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ZhouShuya
OpenXG-RAN
Commits
9cbf5819
Commit
9cbf5819
authored
Jul 07, 2016
by
Sandeep Kumar
Browse files
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Plain Diff
fixes from bbu/rrh trial run
parent
f57a8b8c
Changes
2
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Showing
2 changed files
with
40 additions
and
18 deletions
+40
-18
openair1/PHY/LTE_TRANSPORT/if5_tools.c
openair1/PHY/LTE_TRANSPORT/if5_tools.c
+16
-4
openair1/SCHED/phy_procedures_lte_eNb.c
openair1/SCHED/phy_procedures_lte_eNb.c
+24
-14
No files found.
openair1/PHY/LTE_TRANSPORT/if5_tools.c
View file @
9cbf5819
...
@@ -59,9 +59,12 @@ void send_IF5(PHY_VARS_eNB *eNB, openair0_timestamp proc_timestamp, int subframe
...
@@ -59,9 +59,12 @@ void send_IF5(PHY_VARS_eNB *eNB, openair0_timestamp proc_timestamp, int subframe
txp
[
i
]
=
(
void
*
)
&
eNB
->
common_vars
.
txdata
[
0
][
i
][
subframe
*
fp
->
samples_per_tti
];
txp
[
i
]
=
(
void
*
)
&
eNB
->
common_vars
.
txdata
[
0
][
i
][
subframe
*
fp
->
samples_per_tti
];
for
(
packet_id
=
0
;
packet_id
<
spsf
/
spp_eth
;
packet_id
++
)
{
for
(
packet_id
=
0
;
packet_id
<
spsf
/
spp_eth
;
packet_id
++
)
{
for
(
i
=
0
;
i
<
fp
->
nb_antennas_tx
;
i
++
)
txp
[
i
]
+=
packet_id
*
spp_eth
;
eNB
->
ifdevice
.
trx_write_func
(
&
eNB
->
ifdevice
,
eNB
->
ifdevice
.
trx_write_func
(
&
eNB
->
ifdevice
,
(
proc_timestamp
-
eNB
->
ifdevice
.
openair0_cfg
->
tx_sample_advance
+
packet_id
*
spp_eth
),
(
proc_timestamp
-
eNB
->
ifdevice
.
openair0_cfg
->
tx_sample_advance
+
packet_id
*
spp_eth
),
(
txp
+
packet_id
*
spp_eth
)
,
txp
,
spp_eth
,
spp_eth
,
fp
->
nb_antennas_tx
,
fp
->
nb_antennas_tx
,
0
);
0
);
...
@@ -75,9 +78,12 @@ void send_IF5(PHY_VARS_eNB *eNB, openair0_timestamp proc_timestamp, int subframe
...
@@ -75,9 +78,12 @@ void send_IF5(PHY_VARS_eNB *eNB, openair0_timestamp proc_timestamp, int subframe
rxp
[
i
]
=
(
void
*
)
&
eNB
->
common_vars
.
rxdata
[
0
][
i
][
subframe
*
fp
->
samples_per_tti
];
rxp
[
i
]
=
(
void
*
)
&
eNB
->
common_vars
.
rxdata
[
0
][
i
][
subframe
*
fp
->
samples_per_tti
];
for
(
packet_id
=
0
;
packet_id
<
spsf
/
spp_eth
;
packet_id
++
)
{
for
(
packet_id
=
0
;
packet_id
<
spsf
/
spp_eth
;
packet_id
++
)
{
for
(
i
=
0
;
i
<
fp
->
nb_antennas_rx
;
i
++
)
rxp
[
i
]
+=
packet_id
*
spp_eth
;
eNB
->
ifdevice
.
trx_write_func
(
&
eNB
->
ifdevice
,
eNB
->
ifdevice
.
trx_write_func
(
&
eNB
->
ifdevice
,
(
proc_timestamp
+
packet_id
*
spp_eth
),
(
proc_timestamp
+
packet_id
*
spp_eth
),
(
rxp
+
packet_id
*
spp_eth
)
,
rxp
,
spp_eth
,
spp_eth
,
fp
->
nb_antennas_rx
,
fp
->
nb_antennas_rx
,
0
);
0
);
...
