Configuring an Extended IPv6 ACL
15-9
15
•
Destination Prefix-Length
– A decimal value indicating how many contiguous bits
(from the left) of the address comprise the prefix (i.e., the network portion of the
address).
•
Next Header
– Identifies the type of header immediately following the IPv6 header.
(Range: 0-255)
Optional internet-layer information is encoded in separate headers that may be
placed between the IPv6 header and the upper-layer header in a packet. There are
a small number of such extension headers, each identified by a distinct Next
Header value. IPv6 supports the values defined for the IPv4 Protocol field in RFC
1700, and includes these commonly used headers:
0 : Hop-by-Hop Options (RFC 2460)
6 : TCP Upper-layer Header (RFC 1700)
17: UDP Upper-layer Header (RFC 1700)
43: Routing (RFC 2460)
44: Fragment (RFC 2460)
51: Authentication (RFC 2402)
50: Encapsulating Security Payload (RFC 2406)
60: Destination Options (RFC 2460)
•
DSCP
– DSCP priority level. (Range: 0-63)
•
Flow Label
– A label for packets belonging to a particular traffic “flow” for which
the sender requests special handling by IPv6 routers, such as non-default quality
of service or “real-time” service (see RFC 2460). (Range: 0-16777215)
A flow label is assigned to a flow by the flow's source node. New flow labels must
be chosen pseudo-randomly and uniformly from the range 1 to FFFFF
hexadecimal. The purpose of the random allocation is to make any set of bits within
the Flow Label field suitable for use as a hash key by routers, for looking up the
state associated with the flow.
A flow identifies a sequence of packets sent from a particular source to a particular
(unicast or multicast) destination for which the source desires special handling by
the intervening routers. The nature of that special handling might be conveyed to
the routers by a control protocol, such as a resource reservation protocol, or by
information within the flow's packets themselves, e.g., in a hop-by-hop option. A
flow is uniquely identified by the combination of a source address and a non-zero
flow label. Packets that do not belong to a flow carry a flow label of zero.
Summary of Contents for Direk Tronik 24/48-Port
Page 2: ......
Page 4: ...ES4524D ES4548D F0 0 0 4 E112006 CS R01 149100030400A...
Page 22: ...xxii Tables...
Page 26: ...xxvi Figures...
Page 28: ...Getting Started...
Page 50: ...Initial Configuration 2 14 2...
Page 52: ...Switch Management Configuring Domain Name Service 29 1 Switch Clustering 30 1...
Page 68: ...Basic System Settings 4 8 4...
Page 118: ...Simple Network Management Protocol 11 18 11...
Page 142: ...Configuring 802 1X Port Authentication 14 8 14...
Page 154: ...Access Control Lists 15 12 15...
Page 232: ...Configuring Protocol Based VLANs 25 4 25...
Page 252: ...Quality of Service 27 8 27...
Page 282: ...Using the Command Line Interface 31 10 31...
Page 290: ...General Commands 33 6 33...
Page 300: ...System Management Commands 34 10 34...
Page 308: ...File Management Commands 35 8 35...
Page 326: ...Event Logging Commands 37 8 37...
Page 336: ...Time Commands 39 6 39...
Page 406: ...Access Control List Commands 44 18 44...
Page 418: ...Interface Commands 45 12 45...
Page 432: ...Broadcast Storm Control Commands 47 2 47...
Page 436: ...Rate Limit Commands 49 2 49...
Page 478: ...VLAN Commands 52 18 52...
Page 508: ...Quality of Service Commands 56 10 56...
Page 518: ...Multicast Filtering Commands 57 10 57...
Page 532: ...IPv4 Interface Commands 59 6 59...
Page 560: ...IPv6 Interface Commands 60 28 60...
Page 566: ...Switch Cluster Commands 61 6 61...
Page 568: ...Appendices...
Page 582: ...Glossary Glossary 8...
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