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  2. List of Asus routers - Wikipedia

    en.wikipedia.org/wiki/List_of_Asus_routers

    Asus encourages and supports this use and advertises several routers as particularly suitable for DD-WRT including especially the RT-N16 gigabit router. See details on compatibility below. The RT-N13U/B, RT-N12, RT-N10+, WL-520GU and WL-520GC are also advertised as DD-WRT compatible though do not ship with this operating system.

  3. NAT traversal - Wikipedia

    en.wikipedia.org/wiki/NAT_traversal

    Many routers provide explicit features, often called IPsec Passthrough. [citation needed] In Windows XP, NAT traversal is enabled by default, but in Windows XP with Service Pack 2 it has been disabled by default for the case when the VPN server is also behind a NAT device, because of a rare and controversial security issue. [6]

  4. Mapping of Address and Port - Wikipedia

    en.wikipedia.org/wiki/Mapping_of_Address_and_Port

    MAP uses the extra bits available in the IPv6 address to contain the extra port range identifier bits of the A+P addressing pair that cannot be encoded directly into the IPv4 address, thus eliminating the need for "port routing" within the carrier network by leveraging the provider's own IPv6 rollout.

  5. NAT64 - Wikipedia

    en.wikipedia.org/wiki/NAT64

    NAT64 is an IPv6 transition mechanism that facilitates communication between IPv6 and IPv4 hosts by using a form of network address translation (NAT). The NAT64 gateway is a translator between IPv4 and IPv6 protocols, [1] for which function it needs at least one IPv4 address and an IPv6 network segment comprising a 32-bit address space.

  6. DHCPv6 - Wikipedia

    en.wikipedia.org/wiki/DHCPv6

    The Dynamic Host Configuration Protocol version 6 (DHCPv6) is a network protocol for configuring Internet Protocol version 6 (IPv6) hosts with IP addresses, IP prefixes, default route, local segment MTU, and other configuration data required to operate in an IPv6 network.

  7. IPv6 transition mechanism - Wikipedia

    en.wikipedia.org/wiki/IPv6_transition_mechanism

    An IPv6 transition mechanism is a technology that facilitates the transitioning of the Internet from the Internet Protocol version 4 (IPv4) infrastructure in use since 1983 to the successor addressing and routing system of Internet Protocol Version 6 (IPv6). As IPv4 and IPv6 networks are not directly interoperable, transition technologies are ...

  8. IPv6 packet - Wikipedia

    en.wikipedia.org/wiki/IPv6_packet

    The payload of an IPv6 packet is typically a datagram or segment of the higher-level transport layer protocol, but may be data for an internet layer (e.g., ICMPv6) or link layer (e.g., OSPF) instead. IPv6 packets are typically transmitted over the link layer (i.e., over Ethernet or Wi-Fi), which encapsulates each packet in a frame.

  9. Teredo tunneling - Wikipedia

    en.wikipedia.org/wiki/Teredo_tunneling

    Officially, this mechanism was created for Microsoft Windows XP and onwards PCs to provide IPv6 connectivity to IPv4 clients by connecting to ipv6.microsoft.com and works in conjunction with IP Helper service and Teredo Tunneling Adapter Interface driver. The service also opens a UPNP port on the router for relaying.