super.c 60.4 KB
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/*
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 * fs/f2fs/super.c
 *
 * Copyright (c) 2012 Samsung Electronics Co., Ltd.
 *             http://www.samsung.com/
 *
 * This program is free software; you can redistribute it and/or modify
 * it under the terms of the GNU General Public License version 2 as
 * published by the Free Software Foundation.
 */
#include <linux/module.h>
#include <linux/init.h>
#include <linux/fs.h>
#include <linux/statfs.h>
#include <linux/buffer_head.h>
#include <linux/backing-dev.h>
#include <linux/kthread.h>
#include <linux/parser.h>
#include <linux/mount.h>
#include <linux/seq_file.h>
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#include <linux/proc_fs.h>
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#include <linux/random.h>
#include <linux/exportfs.h>
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#include <linux/blkdev.h>
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#include <linux/quotaops.h>
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#include <linux/f2fs_fs.h>
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#include <linux/sysfs.h>
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#include "f2fs.h"
#include "node.h"
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#include "segment.h"
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#include "xattr.h"
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#include "gc.h"
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#include "trace.h"
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#define CREATE_TRACE_POINTS
#include <trace/events/f2fs.h>

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static struct kmem_cache *f2fs_inode_cachep;

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#ifdef CONFIG_F2FS_FAULT_INJECTION
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char *fault_name[FAULT_MAX] = {
	[FAULT_KMALLOC]		= "kmalloc",
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	[FAULT_PAGE_ALLOC]	= "page alloc",
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	[FAULT_ALLOC_NID]	= "alloc nid",
	[FAULT_ORPHAN]		= "orphan",
	[FAULT_BLOCK]		= "no more block",
	[FAULT_DIR_DEPTH]	= "too big dir depth",
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	[FAULT_EVICT_INODE]	= "evict_inode fail",
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	[FAULT_TRUNCATE]	= "truncate fail",
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	[FAULT_IO]		= "IO error",
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	[FAULT_CHECKPOINT]	= "checkpoint error",
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};
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static void f2fs_build_fault_attr(struct f2fs_sb_info *sbi,
						unsigned int rate)
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{
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	struct f2fs_fault_info *ffi = &sbi->fault_info;

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	if (rate) {
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		atomic_set(&ffi->inject_ops, 0);
		ffi->inject_rate = rate;
		ffi->inject_type = (1 << FAULT_MAX) - 1;
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	} else {
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		memset(ffi, 0, sizeof(struct f2fs_fault_info));
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	}
}
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#endif

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/* f2fs-wide shrinker description */
static struct shrinker f2fs_shrinker_info = {
	.scan_objects = f2fs_shrink_scan,
	.count_objects = f2fs_shrink_count,
	.seeks = DEFAULT_SEEKS,
};

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enum {
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	Opt_gc_background,
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	Opt_disable_roll_forward,
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	Opt_norecovery,
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	Opt_discard,
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	Opt_nodiscard,
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	Opt_noheap,
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	Opt_heap,
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	Opt_user_xattr,
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	Opt_nouser_xattr,
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	Opt_acl,
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	Opt_noacl,
	Opt_active_logs,
	Opt_disable_ext_identify,
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	Opt_inline_xattr,
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	Opt_noinline_xattr,
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	Opt_inline_data,
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	Opt_inline_dentry,
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	Opt_noinline_dentry,
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	Opt_flush_merge,
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	Opt_noflush_merge,
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	Opt_nobarrier,
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	Opt_fastboot,
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	Opt_extent_cache,
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	Opt_noextent_cache,
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	Opt_noinline_data,
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	Opt_data_flush,
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	Opt_mode,
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	Opt_io_size_bits,
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	Opt_fault_injection,
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	Opt_lazytime,
	Opt_nolazytime,
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	Opt_usrquota,
	Opt_grpquota,
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	Opt_prjquota,
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	Opt_err,
};

static match_table_t f2fs_tokens = {
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	{Opt_gc_background, "background_gc=%s"},
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	{Opt_disable_roll_forward, "disable_roll_forward"},
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	{Opt_norecovery, "norecovery"},
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	{Opt_discard, "discard"},
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	{Opt_nodiscard, "nodiscard"},
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	{Opt_noheap, "no_heap"},
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	{Opt_heap, "heap"},
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	{Opt_user_xattr, "user_xattr"},
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	{Opt_nouser_xattr, "nouser_xattr"},
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	{Opt_acl, "acl"},
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	{Opt_noacl, "noacl"},
	{Opt_active_logs, "active_logs=%u"},
	{Opt_disable_ext_identify, "disable_ext_identify"},
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	{Opt_inline_xattr, "inline_xattr"},
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	{Opt_noinline_xattr, "noinline_xattr"},
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	{Opt_inline_data, "inline_data"},
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	{Opt_inline_dentry, "inline_dentry"},
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	{Opt_noinline_dentry, "noinline_dentry"},
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	{Opt_flush_merge, "flush_merge"},
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	{Opt_noflush_merge, "noflush_merge"},
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	{Opt_nobarrier, "nobarrier"},
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	{Opt_fastboot, "fastboot"},
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	{Opt_extent_cache, "extent_cache"},
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	{Opt_noextent_cache, "noextent_cache"},
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	{Opt_noinline_data, "noinline_data"},
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	{Opt_data_flush, "data_flush"},
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	{Opt_mode, "mode=%s"},
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	{Opt_io_size_bits, "io_bits=%u"},
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	{Opt_fault_injection, "fault_injection=%u"},
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	{Opt_lazytime, "lazytime"},
	{Opt_nolazytime, "nolazytime"},
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	{Opt_usrquota, "usrquota"},
	{Opt_grpquota, "grpquota"},
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	{Opt_prjquota, "prjquota"},
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	{Opt_err, NULL},
};

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void f2fs_msg(struct super_block *sb, const char *level, const char *fmt, ...)
{
	struct va_format vaf;
	va_list args;

	va_start(args, fmt);
	vaf.fmt = fmt;
	vaf.va = &args;
	printk("%sF2FS-fs (%s): %pV\n", level, sb->s_id, &vaf);
	va_end(args);
}

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static void init_once(void *foo)
{
	struct f2fs_inode_info *fi = (struct f2fs_inode_info *) foo;

	inode_init_once(&fi->vfs_inode);
}

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static int parse_options(struct super_block *sb, char *options)
{
	struct f2fs_sb_info *sbi = F2FS_SB(sb);
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	struct request_queue *q;
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	substring_t args[MAX_OPT_ARGS];
	char *p, *name;
	int arg = 0;

	if (!options)
		return 0;

	while ((p = strsep(&options, ",")) != NULL) {
		int token;
		if (!*p)
			continue;
		/*
		 * Initialize args struct so we know whether arg was
		 * found; some options take optional arguments.
		 */
		args[0].to = args[0].from = NULL;
		token = match_token(p, f2fs_tokens, args);

		switch (token) {
		case Opt_gc_background:
			name = match_strdup(&args[0]);

			if (!name)
				return -ENOMEM;
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			if (strlen(name) == 2 && !strncmp(name, "on", 2)) {
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				set_opt(sbi, BG_GC);
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				clear_opt(sbi, FORCE_FG_GC);
			} else if (strlen(name) == 3 && !strncmp(name, "off", 3)) {
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				clear_opt(sbi, BG_GC);
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				clear_opt(sbi, FORCE_FG_GC);
			} else if (strlen(name) == 4 && !strncmp(name, "sync", 4)) {
				set_opt(sbi, BG_GC);
				set_opt(sbi, FORCE_FG_GC);
			} else {
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				kfree(name);
				return -EINVAL;
			}
			kfree(name);
			break;
		case Opt_disable_roll_forward:
			set_opt(sbi, DISABLE_ROLL_FORWARD);
			break;
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		case Opt_norecovery:
			/* this option mounts f2fs with ro */
			set_opt(sbi, DISABLE_ROLL_FORWARD);
			if (!f2fs_readonly(sb))
				return -EINVAL;
			break;
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		case Opt_discard:
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			q = bdev_get_queue(sb->s_bdev);
			if (blk_queue_discard(q)) {
				set_opt(sbi, DISCARD);
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			} else if (!f2fs_sb_mounted_blkzoned(sb)) {
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				f2fs_msg(sb, KERN_WARNING,
					"mounting with \"discard\" option, but "
					"the device does not support discard");
			}
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			break;
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		case Opt_nodiscard:
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			if (f2fs_sb_mounted_blkzoned(sb)) {
				f2fs_msg(sb, KERN_WARNING,
					"discard is required for zoned block devices");
				return -EINVAL;
			}
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			clear_opt(sbi, DISCARD);
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			break;
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		case Opt_noheap:
			set_opt(sbi, NOHEAP);
			break;
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		case Opt_heap:
			clear_opt(sbi, NOHEAP);
			break;
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#ifdef CONFIG_F2FS_FS_XATTR
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		case Opt_user_xattr:
			set_opt(sbi, XATTR_USER);
			break;
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		case Opt_nouser_xattr:
			clear_opt(sbi, XATTR_USER);
			break;
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		case Opt_inline_xattr:
			set_opt(sbi, INLINE_XATTR);
			break;
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		case Opt_noinline_xattr:
			clear_opt(sbi, INLINE_XATTR);
			break;
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#else
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		case Opt_user_xattr:
			f2fs_msg(sb, KERN_INFO,
				"user_xattr options not supported");
			break;
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		case Opt_nouser_xattr:
			f2fs_msg(sb, KERN_INFO,
				"nouser_xattr options not supported");
			break;
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		case Opt_inline_xattr:
			f2fs_msg(sb, KERN_INFO,
				"inline_xattr options not supported");
			break;
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		case Opt_noinline_xattr:
			f2fs_msg(sb, KERN_INFO,
				"noinline_xattr options not supported");
			break;
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#endif
#ifdef CONFIG_F2FS_FS_POSIX_ACL
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		case Opt_acl:
			set_opt(sbi, POSIX_ACL);
			break;
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		case Opt_noacl:
			clear_opt(sbi, POSIX_ACL);
			break;
#else
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		case Opt_acl:
			f2fs_msg(sb, KERN_INFO, "acl options not supported");
			break;
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		case Opt_noacl:
			f2fs_msg(sb, KERN_INFO, "noacl options not supported");
			break;
#endif
		case Opt_active_logs:
			if (args->from && match_int(args, &arg))
				return -EINVAL;
			if (arg != 2 && arg != 4 && arg != NR_CURSEG_TYPE)
				return -EINVAL;
			sbi->active_logs = arg;
			break;
		case Opt_disable_ext_identify:
			set_opt(sbi, DISABLE_EXT_IDENTIFY);
			break;
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		case Opt_inline_data:
			set_opt(sbi, INLINE_DATA);
			break;
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		case Opt_inline_dentry:
			set_opt(sbi, INLINE_DENTRY);
			break;
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		case Opt_noinline_dentry:
			clear_opt(sbi, INLINE_DENTRY);
			break;
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		case Opt_flush_merge:
			set_opt(sbi, FLUSH_MERGE);
			break;
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		case Opt_noflush_merge:
			clear_opt(sbi, FLUSH_MERGE);
			break;
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		case Opt_nobarrier:
			set_opt(sbi, NOBARRIER);
			break;
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		case Opt_fastboot:
			set_opt(sbi, FASTBOOT);
			break;
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		case Opt_extent_cache:
			set_opt(sbi, EXTENT_CACHE);
			break;
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		case Opt_noextent_cache:
			clear_opt(sbi, EXTENT_CACHE);
			break;
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		case Opt_noinline_data:
			clear_opt(sbi, INLINE_DATA);
			break;
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		case Opt_data_flush:
			set_opt(sbi, DATA_FLUSH);
			break;
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		case Opt_mode:
			name = match_strdup(&args[0]);

			if (!name)
				return -ENOMEM;
			if (strlen(name) == 8 &&
					!strncmp(name, "adaptive", 8)) {
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				if (f2fs_sb_mounted_blkzoned(sb)) {
					f2fs_msg(sb, KERN_WARNING,
						 "adaptive mode is not allowed with "
						 "zoned block device feature");
					kfree(name);
					return -EINVAL;
				}
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				set_opt_mode(sbi, F2FS_MOUNT_ADAPTIVE);
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			} else if (strlen(name) == 3 &&
					!strncmp(name, "lfs", 3)) {
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				set_opt_mode(sbi, F2FS_MOUNT_LFS);
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			} else {
				kfree(name);
				return -EINVAL;
			}
			kfree(name);
			break;
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		case Opt_io_size_bits:
			if (args->from && match_int(args, &arg))
				return -EINVAL;
			if (arg > __ilog2_u32(BIO_MAX_PAGES)) {
				f2fs_msg(sb, KERN_WARNING,
					"Not support %d, larger than %d",
					1 << arg, BIO_MAX_PAGES);
				return -EINVAL;
			}
			sbi->write_io_size_bits = arg;
			break;
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		case Opt_fault_injection:
			if (args->from && match_int(args, &arg))
				return -EINVAL;
#ifdef CONFIG_F2FS_FAULT_INJECTION
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			f2fs_build_fault_attr(sbi, arg);
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			set_opt(sbi, FAULT_INJECTION);
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#else
			f2fs_msg(sb, KERN_INFO,
				"FAULT_INJECTION was not selected");
#endif
			break;
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		case Opt_lazytime:
			sb->s_flags |= MS_LAZYTIME;
			break;
		case Opt_nolazytime:
			sb->s_flags &= ~MS_LAZYTIME;
			break;
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#ifdef CONFIG_QUOTA
		case Opt_usrquota:
			set_opt(sbi, USRQUOTA);
			break;
		case Opt_grpquota:
			set_opt(sbi, GRPQUOTA);
			break;
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		case Opt_prjquota:
			set_opt(sbi, PRJQUOTA);
			break;
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#else
		case Opt_usrquota:
		case Opt_grpquota:
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		case Opt_prjquota:
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			f2fs_msg(sb, KERN_INFO,
					"quota operations not supported");
			break;
#endif
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		default:
			f2fs_msg(sb, KERN_ERR,
				"Unrecognized mount option \"%s\" or missing value",
				p);
			return -EINVAL;
		}
	}
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	if (F2FS_IO_SIZE_BITS(sbi) && !test_opt(sbi, LFS)) {
		f2fs_msg(sb, KERN_ERR,
				"Should set mode=lfs with %uKB-sized IO",
				F2FS_IO_SIZE_KB(sbi));
		return -EINVAL;
	}
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	return 0;
}

