Change hardcoded nFAPI ports to use htons and ntohs and changes to allow OAI VNF and PNF to run

parent 0afa3f31
...@@ -254,7 +254,7 @@ void rx_func(void *param) { ...@@ -254,7 +254,7 @@ void rx_func(void *param) {
stop_meas(&gNB->ul_indication_stats); stop_meas(&gNB->ul_indication_stats);
int tx_slot_type = nr_slot_select(cfg,frame_rx,slot_tx); int tx_slot_type = nr_slot_select(cfg,frame_rx,slot_tx);
if (tx_slot_type == NR_DOWNLINK_SLOT || tx_slot_type == NR_MIXED_SLOT) { if ((tx_slot_type == NR_DOWNLINK_SLOT || tx_slot_type == NR_MIXED_SLOT) && NFAPI_MODE != NFAPI_MODE_PNF) {
notifiedFIFO_elt_t *res; notifiedFIFO_elt_t *res;
processingData_L1tx_t *syncMsg; processingData_L1tx_t *syncMsg;
// Its a FIFO so it maitains the order in which the MAC fills the messages // Its a FIFO so it maitains the order in which the MAC fills the messages
...@@ -470,7 +470,7 @@ void init_gNB_Tpool(int inst) { ...@@ -470,7 +470,7 @@ void init_gNB_Tpool(int inst) {
pushNotifiedFIFO(&gNB->L1_tx_free, msgL1Tx); // to unblock the process in the beginning pushNotifiedFIFO(&gNB->L1_tx_free, msgL1Tx); // to unblock the process in the beginning
} }
if ((!get_softmodem_params()->emulate_l1) && (!IS_SOFTMODEM_NOSTATS_BIT)) if ((!get_softmodem_params()->emulate_l1) && (!IS_SOFTMODEM_NOSTATS_BIT) && (NFAPI_MODE!=NFAPI_MODE_VNF))
threadCreate(&proc->L1_stats_thread,nrL1_stats_thread,(void*)gNB,"L1_stats",-1,OAI_PRIORITY_RT_LOW); threadCreate(&proc->L1_stats_thread,nrL1_stats_thread,(void*)gNB,"L1_stats",-1,OAI_PRIORITY_RT_LOW);
LOG_I(PHY,"Creating thread for TX reordering and dispatching to RU\n"); LOG_I(PHY,"Creating thread for TX reordering and dispatching to RU\n");
......
...@@ -581,8 +581,10 @@ int main( int argc, char **argv ) { ...@@ -581,8 +581,10 @@ int main( int argc, char **argv ) {
RCconfig_NR_L1(); RCconfig_NR_L1();
// don't create if node doesn't connect to RRC/S1/GTP // don't create if node doesn't connect to RRC/S1/GTP
int ret=create_gNB_tasks(1); if (NFAPI_MODE != NFAPI_MODE_PNF) {
AssertFatal(ret==0,"cannot create ITTI tasks\n"); int ret = create_gNB_tasks(1);
AssertFatal(ret == 0, "cannot create ITTI tasks\n");
}
// init UE_PF_PO and mutex lock // init UE_PF_PO and mutex lock
pthread_mutex_init(&ue_pf_po_mutex, NULL); pthread_mutex_init(&ue_pf_po_mutex, NULL);
......
