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/*!
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@mainpage

These pages contain the API documentation of JSON for Modern C++, a C++11
header-only JSON class.

Class @ref nlohmann::basic_json is a good entry point for the documentation.

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@copyright The code is licensed under the [MIT
           License](http://opensource.org/licenses/MIT):
           <br>
           Copyright &copy; 2013-2015 Niels Lohmann.
           <br>
           Permission is hereby granted, free of charge, to any person
           obtaining a copy of this software and associated documentation files
           (the "Software"), to deal in the Software without restriction,
           including without limitation the rights to use, copy, modify, merge,
           publish, distribute, sublicense, and/or sell copies of the Software,
           and to permit persons to whom the Software is furnished to do so,
           subject to the following conditions:
           <br>
           The above copyright notice and this permission notice shall be
           included in all copies or substantial portions of the Software.
           <br>
           THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
           EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
           MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
           NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS
           BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN
           ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
           CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
           SOFTWARE.

@author [Niels Lohmann](http://nlohmann.me)
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@see https://github.com/nlohmann/json to download the source code
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*/

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#ifndef NLOHMANN_JSON_HPP
#define NLOHMANN_JSON_HPP
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#include <algorithm>
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#include <array>
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#include <ciso646>
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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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// enable ssize_t on MinGW
#ifdef __GNUC__
    #ifdef __MINGW32__
        #include <sys/types.h>
    #endif
#endif

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// enable ssize_t for MSVC
#ifdef _MSC_VER
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    #include <basetsd.h>
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    using ssize_t = SSIZE_T;
#endif

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// workaround for Android NDK (see https://github.com/nlohmann/json/issues/136)
#ifdef __ANDROID__
namespace std
{
template <typename T>
std::string to_string(T v)
{
    std::ostringstream ss;
    ss << v;
    return ss.str();
}

inline long double strtold(const char* str, char** str_end)
{
    return strtod(str, str_end);
}
}
#endif

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

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/*!
@brief unnamed namespace with internal helper functions
*/
namespace
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{
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/*!
@brief Helper to determine whether there's a key_type for T.
@sa http://stackoverflow.com/a/7728728/266378
*/
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template<typename T>
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struct has_mapped_type
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{
  private:
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    template<typename C> static char test(typename C::mapped_type*);
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    template<typename C> static int  test(...);
  public:
    enum { value = sizeof(test<T>(0)) == sizeof(char) };
};
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/// "equality" comparison for floating point numbers
template<typename T>
static bool approx(const T a, const T b)
{
    return not (a > b or a < b);
}
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}
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/*!
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@brief a class to store JSON values
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@tparam ObjectType type for JSON objects (@c std::map by default; will be used
in @ref object_t)
@tparam ArrayType type for JSON arrays (@c std::vector by default; will be used
in @ref array_t)
@tparam StringType type for JSON strings and object keys (@c std::string by
default; will be used in @ref string_t)
@tparam BooleanType type for JSON booleans (@c `bool` by default; will be used
in @ref boolean_t)
@tparam NumberIntegerType type for JSON integer numbers (@c `int64_t` by
default; will be used in @ref number_integer_t)
@tparam NumberFloatType type for JSON floating-point numbers (@c `double` by
default; will be used in @ref number_float_t)
@tparam AllocatorType type of the allocator to use (@c `std::allocator` by
default)
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@requirement The class satisfies the following concept requirements:
- Basic
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 - [DefaultConstructible](http://en.cppreference.com/w/cpp/concept/DefaultConstructible):
   JSON values can be default constructed. The result will be a JSON null value.
 - [MoveConstructible](http://en.cppreference.com/w/cpp/concept/MoveConstructible):
   A JSON value can be constructed from an rvalue argument.
 - [CopyConstructible](http://en.cppreference.com/w/cpp/concept/CopyConstructible):
   A JSON value can be copy-constrcuted from an lvalue expression.
 - [MoveAssignable](http://en.cppreference.com/w/cpp/concept/MoveAssignable):
   A JSON value van be assigned from an rvalue argument.
 - [CopyAssignable](http://en.cppreference.com/w/cpp/concept/CopyAssignable):
   A JSON value can be copy-assigned from an lvalue expression.
 - [Destructible](http://en.cppreference.com/w/cpp/concept/Destructible):
   JSON values can be destructed.
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- Layout
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 - [StandardLayoutType](http://en.cppreference.com/w/cpp/concept/StandardLayoutType):
   JSON values have
   [standard layout](http://en.cppreference.com/w/cpp/language/data_members#Standard_layout):
   All non-static data members are private and standard layout types, the class
   has no virtual functions or (virtual) base classes.
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- Library-wide
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 - [EqualityComparable](http://en.cppreference.com/w/cpp/concept/EqualityComparable):
   JSON values can be compared with `==`, see @ref
   operator==(const_reference,const_reference).
 - [LessThanComparable](http://en.cppreference.com/w/cpp/concept/LessThanComparable):
   JSON values can be compared with `<`, see @ref
   operator<(const_reference,const_reference).
 - [Swappable](http://en.cppreference.com/w/cpp/concept/Swappable):
   Any JSON lvalue or rvalue of can be swapped with any lvalue or rvalue of
   other compatible types, using unqualified function call @ref swap().
 - [NullablePointer](http://en.cppreference.com/w/cpp/concept/NullablePointer):
   JSON values can be compared against `std::nullptr_t` objects which are used
   to model the `null` value.
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- Container
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 - [Container](http://en.cppreference.com/w/cpp/concept/Container):
   JSON values can be used like STL containers and provide iterator access.
 - [ReversibleContainer](http://en.cppreference.com/w/cpp/concept/ReversibleContainer);
   JSON values can be used like STL containers and provide reverse iterator
   access.
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@internal
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@note ObjectType trick from http://stackoverflow.com/a/9860911
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@endinternal
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@see RFC 7159 <http://rfc7159.net/rfc7159>
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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,
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    template<typename U> class AllocatorType = std::allocator
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    >
class basic_json
{
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  private:
    /// workaround type for MSVC
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    using basic_json_t = basic_json<ObjectType,
          ArrayType,
          StringType,
          BooleanType,
          NumberIntegerType,
          NumberFloatType,
          AllocatorType>;
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  public:

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    /////////////////////
    // container types //
    /////////////////////

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    /// @name container types
    /// @{

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

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    /// a type to represent container sizes
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    using size_type = std::size_t;

    /// the allocator type
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    using allocator_type = AllocatorType<basic_json>;
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    /// the type of an element pointer
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    using pointer = typename std::allocator_traits<allocator_type>::pointer;
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    /// the type of an element const pointer
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    using const_pointer = typename std::allocator_traits<allocator_type>::const_pointer;
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    // forward declaration
    template<typename Base> class json_reverse_iterator;

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    /// an iterator for a basic_json container
    class iterator;
    /// a const iterator for a basic_json container
    class const_iterator;
    /// a reverse iterator for a basic_json container
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    using reverse_iterator = json_reverse_iterator<typename basic_json::iterator>;
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    /// a const reverse iterator for a basic_json container
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    using const_reverse_iterator = json_reverse_iterator<typename basic_json::const_iterator>;
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    /// @}


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    /*!
    @brief returns the allocator associated with the container
    */
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    static allocator_type get_allocator()
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    {
        return allocator_type();
    }


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

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    /// @name JSON value data types
    /// @{

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    /*!
    @brief a type for an object

    [RFC 7159](http://rfc7159.net/rfc7159) describes JSON objects as follows:
    > An object is an unordered collection of zero or more name/value pairs,
    > where a name is a string and a value is a string, number, boolean, null,
    > object, or array.

    To store objects in C++, a type is defined by the template parameters @a
    ObjectType which chooses the container (e.g., `std::map` or
    `std::unordered_map`), @a StringType which chooses the type of the keys or
    names, and @a AllocatorType which chooses the allocator to use.

    #### Default type

    With the default values for @a ObjectType (`std::map`), @a StringType
    (`std::string`), and @a AllocatorType (`std::allocator`), the default value
    for @a object_t is:

    @code {.cpp}
    std::map<
      std::string, // key_type
      basic_json, // value_type
      std::less<std::string>, // key_compare
      std::allocator<std::pair<const std::string, basic_json>> // allocator_type
    >
    @endcode

    #### Behavior

    The choice of @a object_t influences the behavior of the JSON class. With
    the default type, objects have the following behavior:

    - When all names are unique, objects will be interoperable in the sense
      that all software implementations receiving that object will agree on the
      name-value mappings.
    - When the names within an object are not unique, later stored name/value
      pairs overwrite previously stored name/value pairs, leaving the used
      names unique. For instance, `{"key": 1}` and `{"key": 2, "key": 1}` will
      be treated as equal and both stored as `{"key": 1}`.
    - Internally, name/value pairs are stored in lexicographical order of the
      names. Objects will also be serialized (see @ref dump) in this order. For
      instance, `{"b": 1, "a": 2}` and `{"a": 2, "b": 1}` will be stored and
      serialized as `{"a": 2, "b": 1}`.
    - When comparing objects, the order of the name/value pairs is irrelevant.
      This makes objects interoperable in the sense that they will not be
      affected by these differences. For instance, `{"b": 1, "a": 2}` and
      `{"a": 2, "b": 1}` will be treated as equal.

    #### Limits

    [RFC 7159](http://rfc7159.net/rfc7159) specifies:
    > An implementation may set limits on the maximum depth of nesting.

    In this class, the object's limit of nesting is not constraint explicitly.
    However, a maximum depth of nesting may be introduced by the compiler or
    runtime environment. A theoretical limit can be queried by calling the @ref
    max_size function of a JSON object.

    #### Storage

    Objects are stored as pointers in a `basic_json` type. That is, for any
    access to object values, a pointer of type `object_t*` must be dereferenced.

    @sa array_t
    */
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    using object_t = ObjectType<StringType,
          basic_json,
          std::less<StringType>,
          AllocatorType<std::pair<const StringType,
          basic_json>>>;
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    /*!
    @brief a type for an array

    [RFC 7159](http://rfc7159.net/rfc7159) describes JSON arrays as follows:
    > An array is an ordered sequence of zero or more values.

    To store objects in C++, a type is defined by the template parameters @a
    ArrayType which chooses the container (e.g., `std::vector` or `std::list`)
    and @a AllocatorType which chooses the allocator to use.

    #### Default type

    With the default values for @a ArrayType (`std::vector`) and @a
    AllocatorType (`std::allocator`), the default value for @a array_t is:

    @code {.cpp}
    std::vector<
      basic_json, // value_type
      std::allocator<basic_json> // allocator_type
    >
    @endcode

    #### Limits

    [RFC 7159](http://rfc7159.net/rfc7159) specifies:
    > An implementation may set limits on the maximum depth of nesting.

    In this class, the array's limit of nesting is not constraint explicitly.
    However, a maximum depth of nesting may be introduced by the compiler or
    runtime environment. A theoretical limit can be queried by calling the @ref
    max_size function of a JSON array.

    #### Storage

    Arrays are stored as pointers in a `basic_json` type. That is, for any
    access to array values, a pointer of type `array_t*` must be dereferenced.
    */
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    using array_t = ArrayType<basic_json, AllocatorType<basic_json>>;
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    /*!
    @brief a type for a string

    [RFC 7159](http://rfc7159.net/rfc7159) describes JSON strings as follows:
    > A string is a sequence of zero or more Unicode characters.

    To store objects in C++, a type is defined by the template parameters @a
    StringType which chooses the container (e.g., `std::string`) to use.

    Unicode values are split by the JSON class into byte-sized characters
    during deserialization.

    #### Default type

    With the default values for @a StringType (`std::string`), the default
    value for @a string_t is:

    @code {.cpp}
    std::string
    @endcode

    #### String comparison

    [RFC 7159](http://rfc7159.net/rfc7159) states:
    > Software implementations are typically required to test names of object
    > members for equality. Implementations that transform the textual
    > representation into sequences of Unicode code units and then perform the
    > comparison numerically, code unit by code unit, are interoperable in the
    > sense that implementations will agree in all cases on equality or
    > inequality of two strings. For example, implementations that compare
    > strings with escaped characters unconverted may incorrectly find that
    > `"a\\b"` and `"a\u005Cb"` are not equal.

    This implementation is interoperable as it does compare strings code unit
    by code unit.

    #### Storage

    String values are stored as pointers in a `basic_json` type. That is, for
    any access to string values, a pointer of type `string_t*` must be
    dereferenced.
    */
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    using string_t = StringType;
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    /*!
    @brief a type for a boolean

    [RFC 7159](http://rfc7159.net/rfc7159) implicitly describes a boolean as a
    type which differentiates the two literals `true` and `false`.

    To store objects in C++, a type is defined by the template parameter @a
    BooleanType which chooses the type to use.

    #### Default type

    With the default values for @a BooleanType (`bool`), the default value for
    @a boolean_t is:

    @code {.cpp}
    bool
    @endcode

    #### Storage

    Boolean values are stored directly inside a `basic_json` type.
    */
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    using boolean_t = BooleanType;
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    /*!
    @brief a type for a number (integer)

    [RFC 7159](http://rfc7159.net/rfc7159) describes numbers as follows:
    > The representation of numbers is similar to that used in most programming
    > languages. A number is represented in base 10 using decimal digits. It
    > contains an integer component that may be prefixed with an optional minus
    > sign, which may be followed by a fraction part and/or an exponent part.
    > Leading zeros are not allowed. (...) Numeric values that cannot be
    > represented in the grammar below (such as Infinity and NaN) are not
    > permitted.

    This description includes both integer and floating-point numbers. However,
    C++ allows more precise storage if it is known whether the number is an
    integer or a floating-point number. Therefore, two different types, @ref
    number_integer_t and @ref number_float_t are used.

    To store integer numbers in C++, a type is defined by the template
    parameter @a NumberIntegerType which chooses the type to use.

    #### Default type

    With the default values for @a NumberIntegerType (`int64_t`), the default
    value for @a number_integer_t is:

    @code {.cpp}
    int64_t
    @endcode

    #### Default behavior

    - The restrictions about leading zeros is not enforced in C++. Instead,
      leading zeros in integer literals lead to an interpretation as octal
      number. Internally, the value will be stored as decimal number. For
      instance, the C++ integer literal `010` will be serialized to `8`. During
      deserialization, leading zeros yield an error.
    - Not-a-number (NaN) values will be serialized to `null`.

    #### Limits

    [RFC 7159](http://rfc7159.net/rfc7159) specifies:
    > An implementation may set limits on the range and precision of numbers.

    When the default type is used, the maximal integer number that can be
    stored is `9223372036854775807` (INT64_MAX) and the minimal integer number
    that can be stored is `-9223372036854775808` (INT64_MIN). Integer numbers
    that are out of range will yield over/underflow when used in a constructor.
    During deserialization, too large or small integer numbers will be
    automatically be stored as @ref number_float_t.

    [RFC 7159](http://rfc7159.net/rfc7159) further states:
    > Note that when such software is used, numbers that are integers and are
    > in the range \f$[-2^{53}+1, 2^{53}-1]\f$ are interoperable in the sense
    > that implementations will agree exactly on their numeric values.

    As this range is a subrange of the exactly supported range [INT64_MIN,
    INT64_MAX], this class's integer type is interoperable.

    #### Storage

    Integer number values are stored directly inside a `basic_json` type.
    */
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    using number_integer_t = NumberIntegerType;
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    /*!
    @brief a type for a number (floating-point)

    [RFC 7159](http://rfc7159.net/rfc7159) describes numbers as follows:
    > The representation of numbers is similar to that used in most programming
    > languages. A number is represented in base 10 using decimal digits. It
    > contains an integer component that may be prefixed with an optional minus
    > sign, which may be followed by a fraction part and/or an exponent part.
    > Leading zeros are not allowed. (...) Numeric values that cannot be
    > represented in the grammar below (such as Infinity and NaN) are not
    > permitted.

    This description includes both integer and floating-point numbers. However,
    C++ allows more precise storage if it is known whether the number is an
    integer or a floating-point number. Therefore, two different types, @ref
    number_integer_t and @ref number_float_t are used.

    To store floating-point numbers in C++, a type is defined by the template
    parameter @a NumberFloatType which chooses the type to use.

    #### Default type

    With the default values for @a NumberFloatType (`double`), the default
    value for @a number_float_t is:

    @code {.cpp}
    double
    @endcode

    #### Default behavior

    - The restrictions about leading zeros is not enforced in C++. Instead,
      leading zeros in floating-point literals will be ignored. Internally, the
      value will be stored as decimal number. For instance, the C++
      floating-point literal `01.2` will be serialized to `1.2`. During
      deserialization, leading zeros yield an error.
    - Not-a-number (NaN) values will be serialized to `null`.

    #### Limits

    [RFC 7159](http://rfc7159.net/rfc7159) states:
    > This specification allows implementations to set limits on the range and
    > precision of numbers accepted. Since software that implements IEEE
    > 754-2008 binary64 (double precision) numbers is generally available and
    > widely used, good interoperability can be achieved by implementations that
    > expect no more precision or range than these provide, in the sense that
    > implementations will approximate JSON numbers within the expected
    > precision.

    This implementation does exactly follow this approach, as it uses double
    precision floating-point numbers. Note values smaller than
    `-1.79769313486232e+308` and values greather than `1.79769313486232e+308`
    will be stored as NaN internally and be serialized to `null`.

    #### Storage

    Floating-point number values are stored directly inside a `basic_json` type.
    */
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    using number_float_t = NumberFloatType;

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    /// @}

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    ///////////////////////////
    // JSON type enumeration //
    ///////////////////////////
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    /*!
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    @brief the JSON type enumeration
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    This enumeration collects the different JSON types. It is internally used
    to distinguish the stored values, and the functions is_null, is_object,
    is_array, is_string, is_boolean, is_number, and is_discarded rely on it.
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    */
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    enum class value_t : uint8_t
    {
        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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        discarded       ///< discarded by the the parser callback function
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    };

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  private:
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    /// helper for exception-safe object creation
    template<typename T, typename... Args>
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    static T* create(Args&& ... args)
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    {
        AllocatorType<T> alloc;
        auto deleter = [&](T * object)
        {
            alloc.deallocate(object, 1);
        };
        std::unique_ptr<T, decltype(deleter)> object(alloc.allocate(1), deleter);
        alloc.construct(object.get(), std::forward<Args>(args)...);
        return object.release();
    }

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    ////////////////////////
    // 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;
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        /// boolean
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        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)
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        json_value() noexcept = default;
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        /// constructor for booleans
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        json_value(boolean_t v) noexcept : boolean(v) {}
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        /// constructor for numbers (integer)
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        json_value(number_integer_t v) noexcept : number_integer(v) {}
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        /// constructor for numbers (floating-point)
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        json_value(number_float_t v) noexcept : number_float(v) {}
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        /// constructor for empty values of a given type
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        json_value(value_t t)
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        {
            switch (t)
            {
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                case value_t::object:
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                {
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                    object = create<object_t>();
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                    break;
                }
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659
                case value_t::array:
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                {
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                    array = create<array_t>();
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                    break;
                }
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                case value_t::string:
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                {
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                    string = create<string_t>("");
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                    break;
                }
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671
                case value_t::boolean:
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                {
                    boolean = boolean_t(false);
                    break;
                }

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

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                case value_t::number_float:
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                {
                    number_float = number_float_t(0.0);
                    break;
                }
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                default:
                {
                    break;
                }
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            }
        }
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        /// constructor for strings
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        json_value(const string_t& value)
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        {
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            string = create<string_t>(value);
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        }

        /// constructor for objects
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        json_value(const object_t& value)
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        {
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            object = create<object_t>(value);
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        }

        /// constructor for arrays
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        json_value(const array_t& value)
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        {
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            array = create<array_t>(value);
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        }
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    };

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  public:
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    //////////////////////////
    // JSON parser callback //
    //////////////////////////

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    /*!
    @brief JSON callback events

    This enumeration lists the parser events that can trigger calling a
    callback function of type @ref parser_callback_t during parsing.
    */
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    enum class parse_event_t : uint8_t
    {
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        /// the parser read `{` and started to process a JSON object
        object_start,
        /// the parser read `}` and finished processing a JSON object
        object_end,
        /// the parser read `[` and started to process a JSON array
        array_start,
        /// the parser read `]` and finished processing a JSON array
        array_end,
        /// the parser read a key of a value in an object
        key,
        /// the parser finished reading a JSON value
        value
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    };

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    /*!
    @brief per-element parser callback type

    With a parser callback function, the result of parsing a JSON text can be
    influenced. When passed to @ref parse(std::istream&, parser_callback_t) or
    @ref parse(const string_t&, parser_callback_t), it is called on certain
    events (passed as @ref parse_event_t via parameter @a event) with a set
    recursion depth @a depth and context JSON value @a parsed. The return value
    of the callback function is a boolean indicating whether the element that
    emitted the callback shall be kept or not.

    We distinguish six scenarios (determined by the event type) in which the
    callback function can be called. The following table describes the values
    of the parameters @a depth, @a event, and @a parsed.

    parameter @a event | description | parameter @a depth | parameter @a parsed
    ------------------ | ----------- | ------------------ | -------------------
    parse_event_t::object_start | the parser read `{` and started to process a JSON object | depth of the parent of the JSON object | a JSON value with type discarded
    parse_event_t::key | the parser read a key of a value in an object | depth of the currently parsed JSON object | a JSON string containing the key
    parse_event_t::object_end | the parser read `}` and finished processing a JSON object | depth of the parent of the JSON object | the parsed JSON object
    parse_event_t::array_start | the parser read `[` and started to process a JSON array | depth of the parent of the JSON array | a JSON value with type discarded
    parse_event_t::array_end | the parser read `]` and finished processing a JSON array | depth of the parent of the JSON array | the parsed JSON array
    parse_event_t::value | the parser finished reading a JSON value | depth of the value | the parsed JSON value

    Discarding a value (i.e., returning `false`) has different effects depending on the
    context in which function was called:

    - Discarded values in structured types are skipped. That is, the parser
      will behave as if the discarded value was never read.
    - In case a value outside a structured type is skipped, it is replaced with
      `null`. This case happens if the top-level element is skipped.

    @param[in] depth   the depth of the recursion during parsing

    @param[in] event   an event of type parse_event_t indicating the context in
    the callback function has been called

    @param[in,out] parsed  the current intermediate parse result; note that
    writing to this value has no effect for parse_event_t::key events

    @return Whether the JSON value which called the function during parsing
    should be kept (`true`) or not (`false`). In the latter case, it is either
    skipped completely or replaced by an empty discarded object.

    @sa @ref parse(std::istream&, parser_callback_t) or
    @ref parse(const string_t&, parser_callback_t) for examples
    */
    using parser_callback_t = std::function<bool(
                                  int depth, parse_event_t event, basic_json& parsed)>;
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    //////////////////
    // constructors //
    //////////////////

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    /*!
    @brief create an empty value with a given type

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    Create an empty JSON value with a given type. The value will be default
    initialized with an empty value which depends on the type:

    Value type  | initial value
    ----------- | -------------
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    null        | `null`
    boolean     | `false`
    string      | `""`
    number      | `0`
    object      | `{}`
    array       | `[]`
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    @param[in] value  the type of the value to create
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    @complexity Constant.

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    @throw std::bad_alloc if allocation for object, array, or string value
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    fails
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    @liveexample{The following code shows the constructor for different @ref
    value_t values,basic_json__value_t}
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    */
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    basic_json(const value_t value)
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        : m_type(value), m_value(value)
    {}
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    /*!
    @brief create a null object (implicitly)
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    Create a `null` JSON value. This is the implicit version of the `null`
    value constructor as it takes no parameters.

    @complexity Constant.

    @requirement This function satisfies the Container requirements:
    - The complexity is constant.
    - As postcondition, it holds: `basic_json().empty() == true`.

    @liveexample{The following code shows the constructor for a `null` JSON
    value.,basic_json}

    @sa basic_json(std::nullptr_t)
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    */
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    basic_json() noexcept = default;
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    /*!
    @brief create a null object (explicitly)

    Create a `null` JSON value. This is the explicitly version of the `null`
    value constructor as it takes a null pointer as parameter. It allows to
    create `null` values by explicitly assigning a @c nullptr to a JSON value.
    The passed null pointer itself is not read - it is only used to choose the
    right constructor.

    @complexity Constant.

    @liveexample{The following code shows the constructor with null pointer
    parameter.,basic_json__nullptr_t}

    @sa basic_json()
    */
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    basic_json(std::nullptr_t) noexcept
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        : basic_json(value_t::null)
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    {}

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    /*!
    @brief create an object (explicit)

    Create an object JSON value with a given content.

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    @param[in] value  a value for the object
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    @complexity Linear in the size of the passed @a value.

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    @throw std::bad_alloc if allocation for object value fails
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    @liveexample{The following code shows the constructor with an @ref object_t
    parameter.,basic_json__object_t}

    @sa basic_json(const CompatibleObjectType&)
    */
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    basic_json(const object_t& value)
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        : m_type(value_t::object), m_value(value)
    {}
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    /*!
    @brief create an object (implicit)

    Create an object JSON value with a given content. This constructor allows
    any type that can be used to construct values of type @ref object_t.
    Examples include the types `std::map` and `std::unordered_map`.

    @tparam CompatibleObjectType an object type whose `key_type` and
    `value_type` is compatible to @ref object_t

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    @param[in] value  a value for the object
N
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    @complexity Linear in the size of the passed @a value.

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    @throw std::bad_alloc if allocation for object value fails
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    @liveexample{The following code shows the constructor with several
    compatible object type parameters.,basic_json__CompatibleObjectType}

    @sa basic_json(const object_t&)
    */
    template <class CompatibleObjectType, typename
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              std::enable_if<
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                  std::is_constructible<typename object_t::key_type, typename CompatibleObjectType::key_type>::value and
                  std::is_constructible<basic_json, typename CompatibleObjectType::mapped_type>::value, int>::type
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              = 0>
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    basic_json(const CompatibleObjectType& value)
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        : m_type(value_t::object)
    {
915 916
        using std::begin;
        using std::end;
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        m_value.object = create<object_t>(begin(value), end(value));
N
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    }
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    /*!
    @brief create an array (explicit)

    Create an array JSON value with a given content.

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    @param[in] value  a value for the array
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    @complexity Linear in the size of the passed @a value.

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    @throw std::bad_alloc if allocation for array value fails
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    @liveexample{The following code shows the constructor with an @ref array_t
    parameter.,basic_json__array_t}

    @sa basic_json(const CompatibleArrayType&)
    */
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    basic_json(const array_t& value)
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        : m_type(value_t::array), m_value(value)
    {}
N
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    /*!
    @brief create an array (implicit)

    Create an array JSON value with a given content. This constructor allows
    any type that can be used to construct values of type @ref array_t.
    Examples include the types `std::vector`, `std::list`, and `std::set`.

    @tparam CompatibleArrayType an object type whose `value_type` is compatible
    to @ref array_t

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    @param[in] value  a value for the array
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    @complexity Linear in the size of the passed @a value.

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    @throw std::bad_alloc if allocation for array value fails
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    @liveexample{The following code shows the constructor with several
    compatible array type parameters.,basic_json__CompatibleArrayType}

    @sa basic_json(const array_t&)
    */
    template <class CompatibleArrayType, typename
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              std::enable_if<
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                  not std::is_same<CompatibleArrayType, typename basic_json_t::iterator>::value and
                  not std::is_same<CompatibleArrayType, typename basic_json_t::const_iterator>::value and
                  not std::is_same<CompatibleArrayType, typename basic_json_t::reverse_iterator>::value and
                  not std::is_same<CompatibleArrayType, typename basic_json_t::const_reverse_iterator>::value and
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                  not std::is_same<CompatibleArrayType, typename array_t::iterator>::value and
                  not std::is_same<CompatibleArrayType, typename array_t::const_iterator>::value and
                  std::is_constructible<basic_json, typename CompatibleArrayType::value_type>::value, int>::type
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              = 0>
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    basic_json(const CompatibleArrayType& value)
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        : m_type(value_t::array)
    {
974 975
        using std::begin;
        using std::end;
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        m_value.array = create<array_t>(begin(value), end(value));
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    }
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    /*!
    @brief create a string (explicit)

    Create an string JSON value with a given content.

    @param[in] value  a value for the string

    @complexity Linear in the size of the passed @a value.

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    @throw std::bad_alloc if allocation for string value fails
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    @liveexample{The following code shows the constructor with an @ref string_t
    parameter.,basic_json__string_t}

    @sa basic_json(const typename string_t::value_type*)
    @sa basic_json(const CompatibleStringType&)
    */
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    basic_json(const string_t& value)
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        : m_type(value_t::string), m_value(value)
    {}
N
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    /*!
    @brief create a string (explicit)

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    Create a string JSON value with a given content.
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    @param[in] value  a literal value for the string

    @complexity Linear in the size of the passed @a value.

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    @throw std::bad_alloc if allocation for string value fails
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    @liveexample{The following code shows the constructor with string literal
    parameter.,basic_json__string_t_value_type}

    @sa basic_json(const string_t&)
    @sa basic_json(const CompatibleStringType&)
    */
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    basic_json(const typename string_t::value_type* value)
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        : basic_json(string_t(value))
    {}
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    /*!
    @brief create a string (implicit)

    Create a string JSON value with a given content.

    @param[in] value  a value for the string

    @tparam CompatibleStringType an string type which is compatible to @ref
    string_t

    @complexity Linear in the size of the passed @a value.

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    @throw std::bad_alloc if allocation for string value fails
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    @liveexample{The following code shows the construction of a string value
    from a compatible type.,basic_json__CompatibleStringType}

    @sa basic_json(const string_t&)
    */
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    template <class CompatibleStringType, typename
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              std::enable_if<
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                  std::is_constructible<string_t, CompatibleStringType>::value, int>::type
N
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              = 0>
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    basic_json(const CompatibleStringType& value)
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        : basic_json(string_t(value))
    {}

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    /*!
    @brief create a boolean (explicit)

    Creates a JSON boolean type from a given value.

    @param[in] value  a boolean value to store

    @complexity Constant.

    @liveexample{The example below demonstrates boolean
    values.,basic_json__boolean_t}
    */
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    basic_json(boolean_t value)
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        : m_type(value_t::boolean), m_value(value)
    {}

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    /*!
    @brief create an integer number (explicit)

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    Create an interger number JSON value with a given content.

    @tparam T  helper type to compare number_integer_t and int (not visible in)
    the interface.

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    @param[in] value  an integer to create a JSON number from
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    @note This constructor would have the same signature as @ref
    basic_json(const int value), so we need to switch this one off in case
    number_integer_t is the same as int. This is done via the helper type @a T.

    @complexity Constant.

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    @liveexample{The example below shows the construction of a JSON integer
    number value.,basic_json__number_integer_t}
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    @sa basic_json(const int)
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    */
    template<typename T,
             typename std::enable_if<
                 not (std::is_same<T, int>::value)
                 and std::is_same<T, number_integer_t>::value
                 , int>::type = 0>
    basic_json(const number_integer_t value)
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        : m_type(value_t::number_integer), m_value(value)
    {}
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    /*!
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    @brief create an integer number from an enum type (explicit)

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    Create an integer number JSON value with a given content.
N
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    @param[in] value  an integer to create a JSON number from
N
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    @note This constructor allows to pass enums directly to a constructor. As
    C++ has no way of specifying the type of an anonymous enum explicitly, we
    can only rely on the fact that such values implicitly convert to int. As
    int may already be the same type of number_integer_t, we may need to switch
    off the constructor @ref basic_json(const number_integer_t).