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static struct inode *f2fs_alloc_inode(struct super_block *sb)
{
	struct f2fs_inode_info *fi;

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	fi = kmem_cache_alloc(f2fs_inode_cachep, GFP_F2FS_ZERO);
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	if (!fi)
		return NULL;

	init_once((void *) fi);

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	/* Initialize f2fs-specific inode info */
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	fi->vfs_inode.i_version = 1;
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	atomic_set(&fi->dirty_pages, 0);
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	fi->i_current_depth = 1;
	fi->i_advise = 0;
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	init_rwsem(&fi->i_sem);
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	INIT_LIST_HEAD(&fi->dirty_list);
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	INIT_LIST_HEAD(&fi->gdirty_list);
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	INIT_LIST_HEAD(&fi->inmem_pages);
	mutex_init(&fi->inmem_lock);
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	init_rwsem(&fi->dio_rwsem[READ]);
	init_rwsem(&fi->dio_rwsem[WRITE]);
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	init_rwsem(&fi->i_mmap_sem);
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#ifdef CONFIG_QUOTA
	memset(&fi->i_dquot, 0, sizeof(fi->i_dquot));
	fi->i_reserved_quota = 0;
#endif
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	/* Will be used by directory only */
	fi->i_dir_level = F2FS_SB(sb)->dir_level;
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	return &fi->vfs_inode;
}

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static int f2fs_drop_inode(struct inode *inode)
{
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	int ret;
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	/*
	 * This is to avoid a deadlock condition like below.
	 * writeback_single_inode(inode)
	 *  - f2fs_write_data_page
	 *    - f2fs_gc -> iput -> evict
	 *       - inode_wait_for_writeback(inode)
	 */
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	if ((!inode_unhashed(inode) && inode->i_state & I_SYNC)) {
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		if (!inode->i_nlink && !is_bad_inode(inode)) {
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			/* to avoid evict_inode call simultaneously */
			atomic_inc(&inode->i_count);
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			spin_unlock(&inode->i_lock);

			/* some remained atomic pages should discarded */
			if (f2fs_is_atomic_file(inode))
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				drop_inmem_pages(inode);
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			/* should remain fi->extent_tree for writepage */
			f2fs_destroy_extent_node(inode);

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			sb_start_intwrite(inode->i_sb);
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			f2fs_i_size_write(inode, 0);
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			if (F2FS_HAS_BLOCKS(inode))
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				f2fs_truncate(inode);
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			sb_end_intwrite(inode->i_sb);

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			fscrypt_put_encryption_info(inode, NULL);
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			spin_lock(&inode->i_lock);
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			atomic_dec(&inode->i_count);
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		}
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		trace_f2fs_drop_inode(inode, 0);
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		return 0;
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	}
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	ret = generic_drop_inode(inode);
	trace_f2fs_drop_inode(inode, ret);
	return ret;
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}

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int f2fs_inode_dirtied(struct inode *inode, bool sync)
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{
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	struct f2fs_sb_info *sbi = F2FS_I_SB(inode);
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	int ret = 0;
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	spin_lock(&sbi->inode_lock[DIRTY_META]);
	if (is_inode_flag_set(inode, FI_DIRTY_INODE)) {
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		ret = 1;
	} else {
		set_inode_flag(inode, FI_DIRTY_INODE);
		stat_inc_dirty_inode(sbi, DIRTY_META);
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	}
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	if (sync && list_empty(&F2FS_I(inode)->gdirty_list)) {
		list_add_tail(&F2FS_I(inode)->gdirty_list,
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				&sbi->inode_list[DIRTY_META]);
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		inc_page_count(sbi, F2FS_DIRTY_IMETA);
	}
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	spin_unlock(&sbi->inode_lock[DIRTY_META]);
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	return ret;
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}

void f2fs_inode_synced(struct inode *inode)
{
	struct f2fs_sb_info *sbi = F2FS_I_SB(inode);

	spin_lock(&sbi->inode_lock[DIRTY_META]);
	if (!is_inode_flag_set(inode, FI_DIRTY_INODE)) {
		spin_unlock(&sbi->inode_lock[DIRTY_META]);
		return;
	}
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	if (!list_empty(&F2FS_I(inode)->gdirty_list)) {
		list_del_init(&F2FS_I(inode)->gdirty_list);
		dec_page_count(sbi, F2FS_DIRTY_IMETA);
	}
536
	clear_inode_flag(inode, FI_DIRTY_INODE);
537
	clear_inode_flag(inode, FI_AUTO_RECOVER);
538
	stat_dec_dirty_inode(F2FS_I_SB(inode), DIRTY_META);
539
	spin_unlock(&sbi->inode_lock[DIRTY_META]);
540 541
}

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/*
 * f2fs_dirty_inode() is called from __mark_inode_dirty()
 *
 * We should call set_dirty_inode to write the dirty inode through write_inode.
 */
static void f2fs_dirty_inode(struct inode *inode, int flags)
{
	struct f2fs_sb_info *sbi = F2FS_I_SB(inode);

	if (inode->i_ino == F2FS_NODE_INO(sbi) ||
			inode->i_ino == F2FS_META_INO(sbi))
		return;

	if (flags == I_DIRTY_TIME)
		return;

	if (is_inode_flag_set(inode, FI_AUTO_RECOVER))
		clear_inode_flag(inode, FI_AUTO_RECOVER);

561
	f2fs_inode_dirtied(inode, false);
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}

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static void f2fs_i_callback(struct rcu_head *head)
{
	struct inode *inode = container_of(head, struct inode, i_rcu);
	kmem_cache_free(f2fs_inode_cachep, F2FS_I(inode));
}

570
static void f2fs_destroy_inode(struct inode *inode)
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571 572 573 574
{
	call_rcu(&inode->i_rcu, f2fs_i_callback);
}

575 576
static void destroy_percpu_info(struct f2fs_sb_info *sbi)
{
577
	percpu_counter_destroy(&sbi->alloc_valid_block_count);
578
	percpu_counter_destroy(&sbi->total_valid_inode_count);
579 580
}

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581 582 583 584 585 586 587 588 589 590 591 592 593
static void destroy_device_list(struct f2fs_sb_info *sbi)
{
	int i;

	for (i = 0; i < sbi->s_ndevs; i++) {
		blkdev_put(FDEV(i).bdev, FMODE_EXCL);
#ifdef CONFIG_BLK_DEV_ZONED
		kfree(FDEV(i).blkz_type);
#endif
	}
	kfree(sbi->devs);
}

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594
static void f2fs_quota_off_umount(struct super_block *sb);
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static void f2fs_put_super(struct super_block *sb)
{
	struct f2fs_sb_info *sbi = F2FS_SB(sb);
C
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598
	int i;
J
Jaegeuk Kim 已提交
599

C
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600
	f2fs_quota_off_umount(sb);
J
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601

602 603 604
	/* prevent remaining shrinker jobs */
	mutex_lock(&sbi->umount_mutex);

605 606 607 608 609
	/*
	 * We don't need to do checkpoint when superblock is clean.
	 * But, the previous checkpoint was not done by umount, it needs to do
	 * clean checkpoint again.
	 */
610
	if (is_sbi_flag_set(sbi, SBI_IS_DIRTY) ||
611
			!is_set_ckpt_flags(sbi, CP_UMOUNT_FLAG)) {
612 613 614 615 616
		struct cp_control cpc = {
			.reason = CP_UMOUNT,
		};
		write_checkpoint(sbi, &cpc);
	}
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617

618
	/* be sure to wait for any on-going discard commands */
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619
	f2fs_wait_discard_bios(sbi);
620

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	if (f2fs_discard_en(sbi) && !sbi->discard_blks) {
622 623 624 625 626 627
		struct cp_control cpc = {
			.reason = CP_UMOUNT | CP_TRIMMED,
		};
		write_checkpoint(sbi, &cpc);
	}

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628 629 630
	/* write_checkpoint can update stat informaion */
	f2fs_destroy_stats(sbi);

631 632 633 634
	/*
	 * normally superblock is clean, so we need to release this.
	 * In addition, EIO will skip do checkpoint, we need this as well.
	 */
635
	release_ino_entry(sbi, true);
636

637 638 639
	f2fs_leave_shrinker(sbi);
	mutex_unlock(&sbi->umount_mutex);

640
	/* our cp_error case, we can wait for any writeback page */
641
	f2fs_flush_merged_writes(sbi);
642

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643 644 645 646 647 648 649 650
	iput(sbi->node_inode);
	iput(sbi->meta_inode);

	/* destroy f2fs internal modules */
	destroy_node_manager(sbi);
	destroy_segment_manager(sbi);

	kfree(sbi->ckpt);
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651

652
	f2fs_unregister_sysfs(sbi);
J
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653 654

	sb->s_fs_info = NULL;
K
Keith Mok 已提交
655 656
	if (sbi->s_chksum_driver)
		crypto_free_shash(sbi->s_chksum_driver);
Y
Yunlei He 已提交
657
	kfree(sbi->raw_super);
658

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659
	destroy_device_list(sbi);
660
	mempool_destroy(sbi->write_io_dummy);
661
	destroy_percpu_info(sbi);
J
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662 663
	for (i = 0; i < NR_PAGE_TYPE; i++)
		kfree(sbi->write_io[i]);
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664 665 666 667 668 669
	kfree(sbi);
}

int f2fs_sync_fs(struct super_block *sb, int sync)
{
	struct f2fs_sb_info *sbi = F2FS_SB(sb);
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670
	int err = 0;
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671

672 673
	trace_f2fs_sync_fs(sb, sync);

674
	if (sync) {
675 676
		struct cp_control cpc;

677 678
		cpc.reason = __get_cp_reason(sbi);

679
		mutex_lock(&sbi->gc_mutex);
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680
		err = write_checkpoint(sbi, &cpc);
681 682
		mutex_unlock(&sbi->gc_mutex);
	}
683
	f2fs_trace_ios(NULL, 1);
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684

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685
	return err;
J
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686 687
}

688 689
static int f2fs_freeze(struct super_block *sb)
{
J
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690
	if (f2fs_readonly(sb))
691 692
		return 0;

693 694 695 696 697 698 699 700
	/* IO error happened before */
	if (unlikely(f2fs_cp_error(F2FS_SB(sb))))
		return -EIO;

