpu(bg->bg_inode_bitmap_hi) << 32 : 0);
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}

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ext4_fsblk_t ext4_inode_table(struct super_block *sb,
			      struct ext4_group_desc *bg)
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{
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	return le32_to_cpu(bg->bg_inode_table_lo) |
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		(EXT4_DESC_SIZE(sb) >= EXT4_MIN_DESC_SIZE_64BIT ?
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		 (ext4_fsblk_t)le32_to_cpu(bg->bg_inode_table_hi) << 32 : 0);
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}

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__u32 ext4_free_group_clusters(struct super_block *sb,
			       struct ext4_group_desc *bg)
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{
	return le16_to_cpu(bg->bg_free_blocks_count_lo) |
		(EXT4_DESC_SIZE(sb) >= EXT4_MIN_DESC_SIZE_64BIT ?
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		 (__u32)le16_to_cpu(bg->bg_free_blocks_count_hi) << 16 : 0);
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}

__u32 ext4_free_inodes_count(struct super_block *sb,
			      struct ext4_group_desc *bg)
{
	return le16_to_cpu(bg->bg_free_inodes_count_lo) |
		(EXT4_DESC_SIZE(sb) >= EXT4_MIN_DESC_SIZE_64BIT ?
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		 (__u32)le16_to_cpu(bg->bg_free_inodes_count_hi) << 16 : 0);
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}

__u32 ext4_used_dirs_count(struct super_block *sb,
			      struct ext4_group_desc *bg)
{
	return le16_to_cpu(bg->bg_used_dirs_count_lo) |
		(EXT4_DESC_SIZE(sb) >= EXT4_MIN_DESC_SIZE_64BIT ?
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		 (__u32)le16_to_cpu(bg->bg_used_dirs_count_hi) << 16 : 0);
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}

__u32 ext4_itable_unused_count(struct super_block *sb,
			      struct ext4_group_desc *bg)
{
	return le16_to_cpu(bg->bg_itable_unused_lo) |
		(EXT4_DESC_SIZE(sb) >= EXT4_MIN_DESC_SIZE_64BIT ?
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		 (__u32)le16_to_cpu(bg->bg_itable_unused_hi) << 16 : 0);
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}

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void ext4_block_bitmap_set(struct super_block *sb,
			   struct ext4_group_desc *bg, ext4_fsblk_t blk)
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{
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	bg->bg_block_bitmap_lo = cpu_to_le32((u32)blk);
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	if (EXT4_DESC_SIZE(sb) >= EXT4_MIN_DESC_SIZE_64BIT)
		bg->bg_block_bitmap_hi = cpu_to_le32(blk >> 32);
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}

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void ext4_inode_bitmap_set(struct super_block *sb,
			   struct ext4_group_desc *bg, ext4_fsblk_t blk)
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{
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	bg->bg_inode_bitmap_lo  = cpu_to_le32((u32)blk);
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	if (EXT4_DESC_SIZE(sb) >= EXT4_MIN_DESC_SIZE_64BIT)
		bg->bg_inode_bitmap_hi = cpu_to_le32(blk >> 32);
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}

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void ext4_inode_table_set(struct super_block *sb,
			  struct ext4_group_desc *bg, ext4_fsblk_t blk)
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{
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	bg->bg_inode_table_lo = cpu_to_le32((u32)blk);
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	if (EXT4_DESC_SIZE(sb) >= EXT4_MIN_DESC_SIZE_64BIT)
		bg->bg_inode_table_hi = cpu_to_le32(blk >> 32);
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}

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void ext4_free_group_clusters_set(struct super_block *sb,
				  struct ext4_group_desc *bg, __u32 count)
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{
	bg->bg_free_blocks_count_lo = cpu_to_le16((__u16)count);
	if (EXT4_DESC_SIZE(sb) >= EXT4_MIN_DESC_SIZE_64BIT)
		bg->bg_free_blocks_count_hi = cpu_to_le16(count >> 16);
}

void ext4_free_inodes_set(struct super_block *sb,
			  struct ext4_group_desc *bg, __u32 count)
{
	bg->bg_free_inodes_count_lo = cpu_to_le16((__u16)count);
	if (EXT4_DESC_SIZE(sb) >= EXT4_MIN_DESC_SIZE_64BIT)
		bg->bg_free_inodes_count_hi = cpu_to_le16(count >> 16);
}

void ext4_used_dirs_set(struct super_block *sb,
			  struct ext4_group_desc *bg, __u32 count)
{
	bg->bg_used_dirs_count_lo = cpu_to_le16((__u16)count);
	if (EXT4_DESC_SIZE(sb) >= EXT4_MIN_DESC_SIZE_64BIT)
		bg->bg_used_dirs_count_hi = cpu_to_le16(count >> 16);
}

void ext4_itable_unused_set(struct super_block *sb,
			  struct ext4_group_desc *bg, __u32 count)
{
	bg->bg_itable_unused_lo = cpu_to_le16((__u16)count);
	if (EXT4_DESC_SIZE(sb) >= EXT4_MIN_DESC_SIZE_64BIT)
		bg->bg_itable_unused_hi = cpu_to_le16(count >> 16);
}

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static void __save_error_info(struct super_block *sb, const char *func,
			    unsigned int line)
{
	struct ext4_super_block *es = EXT4_SB(sb)->s_es;

	EXT4_SB(sb)->s_mount_state |= EXT4_ERROR_FS;
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	if (bdev_read_only(sb->s_bdev))
		return;
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	es->s_state |= cpu_to_le16(EXT4_ERROR_FS);
	es->s_last_error_time = cpu_to_le32(get_seconds());
	strncpy(es->s_last_error_func, func, sizeof(es->s_last_error_func));
	es->s_last_error_line = cpu_to_le32(line);
	if (!es->s_first_error_time) {
		es->s_first_error_time = es->s_last_error_time;
		strncpy(es->s_first_error_func, func,
			sizeof(es->s_first_error_func));
		es->s_first_error_line = cpu_to_le32(line);
		es->s_first_error_ino = es->s_last_error_ino;
		es->s_first_error_block = es->s_last_error_block;
	}
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	/*
	 * Start the daily error reporting function if it hasn't been
	 * started already
	 */
	if (!es->s_error_count)
		mod_timer(&EXT4_SB(sb)->s_err_report, jiffies + 24*60*60*HZ);
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	le32_add_cpu(&es->s_error_count, 1);
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}

static void save_error_info(struct super_block *sb, const char *func,
			    unsigned int line)
{
	__save_error_info(sb, func, line);
	ext4_commit_super(sb, 1);
}

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/*
 * The del_gendisk() function uninitializes the disk-specific data
 * structures, including the bdi structure, without telling anyone
 * else.  Once this happens, any attempt to call mark_buffer_dirty()
 * (for example, by ext4_commit_super), will cause a kernel OOPS.
 * This is a kludge to prevent these oops until we can put in a proper
 * hook in del_gendisk() to inform the VFS and file system layers.
 */
static int block_device_ejected(struct super_block *sb)
{
	struct inode *bd_inode = sb->s_bdev->bd_inode;
	struct backing_dev_info *bdi = inode_to_bdi(bd_inode);

	return bdi->dev == NULL;
}

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static void ext4_journal_commit_callback(journal_t *journal, transaction_t *txn)
{
	struct super_block		*sb = journal->j_private;
	struct ext4_sb_info		*sbi = EXT4_SB(sb);
	int				error = is_journal_aborted(journal);
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	struct ext4_journal_cb_entry	*jce;
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	BUG_ON(txn->t_state == T_FINISHED);
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	spin_lock(&sbi->s_md_lock);
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	while (!list_empty(&txn->t_private_list)) {
		jce = list_entry(txn->t_private_list.next,
				 struct ext4_journal_cb_entry, jce_list);
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		list_del_init(&jce->jce_list);
		spin_unlock(&sbi->s_md_lock);
		jce->jce_func(sb, jce, error);
		spin_lock(&sbi->s_md_lock);
	}
	spin_unlock(&sbi->s_md_lock);
}
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/* Deal with the reporting of failure conditions on a filesystem such as
 * inconsistencies detected or read IO failures.
 *
 * On ext2, we can store the error state of the filesystem in the
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 * superblock.  That is not possible on ext4, because we may have other
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 * write ordering constraints on the superblock which prevent us from
 * writing it out straight away; and given that the journal is about to
 * be aborted, we can't rely on the current, or future, transactions to
 * write out the superblock safely.
 *
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 * We'll just use the jbd2_journal_abort() error code to record an error in
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 * the journal instead.  On recovery, the journal will complain about
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 * that error until we've noted it down and cleared it.
 */

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static void ext4_handle_error(struct super_block *sb)
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{
	if (sb->s_flags & MS_RDONLY)
		return;

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	if (!test_opt(sb, ERRORS_CONT)) {
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		journal_t *journal = EXT4_SB(sb)->s_journal;
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		EXT4_SB(sb)->s_mount_flags |= EXT4_MF_FS_ABORTED;
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		if (journal)
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			jbd2_journal_abort(journal, -EIO);
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	}
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	if (test_opt(sb, ERRORS_RO)) {
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		ext4_msg(sb, KERN_CRIT, "Remounting filesystem read-only");
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		/*
		 * Make sure updated value of ->s_mount_flags will be visible
		 * before ->s_flags update
		 */
		smp_wmb();
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		sb->s_flags |= MS_RDONLY;
	}
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	if (test_opt(sb, ERRORS_PANIC)) {
		if (EXT4_SB(sb)->s_journal &&
		  !(EXT4_SB(sb)->s_journal->j_flags & JBD2_REC_ERR))
			return;
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		panic("EXT4-fs (device %s): panic forced after error\n",
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			sb->s_id);
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	}
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}

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#define ext4_error_ratelimit(sb)					\
		___ratelimit(&(EXT4_SB(sb)->s_err_ratelimit_state),	\
			     "EXT4-fs error")

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void __ext4_error(struct super_block *sb, const char *function,
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		  unsigned int line, const char *fmt, ...)
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{
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	struct va_format vaf;
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	va_list args;

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	if (ext4_error_ratelimit(sb)) {
		va_start(args, fmt);
		vaf.fmt = fmt;
		vaf.va = &args;
		printk(KERN_CRIT
		       "EXT4-fs error (device %s): %s:%d: comm %s: %pV\n",
		       sb->s_id, function, line, current->comm, &vaf);
		va_end(args);
	}
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	save_error_info(sb, function, line);
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	ext4_handle_error(sb);
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}

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void __ext4_error_inode(struct inode *inode, const char *function,
			unsigned int line, ext4_fsblk_t block,
			const char *fmt, ...)
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{
	va_list args;
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	struct va_format vaf;
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	struct ext4_super_block *es = EXT4_SB(inode->i_sb)->s_es;
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	es->s_last_error_ino = cpu_to_le32(inode->i_ino);
	es->s_last_error_block = cpu_to_le64(block);
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	if (ext4_error_ratelimit(inode->i_sb)) {
		va_start(args, fmt);
		vaf.fmt = fmt;
		vaf.va = &args;
		if (block)
			printk(KERN_CRIT "EXT4-fs error (device %s): %s:%d: "
			       "inode #%lu: block %llu: comm %s: %pV\n",
			       inode->i_sb->s_id, function, line, inode->i_ino,
			       block, current->comm, &vaf);
		else
			printk(KERN_CRIT "EXT4-fs error (device %s): %s:%d: "
			       "inode #%lu: comm %s: %pV\n",
			       inode->i_sb->s_id, function, line, inode->i_ino,
			       current->comm, &vaf);
		va_end(args);
	}
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	save_error_info(inode->i_sb, function, line);
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	ext4_handle_error(inode->i_sb);
}

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void __ext4_error_file(struct file *file, const char *function,
		       unsigned int line, ext4_fsblk_t block,
		       const char *fmt, ...)
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{
	va_list args;
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	struct va_format vaf;
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	struct ext4_super_block *es;
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	struct inode *inode = file_inode(file);
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	char pathname[80], *path;

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	es = EXT4_SB(inode->i_sb)->s_es;
	es->s_last_error_ino = cpu_to_le32(inode->i_ino);
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	if (ext4_error_ratelimit(inode->i_sb)) {
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		path = file_path(file, pathname, sizeof(pathname));
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		if (IS_ERR(path))
			path = "(unknown)";
		va_start(args, fmt);
		vaf.fmt = fmt;
		vaf.va = &args;
		if (block)
			printk(KERN_CRIT
			       "EXT4-fs error (device %s): %s:%d: inode #%lu: "
			       "block %llu: comm %s: path %s: %pV\n",
			       inode->i_sb->s_id, function, line, inode->i_ino,
			       block, current->comm, path, &vaf);
		else
			printk(KERN_CRIT
			       "EXT4-fs error (device %s): %s:%d: inode #%lu: "
			       "comm %s: path %s: %pV\n",
			       inode->i_sb->s_id, function, line, inode->i_ino,
			       current->comm, path, &vaf);
		va_end(args);
	}
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	save_error_info(inode->i_sb, function, line);
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	ext4_handle_error(inode->i_sb);
}

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const char *ext4_decode_error(struct super_block *sb, int errno,
			      char nbuf[16])
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{
	char *errstr = NULL;

	switch (errno) {
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	case -EFSCORRUPTED:
		errstr = "Corrupt filesystem";
		break;
	case -EFSBADCRC:
		errstr = "Filesystem failed CRC";
		break;
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	case -EIO:
		errstr = "IO failure";
		break;
	case -ENOMEM:
		errstr = "Out of memory";
		break;
	case -EROFS:
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		if (!sb || (EXT4_SB(sb)->s_journal &&
			    EXT4_SB(sb)->s_journal->j_flags & JBD2_ABORT))
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			errstr = "Journal has aborted";
		else
			errstr = "Readonly filesystem";
		break;
	default:
		/* If the caller passed in an extra buffer for unknown
		 * errors, textualise them now.  Else we just return
		 * NULL. */
		if (nbuf) {
			/* Check for truncated error codes... */
			if (snprintf(nbuf, 16, "error %d", -errno) >= 0)
				errstr = nbuf;
		}
		break;
	}

	return errstr;
}

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/* __ext4_std_error decodes expected errors from journaling functions
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 * automatically and invokes the appropriate error response.  */

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void __ext4_std_error(struct super_block *sb, const char *function,
		      unsigned int line, int errno)
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{
	char nbuf[16];
	const char *errstr;

	/* Special case: if the error is EROFS, and we're not already
	 * inside a transaction, then there's really no point in logging
	 * an error. */
	if (errno == -EROFS && journal_current_handle() == NULL &&
	    (sb->s_flags & MS_RDONLY))
		return;

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	if (ext4_error_ratelimit(sb)) {
		errstr = ext4_decode_error(sb, errno, nbuf);
		printk(KERN_CRIT "EXT4-fs error (device %s) in %s:%d: %s\n",
		       sb->s_id, function, line, errstr);
	}
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	save_error_info(sb, function, line);
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	ext4_handle_error(sb);
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}

/*
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 * ext4_abort is a much stronger failure handler than ext4_error.  The
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 * abort function may be used to deal with unrecoverable failures such
 * as journal IO errors or ENOMEM at a critical moment in log management.
 *
 * We unconditionally force the filesystem into an ABORT|READONLY state,
 * unless the error response on the fs has been set to panic in which
 * case we take the easy way out and panic immediately.
 */

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void __ext4_abort(struct super_block *sb, const char *function,
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		unsigned int line, const char *fmt, ...)
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{
	va_list args;

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	save_error_info(sb, function, line);
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	va_start(args, fmt);
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	printk(KERN_CRIT "EXT4-fs error (device %s): %s:%d: ", sb->s_id,
	       function, line);
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	vprintk(fmt, args);
	printk("\n");
	va_end(args);

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	if ((sb->s_flags & MS_RDONLY) == 0) {
		ext4_msg(sb, KERN_CRIT, "Remounting filesystem read-only");
		EXT4_SB(sb)->s_mount_flags |= EXT4_MF_FS_ABORTED;
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		/*
		 * Make sure updated value of ->s_mount_flags will be visible
		 * before ->s_flags update
		 */
		smp_wmb();
		sb->s_flags |= MS_RDONLY;
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		if (EXT4_SB(sb)->s_journal)
			jbd2_journal_abort(EXT4_SB(sb)->s_journal, -EIO);
		save_error_info(sb, function, line);
	}
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	if (test_opt(sb, ERRORS_PANIC)) {
		if (EXT4_SB(sb)->s_journal &&
		  !(EXT4_SB(sb)->s_journal->j_flags & JBD2_REC_ERR))
			return;
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		panic("EXT4-fs panic from previous error\n");
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	}
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}

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void __ext4_msg(struct super_block *sb,
		const char *prefix, const char *fmt, ...)
606
{
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	struct va_format vaf;
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	va_list args;

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	if (!___ratelimit(&(EXT4_SB(sb)->s_msg_ratelimit_state), "EXT4-fs"))
		return;

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	va_start(args, fmt);
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	vaf.fmt = fmt;
	vaf.va = &args;
	printk("%sEXT4-fs (%s): %pV\n", prefix, sb->s_id, &vaf);
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	va_end(args);
}

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#define ext4_warning_ratelimit(sb)					\
		___ratelimit(&(EXT4_SB(sb)->s_warning_ratelimit_state),	\
			     "EXT4-fs warning")

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void __ext4_warning(struct super_block *sb, const char *function,
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		    unsigned int line, const char *fmt, ...)
626
{
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	struct va_format vaf;
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	va_list args;

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	if (!ext4_warning_ratelimit(sb))
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		return;

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	va_start(args, fmt);
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	vaf.fmt = fmt;
	vaf.va = &args;
	printk(KERN_WARNING "EXT4-fs warning (device %s): %s:%d: %pV\n",
	       sb->s_id, function, line, &vaf);
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	va_end(args);
}

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void __ext4_warning_inode(const struct inode *inode, const char *function,
			  unsigned int line, const char *fmt, ...)
{
	struct va_format vaf;
	va_list args;

	if (!ext4_warning_ratelimit(inode->i_sb))
		return;

	va_start(args, fmt);
	vaf.fmt = fmt;
	vaf.va = &args;
	printk(KERN_WARNING "EXT4-fs warning (device %s): %s:%d: "
	       "inode #%lu: comm %s: %pV\n", inode->i_sb->s_id,
	       function, line, inode->i_ino, current->comm, &vaf);
	va_end(args);
}

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void __ext4_grp_locked_error(const char *function, unsigned int line,
			     struct super_block *sb, ext4_group_t grp,
			     unsigned long ino, ext4_fsblk_t block,
			     const char *fmt, ...)
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__releases(bitlock)
__acquires(bitlock)
{
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	struct va_format vaf;
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	va_list args;
	struct ext4_super_block *es = EXT4_SB(sb)->s_es;

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	es->s_last_error_ino = cpu_to_le32(ino);
	es->s_last_error_block = cpu_to_le64(block);
	__save_error_info(sb, function, line);
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	if (ext4_error_ratelimit(sb)) {
		va_start(args, fmt);
		vaf.fmt = fmt;
		vaf.va = &args;
		printk(KERN_CRIT "EXT4-fs error (device %s): %s:%d: group %u, ",
		       sb->s_id, function, line, grp);
		if (ino)
			printk(KERN_CONT "inode %lu: ", ino);
		if (block)
			printk(KERN_CONT "block %llu:",
			       (unsigned long long) block);
		printk(KERN_CONT "%pV\n", &vaf);
		va_end(args);
	}
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	if (test_opt(sb, ERRORS_CONT)) {
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		ext4_commit_super(sb, 0);
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		return;
	}
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	ext4_unlock_group(sb, grp);
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	ext4_commit_super(sb, 1);
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	ext4_handle_error(sb);
	/*
	 * We only get here in the ERRORS_RO case; relocking the group
	 * may be dangerous, but nothing bad will happen since the
	 * filesystem will have already been marked read/only and the
	 * journal has been aborted.  We return 1 as a hint to callers
	 * who might what to use the return value from
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	 * ext4_grp_locked_error() to distinguish between the
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	 * ERRORS_CONT and ERRORS_RO case, and perhaps return more
	 * aggressively from the ext4 function in question, with a
	 * more appropriate error code.
	 */
	ext4_lock_group(sb, grp);
	return;
}

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void ext4_update_dynamic_rev(struct super_block *sb)
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{
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	struct ext4_super_block *es = EXT4_SB(sb)->s_es;
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	if (le32_to_cpu(es->s_rev_level) > EXT4_GOOD_OLD_REV)
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		return;

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	ext4_warning(sb,
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		     "updating to rev %d because of new feature flag, "
		     "running e2fsck is recommended",
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		     EXT4_DYNAMIC_REV);
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	es->s_first_ino = cpu_to_le32(EXT4_GOOD_OLD_FIRST_INO);
	es->s_inode_size = cpu_to_le16(EXT4_GOOD_OLD_INODE_SIZE);
	es->s_rev_level = cpu_to_le32(EXT4_DYNAMIC_REV);
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	/* leave es->s_feature_*compat flags alone */
	/* es->s_uuid will be set by e2fsck if empty */

	/*
	 * The rest of the superblock fields should be zero, and if not it
	 * means they are likely already in use, so leave them alone.  We
	 * can leave it up to e2fsck to clean up any inconsistencies there.
	 */
}

/*
 * Open the external journal device
 */
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static struct block_device *ext4_blkdev_get(dev_t dev, struct super_block *sb)
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{
	struct block_device *bdev;
	char b[BDEVNAME_SIZE];

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	bdev = blkdev_get_by_dev(dev, FMODE_READ|FMODE_WRITE|FMODE_EXCL, sb);
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	if (IS_ERR(bdev))
		goto fail;
	return bdev;

fail:
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	ext4_msg(sb, KERN_ERR, "failed to open journal device %s: %ld",
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			__bdevname(dev, b), PTR_ERR(bdev));
	return NULL;
}

/*
 * Release the journal device
 */
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static void ext4_blkdev_put(struct block_device *bdev)
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{
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	blkdev_put(bdev, FMODE_READ|FMODE_WRITE|FMODE_EXCL);
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}

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static void ext4_blkdev_remove(struct ext4_sb_info *sbi)
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{
	struct block_device *bdev;
	bdev = sbi->journal_bdev;
	if (bdev) {
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		ext4_blkdev_put(bdev);
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		sbi->journal_bdev = NULL;
	}
}

static inline struct inode *orphan_list_entry(struct list_head *l)
{
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	return &list_entry(l, struct ext4_inode_info, i_orphan)->vfs_inode;
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}

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static void dump_orphan_list(struct super_block *sb, struct ext4_sb_info *sbi)
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{
	struct list_head *l;

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	ext4_msg(sb, KERN_ERR, "sb orphan head is %d",
		 le32_to_cpu(sbi->s_es->s_last_orphan));
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	printk(KERN_ERR "sb_info orphan list:\n");
	list_for_each(l, &sbi->s_orphan) {
		struct inode *inode = orphan_list_entry(l);
		printk(KERN_ERR "  "
		       "inode %s:%lu at %p: mode %o, nlink %d, next %d\n",
		       inode->i_sb->s_id, inode->i_ino, inode,
		       inode->i_mode, inode->i_nlink,
		       NEXT_ORPHAN(inode));
	}
}

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static void ext4_put_super(struct super_block *sb)
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{
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	struct ext4_sb_info *sbi = EXT4_SB(sb);
	struct ext4_super_block *es = sbi->s_es;
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	int aborted = 0;
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	int i, err;
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	ext4_unregister_li_request(sb);
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	dquot_disable(sb, -1, DQUOT_USAGE_ENABLED | DQUOT_LIMITS_ENABLED);

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	flush_workqueue(sbi->rsv_conversion_wq);
	destroy_workqueue(sbi->rsv_conversion_wq);
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	if (sbi->s_journal) {
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		aborted = is_journal_aborted(sbi->s_journal);
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		err = jbd2_journal_destroy(sbi->s_journal);
		sbi->s_journal = NULL;
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		if ((err < 0) && !aborted)
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			ext4_abort(sb, "Couldn't clean up the journal");
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	}
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	ext4_unregister_sysfs(sb);
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	ext4_es_unregister_shrinker(sbi);
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	del_timer_sync(&sbi->s_err_report);
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	ext4_release_system_zone(sb);
	ext4_mb_release(sb);
	ext4_ext_release(sb);

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	if (!(sb->s_flags & MS_RDONLY) && !aborted) {
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		ext4_clear_feature_journal_needs_recovery(sb);
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		es->s_state = cpu_to_le16(sbi->s_mount_state);
	}
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	if (!(sb->s_flags & MS_RDONLY))
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		ext4_commit_super(sb, 1);

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	for (i = 0; i < sbi->s_gdb_count; i++)
		brelse(sbi->s_group_desc[i]);
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	kvfree(sbi->s_group_desc);
	kvfree(sbi->s_flex_groups);
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	percpu_counter_destroy(&sbi->s_freeclusters_counter);
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	percpu_counter_destroy(&sbi->s_freeinodes_counter);
	percpu_counter_destroy(&sbi->s_dirs_counter);
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	percpu_counter_destroy(&sbi->s_dirtyclusters_counter);
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	brelse(sbi->s_sbh);
#ifdef CONFIG_QUOTA
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	for (i = 0; i < EXT4_MAXQUOTAS; i++)
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		kfree(sbi->s_qf_names[i]);
#endif

	/* Debugging code just in case the in-memory inode orphan list
	 * isn't empty.  The on-disk one can be non-empty if we've
	 * detected an error and taken the fs readonly, but the
	 * in-memory list had better be clean by this point. */
	if (!list_empty(&sbi->s_orphan))
		dump_orphan_list(sb, sbi);
	J_ASSERT(list_empty(&sbi->s_orphan));

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	sync_blockdev(sb->s_bdev);
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	invalidate_bdev(sb->s_bdev);
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	if (sbi->journal_bdev && sbi->journal_bdev != sb->s_bdev) {
		/*
		 * Invalidate the journal device's buffers.  We don't want them
		 * floating about in memory - the physical journal device may
		 * hotswapped, and it breaks the `ro-after' testing code.
		 */
		sync_blockdev(sbi->journal_bdev);
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		invalidate_bdev(sbi->journal_bdev);
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		ext4_blkdev_remove(sbi);
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	}
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	if (sbi->s_mb_cache) {
		ext4_xattr_destroy_cache(sbi->s_mb_cache);
		sbi->s_mb_cache = NULL;
	}
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	if (sbi->s_mmp_tsk)
		kthread_stop(sbi->s_mmp_tsk);
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	sb->s_fs_info = NULL;
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	/*
	 * Now that we are completely done shutting down the
	 * superblock, we need to actually destroy the kobject.
	 */
	kobject_put(&sbi->s_kobj);
	wait_for_completion(&sbi->s_kobj_unregister);
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	if (sbi->s_chksum_driver)
		crypto_free_shash(sbi->s_chksum_driver);
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	kfree(sbi->s_blockgroup_lock);
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	kfree(sbi);
}

885
static struct kmem_cache *ext4_inode_cachep;
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/*
 * Called inside transaction, so use GFP_NOFS
 */
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static struct inode *ext4_alloc_inode(struct super_block *sb)
891
{
892
	struct ext4_inode_info *ei;
893

894
	ei = kmem_cache_alloc(ext4_inode_cachep, GFP_NOFS);
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	if (!ei)
		return NULL;
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898
	ei->vfs_inode.i_version = 1;
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	spin_lock_init(&ei->i_raw_lock);
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	INIT_LIST_HEAD(&ei->i_prealloc_list);
	spin_lock_init(&ei->i_prealloc_lock);
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	ext4_es_init_tree(&ei->i_es_tree);
	rwlock_init(&ei->i_es_lock);
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	INIT_LIST_HEAD(&ei->i_es_list);
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	ei->i_es_all_nr = 0;
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	ei->i_es_shk_nr = 0;
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	ei->i_es_shrink_lblk = 0;
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	ei->i_reserved_data_blocks = 0;
	ei->i_reserved_meta_blocks = 0;
	ei->i_allocated_meta_blocks = 0;
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	ei->i_da_metadata_calc_len = 0;
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	ei->i_da_metadata_calc_last_lblock = 0;
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	spin_lock_init(&(ei->i_block_reservation_lock));
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#ifdef CONFIG_QUOTA
	ei->i_reserved_quota = 0;
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	memset(&ei->i_dquot, 0, sizeof(ei->i_dquot));
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#endif
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	ei->jinode = NULL;
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	INIT_LIST_HEAD(&ei->i_rsv_conversion_list);
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	spin_lock_init(&ei->i_completed_io_lock);
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	ei->i_sync_tid = 0;
	ei->i_datasync_tid = 0;
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	atomic_set(&ei->i_ioend_count, 0);
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	atomic_set(&ei->i_unwritten, 0);
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	INIT_WORK(&ei->i_rsv_conversion_work, ext4_end_io_rsv_work);
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#ifdef CONFIG_EXT4_FS_ENCRYPTION
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	ei->i_crypt_info = NULL;
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#endif
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	return &ei->vfs_inode;
}

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static int ext4_drop_inode(struct inode *inode)
{
	int drop = generic_drop_inode(inode);

	trace_ext4_drop_inode(inode, drop);
	return drop;
}

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static void ext4_i_callback(struct rcu_head *head)
{
	struct inode *inode = container_of(head, struct inode, i_rcu);
	kmem_cache_free(ext4_inode_cachep, EXT4_I(inode));
}

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static void ext4_destroy_inode(struct inode *inode)
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{
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	if (!list_empty(&(EXT4_I(inode)->i_orphan))) {
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		ext4_msg(inode->i_sb, KERN_ERR,
			 "Inode %lu (%p): orphan list check failed!",
			 inode->i_ino, EXT4_I(inode));
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		print_hex_dump(KERN_INFO, "", DUMP_PREFIX_ADDRESS, 16, 4,
				EXT4_I(inode), sizeof(struct ext4_inode_info),
				true);
		dump_stack();
	}
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	call_rcu(&inode->i_rcu, ext4_i_callback);
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}

