323 lines
10 KiB
Markdown
323 lines
10 KiB
Markdown
# Authentication through LDAP
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## Overview
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The LDAP connector allows email/password based authentication, backed by a LDAP directory.
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The connector executes two primary queries:
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1. Finding the user based on the end user's credentials.
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2. Searching for groups using the user entry.
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## Getting started
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The dex repo contains a basic LDAP setup using [OpenLDAP][openldap].
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First start the LDAP server using the example script. This will run the OpenLDAP daemon and seed it with a initial set of users.
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```
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./scripts/slapd.sh
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```
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This script sets the LDAP daemon to debug mode, and is expected to print several error messages which are normal. Once the server is up, run dex.
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```
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./bin/dex serve examples/config-ldap.yaml
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```
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Then run the OAuth client in another terminal.
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```
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./bin/example-app
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```
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Go to [http://localhost:5555](http://localhost:5555), login and enter the username and password of the LDAP user: `janedoe@example.com`/`foo`. Add the "groups" scope as part of the initial redirect to add group information from the LDAP server.
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## Security considerations
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Dex attempts to bind with the backing LDAP server using the end user's _plain text password_. Though some LDAP implementations allow passing hashed passwords, dex doesn't support hashing and instead _strongly recommends that all administrators just use TLS_. This can often be achieved by using port 636 instead of 389, and administrators that choose 389 are actively leaking passwords.
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Dex currently allows insecure connections because the project is still verifying that dex works with the wide variety of LDAP implementations. However, dex may remove this transport option, and _users who configure LDAP login using 389 are not covered by any compatibility guarantees with future releases._
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## Configuration
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User entries are expected to have an email attribute (configurable through `emailAttr`), and a display name attribute (configurable through `nameAttr`). `*Attr` attributes could be set to "DN" in situations where it is needed but not available elsewhere, and if "DN" attribute does not exist in the record.
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For the purposes of configuring this connector, "DN" is case-sensitive and should always be capitalised.
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The following is an example config file that can be used by the LDAP connector to authenticate a user.
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```yaml
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connectors:
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- type: ldap
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# Required field for connector id.
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id: ldap
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# Required field for connector name.
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name: LDAP
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config:
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# Host and optional port of the LDAP server in the form "host:port".
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# If the port is not supplied, it will be guessed based on "insecureNoSSL",
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# and "startTLS" flags. 389 for insecure or StartTLS connections, 636
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# otherwise.
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host: ldap.example.com:636
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# Following field is required if the LDAP host is not using TLS (port 389).
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# Because this option inherently leaks passwords to anyone on the same network
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# as dex, THIS OPTION MAY BE REMOVED WITHOUT WARNING IN A FUTURE RELEASE.
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#
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# insecureNoSSL: true
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# If a custom certificate isn't provide, this option can be used to turn on
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# TLS certificate checks. As noted, it is insecure and shouldn't be used outside
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# of explorative phases.
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#
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# insecureSkipVerify: true
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# When connecting to the server, connect using the ldap:// protocol then issue
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# a StartTLS command. If unspecified, connections will use the ldaps:// protocol
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#
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# startTLS: true
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# Path to a trusted root certificate file. Default: use the host's root CA.
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rootCA: /etc/dex/ldap.ca
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# A raw certificate file can also be provided inline.
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# rootCAData: ( base64 encoded PEM file )
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# The DN and password for an application service account. The connector uses
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# these credentials to search for users and groups. Not required if the LDAP
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# server provides access for anonymous auth.
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# Please note that if the bind password contains a `$`, it has to be saved in an
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# environment variable which should be given as the value to `bindPW`.
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bindDN: uid=seviceaccount,cn=users,dc=example,dc=com
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bindPW: password
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# The attribute to display in the provided password prompt. If unset, will
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# display "Username"
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usernamePrompt: SSO Username
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# User search maps a username and password entered by a user to a LDAP entry.
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userSearch:
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# BaseDN to start the search from. It will translate to the query
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# "(&(objectClass=person)(uid=<username>))".
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baseDN: cn=users,dc=example,dc=com
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# Optional filter to apply when searching the directory.
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filter: "(objectClass=person)"
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# username attribute used for comparing user entries. This will be translated
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# and combined with the other filter as "(<attr>=<username>)".
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username: uid
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# The following three fields are direct mappings of attributes on the user entry.
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# String representation of the user.
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idAttr: uid
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# Required. Attribute to map to Email.
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emailAttr: mail
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# Maps to display name of users. No default value.
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nameAttr: name
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# Group search queries for groups given a user entry.
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groupSearch:
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# BaseDN to start the search from. It will translate to the query
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# "(&(objectClass=group)(member=<user uid>))".
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baseDN: cn=groups,dc=freeipa,dc=example,dc=com
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# Optional filter to apply when searching the directory.
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filter: "(objectClass=group)"
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# Following two fields are used to match a user to a group. It adds an additional
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# requirement to the filter that an attribute in the group must match the user's
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# attribute value.
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userAttr: uid
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groupAttr: member
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# Represents group name.
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nameAttr: name
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```
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The LDAP connector first initializes a connection to the LDAP directory using the `bindDN` and `bindPW`. It then tries to search for the given `username` and bind as that user to verify their password.
