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authorbellard <bellard@c046a42c-6fe2-441c-8c8c-71466251a162>2003-07-06 19:01:55 +0000
committerbellard <bellard@c046a42c-6fe2-441c-8c8c-71466251a162>2003-07-06 19:01:55 +0000
commit1f47a9223ebe3d0c9c779f72341afc10c206d574 (patch)
tree8cfbad8403b916090e32a01e4f2b211ae97f0851
parent33e3963e1b9298e01cadd738124f0e618b5b79f5 (diff)
downloadqemu-1f47a9223ebe3d0c9c779f72341afc10c206d574.tar.gz
added disk image help
git-svn-id: svn://svn.savannah.nongnu.org/qemu/trunk@310 c046a42c-6fe2-441c-8c8c-71466251a162
-rw-r--r--qemu-doc.texi91
1 files changed, 82 insertions, 9 deletions
diff --git a/qemu-doc.texi b/qemu-doc.texi
index 466363d785..917717b7bb 100644
--- a/qemu-doc.texi
+++ b/qemu-doc.texi
@@ -368,13 +368,13 @@ Use 'file' as initial ram disk.
@item -hda file
@item -hdb file
-Use 'file' as hard disk 0 or 1 image. The disk images are simply raw
-images of the hard disk. You can create them with the command:
-@example
-dd if=/dev/zero of=myimage bs=1024 count=mysize
-@end example
-where @var{myimage} is the image filename and @var{mysize} is its size
-in kilobytes.
+Use 'file' as hard disk 0 or 1 image (@xref{disk_images}).
+
+@item -snapshot
+
+Write to temporary files instead of disk image files. In this case,
+the raw disk image you use is not written back. You can however force
+the write back by pressing @key{C-a s} (@xref{disk_images}).
@item -m megs
Set virtual RAM size to @var{megs} megabytes.
@@ -402,12 +402,85 @@ During emulation, use @key{C-a h} to get terminal commands:
Print this help
@item C-a x
Exit emulatior
-@item C-a b
+@item C-a s
+Save disk data back to file (if -snapshot)
+@item C-a b
Send break (magic sysrq)
-@item C-a C-a
+@item C-a C-a
Send C-a
@end table
+@node disk_images
+@section Disk Images
+
+@subsection Raw disk images
+
+The disk images can simply be raw images of the hard disk. You can
+create them with the command:
+@example
+dd if=/dev/zero of=myimage bs=1024 count=mysize
+@end example
+where @var{myimage} is the image filename and @var{mysize} is its size
+in kilobytes.
+
+@subsection Snapshot mode
+
+If you use the option @option{-snapshot}, all disk images are
+considered as read only. When sectors in written, they are written in
+a temporary file created in @file{/tmp}. You can however force the
+write back to the raw disk images by pressing @key{C-a s}.
+
+NOTE: The snapshot mode only works with raw disk images.
+
+@subsection Copy On Write disk images
+
+QEMU also supports user mode Linux
+(@url{http://user-mode-linux.sourceforge.net/}) Copy On Write (COW)
+disk images. The COW disk images are much smaller than normal images
+as they store only modified sectors. They also permit the use of the
+same disk image template for many users.
+
+To create a COW disk images, use the command:
+
+@example
+vlmkcow -f myrawimage.bin mycowimage.cow
+@end example
+
+@file{myrawimage.bin} is a raw image you want to use as original disk
+image. It will never be written to.
+
+@file{mycowimage.cow} is the COW disk image which is created by
+@code{vlmkcow}. You can use it directly with the @option{-hdx}
+options. You must not modify the original raw disk image if you use
+COW images, as COW images only store the modified sectors from the raw
+disk image. QEMU stores the original raw disk image name and its
+modified time in the COW disk image so that chances of mistakes are
+reduced.
+
+If raw disk image is not read-only, by pressing @key{C-a s} you can
+flush the COW disk image back into the raw disk image, as in snapshot
+mode.
+
+COW disk images can also be created without a corresponding raw disk
+image. It is useful to have a big initial virtual disk image without
+using much disk space. Use:
+
+@example
+vlmkcow mycowimage.cow 1024
+@end example
+
+to create a 1 gigabyte empty COW disk image.
+
+NOTES:
+@enumerate
+@item
+COW disk images must be created on file systems supporting
+@emph{holes} such as ext2 or ext3.
+@item
+Since holes are used, the displayed size of the COW disk image is not
+the real one. To know it, use the @code{ls -ls} command.
+@end enumerate
+
@section Kernel Compilation
You can use any Linux kernel within QEMU provided it is mapped at