mirror of
https://salsa.debian.org/freeipa-team/freeipa.git
synced 2024-12-28 18:01:23 -06:00
94d457e83c
* Convert every string specifying a DN into a DN object * Every place a dn was manipulated in some fashion it was replaced by the use of DN operators * Add new DNParam parameter type for parameters which are DN's * DN objects are used 100% of the time throughout the entire data pipeline whenever something is logically a dn. * Many classes now enforce DN usage for their attributes which are dn's. This is implmented via ipautil.dn_attribute_property(). The only permitted types for a class attribute specified to be a DN are either None or a DN object. * Require that every place a dn is used it must be a DN object. This translates into lot of:: assert isinstance(dn, DN) sprinkled through out the code. Maintaining these asserts is valuable to preserve DN type enforcement. The asserts can be disabled in production. The goal of 100% DN usage 100% of the time has been realized, these asserts are meant to preserve that. The asserts also proved valuable in detecting functions which did not obey their function signatures, such as the baseldap pre and post callbacks. * Moved ipalib.dn to ipapython.dn because DN class is shared with all components, not just the server which uses ipalib. * All API's now accept DN's natively, no need to convert to str (or unicode). * Removed ipalib.encoder and encode/decode decorators. Type conversion is now explicitly performed in each IPASimpleLDAPObject method which emulates a ldap.SimpleLDAPObject method. * Entity & Entry classes now utilize DN's * Removed __getattr__ in Entity & Entity clases. There were two problems with it. It presented synthetic Python object attributes based on the current LDAP data it contained. There is no way to validate synthetic attributes using code checkers, you can't search the code to find LDAP attribute accesses (because synthetic attriutes look like Python attributes instead of LDAP data) and error handling is circumscribed. Secondly __getattr__ was hiding Python internal methods which broke class semantics. * Replace use of methods inherited from ldap.SimpleLDAPObject via IPAdmin class with IPAdmin methods. Directly using inherited methods was causing us to bypass IPA logic. Mostly this meant replacing the use of search_s() with getEntry() or getList(). Similarly direct access of the LDAP data in classes using IPAdmin were replaced with calls to getValue() or getValues(). * Objects returned by ldap2.find_entries() are now compatible with either the python-ldap access methodology or the Entity/Entry access methodology. * All ldap operations now funnel through the common IPASimpleLDAPObject giving us a single location where we interface to python-ldap and perform conversions. * The above 4 modifications means we've greatly reduced the proliferation of multiple inconsistent ways to perform LDAP operations. We are well on the way to having a single API in IPA for doing LDAP (a long range goal). * All certificate subject bases are now DN's * DN objects were enhanced thusly: - find, rfind, index, rindex, replace and insert methods were added - AVA, RDN and DN classes were refactored in immutable and mutable variants, the mutable variants are EditableAVA, EditableRDN and EditableDN. By default we use the immutable variants preserving important semantics. To edit a DN cast it to an EditableDN and cast it back to DN when done editing. These issues are fully described in other documentation. - first_key_match was removed - DN equalty comparison permits comparison to a basestring * Fixed ldapupdate to work with DN's. This work included: - Enhance test_updates.py to do more checking after applying update. Add test for update_from_dict(). Convert code to use unittest classes. - Consolidated duplicate code. - Moved code which should have been in the class into the class. - Fix the handling of the 'deleteentry' update action. It's no longer necessary to supply fake attributes to make it work. Detect case where subsequent update applies a change to entry previously marked for deletetion. General clean-up and simplification of the 'deleteentry' logic. - Rewrote a couple of functions to be clearer and more Pythonic. - Added documentation on the data structure being used. - Simplfy the use of update_from_dict() * Removed all usage of get_schema() which was being called prior to accessing the .schema attribute of an object. If a class is using internal lazy loading as an optimization it's not right to require users of the interface to be aware of internal optimization's. schema is now a property and when the schema property is accessed it calls a private internal method to perform the lazy loading. * Added SchemaCache class to cache the schema's from individual servers. This was done because of the observation we talk to different LDAP servers, each of which may have it's own schema. Previously we globally cached the schema from the first server we connected to and returned that schema in all contexts. The cache includes controls to invalidate it thus forcing a schema refresh. * Schema caching is now senstive to the run time context. During install and upgrade the schema can change leading to errors due to out-of-date cached schema. The schema cache is refreshed in these contexts. * We are aware of the LDAP syntax of all LDAP attributes. Every attribute returned from an LDAP operation is passed through a central table look-up based on it's LDAP syntax. The table key is the LDAP syntax it's value is a Python