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static void init_once(void *foo)
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{
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	struct ext4_inode_info *ei = (struct ext4_inode_info *) foo;
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	INIT_LIST_HEAD(&ei->i_orphan);
	init_rwsem(&ei->xattr_sem);
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	init_rwsem(&ei->i_data_sem);
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	init_rwsem(&ei->i_mmap_sem);
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	inode_init_once(&ei->vfs_inode);
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}

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static int __init init_inodecache(void)
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{
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	ext4_inode_cachep = kmem_cache_create("ext4_inode_cache",
					     sizeof(struct ext4_inode_info),
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					     0, (SLAB_RECLAIM_ACCOUNT|
						SLAB_MEM_SPREAD),
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					     init_once);
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	if (ext4_inode_cachep == NULL)
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		return -ENOMEM;
	return 0;
}

static void destroy_inodecache(void)
{
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	/*
	 * Make sure all delayed rcu free inodes are flushed before we
	 * destroy cache.
	 */
	rcu_barrier();
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	kmem_cache_destroy(ext4_inode_cachep);
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}

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void ext4_clear_inode(struct inode *inode)
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{
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	invalidate_inode_buffers(inode);
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	clear_inode(inode);
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	dquot_drop(inode);
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	ext4_discard_preallocations(inode);
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	ext4_es_remove_extent(inode, 0, EXT_MAX_BLOCKS);
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	if (EXT4_I(inode)->jinode) {
		jbd2_journal_release_jbd_inode(EXT4_JOURNAL(inode),
					       EXT4_I(inode)->jinode);
		jbd2_free_inode(EXT4_I(inode)->jinode);
		EXT4_I(inode)->jinode = NULL;
	}
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#ifdef CONFIG_EXT4_FS_ENCRYPTION
	if (EXT4_I(inode)->i_crypt_info)
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		ext4_free_encryption_info(inode, EXT4_I(inode)->i_crypt_info);
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#endif
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}

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static struct inode *ext4_nfs_get_inode(struct super_block *sb,
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					u64 ino, u32 generation)
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{
	struct inode *inode;

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	if (ino < EXT4_FIRST_INO(sb) && ino != EXT4_ROOT_INO)
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		return ERR_PTR(-ESTALE);
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	if (ino > le32_to_cpu(EXT4_SB(sb)->s_es->s_inodes_count))
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		return ERR_PTR(-ESTALE);

	/* iget isn't really right if the inode is currently unallocated!!
	 *
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	 * ext4_read_inode will return a bad_inode if the inode had been
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	 * deleted, so we should be safe.
	 *
	 * Currently we don't know the generation for parent directory, so
	 * a generation of 0 means "accept any"
	 */
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	inode = ext4_iget_normal(sb, ino);
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	if (IS_ERR(inode))
		return ERR_CAST(inode);
	if (generation && inode->i_generation != generation) {
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		iput(inode);
		return ERR_PTR(-ESTALE);
	}
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	return inode;
}

static struct dentry *ext4_fh_to_dentry(struct super_block *sb, struct fid *fid,
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					int fh_len, int fh_type)
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{
	return generic_fh_to_dentry(sb, fid, fh_len, fh_type,
				    ext4_nfs_get_inode);
}

static struct dentry *ext4_fh_to_parent(struct super_block *sb, struct fid *fid,
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					int fh_len, int fh_type)
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{
	return generic_fh_to_parent(sb, fid, fh_len, fh_type,
				    ext4_nfs_get_inode);
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}

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/*
 * Try to release metadata pages (indirect blocks, directories) which are
 * mapped via the block device.  Since these pages could have journal heads
 * which would prevent try_to_free_buffers() from freeing them, we must use
 * jbd2 layer's try_to_free_buffers() function to release them.
 */
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static int bdev_try_to_free_page(struct super_block *sb, struct page *page,
				 gfp_t wait)
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{
	journal_t *journal = EXT4_SB(sb)->s_journal;

	WARN_ON(PageChecked(page));
	if (!page_has_buffers(page))
		return 0;
	if (journal)
		return jbd2_journal_try_to_free_buffers(journal, page,
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						wait & ~__GFP_DIRECT_RECLAIM);
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	return try_to_free_buffers(page);
}

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#ifdef CONFIG_QUOTA
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#define QTYPE2NAME(t) ((t) == USRQUOTA ? "user" : "group")
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#define QTYPE2MOPT(on, t) ((t) == USRQUOTA?((on)##USRJQUOTA):((on)##GRPJQUOTA))
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static int ext4_write_dquot(struct dquot *dquot);
static int ext4_acquire_dquot(struct dquot *dquot);
static int ext4_release_dquot(struct dquot *dquot);
static int ext4_mark_dquot_dirty(struct dquot *dquot);
static int ext4_write_info(struct super_block *sb, int type);
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static int ext4_quota_on(struct super_block *sb, int type, int format_id,
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			 struct path *path);
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static int ext4_quota_off(struct super_block *sb, int type);
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static int ext4_quota_on_mount(struct super_block *sb, int type);
static ssize_t ext4_quota_read(struct super_block *sb, int type, char *data,
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			       size_t len, loff_t off);
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static ssize_t ext4_quota_write(struct super_block *sb, int type,
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				const char *data, size_t len, loff_t off);
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static int ext4_quota_enable(struct super_block *sb, int type, int format_id,
			     unsigned int flags);
static int ext4_enable_quotas(struct super_block *sb);
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static struct dquot **ext4_get_dquots(struct inode *inode)
{
	return EXT4_I(inode)->i_dquot;
}

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static const struct dquot_operations ext4_quota_operations = {
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	.get_reserved_space = ext4_get_reserved_space,
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	.write_dquot	= ext4_write_dquot,
	.acquire_dquot	= ext4_acquire_dquot,
	.release_dquot	= ext4_release_dquot,
	.mark_dirty	= ext4_mark_dquot_dirty,
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	.write_info	= ext4_write_info,
	.alloc_dquot	= dquot_alloc,
	.destroy_dquot	= dquot_destroy,
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};

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static const struct quotactl_ops ext4_qctl_operations = {
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	.quota_on	= ext4_quota_on,
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	.quota_off	= ext4_quota_off,
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	.quota_sync	= dquot_quota_sync,
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	.get_state	= dquot_get_state,
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	.set_info	= dquot_set_dqinfo,
	.get_dqblk	= dquot_get_dqblk,
	.set_dqblk	= dquot_set_dqblk
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};
#endif

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static const struct super_operations ext4_sops = {
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	.alloc_inode	= ext4_alloc_inode,
	.destroy_inode	= ext4_destroy_inode,
	.write_inode	= ext4_write_inode,
	.dirty_inode	= ext4_dirty_inode,
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	.drop_inode	= ext4_drop_inode,
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	.evict_inode	= ext4_evict_inode,
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	.put_super	= ext4_put_super,
	.sync_fs	= ext4_sync_fs,
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	.freeze_fs	= ext4_freeze,
	.unfreeze_fs	= ext4_unfreeze,
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	.statfs		= ext4_statfs,
	.remount_fs	= ext4_remount,
	.show_options	= ext4_show_options,
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#ifdef CONFIG_QUOTA
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	.quota_read	= ext4_quota_read,
	.quota_write	= ext4_quota_write,
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	.get_dquots	= ext4_get_dquots,
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#endif
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	.bdev_try_to_free_page = bdev_try_to_free_page,
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};

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static const struct export_operations ext4_export_ops = {
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	.fh_to_dentry = ext4_fh_to_dentry,
	.fh_to_parent = ext4_fh_to_parent,
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	.get_parent = ext4_get_parent,
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};

enum {
	Opt_bsd_df, Opt_minix_df, Opt_grpid, Opt_nogrpid,
	Opt_resgid, Opt_resuid, Opt_sb, Opt_err_cont, Opt_err_panic, Opt_err_ro,
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	Opt_nouid32, Opt_debug, Opt_removed,
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	Opt_user_xattr, Opt_nouser_xattr, Opt_acl, Opt_noacl,
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	Opt_auto_da_alloc, Opt_noauto_da_alloc, Opt_noload,
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	Opt_commit, Opt_min_batch_time, Opt_max_batch_time, Opt_journal_dev,
	Opt_journal_path, Opt_journal_checksum, Opt_journal_async_commit,
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	Opt_abort, Opt_data_journal, Opt_data_ordered, Opt_data_writeback,
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	Opt_data_err_abort, Opt_data_err_ignore, Opt_test_dummy_encryption,
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	Opt_usrjquota, Opt_grpjquota, Opt_offusrjquota, Opt_offgrpjquota,
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	Opt_jqfmt_vfsold, Opt_jqfmt_vfsv0, Opt_jqfmt_vfsv1, Opt_quota,
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	Opt_noquota, Opt_barrier, Opt_nobarrier, Opt_err,
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	Opt_usrquota, Opt_grpquota, Opt_i_version, Opt_dax,
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	Opt_stripe, Opt_delalloc, Opt_nodelalloc, Opt_mblk_io_submit,
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	Opt_lazytime, Opt_nolazytime,
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	Opt_nomblk_io_submit, Opt_block_validity, Opt_noblock_validity,
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	Opt_inode_readahead_blks, Opt_journal_ioprio,
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	Opt_dioread_nolock, Opt_dioread_lock,
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	Opt_discard, Opt_nodiscard, Opt_init_itable, Opt_noinit_itable,
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	Opt_max_dir_size_kb, Opt_nojournal_checksum,
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};

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static const match_table_t tokens = {
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	{Opt_bsd_df, "bsddf"},
	{Opt_minix_df, "minixdf"},
	{Opt_grpid, "grpid"},
	{Opt_grpid, "bsdgroups"},
	{Opt_nogrpid, "nogrpid"},
	{Opt_nogrpid, "sysvgroups"},
	{Opt_resgid, "resgid=%u"},
	{Opt_resuid, "resuid=%u"},
	{Opt_sb, "sb=%u"},
	{Opt_err_cont, "errors=continue"},
	{Opt_err_panic, "errors=panic"},
	{Opt_err_ro, "errors=remount-ro"},
	{Opt_nouid32, "nouid32"},
	{Opt_debug, "debug"},
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	{Opt_removed, "oldalloc"},
	{Opt_removed, "orlov"},
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	{Opt_user_xattr, "user_xattr"},
	{Opt_nouser_xattr, "nouser_xattr"},
	{Opt_acl, "acl"},
	{Opt_noacl, "noacl"},
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	{Opt_noload, "norecovery"},
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	{Opt_noload, "noload"},
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	{Opt_removed, "nobh"},
	{Opt_removed, "bh"},
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	{Opt_commit, "commit=%u"},
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	{Opt_min_batch_time, "min_batch_time=%u"},
	{Opt_max_batch_time, "max_batch_time=%u"},
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	{Opt_journal_dev, "journal_dev=%u"},
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	{Opt_journal_path, "journal_path=%s"},
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	{Opt_journal_checksum, "journal_checksum"},
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	{Opt_nojournal_checksum, "nojournal_checksum"},
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	{Opt_journal_async_commit, "journal_async_commit"},
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	{Opt_abort, "abort"},
	{Opt_data_journal, "data=journal"},
	{Opt_data_ordered, "data=ordered"},
	{Opt_data_writeback, "data=writeback"},
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	{Opt_data_err_abort, "data_err=abort"},
	{Opt_data_err_ignore, "data_err=ignore"},
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	{Opt_offusrjquota, "usrjquota="},
	{Opt_usrjquota, "usrjquota=%s"},
	{Opt_offgrpjquota, "grpjquota="},
	{Opt_grpjquota, "grpjquota=%s"},
	{Opt_jqfmt_vfsold, "jqfmt=vfsold"},
	{Opt_jqfmt_vfsv0, "jqfmt=vfsv0"},
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	{Opt_jqfmt_vfsv1, "jqfmt=vfsv1"},
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	{Opt_grpquota, "grpquota"},
	{Opt_noquota, "noquota"},
	{Opt_quota, "quota"},
	{Opt_usrquota, "usrquota"},
	{Opt_barrier, "barrier=%u"},
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	{Opt_barrier, "barrier"},
	{Opt_nobarrier, "nobarrier"},
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	{Opt_i_version, "i_version"},
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	{Opt_dax, "dax"},
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	{Opt_stripe, "stripe=%u"},
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	{Opt_delalloc, "delalloc"},
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	{Opt_lazytime, "lazytime"},
	{Opt_nolazytime, "nolazytime"},
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	{Opt_nodelalloc, "nodelalloc"},
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	{Opt_removed, "mblk_io_submit"},
	{Opt_removed, "nomblk_io_submit"},
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	{Opt_block_validity, "block_validity"},
	{Opt_noblock_validity, "noblock_validity"},
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	{Opt_inode_readahead_blks, "inode_readahead_blks=%u"},
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	{Opt_journal_ioprio, "journal_ioprio=%u"},
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	{Opt_auto_da_alloc, "auto_da_alloc=%u"},
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	{Opt_auto_da_alloc, "auto_da_alloc"},
	{Opt_noauto_da_alloc, "noauto_da_alloc"},
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	{Opt_dioread_nolock, "dioread_nolock"},
	{Opt_dioread_lock, "dioread_lock"},
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	{Opt_discard, "discard"},
	{Opt_nodiscard, "nodiscard"},
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	{Opt_init_itable, "init_itable=%u"},
	{Opt_init_itable, "init_itable"},
	{Opt_noinit_itable, "noinit_itable"},
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	{Opt_max_dir_size_kb, "max_dir_size_kb=%u"},
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	{Opt_test_dummy_encryption, "test_dummy_encryption"},
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	{Opt_removed, "check=none"},	/* mount option from ext2/3 */
	{Opt_removed, "nocheck"},	/* mount option from ext2/3 */
	{Opt_removed, "reservation"},	/* mount option from ext2/3 */
	{Opt_removed, "noreservation"}, /* mount option from ext2/3 */
	{Opt_removed, "journal=%u"},	/* mount option from ext2/3 */
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	{Opt_err, NULL},
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};

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static ext4_fsblk_t get_sb_block(void **data)
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{
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	ext4_fsblk_t	sb_block;
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	char		*options = (char *) *data;

	if (!options || strncmp(options, "sb=", 3) != 0)
		return 1;	/* Default location */
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	options += 3;
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	/* TODO: use simple_strtoll with >32bit ext4 */
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	sb_block = simple_strtoul(options, &options, 0);
	if (*options && *options != ',') {
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		printk(KERN_ERR "EXT4-fs: Invalid sb specification: %s\n",
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		       (char *) *data);
		return 1;
	}
	if (*options == ',')
		options++;
	*data = (void *) options;
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	return sb_block;
}

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#define DEFAULT_JOURNAL_IOPRIO (IOPRIO_PRIO_VALUE(IOPRIO_CLASS_BE, 3))
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static char deprecated_msg[] = "Mount option \"%s\" will be removed by %s\n"
	"Contact linux-ext4@vger.kernel.org if you think we should keep it.\n";
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#ifdef CONFIG_QUOTA
static int set_qf_name(struct super_block *sb, int qtype, substring_t *args)
{
	struct ext4_sb_info *sbi = EXT4_SB(sb);
	char *qname;
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	int ret = -1;
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	if (sb_any_quota_loaded(sb) &&
		!sbi->s_qf_names[qtype]) {
		ext4_msg(sb, KERN_ERR,
			"Cannot change journaled "
			"quota options when quota turned on");
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		return -1;
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	}
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	if (ext4_has_feature_quota(sb)) {
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		ext4_msg(sb, KERN_INFO, "Journaled quota options "
			 "ignored when QUOTA feature is enabled");
		return 1;
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	}
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	qname = match_strdup(args);
	if (!qname) {
		ext4_msg(sb, KERN_ERR,
			"Not enough memory for storing quotafile name");
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		return -1;
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	}
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	if (sbi->s_qf_names[qtype]) {
		if (strcmp(sbi->s_qf_names[qtype], qname) == 0)
			ret = 1;
		else
			ext4_msg(sb, KERN_ERR,
				 "%s quota file already specified",
				 QTYPE2NAME(qtype));
		goto errout;
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	}
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	if (strchr(qname, '/')) {
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		ext4_msg(sb, KERN_ERR,
			"quotafile must be on filesystem root");
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		goto errout;
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	}
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	sbi->s_qf_names[qtype] = qname;
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	set_opt(sb, QUOTA);
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	return 1;
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errout:
	kfree(qname);
	return ret;
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}

static int clear_qf_name(struct super_block *sb, int qtype)
{

	struct ext4_sb_info *sbi = EXT4_SB(sb);

	if (sb_any_quota_loaded(sb) &&
		sbi->s_qf_names[qtype]) {
		ext4_msg(sb, KERN_ERR, "Cannot change journaled quota options"
			" when quota turned on");
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		return -1;
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	}
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	kfree(sbi->s_qf_names[qtype]);
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	sbi->s_qf_names[qtype] = NULL;
	return 1;
}
#endif

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#define MOPT_SET	0x0001
#define MOPT_CLEAR	0x0002
#define MOPT_NOSUPPORT	0x0004
#define MOPT_EXPLICIT	0x0008
#define MOPT_CLEAR_ERR	0x0010
#define MOPT_GTE0	0x0020
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#ifdef CONFIG_QUOTA
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#define MOPT_Q		0
#define MOPT_QFMT	0x0040
#else
#define MOPT_Q		MOPT_NOSUPPORT
#define MOPT_QFMT	MOPT_NOSUPPORT
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#endif
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#define MOPT_DATAJ	0x0080
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#define MOPT_NO_EXT2	0x0100
#define MOPT_NO_EXT3	0x0200
#define MOPT_EXT4_ONLY	(MOPT_NO_EXT2 | MOPT_NO_EXT3)
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#define MOPT_STRING	0x0400
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static const struct mount_opts {
	int	token;
	int	mount_opt;
	int	flags;
} ext4_mount_opts[] = {
	{Opt_minix_df, EXT4_MOUNT_MINIX_DF, MOPT_SET},
	{Opt_bsd_df, EXT4_MOUNT_MINIX_DF, MOPT_CLEAR},
	{Opt_grpid, EXT4_MOUNT_GRPID, MOPT_SET},
	{Opt_nogrpid, EXT4_MOUNT_GRPID, MOPT_CLEAR},
	{Opt_block_validity, EXT4_MOUNT_BLOCK_VALIDITY, MOPT_SET},
	{Opt_noblock_validity, EXT4_MOUNT_BLOCK_VALIDITY, MOPT_CLEAR},
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	{Opt_dioread_nolock, EXT4_MOUNT_DIOREAD_NOLOCK,
	 MOPT_EXT4_ONLY | MOPT_SET},
	{Opt_dioread_lock, EXT4_MOUNT_DIOREAD_NOLOCK,
	 MOPT_EXT4_ONLY | MOPT_CLEAR},
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	{Opt_discard, EXT4_MOUNT_DISCARD, MOPT_SET},
	{Opt_nodiscard, EXT4_MOUNT_DISCARD, MOPT_CLEAR},
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	{Opt_delalloc, EXT4_MOUNT_DELALLOC,
	 MOPT_EXT4_ONLY | MOPT_SET | MOPT_EXPLICIT},
	{Opt_nodelalloc, EXT4_MOUNT_DELALLOC,
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	 MOPT_EXT4_ONLY | MOPT_CLEAR},
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	{Opt_nojournal_checksum, EXT4_MOUNT_JOURNAL_CHECKSUM,
	 MOPT_EXT4_ONLY | MOPT_CLEAR},
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	{Opt_journal_checksum, EXT4_MOUNT_JOURNAL_CHECKSUM,
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	 MOPT_EXT4_ONLY | MOPT_SET | MOPT_EXPLICIT},
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	{Opt_journal_async_commit, (EXT4_MOUNT_JOURNAL_ASYNC_COMMIT |
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				    EXT4_MOUNT_JOURNAL_CHECKSUM),
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	 MOPT_EXT4_ONLY | MOPT_SET | MOPT_EXPLICIT},
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	{Opt_noload, EXT4_MOUNT_NOLOAD, MOPT_NO_EXT2 | MOPT_SET},
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	{Opt_err_panic, EXT4_MOUNT_ERRORS_PANIC, MOPT_SET | MOPT_CLEAR_ERR},
	{Opt_err_ro, EXT4_MOUNT_ERRORS_RO, MOPT_SET | MOPT_CLEAR_ERR},
	{Opt_err_cont, EXT4_MOUNT_ERRORS_CONT, MOPT_SET | MOPT_CLEAR_ERR},
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	{Opt_data_err_abort, EXT4_MOUNT_DATA_ERR_ABORT,
	 MOPT_NO_EXT2 | MOPT_SET},
	{Opt_data_err_ignore, EXT4_MOUNT_DATA_ERR_ABORT,
	 MOPT_NO_EXT2 | MOPT_CLEAR},
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	{Opt_barrier, EXT4_MOUNT_BARRIER, MOPT_SET},
	{Opt_nobarrier, EXT4_MOUNT_BARRIER, MOPT_CLEAR},
	{Opt_noauto_da_alloc, EXT4_MOUNT_NO_AUTO_DA_ALLOC, MOPT_SET},
	{Opt_auto_da_alloc, EXT4_MOUNT_NO_AUTO_DA_ALLOC, MOPT_CLEAR},
	{Opt_noinit_itable, EXT4_MOUNT_INIT_INODE_TABLE, MOPT_CLEAR},
	{Opt_commit, 0, MOPT_GTE0},
	{Opt_max_batch_time, 0, MOPT_GTE0},
	{Opt_min_batch_time, 0, MOPT_GTE0},
	{Opt_inode_readahead_blks, 0, MOPT_GTE0},
	{Opt_init_itable, 0, MOPT_GTE0},
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	{Opt_dax, EXT4_MOUNT_DAX, MOPT_SET},
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	{Opt_stripe, 0, MOPT_GTE0},
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	{Opt_resuid, 0, MOPT_GTE0},
	{Opt_resgid, 0, MOPT_GTE0},
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	{Opt_journal_dev, 0, MOPT_NO_EXT2 | MOPT_GTE0},
	{Opt_journal_path, 0, MOPT_NO_EXT2 | MOPT_STRING},
	{Opt_journal_ioprio, 0, MOPT_NO_EXT2 | MOPT_GTE0},
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	{Opt_data_journal, EXT4_MOUNT_JOURNAL_DATA, MOPT_NO_EXT2 | MOPT_DATAJ},
	{Opt_data_ordered, EXT4_MOUNT_ORDERED_DATA, MOPT_NO_EXT2 | MOPT_DATAJ},
	{Opt_data_writeback, EXT4_MOUNT_WRITEBACK_DATA,
	 MOPT_NO_EXT2 | MOPT_DATAJ},
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	{Opt_user_xattr, EXT4_MOUNT_XATTR_USER, MOPT_SET},
	{Opt_nouser_xattr, EXT4_MOUNT_XATTR_USER, MOPT_CLEAR},
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#ifdef CONFIG_EXT4_FS_POSIX_ACL
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	{Opt_acl, EXT4_MOUNT_POSIX_ACL, MOPT_SET},
	{Opt_noacl, EXT4_MOUNT_POSIX_ACL, MOPT_CLEAR},
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#else
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	{Opt_acl, 0, MOPT_NOSUPPORT},
	{Opt_noacl, 0, MOPT_NOSUPPORT},
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#endif
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	{Opt_nouid32, EXT4_MOUNT_NO_UID32, MOPT_SET},
	{Opt_debug, EXT4_MOUNT_DEBUG, MOPT_SET},
	{Opt_quota, EXT4_MOUNT_QUOTA | EXT4_MOUNT_USRQUOTA, MOPT_SET | MOPT_Q},
	{Opt_usrquota, EXT4_MOUNT_QUOTA | EXT4_MOUNT_USRQUOTA,
							MOPT_SET | MOPT_Q},
	{Opt_grpquota, EXT4_MOUNT_QUOTA | EXT4_MOUNT_GRPQUOTA,
							MOPT_SET | MOPT_Q},
	{Opt_noquota, (EXT4_MOUNT_QUOTA | EXT4_MOUNT_USRQUOTA |
		       EXT4_MOUNT_GRPQUOTA), MOPT_CLEAR | MOPT_Q},
	{Opt_usrjquota, 0, MOPT_Q},
	{Opt_grpjquota, 0, MOPT_Q},
	{Opt_offusrjquota, 0, MOPT_Q},
	{Opt_offgrpjquota, 0, MOPT_Q},
	{Opt_jqfmt_vfsold, QFMT_VFS_OLD, MOPT_QFMT},
	{Opt_jqfmt_vfsv0, QFMT_VFS_V0, MOPT_QFMT},
	{Opt_jqfmt_vfsv1, QFMT_VFS_V1, MOPT_QFMT},
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	{Opt_max_dir_size_kb, 0, MOPT_GTE0},
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	{Opt_test_dummy_encryption, 0, MOPT_GTE0},
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	{Opt_err, 0, 0}
};

static int handle_mount_opt(struct super_block *sb, char *opt, int token,
			    substring_t *args, unsigned long *journal_devnum,
			    unsigned int *journal_ioprio, int is_remount)
{
	struct ext4_sb_info *sbi = EXT4_SB(sb);
	const struct mount_opts *m;
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	kuid_t uid;
	kgid_t gid;
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	int arg = 0;

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#ifdef CONFIG_QUOTA
	if (token == Opt_usrjquota)
		return set_qf_name(sb, USRQUOTA, &args[0]);
	else if (token == Opt_grpjquota)
		return set_qf_name(sb, GRPQUOTA, &args[0]);
	else if (token == Opt_offusrjquota)
		return clear_qf_name(sb, USRQUOTA);
	else if (token == Opt_offgrpjquota)
		return clear_qf_name(sb, GRPQUOTA);
#endif
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	switch (token) {
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	case Opt_noacl:
	case Opt_nouser_xattr:
		ext4_msg(sb, KERN_WARNING, deprecated_msg, opt, "3.5");
		break;
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	case Opt_sb:
		return 1;	/* handled by get_sb_block() */
	case Opt_removed:
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		ext4_msg(sb, KERN_WARNING, "Ignoring removed %s option", opt);
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		return 1;
	case Opt_abort:
		sbi->s_mount_flags |= EXT4_MF_FS_ABORTED;
		return 1;
	case Opt_i_version:
		sb->s_flags |= MS_I_VERSION;
		return 1;
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	case Opt_lazytime:
		sb->s_flags |= MS_LAZYTIME;
		return 1;
	case Opt_nolazytime:
		sb->s_flags &= ~MS_LAZYTIME;
		return 1;
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	}

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	for (m = ext4_mount_opts; m->token != Opt_err; m++)
		if (token == m->token)
			break;

	if (m->token == Opt_err) {
		ext4_msg(sb, KERN_ERR, "Unrecognized mount option \"%s\" "
			 "or missing value", opt);
		return -1;
	}

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	if ((m->flags & MOPT_NO_EXT2) && IS_EXT2_SB(sb)) {
		ext4_msg(sb, KERN_ERR,
			 "Mount option \"%s\" incompatible with ext2", opt);
		return -1;
	}
	if ((m->flags & MOPT_NO_EXT3) && IS_EXT3_SB(sb)) {
		ext4_msg(sb, KERN_ERR,
			 "Mount option \"%s\" incompatible with ext3", opt);
		return -1;
	}

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	if (token == Opt_err_panic && !capable(CAP_SYS_ADMIN)) {
		ext4_msg(sb, KERN_ERR,
			 "Mount option \"%s\" not allowed for unprivileged mounts",
			 opt);
		return -1;
	}

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	if (args->from && !(m->flags & MOPT_STRING) && match_int(args, &arg))
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		return -1;
	if (args->from && (m->flags & MOPT_GTE0) && (arg < 0))
		return -1;
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	if (m->flags & MOPT_EXPLICIT) {
		if (m->mount_opt & EXT4_MOUNT_DELALLOC) {
			set_opt2(sb, EXPLICIT_DELALLOC);
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		} else if (m->mount_opt & EXT4_MOUNT_JOURNAL_CHECKSUM) {
			set_opt2(sb, EXPLICIT_JOURNAL_CHECKSUM);
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		} else
			return -1;
	}
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	if (m->flags & MOPT_CLEAR_ERR)
		clear_opt(sb, ERRORS_MASK);
	if (token == Opt_noquota && sb_any_quota_loaded(sb)) {
		ext4_msg(sb, KERN_ERR, "Cannot change quota "
			 "options when quota turned on");
		return -1;
	}

	if (m->flags & MOPT_NOSUPPORT) {
		ext4_msg(sb, KERN_ERR, "%s option not supported", opt);
	} else if (token == Opt_commit) {
		if (arg == 0)
			arg = JBD2_DEFAULT_MAX_COMMIT_AGE;
		sbi->s_commit_interval = HZ * arg;
	} else if (token == Opt_max_batch_time) {
		sbi->s_max_batch_time = arg;
	} else if (token == Opt_min_batch_time) {
		sbi->s_min_batch_time = arg;
	} else if (token == Opt_inode_readahead_blks) {
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		if (arg && (arg > (1 << 30) || !is_power_of_2(arg))) {
			ext4_msg(sb, KERN_ERR,
				 "EXT4-fs: inode_readahead_blks must be "
				 "0 or a power of 2 smaller than 2^31");
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			return -1;
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		}
		sbi->s_inode_readahead_blks = arg;
	} else if (token == Opt_init_itable) {
		set_opt(sb, INIT_INODE_TABLE);
		if (!args->from)
			arg = EXT4_DEF_LI_WAIT_MULT;
		sbi->s_li_wait_mult = arg;
	} else if (token == Opt_max_dir_size_kb) {
		sbi->s_max_dir_size_kb = arg;
	} else if (token == Opt_stripe) {
		sbi->s_stripe = arg;
	} else if (token == Opt_resuid) {
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		uid = make_kuid(sb->s_user_ns, arg);
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		if (!uid_valid(uid)) {
			ext4_msg(sb, KERN_ERR, "Invalid uid value %d", arg);
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			return -1;
		}
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		sbi->s_resuid = uid;
	} else if (token == Opt_resgid) {
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		gid = make_kgid(sb->s_user_ns, arg);
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		if (!gid_valid(gid)) {
			ext4_msg(sb, KERN_ERR, "Invalid gid value %d", arg);
			return -1;
		}
		sbi->s_resgid = gid;
	} else if (token == Opt_journal_dev) {
		if (is_remount) {
			ext4_msg(sb, KERN_ERR,
				 "Cannot specify journal on remount");
			return -1;
		}
		*journal_devnum = arg;
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	} else if (token == Opt_journal_path) {
		char *journal_path;
		struct inode *journal_inode;
		struct path path;
		int error;

		if (is_remount) {
			ext4_msg(sb, KERN_ERR,
				 "Cannot specify journal on remount");
			return -1;
		}
		journal_path = match_strdup(&args[0]);
		if (!journal_path) {
			ext4_msg(sb, KERN_ERR, "error: could not dup "
				"journal device string");
			return -1;
		}

		error = kern_path(journal_path, LOOKUP_FOLLOW, &path);
		if (error) {
			ext4_msg(sb, KERN_ERR, "error: could not find "
				"journal device path: error %d", error);
			kfree(journal_path);
			return -1;
		}

