PPPoE
PPPoE (PPP over Ethernet)
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PPPoE RFCs (7)
RFC 8822: 5G Wireless Wireline Convergence User Plane Encapsulation (5WE)
Informational- D. Allan
- D. Eastlake
- D. Woolley
- April 2021
- IETF publication
- General Area
Abstract
As part of providing wireline access to the 5G Core (5GC), deployed wireline networks carry user data between 5G residential gateways and the 5G Access Gateway Function (AGF). The encapsulation method specified in this document supports the multiplexing of traffic for multiple PDU sessions within a VLAN-delineated access circuit, permits legacy equipment in the data path to inspect certain packet fields, carries 5G QoS information associated with the packet data, and provides efficient encoding. It achieves this by specific points of similarity with the Point-to-Point Protocol over Ethernet (PPPoE) data packet encapsulation (RFC 2516).
Abstract
As part of providing wireline access to the 5G Core (5GC), deployed wireline networks carry user data between 5G residential gateways and the 5G Access Gateway Function (AGF). The encapsulation method specified in this document supports the multiplexing of traffic for multiple PDU sessions within a VLAN-delineated access circuit, permits legacy equipment in the data path to inspect certain packet fields, carries 5G QoS information associated with the packet data, and provides efficient encoding. It achieves this by specific points of similarity with the Point-to-Point Protocol over Ethernet (PPPoE) data packet encapsulation (RFC 2516).
RFC 5578: PPP over Ethernet (PPPoE) Extensions for Credit Flow and Link Metrics
Informational- B. Berry
- S. Ratliff
- E. Paradise
- T. Kaiser
- M. Adams
- February 2010
- Independent Stream publication
Abstract
This document extends the Point-to-Point Protocol over Ethernet (PPPoE) with an optional credit-based flow control mechanism and an optional Link Quality Metric report. These optional extensions improve the performance of PPPoE over media with variable bandwidth and limited buffering, such as mobile point-to-point radio links. This document is not an Internet Standards Track specification; it is published for informational purposes.
Abstract
This document extends the Point-to-Point Protocol over Ethernet (PPPoE) with an optional credit-based flow control mechanism and an optional Link Quality Metric report. These optional extensions improve the performance of PPPoE over media with variable bandwidth and limited buffering, such as mobile point-to-point radio links. This document is not an Internet Standards Track specification; it is published for informational purposes.
RFC 4937: IANA Considerations for PPP over Ethernet (PPPoE)
Informational- P. Arberg
- V. Mammoliti
- June 2007
- IETF publication
Abstract
This document describes the IANA considerations for the PPP over Ethernet (PPPoE) protocol. This memo provides information for the Internet community.
Abstract
This document describes the IANA considerations for the PPP over Ethernet (PPPoE) protocol. This memo provides information for the Internet community.
RFC 4938: PPP Over Ethernet (PPPoE) Extensions for Credit Flow and Link Metrics
Informational- B. Berry
- H. Holgate
- June 2007
- Independent Stream publication
Abstract
This document extends the Point-to-Point over Ethernet (PPPoE) Protocol with a credit-based flow control mechanism and Link Quality Metric report. This optional extension should improve the performance of PPPoE over media with variable bandwidth and limited buffering, such as mobile radio links. This memo provides information for the Internet community.
Obsoleted by RFC 5578
Abstract
This document extends the Point-to-Point over Ethernet (PPPoE) Protocol with a credit-based flow control mechanism and Link Quality Metric report. This optional extension should improve the performance of PPPoE over media with variable bandwidth and limited buffering, such as mobile radio links. This memo provides information for the Internet community.
RFC 4638: Accommodating a Maximum Transit Unit/Maximum Receive Unit (MTU/MRU) Greater Than 1492 in the Point-to-Point Protocol over Ethernet (PPPoE)
Informational- P. Arberg
- D. Kourkouzelis
- M. Duckett
- T. Anschutz
- J. Moisand
- September 2006
- IETF publication
- Internet Area
Abstract
The Point-to-Point Protocol over Ethernet (PPPoE), as described in RFC 2516, mandates a maximum negotiated Maximum Receive Unit (MRU) of 1492. This document outlines a solution that relaxes this restriction and allows a maximum negotiated MRU greater than 1492 to minimize fragmentation in next-generation broadband networks. This memo provides information for the Internet community.
Abstract
The Point-to-Point Protocol over Ethernet (PPPoE), as described in RFC 2516, mandates a maximum negotiated Maximum Receive Unit (MRU) of 1492. This document outlines a solution that relaxes this restriction and allows a maximum negotiated MRU greater than 1492 to minimize fragmentation in next-generation broadband networks. This memo provides information for the Internet community.
RFC 3817: Layer 2 Tunneling Protocol (L2TP) Active Discovery Relay for PPP over Ethernet (PPPoE)
Informational- W. Townsley
- R. da Silva
- June 2004
- IETF publication
- Routing Area
Abstract
The Point-to-Point Protocol (PPP) provides a standard method for transporting multi-protocol datagrams over point-to-point links. Layer Two Tunneling Protocol (L2TP), facilitates the tunneling of PPP packets across an intervening packet-switched network. And yet a third protocol, PPP over Ethernet (PPPoE) describes how to build PPP sessions and to encapsulate PPP packets over Ethernet. L2TP Active Discovery Relay for PPPoE describes a method to relay Active Discovery and Service Selection functionality from PPPoE over the reliable control channel within L2TP. Two new L2TP control message types and associated PPPoE-specific Attribute Value Pairs (AVPs) for L2TP are defined. This relay mechanism provides enhanced integration of a specific feature in the PPPoE tunneling protocol with L2TP. This memo provides information for the Internet community.
Abstract
The Point-to-Point Protocol (PPP) provides a standard method for transporting multi-protocol datagrams over point-to-point links. Layer Two Tunneling Protocol (L2TP), facilitates the tunneling of PPP packets across an intervening packet-switched network. And yet a third protocol, PPP over Ethernet (PPPoE) describes how to build PPP sessions and to encapsulate PPP packets over Ethernet. L2TP Active Discovery Relay for PPPoE describes a method to relay Active Discovery and Service Selection functionality from PPPoE over the reliable control channel within L2TP. Two new L2TP control message types and associated PPPoE-specific Attribute Value Pairs (AVPs) for L2TP are defined. This relay mechanism provides enhanced integration of a specific feature in the PPPoE tunneling protocol with L2TP. This memo provides information for the Internet community.
RFC 2516: A Method for Transmitting PPP Over Ethernet (PPPoE)
Informational- L. Mamakos
- K. Lidl
- J. Evarts
- D. Carrel
- D. Simone
- R. Wheeler
- February 1999
- Legacy publication
Abstract
This document describes how to build PPP sessions and encapsulate PPP packets over Ethernet. This memo provides information for the Internet community.
Abstract
This document describes how to build PPP sessions and encapsulate PPP packets over Ethernet. This memo provides information for the Internet community.
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