Commit 1f446432 authored by Cedric Roux's avatar Cedric Roux

Merge remote-tracking branch 'origin/develop-simL1-fixes' into develop_integration_2018_w15

parents 86599d47 0ab2b2b2
......@@ -5028,7 +5028,7 @@ void compute_llr_offset(LTE_DL_FRAME_PARMS *frame_parms,
pdsch_vars->llr_offset[pdcch_vars->num_pdcch_symbols] = 0;
LOG_I(PHY,"compute_llr_offset: nb RB %d - Qm %d \n", nb_rb_alloc, dlsch0_harq->Qm);
// LOG_I(PHY,"compute_llr_offset: nb RB %d - Qm %d \n", nb_rb_alloc, dlsch0_harq->Qm);
//dlsch0_harq->rb_alloc_even;
//dlsch0_harq->rb_alloc_odd;
......@@ -5057,16 +5057,17 @@ void compute_llr_offset(LTE_DL_FRAME_PARMS *frame_parms,
pdsch_vars->llr_length[symbol] = data_re;
if(symbol < (frame_parms->symbols_per_tti-1))
pdsch_vars->llr_offset[symbol+1] = pdsch_vars->llr_offset[symbol] + llr_offset;
/*
LOG_I(PHY,"Granted Re subframe %d / symbol %d => %d (%d RBs)\n", subframe, symbol_mod, granted_re,dlsch0_harq->nb_rb);
LOG_I(PHY,"Pbch/PSS/SSS Re subframe %d / symbol %d => %d \n", subframe, symbol_mod, pbch_pss_sss_re);
LOG_I(PHY,"CRS Re Per PRB subframe %d / symbol %d => %d \n", subframe, symbol_mod, crs_re);
LOG_I(PHY,"Data Re subframe %d / symbol %d => %d \n", subframe, symbol_mod, data_re);
LOG_I(PHY,"Data Re subframe %d-symbol %d => llr length %d, llr offset %d \n", subframe, symbol,
pdsch_vars->llr_length[symbol], pdsch_vars->llr_offset[symbol]);
*/
}
}
void prepare_dl_decoding_format1_1A(DCI_format_t dci_format,
......
......@@ -48,7 +48,7 @@ int16_t interf_unaw_shift = 13;
//#define DEBUG_HARQ
#define DEBUG_PHY 1
//#define DEBUG_PHY 1
//#define DEBUG_DLSCH_DEMOD 1
//#define DISABLE_LOG_X
......@@ -842,7 +842,7 @@ int rx_pdsch(PHY_VARS_UE *ue,
pllr_symbol_cw1 = (int8_t*)pdsch_vars[eNB_id]->llr[1];
pllr_symbol_cw0 += llr_offset_symbol;
pllr_symbol_cw1 += llr_offset_symbol;
/*
LOG_I(PHY,"compute LLRs [AbsSubframe %d.%d-%d] NbRB %d Qm %d LLRs-Length %d LLR-Offset %d @LLR Buff %p @LLR Buff(symb) %p\n",
frame, subframe,symbol,
nb_rb,dlsch0_harq->Qm,
......@@ -850,7 +850,7 @@ int rx_pdsch(PHY_VARS_UE *ue,
pdsch_vars[eNB_id]->llr_offset[symbol],
(int16_t*)pdsch_vars[eNB_id]->llr[0],
pllr_symbol_cw0);
*/
switch (dlsch0_harq->Qm) {
case 2 :
if ((rx_type==rx_standard) || (codeword_TB1 == -1)) {
......
......@@ -41,7 +41,7 @@
#include <sched.h>
#include "targets/RT/USER/lte-softmodem.h"
#define DEBUG_PHY_PROC
//#define DEBUG_PHY_PROC
#ifndef PUCCH
#define PUCCH
......@@ -81,7 +81,7 @@ extern uint32_t downlink_frequency[MAX_NUM_CCs][4];
#endif
#define UE_DEBUG_TRACE 1
//#define UE_DEBUG_TRACE 1
void dump_dlsch(PHY_VARS_UE *ue,UE_rxtx_proc_t *proc,uint8_t eNB_id,uint8_t subframe,uint8_t harq_pid)
{
......
