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Getting Started with NetScaler
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Solutions for Telecom Service Providers
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Load Balance Control-Plane Traffic that is based on Diameter, SIP, and SMPP Protocols
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Provide Subscriber Load Distribution Using GSLB Across Core-Networks of a Telecom Service Provider
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Authentication, authorization, and auditing application traffic
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Basic components of authentication, authorization, and auditing configuration
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Web Application Firewall protection for VPN virtual servers and authentication virtual servers
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On-premises NetScaler Gateway as an identity provider to Citrix Cloud™
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Authentication, authorization, and auditing configuration for commonly used protocols
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Troubleshoot authentication and authorization related issues
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Troubleshoot authentication, authorization and auditing issues
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Configure EULA as an authentication factor in NetScaler nFactor system
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Configure periodic Endpoint Analysis scan as a factor in nFactor authentication
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Configure post-authentication Endpoint Analysis scan as a factor in NetScaler nFactor authentication
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Configure pre-authentication Endpoint Analysis scan as a factor in nFactor authentication
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Configure pre-auth and post-auth EPA scan as a factor in nFactor authentication
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Configure prefill user name from certificate in NetScaler nFactor authentication
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Localize error messages generated by NetScaler nFactor system
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Configure NetScaler Gateway preauthentication EPA scan for the domain check
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Persistence and persistent connections
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Advanced load balancing settings
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Gradually stepping up the load on a new service with virtual server–level slow start
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Protect applications on protected servers against traffic surges
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Retrieve location details from user IP address using geolocation database
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Use source IP address of the client when connecting to the server
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Use client source IP address for backend communication in a v4-v6 load balancing configuration
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Set a limit on number of requests per connection to the server
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Configure automatic state transition based on percentage health of bound services
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Use case 2: Configure rule based persistence based on a name-value pair in a TCP byte stream
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Use case 3: Configure load balancing in direct server return mode
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Use case 6: Configure load balancing in DSR mode for IPv6 networks by using the TOS field
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Use case 7: Configure load balancing in DSR mode by using IP Over IP
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Use case 10: Load balancing of intrusion detection system servers
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Use case 11: Isolating network traffic using listen policies
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Use case 12: Configure Citrix Virtual Desktops for load balancing
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Use case 13: Configure Citrix Virtual Apps and Desktops for load balancing
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Use case 14: ShareFile wizard for load balancing Citrix ShareFile
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Use case 15: Configure layer 4 load balancing on the NetScaler appliance
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Create a certificate signing request and use SSL certificates on a NetScaler appliance
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Configure SSL acceleration with HTTP on the front end and SSL on the back end
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Export certificates used on a NetScaler appliance as PFX file
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Configure SSL monitoring when client authentication is enabled on the back-end service
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Configure SSL action to forward client traffic if a cipher is not supported on the ADC
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Configure synchronization of files in a high availability setup
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Authentication and authorization for System Users
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Configuring a CloudBridge Connector Tunnel between two Datacenters
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Configuring CloudBridge Connector between Datacenter and AWS Cloud
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Configuring a CloudBridge Connector Tunnel Between a Datacenter and Azure Cloud
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Configuring CloudBridge Connector Tunnel between Datacenter and SoftLayer Enterprise Cloud
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Configuring a CloudBridge Connector Tunnel Between a NetScaler Appliance and Cisco IOS Device
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CloudBridge Connector Tunnel Diagnostics and Troubleshooting
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IPv6 ready logo support for clusters
You can test clustered appliances for IPv6 Ready Logo certification. Modified commands for testing IPv6 core protocols, such as for ND test cases, Router Solicitation processing, and sending route advertisement and router redirection messages are available in a clustered setup. Following are the IPv6 functionalities available for testing the IPv6 core protocols.
Following are the modified functionalities available to pass IPv6 core protocols, such as ND test cases, Router Solicitation processing and sending Route advertisement and router redirection messaging in the IPv6readylogo phase2 test suite.
