c9dc075fcd
The use of the alternative channel list did not work properly for the case were both ends were trying to initiate the negotiated connection handover. Fix this by always starting a new connection handover client thread for sending the alternative proposal and ignoring peer messages (likely something from the first attempt) during this modified attempt. Signed-off-by: Jouni Malinen <jouni@codeaurora.org>
885 lines
29 KiB
Python
Executable file
885 lines
29 KiB
Python
Executable file
#!/usr/bin/python3
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#
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# Example nfcpy to wpa_supplicant wrapper for DPP NFC operations
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# Copyright (c) 2012-2013, Jouni Malinen <j@w1.fi>
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# Copyright (c) 2019-2020, The Linux Foundation
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#
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# This software may be distributed under the terms of the BSD license.
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# See README for more details.
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import os
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import struct
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import sys
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import time
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import threading
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import argparse
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import nfc
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import ndef
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import logging
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scriptsdir = os.path.dirname(os.path.realpath(sys.modules[__name__].__file__))
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sys.path.append(os.path.join(scriptsdir, '..', '..', 'wpaspy'))
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import wpaspy
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wpas_ctrl = '/var/run/wpa_supplicant'
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ifname = None
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init_on_touch = False
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in_raw_mode = False
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prev_tcgetattr = 0
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no_input = False
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srv = None
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continue_loop = True
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terminate_now = False
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summary_file = None
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success_file = None
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my_crn_ready = False
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my_crn = None
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peer_crn = None
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hs_sent = False
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mutex = threading.Lock()
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def summary(txt):
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with mutex:
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print(txt)
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if summary_file:
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with open(summary_file, 'a') as f:
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f.write(txt + "\n")
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def success_report(txt):
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summary(txt)
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if success_file:
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with open(success_file, 'a') as f:
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f.write(txt + "\n")
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def wpas_connect():
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ifaces = []
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if os.path.isdir(wpas_ctrl):
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try:
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ifaces = [os.path.join(wpas_ctrl, i) for i in os.listdir(wpas_ctrl)]
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except OSError as error:
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summary("Could not find wpa_supplicant: %s", str(error))
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return None
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if len(ifaces) < 1:
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summary("No wpa_supplicant control interface found")
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return None
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for ctrl in ifaces:
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if ifname:
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if ifname not in ctrl:
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continue
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try:
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summary("Trying to use control interface " + ctrl)
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wpas = wpaspy.Ctrl(ctrl)
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return wpas
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except Exception as e:
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pass
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return None
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def dpp_nfc_uri_process(uri):
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wpas = wpas_connect()
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if wpas is None:
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return False
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peer_id = wpas.request("DPP_NFC_URI " + uri)
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if "FAIL" in peer_id:
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summary("Could not parse DPP URI from NFC URI record")
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return False
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peer_id = int(peer_id)
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summary("peer_id=%d for URI from NFC Tag: %s" % (peer_id, uri))
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cmd = "DPP_AUTH_INIT peer=%d" % peer_id
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global enrollee_only, configurator_only, config_params
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if enrollee_only:
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cmd += " role=enrollee"
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elif configurator_only:
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cmd += " role=configurator"
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if config_params:
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cmd += " " + config_params
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summary("Initiate DPP authentication: " + cmd)
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res = wpas.request(cmd)
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if "OK" not in res:
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summary("Failed to initiate DPP Authentication")
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return False
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summary("DPP Authentication initiated")
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return True
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def dpp_hs_tag_read(record):
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wpas = wpas_connect()
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if wpas is None:
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return False
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summary(record)
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if len(record.data) < 5:
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summary("Too short DPP HS")
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return False
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if record.data[0] != 0:
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summary("Unexpected URI Identifier Code")
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return False
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uribuf = record.data[1:]
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try:
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uri = uribuf.decode()
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except:
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summary("Invalid URI payload")
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return False
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summary("URI: " + uri)
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if not uri.startswith("DPP:"):
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summary("Not a DPP URI")
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return False
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return dpp_nfc_uri_process(uri)
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def get_status(wpas, extra=None):
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if extra:
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extra = "-" + extra
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else:
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extra = ""
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res = wpas.request("STATUS" + extra)
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lines = res.splitlines()
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vals = dict()
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for l in lines:
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try:
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[name, value] = l.split('=', 1)
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except ValueError:
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summary("Ignore unexpected status line: %s" % l)
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continue
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vals[name] = value
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return vals
