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Just to let you know I passed my lab last Friday in Brussels (CCIE 14786). I would never passed if I hadn't spent some bucks for your acclaimed IEWB-RS Volume I and II. Thanks Brians for all your help and patience and for letting me preview some of your VOD classrooms. Invaluable stuff !!! – actually I recommend anyone looking for CCIE track to prepare using your materials.

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CCIE Routing & Switching Lab Workbook Volume I

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Lab Workbook Reviews [+]

I have just passed my CCIE R&S in Brussels today from my first attempt and I would like to thank you for your fantastic products. My special thanks would be to Brian Dennis and Brian McGahan. Guys you are legend! Keep up good work.

I have been using your workbook labs (volume I,II,III) during my preparation for the last 6 months and here we go - success! I will be continuing using your products for other CCIE tracks.

Rashad Fatullayev - CCIE #21937

  • Overview
  • Lab Outlines
  • Printed vs Electronic
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Volume I - Advanced Technology Labs is the hands on practice companion to the Advanced Technologies Class, and is the first step in CCIE lab preparation. Each lab is designed to walk you through the technology, and provide in depth explanations of the necessary configurations.

CCIE R&S Lab Workbook Volume I consists of nearly 500 hands-on individually focused advanced technology labs that present topics in an easy to follow, goal-oriented step-by-step approach. The labs are used to isolate topics on their own allowing candidates to see firsthand the various ways to configure each technology, and what the specific implications of a configuration are. By understanding the fundamental operations of the protocols candidates will be able to predict advanced and sometimes subtle interactions when the various technologies are configured together.

Internetwork Expert's CCIE Routing & Switching Lab Workbook Volume I presents the topics covered in the CCIE R&S Lab exam in an easy to follow, goal-oriented step-by-step approach. By isolating each topic on its own you are able to see, firsthand, the various ways to configure each technology. By understanding these fundamental technologies, you will then be able to predict advanced and sometimes subtle interactions when configuring multiple technologies together.

New labs are continuously added as part of our CCIE 2.0 approach to our products. All material is kept up to date, and is always updated with additional material to ensure you have every resource available to you. These labs explore each of the fundamental technologies covered in the CCIE R&S Lab exam. Each of these new labs will be made available electronically and free of charge to customers who have purchased previous versions of Lab Workbook Volume I. This method ensures that the material covered in this Lab Workbook is as up-to-date as possible with the current CCIE R&S Lab exam specification.

Authors

Brian Dennis, CCIE #2210 CCIE Voice CCIE Routing and Switching CCIE Security CCIE ISP-Dial CCIE Service Provider Scott Morris, CCIE #4713 CCIE Routing and Switching CCIE Security CCIE ISP-Dial CCIE Service Provider
Brian McGahan, CCIE #8593 CCIE Routing and Switching CCIE Security CCIE Service Provider Petr Lapukhov, CCIE #16379 CCIE Routing and Switching CCIE Security CCIE Service Provider CCIE Voice
Anthon Sequeira, CCIE #15626 CCIE Routing and Switching  

Topology

The physical topology used in Internetwork Expert's CCIE Routing & Switching Lab Workbook Volume I is identical to that of Internetwork Expert's CCIE Routing & Switching Lab Workbook Volume II and Volume III, and remains the same throughout all labs in the series. This topology can be easily replicated in your home lab with minimal cost and is also supported through our CCIE Routing & Switching Rack Rentals.

What You Get

  • The CCIE Routing & Switching Lab Workbook Volume I is covered by our exclusive Investment Protection Program.
  • Access to nearly 500 labs (Electronic lab content is printable).
  • www.IEOC.com - Free online CCIE community and forum actively monitored by the actual authors of the workbook.

