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			368 lines
		
	
	
		
			11 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
			
		
		
	
	
			368 lines
		
	
	
		
			11 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_AXIS_SLICE_ITERATOR_HPP
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| #define XTENSOR_AXIS_SLICE_ITERATOR_HPP
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| 
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| #include "xstrided_view.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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|      * @class xaxis_slice_iterator
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|      * @brief Class for iteration over one-dimensional slices
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|      *
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|      * The xaxis_slice_iterator iterates over one-dimensional slices
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|      * oriented along the specified axis
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|      *
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|      * @tparam CT the closure type of the \ref xexpression
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|      */
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|     template <class CT>
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|     class xaxis_slice_iterator
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|     {
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|     public:
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| 
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|         using self_type = xaxis_slice_iterator<CT>;
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| 
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|         using xexpression_type = std::decay_t<CT>;
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|         using size_type = typename xexpression_type::size_type;
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|         using difference_type = typename xexpression_type::difference_type;
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|         using shape_type = typename xexpression_type::shape_type;
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|         using strides_type = typename xexpression_type::strides_type;
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|         using value_type = xstrided_view<CT, shape_type>;
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|         using reference = std::remove_reference_t<apply_cv_t<CT, value_type>>;
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|         using pointer = xtl::xclosure_pointer<std::remove_reference_t<apply_cv_t<CT, value_type>>>;
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| 
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|         using iterator_category = std::forward_iterator_tag;
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| 
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|         template <class CTA>
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|         xaxis_slice_iterator(CTA&& e, size_type axis);
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|         template <class CTA>
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|         xaxis_slice_iterator(CTA&& e, size_type axis, size_type index, size_type offset);
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| 
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|         self_type& operator++();
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|         self_type operator++(int);
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| 
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|         reference operator*() const;
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|         pointer operator->() const;
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| 
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|         bool equal(const self_type& rhs) const;
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| 
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|     private:
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| 
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|         using storing_type = xtl::ptr_closure_type_t<CT>;
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|         mutable storing_type p_expression;
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|         size_type m_index;
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|         size_type m_offset;
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|         size_type m_axis_stride;
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|         size_type m_lower_shape;
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|         size_type m_upper_shape;
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|         size_type m_iter_size;
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|         bool m_is_target_axis;
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|         value_type m_sv;
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| 
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|         template <class T, class CTA>
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|         std::enable_if_t<std::is_pointer<T>::value, T> get_storage_init(CTA&& e) const;
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| 
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|         template <class T, class CTA>
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|         std::enable_if_t<!std::is_pointer<T>::value, T> get_storage_init(CTA&& e) const;
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|     };
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| 
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|     template <class CT>
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|     bool operator==(const xaxis_slice_iterator<CT>& lhs, const xaxis_slice_iterator<CT>& rhs);
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| 
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|     template <class CT>
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|     bool operator!=(const xaxis_slice_iterator<CT>& lhs, const xaxis_slice_iterator<CT>& rhs);
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| 
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|     template <class E>
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|     auto xaxis_slice_begin(E&& e);
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| 
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|     template <class E>
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|     auto xaxis_slice_begin(E&& e, typename std::decay_t<E>::size_type axis);
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| 
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|     template <class E>
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|     auto xaxis_slice_end(E&& e);
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| 
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|     template <class E>
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|     auto xaxis_slice_end(E&& e, typename std::decay_t<E>::size_type axis);
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| 
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|     /***************************************
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|      * xaxis_slice_iterator implementation *
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|      ***************************************/
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| 
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|     template <class CT>
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|     template <class T, class CTA>
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|     inline std::enable_if_t<std::is_pointer<T>::value, T>
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|     xaxis_slice_iterator<CT>::get_storage_init(CTA&& e) const
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|     {
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|         return &e;
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|     }
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| 
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|     template <class CT>
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|     template <class T, class CTA>
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|     inline std::enable_if_t<!std::is_pointer<T>::value, T>
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|     xaxis_slice_iterator<CT>::get_storage_init(CTA&& e) const
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|     {
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|         return e;
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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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|      * Constructs an xaxis_slice_iterator
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|      *
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|      * @param e the expression to iterate over
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|      * @param axis the axis to iterate over taking one dimensional slices
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|      */
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|     template <class CT>