......@@ -91,10 +91,8 @@ double dac_fixed_gain(double *s_re[2],
int i;
int aa;
double amp,amp1_local,*amp1p;
amp = //sqrt(NB_RE)*pow(10.0,.05*txpwr_dBm)/sqrt(nb_tx_antennas); //this is amp per tx antenna
pow(10.0,.05*txpwr_dBm)/sqrt(nb_tx_antennas); //this is amp per tx antenna
double amp1_local,*amp1p;
double amp = pow(10.0,.05*txpwr_dBm)/sqrt(nb_tx_antennas); //this is amp per tx antenna
if (amp1==NULL) amp1p = &amp1_local;
else amp1p = amp1;
......@@ -123,7 +121,7 @@ double dac_fixed_gain(double *s_re[2],
//printf("DL: amp1 %f dB (%d,%d), tx_power %f\n",20*log10(amp1),input_offset,input_offset_meas,txpwr_dBm);
*/
// printf("DAC: amp/amp1p %f amp1 %f dB (%d,%d), tx_power %f\n",amp/(*amp1p),20*log10(*amp1p),input_offset,input_offset_meas,txpwr_dBm);
for (i=0; i<length; i++) {
for (aa=0; aa<nb_tx_antennas; aa++) {
s_re[aa][i] = amp*((double)(((short *)input[aa]))[((i+input_offset)<<1)])/(*amp1p);
......@@ -131,7 +129,7 @@ double dac_fixed_gain(double *s_re[2],
}
}
// printf("ener %e\n",signal_energy_fp(s_re,s_im,nb_tx_antennas,length,0));
// printf("ener %e\n",signal_energy_fp(s_re,s_im,nb_tx_antennas,length<length_meas?length:length_meas,0));
return(signal_energy_fp(s_re,s_im,nb_tx_antennas,length<length_meas?length:length_meas,0)/NB_RE);
}
......@@ -542,7 +542,7 @@ eNB_dlsch_ulsch_scheduler(module_id_t module_idP, frame_t frameP,
rnti = UE_RNTI(module_idP, i);
CC_id = UE_PCCID(module_idP, i);
if ((frameP == 0) && (subframeP == 0)) {
if (((frameP&127) == 0) && (subframeP == 0)) {
LOG_I(MAC,
"UE rnti %x : %s, PHR %d dB DL CQI %d PUSCH SNR %d PUCCH SNR %d\n",
rnti,
......
......@@ -1281,7 +1281,7 @@ schedule_ulsch_rnti(module_id_t module_idP,
// this is the normalized RX power and this should be constant (regardless of mcs
normalized_rx_power = UE_sched_ctrl->pusch_snr[CC_id];
target_rx_power = 178;
target_rx_power = 158;
// this assumes accumulated tpc
// make sure that we are only sending a tpc update once a frame, otherwise the control loop will freak out
......
......@@ -859,7 +859,8 @@ void pdcp_update_stats(const protocol_ctxt_t* const ctxt_pP){
for (pdcp_uid=0; pdcp_uid< NUMBER_OF_UE_MAX;pdcp_uid++){
//printf("frame %d and subframe %d \n", pdcp_enb[ctxt_pP->module_id].frame, pdcp_enb[ctxt_pP->module_id].subframe);
// tx stats
if (pdcp_enb[ctxt_pP->module_id].sfn % Pdcp_stats_tx_window_ms[ctxt_pP->module_id][pdcp_uid] == 0){
if (Pdcp_stats_tx_window_ms[ctxt_pP->module_id][pdcp_uid] > 0 &&
pdcp_enb[ctxt_pP->module_id].sfn % Pdcp_stats_tx_window_ms[ctxt_pP->module_id][pdcp_uid] == 0){
// unit: bit/s
Pdcp_stats_tx_throughput_w[ctxt_pP->module_id][pdcp_uid][rb_id]=Pdcp_stats_tx_bytes_tmp_w[ctxt_pP->module_id][pdcp_uid][rb_id]*8;
Pdcp_stats_tx_w[ctxt_pP->module_id][pdcp_uid][rb_id]= Pdcp_stats_tx_tmp_w[ctxt_pP->module_id][pdcp_uid][rb_id];
......@@ -875,7 +876,8 @@ void pdcp_update_stats(const protocol_ctxt_t* const ctxt_pP){
Pdcp_stats_tx_aiat_tmp_w[ctxt_pP->module_id][pdcp_uid][rb_id]=0;
}
if (pdcp_enb[ctxt_pP->module_id].sfn % Pdcp_stats_rx_window_ms[ctxt_pP->module_id][pdcp_uid] == 0){
if (Pdcp_stats_rx_window_ms[ctxt_pP->module_id][pdcp_uid] > 0 &&
pdcp_enb[ctxt_pP->module_id].sfn % Pdcp_stats_rx_window_ms[ctxt_pP->module_id][pdcp_uid] == 0){
// rx stats
Pdcp_stats_rx_goodput_w[ctxt_pP->module_id][pdcp_uid][rb_id]=Pdcp_stats_rx_bytes_tmp_w[ctxt_pP->module_id][pdcp_uid][rb_id]*8;
Pdcp_stats_rx_w[ctxt_pP->module_id][pdcp_uid][rb_id]= Pdcp_stats_rx_tmp_w[ctxt_pP->module_id][pdcp_uid][rb_id];
......
