mirror of
https://github.com/nlohmann/json.git
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* Fix CI configuration broken by recent merges and tool updates - gcc_flags.cmake: drop -Wexperimental-fmv-target, which GCC 16 accepts only on aarch64; amd64 rejects it, so every GCC job failed while checking the compiler. - ci_get_cmake: add VERBATIM so the checksum pipeline is passed to the shell intact (the unescaped `$'` broke the generated Makefile and build.ninja, failing ci_cmake_flags and ci_module_cpp20); match the SHA-256 entry case-insensitively, as CMake 3.5.0 lists the archive as "Linux-x86_64"; and unpack with --strip-components, as that archive's top-level directory is spelled "Linux" too. - ci_single_binaries: compile json.hpp's TU without IWYU's --error, as the comment above the gate already intends. - tests: restore -Wno-deprecated-declarations for all non-MSVC compilers (#5737 kept it for GCC only), as several tests call deprecated functions on purpose; include thirdparty/fifo_map as SYSTEM. - .clang-tidy: set misc-use-internal-linkage.AnalyzeTypes to false; clang-tidy 22.1 extended the check to classes and enums and flagged 100 test helper types. Signed-off-by: Niels Lohmann <mail@nlohmann.me> * Fix library warnings and a JSON_DIAGNOSTICS parent bug - binary_reader: pass integers to sax->number_integer() through conditional_static_cast<number_integer_t>, making the existing narrowing for a narrow number_integer_t explicit (MSVC C4244 and GCC -Wconversion/-Warith-conversion with the int16_t test from #5694); mark two Infer DEAD_STORE false positives with @infer-ignore. - to_json: set the parents of an array built from a C++20 range view after all elements are in place; a reallocating push_back moved the earlier elements and left their parent pointers stale, failing the JSON_DIAGNOSTICS invariant assertion. - json.hpp: suppress MSVC C4127 for the new is_ordered_map check in diff(), like the three existing ones; spell out std::formatter::parse's return and iterator types for clang-tidy 22.1. - number_parse: make the Eisel-Lemire digit counter unsigned (GCC -Wstrict-overflow). - string_utils: take encode_utf8's callable by const reference (cppcoreguidelines-missing-std-forward) and drop a \u from its doc comment (-Wdocumentation-unknown-command). - ordered_map: include <memory> for std::allocator (cpplint). Ran make amalgamate. Signed-off-by: Niels Lohmann <mail@nlohmann.me> * Fix tests failing in CI on develop - unit-allocator: skip the #5640 test under MSVC STL iterator debugging, where containers allocate a debug proxy in noexcept move constructors and a failing allocation terminates; move a decrement out of an if condition (bugprone-inc-dec-in-conditions). - unit-conversions: expect the "(/0)" path with JSON_DIAGNOSTICS; compare strict enums via get<>() rather than through the noexcept operator==(ScalarType, json), which bugprone-exception-escape flags. - unit-alt-string: suppress -Wexit-time-destructors for the strict enum macro and misc-use-internal-linkage for its enum. - unit-bjdata: call the static lookup functions through the type and pass unsigned char (-Wsign-conversion on amd64). - Mark Infer false positives with @infer-ignore in unit-diagnostics, unit-pointer_access, unit-udt, and unit-conversions. - Smaller clang-tidy 22.1 findings in unit-class_parser, unit-constructor2, unit-custom-base-class, unit-locale-cpp, and unit-noexcept. Signed-off-by: Niels Lohmann <mail@nlohmann.me> --------- Signed-off-by: Niels Lohmann <mail@nlohmann.me>
455 lines
15 KiB
C++
455 lines
15 KiB
C++
// __ _____ _____ _____
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// __| | __| | | | JSON for Modern C++
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// | | |__ | | | | | | version 3.12.0
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// |_____|_____|_____|_|___| https://github.com/nlohmann/json
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//
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// SPDX-FileCopyrightText: 2013-2026 Niels Lohmann <https://nlohmann.me>
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// SPDX-License-Identifier: MIT
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#pragma once
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#include <algorithm> // max, min
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#include <functional> // equal_to, less
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#include <initializer_list> // initializer_list
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#include <iterator> // input_iterator_tag, iterator_traits
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#include <memory> // allocator
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#include <new> // for operator new (placement new)
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#include <stdexcept> // for out_of_range
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#include <tuple> // forward_as_tuple
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#include <type_traits> // enable_if, integral_constant, is_convertible, is_nothrow_move_constructible
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#include <utility> // forward, move, pair, piecewise_construct
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#include <vector> // vector
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#include <nlohmann/detail/abi_macros.hpp>
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#include <nlohmann/detail/macro_scope.hpp>
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#include <nlohmann/detail/meta/type_traits.hpp>
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NLOHMANN_JSON_NAMESPACE_BEGIN
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/// ordered_map: a minimal map-like container that preserves insertion order
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/// for use within nlohmann::basic_json<ordered_map>
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template <class Key, class T, class IgnoredLess = std::less<Key>,
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class Allocator = std::allocator<std::pair<const Key, T>>>
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struct ordered_map : std::vector<std::pair<const Key, T>, Allocator>
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{
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using key_type = Key;
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using mapped_type = T;
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using Container = std::vector<std::pair<const Key, T>, Allocator>;
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using iterator = typename Container::iterator;
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using const_iterator = typename Container::const_iterator;
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using size_type = typename Container::size_type;
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using value_type = typename Container::value_type;
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#ifdef JSON_HAS_CPP_14
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using key_compare = std::equal_to<>;
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#else
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using key_compare = std::equal_to<Key>;
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#endif
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// Explicit constructors instead of `using Container::Container`
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// otherwise older compilers choke on it (GCC <= 5.5, xcode <= 9.4)
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ordered_map() noexcept(noexcept(Container())) : Container{} {}
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explicit ordered_map(const Allocator& alloc) noexcept(noexcept(Container(alloc))) : Container{alloc} {}
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template <class It>
