json.hpp.re2c 109.1 KB
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/*!
@file
@copyright The code is licensed under the MIT License
           <http://opensource.org/licenses/MIT>,
           Copyright (c) 2013-2015 Niels Lohmann.
@author Niels Lohmann <http://nlohmann.me>
@see https://github.com/nlohmann/json
*/

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/*!
@defgroup container Container
@brief C++ Container concept

A Container is an object used to store other objects and taking care of the
management of the memory used by the objects it contains.

@see http://en.cppreference.com/w/cpp/concept/Container

@defgroup reversiblecontainer Reversible Container
@brief C++ Reversible Container concept
@ingroup container

A ReversibleContainer is a Container that has iterators that meet the
requirements of either BidirectionalIterator or RandomAccessIterator. Such
iterators allow a ReversibleContainer to be iterated over in reverse.

@see http://en.cppreference.com/w/cpp/concept/ReversibleContainer
*/

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#ifndef _NLOHMANN_JSON
#define _NLOHMANN_JSON

#include <algorithm>
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#include <cmath>
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#include <cstdio>
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#include <functional>
#include <initializer_list>
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#include <iomanip>
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#include <iostream>
#include <iterator>
#include <limits>
#include <map>
#include <memory>
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#include <sstream>
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#include <string>
#include <type_traits>
#include <utility>
#include <vector>

/*!
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@brief namespace for Niels Lohmann
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@see https://github.com/nlohmann
*/
namespace nlohmann
{

/*!
@brief JSON

@tparam ObjectType         type for JSON objects
                           (@c std::map by default)
@tparam ArrayType          type for JSON arrays
                           (@c std::vector by default)
@tparam StringType         type for JSON strings and object keys
                           (@c std::string by default)
@tparam BooleanType        type for JSON booleans
                           (@c bool by default)
@tparam NumberIntegerType  type for JSON integer numbers
                           (@c int64_t by default)
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@tparam NumberFloatType    type for JSON floating-point numbers
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                           (@c double by default)
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@tparam Allocator          type of the allocator to use
                           (@c std::allocator by default)
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@note ObjectType trick from http://stackoverflow.com/a/9860911

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@see RFC 7159 <http://rfc7159.net/rfc7159>
@see ECMA 404 <http://www.ecma-international.org/publications/standards/Ecma-404.htm>
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*/
template <
    template<typename U, typename V, typename... Args> class ObjectType = std::map,
    template<typename U, typename... Args> class ArrayType = std::vector,
    class StringType = std::string,
    class BooleanType = bool,
    class NumberIntegerType = int64_t,
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    class NumberFloatType = double,
    template<typename U> class Allocator = std::allocator
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    >
class basic_json
{
  public:
    /////////////////////
    // container types //
    /////////////////////

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    // forward declarations
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    class iterator;
    class const_iterator;

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    /*!
    @brief the type of elements in a basic_json container
    @ingroup container
    */
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    using value_type = basic_json;
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    /*!
    @brief the type of an element reference
    @ingroup container
    */
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    using reference = basic_json&;
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    /*!
    @brief the type of an element const reference
    @ingroup container
    */
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    using const_reference = const basic_json&;
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    /*!
    @brief a type to represent differences between iterators
    @ingroup container
    */
    using difference_type = std::ptrdiff_t;

    /*!
    @brief a type to represent container sizes
    @ingroup container
    */
    using size_type = std::size_t;

    /// the allocator type
    using allocator_type = Allocator<basic_json>;

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    /// the type of an element pointer
    using pointer = basic_json*;
    /// the type of an element const pointer
    using const_pointer = const basic_json*;
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    /*!
    @brief an iterator for a basic_json container
    @ingroup container
    */
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    using iterator = basic_json::iterator;
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    /*!
    @brief a const iterator for a basic_json container
    @ingroup container
    */
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    using const_iterator = basic_json::const_iterator;
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    /*!
    @brief a reverse iterator for a basic_json container
    @ingroup reversiblecontainer
    */
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    using reverse_iterator = std::reverse_iterator<iterator>;
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    /*!
    @brief a const reverse iterator for a basic_json container
    @ingroup reversiblecontainer
    */
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    using const_reverse_iterator = std::reverse_iterator<const_iterator>;
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    /// returns the allocator associated with the container
    inline allocator_type get_allocator() const
    {
        return allocator_type();
    }


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    ///////////////////////////
    // JSON value data types //
    ///////////////////////////

    /// a type for an object
    using object_t = ObjectType<StringType, basic_json>;
    /// a type for an array
    using array_t = ArrayType<basic_json>;
    /// a type for a string
    using string_t = StringType;
    /// a type for a boolean
    using boolean_t = BooleanType;
    /// a type for a number (integer)
    using number_integer_t = NumberIntegerType;
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    /// a type for a number (floating-point)
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    using number_float_t = NumberFloatType;
    /// a type for list initialization
    using list_init_t = std::initializer_list<basic_json>;


    ////////////////////////
    // JSON value storage //
    ////////////////////////

    /// a JSON value
    union json_value
    {
        /// object (stored with pointer to save storage)
        object_t* object;
        /// array (stored with pointer to save storage)
        array_t* array;
        /// string (stored with pointer to save storage)
        string_t* string;
        /// bolean
        boolean_t boolean;
        /// number (integer)
        number_integer_t number_integer;
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        /// number (floating-point)
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        number_float_t number_float;

        /// default constructor (for null values)
        json_value() = default;
        /// constructor for booleans
        json_value(boolean_t v) : boolean(v) {}
        /// constructor for numbers (integer)
        json_value(number_integer_t v) : number_integer(v) {}
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        /// constructor for numbers (floating-point)
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        json_value(number_float_t v) : number_float(v) {}
    };


    /////////////////////////////////
    // JSON value type enumeration //
    /////////////////////////////////

    /// JSON value type enumeration
    enum class value_t : uint8_t
    {
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        null,           ///< null value
        object,         ///< object (unordered set of name/value pairs)
        array,          ///< array (ordered collection of values)
        string,         ///< string value
        boolean,        ///< boolean value
        number_integer, ///< number value (integer)
        number_float    ///< number value (floating-point)
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    };

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    /*!
    @brief comparison operator for JSON value types

    Returns an ordering that is similar to Python:
    - order: null < boolean < number < object < array < string
    - furthermore, each type is not smaller than itself
    */
    friend bool operator<(const value_t lhs, const value_t rhs)
    {
        // no type is smaller than itself
        if (lhs == rhs)
        {
            return false;
        }

        switch (lhs)
        {
            case (value_t::null):
            {
                // nulls are smaller than all other types
                return true;
            }

            case (value_t::boolean):
            {
                // only nulls are smaller than booleans
                return (rhs != value_t::null);
            }

            case (value_t::number_float):
            case (value_t::number_integer):
            {
                switch (rhs)
                {
                    // numbers are smaller than objects, arrays, and string
                    case (value_t::object):
                    case (value_t::array):
                    case (value_t::string):
                    {
                        return true;
                    }
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                    default:
                    {
                        return false;
                    }
                }
            }

            case (value_t::object):
            {
                switch (rhs)
                {
                    // objects are smaller than arrays and string
                    case (value_t::array):
                    case (value_t::string):
                    {
                        return true;
                    }
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                    default:
                    {
                        return false;
                    }
                }
            }

            case (value_t::array):
            {
                // arrays are smaller than strings
                return (rhs == value_t::string);
            }

            default:
            {
                // a string is not smaller than any other types
                return false;
            }
        }
    }

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    //////////////////
    // constructors //
    //////////////////

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    /*!
    @brief create an empty value with a given type
    @param value  the type to create an value of

    @exception std::bad_alloc  if allocation for object, array, or string fails.
    */
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    inline basic_json(const value_t value)
        : m_type(value)
    {
        switch (m_type)
        {
            case (value_t::null):
            {
                break;
            }

            case (value_t::object):
            {
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                Allocator<object_t> alloc;
                m_value.object = alloc.allocate(1);
                alloc.construct(m_value.object);
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                break;
            }

            case (value_t::array):
            {
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                Allocator<array_t> alloc;
                m_value.array = alloc.allocate(1);
                alloc.construct(m_value.array);
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                break;
            }

            case (value_t::string):
            {
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                Allocator<string_t> alloc;
                m_value.string = alloc.allocate(1);
                alloc.construct(m_value.string, "");
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                break;
            }

            case (value_t::boolean):
            {
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                m_value.boolean = boolean_t(false);
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                break;
            }

            case (value_t::number_integer):
            {
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                m_value.number_integer = number_integer_t(0);
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                break;
            }

            case (value_t::number_float):
            {
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                m_value.number_float = number_float_t(0.0);
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                break;
            }
        }
    }

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    /*!
    @brief create a null object (implicitly)
    @ingroup container
    */
    inline basic_json() noexcept = default;
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    /// create a null object (explicitly)
    inline basic_json(std::nullptr_t) noexcept
        : m_type(value_t::null)
    {}

    /// create an object (explicit)
    inline basic_json(const object_t& value)
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        : m_type(value_t::object)
    {
        Allocator<object_t> alloc;
        m_value.object = alloc.allocate(1);
        alloc.construct(m_value.object, value);
    }
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    /// create an object (implicit)
    template <class V, typename
              std::enable_if<
                  std::is_constructible<string_t, typename V::key_type>::value and
                  std::is_constructible<basic_json, typename V::mapped_type>::value, int>::type
              = 0>
    inline basic_json(const V& value)
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        : m_type(value_t::object)
    {
        Allocator<object_t> alloc;
        m_value.object = alloc.allocate(1);
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        alloc.construct(m_value.object, std::begin(value), std::end(value));
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    }
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    /// create an array (explicit)
    inline basic_json(const array_t& value)
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        : m_type(value_t::array)
    {
        Allocator<array_t> alloc;
        m_value.array = alloc.allocate(1);
        alloc.construct(m_value.array, value);
    }
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    /// create an array (implicit)
    template <class V, typename
              std::enable_if<
                  not std::is_same<V, basic_json::iterator>::value and
                  not std::is_same<V, basic_json::const_iterator>::value and
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                  not std::is_same<V, basic_json::reverse_iterator>::value and
                  not std::is_same<V, basic_json::const_reverse_iterator>::value and
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                  not std::is_same<V, typename array_t::iterator>::value and
                  not std::is_same<V, typename array_t::const_iterator>::value and
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                  std::is_constructible<basic_json, typename V::value_type>::value, int>::type
              = 0>
    inline basic_json(const V& value)
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        : m_type(value_t::array)
    {
        Allocator<array_t> alloc;
        m_value.array = alloc.allocate(1);
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        alloc.construct(m_value.array, std::begin(value), std::end(value));
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    }
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    /// create a string (explicit)
    inline basic_json(const string_t& value)
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        : m_type(value_t::string)
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    {
        Allocator<string_t> alloc;
        m_value.string = alloc.allocate(1);
        alloc.construct(m_value.string, value);
    }
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    /// create a string (explicit)
    inline basic_json(const typename string_t::value_type* value)
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        : m_type(value_t::string)
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    {
        Allocator<string_t> alloc;
        m_value.string = alloc.allocate(1);
        alloc.construct(m_value.string, value);
    }
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    /// create a string (implicit)
    template <class V, typename
              std::enable_if<
                  std::is_constructible<string_t, V>::value, int>::type
              = 0>
    inline basic_json(const V& value)
        : basic_json(string_t(value))
    {}

    /// create a boolean (explicit)
    inline basic_json(boolean_t value)
        : m_type(value_t::boolean), m_value(value)
    {}

    /// create an integer number (explicit)
    inline basic_json(const number_integer_t& value)
        : m_type(value_t::number_integer), m_value(value)
    {}

    /// create an integer number (implicit)
    template<typename T, typename
             std::enable_if<
                 std::is_constructible<number_integer_t, T>::value and
                 std::numeric_limits<T>::is_integer, T>::type
             = 0>
    inline basic_json(const T value) noexcept
        : m_type(value_t::number_integer), m_value(number_integer_t(value))
    {}

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    /// create a floating-point number (explicit)
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    inline basic_json(const number_float_t& value)
        : m_type(value_t::number_float), m_value(value)
    {}

