1999
DOI: 10.17487/rfc2675
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IPv6 Jumbograms

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Cited by 33 publications
(10 citation statements)
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“…[70] Reserved Subnet IPv6 Anycast addresses proposed 1 medium 1 high 3879 [71] Deprecating site-local addresses proposed 1 high 1 high 4193 [72] Unique local IPv6 Unicast addresses proposed 1 low 1 medium 3849 [73] IPv6 address prefix reserved for documentation info 1 high 1 medium 2375 [74] Multicast address assignment info 1 low 1 low 5156 [75] Special-use IPv6 addresses info 1 high 1 high 4007 [76] IPv6 scoped address architecture proposed 1 low 1 medium 6724 [77] Default [80] IPv6 Jumbograms proposed 1 medium 1 low 2711 [81] IPv6 router alert option proposed 1 low 1 low 6398 [82] IP Router Alert Considerations and Usage BCP 0 missing 0 missing 5095 [83] Deprecation of type 0 routing headers in IPv6 proposed 1 medium 0 missing 2474 [84] Definition of the DS-field in IPv4 and IPv6 headers proposed 1 low 1 low 1809 [85] Using the flow label field in IPv6 info 1 low 1 low 6437 [86] IPv6 Flow Label Specification proposed 1 low 1 low 6564 [87] A Uniform Format for IPv6 Extension Headers proposed 0 missing 0 missing 5722 [88] Handling [190] IPv6 Multi-homing support at site with exit routers info 0 missing 0 missing 4218 [191] Threats Relating to IPv6 Multihoming Solutions info 1 low 0 missing 4177 [192] Architectural Approaches to Multihoming for IPv6 info 1 medium 0 missing 5533 [193] SHIM6: Level 3 Multihoming Shim Protocol for IPv6 proposed 1 medium 0 missing 5535 [194] Hash [46] Basic transition mechanisms for IPv6 hosts and routers proposed 1 medium 1 medium 4891 [212] Using IPsec to Secure IPv6-in-IPv4 Tunnels info 1 low 0 missing 2473 [213] Generic packet tunneling in IPv6 specification proposed 1 medium 0 missing 4380 [51] Teredo: tunneling IPv6 over UDP through NATs proposed 1 high 1 low 5991 [214] Teredo Security Update proposed 0 missing 0 missing 6081 [215] Teredo Extensions proposed 0 missing 0 missing 3056 [48] Connection of IPv6 domains via IPv4 clouds proposed 1 medium 1 low 3964 …”
Section: N1mentioning
confidence: 99%
“…[70] Reserved Subnet IPv6 Anycast addresses proposed 1 medium 1 high 3879 [71] Deprecating site-local addresses proposed 1 high 1 high 4193 [72] Unique local IPv6 Unicast addresses proposed 1 low 1 medium 3849 [73] IPv6 address prefix reserved for documentation info 1 high 1 medium 2375 [74] Multicast address assignment info 1 low 1 low 5156 [75] Special-use IPv6 addresses info 1 high 1 high 4007 [76] IPv6 scoped address architecture proposed 1 low 1 medium 6724 [77] Default [80] IPv6 Jumbograms proposed 1 medium 1 low 2711 [81] IPv6 router alert option proposed 1 low 1 low 6398 [82] IP Router Alert Considerations and Usage BCP 0 missing 0 missing 5095 [83] Deprecation of type 0 routing headers in IPv6 proposed 1 medium 0 missing 2474 [84] Definition of the DS-field in IPv4 and IPv6 headers proposed 1 low 1 low 1809 [85] Using the flow label field in IPv6 info 1 low 1 low 6437 [86] IPv6 Flow Label Specification proposed 1 low 1 low 6564 [87] A Uniform Format for IPv6 Extension Headers proposed 0 missing 0 missing 5722 [88] Handling [190] IPv6 Multi-homing support at site with exit routers info 0 missing 0 missing 4218 [191] Threats Relating to IPv6 Multihoming Solutions info 1 low 0 missing 4177 [192] Architectural Approaches to Multihoming for IPv6 info 1 medium 0 missing 5533 [193] SHIM6: Level 3 Multihoming Shim Protocol for IPv6 proposed 1 medium 0 missing 5535 [194] Hash [46] Basic transition mechanisms for IPv6 hosts and routers proposed 1 medium 1 medium 4891 [212] Using IPsec to Secure IPv6-in-IPv4 Tunnels info 1 low 0 missing 2473 [213] Generic packet tunneling in IPv6 specification proposed 1 medium 0 missing 4380 [51] Teredo: tunneling IPv6 over UDP through NATs proposed 1 high 1 low 5991 [214] Teredo Security Update proposed 0 missing 0 missing 6081 [215] Teredo Extensions proposed 0 missing 0 missing 3056 [48] Connection of IPv6 domains via IPv4 clouds proposed 1 medium 1 low 3964 …”
Section: N1mentioning
confidence: 99%
“…IPv6 Anycast addresses allows for Dynamic Home Agent Discovery [5].IPv6 also allows sending packets over the limit specified in IPv4. Such packets are known as "Jumbo grams" [8] [9] [10].…”
Section: Mobility In Ipv6mentioning
confidence: 99%
“…In networks with large Media Transfer Unit (MTU), applying Jumbogram standard which is the unique feature of IPv6 protocol, make it possible to keep a large block of data only in one packet in the network. The maximum size for Jumbogram packets is 1GByte [1] and its details represented in the IPv6 protocol specifications. However this packet size is not practically achievable in most of today's networks as source node, forwarding nodes and network links, are not ready to process and forward the packet with this size.…”
Section: B Source Nodementioning
confidence: 99%
“…This paper focuses on feasibility test of the approach. The simulation scenario is considered to be as simple as possible and IPv4 network has been chosen to reduce the complexity but the goal for final and complete technique is IPv6 network because of several unique feature which are more desired for this technique in IPv6 like Jumbograms [1,2].…”
Section: Introductionmentioning
confidence: 99%