Kconfig 54 KB

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  1. #
  2. # File system configuration
  3. #
  4. menu "File systems"
  5. if BLOCK
  6. source "fs/ext2/Kconfig"
  7. source "fs/ext3/Kconfig"
  8. source "fs/ext4/Kconfig"
  9. config FS_XIP
  10. # execute in place
  11. bool
  12. depends on EXT2_FS_XIP
  13. default y
  14. source "fs/jbd/Kconfig"
  15. source "fs/jbd2/Kconfig"
  16. config FS_MBCACHE
  17. # Meta block cache for Extended Attributes (ext2/ext3/ext4)
  18. tristate
  19. default y if EXT2_FS=y && EXT2_FS_XATTR
  20. default y if EXT3_FS=y && EXT3_FS_XATTR
  21. default y if EXT4_FS=y && EXT4_FS_XATTR
  22. default m if EXT2_FS_XATTR || EXT3_FS_XATTR || EXT4_FS_XATTR
  23. config REISERFS_FS
  24. tristate "Reiserfs support"
  25. help
  26. Stores not just filenames but the files themselves in a balanced
  27. tree. Uses journalling.
  28. Balanced trees are more efficient than traditional file system
  29. architectural foundations.
  30. In general, ReiserFS is as fast as ext2, but is very efficient with
  31. large directories and small files. Additional patches are needed
  32. for NFS and quotas, please see <http://www.namesys.com/> for links.
  33. It is more easily extended to have features currently found in
  34. database and keyword search systems than block allocation based file
  35. systems are. The next version will be so extended, and will support
  36. plugins consistent with our motto ``It takes more than a license to
  37. make source code open.''
  38. Read <http://www.namesys.com/> to learn more about reiserfs.
  39. Sponsored by Threshold Networks, Emusic.com, and Bigstorage.com.
  40. If you like it, you can pay us to add new features to it that you
  41. need, buy a support contract, or pay us to port it to another OS.
  42. config REISERFS_CHECK
  43. bool "Enable reiserfs debug mode"
  44. depends on REISERFS_FS
  45. help
  46. If you set this to Y, then ReiserFS will perform every check it can
  47. possibly imagine of its internal consistency throughout its
  48. operation. It will also go substantially slower. More than once we
  49. have forgotten that this was on, and then gone despondent over the
  50. latest benchmarks.:-) Use of this option allows our team to go all
  51. out in checking for consistency when debugging without fear of its
  52. effect on end users. If you are on the verge of sending in a bug
  53. report, say Y and you might get a useful error message. Almost
  54. everyone should say N.
  55. config REISERFS_PROC_INFO
  56. bool "Stats in /proc/fs/reiserfs"
  57. depends on REISERFS_FS && PROC_FS
  58. help
  59. Create under /proc/fs/reiserfs a hierarchy of files, displaying
  60. various ReiserFS statistics and internal data at the expense of
  61. making your kernel or module slightly larger (+8 KB). This also
  62. increases the amount of kernel memory required for each mount.
  63. Almost everyone but ReiserFS developers and people fine-tuning
  64. reiserfs or tracing problems should say N.
  65. config REISERFS_FS_XATTR
  66. bool "ReiserFS extended attributes"
  67. depends on REISERFS_FS
  68. help
  69. Extended attributes are name:value pairs associated with inodes by
  70. the kernel or by users (see the attr(5) manual page, or visit
  71. <http://acl.bestbits.at/> for details).
  72. If unsure, say N.
  73. config REISERFS_FS_POSIX_ACL
  74. bool "ReiserFS POSIX Access Control Lists"
  75. depends on REISERFS_FS_XATTR
  76. select FS_POSIX_ACL
  77. help
  78. Posix Access Control Lists (ACLs) support permissions for users and
  79. groups beyond the owner/group/world scheme.
  80. To learn more about Access Control Lists, visit the Posix ACLs for
  81. Linux website <http://acl.bestbits.at/>.
  82. If you don't know what Access Control Lists are, say N
  83. config REISERFS_FS_SECURITY
  84. bool "ReiserFS Security Labels"
  85. depends on REISERFS_FS_XATTR
  86. help
  87. Security labels support alternative access control models
  88. implemented by security modules like SELinux. This option
  89. enables an extended attribute handler for file security
  90. labels in the ReiserFS filesystem.
  91. If you are not using a security module that requires using
  92. extended attributes for file security labels, say N.
  93. config JFS_FS
  94. tristate "JFS filesystem support"
  95. select NLS
  96. help
  97. This is a port of IBM's Journaled Filesystem . More information is
  98. available in the file <file:Documentation/filesystems/jfs.txt>.
  99. If you do not intend to use the JFS filesystem, say N.
  100. config JFS_POSIX_ACL
  101. bool "JFS POSIX Access Control Lists"
  102. depends on JFS_FS
  103. select FS_POSIX_ACL
  104. help
  105. Posix Access Control Lists (ACLs) support permissions for users and
  106. groups beyond the owner/group/world scheme.
  107. To learn more about Access Control Lists, visit the Posix ACLs for
  108. Linux website <http://acl.bestbits.at/>.
  109. If you don't know what Access Control Lists are, say N
  110. config JFS_SECURITY
  111. bool "JFS Security Labels"
  112. depends on JFS_FS
  113. help
  114. Security labels support alternative access control models
  115. implemented by security modules like SELinux. This option
  116. enables an extended attribute handler for file security
  117. labels in the jfs filesystem.
  118. If you are not using a security module that requires using
  119. extended attributes for file security labels, say N.
  120. config JFS_DEBUG
  121. bool "JFS debugging"
  122. depends on JFS_FS
  123. help
  124. If you are experiencing any problems with the JFS filesystem, say
  125. Y here. This will result in additional debugging messages to be
  126. written to the system log. Under normal circumstances, this
  127. results in very little overhead.
  128. config JFS_STATISTICS
  129. bool "JFS statistics"
  130. depends on JFS_FS
  131. help
  132. Enabling this option will cause statistics from the JFS file system
  133. to be made available to the user in the /proc/fs/jfs/ directory.
  134. config FS_POSIX_ACL
  135. # Posix ACL utility routines (for now, only ext2/ext3/jfs/reiserfs/nfs4)
  136. #
  137. # NOTE: you can implement Posix ACLs without these helpers (XFS does).
  138. # Never use this symbol for ifdefs.
  139. #
  140. bool
  141. default n
  142. config FILE_LOCKING
  143. bool "Enable POSIX file locking API" if EMBEDDED
  144. default y
  145. help
  146. This option enables standard file locking support, required
  147. for filesystems like NFS and for the flock() system
  148. call. Disabling this option saves about 11k.
  149. source "fs/xfs/Kconfig"
  150. source "fs/gfs2/Kconfig"
  151. config OCFS2_FS
  152. tristate "OCFS2 file system support"
  153. depends on NET && SYSFS
  154. select CONFIGFS_FS
  155. select JBD2
  156. select CRC32
  157. select QUOTA
  158. select QUOTA_TREE
  159. help
  160. OCFS2 is a general purpose extent based shared disk cluster file
  161. system with many similarities to ext3. It supports 64 bit inode
  162. numbers, and has automatically extending metadata groups which may
  163. also make it attractive for non-clustered use.
  164. You'll want to install the ocfs2-tools package in order to at least
  165. get "mount.ocfs2".
  166. Project web page: http://oss.oracle.com/projects/ocfs2
  167. Tools web page: http://oss.oracle.com/projects/ocfs2-tools
  168. OCFS2 mailing lists: http://oss.oracle.com/projects/ocfs2/mailman/
  169. For more information on OCFS2, see the file
  170. <file:Documentation/filesystems/ocfs2.txt>.
