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OpenXG-RAN
Commits
25e9141e
Commit
25e9141e
authored
Nov 15, 2018
by
hongzhi wang
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Plain Diff
missing changes for nr dlschsim
parent
3b102319
Changes
2
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2 changed files
with
83 additions
and
62 deletions
+83
-62
cmake_targets/build_oai
cmake_targets/build_oai
+1
-1
openair1/SIMULATION/NR_PHY/dlschsim.c
openair1/SIMULATION/NR_PHY/dlschsim.c
+82
-61
No files found.
cmake_targets/build_oai
View file @
25e9141e
...
...
@@ -692,7 +692,7 @@ function main() {
echo_info
"Compiling unitary tests simulators"
# TODO: fix: dlsim_tm4 pucchsim prachsim pdcchsim pbchsim mbmssim
#simlist="dlsim_tm4 dlsim ulsim pucchsim prachsim pdcchsim pbchsim mbmssim"
simlist
=
"nr_pbchsim nr_dlschsim"
simlist
=
"
dlsim ulsim polartest ldpctest
nr_pbchsim nr_dlschsim"
for
f
in
$simlist
;
do
compilations
\
phy_simulators
$f
\
...
...
openair1/SIMULATION/NR_PHY/dlschsim.c
View file @
25e9141e
...
...
@@ -26,22 +26,31 @@
#include <sys/ioctl.h>
#include <sys/mman.h>
#include "common/config/config_userapi.h"
#include "common/utils/LOG/log.h"
#include "common/ran_context.h"
#include "SIMULATION/TOOLS/sim.h"
#include "SIMULATION/RF/rf.h"
#include "PHY/types.h"
#include "PHY/defs_nr_common.h"
#include "PHY/defs_nr_UE.h"
#include "PHY/defs_gNB.h"
#include "PHY/NR_REFSIG/refsig_defs_ue.h"
#include "PHY/NR_REFSIG/nr_mod_table.h"
#include "PHY/MODULATION/modulation_eNB.h"
#include "PHY/MODULATION/modulation_UE.h"
#include "PHY/INIT/phy_init.h"
#include "PHY/NR_TRANSPORT/nr_transport.h"
#include "PHY/NR_UE_TRANSPORT/nr_transport_proto_ue.h"
#include "PHY/NR_TRANSPORT/nr_dlsch.h"
#include "PHY/INIT/phy_init.h"
#include "SCHED_NR/sched_nr.h"
#include "PHY/MODULATION/modulation_common.h"
#include "common/config/config_load_configmodule.h"
#include "common/utils/LOG/log.h"
#include "UTIL/LISTS/list.h"
#include "common/ran_context.h"
//#include "PHY/MODULATION/modulation_common.h"
//#include "common/config/config_load_configmodule.h"
//#include "UTIL/LISTS/list.h"
//#include "common/ran_context.h"
PHY_VARS_gNB
*
gNB
;
PHY_VARS_NR_UE
*
UE
;
...
...
@@ -66,11 +75,14 @@ int32_t get_uldl_offset(int eutra_bandP) {return(0);}
NR_IF_Module_t
*
NR_IF_Module_init
(
int
Mod_id
){
return
(
NULL
);}
void
exit_fun
(
const
char
*
s
)
{
exit
(
-
1
);
}
//extern void init_eNB_afterRU(void);
void
exit_function
(
const
char
*
file
,
const
char
*
function
,
const
int
line
,
const
char
*
s
)
{
const
char
*
msg
=
s
==
NULL
?
"no comment"
:
s
;
printf
(
"Exiting at: %s:%d %s(), %s
\n
"
,
file
,
line
,
function
,
msg
);
exit
(
-
1
);
}
// needed for some functions
PHY_VARS_NR_UE
*
PHY_vars_UE_g
[
1
][
1
]
=
{
NULL
};
PHY_VARS_NR_UE
*
PHY_vars_UE_g
[
1
][
1
]
=
{
{
NULL
}
};
uint16_t
n_rnti
=
0x1234
;
char
quantize
(
double
D
,
double
x
,
unsigned
char
B
)
...
...