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...@@ -20,8 +20,8 @@ ...@@ -20,8 +20,8 @@
*/ */
void configure_nfapi_vnf(char *vnf_addr, int vnf_p5_port); void configure_nfapi_vnf(char *vnf_addr, int vnf_p5_port, char *pnf_ip_addr, int pnf_p7_port, int vnf_p7_port);
void configure_nr_nfapi_vnf(char *vnf_addr, int vnf_p5_port); void configure_nr_nfapi_vnf(char *vnf_addr, int vnf_p5_port, char *pnf_ip_addr, int pnf_p7_port, int vnf_p7_port);
uint32_t sfnslot_add_slot(uint16_t sfn, uint16_t slot, int offset); uint32_t sfnslot_add_slot(uint16_t sfn, uint16_t slot, int offset);
...@@ -967,7 +967,7 @@ int pnf_p7_slot_ind(pnf_p7_t* pnf_p7, uint16_t phy_id, uint16_t sfn, uint16_t sl ...@@ -967,7 +967,7 @@ int pnf_p7_slot_ind(pnf_p7_t* pnf_p7, uint16_t phy_id, uint16_t sfn, uint16_t sl
slot = shifted_slot; slot = shifted_slot;
// //
// DJP - why does the shift not apply to pnf_p7->sfn_sf??? // why does the shift not apply to pnf_p7->sfn_sf???
// //
pnf_p7->slot_shift = 0; pnf_p7->slot_shift = 0;
...@@ -1219,7 +1219,7 @@ int pnf_p7_subframe_ind(pnf_p7_t* pnf_p7, uint16_t phy_id, uint16_t sfn_sf) ...@@ -1219,7 +1219,7 @@ int pnf_p7_subframe_ind(pnf_p7_t* pnf_p7, uint16_t phy_id, uint16_t sfn_sf)
sfn_sf = shifted_sfn_sf; sfn_sf = shifted_sfn_sf;
// //
// DJP - why does the shift not apply to pnf_p7->sfn_sf??? // why does the shift not apply to pnf_p7->sfn_sf???
// //
pnf_p7->sfn_sf_shift = 0; pnf_p7->sfn_sf_shift = 0;
...@@ -2908,7 +2908,7 @@ void pnf_nfapi_p7_read_dispatch_message(pnf_p7_t* pnf_p7, uint32_t now_hr_time) ...@@ -2908,7 +2908,7 @@ void pnf_nfapi_p7_read_dispatch_message(pnf_p7_t* pnf_p7, uint32_t now_hr_time)
recvfrom_result = recvfrom(pnf_p7->p7_sock, pnf_p7->rx_message_buffer, pnf_p7->rx_message_buffer_size, recvfrom_result = recvfrom(pnf_p7->p7_sock, pnf_p7->rx_message_buffer, pnf_p7->rx_message_buffer_size,
MSG_DONTWAIT | MSG_TRUNC, (struct sockaddr*)&remote_addr, &remote_addr_size); MSG_DONTWAIT | MSG_TRUNC, (struct sockaddr*)&remote_addr, &remote_addr_size);
now_hr_time = pnf_get_current_time_hr(); //DJP - moved to here - get closer timestamp??? now_hr_time = pnf_get_current_time_hr(); //moved to here - get closer timestamp???
if(recvfrom_result > 0) if(recvfrom_result > 0)
{ {
...@@ -2975,7 +2975,7 @@ void pnf_nr_nfapi_p7_read_dispatch_message(pnf_p7_t* pnf_p7, uint32_t now_hr_tim ...@@ -2975,7 +2975,7 @@ void pnf_nr_nfapi_p7_read_dispatch_message(pnf_p7_t* pnf_p7, uint32_t now_hr_tim
// read the segment // read the segment
recvfrom_result = recvfrom(pnf_p7->p7_sock, pnf_p7->rx_message_buffer, header.message_length, MSG_DONTWAIT, (struct sockaddr*)&remote_addr, &remote_addr_size); recvfrom_result = recvfrom(pnf_p7->p7_sock, pnf_p7->rx_message_buffer, header.message_length, MSG_DONTWAIT, (struct sockaddr*)&remote_addr, &remote_addr_size);
now_hr_time = pnf_get_current_time_hr(); //DJP - moved to here - get closer timestamp??? now_hr_time = pnf_get_current_time_hr(); //moved to here - get closer timestamp???
