Chapter 61: LLDP and LLDP-MED
878
Section X: Network Management
Overview
Link Layer Discovery Protocol (LLDP) and Link Layer Discovery Protocol
for Media Endpoint Devices (LLDP-MED) allow Ethernet network devices
such as switches and routers to receive and/or transmit device-related
information to directly connected devices on the network that are also
using the protocols, and to store the information that is learned about other
devices. The data sent and received by LLDP and LLDP-MED are useful
for many reasons. The switch can discover other devices directly
connected to it. Neighboring devices can use LLDP to advertise some
parts of their Layer 2 configuration to each other, enabling some kinds of
misconfiguration to be more easily detected and corrected.
LLDP is a “one hop” protocol; LLDP information can only be sent to and
received by devices that are directly connected to each other, or
connected via a hub or repeater. Devices that are directly connected to
each other are called neighbors. Advertised information is not forwarded
on to other devices on the network. LLDP is a one-way protocol. That is,
the information transmitted in LLDP advertisements flows in one direction
only, from one device to its neighbors, and the communication ends there.
Transmitted advertisements do not solicit responses, and received
advertisements do not solicit acknowledgements. LLDP cannot solicit any
information from other devices. LLDP operates over physical ports only.
For example, it can be configured on switch ports that belong to static port
trunks or LACP trunks, but not on the trunks themselves, and on switch
ports that belong to VLANs, but not on the VLANs themselves.
Each port can be configured to transmit local information, receive neighbor
information, or both. LLDP transmits information as packets called LLDP
Data Units (LLDPDUs). An LLDPDU consists of a set of Type-Length-
Value elements (TLV), each of which contains a particular type of
information about the device or port transmitting it.
A single LLDPDU contains multiple TLVs. TLVs are short information
elements that communicate complex data, such as variable length strings,
in a standardized format. Each TLV advertises a single type of
information, such as its device ID, type, or management addresses.
The TLVs are grouped as follows
“Mandatory LLDP TLVs” on page 879
“Optional LLDP TLVs” on page 879
“Optional LLDP-MED TLVs” on page 881
Summary of Contents for AT-9000/28
Page 4: ......
Page 26: ...Contents 26...
Page 30: ...Tables 30...
Page 36: ...36 Section I Getting Started...
Page 70: ...Chapter 2 Starting a Management Session 70 Section I Getting Started...
Page 96: ...96 Section II Basic Operations...
Page 142: ...Chapter 6 Basic Switch Management Commands 142 Section II Basic Operations...
Page 220: ...Chapter 9 IPv4 and IPv6 Management Addresses 220 Section II Basic Operations...
Page 244: ...Chapter 10 IPv4 and IPv6 Management Address Commands 244 Section II Basic Operations...
Page 264: ...Chapter 12 SNTP Client Commands 264 Section II Basic Operations...
Page 298: ...Chapter 15 Enhanced Stacking 298 Section II Basic Operations...
Page 312: ...Chapter 16 Enhanced Stacking Commands 312 Section II Basic Operations...
Page 318: ...Chapter 17 Port Mirror 318 Section II Basic Operations...
Page 324: ...Chapter 18 Port Mirror Commands 324 Section II Basic Operations Example awplus show mirror...
Page 350: ...Chapter 21 Multicast Commands 350 Section II Basic Operations...
Page 352: ...352 Section III File System...
Page 360: ...Chapter 22 File System 360 Section III File System...
Page 383: ...AT 9000 Switch Command Line User s Guide Section III File System 383 Example awplus show boot...
Page 386: ...Chapter 25 Boot Configuration File Commands 386 Section III File System...
Page 398: ...Chapter 26 File Transfers 398 Section III File System...
Page 406: ...Chapter 27 File Transfer Commands 406 Section III File System...
Page 408: ...408 Section IV Event Messages...
Page 430: ...Chapter 30 Syslog Client 430 Section IV Event Messages...
Page 438: ...438 Section V Port Trunks...
Page 448: ...Chapter 32 Static Port Trunks 448 Section V Port Trunks...
Page 480: ...480 Section VI Spanning Tree Protocols...
Page 520: ...Chapter 38 STP Commands 520 Section VI Spanning Tree Protocols...
Page 558: ...558 Section VII Virtual LANs...
Page 600: ...Chapter 42 Port based and Tagged VLAN Commands 600 Section VII Virtual LANs...
Page 634: ...Chapter 44 GARP VLAN Registration Protocol Commands 634 Section VII Virtual LANs...
Page 670: ...Chapter 47 Private Port VLANs 670 Section VII Virtual LANs...
Page 692: ...Chapter 50 VLAN Stacking 692 Section VII Virtual LANs...
Page 698: ...Chapter 51 VLAN Stacking Commands 698 Section VII Virtual LANs...
Page 700: ...700 Section VIII Port Security...
Page 748: ...Chapter 54 802 1x Port based Network Access Control 748 Section VIII Port Security...
Page 790: ...Chapter 55 802 1x Port based Network Access Control Commands 790 Section VIII Port Security...
Page 792: ...792 Section IX Simple Network Management Protocols...
Page 804: ...Chapter 56 SNMPv1 and SNMPv2c 804 Section X Simple Network Management Protocols...
Page 852: ...852 Section X Network Management...
Page 976: ...Chapter 63 Address Resolution Protocol ARP 976 Section X Network Management...
Page 1090: ...1090 Section XI Management Security...
Page 1114: ...Chapter 71 Telnet Server 1114 Section XI Management Security...
Page 1122: ...Chapter 73 Telnet Client 1122 Section XI Management Security...
Page 1126: ...Chapter 74 Telnet Client Commands 1126 Section XI Management Security...
Page 1138: ...Chapter 75 Secure Shell SSH Server 1138 Section XI Management Security...
Page 1158: ...Chapter 78 Non secure HTTP Web Browser Server Commands 1158 Section XI Management Security...
Page 1186: ...Chapter 80 Secure HTTPS Web Browser Server Commands 1186 Section XI Management Security...
Page 1202: ...Chapter 81 RADIUS and TACACS Clients 1202 Section XI Management Security...
Page 1230: ...Chapter 82 RADIUS and TACACS Client Commands 1230 Section XI Management Security...