    @complexity Constant.

    @liveexample{The example below shows the construction of a JSON integer
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    number value from an anonymous enum.,basic_json__const_int}
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    @sa basic_json(const number_integer_t)
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    */
    basic_json(const int value)
        : m_type(value_t::number_integer),
          m_value(static_cast<number_integer_t>(value))
易思龙 已提交
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    {}
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    /*!
    @brief create an integer number (implicit)

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    Create an integer number JSON value with a given content. This constructor
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    allows any type that can be used to construct values of type @ref
    number_integer_t. Examples may include the types `int`, `int32_t`, or
    `short`.

    @tparam CompatibleNumberIntegerType an integer type which is compatible to
    @ref number_integer_t.

    @param[in] value  an integer to create a JSON number from

    @complexity Constant.

    @liveexample{The example below shows the construction of several JSON
    integer number values from compatible
    types.,basic_json__CompatibleIntegerNumberType}

    @sa basic_json(const number_integer_t)
    */
    template<typename CompatibleNumberIntegerType, typename
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             std::enable_if<
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                 std::is_constructible<number_integer_t, CompatibleNumberIntegerType>::value and
                 std::numeric_limits<CompatibleNumberIntegerType>::is_integer, CompatibleNumberIntegerType>::type
N
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             = 0>
N
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    basic_json(const CompatibleNumberIntegerType value) noexcept
N
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        : m_type(value_t::number_integer),
          m_value(static_cast<number_integer_t>(value))
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    {}

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    /*!
    @brief create a floating-point number (explicit)

    Create a floating-point number JSON value with a given content.

    @param[in] value  a floating-point value to create a JSON number from

    @note RFC 7159 <http://www.rfc-editor.org/rfc/rfc7159.txt>, section 6
    disallows NaN values:
    > Numeric values that cannot be represented in the grammar below (such
    > as Infinity and NaN) are not permitted.
    In case the parameter @a value is not a number, a JSON null value is
    created instead.

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    @complexity Constant.
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    @liveexample{The following example creates several floating-point
    values.,basic_json__number_float_t}
    */
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    basic_json(const number_float_t value)
N
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        : m_type(value_t::number_float), m_value(value)
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    {
        // replace infinity and NAN by null
        if (not std::isfinite(value))
        {
            m_type = value_t::null;
            m_value = json_value();
        }
    }
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    /*!
    @brief create an floating-point number (implicit)

    Create an floating-point number JSON value with a given content. This
    constructor allows any type that can be used to construct values of type
    @ref number_float_t. Examples may include the types `float`.

    @tparam CompatibleNumberFloatType a floating-point type which is compatible
    to @ref number_float_t.

    @param[in] value  a floating-point to create a JSON number from

    @note RFC 7159 <http://www.rfc-editor.org/rfc/rfc7159.txt>, section 6
    disallows NaN values:
    > Numeric values that cannot be represented in the grammar below (such
    > as Infinity and NaN) are not permitted.
    In case the parameter @a value is not a number, a JSON null value is
    created instead.

    @complexity Constant.

    @liveexample{The example below shows the construction of several JSON
    floating-point number values from compatible
    types.,basic_json__CompatibleNumberFloatType}

    @sa basic_json(const number_float_t)
    */
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    template<typename CompatibleNumberFloatType, typename = typename
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             std::enable_if<
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                 std::is_constructible<number_float_t, CompatibleNumberFloatType>::value and
                 std::is_floating_point<CompatibleNumberFloatType>::value>::type
N
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             >
N
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    basic_json(const CompatibleNumberFloatType value) noexcept
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        : basic_json(number_float_t(value))
    {}
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    /*!
    @brief create a container (array or object) from an initializer list

    Creates a JSON value of type array or object from the passed initializer
    list @a init. In case @a type_deduction is `true` (default), the type of
    the JSON value to be created is deducted from the initializer list @a init
    according to the following rules:

    1. If the list is empty, an empty JSON object value `{}` is created.
    2. If the list consists of pairs whose first element is a string, a JSON
    object value is created where the first elements of the pairs are treated
    as keys and the second elements are as values.
    3. In all other cases, an array is created.

    The rules aim to create the best fit between a C++ initializer list and
    JSON values. The ratioinale is as follows:

    1. The empty initializer list is written as `{}` which is exactly an empty
    JSON object.
    2. C++ has now way of describing mapped types other than to list a list of
    pairs. As JSON requires that keys must be of type string, rule 2 is the
    weakest constraint one can pose on initializer lists to interpret them as
    an object.
    3. In all other cases, the initializer list could not be interpreted as
    JSON object type, so interpreting it as JSON array type is safe.

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    With the rules described above, the following JSON values cannot be
    expressed by an initializer list:
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    - the empty array (`[]`): use @ref array(std::initializer_list<basic_json>)
      with an empty initializer list in this case
    - arrays whose elements satisfy rule 2: use @ref
      array(std::initializer_list<basic_json>) with the same initializer list
      in this case
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    @note When used without parentheses around an empty initializer list, @ref
    basic_json() is called instead of this function, yielding the JSON null
    value.

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    @param[in] init  initializer list with JSON values
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    @param[in] type_deduction internal parameter; when set to `true`, the type
    of the JSON value is deducted from the initializer list @a init; when set
    to `false`, the type provided via @a manual_type is forced. This mode is
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    used by the functions @ref array(std::initializer_list<basic_json>) and
    @ref object(std::initializer_list<basic_json>).
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    @param[in] manual_type internal parameter; when @a type_deduction is set to
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    `false`, the created JSON value will use the provided type (only @ref
    value_t::array and @ref value_t::object are valid); when @a type_deduction
    is set to `true`, this parameter has no effect

    @throw std::domain_error if @a type_deduction is `false`, @a manual_type is
    `value_t::object`, but @a init contains an element which is not a pair
    whose first element is a string

    @complexity Linear in the size of the initializer list @a init.

    @liveexample{The example below shows how JSON values are created from
    initializer lists,basic_json__list_init_t}

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    @sa basic_json array(std::initializer_list<basic_json>) - create a JSON
    array value from an initializer list
    @sa basic_json object(std::initializer_list<basic_json>) - create a JSON
    object value from an initializer list
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    */
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    basic_json(std::initializer_list<basic_json> init,
               bool type_deduction = true,
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               value_t manual_type = value_t::array)
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    {
        // the initializer list could describe an object
        bool is_object = true;

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        // check if each element is an array with two elements whose first element
        // is a string
N
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        for (const auto& element : init)
N
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        {
N
cleanup  
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            if (not element.is_array() or element.size() != 2
                    or not element[0].is_string())
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            {
                // 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)
        {
            // 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::domain_error("cannot create 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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            m_value = value_t::object;
N
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            for (auto& element : init)
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            {
                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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            m_value.array = create<array_t>(std::move(init));
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        }
    }

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    /*!
    @brief explicitly create an array from an initializer list

    Creates a JSON array value from a given initializer list. That is, given a
    list of values `a, b, c`, creates the JSON value `[a, b, c]`. If the
    initializer list is empty, the empty array `[]` is created.

    @note This function is only needed to express two edge cases that cannot be
    realized with the initializer list constructor (@ref
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    basic_json(std::initializer_list<basic_json>, bool, value_t)). These cases
    are:
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    1. creating an array whose elements are all pairs whose first element is a
    string - in this case, the initializer list constructor would create an
    object, taking the first elements as keys
    2. creating an empty array - passing the empty initializer list to the
    initializer list constructor yields an empty object

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    @param[in] init  initializer list with JSON values to create an array from
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    (optional)

    @return JSON array value

    @complexity Linear in the size of @a init.

    @liveexample{The following code shows an example for the @ref array
    function.,array}

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    @sa basic_json(std::initializer_list<basic_json>, bool, value_t) - create a
    JSON value from an initializer list
    @sa basic_json object(std::initializer_list<basic_json>) - create a JSON
    object value from an initializer list
N
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    */
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    static basic_json array(std::initializer_list<basic_json> init =
                                std::initializer_list<basic_json>())
N
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    {
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        return basic_json(init, false, value_t::array);
N
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    }

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    /*!
    @brief explicitly create an object from an initializer list

    Creates a JSON object value from a given initializer list. The initializer
    lists elements must be pairs, and their first elments must be strings. If
    the initializer list is empty, the empty object `{}` is created.

    @note This function is only added for symmetry reasons. In contrast to the
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    related function @ref basic_json array(std::initializer_list<basic_json>),
    there are no cases which can only be expressed by this function. That is,
    any initializer list @a init can also be passed to the initializer list
    constructor @ref basic_json(std::initializer_list<basic_json>, bool,
    value_t).
N
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N
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    @param[in] init  initializer list to create an object from (optional)
N
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    @return JSON object value

    @throw std::domain_error if @a init is not a pair whose first elements are
N
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    strings; thrown by @ref basic_json(std::initializer_list<basic_json>, bool,
    value_t)
N
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    @complexity Linear in the size of @a init.

    @liveexample{The following code shows an example for the @ref object
    function.,object}

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    @sa basic_json(std::initializer_list<basic_json>, bool, value_t) - create a
    JSON value from an initializer list
    @sa basic_json array(std::initializer_list<basic_json>) - create a JSON
    array value from an initializer list
N
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    */
N
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    static basic_json object(std::initializer_list<basic_json> init =
                                 std::initializer_list<basic_json>())
N
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    {
N
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        return basic_json(init, false, value_t::object);
N
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    }

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    /*!
    @brief construct an array with count copies of given value

    Constructs a JSON array value by creating @a count copies of a passed
    value. In case @a count is `0`, an empty array is created. As postcondition,
    `std::distance(begin(),end()) == count` holds.

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    @param[in] count  the number of JSON copies of @a value to create
    @param[in] value  the JSON value to copy
N
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    @complexity Linear in @a count.

    @liveexample{The following code shows examples for the @ref
    basic_json(size_type\, const basic_json&)
    constructor.,basic_json__size_type_basic_json}
    */
    basic_json(size_type count, const basic_json& value)
N
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        : m_type(value_t::array)
    {
N
Cleanup  
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        m_value.array = create<array_t>(count, value);
N
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1434
    }
N
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N
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    /*!
    @brief construct a JSON container given an iterator range

    Constructs the JSON value with the contents of the range `[first, last)`.
    The semantics depends on the different types a JSON value can have:
N
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    - In case of primitive types (number, boolean, or string), @a first must
N
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1442 1443
      be `begin()` and @a last must be `end()`. In this case, the value is
      copied. Otherwise, std::out_of_range is thrown.
N
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    - In case of structured types (array, object), the constructor behaves
N
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      as similar versions for `std::vector`.
N
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    - In case of a null type, std::domain_error is thrown.
N
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    @tparam InputIT an input iterator type (@ref iterator or @ref
    const_iterator)

    @param[in] first begin of the range to copy from (included)
    @param[in] last end of the range to copy from (excluded)

    @throw std::domain_error if iterators are not compatible; that is, do not
    belong to the same JSON value
N
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    @throw std::out_of_range if iterators are for a primitive type (number,
N
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    boolean, or string) where an out of range error can be detected easily
    @throw std::bad_alloc if allocation for object, array, or string fails
    @throw std::domain_error if called with a null value

    @complexity Linear in distance between @a first and @a last.

    @liveexample{The example below shows several ways to create JSON values by
    specifying a subrange with iterators.,basic_json__InputIt_InputIt}
    */
    template <class InputIT, typename
N
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              std::enable_if<
N
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1468 1469
                  std::is_same<InputIT, typename basic_json_t::iterator>::value or
                  std::is_same<InputIT, typename basic_json_t::const_iterator>::value
N
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                  , int>::type
              = 0>
N
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    basic_json(InputIT first, InputIT last) : m_type(first.m_object->m_type)
N
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1473 1474
    {
        // make sure iterator fits the current value
N
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        if (first.m_object != last.m_object)
N
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        {
N
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1477
            throw std::domain_error("iterators are not compatible");
N
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1478 1479
        }

N
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        // check if iterator range is complete for primitive values
N
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        switch (m_type)
        {
            case value_t::boolean:
1484 1485
            case value_t::number_float:
            case value_t::number_integer:
N
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            case value_t::string:
            {
1488
                if (not first.m_it.primitive_iterator.is_begin() or not last.m_it.primitive_iterator.is_end())
N
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                {
                    throw std::out_of_range("iterators out of range");
                }
                break;
            }

            default:
            {
                break;
            }
        }

        switch (m_type)
        {
            case value_t::number_integer:
            {
                m_value.number_integer = first.m_object->m_value.number_integer;
                break;
            }

            case value_t::number_float:
            {
                m_value.number_float = first.m_object->m_value.number_float;
                break;
            }

            case value_t::boolean:
            {
                m_value.boolean = first.m_object->m_value.boolean;
                break;
            }

            case value_t::string:
            {
N
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                m_value = *first.m_object->m_value.string;
N
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1524 1525 1526 1527 1528
                break;
            }

            case value_t::object:
            {
N
Cleanup  
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1529
                m_value.object = create<object_t>(first.m_it.object_iterator, last.m_it.object_iterator);
N
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1530 1531 1532 1533 1534
                break;
            }

            case value_t::array:
            {
N
Cleanup  
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                m_value.array = create<array_t>(first.m_it.array_iterator, last.m_it.array_iterator);
N
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1536 1537 1538 1539 1540
                break;
            }

            default:
            {
N
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                throw std::domain_error("cannot use construct with iterators from " + first.m_object->type_name());
N
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1542 1543 1544 1545
            }
        }
    }

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

N
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    /*!
    @brief copy constructor
N
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1552

N
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    Creates a copy of a given JSON value.

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    @param[in] other  the JSON value to copy
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    @complexity Linear in the size of @a other.

    @requirement This function satisfies the Container requirements:
    - The complexity is linear.
    - As postcondition, it holds: `other == basic_json(other)`.

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    @throw std::bad_alloc if allocation for object, array, or string fails.
N
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    @liveexample{The following code shows an example for the copy
N
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    constructor.,basic_json__basic_json}
N
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    */
N
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    basic_json(const basic_json& other)
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        : m_type(other.m_type)
    {
        switch (m_type)
        {
1573
            case value_t::object:
N
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            {
N
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                m_value = *other.m_value.object;
N
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1576 1577
                break;
            }
N
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1579
            case value_t::array:
N
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1580
            {
N
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1581
                m_value = *other.m_value.array;
N
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1582 1583
                break;
            }
N
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1584

1585
            case value_t::string:
N
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            {
N
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1587
                m_value = *other.m_value.string;
N
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1588 1589
                break;
            }
N
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1590

1591
            case value_t::boolean:
N
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            {
N
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                m_value = other.m_value.boolean;
N
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1594 1595
                break;
            }
N
Niels 已提交
1596

1597
            case value_t::number_integer:
N
Niels 已提交
1598
            {
N
Niels 已提交
1599
                m_value = other.m_value.number_integer;
N
Niels 已提交
1600 1601
                break;
            }
N
Niels 已提交
1602

1603
            case value_t::number_float:
N
Niels 已提交
1604
            {
N
Niels 已提交
1605
                m_value = other.m_value.number_float;
N
Niels 已提交
1606 1607
                break;
            }
1608 1609 1610 1611 1612

            default:
            {
                break;
            }
N
Niels 已提交
1613 1614 1615
        }
    }

N
Niels 已提交
1616 1617 1618 1619 1620 1621 1622
    /*!
    @brief move constructor

    Move constructor. Constructs a JSON value with the contents of the given
    value @a other using move semantics. It "steals" the resources from @a
    other and leaves it as JSON null value.

N
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1623
    @param[in,out] other  value to move to this object
N
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1624 1625 1626 1627 1628 1629 1630 1631

    @post @a other is a JSON null value

    @complexity Constant.

    @liveexample{The code below shows the move constructor explicitly called
    via std::move.,basic_json__moveconstructor}
    */
N
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1632
    basic_json(basic_json&& other) noexcept
N
Niels 已提交
1633 1634 1635
        : m_type(std::move(other.m_type)),
          m_value(std::move(other.m_value))
    {
N
Niels 已提交
1636
        // invalidate payload
N
Niels 已提交
1637 1638 1639 1640
        other.m_type = value_t::null;
        other.m_value = {};
    }

N
Niels 已提交
1641 1642
    /*!
    @brief copy assignment
N
Niels 已提交
1643

N
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1644 1645 1646 1647
    Copy assignment operator. Copies a JSON value via the "copy and swap"
    strategy: It is expressed in terms of the copy constructor, destructor, and
    the swap() member function.

N
Niels 已提交
1648
    @param[in] other  value to copy from
N
Niels 已提交
1649 1650 1651 1652 1653 1654

    @complexity Linear.

    @requirement This function satisfies the Container requirements:
    - The complexity is linear.

N
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1655 1656 1657 1658
    @liveexample{The code below shows and example for the copy assignment. It
    creates a copy of value `a` which is then swapped with `b`. Finally\, the
    copy of `a` (which is the null value after the swap) is
    destroyed.,basic_json__copyassignment}
N
Niels 已提交
1659
    */
N
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1660
    reference& operator=(basic_json other) noexcept (
N
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1661 1662 1663 1664 1665
        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
Niels 已提交
1666
    {
N
Niels 已提交
1667
        using std::swap;
N
Cleanup  
Niels 已提交
1668 1669
        swap(m_type, other.m_type);
        swap(m_value, other.m_value);
N
Niels 已提交
1670 1671 1672
        return *this;
    }

N
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1673 1674
    /*!
    @brief destructor
N
Niels 已提交
1675

N
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1676
    Destroys the JSON value and frees all allocated memory.
N
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1677 1678 1679 1680 1681 1682

    @complexity Linear.

    @requirement This function satisfies the Container requirements:
    - The complexity is linear.
    - All stored elements are destroyed and all memory is freed.
N
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1683
    */
N
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1684
    ~basic_json()
N
Niels 已提交
1685 1686 1687
    {
        switch (m_type)
        {
1688
            case value_t::object:
N
Niels 已提交
1689
            {
N
Niels 已提交
1690
                AllocatorType<object_t> alloc;
N
Niels 已提交
1691 1692
                alloc.destroy(m_value.object);
                alloc.deallocate(m_value.object, 1);
N
Niels 已提交
1693 1694
                break;
            }
N
Niels 已提交
1695

1696
            case value_t::array:
N
Niels 已提交
1697
            {
N
Niels 已提交
1698
                AllocatorType<array_t> alloc;
N
Niels 已提交
1699 1700
                alloc.destroy(m_value.array);
                alloc.deallocate(m_value.array, 1);
N
Niels 已提交
1701 1702
                break;
            }
N
Niels 已提交
1703

1704
            case value_t::string:
N
Niels 已提交
1705
            {
N
Niels 已提交
1706
                AllocatorType<string_t> alloc;
N
Niels 已提交
1707
                alloc.destroy(m_value.string);
N
Niels 已提交
1708
                alloc.deallocate(m_value.string, 1);
N
Niels 已提交
1709 1710
                break;
            }
N
Niels 已提交
1711 1712

            default:
N
Niels 已提交
1713
            {
N
Niels 已提交
1714
                // all other types need no specific destructor
N
Niels 已提交
1715 1716 1717 1718 1719 1720 1721 1722 1723 1724 1725
                break;
            }
        }
    }


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

N
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1726 1727 1728
    /// @name object inspection
    /// @{

N
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1729
    /*!
N
Niels 已提交
1730 1731
    @brief serialization

N
Niels 已提交
1732
    Serialization function for JSON values. The function tries to mimick
N
Niels 已提交
1733 1734
    Python's @p json.dumps() function, and currently supports its @p indent
    parameter.
N
Niels 已提交
1735

N
Niels 已提交
1736
    @param[in] indent if indent is nonnegative, then array elements and object
N
Niels 已提交
1737 1738 1739
    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
N
Niels 已提交
1740

N
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1741 1742 1743 1744 1745 1746 1747
    @return string containing the serialization of the JSON value

    @complexity Linear.

    @liveexample{The following example shows the effect of different @a indent
    parameters to the result of the serializaion.,dump}

N
Niels 已提交
1748 1749
    @see https://docs.python.org/2/library/json.html#json.dump
    */
N
Niels 已提交
1750
    string_t dump(const int indent = -1) const
N
Niels 已提交
1751
    {
N
Niels 已提交
1752 1753
        std::stringstream ss;

N
Niels 已提交
1754 1755
        if (indent >= 0)
        {
N
Niels 已提交
1756
            dump(ss, true, static_cast<unsigned int>(indent));
N
Niels 已提交
1757 1758 1759
        }
        else
        {
N
Niels 已提交
1760
            dump(ss, false, 0);
N
Niels 已提交
1761
        }
N
Niels 已提交
1762 1763

        return ss.str();
N
Niels 已提交
1764 1765
    }

N
Niels 已提交
1766 1767 1768 1769 1770 1771 1772
    /*!
    @brief return the type of the JSON value (explicit)

    Return the type of the JSON value as a value from the @ref value_t
    enumeration.

    @return the type of the JSON value
N
Niels 已提交
1773 1774 1775 1776 1777

    @complexity Constant.

    @liveexample{The following code exemplifies @ref type() for all JSON
    types.,type}
N
Niels 已提交
1778
    */
N
Niels 已提交
1779
    value_t type() const noexcept
N
Niels 已提交
1780 1781 1782 1783
    {
        return m_type;
    }

N
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1784 1785 1786 1787 1788 1789 1790 1791 1792 1793 1794 1795 1796 1797 1798 1799 1800 1801 1802 1803 1804 1805 1806 1807 1808 1809 1810 1811 1812 1813 1814 1815 1816 1817 1818 1819 1820
    /*!
    @brief return whether type is primitive

    This function returns true iff the JSON type is primitive (string, number,
    boolean, or null).

    @return `true` if type is primitive (string, number, boolean, or null),
    `false` otherwise.

    @complexity Constant.

    @liveexample{The following code exemplifies @ref is_primitive for all JSON
    types.,is_primitive}
    */
    bool is_primitive() const noexcept
    {
        return is_null() or is_string() or is_boolean() or is_number();
    }

    /*!
    @brief return whether type is structured

    This function returns true iff the JSON type is structured (array or
    object).

    @return `true` if type is structured (array or object), `false` otherwise.

    @complexity Constant.

    @liveexample{The following code exemplifies @ref is_structured for all JSON
    types.,is_structured}
    */
    bool is_structured() const noexcept
    {
        return is_array() or is_object();
    }

N
Niels 已提交
1821 1822 1823 1824 1825
    /*!
    @brief return whether value is null

    This function returns true iff the JSON value is null.

N
Niels 已提交
1826
    @return `true` if type is null, `false` otherwise.
N
Niels 已提交
1827 1828 1829 1830

    @complexity Constant.

    @liveexample{The following code exemplifies @ref is_null for all JSON
N
Niels 已提交
1831
    types.,is_null}
N
Niels 已提交
1832
    */
N
Niels 已提交
1833
    bool is_null() const noexcept
N
Niels 已提交
1834 1835 1836 1837
    {
        return m_type == value_t::null;
    }

N
Niels 已提交
1838 1839 1840 1841 1842
    /*!
    @brief return whether value is a boolean

    This function returns true iff the JSON value is a boolean.

N
Niels 已提交
1843
    @return `true` if type is boolean, `false` otherwise.
N
Niels 已提交
1844 1845 1846 1847

    @complexity Constant.

    @liveexample{The following code exemplifies @ref is_boolean for all JSON
N
Niels 已提交
1848
    types.,is_boolean}
N
Niels 已提交
1849
    */
N
Niels 已提交
1850
    bool is_boolean() const noexcept
N
Niels 已提交
1851 1852 1853 1854
    {
        return m_type == value_t::boolean;
    }

N
Niels 已提交
1855 1856 1857 1858 1859 1860
    /*!
    @brief return whether value is a number

    This function returns true iff the JSON value is a number. This includes
    both integer and floating-point values.

N
Niels 已提交
1861
    @return `true` if type is number, `false` otherwise.
N
Niels 已提交
1862 1863 1864 1865

    @complexity Constant.

    @liveexample{The following code exemplifies @ref is_number for all JSON
N
Niels 已提交
1866
    types.,is_number}
N
Niels 已提交
1867
    */
N
Niels 已提交
1868
    bool is_number() const noexcept
N
Niels 已提交
1869
    {
N
Niels 已提交
1870
        return is_number_integer() or is_number_float();
N
Niels 已提交
1871 1872
    }

N
Niels 已提交
1873 1874 1875 1876 1877 1878
    /*!
    @brief return whether value is an integer number

    This function returns true iff the JSON value is an integer number. This
    excludes floating-point values.

N
Niels 已提交
1879
    @return `true` if type is an integer number, `false` otherwise.
N
Niels 已提交
1880 1881 1882 1883

    @complexity Constant.

    @liveexample{The following code exemplifies @ref is_number_integer for all
N
Niels 已提交
1884
    JSON types.,is_number_integer}
N
Niels 已提交
1885
    */
N
Niels 已提交
1886 1887 1888 1889 1890
    bool is_number_integer() const noexcept
    {
        return m_type == value_t::number_integer;
    }

N
Niels 已提交
1891 1892 1893 1894 1895 1896
    /*!
    @brief return whether value is a floating-point number

    This function returns true iff the JSON value is a floating-point number.
    This excludes integer values.

N
Niels 已提交
1897
    @return `true` if type is a floating-point number, `false` otherwise.
N
Niels 已提交
1898 1899 1900 1901

    @complexity Constant.

    @liveexample{The following code exemplifies @ref is_number_float for all
N
Niels 已提交
1902
    JSON types.,is_number_float}
N
Niels 已提交
1903
    */
N
Niels 已提交
1904 1905 1906 1907 1908
    bool is_number_float() const noexcept
    {
        return m_type == value_t::number_float;
    }

N
Niels 已提交
1909 1910 1911 1912 1913
    /*!
    @brief return whether value is an object

    This function returns true iff the JSON value is an object.

N
Niels 已提交
1914
    @return `true` if type is object, `false` otherwise.
N
Niels 已提交
1915 1916 1917 1918

    @complexity Constant.

    @liveexample{The following code exemplifies @ref is_object for all JSON
N
Niels 已提交
1919
    types.,is_object}
N
Niels 已提交
1920
    */
N
Niels 已提交
1921
    bool is_object() const noexcept
N
Niels 已提交
1922 1923 1924 1925
    {
        return m_type == value_t::object;
    }

N
Niels 已提交
1926 1927 1928 1929 1930
    /*!
    @brief return whether value is an array

    This function returns true iff the JSON value is an array.

N
Niels 已提交
1931
    @return `true` if type is array, `false` otherwise.
N
Niels 已提交
1932 1933 1934 1935

    @complexity Constant.

    @liveexample{The following code exemplifies @ref is_array for all JSON
N
Niels 已提交
1936
    types.,is_array}
N
Niels 已提交
1937
    */
N
Niels 已提交
1938
    bool is_array() const noexcept
N
Niels 已提交
1939 1940 1941 1942
    {
        return m_type == value_t::array;
    }

N
Niels 已提交
1943 1944 1945 1946 1947
    /*!
    @brief return whether value is a string

    This function returns true iff the JSON value is a string.

N
Niels 已提交
1948
    @return `true` if type is string, `false` otherwise.
N
Niels 已提交
1949 1950 1951 1952

    @complexity Constant.

    @liveexample{The following code exemplifies @ref is_string for all JSON
N
Niels 已提交
1953
    types.,is_string}
N
Niels 已提交
1954
    */
N
Niels 已提交
1955
    bool is_string() const noexcept
N
Niels 已提交
1956 1957 1958 1959
    {
        return m_type == value_t::string;
    }

N
Niels 已提交
1960 1961 1962 1963 1964 1965
    /*!
    @brief return whether value is discarded

    This function returns true iff the JSON value was discarded during parsing
    with a callback function (see @ref parser_callback_t).

N
Niels 已提交
1966 1967 1968 1969
    @note This function will always be `false` for JSON values after parsing.
    That is, discarded values can only occur during parsing, but will be
    removed when inside a structured value or replaced by null in other cases.

N
Niels 已提交
1970 1971 1972 1973
    @return `true` if type is discarded, `false` otherwise.

    @complexity Constant.

N
Niels 已提交
1974 1975
    @liveexample{The following code exemplifies @ref is_discarded for all JSON
    types.,is_discarded}
N
Niels 已提交
1976
    */
N
Niels 已提交
1977
    bool is_discarded() const noexcept
N
Niels 已提交
1978 1979 1980 1981
    {
        return m_type == value_t::discarded;
    }

N
Niels 已提交
1982 1983 1984 1985 1986 1987 1988 1989 1990 1991 1992 1993 1994
    /*!
    @brief return the type of the JSON value (implicit)

    Implicitly return the type of the JSON value as a value from the @ref
    value_t enumeration.

    @return the type of the JSON value

    @complexity Constant.

