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Author SHA1 Message Date
Niels Lohmann 27468fa77e Test the C++11 stand-in for std::string_view of json_view
Six members of string_ref (length, begin, end, operator[], operator!=,
and operator<<) were not reached before C++17, where string_ref is
std::string_view.

Signed-off-by: Niels Lohmann <mail@nlohmann.me>
2026-09-29 09:53:48 +02:00
Niels Lohmann a49d6e2e3b Remove the eight-digit case of the view's digit parser
Since whole blocks of eight digits are read directly, parse_upto8() only
gets fewer than eight digits; its eight-digit case was dead code.

Signed-off-by: Niels Lohmann <mail@nlohmann.me>
2026-09-29 09:52:19 +02:00
Niels Lohmann 58ac756134 Address the cpplint findings of the view's parser
The exponent of the overflow check is an std::int64_t instead of a long
(runtime/int).

Signed-off-by: Niels Lohmann <mail@nlohmann.me>
2026-09-29 09:34:11 +02:00
Niels Lohmann 7917cfa0f4 Read whole blocks of eight digits of json_view directly
A block of eight digits of a number token lies inside the input (the
digits were counted while scanning, or are recorded in the digit
layout), so parse_upto19() reads it without the bounds check of the
last, partial block. Traversing canada.json: -11% instructions, -6%
cycles.

Signed-off-by: Niels Lohmann <mail@nlohmann.me>
2026-09-29 07:20:09 +02:00
Niels Lohmann b5da87a5e3 Classify a NUL inside a string of json_view as a control character
json::parse ends the input at a NUL only between values (where it does
at all); inside a string, a NUL is a control character that must be
escaped. The view reported it as a missing closing quote. (Only the
error code differed: the exception comes from the library parser.)

Signed-off-by: Niels Lohmann <mail@nlohmann.me>
2026-09-29 04:49:37 +02:00
Niels Lohmann 6d479d13ce Test the overflow check of json_view at the largest double
Numbers of more than 19 digits at the boundary of the largest double
are decided by the locale-aware fallback of the overflow check.

Signed-off-by: Niels Lohmann <mail@nlohmann.me>
2026-09-29 03:49:32 +02:00
Niels Lohmann ea5a1caf28 Address the clang-tidy findings of the view's parser
- tables as std::array; the frames of the first 64 levels stay a C array
  (not initialized on purpose, NOLINT)
- \u escapes are decoded with the library's hex_codepoint() instead of a
  second table
- the parse failure is private, with an accessor; the special member
  functions of the builder are all declared
- no nested conditional operators; explicit parentheses; a repeated
  branch body merged; auto for casts
- the test's C arrays, fixed seed, and escaped literals are marked, as in
  the other tests

Signed-off-by: Niels Lohmann <mail@nlohmann.me>
2026-09-29 03:49:31 +02:00
Niels Lohmann edfcff33c6 Keep the arguments of the view's throw helpers used without exceptions
With JSON_NOEXCEPTION, NLOHMANN_VIEW_THROW(e) was std::abort() alone, so
the parameters of the functions that build the exceptions were unused, a
warning that the builds with -Werror turn into an error. The exception is
now evaluated before std::abort(); the program ends anyway.

Signed-off-by: Niels Lohmann <mail@nlohmann.me>
2026-09-29 03:49:30 +02:00
Niels Lohmann a14ac39bdd Add the one-pass parser of json_view (internal)
The builder parses JSON text in one pass into the node index: strings and
numbers stay in the source (escaped strings are decoded into an arena),
integers are converted while their digits are in cache, and floats keep
their digit layout for a later conversion. It accepts exactly what
json::parse accepts, for every combination of comments and trailing commas,
with and without a terminating NUL, and with JSON_STRICT_NUL_HANDLING.

Parse state lives in a local cursor whose address never escapes, so that it
stays in registers; out-of-line helpers (errors, regrowth, escapes,
comments) are members of the builder and get the positions they need. The
value dispatch is expanded once for array elements and once for member
values. Literals are compared with memcmp and words read in a fixed byte
order, so nothing depends on the platform's byte order. Error messages come
with the public classes.

