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Searched
refs:MODNN
(Results
1 - 8
of
8
) sorted by null
/external/fec/
encode_rs.c
40
feedback =
MODNN
(NN - GENPOLY[NROOTS] + feedback);
43
bb[j] ^= ALPHA_TO[
MODNN
(feedback + GENPOLY[NROOTS-j])];
48
bb[NROOTS-1] = ALPHA_TO[
MODNN
(feedback + GENPOLY[0])];
encode_rs.h
18
*
MODNN
- a function to reduce its argument modulo NN. May be inline or a macro.
46
feedback =
MODNN
(NN - GENPOLY[NROOTS] + feedback);
49
parity[j] ^= ALPHA_TO[
MODNN
(feedback + GENPOLY[NROOTS-j])];
54
parity[NROOTS-1] = ALPHA_TO[
MODNN
(feedback + GENPOLY[0])];
decode_rs.h
17
*
MODNN
- a function to reduce its argument modulo NN. May be inline or a macro.
50
#if !defined(
MODNN
)
51
#error "
MODNN
not defined"
90
s[i] = data[j] ^ ALPHA_TO[
MODNN
(INDEX_OF[s[i]] + (FCR+i)*PRIM)];
114
lambda[1] = ALPHA_TO[
MODNN
(PRIM*(NN-1-eras_pos[0]))];
116
u =
MODNN
(PRIM*(NN-1-eras_pos[i]));
120
lambda[j] ^= ALPHA_TO[
MODNN
(u + tmp)];
133
for (i = 1,k=IPRIM-1; i <= NN; i++,k =
MODNN
(k+IPRIM)) {
137
reg[j] =
MODNN
(reg[j] + j);
174
discr_r ^= ALPHA_TO[
MODNN
(INDEX_OF[lambda[i]] + s[r-i-1])]
[
all
...]
decode_rs.c
54
s[i] = data[j] ^ ALPHA_TO[
MODNN
(INDEX_OF[s[i]] + (FCR+i)*PRIM)];
78
lambda[1] = ALPHA_TO[
MODNN
(PRIM*(NN-1-eras_pos[0]))];
80
u =
MODNN
(PRIM*(NN-1-eras_pos[i]));
84
lambda[j] ^= ALPHA_TO[
MODNN
(u + tmp)];
97
for (i = 1,k=IPRIM-1; i <= NN; i++,k =
MODNN
(k+IPRIM)) {
101
reg[j] =
MODNN
(reg[j] + j);
138
discr_r ^= ALPHA_TO[
MODNN
(INDEX_OF[lambda[i]] + s[r-i-1])];
151
t[i+1] = lambda[i+1] ^ ALPHA_TO[
MODNN
(discr_r + b[i])];
162
b[i] = (lambda[i] == 0) ? A0 :
MODNN
(INDEX_OF[lambda[i]] - discr_r + NN);
182
for (i = 1,k=IPRIM-1; i <= NN; i++,k =
MODNN
(k+IPRIM))
[
all
...]
char.h
8
#define
MODNN
(x)
modnn
(rs,x)
fixed.h
17
#define
MODNN
(x) mod255(x)
int.h
8
#define
MODNN
(x)
modnn
(rs,x)
encode_rs_av.c
29
table[i].c[16-j-1] = CCSDS_alpha_to[
MODNN
(CCSDS_poly[j+1] + CCSDS_index_of[i])];
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