mirror of
https://github.com/nlohmann/json.git
synced 2026-10-04 21:50:33 +00:00
Compare commits
3
Commits
| Author | SHA1 | Date | |
|---|---|---|---|
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fe90fa5cda | ||
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8c1f60a45e | ||
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6b4b825af2 |
@@ -17,11 +17,11 @@ permissions:
|
||||
contents: read
|
||||
|
||||
jobs:
|
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macos-14:
|
||||
runs-on: macos-14 # https://github.com/actions/runner-images/blob/main/images/macos/macos-14-Readme.md
|
||||
macos-15:
|
||||
runs-on: macos-15 # https://github.com/actions/runner-images/blob/main/images/macos/macos-15-Readme.md
|
||||
strategy:
|
||||
matrix:
|
||||
xcode: ['15.0.1', '15.1', '15.2', '15.3', '15.4']
|
||||
xcode: ['16.0', '16.1', '16.2', '16.3', '16.4', '26.0.1', '26.1.1', '26.2', '26.3']
|
||||
env:
|
||||
DEVELOPER_DIR: /Applications/Xcode_${{ matrix.xcode }}.app/Contents/Developer
|
||||
|
||||
@@ -36,11 +36,11 @@ jobs:
|
||||
- name: Test
|
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run: cd build ; ctest -j 10 --output-on-failure
|
||||
|
||||
macos-15:
|
||||
runs-on: macos-15 # https://github.com/actions/runner-images/blob/main/images/macos/macos-15-Readme.md
|
||||
macos-26:
|
||||
runs-on: macos-26 # https://github.com/actions/runner-images/blob/main/images/macos/macos-26-arm64-Readme.md
|
||||
strategy:
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||||
matrix:
|
||||
xcode: ['16.0', '16.1', '16.2', '16.3', '16.4', '26.0.1']
|
||||
xcode: ['26.4.1', '26.5', '26.6']
|
||||
env:
|
||||
DEVELOPER_DIR: /Applications/Xcode_${{ matrix.xcode }}.app/Contents/Developer
|
||||
|
||||
|
||||
@@ -209,7 +209,7 @@ jobs:
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strategy:
|
||||
matrix:
|
||||
# older GCC docker images (4, 5, 6) fail to check out code
|
||||
compiler: ['7', '8', '9', '10', '11', '12', '13', '14', '15', 'latest']
|
||||
compiler: ['7', '8', '9', '10', '11', '12', '13', '14', '15', '16', 'latest']
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container: gcc:${{ matrix.compiler }}
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steps:
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- uses: actions/checkout@3d3c42e5aac5ba805825da76410c181273ba90b1 # v7.0.1
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||||
|
||||
@@ -1393,7 +1393,7 @@ THE SOFTWARE IS PROVIDED “AS IS”, WITHOUT WARRANTY OF ANY KIND, EXPRESS OR I
|
||||
- The class contains a slightly modified version of the Grisu2 algorithm from Florian Loitsch which is licensed under the [MIT License](https://opensource.org/licenses/MIT) (see above). Copyright © 2009 [Florian Loitsch](https://florian.loitsch.com/)
|
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- The class contains a copy of [Hedley](https://nemequ.github.io/hedley/) from Evan Nemerson which is licensed as [CC0-1.0](https://creativecommons.org/publicdomain/zero/1.0/).
|
||||
- The class contains parts of [Google Abseil](https://github.com/abseil/abseil-cpp) which is licensed under the [Apache 2.0 License](https://opensource.org/licenses/Apache-2.0).
|
||||
- The class contains an adapted version of the Eisel-Lemire algorithm, its table of powers of five, and its digit comparison for long numbers from [fast_float](https://github.com/fastfloat/fast_float) by Daniel Lemire and contributors, which is available under the [MIT License](https://opensource.org/licenses/MIT) (used here), the Apache 2.0 License, and the Boost Software License. Copyright © 2021 The fast_float authors
|
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- The class contains an adapted version of the Eisel-Lemire algorithm and its table of powers of five from [fast_float](https://github.com/fastfloat/fast_float) by Daniel Lemire and contributors, which is available under the [MIT License](https://opensource.org/licenses/MIT) (used here), the Apache 2.0 License, and the Boost Software License. Copyright © 2021 The fast_float authors
|
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|
||||
<img align="right" src="https://git.fsfe.org/reuse/reuse-ci/raw/branch/master/reuse-horizontal.png" alt="REUSE Software">
|
||||
|
||||
|
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@@ -23,10 +23,9 @@ type to use.
|
||||
## Template parameters
|
||||
|
||||
`NumberFloatType`
|
||||
: the type to store floating-point numbers. The parser converts `#!cpp float`, `#!cpp double`, and a
|
||||
`#!cpp long double` that is IEEE 754 binary64 itself and other `#!cpp long double` formats with
|
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`#!cpp std::from_chars` or `#!cpp std::strtold`, and serialization falls back to `#!cpp std::snprintf`, so the
|
||||
type must be `#!cpp float`, `#!cpp double`, or `#!cpp long double`. The
|
||||
: the type to store floating-point numbers. Parsing and serialization are implemented in terms of
|
||||
`#!cpp std::strtof`/`#!cpp std::strtod`/`#!cpp std::strtold` and `#!cpp std::snprintf`, so the type must be
|
||||
`#!cpp float`, `#!cpp double`, or `#!cpp long double`. The
|
||||
[binary formats](../../features/binary_formats/index.md) additionally require `#!cpp float` or `#!cpp double`,
|
||||
because they have no encoding for `#!cpp long double`. See
|
||||
[Template Parameter Requirements](../../features/types/template_parameters.md#numberfloattype).
|
||||
@@ -56,6 +55,10 @@ This implementation does exactly follow this approach, as it uses double precisi
|
||||
smaller than `-1.79769313486232e+308` and values greater than `1.79769313486232e+308` will be stored as NaN internally
|
||||
and be serialized to `null`.
|
||||
|
||||
During deserialization (from JSON text or any of the binary formats), a finite number that does not fit into
|
||||
`number_float_t` is rejected with [`out_of_range.406`](../../home/exceptions.md#jsonexceptionout_of_range406), for
|
||||
example a double-precision number in a binary format when `number_float_t` is `#!cpp float`.
|
||||
|
||||
### Storage
|
||||
|
||||
Floating-point number values are stored directly inside a `basic_json` type.
|
||||
|
||||
@@ -47,8 +47,9 @@ With the default values for `NumberIntegerType` (`std::int64_t`), the default va
|
||||
|
||||
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 automatically be stored as [`number_unsigned_t`](number_unsigned_t.md) or [`number_float_t`](number_float_t.md).
|
||||
range will yield over/underflow when used in a constructor. During deserialization (from JSON text or any of the binary
|
||||
formats), too large or small integer numbers will automatically be stored as [`number_unsigned_t`](number_unsigned_t.md)
|
||||
or [`number_float_t`](number_float_t.md).
|
||||
|
||||
[RFC 8259](https://tools.ietf.org/html/rfc8259) further states:
|
||||
> Note that when such software is used, numbers that are integers and are in the range [-2<sup>53</sup>+1, 2<sup>53</sup>-1] are
|
||||
|
||||
@@ -48,8 +48,9 @@ With the default values for `NumberUnsignedType` (`std::uint64_t`), the default
|
||||
|
||||
When the default type is used, the maximal integer number that can be stored is `18446744073709551615` (UINT64_MAX) and
|
||||
the minimal integer number that can be stored is `0`. 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 automatically be stored
|
||||
as [`number_integer_t`](number_integer_t.md) or [`number_float_t`](number_float_t.md).
|
||||
when used in a constructor. During deserialization (from JSON text or any of the binary formats), too large or small
|
||||
integer numbers will automatically be stored as [`number_integer_t`](number_integer_t.md) or
|
||||
[`number_float_t`](number_float_t.md).
|
||||
|
||||
[RFC 8259](https://tools.ietf.org/html/rfc8259) further states:
|
||||
> Note that when such software is used, numbers that are integers and are in the range [-2<sup>53</sup>+1, 2<sup>53</sup>-1] are
|
||||
|
||||
@@ -58,6 +58,8 @@ header. See also the [macro overview page](../../features/macros.md).
|
||||
- [**JSON_DISABLE_ENUM_SERIALIZATION**](json_disable_enum_serialization.md) - switch off default serialization/deserialization functions for enums
|
||||
- [**JSON_DISABLE_TUPLE_REFERENCE_CONVERSION**](json_disable_tuple_reference_conversion.md) - switch off conversion from a one-element tuple of a JSON reference
|
||||
- [**JSON_USE_IMPLICIT_CONVERSIONS**](json_use_implicit_conversions.md) - control implicit conversions
|
||||
- [**JSON_USE_OBJECTS_FOR_ENUM_KEYED_MAPS**](json_use_objects_for_enum_keyed_maps.md) - opt in to storing maps with enum
|
||||
keys as objects
|
||||
|
||||
## Comparison behavior
|
||||
|
||||
|
||||
@@ -0,0 +1,139 @@
|
||||
# JSON_USE_OBJECTS_FOR_ENUM_KEYED_MAPS
|
||||
|
||||
```cpp
|
||||
#define JSON_USE_OBJECTS_FOR_ENUM_KEYED_MAPS /* value */
|
||||
```
|
||||
|
||||
When defined to `1`, maps whose keys are enums (such as `std::map<E, T>` or `std::unordered_map<E, T>`) are stored as
|
||||
JSON objects, using the enum's own conversion for the keys. By default, they are stored as arrays of `[key, value]`
|
||||
pairs.
|
||||
|
||||
## Default definition
|
||||
|
||||
The default value is `0` (disabled — existing behavior is preserved).
|
||||
|
||||
```cpp
|
||||
#define JSON_USE_OBJECTS_FOR_ENUM_KEYED_MAPS 0
|
||||
```
|
||||
|
||||
## Notes
|
||||
|
||||
!!! note "Background"
|
||||
|
||||
JSON object keys are strings, so a map is only stored as an object if its keys can be converted to a string type.
|
||||
Enums are not, even if [`NLOHMANN_JSON_SERIALIZE_ENUM`](nlohmann_json_serialize_enum.md) maps them to strings, so a
|
||||
map with enum keys becomes an array of `[key, value]` pairs:
|
||||
|
||||
```json
|
||||
[["stopped", "aa"], ["completed", "bb"]]
|
||||
```
|
||||
|
||||
With this macro, the same map becomes an object
|
||||
(see [#4378](https://github.com/nlohmann/json/issues/4378)):
|
||||
|
||||
```json
|
||||
{"completed": "bb", "stopped": "aa"}
|
||||
```
|
||||
|
||||
!!! note "Maps with non-unique keys"
|
||||
|
||||
Maps that allow duplicate keys, such as `std::multimap<E, T>` or `std::unordered_multimap<E, T>`, are not affected
|
||||
by the macro and are still stored as arrays of `[key, value]` pairs, as an object cannot hold duplicate keys.
|
||||
|
||||
!!! note "Reading"
|
||||
|
||||
Reading is not affected by the macro: a map with enum keys can always be read from both an array of pairs and an
|
||||
object. For the latter, each key is converted to the enum with its `from_json` function, e.g., the one defined by
|
||||
[`NLOHMANN_JSON_SERIALIZE_ENUM`](nlohmann_json_serialize_enum.md). Data written without the macro can therefore
|
||||
still be read after enabling it.
|
||||
|
||||
!!! warning "Keys must serialize to distinct strings"
|
||||
|
||||
Each key is converted with the enum's `to_json` function. If a key is not converted to a string (for instance, an
|
||||
enum without [`NLOHMANN_JSON_SERIALIZE_ENUM`](nlohmann_json_serialize_enum.md), which is stored as an integer, or an
|
||||
enumerator mapped to `nullptr`), [`type_error.302`](../../home/exceptions.md#jsonexceptiontype_error302) is thrown.
|
||||
If two keys are converted to the same string (for instance, because
|
||||
[`NLOHMANN_JSON_SERIALIZE_ENUM`](nlohmann_json_serialize_enum.md) maps an unlisted enumerator to the first entry),
|
||||
[`type_error.318`](../../home/exceptions.md#jsonexceptiontype_error318) is thrown. In both cases, the target value
|
||||
is not changed.
|
||||
|
||||
!!! warning "Opt-in only"
|
||||
|
||||
This macro must be defined **before** including `<nlohmann/json.hpp>`. Defining it after the include has no effect.
|
||||
|
||||
!!! note "ABI compatibility"
|
||||
|
||||
The value of this macro is encoded in the [namespace](../../features/namespace.md) (tag `_ekmo`), resulting in
|
||||
distinct symbol names. Translation units compiled with and without it can therefore be linked into the same program
|
||||
without One Definition Rule (ODR) violations, but they cannot exchange instances of library types.
|
||||
|
||||
## Examples
|
||||
|
||||
??? example "Default behavior (macro not defined)"
|
||||
|
||||
Without the macro, a map with enum keys is stored as an array of pairs:
|
||||
|
||||
```cpp
|
||||
#include <map>
|
||||
#include <nlohmann/json.hpp>
|
||||
|
||||
using json = nlohmann::json;
|
||||
|
||||
enum TaskState { TS_STOPPED, TS_RUNNING, TS_COMPLETED };
|
||||
|
||||
NLOHMANN_JSON_SERIALIZE_ENUM(TaskState, {
|
||||
{TS_STOPPED, "stopped"},
|
||||
{TS_RUNNING, "running"},
|
||||
{TS_COMPLETED, "completed"},
|
||||
})
|
||||
|
||||
int main()
|
||||
{
|
||||
std::map<TaskState, std::string> m = {{TS_STOPPED, "aa"}, {TS_COMPLETED, "bb"}};
|
||||
|
||||
json j = m;
|
||||
// j is [["stopped","aa"],["completed","bb"]]
|
||||
}
|
||||
```
|
||||
|
||||
??? example "Objects for enum-keyed maps (macro defined to 1)"
|
||||
|
||||
With the macro, the same map is stored as an object:
|
||||
|
||||
```cpp
|
||||
#define JSON_USE_OBJECTS_FOR_ENUM_KEYED_MAPS 1
|
||||
#include <map>
|
||||
#include <nlohmann/json.hpp>
|
||||
|
||||
using json = nlohmann::json;
|
||||
|
||||
enum TaskState { TS_STOPPED, TS_RUNNING, TS_COMPLETED };
|
||||
|
||||
NLOHMANN_JSON_SERIALIZE_ENUM(TaskState, {
|
||||
{TS_STOPPED, "stopped"},
|
||||
{TS_RUNNING, "running"},
|
||||
{TS_COMPLETED, "completed"},
|
||||
})
|
||||
|
||||
int main()
|
||||
{
|
||||
std::map<TaskState, std::string> m = {{TS_STOPPED, "aa"}, {TS_COMPLETED, "bb"}};
|
||||
|
||||
json j = m;
|
||||
// j is {"completed":"bb","stopped":"aa"}
|
||||
|
||||
auto m2 = j.get<std::map<TaskState, std::string>>();
|
||||
// m2 == m
|
||||
}
|
||||
```
|
||||
|
||||
## See also
|
||||
|
||||
- [Specializing enum conversion](../../features/enum_conversion.md)
|
||||
- [**NLOHMANN_JSON_SERIALIZE_ENUM**](nlohmann_json_serialize_enum.md) - serialize/deserialize an enum
|
||||
- [**NLOHMANN_JSON_SERIALIZE_ENUM_STRICT**](nlohmann_json_serialize_enum_strict.md) - serialize/deserialize an enum with
|
||||
exceptions
|
||||
|
||||
## Version history
|
||||
|
||||
- Added in version 3.13.0.
|
||||
@@ -41,6 +41,9 @@ inline void from_json(const BasicJsonType& j, type& e);
|
||||
conversion. Select this default pair carefully. See example 1 below.
|
||||
- If an enum or JSON value is specified in multiple conversions, the first matching conversion from the top of the
|
||||
list will be returned when converting to or from JSON. See example 2 below.
|
||||
- Maps with enum keys (e.g., `std::map<ENUM_TYPE, T>`) are stored as arrays of `[key, value]` pairs by default.
|
||||
Define [`JSON_USE_OBJECTS_FOR_ENUM_KEYED_MAPS`](json_use_objects_for_enum_keyed_maps.md) to store them as objects
|
||||
with the converted keys. Such maps can be read from both forms.
|
||||
|
||||
## Examples
|
||||
|
||||
@@ -80,6 +83,7 @@ inline void from_json(const BasicJsonType& j, type& e);
|
||||
- [Specializing enum conversion](../../features/enum_conversion.md)
|
||||
- [`NLOHMANN_JSON_SERIALIZE_ENUM_STRICT`](./nlohmann_json_serialize_enum_strict.md)
|
||||
- [`JSON_DISABLE_ENUM_SERIALIZATION`](json_disable_enum_serialization.md)
|
||||
- [`JSON_USE_OBJECTS_FOR_ENUM_KEYED_MAPS`](json_use_objects_for_enum_keyed_maps.md)
|
||||
|
||||
## Version history
|
||||
|
||||
|
||||
@@ -44,6 +44,9 @@ inline void from_json(const BasicJsonType& j, type& e);
|
||||
`"enum value out of range for <type>"`.
|
||||
- If an enum or JSON value is specified in multiple conversions, the first matching conversion from the top of the
|
||||
list will be returned when converting to or from JSON. See example 2 below.
|
||||
- Maps with enum keys (e.g., `std::map<ENUM_TYPE, T>`) are stored as arrays of `[key, value]` pairs by default.
|
||||
Define [`JSON_USE_OBJECTS_FOR_ENUM_KEYED_MAPS`](json_use_objects_for_enum_keyed_maps.md) to store them as objects
|
||||
with the converted keys. Such maps can be read from both forms.
|
||||
|
||||
## Examples
|
||||
|
||||
@@ -99,6 +102,7 @@ inline void from_json(const BasicJsonType& j, type& e);
|
||||
- [Specializing enum conversion](../../features/enum_conversion.md)
|
||||
- [`NLOHMANN_JSON_SERIALIZE_ENUM`](./nlohmann_json_serialize_enum.md)
|
||||
- [`JSON_DISABLE_ENUM_SERIALIZATION`](json_disable_enum_serialization.md)
|
||||
- [`JSON_USE_OBJECTS_FOR_ENUM_KEYED_MAPS`](json_use_objects_for_enum_keyed_maps.md)
|
||||
|
||||
## Version history
|
||||
|
||||
|
||||
@@ -21,11 +21,6 @@ Note: Some modern features (like C++20 ranges or filesystem support) may be disa
|
||||
|
||||
| Compiler | Architecture | Operating System | CI |
|
||||
|----------------------------------------------|--------------|-----------------------------------|-----------|
|
||||
| AppleClang 15.0.0.15000040; Xcode 15.0.1 | arm64 | macOS 14.7.2 (Sonoma) | GitHub |
|
||||
| AppleClang 15.0.0.15000100; Xcode 15.1 | arm64 | macOS 14.7.2 (Sonoma) | GitHub |
|
||||
| AppleClang 15.0.0.15000100; Xcode 15.2 | arm64 | macOS 14.7.2 (Sonoma) | GitHub |
|
||||
| AppleClang 15.0.0.15000309; Xcode 15.3 | arm64 | macOS 14.7.2 (Sonoma) | GitHub |
|
||||
| AppleClang 15.0.0.15000309; Xcode 15.4 | arm64 | macOS 14.7.2 (Sonoma) | GitHub |
|
||||
| AppleClang 16.0.0.16000026; Xcode 16 | arm64 | macOS 15.2 (Sequoia) | GitHub |
|
||||
| AppleClang 16.0.0.16000026; Xcode 16.1 | arm64 | macOS 15.2 (Sequoia) | GitHub |
|
||||
| AppleClang 16.0.0.16000026; Xcode 16.2 | arm64 | macOS 15.2 (Sequoia) | GitHub |
|
||||
|
||||
@@ -168,9 +168,9 @@ The library maps CBOR types to JSON value types as follows:
|
||||
!!! warning "Negative integer overflow"
|
||||
|
||||
CBOR negative integers (major type 1) are decoded as `-1 - n`. If the encoded magnitude `n` is too large for the
|
||||
result to fit into `number_integer_t` (`std::int64_t` by default), parsing fails with a
|
||||
[`parse_error.112`](../../home/exceptions.md#jsonexceptionparse_error112) exception rather than overflowing
|
||||
silently.
|
||||
result to fit into `number_integer_t` (`std::int64_t` by default), the result is stored as `number_float_t`, like
|
||||
a too small integer in JSON text. For example, `-18446744073709551616` (`0x3B` followed by eight `0xFF` bytes) is
|
||||
stored as `-1.8446744073709552e+19`.
|
||||
|
||||
!!! warning "Object keys"
|
||||
|
||||
|
||||
@@ -58,6 +58,23 @@ assert(jPi.get<TaskState>() == TS_INVALID );
|
||||
--8<-- "examples/nlohmann_json_serialize_enum.output"
|
||||
```
|
||||
|
||||
## Maps with enum keys
|
||||
|
||||
By default, maps with enum keys, such as `std::map<TaskState, std::string>`, are stored as arrays of `[key, value]`
|
||||
pairs, because JSON object keys must be strings. Define
|
||||
[`JSON_USE_OBJECTS_FOR_ENUM_KEYED_MAPS`](../api/macros/json_use_objects_for_enum_keyed_maps.md) before including the
|
||||
library to store them as objects, with the keys converted by the enum's `to_json()` function:
|
||||
|
||||
```cpp
|
||||
std::map<TaskState, std::string> m = {{TS_STOPPED, "aa"}, {TS_COMPLETED, "bb"}};
|
||||
|
||||
json j = m;
|
||||
// default: [["stopped","aa"],["completed","bb"]]
|
||||
// with JSON_USE_OBJECTS_FOR_ENUM_KEYED_MAPS: {"completed":"bb","stopped":"aa"}
|
||||
```
|
||||
|
||||
Either form can be read back, with or without the macro.
|
||||
|
||||
## Notes
|
||||
|
||||
Just as in [Arbitrary Type Conversions](arbitrary_types.md) above,
|
||||
|
||||
@@ -198,6 +198,13 @@ default.
|
||||
|
||||
See [full documentation of `JSON_USE_LEGACY_DISCARDED_VALUE_COMPARISON`](../api/macros/json_use_legacy_discarded_value_comparison.md).
|
||||
|
||||
## `JSON_USE_OBJECTS_FOR_ENUM_KEYED_MAPS`
|
||||
|
||||
When defined to `1`, maps with enum keys (e.g., `std::map<E, T>`) are stored as objects, using the enum's conversion for
|
||||
the keys, instead of arrays of `[key, value]` pairs. It is switched off (`0`) by default.
|
||||
|
||||
See [full documentation of `JSON_USE_OBJECTS_FOR_ENUM_KEYED_MAPS`](../api/macros/json_use_objects_for_enum_keyed_maps.md).
