annotate util/ksvd utils/rowlincomb.c @ 183:0d7a81655ef2 danieleb

removed cumulative coherence calculation
author Daniele Barchiesi <daniele.barchiesi@eecs.qmul.ac.uk>
date Fri, 27 Jan 2012 13:15:11 +0000
parents c3eca463202d
children
rev   line source
idamnjanovic@70 1 /**************************************************************************
idamnjanovic@70 2 *
idamnjanovic@70 3 * File name: rowlincomb.c
idamnjanovic@70 4 *
idamnjanovic@70 5 * Ron Rubinstein
idamnjanovic@70 6 * Computer Science Department
idamnjanovic@70 7 * Technion, Haifa 32000 Israel
idamnjanovic@70 8 * ronrubin@cs
idamnjanovic@70 9 *
idamnjanovic@70 10 * Last Updated: 21.5.2009
idamnjanovic@70 11 *
idamnjanovic@70 12 *************************************************************************/
idamnjanovic@70 13
idamnjanovic@70 14 #include "mex.h"
idamnjanovic@70 15
idamnjanovic@70 16
idamnjanovic@70 17 /* Input Arguments */
idamnjanovic@70 18
idamnjanovic@70 19 #define X_IN prhs[0]
idamnjanovic@70 20 #define A_IN prhs[1]
idamnjanovic@70 21 #define ROWS_IN prhs[2]
idamnjanovic@70 22 #define COLS_IN prhs[3]
idamnjanovic@70 23
idamnjanovic@70 24
idamnjanovic@70 25 /* Output Arguments */
idamnjanovic@70 26
idamnjanovic@70 27 #define Y_OUT plhs[0]
idamnjanovic@70 28
idamnjanovic@70 29
idamnjanovic@70 30 void mexFunction(int nlhs, mxArray *plhs[],
idamnjanovic@70 31 int nrhs, const mxArray*prhs[])
idamnjanovic@70 32
idamnjanovic@70 33 {
idamnjanovic@70 34 double *A, *x, *y, *rows, *cols;
idamnjanovic@70 35 mwSize m,n,m1,n1,m2,n2,rownum,colnum;
idamnjanovic@70 36 mwIndex *row_ids,*col_ids,i,j;
idamnjanovic@70 37 int colnumspecified=0;
idamnjanovic@70 38
idamnjanovic@70 39
idamnjanovic@70 40 /* Check for proper number of arguments */
idamnjanovic@70 41
idamnjanovic@70 42 if (nrhs!=3 && nrhs!=4) {
idamnjanovic@70 43 mexErrMsgTxt("Invalid number of input arguments.");
idamnjanovic@70 44 } else if (nlhs > 1) {
idamnjanovic@70 45 mexErrMsgTxt("Too many output arguments.");
idamnjanovic@70 46 }
idamnjanovic@70 47
idamnjanovic@70 48
idamnjanovic@70 49 /* Check the input dimensions */
idamnjanovic@70 50
idamnjanovic@70 51 m = mxGetM(A_IN);
idamnjanovic@70 52 n = mxGetN(A_IN);
idamnjanovic@70 53 if (!mxIsDouble(A_IN) || mxIsComplex(A_IN) || mxGetNumberOfDimensions(A_IN)>2) {
idamnjanovic@70 54 mexErrMsgTxt("ROWLINCOMB requires that A be a double matrix.");
idamnjanovic@70 55 }
idamnjanovic@70 56
idamnjanovic@70 57 m1 = mxGetM(ROWS_IN);
idamnjanovic@70 58 n1 = mxGetN(ROWS_IN);
idamnjanovic@70 59 if (!mxIsDouble(ROWS_IN) || mxIsComplex(ROWS_IN) || (m1!=1 && n1!=1)) {
idamnjanovic@70 60 mexErrMsgTxt("ROWLINCOMB requires that ROWS be an index vector of type double.");
idamnjanovic@70 61 }
idamnjanovic@70 62 rownum = (m1 > n1) ? m1 : n1; /* the number of rows in the linear combination */
idamnjanovic@70 63
idamnjanovic@70 64 m2 = mxGetM(X_IN);
idamnjanovic@70 65 n2 = mxGetN(X_IN);
idamnjanovic@70 66 if (!mxIsDouble(X_IN) || mxIsComplex(X_IN) || ((m2!=1) && (n2!=1))) {
idamnjanovic@70 67 mexErrMsgTxt("ROWLINCOMB requires that X be a double vector.");
