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Michael Black
OpenXG-RAN
Commits
42a4649a
Commit
42a4649a
authored
Sep 24, 2019
by
sebastian
Browse files
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Plain Diff
Optimized llr2cnProcBuf for BG1 and R13 but needs clean up.
parent
508b63c4
Changes
1
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197 additions
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11 deletions
+197
-11
openair1/PHY/CODING/nrLDPC_decoder/nrLDPC_mPass.h
openair1/PHY/CODING/nrLDPC_decoder/nrLDPC_mPass.h
+197
-11
No files found.
openair1/PHY/CODING/nrLDPC_decoder/nrLDPC_mPass.h
View file @
42a4649a
...
...
@@ -33,7 +33,7 @@
#include <string.h>
#include "nrLDPC_defs.h"
#include "nrLDPC_tools/nrLDPC_debug.h"
/**
\brief Circular memcpy
(src) str2 = |xxxxxxxxxxxxxxxxxxxx\--------|
...
...
@@ -89,7 +89,7 @@ static inline void nrLDPC_llr2llrProcBuf(t_nrLDPC_lut* p_lut, int8_t* llr, t_nrL
const
uint16_t
*
lut_llr2llrProcBufAddr
=
p_lut
->
llr2llrProcBufAddr
;
const
uint8_t
*
lut_llr2llrProcBufNumBn
=
p_lut
->
llr2llrProcBufNumBn
;
const
uint8_t
*
lut_llr2llrProcBufNumEl
=
p_lut
->
llr2llrProcBufNumEl
;
//nrLDPC_debug_initBuffer2File(nrLDPC_buffers_LLR_PROC);
uint16_t
numLlr
=
0
;
int8_t
*
llrProcBuf
=
p_procBuf
->
llrProcBuf
;
...
...
@@ -111,6 +111,7 @@ static inline void nrLDPC_llr2llrProcBuf(t_nrLDPC_lut* p_lut, int8_t* llr, t_nrL
memcpy
(
&
llrProcBuf
[
lut_llr2llrProcBufAddr
[
i
]],
llr
,
numLlr
);
llr
+=
numLlr
;
}
//nrLDPC_debug_writeBuffer2File(nrLDPC_buffers_LLR_PROC, p_procBuf);
}
/**
...
...
@@ -136,7 +137,10 @@ static inline void nrLDPC_llr2CnProcBuf(t_nrLDPC_lut* p_lut, int8_t* llr, t_nrLD
uint8_t
startColParity
=
NR_LDPC_START_COL_PARITY_BG1
;
uint32_t
colG1
;
const
uint32_t
*
p_lutEntry
=
lut_llr2CnProcBuf
;
int8_t
*
p_llr
=
llr
;
// nrLDPC_debug_initBuffer2File(nrLDPC_buffers_CN_PROC);
/*
if (BG == 2)
{
startColParity = NR_LDPC_START_COL_PARITY_BG2;
...
...