|
||||
|
||||
## `JSON_USE_SIMDUTF`
|
||||
|
||||
When defined, UTF-8 validation of JSON strings read from contiguous byte input is delegated to the
|
||||
|
||||
@@ -21,6 +21,8 @@ The complete default namespace name is derived as follows:
|
||||
- [`JSON_PRECISE_STREAM_POSITION`](../api/macros/json_precise_stream_position.md) defined non-zero appends `_psp`.
|
||||
- [`JSON_STRICT_NUL_HANDLING`](../api/macros/json_strict_nul_handling.md) defined non-zero appends `_snul`.
|
||||
- [`JSON_STRICT_BINARY_UTF8`](../api/macros/json_strict_binary_utf8.md) defined non-zero appends `_sbu8`.
|
||||
- [`JSON_USE_OBJECTS_FOR_ENUM_KEYED_MAPS`](../api/macros/json_use_objects_for_enum_keyed_maps.md) defined non-zero
|
||||
appends `_ekmo`.
|
||||
- The inline namespace ends with the suffix `_v` followed by the 3 components of the version number separated by
|
||||
underscores. To omit the version component, see [Disabling the version component](#disabling-the-version-component)
|
||||
below.
|
||||
|
||||
@@ -82,13 +82,12 @@ flowchart TD
|
||||
|
||||
- Numbers with a decimal digit or scientific notation are always stored as `#!c double`.
|
||||
- The number types can be changed, see [Template number types](#template-number-types).
|
||||
- The library converts integers and floating-point numbers itself, independent of the locale. Floating-point
|
||||
numbers are correctly rounded (to nearest, ties to even). Only a `#!c long double` that is not IEEE 754 binary64
|
||||
(e.g., the 80-bit x87 format) is converted with `#!cpp std::from_chars` where available, or else with
|
||||
[`std::strtold`](https://en.cppreference.com/w/cpp/string/byte/strtof). For that call, the library temporarily
|
||||
replaces the `.` with the decimal point of the current locale (which may be longer than one byte, e.g., in
|
||||
`fa_IR.UTF-8`), so the result does not depend on the locale either. Changing the locale in another thread during
|
||||
parsing is undefined behavior of the C library, though. Before version 3.13.0, the conversion was realized by
|
||||
- Integers are converted by the library's own digit parser. Floating-point numbers are converted with
|
||||
[`std::from_chars`](https://en.cppreference.com/w/cpp/utility/from_chars) if the library is compiled with C++17
|
||||
and the standard library supports it, then with an exact fast path for `#!c double` values with few significant
|
||||
digits, and otherwise with the locale-aware
|
||||
[`std::strtod`](https://en.cppreference.com/w/cpp/string/byte/strtof) (`std::strtof`/`std::strtold` for the
|
||||
other floating-point types). Before version 3.13.0, the conversion was realized by
|
||||
[`std::strtoull`](https://en.cppreference.com/w/cpp/string/byte/strtoul),
|
||||
[`std::strtoll`](https://en.cppreference.com/w/cpp/string/byte/strtol), and `std::strtod`, respectively.
|
||||
|
||||
@@ -101,10 +100,10 @@ flowchart TD
|
||||
### Number limits
|
||||
|
||||
- Any 64-bit signed or unsigned integer can be stored without loss of precision.
|
||||
- Numbers exceeding the limits of `#!c double` (i.e., numbers whose rounded value is not satisfying
|
||||
- Numbers exceeding the limits of `#!c double` (i.e., numbers that after conversion via
|
||||
[`std::strtod`](https://en.cppreference.com/w/cpp/string/byte/strtof) are not satisfying
|
||||
[`std::isfinite`](https://en.cppreference.com/w/cpp/numeric/math/isfinite) such as `#!c 1E400`) will throw exception
|
||||
[`json.exception.out_of_range.406`](../../home/exceptions.md#jsonexceptionout_of_range406) during parsing. Numbers too
|
||||
small for `#!c double` (such as `#!c 1E-400`) become zero, with the sign of the number.
|
||||
[`json.exception.out_of_range.406`](../../home/exceptions.md#jsonexceptionout_of_range406) during parsing.
|
||||
- Floating-point numbers are rounded to the next number representable as `double`. For instance
|
||||
`#!c 3.141592653589793238462643383279` is stored as [`0x400921fb54442d18`](https://float.exposed/0x400921fb54442d18).
|
||||
This is the same behavior as the code `#!c double x = 3.141592653589793238462643383279;`.
|
||||
|
||||
@@ -26,9 +26,9 @@ Requirements are split into two groups:
|
||||
diagnosed with dedicated error messages, and violating most of them results in a compiler error somewhere inside
|
||||
the library. Four violations are not caught at compile time at all:
|
||||
|
||||
- A [`StringType`](#stringtype) whose `data()` is not null-terminated compiles and silently misparses numbers
|
||||
stored as a `#!cpp long double` that is not IEEE 754 binary64 (e.g., the 80-bit x87 format), because the lexer
|
||||
hands the buffer to `#!cpp std::strtold`.
|
||||
- A [`StringType`](#stringtype) whose `data()` is not null-terminated compiles and can silently misparse
|
||||
floating-point numbers, because the lexer may hand the buffer to `#!cpp std::strtod`, which reads up to the
|
||||
terminating null character.
|
||||
- A stateful [`AllocatorType`](#allocatortype) compiles and silently ignores its state: allocation, deallocation,
|
||||
and [`get_allocator()`](../../api/basic_json/get_allocator.md) each use a different default-constructed instance.
|
||||
- The two [cross-specialization conversions](#cross-specialization-conversions) below. These abort on an assertion
|
||||
@@ -537,10 +537,9 @@ therefore silently changes parse results rather than raising an error. See
|
||||
|
||||
`NumberFloatType` must be one of `#!cpp float`, `#!cpp double`, or `#!cpp long double`:
|
||||
|
||||
- The [parser](../parsing/index.md) converts number literals to `#!cpp float`, `#!cpp double`, and a
|
||||
`#!cpp long double` that is IEEE 754 binary64 itself; other `#!cpp long double` formats are converted with
|
||||
`#!cpp std::from_chars` where available, or with `#!cpp std::strtold`. The library provides overloads for exactly
|
||||
these three types.
|
||||
- The [parser](../parsing/index.md) converts number literals with `#!cpp std::from_chars` or, as a fallback, with
|
||||
`#!cpp std::strtof`, `#!cpp std::strtod`, or `#!cpp std::strtold`; the library provides overloads for exactly these
|
||||
three types.
|
||||
- [`dump`](../../api/basic_json/dump.md) falls back to `#!cpp std::snprintf` with the `%g` and `%Lg` conversion
|
||||
specifiers, for which the library likewise provides only `#!cpp double` and `#!cpp long double` overloads
|
||||
(`#!cpp float` is promoted to `#!cpp double`).
|
||||
|
||||
@@ -331,9 +331,6 @@ An unexpected byte was read in a [binary format](../features/binary_formats/inde
|
||||
[json.exception.parse_error.112] parse error at byte 15: syntax error while parsing BSON binary: byte array length cannot be negative, is -1
|
||||
```
|
||||
```
|
||||
[json.exception.parse_error.112] parse error at byte 9: syntax error while parsing CBOR value: negative integer overflow
|
||||
```
|
||||
```
|
||||
[json.exception.parse_error.112] parse error at byte 5: syntax error while parsing BSON document: document size 6 does not match the number of bytes read (5)
|
||||
```
|
||||
|
||||
@@ -599,6 +596,9 @@ During implicit or explicit value conversion, the JSON type must be compatible w
|
||||
[json.exception.type_error.302] type must be string, but is object
|
||||
```
|
||||
|
||||
This exception is also thrown with [`JSON_USE_OBJECTS_FOR_ENUM_KEYED_MAPS`](../api/macros/json_use_objects_for_enum_keyed_maps.md)
|
||||
if a key of a map with enum keys is not converted to a string, for instance, because the enum is stored as an integer.
|
||||
|
||||
### json.exception.type_error.303
|
||||
|
||||
To retrieve a reference to a value stored in a `basic_json` object with `get_ref`, the type of the reference must match the value type. For instance, for a JSON array, the `ReferenceType` must be `array_t &`.
|
||||
@@ -791,6 +791,19 @@ The dynamic type of the object cannot be represented in the requested serializat
|
||||
|
||||
Encapsulate the JSON value in an object. That is, instead of serializing `#!json true`, serialize `#!json {"value": true}`
|
||||
|
||||
### json.exception.type_error.318
|
||||
|
||||
With [`JSON_USE_OBJECTS_FOR_ENUM_KEYED_MAPS`](../api/macros/json_use_objects_for_enum_keyed_maps.md), a map with enum
|
||||
keys is stored as an object. This exception is thrown if two of its keys are converted to the same string, so one of the
|
||||
entries would be lost. This happens, for instance, if [`NLOHMANN_JSON_SERIALIZE_ENUM`](../api/macros/nlohmann_json_serialize_enum.md)
|
||||
does not list an enumerator and it is therefore converted like the first listed one.
|
||||
|
||||
!!! failure "Example message"
|
||||
|
||||
```
|
||||
[json.exception.type_error.318] duplicate object key 'red'
|
||||
```
|
||||
|
||||
## Out of range
|
||||
|
||||
This exception is thrown in case a library function is called on an input parameter that exceeds the expected range, for instance, in the case of array indices or nonexisting object keys.
|
||||
@@ -863,13 +876,18 @@ The JSON Patch operations 'remove' and 'add' cannot be applied to the root eleme
|
||||
|
||||
### json.exception.out_of_range.406
|
||||
|
||||
A parsed number could not be stored as without changing it to NaN or INF.
|
||||
A parsed number could not be stored without changing it to NaN or INF. For the binary formats, this happens when a
|
||||
finite floating-point number does not fit into [`number_float_t`](../api/basic_json/number_float_t.md), for example a
|
||||
double-precision number when `number_float_t` is `#!cpp float`.
|
||||
|
||||
!!! failure "Example message"
|
||||
!!! failure "Example messages"
|
||||
|
||||
```
|
||||
number overflow parsing '10E1000'
|
||||
```
|
||||
```
|
||||
[json.exception.out_of_range.406] syntax error while parsing CBOR value: number overflow
|
||||
```
|
||||
|
||||
### json.exception.out_of_range.407
|
||||
|
||||
|
||||
@@ -20,4 +20,4 @@ The class contains a slightly modified version of the Grisu2 algorithm from Flor
|
||||
|
||||
The class contains a copy of [Hedley](https://nemequ.github.io/hedley/) from Evan Nemerson which is licensed as [CC0-1.0](https://creativecommons.org/publicdomain/zero/1.0/).
|
||||
|
||||
The class contains an adapted version of the Eisel-Lemire algorithm, its table of powers of five, and its digit comparison for long numbers from [fast_float](https://github.com/fastfloat/fast_float) by Daniel Lemire and contributors, which is available under the [MIT License](https://opensource.org/licenses/MIT) (used here), the Apache 2.0 License, and the Boost Software License. Copyright © 2021 The fast_float authors
|
||||
The class contains an adapted version of the Eisel-Lemire algorithm and its table of powers of five from [fast_float](https://github.com/fastfloat/fast_float) by Daniel Lemire and contributors, which is available under the [MIT License](https://opensource.org/licenses/MIT) (used here), the Apache 2.0 License, and the Boost Software License. Copyright © 2021 The fast_float authors
|
||||
|
||||
@@ -313,6 +313,7 @@ nav:
|
||||
- 'JSON_USE_GLOBAL_UDLS': api/macros/json_use_global_udls.md
|
||||
- 'JSON_USE_IMPLICIT_CONVERSIONS': api/macros/json_use_implicit_conversions.md
|
||||
- 'JSON_USE_LEGACY_DISCARDED_VALUE_COMPARISON': api/macros/json_use_legacy_discarded_value_comparison.md
|
||||
- 'JSON_USE_OBJECTS_FOR_ENUM_KEYED_MAPS': api/macros/json_use_objects_for_enum_keyed_maps.md
|
||||
- 'JSON_USE_SIMDUTF': api/macros/json_use_simdutf.md
|
||||
- 'NLOHMANN_DEFINE_DERIVED_TYPE_INTRUSIVE, NLOHMANN_DEFINE_DERIVED_TYPE_INTRUSIVE_WITH_DEFAULT, NLOHMANN_DEFINE_DERIVED_TYPE_INTRUSIVE_ONLY_SERIALIZE, NLOHMANN_DEFINE_DERIVED_TYPE_NON_INTRUSIVE, NLOHMANN_DEFINE_DERIVED_TYPE_NON_INTRUSIVE_WITH_DEFAULT, NLOHMANN_DEFINE_DERIVED_TYPE_NON_INTRUSIVE_ONLY_SERIALIZE': api/macros/nlohmann_define_derived_type.md
|
||||
- 'NLOHMANN_DEFINE_TYPE_INTRUSIVE, NLOHMANN_DEFINE_TYPE_INTRUSIVE_WITH_DEFAULT, NLOHMANN_DEFINE_TYPE_INTRUSIVE_ONLY_SERIALIZE': api/macros/nlohmann_define_type_intrusive.md
|
||||
|
||||
@@ -50,6 +50,10 @@
|
||||
#define JSON_STRICT_BINARY_UTF8 0
|
||||
#endif
|
||||
|
||||
#ifndef JSON_USE_OBJECTS_FOR_ENUM_KEYED_MAPS
|
||||
#define JSON_USE_OBJECTS_FOR_ENUM_KEYED_MAPS 0
|
||||
#endif
|
||||
|
||||
#if JSON_DIAGNOSTICS
|
||||
#define NLOHMANN_JSON_ABI_TAG_DIAGNOSTICS _diag
|
||||
#else
|
||||
@@ -92,14 +96,20 @@
|
||||
#define NLOHMANN_JSON_ABI_TAG_STRICT_BINARY_UTF8
|
||||
#endif
|
||||
|
||||
#if JSON_USE_OBJECTS_FOR_ENUM_KEYED_MAPS
|
||||
#define NLOHMANN_JSON_ABI_TAG_OBJECTS_FOR_ENUM_KEYED_MAPS _ekmo
|
||||
#else
|
||||
#define NLOHMANN_JSON_ABI_TAG_OBJECTS_FOR_ENUM_KEYED_MAPS
|
||||
#endif
|
||||
|
||||
#ifndef NLOHMANN_JSON_NAMESPACE_NO_VERSION
|
||||
#define NLOHMANN_JSON_NAMESPACE_NO_VERSION 0
|
||||
#endif
|
||||
|
||||
// Construct the namespace ABI tags component
|
||||
#define NLOHMANN_JSON_ABI_TAGS_CONCAT_EX(a, b, c, d, e, f, g) json_abi ## a ## b ## c ## d ## e ## f ## g
|
||||
#define NLOHMANN_JSON_ABI_TAGS_CONCAT(a, b, c, d, e, f, g) \
|
||||
NLOHMANN_JSON_ABI_TAGS_CONCAT_EX(a, b, c, d, e, f, g)
|
||||
#define NLOHMANN_JSON_ABI_TAGS_CONCAT_EX(a, b, c, d, e, f, g, h) json_abi ## a ## b ## c ## d ## e ## f ## g ## h
|
||||
#define NLOHMANN_JSON_ABI_TAGS_CONCAT(a, b, c, d, e, f, g, h) \
|
||||
NLOHMANN_JSON_ABI_TAGS_CONCAT_EX(a, b, c, d, e, f, g, h)
|
||||
|
||||
#define NLOHMANN_JSON_ABI_TAGS \
|
||||
NLOHMANN_JSON_ABI_TAGS_CONCAT( \
|
||||
@@ -109,7 +119,8 @@
|
||||
NLOHMANN_JSON_ABI_TAG_BRACE_INIT_COPY_SEMANTICS, \
|
||||
NLOHMANN_JSON_ABI_TAG_PRECISE_STREAM_POSITION, \
|
||||
NLOHMANN_JSON_ABI_TAG_STRICT_NUL_HANDLING, \
|
||||
NLOHMANN_JSON_ABI_TAG_STRICT_BINARY_UTF8)
|
||||
NLOHMANN_JSON_ABI_TAG_STRICT_BINARY_UTF8, \
|
||||
NLOHMANN_JSON_ABI_TAG_OBJECTS_FOR_ENUM_KEYED_MAPS)
|
||||
|
||||
// Construct the namespace version component
|
||||
#define NLOHMANN_JSON_NAMESPACE_VERSION_CONCAT_EX(major, minor, patch) \
|
||||
|
||||
@@ -39,25 +39,6 @@ inline int count_leading_zeros(std::uint64_t x) noexcept
|
||||
#endif
|
||||
}
|
||||
|
||||
/// number of trailing zero bits of x (x != 0)
|
||||
inline int count_trailing_zeros(std::uint64_t x) noexcept
|
||||
{
|
||||
#if defined(__GNUC__) || defined(__clang__)
|
||||
return __builtin_ctzll(x);
|
||||
#else
|
||||
int n = 0;
|
||||
for (int shift = 32; shift != 0; shift >>= 1)
|
||||
{
|
||||
if ((x << (64 - shift)) == 0)
|
||||
{
|
||||
n += shift;
|
||||
x >>= shift;
|
||||
}
|
||||
}
|
||||
return n;
|
||||
#endif
|
||||
}
|
||||
|
||||
/// the 128-bit product of two 64-bit numbers
|
||||
struct uint128_parts
|
||||
{
|
||||
@@ -87,19 +68,14 @@ inline uint128_parts full_multiplication(std::uint64_t a, std::uint64_t b) noexc
|
||||
|
||||
/// eight bytes as a little-endian word (compilers fold this into one load on
|
||||
/// little-endian targets)
|
||||
inline std::uint64_t read_eight_bytes(const unsigned char* b) noexcept
|
||||
inline std::uint64_t read_eight_bytes(const char* p) noexcept
|
||||
{
|
||||
const auto* b = reinterpret_cast<const unsigned char*>(p); // NOLINT(cppcoreguidelines-pro-type-reinterpret-cast)
|
||||
return static_cast<std::uint64_t>(b[0]) | (static_cast<std::uint64_t>(b[1]) << 8u)
|
||||
| (static_cast<std::uint64_t>(b[2]) << 16u) | (static_cast<std::uint64_t>(b[3]) << 24u)
|
||||
| (static_cast<std::uint64_t>(b[4]) << 32u) | (static_cast<std::uint64_t>(b[5]) << 40u)
|
||||
| (static_cast<std::uint64_t>(b[6]) << 48u) | (static_cast<std::uint64_t>(b[7]) << 56u);
|
||||
}
|
||||
|
||||
/// eight bytes as a little-endian word
|
||||
inline std::uint64_t read_eight_bytes(const char* p) noexcept
|
||||
{
|
||||
return read_eight_bytes(reinterpret_cast<const unsigned char*>(p)); // NOLINT(cppcoreguidelines-pro-type-reinterpret-cast)
|
||||
}
|
||||
|
||||
} // namespace detail
|
||||
NLOHMANN_JSON_NAMESPACE_END
|
||||
|
||||
@@ -530,11 +530,40 @@ void from_json_pair_array_to_map(const BasicJsonType& j, MapType& m)
|
||||
}
|
||||
}
|
||||
|
||||
// read a map with enum keys from an object, using the enum's own from_json for
|
||||
// the keys (e.g., from NLOHMANN_JSON_SERIALIZE_ENUM); this is the form written
|
||||
// with JSON_USE_OBJECTS_FOR_ENUM_KEYED_MAPS
|
||||
template<typename BasicJsonType, typename Map>
|
||||
inline bool from_json_enum_keyed_object(const BasicJsonType& j, Map& m, std::true_type /*key is enum*/)
|
||||
{
|
||||
if (!j.is_object())
|
||||
{
|
||||
return false;
|
||||
}
|
||||
m.clear();
|
||||
for (const auto& p : *j.template get_ptr<const typename BasicJsonType::object_t*>())
|
||||
{
|
||||
m.emplace(BasicJsonType(p.first).template get<typename Map::key_type>(), p.second.template get<typename Map::mapped_type>());
|
||||
}
|
||||
return true;
|
||||
}
|
||||
|
||||
template<typename BasicJsonType, typename Map>
|
||||
inline bool from_json_enum_keyed_object(const BasicJsonType& /*j*/, Map& /*m*/, std::false_type /*key is enum*/)
|
||||
{
|
||||
return false;
|
||||
}
|
||||
|
||||
template < typename BasicJsonType, typename Key, typename Value, typename Compare, typename Allocator,
|
||||
typename = enable_if_t < !std::is_constructible <
|
||||
typename BasicJsonType::string_t, Key >::value >>
|
||||
void from_json(const BasicJsonType& j, std::map<Key, Value, Compare, Allocator>& m)
|
||||
{
|
||||
// NOLINTNEXTLINE(modernize-type-traits) we use C++11
|
||||
if (from_json_enum_keyed_object(j, m, std::is_enum<Key> {}))
|
||||
{
|
||||
return;
|
||||
}
|
||||
from_json_pair_array_to_map(j, m);
|
||||
}
|
||||
|
||||
@@ -543,6 +572,11 @@ template < typename BasicJsonType, typename Key, typename Value, typename Hash,
|
||||
typename BasicJsonType::string_t, Key >::value >>
|
||||
void from_json(const BasicJsonType& j, std::unordered_map<Key, Value, Hash, KeyEqual, Allocator>& m)
|
||||
{
|
||||
// NOLINTNEXTLINE(modernize-type-traits) we use C++11
|
||||
if (from_json_enum_keyed_object(j, m, std::is_enum<Key> {}))
|
||||
{
|
||||
return;
|
||||
}
|
||||
from_json_pair_array_to_map(j, m);
|
||||
}
|
||||
|
||||
|
||||
@@ -23,6 +23,7 @@
|
||||
#include <valarray> // valarray
|
||||
#include <vector> // vector
|
||||
|
||||
#include <nlohmann/detail/exceptions.hpp>
|
||||
#include <nlohmann/detail/iterators/iteration_proxy.hpp>
|
||||
#include <nlohmann/detail/meta/cpp_future.hpp>
|
||||
#include <nlohmann/detail/meta/std_fs.hpp>
|
||||
@@ -384,6 +385,9 @@ template < typename BasicJsonType, typename CompatibleArrayType,
|
||||
!is_basic_json<CompatibleArrayType>::value
|
||||
#if JSON_HAS_RANGE_VIEW_CONVERSION
|
||||
&& !is_compatible_range_view<CompatibleArrayType>::value
|
||||
#endif
|
||||
#if JSON_USE_OBJECTS_FOR_ENUM_KEYED_MAPS
|
||||
&& !is_enum_keyed_map<CompatibleArrayType>::value
|
||||
#endif
|
||||
,
|
||||
int > = 0 >
|
||||
@@ -438,6 +442,33 @@ inline void to_json(BasicJsonType& j, const CompatibleObjectType& obj)
|
||||
external_constructor<value_t::object>::construct(j, obj);
|
||||
}
|
||||
|
||||
#if JSON_USE_OBJECTS_FOR_ENUM_KEYED_MAPS
|
||||
// store a map with enum keys as an object, using the enum's own to_json for the
|
||||
// keys (e.g., from NLOHMANN_JSON_SERIALIZE_ENUM); without the macro, such maps
|
||||
// are stored as arrays of [key, value] pairs
|
||||
template < typename BasicJsonType, typename EnumKeyedMap,
|
||||
enable_if_t < is_enum_keyed_map<EnumKeyedMap>::value&& !is_basic_json<EnumKeyedMap>::value, int > = 0 >
|
||||
inline void to_json(BasicJsonType& j, const EnumKeyedMap& map)
|
||||
{
|
||||
typename BasicJsonType::object_t obj;
|
||||
for (const auto& p : map)
|
||||
{
|
||||
BasicJsonType key = p.first;
|
||||
if (JSON_HEDLEY_UNLIKELY(!key.is_string()))
|
||||
{
|
||||
JSON_THROW(type_error::create(302, concat("type must be string, but is ", key.type_name()), &key));
|
||||
}
|
||||
|
||||
auto& key_string = *key.template get_ptr<typename BasicJsonType::string_t*>();
|
||||
if (JSON_HEDLEY_UNLIKELY(!obj.emplace(key_string, BasicJsonType(p.second)).second))
|
||||
{
|
||||
JSON_THROW(type_error::create(318, concat("duplicate object key '", key_string, "'"), &key));
|
||||
}
|
||||
}
|
||||
external_constructor<value_t::object>::construct(j, std::move(obj));
|
||||
}
|
||||
#endif
|
||||
|
||||
template<typename BasicJsonType>
|
||||
inline void to_json(BasicJsonType& j, typename BasicJsonType::object_t&& obj)
|
||||
{
|
||||
|
||||
File diff suppressed because it is too large
Load Diff
@@ -221,44 +221,6 @@ class lexer : public lexer_base<BasicJsonType>
|
||||
// scan functions
|
||||
/////////////////////
|
||||
|
||||
/// contiguous input: try to decode the 4 hex digits following `\u`
|
||||
/// directly from the input buffer via hex_codepoint(), instead of 4 calls
|
||||
/// to get(). On success, advances the adapter and the position counters
|
||||
/// exactly as those 4 get() calls would (a hex digit is never '\n', so
|
||||
/// only the flat counters move) and leaves @a current holding the last of
|
||||
/// the 4 digits, just as the last such get() would; the codepoint is
|
||||
/// written to @a out. Makes no state change and returns false - for a
|
||||
/// pending unget, fewer than 4 remaining bytes, or any of the 4 bytes not
|
||||
/// being a hex digit - so the caller falls back unchanged to the
|
||||
/// per-character loop, which then reports the same diagnostic (stopping
|
||||
/// at the first invalid digit) as before this optimization.
