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07229c8ff6
Replace all `ipa_log_manager.log_mgr.get_logger` calls to create module-level loggers with `logging.getLogger` calls and deprecate `ipa_log_manager.log_mgr.get_logger`. Reviewed-By: Martin Basti <mbasti@redhat.com>
184 lines
6.8 KiB
Python
184 lines
6.8 KiB
Python
# Authors: Petr Viktorin <pviktori@redhat.com>
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#
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# Copyright (C) 2013 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 logging
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import pprint
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import ldap.schema
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import ipapython.version
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from ipalib import api
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from ipapython.dn import DN
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from ipaserver.install.ldapupdate import connect
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from ipaserver.install import installutils
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SCHEMA_ELEMENT_CLASSES = (
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# All schema model classes this tool can modify
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# Depends on order, attributes first, then objectclasses
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('attributetypes', ldap.schema.models.AttributeType),
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('objectclasses', ldap.schema.models.ObjectClass),
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)
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ORIGIN = 'IPA v%s' % ipapython.version.VERSION
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logger = logging.getLogger(__name__)
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def _get_oid_dependency_order(schema, cls):
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"""
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Returns a ordered list of OIDs sets, in order which respects inheritance in LDAP
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OIDs in second set, depend on first set, etc.
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:return [set(1st-tree-level), set(2nd-tree-level), ...]
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"""
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top_node = '_'
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ordered_oid_groups = []
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tree = schema.tree(cls) # tree structure of schema
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# remove top_node from tree, it breaks ordering
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# we don't need this, tree from file is not consistent
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del tree[top_node]
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unordered_oids = set(tree.keys())
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# split into two groups, parents and child nodes, and iterate until
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# child nodes are not empty
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while unordered_oids:
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parent_nodes = set()
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child_nodes = set()
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for node in unordered_oids:
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if node not in child_nodes:
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# if node was child once, must remain as child
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parent_nodes.add(node)
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for child_oid in tree[node]:
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# iterate over all child nodes stored in tree[node] per node
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# child node must be removed from parents
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parent_nodes.discard(child_oid)
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child_nodes.add(child_oid)
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ordered_oid_groups.append(parent_nodes) # parents nodes are not dependent
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assert len(child_nodes) < len(unordered_oids) # while iteration must be finite
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unordered_oids = child_nodes # extract new parent nodes in next iteration
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return ordered_oid_groups
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def update_schema(schema_files, ldapi=False, dm_password=None,):
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"""Update schema to match the given ldif files
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Schema elements present in the LDIF files but missing from the DS schema
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are added.
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Schema elements that differ between LDIF files and DS schema are updated
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to match the LDIF files. The comparison ignores tags that python-ldap's
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schema parser does not understand (such as X-ORIGIN).
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Extra elements present only in the DS schema are left untouched.
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An X-ORIGIN tag containing the current IPA version is added to all new
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and updated schema elements.
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:param schema_files: List of filenames to update from
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:param ldapi: if true, use ldapi to connect
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:param dm_password: directory manager password
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:return:
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True if modifications were made
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"""
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SCHEMA_ELEMENT_CLASSES_KEYS = [x[0] for x in SCHEMA_ELEMENT_CLASSES]
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conn = connect(ldapi=ldapi, dm_password=dm_password,
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realm=api.env.realm,
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fqdn=installutils.get_fqdn())
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old_schema = conn.schema
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schema_entry = conn.get_entry(DN(('cn', 'schema')),
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SCHEMA_ELEMENT_CLASSES_KEYS)
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modified = False
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# The exact representation the DS gives us for each OID
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# (for debug logging)
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old_entries_by_oid = {cls(attr).oid: attr.decode('utf-8')
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for (attrname, cls) in SCHEMA_ELEMENT_CLASSES
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for attr in schema_entry[attrname]}
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for filename in schema_files:
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logger.debug('Processing schema LDIF file %s', filename)
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url = "file://{}".format(filename)
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_dn, new_schema = ldap.schema.subentry.urlfetch(url)
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for attrname, cls in SCHEMA_ELEMENT_CLASSES:
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for oids_set in _get_oid_dependency_order(new_schema, cls):
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# Set of all elements of this class, as strings given by the DS
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new_elements = []
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for oid in oids_set:
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new_obj = new_schema.get_obj(cls, oid)
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old_obj = old_schema.get_obj(cls, oid)
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# Compare python-ldap's sanitized string representations
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# to see if the value is different
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# This can give false positives, e.g. with case differences
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# in case-insensitive names.
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# But, false positives are harmless (and infrequent)
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if not old_obj or str(new_obj) != str(old_obj):
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# Note: An add will automatically replace any existing
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# schema with the same OID. So, we only add.
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value = add_x_origin(new_obj)
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if old_obj:
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old_attr = old_entries_by_oid.get(oid)
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logger.debug('Replace: %s', old_attr)
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logger.debug(' with: %s', value)
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else:
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logger.debug('Add: %s', value)
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new_elements.append(value.encode('utf-8'))
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modified = modified or new_elements
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schema_entry[attrname].extend(new_elements)
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# we need to iterate schema updates, due to dependencies (SUP)
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# schema_entry doesn't respect order of objectclasses/attributes
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# so updates must be executed with groups of independent OIDs
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if new_elements:
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modlist = schema_entry.generate_modlist()
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logger.debug("Schema modlist:\n%s",
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pprint.pformat(modlist))
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conn.update_entry(schema_entry)
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if not modified:
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logger.debug('Not updating schema')
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return modified
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def add_x_origin(element):
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"""Add X-ORIGIN tag to a schema element if it does not already contain one
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"""
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# Note that python-ldap drops X-ORIGIN when it parses schema elements,
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# so we need to resort to string manipulation
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element = str(element)
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if 'X-ORIGIN' not in element:
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assert element[-2:] == ' )'
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element = element[:-1] + "X-ORIGIN '%s' )" % ORIGIN
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return element
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