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OpenXG-RAN
Commits
454c552d
Commit
454c552d
authored
Jan 10, 2019
by
Hongzhi Wang
Browse files
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Plain Diff
Test passed for multithreading dlsch_decoding
parent
9548ab86
Changes
4
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Showing
4 changed files
with
70 additions
and
28 deletions
+70
-28
openair1/PHY/INIT/nr_init_ue.c
openair1/PHY/INIT/nr_init_ue.c
+1
-3
openair1/PHY/NR_TRANSPORT/nr_transport_common_proto.h
openair1/PHY/NR_TRANSPORT/nr_transport_common_proto.h
+2
-1
openair1/PHY/NR_UE_TRANSPORT/nr_dlsch_decoding.c
openair1/PHY/NR_UE_TRANSPORT/nr_dlsch_decoding.c
+65
-22
openair1/PHY/NR_UE_TRANSPORT/nr_transport_ue.h
openair1/PHY/NR_UE_TRANSPORT/nr_transport_ue.h
+2
-2
No files found.
openair1/PHY/INIT/nr_init_ue.c
View file @
454c552d
...
@@ -942,8 +942,6 @@ void init_nr_ue_transport(PHY_VARS_NR_UE *ue,int abstraction_flag) {
...
@@ -942,8 +942,6 @@ void init_nr_ue_transport(PHY_VARS_NR_UE *ue,int abstraction_flag) {
void
phy_init_nr_top
(
PHY_VARS_NR_UE
*
ue
)
void
phy_init_nr_top
(
PHY_VARS_NR_UE
*
ue
)
{
{
NR_DL_FRAME_PARMS
*
frame_parms
=
&
ue
->
frame_parms
;
NR_DL_FRAME_PARMS
*
frame_parms
=
&
ue
->
frame_parms
;
NR_UE_DLSCH_t
*
dlsch0
=
ue
->
dlsch
[
0
][
0
][
0
];
dlsch0
=
(
NR_UE_DLSCH_t
*
)
malloc16
(
sizeof
(
NR_UE_DLSCH_t
));
crcTableInit
();
crcTableInit
();
...
...
openair1/PHY/NR_TRANSPORT/nr_transport_common_proto.h
View file @
454c552d
/*
/*
* Licensed to the OpenAirInterface (OAI) Software Alliance under one or more
* Licensed to the OpenAirInterface (OAI) Software Alliance under one or more
* contributor license agreements. See the NOTICE file distributed with
* contributor license agreements. See the NOTICE file distributed with
...
@@ -33,7 +34,7 @@
...
@@ -33,7 +34,7 @@
#ifndef __NR_TRANSPORT_COMMON_PROTO__H__
#ifndef __NR_TRANSPORT_COMMON_PROTO__H__
#define __NR_TRANSPORT_COMMON_PROTO__H__
#define __NR_TRANSPORT_COMMON_PROTO__H__
#define MAX_NUM_NR_DLSCH_SEGMENTS
32
#define MAX_NUM_NR_DLSCH_SEGMENTS
16
#define MAX_NUM_NR_ULSCH_SEGMENTS MAX_NUM_NR_DLSCH_SEGMENTS
#define MAX_NUM_NR_ULSCH_SEGMENTS MAX_NUM_NR_DLSCH_SEGMENTS
#define MAX_NR_DLSCH_PAYLOAD_BYTES (MAX_NUM_NR_DLSCH_SEGMENTS*1056)
#define MAX_NR_DLSCH_PAYLOAD_BYTES (MAX_NUM_NR_DLSCH_SEGMENTS*1056)
...
...
openair1/PHY/NR_UE_TRANSPORT/nr_dlsch_decoding.c
View file @
454c552d
...
@@ -45,8 +45,6 @@
...
@@ -45,8 +45,6 @@
#define OAI_LDPC_MAX_NUM_LLR 27000//26112 // NR_LDPC_NCOL_BG1*NR_LDPC_ZMAX
#define OAI_LDPC_MAX_NUM_LLR 27000//26112 // NR_LDPC_NCOL_BG1*NR_LDPC_ZMAX
static
int8_t
llrProcBuf
[
OAI_LDPC_MAX_NUM_LLR
]
__attribute__
((
aligned
(
32
)));
static
uint64_t
nb_total_decod
=
0
;
static
uint64_t
nb_total_decod
=
0
;
static
uint64_t
nb_error_decod
=
0
;
static
uint64_t
nb_error_decod
=
0
;
...
