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			668 lines
		
	
	
		
			24 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
			
		
		
	
	
			668 lines
		
	
	
		
			24 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
| /***************************************************************************
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|  * Copyright (c) Johan Mabille, Sylvain Corlay and Wolf Vollprecht          *
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|  * Copyright (c) QuantStack                                                 *
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|  *                                                                          *
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|  * Distributed under the terms of the BSD 3-Clause License.                 *
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|  *                                                                          *
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|  * The full license is in the file LICENSE, distributed with this software. *
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|  ****************************************************************************/
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| 
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| #ifndef XTENSOR_ARRAY_HPP
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| #define XTENSOR_ARRAY_HPP
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| 
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| #include <algorithm>
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| #include <initializer_list>
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| #include <utility>
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| 
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| #include <xtl/xsequence.hpp>
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| 
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| #include "xbuffer_adaptor.hpp"
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| #include "xcontainer.hpp"
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| #include "xsemantic.hpp"
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| 
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| namespace xt
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| {
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| 
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|     /********************************
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|      * xarray_container declaration *
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|      ********************************/
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| 
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|     namespace extension
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|     {
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|         template <class EC, layout_type L, class SC, class Tag>
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|         struct xarray_container_base;
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| 
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|         template <class EC, layout_type L, class SC>
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|         struct xarray_container_base<EC, L, SC, xtensor_expression_tag>
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|         {
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|             using type = xtensor_empty_base;
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|         };
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| 
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|         template <class EC, layout_type L, class SC, class Tag>
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|         using xarray_container_base_t = typename xarray_container_base<EC, L, SC, Tag>::type;
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|     }
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| 
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|     template <class EC, layout_type L, class SC, class Tag>
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|     struct xcontainer_inner_types<xarray_container<EC, L, SC, Tag>>
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|     {
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|         using storage_type = EC;
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|         using reference = inner_reference_t<storage_type>;
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|         using const_reference = typename storage_type::const_reference;
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|         using size_type = typename storage_type::size_type;
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|         using shape_type = SC;
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|         using strides_type = get_strides_t<shape_type>;
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|         using backstrides_type = get_strides_t<shape_type>;
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|         using inner_shape_type = shape_type;
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|         using inner_strides_type = strides_type;
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|         using inner_backstrides_type = backstrides_type;
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|         using temporary_type = xarray_container<EC, L, SC, Tag>;
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|         static constexpr layout_type layout = L;
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|     };
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| 
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|     template <class EC, layout_type L, class SC, class Tag>
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|     struct xiterable_inner_types<xarray_container<EC, L, SC, Tag>>
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|         : xcontainer_iterable_types<xarray_container<EC, L, SC, Tag>>
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|     {
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|     };
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| 
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|     /**
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|      * @class xarray_container
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|      * @brief Dense multidimensional container with tensor semantic.
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|      *
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|      * The xarray_container class implements a dense multidimensional container
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|      * with tensor semantic.
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|      *
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|      * @tparam EC The type of the container holding the elements.
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|      * @tparam L The layout_type of the container.
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|      * @tparam SC The type of the containers holding the shape and the strides.
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|      * @tparam Tag The expression tag.
