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 (>= 2.17) Suggests: ahcpd Filename: ppc64el/babeld_1.13.1+nxd1-2_ppc64el.deb Size: 100392 MD5sum: b2f6f64e9ce09bf38b64ff729003f30a SHA1: 3191e2808396bb31b4a9213d932bf90f66299186 SHA256: 6d026b9e052e66ef102bb68fcfb368e46651b3f6373e4d5b8d5ef83049bfaa35 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: arm64 Maintainer: Julien Muchembled Installed-Size: 209 Pre-Depends: init-system-helpers (>= 1.54~) Depends: libb2-1 (>= 0.98.1), libc6 (>= 2.17) Suggests: ahcpd Filename: arm64/babeld_1.13.1+nxd1-2_arm64.deb Size: 87424 MD5sum: fc7f95ad9128a10ebacc7bc34354356a SHA1: 957a4f3bd4ae646aa721188e8a1e7cc467449fb9 SHA256: be3567d89940c54865938a3e0978d4694304daa3ff8a0ce7b868ea52315b7c4b 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 (>= 2.28) Suggests: ahcpd Filename: armhf/babeld_1.13.1+nxd1-2_armhf.deb Size: 83312 MD5sum: 51f73ab51629b923fbdace2520f587d2 SHA1: ea1dfb33a1e63a39859f90ee6615b7382307f610 SHA256: 785e4954ef2cc2268c5b0c6c2e8432ddf1aec2ae551d4a0328c4908099090377 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: 205 Pre-Depends: init-system-helpers (>= 1.54~) Depends: libb2-1 (>= 0.98.1), libc6 (>= 2.17) Suggests: ahcpd Filename: amd64/babeld_1.13.1+nxd1-2_amd64.deb Size: 93800 MD5sum: 2e64a4d3bf2592acca0629712ee2983b SHA1: 4c0a54f69760a21e5e98c0a4d072cd2c44b63696 SHA256: 22ea1821942a5f56934532c46e564eeb63f8c25d49aa4d58df1d8f1e0652cdb7 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 (>= 2.28) Suggests: ahcpd Filename: i386/babeld_1.13.1+nxd1-2_i386.deb Size: 98904 MD5sum: d15615fe9697ba602de49d6b5016c4f1 SHA1: 34d593ef9cdd6bc73bfb90c8e7956479f4627865 SHA256: 6a6321463821c6b57bceb402f553f2ec8e5453a377a050b58a4678bfb31c85ae 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: ppc64el Maintainer: Julien Muchembled Installed-Size: 239 Depends: babeld (= 1:1.13.1+nxd1-2) Filename: ppc64el/babeld-dbgsym_1.13.1+nxd1-2_ppc64el.deb Size: 213264 MD5sum: ce474908d6d6d60bde1a21a1138b59cd SHA1: cdf4f20c4e1cc76c06f681e3453e231d487d6477 SHA256: defd3de230a8bbfefd0262c2f17fc3c9f5d06b3334ad58d8725235f62514779b Section: debug Priority: optional Description: debug symbols for babeld Build-Ids: 8af8d2837d74522b9940be83fa8081cbc2b2f558 Package: babeld-dbgsym Source: babeld Version: 1:1.13.1+nxd1-2 Auto-Built-Package: debug-symbols Architecture: arm64 Maintainer: Julien Muchembled Installed-Size: 235 Depends: babeld (= 1:1.13.1+nxd1-2) Filename: arm64/babeld-dbgsym_1.13.1+nxd1-2_arm64.deb Size: 211488 MD5sum: fc70b1d0db2b15483eab513d38da6740 SHA1: b9a9872bbbbebc4508d1642da2fcb16780ccf4ca SHA256: f195ca723d00b0efa72707904b7c10d80336828f69150ca7cba6343481a410d8 Section: debug Priority: optional Description: debug symbols for babeld Build-Ids: 87bb6b2611f87ddc9f72f96e7fed702b7c61d4b6 