4
Maintainer: Mandos Maintainers <mandos@recompile.se>
5
Uploaders: Teddy Hogeborn <teddy@recompile.se>,
6
Björn Påhlsson <belorn@recompile.se>
7
Build-Depends: debhelper (>= 7), docbook-xml, docbook-xsl,
8
libavahi-core-dev, libgpgme11-dev, libgnutls-dev, xsltproc,
9
pkg-config, man, locales-all
10
Standards-Version: 3.9.2
11
Vcs-Bzr: http://ftp.recompile.se/pub/mandos/trunk
12
Vcs-Browser: http://bzr.recompile.se/loggerhead/mandos/trunk/files
13
Homepage: http://www.recompile.se/mandos
14
DM-Upload-Allowed: yes
18
Depends: ${misc:Depends}, python (>=2.6), python-gnutls, python-dbus,
19
python-avahi, python-gobject, avahi-daemon, adduser,
20
python-urwid, python (>=2.7) | python-argparse,
23
Description: server giving encrypted passwords to Mandos clients
24
This is the server part of the Mandos system, which allows
25
computers to have encrypted root file systems and at the
26
same time be capable of remote and/or unattended reboots.
28
The computers run a small client program in the initial RAM
29
disk environment which will communicate with a server over a
30
network. All network communication is encrypted using TLS.
31
The clients are identified by the server using an OpenPGP
32
key; each client has one unique to it. The server sends the
33
clients an encrypted password. The encrypted password is
34
decrypted by the clients using the same OpenPGP key, and the
35
password is then used to unlock the root file system,
36
whereupon the computers can continue booting normally.
38
Package: mandos-client
40
Depends: ${shlibs:Depends}, ${misc:Depends}, adduser, cryptsetup,
41
gnupg (<< 2), initramfs-tools
42
Breaks: dropbear (<= 0.53.1-1)
44
Description: do unattended reboots with an encrypted root file system
45
This is the client part of the Mandos system, which allows
46
computers to have encrypted root file systems and at the
47
same time be capable of remote and/or unattended reboots.
49
The computers run a small client program in the initial RAM
50
disk environment which will communicate with a server over a
51
network. All network communication is encrypted using TLS.
52
The clients are identified by the server using an OpenPGP
53
key; each client has one unique to it. The server sends the
54
clients an encrypted password. The encrypted password is
55
decrypted by the clients using the same OpenPGP key, and the
56
password is then used to unlock the root file system,
57
whereupon the computers can continue booting normally.