808
Configuring L2 Multicast Features
• PIMv2 hello packets with destination IP address as FF02::D
Dynamically learned multicast routers are timed out after an adminstrator-
configurable period of time.
MLD is a protocol used by IPv6 multicast routers to discover the presence of
multicast listeners (nodes wishing to receive IPv6 multicast packets) on its
directly-attached links and to discover which multicast packets are of interest
to neighboring nodes. MLD is derived from IGMP; MLD version 1 (MLDv1)
is equivalent to IGMPv2, and MLD version 2 (MLDv2) is equivalent to
IGMPv3. MLD is a subprotocol of Internet Control Message Protocol version
6 (ICMPv6), and MLD messages are a subset of ICMPv6 messages.
The switch snoops both MLDv1 and MLDv2 protocol packets and forwards
IPv6 multicast data based on destination IPv6 multicast MAC addresses
(33:33::). The switch floods multicast control plane traffic addressed to the
permanently assigned (well-known) multicast address FF0x::/8 to all ports in
the VLAN, except for MLD packets, which are handled according the MLD
snooping rules.
What Is Multicast VLAN Registration?
IGMP snooping helps limit multicast traffic when member ports are in the
same VLAN; however, when ports belong to different VLANs, a copy of the
multicast stream is sent to each VLAN that has member ports in the
multicast group. MVR eliminates the need to duplicate the multicast traffic
when multicast group member ports belong to different VLANs.
MVR uses a dedicated multicast VLAN to forward multicast traffic over the
L2 network. Only one MVLAN can be configured per switch, and it is used
only for certain multicast traffic, such as traffic from an IPTV application, to
avoid duplication of multicast streams for clients in different VLANs. Clients
can dynamically join or leave the mutlicast VLAN without interfering with
their membership in other VLANs.
MVR, like IGMP snooping, allows a layer 2 switch to listen to IGMP messages
to learn about multicast group membership.
NOTE:
It is strongly recommended that users enable IGMP snooping if MLD
snooping is enabled and vice-versa. This is because both IGMP snooping and
MLD snooping utilize the same forwarding table, and not enabling both may
cause unwanted pruning of protocol packets utilized by other protocols, e.g.
OSPFv2.
Содержание N2000 Series
Страница 50: ...50 Contents ...
Страница 54: ...54 Introduction ...
Страница 134: ...134 Using Dell OpenManage Switch Administrator ...
Страница 168: ...168 Setting Basic Network Information ...
Страница 206: ...206 Managing a Switch Stack ...
Страница 242: ...242 Configuring Authentication Authorization and Accounting ...
Страница 318: ...318 Managing General System Settings Figure 12 24 Verify MOTD ...
Страница 322: ...322 Managing General System Settings ...
Страница 344: ...344 Configuring SNMP Figure 13 18 Trap Logs Click Clear to delete all entries from the trap log ...
Страница 358: ...358 Configuring SNMP ...
Страница 388: ...388 Managing Images and Files ...
Страница 415: ...Monitoring Switch Traffic 415 Figure 16 2 sFlow Agent Summary ...
Страница 451: ...Monitoring Switch Traffic 451 5 On the Capture Options dialog click Manage Interfaces ...
Страница 458: ...458 Monitoring Switch Traffic ...
Страница 488: ...488 Configuring Port Characteristics Figure 18 3 Copy Port Settings 8 Click Apply ...
Страница 502: ...502 Configuring Port Characteristics ...
Страница 541: ...Configuring Port and System Security 541 Figure 19 12 Configure Port Security Settings 5 Click Apply ...
Страница 567: ...Configuring Port and System Security 567 Figure 19 38 Captive Portal Client Status ...
Страница 666: ...666 Configuring VLANs Figure 21 6 Add Ports to VLAN 4 Click Apply 5 Verify that the ports have been added to the VLAN ...
Страница 674: ...674 Configuring VLANs Figure 21 17 GVRP Port Parameters Table ...
Страница 680: ...680 Configuring VLANs Figure 21 24 Double VLAN Port Parameter Table ...
Страница 714: ...714 Configuring VLANs ...
Страница 737: ...Configuring the Spanning Tree Protocol 737 Figure 22 9 Spanning Tree Global Settings ...
Страница 760: ...760 Configuring the Spanning Tree Protocol ...
Страница 786: ...786 Discovering Network Devices ...
Страница 793: ...Configuring Port Based Traffic Control 793 Figure 24 3 Storm Control 5 Click Apply ...
Страница 878: ...878 Configuring Connectivity Fault Management ...
Страница 899: ...Snooping and Inspecting Traffic 899 Figure 27 17 DAI Interface Configuration Summary ...
Страница 903: ...Snooping and Inspecting Traffic 903 Figure 27 24 Dynamic ARP Inspection Statistics ...
Страница 924: ...924 Configuring Link Aggregation Figure 28 7 LAG Hash Summary ...
Страница 982: ...982 Configuring Link Aggregation ...
Страница 1062: ...1062 Configuring DHCP Server and Relay Settings ...
Страница 1096: ...1096 Configuring L2 and L3 Relay Features Figure 34 3 DHCP Relay Interface Summary ...
Страница 1200: ...1200 Configuring OSPF and OSPFv3 ...
Страница 1216: ...1216 Configuring RIP ...
Страница 1240: ...1240 Configuring VRRP ...
Страница 1284: ...1284 Configuring DHCPv6 Server and Relay Settings Relay Interface Number Vl100 Relay Remote ID Option Flags ...
Страница 1291: ...Configuring Differentiated Services 1291 Figure 40 5 DiffServ Class Criteria ...
Страница 1336: ...1336 Configuring Auto VoIP ...
Страница 1367: ...Managing IPv4 and IPv6 Multicast 1367 Figure 43 20 IGMP Cache Information ...
Страница 1422: ...1422 Managing IPv4 and IPv6 Multicast ...
Страница 1440: ...1440 System Process Definitions ...
Страница 1460: ...Index 1460 ...