Package: babeld-dbgsym Source: babeld Version: 1:1.13.1+nxd1-2 Auto-Built-Package: debug-symbols Architecture: armhf Maintainer: Julien Muchembled Installed-Size: 231 Depends: babeld (= 1:1.13.1+nxd1-2) Filename: armhf/babeld-dbgsym_1.13.1+nxd1-2_armhf.deb Size: 207664 MD5sum: a6f9889aba41e26cebbb9f72a1283359 SHA1: 3e431da680bb80480bec380d3cf98573b02a1df5 SHA256: 61e3439b5ad429b76bbfeef890411ef5a34f1edb8c6e145947994689f71f9afa Section: debug Priority: optional Description: debug symbols for babeld Build-Ids: 5dd635afbc6a5a586b952777569692c79871c000 Package: babeld-dbgsym Source: babeld Version: 1:1.13.1+nxd1-2 Auto-Built-Package: debug-symbols Architecture: amd64 Maintainer: Julien Muchembled Installed-Size: 233 Depends: babeld (= 1:1.13.1+nxd1-2) Filename: amd64/babeld-dbgsym_1.13.1+nxd1-2_amd64.deb Size: 211944 MD5sum: aa12f376a6b3fa62d7703d88e5541d2e SHA1: b5fd1bf95fd8f8afa13044433caadc72beb83866 SHA256: 742bb7cd8ad0a80aa920678eda811cf8fdb95e171e5f0b173c4b0b5f9954e77d Section: debug Priority: optional Description: debug symbols for babeld Build-Ids: dc12028619ad8e655f9c2bf6b277954e160dc97d Package: babeld-dbgsym Source: babeld Version: 1:1.13.1+nxd1-2 Auto-Built-Package: debug-symbols Architecture: i386 Maintainer: Julien Muchembled Installed-Size: 205 Depends: babeld (= 1:1.13.1+nxd1-2) Filename: i386/babeld-dbgsym_1.13.1+nxd1-2_i386.deb Size: 188104 MD5sum: d476c28a7b2263cd35d36e61507e9153 SHA1: ce431cb350e2736fb9a1848f14d1cb11f818adaa SHA256: df98a3ca8de9b9b0ade36b4c40c6e92d44c4f536eabc575e0d084f42aa5a71e9 Section: debug Priority: optional Description: debug symbols for babeld Build-Ids: ba4ed1dd042efdfbc170ef9eaed441f7fa832eb1 Package: fluent-bit Version: 1.9.8-1 Architecture: arm64 Maintainer: Ophélie Gagnard Installed-Size: 5006 Depends: libc6 (>= 2.29), libgcc-s1 (>= 4.2) Filename: arm64/fluent-bit_1.9.8-1_arm64.deb Size: 1629272 MD5sum: 9a35f5a0ad7928efbd0595e66a45d5bf SHA1: 2d626545330df7af15100e31d17e058e47eb26cb SHA256: 69933a2936842e3573ca7e61220232a967e598318e7eac6e9596979ba37c8da5 Section: utils Priority: optional Description: Package for fluent-bit. Package: fluent-bit Version: 1.9.8-1 Architecture: armhf Maintainer: Ophélie Gagnard Installed-Size: 3419 Depends: libc6 (>= 2.29), libgcc-s1 (>= 4.3) Filename: armhf/fluent-bit_1.9.8-1_armhf.deb Size: 1531500 MD5sum: 9dd125f4982e6e5567ff820e13de0c6d SHA1: b375980bb417e4fe65beddecde4f628ff19ce5e7 SHA256: 754db6be313064feb0fc77995f409e6bcfce1c95c3672affc2767983d8157761 Section: utils Priority: optional Description: Package for fluent-bit. Package: fluent-bit Version: 1.9.8-1 Architecture: amd64 Maintainer: Ophélie Gagnard Installed-Size: 5098 Depends: libc6 (>= 2.29), libgcc-s1 (>= 4.2) Filename: amd64/fluent-bit_1.9.8-1_amd64.deb Size: 1776360 MD5sum: 