  171. config OCFS2_FS_O2CB
  172. tristate "O2CB Kernelspace Clustering"
  173. depends on OCFS2_FS
  174. default y
  175. help
  176. OCFS2 includes a simple kernelspace clustering package, the OCFS2
  177. Cluster Base. It only requires a very small userspace component
  178. to configure it. This comes with the standard ocfs2-tools package.
  179. O2CB is limited to maintaining a cluster for OCFS2 file systems.
  180. It cannot manage any other cluster applications.
  181. It is always safe to say Y here, as the clustering method is
  182. run-time selectable.
  183. config OCFS2_FS_USERSPACE_CLUSTER
  184. tristate "OCFS2 Userspace Clustering"
  185. depends on OCFS2_FS && DLM
  186. default y
  187. help
  188. This option will allow OCFS2 to use userspace clustering services
  189. in conjunction with the DLM in fs/dlm. If you are using a
  190. userspace cluster manager, say Y here.
  191. It is safe to say Y, as the clustering method is run-time
  192. selectable.
  193. config OCFS2_FS_STATS
  194. bool "OCFS2 statistics"
  195. depends on OCFS2_FS
  196. default y
  197. help
  198. This option allows some fs statistics to be captured. Enabling
  199. this option may increase the memory consumption.
  200. config OCFS2_DEBUG_MASKLOG
  201. bool "OCFS2 logging support"
  202. depends on OCFS2_FS
  203. default y
  204. help
  205. The ocfs2 filesystem has an extensive logging system. The system
  206. allows selection of events to log via files in /sys/o2cb/logmask/.
  207. This option will enlarge your kernel, but it allows debugging of
  208. ocfs2 filesystem issues.
  209. config OCFS2_DEBUG_FS
  210. bool "OCFS2 expensive checks"
  211. depends on OCFS2_FS
  212. default n
  213. help
  214. This option will enable expensive consistency checks. Enable
  215. this option for debugging only as it is likely to decrease
  216. performance of the filesystem.
  217. config OCFS2_FS_POSIX_ACL
  218. bool "OCFS2 POSIX Access Control Lists"
  219. depends on OCFS2_FS
  220. select FS_POSIX_ACL
  221. default n
  222. help
  223. Posix Access Control Lists (ACLs) support permissions for users and
  224. groups beyond the owner/group/world scheme.
  225. endif # BLOCK
  226. source "fs/notify/Kconfig"
  227. config QUOTA
  228. bool "Quota support"
  229. help
  230. If you say Y here, you will be able to set per user limits for disk
  231. usage (also called disk quotas). Currently, it works for the
  232. ext2, ext3, and reiserfs file system. ext3 also supports journalled
  233. quotas for which you don't need to run quotacheck(8) after an unclean
  234. shutdown.
  235. For further details, read the Quota mini-HOWTO, available from
  236. <http://www.tldp.org/docs.html#howto>, or the documentation provided
  237. with the quota tools. Probably the quota support is only useful for
  238. multi user systems. If unsure, say N.
  239. config QUOTA_NETLINK_INTERFACE
  240. bool "Report quota messages through netlink interface"
  241. depends on QUOTA && NET
  242. help
  243. If you say Y here, quota warnings (about exceeding softlimit, reaching
  244. hardlimit, etc.) will be reported through netlink interface. If unsure,
  245. say Y.
  246. config PRINT_QUOTA_WARNING
  247. bool "Print quota warnings to console (OBSOLETE)"
  248. depends on QUOTA
  249. default y
  250. help
  251. If you say Y here, quota warnings (about exceeding softlimit, reaching
  252. hardlimit, etc.) will be printed to the process' controlling terminal.
  253. Note that this behavior is currently deprecated and may go away in
  254. future. Please use notification via netlink socket instead.
  255. # Generic support for tree structured quota files. Seleted when needed.
  256. config QUOTA_TREE
  257. tristate
  258. config QFMT_V1
  259. tristate "Old quota format support"
  260. depends on QUOTA
  261. help
  262. This quota format was (is) used by kernels earlier than 2.4.22. If
  263. you have quota working and you don't want to convert to new quota
  264. format say Y here.
  265. config QFMT_V2
  266. tristate "Quota format v2 support"
  267. depends on QUOTA
  268. select QUOTA_TREE
  269. help
  270. This quota format allows using quotas with 32-bit UIDs/GIDs. If you
  271. need this functionality say Y here.
  272. config QUOTACTL
  273. bool
  274. depends on XFS_QUOTA || QUOTA
  275. default y
  276. config AUTOFS_FS
  277. tristate "Kernel automounter support"
  278. help
  279. The automounter is a tool to automatically mount remote file systems
  280. on demand. This implementation is partially kernel-based to reduce
  281. overhead in the already-mounted case; this is unlike the BSD
  282. automounter (amd), which is a pure user space daemon.
  283. To use the automounter you need the user-space tools from the autofs
  284. package; you can find the location in <file:Documentation/Changes>.
  285. You also want to answer Y to "NFS file system support", below.
  286. If you want to use the newer version of the automounter with more
  287. features, say N here and say Y to "Kernel automounter v4 support",
  288. below.
  289. To compile this support as a module, choose M here: the module will be
  290. called autofs.
  291. If you are not a part of a fairly large, distributed network, you
  292. probably do not need an automounter, and can say N here.
  293. config AUTOFS4_FS
  294. tristate "Kernel automounter version 4 support (also supports v3)"
  295. help
  296. The automounter is a tool to automatically mount remote file systems
  297. on demand. This implementation is partially kernel-based to reduce
  298. overhead in the already-mounted case; this is unlike the BSD
  299. automounter (amd), which is a pure user space daemon.
  300. To use the automounter you need the user-space tools from
  301. <ftp://ftp.kernel.org/pub/linux/daemons/autofs/v4/>; you also
  302. want to answer Y to "NFS file system support", below.
  303. To compile this support as a module, choose M here: the module will be
  304. called autofs4. You will need to add "alias autofs autofs4" to your
  305. modules configuration file.
  306. If you are not a part of a fairly large, distributed network or
  307. don't have a laptop which needs to dynamically reconfigure to the
  308. local network, you probably do not need an automounter, and can say
  309. N here.
  310. config FUSE_FS
  311. tristate "FUSE (Filesystem in Userspace) support"
  312. help
  313. With FUSE it is possible to implement a fully functional filesystem
  314. in a userspace program.
  315. There's also companion library: libfuse. This library along with
  316. utilities is available from the FUSE homepage:
  317. <http://fuse.sourceforge.net/>
  318. See <file:Documentation/filesystems/fuse.txt> for more information.
  319. See <file:Documentation/Changes> for needed library/utility version.
  320. If you want to develop a userspace FS, or if you want to use
  321. a filesystem based on FUSE, answer Y or M.
  322. config GENERIC_ACL
  323. bool
  324. select FS_POSIX_ACL
  325. if BLOCK
  326. menu "CD-ROM/DVD Filesystems"
  327. config ISO9660_FS
  328. tristate "ISO 9660 CDROM file system support"
  329. help
  330. This is the standard file system used on CD-ROMs. It was previously
  331. known as "High Sierra File System" and is called "hsfs" on other
  332. Unix systems. The so-called Rock-Ridge extensions which allow for
  333. long Unix filenames and symbolic links are also supported by this
  334. driver. If you have a CD-ROM drive and want to do more with it than
  335. just listen to audio CDs and watch its LEDs, say Y (and read
  336. <file:Documentation/filesystems/isofs.txt> and the CD-ROM-HOWTO,
  337. available from <http://www.tldp.org/docs.html#howto>), thereby
  338. enlarging your kernel by about 27 KB; otherwise say N.
