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Move cv::RotatedRect
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@ -524,33 +524,6 @@ typedef Vec<double, 4> Vec4d;
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typedef Vec<double, 6> Vec6d;
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/*!
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The rotated 2D rectangle.
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The class represents rotated (i.e. not up-right) rectangles on a plane.
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Each rectangle is described by the center point (mass center), length of each side
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(represented by cv::Size2f structure) and the rotation angle in degrees.
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*/
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class CV_EXPORTS RotatedRect
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{
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public:
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//! various constructors
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RotatedRect();
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RotatedRect(const Point2f& center, const Size2f& size, float angle);
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RotatedRect(const CvBox2D& box);
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//! returns 4 vertices of the rectangle
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void points(Point2f pts[]) const;
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//! returns the minimal up-right rectangle containing the rotated rectangle
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Rect boundingRect() const;
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//! conversion to the old-style CvBox2D structure
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operator CvBox2D() const;
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Point2f center; //< the rectangle mass center
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Size2f size; //< width and height of the rectangle
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float angle; //< the rotation angle. When the angle is 0, 90, 180, 270 etc., the rectangle becomes an up-right rectangle.
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};
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//////////////////////////////// Scalar_ ///////////////////////////////
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/*!
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@ -1884,13 +1884,7 @@ template<typename _Tp> inline bool Point_<_Tp>::inside( const Rect_<_Tp>& r ) co
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inline RotatedRect::RotatedRect() { angle = 0; }
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inline RotatedRect::RotatedRect(const Point2f& _center, const Size2f& _size, float _angle)
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: center(_center), size(_size), angle(_angle) {}
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inline RotatedRect::RotatedRect(const CvBox2D& box)
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: center(box.center), size(box.size), angle(box.angle) {}
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inline RotatedRect::operator CvBox2D() const
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{
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CvBox2D box; box.center = center; box.size = size; box.angle = angle;
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return box;
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}
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//////////////////////////////// Scalar_ ///////////////////////////////
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@ -331,6 +331,38 @@ public:
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*/
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typedef Rect_<int> Rect;
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///////////////////////////// RotatedRect /////////////////////////////
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/*!
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The rotated 2D rectangle.
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The class represents rotated (i.e. not up-right) rectangles on a plane.
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Each rectangle is described by the center point (mass center), length of each side
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(represented by cv::Size2f structure) and the rotation angle in degrees.
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*/
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class CV_EXPORTS RotatedRect
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{
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public:
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//! various constructors
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RotatedRect();
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RotatedRect(const Point2f& center, const Size2f& size, float angle);
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//! returns 4 vertices of the rectangle
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void points(Point2f pts[]) const;
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//! returns the minimal up-right rectangle containing the rotated rectangle
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Rect boundingRect() const;
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Point2f center; //< the rectangle mass center
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Size2f size; //< width and height of the rectangle
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float angle; //< the rotation angle. When the angle is 0, 90, 180, 270 etc., the rectangle becomes an up-right rectangle.
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};
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} // cv
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#endif //__OPENCV_CORE_TYPES_HPP__
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@ -955,6 +955,12 @@ typedef struct CvBox2D
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CvSize2D32f size; /* Box width and length. */
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float angle; /* Angle between the horizontal axis */
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/* and the first side (i.e. length) in degrees */
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#ifdef __cplusplus
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CvBox2D(CvPoint2D32f c = CvPoint2D32f(), CvSize2D32f s = CvSize2D32f(), float a = 0) : center(c), size(s), angle(a) {}
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CvBox2D(const cv::RotatedRect& rr) : center(rr.center), size(rr.size), angle(rr.angle) {}
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operator cv::RotatedRect() const { return cv::RotatedRect(center, size, angle); }
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#endif
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}
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CvBox2D;
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