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|      * @sa xarray, xstrided_container, xcontainer
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|      */
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|     template <class EC, layout_type L, class SC, class Tag>
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|     class xarray_container : public xstrided_container<xarray_container<EC, L, SC, Tag>>,
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|                              public xcontainer_semantic<xarray_container<EC, L, SC, Tag>>,
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|                              public extension::xarray_container_base_t<EC, L, SC, Tag>
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|     {
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|     public:
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| 
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|         using self_type = xarray_container<EC, L, SC, Tag>;
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|         using base_type = xstrided_container<self_type>;
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|         using semantic_base = xcontainer_semantic<self_type>;
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|         using extension_base = extension::xarray_container_base_t<EC, L, SC, Tag>;
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|         using storage_type = typename base_type::storage_type;
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|         using allocator_type = typename base_type::allocator_type;
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|         using value_type = typename base_type::value_type;
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|         using reference = typename base_type::reference;
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|         using const_reference = typename base_type::const_reference;
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|         using pointer = typename base_type::pointer;
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|         using const_pointer = typename base_type::const_pointer;
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|         using shape_type = typename base_type::shape_type;
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|         using inner_shape_type = typename base_type::inner_shape_type;
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|         using strides_type = typename base_type::strides_type;
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|         using backstrides_type = typename base_type::backstrides_type;
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|         using inner_strides_type = typename base_type::inner_strides_type;
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|         using inner_backstrides_type = typename base_type::inner_backstrides_type;
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|         using temporary_type = typename semantic_base::temporary_type;
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|         using expression_tag = Tag;
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|         static constexpr std::size_t rank = SIZE_MAX;
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| 
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|         xarray_container();
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|         explicit xarray_container(const shape_type& shape, layout_type l = L);
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|         explicit xarray_container(const shape_type& shape, const_reference value, layout_type l = L);
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|         explicit xarray_container(const shape_type& shape, const strides_type& strides);
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|         explicit xarray_container(const shape_type& shape, const strides_type& strides, const_reference value);
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|         explicit xarray_container(storage_type&& storage, inner_shape_type&& shape, inner_strides_type&& strides);
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| 
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|         xarray_container(const value_type& t);
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|         xarray_container(nested_initializer_list_t<value_type, 1> t);
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|         xarray_container(nested_initializer_list_t<value_type, 2> t);
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|         xarray_container(nested_initializer_list_t<value_type, 3> t);
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|         xarray_container(nested_initializer_list_t<value_type, 4> t);
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|         xarray_container(nested_initializer_list_t<value_type, 5> t);
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| 
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|         template <class S = shape_type>
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|         static xarray_container from_shape(S&& s);
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| 
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|         ~xarray_container() = default;
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| 
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|         xarray_container(const xarray_container&) = default;
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|         xarray_container& operator=(const xarray_container&) = default;
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| 
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|         xarray_container(xarray_container&&) = default;
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|         xarray_container& operator=(xarray_container&&) = default;
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| 
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|         template <std::size_t N>
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|         explicit xarray_container(xtensor_container<EC, N, L, Tag>&& rhs);
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|         template <std::size_t N>
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|         xarray_container& operator=(xtensor_container<EC, N, L, Tag>&& rhs);
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| 
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|         template <class E>
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|         xarray_container(const xexpression<E>& e);
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| 
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|         template <class E>
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|         xarray_container& operator=(const xexpression<E>& e);
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| 
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|     private:
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| 
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|         storage_type m_storage;
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| 
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|         storage_type& storage_impl() noexcept;
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|         const storage_type& storage_impl() const noexcept;
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| 
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|         friend class xcontainer<xarray_container<EC, L, SC, Tag>>;
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|     };
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| 
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|     /******************************
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|      * xarray_adaptor declaration *
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|      ******************************/
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| 
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|     namespace extension
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|     {
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|         template <class EC, layout_type L, class SC, class Tag>
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|         struct xarray_adaptor_base;
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| 
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|         template <class EC, layout_type L, class SC>
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|         struct xarray_adaptor_base<EC, L, SC, xtensor_expression_tag>
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|         {
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|             using type = xtensor_empty_base;
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|         };
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| 
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|         template <class EC, layout_type L, class SC, class Tag>
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|         using xarray_adaptor_base_t = typename xarray_adaptor_base<EC, L, SC, Tag>::type;
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|     }
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| 
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|     template <class EC, layout_type L, class SC, class Tag>
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|     struct xcontainer_inner_types<xarray_adaptor<EC, L, SC, Tag>>
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|     {
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|         using storage_type = std::remove_reference_t<EC>;
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|         using reference = inner_reference_t<storage_type>;
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|         using const_reference = typename storage_type::const_reference;
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|         using size_type = typename storage_type::size_type;
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|         using shape_type = SC;
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|         using strides_type = get_strides_t<shape_type>;
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|         using backstrides_type = get_strides_t<shape_type>;
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|         using inner_shape_type = shape_type;
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|         using inner_strides_type = strides_type;
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|         using inner_backstrides_type = backstrides_type;
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|         using temporary_type = xarray_container<temporary_container_t<storage_type>, L, SC, Tag>;
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|         static constexpr layout_type layout = L;
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|     };
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| 
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|     template <class EC, layout_type L, class SC, class Tag>
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|     struct xiterable_inner_types<xarray_adaptor<EC, L, SC, Tag>>
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|         : xcontainer_iterable_types<xarray_adaptor<EC, L, SC, Tag>>
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|     {
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|     };
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| 
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|     /**
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|      * @class xarray_adaptor
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|      * @brief Dense multidimensional container adaptor with
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|      * tensor semantic.
