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@ -319,8 +319,9 @@ static bool pyopencv_to(PyObject* o, Mat& m, const ArgInfo info) |
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// a) multi-dimensional (ndims > 2) arrays, as well as simpler 1- and 2-dimensional cases
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// a) multi-dimensional (ndims > 2) arrays, as well as simpler 1- and 2-dimensional cases
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// b) transposed arrays, where _strides[] elements go in non-descending order
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// b) transposed arrays, where _strides[] elements go in non-descending order
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// c) flipped arrays, where some of _strides[] elements are negative
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// c) flipped arrays, where some of _strides[] elements are negative
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if( (i == ndims-1 && (size_t)_strides[i] != elemsize) || |
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// the _sizes[i] > 1 is needed to avoid spurious copies when NPY_RELAXED_STRIDES is set
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(i < ndims-1 && _strides[i] < _strides[i+1]) ) |
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if( (i == ndims-1 && _sizes[i] > 1 && (size_t)_strides[i] != elemsize) || |
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(i < ndims-1 && _sizes[i] > 1 && _strides[i] < _strides[i+1]) ) |
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needcopy = true; |
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needcopy = true; |
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} |
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} |
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@ -347,10 +348,21 @@ static bool pyopencv_to(PyObject* o, Mat& m, const ArgInfo info) |
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_strides = PyArray_STRIDES(oarr); |
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_strides = PyArray_STRIDES(oarr); |
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} |
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} |
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for(int i = 0; i < ndims; i++) |
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// Normalize strides in case NPY_RELAXED_STRIDES is set
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size_t default_step = elemsize; |
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for ( int i = ndims - 1; i >= 0; --i ) |
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{ |
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{ |
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size[i] = (int)_sizes[i]; |
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size[i] = (int)_sizes[i]; |
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step[i] = (size_t)_strides[i]; |
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if ( size[i] > 1 ) |
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{ |
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step[i] = (size_t)_strides[i]; |
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default_step = step[i] * size[i]; |
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} |
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else |
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{ |
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step[i] = default_step; |
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default_step *= size[i]; |
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} |
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} |
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} |
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// handle degenerate case
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// handle degenerate case
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