@@ -76,13 +74,18 @@ void free_nr_ue_dlsch(NR_UE_DLSCH_t *dlsch)
...
@@ -76,13 +74,18 @@ void free_nr_ue_dlsch(NR_UE_DLSCH_t *dlsch)
dlsch
->
harq_processes
[
i
]
->
d
[
r
]
=
NULL
;
dlsch
->
harq_processes
[
i
]
->
d
[
r
]
=
NULL
;
}
}
for
(
r
=
0
;
r
<
(
MAX_NUM_NR_DLSCH_SEGMENTS
);
r
++
)
{
if
(
dlsch
->
harq_processes
[
i
]
->
p_nrLDPC_procBuf
[
r
]){
nrLDPC_free_mem
(
dlsch
->
harq_processes
[
i
]
->
p_nrLDPC_procBuf
[
r
]);
dlsch
->
harq_processes
[
i
]
->
p_nrLDPC_procBuf
[
r
]
=
NULL
;
}
}
free16
(
dlsch
->
harq_processes
[
i
],
sizeof
(
NR_DL_UE_HARQ_t
));
free16
(
dlsch
->
harq_processes
[
i
],
sizeof
(
NR_DL_UE_HARQ_t
));
dlsch
->
harq_processes
[
i
]
=
NULL
;
dlsch
->
harq_processes
[
i
]
=
NULL
;
}
}
}
}
nrLDPC_free_mem
(
dlsch
->
p_nrLDPC_procBuf
);
free16
(
dlsch
,
sizeof
(
NR_UE_DLSCH_t
));
free16
(
dlsch
,
sizeof
(
NR_UE_DLSCH_t
));
dlsch
=
NULL
;
dlsch
=
NULL
;
}
}
...
@@ -122,7 +125,6 @@ NR_UE_DLSCH_t *new_nr_ue_dlsch(uint8_t Kmimo,uint8_t Mdlharq,uint32_t Nsoft,uint
...
@@ -122,7 +125,6 @@ NR_UE_DLSCH_t *new_nr_ue_dlsch(uint8_t Kmimo,uint8_t Mdlharq,uint32_t Nsoft,uint
dlsch
->
Mdlharq
=
Mdlharq
;
dlsch
->
Mdlharq
=
Mdlharq
;
dlsch
->
Nsoft
=
Nsoft
;
dlsch
->
Nsoft
=
Nsoft
;
dlsch
->
max_ldpc_iterations
=
max_ldpc_iterations
;
dlsch
->
max_ldpc_iterations
=
max_ldpc_iterations
;
dlsch
->
p_nrLDPC_procBuf
=
nrLDPC_init_mem
();
for
(
i
=
0
;
i
<
Mdlharq
;
i
++
)
{
for
(
i
=
0
;
i
<
Mdlharq
;
i
++
)
{
// printf("new_ue_dlsch: Harq process %d\n",i);
// printf("new_ue_dlsch: Harq process %d\n",i);
...
@@ -139,7 +141,8 @@ NR_UE_DLSCH_t *new_nr_ue_dlsch(uint8_t Kmimo,uint8_t Mdlharq,uint32_t Nsoft,uint
...