if(recvfrom_result > 0) if(recvfrom_result > 0)
{ {
...@@ -3060,7 +3060,7 @@ int pnf_p7_message_pump(pnf_p7_t* pnf_p7) ...@@ -3060,7 +3060,7 @@ int pnf_p7_message_pump(pnf_p7_t* pnf_p7)
struct sockaddr_in addr; struct sockaddr_in addr;
memset(&addr, 0, sizeof(addr)); memset(&addr, 0, sizeof(addr));
addr.sin_family = AF_INET; addr.sin_family = AF_INET;
addr.sin_port = pnf_p7->_public.local_p7_port; addr.sin_port = htons(pnf_p7->_public.local_p7_port);
if(pnf_p7->_public.local_p7_addr == 0) if(pnf_p7->_public.local_p7_addr == 0)
{ {
...@@ -3232,7 +3232,7 @@ int pnf_nr_p7_message_pump(pnf_p7_t* pnf_p7) ...@@ -3232,7 +3232,7 @@ int pnf_nr_p7_message_pump(pnf_p7_t* pnf_p7)
struct sockaddr_in addr; struct sockaddr_in addr;
memset(&addr, 0, sizeof(addr)); memset(&addr, 0, sizeof(addr));
addr.sin_family = AF_INET; addr.sin_family = AF_INET;
addr.sin_port = pnf_p7->_public.local_p7_port; addr.sin_port = htons(pnf_p7->_public.local_p7_port);
if(pnf_p7->_public.local_p7_addr == 0) if(pnf_p7->_public.local_p7_addr == 0)
{ {
......
...@@ -112,7 +112,7 @@ void RCconfig_L1(void) { ...@@ -112,7 +112,7 @@ void RCconfig_L1(void) {
// This is used by init_eNB_afterRU() // This is used by init_eNB_afterRU()
RC.nb_CC = (int *)malloc((1+RC.nb_inst)*sizeof(int)); RC.nb_CC = (int *)malloc((1+RC.nb_inst)*sizeof(int));
RC.nb_CC[0]=1; RC.nb_CC[0]=1;
RC.nb_inst =1; // DJP - feptx_prec uses num_eNB but phy_init_RU uses nb_inst RC.nb_inst =1; // feptx_prec uses num_eNB but phy_init_RU uses nb_inst
LOG_I(PHY,"%s() NFAPI PNF mode - RC.nb_inst=1 this is because phy_init_RU() uses that to index and not RC.num_eNB - why the 2 similar variables?\n", __FUNCTION__); LOG_I(PHY,"%s() NFAPI PNF mode - RC.nb_inst=1 this is because phy_init_RU() uses that to index and not RC.num_eNB - why the 2 similar variables?\n", __FUNCTION__);
LOG_I(PHY,"%s() NFAPI PNF mode - RC.nb_CC[0]=%d for init_eNB_afterRU()\n", __FUNCTION__, RC.nb_CC[0]); LOG_I(PHY,"%s() NFAPI PNF mode - RC.nb_CC[0]=%d for init_eNB_afterRU()\n", __FUNCTION__, RC.nb_CC[0]);
LOG_I(PHY,"%s() NFAPI PNF mode - RC.nb_macrlc_inst:%d because used by mac_top_init_eNB()\n", __FUNCTION__, RC.nb_macrlc_inst); LOG_I(PHY,"%s() NFAPI PNF mode - RC.nb_macrlc_inst:%d because used by mac_top_init_eNB()\n", __FUNCTION__, RC.nb_macrlc_inst);
