mirror of
https://github.com/pocketpy/pocketpy
synced 2025-10-20 11:30:18 +00:00
809 lines
28 KiB
C++
809 lines
28 KiB
C++
/***************************************************************************
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* Copyright (c) 2016, Johan Mabille, Sylvain Corlay and Wolf Vollprecht *
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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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#ifndef XTENSOR_DYNAMIC_VIEW_HPP
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#define XTENSOR_DYNAMIC_VIEW_HPP
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#include <xtl/xsequence.hpp>
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#include <xtl/xvariant.hpp>
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#include "xexpression.hpp"
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#include "xiterable.hpp"
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#include "xlayout.hpp"
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#include "xsemantic.hpp"
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#include "xstrided_view_base.hpp"
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namespace xt
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{
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template <class CT, class S, layout_type L, class FST>
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class xdynamic_view;
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template <class CT, class S, layout_type L, class FST>
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struct xcontainer_inner_types<xdynamic_view<CT, S, L, FST>>
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{
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using xexpression_type = std::decay_t<CT>;
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using undecay_expression = CT;
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using reference = inner_reference_t<undecay_expression>;
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using const_reference = typename xexpression_type::const_reference;
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using size_type = typename xexpression_type::size_type;
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using shape_type = std::decay_t<S>;
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using undecay_shape = S;
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using storage_getter = FST;
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using inner_storage_type = typename storage_getter::type;
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using temporary_type = xarray<std::decay_t<typename xexpression_type::value_type>, xexpression_type::static_layout>;
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static constexpr layout_type layout = L;
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};
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template <class CT, class S, layout_type L, class FST>
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struct xiterable_inner_types<xdynamic_view<CT, S, L, FST>>
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{
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using inner_shape_type = S;
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using inner_strides_type = inner_shape_type;
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using inner_backstrides_type = inner_shape_type;
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#if defined(__GNUC__) && !defined(__clang__) && __GNUC__ == 8
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static constexpr auto
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random_instantiation_var_for_gcc8_data_iface = has_data_interface<xdynamic_view<CT, S, L, FST>>::value;
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static constexpr auto
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random_instantiation_var_for_gcc8_has_strides = has_strides<xdynamic_view<CT, S, L, FST>>::value;
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#endif
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// TODO: implement efficient stepper specific to the dynamic_view
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using const_stepper = xindexed_stepper<const xdynamic_view<CT, S, L, FST>, true>;
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using stepper = xindexed_stepper<xdynamic_view<CT, S, L, FST>, false>;
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};
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/****************************
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* xdynamic_view extensions *
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****************************/
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namespace extension
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{
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template <class Tag, class CT, class S, layout_type L, class FST>
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struct xdynamic_view_base_impl;
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template <class CT, class S, layout_type L, class FST>
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struct xdynamic_view_base_impl<xtensor_expression_tag, CT, S, L, FST>
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{
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using type = xtensor_empty_base;
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};
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template <class CT, class S, layout_type L, class FST>
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struct xdynamic_view_base : xdynamic_view_base_impl<xexpression_tag_t<CT>, CT, S, L, FST>
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{
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};
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template <class CT, class S, layout_type L, class FST>
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using xdynamic_view_base_t = typename xdynamic_view_base<CT, S, L, FST>::type;
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}
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/*****************