@@ -139,7 +141,8 @@ NR_UE_DLSCH_t *new_nr_ue_dlsch(uint8_t Kmimo,uint8_t Mdlharq,uint32_t Nsoft,uint
exit_flag
=
3
;
exit_flag
=
3
;
if
(
abstraction_flag
==
0
)
{
if
(
abstraction_flag
==
0
)
{
for
(
r
=
0
;
r
<
MAX_NUM_DLSCH_SEGMENTS
/
bw_scaling
;
r
++
)
{
for
(
r
=
0
;
r
<
MAX_NUM_NR_DLSCH_SEGMENTS
/
bw_scaling
;
r
++
)
{
dlsch
->
harq_processes
[
i
]
->
p_nrLDPC_procBuf
[
r
]
=
nrLDPC_init_mem
();
dlsch
->
harq_processes
[
i
]
->
c
[
r
]
=
(
uint8_t
*
)
malloc16
(
1056
);
dlsch
->
harq_processes
[
i
]
->
c
[
r
]
=
(
uint8_t
*
)
malloc16
(
1056
);
if
(
dlsch
->
harq_processes
[
i
]
->
c
[
r
])
if
(
dlsch
->
harq_processes
[
i
]
->
c
[
r
])
...
@@ -218,11 +221,12 @@ uint32_t nr_dlsch_decoding(PHY_VARS_NR_UE *phy_vars_ue,
...
@@ -218,11 +221,12 @@ uint32_t nr_dlsch_decoding(PHY_VARS_NR_UE *phy_vars_ue,
//short dummy_w[MAX_NUM_DLSCH_SEGMENTS][3*(8448+64)];
//short dummy_w[MAX_NUM_DLSCH_SEGMENTS][3*(8448+64)];
uint32_t
r
,
r_offset
=
0
,
Kr
=
8424
,
Kr_bytes
,
K_bytes_F
,
err_flag
=
0
;
uint32_t
r
,
r_offset
=
0
,
Kr
=
8424
,
Kr_bytes
,
K_bytes_F
,
err_flag
=
0
;
uint8_t
crc_type
;
uint8_t
crc_type
;
int8_t
llrProcBuf
[
OAI_LDPC_MAX_NUM_LLR
]
__attribute__
((
aligned
(
32
)));
t_nrLDPC_dec_params
decParams
;
t_nrLDPC_dec_params
decParams
;
t_nrLDPC_dec_params
*
p_decParams
=
&
decParams
;
t_nrLDPC_dec_params
*
p_decParams
=
&
decParams
;
t_nrLDPC_time_stats
procTime
;
t_nrLDPC_time_stats
procTime
;
t_nrLDPC_time_stats
*
p_procTime
=&
procTime
;
t_nrLDPC_time_stats
*
p_procTime
=&
procTime
;
t_nrLDPC_procBuf
*
p_nrLDPC_procBuf
=
dlsch
->
p_nrLDPC_procBuf
;
t_nrLDPC_procBuf
*
*
p_nrLDPC_procBuf
=
harq_process
->
p_nrLDPC_procBuf
;
int16_t
z
[
68
*
384
];
int16_t
z
[
68
*
384
];
int8_t
l
[
68
*
384
];
int8_t
l
[
68
*
384
];
...
@@ -511,7 +515,7 @@ uint32_t nr_dlsch_decoding(PHY_VARS_NR_UE *phy_vars_ue,
...
@@ -511,7 +515,7 @@ uint32_t nr_dlsch_decoding(PHY_VARS_NR_UE *phy_vars_ue,
no_iteration_ldpc
=
nrLDPC_decoder
(
p_decParams
,
no_iteration_ldpc
=
nrLDPC_decoder
(
p_decParams
,
(
int8_t
*
)
&
pl
[
0
],
(
int8_t
*
)
&
pl
[
0
],
llrProcBuf
,
llrProcBuf
,
p_nrLDPC_procBuf
,
p_nrLDPC_procBuf
[
r
]
,
p_procTime
);
p_procTime
);
/*
/*
...
@@ -698,7 +702,9 @@ uint32_t nr_dlsch_decoding_mthread(PHY_VARS_NR_UE *phy_vars_ue,
...