callable that returns a Python object matching the LDAP syntax. There are a handful of LDAP attributes whose syntax is historically incorrect (e.g. DistguishedNames that are defined as DirectoryStrings). The table driven conversion mechanism is augmented with a table of hard coded exceptions. Currently only the following conversions occur via the table: - dn's are converted to DN objects - binary objects are converted to Python str objects (IPA convention). - everything else is converted to unicode using UTF-8 decoding (IPA convention). However, now that the table driven conversion mechanism is in place it would be trivial to do things such as converting attributes which have LDAP integer syntax into a Python integer, etc. * Expected values in the unit tests which are a DN no longer need to use lambda expressions to promote the returned value to a DN for equality comparison. The return value is automatically promoted to a DN. The lambda expressions have been removed making the code much simpler and easier to read. * Add class level logging to a number of classes which did not support logging, less need for use of root_logger. * Remove ipaserver/conn.py, it was unused. * Consolidated duplicate code wherever it was found. * Fixed many places that used string concatenation to form a new string rather than string formatting operators. This is necessary because string formatting converts it's arguments to a string prior to building the result string. You can't concatenate a string and a non-string. * Simplify logic in rename_managed plugin. Use DN operators to edit dn's. * The live version of ipa-ldap-updater did not generate a log file. The offline version did, now both do. https://fedorahosted.org/freeipa/ticket/1670 https://fedorahosted.org/freeipa/ticket/1671 https://fedorahosted.org/freeipa/ticket/1672 https://fedorahosted.org/freeipa/ticket/1673 https://fedorahosted.org/freeipa/ticket/1674 https://fedorahosted.org/freeipa/ticket/1392 https://fedorahosted.org/freeipa/ticket/2872
392 lines
14 KiB
Python
392 lines
14 KiB
Python
# Authors: Karl MacMillan <kmacmillan@mentalrootkit.com>
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#
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# Copyright (C) 2007 Red Hat
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# see file 'COPYING' for use and warranty information
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#
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# This program is free software; you can redistribute it and/or modify
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# it under the terms of the GNU General Public License as published by
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# the Free Software Foundation, either version 3 of the License, or
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# (at your option) any later version.
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#
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# This program is distributed in the hope that it will be useful,
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# but WITHOUT ANY WARRANTY; without even the implied warranty of
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# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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# GNU General Public License for more details.
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#
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# You should have received a copy of the GNU General Public License
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# along with this program. If not, see <http://www.gnu.org/licenses/>.
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#
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import sys
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import os, socket
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import tempfile
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import pwd
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from ipapython import sysrestore
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from ipapython import ipautil
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from ipapython import services as ipaservices
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from ipalib import errors
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from ipapython.dn import DN
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import ldap
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from ipaserver import ipaldap
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import base64
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import time
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import datetime
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from ipaserver.install import installutils
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from ipapython.ipa_log_manager import *
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CACERT = "/etc/ipa/ca.crt"
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# Autobind modes
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AUTO = 1
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ENABLED = 2
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DISABLED = 3
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# The service name as stored in cn=masters,cn=ipa,cn=etc. In the tuple
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# the first value is the *nix service name, the second the start order.