@@ -156,9 +162,12 @@ void recv_IF5(PHY_VARS_eNB *eNB, openair0_timestamp *proc_timestamp, int subfram
...
@@ -156,9 +162,12 @@ void recv_IF5(PHY_VARS_eNB *eNB, openair0_timestamp *proc_timestamp, int subfram
txp
[
i
]
=
(
void
*
)
&
eNB
->
common_vars
.
txdata
[
0
][
i
][
subframe
*
fp
->
samples_per_tti
];
txp
[
i
]
=
(
void
*
)
&
eNB
->
common_vars
.
txdata
[
0
][
i
][
subframe
*
fp
->
samples_per_tti
];
for
(
packet_id
=
0
;
packet_id
<
spsf
/
spp_eth
;
packet_id
++
)
{
for
(
packet_id
=
0
;
packet_id
<
spsf
/
spp_eth
;
packet_id
++
)
{
for
(
i
=
0
;
i
<
fp
->
nb_antennas_tx
;
i
++
)
txp
[
i
]
+=
packet_id
*
spp_eth
;
eNB
->
ifdevice
.
trx_read_func
(
&
eNB
->
ifdevice
,
eNB
->
ifdevice
.
trx_read_func
(
&
eNB
->
ifdevice
,
&
timestamp
[
packet_id
],
&
timestamp
[
packet_id
],
(
txp
+
packet_id
*
spp_eth
)
,
txp
,
spp_eth
,
spp_eth
,
fp
->
nb_antennas_tx
);
fp
->
nb_antennas_tx
);
}
}
...
@@ -175,9 +184,12 @@ void recv_IF5(PHY_VARS_eNB *eNB, openair0_timestamp *proc_timestamp, int subfram
...
@@ -175,9 +184,12 @@ void recv_IF5(PHY_VARS_eNB *eNB, openair0_timestamp *proc_timestamp, int subfram
rxp
[
i
]
=
(
void
*
)
&
eNB
->
common_vars
.
rxdata
[
0
][
i
][
subframe
*
fp
->
samples_per_tti
];
rxp
[
i
]
=
(
void
*
)
&
eNB
->
common_vars
.
rxdata
[
0
][
i
][
subframe
*
fp
->
samples_per_tti
];
for
(
packet_id
=
0
;
packet_id
<
spsf
/
spp_eth
;
packet_id
++
)
{
for
(
packet_id
=
0
;
packet_id
<
spsf
/
spp_eth
;
packet_id
++
)
{
for
(
i
=
0
;
i
<
fp
->
nb_antennas_tx
;
i
++
)
rxp
[
i
]
+=
packet_id
*
spp_eth
;
eNB
->
ifdevice
.
trx_read_func
(
&
eNB
->
ifdevice
,
eNB
->
ifdevice
.
trx_read_func
(
&
eNB
->
ifdevice
,
&
timestamp
[
packet_id
],
&
timestamp
[
packet_id
],
(
rxp
+
packet_id
*
spp_eth
)
,
rxp
,
spp_eth
,
spp_eth
,
fp
->
nb_antennas_rx
);
fp
->
nb_antennas_rx
);
}
}
...
...
openair1/SCHED/phy_procedures_lte_eNb.c
View file @
9cbf5819
...
@@ -2592,29 +2592,33 @@ void phy_procedures_eNB_common_RX(PHY_VARS_eNB *eNB,const uint8_t abstraction_fl
...