- Link Local SNIPs
- Address Resolution and Neighbor Unreachability
- Router and Prefix Discovery
- Router Redirection
- DoDAD
With these modified commands, the following configurations are supported in a clustered appliance.
Supportable configurations for testing IPv6 core protocols
For a clustered setup to pass IPv6 Ready Logo test cases, you can run the following configurations on the Cluster Management IP address (CLIP).
- global IP6 configuration
- basic IPv6 configuration
- more IPv6 configurations
Global configuration
A global IPv6 configuration enables you to set the global IPv6 parameters (such as relearning, routeRedirection, ndBasereachTime, nRetransmissionTime, natprefix, td, and doodad) to run the basic IPv6 configuration.
At the command prompt, type the following:
set ipv6 \[-ralearning \( ENABLED | DISABLED )] \[-routerRedirection \(ENABLED | DISABLED )] \[-ndBasereachTime<positive\_integer>]\[-ndRetransmissionTime <positive\_integer>] \[-natprefix <ipv6\_addr|\*>\[-td<positive\_integer>]] \[-doDAD \( ENABLED | DISABLED )]
Basic IPv6 configuration
The basic IPv6 configuration enables you to create an IPv6 address and bind to a VLAN interface. You can perform the following configurations to test the IPv6 core protocols.
To add a VLAN to the clustered setup by using the CLI
At the command prompt, type:
add vlan <id>
To add another VLAN to the clustered setup by using the CLI
At the command prompt, type:
add vlan <id>
To bind an interface to a VLAN by using the CLI
At the command prompt, type:
bind vlan <id> -ifnum <interface_name>
To bind an interface to a VLAN by using the CLI
This command adds the global prefix as on-link prefix into RA information for subsequent Router Advertisements. At the command prompt, type:
bind vlan <id> -ifnum <interface_name>
To add the IPv6 SNIP address on a VLAN by using the CLI
At the command prompt, type the following:
add ns ip6 <IPv6Address>@ \[-scope \( global | link-local )]\[-type <type>
To add the IPv6 address on VLAN by using the CLI
At the command prompt, type the following:
add ns ip6 <IPv6Address>@ \[-scope \( global | link-local )]\[-type <type>
To bind IPv6 address to VLAN by using the CLI
At the command prompt, type the following:
bind vlan <id> \[-ifnum <interface\_name> \[-tagged]]\[-IPAddress <ip\_addr|ipv6\_addr|
To bind the IPv6 address to VLAN by using the CLI
At the command prompt, type the following:
bind vlan <id> \[-ifnum <interface\_name> \[-tagged]]\[-IPAddress <ip\_addr|ipv6\_addr|
To display the link local IPv6 address attached to VLAN by using the CLI
At the command prompt, type the following:
sh VLAN
Example 1
add vlan 2
add vlan 3
bind vlan 2 -ifnum 1/2
bind vlan 3 -ifnum 1/3
add ip6 fe80::9404:60ff:fedd:a464/64 -vlan 2 -scope link-local -type SNIP
add ip6 fe80::c0ee:7bff:fede:263f/64 -vlan 3 -scope link-local -type SNIP
add ip6 3ffe:501:ffff:100:9404:60ff:fedd:a464/64 -vlan 2
add ip6 3ffe:501:ffff:101:c0ee:7bff:fede:263f/64 -vlan 3
bind vlan 2 -ipAddress 3ffe:501:ffff:100:9404:60ff:fedd:a464/64
bind vlan 3 -ipAddress 3ffe:501:ffff:101:c0ee:7bff:fede:263f/64
Example 2
sh vlan
1) VLAN ID: 2 VLAN Alias Name:
Interfaces : 1/6
IPs :
3ffe:501:ffff:100:2e0:edff:fe15:ea2a/64
3) VLAN ID: 3 VLAN Alias Name:
Link-local IPv6 addr: fe80::9404:60ff:fedd:a464/64
Interfaces : 1/5
IPs :
3ffe:501:ffff:101:2e0:edff:fe15:ea2b/64
Done
More IPv6 cluster configuration
To test IPv6 core protocols, you can use the following new or modified IPv6 configurations.
