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- import os
- import sys
- import time
- import ldap
- import logging
- import socket
- import time
- import logging
- import pytest
- import re
- from lib389 import DirSrv, Entry, tools
- from lib389.tools import DirSrvTools
- from lib389._constants import *
- from lib389.properties import *
- from constants import *
- from ldap.controls.readentry import PreReadControl,PostReadControl
- SCOPE_IN_CN = 'in'
- SCOPE_OUT_CN = 'out'
- SCOPE_IN_DN = 'cn=%s,%s' % (SCOPE_IN_CN, SUFFIX)
- SCOPE_OUT_DN = 'cn=%s,%s' % (SCOPE_OUT_CN, SUFFIX)
- PROVISIONING_CN = "provisioning"
- PROVISIONING_DN = "cn=%s,%s" % (PROVISIONING_CN, SCOPE_IN_DN)
- ACTIVE_CN = "accounts"
- STAGE_CN = "staged users"
- DELETE_CN = "deleted users"
- ACTIVE_DN = "cn=%s,%s" % (ACTIVE_CN, SCOPE_IN_DN)
- STAGE_DN = "cn=%s,%s" % (STAGE_CN, PROVISIONING_DN)
- DELETE_DN = "cn=%s,%s" % (DELETE_CN, PROVISIONING_DN)
- STAGE_USER_CN = "stage guy"
- STAGE_USER_DN = "cn=%s,%s" % (STAGE_USER_CN, STAGE_DN)
- ACTIVE_USER_CN = "active guy"
- ACTIVE_USER_DN = "cn=%s,%s" % (ACTIVE_USER_CN, ACTIVE_DN)
- OUT_USER_CN = "out guy"
- OUT_USER_DN = "cn=%s,%s" % (OUT_USER_CN, SCOPE_OUT_DN)
- STAGE_GROUP_CN = "stage group"
- STAGE_GROUP_DN = "cn=%s,%s" % (STAGE_GROUP_CN, STAGE_DN)
- ACTIVE_GROUP_CN = "active group"
- ACTIVE_GROUP_DN = "cn=%s,%s" % (ACTIVE_GROUP_CN, ACTIVE_DN)
- OUT_GROUP_CN = "out group"
- OUT_GROUP_DN = "cn=%s,%s" % (OUT_GROUP_CN, SCOPE_OUT_DN)
- INDIRECT_ACTIVE_GROUP_CN = "indirect active group"
- INDIRECT_ACTIVE_GROUP_DN = "cn=%s,%s" % (INDIRECT_ACTIVE_GROUP_CN, ACTIVE_DN)
- INITIAL_DESC="inital description"
- FINAL_DESC ="final description"
- log = logging.getLogger(__name__)
- installation_prefix = None
- class TopologyStandalone(object):
- def __init__(self, standalone):
- standalone.open()
- self.standalone = standalone
- @pytest.fixture(scope="module")
- def topology(request):
- '''
- This fixture is used to standalone topology for the 'module'.
- At the beginning, It may exists a standalone instance.
- It may also exists a backup for the standalone instance.
-
- Principle:
- If standalone instance exists:
- restart it
- If backup of standalone exists:
- create/rebind to standalone
- restore standalone instance from backup
- else:
- Cleanup everything
- remove instance
- remove backup
- Create instance
- Create backup
- '''
- global installation_prefix
- if installation_prefix:
- args_instance[SER_DEPLOYED_DIR] = installation_prefix
-
- standalone = DirSrv(verbose=False)
-
- # Args for the standalone instance
- args_instance[SER_HOST] = HOST_STANDALONE
- args_instance[SER_PORT] = PORT_STANDALONE
- args_instance[SER_SERVERID_PROP] = SERVERID_STANDALONE
- args_standalone = args_instance.copy()
- standalone.allocate(args_standalone)
-
- # Get the status of the backups
- backup_standalone = standalone.checkBackupFS()
-
- # Get the status of the instance and restart it if it exists
- instance_standalone = standalone.exists()
- if instance_standalone:
- # assuming the instance is already stopped, just wait 5 sec max
- standalone.stop(timeout=5)
- standalone.start(timeout=10)
-
- if backup_standalone:
- # The backup exist, assuming it is correct
- # we just re-init the instance with it
- if not instance_standalone:
- standalone.create()
- # Used to retrieve configuration information (dbdir, confdir...)
