added overloaded variants of findHomography & findFundamentalMat for backward compatibility
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@ -442,10 +442,13 @@ enum
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};
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//! computes the best-fit perspective transformation mapping srcPoints to dstPoints.
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CV_EXPORTS_W Mat findHomography( const InputArray& srcPoints,
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const InputArray& dstPoints,
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CV_EXPORTS_W Mat findHomography( const InputArray& srcPoints, const InputArray& dstPoints,
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int method=0, double ransacReprojThreshold=3,
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OutputArray mask=OutputArray());
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//! variant of findHomography for backward compatibility
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CV_EXPORTS Mat findHomography( const InputArray& srcPoints, const InputArray& dstPoints,
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OutputArray mask, int method=0, double ransacReprojThreshold=3);
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//! Computes RQ decomposition of 3x3 matrix
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CV_EXPORTS_W Vec3d RQDecomp3x3( const InputArray& src, OutputArray mtxR, OutputArray mtxQ,
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@ -640,6 +643,11 @@ CV_EXPORTS_W Mat findFundamentalMat( const InputArray& points1, const InputArray
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double param1=3., double param2=0.99,
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OutputArray mask=OutputArray());
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//! variant of findFundamentalMat for backward compatibility
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CV_EXPORTS Mat findFundamentalMat( const InputArray& points1, const InputArray& points2,
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OutputArray mask, int method=FM_RANSAC,
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double param1=3., double param2=0.99);
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//! finds coordinates of epipolar lines corresponding the specified points
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CV_EXPORTS void computeCorrespondEpilines( const InputArray& points1,
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int whichImage, const InputArray& F,
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@ -1065,7 +1065,13 @@ cv::Mat cv::findHomography( const InputArray& _points1, const InputArray& _point
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H = Scalar(0);
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return H;
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}
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cv::Mat cv::findHomography( const InputArray& _points1, const InputArray& _points2,
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OutputArray _mask, int method, double ransacReprojThreshold )
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{
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return cv::findHomography(_points1, _points2, method, ransacReprojThreshold, _mask);
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}
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cv::Mat cv::findFundamentalMat( const InputArray& _points1, const InputArray& _points2,
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int method, double param1, double param2,
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OutputArray _mask )
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@ -1089,6 +1095,13 @@ cv::Mat cv::findFundamentalMat( const InputArray& _points1, const InputArray& _p
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return F;
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}
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cv::Mat cv::findFundamentalMat( const InputArray& _points1, const InputArray& _points2,
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OutputArray _mask, int method, double param1, double param2 )
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{
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return cv::findFundamentalMat(_points1, _points2, method, param1, param2, _mask);
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}
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void cv::computeCorrespondEpilines( const InputArray& _points, int whichImage,
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const InputArray& _Fmat, OutputArray _lines )
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{
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