...@@ -142,10 +142,10 @@ void RCconfig_L1(void) { ...@@ -142,10 +142,10 @@ void RCconfig_L1(void) {
l1_north_init_eNB(); l1_north_init_eNB();
} else { } else {
LOG_I(PHY,"No " CONFIG_STRING_L1_LIST " configuration found"); LOG_I(PHY,"No " CONFIG_STRING_L1_LIST " configuration found");
// DJP need to create some structures for VNF // need to create some structures for VNF
j = 0; j = 0;
RC.nb_L1_CC = malloc((1+RC.nb_L1_inst)*sizeof(int)); // DJP - 1 lot then??? RC.nb_L1_CC = malloc((1+RC.nb_L1_inst)*sizeof(int));
RC.nb_L1_CC[j]=1; // DJP - hmmm RC.nb_L1_CC[j]=1;
if (RC.eNB[j] == NULL) { if (RC.eNB[j] == NULL) {
RC.eNB[j] = (PHY_VARS_eNB **)malloc((1+MAX_NUM_CCs)*sizeof(PHY_VARS_eNB **)); RC.eNB[j] = (PHY_VARS_eNB **)malloc((1+MAX_NUM_CCs)*sizeof(PHY_VARS_eNB **));
...@@ -224,7 +224,7 @@ void RCconfig_macrlc(int macrlc_has_f1[MAX_MAC_INST]) { ...@@ -224,7 +224,7 @@ void RCconfig_macrlc(int macrlc_has_f1[MAX_MAC_INST]) {
RC.mac[j]->eth_params_s.remote_portd = *(MacRLC_ParamList.paramarray[j][MACRLC_REMOTE_S_PORTD_IDX].iptr); RC.mac[j]->eth_params_s.remote_portd = *(MacRLC_ParamList.paramarray[j][MACRLC_REMOTE_S_PORTD_IDX].iptr);
RC.mac[j]->eth_params_s.transp_preference = ETH_UDP_MODE; RC.mac[j]->eth_params_s.transp_preference = ETH_UDP_MODE;
LOG_I(ENB_APP,"**************** vnf_port:%d\n", RC.mac[j]->eth_params_s.my_portc); LOG_I(ENB_APP,"**************** vnf_port:%d\n", RC.mac[j]->eth_params_s.my_portc);
configure_nfapi_vnf(RC.mac[j]->eth_params_s.my_addr, RC.mac[j]->eth_params_s.my_portc); configure_nfapi_vnf(RC.mac[j]->eth_params_s.my_addr, RC.mac[j]->eth_params_s.my_portc,RC.mac[j]->eth_params_s.remote_addr,RC.mac[j]->eth_params_s.remote_portd,RC.mac[j]->eth_params_s.my_portd);
LOG_I(ENB_APP,"**************** RETURNED FROM configure_nfapi_vnf() vnf_port:%d\n", RC.mac[j]->eth_params_s.my_portc); LOG_I(ENB_APP,"**************** RETURNED FROM configure_nfapi_vnf() vnf_port:%d\n", RC.mac[j]->eth_params_s.my_portc);
} else { // other midhaul } else { // other midhaul
AssertFatal(1==0,"MACRLC %d: %s unknown southbound midhaul\n",j,*(MacRLC_ParamList.paramarray[j][MACRLC_TRANSPORT_S_PREFERENCE_IDX].strptr)); AssertFatal(1==0,"MACRLC %d: %s unknown southbound midhaul\n",j,*(MacRLC_ParamList.paramarray[j][MACRLC_TRANSPORT_S_PREFERENCE_IDX].strptr));
......
