tls.sdf revision 1.1.1.11 1 1.1.1.5 tron # $OpenLDAP$
2 1.1.1.11 christos # Copyright 1999-2024 The OpenLDAP Foundation, All Rights Reserved.
3 1.1 lukem # COPYING RESTRICTIONS APPLY, see COPYRIGHT.
4 1.1 lukem
5 1.1 lukem H1: Using TLS
6 1.1 lukem
7 1.1 lukem OpenLDAP clients and servers are capable of using the
8 1.1 lukem {{TERM[expand]TLS}} ({{TERM:TLS}}) framework to provide
9 1.1 lukem integrity and confidentiality protections and to support
10 1.1 lukem LDAP authentication using the {{TERM:SASL}} {{TERM:EXTERNAL}} mechanism.
11 1.1 lukem TLS is defined in {{REF:RFC4346}}.
12 1.1 lukem
13 1.1.1.10 christos Note: For generating certificates, please reference {{URL:http://www.openldap.org/faq/data/cache/185.html}}
14 1.1 lukem
15 1.1 lukem H2: TLS Certificates
16 1.1 lukem
17 1.1 lukem TLS uses {{TERM:X.509}} certificates to carry client and server
18 1.1 lukem identities. All servers are required to have valid certificates,
19 1.1 lukem whereas client certificates are optional. Clients must have a
20 1.1 lukem valid certificate in order to authenticate via SASL EXTERNAL.
21 1.1 lukem For more information on creating and managing certificates,
22 1.1.1.10 christos see the {{PRD:OpenSSL}} or {{PRD:GnuTLS}} documentation,
23 1.1.1.5 tron depending on which TLS implementation libraries you are using.
24 1.1 lukem
25 1.1 lukem H3: Server Certificates
26 1.1 lukem
27 1.1 lukem The {{TERM:DN}} of a server certificate must use the {{EX:CN}}
28 1.1 lukem attribute to name the server, and the {{EX:CN}} must carry the
29 1.1 lukem server's fully qualified domain name. Additional alias names and
30 1.1 lukem wildcards may be present in the {{EX:subjectAltName}} certificate
31 1.1 lukem extension. More details on server certificate names are in
32 1.1 lukem {{REF:RFC4513}}.
33 1.1 lukem
34 1.1 lukem H3: Client Certificates
35 1.1 lukem
36 1.1 lukem The DN of a client certificate can be used directly as an
37 1.1 lukem authentication DN.
38 1.1 lukem Since X.509 is a part of the {{TERM:X.500}} standard and LDAP
39 1.1 lukem is also based on X.500, both use the same DN formats and
40 1.1 lukem generally the DN in a user's X.509 certificate should be
41 1.1 lukem identical to the DN of their LDAP entry. However, sometimes
42 1.1 lukem the DNs may not be exactly the same, and so the mapping
43 1.1 lukem facility described in
44 1.1 lukem {{SECT:Mapping Authentication Identities}}
45 1.1 lukem can be applied to these DNs as well.
46 1.1 lukem
47 1.1 lukem H2: TLS Configuration
48 1.1 lukem
49 1.1 lukem After obtaining the required certificates, a number of options must
50 1.1 lukem be configured on both the client and the server to enable TLS and
51 1.1 lukem make use of the certificates. At a minimum, the clients must be
52 1.1 lukem configured with the name of the file containing all of the
53 1.1 lukem {{TERM[expand]CA}} (CA) certificates it will trust. The server must
54 1.1 lukem be configured with the {{TERM:CA}} certificates and also its own
55 1.1 lukem server certificate and private key.
56 1.1 lukem
57 1.1 lukem Typically a single CA will have issued the server certificate
58 1.1 lukem and all of the trusted client certificates, so the server only
59 1.1 lukem needs to trust that one signing CA. However, a client may wish
60 1.1 lukem to connect to a variety of secure servers managed by different
61 1.1 lukem organizations, with server certificates generated by many
62 1.1 lukem different CAs. As such, a client is likely to need a list of
63 1.1 lukem many different trusted CAs in its configuration.
