213 lines
7.0 KiB
C++
213 lines
7.0 KiB
C++
/**
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This file is a part of rexy's general purpose library
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Copyright (C) 2022 rexy712
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This program is free software: you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation, either version 3 of the License, or
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(at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program. If not, see <http://www.gnu.org/licenses/>.
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*/
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#ifndef REXY_COMPAT_CPP20_STRING_BASE_HPP
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#define REXY_COMPAT_CPP20_STRING_BASE_HPP
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#include "../../string_base.hpp"
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#include <utility> //forward
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#include <type_traits> //decay, is_nothrow_assignable
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#include <algorithm> //lexicographically_compare_three_way
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#include "../../utility.hpp" //strlen, strncmp
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namespace rexy{
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template<class Left, class Right>
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class string_cat_expr;
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template<class Char, REXY_ALLOCATOR_CONCEPT Alloc>
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class basic_string;
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template<class Char>
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class basic_string_view;
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template<class T>
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struct is_basic_string{
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template<class Char, class Alloc>
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static std::true_type check(const basic_string<Char,Alloc>*);
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static std::false_type check(...);
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static constexpr bool value = decltype(check(std::declval<std::remove_cvref_t<T>*>()))::value;
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};
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template<class T>
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struct is_basic_string_view{
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template<class Char>
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static std::true_type check(const basic_string_view<Char>*);
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static std::false_type check(...);
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static constexpr bool value = decltype(check(std::declval<std::remove_cvref_t<T>*>()))::value;
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};
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template<class T>
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struct is_basic_string_expr{
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template<class Left, class Right>
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static std::true_type check(const string_cat_expr<Left,Right>*);
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static std::false_type check(...);
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static constexpr bool value = decltype(check(std::declval<std::remove_cvref_t<T>*>()))::value;
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};
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template<class T>
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concept BasicString = requires(const T& a){
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requires(is_basic_string<T>::value || is_basic_string_view<T>::value);
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{std::as_const(a).length()} -> std::convertible_to<typename std::decay_t<T>::size_type>;
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{std::as_const(a).c_str()} -> std::convertible_to<typename std::decay_t<T>::const_pointer>;
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{std::as_const(a)[0]} -> std::convertible_to<typename std::decay_t<T>::const_reference>;
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{std::as_const(a).begin()} -> std::convertible_to<typename std::decay_t<T>::const_iterator>;
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{std::as_const(a).end()} -> std::convertible_to<typename std::decay_t<T>::const_iterator>;
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};
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template<class T>
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concept StringExpr = is_basic_string_expr<T>::value;
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template<class T>
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concept String = BasicString<T> || StringExpr<T>;
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template<class T>
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struct is_string{
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static constexpr bool value = BasicString<T>;
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};
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template<class T>
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static constexpr bool is_string_v = is_string<T>::value;
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template<class T>
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struct is_string_expr{
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static constexpr bool value = StringExpr<T>;
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};
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template<class T>
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static constexpr bool is_string_expr_v = is_string_expr<T>::value;
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//Compare
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template<BasicString Str1, BasicString Str2>
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constexpr bool operator==(const Str1& left, const Str2& right){
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if(left.length() != right.length()){
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return false;
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}
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return !rexy::strncmp(left.c_str(), right.c_str(), left.length()+1);
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}
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template<BasicString Str1>
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constexpr bool operator==(const Str1& left, typename std::decay_t<Str1>::const_pointer right)noexcept{
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if(right == nullptr){
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return false;
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}
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const rexy::basic_string_view rstr(right);
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if(rstr.length() != left.length()){
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return false;
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}
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return !rexy::strncmp(left.c_str(), rstr.c_str(), left.length());
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}
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template<BasicString Str1>
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constexpr bool operator==(typename std::decay_t<Str1>::const_pointer left, const Str1& right)noexcept{
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if(left == nullptr){
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return false;
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}
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const rexy::basic_string_view lstr(left);
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if(lstr.length() != right.length()){
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return false;
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}
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return !rexy::strncmp(lstr.c_str(), right.c_str(), right.length());
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}
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template<BasicString Str1, BasicString Str2>
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constexpr bool operator!=(const Str1& left, const Str2& right)noexcept{
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return !(left == right);
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}
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template<BasicString Str1>
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constexpr bool operator!=(const Str1& left, typename std::decay_t<Str1>::const_pointer right)noexcept{
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return !(left == right);
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}
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template<BasicString Str1>
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constexpr bool operator!=(typename std::decay_t<Str1>::const_pointer left, const Str1& right)noexcept{
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return !(left == right);
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}
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template<BasicString Str1, BasicString Str2>
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constexpr auto operator<=>(const Str1& left, const Str2& right)noexcept{
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return std::lexicographical_compare_three_way(left.begin(), left.end(), right.begin(), right.end());
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}
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//String + string concat
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template<String Left, String Right>
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constexpr auto operator+(Left&& l, Right&& r)
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//uses deduction guide whereas std::is_nothrow_constructible couldn't
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noexcept(noexcept(::new (nullptr) string_cat_expr(std::forward<Left>(l), std::forward<Right>(r))))
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{
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return string_cat_expr(std::forward<Left>(l), std::forward<Right>(r));
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}
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template<String Right>
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constexpr auto operator+(typename std::decay_t<Right>::const_pointer left, Right&& right)
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noexcept(noexcept(::new (nullptr) string_cat_expr(rexy::basic_string_view(left), std::forward<Right>(right))))
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{
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return string_cat_expr(rexy::basic_string_view(left), std::forward<Right>(right));
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}
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template<String Left>
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constexpr auto operator+(Left&& left, typename std::decay_t<Left>::const_pointer right)
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noexcept(noexcept(::new (nullptr) string_cat_expr(std::forward<Left>(left), rexy::basic_string_view(right))))
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{
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return rexy::string_cat_expr(std::forward<Left>(left), rexy::basic_string_view(right));
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}
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//String concat assign
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template<BasicString Left, String Right>
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constexpr decltype(auto) operator+=(Left& l, Right&& r)
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noexcept(noexcept(l + std::forward<Right>(r)) && std::is_nothrow_assignable<Left, decltype(l + std::forward<Right>(r))>::value)
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{
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return l = (l + std::forward<Right>(r));
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}
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template<BasicString Left>
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constexpr decltype(auto) operator+=(Left& l, typename std::decay_t<Left>::const_pointer r)
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noexcept(noexcept(l + r) && std::is_nothrow_assignable<Left, decltype(l + r)>::value)
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{
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return l = (l + r);
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}
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template<BasicString T, class Char>
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constexpr std::size_t find_first_of(T&& t, const Char* c, std::size_t start, std::size_t size){
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if(start > t.length()){
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return rexy::npos;
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}
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for(auto it = t.cbegin() + start;it != t.cend();++it){
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for(std::size_t i = 0;i < size;++i){
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if(*it == c[i]){
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return it - t.cbegin();
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}
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}
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}
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return rexy::npos;
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}
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template<BasicString T, class Char>
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constexpr std::size_t find_last_of(T&& t, const Char* c, std::size_t start, std::size_t size){
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if(start > t.length()){
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return rexy::npos;
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}
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const auto b = t.cend() - 1;
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const auto e = t.cbegin() - 1 - start;
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for(auto it = b;it != e;--it){
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for(std::size_t i = 0;i < size;++i){
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if(*it == c[i]){
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return it - t.cbegin();
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}
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}
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}
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return rexy::npos;
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}
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}
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#endif
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