IBM Optimizing Cisco STUN Priority 1 Port on Networking Routers

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Overview of IBM Networking

STUN and BSTUN

Figure 89 Comparison of STUN in Passthrough Mode and Local Acknowledgment Mode

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SDLC session

SNA session

TCP session

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SDLC session

SNA session

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Note To enable STUN local acknowledgment, you first enable the routers for STUN and configure them to appear on the network as primary or secondary SDLC nodes. TCP/IP encapsulation must be enabled. The Cisco STUN local acknowledgment feature also provides priority queueing for TCP-encapsulated frames.

STUN Features

The Cisco STUN implementation provides the following features:

Encapsulates SDLC frames in either the Transmission Control Protocol/Internet Protocol (TCP/IP) or the HDLC protocol.

Allows two devices using SDLC- or HDLC-compliant protocols that are normally connected by a direct serial link to be connected through one or more Cisco routers, reducing leased-line costs.

When you replace direct serial links with routers, serial frames can be propagated over arbitrary media and topologies to another router with a STUN link to an appropriate endpoint. The intervening network is not restricted to STUN traffic, but rather, is multiprotocol. For example, instead of running parallel backbones for DECnet and SNA/SDLC traffic, this traffic now can be integrated into an enterprise backbone network.

Supports local acknowledgment for direct Frame Relay connectivity between routers, without requiring TCP/IP.

 

Cisco IOS Bridging and IBM Networking Configuration Guide

BC-212

78-11737-02

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Contents Overview of IBM Networking BC-201Rsrb BC-202Configuration Considerations BC-203DLSw+ BC-204DLSw Standard DLSw Version 2 StandardBC-205 DLSw+ Features Enhanced Peer-on-Demand Routing FeatureIP Multicast UDP UnicastLocal Acknowledgment BC-207BC-208 LLC2 Session Without Local AcknowledgmentBC-209 DLSw+ Support for Other SNA Features BC-210Stun and Bstun Stun NetworksBC-211 Stun Features BC-212BC-213 BC-214 StunBstun Features LLC2 and Sdlc ParametersBstun Networks BC-215Cisco Implementation of LLC2 BC-216IBM Network Media Translation Cisco Implementation of SdlcBC-217 Sdllc Media Translation Features Virtual Token Ring ConceptBC-218 Resolving Differences in LLC2 and Sdlc Frame Size Maintaining a Dynamic RIF CacheOther Considerations BC-219Qllc Conversion BC-220Cisco Implementation of Qllc Conversion BC-221Comparing Qllc Conversion to Sdllc BC-222Other Implementation Considerations BC-223RFC 1490 Routed Format for LLC2 BNN BC-224RFC 1490 Bridged Format for LLC2 BAN BC-225Ncia Server BC-226Ncia Client/Server Model BC-227Advantages of the Client/Server Model Extended ScalabilityBC-228 Migration Support BC-229Dspu and SNA Service Point BC-230Shows a router functioning as a Dspu concentrator BC-231SNA Switching Services Benefits of SNASwBC-232 Reduced Configuration Requirements Scalable Appn NetworksIP Infrastructure Support Network Design SimplicityHPR Capable SNA Routing Services Branch ExtenderBC-234 Enterprise Extender HPR/IP BC-235Usability Features Responsive Mode Adaptive Rate-Based Flow ControlDynamic CP Name Generation Support Dynamic SNA BTU SizeInterprocess Signal Tracing Management EnhancementsUser-Settable Port Limits Console Message ArchivingLAN and IP-Focused Connection Types MIB Support for Advanced Network Management AwarenessToken Ring, Ethernet, and Fddi Virtual Token RingCisco Transaction Connection Virtual Data-Link ControlNative IP Data-Link Control HPR/IP Ctrc and Cics BC-240Ctrc and DB2 BC-241Cmcc Adapter Hardware Benefits of CtrcBC-242 Channel Interface Processor Channel Port AdapterBC-243 Differences Between the CIP and CPA Escon Channel Port AdapterParallel Channel Port Adapter BC-244Cmcc Adapter Features for TCP/IP Environments Common Link Access to WorkstationSupported Environments TCP/IP OffloadIP Host Backup Cisco Multipath Channel+BC-246 Cmcc Adapter Features for SNA Environments Cisco SNABC-247 Cisco Multipath Channel TN3270 ServerBC-248 SNA Functions Telnet Server FunctionsBC-249 BC-250