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def get_status_field(wpas, field, extra=None):
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vals = get_status(wpas, extra)
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if field in vals:
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return vals[field]
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return None
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def own_addr(wpas):
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addr = get_status_field(wpas, "address")
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if addr is None:
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addr = get_status_field(wpas, "bssid[0]")
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return addr
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def dpp_bootstrap_gen(wpas, type="qrcode", chan=None, mac=None, info=None,
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curve=None, key=None):
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cmd = "DPP_BOOTSTRAP_GEN type=" + type
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if chan:
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cmd += " chan=" + chan
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if mac:
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if mac is True:
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mac = own_addr(wpas)
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if mac is None:
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summary("Could not determine local MAC address for bootstrap info")
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else:
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cmd += " mac=" + mac.replace(':', '')
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if info:
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cmd += " info=" + info
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if curve:
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cmd += " curve=" + curve
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if key:
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cmd += " key=" + key
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res = wpas.request(cmd)
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if "FAIL" in res:
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raise Exception("Failed to generate bootstrapping info")
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return int(res)
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def wpas_get_nfc_uri(start_listen=True, pick_channel=False, chan_override=None):
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wpas = wpas_connect()
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if wpas is None:
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return None
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global own_id, chanlist
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if chan_override:
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chan = chan_override
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else:
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chan = chanlist
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if chan is None and get_status_field(wpas, "bssid[0]"):
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freq = get_status_field(wpas, "freq")
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if freq:
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freq = int(freq)
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if freq >= 2412 and freq <= 2462:
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chan = "81/%d" % ((freq - 2407) / 5)
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summary("Use current AP operating channel (%d MHz) as the URI channel list (%s)" % (freq, chan))
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if chan is None and pick_channel:
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chan = "81/6"
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summary("Use channel 2437 MHz since no other preference provided")
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own_id = dpp_bootstrap_gen(wpas, type="nfc-uri", chan=chan, mac=True)
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res = wpas.request("DPP_BOOTSTRAP_GET_URI %d" % own_id).rstrip()
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if "FAIL" in res:
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return None
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if start_listen:
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wpas.request("DPP_LISTEN 2412 netrole=configurator")
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return res
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def wpas_report_handover_req(uri):
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wpas = wpas_connect()
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if wpas is None:
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return None
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global own_id
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cmd = "DPP_NFC_HANDOVER_REQ own=%d uri=%s" % (own_id, uri)
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return wpas.request(cmd)
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def wpas_report_handover_sel(uri):
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wpas = wpas_connect()
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if wpas is None:
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return None
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global own_id
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cmd = "DPP_NFC_HANDOVER_SEL own=%d uri=%s" % (own_id, uri)
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return wpas.request(cmd)
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def dpp_handover_client(llc, alt=False):
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chan_override = None
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if alt:
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global altchanlist
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chan_override = altchanlist
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uri = wpas_get_nfc_uri(start_listen=False, chan_override=chan_override)
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if uri is None:
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summary("Cannot start handover client - no bootstrap URI available")
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return
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uri = ndef.UriRecord(uri)
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summary("NFC URI record for DPP: " + str(uri))
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carrier = ndef.Record('application/vnd.wfa.dpp', 'A', uri.data)
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crn = os.urandom(2)
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hr = ndef.HandoverRequestRecord(version="1.4", crn=crn)
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hr.add_alternative_carrier('active', carrier.name)
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message = [hr, carrier]
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summary("NFC Handover Request message for DPP: " + str(message))
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global peer_crn
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if peer_crn is not None and not alt:
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summary("NFC handover request from peer was already received - do not send own")
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return
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client = nfc.handover.HandoverClient(llc)
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try:
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summary("Trying to initiate NFC connection handover")
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client.connect()
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summary("Connected for handover")
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except nfc.llcp.ConnectRefused:
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summary("Handover connection refused")
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client.close()
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return
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except Exception as e:
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summary("Other exception: " + str(e))
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client.close()
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return
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if peer_crn is not None and not alt:
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summary("NFC handover request from peer was already received - do not send own")
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client.close()
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return
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summary("Sending handover request")
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global my_crn, my_crn_ready, hs_sent
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my_crn_ready = True
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if not client.send_records(message):
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my_crn_ready = False
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summary("Failed to send handover request")
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client.close()
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return
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my_crn, = struct.unpack('>H', crn)
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summary("Receiving handover response")
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try:
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message = client.recv_records(timeout=3.0)
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except Exception as e:
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# This is fine if we are the handover selector
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if hs_sent:
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summary("Client receive failed as expected since I'm the handover server: %s" % str(e))
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else:
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summary("Client receive failed: %s" % str(e))