......@@ -73,8 +73,7 @@ eNBs =
srs_SubframeConfig =;
srs_ackNackST =;
srs_MaxUpPts =;*/
pusch_p0_Nominal = -96;
pusch_p0_Nominal = -104;
pusch_alpha = "AL1";
pucch_p0_Nominal = -104;
msg3_delta_Preamble = 6;
......
......@@ -11,7 +11,7 @@ RUs = (
tr_preference = "udp_if4p5";
nb_tx = 1;
nb_rx = 1;
max_pdschReferenceSignalPower = -29;
max_pdschReferenceSignalPower = -15;
max_rxgain = 120;
bands = [7,13];
}
......
......@@ -1227,7 +1227,7 @@ static inline int wakeup_prach_ru(RU_t *ru) {
ru->eNB_list[0]->proc.frame_prach = ru->proc.frame_rx;
ru->eNB_list[0]->proc.subframe_prach = ru->proc.subframe_rx;
}
LOG_I(PHY,"RU %d: waking up PRACH thread\n",ru->idx);
LOG_D(PHY,"RU %d: waking up PRACH thread\n",ru->idx);
// the thread can now be woken up
AssertFatal(pthread_cond_signal(&ru->proc.cond_prach) == 0, "ERROR pthread_cond_signal for RU prach thread\n");
}
......
......@@ -60,7 +60,11 @@
#include "oaisim.h"
#define RF
//#define DEBUG_SIM
#define DEBUG_SIM
/*
#undef LOG_D
#define LOG_D(A,B,C...) printf(B,C)
*/
int number_rb_ul;
int first_rbUL ;
......@@ -232,7 +236,6 @@ void do_DL_sig(channel_desc_t *RU2UE[NUMBER_OF_RU_MAX][NUMBER_OF_UE_MAX][MAX_NUM
pthread_mutex_lock(&RU_output_mutex[UE_id]);
if (RU_output_mask[UE_id] == 0) { // This is the first eNodeB for this UE, clear the buffer
for (aa=0; aa<nb_antennas_rx; aa++) {
memset((void*)r_re_DL[UE_id][aa],0,(RC.ru[0]->frame_parms.samples_per_tti)*sizeof(double));
memset((void*)r_im_DL[UE_id][aa],0,(RC.ru[0]->frame_parms.samples_per_tti)*sizeof(double));
......@@ -375,7 +378,8 @@ void do_DL_sig(channel_desc_t *RU2UE[NUMBER_OF_RU_MAX][NUMBER_OF_UE_MAX][MAX_NUM
UE_id,ru_id,
10*log10(rx_pwr),subframe);
#endif
pthread_mutex_lock(&RU_output_mutex[UE_id]);
for (i=0; i<frame_parms->samples_per_tti; i++) {
for (aa=0; aa<nb_antennas_rx; aa++) {
......@@ -389,14 +393,14 @@ void do_DL_sig(channel_desc_t *RU2UE[NUMBER_OF_RU_MAX][NUMBER_OF_UE_MAX][MAX_NUM
double *r_re_p[2] = {r_re_DL[ru_id][0],r_re_DL[ru_id][1]};
double *r_im_p[2] = {r_im_DL[ru_id][0],r_im_DL[ru_id][1]};
double *r_re_p[2] = {r_re_DL[UE_id][0],r_re_DL[UE_id][1]};
double *r_im_p[2] = {r_im_DL[UE_id][0],r_im_DL[UE_id][1]};
#ifdef DEBUG_SIM
rx_pwr = signal_energy_fp(r_re_p,r_im_p,nb_antennas_rx,length<length_meas?length:length_meas,0)/(12.0*frame_parms->N_RB_DL);
LOG_D(OCM,"[SIM][DL] UE %d : ADC in %f dBm/RE for subframe %d\n",UE_id,10*log10(rx_pwr),subframe);
#endif
rxdata = PHY_vars_UE_g[UE_id][CC_id]->common_vars.rxdata;
sf_offset = (subframe*frame_parms->samples_per_tti)+offset;
......