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		/*
		 * Refuse access for unprivileged mounts if the user does
		 * not have rw access to the journal device via the supplied
		 * path.
		 */
		if (!capable(CAP_SYS_ADMIN) &&
		    inode_permission(d_inode(path.dentry), MAY_READ|MAY_WRITE)) {
			ext4_msg(sb, KERN_ERR,
				 "error: Insufficient access to journal path %s",
				 journal_path);
			return -1;
		}

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		journal_inode = d_inode(path.dentry);
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		if (!S_ISBLK(journal_inode->i_mode)) {
			ext4_msg(sb, KERN_ERR, "error: journal path %s "
				"is not a block device", journal_path);
			path_put(&path);
			kfree(journal_path);
			return -1;
		}

		*journal_devnum = new_encode_dev(journal_inode->i_rdev);
		path_put(&path);
		kfree(journal_path);
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	} else if (token == Opt_journal_ioprio) {
		if (arg > 7) {
			ext4_msg(sb, KERN_ERR, "Invalid journal IO priority"
				 " (must be 0-7)");
			return -1;
		}
		*journal_ioprio =
			IOPRIO_PRIO_VALUE(IOPRIO_CLASS_BE, arg);
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	} else if (token == Opt_test_dummy_encryption) {
#ifdef CONFIG_EXT4_FS_ENCRYPTION
		sbi->s_mount_flags |= EXT4_MF_TEST_DUMMY_ENCRYPTION;
		ext4_msg(sb, KERN_WARNING,
			 "Test dummy encryption mode enabled");
#else
		ext4_msg(sb, KERN_WARNING,
			 "Test dummy encryption mount option ignored");
#endif
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	} else if (m->flags & MOPT_DATAJ) {
		if (is_remount) {
			if (!sbi->s_journal)
				ext4_msg(sb, KERN_WARNING, "Remounting file system with no journal so ignoring journalled data option");
			else if (test_opt(sb, DATA_FLAGS) != m->mount_opt) {
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				ext4_msg(sb, KERN_ERR,
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					 "Cannot change data mode on remount");
				return -1;
1673
			}
1674
		} else {
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			clear_opt(sb, DATA_FLAGS);
			sbi->s_mount_opt |= m->mount_opt;
1677
		}
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#ifdef CONFIG_QUOTA
	} else if (m->flags & MOPT_QFMT) {
		if (sb_any_quota_loaded(sb) &&
		    sbi->s_jquota_fmt != m->mount_opt) {
			ext4_msg(sb, KERN_ERR, "Cannot change journaled "
				 "quota options when quota turned on");
			return -1;
		}
1686
		if (ext4_has_feature_quota(sb)) {
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			ext4_msg(sb, KERN_INFO,
				 "Quota format mount options ignored "
1689
				 "when QUOTA feature is enabled");
1690
			return 1;
1691
		}
1692
		sbi->s_jquota_fmt = m->mount_opt;
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#endif
	} else if (token == Opt_dax) {
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#ifdef CONFIG_FS_DAX
		ext4_msg(sb, KERN_WARNING,
		"DAX enabled. Warning: EXPERIMENTAL, use at your own risk");
			sbi->s_mount_opt |= m->mount_opt;
#else
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		ext4_msg(sb, KERN_INFO, "dax option not supported");
		return -1;
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#endif
	} else {
		if (!args->from)
			arg = 1;
		if (m->flags & MOPT_CLEAR)
			arg = !arg;
		else if (unlikely(!(m->flags & MOPT_SET))) {
			ext4_msg(sb, KERN_WARNING,
				 "buggy handling of option %s", opt);
			WARN_ON(1);
			return -1;
		}
		if (arg != 0)
			sbi->s_mount_opt |= m->mount_opt;
		else
			sbi->s_mount_opt &= ~m->mount_opt;
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	}
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	return 1;
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}

static int parse_options(char *options, struct super_block *sb,
			 unsigned long *journal_devnum,
			 unsigned int *journal_ioprio,
			 int is_remount)
{
	struct ext4_sb_info *sbi = EXT4_SB(sb);
	char *p;
	substring_t args[MAX_OPT_ARGS];
	int token;

	if (!options)
		return 1;

	while ((p = strsep(&options, ",")) != NULL) {
		if (!*p)
			continue;
		/*
		 * Initialize args struct so we know whether arg was
		 * found; some options take optional arguments.
		 */
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		args[0].to = args[0].from = NULL;
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		token = match_token(p, tokens, args);
		if (handle_mount_opt(sb, p, token, args, journal_devnum,
				     journal_ioprio, is_remount) < 0)
			return 0;
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	}
#ifdef CONFIG_QUOTA
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	if (ext4_has_feature_quota(sb) &&
1750
	    (test_opt(sb, USRQUOTA) || test_opt(sb, GRPQUOTA))) {
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		ext4_msg(sb, KERN_INFO, "Quota feature enabled, usrquota and grpquota "
			 "mount options ignored.");
		clear_opt(sb, USRQUOTA);
		clear_opt(sb, GRPQUOTA);
	} else if (sbi->s_qf_names[USRQUOTA] || sbi->s_qf_names[GRPQUOTA]) {
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		if (test_opt(sb, USRQUOTA) && sbi->s_qf_names[USRQUOTA])
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			clear_opt(sb, USRQUOTA);
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1759
		if (test_opt(sb, GRPQUOTA) && sbi->s_qf_names[GRPQUOTA])
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			clear_opt(sb, GRPQUOTA);
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		if (test_opt(sb, GRPQUOTA) || test_opt(sb, USRQUOTA)) {
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			ext4_msg(sb, KERN_ERR, "old and new quota "
					"format mixing");
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			return 0;
		}

		if (!sbi->s_jquota_fmt) {
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			ext4_msg(sb, KERN_ERR, "journaled quota format "
					"not specified");
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			return 0;
		}
	}
#endif
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	if (test_opt(sb, DIOREAD_NOLOCK)) {
		int blocksize =
			BLOCK_SIZE << le32_to_cpu(sbi->s_es->s_log_block_size);

		if (blocksize < PAGE_CACHE_SIZE) {
			ext4_msg(sb, KERN_ERR, "can't mount with "
				 "dioread_nolock if block size != PAGE_SIZE");
			return 0;
		}
	}
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	if (test_opt(sb, DATA_FLAGS) == EXT4_MOUNT_ORDERED_DATA &&
	    test_opt(sb, JOURNAL_ASYNC_COMMIT)) {
		ext4_msg(sb, KERN_ERR, "can't mount with journal_async_commit "
			 "in data=ordered mode");
		return 0;
	}
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	return 1;
}

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static inline void ext4_show_quota_options(struct seq_file *seq,
					   struct super_block *sb)
{
#if defined(CONFIG_QUOTA)
	struct ext4_sb_info *sbi = EXT4_SB(sb);

	if (sbi->s_jquota_fmt) {
		char *fmtname = "";

		switch (sbi->s_jquota_fmt) {
		case QFMT_VFS_OLD:
			fmtname = "vfsold";
			break;
		case QFMT_VFS_V0:
			fmtname = "vfsv0";
			break;
		case QFMT_VFS_V1:
			fmtname = "vfsv1";
			break;
		}
		seq_printf(seq, ",jqfmt=%s", fmtname);
	}

	if (sbi->s_qf_names[USRQUOTA])
1818
		seq_show_option(seq, "usrjquota", sbi->s_qf_names[USRQUOTA]);
1819 1820

	if (sbi->s_qf_names[GRPQUOTA])
1821
		seq_show_option(seq, "grpjquota", sbi->s_qf_names[GRPQUOTA]);
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#endif
}

1825 1826
static const char *token2str(int token)
{
1827
	const struct match_token *t;
1828 1829 1830 1831 1832 1833 1834

	for (t = tokens; t->token != Opt_err; t++)
		if (t->token == token && !strchr(t->pattern, '='))
			break;
	return t->pattern;
}

1835 1836 1837 1838 1839
/*
 * Show an option if
 *  - it's set to a non-default value OR
 *  - if the per-sb default is different from the global default
 */
1840 1841
static int _ext4_show_options(struct seq_file *seq, struct super_block *sb,
			      int nodefs)
1842 1843 1844
{
	struct ext4_sb_info *sbi = EXT4_SB(sb);
	struct ext4_super_block *es = sbi->s_es;
1845
	int def_errors, def_mount_opt = nodefs ? 0 : sbi->s_def_mount_opt;
1846
	const struct mount_opts *m;
1847
	char sep = nodefs ? '\n' : ',';
1848

1849 1850
#define SEQ_OPTS_PUTS(str) seq_printf(seq, "%c" str, sep)
#define SEQ_OPTS_PRINT(str, arg) seq_printf(seq, "%c" str, sep, arg)
1851 1852

	if (sbi->s_sb_block != 1)
1853 1854 1855 1856 1857 1858 1859
		SEQ_OPTS_PRINT("sb=%llu", sbi->s_sb_block);

	for (m = ext4_mount_opts; m->token != Opt_err; m++) {
		int want_set = m->flags & MOPT_SET;
		if (((m->flags & (MOPT_SET|MOPT_CLEAR)) == 0) ||
		    (m->flags & MOPT_CLEAR_ERR))
			continue;
1860
		if (!(m->mount_opt & (sbi->s_mount_opt ^ def_mount_opt)))
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			continue; /* skip if same as the default */
		if ((want_set &&
		     (sbi->s_mount_opt & m->mount_opt) != m->mount_opt) ||
		    (!want_set && (sbi->s_mount_opt & m->mount_opt)))
			continue; /* select Opt_noFoo vs Opt_Foo */
		SEQ_OPTS_PRINT("%s", token2str(m->token));
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	}
1868

1869
	if (nodefs || !uid_eq(sbi->s_resuid, make_kuid(sb->s_user_ns, EXT4_DEF_RESUID)) ||
1870
	    le16_to_cpu(es->s_def_resuid) != EXT4_DEF_RESUID)
1871
		SEQ_OPTS_PRINT("resuid=%u",
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				from_kuid_munged(sb->s_user_ns, sbi->s_resuid));
	if (nodefs || !gid_eq(sbi->s_resgid, make_kgid(sb->s_user_ns, EXT4_DEF_RESGID)) ||
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	    le16_to_cpu(es->s_def_resgid) != EXT4_DEF_RESGID)
1875
		SEQ_OPTS_PRINT("resgid=%u",
1876
				from_kgid_munged(sb->s_user_ns, sbi->s_resgid));
1877
	def_errors = nodefs ? -1 : le16_to_cpu(es->s_errors);
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	if (test_opt(sb, ERRORS_RO) && def_errors != EXT4_ERRORS_RO)
		SEQ_OPTS_PUTS("errors=remount-ro");
1880
	if (test_opt(sb, ERRORS_CONT) && def_errors != EXT4_ERRORS_CONTINUE)
1881
		SEQ_OPTS_PUTS("errors=continue");
1882
	if (test_opt(sb, ERRORS_PANIC) && def_errors != EXT4_ERRORS_PANIC)
1883
		SEQ_OPTS_PUTS("errors=panic");
1884
	if (nodefs || sbi->s_commit_interval != JBD2_DEFAULT_MAX_COMMIT_AGE*HZ)
1885
		SEQ_OPTS_PRINT("commit=%lu", sbi->s_commit_interval / HZ);
1886
	if (nodefs || sbi->s_min_batch_time != EXT4_DEF_MIN_BATCH_TIME)
1887
		SEQ_OPTS_PRINT("min_batch_time=%u", sbi->s_min_batch_time);
1888
	if (nodefs || sbi->s_max_batch_time != EXT4_DEF_MAX_BATCH_TIME)
1889
		SEQ_OPTS_PRINT("max_batch_time=%u", sbi->s_max_batch_time);
1890
	if (sb->s_flags & MS_I_VERSION)
1891
		SEQ_OPTS_PUTS("i_version");
1892
	if (nodefs || sbi->s_stripe)
1893
		SEQ_OPTS_PRINT("stripe=%lu", sbi->s_stripe);
1894
	if (EXT4_MOUNT_DATA_FLAGS & (sbi->s_mount_opt ^ def_mount_opt)) {
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		if (test_opt(sb, DATA_FLAGS) == EXT4_MOUNT_JOURNAL_DATA)
			SEQ_OPTS_PUTS("data=journal");
		else if (test_opt(sb, DATA_FLAGS) == EXT4_MOUNT_ORDERED_DATA)
			SEQ_OPTS_PUTS("data=ordered");
		else if (test_opt(sb, DATA_FLAGS) == EXT4_MOUNT_WRITEBACK_DATA)
			SEQ_OPTS_PUTS("data=writeback");
	}
1902 1903
	if (nodefs ||
	    sbi->s_inode_readahead_blks != EXT4_DEF_INODE_READAHEAD_BLKS)
1904 1905
		SEQ_OPTS_PRINT("inode_readahead_blks=%u",
			       sbi->s_inode_readahead_blks);
1906

1907 1908
	if (nodefs || (test_opt(sb, INIT_INODE_TABLE) &&
		       (sbi->s_li_wait_mult != EXT4_DEF_LI_WAIT_MULT)))
1909
		SEQ_OPTS_PRINT("init_itable=%u", sbi->s_li_wait_mult);
1910 1911
	if (nodefs || sbi->s_max_dir_size_kb)
		SEQ_OPTS_PRINT("max_dir_size_kb=%u", sbi->s_max_dir_size_kb);
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	ext4_show_quota_options(seq, sb);
	return 0;
}

1917 1918 1919 1920 1921
static int ext4_show_options(struct seq_file *seq, struct dentry *root)
{
	return _ext4_show_options(seq, root->d_sb, 0);
}

1922
int ext4_seq_options_show(struct seq_file *seq, void *offset)
1923 1924 1925 1926 1927 1928 1929 1930 1931 1932
{
	struct super_block *sb = seq->private;
	int rc;

	seq_puts(seq, (sb->s_flags & MS_RDONLY) ? "ro" : "rw");
	rc = _ext4_show_options(seq, sb, 1);
	seq_puts(seq, "\n");
	return rc;
}

1933
static int ext4_setup_super(struct super_block *sb, struct ext4_super_block *es,
1934 1935
			    int read_only)
{
1936
	struct ext4_sb_info *sbi = EXT4_SB(sb);
1937 1938
	int res = 0;

1939
	if (le32_to_cpu(es->s_rev_level) > EXT4_MAX_SUPP_REV) {
1940 1941
		ext4_msg(sb, KERN_ERR, "revision level too high, "
			 "forcing read-only mode");
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		res = MS_RDONLY;
	}
	if (read_only)
1945
		goto done;
1946
	if (!(sbi->s_mount_state & EXT4_VALID_FS))
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		ext4_msg(sb, KERN_WARNING, "warning: mounting unchecked fs, "
			 "running e2fsck is recommended");
1949
	else if (sbi->s_mount_state & EXT4_ERROR_FS)
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		ext4_msg(sb, KERN_WARNING,
			 "warning: mounting fs with errors, "
			 "running e2fsck is recommended");
1953
	else if ((__s16) le16_to_cpu(es->s_max_mnt_count) > 0 &&
1954 1955
		 le16_to_cpu(es->s_mnt_count) >=
		 (unsigned short) (__s16) le16_to_cpu(es->s_max_mnt_count))
1956 1957 1958
		ext4_msg(sb, KERN_WARNING,
			 "warning: maximal mount count reached, "
			 "running e2fsck is recommended");
1959 1960 1961
	else if (le32_to_cpu(es->s_checkinterval) &&
		(le32_to_cpu(es->s_lastcheck) +
			le32_to_cpu(es->s_checkinterval) <= get_seconds()))
1962 1963 1964
		ext4_msg(sb, KERN_WARNING,
			 "warning: checktime reached, "
			 "running e2fsck is recommended");
1965
	if (!sbi->s_journal)
1966
		es->s_state &= cpu_to_le16(~EXT4_VALID_FS);
1967
	if (!(__s16) le16_to_cpu(es->s_max_mnt_count))
1968
		es->s_max_mnt_count = cpu_to_le16(EXT4_DFL_MAX_MNT_COUNT);
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1969
	le16_add_cpu(&es->s_mnt_count, 1);
1970
	es->s_mtime = cpu_to_le32(get_seconds());
1971
	ext4_update_dynamic_rev(sb);
1972
	if (sbi->s_journal)
1973
		ext4_set_feature_journal_needs_recovery(sb);
1974

1975
	ext4_commit_super(sb, 1);
1976
done:
1977
	if (test_opt(sb, DEBUG))
1978
		printk(KERN_INFO "[EXT4 FS bs=%lu, gc=%u, "
1979
				"bpg=%lu, ipg=%lu, mo=%04x, mo2=%04x]\n",
1980 1981
			sb->s_blocksize,
			sbi->s_groups_count,
1982 1983
			EXT4_BLOCKS_PER_GROUP(sb),
			EXT4_INODES_PER_GROUP(sb),
1984
			sbi->s_mount_opt, sbi->s_mount_opt2);
1985

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1986
	cleancache_init_fs(sb);
1987 1988 1989
	return res;
}

1990 1991 1992 1993 1994 1995 1996 1997 1998 1999 2000 2001 2002 2003 2004 2005 2006 2007 2008 2009 2010 2011 2012 2013 2014
int ext4_alloc_flex_bg_array(struct super_block *sb, ext4_group_t ngroup)
{
	struct ext4_sb_info *sbi = EXT4_SB(sb);
	struct flex_groups *new_groups;
	int size;

	if (!sbi->s_log_groups_per_flex)
		return 0;

	size = ext4_flex_group(sbi, ngroup - 1) + 1;
	if (size <= sbi->s_flex_groups_allocated)
		return 0;

	size = roundup_pow_of_two(size * sizeof(struct flex_groups));
	new_groups = ext4_kvzalloc(size, GFP_KERNEL);
	if (!new_groups) {
		ext4_msg(sb, KERN_ERR, "not enough memory for %d flex groups",
			 size / (int) sizeof(struct flex_groups));
		return -ENOMEM;
	}

	if (sbi->s_flex_groups) {
		memcpy(new_groups, sbi->s_flex_groups,
		       (sbi->s_flex_groups_allocated *
			sizeof(struct flex_groups)));
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2015
		kvfree(sbi->s_flex_groups);
2016 2017 2018 2019 2020 2021
	}
	sbi->s_flex_groups = new_groups;
	sbi->s_flex_groups_allocated = size / sizeof(struct flex_groups);
	return 0;
}

2022 2023 2024 2025 2026
static int ext4_fill_flex_info(struct super_block *sb)
{
	struct ext4_sb_info *sbi = EXT4_SB(sb);
	struct ext4_group_desc *gdp = NULL;
	ext4_group_t flex_group;
2027
	int i, err;
2028

2029
	sbi->s_log_groups_per_flex = sbi->s_es->s_log_groups_per_flex;
2030
	if (sbi->s_log_groups_per_flex < 1 || sbi->s_log_groups_per_flex > 31) {
2031 2032 2033 2034
		sbi->s_log_groups_per_flex = 0;
		return 1;
	}

2035 2036
	err = ext4_alloc_flex_bg_array(sb, sbi->s_groups_count);
	if (err)
2037
		goto failed;
2038 2039

	for (i = 0; i < sbi->s_groups_count; i++) {
2040
		gdp = ext4_get_group_desc(sb, i, NULL);
2041 2042

		flex_group = ext4_flex_group(sbi, i);
2043 2044
		atomic_add(ext4_free_inodes_count(sb, gdp),
			   &sbi->s_flex_groups[flex_group].free_inodes);
2045 2046
		atomic64_add(ext4_free_group_clusters(sb, gdp),
			     &sbi->s_flex_groups[flex_group].free_clusters);
2047 2048
		atomic_add(ext4_used_dirs_count(sb, gdp),
			   &sbi->s_flex_groups[flex_group].used_dirs);
2049 2050 2051 2052 2053 2054 2055
	}

	return 1;
failed:
	return 0;
}

2056
static __le16 ext4_group_desc_csum(struct super_block *sb, __u32 block_group,
2057
				   struct ext4_group_desc *gdp)
2058
{
2059
	int offset = offsetof(struct ext4_group_desc, bg_checksum);
2060
	__u16 crc = 0;
2061
	__le32 le_group = cpu_to_le32(block_group);
2062
	struct ext4_sb_info *sbi = EXT4_SB(sb);
2063

2064
	if (ext4_has_metadata_csum(sbi->s_sb)) {
2065 2066
		/* Use new metadata_csum algorithm */
		__u32 csum32;
2067
		__u16 dummy_csum = 0;
2068 2069 2070

		csum32 = ext4_chksum(sbi, sbi->s_csum_seed, (__u8 *)&le_group,
				     sizeof(le_group));
2071 2072 2073 2074 2075 2076 2077
		csum32 = ext4_chksum(sbi, csum32, (__u8 *)gdp, offset);
		csum32 = ext4_chksum(sbi, csum32, (__u8 *)&dummy_csum,
				     sizeof(dummy_csum));
		offset += sizeof(dummy_csum);
		if (offset < sbi->s_desc_size)
			csum32 = ext4_chksum(sbi, csum32, (__u8 *)gdp + offset,
					     sbi->s_desc_size - offset);
2078 2079 2080

		crc = csum32 & 0xFFFF;
		goto out;
2081 2082
	}

2083
	/* old crc16 code */
2084
	if (!ext4_has_feature_gdt_csum(sb))
2085 2086
		return 0;

2087 2088 2089 2090 2091
	crc = crc16(~0, sbi->s_es->s_uuid, sizeof(sbi->s_es->s_uuid));
	crc = crc16(crc, (__u8 *)&le_group, sizeof(le_group));
	crc = crc16(crc, (__u8 *)gdp, offset);
	offset += sizeof(gdp->bg_checksum); /* skip checksum */
	/* for checksum of struct ext4_group_desc do the rest...*/
2092
	if (ext4_has_feature_64bit(sb) &&
2093 2094 2095 2096 2097 2098
	    offset < le16_to_cpu(sbi->s_es->s_desc_size))
		crc = crc16(crc, (__u8 *)gdp + offset,
			    le16_to_cpu(sbi->s_es->s_desc_size) -
				offset);

out:
2099 2100 2101
	return cpu_to_le16(crc);
}

2102
int ext4_group_desc_csum_verify(struct super_block *sb, __u32 block_group,
2103 2104
				struct ext4_group_desc *gdp)
{
2105
	if (ext4_has_group_desc_csum(sb) &&
2106
	    (gdp->bg_checksum != ext4_group_desc_csum(sb, block_group, gdp)))
2107 2108 2109 2110 2111
		return 0;

	return 1;
}

2112 2113 2114 2115 2116
void ext4_group_desc_csum_set(struct super_block *sb, __u32 block_group,
			      struct ext4_group_desc *gdp)
{
	if (!ext4_has_group_desc_csum(sb))
		return;
2117
	gdp->bg_checksum = ext4_group_desc_csum(sb, block_group, gdp);
2118 2119
}

2120
/* Called at mount-time, super-block is locked */
2121
static int ext4_check_descriptors(struct super_block *sb,
2122
				  ext4_fsblk_t sb_block,
2123
				  ext4_group_t *first_not_zeroed)
2124
{
2125 2126 2127
	struct ext4_sb_info *sbi = EXT4_SB(sb);
	ext4_fsblk_t first_block = le32_to_cpu(sbi->s_es->s_first_data_block);
	ext4_fsblk_t last_block;
2128
	ext4_fsblk_t last_bg_block = sb_block + ext4_bg_num_gdb(sb, 0) + 1;
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2129 2130 2131
	ext4_fsblk_t block_bitmap;
	ext4_fsblk_t inode_bitmap;
	ext4_fsblk_t inode_table;
2132
	int flexbg_flag = 0;
2133
	ext4_group_t i, grp = sbi->s_groups_count;
2134

2135
	if (ext4_has_feature_flex_bg(sb))
2136 2137
		flexbg_flag = 1;

2138
	ext4_debug("Checking group descriptors");
2139

2140 2141 2142
	for (i = 0; i < sbi->s_groups_count; i++) {
		struct ext4_group_desc *gdp = ext4_get_group_desc(sb, i, NULL);

2143
		if (i == sbi->s_groups_count - 1 || flexbg_flag)
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2144
			last_block = ext4_blocks_count(sbi->s_es) - 1;
2145 2146
		else
			last_block = first_block +
2147
				(EXT4_BLOCKS_PER_GROUP(sb) - 1);
2148

2149 2150 2151 2152
		if ((grp == sbi->s_groups_count) &&
		   !(gdp->bg_flags & cpu_to_le16(EXT4_BG_INODE_ZEROED)))
			grp = i;

2153
		block_bitmap = ext4_block_bitmap(sb, gdp);
2154 2155 2156 2157
		if (block_bitmap == sb_block) {
			ext4_msg(sb, KERN_ERR, "ext4_check_descriptors: "
				 "Block bitmap for group %u overlaps "
				 "superblock", i);
2158 2159
			if (!(sb->s_flags & MS_RDONLY))
				return 0;
2160
		}
2161 2162 2163 2164 2165 2166 2167 2168
		if (block_bitmap >= sb_block + 1 &&
		    block_bitmap <= last_bg_block) {
			ext4_msg(sb, KERN_ERR, "ext4_check_descriptors: "
				 "Block bitmap for group %u overlaps "
				 "block group descriptors", i);
			if (!(sb->s_flags & MS_RDONLY))
				return 0;
		}
2169
		if (block_bitmap < first_block || block_bitmap > last_block) {
2170
			ext4_msg(sb, KERN_ERR, "ext4_check_descriptors: "
2171
			       "Block bitmap for group %u not in group "
2172
			       "(block %llu)!", i, block_bitmap);
2173 2174
			return 0;
		}
2175
		inode_bitmap = ext4_inode_bitmap(sb, gdp);
2176 2177 2178 2179
		if (inode_bitmap == sb_block) {
			ext4_msg(sb, KERN_ERR, "ext4_check_descriptors: "
				 "Inode bitmap for group %u overlaps "
				 "superblock", i);
2180 2181
			if (!(sb->s_flags & MS_RDONLY))
				return 0;
2182
		}
2183 2184 2185 2186 2187 2188 2189 2190
		if (inode_bitmap >= sb_block + 1 &&
		    inode_bitmap <= last_bg_block) {
			ext4_msg(sb, KERN_ERR, "ext4_check_descriptors: "
				 "Inode bitmap for group %u overlaps "
				 "block group descriptors", i);
			if (!(sb->s_flags & MS_RDONLY))
				return 0;
		}
2191
		if (inode_bitmap < first_block || inode_bitmap > last_block) {
2192
			ext4_msg(sb, KERN_ERR, "ext4_check_descriptors: "
2193
			       "Inode bitmap for group %u not in group "
2194
			       "(block %llu)!", i, inode_bitmap);
2195 2196
			return 0;
		}
2197
		inode_table = ext4_inode_table(sb, gdp);
2198 2199 2200 2201
		if (inode_table == sb_block) {
			ext4_msg(sb, KERN_ERR, "ext4_check_descriptors: "
				 "Inode table for group %u overlaps "
				 "superblock", i);
2202 2203
			if (!(sb->s_flags & MS_RDONLY))
				return 0;
2204
		}
2205 2206 2207 2208 2209 2210 2211 2212
		if (inode_table >= sb_block + 1 &&
		    inode_table <= last_bg_block) {
			ext4_msg(sb, KERN_ERR, "ext4_check_descriptors: "
				 "Inode table for group %u overlaps "
				 "block group descriptors", i);
			if (!(sb->s_flags & MS_RDONLY))
				return 0;
		}
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2213
		if (inode_table < first_block ||
2214
		    inode_table + sbi->s_itb_per_group - 1 > last_block) {
2215
			ext4_msg(sb, KERN_ERR, "ext4_check_descriptors: "
2216
			       "Inode table for group %u not in group "
2217
			       "(block %llu)!", i, inode_table);
2218 2219
			return 0;
		}
2220
		ext4_lock_group(sb, i);
2221
		if (!ext4_group_desc_csum_verify(sb, i, gdp)) {
2222 2223
			ext4_msg(sb, KERN_ERR, "ext4_check_descriptors: "
				 "Checksum for group %u failed (%u!=%u)",
2224
				 i, le16_to_cpu(ext4_group_desc_csum(sb, i,
2225
				     gdp)), le16_to_cpu(gdp->bg_checksum));
2226
			if (!(sb->s_flags & MS_RDONLY)) {
2227
				ext4_unlock_group(sb, i);
2228
				return 0;
2229
			}
2230
		}
2231
		ext4_unlock_group(sb, i);
2232 2233
		if (!flexbg_flag)
			first_block += EXT4_BLOCKS_PER_GROUP(sb);
2234
	}
2235 2236
	if (NULL != first_not_zeroed)
		*first_not_zeroed = grp;
2237 2238 2239
	return 1;
}