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|     template <class CTA>
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|     inline xaxis_slice_iterator<CT>::xaxis_slice_iterator(CTA&& e, size_type axis)
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|         : xaxis_slice_iterator(std::forward<CTA>(e), axis, 0, e.data_offset())
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|     {
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|     }
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| 
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|     /**
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|      * Constructs an xaxis_slice_iterator starting at specified index and offset
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|      *
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|      * @param e the expression to iterate over
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|      * @param axis the axis to iterate over taking one dimensional slices
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|      * @param index the starting index for the iterator
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|      * @param offset the starting offset for the iterator
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|      */
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|     template <class CT>
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|     template <class CTA>
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|     inline xaxis_slice_iterator<CT>::xaxis_slice_iterator(CTA&& e, size_type axis, size_type index, size_type offset)
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|         : p_expression(get_storage_init<storing_type>(std::forward<CTA>(e)))
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|         , m_index(index)
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|         , m_offset(offset)
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|         , m_axis_stride(static_cast<size_type>(e.strides()[axis]) * (e.shape()[axis] - 1u))
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|         , m_lower_shape(0)
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|         , m_upper_shape(0)
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|         , m_iter_size(0)
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|         , m_is_target_axis(false)
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|         , m_sv(strided_view(
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|               std::forward<CT>(e),
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|               std::forward<shape_type>({e.shape()[axis]}),
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|               std::forward<strides_type>({e.strides()[axis]}),
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|               offset,
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|               e.layout()
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|           ))
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|     {
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|         if (e.layout() == layout_type::row_major)
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|         {
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|             m_is_target_axis = axis == e.dimension() - 1;
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|             m_lower_shape = std::accumulate(
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|                 e.shape().begin() + axis + 1,
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|                 e.shape().end(),
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|                 size_t(1),
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|                 std::multiplies<>()
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|             );
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|             m_iter_size = std::accumulate(e.shape().begin() + 1, e.shape().end(), size_t(1), std::multiplies<>());
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|         }
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|         else
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|         {
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|             m_is_target_axis = axis == 0;
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|             m_lower_shape = std::accumulate(
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|                 e.shape().begin(),
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|                 e.shape().begin() + axis,
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|                 size_t(1),
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|                 std::multiplies<>()
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|             );
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|             m_iter_size = std::accumulate(e.shape().begin(), e.shape().end() - 1, size_t(1), std::multiplies<>());
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|         }
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|         m_upper_shape = m_lower_shape + m_axis_stride;
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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 Increment
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|      */
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|     //@{
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|     /**
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|      * Increments the iterator to the next position and returns it.
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|      */
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|     template <class CT>
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|     inline auto xaxis_slice_iterator<CT>::operator++() -> self_type&
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|     {
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|         ++m_index;
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|         ++m_offset;
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|         auto index_compare = (m_offset % m_iter_size);
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|         if (m_is_target_axis || (m_upper_shape >= index_compare && index_compare >= m_lower_shape))
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|         {
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|             m_offset += m_axis_stride;
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|         }
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|         m_sv.set_offset(m_offset);
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|         return *this;
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|     }
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| 
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|     /**
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|      * Makes a copy of the iterator, increments it to the next
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|      * position, and returns the copy.
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|      */
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|     template <class CT>
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|     inline auto xaxis_slice_iterator<CT>::operator++(int) -> self_type
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|     {
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|         self_type tmp(*this);
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|         ++(*this);
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|         return tmp;
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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 Reference
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|      */
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|     //@{
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|     /**
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|      * Returns the strided view at the current iteration position
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|      *
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|      * @return a strided_view
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|      */
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|     template <class CT>
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|     inline auto xaxis_slice_iterator<CT>::operator*() const -> reference
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|     {
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|         return m_sv;
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|     }
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| 
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|     /**
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|      * Returns a pointer to the strided view at the current iteration position
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|      *
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|      * @return a pointer to a strided_view
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|      */
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|     template <class CT>
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|     inline auto xaxis_slice_iterator<CT>::operator->() const -> pointer
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|     {