@@ -2592,29 +2592,33 @@ void phy_procedures_eNB_common_RX(PHY_VARS_eNB *eNB,const uint8_t abstraction_fl
}
else
if
(
eNB
->
node_function
==
eNodeB_3GPP_BBU
)
{
// acquisition from IF
}
else
if
(
eNB
->
node_function
==
eNodeB_3GPP_BBU
)
{
// acquisition from IF
/// **** recv_IF5 of rxdata from RRH **** ///
/// **** recv_IF5 of rxdata from RRH **** ///
VCD_SIGNAL_DUMPER_DUMP_FUNCTION_BY_NAME
(
VCD_SIGNAL_DUMPER_FUNCTIONS_RECV_IF5
,
1
);
VCD_SIGNAL_DUMPER_DUMP_FUNCTION_BY_NAME
(
VCD_SIGNAL_DUMPER_FUNCTIONS_RECV_IF5
,
1
);
recv_IF5
(
eNB
,
&
proc
->
timestamp_rx
,
proc
->
subframe_rx
,
IF5_RRH_GW_UL
);
VCD_SIGNAL_DUMPER_DUMP_FUNCTION_BY_NAME
(
VCD_SIGNAL_DUMPER_FUNCTIONS_RECV_IF5
,
0
);
VCD_SIGNAL_DUMPER_DUMP_FUNCTION_BY_NAME
(
VCD_SIGNAL_DUMPER_FUNCTIONS_RECV_IF5
,
0
);
nanosleep
(
&
time_req
,
&
time_rem
);
//nanosleep(&time_req, &time_rem);
//proc->timestamp_rx += fp->samples_per_tti;
proc
->
timestamp_rx
+=
fp
->
samples_per_tti
;
proc
->
frame_rx
=
(
proc
->
timestamp_rx
/
(
fp
->
samples_per_tti
*
10
))
&
1023
;
proc
->
frame_rx
=
(
proc
->
timestamp_rx
/
(
fp
->
samples_per_tti
*
10
))
&
1023
;
proc
->
subframe_rx
=
(
proc
->
timestamp_rx
/
fp
->
samples_per_tti
)
%
10
;
proc
->
subframe_rx
=
(
proc
->
timestamp_rx
/
fp
->
samples_per_tti
)
%
10
;
if
(
proc
->
first_rx
==
0
)
{
if
(
proc
->
subframe_rx
!=
subframe
){
LOG_E
(
PHY
,
"Received Timestamp doesn't correspond to the time we think it is (proc->subframe_rx %d, subframe %d)
\n
"
,
proc
->
subframe_rx
,
subframe
);
//exit_fun("Exiting");
}
if
(
proc
->
frame_rx
!=
frame
)
{
LOG_E
(
PHY
,
"Received Timestamp doesn't correspond to the time we think it is (proc->frame_rx %d frame %d)
\n
"
,
proc
->
frame_rx
,
frame
);
//exit_fun("Exiting");
}
}
else
{
proc
->
first_rx
=
0
;
}
VCD_SIGNAL_DUMPER_DUMP_VARIABLE_BY_NAME
(
VCD_SIGNAL_DUMPER_VARIABLES_TRX_TS
,
proc
->
timestamp_rx
&
0xffffffff
);
VCD_SIGNAL_DUMPER_DUMP_VARIABLE_BY_NAME
(
VCD_SIGNAL_DUMPER_VARIABLES_TRX_TS
,
proc
->
timestamp_rx
&
0xffffffff
);
VCD_SIGNAL_DUMPER_DUMP_VARIABLE_BY_NAME
(
VCD_SIGNAL_DUMPER_VARIABLES_FRAME_NUMBER_RX_ENB
,
proc
->
frame_rx
);
VCD_SIGNAL_DUMPER_DUMP_VARIABLE_BY_NAME
(
VCD_SIGNAL_DUMPER_VARIABLES_FRAME_NUMBER_RX_ENB
,
proc
->
frame_rx
);
VCD_SIGNAL_DUMPER_DUMP_VARIABLE_BY_NAME
(
VCD_SIGNAL_DUMPER_VARIABLES_SUBFRAME_NUMBER_RX_ENB
,
proc
->
subframe_rx
);
VCD_SIGNAL_DUMPER_DUMP_VARIABLE_BY_NAME
(
VCD_SIGNAL_DUMPER_VARIABLES_SUBFRAME_NUMBER_RX_ENB
,
proc
->
subframe_rx
);
}
}
if
(
eNB
->
node_function
==
NGFI_RRU_IF5
)
{
/// **** send_IF5 of rxdata to BBU **** ///
VCD_SIGNAL_DUMPER_DUMP_FUNCTION_BY_NAME
(
VCD_SIGNAL_DUMPER_FUNCTIONS_SEND_IF5
,
1
);
send_IF5
(
eNB
,
proc
->
timestamp_rx
,
proc
->
subframe_rx
,
&
seqno
,
IF5_RRH_GW_UL
);
VCD_SIGNAL_DUMPER_DUMP_FUNCTION_BY_NAME
(
VCD_SIGNAL_DUMPER_FUNCTIONS_SEND_IF5
,
0
);
}
if
((
eNB
->
node_function
==
NGFI_RRU_IF4
)
||
if
((
eNB
->
node_function
==
NGFI_RRU_IF4
)
||
(
eNB
->
node_function
==
eNodeB_3GPP
)
||
(
eNB
->
node_function
==
eNodeB_3GPP
)
||
(
eNB
->
node_function
==
eNodeB_3GPP_BBU
))
{
// front-end processing
(
eNB
->
node_function
==
eNodeB_3GPP_BBU
))
{
// front-end processing
...
