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/*------------------------------------------------------------------------------------------*\
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/*------------------------------------------------------------------------------------------*\
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   This file contains material supporting chapter 9 of the cookbook:  
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   This file contains material supporting chapter 9 of the cookbook:  
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   Computer Vision Programming using the OpenCV Library.
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 Computer Vision Programming using the OpenCV Library.
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   by Robert Laganiere, Packt Publishing, 2011.
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 by Robert Laganiere, Packt Publishing, 2011.
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   This program is free software; permission is hereby granted to use, copy, modify,
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 This program is free software; permission is hereby granted to use, copy, modify,
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   and distribute this source code, or portions thereof, for any purpose, without fee,
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 and distribute this source code, or portions thereof, for any purpose, without fee,
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   subject to the restriction that the copyright notice may not be removed
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 subject to the restriction that the copyright notice may not be removed
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   or altered from any source or altered source distribution.
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 or altered from any source or altered source distribution.
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   The software is released on an as-is basis and without any warranties of any kind.
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 The software is released on an as-is basis and without any warranties of any kind.
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   In particular, the software is not guaranteed to be fault-tolerant or free from failure.
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 In particular, the software is not guaranteed to be fault-tolerant or free from failure.
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   The author disclaims all warranties with regard to this software, any use,
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 The author disclaims all warranties with regard to this software, any use,
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   and any consequent failure, is purely the responsibility of the user.
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 and any consequent failure, is purely the responsibility of the user.
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   Copyright (C) 2010-2011 Robert Laganiere, www.laganiere.name
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 Copyright (C) 2010-2011 Robert Laganiere, www.laganiere.name
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\*------------------------------------------------------------------------------------------*/
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 \*------------------------------------------------------------------------------------------*/
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#ifndef CAMERACALIBRATOR_H
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#ifndef CAMERACALIBRATOR_H
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#define CAMERACALIBRATOR_H
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#define CAMERACALIBRATOR_H
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#include <vector>
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#include <vector>
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#include <opencv2/core/core.hpp>
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#include <opencv2/core/core.hpp>
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#include "opencv2/imgproc/imgproc.hpp"
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#include "opencv2/imgproc/imgproc.hpp"
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#include "opencv2/calib3d/calib3d.hpp"
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#include "opencv2/calib3d/calib3d.hpp"
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#include <opencv2/highgui/highgui.hpp>
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#include <opencv2/highgui/highgui.hpp>
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class CameraCalibrator {
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class CameraCalibrator
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{
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        // input points
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  // input points
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    std::vector<std::vector<cv::Point3f>> objectPoints;
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  std::vector<std::vector<cv::Point3f> > objectPoints;
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    std::vector<std::vector<cv::Point2f>> imagePoints;
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  std::vector<std::vector<cv::Point2f> > imagePoints;
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    // output Matrices
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  // output Matrices
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    cv::Mat cameraMatrix;
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  cv::Mat cameraMatrix;
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    cv::Mat distCoeffs;
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  cv::Mat distCoeffs;
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        // flag to specify how calibration is done
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  // flag to specify how calibration is done
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        int flag;
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  int flag;
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        // used in image undistortion 
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  // used in image undistortion
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    cv::Mat map1,map2;
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  cv::Mat map1, map2;
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        bool mustInitUndistort;
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  bool mustInitUndistort;
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  public:
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public:
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  CameraCalibrator() :
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        CameraCalibrator() : flag(0), mustInitUndistort(true) {};
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      flag(0), mustInitUndistort(true)
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  {
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  }
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  ;
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        // Open the chessboard images and extract corner points
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  // Open the chessboard images and extract corner points
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  int
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        int addChessboardPoints(const std::vector<std::string>& filelist, cv::Size & boardSize);
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  addChessboardPoints(const std::vector<std::string>& filelist,
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      cv::Size & boardSize);
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        // Add scene points and corresponding image points
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  // Add scene points and corresponding image points
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  void
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    void addPoints(const std::vector<cv::Point2f>& imageCorners, const std::vector<cv::Point3f>& objectCorners);
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  addPoints(const std::vector<cv::Point2f>& imageCorners,
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      const std::vector<cv::Point3f>& objectCorners);
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        // Calibrate the camera
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  // Calibrate the camera
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  double
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        double calibrate(cv::Size &imageSize);
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  calibrate(cv::Size imageSize);
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    // Set the calibration flag
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  // Set the calibration flag
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  void
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    void setCalibrationFlag(bool radial8CoeffEnabled=false, bool tangentialParamEnabled=false);
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  setCalibrationFlag(bool radial8CoeffEnabled = false,
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      bool tangentialParamEnabled = false);
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        // Remove distortion in an image (after calibration)
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  // Remove distortion in an image (after calibration)
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  cv::Mat
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        cv::Mat CameraCalibrator::remap(const cv::Mat &image);
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  remap(const cv::Mat &image);
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    // Getters
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  // Getters
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  cv::Mat
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  getCameraMatrix()
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  {
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    cv::Mat getCameraMatrix() { return cameraMatrix; }
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    return cameraMatrix;
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  }
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  cv::Mat
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  getDistCoeffs()
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  {
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    cv::Mat getDistCoeffs()   { return distCoeffs; }
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    return distCoeffs;
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  }
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};
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};
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#endif // CAMERACALIBRATOR_H
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#endif // CAMERACALIBRATOR_H