Package: babeld Version: 1:1.13.1+nxd1-1 Architecture: amd64 Maintainer: Julien Muchembled Installed-Size: 195 Depends: libb2-1 (>= 0.98.1), libc6 (>= 2.42) Suggests: ahcpd Filename: amd64/babeld_1.13.1+nxd1-1_amd64.deb Size: 88748 MD5sum: 4d7dc944fa191c0df13faac9fd369081 SHA1: 51951e4d9e77212a562934b6c1c9ef34f58e4c97 SHA256: f94257cfe2c74051d9c2ff80e37e1b718627b3c66d6e77c340a550db6e3614ad Section: net Priority: optional Homepage: https://lab.nexedi.com/nexedi/babeld Description: loop-free distance-vector routing protocol Babel is a distance-vector routing protocol for IPv6 and IPv4 with fast convergence properties, described in RFC 6126. It was designed to be robust and efficient on both wireless mesh networks and classical wired networks. Babel has extremely modest memory and CPU requirements. Unlike most routing protocols, which route either IPv4 or IPv6 but not both at the same time, Babel is a hybrid IPv6 and IPv4 protocol: a single update packet can carry both IPv6 and IPv4 routes (this is similar to how multi-protocol BGP works). This makes Babel particularly efficient on dual (IPv6 and IPv4) networks. This implementation also includes a radio frequency-aware variant of Babel. . Babel has the following features: * it is a distance-vector protocol; * it is a proactive protocol, but with adaptative (reactive) features; * it senses link quality for computing route metrics using a variant of the ETX algorithm; * it uses a feasibility condition that guarantees the absence of loops (the feasibility condition is taken from EIGRP and is somewhat less strict than the one in AODV); * it uses sequence numbers to make old routes feasible again (like DSDV and AODV, but unlike EIGRP); * it speeds up convergence by reactively requesting a new sequence number (like AODV, and to a certain extent EIGRP, but unlike DSDV); * it allows redistributed external routes to be injected into the routing domain at multiple points (like EIGRP, but unlike DSDV and AODV). Package: notepod Version: 5 Architecture: amd64 Maintainer: Julien Muchembled Installed-Size: 579 Depends: libc6 (>= 2.39), libgcc-s1 (>= 4.2), grub-efi-amd64, unattended-upgrades Filename: amd64/notepod_5_amd64.deb Size: 253666 MD5sum: 87767e75a467a6d87e6ea4da96dc8f7e SHA1: b8422854dcfd18e08594eb06bb15683c10d9836e SHA256: 0154d41b563b4263a926d836538027f32f8eff5810d1edc2ce212f6e4721aeda Section: admin Priority: optional Homepage: https://notepod.nexedi.com/ Description: NotePOD is a Nexedi flavor of Ubuntu with a focus on security This package applies the following changes: . - grub-install: Always use options --no-nvram --removable, as a way to stay as far away as possible from buggy closed-source UEFIs, and make it possible to move easily the storage device from one computer to another. Should we enable secure boot (more a tool against users than anything else), systemd-boot looks better than grub for that. . - upgrade-grub: Disable quick-boot (like on Debian) because it breaks hidden menu. Also sets a few defaults in /etc/default/grub.d/00-notepod.cfg . - unattended-upgrades: Auto-upgrade Ungoogled Chromium if installed. This package is provided by a PPA and we don't want other packages from PPA to be upgraded automatically. On the other side, using Package-Whitelist would break auto-upgrade for official repositories. . - apt: Enable xtradeb PPA (Ungoogled Chromium). Make sure official repositories have higher priority. . - systemd: Enable SYSTEMD_SULOGIN_FORCE. . - firefox: Policies with some settings from LibreWolf, uBlock Origin and a few other extensions. . - gnome-initial-setup: Skip questions about location services and telemetry. Disable first login dialog. . Uninstalling this package reverts the system to a standard Ubuntu one. . It also includes a setuid-root helper for the https://lab.nexedi.com/nexedi/slapos/-/blob/master/software/system-audit/software.cfg SlapOS Software Release. Package: openvpn-re6stnet Version: 2.4.12-1 Architecture: amd64 Maintainer: Julien Muchembled Installed-Size: 867 Depends: libc6 (>= 2.38), liblz4-1 (>= 0.0~r130), liblzo2-2 (>= 2.02), libssl3t64 (>= 3.0.0), iproute2 Filename: amd64/openvpn-re6stnet_2.4.12-1_amd64.deb Size: 414040 MD5sum: b745931560967249fc2b6ab285551324 SHA1: be4ae9630a195617ebebc029368760a548d9b0a0 SHA256: 24866691514682d6f5f3faa6dc9c1ee5137c14197e139656b73dcb86e21fab16 Section: net Priority: optional Homepage: https://openvpn.net/ Description: virtual private network daemon OpenVPN is an application to securely tunnel IP networks over a single UDP or TCP port. It can be used to access remote sites, make secure point-to-point connections, enhance wireless security, etc. . OpenVPN uses all of the encryption, authentication, and certification features provided by the OpenSSL library (any cipher, key size, or HMAC digest). . OpenVPN may use static, pre-shared keys or TLS-based dynamic key exchange. It also supports VPNs with dynamic endpoints (DHCP or dial-up clients), tunnels over NAT or connection-oriented stateful firewalls (such as Linux's iptables). . Due to a regression in version 2.5.x, this package ships the last version of OpenVPN that's supported by re6stnet (https://re6st.nexedi.com/). Package: slapos-node Version: 1.22.1+1.0.492+1-1 Architecture: amd64 Maintainer: Thomas Gambier Installed-Size: 290049 Depends: libc6 (>= 2.43), libgcc-s1 (>= 3.0), libstdc++6 (>= 13.1), awk, libc6-dev | libc-dev, gcc | c-compiler, g++ | c++-compiler, make, patch, iproute2, procps, lm-sensors, util-linux Conflicts: firewalld Filename: amd64/slapos-node_1.22.1+1.0.492+1-1_amd64.deb Size: 55320808 MD5sum: ae9dcfdabbdb2bea6c7b6aea712b0676 SHA1: 26a735f5b161aa346117576ca0bdbe382d2a9253 SHA256: 6fd70d5f20dab84aa698c5893faedc8f9f65c0db85c63707c05fe08276ef814d Section: net Priority: optional Homepage: https://slapos.nexedi.com Description: Client-side to deploy applications with SlapOS SlapOS allows one to turn any application into SaaS (Service as a System), PaaS (Platform as a Service) or IaaS (Infrastructure as a Service) without loosing your freedom. SlapOS defines two types of servers: SlapOS server and SlapOS node. . This package contains libraries and tools to deploy a node. . Slapformat prepares a SlapOS node before running slapgrid. It then generates a report and sends the information to the configured SlapOS master. . Slapgrid allows you to easily deploy instances of software based on buildout profiles.