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Searches that return multiple entries are considered ambiguous and will return an error.
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## Example: Mapping a schema to a search config
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Writing a search configuration often involves mapping an existing LDAP schema to the various options dex provides. To query an existing LDAP schema install the OpenLDAP tool `ldapsearch`. For `rpm` based distros run:
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```
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sudo dnf install openldap-clients
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```
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For `apt-get`:
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```
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sudo apt-get install ldap-utils
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```
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For smaller user directories it may be practical to dump the entire contents and search by hand.
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```
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ldapsearch -x -h ldap.example.org -b 'dc=example,dc=org' | less
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```
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First, find a user entry. User entries declare users who can login to LDAP connector using username and password.
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```
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dn: uid=jdoe,cn=users,cn=compat,dc=example,dc=org
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cn: Jane Doe
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objectClass: posixAccount
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objectClass: ipaOverrideTarget
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objectClass: top
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gidNumber: 200015
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gecos: Jane Doe
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uidNumber: 200015
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loginShell: /bin/bash
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homeDirectory: /home/jdoe
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mail: jane.doe@example.com
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uid: janedoe
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```
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Compose a user search which returns this user.
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```yaml
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userSearch:
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# The directory directly above the user entry.
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baseDN: cn=users,cn=compat,dc=example,dc=org
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filter: "(objectClass=posixAccount)"
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# Expect user to enter "janedoe" when logging in.
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username: uid
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# Use the full DN as an ID.
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idAttr: DN
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# When an email address is not available, use another value unique to the user, like uid.
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emailAttr: mail
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nameAttr: gecos
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```
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Second, find a group entry.
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```
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dn: cn=developers,cn=groups,cn=compat,dc=example,dc=org
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memberUid: janedoe
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memberUid: johndoe
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gidNumber: 200115
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objectClass: posixGroup
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objectClass: ipaOverrideTarget
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objectClass: top
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cn: developers
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```
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Group searches must match a user attribute to a group attribute. In this example, the search returns users whose uid is found in the group's list of memberUid attributes.
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```yaml
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groupSearch:
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# The directory directly above the group entry.
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baseDN: cn=groups,cn=compat,dc=example,dc=org
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filter: "(objectClass=posixGroup)"
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# The group search needs to match the "uid" attribute on
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# the user with the "memberUid" attribute on the group.
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userAttr: uid
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groupAttr: memberUid
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# Unique name of the group.
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nameAttr: cn
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```
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To extract group specific information the `DN` can be used in the `userAttr` field.
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```
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# Top level object example.coma in LDIF file.
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dn: dc=example,dc=com
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objectClass: top
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objectClass: dcObject
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objectClass: organization
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dc: example
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```
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The following is an example of a group query would match any entry with member=<user DN>:
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```yaml
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groupSearch:
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# BaseDN to start the search from. It will translate to the query
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# "(&(objectClass=group)(member=<user DN>))".
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baseDN: cn=groups,cn=compat,dc=example,dc=com
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# Optional filter to apply when searching the directory.
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filter: "(objectClass=group)"
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userAttr: DN # Use "DN" here not "uid"
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groupAttr: member
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nameAttr: name
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```
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## Example: Searching a FreeIPA server with groups
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The following configuration will allow the LDAP connector to search a FreeIPA directory using an LDAP filter.
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```yaml
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connectors:
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- type: ldap
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id: ldap
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name: LDAP
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config:
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# host and port of the LDAP server in form "host:port".
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host: freeipa.example.com:636
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# freeIPA server's CA
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rootCA: ca.crt
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userSearch:
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# Would translate to the query "(&(objectClass=posixAccount)(uid=<username>))".
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baseDN: cn=users,dc=freeipa,dc=example,dc=com
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filter: "(objectClass=posixAccount)"
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username: uid
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idAttr: uid
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# Required. Attribute to map to Email.
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emailAttr: mail
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# Entity attribute to map to display name of users.
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groupSearch:
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# Would translate to the query "(&(objectClass=group)(member=<user uid>))".
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baseDN: cn=groups,dc=freeipa,dc=example,dc=com
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filter: "(objectClass=group)"
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userAttr: uid
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groupAttr: member
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nameAttr: name
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```
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If the search finds an entry, it will attempt to use the provided password to bind as that user entry.
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[openldap]: https://www.openldap.org/
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## Example: Searching a Active Directory server with groups
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The following configuration will allow the LDAP connector to search a Active Directory using an LDAP filter.
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```yaml
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connectors:
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- type: ldap
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name: ActiveDirectory
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id: ad
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config:
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host: ad.example.com:636
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insecureNoSSL: false
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insecureSkipVerify: true
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bindDN: cn=Administrator,cn=users,dc=example,dc=com
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bindPW: admin0!
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usernamePrompt: Email Address
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userSearch:
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baseDN: cn=Users,dc=example,dc=com
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filter: "(objectClass=person)"
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username: userPrincipalName
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idAttr: DN
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emailAttr: userPrincipalName
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nameAttr: cn
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groupSearch:
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baseDN: cn=Users,dc=example,dc=com
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filter: "(objectClass=group)"
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userAttr: DN
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groupAttr: member
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nameAttr: cn
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```
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