232 lines
6.7 KiB
C
232 lines
6.7 KiB
C
#ifdef _CH_
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#pragma package <opencv>
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#endif
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#define CV_NO_BACKWARD_COMPATIBILITY
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#ifndef _EiC
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#include "cv.h"
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#include "highgui.h"
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#include <stdio.h>
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#include <ctype.h>
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#endif
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IplImage *image = 0, *hsv = 0, *hue = 0, *mask = 0, *backproject = 0, *histimg = 0;
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CvHistogram *hist = 0;
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int backproject_mode = 0;
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int select_object = 0;
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int track_object = 0;
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int show_hist = 1;
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CvPoint origin;
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CvRect selection;
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CvRect track_window;
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CvBox2D track_box;
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CvConnectedComp track_comp;
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int hdims = 16;
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float hranges_arr[] = {0,180};
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float* hranges = hranges_arr;
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int vmin = 10, vmax = 256, smin = 30;
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void on_mouse( int event, int x, int y, int flags, void* param )
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{
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if( !image )
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return;
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if( image->origin )
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y = image->height - y;
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if( select_object )
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{
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selection.x = MIN(x,origin.x);
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selection.y = MIN(y,origin.y);
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selection.width = selection.x + CV_IABS(x - origin.x);
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selection.height = selection.y + CV_IABS(y - origin.y);
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selection.x = MAX( selection.x, 0 );
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selection.y = MAX( selection.y, 0 );
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selection.width = MIN( selection.width, image->width );
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selection.height = MIN( selection.height, image->height );
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selection.width -= selection.x;
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selection.height -= selection.y;
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}
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switch( event )
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{
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case CV_EVENT_LBUTTONDOWN:
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origin = cvPoint(x,y);
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selection = cvRect(x,y,0,0);
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select_object = 1;
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break;
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case CV_EVENT_LBUTTONUP:
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select_object = 0;
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if( selection.width > 0 && selection.height > 0 )
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track_object = -1;
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break;
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}
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}
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CvScalar hsv2rgb( float hue )
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{
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int rgb[3], p, sector;
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static const int sector_data[][3]=
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{{0,2,1}, {1,2,0}, {1,0,2}, {2,0,1}, {2,1,0}, {0,1,2}};
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hue *= 0.033333333333333333333333333333333f;
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sector = cvFloor(hue);
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p = cvRound(255*(hue - sector));
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p ^= sector & 1 ? 255 : 0;
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rgb[sector_data[sector][0]] = 255;
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rgb[sector_data[sector][1]] = 0;
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rgb[sector_data[sector][2]] = p;
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return cvScalar(rgb[2], rgb[1], rgb[0],0);
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}
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int main( int argc, char** argv )
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{
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CvCapture* capture = 0;
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if( argc == 1 || (argc == 2 && strlen(argv[1]) == 1 && isdigit(argv[1][0])))
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capture = cvCaptureFromCAM( argc == 2 ? argv[1][0] - '0' : 0 );
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else if( argc == 2 )
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capture = cvCaptureFromAVI( argv[1] );
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if( !capture )
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{
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fprintf(stderr,"Could not initialize capturing...\n");
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return -1;
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}
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printf( "Hot keys: \n"
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"\tESC - quit the program\n"
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"\tc - stop the tracking\n"
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"\tb - switch to/from backprojection view\n"
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"\th - show/hide object histogram\n"
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"To initialize tracking, select the object with mouse\n" );
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cvNamedWindow( "Histogram", 1 );
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cvNamedWindow( "CamShiftDemo", 1 );
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cvSetMouseCallback( "CamShiftDemo", on_mouse, 0 );
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cvCreateTrackbar( "Vmin", "CamShiftDemo", &vmin, 256, 0 );
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cvCreateTrackbar( "Vmax", "CamShiftDemo", &vmax, 256, 0 );
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cvCreateTrackbar( "Smin", "CamShiftDemo", &smin, 256, 0 );
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for(;;)
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{
