def test_generate_features(): capture = rdpcap('tests/data/test_100_rows.pcap') # Flow to be tested. packet = capture[1] ip_src = packet[IP].src ip_dst = packet[IP].dst src_port = packet[TCP].sport dst_port = packet[TCP].dport protocol = packet[IP].proto # Will be tested considering all possible sets of attributes. for bidir in [True, False]: for onlytwo in [True, False]: for onlyfive in set([not onlytwo, False]): afg_1 = AnubisFG(bidirectional=bidir, only_twotuple=onlytwo, only_fivetuple=onlyfive) # Will be tested along 3 updates. for i in range(1, 4): packet = capture[i] afg_1.update(packet) if bidir: if onlytwo: key = (ip_src, ip_dst) assert afg_1.generate_features( key) == afg_1._generate_features_twotuplebi( key) elif onlyfive: key = (ip_src, src_port, ip_dst, dst_port, protocol) assert afg_1.generate_features( key) == afg_1._generate_features_fivetuplebi( key) else: key2 = (ip_src, ip_dst) key5 = (ip_src, src_port, ip_dst, dst_port, protocol) ftrs_1 = afg_1.generate_features(key5) ftrs_2 = afg_1._generate_features_twotuplebi( key2) + afg_1._generate_features_fivetuplebi( key5) assert ftrs_1 == ftrs_2 else: if onlytwo: key = (ip_src, ip_dst) assert afg_1.generate_features( key) == afg_1._generate_features_twotupleuni( key) elif onlyfive: key = (ip_src, src_port, ip_dst, dst_port, protocol) assert afg_1.generate_features( key) == afg_1._generate_features_fivetupleuni( key) else: key2 = (ip_src, ip_dst) key5 = (ip_src, src_port, ip_dst, dst_port, protocol) ftrs_1 = afg_1.generate_features(key5) ftrs_2 = afg_1._generate_features_twotupleuni( key2) + afg_1._generate_features_fivetupleuni( key5) assert ftrs_1 == ftrs_2
def test__generate_features_fivetuplebi(): ''' Feature list: Forward fwd_qt_pkt fwd_qt_fin_fl fwd_qt_syn_fl fwd_qt_res_fl fwd_qt_psh_fl fwd_qt_ack_fl fwd_qt_urg_fl fwd_qt_ecn_fl fwd_qt_cwr_fl fwd_avg_hdr_len fwd_avg_pkt_len fwd_max_pkt_len fwd_min_pkt_len fwd_frq_pkt fwd_avg_ttl Backward bck_qt_pkt bck_qt_fin_fl bck_qt_syn_fl bck_qt_res_fl bck_qt_psh_fl bck_qt_ack_fl bck_qt_urg_fl bck_qt_ecn_fl bck_qt_cwr_fl bck_avg_hdr_len bck_avg_pkt_len bck_max_pkt_len bck_min_pkt_len bck_frq_pkt bck_avg_ttl Non-directional tm_dur_s ''' n_features = 31 ip_src = '172.16.0.5' ip_dst = '192.168.50.1' src_port = 60675 dst_port = 80 protocol = 6 key = (ip_src, src_port, ip_dst, dst_port, protocol) afg = AnubisFG(bidirectional=True) # Tuple that is not on the memory. empty = afg._generate_features_fivetuplebi(key) assert empty == [0] * n_features # Duration 0 capture = rdpcap('tests/data/test_100_rows.pcap') # Second packet is a SYN TCP packet. packet = capture[1] timestamp = datetime(2018, 12, 1, 13, 17, 11, 183810) afg._update_fivetuplebi(packet) expected = [ 1, # fwd_qt_pkt 0, # fwd_qt_fin_fl 1, # fwd_qt_syn_fl 0, # fwd_qt_res_fl 0, # fwd_qt_psh_fl 0, # fwd_qt_ack_fl 0, # fwd_qt_urg_fl 0, # fwd_qt_ecn_fl 0, # fwd_qt_cwr_fl 20, # fwd_avg_hdr_len 74, # fwd_avg_pkt_len 74, # fwd_max_pkt_len 74, # fwd_min_pkt_len 1, # fwd_frq_pkt 63, # fwd_avg_ttl 0, # bck_qt_pkt 0, # bck_qt_fin_fl 0, # bck_qt_syn_fl 0, # bck_qt_res_fl 0, # bck_qt_psh_fl 0, # bck_qt_ack_fl 0, # bck_qt_urg_fl 0, # bck_qt_ecn_fl 0, # bck_qt_cwr_fl 0, # bck_avg_hdr_len 0, # bck_avg_pkt_len 0, # bck_max_pkt_len 0, # bck_min_pkt_len 0, # bck_frq_pkt 0, # bck_avg_ttl 0, # tm_dur_s ] ftrs = afg._generate_features_fivetuplebi(key) assert ftrs == expected # Inverted expected = [ 0, # bck_qt_pkt 0, # bck_qt_fin_fl 0, # bck_qt_syn_fl 0, # bck_qt_res_fl 0, # bck_qt_psh_fl 0, # bck_qt_ack_fl 0, # bck_qt_urg_fl 0, # bck_qt_ecn_fl 0, # bck_qt_cwr_fl 0, # bck_avg_hdr_len 0, # bck_avg_pkt_len 0, # bck_max_pkt_len 