    @liveexample{The following code exemplifies the value_t operator for all
    JSON types.,operator__value_t}
    */
N
Niels 已提交
1995
    operator value_t() const noexcept
N
Niels 已提交
1996 1997 1998 1999
    {
        return m_type;
    }

N
Niels 已提交
2000 2001
    /// @}

N
Niels 已提交
2002
  private:
N
Niels 已提交
2003 2004 2005
    //////////////////
    // value access //
    //////////////////
N
Niels 已提交
2006

N
Niels 已提交
2007
    /// get an object (explicit)
N
Niels 已提交
2008 2009
    template <class T, typename
              std::enable_if<
N
Niels 已提交
2010
                  std::is_convertible<typename object_t::key_type, typename T::key_type>::value and
N
Niels 已提交
2011
                  std::is_convertible<basic_json_t, typename T::mapped_type>::value
N
Niels 已提交
2012
                  , int>::type = 0>
N
Niels 已提交
2013
    T get_impl(T*) const
N
Niels 已提交
2014
    {
N
cleanup  
Niels 已提交
2015
        if (is_object())
N
Niels 已提交
2016
        {
2017 2018 2019 2020 2021
            return T(m_value.object->begin(), m_value.object->end());
        }
        else
        {
            throw std::domain_error("type must be object, but is " + type_name());
N
Niels 已提交
2022 2023 2024 2025
        }
    }

    /// get an object (explicit)
N
Niels 已提交
2026
    object_t get_impl(object_t*) const
N
Niels 已提交
2027
    {
N
cleanup  
Niels 已提交
2028
        if (is_object())
N
Niels 已提交
2029
        {
2030 2031 2032 2033 2034
            return *(m_value.object);
        }
        else
        {
            throw std::domain_error("type must be object, but is " + type_name());
N
Niels 已提交
2035 2036 2037
        }
    }

N
Niels 已提交
2038
    /// get an array (explicit)
N
Niels 已提交
2039 2040
    template <class T, typename
              std::enable_if<
N
Niels 已提交
2041 2042
                  std::is_convertible<basic_json_t, typename T::value_type>::value and
                  not std::is_same<basic_json_t, typename T::value_type>::value and
N
Niels 已提交
2043 2044
                  not std::is_arithmetic<T>::value and
                  not std::is_convertible<std::string, T>::value and
2045
                  not has_mapped_type<T>::value
N
Niels 已提交
2046
                  , int>::type = 0>
N
Niels 已提交
2047
    T get_impl(T*) const
N
Niels 已提交
2048
    {
N
cleanup  
Niels 已提交
2049
        if (is_array())
N
Niels 已提交
2050
        {
2051 2052 2053
            T to_vector;
            std::transform(m_value.array->begin(), m_value.array->end(),
                           std::inserter(to_vector, to_vector.end()), [](basic_json i)
N
Niels 已提交
2054
            {
2055 2056 2057 2058 2059 2060 2061
                return i.get<typename T::value_type>();
            });
            return to_vector;
        }
        else
        {
            throw std::domain_error("type must be array, but is " + type_name());
N
Niels 已提交
2062 2063 2064
        }
    }

N
Niels 已提交
2065 2066
    /// get an array (explicit)
    template <class T, typename
N
Niels 已提交
2067
              std::enable_if<
N
Niels 已提交
2068 2069
                  std::is_convertible<basic_json_t, T>::value and
                  not std::is_same<basic_json_t, T>::value
N
Niels 已提交
2070
                  , int>::type = 0>
N
Niels 已提交
2071
    std::vector<T> get_impl(std::vector<T>*) const
N
Niels 已提交
2072
    {
N
cleanup  
Niels 已提交
2073
        if (is_array())
N
Niels 已提交
2074
        {
2075 2076 2077 2078
            std::vector<T> to_vector;
            to_vector.reserve(m_value.array->size());
            std::transform(m_value.array->begin(), m_value.array->end(),
                           std::inserter(to_vector, to_vector.end()), [](basic_json i)
N
Niels 已提交
2079
            {
2080 2081 2082 2083 2084 2085 2086
                return i.get<T>();
            });
            return to_vector;
        }
        else
        {
            throw std::domain_error("type must be array, but is " + type_name());
N
Niels 已提交
2087 2088 2089
        }
    }

N
Niels 已提交
2090 2091 2092 2093
    /// get an array (explicit)
    template <class T, typename
              std::enable_if<
                  std::is_same<basic_json, typename T::value_type>::value and
2094
                  not has_mapped_type<T>::value
N
Niels 已提交
2095
                  , int>::type = 0>
N
Niels 已提交
2096
    T get_impl(T*) const
N
Niels 已提交
2097
    {
N
cleanup  
Niels 已提交
2098
        if (is_array())
N
Niels 已提交
2099
        {
2100 2101 2102 2103 2104
            return T(m_value.array->begin(), m_value.array->end());
        }
        else
        {
            throw std::domain_error("type must be array, but is " + type_name());
N
Niels 已提交
2105 2106 2107
        }
    }

N
Niels 已提交
2108
    /// get an array (explicit)
N
Niels 已提交
2109
    array_t get_impl(array_t*) const
N
Niels 已提交
2110
    {
N
cleanup  
Niels 已提交
2111
        if (is_array())
N
Niels 已提交
2112
        {
2113 2114 2115 2116 2117
            return *(m_value.array);
        }
        else
        {
            throw std::domain_error("type must be array, but is " + type_name());
N
Niels 已提交
2118 2119 2120 2121
        }
    }

    /// get a string (explicit)
N
Niels 已提交
2122 2123
    template <typename T, typename
              std::enable_if<
N
Niels 已提交
2124 2125
                  std::is_convertible<string_t, T>::value
                  , int>::type = 0>
N
Niels 已提交
2126
    T get_impl(T*) const
N
Niels 已提交
2127
    {
N
cleanup  
Niels 已提交
2128
        if (is_string())
N
Niels 已提交
2129
        {
2130 2131 2132 2133 2134
            return *m_value.string;
        }
        else
        {
            throw std::domain_error("type must be string, but is " + type_name());
N
Niels 已提交
2135 2136 2137
        }
    }

N
Niels 已提交
2138
    /// get a number (explicit)
N
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    template<typename T, typename
             std::enable_if<
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                 std::is_arithmetic<T>::value
                 , int>::type = 0>
N
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    T get_impl(T*) const
N
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    {
        switch (m_type)
        {
2147
            case value_t::number_integer:
N
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            {
N
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                return static_cast<T>(m_value.number_integer);
N
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            }
2151 2152

            case value_t::number_float:
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            {
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                return static_cast<T>(m_value.number_float);
N
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            }
2156

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            default:
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            {
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                throw std::domain_error("type must be number, but is " + type_name());
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            }
        }
    }

    /// get a boolean (explicit)
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    boolean_t get_impl(boolean_t*) const
N
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    {
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        if (is_boolean())
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        {
2169 2170 2171 2172 2173
            return m_value.boolean;
        }
        else
        {
            throw std::domain_error("type must be boolean, but is " + type_name());
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        }
    }

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    /// get a pointer to the value (object)
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    object_t* get_impl_ptr(object_t*) noexcept
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    {
        return is_object() ? m_value.object : nullptr;
    }

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    /// get a pointer to the value (object)
    const object_t* get_impl_ptr(const object_t*) const noexcept
    {
        return is_object() ? m_value.object : nullptr;
    }

    /// get a pointer to the value (array)
    array_t* get_impl_ptr(array_t*) noexcept
    {
        return is_array() ? m_value.array : nullptr;
    }

N
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    /// get a pointer to the value (array)
N
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    const array_t* get_impl_ptr(const array_t*) const noexcept
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    {
        return is_array() ? m_value.array : nullptr;
    }

    /// get a pointer to the value (string)
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    string_t* get_impl_ptr(string_t*) noexcept
    {
        return is_string() ? m_value.string : nullptr;
    }

    /// get a pointer to the value (string)
    const string_t* get_impl_ptr(const string_t*) const noexcept
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    {
        return is_string() ? m_value.string : nullptr;
    }

    /// get a pointer to the value (boolean)
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    boolean_t* get_impl_ptr(boolean_t*) noexcept
    {
        return is_boolean() ? &m_value.boolean : nullptr;
    }

    /// get a pointer to the value (boolean)
    const boolean_t* get_impl_ptr(const boolean_t*) const noexcept
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    {
        return is_boolean() ? &m_value.boolean : nullptr;
    }

    /// get a pointer to the value (integer number)
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    number_integer_t* get_impl_ptr(number_integer_t*) noexcept
    {
        return is_number_integer() ? &m_value.number_integer : nullptr;
    }

    /// get a pointer to the value (integer number)
    const number_integer_t* get_impl_ptr(const number_integer_t*) const noexcept
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    {
        return is_number_integer() ? &m_value.number_integer : nullptr;
    }

    /// get a pointer to the value (floating-point number)
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    number_float_t* get_impl_ptr(number_float_t*) noexcept
    {
        return is_number_float() ? &m_value.number_float : nullptr;
    }

    /// get a pointer to the value (floating-point number)
    const number_float_t* get_impl_ptr(const number_float_t*) const noexcept
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    {
        return is_number_float() ? &m_value.number_float : nullptr;
    }

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  public:
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    /// @name value access
    /// @{

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    /*!
    @brief get a value (explicit)

    Explicit type conversion between the JSON value and a compatible value.

    @tparam ValueType non-pointer type compatible to the JSON value, for
    instance `int` for JSON integer numbers, `bool` for JSON booleans, or
    `std::vector` types for JSON arrays

    @return copy of the JSON value, converted to type @a ValueType

    @throw std::domain_error in case passed type @a ValueType is incompatible
    to JSON

    @complexity Linear in the size of the JSON value.

    @liveexample{The example below shows serveral conversions from JSON values
    to other types. There a few things to note: (1) Floating-point numbers can
    be converted to integers\, (2) A JSON array can be converted to a standard
    `std::vector<short>`\, (3) A JSON object can be converted to C++
    assiciative containers such as `std::unordered_map<std::string\,
    json>`.,get__ValueType_const}

    @internal
    The idea of using a casted null pointer to choose the correct
    implementation is from <http://stackoverflow.com/a/8315197/266378>.
    @endinternal

    @sa @ref operator ValueType() const for implicit conversion
    @sa @ref get() for pointer-member access
    */
    template<typename ValueType, typename
             std::enable_if<
                 not std::is_pointer<ValueType>::value
                 , int>::type = 0>
    ValueType get() const
N
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    {
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        return get_impl(static_cast<ValueType*>(nullptr));
N
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    }

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    /*!
    @brief get a pointer value (explicit)

    Explicit pointer access to the internally stored JSON value. No copies are
    made.

    @warning Writing data to the pointee of the result yields an undefined
    state.

    @tparam PointerType pointer type; must be a pointer to @ref array_t, @ref
    object_t, @ref string_t, @ref boolean_t, @ref number_integer_t, or @ref
    number_float_t.

    @return pointer to the internally stored JSON value if the requested pointer
    type @a PointerType fits to the JSON value; `nullptr` otherwise

    @complexity Constant.

    @liveexample{The example below shows how pointers to internal values of a
    JSON value can be requested. Note that no type conversions are made and a
    `nullptr` is returned if the value and the requested pointer type does not
    match.,get__PointerType}

    @sa @ref get_ptr() for explicit pointer-member access
    */
    template<typename PointerType, typename
             std::enable_if<
                 std::is_pointer<PointerType>::value
                 , int>::type = 0>
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    PointerType get() noexcept
    {
        // delegate the call to get_ptr
        return get_ptr<PointerType>();
    }

    /*!
    @brief get a pointer value (explicit)
    @copydoc get()
    */
    template<typename PointerType, typename
             std::enable_if<
                 std::is_pointer<PointerType>::value
                 , int>::type = 0>
    const PointerType get() const noexcept
N
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    {
        // delegate the call to get_ptr
        return get_ptr<PointerType>();
    }

    /*!
    @brief get a pointer value (implicit)

    Implict pointer access to the internally stored JSON value. No copies are
    made.

    @warning Writing data to the pointee of the result yields an undefined
    state.

    @tparam PointerType pointer type; must be a pointer to @ref array_t, @ref
    object_t, @ref string_t, @ref boolean_t, @ref number_integer_t, or @ref
    number_float_t.

    @return pointer to the internally stored JSON value if the requested pointer
    type @a PointerType fits to the JSON value; `nullptr` otherwise

    @complexity Constant.

    @liveexample{The example below shows how pointers to internal values of a
    JSON value can be requested. Note that no type conversions are made and a
    `nullptr` is returned if the value and the requested pointer type does not
    match.,get_ptr}
    */
    template<typename PointerType, typename
             std::enable_if<
                 std::is_pointer<PointerType>::value
                 , int>::type = 0>
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    PointerType get_ptr() noexcept
    {
        // delegate the call to get_impl_ptr<>()
        return get_impl_ptr(static_cast<PointerType>(nullptr));
    }

    /*!
    @brief get a pointer value (implicit)
    @copydoc get_ptr()
    */
    template<typename PointerType, typename
             std::enable_if<
                 std::is_pointer<PointerType>::value
N
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2383
                 and std::is_const<typename std::remove_pointer<PointerType>::type>::value
N
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2384 2385 2386 2387 2388
                 , int>::type = 0>
    const PointerType get_ptr() const noexcept
    {
        // delegate the call to get_impl_ptr<>() const
        return get_impl_ptr(static_cast<const PointerType>(nullptr));
N
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    }

    /*!
    @brief get a value (implicit)

    Implict type conversion between the JSON value and a compatible value. The
    call is realized by calling @ref get() const.

    @tparam ValueType non-pointer type compatible to the JSON value, for
    instance `int` for JSON integer numbers, `bool` for JSON booleans, or
    `std::vector` types for JSON arrays

    @return copy of the JSON value, converted to type @a ValueType

    @throw std::domain_error in case passed type @a ValueType is incompatible
    to JSON, thrown by @ref get() const

    @complexity Linear in the size of the JSON value.

    @liveexample{The example below shows serveral conversions from JSON values
    to other types. There a few things to note: (1) Floating-point numbers can
    be converted to integers\, (2) A JSON array can be converted to a standard
    `std::vector<short>`\, (3) A JSON object can be converted to C++
    assiciative containers such as `std::unordered_map<std::string\,
    json>`.,operator__ValueType}
    */
    template<typename ValueType, typename
             std::enable_if<
                 not std::is_pointer<ValueType>::value
                 , int>::type = 0>
    operator ValueType() const
N
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2420
    {
N
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2421 2422
        // delegate the call to get<>() const
        return get<ValueType>();
N
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2423 2424
    }

N
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2425 2426
    /// @}

N
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2427 2428 2429 2430 2431

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

N
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2432 2433 2434
    /// @name element access
    /// @{

N
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    /*!
    @brief access specified array element with bounds checking

    Returns a reference to the element at specified location @a idx, with
    bounds checking.

    @param[in] idx  index of the element to access

    @return reference to the element at index @a idx

    @throw std::domain_error if JSON is not an array
    @throw std::out_of_range if the index @a idx is out of range of the array;
    that is, `idx >= size()`

    @complexity Constant.

    @liveexample{The example below shows how array elements can be read and
    written using at.,at__size_type}
    */
N
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2454
    reference at(size_type idx)
N
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2455 2456
    {
        // at only works for arrays
N
cleanup  
Niels 已提交
2457 2458 2459 2460 2461
        if (is_array())
        {
            return m_value.array->at(idx);
        }
        else
N
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2462
        {
N
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2463
            throw std::domain_error("cannot use at() with " + type_name());
N
Niels 已提交
2464 2465 2466
        }
    }

N
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2467 2468 2469 2470 2471 2472 2473 2474 2475 2476 2477 2478 2479 2480 2481 2482 2483 2484 2485
    /*!
    @brief access specified array element with bounds checking

    Returns a const reference to the element at specified location @a idx, with
    bounds checking.

    @param[in] idx  index of the element to access

    @return const reference to the element at index @a idx

    @throw std::domain_error if JSON is not an array
    @throw std::out_of_range if the index @a idx is out of range of the array;
    that is, `idx >= size()`

    @complexity Constant.

    @liveexample{The example below shows how array elements can be read using
    at.,at__size_type_const}
    */
N
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2486
    const_reference at(size_type idx) const
N
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2487 2488
    {
        // at only works for arrays
N
cleanup  
Niels 已提交
2489 2490 2491 2492 2493
        if (is_array())
        {
            return m_value.array->at(idx);
        }
        else
N
Niels 已提交
2494
        {
N
Niels 已提交
2495
            throw std::domain_error("cannot use at() with " + type_name());
N
Niels 已提交
2496
        }
2497 2498
    }

N
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2499 2500 2501 2502 2503 2504 2505 2506 2507 2508 2509 2510 2511 2512 2513 2514 2515 2516
    /*!
    @brief access specified object element with bounds checking

    Returns a reference to the element at with specified key @a key, with
    bounds checking.

    @param[in] key  key of the element to access

    @return reference to the element at key @a key

    @throw std::domain_error if JSON is not an object
    @throw std::out_of_range if the key @a key is is not stored in the object;
    that is, `find(key) == end()`

    @complexity Logarithmic in the size of the container.

    @liveexample{The example below shows how object elements can be read and
    written using at.,at__object_t_key_type}
N
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2517 2518 2519 2520

    @sa @ref operator[](const typename object_t::key_type&) for unchecked
    access by reference
    @sa @ref value() for access by value with a default value
N
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2521
    */
N
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2522
    reference at(const typename object_t::key_type& key)
2523 2524
    {
        // at only works for objects
N
cleanup  
Niels 已提交
2525 2526 2527 2528 2529
        if (is_object())
        {
            return m_value.object->at(key);
        }
        else
2530
        {
N
Niels 已提交
2531
            throw std::domain_error("cannot use at() with " + type_name());
2532 2533 2534
        }
    }

N
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2535 2536 2537 2538 2539 2540 2541 2542 2543 2544 2545 2546 2547 2548 2549 2550 2551 2552
    /*!
    @brief access specified object element with bounds checking

    Returns a const reference to the element at with specified key @a key, with
    bounds checking.

    @param[in] key  key of the element to access

    @return const reference to the element at key @a key

    @throw std::domain_error if JSON is not an object
    @throw std::out_of_range if the key @a key is is not stored in the object;
    that is, `find(key) == end()`

    @complexity Logarithmic in the size of the container.

    @liveexample{The example below shows how object elements can be read using
    at.,at__object_t_key_type_const}
N
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2553 2554 2555 2556

    @sa @ref operator[](const typename object_t::key_type&) for unchecked
    access by reference
    @sa @ref value() for access by value with a default value
N
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2557
    */
N
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2558
    const_reference at(const typename object_t::key_type& key) const
2559 2560
    {
        // at only works for objects
N
cleanup  
Niels 已提交
2561 2562 2563 2564 2565
        if (is_object())
        {
            return m_value.object->at(key);
        }
        else
2566
        {
N
Niels 已提交
2567
            throw std::domain_error("cannot use at() with " + type_name());
2568
        }
N
Niels 已提交
2569 2570
    }

N
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2571 2572 2573 2574 2575 2576 2577 2578 2579 2580 2581 2582 2583 2584 2585 2586 2587 2588 2589 2590 2591 2592
    /*!
    @brief access specified array element

    Returns a reference to the element at specified location @a idx.

    @note If @a idx is beyond the range of the array (i.e., `idx >= size()`),
    then the array is silently filled up with `null` values to make `idx` a
    valid reference to the last stored element.

    @param[in] idx  index of the element to access

    @return reference to the element at index @a idx

    @throw std::domain_error if JSON is not an array or null

    @complexity Constant if @a idx is in the range of the array. Otherwise
    linear in `idx - size()`.

    @liveexample{The example below shows how array elements can be read and
    written using [] operator. Note the addition of `null`
    values.,operatorarray__size_type}
    */
N
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2593
    reference operator[](size_type idx)
N
Niels 已提交
2594
    {
N
Niels 已提交
2595
        // implicitly convert null to object
N
cleanup  
Niels 已提交
2596
        if (is_null())
N
Niels 已提交
2597 2598
        {
            m_type = value_t::array;
N
Cleanup  
Niels 已提交
2599
            m_value.array = create<array_t>();
N
Niels 已提交
2600 2601 2602
        }

        // [] only works for arrays
N
cleanup  
Niels 已提交
2603
        if (is_array())
N
Niels 已提交
2604
        {
N
cleanup  
Niels 已提交
2605 2606 2607 2608
            for (size_t i = m_value.array->size(); i <= idx; ++i)
            {
                m_value.array->push_back(basic_json());
            }
N
Niels 已提交
2609

N
cleanup  
Niels 已提交
2610 2611 2612
            return m_value.array->operator[](idx);
        }
        else
N
Niels 已提交
2613
        {
N
cleanup  
Niels 已提交
2614
            throw std::domain_error("cannot use operator[] with " + type_name());
N
Niels 已提交
2615
        }
N
Niels 已提交
2616 2617
    }

N
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2618 2619 2620 2621 2622 2623 2624 2625 2626 2627 2628 2629 2630 2631 2632 2633
    /*!
    @brief access specified array element

    Returns a const reference to the element at specified location @a idx.

    @param[in] idx  index of the element to access

    @return const reference to the element at index @a idx

    @throw std::domain_error if JSON is not an array

    @complexity Constant.

    @liveexample{The example below shows how array elements can be read using
    the [] operator.,operatorarray__size_type_const}
    */
N
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2634
    const_reference operator[](size_type idx) const
N
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2635 2636
    {
        // at only works for arrays
N
cleanup  
Niels 已提交
2637 2638 2639 2640 2641
        if (is_array())
        {
            return m_value.array->operator[](idx);
        }
        else
N
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2642
        {
N
Niels 已提交
2643
            throw std::domain_error("cannot use operator[] with " + type_name());
N
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2644 2645 2646
        }
    }

N
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2647 2648 2649 2650 2651 2652 2653 2654 2655 2656 2657 2658 2659 2660 2661 2662 2663 2664 2665
    /*!
    @brief access specified object element

    Returns a reference to the element at with specified key @a key.

    @note If @a key is not found in the object, then it is silently added to
    the object and filled with a `null` value to make `key` a valid reference.
    In case the value was `null` before, it is converted to an object.

    @param[in] key  key of the element to access

    @return reference to the element at key @a key

    @throw std::domain_error if JSON is not an object or null

    @complexity Logarithmic in the size of the container.

    @liveexample{The example below shows how object elements can be read and
    written using the [] operator.,operatorarray__key_type}
N
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    @sa @ref at(const typename object_t::key_type&) for access by reference
    with range checking
    @sa @ref value() for access by value with a default value
N
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2670
    */
N
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2671
    reference operator[](const typename object_t::key_type& key)
N
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2672
    {
N
Niels 已提交
2673
        // implicitly convert null to object
N
cleanup  
Niels 已提交
2674
        if (is_null())
N
Niels 已提交
2675 2676
        {
            m_type = value_t::object;
N
Cleanup  
Niels 已提交
2677
            m_value.object = create<object_t>();
N
Niels 已提交
2678 2679
        }

N
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2680
        // [] only works for objects
N
cleanup  
Niels 已提交
2681 2682 2683 2684 2685
        if (is_object())
        {
            return m_value.object->operator[](key);
        }
        else
N
Niels 已提交
2686
        {
N
Niels 已提交
2687
            throw std::domain_error("cannot use operator[] with " + type_name());
N
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2688 2689 2690
        }
    }

N
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2691 2692 2693 2694 2695 2696 2697 2698 2699 2700 2701 2702 2703 2704 2705 2706 2707 2708 2709 2710 2711
    /*!
    @brief access specified object element

    Returns a reference to the element at with specified key @a key.

    @note If @a key is not found in the object, then it is silently added to
    the object and filled with a `null` value to make `key` a valid reference.
    In case the value was `null` before, it is converted to an object.

    @note This function is required for compatibility reasons with Clang.

    @param[in] key  key of the element to access

    @return reference to the element at key @a key

    @throw std::domain_error if JSON is not an object or null

    @complexity Logarithmic in the size of the container.

    @liveexample{The example below shows how object elements can be read and
    written using the [] operator.,operatorarray__key_type}
N
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2712 2713 2714 2715

    @sa @ref at(const typename object_t::key_type&) for access by reference
    with range checking
    @sa @ref value() for access by value with a default value
N
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2716
    */
N
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2717
    template<typename T, std::size_t n>
N
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2718
    reference operator[](const T (&key)[n])
N
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2719
    {
N
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        // implicitly convert null to object
N
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        if (is_null())
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        {
            m_type = value_t::object;
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            m_value = value_t::object;
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        }

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        // at only works for objects
N
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        if (is_object())
        {
            return m_value.object->operator[](key);
        }
        else
N
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        {
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            throw std::domain_error("cannot use operator[] with " + type_name());
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        }
    }

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    /*!
    @brief access specified object element with default value

    Returns either a copy of an object's element at the specified key @a key or
    a given default value if no element with key @a key exists.

    The function is basically equivalent to executing
    @code{.cpp}
    try {
        return at(key);
    } catch(std::out_of_range) {
        return default_value;
    }
    @endcode

    @note Unlike @ref at(const typename object_t::key_type&), this function
    does not throw if the given key @a key was not found.

    @note Unlike @ref operator[](const typename object_t::key_type& key), this
    function does not implicitly add an element to the position defined by @a
    key. This function is furthermore also applicable to const objects.

    @param[in] key  key of the element to access
    @param[in] default_value  the value to return if @a key is not found

    @tparam ValueType type compatible to JSON values, for instance `int` for
    JSON integer numbers, `bool` for JSON booleans, or `std::vector` types for
    JSON arrays. Note the type of the expected value at @a key and the default
    value @a default_value must be compatible.

    @return copy of the element at key @a key or @a default_value if @a key
    is not found

    @throw std::domain_error if JSON is not an object

    @complexity Logarithmic in the size of the container.

    @liveexample{The example below shows how object elements can be queried
    with a default value.,basic_json__value}

    @sa @ref at(const typename object_t::key_type&) for access by reference
    with range checking
    @sa @ref operator[](const typename object_t::key_type&) for unchecked
    access by reference
    */
    template <class ValueType, typename
              std::enable_if<
                  std::is_convertible<basic_json_t, ValueType>::value
                  , int>::type = 0>
    ValueType value(const typename object_t::key_type& key, ValueType default_value) const
    {
        // at only works for objects
        if (is_object())
        {
            // if key is found, return value and given default value otherwise
            const auto it = find(key);
            if (it != end())
            {
                return *it;
            }
            else
            {
                return default_value;
            }
        }
        else
        {
            throw std::domain_error("cannot use value() with " + type_name());
        }
    }

    /*!
    // overload for a default value of type const char*
    @copydoc basic_json::value()
    */
    string_t value(const typename object_t::key_type& key, const char* default_value) const
    {
        return value(key, string_t(default_value));
    }

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    /*!
    @brief access the first element

    Returns a reference to the first element in the container. For a JSON
    container `c`, the expression `c.front()` is equivalent to `*c.begin()`.

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    @return In case of a structured type (array or object), a reference to the
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    first element is returned. In cast of number, string, or boolean values, a
    reference to the value is returned.

    @complexity Constant.

    @note Calling `front` on an empty container is undefined.

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    @throw std::out_of_range when called on null value
N
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2833 2834 2835

    @liveexample{The following code shows an example for @ref front.,front}
    */
N
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    reference front()
N
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    {
        return *begin();
    }

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    /*!
    @copydoc basic_json::front()
    */
N
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    const_reference front() const
N
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    {
        return *cbegin();
    }

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    /*!
    @brief access the last element

    Returns a reference to the last element in the container. For a JSON
    container `c`, the expression `c.back()` is equivalent to `{ auto tmp =
    c.end(); --tmp; return *tmp; }`.

N
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    @return In case of a structured type (array or object), a reference to the
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    last element is returned. In cast of number, string, or boolean values, a
    reference to the value is returned.

    @complexity Constant.

    @note Calling `back` on an empty container is undefined.

    @throw std::out_of_range when called on null value.

    @liveexample{The following code shows an example for @ref back.,back}
    */
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    reference back()
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    {
        auto tmp = end();
        --tmp;
        return *tmp;
    }

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    /*!
    @copydoc basic_json::back()
    */
N
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    const_reference back() const
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    {
        auto tmp = cend();
        --tmp;
        return *tmp;
    }

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    /*!
    @brief remove element given an iterator

    Removes the element specified by iterator @a pos. Invalidates iterators and
    references at or after the point of the erase, including the end()
    iterator. The iterator @a pos must be valid and dereferenceable. Thus the
    end() iterator (which is valid, but is not dereferencable) cannot be used
    as a value for @a pos.

    If called on a primitive type other than null, the resulting JSON value
    will be `null`.

    @param[in] pos iterator to the element to remove
    @return Iterator following the last removed element. If the iterator @a pos
    refers to the last element, the end() iterator is returned.

    @tparam InteratorType an @ref iterator or @ref const_iterator

    @throw std::domain_error if called on a `null` value
    @throw std::domain_error if called on an iterator which does not belong to
    the current JSON value
    @throw std::out_of_range if called on a primitive type with invalid iterator
    (i.e., any iterator which is not end())

    @complexity The complexity depends on the type:
    - objects: amortized constant
    - arrays: linear in distance between pos and the end of the container
    - strings: linear in the length of the string
    - other types: constant

    @liveexample{The example shows the result of erase for different JSON
    types.,erase__IteratorType}
    */
    template <class InteratorType, typename
2919
              std::enable_if<
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                  std::is_same<InteratorType, typename basic_json_t::iterator>::value or
                  std::is_same<InteratorType, typename basic_json_t::const_iterator>::value
2922 2923
                  , int>::type
              = 0>
N
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    InteratorType erase(InteratorType pos)
2925 2926
    {
        // make sure iterator fits the current value
N
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2927
        if (this != pos.m_object)
2928
        {
N
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2929
            throw std::domain_error("iterator does not fit current value");
2930 2931
        }

N
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2932
        InteratorType result = end();
2933 2934 2935 2936

        switch (m_type)
        {
            case value_t::boolean:
2937 2938
            case value_t::number_float:
            case value_t::number_integer:
2939 2940
            case value_t::string:
            {
2941
                if (not pos.m_it.primitive_iterator.is_begin())
2942 2943 2944 2945
                {
                    throw std::out_of_range("iterator out of range");
                }

N
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2946
                if (is_string())
2947 2948 2949 2950 2951 2952 2953 2954 2955 2956 2957 2958 2959 2960 2961 2962 2963 2964 2965 2966 2967 2968 2969
                {
                    delete m_value.string;
                    m_value.string = nullptr;
                }

                m_type = value_t::null;
                break;
            }

            case value_t::object:
            {
                result.m_it.object_iterator = m_value.object->erase(pos.m_it.object_iterator);
                break;
            }

            case value_t::array:
            {
                result.m_it.array_iterator = m_value.array->erase(pos.m_it.array_iterator);
                break;
            }

            default:
            {
N
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2970
                throw std::domain_error("cannot use erase() with " + type_name());
2971 2972 2973 2974 2975 2976
            }
        }

        return result;
    }

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2977 2978 2979 2980 2981 2982 2983 2984 2985 2986 2987 2988 2989 2990 2991 2992 2993 2994 2995 2996 2997 2998 2999 3000 3001 3002 3003 3004 3005 3006 3007 3008 3009 3010 3011
    /*!
    @brief remove elements given an iterator range

    Removes the element specified by the range `[first; last)`. Invalidates
    iterators and references at or after the point of the erase, including the
    end() iterator. The iterator @a first does not need to be dereferenceable
    if `first == last`: erasing an empty range is a no-op.

    If called on a primitive type other than null, the resulting JSON value
    will be `null`.

    @param[in] first iterator to the beginning of the range to remove
    @param[in] last iterator past the end of the range to remove
    @return Iterator following the last removed element. If the iterator @a
    second refers to the last element, the end() iterator is returned.

    @tparam InteratorType an @ref iterator or @ref const_iterator

    @throw std::domain_error if called on a `null` value
    @throw std::domain_error if called on iterators which does not belong to
    the current JSON value
    @throw std::out_of_range if called on a primitive type with invalid iterators
    (i.e., if `first != begin()` and `last != end()`)

    @complexity The complexity depends on the type:
    - objects: `log(size()) + std::distance(first, last)`
    - arrays: linear in the distance between @a first and @a last, plus linear
      in the distance between @a last and end of the container
    - strings: linear in the length of the string
    - other types: constant

    @liveexample{The example shows the result of erase for different JSON
    types.,erase__IteratorType_IteratorType}
    */
    template <class InteratorType, typename
3012
              std::enable_if<
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                  std::is_same<InteratorType, typename basic_json_t::iterator>::value or
                  std::is_same<InteratorType, typename basic_json_t::const_iterator>::value
3015 3016
                  , int>::type
              = 0>
N
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3017
    InteratorType erase(InteratorType first, InteratorType last)
3018 3019
    {
        // make sure iterator fits the current value
N
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3020
        if (this != first.m_object or this != last.m_object)
3021
        {
N
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3022
            throw std::domain_error("iterators do not fit current value");
3023 3024
        }

N
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3025
        InteratorType result = end();
3026 3027 3028 3029

        switch (m_type)
        {
            case value_t::boolean:
3030 3031
            case value_t::number_float:
            case value_t::number_integer:
3032 3033
            case value_t::string:
            {
3034
                if (not first.m_it.primitive_iterator.is_begin() or not last.m_it.primitive_iterator.is_end())
3035 3036 3037 3038
                {
                    throw std::out_of_range("iterators out of range");
                }

N
cleanup  
Niels 已提交
3039
                if (is_string())
3040 3041 3042 3043 3044 3045 3046 3047 3048 3049 3050 3051 3052 3053 3054 3055 3056 3057 3058 3059 3060 3061 3062 3063 3064
                {
                    delete m_value.string;
                    m_value.string = nullptr;
                }

                m_type = value_t::null;
                break;
            }

            case value_t::object:
            {
                result.m_it.object_iterator = m_value.object->erase(first.m_it.object_iterator,
                                              last.m_it.object_iterator);
                break;
            }

            case value_t::array:
            {
                result.m_it.array_iterator = m_value.array->erase(first.m_it.array_iterator,
                                             last.m_it.array_iterator);
                break;
            }

            default:
            {
N
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                throw std::domain_error("cannot use erase with " + type_name());
3066 3067 3068 3069 3070 3071
            }
        }

        return result;
    }

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    /*!
    @brief remove element from a JSON object given a key

    Removes elements from a JSON object with the key value @a key.