2240
/* ext4_orphan_cleanup() walks a singly-linked list of inodes (starting at
2241 2242 2243 2244 2245 2246 2247 2248 2249 2250 2251 2252
 * the superblock) which were deleted from all directories, but held open by
 * a process at the time of a crash.  We walk the list and try to delete these
 * inodes at recovery time (only with a read-write filesystem).
 *
 * In order to keep the orphan inode chain consistent during traversal (in
 * case of crash during recovery), we link each inode into the superblock
 * orphan list_head and handle it the same way as an inode deletion during
 * normal operation (which journals the operations for us).
 *
 * We only do an iget() and an iput() on each inode, which is very safe if we
 * accidentally point at an in-use or already deleted inode.  The worst that
 * can happen in this case is that we get a "bit already cleared" message from
2253
 * ext4_free_inode().  The only reason we would point at a wrong inode is if
2254 2255 2256
 * e2fsck was run on this filesystem, and it must have already done the orphan
 * inode cleanup for us, so we can safely abort without any further action.
 */
2257 2258
static void ext4_orphan_cleanup(struct super_block *sb,
				struct ext4_super_block *es)
2259 2260 2261 2262
{
	unsigned int s_flags = sb->s_flags;
	int nr_orphans = 0, nr_truncates = 0;
#ifdef CONFIG_QUOTA
2263
	int quota_update = 0;
2264 2265 2266 2267 2268 2269 2270
	int i;
#endif
	if (!es->s_last_orphan) {
		jbd_debug(4, "no orphan inodes to clean up\n");
		return;
	}

2271
	if (bdev_read_only(sb->s_bdev)) {
2272 2273
		ext4_msg(sb, KERN_ERR, "write access "
			"unavailable, skipping orphan cleanup");
2274 2275 2276
		return;
	}

2277 2278 2279 2280 2281 2282 2283
	/* Check if feature set would not allow a r/w mount */
	if (!ext4_feature_set_ok(sb, 0)) {
		ext4_msg(sb, KERN_INFO, "Skipping orphan cleanup due to "
			 "unknown ROCOMPAT features");
		return;
	}

2284
	if (EXT4_SB(sb)->s_mount_state & EXT4_ERROR_FS) {
2285 2286
		/* don't clear list on RO mount w/ errors */
		if (es->s_last_orphan && !(s_flags & MS_RDONLY)) {
2287
			ext4_msg(sb, KERN_INFO, "Errors on filesystem, "
2288
				  "clearing orphan list.\n");
2289 2290
			es->s_last_orphan = 0;
		}
2291 2292 2293 2294 2295
		jbd_debug(1, "Skipping orphan recovery on fs with errors.\n");
		return;
	}

	if (s_flags & MS_RDONLY) {
2296
		ext4_msg(sb, KERN_INFO, "orphan cleanup on readonly fs");
2297 2298 2299 2300 2301
		sb->s_flags &= ~MS_RDONLY;
	}
#ifdef CONFIG_QUOTA
	/* Needed for iput() to work correctly and not trash data */
	sb->s_flags |= MS_ACTIVE;
2302 2303 2304 2305 2306 2307 2308 2309 2310 2311 2312 2313 2314 2315 2316 2317

	/*
	 * Turn on quotas which were not enabled for read-only mounts if
	 * filesystem has quota feature, so that they are updated correctly.
	 */
	if (ext4_has_feature_quota(sb) && (s_flags & MS_RDONLY)) {
		int ret = ext4_enable_quotas(sb);

		if (!ret)
			quota_update = 1;
		else
			ext4_msg(sb, KERN_ERR,
				"Cannot turn on quotas: error %d", ret);
	}

	/* Turn on journaled quotas used for old sytle */
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Jan Kara committed
2318
	for (i = 0; i < EXT4_MAXQUOTAS; i++) {
2319 2320
		if (EXT4_SB(sb)->s_qf_names[i]) {
			int ret = ext4_quota_on_mount(sb, i);
2321 2322 2323 2324

			if (!ret)
				quota_update = 1;
			else
2325 2326
				ext4_msg(sb, KERN_ERR,
					"Cannot turn on journaled "
2327
					"quota: type %d: error %d", i, ret);
2328 2329 2330 2331 2332 2333 2334
		}
	}
#endif

	while (es->s_last_orphan) {
		struct inode *inode;

2335 2336 2337 2338 2339 2340 2341 2342 2343 2344
		/*
		 * We may have encountered an error during cleanup; if
		 * so, skip the rest.
		 */
		if (EXT4_SB(sb)->s_mount_state & EXT4_ERROR_FS) {
			jbd_debug(1, "Skipping orphan recovery on fs with errors.\n");
			es->s_last_orphan = 0;
			break;
		}

2345 2346
		inode = ext4_orphan_get(sb, le32_to_cpu(es->s_last_orphan));
		if (IS_ERR(inode)) {
2347 2348 2349 2350
			es->s_last_orphan = 0;
			break;
		}

2351
		list_add(&EXT4_I(inode)->i_orphan, &EXT4_SB(sb)->s_orphan);
2352
		dquot_initialize(inode);
2353
		if (inode->i_nlink) {
2354 2355 2356 2357
			if (test_opt(sb, DEBUG))
				ext4_msg(sb, KERN_DEBUG,
					"%s: truncating inode %lu to %lld bytes",
					__func__, inode->i_ino, inode->i_size);
2358
			jbd_debug(2, "truncating inode %lu to %lld bytes\n",
2359
				  inode->i_ino, inode->i_size);
2360
			mutex_lock(&inode->i_mutex);
2361
			truncate_inode_pages(inode->i_mapping, inode->i_size);
2362
			ext4_truncate(inode);
2363
			mutex_unlock(&inode->i_mutex);
2364 2365
			nr_truncates++;
		} else {
2366 2367 2368 2369
			if (test_opt(sb, DEBUG))
				ext4_msg(sb, KERN_DEBUG,
					"%s: deleting unreferenced inode %lu",
					__func__, inode->i_ino);
2370 2371 2372 2373 2374 2375 2376
			jbd_debug(2, "deleting unreferenced inode %lu\n",
				  inode->i_ino);
			nr_orphans++;
		}
		iput(inode);  /* The delete magic happens here! */
	}

2377
#define PLURAL(x) (x), ((x) == 1) ? "" : "s"
2378 2379

	if (nr_orphans)
2380 2381
		ext4_msg(sb, KERN_INFO, "%d orphan inode%s deleted",
		       PLURAL(nr_orphans));
2382
	if (nr_truncates)
2383 2384
		ext4_msg(sb, KERN_INFO, "%d truncate%s cleaned up",
		       PLURAL(nr_truncates));
2385
#ifdef CONFIG_QUOTA
2386 2387 2388 2389 2390 2391
	/* Turn off quotas if they were enabled for orphan cleanup */
	if (quota_update) {
		for (i = 0; i < EXT4_MAXQUOTAS; i++) {
			if (sb_dqopt(sb)->files[i])
				dquot_quota_off(sb, i);
		}
2392 2393 2394 2395
	}
#endif
	sb->s_flags = s_flags; /* Restore MS_RDONLY status */
}
2396

2397 2398 2399 2400 2401 2402 2403
/*
 * Maximal extent format file size.
 * Resulting logical blkno at s_maxbytes must fit in our on-disk
 * extent format containers, within a sector_t, and within i_blocks
 * in the vfs.  ext4 inode has 48 bits of i_block in fsblock units,
 * so that won't be a limiting factor.
 *
2404 2405 2406 2407 2408 2409
 * However there is other limiting factor. We do store extents in the form
 * of starting block and length, hence the resulting length of the extent
 * covering maximum file size must fit into on-disk format containers as
 * well. Given that length is always by 1 unit bigger than max unit (because
 * we count 0 as well) we have to lower the s_maxbytes by one fs block.
 *
2410 2411
 * Note, this does *not* consider any metadata overhead for vfs i_blocks.
 */
2412
static loff_t ext4_max_size(int blkbits, int has_huge_files)
2413 2414 2415 2416 2417
{
	loff_t res;
	loff_t upper_limit = MAX_LFS_FILESIZE;

	/* small i_blocks in vfs inode? */
2418
	if (!has_huge_files || sizeof(blkcnt_t) < sizeof(u64)) {
2419
		/*
2420
		 * CONFIG_LBDAF is not enabled implies the inode
2421 2422 2423 2424 2425 2426 2427 2428 2429 2430
		 * i_block represent total blocks in 512 bytes
		 * 32 == size of vfs inode i_blocks * 8
		 */
		upper_limit = (1LL << 32) - 1;

		/* total blocks in file system block size */
		upper_limit >>= (blkbits - 9);
		upper_limit <<= blkbits;
	}

2431 2432 2433 2434 2435 2436
	/*
	 * 32-bit extent-start container, ee_block. We lower the maxbytes
	 * by one fs block, so ee_len can cover the extent of maximum file
	 * size
	 */
	res = (1LL << 32) - 1;
2437 2438 2439 2440 2441 2442 2443 2444
	res <<= blkbits;

	/* Sanity check against vm- & vfs- imposed limits */
	if (res > upper_limit)
		res = upper_limit;

	return res;
}
2445 2446

/*
2447
 * Maximal bitmap file size.  There is a direct, and {,double-,triple-}indirect
2448 2449
 * block limit, and also a limit of (2^48 - 1) 512-byte sectors in i_blocks.
 * We need to be 1 filesystem block less than the 2^48 sector limit.
2450
 */
2451
static loff_t ext4_max_bitmap_size(int bits, int has_huge_files)
2452
{
2453
	loff_t res = EXT4_NDIR_BLOCKS;
2454 2455
	int meta_blocks;
	loff_t upper_limit;
2456 2457 2458 2459 2460 2461
	/* This is calculated to be the largest file size for a dense, block
	 * mapped file such that the file's total number of 512-byte sectors,
	 * including data and all indirect blocks, does not exceed (2^48 - 1).
	 *
	 * __u32 i_blocks_lo and _u16 i_blocks_high represent the total
	 * number of 512-byte sectors of the file.
2462 2463
	 */

2464
	if (!has_huge_files || sizeof(blkcnt_t) < sizeof(u64)) {
2465
		/*
2466
		 * !has_huge_files or CONFIG_LBDAF not enabled implies that
2467 2468
		 * the inode i_block field represents total file blocks in
		 * 2^32 512-byte sectors == size of vfs inode i_blocks * 8
2469 2470 2471 2472 2473 2474 2475
		 */
		upper_limit = (1LL << 32) - 1;

		/* total blocks in file system block size */
		upper_limit >>= (bits - 9);

	} else {
Aneesh Kumar K.V's avatar
Aneesh Kumar K.V committed
2476 2477 2478 2479 2480 2481
		/*
		 * We use 48 bit ext4_inode i_blocks
		 * With EXT4_HUGE_FILE_FL set the i_blocks
		 * represent total number of blocks in
		 * file system block size
		 */
2482 2483 2484 2485 2486 2487 2488 2489 2490 2491 2492 2493 2494
		upper_limit = (1LL << 48) - 1;

	}

	/* indirect blocks */
	meta_blocks = 1;
	/* double indirect blocks */
	meta_blocks += 1 + (1LL << (bits-2));
	/* tripple indirect blocks */
	meta_blocks += 1 + (1LL << (bits-2)) + (1LL << (2*(bits-2)));

	upper_limit -= meta_blocks;
	upper_limit <<= bits;
2495 2496 2497 2498 2499 2500 2501

	res += 1LL << (bits-2);
	res += 1LL << (2*(bits-2));
	res += 1LL << (3*(bits-2));
	res <<= bits;
	if (res > upper_limit)
		res = upper_limit;
2502 2503 2504 2505

	if (res > MAX_LFS_FILESIZE)
		res = MAX_LFS_FILESIZE;

2506 2507 2508
	return res;
}

2509
static ext4_fsblk_t descriptor_loc(struct super_block *sb,
2510
				   ext4_fsblk_t logical_sb_block, int nr)
2511
{
2512
	struct ext4_sb_info *sbi = EXT4_SB(sb);
2513
	ext4_group_t bg, first_meta_bg;
2514 2515 2516 2517
	int has_super = 0;

	first_meta_bg = le32_to_cpu(sbi->s_es->s_first_meta_bg);

2518
	if (!ext4_has_feature_meta_bg(sb) || nr < first_meta_bg)
2519
		return logical_sb_block + nr + 1;
2520
	bg = sbi->s_desc_per_block * nr;
2521
	if (ext4_bg_has_super(sb, bg))
2522
		has_super = 1;
2523

2524 2525 2526 2527 2528 2529 2530 2531 2532 2533
	/*
	 * If we have a meta_bg fs with 1k blocks, group 0's GDT is at
	 * block 2, not 1.  If s_first_data_block == 0 (bigalloc is enabled
	 * on modern mke2fs or blksize > 1k on older mke2fs) then we must
	 * compensate.
	 */
	if (sb->s_blocksize == 1024 && nr == 0 &&
	    le32_to_cpu(EXT4_SB(sb)->s_es->s_first_data_block) == 0)
		has_super++;

2534
	return (has_super + ext4_group_first_block_no(sb, bg));
2535 2536
}

2537 2538 2539 2540 2541 2542 2543 2544 2545 2546 2547 2548 2549 2550 2551 2552
/**
 * ext4_get_stripe_size: Get the stripe size.
 * @sbi: In memory super block info
 *
 * If we have specified it via mount option, then
 * use the mount option value. If the value specified at mount time is
 * greater than the blocks per group use the super block value.
 * If the super block value is greater than blocks per group return 0.
 * Allocator needs it be less than blocks per group.
 *
 */
static unsigned long ext4_get_stripe_size(struct ext4_sb_info *sbi)
{
	unsigned long stride = le16_to_cpu(sbi->s_es->s_raid_stride);
	unsigned long stripe_width =
			le32_to_cpu(sbi->s_es->s_raid_stripe_width);
2553
	int ret;
2554 2555

	if (sbi->s_stripe && sbi->s_stripe <= sbi->s_blocks_per_group)
2556
		ret = sbi->s_stripe;
2557
	else if (stripe_width && stripe_width <= sbi->s_blocks_per_group)
2558
		ret = stripe_width;
2559
	else if (stride && stride <= sbi->s_blocks_per_group)
2560 2561 2562
		ret = stride;
	else
		ret = 0;
2563

2564 2565 2566 2567 2568 2569
	/*
	 * If the stripe width is 1, this makes no sense and
	 * we set it to 0 to turn off stripe handling code.
	 */
	if (ret <= 1)
		ret = 0;
2570

2571
	return ret;
2572
}
2573

2574 2575 2576 2577 2578 2579 2580 2581
/*
 * Check whether this filesystem can be mounted based on
 * the features present and the RDONLY/RDWR mount requested.
 * Returns 1 if this filesystem can be mounted as requested,
 * 0 if it cannot be.
 */
static int ext4_feature_set_ok(struct super_block *sb, int readonly)
{
2582
	if (ext4_has_unknown_ext4_incompat_features(sb)) {
2583 2584 2585 2586 2587 2588 2589 2590 2591 2592 2593
		ext4_msg(sb, KERN_ERR,
			"Couldn't mount because of "
			"unsupported optional features (%x)",
			(le32_to_cpu(EXT4_SB(sb)->s_es->s_feature_incompat) &
			~EXT4_FEATURE_INCOMPAT_SUPP));
		return 0;
	}

	if (readonly)
		return 1;

2594
	if (ext4_has_feature_readonly(sb)) {
2595 2596 2597 2598 2599
		ext4_msg(sb, KERN_INFO, "filesystem is read-only");
		sb->s_flags |= MS_RDONLY;
		return 1;
	}

2600
	/* Check that feature set is OK for a read-write mount */
2601
	if (ext4_has_unknown_ext4_ro_compat_features(sb)) {
2602 2603 2604 2605 2606 2607 2608 2609 2610 2611
		ext4_msg(sb, KERN_ERR, "couldn't mount RDWR because of "
			 "unsupported optional features (%x)",
			 (le32_to_cpu(EXT4_SB(sb)->s_es->s_feature_ro_compat) &
				~EXT4_FEATURE_RO_COMPAT_SUPP));
		return 0;
	}
	/*
	 * Large file size enabled file system can only be mounted
	 * read-write on 32-bit systems if kernel is built with CONFIG_LBDAF
	 */
2612
	if (ext4_has_feature_huge_file(sb)) {
2613 2614 2615 2616 2617 2618 2619
		if (sizeof(blkcnt_t) < sizeof(u64)) {
			ext4_msg(sb, KERN_ERR, "Filesystem with huge files "
				 "cannot be mounted RDWR without "
				 "CONFIG_LBDAF");
			return 0;
		}
	}
2620
	if (ext4_has_feature_bigalloc(sb) && !ext4_has_feature_extents(sb)) {
2621 2622 2623 2624 2625
		ext4_msg(sb, KERN_ERR,
			 "Can't support bigalloc feature without "
			 "extents feature\n");
		return 0;
	}
2626 2627

#ifndef CONFIG_QUOTA
2628
	if (ext4_has_feature_quota(sb) && !readonly) {
2629 2630 2631 2632 2633 2634
		ext4_msg(sb, KERN_ERR,
			 "Filesystem with quota feature cannot be mounted RDWR "
			 "without CONFIG_QUOTA");
		return 0;
	}
#endif  /* CONFIG_QUOTA */
2635 2636 2637
	return 1;
}

2638 2639 2640 2641 2642 2643 2644 2645 2646 2647 2648 2649 2650 2651
/*
 * This function is called once a day if we have errors logged
 * on the file system
 */
static void print_daily_error_info(unsigned long arg)
{
	struct super_block *sb = (struct super_block *) arg;
	struct ext4_sb_info *sbi;
	struct ext4_super_block *es;

	sbi = EXT4_SB(sb);
	es = sbi->s_es;

	if (es->s_error_count)
2652 2653
		/* fsck newer than v1.41.13 is needed to clean this condition. */
		ext4_msg(sb, KERN_NOTICE, "error count since last fsck: %u",
2654 2655
			 le32_to_cpu(es->s_error_count));
	if (es->s_first_error_time) {
2656
		printk(KERN_NOTICE "EXT4-fs (%s): initial error at time %u: %.*s:%d",
2657 2658 2659 2660 2661 2662 2663 2664 2665 2666 2667 2668 2669
		       sb->s_id, le32_to_cpu(es->s_first_error_time),
		       (int) sizeof(es->s_first_error_func),
		       es->s_first_error_func,
		       le32_to_cpu(es->s_first_error_line));
		if (es->s_first_error_ino)
			printk(": inode %u",
			       le32_to_cpu(es->s_first_error_ino));
		if (es->s_first_error_block)
			printk(": block %llu", (unsigned long long)
			       le64_to_cpu(es->s_first_error_block));
		printk("\n");
	}
	if (es->s_last_error_time) {
2670
		printk(KERN_NOTICE "EXT4-fs (%s): last error at time %u: %.*s:%d",
2671 2672 2673 2674 2675 2676 2677 2678 2679 2680 2681 2682 2683 2684 2685
		       sb->s_id, le32_to_cpu(es->s_last_error_time),
		       (int) sizeof(es->s_last_error_func),
		       es->s_last_error_func,
		       le32_to_cpu(es->s_last_error_line));
		if (es->s_last_error_ino)
			printk(": inode %u",
			       le32_to_cpu(es->s_last_error_ino));
		if (es->s_last_error_block)
			printk(": block %llu", (unsigned long long)
			       le64_to_cpu(es->s_last_error_block));
		printk("\n");
	}
	mod_timer(&sbi->s_err_report, jiffies + 24*60*60*HZ);  /* Once a day */
}

2686 2687 2688 2689 2690 2691 2692 2693 2694 2695 2696 2697
/* Find next suitable group and run ext4_init_inode_table */
static int ext4_run_li_request(struct ext4_li_request *elr)
{
	struct ext4_group_desc *gdp = NULL;
	ext4_group_t group, ngroups;
	struct super_block *sb;
	unsigned long timeout = 0;
	int ret = 0;

	sb = elr->lr_super;
	ngroups = EXT4_SB(sb)->s_groups_count;

2698
	sb_start_write(sb);
2699 2700 2701 2702 2703 2704 2705 2706 2707 2708 2709
	for (group = elr->lr_next_group; group < ngroups; group++) {
		gdp = ext4_get_group_desc(sb, group, NULL);
		if (!gdp) {
			ret = 1;
			break;
		}

		if (!(gdp->bg_flags & cpu_to_le16(EXT4_BG_INODE_ZEROED)))
			break;
	}

2710
	if (group >= ngroups)
2711 2712 2713 2714 2715 2716 2717
		ret = 1;

	if (!ret) {
		timeout = jiffies;
		ret = ext4_init_inode_table(sb, group,
					    elr->lr_timeout ? 0 : 1);
		if (elr->lr_timeout == 0) {
2718 2719
			timeout = (jiffies - timeout) *
				  elr->lr_sbi->s_li_wait_mult;
2720 2721 2722 2723 2724
			elr->lr_timeout = timeout;
		}
		elr->lr_next_sched = jiffies + elr->lr_timeout;
		elr->lr_next_group = group + 1;
	}
2725
	sb_end_write(sb);
2726 2727 2728 2729 2730 2731

	return ret;
}

/*
 * Remove lr_request from the list_request and free the
2732
 * request structure. Should be called with li_list_mtx held
2733 2734 2735 2736 2737 2738 2739 2740 2741 2742 2743 2744 2745 2746 2747 2748 2749
 */
static void ext4_remove_li_request(struct ext4_li_request *elr)
{
	struct ext4_sb_info *sbi;

	if (!elr)
		return;

	sbi = elr->lr_sbi;

	list_del(&elr->lr_request);
	sbi->s_li_request = NULL;
	kfree(elr);
}

static void ext4_unregister_li_request(struct super_block *sb)
{
2750 2751 2752
	mutex_lock(&ext4_li_mtx);
	if (!ext4_li_info) {
		mutex_unlock(&ext4_li_mtx);
2753
		return;
2754
	}
2755 2756

	mutex_lock(&ext4_li_info->li_list_mtx);
2757
	ext4_remove_li_request(EXT4_SB(sb)->s_li_request);
2758
	mutex_unlock(&ext4_li_info->li_list_mtx);
2759
	mutex_unlock(&ext4_li_mtx);
2760 2761
}

2762 2763
static struct task_struct *ext4_lazyinit_task;

2764 2765 2766 2767 2768 2769 2770 2771 2772 2773 2774 2775 2776 2777
/*
 * This is the function where ext4lazyinit thread lives. It walks
 * through the request list searching for next scheduled filesystem.
 * When such a fs is found, run the lazy initialization request
 * (ext4_rn_li_request) and keep track of the time spend in this
 * function. Based on that time we compute next schedule time of
 * the request. When walking through the list is complete, compute
 * next waking time and put itself into sleep.
 */
static int ext4_lazyinit_thread(void *arg)
{
	struct ext4_lazy_init *eli = (struct ext4_lazy_init *)arg;
	struct list_head *pos, *n;
	struct ext4_li_request *elr;
2778
	unsigned long next_wakeup, cur;
2779 2780 2781 2782 2783 2784 2785 2786 2787 2788 2789 2790 2791 2792 2793 2794 2795

	BUG_ON(NULL == eli);

cont_thread:
	while (true) {
		next_wakeup = MAX_JIFFY_OFFSET;

		mutex_lock(&eli->li_list_mtx);
		if (list_empty(&eli->li_request_list)) {
			mutex_unlock(&eli->li_list_mtx);
			goto exit_thread;
		}

		list_for_each_safe(pos, n, &eli->li_request_list) {
			elr = list_entry(pos, struct ext4_li_request,
					 lr_request);

2796 2797 2798 2799 2800 2801
			if (time_after_eq(jiffies, elr->lr_next_sched)) {
				if (ext4_run_li_request(elr) != 0) {
					/* error, remove the lazy_init job */
					ext4_remove_li_request(elr);
					continue;
				}
2802 2803 2804 2805 2806 2807 2808
			}

			if (time_before(elr->lr_next_sched, next_wakeup))
				next_wakeup = elr->lr_next_sched;
		}
		mutex_unlock(&eli->li_list_mtx);

2809
		try_to_freeze();
2810

2811 2812
		cur = jiffies;
		if ((time_after_eq(cur, next_wakeup)) ||
2813
		    (MAX_JIFFY_OFFSET == next_wakeup)) {
2814 2815 2816 2817
			cond_resched();
			continue;
		}

2818 2819
		schedule_timeout_interruptible(next_wakeup - cur);

2820 2821 2822 2823
		if (kthread_should_stop()) {
			ext4_clear_request_list();
			goto exit_thread;
		}
2824 2825 2826 2827 2828 2829 2830 2831 2832 2833 2834 2835 2836 2837 2838 2839 2840 2841 2842 2843 2844 2845 2846 2847 2848 2849 2850 2851 2852 2853 2854 2855 2856 2857 2858 2859 2860 2861 2862 2863 2864 2865
	}

exit_thread:
	/*
	 * It looks like the request list is empty, but we need
	 * to check it under the li_list_mtx lock, to prevent any
	 * additions into it, and of course we should lock ext4_li_mtx
	 * to atomically free the list and ext4_li_info, because at
	 * this point another ext4 filesystem could be registering
	 * new one.
	 */
	mutex_lock(&ext4_li_mtx);
	mutex_lock(&eli->li_list_mtx);
	if (!list_empty(&eli->li_request_list)) {
		mutex_unlock(&eli->li_list_mtx);
		mutex_unlock(&ext4_li_mtx);
		goto cont_thread;
	}
	mutex_unlock(&eli->li_list_mtx);
	kfree(ext4_li_info);
	ext4_li_info = NULL;
	mutex_unlock(&ext4_li_mtx);

	return 0;
}

static void ext4_clear_request_list(void)
{
	struct list_head *pos, *n;
	struct ext4_li_request *elr;

	mutex_lock(&ext4_li_info->li_list_mtx);
	list_for_each_safe(pos, n, &ext4_li_info->li_request_list) {
		elr = list_entry(pos, struct ext4_li_request,
				 lr_request);
		ext4_remove_li_request(elr);
	}
	mutex_unlock(&ext4_li_info->li_list_mtx);
}

static int ext4_run_lazyinit_thread(void)
{
2866 2867 2868 2869
	ext4_lazyinit_task = kthread_run(ext4_lazyinit_thread,
					 ext4_li_info, "ext4lazyinit");
	if (IS_ERR(ext4_lazyinit_task)) {
		int err = PTR_ERR(ext4_lazyinit_task);
2870 2871 2872
		ext4_clear_request_list();
		kfree(ext4_li_info);
		ext4_li_info = NULL;
2873
		printk(KERN_CRIT "EXT4-fs: error %d creating inode table "
2874 2875 2876 2877 2878 2879 2880 2881 2882 2883 2884 2885 2886 2887 2888 2889 2890 2891 2892
				 "initialization thread\n",
				 err);
		return err;
	}
	ext4_li_info->li_state |= EXT4_LAZYINIT_RUNNING;
	return 0;
}

/*
 * Check whether it make sense to run itable init. thread or not.
 * If there is at least one uninitialized inode table, return
 * corresponding group number, else the loop goes through all
 * groups and return total number of groups.
 */
static ext4_group_t ext4_has_uninit_itable(struct super_block *sb)
{
	ext4_group_t group, ngroups = EXT4_SB(sb)->s_groups_count;
	struct ext4_group_desc *gdp = NULL;

2893 2894 2895
	if (!ext4_has_group_desc_csum(sb))
		return ngroups;

2896 2897 2898 2899 2900
	for (group = 0; group < ngroups; group++) {
		gdp = ext4_get_group_desc(sb, group, NULL);
		if (!gdp)
			continue;

2901 2902 2903
		if (gdp->bg_flags & cpu_to_le16(EXT4_BG_INODE_ZEROED))
			continue;
		if (group != 0)
2904
			break;
2905 2906 2907 2908
		ext4_error(sb, "Inode table for bg 0 marked as "
			   "needing zeroing");
		if (sb->s_flags & MS_RDONLY)
			return ngroups;
2909 2910 2911 2912 2913 2914 2915 2916 2917 2918 2919 2920 2921 2922 2923 2924 2925 2926 2927 2928 2929 2930 2931 2932 2933 2934 2935 2936 2937 2938 2939 2940 2941 2942 2943 2944 2945 2946 2947 2948 2949 2950
	}

	return group;
}

static int ext4_li_info_new(void)
{
	struct ext4_lazy_init *eli = NULL;

	eli = kzalloc(sizeof(*eli), GFP_KERNEL);
	if (!eli)
		return -ENOMEM;

	INIT_LIST_HEAD(&eli->li_request_list);
	mutex_init(&eli->li_list_mtx);

	eli->li_state |= EXT4_LAZYINIT_QUIT;

	ext4_li_info = eli;

	return 0;
}

static struct ext4_li_request *ext4_li_request_new(struct super_block *sb,
					    ext4_group_t start)
{
	struct ext4_sb_info *sbi = EXT4_SB(sb);
	struct ext4_li_request *elr;

	elr = kzalloc(sizeof(*elr), GFP_KERNEL);
	if (!elr)
		return NULL;

	elr->lr_super = sb;
	elr->lr_sbi = sbi;
	elr->lr_next_group = start;

	/*
	 * Randomize first schedule time of the request to
	 * spread the inode table initialization requests
	 * better.
	 */
2951 2952
	elr->lr_next_sched = jiffies + (prandom_u32() %
				(EXT4_DEF_LI_MAX_START_DELAY * HZ));
2953 2954 2955
	return elr;
}

2956 2957
int ext4_register_li_request(struct super_block *sb,
			     ext4_group_t first_not_zeroed)
2958 2959
{
	struct ext4_sb_info *sbi = EXT4_SB(sb);
2960
	struct ext4_li_request *elr = NULL;
2961
	ext4_group_t ngroups = EXT4_SB(sb)->s_groups_count;
2962
	int ret = 0;
2963