@@ -148,43 +152,225 @@ static inline void nrLDPC_llr2CnProcBuf(t_nrLDPC_lut* p_lut, int8_t* llr, t_nrLD
{
numEdges = lut_numEdgesPerBn[k];
p_llr = &llr[k*Z];
for (i=0; i<Z; i++)
{
curLLR
=
llr
[
i
];
curLLR =
p_
llr[i];
for (j=0; j<numEdges; j++)
{
cnProcBuf[*p_lutEntry++] = curLLR;
}
}
}
// Copy LLRs connected to 1 CN
for (i=colG1; i<numLLR; i++)
{
//mexPrintf("idx=%d, llr[%d] = %d\n",*p_lutEntry,i,llr[i]);
cnProcBuf[*p_lutEntry++] = llr[i];
}
//mexPrintf("colG1 = %d, numLlr = %d\n",colG1,numLLR);
*/
//nrLDPC_debug_writeBuffer2File(nrLDPC_buffers_CN_PROC, p_procBuf);
// Test
// =====================================================================
// CN group with 3 BNs
//const uint8_t* lut_numCnInCnGroups = p_lut->numCnInCnGroups;
/*
const uint32_t* lut_startAddrCnGroups = p_lut->startAddrCnGroups;
const
uint16_t
(
*
lut_circShift_CNG3
)
[
lut_numCnInCnGroups_BG1_R13
[
0
]]
=
(
uint16_t
(
*
)[
lut_numCnInCnGroups_BG1_R13
[
0
]])
p_lut
->
circShift
[
0
];
const
uint16_t
(
*
lut_circShift_CNG4
)
[
lut_numCnInCnGroups_BG1_R13
[
1
]]
=
(
uint16_t
(
*
)[
lut_numCnInCnGroups_BG1_R13
[
1
]])
p_lut
->
circShift
[
1
];
const
uint16_t
(
*
lut_circShift_CNG5
)
[
lut_numCnInCnGroups_BG1_R13
[
2
]]
=
(
uint16_t
(
*
)[
lut_numCnInCnGroups_BG1_R13
[
2
]])
p_lut
->
circShift
[
2
];
const
uint16_t
(
*
lut_circShift_CNG6
)
[
lut_numCnInCnGroups_BG1_R13
[
3
]]
=
(
uint16_t
(
*
)[
lut_numCnInCnGroups_BG1_R13
[
3
]])
p_lut
->
circShift
[
3
];
const
uint16_t
(
*
lut_circShift_CNG7
)
[
lut_numCnInCnGroups_BG1_R13
[
4
]]
=
(
uint16_t
(
*
)[
lut_numCnInCnGroups_BG1_R13
[
4
]])
p_lut
->
circShift
[
4
];
const
uint16_t
(
*
lut_circShift_CNG8
)
[
lut_numCnInCnGroups_BG1_R13
[
5
]]
=
(
uint16_t
(
*
)[
lut_numCnInCnGroups_BG1_R13
[
5
]])
p_lut
->
circShift
[
5
];
const
uint16_t
(
*
lut_circShift_CNG9
)
[
lut_numCnInCnGroups_BG1_R13
[
6
]]
=
(
uint16_t
(
*
)[
lut_numCnInCnGroups_BG1_R13
[
6
]])
p_lut
->
circShift
[
6
];
const
uint16_t
(
*
lut_circShift_CNG10
)[
lut_numCnInCnGroups_BG1_R13
[
7
]]
=
(
uint16_t
(
*
)[
lut_numCnInCnGroups_BG1_R13
[
7
]])
p_lut
->
circShift
[
7
];
const
uint16_t
(
*
lut_circShift_CNG19
)[
lut_numCnInCnGroups_BG1_R13
[
8
]]
=
(
uint16_t
(
*
)[
lut_numCnInCnGroups_BG1_R13
[
8
]])
p_lut
->
circShift
[
8
];
const
uint8_t
*
lut_numCnInCnGroups
=
p_lut
->
numCnInCnGroups
;
const
uint32_t
*
lut_startAddrCnGroups
=
p_lut
->
startAddrCnGroups
;
uint32_t
idxBn
=
0
;
int8_t
*
p_cnProcBuf
;
uint32_t
bitOffsetInGroup
;
// =====================================================================