@@ -96,41 +108,31 @@ int main(int argc, char **argv)
char
c
;
int
i
,
j
,
l
,
aa
;
double
sigma2
,
sigma2_dB
=
10
,
SNR
,
SNR_lin
,
snr0
=-
2
.
0
,
snr1
=
2
.
0
;
int
i
;
//
,j,l,aa;
double
SNR
,
SNR_lin
,
snr0
=-
2
.
0
,
snr1
=
2
.
0
;
double
snr_step
=
0
.
1
;
uint8_t
snr1set
=
0
;
int
**
txdata
;
double
**
s_re
,
**
s_im
,
**
r_re
,
**
r_im
;
double
iqim
=
0
.
0
;
unsigned
char
pbch_pdu
[
6
];
// int sync_pos, sync_pos_slot;
// FILE *rx_frame_file;
FILE
*
output_fd
=
NULL
;
uint8_t
write_output_file
=
0
;
//int result;
int
freq_offset
;
// int subframe_offset;
// char fname[40], vname[40];
int
trial
,
n_trials
=
1
,
n_errors
,
n_errors2
,
n_alamouti
;
int
trial
,
n_trials
=
1
,
n_errors
;
uint8_t
transmission_mode
=
1
,
n_tx
=
1
,
n_rx
=
1
;
uint16_t
Nid_cell
=
0
;
channel_desc_t
*
gNB2UE
;
uint32_t
nsymb
,
tx_lev
,
tx_lev1
=
0
,
tx_lev2
=
0
;
uint8_t
extended_prefix_flag
=
0
;
int8_t
interf1
=-
21
,
interf2
=-
21
;
FILE
*
input_fd
=
NULL
,
*
pbch_file_fd
=
NULL
;
char
input_val_str
[
50
],
input_val_str2
[
50
];
uint8_t
frame_mod4
,
num_pdcch_symbols
=
0
;
uint16_t
NB_RB
=
25
;
//uint16_t NB_RB=25;
SCM_t
channel_model
=
AWGN
;
//Rayleigh1_anticorr;
double
pbch_sinr
;
int
pbch_tx_ant
;
uint8_t
N_RB_DL
=
106
,
mu
=
1
;
unsigned
char
frame_type
=
0
;
...
...
@@ -138,9 +140,9 @@ int main(int argc, char **argv)
int
frame
=
0
,
subframe
=
0
;
int
frame_length_complex_samples
;
int
frame_length_complex_samples_no_prefix
;
//
int frame_length_complex_samples_no_prefix;
NR_DL_FRAME_PARMS
*
frame_parms
;
nfapi_nr_config_request_t
*
gNB_config
;
//
nfapi_nr_config_request_t *gNB_config;
uint8_t
Kmimo
;
uint32_t
Nsoft
;
...
...
@@ -148,14 +150,19 @@ int main(int argc, char **argv)
unsigned
char
qbits
=
8
;
int
ret
;
int
run_initial_sync
=
0
;
int
loglvl
=
OAILOG_WARNING
;
float
target_error_rate
=
0
.
01
;
cpuf
=
get_cpu_freq_GHz
();
if
(
load_configmodule
(
argc
,
argv
)
==
0
)
{
exit_fun
(
"[SOFTMODEM] Error, configuration module init failed
\n
"
);
}
logInit
();
//
logInit();
randominit
(
0
);
while
((
c
=
getopt
(
argc
,
argv
,
"f:hA:pf:g:i:j:n:s:S:t:x:y:z:N:F:GR:dP:"
))
!=
-
1
)
{
...
...
@@ -340,6 +347,10 @@ int main(int argc, char **argv)
}
}
logInit
();
set_glog
(
loglvl
);
T_stdout
=
1
;
if
(
snr1set
==
0
)
snr1
=
snr0
+
10
;
...
...
