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OpenXG
OpenXG-RAN
Commits
e981df3c
Commit
e981df3c
authored
Oct 14, 2020
by
yaojie
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add nr_decode_SIB1
parent
e6ddb537
Changes
2
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2 changed files
with
215 additions
and
2 deletions
+215
-2
openair2/RRC/NR_UE/rrc_UE.c
openair2/RRC/NR_UE/rrc_UE.c
+214
-2
openair2/RRC/NR_UE/rrc_defs.h
openair2/RRC/NR_UE/rrc_defs.h
+1
-0
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openair2/RRC/NR_UE/rrc_UE.c
View file @
e981df3c
...
...
@@ -33,6 +33,8 @@
#define RRC_UE
#define RRC_UE_C
#include "asn1_conversions.h"
#include "NR_DL-DCCH-Message.h" //asn_DEF_NR_DL_DCCH_Message
#include "NR_DL-CCCH-Message.h" //asn_DEF_NR_DL_CCCH_Message
#include "NR_BCCH-BCH-Message.h" //asn_DEF_NR_BCCH_BCH_Message
...
...
@@ -52,6 +54,7 @@
#include "intertask_interface.h"
#include "executables/softmodem-common.h"
#include "plmn_data.h"
#include "pdcp.h"
#include "UTIL/OSA/osa_defs.h"
#include "common/utils/LOG/log.h"
...
...
@@ -514,11 +517,220 @@ int8_t nr_rrc_ue_decode_NR_BCCH_BCH_Message(
return
0
;
}
int
nr_decode_SI
(
const
protocol_ctxt_t
*
const
ctxt_pP
,
const
uint8_t
eNB_index
)
{
const
char
siWindowLength
[
9
][
5
]
=
{
"1ms"
,
"2ms"
,
"5ms"
,
"10ms"
,
"15ms"
,
"20ms"
,
"40ms"
,
"80ms"
,
"ERR"
};
const
char
siWindowLength_int
[
8
]
=
{
1
,
2
,
5
,
10
,
15
,
20
,
40
,
80
};
const
char
SIBType
[
12
][
6
]
=
{
"SIB3"
,
"SIB4"
,
"SIB5"
,
"SIB6"
,
"SIB7"
,
"SIB8"
,
"SIB9"
,
"SIB10"
,
"SIB11"
,
"SIB12"
,
"SIB13"
,
"Spare"
};
const
char
SIBPeriod
[
8
][
6
]
=
{
"rf8"
,
"rf16"
,
"rf32"
,
"rf64"
,
"rf128"
,
"rf256"
,
"rf512"
,
"ERR"
};
int
siPeriod_int
[
7
]
=
{
80
,
160
,
320
,
640
,
1280
,
2560
,
5120
};
const
char
*
SIBreserved
(
long
value
)
{
if
(
value
<
0
||
value
>
1
)
return
"ERR"
;
if
(
value
)
return
"notReserved"
;
return
"reserved"
;
}
const
char
*
SIBbarred
(
long
value
)
{
if
(
value
<
0
||
value
>
1
)
return
"ERR"
;
if
(
value
)
return
"notBarred"
;
return
"barred"
;
}
const
char
*
SIBallowed
(
long
value
)
{
if
(
value
<
0
||
value
>
1
)
return
"ERR"
;
if
(
value
)
return
"notAllowed"
;
return
"allowed"
;
}
int
nr_decode_SI
(
const
protocol_ctxt_t
*
const
ctxt_pP
,
const
uint8_t
gNB_index
)
{
return
0
;
}
int
nr_decode_SIB1
(
const
protocol_ctxt_t
*
const
ctxt_pP
,
const
uint8_t
eNB_index
,
const
uint8_t
rsrq
,
const
uint8_t
rsrp
)
{
int
nr_decode_SIB1
(
const
protocol_ctxt_t
*
const
ctxt_pP
,
const
uint8_t
gNB_index
,
const
uint8_t
rsrq
,
const
uint8_t
rsrp
)
{
NR_SIB1_t
*
sib1
=
NR_UE_rrc_inst
[
ctxt_pP
->
module_id
].