Bridging & Switching

Frame-Relay

IP Routing

RIP

EIGRP

OSPF

BGP

Multicast

IPv6

QoS

Security

System Managment

IP Services

 

Bridging & Switching

1.1              Layer 2 Access Switchports
1.2              Layer 2 Dynamic Switchports
1.3              ISL Trunking
1.4              802.1q Trunking
1.5              802.1q Native VLAN
1.6              Disabling DTP Negotiation
1.7              Router-On-A-Stick
1.8              VTP
1.9              VTP Transparent
1.10            VTP Pruning
1.11            VTP Prune-Eligible List
1.12            Layer 2 EtherChannel
1.13            Layer 2 EtherChannel with PAgP
1.14            Layer 2 EtherChannel with LACP
1.15            Layer 3 EtherChannel
1.16            802.1q Tunneling
1.17            EtherChannel over 802.1q Tunneling
1.18            STP Root Bridge Election
1.19            STP Load Balancing with Port Cost
1.20            STP Load Balancing with Port Priority
1.21            Tuning STP Convergence Timers
1.22            STP PortFast
1.23            STP PortFast Default
1.24            STP UplinkFast
1.25            STP BackboneFast
1.26            STP BPDU Guard
1.27            STP BPDU Guard Default
1.28            STP BPDU Filter
1.29            STP BPDU Filter Default
1.30            STP Root Guard
1.31            STP Loop Guard
1.32            Unidirectional Link Detection
1.33            MST Root Bridge Election
1.34            MST Load Balancing with Port Cost
1.35            MST Load Balancing with Port Priority
1.36            MST and Rapid Spanning Tree
1.37            Protected Ports
1.38            Storm Control
1.39            MAC-Address Table Static Entries & Aging
1.40            SPAN
1.41            RSPAN
1.42            Voice VLAN
1.43            IP Phone Trust and CoS Extend
1.44            Smartport Macros
1.45            Flex Links
1.46            Fallback Bridging
1.47            Private VLANs

Frame-Relay

2.1              Inverse-ARP
2.2              Static Mappings
2.3              Point-to-Point Subinterfaces
2.4              Multipoint Subinterfaces & Inverse-ARP
2.5              Multipoint Subinterfaces & Static Mappings
2.6              Hub-and-Spoke & Static Mappings
2.7              Hub-and-Spoke & Inverse-ARP
2.8              Hub-and-Spoke & Point-to-Point Subinterfaces
2.9              Disabling Inverse-ARP
2.10            Back-to-Back Frame Relay
2.11            Frame Relay End-to-End Keepalives
2.12            Frame Relay Broadcast Queue
2.13            Frame Relay TCP & RTP Header Compression
2.13            PPP over Frame Relay
2.14            Bridging over Frame Relay

 

IP Routing

3.1              Routing to Multipoint Broadcast Interfaces
3.2              Routing to NBMA Interfaces
3.3              Longest Match Routing
3.4              Floating Static Routes
3.5              Backup Interface
3.6              Reliable Static Routing with Enhanced Object Tracking
3.7              Policy Routing
3.8              Reliable Policy Routing
3.9              Local Policy Routing
3.10            GRE Tunneling
3.11            GRE Tunneling and Recursive Routing
3.12            Reliable Backup Interface with GRE
3.13            On-Demand Routing (ODR)

RIP

4.1               Basic RIP Configuration
4.2               RIPv2 Authentication
4.3               RIPv2 Split Horizon
4.4               RIPv2 Auto-Summary
4.5               RIP Send and Receive Versions
4.6               RIPv2 Manual Summarization
4.7               RIPv2 Convergence Timers
4.8               RIPv2 Offset List
4.9               RIPv2 Filtering with Passive Interface
4.10             RIPv2 Filtering with Prefix-Lists
4.11             RIPv2 Filtering with Standard Access-Lists
4.12             RIPv2 Filtering with Extended Access-Lists
4.13             RIPv2 Filtering with Offset Lists
4.14             RIPv2 Filtering with Administrative Distance
4.15             RIPv2 Filtering with Per Neighbor AD
4.16             RIPv2 Default Routing
4.17             RIPv2 Conditional Default Routing
4.18             RIPv2 Reliable Conditional Default Routing
4.19             RIPv2 Unicast Updates
4.20             RIPv2 Broadcast Updates
4.21             RIPv2 Triggered Updates
4.22             RIPv2 Source Validation