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|         return xtl::closure_pointer(operator*());
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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 Comparisons
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|      */
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|     //@{
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|     /**
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|      * Checks equality of the xaxis_slice_iterator and \c rhs.
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|      *
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|      * @return true if the iterators are equivalent, false otherwise
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|      */
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|     template <class CT>
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|     inline bool xaxis_slice_iterator<CT>::equal(const self_type& rhs) const
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|     {
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|         return p_expression == rhs.p_expression && m_index == rhs.m_index;
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|     }
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| 
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|     /**
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|      * Checks equality of the iterators.
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|      *
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|      * @return true if the iterators are equivalent, false otherwise
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|      */
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|     template <class CT>
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|     inline bool operator==(const xaxis_slice_iterator<CT>& lhs, const xaxis_slice_iterator<CT>& rhs)
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|     {
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|         return lhs.equal(rhs);
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|     }
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| 
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|     /**
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|      * Checks inequality of the iterators
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|      * @return true if the iterators are different, true otherwise
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|      */
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|     template <class CT>
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|     inline bool operator!=(const xaxis_slice_iterator<CT>& lhs, const xaxis_slice_iterator<CT>& rhs)
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|     {
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|         return !(lhs == rhs);
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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 Iterators
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|      */
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|     //@{
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|     /**
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|      * Returns an iterator to the first element of the expression for axis 0
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|      *
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|      * @param e the expession to iterate over
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|      * @return an instance of xaxis_slice_iterator
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|      */
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|     template <class E>
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|     inline auto axis_slice_begin(E&& e)
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|     {
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|         using return_type = xaxis_slice_iterator<xtl::closure_type_t<E>>;
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|         return return_type(std::forward<E>(e), 0);
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|     }
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| 
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|     /**
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|      * Returns an iterator to the first element of the expression for the specified axis
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|      *
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|      * @param e the expession to iterate over
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|      * @param axis the axis to iterate over
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|      * @return an instance of xaxis_slice_iterator
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|      */
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|     template <class E>
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|     inline auto axis_slice_begin(E&& e, typename std::decay_t<E>::size_type axis)
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|     {
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|         using return_type = xaxis_slice_iterator<xtl::closure_type_t<E>>;
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|         return return_type(std::forward<E>(e), axis, 0, e.data_offset());
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|     }
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| 
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|     /**
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|      * Returns an iterator to the element following the last element of
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|      * the expression for axis 0
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|      *
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|      * @param e the expession to iterate over
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|      * @return an instance of xaxis_slice_iterator
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|      */
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|     template <class E>
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|     inline auto axis_slice_end(E&& e)
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|     {
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|         using return_type = xaxis_slice_iterator<xtl::closure_type_t<E>>;
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|         return return_type(
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|             std::forward<E>(e),
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|             0,
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|             std::accumulate(e.shape().begin() + 1, e.shape().end(), size_t(1), std::multiplies<>()),
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|             e.size()
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|         );
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|     }
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| 
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|     /**
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|      * Returns an iterator to the element following the last element of
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|      * the expression for the specified axis
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|      *
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|      * @param e the expression to iterate over
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|      * @param axis the axis to iterate over
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|      * @return an instance of xaxis_slice_iterator
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|      */
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|     template <class E>
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|     inline auto axis_slice_end(E&& e, typename std::decay_t<E>::size_type axis)
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|     {
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|         using return_type = xaxis_slice_iterator<xtl::closure_type_t<E>>;
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|         auto index_sum = std::accumulate(
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|             e.shape().begin(),
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|             e.shape().begin() + axis,
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|             size_t(1),
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|             std::multiplies<>()
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|         );
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|         return return_type(
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|             std::forward<E>(e),
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|             axis,
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|             std::accumulate(e.shape().begin() + axis + 1, e.shape().end(), index_sum, std::multiplies<>()),
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|             e.size() + axis
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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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| #endif
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