mirror of
https://salsa.debian.org/freeipa-team/freeipa.git
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758 lines
23 KiB
Python
758 lines
23 KiB
Python
# Authors:
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# Jason Gerard DeRose <jderose@redhat.com>
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#
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# Copyright (C) 2008 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
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# modify it under the terms of the GNU General Public License as
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# published by the Free Software Foundation; version 2 only
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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, write to the Free Software
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# Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
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"""
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Base classes for all front-end plugins.
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"""
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import re
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import inspect
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import plugable
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from plugable import lock, check_name
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import errors
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from errors import check_type, check_isinstance, raise_TypeError
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from parameters import create_param, Param, Str, Flag, Password
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from util import make_repr
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from errors2 import ZeroArgumentError, MaxArgumentError, OverlapError
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from constants import TYPE_ERROR
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RULE_FLAG = 'validation_rule'
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def rule(obj):
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assert not hasattr(obj, RULE_FLAG)
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setattr(obj, RULE_FLAG, True)
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return obj
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def is_rule(obj):
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return callable(obj) and getattr(obj, RULE_FLAG, False) is True
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class Command(plugable.Plugin):
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"""
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A public IPA atomic operation.
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All plugins that subclass from `Command` will be automatically available
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as a CLI command and as an XML-RPC method.
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Plugins that subclass from Command are registered in the ``api.Command``
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namespace. For example:
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>>> from ipalib import create_api
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>>> api = create_api()
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>>> class my_command(Command):
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... pass
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...
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>>> api.register(my_command)
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>>> api.finalize()
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>>> list(api.Command)
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['my_command']
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>>> api.Command.my_command # doctest:+ELLIPSIS
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PluginProxy(Command, ...my_command())
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"""
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__public__ = frozenset((
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'get_default',
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'convert',
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'normalize',
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'validate',
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'execute',
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'__call__',
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'args',
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'options',
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'params',
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'params_2_args_options',
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'args_options_2_params',
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'output_for_cli',
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))
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takes_options = tuple()
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takes_args = tuple()
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args = None
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options = None
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params = None
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output_for_cli = None
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def __call__(self, *args, **options):
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"""
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Perform validation and then execute the command.
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If not in a server context, the call will be forwarded over
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XML-RPC and the executed an the nearest IPA server.
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"""
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params = self.args_options_2_params(*args, **options)
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self.info(
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'raw: %s(%s)', self.name, ', '.join(self._repr_iter(**params))
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)
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params = self.normalize(**params)
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params = self.convert(**params)
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params.update(self.get_default(**params))
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self.info(
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'processed: %s(%s)', self.name, ', '.join(self._repr_iter(**params))
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)
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self.validate(**params)
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(args, options) = self.params_2_args_options(**params)
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result = self.run(*args, **options)
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self.debug('result from %s(): %r', self.name, result)
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return result
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def _repr_iter(self, **params):
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"""
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Iterate through ``repr()`` of *safe* values of args and options.
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This method uses `parameters.Param.safe_value()` to mask passwords when
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logging. Logging the exact call is extremely useful, but we obviously
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don't want to log the cleartext password.
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For example:
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>>> class my_cmd(Command):
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... takes_args = ('login',)
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... takes_options=(Password('passwd'),)
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...
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>>> c = my_cmd()
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>>> c.finalize()
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>>> list(c._repr_iter(login=u'Okay.', passwd=u'Private!'))
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["u'Okay.'", "passwd=u'********'"]
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"""
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for arg in self.args():
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value = params.get(arg.name, None)
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yield repr(arg.safe_value(value))
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for option in self.options():
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if option.name not in params:
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continue
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value = params[option.name]
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yield '%s=%r' % (option.name, option.safe_value(value))
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def args_options_2_params(self, *args, **options):
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"""
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Merge (args, options) into params.