	/* must be clean, since sync_filesystem() was already called */
	if (is_sbi_flag_set(F2FS_SB(sb), SBI_IS_DIRTY))
		return -EINVAL;
	return 0;
701 702 703 704 705 706 707
}

static int f2fs_unfreeze(struct super_block *sb)
{
	return 0;
}

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708 709 710 711 712 713 714 715 716 717 718 719 720 721 722 723 724 725 726 727 728 729 730 731 732 733 734 735 736 737 738 739 740 741 742 743 744 745 746 747 748 749
#ifdef CONFIG_QUOTA
static int f2fs_statfs_project(struct super_block *sb,
				kprojid_t projid, struct kstatfs *buf)
{
	struct kqid qid;
	struct dquot *dquot;
	u64 limit;
	u64 curblock;

	qid = make_kqid_projid(projid);
	dquot = dqget(sb, qid);
	if (IS_ERR(dquot))
		return PTR_ERR(dquot);
	spin_lock(&dq_data_lock);

	limit = (dquot->dq_dqb.dqb_bsoftlimit ?
		 dquot->dq_dqb.dqb_bsoftlimit :
		 dquot->dq_dqb.dqb_bhardlimit) >> sb->s_blocksize_bits;
	if (limit && buf->f_blocks > limit) {
		curblock = dquot->dq_dqb.dqb_curspace >> sb->s_blocksize_bits;
		buf->f_blocks = limit;
		buf->f_bfree = buf->f_bavail =
			(buf->f_blocks > curblock) ?
			 (buf->f_blocks - curblock) : 0;
	}

	limit = dquot->dq_dqb.dqb_isoftlimit ?
		dquot->dq_dqb.dqb_isoftlimit :
		dquot->dq_dqb.dqb_ihardlimit;
	if (limit && buf->f_files > limit) {
		buf->f_files = limit;
		buf->f_ffree =
			(buf->f_files > dquot->dq_dqb.dqb_curinodes) ?
			 (buf->f_files - dquot->dq_dqb.dqb_curinodes) : 0;
	}

	spin_unlock(&dq_data_lock);
	dqput(dquot);
	return 0;
}
#endif

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750 751 752 753 754 755
static int f2fs_statfs(struct dentry *dentry, struct kstatfs *buf)
{
	struct super_block *sb = dentry->d_sb;
	struct f2fs_sb_info *sbi = F2FS_SB(sb);
	u64 id = huge_encode_dev(sb->s_bdev->bd_dev);
	block_t total_count, user_block_count, start_count, ovp_count;
756
	u64 avail_node_count;
J
Jaegeuk Kim 已提交
757 758 759 760 761 762 763 764 765

	total_count = le64_to_cpu(sbi->raw_super->block_count);
	user_block_count = sbi->user_block_count;
	start_count = le32_to_cpu(sbi->raw_super->segment0_blkaddr);
	ovp_count = SM_I(sbi)->ovp_segments << sbi->log_blocks_per_seg;
	buf->f_type = F2FS_SUPER_MAGIC;
	buf->f_bsize = sbi->blocksize;

	buf->f_blocks = total_count - start_count;
766
	buf->f_bfree = user_block_count - valid_user_blocks(sbi) + ovp_count;
767 768
	buf->f_bavail = user_block_count - valid_user_blocks(sbi) -
						sbi->reserved_blocks;
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Jaegeuk Kim 已提交
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770 771 772 773 774 775 776 777 778 779
	avail_node_count = sbi->total_node_count - F2FS_RESERVED_NODE_NUM;

	if (avail_node_count > user_block_count) {
		buf->f_files = user_block_count;
		buf->f_ffree = buf->f_bavail;
	} else {
		buf->f_files = avail_node_count;
		buf->f_ffree = min(avail_node_count - valid_node_count(sbi),
					buf->f_bavail);
	}
J
Jaegeuk Kim 已提交
780

781
	buf->f_namelen = F2FS_NAME_LEN;
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782 783 784
	buf->f_fsid.val[0] = (u32)id;
	buf->f_fsid.val[1] = (u32)(id >> 32);

C
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785 786 787 788 789 790
#ifdef CONFIG_QUOTA
	if (is_inode_flag_set(dentry->d_inode, FI_PROJ_INHERIT) &&
			sb_has_quota_limits_enabled(sb, PRJQUOTA)) {
		f2fs_statfs_project(sb, F2FS_I(dentry->d_inode)->i_projid, buf);
	}
#endif
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791 792 793 794 795 796 797
	return 0;
}

static int f2fs_show_options(struct seq_file *seq, struct dentry *root)
{
	struct f2fs_sb_info *sbi = F2FS_SB(root->d_sb);

798 799 800 801 802 803
	if (!f2fs_readonly(sbi->sb) && test_opt(sbi, BG_GC)) {
		if (test_opt(sbi, FORCE_FG_GC))
			seq_printf(seq, ",background_gc=%s", "sync");
		else
			seq_printf(seq, ",background_gc=%s", "on");
	} else {
804
		seq_printf(seq, ",background_gc=%s", "off");
805
	}
J
Jaegeuk Kim 已提交
806 807 808 809 810
	if (test_opt(sbi, DISABLE_ROLL_FORWARD))
		seq_puts(seq, ",disable_roll_forward");
	if (test_opt(sbi, DISCARD))
		seq_puts(seq, ",discard");
	if (test_opt(sbi, NOHEAP))
811 812 813
		seq_puts(seq, ",no_heap");
	else
		seq_puts(seq, ",heap");
J
Jaegeuk Kim 已提交
814 815 816 817 818
#ifdef CONFIG_F2FS_FS_XATTR
	if (test_opt(sbi, XATTR_USER))
		seq_puts(seq, ",user_xattr");
	else
		seq_puts(seq, ",nouser_xattr");
J
Jaegeuk Kim 已提交
819 820
	if (test_opt(sbi, INLINE_XATTR))
		seq_puts(seq, ",inline_xattr");
821 822
	else
		seq_puts(seq, ",noinline_xattr");
J
Jaegeuk Kim 已提交
823 824 825 826 827 828 829 830
#endif
#ifdef CONFIG_F2FS_FS_POSIX_ACL
	if (test_opt(sbi, POSIX_ACL))
		seq_puts(seq, ",acl");
	else
		seq_puts(seq, ",noacl");
#endif
	if (test_opt(sbi, DISABLE_EXT_IDENTIFY))
831
		seq_puts(seq, ",disable_ext_identify");
832 833
	if (test_opt(sbi, INLINE_DATA))
		seq_puts(seq, ",inline_data");
W
Wanpeng Li 已提交
834 835
	else
		seq_puts(seq, ",noinline_data");
836 837
	if (test_opt(sbi, INLINE_DENTRY))
		seq_puts(seq, ",inline_dentry");
838 839
	else
		seq_puts(seq, ",noinline_dentry");
840
	if (!f2fs_readonly(sbi->sb) && test_opt(sbi, FLUSH_MERGE))
841
		seq_puts(seq, ",flush_merge");
J
Jaegeuk Kim 已提交
842 843
	if (test_opt(sbi, NOBARRIER))
		seq_puts(seq, ",nobarrier");
844 845
	if (test_opt(sbi, FASTBOOT))
		seq_puts(seq, ",fastboot");
846 847
	if (test_opt(sbi, EXTENT_CACHE))
		seq_puts(seq, ",extent_cache");
848 849
	else
		seq_puts(seq, ",noextent_cache");
850 851
	if (test_opt(sbi, DATA_FLUSH))
		seq_puts(seq, ",data_flush");
852 853 854 855 856 857

	seq_puts(seq, ",mode=");
	if (test_opt(sbi, ADAPTIVE))
		seq_puts(seq, "adaptive");
	else if (test_opt(sbi, LFS))
		seq_puts(seq, "lfs");
J
Jaegeuk Kim 已提交
858
	seq_printf(seq, ",active_logs=%u", sbi->active_logs);
859 860
	if (F2FS_IO_SIZE_BITS(sbi))
		seq_printf(seq, ",io_size=%uKB", F2FS_IO_SIZE_KB(sbi));
861 862
#ifdef CONFIG_F2FS_FAULT_INJECTION
	if (test_opt(sbi, FAULT_INJECTION))
863 864
		seq_printf(seq, ",fault_injection=%u",
				sbi->fault_info.inject_rate);
865
#endif
C
Chao Yu 已提交
866 867 868 869 870
#ifdef CONFIG_QUOTA
	if (test_opt(sbi, USRQUOTA))
		seq_puts(seq, ",usrquota");
	if (test_opt(sbi, GRPQUOTA))
		seq_puts(seq, ",grpquota");
C
Chao Yu 已提交
871 872
	if (test_opt(sbi, PRJQUOTA))
		seq_puts(seq, ",prjquota");
873
#endif
J
Jaegeuk Kim 已提交
874 875 876 877

	return 0;
}

878 879 880 881 882 883
static void default_options(struct f2fs_sb_info *sbi)
{
	/* init some FS parameters */
	sbi->active_logs = NR_CURSEG_TYPE;

	set_opt(sbi, BG_GC);
C
Chao Yu 已提交
884
	set_opt(sbi, INLINE_XATTR);
885
	set_opt(sbi, INLINE_DATA);
886
	set_opt(sbi, INLINE_DENTRY);
J
Jaegeuk Kim 已提交
887
	set_opt(sbi, EXTENT_CACHE);
888
	set_opt(sbi, NOHEAP);
J
Jaegeuk Kim 已提交
889
	sbi->sb->s_flags |= MS_LAZYTIME;
J
Jaegeuk Kim 已提交
890
	set_opt(sbi, FLUSH_MERGE);
891
	if (f2fs_sb_mounted_blkzoned(sbi->sb)) {
892 893 894 895 896
		set_opt_mode(sbi, F2FS_MOUNT_LFS);
		set_opt(sbi, DISCARD);
	} else {
		set_opt_mode(sbi, F2FS_MOUNT_ADAPTIVE);
	}
897 898 899 900 901 902 903

#ifdef CONFIG_F2FS_FS_XATTR
	set_opt(sbi, XATTR_USER);
#endif
#ifdef CONFIG_F2FS_FS_POSIX_ACL
	set_opt(sbi, POSIX_ACL);
#endif
904 905 906 907

#ifdef CONFIG_F2FS_FAULT_INJECTION
	f2fs_build_fault_attr(sbi, 0);
#endif
908 909
}

910 911 912 913
static int f2fs_remount(struct super_block *sb, int *flags, char *data)
{
	struct f2fs_sb_info *sbi = F2FS_SB(sb);
	struct f2fs_mount_info org_mount_opt;
C
Chao Yu 已提交
914
	unsigned long old_sb_flags;
915
	int err, active_logs;
916 917
	bool need_restart_gc = false;
	bool need_stop_gc = false;
918
	bool no_extent_cache = !test_opt(sbi, EXTENT_CACHE);
919 920 921
#ifdef CONFIG_F2FS_FAULT_INJECTION
	struct f2fs_fault_info ffi = sbi->fault_info;
#endif
922 923 924 925 926 927

	/*
	 * Save the old mount options in case we
	 * need to restore them.
	 */
	org_mount_opt = sbi->mount_opt;
C
Chao Yu 已提交
928
	old_sb_flags = sb->s_flags;
929 930
	active_logs = sbi->active_logs;

931 932 933 934 935 936 937 938 939
	/* recover superblocks we couldn't write due to previous RO mount */
	if (!(*flags & MS_RDONLY) && is_sbi_flag_set(sbi, SBI_NEED_SB_WRITE)) {
		err = f2fs_commit_super(sbi, false);
		f2fs_msg(sb, KERN_INFO,
			"Try to recover all the superblocks, ret: %d", err);
		if (!err)
			clear_sbi_flag(sbi, SBI_NEED_SB_WRITE);
	}

940
	default_options(sbi);
941

942 943 944 945 946 947 948
	/* parse mount options */
	err = parse_options(sb, data);
	if (err)
		goto restore_opts;

	/*
	 * Previous and new state of filesystem is RO,
949
	 * so skip checking GC and FLUSH_MERGE conditions.
950
	 */
951
	if (f2fs_readonly(sb) && (*flags & MS_RDONLY))
952 953
		goto skip;

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Chao Yu 已提交
954 955 956 957 958 959 960 961 962 963
	if (!f2fs_readonly(sb) && (*flags & MS_RDONLY)) {
		err = dquot_suspend(sb, -1);
		if (err < 0)
			goto restore_opts;
	} else {
		/* dquot_resume needs RW */
		sb->s_flags &= ~MS_RDONLY;
		dquot_resume(sb, -1);
	}

964 965 966 967 968 969 970 971
	/* disallow enable/disable extent_cache dynamically */
	if (no_extent_cache == !!test_opt(sbi, EXTENT_CACHE)) {
		err = -EINVAL;
		f2fs_msg(sbi->sb, KERN_WARNING,
				"switch extent_cache option is not allowed");
		goto restore_opts;
	}

972 973 974 975 976 977 978 979
	/*
	 * We stop the GC thread if FS is mounted as RO
	 * or if background_gc = off is passed in mount
	 * option. Also sync the filesystem.
	 */
	if ((*flags & MS_RDONLY) || !test_opt(sbi, BG_GC)) {
		if (sbi->gc_thread) {
			stop_gc_thread(sbi);
980
			need_restart_gc = true;
981
		}
982
	} else if (!sbi->gc_thread) {
983 984 985
		err = start_gc_thread(sbi);
		if (err)
			goto restore_opts;
986 987 988
		need_stop_gc = true;
	}