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    /// create a floating-point number (implicit)
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    template<typename T, typename = typename
             std::enable_if<
                 std::is_constructible<number_float_t, T>::value and
                 std::is_floating_point<T>::value>::type
             >
    inline basic_json(const T value) noexcept
        : m_type(value_t::number_float), m_value(number_float_t(value))
    {}

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    /// create a container (array or object) from an initializer list
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    inline basic_json(list_init_t l, bool type_deduction = true, value_t manual_type = value_t::array)
    {
        // the initializer list could describe an object
        bool is_object = true;

        // check if each element is an array with two elements whose first element
        // is a string
        for (const auto& element : l)
        {
            if ((element.m_final and element.m_type == value_t::array)
                    or (element.m_type != value_t::array or element.size() != 2
                        or element[0].m_type != value_t::string))
            {
                // we found an element that makes it impossible to use the
                // initializer list as object
                is_object = false;
                break;
            }
        }

        // adjust type if type deduction is not wanted
        if (not type_deduction)
        {
            // mark this object's type as final
            m_final = true;

            // if array is wanted, do not create an object though possible
            if (manual_type == value_t::array)
            {
                is_object = false;
            }

            // if object is wanted but impossible, throw an exception
            if (manual_type == value_t::object and not is_object)
            {
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                throw std::logic_error("cannot create JSON object from initializer list");
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            }
        }

        if (is_object)
        {
            // the initializer list is a list of pairs -> create object
            m_type = value_t::object;
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            Allocator<object_t> alloc;
            m_value.object = alloc.allocate(1);
            alloc.construct(m_value.object);

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            for (auto& element : l)
            {
                m_value.object->emplace(std::move(*(element[0].m_value.string)), std::move(element[1]));
            }
        }
        else
        {
            // the initializer list describes an array -> create array
            m_type = value_t::array;
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            Allocator<array_t> alloc;
            m_value.array = alloc.allocate(1);
            alloc.construct(m_value.array, std::move(l));
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        }
    }

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    /// explicitly create an array from an initializer list
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    inline static basic_json array(list_init_t l = list_init_t())
    {
        return basic_json(l, false, value_t::array);
    }

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    /// explicitly create an object from an initializer list
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    inline static basic_json object(list_init_t l = list_init_t())
    {
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        return basic_json(l, false, value_t::object);
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    }

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    ///////////////////////////////////////
    // other constructors and destructor //
    ///////////////////////////////////////

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    /*!
    @brief copy constructor
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    @exception std::bad_alloc  if allocation for object, array, or string fails.

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    @ingroup container
    */
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    inline basic_json(const basic_json& other)
        : m_type(other.m_type)
    {
        switch (m_type)
        {
            case (value_t::null):
            {
                break;
            }
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            case (value_t::object):
            {
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                Allocator<object_t> alloc;
                m_value.object = alloc.allocate(1);
                alloc.construct(m_value.object, *other.m_value.object);
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                break;
            }
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            case (value_t::array):
            {
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                Allocator<array_t> alloc;
                m_value.array = alloc.allocate(1);
                alloc.construct(m_value.array, *other.m_value.array);
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                break;
            }
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            case (value_t::string):
            {
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                Allocator<string_t> alloc;
                m_value.string = alloc.allocate(1);
                alloc.construct(m_value.string, *other.m_value.string);
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                break;
            }
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            case (value_t::boolean):
            {
                m_value.boolean = other.m_value.boolean;
                break;
            }
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            case (value_t::number_integer):
            {
                m_value.number_integer = other.m_value.number_integer;
                break;
            }
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            case (value_t::number_float):
            {
                m_value.number_float = other.m_value.number_float;
                break;
            }
        }
    }

    /// move constructor
    inline basic_json(basic_json&& other) noexcept
        : m_type(std::move(other.m_type)),
          m_value(std::move(other.m_value))
    {
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        // invalidate payload
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        other.m_type = value_t::null;
        other.m_value = {};
    }

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    /*!
    @brief copy assignment
    @ingroup container
    */
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    inline reference& operator=(basic_json other) noexcept (
        std::is_nothrow_move_constructible<value_t>::value and
        std::is_nothrow_move_assignable<value_t>::value and
        std::is_nothrow_move_constructible<json_value>::value and
        std::is_nothrow_move_assignable<json_value>::value
    )
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    {
        std::swap(m_type, other.m_type);
        std::swap(m_value, other.m_value);
        return *this;
    }

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    /*!
    @brief destructor
    @ingroup container
    */
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    inline ~basic_json() noexcept
    {
        switch (m_type)
        {
            case (value_t::object):
            {
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                Allocator<object_t> alloc;
                alloc.destroy(m_value.object);
                alloc.deallocate(m_value.object, 1);
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                m_value.object = nullptr;
                break;
            }
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            case (value_t::array):
            {
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                Allocator<array_t> alloc;
                alloc.destroy(m_value.array);
                alloc.deallocate(m_value.array, 1);
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                m_value.array = nullptr;
                break;
            }
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            case (value_t::string):
            {
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                Allocator<string_t> alloc;
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                alloc.destroy(m_value.string);
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                alloc.deallocate(m_value.string, 1);
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                m_value.string = nullptr;
                break;
            }
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            default:
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            {
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                // all other types need no specific destructor
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                break;
            }
        }
    }


  public:
    ///////////////////////
    // object inspection //
    ///////////////////////

    /*!
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    @brief serialization

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    Serialization function for JSON objects. The function tries to mimick
    Python's @p json.dumps() function, and currently supports its @p indent
    parameter.
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    @param indent  sif indent is nonnegative, then array elements and object
    members will be pretty-printed with that indent level. An indent level of 0
    will only insert newlines. -1 (the default) selects the most compact
    representation
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    @see https://docs.python.org/2/library/json.html#json.dump
    */
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    inline string_t dump(const int indent = -1) const noexcept
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    {
        if (indent >= 0)
        {
            return dump(true, static_cast<unsigned int>(indent));
        }
        else
        {
            return dump(false, 0);
        }
    }

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    /// return the type of the object (explicit)
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    inline value_t type() const noexcept
    {
        return m_type;
    }

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    // return whether value is null
    inline bool is_null() const noexcept
    {
        return m_type == value_t::null;
    }

    // return whether value is boolean
    inline bool is_boolean() const noexcept
    {
        return m_type == value_t::boolean;
    }

    // return whether value is number
    inline bool is_number() const noexcept
    {
        return (m_type == value_t::number_integer) or (m_type == value_t::number_float);
    }

    // return whether value is object
    inline bool is_object() const noexcept
    {
        return m_type == value_t::object;
    }

    // return whether value is array
    inline bool is_array() const noexcept
    {
        return m_type == value_t::array;
    }

    // return whether value is string
    inline bool is_string() const noexcept
    {
        return m_type == value_t::string;
    }

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    /// return the type of the object (implicit)
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    inline operator value_t() const noexcept
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    {
        return m_type;
    }


    //////////////////////
    // value conversion //
    //////////////////////

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    /// get an object (explicit)
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    template <class T, typename
              std::enable_if<
                  std::is_constructible<string_t, typename T::key_type>::value and
                  std::is_constructible<basic_json, typename T::mapped_type>::value, int>::type
              = 0>
    inline T get() const
    {
        switch (m_type)
        {
            case (value_t::object):
                return T(m_value.object->begin(), m_value.object->end());
            default:
                throw std::logic_error("cannot cast " + type_name() + " to " + typeid(T).name());
        }
    }

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    /// get an array (explicit)
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    template <class T, typename
              std::enable_if<
                  not std::is_same<T, string_t>::value and
                  std::is_constructible<basic_json, typename T::value_type>::value, int>::type
              = 0>
    inline T get() const
    {
        switch (m_type)
        {
            case (value_t::array):
                return T(m_value.array->begin(), m_value.array->end());
            default:
                throw std::logic_error("cannot cast " + type_name() + " to " + typeid(T).name());
        }
    }

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    /// get a string (explicit)
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    template <typename T, typename
              std::enable_if<
                  std::is_constructible<T, string_t>::value, int>::type
              = 0>
    inline T get() const
    {
        switch (m_type)
        {
            case (value_t::string):
                return *m_value.string;
            default:
                throw std::logic_error("cannot cast " + type_name() + " to " + typeid(T).name());
        }
    }

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    /// get a boolean (explicit)
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    template <typename T, typename
              std::enable_if<
                  std::is_same<boolean_t, T>::value, int>::type
              = 0>
    inline T get() const
    {
        switch (m_type)
        {
            case (value_t::boolean):
                return m_value.boolean;
            default:
                throw std::logic_error("cannot cast " + type_name() + " to " + typeid(T).name());
        }
    }

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    /// get a number (explicit)
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    template<typename T, typename
             std::enable_if<
                 not std::is_same<boolean_t, T>::value and
                 std::is_arithmetic<T>::value, int>::type
             = 0>
    inline T get() const
    {
        switch (m_type)
        {
            case (value_t::number_integer):
                return static_cast<T>(m_value.number_integer);
            case (value_t::number_float):
                return static_cast<T>(m_value.number_float);
            default:
                throw std::logic_error("cannot cast " + type_name() + " to " + typeid(T).name());
        }
    }

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    /// get a value (implicit)
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    template<typename T>
    inline operator T() const
    {
        return get<T>();
    }


    ////////////////////
    // element access //
    ////////////////////

    /// access specified element with bounds checking
    inline reference at(size_type pos)
    {
        // at only works for arrays
        if (m_type != value_t::array)
        {
            throw std::runtime_error("cannot use at with " + type_name());
        }

        return m_value.array->at(pos);
    }

    /// access specified element with bounds checking
    inline const_reference at(size_type pos) const
    {
        // at only works for arrays
        if (m_type != value_t::array)
        {
            throw std::runtime_error("cannot use at with " + type_name());
        }

        return m_value.array->at(pos);
    }

    /// access specified element
    inline reference operator[](size_type pos)
    {
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        // implicitly convert null to object
        if (m_type == value_t::null)
        {
            m_type = value_t::array;
            Allocator<array_t> alloc;
            m_value.array = alloc.allocate(1);
            alloc.construct(m_value.array);
        }

        // [] only works for arrays
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        if (m_type != value_t::array)
        {
            throw std::runtime_error("cannot use [] with " + type_name());
        }

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        for (size_t i = m_value.array->size(); i <= pos; ++i)
        {
            m_value.array->push_back(basic_json());
        }

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        return m_value.array->operator[](pos);
    }

    /// access specified element
    inline const_reference operator[](size_type pos) const
    {
        // at only works for arrays
        if (m_type != value_t::array)
        {
            throw std::runtime_error("cannot use [] with " + type_name());
        }

        return m_value.array->operator[](pos);
    }

    /// access specified element with bounds checking
    inline reference at(const typename object_t::key_type& key)
    {
        // at only works for objects
        if (m_type != value_t::object)
        {
            throw std::runtime_error("cannot use at with " + type_name());
        }

        return m_value.object->at(key);
    }

    /// access specified element with bounds checking
    inline const_reference at(const typename object_t::key_type& key) const
    {
        // at only works for objects
        if (m_type != value_t::object)
        {
            throw std::runtime_error("cannot use at with " + type_name());
        }

        return m_value.object->at(key);
    }

    /// access specified element
    inline reference operator[](const typename object_t::key_type& key)
    {
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        // implicitly convert null to object
        if (m_type == value_t::null)
        {
            m_type = value_t::object;
            Allocator<object_t> alloc;
            m_value.object = alloc.allocate(1);
            alloc.construct(m_value.object);
        }

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        // [] only works for objects
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        if (m_type != value_t::object)
        {
            throw std::runtime_error("cannot use [] with " + type_name());
        }

        return m_value.object->operator[](key);
    }

1006 1007 1008 1009 1010 1011 1012 1013 1014 1015 1016 1017
    /// access specified element
    inline const_reference operator[](const typename object_t::key_type& key) const
    {
        // at only works for objects
        if (m_type != value_t::object)
        {
            throw std::runtime_error("cannot use [] with " + type_name());
        }

        return m_value.object->operator[](key);
    }

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    /// access specified element (needed for clang)
    template<typename T, size_t n>
    inline reference operator[](const T (&key)[n])
    {
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        // implicitly convert null to object
        if (m_type == value_t::null)
        {
            m_type = value_t::object;
            Allocator<object_t> alloc;
            m_value.object = alloc.allocate(1);
            alloc.construct(m_value.object);
        }

