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/*
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* Portions Copyright (c) 2009 Nokia Corporation and/or its subsidiary(-ies).
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* All rights reserved.
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* This component and the accompanying materials are made available
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* under the terms of "Eclipse Public License v1.0"
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* which accompanies this distribution, and is available
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* at the URL "http://www.eclipse.org/legal/epl-v10.html".
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*
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* Initial Contributors:
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* Nokia Corporation - initial contribution.
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*
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* Contributors:
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*
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* Description:
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* The original NIST Statistical Test Suite code is placed in public domain.
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* (http://csrc.nist.gov/groups/ST/toolkit/rng/documentation_software.html)
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*
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* This software was developed at the National Institute of Standards and Technology by
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* employees of the Federal Government in the course of their official duties. Pursuant
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* to title 17 Section 105 of the United States Code this software is not subject to
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* copyright protection and is in the public domain. The NIST Statistical Test Suite is
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* an experimental system. NIST assumes no responsibility whatsoever for its use by other
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* parties, and makes no guarantees, expressed or implied, about its quality, reliability,
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* or any other characteristic. We would appreciate acknowledgment if the software is used.
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*/
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#include "openc.h"
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#include "../include/externs.h"
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#include "../include/matrix.h"
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/* * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * *
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R A N K A L G O R I T H M R O U T I N E S
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* * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * */
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#define MATRIX_FORWARD_ELIMINATION 0
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#define MATRIX_BACKWARD_ELIMINATION 1
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int
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computeRank(int M, int Q, BitSequence **matrix)
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{
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int i, rank, m=MIN(M,Q);
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/* FORWARD APPLICATION OF ELEMENTARY ROW OPERATIONS */
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for ( i=0; i<m-1; i++ ) {
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if ( matrix[i][i] == 1 )
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perform_elementary_row_operations(MATRIX_FORWARD_ELIMINATION, i, M, Q, matrix);
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else { /* matrix[i][i] = 0 */
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if ( find_unit_element_and_swap(MATRIX_FORWARD_ELIMINATION, i, M, Q, matrix) == 1 )
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perform_elementary_row_operations(MATRIX_FORWARD_ELIMINATION, i, M, Q, matrix);
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}
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}
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/* BACKWARD APPLICATION OF ELEMENTARY ROW OPERATIONS */
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for ( i=m-1; i>0; i-- ) {
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if ( matrix[i][i] == 1 )
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perform_elementary_row_operations(MATRIX_BACKWARD_ELIMINATION, i, M, Q, matrix);
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else { /* matrix[i][i] = 0 */
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if ( find_unit_element_and_swap(MATRIX_BACKWARD_ELIMINATION, i, M, Q, matrix) == 1 )
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perform_elementary_row_operations(MATRIX_BACKWARD_ELIMINATION, i, M, Q, matrix);
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}
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}
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rank = determine_rank(m, M, Q, matrix);
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return rank;
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}
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void
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perform_elementary_row_operations(int flag, int i, int M, int Q, BitSequence **A)
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{
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int j, k;
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if ( flag == MATRIX_FORWARD_ELIMINATION ) {
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for ( j=i+1; j<M; j++ )
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if ( A[j][i] == 1 )
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for ( k=i; k<Q; k++ )
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A[j][k] = (BitSequence)((A[j][k] + A[i][k]) % 2);
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}
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else {
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for ( j=i-1; j>=0; j-- )
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if ( A[j][i] == 1 )
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for ( k=0; k<Q; k++ )
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A[j][k] = (BitSequence)((A[j][k] + A[i][k]) % 2);
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}
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}
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int
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find_unit_element_and_swap(int flag, int i, int M, int Q, BitSequence **A)
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{
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int index, row_op=0;
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if ( flag == MATRIX_FORWARD_ELIMINATION ) {
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index = i+1;
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while ( (index < M) && (A[index][i] == 0) )
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index++;
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if ( index < M )
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row_op = swap_rows(i, index, Q, A);
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}
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else {
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index = i-1;
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while ( (index >= 0) && (A[index][i] == 0) )
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index--;
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if ( index >= 0 )
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row_op = swap_rows(i, index, Q, A);
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}
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return row_op;
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}
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int
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swap_rows(int i, int index, int Q, BitSequence **A)
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{
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int p;
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BitSequence temp;
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for ( p=0; p<Q; p++ ) {
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temp = A[i][p];
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A[i][p] = A[index][p];
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A[index][p] = temp;
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}
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return 1;
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}
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int
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determine_rank(int m, int M, int Q, BitSequence **A)
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{
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int i, j, rank, allZeroes;
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/* DETERMINE RANK, THAT IS, COUNT THE NUMBER OF NONZERO ROWS */
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rank = m;
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for ( i=0; i<M; i++ ) {
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allZeroes = 1;
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for ( j=0; j<Q; j++) {
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if ( A[i][j] == 1 ) {
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allZeroes = 0;
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break;
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}
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}
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if ( allZeroes == 1 )
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rank--;
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}
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return rank;
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}
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BitSequence**
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create_matrix(int M, int Q)
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{
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int i;
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BitSequence **matrix;
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if ( (matrix = (BitSequence **) calloc(M, sizeof(BitSequence *))) == NULL ) {
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printf("ERROR IN FUNCTION create_matrix: Insufficient memory available.\n");
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return NULL;
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}
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else {
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for ( i=0; i<M; i++ ) {
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if ( (matrix[i] = (unsigned char*)calloc(Q, sizeof(BitSequence))) == NULL ) {
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printf("ERROR IN FUNCTION create_matrix: Insufficient memory for %dx%d matrix.\n", M, M);
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return NULL;
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}
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}
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return matrix;
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}
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}
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void
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def_matrix(int M, int Q, BitSequence **m,int k)
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{
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int i,j;
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for ( i=0; i<M; i++ )
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for ( j=0; j<Q; j++ )
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m[i][j] = epsilon[k*(M*Q)+j+i*M];
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}
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void
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delete_matrix(int M, BitSequence **matrix)
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{
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int i;
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for ( i=0; i<M; i++ )
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free(matrix[i]);
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free(matrix);
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}
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