sib1
[
gNB_index
];
VCD_SIGNAL_DUMPER_DUMP_FUNCTION_BY_NAME
(
VCD_SIGNAL_DUMPER_FUNCTIONS_RRC_UE_DECODE_SIB1
,
VCD_FUNCTION_IN
);
LOG_I
(
RRC
,
"[UE %d] : Dumping SIB 1
\n
"
,
ctxt_pP
->
module_id
);
const
int
n
=
sib1
->
cellAccessRelatedInfo
.
plmn_IdentityList
.
list
.
count
;
for
(
int
i
=
0
;
i
<
n
;
++
i
)
{
NR_PLMN_Identity_t
*
PLMN_identity
=
&
sib1
->
cellAccessRelatedInfo
.
plmn_IdentityList
.
list
.
array
[
i
]
->
plmn_IdentityList
.
list
.
array
[
0
];
int
mccdigits
=
PLMN_identity
->
mcc
->
list
.
count
;
int
mncdigits
=
PLMN_identity
->
mnc
.
list
.
count
;
int
mcc
;
if
(
mccdigits
==
2
)
{
mcc
=
*
PLMN_identity
->
mcc
->
list
.
array
[
0
]
*
10
+
*
PLMN_identity
->
mcc
->
list
.
array
[
1
];
}
else
{
mcc
=
*
PLMN_identity
->
mcc
->
list
.
array
[
0
]
*
100
+
*
PLMN_identity
->
mcc
->
list
.
array
[
1
]
*
10
+
*
PLMN_identity
->
mcc
->
list
.
array
[
2
];
}
int
mnc
;
if
(
mncdigits
==
2
)
{
mnc
=
*
PLMN_identity
->
mnc
.
list
.
array
[
0
]
*
10
+
*
PLMN_identity
->
mnc
.
list
.
array
[
1
];
}
else
{
mnc
=
*
PLMN_identity
->
mnc
.
list
.
array
[
0
]
*
100
+
*
PLMN_identity
->
mnc
.
list
.
array
[
1
]
*
10
+
*
PLMN_identity
->
mnc
.
list
.
array
[
2
];
}
LOG_I
(
RRC
,
"PLMN %d MCC %0*d, MNC %0*d
\n
"
,
i
+
1
,
mccdigits
,
mcc
,
mncdigits
,
mnc
);
// search internal table for provider name
int
plmn_ind
=
0
;
while
(
plmn_data
[
plmn_ind
].
mcc
>
0
)
{
if
((
plmn_data
[
plmn_ind
].
mcc
==
mcc
)
&&
(
plmn_data
[
plmn_ind
].
mnc
==
mnc
))
{
LOG_I
(
RRC
,
"Found %s (name from internal table)
\n
"
,
plmn_data
[
plmn_ind
].
oper_short
);
break
;
}
plmn_ind
++
;
}
}
LOG_I
(
RRC
,
"TAC 0x%04x
\n
"
,
((
sib1
->
cellAccessRelatedInfo
.
plmn_IdentityList
.
list
.
array
[
0
]
->
trackingAreaCode
->
size
==
2
)
?
((
sib1
->
cellAccessRelatedInfo
.
plmn_IdentityList
.
list
.
array
[
0
]
->
trackingAreaCode
->
buf
[
0
]
<<
8
)
+
sib1
->
cellAccessRelatedInfo
.
plmn_IdentityList
.
list
.
array
[
0
]
->
trackingAreaCode
->
buf
[
1
])
:
0
));
LOG_I
(
RRC
,
"cellReservedForOperatorUse : raw:%ld decoded:%s
\n
"
,
sib1
->
cellAccessRelatedInfo
.
plmn_IdentityList
.
list
.
array
[
0
]
->
cellReservedForOperatorUse
,
SIBreserved
(
sib1
->
cellAccessRelatedInfo
.
plmn_IdentityList
.
list
.
array
[
0
]
->
cellReservedForOperatorUse
)
);
LOG_I
(
RRC
,
"cellAccessRelatedInfo.cellIdentity : raw:%"
PRIu32
" decoded:%02x.%02x.%02x.%02x
\n
"
,
BIT_STRING_to_uint32
(
&
sib1
->
cellAccessRelatedInfo
.