  339. To compile this file system support as a module, choose M here: the
  340. module will be called isofs.
  341. config JOLIET
  342. bool "Microsoft Joliet CDROM extensions"
  343. depends on ISO9660_FS
  344. select NLS
  345. help
  346. Joliet is a Microsoft extension for the ISO 9660 CD-ROM file system
  347. which allows for long filenames in unicode format (unicode is the
  348. new 16 bit character code, successor to ASCII, which encodes the
  349. characters of almost all languages of the world; see
  350. <http://www.unicode.org/> for more information). Say Y here if you
  351. want to be able to read Joliet CD-ROMs under Linux.
  352. config ZISOFS
  353. bool "Transparent decompression extension"
  354. depends on ISO9660_FS
  355. select ZLIB_INFLATE
  356. help
  357. This is a Linux-specific extension to RockRidge which lets you store
  358. data in compressed form on a CD-ROM and have it transparently
  359. decompressed when the CD-ROM is accessed. See
  360. <http://www.kernel.org/pub/linux/utils/fs/zisofs/> for the tools
  361. necessary to create such a filesystem. Say Y here if you want to be
  362. able to read such compressed CD-ROMs.
  363. config UDF_FS
  364. tristate "UDF file system support"
  365. select CRC_ITU_T
  366. help
  367. This is the new file system used on some CD-ROMs and DVDs. Say Y if
  368. you intend to mount DVD discs or CDRW's written in packet mode, or
  369. if written to by other UDF utilities, such as DirectCD.
  370. Please read <file:Documentation/filesystems/udf.txt>.
  371. To compile this file system support as a module, choose M here: the
  372. module will be called udf.
  373. If unsure, say N.
  374. config UDF_NLS
  375. bool
  376. default y
  377. depends on (UDF_FS=m && NLS) || (UDF_FS=y && NLS=y)
  378. endmenu
  379. endif # BLOCK
  380. if BLOCK
  381. menu "DOS/FAT/NT Filesystems"
  382. config FAT_FS
  383. tristate
  384. select NLS
  385. help
  386. If you want to use one of the FAT-based file systems (the MS-DOS and
  387. VFAT (Windows 95) file systems), then you must say Y or M here
  388. to include FAT support. You will then be able to mount partitions or
  389. diskettes with FAT-based file systems and transparently access the
  390. files on them, i.e. MSDOS files will look and behave just like all
  391. other Unix files.
  392. This FAT support is not a file system in itself, it only provides
  393. the foundation for the other file systems. You will have to say Y or
  394. M to at least one of "MSDOS fs support" or "VFAT fs support" in
  395. order to make use of it.
  396. Another way to read and write MSDOS floppies and hard drive
  397. partitions from within Linux (but not transparently) is with the
  398. mtools ("man mtools") program suite. You don't need to say Y here in
  399. order to do that.
  400. If you need to move large files on floppies between a DOS and a
  401. Linux box, say Y here, mount the floppy under Linux with an MSDOS
  402. file system and use GNU tar's M option. GNU tar is a program
  403. available for Unix and DOS ("man tar" or "info tar").
  404. The FAT support will enlarge your kernel by about 37 KB. If unsure,
  405. say Y.
  406. To compile this as a module, choose M here: the module will be called
  407. fat. Note that if you compile the FAT support as a module, you
  408. cannot compile any of the FAT-based file systems into the kernel
  409. -- they will have to be modules as well.
  410. config MSDOS_FS
  411. tristate "MSDOS fs support"
  412. select FAT_FS
  413. help
  414. This allows you to mount MSDOS partitions of your hard drive (unless
  415. they are compressed; to access compressed MSDOS partitions under
  416. Linux, you can either use the DOS emulator DOSEMU, described in the
  417. DOSEMU-HOWTO, available from
  418. <http://www.tldp.org/docs.html#howto>, or try dmsdosfs in
  419. <ftp://ibiblio.org/pub/Linux/system/filesystems/dosfs/>. If you
  420. intend to use dosemu with a non-compressed MSDOS partition, say Y
  421. here) and MSDOS floppies. This means that file access becomes
  422. transparent, i.e. the MSDOS files look and behave just like all
  423. other Unix files.
  424. If you have Windows 95 or Windows NT installed on your MSDOS
  425. partitions, you should use the VFAT file system (say Y to "VFAT fs
  426. support" below), or you will not be able to see the long filenames
  427. generated by Windows 95 / Windows NT.
  428. This option will enlarge your kernel by about 7 KB. If unsure,
  429. answer Y. This will only work if you said Y to "DOS FAT fs support"
  430. as well. To compile this as a module, choose M here: the module will
  431. be called msdos.
  432. config VFAT_FS
  433. tristate "VFAT (Windows-95) fs support"
  434. select FAT_FS
  435. help
  436. This option provides support for normal Windows file systems with
  437. long filenames. That includes non-compressed FAT-based file systems
  438. used by Windows 95, Windows 98, Windows NT 4.0, and the Unix
  439. programs from the mtools package.
  440. The VFAT support enlarges your kernel by about 10 KB and it only
  441. works if you said Y to the "DOS FAT fs support" above. Please read
  442. the file <file:Documentation/filesystems/vfat.txt> for details. If
  443. unsure, say Y.
  444. To compile this as a module, choose M here: the module will be called
  445. vfat.
  446. config FAT_DEFAULT_CODEPAGE
  447. int "Default codepage for FAT"
  448. depends on MSDOS_FS || VFAT_FS
  449. default 437
  450. help
  451. This option should be set to the codepage of your FAT filesystems.
  452. It can be overridden with the "codepage" mount option.
  453. See <file:Documentation/filesystems/vfat.txt> for more information.
  454. config FAT_DEFAULT_IOCHARSET
  455. string "Default iocharset for FAT"
  456. depends on VFAT_FS
  457. default "iso8859-1"
  458. help
  459. Set this to the default input/output character set you'd
  460. like FAT to use. It should probably match the character set
  461. that most of your FAT filesystems use, and can be overridden
  462. with the "iocharset" mount option for FAT filesystems.
  463. Note that "utf8" is not recommended for FAT filesystems.
  464. If unsure, you shouldn't set "utf8" here.
  465. See <file:Documentation/filesystems/vfat.txt> for more information.
  466. config NTFS_FS
  467. tristate "NTFS file system support"
  468. select NLS
  469. help
  470. NTFS is the file system of Microsoft Windows NT, 2000, XP and 2003.
  471. Saying Y or M here enables read support. There is partial, but
  472. safe, write support available. For write support you must also
  473. say Y to "NTFS write support" below.
  474. There are also a number of user-space tools available, called
  475. ntfsprogs. These include ntfsundelete and ntfsresize, that work
  476. without NTFS support enabled in the kernel.
  477. This is a rewrite from scratch of Linux NTFS support and replaced
  478. the old NTFS code starting with Linux 2.5.11. A backport to
  479. the Linux 2.4 kernel series is separately available as a patch
  480. from the project web site.
  481. For more information see <file:Documentation/filesystems/ntfs.txt>
  482. and <http://www.linux-ntfs.org/>.
  483. To compile this file system support as a module, choose M here: the
  484. module will be called ntfs.