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SERVICE_LIST = {
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'KDC':('krb5kdc', 10),
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'KPASSWD':('kadmin', 20),
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'DNS':('named', 30),
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'MEMCACHE':('ipa_memcached', 39),
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'HTTP':('httpd', 40),
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'CA':('pki-cad', 50),
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'ADTRUST':('smb', 60),
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'EXTID':('winbind', 70)
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}
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def print_msg(message, output_fd=sys.stdout):
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root_logger.debug(message)
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output_fd.write(message)
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output_fd.write("\n")
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class Service(object):
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def __init__(self, service_name, sstore=None, dm_password=None, ldapi=True, autobind=AUTO):
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self.service_name = service_name
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self.service = ipaservices.service(service_name)
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self.steps = []
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self.output_fd = sys.stdout
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self.dm_password = dm_password
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self.ldapi = ldapi
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self.autobind = autobind
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self.fqdn = socket.gethostname()
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self.admin_conn = None
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if sstore:
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self.sstore = sstore
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else:
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self.sstore = sysrestore.StateFile('/var/lib/ipa/sysrestore')
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self.realm = None
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self.suffix = DN()
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self.principal = None
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self.dercert = None
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def ldap_connect(self):
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# If DM password is provided, we use it
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# If autobind was requested, attempt autobind when root and ldapi
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# If autobind was disabled or not succeeded, go with GSSAPI
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# LDAPI can be used with either autobind or GSSAPI
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# LDAPI requires realm to be set
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try:
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if self.ldapi:
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if not self.realm:
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raise errors.NotFound(reason="realm is missing for %s" % (self))
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conn = ipaldap.IPAdmin(ldapi=self.ldapi, realm=self.realm)
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else:
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conn = ipaldap.IPAdmin(self.fqdn, port=389)
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if self.dm_password:
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conn.do_simple_bind(bindpw=self.dm_password)
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elif self.autobind in [AUTO, ENABLED]:
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if os.getegid() == 0 and self.ldapi:
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try:
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# autobind
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pw_name = pwd.getpwuid(os.geteuid()).pw_name
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conn.do_external_bind(pw_name)
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except errors.NotFound, e:
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if self.autobind == AUTO:
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# Fall back
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conn.do_sasl_gssapi_bind()
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else:
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# autobind was required and failed, raise
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# exception that it failed
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raise e
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else:
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conn.do_sasl_gssapi_bind()
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else:
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conn.do_sasl_gssapi_bind()
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except Exception, e:
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root_logger.debug("Could not connect to the Directory Server on %s: %s" % (self.fqdn, str(e)))
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raise e
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self.admin_conn = conn
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def ldap_disconnect(self):
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self.admin_conn.unbind()
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self.admin_conn = None
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def _ldap_mod(self, ldif, sub_dict = None):
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pw_name = None
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fd = None
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path = ipautil.SHARE_DIR + ldif
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nologlist=[]
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if sub_dict is not None:
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txt = ipautil.template_file(path, sub_dict)
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fd = ipautil.write_tmp_file(txt)
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path = fd.name
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# do not log passwords
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if sub_dict.has_key('PASSWORD'):
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nologlist.append(sub_dict['PASSWORD'])
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if sub_dict.has_key('RANDOM_PASSWORD'):
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nologlist.append(sub_dict['RANDOM_PASSWORD'])
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args = ["/usr/bin/ldapmodify", "-v", "-f", path]
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# As we always connect to the local host,
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# use URI of admin connection
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if not self.admin_conn:
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self.ldap_connect()
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args += ["-H", self.admin_conn.uri]
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auth_parms = []
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if self.dm_password:
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[pw_fd, pw_name] = tempfile.mkstemp()
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os.write(pw_fd, self.dm_password)
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os.close(pw_fd)
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auth_parms = ["-x", "-D", "cn=Directory Manager", "-y", pw_name]
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else:
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# always try GSSAPI auth when not using DM password or not being root
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if os.getegid() != 0:
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auth_parms = ["-Y", "GSSAPI"]
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args += auth_parms
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try:
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try:
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ipautil.run(args, nolog=nologlist)
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except ipautil.CalledProcessError, e:
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root_logger.critical("Failed to load %s: %s" % (ldif, str(e)))
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finally:
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if pw_name:
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os.remove(pw_name)
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if fd is not None:
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fd.close()
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def move_service(self, principal):
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"""
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Used to move a principal entry created by kadmin.local from
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cn=kerberos to cn=services
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"""
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dn = DN(('krbprincipalname', principal), ('cn', self.realm), ('cn', 'kerberos'), self.suffix)
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try:
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entry = self.admin_conn.getEntry(dn, ldap.SCOPE_BASE)
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except errors.NotFound:
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# There is no service in the wrong location, nothing to do.