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        // at only works for objects
        if (m_type != value_t::object)
        {
            throw std::runtime_error("cannot use [] with " + type_name());
        }

        return m_value.object->operator[](key);
    }

1040 1041 1042 1043 1044 1045 1046 1047 1048 1049 1050 1051 1052
    /// access specified element (needed for clang)
    template<typename T, size_t n>
    inline const_reference operator[](const T (&key)[n]) const
    {
        // at only works for objects
        if (m_type != value_t::object)
        {
            throw std::runtime_error("cannot use [] with " + type_name());
        }

        return m_value.object->operator[](key);
    }

1053 1054 1055 1056 1057 1058 1059 1060 1061 1062 1063 1064
    /// remove element from an object given a key
    inline size_type erase(const typename object_t::key_type& key)
    {
        // at only works for objects
        if (m_type != value_t::object)
        {
            throw std::runtime_error("cannot use at with " + type_name());
        }

        return m_value.object->erase(key);
    }

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    /// find an element in an object
    inline iterator find(typename object_t::key_type key)
    {
        auto result = end();

        if (m_type == value_t::object)
        {
            result.m_it.object_iterator = m_value.object->find(key);
        }

        return result;
    }

    /// find an element in an object
    inline const_iterator find(typename object_t::key_type key) const
    {
        auto result = cend();

        if (m_type == value_t::object)
        {
            result.m_it.object_iterator = m_value.object->find(key);
        }

        return result;
    }

1091 1092 1093 1094 1095 1096 1097
    /// returns the number of occurrences of a key in an object
    inline size_type count(typename object_t::key_type key) const
    {
        // return 0 for all nonobject types
        return (m_type == value_t::object) ? m_value.object->count(key) : 0;
    }

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    ///////////////
    // iterators //
    ///////////////

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    /*!
    @brief returns an iterator to the first element
    @ingroup container
    */
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    inline iterator begin() noexcept
    {
        iterator result(this);
        result.set_begin();
        return result;
    }

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    /*!
    @brief returns a const iterator to the first element
    @ingroup container
    */
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    inline const_iterator begin() const noexcept
    {
        const_iterator result(this);
        result.set_begin();
        return result;
    }

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    /*!
    @brief returns a const iterator to the first element
    @ingroup container
    */
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    inline const_iterator cbegin() const noexcept
    {
        const_iterator result(this);
        result.set_begin();
        return result;
    }

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    /*!
    @brief returns an iterator to one past the last element
    @ingroup container
    */
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    inline iterator end() noexcept
    {
        iterator result(this);
        result.set_end();
        return result;
    }

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    /*!
    @brief returns a const iterator to one past the last element
    @ingroup container
    */
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    inline const_iterator end() const noexcept
    {
        const_iterator result(this);
        result.set_end();
        return result;
    }

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    /*!
    @brief returns a const iterator to one past the last element
    @ingroup container
    */
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    inline const_iterator cend() const noexcept
    {
        const_iterator result(this);
        result.set_end();
        return result;
    }

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    /*!
    @brief returns a reverse iterator to the first element
    @ingroup reversiblecontainer
    */
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    inline reverse_iterator rbegin() noexcept
    {
        return reverse_iterator(end());
    }

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    /*!
    @brief returns a const reverse iterator to the first element
    @ingroup reversiblecontainer
    */
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    inline const_reverse_iterator rbegin() const noexcept
    {
        return const_reverse_iterator(end());
    }

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    /*!
    @brief returns a reverse iterator to one past the last element
    @ingroup reversiblecontainer
    */
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    inline reverse_iterator rend() noexcept
    {
        return reverse_iterator(begin());
    }

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    /*!
    @brief returns a const reverse iterator to one past the last element
    @ingroup reversiblecontainer
    */
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    inline const_reverse_iterator rend() const noexcept
    {
        return const_reverse_iterator(begin());
    }

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    /*!
    @brief returns a const reverse iterator to the first element
    @ingroup reversiblecontainer
    */
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    inline const_reverse_iterator crbegin() const noexcept
    {
        return const_reverse_iterator(cend());
    }

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    /*!
    @brief returns a const reverse iterator to one past the last element
    @ingroup reversiblecontainer
    */
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    inline const_reverse_iterator crend() const noexcept
    {
        return const_reverse_iterator(cbegin());
    }

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    //////////////
    // capacity //
    //////////////

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    /*!
    @brief checks whether the container is empty
    @ingroup container
    */
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    inline bool empty() const noexcept
    {
        switch (m_type)
        {
            case (value_t::null):
            {
                return true;
            }
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            case (value_t::array):
            {
                return m_value.array->empty();
            }
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            case (value_t::object):
            {
                return m_value.object->empty();
            }
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            default:
            {
                // all other types are nonempty
                return false;
            }
        }
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    }

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    /*!
    @brief returns the number of elements
    @ingroup container
    */
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    inline size_type size() const noexcept
    {
        switch (m_type)
        {
            case (value_t::null):
            {
                return 0;
            }
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            case (value_t::array):
            {
                return m_value.array->size();
            }
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            case (value_t::object):
            {
                return m_value.object->size();
            }
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            default:
            {
                // all other types have size 1
                return 1;
            }
        }
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    }

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    /*!
    @brief returns the maximum possible number of elements
    @ingroup container
    */
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    inline size_type max_size() const noexcept
    {
        switch (m_type)
        {
            case (value_t::null):
            {
                return 0;
            }
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            case (value_t::array):
            {
                return m_value.array->max_size();
            }
N
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            case (value_t::object):
            {
                return m_value.object->max_size();
            }
N
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N
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            default:
            {
                // all other types have max_size 1
                return 1;
            }
        }
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    }


    ///////////////
    // modifiers //
    ///////////////

    /// clears the contents
    inline void clear() noexcept
    {
        switch (m_type)
        {
            case (value_t::null):
            {
                break;
            }
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N
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            case (value_t::number_integer):
            {
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1338
                m_value.number_integer = 0;
N
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                break;
            }
N
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N
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            case (value_t::number_float):
            {
N
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                m_value.number_float = 0.0;
N
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                break;
            }
N
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N
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            case (value_t::boolean):
            {
N
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                m_value.boolean = false;
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                break;
            }
N
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N
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            case (value_t::string):
            {
                m_value.string->clear();
                break;
            }
N
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N
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            case (value_t::array):
            {
                m_value.array->clear();
                break;
            }
N
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            case (value_t::object):
            {
                m_value.object->clear();
                break;
            }
        }
    }

    /// add an object to an array
    inline void push_back(basic_json&& value)
    {
        // push_back only works for null objects or arrays
        if (not(m_type == value_t::null or m_type == value_t::array))
        {
            throw std::runtime_error("cannot add element to " + type_name());
        }

        // transform null object into an array
        if (m_type == value_t::null)
        {
            m_type = value_t::array;
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            Allocator<array_t> alloc;
            m_value.array = alloc.allocate(1);
            alloc.construct(m_value.array);
N
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        }

        // add element to array (move semantics)
        m_value.array->push_back(std::move(value));
        // invalidate object
        value.m_type = value_t::null;
    }

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    /// add an object to an array
    inline reference operator+=(basic_json&& value)
    {
        push_back(std::move(value));
        return *this;
    }

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    /// add an object to an array
    inline void push_back(const basic_json& value)
    {
        // push_back only works for null objects or arrays
        if (not(m_type == value_t::null or m_type == value_t::array))
        {
            throw std::runtime_error("cannot add element to " + type_name());
        }

        // transform null object into an array
        if (m_type == value_t::null)
        {
            m_type = value_t::array;
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            Allocator<array_t> alloc;
            m_value.array = alloc.allocate(1);
            alloc.construct(m_value.array);
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        }

        // add element to array
        m_value.array->push_back(value);
    }

    /// add an object to an array
    inline reference operator+=(const basic_json& value)
    {
        push_back(value);
        return *this;
    }

    /// add an object to an object
    inline void push_back(const typename object_t::value_type& value)
    {
        // push_back only works for null objects or objects
        if (not(m_type == value_t::null or m_type == value_t::object))
        {
            throw std::runtime_error("cannot add element to " + type_name());
        }

        // transform null object into an object
        if (m_type == value_t::null)
        {
            m_type = value_t::object;
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            Allocator<object_t> alloc;
            m_value.object = alloc.allocate(1);
            alloc.construct(m_value.object);
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        }

        // add element to array
        m_value.object->insert(value);
    }

    /// add an object to an object
    inline reference operator+=(const typename object_t::value_type& value)
    {
        push_back(value);
        return operator[](value.first);
    }

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    /*!
    @brief exchanges the values
    @ingroup container
    */
N
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    inline void swap(reference other) noexcept (
        std::is_nothrow_move_constructible<value_t>::value and
        std::is_nothrow_move_assignable<value_t>::value and
        std::is_nothrow_move_constructible<json_value>::value and
        std::is_nothrow_move_assignable<json_value>::value
    )
N
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1473 1474 1475 1476 1477 1478 1479 1480 1481 1482 1483 1484 1485 1486 1487 1488 1489 1490 1491 1492 1493 1494 1495 1496 1497 1498 1499 1500 1501 1502 1503 1504 1505 1506 1507 1508 1509 1510 1511 1512 1513 1514 1515 1516 1517 1518 1519 1520 1521
    {
        std::swap(m_type, other.m_type);
        std::swap(m_value, other.m_value);
    }

    /// swaps the contents
    inline void swap(array_t& other)
    {
        // swap only works for arrays
        if (m_type != value_t::array)
        {
            throw std::runtime_error("cannot use swap with " + type_name());
        }

        // swap arrays
        std::swap(*(m_value.array), other);
    }

    /// swaps the contents
    inline void swap(object_t& other)
    {
        // swap only works for objects
        if (m_type != value_t::object)
        {
            throw std::runtime_error("cannot use swap with " + type_name());
        }

        // swap arrays
        std::swap(*(m_value.object), other);
    }

    /// swaps the contents
    inline void swap(string_t& other)
    {
        // swap only works for strings
        if (m_type != value_t::string)
        {
            throw std::runtime_error("cannot use swap with " + type_name());
        }

        // swap arrays
        std::swap(*(m_value.string), other);
    }


    //////////////////////////////////////////
    // lexicographical comparison operators //
    //////////////////////////////////////////

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    /*!
    @brief comparison: equal
    @ingroup container
    */
N
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    friend bool operator==(const_reference lhs, const_reference rhs) noexcept
N
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1527 1528 1529 1530 1531 1532 1533 1534 1535 1536 1537 1538 1539 1540 1541 1542 1543 1544 1545 1546 1547 1548 1549 1550 1551 1552 1553 1554 1555 1556 1557 1558 1559 1560 1561 1562 1563 1564 1565 1566 1567 1568 1569 1570 1571 1572 1573 1574 1575 1576 1577 1578 1579 1580 1581 1582 1583 1584 1585
    {
        switch (lhs.type())
        {
            case (value_t::array):
            {
                if (rhs.type() == value_t::array)
                {
                    return *lhs.m_value.array == *rhs.m_value.array;
                }
                break;
            }
            case (value_t::object):
            {
                if (rhs.type() == value_t::object)
                {
                    return *lhs.m_value.object == *rhs.m_value.object;
                }
                break;
            }
            case (value_t::null):
            {
                if (rhs.type() == value_t::null)
                {
                    return true;
                }
                break;
            }
            case (value_t::string):
            {
                if (rhs.type() == value_t::string)
                {
                    return *lhs.m_value.string == *rhs.m_value.string;
                }
                break;
            }
            case (value_t::boolean):
            {
                if (rhs.type() == value_t::boolean)
                {
                    return lhs.m_value.boolean == rhs.m_value.boolean;
                }
                break;
            }
            case (value_t::number_integer):
            {
                if (rhs.type() == value_t::number_integer)
                {
                    return lhs.m_value.number_integer == rhs.m_value.number_integer;
                }
                if (rhs.type() == value_t::number_float)
                {
                    return lhs.m_value.number_integer == static_cast<number_integer_t>(rhs.m_value.number_float);
                }
                break;
            }
            case (value_t::number_float):
            {
                if (rhs.type() == value_t::number_integer)
                {
1586
                    return approx(lhs.m_value.number_float, static_cast<number_float_t>(rhs.m_value.number_integer));
N
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1587 1588 1589
                }
                if (rhs.type() == value_t::number_float)
                {
1590
                    return approx(lhs.m_value.number_float, rhs.m_value.number_float);
N
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                }
                break;
            }
        }

        return false;
    }

N
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1599 1600 1601 1602
    /*!
    @brief comparison: not equal
    @ingroup container
    */
N
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1603
    friend bool operator!=(const_reference lhs, const_reference rhs) noexcept
N
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    {
        return not (lhs == rhs);
    }