Tests (unit-json_view_builder.cpp): accept/reject and values against
json::parse for handwritten, generated, and damaged documents under all
option combinations, from std::string and from exact-size buffers (no read
past the input under AddressSanitizer), deep nesting up to 100,000 levels,
NUL/BOM/whitespace cases, and the test-suite files.

Signed-off-by: Niels Lohmann <mail@nlohmann.me>
2026-09-29 03:49:30 +02:00
Niels Lohmann 1ab017bbfe Add the node index and scanning primitives of json_view (internal)
Internal parts of the zero-copy view (#5295), under detail/view and not
included by json.hpp, so that users of json.hpp compile nothing of it:

- macro_scope.hpp/macro_unscope.hpp: the few macros the view needs, under
  its own prefix (json.hpp undefines its own at its end); the throw macro
  honors JSON_NOEXCEPTION and JSON_THROW_USER like JSON_THROW
- string_ref.hpp: std::string_view from C++17 on, else a small stand-in
- node.hpp: the 16-byte node of the index; its kinds are value_t values
  (checked by a static_assert)
- document_data.hpp: the storage of a parsed document (node array, decode
  arena, owned input)
- scan.hpp: string and digit scanning with unrolled checks at fixed offsets
  (after yyjson) and the library's SWAR and UTF-8 checks, independent of the
  byte order

Signed-off-by: Niels Lohmann <mail@nlohmann.me>
2026-09-29 03:49:29 +02:00
Niels Lohmann 6936b95a65 Keep the behavior-changing configuration readable after json.hpp
json.hpp undefines JSON_STRICT_NUL_HANDLING and
JSON_USE_LEGACY_DISCARDED_VALUE_COMPARISON at its end. Code that builds on
the library after it, such as the planned json_view.hpp, reads them from
detail::abi_config instead. The constants live in the ABI namespace, which
already encodes both settings, so they always match the basic_json in use.

Signed-off-by: Niels Lohmann <mail@nlohmann.me>
2026-09-29 03:49:28 +02:00
Niels Lohmann a08f5501a7 Decode \u escapes with a table in the lexer
get_codepoint() read the four hex digits of a \u escape with four calls
to get(), each classified by a chain of range comparisons. For contiguous
input, get_codepoint_bulk() now decodes them with one lookup per byte
(hex_codepoint() in string_scan.hpp, after yyjson's read_hex_u16): a
256-entry table maps a byte to its value, or 0xFF for anything else, and
an invalid digit shows in the OR of the four values. It then skips the
four bytes and updates the position counters as four get() calls would.
If a digit is invalid or fewer than four bytes are left, it changes
nothing and the existing loop runs, so errors are reported with the same
message and position as before.

json::parse, best of 5 runs in separate processes (M1 Max): the escaped
twitter.json (every non-ASCII character as \u) -13.6%, all other files
within 0.3%.

Tests compare the contiguous and the streaming path (value or exception
message) for valid escapes, surrogate pairs, truncated and invalid digits
at every position, and 3,000 seeded random escapes.

Signed-off-by: Niels Lohmann <mail@nlohmann.me>
2026-09-29 03:49:27 +02:00
Niels Lohmann 31789f51cf Find the stop byte of a string run without a byte loop
find_string_special() and find_ascii_copyable_run() test eight bytes at a
time, but located the stopping byte inside a word with a byte loop. The
lowest flagged byte of the SWAR tests is always a true hit (the borrows of
the subtractions can only flag bytes above one), so its index is now the
trailing-zero count of the mask; words are read in little-endian order on
every platform, so this does not depend on the byte order.
scalar_string_bulk_run() validates a run of multi-byte UTF-8 sequences one
after another instead of searching for the next special byte in between,
which helps text in non-Latin scripts.

The kernels serve the lexer's contiguous fast path, the serializer, and the
binary formats. New tests compare all three with byte-by-byte reference
scans on 100,000 generated buffers at three alignments; the portable
fallback of count_trailing_zeros() was checked against the builtin.

Signed-off-by: Niels Lohmann <mail@nlohmann.me>
2026-09-29 03:49:26 +02:00
Niels Lohmann f295970fb6 Convert floats with Eisel-Lemire when std::from_chars is unavailable
Float tokens that Clinger's fast path cannot convert (e.g. the 17-digit
coordinates of canada.json) went to strtod unless std::from_chars was
available. It is not used in C++11/14, and not with libc++, which does not
define __cpp_lib_to_chars. The Eisel-Lemire algorithm (after fast_float's
compute_float) now converts them with integer arithmetic, correctly rounded
for any token with at most 19 significant digits. Longer tokens are
truncated; the result is used if w and w + 1 round alike, else strtod
decides as before. Overflow still yields infinity (out_of_range.406).

