mirror of
https://git.kernel.org/pub/scm/network/wireless/iwd.git
synced 2024-11-22 14:49:24 +01:00
df46776046
Similarly to ofono/phonesim allow tests to be skipped if wpa_supplicant is not found on the system. This required some changes to DPP/P2P where Wpas() should be called first since this can now throw a SkipTest exception. The Wpas class was also made to allow __del__ to be called without throwing additional exceptions in case wpa_supplicant was not found.
333 lines
11 KiB
Python
333 lines
11 KiB
Python
#!/usr/bin/python3
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import os
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import socket
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import shutil
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from gi.repository import GLib
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from config import ctx
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from unittest import SkipTest
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import binascii
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from utils import Process
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ctrl_count = 0
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class Wpas:
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io_watch = None
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sockets = {}
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wpa_supplicant = None
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cleanup_paths = []
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def _start_wpas(self, config_name=None, p2p=False):
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if not shutil.which('wpa_supplicant'):
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print('wpa_supplicant not found, skipping test')
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raise SkipTest
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main_interface = None
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for interface in ctx.wpas_interfaces:
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if config_name is None or interface.config == config_name:
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if main_interface is not None:
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raise Exception('More than one wpa_supplicant interface matches given config')
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main_interface = interface
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if main_interface is None:
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raise Exception('No matching wpa_supplicant interface')
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ifname = main_interface.name
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if p2p:
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ifname = 'p2p-dev-' + ifname
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self.interface = main_interface
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self.ifname = ifname
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self.config_path = '/tmp/' + self.interface.config
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self.config = self._get_config()
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self.socket_path = self.config['ctrl_interface']
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cmd = ['wpa_supplicant', '-i', self.interface.name, '-c', self.config_path]
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if Process.is_verbose('wpa_supplicant-dbg'):
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cmd += ['-d']
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self.wpa_supplicant = ctx.start_process(cmd)
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self.sockets = {}
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self.io_watch = GLib.io_add_watch(self._get_socket(), GLib.IO_IN, self._handle_data_in)
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self.p2p_peers = {}
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self.p2p_go_neg_requests = {}
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self.p2p_clients = {}
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self.p2p_group = None
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self._rx_data = []
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self._ctrl_request('ATTACH')
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self.wait_for_event('OK')
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def __init__(self, *args, **kwargs):
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self._start_wpas(*args, **kwargs)
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def _get_config(self):
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f = open(self.config_path)
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lines = f.readlines()
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f.close()
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return dict([[v.strip() for v in kv] for kv in [l.split('#', 1)[0].split('=', 1) for l in lines] if len(kv) == 2])
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def _check_event(self, event):
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if not event and len(self._rx_data) >= 1:
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print("returning %s" % self._rx_data[0])
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return self._rx_data[0]
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for e in self._rx_data:
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if event in e:
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return self._rx_data
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return False
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def wait_for_event(self, event, timeout=10):
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self._rx_data = []
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return ctx.non_block_wait(self._check_event, timeout, event)
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def wait_for_result(self, timeout=10):
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self._rx_data = []
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return self.wait_for_event(None, timeout=timeout)
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def _event_parse(self, line):
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# Unescape event parameter values in '', other escaping rules not implemented
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key = None
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value = ''
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count = 0
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quoted = False
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event = {}
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def handle_eow():
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nonlocal key, value, count, event
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if count == 0:
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key = 'event'
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elif key is None:
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if not value:
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return
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key = 'arg' + str(count)
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event[key] = value
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key = None
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value = ''
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count += 1
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for ch in line:
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if ch == '\'':
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quoted = not quoted
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elif quoted:
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value += ch
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elif ch == '=' and key is None:
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key = value
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value = ''
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elif ch in ' \n':
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handle_eow()
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else:
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value += ch
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handle_eow()
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return event
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def _handle_data_in(self, sock, *args):
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newdata = sock.recv(4096)
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if len(newdata) == 0:
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raise Exception('Wpa_s control socket error')
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decoded = newdata.decode('utf-8')
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if len(decoded) >= 3 and decoded[0] == '<' and decoded[2] == '>':
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decoded = decoded[3:]
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while len(decoded) and decoded[-1] == '\n':
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decoded = decoded[:-1]
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self._rx_data.append(decoded)
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event = self._event_parse(decoded)
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if event['event'] == 'P2P-DEVICE-FOUND':
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event.pop('event')
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event.pop('arg1')
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self.p2p_peers[event['p2p_dev_addr']] = event
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elif event['event'] == 'P2P-DEVICE-LOST':
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del self.p2p_peers[event['p2p_dev_addr']]
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elif event['event'] == 'P2P-GO-NEG-REQUEST':
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event.pop('event')
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event['p2p_dev_addr'] = event.pop('arg1')
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self.p2p_go_neg_requests[event['p2p_dev_addr']] = event
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elif event['event'] == 'P2P-GO-NEG-SUCCESS':
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event.pop('event')
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addr = event.pop('peer_dev')
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event['success'] = True
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event['p2p_dev_addr'] = addr
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if addr in self.p2p_go_neg_requests:
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self.p2p_go_neg_requests[addr].update(event)
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else:
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self.p2p_go_neg_requests[addr] = event
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elif event['event'] == 'AP-STA-CONNECTED':
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event.pop('event')
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addr = event.pop('arg1')
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self.p2p_clients[addr] = event
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elif event['event'] == 'AP-STA-DISCONNECTED':
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addr = event.pop('arg1')
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del self.p2p_clients[addr]
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elif event['event'] == 'P2P-GROUP-STARTED':
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event.pop('event')
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event['ifname'] = event.pop('arg1')
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event['role'] = event.pop('arg2')
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self.p2p_group = event
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elif event['event'] == 'P2P-GROUP-REMOVED':
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self.p2p_group = None
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return True
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def _ctrl_request(self, command, ifname=None):
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if type(command) is str:
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command = str.encode(command)
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self._get_socket(ifname).send(bytes(command))
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def _get_socket(self, ifname=None):
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global ctrl_count
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if ifname is None:
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ifname = self.ifname
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if ifname in self.sockets:
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return self.sockets[ifname]
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local_path = '/tmp/wpas_' + str(os.getpid()) + '_' + str(ctrl_count)
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ctrl_count = ctrl_count + 1
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remote_path = self.socket_path + '/' + ifname
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self.wpa_supplicant.wait_for_socket(remote_path, 2)
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sock = socket.socket(socket.AF_UNIX, socket.SOCK_DGRAM)
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sock.bind(local_path)
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self.cleanup_paths.append(local_path)
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sock.connect(remote_path)
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self.cleanup_paths.append(remote_path)
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self.sockets[ifname] = sock
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return sock
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# Normal find phase with listen and active scan states
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def p2p_find(self):
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self._rx_data = []
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self._ctrl_request('P2P_SET disc_int 2 3 300')
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self.wait_for_event('OK')
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self._rx_data = []
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self._ctrl_request('P2P_FIND type=social')
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self.wait_for_event('OK')
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# Like p2p_find but uses only listen states
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def p2p_listen(self):
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self._rx_data = []
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self._ctrl_request('P2P_LISTEN')
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self.wait_for_event('OK')
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# Stop a p2p_find or p2p_listen
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def p2p_stop_find_listen(self):
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self._rx_data = []
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self._ctrl_request('P2P_STOP_FIND')
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self.wait_for_event('OK')
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def p2p_connect(self, peer, pin=None, go_intent=None):