    /// comparison: less than
N
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    friend bool operator<(const_reference lhs, const_reference rhs) noexcept
N
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1610 1611 1612 1613 1614 1615 1616 1617 1618 1619 1620 1621 1622 1623 1624 1625 1626 1627 1628 1629 1630 1631 1632 1633 1634 1635 1636 1637 1638 1639 1640 1641 1642 1643 1644 1645 1646 1647 1648 1649 1650 1651 1652 1653 1654 1655 1656 1657 1658 1659 1660 1661 1662 1663 1664 1665 1666 1667 1668 1669 1670 1671 1672 1673 1674 1675 1676 1677 1678
    {
        switch (lhs.type())
        {
            case (value_t::array):
            {
                if (rhs.type() == value_t::array)
                {
                    return *lhs.m_value.array < *rhs.m_value.array;
                }
                break;
            }
            case (value_t::object):
            {
                if (rhs.type() == value_t::object)
                {
                    return *lhs.m_value.object < *rhs.m_value.object;
                }
                break;
            }
            case (value_t::null):
            {
                if (rhs.type() == value_t::null)
                {
                    return false;
                }
                break;
            }
            case (value_t::string):
            {
                if (rhs.type() == value_t::string)
                {
                    return *lhs.m_value.string < *rhs.m_value.string;
                }
                break;
            }
            case (value_t::boolean):
            {
                if (rhs.type() == value_t::boolean)
                {
                    return lhs.m_value.boolean < rhs.m_value.boolean;
                }
                break;
            }
            case (value_t::number_integer):
            {
                if (rhs.type() == value_t::number_integer)
                {
                    return lhs.m_value.number_integer < rhs.m_value.number_integer;
                }
                if (rhs.type() == value_t::number_float)
                {
                    return lhs.m_value.number_integer < static_cast<number_integer_t>(rhs.m_value.number_float);
                }
                break;
            }
            case (value_t::number_float):
            {
                if (rhs.type() == value_t::number_integer)
                {
                    return lhs.m_value.number_float < static_cast<number_float_t>(rhs.m_value.number_integer);
                }
                if (rhs.type() == value_t::number_float)
                {
                    return lhs.m_value.number_float < rhs.m_value.number_float;
                }
                break;
            }
        }

N
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1679 1680 1681
        // We only reach this line if we cannot compare values. In that case,
        // we compare types.
        return lhs.type() < rhs.type();
N
cleanup  
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1682 1683 1684
    }

    /// comparison: less than or equal
N
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1685
    friend bool operator<=(const_reference lhs, const_reference rhs) noexcept
N
cleanup  
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1686 1687 1688 1689 1690
    {
        return not (rhs < lhs);
    }

    /// comparison: greater than
N
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1691
    friend bool operator>(const_reference lhs, const_reference rhs) noexcept
N
cleanup  
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1692 1693 1694 1695 1696
    {
        return not (lhs <= rhs);
    }

    /// comparison: greater than or equal
N
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1697
    friend bool operator>=(const_reference lhs, const_reference rhs) noexcept
N
cleanup  
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1698 1699 1700 1701 1702 1703 1704 1705 1706 1707 1708 1709
    {
        return not (lhs < rhs);
    }


    ///////////////////
    // serialization //
    ///////////////////

    /// serialize to stream
    friend std::ostream& operator<<(std::ostream& o, const basic_json& j)
    {
N
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1710 1711 1712 1713
        // read width member and use it as indentation parameter if nonzero
        const int indentation = (o.width() == 0) ? -1 : o.width();

        o << j.dump(indentation);
N
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1714 1715 1716 1717 1718 1719
        return o;
    }

    /// serialize to stream
    friend std::ostream& operator>>(const basic_json& j, std::ostream& o)
    {
N
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1720 1721 1722 1723
        // read width member and use it as indentation parameter if nonzero
        const int indentation = (o.width() == 0) ? -1 : o.width();

        o << j.dump(indentation);
N
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Niels 已提交
1724 1725 1726 1727
        return o;
    }


N
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1728 1729 1730 1731 1732
    /////////////////////
    // deserialization //
    /////////////////////

    /// deserialize from string
N
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1733
    static basic_json parse(const string_t& s)
N
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1734 1735 1736 1737 1738 1739 1740 1741 1742 1743 1744 1745 1746 1747 1748 1749 1750 1751 1752
    {
        return parser(s).parse();
    }

    /// deserialize from stream
    friend std::istream& operator>>(std::istream& i, basic_json& j)
    {
        j = parser(i).parse();
        return i;
    }

    /// deserialize from stream
    friend std::istream& operator<<(basic_json& j, std::istream& i)
    {
        j = parser(i).parse();
        return i;
    }


N
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1753 1754 1755 1756 1757 1758 1759 1760 1761 1762 1763 1764 1765 1766
  private:
    ///////////////////////////
    // convenience functions //
    ///////////////////////////

    /// return the type as string
    inline string_t type_name() const noexcept
    {
        switch (m_type)
        {
            case (value_t::null):
            {
                return "null";
            }
N
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1767

N
cleanup  
Niels 已提交
1768 1769 1770 1771
            case (value_t::object):
            {
                return "object";
            }
N
Niels 已提交
1772

N
cleanup  
Niels 已提交
1773 1774 1775 1776
            case (value_t::array):
            {
                return "array";
            }
N
Niels 已提交
1777

N
cleanup  
Niels 已提交
1778 1779 1780 1781
            case (value_t::string):
            {
                return "string";
            }
N
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1782

N
cleanup  
Niels 已提交
1783 1784 1785 1786
            case (value_t::boolean):
            {
                return "boolean";
            }
N
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1787 1788

            default:
N
cleanup  
Niels 已提交
1789 1790 1791 1792 1793 1794
            {
                return "number";
            }
        }
    }

N
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1795
    /*!
N
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1796
    @brief escape a string
N
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1797

N
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1798 1799 1800 1801 1802 1803 1804
    Escape a string by replacing certain special characters by a sequence of an
    escape character (backslash) and another character and other control
    characters by a sequence of "\u" followed by a four-digit hex
    representation.

    @param s  the string to escape
    @return escaped string
N
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1805
    */
N
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1806
    static string_t escape_string(const string_t& s) noexcept
N
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1807 1808 1809 1810 1811
    {
        // create a result string of at least the size than s
        string_t result;
        result.reserve(s.size());

N
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1812
        for (const auto c : s)
N
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1813 1814 1815
        {
            switch (c)
            {
N
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1816
                // quotation mark (0x22)
N
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1817 1818
                case '"':
                {
N
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1819
                    result += "\\\"";
N
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1820 1821
                    break;
                }
N
Niels 已提交
1822

N
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1823
                // reverse solidus (0x5c)
N
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1824 1825
                case '\\':
                {
N
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1826
                    result += "\\\\";
N
Niels 已提交
1827 1828
                    break;
                }
N
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1829

N
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1830
                // backspace (0x08)
N
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1831 1832
                case '\b':
                {
N
Niels 已提交
1833
                    result += "\\b";
N
Niels 已提交
1834 1835
                    break;
                }
N
Niels 已提交
1836

N
Niels 已提交
1837
                // formfeed (0x0c)
N
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1838 1839
                case '\f':
                {
N
Niels 已提交
1840
                    result += "\\f";
N
Niels 已提交
1841 1842
                    break;
                }
N
Niels 已提交
1843

N
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1844
                // newline (0x0a)
N
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1845 1846
                case '\n':
                {
N
Niels 已提交
1847
                    result += "\\n";
N
Niels 已提交
1848 1849
                    break;
                }
N
Niels 已提交
1850

N
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1851
                // carriage return (0x0d)
N
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1852 1853
                case '\r':
                {
N
Niels 已提交
1854
                    result += "\\r";
N
Niels 已提交
1855 1856
                    break;
                }
N
Niels 已提交
1857

N
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1858
                // horizontal tab (0x09)
N
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1859 1860
                case '\t':
                {
N
Niels 已提交
1861
                    result += "\\t";
N
Niels 已提交
1862 1863
                    break;
                }
N
Niels 已提交
1864

N
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1865 1866
                default:
                {
N
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1867
                    if (c >= 0 and c <= 0x1f)
N
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1868 1869 1870 1871 1872 1873 1874 1875 1876 1877 1878 1879 1880
                    {
                        // control characters (everything between 0x00 and 0x1f)
                        // -> create four-digit hex representation
                        std::stringstream ss;
                        ss << "\\u" << std::hex << std::setw(4) << std::setfill('0') << int(c);
                        result += ss.str();
                    }
                    else
                    {
                        // all other characters are added as-is
                        result.append(1, c);
                    }
                    break;
N
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1881 1882 1883 1884 1885 1886 1887
                }
            }
        }

        return result;
    }

N
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1888

N
cleanup  
Niels 已提交
1889
    /*!
N
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1890
    @brief internal implementation of the serialization function
N
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1891

N
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1892 1893 1894 1895
    This function is called by the public member function dump and organizes
    the serializaion internally. The indentation level is propagated as
    additional parameter. In case of arrays and objects, the function is called
    recursively. Note that
N
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1896

N
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1897
    - strings and object keys are escaped using escape_string()
N
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1898 1899 1900
    - integer numbers are converted to a string before output using
      std::to_string()
    - floating-point numbers are converted to a string using "%g" format
N
cleanup  
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1901 1902 1903 1904 1905 1906

    @param prettyPrint    whether the output shall be pretty-printed
    @param indentStep     the indent level
    @param currentIndent  the current indent level (only used internally)
    */
    inline string_t dump(const bool prettyPrint, const unsigned int indentStep,
N
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1907
                         const unsigned int currentIndent = 0) const noexcept
N
cleanup  
Niels 已提交
1908
    {
N
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1909 1910 1911
        // variable to hold indentation for recursive calls
        auto new_indent = currentIndent;

N
cleanup  
Niels 已提交
1912
        // helper function to return whitespace as indentation
N
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1913
        const auto indent = [prettyPrint, &new_indent]()
N
cleanup  
Niels 已提交
1914
        {
N
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1915
            return prettyPrint ? string_t(new_indent, ' ') : string_t();
N
cleanup  
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1916 1917 1918 1919 1920 1921 1922 1923 1924 1925 1926 1927 1928 1929 1930 1931
        };

        switch (m_type)
        {
            case (value_t::object):
            {
                if (m_value.object->empty())
                {
                    return "{}";
                }

                string_t result = "{";

                // increase indentation
                if (prettyPrint)
                {
N
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1932
                    new_indent += indentStep;
N
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1933 1934 1935
                    result += "\n";
                }

N
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                for (auto i = m_value.object->cbegin(); i != m_value.object->cend(); ++i)
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                {
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                    if (i != m_value.object->cbegin())
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                    {
                        result += prettyPrint ? ",\n" : ",";
                    }
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                    result += indent() + "\"" + escape_string(i->first) + "\":" + (prettyPrint ? " " : "")
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                              + i->second.dump(prettyPrint, indentStep, new_indent);
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                }

                // decrease indentation
                if (prettyPrint)
                {
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                    new_indent -= indentStep;
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                    result += "\n";
                }

                return result + indent() + "}";
            }

            case (value_t::array):
            {
                if (m_value.array->empty())
                {
                    return "[]";
                }

                string_t result = "[";

                // increase indentation
                if (prettyPrint)
                {
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                    new_indent += indentStep;
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                    result += "\n";
                }