  485. If you are not using Windows NT, 2000, XP or 2003 in addition to
  486. Linux on your computer it is safe to say N.
  487. config NTFS_DEBUG
  488. bool "NTFS debugging support"
  489. depends on NTFS_FS
  490. help
  491. If you are experiencing any problems with the NTFS file system, say
  492. Y here. This will result in additional consistency checks to be
  493. performed by the driver as well as additional debugging messages to
  494. be written to the system log. Note that debugging messages are
  495. disabled by default. To enable them, supply the option debug_msgs=1
  496. at the kernel command line when booting the kernel or as an option
  497. to insmod when loading the ntfs module. Once the driver is active,
  498. you can enable debugging messages by doing (as root):
  499. echo 1 > /proc/sys/fs/ntfs-debug
  500. Replacing the "1" with "0" would disable debug messages.
  501. If you leave debugging messages disabled, this results in little
  502. overhead, but enabling debug messages results in very significant
  503. slowdown of the system.
  504. When reporting bugs, please try to have available a full dump of
  505. debugging messages while the misbehaviour was occurring.
  506. config NTFS_RW
  507. bool "NTFS write support"
  508. depends on NTFS_FS
  509. help
  510. This enables the partial, but safe, write support in the NTFS driver.
  511. The only supported operation is overwriting existing files, without
  512. changing the file length. No file or directory creation, deletion or
  513. renaming is possible. Note only non-resident files can be written to
  514. so you may find that some very small files (<500 bytes or so) cannot
  515. be written to.
  516. While we cannot guarantee that it will not damage any data, we have
  517. so far not received a single report where the driver would have
  518. damaged someones data so we assume it is perfectly safe to use.
  519. Note: While write support is safe in this version (a rewrite from
  520. scratch of the NTFS support), it should be noted that the old NTFS
  521. write support, included in Linux 2.5.10 and before (since 1997),
  522. is not safe.
  523. This is currently useful with TopologiLinux. TopologiLinux is run
  524. on top of any DOS/Microsoft Windows system without partitioning your
  525. hard disk. Unlike other Linux distributions TopologiLinux does not
  526. need its own partition. For more information see
  527. <http://topologi-linux.sourceforge.net/>
  528. It is perfectly safe to say N here.
  529. endmenu
  530. endif # BLOCK
  531. menu "Pseudo filesystems"
  532. source "fs/proc/Kconfig"
  533. config SYSFS
  534. bool "sysfs file system support" if EMBEDDED
  535. default y
  536. help
  537. The sysfs filesystem is a virtual filesystem that the kernel uses to
  538. export internal kernel objects, their attributes, and their
  539. relationships to one another.
  540. Users can use sysfs to ascertain useful information about the running
  541. kernel, such as the devices the kernel has discovered on each bus and
  542. which driver each is bound to. sysfs can also be used to tune devices
  543. and other kernel subsystems.
  544. Some system agents rely on the information in sysfs to operate.
  545. /sbin/hotplug uses device and object attributes in sysfs to assist in
  546. delegating policy decisions, like persistently naming devices.
  547. sysfs is currently used by the block subsystem to mount the root
  548. partition. If sysfs is disabled you must specify the boot device on
  549. the kernel boot command line via its major and minor numbers. For
  550. example, "root=03:01" for /dev/hda1.
  551. Designers of embedded systems may wish to say N here to conserve space.
  552. config TMPFS
  553. bool "Virtual memory file system support (former shm fs)"
  554. help
  555. Tmpfs is a file system which keeps all files in virtual memory.
  556. Everything in tmpfs is temporary in the sense that no files will be
  557. created on your hard drive. The files live in memory and swap
  558. space. If you unmount a tmpfs instance, everything stored therein is
  559. lost.
  560. See <file:Documentation/filesystems/tmpfs.txt> for details.
  561. config TMPFS_POSIX_ACL
  562. bool "Tmpfs POSIX Access Control Lists"
  563. depends on TMPFS
  564. select GENERIC_ACL
  565. help
  566. POSIX Access Control Lists (ACLs) support permissions for users and
  567. groups beyond the owner/group/world scheme.
  568. To learn more about Access Control Lists, visit the POSIX ACLs for
  569. Linux website <http://acl.bestbits.at/>.
  570. If you don't know what Access Control Lists are, say N.
  571. config HUGETLBFS
  572. bool "HugeTLB file system support"
  573. depends on X86 || IA64 || PPC64 || SPARC64 || (SUPERH && MMU) || \
  574. (S390 && 64BIT) || BROKEN
  575. help
  576. hugetlbfs is a filesystem backing for HugeTLB pages, based on
  577. ramfs. For architectures that support it, say Y here and read
  578. <file:Documentation/vm/hugetlbpage.txt> for details.
  579. If unsure, say N.
  580. config HUGETLB_PAGE
  581. def_bool HUGETLBFS
  582. config CONFIGFS_FS
  583. tristate "Userspace-driven configuration filesystem"
  584. depends on SYSFS
  585. help
  586. configfs is a ram-based filesystem that provides the converse
  587. of sysfs's functionality. Where sysfs is a filesystem-based
  588. view of kernel objects, configfs is a filesystem-based manager
  589. of kernel objects, or config_items.
  590. Both sysfs and configfs can and should exist together on the
  591. same system. One is not a replacement for the other.
  592. endmenu
  593. menuconfig MISC_FILESYSTEMS
  594. bool "Miscellaneous filesystems"
  595. default y
  596. ---help---
  597. Say Y here to get to see options for various miscellaneous
  598. filesystems, such as filesystems that came from other
  599. operating systems.
  600. This option alone does not add any kernel code.
  601. If you say N, all options in this submenu will be skipped and
  602. disabled; if unsure, say Y here.
  603. if MISC_FILESYSTEMS
  604. config ADFS_FS
  605. tristate "ADFS file system support (EXPERIMENTAL)"
  606. depends on BLOCK && EXPERIMENTAL
  607. help
  608. The Acorn Disc Filing System is the standard file system of the
  609. RiscOS operating system which runs on Acorn's ARM-based Risc PC
  610. systems and the Acorn Archimedes range of machines. If you say Y
  611. here, Linux will be able to read from ADFS partitions on hard drives
  612. and from ADFS-formatted floppy discs. If you also want to be able to
  613. write to those devices, say Y to "ADFS write support" below.
  614. The ADFS partition should be the first partition (i.e.,
  615. /dev/[hs]d?1) on each of your drives. Please read the file
  616. <file:Documentation/filesystems/adfs.txt> for further details.
  617. To compile this code as a module, choose M here: the module will be
  618. called adfs.
  619. If unsure, say N.
  620. config ADFS_FS_RW
  621. bool "ADFS write support (DANGEROUS)"
  622. depends on ADFS_FS
  623. help
  624. If you say Y here, you will be able to write to ADFS partitions on
  625. hard drives and ADFS-formatted floppy disks. This is experimental
  626. codes, so if you're unsure, say N.
  627. config AFFS_FS
  628. tristate "Amiga FFS file system support (EXPERIMENTAL)"
  629. depends on BLOCK && EXPERIMENTAL
  630. help
  631. The Fast File System (FFS) is the common file system used on hard
  632. disks by Amiga(tm) systems since AmigaOS Version 1.3 (34.20). Say Y
  633. if you want to be able to read and write files from and to an Amiga
  634. FFS partition on your hard drive. Amiga floppies however cannot be
  635. read with this driver due to an incompatibility of the floppy
  636. controller used in an Amiga and the standard floppy controller in
  637. PCs and workstations. Read <file:Documentation/filesystems/affs.txt>
  638. and <file:fs/affs/Changes>.