    @param[in] key value of the elements to remove

    @return Number of elements removed. If ObjectType is the default `std::map`
    type, the return value will always be `0` (@a key was not found) or `1` (@a
    key was found).

    @throw std::domain_error when called on a type other than JSON object

    @complexity `log(size()) + count(key)`

    @liveexample{The example shows the effect of erase.,erase__key_type}
    */
N
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3089
    size_type erase(const typename object_t::key_type& key)
3090
    {
N
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3091
        // this erase only works for objects
N
cleanup  
Niels 已提交
3092 3093 3094 3095 3096
        if (is_object())
        {
            return m_value.object->erase(key);
        }
        else
3097
        {
N
Niels 已提交
3098
            throw std::domain_error("cannot use erase() with " + type_name());
3099 3100 3101
        }
    }

N
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3102 3103 3104 3105 3106 3107 3108 3109 3110 3111 3112 3113 3114 3115
    /*!
    @brief remove element from a JSON array given an index

    Removes element from a JSON array at the index @a idx.

    @param[in] idx index of the element to remove

    @throw std::domain_error when called on a type other than JSON array
    @throw std::out_of_range when `idx >= size()`

    @complexity Linear in distance between @a idx and the end of the container.

    @liveexample{The example shows the effect of erase.,erase__size_type}
    */
N
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3116
    void erase(const size_type idx)
N
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3117 3118
    {
        // this erase only works for arrays
N
cleanup  
Niels 已提交
3119
        if (is_array())
N
Niels 已提交
3120
        {
N
cleanup  
Niels 已提交
3121 3122 3123 3124
            if (idx >= size())
            {
                throw std::out_of_range("index out of range");
            }
N
Niels 已提交
3125

N
cleanup  
Niels 已提交
3126 3127 3128
            m_value.array->erase(m_value.array->begin() + static_cast<difference_type>(idx));
        }
        else
N
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3129
        {
N
cleanup  
Niels 已提交
3130
            throw std::domain_error("cannot use erase() with " + type_name());
N
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3131 3132 3133
        }
    }

N
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3134 3135 3136 3137 3138 3139 3140 3141 3142 3143 3144 3145 3146 3147 3148
    /*!
    @brief find an element in a JSON object

    Finds an element in a JSON object with key equivalent to @a key. If the
    element is not found or the JSON value is not an object, end() is returned.

    @param[in] key key value of the element to search for

    @return Iterator to an element with key equivalent to @a key. If no such
    element is found, past-the-end (see end()) iterator is returned.

    @complexity Logarithmic in the size of the JSON object.

    @liveexample{The example shows how find is used.,find__key_type}
    */
N
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3149
    iterator find(typename object_t::key_type key)
N
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3150 3151 3152
    {
        auto result = end();

N
cleanup  
Niels 已提交
3153
        if (is_object())
N
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3154 3155 3156 3157 3158 3159 3160
        {
            result.m_it.object_iterator = m_value.object->find(key);
        }

        return result;
    }

N
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3161 3162 3163 3164
    /*!
    @brief find an element in a JSON object
    @copydoc find(typename object_t::key_type)
    */
N
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3165
    const_iterator find(typename object_t::key_type key) const
N
Niels 已提交
3166 3167 3168
    {
        auto result = cend();

N
cleanup  
Niels 已提交
3169
        if (is_object())
N
Niels 已提交
3170 3171 3172 3173 3174 3175 3176
        {
            result.m_it.object_iterator = m_value.object->find(key);
        }

        return result;
    }

N
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3177 3178 3179 3180 3181 3182 3183 3184 3185 3186 3187 3188 3189 3190 3191 3192
    /*!
    @brief returns the number of occurrences of a key in a JSON object

    Returns the number of elements with key @a key. If ObjectType is the
    default `std::map` type, the return value will always be `0` (@a key was
    not found) or `1` (@a key was found).

    @param[in] key key value of the element to count

    @return Number of elements with key @a key. If the JSON value is not an
    object, the return value will be `0`.

    @complexity Logarithmic in the size of the JSON object.

    @liveexample{The example shows how count is used.,count}
    */
N
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3193
    size_type count(typename object_t::key_type key) const
3194 3195
    {
        // return 0 for all nonobject types
N
cleanup  
Niels 已提交
3196
        return (is_object()) ? m_value.object->count(key) : 0;
3197 3198
    }

N
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3199 3200
    /// @}

N
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3201

N
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3202 3203 3204 3205
    ///////////////
    // iterators //
    ///////////////

N
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3206 3207 3208
    /// @name iterators
    /// @{

N
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3209 3210
    /*!
    @brief returns an iterator to the first element
N
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3211 3212 3213 3214 3215 3216 3217 3218 3219 3220 3221 3222 3223

    Returns an iterator to the first element.

    @image html range-begin-end.svg "Illustration from cppreference.com"

    @return iterator to the first element

    @complexity Constant.

    @requirement This function satisfies the Container requirements:
    - The complexity is constant.

    @liveexample{The following code shows an example for @ref begin.,begin}
N
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3224
    */
N
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3225
    iterator begin()
N
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3226 3227 3228 3229 3230 3231
    {
        iterator result(this);
        result.set_begin();
        return result;
    }

N
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3232
    /*!
N
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3233
    @copydoc basic_json::cbegin()
N
Niels 已提交
3234
    */
N
Niels 已提交
3235
    const_iterator begin() const
N
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3236
    {
N
Niels 已提交
3237
        return cbegin();
N
Niels 已提交
3238 3239
    }

N
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3240 3241
    /*!
    @brief returns a const iterator to the first element
N
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3242 3243 3244 3245 3246 3247 3248 3249 3250 3251 3252 3253 3254 3255

    Returns a const iterator to the first element.

    @image html range-begin-end.svg "Illustration from cppreference.com"

    @return const iterator to the first element

    @complexity Constant.

    @requirement This function satisfies the Container requirements:
    - The complexity is constant.
    - Has the semantics of `const_cast<const basic_json&>(*this).begin()`.

    @liveexample{The following code shows an example for @ref cbegin.,cbegin}
N
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3256
    */
N
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3257
    const_iterator cbegin() const
N
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3258 3259 3260 3261 3262 3263
    {
        const_iterator result(this);
        result.set_begin();
        return result;
    }

N
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3264 3265
    /*!
    @brief returns an iterator to one past the last element
N
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3266 3267 3268 3269 3270 3271 3272 3273 3274 3275 3276 3277 3278

    Returns an iterator to one past the last element.

    @image html range-begin-end.svg "Illustration from cppreference.com"

    @return iterator one past the last element

    @complexity Constant.

    @requirement This function satisfies the Container requirements:
    - The complexity is constant.

    @liveexample{The following code shows an example for @ref end.,end}
N
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3279
    */
N
Niels 已提交
3280
    iterator end()
N
Niels 已提交
3281 3282 3283 3284 3285 3286
    {
        iterator result(this);
        result.set_end();
        return result;
    }

N
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3287
    /*!
N
Niels 已提交
3288
    @copydoc basic_json::cend()
N
Niels 已提交
3289
    */
N
Niels 已提交
3290
    const_iterator end() const
N
Niels 已提交
3291
    {
N
Niels 已提交
3292
        return cend();
N
Niels 已提交
3293 3294
    }

N
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3295 3296
    /*!
    @brief returns a const iterator to one past the last element
N
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3297 3298 3299 3300 3301 3302 3303 3304 3305 3306 3307 3308 3309 3310

    Returns a const iterator to one past the last element.

    @image html range-begin-end.svg "Illustration from cppreference.com"

    @return const iterator one past the last element

    @complexity Constant.

    @requirement This function satisfies the Container requirements:
    - The complexity is constant.
    - Has the semantics of `const_cast<const basic_json&>(*this).end()`.

    @liveexample{The following code shows an example for @ref cend.,cend}
N
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3311
    */
N
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3312
    const_iterator cend() const
N
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3313 3314 3315 3316 3317 3318
    {
        const_iterator result(this);
        result.set_end();
        return result;
    }

N
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3319
    /*!
N
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3320 3321 3322 3323 3324 3325 3326 3327 3328 3329 3330 3331 3332
    @brief returns an iterator to the reverse-beginning

    Returns an iterator to the reverse-beginning; that is, the last element.

    @image html range-rbegin-rend.svg "Illustration from cppreference.com"

    @complexity Constant.

    @requirement This function satisfies the ReversibleContainer requirements:
    - The complexity is constant.
    - Has the semantics of `reverse_iterator(end())`.

    @liveexample{The following code shows an example for @ref rbegin.,rbegin}
N
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3333
    */
N
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3334
    reverse_iterator rbegin()
N
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3335 3336 3337 3338
    {
        return reverse_iterator(end());
    }

N
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3339
    /*!
N
Niels 已提交
3340
    @copydoc basic_json::crbegin()
N
Niels 已提交
3341
    */
N
Niels 已提交
3342
    const_reverse_iterator rbegin() const
N
Niels 已提交
3343
    {
N
Niels 已提交
3344
        return crbegin();
N
Niels 已提交
3345 3346
    }

N
Niels 已提交
3347
    /*!
N
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3348 3349 3350 3351 3352 3353 3354 3355 3356 3357 3358 3359 3360 3361
    @brief returns an iterator to the reverse-end

    Returns an iterator to the reverse-end; that is, one before the first
    element.

    @image html range-rbegin-rend.svg "Illustration from cppreference.com"

    @complexity Constant.

    @requirement This function satisfies the ReversibleContainer requirements:
    - The complexity is constant.
    - Has the semantics of `reverse_iterator(begin())`.

    @liveexample{The following code shows an example for @ref rend.,rend}
N
Niels 已提交
3362
    */
N
Niels 已提交
3363
    reverse_iterator rend()
N
Niels 已提交
3364 3365 3366 3367
    {
        return reverse_iterator(begin());
    }

N
Niels 已提交
3368
    /*!
N
Niels 已提交
3369
    @copydoc basic_json::crend()
N
Niels 已提交
3370
    */
N
Niels 已提交
3371
    const_reverse_iterator rend() const
N
Niels 已提交
3372
    {
N
Niels 已提交
3373
        return crend();
N
Niels 已提交
3374 3375
    }

N
Niels 已提交
3376
    /*!
N
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3377 3378 3379 3380 3381 3382 3383 3384 3385 3386 3387 3388 3389 3390
    @brief returns a const reverse iterator to the last element

    Returns a const iterator to the reverse-beginning; that is, the last
    element.

    @image html range-rbegin-rend.svg "Illustration from cppreference.com"

    @complexity Constant.

    @requirement This function satisfies the ReversibleContainer requirements:
    - The complexity is constant.
    - Has the semantics of `const_cast<const basic_json&>(*this).rbegin()`.

    @liveexample{The following code shows an example for @ref crbegin.,crbegin}
N
Niels 已提交
3391
    */
N
Niels 已提交
3392
    const_reverse_iterator crbegin() const
N
Niels 已提交
3393 3394 3395 3396
    {
        return const_reverse_iterator(cend());
    }

N
Niels 已提交
3397
    /*!
N
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3398 3399 3400 3401 3402 3403 3404 3405 3406 3407 3408 3409 3410 3411
    @brief returns a const reverse iterator to one before the first

    Returns a const reverse iterator to the reverse-end; that is, one before
    the first element.

    @image html range-rbegin-rend.svg "Illustration from cppreference.com"

    @complexity Constant.

    @requirement This function satisfies the ReversibleContainer requirements:
    - The complexity is constant.
    - Has the semantics of `const_cast<const basic_json&>(*this).rend()`.

    @liveexample{The following code shows an example for @ref crend.,crend}
N
Niels 已提交
3412
    */
N
Niels 已提交
3413
    const_reverse_iterator crend() const
N
Niels 已提交
3414 3415 3416 3417
    {
        return const_reverse_iterator(cbegin());
    }

N
Niels 已提交
3418 3419
    /// @}

N
Niels 已提交
3420 3421 3422 3423 3424

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

N
Niels 已提交
3425 3426 3427
    /// @name capacity
    /// @{

N
Niels 已提交
3428 3429
    /*!
    @brief checks whether the container is empty
N
Niels 已提交
3430 3431 3432

    Checks if a JSON value has no elements.

N
Niels 已提交
3433
    @return The return value depends on the different types and is
N
Niels 已提交
3434 3435 3436 3437 3438 3439 3440 3441 3442 3443 3444 3445 3446 3447 3448 3449 3450 3451 3452 3453
            defined as follows:
            Value type  | return value
            ----------- | -------------
            null        | @c true
            boolean     | @c false
            string      | @c false
            number      | @c false
            object      | result of function object_t::empty()
            array       | result of function array_t::empty()

    @complexity Constant, as long as @ref array_t and @ref object_t satisfy the
                Container concept; that is, their empty() functions have
                constant complexity.

    @requirement This function satisfies the Container requirements:
    - The complexity is constant.
    - Has the semantics of `begin() == end()`.

    @liveexample{The following code uses @ref empty to check if a @ref json
    object contains any elements.,empty}
N
Niels 已提交
3454
    */
N
Niels 已提交
3455
    bool empty() const noexcept
N
Niels 已提交
3456 3457 3458
    {
        switch (m_type)
        {
3459
            case value_t::null:
N
Niels 已提交
3460 3461 3462
            {
                return true;
            }
N
Niels 已提交
3463

3464
            case value_t::array:
N
Niels 已提交
3465 3466 3467
            {
                return m_value.array->empty();
            }
N
Niels 已提交
3468

3469
            case value_t::object:
N
Niels 已提交
3470 3471 3472
            {
                return m_value.object->empty();
            }
N
Niels 已提交
3473

N
Niels 已提交
3474 3475 3476 3477 3478 3479
            default:
            {
                // all other types are nonempty
                return false;
            }
        }
N
Niels 已提交
3480 3481
    }

N
Niels 已提交
3482 3483
    /*!
    @brief returns the number of elements
N
Niels 已提交
3484 3485 3486

    Returns the number of elements in a JSON value.

N
Niels 已提交
3487
    @return The return value depends on the different types and is
N
Niels 已提交
3488 3489 3490 3491 3492 3493 3494 3495 3496 3497 3498 3499 3500 3501 3502 3503 3504 3505 3506 3507
            defined as follows:
            Value type  | return value
            ----------- | -------------
            null        | @c 0
            boolean     | @c 1
            string      | @c 1
            number      | @c 1
            object      | result of function object_t::size()
            array       | result of function array_t::size()

    @complexity Constant, as long as @ref array_t and @ref object_t satisfy the
                Container concept; that is, their size() functions have
                constant complexity.

    @requirement This function satisfies the Container requirements:
    - The complexity is constant.
    - Has the semantics of `std::distance(begin(), end())`.

    @liveexample{The following code calls @ref size on the different value
    types.,size}
N
Niels 已提交
3508
    */
N
Niels 已提交
3509
    size_type size() const noexcept
N
Niels 已提交
3510 3511 3512
    {
        switch (m_type)
        {
3513
            case value_t::null:
N
Niels 已提交
3514 3515 3516
            {
                return 0;
            }
N
Niels 已提交
3517

3518
            case value_t::array:
N
Niels 已提交
3519 3520 3521
            {
                return m_value.array->size();
            }
N
Niels 已提交
3522

3523
            case value_t::object:
N
Niels 已提交
3524 3525 3526
            {
                return m_value.object->size();
            }
N
Niels 已提交
3527

N
Niels 已提交
3528 3529 3530 3531 3532 3533
            default:
            {
                // all other types have size 1
                return 1;
            }
        }
N
Niels 已提交
3534 3535
    }

N
Niels 已提交
3536 3537
    /*!
    @brief returns the maximum possible number of elements
N
Niels 已提交
3538 3539 3540 3541 3542

    Returns the maximum number of elements a JSON value is able to hold due to
    system or library implementation limitations, i.e. `std::distance(begin(),
    end())` for the JSON value.

N
Niels 已提交
3543
    @return The return value depends on the different types and is
N
Niels 已提交
3544 3545 3546
            defined as follows:
            Value type  | return value
            ----------- | -------------
3547 3548 3549 3550
            null        | @c 0 (same as size())
            boolean     | @c 1 (same as size())
            string      | @c 1 (same as size())
            number      | @c 1 (same as size())
N
Niels 已提交
3551 3552 3553 3554 3555 3556 3557 3558 3559 3560 3561 3562 3563 3564
            object      | result of function object_t::max_size()
            array       | result of function array_t::max_size()

    @complexity Constant, as long as @ref array_t and @ref object_t satisfy the
                Container concept; that is, their max_size() functions have
                constant complexity.

    @requirement This function satisfies the Container requirements:
    - The complexity is constant.
    - Has the semantics of returning `b.size()` where `b` is the largest
      possible JSON value.

    @liveexample{The following code calls @ref max_size on the different value
    types. Note the output is implementation specific.,max_size}
N
Niels 已提交
3565
    */
N
Niels 已提交
3566
    size_type max_size() const noexcept
N
Niels 已提交
3567 3568 3569
    {
        switch (m_type)
        {
3570
            case value_t::array:
N
Niels 已提交
3571 3572 3573
            {
                return m_value.array->max_size();
            }
N
Niels 已提交
3574

3575
            case value_t::object:
N
Niels 已提交
3576 3577 3578
            {
                return m_value.object->max_size();
            }
N
Niels 已提交
3579

N
Niels 已提交
3580 3581
            default:
            {
3582 3583
                // all other types have max_size() == size()
                return size();
N
Niels 已提交
3584 3585
            }
        }
N
Niels 已提交
3586 3587
    }

N
Niels 已提交
3588 3589
    /// @}

N
Niels 已提交
3590 3591 3592 3593 3594

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

N
Niels 已提交
3595 3596 3597
    /// @name modifiers
    /// @{

N
Niels 已提交
3598 3599 3600 3601 3602 3603 3604 3605 3606 3607 3608 3609 3610 3611 3612 3613 3614 3615 3616 3617 3618
    /*!
    @brief clears the contents

    Clears the content of a JSON value and resets it to the default value as
    if @ref basic_json(value_t) would have been called:

    Value type  | initial value
    ----------- | -------------
    null        | `null`
    boolean     | `false`
    string      | `""`
    number      | `0`
    object      | `{}`
    array       | `[]`

    @note Floating-point numbers are set to `0.0` which will be serialized to
    `0`. The vale type remains @ref number_float_t.

    @complexity Linear in the size of the JSON value.

    @liveexample{The example below shows the effect of @ref clear to different
N
Niels 已提交
3619
    JSON types.,clear}
N
Niels 已提交
3620
    */
N
Niels 已提交
3621
    void clear() noexcept
N
Niels 已提交
3622 3623 3624
    {
        switch (m_type)
        {
3625
            case value_t::number_integer:
N
Niels 已提交
3626
            {
N
Niels 已提交
3627
                m_value.number_integer = 0;
N
Niels 已提交
3628 3629
                break;
            }
N
Niels 已提交
3630

3631
            case value_t::number_float:
N
Niels 已提交
3632
            {
N
Niels 已提交
3633
                m_value.number_float = 0.0;
N
Niels 已提交
3634 3635
                break;
            }
N
Niels 已提交
3636

3637
            case value_t::boolean:
N
Niels 已提交
3638
            {
N
Niels 已提交
3639
                m_value.boolean = false;
N
Niels 已提交
3640 3641
                break;
            }
N
Niels 已提交
3642

3643
            case value_t::string:
N
Niels 已提交
3644 3645 3646 3647
            {
                m_value.string->clear();
                break;
            }
N
Niels 已提交
3648

3649
            case value_t::array:
N
Niels 已提交
3650 3651 3652 3653
            {
                m_value.array->clear();
                break;
            }
N
Niels 已提交
3654

3655
            case value_t::object:
N
Niels 已提交
3656 3657 3658 3659
            {
                m_value.object->clear();
                break;
            }
3660 3661 3662 3663 3664

            default:
            {
                break;
            }
N
Niels 已提交
3665 3666 3667
        }
    }

3668 3669 3670 3671 3672 3673 3674 3675 3676 3677 3678 3679 3680 3681 3682 3683 3684
    /*!
    @brief add an object to an array

    Appends the given element @a value to the end of the JSON value. If the
    function is called on a JSON null value, an empty array is created before
    appending @a value.

    @param value the value to add to the JSON array

    @throw std::domain_error when called on a type other than JSON array or null

    @complexity Amortized constant.

    @liveexample{The example shows how `push_back` and `+=` can be used to add
    elements to a JSON array. Note how the `null` value was silently converted
    to a JSON array.,push_back}
    */
N
Niels 已提交
3685
    void push_back(basic_json&& value)
N
Niels 已提交
3686 3687
    {
        // push_back only works for null objects or arrays
N
cleanup  
Niels 已提交
3688
        if (not(is_null() or is_array()))
N
Niels 已提交
3689
        {
N
Niels 已提交
3690
            throw std::domain_error("cannot use push_back() with " + type_name());
N
Niels 已提交
3691 3692 3693
        }

        // transform null object into an array
N
cleanup  
Niels 已提交
3694
        if (is_null())
N
Niels 已提交
3695 3696
        {
            m_type = value_t::array;
N
Niels 已提交
3697
            m_value = value_t::array;
N
Niels 已提交
3698 3699 3700 3701 3702 3703 3704 3705
        }

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

3706 3707 3708 3709
    /*!
    @brief add an object to an array
    @copydoc push_back(basic_json&&)
    */
N
Niels 已提交
3710
    reference operator+=(basic_json&& value)
N
Niels 已提交
3711 3712 3713 3714 3715
    {
        push_back(std::move(value));
        return *this;
    }

3716 3717 3718 3719
    /*!
    @brief add an object to an array
    @copydoc push_back(basic_json&&)
    */
N
Niels 已提交
3720
    void push_back(const basic_json& value)
N
Niels 已提交
3721 3722
    {
        // push_back only works for null objects or arrays
N
cleanup  
Niels 已提交
3723
        if (not(is_null() or is_array()))
N
Niels 已提交
3724
        {
N
Niels 已提交
3725
            throw std::domain_error("cannot use push_back() with " + type_name());
N
Niels 已提交
3726 3727 3728
        }

        // transform null object into an array
N
cleanup  
Niels 已提交
3729
        if (is_null())
N
Niels 已提交
3730 3731
        {
            m_type = value_t::array;
N
Niels 已提交
3732
            m_value = value_t::array;
N
Niels 已提交
3733 3734 3735 3736 3737 3738
        }

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

3739 3740 3741 3742
    /*!
    @brief add an object to an array
    @copydoc push_back(basic_json&&)
    */
N
Niels 已提交
3743
    reference operator+=(const basic_json& value)
N
Niels 已提交
3744 3745 3746 3747 3748
    {
        push_back(value);
        return *this;
    }

3749 3750 3751 3752 3753 3754 3755
    /*!
    @brief add an object to an object

    Inserts the given element @a value to the JSON object. If the function is
    called on a JSON null value, an empty object is created before inserting @a
    value.

N
Niels 已提交
3756
    @param[in] value the value to add to the JSON object
3757 3758 3759 3760 3761 3762 3763 3764 3765 3766

    @throw std::domain_error when called on a type other than JSON object or
    null

    @complexity Logarithmic in the size of the container, O(log(`size()`)).

    @liveexample{The example shows how `push_back` and `+=` can be used to add
    elements to a JSON object. Note how the `null` value was silently converted
    to a JSON object.,push_back__object_t__value}
    */
N
Niels 已提交
3767
    void push_back(const typename object_t::value_type& value)
N
Niels 已提交
3768 3769
    {
        // push_back only works for null objects or objects
N
cleanup  
Niels 已提交
3770
        if (not(is_null() or is_object()))
N
Niels 已提交
3771
        {
N
Niels 已提交
3772
            throw std::domain_error("cannot use push_back() with " + type_name());
N
Niels 已提交
3773 3774 3775
        }

        // transform null object into an object
N
cleanup  
Niels 已提交
3776
        if (is_null())
N
Niels 已提交
3777 3778
        {
            m_type = value_t::object;
N
Niels 已提交
3779
            m_value = value_t::object;
N
Niels 已提交
3780 3781 3782 3783 3784 3785
        }

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

3786 3787 3788 3789
    /*!
    @brief add an object to an object
    @copydoc push_back(const typename object_t::value_type&)
    */
N
Niels 已提交
3790
    reference operator+=(const typename object_t::value_type& value)
N
Niels 已提交
3791 3792 3793 3794 3795
    {
        push_back(value);
        return operator[](value.first);
    }

N
Niels 已提交
3796 3797 3798 3799 3800 3801 3802 3803 3804 3805 3806 3807 3808 3809 3810 3811 3812 3813 3814 3815 3816
    /*!
    @brief inserts element

    Inserts element @a value before iterator @a pos.

    @param[in] pos iterator before which the content will be inserted; may be
    the end() iterator
    @param[in] value element to insert
    @return iterator pointing to the inserted @a value.

    @throw std::domain_error if called on JSON values other than arrays
    @throw std::domain_error if @a pos is not an iterator of *this

    @complexity Constant plus linear in the distance between pos and end of the
    container.

    @liveexample{The example shows how insert is used.,insert}
    */
    iterator insert(const_iterator pos, const basic_json& value)
    {
        // insert only works for arrays
N
cleanup  
Niels 已提交
3817
        if (is_array())
N
Niels 已提交
3818
        {
N
cleanup  
Niels 已提交
3819 3820 3821 3822 3823
            // check if iterator pos fits to this JSON value
            if (pos.m_object != this)
            {
                throw std::domain_error("iterator does not fit current value");
            }
N
Niels 已提交
3824

N
cleanup  
Niels 已提交
3825 3826 3827 3828 3829 3830
            // insert to array and return iterator
            iterator result(this);
            result.m_it.array_iterator = m_value.array->insert(pos.m_it.array_iterator, value);
            return result;
        }
        else
N
Niels 已提交
3831
        {
N
cleanup  
Niels 已提交
3832
            throw std::domain_error("cannot use insert() with " + type_name());
N
Niels 已提交
3833 3834 3835 3836 3837 3838 3839 3840 3841 3842 3843 3844 3845 3846 3847 3848 3849 3850 3851 3852 3853 3854 3855 3856 3857 3858 3859 3860 3861 3862 3863 3864 3865 3866 3867
        }
    }

    /*!
    @brief inserts element
    @copydoc insert(const_iterator, const basic_json&)
    */
    iterator insert(const_iterator pos, basic_json&& value)
    {
        return insert(pos, value);
    }

    /*!
    @brief inserts elements

    Inserts @a count copies of @a value before iterator @a pos.

    @param[in] pos iterator before which the content will be inserted; may be
    the end() iterator
    @param[in] count number of copies of @a value to insert
    @param[in] value element to insert
    @return iterator pointing to the first element inserted, or @a pos if
    `count==0`

    @throw std::domain_error if called on JSON values other than arrays
    @throw std::domain_error if @a pos is not an iterator of *this

    @complexity Linear in @a count plus linear in the distance between @a pos
    and end of the container.

    @liveexample{The example shows how insert is used.,insert__count}
    */
    iterator insert(const_iterator pos, size_type count, const basic_json& value)
    {
        // insert only works for arrays
N
cleanup  
Niels 已提交
3868
        if (is_array())
N
Niels 已提交
3869
        {
N
cleanup  
Niels 已提交
3870 3871 3872 3873 3874
            // check if iterator pos fits to this JSON value
            if (pos.m_object != this)
            {
                throw std::domain_error("iterator does not fit current value");
            }
N
Niels 已提交
3875

N
cleanup  
Niels 已提交
3876 3877 3878 3879 3880 3881
            // insert to array and return iterator
            iterator result(this);
            result.m_it.array_iterator = m_value.array->insert(pos.m_it.array_iterator, count, value);
            return result;
        }
        else
N
Niels 已提交
3882
        {
N
cleanup  
Niels 已提交
3883
            throw std::domain_error("cannot use insert() with " + type_name());
N
Niels 已提交
3884 3885 3886 3887 3888 3889 3890 3891 3892 3893 3894 3895 3896 3897 3898 3899 3900 3901 3902 3903 3904 3905 3906 3907 3908 3909 3910 3911 3912 3913
        }
    }

    /*!
    @brief inserts elements

    Inserts elements from range `[first, last)` before iterator @a pos.

    @param[in] pos iterator before which the content will be inserted; may be
    the end() iterator
    @param[in] first begin of the range of elements to insert
    @param[in] last end of the range of elements to insert

    @throw std::domain_error if called on JSON values other than arrays
    @throw std::domain_error if @a pos is not an iterator of *this
    @throw std::domain_error if @a first and @a last do not belong to the same
    JSON value
    @throw std::domain_error if @a first or @a last are iterators into
    container for which insert is called
    @return iterator pointing to the first element inserted, or @a pos if
    `first==last`

    @complexity Linear in `std::distance(first, last)` plus linear in the
    distance between @a pos and end of the container.

    @liveexample{The example shows how insert is used.,insert__range}
    */
    iterator insert(const_iterator pos, const_iterator first, const_iterator last)
    {
        // insert only works for arrays
N
cleanup  
Niels 已提交
3914
        if (not is_array())
N
Niels 已提交
3915 3916 3917 3918 3919 3920 3921 3922 3923 3924 3925 3926 3927 3928 3929 3930 3931 3932 3933 3934 3935 3936 3937 3938 3939 3940 3941
        {
            throw std::domain_error("cannot use insert() with " + type_name());
        }

        // check if iterator pos fits to this JSON value
        if (pos.m_object != this)
        {
            throw std::domain_error("iterator does not fit current value");
        }

        if (first.m_object != last.m_object)
        {
            throw std::domain_error("iterators does not fit");
        }

        if (first.m_object == this or last.m_object == this)
        {
            throw std::domain_error("passed iterators may not belong to container");
        }

        // insert to array and return iterator
        iterator result(this);
        result.m_it.array_iterator = m_value.array->insert(pos.m_it.array_iterator,
                                     first.m_it.array_iterator, last.m_it.array_iterator);
        return result;
    }

N
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3942 3943 3944 3945 3946 3947 3948 3949 3950 3951 3952 3953 3954 3955 3956 3957 3958 3959 3960 3961 3962 3963
    /*!
    @brief inserts elements

    Inserts elements from initializer list @a ilist before iterator @a pos.

