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Below you will find an updated version from the original series bunching all patches into one big patch updating broken web addresses that are located in Documentation/* Some of the addresses date as far far back as 1995 etc... so searching became a bit difficult, the best way to deal with these is to use web.archive.org to locate these addresses that are outdated. Now there are also some addresses pointing to .spec files some are located, but some(after searching on the companies site)where still no where to be found. In this case I just changed the address to the company site this way the users can contact the company and they can locate them for the users. Signed-off-by: Justin P. Mattock <justinmattock@gmail.com> Signed-off-by: Thomas Weber <weber@corscience.de> Signed-off-by: Mike Frysinger <vapier.adi@gmail.com> Cc: Paulo Marques <pmarques@grupopie.com> Cc: Randy Dunlap <rdunlap@xenotime.net> Cc: Michael Neuling <mikey@neuling.org> Signed-off-by: Jiri Kosina <jkosina@suse.cz>
220 lines
8.0 KiB
Plaintext
220 lines
8.0 KiB
Plaintext
Overview of Amiga Filesystems
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=============================
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Not all varieties of the Amiga filesystems are supported for reading and
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writing. The Amiga currently knows six different filesystems:
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DOS\0 The old or original filesystem, not really suited for
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hard disks and normally not used on them, either.
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Supported read/write.
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DOS\1 The original Fast File System. Supported read/write.
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DOS\2 The old "international" filesystem. International means that
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a bug has been fixed so that accented ("international") letters
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in file names are case-insensitive, as they ought to be.
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Supported read/write.
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DOS\3 The "international" Fast File System. Supported read/write.
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DOS\4 The original filesystem with directory cache. The directory
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cache speeds up directory accesses on floppies considerably,
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but slows down file creation/deletion. Doesn't make much
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sense on hard disks. Supported read only.
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DOS\5 The Fast File System with directory cache. Supported read only.
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All of the above filesystems allow block sizes from 512 to 32K bytes.
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Supported block sizes are: 512, 1024, 2048 and 4096 bytes. Larger blocks
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speed up almost everything at the expense of wasted disk space. The speed
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gain above 4K seems not really worth the price, so you don't lose too
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much here, either.
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The muFS (multi user File System) equivalents of the above file systems
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are supported, too.
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Mount options for the AFFS
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==========================
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protect If this option is set, the protection bits cannot be altered.
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setuid[=uid] This sets the owner of all files and directories in the file
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system to uid or the uid of the current user, respectively.
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setgid[=gid] Same as above, but for gid.
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mode=mode Sets the mode flags to the given (octal) value, regardless
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of the original permissions. Directories will get an x
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permission if the corresponding r bit is set.
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This is useful since most of the plain AmigaOS files
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will map to 600.
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reserved=num Sets the number of reserved blocks at the start of the
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partition to num. You should never need this option.
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Default is 2.
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root=block Sets the block number of the root block. This should never
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be necessary.
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bs=blksize Sets the blocksize to blksize. Valid block sizes are 512,
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1024, 2048 and 4096. Like the root option, this should
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never be necessary, as the affs can figure it out itself.
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quiet The file system will not return an error for disallowed
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mode changes.
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verbose The volume name, file system type and block size will
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be written to the syslog when the filesystem is mounted.
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mufs The filesystem is really a muFS, also it doesn't
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identify itself as one. This option is necessary if
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the filesystem wasn't formatted as muFS, but is used
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as one.
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prefix=path Path will be prefixed to every absolute path name of
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symbolic links on an AFFS partition. Default = "/".
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(See below.)
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volume=name When symbolic links with an absolute path are created
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on an AFFS partition, name will be prepended as the
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volume name. Default = "" (empty string).
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(See below.)
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Handling of the Users/Groups and protection flags
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=================================================
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Amiga -> Linux:
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The Amiga protection flags RWEDRWEDHSPARWED are handled as follows:
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- R maps to r for user, group and others. On directories, R implies x.
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- If both W and D are allowed, w will be set.
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- E maps to x.
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- H and P are always retained and ignored under Linux.
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- A is always reset when a file is written to.
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User id and group id will be used unless set[gu]id are given as mount
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options. Since most of the Amiga file systems are single user systems
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they will be owned by root. The root directory (the mount point) of the
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Amiga filesystem will be owned by the user who actually mounts the
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filesystem (the root directory doesn't have uid/gid fields).