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message = None
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if message is None:
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if hs_sent:
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summary("No response received as expected since I'm the handover server")
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else:
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summary("No response received")
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client.close()
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return
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summary("Received message: " + str(message))
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if len(message) < 1 or \
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not isinstance(message[0], ndef.HandoverSelectRecord):
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summary("Response was not Hs - received: " + message.type)
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client.close()
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return
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summary("Received handover select message")
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summary("alternative carriers: " + str(message[0].alternative_carriers))
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dpp_found = False
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for carrier in message:
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if isinstance(carrier, ndef.HandoverSelectRecord):
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continue
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summary("Remote carrier type: " + carrier.type)
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if carrier.type == "application/vnd.wfa.dpp":
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if len(carrier.data) == 0 or carrier.data[0] != 0:
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summary("URI Identifier Code 'None' not seen")
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continue
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summary("DPP carrier type match - send to wpa_supplicant")
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dpp_found = True
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uri = carrier.data[1:].decode("utf-8")
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summary("DPP URI: " + uri)
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res = wpas_report_handover_sel(uri)
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if res is None or "FAIL" in res:
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summary("DPP handover report rejected")
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break
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success_report("DPP handover reported successfully (initiator)")
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summary("peer_id=" + res)
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peer_id = int(res)
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wpas = wpas_connect()
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if wpas is None:
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break
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global enrollee_only
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global config_params
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if enrollee_only:
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extra = " role=enrollee"
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elif config_params:
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extra = " role=configurator " + config_params
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else:
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# TODO: Single Configurator instance
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res = wpas.request("DPP_CONFIGURATOR_ADD")
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if "FAIL" in res:
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summary("Failed to initiate Configurator")
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break
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conf_id = int(res)
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extra = " conf=sta-dpp configurator=%d" % conf_id
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global own_id
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summary("Initiate DPP authentication")
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cmd = "DPP_AUTH_INIT peer=%d own=%d" % (peer_id, own_id)
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cmd += extra
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res = wpas.request(cmd)
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if "FAIL" in res:
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summary("Failed to initiate DPP authentication")
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break
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if not dpp_found:
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summary("DPP carrier not seen in response - allow peer to initiate a new handover with different parameters")
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my_crn_ready = False
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my_crn = None
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peer_crn = None
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hs_sent = False
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client.close()
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summary("Returning from dpp_handover_client")
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return
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summary("Remove peer")
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client.close()
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summary("Done with handover")
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global only_one
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if only_one:
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print("only_one -> stop loop")
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global continue_loop
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continue_loop = False
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global no_wait
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if no_wait:
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print("Trying to exit..")
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global terminate_now
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terminate_now = True
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summary("Returning from dpp_handover_client")
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class HandoverServer(nfc.handover.HandoverServer):
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def __init__(self, llc):
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super(HandoverServer, self).__init__(llc)
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self.sent_carrier = None
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self.ho_server_processing = False
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self.success = False
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self.try_own = False
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self.llc = llc
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def process_handover_request_message(self, records):
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self.ho_server_processing = True
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global in_raw_mode
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was_in_raw_mode = in_raw_mode
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clear_raw_mode()
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if was_in_raw_mode:
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print("\n")
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summary("HandoverServer - request received: " + str(records))
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global my_crn, peer_crn, my_crn_ready
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for carrier in records:
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if not isinstance(carrier, ndef.HandoverRequestRecord):
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continue
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if carrier.collision_resolution_number:
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peer_crn = carrier.collision_resolution_number
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summary("peer_crn: %d" % peer_crn)
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if my_crn is None and my_crn_ready:
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summary("Still trying to send own handover request - wait a moment to see if that succeeds before checking crn values")
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for i in range(10):
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if my_crn is not None:
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break
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time.sleep(0.01)
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if my_crn is not None:
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summary("my_crn: %d" % my_crn)
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if my_crn is not None and peer_crn is not None:
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if my_crn == peer_crn:
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summary("Same crn used - automatic collision resolution failed")
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# TODO: Should generate a new Handover Request message
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return ''
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if ((my_crn & 1) == (peer_crn & 1) and my_crn > peer_crn) or \
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((my_crn & 1) != (peer_crn & 1) and my_crn < peer_crn):
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summary("I'm the Handover Selector Device")
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pass
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else:
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summary("Peer is the Handover Selector device")
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summary("Ignore the received request.")