|
||||
bool get_codepoint_bulk(std::true_type /*bulk*/, int& out)
|
||||
{
|
||||
if (next_unget || ia.bulk_remaining() < 4)
|
||||
{
|
||||
return false;
|
||||
}
|
||||
const char_type* const raw = ia.bulk_data();
|
||||
const int codepoint = hex_codepoint(reinterpret_cast<const unsigned char*>(raw));
|
||||
if (codepoint < 0)
|
||||
{
|
||||
return false;
|
||||
}
|
||||
ia.bulk_skip(4);
|
||||
// a hex digit is never a newline, so only the flat counters advance
|
||||
position.chars_read_total += 4;
|
||||
position.chars_read_current_line += 4;
|
||||
current = char_traits<char_type>::to_int_type(raw[3]);
|
||||
out = codepoint;
|
||||
return true;
|
||||
}
|
||||
|
||||
/// streaming input: no bulk fast path
|
||||
bool get_codepoint_bulk(std::false_type /*bulk*/, int& /*out*/) const noexcept
|
||||
{
|
||||
return false;
|
||||
}
|
||||
|
||||
/*!
|
||||
@brief get codepoint from 4 hex characters following `\\u`
|
||||
|
||||
@@ -278,14 +240,6 @@ class lexer : public lexer_base<BasicJsonType>
|
||||
{
|
||||
// this function only makes sense after reading `\u`
|
||||
JSON_ASSERT(current == 'u');
|
||||
|
||||
// contiguous input: decode all 4 hex digits directly from the buffer
|
||||
int fast_codepoint = 0;
|
||||
if (get_codepoint_bulk(std::integral_constant<bool, bulk_scan> {}, fast_codepoint))
|
||||
{
|
||||
return fast_codepoint;
|
||||
}
|
||||
|
||||
int codepoint = 0;
|
||||
|
||||
const auto factors = { 12u, 8u, 4u, 0u };
|
||||
@@ -1090,11 +1044,9 @@ class lexer : public lexer_base<BasicJsonType>
|
||||
token_type::parse_error otherwise
|
||||
|
||||
@note The scanner is independent of the current locale: token_buffer
|
||||
always holds `.`. The conversion of float and double does not use
|
||||
the locale either. Only the std::strtold fallback of
|
||||
convert_number() for long double formats other than binary64
|
||||
depends on it, and it looks up the decimal point right before
|
||||
converting (see detail::convert_float_locale_aware()).
|
||||
always holds `.`. Only the std::strtod fallback of convert_number()
|
||||
depends on the locale, and it looks up the decimal point right
|
||||
before converting (see detail::convert_float_locale_aware()).
|
||||
*/
|
||||
token_type scan_number() // lgtm [cpp/use-of-goto] `goto` is used in this function to implement the number-parsing state machine described above. By design, any finite input will eventually reach the "done" state or return token_type::parse_error. In each intermediate state, 1 byte of the input is appended to the token_buffer vector, and only the already initialized variables token_buffer, number_type, and error_message are manipulated.
|
||||
{
|
||||
@@ -1107,7 +1059,7 @@ class lexer : public lexer_base<BasicJsonType>
|
||||
|
||||
// offset just past the last mantissa byte in token_buffer (i.e. the
|
||||
// index of 'e'/'E', or the whole token when there is no exponent).
|
||||
// convert_number() uses it to split the token; npos means
|
||||
// convert_number() uses it to count significant digits; npos means
|
||||
// "not seen an exponent yet" and is resolved at scan_number_done
|
||||
std::size_t mantissa_end = std::string::npos;
|
||||
|
||||
@@ -1437,8 +1389,8 @@ scan_number_done:
|
||||
@param[in] mantissa_end offset just past the last mantissa byte in
|
||||
token_buffer (the index of 'e'/'E', or
|
||||
token_buffer.size() when there is no exponent);
|
||||
with decimal_point_position, it locates the parts
|
||||
of a float token without scanning it again
|
||||
used to skip Clinger's fast path when it cannot
|
||||
possibly succeed - see detail::mantissa_fits_clinger()
|
||||
*/
|
||||
token_type convert_number(token_type number_type, std::size_t mantissa_end)
|
||||
{
|
||||
@@ -1492,11 +1444,10 @@ scan_number_done:
|
||||
}
|
||||
|
||||
// this code is reached if we parse a floating-point number or if an
|
||||
// integer conversion above overflowed. float and double (and long
|
||||
// double where it is binary64) are converted by the library itself,
|
||||
// correctly rounded and independent of the locale; other long double
|
||||
// formats use std::from_chars when available, otherwise the
|
||||
// locale-aware strtold.
|
||||
// integer conversion above overflowed. Prefer std::from_chars
|
||||
// (Eisel-Lemire, locale-independent, correctly rounded) when available;
|
||||
// otherwise the exact Clinger fast path (double only); otherwise the
|
||||
// locale-aware strtof/strtod/strtold.
|
||||
if (convert_float_fast(num_begin, num_end, decimal_point_position, mantissa_end, value_float))
|
||||
{
|
||||
return token_type::value_float;
|
||||
|
||||
File diff suppressed because it is too large
Load Diff
@@ -8,12 +8,10 @@
|
||||
|
||||
#pragma once
|
||||
|
||||
#include <array> // array
|
||||
#include <cstddef> // size_t
|
||||
#include <cstdint> // uint64_t, uint8_t
|
||||
#include <cstdint> // uint64_t
|
||||
#include <cstring> // memcpy
|
||||
|
||||
#include <nlohmann/detail/bit_ops.hpp>
|
||||
#include <nlohmann/detail/macro_scope.hpp>
|
||||
|
||||
// Optional SIMD backend for bulk UTF-8 validation. This is an opt-in external
|
||||
@@ -71,12 +69,18 @@ inline std::size_t find_string_special(const unsigned char* data, std::size_t n)
|
||||
std::size_t i = 0;
|
||||
for (; i + 8 <= n; i += 8)
|
||||
{
|
||||
const std::uint64_t special = swar_string_special(read_eight_bytes(data + i));
|
||||
if (special != 0)
|
||||
std::uint64_t word = 0;
|
||||
std::memcpy(&word, data + i, sizeof(word));
|
||||
if (swar_string_special(word) != 0)
|
||||
{
|
||||
// the lowest flagged byte is the first special one: the borrows of
|
||||
// the subtractions can only flag bytes above a true hit
|
||||
return i + (static_cast<std::size_t>(count_trailing_zeros(special)) / 8);
|
||||
// a special byte is in this word; locate it (endian-agnostic)
|
||||
for (std::size_t j = 0; j < 8; ++j)
|
||||
{
|
||||
if (is_string_special(data[i + j]))
|
||||
{
|
||||
return i + j;
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
for (; i < n; ++i)
|
||||
@@ -110,7 +114,8 @@ inline std::size_t find_ascii_copyable_run(const unsigned char* data, std::size_
|
||||
std::size_t i = 0;
|
||||
for (; i + 8 <= n; i += 8)
|
||||
{
|
||||
const std::uint64_t v = read_eight_bytes(data + i);
|
||||
std::uint64_t v = 0;
|
||||
std::memcpy(&v, data + i, sizeof(v));
|
||||
const std::uint64_t q = v ^ 0x2222222222222222ull; // '"' (0x22)
|
||||
const std::uint64_t b = v ^ 0x5C5C5C5C5C5C5C5Cull; // '\\' (0x5C)
|
||||
const std::uint64_t d = v ^ 0x7F7F7F7F7F7F7F7Full; // DEL (0x7F)
|
||||
@@ -121,9 +126,7 @@ inline std::size_t find_ascii_copyable_run(const unsigned char* data, std::size_
|
||||
| (v & high); // >= 0x80
|
||||
if (stop != 0)
|
||||
{
|
||||
// the lowest flagged byte is the first one to stop at (see
|
||||
// find_string_special())
|
||||
return i + (static_cast<std::size_t>(count_trailing_zeros(stop)) / 8);
|
||||
break;
|
||||
}
|
||||
}
|
||||
for (; i < n; ++i)
|
||||
@@ -250,18 +253,12 @@ inline std::size_t scalar_string_bulk_run(const unsigned char* data, std::size_t
|
||||
{
|
||||
break; // end of buffer, or a quote/escape/control byte
|
||||
}
|
||||
// a run of multi-byte sequences (e.g. CJK text) is validated sequence
|
||||
// by sequence without searching for the next special byte in between
|
||||
do
|
||||
const std::size_t seq = validate_one_utf8(data + pos, n - pos);
|
||||
if (seq == 0)
|
||||
{
|
||||
const std::size_t seq = validate_one_utf8(data + pos, n - pos);
|
||||
if (seq == 0)
|
||||
{
|
||||
return pos; // ill-formed or truncated: let the byte path diagnose it
|
||||
}
|
||||
pos += seq;
|
||||
break; // ill-formed or truncated: let the byte path diagnose it
|
||||
}
|
||||
while (pos < n && data[pos] >= 0x80u);
|
||||
pos += seq;
|
||||
}
|
||||
return pos;
|
||||
}
|
||||
@@ -276,7 +273,8 @@ inline std::size_t find_string_delimiter(const unsigned char* data, std::size_t
|
||||
std::size_t i = 0;
|
||||
for (; i + 8 <= n; i += 8)
|
||||
{
|
||||
const std::uint64_t v = read_eight_bytes(data + i);
|
||||
std::uint64_t v = 0;
|
||||
std::memcpy(&v, data + i, sizeof(v));
|
||||
const std::uint64_t q = v ^ 0x2222222222222222ull;
|
||||
const std::uint64_t b = v ^ 0x5C5C5C5C5C5C5C5Cull;
|
||||
const std::uint64_t hit = ((q - ones) & ~q & high)
|
||||
@@ -284,8 +282,14 @@ inline std::size_t find_string_delimiter(const unsigned char* data, std::size_t
|
||||
| ((v - 0x2020202020202020ull) & ~v & high);
|
||||
if (hit != 0)
|
||||
{
|
||||
// the lowest flagged byte is the first delimiter (see find_string_special())
|
||||
return i + (static_cast<std::size_t>(count_trailing_zeros(hit)) / 8);
|
||||
for (std::size_t j = 0; j < 8; ++j)
|
||||
{
|
||||
const unsigned char c = data[i + j];
|
||||
if (c == '\"' || c == '\\' || c < 0x20u)
|
||||
{
|
||||
return i + j;
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
for (; i < n; ++i)
|
||||
@@ -316,50 +320,5 @@ inline std::size_t string_bulk_run(const unsigned char* data, std::size_t n) noe
|
||||
return scalar_string_bulk_run(data, n);
|
||||
}
|
||||
|
||||
// Decode the 4 hex digits at [data, data+4) - the digits following a `\u`
|
||||
// escape - into a codepoint 0x0000..0xFFFF via one table lookup per byte
|
||||
// (after yyjson's read_hex_u16), or return -1 if any of the 4 bytes is not a
|
||||
// hex digit ('0'..'9', 'A'..'F', 'a'..'f'). The caller must already have
|
||||
// checked that 4 bytes are available; used by lexer::get_codepoint()'s
|
||||
// contiguous fast path. On -1 it falls back to the byte-at-a-time loop, which
|
||||
// stops at the first invalid digit, so the reported error and position are
|
||||
// unaffected by this fast path.
|
||||
inline int hex_codepoint(const unsigned char* data) noexcept
|
||||
{
|
||||
static const std::array<std::uint8_t, 256> hex_digit_table = // NOLINT(cppcoreguidelines-avoid-non-const-global-variables)
|
||||
{
|
||||
{
|
||||
0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, // 00..0F
|
||||
0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, // 10..1F
|
||||
0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, // 20..2F
|
||||
0x00, 0x01, 0x02, 0x03, 0x04, 0x05, 0x06, 0x07, 0x08, 0x09, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, // 30..3F ('0'..'9')
|
||||
0xFF, 0x0A, 0x0B, 0x0C, 0x0D, 0x0E, 0x0F, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, // 40..4F ('A'..'F')
|
||||
0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, // 50..5F
|
||||
0xFF, 0x0A, 0x0B, 0x0C, 0x0D, 0x0E, 0x0F, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, // 60..6F ('a'..'f')
|
||||
0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, // 70..7F
|
||||
0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, // 80..8F
|
||||
0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, // 90..9F
|
||||
0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, // A0..AF
|
||||
0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, // B0..BF
|
||||
0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, // C0..CF
|
||||
0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, // D0..DF
|
||||
0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, // E0..EF
|
||||
0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF // F0..FF
|
||||
}
|
||||
};
|
||||
|
||||
const std::uint8_t d0 = hex_digit_table[data[0]];
|
||||
const std::uint8_t d1 = hex_digit_table[data[1]];
|
||||
const std::uint8_t d2 = hex_digit_table[data[2]];
|
||||
const std::uint8_t d3 = hex_digit_table[data[3]];
|
||||
// every valid digit is <= 0xF; the combined OR only exceeds it if at
|
||||
// least one of the four bytes was not a hex digit (looked up as 0xFF)
|
||||
if ((d0 | d1 | d2 | d3) > 0x0F)
|
||||
{
|
||||
return -1;
|
||||
}
|
||||
return (d0 << 12) | (d1 << 8) | (d2 << 4) | d3;
|
||||
}
|
||||
|
||||
} // namespace detail
|
||||
NLOHMANN_JSON_NAMESPACE_END
|
||||
|
||||
@@ -43,6 +43,7 @@
|
||||
#undef JSON_PRECISE_STREAM_POSITION
|
||||
#undef JSON_STRICT_NUL_HANDLING
|
||||
#undef JSON_STRICT_BINARY_UTF8
|
||||
#undef JSON_USE_OBJECTS_FOR_ENUM_KEYED_MAPS
|
||||
#endif
|
||||
|
||||
#include <nlohmann/thirdparty/hedley/hedley_undef.hpp>
|
||||
|
||||
@@ -438,6 +438,30 @@ template<typename BasicJsonType, typename CompatibleObjectType>
|
||||
struct is_compatible_object_type
|
||||
: is_compatible_object_type_impl<BasicJsonType, CompatibleObjectType> {};
|
||||
|
||||
template<typename T>
|
||||
using insert_result_t = decltype(std::declval<T&>().insert(std::declval<const value_type_t<T>&>()));
|
||||
|
||||
template<typename T>
|
||||
using insert_result_second_t = decltype(std::declval<T&>().insert(std::declval<const value_type_t<T>&>()).second);
|
||||
|
||||
// a map-like type (std::map, std::unordered_map, ...) whose keys are enums; see
|
||||
// JSON_USE_OBJECTS_FOR_ENUM_KEYED_MAPS
|
||||
template<typename T, typename = void>
|
||||
struct is_enum_keyed_map : std::false_type {};
|
||||
|
||||
template<typename T>
|
||||
struct is_enum_keyed_map <
|
||||
T, enable_if_t < is_detected<mapped_type_t, T>::value&&
|
||||
is_detected<key_type_t, T>::value >>
|
||||
{
|
||||
// maps with non-unique keys (std::multimap, std::unordered_multimap, ...)
|
||||
// are excluded, because an object cannot hold duplicate keys; they are
|
||||
// detected by insert() returning an iterator instead of a pair<iterator, bool>
|
||||
// NOLINTNEXTLINE(modernize-type-traits) we use C++11
|
||||
static constexpr bool value = std::is_enum<typename T::key_type>::value &&
|
||||
!(is_detected<insert_result_t, T>::value && !is_detected<insert_result_second_t, T>::value);
|
||||
};
|
||||
|
||||
template<typename BasicJsonType, typename ConstructibleObjectType,
|
||||
typename = void>
|
||||
struct is_constructible_object_type_impl : std::false_type {};
|
||||
|
||||
File diff suppressed because it is too large
Load Diff
+823
-1089
File diff suppressed because it is too large
Load Diff
@@ -67,6 +67,10 @@
|
||||
#define JSON_STRICT_BINARY_UTF8 0
|
||||
#endif
|
||||
|
||||
#ifndef JSON_USE_OBJECTS_FOR_ENUM_KEYED_MAPS
|
||||
#define JSON_USE_OBJECTS_FOR_ENUM_KEYED_MAPS 0
|
||||
#endif
|
||||
|
||||
#if JSON_DIAGNOSTICS
|
||||
#define NLOHMANN_JSON_ABI_TAG_DIAGNOSTICS _diag
|
||||
#else
|
||||
@@ -109,14 +113,20 @@
|
||||
#define NLOHMANN_JSON_ABI_TAG_STRICT_BINARY_UTF8
|
||||
#endif
|
||||
|
||||
#if JSON_USE_OBJECTS_FOR_ENUM_KEYED_MAPS
|
||||
#define NLOHMANN_JSON_ABI_TAG_OBJECTS_FOR_ENUM_KEYED_MAPS _ekmo
|
||||
#else
|
||||
#define NLOHMANN_JSON_ABI_TAG_OBJECTS_FOR_ENUM_KEYED_MAPS
|
||||
#endif
|
||||
|
||||
#ifndef NLOHMANN_JSON_NAMESPACE_NO_VERSION
|
||||
#define NLOHMANN_JSON_NAMESPACE_NO_VERSION 0
|
||||
#endif
|
||||
|
||||
// Construct the namespace ABI tags component
|
||||
#define NLOHMANN_JSON_ABI_TAGS_CONCAT_EX(a, b, c, d, e, f, g) json_abi ## a ## b ## c ## d ## e ## f ## g
|
||||
#define NLOHMANN_JSON_ABI_TAGS_CONCAT(a, b, c, d, e, f, g) \
|
||||
NLOHMANN_JSON_ABI_TAGS_CONCAT_EX(a, b, c, d, e, f, g)
|
||||
#define NLOHMANN_JSON_ABI_TAGS_CONCAT_EX(a, b, c, d, e, f, g, h) json_abi ## a ## b ## c ## d ## e ## f ## g ## h
|
||||
#define NLOHMANN_JSON_ABI_TAGS_CONCAT(a, b, c, d, e, f, g, h) \
|
||||
NLOHMANN_JSON_ABI_TAGS_CONCAT_EX(a, b, c, d, e, f, g, h)
|
||||
|
||||
#define NLOHMANN_JSON_ABI_TAGS \
|
||||
NLOHMANN_JSON_ABI_TAGS_CONCAT( \
|
||||
@@ -126,7 +136,8 @@
|
||||
NLOHMANN_JSON_ABI_TAG_BRACE_INIT_COPY_SEMANTICS, \
|
||||
NLOHMANN_JSON_ABI_TAG_PRECISE_STREAM_POSITION, \
|
||||
NLOHMANN_JSON_ABI_TAG_STRICT_NUL_HANDLING, \
|
||||
NLOHMANN_JSON_ABI_TAG_STRICT_BINARY_UTF8)
|
||||
NLOHMANN_JSON_ABI_TAG_STRICT_BINARY_UTF8, \
|
||||
NLOHMANN_JSON_ABI_TAG_OBJECTS_FOR_ENUM_KEYED_MAPS)
|
||||
|
||||
// Construct the namespace version component
|
||||
#define NLOHMANN_JSON_NAMESPACE_VERSION_CONCAT_EX(major, minor, patch) \
|
||||
|
||||
@@ -48,6 +48,10 @@ TEST_CASE("default namespace")
|
||||
expected += "_sbu8";
|
||||
#endif
|
||||
|
||||
#if JSON_USE_OBJECTS_FOR_ENUM_KEYED_MAPS
|
||||
expected += "_ekmo";
|
||||
#endif
|
||||
|
||||
expected += "_v" STRINGIZE(NLOHMANN_JSON_VERSION_MAJOR);
|
||||
expected += "_" STRINGIZE(NLOHMANN_JSON_VERSION_MINOR);
|
||||
expected += "_" STRINGIZE(NLOHMANN_JSON_VERSION_PATCH) "::basic_json";
|
||||
|
||||
@@ -49,6 +49,10 @@ TEST_CASE("default namespace without version component")
|
||||
expected += "_sbu8";
|
||||
#endif
|
||||
|
||||
#if JSON_USE_OBJECTS_FOR_ENUM_KEYED_MAPS
|
||||
expected += "_ekmo";
|
||||
#endif
|
||||
|
||||
expected += "::basic_json";
|
||||
|
||||
// fallback for Clang
|
||||
|
||||
@@ -1,599 +0,0 @@
|
||||
// __ _____ _____ _____
|
||||
// __| | __| | | | JSON for Modern C++ (supporting code)
|
||||
// | | |__ | | | | | | version 3.12.0
|
||||
// |_____|_____|_____|_|___| https://github.com/nlohmann/json
|
||||
//
|
||||
// SPDX-FileCopyrightText: 2013-2026 Niels Lohmann <https://nlohmann.me>
|
||||
// SPDX-License-Identifier: MIT
|
||||
|
||||
#pragma once
|
||||
|
||||
#include <array> // array
|
||||
#include <cstdint> // uint32_t, uint64_t
|
||||
|
||||
// Number tokens that are hard to round correctly, with the IEEE-754 binary64
|
||||
// and binary32 bits of their correctly rounded values (ties to even; infinity
|
||||
// for an overflow, a signed zero for an underflow).
