9f7915d998
Those were special names in Qubes 3.x, don't allow such VMs to avoid (potentially fatal) confusion. Fixes QubesOS/qubes-issues#3002
527 lines
18 KiB
Python
527 lines
18 KiB
Python
#
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# The Qubes OS Project, https://www.qubes-os.org/
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#
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# Copyright (C) 2010-2015 Joanna Rutkowska <joanna@invisiblethingslab.com>
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# Copyright (C) 2011-2015 Marek Marczykowski-Górecki
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# <marmarek@invisiblethingslab.com>
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# Copyright (C) 2014-2015 Wojtek Porczyk <woju@invisiblethingslab.com>
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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 2 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 along
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# with this program; if not, write to the Free Software Foundation, Inc.,
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# 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
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#
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'''Qubes Virtual Machines
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'''
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import asyncio
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import re
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import string
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import lxml.etree
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import qubes
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import qubes.devices
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import qubes.events
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import qubes.log
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VM_ENTRY_POINT = 'qubes.vm'
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def validate_name(holder, prop, value):
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''' Check if value is syntactically correct VM name '''
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if not isinstance(value, str):
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raise TypeError('VM name must be string, {!r} found'.format(
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type(value).__name__))
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if len(value) > 31:
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if holder is not None and prop is not None:
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raise qubes.exc.QubesPropertyValueError(holder, prop, value,
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'{} value must be shorter than 32 characters'.format(
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prop.__name__))
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else:
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raise qubes.exc.QubesValueError(
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'VM name must be shorter than 32 characters')
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# this regexp does not contain '+'; if it had it, we should specifically
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# disallow 'lost+found' #1440
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if re.match(r"^[a-zA-Z][a-zA-Z0-9_-]*$", value) is None:
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if holder is not None and prop is not None:
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raise qubes.exc.QubesPropertyValueError(holder, prop, value,
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'{} value contains illegal characters'.format(prop.__name__))
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else:
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raise qubes.exc.QubesValueError(
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'VM name contains illegal characters')
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if value in ('none', 'default'):
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raise qubes.exc.QubesValueError(
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'VM name cannot be \'none\' nor \'default\'')
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class Features(dict):
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'''Manager of the features.
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Features can have three distinct values: no value (not present in mapping,
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which is closest thing to :py:obj:`None`), empty string (which is
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interpreted as :py:obj:`False`) and non-empty string, which is
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:py:obj:`True`. Anything assigned to the mapping is coerced to strings,
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however if you assign instances of :py:class:`bool`, they are converted as
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described above. Be aware that assigning the number `0` (which is considered
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false in Python) will result in string `'0'`, which is considered true.
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This class inherits from dict, but has most of the methods that manipulate
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the item disarmed (they raise NotImplementedError). The ones that are left
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fire appropriate events on the qube that owns an instance of this class.
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'''
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#
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# Those are the methods that affect contents. Either disarm them or make
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# them report appropriate events. Good approach is to rewrite them carefully
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# using official documentation, but use only our (overloaded) methods.