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return ''
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hs = ndef.HandoverSelectRecord('1.4')
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sel = [hs]
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found = False
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for carrier in records:
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if isinstance(carrier, ndef.HandoverRequestRecord):
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continue
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summary("Remote carrier type: " + carrier.type)
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if carrier.type == "application/vnd.wfa.dpp":
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summary("DPP carrier type match - add DPP carrier record")
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if len(carrier.data) == 0 or carrier.data[0] != 0:
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summary("URI Identifier Code 'None' not seen")
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continue
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uri = carrier.data[1:].decode("utf-8")
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summary("Received DPP URI: " + uri)
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data = wpas_get_nfc_uri(start_listen=False, pick_channel=True)
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summary("Own URI (pre-processing): %s" % data)
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res = wpas_report_handover_req(uri)
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if res is None or "FAIL" in res:
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summary("DPP handover request processing failed")
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global altchanlist
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if altchanlist:
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data = wpas_get_nfc_uri(start_listen=False,
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chan_override=altchanlist)
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summary("Own URI (try another channel list): %s" % data)
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continue
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found = True
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wpas = wpas_connect()
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if wpas is None:
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continue
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global own_id
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data = wpas.request("DPP_BOOTSTRAP_GET_URI %d" % own_id).rstrip()
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if "FAIL" in data:
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continue
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summary("Own URI (post-processing): %s" % data)
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uri = ndef.UriRecord(data)
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summary("Own bootstrapping NFC URI record: " + str(uri))
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info = wpas.request("DPP_BOOTSTRAP_INFO %d" % own_id)
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freq = None
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for line in info.splitlines():
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if line.startswith("use_freq="):
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freq = int(line.split('=')[1])
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if freq is None or freq == 0:
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summary("No channel negotiated over NFC - use channel 6")
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freq = 2437
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else:
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summary("Negotiated channel: %d MHz" % freq)
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if get_status_field(wpas, "bssid[0]"):
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summary("Own AP freq: %s MHz" % str(get_status_field(wpas, "freq")))
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if get_status_field(wpas, "beacon_set", extra="DRIVER") is None:
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summary("Enable beaconing to have radio ready for RX")
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wpas.request("DISABLE")
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wpas.request("SET start_disabled 0")
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wpas.request("ENABLE")
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cmd = "DPP_LISTEN %d" % freq
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global enrollee_only