|
||||
//
|
||||
// For doubles and floats around 0, the smallest normal number, 1, 2^24, 2^53,
|
||||
// 0.1, and the largest finite number, and for random ones, the exact midpoint
|
||||
// m to the next number gives: m, m with one unit more and less in the last
|
||||
// digit, m with "01" and "0...01" appended, m with trailing zeros, and m cut
|
||||
// after 17 to 30 digits (rounded down and up, so that the rounding is decided
|
||||
// after the 19th digit), in fixed and exponent notation, 30% of them negative.
|
||||
// Tokens longer than 80 characters are left out, except for four of 700 digits
|
||||
// and more. Zeros, underflow, overflow, huge exponents, and integers beyond 64
|
||||
// bits complete the set. Of the 508 tokens, 134 (as double) and 150 (as
|
||||
// float) need the exact comparison with the midpoint (detail::digit_comparison()).
|
||||
//
|
||||
// The expected bits were computed with exact rational arithmetic in Python
|
||||
// (fractions.Fraction) and cross-checked with Python's float(); strtod_l and
|
||||
// strtof_l of Apple's libc and of glibc agree. Generated by
|
||||
// compact_hard_cases.py 5 (with hard_cases.py), see the pull request that
|
||||
// added this file.
|
||||
|
||||
namespace float_hard_cases
|
||||
{
|
||||
|
||||
struct hard_case
|
||||
{
|
||||
const char* token;
|
||||
std::uint64_t bits64;
|
||||
std::uint32_t bits32;
|
||||
};
|
||||
|
||||
inline const std::array<hard_case, 508>& cases()
|
||||
{
|
||||
static const std::array<hard_case, 508> table =
|
||||
{
|
||||
{
|
||||
{"-2.4703282292062327e-324", 0x8000000000000000u, 0x80000000u},
|
||||
{"24703282292062328e-340", 0x0000000000000001u, 0x00000000u},
|
||||
{"247032822920623272e-341", 0x0000000000000000u, 0x00000000u},
|
||||
{"-0.2470328229206232721e-323", 0x8000000000000001u, 0x80000000u},
|
||||
{"-0.24703282292062327208e-323", 0x8000000000000000u, 0x80000000u},
|
||||
{"-2.4703282292062327209e-324", 0x8000000000000001u, 0x80000000u},
|
||||
{"2.47032822920623272088e-324", 0x0000000000000000u, 0x00000000u},
|
||||
{"247032822920623272089e-344", 0x0000000000000001u, 0x00000000u},
|
||||
{"-247032822920623272088284396434e-353", 0x8000000000000000u, 0x80000000u},
|
||||
{"0.247032822920623272088284396435e-323", 0x0000000000000001u, 0x00000000u},
|
||||
{"-74109846876186981e-340", 0x8000000000000001u, 0x80000000u},
|
||||
{"0.74109846876186982e-323", 0x0000000000000002u, 0x00000000u},
|
||||
{"-0.7410984687618698162e-323", 0x8000000000000001u, 0x80000000u},
|
||||
{"-7.410984687618698163e-324", 0x8000000000000002u, 0x80000000u},
|
||||
{"7.4109846876186981626e-324", 0x0000000000000001u, 0x00000000u},
|
||||
{"-74109846876186981627e-343", 0x8000000000000002u, 0x80000000u},
|
||||
{"-741098468761869816264e-344", 0x8000000000000001u, 0x80000000u},
|
||||
{"0.741098468761869816265e-323", 0x0000000000000002u, 0x00000000u},
|
||||
{"0.741098468761869816264853189302e-323", 0x0000000000000001u, 0x00000000u},
|
||||
{"-7.41098468761869816264853189303e-324", 0x8000000000000002u, 0x80000000u},
|
||||
{"0.22250738585072006e-307", 0x000FFFFFFFFFFFFEu, 0x00000000u},
|
||||
{"2.2250738585072007e-308", 0x000FFFFFFFFFFFFFu, 0x00000000u},
|
||||
{"2.225073858507200641e-308", 0x000FFFFFFFFFFFFEu, 0x00000000u},
|
||||
{"-2225073858507200642e-326", 0x800FFFFFFFFFFFFFu, 0x80000000u},
|
||||
{"22250738585072006419e-327", 0x000FFFFFFFFFFFFEu, 0x00000000u},
|
||||
{"0.2225073858507200642e-307", 0x000FFFFFFFFFFFFFu, 0x00000000u},
|
||||
{"0.222507385850720064199e-307", 0x000FFFFFFFFFFFFEu, 0x00000000u},
|
||||
{"2.225073858507200642e-308", 0x000FFFFFFFFFFFFFu, 0x00000000u},
|
||||
{"-2.22507385850720064199176395546e-308", 0x800FFFFFFFFFFFFEu, 0x80000000u},
|
||||
{"222507385850720064199176395547e-337", 0x000FFFFFFFFFFFFFu, 0x00000000u},
|
||||
{"-2.2250738585072011e-308", 0x800FFFFFFFFFFFFFu, 0x80000000u},
|
||||
{"-22250738585072012e-324", 0x8010000000000000u, 0x80000000u},
|
||||
{"-2225073858507201136e-326", 0x800FFFFFFFFFFFFFu, 0x80000000u},
|
||||
{"0.2225073858507201137e-307", 0x0010000000000000u, 0x00000000u},
|
||||
{"0.2225073858507201136e-307", 0x000FFFFFFFFFFFFFu, 0x00000000u},
|
||||
{"-2.2250738585072011361e-308", 0x8010000000000000u, 0x80000000u},
|
||||
{"2.22507385850720113605e-308", 0x000FFFFFFFFFFFFFu, 0x00000000u},
|
||||
{"222507385850720113606e-328", 0x0010000000000000u, 0x00000000u},
|
||||
{"22250738585072011360574097967e-336", 0x000FFFFFFFFFFFFFu, 0x00000000u},
|
||||
{"0.222507385850720113605740979671e-307", 0x0010000000000000u, 0x00000000u},
|
||||
{"22250738585072016e-324", 0x0010000000000000u, 0x00000000u},
|
||||
{"0.22250738585072017e-307", 0x0010000000000001u, 0x00000000u},
|
||||
{"0.222507385850720163e-307", 0x0010000000000000u, 0x00000000u},
|
||||
{"2.225073858507201631e-308", 0x0010000000000001u, 0x00000000u},
|
||||
{"-2.2250738585072016301e-308", 0x8010000000000000u, 0x80000000u},
|
||||
{"22250738585072016302e-327", 0x0010000000000001u, 0x00000000u},
|
||||
{"-222507385850720163012e-328", 0x8010000000000000u, 0x80000000u},
|
||||
{"0.222507385850720163013e-307", 0x0010000000000001u, 0x00000000u},
|
||||
{"0.222507385850720163012305563795e-307", 0x0010000000000000u, 0x00000000u},
|
||||
{"-2.22507385850720163012305563796e-308", 0x8010000000000001u, 0x80000000u},
|
||||
{"0.17976931348623156E+309", 0x7FEFFFFFFFFFFFFEu, 0x7F800000u},
|
||||
{"1.7976931348623157e308", 0x7FEFFFFFFFFFFFFFu, 0x7F800000u},
|
||||
{"1.797693134862315608e308", 0x7FEFFFFFFFFFFFFEu, 0x7F800000u},
|
||||
{"-1797693134862315609e290", 0xFFEFFFFFFFFFFFFFu, 0xFF800000u},
|
||||
{"-17976931348623156083e289", 0xFFEFFFFFFFFFFFFEu, 0xFF800000u},
|
||||
{"-0.17976931348623156084E+309", 0xFFEFFFFFFFFFFFFFu, 0xFF800000u},
|
||||
{"0.179769313486231560835E+309", 0x7FEFFFFFFFFFFFFEu, 0x7F800000u},
|
||||
{"-1.79769313486231560836e308", 0xFFEFFFFFFFFFFFFFu, 0xFF800000u},
|
||||
{"1.79769313486231560835325876058e308", 0x7FEFFFFFFFFFFFFEu, 0x7F800000u},
|
||||
{"179769313486231560835325876059e279", 0x7FEFFFFFFFFFFFFFu, 0x7F800000u},
|
||||
{"1.7976931348623158e308", 0x7FEFFFFFFFFFFFFFu, 0x7F800000u},
|
||||
{"17976931348623159e292", 0x7FF0000000000000u, 0x7F800000u},
|
||||
{"1797693134862315807e290", 0x7FEFFFFFFFFFFFFFu, 0x7F800000u},
|
||||
{"0.1797693134862315808E+309", 0x7FF0000000000000u, 0x7F800000u},
|
||||
{"0.17976931348623158079E+309", 0x7FEFFFFFFFFFFFFFu, 0x7F800000u},
|
||||
{"-1.797693134862315808e308", 0xFFF0000000000000u, 0xFF800000u},
|
||||
{"1.79769313486231580793e308", 0x7FEFFFFFFFFFFFFFu, 0x7F800000u},
|
||||
{"179769313486231580794e288", 0x7FF0000000000000u, 0x7F800000u},
|
||||
{"179769313486231580793728971405e279", 0x7FEFFFFFFFFFFFFFu, 0x7F800000u},
|
||||
{"-0.179769313486231580793728971406E+309", 0xFFF0000000000000u, 0xFF800000u},
|
||||
{"100000000000000011102230246251565404236316680908203125e-53", 0x3FF0000000000000u, 0x3F800000u},
|
||||
{"-1.00000000000000011102230246251565404236316680908203126", 0xBFF0000000000001u, 0xBF800000u},
|
||||
{"1.00000000000000011102230246251565404236316680908203124e0", 0x3FF0000000000000u, 0x3F800000u},
|
||||
{"10000000000000001110223024625156540423631668090820312501e-55", 0x3FF0000000000001u, 0x3F800000u},
|
||||
{"1.00000000000000011102230246251565404236316680908203125000000000000000000001", 0x3FF0000000000001u, 0x3F800000u},
|
||||
{"10000000000000001e-16", 0x3FF0000000000000u, 0x3F800000u},
|
||||
{"1.0000000000000002", 0x3FF0000000000001u, 0x3F800000u},
|
||||
{"1.000000000000000111", 0x3FF0000000000000u, 0x3F800000u},
|
||||
{"1.000000000000000112e0", 0x3FF0000000000001u, 0x3F800000u},
|
||||
{"1.000000000000000111e0", 0x3FF0000000000000u, 0x3F800000u},
|
||||
{"-10000000000000001111e-19", 0xBFF0000000000001u, 0xBF800000u},
|
||||
{"-100000000000000011102e-20", 0xBFF0000000000000u, 0xBF800000u},
|
||||
{"-1.00000000000000011103", 0xBFF0000000000001u, 0xBF800000u},
|
||||
{"1.00000000000000011102230246251", 0x3FF0000000000000u, 0x3F800000u},
|
||||
{"1.00000000000000011102230246252e0", 0x3FF0000000000001u, 0x3F800000u},
|
||||
{"-0.999999999999999944488848768742172978818416595458984375", 0xBFF0000000000000u, 0xBF800000u},
|
||||
{"-9.99999999999999944488848768742172978818416595458984376e-1", 0xBFF0000000000000u, 0xBF800000u},
|
||||
{"999999999999999944488848768742172978818416595458984374e-54", 0x3FEFFFFFFFFFFFFFu, 0x3F800000u},
|
||||
{"0.99999999999999994448884876874217297881841659545898437501", 0x3FF0000000000000u, 0x3F800000u},
|
||||
{"9.99999999999999944488848768742172978818416595458984375000000000000000000001e-1", 0x3FF0000000000000u, 0x3F800000u},
|
||||
{"-0.99999999999999994", 0xBFEFFFFFFFFFFFFFu, 0xBF800000u},
|
||||
{"9.9999999999999995e-1", 0x3FF0000000000000u, 0x3F800000u},
|
||||
{"9.999999999999999444e-1", 0x3FEFFFFFFFFFFFFFu, 0x3F800000u},
|
||||
{"9999999999999999445e-19", 0x3FF0000000000000u, 0x3F800000u},
|
||||
{"99999999999999994448e-20", 0x3FEFFFFFFFFFFFFFu, 0x3F800000u},
|
||||
{"-0.99999999999999994449", 0xBFF0000000000000u, 0xBF800000u},
|
||||
{"0.999999999999999944488", 0x3FEFFFFFFFFFFFFFu, 0x3F800000u},
|
||||
{"-9.99999999999999944489e-1", 0xBFF0000000000000u, 0xBF800000u},
|
||||
{"9.99999999999999944488848768742e-1", 0x3FEFFFFFFFFFFFFFu, 0x3F800000u},
|
||||
{"999999999999999944488848768743e-30", 0x3FF0000000000000u, 0x3F800000u},
|
||||
{"-9.007199254740993e15", 0xC340000000000000u, 0xDA000000u},
|
||||
{"9007199254740994e0", 0x4340000000000001u, 0x5A000000u},
|
||||
{"9007199254740992", 0x4340000000000000u, 0x5A000000u},
|
||||
{"9.00719925474099301e15", 0x4340000000000001u, 0x5A000000u},
|
||||
{"9007199254740993000000000000000000001e-21", 0x4340000000000001u, 0x5A000000u},
|
||||
{"-9007199254740993.000000000000000000000000000000", 0xC340000000000000u, 0xDA000000u},
|
||||
{"90071992547409915e-1", 0x4340000000000000u, 0x5A000000u},
|
||||
{"-9007199254740991.6", 0xC340000000000000u, 0xDA000000u},
|
||||
{"9.0071992547409914e15", 0x433FFFFFFFFFFFFFu, 0x5A000000u},
|
||||
{"-9007199254740991501e-3", 0xC340000000000000u, 0xDA000000u},
|
||||
{"9007199254740991.5000000000000000000001", 0x4340000000000000u, 0x5A000000u},
|
||||
{"9.0071992547409915000000000000000000000000000000e15", 0x4340000000000000u, 0x5A000000u},
|
||||
{"0.100000000000000012490009027033011079765856266021728515625", 0x3FB999999999999Au, 0x3DCCCCCDu},
|
||||
{"1.00000000000000012490009027033011079765856266021728515626e-1", 0x3FB999999999999Bu, 0x3DCCCCCDu},
|
||||
{"100000000000000012490009027033011079765856266021728515624e-57", 0x3FB999999999999Au, 0x3DCCCCCDu},
|
||||
{"0.10000000000000001249000902703301107976585626602172851562501", 0x3FB999999999999Bu, 0x3DCCCCCDu},
|
||||
{"0.10000000000000001", 0x3FB999999999999Au, 0x3DCCCCCDu},
|
||||
{"1.0000000000000002e-1", 0x3FB999999999999Bu, 0x3DCCCCCDu},
|
||||
{"-1.000000000000000124e-1", 0xBFB999999999999Au, 0xBDCCCCCDu},
|
||||
{"1000000000000000125e-19", 0x3FB999999999999Bu, 0x3DCCCCCDu},
|
||||
{"-10000000000000001249e-20", 0xBFB999999999999Au, 0xBDCCCCCDu},
|
||||
{"0.1000000000000000125", 0x3FB999999999999Bu, 0x3DCCCCCDu},
|
||||
{"0.10000000000000001249", 0x3FB999999999999Au, 0x3DCCCCCDu},
|
||||
{"1.00000000000000012491e-1", 0x3FB999999999999Bu, 0x3DCCCCCDu},
|
||||
{"1.00000000000000012490009027033e-1", 0x3FB999999999999Au, 0x3DCCCCCDu},
|
||||
{"100000000000000012490009027034e-30", 0x3FB999999999999Bu, 0x3DCCCCCDu},
|
||||
{"2.45134755833537796875e14", 0x42EBDE5C4164D83Au, 0x575EF2E2u},
|
||||
{"-245134755833537796876e-6", 0xC2EBDE5C4164D83Au, 0xD75EF2E2u},
|
||||
{"-245134755833537.796874", 0xC2EBDE5C4164D839u, 0xD75EF2E2u},
|
||||
{"2.4513475583353779687501e14", 0x42EBDE5C4164D83Au, 0x575EF2E2u},
|
||||
{"245134755833537796875000000000000000000001e-27", 0x42EBDE5C4164D83Au, 0x575EF2E2u},
|
||||
{"245134755833537.796875000000000000000000000000000000", 0x42EBDE5C4164D83Au, 0x575EF2E2u},
|
||||
{"2.4513475583353779e14", 0x42EBDE5C4164D839u, 0x575EF2E2u},
|
||||
{"2451347558335378e-1", 0x42EBDE5C4164D83Au, 0x575EF2E2u},
|
||||
{"2451347558335377968e-4", 0x42EBDE5C4164D839u, 0x575EF2E2u},
|
||||
{"245134755833537.7969", 0x42EBDE5C4164D83Au, 0x575EF2E2u},
|
||||
{"245134755833537.79687", 0x42EBDE5C4164D839u, 0x575EF2E2u},
|
||||
{"2.4513475583353779688e14", 0x42EBDE5C4164D83Au, 0x575EF2E2u},
|
||||
{"181510327827821147441864013671875e-23", 0x41DB0C11CB91CE38u, 0x4ED8608Eu},
|
||||
{"-1815103278.27821147441864013671876", 0xC1DB0C11CB91CE38u, 0xCED8608Eu},
|
||||
{"1.81510327827821147441864013671874e9", 0x41DB0C11CB91CE37u, 0x4ED8608Eu},
|
||||
{"18151032782782114744186401367187501e-25", 0x41DB0C11CB91CE38u, 0x4ED8608Eu},
|
||||
{"1815103278.27821147441864013671875000000000000000000001", 0x41DB0C11CB91CE38u, 0x4ED8608Eu},
|
||||
{"-1.81510327827821147441864013671875000000000000000000000000000000e9", 0xC1DB0C11CB91CE38u, 0xCED8608Eu},
|
||||
{"18151032782782114e-7", 0x41DB0C11CB91CE37u, 0x4ED8608Eu},
|
||||
{"1815103278.2782115", 0x41DB0C11CB91CE38u, 0x4ED8608Eu},
|
||||
{"1815103278.278211474", 0x41DB0C11CB91CE37u, 0x4ED8608Eu},
|
||||
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{"9999999701976776123e-19", 0x3FEFFFFFF0000000u, 0x3F7FFFFFu},
|
||||
{"0.99999997019767761231", 0x3FEFFFFFF0000000u, 0x3F800000u},
|
||||
{"-0.999999970197677612304", 0xBFEFFFFFF0000000u, 0xBF7FFFFFu},
|
||||
{"9.99999970197677612305e-1", 0x3FEFFFFFF0000000u, 0x3F800000u},
|
||||
{"-1.6777217e7", 0xC170000010000000u, 0xCB800000u},
|
||||
{"16777218e0", 0x4170000020000000u, 0x4B800001u},
|
||||
{"16777216", 0x4170000000000000u, 0x4B800000u},
|
||||
{"-1.677721701e7", 0xC17000001028F5C3u, 0xCB800001u},
|
||||
{"-16777217000000000000000000001e-21", 0xC170000010000000u, 0xCB800001u},
|
||||
{"16777217.000000000000000000000000000000", 0x4170000010000000u, 0x4B800000u},
|
||||
{"167772155e-1", 0x416FFFFFF0000000u, 0x4B800000u},
|
||||
{"16777215.6", 0x416FFFFFF3333333u, 0x4B800000u},
|
||||
{"1.67772154e7", 0x416FFFFFECCCCCCDu, 0x4B7FFFFFu},
|
||||
{"16777215501e-3", 0x416FFFFFF0083127u, 0x4B800000u},
|
||||
{"-16777215.5000000000000000000001", 0xC16FFFFFF0000000u, 0xCB800000u},
|
||||
{"-1.67772155000000000000000000000000000000e7", 0xC16FFFFFF0000000u, 0xCB800000u},
|
||||
{"0.1000000052154064178466796875", 0x3FB99999B0000000u, 0x3DCCCCCEu},
|
||||
{"1.000000052154064178466796876e-1", 0x3FB99999B0000000u, 0x3DCCCCCEu},
|
||||
{"-1000000052154064178466796874e-28", 0xBFB99999B0000000u, 0xBDCCCCCDu},
|
||||
{"0.100000005215406417846679687501", 0x3FB99999B0000000u, 0x3DCCCCCEu},
|
||||
{"1.000000052154064178466796875000000000000000000001e-1", 0x3FB99999B0000000u, 0x3DCCCCCEu},
|
||||
{"-1000000052154064178466796875000000000000000000000000000000e-58", 0xBFB99999B0000000u, 0xBDCCCCCEu},
|
||||
{"-0.10000000521540641", 0xBFB99999AFFFFFFFu, 0xBDCCCCCDu},
|
||||
{"-1.0000000521540642e-1", 0xBFB99999B0000000u, 0xBDCCCCCEu},
|
||||
{"1.000000052154064178e-1", 0x3FB99999B0000000u, 0x3DCCCCCDu},
|
||||
{"-1000000052154064179e-19", 0xBFB99999B0000000u, 0xBDCCCCCEu},
|
||||
{"10000000521540641784e-20", 0x3FB99999B0000000u, 0x3DCCCCCDu},
|
||||
{"0.10000000521540641785", 0x3FB99999B0000000u, 0x3DCCCCCEu},
|
||||
{"0.100000005215406417846", 0x3FB99999B0000000u, 0x3DCCCCCDu},
|
||||
{"1.00000005215406417847e-1", 0x3FB99999B0000000u, 0x3DCCCCCEu},
|
||||
{"5.429001220703125e3", 0x40B5350050000000u, 0x45A9A802u},
|
||||
{"-5429001220703126e-12", 0xC0B5350050000001u, 0xC5A9A803u},
|
||||
{"-5429.001220703124", 0xC0B535004FFFFFFFu, 0xC5A9A802u},
|
||||
{"5.42900122070312501e3", 0x40B5350050000000u, 0x45A9A803u},
|
||||
{"5429001220703125000000000000000000001e-33", 0x40B5350050000000u, 0x45A9A803u},
|
||||
{"-5429.001220703125000000000000000000000000000000", 0xC0B5350050000000u, 0xC5A9A802u},
|
||||
{"503719056e0", 0x41BE062490000000u, 0x4DF03124u},
|
||||
{"503719057", 0x41BE062491000000u, 0x4DF03125u},
|
||||
{"5.03719055e8", 0x41BE06248F000000u, 0x4DF03124u},
|
||||