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IplImage* frame = 0;
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int i, bin_w, c;
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frame = cvQueryFrame( capture );
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if( !frame )
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break;
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if( !image )
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{
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/* allocate all the buffers */
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image = cvCreateImage( cvGetSize(frame), 8, 3 );
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image->origin = frame->origin;
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hsv = cvCreateImage( cvGetSize(frame), 8, 3 );
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hue = cvCreateImage( cvGetSize(frame), 8, 1 );
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mask = cvCreateImage( cvGetSize(frame), 8, 1 );
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backproject = cvCreateImage( cvGetSize(frame), 8, 1 );
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hist = cvCreateHist( 1, &hdims, CV_HIST_ARRAY, &hranges, 1 );
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histimg = cvCreateImage( cvSize(320,200), 8, 3 );
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cvZero( histimg );
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}
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cvCopy( frame, image, 0 );
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cvCvtColor( image, hsv, CV_BGR2HSV );
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if( track_object )
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{
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int _vmin = vmin, _vmax = vmax;
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cvInRangeS( hsv, cvScalar(0,smin,MIN(_vmin,_vmax),0),
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cvScalar(180,256,MAX(_vmin,_vmax),0), mask );
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cvSplit( hsv, hue, 0, 0, 0 );
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if( track_object < 0 )
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{
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float max_val = 0.f;
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cvSetImageROI( hue, selection );
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cvSetImageROI( mask, selection );
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cvCalcHist( &hue, hist, 0, mask );
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cvGetMinMaxHistValue( hist, 0, &max_val, 0, 0 );
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cvConvertScale( hist->bins, hist->bins, max_val ? 255. / max_val : 0., 0 );
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cvResetImageROI( hue );
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cvResetImageROI( mask );
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track_window = selection;
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track_object = 1;
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cvZero( histimg );
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bin_w = histimg->width / hdims;
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for( i = 0; i < hdims; i++ )
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{
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int val = cvRound( cvGetReal1D(hist->bins,i)*histimg->height/255 );
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CvScalar color = hsv2rgb(i*180.f/hdims);
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cvRectangle( histimg, cvPoint(i*bin_w,histimg->height),
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cvPoint((i+1)*bin_w,histimg->height - val),
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color, -1, 8, 0 );
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}
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}
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cvCalcBackProject( &hue, backproject, hist );
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cvAnd( backproject, mask, backproject, 0 );
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cvCamShift( backproject, track_window,
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cvTermCriteria( CV_TERMCRIT_EPS | CV_TERMCRIT_ITER, 10, 1 ),
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&track_comp, &track_box );
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track_window = track_comp.rect;
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if( backproject_mode )
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cvCvtColor( backproject, image, CV_GRAY2BGR );
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if( !image->origin )
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track_box.angle = -track_box.angle;
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cvEllipseBox( image, track_box, CV_RGB(255,0,0), 3, CV_AA, 0 );
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}
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if( select_object && selection.width > 0 && selection.height > 0 )
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{
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cvSetImageROI( image, selection );
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cvXorS( image, cvScalarAll(255), image, 0 );
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cvResetImageROI( image );
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}
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cvShowImage( "CamShiftDemo", image );
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cvShowImage( "Histogram", histimg );
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c = cvWaitKey(10);
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if( (char) c == 27 )
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break;
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switch( (char) c )
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{
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case 'b':
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backproject_mode ^= 1;
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break;
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case 'c':
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track_object = 0;
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cvZero( histimg );
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break;
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case 'h':
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show_hist ^= 1;
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if( !show_hist )
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cvDestroyWindow( "Histogram" );
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else
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cvNamedWindow( "Histogram", 1 );
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break;
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default:
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;
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}
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}
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cvReleaseCapture( &capture );
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cvDestroyWindow("CamShiftDemo");
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return 0;
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}
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#ifdef _EiC
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main(1,"camshiftdemo.c");
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#endif
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