fixes
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@ -507,11 +507,11 @@ CV_EXPORTS_W void randn(InputOutputArray dst, InputArray mean, InputArray stddev
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CV_EXPORTS_W void randShuffle(InputOutputArray dst, double iterFactor = 1., RNG* rng = 0);
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//! draws the line segment (pt1, pt2) in the image
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CV_EXPORTS_W void line(CV_IN_OUT InputOutputArray img, Point pt1, Point pt2, const Scalar& color,
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CV_EXPORTS_W void line(InputOutputArray img, Point pt1, Point pt2, const Scalar& color,
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int thickness = 1, int lineType = LINE_8, int shift = 0);
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//! draws the rectangle outline or a solid rectangle with the opposite corners pt1 and pt2 in the image
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CV_EXPORTS_W void rectangle(CV_IN_OUT InputOutputArray img, Point pt1, Point pt2,
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CV_EXPORTS_W void rectangle(InputOutputArray img, Point pt1, Point pt2,
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const Scalar& color, int thickness = 1,
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int lineType = LINE_8, int shift = 0);
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@ -521,18 +521,18 @@ CV_EXPORTS void rectangle(CV_IN_OUT Mat& img, Rect rec,
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int lineType = LINE_8, int shift = 0);
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//! draws the circle outline or a solid circle in the image
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CV_EXPORTS_W void circle(CV_IN_OUT InputOutputArray img, Point center, int radius,
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CV_EXPORTS_W void circle(InputOutputArray img, Point center, int radius,
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const Scalar& color, int thickness = 1,
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int lineType = LINE_8, int shift = 0);
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//! draws an elliptic arc, ellipse sector or a rotated ellipse in the image
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CV_EXPORTS_W void ellipse(CV_IN_OUT InputOutputArray img, Point center, Size axes,
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CV_EXPORTS_W void ellipse(InputOutputArray img, Point center, Size axes,
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double angle, double startAngle, double endAngle,
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const Scalar& color, int thickness = 1,
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int lineType = LINE_8, int shift = 0);
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//! draws a rotated ellipse in the image
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CV_EXPORTS_W void ellipse(CV_IN_OUT InputOutputArray img, const RotatedRect& box, const Scalar& color,
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CV_EXPORTS_W void ellipse(InputOutputArray img, const RotatedRect& box, const Scalar& color,
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int thickness = 1, int lineType = LINE_8);
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//! draws a filled convex polygon in the image
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@ -187,7 +187,8 @@ void BOWImgDescriptorExtractor::compute( InputArray keypointDescriptors, InputOu
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pointIdxsOfClusters->resize(clusterCount);
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}
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Mat( 1, clusterCount, descriptorType(), Scalar::all(0.0) ).copyTo(_imgDescriptor);
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_imgDescriptor.create(1, clusterCount, descriptorType());
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_imgDescriptor.setTo(Scalar::all(0));
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Mat imgDescriptor = _imgDescriptor.getMat();
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@ -176,7 +176,8 @@ void BriefDescriptorExtractor::computeImpl(InputArray image, std::vector<KeyPoin
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//Remove keypoints very close to the border
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KeyPointsFilter::runByImageBorder(keypoints, image.size(), PATCH_SIZE/2 + KERNEL_SIZE/2);
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Mat(Mat::zeros((int)keypoints.size(), bytes_, CV_8U)).copyTo(descriptors);
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descriptors.create((int)keypoints.size(), bytes_, CV_8U);
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descriptors.setTo(Scalar::all(0));
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test_fn_(sum, keypoints, descriptors);
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}
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@ -88,7 +88,7 @@ static inline void _drawKeypoint( InputOutputArray img, const KeyPoint& p, const
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}
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}
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void drawKeypoints( InputArray image, const std::vector<KeyPoint>& keypoints, InputOutputArray& outImage,
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void drawKeypoints( InputArray image, const std::vector<KeyPoint>& keypoints, InputOutputArray outImage,
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const Scalar& _color, int flags )
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{
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if( !(flags & DrawMatchesFlags::DRAW_OVER_OUTIMG) )
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@ -143,7 +143,7 @@ static void _prepareImgAndDrawKeypoints( InputArray img1, const std::vector<KeyP
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outImg = Scalar::all(0);
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outImg1 = outImg( Rect(0, 0, img1size.width, img1size.height) );
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outImg2 = outImg( Rect(img1size.width, 0, img2size.width, img2size.height) );
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printf("%d %d\n", _outImg.size().width, _outImg.size().height);
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if( img1.type() == CV_8U )
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cvtColor( img1, outImg1, COLOR_GRAY2BGR );
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else
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@ -297,7 +297,8 @@ void FREAK::computeImpl( InputArray _image, std::vector<KeyPoint>& keypoints, Ou
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if( !extAll )
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{
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// extract the best comparisons only
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Mat(cv::Mat::zeros((int)keypoints.size(), FREAK_NB_PAIRS/8, CV_8U)).copyTo(_descriptors);
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_descriptors.create((int)keypoints.size(), FREAK_NB_PAIRS/8, CV_8U);
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_descriptors.setTo(Scalar::all(0));
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Mat descriptors = _descriptors.getMat();
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#if CV_SSE2
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__m128i* ptr= (__m128i*) (descriptors.data+(keypoints.size()-1)*descriptors.step[0]);
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@ -416,7 +417,8 @@ void FREAK::computeImpl( InputArray _image, std::vector<KeyPoint>& keypoints, Ou
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}
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else // extract all possible comparisons for selection
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{
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Mat(cv::Mat::zeros((int)keypoints.size(), 128, CV_8U)).copyTo(_descriptors);
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_descriptors.create((int)keypoints.size(), 128, CV_8U);
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_descriptors.setTo(Scalar::all(0));
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Mat descriptors = _descriptors.getMat();
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std::bitset<1024>* ptr = (std::bitset<1024>*) (descriptors.data+(keypoints.size()-1)*descriptors.step[0]);
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