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[MODULE_PARAMETERS]
# This section shall contain the values of all parameters that are defined in your TTCN-3 modules.
LibItsGeoNetworking_Pics.PICS_GN_LOCAL_GN_ADDR := { typeOfAddress := e_manual,
stationType := e_passengerCar,
stationCountryCode := 0,
mid := '000000000001'O
# typeOfAddress := e_initial,
# stationType := e_unknown, #e_roadSideUnit,
# stationCountryCode := 0, #33,
# mid := '4C5E0C14D2EA'O
LibItsGeoNetworking_Pics.PICS_GN_IS_MOBILE := false
LibItsGeoNetworking_Pics.PICS_GN_DEFAULT_HOP_LIMIT := 1
LibItsGeoNetworking_Pixits.PX_GN_UPPER_LAYER := e_any
LibItsGeoNetworking_Pixits.PX_NEIGHBOUR_DISCOVERY_DELAY := 2.0
[LOGGING]
# In this section you can specify the name of the log file and the classes of events
# you want to log into the file or display on console (standard error).
LogFile := "../logs/%e.%h-%r.%s"
#FileMask := LOG_ALL | USER | DEBUG | MATCHING
#ConsoleMask := LOG_ALL | USER | DEBUG | MATCHING
FileMask := ERROR | USER | MATCHING | EXECUTOR_RUNTIME | VERDICTOP
ConsoleMask := ERROR | USER | MATCHING | EXECUTOR_RUNTIME | VERDICTOP
LogSourceInfo := Stack
LogEntityName:= Yes
LogEventTypes:= Yes
#TimeStampFormat := DateTime
[TESTPORT_PARAMETERS]
# In this section you can specify parameters that are passed to Test Ports.
# CAM Layer
# next_header : btpA|btpB (overwrite BTP.type)
# header_type : tsb|gbc
# header_sub_type : sh (single hop)
# DENM Layer
# next_header : btpA|btpB (overwrite BTP.type)
# header_type : tsb|gbc
# BTP Layer
# type : btpA|btpB
# destination port: dst_port
# source port : src_port
# device_mode : Set to 1 if the layer shall encapsulate upper layer PDU
# device_mode : Set to 1 if the layer shall encapsulate upper layer PDU
# GN Layer
# ll_address : GeoNetworking address of the Test System
# latitude : Latitude of the Test System
# longitude : Longitude of the Test System
# beaconing : Set to 1 if GnLayer shall start beaconing
# expiry : Beaconning timer expiry (ms)
# device_mode : Set to 1 if the layer shall encapsulate upper layer PDU
# secured_mode : Set to 1 if message exchanges shall be signed
# encrypted_mode : Set to 1 if message exchanges shall be encrypted
# NOTE: For signed & encrypted message exchanges, both secured_mode and encrypted_mode shall be set to 1
# sec_db_path : Path to the certificates and keys storage location
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# hash : Hash algorithm to be used when secured mode is set
# Authorized values are SHA-256 or SHA-384
# Default: SHA-256
# signature : Signature algorithm to be used when secured mode is set
# Authorized values are NISTP-256, NISTP-384, BP-256 and BP-384
# Default: NISTP-256
# cypher : Cyphering algorithm to be used when secured mode is set
# Authorized values are NISTP-256, BP-256 and BP-384
# Default: NISTP-256
# Ethernet layer
# mac_src :Source MAC address
# mac_bc :Broadcast address
# eth_type : Ethernet type
# Commsignia layer
# mac_src : Device MAC address, used to discard packets
# To indicate no