989 990 991 992 993 994 995 996 997 998
	if (*flags & MS_RDONLY) {
		writeback_inodes_sb(sb, WB_REASON_SYNC);
		sync_inodes_sb(sb);

		set_sbi_flag(sbi, SBI_IS_DIRTY);
		set_sbi_flag(sbi, SBI_IS_CLOSE);
		f2fs_sync_fs(sb, 1);
		clear_sbi_flag(sbi, SBI_IS_CLOSE);
	}

999 1000 1001 1002 1003
	/*
	 * We stop issue flush thread if FS is mounted as RO
	 * or if flush_merge is not passed in mount option.
	 */
	if ((*flags & MS_RDONLY) || !test_opt(sbi, FLUSH_MERGE)) {
1004 1005 1006
		clear_opt(sbi, FLUSH_MERGE);
		destroy_flush_cmd_control(sbi, false);
	} else {
1007 1008
		err = create_flush_cmd_control(sbi);
		if (err)
1009
			goto restore_gc;
1010 1011 1012
	}
skip:
	/* Update the POSIXACL Flag */
1013
	sb->s_flags = (sb->s_flags & ~MS_POSIXACL) |
1014
		(test_opt(sbi, POSIX_ACL) ? MS_POSIXACL : 0);
1015

1016
	return 0;
1017 1018 1019 1020
restore_gc:
	if (need_restart_gc) {
		if (start_gc_thread(sbi))
			f2fs_msg(sbi->sb, KERN_WARNING,
A
arter97 已提交
1021
				"background gc thread has stopped");
1022 1023 1024
	} else if (need_stop_gc) {
		stop_gc_thread(sbi);
	}
1025 1026 1027
restore_opts:
	sbi->mount_opt = org_mount_opt;
	sbi->active_logs = active_logs;
C
Chao Yu 已提交
1028
	sb->s_flags = old_sb_flags;
1029 1030 1031
#ifdef CONFIG_F2FS_FAULT_INJECTION
	sbi->fault_info = ffi;
#endif
1032 1033 1034
	return err;
}

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#ifdef CONFIG_QUOTA
/* Read data from quotafile */
static ssize_t f2fs_quota_read(struct super_block *sb, int type, char *data,
			       size_t len, loff_t off)
{
	struct inode *inode = sb_dqopt(sb)->files[type];
	struct address_space *mapping = inode->i_mapping;
	block_t blkidx = F2FS_BYTES_TO_BLK(off);
	int offset = off & (sb->s_blocksize - 1);
	int tocopy;
	size_t toread;
	loff_t i_size = i_size_read(inode);
	struct page *page;
	char *kaddr;

	if (off > i_size)
		return 0;

	if (off + len > i_size)
		len = i_size - off;
	toread = len;
	while (toread > 0) {
		tocopy = min_t(unsigned long, sb->s_blocksize - offset, toread);
repeat:
		page = read_mapping_page(mapping, blkidx, NULL);
		if (IS_ERR(page))
			return PTR_ERR(page);

		lock_page(page);

		if (unlikely(page->mapping != mapping)) {
			f2fs_put_page(page, 1);
			goto repeat;
		}
		if (unlikely(!PageUptodate(page))) {
			f2fs_put_page(page, 1);
			return -EIO;
		}

		kaddr = kmap_atomic(page);
		memcpy(data, kaddr + offset, tocopy);
		kunmap_atomic(kaddr);
		f2fs_put_page(page, 1);

		offset = 0;
		toread -= tocopy;
		data += tocopy;
		blkidx++;
	}
	return len;
}

/* Write to quotafile */
static ssize_t f2fs_quota_write(struct super_block *sb, int type,
				const char *data, size_t len, loff_t off)
{
	struct inode *inode = sb_dqopt(sb)->files[type];
	struct address_space *mapping = inode->i_mapping;
	const struct address_space_operations *a_ops = mapping->a_ops;
	int offset = off & (sb->s_blocksize - 1);
	size_t towrite = len;
	struct page *page;
	char *kaddr;
	int err = 0;
	int tocopy;

	while (towrite > 0) {
		tocopy = min_t(unsigned long, sb->s_blocksize - offset,
								towrite);

		err = a_ops->write_begin(NULL, mapping, off, tocopy, 0,
							&page, NULL);
		if (unlikely(err))
			break;

		kaddr = kmap_atomic(page);
		memcpy(kaddr + offset, data, tocopy);
		kunmap_atomic(kaddr);
		flush_dcache_page(page);

		a_ops->write_end(NULL, mapping, off, tocopy, tocopy,
						page, NULL);
		offset = 0;
		towrite -= tocopy;
		off += tocopy;
		data += tocopy;
		cond_resched();
	}

	if (len == towrite)
		return err;
	inode->i_version++;
	inode->i_mtime = inode->i_ctime = current_time(inode);
	f2fs_mark_inode_dirty_sync(inode, false);
	return len - towrite;
}

static struct dquot **f2fs_get_dquots(struct inode *inode)
{
	return F2FS_I(inode)->i_dquot;
}

static qsize_t *f2fs_get_reserved_space(struct inode *inode)
{
	return &F2FS_I(inode)->i_reserved_quota;
}

static int f2fs_quota_sync(struct super_block *sb, int type)
{
	struct quota_info *dqopt = sb_dqopt(sb);
	int cnt;
	int ret;

	ret = dquot_writeback_dquots(sb, type);
	if (ret)
		return ret;

	/*
	 * Now when everything is written we can discard the pagecache so
	 * that userspace sees the changes.
	 */
	for (cnt = 0; cnt < MAXQUOTAS; cnt++) {
		if (type != -1 && cnt != type)
			continue;
		if (!sb_has_quota_active(sb, cnt))
			continue;

		ret = filemap_write_and_wait(dqopt->files[cnt]->i_mapping);
		if (ret)
			return ret;

		inode_lock(dqopt->files[cnt]);
		truncate_inode_pages(&dqopt->files[cnt]->i_data, 0);
		inode_unlock(dqopt->files[cnt]);
	}
	return 0;
}

static int f2fs_quota_on(struct super_block *sb, int type, int format_id,
							const struct path *path)
{
	struct inode *inode;
	int err;

	err = f2fs_quota_sync(sb, -1);
	if (err)
		return err;

	err = dquot_quota_on(sb, type, format_id, path);
	if (err)
		return err;

	inode = d_inode(path->dentry);

	inode_lock(inode);
	F2FS_I(inode)->i_flags |= FS_NOATIME_FL | FS_IMMUTABLE_FL;
	inode_set_flags(inode, S_NOATIME | S_IMMUTABLE,
					S_NOATIME | S_IMMUTABLE);
	inode_unlock(inode);
	f2fs_mark_inode_dirty_sync(inode, false);

	return 0;
}

static int f2fs_quota_off(struct super_block *sb, int type)
{
	struct inode *inode = sb_dqopt(sb)->files[type];
	int err;

	if (!inode || !igrab(inode))
		return dquot_quota_off(sb, type);

	f2fs_quota_sync(sb, -1);

	err = dquot_quota_off(sb, type);
	if (err)
		goto out_put;

	inode_lock(inode);
	F2FS_I(inode)->i_flags &= ~(FS_NOATIME_FL | FS_IMMUTABLE_FL);
	inode_set_flags(inode, 0, S_NOATIME | S_IMMUTABLE);
	inode_unlock(inode);
	f2fs_mark_inode_dirty_sync(inode, false);
out_put:
	iput(inode);
	return err;
}

static void f2fs_quota_off_umount(struct super_block *sb)
{
	int type;

	for (type = 0; type < MAXQUOTAS; type++)
		f2fs_quota_off(sb, type);
}

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int f2fs_get_projid(struct inode *inode, kprojid_t *projid)
{
	*projid = F2FS_I(inode)->i_projid;
	return 0;
}

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static const struct dquot_operations f2fs_quota_operations = {
	.get_reserved_space = f2fs_get_reserved_space,
	.write_dquot	= dquot_commit,
	.acquire_dquot	= dquot_acquire,
	.release_dquot	= dquot_release,
	.mark_dirty	= dquot_mark_dquot_dirty,
	.write_info	= dquot_commit_info,
	.alloc_dquot	= dquot_alloc,
	.destroy_dquot	= dquot_destroy,
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	.get_projid	= f2fs_get_projid,
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	.get_next_id	= dquot_get_next_id,
};

static const struct quotactl_ops f2fs_quotactl_ops = {
	.quota_on	= f2fs_quota_on,
	.quota_off	= f2fs_quota_off,
	.quota_sync	= f2fs_quota_sync,
	.get_state	= dquot_get_state,
	.set_info	= dquot_set_dqinfo,
	.get_dqblk	= dquot_get_dqblk,
	.set_dqblk	= dquot_set_dqblk,
	.get_nextdqblk	= dquot_get_next_dqblk,
};
#else
static inline void f2fs_quota_off_umount(struct super_block *sb)
{
}
#endif

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static struct super_operations f2fs_sops = {
	.alloc_inode	= f2fs_alloc_inode,
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	.drop_inode	= f2fs_drop_inode,
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	.destroy_inode	= f2fs_destroy_inode,
	.write_inode	= f2fs_write_inode,
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	.dirty_inode	= f2fs_dirty_inode,
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	.show_options	= f2fs_show_options,
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#ifdef CONFIG_QUOTA
	.quota_read	= f2fs_quota_read,
	.quota_write	= f2fs_quota_write,
	.get_dquots	= f2fs_get_dquots,
#endif
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	.evict_inode	= f2fs_evict_inode,
	.put_super	= f2fs_put_super,
	.sync_fs	= f2fs_sync_fs,
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	.freeze_fs	= f2fs_freeze,
	.unfreeze_fs	= f2fs_unfreeze,
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	.statfs		= f2fs_statfs,
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	.remount_fs	= f2fs_remount,
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};

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#ifdef CONFIG_F2FS_FS_ENCRYPTION
static int f2fs_get_context(struct inode *inode, void *ctx, size_t len)
{
	return f2fs_getxattr(inode, F2FS_XATTR_INDEX_ENCRYPTION,
				F2FS_XATTR_NAME_ENCRYPTION_CONTEXT,
				ctx, len, NULL);
}

static int f2fs_set_context(struct inode *inode, const void *ctx, size_t len,
							void *fs_data)
{
	return f2fs_setxattr(inode, F2FS_XATTR_INDEX_ENCRYPTION,
				F2FS_XATTR_NAME_ENCRYPTION_CONTEXT,
				ctx, len, fs_data, XATTR_CREATE);
}

static unsigned f2fs_max_namelen(struct inode *inode)
{
	return S_ISLNK(inode->i_mode) ?
			inode->i_sb->s_blocksize : F2FS_NAME_LEN;
}

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static const struct fscrypt_operations f2fs_cryptops = {
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	.key_prefix	= "f2fs:",
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	.get_context	= f2fs_get_context,
	.set_context	= f2fs_set_context,
	.is_encrypted	= f2fs_encrypted_inode,
	.empty_dir	= f2fs_empty_dir,
	.max_namelen	= f2fs_max_namelen,
};
#else
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static const struct fscrypt_operations f2fs_cryptops = {
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	.is_encrypted	= f2fs_encrypted_inode,
};
#endif

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static struct inode *f2fs_nfs_get_inode(struct super_block *sb,
		u64 ino, u32 generation)
{
	struct f2fs_sb_info *sbi = F2FS_SB(sb);
	struct inode *inode;

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	if (check_nid_range(sbi, ino))
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		return ERR_PTR(-ESTALE);
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	/*
	 * f2fs_iget isn't quite right if the inode is currently unallocated!
	 * However f2fs_iget currently does appropriate checks to handle stale
	 * inodes so everything is OK.
	 */
	inode = f2fs_iget(sb, ino);
	if (IS_ERR(inode))
		return ERR_CAST(inode);
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	if (unlikely(generation && inode->i_generation != generation)) {
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		/* we didn't find the right inode.. */
		iput(inode);
		return ERR_PTR(-ESTALE);
	}
	return inode;
}

static struct dentry *f2fs_fh_to_dentry(struct super_block *sb, struct fid *fid,
		int fh_len, int fh_type)
{
	return generic_fh_to_dentry(sb, fid, fh_len, fh_type,
				    f2fs_nfs_get_inode);
}

static struct dentry *f2fs_fh_to_parent(struct super_block *sb, struct fid *fid,
		int fh_len, int fh_type)
{
	return generic_fh_to_parent(sb, fid, fh_len, fh_type,
				    f2fs_nfs_get_inode);
}

static const struct export_operations f2fs_export_ops = {
	.fh_to_dentry = f2fs_fh_to_dentry,
	.fh_to_parent = f2fs_fh_to_parent,
	.get_parent = f2fs_get_parent,
};

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static loff_t max_file_blocks(void)
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{
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	loff_t result = 0;
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	loff_t leaf_count = ADDRS_PER_BLOCK;

