For transit routers and egress routers along the path of the LSP, the incoming EXP
bits are matched to determine the traffic class and drop preference (color red, yellow,
or green). This matching is accomplished by means of a policy corresponding to the
signaled EXP-to-PHB mapping that is created and attached when the LSP is
established.
EXP bits are not normally changed on transit routers, but when traffic is sent out of
an LSP on a transit router, the bits can be changed by the policy. Normally, however,
the net effect is that the EXP-bits remain the same through the mapping sequence
of EXP bits to an internal traffic class/color combination back to EXP bits, unless the
traffic class/color combination is also modified by other factors.
Because the policy (which maps the EXP bits to an internal traffic class/color
combination and vice versa) attached to an LSP is created according to the
PHB-ID–to–EXP mapping signaled by RSVP-TE, you must configure on each router
a mapping association between PHB IDs and the internal traffic class/color
combinations.
The JUNOSe software automatically generates and attaches policies when tunnels
are established.
Figure 65 on page 302 shows the mapping associations between PHB IDs, EXP bits,
and traffic class (TC)/color combination in an E-LSP case.
■
Mapping association between PHB ID and EXP bits is configured on ingress
routers using the
tunnel mpls diff-serv phb-id
command.
■
Mapping association between PHB ID and traffic class/color combination is
configured on all routers using the
mpls diff-serv phb-id traffic-class
command.
■
Mapping association between EXP bits and traffic class/color combination is
done automatically by the JUNOSe software at the appropriate routers along the
path.
Figure 65: Associations Between PHB ID, EXP Bits, and Traffic Classes/Colors
Figure 66 on page 303 shows the operations performed at ingress, transit, and egress
systems during signaled mapping sessions.
302
■
Signaled Mapping for RSVP-TE Tunnels
JUNOSe 11.0.x BGP and MPLS Configuration Guide
Содержание JUNOSE
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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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