layer 2 processing is required on the remaining layer 2 frames. After PE2 processes
the Ethernet layer 2 frames, they are forwarded to CE2.
Traffic arriving at PE1 from pseudowires is distributed across all the member links
of the LAG. The hashing algorithm, based on the VLAN identifier and source and
destination MAC addresses, is used to determine the physical link to which the packets
must be forwarded.
If you configure the Martini tunnel directly over LAG in the same topology as shown
in Figure 1, packet processing at PE1 remains the same as the case described. The
only difference is in processing the hash algorithm, which uses only the source and
destination MAC addresses, and not the VLAN identifier, to determine the physical
link for transmission of MPLS packets transmitted from the pseudowires.
If IP traffic is being transmitted from CE1, which is not designated for the MPLS
L2VPN tunnel, the packets arrive at an interface that is different from the one used
for MPLS traffic, VLAN2. This behavior occurs because the VLAN interface used for
transmission of IP traffic must be different from that used for MPLS traffic.
The MPLS shim interface can be configured directly over LAG or stacked on a VLAN
interface over LAG. For more information on the guidelines to be followed when you
configure the MPLS shim interface to enable MPLS Martini circuits to use LAG on the
CE-side devices, see “Multiple Layer 2 Services over MPLS” on page 509.
Related Topics
MPLS L2VPN Tunnel over VLAN over LAG Configuration Example on page 541
■
■
MPLS L2VPN Tunnel over LAG Configuration Example on page 545
Ethernet Raw Mode Encapsulation for Martini Layer 2 Transport Overview
An Ethernet pseudowire carries Ethernet/802.3 traffic over an MPLS network. JUNOSe
software enables Ethernet traffic to be transmitted over Martini circuits (cross-connect
virtual circuits) on ES2 4G line modules (LMs), GE-2 LMs, GE/FE LMs, ES2 10G LMs,
ES2 10G Uplink LMs, and ES2 10G ADV LMs. In previous releases, the transfer of
Ethernet packets over MPLS-based pseudowire enabled service providers to provide
point-to-point layer 2 Ethernet connectivity between geographically remote customer
edge (CE) devices. This functionality enabled the following tasks to be performed on
received packets:
■
Removal of all V-LAN tags from layer 2 frames received from CE devices before
transmitting that frame to the pseudowire
■
Replacement of all V-LAN tags in layer 2 frames received from the pseudowire
with the configured VLAN tags on the local interface before sending the frame
to the CE device
■
Insertion of the inner V-LAN tag while sending layer 2 frames received from the
pseudowire to the CE device on a double-tagged interface
However, this mode of processing did not allow for:
■
Identification of a particular VLAN tag in single-tagged or double-tagged packets
as the service-delimiting tag
516
■
Ethernet Raw Mode Encapsulation for Martini Layer 2 Transport Overview
JUNOSe 11.0.x BGP and MPLS Configuration Guide
Содержание JUNOSE
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Страница 24: ...xxiv Table of Contents JUNOSe 11 0 x BGP and MPLS Configuration Guide...
Страница 37: ...Part 1 Border Gateway Protocol Configuring BGP Routing on page 3 Border Gateway Protocol 1...
Страница 38: ...2 Border Gateway Protocol JUNOSe 11 0 x BGP and MPLS Configuration Guide...
Страница 234: ...198 Monitoring BGP JUNOSe 11 0 x BGP and MPLS Configuration Guide...
Страница 236: ...200 Multiprotocol Layer Switching JUNOSe 11 0 x BGP and MPLS Configuration Guide...
Страница 298: ...262 Point to Multipoint LSPs Configuration JUNOSe 11 0 x BGP and MPLS Configuration Guide...
Страница 346: ...310 Example Traffic Class Configuration for Differentiated Services JUNOSe 11 0 x BGP and MPLS Configuration Guide...
Страница 535: ...There is no no version See undebug ip mbgp Monitoring BGP MPLS VPNs 499 Chapter 5 Configuring BGP MPLS Applications...
Страница 536: ...500 Monitoring BGP MPLS VPNs JUNOSe 11 0 x BGP and MPLS Configuration Guide...
Страница 538: ...502 Layer 2 Services Over MPLS JUNOSe 11 0 x BGP and MPLS Configuration Guide...
Страница 592: ...556 Multiple ATM Virtual Circuits over a Single Pseudowire Example JUNOSe 11 0 x BGP and MPLS Configuration Guide...
Страница 604: ...568 Virtual Private LAN Service JUNOSe 11 0 x BGP and MPLS Configuration Guide...
Страница 618: ...582 VPLS References JUNOSe 11 0 x BGP and MPLS Configuration Guide...
Страница 642: ...606 VPLS Configuration Example with LDP Signaling JUNOSe 11 0 x BGP and MPLS Configuration Guide...
Страница 674: ...638 Virtual Private Wire Service JUNOSe 11 0 x BGP and MPLS Configuration Guide...
Страница 718: ...682 Monitoring MPLS Forwarding Table for VPWS JUNOSe 11 0 x BGP and MPLS Configuration Guide...
Страница 719: ...Part 6 Index Index on page 685 Index 683...
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