  639. With this driver you can also mount disk files used by Bernd
  640. Schmidt's Un*X Amiga Emulator
  641. (<http://www.freiburg.linux.de/~uae/>).
  642. If you want to do this, you will also need to say Y or M to "Loop
  643. device support", above.
  644. To compile this file system support as a module, choose M here: the
  645. module will be called affs. If unsure, say N.
  646. config ECRYPT_FS
  647. tristate "eCrypt filesystem layer support (EXPERIMENTAL)"
  648. depends on EXPERIMENTAL && KEYS && CRYPTO && NET
  649. help
  650. Encrypted filesystem that operates on the VFS layer. See
  651. <file:Documentation/filesystems/ecryptfs.txt> to learn more about
  652. eCryptfs. Userspace components are required and can be
  653. obtained from <http://ecryptfs.sf.net>.
  654. To compile this file system support as a module, choose M here: the
  655. module will be called ecryptfs.
  656. config HFS_FS
  657. tristate "Apple Macintosh file system support (EXPERIMENTAL)"
  658. depends on BLOCK && EXPERIMENTAL
  659. select NLS
  660. help
  661. If you say Y here, you will be able to mount Macintosh-formatted
  662. floppy disks and hard drive partitions with full read-write access.
  663. Please read <file:Documentation/filesystems/hfs.txt> to learn about
  664. the available mount options.
  665. To compile this file system support as a module, choose M here: the
  666. module will be called hfs.
  667. config HFSPLUS_FS
  668. tristate "Apple Extended HFS file system support"
  669. depends on BLOCK
  670. select NLS
  671. select NLS_UTF8
  672. help
  673. If you say Y here, you will be able to mount extended format
  674. Macintosh-formatted hard drive partitions with full read-write access.
  675. This file system is often called HFS+ and was introduced with
  676. MacOS 8. It includes all Mac specific filesystem data such as
  677. data forks and creator codes, but it also has several UNIX
  678. style features such as file ownership and permissions.
  679. config BEFS_FS
  680. tristate "BeOS file system (BeFS) support (read only) (EXPERIMENTAL)"
  681. depends on BLOCK && EXPERIMENTAL
  682. select NLS
  683. help
  684. The BeOS File System (BeFS) is the native file system of Be, Inc's
  685. BeOS. Notable features include support for arbitrary attributes
  686. on files and directories, and database-like indices on selected
  687. attributes. (Also note that this driver doesn't make those features
  688. available at this time). It is a 64 bit filesystem, so it supports
  689. extremely large volumes and files.
  690. If you use this filesystem, you should also say Y to at least one
  691. of the NLS (native language support) options below.
  692. If you don't know what this is about, say N.
  693. To compile this as a module, choose M here: the module will be
  694. called befs.
  695. config BEFS_DEBUG
  696. bool "Debug BeFS"
  697. depends on BEFS_FS
  698. help
  699. If you say Y here, you can use the 'debug' mount option to enable
  700. debugging output from the driver.
  701. config BFS_FS
  702. tristate "BFS file system support (EXPERIMENTAL)"
  703. depends on BLOCK && EXPERIMENTAL
  704. help
  705. Boot File System (BFS) is a file system used under SCO UnixWare to
  706. allow the bootloader access to the kernel image and other important
  707. files during the boot process. It is usually mounted under /stand
  708. and corresponds to the slice marked as "STAND" in the UnixWare
  709. partition. You should say Y if you want to read or write the files
  710. on your /stand slice from within Linux. You then also need to say Y
  711. to "UnixWare slices support", below. More information about the BFS
  712. file system is contained in the file
  713. <file:Documentation/filesystems/bfs.txt>.
  714. If you don't know what this is about, say N.
  715. To compile this as a module, choose M here: the module will be called
  716. bfs. Note that the file system of your root partition (the one
  717. containing the directory /) cannot be compiled as a module.
  718. config EFS_FS
  719. tristate "EFS file system support (read only) (EXPERIMENTAL)"
  720. depends on BLOCK && EXPERIMENTAL
  721. help
  722. EFS is an older file system used for non-ISO9660 CD-ROMs and hard
  723. disk partitions by SGI's IRIX operating system (IRIX 6.0 and newer
  724. uses the XFS file system for hard disk partitions however).
  725. This implementation only offers read-only access. If you don't know
  726. what all this is about, it's safe to say N. For more information
  727. about EFS see its home page at <http://aeschi.ch.eu.org/efs/>.
  728. To compile the EFS file system support as a module, choose M here: the
  729. module will be called efs.
  730. source "fs/jffs2/Kconfig"
  731. # UBIFS File system configuration
  732. source "fs/ubifs/Kconfig"
  733. config CRAMFS
  734. tristate "Compressed ROM file system support (cramfs)"
  735. depends on BLOCK
  736. select ZLIB_INFLATE
  737. help
  738. Saying Y here includes support for CramFs (Compressed ROM File
  739. System). CramFs is designed to be a simple, small, and compressed
  740. file system for ROM based embedded systems. CramFs is read-only,
  741. limited to 256MB file systems (with 16MB files), and doesn't support
  742. 16/32 bits uid/gid, hard links and timestamps.
  743. See <file:Documentation/filesystems/cramfs.txt> and
  744. <file:fs/cramfs/README> for further information.
  745. To compile this as a module, choose M here: the module will be called
  746. cramfs. Note that the root file system (the one containing the
  747. directory /) cannot be compiled as a module.
  748. If unsure, say N.
  749. config VXFS_FS
  750. tristate "FreeVxFS file system support (VERITAS VxFS(TM) compatible)"
  751. depends on BLOCK
  752. help
  753. FreeVxFS is a file system driver that support the VERITAS VxFS(TM)
  754. file system format. VERITAS VxFS(TM) is the standard file system
  755. of SCO UnixWare (and possibly others) and optionally available
  756. for Sunsoft Solaris, HP-UX and many other operating systems.
  757. Currently only readonly access is supported.
  758. NOTE: the file system type as used by mount(1), mount(2) and
  759. fstab(5) is 'vxfs' as it describes the file system format, not
  760. the actual driver.
  761. To compile this as a module, choose M here: the module will be
  762. called freevxfs. If unsure, say N.
  763. config MINIX_FS
  764. tristate "Minix file system support"
  765. depends on BLOCK
  766. help
  767. Minix is a simple operating system used in many classes about OS's.
  768. The minix file system (method to organize files on a hard disk
  769. partition or a floppy disk) was the original file system for Linux,
  770. but has been superseded by the second extended file system ext2fs.
  771. You don't want to use the minix file system on your hard disk
  772. because of certain built-in restrictions, but it is sometimes found
  773. on older Linux floppy disks. This option will enlarge your kernel
  774. by about 28 KB. If unsure, say N.
  775. To compile this file system support as a module, choose M here: the
  776. module will be called minix. Note that the file system of your root
  777. partition (the one containing the directory /) cannot be compiled as
  778. a module.
  779. config OMFS_FS
  780. tristate "SonicBlue Optimized MPEG File System support"
  781. depends on BLOCK
  782. select CRC_ITU_T
  783. help
  784. This is the proprietary file system used by the Rio Karma music
  785. player and ReplayTV DVR. Despite the name, this filesystem is not
  786. more efficient than a standard FS for MPEG files, in fact likely
  787. the opposite is true. Say Y if you have either of these devices
  788. and wish to mount its disk.
