mirror of
https://git.kernel.org/pub/scm/network/wireless/iwd.git
synced 2024-12-28 20:32:32 +01:00
15c0920777
Adds a new wait argument which, if false, will call the DBus method and return immediately. This allows the caller to create multiple radios very quickly, simulating (as close as we can) a wifi card with dual phy's which appear in the kernel simultaneously. The name argument was also changed to be mandatory, which is now required by hwsim.
453 lines
14 KiB
Python
Executable File
453 lines
14 KiB
Python
Executable File
#!/usr/bin/python3
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import dbus
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import sys
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import collections
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from weakref import WeakValueDictionary
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from abc import ABCMeta, abstractmethod
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from enum import Enum
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import iwd
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from config import ctx
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HWSIM_SERVICE = 'net.connman.hwsim'
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HWSIM_RULE_MANAGER_INTERFACE = 'net.connman.hwsim.RuleManager'
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HWSIM_RULE_INTERFACE = 'net.connman.hwsim.Rule'
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HWSIM_RADIO_MANAGER_INTERFACE = 'net.connman.hwsim.RadioManager'
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HWSIM_RADIO_INTERFACE = 'net.connman.hwsim.Radio'
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HWSIM_INTERFACE_INTERFACE = 'net.connman.hwsim.Interface'
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HWSIM_AGENT_MANAGER_PATH = '/'
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class HwsimDBusAbstract(iwd.AsyncOpAbstract):
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__metaclass__ = ABCMeta
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def __init__(self, object_path, properties = None, namespace=ctx):
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self._bus = namespace.get_bus()
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self._object_path = object_path
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proxy = self._bus.get_object(HWSIM_SERVICE, self._object_path)
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self._iface = dbus.Interface(proxy, self._iface_name)
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self._prop_proxy = dbus.Interface(proxy, iwd.DBUS_PROPERTIES)
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if properties is None:
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self._properties = self._prop_proxy.GetAll(self._iface_name)
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else:
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self._properties = properties
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self._prop_proxy.connect_to_signal("PropertiesChanged",
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self._property_changed_handler, path_keyword="path")
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def _property_changed_handler(self, interface, changed, invalidated, path):
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if interface == self._iface_name and path == self._object_path:
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for name, value in changed.items():
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self._properties[name] = value
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@abstractmethod
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def __str__(self):
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pass
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@property
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def path(self):
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return self._object_path
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class Rule(HwsimDBusAbstract):
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_iface_name = HWSIM_RULE_INTERFACE
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@property
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def source(self):
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return self._properties['Source']
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@source.setter
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def source(self, value):
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self._prop_proxy.Set(self._iface_name, 'Source', value, reply_handler=self._success,
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error_handler=self._failure)
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self._wait_for_async_op()
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@property
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def destination(self):
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return self._properties['Destination']
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@destination.setter
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def destination(self, value):
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self._prop_proxy.Set(self._iface_name, 'Destination', value, reply_handler=self._success,
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error_handler=self._failure)
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self._wait_for_async_op()
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@property
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def bidirectional(self):
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return bool(self._properties['Bidirectional'])
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@bidirectional.setter
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def bidirectional(self, value):
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self._prop_proxy.Set(self._iface_name, 'Bidirectional',
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dbus.Boolean(value), reply_handler=self._success, error_handler=self._failure)
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self._wait_for_async_op()
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@property
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def frequency(self):
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return int(self._properties['Frequency'])
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@frequency.setter
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def frequency(self, value):
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self._prop_proxy.Set(self._iface_name, 'Frequency',
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dbus.UInt32(value), reply_handler=self._success, error_handler=self._failure)
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self._wait_for_async_op()
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@property
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def priority(self):
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return int(self._properties['Priority'])
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@priority.setter
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def priority(self, value):
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self._prop_proxy.Set(self._iface_name, 'Priority',
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dbus.Int16(value), reply_handler=self._success, error_handler=self._failure)
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self._wait_for_async_op()
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@property
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def signal(self):
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return int(self._properties['SignalStrength'])
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@signal.setter
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def signal(self, value):
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self._prop_proxy.Set(self._iface_name, 'SignalStrength',
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dbus.Int16(value), reply_handler=self._success, error_handler=self._failure)
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self._wait_for_async_op()
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@property
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def drop(self):
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return bool(self._properties['Drop'])
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@drop.setter
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def drop(self, value):
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self._prop_proxy.Set(self._iface_name, 'Drop', dbus.Boolean(value),
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reply_handler=self._success, error_handler=self._failure)
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self._wait_for_async_op()
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@property
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def delay(self):
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return int(self._properties['Delay'])
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@delay.setter
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def delay(self, value):
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self._prop_proxy.Set(self._iface_name, 'Delay', dbus.UInt32(value),
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reply_handler=self._success, error_handler=self._failure)
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self._wait_for_async_op()
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@property
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def prefix(self):
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return self._properties['Prefix']
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@prefix.setter