@@ -698,7 +702,9 @@ uint32_t nr_dlsch_decoding_mthread(PHY_VARS_NR_UE *phy_vars_ue,
t_nrLDPC_dec_params
*
p_decParams
=
&
decParams
;
t_nrLDPC_dec_params
*
p_decParams
=
&
decParams
;
t_nrLDPC_time_stats
procTime
;
t_nrLDPC_time_stats
procTime
;
t_nrLDPC_time_stats
*
p_procTime
=&
procTime
;
t_nrLDPC_time_stats
*
p_procTime
=&
procTime
;
t_nrLDPC_procBuf
*
p_nrLDPC_procBuf
=
dlsch
->
p_nrLDPC_procBuf
;
int8_t
llrProcBuf
[
OAI_LDPC_MAX_NUM_LLR
]
__attribute__
((
aligned
(
32
)));
t_nrLDPC_procBuf
*
p_nrLDPC_procBuf
=
harq_process
->
p_nrLDPC_procBuf
[
0
];
int16_t
z
[
68
*
384
];
int16_t
z
[
68
*
384
];
int8_t
l
[
68
*
384
];
int8_t
l
[
68
*
384
];
//__m128i l;
//__m128i l;
...
@@ -794,7 +800,7 @@ uint32_t nr_dlsch_decoding_mthread(PHY_VARS_NR_UE *phy_vars_ue,
...
@@ -794,7 +800,7 @@ uint32_t nr_dlsch_decoding_mthread(PHY_VARS_NR_UE *phy_vars_ue,
kb
=
harq_process
->
K
/
harq_process
->
Z
;
kb
=
harq_process
->
K
/
harq_process
->
Z
;
if
(
kb
==
22
){
if
(
kb
==
22
){
p_decParams
->
BG
=
1
;
p_decParams
->
BG
=
1
;
p_decParams
->
R
=
89
;
p_decParams
->
R
=
13
;
kc
=
68
;
kc
=
68
;
}
}
else
{
else
{
...
@@ -833,7 +839,7 @@ uint32_t nr_dlsch_decoding_mthread(PHY_VARS_NR_UE *phy_vars_ue,
...
@@ -833,7 +839,7 @@ uint32_t nr_dlsch_decoding_mthread(PHY_VARS_NR_UE *phy_vars_ue,
return
((
1
+
dlsch
->
max_ldpc_iterations
));
return
((
1
+
dlsch
->
max_ldpc_iterations
));
}
}
#ifdef DEBUG_DLSCH_DECODING
#ifdef DEBUG_DLSCH_DECODING
printf
(
"Segmentation: C %d,
Cminus %d, Kminus %d, Kplus %d
\n
"
,
harq_process
->
C
,
harq_process
->
Cminus
,
harq_process
->
Kminus
,
harq_process
->
Kplus
);
printf
(
"Segmentation: C %d,
K %d
\n
"
,
harq_process
->
C
,
harq_process
->
K
);
#endif
#endif
opp_enabled
=
1
;
opp_enabled
=
1
;
...
@@ -963,7 +969,9 @@ if (harq_process->C>1) { // wakeup worker if more than 1 segment
...
@@ -963,7 +969,9 @@ if (harq_process->C>1) { // wakeup worker if more than 1 segment
Cby2
=
1
;
Cby2
=
1
;
}
}
for
(
r
=
0
;
r
<
Cby2
;
r
++
)
{
//for (r=0; r<Cby2; r++) {
r
=
0
;
if
(
r
==
0
)
r_offset
=
0
;
Kr
=
harq_process
->
K
;
Kr
=
harq_process
->
K
;
Kr_bytes
=
Kr
>>
3
;
Kr_bytes
=
Kr
>>
3
;
...
@@ -1015,9 +1023,14 @@ if (harq_process->C>1) { // wakeup worker if more than 1 segment
...
@@ -1015,9 +1023,14 @@ if (harq_process->C>1) { // wakeup worker if more than 1 segment
stop_meas
(
dlsch_rate_unmatching_stats
);
stop_meas
(
dlsch_rate_unmatching_stats
);
#endif
#endif
}
}
r_offset
+=
E
;
//
r_offset += E;
//printf("main thread r_offset %d\n",r_offset);
//printf("main thread r_offset %d\n",r_offset);
#ifdef DEBUG_DLSCH_DECODING
for
(
int
i
=
0
;
i
<
16
;
i
++
)
printf
(
"rx output ratematching w[%d]= %d r_offset %d
\n
"
,
i
,
harq_process
->
w
[
r
][
i
],
r_offset
);
#endif
/*
/*
printf("Subblock deinterleaving, d %p w %p\n",
printf("Subblock deinterleaving, d %p w %p\n",
harq_process->d[r],
harq_process->d[r],
...
