SeqAn3 3.1.0
The Modern C++ library for sequence analysis.
coordinate_matrix.hpp
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1// -----------------------------------------------------------------------------------------------------
2// Copyright (c) 2006-2021, Knut Reinert & Freie Universität Berlin
3// Copyright (c) 2016-2021, Knut Reinert & MPI für molekulare Genetik
4// This file may be used, modified and/or redistributed under the terms of the 3-clause BSD-License
5// shipped with this file and also available at: https://github.com/seqan/seqan3/blob/master/LICENSE.md
6// -----------------------------------------------------------------------------------------------------
7
13#pragma once
14
15#include <seqan3/std/concepts>
16#include <seqan3/std/ranges>
17
26
27namespace seqan3::detail
28{
29
30//------------------------------------------------------------------------------
31// coordinate_matrix
32//------------------------------------------------------------------------------
33
62template <typename index_t>
64 requires (std::integral<index_t> || simd_index<index_t>)
66class coordinate_matrix
67{
68private:
76 struct convert_to_matrix_coordinate
77 {
79 index_t column_index{};
80
87 auto operator()(index_t const row_index) noexcept
88 {
89 return matrix_index{row_index_type{row_index}, column_index_type{column_index}};
90 }
91 };
92
94 template <typename simd_index_t>
95 using lazy_scalar_type_t = typename simd_traits<simd_index_t>::scalar_type;
96
98 using size_type = lazy_conditional_t<simd_concept<index_t>, lazy<lazy_scalar_type_t, index_t>, index_t>;
99
100 // The coordinate matrix iterator.
101 class iterator;
102
104 size_type column_count{};
106 size_type row_count{};
107
108public:
112 coordinate_matrix() = default;
113 coordinate_matrix(coordinate_matrix const &) = default;
114 coordinate_matrix(coordinate_matrix &&) = default;
115 coordinate_matrix & operator=(coordinate_matrix const &) = default;
116 coordinate_matrix & operator=(coordinate_matrix &&) = default;
117 ~coordinate_matrix() = default;
118
137 template <std::integral column_index_t, std::integral row_index_t>
138 void resize(column_index_type<column_index_t> const column_count,
139 row_index_type<row_index_t> const row_count) noexcept
140 {
141 this->column_count = column_count.get();
142 this->row_count = row_count.get();
143 }
145
150 iterator begin() const noexcept
151 {
152 return iterator{size_type{}, row_count};
153 }
154
156 iterator end() const noexcept
157 {
158 return iterator{column_count, row_count};
159 }
161};
162
163//------------------------------------------------------------------------------
164// iterator
165//------------------------------------------------------------------------------
166
176template <typename index_t>
178 requires (std::integral<index_t> || simd_index<index_t>)
180class coordinate_matrix<index_t>::iterator
181{
182private:
184 using iota_view_t = lazy_conditional_t<simd_index<index_t>,
185 lazy<iota_simd_view, index_t>,
186 decltype(std::views::iota(size_type{}, size_type{}))>;
188 index_t column_id{0};
190 size_type row_count{0};
191
192public:
197 using value_type = decltype(std::declval<iota_view_t>()
198 | std::views::transform(convert_to_matrix_coordinate{index_t{}/*column_id*/}));
200 using reference = value_type;
202 using pointer = void;
204 using difference_type = std::ptrdiff_t;
206 using iterator_category = std::forward_iterator_tag;
208
212 iterator() = default;
213 iterator(iterator const &) = default;
214 iterator(iterator &&) = default;
215 iterator & operator=(iterator const &) = default;
216 iterator & operator=(iterator &&) = default;
217 ~iterator() = default;
218
225 explicit iterator(size_type column_id, size_type row_count) noexcept :
226 row_count{std::move(row_count)}
227 {
228 if constexpr (simd_index<index_t>)
229 this->column_id = simd::fill<index_t>(std::move(column_id));
230 else
231 this->column_id = std::move(column_id);
232 }
234
240 auto operator*() const
241 {
242 if constexpr (simd_index<index_t>)
243 {
244 return views::iota_simd<index_t>(size_type{}, row_count)
245 | std::views::transform(convert_to_matrix_coordinate{column_id});
246 }
247 else
248 {
249 return std::views::iota(size_type{}, row_count)
250 | std::views::transform(convert_to_matrix_coordinate{column_id});
251 }
252 }
254
260 iterator & operator++()
261 {
262 ++column_id;
263 return *this;
264 }
265
267 iterator operator++(int)
268 {
269 iterator tmp{*this};
270 ++(*this);
271 return tmp;
272 }
274
280 friend bool operator==(iterator const & lhs, iterator const & rhs)
281 {
282 if constexpr (simd_index<index_t>)
283 return lhs.column_id[0] == rhs.column_id[0];
284 else
285 return lhs.column_id == rhs.column_id;
286 }
287
289 friend bool operator!=(iterator const & lhs, iterator const & rhs)
290 {
291 return !(lhs == rhs);
292 }
294};
295} // namespace seqan3::detail
Provides algorithms to modify seqan3::simd::simd_type.
Provides seqan3::aligned_allocator.
T begin(T... args)
The <concepts> header from C++20's standard library.
T end(T... args)
decltype(detail::transform< trait_t >(list_t{})) transform
Apply a transformation trait to every type in the list and return a seqan3::type_list of the results.
Definition: traits.hpp:471
Provides seqan3::detail::counted_simd_iterator and seqan3::views::iota_simd.
Provides lazy template instantiation traits.
Provides seqan3::detail::matrix_index, seqan3::detail::matrix_coordinate and associated strong types.
T operator!=(T... args)
The <ranges> header from C++20's standard library.
Provides seqan3::simd::simd_traits.
Provides type traits for working with templates.
Provides seqan3::simd::simd_concept.