1e40cf22f4
It looks like the previous mechanism for catching older tshark versions for EAPOL-Key key info field was not sufficient. Fix that to cover the version used in Ubuntu 14.04. Signed-off-by: Jouni Malinen <jouni@qca.qualcomm.com>
179 lines
6.7 KiB
Python
179 lines
6.7 KiB
Python
# PeerKey tests
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# Copyright (c) 2013-2016, Jouni Malinen <j@w1.fi>
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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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from remotehost import remote_compatible
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import logging
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logger = logging.getLogger()
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import os
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import time
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import hwsim_utils
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import hostapd
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from utils import skip_with_fips
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from wlantest import Wlantest
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from tshark import run_tshark
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@remote_compatible
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def test_peerkey(dev, apdev):
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"""RSN AP and PeerKey between two STAs"""
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ssid = "test-peerkey"
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passphrase = "12345678"
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params = hostapd.wpa2_params(ssid=ssid, passphrase=passphrase)
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params['peerkey'] = "1"
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hostapd.add_ap(apdev[0], params)
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dev[0].connect(ssid, psk=passphrase, scan_freq="2412", peerkey=True)
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dev[1].connect(ssid, psk=passphrase, scan_freq="2412", peerkey=True)
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hwsim_utils.test_connectivity_sta(dev[0], dev[1])
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dev[0].request("STKSTART " + dev[1].p2p_interface_addr())
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time.sleep(0.5)
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# NOTE: Actual use of the direct link (DLS) is not supported in
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# mac80211_hwsim, so this operation fails at setting the keys after
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# successfully completed 4-way handshake. This test case does allow the
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# key negotiation part to be tested for coverage, though.
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def test_peerkey_sniffer_check(dev, apdev, params):
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"""RSN AP and PeerKey between two STAs with sniffer check"""
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ssid = "test-peerkey"
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passphrase = "12345678"
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hparams = hostapd.wpa2_params(ssid=ssid, passphrase=passphrase)
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hparams['peerkey'] = "1"
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hapd = hostapd.add_ap(apdev[0], hparams)
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Wlantest.setup(hapd)
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wt = Wlantest()
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wt.flush()
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wt.add_passphrase("12345678")
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dev[0].connect(ssid, psk=passphrase, scan_freq="2412", peerkey=True)
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dev[1].connect(ssid, psk=passphrase, scan_freq="2412", peerkey=True)
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hwsim_utils.test_connectivity_sta(dev[0], dev[1])
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dev[0].request("STKSTART " + dev[1].p2p_interface_addr())
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time.sleep(1)
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# NOTE: Actual use of the direct link (DLS) is not supported in
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# mac80211_hwsim, so this operation fails at setting the keys after
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# successfully completed 4-way handshake. This test case does allow the
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# key negotiation part to be tested for coverage, though. Use sniffer to
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# verify that all the SMK and STK handshake messages were transmitted.
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bssid = hapd.own_addr()
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addr0 = dev[0].own_addr()
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addr1 = dev[1].own_addr()
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# Wireshark renamed the EAPOL-Key key_info field, so need to try both the
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# new and the old name to work with both versions.