    @param[in] pos iterator before which the content will be inserted; may be
    the end() iterator
    @param[in] ilist initializer list to insert the values from

    @throw std::domain_error if called on JSON values other than arrays
    @throw std::domain_error if @a pos is not an iterator of *this
    @return iterator pointing to the first element inserted, or @a pos if
    `ilist` is empty

    @complexity Linear in `ilist.size()` plus linear in the distance between @a
    pos and end of the container.

    @liveexample{The example shows how insert is used.,insert__ilist}
    */
    iterator insert(const_iterator pos, std::initializer_list<basic_json> ilist)
    {
        // insert only works for arrays
N
cleanup  
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        if (not is_array())
N
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        {
            throw std::domain_error("cannot use insert() with " + type_name());
        }

        // check if iterator pos fits to this JSON value
        if (pos.m_object != this)
        {
            throw std::domain_error("iterator does not fit current value");
        }

        // insert to array and return iterator
        iterator result(this);
        result.m_it.array_iterator = m_value.array->insert(pos.m_it.array_iterator, ilist);
        return result;
    }

N
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    /*!
    @brief exchanges the values
N
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    Exchanges the contents of the JSON value with those of @a other. Does not
    invoke any move, copy, or swap operations on individual elements. All
    iterators and references remain valid. The past-the-end iterator is
    invalidated.

    @param[in,out] other JSON value to exchange the contents with

    @complexity Constant.

    @liveexample{The example below shows how JSON arrays can be
    swapped.,swap__reference}
N
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    */
N
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    void swap(reference other) noexcept (
N
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        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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    {
        std::swap(m_type, other.m_type);
        std::swap(m_value, other.m_value);
    }

N
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4007 4008 4009 4010 4011 4012 4013 4014 4015 4016 4017 4018 4019 4020 4021 4022 4023
    /*!
    @brief exchanges the values

    Exchanges the contents of a JSON array with those of @a other. Does not
    invoke any move, copy, or swap operations on individual elements. All
    iterators and references remain valid. The past-the-end iterator is
    invalidated.

    @param[in,out] other array to exchange the contents with

    @throw std::domain_error when JSON value is not an array

    @complexity Constant.

    @liveexample{The example below shows how JSON values can be
    swapped.,swap__array_t}
    */
N
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4024
    void swap(array_t& other)
N
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4025 4026
    {
        // swap only works for arrays
N
cleanup  
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4027 4028 4029 4030 4031
        if (is_array())
        {
            std::swap(*(m_value.array), other);
        }
        else
N
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4032
        {
N
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4033
            throw std::domain_error("cannot use swap() with " + type_name());
N
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4034 4035 4036
        }
    }

4037 4038 4039 4040 4041 4042 4043 4044 4045 4046 4047 4048 4049 4050 4051 4052 4053
    /*!
    @brief exchanges the values

    Exchanges the contents of a JSON object with those of @a other. Does not
    invoke any move, copy, or swap operations on individual elements. All
    iterators and references remain valid. The past-the-end iterator is
    invalidated.

    @param[in,out] other object to exchange the contents with

    @throw std::domain_error when JSON value is not an object

    @complexity Constant.

    @liveexample{The example below shows how JSON values can be
    swapped.,swap__object_t}
    */
N
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    void swap(object_t& other)
N
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4055 4056
    {
        // swap only works for objects
N
cleanup  
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4057 4058 4059 4060 4061
        if (is_object())
        {
            std::swap(*(m_value.object), other);
        }
        else
N
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4062
        {
N
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4063
            throw std::domain_error("cannot use swap() with " + type_name());
N
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4064 4065 4066
        }
    }

4067 4068 4069 4070 4071 4072 4073 4074 4075 4076 4077 4078 4079 4080 4081 4082 4083
    /*!
    @brief exchanges the values

    Exchanges the contents of a JSON string with those of @a other. Does not
    invoke any move, copy, or swap operations on individual elements. All
    iterators and references remain valid. The past-the-end iterator is
    invalidated.

    @param[in,out] other string to exchange the contents with

    @throw std::domain_error when JSON value is not a string

    @complexity Constant.

    @liveexample{The example below shows how JSON values can be
    swapped.,swap__string_t}
    */
N
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    void swap(string_t& other)
N
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4085 4086
    {
        // swap only works for strings
N
cleanup  
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4087 4088 4089 4090 4091
        if (is_string())
        {
            std::swap(*(m_value.string), other);
        }
        else
N
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4092
        {
N
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4093
            throw std::domain_error("cannot use swap() with " + type_name());
N
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4094 4095 4096
        }
    }

N
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4097 4098
    /// @}

N
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4099 4100 4101 4102 4103

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

N
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4104 4105 4106
    /// @name lexicographical comparison operators
    /// @{

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  private:
    /*!
    @brief comparison operator for JSON 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)
    {
        static constexpr std::array<uint8_t, 7> order = {{
                0, // null
                3, // object
                4, // array
                5, // string
                1, // boolean
                2, // integer
                2  // float
            }
        };

        // discarded values are not comparable
        if (lhs == value_t::discarded or rhs == value_t::discarded)
        {
            return false;
        }

        return order[static_cast<std::size_t>(lhs)] < order[static_cast<std::size_t>(rhs)];
    }

  public:
N
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    /*!
    @brief comparison: equal
N
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4140 4141 4142 4143 4144 4145 4146 4147 4148 4149 4150 4151 4152 4153 4154 4155

    Compares two JSON values for equality according to the following rules:
    - Two JSON values are equal if (1) they are from the same type and (2)
      their stored values are the same.
    - Integer and floating-point numbers are automatically converted before
      comparison. Floating-point numbers are compared indirectly: two
      floating-point numbers `f1` and `f2` are considered equal if neither
      `f1 > f2` nor `f2 > f1` holds.
    - Two JSON null values are equal.

    @param[in] lhs  first JSON value to consider
    @param[in] rhs  second JSON value to consider
    @return whether the values @a lhs and @a rhs are equal

    @complexity Linear.

4156 4157
    @liveexample{The example demonstrates comparing several JSON
    types.,operator__equal}
N
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    */
N
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4159
    friend bool operator==(const_reference lhs, const_reference rhs) noexcept
N
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4160
    {
F
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4161 4162
        const auto lhs_type = lhs.type();
        const auto rhs_type = rhs.type();
N
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4163

F
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4164
        if (lhs_type == rhs_type)
N
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4165
        {
F
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4166
            switch (lhs_type)
N
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4167
            {
4168
                case value_t::array:
N
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4169
                    return *lhs.m_value.array == *rhs.m_value.array;
4170
                case value_t::object:
N
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4171
                    return *lhs.m_value.object == *rhs.m_value.object;
4172
                case value_t::null:
N
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4173
                    return true;
4174
                case value_t::string:
N
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4175
                    return *lhs.m_value.string == *rhs.m_value.string;
4176
                case value_t::boolean:
N
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4177
                    return lhs.m_value.boolean == rhs.m_value.boolean;
4178
                case value_t::number_integer:
N
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4179
                    return lhs.m_value.number_integer == rhs.m_value.number_integer;
4180
                case value_t::number_float:
4181
                    return approx(lhs.m_value.number_float, rhs.m_value.number_float);
4182
                default:
N
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4183
                    return false;
N
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4184 4185
            }
        }
F
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4186 4187
        else if (lhs_type == value_t::number_integer and rhs_type == value_t::number_float)
        {
4188 4189
            return approx(static_cast<number_float_t>(lhs.m_value.number_integer),
                          rhs.m_value.number_float);
F
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4190 4191 4192 4193 4194 4195
        }
        else if (lhs_type == value_t::number_float and rhs_type == value_t::number_integer)
        {
            return approx(lhs.m_value.number_float,
                          static_cast<number_float_t>(rhs.m_value.number_integer));
        }
N
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4196 4197 4198
        return false;
    }

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4199 4200 4201 4202 4203 4204 4205 4206 4207 4208 4209 4210 4211 4212 4213 4214 4215 4216 4217 4218 4219 4220 4221 4222 4223 4224 4225 4226 4227 4228
    /*!
    @brief comparison: equal

    The functions compares the given JSON value against a null pointer. As the
    null pointer can be used to initialize a JSON value to null, a comparison
    of JSON value @a v with a null pointer should be equivalent to call
    `v.is_null()`.

    @param[in] v  JSON value to consider
    @return whether @a v is null

    @complexity Constant.

    @liveexample{The example compares several JSON types to the null pointer.
    ,operator__equal__nullptr_t}
    */
    friend bool operator==(const_reference v, std::nullptr_t) noexcept
    {
        return v.is_null();
    }

    /*!
    @brief comparison: equal
    @copydoc operator==(const_reference, std::nullptr_t)
    */
    friend bool operator==(std::nullptr_t, const_reference v) noexcept
    {
        return v.is_null();
    }

N
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    /*!
    @brief comparison: not equal
N
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4231 4232 4233 4234 4235 4236 4237 4238 4239

    Compares two JSON values for inequality by calculating `not (lhs == rhs)`.

    @param[in] lhs  first JSON value to consider
    @param[in] rhs  second JSON value to consider
    @return whether the values @a lhs and @a rhs are not equal

    @complexity Linear.

4240 4241
    @liveexample{The example demonstrates comparing several JSON
    types.,operator__notequal}
N
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4242
    */
N
Niels 已提交
4243
    friend bool operator!=(const_reference lhs, const_reference rhs) noexcept
N
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4244 4245 4246 4247
    {
        return not (lhs == rhs);
    }

N
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4248 4249 4250 4251 4252 4253 4254 4255 4256 4257 4258 4259 4260 4261 4262 4263 4264 4265 4266 4267 4268 4269 4270 4271 4272 4273 4274 4275 4276 4277
    /*!
    @brief comparison: not equal

    The functions compares the given JSON value against a null pointer. As the
    null pointer can be used to initialize a JSON value to null, a comparison
    of JSON value @a v with a null pointer should be equivalent to call
    `not v.is_null()`.

    @param[in] v  JSON value to consider
    @return whether @a v is not null

    @complexity Constant.

    @liveexample{The example compares several JSON types to the null pointer.
    ,operator__notequal__nullptr_t}
    */
    friend bool operator!=(const_reference v, std::nullptr_t) noexcept
    {
        return not v.is_null();
    }

    /*!
    @brief comparison: not equal
    @copydoc operator!=(const_reference, std::nullptr_t)
    */
    friend bool operator!=(std::nullptr_t, const_reference v) noexcept
    {
        return not v.is_null();
    }

N
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4278 4279 4280 4281 4282 4283 4284 4285 4286 4287 4288 4289 4290 4291 4292 4293 4294 4295 4296
    /*!
    @brief comparison: less than

    Compares whether one JSON value @a lhs is less than another JSON value @a
    rhs according to the following rules:
    - If @a lhs and @a rhs have the same type, the values are compared using
      the default `<` operator.
    - Integer and floating-point numbers are automatically converted before
      comparison
    - In case @a lhs and @a rhs have different types, the values are ignored
      and the order of the types is considered, see
      @ref operator<(const value_t, const value_t).

    @param[in] lhs  first JSON value to consider
    @param[in] rhs  second JSON value to consider
    @return whether @a lhs is less than @a rhs

    @complexity Linear.

4297 4298
    @liveexample{The example demonstrates comparing several JSON
    types.,operator__less}
N
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4299
    */
N
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4300
    friend bool operator<(const_reference lhs, const_reference rhs) noexcept
N
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4301
    {
F
Florian Weber 已提交
4302 4303
        const auto lhs_type = lhs.type();
        const auto rhs_type = rhs.type();
N
Niels 已提交
4304

F
Florian Weber 已提交
4305
        if (lhs_type == rhs_type)
N
Niels 已提交
4306
        {
F
Florian Weber 已提交
4307
            switch (lhs_type)
N
Niels 已提交
4308
            {
4309
                case value_t::array:
N
Niels 已提交
4310
                    return *lhs.m_value.array < *rhs.m_value.array;
4311
                case value_t::object:
N
Niels 已提交
4312
                    return *lhs.m_value.object < *rhs.m_value.object;
4313
                case value_t::null:
N
Niels 已提交
4314
                    return false;
4315
                case value_t::string:
N
Niels 已提交
4316
                    return *lhs.m_value.string < *rhs.m_value.string;
4317
                case value_t::boolean:
N
Niels 已提交
4318
                    return lhs.m_value.boolean < rhs.m_value.boolean;
4319
                case value_t::number_integer:
N
Niels 已提交
4320
                    return lhs.m_value.number_integer < rhs.m_value.number_integer;
4321
                case value_t::number_float:
N
Niels 已提交
4322
                    return lhs.m_value.number_float < rhs.m_value.number_float;
4323
                default:
N
Niels 已提交
4324
                    return false;
N
Niels 已提交
4325 4326
            }
        }
F
Florian Weber 已提交
4327 4328
        else if (lhs_type == value_t::number_integer and rhs_type == value_t::number_float)
        {
4329 4330
            return static_cast<number_float_t>(lhs.m_value.number_integer) <
                   rhs.m_value.number_float;
F
Florian Weber 已提交
4331 4332 4333 4334 4335 4336
        }
        else if (lhs_type == value_t::number_float and rhs_type == value_t::number_integer)
        {
            return lhs.m_value.number_float <
                   static_cast<number_float_t>(rhs.m_value.number_integer);
        }
N
Niels 已提交
4337

N
Niels 已提交
4338
        // We only reach this line if we cannot compare values. In that case,
N
Niels 已提交
4339 4340 4341
        // we compare types. Note we have to call the operator explicitly,
        // because MSVC has problems otherwise.
        return operator<(lhs_type, rhs_type);
N
Niels 已提交
4342 4343
    }

N
Niels 已提交
4344 4345 4346 4347 4348 4349 4350 4351 4352 4353 4354 4355
    /*!
    @brief comparison: less than or equal

    Compares whether one JSON value @a lhs is less than or equal to another
    JSON value by calculating `not (rhs < lhs)`.

    @param[in] lhs  first JSON value to consider
    @param[in] rhs  second JSON value to consider
    @return whether @a lhs is less than or equal to @a rhs

    @complexity Linear.

4356 4357
    @liveexample{The example demonstrates comparing several JSON
    types.,operator__greater}
N
Niels 已提交
4358
    */
N
Niels 已提交
4359
    friend bool operator<=(const_reference lhs, const_reference rhs) noexcept
N
Niels 已提交
4360 4361 4362 4363
    {
        return not (rhs < lhs);
    }

N
Niels 已提交
4364 4365 4366 4367 4368 4369 4370 4371 4372 4373 4374 4375
    /*!
    @brief comparison: greater than

    Compares whether one JSON value @a lhs is greater than another
    JSON value by calculating `not (lhs <= rhs)`.

    @param[in] lhs  first JSON value to consider
    @param[in] rhs  second JSON value to consider
    @return whether @a lhs is greater than to @a rhs

    @complexity Linear.

4376 4377
    @liveexample{The example demonstrates comparing several JSON
    types.,operator__lessequal}
N
Niels 已提交
4378
    */
N
Niels 已提交
4379
    friend bool operator>(const_reference lhs, const_reference rhs) noexcept
N
Niels 已提交
4380 4381 4382 4383
    {
        return not (lhs <= rhs);
    }

N
Niels 已提交
4384 4385 4386 4387 4388 4389 4390 4391 4392 4393 4394 4395
    /*!
    @brief comparison: greater than or equal

    Compares whether one JSON value @a lhs is greater than or equal to another
    JSON value by calculating `not (lhs < rhs)`.

    @param[in] lhs  first JSON value to consider
    @param[in] rhs  second JSON value to consider
    @return whether @a lhs is greater than or equal to @a rhs

    @complexity Linear.

4396 4397
    @liveexample{The example demonstrates comparing several JSON
    types.,operator__greaterequal}
N
Niels 已提交
4398
    */
N
Niels 已提交
4399
    friend bool operator>=(const_reference lhs, const_reference rhs) noexcept
N
Niels 已提交
4400 4401 4402 4403
    {
        return not (lhs < rhs);
    }

N
Niels 已提交
4404 4405
    /// @}

N
Niels 已提交
4406 4407 4408 4409 4410

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

N
Niels 已提交
4411 4412 4413
    /// @name serialization
    /// @{

N
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4414 4415 4416 4417 4418 4419 4420 4421 4422 4423 4424 4425 4426 4427 4428 4429 4430
    /*!
    @brief serialize to stream

    Serialize the given JSON value @a j to the output stream @a o. The JSON
    value will be serialized using the @ref dump member function. The
    indentation of the output can be controlled with the member variable
    `width` of the output stream @a o. For instance, using the manipulator
    `std::setw(4)` on @a o sets the indentation level to `4` and the
    serialization result is the same as calling `dump(4)`.

    @param[in,out] o  stream to serialize to
    @param[in] j  JSON value to serialize

    @return the stream @a o

    @complexity Linear.

N
Niels 已提交
4431 4432
    @liveexample{The example below shows the serialization with different
    parameters to `width` to adjust the indentation level.,operator_serialize}
N
Niels 已提交
4433
    */
N
Niels 已提交
4434 4435
    friend std::ostream& operator<<(std::ostream& o, const basic_json& j)
    {
N
Niels 已提交
4436
        // read width member and use it as indentation parameter if nonzero
N
Niels 已提交
4437 4438
        const bool pretty_print = (o.width() > 0);
        const auto indentation = (pretty_print ? o.width() : 0);
N
Niels 已提交
4439

N
Niels 已提交
4440 4441 4442 4443
        // reset width to 0 for subsequent calls to this stream
        o.width(0);

        // do the actual serialization
N
Niels 已提交
4444
        j.dump(o, pretty_print, static_cast<unsigned int>(indentation));
N
Niels 已提交
4445 4446 4447
        return o;
    }

N
Niels 已提交
4448 4449 4450 4451
    /*!
    @brief serialize to stream
    @copydoc operator<<(std::ostream&, const basic_json&)
    */
N
Niels 已提交
4452 4453
    friend std::ostream& operator>>(const basic_json& j, std::ostream& o)
    {
N
Niels 已提交
4454
        return o << j;
N
Niels 已提交
4455 4456
    }

N
Niels 已提交
4457 4458
    /// @}

N
Niels 已提交
4459 4460 4461 4462 4463

    /////////////////////
    // deserialization //
    /////////////////////

N
Niels 已提交
4464 4465 4466
    /// @name deserialization
    /// @{

N
Niels 已提交
4467 4468 4469 4470
    /*!
    @brief deserialize from string

    @param[in] s  string to read a serialized JSON value from
N
Niels 已提交
4471 4472 4473
    @param[in] cb a parser callback function of type @ref parser_callback_t
    which is used to control the deserialization by filtering unwanted values
    (optional)
N
Niels 已提交
4474 4475 4476 4477 4478 4479 4480

    @return result of the deserialization

    @complexity Linear in the length of the input. The parser is a predictive
    LL(1) parser. The complexity can be higher if the parser callback function
    @a cb has a super-linear complexity.

N
Niels 已提交
4481 4482
    @note A UTF-8 byte order mark is silently ignored.

N
Niels 已提交
4483 4484
    @liveexample{The example below demonstrates the parse function with and
    without callback function.,parse__string__parser_callback_t}
N
Niels 已提交
4485 4486 4487 4488

    @sa parse(std::istream&, parser_callback_t) for a version that reads from
    an input stream
    */
N
Niels 已提交
4489
    static basic_json parse(const string_t& s, parser_callback_t cb = nullptr)
N
Niels 已提交
4490
    {
N
Niels 已提交
4491
        return parser(s, cb).parse();
N
Niels 已提交
4492 4493
    }

N
Niels 已提交
4494 4495 4496 4497
    /*!
    @brief deserialize from stream

    @param[in,out] i  stream to read a serialized JSON value from
N
Niels 已提交
4498 4499 4500
    @param[in] cb a parser callback function of type @ref parser_callback_t
    which is used to control the deserialization by filtering unwanted values
    (optional)
N
Niels 已提交
4501 4502 4503 4504 4505 4506 4507

    @return result of the deserialization

    @complexity Linear in the length of the input. The parser is a predictive
    LL(1) parser. The complexity can be higher if the parser callback function
    @a cb has a super-linear complexity.

N
Niels 已提交
4508 4509
    @note A UTF-8 byte order mark is silently ignored.

N
Niels 已提交
4510 4511
    @liveexample{The example below demonstrates the parse function with and
    without callback function.,parse__istream__parser_callback_t}
N
Niels 已提交
4512 4513 4514 4515

    @sa parse(const string_t&, parser_callback_t) for a version that reads
    from a string
    */
N
Niels 已提交
4516
    static basic_json parse(std::istream& i, parser_callback_t cb = nullptr)
N
Niels 已提交
4517
    {
N
Niels 已提交
4518
        return parser(i, cb).parse();
N
Niels 已提交
4519 4520
    }

N
Cleanup  
Niels 已提交
4521 4522 4523 4524 4525
    static basic_json parse(std::istream&& i, parser_callback_t cb = nullptr)
    {
        return parser(i, cb).parse();
    }

N
Niels 已提交
4526 4527 4528 4529 4530 4531 4532 4533 4534 4535 4536 4537 4538
    /*!
    @brief deserialize from stream

    Deserializes an input stream to a JSON value.

    @param[in,out] i  input stream to read a serialized JSON value from
    @param[in,out] j  JSON value to write the deserialized input to

    @throw std::invalid_argument in case of parse errors

    @complexity Linear in the length of the input. The parser is a predictive
    LL(1) parser.

N
Niels 已提交
4539 4540
    @note A UTF-8 byte order mark is silently ignored.

N
Niels 已提交
4541 4542 4543 4544 4545 4546 4547
    @liveexample{The example below shows how a JSON value is constructed by
    reading a serialization from a stream.,operator_deserialize}

    @sa parse(std::istream&, parser_callback_t) for a variant with a parser
    callback function to filter values while parsing
    */
    friend std::istream& operator<<(basic_json& j, std::istream& i)
N
Niels 已提交
4548 4549 4550 4551 4552
    {
        j = parser(i).parse();
        return i;
    }

N
Niels 已提交
4553 4554 4555 4556 4557
    /*!
    @brief deserialize from stream
    @copydoc operator<<(basic_json&, std::istream&)
    */
    friend std::istream& operator>>(std::istream& i, basic_json& j)
N
Niels 已提交
4558 4559 4560 4561 4562
    {
        j = parser(i).parse();
        return i;
    }

N
Niels 已提交
4563 4564
    /// @}

N
Niels 已提交
4565 4566 4567 4568 4569 4570 4571

  private:
    ///////////////////////////
    // convenience functions //
    ///////////////////////////

    /// return the type as string
N
Niels 已提交
4572
    string_t type_name() const
N
Niels 已提交
4573 4574 4575
    {
        switch (m_type)
        {
4576
            case value_t::null:
N
Niels 已提交
4577 4578 4579
            {
                return "null";
            }
N
Niels 已提交
4580

4581
            case value_t::object:
N
Niels 已提交
4582 4583 4584
            {
                return "object";
            }
N
Niels 已提交
4585

4586
            case value_t::array:
N
Niels 已提交
4587 4588 4589
            {
                return "array";
            }
N
Niels 已提交
4590

4591
            case value_t::string:
N
Niels 已提交
4592 4593 4594
            {
                return "string";
            }
N
Niels 已提交
4595

4596
            case value_t::boolean:
N
Niels 已提交
4597 4598 4599
            {
                return "boolean";
            }
N
Niels 已提交
4600

4601
            case value_t::discarded:
N
Niels 已提交
4602 4603 4604 4605
            {
                return "discarded";
            }

N
Niels 已提交
4606
            default:
N
Niels 已提交
4607 4608 4609 4610 4611 4612
            {
                return "number";
            }
        }
    }

N
Niels 已提交
4613 4614 4615 4616 4617 4618 4619 4620 4621 4622 4623 4624 4625 4626 4627 4628 4629 4630 4631 4632 4633 4634 4635 4636 4637 4638 4639 4640 4641 4642 4643 4644 4645 4646 4647 4648 4649 4650 4651 4652 4653 4654 4655 4656
    /*!
    @brief calculates the extra space to escape a JSON string

    @param[in] s  the string to escape
    @return the number of characters required to escape string @a s

    @complexity Linear in the length of string @a s.
    */
    static std::size_t extra_space(const string_t& s) noexcept
    {
        std::size_t result = 0;

        for (const auto& c : s)
        {
            switch (c)
            {
                case '"':
                case '\\':
                case '\b':
                case '\f':
                case '\n':
                case '\r':
                case '\t':
                {
                    // from c (1 byte) to \x (2 bytes)
                    result += 1;
                    break;
                }

                default:
                {
                    if (c >= 0x00 and c <= 0x1f)
                    {
                        // from c (1 byte) to \uxxxx (6 bytes)
                        result += 5;
                    }
                    break;
                }
            }
        }

        return result;
    }

N
Niels 已提交
4657 4658
    /*!
    @brief escape a string
N
Niels 已提交
4659

N
Niels 已提交
4660 4661 4662 4663 4664
    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.

N
Niels 已提交
4665
    @param[in] s  the string to escape
N
Niels 已提交
4666 4667 4668
    @return  the escaped string

    @complexity Linear in the length of string @a s.
N
Niels 已提交
4669
    */
N
Niels 已提交
4670
    static string_t escape_string(const string_t& s) noexcept
N
Niels 已提交
4671
    {
N
Niels 已提交
4672 4673 4674 4675 4676 4677 4678 4679 4680 4681 4682
        const auto space = extra_space(s);
        if (space == 0)
        {
            return s;
        }

        // create a result string of necessary size
        string_t result(s.size() + space, '\\');
        std::size_t pos = 0;

        for (const auto& c : s)
N
Niels 已提交
4683 4684 4685 4686 4687 4688
        {
            switch (c)
            {
                // quotation mark (0x22)
                case '"':
                {
N
Niels 已提交
4689 4690
                    result[pos + 1] = '"';
                    pos += 2;
N
Niels 已提交
4691 4692
                    break;
                }
N
Niels 已提交
4693

N
Niels 已提交
4694 4695 4696
                // reverse solidus (0x5c)
                case '\\':
                {
N
Niels 已提交
4697 4698
                    // nothing to change
                    pos += 2;
N
Niels 已提交
4699 4700
                    break;
                }
N
Niels 已提交
4701

N
Niels 已提交
4702 4703 4704
                // backspace (0x08)
                case '\b':
                {
N
Niels 已提交
4705 4706
                    result[pos + 1] = 'b';
                    pos += 2;
N
Niels 已提交
4707 4708
                    break;
                }
N
Niels 已提交
4709

N
Niels 已提交
4710 4711 4712
                // formfeed (0x0c)
                case '\f':
                {
N
Niels 已提交
4713 4714
                    result[pos + 1] = 'f';
                    pos += 2;
N
Niels 已提交
4715 4716
                    break;
                }
N
Niels 已提交
4717

N
Niels 已提交
4718 4719 4720
                // newline (0x0a)
                case '\n':
                {
N
Niels 已提交
4721 4722
                    result[pos + 1] = 'n';
                    pos += 2;
N
Niels 已提交
4723 4724
                    break;
                }
N
Niels 已提交
4725

N
Niels 已提交
4726 4727 4728
                // carriage return (0x0d)
                case '\r':
                {
N
Niels 已提交
4729 4730
                    result[pos + 1] = 'r';
                    pos += 2;
N
Niels 已提交
4731 4732
                    break;
                }
N
Niels 已提交
4733

N
Niels 已提交
4734 4735 4736
                // horizontal tab (0x09)
                case '\t':
                {
N
Niels 已提交
4737 4738
                    result[pos + 1] = 't';
                    pos += 2;
N
Niels 已提交
4739 4740 4741 4742 4743
                    break;
                }

                default:
                {
4744
                    if (c >= 0x00 and c <= 0x1f)
N
Niels 已提交
4745
                    {
4746 4747 4748 4749 4750 4751
                        // convert a number 0..15 to its hex representation (0..f)
                        auto hexify = [](const char v) -> char
                        {
                            return (v < 10) ? ('0' + v) : ('a' + v - 10);
                        };

N
Niels 已提交
4752
                        // print character c as \uxxxx
N
Niels 已提交
4753 4754 4755
                        for (const char m :
                    { 'u', '0', '0', hexify(c >> 4), hexify(c & 0x0f)
                        })
4756 4757 4758 4759 4760
                        {
                            result[++pos] = m;
                        }

                        ++pos;
N
Niels 已提交
4761 4762 4763 4764
                    }
                    else
                    {
                        // all other characters are added as-is
N
Niels 已提交
4765
                        result[pos++] = c;
N
Niels 已提交
4766 4767 4768 4769 4770
                    }
                    break;
                }
            }
        }
N
Niels 已提交
4771 4772

        return result;
N
Niels 已提交
4773 4774 4775 4776
    }

    /*!
    @brief internal implementation of the serialization function
N
Niels 已提交
4777

N
Niels 已提交
4778 4779 4780 4781
    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
Niels 已提交
4782

N
Niels 已提交
4783
    - strings and object keys are escaped using escape_string()
N
Niels 已提交
4784
    - integer numbers are converted implictly via operator<<
4785
    - floating-point numbers are converted to a string using "%g" format
N
Niels 已提交
4786

N
Niels 已提交
4787 4788 4789 4790
    @param[out] o              stream to write to
    @param[in] pretty_print    whether the output shall be pretty-printed
    @param[in] indent_step     the indent level
    @param[in] current_indent  the current indent level (only used internally)
N
Niels 已提交
4791
    */
N
Niels 已提交
4792
    void dump(std::ostream& o, const bool pretty_print, const unsigned int indent_step,
N
Niels 已提交
4793
              const unsigned int current_indent = 0) const
N
Niels 已提交
4794
    {
N
Niels 已提交
4795
        // variable to hold indentation for recursive calls
N
Niels 已提交
4796
        unsigned int new_indent = current_indent;
N
Niels 已提交
4797

N
Niels 已提交
4798 4799
        switch (m_type)
        {
4800
            case value_t::object:
N
Niels 已提交
4801 4802 4803
            {
                if (m_value.object->empty())
                {
N
Niels 已提交
4804 4805
                    o << "{}";
                    return;
N
Niels 已提交
4806 4807
                }

N
Niels 已提交
4808
                o << "{";
N
Niels 已提交
4809 4810

                // increase indentation
N
Niels 已提交
4811
                if (pretty_print)
N
Niels 已提交
4812
                {
N
Niels 已提交
4813
                    new_indent += indent_step;
N
Niels 已提交
4814
                    o << "\n";
N
Niels 已提交
4815 4816 4817 4818 4819 4820
                }

                for (auto i = m_value.object->cbegin(); i != m_value.object->cend(); ++i)
                {
                    if (i != m_value.object->cbegin())
                    {
N
Niels 已提交
4821
                        o << (pretty_print ? ",\n" : ",");
N
Niels 已提交
4822
                    }
N
Niels 已提交
4823 4824 4825
                    o << string_t(new_indent, ' ') << "\""
                      << escape_string(i->first) << "\":"
                      << (pretty_print ? " " : "");
N
Niels 已提交
4826
                    i->second.dump(o, pretty_print, indent_step, new_indent);
N
Niels 已提交
4827 4828 4829
                }

                // decrease indentation
N
Niels 已提交
4830
                if (pretty_print)
N
Niels 已提交
4831
                {
N
Niels 已提交
4832
                    new_indent -= indent_step;
N
Niels 已提交
4833
                    o << "\n";
N
Niels 已提交
4834 4835
                }