EIGRP

5.1               EIGRP Network Statement
5.2               EIGRP Auto-Summary
5.3               EIGRP Split Horizon
5.4               EIGRP MD5 Authentication
5.5               EIGRP Key Chain Rotation
5.6               EIGRP Unicast Updates
5.7               EIGRP Default Network
5.8               EIGRP Summarization
5.9               EIGRP Summarization with Default Routing
5.10             EIGRP Summarization with Leak Map
5.11             EIGRP Floating Summarization
5.12             EIGRP Poisoned Floating Summarization
5.13             EIGRP Metric Weights
5.14             EIGRP Traffic Engineering with Metric
5.15             EIGRP Unequal Cost Load Balancing
5.16             EIGRP Convergence Timers
5.17             EIGRP Stub Routing
5.18             EIGRP Stub Routing with Leak Map
5.19             EIGRP Filtering with Passive Interface
5.20             EIGRP Filtering with Prefix-Lists
5.21             EIGRP Filtering with Standard Access-Lists
5.22             EIGRP Filtering with Extended Access-Lists
5.23             EIGRP Filtering with Offset Lists
5.24             EIGRP Filtering with Administrative Distance
5.25             EIGRP Filtering with Per Neighbor AD
5.26             EIGRP Filtering with Route Maps
5.27             EIGRP Bandwidth Pacing
5.28             EIGRP Default Metric
5.29             EIGRP Neighbor Logging
5.30             EIGRP Router-ID
5.31             EIGRP Maximum Hops

OSPF

6.1               OSPF over Broadcast Media
6.2               OSPF over Non-Broadcast Media
6.3               OSPF DR/BDR Election Manipulation
6.4               OSPF Network Point-to-Point
6.5               OSPF Network Point-to-Multipoint
6.6               OSPF Network Point-to-Multipoint Non-Broadcast
6.7               OSPF Network Loopback
6.8               OSPF Path Selection with Auto-Cost
6.9               OSPF Path Selection with Cost
6.10             OSPF Path Selection with Bandwidth
6.11             OSPF Path Selection with Per-Neighbor Cost
6.12             Repairing Discontiguous OSPF Areas with Virtual-Links
6.13             OSPF Path Selection with Non-Backbone Transit Areas
6.14             OSPF Path Selection with Virtual-Links
6.15             OSPF Demand Circuit
6.16             OSPF Flooding Reduction
6.17             OSPF Clear Text Authentication
6.18             OSPF MD5 Authentication
6.19             OSPF Null Authentication
6.20             OSPF MD5 Authentication with Multiple Keys
6.21             OSPF Internal Summarization
6.22             OSPF Path Selection with Summarization
6.22             OSPF External Summarization
--In development - Soon to be released--
6.23             OSPF Stub Areas
6.24             OSPF Totally Stubby Areas
6.25             OSPF Not-So-Stubby Areas
6.26             OSPF Not-So-Stubby Areas and Default Routing
6.27             OSPF Not-So-Totally-Stubby Areas
6.28             OSPF LSA Type-3 Filtering
6.29             OSPF Forwarding Address Suppression
6.30             OSPF NSSA Redistribution Filtering
6.31             OSPF NSSA Type-7 to Type-5 Translator Election
6.32             OSPF Stub Areas with Multiple Exit Points
6.33             OSPF Default Routing
6.34             OSPF Conditional Default Routing
6.35             OSPF Summarization and Discard Routes
6.36             OSPF Internal Summarization and Discard Routes
6.37             OSPF External Summarization and Discard Routes
6.38             OSPF Filtering with Distribute-Lists
6.39             OSPF Filtering with Route-Maps
6.40             OSPF Filtering with Administrative Distance
6.41             OSPF NSSA ABR External Prefix Filtering
6.42             OSPF Global Timers
6.43             OSPF Interface Timers (Sub-second hellos)