2964
	mutex_lock(&ext4_li_mtx);
2965 2966 2967 2968 2969 2970
	if (sbi->s_li_request != NULL) {
		/*
		 * Reset timeout so it can be computed again, because
		 * s_li_wait_mult might have changed.
		 */
		sbi->s_li_request->lr_timeout = 0;
2971
		goto out;
2972
	}
2973 2974 2975

	if (first_not_zeroed == ngroups ||
	    (sb->s_flags & MS_RDONLY) ||
2976
	    !test_opt(sb, INIT_INODE_TABLE))
2977
		goto out;
2978 2979

	elr = ext4_li_request_new(sb, first_not_zeroed);
2980 2981 2982 2983
	if (!elr) {
		ret = -ENOMEM;
		goto out;
	}
2984 2985 2986 2987 2988 2989 2990 2991 2992 2993 2994 2995

	if (NULL == ext4_li_info) {
		ret = ext4_li_info_new();
		if (ret)
			goto out;
	}

	mutex_lock(&ext4_li_info->li_list_mtx);
	list_add(&elr->lr_request, &ext4_li_info->li_request_list);
	mutex_unlock(&ext4_li_info->li_list_mtx);

	sbi->s_li_request = elr;
2996 2997 2998 2999 3000 3001
	/*
	 * set elr to NULL here since it has been inserted to
	 * the request_list and the removal and free of it is
	 * handled by ext4_clear_request_list from now on.
	 */
	elr = NULL;
3002 3003 3004 3005 3006 3007 3008

	if (!(ext4_li_info->li_state & EXT4_LAZYINIT_RUNNING)) {
		ret = ext4_run_lazyinit_thread();
		if (ret)
			goto out;
	}
out:
3009 3010
	mutex_unlock(&ext4_li_mtx);
	if (ret)
3011 3012 3013 3014 3015 3016 3017 3018 3019 3020 3021 3022 3023 3024
		kfree(elr);
	return ret;
}

/*
 * We do not need to lock anything since this is called on
 * module unload.
 */
static void ext4_destroy_lazyinit_thread(void)
{
	/*
	 * If thread exited earlier
	 * there's nothing to be done.
	 */
3025
	if (!ext4_li_info || !ext4_lazyinit_task)
3026 3027
		return;

3028
	kthread_stop(ext4_lazyinit_task);
3029 3030
}

3031 3032 3033 3034 3035 3036
static int set_journal_csum_feature_set(struct super_block *sb)
{
	int ret = 1;
	int compat, incompat;
	struct ext4_sb_info *sbi = EXT4_SB(sb);

3037
	if (ext4_has_metadata_csum(sb)) {
3038
		/* journal checksum v3 */
3039
		compat = 0;
3040
		incompat = JBD2_FEATURE_INCOMPAT_CSUM_V3;
3041 3042 3043 3044 3045 3046
	} else {
		/* journal checksum v1 */
		compat = JBD2_FEATURE_COMPAT_CHECKSUM;
		incompat = 0;
	}

3047 3048 3049 3050
	jbd2_journal_clear_features(sbi->s_journal,
			JBD2_FEATURE_COMPAT_CHECKSUM, 0,
			JBD2_FEATURE_INCOMPAT_CSUM_V3 |
			JBD2_FEATURE_INCOMPAT_CSUM_V2);
3051 3052 3053 3054 3055 3056 3057 3058 3059 3060 3061 3062
	if (test_opt(sb, JOURNAL_ASYNC_COMMIT)) {
		ret = jbd2_journal_set_features(sbi->s_journal,
				compat, 0,
				JBD2_FEATURE_INCOMPAT_ASYNC_COMMIT |
				incompat);
	} else if (test_opt(sb, JOURNAL_CHECKSUM)) {
		ret = jbd2_journal_set_features(sbi->s_journal,
				compat, 0,
				incompat);
		jbd2_journal_clear_features(sbi->s_journal, 0, 0,
				JBD2_FEATURE_INCOMPAT_ASYNC_COMMIT);
	} else {
3063 3064
		jbd2_journal_clear_features(sbi->s_journal, 0, 0,
				JBD2_FEATURE_INCOMPAT_ASYNC_COMMIT);
3065 3066 3067 3068 3069
	}

	return ret;
}

3070 3071 3072 3073 3074 3075 3076 3077 3078 3079 3080 3081 3082 3083 3084 3085 3086 3087 3088 3089 3090 3091 3092 3093
/*
 * Note: calculating the overhead so we can be compatible with
 * historical BSD practice is quite difficult in the face of
 * clusters/bigalloc.  This is because multiple metadata blocks from
 * different block group can end up in the same allocation cluster.
 * Calculating the exact overhead in the face of clustered allocation
 * requires either O(all block bitmaps) in memory or O(number of block
 * groups**2) in time.  We will still calculate the superblock for
 * older file systems --- and if we come across with a bigalloc file
 * system with zero in s_overhead_clusters the estimate will be close to
 * correct especially for very large cluster sizes --- but for newer
 * file systems, it's better to calculate this figure once at mkfs
 * time, and store it in the superblock.  If the superblock value is
 * present (even for non-bigalloc file systems), we will use it.
 */
static int count_overhead(struct super_block *sb, ext4_group_t grp,
			  char *buf)
{
	struct ext4_sb_info	*sbi = EXT4_SB(sb);
	struct ext4_group_desc	*gdp;
	ext4_fsblk_t		first_block, last_block, b;
	ext4_group_t		i, ngroups = ext4_get_groups_count(sb);
	int			s, j, count = 0;

3094
	if (!ext4_has_feature_bigalloc(sb))
3095 3096 3097
		return (ext4_bg_has_super(sb, grp) + ext4_bg_num_gdb(sb, grp) +
			sbi->s_itb_per_group + 2);

3098 3099 3100 3101 3102 3103 3104 3105 3106 3107 3108 3109 3110 3111 3112 3113 3114 3115 3116 3117 3118 3119 3120 3121 3122 3123 3124 3125 3126
	first_block = le32_to_cpu(sbi->s_es->s_first_data_block) +
		(grp * EXT4_BLOCKS_PER_GROUP(sb));
	last_block = first_block + EXT4_BLOCKS_PER_GROUP(sb) - 1;
	for (i = 0; i < ngroups; i++) {
		gdp = ext4_get_group_desc(sb, i, NULL);
		b = ext4_block_bitmap(sb, gdp);
		if (b >= first_block && b <= last_block) {
			ext4_set_bit(EXT4_B2C(sbi, b - first_block), buf);
			count++;
		}
		b = ext4_inode_bitmap(sb, gdp);
		if (b >= first_block && b <= last_block) {
			ext4_set_bit(EXT4_B2C(sbi, b - first_block), buf);
			count++;
		}
		b = ext4_inode_table(sb, gdp);
		if (b >= first_block && b + sbi->s_itb_per_group <= last_block)
			for (j = 0; j < sbi->s_itb_per_group; j++, b++) {
				int c = EXT4_B2C(sbi, b - first_block);
				ext4_set_bit(c, buf);
				count++;
			}
		if (i != grp)
			continue;
		s = 0;
		if (ext4_bg_has_super(sb, grp)) {
			ext4_set_bit(s++, buf);
			count++;
		}
3127 3128 3129 3130 3131
		j = ext4_bg_num_gdb(sb, grp);
		if (s + j > EXT4_BLOCKS_PER_GROUP(sb)) {
			ext4_error(sb, "Invalid number of block group "
				   "descriptor blocks: %d", j);
			j = EXT4_BLOCKS_PER_GROUP(sb) - s;
3132
		}
3133 3134 3135
		count += j;
		for (; j > 0; j--)
			ext4_set_bit(EXT4_B2C(sbi, s++), buf);
3136 3137 3138 3139 3140 3141 3142 3143 3144 3145 3146 3147 3148 3149 3150 3151
	}
	if (!count)
		return 0;
	return EXT4_CLUSTERS_PER_GROUP(sb) -
		ext4_count_free(buf, EXT4_CLUSTERS_PER_GROUP(sb) / 8);
}

/*
 * Compute the overhead and stash it in sbi->s_overhead
 */
int ext4_calculate_overhead(struct super_block *sb)
{
	struct ext4_sb_info *sbi = EXT4_SB(sb);
	struct ext4_super_block *es = sbi->s_es;
	ext4_group_t i, ngroups = ext4_get_groups_count(sb);
	ext4_fsblk_t overhead = 0;
3152
	char *buf = (char *) get_zeroed_page(GFP_NOFS);
3153 3154 3155 3156 3157 3158 3159 3160 3161 3162 3163 3164 3165 3166 3167 3168 3169 3170 3171 3172 3173 3174 3175 3176 3177 3178 3179

	if (!buf)
		return -ENOMEM;

	/*
	 * Compute the overhead (FS structures).  This is constant
	 * for a given filesystem unless the number of block groups
	 * changes so we cache the previous value until it does.
	 */

	/*
	 * All of the blocks before first_data_block are overhead
	 */
	overhead = EXT4_B2C(sbi, le32_to_cpu(es->s_first_data_block));

	/*
	 * Add the overhead found in each block group
	 */
	for (i = 0; i < ngroups; i++) {
		int blks;

		blks = count_overhead(sb, i, buf);
		overhead += blks;
		if (blks)
			memset(buf, 0, PAGE_SIZE);
		cond_resched();
	}
3180 3181
	/* Add the internal journal blocks as well */
	if (sbi->s_journal && !sbi->journal_bdev)
3182
		overhead += EXT4_NUM_B2C(sbi, sbi->s_journal->j_maxlen);
3183

3184 3185 3186 3187 3188 3189
	sbi->s_overhead = overhead;
	smp_wmb();
	free_page((unsigned long) buf);
	return 0;
}

3190
static void ext4_set_resv_clusters(struct super_block *sb)
Lukas Czerner's avatar
Lukas Czerner committed
3191 3192
{
	ext4_fsblk_t resv_clusters;
3193
	struct ext4_sb_info *sbi = EXT4_SB(sb);
Lukas Czerner's avatar
Lukas Czerner committed
3194

3195 3196 3197 3198 3199 3200
	/*
	 * There's no need to reserve anything when we aren't using extents.
	 * The space estimates are exact, there are no unwritten extents,
	 * hole punching doesn't need new metadata... This is needed especially
	 * to keep ext2/3 backward compatibility.
	 */
3201
	if (!ext4_has_feature_extents(sb))
3202
		return;
Lukas Czerner's avatar
Lukas Czerner committed
3203 3204 3205 3206
	/*
	 * By default we reserve 2% or 4096 clusters, whichever is smaller.
	 * This should cover the situations where we can not afford to run
	 * out of space like for example punch hole, or converting
3207
	 * unwritten extents in delalloc path. In most cases such
Lukas Czerner's avatar
Lukas Czerner committed
3208 3209 3210
	 * allocation would require 1, or 2 blocks, higher numbers are
	 * very rare.
	 */
3211 3212
	resv_clusters = (ext4_blocks_count(sbi->s_es) >>
			 sbi->s_cluster_bits);
Lukas Czerner's avatar
Lukas Czerner committed
3213 3214 3215 3216

	do_div(resv_clusters, 50);
	resv_clusters = min_t(ext4_fsblk_t, resv_clusters, 4096);

3217
	atomic64_set(&sbi->s_resv_clusters, resv_clusters);
Lukas Czerner's avatar
Lukas Czerner committed
3218 3219
}

3220
static int ext4_fill_super(struct super_block *sb, void *data, int silent)
3221
{
3222
	char *orig_data = kstrdup(data, GFP_KERNEL);
3223
	struct buffer_head *bh;
3224
	struct ext4_super_block *es = NULL;
3225
	struct ext4_sb_info *sbi = kzalloc(sizeof(*sbi), GFP_KERNEL);
3226 3227
	ext4_fsblk_t block;
	ext4_fsblk_t sb_block = get_sb_block(&data);
3228
	ext4_fsblk_t logical_sb_block;
3229 3230 3231 3232
	unsigned long offset = 0;
	unsigned long journal_devnum = 0;
	unsigned long def_mount_opts;
	struct inode *root;
3233
	const char *descr;
3234
	int ret = -ENOMEM;
3235
	int blocksize, clustersize;
3236 3237
	unsigned int db_count;
	unsigned int i;
3238
	int needs_recovery, has_huge_files, has_bigalloc;
Laurent Vivier's avatar
Laurent Vivier committed
3239
	__u64 blocks_count;
3240
	int err = 0;
3241
	unsigned int journal_ioprio = DEFAULT_JOURNAL_IOPRIO;
3242
	ext4_group_t first_not_zeroed;
3243

3244 3245 3246
	if (!userns_mounts && !capable(CAP_SYS_ADMIN))
		return -EPERM;

3247 3248
	if ((data && !orig_data) || !sbi)
		goto out_free_base;
3249 3250 3251

	sbi->s_blockgroup_lock =
		kzalloc(sizeof(struct blockgroup_lock), GFP_KERNEL);
3252 3253 3254
	if (!sbi->s_blockgroup_lock)
		goto out_free_base;

3255
	sb->s_fs_info = sbi;
3256
	sbi->s_sb = sb;
3257
	sbi->s_inode_readahead_blks = EXT4_DEF_INODE_READAHEAD_BLKS;
Miklos Szeredi's avatar
Miklos Szeredi committed
3258
	sbi->s_sb_block = sb_block;
3259 3260 3261
	if (sb->s_bdev->bd_part)
		sbi->s_sectors_written_start =
			part_stat_read(sb->s_bdev->bd_part, sectors[1]);
3262

3263
	/* Cleanup superblock name */
3264
	strreplace(sb->s_id, '/', '!');
3265

3266
	/* -EINVAL is default */
3267
	ret = -EINVAL;
3268
	blocksize = sb_min_blocksize(sb, EXT4_MIN_BLOCK_SIZE);
3269
	if (!blocksize) {
3270
		ext4_msg(sb, KERN_ERR, "unable to set blocksize");
3271 3272 3273 3274
		goto out_fail;
	}

	/*
3275
	 * The ext4 superblock will not be buffer aligned for other than 1kB
3276 3277
	 * block sizes.  We need to calculate the offset from buffer start.
	 */
3278
	if (blocksize != EXT4_MIN_BLOCK_SIZE) {
3279 3280
		logical_sb_block = sb_block * EXT4_MIN_BLOCK_SIZE;
		offset = do_div(logical_sb_block, blocksize);
3281
	} else {
3282
		logical_sb_block = sb_block;
3283 3284
	}

3285
	if (!(bh = sb_bread_unmovable(sb, logical_sb_block))) {
3286
		ext4_msg(sb, KERN_ERR, "unable to read superblock");
3287 3288 3289 3290
		goto out_fail;
	}
	/*
	 * Note: s_es must be initialized as soon as possible because
3291
	 *       some ext4 macro-instructions depend on its value
3292
	 */
3293
	es = (struct ext4_super_block *) (bh->b_data + offset);
3294 3295
	sbi->s_es = es;
	sb->s_magic = le16_to_cpu(es->s_magic);
3296 3297
	if (sb->s_magic != EXT4_SUPER_MAGIC)
		goto cantfind_ext4;
3298
	sbi->s_kbytes_written = le64_to_cpu(es->s_kbytes_written);
3299

3300
	/* Warn if metadata_csum and gdt_csum are both set. */
3301 3302
	if (ext4_has_feature_metadata_csum(sb) &&
	    ext4_has_feature_gdt_csum(sb))
3303
		ext4_warning(sb, "metadata_csum and uninit_bg are "
3304 3305
			     "redundant flags; please run fsck.");

3306 3307 3308 3309 3310 3311 3312 3313
	/* Check for a known checksum algorithm */
	if (!ext4_verify_csum_type(sb, es)) {
		ext4_msg(sb, KERN_ERR, "VFS: Found ext4 filesystem with "
			 "unknown checksum algorithm.");
		silent = 1;
		goto cantfind_ext4;
	}

3314
	/* Load the checksum driver */
3315
	if (ext4_has_feature_metadata_csum(sb)) {
3316 3317 3318 3319 3320 3321 3322 3323 3324
		sbi->s_chksum_driver = crypto_alloc_shash("crc32c", 0, 0);
		if (IS_ERR(sbi->s_chksum_driver)) {
			ext4_msg(sb, KERN_ERR, "Cannot load crc32c driver.");
			ret = PTR_ERR(sbi->s_chksum_driver);
			sbi->s_chksum_driver = NULL;
			goto failed_mount;
		}
	}

3325 3326 3327 3328 3329
	/* Check superblock checksum */
	if (!ext4_superblock_csum_verify(sb, es)) {
		ext4_msg(sb, KERN_ERR, "VFS: Found ext4 filesystem with "
			 "invalid superblock checksum.  Run e2fsck?");
		silent = 1;
3330
		ret = -EFSBADCRC;
3331 3332 3333 3334
		goto cantfind_ext4;
	}

	/* Precompute checksum seed for all metadata */
3335
	if (ext4_has_feature_csum_seed(sb))
3336 3337
		sbi->s_csum_seed = le32_to_cpu(es->s_checksum_seed);
	else if (ext4_has_metadata_csum(sb))
3338 3339 3340
		sbi->s_csum_seed = ext4_chksum(sbi, ~0, es->s_uuid,
					       sizeof(es->s_uuid));

3341 3342
	/* Set defaults before we parse the mount options */
	def_mount_opts = le32_to_cpu(es->s_default_mount_opts);
3343
	set_opt(sb, INIT_INODE_TABLE);
3344
	if (def_mount_opts & EXT4_DEFM_DEBUG)
3345
		set_opt(sb, DEBUG);
3346
	if (def_mount_opts & EXT4_DEFM_BSDGROUPS)
3347
		set_opt(sb, GRPID);
3348
	if (def_mount_opts & EXT4_DEFM_UID16)
3349
		set_opt(sb, NO_UID32);
3350 3351
	/* xattr user namespace & acls are now defaulted on */
	set_opt(sb, XATTR_USER);
Theodore Ts'o's avatar
Theodore Ts'o committed
3352
#ifdef CONFIG_EXT4_FS_POSIX_ACL
3353
	set_opt(sb, POSIX_ACL);
3354
#endif
3355 3356 3357 3358
	/* don't forget to enable journal_csum when metadata_csum is enabled. */
	if (ext4_has_metadata_csum(sb))
		set_opt(sb, JOURNAL_CHECKSUM);

3359
	if ((def_mount_opts & EXT4_DEFM_JMODE) == EXT4_DEFM_JMODE_DATA)
3360
		set_opt(sb, JOURNAL_DATA);
3361
	else if ((def_mount_opts & EXT4_DEFM_JMODE) == EXT4_DEFM_JMODE_ORDERED)
3362
		set_opt(sb, ORDERED_DATA);
3363
	else if ((def_mount_opts & EXT4_DEFM_JMODE) == EXT4_DEFM_JMODE_WBACK)
3364
		set_opt(sb, WRITEBACK_DATA);
3365

3366 3367 3368
	if (le16_to_cpu(sbi->s_es->s_errors) == EXT4_ERRORS_PANIC) {
		if (!capable(CAP_SYS_ADMIN))
			goto failed_mount;
3369
		set_opt(sb, ERRORS_PANIC);
3370
	} else if (le16_to_cpu(sbi->s_es->s_errors) == EXT4_ERRORS_CONTINUE) {
3371
		set_opt(sb, ERRORS_CONT);
3372
	} else {
3373
		set_opt(sb, ERRORS_RO);
3374
	}
3375 3376
	/* block_validity enabled by default; disable with noblock_validity */
	set_opt(sb, BLOCK_VALIDITY);
3377
	if (def_mount_opts & EXT4_DEFM_DISCARD)
3378
		set_opt(sb, DISCARD);
3379

3380 3381 3382 3383 3384 3385
	sbi->s_resuid = make_kuid(sb->s_user_ns, le16_to_cpu(es->s_def_resuid));
	if (!uid_valid(sbi->s_resuid))
		sbi->s_resuid = make_kuid(sb->s_user_ns, EXT4_DEF_RESUID);
	sbi->s_resgid = make_kgid(sb->s_user_ns, le16_to_cpu(es->s_def_resgid));
	if (!gid_valid(sbi->s_resgid))
		sbi->s_resgid = make_kgid(sb->s_user_ns, EXT4_DEF_RESGID);
3386 3387 3388
	sbi->s_commit_interval = JBD2_DEFAULT_MAX_COMMIT_AGE * HZ;
	sbi->s_min_batch_time = EXT4_DEF_MIN_BATCH_TIME;
	sbi->s_max_batch_time = EXT4_DEF_MAX_BATCH_TIME;
3389

3390
	if ((def_mount_opts & EXT4_DEFM_NOBARRIER) == 0)
3391
		set_opt(sb, BARRIER);
3392

3393 3394 3395 3396
	/*
	 * enable delayed allocation by default
	 * Use -o nodelalloc to turn it off
	 */
3397
	if (!IS_EXT3_SB(sb) && !IS_EXT2_SB(sb) &&
3398
	    ((def_mount_opts & EXT4_DEFM_NODELALLOC) == 0))
3399
		set_opt(sb, DELALLOC);
3400

3401 3402 3403 3404 3405 3406
	/*
	 * set default s_li_wait_mult for lazyinit, for the case there is
	 * no mount option specified.
	 */
	sbi->s_li_wait_mult = EXT4_DEF_LI_WAIT_MULT;

3407 3408 3409 3410 3411 3412 3413 3414 3415 3416 3417 3418 3419
	if (sbi->s_es->s_mount_opts[0]) {
		char *s_mount_opts = kstrndup(sbi->s_es->s_mount_opts,
					      sizeof(sbi->s_es->s_mount_opts),
					      GFP_KERNEL);
		if (!s_mount_opts)
			goto failed_mount;
		if (!parse_options(s_mount_opts, sb, &journal_devnum,
				   &journal_ioprio, 0)) {
			ext4_msg(sb, KERN_WARNING,
				 "failed to parse options in superblock: %s",
				 s_mount_opts);
		}
		kfree(s_mount_opts);
3420
	}
3421
	sbi->s_def_mount_opt = sbi->s_mount_opt;
3422
	if (!parse_options((char *) data, sb, &journal_devnum,
3423
			   &journal_ioprio, 0))
3424 3425
		goto failed_mount;

3426 3427 3428 3429 3430 3431 3432 3433 3434 3435 3436
	if (test_opt(sb, DATA_FLAGS) == EXT4_MOUNT_JOURNAL_DATA) {
		printk_once(KERN_WARNING "EXT4-fs: Warning: mounting "
			    "with data=journal disables delayed "
			    "allocation and O_DIRECT support!\n");
		if (test_opt2(sb, EXPLICIT_DELALLOC)) {
			ext4_msg(sb, KERN_ERR, "can't mount with "
				 "both data=journal and delalloc");
			goto failed_mount;
		}
		if (test_opt(sb, DIOREAD_NOLOCK)) {
			ext4_msg(sb, KERN_ERR, "can't mount with "
3437
				 "both data=journal and dioread_nolock");
3438 3439
			goto failed_mount;
		}
Ross Zwisler's avatar
Ross Zwisler committed
3440 3441 3442 3443 3444
		if (test_opt(sb, DAX)) {
			ext4_msg(sb, KERN_ERR, "can't mount with "
				 "both data=journal and dax");
			goto failed_mount;
		}
3445 3446 3447 3448 3449
		if (ext4_has_feature_encrypt(sb)) {
			ext4_msg(sb, KERN_WARNING,
				 "encrypted files will use data=ordered "
				 "instead of data journaling mode");
		}
3450 3451
		if (test_opt(sb, DELALLOC))
			clear_opt(sb, DELALLOC);
3452 3453
	} else {
		sb->s_iflags |= SB_I_CGROUPWB;
3454 3455
	}

3456
	sb->s_flags = (sb->s_flags & ~MS_POSIXACL) |
3457
		(test_opt(sb, POSIX_ACL) ? MS_POSIXACL : 0);
3458

3459
	if (le32_to_cpu(es->s_rev_level) == EXT4_GOOD_OLD_REV &&
3460 3461 3462
	    (ext4_has_compat_features(sb) ||
	     ext4_has_ro_compat_features(sb) ||
	     ext4_has_incompat_features(sb)))
3463 3464 3465
		ext4_msg(sb, KERN_WARNING,
		       "feature flags set on rev 0 fs, "
		       "running e2fsck is recommended");
3466

3467 3468
	if (es->s_creator_os == cpu_to_le32(EXT4_OS_HURD)) {
		set_opt2(sb, HURD_COMPAT);
3469
		if (ext4_has_feature_64bit(sb)) {
3470 3471 3472 3473 3474 3475
			ext4_msg(sb, KERN_ERR,
				 "The Hurd can't support 64-bit file systems");
			goto failed_mount;
		}
	}

3476 3477 3478 3479 3480 3481 3482 3483 3484 3485 3486 3487 3488 3489 3490 3491 3492 3493 3494 3495 3496 3497
	if (IS_EXT2_SB(sb)) {
		if (ext2_feature_set_ok(sb))
			ext4_msg(sb, KERN_INFO, "mounting ext2 file system "
				 "using the ext4 subsystem");
		else {
			ext4_msg(sb, KERN_ERR, "couldn't mount as ext2 due "
				 "to feature incompatibilities");
			goto failed_mount;
		}
	}

	if (IS_EXT3_SB(sb)) {
		if (ext3_feature_set_ok(sb))
			ext4_msg(sb, KERN_INFO, "mounting ext3 file system "
				 "using the ext4 subsystem");
		else {
			ext4_msg(sb, KERN_ERR, "couldn't mount as ext3 due "
				 "to feature incompatibilities");
			goto failed_mount;
		}
	}

3498 3499 3500 3501 3502
	/*
	 * Check feature flags regardless of the revision level, since we
	 * previously didn't change the revision level when setting the flags,
	 * so there is a chance incompat flags are set on a rev 0 filesystem.
	 */
3503
	if (!ext4_feature_set_ok(sb, (sb->s_flags & MS_RDONLY)))
3504
		goto failed_mount;
3505

3506
	blocksize = BLOCK_SIZE << le32_to_cpu(es->s_log_block_size);
3507 3508
	if (blocksize < EXT4_MIN_BLOCK_SIZE ||
	    blocksize > EXT4_MAX_BLOCK_SIZE) {
3509
		ext4_msg(sb, KERN_ERR,
3510 3511 3512 3513 3514 3515 3516 3517 3518
		       "Unsupported filesystem blocksize %d (%d log_block_size)",
			 blocksize, le32_to_cpu(es->s_log_block_size));
		goto failed_mount;
	}
	if (le32_to_cpu(es->s_log_block_size) >
	    (EXT4_MAX_BLOCK_LOG_SIZE - EXT4_MIN_BLOCK_LOG_SIZE)) {
		ext4_msg(sb, KERN_ERR,
			 "Invalid log block size: %u",
			 le32_to_cpu(es->s_log_block_size));
3519 3520
		goto failed_mount;
	}
3521 3522 3523 3524 3525 3526 3527
	if (le32_to_cpu(es->s_log_cluster_size) >
	    (EXT4_MAX_CLUSTER_LOG_SIZE - EXT4_MIN_BLOCK_LOG_SIZE)) {
		ext4_msg(sb, KERN_ERR,
			 "Invalid log cluster size: %u",
			 le32_to_cpu(es->s_log_cluster_size));
		goto failed_mount;
	}
3528

3529 3530 3531 3532 3533 3534 3535
	if (le16_to_cpu(sbi->s_es->s_reserved_gdt_blocks) > (blocksize / 4)) {
		ext4_msg(sb, KERN_ERR,
			 "Number of reserved GDT blocks insanely large: %d",
			 le16_to_cpu(sbi->s_es->s_reserved_gdt_blocks));
		goto failed_mount;
	}

Ross Zwisler's avatar
Ross Zwisler committed
3536 3537 3538 3539 3540 3541 3542 3543 3544 3545 3546 3547 3548
	if (sbi->s_mount_opt & EXT4_MOUNT_DAX) {
		if (blocksize != PAGE_SIZE) {
			ext4_msg(sb, KERN_ERR,
					"error: unsupported blocksize for dax");
			goto failed_mount;
		}
		if (!sb->s_bdev->bd_disk->fops->direct_access) {
			ext4_msg(sb, KERN_ERR,
					"error: device does not support dax");
			goto failed_mount;
		}
	}

3549
	if (ext4_has_feature_encrypt(sb) && es->s_encryption_level) {
3550 3551 3552 3553 3554
		ext4_msg(sb, KERN_ERR, "Unsupported encryption level %d",
			 es->s_encryption_level);
		goto failed_mount;
	}

3555
	if (sb->s_blocksize != blocksize) {
3556 3557
		/* Validate the filesystem blocksize */
		if (!sb_set_blocksize(sb, blocksize)) {
3558
			ext4_msg(sb, KERN_ERR, "bad block size %d",
3559
					blocksize);
3560 3561 3562
			goto failed_mount;
		}

3563
		brelse(bh);
3564 3565
		logical_sb_block = sb_block * EXT4_MIN_BLOCK_SIZE;
		offset = do_div(logical_sb_block, blocksize);
3566
		bh = sb_bread_unmovable(sb, logical_sb_block);
3567
		if (!bh) {
3568 3569
			ext4_msg(sb, KERN_ERR,
			       "Can't read superblock on 2nd try");
3570 3571
			goto failed_mount;
		}
3572
		es = (struct ext4_super_block *)(bh->b_data + offset);
3573
		sbi->s_es = es;
3574
		if (es->s_magic != cpu_to_le16(EXT4_SUPER_MAGIC)) {
3575 3576
			ext4_msg(sb, KERN_ERR,
			       "Magic mismatch, very weird!");
3577 3578 3579 3580
			goto failed_mount;
		}
	}