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"""
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if self.max_args is not None and len(args) > self.max_args:
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if self.max_args == 0:
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raise ZeroArgumentError(name=self.name)
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raise MaxArgumentError(name=self.name, count=self.max_args)
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params = dict(self.__options_2_params(options))
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if len(args) > 0:
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arg_kw = dict(self.__args_2_params(args))
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intersection = set(arg_kw).intersection(params)
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if len(intersection) > 0:
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raise OverlapError(names=sorted(intersection))
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params.update(arg_kw)
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return params
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def __args_2_params(self, values):
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multivalue = False
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for (i, arg) in enumerate(self.args()):
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assert not multivalue
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if len(values) > i:
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if arg.multivalue:
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multivalue = True
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if len(values) == i + 1 and type(values[i]) in (list, tuple):
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yield (arg.name, values[i])
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else:
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yield (arg.name, values[i:])
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else:
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yield (arg.name, values[i])
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else:
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break
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def __options_2_params(self, options):
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for name in self.params:
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if name in options:
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yield (name, options[name])
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def params_2_args_options(self, **params):
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"""
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Split params into (args, options).
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"""
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args = tuple(params.get(name, None) for name in self.args)
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options = dict(self.__params_2_options(params))
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return (args, options)
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def __params_2_options(self, params):
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for name in self.options:
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if name in params:
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yield(name, params[name])
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def normalize(self, **kw):
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"""
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Return a dictionary of normalized values.
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For example:
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>>> class my_command(Command):
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... takes_options = (
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... Param('first', normalizer=lambda value: value.lower()),
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... Param('last'),
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... )
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...
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>>> c = my_command()
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>>> c.finalize()
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>>> c.normalize(first=u'JOHN', last=u'DOE')
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{'last': u'DOE', 'first': u'john'}
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"""
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return dict(
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(k, self.params[k].normalize(v)) for (k, v) in kw.iteritems()
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)
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def convert(self, **kw):
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"""
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Return a dictionary of values converted to correct type.
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>>> from ipalib import Int
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>>> class my_command(Command):
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... takes_args = (
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... Int('one'),
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... 'two',
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... )
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...
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>>> c = my_command()
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>>> c.finalize()
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>>> c.convert(one=1, two=2)
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{'two': u'2', 'one': 1}
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"""
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return dict(
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(k, self.params[k].convert(v)) for (k, v) in kw.iteritems()
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)
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def __convert_iter(self, kw):
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for param in self.params():
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if kw.get(param.name, None) is None:
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continue
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def get_default(self, **kw):
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"""
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Return a dictionary of defaults for all missing required values.
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For example:
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>>> from ipalib import Str
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>>> class my_command(Command):
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... takes_args = [Str('color', default=u'Red')]
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...
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>>> c = my_command()
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>>> c.finalize()
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>>> c.get_default()
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{'color': u'Red'}
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>>> c.get_default(color=u'Yellow')
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{}
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"""
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return dict(self.__get_default_iter(kw))
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def __get_default_iter(self, kw):
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"""
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Generator method used by `Command.get_default`.
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"""
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for param in self.params():
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if param.name in kw:
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continue
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if param.required or param.autofill:
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default = param.get_default(**kw)
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if default is not None:
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yield (param.name, default)
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def validate(self, **kw):
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"""
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Validate all values.
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If any value fails the validation, `ipalib.errors.ValidationError`
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(or a subclass thereof) will be raised.
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"""
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for param in self.params():
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value = kw.get(param.name, None)
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param.validate(value)
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def run(self, *args, **options):
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"""
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Dispatch to `Command.execute` or `Command.forward`.
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If running in a server context, `Command.execute` is called and the
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actually work this command performs is executed locally.
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If running in a non-server context, `Command.forward` is called,
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which forwards this call over XML-RPC to the exact same command
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on the nearest IPA server and the actual work this command
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performs is executed remotely.
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"""
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if self.api.env.in_server:
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return self.execute(*args, **options)
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return self.forward(*args, **options)
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def execute(self, *args, **kw):
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"""
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Perform the actual work this command does.
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This method should be implemented only against functionality
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in self.api.Backend. For example, a hypothetical
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user_add.execute() might be implemented like this:
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>>> class user_add(Command):
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... def execute(self, **kw):
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... return self.api.Backend.ldap.add(**kw)
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...
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"""
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raise NotImplementedError('%s.execute()' % self.name)
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def forward(self, *args, **kw):
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"""
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Forward call over XML-RPC to this same command on server.
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"""
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return self.Backend.xmlclient.forward(self.name, *args, **kw)
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def finalize(self):
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"""
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Finalize plugin initialization.