@@ -1030,6 +1043,11 @@ if (harq_process->C>1) { // wakeup worker if more than 1 segment
...
@@ -1030,6 +1043,11 @@ if (harq_process->C>1) { // wakeup worker if more than 1 segment
harq_process
->
Qm
,
harq_process
->
Qm
,
harq_process
->
d
[
r
],
harq_process
->
d
[
r
],
harq_process
->
w
[
r
]);
harq_process
->
w
[
r
]);
#ifdef DEBUG_DLSCH_DECODING
for
(
int
i
=
0
;
i
<
16
;
i
++
)
printf
(
"rx output interleaving d[%d]= %d r_offset %d
\n
"
,
i
,
harq_process
->
d
[
r
][
i
],
r_offset
);
#endif
#if UE_TIMING_TRACE
#if UE_TIMING_TRACE
stop_meas
(
dlsch_deinterleaving_stats
);
stop_meas
(
dlsch_deinterleaving_stats
);
#endif
#endif
...
@@ -1073,6 +1091,10 @@ if (harq_process->C>1) { // wakeup worker if more than 1 segment
...
@@ -1073,6 +1091,10 @@ if (harq_process->C>1) { // wakeup worker if more than 1 segment
#endif
#endif
LOG_D
(
PHY
,
"mthread AbsSubframe %d.%d Start turbo segment %d/%d
\n
"
,
frame
%
1024
,
nr_tti_rx
,
r
,
harq_process
->
C
-
1
);
LOG_D
(
PHY
,
"mthread AbsSubframe %d.%d Start turbo segment %d/%d
\n
"
,
frame
%
1024
,
nr_tti_rx
,
r
,
harq_process
->
C
-
1
);
for
(
int
cnt
=
0
;
cnt
<
(
kc
-
2
)
*
p_decParams
->
Z
;
cnt
++
){
inv_d
[
cnt
]
=
(
1
)
*
harq_process
->
d
[
r
][
cnt
];
}
memset
(
pv
,
0
,
2
*
p_decParams
->
Z
*
sizeof
(
int16_t
));
memset
(
pv
,
0
,
2
*
p_decParams
->
Z
*
sizeof
(
int16_t
));
//memset(pl,0,2*p_decParams->Z*sizeof(int8_t));
//memset(pl,0,2*p_decParams->Z*sizeof(int8_t));
memset
((
pv
+
K_bytes_F
),
127
,
harq_process
->
F
*
sizeof
(
int16_t
));
memset
((
pv
+
K_bytes_F
),
127
,
harq_process
->
F
*
sizeof
(
int16_t
));
...
@@ -1109,6 +1131,16 @@ if (harq_process->C>1) { // wakeup worker if more than 1 segment
...
@@ -1109,6 +1131,16 @@ if (harq_process->C>1) { // wakeup worker if more than 1 segment
else
{
else
{
ret
=
2
;
ret
=
2
;
}
}
if
(
check_crc
(
llrProcBuf
,
harq_process
->
B
,
harq_process
->
F
,
crc_type
))
{
printf
(
"CRC OK
\n
"
);
ret
=
2
;
}
else
{
printf
(
"CRC NOK
\n
"
);
ret
=
1
+
dlsch
->
max_ldpc_iterations
;
}
//if (!nb_total_decod%10000){
//if (!nb_total_decod%10000){
printf
(
"Error number of iteration LPDC %d %ld/%ld
\n
"
,
no_iteration_ldpc
,
nb_error_decod
,
nb_total_decod
);
fflush
(
stdout
);
printf
(
"Error number of iteration LPDC %d %ld/%ld
\n
"
,
no_iteration_ldpc
,
nb_error_decod
,
nb_total_decod
);
fflush
(
stdout
);
//}
//}
...
@@ -1139,7 +1171,10 @@ if (harq_process->C>1) { // wakeup worker if more than 1 segment
...
