307 lines
12 KiB
Python
307 lines
12 KiB
Python
# Copyright 2012 OpenStack Foundation
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# Copyright 2012 Canonical Ltd.
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#
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# Licensed under the Apache License, Version 2.0 (the "License"); you may
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# not use this file except in compliance with the License. You may obtain
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# a copy of the License at
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#
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# http://www.apache.org/licenses/LICENSE-2.0
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#
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# Unless required by applicable law or agreed to in writing, software
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# distributed under the License is distributed on an "AS IS" BASIS, WITHOUT
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# WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. See the
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# License for the specific language governing permissions and limitations
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# under the License.
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import six
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import sqlalchemy
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from keystone import catalog
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from keystone.catalog import core
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from keystone.common import sql
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from keystone import config
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from keystone import exception
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CONF = config.CONF
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class Region(sql.ModelBase, sql.DictBase):
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__tablename__ = 'region'
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attributes = ['id', 'description', 'parent_region_id']
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id = sql.Column(sql.String(64), primary_key=True)
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description = sql.Column(sql.String(255), nullable=False)
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# NOTE(jaypipes): Right now, using an adjacency list model for
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# storing the hierarchy of regions is fine, since
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# the API does not support any kind of querying for
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# more complex hierarchical queries such as "get me only
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# the regions that are subchildren of this region", etc.
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# If, in the future, such queries are needed, then it
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# would be possible to add in columns to this model for
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# "left" and "right" and provide support for a nested set
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# model.
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parent_region_id = sql.Column(sql.String(64), nullable=True)
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# TODO(jaypipes): I think it's absolutely stupid that every single model
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# is required to have an "extra" column because of the
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# DictBase in the keystone.common.sql.core module. Forcing
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# tables to have pointless columns in the database is just
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# bad. Remove all of this extra JSON blob stuff.
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# See: https://bugs.launchpad.net/keystone/+bug/1265071
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extra = sql.Column(sql.JsonBlob())
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class Service(sql.ModelBase, sql.DictBase):
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__tablename__ = 'service'
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attributes = ['id', 'type', 'enabled']
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id = sql.Column(sql.String(64), primary_key=True)
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type = sql.Column(sql.String(255))
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enabled = sql.Column(sql.Boolean, nullable=False, default=True,
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server_default=sqlalchemy.sql.expression.true())
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extra = sql.Column(sql.JsonBlob())
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endpoints = sqlalchemy.orm.relationship("Endpoint", backref="service")
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class Endpoint(sql.ModelBase, sql.DictBase):
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__tablename__ = 'endpoint'
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attributes = ['id', 'interface', 'region', 'service_id', 'url',
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'legacy_endpoint_id', 'enabled']
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id = sql.Column(sql.String(64), primary_key=True)
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legacy_endpoint_id = sql.Column(sql.String(64))
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interface = sql.Column(sql.String(8), nullable=False)
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region = sql.Column(sql.String(255))
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service_id = sql.Column(sql.String(64),
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sql.ForeignKey('service.id'),
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nullable=False)
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url = sql.Column(sql.Text(), nullable=False)
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enabled = sql.Column(sql.Boolean, nullable=False, default=True,
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server_default=sqlalchemy.sql.expression.true())
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extra = sql.Column(sql.JsonBlob())
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class Catalog(catalog.Driver):
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# Regions
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def list_regions(self):
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session = sql.get_session()
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regions = session.query(Region).all()
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return [s.to_dict() for s in list(regions)]
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def _get_region(self, session, region_id):
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ref = session.query(Region).get(region_id)
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if not ref:
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raise exception.RegionNotFound(region_id=region_id)
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return ref
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def _delete_child_regions(self, session, region_id):
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"""Delete all child regions.
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Recursively delete any region that has the supplied region
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as its parent.
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"""
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children = session.query(Region).filter_by(parent_region_id=region_id)
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for child in children:
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self._delete_child_regions(session, child.id)
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session.delete(child)
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def _check_parent_region(self, session, region_ref):
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"""Raise a NotFound if the parent region does not exist.
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If the region_ref has a specified parent_region_id, check that
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the parent exists, otherwise, raise a NotFound.
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"""
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parent_region_id = region_ref.get('parent_region_id')
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if parent_region_id is not None:
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# This will raise NotFound if the parent doesn't exist,
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# which is the behavior we want.