The table of powers of five (fast_float's) lives in pow5_table.hpp; a unit
test recomputes every entry with big-integer arithmetic. Further tests:
known values generated with Python (whose float() is correctly rounded),
200,000 round trips through to_chars, and the 128-bit multiplication and
leading-zero count against big-integer references (both with and without a
128-bit type). Checked against strtod on 6.5 million tokens, among them
60,000 exact halfway cases: no difference.

json::parse on canada.json: -8.6% (C++11), -7.6% (C++17, Apple clang);
other files unchanged. Compile time of a TU including json.hpp: +0.7%.

Signed-off-by: Niels Lohmann <mail@nlohmann.me>
2026-09-29 03:49:25 +02:00
Niels Lohmann f6c115a9a6 Move the float conversion chain out of the lexer
lexer::convert_number() converted float tokens with std::from_chars (when
available), Clinger's fast path, and the locale-aware strtod fallback, all
as lexer members. They are now free functions in number_parse.hpp:

- convert_float_fast(): std::from_chars, then Clinger's fast path, skipped
  when the mantissa has too many significant digits
- convert_float_locale_aware(): strtof/strtod/strtold with the decimal point
  of the current locale, retried when the locale changed (#5198)

so that other code converting JSON number tokens gets the same values. No
change in behavior; the lexer no longer includes <clocale> and <cstdlib>.

Signed-off-by: Niels Lohmann <mail@nlohmann.me>
2026-09-29 03:49:24 +02:00
Niels Lohmann 33ef25099d Keep external headers as #include when amalgamating
A header that builds on json.hpp (such as the planned json_view.hpp) must
not inline json.hpp: its single-header version would contain a second copy
of the library, and that copy would change with every library change.

The optional config key "external" lists include paths that are kept as
#include directives. Only the first directive per path is kept; repeated
ones are commented out, as the tool already does for inlined headers.
config_json_view.json uses it for json_view.hpp; the existing configs do
not set it, and json.hpp and json_fwd.hpp regenerate byte-identically.

Signed-off-by: Niels Lohmann <mail@nlohmann.me>
2026-09-29 03:49:24 +02:00
Niels Lohmann 633de8e44b Fix CI: clang-tidy and GCC -Wnoexcept in the locale test (#5613)
#5597 was merged before all of its CI jobs had run, and two of them fail
on develop now, and so on every pull request:

- ci_clang_tidy: cert-err33-c for the two std::setlocale(LC_NUMERIC, "C")
  calls whose result was discarded. Check the result, like the other
  resets in the file.
- ci_test_standards_gcc (20) with GCC 16: -Wnoexcept for the two parser
  callbacks, which cannot throw but were not declared noexcept.

Signed-off-by: Niels Lohmann <mail@nlohmann.me>
2026-09-28 22:20:43 +02:00
Niels Lohmann fc03b9912e Look up the locale decimal point at conversion time, not lexer construction (#5597)
* Look up the locale decimal point at conversion time, not lexer construction

The lexer read localeconv()->decimal_point once in its constructor and wrote
that character into token_buffer in place of '.'. The strtod fallback then
used the locale current at conversion time, so an LC_NUMERIC change in
between (parser callback, SAX handler, another thread) truncated the value
in release builds and fired the endptr assertion in debug builds.

token_buffer now always holds '.'. Only the strtof/strtod/strtold fallback
depends on the locale: it looks up the decimal point right before the call,
restores '.' afterwards, and repeats the conversion if the locale changed in
between. As a side effect, std::from_chars and Clinger's fast path now also
apply under locales whose decimal point is not '.'.