plmn_IdentityList
.
list
.
array
[
0
]
->
cellIdentity
),
sib1
->
cellAccessRelatedInfo
.
plmn_IdentityList
.
list
.
array
[
0
]
->
cellIdentity
.
buf
[
0
],
sib1
->
cellAccessRelatedInfo
.
plmn_IdentityList
.
list
.
array
[
0
]
->
cellIdentity
.
buf
[
1
],
sib1
->
cellAccessRelatedInfo
.
plmn_IdentityList
.
list
.
array
[
0
]
->
cellIdentity
.
buf
[
2
],
sib1
->
cellAccessRelatedInfo
.
plmn_IdentityList
.
list
.
array
[
0
]
->
cellIdentity
.
buf
[
3
]
>>
sib1
->
cellAccessRelatedInfo
.
plmn_IdentityList
.
list
.
array
[
0
]
->
cellIdentity
.
bits_unused
);
//LOG_I( RRC, "cellAccessRelatedInfo.cellBarred : raw:%ld decoded:%s\n", sib1->cellAccessRelatedInfo.cellBarred, SIBbarred(sib1->cellAccessRelatedInfo.cellBarred) );
//LOG_I( RRC, "cellAccessRelatedInfo.intraFreqReselection : raw:%ld decoded:%s\n", sib1->cellAccessRelatedInfo.intraFreqReselection, SIBallowed(sib1->cellAccessRelatedInfo.intraFreqReselection) );
//LOG_I( RRC, "cellAccessRelatedInfo.csg_Indication : %d\n", sib1->cellAccessRelatedInfo.csg_Indication );
//if (sib1->cellAccessRelatedInfo.csg_Identity)
// LOG_I( RRC, "cellAccessRelatedInfo.csg_Identity : %"PRIu32"\n", BIT_STRING_to_uint32(sib1->cellAccessRelatedInfo.csg_Identity) );
//else
// LOG_I( RRC, "cellAccessRelatedInfo.csg_Identity : not defined\n" );
LOG_I
(
RRC
,
"cellSelectionInfo.q_RxLevMin : %ld
\n
"
,
sib1
->
cellSelectionInfo
->
q_RxLevMin
);
if
(
sib1
->
cellSelectionInfo
->
q_RxLevMinOffset
)
LOG_I
(
RRC
,
"cellSelectionInfo.q_RxLevMinOffset : %ld
\n
"
,
*
sib1
->
cellSelectionInfo
->
q_RxLevMinOffset
);
else
LOG_I
(
RRC
,
"cellSelectionInfo.q_RxLevMinOffset : not defined
\n
"
);
//if (sib1->p_Max)
// LOG_I( RRC, "p_Max : %ld\n", *sib1->p_Max );
//else
// LOG_I( RRC, "p_Max : not defined\n" );
//LOG_I( RRC, "freqBandIndicator : %ld\n", sib1->freqBandIndicator );
if
(
sib1
->
si_SchedulingInfo
->
schedulingInfoList
.
list
.
count
>
0
)
{
for
(
int
i
=
0
;
i
<
sib1
->
si_SchedulingInfo
->
schedulingInfoList
.
list
.
count
;
i
++
)
{
LOG_I
(
RRC
,
"si_Periodicity[%d] : %s
\n
"
,
i
,
SIBPeriod
[
min
(
sib1
->
si_SchedulingInfo
->
schedulingInfoList
.
list
.
array
[
i
]
->
si_Periodicity
,
7
)]);
if
(
sib1
->
si_SchedulingInfo
->
schedulingInfoList
.
list
.
array
[
i
]
->
sib_MappingInfo
.
list
.
count
>
0
)
{
char
temp
[
32
*
sizeof
(
SIBType
[
0
])]
=
{
0
};
// maxSIB==32
for
(
int
j
=
0
;
j
<
sib1
->
si_SchedulingInfo
->
schedulingInfoList
.
list
.
array
[
i
]
->
sib_MappingInfo
.
list
.