- standalone.open()
-
- # restore standalone instance from backup
- standalone.stop(timeout=10)
- standalone.restoreFS(backup_standalone)
- standalone.start(timeout=10)
-
- else:
- # We should be here only in two conditions
- # - This is the first time a test involve standalone instance
- # - Something weird happened (instance/backup destroyed)
- # so we discard everything and recreate all
-
- # Remove the backup. So even if we have a specific backup file
- # (e.g backup_standalone) we clear backup that an instance may have created
- if backup_standalone:
- standalone.clearBackupFS()
-
- # Remove the instance
- if instance_standalone:
- standalone.delete()
-
- # Create the instance
- standalone.create()
-
- # Used to retrieve configuration information (dbdir, confdir...)
- standalone.open()
-
- # Time to create the backups
- standalone.stop(timeout=10)
- standalone.backupfile = standalone.backupFS()
- standalone.start(timeout=10)
- # clear the tmp directory
- standalone.clearTmpDir(__file__)
- #
- # Here we have standalone instance up and running
- # Either coming from a backup recovery
- # or from a fresh (re)init
- # Time to return the topology
- return TopologyStandalone(standalone)
- def _header(topology, label):
- topology.standalone.log.info("\n\n###############################################")
- topology.standalone.log.info("#######")
- topology.standalone.log.info("####### %s" % label)
- topology.standalone.log.info("#######")
- topology.standalone.log.info("###############################################")
-
- def _add_user(topology, type='active'):
- if type == 'active':
- topology.standalone.add_s(Entry((ACTIVE_USER_DN, {
- 'objectclass': "top person inetuser".split(),
- 'sn': ACTIVE_USER_CN,
- 'cn': ACTIVE_USER_CN,
- 'description': INITIAL_DESC})))
- elif type == 'stage':
- topology.standalone.add_s(Entry((STAGE_USER_DN, {
- 'objectclass': "top person inetuser".split(),
- 'sn': STAGE_USER_CN,
- 'cn': STAGE_USER_CN})))
- else:
- topology.standalone.add_s(Entry((OUT_USER_DN, {
- 'objectclass': "top person inetuser".split(),
- 'sn': OUT_USER_CN,
- 'cn': OUT_USER_CN})))
- def test_ticket47920_init(topology):
- topology.standalone.add_s(Entry((SCOPE_IN_DN, {
- 'objectclass': "top nscontainer".split(),
- 'cn': SCOPE_IN_DN})))
- topology.standalone.add_s(Entry((ACTIVE_DN, {
- 'objectclass': "top nscontainer".split(),
- 'cn': ACTIVE_CN})))
- # add users
- _add_user(topology, 'active')
- def test_ticket47920_mod_readentry_ctrl(topology):
- _header(topology, 'MOD: with a readentry control')
-
- topology.standalone.log.info("Check the initial value of the entry")
- ent = topology.standalone.getEntry(ACTIVE_USER_DN, ldap.SCOPE_BASE, "(objectclass=*)", ['description'])
- assert ent.hasAttr('description')
- assert ent.getValue('description') == INITIAL_DESC
- pr = PostReadControl(criticality=True,attrList=['cn', 'description'])
- _,_,_,resp_ctrls = topology.standalone.modify_ext_s(ACTIVE_USER_DN, [(ldap.MOD_REPLACE, 'description', [FINAL_DESC])], serverctrls= [pr])
- assert resp_ctrls[0].dn == ACTIVE_USER_DN
- assert resp_ctrls[0].entry.has_key('description')
- assert resp_ctrls[0].entry.has_key('cn')
- print resp_ctrls[0].entry['description']
- ent = topology.standalone.getEntry(ACTIVE_USER_DN, ldap.SCOPE_BASE, "(objectclass=*)", ['description'])
- assert ent.hasAttr('description')
- assert ent.getValue('description') == FINAL_DESC
-
- def test_ticket47920_final(topology):
- topology.standalone.stop(timeout=10)
-
- def run_isolated():
- '''
- run_isolated is used to run these test cases independently of a test scheduler (xunit, py.test..)
- To run isolated without py.test, you need to
- - edit this file and comment '@pytest.fixture' line before 'topology' function.
- - set the installation prefix
- - run this program
- '''
- global installation_prefix
- installation_prefix = None
-
- topo = topology(True)
- test_ticket47920_init(topo)
- test_ticket47920_mod_readentry_ctrl(topo)
-
- test_ticket47920_final(topo)
- if __name__ == '__main__':
- run_isolated()
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