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Linux -> Amiga:
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The Linux rwxrwxrwx file mode is handled as follows:
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- r permission will set R for user, group and others.
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- w permission will set W and D for user, group and others.
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- x permission of the user will set E for plain files.
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- All other flags (suid, sgid, ...) are ignored and will
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not be retained.
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Newly created files and directories will get the user and group ID
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of the current user and a mode according to the umask.
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Symbolic links
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==============
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Although the Amiga and Linux file systems resemble each other, there
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are some, not always subtle, differences. One of them becomes apparent
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with symbolic links. While Linux has a file system with exactly one
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root directory, the Amiga has a separate root directory for each
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file system (for example, partition, floppy disk, ...). With the Amiga,
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these entities are called "volumes". They have symbolic names which
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can be used to access them. Thus, symbolic links can point to a
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different volume. AFFS turns the volume name into a directory name
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and prepends the prefix path (see prefix option) to it.
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Example:
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You mount all your Amiga partitions under /amiga/<volume> (where
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<volume> is the name of the volume), and you give the option
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"prefix=/amiga/" when mounting all your AFFS partitions. (They
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might be "User", "WB" and "Graphics", the mount points /amiga/User,
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/amiga/WB and /amiga/Graphics). A symbolic link referring to
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"User:sc/include/dos/dos.h" will be followed to
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"/amiga/User/sc/include/dos/dos.h".
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Examples
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========
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Command line:
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mount Archive/Amiga/Workbench3.1.adf /mnt -t affs -o loop,verbose
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mount /dev/sda3 /Amiga -t affs
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/etc/fstab entry:
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/dev/sdb5 /amiga/Workbench affs noauto,user,exec,verbose 0 0
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IMPORTANT NOTE
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==============
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If you boot Windows 95 (don't know about 3.x, 98 and NT) while you
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have an Amiga harddisk connected to your PC, it will overwrite
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the bytes 0x00dc..0x00df of block 0 with garbage, thus invalidating
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the Rigid Disk Block. Sheer luck has it that this is an unused
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area of the RDB, so only the checksum doesn't match anymore.
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Linux will ignore this garbage and recognize the RDB anyway, but
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before you connect that drive to your Amiga again, you must
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restore or repair your RDB. So please do make a backup copy of it
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before booting Windows!
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If the damage is already done, the following should fix the RDB
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(where <disk> is the device name).
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DO AT YOUR OWN RISK:
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dd if=/dev/<disk> of=rdb.tmp count=1
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cp rdb.tmp rdb.fixed
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dd if=/dev/zero of=rdb.fixed bs=1 seek=220 count=4
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dd if=rdb.fixed of=/dev/<disk>
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Bugs, Restrictions, Caveats
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===========================
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Quite a few things may not work as advertised. Not everything is
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tested, though several hundred MB have been read and written using
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this fs. For a most up-to-date list of bugs please consult
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fs/affs/Changes.
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Filenames are truncated to 30 characters without warning (this
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can be changed by setting the compile-time option AFFS_NO_TRUNCATE
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in include/linux/amigaffs.h).
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Case is ignored by the affs in filename matching, but Linux shells
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do care about the case. Example (with /wb being an affs mounted fs):
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rm /wb/WRONGCASE
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will remove /mnt/wrongcase, but
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rm /wb/WR*
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will not since the names are matched by the shell.
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The block allocation is designed for hard disk partitions. If more
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than 1 process writes to a (small) diskette, the blocks are allocated
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in an ugly way (but the real AFFS doesn't do much better). This
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is also true when space gets tight.
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You cannot execute programs on an OFS (Old File System), since the
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program files cannot be memory mapped due to the 488 byte blocks.
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For the same reason you cannot mount an image on such a filesystem
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via the loopback device.
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The bitmap valid flag in the root block may not be accurate when the
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system crashes while an affs partition is mounted. There's currently
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no way to fix a garbled filesystem without an Amiga (disk validator)
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or manually (who would do this?). Maybe later.
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If you mount affs partitions on system startup, you may want to tell
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fsck that the fs should not be checked (place a '0' in the sixth field
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of /etc/fstab).
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It's not possible to read floppy disks with a normal PC or workstation
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due to an incompatibility with the Amiga floppy controller.
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If you are interested in an Amiga Emulator for Linux, look at
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http://web.archive.org/web/*/http://www.freiburg.linux.de/~uae/
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