Cisco WS-SUP32-GE-3B Software Configuration Guide - Page 455

VACL Configuration Overview, VACLs use standard and extended Cisco IOS IP and IPX ACLs

Page 455 highlights

Chapter 32 Configuring VLAN ACLs Configuring VACLs • Verifying VLAN Access Map Configuration, page 32-8 • VLAN Access Map Configuration and Verification Examples, page 32-9 • Configuring a Capture Port, page 32-9 VACL Configuration Overview VACLs use standard and extended Cisco IOS IP and IPX ACLs, and MAC Layer-named ACLs (see the "Configuring MAC ACLs" section on page 38-54) and VLAN access maps. VLAN access maps can be applied to VLANs or to WAN interfaces for VACL capture. VACLs attached to WAN interfaces support only standard and extended Cisco IOS IP ACLs. Each VLAN access map can consist of one or more map sequences, each sequence with a match clause and an action clause. The match clause specifies IP, IPX, or MAC ACLs for traffic filtering and the action clause specifies the action to be taken when a match occurs. When a flow matches a permit ACL entry, the associated action is taken and the flow is not checked against the remaining sequences. When a flow matches a deny ACL entry, it will be checked against the next ACL in the same sequence or the next sequence. If a flow does not match any ACL entry and at least one ACL is configured for that packet type, the packet is denied. To use access control for both bridged and routed traffic, you can use VACLs alone or a combination of VACLs and ACLs. You can define ACLs on the VLAN interfaces to use access control for both the input and output routed traffic. You can define a VACL to use access control for the bridged traffic. The following caveats apply to ACLs when used with VACLs: • Packets that require logging on the outbound ACLs are not logged if they are denied by a VACL. • VACLs are applied on packets before NAT translation. If the translated flow is not subject to access control, the flow might be subject to access control after the translation because of the VACL configuration. The action clause in a VACL can be forward, drop, capture, or redirect. Traffic can also be logged. VACLs applied to WAN interfaces do not support the redirect or log actions. Note • VACLs have an implicit deny at the end of the map; a packet is denied if it does not match any ACL entry, and at least one ACL is configured for the packet type. • If an empty or undefined ACL is specified in a VACL, any packets will match the ACL and the associated action is taken. When VACL capture is configured on an egress interface together with another egress feature that requires software processing of the traffic, packets of the overlapping traffic may be captured twice. OL-11439-03 Catalyst Supervisor Engine 32 PISA Cisco IOS Software Configuration Guide, Release 12.2ZY 32-5

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32-5
Catalyst Supervisor Engine 32 PISA Cisco IOS Software Configuration Guide, Release 12.2ZY
OL-11439-03
Chapter 32
Configuring VLAN ACLs
Configuring VACLs
Verifying VLAN Access Map Configuration, page 32-8
VLAN Access Map Configuration and Verification Examples, page 32-9
Configuring a Capture Port, page 32-9
VACL Configuration Overview
VACLs use standard and extended Cisco IOS IP and IPX ACLs, and MAC Layer-named ACLs (see the
“Configuring MAC ACLs” section on page 38-54
) and VLAN access maps.
VLAN access maps can be applied to VLANs or to WAN interfaces for VACL capture. VACLs attached
to WAN interfaces support only standard and extended Cisco IOS IP ACLs.
Each VLAN access map can consist of one or more map sequences, each sequence with a match clause
and an action clause. The match clause specifies IP, IPX, or MAC ACLs for traffic filtering and the action
clause specifies the action to be taken when a match occurs. When a flow matches a permit ACL entry,
the associated action is taken and the flow is not checked against the remaining sequences. When a flow
matches a deny ACL entry, it will be checked against the next ACL in the same sequence or the next
sequence. If a flow does not match any ACL entry and at least one ACL is configured for that packet
type, the packet is denied.
To use access control for both bridged and routed traffic, you can use VACLs alone or a combination of
VACLs and ACLs. You can define ACLs on the VLAN interfaces to use access control for both the input
and output routed traffic. You can define a VACL to use access control for the bridged traffic.
The following caveats apply to ACLs when used with VACLs:
Packets that require logging on the outbound ACLs are not logged if they are denied by a VACL.
VACLs are applied on packets before NAT translation. If the translated flow is not subject to access
control, the flow might be subject to access control after the translation because of the VACL
configuration.
The action clause in a VACL can be forward, drop, capture, or redirect. Traffic can also be logged.
VACLs applied to WAN interfaces do not support the redirect or log actions.
Note
VACLs have an implicit deny at the end of the map; a packet is denied if it does not match any ACL
entry, and at least one ACL is configured for the packet type.
If an empty or undefined ACL is specified in a VACL, any packets will match the ACL and the
associated action is taken.
When VACL capture is configured on an egress interface together with another egress feature that
requires software processing of the traffic, packets of the overlapping traffic may be captured twice.