Give basic_json_view the read-only access functions of basic_json: operator[] and at() with keys and indices, front()/back(), find(), contains(), count(), begin()/end() and cbegin()/cend(), items() with structured bindings from C++17 on, and type_name(). Exceptions have the ids and messages of the const functions of basic_json. Where basic_json has undefined behavior the view answers safely: operator[] with a missing key or an out-of-range index returns a discarded view, and front()/back() of an empty container throw invalid_iterator.214. Objects are iterated in document order, and all members are visited; duplicate-key lookups find the first member (as yyjson and simdjson do), while parse(), materialize(), and the map conversions keep the last value, as parse() does. Keys of up to 16 bytes are compared with two overlapping loads. Add value conversions: get<T>()/get_to() for arithmetic types, bool, nullptr_t, strings (std::basic_string copied, string_view_t without a copy), BasicJsonType, views, std::vector, and maps with string keys; get_string() for the string without a copy; number_token() for the number exactly as written in the source; value() with keys and JSON pointers; and operator[]/at()/ contains() with JSON pointers. Everything else, including types with from_json(), goes through materialize() of that subtree. get<T>() of arithmetic types is inlined down to the conversion, so reading an integer needs no call. detail::json_pointer_access exposes a pointer's reference tokens to code outside basic_json. Signed-off-by: Niels Lohmann <mail@nlohmann.me>
6.8 KiB
nlohmann::basic_json::get
// (1)
template<typename ValueType>
ValueType get() const noexcept(
noexcept(JSONSerializer<ValueType>::from_json(
std::declval<const basic_json_t&>(), std::declval<ValueType&>())));
// (2)
template<typename BasicJsonType>
BasicJsonType get() const;
// (3)
template<typename PointerType>
PointerType get() noexcept;
template<typename PointerType>
const PointerType get() const noexcept; // constexpr since C++14
-
Explicit type conversion between the JSON value and a compatible value which is CopyConstructible and DefaultConstructible. The value is converted by calling the
json_serializer<ValueType>from_json()method.The function is equivalent to executing
ValueType ret; JSONSerializer<ValueType>::from_json(*this, ret); return ret;This overload is chosen if:
ValueTypeis notbasic_json,json_serializer<ValueType>has afrom_json()method of the formvoid from_json(const basic_json&, ValueType&), andjson_serializer<ValueType>does not have afrom_json()method of the formValueType from_json(const basic_json&)
If the type is not CopyConstructible and not DefaultConstructible, the value is converted by calling the
json_serializer<ValueType>from_json()method.The function is then equivalent to executing
return JSONSerializer<ValueTypeCV>::from_json(*this);This overload is chosen if:
ValueTypeis notbasic_jsonandjson_serializer<ValueType>has afrom_json()method of the formValueType from_json(const basic_json&)
If
json_serializer<ValueType>has both overloads offrom_json(), the latter one is chosen. -
Overload for
basic_jsonspecializations. The function is equivalent to executingreturn *this; -
Explicit pointer access to the internally stored JSON value. No copies are made.
Template parameters
ValueType- the value type to return
BasicJsonType- a specialization of
basic_json PointerType- pointer type; must be a pointer to
array_t,object_t,string_t,boolean_t,number_integer_t, ornumber_unsigned_t,number_float_t, orbinary_t. Other types will not compile.
Return value
- copy of the JSON value, converted to
ValueType - a copy of
#!cpp *this, converted intoBasicJsonType - pointer to the internally stored JSON value if the requested pointer type fits to the JSON value;
#!cpp nullptrotherwise
Exception safety
Depends on what json_serializer<ValueType> from_json() method throws for overloads (1) and (2); the JSON value
itself is never modified, since get() is a #!cpp const member function. No-throw guarantee for overload (3): this
function never throws exceptions.
Exceptions
Depends on what json_serializer<ValueType> from_json() method throws
Complexity
Depends on the json_serializer<ValueType>::from_json() implementation for overloads (1) and (2); constant for
overload (3).
Notes
!!! danger "Undefined behavior for pointers"
Writing data to the pointee (overload 3) of the result yields an undefined state.
!!! danger "Undefined behavior for numeric conversions"
Conversions between numeric types are performed by the corresponding
`from_json()` implementation using the target C++ type. When converting
between numeric types, the library does not check whether the source
value is representable by the target type.
If the source value is outside the range of the target type, the behavior
is the same as the corresponding C++ conversion. In particular, converting
a floating-point value to an integer type that cannot represent the value
results in undefined behavior.
See [Number conversion](../../features/types/number_handling.md#number-conversion)
for more information.
!!! note "std::optional conversions"
Prior to version 3.13.0, `#!cpp get<std::optional<T>>()` (and other conversions to `std::optional<T>`) failed to
compile in every configuration, due to an internal implementation bug that made the `from_json` overload for
`std::optional` unreachable regardless of the [`JSON_USE_IMPLICIT_CONVERSIONS`](../macros/json_use_implicit_conversions.md)
setting. This has been fixed.
Examples
??? example "Example: (1) explicit conversion to compatible types"
The example below shows several 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++
associative containers such as `std::map<std::string, json>`.
```cpp
--8<-- "examples/get__ValueType_const.cpp"
```
Output:
```json
--8<-- "examples/get__ValueType_const.output"
```
??? example "Example: (2) explicit conversion to another basic_json specialization"
The example below shows how a `json` value is converted to an `ordered_json` value using `get<BasicJsonType>()`.
```cpp
--8<-- "examples/get__BasicJsonType.cpp"
```
Output:
```json
--8<-- "examples/get__BasicJsonType.output"
```
??? example "Example: (3) explicit pointer access to the stored value"
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 `#cpp nullptr` is returned if the value and the requested pointer type does not match.
```cpp
--8<-- "examples/get__PointerType.cpp"
```
Output:
```json
--8<-- "examples/get__PointerType.output"
```
See also
- get_to convert and write into a passed value
- get_ptr get a pointer to the stored value
- get_ref get a reference to the stored value
- operator ValueType get a value via implicit conversion
- Converting values - the type conversions article
- basic_json_view::get - the same conversion on a zero-copy view (many types are
converted without ever building a
basic_jsonvalue)
Version history
- Since version 2.1.0.
- Since version 2.1.0. Extended to work with other specializations of
basic_jsonin version 3.2.0. - Since version 1.0.0.