Network Working Group S. Shah
Request for Comments: 3619 M. Yip
Category: Informational Extreme Networks
October 2003
Extreme Networks' Ethernet Automatic Protection Switching (EAPS) Version 1
1. Introduction
Many Metropolitan Area Networks (MANs) and some Local Area Networks (LANs) have a ring topology, as the fibre runs. The Ethernet Automatic Protection Switching (EAPS) technology described here works well in ring topologies for MANs or LANs.
Shah & Yip Informational [Page 1]
RFC 3619 Extreme Networks' EAPS October 2003 2. Concept of OperationAn EAPS Domain exists on a single Ethernet ring. Any Ethernet Virtual Local Area Network (VLAN) that is to be protected is configured on all ports in the ring for the given EAPS Domain. Each EAPS Domain has a single designated "master node". All other nodes on that ring are referred to as "transit nodes".
2.1. Link Down Alert
When a transit node detects a link-down on any of its ports in the EAPS Domain, that transit node immediately sends a "link down" control frame on the Control VLAN to the master node.
Shah & Yip Informational [Page 2]
RFC 3619 Extreme Networks' EAPS October 2003 2.2. Ring PollingThe master node sends a health-check frame on the Control VLAN at a user-configurable interval. If the ring is complete, the health- check frame will be received on its secondary port, where the master node will reset its fail-period timer and continue normal operation.
2.3. Ring Restoration
The master node continues sending periodic health-check frames out its primary port even when operating in the ring-fault state. Once the ring is restored, the next health-check frame will be received on the master node's secondary port. This will cause the master node to transition back to the normal state, logically block non-control frames on the secondary port, flush its own bridge table, and send a control frame to the transit nodes, instructing them to flush their bridging tables and re-learn the topology.
Shah & Yip Informational [Page 3]
RFC 3619 Extreme Networks' EAPS October 2003 3. Multiple EAPS DomainsAn EAPS-enabled switch can be part of more than one ring. Hence, an EAPS-enabled switch can belong to more than one EAPS Domain at the same time. Each EAPS Domain on a switch requires a separate instance of the EAPS protocol on that same switch, one instance per EAPS- protected ring.
0 1 2 3 4 4
12345678 90123456 78901234 56789012 34567890 12345678
+--------+--------+--------+--------+--------+--------+
| Destination MAC Address (6 bytes) |
+--------+--------+--------+--------+--------+--------+
| Source MAC Address (6 bytes) |
+--------+--------+--------+--------+--------+--------+
| EtherType |PRI | VLAN ID | Frame Length |
+--------+--------+--------+--------+--------+--------+
| DSAP/SSAP | CONTROL| OUI = 0x00E02B |
+--------+--------+--------+--------+--------+--------+
| 0x00bb | 0x99 | 0x0b | EAPS_LENGTH |
+--------+--------+--------+--------+--------+--------+
|EAPS_VER|EAPSTYPE| CTRL_VLAN_ID | 0x0000 |
+--------+--------+--------+--------+--------+--------+
| 0x0000 | SYSTEM_MAC_ADDR (6 bytes) |
+--------+--------+--------+--------+--------+--------+
| | HELLO_TIMER | FAIL_TIMER |
+--------+--------+--------+--------+--------+--------+
| STATE | 0x00 | HELLO_SEQ | 0x0000 |
+--------+--------+--------+--------+--------+--------+
| RESERVED (0x000000000000) |
+--------+--------+--------+--------+--------+--------+
| RESERVED (0x000000000000) |
+--------+--------+--------+--------+--------+--------+
| RESERVED (0x000000000000) |
+--------+--------+--------+--------+--------+--------+
| RESERVED (0x000000000000) |
+--------+--------+--------+--------+--------+--------+
| RESERVED (0x000000000000) |
+--------+--------+--------+--------+--------+--------+
| RESERVED (0x000000000000) |
+--------+--------+--------+--------+--------+--------+
Shah & Yip Informational [Page 4]
RFC 3619 Extreme Networks' EAPS October 2003
Where:
4. Security Considerations
Anyone with physical access to the physical layer connections could forge any sort of Ethernet frame they wished, including but not limited to Bridge frames or EAPS frames. Such forgeries could be used to disrupt an Ethernet network in various ways, including methods that are specific to EAPS or other unrelated methods, such as forged Ethernet bridge frames.
Shah & Yip Informational [Page 5]
RFC 3619 Extreme Networks' EAPS October 2003 5. Intellectual Property Rights NoticeThe IETF has been notified of intellectual property rights claimed in regard to some or all of the specification contained in this document. For more information, consult the online list of claimed rights.
6. Acknowledgement
This document was edited together and put into RFC format by R.J. Atkinson from internal documents created by the authors below. The Editor is solely responsible for any errors made during redaction.
7. Editor's Address
R. Atkinson Extreme Networks 3585 Monroe Street Santa Clara, CA, 95051 USA
8. Authors' Addresses
S. Shah Extreme Networks 3585 Monroe Street Santa Clara, CA, 95051
Shah & Yip Informational [Page 6]
RFC 3619 Extreme Networks' EAPS October 2003 9. Full Copyright StatementCopyright (C) The Internet Society (2003). All Rights Reserved.