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def prefix(self, value):
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self._prop_proxy.Set(self._iface_name, 'Prefix', dbus.ByteArray.fromhex(value),
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reply_handler=self._success, error_handler=self._failure)
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self._wait_for_async_op()
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@property
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def enabled(self):
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return self._properties['Enabled']
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@enabled.setter
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def enabled(self, value):
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self._prop_proxy.Set(self._iface_name, 'Enabled', value,
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reply_handler=self._success, error_handler=self._failure)
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self._wait_for_async_op()
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@property
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def match_times(self):
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return self._properties['MatchTimes']
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@match_times.setter
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def match_times(self, value):
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self._prop_proxy.Set(self._iface_name, 'MatchTimes', dbus.UInt16(value))
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@property
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def drop_ack(self):
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return self._properties(['DropAck'])
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@drop_ack.setter
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def drop_ack(self, value):
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self._prop_proxy.Set(self._iface_name, 'DropAck', value)
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@property
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def match(self):
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return self._properties['MatchBytes']
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@match.setter
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def match(self, value):
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self._prop_proxy.Set(self._iface_name, 'MatchBytes', dbus.ByteArray.fromhex(value))
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@property
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def match_offset(self):
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return self._properties(['MatchBytesOffset'])
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@match_offset.setter
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def match_offset(self, value):
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self._prop_proxy.Set(self._iface_name, 'MatchBytesOffset', dbus.UInt16(value))
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def remove(self):
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self._iface.Remove(reply_handler=self._success,
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error_handler=self._failure)
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self._wait_for_async_op()
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def __del__(self):
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self.remove()
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def __str__(self, prefix = ''):
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return prefix + 'Rule: ' + self.path + '\n' + \
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prefix + '\tSource:\t\t' + self.source + '\n' + \
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prefix + '\tDestination:\t' + self.destination + '\n' + \
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prefix + '\tBidirectional:\t' + \
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str(self.bidirectional) + '\n' + \
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prefix + '\tPriority:\t' + str(self.priority) + '\n' +\
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prefix + '\tFrequency:\t' + str(self.frequency) + '\n' + \
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prefix + '\tApply rssi:\t' + str(self.signal) + '\n' + \
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prefix + '\tApply drop:\t' + str(self.drop) + '\n' + \
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prefix + '\tPrefix:\t' + str([hex(b) for b in self.prefix]) + '\n' + \
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prefix + '\tDelay:\t' + str(self.delay) + '\n' + \
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prefix + '\tEnabled:\t' + str(self.enabled) + '\n'
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class RuleSet(collections.Mapping):
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def __init__(self, hwsim, objects):
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self._dict = {}
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self._rule_manager = hwsim.rule_manager
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hwsim.object_manager.connect_to_signal("InterfacesAdded",
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self._interfaces_added_handler, HWSIM_RULE_INTERFACE)
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hwsim.object_manager.connect_to_signal("InterfacesRemoved",
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self._interfaces_removed_handler, HWSIM_RULE_INTERFACE)
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for path in objects:
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for interface in objects[path]:
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if interface == HWSIM_RULE_INTERFACE:
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self._dict[path] = Rule(path, objects[path][interface])
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def __getitem__(self, key):
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return self._dict.__getitem__(key)
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def __iter__(self):
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return self._dict.__iter__()
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def __len__(self):
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return self._dict.__len__()
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def __delitem__(self, key):
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self._dict.pop(key).remove()
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def _interfaces_added_handler(self, path, interfaces):
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self._dict[path] = Rule(interfaces[HWSIM_RULE_INTERFACE])
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def _interfaces_removed_handler(self, path, interfaces):
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del _dict[path]
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def create(self):
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path = self._rule_manager.AddRule()
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obj = Rule(path)
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self._dict[path] = obj
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return obj
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def remove_all(self):
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for rule in self._dict.values():
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rule.remove()
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class Radio(HwsimDBusAbstract):
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_iface_name = HWSIM_RADIO_INTERFACE
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@property
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def name(self):
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return self._properties['Name']
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@property
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def addresses(self):
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return [str(addr) for addr in self._properties['Addresses']]
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def remove(self):
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self._iface.Destroy(reply_handler=self._success,
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error_handler=self._failure)
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self._wait_for_async_op()
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def __str__(self, prefix = ''):
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return prefix + 'Radio: ' + self.path + '\n' + \
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prefix + '\tName:\t\t' + self.name + '\n' + \
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prefix + '\tAddresses:\t' + repr(self.destination) + '\n'
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class RadioList(collections.Mapping):
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def __init__(self, hwsim, objects):
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self._dict = {}
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self._radio_manager = hwsim.radio_manager
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hwsim.object_manager.connect_to_signal("InterfacesAdded",
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self._interfaces_added_handler, HWSIM_RADIO_INTERFACE)
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hwsim.object_manager.connect_to_signal("InterfacesRemoved",
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self._interfaces_removed_handler, HWSIM_RADIO_INTERFACE)
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for path in objects:
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for interface in objects[path]:
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if interface == HWSIM_RADIO_INTERFACE:
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self._dict[path] = Radio(path, objects[path][interface])
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def __getitem__(self, key):
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return self._dict.__getitem__(key)
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def __iter__(self):
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return self._dict.__iter__()
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def __len__(self):
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return self._dict.__len__()
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def __delitem__(self, key):
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self._dict.pop(key).remove()
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def values(self):
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return self._dict.values()
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def _interfaces_added_handler(self, path, interfaces):
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self._dict[path] = Radio(interfaces[HWSIM_RADIO_INTERFACE])
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def _interfaces_removed_handler(self, path, interfaces):
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del _dict[path]
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def create(self, name, p2p_device=False, iftype_disable=None,
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cipher_disable=None, wait=True):
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args = dbus.Dictionary({
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'Name': name,
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'P2P': p2p_device,
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}, signature='sv')
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if iftype_disable:
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args['InterfaceTypeDisable'] = iftype_disable
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if cipher_disable:
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args['CipherTypeDisable'] = cipher_disable
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if not wait:
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self._radio_manager.CreateRadio(args, reply_handler=self._success,
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error_handler=self._failure)
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return None
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path = self._radio_manager.CreateRadio(args)
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obj = Radio(path)
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self._dict[path] = obj
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return obj
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def _success(self, bla):
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pass
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def _failure(self, ex):
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pass
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class Hwsim(iwd.AsyncOpAbstract):
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_instances = WeakValueDictionary()
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def __new__(cls, namespace=ctx):
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key = id(namespace)
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if key not in cls._instances.keys():
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obj = object.__new__(cls)
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obj._initialized = False
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cls._instances[key] = obj
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return cls._instances[key]
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def __init__(self, namespace=ctx):
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if self._initialized:
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return
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self._initialized = True
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self._bus = namespace.get_bus()
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self._rule_manager_if = dbus.Interface(
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self._bus.get_object(HWSIM_SERVICE, '/'),
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HWSIM_RULE_MANAGER_INTERFACE)
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self._radio_manager_if = dbus.Interface(
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self._bus.get_object(HWSIM_SERVICE, '/'),
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HWSIM_RADIO_MANAGER_INTERFACE)
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self._object_manager_if = dbus.Interface(
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self._bus.get_object(HWSIM_SERVICE, '/'),
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iwd.DBUS_OBJECT_MANAGER)
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objects = self.object_manager.GetManagedObjects()
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self._rules = RuleSet(self, objects)
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self._radios = RadioList(self, objects)
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@property
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def rules(self):
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return self._rules
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@property
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def rule_manager(self):
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return self._rule_manager_if
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@property
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def radios(self):
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return self._radios
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@property
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def radio_manager(self):
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return self._radio_manager_if
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@property
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def object_manager(self):
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return self._object_manager_if
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@staticmethod
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def _convert_address(address):
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first = int(address[0:2], base=16)
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first |= 0x40
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first = format(first, 'x')
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address = first + address[2:]
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return address
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def spoof_disassociate(self, radio, freq, station):
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'''
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Send a spoofed disassociate frame to a station
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'''
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dest = self._convert_address(radio.addresses[0].replace(':', ''))
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frame = 'a0 00 3a 01'
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frame += station.replace(':', '')
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frame += dest
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frame += dest
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frame += '30 01 07 00'
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self.spoof_frame(radio, freq, station, frame)
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def spoof_frame(self, radio, freq, station, frame):
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'''
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Send a spoofed arbitrary frame to a station
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'''
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radio_path = None
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objects = self.object_manager.GetManagedObjects()
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for path in objects:
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obj = objects[path]
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for interface in obj:
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if interface == HWSIM_INTERFACE_INTERFACE:
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if obj[interface]['Address'] == radio.addresses[0] or \
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obj[interface]['Address'] == radio.addresses[1]:
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radio_path = path
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break
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if not radio_path:
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raise Exception("Could not find radio %s" % radio.path)
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iface = dbus.Interface(self._bus.get_object(HWSIM_SERVICE, radio_path),
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HWSIM_INTERFACE_INTERFACE)
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iface.SendFrame(dbus.ByteArray.fromhex(station.replace(':', '')),
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freq, -30, dbus.ByteArray.fromhex(frame))
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def get_radio(self, name):
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for path in self.radios:
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radio = self.radios[path]
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if radio.name == name:
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return radio
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return None
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