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...@@ -391,7 +391,7 @@ void NR_UL_indication(NR_UL_IND_t *UL_info) { ...@@ -391,7 +391,7 @@ void NR_UL_indication(NR_UL_IND_t *UL_info) {
int CC_id = UL_info->CC_id; int CC_id = UL_info->CC_id;
NR_Sched_Rsp_t *sched_info = &NR_Sched_INFO[module_id][CC_id]; NR_Sched_Rsp_t *sched_info = &NR_Sched_INFO[module_id][CC_id];
NR_IF_Module_t *ifi = nr_if_inst[module_id]; NR_IF_Module_t *ifi = nr_if_inst[module_id];
gNB_MAC_INST *mac = RC.nrmac[module_id];
LOG_D(NR_PHY,"SFN/SLOT:%d.%d module_id:%d CC_id:%d UL_info[rach_pdus:%zu rx_ind:%zu crcs:%zu]\n", LOG_D(NR_PHY,"SFN/SLOT:%d.%d module_id:%d CC_id:%d UL_info[rach_pdus:%zu rx_ind:%zu crcs:%zu]\n",
UL_info->frame, UL_info->slot, UL_info->frame, UL_info->slot,
module_id, CC_id, module_id, CC_id,
...@@ -443,8 +443,6 @@ void NR_UL_indication(NR_UL_IND_t *UL_info) { ...@@ -443,8 +443,6 @@ void NR_UL_indication(NR_UL_IND_t *UL_info) {
handle_nr_rach(UL_info); handle_nr_rach(UL_info);
handle_nr_uci(UL_info); handle_nr_uci(UL_info);
// clear UL DCI prior to handling ULSCH
mac->UL_dci_req[CC_id].numPdus = 0;
handle_nr_ulsch(UL_info); handle_nr_ulsch(UL_info);
handle_nr_srs(UL_info); handle_nr_srs(UL_info);
...@@ -452,7 +450,9 @@ void NR_UL_indication(NR_UL_IND_t *UL_info) { ...@@ -452,7 +450,9 @@ void NR_UL_indication(NR_UL_IND_t *UL_info) {
free_unqueued_nfapi_indications(rach_ind, uci_ind, rx_ind, crc_ind); free_unqueued_nfapi_indications(rach_ind, uci_ind, rx_ind, crc_ind);
} }
if (NFAPI_MODE != NFAPI_MODE_PNF) { if (NFAPI_MODE != NFAPI_MODE_PNF) {
gNB_MAC_INST *mac = RC.nrmac[module_id];
// clear UL DCI prior to handling ULSCH
mac->UL_dci_req[CC_id].numPdus = 0;
if (ifi->CC_mask==0) { if (ifi->CC_mask==0) {
ifi->current_frame = UL_info->frame; ifi->current_frame = UL_info->frame;
ifi->current_slot = UL_info->slot; ifi->current_slot = UL_info->slot;
......
L1s = (
{
num_cc = 1;
tr_n_preference = "nfapi";
local_n_if_name = "lo";
remote_n_address = "127.0.0.2"; // vnf addr
local_n_address = "127.0.0.1"; // pnf addr
local_n_portc = 50000; // pnf p5 port [!]
remote_n_portc = 50001; // vnf p5 port
local_n_portd = 50010; // pnf p7 port
remote_n_portd = 50011; // vnf p7 port
prach_dtx_threshold = 120;
pucch0_dtx_threshold = 150;
ofdm_offset_divisor = 8; #set this to UINT_MAX for offset 0
}
);
RUs = (
{
local_rf = "yes"
nb_tx = 1
nb_rx = 1
att_tx = 0
att_rx = 0;
bands = [78];
max_pdschReferenceSignalPower = -27;
max_rxgain = 114;
}
);
rfsimulator :
{
serveraddr = "server";
serverport = "4043";
options = (); #("saviq"); or/and "chanmod"
modelname = "AWGN";
IQfile = "/tmp/rfsimulator.iqs";
};
log_config :
{
global_log_level ="info";
hw_log_level ="info";
phy_log_level ="info";
mac_log_level ="info";
rlc_log_level ="info";
pdcp_log_level ="info";
rrc_log_level ="info";
ngap_log_level ="debug";
f1ap_log_level ="debug";
};
Active_gNBs = ( "gNB-OAI");