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#
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def __init__(self, vm, other=None, **kwargs):
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super(Features, self).__init__()
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self.vm = vm
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self.update(other, **kwargs)
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def __delitem__(self, key):
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super(Features, self).__delitem__(key)
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self.vm.fire_event('domain-feature-delete', feature=key)
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def __setitem__(self, key, value):
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if value is None or isinstance(value, bool):
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value = '1' if value else ''
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else:
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value = str(value)
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try:
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oldvalue = self[key]
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has_oldvalue = True
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except KeyError:
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has_oldvalue = False
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super(Features, self).__setitem__(key, value)
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if has_oldvalue:
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self.vm.fire_event('domain-feature-set', feature=key, value=value,
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oldvalue=oldvalue)
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else:
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self.vm.fire_event('domain-feature-set', feature=key, value=value)
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def clear(self):
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for key in tuple(self):
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del self[key]
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def pop(self, _key, _default=None):
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'''Not implemented
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:raises: NotImplementedError
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'''
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raise NotImplementedError()
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def popitem(self):
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'''Not implemented
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:raises: NotImplementedError
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'''
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raise NotImplementedError()
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def setdefault(self, _key, _default=None):
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'''Not implemented
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:raises: NotImplementedError
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'''
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raise NotImplementedError()
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def update(self, other=None, **kwargs):
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if other is not None:
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if hasattr(other, 'keys'):
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for key in other:
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self[key] = other[key]
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else:
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for key, value in other:
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self[key] = value
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for key in kwargs:
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self[key] = kwargs[key]
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#
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# end of overriding
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#
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_NO_DEFAULT = object()
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def check_with_template(self, feature, default=_NO_DEFAULT):
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''' Check if the vm's template has the specified feature. '''
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if feature in self:
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return self[feature]
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if hasattr(self.vm, 'template') and self.vm.template is not None:
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return self.vm.template.features.check_with_template(feature,
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default)
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if default is self._NO_DEFAULT:
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raise KeyError(feature)
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return default
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class Tags(set):
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'''Manager of the tags.
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Tags are simple: tag either can be present on qube or not. Tag is a
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simple string consisting of ASCII alphanumeric characters, plus `_` and
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`-`.
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This class inherits from set, but has most of the methods that manipulate
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the item disarmed (they raise NotImplementedError). The ones that are left
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fire appropriate events on the qube that owns an instance of this class.
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'''
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#
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# Those are the methods that affect contents. Either disarm them or make
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# them report appropriate events. Good approach is to rewrite them carefully
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# using official documentation, but use only our (overloaded) methods.
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#
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def __init__(self, vm, seq=()):
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super(Tags, self).__init__()
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self.vm = vm
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self.update(seq)
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def clear(self):
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'''Remove all tags'''
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for item in tuple(self):
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self.remove(item)
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def symmetric_difference_update(self, *args, **kwargs):
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'''Not implemented
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:raises: NotImplementedError
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'''
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raise NotImplementedError()
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def intersection_update(self, *args, **kwargs):
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'''Not implemented
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:raises: NotImplementedError
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'''
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raise NotImplementedError()
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def pop(self):
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'''Not implemented
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:raises: NotImplementedError
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'''
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raise NotImplementedError()
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def discard(self, elem):
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'''Remove a tag if present'''
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if elem in self:
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self.remove(elem)
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def update(self, *others):
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'''Add tags from iterable(s)'''
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for other in others:
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for elem in other:
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self.add(elem)
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def add(self, elem):
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'''Add a tag'''
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allowed_chars = string.ascii_letters + string.digits + '_-'
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if any(i not in allowed_chars for i in elem):
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raise ValueError('Invalid character in tag')
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if elem in self:
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return
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super(Tags, self).add(elem)
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self.vm.fire_event('domain-tag-add', tag=elem)
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def remove(self, elem):
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'''Remove a tag'''
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super(Tags, self).remove(elem)
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self.vm.fire_event('domain-tag-delete', tag=elem)
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#
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# end of overriding
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#
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@staticmethod
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def validate_tag(tag):
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safe_set = string.ascii_letters + string.digits + '-_'
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assert all((x in safe_set) for x in tag)
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class BaseVM(qubes.PropertyHolder):
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'''Base class for all VMs
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:param app: Qubes application context
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:type app: :py:class:`qubes.Qubes`
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:param xml: xml node from which to deserialise
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:type xml: :py:class:`lxml.etree._Element` or :py:obj:`None`
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This class is responsible for serializing and deserialising machines and
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provides basic framework. It contains no management logic. For that, see
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:py:class:`qubes.vm.qubesvm.QubesVM`.
