Package: babeld Version: 1:1.13.1+nxd1-2 Architecture: arm64 Maintainer: Julien Muchembled Installed-Size: 252 Pre-Depends: init-system-helpers (>= 1.54~) Depends: libb2-1 (>= 0.98.1), libc6 (>= 2.34) Suggests: ahcpd Filename: arm64/babeld_1.13.1+nxd1-2_arm64.deb Size: 87340 MD5sum: b30ecc5d46a2abe6abed0533adad19fe SHA1: 770b0f6959da7c2f4a9d7954c20d45ca16dcaa05 SHA256: 5d47ce476ff4996d0e7a925c1f075ae2a8143e461cbc24f96400339426a8435c 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: babeld Version: 1:1.13.1+nxd1-2 Architecture: ppc64el Maintainer: Julien Muchembled Installed-Size: 316 Pre-Depends: init-system-helpers (>= 1.54~) Depends: libb2-1 (>= 0.98.1), libc6 (>= 2.34) Suggests: ahcpd Filename: ppc64el/babeld_1.13.1+nxd1-2_ppc64el.deb Size: 99532 MD5sum: 10e5156d0f965fd3a3f853a04ce76d7e SHA1: 9f324a8db6e07ea45126776f7efce6a1987bfc01 SHA256: 0c1115c45ffbff2d834e461e727a8e2aac9d1474dd8f92ce57fb4333c535661c 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: babeld Version: 1:1.13.1+nxd1-2 Architecture: i386 Maintainer: Julien Muchembled Installed-Size: 231 Pre-Depends: init-system-helpers (>= 1.54~) Depends: libb2-1 (>= 0.98.1), libc6 (>= 2.34) Suggests: ahcpd Filename: i386/babeld_1.13.1+nxd1-2_i386.deb Size: 98388 MD5sum: d5f073cca150ed835a5f480445d1341d SHA1: 91bcd55f39f4efdfff75fc6676eaa2de382c68c3 SHA256: 240b10836cd0c1c19e764dfadb431afd59da2b7000bf920dac6cfda4d9c601c8 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: babeld Version: 1:1.13.1+nxd1-2 Architecture: amd64 Maintainer: Julien Muchembled Installed-Size: 212 Pre-Depends: init-system-helpers (>= 1.54~) Depends: libb2-1 (>= 0.98.1), libc6 (>= 2.34) Suggests: ahcpd Filename: amd64/babeld_1.13.1+nxd1-2_amd64.deb Size: 93960 MD5sum: fda7c72519cabb924ca02da021d9c3a8 SHA1: 419678a19fbbea3e8d48744a88ecdc42c0645450 SHA256: beff0d842e535b6fa419302420c96858e6fc566a32f37ccaa0860b1e029efd4d 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: babeld-dbgsym Source: babeld Version: 1:1.13.1+nxd1-2 Auto-Built-Package: debug-symbols Architecture: arm64 Maintainer: Julien Muchembled Installed-Size: 392 Depends: babeld (= 1:1.13.1+nxd1-2) Filename: arm64/babeld-dbgsym_1.13.1+nxd1-2_arm64.deb Size: 216016 MD5sum: 60669d763a71ee4e432823be4df712f7 SHA1: ab30f409b88e23c54526172cc6d4d2f0d3e4b54c SHA256: 9604e07b02593d0902bbf9df948e1a75305d0b0d0be2928bccb87cf41c548d98 Section: debug Priority: optional Description: debug symbols for babeld Build-Ids: b3fe0e4dd1cea7f4690a2272045a8515335caa7f Package: babeld-dbgsym Source: babeld Version: 1:1.13.1+nxd1-2 Auto-Built-Package: debug-symbols Architecture: ppc64el Maintainer: Julien Muchembled Installed-Size: 444 Depends: babeld (= 1:1.13.1+nxd1-2) Filename: ppc64el/babeld-dbgsym_1.13.1+nxd1-2_ppc64el.deb Size: 220852 MD5sum: 7413faaf72717c977523fefa0922706e SHA1: de3db18ae6f745f3b4386852aceb70d14ca09d4f SHA256: 3e3166cf7ed9771dbed47abe02cf23f1a9f9e3c9b7aec83191f3d67861923114 Section: debug Priority: optional Description: debug symbols for babeld Build-Ids: 36310bbb5e1b127b503a78d48968788cf28e9fac Package: babeld-dbgsym Source: babeld Version: 1:1.13.1+nxd1-2 Auto-Built-Package: debug-symbols Architecture: i386 Maintainer: Julien Muchembled Installed-Size: 266 Depends: babeld (= 1:1.13.1+nxd1-2) Filename: i386/babeld-dbgsym_1.13.1+nxd1-2_i386.deb Size: 194228 MD5sum: ec023e620affadcec053e28e3bdf9d9c SHA1: c31e40f58f6e21bfc930a9c09da7331f055e7655 SHA256: cb9efeaf81370c07ceaecc51459eedd278348da219d680ff2ad4e7c736252181 Section: debug Priority: optional Description: debug symbols for babeld Build-Ids: f9f121efa690476aa4d8f0b854ca0e2a9ca30f06 Package: babeld-dbgsym Source: babeld Version: 1:1.13.1+nxd1-2 Auto-Built-Package: debug-symbols Architecture: amd64 Maintainer: Julien Muchembled Installed-Size: 273 Depends: babeld (= 1:1.13.1+nxd1-2) Filename: amd64/babeld-dbgsym_1.13.1+nxd1-2_amd64.deb Size: 217000 MD5sum: 580ca4974af3834d452183219a8ecb26 SHA1: 550b0f0e5314a1292a230e1530d5d968791532e6 SHA256: db40fc33cef69765ea284d95b94a7c0f94761e3bf460c140e869cda313f6836c Section: debug Priority: optional Description: debug symbols for babeld Build-Ids: e4facf06272d7dfd5ab7fa928824377ba11829f0 Package: openvpn-re6stnet Version: 2.4.12-1 Architecture: arm64 Maintainer: Julien Muchembled Installed-Size: 907 Depends: libc6 (>= 2.38), liblz4-1 (>= 0.0~r130), liblzo2-2 (>= 2.02), libssl3t64 (>= 3.4.0), iproute2 Filename: arm64/openvpn-re6stnet_2.4.12-1_arm64.deb Size: 369748 MD5sum: 2493ad1cc11c0914a15bc5da9132ba01 SHA1: 6dc19fcd4027e345c4777a262e91f7a39d7bb36b SHA256: e4fd29ce283cfe24ef45d023825d325fd80f9d6936baee458d2591acb12ee499 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: openvpn-re6stnet Version: 2.4.12-1 Architecture: ppc64el Maintainer: Julien Muchembled Installed-Size: 1163 Depends: libc6 (>= 2.38), liblz4-1 (>= 0.0~r130), liblzo2-2 (>= 2.02), libssl3t64 (>= 3.4.0), iproute2 Filename: ppc64el/openvpn-re6stnet_2.4.12-1_ppc64el.deb Size: 419200 MD5sum: d6fcfe14fb642d03a7dea0d18e90da01 SHA1: 3ebc26f223e32e237d9d8f57552410e33832855b SHA256: 1eb80d2e8d9816fa27d55ac0a77723b86f8c58ee29ce8d4eee6ca8140f6d8c12 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: openvpn-re6stnet Version: 2.4.12-1 Architecture: i386 Maintainer: Julien Muchembled Installed-Size: 1022 Depends: libc6 (>= 2.38), liblz4-1 (>= 0.0~r130), liblzo2-2 (>= 2.02), libssl3t64 (>= 3.4.0), iproute2 Filename: i386/openvpn-re6stnet_2.4.12-1_i386.deb Size: 427068 MD5sum: 1401b3d68bf9edc9e4e7fd426e97e998 SHA1: 4437b1a640dd8cee984c8241fd02f418e2bc1449 SHA256: c97dc4bdb0ba6ab1a134d50167dc519424e8b656b2f9b8961e57a5b9cd6e2ddb 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: 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 (>= 3.4.0), iproute2 Filename: amd64/openvpn-re6stnet_2.4.12-1_amd64.deb Size: 398492 MD5sum: a827893f0fbfb85c6f010914a8aa4d4a SHA1: 37eef17f8744442b40f19b9b49b70466e1a0e6ef SHA256: df2a295a830b71f92566d76935cda82e53fb105249730e91be3dcc36581bf166 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: openvpn-re6stnet-dbgsym Source: openvpn-re6stnet Version: 2.4.12-1 Auto-Built-Package: debug-symbols Architecture: arm64 Maintainer: Julien Muchembled Installed-Size: 1723 Depends: openvpn-re6stnet (= 2.4.12-1) Filename: arm64/openvpn-re6stnet-dbgsym_2.4.12-1_arm64.deb Size: 954672 MD5sum: 42f5316ad96d6b3d0b3c54b38147d8f4 SHA1: ca5797bbcb57114d62a73d4d4e1ba4172dfbf458 SHA256: ffe2de63665b419d483229b4460ff1d1a3d0604dc814acaef889baf1108d815b Section: debug Priority: optional Description: debug symbols for openvpn-re6stnet Build-Ids: 4873aac401d5ea96fe81241357a075af8dc3a570 Package: openvpn-re6stnet-dbgsym Source: openvpn-re6stnet Version: 2.4.12-1 Auto-Built-Package: debug-symbols Architecture: ppc64el Maintainer: Julien Muchembled Installed-Size: 2045 Depends: openvpn-re6stnet (= 2.4.12-1) Filename: ppc64el/openvpn-re6stnet-dbgsym_2.4.12-1_ppc64el.deb Size: 1011808 MD5sum: a56977bd690dab251c471812dfcabc92 SHA1: 63792815e4a6eeb2d8a0fc30c1f603813007c8a1 SHA256: 403c2fdf278aba6eb81bb6fabbda4bd3e95b7bf363546d072495806001f983b1 Section: debug Priority: optional Description: debug symbols for openvpn-re6stnet Build-Ids: cd69337454e1b793afba68300b862929509583b6 Package: openvpn-re6stnet-dbgsym Source: openvpn-re6stnet Version: 2.4.12-1 Auto-Built-Package: debug-symbols Architecture: i386 Maintainer: Julien Muchembled Installed-Size: 1254 Depends: