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Active Directory
Directory service created by Microsoft for Windows domain networks

Active Directory (AD) is a directory service developed by Microsoft for managing users and resources in Windows domain networks. Included in Windows Server operating systems, it provides authentication, authorization, and centralized management through domain controllers running Active Directory Domain Services (AD DS). When a user logs into a domain, AD verifies credentials and enforces security policies. It supports protocols like LDAP, Microsoft's version of Kerberos, and DNS. Additionally, Active Directory integrates with services such as Federation Services and Rights Management Services, providing a comprehensive identity and access framework.

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History

Like many information-technology efforts, Active Directory originated out of a democratization of design using Requests for Comments (RFCs). The Internet Engineering Task Force (IETF) oversees the RFC process and has accepted numerous RFCs initiated by widespread participants. For example, LDAP underpins Active Directory. Also, X.500 directories and the Organizational Unit preceded the Active Directory concept that uses those methods. The LDAP concept began to emerge even before the founding of Microsoft in April 1975, with RFCs as early as 1971. RFCs contributing to LDAP include RFC 1823 (on the LDAP API, August 1995),9 RFC 2307, RFC 3062, and RFC 4533.101112

Microsoft previewed Active Directory in 1999, released it first with Windows 2000 Server edition, and revised it to extend functionality and improve administration in Windows Server 2003. Active Directory support was also added to Windows 95, Windows 98, and Windows NT 4.0 via patch, with some unsupported features.1314 Additional improvements came with subsequent versions of Windows Server. In Windows Server 2008, Microsoft added further services to Active Directory, such as Active Directory Federation Services.15 The part of the directory in charge of managing domains, which was a core part of the operating system,16 was renamed Active Directory Domain Services (ADDS) and became a server role like others.17 "Active Directory" became the umbrella title of a broader range of directory-based services.18 According to Byron Hynes, everything related to identity was brought under Active Directory's banner.19

Active Directory Services

Active Directory Services consist of multiple directory services. The best known is Active Directory Domain Services, commonly abbreviated as AD DS or simply AD.

Domain Services

Active Directory Domain Services (AD DS) is the foundation of every Windows domain network. It stores information about domain members, including devices and users, verifies their credentials, and defines their access rights. The server running this service is called a domain controller. A domain controller is contacted when a user logs into a device, accesses another device across the network, or runs a line-of-business Metro-style app sideloaded into a machine.

Other Active Directory services (excluding LDS, as described below) and most Microsoft server technologies rely on or use Domain Services; examples include Group Policy, Encrypting File System, BitLocker, Domain Name Services, Remote Desktop Services, Exchange Server, and SharePoint Server.

The self-managed Active Directory DS must be distinct from managed Azure AD DS, a cloud product.20

Lightweight Directory Services

Active Directory Lightweight Directory Services (AD LDS), previously called Active Directory Application Mode (ADAM),21 implements the LDAP protocol for AD DS.22 It runs as a service on Windows Server and offers the same functionality as AD DS, including an equal API. However, AD LDS does not require the creation of domains or domain controllers. It provides a Data Store for storing directory data and a Directory Service with an LDAP Directory Service Interface. Unlike AD DS, multiple AD LDS instances can operate on the same server.

Certificate Services

Active Directory Certificate Services (AD CS) establishes an on-premises public key infrastructure. It can create, validate, revoke and perform other similar actions, public key certificates for internal uses of an organization. These certificates can be used to encrypt files (when used with Encrypting File System), emails (per S/MIME standard), and network traffic (when used by virtual private networks, Transport Layer Security protocol or IPSec protocol).

AD CS predates Windows Server 2008, but its name was simply Certificate Services.23

AD CS requires an AD DS infrastructure.24

Federation Services

Main article: Active Directory Federation Services

Active Directory Federation Services (AD FS) is a single sign-on service. With an AD FS infrastructure in place, users may use several web-based services (e.g. internet forum, blog, online shopping, webmail) or network resources using only one set of credentials stored at a central location, as opposed to having to be granted a dedicated set of credentials for each service. AD FS uses many popular open standards to pass token credentials such as SAML, OAuth or OpenID Connect.25 AD FS supports encryption and signing of SAML assertions.26 AD FS's purpose is an extension of that of AD DS: The latter enables users to authenticate with and use the devices that are part of the same network, using one set of credentials. The former enables them to use the same set of credentials in a different network.

