Package: babeld Version: 1:1.13.1+nxd1-2 Architecture: arm64 Maintainer: Julien Muchembled Installed-Size: 253 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: 86768 MD5sum: 022b4c6b14aec89bf8e9e2bc26d7e8a7 SHA1: c2ad02ad886bbe2477ab19ca788497fc727493e0 SHA256: 58dfee58c23d8c65aec3e57910826cc050a1f9912c0e1fecde64ab6bdafc2409 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: 209 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: 93536 MD5sum: a8fb1a74db9b9357994eb2178d8ad066 SHA1: daad16acbeb8b662b44feae410b54140333916da SHA256: 7c63694ca64a526e2bb6821a5ba61dc54875a2ef9cf5204ac91175dd09a85872 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: armhf Maintainer: Julien Muchembled Installed-Size: 156 Pre-Depends: init-system-helpers (>= 1.54~) Depends: libb2-1 (>= 0.98.1), libc6 (>= 2.34) Suggests: ahcpd Filename: armhf/babeld_1.13.1+nxd1-2_armhf.deb Size: 82312 MD5sum: 2171ae49fbee12c9e4e5655aa01e17b6 SHA1: 8592fd1ca3115f588250b4b46231398bee116de1 SHA256: 4f9a176fb7e382fe4d4a2c930b5152b6960c97d5330f6aa858fc92926a7e926e 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: 232 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: 97560 MD5sum: ec92d786520d9ba30f85d77c2f22b072 SHA1: 365219f1bbbc8a43a6b556c8e658bb4d80adb08a SHA256: 6dc360f74b6f7c0cdc5ff0a5ee6f8abf0589b238344582ce9b211813eb711f1a 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: 317 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: 99568 MD5sum: 6b6edebce14b9dd3e48a20d0f91df94c SHA1: 87d57dbd0b8653744c91054f74962cece5f33b46 SHA256: 6d02c9f3d03669ba715f4ef29ff6f828b13c7b85a8e3c23a45f446388c73cb88 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: 237 Depends: babeld (= 1:1.13.1+nxd1-2) Filename: arm64/babeld-dbgsym_1.13.1+nxd1-2_arm64.deb Size: 213372 MD5sum: a42a4b14875ee3aa52090ac7c7253fc8 SHA1: df3fb045e9dd2ae20627d349121f0e06c55d5502 SHA256: ed5cf3d4a6a0270ba3be82ec37314c01251c9bc98402f255dcab521b7474a4e6 Section: debug Priority: optional Description: debug symbols for babeld Build-Ids: 0a2280b46a985a0d53bce8518988fb1b76a1ab6a Package: babeld-dbgsym Source: babeld Version: 1:1.13.1+nxd1-2 Auto-Built-Package: debug-symbols Architecture: amd64 Maintainer: Julien Muchembled Installed-Size: 236 Depends: babeld (= 1:1.13.1+nxd1-2) Filename: amd64/babeld-dbgsym_1.13.1+nxd1-2_amd64.deb Size: 215352 MD5sum: 77224ecd1d143985a6fac70477391624 SHA1: fcc30329ef79d3284a69b792db2bb04b4a1a0f94 SHA256: 0fffbdc6946706165907e8db4aff412573ca7f7eb287a9a052d80d39762b5ba4 Section: debug Priority: optional Description: debug symbols for babeld Build-Ids: 5b38b05a8510c5bb6ac31470caa65791f9bb8084 Package: babeld-dbgsym Source: babeld Version: 1:1.13.1+nxd1-2 Auto-Built-Package: debug-symbols Architecture: armhf Maintainer: Julien Muchembled Installed-Size: 237 Depends: babeld (= 1:1.13.1+nxd1-2) Filename: armhf/babeld-dbgsym_1.13.1+nxd1-2_armhf.deb Size: 213316 MD5sum: acfd51b7baf5bbcb88dd50840faefc2a SHA1: c5f0abf0833a159835e9c1c976978255a5f193e9 SHA256: 674f6f132d5ad322f047cf75dda4a9e522b5aa05af385deb2464b9968b2a7335 Section: debug Priority: optional Description: debug symbols for babeld Build-Ids: e96eb26a8fa423da8e07e93be75ef23c435d387b Package: babeld-dbgsym Source: babeld Version: 1:1.13.1+nxd1-2 Auto-Built-Package: debug-symbols Architecture: i386 Maintainer: Julien Muchembled Installed-Size: 211 Depends: babeld (= 1:1.13.1+nxd1-2) Filename: i386/babeld-dbgsym_1.13.1+nxd1-2_i386.deb Size: 193704 MD5sum: 900f3ee46ab7f1d68b96336767fd6d55 SHA1: e141114174a9170f8b1381269971d7167f3bc0f7 SHA256: 6fe01cca76cc54449b1c0244e3a1201f2d6abc2d187c71ce4385709970db530d Section: debug Priority: optional Description: debug symbols for babeld Build-Ids: 31a8c84eca084677afe31822aebd6388513c8ae5 Package: babeld-dbgsym Source: babeld Version: 1:1.13.1+nxd1-2 Auto-Built-Package: debug-symbols Architecture: ppc64el Maintainer: Julien Muchembled Installed-Size: 240 Depends: babeld (= 1:1.13.1+nxd1-2) Filename: ppc64el/babeld-dbgsym_1.13.1+nxd1-2_ppc64el.deb Size: 214740 MD5sum: 6d1f346ab355ea98d2295a8090eefaf9 SHA1: 0e3d84fd16efea39791ab88898881a1736ebbfad SHA256: 45659976912e8a445e6c20c6cc40e2c23cb19855c29b113372faab3889aa6d13 Section: debug Priority: optional Description: debug symbols for babeld Build-Ids: 31f1509281deb5bf278a1290c8038256d321c381 Package: fluent-bit Version: 1.9.8-1 Architecture: arm64 Maintainer: Ophélie Gagnard Installed-Size: 5038 Depends: libc6 (>= 2.34), libgcc-s1 (>= 4.2) Filename: arm64/fluent-bit_1.9.8-1_arm64.deb Size: 1638012 MD5sum: 8554d0734c8daeed8802da3f1a7a881a SHA1: 1fe55693dcabd5abae8735cb4f0100fe2b812749 SHA256: b5d678d170389cf356ccda449709b1def3f52cc0c635debf55670e4e13bc6f8b Section: utils Priority: optional Description: Package for fluent-bit. Package: fluent-bit Version: 1.9.8-1 Architecture: amd64 Maintainer: Ophélie Gagnard Installed-Size: 5122 Depends: libc6 (>= 2.34), libgcc-s1 (>= 4.2) Filename: amd64/fluent-bit_1.9.8-1_amd64.deb Size: 1794840 MD5sum: 16ebaa3cd09e9453665b0e6a8f60b74f SHA1: 208f8845fb90a2b971ecc388a821796928ba9a7e SHA256: d6e187d0a27b88f05784faf563692375130bd9152ee19a302cb5315fa0117d5a Section: utils Priority: optional Description: Package for fluent-bit. Package: fluent-bit Version: 1.9.8-1 Architecture: i386 Maintainer: Ophélie Gagnard Installed-Size: 5383 Depends: libc6 (>= 2.34), libgcc-s1 (>= 4.2) Filename: i386/fluent-bit_1.9.8-1_i386.deb Size: 1892828 MD5sum: abb4986d80ee43b35ac1d41751f27f30 SHA1: 00200a598593b785b7a11b0d9d4c7d537a2bb047 SHA256: b01840325cd3ee9d38d86831b26dbbbc430346f687a35d2ab467cdc2eb290d01 Section: utils Priority: optional Description: Package for fluent-bit. Package: mca--static Version: 0.3.1-1 Architecture: arm64 Maintainer: Ophélie Gagnard Installed-Size: 3876 Filename: arm64/mca--static_0.3.1-1_arm64.deb Size: 1402488 MD5sum: d898ee7ec48ef8d773dd9b3390fd8240 SHA1: 8dadb11a6d33663fa6338f2dcf1263d75eee9cc5 SHA256: ec605a5b6e6438dd7a1ffde1397d4c7afc9dea91ee94ca2313c18fea3b5e9e17 Section: utils Priority: optional Description: Package for mca--static. Package: mca--static Version: 0.3.1-1 Architecture: amd64 Maintainer: Ophélie Gagnard Installed-Size: 4358 Filename: amd64/mca--static_0.3.1-1_amd64.deb Size: 1621780 MD5sum: 5fa78f43816b651928f10810fd17a67f SHA1: 458b57bd316763e6c18172d053f01b684f60841f SHA256: c3ce32aaece296f9aa99d3b215134e9b7468df54dcd6449546b52b5442029a73 Section: utils Priority: optional Description: Package for mca--static. Package: mca--static Version: 0.3.1-1 Architecture: i386 Maintainer: Ophélie Gagnard Installed-Size: 4626 Filename: i386/mca--static_0.3.1-1_i386.deb Size: 1697528 MD5sum: 9524d4bd8f09e0e39a0e45eefdc52ca8 SHA1: a26ecc52a19395f87522b4a85fe3c2f84036edcd SHA256: 03d781a5f4334f88798608ba0f4b6412620d004127094c2e74ee419ebc473f3a Section: utils Priority: optional Description: Package for mca--static. Package: mca--static Version: 0.3.1-1 Architecture: ppc64el Maintainer: Ophélie Gagnard Installed-Size: 5732 Filename: ppc64el/mca--static_0.3.1-1_ppc64el.deb Size: 1690072 MD5sum: 3beeb0512c94a0963dadc6c90c2ed3c8 SHA1: 7199c69f8649b81a2b2af4f1e0134f108ac8d346 SHA256: b1d41c3d9478800eac4c09b0d72a68d11817f765fb7dc5362ee3a0083651e11a Section: utils Priority: optional Description: Package for mca--static. Package: mca--static-dbgsym Source: mca--static Version: 0.3.1-1 Auto-Built-Package: debug-symbols Architecture: arm64 Maintainer: Ophélie Gagnard Installed-Size: 4370 Depends: mca--static (= 0.3.1-1) Filename: arm64/mca--static-dbgsym_0.3.1-1_arm64.deb Size: 3567768 MD5sum: d668bfb599adb4a51c4d1d9a0755a00c SHA1: e6c067f6b471a4f64dc93b173ab2da962afbe28b SHA256: 9353cefd9a70686a177fb9afac3651bc75f866f38967acb07918fe6af18b5954 Section: debug Priority: optional Description: debug symbols for mca--static Build-Ids: c7f374c87f38fa875042808149a7a6482bc08f90 Package: mca--static-dbgsym Source: mca--static Version: 0.3.1-1 Auto-Built-Package: debug-symbols Architecture: amd64 Maintainer: Ophélie Gagnard Installed-Size: 4332 Depends: mca--static (= 0.3.1-1) Filename: amd64/mca--static-dbgsym_0.3.1-1_amd64.deb Size: 3702212 MD5sum: 757996a23008e2b7617493ff839672c8 SHA1: 7aa98580b3f367bce38e0020b3f716fe602c6ea0 SHA256: 01bbfaa925113d9c00ce1cc67d0399af232c20108ff37cc71c1c1087bc0ff7c1 Section: debug Priority: optional Description: debug symbols for mca--static Build-Ids: 8b578f00b9e42b5cb4cf2878d3c9efd06eb1ac22 Package: mca--static-dbgsym Source: mca--static