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global configurator_only
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if enrollee_only:
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cmd += " role=enrollee"
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elif configurator_only:
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cmd += " role=configurator"
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summary(cmd)
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res = wpas.request(cmd)
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if "OK" not in res:
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summary("Failed to start DPP listen")
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break
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carrier = ndef.Record('application/vnd.wfa.dpp', 'A', uri.data)
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summary("Own DPP carrier record: " + str(carrier))
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hs.add_alternative_carrier('active', carrier.name)
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sel = [hs, carrier]
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break
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global hs_sent
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summary("Sending handover select: " + str(sel))
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if found:
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summary("Handover completed successfully")
|
|
self.success = True
|
|
hs_sent = True
|
|
else:
|
|
summary("Try to initiate with alternative parameters")
|
|
self.try_own = True
|
|
hs_sent = False
|
|
threading.Thread(target=llcp_worker, args=(self.llc, True)).start()
|
|
return sel
|
|
|
|
def clear_raw_mode():
|
|
import sys, tty, termios
|
|
global prev_tcgetattr, in_raw_mode
|
|
if not in_raw_mode:
|
|
return
|
|
fd = sys.stdin.fileno()
|
|
termios.tcsetattr(fd, termios.TCSADRAIN, prev_tcgetattr)
|
|
in_raw_mode = False
|
|
|
|
def getch():
|
|
import sys, tty, termios, select
|
|
global prev_tcgetattr, in_raw_mode
|
|
fd = sys.stdin.fileno()
|
|
prev_tcgetattr = termios.tcgetattr(fd)
|
|
ch = None
|
|
try:
|
|
tty.setraw(fd)
|
|
in_raw_mode = True
|
|
[i, o, e] = select.select([fd], [], [], 0.05)
|
|
if i:
|
|
ch = sys.stdin.read(1)
|
|
finally:
|
|
termios.tcsetattr(fd, termios.TCSADRAIN, prev_tcgetattr)
|
|
in_raw_mode = False
|
|
return ch
|
|
|
|
def dpp_tag_read(tag):
|
|
success = False
|
|
for record in tag.ndef.records:
|
|
summary(record)
|
|
summary("record type " + record.type)
|
|
if record.type == "application/vnd.wfa.dpp":
|
|
summary("DPP HS tag - send to wpa_supplicant")
|
|
success = dpp_hs_tag_read(record)
|
|
break
|
|
if isinstance(record, ndef.UriRecord):
|
|
summary("URI record: uri=" + record.uri)
|
|
summary("URI record: iri=" + record.iri)
|
|
if record.iri.startswith("DPP:"):
|
|
summary("DPP URI")
|
|
if not dpp_nfc_uri_process(record.iri):
|
|
break
|
|
success = True
|
|
else:
|
|
summary("Ignore unknown URI")
|
|
break
|
|
|
|
if success:
|
|
success_report("Tag read succeeded")
|
|
|
|
return success
|
|
|
|
def rdwr_connected_write_tag(tag):
|
|
summary("Tag found - writing - " + str(tag))
|
|
if not tag.ndef.is_writeable:
|
|
summary("Not a writable tag")
|
|
return
|
|
global dpp_tag_data
|
|
if tag.ndef.capacity < len(dpp_tag_data):
|
|
summary("Not enough room for the message")
|
|
return
|
|
tag.ndef.records = dpp_tag_data
|
|
success_report("Tag write succeeded")
|
|
summary("Done - remove tag")
|
|
global only_one
|
|
if only_one:
|
|
global continue_loop
|
|
continue_loop = False
|
|
global dpp_sel_wait_remove
|
|
return dpp_sel_wait_remove
|
|
|
|
def write_nfc_uri(clf, wait_remove=True):
|
|
summary("Write NFC URI record")
|
|
data = wpas_get_nfc_uri()
|
|
if data is None:
|
|
summary("Could not get NFC URI from wpa_supplicant")
|
|
return
|
|
|
|
global dpp_sel_wait_remove
|
|
dpp_sel_wait_remove = wait_remove
|
|
summary("URI: %s" % data)
|
|
uri = ndef.UriRecord(data)
|
|
summary(uri)
|
|
|
|
summary("Touch an NFC tag")
|
|
global dpp_tag_data
|
|
dpp_tag_data = [uri]
|
|
clf.connect(rdwr={'on-connect': rdwr_connected_write_tag})
|
|
|
|
def write_nfc_hs(clf, wait_remove=True):
|
|
summary("Write NFC Handover Select record on a tag")
|
|
data = wpas_get_nfc_uri()
|
|
if data is None:
|
|
summary("Could not get NFC URI from wpa_supplicant")
|
|
return
|
|
|
|
global dpp_sel_wait_remove
|
|
dpp_sel_wait_remove = wait_remove
|
|
summary("URI: %s" % data)
|
|
uri = ndef.UriRecord(data)
|
|
summary(uri)
|
|
carrier = ndef.Record('application/vnd.wfa.dpp', 'A', uri.data)
|
|
hs = ndef.HandoverSelectRecord('1.4')
|
|
hs.add_alternative_carrier('active', carrier.name)
|
|
summary(hs)
|
|
summary(carrier)
|
|
|
|
summary("Touch an NFC tag")
|
|
global dpp_tag_data
|
|
dpp_tag_data = [hs, carrier]