As the name suggests, AD FS works based on the concept of federated identity.

AD FS requires an AD DS infrastructure, although its federation partner may not.27

Rights Management Services

Main article: Active Directory Rights Management Services

Active Directory Rights Management Services (AD RMS), previously known as Rights Management Services or RMS before Windows Server 2008, is server software that allows for information rights management, included with Windows Server. It uses encryption and selective denial to restrict access to various documents, such as corporate e-mails, Microsoft Word documents, and web pages. It also limits the operations authorized users can perform on them, such as viewing, editing, copying, saving, or printing. IT administrators can create pre-set templates for end users for convenience, but end users can still define who can access the content and what actions they can take.28

Logical structure

Active Directory is a service comprising a database and executable code. It is responsible for managing requests and maintaining the database. The Directory System Agent is the executable part, a set of Windows services and processes that run on Windows 2000 and later.29 Accessing the objects in Active Directory databases is possible through various interfaces such as LDAP, ADSI, messaging API, and Security Accounts Manager services.30

Objects used

Active Directory structures consist of information about objects classified into two categories: resources (such as printers) and security principals (which include user or computer accounts and groups). Each security principal is assigned a unique security identifier (SID). An object represents a single entity, such as a user, computer, printer, or group, along with its attributes. Some objects may even contain other objects within them. Each object has a unique name, and its definition is a set of characteristics and information by a schema, which determines the storage in the Active Directory.

Administrators can extend or modify the schema using the schema object when needed. However, because each schema object is integral to the definition of Active Directory objects, deactivating or changing them can fundamentally alter or disrupt a deployment. Modifying the schema affects the entire system automatically, and new objects cannot be deleted, only deactivated. Changing the schema usually requires planning.31

Forests, trees, and domains

In an Active Directory network, the framework that holds objects has different levels: the forest, tree, and domain. Domains within a deployment contain objects stored in a single replicable database, and the DNS name structure identifies their domains, the namespace. A domain is a logical group of network objects such as computers, users, and devices that share the same Active Directory database.

On the other hand, a tree is a collection of domains and domain trees in a contiguous namespace linked in a transitive trust hierarchy. The forest is at the top of the structure, a collection of trees with a standard global catalog, directory schema, logical structure, and directory configuration. The forest is a secure boundary that limits access to users, computers, groups, and other objects.

  Domain-Boston
  Domain-New York
  Domain-Philly
 Tree-Southern
  Domain-Atlanta
  Domain-Dallas
Domain-Dallas
 OU-Marketing
  Hewitt
  Aon
  Steve
 OU-Sales
  Bill
  Ralph
Example of the geographical organizing of zones of interest within trees and domains

Organizational units

The objects held within a domain can be grouped into organizational units (OUs).32 OUs can provide hierarchy to a domain, ease its administration, and can resemble the organization's structure in managerial or geographical terms. OUs can contain other OUs—domains are containers in this sense. Microsoft recommends using OUs rather than domains for structure and simplifying the implementation of policies and administration. The OU is the recommended level at which to apply group policies, which are Active Directory objects formally named group policy objects (GPOs), although policies can also be applied to domains or sites (see below). The OU is the level at which administrative powers are commonly delegated, but delegation can be performed on individual objects or attributes as well.

Organizational units do not each have a separate namespace. As a consequence, for compatibility with Legacy NetBios implementations, user accounts with an identical SamAccountName are not allowed within the same domain even if the accounts objects are in separate OUs. This is because SamAccountName, a user object attribute, must be unique within the domain.33 However, two users in different OUs can have the same common name (CN), the name under which they are stored in the directory itself such as "fred.staff-ou.domain" and "fred.student-ou.domain", where "staff-ou" and "student-ou" are the OUs.

In general, the reason for this lack of allowance for duplicate names through hierarchical directory placement is that Microsoft primarily relies on the principles of NetBIOS, which is a flat-namespace method of network object management that, for Microsoft software, goes all the way back to Windows NT 3.1 and MS-DOS LAN Manager. Allowing for duplication of object names in the directory, or completely removing the use of NetBIOS names, would prevent backward compatibility with legacy software and equipment. However, disallowing duplicate object names in this way is a violation of the LDAP RFCs on which Active Directory is supposedly based.