openvpn-re6stnet (= 2.4.12-1) Filename: i386/openvpn-re6stnet-dbgsym_2.4.12-1_i386.deb Size: 866384 MD5sum: f09d608a11debf3fe62bf118e2378002 SHA1: 655dc74e1ff9a07a483c1a5e25549a600bff8908 SHA256: cd44e54a87a909f2e91e0838ae531e662d77b109c3c39f0a0b656d06fdfd3957 Section: debug Priority: optional Description: debug symbols for openvpn-re6stnet Build-Ids: ab280c4264b05fbc5f8c759599ef202c26538c20 Package: openvpn-re6stnet-dbgsym Source: openvpn-re6stnet Version: 2.4.12-1 Auto-Built-Package: debug-symbols Architecture: amd64 Maintainer: Julien Muchembled Installed-Size: 1232 Depends: openvpn-re6stnet (= 2.4.12-1) Filename: amd64/openvpn-re6stnet-dbgsym_2.4.12-1_amd64.deb Size: 971652 MD5sum: 3e8157d324ec7f413eb56ab23b382303 SHA1: 82bc1f5f0fe80e651779f635eba49795573bd340 SHA256: f1dc9b317ff7b4b264556eab6250b5596aa6f619b41cc0beb3b830684dd0f3c2 Section: debug Priority: optional Description: debug symbols for openvpn-re6stnet Build-Ids: 7ad53b3ce5a9930fadeda7e28033af2d90b8d5e5 Package: re6st-node Source: re6stnet Version: 0.672+g05c9a70-1 Architecture: all Maintainer: Julien Muchembled Installed-Size: 4430 Depends: python3-openssl (>= 19), python3-openssl (<< 26), openvpn-re6stnet, babeld (>> 1:1.13.1+nxd), iproute2, openssl, python3-geoip2 Recommends: logrotate Suggests: ndisc6 Conflicts: re6stnet Replaces: re6stnet Provides: re6stnet Filename: all/re6st-node_0.672+g05c9a70-1_all.deb Size: 1241988 MD5sum: 9376f072150eb5784e313179fd11e2bd SHA1: fd1b0016a84d661c76110b13efff3bfed7710e41 SHA256: b6b7751503b5c8b3b00896a17ad37689666f04da2f63c552f1d94da7723d1895 Section: net Priority: optional Description: resilient, scalable, IPv6 network application Package: slapos-node Version: 1.24.1+1.0.508+1-1 Architecture: arm64 Maintainer: Thomas Gambier Installed-Size: 316934 Depends: libc6 (>= 2.38), libcrypt1 (>= 1:4.1.0), 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: arm64/slapos-node_1.24.1+1.0.508+1-1_arm64.deb Size: 52126856 MD5sum: f3cfb412175567b112af928d477fe164 SHA1: 2e22d35f2fbab647eed57bc20642dbaf8761eb96 SHA256: 39d1d9db2f5c3f90374938422ecf653e1d5b5f5c3caed3be1a3d1dfd32178aca 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. Package: slapos-node Version: 1.24.1+1.0.508+1-1 Architecture: ppc64el Maintainer: Thomas Gambier Installed-Size: 330757 Depends: libc6 (>= 2.38), libcrypt1 (>= 1:4.1.0), 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: ppc64el/slapos-node_1.24.1+1.0.508+1-1_ppc64el.deb Size: 53718276 MD5sum: 80af878b08987568443360b28ba3749e SHA1: eb001951384c08eaed8d8674edb2f831f6cf3bb0 SHA256: c8c7ff82d0fb4cd1d93f06c1031bab73a88cb24fe9d11edd918a84f9467252d1 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. Package: slapos-node Version: 1.24.1+1.0.508+1-1 Architecture: i386 Maintainer: Thomas Gambier Installed-Size: 295836 Depends: libc6 (>= 2.38), libcrypt1 (>= 1:4.1.0), libgcc-s1 (>= 7), 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: i386/slapos-node_1.24.1+1.0.508+1-1_i386.deb Size: 54916664 MD5sum: 062edceacc6db8202f68c1ccc8fab290 SHA1: 95971effb4e03f85afc3dda9530cb2420792fa80 SHA256: 782e19519377ddb50a719734e393dfd3db0e6c50b21f5d389a75b1dd0470c6ae 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. Package: slapos-node Version: 1.24.1+1.0.508+1-1 Architecture: amd64 Maintainer: Thomas Gambier Installed-Size: 302716 Depends: libc6 (>= 2.38), libcrypt1 (>= 1:4.1.0), 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_1.24.1+1.0.508+1-1_amd64.deb Size: 54612628 MD5sum: c805ccb0553ddccd15b111514a855aa1 SHA1: 7019d9baa2ecf1abfe501bfc1087cd879b7c65af SHA256: 97dd7c9adc42fc4bad7da0a47b7d3add24d30d67dfe666b5434d4132dc2871d4 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.