{"50371905601e-2", 0x41BE062490028F5Cu, 0x4DF03125u},
|
||||
{"503719056.000000000000000000001", 0x41BE062490000000u, 0x4DF03125u},
|
||||
{"5.03719056000000000000000000000000000000e8", 0x41BE062490000000u, 0x4DF03124u},
|
||||
{"-92331620", 0xC196037990000000u, 0xCCB01BCCu},
|
||||
{"9.233163e7", 0x41960379B8000000u, 0x4CB01BCEu},
|
||||
{"9233161e1", 0x4196037968000000u, 0x4CB01BCBu},
|
||||
{"92331620.1", 0x4196037990666666u, 0x4CB01BCDu},
|
||||
{"9.233162000000000000000000001e7", 0x4196037990000000u, 0x4CB01BCDu},
|
||||
{"9233162000000000000000000000000000000e-29", 0x4196037990000000u, 0x4CB01BCCu},
|
||||
{"3.002458625e6", 0x4146E82D50000000u, 0x4A37416Au},
|
||||
{"3002458626e-3", 0x4146E82D5020C49Cu, 0x4A37416Bu},
|
||||
{"3002458.624", 0x4146E82D4FDF3B64u, 0x4A37416Au},
|
||||
{"-3.00245862501e6", 0xC146E82D500053E3u, 0xCA37416Bu},
|
||||
{"3002458625000000000000000000001e-24", 0x4146E82D50000000u, 0x4A37416Bu},
|
||||
{"3002458.625000000000000000000000000000000", 0x4146E82D50000000u, 0x4A37416Au},
|
||||
{"-1095485584696182596504479582065262592e1", 0xC7A07BA830000000u, 0xFD03DD42u},
|
||||
{"10954855846961825965044795820652625930", 0x47A07BA830000000u, 0x7D03DD42u},
|
||||
{"1.095485584696182596504479582065262591e37", 0x47A07BA830000000u, 0x7D03DD41u},
|
||||
{"109548558469618259650447958206526259201e-1", 0x47A07BA830000000u, 0x7D03DD42u},
|
||||
{"-10954855846961825965044795820652625920.00000000000000000001", 0xC7A07BA830000000u, 0xFD03DD42u},
|
||||
{"1.095485584696182596504479582065262592000000000000000000000000000000e37", 0x47A07BA830000000u, 0x7D03DD42u},
|
||||
{"10954855846961825e21", 0x47A07BA830000000u, 0x7D03DD41u},
|
||||
{"10954855846961826000000000000000000000", 0x47A07BA830000000u, 0x7D03DD42u},
|
||||
{"10954855846961825960000000000000000000", 0x47A07BA830000000u, 0x7D03DD41u},
|
||||
{"1.095485584696182597e37", 0x47A07BA830000000u, 0x7D03DD42u},
|
||||
{"1.0954855846961825965e37", 0x47A07BA830000000u, 0x7D03DD41u},
|
||||
{"-10954855846961825966e18", 0xC7A07BA830000000u, 0xFD03DD42u},
|
||||
{"10954855846961825965e18", 0x47A07BA830000000u, 0x7D03DD41u},
|
||||
{"10954855846961825965100000000000000000", 0x47A07BA830000000u, 0x7D03DD42u},
|
||||
{"10954855846961825965044795820600000000", 0x47A07BA830000000u, 0x7D03DD41u},
|
||||
{"-1.09548558469618259650447958207e37", 0xC7A07BA830000000u, 0xFD03DD42u},
|
||||
{"1.6449216019182103706535606608388384863861375606575165875256061553955078126e-21", 0x3B9F125A50000000u, 0x1CF892D3u},
|
||||
{"-16449216019182103706535606608388384863861375606575165875256061553955078124e-94", 0xBB9F125A50000000u, 0x9CF892D2u},
|
||||
{"-0.0000000000000000000016449216019182103", 0xBB9F125A50000000u, 0x9CF892D2u},
|
||||
{"-1.6449216019182104e-21", 0xBB9F125A50000000u, 0x9CF892D3u},
|
||||
{"-1.64492160191821037e-21", 0xBB9F125A50000000u, 0x9CF892D2u},
|
||||
{"-1644921601918210371e-39", 0xBB9F125A50000000u, 0x9CF892D3u},
|
||||
{"-16449216019182103706e-40", 0xBB9F125A50000000u, 0x9CF892D2u},
|
||||
{"0.0000000000000000000016449216019182103707", 0x3B9F125A50000000u, 0x1CF892D3u},
|
||||
{"0.00000000000000000000164492160191821037065", 0x3B9F125A50000000u, 0x1CF892D2u},
|
||||
{"1.64492160191821037066e-21", 0x3B9F125A50000000u, 0x1CF892D3u},
|
||||
{"1.64492160191821037065356066083e-21", 0x3B9F125A50000000u, 0x1CF892D2u},
|
||||
{"164492160191821037065356066084e-50", 0x3B9F125A50000000u, 0x1CF892D3u},
|
||||
{"6.565061509609222412109375e-1", 0x3FE5021930000000u, 0x3F2810CAu},
|
||||
{"6565061509609222412109376e-25", 0x3FE5021930000000u, 0x3F2810CAu},
|
||||
{"0.6565061509609222412109374", 0x3FE5021930000000u, 0x3F2810C9u},
|
||||
{"6.56506150960922241210937501e-1", 0x3FE5021930000000u, 0x3F2810CAu},
|
||||
{"6565061509609222412109375000000000000000000001e-46", 0x3FE5021930000000u, 0x3F2810CAu},
|
||||
{"-0.6565061509609222412109375000000000000000000000000000000", 0xBFE5021930000000u, 0xBF2810CAu},
|
||||
{"6.5650615096092224e-1", 0x3FE5021930000000u, 0x3F2810C9u},
|
||||
{"-65650615096092225e-17", 0xBFE5021930000000u, 0xBF2810CAu},
|
||||
{"6565061509609222412e-19", 0x3FE5021930000000u, 0x3F2810C9u},
|
||||
{"0.6565061509609222413", 0x3FE5021930000000u, 0x3F2810CAu},
|
||||
{"0.65650615096092224121", 0x3FE5021930000000u, 0x3F2810C9u},
|
||||
{"6.5650615096092224122e-1", 0x3FE5021930000000u, 0x3F2810CAu},
|
||||
{"-6.5650615096092224121e-1", 0xBFE5021930000000u, 0xBF2810C9u},
|
||||
{"656506150960922241211e-21", 0x3FE5021930000000u, 0x3F2810CAu},
|
||||
{"18014627239033005156980393746124491372029297053813934326171875e-77", 0x3CA9F63970000000u, 0x254FB1CCu},
|
||||
{"0.00000000000000018014627239033005156980393746124491372029297053813934326171876", 0x3CA9F63970000000u, 0x254FB1CCu},
|
||||
{"-1.8014627239033005156980393746124491372029297053813934326171874e-16", 0xBCA9F63970000000u, 0xA54FB1CBu},
|
||||
{"1801462723903300515698039374612449137202929705381393432617187501e-79", 0x3CA9F63970000000u, 0x254FB1CCu},
|
||||
{"18014627239033005e-32", 0x3CA9F63970000000u, 0x254FB1CBu},
|
||||
{"0.00000000000000018014627239033006", 0x3CA9F63970000000u, 0x254FB1CCu},
|
||||
{"0.0000000000000001801462723903300515", 0x3CA9F63970000000u, 0x254FB1CBu},
|
||||
{"-1.801462723903300516e-16", 0xBCA9F63970000000u, 0xA54FB1CCu},
|
||||
{"-1.8014627239033005156e-16", 0xBCA9F63970000000u, 0xA54FB1CBu},
|
||||
{"18014627239033005157e-35", 0x3CA9F63970000000u, 0x254FB1CCu},
|
||||
{"180146272390330051569e-36", 0x3CA9F63970000000u, 0x254FB1CBu},
|
||||
{"-0.00000000000000018014627239033005157", 0xBCA9F63970000000u, 0xA54FB1CCu},
|
||||
{"0.000000000000000180146272390330051569803937461", 0x3CA9F63970000000u, 0x254FB1CBu},
|
||||
{"1.80146272390330051569803937462e-16", 0x3CA9F63970000000u, 0x254FB1CCu},
|
||||
{"0.05534819327294826507568359375", 0x3FAC569930000000u, 0x3D62B4CAu},
|
||||
{"-5.534819327294826507568359376e-2", 0xBFAC569930000000u, 0xBD62B4CAu},
|
||||
{"5534819327294826507568359374e-29", 0x3FAC569930000000u, 0x3D62B4C9u},
|
||||
{"-0.0553481932729482650756835937501", 0xBFAC569930000000u, 0xBD62B4CAu},
|
||||
{"5.534819327294826507568359375000000000000000000001e-2", 0x3FAC569930000000u, 0x3D62B4CAu},
|
||||
{"5534819327294826507568359375000000000000000000000000000000e-59", 0x3FAC569930000000u, 0x3D62B4CAu},
|
||||
{"0.055348193272948265", 0x3FAC569930000000u, 0x3D62B4C9u},
|
||||
{"5.5348193272948266e-2", 0x3FAC569930000000u, 0x3D62B4CAu},
|
||||
{"5.534819327294826507e-2", 0x3FAC569930000000u, 0x3D62B4C9u},
|
||||
{"5534819327294826508e-20", 0x3FAC569930000000u, 0x3D62B4CAu},
|
||||
{"55348193272948265075e-21", 0x3FAC569930000000u, 0x3D62B4C9u},
|
||||
{"-0.055348193272948265076", 0xBFAC569930000000u, 0xBD62B4CAu},
|
||||
{"0.0553481932729482650756", 0x3FAC569930000000u, 0x3D62B4C9u},
|
||||
{"-5.53481932729482650757e-2", 0xBFAC569930000000u, 0xBD62B4CAu},
|
||||
{"5.179692133247783258005389047985340416e36", 0x478F2C9450000000u, 0x7C7964A2u},
|
||||
{"5179692133247783258005389047985340417e0", 0x478F2C9450000000u, 0x7C7964A3u},
|
||||
{"5179692133247783258005389047985340415", 0x478F2C9450000000u, 0x7C7964A2u},
|
||||
{"-5.17969213324778325800538904798534041601e36", 0xC78F2C9450000000u, 0xFC7964A3u},
|
||||
{"-5179692133247783258005389047985340416000000000000000000001e-21", 0xC78F2C9450000000u, 0xFC7964A3u},
|
||||
{"-5179692133247783258005389047985340416.000000000000000000000000000000", 0xC78F2C9450000000u, 0xFC7964A2u},
|
||||
{"5.1796921332477832e36", 0x478F2C9450000000u, 0x7C7964A2u},
|
||||
{"51796921332477833e20", 0x478F2C9450000000u, 0x7C7964A3u},
|
||||
{"-5179692133247783258e18", 0xC78F2C9450000000u, 0xFC7964A2u},
|
||||
{"5179692133247783259000000000000000000", 0x478F2C9450000000u, 0x7C7964A3u},
|
||||
{"5179692133247783258000000000000000000", 0x478F2C9450000000u, 0x7C7964A2u},
|
||||
{"5.1796921332477832581e36", 0x478F2C9450000000u, 0x7C7964A3u},
|
||||
{"-5.179692133247783258e36", 0xC78F2C9450000000u, 0xFC7964A2u},
|
||||
{"-517969213324778325801e16", 0xC78F2C9450000000u, 0xFC7964A3u},
|
||||
{"517969213324778325800538904798e7", 0x478F2C9450000000u, 0x7C7964A2u},
|
||||
{"5179692133247783258005389047990000000", 0x478F2C9450000000u, 0x7C7964A3u},
|
||||
{
|
||||
"0.22250738585072011360574097967091319759348195463516456480234261097248222220210769455165295239081350"
|
||||
"8791414915891303962110687008643869459464552765720740782062174337998814106326732925355228688137214901"
|
||||
"2981122451451889849057222307285255133155755015914397476397983411801999323962548289017107081850690630"
|
||||
"6666559949382757725720157630626906633326475653000092458883164330377797918696120494973903778297049050"
|
||||
"5108060994073026293712895895000358379996720725430436028407889577179615094551674824347103070260914462"
|
||||
"1572289880258182545180325707018860872113128079512233426288368622321503775666622503982534335974568884"
|
||||
"4239002654981983854879482922068947216898310996983658468140228542433306603398508864458040010349339704"
|
||||
"2756718644338377048603786162277173854562306587467901408672332763671875e-307", 0x0010000000000000u, 0x00000000u
|
||||
},
|
||||
{
|
||||
"2.22507385850720113605740979670913197593481954635164564802342610972482222202107694551652952390813508"
|
||||
"7914149158913039621106870086438694594645527657207407820621743379988141063267329253552286881372149012"
|
||||
"9811224514518898490572223072852551331557550159143974763979834118019993239625482890171070818506906306"
|
||||
"6665599493827577257201576306269066333264756530000924588831643303777979186961204949739037782970490505"
|
||||
"1080609940730262937128958950003583799967207254304360284078895771796150945516748243471030702609144621"
|
||||
"5722898802581825451803257070188608721131280795122334262883686223215037756666225039825343359745688844"
|
||||
"2390026549819838548794829220689472168983109969836584681402285424333066033985088644580400103493397042"
|
||||
"756718644338377048603786162277173854562306587467901408672332763671875000000000000000000001e-308", 0x0010000000000000u, 0x00000000u
|
||||
},
|
||||
{
|
||||
"0.11754942807573642917278829910357665133228589927589904276829631184250030649651730385585324256680905"
|
||||
"8189392089843750000000000000000000000000000000000000000000000000000000000000000000000000000000000000"
|
||||
"0000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000"
|
||||
"0000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000"
|
||||
"0000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000"
|
||||
"0000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000"
|
||||
"0000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000"
|
||||
"00000000000000000000000000000000000000000000000000000000000000000e-37", 0x380FFFFFE0000000u, 0x00800000u
|
||||
},
|
||||
{
|
||||
"1175494280757364291727882991035766513322858992758990427682963118425003064965173038558532425668090581"
|
||||
"8939208984375000000000000000000000000000000000000000000000000000000000000000000000000000000000000000"
|
||||
"0000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000"
|
||||
"0000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000"
|
||||
"0000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000"
|
||||
"0000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000"
|
||||
"0000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000"
|
||||
"00000000000001e-751", 0x380FFFFFE0000000u, 0x00800000u
|
||||
},
|
||||
{"0", 0x0000000000000000u, 0x00000000u},
|
||||
{"-0", 0x8000000000000000u, 0x80000000u},
|
||||
{"0.0", 0x0000000000000000u, 0x00000000u},
|
||||
{"-0.0", 0x8000000000000000u, 0x80000000u},
|
||||
{"0e999999999999999999999", 0x0000000000000000u, 0x00000000u},
|
||||
{"-0.000e-99999", 0x8000000000000000u, 0x80000000u},
|
||||
{"1e-400", 0x0000000000000000u, 0x00000000u},
|
||||
{"-1e-400", 0x8000000000000000u, 0x80000000u},
|
||||
{"1e400", 0x7FF0000000000000u, 0x7F800000u},
|
||||
{"-1e400", 0xFFF0000000000000u, 0xFF800000u},
|
||||
{"1e-50", 0x358DEE7A4AD4B81Fu, 0x00000000u},
|
||||
{"-1e-50", 0xB58DEE7A4AD4B81Fu, 0x80000000u},
|
||||
{"1e39", 0x48078287F49C4A1Du, 0x7F800000u},
|
||||
{"-1e39", 0xC8078287F49C4A1Du, 0xFF800000u},
|
||||
{"1e99999999999999999999999999", 0x7FF0000000000000u, 0x7F800000u},
|
||||
{"1e-99999999999999999999999999", 0x0000000000000000u, 0x00000000u},
|
||||
{"1e0000000000000000000000000000000000000000308", 0x7FE1CCF385EBC8A0u, 0x7F800000u},
|
||||
{"123456789012345678901234567890e-30", 0x3FBF9ADD3746F65Fu, 0x3DFCD6EAu},
|
||||
{"18446744073709551615", 0x43F0000000000000u, 0x5F800000u},
|
||||
{"18446744073709551616", 0x43F0000000000000u, 0x5F800000u},
|
||||
{"-9223372036854775808", 0xC3E0000000000000u, 0xDF000000u},
|
||||
{"-9223372036854775809", 0xC3E0000000000000u, 0xDF000000u},
|
||||
}
|
||||
};
|
||||
return table;
|
||||
}
|
||||
|
||||
} // namespace float_hard_cases
|
||||
@@ -11,7 +11,12 @@
|
||||
#include <nlohmann/json.hpp>
|
||||
using nlohmann::json;
|
||||
|
||||
#include <cmath>
|
||||
#include <fstream>
|
||||
#include <limits>
|
||||
#include <map>
|
||||
#include <string>
|
||||
#include <vector>
|
||||
#include "make_test_data_available.hpp"
|
||||
|
||||
TEST_CASE("Binary Formats" * doctest::skip())
|
||||
@@ -224,3 +229,139 @@ TEST_CASE("Binary Formats" * doctest::skip())
|
||||
CHECK((100.0 * double(ubjson_3_size) / double(json_size)) == Approx(89.450));
|
||||
}
|
||||
}
|
||||
|
||||
namespace
|
||||
{
|
||||
// the binary formats as function pointers for "Binary formats with narrow number types";
|
||||
// named functions rather than lambdas, because clang 3.5 cannot convert a lambda
|
||||
// to a function pointer in the braced initializer of the format table
|
||||
using narrow_json = nlohmann::basic_json<std::map, std::vector, std::string, bool, std::int32_t, std::uint32_t, float>;
|
||||
using bytes = std::vector<std::uint8_t>;
|
||||
|
||||
bytes encode_cbor(const json& j)
|
||||
{
|
||||
return json::to_cbor(j);
|
||||
}
|
||||
narrow_json decode_cbor(const bytes& v, bool allow_exceptions)
|
||||
{
|
||||
return narrow_json::from_cbor(v, true, allow_exceptions);
|
||||
}
|
||||
|
||||
bytes encode_msgpack(const json& j)
|
||||
{
|
||||
return json::to_msgpack(j);
|
||||
}
|
||||
narrow_json decode_msgpack(const bytes& v, bool allow_exceptions)
|
||||
{
|
||||
return narrow_json::from_msgpack(v, true, allow_exceptions);
|
||||
}
|
||||
|
||||
bytes encode_ubjson(const json& j)
|
||||
{
|
||||
return json::to_ubjson(j);
|
||||
}
|
||||
narrow_json decode_ubjson(const bytes& v, bool allow_exceptions)
|
||||
{
|
||||
return narrow_json::from_ubjson(v, true, allow_exceptions);
|
||||
}
|
||||
|
||||
bytes encode_bjdata(const json& j)
|
||||
{
|
||||
return json::to_bjdata(j);
|
||||
}
|
||||
narrow_json decode_bjdata(const bytes& v, bool allow_exceptions)
|
||||
{
|
||||
return narrow_json::from_bjdata(v, true, allow_exceptions);
|
||||
}
|
||||
|
||||
// BSON can only store numbers as object members
|
||||
bytes encode_bson(const json& j)
|
||||
{
|
||||
return json::to_bson(json{{"a", j}});
|
||||
}
|
||||
narrow_json decode_bson(const bytes& v, bool allow_exceptions)
|
||||
{
|
||||
const auto result = narrow_json::from_bson(v, true, allow_exceptions);
|
||||
return result.is_discarded() ? result : result.at("a");
|
||||
}
|
||||
|
||||
bytes encode_bon8(const json& j)
|
||||
{
|
||||
return json::to_bon8(j);
|
||||
}
|
||||
narrow_json decode_bon8(const bytes& v, bool allow_exceptions)
|
||||
{
|
||||
return narrow_json::from_bon8(v, true, allow_exceptions);
|
||||
}
|
||||
|
||||
} // namespace
|
||||
|
||||
TEST_CASE("Binary formats with narrow number types")
|
||||
{
|
||||
// Numbers that do not fit the number types are handled like the lexer
|
||||
// handles them in JSON text: an integer that fits neither integer type is
|
||||
// stored as a floating-point number, and a finite floating-point number
|
||||
// that overflows number_float_t is rejected with out_of_range.406.
