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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/cephes.h"
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double psi2(int m, int n);
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void
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Serial(int m, int n)
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{
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double p_value1, p_value2, psim0, psim1, psim2, del1, del2;
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psim0 = psi2(m, n);
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psim1 = psi2(m-1, n);
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psim2 = psi2(m-2, n);
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del1 = psim0 - psim1;
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del2 = psim0 - 2.0*psim1 + psim2;
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p_value1 = cephes_igamc(pow(2, m-1)/2, del1/2.0);
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p_value2 = cephes_igamc(pow(2, m-2)/2, del2/2.0);
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fprintf(stats[TEST_SERIAL], "\t\t\t SERIAL TEST\n");
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fprintf(stats[TEST_SERIAL], "\t\t---------------------------------------------\n");
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fprintf(stats[TEST_SERIAL], "\t\t COMPUTATIONAL INFORMATION: \n");
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fprintf(stats[TEST_SERIAL], "\t\t---------------------------------------------\n");
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fprintf(stats[TEST_SERIAL], "\t\t(a) Block length (m) = %d\n", m);
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fprintf(stats[TEST_SERIAL], "\t\t(b) Sequence length (n) = %d\n", n);
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fprintf(stats[TEST_SERIAL], "\t\t(c) Psi_m = %f\n", psim0);
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fprintf(stats[TEST_SERIAL], "\t\t(d) Psi_m-1 = %f\n", psim1);
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fprintf(stats[TEST_SERIAL], "\t\t(e) Psi_m-2 = %f\n", psim2);
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fprintf(stats[TEST_SERIAL], "\t\t(f) Del_1 = %f\n", del1);
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fprintf(stats[TEST_SERIAL], "\t\t(g) Del_2 = %f\n", del2);
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fprintf(stats[TEST_SERIAL], "\t\t---------------------------------------------\n");
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fprintf(stats[TEST_SERIAL], "%s\t\tp_value1 = %f\n", p_value1 < ALPHA ? "FAILURE" : "SUCCESS", p_value1);
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fprintf(results[TEST_SERIAL], "%f\n", p_value1);
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fprintf(stats[TEST_SERIAL], "%s\t\tp_value2 = %f\n\n", p_value2 < ALPHA ? "FAILURE" : "SUCCESS", p_value2);
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fprintf(results[TEST_SERIAL], "%f\n", p_value2);
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}
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double
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psi2(int m, int n)
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{
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int i, j, k, powLen;
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double sum, numOfBlocks;
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unsigned int *P;
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if ( (m == 0) || (m == -1) )
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return 0.0;
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numOfBlocks = n;
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powLen = (int)pow(2, m+1)-1;
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if ( (P = (unsigned int*)calloc(powLen,sizeof(unsigned int)))== NULL ) {
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fprintf(stats[TEST_SERIAL], "Serial Test: Insufficient memory available.\n");
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fflush(stats[TEST_SERIAL]);
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return 0.0;
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}
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for ( i=1; i<powLen-1; i++ )
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P[i] = 0; /* INITIALIZE NODES */
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for ( i=0; i<numOfBlocks; i++ ) { /* COMPUTE FREQUENCY */
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k = 1;
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for ( j=0; j<m; j++ ) {
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if ( epsilon[(i+j)%n] == 0 )
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k *= 2;
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else if ( epsilon[(i+j)%n] == 1 )
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k = 2*k+1;
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}
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P[k-1]++;
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}
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sum = 0.0;
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for ( i=(int)pow(2, m)-1; i<(int)pow(2, m+1)-1; i++ )
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sum += pow(P[i], 2);
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sum = (sum * pow(2, m)/(double)n) - (double)n;
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free(P);
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return sum;
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}
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