filering, use the value 000000000000
# mac_bc : Broadcast address
# eth_type : Ethernet type, used to discard packets
# target_host : Device address
# target_port : Device port
# source_port : Test System port
# interface_id: Interface id, used to discard packets
# tx_power : TX power (dB)
# UDP layer (IP/UDP based on Pcap)
# dst_ip : Destination IPv4 address (aa.bb.cc.dd)
# dst_port: Destination port
# src_ip : Source IPv4 address (aa.bb.cc.dd)
# src_port: Source port
# Pcap layer
# mac_src : Source MAC address, used to exclude from capture the acket sent by the Test System
# filter : Pcap filter (compliant with tcpdump syntax)
# Online mode:
# nic: Local NIC
# If set, online mode is used
# Offline mode (nic is present but not set):
# file : File to read
# frame_offset: Frame offset, used to skip packets with frame number < frame_offset
# time_offset : Time offset, used to skip packets with time offset < time_offset
# save_mode : Set to 1 to save sent packet, 0 otherwise
# Single GeoNetworking component port
system.geoNetworkingPort.params := "GN(ll_address=4C5E0C14D2EA,latitude=43551050,longitude=10298730)/ETH(mac_src=080027500f9b)/PCAP(mac_src=080027500f9b,nic=tap0,filter=and ether proto 0x8947)"
# Multiple GeoNetworking component portN
NodeA.geoNetworkingPort.params := "GN(ll_address=F8CAB808391A,latitude=43551050,longitude=10298730)/ETH(mac_src=080027500f9a)/PCAP(mac_src=080027500f9a,nic=tap0,filter=and ether proto 0x8947)"
odeB.geoNetworkingPort.params := "GN(ll_address=F8CAB808391B,latitude=43551050,longitude=10298730)/ETH(mac_src=080027500f9b)/PCAP(mac_src=080027500f9b,nic=tap0,filter=and ether proto 0x8947)"
NodeC.geoNetworkingPort.params := "GN(ll_address=F8CAB808391C,latitude=43551050,longitude=10298730)/ETH(mac_src=080027500f9c)/PCAP(mac_src=080027500f9c,nic=tap0,filter=and ether proto 0x8947)"
NodeD.geoNetworkingPort.params := "GN(ll_address=F8CAB808391D,latitude=43551050,longitude=10298730)/ETH(mac_src=080027500f9d)/PCAP(mac_src=080027500f9d,nic=tap0,filter=and ether proto 0x8947)"
# UpperTester port based on UDP
#system.utPort.params := "UT_GN/UDP(dst_ip=192.168.2.2)"
system.utPort.params := "UT_GN/UDP(dst_ip=172.23.0.1,dst_port=8000)"
#ItsGeoNetworking_TestCases.TC_GEONW_FDV_COH_BV_01
#ItsGeoNetworking_TestCases.TC_GEONW_FDV_COH_BV_02
#ItsGeoNetworking_TestCases.TC_GEONW_FDV_COH_BV_03
#ItsGeoNetworking_TestCases.TC_GEONW_FDV_COH_BO_04
#ItsGeoNetworking_TestCases.TC_GEONW_FDV_BEA_BV_01
#ItsGeoNetworking_TestCases.TC_GEONW_FDV_BEA_BV_02
#ItsGeoNetworking_TestCases.TC_GEONW_FDV_BEA_BV_03
#ItsGeoNetworking_TestCases.TC_GEONW_FDV_BEA_BV_04
#ItsGeoNetworking_TestCases.TC_GEONW_FDV_GUC_BV_01
#ItsGeoNetworking_TestCases.TC_GEONW_FDV_GBC_BV_01
#ItsGeoNetworking_TestCases.TC_GEONW_FDV_GAC_BV_01
#ItsGeoNetworking_TestCases.TC_GEONW_FDV_SHB_BV_01
#ItsGeoNetworking_TestCases.TC_GEONW_FDV_TSB_BV_01
#ItsGeoNetworking_TestCases.TC_GEONW_PON_LOT_BV_01
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#ItsGeoNetworking_TestCases.TC_GEONW_PON_LOT_BV_02
#ItsGeoNetworking_TestCases.TC_GEONW_PON_LOT_BV_03_01