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* xdynamic_view *
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*****************/
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namespace detail
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{
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template <class T>
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class xfake_slice;
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}
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template <class CT, class S, layout_type L = layout_type::dynamic, class FST = detail::flat_storage_getter<CT, XTENSOR_DEFAULT_TRAVERSAL>>
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class xdynamic_view : public xview_semantic<xdynamic_view<CT, S, L, FST>>,
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public xiterable<xdynamic_view<CT, S, L, FST>>,
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public extension::xdynamic_view_base_t<CT, S, L, FST>,
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private xstrided_view_base<xdynamic_view<CT, S, L, FST>>
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{
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public:
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using self_type = xdynamic_view<CT, S, L, FST>;
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using base_type = xstrided_view_base<self_type>;
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using semantic_base = xview_semantic<self_type>;
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using extension_base = extension::xdynamic_view_base_t<CT, S, L, FST>;
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using expression_tag = typename extension_base::expression_tag;
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using xexpression_type = typename base_type::xexpression_type;
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using base_type::is_const;
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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 size_type = typename base_type::size_type;
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using difference_type = typename base_type::difference_type;
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using inner_storage_type = typename base_type::inner_storage_type;
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using storage_type = typename base_type::storage_type;
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using iterable_base = xiterable<self_type>;
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using inner_shape_type = typename iterable_base::inner_shape_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 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 stepper = typename iterable_base::stepper;
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using const_stepper = typename iterable_base::const_stepper;
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using base_type::contiguous_layout;
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using base_type::static_layout;
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using temporary_type = typename xcontainer_inner_types<self_type>::temporary_type;
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using base_index_type = xindex_type_t<shape_type>;
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using simd_value_type = typename base_type::simd_value_type;
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using bool_load_type = typename base_type::bool_load_type;
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using strides_vt = typename strides_type::value_type;
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using slice_type = xtl::variant<detail::xfake_slice<strides_vt>, xkeep_slice<strides_vt>, xdrop_slice<strides_vt>>;
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using slice_vector_type = std::vector<slice_type>;
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template <class CTA, class SA>
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xdynamic_view(
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CTA&& e,
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SA&& shape,
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get_strides_t<S>&& strides,
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std::size_t offset,
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layout_type layout,
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slice_vector_type&& slices,
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get_strides_t<S>&& adj_strides
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) noexcept;
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template <class E>
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self_type& operator=(const xexpression<E>& e);
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template <class E>
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disable_xexpression<E, self_type>& operator=(const E& e);
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using base_type::dimension;
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using base_type::is_contiguous;
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using base_type::layout;
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using base_type::shape;
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using base_type::size;
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// Explicitly deleting strides method to avoid compilers complaining
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// about not being able to call the strides method from xstrided_view_base
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// private base
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const inner_strides_type& strides() const noexcept = delete;
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reference operator()();
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const_reference operator()() const;
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template <class... Args>
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reference operator()(Args... args);
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template <class... Args>
