IP Fragmentation
139
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A statically configured address is never aged and it cannot be learned
dynamically on a different port until it is removed from the port on
which it is configured.
■
The number of static MAC addresses that you can configure depends
on the availability of system resources.
■
If a station whose address is statically configured on one port is moved
to a different port, the system discards all received packets as a
security measure and increments a statistical counter. (From the
bridge display
of the Administration Console, see the
rxSecurityDiscs
field. From the Bridge Display option on the Web
Management interface, see the Received Security Discards column.)
IP Fragmentation
Standard FDDI allows larger maximum packet sizes than standard
Ethernet. FDDI stations that transmit IP packet sizes larger than
approximately 1500 bytes wish cannot communicate with stations on an
Ethernet LAN. If the system receives such packets and they are destined
for one or more Ethernet LANs, it filters them — except when IP
fragmentation is enabled.
When you enable IP fragmentation, the system breaks up large FDDI
packets into smaller packets before bridging them to Ethernet.
IPX SNAP
Translation
IPX SNAP Translation allows an alternative method of translating IPX
packets from Ethernet to FDDI and vice-versa.
■
When IPX SNAP translation is enabled, any 802.3_RAW IPX packets
that are forwarded from Ethernet to FDDI are translated to
FDDI_SNAP. Likewise, SNAP IPX packets that are forwarded from FDDI
to Ethernet are translated to 802.3_RAW packets.
■
When IPX SNAP translation is disabled, the system uses standard IEEE
802.1H bridging to translate 802.3_RAW packets to FDDI_RAW
packets.
Содержание CoreBuilder 3500
Страница 44: ...44 CHAPTER 2 MANAGEMENT ACCESS ...
Страница 58: ...58 CHAPTER 3 SYSTEM PARAMETERS ...
Страница 86: ...86 CHAPTER 5 ETHERNET ...
Страница 112: ...112 CHAPTER 6 FIBER DISTRIBUTED DATA INTERFACE FDDI ...
Страница 208: ...208 CHAPTER 9 VIRTUAL LANS ...
Страница 256: ...256 CHAPTER 10 PACKET FILTERING ...
Страница 330: ...330 CHAPTER 12 VIRTUAL ROUTER REDUNDANCY PROTOCOL VRRP ...
Страница 356: ...356 CHAPTER 13 IP MULTICAST ROUTING ...
Страница 418: ...418 CHAPTER 14 OPEN SHORTEST PATH FIRST OSPF ...
Страница 519: ...RSVP 519 Figure 94 Sample RSVP Configuration Source station End stations Routers ...
Страница 566: ...566 CHAPTER 18 DEVICE MONITORING ...
Страница 572: ...572 APPENDIX A TECHNICAL SUPPORT ...
Страница 592: ...592 INDEX ...