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# This can happen when installing a replica
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return None
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newdn = DN(('krbprincipalname', principal), ('cn', 'services'), ('cn', 'accounts'), self.suffix)
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hostdn = DN(('fqdn', self.fqdn), ('cn', 'computers'), ('cn', 'accounts'), self.suffix)
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self.admin_conn.deleteEntry(dn)
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entry.dn = newdn
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classes = entry.getValues("objectclass")
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classes = classes + ["ipaobject", "ipaservice", "pkiuser"]
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entry.setValues("objectclass", list(set(classes)))
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entry.setValue("ipauniqueid", 'autogenerate')
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entry.setValue("managedby", hostdn)
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self.admin_conn.addEntry(entry)
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return newdn
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def add_simple_service(self, principal):
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"""
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Add a very basic IPA service.
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The principal needs to be fully-formed: service/host@REALM
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"""
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if not self.admin_conn:
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self.ldap_connect()
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dn = DN(('krbprincipalname', principal), ('cn', 'services'), ('cn', 'accounts'), self.suffix)
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hostdn = DN(('fqdn', self.fqdn), ('cn', 'computers'), ('cn', 'accounts'), self.suffix)
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entry = ipaldap.Entry(dn)
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entry.setValues("objectclass", ["krbprincipal", "krbprincipalaux", "krbticketpolicyaux", "ipaobject", "ipaservice", "pkiuser"])
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entry.setValue("krbprincipalname", principal)
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entry.setValue("ipauniqueid", 'autogenerate')
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entry.setValue("managedby", hostdn)
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self.admin_conn.addEntry(entry)
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return dn
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def add_cert_to_service(self):
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"""
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Add a certificate to a service
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This server cert should be in DER format.
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"""
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# add_cert_to_service() is relatively rare operation
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# we actually call it twice during ipa-server-install, for different
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# instances: ds and cs. Unfortunately, it may happen that admin
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# connection was created well before add_cert_to_service() is called
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# If there are other operations in between, it will become stale and
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# since we are using SimpleLDAPObject, not ReconnectLDAPObject, the
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# action will fail. Thus, explicitly disconnect and connect again.
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# Using ReconnectLDAPObject instead of SimpleLDAPObject was considered
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# but consequences for other parts of the framework are largely
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# unknown.