|
||||
struct binary_format
|
||||
{
|
||||
const char* name;
|
||||
bytes (*encode)(const json&);
|
||||
narrow_json (*decode)(const bytes&, bool);
|
||||
};
|
||||
|
||||
const std::vector<binary_format> formats =
|
||||
{
|
||||
{"CBOR", encode_cbor, decode_cbor},
|
||||
{"MessagePack", encode_msgpack, decode_msgpack},
|
||||
{"UBJSON", encode_ubjson, decode_ubjson},
|
||||
{"BJData", encode_bjdata, decode_bjdata},
|
||||
{"BSON", encode_bson, decode_bson},
|
||||
{"BON8", encode_bon8, decode_bon8},
|
||||
};
|
||||
|
||||
for (const auto& format : formats)
|
||||
{
|
||||
const std::string name = format.name;
|
||||
INFO("format := ", name);
|
||||
const auto roundtrip = [&format](const json & j)
|
||||
{
|
||||
return format.decode(format.encode(j), true);
|
||||
};
|
||||
|
||||
// integers that fit keep their type
|
||||
CHECK(roundtrip(json(-5)).is_number_integer());
|
||||
CHECK(roundtrip(json(-5)).get<std::int32_t>() == -5);
|
||||
CHECK(roundtrip(json(3000000000u)).is_number_unsigned());
|
||||
CHECK(roundtrip(json(3000000000u)).get<std::uint32_t>() == 3000000000u);
|
||||
|
||||
// integers that fit neither integer type are stored as float
|
||||
CHECK(roundtrip(json(5000000000u)).is_number_float());
|
||||
CHECK(roundtrip(json(5000000000u)).get<float>() == 5000000000.0f);
|
||||
if (name != "BON8") // BON8 cannot encode integers above INT64_MAX
|
||||
{
|
||||
CHECK(roundtrip(json(10000000000000000000u)).is_number_float());
|
||||
CHECK(roundtrip(json(10000000000000000000u)).get<float>() == 10000000000000000000.0f);
|
||||
}
|
||||
CHECK(roundtrip(json(-3000000000LL)).is_number_float());
|
||||
CHECK(roundtrip(json(-3000000000LL)).get<float>() == -3000000000.0f);
|
||||
CHECK(roundtrip(json(-5000000000LL)).is_number_float());
|
||||
CHECK(roundtrip(json(-5000000000LL)).get<float>() == -5000000000.0f);
|
||||
|
||||
// floating-point numbers that fit
|
||||
CHECK(roundtrip(json(1.5)).get<float>() == 1.5f);
|
||||
const auto just_above_max = std::nextafter(static_cast<double>((std::numeric_limits<float>::max)()),
|
||||
std::numeric_limits<double>::infinity());
|
||||
CHECK(roundtrip(json(just_above_max)).get<float>() == (std::numeric_limits<float>::max)());
|
||||
|
||||
// infinity and NaN are passed on
|
||||
CHECK(std::isinf(roundtrip(json(std::numeric_limits<double>::infinity())).get<float>()));
|
||||
CHECK(std::isnan(roundtrip(json(std::numeric_limits<double>::quiet_NaN())).get<float>()));
|
||||
|
||||
// finite floating-point numbers that overflow number_float_t are rejected
|
||||
const std::string message = "[json.exception.out_of_range.406] syntax error while parsing " + name
|
||||
+ " value: number overflow";
|
||||
CHECK_THROWS_WITH_AS(roundtrip(json(1e300)), message.c_str(), narrow_json::out_of_range&);
|
||||
CHECK_THROWS_WITH_AS(roundtrip(json(-1e300)), message.c_str(), narrow_json::out_of_range&);
|
||||
CHECK(format.decode(format.encode(json(1e300)), false).is_discarded());
|
||||
}
|
||||
}
|
||||
|
||||
+16
-14
@@ -3185,7 +3185,8 @@ TEST_CASE("Tagged values")
|
||||
// CBOR encodes negative integers as: result = -1 - n
|
||||
// For type 0x3B, n is an 8-byte uint64_t. Valid range for n with
|
||||
// the default int64_t is [0, INT64_MAX], producing results in [INT64_MIN, -1].
|
||||
// When n > INT64_MAX, the result exceeds int64_t range and is rejected.
|
||||
// When n > INT64_MAX, the result exceeds int64_t range and is stored
|
||||
// as a floating-point number, as the lexer does for JSON text.
|
||||
|
||||
SECTION("n = 0 is valid (result = -1)")
|
||||
{
|
||||
@@ -3206,33 +3207,34 @@ TEST_CASE("Tagged values")
|
||||
CHECK(result.get<int64_t>() == (std::numeric_limits<int64_t>::min)());
|
||||
}
|
||||
|
||||
SECTION("n = INT64_MAX + 1 is rejected (overflow)")
|
||||
SECTION("n = INT64_MAX + 1 is stored as float")
|
||||
{
|
||||
// n = INT64_MAX + 1 (0x8000000000000000)
|
||||
// result = -1 - n = -9223372036854775809, which exceeds int64_t range
|
||||
// result = -1 - n = -9223372036854775809, which exceeds int64_t range;
|
||||
// the nearest double is -9223372036854775808.0
|
||||
const std::vector<uint8_t> input = {0x3B, 0x80, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00};
|
||||
json _;
|
||||
CHECK_THROWS_WITH_AS(_ = json::from_cbor(input),
|
||||
"[json.exception.parse_error.112] parse error at byte 9: syntax error while parsing CBOR value: negative integer overflow",
|
||||
json::parse_error);
|
||||
const auto result = json::from_cbor(input);
|
||||
CHECK(result.is_number_float());
|
||||
CHECK(result.get<double>() == -9223372036854775808.0);
|
||||
CHECK(result == json::parse("-9223372036854775809"));
|
||||
}
|
||||
|
||||
SECTION("n = UINT64_MAX is rejected (overflow)")
|
||||
SECTION("n = UINT64_MAX is stored as float")
|
||||
{
|
||||
// n = UINT64_MAX (0xFFFFFFFFFFFFFFFF)
|
||||
// result = -1 - n = -18446744073709551616, which exceeds int64_t range
|
||||
const std::vector<uint8_t> input = {0x3B, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF};
|
||||
json _;
|
||||
CHECK_THROWS_WITH_AS(_ = json::from_cbor(input),
|
||||
"[json.exception.parse_error.112] parse error at byte 9: syntax error while parsing CBOR value: negative integer overflow",
|
||||
json::parse_error);
|
||||
const auto result = json::from_cbor(input);
|
||||
CHECK(result.is_number_float());
|
||||
CHECK(result.get<double>() == -18446744073709551616.0);
|
||||
CHECK(result == json::parse("-18446744073709551616"));
|
||||
}
|
||||
|
||||
SECTION("overflow with allow_exceptions=false returns discarded")
|
||||
SECTION("overflow with allow_exceptions=false is not an error")
|
||||
{
|
||||
const std::vector<uint8_t> input = {0x3B, 0x80, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00};
|
||||
const auto result = json::from_cbor(input, true, false);
|
||||
CHECK(result.is_discarded());
|
||||
CHECK(result.is_number_float());
|
||||
}
|
||||
}
|
||||
|
||||
|
||||
+106
-553
@@ -13,19 +13,15 @@
|
||||
using nlohmann::json;
|
||||
|
||||
#include <array> // array
|
||||
#include <cfloat> // FLT_EVAL_METHOD
|
||||
#include <cstdint> // uint32_t, uint64_t
|
||||
#include <cstdio> // snprintf
|
||||
#include <cstdlib> // strtod
|
||||
#include <cstring> // memcpy
|
||||
#include <map> // map
|
||||
#include <random> // mt19937
|
||||
#include <sstream> // stringstream
|
||||
#include <string> // string
|
||||
#include <utility> // pair
|
||||
#include <vector> // vector
|
||||
|
||||
#include "float_hard_cases.hpp"
|
||||
|
||||
namespace
|
||||
{
|
||||
// shortcut to scan a string literal
|
||||
@@ -261,7 +257,7 @@ TEST_CASE("lexer number fast path")
|
||||
"123456789012345678901234567890", // huge -> float
|
||||
"0.30000000000000004", "2.2250738585072014e-308", "1e308",
|
||||
// high-precision / wide-exponent values that exercise the
|
||||
// Eisel-Lemire path beyond the Clinger subset
|
||||
// std::from_chars (Eisel-Lemire) path beyond the Clinger subset
|
||||
"1.7976931348623157e308", "1.2345678901234567e-250",
|
||||
"9007199254740993", "5e-324", "1e-320"
|
||||
};
|
||||
@@ -283,18 +279,20 @@ TEST_CASE("lexer number fast path")
|
||||
}
|
||||
}
|
||||
|
||||
SECTION("significant digits around Clinger's fast path")
|
||||
SECTION("significant-digit gate for the Clinger fast path")
|
||||
{
|
||||
// Clinger's fast path needs a significand of at most 2^53, which
|
||||
// tokens with 17 or more significant digits exceed. The conversion
|
||||
// splits the token at the positions the scanners recorded, so leading
|
||||
// zeros must not count as digits - "0.1234567890123456" has 16
|
||||
// significant digits, not 17 - and both scanners must agree.
|
||||
// Clinger's fast path needs a significand below 2^53, so it cannot
|
||||
// succeed once the mantissa has 17 or more significant digits (the
|
||||
// significand would be at least 10^16). The lexer skips the attempt
|
||||
// there. That is only allowed to save work: every value must still come
|
||||
// out bit-exactly, and both scanners must agree. In particular the gate
|
||||
// must not fire for tokens whose leading zeros merely look like extra
|
||||
// digits - "0.1234567890123456" has 16 significant digits, not 17.
|
||||
const std::vector<std::string> numbers =
|
||||
{
|
||||
"1234567890123456", // 16 significant digits
|
||||
"12345678901234567", // 17
|
||||
"123456789012345678", // 18
|
||||
"12345678901234567", // 17 -> attempt skipped
|
||||
"123456789012345678", // 18 -> attempt skipped
|
||||
"0.1234567890123456", // 16: the leading "0" is not significant
|
||||
"0.12345678901234567", // 17
|
||||
"0.00000000000000001", // 1, in a long token
|
||||
@@ -665,323 +663,46 @@ TEST_CASE("lexer string fast path")
|
||||
}
|
||||
}
|
||||
|
||||
TEST_CASE("lexer escape fast path")
|
||||
TEST_CASE("parse_float_fast declines what it cannot convert exactly")
|
||||
{
|
||||
// json::accept() never throws, so this section stays covered without
|
||||
// exceptions; it pins which of the cases below are valid/invalid and
|
||||
// checks the contiguous and streaming paths agree on that classification.
|
||||
SECTION("accept() parity")
|
||||
// The lexer only hands well-formed numbers to parse_float_fast, so the
|
||||
// malformed ones below can only be passed to it directly. Declining is
|
||||
// always safe: the caller then falls back to a slower, exact conversion.
|
||||
const auto fast = [](const std::string & s, double & out)
|
||||
{
|
||||
const std::vector<std::pair<std::string, bool>> cases =
|
||||
{
|
||||
{"\\u0041", true}, {"\\u00e4", true}, {"\\u00E4", true},
|
||||
{"\\uD83D\\uDE00", true},
|
||||
{"\\u12", false}, {"\\u12G4", false}, {"\\uXYZW", false},
|
||||
{"\\uD800", false}, {"\\uD800A", false}, {"\\uD800\\u0041", false},
|
||||
{"\\uDC00", false}, {"\\u", false}
|
||||
};
|
||||
|
||||
for (const auto& c : cases)
|
||||
{
|
||||
for (const std::size_t offset :
|
||||
{
|
||||
std::size_t{0}, std::size_t{9}
|
||||
})
|
||||
{
|
||||
const std::string doc = "[\"" + std::string(offset, 'a') + c.first + "\"]";
|
||||
CAPTURE(doc);
|
||||
CHECK(json::accept(doc) == c.second);
|
||||
std::stringstream ss(doc);
|
||||
CHECK(json::accept(ss) == c.second);
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
#if !defined(JSON_NOEXCEPTION)
|
||||
// the full outcome of parsing @a doc: the parsed value, or the exact
|
||||
// error message, so a mismatch in either is caught
|
||||
const auto outcome = [](const std::string & doc, bool streaming) -> std::string
|
||||
{
|
||||
try
|
||||
{
|
||||
if (streaming)
|
||||
{
|
||||
std::stringstream ss(doc);
|
||||
const json j = json::parse(ss);
|
||||
return j.dump();
|
||||
}
|
||||
const json j = json::parse(doc);
|
||||
return j.dump();
|
||||
}
|
||||
catch (const json::exception& e)
|
||||
{
|
||||
return {e.what()};
|
||||
}
|
||||
return nlohmann::detail::parse_float_fast(s.data(), s.data() + s.size(), out);
|
||||
};
|
||||
double out = 0;
|
||||
|
||||
SECTION("contiguous vs streaming parity")
|
||||
{
|
||||
const std::vector<std::string> escapes =
|
||||
{
|
||||
"\\u0041", // "A"
|
||||
"\\u00e4", // "ä" (lowercase hex)
|
||||
"\\u00E4", // "ä" (uppercase hex)
|
||||
"\\uD83D\\uDE00", // valid surrogate pair (an emoji)
|
||||
"\\u12", // truncated: only 2 hex digits before the closing quote
|
||||
"\\u12G4", // invalid hex digit at the 3rd position
|
||||
"\\uXYZW", // all 4 bytes invalid
|
||||
"\\uD800", // lone high surrogate, string ends right after
|
||||
"\\uD800A", // high surrogate not followed by another \u escape
|
||||
"\\uD800\\u0041", // high surrogate followed by \u, but not a low surrogate
|
||||
"\\uDC00", // lone low surrogate
|
||||
"\\u", // '\u' with nothing after (closing quote right away)
|
||||
};
|
||||
|
||||
// once at the start of the string and once past the first 8-byte SWAR
|
||||
// word of the outer string_bulk_run, so the escape is reached both
|
||||
// right after the opening quote and mid-run
|
||||
for (const auto& escape : escapes)
|
||||
{
|
||||
for (const std::size_t offset :
|
||||
{
|
||||
std::size_t{0}, std::size_t{9}
|
||||
})
|
||||
{
|
||||
const std::string doc = "[\"" + std::string(offset, 'a') + escape + "\"]";
|
||||
CAPTURE(doc);
|
||||
CHECK(outcome(doc, false) == outcome(doc, true));
|
||||
}
|
||||
|
||||
// the escape is the last thing before end of input: no closing
|
||||
// quote at all
|
||||
const std::string truncated_doc = "[\"" + escape;
|
||||
CAPTURE(truncated_doc);
|
||||
CHECK(outcome(truncated_doc, false) == outcome(truncated_doc, true));
|
||||
}
|
||||
}
|
||||
|
||||
SECTION("truncated \\u escape at every distance from the end of input")
|
||||
{
|
||||
// ia.bulk_remaining() must correctly report fewer than 4 bytes for
|
||||
// every possible count of trailing hex-looking bytes (0, 1, 2, or 3)
|
||||
// before end of input, so the fast path declines and the byte path
|
||||
// alone reports the "must be followed by 4 hex digits" error, at the
|
||||
// same position, in every case
|
||||
for (const std::string& tail :
|
||||
{
|
||||
std::string{}, std::string("1"), std::string("12"), std::string("123")
|
||||
})
|
||||
{
|
||||
const std::string doc = "[\"\\u" + tail;
|
||||
CAPTURE(doc);
|
||||
CHECK(outcome(doc, false) == outcome(doc, true));
|
||||
CHECK(outcome(doc, false).find("must be followed by 4 hex digits") != std::string::npos);
|
||||
}
|
||||
}
|
||||
|
||||
SECTION("invalid hex digit at every position of the 4")
|
||||
{
|
||||
// the fast path must decline for *any* invalid byte among the 4, not
|
||||
// just the first, and the byte path must then stop at exactly that
|
||||
// position - same as it always has
|
||||
for (std::size_t bad_pos = 0; bad_pos < 4; ++bad_pos)
|
||||
{
|
||||
std::string digits = "1234";
|
||||
digits[bad_pos] = 'g'; // not a hex digit
|
||||
const std::string doc = "[\"\\u" + digits + "\"]";
|
||||
CAPTURE(doc);
|
||||
CHECK(outcome(doc, false) == outcome(doc, true));
|
||||
CHECK(outcome(doc, false).find("must be followed by 4 hex digits") != std::string::npos);
|
||||
}
|
||||
}
|
||||
|
||||
SECTION("random escapes")
|
||||
{
|
||||
// A seeded PRNG builds the 4 bytes following `\u` from a mix of hex
|
||||
// digits and non-hex bytes, at varying distances from the start of
|
||||
// the string, to compare the two scanners on many more shapes than
|
||||
// are practical to enumerate by hand.
|
||||
std::mt19937 gen(7654321); // NOLINT(cert-msc32-c,cert-msc51-cpp)
|
||||
const std::string hex_alphabet = "0123456789AaBbCcDdEeFf";
|
||||
std::uniform_int_distribution<std::size_t> pick_hex(0, hex_alphabet.size() - 1);
|
||||
std::uniform_int_distribution<int> pick_byte(1, 255); // never NUL
|
||||
std::uniform_int_distribution<int> pick_is_hex(0, 4); // 4-in-5 chance of a hex digit
|
||||
std::uniform_int_distribution<std::size_t> pick_offset(0, 12);
|
||||
|
||||
std::vector<std::string> mismatches;
|
||||
for (int iter = 0; iter < 3000; ++iter)
|
||||
{
|
||||
std::string digits;
|
||||
for (int i = 0; i < 4; ++i)
|
||||
{
|
||||
if (pick_is_hex(gen) != 0)
|
||||
{
|
||||
digits += hex_alphabet[pick_hex(gen)];
|
||||
}
|
||||
else
|
||||
{
|
||||
char c = static_cast<char>(pick_byte(gen));
|
||||
if (c == '"' || c == '\\')
|
||||
{
|
||||
// keep the string well-formed apart from the escape
|
||||
// itself, so any mismatch is attributable to the \u
|
||||
// handling and not to an unrelated quote/escape
|
||||
c = 'z';
|
||||
}
|
||||
digits += c;
|
||||
}
|
||||
}
|
||||
const std::string doc = "[\"" + std::string(pick_offset(gen), 'a') + "\\u" + digits + "\"]";
|
||||
if (outcome(doc, false) != outcome(doc, true))
|
||||
{
|
||||
mismatches.push_back(doc);
|
||||
}
|
||||
}
|
||||
CAPTURE(mismatches);
|
||||
CHECK(mismatches.empty());
|
||||
}
|
||||
#if defined(FLT_EVAL_METHOD) && FLT_EVAL_METHOD != 0
|
||||
// without true double precision, the fast path declines everything
|
||||
CHECK_FALSE(fast("1.5", out));
|
||||
#else
|
||||
CHECK(fast("1.5", out));
|
||||
CHECK(out == 1.5);
|
||||
CHECK(fast("+2.5e1", out));
|
||||
CHECK(out == 25.0);
|
||||
CHECK(fast("-25E-1", out));
|
||||
CHECK(out == -2.5);
|
||||
CHECK(fast("1e", out));
|
||||
CHECK(out == 1.0);
|
||||
#endif
|
||||
}
|
||||
|
||||
namespace
|
||||
{
|
||||
// the index of the decimal point (or npos) and of the end of the mantissa of a
|
||||
// number token, which the lexer records while scanning it
|
||||
std::pair<std::size_t, std::size_t> float_token_layout(const std::string& s)
|
||||
{
|
||||
std::size_t dot = std::string::npos;
|
||||
std::size_t mantissa_end = s.size();
|
||||
for (std::size_t i = 0; i < s.size(); ++i)
|
||||
{
|
||||
if (s[i] == '.')