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const_reference operator()(Args... args) const;
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template <class... Args>
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reference unchecked(Args... args);
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template <class... Args>
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const_reference unchecked(Args... args) const;
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reference flat(size_type index);
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const_reference flat(size_type index) const;
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using base_type::operator[];
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using base_type::at;
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using base_type::back;
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using base_type::front;
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using base_type::in_bounds;
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using base_type::periodic;
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template <class It>
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reference element(It first, It last);
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template <class It>
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const_reference element(It first, It last) const;
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size_type data_offset() const noexcept;
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// Explicitly deleting data methods so has_data_interface results
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// to false instead of having compilers complaining about not being
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// able to call the methods from the private base
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value_type* data() noexcept = delete;
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const value_type* data() const noexcept = delete;
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using base_type::broadcast_shape;
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using base_type::expression;
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using base_type::storage;
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template <class O>
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bool has_linear_assign(const O& str) const noexcept;
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template <class T>
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void fill(const T& value);
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template <class ST>
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stepper stepper_begin(const ST& shape);
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template <class ST>
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stepper stepper_end(const ST& shape, layout_type l);
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template <class ST>
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const_stepper stepper_begin(const ST& shape) const;
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template <class ST>
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const_stepper stepper_end(const ST& shape, layout_type l) const;
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using container_iterator = std::
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conditional_t<is_const, typename storage_type::const_iterator, typename storage_type::iterator>;
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using const_container_iterator = typename storage_type::const_iterator;
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template <class E>
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using rebind_t = xdynamic_view<E, S, L, typename FST::template rebind_t<E>>;
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template <class E>
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rebind_t<E> build_view(E&& e) const;
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private:
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using offset_type = typename base_type::offset_type;
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slice_vector_type m_slices;
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inner_strides_type m_adj_strides;
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container_iterator data_xbegin() noexcept;
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const_container_iterator data_xbegin() const noexcept;
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container_iterator data_xend(layout_type l, size_type offset) noexcept;
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const_container_iterator data_xend(layout_type l, size_type offset) const noexcept;
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template <class It>
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It data_xbegin_impl(It begin) const noexcept;
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template <class It>
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It data_xend_impl(It end, layout_type l, size_type offset) const noexcept;
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void assign_temporary_impl(temporary_type&& tmp);
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template <class T, class... Args>
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offset_type adjust_offset(offset_type offset, T idx, Args... args) const noexcept;
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offset_type adjust_offset(offset_type offset) const noexcept;
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template <class T, class... Args>
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offset_type
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adjust_offset_impl(offset_type offset, size_type idx_offset, T idx, Args... args) const noexcept;
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offset_type adjust_offset_impl(offset_type offset, size_type idx_offset) const noexcept;
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template <class It>