idamnjanovic@70 68 }
idamnjanovic@70 69
idamnjanovic@70 70 if (m2 != rownum && n2 != rownum) {
idamnjanovic@70 71 mexErrMsgTxt("The length of X does not match the number of rows in ROWS.");
idamnjanovic@70 72 }
idamnjanovic@70 73
idamnjanovic@70 74 if (nrhs==4) {
idamnjanovic@70 75 m1 = mxGetM(COLS_IN);
idamnjanovic@70 76 n1 = mxGetN(COLS_IN);
idamnjanovic@70 77 if (!mxIsDouble(COLS_IN) || mxIsComplex(COLS_IN) || (m1!=1 && n1!=1)) {
idamnjanovic@70 78 mexErrMsgTxt("ROWLINCOMB requires that COLS be an index vector of type double.");
idamnjanovic@70 79 }
idamnjanovic@70 80 colnum = (m1 > n1) ? m1 : n1; /* the number of columns */
idamnjanovic@70 81 colnumspecified = 1;
idamnjanovic@70 82 cols = mxGetPr(COLS_IN);
idamnjanovic@70 83
idamnjanovic@70 84 Y_OUT = mxCreateDoubleMatrix(1, colnum, mxREAL);
idamnjanovic@70 85 }
idamnjanovic@70 86 else {
idamnjanovic@70 87 cols = 0;
idamnjanovic@70 88 Y_OUT = mxCreateDoubleMatrix(1, n, mxREAL);
idamnjanovic@70 89 }
idamnjanovic@70 90
idamnjanovic@70 91
idamnjanovic@70 92 /* Assign pointers to the various parameters */
idamnjanovic@70 93 A = mxGetPr(A_IN);
idamnjanovic@70 94 rows = mxGetPr(ROWS_IN);
idamnjanovic@70 95 x = mxGetPr(X_IN);
idamnjanovic@70 96 y = mxGetPr(Y_OUT);
idamnjanovic@70 97
idamnjanovic@70 98
idamnjanovic@70 99 /* check row indices */
idamnjanovic@70 100
idamnjanovic@70 101 row_ids = (mwIndex*)mxMalloc(rownum*sizeof(mwIndex));
idamnjanovic@70 102
idamnjanovic@70 103 for (i=0; i<rownum; ++i) {
idamnjanovic@70 104 row_ids[i] = (mwIndex)(rows[i]+0.1)-1;
idamnjanovic@70 105 if (row_ids[i]<0 || row_ids[i]>=m) {
idamnjanovic@70 106 mexErrMsgTxt("Row index in ROWS is out of range.");
idamnjanovic@70 107 }
idamnjanovic@70 108 }
idamnjanovic@70 109
idamnjanovic@70 110
idamnjanovic@70 111
idamnjanovic@70 112 if (colnumspecified) {
idamnjanovic@70 113
idamnjanovic@70 114 /* check column indices */
idamnjanovic@70 115 col_ids = (mwIndex*)mxMalloc(colnum*sizeof(mwIndex));
idamnjanovic@70 116
idamnjanovic@70 117 for (i=0; i<colnum; ++i) {
idamnjanovic@70 118 col_ids[i] = (mwIndex)(cols[i]+0.1)-1;
idamnjanovic@70 119 if (col_ids[i]<0 || col_ids[i]>=n) {
idamnjanovic@70 120 mexErrMsgTxt("Column index in COLS is out of range.");
idamnjanovic@70 121 }
idamnjanovic@70 122 }
idamnjanovic@70 123
idamnjanovic@70 124 /* Do the actual computation */
idamnjanovic@70 125 for (j=0; j<colnum; ++j) {
idamnjanovic@70 126 for (i=0; i<rownum; ++i) {
idamnjanovic@70 127 y[j] += A[m*col_ids[j]+row_ids[i]]*x[i];
idamnjanovic@70 128 }
idamnjanovic@70 129 }
idamnjanovic@70 130
idamnjanovic@70 131 mxFree(col_ids);
idamnjanovic@70 132 }
idamnjanovic@70 133
idamnjanovic@70 134 else {
idamnjanovic@70 135
idamnjanovic@70 136 /* Do the actual computation */
idamnjanovic@70 137 for (j=0; j<n; ++j) {
idamnjanovic@70 138 for (i=0; i<rownum; ++i) {
idamnjanovic@70 139 y[j] += A[m*j+row_ids[i]]*x[i];
idamnjanovic@70 140 }
idamnjanovic@70 141 }
idamnjanovic@70 142 }
idamnjanovic@70 143
idamnjanovic@70 144
idamnjanovic@70 145 mxFree(row_ids);
idamnjanovic@70 146
idamnjanovic@70 147 return;
idamnjanovic@70 148 }