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	/*
	 * note: previously, result is equal to (DEF_ADDRS_PER_INODE -
	 * F2FS_INLINE_XATTR_ADDRS), but now f2fs try to reserve more
	 * space in inode.i_addr, it will be more safe to reassign
	 * result as zero.
	 */

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	/* two direct node blocks */
	result += (leaf_count * 2);

	/* two indirect node blocks */
	leaf_count *= NIDS_PER_BLOCK;
	result += (leaf_count * 2);

	/* one double indirect node block */
	leaf_count *= NIDS_PER_BLOCK;
	result += leaf_count;

	return result;
}

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static int __f2fs_commit_super(struct buffer_head *bh,
			struct f2fs_super_block *super)
{
	lock_buffer(bh);
	if (super)
		memcpy(bh->b_data + F2FS_SUPER_OFFSET, super, sizeof(*super));
	set_buffer_uptodate(bh);
	set_buffer_dirty(bh);
	unlock_buffer(bh);

	/* it's rare case, we can do fua all the time */
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	return __sync_dirty_buffer(bh, REQ_SYNC | REQ_PREFLUSH | REQ_FUA);
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}

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static inline bool sanity_check_area_boundary(struct f2fs_sb_info *sbi,
1409
					struct buffer_head *bh)
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{
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	struct f2fs_super_block *raw_super = (struct f2fs_super_block *)
					(bh->b_data + F2FS_SUPER_OFFSET);
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	struct super_block *sb = sbi->sb;
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	u32 segment0_blkaddr = le32_to_cpu(raw_super->segment0_blkaddr);
	u32 cp_blkaddr = le32_to_cpu(raw_super->cp_blkaddr);
	u32 sit_blkaddr = le32_to_cpu(raw_super->sit_blkaddr);
	u32 nat_blkaddr = le32_to_cpu(raw_super->nat_blkaddr);
	u32 ssa_blkaddr = le32_to_cpu(raw_super->ssa_blkaddr);
	u32 main_blkaddr = le32_to_cpu(raw_super->main_blkaddr);
	u32 segment_count_ckpt = le32_to_cpu(raw_super->segment_count_ckpt);
	u32 segment_count_sit = le32_to_cpu(raw_super->segment_count_sit);
	u32 segment_count_nat = le32_to_cpu(raw_super->segment_count_nat);
	u32 segment_count_ssa = le32_to_cpu(raw_super->segment_count_ssa);
	u32 segment_count_main = le32_to_cpu(raw_super->segment_count_main);
	u32 segment_count = le32_to_cpu(raw_super->segment_count);
	u32 log_blocks_per_seg = le32_to_cpu(raw_super->log_blocks_per_seg);
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	u64 main_end_blkaddr = main_blkaddr +
				(segment_count_main << log_blocks_per_seg);
	u64 seg_end_blkaddr = segment0_blkaddr +
				(segment_count << log_blocks_per_seg);
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	if (segment0_blkaddr != cp_blkaddr) {
		f2fs_msg(sb, KERN_INFO,
			"Mismatch start address, segment0(%u) cp_blkaddr(%u)",
			segment0_blkaddr, cp_blkaddr);
		return true;
	}

	if (cp_blkaddr + (segment_count_ckpt << log_blocks_per_seg) !=
							sit_blkaddr) {
		f2fs_msg(sb, KERN_INFO,
			"Wrong CP boundary, start(%u) end(%u) blocks(%u)",
			cp_blkaddr, sit_blkaddr,
			segment_count_ckpt << log_blocks_per_seg);
		return true;
	}

	if (sit_blkaddr + (segment_count_sit << log_blocks_per_seg) !=
							nat_blkaddr) {
		f2fs_msg(sb, KERN_INFO,
			"Wrong SIT boundary, start(%u) end(%u) blocks(%u)",
			sit_blkaddr, nat_blkaddr,
			segment_count_sit << log_blocks_per_seg);
		return true;
	}

	if (nat_blkaddr + (segment_count_nat << log_blocks_per_seg) !=
							ssa_blkaddr) {
		f2fs_msg(sb, KERN_INFO,
			"Wrong NAT boundary, start(%u) end(%u) blocks(%u)",
			nat_blkaddr, ssa_blkaddr,
			segment_count_nat << log_blocks_per_seg);
		return true;
	}

	if (ssa_blkaddr + (segment_count_ssa << log_blocks_per_seg) !=
							main_blkaddr) {
		f2fs_msg(sb, KERN_INFO,
			"Wrong SSA boundary, start(%u) end(%u) blocks(%u)",
			ssa_blkaddr, main_blkaddr,
			segment_count_ssa << log_blocks_per_seg);
		return true;
	}

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	if (main_end_blkaddr > seg_end_blkaddr) {
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		f2fs_msg(sb, KERN_INFO,
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			"Wrong MAIN_AREA boundary, start(%u) end(%u) block(%u)",
1478
			main_blkaddr,
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			segment0_blkaddr +
				(segment_count << log_blocks_per_seg),
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			segment_count_main << log_blocks_per_seg);
		return true;
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	} else if (main_end_blkaddr < seg_end_blkaddr) {
		int err = 0;
		char *res;

		/* fix in-memory information all the time */
		raw_super->segment_count = cpu_to_le32((main_end_blkaddr -
				segment0_blkaddr) >> log_blocks_per_seg);

		if (f2fs_readonly(sb) || bdev_read_only(sb->s_bdev)) {
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			set_sbi_flag(sbi, SBI_NEED_SB_WRITE);
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			res = "internally";
		} else {
			err = __f2fs_commit_super(bh, NULL);
			res = err ? "failed" : "done";
		}
		f2fs_msg(sb, KERN_INFO,
			"Fix alignment : %s, start(%u) end(%u) block(%u)",
			res, main_blkaddr,
			segment0_blkaddr +
				(segment_count << log_blocks_per_seg),
			segment_count_main << log_blocks_per_seg);
		if (err)
			return true;
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	}
	return false;
}

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static int sanity_check_raw_super(struct f2fs_sb_info *sbi,
1511
				struct buffer_head *bh)
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{
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	struct f2fs_super_block *raw_super = (struct f2fs_super_block *)
					(bh->b_data + F2FS_SUPER_OFFSET);
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	struct super_block *sb = sbi->sb;
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	unsigned int blocksize;

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	if (F2FS_SUPER_MAGIC != le32_to_cpu(raw_super->magic)) {
		f2fs_msg(sb, KERN_INFO,
			"Magic Mismatch, valid(0x%x) - read(0x%x)",
			F2FS_SUPER_MAGIC, le32_to_cpu(raw_super->magic));
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		return 1;
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	}
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1525
	/* Currently, support only 4KB page cache size */
1526
	if (F2FS_BLKSIZE != PAGE_SIZE) {
1527
		f2fs_msg(sb, KERN_INFO,
1528
			"Invalid page_cache_size (%lu), supports only 4KB\n",
1529
			PAGE_SIZE);
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		return 1;
	}

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	/* Currently, support only 4KB block size */
	blocksize = 1 << le32_to_cpu(raw_super->log_blocksize);
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	if (blocksize != F2FS_BLKSIZE) {
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		f2fs_msg(sb, KERN_INFO,
			"Invalid blocksize (%u), supports only 4KB\n",
			blocksize);
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		return 1;
1540
	}
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	/* check log blocks per segment */
	if (le32_to_cpu(raw_super->log_blocks_per_seg) != 9) {
		f2fs_msg(sb, KERN_INFO,
			"Invalid log blocks per segment (%u)\n",
			le32_to_cpu(raw_super->log_blocks_per_seg));
		return 1;
	}

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	/* Currently, support 512/1024/2048/4096 bytes sector size */
	if (le32_to_cpu(raw_super->log_sectorsize) >
				F2FS_MAX_LOG_SECTOR_SIZE ||
		le32_to_cpu(raw_super->log_sectorsize) <
				F2FS_MIN_LOG_SECTOR_SIZE) {
		f2fs_msg(sb, KERN_INFO, "Invalid log sectorsize (%u)",
			le32_to_cpu(raw_super->log_sectorsize));
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		return 1;
1558
	}
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	if (le32_to_cpu(raw_super->log_sectors_per_block) +
		le32_to_cpu(raw_super->log_sectorsize) !=
			F2FS_MAX_LOG_SECTOR_SIZE) {
		f2fs_msg(sb, KERN_INFO,
			"Invalid log sectors per block(%u) log sectorsize(%u)",
			le32_to_cpu(raw_super->log_sectors_per_block),
			le32_to_cpu(raw_super->log_sectorsize));
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		return 1;
1567
	}
1568 1569 1570 1571 1572 1573 1574 1575 1576 1577 1578 1579 1580

	/* check reserved ino info */
	if (le32_to_cpu(raw_super->node_ino) != 1 ||
		le32_to_cpu(raw_super->meta_ino) != 2 ||
		le32_to_cpu(raw_super->root_ino) != 3) {
		f2fs_msg(sb, KERN_INFO,
			"Invalid Fs Meta Ino: node(%u) meta(%u) root(%u)",
			le32_to_cpu(raw_super->node_ino),
			le32_to_cpu(raw_super->meta_ino),
			le32_to_cpu(raw_super->root_ino));
		return 1;
	}

J
Jin Qian 已提交
1581 1582 1583 1584 1585 1586 1587
	if (le32_to_cpu(raw_super->segment_count) > F2FS_MAX_SEGMENT) {
		f2fs_msg(sb, KERN_INFO,
			"Invalid segment count (%u)",
			le32_to_cpu(raw_super->segment_count));
		return 1;
	}

1588
	/* check CP/SIT/NAT/SSA/MAIN_AREA area boundary */
1589
	if (sanity_check_area_boundary(sbi, bh))
1590 1591
		return 1;

J
Jaegeuk Kim 已提交
1592 1593 1594
	return 0;
}

1595
int sanity_check_ckpt(struct f2fs_sb_info *sbi)
J
Jaegeuk Kim 已提交
1596 1597
{
	unsigned int total, fsmeta;
1598 1599
	struct f2fs_super_block *raw_super = F2FS_RAW_SUPER(sbi);
	struct f2fs_checkpoint *ckpt = F2FS_CKPT(sbi);
J
Jaegeuk Kim 已提交
1600
	unsigned int ovp_segments, reserved_segments;
1601 1602
	unsigned int main_segs, blocks_per_seg;
	int i;
J
Jaegeuk Kim 已提交
1603 1604 1605 1606 1607 1608 1609 1610

	total = le32_to_cpu(raw_super->segment_count);
	fsmeta = le32_to_cpu(raw_super->segment_count_ckpt);
	fsmeta += le32_to_cpu(raw_super->segment_count_sit);
	fsmeta += le32_to_cpu(raw_super->segment_count_nat);
	fsmeta += le32_to_cpu(ckpt->rsvd_segment_count);
	fsmeta += le32_to_cpu(raw_super->segment_count_ssa);

1611
	if (unlikely(fsmeta >= total))
J
Jaegeuk Kim 已提交
1612
		return 1;
1613

J
Jaegeuk Kim 已提交
1614 1615 1616 1617 1618 1619 1620 1621 1622 1623
	ovp_segments = le32_to_cpu(ckpt->overprov_segment_count);
	reserved_segments = le32_to_cpu(ckpt->rsvd_segment_count);

	if (unlikely(fsmeta < F2FS_MIN_SEGMENTS ||
			ovp_segments == 0 || reserved_segments == 0)) {
		f2fs_msg(sbi->sb, KERN_ERR,
			"Wrong layout: check mkfs.f2fs version");
		return 1;
	}

1624 1625 1626 1627 1628 1629 1630 1631 1632 1633 1634 1635 1636 1637
	main_segs = le32_to_cpu(raw_super->segment_count_main);
	blocks_per_seg = sbi->blocks_per_seg;

	for (i = 0; i < NR_CURSEG_NODE_TYPE; i++) {
		if (le32_to_cpu(ckpt->cur_node_segno[i]) >= main_segs ||
			le16_to_cpu(ckpt->cur_node_blkoff[i]) >= blocks_per_seg)
			return 1;
	}
	for (i = 0; i < NR_CURSEG_DATA_TYPE; i++) {
		if (le32_to_cpu(ckpt->cur_data_segno[i]) >= main_segs ||
			le16_to_cpu(ckpt->cur_data_blkoff[i]) >= blocks_per_seg)
			return 1;
	}

