Okta Attribute Resolution
The following configuration describes how to fetch and retrieve attributes from Okta instances.
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<dependency>
<groupId>org.apereo.cas</groupId>
<artifactId>cas-server-support-okta-authentication</artifactId>
<version>${cas.version}</version>
</dependency>
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implementation "org.apereo.cas:cas-server-support-okta-authentication:${project.'cas.version'}"
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dependencyManagement {
imports {
mavenBom "org.apereo.cas:cas-server-support-bom:${project.'cas.version'}"
}
}
dependencies {
implementation "org.apereo.cas:cas-server-support-okta-authentication"
}
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dependencies {
/*
The following platform references are included automatically and are listed for reference only.
implementation enforcedPlatform("org.apereo.cas:cas-server-support-bom:${project.'cas.version'}")
implementation platform(org.springframework.boot.gradle.plugin.SpringBootPlugin.BOM_COORDINATES)
*/
implementation "org.apereo.cas:cas-server-support-okta-authentication"
}
The following settings and properties are available from the CAS configuration catalog:
cas.authn.attribute-repository.okta.client-idOkta client id used in combination with the private key.
Okta client id used in combination with the private key.
cas.authn.attribute-repository.okta.organization-urlOkta domain.
Okta domain.
cas.authn.attribute-repository.okta.private-key.locationThe location of the resource.
The location of the resource. Resources can be URLs, or files found either on the classpath or outside somewhere in the file system.
In the event the configured resource is a Groovy script, especially if the script is set to reload on changes, you may need to adjust the total number of inotify instances. On Linux, you may need to add the following line to /etc/sysctl.conf: fs.inotify.max_user_instances = 256.
You can check the current value via cat /proc/sys/fs/inotify/max_user_instances.
In situations and scenarios where CAS is able to automatically watch the underlying resource for changes and detect updates and modifications dynamically, you may be able to specify the following setting as either an environment variable or system property with a value of false to disable the resource watcher: org.apereo.cas.util.io.PathWatcherService.
cas.authn.attribute-repository.okta.scopesOkta allows you to interact with Okta APIs using scoped OAuth 2.0 access tokens.
Okta allows you to interact with Okta APIs using scoped OAuth 2.0 access tokens. Each access token enables the bearer to perform specific actions on specific Okta endpoints, with that ability controlled by which scopes the access token contains. Scopes are only used when using client id and private-key.
cas.authn.attribute-repository.okta.username-attributeUsername attribute to fetch attributes by.
usernameUsername attribute to fetch attributes by.
cas.authn.attribute-repository.okta.api-tokenOkta API token.
Okta API token.
cas.authn.attribute-repository.okta.connection-timeoutConnection timeout in milliseconds.
5000Connection timeout in milliseconds.
cas.authn.attribute-repository.okta.idA value can be assigned to this field to uniquely identify this resolver.
A value can be assigned to this field to uniquely identify this resolver.
cas.authn.attribute-repository.okta.orderThe order of this authentication handler in the chain.
The order of this authentication handler in the chain.
cas.authn.attribute-repository.okta.proxy-hostSend requests via a proxy; define the hostname.
Send requests via a proxy; define the hostname.
cas.authn.attribute-repository.okta.proxy-passwordSend requests via a proxy; define the proxy password.
Send requests via a proxy; define the proxy password.
cas.authn.attribute-repository.okta.proxy-portSend requests via a proxy; define the proxy port.
0Send requests via a proxy; define the proxy port. Negative/zero values should deactivate the proxy configuration for the http client.
cas.authn.attribute-repository.okta.proxy-usernameSend requests via a proxy; define the proxy username.
Send requests via a proxy; define the proxy username.
Required settings may be needed to activate or affect the feature; review them even when they have a default. Optional settings only need to be set to change a default or to turn on the behavior they control. Third party settings belong to libraries such as Spring Boot that CAS builds on; their own documentation may have more detail.
Notes on configuration
Configuration Metadata
The collection of configuration properties listed in this section are automatically generated from the CAS source and components that contain the actual field definitions, types, descriptions, modules, etc. This metadata may not always be 100% accurate, or could be lacking details and sufficient explanations.
Be Selective
This section is meant as a guide only. Do NOT copy/paste the entire collection of settings into your CAS configuration; rather pick only the properties that you need. Do NOT enable settings unless you are certain of their purpose and do NOT copy settings into your configuration only to keep them as reference. All these ideas lead to upgrade headaches, maintenance nightmares and premature aging.
YAGNI
Note that for nearly ALL use cases, declaring and configuring properties listed here is sufficient. You should NOT have to explicitly massage a CAS XML/Java/etc configuration file to design an authentication handler, create attribute release policies, etc. CAS at runtime will auto-configure all required changes for you. If you are unsure about the meaning of a given CAS setting, do NOT turn it on without hesitation. Review the codebase or better yet, ask questions to clarify the intended behavior.
Naming Convention
Property names can be specified in very relaxed terms. For instance cas.someProperty, cas.some-property, cas.some_property are all valid names. While all
forms are accepted by CAS, there are certain components (in CAS and other frameworks used) whose activation at runtime is conditional on a property value, where
this property is required to have been specified in CAS configuration using kebab case. This is both true for properties that are owned by CAS as well as those
that might be presented to the system via an external library or framework such as Spring Boot, etc.
When possible, properties should be stored in lower-case kebab format, such as cas.property-name=value.
The only possible exception to this rule is when naming actuator endpoints; The name of the
actuator endpoints (i.e. ssoSessions) MUST remain in camelCase mode.
Settings and properties that are controlled by the CAS platform directly always begin with the prefix cas. All other settings are controlled and provided
to CAS via other underlying frameworks and may have their own schemas and syntax. BE CAREFUL with
the distinction. Unrecognized properties are rejected by CAS and/or frameworks upon which CAS depends. This means if you somehow misspell a property definition
or fail to adhere to the dot-notation syntax and such, your setting is entirely refused by CAS and likely the feature it controls will never be activated in the
way you intend.
Validation
Configuration properties are automatically validated on CAS startup to report issues with configuration binding, especially if defined CAS settings cannot be recognized or validated by the configuration schema. Additional validation processes are also handled via Configuration Metadata and property migrations applied automatically on startup by Spring Boot and family.
Indexed Settings
CAS settings able to accept multiple values are typically documented with an index, such as cas.some.setting[0]=value. The index [0] is meant to be
incremented by the adopter to allow for distinct multiple configuration blocks.