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  2. IPv4 shared address space - Wikipedia

    en.wikipedia.org/wiki/IPv4_shared_address_space

    Instead, an address in the 100.64.0.0 / 10 range is assigned on the CPE's Internet-facing interface, and this address is translated again to one of the public IPv4 addresses of the ISP's core routers. Using shared address space allows ISPs to continue to use IPv4 as they were used to.

  3. Reserved IP addresses - Wikipedia

    en.wikipedia.org/wiki/Reserved_IP_addresses

    Shared address space [4] for communications between a service provider and its subscribers when using a carrier-grade NAT: ... IPv4-translated addresses 64:ff9b::/96

  4. IPv4 - Wikipedia

    en.wikipedia.org/wiki/IPv4

    Decomposition of the quad-dotted IPv4 address representation to its binary value. IPv4 uses 32-bit addresses which limits the address space to 4 294 967 296 (2 32) addresses. IPv4 reserves special address blocks for private networks (2 24 + 2 20 + 2 16 ≈ 18 million addresses) and multicast addresses (2 28 ≈ 268 million addresses).

  5. Private network - Wikipedia

    en.wikipedia.org/wiki/Private_network

    RFC 3879 – Deprecating Site Local Addresses; RFC 3927 – Dynamic Configuration of IPv4 Link-Local Addresses; RFC 4193 – Unique Local IPv6 Unicast Addresses; RFC 5735 – Special-Use IPv4 Addresses (superseded) RFC 6598 – Reserved IPv4 Prefix for Shared Address Space; RFC 6890 – Special-Purpose IP Address Registries

  6. Carrier-grade NAT - Wikipedia

    en.wikipedia.org/wiki/Carrier-grade_NAT

    Carrier-grade NAT. Carrier-grade NAT (CGN or CGNAT), also known as large-scale NAT (LSN), is a type of network address translation (NAT) used by ISPs in IPv4 network design. With CGNAT, end sites, in particular residential networks, are configured with private network addresses that are translated to public IPv4 addresses by middlebox network address translator devices embedded in the network ...

  7. List of assigned /8 IPv4 address blocks - Wikipedia

    en.wikipedia.org/.../8_IPv4_address_blocks

    This means that 256 /8 address blocks fit into the entire IPv4 space. As IPv4 address exhaustion has advanced to its final stages, some organizations, such as Stanford University, formerly using 36.0.0.0 / 8, have returned their allocated blocks (in this case to APNIC) to assist in the delay of the exhaustion date.

  8. IP address - Wikipedia

    en.wikipedia.org/wiki/IP_address

    An IPv4 address has a size of 32 bits, which limits the address space to 4 294 967 296 (2 32) addresses. Of this number, some addresses are reserved for special purposes such as private networks (≈18 million addresses) and multicast addressing (≈270 million addresses).

  9. Link-local address - Wikipedia

    en.wikipedia.org/wiki/Link-local_address

    The Internet Engineering Task Force (IETF) has reserved the IPv4 address block 169.254.0.0 / 16 (169.254.0.0 – 169.254.255.255) for link-local addressing. [1] The entire range may be used for this purpose, except for the first 256 and last 256 addresses (169.254.0.0 / 24 and 169.254.255.0 / 24), which are reserved for future use and must not be selected by a host using this dynamic ...