0, # bck_min_pkt_len 0, # bck_frq_pkt 0, # bck_avg_ttl 1, # fwd_qt_pkt 0, # fwd_qt_fin_fl 1, # fwd_qt_syn_fl 0, # fwd_qt_res_fl 0, # fwd_qt_psh_fl 0, # fwd_qt_ack_fl 0, # fwd_qt_urg_fl 0, # fwd_qt_ecn_fl 0, # fwd_qt_cwr_fl 20, # fwd_avg_hdr_len 74, # fwd_avg_pkt_len 74, # fwd_max_pkt_len 74, # fwd_min_pkt_len 1, # fwd_frq_pkt 63, # fwd_avg_ttl 0, # tm_dur_s ] inv_key = (key[2], key[3], key[0], key[1], key[4]) ftrs = afg._generate_features_fivetuplebi(inv_key) assert ftrs == expected # Duration > 0 # Updating # Third packet is another SYN TCP packet with same IPs and Ports packet = capture[2] afg._update_fivetuplebi(packet) new_timestamp = datetime(2018, 12, 1, 13, 17, 11, 183813) dur = (new_timestamp - timestamp).total_seconds() expected = [ 2, # fwd_qt_pkt 0, # fwd_qt_fin_fl 2, # fwd_qt_syn_fl 0, # fwd_qt_res_fl 0, # fwd_qt_psh_fl 0, # fwd_qt_ack_fl 0, # fwd_qt_urg_fl 0, # fwd_qt_ecn_fl 0, # fwd_qt_cwr_fl 20, # fwd_avg_hdr_len 74, # fwd_avg_pkt_len 74, # fwd_max_pkt_len 74, # fwd_min_pkt_len 2 / dur, # fwd_frq_pkt 63, # fwd_avg_ttl 0, # bck_qt_pkt 0, # bck_qt_fin_fl 0, # bck_qt_syn_fl 0, # bck_qt_res_fl 0, # bck_qt_psh_fl 0, # bck_qt_ack_fl 0, # bck_qt_urg_fl 0, # bck_qt_ecn_fl 0, # bck_qt_cwr_fl 0, # bck_avg_hdr_len 0, # bck_avg_pkt_len 0, # bck_max_pkt_len 0, # bck_min_pkt_len 0 / dur, # bck_frq_pkt 0, # bck_avg_ttl dur, # tm_dur_s ] ftrs = afg._generate_features_fivetuplebi(key) assert ftrs == expected # Using now datetime. new_timestamp = datetime.now() dur = (new_timestamp - timestamp).total_seconds() expected = [ 2, # fwd_qt_pkt 0, # fwd_qt_fin_fl 2, # fwd_qt_syn_fl 0, # fwd_qt_res_fl 0, # fwd_qt_psh_fl 0, # fwd_qt_ack_fl 0, # fwd_qt_urg_fl 0, # fwd_qt_ecn_fl 0, # fwd_qt_cwr_fl 20, # fwd_avg_hdr_len 74, # fwd_avg_pkt_len 74, # fwd_max_pkt_len 74, # fwd_min_pkt_len 2 / dur, # fwd_frq_pkt 63, # fwd_avg_ttl 0, # bck_qt_pkt 0, # bck_qt_fin_fl 0, # bck_qt_syn_fl 0, # bck_qt_res_fl 0, # bck_qt_psh_fl 0, # bck_qt_ack_fl 0, # bck_qt_urg_fl 0, # bck_qt_ecn_fl 0, # bck_qt_cwr_fl 0, # bck_avg_hdr_len 0, # bck_avg_pkt_len 0, # bck_max_pkt_len 0, # bck_min_pkt_len 0 / dur, # bck_frq_pkt 0, # bck_avg_ttl dur, # tm_dur_s ] ftrs = afg._generate_features_fivetuplebi(key, now=True) assert np.isclose(ftrs, expected).all() # Backward features # Updating # Fourth packet is a SYN ACK response TCP packet with inverted IPs and packet = capture[3] afg._update_fivetuplebi(packet) new_timestamp = datetime(2018, 12, 1, 13, 17, 11, 183932) dur = (new_timestamp - timestamp).total_seconds() expected = [ 2, # fwd_qt_pkt 0, # fwd_qt_fin_fl 2, # fwd_qt_syn_fl 0, # fwd_qt_res_fl 0, # fwd_qt_psh_fl 0, # fwd_qt_ack_fl 0, # fwd_qt_urg_fl 0, # fwd_qt_ecn_fl 0, # fwd_qt_cwr_fl 20, # fwd_avg_hdr_len 74, # fwd_avg_pkt_len 74, # fwd_max_pkt_len 74, # fwd_min_pkt_len 2 / dur, # fwd_frq_pkt 63, # fwd_avg_ttl 1, # bck_qt_pkt 0, # bck_qt_fin_fl 1, # bck_qt_syn_fl 0, # bck_qt_res_fl 0, # bck_qt_psh_fl 1, # bck_qt_ack_fl 0, # bck_qt_urg_fl 0, # bck_qt_ecn_fl 0, # bck_qt_cwr_fl 20, # bck_avg_hdr_len 74, # bck_avg_pkt_len 74, # bck_max_pkt_len 74, # bck_min_pkt_len 1 / dur, # bck_frq_pkt 64, # bck_avg_ttl dur, # tm_dur_s ] ftrs = afg._generate_features_fivetuplebi(key) assert np.isclose(ftrs, expected).all() # Zero forward packets on existing flow ip_src_1 = '192.168.0.1' ip_dst_1 = '192.168.0.2' src_port_1 = 80 dst_port_1 = 80 protocol_1 = 6 key_1 = (ip_src_1, src_port_1, ip_dst_1, dst_port_1, protocol_1) t5_1 = FiveTupleBidirectionalNode() memory_fivetup_1 = {key_1: t5_1} afg_1 = AnubisFG(memory_fivetup=memory_fivetup_1) ftrs = afg_1._generate_features_fivetuplebi(key_1) assert ftrs == [0] * n_features