3581
	has_huge_files = ext4_has_feature_huge_file(sb);
3582 3583 3584
	sbi->s_bitmap_maxbytes = ext4_max_bitmap_size(sb->s_blocksize_bits,
						      has_huge_files);
	sb->s_maxbytes = ext4_max_size(sb->s_blocksize_bits, has_huge_files);
3585

3586 3587 3588
	if (le32_to_cpu(es->s_rev_level) == EXT4_GOOD_OLD_REV) {
		sbi->s_inode_size = EXT4_GOOD_OLD_INODE_SIZE;
		sbi->s_first_ino = EXT4_GOOD_OLD_FIRST_INO;
3589 3590 3591
	} else {
		sbi->s_inode_size = le16_to_cpu(es->s_inode_size);
		sbi->s_first_ino = le32_to_cpu(es->s_first_ino);
3592 3593 3594 3595 3596
		if (sbi->s_first_ino < EXT4_GOOD_OLD_FIRST_INO) {
			ext4_msg(sb, KERN_ERR, "invalid first ino: %u",
				 sbi->s_first_ino);
			goto failed_mount;
		}
3597
		if ((sbi->s_inode_size < EXT4_GOOD_OLD_INODE_SIZE) ||
Vignesh Babu's avatar
Vignesh Babu committed
3598
		    (!is_power_of_2(sbi->s_inode_size)) ||
3599
		    (sbi->s_inode_size > blocksize)) {
3600 3601
			ext4_msg(sb, KERN_ERR,
			       "unsupported inode size: %d",
3602
			       sbi->s_inode_size);
3603 3604
			goto failed_mount;
		}
Kalpak Shah's avatar
Kalpak Shah committed
3605 3606
		if (sbi->s_inode_size > EXT4_GOOD_OLD_INODE_SIZE)
			sb->s_time_gran = 1 << (EXT4_EPOCH_BITS - 2);
3607
	}
3608

3609
	sbi->s_desc_size = le16_to_cpu(es->s_desc_size);
3610
	if (ext4_has_feature_64bit(sb)) {
3611
		if (sbi->s_desc_size < EXT4_MIN_DESC_SIZE_64BIT ||
3612
		    sbi->s_desc_size > EXT4_MAX_DESC_SIZE ||
vignesh babu's avatar
vignesh babu committed
3613
		    !is_power_of_2(sbi->s_desc_size)) {
3614 3615
			ext4_msg(sb, KERN_ERR,
			       "unsupported descriptor size %lu",
3616 3617 3618 3619 3620
			       sbi->s_desc_size);
			goto failed_mount;
		}
	} else
		sbi->s_desc_size = EXT4_MIN_DESC_SIZE;
3621

3622 3623
	sbi->s_blocks_per_group = le32_to_cpu(es->s_blocks_per_group);
	sbi->s_inodes_per_group = le32_to_cpu(es->s_inodes_per_group);
3624

3625
	sbi->s_inodes_per_block = blocksize / EXT4_INODE_SIZE(sb);
3626
	if (sbi->s_inodes_per_block == 0)
3627
		goto cantfind_ext4;
3628 3629 3630 3631 3632 3633
	if (sbi->s_inodes_per_group < sbi->s_inodes_per_block ||
	    sbi->s_inodes_per_group > blocksize * 8) {
		ext4_msg(sb, KERN_ERR, "invalid inodes per group: %lu\n",
			 sbi->s_blocks_per_group);
		goto failed_mount;
	}
3634 3635
	sbi->s_itb_per_group = sbi->s_inodes_per_group /
					sbi->s_inodes_per_block;
3636
	sbi->s_desc_per_block = blocksize / EXT4_DESC_SIZE(sb);
3637 3638
	sbi->s_sbh = bh;
	sbi->s_mount_state = le16_to_cpu(es->s_state);
3639 3640
	sbi->s_addr_per_block_bits = ilog2(EXT4_ADDR_PER_BLOCK(sb));
	sbi->s_desc_per_block_bits = ilog2(EXT4_DESC_PER_BLOCK(sb));
3641

3642
	for (i = 0; i < 4; i++)
3643 3644
		sbi->s_hash_seed[i] = le32_to_cpu(es->s_hash_seed[i]);
	sbi->s_def_hash_version = es->s_def_hash_version;
3645
	if (ext4_has_feature_dir_index(sb)) {
3646 3647 3648 3649
		i = le32_to_cpu(es->s_flags);
		if (i & EXT2_FLAGS_UNSIGNED_HASH)
			sbi->s_hash_unsigned = 3;
		else if ((i & EXT2_FLAGS_SIGNED_HASH) == 0) {
3650
#ifdef __CHAR_UNSIGNED__
3651 3652 3653 3654
			if (!(sb->s_flags & MS_RDONLY))
				es->s_flags |=
					cpu_to_le32(EXT2_FLAGS_UNSIGNED_HASH);
			sbi->s_hash_unsigned = 3;
3655
#else
3656 3657 3658
			if (!(sb->s_flags & MS_RDONLY))
				es->s_flags |=
					cpu_to_le32(EXT2_FLAGS_SIGNED_HASH);
3659
#endif
3660
		}
3661
	}
3662

3663 3664
	/* Handle clustersize */
	clustersize = BLOCK_SIZE << le32_to_cpu(es->s_log_cluster_size);
3665
	has_bigalloc = ext4_has_feature_bigalloc(sb);
3666 3667 3668 3669 3670 3671 3672 3673 3674 3675 3676 3677 3678 3679 3680 3681 3682 3683 3684 3685 3686 3687 3688 3689 3690 3691 3692
	if (has_bigalloc) {
		if (clustersize < blocksize) {
			ext4_msg(sb, KERN_ERR,
				 "cluster size (%d) smaller than "
				 "block size (%d)", clustersize, blocksize);
			goto failed_mount;
		}
		sbi->s_cluster_bits = le32_to_cpu(es->s_log_cluster_size) -
			le32_to_cpu(es->s_log_block_size);
		sbi->s_clusters_per_group =
			le32_to_cpu(es->s_clusters_per_group);
		if (sbi->s_clusters_per_group > blocksize * 8) {
			ext4_msg(sb, KERN_ERR,
				 "#clusters per group too big: %lu",
				 sbi->s_clusters_per_group);
			goto failed_mount;
		}
		if (sbi->s_blocks_per_group !=
		    (sbi->s_clusters_per_group * (clustersize / blocksize))) {
			ext4_msg(sb, KERN_ERR, "blocks per group (%lu) and "
				 "clusters per group (%lu) inconsistent",
				 sbi->s_blocks_per_group,
				 sbi->s_clusters_per_group);
			goto failed_mount;
		}
	} else {
		if (clustersize != blocksize) {
3693 3694 3695 3696
			ext4_msg(sb, KERN_ERR,
				 "fragment/cluster size (%d) != "
				 "block size (%d)", clustersize, blocksize);
			goto failed_mount;
3697 3698 3699 3700 3701 3702 3703 3704 3705
		}
		if (sbi->s_blocks_per_group > blocksize * 8) {
			ext4_msg(sb, KERN_ERR,
				 "#blocks per group too big: %lu",
				 sbi->s_blocks_per_group);
			goto failed_mount;
		}
		sbi->s_clusters_per_group = sbi->s_blocks_per_group;
		sbi->s_cluster_bits = 0;
3706
	}
3707 3708
	sbi->s_cluster_ratio = clustersize / blocksize;

3709 3710 3711 3712
	/* Do we have standard group size of clustersize * 8 blocks ? */
	if (sbi->s_blocks_per_group == clustersize << 3)
		set_opt2(sb, STD_GROUP_SIZE);

3713 3714 3715 3716
	/*
	 * Test whether we have more sectors than will fit in sector_t,
	 * and whether the max offset is addressable by the page cache.
	 */
3717
	err = generic_check_addressable(sb->s_blocksize_bits,
3718
					ext4_blocks_count(es));
3719
	if (err) {
3720
		ext4_msg(sb, KERN_ERR, "filesystem"
3721
			 " too large to mount safely on this system");
3722
		if (sizeof(sector_t) < 8)
3723
			ext4_msg(sb, KERN_WARNING, "CONFIG_LBDAF not enabled");
3724 3725 3726
		goto failed_mount;
	}

3727 3728
	if (EXT4_BLOCKS_PER_GROUP(sb) == 0)
		goto cantfind_ext4;
3729

3730 3731 3732
	/* check blocks count against device size */
	blocks_count = sb->s_bdev->bd_inode->i_size >> sb->s_blocksize_bits;
	if (blocks_count && ext4_blocks_count(es) > blocks_count) {
3733 3734
		ext4_msg(sb, KERN_WARNING, "bad geometry: block count %llu "
		       "exceeds size of device (%llu blocks)",
3735 3736 3737 3738
		       ext4_blocks_count(es), blocks_count);
		goto failed_mount;
	}

3739 3740 3741 3742 3743
	/*
	 * It makes no sense for the first data block to be beyond the end
	 * of the filesystem.
	 */
	if (le32_to_cpu(es->s_first_data_block) >= ext4_blocks_count(es)) {
3744
		ext4_msg(sb, KERN_WARNING, "bad geometry: first data "
3745 3746 3747
			 "block %u is beyond end of filesystem (%llu)",
			 le32_to_cpu(es->s_first_data_block),
			 ext4_blocks_count(es));
3748 3749
		goto failed_mount;
	}
3750 3751 3752 3753 3754 3755 3756
	if ((es->s_first_data_block == 0) && (es->s_log_block_size == 0) &&
	    (sbi->s_cluster_ratio == 1)) {
		ext4_msg(sb, KERN_WARNING, "bad geometry: first data "
			 "block is 0 with a 1k block and cluster size");
		goto failed_mount;
	}

Laurent Vivier's avatar
Laurent Vivier committed
3757 3758 3759 3760
	blocks_count = (ext4_blocks_count(es) -
			le32_to_cpu(es->s_first_data_block) +
			EXT4_BLOCKS_PER_GROUP(sb) - 1);
	do_div(blocks_count, EXT4_BLOCKS_PER_GROUP(sb));
3761
	if (blocks_count > ((uint64_t)1<<32) - EXT4_DESC_PER_BLOCK(sb)) {
3762
		ext4_msg(sb, KERN_WARNING, "groups count too large: %u "
3763
		       "(block count %llu, first data block %u, "
3764
		       "blocks per group %lu)", sbi->s_groups_count,
3765 3766 3767 3768 3769
		       ext4_blocks_count(es),
		       le32_to_cpu(es->s_first_data_block),
		       EXT4_BLOCKS_PER_GROUP(sb));
		goto failed_mount;
	}
Laurent Vivier's avatar
Laurent Vivier committed
3770
	sbi->s_groups_count = blocks_count;
3771 3772
	sbi->s_blockfile_groups = min_t(ext4_group_t, sbi->s_groups_count,
			(EXT4_MAX_BLOCK_FILE_PHYS / EXT4_BLOCKS_PER_GROUP(sb)));
3773 3774
	db_count = (sbi->s_groups_count + EXT4_DESC_PER_BLOCK(sb) - 1) /
		   EXT4_DESC_PER_BLOCK(sb);
3775
	if (ext4_has_feature_meta_bg(sb)) {
3776
		if (le32_to_cpu(es->s_first_meta_bg) > db_count) {
3777 3778 3779 3780 3781 3782 3783
			ext4_msg(sb, KERN_WARNING,
				 "first meta block group too large: %u "
				 "(group descriptor block count %u)",
				 le32_to_cpu(es->s_first_meta_bg), db_count);
			goto failed_mount;
		}
	}
3784 3785 3786
	sbi->s_group_desc = ext4_kvmalloc(db_count *
					  sizeof(struct buffer_head *),
					  GFP_KERNEL);
3787
	if (sbi->s_group_desc == NULL) {
3788
		ext4_msg(sb, KERN_ERR, "not enough memory");
3789
		ret = -ENOMEM;
3790 3791
		goto failed_mount;
	}
3792 3793 3794 3795 3796 3797 3798 3799
	if (((u64)sbi->s_groups_count * sbi->s_inodes_per_group) !=
	    le32_to_cpu(es->s_inodes_count)) {
		ext4_msg(sb, KERN_ERR, "inodes count not valid: %u vs %llu",
			 le32_to_cpu(es->s_inodes_count),
			 ((u64)sbi->s_groups_count * sbi->s_inodes_per_group));
		ret = -EINVAL;
		goto failed_mount;
	}
3800

3801
	bgl_lock_init(sbi->s_blockgroup_lock);
3802 3803

	for (i = 0; i < db_count; i++) {
3804
		block = descriptor_loc(sb, logical_sb_block, i);
3805
		sbi->s_group_desc[i] = sb_bread_unmovable(sb, block);
3806
		if (!sbi->s_group_desc[i]) {
3807 3808
			ext4_msg(sb, KERN_ERR,
			       "can't read group descriptor %d", i);
3809 3810 3811 3812
			db_count = i;
			goto failed_mount2;
		}
	}
3813
	if (!ext4_check_descriptors(sb, logical_sb_block, &first_not_zeroed)) {
3814
		ext4_msg(sb, KERN_ERR, "group descriptors corrupted!");
3815
		ret = -EFSCORRUPTED;
3816
		goto failed_mount2;
3817
	}
3818

3819
	sbi->s_gdb_count = db_count;
3820 3821 3822
	get_random_bytes(&sbi->s_next_generation, sizeof(u32));
	spin_lock_init(&sbi->s_next_gen_lock);

3823 3824
	setup_timer(&sbi->s_err_report, print_daily_error_info,
		(unsigned long) sb);
3825

3826
	/* Register extent status tree shrinker */
3827
	if (ext4_es_register_shrinker(sbi))
3828 3829
		goto failed_mount3;

3830
	sbi->s_stripe = ext4_get_stripe_size(sbi);
3831
	sbi->s_extent_max_zeroout_kb = 32;
3832

3833 3834 3835
	/*
	 * set up enough so that it can read an inode
	 */
3836
	sb->s_op = &ext4_sops;
3837 3838
	sb->s_export_op = &ext4_export_ops;
	sb->s_xattr = ext4_xattr_handlers;
3839
#ifdef CONFIG_QUOTA
3840
	sb->dq_op = &ext4_quota_operations;
3841
	if (ext4_has_feature_quota(sb))
3842
		sb->s_qcop = &dquot_quotactl_sysfile_ops;
3843 3844
	else
		sb->s_qcop = &ext4_qctl_operations;
3845
	sb->s_quota_types = QTYPE_MASK_USR | QTYPE_MASK_GRP;
3846
#endif
3847 3848
	memcpy(sb->s_uuid, es->s_uuid, sizeof(es->s_uuid));

3849
	INIT_LIST_HEAD(&sbi->s_orphan); /* unlinked but open files */
3850
	mutex_init(&sbi->s_orphan_lock);
3851 3852 3853 3854

	sb->s_root = NULL;

	needs_recovery = (es->s_last_orphan != 0 ||
3855
			  ext4_has_feature_journal_needs_recovery(sb));
3856

3857
	if (ext4_has_feature_mmp(sb) && !(sb->s_flags & MS_RDONLY))
3858
		if (ext4_multi_mount_protect(sb, le64_to_cpu(es->s_mmp_block)))
3859
			goto failed_mount3a;
3860

3861 3862 3863 3864
	/*
	 * The first inode we look at is the journal inode.  Don't try
	 * root first: it may be modified in the journal!
	 */
3865
	if (!test_opt(sb, NOLOAD) && ext4_has_feature_journal(sb)) {
3866 3867
		err = ext4_load_journal(sb, es, journal_devnum);
		if (err)
3868
			goto failed_mount3a;
3869
	} else if (test_opt(sb, NOLOAD) && !(sb->s_flags & MS_RDONLY) &&
3870
		   ext4_has_feature_journal_needs_recovery(sb)) {
3871 3872
		ext4_msg(sb, KERN_ERR, "required journal recovery "
		       "suppressed and not mounted read-only");
3873
		goto failed_mount_wq;
3874
	} else {
3875 3876 3877 3878 3879 3880 3881 3882 3883 3884 3885 3886 3887 3888 3889 3890 3891 3892 3893 3894 3895 3896 3897 3898 3899
		/* Nojournal mode, all journal mount options are illegal */
		if (test_opt2(sb, EXPLICIT_JOURNAL_CHECKSUM)) {
			ext4_msg(sb, KERN_ERR, "can't mount with "
				 "journal_checksum, fs mounted w/o journal");
			goto failed_mount_wq;
		}
		if (test_opt(sb, JOURNAL_ASYNC_COMMIT)) {
			ext4_msg(sb, KERN_ERR, "can't mount with "
				 "journal_async_commit, fs mounted w/o journal");
			goto failed_mount_wq;
		}
		if (sbi->s_commit_interval != JBD2_DEFAULT_MAX_COMMIT_AGE*HZ) {
			ext4_msg(sb, KERN_ERR, "can't mount with "
				 "commit=%lu, fs mounted w/o journal",
				 sbi->s_commit_interval / HZ);
			goto failed_mount_wq;
		}
		if (EXT4_MOUNT_DATA_FLAGS &
		    (sbi->s_mount_opt ^ sbi->s_def_mount_opt)) {
			ext4_msg(sb, KERN_ERR, "can't mount with "
				 "data=, fs mounted w/o journal");
			goto failed_mount_wq;
		}
		sbi->s_def_mount_opt &= EXT4_MOUNT_JOURNAL_CHECKSUM;
		clear_opt(sb, JOURNAL_CHECKSUM);
3900
		clear_opt(sb, DATA_FLAGS);
3901 3902 3903
		sbi->s_journal = NULL;
		needs_recovery = 0;
		goto no_journal;
3904 3905
	}

3906
	if (ext4_has_feature_64bit(sb) &&
3907 3908
	    !jbd2_journal_set_features(EXT4_SB(sb)->s_journal, 0, 0,
				       JBD2_FEATURE_INCOMPAT_64BIT)) {
3909
		ext4_msg(sb, KERN_ERR, "Failed to set 64-bit journal feature");
3910
		goto failed_mount_wq;
3911 3912
	}

3913 3914 3915 3916
	if (!set_journal_csum_feature_set(sb)) {
		ext4_msg(sb, KERN_ERR, "Failed to set journal checksum "
			 "feature set");
		goto failed_mount_wq;
3917
	}
3918

3919 3920 3921 3922 3923
	/* We have now updated the journal if required, so we can
	 * validate the data journaling mode. */
	switch (test_opt(sb, DATA_FLAGS)) {
	case 0:
		/* No mode set, assume a default based on the journal
3924 3925 3926
		 * capabilities: ORDERED_DATA if the journal can
		 * cope, else JOURNAL_DATA
		 */
3927 3928
		if (jbd2_journal_check_available_features
		    (sbi->s_journal, 0, 0, JBD2_FEATURE_INCOMPAT_REVOKE))
3929
			set_opt(sb, ORDERED_DATA);
3930
		else
3931
			set_opt(sb, JOURNAL_DATA);
3932 3933
		break;

3934 3935
	case EXT4_MOUNT_ORDERED_DATA:
	case EXT4_MOUNT_WRITEBACK_DATA:
3936 3937
		if (!jbd2_journal_check_available_features
		    (sbi->s_journal, 0, 0, JBD2_FEATURE_INCOMPAT_REVOKE)) {
3938 3939
			ext4_msg(sb, KERN_ERR, "Journal does not support "
			       "requested data journaling mode");
3940
			goto failed_mount_wq;
3941 3942 3943 3944
		}
	default:
		break;
	}
3945
	set_task_ioprio(sbi->s_journal->j_task, journal_ioprio);
3946

Bobi Jam's avatar
Bobi Jam committed
3947 3948
	sbi->s_journal->j_commit_callback = ext4_journal_commit_callback;

3949
no_journal:
3950 3951 3952 3953
	sbi->s_mb_cache = ext4_xattr_create_cache();
	if (!sbi->s_mb_cache) {
		ext4_msg(sb, KERN_ERR, "Failed to create an mb_cache");
		goto failed_mount_wq;
3954 3955
	}

3956
	if ((DUMMY_ENCRYPTION_ENABLED(sbi) || ext4_has_feature_encrypt(sb)) &&
3957 3958 3959 3960 3961 3962
	    (blocksize != PAGE_CACHE_SIZE)) {
		ext4_msg(sb, KERN_ERR,
			 "Unsupported blocksize for fs encryption");
		goto failed_mount_wq;
	}

3963 3964 3965
	if (DUMMY_ENCRYPTION_ENABLED(sbi) && !(sb->s_flags & MS_RDONLY) &&
	    !ext4_has_feature_encrypt(sb)) {
		ext4_set_feature_encrypt(sb);
3966 3967 3968
		ext4_commit_super(sb, 1);
	}

3969 3970 3971 3972 3973 3974 3975
	/*
	 * Get the # of file system overhead blocks from the
	 * superblock if present.
	 */
	if (es->s_overhead_clusters)
		sbi->s_overhead = le32_to_cpu(es->s_overhead_clusters);
	else {
3976 3977
		err = ext4_calculate_overhead(sb);
		if (err)
3978 3979 3980
			goto failed_mount_wq;
	}

Tejun Heo's avatar
Tejun Heo committed
3981 3982 3983 3984
	/*
	 * The maximum number of concurrent works can be high and
	 * concurrency isn't really necessary.  Limit it to 1.
	 */
3985 3986 3987 3988
	EXT4_SB(sb)->rsv_conversion_wq =
		alloc_workqueue("ext4-rsv-conversion", WQ_MEM_RECLAIM | WQ_UNBOUND, 1);
	if (!EXT4_SB(sb)->rsv_conversion_wq) {
		printk(KERN_ERR "EXT4-fs: failed to create workqueue\n");
3989
		ret = -ENOMEM;
3990 3991 3992
		goto failed_mount4;
	}

3993
	/*
3994
	 * The jbd2_journal_load will have done any necessary log recovery,
3995 3996 3997
	 * so we can safely mount the rest of the filesystem now.
	 */

3998 3999
	root = ext4_iget(sb, EXT4_ROOT_INO);
	if (IS_ERR(root)) {
4000
		ext4_msg(sb, KERN_ERR, "get root inode failed");
4001
		ret = PTR_ERR(root);
4002
		root = NULL;
4003 4004 4005
		goto failed_mount4;
	}
	if (!S_ISDIR(root->i_mode) || !root->i_blocks || !root->i_size) {
4006
		ext4_msg(sb, KERN_ERR, "corrupt root inode, run e2fsck");
Al Viro's avatar
Al Viro committed
4007
		iput(root);
4008 4009
		goto failed_mount4;
	}
4010
	sb->s_root = d_make_root(root);
4011
	if (!sb->s_root) {
4012
		ext4_msg(sb, KERN_ERR, "get root dentry failed");
4013 4014 4015
		ret = -ENOMEM;
		goto failed_mount4;
	}
4016

4017 4018
	if (ext4_setup_super(sb, es, sb->s_flags & MS_RDONLY))
		sb->s_flags |= MS_RDONLY;
Kalpak Shah's avatar
Kalpak Shah committed
4019 4020 4021 4022 4023

	/* determine the minimum size of new large inodes, if present */
	if (sbi->s_inode_size > EXT4_GOOD_OLD_INODE_SIZE) {
		sbi->s_want_extra_isize = sizeof(struct ext4_inode) -
						     EXT4_GOOD_OLD_INODE_SIZE;
4024
		if (ext4_has_feature_extra_isize(sb)) {
Kalpak Shah's avatar
Kalpak Shah committed
4025 4026 4027 4028 4029 4030 4031 4032 4033 4034 4035 4036 4037 4038 4039
			if (sbi->s_want_extra_isize <
			    le16_to_cpu(es->s_want_extra_isize))
				sbi->s_want_extra_isize =
					le16_to_cpu(es->s_want_extra_isize);
			if (sbi->s_want_extra_isize <
			    le16_to_cpu(es->s_min_extra_isize))
				sbi->s_want_extra_isize =
					le16_to_cpu(es->s_min_extra_isize);
		}
	}
	/* Check if enough inode space is available */
	if (EXT4_GOOD_OLD_INODE_SIZE + sbi->s_want_extra_isize >
							sbi->s_inode_size) {
		sbi->s_want_extra_isize = sizeof(struct ext4_inode) -
						       EXT4_GOOD_OLD_INODE_SIZE;
4040 4041
		ext4_msg(sb, KERN_INFO, "required extra inode space not"
			 "available");
Kalpak Shah's avatar
Kalpak Shah committed
4042 4043
	}

4044
	ext4_set_resv_clusters(sb);
Lukas Czerner's avatar
Lukas Czerner committed
4045

4046 4047
	err = ext4_setup_system_zone(sb);
	if (err) {
4048
		ext4_msg(sb, KERN_ERR, "failed to initialize system "
4049
			 "zone (%d)", err);
4050 4051 4052 4053 4054 4055 4056 4057
		goto failed_mount4a;
	}

	ext4_ext_init(sb);
	err = ext4_mb_init(sb);
	if (err) {
		ext4_msg(sb, KERN_ERR, "failed to initialize mballoc (%d)",
			 err);
4058
		goto failed_mount5;
4059 4060
	}

4061 4062 4063
	block = ext4_count_free_clusters(sb);
	ext4_free_blocks_count_set(sbi->s_es, 
				   EXT4_C2B(sbi, block));
4064 4065
	err = percpu_counter_init(&sbi->s_freeclusters_counter, block,
				  GFP_KERNEL);
4066 4067 4068
	if (!err) {
		unsigned long freei = ext4_count_free_inodes(sb);
		sbi->s_es->s_free_inodes_count = cpu_to_le32(freei);
4069 4070
		err = percpu_counter_init(&sbi->s_freeinodes_counter, freei,
					  GFP_KERNEL);
4071 4072 4073
	}
	if (!err)
		err = percpu_counter_init(&sbi->s_dirs_counter,
4074
					  ext4_count_dirs(sb), GFP_KERNEL);
4075
	if (!err)
4076 4077
		err = percpu_counter_init(&sbi->s_dirtyclusters_counter, 0,
					  GFP_KERNEL);
4078 4079 4080 4081 4082
	if (err) {
		ext4_msg(sb, KERN_ERR, "insufficient memory");
		goto failed_mount6;
	}

4083
	if (ext4_has_feature_flex_bg(sb))
4084 4085 4086 4087 4088 4089 4090
		if (!ext4_fill_flex_info(sb)) {
			ext4_msg(sb, KERN_ERR,
			       "unable to initialize "
			       "flex_bg meta info!");
			goto failed_mount6;
		}

4091 4092
	err = ext4_register_li_request(sb, first_not_zeroed);
	if (err)
4093
		goto failed_mount6;
4094

4095
	err = ext4_register_sysfs(sb);
4096 4097
	if (err)
		goto failed_mount7;
Theodore Ts'o's avatar
Theodore Ts'o committed
4098

4099 4100
#ifdef CONFIG_QUOTA
	/* Enable quota usage during mount. */
4101
	if (ext4_has_feature_quota(sb) && !(sb->s_flags & MS_RDONLY)) {
4102 4103 4104 4105 4106 4107
		err = ext4_enable_quotas(sb);
		if (err)
			goto failed_mount8;
	}
#endif  /* CONFIG_QUOTA */

4108 4109 4110
	EXT4_SB(sb)->s_mount_state |= EXT4_ORPHAN_FS;
	ext4_orphan_cleanup(sb, es);
	EXT4_SB(sb)->s_mount_state &= ~EXT4_ORPHAN_FS;
4111
	if (needs_recovery) {
4112
		ext4_msg(sb, KERN_INFO, "recovery complete");
4113 4114 4115 4116 4117 4118 4119 4120 4121 4122 4123 4124
		ext4_mark_recovery_complete(sb, es);
	}
	if (EXT4_SB(sb)->s_journal) {
		if (test_opt(sb, DATA_FLAGS) == EXT4_MOUNT_JOURNAL_DATA)
			descr = " journalled data mode";
		else if (test_opt(sb, DATA_FLAGS) == EXT4_MOUNT_ORDERED_DATA)
			descr = " ordered data mode";
		else
			descr = " writeback data mode";
	} else
		descr = "out journal";

4125 4126 4127 4128 4129 4130 4131 4132
	if (test_opt(sb, DISCARD)) {
		struct request_queue *q = bdev_get_queue(sb->s_bdev);
		if (!blk_queue_discard(q))
			ext4_msg(sb, KERN_WARNING,
				 "mounting with \"discard\" option, but "
				 "the device does not support discard");
	}

4133 4134
	if (___ratelimit(&ext4_mount_msg_ratelimit, "EXT4-fs mount"))
		ext4_msg(sb, KERN_INFO, "mounted filesystem with%s. "
4135 4136 4137
			 "Opts: %.*s%s%s", descr,
			 (int) sizeof(sbi->s_es->s_mount_opts),
			 sbi->s_es->s_mount_opts,
4138
			 *sbi->s_es->s_mount_opts ? "; " : "", orig_data);
4139

4140 4141
	if (es->s_error_count)
		mod_timer(&sbi->s_err_report, jiffies + 300*HZ); /* 5 minutes */
4142

4143 4144 4145 4146 4147
	/* Enable message ratelimiting. Default is 10 messages per 5 secs. */
	ratelimit_state_init(&sbi->s_err_ratelimit_state, 5 * HZ, 10);
	ratelimit_state_init(&sbi->s_warning_ratelimit_state, 5 * HZ, 10);
	ratelimit_state_init(&sbi->s_msg_ratelimit_state, 5 * HZ, 10);

4148
	kfree(orig_data);
4149 4150
	return 0;

4151
cantfind_ext4:
4152
	if (!silent)
4153
		ext4_msg(sb, KERN_ERR, "VFS: Can't find ext4 filesystem");
4154 4155
	goto failed_mount;