BGP

Establishment of BGP Peering Relationships
BGP Update Source Mismatch
BGP Update Source Modification
iBGP Synchronization
Transiting Non-BGP Speaking Devices - Redistribution
Transiting Non-BGP Speaking Devices - Tunneling
BGP Bestpath Selection - Weight
BGP Bestpath Selection – Local Preference
BGP Bestpath Selection – Local Preference
BGP Bestpath Selection – MED
BGP Bestpath Selection – Origin
BGP Next-Hop Processing – Next-Hop-Self
BGP Next-Hop Processing – Manual Modification
BGP Next-Hop Processing – IGP Redistribution
BGP Communites – No-Export
BGP Communites – No-Advertise
BGP Route Reflection
BGP Confederation
BGP Communities – Local AS
BGP Outbound Route Filtering (ORF)
BGP Aggregation
BGP Aggregation – Summary Only
BGP Aggregation – Suppress Map
BGP Aggregation – Unsuppress Map
BGP Aggregation – AS-Set
BGP Aggregation – Advertise Map
BGP Allow AS In
--In development - Soon to be released--
7.1              Establishing iBGP Peerings
7.2              Establishing EBGP Peerings
7.3              BGP Update Source Modification
7.4              Establishing Multihop EBGP Peerings
7.5              Neighbor Disable-Connected-Check
7.6              BGP Peering from Secondary IP Address
7.7              Authenticating BGP Peerings
7.8              iBGP Route Reflection
7.9              iBGP Confederation
7.10            BGP Next-Hop Processing - IGP Redistribution
7.11            BGP Next-Hop Processing - Next-Hop-Self
7.12            BGP Next-Hop Processing - Manual Modification
7.13            BGP Next-Hop Processing - Next-Hop-Unchanged
7.14            iBGP Synchronization
7.15            iBGP over GRE
7.16            BGP Peer Groups
7.17            BGP Network Statement
7.18            BGP Auto-Summary
7.19            BGP Internal Redistribution
7.20            BGP Bestpath Selection - Weight
7.21            BGP Bestpath Selection - Local Preference
7.22            BGP Bestpath Selection - AS-Path Prepending
7.23            BGP Bestpath Selection - MED
7.24            BGP Bestpath Selection - Always Compare MED
7.25            BGP Bestpath Selection - Deterministic MED
7.26            BGP Bestpath Selection - Origin
7.27            BGP Bestpath Selection - AS-Path Ignore
7.28            BGP Bestpath Selection - Router-IDs
7.29            BGP Bestpath Selection - Cost Community
7.30            BGP Bestpath Selection - DMZ Link Bandwidth
7.31            BGP Bestpath Selection - Maximum AS Limit
7.32            BGP Bestpath Selection - RIB Failure
7.33            BGP Aggregation
7.34            BGP Aggregation - Summary Only
7.35            BGP Aggregation - Suppress Map
7.36            BGP Aggregation - Unsuppress Map
7.37            BGP Aggregation - AS-Set
7.38            BGP Aggregation - Advertise Map
7.39            BGP Communities
7.40            BGP Communities - No-Advertise
7.41            BGP Communities - No-Export
7.42            BGP Communities - Local-AS
7.43            BGP Communities - Deleting
7.44            BGP Conditional Advertisement
7.45            BGP Conditional Route Injection
7.46            BGP Filtering with Prefix-Lists
7.47            BGP Filtering with Standard Access-Lists
7.48            BGP Filtering with Extended Access-Lists
7.49            BGP Regular Expressions
7.50            BGP Filtering with Maximum Prefix
7.51            BGP Default Routing
7.52            BGP Local AS
7.53            BGP Local AS No Prepend
7.54            BGP Backdoor Routing
7.55            BGP Remove Private AS
7.56            BGP Dampening
7.57            BGP Dampening with Route-Maps
7.58            BGP Timers Tuning (Scan/Advertise Interval, Keepalives)
7.59            BGP Convergence Timers
7.60            BGP Fast External Fallover
7.61            BGP Neighbor Fallover
7.62            BGP Maximum Prefix
7.63            BGP Outbound Route Filtering
7.64            BGP Allow AS In
7.65            BGP AS Override
7.66            BGP Policy Accounting & Propagation
7.67            BGP Match Source Protocol
7.68            BGP Soft Reconfiguration
7.69            BGP TTL Security
7.70            BGP Traffic Index
7.71            BGP Remotely Triggered Blackhole
7.72            BGP QoS Policy Propagation
7.73            BGP Next-Hop Trigger