1638
	if (unlikely(f2fs_cp_error(sbi))) {
1639 1640 1641
		f2fs_msg(sbi->sb, KERN_ERR, "A bug case: need to run fsck");
		return 1;
	}
J
Jaegeuk Kim 已提交
1642 1643 1644 1645 1646 1647
	return 0;
}

static void init_sb_info(struct f2fs_sb_info *sbi)
{
	struct f2fs_super_block *raw_super = sbi->raw_super;
C
Chao Yu 已提交
1648
	int i, j;
J
Jaegeuk Kim 已提交
1649 1650 1651 1652 1653 1654 1655 1656 1657 1658 1659 1660 1661 1662 1663 1664

	sbi->log_sectors_per_block =
		le32_to_cpu(raw_super->log_sectors_per_block);
	sbi->log_blocksize = le32_to_cpu(raw_super->log_blocksize);
	sbi->blocksize = 1 << sbi->log_blocksize;
	sbi->log_blocks_per_seg = le32_to_cpu(raw_super->log_blocks_per_seg);
	sbi->blocks_per_seg = 1 << sbi->log_blocks_per_seg;
	sbi->segs_per_sec = le32_to_cpu(raw_super->segs_per_sec);
	sbi->secs_per_zone = le32_to_cpu(raw_super->secs_per_zone);
	sbi->total_sections = le32_to_cpu(raw_super->section_count);
	sbi->total_node_count =
		(le32_to_cpu(raw_super->segment_count_nat) / 2)
			* sbi->blocks_per_seg * NAT_ENTRY_PER_BLOCK;
	sbi->root_ino_num = le32_to_cpu(raw_super->root_ino);
	sbi->node_ino_num = le32_to_cpu(raw_super->node_ino);
	sbi->meta_ino_num = le32_to_cpu(raw_super->meta_ino);
1665
	sbi->cur_victim_sec = NULL_SECNO;
1666
	sbi->max_victim_search = DEF_MAX_VICTIM_SEARCH;
J
Jaegeuk Kim 已提交
1667

1668
	sbi->dir_level = DEF_DIR_LEVEL;
1669
	sbi->interval_time[CP_TIME] = DEF_CP_INTERVAL;
1670
	sbi->interval_time[REQ_TIME] = DEF_IDLE_INTERVAL;
1671
	clear_sbi_flag(sbi, SBI_NEED_FSCK);
1672

1673 1674 1675
	for (i = 0; i < NR_COUNT_TYPE; i++)
		atomic_set(&sbi->nr_pages[i], 0);

1676 1677
	atomic_set(&sbi->wb_sync_req, 0);

1678 1679
	INIT_LIST_HEAD(&sbi->s_list);
	mutex_init(&sbi->umount_mutex);
C
Chao Yu 已提交
1680 1681 1682
	for (i = 0; i < NR_PAGE_TYPE - 1; i++)
		for (j = HOT; j < NR_TEMP_TYPE; j++)
			mutex_init(&sbi->wio_mutex[i][j]);
1683
	spin_lock_init(&sbi->cp_lock);
J
Jaegeuk Kim 已提交
1684 1685
}

1686 1687
static int init_percpu_info(struct f2fs_sb_info *sbi)
{
1688
	int err;
1689

1690 1691 1692 1693 1694
	err = percpu_counter_init(&sbi->alloc_valid_block_count, 0, GFP_KERNEL);
	if (err)
		return err;

	return percpu_counter_init(&sbi->total_valid_inode_count, 0,
1695
								GFP_KERNEL);
1696 1697
}

1698
#ifdef CONFIG_BLK_DEV_ZONED
J
Jaegeuk Kim 已提交
1699
static int init_blkz_info(struct f2fs_sb_info *sbi, int devi)
1700
{
J
Jaegeuk Kim 已提交
1701
	struct block_device *bdev = FDEV(devi).bdev;
1702 1703 1704 1705 1706 1707 1708 1709 1710 1711
	sector_t nr_sectors = bdev->bd_part->nr_sects;
	sector_t sector = 0;
	struct blk_zone *zones;
	unsigned int i, nr_zones;
	unsigned int n = 0;
	int err = -EIO;

	if (!f2fs_sb_mounted_blkzoned(sbi->sb))
		return 0;

J
Jaegeuk Kim 已提交
1712
	if (sbi->blocks_per_blkz && sbi->blocks_per_blkz !=
1713
				SECTOR_TO_BLOCK(bdev_zone_sectors(bdev)))
J
Jaegeuk Kim 已提交
1714
		return -EINVAL;
1715
	sbi->blocks_per_blkz = SECTOR_TO_BLOCK(bdev_zone_sectors(bdev));
J
Jaegeuk Kim 已提交
1716 1717 1718
	if (sbi->log_blocks_per_blkz && sbi->log_blocks_per_blkz !=
				__ilog2_u32(sbi->blocks_per_blkz))
		return -EINVAL;
1719
	sbi->log_blocks_per_blkz = __ilog2_u32(sbi->blocks_per_blkz);
J
Jaegeuk Kim 已提交
1720 1721
	FDEV(devi).nr_blkz = SECTOR_TO_BLOCK(nr_sectors) >>
					sbi->log_blocks_per_blkz;
1722
	if (nr_sectors & (bdev_zone_sectors(bdev) - 1))
J
Jaegeuk Kim 已提交
1723
		FDEV(devi).nr_blkz++;
1724

J
Jaegeuk Kim 已提交
1725 1726
	FDEV(devi).blkz_type = kmalloc(FDEV(devi).nr_blkz, GFP_KERNEL);
	if (!FDEV(devi).blkz_type)
1727 1728 1729 1730 1731 1732 1733 1734 1735 1736 1737 1738 1739 1740 1741 1742 1743 1744 1745 1746 1747 1748 1749 1750
		return -ENOMEM;

#define F2FS_REPORT_NR_ZONES   4096

	zones = kcalloc(F2FS_REPORT_NR_ZONES, sizeof(struct blk_zone),
			GFP_KERNEL);
	if (!zones)
		return -ENOMEM;

	/* Get block zones type */
	while (zones && sector < nr_sectors) {

		nr_zones = F2FS_REPORT_NR_ZONES;
		err = blkdev_report_zones(bdev, sector,
					  zones, &nr_zones,
					  GFP_KERNEL);
		if (err)
			break;
		if (!nr_zones) {
			err = -EIO;
			break;
		}

		for (i = 0; i < nr_zones; i++) {
J
Jaegeuk Kim 已提交
1751
			FDEV(devi).blkz_type[n] = zones[i].type;
1752 1753 1754 1755 1756 1757 1758 1759 1760 1761 1762
			sector += zones[i].len;
			n++;
		}
	}

	kfree(zones);

	return err;
}
#endif

1763 1764
/*
 * Read f2fs raw super block.
1765 1766 1767
 * Because we have two copies of super block, so read both of them
 * to get the first valid one. If any one of them is broken, we pass
 * them recovery flag back to the caller.
1768
 */
1769
static int read_raw_super_block(struct f2fs_sb_info *sbi,
1770
			struct f2fs_super_block **raw_super,
1771
			int *valid_super_block, int *recovery)
1772
{
1773
	struct super_block *sb = sbi->sb;
1774
	int block;
1775
	struct buffer_head *bh;
1776
	struct f2fs_super_block *super;
1777
	int err = 0;
1778

Y
Yunlei He 已提交
1779 1780 1781
	super = kzalloc(sizeof(struct f2fs_super_block), GFP_KERNEL);
	if (!super)
		return -ENOMEM;
1782 1783 1784 1785 1786

	for (block = 0; block < 2; block++) {
		bh = sb_bread(sb, block);
		if (!bh) {
			f2fs_msg(sb, KERN_ERR, "Unable to read %dth superblock",
1787
				block + 1);
1788 1789 1790
			err = -EIO;
			continue;
		}
1791

1792
		/* sanity checking of raw super */
1793
		if (sanity_check_raw_super(sbi, bh)) {
1794 1795 1796 1797 1798 1799 1800
			f2fs_msg(sb, KERN_ERR,
				"Can't find valid F2FS filesystem in %dth superblock",
				block + 1);
			err = -EINVAL;
			brelse(bh);
			continue;
		}
1801

1802
		if (!*raw_super) {
1803 1804
			memcpy(super, bh->b_data + F2FS_SUPER_OFFSET,
							sizeof(*super));
1805 1806 1807 1808
			*valid_super_block = block;
			*raw_super = super;
		}
		brelse(bh);
1809 1810
	}

1811 1812 1813
	/* Fail to read any one of the superblocks*/
	if (err < 0)
		*recovery = 1;
1814 1815

	/* No valid superblock */
1816
	if (!*raw_super)
Y
Yunlei He 已提交
1817
		kfree(super);
1818 1819
	else
		err = 0;
1820

1821
	return err;
1822 1823
}

1824
int f2fs_commit_super(struct f2fs_sb_info *sbi, bool recover)
J
Jaegeuk Kim 已提交
1825
{
J
Jaegeuk Kim 已提交
1826
	struct buffer_head *bh;
J
Jaegeuk Kim 已提交
1827 1828
	int err;

1829 1830 1831
	if ((recover && f2fs_readonly(sbi->sb)) ||
				bdev_read_only(sbi->sb->s_bdev)) {
		set_sbi_flag(sbi, SBI_NEED_SB_WRITE);
1832
		return -EROFS;
1833
	}
1834

1835 1836
	/* write back-up superblock first */
	bh = sb_getblk(sbi->sb, sbi->valid_super_block ? 0: 1);
J
Jaegeuk Kim 已提交
1837 1838
	if (!bh)
		return -EIO;
1839
	err = __f2fs_commit_super(bh, F2FS_RAW_SUPER(sbi));
J
Jaegeuk Kim 已提交
1840
	brelse(bh);
C
Chao Yu 已提交
1841 1842 1843

	/* if we are in recovery path, skip writing valid superblock */
	if (recover || err)
J
Jaegeuk Kim 已提交
1844
		return err;
J
Jaegeuk Kim 已提交
1845 1846

	/* write current valid superblock */
1847 1848 1849 1850 1851 1852
	bh = sb_getblk(sbi->sb, sbi->valid_super_block);
	if (!bh)
		return -EIO;
	err = __f2fs_commit_super(bh, F2FS_RAW_SUPER(sbi));
	brelse(bh);
	return err;
J
Jaegeuk Kim 已提交
1853 1854
}

J
Jaegeuk Kim 已提交
1855 1856 1857
static int f2fs_scan_devices(struct f2fs_sb_info *sbi)
{
	struct f2fs_super_block *raw_super = F2FS_RAW_SUPER(sbi);
1858
	unsigned int max_devices = MAX_DEVICES;
J
Jaegeuk Kim 已提交
1859 1860
	int i;

1861 1862 1863
	/* Initialize single device information */
	if (!RDEV(0).path[0]) {
		if (!bdev_is_zoned(sbi->sb->s_bdev))
J
Jaegeuk Kim 已提交
1864
			return 0;
1865 1866
		max_devices = 1;
	}
J
Jaegeuk Kim 已提交
1867

1868 1869 1870 1871 1872 1873 1874 1875
	/*
	 * Initialize multiple devices information, or single
	 * zoned block device information.
	 */
	sbi->devs = kcalloc(max_devices, sizeof(struct f2fs_dev_info),
				GFP_KERNEL);
	if (!sbi->devs)
		return -ENOMEM;
J
Jaegeuk Kim 已提交
1876

1877
	for (i = 0; i < max_devices; i++) {
J
Jaegeuk Kim 已提交
1878

1879 1880 1881 1882 1883 1884 1885
		if (i > 0 && !RDEV(i).path[0])
			break;

		if (max_devices == 1) {
			/* Single zoned block device mount */
			FDEV(0).bdev =
				blkdev_get_by_dev(sbi->sb->s_bdev->bd_dev,
J
Jaegeuk Kim 已提交
1886
					sbi->sb->s_mode, sbi->sb->s_type);
1887 1888 1889 1890 1891 1892 1893 1894 1895 1896 1897 1898 1899 1900 1901 1902 1903 1904
		} else {
			/* Multi-device mount */
			memcpy(FDEV(i).path, RDEV(i).path, MAX_PATH_LEN);
			FDEV(i).total_segments =
				le32_to_cpu(RDEV(i).total_segments);
			if (i == 0) {
				FDEV(i).start_blk = 0;
				FDEV(i).end_blk = FDEV(i).start_blk +
				    (FDEV(i).total_segments <<
				    sbi->log_blocks_per_seg) - 1 +
				    le32_to_cpu(raw_super->segment0_blkaddr);
			} else {
				FDEV(i).start_blk = FDEV(i - 1).end_blk + 1;
				FDEV(i).end_blk = FDEV(i).start_blk +
					(FDEV(i).total_segments <<
					sbi->log_blocks_per_seg) - 1;
			}
			FDEV(i).bdev = blkdev_get_by_path(FDEV(i).path,
J
Jaegeuk Kim 已提交
1905
					sbi->sb->s_mode, sbi->sb->s_type);
1906
		}
J
Jaegeuk Kim 已提交
1907 1908 1909 1910 1911 1912 1913 1914 1915 1916 1917 1918 1919 1920 1921 1922 1923 1924 1925
		if (IS_ERR(FDEV(i).bdev))
			return PTR_ERR(FDEV(i).bdev);