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|      *
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|      * The xarray_adaptor class implements a dense multidimensional
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|      * container adaptor with tensor semantic. It is used to provide
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|      * a multidimensional container semantic and a tensor semantic to
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|      * stl-like containers.
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|      *
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|      * @tparam EC The closure for the container type to adapt.
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|      * @tparam L The layout_type of the adaptor.
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|      * @tparam SC The type of the containers holding the shape and the strides.
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|      * @tparam Tag The expression tag.
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|      * @sa xstrided_container, xcontainer
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|      */
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|     template <class EC, layout_type L, class SC, class Tag>
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|     class xarray_adaptor : public xstrided_container<xarray_adaptor<EC, L, SC, Tag>>,
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|                            public xcontainer_semantic<xarray_adaptor<EC, L, SC, Tag>>,
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|                            public extension::xarray_adaptor_base_t<EC, L, SC, Tag>
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|     {
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|     public:
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| 
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|         using container_closure_type = EC;
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| 
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|         using self_type = xarray_adaptor<EC, L, SC, Tag>;
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|         using base_type = xstrided_container<self_type>;
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|         using semantic_base = xcontainer_semantic<self_type>;
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|         using extension_base = extension::xarray_adaptor_base_t<EC, L, SC, Tag>;
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|         using storage_type = typename base_type::storage_type;
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|         using allocator_type = typename base_type::allocator_type;
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|         using shape_type = typename base_type::shape_type;
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|         using strides_type = typename base_type::strides_type;
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|         using backstrides_type = typename base_type::backstrides_type;
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|         using temporary_type = typename semantic_base::temporary_type;
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|         using expression_tag = Tag;
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|         static constexpr std::size_t rank = SIZE_MAX;
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| 
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|         xarray_adaptor(storage_type&& storage);
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|         xarray_adaptor(const storage_type& storage);
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| 
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|         template <class D>
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|         xarray_adaptor(D&& storage, const shape_type& shape, layout_type l = L);
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| 
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|         template <class D>
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|         xarray_adaptor(D&& storage, const shape_type& shape, const strides_type& strides);
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| 
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|         ~xarray_adaptor() = default;
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| 
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|         xarray_adaptor(const xarray_adaptor&) = default;
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|         xarray_adaptor& operator=(const xarray_adaptor&);
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| 
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|         xarray_adaptor(xarray_adaptor&&) = default;
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|         xarray_adaptor& operator=(xarray_adaptor&&);
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|         xarray_adaptor& operator=(temporary_type&&);
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| 
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|         template <class E>
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|         xarray_adaptor& operator=(const xexpression<E>& e);
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| 
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|         template <class P, class S>
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|         void reset_buffer(P&& pointer, S&& size);
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| 
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|     private:
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| 
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|         container_closure_type m_storage;
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| 
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|         storage_type& storage_impl() noexcept;
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|         const storage_type& storage_impl() const noexcept;
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| 
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|         friend class xcontainer<xarray_adaptor<EC, L, SC, Tag>>;
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|     };
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| 
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|     /***********************************
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|      * xarray_container implementation *
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|      ***********************************/
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| 
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|     /**
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|      * @name Constructors
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|      */
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|     //@{
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|     /**
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|      * Allocates an uninitialized xarray_container that holds 0 element.
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|      */
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|     template <class EC, layout_type L, class SC, class Tag>
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|     inline xarray_container<EC, L, SC, Tag>::xarray_container()
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|         : base_type()
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|         , m_storage(1, value_type())
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|     {
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|     }
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| 
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|     /**
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|      * Allocates an uninitialized xarray_container with the specified shape and
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|      * layout_type.