Multicast

--In development - Soon to be released--
8.1               PIM Dense Mode
8.2               PIM Sparse Mode
8.3               PIM Sparse-Dense Mode
8.4               PIM Assert
8.5               RPF Backoff Timer
8.6               Multicast RPF Failure
8.7               Multicast Over GRE
8.8               PIM NBMA Mode
8.9               Auto-RP
8.10             Auto-RP - Multiple Candidate RPs
8.11             Auto-RP - Filtering Candidate RPs
8.12             Auto-RP Listener
8.13             Auto-RP and RP/MA Placement
8.14             Bootstrap Router
8.15             Bootstrap Router - Multiple RP Candidates
8.16             Filtering Auto-RP Messages
8.17             Filtering BSR Messages
8.18             Multicast Boundary
8.19             Stub Multicast Routing & IGMP Helper
8.20             Multicast SPT Switchover
8.21             Multicast BGP
8.22             Multicast Source Distribution Protocol (MSDP)
8.23             Anycast RP
8.24             Multicast Routing Monitor
8.25             Multicast Helper Map
8.26             IGMP Filtering
8.27             IGMP Static Join
8.28             IGMP Timers
8.29             Multicast Rate Limiting
8.30             PIM Accept RP
8.31             PIM Accept Register
8.32             Bidirectional PIM
8.33             PIM DM Fallback
8.34             PIM DR Election
8.35             Source Specific Multicast
8.36             Catalyst IGMP Snooping
8.37             Catalyst Multicast VLAN Registration
8.38             Catalyst IGMP Profiles
8.39             DVMRP Interoperability

IPv6

Understanding Link Local and EUI-64 IPv6 Addressing
Understanding Site Local IPv6 Addressing
Understanding Global Unicast IPv6 Addressing
IPv6 over Frame Relay – Multipoint
IPv6 over Frame Relay – Point-to-Point
--In development - Soon to be released--
9.1                IPv6 Link Local Addressing
9.2                IPv6 Site Local Addressing
9.3                IPv6 EUI-64 Addressing
9.4                IPv6 Global Unicast Addressing
9.5                IPv6 over Point-to-Point NBMA
9.6                IPv6 over Multipoint NBMA
9.7                RIPng
9.8                RIPng over Hub-and-Spoke Multipoint NBMA
9.9                RIPng Default Routing
9.10              RIPng Summarization
9.11              RIPng Metric Manipulation
9.12              RIPng Prefix Filtering
9.13              OSPFv3
9.14              OSPFv3 Network Non-Broadcast
9.15              OSPFv3 Network Point-to-Point
9.16              OSPFv3 Network Point-to-Multipoint
9.17              OSPFv3 Network Point-to-Multipoint Non-Broadcast
9.18              OSPFv3 Virtual-Links
9.19              OSPFv3 Summarization
9.20              MP-BGP for IPv6
9.21              IPv6 over GRE Tunnels
9.22              IPv6 over IPv6IP Tunnels
9.23              IPv6 over ISATAP Tunnels
9.24              IPv6 over Automatic 6to4 Tunnels
9.25              IPv6 Access-List Filtering
9.26              IPv6 NAT-PT