Fixes #5198

Signed-off-by: Niels Lohmann <mail@nlohmann.me>

* Stop the strtod retry loop when the decimal point is unchanged

convert_float_locale_aware() repeated the conversion until strtod
consumed the whole token, assuming an early stop can only mean a locale
change. Under a locale whose decimal point is not a single character
(e.g. the two-byte U+066B of ar_EG.UTF-8, ar_SA.UTF-8, or fa_IR.UTF-8,
all available on macOS), the in-place substitution can never succeed,
so parsing any float that reaches the strtod fallback (for example
3.14159265358979323846 at C++11) hung forever. Before this branch, the
same input was truncated.

Retry only if the decimal point changed since the previous attempt;
otherwise keep the value strtod parsed so far, as before. Add a test
that parses such numbers under a multi-byte decimal point locale; it
hangs without this change.

Signed-off-by: Niels Lohmann <mail@nlohmann.me>

* Fix -Weffc++ errors in the #5198 locale test

GCC's -Weffc++ (an error in ci_test_gcc and ci_test_standards_gcc)
rejected LocaleSwitchingSax: it has a pointer data member but does not
declare its copy operations, and its vectors are not initialized in the
member initializer list. Store the locale name as a std::string and give
the vectors brace initializers, like SaxEventLogger in
unit-deserialization.cpp.

Signed-off-by: Niels Lohmann <mail@nlohmann.me>

---------

Signed-off-by: Niels Lohmann <mail@nlohmann.me>
2026-09-28 17:56:11 +02:00
Niels Lohmann 9e1a09eec0 Name the key type when rejecting non-string CBOR/MessagePack map keys (#5594)
* Name the key type when rejecting non-string CBOR/MessagePack map keys

CBOR and MessagePack allow map keys of any type, but JSON object keys
are always strings, so such maps are rejected. The error so far was the
one for a malformed string (e.g. "expected length specification
(0xA0-0xBF, 0xD9-0xDB); last byte: 0xC0" for a nil key), which does not
tell the user what went wrong. Report the type of the key instead:

  syntax error while parsing MessagePack object key: only string keys
  are supported, but found nil; last byte: 0xC0

The exception id (parse_error.113) and type are unchanged. Malformed
string keys and a missing key keep their previous messages. Document
the restriction on the CBOR and MessagePack pages.

Refs #2766, #3381

Signed-off-by: Niels Lohmann <mail@nlohmann.me>

* Point the MessagePack key note to the spec's profile section

The note linked to "Serialization: type to format conversion", which says nothing about key types. Restricting map keys to strings is only mentioned in the "Profile" section (under "Future discussion") as an example of a JSON-compatible profile, so link there and describe it as such instead of as a permission.