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ordered_map(It first, It last, const Allocator& alloc = Allocator())
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: Container{first, last, alloc} {}
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ordered_map(std::initializer_list<value_type> init, const Allocator& alloc = Allocator() )
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: Container{init, alloc} {}
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ordered_map(const ordered_map&) = default;
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ordered_map(ordered_map&&) noexcept(std::is_nothrow_move_constructible<Container>::value) = default;
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~ordered_map() = default;
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ordered_map& operator=(const ordered_map& other)
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{
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if (this != &other)
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{
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ordered_map tmp(other);
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Container::operator=(std::move(static_cast<Container&>(tmp)));
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}
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return *this;
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}
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ordered_map& operator=(ordered_map&& other) noexcept(std::is_nothrow_move_assignable<Container>::value)
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{
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Container::operator=(std::move(static_cast<Container&>(other)));
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return *this;
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}
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std::pair<iterator, bool> emplace(const key_type& key, T&& t)
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{
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for (auto it = this->begin(); it != this->end(); ++it)
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{
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if (m_compare(it->first, key))
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{
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return {it, false};
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}
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}
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append(key, std::forward<T>(t));
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return {std::prev(this->end()), true};
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}
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template<class KeyType, detail::enable_if_t<
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detail::is_usable_as_key_type<key_compare, key_type, KeyType>::value, int> = 0>
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std::pair<iterator, bool> emplace(KeyType && key, T && t)
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{
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for (auto it = this->begin(); it != this->end(); ++it)
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{
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if (m_compare(it->first, key))
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{
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return {it, false};
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}
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}
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append(std::forward<KeyType>(key), std::forward<T>(t));
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return {std::prev(this->end()), true};
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}
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T& operator[](const key_type& key)
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{
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return emplace(key, T{}).first->second;
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}
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template<class KeyType, detail::enable_if_t<
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detail::is_usable_as_key_type<key_compare, key_type, KeyType>::value, int> = 0>
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T & operator[](KeyType && key)
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{
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return emplace(std::forward<KeyType>(key), T{}).first->second;
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}
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const T& operator[](const key_type& key) const
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{
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return at(key);
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}
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template<class KeyType, detail::enable_if_t<
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detail::is_usable_as_key_type<key_compare, key_type, KeyType>::value, int> = 0>
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const T & operator[](KeyType && key) const
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{
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return at(std::forward<KeyType>(key));
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}
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T& at(const key_type& key)
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{
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for (auto it = this->begin(); it != this->end(); ++it)
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{
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if (m_compare(it->first, key))
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{
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return it->second;
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}
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}
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JSON_THROW(std::out_of_range("key not found"));
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}
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template<class KeyType, detail::enable_if_t<
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detail::is_usable_as_key_type<key_compare, key_type, KeyType>::value, int> = 0>
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T & at(KeyType && key) // NOLINT(cppcoreguidelines-missing-std-forward)
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{
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for (auto it = this->begin(); it != this->end(); ++it)
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{
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if (m_compare(it->first, key))
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{
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return it->second;
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}
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}
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JSON_THROW(std::out_of_range("key not found"));
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}
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const T& at(const key_type& key) const
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{
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for (auto it = this->begin(); it != this->end(); ++it)
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{
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if (m_compare(it->first, key))
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{
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return it->second;
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}
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}
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JSON_THROW(std::out_of_range("key not found"));