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This method creates the ``args``, ``options``, and ``params``
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namespaces. This is not done in `Command.__init__` because
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subclasses (like `crud.Add`) might need to access other plugins
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loaded in self.api to determine what their custom `Command.get_args`
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and `Command.get_options` methods should yield.
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"""
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self.args = plugable.NameSpace(self.__create_args(), sort=False)
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if len(self.args) == 0 or not self.args[-1].multivalue:
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self.max_args = len(self.args)
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else:
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self.max_args = None
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self.options = plugable.NameSpace(
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(create_param(spec) for spec in self.get_options()),
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sort=False
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)
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def get_key(p):
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if p.required:
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if p.default_from is None:
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return 0
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return 1
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return 2
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self.params = plugable.NameSpace(
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sorted(tuple(self.args()) + tuple(self.options()), key=get_key),
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sort=False
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)
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super(Command, self).finalize()
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def get_args(self):
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"""
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Iterate through parameters for ``Command.args`` namespace.
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Subclasses can override this to customize how the arguments
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are determined. For an example of why this can be useful,
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see `ipalib.crud.Mod`.
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"""
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if callable(self.takes_args):
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args = self.takes_args()
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else:
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args = self.takes_args
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for arg in args:
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yield arg
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def get_options(self):
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"""
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Iterate through parameters for ``Command.options`` namespace.
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Subclasses can override this to customize how the options
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are determined. For an example of why this can be useful,
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see `ipalib.crud.Mod`.
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"""
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if callable(self.takes_options):
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options = self.takes_options()
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else:
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options = self.takes_options
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for option in options:
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yield option
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def __create_args(self):
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"""
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Generator used to create args namespace.
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"""
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optional = False
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multivalue = False
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for arg in self.get_args():
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arg = create_param(arg)
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if optional and arg.required:
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raise ValueError(
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'%s: required argument after optional' % arg.name
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)
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if multivalue:
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raise ValueError(
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'%s: only final argument can be multivalue' % arg.name
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)
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if not arg.required:
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optional = True
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if arg.multivalue:
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multivalue = True
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yield arg
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class LocalOrRemote(Command):
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"""
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A command that is explicitly executed locally or remotely.
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This is for commands that makes sense to execute either locally or
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remotely to return a perhaps different result. The best example of
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this is the `ipalib.plugins.f_misc.env` plugin which returns the
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key/value pairs describing the configuration state: it can be
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"""
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takes_options = (
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Flag('server?',
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doc='Forward to server instead of running locally',
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),
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)
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def run(self, *args, **options):
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"""
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Dispatch to forward() or execute() based on ``server`` option.
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When running in a client context, this command is executed remotely if
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``options['server']`` is true; otherwise it is executed locally.
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When running in a server context, this command is always executed
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locally and the value of ``options['server']`` is ignored.
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"""
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if options['server'] and not self.env.in_server:
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return self.forward(*args, **options)
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return self.execute(*args, **options)
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class Object(plugable.Plugin):
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__public__ = frozenset((
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'backend',
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'methods',
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'properties',
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'params',
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'primary_key',
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'params_minus_pk',
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'get_dn',
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))
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backend = None
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methods = None
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properties = None
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params = None
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primary_key = None
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params_minus_pk = None
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# Can override in subclasses:
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backend_name = None
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takes_params = tuple()
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def set_api(self, api):
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super(Object, self).set_api(api)
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self.methods = plugable.NameSpace(
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self.__get_attrs('Method'), sort=False
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)
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self.properties = plugable.NameSpace(
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self.__get_attrs('Property'), sort=False
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)
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self.params = plugable.NameSpace(
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self.__get_params(), sort=False
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)
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pkeys = filter(lambda p: p.primary_key, self.params())
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if len(pkeys) > 1:
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raise ValueError(
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'%s (Object) has multiple primary keys: %s' % (
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self.name,
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', '.join(p.name for p in pkeys),
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)
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)
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if len(pkeys) == 1:
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self.primary_key = pkeys[0]
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self.params_minus_pk = plugable.NameSpace(
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filter(lambda p: not p.primary_key, self.params()), sort=False
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)
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if 'Backend' in self.api and self.backend_name in self.api.Backend:
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self.backend = self.api.Backend[self.backend_name]
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def params_minus(self, *names):
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"""
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Yield all Param whose name is not in ``names``.
