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Message-Id: <20080908205222t-sato@mail.jp.nec.com>
Date: Mon, 8 Sep 2008 20:52:22 +0900
From: Takashi Sato <t-sato@...jp.nec.com>
To: Andrew Morton <akpm@...ux-foundation.org>,
Christoph Hellwig <hch@...radead.org>,
Oleg Nesterov <oleg@...sign.ru>
Cc: "linux-fsdevel@...r.kernel.org" <linux-fsdevel@...r.kernel.org>,
"dm-devel@...hat.com" <dm-devel@...hat.com>,
"viro@...IV.linux.org.uk" <viro@...IV.linux.org.uk>,
"linux-ext4@...r.kernel.org" <linux-ext4@...r.kernel.org>,
"xfs@....sgi.com" <xfs@....sgi.com>,
"axboe@...nel.dk" <axboe@...nel.dk>,
"mtk.manpages@...glemail.com" <mtk.manpages@...glemail.com>,
"linux-kernel@...r.kernel.org" <linux-kernel@...r.kernel.org>
Subject: [PATCH 0/3] freeze feature ver 1.11
Hi, Andrew, Christoph and Oleg
I've addressed your comments in these patches
and re-based from linux-2.6.26-rc3 to linux-2.6.27-rc5.
The points are followings.
- Replaced the semaphore (bd_freeze_sem) with
the mutex (bd_fsfreeze_mutex).
- To avoid the deadlock, fixed thaw_bdev() so that it didn't call
del_freeze_timeout() only when it's called by the delayed work task.
- Changed the function names and global symbol names like
xxx_freeze_yyy() to xxx_fsfreeze_yyy().
- Removed unnecessary EXPORT_SYMBOL_GPL.
- Fixed some comments and changelogs properly.
Please refer to following my previous mails for details of changes.
- http://marc.info/?l=linux-ext4&m=122000280524578&w=2
- http://marc.info/?l=linux-ext4&m=122000280424572&w=2
- http://marc.info/?l=linux-ext4&m=122000293824805&w=2
Currently, ext3 in mainline Linux doesn't have the freeze feature which
suspends write requests. So, we cannot take a backup which keeps
the filesystem's consistency with the storage device's features
(snapshot and replication) while it is mounted.
In many case, a commercial filesystem (e.g. VxFS) has
the freeze feature and it would be used to get the consistent backup.
If Linux's standard filesytem ext3 has the freeze feature, we can do it
without a commercial filesystem.
So I have implemented the ioctls of the freeze feature.
I think we can take the consistent backup with the following steps.
1. Freeze the filesystem with the freeze ioctl.
2. Separate the replication volume or create the snapshot
with the storage device's feature.
3. Unfreeze the filesystem with the unfreeze ioctl.
4. Take the backup from the separated replication volume
or the snapshot.
[PATCH 1/3] Implement generic freeze feature
The ioctls for the generic freeze feature are below.
o Freeze the filesystem
int ioctl(int fd, int FIFREEZE, arg)
fd: The file descriptor of the mountpoint
FIFREEZE: request code for the freeze
arg: Ignored
Return value: 0 if the operation succeeds. Otherwise, -1
o Unfreeze the filesystem
int ioctl(int fd, int FITHAW, arg)
fd: The file descriptor of the mountpoint
FITHAW: request code for unfreeze
arg: Ignored
Return value: 0 if the operation succeeds. Otherwise, -1
[PATCH 2/3] Remove XFS specific ioctl interfaces for freeze feature
It removes XFS specific ioctl interfaces and request codes
for freeze feature.
This patch has been supplied by David Chinner.
[PATCH 3/3] Add timeout feature
The timeout feature is added to "freeze ioctl" to solve a deadlock
when the freezer accesses a frozen filesystem. And new ioctl
to reset the timeout period is added to extend the timeout period.
For example, the freezer resets the timeout period to 10 seconds every 5
seconds. In this approach, even if the freezer causes a deadlock by
accessing the frozen filesystem, it will be solved by the timeout
in 10 seconds and the freezer will be able to recognize that
at the next reset of timeout period.
o Freeze the filesystem
int ioctl(int fd, int FIFREEZE, long *timeout_sec)
fd: The file descriptor of the mountpoint
FIFREEZE: request code for the freeze
timeout_sec: the timeout period in seconds
If it's 0 or 1, the timeout isn't set.
This special case of "1" is implemented to keep
the compatibility with XFS applications.
Return value: 0 if the operation succeeds. Otherwise, -1
o Reset the timeout period
This is useful for the application to set the timeout_sec more accurately.
For example, the freezer resets the timeout_sec to 10 seconds every 5
seconds. In this approach, even if the freezer causes a deadlock
by accessing the frozen filesystem, it will be solved by the timeout
in 10 seconds and the freezer can recognize that at the next reset
of timeout_sec.
int ioctl(int fd, int FIFREEZE_RESET_TIMEOUT, long *timeout_sec)
fd:file descriptor of mountpoint
FIFREEZE_RESET_TIMEOUT: request code for reset of timeout period
timeout_sec: new timeout period in seconds
Return value: 0 if the operation succeeds. Otherwise, -1
Error number: If the filesystem has already been unfrozen,
errno is set to EINVAL.
Any comments are very welcome.
Cheers, Takashi
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