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'''
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# pylint: disable=no-member
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def __init__(self, app, xml, features=None, devices=None, tags=None,
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**kwargs):
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# pylint: disable=redefined-outer-name
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# self.app must be set before super().__init__, because some property
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# setters need working .app attribute
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#: mother :py:class:`qubes.Qubes` object
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self._qdb_watch_paths = set()
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self._qdb_connection_watch = None
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self.app = app
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super(BaseVM, self).__init__(xml, **kwargs)
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#: dictionary of features of this qube
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self.features = Features(self, features)
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#: :py:class:`DeviceManager` object keeping devices that are attached to
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#: this domain
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self.devices = devices or qubes.devices.DeviceManager(self)
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#: user-specified tags
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self.tags = Tags(self, tags or ())
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#: logger instance for logging messages related to this VM
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self.log = None
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#: storage volumes
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self.volumes = {}
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#: storage manager
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self.storage = None
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if hasattr(self, 'name'):
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self.init_log()
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def load_extras(self):
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# features
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for node in self.xml.xpath('./features/feature'):
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self.features[node.get('name')] = node.text
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# devices (pci, usb, ...)
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for parent in self.xml.xpath('./devices'):
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devclass = parent.get('class')
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for node in parent.xpath('./device'):
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options = {}
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for option in node.xpath('./option'):
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options[option.get('name')] = option.text
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device_assignment = qubes.devices.DeviceAssignment(
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self.app.domains[node.get('backend-domain')],
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node.get('id'),
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options,
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persistent=True
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)
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self.devices[devclass].load_persistent(device_assignment)
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# tags
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for node in self.xml.xpath('./tags/tag'):
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self.tags.add(node.get('name'))
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# SEE:1815 firewall, policy.
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def init_log(self):
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'''Initialise logger for this domain.'''
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self.log = qubes.log.get_vm_logger(self.name)
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def __xml__(self):
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element = lxml.etree.Element('domain')
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element.set('id', 'domain-' + str(self.qid))
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element.set('class', self.__class__.__name__)
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element.append(self.xml_properties())
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features = lxml.etree.Element('features')
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for feature in self.features:
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node = lxml.etree.Element('feature', name=feature)
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node.text = self.features[feature]
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features.append(node)
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element.append(features)
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for devclass in self.devices:
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devices = lxml.etree.Element('devices')
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devices.set('class', devclass)
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for device in self.devices[devclass].assignments(persistent=True):
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node = lxml.etree.Element('device')
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node.set('backend-domain', device.backend_domain.name)
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node.set('id', device.ident)
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for key, val in device.options.items():
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option_node = lxml.etree.Element('option')
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option_node.set('name', key)
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option_node.text = val
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node.append(option_node)
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devices.append(node)
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element.append(devices)
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tags = lxml.etree.Element('tags')
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for tag in self.tags:
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node = lxml.etree.Element('tag', name=tag)
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tags.append(node)
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element.append(tags)
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return element
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def __repr__(self):
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proprepr = []
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for prop in self.property_list():
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try:
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proprepr.append('{}={!s}'.format(
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prop.__name__, getattr(self, prop.__name__)))
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except AttributeError:
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continue
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return '<{} object at {:#x} {}>'.format(
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self.__class__.__name__, id(self), ' '.join(proprepr))
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#
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# xml serialising methods
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#
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def create_config_file(self):
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'''Create libvirt's XML domain config file
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'''
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domain_config = self.app.env.select_template([
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'libvirt/xen/by-name/{}.xml'.format(self.name),
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'libvirt/xen-user.xml',
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'libvirt/xen-dist.xml',
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'libvirt/xen.xml',
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]).render(vm=self)
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return domain_config
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def watch_qdb_path(self, path):
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'''Add a QubesDB path to be watched.
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Each change to the path will cause `domain-qdb-change:path` event to be
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fired.
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You can call this method for example in response to
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`domain-init` and `domain-load` events.