|
||||
{
|
||||
dot = i;
|
||||
}
|
||||
else if (s[i] == 'e' || s[i] == 'E')
|
||||
{
|
||||
mantissa_end = i;
|
||||
break;
|
||||
}
|
||||
}
|
||||
return {dot, mantissa_end};
|
||||
}
|
||||
// not a number
|
||||
CHECK_FALSE(fast("", out));
|
||||
CHECK_FALSE(fast("-", out));
|
||||
CHECK_FALSE(fast(".", out));
|
||||
CHECK_FALSE(fast("1.2.3", out));
|
||||
CHECK_FALSE(fast("1x", out));
|
||||
CHECK_FALSE(fast("1e+", out));
|
||||
CHECK_FALSE(fast("1e1x", out));
|
||||
|
||||
template<typename FloatType>
|
||||
FloatType parse_native(const std::string& s)
|
||||
{
|
||||
const auto layout = float_token_layout(s);
|
||||
return nlohmann::detail::parse_float_native<FloatType>(s.data(), s.data() + s.size(), layout.first, layout.second);
|
||||
}
|
||||
|
||||
std::uint64_t bits_of(double d)
|
||||
{
|
||||
std::uint64_t b = 0;
|
||||
std::memcpy(&b, &d, sizeof(b));
|
||||
return b;
|
||||
}
|
||||
|
||||
std::uint32_t bits_of(float f)
|
||||
{
|
||||
std::uint32_t b = 0;
|
||||
std::memcpy(&b, &f, sizeof(b));
|
||||
return b;
|
||||
}
|
||||
|
||||
std::uint64_t native_bits64(const std::string& s)
|
||||
{
|
||||
return bits_of(parse_native<double>(s));
|
||||
}
|
||||
|
||||
std::uint32_t native_bits32(const std::string& s)
|
||||
{
|
||||
return bits_of(parse_native<float>(s));
|
||||
}
|
||||
} // namespace
|
||||
|
||||
TEST_CASE("parse_float_native rounds correctly")
|
||||
{
|
||||
SECTION("double")
|
||||
{
|
||||
CHECK(native_bits64("1.5") == 0x3FF8000000000000u);
|
||||
CHECK(native_bits64("0.1") == 0x3FB999999999999Au);
|
||||
CHECK(native_bits64("-0.0") == 0x8000000000000000u);
|
||||
CHECK(native_bits64("0e999999999999999999999") == 0u);
|
||||
// 2^53 + 1 is exactly between two doubles: ties to even, unless more digits follow
|
||||
CHECK(native_bits64("9007199254740993") == 0x4340000000000000u);
|
||||
CHECK(native_bits64("9007199254740993.0000000000000000001") == 0x4340000000000001u);
|
||||
CHECK(native_bits64("9007199254740992.9999999999999999999") == 0x4340000000000000u);
|
||||
// 1 + 2^-53 exactly (a tie), and one unit in the 55th digit around it
|
||||
CHECK(native_bits64("1.00000000000000011102230246251565404236316680908203125") == 0x3FF0000000000000u);
|
||||
CHECK(native_bits64("1.00000000000000011102230246251565404236316680908203126") == 0x3FF0000000000001u);
|
||||
CHECK(native_bits64("1.00000000000000011102230246251565404236316680908203124") == 0x3FF0000000000000u);
|
||||
// subnormal and overflow boundaries
|
||||
CHECK(native_bits64("2.4703282292062327e-324") == 0u);
|
||||
CHECK(native_bits64("2.4703282292062328e-324") == 1u);
|
||||
CHECK(native_bits64("2.2250738585072011e-308") == 0x000FFFFFFFFFFFFFu);
|
||||
CHECK(native_bits64("2.2250738585072012e-308") == 0x0010000000000000u);
|
||||
CHECK(native_bits64("1.7976931348623157e308") == 0x7FEFFFFFFFFFFFFFu);
|
||||
CHECK(native_bits64("1.7976931348623159e308") == 0x7FF0000000000000u);
|
||||
CHECK(native_bits64("-1e400") == 0xFFF0000000000000u);
|
||||
CHECK(native_bits64("-1e-400") == 0x8000000000000000u);
|
||||
// exponents and zeros far beyond the range cancel out
|
||||
CHECK(native_bits64("0." + std::string(1000, '0') + "1e1001") == 0x3FF0000000000000u);
|
||||
CHECK(native_bits64("1" + std::string(1000, '0') + "e-1000") == 0x3FF0000000000000u);
|
||||
CHECK(native_bits64("1e-99999999999999999999999") == 0u);
|
||||
CHECK(native_bits64("1E+99999999999999999999999") == 0x7FF0000000000000u);
|
||||
// more digits than any midpoint has (769): only whether a nonzero digit follows matters
|
||||
const std::string tie = "1.00000000000000011102230246251565404236316680908203125";
|
||||
CHECK(native_bits64(tie + std::string(800, '0')) == 0x3FF0000000000000u);
|
||||
CHECK(native_bits64(tie + std::string(800, '0') + "1") == 0x3FF0000000000001u);
|
||||
}
|
||||
|
||||
SECTION("float")
|
||||
{
|
||||
CHECK(native_bits32("1.5") == 0x3FC00000u);
|
||||
CHECK(native_bits32("0.1") == 0x3DCCCCCDu);
|
||||
CHECK(native_bits32("-0.0") == 0x80000000u);
|
||||
// 2^24 + 1 is exactly between two floats
|
||||
CHECK(native_bits32("16777217") == 0x4B800000u);
|
||||
CHECK(native_bits32("16777217.000000000000000000001") == 0x4B800001u);
|
||||
CHECK(native_bits32("16777218.999999999999999999999") == 0x4B800001u);
|
||||
CHECK(native_bits32("16777219") == 0x4B800002u);
|
||||
// subnormal and overflow boundaries
|
||||
CHECK(native_bits32("3.4028235677973366e38") == 0x7F7FFFFFu);
|
||||
CHECK(native_bits32("3.4028235677973367e38") == 0x7F800000u);
|
||||
CHECK(native_bits32("7.006492321624085e-46") == 0u);
|
||||
CHECK(native_bits32("7.006492321624086e-46") == 1u);
|
||||
CHECK(native_bits32("1.1754942e-38") == 0x007FFFFFu);
|
||||
CHECK(native_bits32("-1.17549435e-38") == 0x80800000u);
|
||||
CHECK(native_bits32("1e39") == 0x7F800000u);
|
||||
CHECK(native_bits32("-1e-50") == 0x80000000u);
|
||||
// not rounded through double: its double would round to another float
|
||||
CHECK(native_bits32("1.00000005960464477539062500000000001") == 0x3F800001u);
|
||||
CHECK(native_bits32("9007199254740993") == 0x5A000000u);
|
||||
}
|
||||
|
||||
SECTION("the conversion shared with other parsers")
|
||||
{
|
||||
// convert_float() gives the lexer's results, for every type
|
||||
const std::vector<std::string> tokens =
|
||||
{
|
||||
"0", "-0.0", "1.5", "0.1", "1e-400", "-2.5E+3", "123456789012345678901234567890",
|
||||
"9007199254740993.0000000000000000001", "4.9406564584124654e-324"
|
||||
};
|
||||
using float_json = nlohmann::basic_json<std::map, std::vector, std::string, bool, std::int64_t, std::uint64_t, float>;
|
||||
using long_double_json = nlohmann::basic_json<std::map, std::vector, std::string, bool, std::int64_t, std::uint64_t, long double>;
|
||||
for (const auto& t : tokens)
|
||||
{
|
||||
CAPTURE(t);
|
||||
const auto layout = float_token_layout(t);
|
||||
const char* const first = t.data();
|
||||
const char* const last = first + t.size();
|
||||
const auto d = nlohmann::detail::convert_float<double>(first, last, layout.first, layout.second);
|
||||
const auto f = nlohmann::detail::convert_float<float>(first, last, layout.first, layout.second);
|
||||
const auto ld = nlohmann::detail::convert_float<long double>(first, last, layout.first, layout.second);
|
||||
CHECK(bits_of(d) == bits_of(json::parse(t).get<double>()));
|
||||
CHECK(bits_of(f) == bits_of(float_json::parse(t).get<float>()));
|
||||
CHECK(ld == long_double_json::parse(t).get<long double>());
|
||||
}
|
||||
}
|
||||
// numbers that are not represented exactly on the fast path
|
||||
CHECK_FALSE(fast("12345678901234567890", out));
|
||||
CHECK_FALSE(fast("1e10000", out));
|
||||
CHECK_FALSE(fast("9007199254740993", out));
|
||||
CHECK_FALSE(fast("1e23", out));
|
||||
CHECK_FALSE(fast("1e-23", out));
|
||||
}
|
||||
|
||||
namespace
|
||||
@@ -1085,6 +806,40 @@ std::size_t big_bit_length(const big_uint& a)
|
||||
}
|
||||
return n;
|
||||
}
|
||||
|
||||
std::uint64_t bits_of(double d)
|
||||
{
|
||||
std::uint64_t b = 0;
|
||||
std::memcpy(&b, &d, sizeof(b));
|
||||
return b;
|
||||
}
|
||||
|
||||
bool eisel_lemire(const std::string& s, double& out)
|
||||
{
|
||||
return nlohmann::detail::parse_float_eisel_lemire(s.data(), s.data() + s.size(), out);
|
||||
}
|
||||
|
||||
// significant digits of a token, without trailing zeros
|
||||
std::size_t significant_digits(const std::string& s)
|
||||
{
|
||||
std::string digits;
|
||||
for (const char c : s)
|
||||
{
|
||||
if (c == 'e' || c == 'E')
|
||||
{
|
||||
break;
|
||||
}
|
||||
if (c >= '0' && c <= '9' && !(digits.empty() && c == '0'))
|
||||
{
|
||||
digits += c;
|
||||
}
|
||||
}
|
||||
while (!digits.empty() && digits.back() == '0')
|
||||
{
|
||||
digits.pop_back();
|
||||
}
|
||||
return digits.size();
|
||||
}
|
||||
} // namespace
|
||||
|
||||
TEST_CASE("Eisel-Lemire float conversion")
|
||||
@@ -1482,33 +1237,26 @@ TEST_CASE("Eisel-Lemire float conversion")
|
||||
for (const auto& c : known)
|
||||
{
|
||||
CAPTURE(c.first)
|
||||
CHECK(native_bits64(c.first) == c.second);
|
||||
double out = 0;
|
||||
if (eisel_lemire(c.first, out))
|
||||
{
|
||||
CHECK(bits_of(out) == c.second);
|
||||
}
|
||||
else
|
||||
{
|
||||
// only tokens with more than 19 significant digits are left to
|
||||
// strtod: those whose value lies too close to a tie
|
||||
CHECK(significant_digits(c.first) > 19);
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
SECTION("binary32")
|
||||
{
|
||||
using binary32 = nlohmann::detail::ieee_binary_format<24>;
|
||||
CHECK(nlohmann::detail::eisel_lemire<binary32>(0, 1) == 0x3F800000u);
|
||||
CHECK(nlohmann::detail::eisel_lemire<binary32>(-1, 1) == 0x3DCCCCCDu);
|
||||
CHECK(nlohmann::detail::eisel_lemire<binary32>(-1, 15) == 0x3FC00000u);
|
||||
CHECK(nlohmann::detail::eisel_lemire<binary32>(0, 16777217) == 0x4B800000u); // tie, to even
|
||||
CHECK(nlohmann::detail::eisel_lemire<binary32>(0, 16777219) == 0x4B800002u); // tie, to even
|
||||
CHECK(nlohmann::detail::eisel_lemire<binary32>(-45, 1) == 0x00000001u);
|
||||
CHECK(nlohmann::detail::eisel_lemire<binary32>(-46, 7) == 0x00000000u);
|
||||
CHECK(nlohmann::detail::eisel_lemire<binary32>(-46, 8) == 0x00000001u);
|
||||
CHECK(nlohmann::detail::eisel_lemire<binary32>(-65, 9999999999999999999u) == 0x00000000u);
|
||||
CHECK(nlohmann::detail::eisel_lemire<binary32>(20, 3402823466385288598u) == 0x7F7FFFFFu);
|
||||
CHECK(nlohmann::detail::eisel_lemire<binary32>(20, 3402823669209384635u) == 0x7F800000u);
|
||||
CHECK(nlohmann::detail::eisel_lemire<binary32>(39, 1) == 0x7F800000u);
|
||||
CHECK(nlohmann::detail::eisel_lemire<binary32>(-5, 0) == 0x00000000u);
|
||||
}
|
||||
|
||||
SECTION("round trip")
|
||||
{
|
||||
// every double written by to_chars and read back, and its 17-digit
|
||||
// form with trailing digits that make the token longer than 19 digits
|
||||
// every double written by to_chars and read back, also with trailing
|
||||
// digits that make the token longer than 19 digits
|
||||
std::uint64_t state = 5295;
|
||||
std::size_t declined = 0;
|
||||
for (int i = 0; i < 200000; ++i)
|
||||
{
|
||||
state ^= state << 13u;
|
||||
@@ -1530,51 +1278,30 @@ TEST_CASE("Eisel-Lemire float conversion")
|
||||
const char* end = nlohmann::detail::to_chars(buffer.data(), buffer.data() + buffer.size(), d);
|
||||
const std::string token(buffer.data(), static_cast<std::size_t>(end - buffer.data()));
|
||||
CAPTURE(token)
|
||||
CHECK(native_bits64(token) == b);
|
||||
double out = 0;
|
||||
REQUIRE(eisel_lemire(token, out));
|
||||
CHECK(bits_of(out) == b);
|
||||
|
||||
// insert digits before the exponent of the 17-digit form: that
|
||||
// form lies strictly inside the rounding interval of the double
|
||||
// (the shortest one may lie on its boundary), and the digits move
|
||||
// it by far less than the distance to the boundary, so the value
|
||||
// must not change
|
||||
std::array<char, 64> digits17{};
|
||||
static_cast<void>(std::snprintf(digits17.data(), digits17.size(), "%.17g", d)); // NOLINT(cppcoreguidelines-pro-type-vararg,hicpp-vararg)
|
||||
std::string longer = digits17.data();
|
||||
// insert digits before the exponent: the value moves by far less
|
||||
// than the distance to the rounding boundary, so it must not change
|
||||
std::string longer = token;
|
||||
const std::size_t e = longer.find('e');
|
||||
const std::size_t dot = longer.find('.');
|
||||
const std::string extra = dot == std::string::npos ? ".000000000000000000001" : "000000000000000000001";
|
||||
longer.insert(e == std::string::npos ? longer.size() : e, extra);
|
||||
CAPTURE(longer)
|
||||
CHECK(native_bits64(longer) == b);
|
||||
}
|
||||
}
|
||||
|
||||
SECTION("round trip, binary32")
|
||||
{
|
||||
std::uint32_t state = 5295;
|
||||
for (int i = 0; i < 100000; ++i)
|
||||
{
|
||||
state ^= state << 13u;
|
||||
state ^= state >> 17u;
|
||||
state ^= state << 5u;
|
||||
std::uint32_t b = state;
|
||||
if ((b & 0x7F800000u) == 0x7F800000u)
|
||||
if (eisel_lemire(longer, out))
|
||||
{
|
||||
continue; // infinity or NaN
|
||||
CHECK(bits_of(out) == b);
|
||||
}
|
||||
if (i % 4 == 0)
|
||||
else
|
||||
{
|
||||
b &= 0x807FFFFFu; // subnormals
|
||||
// w and w + 1 round differently: only when the value is very
|
||||
// close to a rounding boundary
|
||||
++declined;
|
||||
}
|
||||
float f = 0;
|
||||
std::memcpy(&f, &b, sizeof(f));
|
||||
|
||||
std::array<char, 64> buffer{};
|
||||
const char* end = nlohmann::detail::to_chars(buffer.data(), buffer.data() + buffer.size(), f);
|
||||
const std::string token(buffer.data(), static_cast<std::size_t>(end - buffer.data()));
|
||||
CAPTURE(token);
|
||||
CHECK(native_bits32(token) == b);
|
||||
}
|
||||
CHECK(declined < 1000); // 107 of the 200,000
|
||||
}
|
||||
|
||||
SECTION("used by the lexer")
|
||||
@@ -1588,177 +1315,3 @@ TEST_CASE("Eisel-Lemire float conversion")
|
||||
"[json.exception.out_of_range.406] number overflow parsing '1.7976931348623159e308'", json::out_of_range&);
|
||||
}
|
||||
}
|
||||
|
||||
namespace
|
||||
{
|
||||
using float_json = nlohmann::basic_json<std::map, std::vector, std::string, bool, std::int64_t, std::uint64_t, float>;
|
||||
|
||||
// the bits of the float that parse() gives for a token, via both scanners;
|
||||
// the value must be the same for both
|
||||
template<typename Json, typename Bits>
|
||||
void check_parse(const std::string& token, Bits expected, Bits infinity)
|
||||
{
|
||||
std::stringstream stream(token);
|
||||
if ((expected & ~(Bits{1} << (8 * sizeof(Bits) - 1))) == infinity)
|
||||
{
|
||||
Json _;
|
||||
CHECK_THROWS_WITH_AS(_ = Json::parse(token), ("[json.exception.out_of_range.406] number overflow parsing '" + token + "'").c_str(), typename Json::out_of_range&);
|
||||
CHECK_THROWS_WITH_AS(_ = Json::parse(stream), ("[json.exception.out_of_range.406] number overflow parsing '" + token + "'").c_str(), typename Json::out_of_range&);
|
||||
return;
|
||||
}
|
||||
const Json contiguous = Json::parse(token);
|
||||
const Json streamed = Json::parse(stream);
|
||||
if (contiguous.is_number_float()) // not an integer that fits
|
||||
{
|
||||
CHECK(bits_of(contiguous.template get<typename Json::number_float_t>()) == expected);
|
||||
CHECK(bits_of(streamed.template get<typename Json::number_float_t>()) == expected);
|
||||
}
|
||||
else
|
||||
{
|
||||
CHECK(streamed.is_number_integer());
|
||||
}
|
||||
}
|
||||
} // namespace
|
||||
|
||||
TEST_CASE("float conversion of hard cases")
|
||||
{
|
||||
// see float_hard_cases.hpp
|
||||
for (const auto& c : float_hard_cases::cases())
|
||||
{
|
||||
const std::string token = c.token;
|
||||
CAPTURE(token);
|
||||
CHECK(native_bits64(token) == c.bits64);
|
||||
CHECK(native_bits32(token) == c.bits32);
|
||||
check_parse<json>(token, c.bits64, std::uint64_t{0x7FF0000000000000u});
|
||||
check_parse<float_json>(token, c.bits32, std::uint32_t{0x7F800000u});
|
||||
}
|
||||
}
|
||||
|
||||
TEST_CASE("float overflow and underflow in the parser")
|
||||
{
|
||||
SECTION("double")
|
||||
{
|
||||
check_parse<json>("1.7976931348623157e308", std::uint64_t{0x7FEFFFFFFFFFFFFFu}, std::uint64_t{0x7FF0000000000000u});
|
||||
check_parse<json>("1.7976931348623159e308", std::uint64_t{0x7FF0000000000000u}, std::uint64_t{0x7FF0000000000000u});
|
||||
check_parse<json>("-1e309", std::uint64_t{0xFFF0000000000000u}, std::uint64_t{0x7FF0000000000000u});
|
||||
check_parse<json>("1" + std::string(400, '0'), std::uint64_t{0x7FF0000000000000u}, std::uint64_t{0x7FF0000000000000u});
|
||||
check_parse<json>("1e99999999999999999999", std::uint64_t{0x7FF0000000000000u}, std::uint64_t{0x7FF0000000000000u});
|
||||
// an underflow gives a zero with the sign of the token
|
||||
check_parse<json>("1e-400", std::uint64_t{0}, std::uint64_t{0x7FF0000000000000u});
|
||||
check_parse<json>("-1e-400", std::uint64_t{0x8000000000000000u}, std::uint64_t{0x7FF0000000000000u});
|
||||
check_parse<json>("-2.4703282292062327e-324", std::uint64_t{0x8000000000000000u}, std::uint64_t{0x7FF0000000000000u});
|
||||
check_parse<json>("0." + std::string(400, '0') + "1", std::uint64_t{0}, std::uint64_t{0x7FF0000000000000u});
|
||||
}
|
||||
|
||||
SECTION("float")
|
||||
{
|
||||
check_parse<float_json>("3.4028234e38", std::uint32_t{0x7F7FFFFFu}, std::uint32_t{0x7F800000u});
|
||||
check_parse<float_json>("3.4028236e38", std::uint32_t{0x7F800000u}, std::uint32_t{0x7F800000u});
|
||||
check_parse<float_json>("-1e39", std::uint32_t{0xFF800000u}, std::uint32_t{0x7F800000u});
|
||||
check_parse<float_json>("1e-46", std::uint32_t{0}, std::uint32_t{0x7F800000u});
|
||||
check_parse<float_json>("-1e-46", std::uint32_t{0x80000000u}, std::uint32_t{0x7F800000u});
|
||||
check_parse<float_json>("-7.006492321624085e-46", std::uint32_t{0x80000000u}, std::uint32_t{0x7F800000u});
|
||||
check_parse<float_json>("-7.006492321624086e-46", std::uint32_t{0x80000001u}, std::uint32_t{0x7F800000u});
|
||||
}
|
||||
}
|
||||
|
||||
TEST_CASE("string scanning kernels")
|
||||
{
|
||||
// the word-at-a-time kernels must stop exactly where a byte-by-byte scan
|
||||
// stops, for any content, length, and alignment
|
||||
const auto reference_special = [](const unsigned char* data, std::size_t n)
|
||||
{
|
||||
std::size_t i = 0;
|
||||
while (i < n && !nlohmann::detail::is_string_special(data[i]))
|
||||
{
|
||||
++i;
|
||||
}
|
||||
return i;
|
||||
};
|
||||
const auto reference_copyable = [](const unsigned char* data, std::size_t n)
|
||||
{
|
||||
std::size_t i = 0;
|
||||
while (i < n && nlohmann::detail::is_ascii_copyable(data[i]))
|
||||
{
|
||||
++i;
|
||||
}
|
||||
return i;
|
||||
};
|
||||
const auto reference_bulk_run = [](const unsigned char* data, std::size_t n)
|
||||
{
|
||||
std::size_t i = 0;
|
||||
while (i < n)
|
||||
{
|
||||
if (data[i] < 0x80u)
|
||||
{
|
||||
if (nlohmann::detail::is_string_special(data[i]))
|
||||
{
|
||||
break;
|
||||
}
|
||||
++i;
|
||||
continue;
|
||||
}
|
||||
const std::size_t seq = nlohmann::detail::validate_one_utf8(data + i, n - i);
|
||||
if (seq == 0)
|
||||
{
|
||||
break;
|
||||
}
|
||||
i += seq;
|
||||
}
|
||||
return i;
|
||||
};
|
||||
|
||||
// pieces: ordinary ASCII, stops, DEL, well-formed sequences of every
|
||||
// length, and ill-formed or truncated ones
|
||||
const std::vector<std::string> pieces =
|
||||
{
|
||||
"a", "Z", " ", "~", "0123456789", "\"", "\\", std::string(1, '\0'), "\n", "\x1F", "\x7F",
|
||||
"\xC3\xA4", "\xE2\x82\xAC", "\xE6\x97\xA5\xE6\x9C\xAC", "\xF0\x9F\x98\x80", "\xED\x9F\xBF",
|
||||
"\x80", "\xC0\x80", "\xC3", "\xE2\x82", "\xED\xA0\x80", "\xF4\x90\x80\x80", "\xFF",
|
||||
};
|
||||
std::uint64_t state = 5295;
|
||||
const auto next = [&state]()
|
||||
{
|
||||
state ^= state << 13u;
|
||||
state ^= state >> 7u;
|
||||
state ^= state << 17u;
|
||||
return state;
|
||||
};
|
||||
// the upper half as a 32-bit value: converts to std::size_t implicitly on
|
||||
// every platform (a cast of std::uint64_t is useless where both are the
|
||||
// same type, and required where std::size_t is 32 bits wide)
|
||||
const auto next_small = [&next]()
|
||||
{
|
||||
return static_cast<std::uint32_t>(next() >> 32u);
|
||||
};
|
||||
for (int round = 0; round < 100000; ++round)
|
||||
{
|
||||
// mostly ordinary text, so that runs span several words
|
||||
std::string text(next_small() % 8u, '.');
|
||||
const std::size_t count = next_small() % 12u;
|
||||
for (std::size_t k = 0; k < count; ++k)
|
||||
{
|
||||
const std::size_t p = (next() % 4 == 0) ? next_small() % pieces.size() : 0;
|
||||
text += pieces[p];
|
||||
text += std::string(next_small() % 10u, 'x');
|
||||
}
|
||||
const auto* data = reinterpret_cast<const unsigned char*>(text.data()); // NOLINT(cppcoreguidelines-pro-type-reinterpret-cast)
|
||||
for (std::size_t offset = 0; offset < 3 && offset <= text.size(); ++offset)
|
||||
{
|
||||
const std::size_t n = text.size() - offset;
|
||||
CAPTURE(text);
|
||||
CAPTURE(offset);
|
||||
CHECK(nlohmann::detail::find_string_special(data + offset, n) == reference_special(data + offset, n));
|
||||
CHECK(nlohmann::detail::find_ascii_copyable_run(data + offset, n) == reference_copyable(data + offset, n));
|
||||
CHECK(nlohmann::detail::scalar_string_bulk_run(data + offset, n) == reference_bulk_run(data + offset, n));
|
||||
}
|
||||
}
|
||||
|
||||
// the trailing-zero count, whichever implementation the compiler gets
|
||||
for (int k = 0; k < 64; ++k)
|
||||
{
|
||||
const std::uint64_t bit = std::uint64_t{1} << k;
|
||||
CHECK(nlohmann::detail::count_trailing_zeros(bit) == k);
|
||||
CHECK(nlohmann::detail::count_trailing_zeros(bit | (bit << 1u) | 0x8000000000000000u) == k);
|
||||
}
|
||||
}
|
||||
|
||||
@@ -0,0 +1,246 @@
|
||||
// __ _____ _____ _____
|
||||
// __| | __| | | | JSON for Modern C++ (supporting code)
|
||||
// | | |__ | | | | | | version 3.12.0
|
||||
// |_____|_____|_____|_|___| https://github.com/nlohmann/json
|
||||
//
|
||||
// SPDX-FileCopyrightText: 2013-2026 Niels Lohmann <https://nlohmann.me>
|
||||
// SPDX-License-Identifier: MIT
|
||||
|
||||
#include "doctest_compatibility.h"
|
||||
|
||||
// skip tests if JSON_DisableEnumSerialization=ON (#4384)
|
||||
#if defined(JSON_DISABLE_ENUM_SERIALIZATION) && (JSON_DISABLE_ENUM_SERIALIZATION == 1)
|
||||
#define SKIP_TESTS_FOR_ENUM_SERIALIZATION
|
||||
#endif
|
||||
|
||||
// This file tests the opt-in JSON_USE_OBJECTS_FOR_ENUM_KEYED_MAPS, so it defines
|
||||
// the macro itself rather than relying on a -D flag, and runs in every build.
|
||||
// The default behavior is tested in unit-enum_keyed_maps_default.cpp.