|
|
summary(dpp_tag_data)
|
|
clf.connect(rdwr={'on-connect': rdwr_connected_write_tag})
|
|
|
|
def rdwr_connected(tag):
|
|
global only_one, no_wait
|
|
summary("Tag connected: " + str(tag))
|
|
|
|
if tag.ndef:
|
|
summary("NDEF tag: " + tag.type)
|
|
summary(tag.ndef.records)
|
|
success = dpp_tag_read(tag)
|
|
if only_one and success:
|
|
global continue_loop
|
|
continue_loop = False
|
|
else:
|
|
summary("Not an NDEF tag - remove tag")
|
|
return True
|
|
|
|
return not no_wait
|
|
|
|
def llcp_worker(llc, try_alt):
|
|
print("Start of llcp_worker()")
|
|
if try_alt:
|
|
summary("Starting handover client (try_alt)")
|
|
dpp_handover_client(llc, alt=True)
|
|
summary("Exiting llcp_worker thread (try_alt)")
|
|
return
|
|
global init_on_touch
|
|
if init_on_touch:
|
|
summary("Starting handover client (init_on_touch)")
|
|
dpp_handover_client(llc)
|
|
summary("Exiting llcp_worker thread (init_on_touch)")
|
|
return
|
|
|
|
global no_input
|
|
if no_input:
|
|
summary("Wait for handover to complete")
|
|
else:
|
|
print("Wait for handover to complete - press 'i' to initiate")
|
|
global srv
|
|
global wait_connection
|
|
while not wait_connection and srv.sent_carrier is None:
|
|
if srv.try_own:
|
|
srv.try_own = False
|
|
summary("Try to initiate another handover with own parameters")
|
|
global peer_crn, my_crn, my_crn_ready, hs_sent
|
|
my_crn_ready = False
|
|
my_crn = None
|
|
peer_crn = None
|
|
hs_sent = False
|
|
dpp_handover_client(llc, alt=True)
|
|
summary("Exiting llcp_worker thread (retry with own parameters)")
|
|
return
|
|
if srv.ho_server_processing:
|
|
time.sleep(0.025)
|
|
elif no_input:
|
|
time.sleep(0.5)
|
|
else:
|
|
res = getch()
|
|
if res != 'i':
|
|
continue
|
|
clear_raw_mode()
|
|
summary("Starting handover client")
|
|
dpp_handover_client(llc)
|
|
summary("Exiting llcp_worker thread (manual init)")
|
|
return
|
|
|
|
global in_raw_mode
|
|
was_in_raw_mode = in_raw_mode
|
|
clear_raw_mode()
|
|
if was_in_raw_mode:
|
|
print("\r")
|
|
summary("Exiting llcp_worker thread")
|
|
|
|
def llcp_startup(llc):
|
|
summary("Start LLCP server")
|
|
global srv
|
|
srv = HandoverServer(llc)
|
|
return llc
|
|
|
|
def llcp_connected(llc):
|
|
summary("P2P LLCP connected")
|
|
global wait_connection, my_crn, peer_crn, my_crn_ready, hs_sent
|
|
wait_connection = False
|
|
my_crn_ready = False
|
|
my_crn = None
|
|
peer_crn = None
|
|
hs_sent = False
|
|
global srv
|
|
srv.start()
|
|
if init_on_touch or not no_input:
|
|
threading.Thread(target=llcp_worker, args=(llc, False)).start()
|
|
return True
|
|
|
|
def llcp_release(llc):
|
|
summary("LLCP release")
|
|
return True
|
|
|
|
def terminate_loop():
|
|
global terminate_now
|
|
return terminate_now
|
|
|
|
def main():
|
|
clf = nfc.ContactlessFrontend()
|
|
|
|
parser = argparse.ArgumentParser(description='nfcpy to wpa_supplicant integration for DPP NFC operations')
|
|
parser.add_argument('-d', const=logging.DEBUG, default=logging.INFO,
|
|
action='store_const', dest='loglevel',
|
|
help='verbose debug output')
|
|
parser.add_argument('-q', const=logging.WARNING, action='store_const',
|
|
dest='loglevel', help='be quiet')
|
|
parser.add_argument('--only-one', '-1', action='store_true',
|
|
help='run only one operation and exit')
|
|
parser.add_argument('--init-on-touch', '-I', action='store_true',
|
|
help='initiate handover on touch')
|
|
parser.add_argument('--no-wait', action='store_true',
|
|
help='do not wait for tag to be removed before exiting')
|
|
parser.add_argument('--ifname', '-i',
|
|
help='network interface name')
|
|
parser.add_argument('--no-input', '-a', action='store_true',
|
|
help='do not use stdout input to initiate handover')
|
|
parser.add_argument('--tag-read-only', '-t', action='store_true',
|
|
help='tag read only (do not allow connection handover)')
|
|
parser.add_argument('--handover-only', action='store_true',
|
|
help='connection handover only (do not allow tag read)')
|
|
parser.add_argument('--enrollee', action='store_true',
|
|
help='run as Enrollee-only')
|
|
parser.add_argument('--configurator', action='store_true',
|
|
help='run as Configurator-only')
|
|
parser.add_argument('--config-params', default='',
|
|
help='configurator parameters')
|
|
parser.add_argument('--ctrl', default='/var/run/wpa_supplicant',
|
|
help='wpa_supplicant/hostapd control interface')
|
|
parser.add_argument('--summary',
|
|
help='summary file for writing status updates')
|
|
parser.add_argument('--success',
|
|
help='success file for writing success update')
|
|
parser.add_argument('--device', default='usb', help='NFC device to open')
|
|
parser.add_argument('--chan', default=None, help='channel list')
|
|
parser.add_argument('--altchan', default=None, help='alternative channel list')
|
|
parser.add_argument('command', choices=['write-nfc-uri',
|
|
'write-nfc-hs'],
|
|
nargs='?')