As the number of users in a domain increases, conventions such as "first initial, middle initial, last name" (Western order) or the reverse (Eastern order) fail for common family names like Li (李), Smith or Garcia. Workarounds include adding a digit to the end of the username. Alternatives include creating a separate ID system of unique employee/student ID numbers to use as account names in place of actual users' names and allowing users to nominate their preferred word sequence within an acceptable use policy.

Because duplicate usernames cannot exist within a domain, account name generation poses a significant challenge for large organizations that cannot be easily subdivided into separate domains, such as students in a public school system or university who must be able to use any computer across the network.

Shadow groups

In Microsoft's Active Directory, OUs do not confer access permissions, and objects placed within OUs are not automatically assigned access privileges based on their containing OU. It represents a design limitation specific to Active Directory, and other competing directories, such as Novell NDS, can set access privileges through object placement within an OU.

Active Directory requires a separate step for an administrator to assign an object in an OU as a group member also within that OU. Using only the OU location to determine access permissions is unreliable since the entity might not have been assigned to the group object for that OU yet.

A common workaround for an Active Directory administrator is to write a custom PowerShell or Visual Basic script to automatically create and maintain a user group for each OU in their Directory. The scripts run periodically to update the group to match the OU's account membership. However, they cannot instantly update the security groups anytime the directory changes, as occurs in competing directories, as security is directly implemented into the Directory. Such groups are known as shadow groups. Once created, these shadow groups are selectable in place of the OU in the administrative tools. Microsoft's Server 2008 reference documentation mentions shadow groups but does not provide instructions on creating them. Additionally, there are no available server methods or console snap-ins for managing these groups.34

An organization must determine the structure of its information infrastructure by dividing it into one or more domains and top-level OUs. This decision is critical and can base on various models such as business units, geographical locations, IT service, object type, or a combination of these models. The immediate purpose of organizing OUs is to simplify administrative delegation and, secondarily, to apply group policies. While OUs serve as an administrative boundary, the forest itself is the only security boundary. All other domains must trust any administrator in the forest to maintain security.35

Partitions

The Active Directory database is organized in partitions, each holding specific object types and following a particular replication pattern. Microsoft often refers to these partitions as 'naming contexts.36 The 'Schema' partition defines object classes and attributes within the forest. The 'Configuration' partition contains information on the physical structure and configuration of the forest (such as the site topology). Both replicate all domains in the forest. The 'Domain' partition holds all objects created in that domain and replicates only within it.

Physical structure

Sites are physical (rather than logical) groupings defined by one or more IP subnets.37 AD also defines connections, distinguishing low-speed (e.g., WAN, VPN) from high-speed (e.g., LAN) links. Site definitions are independent of the domain and OU structure and are shared across the forest. Sites play a crucial role in managing network traffic created by replication and directing clients to their nearest domain controllers (DCs). Microsoft Exchange Server 2007 uses the site topology for mail routing. Administrators can also define policies at the site level.

The Active Directory information is physically held on one or more peer domain controllers, replacing the NT PDC/BDC model. Each DC has a copy of the Active Directory. Member servers joined to Active Directory that are not domain controllers are called Member Servers.38 In the domain partition, a group of objects acts as copies of domain controllers set up as global catalogs. These global catalog servers offer a comprehensive list of all objects in the forest.3940

Global Catalog servers replicate all objects from all domains to themselves, providing an international listing of entities in the forest. However, to minimize replication traffic and keep the GC's database small, only selected attributes of each object are replicated, called the partial attribute set (PAS). The PAS can be modified by modifying the schema and marking features for replication to the GC.41 Earlier versions of Windows used NetBIOS to communicate. Active Directory is fully integrated with DNS and requires TCP/IP—DNS. To fully operate, the DNS server must support SRV resource records, also known as service records.

Replication

Active Directory uses multi-master replication to synchronize changes,42 meaning replicas pull changes from the server where the change occurred rather than being pushed to them.43 The Knowledge Consistency Checker (KCC) uses defined sites to manage traffic and create a replication topology of site links. Intra-site replication occurs frequently and automatically due to change notifications, which prompt peers to begin a pull replication cycle. Replication intervals between different sites are usually less consistent and don't usually use change notifications. However, it's possible to set it up to be the same as replication between locations on the same network if needed.