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try_other = False
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try:
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out = run_tshark(os.path.join(params['logdir'], "hwsim0.pcapng"),
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"eapol.type == 3",
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display=["wlan.sa", "wlan.da",
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"wlan_rsna_eapol.keydes.key_info"])
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except Exception, e:
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if "Unknown tshark field" in str(e):
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try_other = True
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pass
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else:
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raise
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if not try_other:
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found = False
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for pkt in out.splitlines():
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sa, da, key_info = pkt.split('\t')
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if key_info != '':
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found = True
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break
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if not found:
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try_other = True
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if try_other:
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out = run_tshark(os.path.join(params['logdir'], "hwsim0.pcapng"),
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"eapol.type == 3",
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display=["wlan.sa", "wlan.da",
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"eapol.keydes.key_info"],
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wait=False)
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smk = [ False, False, False, False, False ]
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stk = [ False, False, False, False ]
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for pkt in out.splitlines():
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sa, da, key_info = pkt.split('\t')
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key_info = int(key_info, 16)
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if sa == addr0 and da == bssid and key_info == 0x2b02:
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# Initiator -> AP: MIC+Secure+Request+SMK = SMK 1
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smk[0] = True
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elif sa == bssid and da == addr1 and key_info == 0x2382:
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# AP -> Responder: ACK+MIC+Secure+SMK = SMK 2
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smk[1] = True
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elif sa == addr1 and da == bssid and key_info == 0x2302:
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# Responder -> AP: MIC+Secure+SMK = SMK 3
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smk[2] = True
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elif sa == bssid and da == addr1 and key_info == 0x3342:
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# AP -> Responder: Install+MIC+Secure+EncrKeyData+SMK = SMK 4
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smk[3] = True
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elif sa == bssid and da == addr0 and key_info == 0x3302:
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# AP -> Initiator: MIC+Secure+EncrKeyData+SMK = SMK 5
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smk[4] = True
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elif sa == addr0 and da == addr1 and key_info == 0x008a:
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# Initiator -> Responder: Pairwise+ACK = STK 1
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stk[0] = True
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elif sa == addr1 and da == addr0 and key_info == 0x010a:
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# Responder -> Initiator: Pairwise+MIC = STK 2
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stk[1] = True
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elif sa == addr0 and da == addr1 and key_info == 0x038a:
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# Initiator -> Responder: Pairwise+ACK+MIC+Secure = STK 3
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stk[2] = True
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elif sa == addr1 and da == addr0 and key_info == 0x030a:
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# Responder -> Initiator: Pairwise+MIC+Secure = STK 4
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stk[3] = True
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logger.info("Seen SMK messages: " + str(smk))
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logger.info("Seen STK messages: " + str(stk))
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if False in smk:
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raise Exception("Missing SMK message: " + str(smk))
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if False in stk:
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raise Exception("Missing STK message: " + str(stk))
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def test_peerkey_unknown_peer(dev, apdev):
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"""RSN AP and PeerKey attempt with unknown peer"""
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ssid = "test-peerkey"
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passphrase = "12345678"
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params = hostapd.wpa2_params(ssid=ssid, passphrase=passphrase)
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params['peerkey'] = "1"
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hostapd.add_ap(apdev[0], params)
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dev[0].connect(ssid, psk=passphrase, scan_freq="2412", peerkey=True)
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dev[1].connect(ssid, psk=passphrase, scan_freq="2412", peerkey=True)
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hwsim_utils.test_connectivity_sta(dev[0], dev[1])
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dev[0].request("STKSTART " + dev[2].p2p_interface_addr())
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time.sleep(0.5)
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@remote_compatible
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def test_peerkey_pairwise_mismatch(dev, apdev):
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"""RSN TKIP+CCMP AP and PeerKey between two STAs using different ciphers"""
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skip_with_fips(dev[0])
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ssid = "test-peerkey"
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passphrase = "12345678"
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params = hostapd.wpa2_params(ssid=ssid, passphrase=passphrase)
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params['peerkey'] = "1"
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params['rsn_pairwise'] = "TKIP CCMP"
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hapd = hostapd.add_ap(apdev[0], params)
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Wlantest.setup(hapd)
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wt = Wlantest()
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wt.flush()
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wt.add_passphrase("12345678")
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dev[0].connect(ssid, psk=passphrase, scan_freq="2412", peerkey=True,
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pairwise="CCMP")
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dev[1].connect(ssid, psk=passphrase, scan_freq="2412", peerkey=True,
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pairwise="TKIP")
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hwsim_utils.test_connectivity_sta(dev[0], dev[1])
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dev[0].request("STKSTART " + dev[1].p2p_interface_addr())
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time.sleep(0.5)
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dev[1].request("STKSTART " + dev[0].p2p_interface_addr())
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time.sleep(0.5)
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