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@ -8,16 +8,62 @@ using namespace cv; |
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double tracking_internal::computeNCC(const Mat& patch1, const Mat& patch2) |
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{ |
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CV_Assert( patch1.rows == patch2.rows ); |
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CV_Assert( patch1.cols == patch2.cols ); |
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CV_Assert( patch1.rows == patch2.rows, |
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patch1.cols == patch2.cols); |
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int N = patch1.rows * patch1.cols; |
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double s1 = sum(patch1)(0); |
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double s2 = sum(patch2)(0); |
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double n1 = norm(patch1, NORM_L2SQR); |
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double n2 = norm(patch2, NORM_L2SQR); |
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double prod=patch1.dot(patch2); |
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double sq1 = sqrt(std::max(0.0, n1 - 1.0 * s1 * s1 / N)); |
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double sq2 = sqrt(std::max(0.0, n2 - 1.0 * s2 * s2 / N)); |
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return (sq2 == 0) ? sq1 / abs(sq1) : (prod - s1 * s2 / N) / sq1 / sq2; |
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if(N <= 1000 && patch1.type() == CV_8U && patch2.type() == CV_8U) |
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{ |
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unsigned s1 = 0, s2 = 0; |
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unsigned n1 = 0, n2 = 0; |
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unsigned prod = 0; |
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if(patch1.isContinuous() && patch2.isContinuous()) |
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{ |
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const uchar* p1Ptr = patch1.ptr<uchar>(0); |
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const uchar* p2Ptr = patch2.ptr<uchar>(0); |
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for(int j = 0; j < N; j++) |
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{ |
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s1 += p1Ptr[j]; |
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s2 += p2Ptr[j]; |
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n1 += p1Ptr[j]*p1Ptr[j]; |
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n2 += p2Ptr[j]*p2Ptr[j]; |
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prod += p1Ptr[j]*p2Ptr[j]; |
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} |
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} |
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else |
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{ |
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for(int i = 0; i < patch1.rows; i++) |
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{ |
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const uchar* p1Ptr = patch1.ptr<uchar>(i); |
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const uchar* p2Ptr = patch2.ptr<uchar>(i); |
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for(int j = 0; j < patch1.cols; j++) |
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{ |
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s1 += p1Ptr[j]; |
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s2 += p2Ptr[j]; |
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n1 += p1Ptr[j]*p1Ptr[j]; |
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n2 += p2Ptr[j]*p2Ptr[j]; |
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prod += p1Ptr[j]*p2Ptr[j]; |
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} |
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} |
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} |
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double sq1 = sqrt(std::max(0.0, n1 - 1.0 * s1 * s1 / N)); |
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double sq2 = sqrt(std::max(0.0, n2 - 1.0 * s2 * s2 / N)); |
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return (sq2 == 0) ? sq1 / abs(sq1) : (prod - 1.0 * s1 * s2 / N) / sq1 / sq2; |
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} |
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else |
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{ |
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double s1 = sum(patch1)(0); |
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double s2 = sum(patch2)(0); |
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double n1 = norm(patch1, NORM_L2SQR); |
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double n2 = norm(patch2, NORM_L2SQR); |
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double prod=patch1.dot(patch2); |
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double sq1 = sqrt(std::max(0.0, n1 - 1.0 * s1 * s1 / N)); |
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double sq2 = sqrt(std::max(0.0, n2 - 1.0 * s2 * s2 / N)); |
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return (sq2 == 0) ? sq1 / abs(sq1) : (prod - s1 * s2 / N) / sq1 / sq2; |
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} |
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} |
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