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|      * @param shape the shape of the xarray_container
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|      * @param l the layout_type of the xarray_container
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|      */
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|     template <class EC, layout_type L, class SC, class Tag>
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|     inline xarray_container<EC, L, SC, Tag>::xarray_container(const shape_type& shape, layout_type l)
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|         : base_type()
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|     {
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|         base_type::resize(shape, l);
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|     }
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| 
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|     /**
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|      * Allocates an xarray_container with the specified shape and layout_type. Elements
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|      * are initialized to the specified value.
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|      * @param shape the shape of the xarray_container
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|      * @param value the value of the elements
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|      * @param l the layout_type of the xarray_container
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|      */
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|     template <class EC, layout_type L, class SC, class Tag>
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|     inline xarray_container<EC, L, SC, Tag>::xarray_container(
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|         const shape_type& shape,
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|         const_reference value,
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|         layout_type l
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|     )
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|         : base_type()
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|     {
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|         base_type::resize(shape, l);
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|         std::fill(m_storage.begin(), m_storage.end(), value);
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|     }
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| 
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|     /**
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|      * Allocates an uninitialized xarray_container with the specified shape and strides.
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|      * @param shape the shape of the xarray_container
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|      * @param strides the strides of the xarray_container
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|      */
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|     template <class EC, layout_type L, class SC, class Tag>
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|     inline xarray_container<EC, L, SC, Tag>::xarray_container(const shape_type& shape, const strides_type& strides)
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|         : base_type()
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|     {
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|         base_type::resize(shape, strides);
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|     }
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| 
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|     /**
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|      * Allocates an uninitialized xarray_container with the specified shape and strides.
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|      * Elements are initialized to the specified value.
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|      * @param shape the shape of the xarray_container
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|      * @param strides the strides of the xarray_container
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|      * @param value the value of the elements
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|      */
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|     template <class EC, layout_type L, class SC, class Tag>
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|     inline xarray_container<EC, L, SC, Tag>::xarray_container(
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|         const shape_type& shape,
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|         const strides_type& strides,
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|         const_reference value
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|     )
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|         : base_type()
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|     {
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|         base_type::resize(shape, strides);
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|         std::fill(m_storage.begin(), m_storage.end(), value);
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|     }
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| 
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|     /**
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|      * Allocates an xarray_container that holds a single element initialized to the
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|      * specified value.
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|      * @param t the value of the element
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|      */
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|     template <class EC, layout_type L, class SC, class Tag>
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|     inline xarray_container<EC, L, SC, Tag>::xarray_container(const value_type& t)
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|         : base_type()
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|     {
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|         base_type::resize(xt::shape<shape_type>(t), true);
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|         nested_copy(m_storage.begin(), t);
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|     }
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| 
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|     /**
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|      * Allocates an xarray_container by moving specified data, shape and strides
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|      *
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|      * @param storage the data for the xarray_container
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|      * @param shape the shape of the xarray_container
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|      * @param strides the strides of the xarray_container
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|      */
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|     template <class EC, layout_type L, class SC, class Tag>
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|     inline xarray_container<EC, L, SC, Tag>::xarray_container(
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|         storage_type&& storage,
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|         inner_shape_type&& shape,
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|         inner_strides_type&& strides
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|     )
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|         : base_type(std::move(shape), std::move(strides))
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|         , m_storage(std::move(storage))
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|     {
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|     }
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| 
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|     //@}
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| 
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|     /**
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|      * @name Constructors from initializer list
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|      */
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|     //@{
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|     /**
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|      * Allocates a one-dimensional xarray_container.
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|      * @param t the elements of the xarray_container
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|      */
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|     template <class EC, layout_type L, class SC, class Tag>
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|     inline xarray_container<EC, L, SC, Tag>::xarray_container(nested_initializer_list_t<value_type, 1> t)
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|         : base_type()
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|     {
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|         base_type::resize(xt::shape<shape_type>(t));
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|         constexpr auto tmp = layout_type::row_major;
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|         L == tmp ? nested_copy(m_storage.begin(), t) : nested_copy(this->template begin<tmp>(), t);
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|     }
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| 
 | |
|     /**
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|      * Allocates a two-dimensional xarray_container.
