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#include "src/utils/py-like/zip.hpp"
#pragma once
/**
* @file zip.hpp
* @brief Zip
*/
#include <cstddef>
#include <tuple>
#include <vector>
#include "../iterator/category.hpp"
#include "../iterator/reverse.hpp"
#include "lib/cxx17"
namespace workspace {
template <class _Tuple> class zipped : protected _Tuple {
public:
zipped(const _Tuple &__x) : _Tuple(__x) {}
template <std::size_t _Nm> constexpr decltype(auto) get() const &noexcept {
return *std::get<_Nm>(*this);
}
template <std::size_t _Nm> constexpr decltype(auto) get() &&noexcept {
auto __tmp = *std::get<_Nm>(*this);
return __tmp;
}
};
template <class... _Containers> class zip {
std::tuple<_Containers...> __c;
template <std::size_t _Nm = 0>
constexpr decltype(auto) begin_cat() const noexcept {
if _CXX17_CONSTEXPR (_Nm != sizeof...(_Containers)) {
return std::tuple_cat(std::tuple(std::begin(std::get<_Nm>(__c))),
begin_cat<_Nm + 1>());
} else
return std::tuple<>();
}
template <std::size_t _Nm = 0>
constexpr decltype(auto) end_cat() const noexcept {
if _CXX17_CONSTEXPR (_Nm != sizeof...(_Containers)) {
return std::tuple_cat(std::tuple(std::end(std::get<_Nm>(__c))),
end_cat<_Nm + 1>());
} else
return std::tuple<>();
}
using _Iterator_tuple =
std::tuple<decltype(std::begin(std::declval<_Containers>()))...>;
public:
using size_type = std::size_t;
class iterator : public zipped<_Iterator_tuple> {
using _Base = zipped<_Iterator_tuple>;
public:
using difference_type = std::ptrdiff_t;
using value_type = _Base;
using pointer = void;
using reference = value_type &;
using iterator_category =
typename common_iterator_category<_Iterator_tuple>::type;
protected:
template <std::size_t _Nm = 0>
constexpr bool equal(const iterator &__x) const noexcept {
if _CXX17_CONSTEXPR (_Nm != sizeof...(_Containers)) {
return std::get<_Nm>(*this) == std::get<_Nm>(__x) ||
equal<_Nm + 1>(__x);
} else
return false;
}
template <std::size_t _Nm = 0> constexpr void increment() noexcept {
if _CXX17_CONSTEXPR (_Nm != sizeof...(_Containers))
++std::get<_Nm>(*this), increment<_Nm + 1>();
}
template <std::size_t _Nm = 0> constexpr void decrement() noexcept {
if _CXX17_CONSTEXPR (_Nm != sizeof...(_Containers))
--std::get<_Nm>(*this), decrement<_Nm + 1>();
}
template <std::size_t _Nm = 0>
constexpr void advance(difference_type __d) noexcept {
if _CXX17_CONSTEXPR (_Nm != sizeof...(_Containers))
std::get<_Nm>(*this) += __d, advance<_Nm + 1>(__d);
}
public:
iterator(const _Iterator_tuple &__x) : _Base(__x) {}
constexpr bool operator==(const iterator &__x) const noexcept {
return equal(__x);
}
constexpr bool operator!=(const iterator &__x) const noexcept {
return !equal(__x);
}
constexpr iterator &operator++() noexcept {
increment();
return *this;
}
constexpr iterator operator++(int) noexcept {
auto __tmp = *this;
increment();
return __tmp;
}
constexpr iterator &operator--() noexcept {
decrement();
return *this;
}
constexpr iterator operator--(int) noexcept {
auto __tmp = *this;
decrement();
return __tmp;
}
constexpr bool operator<(const iterator &__x) const noexcept {
return std::get<0>(*this) < std::get<0>(__x);
}
constexpr bool operator<=(const iterator &__x) const noexcept {
return std::get<0>(*this) <= std::get<0>(__x);
}
constexpr bool operator>(const iterator &__x) const noexcept {
return !operator<=(__x);
