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https://github.com/opencv/opencv.git
synced 2024-11-24 19:20:28 +08:00
got rid of Blob and BlobShape completely; use cv::Mat and std::vector<int> instead
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@ -270,6 +270,17 @@ std::ostream& operator << (std::ostream& out, const Rect_<_Tp>& rect)
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return out << "[" << rect.width << " x " << rect.height << " from (" << rect.x << ", " << rect.y << ")]";
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}
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static inline std::ostream& operator << (std::ostream& out, const MatSize& msize)
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{
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int i, dims = msize.p[-1];
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for( i = 0; i < dims; i++ )
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{
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out << msize.p[i];
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if( i < dims-1 )
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out << " x ";
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}
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return out;
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}
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#endif // OPENCV_NOSTL
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} // cv
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@ -1215,6 +1215,9 @@ public:
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/** @overload */
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Mat reshape(int cn, int newndims, const int* newsz) const;
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/** @overload */
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Mat reshape(int cn, const std::vector<int>& newshape) const;
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/** @brief Transposes a matrix.
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The method performs matrix transposition by means of matrix expressions. It does not perform the
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@ -1717,6 +1720,12 @@ public:
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*/
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size_t total() const;
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/** @brief Returns the total number of array elements.
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The method returns the number of elements within a certain sub-array slice with startDim <= dim < endDim
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*/
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size_t total(int startDim, int endDim=INT_MAX) const;
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//! returns N if the matrix is 1-channel (N x ptdim) or ptdim-channel (1 x N) or (N x 1); negative number otherwise
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int checkVector(int elemChannels, int depth=-1, bool requireContinuous=true) const;
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@ -807,6 +807,17 @@ size_t Mat::total() const
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return p;
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}
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inline
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size_t Mat::total(int startDim, int endDim) const
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{
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CV_Assert( 0 <= startDim && startDim <= endDim);
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size_t p = 1;
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int endDim_ = endDim <= dims ? endDim : dims;
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for( int i = startDim; i < endDim_; i++ )
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p *= size[i];
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return p;
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}
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inline
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uchar* Mat::ptr(int y)
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{
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@ -1052,12 +1052,20 @@ Mat Mat::reshape(int new_cn, int new_rows) const
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int cn = channels();
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Mat hdr = *this;
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if( dims > 2 && new_rows == 0 && new_cn != 0 && size[dims-1]*cn % new_cn == 0 )
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if( dims > 2 )
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{
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hdr.flags = (hdr.flags & ~CV_MAT_CN_MASK) | ((new_cn-1) << CV_CN_SHIFT);
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hdr.step[dims-1] = CV_ELEM_SIZE(hdr.flags);
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hdr.size[dims-1] = hdr.size[dims-1]*cn / new_cn;
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return hdr;
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if( new_rows == 0 && new_cn != 0 && size[dims-1]*cn % new_cn == 0 )
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{
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hdr.flags = (hdr.flags & ~CV_MAT_CN_MASK) | ((new_cn-1) << CV_CN_SHIFT);
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hdr.step[dims-1] = CV_ELEM_SIZE(hdr.flags);
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hdr.size[dims-1] = hdr.size[dims-1]*cn / new_cn;
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return hdr;
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}
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if( new_rows > 0 )
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{
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int sz[] = { new_rows, (int)(total()/new_rows) };
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return reshape(new_cn, 2, sz);
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}
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}
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CV_Assert( dims <= 2 );
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@ -4482,6 +4490,18 @@ Mat Mat::reshape(int _cn, int _newndims, const int* _newsz) const
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return Mat();
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}
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Mat Mat::reshape(int _cn, const std::vector<int>& _newshape) const
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{
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if(_newshape.empty())
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{
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CV_Assert(empty());
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return *this;
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}
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return reshape(_cn, (int)_newshape.size(), &_newshape[0]);
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}
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NAryMatIterator::NAryMatIterator()
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: arrays(0), planes(0), ptrs(0), narrays(0), nplanes(0), size(0), iterdepth(0), idx(0)
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{
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