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self._rx_data = []
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self._ctrl_request('P2P_CONNECT ' + peer['p2p_dev_addr'] + ' ' + ('pbc' if pin is None else pin) +
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('' if go_intent is None else ' go_intent=' + str(go_intent)))
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self.wait_for_event('OK')
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def p2p_accept_go_neg_request(self, request, pin=None, go_intent=None):
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self._rx_data = []
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self._ctrl_request('P2P_CONNECT ' + request['p2p_dev_addr'] + ' ' + ('pbc' if pin is None else pin) +
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('' if go_intent is None else ' go_intent=' + str(go_intent)))
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self.wait_for_event('OK')
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# Pre-accept the next GO Negotiation Request from this peer to avoid the extra Respone + Request frames
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def p2p_authorize(self, peer, pin=None, go_intent=None):
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self._rx_data = []
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self._ctrl_request('P2P_CONNECT ' + peer['p2p_dev_addr'] + ' ' + ('pbc' if pin is None else pin) +
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('' if go_intent is None else ' go_intent=' + str(go_intent)) + ' auth')
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self.wait_for_event('OK')
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def p2p_set(self, key, value, **kwargs):
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self._ctrl_request('P2P_SET ' + key + ' ' + value, **kwargs)
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def set(self, key, value, **kwargs):
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self._ctrl_request('SET ' + key + ' ' + value, **kwargs)
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def dpp_enrollee_start(self, uri=None, oper_and_channel=None):
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if not oper_and_channel:
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oper_and_channel = '81/1'
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self._rx_data = []
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self._ctrl_request('DPP_BOOTSTRAP_GEN type=qrcode chan=%s' % oper_and_channel)
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self._dpp_qr_id = self.wait_for_result()
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self._ctrl_request('DPP_BOOTSTRAP_GET_URI %s' % self._dpp_qr_id)
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self._dpp_uri = self.wait_for_result()
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print("DPP Enrollee QR: %s" % self._dpp_uri)
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if uri:
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self._rx_data = []
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self._ctrl_request('DPP_QR_CODE ' + uri)
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self._dpp_qr_id = self.wait_for_result()
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self._rx_data = []
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self._ctrl_request('DPP_AUTH_INIT peer=%s role=enrollee' % self._dpp_qr_id)
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else:
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self._ctrl_request('DPP_CHIRP own=%s iter=100' % self._dpp_qr_id)
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return self._dpp_uri
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def dpp_configurator_create(self, uri):
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self._rx_data = []
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self._ctrl_request('DPP_CONFIGURATOR_ADD')
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self._dpp_conf_id = self.wait_for_result()
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while not self._dpp_conf_id.isnumeric():
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self._dpp_conf_id = self.wait_for_result()
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self._rx_data = []
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self._ctrl_request('DPP_QR_CODE ' + uri)
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self._dpp_qr_id = self.wait_for_result()
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while not self._dpp_conf_id.isnumeric():
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self._dpp_qr_id = self.wait_for_result()
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print("DPP Configurator ID: %s. DPP QR ID: %s" % (self._dpp_conf_id, self._dpp_qr_id))
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def dpp_configurator_start(self, ssid, passphrase, freq=None):
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ssid = binascii.hexlify(ssid.encode()).decode()
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passphrase = binascii.hexlify(passphrase.encode()).decode()
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cmd = 'DPP_AUTH_INIT peer=%s conf=sta-psk ssid=%s pass=%s ' % (self._dpp_qr_id, ssid, passphrase)
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if freq:
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cmd += 'neg_freq=%u ' % freq
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self._rx_data = []
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self._ctrl_request(cmd)
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self.wait_for_event('DPP-AUTH-SUCCESS', timeout=30)
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self.wait_for_event('DPP-CONF-SENT')
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def dpp_configurator_remove(self):
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self._ctrl_request('DPP_CONFIGURATOR_REMOVE *')
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self.wait_for_result()
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self._ctrl_request('DPP_BOOTSTRAP_REMOVE *')
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self.wait_for_result()
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def disconnect(self):
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self._ctrl_request('DISCONNECT')
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# Probably needed: remove references to self so that the GC can call __del__ automatically
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def clean_up(self):
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if self.io_watch is not None:
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GLib.source_remove(self.io_watch)
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self.io_watch = None
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for ifname in self.sockets:
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self.sockets[ifname].close()
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self.sockets = {}
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if self.wpa_supplicant is not None:
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ctx.stop_process(self.wpa_supplicant)
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self.wpa_supplicant = None
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for path in self.cleanup_paths:
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if os.path.exists(path):
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os.remove(path)
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self.cleanup_paths = []
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def __del__(self):
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self.clean_up()
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