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if self.admin_conn:
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self.ldap_disconnect()
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self.ldap_connect()
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dn = DN(('krbprincipalname', self.principal), ('cn', 'services'), ('cn', 'accounts'), self.suffix)
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mod = [(ldap.MOD_ADD, 'userCertificate', self.dercert)]
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try:
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self.admin_conn.modify_s(dn, mod)
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except Exception, e:
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root_logger.critical("Could not add certificate to service %s entry: %s" % (self.principal, str(e)))
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def is_configured(self):
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return self.sstore.has_state(self.service_name)
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def set_output(self, fd):
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self.output_fd = fd
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def stop(self, instance_name="", capture_output=True):
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self.service.stop(instance_name, capture_output=capture_output)
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def start(self, instance_name="", capture_output=True, wait=True):
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self.service.start(instance_name, capture_output=capture_output, wait=wait)
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def restart(self, instance_name="", capture_output=True, wait=True):
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self.service.restart(instance_name, capture_output=capture_output, wait=wait)
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def is_running(self):
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return self.service.is_running()
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def install(self):
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self.service.install()
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def remove(self):
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self.service.remove()
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def enable(self):
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self.service.enable()
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def disable(self):
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self.service.disable()
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def is_enabled(self):
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return self.service.is_enabled()
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def backup_state(self, key, value):
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self.sstore.backup_state(self.service_name, key, value)
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def restore_state(self, key):
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return self.sstore.restore_state(self.service_name, key)
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def print_msg(self, message):
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print_msg(message, self.output_fd)
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def step(self, message, method):
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self.steps.append((message, method))
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def start_creation(self, message, runtime=-1):
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if runtime > 0:
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plural=''
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est = time.localtime(runtime)
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if est.tm_min > 0:
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if est.tm_min > 1:
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plural = 's'
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if est.tm_sec > 0:
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self.print_msg('%s: Estimated time %d minute%s %d seconds' % (message, est.tm_min, plural, est.tm_sec))
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else:
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self.print_msg('%s: Estimated time %d minute%s' % (message, est.tm_min, plural))
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else:
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if est.tm_sec > 1:
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plural = 's'
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self.print_msg('%s: Estimated time %d second%s' % (message, est.tm_sec, plural))
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else:
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self.print_msg(message)
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step = 0
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for (message, method) in self.steps:
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self.print_msg(" [%d/%d]: %s" % (step+1, len(self.steps), message))
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s = datetime.datetime.now()
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method()
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e = datetime.datetime.now()
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d = e - s
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root_logger.debug(" duration: %d seconds" % d.seconds)
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step += 1
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self.print_msg("done configuring %s." % self.service_name)
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self.steps = []
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def ldap_enable(self, name, fqdn, dm_password, ldap_suffix):
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assert isinstance(ldap_suffix, DN)
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self.disable()
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if not self.admin_conn:
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self.ldap_connect()
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entry_name = DN(('cn', name), ('cn', fqdn), ('cn', 'masters'), ('cn', 'ipa'), ('cn', 'etc'), ldap_suffix)
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order = SERVICE_LIST[name][1]
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entry = ipaldap.Entry(entry_name)
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entry.setValues("objectclass",
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"nsContainer", "ipaConfigObject")
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entry.setValues("cn", name)
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entry.setValues("ipaconfigstring",
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"enabledService", "startOrder " + str(order))
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try:
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self.admin_conn.addEntry(entry)
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except (ldap.ALREADY_EXISTS, errors.DuplicateEntry), e:
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root_logger.debug("failed to add %s Service startup entry" % name)
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raise e
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class SimpleServiceInstance(Service):
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def create_instance(self, gensvc_name=None, fqdn=None, dm_password=None, ldap_suffix=None, realm=None):
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self.gensvc_name = gensvc_name
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self.fqdn = fqdn
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self.dm_password = dm_password
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self.suffix = ldap_suffix
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self.realm = realm
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if not realm:
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self.ldapi = False
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self.step("starting %s " % self.service_name, self.__start)
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self.step("configuring %s to start on boot" % self.service_name, self.__enable)
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self.start_creation("Configuring %s" % self.service_name)
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suffix = ipautil.dn_attribute_property('_ldap_suffix')
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def __start(self):
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self.backup_state("running", self.is_running())
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self.restart()
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def __enable(self):
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self.enable()
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self.backup_state("enabled", self.is_enabled())
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if self.gensvc_name == None:
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self.enable()
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else:
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self.ldap_enable(self.gensvc_name, self.fqdn,
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self.dm_password, self.suffix)
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def uninstall(self):
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if self.is_configured():
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self.print_msg("Unconfiguring %s" % self.service_name)
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running = self.restore_state("running")
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enabled = not self.restore_state("enabled")
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if not running is None and not running:
|
|
self.stop()
|
|
if not enabled is None and not enabled:
|
|
self.disable()
|
|
self.remove()
|