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|      * @param t the elements of the xarray_container
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|      */
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|     template <class EC, layout_type L, class SC, class Tag>
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|     inline xarray_container<EC, L, SC, Tag>::xarray_container(nested_initializer_list_t<value_type, 2> t)
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|         : base_type()
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|     {
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|         base_type::resize(xt::shape<shape_type>(t));
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|         constexpr auto tmp = layout_type::row_major;
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|         L == tmp ? nested_copy(m_storage.begin(), t) : nested_copy(this->template begin<tmp>(), t);
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|     }
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| 
 | |
|     /**
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|      * Allocates a three-dimensional xarray_container.
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|      * @param t the elements of the xarray_container
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|      */
 | |
|     template <class EC, layout_type L, class SC, class Tag>
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|     inline xarray_container<EC, L, SC, Tag>::xarray_container(nested_initializer_list_t<value_type, 3> t)
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|         : base_type()
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|     {
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|         base_type::resize(xt::shape<shape_type>(t));
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|         constexpr auto tmp = layout_type::row_major;
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|         L == tmp ? nested_copy(m_storage.begin(), t) : nested_copy(this->template begin<tmp>(), t);
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|     }
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| 
 | |
|     /**
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|      * Allocates a four-dimensional xarray_container.
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|      * @param t the elements of the xarray_container
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|      */
 | |
|     template <class EC, layout_type L, class SC, class Tag>
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|     inline xarray_container<EC, L, SC, Tag>::xarray_container(nested_initializer_list_t<value_type, 4> t)
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|         : base_type()
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|     {
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|         base_type::resize(xt::shape<shape_type>(t));
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|         constexpr auto tmp = layout_type::row_major;
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|         L == tmp ? nested_copy(m_storage.begin(), t) : nested_copy(this->template begin<tmp>(), t);
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|     }
 | |
| 
 | |
|     /**
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|      * Allocates a five-dimensional xarray_container.
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|      * @param t the elements of the xarray_container
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|      */
 | |
|     template <class EC, layout_type L, class SC, class Tag>
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|     inline xarray_container<EC, L, SC, Tag>::xarray_container(nested_initializer_list_t<value_type, 5> t)
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|         : base_type()
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|     {
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|         base_type::resize(xt::shape<shape_type>(t));
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|         constexpr auto tmp = layout_type::row_major;
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|         L == tmp ? nested_copy(m_storage.begin(), t) : nested_copy(this->template begin<tmp>(), t);
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|     }
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| 
 | |
|     //@}
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| 
 | |
|     /**
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|      * Allocates and returns an xarray_container with the specified shape.
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|      * @param s the shape of the xarray_container
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|      */
 | |
|     template <class EC, layout_type L, class SC, class Tag>
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|     template <class S>
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|     inline xarray_container<EC, L, SC, Tag> xarray_container<EC, L, SC, Tag>::from_shape(S&& s)
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|     {
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|         shape_type shape = xtl::forward_sequence<shape_type, S>(s);
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|         return self_type(shape);
 | |
|     }
 | |
| 
 | |
|     template <class EC, layout_type L, class SC, class Tag>
 | |
|     template <std::size_t N>
 | |
|     inline xarray_container<EC, L, SC, Tag>::xarray_container(xtensor_container<EC, N, L, Tag>&& rhs)
 | |
|         : base_type(
 | |
|             inner_shape_type(rhs.shape().cbegin(), rhs.shape().cend()),
 | |
|             inner_strides_type(rhs.strides().cbegin(), rhs.strides().cend()),
 | |
|             inner_backstrides_type(rhs.backstrides().cbegin(), rhs.backstrides().cend()),
 | |
|             std::move(rhs.layout())
 | |
|         )
 | |
|         , m_storage(std::move(rhs.storage()))
 | |
|     {
 | |
|     }
 | |
| 
 | |
|     template <class EC, layout_type L, class SC, class Tag>
 | |
|     template <std::size_t N>
 | |
|     inline xarray_container<EC, L, SC, Tag>&
 | |
|     xarray_container<EC, L, SC, Tag>::operator=(xtensor_container<EC, N, L, Tag>&& rhs)
 | |
|     {
 | |
|         this->shape_impl().assign(rhs.shape().cbegin(), rhs.shape().cend());
 | |
|         this->strides_impl().assign(rhs.strides().cbegin(), rhs.strides().cend());
 | |
|         this->backstrides_impl().assign(rhs.backstrides().cbegin(), rhs.backstrides().cend());
 | |
|         this->mutable_layout() = rhs.layout();
 | |
|         m_storage = std::move(rhs.storage());
 | |
|         return *this;
 | |
|     }
 | |
| 
 | |
|     /**
 | |
|      * @name Extended copy semantic
 | |
|      */
 | |
|     //@{
 | |
|     /**
 | |
|      * The extended copy constructor.