45f975dafff233256f742c1a2173520a SHA1: ad0bed54e6c7503d0b5cb45d6df169e374b1417d SHA256: bef35f09c137d41a3925699d2f45af83406ddd18f5631af60c9c86556a1157c5 Section: utils Priority: optional Description: Package for fluent-bit. Package: fluent-bit Version: 1.9.8-1 Architecture: i386 Maintainer: Ophélie Gagnard Installed-Size: 5367 Depends: libc6 (>= 2.29), libgcc-s1 (>= 4.2) Filename: i386/fluent-bit_1.9.8-1_i386.deb Size: 1880668 MD5sum: 29dc0eb2435db9a072c574f0d6f35306 SHA1: f5fc83aad5d83ae268bf7cab85adbbfd8c07c2ed SHA256: 044e69e8dda2003ecf9f75e1878a8c3fb5f7757bde8be001d5f858109260a9ea Section: utils Priority: optional Description: Package for fluent-bit. Package: mca--static Version: 0.3.1-1 Architecture: ppc64el Maintainer: Ophélie Gagnard Installed-Size: 5221 Filename: ppc64el/mca--static_0.3.1-1_ppc64el.deb Size: 1587196 MD5sum: 07cc0727defc5e7d4da032dff8c9e49a SHA1: 8f5b36a6bbbd6f48ff78821f5ef10ded91348b51 SHA256: 8f605d81277ebdc1e795d77b49f44ed6902c72dc1e6e4ad86c0c77eb54e89cb0 Section: utils Priority: optional Description: Package for mca--static. Package: mca--static Version: 0.3.1-1 Architecture: arm64 Maintainer: Ophélie Gagnard Installed-Size: 3744 Filename: arm64/mca--static_0.3.1-1_arm64.deb Size: 1358604 MD5sum: 3258bd34c072627d4d52172c5a0cceea SHA1: a286641397c707a53cef2985a89af05d1ab727f7 SHA256: 2ac9f0b4f93aaa841a67305e87da5a769103ca8419fa85fdd350f61c58292e71 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: 1573764 MD5sum: 0286be88a1ab9e9b1d68162910eea96b SHA1: 77353c3885d0699008a3ee21e3a6384386eedd9e SHA256: d65f72bd854890dc684beeaba869e268670a6d011071d8185388e1ce4339bfbc Section: utils Priority: optional Description: Package for mca--static. Package: mca--static Version: 0.3.1-1 Architecture: i386 Maintainer: Ophélie Gagnard Installed-Size: 4486 Filename: i386/mca--static_0.3.1-1_i386.deb Size: 1639792 MD5sum: 4a06ec2915aeef38b16e02a86d5055e2 SHA1: 179fb3cd51cfd9426798a41a82caa4d4206177a1 SHA256: c969b4859c2aa626f6327f8ab63c9d250222999b69770cd862efa382374204e3 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: ppc64el Maintainer: Ophélie Gagnard Installed-Size: 4495 Depends: mca--static (= 0.3.1-1) Filename: ppc64el/mca--static-dbgsym_0.3.1-1_ppc64el.deb Size: 3859816 MD5sum: 3d29f0091181dc5bac9973bc0f21830e SHA1: 64274afe1cff5ab4e0166dec26a7e8af05bba68b SHA256: bf6598db0649277e960e3c488d95e97de5d28ecd3bcdde7008e68f74d0c767e2 Section: debug Priority: optional Description: debug symbols for mca--static Build-Ids: cbfc0ccbc6987b697dbeeae67f5d210894ea2c0d Package: mca--static-dbgsym Source: mca--static Version: 0.3.1-1 Auto-Built-Package: debug-symbols Architecture: arm64 Maintainer: Ophélie Gagnard Installed-Size: 4572 Depends: mca--static (= 0.3.1-1) Filename: arm64/mca--static-dbgsym_0.3.1-1_arm64.deb Size: 3785024 