  789. To compile this file system support as a module, choose M here: the
  790. module will be called omfs. If unsure, say N.
  791. config HPFS_FS
  792. tristate "OS/2 HPFS file system support"
  793. depends on BLOCK
  794. help
  795. OS/2 is IBM's operating system for PC's, the same as Warp, and HPFS
  796. is the file system used for organizing files on OS/2 hard disk
  797. partitions. Say Y if you want to be able to read files from and
  798. write files to an OS/2 HPFS partition on your hard drive. OS/2
  799. floppies however are in regular MSDOS format, so you don't need this
  800. option in order to be able to read them. Read
  801. <file:Documentation/filesystems/hpfs.txt>.
  802. To compile this file system support as a module, choose M here: the
  803. module will be called hpfs. If unsure, say N.
  804. config QNX4FS_FS
  805. tristate "QNX4 file system support (read only)"
  806. depends on BLOCK
  807. help
  808. This is the file system used by the real-time operating systems
  809. QNX 4 and QNX 6 (the latter is also called QNX RTP).
  810. Further information is available at <http://www.qnx.com/>.
  811. Say Y if you intend to mount QNX hard disks or floppies.
  812. Unless you say Y to "QNX4FS read-write support" below, you will
  813. only be able to read these file systems.
  814. To compile this file system support as a module, choose M here: the
  815. module will be called qnx4.
  816. If you don't know whether you need it, then you don't need it:
  817. answer N.
  818. config QNX4FS_RW
  819. bool "QNX4FS write support (DANGEROUS)"
  820. depends on QNX4FS_FS && EXPERIMENTAL && BROKEN
  821. help
  822. Say Y if you want to test write support for QNX4 file systems.
  823. It's currently broken, so for now:
  824. answer N.
  825. config ROMFS_FS
  826. tristate "ROM file system support"
  827. depends on BLOCK
  828. ---help---
  829. This is a very small read-only file system mainly intended for
  830. initial ram disks of installation disks, but it could be used for
  831. other read-only media as well. Read
  832. <file:Documentation/filesystems/romfs.txt> for details.
  833. To compile this file system support as a module, choose M here: the
  834. module will be called romfs. Note that the file system of your
  835. root partition (the one containing the directory /) cannot be a
  836. module.
  837. If you don't know whether you need it, then you don't need it:
  838. answer N.
  839. config SYSV_FS
  840. tristate "System V/Xenix/V7/Coherent file system support"
  841. depends on BLOCK
  842. help
  843. SCO, Xenix and Coherent are commercial Unix systems for Intel
  844. machines, and Version 7 was used on the DEC PDP-11. Saying Y
  845. here would allow you to read from their floppies and hard disk
  846. partitions.
  847. If you have floppies or hard disk partitions like that, it is likely
  848. that they contain binaries from those other Unix systems; in order
  849. to run these binaries, you will want to install linux-abi which is
  850. a set of kernel modules that lets you run SCO, Xenix, Wyse,
  851. UnixWare, Dell Unix and System V programs under Linux. It is
  852. available via FTP (user: ftp) from
  853. <ftp://ftp.openlinux.org/pub/people/hch/linux-abi/>).
  854. NOTE: that will work only for binaries from Intel-based systems;
  855. PDP ones will have to wait until somebody ports Linux to -11 ;-)
  856. If you only intend to mount files from some other Unix over the
  857. network using NFS, you don't need the System V file system support
  858. (but you need NFS file system support obviously).
  859. Note that this option is generally not needed for floppies, since a
  860. good portable way to transport files and directories between unixes
  861. (and even other operating systems) is given by the tar program ("man
  862. tar" or preferably "info tar"). Note also that this option has
  863. nothing whatsoever to do with the option "System V IPC". Read about
  864. the System V file system in
  865. <file:Documentation/filesystems/sysv-fs.txt>.
  866. Saying Y here will enlarge your kernel by about 27 KB.
  867. To compile this as a module, choose M here: the module will be called
  868. sysv.
  869. If you haven't heard about all of this before, it's safe to say N.
  870. config UFS_FS
  871. tristate "UFS file system support (read only)"
  872. depends on BLOCK
  873. help
  874. BSD and derivate versions of Unix (such as SunOS, FreeBSD, NetBSD,
  875. OpenBSD and NeXTstep) use a file system called UFS. Some System V
  876. Unixes can create and mount hard disk partitions and diskettes using
  877. this file system as well. Saying Y here will allow you to read from
  878. these partitions; if you also want to write to them, say Y to the
  879. experimental "UFS file system write support", below. Please read the
  880. file <file:Documentation/filesystems/ufs.txt> for more information.
  881. The recently released UFS2 variant (used in FreeBSD 5.x) is
  882. READ-ONLY supported.
  883. Note that this option is generally not needed for floppies, since a
  884. good portable way to transport files and directories between unixes
  885. (and even other operating systems) is given by the tar program ("man
  886. tar" or preferably "info tar").
  887. When accessing NeXTstep files, you may need to convert them from the
  888. NeXT character set to the Latin1 character set; use the program
  889. recode ("info recode") for this purpose.
  890. To compile the UFS file system support as a module, choose M here: the
  891. module will be called ufs.
  892. If you haven't heard about all of this before, it's safe to say N.
  893. config UFS_FS_WRITE
  894. bool "UFS file system write support (DANGEROUS)"
  895. depends on UFS_FS && EXPERIMENTAL
  896. help
  897. Say Y here if you want to try writing to UFS partitions. This is
  898. experimental, so you should back up your UFS partitions beforehand.
  899. config UFS_DEBUG
  900. bool "UFS debugging"
  901. depends on UFS_FS
  902. help
  903. If you are experiencing any problems with the UFS filesystem, say
  904. Y here. This will result in _many_ additional debugging messages to be
  905. written to the system log.
  906. endif # MISC_FILESYSTEMS
  907. menuconfig NETWORK_FILESYSTEMS
  908. bool "Network File Systems"
  909. default y
  910. depends on NET
  911. ---help---
  912. Say Y here to get to see options for network filesystems and
  913. filesystem-related networking code, such as NFS daemon and
  914. RPCSEC security modules.
  915. This option alone does not add any kernel code.
  916. If you say N, all options in this submenu will be skipped and
  917. disabled; if unsure, say Y here.
  918. if NETWORK_FILESYSTEMS
  919. config NFS_FS
  920. tristate "NFS client support"
  921. depends on INET
  922. select LOCKD
  923. select SUNRPC
  924. select NFS_ACL_SUPPORT if NFS_V3_ACL
  925. help
  926. Choose Y here if you want to access files residing on other
  927. computers using Sun's Network File System protocol. To compile
  928. this file system support as a module, choose M here: the module
  929. will be called nfs.
  930. To mount file systems exported by NFS servers, you also need to
  931. install the user space mount.nfs command which can be found in
  932. the Linux nfs-utils package, available from http://linux-nfs.org/.
  933. Information about using the mount command is available in the
  934. mount(8) man page. More detail about the Linux NFS client
  935. implementation is available via the nfs(5) man page.
  936. Below you can choose which versions of the NFS protocol are
  937. available in the kernel to mount NFS servers. Support for NFS
  938. version 2 (RFC 1094) is always available when NFS_FS is selected.
  939. To configure a system which mounts its root file system via NFS
  940. at boot time, say Y here, select "Kernel level IP
  941. autoconfiguration" in the NETWORK menu, and select "Root file
  942. system on NFS" below. You cannot compile this file system as a
  943. module in this case.