#ItsGeoNetworking_TestCases.TC_GEONW_PON_LOT_BV_03_02
#ItsGeoNetworking_TestCases.TC_GEONW_PON_LOT_BV_03_03
#ItsGeoNetworking_TestCases.TC_GEONW_PON_LOT_BV_03_04
#ItsGeoNetworking_TestCases.TC_GEONW_PON_LOT_BV_03_05
#ItsGeoNetworking_TestCases.TC_GEONW_PON_LOT_BV_03_06
#ItsGeoNetworking_TestCases.TC_GEONW_PON_LOT_BV_03_07
#ItsGeoNetworking_TestCases.TC_GEONW_PON_LOT_BV_03_08
#ItsGeoNetworking_TestCases.TC_GEONW_PON_LOT_BV_04
#ItsGeoNetworking_TestCases.TC_GEONW_PON_SQN_BV_01
#ItsGeoNetworking_TestCases.TC_GEONW_PON_SQN_BV_02
#ItsGeoNetworking_TestCases.TC_GEONW_PON_LOS_BV_01
#ItsGeoNetworking_TestCases.TC_GEONW_PON_LOS_BV_02
#ItsGeoNetworking_TestCases.TC_GEONW_PON_LOS_BV_03
#ItsGeoNetworking_TestCases.TC_GEONW_PON_LOS_BV_04
#ItsGeoNetworking_TestCases.TC_GEONW_PON_LOS_BV_05
#ItsGeoNetworking_TestCases.TC_GEONW_PON_LOS_TI_06
#ItsGeoNetworking_TestCases.TC_GEONW_PON_LOS_BV_07
#ItsGeoNetworking_TestCases.TC_GEONW_PON_LOS_BV_08
#ItsGeoNetworking_TestCases.TC_GEONW_PON_LOS_BO_09
#ItsGeoNetworking_TestCases.TC_GEONW_PON_LOS_BV_10
#ItsGeoNetworking_TestCases.TC_GEONW_PON_LOS_BV_11
#ItsGeoNetworking_TestCases.TC_GEONW_PON_LOS_BV_12
#ItsGeoNetworking_TestCases.TC_GEONW_PON_LOS_BV_13
#ItsGeoNetworking_TestCases.TC_GEONW_PON_LOS_BV_14
#ItsGeoNetworking_TestCases.TC_GEONW_PON_LOS_BV_15
#ItsGeoNetworking_TestCases.TC_GEONW_PON_LOS_BV_16
#ItsGeoNetworking_TestCases.TC_GEONW_PON_LOS_BV_17
#ItsGeoNetworking_TestCases.TC_GEONW_PON_FPB_BV_01
#ItsGeoNetworking_TestCases.TC_GEONW_PON_FPB_BV_02
#ItsGeoNetworking_TestCases.TC_GEONW_PON_FPB_BV_03
#ItsGeoNetworking_TestCases.TC_GEONW_PON_FPB_BV_04
#ItsGeoNetworking_TestCases.TC_GEONW_PON_FPB_BV_06
#ItsGeoNetworking_TestCases.TC_GEONW_PON_FPB_BV_07
#ItsGeoNetworking_TestCases.TC_GEONW_PON_FPB_BV_08
#ItsGeoNetworking_TestCases.TC_GEONW_PON_FPB_BV_09
#ItsGeoNetworking_TestCases.TC_GEONW_PON_FPB_BV_10
#ItsGeoNetworking_TestCases.TC_GEONW_PON_FPB_BV_11
#ItsGeoNetworking_TestCases.TC_GEONW_PON_FPB_BV_12
#ItsGeoNetworking_TestCases.TC_GEONW_PON_GNA_BV_01
#ItsGeoNetworking_TestCases.TC_GEONW_PON_GNA_BV_02
#ItsGeoNetworking_TestCases.TC_GEONW_PON_BEA_TI_01
#ItsGeoNetworking_TestCases.TC_GEONW_PON_BEA_TI_02
#ItsGeoNetworking_TestCases.TC_GEONW_PON_GUC_BV_01
#ItsGeoNetworking_TestCases.TC_GEONW_PON_GUC_BV_02
#ItsGeoNetworking_TestCases.TC_GEONW_PON_GUC_BV_03
#ItsGeoNetworking_TestCases.TC_GEONW_PON_GUC_BO_04
#ItsGeoNetworking_TestCases.TC_GEONW_PON_GUC_BV_05
#ItsGeoNetworking_TestCases.TC_GEONW_PON_GUC_BV_06
#ItsGeoNetworking_TestCases.TC_GEONW_PON_GUC_BV_07
#ItsGeoNetworking_TestCases.TC_GEONW_PON_GUC_BV_08
#ItsGeoNetworking_TestCases.TC_GEONW_PON_GUC_BV_10
#ItsGeoNetworking_TestCases.TC_GEONW_PON_GUC_BV_11
#ItsGeoNetworking_TestCases.TC_GEONW_PON_GUC_BO_12
#ItsGeoNetworking_TestCases.TC_GEONW_PON_GUC_BO_13
ItsGeoNetworking_TestCases.TC_GEONW_PON_GBC_BV_01
#ItsGeoNetworking_TestCases.TC_GEONW_CAP_FPB_BV_01
[MAIN_CONTROLLER]
# The options herein control the behavior of MC.
KillTimer := 10.0
LocalAddress := 127.0.0.1
TCPPort := 12000
NumHCs := 1