@@ -2679,6 +2683,12 @@ void phy_procedures_eNB_common_RX(PHY_VARS_eNB *eNB,const uint8_t abstraction_fl
...
@@ -2679,6 +2683,12 @@ void phy_procedures_eNB_common_RX(PHY_VARS_eNB *eNB,const uint8_t abstraction_fl
}
}
}
}
}
else
if
(
eNB
->
node_function
==
NGFI_RRU_IF5
)
{
/// **** send_IF5 of rxdata to BBU **** ///
VCD_SIGNAL_DUMPER_DUMP_FUNCTION_BY_NAME
(
VCD_SIGNAL_DUMPER_FUNCTIONS_SEND_IF5
,
1
);
send_IF5
(
eNB
,
proc
->
timestamp_rx
,
proc
->
subframe_rx
,
&
seqno
,
IF5_RRH_GW_UL
);
VCD_SIGNAL_DUMPER_DUMP_FUNCTION_BY_NAME
(
VCD_SIGNAL_DUMPER_FUNCTIONS_SEND_IF5
,
0
);
}
else
if
(
eNB
->
node_function
==
NGFI_RCC_IF4
)
{
}
else
if
(
eNB
->
node_function
==
NGFI_RCC_IF4
)
{
/// **** recv_IF4 of rxdataF from RRU **** ///
/// **** recv_IF4 of rxdataF from RRU **** ///
/// **** recv_IF4 of rxsigF from RRU **** ///
/// **** recv_IF4 of rxsigF from RRU **** ///
...
@@ -2734,11 +2744,11 @@ void phy_procedures_eNB_common_RX(PHY_VARS_eNB *eNB,const uint8_t abstraction_fl
...
@@ -2734,11 +2744,11 @@ void phy_procedures_eNB_common_RX(PHY_VARS_eNB *eNB,const uint8_t abstraction_fl
if
(
proc
->
first_rx
==
0
)
{
if
(
proc
->
first_rx
==
0
)
{
if
(
proc
->
subframe_rx
!=
subframe
){
if
(
proc
->
subframe_rx
!=
subframe
){
LOG_E
(
PHY
,
"Received Timestamp doesn't correspond to the time we think it is (proc->subframe_rx %d, subframe %d)
\n
"
,
proc
->
subframe_rx
,
subframe
);
LOG_E
(
PHY
,
"Received Timestamp doesn't correspond to the time we think it is (proc->subframe_rx %d, subframe %d)
\n
"
,
proc
->
subframe_rx
,
subframe
);
//
exit_fun("Exiting");
//
exit_fun("Exiting");
}
}
if
(
proc
->
frame_rx
!=
frame
)
{
if
(
proc
->
frame_rx
!=
frame
)
{
LOG_E
(
PHY
,
"Received Timestamp doesn't correspond to the time we think it is (proc->frame_rx %d frame %d)
\n
"
,
proc
->
frame_rx
,
frame
);
LOG_E
(
PHY
,
"Received Timestamp doesn't correspond to the time we think it is (proc->frame_rx %d frame %d)
\n
"
,
proc
->
frame_rx
,
frame
);
//
exit_fun("Exiting");
//
exit_fun("Exiting");
}
}
}
else
{
}
else
{
proc
->
first_rx
=
0
;
proc
->
first_rx
=
0
;
...
...
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