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offset_type adjust_element_offset(offset_type offset, It first, It last) const noexcept;
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template <class C>
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friend class xstepper;
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friend class xview_semantic<self_type>;
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friend class xaccessible<self_type>;
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friend class xconst_accessible<self_type>;
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};
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/**************************
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* xdynamic_view builders *
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**************************/
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template <class T>
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using xdynamic_slice = xtl::variant<
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T,
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xrange_adaptor<placeholders::xtuph, T, T>,
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xrange_adaptor<T, placeholders::xtuph, T>,
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xrange_adaptor<T, T, placeholders::xtuph>,
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xrange_adaptor<T, placeholders::xtuph, placeholders::xtuph>,
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xrange_adaptor<placeholders::xtuph, T, placeholders::xtuph>,
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xrange_adaptor<placeholders::xtuph, placeholders::xtuph, T>,
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xrange_adaptor<T, T, T>,
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xrange_adaptor<placeholders::xtuph, placeholders::xtuph, placeholders::xtuph>,
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xrange<T>,
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xstepped_range<T>,
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xkeep_slice<T>,
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xdrop_slice<T>,
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xall_tag,
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xellipsis_tag,
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xnewaxis_tag>;
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using xdynamic_slice_vector = std::vector<xdynamic_slice<std::ptrdiff_t>>;
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template <class E>
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auto dynamic_view(E&& e, const xdynamic_slice_vector& slices);
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/******************************
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* xfake_slice implementation *
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******************************/
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namespace detail
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{
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template <class T>
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class xfake_slice : public xslice<xfake_slice<T>>
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{
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public:
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using size_type = T;
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using self_type = xfake_slice<T>;
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xfake_slice() = default;
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size_type operator()(size_type /*i*/) const noexcept
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{
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return size_type(0);
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}
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size_type size() const noexcept
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{
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return size_type(1);
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}
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size_type step_size() const noexcept
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{
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return size_type(0);
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}
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size_type step_size(std::size_t /*i*/, std::size_t /*n*/ = 1) const noexcept
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{
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return size_type(0);
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}
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size_type revert_index(std::size_t i) const noexcept
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{
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return i;
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}
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bool contains(size_type /*i*/) const noexcept
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{
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return true;
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}
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bool operator==(const self_type& /*rhs*/) const noexcept
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{
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return true;
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}
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bool operator!=(const self_type& /*rhs*/) const noexcept
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{
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return false;
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}
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};
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}
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/********************************
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* xdynamic_view implementation *
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********************************/