MD5sum: e31096fd8eca9ebe58fb4fc9d66ff9b6 SHA1: 2f2c95d6ff6d14edac2ea671afd8477fc10fab11 SHA256: e5d3a6026e9d76047fb2df03fd83a48482fbd0a248d48709a17c3ed3d778641e Section: debug Priority: optional Description: debug symbols for mca--static Build-Ids: 8ac923fb7ed3ff3cf7471a5a07a37ce2d1ef1deb Package: mca--static-dbgsym Source: mca--static Version: 0.3.1-1 Auto-Built-Package: debug-symbols Architecture: amd64 Maintainer: Ophélie Gagnard Installed-Size: 4487 Depends: mca--static (= 0.3.1-1) Filename: amd64/mca--static-dbgsym_0.3.1-1_amd64.deb Size: 3858872 MD5sum: ddef6e1ce5367823f7aa26a50d9f3cbc SHA1: b8b0078dacaa56fdde57e27baa010937126a7202 SHA256: ed90bef67a7796a59fbaac8da4edc17006656aa38a38fa3277e05f8b48f91d53 Section: debug Priority: optional Description: debug symbols for mca--static Build-Ids: 1e91d56540169192ca224831c1674110a6d93261 Package: mca--static-dbgsym Source: mca--static Version: 0.3.1-1 Auto-Built-Package: debug-symbols Architecture: i386 Maintainer: Ophélie Gagnard Installed-Size: 3815 Depends: mca--static (= 0.3.1-1) Filename: i386/mca--static-dbgsym_0.3.1-1_i386.deb Size: 3286352 MD5sum: c285deda90dda96207e6c01df8819559 SHA1: a284ae43d01949ab1e8c4325619664be23d80b4d SHA256: 86e9f7154e413fd7aa1786df0f4e95adaf70fdcafb6048a7c3cc363859d7b46f Section: debug Priority: optional Description: debug symbols for mca--static Build-Ids: ae44e29e4bc619ceccc6cfe016f6cdc99a3cdff2 Package: openvpn-re6stnet Version: 2.4.12-1 Architecture: ppc64el Maintainer: Julien Muchembled Installed-Size: 1163 Depends: libc6 (>= 2.17), liblz4-1 (>= 0.0~r130), liblzo2-2 (>= 2.02), libssl1.1 (>= 1.1.1), iproute2 Filename: ppc64el/openvpn-re6stnet_2.4.12-1_ppc64el.deb Size: 420816 MD5sum: 8893e4aa38c7a20a9409aa589ffaf107 SHA1: fb83d7775c12af3369a45a2daa7ab6d1ba79bb46 SHA256: 92f486f0f5662e735968f2248dc721f9c4589b43fd5b60531736c01bf5d629e5 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: arm64 Maintainer: Julien Muchembled Installed-Size: 855 Depends: libc6 (>= 2.17), liblz4-1 (>= 0.0~r130), liblzo2-2 (>= 2.02), libssl1.1 (>= 1.1.1), iproute2 Filename: arm64/openvpn-re6stnet_2.4.12-1_arm64.deb Size: 369892 MD5sum: a3bcbb66490b0a0b50100089b25365ae SHA1: 616736c4361747aa354c68481e499b8e57c06fbc SHA256: a32f7b223783aa48d477804a4a4ce98f088531514196e7df7eaa42ae2464c586 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 (>= 2.28), liblz4-1 (>= 0.0~r130), liblzo2-2 (>= 2.02), libssl1.1 (>= 1.1.1), iproute2 Filename: armhf/openvpn-re6stnet_2.4.12-1_armhf.deb Size: 357824 MD5sum: 315f9f1ec90a32ddd3e13a2a8fd284cd SHA1: ade37949aa7e4d66ccf95382998d966c50322885 SHA256: c0aedafae5858ca043ee4c4ce9e8e45b73adae5b4828156a44a2d4ebaa76d1a8 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 (>= 2.15), liblz4-1 (>= 0.0~r130), liblzo2-2 (>= 2.02), libssl1.1 (>= 