@@ -1139,7 +1171,10 @@ if (harq_process->C>1) { // wakeup worker if more than 1 segment
//printf("output channel decoder %d %d %d %d %d \n", harq_process->c[r][0], harq_process->c[r][1], harq_process->c[r][2],harq_process->c[r][3], harq_process->c[r][4]);
//printf("output channel decoder %d %d %d %d %d \n", harq_process->c[r][0], harq_process->c[r][1], harq_process->c[r][2],harq_process->c[r][3], harq_process->c[r][4]);
//printf("output decoder %d %d %d %d %d \n", harq_process->c[r][0], harq_process->c[r][1], harq_process->c[r][2],harq_process->c[r][3], harq_process->c[r][4]);
//printf("output decoder %d %d %d %d %d \n", harq_process->c[r][0], harq_process->c[r][1], harq_process->c[r][2],harq_process->c[r][3], harq_process->c[r][4]);
#ifdef DEBUG_DLSCH_DECODING
for
(
int
k
=
0
;
k
<
32
;
k
++
)
printf
(
"output decoder [%d] = 0x%02x
\n
"
,
k
,
harq_process
->
c
[
r
][
k
]);
#endif
#if UE_TIMING_TRACE
#if UE_TIMING_TRACE
stop_meas
(
dlsch_turbo_decoding_stats
);
stop_meas
(
dlsch_turbo_decoding_stats
);
...
@@ -1151,7 +1186,7 @@ if (harq_process->C>1) { // wakeup worker if more than 1 segment
...
@@ -1151,7 +1186,7 @@ if (harq_process->C>1) { // wakeup worker if more than 1 segment
LOG_D
(
PHY
,
"AbsSubframe %d.%d CRC failed, segment %d/%d
\n
"
,
frame
%
1024
,
nr_tti_rx
,
r
,
harq_process
->
C
-
1
);
LOG_D
(
PHY
,
"AbsSubframe %d.%d CRC failed, segment %d/%d
\n
"
,
frame
%
1024
,
nr_tti_rx
,
r
,
harq_process
->
C
-
1
);
err_flag
=
1
;
err_flag
=
1
;
}
}
}
//} //loop r
int32_t
frame_rx_prev
=
frame
;
int32_t
frame_rx_prev
=
frame
;
int32_t
tti_rx_prev
=
nr_tti_rx
-
1
;
int32_t
tti_rx_prev
=
nr_tti_rx
-
1
;
...
@@ -1282,7 +1317,8 @@ void *nr_dlsch_decoding_2thread0(void *arg)
...
@@ -1282,7 +1317,8 @@ void *nr_dlsch_decoding_2thread0(void *arg)
t_nrLDPC_dec_params
*
p_decParams
=
&
decParams
;
t_nrLDPC_dec_params
*
p_decParams
=
&
decParams
;
t_nrLDPC_time_stats
procTime
;
t_nrLDPC_time_stats
procTime
;
t_nrLDPC_time_stats
*
p_procTime
=&
procTime
;
t_nrLDPC_time_stats
*
p_procTime
=&
procTime
;
t_nrLDPC_procBuf
*
p_nrLDPC_procBuf
=
dlsch
->
p_nrLDPC_procBuf
;
int8_t
llrProcBuf
[
OAI_LDPC_MAX_NUM_LLR
]
__attribute__
((
aligned
(
32
)));
t_nrLDPC_procBuf
*
p_nrLDPC_procBuf
;
int16_t
z
[
68
*
384
];
int16_t
z
[
68
*
384
];
int8_t
l
[
68
*
384
];
int8_t
l
[
68
*
384
];
//__m128i l;
//__m128i l;
...
@@ -1375,6 +1411,7 @@ void *nr_dlsch_decoding_2thread0(void *arg)
...