// CN group with 3 BNs
bitOffsetInGroup
=
lut_numCnInCnGroups_BG1_R13
[
0
]
*
NR_LDPC_ZMAX
;
const
uint8_t
lut_CNG3
[
3
]
=
{
0
,
1
,
26
};
for (j=0; j<
2
; j++)
for
(
j
=
0
;
j
<
3
;
j
++
)
{
p_cnProcBuf
=
&
cnProcBuf
[
lut_startAddrCnGroups
[
0
]
+
j
*
bitOffsetInGroup
];
nrLDPC_inv_circ_memcpy
(
p_cnProcBuf
,
&
llr
[
lut_CNG3
[
j
]
*
Z
],
Z
,
lut_circShift_CNG3
[
j
][
0
]);
}
*/
// =====================================================================
// CN group with 4 BNs
//p_lut_cn2bn += (M*3); // Number of elements of previous group
//M = lut_numCnInCnGroups[1]*Z;
bitOffsetInGroup
=
lut_numCnInCnGroups_BG1_R13
[
1
]
*
NR_LDPC_ZMAX
;
static
const
uint8_t
posBnInCnProcBuf_BG1_R13_CNG4
[
4
][
5
]
=
{{
1
,
1
,
0
,
0
,
1
},{
6
,
13
,
8
,
4
,
6
},{
8
,
23
,
17
,
24
,
10
},{
49
,
59
,
62
,
64
,
67
}};
for
(
j
=
0
;
j
<
4
;
j
++
)
{
p_cnProcBuf
=
&
cnProcBuf
[
lut_startAddrCnGroups
[
1
]
+
j
*
bitOffsetInGroup
];
for
(
i
=
0
;
i
<
lut_numCnInCnGroups
[
1
];
i
++
)
{
idxBn
=
posBnInCnProcBuf_BG1_R13_CNG4
[
j
][
i
]
*
Z
;
nrLDPC_inv_circ_memcpy
(
p_cnProcBuf
,
&
llr
[
idxBn
],
Z
,
lut_circShift_CNG4
[
j
][
i
]);
p_cnProcBuf
+=
Z
;
}
}
// =====================================================================
// CN group with 5 BNs
//p_lut_cn2bn += (M*4); // Number of elements of previous group
//M = lut_numCnInCnGroups[2]*Z;
bitOffsetInGroup
=
lut_numCnInCnGroups_BG1_R13
[
2
]
*
NR_LDPC_ZMAX
;
static
const
uint8_t
posBnInCnProcBuf_BG1_R13_CNG5
[
5
][
18
]
=
{{
0
,
1
,
1
,
0
,
0
,
1
,
0
,
1
,
0
,
1
,
0
,
1
,
0
,
0
,
1
,
1
,
1
,
0
},{
12
,
2
,
6
,
2
,
4
,
14
,
10
,
7
,
12
,
2
,
7
,
6
,
14
,
9
,
3
,
3
,
16
,
7
},{
13
,
10
,
7
,
4
,
19
,
18
,
13
,
22
,
14
,
11
,
15
,
12
,
15
,
10
,
7
,
9
,
18
,
9
},{
17
,
18
,
14
,
15
,
21
,
25
,
24
,
25
,
24
,
21
,
17
,
22
,
18
,
12
,
19
,
18
,
25
,
22
},{
44
,
45
,
47
,
48
,
50
,
51
,
52
,
53
,
54
,
55
,
56
,
57
,
58
,
60
,
61
,
63
,
65
,
66
}};
for
(
j
=
0
;
j
<
5
;
j
++
)
{
p_cnProcBuf
=
&
cnProcBuf
[
lut_startAddrCnGroups
[
2
]
+
j
*
bitOffsetInGroup
];
for
(
i
=
0
;
i
<
lut_numCnInCnGroups
[
2
];
i
++
)
{
idxBn
=
posBnInCnProcBuf_BG1_R13_CNG5
[
j
][
i
]
*
Z
;
nrLDPC_inv_circ_memcpy
(
p_cnProcBuf
,
&
llr
[
idxBn
],
Z
,
lut_circShift_CNG5
[
j
][
i
]);
p_cnProcBuf
+=
Z
;
}
}
// =====================================================================
// CN group with 6 BNs
//p_lut_cn2bn += (M*5); // Number of elements of previous group
//M = lut_numCnInCnGroups[3]*Z;
bitOffsetInGroup
=