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                for (auto i = m_value.array->cbegin(); i != m_value.array->cend(); ++i)
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                {
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                    if (i != m_value.array->cbegin())
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                    {
                        result += prettyPrint ? ",\n" : ",";
                    }
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                    result += indent() + i->dump(prettyPrint, indentStep, new_indent);
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                }

                // decrease indentation
                if (prettyPrint)
                {
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                    new_indent -= indentStep;
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                    result += "\n";
                }

                return result + indent() + "]";
            }

            case (value_t::string):
            {
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                return string_t("\"") + escape_string(*m_value.string) + "\"";
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            }

            case (value_t::boolean):
            {
                return m_value.boolean ? "true" : "false";
            }

            case (value_t::number_integer):
            {
                return std::to_string(m_value.number_integer);
            }

            case (value_t::number_float):
            {
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                // 15 digits of precision allows round-trip IEEE 754
                // string->double->string
                const auto sz = static_cast<unsigned int>(std::snprintf(nullptr, 0, "%.15g", m_value.number_float));
                std::vector<char> buf(sz + 1);
                std::snprintf(&buf[0], buf.size(), "%.15g", m_value.number_float);
                return string_t(buf.data());
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            }
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            default:
            {
                return "null";
            }
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        }
    }

2023 2024 2025 2026 2027 2028 2029
    /// "equality" comparison for floating point numbers
    template<typename T>
    inline static bool approx(const T a, const T b)
    {
        return not (a > b or a < b);
    }

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  private:
    //////////////////////
    // member variables //
    //////////////////////

    /// the type of the current element
    value_t m_type = value_t::null;

    /// whether the type of JSON object may change later
    bool m_final = false;

    /// the value of the current element
    json_value m_value = {};

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  private:
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    ///////////////
    // iterators //
    ///////////////

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    /// an iterator value
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    template<typename array_iterator_t, typename object_iterator_t>
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    union internal_iterator
    {
        /// iterator for JSON objects
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        object_iterator_t object_iterator;
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        /// iterator for JSON arrays
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        array_iterator_t array_iterator;
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        /// generic iteraotr for all other value types
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        difference_type generic_iterator;
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        /// default constructor
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        internal_iterator() : generic_iterator(-1) {}
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    };

  public:
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    /// a random access iterator for the basic_json class
    class iterator : public std::iterator<std::random_access_iterator_tag, basic_json>
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    {
2070 2071 2072
        // allow basic_json class to access m_it
        friend class basic_json;

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      public:
        /// the type of the values when the iterator is dereferenced
        using value_type = basic_json::value_type;
        /// a type to represent differences between iterators
        using difference_type = basic_json::difference_type;
        /// defines a pointer to the type iterated over (value_type)
        using pointer = basic_json::pointer;
        /// defines a reference to the type iterated over (value_type)
        using reference = basic_json::reference;
        /// the category of the iterator
        using iterator_category = std::bidirectional_iterator_tag;

2085 2086 2087
        /// default constructor
        inline iterator() = default;

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        /// constructor for a given JSON instance
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        inline iterator(pointer object) noexcept : m_object(object)
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        {
            switch (m_object->m_type)
            {
                case (basic_json::value_t::object):
                {
                    m_it.object_iterator = typename object_t::iterator();
                    break;
                }
                case (basic_json::value_t::array):
                {
                    m_it.array_iterator = typename array_t::iterator();
                    break;
                }
                default:
                {
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                    m_it.generic_iterator = -1;
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                    break;
                }
            }
        }

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        /// copy constructor
        inline iterator(const iterator& other) noexcept
            : m_object(other.m_object), m_it(other.m_it)
        {}

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        /// copy assignment
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        inline iterator& operator=(iterator other) noexcept (
            std::is_nothrow_move_constructible<pointer>::value and
            std::is_nothrow_move_assignable<pointer>::value and
            std::is_nothrow_move_constructible<internal_iterator<typename array_t::iterator, typename object_t::iterator>>::value
            and
            std::is_nothrow_move_assignable<internal_iterator<typename array_t::iterator, typename object_t::iterator>>::value
        )
        {
            std::swap(m_object, other.m_object);
            std::swap(m_it, other.m_it);
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            return *this;
        }

        /// set the iterator to the first value
        inline void set_begin() noexcept
        {
            switch (m_object->m_type)
            {
                case (basic_json::value_t::object):
                {
                    m_it.object_iterator = m_object->m_value.object->begin();
                    break;
                }

                case (basic_json::value_t::array):
                {
                    m_it.array_iterator = m_object->m_value.array->begin();
                    break;
                }

                case (basic_json::value_t::null):
                {
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                    // set to end so begin()==end() is true: null is empty
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                    m_it.generic_iterator = 1;
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                    break;
                }

                default:
                {
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                    m_it.generic_iterator = 0;
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                    break;
                }
            }
        }

        /// set the iterator past the last value
        inline void set_end() noexcept
        {
            switch (m_object->m_type)
            {
                case (basic_json::value_t::object):
                {
                    m_it.object_iterator = m_object->m_value.object->end();
                    break;
                }

                case (basic_json::value_t::array):
                {
                    m_it.array_iterator = m_object->m_value.array->end();
                    break;
                }

                default:
                {
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                    m_it.generic_iterator = 1;
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                    break;
                }
            }
        }

        /// return a reference to the value pointed to by the iterator
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        inline reference operator*()
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        {
            switch (m_object->m_type)
            {
                case (basic_json::value_t::object):
                {
                    return m_it.object_iterator->second;
                }

                case (basic_json::value_t::array):
                {
                    return *m_it.array_iterator;
                }

                case (basic_json::value_t::null):
                {
                    throw std::out_of_range("cannot get value");
                }

                default:
                {
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                    if (m_it.generic_iterator == 0)
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                    {
                        return *m_object;
                    }
                    else
                    {
                        throw std::out_of_range("cannot get value");
                    }
                }
            }
        }

        /// dereference the iterator
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        inline pointer operator->()
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        {
            switch (m_object->m_type)
            {
                case (basic_json::value_t::object):
                {
                    return &(m_it.object_iterator->second);
                }

                case (basic_json::value_t::array):
                {
                    return &*m_it.array_iterator;
                }

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                case (basic_json::value_t::null):
                {
                    throw std::out_of_range("cannot get value");
                }

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                default:
                {
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                    if (m_it.generic_iterator == 0)
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                    {
                        return m_object;
                    }
                    else
                    {
                        throw std::out_of_range("cannot get value");
                    }
                }
            }
        }

        /// post-increment (it++)
        inline iterator operator++(int)
        {
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            auto result = *this;
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            switch (m_object->m_type)
            {
                case (basic_json::value_t::object):
                {
                    m_it.object_iterator++;
                    break;
                }

                case (basic_json::value_t::array):
                {
                    m_it.array_iterator++;
                    break;
                }

                default:
                {
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                    m_it.generic_iterator++;
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                    break;
                }
            }

            return result;
        }

        /// pre-increment (++it)
        inline iterator& operator++()
        {
            switch (m_object->m_type)
            {
                case (basic_json::value_t::object):
                {
                    ++m_it.object_iterator;
                    break;
                }

                case (basic_json::value_t::array):
                {
                    ++m_it.array_iterator;
                    break;
                }

                default:
                {
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                    ++m_it.generic_iterator;
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                    break;
                }
            }

            return *this;
        }

        /// post-decrement (it--)
        inline iterator operator--(int)
        {
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            auto result = *this;
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            switch (m_object->m_type)
            {
                case (basic_json::value_t::object):
                {
                    m_it.object_iterator--;
                    break;
                }

                case (basic_json::value_t::array):
                {
                    m_it.array_iterator--;
                    break;
                }

                default:
                {
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                    m_it.generic_iterator--;
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                    break;
                }
            }

            return result;
        }

        /// pre-decrement (--it)
        inline iterator& operator--()
        {
            switch (m_object->m_type)
            {
                case (basic_json::value_t::object):
                {
                    --m_it.object_iterator;
                    break;
                }

                case (basic_json::value_t::array):
                {
                    --m_it.array_iterator;
                    break;
                }

                default:
                {
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                    --m_it.generic_iterator;
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                    break;
                }
            }

            return *this;
        }

        /// comparison: equal
        inline bool operator==(const iterator& other) const
        {
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            // if objects are not the same, the comparison is undefined
            if (m_object != other.m_object)
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            {
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                throw std::domain_error("cannot compare iterators of different containers");
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            }

            switch (m_object->m_type)
            {
                case (basic_json::value_t::object):
                {
                    return (m_it.object_iterator == other.m_it.object_iterator);
                }

                case (basic_json::value_t::array):
                {
                    return (m_it.array_iterator == other.m_it.array_iterator);
                }

                default:
                {
                    return (m_it.generic_iterator == other.m_it.generic_iterator);
                }
            }
        }

        /// comparison: not equal
        inline bool operator!=(const iterator& other) const
        {
            return not operator==(other);
        }

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        /// comparison: smaller
        inline bool operator<(const iterator& other) const
        {
            // if objects are not the same, the comparison is undefined
            if (m_object != other.m_object)
            {
                throw std::domain_error("cannot compare iterators of different containers");
            }

            switch (m_object->m_type)
            {
                case (basic_json::value_t::object):
                {
                    throw std::domain_error("cannot use operator< for object iterators");
                }

                case (basic_json::value_t::array):
                {
                    return (m_it.array_iterator < other.m_it.array_iterator);
                }

                default:
                {
                    return (m_it.generic_iterator < other.m_it.generic_iterator);
                }
            }
        }

        /// comparison: less than or equal
        inline bool operator<=(const iterator& other) const
        {
            return not other.operator < (*this);
        }

        /// comparison: greater than
        inline bool operator>(const iterator& other) const
        {
            return not operator<=(other);
        }

        /// comparison: greater than or equal
        inline bool operator>=(const iterator& other) const
        {
            return not operator<(other);
        }

        /// add to iterator
        inline iterator& operator+=(difference_type i)
        {
            switch (m_object->m_type)
            {
                case (basic_json::value_t::object):
                {
                    throw std::domain_error("cannot use operator+= for object iterators");
                }

                case (basic_json::value_t::array):
                {
                    m_it.array_iterator += i;
                    break;
                }

                default:
                {
                    m_it.generic_iterator += i;
                    break;
                }
            }

            return *this;
        }

        /// subtract from iterator
        inline iterator& operator-=(difference_type i)
        {
            return operator+=(-i);
        }

        /// add to iterator
        inline iterator operator+(difference_type i)
        {
            auto result = *this;
            result += i;
            return result;
        }

        /// subtract from iterator
        inline iterator operator-(difference_type i)
        {
            auto result = *this;
            result -= i;
            return result;
        }

        /// return difference
        inline difference_type operator-(const iterator& other) const
        {
            switch (m_object->m_type)
            {
                case (basic_json::value_t::object):
                {
                    throw std::domain_error("cannot use operator- for object iterators");
                    return 0;
                }

                case (basic_json::value_t::array):
                {
                    return m_it.array_iterator - other.m_it.array_iterator;
                }

                default:
                {
                    return m_it.generic_iterator - other.m_it.generic_iterator;
                }
            }
        }

        /// access to successor
        inline reference operator[](difference_type n)
        {
            switch (m_object->m_type)
            {
                case (basic_json::value_t::object):
                {
                    throw std::domain_error("cannot use operator[] for object iterators");
                }

                case (basic_json::value_t::array):
                {
                    return *(m_it.array_iterator + n);
                }

                case (basic_json::value_t::null):
                {
                    throw std::out_of_range("cannot get value");
                }

                default:
                {
                    if (m_it.generic_iterator == -n)
                    {
                        return *m_object;
                    }
                    else
                    {
                        throw std::out_of_range("cannot get value");
                    }
                }
            }
        }

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      private:
        /// associated JSON instance
        pointer m_object = nullptr;
        /// the actual iterator of the associated instance
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        internal_iterator<typename array_t::iterator, typename object_t::iterator> m_it;
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    };

N
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2559 2560
    /// a const random access iterator for the basic_json class
    class const_iterator : public std::iterator<std::random_access_iterator_tag, const basic_json>
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    {
2562 2563 2564
        // allow basic_json class to access m_it
        friend class basic_json;