  944. If unsure, say N.
  945. config NFS_V3
  946. bool "NFS client support for NFS version 3"
  947. depends on NFS_FS
  948. help
  949. This option enables support for version 3 of the NFS protocol
  950. (RFC 1813) in the kernel's NFS client.
  951. If unsure, say Y.
  952. config NFS_V3_ACL
  953. bool "NFS client support for the NFSv3 ACL protocol extension"
  954. depends on NFS_V3
  955. help
  956. Some NFS servers support an auxiliary NFSv3 ACL protocol that
  957. Sun added to Solaris but never became an official part of the
  958. NFS version 3 protocol. This protocol extension allows
  959. applications on NFS clients to manipulate POSIX Access Control
  960. Lists on files residing on NFS servers. NFS servers enforce
  961. ACLs on local files whether this protocol is available or not.
  962. Choose Y here if your NFS server supports the Solaris NFSv3 ACL
  963. protocol extension and you want your NFS client to allow
  964. applications to access and modify ACLs on files on the server.
  965. Most NFS servers don't support the Solaris NFSv3 ACL protocol
  966. extension. You can choose N here or specify the "noacl" mount
  967. option to prevent your NFS client from trying to use the NFSv3
  968. ACL protocol.
  969. If unsure, say N.
  970. config NFS_V4
  971. bool "NFS client support for NFS version 4 (EXPERIMENTAL)"
  972. depends on NFS_FS && EXPERIMENTAL
  973. select RPCSEC_GSS_KRB5
  974. help
  975. This option enables support for version 4 of the NFS protocol
  976. (RFC 3530) in the kernel's NFS client.
  977. To mount NFS servers using NFSv4, you also need to install user
  978. space programs which can be found in the Linux nfs-utils package,
  979. available from http://linux-nfs.org/.
  980. If unsure, say N.
  981. config ROOT_NFS
  982. bool "Root file system on NFS"
  983. depends on NFS_FS=y && IP_PNP
  984. help
  985. If you want your system to mount its root file system via NFS,
  986. choose Y here. This is common practice for managing systems
  987. without local permanent storage. For details, read
  988. <file:Documentation/filesystems/nfsroot.txt>.
  989. Most people say N here.
  990. config NFSD
  991. tristate "NFS server support"
  992. depends on INET
  993. select LOCKD
  994. select SUNRPC
  995. select EXPORTFS
  996. select NFS_ACL_SUPPORT if NFSD_V2_ACL
  997. help
  998. Choose Y here if you want to allow other computers to access
  999. files residing on this system using Sun's Network File System
  1000. protocol. To compile the NFS server support as a module,
  1001. choose M here: the module will be called nfsd.
  1002. You may choose to use a user-space NFS server instead, in which
  1003. case you can choose N here.
  1004. To export local file systems using NFS, you also need to install
  1005. user space programs which can be found in the Linux nfs-utils
  1006. package, available from http://linux-nfs.org/. More detail about
  1007. the Linux NFS server implementation is available via the
  1008. exports(5) man page.
  1009. Below you can choose which versions of the NFS protocol are
  1010. available to clients mounting the NFS server on this system.
  1011. Support for NFS version 2 (RFC 1094) is always available when
  1012. CONFIG_NFSD is selected.
  1013. If unsure, say N.
  1014. config NFSD_V2_ACL
  1015. bool
  1016. depends on NFSD
  1017. config NFSD_V3
  1018. bool "NFS server support for NFS version 3"
  1019. depends on NFSD
  1020. help
  1021. This option enables support in your system's NFS server for
  1022. version 3 of the NFS protocol (RFC 1813).
  1023. If unsure, say Y.
  1024. config NFSD_V3_ACL
  1025. bool "NFS server support for the NFSv3 ACL protocol extension"
  1026. depends on NFSD_V3
  1027. select NFSD_V2_ACL
  1028. help
  1029. Solaris NFS servers support an auxiliary NFSv3 ACL protocol that
  1030. never became an official part of the NFS version 3 protocol.
  1031. This protocol extension allows applications on NFS clients to
  1032. manipulate POSIX Access Control Lists on files residing on NFS
  1033. servers. NFS servers enforce POSIX ACLs on local files whether
  1034. this protocol is available or not.
  1035. This option enables support in your system's NFS server for the
  1036. NFSv3 ACL protocol extension allowing NFS clients to manipulate
  1037. POSIX ACLs on files exported by your system's NFS server. NFS
  1038. clients which support the Solaris NFSv3 ACL protocol can then
  1039. access and modify ACLs on your NFS server.
  1040. To store ACLs on your NFS server, you also need to enable ACL-
  1041. related CONFIG options for your local file systems of choice.
  1042. If unsure, say N.
  1043. config NFSD_V4
  1044. bool "NFS server support for NFS version 4 (EXPERIMENTAL)"
  1045. depends on NFSD && PROC_FS && EXPERIMENTAL
  1046. select NFSD_V3
  1047. select FS_POSIX_ACL
  1048. select RPCSEC_GSS_KRB5
  1049. help
  1050. This option enables support in your system's NFS server for
  1051. version 4 of the NFS protocol (RFC 3530).
  1052. To export files using NFSv4, you need to install additional user
  1053. space programs which can be found in the Linux nfs-utils package,
  1054. available from http://linux-nfs.org/.
  1055. If unsure, say N.
  1056. config LOCKD
  1057. tristate
  1058. config LOCKD_V4
  1059. bool
  1060. depends on NFSD_V3 || NFS_V3
  1061. default y
  1062. config EXPORTFS
  1063. tristate
  1064. config NFS_ACL_SUPPORT
  1065. tristate
  1066. select FS_POSIX_ACL
  1067. config NFS_COMMON
  1068. bool
  1069. depends on NFSD || NFS_FS
  1070. default y
  1071. config SUNRPC
  1072. tristate
  1073. config SUNRPC_GSS
  1074. tristate
  1075. config SUNRPC_XPRT_RDMA
  1076. tristate
  1077. depends on SUNRPC && INFINIBAND && EXPERIMENTAL
  1078. default SUNRPC && INFINIBAND
  1079. help
  1080. This option enables an RPC client transport capability that
  1081. allows the NFS client to mount servers via an RDMA-enabled
  1082. transport.
  1083. To compile RPC client RDMA transport support as a module,
  1084. choose M here: the module will be called xprtrdma.
  1085. If unsure, say N.
  1086. config SUNRPC_REGISTER_V4
  1087. bool "Register local RPC services via rpcbind v4 (EXPERIMENTAL)"
  1088. depends on SUNRPC && EXPERIMENTAL
  1089. default n
  1090. help
  1091. Sun added support for registering RPC services at an IPv6
  1092. address by creating two new versions of the rpcbind protocol
  1093. (RFC 1833).
  1094. This option enables support in the kernel RPC server for
  1095. registering kernel RPC services via version 4 of the rpcbind
  1096. protocol. If you enable this option, you must run a portmapper
  1097. daemon that supports rpcbind protocol version 4.
  1098. Serving NFS over IPv6 from knfsd (the kernel's NFS server)
  1099. requires that you enable this option and use a portmapper that
  1100. supports rpcbind version 4.
  1101. If unsure, say N to get traditional behavior (register kernel
  1102. RPC services using only rpcbind version 2). Distributions
  1103. using the legacy Linux portmapper daemon must say N here.