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}
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template<class KeyType, detail::enable_if_t<
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detail::is_usable_as_key_type<key_compare, key_type, KeyType>::value, int> = 0>
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const T & at(KeyType && key) const // NOLINT(cppcoreguidelines-missing-std-forward)
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{
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for (auto it = this->begin(); it != this->end(); ++it)
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{
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if (m_compare(it->first, key))
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{
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return it->second;
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}
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}
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JSON_THROW(std::out_of_range("key not found"));
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}
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size_type erase(const key_type& key)
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{
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for (auto it = this->begin(); it != this->end(); ++it)
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{
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if (m_compare(it->first, key))
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{
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// Since we cannot move const Keys, re-construct them in place
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for (auto next = it; ++next != this->end(); ++it)
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{
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it->~value_type(); // Destroy but keep allocation
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new (&*it) value_type{std::move(*next)};
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}
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Container::pop_back();
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return 1;
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}
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}
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return 0;
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}
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template<class KeyType, detail::enable_if_t<
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detail::is_usable_as_key_type<key_compare, key_type, KeyType>::value, int> = 0>
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size_type erase(KeyType && key) // NOLINT(cppcoreguidelines-missing-std-forward)
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{
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for (auto it = this->begin(); it != this->end(); ++it)
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{
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if (m_compare(it->first, key))
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{
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// Since we cannot move const Keys, re-construct them in place
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for (auto next = it; ++next != this->end(); ++it)
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{
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it->~value_type(); // Destroy but keep allocation
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new (&*it) value_type{std::move(*next)};
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}
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Container::pop_back();
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return 1;
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}
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}
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return 0;
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}
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iterator erase(iterator pos)
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{
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return erase(pos, std::next(pos));
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}
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iterator erase(iterator first, iterator last)
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{
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if (first == last)
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{
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return first;
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}
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const auto elements_affected = std::distance(first, last);
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const auto offset = std::distance(Container::begin(), first);
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// This is the start situation. We need to delete elements_affected
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// elements (3 in this example: e, f, g), and need to return an
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// iterator past the last deleted element (h in this example).
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// Note that offset is the distance from the start of the vector
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// to first. We will need this later.
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// [ a, b, c, d, e, f, g, h, i, j ]
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// ^ ^
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// first last
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// Since we cannot move const Keys, we re-construct them in place.
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// We start at first and re-construct (viz. copy) the elements from
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// the back of the vector. Example for the first iteration:
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// ,--------.
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// v | destroy e and re-construct with h
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// [ a, b, c, d, e, f, g, h, i, j ]
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// ^ ^
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// it it + elements_affected
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for (auto it = first; std::next(it, elements_affected) != Container::end(); ++it)
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{
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it->~value_type(); // destroy but keep allocation
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new (&*it) value_type{std::move(*std::next(it, elements_affected))}; // "move" next element to it
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}
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// [ a, b, c, d, h, i, j, h, i, j ]
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// ^ ^
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// first last
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// remove the unneeded elements at the end of the vector
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Container::resize(this->size() - static_cast<size_type>(elements_affected));
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// [ a, b, c, d, h, i, j ]
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// ^ ^
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// first last
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// first is now pointing past the last deleted element, but we cannot
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// use this iterator, because it may have been invalidated by the
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// resize call. Instead, we can return begin() + offset.