4156 4157
#ifdef CONFIG_QUOTA
failed_mount8:
4158
	ext4_unregister_sysfs(sb);
4159
#endif
4160 4161 4162
failed_mount7:
	ext4_unregister_li_request(sb);
failed_mount6:
4163
	ext4_mb_release(sb);
4164
	if (sbi->s_flex_groups)
Al Viro's avatar
Al Viro committed
4165
		kvfree(sbi->s_flex_groups);
4166 4167 4168 4169
	percpu_counter_destroy(&sbi->s_freeclusters_counter);
	percpu_counter_destroy(&sbi->s_freeinodes_counter);
	percpu_counter_destroy(&sbi->s_dirs_counter);
	percpu_counter_destroy(&sbi->s_dirtyclusters_counter);
4170
failed_mount5:
4171 4172 4173
	ext4_ext_release(sb);
	ext4_release_system_zone(sb);
failed_mount4a:
Al Viro's avatar
Al Viro committed
4174
	dput(sb->s_root);
4175
	sb->s_root = NULL;
Al Viro's avatar
Al Viro committed
4176
failed_mount4:
4177
	ext4_msg(sb, KERN_ERR, "mount failed");
4178 4179
	if (EXT4_SB(sb)->rsv_conversion_wq)
		destroy_workqueue(EXT4_SB(sb)->rsv_conversion_wq);
4180
failed_mount_wq:
Jan Kara's avatar
Jan Kara committed
4181 4182 4183 4184
	if (sbi->s_mb_cache) {
		ext4_xattr_destroy_cache(sbi->s_mb_cache);
		sbi->s_mb_cache = NULL;
	}
4185 4186 4187 4188
	if (sbi->s_journal) {
		jbd2_journal_destroy(sbi->s_journal);
		sbi->s_journal = NULL;
	}
4189
failed_mount3a:
4190
	ext4_es_unregister_shrinker(sbi);
4191
failed_mount3:
4192
	del_timer_sync(&sbi->s_err_report);
4193 4194
	if (sbi->s_mmp_tsk)
		kthread_stop(sbi->s_mmp_tsk);
4195 4196 4197
failed_mount2:
	for (i = 0; i < db_count; i++)
		brelse(sbi->s_group_desc[i]);
Al Viro's avatar
Al Viro committed
4198
	kvfree(sbi->s_group_desc);
4199
failed_mount:
4200 4201
	if (sbi->s_chksum_driver)
		crypto_free_shash(sbi->s_chksum_driver);
4202
#ifdef CONFIG_QUOTA
Jan Kara's avatar
Jan Kara committed
4203
	for (i = 0; i < EXT4_MAXQUOTAS; i++)
4204 4205
		kfree(sbi->s_qf_names[i]);
#endif
4206
	ext4_blkdev_remove(sbi);
4207 4208
	brelse(bh);
out_fail:
4209
	/* sb->s_user_ns will be put when sb is destroyed */
4210
	sb->s_fs_info = NULL;
4211
	kfree(sbi->s_blockgroup_lock);
4212
out_free_base:
4213
	kfree(sbi);
4214
	kfree(orig_data);
4215
	return err ? err : ret;
4216 4217 4218 4219 4220 4221 4222
}

/*
 * Setup any per-fs journal parameters now.  We'll do this both on
 * initial mount, once the journal has been initialised but before we've
 * done any recovery; and again on any subsequent remount.
 */
4223
static void ext4_init_journal_params(struct super_block *sb, journal_t *journal)
4224
{
4225
	struct ext4_sb_info *sbi = EXT4_SB(sb);
4226

4227 4228 4229
	journal->j_commit_interval = sbi->s_commit_interval;
	journal->j_min_batch_time = sbi->s_min_batch_time;
	journal->j_max_batch_time = sbi->s_max_batch_time;
4230

4231
	write_lock(&journal->j_state_lock);
4232
	if (test_opt(sb, BARRIER))
4233
		journal->j_flags |= JBD2_BARRIER;
4234
	else
4235
		journal->j_flags &= ~JBD2_BARRIER;
4236 4237 4238 4239
	if (test_opt(sb, DATA_ERR_ABORT))
		journal->j_flags |= JBD2_ABORT_ON_SYNCDATA_ERR;
	else
		journal->j_flags &= ~JBD2_ABORT_ON_SYNCDATA_ERR;
4240
	write_unlock(&journal->j_state_lock);
4241 4242
}

4243
static journal_t *ext4_get_journal(struct super_block *sb,
4244 4245 4246 4247 4248
				   unsigned int journal_inum)
{
	struct inode *journal_inode;
	journal_t *journal;

4249
	BUG_ON(!ext4_has_feature_journal(sb));
4250

4251 4252 4253 4254
	/* First, test for the existence of a valid inode on disk.  Bad
	 * things happen if we iget() an unused inode, as the subsequent
	 * iput() will try to delete it. */

4255 4256
	journal_inode = ext4_iget(sb, journal_inum);
	if (IS_ERR(journal_inode)) {
4257
		ext4_msg(sb, KERN_ERR, "no journal found");
4258 4259 4260 4261 4262
		return NULL;
	}
	if (!journal_inode->i_nlink) {
		make_bad_inode(journal_inode);
		iput(journal_inode);
4263
		ext4_msg(sb, KERN_ERR, "journal inode is deleted");
4264 4265 4266
		return NULL;
	}

4267
	jbd_debug(2, "Journal inode found at %p: %lld bytes\n",
4268
		  journal_inode, journal_inode->i_size);
4269
	if (!S_ISREG(journal_inode->i_mode)) {
4270
		ext4_msg(sb, KERN_ERR, "invalid journal inode");
4271 4272 4273 4274
		iput(journal_inode);
		return NULL;
	}

4275
	journal = jbd2_journal_init_inode(journal_inode);
4276
	if (!journal) {
4277
		ext4_msg(sb, KERN_ERR, "Could not load journal inode");
4278 4279 4280 4281
		iput(journal_inode);
		return NULL;
	}
	journal->j_private = sb;
4282
	ext4_init_journal_params(sb, journal);
4283 4284 4285
	return journal;
}

4286
static journal_t *ext4_get_dev_journal(struct super_block *sb,
4287 4288
				       dev_t j_dev)
{
4289
	struct buffer_head *bh;
4290
	journal_t *journal;
4291 4292
	ext4_fsblk_t start;
	ext4_fsblk_t len;
4293
	int hblock, blocksize;
4294
	ext4_fsblk_t sb_block;
4295
	unsigned long offset;
4296
	struct ext4_super_block *es;
4297 4298
	struct block_device *bdev;

4299
	BUG_ON(!ext4_has_feature_journal(sb));
4300

4301
	bdev = ext4_blkdev_get(j_dev, sb);
4302 4303 4304 4305
	if (bdev == NULL)
		return NULL;

	blocksize = sb->s_blocksize;
4306
	hblock = bdev_logical_block_size(bdev);
4307
	if (blocksize < hblock) {
4308 4309
		ext4_msg(sb, KERN_ERR,
			"blocksize too small for journal device");
4310 4311 4312
		goto out_bdev;
	}

4313 4314
	sb_block = EXT4_MIN_BLOCK_SIZE / blocksize;
	offset = EXT4_MIN_BLOCK_SIZE % blocksize;
4315 4316
	set_blocksize(bdev, blocksize);
	if (!(bh = __bread(bdev, sb_block, blocksize))) {
4317 4318
		ext4_msg(sb, KERN_ERR, "couldn't read superblock of "
		       "external journal");
4319 4320 4321
		goto out_bdev;
	}

4322
	es = (struct ext4_super_block *) (bh->b_data + offset);
4323
	if ((le16_to_cpu(es->s_magic) != EXT4_SUPER_MAGIC) ||
4324
	    !(le32_to_cpu(es->s_feature_incompat) &
4325
	      EXT4_FEATURE_INCOMPAT_JOURNAL_DEV)) {
4326 4327
		ext4_msg(sb, KERN_ERR, "external journal has "
					"bad superblock");
4328 4329 4330 4331
		brelse(bh);
		goto out_bdev;
	}

4332 4333 4334 4335 4336 4337 4338 4339 4340
	if ((le32_to_cpu(es->s_feature_ro_compat) &
	     EXT4_FEATURE_RO_COMPAT_METADATA_CSUM) &&
	    es->s_checksum != ext4_superblock_csum(sb, es)) {
		ext4_msg(sb, KERN_ERR, "external journal has "
				       "corrupt superblock");
		brelse(bh);
		goto out_bdev;
	}

4341
	if (memcmp(EXT4_SB(sb)->s_es->s_journal_uuid, es->s_uuid, 16)) {
4342
		ext4_msg(sb, KERN_ERR, "journal UUID does not match");
4343 4344 4345 4346
		brelse(bh);
		goto out_bdev;
	}

Laurent Vivier's avatar
Laurent Vivier committed
4347
	len = ext4_blocks_count(es);
4348 4349 4350
	start = sb_block + 1;
	brelse(bh);	/* we're done with the superblock */

4351
	journal = jbd2_journal_init_dev(bdev, sb->s_bdev,
4352 4353
					start, len, blocksize);
	if (!journal) {
4354
		ext4_msg(sb, KERN_ERR, "failed to create device journal");
4355 4356 4357
		goto out_bdev;
	}
	journal->j_private = sb;
4358
	ll_rw_block(READ | REQ_META | REQ_PRIO, 1, &journal->j_sb_buffer);
4359 4360
	wait_on_buffer(journal->j_sb_buffer);
	if (!buffer_uptodate(journal->j_sb_buffer)) {
4361
		ext4_msg(sb, KERN_ERR, "I/O error on journal device");
4362 4363 4364
		goto out_journal;
	}
	if (be32_to_cpu(journal->j_superblock->s_nr_users) != 1) {
4365 4366
		ext4_msg(sb, KERN_ERR, "External journal has more than one "
					"user (unsupported) - %d",
4367 4368 4369
			be32_to_cpu(journal->j_superblock->s_nr_users));
		goto out_journal;
	}
4370 4371
	EXT4_SB(sb)->journal_bdev = bdev;
	ext4_init_journal_params(sb, journal);
4372
	return journal;
4373

4374
out_journal:
4375
	jbd2_journal_destroy(journal);
4376
out_bdev:
4377
	ext4_blkdev_put(bdev);
4378 4379 4380
	return NULL;
}

4381 4382
static int ext4_load_journal(struct super_block *sb,
			     struct ext4_super_block *es,
4383 4384 4385 4386 4387 4388 4389 4390
			     unsigned long journal_devnum)
{
	journal_t *journal;
	unsigned int journal_inum = le32_to_cpu(es->s_journal_inum);
	dev_t journal_dev;
	int err = 0;
	int really_read_only;

4391
	BUG_ON(!ext4_has_feature_journal(sb));
4392

4393 4394
	if (journal_devnum &&
	    journal_devnum != le32_to_cpu(es->s_journal_dev)) {
4395 4396
		ext4_msg(sb, KERN_INFO, "external journal device major/minor "
			"numbers have changed");
4397 4398 4399 4400 4401 4402 4403 4404 4405 4406 4407
		journal_dev = new_decode_dev(journal_devnum);
	} else
		journal_dev = new_decode_dev(le32_to_cpu(es->s_journal_dev));

	really_read_only = bdev_read_only(sb->s_bdev);

	/*
	 * Are we loading a blank journal or performing recovery after a
	 * crash?  For recovery, we need to check in advance whether we
	 * can get read-write access to the device.
	 */
4408
	if (ext4_has_feature_journal_needs_recovery(sb)) {
4409
		if (sb->s_flags & MS_RDONLY) {
4410 4411
			ext4_msg(sb, KERN_INFO, "INFO: recovery "
					"required on readonly filesystem");
4412
			if (really_read_only) {
4413 4414
				ext4_msg(sb, KERN_ERR, "write access "
					"unavailable, cannot proceed");
4415 4416
				return -EROFS;
			}
4417 4418
			ext4_msg(sb, KERN_INFO, "write access will "
			       "be enabled during recovery");
4419 4420 4421 4422
		}
	}

	if (journal_inum && journal_dev) {
4423 4424
		ext4_msg(sb, KERN_ERR, "filesystem has both journal "
		       "and inode journals!");
4425 4426 4427 4428
		return -EINVAL;
	}

	if (journal_inum) {
4429
		if (!(journal = ext4_get_journal(sb, journal_inum)))
4430 4431
			return -EINVAL;
	} else {
4432
		if (!(journal = ext4_get_dev_journal(sb, journal_dev)))
4433 4434 4435
			return -EINVAL;
	}

4436
	if (!(journal->j_flags & JBD2_BARRIER))
4437
		ext4_msg(sb, KERN_INFO, "barriers disabled");
4438

4439
	if (!ext4_has_feature_journal_needs_recovery(sb))
4440
		err = jbd2_journal_wipe(journal, !really_read_only);
4441 4442 4443 4444 4445
	if (!err) {
		char *save = kmalloc(EXT4_S_ERR_LEN, GFP_KERNEL);
		if (save)
			memcpy(save, ((char *) es) +
			       EXT4_S_ERR_START, EXT4_S_ERR_LEN);
4446
		err = jbd2_journal_load(journal);
4447 4448 4449 4450 4451
		if (save)
			memcpy(((char *) es) + EXT4_S_ERR_START,
			       save, EXT4_S_ERR_LEN);
		kfree(save);
	}
4452 4453

	if (err) {
4454
		ext4_msg(sb, KERN_ERR, "error loading journal");
4455
		jbd2_journal_destroy(journal);
4456 4457 4458
		return err;
	}

4459 4460
	EXT4_SB(sb)->s_journal = journal;
	ext4_clear_journal_err(sb, es);
4461

4462
	if (!really_read_only && journal_devnum &&
4463 4464 4465 4466
	    journal_devnum != le32_to_cpu(es->s_journal_dev)) {
		es->s_journal_dev = cpu_to_le32(journal_devnum);

		/* Make sure we flush the recovery flag to disk. */
4467
		ext4_commit_super(sb, 1);
4468 4469 4470 4471 4472
	}

	return 0;
}

4473
static int ext4_commit_super(struct super_block *sb, int sync)
4474
{
4475
	struct ext4_super_block *es = EXT4_SB(sb)->s_es;
4476
	struct buffer_head *sbh = EXT4_SB(sb)->s_sbh;
4477
	int error = 0;
4478

4479
	if (!sbh || block_device_ejected(sb))
4480
		return error;
4481 4482 4483 4484 4485 4486 4487 4488 4489
	if (buffer_write_io_error(sbh)) {
		/*
		 * Oh, dear.  A previous attempt to write the
		 * superblock failed.  This could happen because the
		 * USB device was yanked out.  Or it could happen to
		 * be a transient write error and maybe the block will
		 * be remapped.  Nothing we can do but to retry the
		 * write and hope for the best.
		 */
4490 4491
		ext4_msg(sb, KERN_ERR, "previous I/O error to "
		       "superblock detected");
4492 4493 4494
		clear_buffer_write_io_error(sbh);
		set_buffer_uptodate(sbh);
	}
4495 4496 4497 4498 4499 4500 4501 4502 4503 4504 4505 4506
	/*
	 * If the file system is mounted read-only, don't update the
	 * superblock write time.  This avoids updating the superblock
	 * write time when we are mounting the root file system
	 * read/only but we need to replay the journal; at that point,
	 * for people who are east of GMT and who make their clock
	 * tick in localtime for Windows bug-for-bug compatibility,
	 * the clock is set in the future, and this will cause e2fsck
	 * to complain and force a full file system check.
	 */
	if (!(sb->s_flags & MS_RDONLY))
		es->s_wtime = cpu_to_le32(get_seconds());
4507 4508 4509
	if (sb->s_bdev->bd_part)
		es->s_kbytes_written =
			cpu_to_le64(EXT4_SB(sb)->s_kbytes_written +
4510 4511
			    ((part_stat_read(sb->s_bdev->bd_part, sectors[1]) -
			      EXT4_SB(sb)->s_sectors_written_start) >> 1));
4512 4513 4514
	else
		es->s_kbytes_written =
			cpu_to_le64(EXT4_SB(sb)->s_kbytes_written);
4515 4516
	if (percpu_counter_initialized(&EXT4_SB(sb)->s_freeclusters_counter))
		ext4_free_blocks_count_set(es,
4517 4518
			EXT4_C2B(EXT4_SB(sb), percpu_counter_sum_positive(
				&EXT4_SB(sb)->s_freeclusters_counter)));
4519 4520 4521
	if (percpu_counter_initialized(&EXT4_SB(sb)->s_freeinodes_counter))
		es->s_free_inodes_count =
			cpu_to_le32(percpu_counter_sum_positive(
4522
				&EXT4_SB(sb)->s_freeinodes_counter));
4523
	BUFFER_TRACE(sbh, "marking dirty");
4524
	ext4_superblock_csum_set(sb);
4525
	mark_buffer_dirty(sbh);
4526
	if (sync) {
4527 4528
		error = __sync_dirty_buffer(sbh,
			test_opt(sb, BARRIER) ? WRITE_FUA : WRITE_SYNC);
4529 4530 4531 4532 4533
		if (error)
			return error;

		error = buffer_write_io_error(sbh);
		if (error) {
4534 4535
			ext4_msg(sb, KERN_ERR, "I/O error while writing "
			       "superblock");
4536 4537 4538 4539
			clear_buffer_write_io_error(sbh);
			set_buffer_uptodate(sbh);
		}
	}
4540
	return error;
4541 4542 4543 4544 4545 4546 4547
}

/*
 * Have we just finished recovery?  If so, and if we are mounting (or
 * remounting) the filesystem readonly, then we will end up with a
 * consistent fs on disk.  Record that fact.
 */
4548 4549
static void ext4_mark_recovery_complete(struct super_block *sb,
					struct ext4_super_block *es)
4550
{
4551
	journal_t *journal = EXT4_SB(sb)->s_journal;
4552

4553
	if (!ext4_has_feature_journal(sb)) {
4554 4555 4556
		BUG_ON(journal != NULL);
		return;
	}
4557
	jbd2_journal_lock_updates(journal);
4558 4559 4560
	if (jbd2_journal_flush(journal) < 0)
		goto out;

4561
	if (ext4_has_feature_journal_needs_recovery(sb) &&
4562
	    sb->s_flags & MS_RDONLY) {
4563
		ext4_clear_feature_journal_needs_recovery(sb);
4564
		ext4_commit_super(sb, 1);
4565
	}
4566 4567

out:
4568
	jbd2_journal_unlock_updates(journal);
4569 4570 4571 4572 4573 4574 4575
}

/*
 * If we are mounting (or read-write remounting) a filesystem whose journal
 * has recorded an error from a previous lifetime, move that error to the
 * main filesystem now.
 */
4576 4577
static void ext4_clear_journal_err(struct super_block *sb,
				   struct ext4_super_block *es)
4578 4579 4580 4581 4582
{
	journal_t *journal;
	int j_errno;
	const char *errstr;

4583
	BUG_ON(!ext4_has_feature_journal(sb));
4584

4585
	journal = EXT4_SB(sb)->s_journal;
4586 4587 4588

	/*
	 * Now check for any error status which may have been recorded in the
4589
	 * journal by a prior ext4_error() or ext4_abort()
4590 4591
	 */

4592
	j_errno = jbd2_journal_errno(journal);
4593 4594 4595
	if (j_errno) {
		char nbuf[16];

4596
		errstr = ext4_decode_error(sb, j_errno, nbuf);
4597
		ext4_warning(sb, "Filesystem error recorded "
4598
			     "from previous mount: %s", errstr);
4599
		ext4_warning(sb, "Marking fs in need of filesystem check.");
4600

4601 4602
		EXT4_SB(sb)->s_mount_state |= EXT4_ERROR_FS;
		es->s_state |= cpu_to_le16(EXT4_ERROR_FS);
4603
		ext4_commit_super(sb, 1);
4604

4605
		jbd2_journal_clear_err(journal);
4606
		jbd2_journal_update_sb_errno(journal);
4607 4608 4609 4610 4611 4612 4613
	}
}

/*
 * Force the running and committing transactions to commit,
 * and wait on the commit.
 */
4614
int ext4_force_commit(struct super_block *sb)
4615 4616 4617 4618 4619 4620
{
	journal_t *journal;

	if (sb->s_flags & MS_RDONLY)
		return 0;

4621
	journal = EXT4_SB(sb)->s_journal;
4622
	return ext4_journal_force_commit(journal);
4623 4624
}

4625
static int ext4_sync_fs(struct super_block *sb, int wait)
4626
{
4627
	int ret = 0;
4628
	tid_t target;
4629
	bool needs_barrier = false;
4630
	struct ext4_sb_info *sbi = EXT4_SB(sb);
4631

4632
	trace_ext4_sync_fs(sb, wait);
4633
	flush_workqueue(sbi->rsv_conversion_wq);
4634 4635 4636 4637 4638
	/*
	 * Writeback quota in non-journalled quota case - journalled quota has
	 * no dirty dquots
	 */
	dquot_writeback_dquots(sb, -1);
4639 4640 4641 4642 4643
	/*
	 * Data writeback is possible w/o journal transaction, so barrier must
	 * being sent at the end of the function. But we can skip it if
	 * transaction_commit will do it for us.
	 */
4644 4645 4646 4647 4648 4649 4650 4651 4652 4653 4654 4655
	if (sbi->s_journal) {
		target = jbd2_get_latest_transaction(sbi->s_journal);
		if (wait && sbi->s_journal->j_flags & JBD2_BARRIER &&
		    !jbd2_trans_will_send_data_barrier(sbi->s_journal, target))
			needs_barrier = true;

		if (jbd2_journal_start_commit(sbi->s_journal, &target)) {
			if (wait)
				ret = jbd2_log_wait_commit(sbi->s_journal,
							   target);
		}
	} else if (wait && test_opt(sb, BARRIER))
4656 4657 4658 4659 4660 4661
		needs_barrier = true;
	if (needs_barrier) {
		int err;
		err = blkdev_issue_flush(sb->s_bdev, GFP_KERNEL, NULL);
		if (!ret)
			ret = err;
4662
	}
4663 4664 4665 4666

	return ret;
}

4667 4668 4669
/*
 * LVM calls this function before a (read-only) snapshot is created.  This
 * gives us a chance to flush the journal completely and mark the fs clean.
4670 4671
 *
 * Note that only this function cannot bring a filesystem to be in a clean
4672 4673
 * state independently. It relies on upper layer to stop all data & metadata
 * modifications.
4674
 */
4675
static int ext4_freeze(struct super_block *sb)
4676
{
4677 4678
	int error = 0;
	journal_t *journal;
4679

4680 4681
	if (sb->s_flags & MS_RDONLY)
		return 0;
4682

4683
	journal = EXT4_SB(sb)->s_journal;
4684

4685 4686 4687
	if (journal) {
		/* Now we set up the journal barrier. */
		jbd2_journal_lock_updates(journal);
4688

4689 4690 4691 4692 4693 4694 4695
		/*
		 * Don't clear the needs_recovery flag if we failed to
		 * flush the journal.
		 */
		error = jbd2_journal_flush(journal);
		if (error < 0)
			goto out;
4696 4697

		/* Journal blocked and flushed, clear needs_recovery flag. */
4698
		ext4_clear_feature_journal_needs_recovery(sb);
4699
	}
4700 4701

	error = ext4_commit_super(sb, 1);
4702
out:
4703 4704 4705
	if (journal)
		/* we rely on upper layer to stop further updates */
		jbd2_journal_unlock_updates(journal);
4706
	return error;
4707 4708 4709 4710 4711 4712
}

/*
 * Called by LVM after the snapshot is done.  We need to reset the RECOVER
 * flag here, even though the filesystem is not technically dirty yet.
 */
4713
static int ext4_unfreeze(struct super_block *sb)
4714
{
4715 4716 4717
	if (sb->s_flags & MS_RDONLY)
		return 0;

4718 4719
	if (EXT4_SB(sb)->s_journal) {
		/* Reset the needs_recovery flag before the fs is unlocked. */
4720
		ext4_set_feature_journal_needs_recovery(sb);
4721 4722
	}

4723
	ext4_commit_super(sb, 1);
4724
	return 0;
4725 4726
}

4727 4728 4729 4730 4731
/*
 * Structure to save mount options for ext4_remount's benefit
 */
struct ext4_mount_options {
	unsigned long s_mount_opt;
4732
	unsigned long s_mount_opt2;
4733 4734
	kuid_t s_resuid;
	kgid_t s_resgid;
4735 4736 4737 4738
	unsigned long s_commit_interval;
	u32 s_min_batch_time, s_max_batch_time;
#ifdef CONFIG_QUOTA
	int s_jquota_fmt;
Jan Kara's avatar
Jan Kara committed
4739
	char *s_qf_names[EXT4_MAXQUOTAS];
4740 4741 4742
#endif
};

4743
static int ext4_remount(struct super_block *sb, int *flags, char *data)
4744
{
4745
	struct ext4_super_block *es;
4746
	struct ext4_sb_info *sbi = EXT4_SB(sb);
4747
	unsigned long old_sb_flags;
4748
	struct ext4_mount_options old_opts;
4749
	int enable_quota = 0;
4750
	ext4_group_t g;
4751
	unsigned int journal_ioprio = DEFAULT_JOURNAL_IOPRIO;
4752
	int err = 0;
4753
#ifdef CONFIG_QUOTA
4754
	int i, j;
4755
#endif
4756
	char *orig_data = kstrdup(data, GFP_KERNEL);
4757 4758 4759 4760

	/* Store the original options */
	old_sb_flags = sb->s_flags;
	old_opts.s_mount_opt = sbi->s_mount_opt;
4761
	old_opts.s_mount_opt2 = sbi->s_mount_opt2;
4762 4763 4764
	old_opts.s_resuid = sbi->s_resuid;
	old_opts.s_resgid = sbi->s_resgid;
	old_opts.s_commit_interval = sbi->s_commit_interval;
4765 4766
	old_opts.s_min_batch_time = sbi->s_min_batch_time;
	old_opts.s_max_batch_time = sbi->s_max_batch_time;
4767 4768
#ifdef CONFIG_QUOTA
	old_opts.s_jquota_fmt = sbi->s_jquota_fmt;
Jan Kara's avatar
Jan Kara committed
4769
	for (i = 0; i < EXT4_MAXQUOTAS; i++)
4770 4771 4772 4773 4774 4775
		if (sbi->s_qf_names[i]) {
			old_opts.s_qf_names[i] = kstrdup(sbi->s_qf_names[i],
							 GFP_KERNEL);
			if (!old_opts.s_qf_names[i]) {
				for (j = 0; j < i; j++)
					kfree(old_opts.s_qf_names[j]);
4776
				kfree(orig_data);
4777 4778 4779 4780
				return -ENOMEM;
			}
		} else
			old_opts.s_qf_names[i] = NULL;
4781
#endif
4782 4783
	if (sbi->s_journal && sbi->s_journal->j_task->io_context)
		journal_ioprio = sbi->s_journal->j_task->io_context->ioprio;
4784

4785
	if (!parse_options(data, sb, NULL, &journal_ioprio, 1)) {
4786 4787 4788 4789
		err = -EINVAL;
		goto restore_opts;
	}

4790
	if ((old_opts.s_mount_opt & EXT4_MOUNT_JOURNAL_CHECKSUM) ^
4791 4792
	    test_opt(sb, JOURNAL_CHECKSUM)) {
		ext4_msg(sb, KERN_ERR, "changing journal_checksum "
4793 4794
			 "during remount not supported; ignoring");
		sbi->s_mount_opt ^= EXT4_MOUNT_JOURNAL_CHECKSUM;
4795 4796
	}

4797 4798 4799 4800 4801 4802 4803 4804 4805 4806 4807 4808 4809
	if (test_opt(sb, DATA_FLAGS) == EXT4_MOUNT_JOURNAL_DATA) {
		if (test_opt2(sb, EXPLICIT_DELALLOC)) {
			ext4_msg(sb, KERN_ERR, "can't mount with "
				 "both data=journal and delalloc");
			err = -EINVAL;
			goto restore_opts;
		}
		if (test_opt(sb, DIOREAD_NOLOCK)) {
			ext4_msg(sb, KERN_ERR, "can't mount with "
				 "both data=journal and dioread_nolock");
			err = -EINVAL;
			goto restore_opts;
		}
Ross Zwisler's avatar
Ross Zwisler committed
4810 4811 4812 4813 4814 4815 4816 4817 4818 4819 4820 4821
		if (test_opt(sb, DAX)) {
			ext4_msg(sb, KERN_ERR, "can't mount with "
				 "both data=journal and dax");
			err = -EINVAL;
			goto restore_opts;
		}
	}

	if ((sbi->s_mount_opt ^ old_opts.s_mount_opt) & EXT4_MOUNT_DAX) {
		ext4_msg(sb, KERN_WARNING, "warning: refusing change of "
			"dax flag with busy inodes while remounting");
		sbi->s_mount_opt ^= EXT4_MOUNT_DAX;
4822 4823
	}

4824
	if (sbi->s_mount_flags & EXT4_MF_FS_ABORTED)
4825
		ext4_abort(sb, "Abort forced by user");
4826 4827

	sb->s_flags = (sb->s_flags & ~MS_POSIXACL) |
4828
		(test_opt(sb, POSIX_ACL) ? MS_POSIXACL : 0);
4829 4830 4831

	es = sbi->s_es;

4832
	if (sbi->s_journal) {
4833
		ext4_init_journal_params(sb, sbi->s_journal);
4834 4835
		set_task_ioprio(sbi->s_journal->j_task, journal_ioprio);
	}
4836

4837 4838 4839
	if (*flags & MS_LAZYTIME)
		sb->s_flags |= MS_LAZYTIME;

4840
	if ((*flags & MS_RDONLY) != (sb->s_flags & MS_RDONLY)) {
4841
		if (sbi->s_mount_flags & EXT4_MF_FS_ABORTED) {
4842 4843 4844 4845 4846
			err = -EROFS;
			goto restore_opts;
		}

		if (*flags & MS_RDONLY) {
4847 4848 4849
			err = sync_filesystem(sb);
			if (err < 0)
				goto restore_opts;
4850 4851
			err = dquot_suspend(sb, -1);
			if (err < 0)
4852 4853
				goto restore_opts;

