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The IPv6 protocol stack also includes duplicate address detection to avoid conflicts with other hosts. In IPv4, the method is called link-local address autoconfiguration. [1] However, Microsoft refers to this as Automatic Private IP Addressing (APIPA) [3] or Internet Protocol Automatic Configuration (IPAC).
Telemach is testing IPv6 implementation for business users on FTTH, DOCSIS, and VDSL/ADSL as of 2014. No support for personal customers is available as of 2024. Support on mobile networks has been enabled since 2010 through Tušmobil (now acquired by Telemach). T-2 assigns /56 IPv6 address space for FTTH and VDSL/ADSL. Support for IPv6 is ...
Hardcoded to send DNS requests to 8.8.8.8, or the DHCPv4 designated DNS server as a fallback if 8.8.8.8 is unreachable. Only requests A records, not AAAA, meaning it is completely dependent on IPv4. LG webOS and other LG webOS applications run fine without IPv4 access, so it is not the fault of the operating system. [3] Thermomix: Thermomix OS ...
Windows XP users can use Dibbler, an open source DHCPv6 implementation. --update: Windows XP fully supports IPv6- but NOT IPv6 DNS queries (nslookup) [30] 6.x (Vista, 7, 8, 8.1), 10 RTM-Anniversary Update: Yes [31] Yes Yes [9] No rdnssd-win32 provides an open source implementation of ND RDNSS [32] 10 Creators Update and later Yes [31] Yes Yes ...
IPsec was a mandatory part of all IPv6 protocol implementations, [2] and Internet Key Exchange (IKE) was recommended, but with RFC 6434 the inclusion of IPsec in IPv6 implementations was downgraded to a recommendation because it was considered impractical to require full IPsec implementation for all types of devices that may use IPv6.
Thus, IPv6-aware hosts behind NATs can serve as Teredo tunnel endpoints even when they don't have a dedicated public IPv4 address. In effect, a host that implements Teredo can gain IPv6 connectivity with no cooperation from the local network environment. In the long term, all IPv6 hosts should use native IPv6 connectivity.
To achieve this, hints provided by upper protocols such as Transmission Control Protocol (TCP) are used, or specific SHIM6 packet probes. The second function is used to determine valid locator pairs that could be used when an outage is detected.
The Internet Protocol that finally emerged was assigned version number 6, being the lowest free number greater than 4. The PIP protocol and TUBA protocol used versions 8 and 9, following version 7 for TP/IX. In 2004, an IPv9 protocol was developed in China using 256-bit addresses.