@@ -1375,6 +1411,7 @@ void *nr_dlsch_decoding_2thread0(void *arg)
NR_DL_UE_HARQ_t
*
harq_process
=
dlsch
->
harq_processes
[
harq_pid
];
NR_DL_UE_HARQ_t
*
harq_process
=
dlsch
->
harq_processes
[
harq_pid
];
short
*
dlsch_llr
=
phy_vars_ue
->
pdsch_vars
[
phy_vars_ue
->
current_thread_id
[
subframe
]][
eNB_id
]
->
llr
[
0
];
short
*
dlsch_llr
=
phy_vars_ue
->
pdsch_vars
[
phy_vars_ue
->
current_thread_id
[
subframe
]][
eNB_id
]
->
llr
[
0
];
//printf("2thread0 llr flag %d tdp flag %d\n",llr8_flag1, tdp->llr8_flag);
//printf("2thread0 llr flag %d tdp flag %d\n",llr8_flag1, tdp->llr8_flag);
p_nrLDPC_procBuf
=
harq_process
->
p_nrLDPC_procBuf
[
1
];
/*
/*
if (nb_rb > frame_parms->N_RB_DL) {
if (nb_rb > frame_parms->N_RB_DL) {
...
@@ -1420,7 +1457,7 @@ void *nr_dlsch_decoding_2thread0(void *arg)
...
@@ -1420,7 +1457,7 @@ void *nr_dlsch_decoding_2thread0(void *arg)
kb
=
harq_process
->
K
/
harq_process
->
Z
;
kb
=
harq_process
->
K
/
harq_process
->
Z
;
if
(
kb
==
22
){
if
(
kb
==
22
){
p_decParams
->
BG
=
1
;
p_decParams
->
BG
=
1
;
p_decParams
->
R
=
89
;
p_decParams
->
R
=
13
;
kc
=
68
;
kc
=
68
;
}
}
else
{
else
{
...
@@ -1533,7 +1570,7 @@ void *nr_dlsch_decoding_2thread0(void *arg)
...
@@ -1533,7 +1570,7 @@ void *nr_dlsch_decoding_2thread0(void *arg)
stop_meas
(
dlsch_rate_unmatching_stats
);
stop_meas
(
dlsch_rate_unmatching_stats
);
#endif
#endif
}
}
r_offset
+=
E
;
//
r_offset += E;
//for (int i =0; i<16; i++)
//for (int i =0; i<16; i++)
// printf("rx output ratematching w[%d]= %d r_offset %d\n", i,harq_process->w[r][i], r_offset);
// printf("rx output ratematching w[%d]= %d r_offset %d\n", i,harq_process->w[r][i], r_offset);
...
@@ -1644,6 +1681,10 @@ void *nr_dlsch_decoding_2thread0(void *arg)
...
@@ -1644,6 +1681,10 @@ void *nr_dlsch_decoding_2thread0(void *arg)
}
}
printf(" \n");*/
printf(" \n");*/
#ifdef DEBUG_DLSCH_DECODING
for
(
int
k
=
0
;
k
<
2
;
k
++
)
printf
(
"segment 1 output decoder [%d] = 0x%02x
\n
"
,
k
,
harq_process
->
c
[
r
][
k
]);
#endif
#if UE_TIMING_TRACE
#if UE_TIMING_TRACE
stop_meas
(
dlsch_turbo_decoding_stats
);
stop_meas
(
dlsch_turbo_decoding_stats
);
...
@@ -1789,7 +1830,8 @@ void *nr_dlsch_decoding_2thread1(void *arg)
...
@@ -1789,7 +1830,8 @@ void *nr_dlsch_decoding_2thread1(void *arg)
t_nrLDPC_dec_params
*
p_decParams
=
&
decParams
;
t_nrLDPC_dec_params
*
p_decParams
=
&
decParams
;
t_nrLDPC_time_stats
procTime
;
t_nrLDPC_time_stats
procTime
;
t_nrLDPC_time_stats
*
p_procTime
=&
procTime
;
t_nrLDPC_time_stats
*
p_procTime
=&
procTime
;
t_nrLDPC_procBuf
*
p_nrLDPC_procBuf
=
dlsch
->
p_nrLDPC_procBuf
;
t_nrLDPC_procBuf
*
p_nrLDPC_procBuf
;
int8_t
llrProcBuf
[
OAI_LDPC_MAX_NUM_LLR
]
__attribute__
((
aligned
(
32
)));
int16_t
z
[
68
*
384
];
int16_t
z
[
68
*
384
];
int8_t
l
[
68
*
384
];
int8_t
l
[
68
*
384
];
//__m128i l;
//__m128i l;
...
