I written an error correction code which uses a binary generator matrix(which i have declared and initialized within the code) in which each individual element in the matrix is declared as an int(as far as i understand that the size of int in xilix software development kit (XSDK) is 32, please correct me if am wrong). what i want to do is try to declare a binary matrix , that represents each element of the matrix as a bit rather than a word , to optimize the code , to improve space constraints in memory. Is there a bit type in XSDK. please advice. If not , please suggest if this can be achieved in any other way. I've attached my matrix declaration code. please check.

#define ROWS 102  //k
#define COLS 204
int main()
{    

int msg[ROWS];
int dout[COLS];
int G[ROWS][COLS] = {0};
int i,j,k,r,c,n;

 k = ROWS;
 r = ROWS;
 c = COLS;
 n = COLS;
 static int H[ROWS][COLS] = 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int Codeword[COLS]= {0};
int s = 0;
for (i=0;i<k;i++)
for(j=0;j<k;j++)
    if(i == j)
    G[i][j] = 1;

for(i=0;i<r;i++)
for(j=0;j<k;j++)
    G[j][k+i] = H[i][j];

for(i=0;i<r;i++)
   {
for(j=0;j<c;j++)
    printf("%d",G[i][j]);
   }

for(j=0;j<n;j++)
 {
 for(i=0;i<k;i++)
 {
    s = s + msg[i]*G[i][j];
 }
Codeword[j] = s % 2;
s = 0;
 }
for(i=0;i<n;i++)
{
printf("%d",Codeword[i]);
}
}
  • There is no "bit" type in C, the smallest addressable object is char. If you need to store the bit matrix as actual bits, you need to write the corresponding code, but it might be slower than an implementation where each bit is represented as a char. – Jabberwocky Nov 17 '17 at 10:21
  • Thank you . yeah that makes sense. although am specifically enquiring for vivado HLS. to optimize implementation on hardware. – 4am Nov 17 '17 at 11:01
  • as my matrix in [204]*[102], it would be 20808 elements ,each representing a word. it is a binary matrix , so i was wondering if there is any possibilities of representing the elements as bits? thanks – 4am Nov 17 '17 at 11:04
  • You atleast save space in column, but mapping each element to a column index and a bit position. column index = elem / 8 , bit_index = elem % 8; – Anirudh Nov 17 '17 at 11:35

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