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This patch-set includes the following major enhancement patches. o introduce large directory support o introduce f2fs_issue_flush to merge redundant flush commands o merge write IOs as much as possible aligned to the segment o add sysfs entries to tune the f2fs configuration o use radix_tree for the free_nid_list to reduce in-memory operations o remove costly bit operations in f2fs_find_entry o enhance the readahead flow for CP/NAT/SIT/SSA blocks The other bug fixes are as follows. o recover xattr node blocks correctly after sudden-power-cut o fix to calculate the maximum number of node ids o enhance to handle many error cases And, there are a bunch of cleanups. -----BEGIN PGP SIGNATURE----- Version: GnuPG v1.4.11 (GNU/Linux) iQIcBAABAgAGBQJTQiQrAAoJEEAUqH6CSFDSlbIP/iq06BrUeMDLoQFhA2GQFKFD wd0A5h9hCiFcKBcI/u/aAQqj/a5wdwzDl9XzH2PzJ45IM6sVGQZ0lv+kdLhab6rk ipNbV7G0yLAX+8ygS6GZF7pSKfMzGSGTrRvfdtoiunIip1jCY1IkUxv1XMgBSPza wnWYrE5HXEqRUDCqPXJyxrPmx0/0jw8/V82Ng9stnY34ySs+l/3Pvg65Kh0QuSSy BRjJUGlOCF68KUBKd+6YB2T5KlbQde3/5lhP+GMOi+xm5sFB+j+59r/WpJpF2Nxs ImxQs5GkiU01ErH/rn5FgHY/zzddQenBKwOvrjEeUA1eVpBurdsIr1JN0P6qDbgB ho5U8LzCQq+HZiW444eQGkXSOagpUKqDhTVJO7Fji/wG88Atc9gLX3ix8TH2skxT C5CvvrJM7DKBtkZyTzotKY/cWorOZhge6E/EkbGaM1sSHdK5b1Rg4YlFi9TDyz0n QjGD1uuvEeukeKGdIG9pjc7o5ledbMDYwLpT2RuRXenLOTsn8BqDOo9aRTg+5Kag tJNJLFumjPR2mEBNKjicJMUf381J/SKDwZszAz9mgvCZXldMza/Ax0LzJDJCVmkP UuBiVzGxVzpd33IsESUDr0J9hc+t8kS10jfAeKnE3cpb6n7/RYxstHh6CHOFKNXM gPUSYPN3CYiP47DnSfzA =eSW+ -----END PGP SIGNATURE----- Merge tag 'for-f2fs-3.15' of git://git.kernel.org/pub/scm/linux/kernel/git/jaegeuk/f2fs Pull f2fs updates from Jaegeuk Kim: "This patch-set includes the following major enhancement patches. - introduce large directory support - introduce f2fs_issue_flush to merge redundant flush commands - merge write IOs as much as possible aligned to the segment - add sysfs entries to tune the f2fs configuration - use radix_tree for the free_nid_list to reduce in-memory operations - remove costly bit operations in f2fs_find_entry - enhance the readahead flow for CP/NAT/SIT/SSA blocks The other bug fixes are as follows: - recover xattr node blocks correctly after sudden-power-cut - fix to calculate the maximum number of node ids - enhance to handle many error cases And, there are a bunch of cleanups" * tag 'for-f2fs-3.15' of git://git.kernel.org/pub/scm/linux/kernel/git/jaegeuk/f2fs: (62 commits) f2fs: fix wrong statistics of inline data f2fs: check the acl's validity before setting f2fs: introduce f2fs_issue_flush to avoid redundant flush issue f2fs: fix to cover io->bio with io_rwsem f2fs: fix error path when fail to read inline data f2fs: use list_for_each_entry{_safe} for simplyfying code f2fs: avoid free slab cache under spinlock f2fs: avoid unneeded lookup when xattr name length is too long f2fs: avoid unnecessary bio submit when wait page writeback f2fs: return -EIO when node id is not matched f2fs: avoid RECLAIM_FS-ON-W warning f2fs: skip unnecessary node writes during fsync f2fs: introduce fi->i_sem to protect fi's info f2fs: change reclaim rate in percentage f2fs: add missing documentation for dir_level f2fs: remove unnecessary threshold f2fs: throttle the memory footprint with a sysfs entry f2fs: avoid to drop nat entries due to the negative nr_shrink f2fs: call f2fs_wait_on_page_writeback instead of native function f2fs: introduce nr_pages_to_write for segment alignment ... |
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README |
This directory attempts to document the ABI between the Linux kernel and userspace, and the relative stability of these interfaces. Due to the everchanging nature of Linux, and the differing maturity levels, these interfaces should be used by userspace programs in different ways. We have four different levels of ABI stability, as shown by the four different subdirectories in this location. Interfaces may change levels of stability according to the rules described below. The different levels of stability are: stable/ This directory documents the interfaces that the developer has defined to be stable. Userspace programs are free to use these interfaces with no restrictions, and backward compatibility for them will be guaranteed for at least 2 years. Most interfaces (like syscalls) are expected to never change and always be available. testing/ This directory documents interfaces that are felt to be stable, as the main development of this interface has been completed. The interface can be changed to add new features, but the current interface will not break by doing this, unless grave errors or security problems are found in them. Userspace programs can start to rely on these interfaces, but they must be aware of changes that can occur before these interfaces move to be marked stable. Programs that use these interfaces are strongly encouraged to add their name to the description of these interfaces, so that the kernel developers can easily notify them if any changes occur (see the description of the layout of the files below for details on how to do this.) obsolete/ This directory documents interfaces that are still remaining in the kernel, but are marked to be removed at some later point in time. The description of the interface will document the reason why it is obsolete and when it can be expected to be removed. removed/ This directory contains a list of the old interfaces that have been removed from the kernel. Every file in these directories will contain the following information: What: Short description of the interface Date: Date created KernelVersion: Kernel version this feature first showed up in. Contact: Primary contact for this interface (may be a mailing list) Description: Long description of the interface and how to use it. Users: All users of this interface who wish to be notified when it changes. This is very important for interfaces in the "testing" stage, so that kernel developers can work with userspace developers to ensure that things do not break in ways that are unacceptable. It is also important to get feedback for these interfaces to make sure they are working in a proper way and do not need to be changed further. How things move between levels: Interfaces in stable may move to obsolete, as long as the proper notification is given. Interfaces may be removed from obsolete and the kernel as long as the documented amount of time has gone by. Interfaces in the testing state can move to the stable state when the developers feel they are finished. They cannot be removed from the kernel tree without going through the obsolete state first. It's up to the developer to place their interfaces in the category they wish for it to start out in. Notable bits of non-ABI, which should not under any circumstances be considered stable: - Kconfig. Userspace should not rely on the presence or absence of any particular Kconfig symbol, in /proc/config.gz, in the copy of .config commonly installed to /boot, or in any invocation of the kernel build process. - Kernel-internal symbols. Do not rely on the presence, absence, location, or type of any kernel symbol, either in System.map files or the kernel binary itself. See Documentation/stable_api_nonsense.txt.