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      public:
        /// the type of the values when the iterator is dereferenced
        using value_type = basic_json::value_type;
        /// a type to represent differences between iterators
        using difference_type = basic_json::difference_type;
        /// defines a pointer to the type iterated over (value_type)
        using pointer = basic_json::const_pointer;
        /// defines a reference to the type iterated over (value_type)
        using reference = basic_json::const_reference;
        /// the category of the iterator
        using iterator_category = std::bidirectional_iterator_tag;

2577 2578 2579
        /// default constructor
        inline const_iterator() = default;

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        /// constructor for a given JSON instance
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        inline const_iterator(pointer object) noexcept : m_object(object)
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        {
            switch (m_object->m_type)
            {
                case (basic_json::value_t::object):
                {
                    m_it.object_iterator = typename object_t::const_iterator();
                    break;
                }
                case (basic_json::value_t::array):
                {
                    m_it.array_iterator = typename array_t::const_iterator();
                    break;
                }
                default:
                {
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                    m_it.generic_iterator = -1;
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                    break;
                }
            }
        }

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        /// copy constructor given a nonconst iterator
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        inline const_iterator(const iterator& other) noexcept : m_object(other.m_object)
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        {
            switch (m_object->m_type)
            {
                case (basic_json::value_t::object):
                {
                    m_it.object_iterator = other.m_it.object_iterator;
                    break;
                }

                case (basic_json::value_t::array):
                {
                    m_it.array_iterator = other.m_it.array_iterator;
                    break;
                }

                default:
                {
                    m_it.generic_iterator = other.m_it.generic_iterator;
                    break;
                }
            }
        }
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        /// copy constructor
        inline const_iterator(const const_iterator& other) noexcept
            : m_object(other.m_object), m_it(other.m_it)
        {}

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        /// copy assignment
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        inline const_iterator& operator=(const_iterator other) noexcept(
            std::is_nothrow_move_constructible<pointer>::value and
            std::is_nothrow_move_assignable<pointer>::value and
            std::is_nothrow_move_constructible<internal_iterator<typename array_t::const_iterator, typename object_t::const_iterator>>::value
            and
            std::is_nothrow_move_assignable<internal_iterator<typename array_t::const_iterator, typename object_t::const_iterator>>::value
        )
        {
            std::swap(m_object, other.m_object);
            std::swap(m_it, other.m_it);
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            return *this;
        }

        /// set the iterator to the first value
        inline void set_begin() noexcept
        {
            switch (m_object->m_type)
            {
                case (basic_json::value_t::object):
                {
                    m_it.object_iterator = m_object->m_value.object->cbegin();
                    break;
                }

                case (basic_json::value_t::array):
                {
                    m_it.array_iterator = m_object->m_value.array->cbegin();
                    break;
                }

                case (basic_json::value_t::null):
                {
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                    // set to end so begin()==end() is true: null is empty
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                    m_it.generic_iterator = 1;
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                    break;
                }

                default:
                {
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                    m_it.generic_iterator = 0;
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                    break;
                }
            }
        }

        /// set the iterator past the last value
        inline void set_end() noexcept
        {
            switch (m_object->m_type)
            {
                case (basic_json::value_t::object):
                {
                    m_it.object_iterator = m_object->m_value.object->cend();
                    break;
                }

                case (basic_json::value_t::array):
                {
                    m_it.array_iterator = m_object->m_value.array->cend();
                    break;
                }

                default:
                {
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                    m_it.generic_iterator = 1;
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                    break;
                }
            }
        }

        /// return a reference to the value pointed to by the iterator
        inline reference operator*() const
        {
            switch (m_object->m_type)
            {
                case (basic_json::value_t::object):
                {
                    return m_it.object_iterator->second;
                }

                case (basic_json::value_t::array):
                {
                    return *m_it.array_iterator;
                }

                case (basic_json::value_t::null):
                {
                    throw std::out_of_range("cannot get value");
                }

                default:
                {
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                    if (m_it.generic_iterator == 0)
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                    {
                        return *m_object;
                    }
                    else
                    {
                        throw std::out_of_range("cannot get value");
                    }
                }
            }
        }

        /// dereference the iterator
        inline pointer operator->() const
        {
            switch (m_object->m_type)
            {
                case (basic_json::value_t::object):
                {
                    return &(m_it.object_iterator->second);
                }

                case (basic_json::value_t::array):
                {
                    return &*m_it.array_iterator;
                }

                default:
                {
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                    if (m_it.generic_iterator == 0)
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                    {
                        return m_object;
                    }
                    else
                    {
                        throw std::out_of_range("cannot get value");
                    }
                }
            }
        }

        /// post-increment (it++)
        inline const_iterator operator++(int)
        {
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            auto result = *this;
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            switch (m_object->m_type)
            {
                case (basic_json::value_t::object):
                {
                    m_it.object_iterator++;
                    break;
                }

                case (basic_json::value_t::array):
                {
                    m_it.array_iterator++;
                    break;
                }

                default:
                {
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                    m_it.generic_iterator++;
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                    break;
                }
            }

            return result;
        }

        /// pre-increment (++it)
        inline const_iterator& operator++()
        {
            switch (m_object->m_type)
            {
                case (basic_json::value_t::object):
                {
                    ++m_it.object_iterator;
                    break;
                }

                case (basic_json::value_t::array):
                {
                    ++m_it.array_iterator;
                    break;
                }

                default:
                {
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                    ++m_it.generic_iterator;
N
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                    break;
                }
            }

            return *this;
        }

        /// post-decrement (it--)
        inline const_iterator operator--(int)
        {
N
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            auto result = *this;
N
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            switch (m_object->m_type)
            {
                case (basic_json::value_t::object):
                {
                    m_it.object_iterator--;
                    break;
                }

                case (basic_json::value_t::array):
                {
                    m_it.array_iterator--;
                    break;
                }

                default:
                {
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                    m_it.generic_iterator--;
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                    break;
                }
            }

            return result;
        }

        /// pre-decrement (--it)
        inline const_iterator& operator--()
        {
            switch (m_object->m_type)
            {
                case (basic_json::value_t::object):
                {
                    --m_it.object_iterator;
                    break;
                }

                case (basic_json::value_t::array):
                {
                    --m_it.array_iterator;
                    break;
                }

                default:
                {
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                    --m_it.generic_iterator;
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                    break;
                }
            }

            return *this;
        }

        /// comparison: equal
        inline bool operator==(const const_iterator& other) const
        {
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            // if objects are not the same, the comparison is undefined
            if (m_object != other.m_object)
N
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            {
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                throw std::domain_error("cannot compare iterators of different containers");
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            }

            switch (m_object->m_type)
            {
                case (basic_json::value_t::object):
                {
                    return (m_it.object_iterator == other.m_it.object_iterator);
                }

                case (basic_json::value_t::array):
                {
                    return (m_it.array_iterator == other.m_it.array_iterator);
                }

                default:
                {
                    return (m_it.generic_iterator == other.m_it.generic_iterator);
                }
            }
        }

        /// comparison: not equal
        inline bool operator!=(const const_iterator& other) const
        {
            return not operator==(other);
        }

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        /// comparison: smaller
        inline bool operator<(const const_iterator& other) const
        {
            // if objects are not the same, the comparison is undefined
            if (m_object != other.m_object)
            {
                throw std::domain_error("cannot compare iterators of different containers");
            }

            switch (m_object->m_type)
            {
                case (basic_json::value_t::object):
                {
                    throw std::domain_error("cannot use operator< for object iterators");
                }

                case (basic_json::value_t::array):
                {
                    return (m_it.array_iterator < other.m_it.array_iterator);
                }

                default:
                {
                    return (m_it.generic_iterator < other.m_it.generic_iterator);
                }
            }
        }

        /// comparison: less than or equal
        inline bool operator<=(const const_iterator& other) const
        {
            return not other.operator < (*this);
        }

        /// comparison: greater than
        inline bool operator>(const const_iterator& other) const
        {
            return not operator<=(other);
        }

        /// comparison: greater than or equal
        inline bool operator>=(const const_iterator& other) const
        {
            return not operator<(other);
        }

        /// add to iterator
        inline const_iterator& operator+=(difference_type i)
        {
            switch (m_object->m_type)
            {
                case (basic_json::value_t::object):
                {
                    throw std::domain_error("cannot use operator+= for object iterators");
                    break;
                }

                case (basic_json::value_t::array):
                {
                    m_it.array_iterator += i;
                    break;
                }

                default:
                {
                    m_it.generic_iterator += i;
                    break;
                }
            }

            return *this;
        }

        /// subtract from iterator
        inline const_iterator& operator-=(difference_type i)
        {
            return operator+=(-i);
        }

        /// add to iterator
        inline const_iterator operator+(difference_type i)
        {
            auto result = *this;
            result += i;
            return result;
        }

        /// subtract from iterator
        inline const_iterator operator-(difference_type i)
        {
            auto result = *this;
            result -= i;
            return result;
        }

        /// return difference
        inline difference_type operator-(const const_iterator& other) const
        {
            switch (m_object->m_type)
            {
                case (basic_json::value_t::object):
                {
                    throw std::domain_error("cannot use operator- for object iterators");
                }

                case (basic_json::value_t::array):
                {
                    return m_it.array_iterator - other.m_it.array_iterator;
                }

                default:
                {
                    return m_it.generic_iterator - other.m_it.generic_iterator;
                }
            }
        }

        /// access to successor
        inline reference operator[](difference_type n) const
        {
            switch (m_object->m_type)
            {
                case (basic_json::value_t::object):
                {
                    throw std::domain_error("cannot use operator[] for object iterators");
                }

                case (basic_json::value_t::array):
                {
                    return *(m_it.array_iterator + n);
                }

                case (basic_json::value_t::null):
                {
                    throw std::out_of_range("cannot get value");
                }

                default:
                {
                    if (m_it.generic_iterator == -n)
                    {
                        return *m_object;
                    }
                    else
                    {
                        throw std::out_of_range("cannot get value");
                    }
                }
            }
        }

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      private:
        /// associated JSON instance
        pointer m_object = nullptr;
        /// the actual iterator of the associated instance
N
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        internal_iterator<typename array_t::const_iterator, typename object_t::const_iterator> m_it;
N
cleanup  
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    };
N
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N
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N
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  private:
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    //////////////////////
    // lexer and parser //
    //////////////////////
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    /*!
    @brief lexical analysis

    This class organizes the lexical analysis during JSON deserialization. The
    core of it is a scanner generated by re2c <http://re2c.org> that processes
    a buffer and recognizes tokens according to RFC 7159 and ECMA-404.
    */
N
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    class lexer
N
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3085
    {
N
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3086
      public:
N
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3087 3088 3089
        /// token types for the parser
        enum class token_type
        {
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            uninitialized,    ///< indicating the scanner is uninitialized
            literal_true,     ///< the "true" literal
            literal_false,    ///< the "false" literal
            literal_null,     ///< the "null" literal
            value_string,     ///< a string - use get_string() for actual value
            value_number,     ///< a number - use get_number() for actual value
            begin_array,      ///< the character for array begin "["
            begin_object,     ///< the character for object begin "{"
            end_array,        ///< the character for array end "]"
            end_object,       ///< the character for object end "}"
            name_separator,   ///< the name separator ":"
            value_separator,  ///< the value separator ","
            parse_error,      ///< indicating a parse error
            end_of_input      ///< indicating the end of the input buffer
N
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        };

N
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        /// the char type to use in the lexer
N
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3107
        using lexer_char_t = unsigned char;
N
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3108

N
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3109 3110
        /// constructor with a given buffer
        inline lexer(const string_t& s) noexcept
N
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3111
            : m_content(reinterpret_cast<const lexer_char_t*>(s.c_str()))
N
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3112 3113
        {
            m_start = m_cursor = m_content;
N
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3114
            m_limit = m_content + s.size();
N
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3115 3116
        }

N
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        /// default constructor
N
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3118 3119
        inline lexer() = default;

N
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3120 3121 3122
        /*!
        @brief create a string from a Unicode code point

