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@ -191,8 +191,8 @@ public: |
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* If only a roi needs to be selected, use |
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* lsd_ptr->detect(image(roi), ..., lines); |
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* lines += Scalar(roi.x, roi.y, roi.x, roi.y); |
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* @param _lines Return: A vector of Vec4i elements specifying the beginning and ending point of a line. |
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* Where Vec4i is (x1, y1, x2, y2), point 1 is the start, point 2 - end. |
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* @param _lines Return: A vector of Vec4i or Vec4f elements specifying the beginning and ending point of a line. |
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* Where Vec4i/Vec4f is (x1, y1, x2, y2), point 1 is the start, point 2 - end. |
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* Returned lines are strictly oriented depending on the gradient. |
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* @param width Return: Vector of widths of the regions, where the lines are found. E.g. Width of line. |
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* @param prec Return: Vector of precisions with which the lines are found. |
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@ -286,8 +286,8 @@ private: |
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/**
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* Detect lines in the whole input image. |
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* |
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* @param lines Return: A vector of Vec4i elements specifying the beginning and ending point of a line. |
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* Where Vec4i is (x1, y1, x2, y2), point 1 is the start, point 2 - end. |
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* @param lines Return: A vector of Vec4f elements specifying the beginning and ending point of a line. |
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* Where Vec4f is (x1, y1, x2, y2), point 1 is the start, point 2 - end. |
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* Returned lines are strictly oriented depending on the gradient. |
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* @param widths Return: Vector of widths of the regions, where the lines are found. E.g. Width of line. |
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* @param precisions Return: Vector of precisions with which the lines are found. |
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@ -297,7 +297,7 @@ private: |
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* * 0 corresponds to 1 mean false alarm |
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* * 1 corresponds to 0.1 mean false alarms |
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*/ |
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void flsd(std::vector<Vec4i>& lines, |
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void flsd(std::vector<Vec4f>& lines, |
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std::vector<double>& widths, std::vector<double>& precisions, |
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std::vector<double>& nfas); |
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@ -418,7 +418,7 @@ void LineSegmentDetectorImpl::detect(InputArray _image, OutputArray _lines, |
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// Convert image to double
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img.convertTo(image, CV_64FC1); |
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std::vector<Vec4i> lines; |
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std::vector<Vec4f> lines; |
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std::vector<double> w, p, n; |
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w_needed = _width.needed(); |
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p_needed = _prec.needed(); |
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@ -435,7 +435,7 @@ void LineSegmentDetectorImpl::detect(InputArray _image, OutputArray _lines, |
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if(n_needed) Mat(n).copyTo(_nfa); |
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} |
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void LineSegmentDetectorImpl::flsd(std::vector<Vec4i>& lines, |
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void LineSegmentDetectorImpl::flsd(std::vector<Vec4f>& lines, |
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std::vector<double>& widths, std::vector<double>& precisions, |
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std::vector<double>& nfas) |
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{ |
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@ -518,7 +518,7 @@ void LineSegmentDetectorImpl::flsd(std::vector<Vec4i>& lines, |
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} |
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//Store the relevant data
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lines.push_back(Vec4i(int(rec.x1), int(rec.y1), int(rec.x2), int(rec.y2))); |
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lines.push_back(Vec4f(float(rec.x1), float(rec.y1), float(rec.x2), float(rec.y2))); |
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if(w_needed) widths.push_back(rec.width); |
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if(p_needed) precisions.push_back(rec.p); |
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if(n_needed && doRefine >= LSD_REFINE_ADV) nfas.push_back(log_nfa); |
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@ -1181,9 +1181,9 @@ void LineSegmentDetectorImpl::drawSegments(InputOutputArray _image, InputArray l |
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// Draw segments
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for(int i = 0; i < N; ++i) |
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{ |
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const Vec4i& v = _lines.at<Vec4i>(i); |
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Point b(v[0], v[1]); |
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Point e(v[2], v[3]); |
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const Vec4f& v = _lines.at<Vec4f>(i); |
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Point2f b(v[0], v[1]); |
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Point2f e(v[2], v[3]); |
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line(_image.getMatRef(), b, e, Scalar(0, 0, 255), 1); |
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} |
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} |
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@ -1208,14 +1208,14 @@ int LineSegmentDetectorImpl::compareSegments(const Size& size, InputArray lines1 |
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// Draw segments
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for(int i = 0; i < N1; ++i) |
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{ |
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Point b(_lines1.at<Vec4i>(i)[0], _lines1.at<Vec4i>(i)[1]); |
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Point e(_lines1.at<Vec4i>(i)[2], _lines1.at<Vec4i>(i)[3]); |
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Point2f b(_lines1.at<Vec4f>(i)[0], _lines1.at<Vec4f>(i)[1]); |
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Point2f e(_lines1.at<Vec4f>(i)[2], _lines1.at<Vec4f>(i)[3]); |
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line(I1, b, e, Scalar::all(255), 1); |
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} |
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for(int i = 0; i < N2; ++i) |
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{ |
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Point b(_lines2.at<Vec4i>(i)[0], _lines2.at<Vec4i>(i)[1]); |
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Point e(_lines2.at<Vec4i>(i)[2], _lines2.at<Vec4i>(i)[3]); |
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Point2f b(_lines2.at<Vec4f>(i)[0], _lines2.at<Vec4f>(i)[1]); |
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Point2f e(_lines2.at<Vec4f>(i)[2], _lines2.at<Vec4f>(i)[3]); |
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line(I2, b, e, Scalar::all(255), 1); |
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} |
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