|
|
args = parser.parse_args()
|
|
summary(args)
|
|
|
|
global only_one
|
|
only_one = args.only_one
|
|
|
|
global no_wait
|
|
no_wait = args.no_wait
|
|
|
|
global chanlist, altchanlist
|
|
chanlist = args.chan
|
|
altchanlist = args.altchan
|
|
|
|
logging.basicConfig(level=args.loglevel)
|
|
|
|
global init_on_touch
|
|
init_on_touch = args.init_on_touch
|
|
|
|
global enrollee_only
|
|
enrollee_only = args.enrollee
|
|
|
|
global configurator_only
|
|
configurator_only = args.configurator
|
|
|
|
global config_params
|
|
config_params = args.config_params
|
|
|
|
if args.ifname:
|
|
global ifname
|
|
ifname = args.ifname
|
|
summary("Selected ifname " + ifname)
|
|
|
|
if args.ctrl:
|
|
global wpas_ctrl
|
|
wpas_ctrl = args.ctrl
|
|
|
|
if args.summary:
|
|
global summary_file
|
|
summary_file = args.summary
|
|
|
|
if args.success:
|
|
global success_file
|
|
success_file = args.success
|
|
|
|
if args.no_input:
|
|
global no_input
|
|
no_input = True
|
|
|
|
clf = nfc.ContactlessFrontend()
|
|
global wait_connection
|
|
|
|
try:
|
|
if not clf.open(args.device):
|
|
summary("Could not open connection with an NFC device")
|
|
raise SystemExit
|
|
|
|
if args.command == "write-nfc-uri":
|
|
write_nfc_uri(clf, wait_remove=not args.no_wait)
|
|
raise SystemExit
|
|
|
|
if args.command == "write-nfc-hs":
|
|
write_nfc_hs(clf, wait_remove=not args.no_wait)
|
|
raise SystemExit
|
|
|
|
global continue_loop
|
|
while continue_loop:
|
|
global in_raw_mode
|
|
was_in_raw_mode = in_raw_mode
|
|
clear_raw_mode()
|
|
if was_in_raw_mode:
|
|
print("\r")
|
|
if args.tag_read_only:
|
|
summary("Waiting for a tag to be touched")
|
|
else:
|
|
summary("Waiting for a tag or peer to be touched")
|
|
wait_connection = True
|
|
try:
|
|
if args.tag_read_only:
|
|
if not clf.connect(rdwr={'on-connect': rdwr_connected}):
|
|
break
|
|
elif args.handover_only:
|
|
if not clf.connect(llcp={'on-startup': llcp_startup,
|
|
'on-connect': llcp_connected,
|
|
'on-release': llcp_release},
|
|
terminate=terminate_loop):
|
|
break
|
|
else:
|
|
if not clf.connect(rdwr={'on-connect': rdwr_connected},
|
|
llcp={'on-startup': llcp_startup,
|
|
'on-connect': llcp_connected,
|
|
'on-release': llcp_release},
|
|
terminate=terminate_loop):
|
|
break
|
|
except Exception as e:
|
|
summary("clf.connect failed: " + str(e))
|
|
break
|
|
|
|
global srv
|
|
if only_one and srv and srv.success:
|
|
raise SystemExit
|
|
|
|
except KeyboardInterrupt:
|
|
raise SystemExit
|
|
finally:
|
|
clf.close()
|
|
|
|
raise SystemExit
|
|
|
|
if __name__ == '__main__':
|
|
main()
|