Version: 0.3.1-1 Auto-Built-Package: debug-symbols Architecture: i386 Maintainer: Ophélie Gagnard Installed-Size: 3738 Depends: mca--static (= 0.3.1-1) Filename: i386/mca--static-dbgsym_0.3.1-1_i386.deb Size: 3203896 MD5sum: ac024aefc7b091dc31bfea97198bf20a SHA1: 65cc373579953bc816e2534200cd5afe55b36959 SHA256: a1ec5e920a57f719c63ae2bdbce82916ead7cf282f818f8f312ce2f670e8f21c Section: debug Priority: optional Description: debug symbols for mca--static Build-Ids: f4730e79c6d3d38c065fb8b5823fb2ebae30f7f2 Package: mca--static-dbgsym Source: mca--static Version: 0.3.1-1 Auto-Built-Package: debug-symbols Architecture: ppc64el Maintainer: Ophélie Gagnard Installed-Size: 4348 Depends: mca--static (= 0.3.1-1) Filename: ppc64el/mca--static-dbgsym_0.3.1-1_ppc64el.deb Size: 3653312 MD5sum: 2297d3c1bf95f6ba478a16e9d15c3d7b SHA1: 1af5ca51bee396b813b4cde8fa78d55f365c3df5 SHA256: 115749d2d592c819073b7362135c6dd36009ae6f4fe82b18ebb7a6a49ef99f45 Section: debug Priority: optional Description: debug symbols for mca--static Build-Ids: 9ab196aae4b7ea27c505e96d8c5760500d53864f Package: openvpn-re6stnet Version: 2.4.12-1 Architecture: arm64 Maintainer: Julien Muchembled Installed-Size: 907 Depends: libc6 (>= 2.34), liblz4-1 (>= 0.0~r130), liblzo2-2 (>= 2.02), libssl3 (>= 3.0.0), iproute2 Filename: arm64/openvpn-re6stnet_2.4.12-1_arm64.deb Size: 370016 MD5sum: fd02b84cd60d7f9e9df44e089c01bd07 SHA1: 56da0050d713ce5c67b4ab37d8633ff43e1e3572 SHA256: c5bd0247fb7ad3249222cda162050c829840c88407c0f70ef481df84b7ae6a3b 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: 859 Depends: libc6 (>= 2.34), liblz4-1 (>= 0.0~r130), liblzo2-2 (>= 2.02), libssl3 (>= 3.0.0), iproute2 Filename: amd64/openvpn-re6stnet_2.4.12-1_amd64.deb Size: 397796 MD5sum: ab7b654b468e068ff0ac10a8b9a959e0 SHA1: 976ad11428ab82255622e7ee54ba4bd12f009b3d SHA256: ad4c8f81e9a28e968c93bb26a869cd11646d6d602b968c75a2d24ba223a42331 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: armhf Maintainer: Julien Muchembled Installed-Size: 642 Depends: libc6 (>= 2.34), liblz4-1 (>= 0.0~r130), liblzo2-2 (>= 2.02), libssl3 (>= 3.0.0), iproute2 Filename: armhf/openvpn-re6stnet_2.4.12-1_armhf.deb Size: 356380 MD5sum: d26bf7f6339af821da81a84016fa3676 SHA1: 8a2fcdfcd64e1b0cd1ee4d5dcad1f7107e519a95 SHA256: ffe41043bedfbb73e6e377bc989ccaaaef85dd3fac6ad563f3b66cb9317013a8 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 (>= 2.34), liblz4-1 (>= 0.0~r130), liblzo2-2 (>= 2.02), libssl3 (>= 3.0.0), iproute2 Filename: i386/openvpn-re6stnet_2.4.12-1_i386.deb Size: 426692 MD5sum: 03398e5a7f9aa869b92b4456666ee761 SHA1: a4e3d7c81270a9c88b4bf9a7697301e38ee62c04 SHA256: 62f959e72b7decf932efcb6f4f3d6135c9629215f72c87ae4f63c0ebd15fa1ea 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 (>= 2.34), liblz4-1 (>= 0.0~r130), liblzo2-2 (>= 2.02), libssl3 (>= 3.0.0), iproute2 Filename: ppc64el/openvpn-re6stnet_2.4.12-1_ppc64el.deb Size: 421152 MD5sum: 2e094048b34019bcbdbe11d67d545d47 SHA1: 55e2361ce47c4ac6cb9927bca98e9b67719a2290 SHA256: 72a830af6950d2c20da9877af776faac8c56421d519495f2587bfa4398a0203f 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: 1006 Depends: openvpn-re6stnet (= 2.4.12-1) Filename: arm64/openvpn-re6stnet-dbgsym_2.4.12-1_arm64.deb Size: 953828 MD5sum: bbab87d4b5426ea76f12d60c20c3494b SHA1: 782592ad43653725ff15780a3fd0373a1100117d SHA256: 2bf30881d46573d5715f08943b99d5280d662463d992c5955bd0a385c04d111c Section: debug Priority: optional Description: debug symbols for openvpn-re6stnet Build-Ids: a73b5f52a6a5e8b2c51beffd7d9bd58c7ba52d25 Package: openvpn-re6stnet-dbgsym Source: openvpn-re6stnet Version: 2.4.12-1 Auto-Built-Package: debug-symbols Architecture: amd64 Maintainer: Julien Muchembled Installed-Size: 1012 Depends: openvpn-re6stnet (= 2.4.12-1) Filename: amd64/openvpn-re6stnet-dbgsym_2.4.12-1_amd64.deb Size: 965856 MD5sum: 4e07efdac4331c1b588773d61a0236d5 SHA1: aa31be073e6f94a7960c1f6173b00a4d7e70ace4 SHA256: 2c6ae95f3bea9688faf9728cb9c9eaa8dd58ee6596710abf3cef90ee6bad8348 Section: debug Priority: optional Description: debug symbols for openvpn-re6stnet Build-Ids: 172ab089c2bc5c3ce5d694db2c6401b70cc772c7 Package: openvpn-re6stnet-dbgsym Source: openvpn-re6stnet Version: 2.4.12-1 Auto-Built-Package: debug-symbols Architecture: armhf Maintainer: Julien Muchembled Installed-Size: 1002 Depends: openvpn-re6stnet (= 2.4.12-1) Filename: armhf/openvpn-re6stnet-dbgsym_2.4.12-1_armhf.deb Size: 942920 MD5sum: 26827b0a176060227ecd1bcdd67ee76f SHA1: d52cf141576700e053ff5a1ad8423d60ab72e928 SHA256: a7c58d614a35a73b6a7f953511b5b22e6b2d22d97115fd2787ada494c1255faa Section: debug Priority: optional Description: debug symbols for openvpn-re6stnet Build-Ids: e50b771a0cc05c5a9d8af964b2e9ca9e80d64be4 Package: openvpn-re6stnet-dbgsym Source: openvpn-re6stnet Version: 2.4.12-1 Auto-Built-Package: debug-symbols Architecture: i386 Maintainer: Julien Muchembled Installed-Size: 895 Depends: openvpn-re6stnet (= 2.4.12-1) Filename: i386/openvpn-re6stnet-dbgsym_2.4.12-1_i386.deb Size: 860052 MD5sum: 3841f781ae807fef2f1616aa2ffe49a8 SHA1: af0c92ee6dd29c4081914f30a0109da81cde644b SHA256: 6fdec7f0c177cff6de8bef376c808fee265379bec657f9c023d72e6fde13a1a8 Section: debug Priority: optional Description: debug symbols for openvpn-re6stnet Build-Ids: 312e3db235109344cee5102b875d393fd20100e8 Package: openvpn-re6stnet-dbgsym Source: openvpn-re6stnet Version: 2.4.12-1 Auto-Built-Package: debug-symbols Architecture: ppc64el Maintainer: Julien Muchembled Installed-Size: 1069 Depends: openvpn-re6stnet (= 2.4.12-1) Filename: ppc64el/openvpn-re6stnet-dbgsym_2.4.12-1_ppc64el.deb Size: 