2019-03-05 01:01:38 +01:00
										 
									 
								 
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								/*---------------------------------------------------------------------------*\
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								  FILE........: linreg.c
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								  AUTHOR......: David Rowe
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								  DATE CREATED: April 2015
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								  Linear regression C module based on:
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								    http://stackoverflow.com/questions/5083465/fast-efficient-least-squares-fit-algorithm-in-c
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								  Use:
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								    $ gcc linreg.c -o linreg -D__UNITTEST__ -Wall
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								    $ ./linreg
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								    Then compare yfit results with octave/tlinreg.m
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								\*---------------------------------------------------------------------------*/
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								/*
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								  Copyright (C) 2015 David Rowe
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								  All rights reserved.
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								  This program is free software; you can redistribute it and/or modify
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								  it under the terms of the GNU Lesser General Public License version 2.1, as
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								  published by the Free Software Foundation.  This program is
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								  distributed in the hope that it will be useful, but WITHOUT ANY
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								  WARRANTY; without even the implied warranty of MERCHANTABILITY or
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								  FITNESS FOR A PARTICULAR PURPOSE.  See the GNU General Public
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								  License for more details.
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								  You should have received a copy of the GNU Lesser General Public License
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								  along with this program; if not, see <http://www.gnu.org/licenses/>.
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								*/
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								#include <stdio.h>
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								#include <stdlib.h>
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								#include <math.h>
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								#include "linreg.h"
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											2019-03-05 03:36:04 +01:00
										 
									 
								 
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								#include "comp_prim.h"
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											2019-03-05 01:01:38 +01:00
										 
									 
								 
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								namespace FreeDV
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								{
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								void linreg(COMP *m, COMP *b, float x[], COMP y[], int n)
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								{
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								    float  sumx  = 0.0;         /* sum of x          */
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								    float  sumx2 = 0.0;         /* sum of x^2        */
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								    COMP   sumxy = {0.0,0.0};   /* sum of x * y      */
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								    COMP   sumy  = {0.0,0.0};   /* sum of y          */
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								    COMP   sumy2 = {0.0,0.0};   /* sum of y**2       */
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								    float  denom;
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								    COMP   zero;
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								    int    i;
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								    for (i=0; i<n; i++) {
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								        sumx  += x[i];
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								        sumx2 += x[i]*x[i];
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								        sumxy = cadd(sumxy, fcmult(x[i], y[i]));
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								        sumy  = cadd(sumy, y[i]);
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								        sumy2 = cadd(sumy2, cmult(y[i],y[i]));
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								    }
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								  denom = (n * sumx2 - sumx*sumx);
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								  if (denom == 0) {
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								      /* singular matrix. can't solve the problem */
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								      zero.real = 0.0; zero.imag = 0.0;
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								      *m = zero;
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								      *b = zero;
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								  } else {
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								      *m = fcmult(1.0/denom, cadd(fcmult(n, sumxy), cneg(fcmult(sumx,sumy))));
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								      *b = fcmult(1.0/denom, cadd(fcmult(sumx2,sumy), cneg(fcmult(sumx, sumxy))));
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								  }
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								}
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								#ifdef __UNITTEST__
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								static float x[] = {1, 2, 7, 8};
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								static COMP  y[] = {
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								  {-0.70702,  0.70708},
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								  {-0.77314,  0.63442},
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								  {-0.98083,  0.19511},
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								  {-0.99508,  0.09799}
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								};
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								int main(void) {
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								    float  x1;
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								    COMP   m,b,yfit;
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								    linreg(&m, &b, x, y, sizeof(x)/sizeof(float));
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								    for (x1=1; x1<=8; x1++) {
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								        yfit = cadd(fcmult(x1, m),b);
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								        printf("%f %f\n", yfit.real, yfit.imag);
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								    }
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								    return 0;
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								}
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								#endif
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								} // FreeDV
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