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ActiveDirectory.plist: contains Active Directory Binding data including
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mappings, security levels, and computer credentials (discussed further in 3).
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ActiveDirectoryDomainCache.plist: Cache data related to bound Active Directory domains (discussed further in 3). ActiveDirectoryDomainPolicies.plist: Contains password policy data
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pertinent to bound Active Directory domains (discussed further in 3).
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ActiveDirectoryDynamicData.plist: Contains Active Directory Domain
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information, including available Domain Controllers (discussed further in 3).
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ContactsNodeConfig.plist: can be used do add Directory Domains to the contacts search policy (using Search Node Custom Path Array), show/reset DHCP LDAP information (DHCP LDAP), and configure the search policy by setting the Search Policy key to 1, 2, or 3 for Automatic, Local, or Custom respectively. ContactsNodeConfigBackup.plist: backup of the
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ContactsNodeConfig.plist.
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DirectoryService.plist: described in the preceding Plug-ins section,
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and can be used to enable and disable directory services plug-ins.
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DirectoryServiceDebug.plist: allows you to enable directory services
debugging using the Debug Logging key, set the levels of verbosity for the debug log using the Debug Logging Priority Level key, and enable NetInfo (although NetInfo might not be too useful without nicl).
DSLDAPv3PlugInConfig.plist: can be used to read, edit, and add
server configurations and the timeout settings applied in the Custom LDAP Settings section of this chapter. Also maintains a key for Service Principals to Create, defining which Kerberos service principles to create at bind time.
DSRecordTypeRestrictions.plist: shows versioning information (not
otherwise useful).
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CHAPTER 2: Directory Services Clients
PasswordServerPluginPrefs.plist: can be used to set or change the priority of encryption mechanisms. SearchNodeConfig.plist: can be used do add Directory Domains to the authentication search policy (using Search Node Custom Path Array ), show/reset DHCP LDAP information (DHCP LDAP), and configure the search policy by setting the Search Policy key to 1, 2, or 3 for Automatic, Local, or Custom, respectively. SearchNodeConfigBackup.plist: backup of the
SearchNodeConfig.plist. Each of the keys in the previous files can be changed using the defaults command. While we ve so far covered making settings change to actual files dedicated to the directory services property lists, there are also hooks into other services, such as the login window of Mac OS X. For example, the following command will edit the com.apple.loginwindow.plist file, setting the login window to display the status of the directory services daemon:
defaults write /Library/Preferences/com.apple.loginwindow AdminHostInfo DSStatus
Summary
In this chapter, we provide both a high- and low-level integration of OS X into several Directory Service systems such as Open Directory, NIS, and third-party LDAP implementations. We also covered integrating client and servers with Kerberos systems to function in an existing single sign-on environment. In the next chapter, we will further explore directory services integration, with a specific focus on integrating OS X systems with Microsoft s Active Directory system.
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Active Directory
Active Directory is a Directory Services solution developed by Microsoft. It is built using certain proprietary technologies, which only (currently) runs on the Microsoft Windows Server platform. Samba may soon turn out to be worthy of running in production as a Windows Active Directory replacement. While many of the back end components of Active Directory are designed for the windows client platform, Microsoft based much of the structure of Active Directory on open standards, such as the LDAP format known as RFC 2307 and the Kerberos v5 protocol defined in RFC 1510. Active Directory can be used to seamlessly integrate Windows systems en masse, but the real advantage of blending these technologies and open standards is that foreign operating systems can then be integrated with Active Directory as well. Integrating Mac OS X and Mac OS X Server with Active Directory is very similar to integrating with the native directory services that a Mac OS X Server s Open Directory service can provide. The reason for this is Active Directory supports gaining access to information within its Jet Database by using the Light Weight Directory Access Protocol (LDAP). When thinking about directory services, it is sometimes best thought of as a large delimited document, such as something you would create in a spreadsheet program like Microsoft Excel. When a client attempts to use a directory for authentication and authorization it looks up an object such as a user account via the LDAP protocol much like searching for a field in a spreadsheet. This lookup entails finding the field in the directory that matches the requested information. For example, when a user types his or her username this information is stored as a key value pair in Active Directory. If user zsmith logs in, then an LDAP query is started that attempts to find a user in the directory with that value. Once the user is found, the resultant set of keys that make up their user account can be accessed. For example, zsmith may have a home directory that is stored on a network server. This path name will be stored as a key (homeDirectory) in the Active Directory database. Apple has two default plug-ins for communicating with LDAP servers, the LDAPv3 plug-in and the Active Directory plug-in. These two plug-ins are very similar in terms of the back end communication they use. However, Apple developed the Active Directory plug-in to supplement missing LDAP attributes that are not normally available in a standard Active Directory Schema. The best example of this is the uidNumber attribute. This attribute is normally used to contain the
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