Each DS3, T1, and ISDN link can have a cost, and the KCC alters the site link topology accordingly. Replication may occur transitively through several site links on same-protocol site link bridges if the price is low. However, KCC automatically costs a direct site-to-site link lower than transitive connections. A bridgehead server in each zone can send updates to other DCs in the exact location to replicate changes between sites. To configure replication for Active Directory zones, activate DNS in the domain based on the site.

To replicate Active Directory, Remote Procedure Calls (RPC) over IP (RPC/IP) are used. SMTP is used to replicate between sites but only for modifications in the Schema, Configuration, or Partial Attribute Set (Global Catalog) GCs. It's not suitable for reproducing the default Domain partition.44

Implementation

Generally, a network utilizing Active Directory has more than one licensed Windows server computer. Backup and restore of Active Directory are possible for a network with a single domain controller.45 However, Microsoft recommends more than one domain controller to provide automatic failover protection of the directory.46 Domain controllers are ideally single-purpose for directory operations only and should not run any other software or role.47

Since certain Microsoft products, like SQL Server4849 and Exchange,50 can interfere with the operation of a domain controller, isolation of these products on additional Windows servers is advised. Combining them can complicate the configuration and troubleshooting of the domain controller or the other installed software more complex.51 If planning to implement Active Directory, a business should purchase multiple Windows server licenses to have at least two separate domain controllers. Administrators should consider additional domain controllers for performance or redundancy and individual servers for tasks like file storage, Exchange, and SQL Server52 since this will guarantee that all server roles are adequately supported.

One way to lower the physical hardware costs is by using virtualization. However, for proper failover protection, Microsoft recommends not running multiple virtualized domain controllers on the same physical hardware.53

Database

The Active-Directory database, the directory store, in Windows 2000 Server uses the JET Blue-based Extensible Storage Engine (ESE98). Each domain controller's database is limited to 16 terabytes and 2 billion objects (but only 1 billion security principals). Microsoft has created NTDS databases with more than 2 billion objects.54 NT4's Security Account Manager could support up to 40,000 objects. It has two main tables: the data table and the link table. Windows Server 2003 added a third main table for security descriptor single instancing.55

Programs may access the features of Active Directory56 via the COM interfaces provided by Active Directory Service Interfaces.57

Trusting

To allow users in one domain to access resources in another, Active Directory uses trusts.58

Trusts inside a forest are automatically created when domains are created. The forest sets the default boundaries of trust, and implicit, transitive trust is automatic for all domains within a forest.

Terminology

One-way trust One domain allows access to users on another domain, but the other domain does not allow access to users on the first domain. Two-way trust Two domains allow access to users on both domains. Trusted domain The domain that is trusted; whose users have access to the trusting domain. Transitive trust A trust that can extend beyond two domains to other trusted domains in the forest. Intransitive trust A one way trust that does not extend beyond two domains. Explicit trust A trust that an admin creates. It is not transitive and is one way only. Cross-link trust An explicit trust between domains in different trees or the same tree when a descendant/ancestor (child/parent) relationship does not exist between the two domains. Shortcut Joins two domains in different trees, transitive, one- or two-way. Forest trust Applies to the entire forest. Transitive, one- or two-way. Realm Can be transitive or nontransitive (intransitive), one- or two-way. External Connect to other forests or non-Active Directory domains. Nontransitive, one- or two-way.59 PAM trust A one-way trust used by Microsoft Identity Manager from a (possibly low-level) production forest to a (Windows Server 2016 functionality level) 'bastion' forest, which issues time-limited group memberships.6061

Management tools

Microsoft Active Directory management tools include:

  • Active Directory Administrative Center (Introduced with Windows Server 2012 and above),
  • Active Directory Users and Computers,
  • Active Directory Domains and Trusts,
  • Active Directory Sites and Services,
  • ADSI Edit,
  • Local Users and Groups,
  • Active Directory Schema snap-ins for Microsoft Management Console (MMC),
  • SysInternals ADExplorer.

These management tools may not provide enough functionality for efficient workflow in large environments. Some third-party tools extend the administration and management capabilities. They provide essential features for a more convenient administration process, such as automation, reports, integration with other services, etc.

Unix integration

Varying levels of interoperability with Active Directory can be achieved on most Unix-like operating systems (including Unix, Linux, Mac OS X or Java and Unix-based programs) through standards-compliant LDAP clients, but these systems usually do not interpret many attributes associated with Windows components, such as Group Policy and support for one-way trusts.