1.1.1), iproute2 Filename: amd64/openvpn-re6stnet_2.4.12-1_amd64.deb Size: 397748 MD5sum: 2a0ca03d2ac26573a067a15e3b79b3e2 SHA1: adf98719da78e8d5a88bf08b0f2a6ca1550a1cc9 SHA256: 986e6c597d06bbbe378078d01ffa318b023874c0f6c6fc23c9321d888f64cc27 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 (>= 2.28), liblz4-1 (>= 0.0~r130), liblzo2-2 (>= 2.02), libssl1.1 (>= 1.1.1), iproute2 Filename: i386/openvpn-re6stnet_2.4.12-1_i386.deb Size: 427188 MD5sum: cbf7b56b96eef3ac437dec210c3be729 SHA1: 0f66c23c9ada13ae16b72c7be69ea8bd53ac44ba SHA256: 03812e436268300a841473443af4ce1797ef0f228a35cb480a1a24f53adf6dc4 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: ppc64el Maintainer: Julien Muchembled Installed-Size: 1087 Depends: openvpn-re6stnet (= 2.4.12-1) Filename: ppc64el/openvpn-re6stnet-dbgsym_2.4.12-1_ppc64el.deb Size: 1019548 MD5sum: 68c5bb9cf5073b01a79de466516c1bc7 SHA1: b483d3ba4e598af9cd0b723f94b5518859c86e4e SHA256: d55b962131c34dff1511a142a847e196b6b33b42b66fe866f537e31fc2df9f63 Section: debug Priority: optional Description: debug symbols for openvpn-re6stnet Build-Ids: 40e018bf1423f079a5d5f75c037872e68d413057 Package: openvpn-re6stnet-dbgsym Source: openvpn-re6stnet Version: 2.4.12-1 Auto-Built-Package: debug-symbols Architecture: arm64 Maintainer: Julien Muchembled Installed-Size: 1038 Depends: openvpn-re6stnet (= 2.4.12-1) Filename: arm64/openvpn-re6stnet-dbgsym_2.4.12-1_arm64.deb Size: 985452 MD5sum: f78397b25b88f9367fc4f712d1a81ef5 SHA1: e38434799e77bc0d272176253c753d121f02348e SHA256: 7bedb92ec265f2e3895ef062ba168cebc8ee234c90cc1fb85d77d8048dc1bbcf Section: debug Priority: optional Description: debug symbols for openvpn-re6stnet Build-Ids: ee794db77d1cac4dcaff3430c14090ee3a98c7ef Package: openvpn-re6stnet-dbgsym Source: openvpn-re6stnet Version: 2.4.12-1 Auto-Built-Package: debug-symbols Architecture: armhf Maintainer: Julien Muchembled Installed-Size: 1018 Depends: openvpn-re6stnet (= 2.4.12-1) Filename: armhf/openvpn-re6stnet-dbgsym_2.4.12-1_armhf.deb Size: 958740 MD5sum: 4492abc6f0093cfba1af2f7a39a7577d SHA1: 75950144a476a561067e09e22f830752efa5dae6 SHA256: 789205047d9aaf4aab85aac0051a2917c0e2b5a38ad58d8e9f2e393366430146 Section: debug Priority: optional Description: debug symbols for openvpn-re6stnet Build-Ids: 0acb0b781f74ce33201929c9bc467b88c47e2537 Package: openvpn-re6stnet-dbgsym Source: openvpn-re6stnet Version: 2.4.12-1 Auto-Built-Package: debug-symbols Architecture: amd64 Maintainer: Julien Muchembled Installed-Size: 1034 Depends: openvpn-re6stnet (= 2.4.12-1) Filename: amd64/openvpn-re6stnet-dbgsym_2.4.12-1_amd64.deb Size: 987172 MD5sum: 3a0aa4f32ecc4ab88fbb8743ea5f19f3 SHA1: 1efd5f415ec8c7e312e6f73b12db668fad25a4bc SHA256: fd74934de817d13f431e6f567fef8a38015854f5df060a39c75eb56f7dc42209 Section: debug Priority: optional Description: debug symbols for openvpn-re6stnet Build-Ids: b5e59671ab9c6dd6a74695e13360ee5b9d6d364c Package: openvpn-re6stnet-dbgsym Source: openvpn-re6stnet Version: 2.4.12-1 Auto-Built-Package: debug-symbols Architecture: i386 Maintainer: Julien Muchembled Installed-Size: 909 Depends: openvpn-re6stnet (= 2.4.12-1) Filename: i386/openvpn-re6stnet-dbgsym_2.4.12-1_i386.deb Size: 874336 MD5sum: 2f96aafc46acb541a4c83f8071d6fc45 SHA1: 9b3abb32bf35e12f3b53fc760304a978e1c0707d SHA256: 757e7d7eb08eee036489bc0696a2c39f6b56024820a35fa1fc3413abc4d2dc5a Section: debug Priority: optional Description: debug symbols for openvpn-re6stnet Build-Ids: 9b2c213926df0d7a2001e71e7468f56cdbb89b3b Package: plugin-fluentbit-to-wendelin Version: 0.3.3-1 Architecture: ppc64el Maintainer: Xiaowu Zhang Installed-Size: 7714 Depends: libc6 (>= 2.17) Filename: ppc64el/plugin-fluentbit-to-wendelin_0.3.3-1_ppc64el.deb Size: 1787512 MD5sum: f3740e04b3b5686add904af77091b785 SHA1: 557b011c56988480e573d20b18b15613d694df19 SHA256: bc251407a7ceedb9b6b163fa208616845939eefa26cab45169217f7b54ac9f76 Section: utils Priority: optional Description: Package for plugin-fluentbit-to-wendelin. Package: plugin-fluentbit-to-wendelin Version: 0.3.3-1 Architecture: arm64 Maintainer: Xiaowu Zhang Installed-Size: 7450 Depends: libc6 (>= 2.17) Filename: arm64/plugin-fluentbit-to-wendelin_0.3.3-1_arm64.deb Size: 1807504 MD5sum: bdeb005b32695ab1b428355fbd9560e6 SHA1: 25621b1c261a5303e52255255d8269739e5751bb SHA256: 53d9061005095cd6ee42b6f207fd8dafe4c7ebbb09ac0e8acd97fd52ce153da6 Section: utils Priority: optional Description: Package for plugin-fluentbit-to-wendelin. Package: plugin-fluentbit-to-wendelin Version: 0.3.3-1 Architecture: armhf Maintainer: Xiaowu Zhang Installed-Size: 6099 Depends: libc6 (>= 2.4) Filename: armhf/plugin-fluentbit-to-wendelin_0.3.3-1_armhf.deb Size: 1772564 MD5sum: c9a818b95b28075726f6ea4f0a8cb9d4 SHA1: fff16e67e476b868292aeb7bca5467600177d87d SHA256: f59fa7fa0e197cc154fee5956a89a08e8e466f2dafac7aa4ff2303fd4415f16d Section: utils Priority: optional Description: Package for plugin-fluentbit-to-wendelin. Package: plugin-fluentbit-to-wendelin Version: 0.3.3-1 Architecture: amd64 Maintainer: Xiaowu Zhang Installed-Size: 8011 Depends: libc6 (>= 2.3.2) Filename: amd64/plugin-fluentbit-to-wendelin_0.3.3-1_amd64.deb Size: 2094020 MD5sum: f9060c4509c3bd559e300122510d4b59 SHA1: 471595c9d1554e9d9fe0bac3329d243b6f808d2f SHA256: 0ae6cd85ea7a6a52e9d12c76c7343af224a7bff8f61b888078cae646643d84e5 Section: utils Priority: optional Description: Package for plugin-fluentbit-to-wendelin. Package: plugin-fluentbit-to-wendelin Version: 0.3.3-1 Architecture: i386 Maintainer: Xiaowu Zhang Installed-Size: 6173 Depends: libc6 (>= 2.3.6-6~) Filename: i386/plugin-fluentbit-to-wendelin_0.3.3-1_i386.deb