}
constexpr bool operator>=(const iterator &__x) const noexcept {
return !operator>(__x);
}
constexpr iterator &operator+=(difference_type __d) noexcept {
advance(__d);
return *this;
}
constexpr iterator &operator-=(difference_type __d) noexcept {
advance(-__d);
return *this;
}
constexpr iterator operator+(difference_type __d) const noexcept {
return iterator{*this} += __d;
}
constexpr iterator operator-(difference_type __d) const noexcept {
return iterator{*this} -= __d;
}
constexpr difference_type operator-(const iterator &__x) const noexcept {
return std::get<0>(*this) - std::get<0>(__x);
}
constexpr reference operator*() noexcept { return {*this}; }
};
using const_iterator = iterator;
template <class... _Args>
constexpr zip(_Args &&...__args) noexcept
: __c(std::forward<_Args>(__args)...) {}
template <class... _Args>
constexpr zip(std::initializer_list<_Args>... __args) noexcept
: __c(std::forward<_Args>(__args)...) {}
constexpr iterator begin() const noexcept { return {begin_cat()}; }
constexpr iterator end() const noexcept { return {end_cat()}; }
constexpr reverse_iterator<iterator> rbegin() const noexcept {
return reverse_iterator<iterator>{end()};
}
constexpr reverse_iterator<iterator> rend() const noexcept {
return reverse_iterator<iterator>{begin()};
}
#if __cplusplus >= 201703L
constexpr size_type size() const noexcept {
size_type __n = -1;
std::apply(
[&__n](auto &&__x) {
if (__n < __x.size()) __n = __x.size();
},
__c);
return __n;
}
#endif
};
#if __cpp_deduction_guides >= 201606L
template <class... _Args> zip(_Args &&...) -> zip<_Args...>;
// For gcc version < 10
// https://gcc.gnu.org/bugzilla/show_bug.cgi?id=80438
template <class _Tp, class... _Args>
zip(_Tp &&, _Args &&...) -> zip<_Tp, _Args...>;
template <class... _Args>
zip(std::initializer_list<_Args>...) -> zip<std::initializer_list<_Args>...>;
#endif
} // namespace workspace
namespace std {
template <size_t _Nm, class _Tuple>
struct tuple_element<_Nm, workspace::zipped<_Tuple>> {
using type = remove_reference_t<
typename iterator_traits<tuple_element_t<_Nm, _Tuple>>::reference>;
};
template <class _Tuple>
struct tuple_size<workspace::zipped<_Tuple>> : tuple_size<_Tuple> {};
} // namespace std
#line 2 "src/utils/py-like/zip.hpp"
/**
* @file zip.hpp
* @brief Zip
*/
#include <cstddef>
#include <tuple>
#include <vector>
#line 2 "src/utils/iterator/category.hpp"
/*
* @file category.hpp
* @brief Iterator Category
*/
#line 10 "src/utils/iterator/category.hpp"
namespace workspace {
/*
* @tparam Tuple Tuple of iterator types
*/
template <class Tuple, size_t N = std::tuple_size<Tuple>::value - 1>
struct common_iterator_category {
using type = typename std::common_type<
typename common_iterator_category<Tuple, N - 1>::type,
typename std::iterator_traits<typename std::tuple_element<
N, Tuple>::type>::iterator_category>::type;
};
template <class Tuple> struct common_iterator_category<Tuple, 0> {
using type = typename std::iterator_traits<
typename std::tuple_element<0, Tuple>::type>::iterator_category;
};
} // namespace workspace
#line 2 "src/utils/iterator/reverse.hpp"
/*
* @file reverse_iterator.hpp
* @brief Reverse Iterator
*/
#if __cplusplus >= 201703L
#include <iterator>
#include <optional>
namespace workspace {
/*
* @class reverse_iterator
* @brief Wrapper class for `std::reverse_iterator`.