QOS

10.1               Hold-Queue and Tx-Ring
10.2               Weighted Fair Queuing (WFQ)
10.3               Legacy RTP Reserved Queue
10.4               Legacy RTP Prioritization
10.5               Legacy Custom Queueing
10.6               Legacy Custom Queueing with Prioritization
10.7               Legacy Priority Queueing
10.8               Legacy Random Early Detection
10.9               Legacy Flow-Based Random Early Detection
10.10             Selective Packet Discard
10.11             Payload Compression on Serial Links
10.12             Generic TCP/UDP Header Compression
10.13             MLP Link Fragmentation and Interleaving
10.14             Legacy Generic Traffic Shaping
10.15             Legacy CAR for Admission Control
10.16             Oversubscription with Legacy CAR and WFQ
10.17             Legacy CAR for Rate Limiting
10.18             Legacy CAR Access-Lists
10.19             Legacy GTS for Frame Relay
10.20             Legacy Frame Relay Traffic Shaping
10.21             Legacy Adaptive FRTS
10.22             Legacy FRTS with Per-VC WFQ
10.23             Legacy FRTS with Per-VC PQ
10.24             Legacy FRTS with Per-VC CQ
10.25             Legacy FRTS with Per-VC Fragmentation
10.26             Legacy FRTS with Per-VC IP RTP Priority
10.27             Frame-Relay RTP/TCP Header Compression
10.28             Frame-Relay Broadcast Queue
10.29             Frame-Relay DE Marking
10.30             Legacy FRTS PVC Interface Priority Queue
10.31             Frame-Relay Priority to DLCI Mapping
10.32             Frame-Relay Traffic Policing & Congestion Mgmt
10.32             MQC Classification and Marking
10.33             CBWFQ Bandwidth Reservation
10.34             CBWFQ Bandwidth Percent
10.35             LLQ and Remaining Bandwidth
10.36             MQC WRED
10.37             MQC Dynamic Flows WRED
10.38             MQC WRED with ECN
10.39             MQC Class-Based Generic Traffic Shaping
10.40             MQC Class-Based GTS CBWFQ Queue
10.41             MQC Single-Rate Three-Color Policer
10.42             MQC Hierarchical Policers
10.43             MQC Two-Rate Three-Color Policer
10.44             MQC Peak Shaping
10.45             MQC Percent-Based Policing
10.46             MQC Header Compression
10.47             MQC Based FRTS
10.48             MQC Frame-Relay DE-Marking
10.49             Using MQC CBWFQ with Legacy FRTS
10.50             MQC Compatible FRF.12 Fragmentation
10.51             MQC Based Frame-Relay Traffic Shaping
10.52             Voice Adaptive Traffic Shaping
10.53             Voice Adaptive Fragmentation
10.54             MLPPP LFI over Frame Relay
10.55             QoS Pre-Classify
10.56             RSVP and WFQ
10.57             RSVP and SBM
10.58             RSVP and CBWFQ
10.59             RSVP and LLQ
10.60             RSVP and Per-VC WFQ
10.61             Catalyst QoS Classification Using Port Settings
10.62             Catalyst QoS Marking Pass-Through
10.63             Catalyst QoS ACL Based Classification & Marking
10.64             Catalyst 3550 Per-Port Per-VLAN Classification
10.65             Catalyst 3560 Per-VLAN Classification
10.66             Catalyst QoS Port-Based Policing and Marking
10.67             Catalyst 3560 Per-Port Per-VLAN Policing
10.68             Catalyst 3550 Per-Port Per-VLAN Policing
10.69             Catalyst QoS Aggregate Policers
10.70             Catalyst 3560 Ingress Queuing
10.71             Catalyst 3560 Ingress Queue Tuning
10.72             Catalyst 3550 Egress Queuing
10.73             Catalyst 3550 Regular Queues Tuning
10.74             Catalyst 3550 Gigabit Interface Queues Tuning
10.75             Catalyst 3550 Egress Policing
10.76             Catalyst 3560 SRR Shared Mode
10.77             Catalyst 3560 SRR Shaped Mode
10.78             Catalyst 3560 Egress Queue Tuning
10.79             Catalyst QoS DSCP Mutation
10.80             Advanced HTTP Classification with NBAR

Security

Traffic Filtering with Access Lists
Traffic Filtering with Reflexive Access-Lists
Reflexive Access-Lists and Router-Generated Traffic
Configuring CBAC for Traffic Inspection
Access Control with Dynamic ACLs (Lock & Key)
Using NBAR to Filter Traffic
Using Policy-Based Routing to Filter Traffic
DoS Attacks Prevention with TCP Intercept
Configuring TCP Intercept in Watch Mode
DoS Attacks Prevention with CBAC
Configuring Application Port-Mapping with CBAC
Using CAR for Smurf Attack Mitigation
IP Address Spoofing Prevention with ACLs
Using uRPF to Prevent IP Address Spoofing
--In development - Soon to be released--
11.1               AAA Authentication Lists
11.2               AAA Exec Authorization
11.3               AAA Local Command Authorization
11.4               Traffic Filtering with Standard Access-Lists
11.5               Traffic Filtering with Extended Access-List
11.6               Traffic Filtering with Reflexive Access-List
11.7               Filtering Fragmented Packets
11.8               Access Control with Dynamic Access-Lists
11.9               Traffic Filtering with Time-Based Access-Lists
11.10             Traffic Filtering with Policy-Based Routing
11.11             Preventing Spoofing with uRPF
11.12             Using NBAR for Content-Based Filtering
11.13             TCP Intercept Feature
11.14             TCP Intercept Watch Mode
11.15             Packet Logging with Access-Lists
11.16             Stateful Filtering with CBAC
11.17             Advanced CBAC Features
11.18             CBAC TCP/UDP Intercept Feature
11.19             VLAN Filters for IP Traffic
11.20             VLAN Filters for non-IP Traffic
11.21             Port Security