 | |
|      */
 | |
|     template <class EC, layout_type L, class SC, class Tag>
 | |
|     template <class E>
 | |
|     inline xarray_container<EC, L, SC, Tag>::xarray_container(const xexpression<E>& e)
 | |
|         : base_type()
 | |
|     {
 | |
|         // Avoids unintialized data because of (m_shape == shape) condition
 | |
|         // in resize (called by assign), which is always true when dimension == 0.
 | |
|         if (e.derived_cast().dimension() == 0)
 | |
|         {
 | |
|             detail::resize_data_container(m_storage, std::size_t(1));
 | |
|         }
 | |
|         semantic_base::assign(e);
 | |
|     }
 | |
| 
 | |
|     /**
 | |
|      * The extended assignment operator.
 | |
|      */
 | |
|     template <class EC, layout_type L, class SC, class Tag>
 | |
|     template <class E>
 | |
|     inline auto xarray_container<EC, L, SC, Tag>::operator=(const xexpression<E>& e) -> self_type&
 | |
|     {
 | |
|         return semantic_base::operator=(e);
 | |
|     }
 | |
| 
 | |
|     //@}
 | |
| 
 | |
|     template <class EC, layout_type L, class SC, class Tag>
 | |
|     inline auto xarray_container<EC, L, SC, Tag>::storage_impl() noexcept -> storage_type&
 | |
|     {
 | |
|         return m_storage;
 | |
|     }
 | |
| 
 | |
|     template <class EC, layout_type L, class SC, class Tag>
 | |
|     inline auto xarray_container<EC, L, SC, Tag>::storage_impl() const noexcept -> const storage_type&
 | |
|     {
 | |
|         return m_storage;
 | |
|     }
 | |
| 
 | |
|     /******************
 | |
|      * xarray_adaptor *
 | |
|      ******************/
 | |
| 
 | |
|     /**
 | |
|      * @name Constructors
 | |
|      */
 | |
|     //@{
 | |
|     /**
 | |
|      * Constructs an xarray_adaptor of the given stl-like container.
 | |
|      * @param storage the container to adapt
 | |
|      */
 | |
|     template <class EC, layout_type L, class SC, class Tag>
 | |
|     inline xarray_adaptor<EC, L, SC, Tag>::xarray_adaptor(storage_type&& storage)
 | |
|         : base_type()
 | |
|         , m_storage(std::move(storage))
 | |
|     {
 | |
|     }
 | |
| 
 | |
|     /**
 | |
|      * Constructs an xarray_adaptor of the given stl-like container.
 | |
|      * @param storage the container to adapt
 | |
|      */
 | |
|     template <class EC, layout_type L, class SC, class Tag>
 | |
|     inline xarray_adaptor<EC, L, SC, Tag>::xarray_adaptor(const storage_type& storage)
 | |
|         : base_type()
 | |
|         , m_storage(storage)
 | |
|     {
 | |
|     }
 | |
| 
 | |
|     /**
 | |
|      * Constructs an xarray_adaptor of the given stl-like container,
 | |
|      * with the specified shape and layout_type.
 | |
|      * @param storage the container to adapt
 | |
|      * @param shape the shape of the xarray_adaptor
 | |
|      * @param l the layout_type of the xarray_adaptor
 | |
|      */
 | |
|     template <class EC, layout_type L, class SC, class Tag>
 | |
|     template <class D>
 | |
|     inline xarray_adaptor<EC, L, SC, Tag>::xarray_adaptor(D&& storage, const shape_type& shape, layout_type l)
 | |
|         : base_type()
 | |
|         , m_storage(std::forward<D>(storage))
 | |
|     {
 | |
|         base_type::resize(shape, l);
 | |
|     }
 | |
| 
 | |
|     /**
 | |
|      * Constructs an xarray_adaptor of the given stl-like container,
 | |
|      * with the specified shape and strides.