64 1.1 lukem
65 1.1 lukem H3: Server Configuration
66 1.1 lukem
67 1.1 lukem The configuration directives for slapd belong in the global directives
68 1.1 lukem section of {{slapd.conf}}(5).
69 1.1 lukem
70 1.1 lukem H4: TLSCACertificateFile <filename>
71 1.1 lukem
72 1.1 lukem This directive specifies the {{TERM:PEM}}-format file containing
73 1.1 lukem certificates for the CA's that slapd will trust. The certificate for
74 1.1 lukem the CA that signed the server certificate must be included among
75 1.1 lukem these certificates. If the signing CA was not a top-level (root) CA,
76 1.1 lukem certificates for the entire sequence of CA's from the signing CA to
77 1.1 lukem the top-level CA should be present. Multiple certificates are simply
78 1.1 lukem appended to the file; the order is not significant.
79 1.1 lukem
80 1.1 lukem H4: TLSCACertificatePath <path>
81 1.1 lukem
82 1.1 lukem This directive specifies the path of a directory that contains
83 1.1 lukem individual {{TERM:CA}} certificates in separate files. In addition,
84 1.1.1.10 christos this directory must be specially managed using the OpenSSL {{rehash}}
85 1.1.1.10 christos command. When using this feature, the OpenSSL library will attempt to
86 1.1 lukem locate certificate files based on a hash of their name and serial number.
87 1.1.1.10 christos The OpenSSL {{rehash}} command is used to generate symbolic links with the
88 1.1 lukem hashed names that point to the actual certificate files. As such,
89 1.1 lukem this option can only be used with a filesystem that actually supports
90 1.1 lukem symbolic links. In general, it is simpler to use the
91 1.1 lukem {{EX:TLSCACertificateFile}} directive instead.
92 1.1 lukem
93 1.1 lukem H4: TLSCertificateFile <filename>
94 1.1 lukem
95 1.1 lukem This directive specifies the file that contains the slapd server
96 1.1 lukem certificate. Certificates are generally public information and
97 1.1 lukem require no special protection.
98 1.1 lukem
99 1.1 lukem H4: TLSCertificateKeyFile <filename>
100 1.1 lukem
101 1.1 lukem This directive specifies the file that contains the private key
102 1.1 lukem that matches the certificate stored in the {{EX:TLSCertificateFile}}
103 1.1 lukem file. Private keys themselves are sensitive data and are usually
104 1.1 lukem password encrypted for protection. However, the current implementation
105 1.1 lukem doesn't support encrypted keys so the key must not be encrypted
106 1.1 lukem and the file itself must be protected carefully.
107 1.1 lukem
108 1.1 lukem H4: TLSCipherSuite <cipher-suite-spec>
109 1.1 lukem
110 1.1 lukem This directive configures what ciphers will be accepted and the
111 1.1 lukem preference order. {{EX:<cipher-suite-spec>}} should be a cipher
112 1.1 lukem specification for OpenSSL. You can use the command
113 1.1 lukem
114 1.1 lukem > openssl ciphers -v ALL
115 1.1 lukem
116 1.1 lukem to obtain a verbose list of available cipher specifications.
117 1.1.1.2 lukem
118 1.1 lukem Besides the individual cipher names, the specifiers {{EX:HIGH}},
119 1.1 lukem {{EX:MEDIUM}}, {{EX:LOW}}, {{EX:EXPORT}}, and {{EX:EXPORT40}}
120 1.1 lukem may be helpful, along with {{EX:TLSv1}}, {{EX:SSLv3}},
121 1.1 lukem and {{EX:SSLv2}}.