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template <class CT, class S, layout_type L, class FST>
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template <class CTA, class SA>
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inline xdynamic_view<CT, S, L, FST>::xdynamic_view(
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CTA&& e,
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SA&& shape,
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get_strides_t<S>&& strides,
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std::size_t offset,
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layout_type layout,
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slice_vector_type&& slices,
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get_strides_t<S>&& adj_strides
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) noexcept
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: base_type(std::forward<CTA>(e), std::forward<SA>(shape), std::move(strides), offset, layout)
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, m_slices(std::move(slices))
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, m_adj_strides(std::move(adj_strides))
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{
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}
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template <class CT, class S, layout_type L, class FST>
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template <class E>
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inline auto xdynamic_view<CT, S, L, FST>::operator=(const xexpression<E>& e) -> self_type&
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{
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return semantic_base::operator=(e);
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}
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template <class CT, class S, layout_type L, class FST>
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template <class E>
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inline auto xdynamic_view<CT, S, L, FST>::operator=(const E& e) -> disable_xexpression<E, self_type>&
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{
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std::fill(this->begin(), this->end(), e);
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return *this;
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}
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template <class CT, class S, layout_type L, class FST>
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inline auto xdynamic_view<CT, S, L, FST>::operator()() -> reference
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{
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return base_type::storage()[data_offset()];
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}
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template <class CT, class S, layout_type L, class FST>
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inline auto xdynamic_view<CT, S, L, FST>::operator()() const -> const_reference
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{
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return base_type::storage()[data_offset()];
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}
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template <class CT, class S, layout_type L, class FST>
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template <class... Args>
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inline auto xdynamic_view<CT, S, L, FST>::operator()(Args... args) -> reference
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{
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XTENSOR_TRY(check_index(base_type::shape(), args...));
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XTENSOR_CHECK_DIMENSION(base_type::shape(), args...);
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offset_type offset = base_type::compute_index(args...);
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offset = adjust_offset(offset, args...);
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return base_type::storage()[static_cast<size_type>(offset)];
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}
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template <class CT, class S, layout_type L, class FST>
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template <class... Args>
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inline auto xdynamic_view<CT, S, L, FST>::operator()(Args... args) const -> const_reference
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{
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XTENSOR_TRY(check_index(base_type::shape(), args...));
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XTENSOR_CHECK_DIMENSION(base_type::shape(), args...);
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offset_type offset = base_type::compute_index(args...);
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offset = adjust_offset(offset, args...);
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return base_type::storage()[static_cast<size_type>(offset)];
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}
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template <class CT, class S, layout_type L, class FST>
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template <class O>
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inline bool xdynamic_view<CT, S, L, FST>::has_linear_assign(const O&) const noexcept
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{
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return false;
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}
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template <class CT, class S, layout_type L, class FST>
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template <class... Args>
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inline auto xdynamic_view<CT, S, L, FST>::unchecked(Args... args) -> reference
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{
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offset_type offset = base_type::compute_unchecked_index(args...);
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offset = adjust_offset(args...);