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"""
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if len(names) == 1 and not isinstance(names[0], (Param, str)):
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names = names[0]
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minus = frozenset(names)
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for param in self.params():
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if param.name in minus or param in minus:
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continue
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yield param
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def get_dn(self, primary_key):
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"""
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Construct an LDAP DN from a primary_key.
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"""
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raise NotImplementedError('%s.get_dn()' % self.name)
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def __get_attrs(self, name):
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if name not in self.api:
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return
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namespace = self.api[name]
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assert type(namespace) is plugable.NameSpace
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for proxy in namespace(): # Equivalent to dict.itervalues()
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if proxy.obj_name == self.name:
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yield proxy.__clone__('attr_name')
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def __get_params(self):
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props = self.properties.__todict__()
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for spec in self.takes_params:
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if type(spec) is str:
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key = spec.rstrip('?*+')
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else:
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assert isinstance(spec, Param)
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key = spec.name
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if key in props:
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yield props.pop(key).param
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else:
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yield create_param(spec)
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def get_key(p):
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if p.param.required:
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if p.param.default_from is None:
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return 0
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return 1
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return 2
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for prop in sorted(props.itervalues(), key=get_key):
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yield prop.param
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class Attribute(plugable.Plugin):
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"""
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Base class implementing the attribute-to-object association.
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`Attribute` plugins are associated with an `Object` plugin to group
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a common set of commands that operate on a common set of parameters.
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The association between attribute and object is done using a simple
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naming convention: the first part of the plugin class name (up to the
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first underscore) is the object name, and rest is the attribute name,
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as this table shows:
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=============== =========== ==============
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Class name Object name Attribute name
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=============== =========== ==============
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noun_verb noun verb
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user_add user add
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user_first_name user first_name
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=============== =========== ==============
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For example:
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>>> class user_add(Attribute):
|
|
... pass
|
|
...
|
|
>>> instance = user_add()
|
|
>>> instance.obj_name
|
|
'user'
|
|
>>> instance.attr_name
|
|
'add'
|
|
|
|
In practice the `Attribute` class is not used directly, but rather is
|
|
only the base class for the `Method` and `Property` classes. Also see
|
|
the `Object` class.
|
|
"""
|
|
__public__ = frozenset((
|
|
'obj',
|
|
'obj_name',
|
|
))
|
|
__obj = None
|
|
|
|
def __init__(self):
|
|
m = re.match(
|
|
'^([a-z][a-z0-9]+)_([a-z][a-z0-9]+)$',
|
|
self.__class__.__name__
|
|
)
|
|
assert m
|
|
self.__obj_name = m.group(1)
|
|
self.__attr_name = m.group(2)
|
|
super(Attribute, self).__init__()
|
|
|
|
def __get_obj_name(self):
|
|
return self.__obj_name
|
|
obj_name = property(__get_obj_name)
|
|
|
|
def __get_attr_name(self):
|
|
return self.__attr_name
|
|
attr_name = property(__get_attr_name)
|
|
|
|
def __get_obj(self):
|
|
"""
|
|
Returns the obj instance this attribute is associated with, or None
|
|
if no association has been set.
|
|
"""
|
|
return self.__obj
|
|
obj = property(__get_obj)
|
|
|
|
def set_api(self, api):
|
|
self.__obj = api.Object[self.obj_name]
|
|
super(Attribute, self).set_api(api)
|
|
|
|
|
|
class Method(Attribute, Command):
|
|
"""
|
|
A command with an associated object.
|
|
|
|
A `Method` plugin must have a corresponding `Object` plugin. The
|
|
association between object and method is done through a simple naming
|
|
convention: the first part of the method name (up to the first under
|
|
score) is the object name, as the examples in this table show:
|
|
|
|
============= =========== ==============
|
|
Method name Object name Attribute name
|
|
============= =========== ==============
|
|
user_add user add
|
|
noun_verb noun verb
|
|
door_open_now door open_now
|
|
============= =========== ==============
|
|
|
|
There are three different places a method can be accessed. For example,
|
|
say you created a `Method` plugin and its corresponding `Object` plugin
|
|
like this:
|
|
|
|
>>> from ipalib import create_api
|
|
>>> api = create_api()
|
|
>>> class user_add(Method):
|
|
... def run(self):
|
|
... return 'Added the user!'
|
|
...