Third parties offer Active Directory integration for Unix-like platforms, including:

The schema additions shipped with Windows Server 2003 R2 include attributes that map closely enough to RFC 2307 to be generally usable. The reference implementation of RFC 2307, nss_ldap and pam_ldap provided by PADL.com, support these attributes directly. The default schema for group membership complies with RFC 2307bis (proposed).66 Windows Server 2003 R2 includes a Microsoft Management Console snap-in that creates and edits the attributes.

An alternative option is to use another directory service as non-Windows clients authenticate to this while Windows Clients authenticate to Active Directory. Non-Windows clients include 389 Directory Server (formerly Fedora Directory Server, FDS), ViewDS v7.2 XML Enabled Directory, and Sun Microsystems Sun Java System Directory Server. The latter two are both able to perform two-way synchronization with Active Directory and thus provide a "deflected" integration.

Another option is to use OpenLDAP with its translucent overlay, which can extend entries in any remote LDAP server with additional attributes stored in a local database. Clients pointed at the local database see entries containing both the remote and local attributes, while the remote database remains completely untouched.

Administration (querying, modifying, and monitoring) of Active Directory can be achieved via many scripting languages, including PowerShell, VBScript, JScript/JavaScript, Perl, Python, and Ruby.67686970 Free and non-free Active Directory administration tools can help to simplify and possibly automate Active Directory management tasks.

Since October 2017 Amazon AWS offers integration with Microsoft Active Directory.71

See also

Wikiversity has learning resources about Active Directory

References

  1. "Directory System Agent". MSDN Library. Microsoft. Retrieved 23 April 2014. http://msdn.microsoft.com/en-us/library/ms675902%28v=vs.85%29.aspx

  2. Solomon, David A.; Russinovich, Mark (2005). "Chapter 13". Microsoft Windows Internals: Microsoft Windows Server 2003, Windows XP, and Windows 2000 (4th ed.). Redmond, Washington: Microsoft Press. p. 840. ISBN 0-7356-1917-4. 0-7356-1917-4

  3. Hynes, Byron (November 2006). "The Future of Windows: Directory Services in Windows Server "Longhorn"". TechNet Magazine. Microsoft. Archived from the original on 30 April 2020. Retrieved 30 April 2020. https://technet.microsoft.com/en-us/magazine/2006.11.futureofwindows.aspx

  4. "Active Directory on a Windows Server 2003 Network". Active Directory Collection. Microsoft. 13 March 2003. Archived from the original on 30 April 2020. Retrieved 25 December 2010. https://technet.microsoft.com/en-us/library/cc780036(WS.10).aspx#w2k3tr_ad_over_qbjd

  5. Rackspace Support (27 April 2016). "Install Active Directory Domain Services on Windows Server 2008 R2 Enterprise 64-bit". Rackspace. Rackspace US, Inc. Archived from the original on 30 April 2020. Retrieved 22 September 2016. https://support.rackspace.com/how-to/installing-active-directory-on-windows-server-2012/

  6. "Microsoft Kerberos - Win32 apps". docs.microsoft.com. 7 January 2021. https://docs.microsoft.com/en-us/windows/win32/secauthn/microsoft-kerberos

  7. "Domain Name System (DNS)". docs.microsoft.com. 10 January 2022. https://docs.microsoft.com/en-us/windows-server/networking/dns/dns-top

  8. King, Robert (2003). Mastering Active directory for Windows server 2003 (3rd ed.). Alameda, Calif.: Sybex. p. 159. ISBN 978-0-7821-5201-2. OCLC 62876800. 978-0-7821-5201-2

  9. Howes, T.; Smith, M. (August 1995). "The LDAP Application Program Interface". The Internet Engineering Task Force (IETF). Archived from the original on 30 April 2020. Retrieved 26 November 2013. http://www.ietf.org/rfc/rfc1823.txt

  10. Howard, L. (March 1998). "An Approach for Using LDAP as a Network Information Service". Internet Engineering Task Force (IETF). Archived from the original on 30 April 2020. Retrieved 26 November 2013. http://www.ietf.org/rfc/rfc2307.txt

  11. Zeilenga, K. (February 2001). "LDAP Password Modify Extended Operation". The Internet Engineering Task Force (IETF). Archived from the original on 30 April 2020. Retrieved 26 November 2013. http://www.ietf.org/rfc/rfc3062.txt