122 1.1 lukem
123 1.1.1.5 tron To obtain the list of ciphers in GnuTLS use:
124 1.1.1.5 tron
125 1.1.1.5 tron > gnutls-cli -l
126 1.1.1.5 tron
127 1.1 lukem H4: TLSRandFile <filename>
128 1.1 lukem
129 1.1 lukem This directive specifies the file to obtain random bits from when
130 1.1 lukem {{FILE:/dev/urandom}} is not available. If the system provides
131 1.1 lukem {{FILE:/dev/urandom}} then this option is not needed, otherwise a
132 1.1 lukem source of random data must be configured. Some systems (e.g. Linux)
133 1.1 lukem provide {{FILE:/dev/urandom}} by default, while others (e.g. Solaris)
134 1.1 lukem require the installation of a patch to provide it, and others may
135 1.1 lukem not support it at all. In the latter case, EGD or PRNGD should be
136 1.1 lukem installed, and this directive should specify the name of the EGD/PRNGD
137 1.1 lukem socket. The environment variable {{EX:RANDFILE}} can also be used
138 1.1 lukem to specify the filename. Also, in the absence of these options, the
139 1.1 lukem {{EX:.rnd}} file in the slapd user's home directory may be used if
140 1.1 lukem it exists. To use the {{EX:.rnd}} file, just create the file and
141 1.1 lukem copy a few hundred bytes of arbitrary data into the file. The file
142 1.1 lukem is only used to provide a seed for the pseudo-random number generator,
143 1.1 lukem and it doesn't need very much data to work.
144 1.1 lukem
145 1.1.1.10 christos This directive is ignored with GnuTLS.
146 1.1.1.5 tron
147 1.1.1.7 christos H4: TLSDHParamFile <filename>
148 1.1 lukem
149 1.1 lukem This directive specifies the file that contains parameters for
150 1.1 lukem Diffie-Hellman ephemeral key exchange. This is required in order
151 1.1.1.7 christos to use DHE-based cipher suites, including all DSA-based suites (i.e.
152 1.1.1.7 christos {{EX:TLSCertificateKeyFile}} points to a DSA key), and RSA when the 'key
153 1.1.1.7 christos encipherment' key usage is not specified in the certificate. Parameters can be
154 1.1.1.7 christos generated using the following command
155 1.1 lukem
156 1.1 lukem > openssl dhparam [-dsaparam] -out <filename> <numbits>
157 1.1.1.7 christos or
158 1.1.1.7 christos > certtool --generate-dh-params --bits <numbits> --outfile <filename>
159 1.1 lukem
160 1.1.1.8 christos H4: TLSECName <name>
161 1.1.1.8 christos
162 1.1.1.8 christos This directive specifies the curve to use for Elliptic Curve
163 1.1.1.11 christos Diffie-Hellman ephemeral key exchange. This option is only needed
164 1.1.1.8 christos to use ECDHE-based cipher suites in OpenSSL. The names of supported
165 1.1.1.8 christos curves may be shown using the following command
166 1.1.1.8 christos
167 1.1.1.8 christos > openssl ecparam -list_curves
168 1.1.1.8 christos
169 1.1.1.11 christos See the OpenSSL documentation for details.
170 1.1.1.10 christos This directive is not used for GnuTLS.
171 1.1.1.8 christos For GnuTLS the curves may be specified in the ciphersuite.
172 1.1.1.8 christos
173 1.1 lukem H4: TLSVerifyClient { never | allow | try | demand }
174 1.1 lukem
175 1.1 lukem This directive specifies what checks to perform on client certificates
176 1.1 lukem in an incoming TLS session, if any. This option is set to {{EX:never}}
177 1.1 lukem by default, in which case the server never asks the client for a
178 1.1 lukem certificate. With a setting of {{EX:allow}} the server will ask
179 1.1 lukem for a client certificate; if none is provided the session proceeds
180 1.1 lukem normally. If a certificate is provided but the server is unable to
181 1.1 lukem verify it, the certificate is ignored and the session proceeds
182 1.1 lukem normally, as if no certificate had been provided. With a setting of
183 1.1 lukem {{EX:try}} the certificate is requested, and if none is provided,
184 1.1 lukem the session proceeds normally. If a certificate is provided and it
185 1.1 lukem cannot be verified, the session is immediately terminated. With a
186 1.1 lukem setting of {{EX:demand}} the certificate is requested and a valid
187 1.1 lukem certificate must be provided, otherwise the session is immediately
188 1.1 lukem terminated.
189 1.1 lukem
190 1.1 lukem Note: The server must request a client certificate in order to
191 1.1 lukem use the SASL EXTERNAL authentication mechanism with a TLS session.