N
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        @param codepoint1  the code point (can be high surrogate)
        @param codepoint2  the code point (can be low surrogate or 0)
N
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3125
        @return string representation of the code point
N
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3126 3127
        @exception std::out_of_range if code point is >0x10ffff
        @exception std::invalid_argument if the low surrogate is invalid
N
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3128 3129 3130

        @see <http://en.wikipedia.org/wiki/UTF-8#Sample_code>
        */
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3131 3132
        inline static string_t to_unicode(const size_t codepoint1,
                                          const size_t codepoint2 = 0)
N
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3133
        {
N
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3134
            string_t result;
N
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N
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            // calculate the codepoint from the given code points
            size_t codepoint = codepoint1;
            if (codepoint1 >= 0xD800 and codepoint1 <= 0xDBFF)
            {
                if (codepoint2 >= 0xDC00 and codepoint2 <= 0xDFFF)
                {
                    codepoint =
                        // high surrogate occupies the most significant 22 bits
                        (codepoint1 << 10)
                        // low surrogate occupies the least significant 15 bits
                        + codepoint2
                        // there is still the 0xD800, 0xDC00 and 0x10000 noise
                        // in the result so we have to substract with:
                        // (0xD800 << 10) + DC00 - 0x10000 = 0x35FDC00
                        - 0x35FDC00;
                }
                else
                {
                    throw std::invalid_argument("missing or wrong low surrogate");
                }
            }

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            if (codepoint <= 0x7f)
            {
N
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3160
                // 1-byte characters: 0xxxxxxx (ASCII)
N
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                result.append(1, static_cast<typename string_t::value_type>(codepoint));
N
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3162 3163 3164 3165
            }
            else if (codepoint <= 0x7ff)
            {
                // 2-byte characters: 110xxxxx 10xxxxxx
N
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                result.append(1, static_cast<typename string_t::value_type>(0xC0 | ((codepoint >> 6) & 0x1F)));
                result.append(1, static_cast<typename string_t::value_type>(0x80 | (codepoint & 0x3F)));
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            }
            else if (codepoint <= 0xffff)
            {
                // 3-byte characters: 1110xxxx 10xxxxxx 10xxxxxx
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                result.append(1, static_cast<typename string_t::value_type>(0xE0 | ((codepoint >> 12) & 0x0F)));
                result.append(1, static_cast<typename string_t::value_type>(0x80 | ((codepoint >> 6) & 0x3F)));
                result.append(1, static_cast<typename string_t::value_type>(0x80 | (codepoint & 0x3F)));
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            }
            else if (codepoint <= 0x10ffff)
            {
                // 4-byte characters: 11110xxx 10xxxxxx 10xxxxxx 10xxxxxx
N
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                result.append(1, static_cast<typename string_t::value_type>(0xF0 | ((codepoint >> 18) & 0x07)));
                result.append(1, static_cast<typename string_t::value_type>(0x80 | ((codepoint >> 12) & 0x3F)));
                result.append(1, static_cast<typename string_t::value_type>(0x80 | ((codepoint >> 6) & 0x3F)));
                result.append(1, static_cast<typename string_t::value_type>(0x80 | (codepoint & 0x3F)));
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            }
            else
            {
N
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                throw std::out_of_range("code points above 0x10FFFF are invalid");
N
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3187 3188 3189 3190 3191
            }

            return result;
        }

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        /// return name of values of type token_type
        inline static std::string token_type_name(token_type t) noexcept
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        {
            switch (t)
            {
                case (token_type::uninitialized):
                    return "<uninitialized>";
                case (token_type::literal_true):
                    return "true literal";
                case (token_type::literal_false):
                    return "false literal";
                case (token_type::literal_null):
                    return "null literal";
                case (token_type::value_string):
                    return "string literal";
                case (token_type::value_number):
                    return "number literal";
                case (token_type::begin_array):
                    return "[";
                case (token_type::begin_object):
                    return "{";
                case (token_type::end_array):
                    return "]";
                case (token_type::end_object):
                    return "}";
                case (token_type::name_separator):
                    return ":";
                case (token_type::value_separator):
                    return ",";
                case (token_type::end_of_input):
                    return "<end of input>";
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                default:
                    return "<parse error>";
N
cleanup  
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            }
        }

N
fixes  
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        /*!
        This function implements a scanner for JSON. It is specified using
        regular expressions that try to follow RFC 7159 and ECMA-404 as close
        as possible. These regular expressions are then translated into a
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        deterministic finite automaton (DFA) by the tool re2c
        <http://re2c.org>. As a result, the translated code for this function
        consists of a large block of code with goto jumps.
N
fixes  
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        @return the class of the next token read from the buffer
        */
N
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3238
        inline token_type scan() noexcept
N
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3239
        {
N
cleanup  
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3240
            // pointer for backtracking information
N
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3241
            const lexer_char_t* m_marker = nullptr;
N
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            // remember the begin of the token
            m_start = m_cursor;

            /*!re2c
                re2c:define:YYCTYPE  = lexer_char_t;
                re2c:define:YYCURSOR = m_cursor;
                re2c:define:YYLIMIT  = m_limit;
                re2c:define:YYMARKER = m_marker;
                re2c:indent:string   = "    ";
                re2c:indent:top      = 1;
                re2c:labelprefix     = "basic_json_parser_";
                re2c:yyfill:enable   = 0;

                // whitespace
                ws = [ \t\n\r]+;
                ws   { return scan(); }

                // structural characters
                "[" { return token_type::begin_array; }
                "]" { return token_type::end_array; }
                "{" { return token_type::begin_object; }
                "}" { return token_type::end_object; }
                "," { return token_type::value_separator; }
                ":" { return token_type::name_separator; }

                // literal names
                "null"  { return token_type::literal_null; }
                "true"  { return token_type::literal_true; }
                "false" { return token_type::literal_false; }

                // number
                decimal_point = [.];
                digit         = [0-9];
                digit_1_9     = [1-9];
                e             = [eE];
                minus         = [-];
                plus          = [+];
                zero          = [0];
                exp           = e (minus|plus)? digit+;
                frac          = decimal_point digit+;
                int           = (zero|digit_1_9 digit*);
                number        = minus? int frac? exp?;
                number        { return token_type::value_number; }

                // string
                quotation_mark  = [\"];
                escape          = [\\];
                unescaped       = [^\"\\\000];
                single_escaped  = [\"\\/bfnrt];
                unicode_escaped = [u][0-9a-fA-F]{4};
                escaped         = escape (single_escaped | unicode_escaped);
                char            = unescaped | escaped;
                string          = quotation_mark char* quotation_mark;
                string          { return token_type::value_string; }

                // end of file
                '\000'         { return token_type::end_of_input; }

                // anything else is an error
                .              { return token_type::parse_error; }
             */
        }

N
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3306 3307
        /// return string representation of last read token
        inline string_t get_token() const noexcept
N
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3308
        {
N
Niels 已提交
3309 3310
            return string_t(reinterpret_cast<typename string_t::const_pointer>(m_start),
                            static_cast<size_t>(m_cursor - m_start));
N
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3311 3312 3313
        }

        /*!
N
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3314 3315 3316 3317 3318 3319 3320 3321 3322 3323 3324 3325 3326 3327 3328 3329
        @brief return string value for string tokens

        The function iterates the characters between the opening and closing
        quotes of the string value. The complete string is the range
        [m_start,m_cursor). Consequently, we iterate from m_start+1 to
        m_cursor-1.

        We differentiate two cases:

        1. Escaped characters. In this case, a new character is constructed
           according to the nature of the escape. Some escapes create new
           characters (e.g., @c "\\n" is replaced by @c "\n"), some are copied
           as is (e.g., @c "\\\\"). Furthermore, Unicode escapes of the shape
           @c "\\uxxxx" need special care. In this case, to_unicode takes care
           of the construction of the values.
        2. Unescaped characters are copied as is.
N
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3330 3331

        @return string value of current token without opening and closing quotes
N
Niels 已提交
3332
        @exception std::out_of_range if to_unicode fails
N
Niels 已提交
3333
        */
N
Niels 已提交
3334
        inline string_t get_string() const
N
Niels 已提交
3335
        {
N
Niels 已提交
3336
            string_t result;
N
Niels 已提交
3337 3338 3339
            result.reserve(static_cast<size_t>(m_cursor - m_start - 2));

            // iterate the result between the quotes
N
Niels 已提交
3340
            for (const lexer_char_t* i = m_start + 1; i < m_cursor - 1; ++i)
N
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3341 3342 3343 3344 3345 3346 3347 3348 3349 3350 3351 3352 3353 3354 3355 3356 3357 3358 3359 3360 3361 3362 3363 3364 3365 3366 3367 3368 3369 3370 3371 3372 3373 3374 3375 3376 3377 3378 3379 3380 3381 3382 3383 3384 3385 3386 3387 3388 3389 3390 3391 3392 3393 3394 3395 3396
            {
                // process escaped characters
                if (*i == '\\')
                {
                    // read next character
                    ++i;

                    switch (*i)
                    {
                        // the default escapes
                        case 't':
                        {
                            result += "\t";
                            break;
                        }
                        case 'b':
                        {
                            result += "\b";
                            break;
                        }
                        case 'f':
                        {
                            result += "\f";
                            break;
                        }
                        case 'n':
                        {
                            result += "\n";
                            break;
                        }
                        case 'r':
                        {
                            result += "\r";
                            break;
                        }

                        // characters that are not "un"escsaped
                        case '\\':
                        {
                            result += "\\\\";
                            break;
                        }
                        case '/':
                        {
                            result += "\\/";
                            break;
                        }
                        case '"':
                        {
                            result += "\\\"";
                            break;
                        }

                        // unicode
                        case 'u':
                        {
N
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3397
                            // get code xxxx from uxxxx
N
Niels 已提交
3398 3399
                            auto codepoint = std::strtoul(std::string(reinterpret_cast<typename string_t::const_pointer>(i + 1),
                                                          4).c_str(), nullptr, 16);
N
Niels 已提交
3400 3401 3402

                            if (codepoint >= 0xD800 and codepoint <= 0xDBFF)
                            {
N
Niels 已提交
3403
                                // make sure there is a subsequent unicode
N
Niels 已提交
3404
                                if ((i + 6 >= m_limit) or * (i + 5) != '\\' or * (i + 6) != 'u')
N
Niels 已提交
3405 3406 3407 3408
                                {
                                    throw std::invalid_argument("missing low surrogate");
                                }

N
Niels 已提交
3409
                                // get code yyyy from uxxxx\uyyyy
N
Niels 已提交
3410 3411
                                auto codepoint2 = std::strtoul(std::string(reinterpret_cast<typename string_t::const_pointer>
                                                               (i + 7), 4).c_str(), nullptr, 16);
N
Niels 已提交
3412 3413 3414 3415 3416 3417 3418 3419 3420 3421 3422
                                result += to_unicode(codepoint, codepoint2);
                                // skip the next 11 characters (xxxx\uyyyy)
                                i += 11;
                            }
                            else
                            {
                                // add unicode character(s)
                                result += to_unicode(codepoint);
                                // skip the next four characters (xxxx)
                                i += 4;
                            }
N
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3423 3424 3425 3426 3427 3428 3429 3430
                            break;
                        }
                    }
                }
                else
                {
                    // all other characters are just copied to the end of the
                    // string
N
Niels 已提交
3431
                    result.append(1, static_cast<typename string_t::value_type>(*i));
N
Niels 已提交
3432 3433 3434 3435
                }
            }

            return result;
N
Niels 已提交
3436 3437
        }

N
Niels 已提交
3438 3439 3440 3441 3442 3443 3444 3445 3446 3447 3448 3449 3450 3451 3452 3453 3454
        /*!
        @brief return number value for number tokens

        This function translates the last token into a floating point number.
        The pointer m_begin points to the beginning of the parsed number. We
        pass this pointer to std::strtod which sets endptr to the first
        character past the converted number. If this pointer is not the same as
        m_cursor, then either more or less characters have been used during the
        comparison. This can happen for inputs like "01" which will be treated
        like number 0 followed by number 1.

        @return the result of the number conversion or NAN if the conversion
        read past the current token. The latter case needs to be treated by the
        caller function.