  12. Zeilenga, K.; Choi, J.H. (June 2006). "The Lightweight Directory Access Protocol (LDAP) Content Synchronization Operation". The Internet Engineering Task Force (IETF). Archived from the original on 30 April 2020. Retrieved 26 November 2013. http://www.ietf.org/rfc/rfc4533.txt

  13. Daniel Petri (8 January 2009). "Active Directory Client (dsclient) for Win98/NT". https://petri.com/dsclient_for_win98_nt

  14. "Dsclient.exe connects Windows 9x/NT PCs to Active Directory". 5 June 2003. https://www.techrepublic.com/article/dsclientexe-connects-windows-9x-nt-pcs-to-active-directory/

  15. Thomas, Guy (29 November 2000). "Windows Server 2008 - New Features". ComputerPerformance.co.uk. Computer Performance Ltd. Archived from the original on 2 September 2019. Retrieved 30 April 2020. http://www.computerperformance.co.uk/Longhorn/longhorn_new_features.htm

  16. Thomas, Guy (29 November 2000). "Windows Server 2008 - New Features". ComputerPerformance.co.uk. Computer Performance Ltd. Archived from the original on 2 September 2019. Retrieved 30 April 2020. http://www.computerperformance.co.uk/Longhorn/longhorn_new_features.htm

  17. Hynes, Byron (November 2006). "The Future of Windows: Directory Services in Windows Server "Longhorn"". TechNet Magazine. Microsoft. Archived from the original on 30 April 2020. Retrieved 30 April 2020. https://technet.microsoft.com/en-us/magazine/2006.11.futureofwindows.aspx

  18. "What's New in Active Directory in Windows Server". Windows Server 2012 R2 and Windows Server 2012 Tech Center. Microsoft. 31 August 2016. https://technet.microsoft.com/en-us/library/dn268294.aspx

  19. Hynes, Byron (November 2006). "The Future of Windows: Directory Services in Windows Server "Longhorn"". TechNet Magazine. Microsoft. Archived from the original on 30 April 2020. Retrieved 30 April 2020. https://technet.microsoft.com/en-us/magazine/2006.11.futureofwindows.aspx

  20. "Compare Active Directory-based services in Azure". docs.microsoft.com. 3 April 2023. https://docs.microsoft.com/en-us/azure/active-directory-domain-services/compare-identity-solutions

  21. "AD LDS". Microsoft. Retrieved 28 April 2009. http://msdn.microsoft.com/en-us/library/aa705886(VS.85).aspx

  22. "AD LDS versus AD DS". Microsoft. 2 July 2012. Retrieved 25 February 2013. https://technet.microsoft.com/en-us/library/cc755080(v=ws.10).aspx

  23. Zacker, Craig (2003). "11: Creating and Managing Digital Certificates". In Harding, Kathy; Jean, Trenary; Linda, Zacker (eds.). Planning and Maintaining a Microsoft Windows server 2003 Network Infrastructure. Redmond, WA: Microsoft Press. pp. 11–16. ISBN 0-7356-1893-3. 0-7356-1893-3

  24. "Active Directory Certificate Services Overview". Microsoft TechNet. Microsoft. Retrieved 24 November 2015. https://technet.microsoft.com/en-us/library/cc731564%28v=ws.10%29.aspx

  25. "Overview of authentication in Power Apps portals". Microsoft Docs. Microsoft. Retrieved 30 January 2022. https://docs.microsoft.com/en-us/powerapps/maker/portals/configure/configure-portal-authentication

  26. "How to Replace the SSL, Service Communications, Token-Signing, and Token-Decrypting Certificates". TechNet. Microsoft. Retrieved 30 January 2022. https://social.technet.microsoft.com/wiki/contents/articles/2554.ad-fs-how-to-replace-the-ssl-service-communications-token-signing-and-token-decrypting-certificates.aspx

  27. "Step 1: Preinstallation Tasks". TechNet. Microsoft. Retrieved 21 October 2021. https://technet.microsoft.com/en-us/library/cc771806%28v=ws.10%29.aspx

  28. "Test Lab Guide: Deploying an AD RMS Cluster". Microsoft Docs. Microsoft. 31 August 2016. Retrieved 30 January 2022. https://docs.microsoft.com/en-us/previous-versions/windows/it-pro/windows-server-2012-r2-and-2012/jj134037(v=ws.11)