 | |
|      * @param storage the container to adapt
 | |
|      * @param shape the shape of the xarray_adaptor
 | |
|      * @param strides the strides of the xarray_adaptor
 | |
|      */
 | |
|     template <class EC, layout_type L, class SC, class Tag>
 | |
|     template <class D>
 | |
|     inline xarray_adaptor<EC, L, SC, Tag>::xarray_adaptor(
 | |
|         D&& storage,
 | |
|         const shape_type& shape,
 | |
|         const strides_type& strides
 | |
|     )
 | |
|         : base_type()
 | |
|         , m_storage(std::forward<D>(storage))
 | |
|     {
 | |
|         base_type::resize(shape, strides);
 | |
|     }
 | |
| 
 | |
|     //@}
 | |
| 
 | |
|     template <class EC, layout_type L, class SC, class Tag>
 | |
|     inline auto xarray_adaptor<EC, L, SC, Tag>::operator=(const xarray_adaptor& rhs) -> self_type&
 | |
|     {
 | |
|         base_type::operator=(rhs);
 | |
|         m_storage = rhs.m_storage;
 | |
|         return *this;
 | |
|     }
 | |
| 
 | |
|     template <class EC, layout_type L, class SC, class Tag>
 | |
|     inline auto xarray_adaptor<EC, L, SC, Tag>::operator=(xarray_adaptor&& rhs) -> self_type&
 | |
|     {
 | |
|         base_type::operator=(std::move(rhs));
 | |
|         m_storage = rhs.m_storage;
 | |
|         return *this;
 | |
|     }
 | |
| 
 | |
|     template <class EC, layout_type L, class SC, class Tag>
 | |
|     inline auto xarray_adaptor<EC, L, SC, Tag>::operator=(temporary_type&& rhs) -> self_type&
 | |
|     {
 | |
|         base_type::shape_impl() = std::move(const_cast<shape_type&>(rhs.shape()));
 | |
|         base_type::strides_impl() = std::move(const_cast<strides_type&>(rhs.strides()));
 | |
|         base_type::backstrides_impl() = std::move(const_cast<backstrides_type&>(rhs.backstrides()));
 | |
|         m_storage = std::move(rhs.storage());
 | |
|         return *this;
 | |
|     }
 | |
| 
 | |
|     /**
 | |
|      * @name Extended copy semantic
 | |
|      */
 | |
|     //@{
 | |
|     /**
 | |
|      * The extended assignment operator.
 | |
|      */
 | |
|     template <class EC, layout_type L, class SC, class Tag>
 | |
|     template <class E>
 | |
|     inline auto xarray_adaptor<EC, L, SC, Tag>::operator=(const xexpression<E>& e) -> self_type&
 | |
|     {
 | |
|         return semantic_base::operator=(e);
 | |
|     }
 | |
| 
 | |
|     //@}
 | |
| 
 | |
|     template <class EC, layout_type L, class SC, class Tag>
 | |
|     inline auto xarray_adaptor<EC, L, SC, Tag>::storage_impl() noexcept -> storage_type&
 | |
|     {
 | |
|         return m_storage;
 | |
|     }
 | |
| 
 | |
|     template <class EC, layout_type L, class SC, class Tag>
 | |
|     inline auto xarray_adaptor<EC, L, SC, Tag>::storage_impl() const noexcept -> const storage_type&
 | |
|     {
 | |
|         return m_storage;
 | |
|     }
 | |
| 
 | |
|     template <class EC, layout_type L, class SC, class Tag>
 | |
|     template <class P, class S>
 | |
|     inline void xarray_adaptor<EC, L, SC, Tag>::reset_buffer(P&& pointer, S&& size)
 | |
|     {
 | |
|         return m_storage.reset_data(std::forward<P>(pointer), std::forward<S>(size));
 | |
|     }
 | |
| }
 | |
| 
 | |
| #endif
 |