count
;
j
++
)
{
sprintf
(
temp
+
j
*
sizeof
(
SIBType
[
0
]),
"%*s "
,
(
int
)
sizeof
(
SIBType
[
0
])
-
1
,
SIBType
[
min
(
sib1
->
si_SchedulingInfo
->
schedulingInfoList
.
list
.
array
[
i
]
->
sib_MappingInfo
.
list
.
array
[
0
]
->
type
,
11
)]
);
}
LOG_I
(
RRC
,
"siSchedulingInfoSIBType[%d] : %s
\n
"
,
i
,
temp
);
}
else
{
LOG_I
(
RRC
,
"mapping list %d is null
\n
"
,
i
);
}
}
}
else
{
LOG_E
(
RRC
,
"siSchedulingInfoPeriod[0] : PROBLEM!!!
\n
"
);
return
-
1
;
}
//if (sib1->tdd_Config) {
// LOG_I( RRC, "TDD subframeAssignment : %ld\n", sib1->tdd_Config->subframeAssignment );
// LOG_I( RRC, "TDD specialSubframePatterns : %ld\n", sib1->tdd_Config->specialSubframePatterns );
//}
LOG_I
(
RRC
,
"siWindowLength : %s
\n
"
,
siWindowLength
[
min
(
sib1
->
si_SchedulingInfo
->
si_WindowLength
,
8
)]
);
//LOG_I( RRC, "systemInfoValueTag : %ld\n", sib1->systemInfoValueTag );
NR_UE_rrc_inst
[
ctxt_pP
->
module_id
].
Info
[
gNB_index
].
SIperiod
=
siPeriod_int
[
sib1
->
si_SchedulingInfo
->
schedulingInfoList
.
list
.
array
[
0
]
->
si_Periodicity
];
NR_UE_rrc_inst
[
ctxt_pP
->
module_id
].
Info
[
gNB_index
].
SIwindowsize
=
siWindowLength_int
[
sib1
->
si_SchedulingInfo
->
si_WindowLength
];
LOG_I
(
RRC
,
"[FRAME unknown][RRC_UE][MOD %02"
PRIu8
"][][--- MAC_CONFIG_REQ (SIB1 params eNB %"
PRIu8
") --->][MAC_UE][MOD %02"
PRIu8
"][]
\n
"
,
ctxt_pP
->
module_id
,
gNB_index
,
ctxt_pP
->
module_id
);
//rrc_mac_config_req_ue
LOG_I
(
RRC
,
"Setting SIStatus bit 0 to 1
\n
"
);
NR_UE_rrc_inst
[
ctxt_pP
->
module_id
].
Info
[
gNB_index
].
SIStatus
=
1
;
//NR_UE_rrc_inst[ctxt_pP->module_id].Info[gNB_index].SIB1systemInfoValueTag = sib1->systemInfoValueTag;
if
(
AMF_MODE_ENABLED
)
{
int
cell_valid
=
0
;
//if (sib1->cellAccessRelatedInfo.cellBarred == LTE_SystemInformationBlockType1__cellAccessRelatedInfo__cellBarred_notBarred) {
/* Cell is not barred */
int
plmn
;
int
plmn_number
;
plmn_number
=
sib1
->
cellAccessRelatedInfo
.
plmn_IdentityList
.
list
.
count
;
/* Compare requested PLMN and PLMNs from SIB1*/
for
(
plmn
=
0
;
plmn
<
plmn_number
;
plmn
++
)
{
NR_PLMN_Identity_t
*
plmn_Identity
;
plmn_Identity
=
sib1
->
cellAccessRelatedInfo
.
plmn_IdentityList
.
list
.
array
[
plmn
]
->
plmn_IdentityList
.
list
.
array
[
0
];
if
(
(
(
plmn_Identity
->
mcc
==
NULL
)
||
(
(
NR_UE_rrc_inst
[
ctxt_pP
->
module_id
].
plmnID
.
MCCdigit1
==
*
(
plmn_Identity
->
mcc
->
list
.
array
[
0
]))
&&
(
NR_UE_rrc_inst
[
ctxt_pP
->
module_id
].
plmnID
.
MCCdigit2
==
*
(
plmn_Identity
->
mcc
->
list
.
array
[
1
]))
&&
(
NR_UE_rrc_inst
[
ctxt_pP
->
module_id
].
plmnID
.