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'''
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if path not in self._qdb_watch_paths:
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self._qdb_watch_paths.add(path)
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if self._qdb_connection_watch:
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self._qdb_connection_watch.watch(path)
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def _qdb_watch_reader(self, loop):
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'''Callback when self._qdb_connection_watch.watch_fd() FD is
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readable.
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Read reported event (watched path change) and fire appropriate event.
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'''
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import qubesdb # pylint: disable=import-error
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try:
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path = self._qdb_connection_watch.read_watch()
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for watched_path in self._qdb_watch_paths:
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if watched_path == path or (
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watched_path.endswith('/') and
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path.startswith(watched_path)):
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self.fire_event('domain-qdb-change:' + watched_path,
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path=path)
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except qubesdb.DisconnectedError:
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loop.remove_reader(self._qdb_connection_watch.watch_fd())
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self._qdb_connection_watch.close()
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self._qdb_connection_watch = None
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def start_qdb_watch(self, name, loop=None):
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'''Start watching QubesDB
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Calling this method in appropriate time is responsibility of child
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class.
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'''
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import qubesdb # pylint: disable=import-error
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self._qdb_connection_watch = qubesdb.QubesDB(name)
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if loop is None:
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loop = asyncio.get_event_loop()
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loop.add_reader(self._qdb_connection_watch.watch_fd(),
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self._qdb_watch_reader, loop)
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for path in self._qdb_watch_paths:
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self._qdb_connection_watch.watch(path)
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class VMProperty(qubes.property):
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'''Property that is referring to a VM
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:param type vmclass: class that returned VM is supposed to be instance of
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and all supported by :py:class:`property` with the exception of ``type`` \
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and ``setter``
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'''
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_none_value = ''
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def __init__(self, name, vmclass=BaseVM, allow_none=False,
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**kwargs):
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if 'type' in kwargs:
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raise TypeError(
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"'type' keyword parameter is unsupported in {}".format(
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self.__class__.__name__))
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if not issubclass(vmclass, BaseVM):
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raise TypeError(
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"'vmclass' should specify a subclass of qubes.vm.BaseVM")
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super(VMProperty, self).__init__(name,
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saver=(lambda self_, prop, value:
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self._none_value if value is None else value.name),
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**kwargs)
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self.vmclass = vmclass
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self.allow_none = allow_none
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def __set__(self, instance, value):
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if value is self.__class__.DEFAULT:
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self.__delete__(instance)
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return
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if value == self._none_value:
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value = None
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if value is None:
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if self.allow_none:
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super(VMProperty, self).__set__(instance, value)
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return
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else:
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raise ValueError(
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'Property {!r} does not allow setting to {!r}'.format(
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self.__name__, value))
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app = instance if isinstance(instance, qubes.Qubes) else instance.app
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try:
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vm = app.domains[value]
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except KeyError:
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raise qubes.exc.QubesVMNotFoundError(value)
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if not isinstance(vm, self.vmclass):
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raise TypeError('wrong VM class: domains[{!r}] is of type {!s} '
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'and not {!s}'.format(value,
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vm.__class__.__name__,
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self.vmclass.__name__))
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super(VMProperty, self).__set__(instance, vm)
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def sanitize(self, *, untrusted_newvalue):
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try:
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untrusted_vmname = untrusted_newvalue.decode('ascii')
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except UnicodeDecodeError:
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raise qubes.exc.QubesValueError
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if untrusted_vmname == '':
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# allow empty VM name for setting VMProperty value, because it's
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# string representation of None (see self._none_value)
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return untrusted_vmname
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validate_name(None, self, untrusted_vmname)
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return untrusted_vmname
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def setter_label(self, prop, value):
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''' Helper for setting the domain label '''
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# pylint: disable=unused-argument
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if isinstance(value, qubes.Label):
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return value
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if isinstance(value, str) and value.startswith('label-'):
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return self.app.labels[int(value.split('-', 1)[1])]
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return self.app.get_label(value)
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