# Asn1_verbosity, choice in: none, info, annoying
Asn1_verbosity = "none";
gNBs =
(
{
////////// Identification parameters:
gNB_ID = 0xe00;
gNB_name = "gNB-OAI";
// Tracking area code, 0x0000 and 0xfffe are reserved values
tracking_area_code = 1;
plmn_list = ({
mcc = 208;
mnc = 99;
mnc_length = 2;
snssaiList = (
{
sst = 1;
sd = 0x1; // 0 false, else true
},
{
sst = 1;
sd = 0x112233; // 0 false, else true
}
);
});
nr_cellid = 12345678L;
////////// Physical parameters:
ssb_SubcarrierOffset = 0;
pdsch_AntennaPorts = 1;
pusch_AntennaPorts = 1;
min_rxtxtime = 6;
sib1_tda = 0;
pdcch_ConfigSIB1 = (
{
controlResourceSetZero = 12;
searchSpaceZero = 0;
}
);
servingCellConfigCommon = (
{
#spCellConfigCommon
physCellId = 0;
# downlinkConfigCommon
#frequencyInfoDL
# this is 3600 MHz + 43 PRBs@30kHz SCS (same as initial BWP)
absoluteFrequencySSB = 641280;
dl_frequencyBand = 78;
# this is 3600 MHz
dl_absoluteFrequencyPointA = 640008;
#scs-SpecificCarrierList
dl_offstToCarrier = 0;
# subcarrierSpacing
# 0=kHz15, 1=kHz30, 2=kHz60, 3=kHz120
dl_subcarrierSpacing = 1;
dl_carrierBandwidth = 106;
#initialDownlinkBWP
#genericParameters
# this is RBstart=27,L=48 (275*(L-1))+RBstart
initialDLBWPlocationAndBandwidth = 28875; # 6366 12925 12956 28875 12952
# subcarrierSpacing
# 0=kHz15, 1=kHz30, 2=kHz60, 3=kHz120
initialDLBWPsubcarrierSpacing = 1;
#pdcch-ConfigCommon
initialDLBWPcontrolResourceSetZero = 12;
initialDLBWPsearchSpaceZero = 0;
#uplinkConfigCommon
#frequencyInfoUL
ul_frequencyBand = 78;
#scs-SpecificCarrierList
ul_offstToCarrier = 0;
# subcarrierSpacing
# 0=kHz15, 1=kHz30, 2=kHz60, 3=kHz120
ul_subcarrierSpacing = 1;
ul_carrierBandwidth = 106;
pMax = 20;
#initialUplinkBWP
#genericParameters
initialULBWPlocationAndBandwidth = 28875;
# subcarrierSpacing
# 0=kHz15, 1=kHz30, 2=kHz60, 3=kHz120
initialULBWPsubcarrierSpacing = 1;
#rach-ConfigCommon
#rach-ConfigGeneric
prach_ConfigurationIndex = 98;
#prach_msg1_FDM
#0 = one, 1=two, 2=four, 3=eight
prach_msg1_FDM = 0;
prach_msg1_FrequencyStart = 0;
zeroCorrelationZoneConfig = 13;
preambleReceivedTargetPower = -96;
#preamblTransMax (0...10) = (3,4,5,6,7,8,10,20,50,100,200)
preambleTransMax = 6;
#powerRampingStep
# 0=dB0,1=dB2,2=dB4,3=dB6
powerRampingStep = 1;
#ra_ReponseWindow
#1,2,4,8,10,20,40,80
ra_ResponseWindow = 4;
#ssb_perRACH_OccasionAndCB_PreamblesPerSSB_PR
#1=oneeighth,2=onefourth,3=half,4=one,5=two,6=four,7=eight,8=sixteen
ssb_perRACH_OccasionAndCB_PreamblesPerSSB_PR = 4;
#oneHalf (0..15) 4,8,12,16,...60,64
ssb_perRACH_OccasionAndCB_PreamblesPerSSB = 14;
#ra_ContentionResolutionTimer
#(0..7) 8,16,24,32,40,48,56,64
ra_ContentionResolutionTimer = 7;
rsrp_ThresholdSSB = 19;
#prach-RootSequenceIndex_PR
#1 = 839, 2 = 139
prach_RootSequenceIndex_PR = 2;
prach_RootSequenceIndex = 1;
# SCS for msg1, can only be 15 for 30 kHz < 6 GHz, takes precendence over the one derived from prach-ConfigIndex
#
msg1_SubcarrierSpacing = 1,