@@ -1883,6 +1925,7 @@ void *nr_dlsch_decoding_2thread1(void *arg)
...
@@ -1883,6 +1925,7 @@ void *nr_dlsch_decoding_2thread1(void *arg)
short
*
dlsch_llr
=
phy_vars_ue
->
pdsch_vars
[
phy_vars_ue
->
current_thread_id
[
subframe
]][
eNB_id
]
->
llr
[
0
];
short
*
dlsch_llr
=
phy_vars_ue
->
pdsch_vars
[
phy_vars_ue
->
current_thread_id
[
subframe
]][
eNB_id
]
->
llr
[
0
];
//printf("2thread0 llr flag %d tdp flag %d\n",llr8_flag1, tdp->llr8_flag);
//printf("2thread0 llr flag %d tdp flag %d\n",llr8_flag1, tdp->llr8_flag);
//printf("2thread1 nr_tti_tx %d subframe %d SF thread id %d r_offset %d\n", proc->nr_tti_rx, subframe, phy_vars_ue->current_thread_id[subframe], r_offset);
//printf("2thread1 nr_tti_tx %d subframe %d SF thread id %d r_offset %d\n", proc->nr_tti_rx, subframe, phy_vars_ue->current_thread_id[subframe], r_offset);
p_nrLDPC_procBuf
=
harq_process
->
p_nrLDPC_procBuf
[
2
];
/*
/*
if (nb_rb > frame_parms->N_RB_DL) {
if (nb_rb > frame_parms->N_RB_DL) {
...
@@ -2044,7 +2087,7 @@ void *nr_dlsch_decoding_2thread1(void *arg)
...
@@ -2044,7 +2087,7 @@ void *nr_dlsch_decoding_2thread1(void *arg)
stop_meas
(
dlsch_rate_unmatching_stats
);
stop_meas
(
dlsch_rate_unmatching_stats
);
#endif
#endif
}
}
r_offset
+=
E
;
//
r_offset += E;
/*
/*
printf("Subblock deinterleaving, d %p w %p\n",
printf("Subblock deinterleaving, d %p w %p\n",
...
...
openair1/PHY/NR_UE_TRANSPORT/nr_transport_ue.h
View file @
454c552d
...
@@ -267,6 +267,8 @@ typedef struct {
...
@@ -267,6 +267,8 @@ typedef struct {
double
w_abs
[
MAX_NUM_NR_DLSCH_SEGMENTS
][
3
*
8448
];
double
w_abs
[
MAX_NUM_NR_DLSCH_SEGMENTS
][
3
*
8448
];
/// soft bits for each received segment ("d"-sequence)(for definition see 36-212 V8.6 2009-03, p.15)
/// soft bits for each received segment ("d"-sequence)(for definition see 36-212 V8.6 2009-03, p.15)
int16_t
*
d
[
MAX_NUM_NR_DLSCH_SEGMENTS
];
int16_t
*
d
[
MAX_NUM_NR_DLSCH_SEGMENTS
];
/// LDPC processing buffers
t_nrLDPC_procBuf
*
p_nrLDPC_procBuf
[
MAX_NUM_DLSCH_SEGMENTS
];
/// Number of code segments
/// Number of code segments
uint32_t
C
;
uint32_t
C
;
/// Number of bits in code segments
/// Number of bits in code segments
...
@@ -352,8 +354,6 @@ typedef struct {
...
@@ -352,8 +354,6 @@ typedef struct {
uint32_t
Nsoft
;
uint32_t
Nsoft
;
/// Maximum number of LDPC iterations
/// Maximum number of LDPC iterations
uint8_t
max_ldpc_iterations
;
uint8_t
max_ldpc_iterations
;
/// LDPC processing buffers
t_nrLDPC_procBuf
*
p_nrLDPC_procBuf
;
/// number of iterations used in last turbo decoding
/// number of iterations used in last turbo decoding
uint8_t
last_iteration_cnt
;
uint8_t
last_iteration_cnt
;
}
NR_UE_DLSCH_t
;
}
NR_UE_DLSCH_t
;
...
...
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