		/* to release errored devices */
		sbi->s_ndevs = i + 1;

#ifdef CONFIG_BLK_DEV_ZONED
		if (bdev_zoned_model(FDEV(i).bdev) == BLK_ZONED_HM &&
				!f2fs_sb_mounted_blkzoned(sbi->sb)) {
			f2fs_msg(sbi->sb, KERN_ERR,
				"Zoned block device feature not enabled\n");
			return -EINVAL;
		}
		if (bdev_zoned_model(FDEV(i).bdev) != BLK_ZONED_NONE) {
			if (init_blkz_info(sbi, i)) {
				f2fs_msg(sbi->sb, KERN_ERR,
					"Failed to initialize F2FS blkzone information");
				return -EINVAL;
			}
1926 1927
			if (max_devices == 1)
				break;
J
Jaegeuk Kim 已提交
1928 1929 1930 1931 1932 1933 1934 1935 1936 1937 1938 1939 1940 1941 1942 1943
			f2fs_msg(sbi->sb, KERN_INFO,
				"Mount Device [%2d]: %20s, %8u, %8x - %8x (zone: %s)",
				i, FDEV(i).path,
				FDEV(i).total_segments,
				FDEV(i).start_blk, FDEV(i).end_blk,
				bdev_zoned_model(FDEV(i).bdev) == BLK_ZONED_HA ?
				"Host-aware" : "Host-managed");
			continue;
		}
#endif
		f2fs_msg(sbi->sb, KERN_INFO,
			"Mount Device [%2d]: %20s, %8u, %8x - %8x",
				i, FDEV(i).path,
				FDEV(i).total_segments,
				FDEV(i).start_blk, FDEV(i).end_blk);
	}
1944 1945
	f2fs_msg(sbi->sb, KERN_INFO,
			"IO Block Size: %8d KB", F2FS_IO_SIZE_KB(sbi));
J
Jaegeuk Kim 已提交
1946 1947 1948
	return 0;
}

J
Jaegeuk Kim 已提交
1949 1950 1951
static int f2fs_fill_super(struct super_block *sb, void *data, int silent)
{
	struct f2fs_sb_info *sbi;
1952
	struct f2fs_super_block *raw_super;
J
Jaegeuk Kim 已提交
1953
	struct inode *root;
1954
	int err;
1955
	bool retry = true, need_fsck = false;
1956
	char *options = NULL;
1957
	int recovery, i, valid_super_block;
1958
	struct curseg_info *seg_i;
J
Jaegeuk Kim 已提交
1959

1960
try_onemore:
1961 1962
	err = -EINVAL;
	raw_super = NULL;
1963
	valid_super_block = -1;
1964 1965
	recovery = 0;

J
Jaegeuk Kim 已提交
1966 1967 1968 1969 1970
	/* allocate memory for f2fs-specific super block info */
	sbi = kzalloc(sizeof(struct f2fs_sb_info), GFP_KERNEL);
	if (!sbi)
		return -ENOMEM;

1971 1972
	sbi->sb = sb;

K
Keith Mok 已提交
1973 1974 1975 1976 1977 1978 1979 1980 1981
	/* Load the checksum driver */
	sbi->s_chksum_driver = crypto_alloc_shash("crc32", 0, 0);
	if (IS_ERR(sbi->s_chksum_driver)) {
		f2fs_msg(sb, KERN_ERR, "Cannot load crc32 driver.");
		err = PTR_ERR(sbi->s_chksum_driver);
		sbi->s_chksum_driver = NULL;
		goto free_sbi;
	}

1982
	/* set a block size */
1983
	if (unlikely(!sb_set_blocksize(sb, F2FS_BLKSIZE))) {
1984
		f2fs_msg(sb, KERN_ERR, "unable to set blocksize");
J
Jaegeuk Kim 已提交
1985
		goto free_sbi;
1986
	}
J
Jaegeuk Kim 已提交
1987

1988
	err = read_raw_super_block(sbi, &raw_super, &valid_super_block,
1989
								&recovery);
1990 1991 1992
	if (err)
		goto free_sbi;

1993
	sb->s_fs_info = sbi;
1994 1995
	sbi->raw_super = raw_super;

1996 1997 1998 1999 2000 2001 2002 2003 2004
	/*
	 * The BLKZONED feature indicates that the drive was formatted with
	 * zone alignment optimization. This is optional for host-aware
	 * devices, but mandatory for host-managed zoned block devices.
	 */
#ifndef CONFIG_BLK_DEV_ZONED
	if (f2fs_sb_mounted_blkzoned(sb)) {
		f2fs_msg(sb, KERN_ERR,
			 "Zoned block device support is not enabled\n");
2005
		err = -EOPNOTSUPP;
2006 2007 2008
		goto free_sb_buf;
	}
#endif
2009
	default_options(sbi);
J
Jaegeuk Kim 已提交
2010
	/* parse mount options */
2011 2012 2013
	options = kstrdup((const char *)data, GFP_KERNEL);
	if (data && !options) {
		err = -ENOMEM;
J
Jaegeuk Kim 已提交
2014
		goto free_sb_buf;
2015 2016 2017 2018 2019
	}

	err = parse_options(sb, options);
	if (err)
		goto free_options;
J
Jaegeuk Kim 已提交
2020

C
Chao Yu 已提交
2021 2022 2023
	sbi->max_file_blocks = max_file_blocks();
	sb->s_maxbytes = sbi->max_file_blocks <<
				le32_to_cpu(raw_super->log_blocksize);
J
Jaegeuk Kim 已提交
2024 2025 2026
	sb->s_max_links = F2FS_LINK_MAX;
	get_random_bytes(&sbi->s_next_generation, sizeof(u32));

C
Chao Yu 已提交
2027 2028 2029
#ifdef CONFIG_QUOTA
	sb->dq_op = &f2fs_quota_operations;
	sb->s_qcop = &f2fs_quotactl_ops;
C
Chao Yu 已提交
2030
	sb->s_quota_types = QTYPE_MASK_USR | QTYPE_MASK_GRP | QTYPE_MASK_PRJ;
C
Chao Yu 已提交
2031 2032
#endif

J
Jaegeuk Kim 已提交
2033
	sb->s_op = &f2fs_sops;
2034
	sb->s_cop = &f2fs_cryptops;
J
Jaegeuk Kim 已提交
2035 2036 2037 2038 2039 2040
	sb->s_xattr = f2fs_xattr_handlers;
	sb->s_export_op = &f2fs_export_ops;
	sb->s_magic = F2FS_SUPER_MAGIC;
	sb->s_time_gran = 1;
	sb->s_flags = (sb->s_flags & ~MS_POSIXACL) |
		(test_opt(sbi, POSIX_ACL) ? MS_POSIXACL : 0);
2041
	memcpy(&sb->s_uuid, raw_super->uuid, sizeof(raw_super->uuid));
J
Jaegeuk Kim 已提交
2042 2043

	/* init f2fs-specific super block info */
2044
	sbi->valid_super_block = valid_super_block;
J
Jaegeuk Kim 已提交
2045 2046
	mutex_init(&sbi->gc_mutex);
	mutex_init(&sbi->cp_mutex);
2047
	init_rwsem(&sbi->node_write);
2048
	init_rwsem(&sbi->node_change);
2049 2050 2051

	/* disallow all the data/node/meta page writes */
	set_sbi_flag(sbi, SBI_POR_DOING);
J
Jaegeuk Kim 已提交
2052
	spin_lock_init(&sbi->stat_lock);
2053

J
Jaegeuk Kim 已提交
2054
	for (i = 0; i < NR_PAGE_TYPE; i++) {
J
Jaegeuk Kim 已提交
2055 2056 2057 2058 2059
		int n = (i == META) ? 1: NR_TEMP_TYPE;
		int j;

		sbi->write_io[i] = kmalloc(n * sizeof(struct f2fs_bio_info),
								GFP_KERNEL);
2060 2061
		if (!sbi->write_io[i]) {
			err = -ENOMEM;
J
Jaegeuk Kim 已提交
2062
			goto free_options;
2063
		}
J
Jaegeuk Kim 已提交
2064 2065 2066 2067 2068

		for (j = HOT; j < n; j++) {
			init_rwsem(&sbi->write_io[i][j].io_rwsem);
			sbi->write_io[i][j].sbi = sbi;
			sbi->write_io[i][j].bio = NULL;
2069 2070
			spin_lock_init(&sbi->write_io[i][j].io_lock);
			INIT_LIST_HEAD(&sbi->write_io[i][j].io_list);
J
Jaegeuk Kim 已提交
2071
		}
J
Jaegeuk Kim 已提交
2072
	}
2073

2074
	init_rwsem(&sbi->cp_rwsem);
2075
	init_waitqueue_head(&sbi->cp_wait);
J
Jaegeuk Kim 已提交
2076 2077
	init_sb_info(sbi);

2078 2079 2080 2081
	err = init_percpu_info(sbi);
	if (err)
		goto free_options;

2082 2083
	if (F2FS_IO_SIZE(sbi) > 1) {
		sbi->write_io_dummy =
2084
			mempool_create_page_pool(2 * (F2FS_IO_SIZE(sbi) - 1), 0);
2085 2086
		if (!sbi->write_io_dummy) {
			err = -ENOMEM;
2087
			goto free_options;
2088
		}
2089 2090
	}

J
Jaegeuk Kim 已提交
2091 2092 2093
	/* get an inode for meta space */
	sbi->meta_inode = f2fs_iget(sb, F2FS_META_INO(sbi));
	if (IS_ERR(sbi->meta_inode)) {
2094
		f2fs_msg(sb, KERN_ERR, "Failed to read F2FS meta data inode");
J
Jaegeuk Kim 已提交
2095
		err = PTR_ERR(sbi->meta_inode);
2096
		goto free_io_dummy;
J
Jaegeuk Kim 已提交
2097 2098 2099
	}

	err = get_valid_checkpoint(sbi);
2100 2101
	if (err) {
		f2fs_msg(sb, KERN_ERR, "Failed to get valid F2FS checkpoint");
J
Jaegeuk Kim 已提交
2102
		goto free_meta_inode;
2103
	}
J
Jaegeuk Kim 已提交
2104

J
Jaegeuk Kim 已提交
2105 2106 2107 2108 2109 2110 2111
	/* Initialize device list */
	err = f2fs_scan_devices(sbi);
	if (err) {
		f2fs_msg(sb, KERN_ERR, "Failed to find devices");
		goto free_devices;
	}

J
Jaegeuk Kim 已提交
2112 2113
	sbi->total_valid_node_count =
				le32_to_cpu(sbi->ckpt->valid_node_count);
2114 2115
	percpu_counter_set(&sbi->total_valid_inode_count,
				le32_to_cpu(sbi->ckpt->valid_inode_count));
J
Jaegeuk Kim 已提交
2116 2117 2118 2119
	sbi->user_block_count = le64_to_cpu(sbi->ckpt->user_block_count);
	sbi->total_valid_block_count =
				le64_to_cpu(sbi->ckpt->valid_block_count);
	sbi->last_valid_block_count = sbi->total_valid_block_count;
2120
	sbi->reserved_blocks = 0;
2121

2122 2123 2124 2125
	for (i = 0; i < NR_INODE_TYPE; i++) {
		INIT_LIST_HEAD(&sbi->inode_list[i]);
		spin_lock_init(&sbi->inode_lock[i]);
	}
J
Jaegeuk Kim 已提交
2126

C
Chao Yu 已提交
2127 2128
	init_extent_cache_info(sbi);

J
Jaegeuk Kim 已提交
2129
	init_ino_entry_info(sbi);
J
Jaegeuk Kim 已提交
2130 2131 2132

	/* setup f2fs internal modules */
	err = build_segment_manager(sbi);
2133 2134 2135
	if (err) {
		f2fs_msg(sb, KERN_ERR,
			"Failed to initialize F2FS segment manager");
J
Jaegeuk Kim 已提交
2136
		goto free_sm;
2137
	}
J
Jaegeuk Kim 已提交
2138
	err = build_node_manager(sbi);
2139 2140 2141
	if (err) {
		f2fs_msg(sb, KERN_ERR,
			"Failed to initialize F2FS node manager");
J
Jaegeuk Kim 已提交
2142
		goto free_nm;
2143
	}
J
Jaegeuk Kim 已提交
2144

2145 2146 2147 2148 2149 2150 2151 2152 2153
	/* For write statistics */
	if (sb->s_bdev->bd_part)
		sbi->sectors_written_start =
			(u64)part_stat_read(sb->s_bdev->bd_part, sectors[1]);

	/* Read accumulated write IO statistics if exists */
	seg_i = CURSEG_I(sbi, CURSEG_HOT_NODE);
	if (__exist_node_summaries(sbi))
		sbi->kbytes_written =
2154
			le64_to_cpu(seg_i->journal->info.kbytes_written);
2155