System Management

12.1               Exec Aliases
12.2               System Message Logging
12.3               Syslog Logging
12.4               Logging Counting and Timestamps
12.5               Logging to Flash Memory
12.6               Configuration Change Notification and Logging
12.7               Configuration Archive & Rollback
12.8               Logging with Access-Lists
12.9               TCP Keepalives
12.10             Generating Exception Core Dumps
12.11             Conditional Debugging
12.12             Telnet Service Options
12.13             Tuning Packet Buffers
12.14             Terminal Line Settings
12.15             SNMPv2c Server
12.16             SNMPv2c Access Control
12.17             SNMP Traps and Informs
12.18             CPU and Memory Thresholds
12.19             SNMPv3
12.20             SNMP MAC Address Notifications
12.21             SNMP Notifications of Syslog Messages
12.22             CDP
12.23             RMON Alarms
12.24             RMON Statistics Collection
12.25             HTTP Server and Client
12.26             FTP Server and Client
12.27             TFTP Server and Client
12.28             Remote Shell
12.29             NTP
12.30             NTP Authentication
12.31             NTP Access Control
12.32             Auto-Install over LAN Interfaces using DHCP
12.33             Auto-Install over Frame-Relay
12.34             Auto-Install over LAN Interfaces using RARP
12.35             IOS Menus
12.36             IOS Banners
12.37             KRON Command Schedule

IP Services

13.1               Proxy ARP
13.2               DHCP Server
13.3               DHCP Client
13.4               DHCP Relay
13.5               DHCP Host Pool
13.6               DHCP On-Demand Pool
13.7               DHCP Proxy
13.8               DHCP Information Option
13.9               DHCP Authorized ARP
13.10             IP SLA
13.11             Object Tracking
13.12             HSRP
13.13             VRRP
13.14             GLBP
13.15             Router Redundancy and Objects Tracking
13.16             IRDP
13.17             Router ICMP Settings
13.18             Basic NAT
13.19             NAT Overload
13.20             NAT with Route Maps
13.21             Static NAT
13.22             Static PAT
13.23             NAT and IP Aliasing
13.24             Static Policy NAT
13.25             NAT with Overlapping Subnets
13.26             TCP Load Distribution with NAT
13.27             Stateful NAT with HSRP
13.28             Stateful NAT Primary/Backup
13.29             NAT Virtual Interface
13.30             NAT Default Interface
13.31             Reversible NAT
13.32             Static Extendable NAT
13.33             IP Precedence Accounting
13.34             IP Output Packets Accounting
13.35             IP Access Violation Accounting
13.36             MAC Address Accounting
13.37             TCP Optimization
13.38             IOS Small Services & Finger
13.39             Directed Broadcasts & UDP Forwarding
13.40             DRP Server Agent
13.41             WCCPv1 Web-Cache
13.42             WCCPv2 Services
13.43             SLB Directed Mode
13.44             SLB Dispatched Mode
13.45             NBAR Protocol Discovery
13.46             Netflow Ingress & Egress
13.47             Netflow Top Talkers
13.48             Netflow Aggregation Cache
13.49             Netflow Random Sampling
13.50             Netflow Input Filters
13.51             IOS Authoritative DNS Server
13.52             IOS Caching DNS Server
13.53             IOS DNS Spoofing
13.54             IP Event Dampening

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