@@ -361,19 +372,19 @@ int main(int argc, char **argv)
RC
.
gNB
[
0
]
=
(
PHY_VARS_gNB
**
)
malloc
(
sizeof
(
PHY_VARS_gNB
*
));
RC
.
gNB
[
0
][
0
]
=
malloc
(
sizeof
(
PHY_VARS_gNB
));
gNB
=
RC
.
gNB
[
0
][
0
];
gNB_config
=
&
gNB
->
gNB_config
;
//
gNB_config = &gNB->gNB_config;
frame_parms
=
&
gNB
->
frame_parms
;
//to be initialized I suppose (maybe not necessary for PBCH)
frame_parms
->
nb_antennas_tx
=
n_tx
;
frame_parms
->
nb_antennas_rx
=
n_rx
;
frame_parms
->
N_RB_DL
=
N_RB_DL
;
crcTableInit
();
nr_phy_config_request_sim
(
gNB
);
nr_phy_config_request_sim
(
gNB
,
N_RB_DL
,
N_RB_DL
,
mu
);
phy_init_nr_gNB
(
gNB
,
0
,
0
);
//init_eNB_afterRU();
frame_length_complex_samples
=
frame_parms
->
samples_per_subframe
;
frame_length_complex_samples_no_prefix
=
frame_parms
->
samples_per_subframe_wCP
;
//
frame_length_complex_samples_no_prefix = frame_parms->samples_per_subframe_wCP;
s_re
=
malloc
(
2
*
sizeof
(
double
*
));
s_im
=
malloc
(
2
*
sizeof
(
double
*
));
...
...
@@ -402,7 +413,7 @@ int main(int argc, char **argv)
load_pbch_desc
(
pbch_file_fd
);
}
for
(
int
k
=
0
;
k
<
2
;
k
++
)
{
/*
for (int k=0; k<2; k++) {
// Create transport channel structures for 2 transport blocks (MIMO)
for (i=0; i<2; i++) {
gNB->dlsch[k][i] = new_gNB_dlsch(Kmimo,8,Nsoft,0,frame_parms,gNB_config);
...
...
@@ -411,12 +422,12 @@ int main(int argc, char **argv)
printf("Can't get eNB dlsch structures\n");
exit(-1);
}
gNB->dlsch[k][i]->Nsoft = 10;
gNB->dlsch[k][i]->rnti = n_rnti+k;
}
}
}
*/
//configure UE
UE
=
malloc
(
sizeof
(
PHY_VARS_NR_UE
));
memcpy
(
&
UE
->
frame_parms
,
frame_parms
,
sizeof
(
NR_DL_FRAME_PARMS
));
...
...
@@ -444,38 +455,47 @@ int main(int argc, char **argv)
UE
->
dlsch_SI
[
0
]
=
new_nr_ue_dlsch
(
1
,
1
,
Nsoft
,
5
,
N_RB_DL
,
0
);
UE
->
dlsch_ra
[
0
]
=
new_nr_ue_dlsch
(
1
,
1
,
Nsoft
,
5
,
N_RB_DL
,
0
);
unsigned
char
harq_pid
=
0
;
//dlsch->harq_ids[subframe];
NR_gNB_DLSCH_t
*
dlsch
=
gNB
->
dlsch
[
0
][
0
];
nfapi_nr_dl_config_dlsch_pdu_rel15_t
rel15
=
dlsch
->
harq_processes
[
harq_pid
]
->
dlsch_pdu
.
dlsch_pdu_rel15
;
// dlsch->harq_processes[0]->b = (unsigned char*)malloc16(800);
// dlsch->harq_processes[i]->pdu = (uint8_t*)malloc16(MAX_NR_DLSCH_PAYLOAD_BYTES/bw_scaling);
time_stats_t
*
rm_stats
;
time_stats_t
*
te_stats
;
time_stats_t
*
i_stats
;
uint8_t
is_crnti
;
uint8_t
llr8_flag
;
unsigned
char
harq_pid
=
0
;
//dlsch->harq_ids[subframe];
unsigned
int
TBS
=
8424
;
unsigned
int
available_bits
;
uint16_t
nb_symb_sch
=
10
;
uint16_t
nb_symb_sch
=
4
;
uint8_t
nb_re_dmrs
=
6
;
uint16_t
length_dmrs
=
1
;
unsigned
char
mod_order
;
uint16_t
nb_rb
=
106
;
uint8_t
Imcs
=
22
;
uint16_t
nb_rb
=
50
;
uint8_t
Imcs
=
9
;
uint8_t
Nl