4854 4855 4856 4857 4858 4859 4860 4861 4862 4863 4864
			/*
			 * First of all, the unconditional stuff we have to do
			 * to disable replay of the journal when we next remount
			 */
			sb->s_flags |= MS_RDONLY;

			/*
			 * OK, test if we are remounting a valid rw partition
			 * readonly, and if so set the rdonly flag and then
			 * mark the partition as valid again.
			 */
4865 4866
			if (!(es->s_state & cpu_to_le16(EXT4_VALID_FS)) &&
			    (sbi->s_mount_state & EXT4_VALID_FS))
4867 4868
				es->s_state = cpu_to_le16(sbi->s_mount_state);

4869
			if (sbi->s_journal)
4870
				ext4_mark_recovery_complete(sb, es);
4871
		} else {
4872
			/* Make sure we can mount this feature set readwrite */
4873
			if (ext4_has_feature_readonly(sb) ||
4874
			    !ext4_feature_set_ok(sb, 0)) {
4875 4876 4877
				err = -EROFS;
				goto restore_opts;
			}
4878 4879
			/*
			 * Make sure the group descriptor checksums
4880
			 * are sane.  If they aren't, refuse to remount r/w.
4881 4882 4883 4884 4885
			 */
			for (g = 0; g < sbi->s_groups_count; g++) {
				struct ext4_group_desc *gdp =
					ext4_get_group_desc(sb, g, NULL);

4886
				if (!ext4_group_desc_csum_verify(sb, g, gdp)) {
4887 4888
					ext4_msg(sb, KERN_ERR,
	       "ext4_remount: Checksum for group %u failed (%u!=%u)",
4889
		g, le16_to_cpu(ext4_group_desc_csum(sb, g, gdp)),
4890
					       le16_to_cpu(gdp->bg_checksum));
4891
					err = -EFSBADCRC;
4892 4893 4894 4895
					goto restore_opts;
				}
			}

4896 4897 4898 4899 4900 4901
			/*
			 * If we have an unprocessed orphan list hanging
			 * around from a previously readonly bdev mount,
			 * require a full umount/remount for now.
			 */
			if (es->s_last_orphan) {
4902
				ext4_msg(sb, KERN_WARNING, "Couldn't "
4903 4904
				       "remount RDWR because of unprocessed "
				       "orphan inode list.  Please "
4905
				       "umount/remount instead");
4906 4907 4908 4909
				err = -EINVAL;
				goto restore_opts;
			}

4910 4911 4912 4913 4914 4915
			/*
			 * Mounting a RDONLY partition read-write, so reread
			 * and store the current valid flag.  (It may have
			 * been changed by e2fsck since we originally mounted
			 * the partition.)
			 */
4916 4917
			if (sbi->s_journal)
				ext4_clear_journal_err(sb, es);
4918
			sbi->s_mount_state = le16_to_cpu(es->s_state);
4919
			if (!ext4_setup_super(sb, es, 0))
4920
				sb->s_flags &= ~MS_RDONLY;
4921
			if (ext4_has_feature_mmp(sb))
4922 4923 4924 4925 4926
				if (ext4_multi_mount_protect(sb,
						le64_to_cpu(es->s_mmp_block))) {
					err = -EROFS;
					goto restore_opts;
				}
4927
			enable_quota = 1;
4928 4929
		}
	}
4930 4931 4932 4933 4934 4935 4936 4937 4938 4939 4940 4941 4942

	/*
	 * Reinitialize lazy itable initialization thread based on
	 * current settings
	 */
	if ((sb->s_flags & MS_RDONLY) || !test_opt(sb, INIT_INODE_TABLE))
		ext4_unregister_li_request(sb);
	else {
		ext4_group_t first_not_zeroed;
		first_not_zeroed = ext4_has_uninit_itable(sb);
		ext4_register_li_request(sb, first_not_zeroed);
	}

4943
	ext4_setup_system_zone(sb);
4944
	if (sbi->s_journal == NULL && !(old_sb_flags & MS_RDONLY))
4945
		ext4_commit_super(sb, 1);
4946

4947 4948
#ifdef CONFIG_QUOTA
	/* Release old quota file names */
Jan Kara's avatar
Jan Kara committed
4949
	for (i = 0; i < EXT4_MAXQUOTAS; i++)
4950
		kfree(old_opts.s_qf_names[i]);
4951 4952 4953
	if (enable_quota) {
		if (sb_any_quota_suspended(sb))
			dquot_resume(sb, -1);
4954
		else if (ext4_has_feature_quota(sb)) {
4955
			err = ext4_enable_quotas(sb);
4956
			if (err)
4957 4958 4959
				goto restore_opts;
		}
	}
4960
#endif
4961

4962
	*flags = (*flags & ~MS_LAZYTIME) | (sb->s_flags & MS_LAZYTIME);
4963 4964
	ext4_msg(sb, KERN_INFO, "re-mounted. Opts: %s", orig_data);
	kfree(orig_data);
4965
	return 0;
4966

4967 4968 4969
restore_opts:
	sb->s_flags = old_sb_flags;
	sbi->s_mount_opt = old_opts.s_mount_opt;
4970
	sbi->s_mount_opt2 = old_opts.s_mount_opt2;
4971 4972 4973
	sbi->s_resuid = old_opts.s_resuid;
	sbi->s_resgid = old_opts.s_resgid;
	sbi->s_commit_interval = old_opts.s_commit_interval;
4974 4975
	sbi->s_min_batch_time = old_opts.s_min_batch_time;
	sbi->s_max_batch_time = old_opts.s_max_batch_time;
4976 4977
#ifdef CONFIG_QUOTA
	sbi->s_jquota_fmt = old_opts.s_jquota_fmt;
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Jan Kara committed
4978
	for (i = 0; i < EXT4_MAXQUOTAS; i++) {
4979
		kfree(sbi->s_qf_names[i]);
4980 4981 4982
		sbi->s_qf_names[i] = old_opts.s_qf_names[i];
	}
#endif
4983
	kfree(orig_data);
4984 4985 4986
	return err;
}

4987
static int ext4_statfs(struct dentry *dentry, struct kstatfs *buf)
4988 4989
{
	struct super_block *sb = dentry->d_sb;
4990 4991
	struct ext4_sb_info *sbi = EXT4_SB(sb);
	struct ext4_super_block *es = sbi->s_es;
Lukas Czerner's avatar
Lukas Czerner committed
4992
	ext4_fsblk_t overhead = 0, resv_blocks;
Pekka Enberg's avatar
Pekka Enberg committed
4993
	u64 fsid;
4994
	s64 bfree;
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4995
	resv_blocks = EXT4_C2B(sbi, atomic64_read(&sbi->s_resv_clusters));
4996

4997 4998
	if (!test_opt(sb, MINIX_DF))
		overhead = sbi->s_overhead;
4999

5000
	buf->f_type = EXT4_SUPER_MAGIC;
5001
	buf->f_bsize = sb->s_blocksize;
5002
	buf->f_blocks = ext4_blocks_count(es) - EXT4_C2B(sbi, overhead);
5003 5004
	bfree = percpu_counter_sum_positive(&sbi->s_freeclusters_counter) -
		percpu_counter_sum_positive(&sbi->s_dirtyclusters_counter);
5005
	/* prevent underflow in case that few free space is available */
5006
	buf->f_bfree = EXT4_C2B(sbi, max_t(s64, bfree, 0));
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Lukas Czerner committed
5007 5008 5009
	buf->f_bavail = buf->f_bfree -
			(ext4_r_blocks_count(es) + resv_blocks);
	if (buf->f_bfree < (ext4_r_blocks_count(es) + resv_blocks))
5010 5011
		buf->f_bavail = 0;
	buf->f_files = le32_to_cpu(es->s_inodes_count);
5012
	buf->f_ffree = percpu_counter_sum_positive(&sbi->s_freeinodes_counter);
5013
	buf->f_namelen = EXT4_NAME_LEN;
Pekka Enberg's avatar
Pekka Enberg committed
5014 5015 5016 5017
	fsid = le64_to_cpup((void *)es->s_uuid) ^
	       le64_to_cpup((void *)es->s_uuid + sizeof(u64));
	buf->f_fsid.val[0] = fsid & 0xFFFFFFFFUL;
	buf->f_fsid.val[1] = (fsid >> 32) & 0xFFFFFFFFUL;
5018

5019 5020 5021
	return 0;
}

5022 5023
/* Helper function for writing quotas on sync - we need to start transaction
 * before quota file is locked for write. Otherwise the are possible deadlocks:
5024
 * Process 1                         Process 2
5025
 * ext4_create()                     quota_sync()
5026
 *   jbd2_journal_start()                  write_dquot()
5027
 *   dquot_initialize()                         down(dqio_mutex)
5028
 *     down(dqio_mutex)                    jbd2_journal_start()
5029 5030 5031 5032 5033 5034 5035
 *
 */

#ifdef CONFIG_QUOTA

static inline struct inode *dquot_to_inode(struct dquot *dquot)
{
5036
	return sb_dqopt(dquot->dq_sb)->files[dquot->dq_id.type];
5037 5038
}

5039
static int ext4_write_dquot(struct dquot *dquot)
5040 5041 5042 5043 5044 5045
{
	int ret, err;
	handle_t *handle;
	struct inode *inode;

	inode = dquot_to_inode(dquot);
5046
	handle = ext4_journal_start(inode, EXT4_HT_QUOTA,
5047
				    EXT4_QUOTA_TRANS_BLOCKS(dquot->dq_sb));
5048 5049 5050
	if (IS_ERR(handle))
		return PTR_ERR(handle);
	ret = dquot_commit(dquot);
5051
	err = ext4_journal_stop(handle);
5052 5053 5054 5055 5056
	if (!ret)
		ret = err;
	return ret;
}

5057
static int ext4_acquire_dquot(struct dquot *dquot)
5058 5059 5060 5061
{
	int ret, err;
	handle_t *handle;

5062
	handle = ext4_journal_start(dquot_to_inode(dquot), EXT4_HT_QUOTA,
5063
				    EXT4_QUOTA_INIT_BLOCKS(dquot->dq_sb));
5064 5065 5066
	if (IS_ERR(handle))
		return PTR_ERR(handle);
	ret = dquot_acquire(dquot);
5067
	err = ext4_journal_stop(handle);
5068 5069 5070 5071 5072
	if (!ret)
		ret = err;
	return ret;
}

5073
static int ext4_release_dquot(struct dquot *dquot)
5074 5075 5076 5077
{
	int ret, err;
	handle_t *handle;

5078
	handle = ext4_journal_start(dquot_to_inode(dquot), EXT4_HT_QUOTA,
5079
				    EXT4_QUOTA_DEL_BLOCKS(dquot->dq_sb));
Jan Kara's avatar
Jan Kara committed
5080 5081 5082
	if (IS_ERR(handle)) {
		/* Release dquot anyway to avoid endless cycle in dqput() */
		dquot_release(dquot);
5083
		return PTR_ERR(handle);
Jan Kara's avatar
Jan Kara committed
5084
	}
5085
	ret = dquot_release(dquot);
5086
	err = ext4_journal_stop(handle);
5087 5088 5089 5090 5091
	if (!ret)
		ret = err;
	return ret;
}

5092
static int ext4_mark_dquot_dirty(struct dquot *dquot)
5093
{
5094 5095 5096
	struct super_block *sb = dquot->dq_sb;
	struct ext4_sb_info *sbi = EXT4_SB(sb);

5097
	/* Are we journaling quotas? */
5098
	if (ext4_has_feature_quota(sb) ||
5099
	    sbi->s_qf_names[USRQUOTA] || sbi->s_qf_names[GRPQUOTA]) {
5100
		dquot_mark_dquot_dirty(dquot);
5101
		return ext4_write_dquot(dquot);
5102 5103 5104 5105 5106
	} else {
		return dquot_mark_dquot_dirty(dquot);
	}
}

5107
static int ext4_write_info(struct super_block *sb, int type)
5108 5109 5110 5111 5112
{
	int ret, err;
	handle_t *handle;

	/* Data block + inode block */
5113
	handle = ext4_journal_start(d_inode(sb->s_root), EXT4_HT_QUOTA, 2);
5114 5115 5116
	if (IS_ERR(handle))
		return PTR_ERR(handle);
	ret = dquot_commit_info(sb, type);
5117
	err = ext4_journal_stop(handle);
5118 5119 5120 5121 5122 5123 5124 5125 5126
	if (!ret)
		ret = err;
	return ret;
}

/*
 * Turn on quotas during mount time - we need to find
 * the quota file and such...
 */
5127
static int ext4_quota_on_mount(struct super_block *sb, int type)
5128
{
5129 5130
	return dquot_quota_on_mount(sb, EXT4_SB(sb)->s_qf_names[type],
					EXT4_SB(sb)->s_jquota_fmt, type);
5131 5132
}

5133 5134 5135 5136 5137 5138 5139 5140 5141 5142 5143 5144 5145 5146
static void lockdep_set_quota_inode(struct inode *inode, int subclass)
{
	struct ext4_inode_info *ei = EXT4_I(inode);

	/* The first argument of lockdep_set_subclass has to be
	 * *exactly* the same as the argument to init_rwsem() --- in
	 * this case, in init_once() --- or lockdep gets unhappy
	 * because the name of the lock is set using the
	 * stringification of the argument to init_rwsem().
	 */
	(void) ei;	/* shut up clang warning if !CONFIG_LOCKDEP */
	lockdep_set_subclass(&ei->i_data_sem, subclass);
}

5147 5148 5149
/*
 * Standard function to be called on quota_on
 */
5150
static int ext4_quota_on(struct super_block *sb, int type, int format_id,
5151
			 struct path *path)
5152 5153 5154 5155 5156
{
	int err;

	if (!test_opt(sb, QUOTA))
		return -EINVAL;
5157

5158
	/* Quotafile not on the same filesystem? */
5159
	if (path->dentry->d_sb != sb)
5160
		return -EXDEV;
5161 5162
	/* Journaling quota? */
	if (EXT4_SB(sb)->s_qf_names[type]) {
5163
		/* Quotafile not in fs root? */
5164
		if (path->dentry->d_parent != sb->s_root)
5165 5166 5167
			ext4_msg(sb, KERN_WARNING,
				"Quota file not on filesystem root. "
				"Journaled quota will not work");
5168
	}
5169 5170 5171 5172 5173

	/*
	 * When we journal data on quota file, we have to flush journal to see
	 * all updates to the file when we bypass pagecache...
	 */
5174
	if (EXT4_SB(sb)->s_journal &&
5175
	    ext4_should_journal_data(d_inode(path->dentry))) {
5176 5177 5178 5179 5180
		/*
		 * We don't need to lock updates but journal_flush() could
		 * otherwise be livelocked...
		 */
		jbd2_journal_lock_updates(EXT4_SB(sb)->s_journal);
5181
		err = jbd2_journal_flush(EXT4_SB(sb)->s_journal);
5182
		jbd2_journal_unlock_updates(EXT4_SB(sb)->s_journal);
5183
		if (err)
5184
			return err;
5185
	}
5186 5187 5188 5189 5190 5191
	lockdep_set_quota_inode(path->dentry->d_inode, I_DATA_SEM_QUOTA);
	err = dquot_quota_on(sb, type, format_id, path);
	if (err)
		lockdep_set_quota_inode(path->dentry->d_inode,
					     I_DATA_SEM_NORMAL);
	return err;
5192 5193
}

5194 5195 5196 5197 5198
static int ext4_quota_enable(struct super_block *sb, int type, int format_id,
			     unsigned int flags)
{
	int err;
	struct inode *qf_inode;
Jan Kara's avatar
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5199
	unsigned long qf_inums[EXT4_MAXQUOTAS] = {
5200 5201 5202 5203
		le32_to_cpu(EXT4_SB(sb)->s_es->s_usr_quota_inum),
		le32_to_cpu(EXT4_SB(sb)->s_es->s_grp_quota_inum)
	};

5204
	BUG_ON(!ext4_has_feature_quota(sb));
5205 5206 5207 5208 5209 5210 5211 5212 5213 5214

	if (!qf_inums[type])
		return -EPERM;

	qf_inode = ext4_iget(sb, qf_inums[type]);
	if (IS_ERR(qf_inode)) {
		ext4_error(sb, "Bad quota inode # %lu", qf_inums[type]);
		return PTR_ERR(qf_inode);
	}

5215 5216
	/* Don't account quota for quota files to avoid recursion */
	qf_inode->i_flags |= S_NOQUOTA;
5217
	lockdep_set_quota_inode(qf_inode, I_DATA_SEM_QUOTA);
5218 5219
	err = dquot_enable(qf_inode, type, format_id, flags);
	iput(qf_inode);
5220 5221
	if (err)
		lockdep_set_quota_inode(qf_inode, I_DATA_SEM_NORMAL);
5222 5223 5224 5225 5226 5227 5228 5229

	return err;
}

/* Enable usage tracking for all quota types. */
static int ext4_enable_quotas(struct super_block *sb)
{
	int type, err = 0;
Jan Kara's avatar
Jan Kara committed
5230
	unsigned long qf_inums[EXT4_MAXQUOTAS] = {
5231 5232 5233 5234 5235
		le32_to_cpu(EXT4_SB(sb)->s_es->s_usr_quota_inum),
		le32_to_cpu(EXT4_SB(sb)->s_es->s_grp_quota_inum)
	};

	sb_dqopt(sb)->flags |= DQUOT_QUOTA_SYS_FILE;
Jan Kara's avatar
Jan Kara committed
5236
	for (type = 0; type < EXT4_MAXQUOTAS; type++) {
5237 5238 5239 5240
		if (qf_inums[type]) {
			err = ext4_quota_enable(sb, type, QFMT_VFS_V1,
						DQUOT_USAGE_ENABLED);
			if (err) {
5241 5242 5243
				for (type--; type >= 0; type--)
					dquot_quota_off(sb, type);

5244
				ext4_warning(sb,
5245 5246 5247
					"Failed to enable quota tracking "
					"(type=%d, err=%d). Please run "
					"e2fsck to fix.", type, err);
5248 5249 5250 5251 5252 5253 5254
				return err;
			}
		}
	}
	return 0;
}

5255 5256
static int ext4_quota_off(struct super_block *sb, int type)
{
5257 5258 5259
	struct inode *inode = sb_dqopt(sb)->files[type];
	handle_t *handle;

5260 5261 5262
	/* Force all delayed allocation blocks to be allocated.
	 * Caller already holds s_umount sem */
	if (test_opt(sb, DELALLOC))
5263 5264
		sync_filesystem(sb);

5265 5266 5267
	if (!inode)
		goto out;

5268 5269
	/* Update modification times of quota files when userspace can
	 * start looking at them */
5270
	handle = ext4_journal_start(inode, EXT4_HT_QUOTA, 1);
5271 5272 5273 5274 5275 5276 5277
	if (IS_ERR(handle))
		goto out;
	inode->i_mtime = inode->i_ctime = CURRENT_TIME;
	ext4_mark_inode_dirty(handle, inode);
	ext4_journal_stop(handle);

out:
5278 5279 5280
	return dquot_quota_off(sb, type);
}

5281 5282
/* Read data from quotafile - avoid pagecache and such because we cannot afford
 * acquiring the locks... As quota files are never truncated and quota code
Lucas De Marchi's avatar
Lucas De Marchi committed
5283
 * itself serializes the operations (and no one else should touch the files)
5284
 * we don't have to be afraid of races */
5285
static ssize_t ext4_quota_read(struct super_block *sb, int type, char *data,
5286 5287 5288
			       size_t len, loff_t off)
{
	struct inode *inode = sb_dqopt(sb)->files[type];
Aneesh Kumar K.V's avatar
Aneesh Kumar K.V committed
5289
	ext4_lblk_t blk = off >> EXT4_BLOCK_SIZE_BITS(sb);
5290 5291 5292 5293 5294 5295 5296 5297 5298 5299 5300 5301 5302 5303
	int offset = off & (sb->s_blocksize - 1);
	int tocopy;
	size_t toread;
	struct buffer_head *bh;
	loff_t i_size = i_size_read(inode);

	if (off > i_size)
		return 0;
	if (off+len > i_size)
		len = i_size-off;
	toread = len;
	while (toread > 0) {
		tocopy = sb->s_blocksize - offset < toread ?
				sb->s_blocksize - offset : toread;
5304 5305 5306
		bh = ext4_bread(NULL, inode, blk, 0);
		if (IS_ERR(bh))
			return PTR_ERR(bh);
5307 5308 5309 5310 5311 5312 5313 5314 5315 5316 5317 5318 5319 5320 5321
		if (!bh)	/* A hole? */
			memset(data, 0, tocopy);
		else
			memcpy(data, bh->b_data+offset, tocopy);
		brelse(bh);
		offset = 0;
		toread -= tocopy;
		data += tocopy;
		blk++;
	}
	return len;
}

/* Write to quotafile (we know the transaction is already started and has
 * enough credits) */
5322
static ssize_t ext4_quota_write(struct super_block *sb, int type,
5323 5324 5325
				const char *data, size_t len, loff_t off)
{
	struct inode *inode = sb_dqopt(sb)->files[type];
Aneesh Kumar K.V's avatar
Aneesh Kumar K.V committed
5326
	ext4_lblk_t blk = off >> EXT4_BLOCK_SIZE_BITS(sb);
5327
	int err, offset = off & (sb->s_blocksize - 1);
5328
	int retries = 0;
5329 5330 5331
	struct buffer_head *bh;
	handle_t *handle = journal_current_handle();

5332
	if (EXT4_SB(sb)->s_journal && !handle) {
5333 5334
		ext4_msg(sb, KERN_WARNING, "Quota write (off=%llu, len=%llu)"
			" cancelled because transaction is not started",
Jan Kara's avatar
Jan Kara committed
5335 5336 5337
			(unsigned long long)off, (unsigned long long)len);
		return -EIO;
	}
5338 5339 5340 5341 5342 5343 5344 5345 5346 5347 5348
	/*
	 * Since we account only one data block in transaction credits,
	 * then it is impossible to cross a block boundary.
	 */
	if (sb->s_blocksize - offset < len) {
		ext4_msg(sb, KERN_WARNING, "Quota write (off=%llu, len=%llu)"
			" cancelled because not block aligned",
			(unsigned long long)off, (unsigned long long)len);
		return -EIO;
	}

5349 5350 5351 5352 5353 5354
	do {
		bh = ext4_bread(handle, inode, blk,
				EXT4_GET_BLOCKS_CREATE |
				EXT4_GET_BLOCKS_METADATA_NOFAIL);
	} while (IS_ERR(bh) && (PTR_ERR(bh) == -ENOSPC) &&
		 ext4_should_retry_alloc(inode->i_sb, &retries));
5355 5356
	if (IS_ERR(bh))
		return PTR_ERR(bh);
5357 5358
	if (!bh)
		goto out;
5359
	BUFFER_TRACE(bh, "get write access");
5360 5361 5362
	err = ext4_journal_get_write_access(handle, bh);
	if (err) {
		brelse(bh);
5363
		return err;
5364
	}
5365 5366 5367 5368
	lock_buffer(bh);
	memcpy(bh->b_data+offset, data, len);
	flush_dcache_page(bh->b_page);
	unlock_buffer(bh);
5369
	err = ext4_handle_dirty_metadata(handle, NULL, bh);
5370
	brelse(bh);
5371
out:
5372 5373
	if (inode->i_size < off + len) {
		i_size_write(inode, off + len);
5374
		EXT4_I(inode)->i_disksize = inode->i_size;
5375
		ext4_mark_inode_dirty(handle, inode);
5376
	}
5377
	return len;
5378 5379 5380 5381
}

#endif

Al Viro's avatar
Al Viro committed
5382 5383
static struct dentry *ext4_mount(struct file_system_type *fs_type, int flags,
		       const char *dev_name, void *data)
5384
{
Al Viro's avatar
Al Viro committed
5385
	return mount_bdev(fs_type, flags, dev_name, data, ext4_fill_super);
5386 5387
}

Jan Kara's avatar
Jan Kara committed
5388
#if !defined(CONFIG_EXT2_FS) && !defined(CONFIG_EXT2_FS_MODULE) && defined(CONFIG_EXT4_USE_FOR_EXT2)
5389 5390 5391 5392 5393 5394 5395 5396 5397 5398 5399 5400
static inline void register_as_ext2(void)
{
	int err = register_filesystem(&ext2_fs_type);
	if (err)
		printk(KERN_WARNING
		       "EXT4-fs: Unable to register as ext2 (%d)\n", err);
}

static inline void unregister_as_ext2(void)
{
	unregister_filesystem(&ext2_fs_type);
}
5401 5402 5403

static inline int ext2_feature_set_ok(struct super_block *sb)
{
5404
	if (ext4_has_unknown_ext2_incompat_features(sb))
5405 5406 5407
		return 0;
	if (sb->s_flags & MS_RDONLY)
		return 1;
5408
	if (ext4_has_unknown_ext2_ro_compat_features(sb))
5409 5410 5411
		return 0;
	return 1;
}
5412 5413 5414
#else
static inline void register_as_ext2(void) { }
static inline void unregister_as_ext2(void) { }
5415
static inline int ext2_feature_set_ok(struct super_block *sb) { return 0; }
5416 5417 5418 5419 5420 5421 5422 5423 5424 5425 5426 5427 5428 5429
#endif

static inline void register_as_ext3(void)
{
	int err = register_filesystem(&ext3_fs_type);
	if (err)
		printk(KERN_WARNING
		       "EXT4-fs: Unable to register as ext3 (%d)\n", err);
}

static inline void unregister_as_ext3(void)
{
	unregister_filesystem(&ext3_fs_type);
}
5430 5431 5432

static inline int ext3_feature_set_ok(struct super_block *sb)
{
5433
	if (ext4_has_unknown_ext3_incompat_features(sb))
5434
		return 0;
5435
	if (!ext4_has_feature_journal(sb))
5436 5437 5438
		return 0;
	if (sb->s_flags & MS_RDONLY)
		return 1;
5439
	if (ext4_has_unknown_ext3_ro_compat_features(sb))
5440 5441 5442
		return 0;
	return 1;
}
5443

Theodore Ts'o's avatar
Theodore Ts'o committed
5444 5445 5446
static struct file_system_type ext4_fs_type = {
	.owner		= THIS_MODULE,
	.name		= "ext4",
Al Viro's avatar
Al Viro committed
5447
	.mount		= ext4_mount,
Theodore Ts'o's avatar
Theodore Ts'o committed
5448
	.kill_sb	= kill_block_super,
5449
	.fs_flags	= FS_REQUIRES_DEV | FS_USERNS_MOUNT,
Theodore Ts'o's avatar
Theodore Ts'o committed
5450
};
5451
MODULE_ALIAS_FS("ext4");
Theodore Ts'o's avatar
Theodore Ts'o committed
5452

5453 5454 5455 5456
/* Shared across all ext4 file systems */
wait_queue_head_t ext4__ioend_wq[EXT4_WQ_HASH_SZ];
struct mutex ext4__aio_mutex[EXT4_WQ_HASH_SZ];

5457
static int __init ext4_init_fs(void)
5458
{
5459
	int i, err;
5460

5461
	ratelimit_state_init(&ext4_mount_msg_ratelimit, 30 * HZ, 64);
5462 5463 5464
	ext4_li_info = NULL;
	mutex_init(&ext4_li_mtx);

5465
	/* Build-time check for flags consistency */
5466
	ext4_check_flag_values();
5467 5468 5469 5470 5471 5472

	for (i = 0; i < EXT4_WQ_HASH_SZ; i++) {
		mutex_init(&ext4__aio_mutex[i]);
		init_waitqueue_head(&ext4__ioend_wq[i]);
	}

5473
	err = ext4_init_es();
5474 5475
	if (err)
		return err;
5476 5477 5478

	err = ext4_init_pageio();
	if (err)
5479
		goto out5;
5480

5481
	err = ext4_init_system_zone();
5482
	if (err)
5483
		goto out4;
5484

5485
	err = ext4_init_sysfs();
5486
	if (err)
5487
		goto out3;
5488

5489
	err = ext4_init_mballoc();
5490 5491
	if (err)
		goto out2;
5492 5493 5494
	err = init_inodecache();
	if (err)
		goto out1;
5495
	register_as_ext3();
5496
	register_as_ext2();
Theodore Ts'o's avatar
Theodore Ts'o committed
5497
	err = register_filesystem(&ext4_fs_type);
5498 5499
	if (err)
		goto out;
5500

5501 5502
	return 0;
out:
5503 5504
	unregister_as_ext2();
	unregister_as_ext3();
5505 5506
	destroy_inodecache();
out1:
5507
	ext4_exit_mballoc();
5508
out2:
5509 5510
	ext4_exit_sysfs();
out3:
5511
	ext4_exit_system_zone();
5512
out4:
5513
	ext4_exit_pageio();
5514
out5:
5515 5516
	ext4_exit_es();

5517 5518 5519
	return err;
}

5520
static void __exit ext4_exit_fs(void)
5521
{
5522
	ext4_exit_crypto();
5523
	ext4_destroy_lazyinit_thread();
5524 5525
	unregister_as_ext2();
	unregister_as_ext3();
Theodore Ts'o's avatar
Theodore Ts'o committed
5526
	unregister_filesystem(&ext4_fs_type);
5527
	destroy_inodecache();
5528
	ext4_exit_mballoc();
5529
	ext4_exit_sysfs();
5530 5531
	ext4_exit_system_zone();
	ext4_exit_pageio();
5532
	ext4_exit_es();
5533 5534 5535
}

MODULE_AUTHOR("Remy Card, Stephen Tweedie, Andrew Morton, Andreas Dilger, Theodore Ts'o and others");
5536
MODULE_DESCRIPTION("Fourth Extended Filesystem");
5537
MODULE_LICENSE("GPL");
5538 5539
module_init(ext4_init_fs)
module_exit(ext4_exit_fs)