N
Niels 已提交
4836 4837
                o << string_t(new_indent, ' ') + "}";
                return;
N
Niels 已提交
4838 4839
            }

4840
            case value_t::array:
N
Niels 已提交
4841 4842 4843
            {
                if (m_value.array->empty())
                {
N
Niels 已提交
4844 4845
                    o << "[]";
                    return;
N
Niels 已提交
4846 4847
                }

N
Niels 已提交
4848
                o << "[";
N
Niels 已提交
4849 4850

                // increase indentation
N
Niels 已提交
4851
                if (pretty_print)
N
Niels 已提交
4852
                {
N
Niels 已提交
4853
                    new_indent += indent_step;
N
Niels 已提交
4854
                    o << "\n";
N
Niels 已提交
4855 4856 4857 4858 4859 4860
                }

                for (auto i = m_value.array->cbegin(); i != m_value.array->cend(); ++i)
                {
                    if (i != m_value.array->cbegin())
                    {
N
Niels 已提交
4861
                        o << (pretty_print ? ",\n" : ",");
N
Niels 已提交
4862
                    }
N
Niels 已提交
4863
                    o << string_t(new_indent, ' ');
N
Niels 已提交
4864
                    i->dump(o, pretty_print, indent_step, new_indent);
N
Niels 已提交
4865 4866 4867
                }

                // decrease indentation
N
Niels 已提交
4868
                if (pretty_print)
N
Niels 已提交
4869
                {
N
Niels 已提交
4870
                    new_indent -= indent_step;
N
Niels 已提交
4871
                    o << "\n";
N
Niels 已提交
4872 4873
                }

N
Niels 已提交
4874 4875
                o << string_t(new_indent, ' ') << "]";
                return;
N
Niels 已提交
4876 4877
            }

4878
            case value_t::string:
N
Niels 已提交
4879
            {
N
Niels 已提交
4880
                o << string_t("\"") << escape_string(*m_value.string) << "\"";
N
Niels 已提交
4881
                return;
N
Niels 已提交
4882 4883
            }

4884
            case value_t::boolean:
N
Niels 已提交
4885
            {
N
Niels 已提交
4886 4887
                o << (m_value.boolean ? "true" : "false");
                return;
N
Niels 已提交
4888 4889
            }

4890
            case value_t::number_integer:
N
Niels 已提交
4891
            {
N
Niels 已提交
4892 4893
                o << m_value.number_integer;
                return;
N
Niels 已提交
4894 4895
            }

4896
            case value_t::number_float:
N
Niels 已提交
4897
            {
N
Niels 已提交
4898
                // 15 digits of precision allows round-trip IEEE 754
N
Niels 已提交
4899 4900 4901
                // string->double->string; to be safe, we read this value from
                // std::numeric_limits<number_float_t>::digits10
                o << std::setprecision(std::numeric_limits<number_float_t>::digits10) << m_value.number_float;
N
Niels 已提交
4902
                return;
N
Niels 已提交
4903
            }
N
Niels 已提交
4904

4905
            case value_t::discarded:
N
Niels 已提交
4906
            {
N
Niels 已提交
4907 4908
                o << "<discarded>";
                return;
N
Niels 已提交
4909
            }
N
Niels 已提交
4910

4911
            case value_t::null:
N
Niels 已提交
4912
            {
N
Niels 已提交
4913 4914
                o << "null";
                return;
N
Niels 已提交
4915
            }
N
Niels 已提交
4916 4917 4918 4919 4920 4921 4922 4923 4924 4925 4926 4927 4928 4929
        }
    }

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

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

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

N
Niels 已提交
4930

N
Niels 已提交
4931
  private:
N
Niels 已提交
4932 4933 4934 4935
    ///////////////
    // iterators //
    ///////////////

4936 4937 4938 4939 4940 4941 4942 4943 4944 4945 4946 4947 4948 4949 4950 4951 4952 4953 4954 4955 4956 4957 4958 4959 4960 4961 4962 4963 4964 4965 4966 4967 4968 4969 4970 4971 4972 4973 4974 4975 4976 4977 4978
    /*!
    @brief an iterator for primitive JSON types

    This class models an iterator for primitive JSON types (boolean, number,
    string). It's only purpose is to allow the iterator/const_iterator classes
    to "iterate" over primitive values. Internally, the iterator is modeled by
    a `difference_type` variable. Value begin_value (`0`) models the begin,
    end_value (`1`) models past the end.
    */
    class primitive_iterator_t
    {
      public:
        /// set iterator to a defined beginning
        void set_begin()
        {
            m_it = begin_value;
        }

        /// set iterator to a defined past the end
        void set_end()
        {
            m_it = end_value;
        }

        /// return whether the iterator can be dereferenced
        bool is_begin() const
        {
            return (m_it == begin_value);
        }

        /// return whether the iterator is at end
        bool is_end() const
        {
            return (m_it == end_value);
        }

        /// return reference to the value to change and compare
        operator difference_type& ()
        {
            return m_it;
        }

        /// return value to compare
N
Niels 已提交
4979
        operator difference_type () const
4980 4981 4982 4983 4984 4985 4986 4987 4988
        {
            return m_it;
        }

      private:
        static constexpr difference_type begin_value = 0;
        static constexpr difference_type end_value = begin_value + 1;

        /// iterator as signed integer type
N
Niels 已提交
4989
        difference_type m_it = std::numeric_limits<std::ptrdiff_t>::denorm_min();
4990 4991
    };

N
Niels 已提交
4992 4993 4994 4995 4996 4997 4998 4999
    /*!
    @brief an iterator value

    @note This structure could easily be a union, but MSVC currently does not
    allow unions members with complex constructors, see
    https://github.com/nlohmann/json/pull/105.
    */
    struct internal_iterator
N
Niels 已提交
5000 5001
    {
        /// iterator for JSON objects
N
Niels 已提交
5002
        typename object_t::iterator object_iterator;
N
Niels 已提交
5003
        /// iterator for JSON arrays
N
Niels 已提交
5004
        typename array_t::iterator array_iterator;
N
Niels 已提交
5005
        /// generic iterator for all other types
N
Niels 已提交
5006 5007 5008 5009 5010 5011
        primitive_iterator_t primitive_iterator;

        /// create an uninitialized internal_iterator
        internal_iterator()
            : object_iterator(), array_iterator(), primitive_iterator()
        {}
N
Niels 已提交
5012 5013 5014
    };

  public:
N
Niels 已提交
5015 5016 5017 5018 5019 5020 5021 5022 5023 5024 5025
    /*!
    @brief a const random access iterator for the @ref basic_json class

    This class implements a const iterator for the @ref basic_json class. From
    this class, the @ref iterator class is derived.

    @requirement The class satisfies the following concept requirements:
    - [RandomAccessIterator](http://en.cppreference.com/w/cpp/concept/RandomAccessIterator):
      The iterator that can be moved to point (forward and backward) to any
      element in constant time.
    */
N
Niels 已提交
5026
    class const_iterator : public std::iterator<std::random_access_iterator_tag, const basic_json>
N
Niels 已提交
5027
    {
N
Niels 已提交
5028
        /// allow basic_json to access private members
5029 5030
        friend class basic_json;

N
Niels 已提交
5031 5032
      public:
        /// the type of the values when the iterator is dereferenced
N
Niels 已提交
5033
        using value_type = typename basic_json::value_type;
N
Niels 已提交
5034
        /// a type to represent differences between iterators
N
Niels 已提交
5035
        using difference_type = typename basic_json::difference_type;
N
Niels 已提交
5036
        /// defines a pointer to the type iterated over (value_type)
N
Niels 已提交
5037
        using pointer = typename basic_json::const_pointer;
N
Niels 已提交
5038
        /// defines a reference to the type iterated over (value_type)
N
Niels 已提交
5039
        using reference = typename basic_json::const_reference;
N
Niels 已提交
5040
        /// the category of the iterator
N
Niels 已提交
5041
        using iterator_category = std::bidirectional_iterator_tag;
N
Niels 已提交
5042

5043
        /// default constructor
N
Niels 已提交
5044
        const_iterator() = default;
5045

N
Niels 已提交
5046
        /// constructor for a given JSON instance
N
Niels 已提交
5047
        const_iterator(pointer object) : m_object(object)
N
Niels 已提交
5048 5049 5050
        {
            switch (m_object->m_type)
            {
5051
                case basic_json::value_t::object:
N
Niels 已提交
5052 5053 5054 5055
                {
                    m_it.object_iterator = typename object_t::iterator();
                    break;
                }
5056 5057

                case basic_json::value_t::array:
N
Niels 已提交
5058 5059 5060 5061
                {
                    m_it.array_iterator = typename array_t::iterator();
                    break;
                }
5062

N
Niels 已提交
5063 5064
                default:
                {
5065
                    m_it.primitive_iterator = primitive_iterator_t();
N
Niels 已提交
5066 5067 5068 5069 5070
                    break;
                }
            }
        }

N
Niels 已提交
5071 5072 5073 5074 5075
        /// copy constructor given a nonconst iterator
        const_iterator(const iterator& other) : m_object(other.m_object)
        {
            switch (m_object->m_type)
            {
5076
                case basic_json::value_t::object:
N
Niels 已提交
5077 5078 5079 5080 5081
                {
                    m_it.object_iterator = other.m_it.object_iterator;
                    break;
                }

5082
                case basic_json::value_t::array:
N
Niels 已提交
5083 5084 5085 5086 5087 5088 5089 5090 5091 5092 5093 5094 5095
                {
                    m_it.array_iterator = other.m_it.array_iterator;
                    break;
                }

                default:
                {
                    m_it.primitive_iterator = other.m_it.primitive_iterator;
                    break;
                }
            }
        }

N
Niels 已提交
5096
        /// copy constructor
N
Niels 已提交
5097
        const_iterator(const const_iterator& other) noexcept
N
Niels 已提交
5098 5099 5100
            : m_object(other.m_object), m_it(other.m_it)
        {}

N
Niels 已提交
5101
        /// copy assignment
N
Niels 已提交
5102
        const_iterator& operator=(const_iterator other) noexcept(
N
Niels 已提交
5103 5104
            std::is_nothrow_move_constructible<pointer>::value and
            std::is_nothrow_move_assignable<pointer>::value and
N
Niels 已提交
5105 5106
            std::is_nothrow_move_constructible<internal_iterator>::value and
            std::is_nothrow_move_assignable<internal_iterator>::value
N
Niels 已提交
5107 5108 5109 5110
        )
        {
            std::swap(m_object, other.m_object);
            std::swap(m_it, other.m_it);
N
Niels 已提交
5111 5112 5113
            return *this;
        }

N
Niels 已提交
5114
      private:
N
Niels 已提交
5115
        /// set the iterator to the first value
N
Niels 已提交
5116
        void set_begin()
N
Niels 已提交
5117 5118 5119
        {
            switch (m_object->m_type)
            {
5120
                case basic_json::value_t::object:
N
Niels 已提交
5121 5122 5123 5124 5125
                {
                    m_it.object_iterator = m_object->m_value.object->begin();
                    break;
                }

5126
                case basic_json::value_t::array:
N
Niels 已提交
5127 5128 5129 5130 5131
                {
                    m_it.array_iterator = m_object->m_value.array->begin();
                    break;
                }

5132
                case basic_json::value_t::null:
N
Niels 已提交
5133
                {
N
Niels 已提交
5134
                    // set to end so begin()==end() is true: null is empty
5135
                    m_it.primitive_iterator.set_end();
N
Niels 已提交
5136 5137 5138 5139 5140
                    break;
                }

                default:
                {
5141
                    m_it.primitive_iterator.set_begin();
N
Niels 已提交
5142 5143 5144 5145 5146 5147
                    break;
                }
            }
        }

        /// set the iterator past the last value
N
Niels 已提交
5148
        void set_end()
N
Niels 已提交
5149 5150 5151
        {
            switch (m_object->m_type)
            {
5152
                case basic_json::value_t::object:
N
Niels 已提交
5153 5154 5155 5156 5157
                {
                    m_it.object_iterator = m_object->m_value.object->end();
                    break;
                }

5158
                case basic_json::value_t::array:
N
Niels 已提交
5159 5160 5161 5162 5163 5164 5165
                {
                    m_it.array_iterator = m_object->m_value.array->end();
                    break;
                }

                default:
                {
5166
                    m_it.primitive_iterator.set_end();
N
Niels 已提交
5167 5168 5169 5170 5171
                    break;
                }
            }
        }

N
Niels 已提交
5172
      public:
N
Niels 已提交
5173
        /// return a reference to the value pointed to by the iterator
N
Niels 已提交
5174
        reference operator*() const
N
Niels 已提交
5175 5176 5177
        {
            switch (m_object->m_type)
            {
5178
                case basic_json::value_t::object:
N
Niels 已提交
5179 5180 5181 5182
                {
                    return m_it.object_iterator->second;
                }

5183
                case basic_json::value_t::array:
N
Niels 已提交
5184 5185 5186 5187
                {
                    return *m_it.array_iterator;
                }

5188
                case basic_json::value_t::null:
N
Niels 已提交
5189 5190 5191 5192 5193 5194
                {
                    throw std::out_of_range("cannot get value");
                }

                default:
                {
5195
                    if (m_it.primitive_iterator.is_begin())
N
Niels 已提交
5196 5197 5198 5199 5200 5201 5202 5203 5204 5205 5206 5207
                    {
                        return *m_object;
                    }
                    else
                    {
                        throw std::out_of_range("cannot get value");
                    }
                }
            }
        }

        /// dereference the iterator
N
Niels 已提交
5208
        pointer operator->() const
N
Niels 已提交
5209 5210 5211
        {
            switch (m_object->m_type)
            {
5212
                case basic_json::value_t::object:
N
Niels 已提交
5213 5214 5215 5216
                {
                    return &(m_it.object_iterator->second);
                }

5217
                case basic_json::value_t::array:
N
Niels 已提交
5218 5219 5220 5221 5222 5223
                {
                    return &*m_it.array_iterator;
                }

                default:
                {
5224
                    if (m_it.primitive_iterator.is_begin())
N
Niels 已提交
5225 5226 5227 5228 5229 5230 5231 5232 5233 5234 5235 5236
                    {
                        return m_object;
                    }
                    else
                    {
                        throw std::out_of_range("cannot get value");
                    }
                }
            }
        }

        /// post-increment (it++)
N
Niels 已提交
5237
        const_iterator operator++(int)
N
Niels 已提交
5238
        {
N
Niels 已提交
5239
            auto result = *this;
N
Niels 已提交
5240
            ++(*this);
N
Niels 已提交
5241 5242 5243 5244 5245

            return result;
        }

        /// pre-increment (++it)
N
Niels 已提交
5246
        const_iterator& operator++()
N
Niels 已提交
5247 5248 5249
        {
            switch (m_object->m_type)
            {
5250
                case basic_json::value_t::object:
N
Niels 已提交
5251 5252 5253 5254 5255
                {
                    ++m_it.object_iterator;
                    break;
                }

5256
                case basic_json::value_t::array:
N
Niels 已提交
5257 5258 5259 5260 5261 5262 5263
                {
                    ++m_it.array_iterator;
                    break;
                }

                default:
                {
5264
                    ++m_it.primitive_iterator;
N
Niels 已提交
5265 5266 5267 5268 5269 5270 5271 5272
                    break;
                }
            }

            return *this;
        }

        /// post-decrement (it--)
N
Niels 已提交
5273
        const_iterator operator--(int)
N
Niels 已提交
5274
        {
N
Niels 已提交
5275
            auto result = *this;
N
Niels 已提交
5276
            --(*this);
N
Niels 已提交
5277 5278 5279 5280 5281

            return result;
        }

        /// pre-decrement (--it)
N
Niels 已提交
5282
        const_iterator& operator--()
N
Niels 已提交
5283 5284 5285
        {
            switch (m_object->m_type)
            {
5286
                case basic_json::value_t::object:
N
Niels 已提交
5287 5288 5289 5290 5291
                {
                    --m_it.object_iterator;
                    break;
                }

5292
                case basic_json::value_t::array:
N
Niels 已提交
5293 5294 5295 5296 5297 5298 5299
                {
                    --m_it.array_iterator;
                    break;
                }

                default:
                {
5300
                    --m_it.primitive_iterator;
N
Niels 已提交
5301 5302 5303 5304 5305 5306 5307 5308
                    break;
                }
            }

            return *this;
        }

        /// comparison: equal
N
Niels 已提交
5309
        bool operator==(const const_iterator& other) const
N
Niels 已提交
5310
        {
N
Niels 已提交
5311 5312
            // if objects are not the same, the comparison is undefined
            if (m_object != other.m_object)
N
Niels 已提交
5313
            {
N
Niels 已提交
5314
                throw std::domain_error("cannot compare iterators of different containers");
N
Niels 已提交
5315 5316 5317 5318
            }

            switch (m_object->m_type)
            {
5319
                case basic_json::value_t::object:
N
Niels 已提交
5320 5321 5322 5323
                {
                    return (m_it.object_iterator == other.m_it.object_iterator);
                }

5324
                case basic_json::value_t::array:
N
Niels 已提交
5325 5326 5327 5328 5329 5330
                {
                    return (m_it.array_iterator == other.m_it.array_iterator);
                }

                default:
                {
5331
                    return (m_it.primitive_iterator == other.m_it.primitive_iterator);
N
Niels 已提交
5332 5333 5334 5335 5336
                }
            }
        }

        /// comparison: not equal
N
Niels 已提交
5337
        bool operator!=(const const_iterator& other) const
N
Niels 已提交
5338 5339 5340 5341
        {
            return not operator==(other);
        }

N
Niels 已提交
5342
        /// comparison: smaller
N
Niels 已提交
5343
        bool operator<(const const_iterator& other) const
N
Niels 已提交
5344 5345 5346 5347 5348 5349 5350 5351 5352
        {
            // 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)
            {
5353
                case basic_json::value_t::object:
N
Niels 已提交
5354 5355 5356 5357
                {
                    throw std::domain_error("cannot use operator< for object iterators");
                }

5358
                case basic_json::value_t::array:
N
Niels 已提交
5359 5360 5361 5362 5363 5364
                {
                    return (m_it.array_iterator < other.m_it.array_iterator);
                }

                default:
                {
5365
                    return (m_it.primitive_iterator < other.m_it.primitive_iterator);
N
Niels 已提交
5366 5367 5368 5369 5370
                }
            }
        }

        /// comparison: less than or equal
N
Niels 已提交
5371
        bool operator<=(const const_iterator& other) const
N
Niels 已提交
5372 5373 5374 5375 5376
        {
            return not other.operator < (*this);
        }

        /// comparison: greater than
N
Niels 已提交
5377
        bool operator>(const const_iterator& other) const
N
Niels 已提交
5378 5379 5380 5381 5382
        {
            return not operator<=(other);
        }

        /// comparison: greater than or equal
N
Niels 已提交
5383
        bool operator>=(const const_iterator& other) const
N
Niels 已提交
5384 5385 5386 5387 5388
        {
            return not operator<(other);
        }

        /// add to iterator
N
Niels 已提交
5389
        const_iterator& operator+=(difference_type i)
N
Niels 已提交
5390 5391 5392
        {
            switch (m_object->m_type)
            {
5393
                case basic_json::value_t::object:
N
Niels 已提交
5394 5395 5396 5397
                {
                    throw std::domain_error("cannot use operator+= for object iterators");
                }

5398
                case basic_json::value_t::array:
N
Niels 已提交
5399 5400 5401 5402 5403 5404 5405
                {
                    m_it.array_iterator += i;
                    break;
                }

                default:
                {
5406
                    m_it.primitive_iterator += i;
N
Niels 已提交
5407 5408 5409 5410 5411 5412 5413 5414
                    break;
                }
            }

            return *this;
        }

        /// subtract from iterator
N
Niels 已提交
5415
        const_iterator& operator-=(difference_type i)
N
Niels 已提交
5416 5417 5418 5419 5420
        {
            return operator+=(-i);
        }

        /// add to iterator
N
Niels 已提交
5421
        const_iterator operator+(difference_type i)
N
Niels 已提交
5422 5423 5424 5425 5426 5427 5428
        {
            auto result = *this;
            result += i;
            return result;
        }

        /// subtract from iterator
N
Niels 已提交
5429
        const_iterator operator-(difference_type i)
N
Niels 已提交
5430 5431 5432 5433 5434 5435 5436
        {
            auto result = *this;
            result -= i;
            return result;
        }

        /// return difference
N
Niels 已提交
5437
        difference_type operator-(const const_iterator& other) const
N
Niels 已提交
5438 5439 5440
        {
            switch (m_object->m_type)
            {
5441
                case basic_json::value_t::object:
N
Niels 已提交
5442 5443 5444 5445
                {
                    throw std::domain_error("cannot use operator- for object iterators");
                }

5446
                case basic_json::value_t::array:
N
Niels 已提交
5447 5448 5449 5450 5451 5452
                {
                    return m_it.array_iterator - other.m_it.array_iterator;
                }

                default:
                {
5453
                    return m_it.primitive_iterator - other.m_it.primitive_iterator;
N
Niels 已提交
5454 5455 5456 5457 5458
                }
            }
        }

        /// access to successor
N
Niels 已提交
5459
        reference operator[](difference_type n) const
N
Niels 已提交
5460 5461 5462
        {
            switch (m_object->m_type)
            {
5463
                case basic_json::value_t::object:
N
Niels 已提交
5464 5465 5466 5467
                {
                    throw std::domain_error("cannot use operator[] for object iterators");
                }

5468
                case basic_json::value_t::array:
N
Niels 已提交
5469 5470 5471 5472
                {
                    return *(m_it.array_iterator + n);
                }

5473
                case basic_json::value_t::null:
N
Niels 已提交
5474 5475 5476 5477 5478 5479
                {
                    throw std::out_of_range("cannot get value");
                }

                default:
                {
5480
                    if (m_it.primitive_iterator == -n)
N
Niels 已提交
5481 5482 5483 5484 5485 5486 5487 5488 5489 5490 5491
                    {
                        return *m_object;
                    }
                    else
                    {
                        throw std::out_of_range("cannot get value");
                    }
                }
            }
        }

5492
        /// return the key of an object iterator
N
Niels 已提交
5493
        typename object_t::key_type key() const
N
Niels 已提交
5494
        {
N
cleanup  
Niels 已提交
5495
            if (m_object->is_object())
N
Niels 已提交
5496
            {
5497 5498 5499 5500 5501
                return m_it.object_iterator->first;
            }
            else
            {
                throw std::domain_error("cannot use key() for non-object iterators");
N
Niels 已提交
5502 5503 5504
            }
        }

N
Niels 已提交
5505 5506
        /// return the value of an iterator
        reference value() const
N
Niels 已提交
5507 5508 5509 5510
        {
            return operator*();
        }

N
Niels 已提交
5511 5512 5513 5514
      private:
        /// associated JSON instance
        pointer m_object = nullptr;
        /// the actual iterator of the associated instance
N
Niels 已提交
5515
        internal_iterator m_it = internal_iterator();
N
Niels 已提交
5516 5517
    };

N
Niels 已提交
5518 5519 5520 5521 5522 5523 5524 5525 5526 5527
    /*!
    @brief a mutable random access iterator for the @ref basic_json class

    @requirement The class satisfies the following concept requirements:
    - [RandomAccessIterator](http://en.cppreference.com/w/cpp/concept/RandomAccessIterator):
      The iterator that can be moved to point (forward and backward) to any
      element in constant time.
    - [OutputIterator](http://en.cppreference.com/w/cpp/concept/OutputIterator):
      It is possible to write to the pointed-to element.
    */
N
Niels 已提交
5528
    class iterator : public const_iterator
N
Niels 已提交
5529 5530
    {
      public:
N
Niels 已提交
5531 5532 5533
        using base_iterator = const_iterator;
        using pointer = typename basic_json::pointer;
        using reference = typename basic_json::reference;
N
Niels 已提交
5534

5535
        /// default constructor
N
Niels 已提交
5536
        iterator() = default;
5537

N
Niels 已提交
5538
        /// constructor for a given JSON instance
N
Niels 已提交
5539 5540
        iterator(pointer object) noexcept : base_iterator(object)
        {}
N
Niels 已提交
5541

N
Niels 已提交
5542
        /// copy constructor
N
Niels 已提交
5543 5544
        iterator(const iterator& other) noexcept
            : base_iterator(other)
N
Niels 已提交
5545 5546
        {}

N
Niels 已提交
5547
        /// copy assignment
N
Niels 已提交
5548
        iterator& operator=(iterator other) noexcept(
N
Niels 已提交
5549 5550
            std::is_nothrow_move_constructible<pointer>::value and
            std::is_nothrow_move_assignable<pointer>::value and
N
Niels 已提交
5551 5552
            std::is_nothrow_move_constructible<internal_iterator>::value and
            std::is_nothrow_move_assignable<internal_iterator>::value
N
Niels 已提交
5553 5554
        )
        {
N
Niels 已提交
5555
            base_iterator::operator=(other);
N
Niels 已提交
5556 5557 5558
            return *this;
        }

N
Niels 已提交
5559 5560
        /// return a reference to the value pointed to by the iterator
        reference operator*()
N
Niels 已提交
5561
        {
N
Niels 已提交
5562 5563
            return const_cast<reference>(base_iterator::operator*());
        }
N
Niels 已提交
5564

N
Niels 已提交
5565 5566 5567 5568 5569
        /// dereference the iterator
        pointer operator->()
        {
            return const_cast<pointer>(base_iterator::operator->());
        }
N
Niels 已提交
5570

N
Niels 已提交
5571 5572 5573 5574 5575 5576 5577
        /// post-increment (it++)
        iterator operator++(int)
        {
            iterator result = *this;
            base_iterator::operator++();
            return result;
        }
N
Niels 已提交
5578

N
Niels 已提交
5579 5580 5581 5582 5583
        /// pre-increment (++it)
        iterator& operator++()
        {
            base_iterator::operator++();
            return *this;
N
Niels 已提交
5584 5585
        }

N
Niels 已提交
5586 5587
        /// post-decrement (it--)
        iterator operator--(int)
N
Niels 已提交
5588
        {
N
Niels 已提交
5589 5590 5591 5592
            iterator result = *this;
            base_iterator::operator--();
            return result;
        }
N
Niels 已提交
5593

N
Niels 已提交
5594 5595 5596 5597 5598 5599
        /// pre-decrement (--it)
        iterator& operator--()
        {
            base_iterator::operator--();
            return *this;
        }
N
Niels 已提交
5600 5601

        /// add to iterator
N
Niels 已提交
5602
        iterator& operator+=(difference_type i)
N
Niels 已提交
5603
        {
N
Niels 已提交
5604
            base_iterator::operator+=(i);
N
Niels 已提交
5605 5606 5607 5608
            return *this;
        }

        /// subtract from iterator
N
Niels 已提交
5609
        iterator& operator-=(difference_type i)
N
Niels 已提交
5610
        {
N
Niels 已提交
5611 5612
            base_iterator::operator-=(i);
            return *this;
N
Niels 已提交
5613 5614 5615
        }

        /// add to iterator
N
Niels 已提交
5616
        iterator operator+(difference_type i)
N
Niels 已提交
5617 5618 5619 5620 5621 5622 5623
        {
            auto result = *this;
            result += i;
            return result;
        }

        /// subtract from iterator
N
Niels 已提交
5624
        iterator operator-(difference_type i)
N
Niels 已提交
5625 5626 5627 5628 5629 5630
        {
            auto result = *this;
            result -= i;
            return result;
        }

N
Niels 已提交
5631
        difference_type operator-(const iterator& other) const
N
Niels 已提交
5632
        {
N
Niels 已提交
5633
            return base_iterator::operator-(other);
N
Niels 已提交
5634 5635 5636
        }

        /// access to successor
N
Niels 已提交
5637
        reference operator[](difference_type n) const
N
Niels 已提交
5638
        {
N
Niels 已提交
5639
            return const_cast<reference>(base_iterator::operator[](n));
N
Niels 已提交
5640 5641
        }

5642
        /// return the value of an iterator
N
Niels 已提交
5643
        reference value() const
N
Niels 已提交
5644
        {
N
Niels 已提交
5645
            return const_cast<reference>(base_iterator::value());
N
Niels 已提交
5646
        }
N
Niels 已提交
5647 5648
    };

N
Niels 已提交
5649 5650 5651 5652 5653 5654 5655 5656 5657 5658 5659 5660 5661 5662 5663
    /*!
    @brief a template for a reverse iterator class

    @tparam Base the base iterator type to reverse. Valid types are @ref
    iterator (to create @ref reverse_iterator) and @ref const_iterator (to
    create @ref const_reverse_iterator).