        @exception std::range_error if passed value is out of range
        */
N
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3455 3456 3457
        inline number_float_t get_number() const
        {
            // conversion
N
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3458 3459
            typename string_t::value_type* endptr;
            const auto float_val = std::strtod(reinterpret_cast<typename string_t::const_pointer>(m_start),
N
Niels 已提交
3460
                                               &endptr);
N
Niels 已提交
3461

N
Niels 已提交
3462 3463
            // return float_val if the whole number was translated and NAN
            // otherwise
N
Niels 已提交
3464
            return (reinterpret_cast<lexer_char_t*>(endptr) == m_cursor) ? float_val : NAN;
N
Niels 已提交
3465 3466 3467
        }

      private:
N
fixes  
Niels 已提交
3468
        /// the buffer
N
Niels 已提交
3469
        const lexer_char_t* m_content = nullptr;
N
fixes  
Niels 已提交
3470
        /// pointer to he beginning of the current symbol
N
Niels 已提交
3471
        const lexer_char_t* m_start = nullptr;
N
fixes  
Niels 已提交
3472
        /// pointer to the current symbol
N
Niels 已提交
3473
        const lexer_char_t* m_cursor = nullptr;
N
fixes  
Niels 已提交
3474
        /// pointer to the end of the buffer
N
Niels 已提交
3475
        const lexer_char_t* m_limit = nullptr;
N
Niels 已提交
3476 3477
    };

N
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3478 3479 3480
    /*!
    @brief syntax analysis
    */
N
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3481 3482
    class parser
    {
N
Niels 已提交
3483 3484
      public:
        /// constructor for strings
N
Niels 已提交
3485
        inline parser(const string_t& s) : m_buffer(s), m_lexer(m_buffer)
N
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3486 3487 3488 3489 3490 3491 3492 3493 3494 3495
        {
            // read first token
            get_token();
        }

        /// a parser reading from an input stream
        inline parser(std::istream& _is)
        {
            while (_is)
            {
N
Niels 已提交
3496
                string_t input_line;
N
Niels 已提交
3497
                std::getline(_is, input_line);
N
Niels 已提交
3498
                m_buffer += input_line;
N
Niels 已提交
3499 3500
            }

N
Niels 已提交
3501
            // initializer lexer
N
Niels 已提交
3502
            m_lexer = lexer(m_buffer);
N
Niels 已提交
3503

N
Niels 已提交
3504 3505 3506 3507
            // read first token
            get_token();
        }

N
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3508
        /// public parser interface
N
Niels 已提交
3509
        inline basic_json parse()
N
Niels 已提交
3510 3511 3512 3513 3514 3515 3516 3517 3518 3519 3520
        {
            basic_json result = parse_internal();

            expect(lexer::token_type::end_of_input);

            return result;
        }

      private:
        /// the actual parser
        inline basic_json parse_internal()
N
Niels 已提交
3521 3522 3523
        {
            switch (last_token)
            {
N
Niels 已提交
3524
                case (lexer::token_type::begin_object):
N
Niels 已提交
3525 3526 3527 3528 3529 3530 3531 3532
                {
                    // explicitly set result to object to cope with {}
                    basic_json result(value_t::object);

                    // read next token
                    get_token();

                    // closing } -> we are done
N
Niels 已提交
3533
                    if (last_token == lexer::token_type::end_object)
N
Niels 已提交
3534
                    {
N
Niels 已提交
3535
                        get_token();
N
Niels 已提交
3536 3537 3538 3539 3540 3541
                        return result;
                    }

                    // otherwise: parse key-value pairs
                    do
                    {
N
Niels 已提交
3542 3543 3544 3545 3546 3547
                        // ugly, but could be fixed with loop reorganization
                        if (last_token == lexer::token_type::value_separator)
                        {
                            get_token();
                        }

N
Niels 已提交
3548
                        // store key
N
Niels 已提交
3549 3550
                        expect(lexer::token_type::value_string);
                        const auto key = m_lexer.get_string();
N
Niels 已提交
3551 3552 3553

                        // parse separator (:)
                        get_token();
N
Niels 已提交
3554
                        expect(lexer::token_type::name_separator);
N
Niels 已提交
3555 3556 3557

                        // parse value
                        get_token();
N
Niels 已提交
3558
                        result[key] = parse_internal();
N
Niels 已提交
3559
                    }
N
Niels 已提交
3560
                    while (last_token == lexer::token_type::value_separator);
N
Niels 已提交
3561 3562

                    // closing }
N
Niels 已提交
3563
                    expect(lexer::token_type::end_object);
N
Niels 已提交
3564
                    get_token();
N
Niels 已提交
3565 3566 3567 3568

                    return result;
                }

N
Niels 已提交
3569
                case (lexer::token_type::begin_array):
N
Niels 已提交
3570 3571 3572 3573 3574 3575 3576 3577
                {
                    // explicitly set result to object to cope with []
                    basic_json result(value_t::array);

                    // read next token
                    get_token();

                    // closing ] -> we are done
N
Niels 已提交
3578
                    if (last_token == lexer::token_type::end_array)
N
Niels 已提交
3579
                    {
N
Niels 已提交
3580
                        get_token();
N
Niels 已提交
3581 3582 3583 3584 3585 3586
                        return result;
                    }

                    // otherwise: parse values
                    do
                    {
N
Niels 已提交
3587 3588 3589 3590 3591
                        // ugly, but could be fixed with loop reorganization
                        if (last_token == lexer::token_type::value_separator)
                        {
                            get_token();
                        }
N
Niels 已提交
3592

N
Niels 已提交
3593 3594
                        // parse value
                        result.push_back(parse_internal());
N
Niels 已提交
3595
                    }
N
Niels 已提交
3596
                    while (last_token == lexer::token_type::value_separator);
N
Niels 已提交
3597 3598

                    // closing ]
N
Niels 已提交
3599
                    expect(lexer::token_type::end_array);
N
Niels 已提交
3600
                    get_token();
N
Niels 已提交
3601 3602 3603 3604

                    return result;
                }

N
Niels 已提交
3605
                case (lexer::token_type::literal_null):
N
Niels 已提交
3606
                {
N
Niels 已提交
3607
                    get_token();
N
Niels 已提交
3608 3609 3610
                    return basic_json(nullptr);
                }

N
Niels 已提交
3611
                case (lexer::token_type::value_string):
N
Niels 已提交
3612
                {
N
Niels 已提交
3613 3614 3615
                    const auto s = m_lexer.get_string();
                    get_token();
                    return basic_json(s);
N
Niels 已提交
3616 3617
                }

N
Niels 已提交
3618
                case (lexer::token_type::literal_true):
N
Niels 已提交
3619
                {
N
Niels 已提交
3620
                    get_token();
N
Niels 已提交
3621 3622 3623
                    return basic_json(true);
                }

N
Niels 已提交
3624
                case (lexer::token_type::literal_false):
N
Niels 已提交
3625
                {
N
Niels 已提交
3626
                    get_token();
N
Niels 已提交
3627 3628 3629
                    return basic_json(false);
                }

N
Niels 已提交
3630
                case (lexer::token_type::value_number):
N
Niels 已提交
3631
                {
N
Niels 已提交
3632
                    auto float_val = m_lexer.get_number();
N
Niels 已提交
3633

N
Niels 已提交
3634 3635
                    // NAN is returned if token could not be translated
                    // completely
N
Niels 已提交
3636
                    if (std::isnan(float_val))
N
Niels 已提交
3637 3638
                    {
                        throw std::invalid_argument(std::string("parse error - ") +
N
Niels 已提交
3639
                                                    m_lexer.get_token() + " is not a number");
N
Niels 已提交
3640 3641
                    }

N
Niels 已提交
3642 3643
                    get_token();

N
Niels 已提交
3644
                    // check if conversion loses precision
N
Niels 已提交
3645
                    const auto int_val = static_cast<number_integer_t>(float_val);
3646
                    if (approx(float_val, static_cast<number_float_t>(int_val)))
N
Niels 已提交
3647 3648 3649 3650 3651 3652 3653 3654 3655 3656 3657 3658 3659 3660
                    {
                        // we basic_json not lose precision -> return int
                        return basic_json(int_val);
                    }
                    else
                    {
                        // we would lose precision -> returnfloat
                        return basic_json(float_val);
                    }
                }

                default:
                {
                    std::string error_msg = "parse error - unexpected \'";
N
Niels 已提交
3661
                    error_msg += m_lexer.get_token();
N
Niels 已提交
3662
                    error_msg += "\' (";
N
cleanup  
Niels 已提交
3663
                    error_msg += lexer::token_type_name(last_token) + ")";
N
Niels 已提交
3664 3665 3666 3667 3668
                    throw std::invalid_argument(error_msg);
                }
            }
        }

N
Niels 已提交
3669 3670
        /// get next token from lexer
        inline typename lexer::token_type get_token()
N
Niels 已提交
3671
        {
N
Niels 已提交
3672 3673
            last_token = m_lexer.scan();
            return last_token;
N
Niels 已提交
3674 3675
        }

N
Niels 已提交
3676
        inline void expect(typename lexer::token_type t) const
N
Niels 已提交
3677 3678 3679 3680
        {
            if (t != last_token)
            {
                std::string error_msg = "parse error - unexpected \'";
N
Niels 已提交
3681
                error_msg += m_lexer.get_token();
N
cleanup  
Niels 已提交
3682 3683
                error_msg += "\' (" + lexer::token_type_name(last_token);
                error_msg += "); expected " + lexer::token_type_name(t);
N
Niels 已提交
3684 3685 3686 3687
                throw std::invalid_argument(error_msg);
            }
        }

N
Niels 已提交
3688
      private:
N
Niels 已提交
3689
        /// the buffer
N
Niels 已提交
3690
        string_t m_buffer;
N
Niels 已提交
3691
        /// the type of the last read token
N
Niels 已提交
3692
        typename lexer::token_type last_token = lexer::token_type::uninitialized;
N
Niels 已提交
3693
        /// the lexer
N
Niels 已提交
3694
        lexer m_lexer;
N
Niels 已提交
3695
    };
N
cleanup  
Niels 已提交
3696 3697 3698 3699 3700 3701 3702 3703 3704 3705 3706 3707 3708 3709 3710 3711 3712 3713 3714
};


/////////////
// presets //
/////////////

/// default JSON class
using json = basic_json<>;
}


/////////////////////////
// nonmember functions //
/////////////////////////

// specialization of std::swap, and std::hash
namespace std
{
N
Niels 已提交
3715 3716 3717 3718
/*!
@brief exchanges the values of two JSON objects
@ingroup container
*/
N
cleanup  
Niels 已提交
3719 3720 3721 3722 3723 3724 3725 3726 3727 3728 3729 3730 3731 3732
template <>
inline void swap(nlohmann::json& j1,
                 nlohmann::json& j2) noexcept(
                     is_nothrow_move_constructible<nlohmann::json>::value and
                     is_nothrow_move_assignable<nlohmann::json>::value
                 )
{
    j1.swap(j2);
}

/// hash value for JSON objects
template <>
struct hash<nlohmann::json>
{
N
Niels 已提交
3733
    /// return a hash value for a JSON object
N
Niels 已提交
3734
    inline size_t operator()(const nlohmann::json& j) const
N
cleanup  
Niels 已提交
3735 3736
    {
        // a naive hashing via the string representation
N
Niels 已提交
3737 3738
        const auto& h = hash<nlohmann::json::string_t>();
        return h(j.dump());
N
cleanup  
Niels 已提交
3739 3740 3741 3742
    }
};
}

N
Niels 已提交
3743 3744 3745 3746 3747 3748 3749 3750
/*!
This operator implements a user-defined string literal for JSON objects. It can
be used by adding \p "_json" to a string literal and returns a JSON object if
no parse error occurred.

@param s  a string representation of a JSON object
@return a JSON object
*/
N
Niels 已提交
3751
inline nlohmann::json operator "" _json(const char* s, std::size_t)
N
Niels 已提交
3752
{
N
Niels 已提交
3753 3754
    return nlohmann::json::parse(reinterpret_cast<nlohmann::json::string_t::value_type*>
                                 (const_cast<char*>(s)));
N
Niels 已提交
3755 3756
}

N
cleanup  
Niels 已提交
3757
#endif