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  2. Comparison of DNS server software - Wikipedia

    en.wikipedia.org/wiki/Comparison_of_DNS_server...

    Technitium DNS Server [18] [19] is a free, opensource [20] (GPLv3), [21] cross platform, authoritative, caching and recursive DNS server software. It supports DNS-over-TLS, DNS-over-HTTPS, and DNS-over-QUIC encrypted DNS protocols. [22] It also supports DNSSEC signing and validation for RSA and ECDSA algorithms with both NSEC and NSEC3.

  3. QUIC - Wikipedia

    en.wikipedia.org/wiki/QUIC

    [35] [36] DNS-over-QUIC is an application of QUIC to name resolution, providing security for data transferred between resolvers similar to DNS-over-TLS. [37] The IETF is developing applications of QUIC for secure network tunnelling [36] and streaming media delivery. [38] XMPP has experimentally been adapted to use QUIC. [39]

  4. HTTP/3 - Wikipedia

    en.wikipedia.org/wiki/HTTP/3

    However, partially due to the protocol's adoption of QUIC, HTTP/3 has lower latency and loads more quickly in real-world usage when compared with previous versions: in some cases over four times as fast than with HTTP/1.1 (which, for many websites, is the only HTTP version deployed).

  5. MsQuic - Wikipedia

    en.wikipedia.org/wiki/MsQuic

    MsQuic is a free and open source implementation of the IETF QUIC protocol written in C [1] that is officially supported on the Microsoft Windows (including Server), Linux, and Xbox platforms. The project also provides libraries for macOS and Android , which are unsupported. [ 2 ]

  6. Domain Name System - Wikipedia

    en.wikipedia.org/wiki/Domain_Name_System

    RFC 9250, published in 2022 by the Internet Engineering Task Force, describes DNS over QUIC. It has "privacy properties similar to DNS over TLS (DoT) [...], and latency characteristics similar to classic DNS over UDP". This method is not the same as DNS over HTTP/3. [43]

  7. Unbound (DNS server) - Wikipedia

    en.wikipedia.org/wiki/Unbound_(DNS_server)

    DNS over TLS forwarding and server, with domain-validation [2] DNS over HTTPS [3] [4] DNS over QUIC [5] Query Name Minimization [6] Aggressive Use of DNSSEC-Validated Cache [7] Authority zones, for a local copy of the root zone [8] DNS64; DNSCrypt [9] DNSSEC validating; EDNS Client Subnet

  8. Simple Service Discovery Protocol - Wikipedia

    en.wikipedia.org/wiki/Simple_Service_Discovery...

    In IPv4, the multicast address is 239.255.255.250 [5] and SSDP over IPv6 uses the address set ff0x::c for all scope ranges indicated by x. [6] This results in the following well-known practical multicast addresses for SSDP: 239.255.255.250 (IPv4 site-local address) ff02::c (IPv6 link-local) ff05::c (IPv6 site-local)

  9. Public recursive name server - Wikipedia

    en.wikipedia.org/wiki/Public_recursive_name_server

    A public recursive name server (also called public DNS resolver) is a name server service that networked computers may use to query the Domain Name System (DNS), the decentralized Internet naming system, in place of (or in addition to) name servers operated by the local Internet service provider (ISP) to which the devices are connected. Reasons ...