# restrictedSetConfig
# 0=unrestricted, 1=restricted type A, 2=restricted type B
restrictedSetConfig = 0,
msg3_DeltaPreamble = 1;
p0_NominalWithGrant =-90;
# pucch-ConfigCommon setup :
# pucchGroupHopping
# 0 = neither, 1= group hopping, 2=sequence hopping
pucchGroupHopping = 0;
hoppingId = 40;
p0_nominal = -90;
# ssb_PositionsInBurs_BitmapPR
# 1=short, 2=medium, 3=long
ssb_PositionsInBurst_PR = 2;
ssb_PositionsInBurst_Bitmap = 1;
# ssb_periodicityServingCell
# 0 = ms5, 1=ms10, 2=ms20, 3=ms40, 4=ms80, 5=ms160, 6=spare2, 7=spare1
ssb_periodicityServingCell = 2;
# dmrs_TypeA_position
# 0 = pos2, 1 = pos3
dmrs_TypeA_Position = 0;
# subcarrierSpacing
# 0=kHz15, 1=kHz30, 2=kHz60, 3=kHz120
subcarrierSpacing = 1;
#tdd-UL-DL-ConfigurationCommon
# subcarrierSpacing
# 0=kHz15, 1=kHz30, 2=kHz60, 3=kHz120
referenceSubcarrierSpacing = 1;
# pattern1
# dl_UL_TransmissionPeriodicity
# 0=ms0p5, 1=ms0p625, 2=ms1, 3=ms1p25, 4=ms2, 5=ms2p5, 6=ms5, 7=ms10
dl_UL_TransmissionPeriodicity = 6;
nrofDownlinkSlots = 7;
nrofDownlinkSymbols = 6;
nrofUplinkSlots = 2;
nrofUplinkSymbols = 4;
ssPBCH_BlockPower = -25;
}
);
# ------- SCTP definitions
SCTP :
{
# Number of streams to use in input/output
SCTP_INSTREAMS = 2;
SCTP_OUTSTREAMS = 2;
};
////////// AMF parameters:
amf_ip_address = ( { ipv4 = "192.168.70.132";
ipv6 = "192:168:30::17";
active = "yes";
preference = "ipv4";
}
);
NETWORK_INTERFACES :
{
GNB_INTERFACE_NAME_FOR_NG_AMF = "demo-oai";
GNB_IPV4_ADDRESS_FOR_NG_AMF = "192.168.70.129/24";
GNB_INTERFACE_NAME_FOR_NGU = "demo-oai";
GNB_IPV4_ADDRESS_FOR_NGU = "192.168.70.129/24";
GNB_PORT_FOR_S1U = 2152; # Spec 2152
};
}
);
MACRLCs = (
{
num_cc = 1;
local_s_if_name = "lo:";
remote_s_address = "127.0.0.1"; // pnf addr [!]
local_s_address = "127.0.0.2"; // vnf addr
local_s_portc = 50001; // vnf p5 port
remote_s_portc = 50000; // pnf p5 port [!]
local_s_portd = 50011; // vnf p7 port [!]
remote_s_portd = 50010; // pnf p7 port [!]
tr_s_preference = "nfapi";
tr_n_preference = "local_RRC";
}
)
security = {
# preferred ciphering algorithms
# the first one of the list that an UE supports in chosen
# valid values: nea0, nea1, nea2, nea3
ciphering_algorithms = ( "nea0" );
# preferred integrity algorithms
# the first one of the list that an UE supports in chosen
# valid values: nia0, nia1, nia2, nia3
integrity_algorithms = ( "nia2", "nia0" );
# setting 'drb_ciphering' to "no" disables ciphering for DRBs, no matter
# what 'ciphering_algorithms' configures; same thing for 'drb_integrity'
drb_ciphering = "yes";
drb_integrity = "no";
};
log_config :
{
global_log_level ="info";
hw_log_level ="info";
phy_log_level ="info";
mac_log_level ="info";
rlc_log_level ="info";
pdcp_log_level ="info";
rrc_log_level ="info";
ngap_log_level ="debug";
f1ap_log_level ="debug";
};
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