249 lines
6.2 KiB
C
249 lines
6.2 KiB
C
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/* @(#) Calculates the spatial grey level differnce
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* @(#) matrix of an image and some of its
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* @(#) features. The 256x1 difference matrix of im is held by m
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* @(#) There should be enough margin around the box so the (dx,dy) can
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* @(#) access neighbouring pixels outside the box
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* @(#)
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* @(#) Usage:
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* @(#) int im_glds_matrix(im, m, xpos, ypos, xsize, ysize, dx, dy)
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* @(#) IMAGE *im, *m;
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* @(#) int xpos, ypos, xsize, ysize; location of the box within im
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* @(#) int dx, dy; displacements
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* @(#)
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* @(#) int im_glds_asm(m, asmoment)
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* @(#) IMAGE *m;
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* @(#) double *asmoment;
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* @(#)
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* @(#) int im_glds_contrast(m, contrast)
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* @(#) IMAGE *m;
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* @(#) double *contrast;
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* @(#)
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* @(#) int im_glds_entropy(m, entropy)
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* @(#) IMAGE *m;
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* @(#) double *entropy;
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* @(#)
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* @(#) int im_glds_mean(m, mean)
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* @(#) IMAGE *m;
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* @(#) double *mean;
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* @(#)
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* @(#) All functions return 0 on success and -1 on error
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*
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* Copyright: N. Dessipris, 1991
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* Written on: 2/12/1991
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* Modified on:
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* 22/7/93 JC
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* - im_incheck() added
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*/
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/*
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This file is part of VIPS.
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VIPS 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 as published by
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the Free Software Foundation; either version 2 of the License, or
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(at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU Lesser General Public 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, write to the Free Software
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Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
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*/
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/*
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These files are distributed with VIPS - http://www.vips.ecs.soton.ac.uk
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*/
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#ifdef HAVE_CONFIG_H
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#include <config.h>
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#endif /*HAVE_CONFIG_H*/
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#include <vips/intl.h>
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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 <vips/vips.h>
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#ifdef WITH_DMALLOC
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#include <dmalloc.h>
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#endif /*WITH_DMALLOC*/
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/* Keep the greylevel difference matrix as a 256x1 double image */
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int
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im_glds_matrix( IMAGE *im, IMAGE *m,
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int xpos, int ypos, int xsize, int ysize, int dx, int dy )
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{
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PEL *in, *cpin;
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int *b, *pb;
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double *l, *pl;
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int x, y;
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int ofs;
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int tmp;
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int norm;
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if (im_iocheck(im, m) == -1)
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{ im_errormsg("im_glds_matrix: im_iocheck failed"); return(-1);}
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if ((im->Bands != 1)||(im->Bbits != IM_BBITS_BYTE)||(im->BandFmt != IM_BANDFMT_UCHAR))
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{ im_errormsg("im_glds_matrix: Wrong input"); return(-1); }
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if ( (xpos + xsize + dx > im->Xsize)|| (ypos + ysize + dy > im->Ysize) )
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{ im_errormsg("im_glds_matrix: wrong args"); return(-1); }
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if (im_cp_desc(m, im) == -1)
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{ im_errormsg("im_glds_matrix: im_cp_desc failed"); return(-1);}
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m->Xsize = 256; m->Ysize = 1;
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m->Bbits = IM_BBITS_DOUBLE; m->BandFmt = IM_BANDFMT_DOUBLE;
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m->Type = IM_TYPE_B_W;
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if (im_setupout(m) == -1)
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{ im_errormsg("im_glds_matrix: im_setupout failed");return(-1);}
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b = (int *)calloc( (unsigned)m->Xsize, sizeof(int) );
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l = (double *)calloc( (unsigned)m->Xsize, sizeof(double));
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if ( (b == NULL) || (l == NULL) )
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{ im_errormsg("im_glds_matrix: calloc failed"); return(-1); }
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in = (PEL*)im->data;
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in += ( ypos * im->Xsize + xpos );
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ofs = dy * im->Xsize + dx;
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for ( y=0; y<ysize; y++ )
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{
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cpin = in;
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in += im->Xsize;
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for ( x=0; x<xsize; x++ )
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{
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tmp = abs((int)*cpin - (int)(*(cpin+ofs)));
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pb = (b + tmp);