* @see http://gcc.gnu.org/PR51823
*/
template <class Iterator>
class reverse_iterator : public std::reverse_iterator<Iterator> {
using base_std = std::reverse_iterator<Iterator>;
std::optional<typename base_std::value_type> deref;
public:
using base_std::reverse_iterator;
constexpr typename base_std::reference operator*() noexcept {
if (!deref) {
Iterator tmp = base_std::current;
deref = *--tmp;
}
return deref.value();
}
constexpr reverse_iterator &operator++() noexcept {
base_std::operator++();
deref.reset();
return *this;
}
constexpr reverse_iterator &operator--() noexcept {
base_std::operator++();
deref.reset();
return *this;
}
constexpr reverse_iterator operator++(int) noexcept {
base_std::operator++();
deref.reset();
return *this;
}
constexpr reverse_iterator operator--(int) noexcept {
base_std::operator++();
deref.reset();
return *this;
}
};
} // namespace workspace
#endif
#line 2 "lib/cxx17"
#line 2 "lib/cxx14"
#ifndef _CXX14_CONSTEXPR
#if __cplusplus >= 201402L
#define _CXX14_CONSTEXPR constexpr
#else
#define _CXX14_CONSTEXPR
#endif
#endif
#line 4 "lib/cxx17"
#ifndef _CXX17_CONSTEXPR
#if __cplusplus >= 201703L
#define _CXX17_CONSTEXPR constexpr
#else
#define _CXX17_CONSTEXPR
#endif
#endif
#ifndef _CXX17_STATIC_ASSERT
#if __cplusplus >= 201703L
#define _CXX17_STATIC_ASSERT static_assert
#else
#define _CXX17_STATIC_ASSERT assert
#endif
#endif
#include <iterator>
#if __cplusplus < 201703L
namespace std {
/**
* @brief Return the size of a container.
* @param __cont Container.
*/
template <typename _Container>
constexpr auto size(const _Container& __cont) noexcept(noexcept(__cont.size()))
-> decltype(__cont.size()) {
return __cont.size();
}
/**
* @brief Return the size of an array.
*/
template <typename _Tp, size_t _Nm>
constexpr size_t size(const _Tp (&)[_Nm]) noexcept {
return _Nm;
}
/**
* @brief Return whether a container is empty.
* @param __cont Container.
*/
template <typename _Container>
[[nodiscard]] constexpr auto empty(const _Container& __cont) noexcept(
noexcept(__cont.empty())) -> decltype(__cont.empty()) {
return __cont.empty();
}
/**
* @brief Return whether an array is empty (always false).
*/
template <typename _Tp, size_t _Nm>
[[nodiscard]] constexpr bool empty(const _Tp (&)[_Nm]) noexcept {
return false;
}
/**
* @brief Return whether an initializer_list is empty.
* @param __il Initializer list.
*/
template <typename _Tp>
[[nodiscard]] constexpr bool empty(initializer_list<_Tp> __il) noexcept {
return __il.size() == 0;
}
struct monostate {};
} // namespace std
#else
#include <variant>
#endif
#line 15 "src/utils/py-like/zip.hpp"
namespace workspace {
template <class _Tuple> class zipped : protected _Tuple {
public:
zipped(const _Tuple &__x) : _Tuple(__x) {}
template <std::size_t _Nm> constexpr decltype(auto) get() const &noexcept {
return *std::get<_Nm>(*this);
}
template <std::size_t _Nm> constexpr decltype(auto) get() &&noexcept {
auto __tmp = *std::get<_Nm>(*this);
return __tmp;
}
};
template <class... _Containers> class zip {
std::tuple<_Containers...> __c;
template <std::size_t _Nm = 0>
constexpr decltype(auto) begin_cat() const noexcept {
if _CXX17_CONSTEXPR (_Nm != sizeof...(_Containers)) {
return std::tuple_cat(std::tuple(std::begin(std::get<_Nm>(__c))),
begin_cat<_Nm + 1>());
} else
return std::tuple<>();
}
template <std::size_t _Nm = 0>
constexpr decltype(auto) end_cat() const noexcept {
if _CXX17_CONSTEXPR (_Nm != sizeof...(_Containers)) {
return std::tuple_cat(std::tuple(std::end(std::get<_Nm>(__c))),
end_cat<_Nm + 1>());
} else
return std::tuple<>();
}
using _Iterator_tuple =
std::tuple<decltype(std::begin(std::declval<_Containers>()))...>;
public:
using size_type = std::size_t;
class iterator : public zipped<_Iterator_tuple> {
using _Base = zipped<_Iterator_tuple>;
public:
using difference_type = std::ptrdiff_t;
using value_type = _Base;
using pointer = void;
using reference = value_type &;
using iterator_category =