    @requirement The class satisfies the following concept requirements:
    - [RandomAccessIterator](http://en.cppreference.com/w/cpp/concept/RandomAccessIterator):
      The iterator that can be moved to point (forward and backward) to any
      element in constant time.
    - [OutputIterator](http://en.cppreference.com/w/cpp/concept/OutputIterator):
      It is possible to write to the pointed-to element (only if @a Base is
      @ref iterator).
    */
N
Niels 已提交
5664 5665
    template<typename Base>
    class json_reverse_iterator : public std::reverse_iterator<Base>
5666 5667
    {
      public:
5668
        /// shortcut to the reverse iterator adaptor
N
Niels 已提交
5669
        using base_iterator = std::reverse_iterator<Base>;
N
Niels 已提交
5670
        /// the reference type for the pointed-to element
N
Niels 已提交
5671
        using reference = typename Base::reference;
5672

5673
        /// create reverse iterator from iterator
N
Niels 已提交
5674
        json_reverse_iterator(const typename base_iterator::iterator_type& it)
5675 5676 5677
            : base_iterator(it) {}

        /// create reverse iterator from base class
N
Niels 已提交
5678
        json_reverse_iterator(const base_iterator& it) : base_iterator(it) {}
5679 5680

        /// post-increment (it++)
N
Niels 已提交
5681
        json_reverse_iterator operator++(int)
5682 5683 5684 5685 5686
        {
            return base_iterator::operator++(1);
        }

        /// pre-increment (++it)
N
Niels 已提交
5687
        json_reverse_iterator& operator++()
5688 5689 5690 5691 5692 5693
        {
            base_iterator::operator++();
            return *this;
        }

        /// post-decrement (it--)
N
Niels 已提交
5694
        json_reverse_iterator operator--(int)
5695 5696 5697 5698 5699
        {
            return base_iterator::operator--(1);
        }

        /// pre-decrement (--it)
N
Niels 已提交
5700
        json_reverse_iterator& operator--()
5701 5702 5703 5704 5705 5706
        {
            base_iterator::operator--();
            return *this;
        }

        /// add to iterator
N
Niels 已提交
5707
        json_reverse_iterator& operator+=(difference_type i)
5708 5709 5710 5711 5712 5713
        {
            base_iterator::operator+=(i);
            return *this;
        }

        /// add to iterator
N
Niels 已提交
5714
        json_reverse_iterator operator+(difference_type i) const
5715 5716 5717 5718 5719 5720 5721
        {
            auto result = *this;
            result += i;
            return result;
        }

        /// subtract from iterator
N
Niels 已提交
5722
        json_reverse_iterator operator-(difference_type i) const
5723 5724 5725 5726 5727 5728 5729
        {
            auto result = *this;
            result -= i;
            return result;
        }

        /// return difference
N
Niels 已提交
5730
        difference_type operator-(const json_reverse_iterator& other) const
5731 5732 5733 5734 5735 5736 5737 5738 5739
        {
            return this->base() - other.base();
        }

        /// access to successor
        reference operator[](difference_type n) const
        {
            return *(this->operator+(n));
        }
N
Niels 已提交
5740

5741
        /// return the key of an object iterator
N
Niels 已提交
5742
        typename object_t::key_type key() const
5743
        {
N
Niels 已提交
5744 5745
            auto it = --this->base();
            return it.key();
5746 5747 5748
        }

        /// return the value of an iterator
N
Niels 已提交
5749
        reference value() const
5750
        {
N
Niels 已提交
5751 5752
            auto it = --this->base();
            return it.operator * ();
5753 5754 5755
        }
    };

N
Niels 已提交
5756 5757 5758
    /*!
    @brief wrapper to access iterator member functions in range-based for

N
Niels 已提交
5759 5760 5761
    This class allows to access @ref iterator::key() and @ref iterator::value()
    during range-based for loops. In these loops, a reference to the JSON
    values is returned, so there is no access to the underlying iterator.
N
Niels 已提交
5762 5763 5764 5765 5766 5767 5768
    */
    class iterator_wrapper
    {
      private:
        /// the container to iterate
        basic_json& container;
        /// the type of the iterator to use while iteration
N
Niels 已提交
5769
        using json_iterator = decltype(std::begin(container));
N
Niels 已提交
5770 5771 5772 5773 5774 5775 5776 5777 5778 5779 5780 5781

        /// internal iterator wrapper
        class iterator_wrapper_internal
        {
          private:
            /// the iterator
            json_iterator anchor;
            /// an index for arrays
            size_t array_index = 0;

          public:
            /// construct wrapper given an iterator
N
Niels 已提交
5782
            iterator_wrapper_internal(json_iterator i) : anchor(i)
N
Niels 已提交
5783 5784 5785
            {}

            /// dereference operator (needed for range-based for)
N
Niels 已提交
5786
            iterator_wrapper_internal& operator*()
N
Niels 已提交
5787 5788 5789 5790 5791
            {
                return *this;
            }

            /// increment operator (needed for range-based for)
N
Niels 已提交
5792
            iterator_wrapper_internal& operator++()
N
Niels 已提交
5793 5794 5795 5796 5797 5798 5799 5800 5801 5802 5803 5804 5805 5806 5807 5808
            {
                ++anchor;
                ++array_index;

                return *this;
            }

            /// inequality operator (needed for range-based for)
            bool operator!= (const iterator_wrapper_internal& o)
            {
                return anchor != o.anchor;
            }

            /// return key of the iterator
            typename basic_json::string_t key() const
            {
N
Niels 已提交
5809 5810 5811
                switch (anchor.m_object->type())
                {
                    /// use integer array index as key
5812
                    case value_t::array:
N
Niels 已提交
5813 5814 5815 5816 5817
                    {
                        return std::to_string(array_index);
                    }

                    /// use key from the object
5818
                    case value_t::object:
N
Niels 已提交
5819 5820 5821 5822 5823 5824 5825 5826 5827 5828
                    {
                        return anchor.key();
                    }

                    /// use an empty key for all primitive types
                    default:
                    {
                        return "";
                    }
                }
N
Niels 已提交
5829 5830 5831
            }

            /// return value of the iterator
N
Niels 已提交
5832
            typename json_iterator::reference value() const
N
Niels 已提交
5833
            {
N
Niels 已提交
5834
                return anchor.value();
N
Niels 已提交
5835 5836 5837 5838 5839 5840 5841 5842 5843 5844 5845 5846
            }
        };

      public:
        /// construct iterator wrapper from a container
        iterator_wrapper(basic_json& cont)
            : container(cont)
        {}

        /// return iterator begin (needed for range-based for)
        iterator_wrapper_internal begin()
        {
N
Niels 已提交
5847
            return iterator_wrapper_internal(container.begin());
N
Niels 已提交
5848 5849 5850 5851 5852
        }

        /// return iterator end (needed for range-based for)
        iterator_wrapper_internal end()
        {
N
Niels 已提交
5853
            return iterator_wrapper_internal(container.end());
N
Niels 已提交
5854 5855 5856
        }
    };

N
Niels 已提交
5857
  private:
N
Niels 已提交
5858 5859 5860
    //////////////////////
    // lexer and parser //
    //////////////////////
N
Niels 已提交
5861

N
Niels 已提交
5862 5863 5864 5865 5866
    /*!
    @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
5867
    a buffer and recognizes tokens according to RFC 7159.
N
Niels 已提交
5868
    */
N
Niels 已提交
5869
    class lexer
N
Niels 已提交
5870
    {
N
Niels 已提交
5871
      public:
N
Niels 已提交
5872 5873 5874
        /// token types for the parser
        enum class token_type
        {
N
Niels 已提交
5875 5876 5877 5878 5879 5880 5881 5882 5883 5884 5885 5886 5887 5888
            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
Niels 已提交
5889 5890
        };

N
Niels 已提交
5891
        /// the char type to use in the lexer
N
Niels 已提交
5892
        using lexer_char_t = unsigned char;
N
Niels 已提交
5893

N
Niels 已提交
5894
        /// constructor with a given buffer
N
Niels 已提交
5895
        explicit lexer(const string_t& s) noexcept
N
Niels 已提交
5896
            : m_stream(nullptr), m_buffer(s)
N
Niels 已提交
5897
        {
N
Niels 已提交
5898
            m_content = reinterpret_cast<const lexer_char_t*>(s.c_str());
N
Niels 已提交
5899
            m_start = m_cursor = m_content;
N
Niels 已提交
5900
            m_limit = m_content + s.size();
N
Niels 已提交
5901
        }
N
Niels 已提交
5902
        explicit lexer(std::istream* s) noexcept
N
Niels 已提交
5903
            : m_stream(s), m_buffer()
N
Niels 已提交
5904 5905 5906 5907 5908 5909
        {
            getline(*m_stream, m_buffer);
            m_content = reinterpret_cast<const lexer_char_t*>(m_buffer.c_str());
            m_start = m_cursor = m_content;
            m_limit = m_content + m_buffer.size();
        }
N
Niels 已提交
5910

N
Niels 已提交
5911
        /// default constructor
N
Niels 已提交
5912
        lexer() = default;
N
Niels 已提交
5913

N
Niels 已提交
5914 5915 5916 5917
        // switch of unwanted functions
        lexer(const lexer&) = delete;
        lexer operator=(const lexer&) = delete;

N
Niels 已提交
5918 5919 5920
        /*!
        @brief create a string from a Unicode code point

N
Niels 已提交
5921 5922
        @param[in] codepoint1  the code point (can be high surrogate)
        @param[in] codepoint2  the code point (can be low surrogate or 0)
N
Niels 已提交
5923
        @return string representation of the code point
N
Niels 已提交
5924 5925
        @throw std::out_of_range if code point is >0x10ffff
        @throw std::invalid_argument if the low surrogate is invalid
N
Niels 已提交
5926 5927 5928

        @see <http://en.wikipedia.org/wiki/UTF-8#Sample_code>
        */
N
Niels 已提交
5929 5930
        static string_t to_unicode(const std::size_t codepoint1,
                                   const std::size_t codepoint2 = 0)
N
Niels 已提交
5931
        {
N
Niels 已提交
5932
            string_t result;
N
Niels 已提交
5933

N
Niels 已提交
5934
            // calculate the codepoint from the given code points
N
Niels 已提交
5935
            std::size_t codepoint = codepoint1;
N
Niels 已提交
5936 5937

            // check if codepoint1 is a high surrogate
N
Niels 已提交
5938 5939
            if (codepoint1 >= 0xD800 and codepoint1 <= 0xDBFF)
            {
N
Niels 已提交
5940
                // check if codepoint2 is a low surrogate
N
Niels 已提交
5941 5942 5943 5944 5945 5946 5947 5948 5949 5950 5951 5952 5953 5954 5955 5956 5957 5958
                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");
                }
            }

N
Niels 已提交
5959
            if (codepoint < 0x80)
N
Niels 已提交
5960
            {
N
Niels 已提交
5961
                // 1-byte characters: 0xxxxxxx (ASCII)
N
Niels 已提交
5962
                result.append(1, static_cast<typename string_t::value_type>(codepoint));
N
Niels 已提交
5963 5964 5965 5966
            }
            else if (codepoint <= 0x7ff)
            {
                // 2-byte characters: 110xxxxx 10xxxxxx
N
Niels 已提交
5967 5968
                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)));
N
Niels 已提交
5969 5970 5971 5972
            }
            else if (codepoint <= 0xffff)
            {
                // 3-byte characters: 1110xxxx 10xxxxxx 10xxxxxx
N
Niels 已提交
5973 5974 5975
                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)));
N
Niels 已提交
5976 5977 5978 5979
            }
            else if (codepoint <= 0x10ffff)
            {
                // 4-byte characters: 11110xxx 10xxxxxx 10xxxxxx 10xxxxxx
N
Niels 已提交
5980 5981 5982 5983
                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)));
N
Niels 已提交
5984 5985 5986
            }
            else
            {
N
Niels 已提交
5987
                throw std::out_of_range("code points above 0x10FFFF are invalid");
N
Niels 已提交
5988 5989 5990 5991 5992
            }

            return result;
        }

N
Niels 已提交
5993
        /// return name of values of type token_type
N
Niels 已提交
5994
        static std::string token_type_name(token_type t)
N
cleanup  
Niels 已提交
5995 5996 5997
        {
            switch (t)
            {
5998
                case token_type::uninitialized:
N
cleanup  
Niels 已提交
5999
                    return "<uninitialized>";
6000
                case token_type::literal_true:
N
cleanup  
Niels 已提交
6001
                    return "true literal";
6002
                case token_type::literal_false:
N
cleanup  
Niels 已提交
6003
                    return "false literal";
6004
                case token_type::literal_null:
N
cleanup  
Niels 已提交
6005
                    return "null literal";
6006
                case token_type::value_string:
N
cleanup  
Niels 已提交
6007
                    return "string literal";
6008
                case token_type::value_number:
N
cleanup  
Niels 已提交
6009
                    return "number literal";
6010
                case token_type::begin_array:
N
cleanup  
Niels 已提交
6011
                    return "[";
6012
                case token_type::begin_object:
N
cleanup  
Niels 已提交
6013
                    return "{";
6014
                case token_type::end_array:
N
cleanup  
Niels 已提交
6015
                    return "]";
6016
                case token_type::end_object:
N
cleanup  
Niels 已提交
6017
                    return "}";
6018
                case token_type::name_separator:
N
cleanup  
Niels 已提交
6019
                    return ":";
6020
                case token_type::value_separator:
N
cleanup  
Niels 已提交
6021
                    return ",";
6022
                case token_type::end_of_input:
N
cleanup  
Niels 已提交
6023
                    return "<end of input>";
6024
                case token_type::parse_error:
N
Niels 已提交
6025
                    return "<parse error>";
N
cleanup  
Niels 已提交
6026 6027 6028
            }
        }

N
fixes  
Niels 已提交
6029 6030
        /*!
        This function implements a scanner for JSON. It is specified using
6031 6032 6033 6034 6035
        regular expressions that try to follow RFC 7159 as close as possible.
        These regular expressions are then translated into a 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  
Niels 已提交
6036 6037 6038

        @return the class of the next token read from the buffer
        */
N
Niels 已提交
6039
        token_type scan() noexcept
N
Niels 已提交
6040
        {
N
cleanup  
Niels 已提交
6041
            // pointer for backtracking information
N
Niels 已提交
6042
            m_marker = nullptr;
N
Niels 已提交
6043 6044 6045 6046 6047

            // remember the begin of the token
            m_start = m_cursor;


N
Niels 已提交
6048 6049 6050 6051 6052 6053 6054 6055 6056 6057 6058 6059 6060 6061 6062 6063 6064 6065 6066 6067 6068 6069 6070 6071 6072 6073 6074 6075 6076 6077 6078 6079 6080 6081 6082 6083 6084 6085 6086 6087 6088
            {
                lexer_char_t yych;
                unsigned int yyaccept = 0;
                static const unsigned char yybm[] =
                {
                    0,   0,   0,   0,   0,   0,   0,   0,
                    0,  32,  32,   0,   0,  32,   0,   0,
                    64,  64,  64,  64,  64,  64,  64,  64,
                    64,  64,  64,  64,  64,  64,  64,  64,
                    96,  64,   0,  64,  64,  64,  64,  64,
                    64,  64,  64,  64,  64,  64,  64,  64,
                    192, 192, 192, 192, 192, 192, 192, 192,
                    192, 192,  64,  64,  64,  64,  64,  64,
                    64,  64,  64,  64,  64,  64,  64,  64,
                    64,  64,  64,  64,  64,  64,  64,  64,
                    64,  64,  64,  64,  64,  64,  64,  64,
                    64,  64,  64,  64,   0,  64,  64,  64,
                    64,  64,  64,  64,  64,  64,  64,  64,
                    64,  64,  64,  64,  64,  64,  64,  64,
                    64,  64,  64,  64,  64,  64,  64,  64,
                    64,  64,  64,  64,  64,  64,  64,  64,
                    64,  64,  64,  64,  64,  64,  64,  64,
                    64,  64,  64,  64,  64,  64,  64,  64,
                    64,  64,  64,  64,  64,  64,  64,  64,
                    64,  64,  64,  64,  64,  64,  64,  64,
                    64,  64,  64,  64,  64,  64,  64,  64,
                    64,  64,  64,  64,  64,  64,  64,  64,
                    64,  64,  64,  64,  64,  64,  64,  64,
                    64,  64,  64,  64,  64,  64,  64,  64,
                    64,  64,  64,  64,  64,  64,  64,  64,
                    64,  64,  64,  64,  64,  64,  64,  64,
                    64,  64,  64,  64,  64,  64,  64,  64,
                    64,  64,  64,  64,  64,  64,  64,  64,
                    64,  64,  64,  64,  64,  64,  64,  64,
                    64,  64,  64,  64,  64,  64,  64,  64,
                    64,  64,  64,  64,  64,  64,  64,  64,
                    64,  64,  64,  64,  64,  64,  64,  64,
                };
                if ((m_limit - m_cursor) < 5)
                {
                    yyfill();    // LCOV_EXCL_LINE;
N
Niels 已提交
6089
                }
N
Niels 已提交
6090
                yych = *m_cursor;
N
Niels 已提交
6091
                if (yych <= ':')
N
Niels 已提交
6092 6093 6094 6095 6096 6097 6098
                {
                    if (yych <= ' ')
                    {
                        if (yych <= '\n')
                        {
                            if (yych <= 0x00)
                            {
N
Niels 已提交
6099
                                goto basic_json_parser_28;
N
Niels 已提交
6100 6101 6102
                            }
                            if (yych <= 0x08)
                            {
N
Niels 已提交
6103
                                goto basic_json_parser_30;
N
Niels 已提交
6104 6105 6106 6107 6108 6109 6110 6111 6112 6113 6114 6115 6116 6117
                            }
                            if (yych >= '\n')
                            {
                                goto basic_json_parser_4;
                            }
                        }
                        else
                        {
                            if (yych == '\r')
                            {
                                goto basic_json_parser_2;
                            }
                            if (yych <= 0x1F)
                            {
N
Niels 已提交
6118
                                goto basic_json_parser_30;
N
Niels 已提交
6119 6120 6121 6122 6123 6124 6125 6126 6127
                            }
                        }
                    }
                    else
                    {
                        if (yych <= ',')
                        {
                            if (yych == '"')
                            {
N
Niels 已提交
6128
                                goto basic_json_parser_27;
N
Niels 已提交
6129 6130 6131
                            }
                            if (yych <= '+')
                            {
N
Niels 已提交
6132
                                goto basic_json_parser_30;
N
Niels 已提交
6133
                            }
N
Niels 已提交
6134
                            goto basic_json_parser_16;
N
Niels 已提交
6135 6136 6137 6138 6139
                        }
                        else
                        {
                            if (yych <= '/')
                            {
N
Niels 已提交
6140 6141 6142 6143 6144
                                if (yych <= '-')
                                {
                                    goto basic_json_parser_23;
                                }
                                goto basic_json_parser_30;
N
Niels 已提交
6145
                            }
N
Niels 已提交
6146
                            else
N
Niels 已提交
6147
                            {
N
Niels 已提交
6148 6149 6150 6151 6152 6153 6154 6155 6156
                                if (yych <= '0')
                                {
                                    goto basic_json_parser_24;
                                }
                                if (yych <= '9')
                                {
                                    goto basic_json_parser_26;
                                }
                                goto basic_json_parser_18;
N
Niels 已提交
6157 6158 6159 6160 6161 6162
                            }
                        }
                    }
                }
                else
                {
N
Niels 已提交
6163
                    if (yych <= 'n')
N
Niels 已提交
6164
                    {
N
Niels 已提交
6165
                        if (yych <= ']')
N
Niels 已提交
6166
                        {
N
Niels 已提交
6167
                            if (yych == '[')
N
Niels 已提交
6168
                            {
N
Niels 已提交
6169
                                goto basic_json_parser_8;
N
Niels 已提交
6170
                            }
N
Niels 已提交
6171
                            if (yych <= '\\')
N
Niels 已提交
6172
                            {
N
Niels 已提交
6173
                                goto basic_json_parser_30;
N
Niels 已提交
6174
                            }
N
Niels 已提交
6175
                            goto basic_json_parser_10;
N
Niels 已提交
6176 6177 6178
                        }
                        else
                        {
N
Niels 已提交
6179
                            if (yych == 'f')
N
Niels 已提交
6180
                            {
N
Niels 已提交
6181
                                goto basic_json_parser_22;
N
Niels 已提交
6182
                            }
N
Niels 已提交
6183
                            if (yych <= 'm')
N
Niels 已提交
6184
                            {
N
Niels 已提交
6185
                                goto basic_json_parser_30;
N
Niels 已提交
6186
                            }
N
Niels 已提交
6187
                            goto basic_json_parser_20;
N
Niels 已提交
6188 6189 6190 6191
                        }
                    }
                    else
                    {
N
Niels 已提交
6192
                        if (yych <= '{')
N
Niels 已提交
6193
                        {
N
Niels 已提交
6194
                            if (yych == 't')
N
Niels 已提交
6195
                            {
N
Niels 已提交
6196
                                goto basic_json_parser_21;
N
Niels 已提交
6197
                            }
N
Niels 已提交
6198
                            if (yych <= 'z')
N
Niels 已提交
6199
                            {
N
Niels 已提交
6200
                                goto basic_json_parser_30;
N
Niels 已提交
6201
                            }
N
Niels 已提交
6202
                            goto basic_json_parser_12;
N
Niels 已提交
6203 6204 6205
                        }
                        else
                        {
N
Niels 已提交
6206
                            if (yych <= '}')
N
Niels 已提交
6207
                            {
N
Niels 已提交
6208 6209 6210 6211 6212
                                if (yych <= '|')
                                {
                                    goto basic_json_parser_30;
                                }
                                goto basic_json_parser_14;
N
Niels 已提交
6213
                            }
N
Niels 已提交
6214
                            else
N
Niels 已提交
6215
                            {
N
Niels 已提交
6216 6217 6218 6219 6220
                                if (yych == 0xEF)
                                {
                                    goto basic_json_parser_6;
                                }
                                goto basic_json_parser_30;
N
Niels 已提交
6221 6222 6223
                            }
                        }
                    }
N
Niels 已提交
6224 6225
                }
basic_json_parser_2:
N
Niels 已提交
6226 6227 6228
                ++m_cursor;
                yych = *m_cursor;
                goto basic_json_parser_5;
N
Niels 已提交
6229
basic_json_parser_3:
N
Niels 已提交
6230 6231 6232
                {
                    return scan();
                }
N
Niels 已提交
6233
basic_json_parser_4:
N
Niels 已提交
6234 6235 6236 6237 6238 6239
                ++m_cursor;
                if (m_limit <= m_cursor)
                {
                    yyfill();    // LCOV_EXCL_LINE;
                }
                yych = *m_cursor;
N
Niels 已提交
6240
basic_json_parser_5:
N
Niels 已提交
6241 6242 6243 6244 6245
                if (yybm[0 + yych] & 32)
                {
                    goto basic_json_parser_4;
                }
                goto basic_json_parser_3;
N
Niels 已提交
6246
basic_json_parser_6:
N
Niels 已提交
6247 6248 6249 6250 6251 6252 6253 6254 6255 6256 6257
                yyaccept = 0;
                yych = *(m_marker = ++m_cursor);
                if (yych == 0xBB)
                {
                    goto basic_json_parser_64;
                }
basic_json_parser_7:
                {
                    return token_type::parse_error;
                }
basic_json_parser_8:
N
Niels 已提交
6258 6259 6260 6261
                ++m_cursor;
                {
                    return token_type::begin_array;
                }
N
Niels 已提交
6262
basic_json_parser_10:
N
Niels 已提交
6263 6264 6265 6266
                ++m_cursor;
                {
                    return token_type::end_array;
                }
N
Niels 已提交
6267
basic_json_parser_12:
N
Niels 已提交
6268 6269 6270 6271
                ++m_cursor;
                {
                    return token_type::begin_object;
                }
N
Niels 已提交
6272
basic_json_parser_14:
N
Niels 已提交
6273 6274 6275 6276
                ++m_cursor;
                {
                    return token_type::end_object;
                }
N
Niels 已提交
6277
basic_json_parser_16:
N
Niels 已提交
6278 6279 6280 6281
                ++m_cursor;
                {
                    return token_type::value_separator;
                }
N
Niels 已提交
6282
basic_json_parser_18:
N
Niels 已提交
6283 6284 6285 6286
                ++m_cursor;
                {
                    return token_type::name_separator;
                }
N
Niels 已提交
6287
basic_json_parser_20:
N
Niels 已提交
6288 6289 6290 6291
                yyaccept = 0;
                yych = *(m_marker = ++m_cursor);
                if (yych == 'u')
                {
N
Niels 已提交
6292
                    goto basic_json_parser_60;
N
Niels 已提交
6293
                }
N
Niels 已提交
6294 6295
                goto basic_json_parser_7;
basic_json_parser_21:
N
Niels 已提交
6296 6297 6298 6299
                yyaccept = 0;
                yych = *(m_marker = ++m_cursor);
                if (yych == 'r')
                {
N
Niels 已提交
6300
                    goto basic_json_parser_56;
N
Niels 已提交
6301
                }
N
Niels 已提交
6302 6303
                goto basic_json_parser_7;
basic_json_parser_22:
N
Niels 已提交
6304 6305 6306 6307
                yyaccept = 0;
                yych = *(m_marker = ++m_cursor);
                if (yych == 'a')
                {
N
Niels 已提交
6308
                    goto basic_json_parser_51;
N
Niels 已提交
6309
                }
N
Niels 已提交
6310 6311
                goto basic_json_parser_7;
basic_json_parser_23:
N
Niels 已提交
6312 6313 6314
                yych = *++m_cursor;
                if (yych <= '/')
                {
N
Niels 已提交
6315
                    goto basic_json_parser_7;
N
Niels 已提交
6316 6317 6318
                }
                if (yych <= '0')
                {
N
Niels 已提交
6319
                    goto basic_json_parser_50;
N
Niels 已提交
6320 6321 6322
                }
                if (yych <= '9')
                {
N
Niels 已提交
6323
                    goto basic_json_parser_41;
N
Niels 已提交
6324
                }
N
Niels 已提交
6325 6326
                goto basic_json_parser_7;
basic_json_parser_24:
N
Niels 已提交
6327 6328 6329 6330 6331 6332
                yyaccept = 1;
                yych = *(m_marker = ++m_cursor);
                if (yych <= 'D')
                {
                    if (yych == '.')
                    {
N
Niels 已提交
6333
                        goto basic_json_parser_43;
N
Niels 已提交
6334 6335 6336 6337 6338 6339
                    }
                }
                else
                {
                    if (yych <= 'E')
                    {
N
Niels 已提交
6340
                        goto basic_json_parser_44;
N
Niels 已提交
6341 6342 6343
                    }
                    if (yych == 'e')
                    {
N
Niels 已提交
6344
                        goto basic_json_parser_44;
N
Niels 已提交
6345 6346
                    }
                }
N
Niels 已提交
6347
basic_json_parser_25:
N
Niels 已提交
6348 6349 6350
                {
                    return token_type::value_number;
                }
N
Niels 已提交
6351
basic_json_parser_26:
N
Niels 已提交
6352 6353
                yyaccept = 1;
                yych = *(m_marker = ++m_cursor);
N
Niels 已提交
6354 6355
                goto basic_json_parser_42;
basic_json_parser_27:
N
Niels 已提交
6356 6357 6358 6359
                yyaccept = 0;
                yych = *(m_marker = ++m_cursor);
                if (yych <= 0x0F)
                {
N
Niels 已提交
6360
                    goto basic_json_parser_7;
N
Niels 已提交
6361
                }
N
Niels 已提交
6362 6363
                goto basic_json_parser_32;
basic_json_parser_28:
N
Niels 已提交
6364 6365 6366 6367
                ++m_cursor;
                {
                    return token_type::end_of_input;
                }
N
Niels 已提交
6368
basic_json_parser_30:
N
Niels 已提交
6369 6370 6371
                yych = *++m_cursor;
                goto basic_json_parser_7;
basic_json_parser_31:
N
Niels 已提交
6372 6373 6374 6375 6376 6377
                ++m_cursor;
                if (m_limit <= m_cursor)
                {
                    yyfill();    // LCOV_EXCL_LINE;
                }
                yych = *m_cursor;
N
Niels 已提交
6378
basic_json_parser_32:
N
Niels 已提交
6379 6380
                if (yybm[0 + yych] & 64)
                {
N
Niels 已提交
6381
                    goto basic_json_parser_31;
N
Niels 已提交
6382
                }
N
Niels 已提交
6383 6384
                if (yych <= 0x0F)
                {
N
Niels 已提交
6385
                    goto basic_json_parser_33;
N
Niels 已提交
6386
                }
N
Niels 已提交
6387 6388
                if (yych <= '"')
                {
N
Niels 已提交
6389
                    goto basic_json_parser_35;
N
Niels 已提交
6390
                }
N
Niels 已提交
6391 6392
                goto basic_json_parser_34;
basic_json_parser_33:
N
Niels 已提交
6393 6394 6395
                m_cursor = m_marker;
                if (yyaccept == 0)
                {
N
Niels 已提交
6396
                    goto basic_json_parser_7;
N
Niels 已提交
6397 6398 6399
                }
                else
                {
N
Niels 已提交
6400
                    goto basic_json_parser_25;
N
Niels 已提交
6401
                }
N
Niels 已提交
6402
basic_json_parser_34:
N
Niels 已提交
6403 6404 6405 6406 6407 6408 6409 6410 6411 6412 6413 6414
                ++m_cursor;
                if (m_limit <= m_cursor)
                {
                    yyfill();    // LCOV_EXCL_LINE;
                }
                yych = *m_cursor;
                if (yych <= 'e')
                {
                    if (yych <= '/')
                    {
                        if (yych == '"')
                        {
N
Niels 已提交
6415
                            goto basic_json_parser_31;
N
Niels 已提交
6416 6417 6418
                        }
                        if (yych <= '.')
                        {
N
Niels 已提交
6419
                            goto basic_json_parser_33;
N
Niels 已提交
6420
                        }
N
Niels 已提交
6421
                        goto basic_json_parser_31;
N
Niels 已提交
6422 6423 6424 6425 6426 6427 6428
                    }
                    else
                    {
                        if (yych <= '\\')
                        {
                            if (yych <= '[')
                            {
N
Niels 已提交
6429
                                goto basic_json_parser_33;
N
Niels 已提交
6430
                            }
N
Niels 已提交
6431
                            goto basic_json_parser_31;
N
Niels 已提交
6432 6433 6434 6435 6436
                        }
                        else
                        {
                            if (yych == 'b')
                            {
N
Niels 已提交
6437
                                goto basic_json_parser_31;
N
Niels 已提交
6438
                            }
N
Niels 已提交
6439
                            goto basic_json_parser_33;
N
Niels 已提交
6440 6441 6442 6443 6444 6445 6446 6447 6448
                        }
                    }
                }
                else
                {
                    if (yych <= 'q')
                    {
                        if (yych <= 'f')
                        {
N
Niels 已提交
6449
                            goto basic_json_parser_31;
N
Niels 已提交
6450 6451 6452
                        }
                        if (yych == 'n')
                        {
N
Niels 已提交
6453
                            goto basic_json_parser_31;
N
Niels 已提交
6454
                        }
N
Niels 已提交
6455
                        goto basic_json_parser_33;
N
Niels 已提交
6456 6457 6458 6459 6460 6461 6462
                    }
                    else
                    {
                        if (yych <= 's')
                        {
                            if (yych <= 'r')
                            {
N
Niels 已提交
6463
                                goto basic_json_parser_31;
N
Niels 已提交
6464
                            }
N
Niels 已提交
6465
                            goto basic_json_parser_33;
N
Niels 已提交
6466 6467 6468 6469 6470
                        }
                        else
                        {
                            if (yych <= 't')
                            {
N
Niels 已提交
6471
                                goto basic_json_parser_31;
N
Niels 已提交
6472 6473 6474
                            }
                            if (yych <= 'u')
                            {
N
Niels 已提交
6475
                                goto basic_json_parser_37;
N
Niels 已提交
6476
                            }
N
Niels 已提交
6477
                            goto basic_json_parser_33;
N
Niels 已提交
6478 6479 6480
                        }
                    }
                }
N
Niels 已提交
6481
basic_json_parser_35:
N
Niels 已提交
6482 6483 6484 6485
                ++m_cursor;
                {
                    return token_type::value_string;
                }
N
Niels 已提交
6486
basic_json_parser_37:
N
Niels 已提交
6487 6488 6489 6490 6491 6492 6493 6494 6495 6496
                ++m_cursor;
                if (m_limit <= m_cursor)
                {
                    yyfill();    // LCOV_EXCL_LINE;
                }
                yych = *m_cursor;
                if (yych <= '@')
                {
                    if (yych <= '/')
                    {
N
Niels 已提交
6497
                        goto basic_json_parser_33;
N
Niels 已提交
6498 6499 6500
                    }
                    if (yych >= ':')
                    {
N
Niels 已提交
6501
                        goto basic_json_parser_33;
N
Niels 已提交
6502 6503 6504 6505 6506 6507
                    }
                }
                else
                {
                    if (yych <= 'F')
                    {
N
Niels 已提交
6508
                        goto basic_json_parser_38;
N
Niels 已提交
6509 6510 6511
                    }
                    if (yych <= '`')
                    {
N
Niels 已提交
6512
                        goto basic_json_parser_33;
N
Niels 已提交
6513 6514 6515
                    }
                    if (yych >= 'g')
                    {
N
Niels 已提交
6516
                        goto basic_json_parser_33;
N
Niels 已提交
6517 6518
                    }
                }
N
Niels 已提交
6519
basic_json_parser_38:
N
Niels 已提交
6520 6521 6522 6523 6524 6525 6526 6527 6528 6529
                ++m_cursor;
                if (m_limit <= m_cursor)
                {
                    yyfill();    // LCOV_EXCL_LINE;
                }
                yych = *m_cursor;
                if (yych <= '@')
                {
                    if (yych <= '/')
                    {
N
Niels 已提交
6530
                        goto basic_json_parser_33;
N
Niels 已提交
6531 6532 6533
                    }
                    if (yych >= ':')
                    {
N
Niels 已提交
6534
                        goto basic_json_parser_33;
N
Niels 已提交
6535 6536 6537 6538 6539 6540
                    }
                }
                else
                {
                    if (yych <= 'F')
                    {
N
Niels 已提交
6541
                        goto basic_json_parser_39;
N
Niels 已提交
6542 6543 6544
                    }
                    if (yych <= '`')
                    {
N
Niels 已提交
6545
                        goto basic_json_parser_33;
N
Niels 已提交
6546 6547 6548
                    }
                    if (yych >= 'g')
                    {
N
Niels 已提交
6549
                        goto basic_json_parser_33;
N
Niels 已提交
6550 6551
                    }
                }
N
Niels 已提交
6552
basic_json_parser_39:
N
Niels 已提交
6553 6554 6555 6556 6557 6558 6559 6560 6561 6562
                ++m_cursor;
                if (m_limit <= m_cursor)
                {
                    yyfill();    // LCOV_EXCL_LINE;
                }
                yych = *m_cursor;
                if (yych <= '@')
                {
                    if (yych <= '/')
                    {
N
Niels 已提交
6563
                        goto basic_json_parser_33;
N
Niels 已提交
6564 6565 6566
                    }
                    if (yych >= ':')
                    {
N
Niels 已提交
6567
                        goto basic_json_parser_33;
N
Niels 已提交
6568 6569 6570 6571 6572 6573
                    }
                }
                else
                {
                    if (yych <= 'F')
                    {
N
Niels 已提交
6574
                        goto basic_json_parser_40;
N
Niels 已提交
6575 6576 6577
                    }
                    if (yych <= '`')
                    {
N
Niels 已提交
6578
                        goto basic_json_parser_33;
N
Niels 已提交
6579 6580 6581
                    }
                    if (yych >= 'g')
                    {
N
Niels 已提交
6582
                        goto basic_json_parser_33;
N
Niels 已提交
6583 6584
                    }
                }
N
Niels 已提交
6585
basic_json_parser_40:
N
Niels 已提交
6586 6587 6588 6589 6590 6591 6592 6593 6594 6595
                ++m_cursor;
                if (m_limit <= m_cursor)
                {
                    yyfill();    // LCOV_EXCL_LINE;
                }
                yych = *m_cursor;
                if (yych <= '@')
                {
                    if (yych <= '/')
                    {
N
Niels 已提交
6596
                        goto basic_json_parser_33;
N
Niels 已提交
6597 6598 6599
                    }
                    if (yych <= '9')
                    {
N
Niels 已提交
6600
                        goto basic_json_parser_31;
N
Niels 已提交
6601
                    }
N
Niels 已提交
6602
                    goto basic_json_parser_33;
N
Niels 已提交
6603 6604 6605 6606 6607
                }
                else
                {
                    if (yych <= 'F')
                    {
N
Niels 已提交
6608
                        goto basic_json_parser_31;
N
Niels 已提交
6609 6610 6611
                    }
                    if (yych <= '`')
                    {
N
Niels 已提交
6612
                        goto basic_json_parser_33;
N
Niels 已提交
6613 6614 6615
                    }
                    if (yych <= 'f')
                    {
N
Niels 已提交
6616
                        goto basic_json_parser_31;
N
Niels 已提交
6617
                    }
N
Niels 已提交
6618
                    goto basic_json_parser_33;
N
Niels 已提交
6619
                }
N
Niels 已提交
6620
basic_json_parser_41:
N
Niels 已提交
6621 6622 6623 6624 6625 6626 6627
                yyaccept = 1;
                m_marker = ++m_cursor;
                if ((m_limit - m_cursor) < 3)
                {
                    yyfill();    // LCOV_EXCL_LINE;
                }
                yych = *m_cursor;
N
Niels 已提交
6628
basic_json_parser_42:
N
Niels 已提交
6629 6630
                if (yybm[0 + yych] & 128)
                {
N
Niels 已提交
6631
                    goto basic_json_parser_41;
N
Niels 已提交
6632 6633 6634 6635 6636
                }
                if (yych <= 'D')
                {
                    if (yych != '.')
                    {
N
Niels 已提交
6637
                        goto basic_json_parser_25;
N
Niels 已提交
6638 6639 6640 6641 6642 6643
                    }
                }
                else
                {
                    if (yych <= 'E')
                    {
N
Niels 已提交
6644
                        goto basic_json_parser_44;
N
Niels 已提交
6645 6646 6647
                    }
                    if (yych == 'e')
                    {
N
Niels 已提交
6648
                        goto basic_json_parser_44;
N
Niels 已提交
6649
                    }
N
Niels 已提交
6650
                    goto basic_json_parser_25;
N
Niels 已提交
6651
                }
N
Niels 已提交
6652
basic_json_parser_43:
N
Niels 已提交
6653 6654 6655
                yych = *++m_cursor;
                if (yych <= '/')
                {
N
Niels 已提交
6656
                    goto basic_json_parser_33;
N
Niels 已提交
6657 6658 6659
                }
                if (yych <= '9')
                {
N
Niels 已提交
6660
                    goto basic_json_parser_48;
N
Niels 已提交
6661
                }
N
Niels 已提交
6662 6663
                goto basic_json_parser_33;
basic_json_parser_44:
N
Niels 已提交
6664 6665 6666 6667 6668
                yych = *++m_cursor;
                if (yych <= ',')
                {
                    if (yych != '+')
                    {
N
Niels 已提交
6669
                        goto basic_json_parser_33;
N
Niels 已提交
6670 6671 6672 6673 6674 6675
                    }
                }
                else
                {
                    if (yych <= '-')
                    {
N
Niels 已提交
6676
                        goto basic_json_parser_45;
N
Niels 已提交
6677 6678 6679
                    }
                    if (yych <= '/')
                    {
N
Niels 已提交
6680
                        goto basic_json_parser_33;
N
Niels 已提交
6681 6682 6683
                    }
                    if (yych <= '9')
                    {
N
Niels 已提交
6684
                        goto basic_json_parser_46;
N
Niels 已提交
6685
                    }
N
Niels 已提交
6686
                    goto basic_json_parser_33;
N
Niels 已提交
6687
                }
N
Niels 已提交
6688
basic_json_parser_45:
N
Niels 已提交
6689 6690 6691
                yych = *++m_cursor;
                if (yych <= '/')
                {
N
Niels 已提交
6692
                    goto basic_json_parser_33;
N
Niels 已提交
6693 6694 6695
                }
                if (yych >= ':')
                {
N
Niels 已提交
6696
                    goto basic_json_parser_33;
N
Niels 已提交
6697
                }
N
Niels 已提交
6698
basic_json_parser_46:
N
Niels 已提交
6699 6700 6701 6702 6703 6704 6705 6706
                ++m_cursor;
                if (m_limit <= m_cursor)
                {
                    yyfill();    // LCOV_EXCL_LINE;
                }
                yych = *m_cursor;
                if (yych <= '/')
                {
N
Niels 已提交
6707
                    goto basic_json_parser_25;
N
Niels 已提交
6708 6709 6710
                }
                if (yych <= '9')
                {
N
Niels 已提交
6711
                    goto basic_json_parser_46;
N
Niels 已提交
6712
                }
N
Niels 已提交
6713 6714
                goto basic_json_parser_25;
basic_json_parser_48:
N
Niels 已提交
6715 6716 6717 6718 6719 6720 6721 6722 6723 6724 6725
                yyaccept = 1;
                m_marker = ++m_cursor;
                if ((m_limit - m_cursor) < 3)
                {
                    yyfill();    // LCOV_EXCL_LINE;
                }
                yych = *m_cursor;
                if (yych <= 'D')
                {
                    if (yych <= '/')
                    {
N
Niels 已提交
6726
                        goto basic_json_parser_25;
N
Niels 已提交
6727 6728 6729
                    }
                    if (yych <= '9')
                    {
N
Niels 已提交
6730
                        goto basic_json_parser_48;
N
Niels 已提交
6731
                    }
N
Niels 已提交
6732
                    goto basic_json_parser_25;
N
Niels 已提交
6733 6734 6735 6736 6737
                }
                else
                {
                    if (yych <= 'E')
                    {
N
Niels 已提交
6738
                        goto basic_json_parser_44;
N
Niels 已提交
6739 6740 6741
                    }
                    if (yych == 'e')
                    {
N
Niels 已提交
6742
                        goto basic_json_parser_44;
N
Niels 已提交
6743
                    }
N
Niels 已提交
6744
                    goto basic_json_parser_25;
N
Niels 已提交
6745
                }
N
Niels 已提交
6746
basic_json_parser_50:
N
Niels 已提交
6747 6748 6749 6750 6751 6752
                yyaccept = 1;
                yych = *(m_marker = ++m_cursor);
                if (yych <= 'D')
                {
                    if (yych == '.')
                    {
N
Niels 已提交
6753
                        goto basic_json_parser_43;
N
Niels 已提交
6754
                    }
N
Niels 已提交
6755
                    goto basic_json_parser_25;
N
Niels 已提交
6756 6757 6758 6759 6760
                }
                else
                {
                    if (yych <= 'E')
                    {
N
Niels 已提交
6761
                        goto basic_json_parser_44;
N
Niels 已提交
6762 6763 6764
                    }
                    if (yych == 'e')
                    {
N
Niels 已提交
6765
                        goto basic_json_parser_44;
N
Niels 已提交
6766
                    }
N
Niels 已提交
6767
                    goto basic_json_parser_25;
N
Niels 已提交
6768
                }
N
Niels 已提交
6769
basic_json_parser_51:
N
Niels 已提交
6770 6771 6772
                yych = *++m_cursor;
                if (yych != 'l')
                {
N
Niels 已提交
6773
                    goto basic_json_parser_33;
N
Niels 已提交
6774 6775 6776 6777
                }
                yych = *++m_cursor;
                if (yych != 's')
                {
N
Niels 已提交
6778
                    goto basic_json_parser_33;
N
Niels 已提交
6779 6780 6781 6782
                }
                yych = *++m_cursor;
                if (yych != 'e')
                {
N
Niels 已提交
6783
                    goto basic_json_parser_33;
N
Niels 已提交
6784 6785 6786 6787 6788
                }
                ++m_cursor;
                {
                    return token_type::literal_false;
                }
N
Niels 已提交
6789
basic_json_parser_56:
N
Niels 已提交
6790 6791 6792
                yych = *++m_cursor;
                if (yych != 'u')
                {
N
Niels 已提交
6793
                    goto basic_json_parser_33;
N
Niels 已提交
6794 6795 6796 6797
                }
                yych = *++m_cursor;
                if (yych != 'e')
                {
N
Niels 已提交
6798
                    goto basic_json_parser_33;
N
Niels 已提交
6799 6800 6801 6802 6803
                }
                ++m_cursor;
                {
                    return token_type::literal_true;
                }
N
Niels 已提交
6804
basic_json_parser_60:
N
Niels 已提交
6805 6806 6807
                yych = *++m_cursor;
                if (yych != 'l')
                {
N
Niels 已提交
6808
                    goto basic_json_parser_33;
N
Niels 已提交
6809 6810 6811 6812
                }
                yych = *++m_cursor;
                if (yych != 'l')
                {
N
Niels 已提交
6813
                    goto basic_json_parser_33;
N
Niels 已提交
6814 6815 6816 6817 6818
                }
                ++m_cursor;
                {
                    return token_type::literal_null;
                }
N
Niels 已提交
6819 6820 6821 6822 6823 6824 6825 6826 6827 6828
basic_json_parser_64:
                yych = *++m_cursor;
                if (yych != 0xBF)
                {
                    goto basic_json_parser_33;
                }
                ++m_cursor;
                {
                    return scan();
                }
N
Niels 已提交
6829
            }
N
Niels 已提交
6830