......@@ -737,19 +737,16 @@ l2l1_task (void *args_p)
CC_id=0;
int all_done=0;
while (all_done==0) {
pthread_mutex_lock(&subframe_mutex);
int subframe_ru_mask_local = subframe_ru_mask;
int subframe_UE_mask_local = subframe_UE_mask;
int subframe_ru_mask_local = (subframe_select(&RC.ru[0]->frame_parms,(sf+4)%10)!=SF_UL) ? subframe_ru_mask : ((1<<NB_RU)-1);
int subframe_UE_mask_local = (RC.ru[0]->frame_parms.frame_type == FDD || subframe_select(&RC.ru[0]->frame_parms,(sf+4)%10)!=SF_DL) ? subframe_UE_mask : ((1<<NB_UE_INST)-1);
pthread_mutex_unlock(&subframe_mutex);
LOG_D(EMU,"Frame %d, Subframe %d, NB_RU %d, NB_UE %d: Checking masks %x,%x\n",frame,sf,NB_RU,NB_UE_INST,subframe_ru_mask_local,subframe_UE_mask_local);
if ((subframe_ru_mask_local == ((1<<NB_RU)-1)) &&
(subframe_UE_mask_local == ((1<<NB_UE_INST)-1)))
all_done=1;
else
usleep(1500);
(subframe_UE_mask_local == ((1<<NB_UE_INST)-1))) all_done=1;
else usleep(1500);
}
......@@ -816,18 +813,16 @@ l2l1_task (void *args_p)
fwrite (stats_buffer, 1, len, eNB_stats[eNB_inst]);
fflush(eNB_stats[eNB_inst]);
}
*/
#ifdef OPENAIR2
/*
if (eNB_l2_stats) {
len = dump_eNB_l2_stats (stats_buffer, 0);
rewind (eNB_l2_stats);
fwrite (stats_buffer, 1, len, eNB_l2_stats);
fflush(eNB_l2_stats);
}
*/
#endif
*/
#endif
}
}// eNB_inst loop
......@@ -1070,6 +1065,7 @@ void set_UE_defaults(int nb_ue) {
PHY_vars_UE_g[UE_id][CC_id]->pdcch_vars[i][0]->agregationLevel = 0xFF;
}
PHY_vars_UE_g[UE_id][CC_id]->current_dlsch_cqi[0] = 10;
PHY_vars_UE_g[UE_id][CC_id]->tx_power_max_dBm = 23;
}
}
}
......
......@@ -1087,20 +1087,21 @@ int ru_trx_read(openair0_device *device, openair0_timestamp *ptimestamp, void **
subframe = (last_ru_rx_timestamp[ru_id][CC_id]/RC.ru[ru_id]->frame_parms.samples_per_tti)%10;
LOG_D(EMU,"RU_trx_read generating UL subframe %d (Ts %llu, current TS %llu)\n",
subframe,(unsigned long long)*ptimestamp,
(unsigned long long)current_ru_rx_timestamp[ru_id][CC_id]);
do_UL_sig(UE2RU,
enb_data,
ue_data,
subframe,
0, // abstraction_flag
&RC.ru[ru_id]->frame_parms,
0, // frame is only used for abstraction
ru_id,
CC_id);
if (subframe_select(&RC.ru[ru_id]->frame_parms,subframe) != SF_DL || RC.ru[ru_id]->frame_parms.frame_type == FDD) {
LOG_D(EMU,"RU_trx_read generating UL subframe %d (Ts %llu, current TS %llu)\n",
subframe,(unsigned long long)*ptimestamp,
(unsigned long long)current_ru_rx_timestamp[ru_id][CC_id]);
do_UL_sig(UE2RU,
enb_data,
ue_data,
subframe,
0, // abstraction_flag
&RC.ru[ru_id]->frame_parms,
0, // frame is only used for abstraction
ru_id,
CC_id);
}
last_ru_rx_timestamp[ru_id][CC_id] += RC.ru[ru_id]->frame_parms.samples_per_tti;
sample_count += RC.ru[ru_id]->frame_parms.samples_per_tti;
}
......@@ -1352,9 +1353,6 @@ void init_devices(void){
PHY_vars_UE_g[UE_id][CC_id]->rfdevice.trx_set_freq_func = UE_trx_set_freq;
PHY_vars_UE_g[UE_id][CC_id]->rfdevice.trx_set_gains_func = UE_trx_set_gains;
last_UE_rx_timestamp[UE_id][CC_id] = 0;
}
}
}
......@@ -1529,11 +1527,11 @@ void update_ocm()
//LOG_D(OMG," extracting position of eNb...\n");
//display_node_list(enb_node_list);
// display_node_list(ue_node_list);
extract_position(enb_node_list, enb_data, RC.nb_RU);
//extract_position(enb_node_list, enb_data, RC.nb_RU);
//extract_position_fixed_enb(enb_data, NB_eNB_INST,frame);
//LOG_D(OMG," extracting position of UE...\n");
// if (oai_emulation.info.omg_model_ue == TRACE)
extract_position(ue_node_list, ue_data, NB_UE_INST);
//extract_position(ue_node_list, ue_data, NB_UE_INST);
/* if (frame % 50 == 0)
LOG_N(OCM,"Path loss for TTI %d : \n", frame);
......
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