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(*pb)++;
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cpin++;
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}
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}
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norm = xsize * ysize;
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pb = b;
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pl = l;
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for (x=0; x<m->Xsize; x++)
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*pl++ = ((double)(*pb++))/(double)norm;
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if (im_writeline( 0, m, (PEL *) l ) == -1)
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{im_errormsg("im_glds_matrix: im_writeline failed");return(-1);}
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free((char*)b); free((char*)l);
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return(0);
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}
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/* @(#) Calculates the asmoment of the sglds matrix held by m
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*/
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int
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im_glds_asm( IMAGE *m, double *asmoment )
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{
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double temp, tmpasm, *in;
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int i;
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if( im_incheck( m ) )
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return( -1 );
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if (m->Xsize != 256 || m->Ysize != 1 ||
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m->Bands != 1 || m->BandFmt != IM_BANDFMT_DOUBLE)
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{im_errormsg("im_glds_asm: unable to accept input");return(-1);}
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tmpasm = 0.0;
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in = (double*)m->data;
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for(i=0; i<m->Xsize; i++)
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{
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temp = *in++;
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tmpasm += (temp*temp);
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}
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*asmoment = tmpasm;
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return(0);
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}
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/* @(#) Calculates the contrast of the coocurence matrix passed in buffer
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*/
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int
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im_glds_contrast( IMAGE *m, double *contrast )
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{
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double tmpcon, *in;
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int i;
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if( im_incheck( m ) )
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return( -1 );
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if (m->Xsize != 256 || m->Ysize != 1 ||
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m->Bands != 1 || m->BandFmt != IM_BANDFMT_DOUBLE)
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{ im_errormsg("im_glds_contrast: wrong input"); return(-1); }
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tmpcon = 0.0;
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in = (double*)m->data;
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for(i=0; i<m->Xsize; i++)
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{
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tmpcon += ( ((double)i)*((double)i)*(*in) );
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in++;
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}
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*contrast = tmpcon;
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return(0);
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}
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/* @(#) Calculates the entropy of the glds vector passed in buffer
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* @(#) Function returns the entropy based on log base 2.
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*/
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int
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im_glds_entropy( IMAGE *m, double *entropy )
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{
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double tmpent, dtemp, *in;
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int i;
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if( im_incheck( m ) )
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return( -1 );
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if (m->Xsize != 256 || m->Ysize != 1 ||
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m->Bands != 1 || m->BandFmt != IM_BANDFMT_DOUBLE)
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{ im_errormsg("im_glds_entropy: wrong input"); return(-1); }
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tmpent = 0.0;
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in = (double*)m->data;
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for(i=0; i<m->Xsize; i++)
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{
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if(*in != 0)
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{
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dtemp = *in;
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tmpent += (dtemp*log10(dtemp));
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}
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in++;
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}
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*entropy = ((-1)*tmpent/log10(2.0));
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return(0);
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}
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/* @(#) Calculates the mean of the sglds matrix passed in m
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*/
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int
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im_glds_mean( IMAGE *m, double *mean )
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{
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double tmpmean, *in;
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int i;
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if( im_incheck( m ) )
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return( -1 );
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if (m->Xsize != 256 || m->Ysize != 1 ||
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m->Bands != 1 || m->BandFmt != IM_BANDFMT_DOUBLE)
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{ im_errormsg("im_glds_mean: wrong input"); return(-1); }
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tmpmean = 0.0;
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in = (double*)m->data;
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for(i=0; i<m->Xsize; i++)
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{
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tmpmean += ( ((double)i)*(*in) );
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in++;
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}
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tmpmean = tmpmean/((double)m->Xsize);
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*mean = tmpmean;
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return(0);
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}
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