N
Niels 已提交
6831 6832 6833 6834

        }

        /// append data from the stream to the internal buffer
N
Niels 已提交
6835
        void yyfill() noexcept
N
Niels 已提交
6836 6837 6838 6839 6840 6841 6842 6843 6844 6845 6846 6847 6848
        {
            if (not m_stream or not * m_stream)
            {
                return;
            }

            const ssize_t offset_start = m_start - m_content;
            const ssize_t offset_marker = m_marker - m_start;
            const ssize_t offset_cursor = m_cursor - m_start;

            m_buffer.erase(0, static_cast<size_t>(offset_start));
            std::string line;
            std::getline(*m_stream, line);
N
Niels 已提交
6849
            m_buffer += "\n" + line; // add line with newline symbol
N
Niels 已提交
6850 6851 6852 6853 6854 6855

            m_content = reinterpret_cast<const lexer_char_t*>(m_buffer.c_str());
            m_start  = m_content;
            m_marker = m_start + offset_marker;
            m_cursor = m_start + offset_cursor;
            m_limit  = m_start + m_buffer.size() - 1;
N
Niels 已提交
6856 6857
        }

N
Niels 已提交
6858
        /// return string representation of last read token
N
Niels 已提交
6859
        string_t get_token() const noexcept
N
Niels 已提交
6860
        {
N
Niels 已提交
6861 6862
            return string_t(reinterpret_cast<typename string_t::const_pointer>(m_start),
                            static_cast<size_t>(m_cursor - m_start));
N
Niels 已提交
6863 6864 6865
        }

        /*!
N
Niels 已提交
6866 6867 6868 6869 6870 6871 6872 6873 6874 6875 6876 6877 6878 6879 6880 6881
        @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
Niels 已提交
6882 6883

        @return string value of current token without opening and closing quotes
N
Niels 已提交
6884
        @throw std::out_of_range if to_unicode fails
N
Niels 已提交
6885
        */
N
Niels 已提交
6886
        string_t get_string() const
N
Niels 已提交
6887
        {
N
Niels 已提交
6888
            string_t result;
N
Niels 已提交
6889 6890 6891
            result.reserve(static_cast<size_t>(m_cursor - m_start - 2));

            // iterate the result between the quotes
N
Niels 已提交
6892
            for (const lexer_char_t* i = m_start + 1; i < m_cursor - 1; ++i)
N
Niels 已提交
6893 6894 6895 6896 6897 6898 6899 6900 6901 6902 6903 6904 6905 6906 6907 6908 6909 6910 6911 6912 6913 6914 6915 6916 6917 6918 6919 6920 6921 6922 6923 6924 6925 6926 6927 6928 6929
            {
                // 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;
                        }
                        case '\\':
                        {
N
Niels 已提交
6930
                            result += "\\";
N
Niels 已提交
6931 6932 6933 6934
                            break;
                        }
                        case '/':
                        {
N
Niels 已提交
6935
                            result += "/";
N
Niels 已提交
6936 6937 6938 6939
                            break;
                        }
                        case '"':
                        {
N
Niels 已提交
6940
                            result += "\"";
N
Niels 已提交
6941 6942 6943 6944 6945 6946
                            break;
                        }

                        // unicode
                        case 'u':
                        {
N
Niels 已提交
6947
                            // get code xxxx from uxxxx
N
Niels 已提交
6948 6949
                            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
6950

N
Niels 已提交
6951
                            // check if codepoint is a high surrogate
N
Niels 已提交
6952 6953
                            if (codepoint >= 0xD800 and codepoint <= 0xDBFF)
                            {
N
Niels 已提交
6954
                                // make sure there is a subsequent unicode
N
Niels 已提交
6955
                                if ((i + 6 >= m_limit) or * (i + 5) != '\\' or * (i + 6) != 'u')
N
Niels 已提交
6956 6957 6958 6959
                                {
                                    throw std::invalid_argument("missing low surrogate");
                                }

N
Niels 已提交
6960
                                // get code yyyy from uxxxx\uyyyy
N
Niels 已提交
6961 6962
                                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
6963
                                result += to_unicode(codepoint, codepoint2);
6964 6965
                                // skip the next 10 characters (xxxx\uyyyy)
                                i += 10;
N
Niels 已提交
6966 6967 6968 6969 6970 6971 6972 6973
                            }
                            else
                            {
                                // add unicode character(s)
                                result += to_unicode(codepoint);
                                // skip the next four characters (xxxx)
                                i += 4;
                            }
N
Niels 已提交
6974 6975 6976 6977 6978 6979 6980 6981
                            break;
                        }
                    }
                }
                else
                {
                    // all other characters are just copied to the end of the
                    // string
N
Niels 已提交
6982
                    result.append(1, static_cast<typename string_t::value_type>(*i));
N
Niels 已提交
6983 6984 6985 6986
                }
            }

            return result;
N
Niels 已提交
6987 6988
        }

N
Niels 已提交
6989 6990 6991 6992
        /*!
        @brief return number value for number tokens

        This function translates the last token into a floating point number.
N
Cleanup  
Niels 已提交
6993
        The pointer m_start points to the beginning of the parsed number. We
N
Niels 已提交
6994 6995 6996 6997 6998 6999 7000 7001 7002 7003
        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.

N
Niels 已提交
7004
        @throw std::range_error if passed value is out of range
N
Niels 已提交
7005
        */
N
Niels 已提交
7006
        long double get_number() const
N
Niels 已提交
7007
        {
N
Niels 已提交
7008 7009 7010 7011 7012 7013 7014 7015
            // conversion
            typename string_t::value_type* endptr;
            const auto float_val = std::strtold(reinterpret_cast<typename string_t::const_pointer>(m_start),
                                                &endptr);

            // return float_val if the whole number was translated and NAN
            // otherwise
            return (reinterpret_cast<lexer_char_t*>(endptr) == m_cursor) ? float_val : NAN;
N
Niels 已提交
7016 7017 7018
        }

      private:
N
Niels 已提交
7019 7020
        /// optional input stream
        std::istream* m_stream;
N
fixes  
Niels 已提交
7021
        /// the buffer
N
Niels 已提交
7022 7023
        string_t m_buffer;
        /// the buffer pointer
N
Niels 已提交
7024
        const lexer_char_t* m_content = nullptr;
N
Niels 已提交
7025
        /// pointer to the beginning of the current symbol
N
Niels 已提交
7026
        const lexer_char_t* m_start = nullptr;
N
Niels 已提交
7027 7028
        /// pointer for backtracking information
        const lexer_char_t* m_marker = nullptr;
N
fixes  
Niels 已提交
7029
        /// pointer to the current symbol
N
Niels 已提交
7030
        const lexer_char_t* m_cursor = nullptr;
N
fixes  
Niels 已提交
7031
        /// pointer to the end of the buffer
N
Niels 已提交
7032
        const lexer_char_t* m_limit = nullptr;
N
Niels 已提交
7033 7034
    };

N
Niels 已提交
7035 7036 7037
    /*!
    @brief syntax analysis
    */
N
Niels 已提交
7038 7039 7040 7041
    class parser
    {
      public:
        /// constructor for strings
N
Niels 已提交
7042 7043
        parser(const string_t& s, parser_callback_t cb = nullptr)
            : callback(cb), m_lexer(s)
N
Niels 已提交
7044 7045 7046 7047 7048 7049
        {
            // read first token
            get_token();
        }

        /// a parser reading from an input stream
N
Niels 已提交
7050 7051
        parser(std::istream& _is, parser_callback_t cb = nullptr)
            : callback(cb), m_lexer(&_is)
N
Niels 已提交
7052 7053 7054 7055 7056
        {
            // read first token
            get_token();
        }

N
Niels 已提交
7057
        /// public parser interface
N
Niels 已提交
7058
        basic_json parse()
N
Niels 已提交
7059
        {
N
Niels 已提交
7060
            basic_json result = parse_internal(true);
N
Niels 已提交
7061 7062 7063

            expect(lexer::token_type::end_of_input);

N
Niels 已提交
7064 7065 7066
            // return parser result and replace it with null in case the
            // top-level value was discarded by the callback function
            return result.is_discarded() ? basic_json() : result;
N
Niels 已提交
7067 7068 7069 7070
        }

      private:
        /// the actual parser
N
Niels 已提交
7071
        basic_json parse_internal(bool keep)
N
Niels 已提交
7072
        {
N
Niels 已提交
7073 7074
            auto result = basic_json(value_t::discarded);

N
Niels 已提交
7075 7076
            switch (last_token)
            {
7077
                case lexer::token_type::begin_object:
N
Niels 已提交
7078
                {
N
Niels 已提交
7079
                    if (keep and (not callback or (keep = callback(depth++, parse_event_t::object_start, result))))
N
Niels 已提交
7080 7081
                    {
                        // explicitly set result to object to cope with {}
N
Niels 已提交
7082 7083
                        result.m_type = value_t::object;
                        result.m_value = json_value(value_t::object);
N
Niels 已提交
7084
                    }
N
Niels 已提交
7085 7086 7087 7088 7089 7090 7091

                    // read next token
                    get_token();

                    // closing } -> we are done
                    if (last_token == lexer::token_type::end_object)
                    {
N
Niels 已提交
7092
                        get_token();
N
Niels 已提交
7093
                        if (keep and callback and not callback(--depth, parse_event_t::object_end, result))
N
Niels 已提交
7094 7095 7096
                        {
                            result = basic_json(value_t::discarded);
                        }
N
Niels 已提交
7097
                        return result;
N
Niels 已提交
7098 7099
                    }

N
Niels 已提交
7100 7101 7102
                    // no comma is expected here
                    unexpect(lexer::token_type::value_separator);

N
Niels 已提交
7103 7104 7105
                    // otherwise: parse key-value pairs
                    do
                    {
N
Niels 已提交
7106 7107 7108 7109 7110 7111
                        // ugly, but could be fixed with loop reorganization
                        if (last_token == lexer::token_type::value_separator)
                        {
                            get_token();
                        }

N
Niels 已提交
7112 7113 7114 7115
                        // store key
                        expect(lexer::token_type::value_string);
                        const auto key = m_lexer.get_string();

N
Niels 已提交
7116 7117 7118
                        bool keep_tag = false;
                        if (keep)
                        {
N
Niels 已提交
7119 7120 7121 7122 7123 7124 7125 7126 7127
                            if (callback)
                            {
                                basic_json k(key);
                                keep_tag = callback(depth, parse_event_t::key, k);
                            }
                            else
                            {
                                keep_tag = true;
                            }
N
Niels 已提交
7128 7129
                        }

N
Niels 已提交
7130 7131 7132 7133
                        // parse separator (:)
                        get_token();
                        expect(lexer::token_type::name_separator);

7134
                        // parse and add value
N
Niels 已提交
7135
                        get_token();
N
Niels 已提交
7136 7137 7138
                        auto value = parse_internal(keep);
                        if (keep and keep_tag and not value.is_discarded())
                        {
N
Niels 已提交
7139
                            result[key] = std::move(value);
N
Niels 已提交
7140
                        }
N
Niels 已提交
7141
                    }
N
Niels 已提交
7142
                    while (last_token == lexer::token_type::value_separator);
N
Niels 已提交
7143 7144 7145

                    // closing }
                    expect(lexer::token_type::end_object);
N
Niels 已提交
7146
                    get_token();
N
Niels 已提交
7147
                    if (keep and callback and not callback(--depth, parse_event_t::object_end, result))
N
Niels 已提交
7148 7149 7150
                    {
                        result = basic_json(value_t::discarded);
                    }
N
Niels 已提交
7151 7152

                    return result;
N
Niels 已提交
7153 7154
                }

7155
                case lexer::token_type::begin_array:
N
Niels 已提交
7156
                {
N
Niels 已提交
7157
                    if (keep and (not callback or (keep = callback(depth++, parse_event_t::array_start, result))))
N
Niels 已提交
7158 7159
                    {
                        // explicitly set result to object to cope with []
N
Niels 已提交
7160 7161
                        result.m_type = value_t::array;
                        result.m_value = json_value(value_t::array);
N
Niels 已提交
7162
                    }
N
Niels 已提交
7163 7164 7165 7166 7167 7168 7169

                    // read next token
                    get_token();

                    // closing ] -> we are done
                    if (last_token == lexer::token_type::end_array)
                    {
N
Niels 已提交
7170
                        get_token();
N
Niels 已提交
7171
                        if (callback and not callback(--depth, parse_event_t::array_end, result))
N
Niels 已提交
7172 7173 7174
                        {
                            result = basic_json(value_t::discarded);
                        }
N
Niels 已提交
7175
                        return result;
N
Niels 已提交
7176 7177
                    }

N
Niels 已提交
7178 7179 7180
                    // no comma is expected here
                    unexpect(lexer::token_type::value_separator);

N
Niels 已提交
7181 7182 7183
                    // otherwise: parse values
                    do
                    {
N
Niels 已提交
7184 7185 7186 7187 7188
                        // ugly, but could be fixed with loop reorganization
                        if (last_token == lexer::token_type::value_separator)
                        {
                            get_token();
                        }
N
Niels 已提交
7189

N
Niels 已提交
7190 7191 7192 7193
                        // parse value
                        auto value = parse_internal(keep);
                        if (keep and not value.is_discarded())
                        {
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7194
                            result.push_back(std::move(value));
N
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7195
                        }
N
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7196
                    }
N
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7197
                    while (last_token == lexer::token_type::value_separator);
N
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7198 7199 7200

                    // closing ]
                    expect(lexer::token_type::end_array);
N
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7201
                    get_token();
N
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7202
                    if (keep and callback and not callback(--depth, parse_event_t::array_end, result))
N
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7203 7204 7205
                    {
                        result = basic_json(value_t::discarded);
                    }
N
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7206 7207

                    return result;
N
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7208 7209
                }

7210
                case lexer::token_type::literal_null:
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7211
                {
N
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7212
                    get_token();
N
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7213
                    result.m_type = value_t::null;
N
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7214
                    break;
N
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7215 7216
                }

7217
                case lexer::token_type::value_string:
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7218
                {
N
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7219
                    const auto s = m_lexer.get_string();
N
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7220
                    get_token();
N
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7221 7222
                    result = basic_json(s);
                    break;
N
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7223 7224
                }

7225
                case lexer::token_type::literal_true:
N
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7226
                {
N
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7227
                    get_token();
N
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7228 7229
                    result.m_type = value_t::boolean;
                    result.m_value = true;
N
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7230
                    break;
N
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7231 7232
                }

7233
                case lexer::token_type::literal_false:
N
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7234
                {
N
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7235
                    get_token();
N
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7236 7237
                    result.m_type = value_t::boolean;
                    result.m_value = false;
N
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7238
                    break;
N
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7239 7240
                }

7241
                case lexer::token_type::value_number:
N
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7242 7243 7244
                {
                    auto float_val = m_lexer.get_number();

N
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7245 7246
                    // NAN is returned if token could not be translated
                    // completely
N
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7247 7248 7249
                    if (std::isnan(float_val))
                    {
                        throw std::invalid_argument(std::string("parse error - ") +
N
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7250
                                                    m_lexer.get_token() + " is not a number");
N
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7251 7252
                    }

N
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7253 7254
                    get_token();

N
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7255 7256
                    // check if conversion loses precision
                    const auto int_val = static_cast<number_integer_t>(float_val);
N
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7257
                    if (approx(float_val, static_cast<long double>(int_val)))
N
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7258 7259
                    {
                        // we basic_json not lose precision -> return int
N
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7260 7261
                        result.m_type = value_t::number_integer;
                        result.m_value = int_val;
N
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7262 7263 7264 7265
                    }
                    else
                    {
                        // we would lose precision -> returnfloat
N
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7266
                        result.m_type = value_t::number_float;
N
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7267
                        result.m_value = static_cast<number_float_t>(float_val);
N
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7268
                    }
N
Niels 已提交
7269
                    break;
N
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7270 7271 7272 7273
                }

                default:
                {
N
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7274 7275
                    // the last token was unexpected
                    unexpect(last_token);
N
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7276 7277
                }
            }
N
Niels 已提交
7278

N
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7279
            if (keep and callback and not callback(depth, parse_event_t::value, result))
N
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7280 7281 7282 7283
            {
                result = basic_json(value_t::discarded);
            }
            return result;
N
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7284 7285 7286
        }

        /// get next token from lexer
N
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7287
        typename lexer::token_type get_token()
N
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7288 7289 7290 7291 7292
        {
            last_token = m_lexer.scan();
            return last_token;
        }

N
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7293
        void expect(typename lexer::token_type t) const
N
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7294 7295 7296 7297
        {
            if (t != last_token)
            {
                std::string error_msg = "parse error - unexpected \'";
N
Niels 已提交
7298
                error_msg += m_lexer.get_token();
N
cleanup  
Niels 已提交
7299 7300
                error_msg += "\' (" + lexer::token_type_name(last_token);
                error_msg += "); expected " + lexer::token_type_name(t);
N
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7301 7302 7303 7304
                throw std::invalid_argument(error_msg);
            }
        }

N
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7305
        void unexpect(typename lexer::token_type t) const
N
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7306 7307 7308 7309 7310 7311 7312 7313 7314 7315 7316
        {
            if (t == last_token)
            {
                std::string error_msg = "parse error - unexpected \'";
                error_msg += m_lexer.get_token();
                error_msg += "\' (";
                error_msg += lexer::token_type_name(last_token) + ")";
                throw std::invalid_argument(error_msg);
            }
        }

N
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7317
      private:
N
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7318
        /// current level of recursion
N
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7319 7320 7321
        int depth = 0;
        /// callback function
        parser_callback_t callback;
N
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7322
        /// the type of the last read token
N
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7323
        typename lexer::token_type last_token = lexer::token_type::uninitialized;
N
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7324
        /// the lexer
N
Niels 已提交
7325
        lexer m_lexer;
N
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7326 7327 7328 7329 7330 7331 7332 7333
    };
};


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

N
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7334 7335 7336 7337 7338 7339
/*!
@brief default JSON class

This type is the default specialization of the @ref basic_json class which uses
the standard template types.
*/
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7340 7341 7342 7343 7344 7345 7346 7347 7348 7349 7350
using json = basic_json<>;
}


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

// specialization of std::swap, and std::hash
namespace std
{
N
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7351 7352 7353
/*!
@brief exchanges the values of two JSON objects
*/
N
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7354 7355 7356 7357 7358 7359 7360 7361 7362 7363 7364 7365 7366 7367
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
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7368
    /// return a hash value for a JSON object
N
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7369
    std::size_t operator()(const nlohmann::json& j) const
N
Niels 已提交
7370 7371
    {
        // a naive hashing via the string representation
N
Niels 已提交
7372 7373
        const auto& h = hash<nlohmann::json::string_t>();
        return h(j.dump());
N
Niels 已提交
7374 7375 7376 7377 7378
    }
};
}

/*!
N
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7379 7380
@brief user-defined string literal for JSON values

N
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7381 7382 7383 7384
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.

N
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7385
@param[in] s  a string representation of a JSON object
N
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7386 7387
@return a JSON object
*/
N
Niels 已提交
7388
inline nlohmann::json operator "" _json(const char* s, std::size_t)
N
Niels 已提交
7389
{
N
Niels 已提交
7390 7391
    return nlohmann::json::parse(reinterpret_cast<nlohmann::json::string_t::value_type*>
                                 (const_cast<char*>(s)));
N
Niels 已提交
7392 7393 7394
}

#endif