192 1.1 lukem As such, a non-default {{EX:TLSVerifyClient}} setting must be configured
193 1.1 lukem before SASL EXTERNAL authentication may be attempted, and the
194 1.1 lukem SASL EXTERNAL mechanism will only be offered to the client if a valid
195 1.1 lukem client certificate was received.
196 1.1 lukem
197 1.1 lukem H3: Client Configuration
198 1.1 lukem
199 1.1 lukem Most of the client configuration directives parallel the server
200 1.1 lukem directives. The names of the directives are different, and they go
201 1.1 lukem into {{ldap.conf}}(5) instead of {{slapd.conf}}(5), but their
202 1.1 lukem functionality is mostly the same. Also, while most of these options may
203 1.1 lukem be configured on a system-wide basis, they may all be overridden by
204 1.1 lukem individual users in their {{.ldaprc}} files.
205 1.1 lukem
206 1.1 lukem The LDAP Start TLS operation is used in LDAP to initiate TLS
207 1.1 lukem negotiation. All OpenLDAP command line tools support a {{EX:-Z}}
208 1.1 lukem and {{EX:-ZZ}} flag to indicate whether a Start TLS operation is to
209 1.1 lukem be issued. The latter flag indicates that the tool is to cease
210 1.1 lukem processing if TLS cannot be started while the former allows the
211 1.1 lukem command to continue.
212 1.1 lukem
213 1.1 lukem In LDAPv2 environments, TLS is normally started using the LDAP
214 1.1 lukem Secure URI scheme ({{EX:ldaps://}}) instead of the normal LDAP URI
215 1.1 lukem scheme ({{EX:ldap://}}). OpenLDAP command line tools allow either
216 1.1 lukem scheme to used with the {{EX:-H}} flag and with the {{EX:URI}}
217 1.1 lukem {{ldap.conf}}(5) option.
218 1.1 lukem
219 1.1 lukem
220 1.1 lukem H4: TLS_CACERT <filename>
221 1.1 lukem
222 1.1 lukem This is equivalent to the server's {{EX:TLSCACertificateFile}} option. As
223 1.1 lukem noted in the {{SECT:TLS Configuration}} section, a client typically
224 1.1 lukem may need to know about more CAs than a server, but otherwise the
225 1.1 lukem same considerations apply.
226 1.1 lukem
227 1.1 lukem H4: TLS_CACERTDIR <path>
228 1.1 lukem
229 1.1 lukem This is equivalent to the server's {{EX:TLSCACertificatePath}} option. The
230 1.1.1.10 christos specified directory must be managed with the OpenSSL {{rehash}}
231 1.1.1.10 christos command as well.
232 1.1 lukem
233 1.1 lukem H4: TLS_CERT <filename>
234 1.1 lukem
235 1.1 lukem This directive specifies the file that contains the client certificate.
236 1.1 lukem This is a user-only directive and can only be specified in a user's
237 1.1 lukem {{.ldaprc}} file.
238 1.1 lukem
239 1.1 lukem H4: TLS_KEY <filename>
240 1.1 lukem
241 1.1 lukem This directive specifies the file that contains the private key
242 1.1 lukem that matches the certificate stored in the {{EX:TLS_CERT}}
243 1.1 lukem file. The same constraints mentioned for {{EX:TLSCertificateKeyFile}}
244 1.1 lukem apply here. This is also a user-only directive.
245 1.1 lukem
246 1.1 lukem H4: TLS_RANDFILE <filename>
247 1.1 lukem
248 1.1 lukem This directive is the same as the server's {{EX:TLSRandFile}}
249 1.1 lukem option.
250 1.1 lukem
251 1.1 lukem H4: TLS_REQCERT { never | allow | try | demand }
252 1.1 lukem
253 1.1 lukem This directive is equivalent to the server's {{EX:TLSVerifyClient}}
254 1.1 lukem option. However, for clients the default value is {{EX:demand}}
255 1.1 lukem and there generally is no good reason to change this setting.
256 1.1 lukem
257