MCCdigit3
==
*
(
plmn_Identity
->
mcc
->
list
.
array
[
2
]))
)
)
&&
(
NR_UE_rrc_inst
[
ctxt_pP
->
module_id
].
plmnID
.
MNCdigit1
==
*
(
plmn_Identity
->
mnc
.
list
.
array
[
0
]))
&&
(
NR_UE_rrc_inst
[
ctxt_pP
->
module_id
].
plmnID
.
MNCdigit2
==
*
(
plmn_Identity
->
mnc
.
list
.
array
[
1
]))
&&
(
((
NR_UE_rrc_inst
[
ctxt_pP
->
module_id
].
plmnID
.
MNCdigit3
==
0xf
)
&&
(
plmn_Identity
->
mnc
.
list
.
count
==
2
))
||
(
NR_UE_rrc_inst
[
ctxt_pP
->
module_id
].
plmnID
.
MNCdigit3
==
*
(
plmn_Identity
->
mnc
.
list
.
array
[
2
]))
)
)
{
/* PLMN match, send a confirmation to NAS */
MessageDef
*
msg_p
;
msg_p
=
itti_alloc_new_message
(
TASK_RRC_UE
,
NAS_CELL_SELECTION_CNF
);
NAS_CELL_SELECTION_CNF
(
msg_p
).
errCode
=
AS_SUCCESS
;
NAS_CELL_SELECTION_CNF
(
msg_p
).
cellID
=
BIT_STRING_to_uint32
(
&
sib1
->
cellAccessRelatedInfo
.
plmn_IdentityList
.
list
.
array
[
0
]
->
cellIdentity
);
NAS_CELL_SELECTION_CNF
(
msg_p
).
tac
=
BIT_STRING_to_uint16
(
sib1
->
cellAccessRelatedInfo
.
plmn_IdentityList
.
list
.
array
[
0
]
->
trackingAreaCode
);
NAS_CELL_SELECTION_CNF
(
msg_p
).
rat
=
0xFF
;
NAS_CELL_SELECTION_CNF
(
msg_p
).
rsrq
=
rsrq
;
NAS_CELL_SELECTION_CNF
(
msg_p
).
rsrp
=
rsrp
;
itti_send_msg_to_task
(
TASK_NAS_UE
,
ctxt_pP
->
instance
,
msg_p
);
cell_valid
=
1
;
NR_UE_rrc_inst
[
ctxt_pP
->
module_id
].
selected_plmn_identity
=
plmn
+
1
;
break
;
}
}
//}
if
(
cell_valid
==
0
)
{
/* Cell can not be used, ask PHY to try the next one */
MessageDef
*
msg_p
;
msg_p
=
itti_alloc_new_message
(
TASK_RRC_UE
,
PHY_FIND_NEXT_CELL_REQ
);
itti_send_msg_to_task
(
TASK_PHY_UE
,
ctxt_pP
->
instance
,
msg_p
);
LOG_E
(
RRC
,
"Synched with a cell, but PLMN doesn't match our SIM "
"(selected_plmn_identity %d), the message PHY_FIND_NEXT_CELL_REQ "
"is sent but lost in current UE implementation!
\n
"
,
NR_UE_rrc_inst
[
ctxt_pP
->
module_id
].
selected_plmn_identity
);
}
}
VCD_SIGNAL_DUMPER_DUMP_FUNCTION_BY_NAME
(
VCD_SIGNAL_DUMPER_FUNCTIONS_RRC_UE_DECODE_SIB1
,
VCD_FUNCTION_OUT
);
return
0
;
}
int
nr_decode_BCCH_DLSCH_Message
(
...
...
openair2/RRC/NR_UE/rrc_defs.h
View file @
e981df3c
...
...
@@ -93,6 +93,7 @@ typedef struct NR_UE_RRC_INST_s {
NR_SIB1_t
*
sib1
[
NB_CNX_UE
];
NR_SystemInformation_t
*
si
[
NB_CNX_UE
];
plmn_t
plmnID
;
NR_UE_RRC_INFO
Info
[
NB_SIG_CNX_UE
];
...
...
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