|
||||
#ifdef JSON_USE_OBJECTS_FOR_ENUM_KEYED_MAPS
|
||||
#undef JSON_USE_OBJECTS_FOR_ENUM_KEYED_MAPS
|
||||
#endif
|
||||
|
||||
#define JSON_USE_OBJECTS_FOR_ENUM_KEYED_MAPS 1
|
||||
|
||||
#include <nlohmann/json.hpp>
|
||||
using nlohmann::json;
|
||||
using nlohmann::ordered_json;
|
||||
|
||||
#include <cstddef>
|
||||
#include <functional>
|
||||
#include <map>
|
||||
#include <string>
|
||||
#include <unordered_map>
|
||||
#include <utility>
|
||||
#include <vector>
|
||||
|
||||
#define STRINGIZE_EX(x) #x
|
||||
#define STRINGIZE(x) STRINGIZE_EX(x)
|
||||
|
||||
// NLOHMANN_JSON_SERIALIZE_ENUM uses a static std::pair
|
||||
DOCTEST_CLANG_SUPPRESS_WARNING_PUSH
|
||||
DOCTEST_CLANG_SUPPRESS_WARNING("-Wexit-time-destructors")
|
||||
|
||||
namespace
|
||||
{
|
||||
// std::hash is only required for enums since C++14
|
||||
struct enum_hash
|
||||
{
|
||||
template<typename T>
|
||||
std::size_t operator()(T t) const noexcept
|
||||
{
|
||||
return static_cast<std::size_t>(t);
|
||||
}
|
||||
};
|
||||
} // namespace
|
||||
|
||||
// the example from #4378
|
||||
enum TaskState // NOLINT(cert-int09-c,readability-enum-initial-value,cppcoreguidelines-use-enum-class)
|
||||
{
|
||||
TS_STOPPED,
|
||||
TS_RUNNING,
|
||||
TS_COMPLETED,
|
||||
TS_INVALID = -1,
|
||||
};
|
||||
|
||||
// NOLINTNEXTLINE(misc-const-correctness,misc-use-internal-linkage,cppcoreguidelines-avoid-c-arrays,hicpp-avoid-c-arrays,modernize-avoid-c-arrays) - false positive
|
||||
NLOHMANN_JSON_SERIALIZE_ENUM(TaskState,
|
||||
{
|
||||
{TS_INVALID, nullptr},
|
||||
{TS_STOPPED, "stopped"},
|
||||
{TS_RUNNING, "running"},
|
||||
{TS_COMPLETED, "completed"},
|
||||
})
|
||||
|
||||
enum class color {red, green, blue}; // blue is not mapped and falls back to "red"
|
||||
|
||||
// NOLINTNEXTLINE(misc-const-correctness,misc-use-internal-linkage,cppcoreguidelines-avoid-c-arrays,hicpp-avoid-c-arrays,modernize-avoid-c-arrays) - false positive
|
||||
NLOHMANN_JSON_SERIALIZE_ENUM(color,
|
||||
{
|
||||
{color::red, "red"},
|
||||
{color::green, "green"},
|
||||
})
|
||||
|
||||
enum class strict_color {red, green, blue}; // blue is not mapped
|
||||
|
||||
// NOLINTNEXTLINE(misc-const-correctness,misc-use-internal-linkage,cppcoreguidelines-avoid-c-arrays,hicpp-avoid-c-arrays,modernize-avoid-c-arrays) - false positive
|
||||
NLOHMANN_JSON_SERIALIZE_ENUM_STRICT(strict_color,
|
||||
{
|
||||
{strict_color::red, "red"},
|
||||
{strict_color::green, "green"},
|
||||
})
|
||||
|
||||
enum class digit {zero, one};
|
||||
|
||||
// NOLINTNEXTLINE(misc-const-correctness,misc-use-internal-linkage,cppcoreguidelines-avoid-c-arrays,hicpp-avoid-c-arrays,modernize-avoid-c-arrays) - false positive
|
||||
NLOHMANN_JSON_SERIALIZE_ENUM(digit,
|
||||
{
|
||||
{digit::zero, 0},
|
||||
{digit::one, 1},
|
||||
})
|
||||
|
||||
#ifndef SKIP_TESTS_FOR_ENUM_SERIALIZATION
|
||||
enum class plain {zero, one}; // serialized as integer
|
||||
#endif
|
||||
|
||||
TEST_CASE("JSON_USE_OBJECTS_FOR_ENUM_KEYED_MAPS")
|
||||
{
|
||||
SECTION("the macro is part of the ABI tag")
|
||||
{
|
||||
const std::string ns = STRINGIZE(NLOHMANN_JSON_NAMESPACE);
|
||||
CHECK(ns.find("_ekmo") != std::string::npos);
|
||||
}
|
||||
|
||||
SECTION("std::map (#4378)")
|
||||
{
|
||||
using task_map = std::map<TaskState, std::string>;
|
||||
const task_map m = {{TS_STOPPED, "aa"}, {TS_COMPLETED, "bb"}};
|
||||
const json j = m;
|
||||
CHECK(j == json::parse(R"({"stopped":"aa","completed":"bb"})"));
|
||||
CHECK(j.get<task_map>() == m);
|
||||
|
||||
json j2;
|
||||
j2["x"] = m;
|
||||
CHECK(j2.dump() == R"({"x":{"completed":"bb","stopped":"aa"}})");
|
||||
}
|
||||
|
||||
SECTION("std::map with custom comparator")
|
||||
{
|
||||
using task_map = std::map<TaskState, int, std::greater<TaskState>>;
|
||||
const task_map m = {{TS_STOPPED, 1}, {TS_RUNNING, 2}};
|
||||
const json j = m;
|
||||
CHECK(j == json::parse(R"({"stopped":1,"running":2})"));
|
||||
CHECK(j.get<task_map>() == m);
|
||||
}
|
||||
|
||||
SECTION("std::unordered_map")
|
||||
{
|
||||
using task_map = std::unordered_map<TaskState, int, enum_hash>;
|
||||
const task_map m = {{TS_STOPPED, 1}, {TS_RUNNING, 2}};
|
||||
const json j = m;
|
||||
CHECK(j == json::parse(R"({"stopped":1,"running":2})"));
|
||||
CHECK(j.get<task_map>() == m);
|
||||
}
|
||||
|
||||
SECTION("nested maps")
|
||||
{
|
||||
using nested_map = std::map<color, std::map<TaskState, int>>;
|
||||
const nested_map m = {{color::green, {{TS_RUNNING, 1}}}, {color::red, {}}};
|
||||
const json j = m;
|
||||
CHECK(j == json::parse(R"({"green":{"running":1},"red":{}})"));
|
||||
CHECK(j.get<nested_map>() == m);
|
||||
}
|
||||
|
||||
SECTION("ordered_json keeps the order of the map")
|
||||
{
|
||||
using task_map = std::map<TaskState, int>;
|
||||
const task_map m = {{TS_STOPPED, 1}, {TS_RUNNING, 2}, {TS_COMPLETED, 3}};
|
||||
const ordered_json j = m;
|
||||
CHECK(j.dump() == R"({"stopped":1,"running":2,"completed":3})");
|
||||
CHECK(j.get<task_map>() == m);
|
||||
}
|
||||
|
||||
SECTION("empty map")
|
||||
{
|
||||
const json j = std::map<TaskState, int>();
|
||||
CHECK(j.is_object());
|
||||
CHECK(j.empty());
|
||||
}
|
||||
|
||||
SECTION("NLOHMANN_JSON_SERIALIZE_ENUM_STRICT")
|
||||
{
|
||||
using color_map = std::map<strict_color, int>;
|
||||
const color_map m = {{strict_color::red, 1}, {strict_color::green, 2}};
|
||||
const json j = m;
|
||||
CHECK(j == json::parse(R"({"red":1,"green":2})"));
|
||||
CHECK(j.get<color_map>() == m);
|
||||
|
||||
const color_map unmapped = {{strict_color::blue, 1}};
|
||||
json _;
|
||||
CHECK_THROWS_WITH_AS(_ = unmapped,
|
||||
"[json.exception.out_of_range.410] enum value out of range for strict_color", json::out_of_range&);
|
||||
}
|
||||
|
||||
SECTION("arrays of [key, value] pairs are still read")
|
||||
{
|
||||
using task_map = std::map<TaskState, int>;
|
||||
const task_map m = {{TS_STOPPED, 1}};
|
||||
CHECK(json::parse(R"([["stopped",1]])").get<task_map>() == m);
|
||||
}
|
||||
|
||||
SECTION("other containers are not affected")
|
||||
{
|
||||
const std::vector<std::pair<TaskState, int>> pairs = {{TS_STOPPED, 1}};
|
||||
const std::map<std::string, TaskState> string_keys = {{"a", TS_STOPPED}};
|
||||
const std::map<int, int> int_keys = {{1, 2}};
|
||||
CHECK(json(pairs) == json::parse(R"([["stopped",1]])"));
|
||||
CHECK(json(string_keys) == json::parse(R"({"a":"stopped"})"));
|
||||
CHECK(json(int_keys) == json::parse("[[1,2]]"));
|
||||
}
|
||||
|
||||
SECTION("maps with non-unique keys are still stored as arrays of pairs")
|
||||
{
|
||||
const std::multimap<TaskState, int> mm = {{TS_STOPPED, 1}, {TS_STOPPED, 2}};
|
||||
const std::unordered_multimap<TaskState, int, enum_hash> umm = {{TS_RUNNING, 3}, {TS_RUNNING, 3}};
|
||||
CHECK(json(mm) == json::parse(R"([["stopped",1],["stopped",2]])"));
|
||||
CHECK(json(umm) == json::parse(R"([["running",3],["running",3]])"));
|
||||
}
|
||||
|
||||
SECTION("keys that do not serialize to strings")
|
||||
{
|
||||
const std::map<TaskState, int> null_key = {{TS_INVALID, 1}};
|
||||
const std::map<digit, int> number_key = {{digit::zero, 1}};
|
||||
json j = "unchanged";
|
||||
|
||||
// mapped to null
|
||||
CHECK_THROWS_WITH_AS(j = null_key,
|
||||
"[json.exception.type_error.302] type must be string, but is null", json::type_error&);
|
||||
|
||||
// mapped to a number
|
||||
CHECK_THROWS_WITH_AS(j = number_key,
|
||||
"[json.exception.type_error.302] type must be string, but is number", json::type_error&);
|
||||
|
||||
#ifndef SKIP_TESTS_FOR_ENUM_SERIALIZATION
|
||||
// enum without NLOHMANN_JSON_SERIALIZE_ENUM
|
||||
const std::map<plain, int> plain_key = {{plain::zero, 1}};
|
||||
CHECK_THROWS_WITH_AS(j = plain_key,
|
||||
"[json.exception.type_error.302] type must be string, but is number", json::type_error&);
|
||||
#endif
|
||||
|
||||
CHECK(j == "unchanged");
|
||||
}
|
||||
|
||||
SECTION("keys that serialize to the same string")
|
||||
{
|
||||
const std::map<color, int> m = {{color::red, 1}, {color::blue, 2}};
|
||||
json j = "unchanged";
|
||||
|
||||
// color::blue is not mapped and falls back to "red"
|
||||
CHECK_THROWS_WITH_AS(j = m,
|
||||
"[json.exception.type_error.318] duplicate object key 'red'", json::type_error&);
|
||||
|
||||
CHECK(j == "unchanged");
|
||||
}
|
||||
}
|
||||
|
||||
DOCTEST_CLANG_SUPPRESS_WARNING_POP
|
||||
@@ -0,0 +1,144 @@
|
||||
// __ _____ _____ _____
|
||||
// __| | __| | | | JSON for Modern C++ (supporting code)
|
||||
// | | |__ | | | | | | version 3.12.0
|
||||
// |_____|_____|_____|_|___| https://github.com/nlohmann/json
|
||||
//
|
||||
// SPDX-FileCopyrightText: 2013-2026 Niels Lohmann <https://nlohmann.me>
|
||||
// SPDX-License-Identifier: MIT
|
||||
|
||||
#include "doctest_compatibility.h"
|
||||
|
||||
// This file tests maps with enum keys with the default setting of
|
||||
// JSON_USE_OBJECTS_FOR_ENUM_KEYED_MAPS (or whatever a -D flag sets it to).
|
||||
// unit-enum_keyed_maps.cpp tests JSON_USE_OBJECTS_FOR_ENUM_KEYED_MAPS=1.
|
||||
// These tests are not part of unit-conversions.cpp, because that object file
|
||||
// is already too big for the MinGW linker of some compilers.
|
||||
|
||||
#include <nlohmann/json.hpp>
|
||||
using nlohmann::json;
|
||||
|
||||
#include <cstddef>
|
||||
#include <functional>
|
||||
#include <map>
|
||||
#include <string>
|
||||
#include <unordered_map>
|
||||
|
||||
// NLOHMANN_JSON_SERIALIZE_ENUM uses a static std::pair
|
||||
DOCTEST_CLANG_SUPPRESS_WARNING_PUSH
|
||||
DOCTEST_CLANG_SUPPRESS_WARNING("-Wexit-time-destructors")
|
||||
|
||||
enum class cards {kreuz, pik, herz, karo};
|
||||
|
||||
// NOLINTNEXTLINE(misc-use-internal-linkage,misc-const-correctness,cppcoreguidelines-avoid-c-arrays,hicpp-avoid-c-arrays,modernize-avoid-c-arrays) - false positive
|
||||
NLOHMANN_JSON_SERIALIZE_ENUM(cards,
|
||||
{
|
||||
{cards::kreuz, "kreuz"},
|
||||
{cards::pik, "pik"},
|
||||
{cards::herz, "herz"},
|
||||
{cards::karo, "karo"}
|
||||
})
|
||||
|
||||
enum TaskState // NOLINT(cert-int09-c,readability-enum-initial-value,cppcoreguidelines-use-enum-class)
|
||||
{
|
||||
TS_STOPPED,
|
||||
TS_RUNNING,
|
||||
TS_COMPLETED,
|
||||
TS_INVALID = -1,
|
||||
};
|
||||
|
||||
// NOLINTNEXTLINE(misc-const-correctness,misc-use-internal-linkage,cppcoreguidelines-avoid-c-arrays,hicpp-avoid-c-arrays,modernize-avoid-c-arrays) - false positive
|
||||
NLOHMANN_JSON_SERIALIZE_ENUM(TaskState,
|
||||
{
|
||||
{TS_INVALID, nullptr},
|
||||
{TS_STOPPED, "stopped"},
|
||||
{TS_RUNNING, "running"},
|
||||
{TS_COMPLETED, "completed"},
|
||||
})
|
||||
|
||||
enum class strict_cards {kreuz, pik, herz, karo, andere}; // andere not included in mapping
|
||||
|
||||
// NOLINTNEXTLINE(misc-use-internal-linkage,misc-const-correctness,cppcoreguidelines-avoid-c-arrays,hicpp-avoid-c-arrays,modernize-avoid-c-arrays) - false positive
|
||||
NLOHMANN_JSON_SERIALIZE_ENUM_STRICT(strict_cards,
|
||||
{
|
||||
{strict_cards::kreuz, "kreuz"},
|
||||
{strict_cards::pik, "pik"},
|
||||
{strict_cards::herz, "herz"},
|
||||
{strict_cards::karo, "karo"}
|
||||
})
|
||||
|
||||
namespace
|
||||
{
|
||||
// std::hash is only required for enums since C++14
|
||||
struct enum_hash
|
||||
{
|
||||
template<typename T>
|
||||
std::size_t operator()(T t) const noexcept
|
||||
{
|
||||
return static_cast<std::size_t>(t);
|
||||
}
|
||||
};
|
||||
} // namespace
|
||||
|
||||
// see unit-enum_keyed_maps.cpp for JSON_USE_OBJECTS_FOR_ENUM_KEYED_MAPS=1
|
||||
TEST_CASE("maps with enum keys")
|
||||
{
|
||||
using task_map = std::map<TaskState, std::string>;
|
||||
using task_umap = std::unordered_map<TaskState, std::string, enum_hash>;
|
||||
using task_gmap = std::map<TaskState, std::string, std::greater<TaskState>>;
|
||||
using nested_map = std::map<cards, std::map<TaskState, int>>;
|
||||
using strict_map = std::map<strict_cards, int>;
|
||||
using int_map = std::map<int, int>;
|
||||
using int_umap = std::unordered_map<int, int>;
|
||||
|
||||
const task_map m = {{TS_STOPPED, "aa"}, {TS_COMPLETED, "bb"}};
|
||||
|
||||
#if !JSON_USE_OBJECTS_FOR_ENUM_KEYED_MAPS
|
||||
SECTION("stored as array of pairs")
|
||||
{
|
||||
CHECK(json(m) == json::parse(R"([["stopped","aa"],["completed","bb"]])"));
|
||||
CHECK(json(task_umap {{TS_RUNNING, "cc"}}) == json::parse(R"([["running","cc"]])"));
|
||||
}
|
||||
#endif
|
||||
|
||||
SECTION("read from array of pairs")
|
||||
{
|
||||
CHECK(json::parse(R"([["stopped","aa"],["completed","bb"]])").get<task_map>() == m);
|
||||
}
|
||||
|
||||
SECTION("read from object (#4378)")
|
||||
{
|
||||
const json j = json::parse(R"({"stopped":"aa","completed":"bb"})");
|
||||
CHECK(j.get<task_map>() == m);
|
||||
CHECK(j.get<task_umap>() == task_umap(m.begin(), m.end()));
|
||||
CHECK(j.get<task_gmap>() == task_gmap(m.begin(), m.end()));
|
||||
CHECK(json::parse(R"({"kreuz":{"stopped":1}})").get<nested_map>() == nested_map {{cards::kreuz, {{TS_STOPPED, 1}}}});
|
||||
CHECK(nlohmann::ordered_json::parse(R"({"stopped":"aa","completed":"bb"})").get<task_map>() == m);
|
||||
|
||||
// object keys go through the enum's from_json
|
||||
strict_map sm;
|
||||
CHECK_THROWS_WITH_AS(json::parse(R"({"what?":1})").get_to(sm),
|
||||
"[json.exception.out_of_range.410] enum value out of range for strict_cards: \"what?\"", json::out_of_range&);
|
||||
}
|
||||
|
||||
SECTION("objects are only read for enum keys")
|
||||
{
|
||||
// built rather than parsed, so that the messages do not gain a byte
|
||||
// range with JSON_DIAGNOSTIC_POSITIONS
|
||||
const json j = {{"1", 2}};
|
||||
int_map im;
|
||||
int_umap ium;
|
||||
CHECK_THROWS_WITH_AS(j.get_to(im),
|
||||
"[json.exception.type_error.302] type must be array, but is object", json::type_error&);
|
||||
CHECK_THROWS_WITH_AS(j.get_to(ium),
|
||||
"[json.exception.type_error.302] type must be array, but is object", json::type_error&);
|
||||
}
|
||||
|
||||
SECTION("other types are rejected")
|
||||
{
|
||||
task_map tm;
|
||||
CHECK_THROWS_WITH_AS(json("stopped").get_to(tm),
|
||||
"[json.exception.type_error.302] type must be array, but is string", json::type_error&);
|
||||
}
|
||||
}
|
||||
|
||||
DOCTEST_CLANG_SUPPRESS_WARNING_POP
|
||||
@@ -260,11 +260,10 @@ struct LocaleSwitchingSax final: public nlohmann::json_sax<json>
|
||||
|
||||
TEST_CASE("locale changes between lexer construction and number conversion (#5198)")
|
||||
{
|
||||
// float and double are converted without the locale. A long double that
|
||||
// is not binary64 can take the strtold fallback, which honors the locale
|
||||
// that is current at conversion time. The numbers are chosen so that it
|
||||
// does: too many significant digits for Clinger's fast path, an underflow
|
||||
// that std::from_chars rejects, and a plain value.
|
||||
// The numbers are chosen so that the conversion also takes the strtod
|
||||
// fallback, which honors the locale that is current at conversion time:
|
||||
// too many significant digits for Clinger's fast path, an underflow that
|
||||
// std::from_chars rejects, and a plain value.
|
||||
const std::vector<std::string> numbers = {"3.14159265358979323846", "1.5e-400", "12.34", "-0.000123456789012345678"};
|
||||
std::string text = "[";
|
||||
for (const auto& n : numbers)
|
||||
@@ -328,8 +327,7 @@ TEST_CASE("locale changes between lexer construction and number conversion (#519
|
||||
}
|
||||
}
|
||||
|
||||
// a long double goes through std::strtold unless it is binary64 or
|
||||
// std::from_chars supports it
|
||||
// a long double goes through std::strtold unless std::from_chars supports it
|
||||
{
|
||||
bool switched = false;
|
||||
const auto cb = [&](int /*depth*/, long_double_json::parse_event_t event, long_double_json& /*parsed*/) noexcept
|
||||
@@ -355,15 +353,8 @@ TEST_CASE("locale with a multi-byte decimal point")
|
||||
{
|
||||
// Some locales use a decimal point that is not a single character, e.g.
|
||||
// U+066B ARABIC DECIMAL SEPARATOR (two bytes in UTF-8). It cannot be
|
||||
// substituted in place for '.', so the strtold fallback (only for long
|
||||
// double formats other than binary64) converts a copy of the token with
|
||||
// the whole decimal point instead (#5660). The values must be those of the
|
||||
// "C" locale.
|
||||
using long_double_json = nlohmann::basic_json<std::map, std::vector, std::string, bool, std::int64_t, std::uint64_t, long double>;
|
||||
const char* const long_double_numbers = "[3.14159265358979323846, 1.5e-400, -0.000123456789012345678]";
|
||||
REQUIRE(std::setlocale(LC_NUMERIC, "C") != nullptr);
|
||||
const long_double_json expected_long_double = long_double_json::parse(long_double_numbers);
|
||||
|
||||
// substituted in place for '.', so the strtod fallback stops early. The
|
||||
// conversion must still terminate rather than retry forever.
|
||||
const std::array<const char*, 6> names = {{"ar_EG.UTF-8", "ar_SA.UTF-8", "fa_IR.UTF-8", "ps_AF.UTF-8", "ar_EG", "fa_IR"}};
|
||||
bool tested = false;
|
||||
for (const char* name : names)
|
||||
@@ -381,20 +372,12 @@ TEST_CASE("locale with a multi-byte decimal point")
|
||||
tested = true;
|
||||
|
||||
// too many significant digits for Clinger's fast path, and an underflow
|
||||
// that std::from_chars rejects: double does not depend on the locale
|
||||
// that std::from_chars rejects: both reach the strtod fallback
|
||||
json j;
|
||||
CHECK_NOTHROW(j = json::parse("[3.14159265358979323846, 1.5e-400, -0.000123456789012345678]"));
|
||||
CHECK(j.is_array());
|
||||
CHECK(j[0] == 3.14159265358979323846);
|
||||
CHECK(j[1] == 0.0);
|
||||
CHECK(j[2] == -0.000123456789012345678);
|
||||
CHECK(json::accept("3.14159265358979323846"));
|
||||
|
||||
// a long double that reaches the strtold fallback is not truncated
|
||||
long_double_json ld;
|
||||
CHECK_NOTHROW(ld = long_double_json::parse(long_double_numbers));
|
||||
CHECK(ld == expected_long_double);
|
||||
|
||||
// a value the locale-independent paths convert is not affected
|
||||
CHECK(json::parse("12.5") == 12.5);
|
||||
}
|
||||
|
||||
Reference in New Issue
Block a user