|
|
>>> class user(Object):
|
|
... pass
|
|
...
|
|
>>> api.register(user_add)
|
|
>>> api.register(user)
|
|
>>> api.finalize()
|
|
|
|
First, the ``user_add`` plugin can be accessed through the ``api.Method``
|
|
namespace:
|
|
|
|
>>> list(api.Method)
|
|
['user_add']
|
|
>>> api.Method.user_add() # Will call user_add.run()
|
|
'Added the user!'
|
|
|
|
Second, because `Method` is a subclass of `Command`, the ``user_add``
|
|
plugin can also be accessed through the ``api.Command`` namespace:
|
|
|
|
>>> list(api.Command)
|
|
['user_add']
|
|
>>> api.Command.user_add() # Will call user_add.run()
|
|
'Added the user!'
|
|
|
|
And third, ``user_add`` can be accessed as an attribute on the ``user``
|
|
`Object`:
|
|
|
|
>>> list(api.Object)
|
|
['user']
|
|
>>> list(api.Object.user.methods)
|
|
['add']
|
|
>>> api.Object.user.methods.add() # Will call user_add.run()
|
|
'Added the user!'
|
|
|
|
The `Attribute` base class implements the naming convention for the
|
|
attribute-to-object association. Also see the `Object` and the
|
|
`Property` classes.
|
|
"""
|
|
__public__ = Attribute.__public__.union(Command.__public__)
|
|
extra_options_first = False
|
|
extra_args_first = False
|
|
|
|
def __init__(self):
|
|
super(Method, self).__init__()
|
|
|
|
|
|
class Property(Attribute):
|
|
__public__ = frozenset((
|
|
'rules',
|
|
'param',
|
|
'type',
|
|
)).union(Attribute.__public__)
|
|
|
|
klass = Str
|
|
default = None
|
|
default_from = None
|
|
normalizer = None
|
|
|
|
def __init__(self):
|
|
super(Property, self).__init__()
|
|
self.rules = tuple(
|
|
sorted(self.__rules_iter(), key=lambda f: getattr(f, '__name__'))
|
|
)
|
|
self.kwargs = tuple(
|
|
sorted(self.__kw_iter(), key=lambda keyvalue: keyvalue[0])
|
|
)
|
|
kw = dict(self.kwargs)
|
|
self.param = self.klass(self.attr_name, *self.rules, **kw)
|
|
|
|
def __kw_iter(self):
|
|
for (key, kind, default) in self.klass.kwargs:
|
|
if getattr(self, key, None) is not None:
|
|
yield (key, getattr(self, key))
|
|
|
|
def __rules_iter(self):
|
|
"""
|
|
Iterates through the attributes in this instance to retrieve the
|
|
methods implementing validation rules.
|
|
"""
|
|
for name in dir(self.__class__):
|
|
if name.startswith('_'):
|
|
continue
|
|
base_attr = getattr(self.__class__, name)
|
|
if is_rule(base_attr):
|
|
attr = getattr(self, name)
|
|
if is_rule(attr):
|
|
yield attr
|
|
|
|
|
|
class Application(Command):
|
|
"""
|
|
Base class for commands register by an external application.
|
|
|
|
Special commands that only apply to a particular application built atop
|
|
`ipalib` should subclass from ``Application``.
|
|
|
|
Because ``Application`` subclasses from `Command`, plugins that subclass
|
|
from ``Application`` with be available in both the ``api.Command`` and
|
|
``api.Application`` namespaces.
|
|
"""
|
|
|
|
__public__ = frozenset((
|
|
'application',
|
|
'set_application'
|
|
)).union(Command.__public__)
|
|
__application = None
|
|
|
|
def __get_application(self):
|
|
"""
|
|
Returns external ``application`` object.
|
|
"""
|
|
return self.__application
|
|
application = property(__get_application)
|
|
|
|
def set_application(self, application):
|
|
"""
|
|
Sets the external application object to ``application``.
|
|
"""
|
|
if self.__application is not None:
|
|
raise AttributeError(
|
|
'%s.application can only be set once' % self.name
|
|
)
|
|
if application is None:
|
|
raise TypeError(
|
|
'%s.application cannot be None' % self.name
|
|
)
|
|
object.__setattr__(self, '_Application__application', application)
|
|
assert self.application is application
|