  29. "Directory System Agent". MSDN Library. Microsoft. Retrieved 23 April 2014. http://msdn.microsoft.com/en-us/library/ms675902%28v=vs.85%29.aspx

  30. Solomon, David A.; Russinovich, Mark (2005). "Chapter 13". Microsoft Windows Internals: Microsoft Windows Server 2003, Windows XP, and Windows 2000 (4th ed.). Redmond, Washington: Microsoft Press. p. 840. ISBN 0-7356-1917-4. 0-7356-1917-4

  31. Windows Server 2003: Active Directory Infrastructure. Microsoft Press. 2003. pp. 1–8–1–9.

  32. "Organizational Units". Distributed Systems Resource Kit (TechNet). Microsoft. 2011. An organizational unit in Active Directory is analogous to a directory in the file system https://technet.microsoft.com/en-us/library/cc978003.aspx

  33. "SamAccountName is always unique in a Windows domain... or is it?". Joeware. 4 January 2012. Retrieved 18 September 2013. examples of how multiple AD objects can be created with the same SamAccountName http://blog.joeware.net/2012/01/04/2357/

  34. Microsoft Server 2008 Reference, discussing shadow groups used for fine-grained password policies: https://technet.microsoft.com/en-us/library/cc770394%28WS.10%29.aspx https://technet.microsoft.com/en-us/library/cc770394%28WS.10%29.aspx

  35. "Specifying Security and Administrative Boundaries". Microsoft Corporation. 23 January 2005. However, service administrators have abilities that cross domain boundaries. For this reason, the forest is the ultimate security boundary, not the domain. https://technet.microsoft.com/en-us/library/cc755979(WS.10).aspx

  36. Andreas Luther (9 December 2009). "Active Directory Replication Traffic". Microsoft Corporation. Retrieved 26 May 2010. The Active Directory is made up of one or more naming contexts or partitions. https://technet.microsoft.com/en-us/library/bb742457.aspx

  37. "Sites overview". Microsoft Corporation. 21 January 2005. A site is a set of well-connected subnets. https://technet.microsoft.com/en-us/library/cc782048(WS.10).aspx

  38. "Planning for domain controllers and member servers". Microsoft Corporation. 21 January 2005. [...] member servers, [...] belong to a domain but do not contain a copy of the Active Directory data. https://technet.microsoft.com/en-us/library/cc737059(WS.10).aspx

  39. "What Is the Global Catalog?". Microsoft Corporation. 10 December 2009. [...] a domain controller can locate only the objects in its domain. [...] The global catalog provides the ability to locate objects from any domain [...] https://technet.microsoft.com/en-us/library/cc728188(WS.10).aspx

  40. "Global Catalog". Microsoft Corporation. https://msdn.microsoft.com/en-us/library/ms676908%28v=vs.85%29.aspx

  41. "Attributes Included in the Global Catalog". Microsoft Corporation. 26 August 2010. The isMemberOfPartialAttributeSet attribute of an attributeSchema object is set to TRUE if the attribute is replicated to the global catalog. [...] When deciding whether or not to place an attribute in the global catalog remember that you are trading increased replication and increased disk storage on global catalog servers for, potentially, faster query performance. http://msdn.microsoft.com/en-us/library/ms675160%28VS.85%29.aspx

  42. "Directory data store". Microsoft Corporation. 21 January 2005. Active Directory uses four distinct directory partition types to store [...] data. Directory partitions contain domain, configuration, schema, and application data. https://technet.microsoft.com/en-us/library/cc736627(WS.10).aspx

  43. "What Is the Active Directory Replication Model?". Microsoft Corporation. 28 March 2003. Domain controllers request (pull) changes rather than send (push) changes that might not be needed. https://technet.microsoft.com/en-us/library/cc737314(WS.10).aspx

  44. "What Is Active Directory Replication Topology?". Microsoft Corporation. 28 March 2003. SMTP can be used to transport nondomain replication [...] https://technet.microsoft.com/en-us/library/cc775549(WS.10).aspx

  45. "Active Directory Backup and Restore". TechNet. Microsoft. 9 December 2009. Retrieved 5 February 2014. https://technet.microsoft.com/en-us/library/bb727048.aspx

  46. "AD DS: All domains should have at least two functioning domain controllers for redundancy". TechNet. Microsoft. Retrieved 5 February 2014. https://technet.microsoft.com/en-us/library/dd378865%28v=ws.10%29.aspx

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