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self._get_region(session, parent_region_id)
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def get_region(self, region_id):
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session = sql.get_session()
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return self._get_region(session, region_id).to_dict()
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def delete_region(self, region_id):
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session = sql.get_session()
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with session.begin():
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ref = self._get_region(session, region_id)
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self._delete_child_regions(session, region_id)
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session.query(Region).filter_by(id=region_id).delete()
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session.delete(ref)
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@sql.handle_conflicts(conflict_type='region')
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def create_region(self, region_ref):
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session = sql.get_session()
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with session.begin():
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self._check_parent_region(session, region_ref)
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region = Region.from_dict(region_ref)
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session.add(region)
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return region.to_dict()
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def update_region(self, region_id, region_ref):
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session = sql.get_session()
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with session.begin():
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self._check_parent_region(session, region_ref)
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ref = self._get_region(session, region_id)
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old_dict = ref.to_dict()
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old_dict.update(region_ref)
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new_region = Region.from_dict(old_dict)
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for attr in Region.attributes:
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if attr != 'id':
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setattr(ref, attr, getattr(new_region, attr))
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return ref.to_dict()
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# Services
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@sql.truncated
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def list_services(self, hints):
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session = sql.get_session()
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services = session.query(Service)
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services = sql.filter_limit_query(Service, services, hints)
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return [s.to_dict() for s in list(services)]
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def _get_service(self, session, service_id):
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ref = session.query(Service).get(service_id)
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if not ref:
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raise exception.ServiceNotFound(service_id=service_id)
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return ref
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def get_service(self, service_id):
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session = sql.get_session()
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return self._get_service(session, service_id).to_dict()
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def delete_service(self, service_id):
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session = sql.get_session()
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with session.begin():
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ref = self._get_service(session, service_id)
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session.query(Endpoint).filter_by(service_id=service_id).delete()
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session.delete(ref)
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def create_service(self, service_id, service_ref):
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session = sql.get_session()
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with session.begin():
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service = Service.from_dict(service_ref)
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session.add(service)
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return service.to_dict()
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def update_service(self, service_id, service_ref):
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session = sql.get_session()
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with session.begin():
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ref = self._get_service(session, service_id)
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old_dict = ref.to_dict()
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old_dict.update(service_ref)
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new_service = Service.from_dict(old_dict)
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for attr in Service.attributes:
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if attr != 'id':
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setattr(ref, attr, getattr(new_service, attr))
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ref.extra = new_service.extra
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return ref.to_dict()
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# Endpoints
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def create_endpoint(self, endpoint_id, endpoint_ref):
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session = sql.get_session()
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self.get_service(endpoint_ref['service_id'])
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new_endpoint = Endpoint.from_dict(endpoint_ref)
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with session.begin():
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session.add(new_endpoint)
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return new_endpoint.to_dict()
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def delete_endpoint(self, endpoint_id):
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session = sql.get_session()
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with session.begin():
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ref = self._get_endpoint(session, endpoint_id)
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session.delete(ref)
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def _get_endpoint(self, session, endpoint_id):
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try:
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return session.query(Endpoint).filter_by(id=endpoint_id).one()
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except sql.NotFound:
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raise exception.EndpointNotFound(endpoint_id=endpoint_id)
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def get_endpoint(self, endpoint_id):
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session = sql.get_session()
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return self._get_endpoint(session, endpoint_id).to_dict()
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@sql.truncated
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def list_endpoints(self, hints):
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session = sql.get_session()
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endpoints = session.query(Endpoint)
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endpoints = sql.filter_limit_query(Endpoint, endpoints, hints)
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return [e.to_dict() for e in list(endpoints)]
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def update_endpoint(self, endpoint_id, endpoint_ref):
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session = sql.get_session()
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with session.begin():
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ref = self._get_endpoint(session, endpoint_id)
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old_dict = ref.to_dict()
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old_dict.update(endpoint_ref)
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new_endpoint = Endpoint.from_dict(old_dict)
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for attr in Endpoint.attributes:
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if attr != 'id':
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setattr(ref, attr, getattr(new_endpoint, attr))
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ref.extra = new_endpoint.extra
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return ref.to_dict()
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def get_catalog(self, user_id, tenant_id, metadata=None):
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d = dict(six.iteritems(CONF))
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d.update({'tenant_id': tenant_id,
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'user_id': user_id})
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session = sql.get_session()
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t = True # variable for singleton for PEP8, E712.
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endpoints = (session.query(Endpoint).
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options(sql.joinedload(Endpoint.service)).
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filter(Endpoint.enabled == t).all())
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catalog = {}
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for endpoint in endpoints:
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if not endpoint.service['enabled']:
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continue
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region = endpoint['region']
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service_type = endpoint.service['type']
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default_service = {
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'id': endpoint['id'],
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'name': endpoint.service['name'],
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'publicURL': ''
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}
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catalog.setdefault(region, {})
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catalog[region].setdefault(service_type, default_service)
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url = core.format_url(endpoint['url'], d)
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interface_url = '%sURL' % endpoint['interface']
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catalog[region][service_type][interface_url] = url
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return catalog
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def get_v3_catalog(self, user_id, tenant_id, metadata=None):
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d = dict(six.iteritems(CONF))
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d.update({'tenant_id': tenant_id,
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'user_id': user_id})
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session = sql.get_session()
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t = True # variable for singleton for PEP8, E712.
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services = (session.query(Service).filter(Service.enabled == t).
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options(sql.joinedload(Service.endpoints)).
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all())
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def make_v3_endpoints(endpoints):
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for endpoint in (ep.to_dict() for ep in endpoints if ep.enabled):
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del endpoint['service_id']
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del endpoint['legacy_endpoint_id']
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del endpoint['enabled']
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try:
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endpoint['url'] = core.format_url(endpoint['url'], d)
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except exception.MalformedEndpoint:
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continue # this failure is already logged in format_url()
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yield endpoint
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def make_v3_service(svc):
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eps = list(make_v3_endpoints(svc.endpoints))
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service = {'endpoints': eps, 'id': svc.id, 'type': svc.type}
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name = svc.extra.get('name')
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if name:
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service['name'] = name
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return service
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return [make_v3_service(svc) for svc in services]
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