1001568 MD5sum: 69c15b27ca2adad7215da4e3531440cf SHA1: 3bcffdb7b6dd396024c680f0c4f1ffe2672bfc30 SHA256: 56273ba7928ce278c2d93d06bec287da12448cec0bbaf846468e1709267142b6 Section: debug Priority: optional Description: debug symbols for openvpn-re6stnet Build-Ids: dec3f3041d3c6f8807be6ad16cc393ed8e865110 Package: re6st-node Source: re6stnet Version: 0.672+g05c9a70-1 Architecture: all Maintainer: Julien Muchembled Installed-Size: 4451 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: 1244476 MD5sum: 41ecfc12949d1669134c0084ba1c2db9 SHA1: 4c8d1a03b4d30ce4a34ec962347b0c6116cc0236 SHA256: b9889f2d39aa3c89c300cd224d742703fe7998e0cb8eddde8ae0df4d0c5b00d3 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: 307813 Depends: libc6 (>= 2.36), libcrypt1 (>= 1:4.1.0), libgcc-s1 (>= 3.0), libstdc++6 (>= 11), 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: 52560620 MD5sum: 4f4c1984a1b0d9319bac15daaf41ad5b SHA1: 22f56f781bfd5c1114cfe8623dc36568441083a7 SHA256: c82bbc262ea6537260e08c5dbd07dfbdf314c87584605332ea15cc3ab7182c3e 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: 293330 Depends: libc6 (>= 2.36), libcrypt1 (>= 1:4.1.0), libgcc-s1 (>= 3.0), libstdc++6 (>= 11), 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: 53122552 MD5sum: 13b92519c478dc8cf8bffbb4bba1ee9e SHA1: 13b882229873d343698fee33b216d1357762b389 SHA256: 48ed3eab328f3bd9e5b394e9b9407be39eee3759bb78c4be3d6d5f955a507d87 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: armhf Maintainer: Thomas Gambier Installed-Size: 261096 Depends: libc6 (>= 2.36), libcrypt1 (>= 1:4.1.0), libgcc-s1 (>= 3.5), libstdc++6 (>= 11), awk, libc6-dev | libc-dev, gcc | c-compiler, g++ | c++-compiler, make, patch, iproute2, procps, lm-sensors, util-linux Conflicts: firewalld Filename: armhf/slapos-node_1.24.1+1.0.508+1-1_armhf.deb Size: 49639776 MD5sum: 356e0aeeff97261eeac0c231adf172da SHA1: 175300e8657e2667a87f18fd8bd67b2ccd890c8a SHA256: ea2a73c0e80e70e3969f53addd0db6b47ef8fe0ececd6a0280478d4ecd39dd48 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: 286438 Depends: libc6 (>= 2.36), libcrypt1 (>= 1:4.1.0), libgcc-s1 (>= 7), libstdc++6 (>= 11), 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: 53578076 MD5sum: aa2fc8edb52dfd93f6f0222b1703f802 SHA1: 386c8cc4ca20530f4870bd13a17d609d037b8888 SHA256: 8eee9486c0823ece681485fe3ff11ab054a54ae11e7fc148c8a979f65c27fe64 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: 321580 Depends: libc6 (>= 2.36), libcrypt1 (>= 1:4.1.0), libgcc-s1 (>= 3.0), libstdc++6 (>= 11), 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: 53298056 MD5sum: 05814861fa04ece620b13b3fe68b85b8 SHA1: 83bf50febd5bdd1a73f860a823fd6d4c2eb8443b SHA256: 5c3c7e6a998d137d31a16ef6aa7e94ed5cf655e5aa2fc0ed4ba8f35009184764 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.