typename common_iterator_category<_Iterator_tuple>::type;
protected:
template <std::size_t _Nm = 0>
constexpr bool equal(const iterator &__x) const noexcept {
if _CXX17_CONSTEXPR (_Nm != sizeof...(_Containers)) {
return std::get<_Nm>(*this) == std::get<_Nm>(__x) ||
equal<_Nm + 1>(__x);
} else
return false;
}
template <std::size_t _Nm = 0> constexpr void increment() noexcept {
if _CXX17_CONSTEXPR (_Nm != sizeof...(_Containers))
++std::get<_Nm>(*this), increment<_Nm + 1>();
}
template <std::size_t _Nm = 0> constexpr void decrement() noexcept {
if _CXX17_CONSTEXPR (_Nm != sizeof...(_Containers))
--std::get<_Nm>(*this), decrement<_Nm + 1>();
}
template <std::size_t _Nm = 0>
constexpr void advance(difference_type __d) noexcept {
if _CXX17_CONSTEXPR (_Nm != sizeof...(_Containers))
std::get<_Nm>(*this) += __d, advance<_Nm + 1>(__d);
}
public:
iterator(const _Iterator_tuple &__x) : _Base(__x) {}
constexpr bool operator==(const iterator &__x) const noexcept {
return equal(__x);
}
constexpr bool operator!=(const iterator &__x) const noexcept {
return !equal(__x);
}
constexpr iterator &operator++() noexcept {
increment();
return *this;
}
constexpr iterator operator++(int) noexcept {
auto __tmp = *this;
increment();
return __tmp;
}
constexpr iterator &operator--() noexcept {
decrement();
return *this;
}
constexpr iterator operator--(int) noexcept {
auto __tmp = *this;
decrement();
return __tmp;
}
constexpr bool operator<(const iterator &__x) const noexcept {
return std::get<0>(*this) < std::get<0>(__x);
}
constexpr bool operator<=(const iterator &__x) const noexcept {
return std::get<0>(*this) <= std::get<0>(__x);
}
constexpr bool operator>(const iterator &__x) const noexcept {
return !operator<=(__x);
}
constexpr bool operator>=(const iterator &__x) const noexcept {
return !operator>(__x);
}
constexpr iterator &operator+=(difference_type __d) noexcept {
advance(__d);
return *this;
}
constexpr iterator &operator-=(difference_type __d) noexcept {
advance(-__d);
return *this;
}
constexpr iterator operator+(difference_type __d) const noexcept {
return iterator{*this} += __d;
}
constexpr iterator operator-(difference_type __d) const noexcept {
return iterator{*this} -= __d;
}
constexpr difference_type operator-(const iterator &__x) const noexcept {
return std::get<0>(*this) - std::get<0>(__x);
}
constexpr reference operator*() noexcept { return {*this}; }
};
using const_iterator = iterator;
template <class... _Args>
constexpr zip(_Args &&...__args) noexcept
: __c(std::forward<_Args>(__args)...) {}
template <class... _Args>
constexpr zip(std::initializer_list<_Args>... __args) noexcept
: __c(std::forward<_Args>(__args)...) {}
constexpr iterator begin() const noexcept { return {begin_cat()}; }
constexpr iterator end() const noexcept { return {end_cat()}; }
constexpr reverse_iterator<iterator> rbegin() const noexcept {
return reverse_iterator<iterator>{end()};
}
constexpr reverse_iterator<iterator> rend() const noexcept {
return reverse_iterator<iterator>{begin()};
}
#if __cplusplus >= 201703L
constexpr size_type size() const noexcept {
size_type __n = -1;
std::apply(
[&__n](auto &&__x) {
if (__n < __x.size()) __n = __x.size();
},
__c);
return __n;
}
#endif
};
#if __cpp_deduction_guides >= 201606L
template <class... _Args> zip(_Args &&...) -> zip<_Args...>;
// For gcc version < 10
// https://gcc.gnu.org/bugzilla/show_bug.cgi?id=80438
template <class _Tp, class... _Args>
zip(_Tp &&, _Args &&...) -> zip<_Tp, _Args...>;
template <class... _Args>
zip(std::initializer_list<_Args>...) -> zip<std::initializer_list<_Args>...>;
#endif
} // namespace workspace
namespace std {
template <size_t _Nm, class _Tuple>
struct tuple_element<_Nm, workspace::zipped<_Tuple>> {
using type = remove_reference_t<
typename iterator_traits<tuple_element_t<_Nm, _Tuple>>::reference>;
};
template <class _Tuple>
struct tuple_size<workspace::zipped<_Tuple>> : tuple_size<_Tuple> {};
} // namespace std