To set VLAN specific Router Advertisement parameters by using the CLI
At the command prompt, type:
set nd6RAvariables -vlan <positive\_integer> \[-ceaseRouterAdv \( YES | NO)] \[-sendRouterAdv \( YES | NO )] \[-srcLinkLayerAddrOption \( YES | NO )]\[-onlyUnicastRtAdvResponse \( YES | NO )] \[-managedAddrConfig \( YES | NO)] \[-otherAddrConfig \( YES | NO )] \[-currHopLimit <positive\_integer>]\[-maxRtAdvInterval <positive\_integer>] \[-minRtAdvInterval<positive\_integer>] \[-linkMTU <positive\_integer>] \[-reachableTime<positive\_integer>] \[-retransTime <positive\_integer>] \[-defaultLifeTime<integer>]
To set an on-link global prefix’s configurable parameters by using the CLI
At the command prompt, type:
set onLinkIPv6Prefix <ipv6Prefix> \[-onlinkPrefix \( YES | NO )]\[-autonomusPrefix \( YES | NO )] \[-depricatePrefix \( YES | NO )]\[-decrementPrefixLifeTimes \( YES | NO )] \[-prefixValideLifeTime <positive\_integer>] \[-prefixPreferredLifeTime <positive\_integer>]
To add configurable parameters to an on-link global prefix by using the CLI
At the command prompt, type:
add onLinkIPv6Prefix <ipv6Prefix> \[-onlinkPrefix \( YES | NO )]\[-autonomusPrefix \( YES | NO )] \[-depricatePrefix \( YES | NO )]\[-decrementPrefixLifeTimes \( YES | NO )]-prefixValideLifeTime <positive\_integer>]\[-prefixPreferredLifeTime <positive\_integer>]
To set an on-link link to the IPv6 prefix’s configurable parameters by using the CLI
At the command prompt, type the following:
help set onLinkIPv6Prefix
To bind an on-link link to the IPv6 prefix’s configurable parameters by using the CLI
At the command prompt, type:
help bind nd6RAvariables
To show nd6RAvariables by using the CLI
At the command prompt, type:
help sh nd6RAvariables
Example
> sh nd6RAvariables
1) Vlan : 1
SendAdvert : NO CeaseAdv : NO SourceLLAddress: YES
UnicastOnly : NO ManagedFlag : NO OtherConfigFlag: NO
CurHopLimit : 64 MaxRtrAdvInterv: 600 MinRtrAdvInterv: 198
LinkMTU : 0 ReachableTime : 0 RetransTimer : 0
DefaultLifetime: 1800 LastRAsentTime : 0 NextRAdelay : 0
2) Vlan : 2
SendAdvert : NO CeaseAdv : NO SourceLLAddress: YES
UnicastOnly : NO ManagedFlag : NO OtherConfigFlag: NO
CurHopLimit : 64 MaxRtrAdvInterv: 600 MinRtrAdvInterv: 198
LinkMTU : 0 ReachableTime : 0 RetransTimer : 0
DefaultLifetime: 1800 LastRAsentTime : 0 NextRAdelay : 0
Done
>
> sh nd6Ravariables –vlan 2
1) Vlan : 2
SendAdvert : NO CeaseAdv : NO SourceLLAddress: YES
UnicastOnly : NO ManagedFlag : NO OtherConfigFlag: NO
CurHopLimit : 64 MaxRtrAdvInterv: 600 MinRtrAdvInterv: 198
LinkMTU : 0 ReachableTime : 0 RetransTimer : 0
DefaultLifetime: 1800 LastRAsentTime : 0 NextRAdelay : 0
Prefix :
3ffe:501:ffff:100::/64
Done
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