lut_numCnInCnGroups_BG1_R13
[
3
]
*
NR_LDPC_ZMAX
;
static
const
uint8_t
posBnInCnProcBuf_BG1_R13_CNG6
[
6
][
8
]
=
{{
0
,
1
,
0
,
1
,
0
,
0
,
1
,
0
},{
3
,
3
,
14
,
12
,
1
,
3
,
5
,
3
},{
7
,
11
,
16
,
13
,
7
,
9
,
16
,
4
},{
20
,
20
,
17
,
18
,
8
,
11
,
20
,
11
},{
23
,
22
,
21
,
19
,
10
,
22
,
21
,
22
},{
35
,
38
,
39
,
40
,
41
,
42
,
43
,
46
}};
for
(
j
=
0
;
j
<
6
;
j
++
)
{
p_cnProcBuf
=
&
cnProcBuf
[
lut_startAddrCnGroups
[
3
]
+
j
*
bitOffsetInGroup
];
for
(
i
=
0
;
i
<
lut_numCnInCnGroups
[
3
];
i
++
)
{
idxBn
=
posBnInCnProcBuf_BG1_R13_CNG6
[
j
][
i
]
*
Z
;
nrLDPC_inv_circ_memcpy
(
p_cnProcBuf
,
&
llr
[
idxBn
],
Z
,
lut_circShift_CNG6
[
j
][
i
]);
p_cnProcBuf
+=
Z
;
}
}
// =====================================================================
// CN group with 7 BNs
//p_lut_cn2bn += (M*6); // Number of elements of previous group
//M = lut_numCnInCnGroups[4]*Z;
bitOffsetInGroup
=
lut_numCnInCnGroups_BG1_R13
[
4
]
*
NR_LDPC_ZMAX
;
static
const
uint8_t
posBnInCnProcBuf_BG1_R13_CNG7
[
7
][
5
]
=
{{
0
,
1
,
0
,
0
,
0
},{
1
,
2
,
1
,
12
,
1
},{
4
,
4
,
10
,
15
,
10
},{
7
,
7
,
11
,
16
,
13
},{
8
,
8
,
13
,
17
,
18
},{
14
,
14
,
18
,
21
,
25
},{
29
,
32
,
34
,
36
,
37
}};
for
(
j
=
0
;
j
<
7
;
j
++
)
{
p_cnProcBuf
=
&
cnProcBuf
[
lut_startAddrCnGroups
[
4
]
+
j
*
bitOffsetInGroup
];
for
(
i
=
0
;
i
<
lut_numCnInCnGroups
[
4
];
i
++
)
{
idxBn
=
posBnInCnProcBuf_BG1_R13_CNG7
[
j
][
i
]
*
Z
;
nrLDPC_inv_circ_memcpy
(
p_cnProcBuf
,
&
llr
[
idxBn
],
Z
,
lut_circShift_CNG7
[
j
][
i
]);
p_cnProcBuf
+=
Z
;
}
}
// =====================================================================
// CN group with 8 BNs
//p_lut_cn2bn += (M*7); // Number of elements of previous group
//M = lut_numCnInCnGroups[5]*Z;
bitOffsetInGroup
=
lut_numCnInCnGroups_BG1_R13
[
5
]
*
NR_LDPC_ZMAX
;
static
const
uint8_t
posBnInCnProcBuf_BG1_R13_CNG8
[
8
][
2
]
=
{{
0
,
0
},{
1
,
1
},{
3
,
12
},{
12
,
16
},{
16
,
21
},{
21
,
22
},{
22
,
23
},{
27
,
33
}};
for
(
j
=
0
;
j
<
8
;
j
++
)
{
p_cnProcBuf
=
&
cnProcBuf
[
lut_startAddrCnGroups
[
5
]
+
j
*
bitOffsetInGroup
];
for
(
i
=
0
;
i
<
lut_numCnInCnGroups
[
5
];
i
++
)
{
idxBn
=
posBnInCnProcBuf_BG1_R13_CNG8
[
j
][
i
]
*
Z
;
nrLDPC_inv_circ_memcpy
(
p_cnProcBuf
,
&
llr
[
idxBn
],
Z
,
lut_circShift_CNG8
[
j
][
i
]);
p_cnProcBuf
+=
Z
;
}
}
// =====================================================================
// CN group with 9 BNs
//p_lut_cn2bn += (M*8); // Number of elements of previous group
//M = lut_numCnInCnGroups[6]*Z;
bitOffsetInGroup
=