=
1
;
uint8_t
rvidx
=
0
;
dlsch
->
rnti
=
1
;
dlsch
->
harq_ids
[
subframe
]
=
0
;
dlsch
->
harq_processes
[
0
]
->
nb_rb
=
nb_rb
;
dlsch
->
harq_processes
[
0
]
->
mcs
=
Imcs
;
dlsch
->
harq_processes
[
0
]
->
Nl
=
Nl
;
dlsch
->
harq_processes
[
0
]
->
rvidx
=
rvidx
;
/*dlsch->harq_processes[0]->mcs = Imcs;
dlsch->harq_processes[0]->rvidx = rvidx;*/
printf
(
"dlschsim harqid %d nb_rb %d, mscs %d
\n
"
,
dlsch
->
harq_ids
[
subframe
],
dlsch
->
harq_processes
[
0
]
->
nb_rb
,
dlsch
->
harq_processes
[
0
]
->
mcs
,
dlsch
->
harq_processes
[
0
]
->
Nl
);
//
printf("dlschsim harqid %d nb_rb %d, mscs %d\n",dlsch->harq_ids[subframe],
//
dlsch->harq_processes[0]->nb_rb,dlsch->harq_processes[0]->mcs,dlsch->harq_processes[0]->Nl);
mod_order
=
nr_get_Qm
(
dlsch
->
harq_processes
[
0
]
->
mcs
,
1
);
available_bits
=
nr_get_G
(
dlsch
->
harq_processes
[
0
]
->
nb_rb
,
nb_symb_sch
,
nb_re_dmrs
,
length_dmrs
,
mod_order
,
Nl
);
mod_order
=
nr_get_Qm
(
I
mcs
,
1
);
available_bits
=
nr_get_G
(
nb_rb
,
nb_symb_sch
,
nb_re_dmrs
,
length_dmrs
,
2
,
1
);
TBS
=
nr_compute_tbs
(
Imcs
,
nb_rb
,
nb_symb_sch
,
nb_re_dmrs
,
length_dmrs
,
Nl
);
printf
(
"available bits %d TBS %d mod_order %d
\n
"
,
available_bits
,
TBS
,
mod_order
);
//dlsch->harq_ids[subframe]= 0;
rel15
.
n_prb
=
nb_rb
;
rel15
.
nb_symbols
=
nb_symb_sch
;
rel15
.
modulation_order
=
mod_order
;
rel15
.
nb_layers
=
Nl
;
rel15
.
nb_re_dmrs
=
nb_re_dmrs
;
double
*
modulated_input
=
malloc16
(
sizeof
(
double
)
*
16
*
68
*
384
);
short
*
channel_output_fixed
=
malloc16
(
sizeof
(
short
)
*
16
*
68
*
384
);
...
...
@@ -506,22 +526,18 @@ int main(int argc, char **argv)
estimated_output
=
harq_process
->
b
;
//
for (int i=0; i<TBS/8; i++)
//
printf("test input[%d]=%d \n",i,test_input[i]);
for
(
int
i
=
0
;
i
<
TBS
/
8
;
i
++
)
printf
(
"test input[%d]=%d
\n
"
,
i
,
test_input
[
i
]);
printf
(
"crc32: [0]->0x%08x
\n
"
,
crc24c
(
test_input
,
32
));
//
printf("crc32: [0]->0x%08x\n",crc24c(test_input, 32));
// generate signal
if
(
input_fd
==
NULL
)
{
nr_dlsch_encoding
(
gNB
,
test_input
,
nb_symb_sch
,
nr_dlsch_encoding
(
test_input
,
subframe
,
dlsch
,
frame
,
subframe
,
rm_stats
,
te_stats
,
i_stats
);
frame_parms
);
}
...
...
@@ -585,9 +601,11 @@ int main(int argc, char **argv)
dlsch0_ue
->
harq_processes
[
0
],
frame
,
nb_symb_sch
,
subframe
,
harq_pid
,
is_crnti
,
llr8_flag
);
//count errors
for
(
i
=
0
;
i
<
TBS
;
i
++
)
...
...
@@ -661,9 +679,12 @@ int main(int argc, char **argv)
free
(
r_im
);
free
(
txdata
);
if
(
write_output_file
)
if
(
output_fd
)
fclose
(
output_fd
);
if
(
input_fd
)
fclose
(
input_fd
);
return
(
n_errors
);
}
...
...
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