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return base_type::storage()[static_cast<size_type>(offset)];
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}
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template <class CT, class S, layout_type L, class FST>
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template <class... Args>
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inline auto xdynamic_view<CT, S, L, FST>::unchecked(Args... args) const -> const_reference
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{
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offset_type offset = base_type::compute_unchecked_index(args...);
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offset = adjust_offset(args...);
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return base_type::storage()[static_cast<size_type>(offset)];
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}
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template <class CT, class S, layout_type L, class FST>
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inline auto xdynamic_view<CT, S, L, FST>::flat(size_type i) -> reference
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{
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return base_type::storage()[data_offset() + i];
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}
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template <class CT, class S, layout_type L, class FST>
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inline auto xdynamic_view<CT, S, L, FST>::flat(size_type i) const -> const_reference
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{
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return base_type::storage()[data_offset() + i];
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}
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template <class CT, class S, layout_type L, class FST>
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template <class It>
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inline auto xdynamic_view<CT, S, L, FST>::element(It first, It last) -> reference
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{
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XTENSOR_TRY(check_element_index(base_type::shape(), first, last));
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offset_type offset = base_type::compute_element_index(first, last);
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offset = adjust_element_offset(offset, first, last);
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return base_type::storage()[static_cast<size_type>(offset)];
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}
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template <class CT, class S, layout_type L, class FST>
|
|
template <class It>
|
|
inline auto xdynamic_view<CT, S, L, FST>::element(It first, It last) const -> const_reference
|
|
{
|
|
XTENSOR_TRY(check_element_index(base_type::shape(), first, last));
|
|
offset_type offset = base_type::compute_element_index(first, last);
|
|
offset = adjust_element_offset(offset, first, last);
|
|
return base_type::storage()[static_cast<size_type>(offset)];
|
|
}
|
|
|
|
template <class CT, class S, layout_type L, class FST>
|
|
inline auto xdynamic_view<CT, S, L, FST>::data_offset() const noexcept -> size_type
|
|
{
|
|
size_type offset = base_type::data_offset();
|
|
size_type sl_offset = xtl::visit(
|
|
[](const auto& sl)
|
|
{
|
|
return sl(size_type(0));
|
|
},
|
|
m_slices[0]
|
|
);
|
|
return offset + sl_offset * m_adj_strides[0];
|
|
}
|
|
|
|
template <class CT, class S, layout_type L, class FST>
|
|
template <class T>
|
|
inline void xdynamic_view<CT, S, L, FST>::fill(const T& value)
|
|
{
|
|
return std::fill(this->linear_begin(), this->linear_end(), value);
|
|
}
|
|
|
|
template <class CT, class S, layout_type L, class FST>
|
|
template <class ST>
|
|
inline auto xdynamic_view<CT, S, L, FST>::stepper_begin(const ST& shape) -> stepper
|
|
{
|
|
size_type offset = shape.size() - dimension();
|
|
return stepper(this, offset);
|
|
}
|
|
|
|
template <class CT, class S, layout_type L, class FST>
|
|
template <class ST>
|
|
inline auto xdynamic_view<CT, S, L, FST>::stepper_end(const ST& shape, layout_type /*l*/) -> stepper
|
|
{
|
|
size_type offset = shape.size() - dimension();
|
|
return stepper(this, offset, true);
|
|
}
|
|
|
|
template <class CT, class S, layout_type L, class FST>
|
|
template <class ST>
|
|
inline auto xdynamic_view<CT, S, L, FST>::stepper_begin(const ST& shape) const -> const_stepper
|
|
{
|
|
size_type offset = shape.size() - dimension();
|
|
return const_stepper(this, offset);
|
|
}
|
|
|
|
template <class CT, class S, layout_type L, class FST>
|
|
template <class ST>
|
|
inline auto xdynamic_view<CT, S, L, FST>::stepper_end(const ST& shape, layout_type /*l*/) const
|
|
-> const_stepper
|
|
{
|
|
size_type offset = shape.size() - dimension();
|
|
return const_stepper(this, offset, true);
|
|
}
|
|
|
|
template <class CT, class S, layout_type L, class FST>
|
|
template <class E>
|
|
inline auto xdynamic_view<CT, S, L, FST>::build_view(E&& e) const -> rebind_t<E>
|
|
{
|
|
inner_shape_type sh(this->shape());
|
|
inner_strides_type str(base_type::strides());
|
|
slice_vector_type svt(m_slices);
|
|
inner_strides_type adj_str(m_adj_strides);
|
|
return rebind_t<E>(
|
|
std::forward<E>(e),
|
|
std::move(sh),
|
|
std::move(str),
|
|
base_type::data_offset(),
|
|
this->layout(),
|
|
std::move(svt),
|
|
std::move(adj_str)
|
|
);
|
|
}
|
|
|
|
template <class CT, class S, layout_type L, class FST>
|
|
inline auto xdynamic_view<CT, S, L, FST>::data_xbegin() noexcept -> container_iterator
|
|
{
|
|
return data_xbegin_impl(this->storage().begin());
|
|
}
|
|
|
|
template <class CT, class S, layout_type L, class FST>
|
|
inline auto xdynamic_view<CT, S, L, FST>::data_xbegin() const noexcept -> const_container_iterator
|
|
{
|
|
return data_xbegin_impl(this->storage().cbegin());
|
|
}
|
|
|
|
template <class CT, class S, layout_type L, class FST>
|
|
inline auto xdynamic_view<CT, S, L, FST>::data_xend(layout_type l, size_type offset) noexcept
|
|
-> container_iterator
|
|
{
|
|
return data_xend_impl(this->storage().begin(), l, offset);