lut_numCnInCnGroups_BG1_R13
[
6
]
*
NR_LDPC_ZMAX
;
static
const
uint8_t
posBnInCnProcBuf_BG1_R13_CNG9
[
9
][
2
]
=
{{
0
,
0
},{
6
,
1
},{
10
,
10
},{
11
,
11
},{
13
,
13
},{
17
,
17
},{
18
,
18
},{
20
,
20
},{
28
,
31
}};
for
(
j
=
0
;
j
<
9
;
j
++
)
{
p_cnProcBuf
=
&
cnProcBuf
[
lut_startAddrCnGroups
[
6
]
+
j
*
bitOffsetInGroup
];
for
(
i
=
0
;
i
<
lut_numCnInCnGroups
[
6
];
i
++
)
{
idxBn
=
posBnInCnProcBuf_BG1_R13_CNG9
[
j
][
i
]
*
Z
;
nrLDPC_inv_circ_memcpy
(
p_cnProcBuf
,
&
llr
[
idxBn
],
Z
,
lut_circShift_CNG9
[
j
][
i
]);
p_cnProcBuf
+=
Z
;
}
}
// =====================================================================
// CN group with 10 BNs
//p_lut_cn2bn += (M*9); // Number of elements of previous group
//M = lut_numCnInCnGroups[7]*Z;
bitOffsetInGroup
=
lut_numCnInCnGroups_BG1_R13
[
7
]
*
NR_LDPC_ZMAX
;
static
const
uint8_t
posBnInCnProcBuf_BG1_R13_CNG10
[
10
][
1
]
=
{{
0
},{
1
},{
3
},{
12
},{
16
},{
19
},{
21
},{
22
},{
24
},{
30
}};
for
(
j
=
0
;
j
<
10
;
j
++
)
{
p_cnProcBuf
=
&
cnProcBuf
[
lut_startAddrCnGroups
[
7
]
+
j
*
bitOffsetInGroup
];
for
(
i
=
0
;
i
<
lut_numCnInCnGroups
[
7
];
i
++
)
{
idxBn
=
posBnInCnProcBuf_BG1_R13_CNG10
[
j
][
i
]
*
Z
;
nrLDPC_inv_circ_memcpy
(
p_cnProcBuf
,
&
llr
[
idxBn
],
Z
,
lut_circShift_CNG10
[
j
][
i
]);
p_cnProcBuf
+=
Z
;
}
}
// =====================================================================
// CN group with 19 BNs
//p_lut_cn2bn += (M*10); // Number of elements of previous group
//M = lut_numCnInCnGroups[8]*Z;
bitOffsetInGroup
=
lut_numCnInCnGroups_BG1_R13
[
8
]
*
NR_LDPC_ZMAX
;
static
const
uint8_t
posBnInCnProcBuf_BG1_R13_CNG19
[
19
][
4
]
=
{{
0
,
0
,
0
,
0
},{
1
,
2
,
1
,
1
},{
2
,
3
,
2
,
3
},{
3
,
4
,
4
,
4
},{
5
,
5
,
5
,
6
},{
6
,
7
,
6
,
7
},{
9
,
8
,
7
,
8
},{
10
,
9
,
8
,
10
},{
11
,
11
,
9
,
11
},{
12
,
12
,
10
,
12
},{
13
,
14
,
13
,
13
},{
15
,
15
,
14
,
14
},{
16
,
16
,
15
,
16
},{
18
,
17
,
17
,
17
},{
19
,
19
,
18
,
18
},{
20
,
21
,
19
,
20
},{
21
,
22
,
20
,
21
},{
22
,
23
,
24
,
22
},{
23
,
24
,
25
,
25
}};
for
(
j
=
0
;
j
<
19
;
j
++
)
{
p_cnProcBuf
=
&
cnProcBuf
[
lut_startAddrCnGroups
[
8
]
+
j
*
bitOffsetInGroup
];
for
(
i
=
0
;
i
<
lut_numCnInCnGroups
[
8
];
i
++
)
{
idxBn
=
posBnInCnProcBuf_BG1_R13_CNG19
[
j
][
i
]
*
Z
;
nrLDPC_inv_circ_memcpy
(
p_cnProcBuf
,
&
llr
[
idxBn
],
Z
,
lut_circShift_CNG19
[
j
][
i
]);
p_cnProcBuf
+=
Z
;
}
}
//nrLDPC_debug_writeBuffer2File(nrLDPC_buffers_CN_PROC, p_procBuf);
}
/**
...
...
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