Cisco 7609-S Software Configuration Guide - Page 365

no mls qos, rewrite ip dscp, no mls qos rewrite ip dscp, mpls l2 transport, route, xconnect

Page 365 highlights

Chapter 24 Configuring PFC3BXL and PFC3B Mode Multiprotocol Label Switching Any Transport over MPLS • If QoS is disabled globally, both the 802.1p and IP precedence bits are preserved. When the QoS is enabled on a Layer 2 port, either 802.1q P bits or IP precedence bits can be preserved with the trusted configuration. However, by default the unpreserved bits are overwritten by the value of preserved bits. For instance, if you preserve the P bits, the IP precedence bits are overwritten with the value of the P bits. PFC3BXL or PFC3B mode provides a new command that allows you to trust the P bits while preserving the IP precedence bits. To preserve the IP precedence bits, use the no mls qos rewrite ip dscp command. Note The no mls qos rewrite ip dscp command is not compatible with the MPLS and MPLS VPN features. See Chapter 41, "Configuring PFC QoS." Note Do not use the no mls qos rewrite ip dscp command if you have PFC-based EoMPLS and PXF-based EoMPLS services in the same system. • EoMPLS is not supported with private VLANs. • The following restrictions apply to using trunks with EoMPLS: - To support Ethernet spanning tree bridge protocol data units (BPDUs) across an EoMPLS cloud, you must disable the supervisor engine spanning tree for the Ethernet-over-MPLS VLAN. This ensures that the EoMPLS VLANs are carried only on the trunk to the customer router. Otherwise, the BPDUs are directed to the supervisor engine and not to the EoMPLS cloud. - The native VLAN of a trunk must not be configured as an EoMPLS VLAN. • In PFC3BXL or PFC3B mode, all protocols (for example, CDP, VTP, BPDUs) are tunneled across the MPLS cloud without conditions. • ISL encapsulation is not supported for the interface that receives EoMPLS packets. • Unique VLANs are required across interfaces. You cannot use the same VLAN ID on different interfaces. • EoMPLS tunnel destination route in the routing table and the CEF table must be a /32 address (host address where the mask is 255.255.255.255) to ensure that there is a label-switched path (LSP) from PE to PE. • For a particular EoMPLS connection, both the ingress EoMPLS interface on the ingress PE and the egress EoMPLS interface on the egress PE have to be subinterfaces with dot1Q encapsulation or neither is a subinterface. • 802.1Q in 802.1Q over EoMPLS is supported if the outgoing interface connecting to MPLS network is a port on an Layer 2 card. • Shaping EoMPLS traffic is not supported if the egress interface connecting to an MPLS network is a Layer 2 LAN port (a mode known as PFC-based EoMPLS). • EoMPLS based on a PFC3BXL or PFC3B does not perform any Layer 2 lookup to determine if the destination MAC address resides on the local or remote segment and does not perform any Layer 2 address learning (as traditional LAN bridging does). This functionality (local switching) is available only when using OSM and FlexWAN modules as uplinks. • In previous releases of AToM, the command used to configure AToM circuits was mpls l2 transport route. This command has been replaced with the xconnect command. You can use the xconnect command to configure EoMPLS circuits. • The AToM control word is not supported. OL-4266-08 Cisco 7600 Series Router Cisco IOS Software Configuration Guide, Release 12.2SX 24-15

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Cisco 7600 Series Router Cisco IOS Software Configuration Guide, Release 12.2SX
OL-4266-08
Chapter 24
Configuring PFC3BXL and PFC3B Mode Multiprotocol Label Switching
Any Transport over MPLS
If QoS is disabled globally, both the 802.1p and IP precedence bits are preserved. When the QoS is
enabled on a Layer 2 port, either 802.1q P bits or IP precedence bits can be preserved with the trusted
configuration. However, by default the unpreserved bits are overwritten by the value of preserved
bits. For instance, if you preserve the P bits, the IP precedence bits are overwritten with the value of
the P bits. PFC3BXL or PFC3B mode provides a new command that allows you to trust the P bits
while preserving the IP precedence bits. To preserve the IP precedence bits, use the
no mls qos
rewrite ip dscp
command.
Note
The
no mls qos rewrite ip dscp
command is not compatible with the MPLS and MPLS VPN
features. See
Chapter 41, “Configuring PFC QoS.”
Note
Do not use the
no mls qos rewrite ip dscp
command if you have PFC-based EoMPLS and
PXF-based EoMPLS services in the same system.
EoMPLS is not supported with private VLANs.
The following restrictions apply to using trunks with EoMPLS:
To support Ethernet spanning tree bridge protocol data units (BPDUs) across an EoMPLS cloud,
you must disable the supervisor engine spanning tree for the Ethernet-over-MPLS VLAN. This
ensures that the EoMPLS VLANs are carried only on the trunk to the customer router.
Otherwise, the BPDUs are directed to the supervisor engine and not to the EoMPLS cloud.
The native VLAN of a trunk must not be configured as an EoMPLS VLAN.
In PFC3BXL or PFC3B mode, all protocols (for example, CDP, VTP, BPDUs) are tunneled across
the MPLS cloud without conditions.
ISL encapsulation is not supported for the interface that receives EoMPLS packets.
Unique VLANs are required across interfaces. You cannot use the same VLAN ID on different
interfaces.
EoMPLS tunnel destination route in the routing table and the CEF table must be a /32 address (host
address where the mask is 255.255.255.255) to ensure that there is a label-switched path (LSP) from
PE to PE.
For a particular EoMPLS connection, both the ingress EoMPLS interface on the ingress PE and the
egress EoMPLS interface on the egress PE have to be subinterfaces with dot1Q encapsulation or
neither is a subinterface.
802.1Q in 802.1Q over EoMPLS is supported if the outgoing interface connecting to MPLS network
is a port on an Layer 2 card.
Shaping EoMPLS traffic is not supported if the egress interface connecting to an MPLS network is
a Layer 2 LAN port (a mode known as PFC-based EoMPLS).
EoMPLS based on a PFC3BXL or PFC3B does not perform any Layer 2 lookup to determine if the
destination MAC address resides on the local or remote segment and does not perform any Layer 2
address learning (as traditional LAN bridging does). This functionality (local switching) is available
only when using OSM and FlexWAN modules as uplinks.
In previous releases of AToM, the command used to configure AToM circuits was
mpls l2 transport
route
.
This command has been replaced with the
xconnect
command. You can use the
xconnect
command to configure EoMPLS circuits.
The AToM control word is not supported.