J
Jaegeuk Kim 已提交
2156 2157 2158 2159 2160
	build_gc_manager(sbi);

	/* get an inode for node space */
	sbi->node_inode = f2fs_iget(sb, F2FS_NODE_INO(sbi));
	if (IS_ERR(sbi->node_inode)) {
2161
		f2fs_msg(sb, KERN_ERR, "Failed to read node inode");
J
Jaegeuk Kim 已提交
2162 2163 2164 2165
		err = PTR_ERR(sbi->node_inode);
		goto free_nm;
	}

2166 2167
	f2fs_join_shrinker(sbi);

2168 2169 2170 2171
	err = f2fs_build_stats(sbi);
	if (err)
		goto free_nm;

J
Jaegeuk Kim 已提交
2172
	/* if there are nt orphan nodes free them */
2173 2174 2175
	err = recover_orphan_inodes(sbi);
	if (err)
		goto free_node_inode;
J
Jaegeuk Kim 已提交
2176 2177 2178 2179

	/* read root inode and dentry */
	root = f2fs_iget(sb, F2FS_ROOT_INO(sbi));
	if (IS_ERR(root)) {
2180
		f2fs_msg(sb, KERN_ERR, "Failed to read root inode");
J
Jaegeuk Kim 已提交
2181 2182 2183
		err = PTR_ERR(root);
		goto free_node_inode;
	}
2184
	if (!S_ISDIR(root->i_mode) || !root->i_blocks || !root->i_size) {
2185
		iput(root);
2186
		err = -EINVAL;
2187
		goto free_node_inode;
2188
	}
J
Jaegeuk Kim 已提交
2189 2190 2191 2192 2193 2194 2195

	sb->s_root = d_make_root(root); /* allocate root dentry */
	if (!sb->s_root) {
		err = -ENOMEM;
		goto free_root_inode;
	}

2196
	err = f2fs_register_sysfs(sbi);
2197
	if (err)
C
Chao Yu 已提交
2198
		goto free_root_inode;
2199

2200 2201
	/* recover fsynced data */
	if (!test_opt(sbi, DISABLE_ROLL_FORWARD)) {
2202 2203 2204 2205 2206
		/*
		 * mount should be failed, when device has readonly mode, and
		 * previous checkpoint was not done by clean system shutdown.
		 */
		if (bdev_read_only(sb->s_bdev) &&
2207
				!is_set_ckpt_flags(sbi, CP_UMOUNT_FLAG)) {
2208
			err = -EROFS;
C
Chao Yu 已提交
2209
			goto free_sysfs;
2210
		}
2211 2212 2213 2214

		if (need_fsck)
			set_sbi_flag(sbi, SBI_NEED_FSCK);

2215 2216 2217
		if (!retry)
			goto skip_recovery;

2218 2219
		err = recover_fsync_data(sbi, false);
		if (err < 0) {
2220
			need_fsck = true;
2221
			f2fs_msg(sb, KERN_ERR,
2222
				"Cannot recover all fsync data errno=%d", err);
C
Chao Yu 已提交
2223
			goto free_sysfs;
2224
		}
2225 2226 2227 2228 2229 2230 2231
	} else {
		err = recover_fsync_data(sbi, true);

		if (!f2fs_readonly(sb) && err > 0) {
			err = -EINVAL;
			f2fs_msg(sb, KERN_ERR,
				"Need to recover fsync data");
C
Chao Yu 已提交
2232
			goto free_sysfs;
2233
		}
2234
	}
2235
skip_recovery:
2236 2237
	/* recover_fsync_data() cleared this already */
	clear_sbi_flag(sbi, SBI_POR_DOING);
2238

2239 2240 2241 2242
	/*
	 * If filesystem is not mounted as read-only then
	 * do start the gc_thread.
	 */
2243
	if (test_opt(sbi, BG_GC) && !f2fs_readonly(sb)) {
2244 2245 2246
		/* After POR, we can run background GC thread.*/
		err = start_gc_thread(sbi);
		if (err)
C
Chao Yu 已提交
2247
			goto free_sysfs;
2248
	}
2249
	kfree(options);
2250 2251

	/* recover broken superblock */
2252
	if (recovery) {
2253 2254
		err = f2fs_commit_super(sbi, true);
		f2fs_msg(sb, KERN_INFO,
2255
			"Try to recover %dth superblock, ret: %d",
2256
			sbi->valid_super_block ? 1 : 2, err);
2257 2258
	}

2259 2260
	f2fs_msg(sbi->sb, KERN_NOTICE, "Mounted with checkpoint version = %llx",
				cur_cp_version(F2FS_CKPT(sbi)));
2261
	f2fs_update_time(sbi, CP_TIME);
2262
	f2fs_update_time(sbi, REQ_TIME);
J
Jaegeuk Kim 已提交
2263
	return 0;
2264

C
Chao Yu 已提交
2265
free_sysfs:
2266
	f2fs_sync_inode_meta(sbi);
2267
	f2fs_unregister_sysfs(sbi);
J
Jaegeuk Kim 已提交
2268 2269 2270 2271
free_root_inode:
	dput(sb->s_root);
	sb->s_root = NULL;
free_node_inode:
2272
	truncate_inode_pages_final(NODE_MAPPING(sbi));
2273
	mutex_lock(&sbi->umount_mutex);
2274
	release_ino_entry(sbi, true);
2275
	f2fs_leave_shrinker(sbi);
2276 2277 2278 2279 2280 2281 2282
	/*
	 * Some dirty meta pages can be produced by recover_orphan_inodes()
	 * failed by EIO. Then, iput(node_inode) can trigger balance_fs_bg()
	 * followed by write_checkpoint() through f2fs_write_node_pages(), which
	 * falls into an infinite loop in sync_meta_pages().
	 */
	truncate_inode_pages_final(META_MAPPING(sbi));
J
Jaegeuk Kim 已提交
2283
	iput(sbi->node_inode);
2284
	mutex_unlock(&sbi->umount_mutex);
2285
	f2fs_destroy_stats(sbi);
J
Jaegeuk Kim 已提交
2286 2287 2288 2289
free_nm:
	destroy_node_manager(sbi);
free_sm:
	destroy_segment_manager(sbi);
J
Jaegeuk Kim 已提交
2290 2291
free_devices:
	destroy_device_list(sbi);
J
Jaegeuk Kim 已提交
2292 2293 2294 2295
	kfree(sbi->ckpt);
free_meta_inode:
	make_bad_inode(sbi->meta_inode);
	iput(sbi->meta_inode);
2296 2297
free_io_dummy:
	mempool_destroy(sbi->write_io_dummy);
2298
free_options:
J
Jaegeuk Kim 已提交
2299 2300
	for (i = 0; i < NR_PAGE_TYPE; i++)
		kfree(sbi->write_io[i]);
2301
	destroy_percpu_info(sbi);
2302
	kfree(options);
J
Jaegeuk Kim 已提交
2303
free_sb_buf:
Y
Yunlei He 已提交
2304
	kfree(raw_super);
J
Jaegeuk Kim 已提交
2305
free_sbi:
K
Keith Mok 已提交
2306 2307
	if (sbi->s_chksum_driver)
		crypto_free_shash(sbi->s_chksum_driver);
J
Jaegeuk Kim 已提交
2308
	kfree(sbi);
2309 2310 2311

	/* give only one another chance */
	if (retry) {
2312
		retry = false;
2313 2314 2315
		shrink_dcache_sb(sb);
		goto try_onemore;
	}
J
Jaegeuk Kim 已提交
2316 2317 2318 2319 2320 2321 2322 2323 2324
	return err;
}

static struct dentry *f2fs_mount(struct file_system_type *fs_type, int flags,
			const char *dev_name, void *data)
{
	return mount_bdev(fs_type, flags, dev_name, data, f2fs_fill_super);
}

2325 2326
static void kill_f2fs_super(struct super_block *sb)
{
2327
	if (sb->s_root) {
2328
		set_sbi_flag(F2FS_SB(sb), SBI_IS_CLOSE);
2329 2330 2331
		stop_gc_thread(F2FS_SB(sb));
		stop_discard_thread(F2FS_SB(sb));
	}
2332 2333 2334
	kill_block_super(sb);
}

J
Jaegeuk Kim 已提交
2335 2336 2337 2338
static struct file_system_type f2fs_fs_type = {
	.owner		= THIS_MODULE,
	.name		= "f2fs",
	.mount		= f2fs_mount,
2339
	.kill_sb	= kill_f2fs_super,
J
Jaegeuk Kim 已提交
2340 2341
	.fs_flags	= FS_REQUIRES_DEV,
};
2342
MODULE_ALIAS_FS("f2fs");
J
Jaegeuk Kim 已提交
2343

2344
static int __init init_inodecache(void)
J
Jaegeuk Kim 已提交
2345
{
2346 2347 2348
	f2fs_inode_cachep = kmem_cache_create("f2fs_inode_cache",
			sizeof(struct f2fs_inode_info), 0,
			SLAB_RECLAIM_ACCOUNT|SLAB_ACCOUNT, NULL);
2349
	if (!f2fs_inode_cachep)
J
Jaegeuk Kim 已提交
2350 2351 2352 2353 2354 2355 2356 2357 2358 2359 2360 2361 2362 2363 2364 2365 2366 2367
		return -ENOMEM;
	return 0;
}

static void destroy_inodecache(void)
{
	/*
	 * Make sure all delayed rcu free inodes are flushed before we
	 * destroy cache.
	 */
	rcu_barrier();
	kmem_cache_destroy(f2fs_inode_cachep);
}

static int __init init_f2fs_fs(void)
{
	int err;

2368 2369
	f2fs_build_trace_ios();

J
Jaegeuk Kim 已提交
2370 2371 2372 2373 2374
	err = init_inodecache();
	if (err)
		goto fail;
	err = create_node_manager_caches();
	if (err)
2375
		goto free_inodecache;
2376
	err = create_segment_manager_caches();
J
Jaegeuk Kim 已提交
2377
	if (err)
2378
		goto free_node_manager_caches;
J
Jaegeuk Kim 已提交
2379 2380
	err = create_checkpoint_caches();
	if (err)
2381
		goto free_segment_manager_caches;
C
Chao Yu 已提交
2382 2383 2384
	err = create_extent_cache();
	if (err)
		goto free_checkpoint_caches;
2385
	err = f2fs_init_sysfs();
C
Chao Yu 已提交
2386
	if (err)
C
Chao Yu 已提交
2387
		goto free_extent_cache;
2388
	err = register_shrinker(&f2fs_shrinker_info);
2389
	if (err)
C
Chao Yu 已提交
2390
		goto free_sysfs;
2391 2392 2393
	err = register_filesystem(&f2fs_fs_type);
	if (err)
		goto free_shrinker;
2394 2395 2396
	err = f2fs_create_root_stats();
	if (err)
		goto free_filesystem;
2397 2398
	return 0;

2399 2400
free_filesystem:
	unregister_filesystem(&f2fs_fs_type);
2401 2402
free_shrinker:
	unregister_shrinker(&f2fs_shrinker_info);
C
Chao Yu 已提交
2403
free_sysfs:
2404
	f2fs_exit_sysfs();
C
Chao Yu 已提交
2405 2406
free_extent_cache:
	destroy_extent_cache();
2407 2408
free_checkpoint_caches:
	destroy_checkpoint_caches();
2409 2410
free_segment_manager_caches:
	destroy_segment_manager_caches();
2411 2412 2413 2414
free_node_manager_caches:
	destroy_node_manager_caches();
free_inodecache:
	destroy_inodecache();
J
Jaegeuk Kim 已提交
2415 2416 2417 2418 2419 2420
fail:
	return err;
}

static void __exit exit_f2fs_fs(void)
{
2421
	f2fs_destroy_root_stats();
J
Jaegeuk Kim 已提交
2422
	unregister_filesystem(&f2fs_fs_type);
T
Tiezhu Yang 已提交
2423
	unregister_shrinker(&f2fs_shrinker_info);
2424
	f2fs_exit_sysfs();
W
Wanpeng Li 已提交
2425
	destroy_extent_cache();
J
Jaegeuk Kim 已提交
2426
	destroy_checkpoint_caches();
2427
	destroy_segment_manager_caches();
J
Jaegeuk Kim 已提交
2428 2429
	destroy_node_manager_caches();
	destroy_inodecache();
2430
	f2fs_destroy_trace_ios();
J
Jaegeuk Kim 已提交
2431 2432 2433 2434 2435 2436 2437 2438
}

module_init(init_f2fs_fs)
module_exit(exit_f2fs_fs)

MODULE_AUTHOR("Samsung Electronics's Praesto Team");
MODULE_DESCRIPTION("Flash Friendly File System");
MODULE_LICENSE("GPL");
2439