Size: 2048984 MD5sum: c83bde86bb34c0d9107a99294122eda8 SHA1: 47ba6956cc737dd730fb1319ba4397b683eb91f3 SHA256: d15ae69f162552c7f0bb5e72c079b40a6bb56b139d54bf310a717332fa8bcea2 Section: utils Priority: optional Description: Package for plugin-fluentbit-to-wendelin. Package: re6st-node Source: re6stnet Version: 0.672+g05c9a70-1 Architecture: all Maintainer: Julien Muchembled Installed-Size: 4324 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: 1205208 MD5sum: 0c2f3e6586d8d68797eab26821f485c1 SHA1: fe1cb088f23b49c1d834016403bb2cf509d66965 SHA256: 848bc02a115d84927618c0dff7ffdc8eac288020b4359a36fad94155193814d5 Section: net Priority: optional Description: resilient, scalable, IPv6 network application Package: slapos-node Version: 1.24.1+1.0.508+1-1 Architecture: ppc64el Maintainer: Thomas Gambier Installed-Size: 330696 Depends: libc6 (>= 2.30), libcrypt1 (>= 1:4.1.0), libgcc-s1 (>= 3.0), libstdc++6 (>= 5.2), 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: 53705104 MD5sum: d4e6692e215a4b9405ef4dcae3b24a14 SHA1: 13fceee1d52a07f02dd52eed7e94b547c5afbd33 SHA256: 7563fac2ec62393bdc3b988d438828aa204ce95b10999b37e3defe7d593bab75 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: arm64 Maintainer: Thomas Gambier Installed-Size: 298653 Depends: libc6 (>= 2.30), libcrypt1 (>= 1:4.1.0), libgcc-s1 (>= 3.0), libstdc++6 (>= 5.2), 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: 52414052 MD5sum: eb19b6879342181d5b41ba436a55eb3f SHA1: e81d4dfb97ffe2e79e7732293b38e7fccae5b0e1 SHA256: 25d5c50a1e619137278618632545427bd23f846c048c25ea7f742be039568348 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: 270395 Depends: libc6 (>= 2.30), libcrypt1 (>= 1:4.1.0), libgcc-s1 (>= 3.5), libstdc++6 (>= 5.2), 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: 50427212 MD5sum: cc71daa717543ff7ba07c44e1ac054ea SHA1: c08a51db3b0c83fb54ea22e69181fc8759e8d4a5 SHA256: cdb3e29d5eb6d3ae693f0fab3845927900bbcc3c2acecd09a12f89f00f392c47 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: 302442 Depends: libc6 (>= 2.30), libcrypt1 (>= 1:4.1.0), libgcc-s1 (>= 3.0), libstdc++6 (>= 5.2), 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: 54558444 MD5sum: d6a1eca6060ebc469fa3a95f29dd3095 SHA1: 5c5cd0998d0bd3184bc2fd4d91ac832cc200aacf SHA256: 14c9b892cea530f409a61d1d56e932213700a93eb52ff3ea97c165fa8999f1f9 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: 295739 Depends: libc6 (>= 2.30), libcrypt1 (>= 1:4.1.0), libgcc-s1 (>= 4.2), libstdc++6 (>= 5.2), 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: 54842196 MD5sum: ac4b56ae18bceb54d229293e19488c50 SHA1: b94a67a9b4378def1ec87c5df614134486196507 SHA256: ac3c0478e2804553149fe9ecc603a0db29f36323f3f1bf5b965d565ddd0e3ecf 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.