  1104. config RPCSEC_GSS_KRB5
  1105. tristate "Secure RPC: Kerberos V mechanism (EXPERIMENTAL)"
  1106. depends on SUNRPC && EXPERIMENTAL
  1107. select SUNRPC_GSS
  1108. select CRYPTO
  1109. select CRYPTO_MD5
  1110. select CRYPTO_DES
  1111. select CRYPTO_CBC
  1112. help
  1113. Choose Y here to enable Secure RPC using the Kerberos version 5
  1114. GSS-API mechanism (RFC 1964).
  1115. Secure RPC calls with Kerberos require an auxiliary user-space
  1116. daemon which may be found in the Linux nfs-utils package
  1117. available from http://linux-nfs.org/. In addition, user-space
  1118. Kerberos support should be installed.
  1119. If unsure, say N.
  1120. config RPCSEC_GSS_SPKM3
  1121. tristate "Secure RPC: SPKM3 mechanism (EXPERIMENTAL)"
  1122. depends on SUNRPC && EXPERIMENTAL
  1123. select SUNRPC_GSS
  1124. select CRYPTO
  1125. select CRYPTO_MD5
  1126. select CRYPTO_DES
  1127. select CRYPTO_CAST5
  1128. select CRYPTO_CBC
  1129. help
  1130. Choose Y here to enable Secure RPC using the SPKM3 public key
  1131. GSS-API mechansim (RFC 2025).
  1132. Secure RPC calls with SPKM3 require an auxiliary userspace
  1133. daemon which may be found in the Linux nfs-utils package
  1134. available from http://linux-nfs.org/.
  1135. If unsure, say N.
  1136. config SMB_FS
  1137. tristate "SMB file system support (OBSOLETE, please use CIFS)"
  1138. depends on INET
  1139. select NLS
  1140. help
  1141. SMB (Server Message Block) is the protocol Windows for Workgroups
  1142. (WfW), Windows 95/98, Windows NT and OS/2 Lan Manager use to share
  1143. files and printers over local networks. Saying Y here allows you to
  1144. mount their file systems (often called "shares" in this context) and
  1145. access them just like any other Unix directory. Currently, this
  1146. works only if the Windows machines use TCP/IP as the underlying
  1147. transport protocol, and not NetBEUI. For details, read
  1148. <file:Documentation/filesystems/smbfs.txt> and the SMB-HOWTO,
  1149. available from <http://www.tldp.org/docs.html#howto>.
  1150. Note: if you just want your box to act as an SMB *server* and make
  1151. files and printing services available to Windows clients (which need
  1152. to have a TCP/IP stack), you don't need to say Y here; you can use
  1153. the program SAMBA (available from <ftp://ftp.samba.org/pub/samba/>)
  1154. for that.
  1155. General information about how to connect Linux, Windows machines and
  1156. Macs is on the WWW at <http://www.eats.com/linux_mac_win.html>.
  1157. To compile the SMB support as a module, choose M here:
  1158. the module will be called smbfs. Most people say N, however.
  1159. config SMB_NLS_DEFAULT
  1160. bool "Use a default NLS"
  1161. depends on SMB_FS
  1162. help
  1163. Enabling this will make smbfs use nls translations by default. You
  1164. need to specify the local charset (CONFIG_NLS_DEFAULT) in the nls
  1165. settings and you need to give the default nls for the SMB server as
  1166. CONFIG_SMB_NLS_REMOTE.
  1167. The nls settings can be changed at mount time, if your smbmount
  1168. supports that, using the codepage and iocharset parameters.
  1169. smbmount from samba 2.2.0 or later supports this.
  1170. config SMB_NLS_REMOTE
  1171. string "Default Remote NLS Option"
  1172. depends on SMB_NLS_DEFAULT
  1173. default "cp437"
  1174. help
  1175. This setting allows you to specify a default value for which
  1176. codepage the server uses. If this field is left blank no
  1177. translations will be done by default. The local codepage/charset
  1178. default to CONFIG_NLS_DEFAULT.
  1179. The nls settings can be changed at mount time, if your smbmount
  1180. supports that, using the codepage and iocharset parameters.
  1181. smbmount from samba 2.2.0 or later supports this.
  1182. source "fs/cifs/Kconfig"
  1183. config NCP_FS
  1184. tristate "NCP file system support (to mount NetWare volumes)"
  1185. depends on IPX!=n || INET
  1186. help
  1187. NCP (NetWare Core Protocol) is a protocol that runs over IPX and is
  1188. used by Novell NetWare clients to talk to file servers. It is to
  1189. IPX what NFS is to TCP/IP, if that helps. Saying Y here allows you
  1190. to mount NetWare file server volumes and to access them just like
  1191. any other Unix directory. For details, please read the file
  1192. <file:Documentation/filesystems/ncpfs.txt> in the kernel source and
  1193. the IPX-HOWTO from <http://www.tldp.org/docs.html#howto>.
  1194. You do not have to say Y here if you want your Linux box to act as a
  1195. file *server* for Novell NetWare clients.
  1196. General information about how to connect Linux, Windows machines and
  1197. Macs is on the WWW at <http://www.eats.com/linux_mac_win.html>.
  1198. To compile this as a module, choose M here: the module will be called
  1199. ncpfs. Say N unless you are connected to a Novell network.
  1200. source "fs/ncpfs/Kconfig"
  1201. config CODA_FS
  1202. tristate "Coda file system support (advanced network fs)"
  1203. depends on INET
  1204. help
  1205. Coda is an advanced network file system, similar to NFS in that it
  1206. enables you to mount file systems of a remote server and access them
  1207. with regular Unix commands as if they were sitting on your hard
  1208. disk. Coda has several advantages over NFS: support for
  1209. disconnected operation (e.g. for laptops), read/write server
  1210. replication, security model for authentication and encryption,
  1211. persistent client caches and write back caching.
  1212. If you say Y here, your Linux box will be able to act as a Coda
  1213. *client*. You will need user level code as well, both for the
  1214. client and server. Servers are currently user level, i.e. they need
  1215. no kernel support. Please read
  1216. <file:Documentation/filesystems/coda.txt> and check out the Coda
  1217. home page <http://www.coda.cs.cmu.edu/>.
  1218. To compile the coda client support as a module, choose M here: the
  1219. module will be called coda.
  1220. config AFS_FS
  1221. tristate "Andrew File System support (AFS) (EXPERIMENTAL)"
  1222. depends on INET && EXPERIMENTAL
  1223. select AF_RXRPC
  1224. help
  1225. If you say Y here, you will get an experimental Andrew File System
  1226. driver. It currently only supports unsecured read-only AFS access.
  1227. See <file:Documentation/filesystems/afs.txt> for more information.
  1228. If unsure, say N.
  1229. config AFS_DEBUG
  1230. bool "AFS dynamic debugging"
  1231. depends on AFS_FS
  1232. help
  1233. Say Y here to make runtime controllable debugging messages appear.
  1234. See <file:Documentation/filesystems/afs.txt> for more information.
  1235. If unsure, say N.
  1236. config 9P_FS
  1237. tristate "Plan 9 Resource Sharing Support (9P2000) (Experimental)"
  1238. depends on INET && NET_9P && EXPERIMENTAL
  1239. help
  1240. If you say Y here, you will get experimental support for
  1241. Plan 9 resource sharing via the 9P2000 protocol.
  1242. See <http://v9fs.sf.net> for more information.
  1243. If unsure, say N.
  1244. endif # NETWORK_FILESYSTEMS
  1245. if BLOCK
  1246. menu "Partition Types"
  1247. source "fs/partitions/Kconfig"
  1248. endmenu
  1249. endif
  1250. source "fs/nls/Kconfig"
  1251. source "fs/dlm/Kconfig"
  1252. endmenu