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return Container::begin() + offset;
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}
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size_type count(const key_type& key) const
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{
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for (auto it = this->begin(); it != this->end(); ++it)
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{
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if (m_compare(it->first, key))
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{
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return 1;
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}
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}
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return 0;
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}
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template<class KeyType, detail::enable_if_t<
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detail::is_usable_as_key_type<key_compare, key_type, KeyType>::value, int> = 0>
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size_type count(KeyType && key) const // NOLINT(cppcoreguidelines-missing-std-forward)
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{
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for (auto it = this->begin(); it != this->end(); ++it)
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{
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if (m_compare(it->first, key))
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{
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return 1;
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}
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}
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return 0;
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}
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iterator find(const key_type& key)
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{
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for (auto it = this->begin(); it != this->end(); ++it)
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{
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if (m_compare(it->first, key))
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{
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return it;
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}
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}
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return Container::end();
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}
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template<class KeyType, detail::enable_if_t<
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detail::is_usable_as_key_type<key_compare, key_type, KeyType>::value, int> = 0>
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iterator find(KeyType && key) // NOLINT(cppcoreguidelines-missing-std-forward)
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{
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for (auto it = this->begin(); it != this->end(); ++it)
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{
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if (m_compare(it->first, key))
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{
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return it;
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}
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}
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return Container::end();
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}
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const_iterator find(const key_type& key) const
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{
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for (auto it = this->begin(); it != this->end(); ++it)
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{
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if (m_compare(it->first, key))
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{
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return it;
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}
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}
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return Container::end();
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}
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template<class KeyType, detail::enable_if_t<
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detail::is_usable_as_key_type<key_compare, key_type, KeyType>::value, int> = 0>
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const_iterator find(KeyType && key) const // NOLINT(cppcoreguidelines-missing-std-forward)
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{
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for (auto it = this->begin(); it != this->end(); ++it)
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{
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if (m_compare(it->first, key))
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{
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return it;
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}
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}
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return Container::end();
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}
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std::pair<iterator, bool> insert( value_type&& value )
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{
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return emplace(value.first, std::move(value.second));
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}
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std::pair<iterator, bool> insert( const value_type& value )
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{
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for (auto it = this->begin(); it != this->end(); ++it)
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{
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if (m_compare(it->first, value.first))
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{
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return {it, false};
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}
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}
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append(value);
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return {--this->end(), true};
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}
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template<typename InputIt>
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using require_input_iter = typename std::enable_if<std::is_convertible<typename std::iterator_traits<InputIt>::iterator_category,
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std::input_iterator_tag>::value>::type;
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template<typename InputIt, typename = require_input_iter<InputIt>>
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void insert(InputIt first, InputIt last)
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{
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for (auto it = first; it != last; ++it)
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{
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insert(*it);
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}
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}
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private:
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/*!
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@brief add an element whose key is not yet contained at the end
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A std::vector copies all elements when it grows, because their const keys
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make them not nothrow move constructible. For ordered_json, this is a deep
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copy of every value. Where the strong exception guarantee can be kept, grow
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the storage here instead, copying only the keys and moving the values.
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*/
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template<typename... Args>
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void append(Args&& ... args)
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{
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// evaluated here rather than at class scope, because T is still
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// incomplete when basic_json instantiates its object_t
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using move_values = std::integral_constant<bool, detail::conjunction<
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detail::negation<std::is_nothrow_move_constructible<value_type>>,
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std::is_copy_constructible<key_type>,
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detail::is_default_constructible<mapped_type>,
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std::is_nothrow_move_assignable<mapped_type>>::value>;
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append_impl(move_values{}, std::forward<Args>(args)...);
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}
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template<typename... Args>
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void append_impl(std::true_type /*unused*/, Args&& ... args)
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{
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if (this->size() < this->capacity())
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{
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Container::emplace_back(std::forward<Args>(args)...);
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return;
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}
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// 1. May throw, but only changes tmp: copy the keys, value-initialize
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// the values, and add the new element. The arguments may refer to
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// elements of this container, so they are used before any value is
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// moved out of it.
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Container tmp(this->get_allocator()); // equal allocators, so swap() is valid
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tmp.reserve((std::min)(this->max_size(), (std::max)(size_type{1}, 2 * this->size())));
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for (const auto& element : *this)
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{
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tmp.emplace_back(std::piecewise_construct, std::forward_as_tuple(element.first), std::forward_as_tuple());
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}
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tmp.emplace_back(std::forward<Args>(args)...);
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// 2. Cannot throw: move the values over and adopt the new storage.
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auto it = tmp.begin();
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for (auto& element : *this)
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{
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it->second = std::move(element.second);
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++it;
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}
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Container::swap(tmp);
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}
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template<typename... Args>
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void append_impl(std::false_type /*unused*/, Args&& ... args)
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{
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Container::emplace_back(std::forward<Args>(args)...);
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}
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|
|
|
JSON_NO_UNIQUE_ADDRESS key_compare m_compare = key_compare();
|
|
};
|
|
|
|
NLOHMANN_JSON_NAMESPACE_END
|