|
|
}
|
|
|
|
template <class CT, class S, layout_type L, class FST>
|
|
inline auto xdynamic_view<CT, S, L, FST>::data_xend(layout_type l, size_type offset) const noexcept
|
|
-> const_container_iterator
|
|
{
|
|
return data_xend_impl(this->storage().cbegin(), l, offset);
|
|
}
|
|
|
|
template <class CT, class S, layout_type L, class FST>
|
|
template <class It>
|
|
inline It xdynamic_view<CT, S, L, FST>::data_xbegin_impl(It begin) const noexcept
|
|
{
|
|
return begin + static_cast<std::ptrdiff_t>(data_offset());
|
|
}
|
|
|
|
// TODO: fix the data_xend implementation and assign_temporary_impl
|
|
|
|
template <class CT, class S, layout_type L, class FST>
|
|
template <class It>
|
|
inline It
|
|
xdynamic_view<CT, S, L, FST>::data_xend_impl(It begin, layout_type l, size_type offset) const noexcept
|
|
{
|
|
return strided_data_end(*this, begin + std::ptrdiff_t(data_offset()), l, offset);
|
|
}
|
|
|
|
template <class CT, class S, layout_type L, class FST>
|
|
inline void xdynamic_view<CT, S, L, FST>::assign_temporary_impl(temporary_type&& tmp)
|
|
{
|
|
std::copy(tmp.cbegin(), tmp.cend(), this->begin());
|
|
}
|
|
|
|
template <class CT, class S, layout_type L, class FST>
|
|
template <class T, class... Args>
|
|
inline auto
|
|
xdynamic_view<CT, S, L, FST>::adjust_offset(offset_type offset, T idx, Args... args) const noexcept
|
|
-> offset_type
|
|
{
|
|
constexpr size_type nb_args = sizeof...(Args) + 1;
|
|
size_type dim = base_type::dimension();
|
|
offset_type res = nb_args > dim ? adjust_offset(offset, args...)
|
|
: adjust_offset_impl(offset, dim - nb_args, idx, args...);
|
|
return res;
|
|
}
|
|
|
|
template <class CT, class S, layout_type L, class FST>
|
|
inline auto xdynamic_view<CT, S, L, FST>::adjust_offset(offset_type offset) const noexcept -> offset_type
|
|
{
|
|
return offset;
|
|
}
|
|
|
|
template <class CT, class S, layout_type L, class FST>
|
|
template <class T, class... Args>
|
|
inline auto
|
|
xdynamic_view<CT, S, L, FST>::adjust_offset_impl(offset_type offset, size_type idx_offset, T idx, Args... args)
|
|
const noexcept -> offset_type
|
|
{
|
|
offset_type sl_offset = xtl::visit(
|
|
[idx](const auto& sl)
|
|
{
|
|
using type = typename std::decay_t<decltype(sl)>::size_type;
|
|
return sl(type(idx));
|
|
},
|
|
m_slices[idx_offset]
|
|
);
|
|
offset_type res = offset + sl_offset * m_adj_strides[idx_offset];
|
|
return adjust_offset_impl(res, idx_offset + 1, args...);
|
|
}
|
|
|
|
template <class CT, class S, layout_type L, class FST>
|
|
inline auto xdynamic_view<CT, S, L, FST>::adjust_offset_impl(offset_type offset, size_type) const noexcept
|
|
-> offset_type
|
|
{
|
|
return offset;
|
|
}
|
|
|
|
template <class CT, class S, layout_type L, class FST>
|
|
template <class It>
|
|
inline auto
|
|
xdynamic_view<CT, S, L, FST>::adjust_element_offset(offset_type offset, It first, It last) const noexcept
|
|
-> offset_type
|
|
{
|
|
auto dst = std::distance(first, last);
|
|
offset_type dim = static_cast<offset_type>(dimension());
|
|
offset_type loop_offset = dst < dim ? dim - dst : offset_type(0);
|
|
offset_type idx_offset = dim < dst ? dst - dim : offset_type(0);
|
|
offset_type res = offset;
|
|
for (offset_type i = loop_offset; i < dim; ++i, ++first)
|
|
{
|
|
offset_type j = static_cast<offset_type>(first[idx_offset]);
|
|
offset_type sl_offset = xtl::visit(
|
|
[j](const auto& sl)
|
|
{
|
|
return static_cast<offset_type>(sl(j));
|
|
},
|
|
m_slices[static_cast<std::size_t>(i)]
|
|
);
|
|
res += sl_offset * m_adj_strides[static_cast<std::size_t>(i)];
|
|
}
|
|
return res;
|
|
}
|
|
|
|
/*****************************************
|
|
* xdynamic_view builders implementation *
|
|
*****************************************/
|
|
|
|
namespace detail
|
|
{
|
|
template <class V>
|
|
struct adj_strides_policy
|
|
{
|
|
using slice_vector = V;
|
|
using strides_type = dynamic_shape<std::ptrdiff_t>;
|
|
|
|
slice_vector new_slices;
|
|
strides_type new_adj_strides;
|
|
|
|
protected:
|
|
|
|
inline void resize(std::size_t size)
|
|
{
|
|
new_slices.resize(size);
|
|
new_adj_strides.resize(size);
|
|
}
|
|
|
|
inline void set_fake_slice(std::size_t idx)
|
|
{
|
|
new_slices[idx] = xfake_slice<std::ptrdiff_t>();
|
|
new_adj_strides[idx] = std::ptrdiff_t(0);
|
|
}
|
|
|
|
template <class ST, class S>
|
|
bool fill_args(
|
|
const xdynamic_slice_vector& slices,
|
|
std::size_t sl_idx,
|
|
std::size_t i,
|
|
std::size_t old_shape,
|
|
const ST& old_stride,
|
|
S& shape,
|
|
get_strides_t<S>& strides
|
|
)
|
|
{
|
|
return fill_args_impl<xkeep_slice<std::ptrdiff_t>>(
|
|
slices,
|
|
sl_idx,
|
|
i,
|
|
old_shape,
|
|
old_stride,
|
|
shape,
|
|
strides
|
|
)
|
|
|| fill_args_impl<xdrop_slice<std::ptrdiff_t>>(
|
|
slices,
|
|
sl_idx,
|
|
i,
|
|
old_shape,
|
|
old_stride,
|
|
shape,
|
|
strides
|
|
);
|
|
}
|
|
|
|
template <class SL, class ST, class S>
|
|
bool fill_args_impl(
|
|
const xdynamic_slice_vector& slices,
|
|
std::size_t sl_idx,
|
|
std::size_t i,
|
|
std::size_t old_shape,
|
|
const ST& old_stride,
|
|
S& shape,
|
|
get_strides_t<S>& strides
|
|
)
|
|
{
|
|
auto* sl = xtl::get_if<SL>(&slices[sl_idx]);
|
|
if (sl != nullptr)
|
|
{
|
|
new_slices[i] = *sl;
|
|
auto& ns = xtl::get<SL>(new_slices[i]);
|
|
ns.normalize(old_shape);
|
|
shape[i] = static_cast<std::size_t>(ns.size());
|
|
strides[i] = std::ptrdiff_t(0);
|
|
new_adj_strides[i] = static_cast<std::ptrdiff_t>(old_stride);
|
|
}
|
|
return sl != nullptr;
|
|
}
|
|
};
|
|
}
|
|
|
|
template <class E>
|
|
inline auto dynamic_view(E&& e, const xdynamic_slice_vector& slices)
|
|
{
|
|
using view_type = xdynamic_view<xclosure_t<E>, dynamic_shape<std::size_t>>;
|
|
using slice_vector = typename view_type::slice_vector_type;
|
|
using policy = detail::adj_strides_policy<slice_vector>;
|
|
detail::strided_view_args<policy> args;
|
|
args.fill_args(
|
|
e.shape(),
|
|
detail::get_strides<XTENSOR_DEFAULT_TRAVERSAL>(e),
|
|
detail::get_offset<XTENSOR_DEFAULT_TRAVERSAL>(e),
|
|
e.layout(),
|
|
slices
|
|
);
|
|
return view_type(
|
|
std::forward<E>(e),
|
|
std::move(args.new_shape),
|
|
std::move(args.new_strides),
|
|
args.new_offset,
|
|
args.new_layout,
|
|
std::move(args.new_slices),
|
|
std::move(args.new_adj_strides)
|
|
);
|
|
}
|
|
}
|
|
|
|
#endif
|