Signed-off-by: Niels Lohmann <mail@nlohmann.me>

---------

Signed-off-by: Niels Lohmann <mail@nlohmann.me>
2026-09-28 17:51:07 +02:00
34 changed files with 5789 additions and 369 deletions
+10
View File
@@ -20,7 +20,9 @@ cc_library(
hdrs = [
"include/nlohmann/adl_serializer.hpp",
"include/nlohmann/byte_container_with_subtype.hpp",
"include/nlohmann/detail/abi_config.hpp",
"include/nlohmann/detail/abi_macros.hpp",
"include/nlohmann/detail/bit_ops.hpp",
"include/nlohmann/detail/conversions/from_json.hpp",
"include/nlohmann/detail/conversions/to_chars.hpp",
"include/nlohmann/detail/conversions/to_json.hpp",
@@ -33,6 +35,7 @@ cc_library(
"include/nlohmann/detail/input/number_parse.hpp",
"include/nlohmann/detail/input/parser.hpp",
"include/nlohmann/detail/input/position_t.hpp",
"include/nlohmann/detail/input/pow5_table.hpp",
"include/nlohmann/detail/input/string_scan.hpp",
"include/nlohmann/detail/iterators/internal_iterator.hpp",
"include/nlohmann/detail/iterators/iter_impl.hpp",
@@ -63,6 +66,13 @@ cc_library(
"include/nlohmann/detail/string_escape.hpp",
"include/nlohmann/detail/string_utils.hpp",
"include/nlohmann/detail/value_t.hpp",
"include/nlohmann/detail/view/builder.hpp",
"include/nlohmann/detail/view/document_data.hpp",
"include/nlohmann/detail/view/macro_scope.hpp",
"include/nlohmann/detail/view/macro_unscope.hpp",
"include/nlohmann/detail/view/node.hpp",
"include/nlohmann/detail/view/scan.hpp",
"include/nlohmann/detail/view/string_ref.hpp",
"include/nlohmann/json.hpp",
"include/nlohmann/json_fwd.hpp",
"include/nlohmann/ordered_map.hpp",
+1
View File
@@ -1395,6 +1395,7 @@ 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 &copy; 2009 [Florian Loitsch](https://florian.loitsch.com/)
- 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 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 &copy; 2021 The fast_float authors
<img align="right" src="https://git.fsfe.org/reuse/reuse-ci/raw/branch/master/reuse-horizontal.png" alt="REUSE Software">
+2 -2
View File
@@ -80,8 +80,8 @@ Strong guarantee: if an exception is thrown, there are no changes in the JSON va
the end of the file was not reached when `strict` was set to true
- Throws [parse_error.112](../../home/exceptions.md#jsonexceptionparse_error112) if unsupported features from CBOR were
used in the given input or if the input is not valid CBOR
- Throws [parse_error.113](../../home/exceptions.md#jsonexceptionparse_error113) if a string was expected as a map key,
but not found
- Throws [parse_error.113](../../home/exceptions.md#jsonexceptionparse_error113) if a map key is not a string (keys of other
types are not supported, as JSON object keys are always strings) or a string is malformed
## Complexity
@@ -73,8 +73,8 @@ Strong guarantee: if an exception is thrown, there are no changes in the JSON va
the end of the file was not reached when `strict` was set to true
- Throws [parse_error.112](../../home/exceptions.md#jsonexceptionparse_error112) if unsupported features from
MessagePack were used in the given input or if the input is not valid MessagePack
- Throws [parse_error.113](../../home/exceptions.md#jsonexceptionparse_error113) if a string was expected as a map key,
but not found
- Throws [parse_error.113](../../home/exceptions.md#jsonexceptionparse_error113) if a map key is not a string (keys of other
types are not supported, as JSON object keys are always strings) or a string is malformed
## Complexity
@@ -174,7 +174,20 @@ The library maps CBOR types to JSON value types as follows:
!!! warning "Object keys"
CBOR allows map keys of any type, whereas JSON only allows strings as keys in object values. Therefore, CBOR maps with keys other than UTF-8 strings are rejected.
CBOR allows map keys of any type, whereas JSON only allows strings as keys in object values. Therefore, CBOR maps
with keys other than text strings (major type 3) are rejected with a
[`parse_error.113`](../../home/exceptions.md#jsonexceptionparse_error113) exception (or, with `allow_exceptions` set
to `false`, a discarded value) naming the type of the key that was found, for instance:
```
[json.exception.parse_error.113] parse error at byte 2: syntax error while parsing CBOR object key: only string keys are supported, but found an unsigned integer; last byte: 0x01
```
This applies to the [SAX interface](../parsing/sax_interface.md) as well, as the key is read before it is passed
on. This is a deliberate restriction of the library's JSON value model, not an oversight: formats built on CBOR
maps with integer keys, such as COSE ([RFC 9052](https://www.rfc-editor.org/rfc/rfc9052.html)) or CWT
([RFC 8392](https://www.rfc-editor.org/rfc/rfc8392.html)), cannot be read with this library and need a
general-purpose CBOR library instead.
!!! warning "UTF-8 validation of text strings"
@@ -138,6 +138,21 @@ The library maps MessagePack types to JSON value types as follows:
Any MessagePack output created by `to_msgpack` can be successfully parsed by `from_msgpack`.
!!! warning "Object keys"
MessagePack allows map keys of any type, whereas JSON only allows strings as keys in object values. Like the
JSON-compatible [profile](https://github.com/msgpack/msgpack/blob/master/spec.md#profile) sketched in the
MessagePack specification, this library restricts map keys to `str` values. Maps with keys of any other type are
rejected with a [`parse_error.113`](../../home/exceptions.md#jsonexceptionparse_error113) exception (or, with
`allow_exceptions` set to `false`, a discarded value) naming the type of the key that was found, for instance:
```
[json.exception.parse_error.113] parse error at byte 2: syntax error while parsing MessagePack object key: only string keys are supported, but found nil; last byte: 0xC0
```
This applies to the [SAX interface](../parsing/sax_interface.md) as well, as the key is read before it is passed
on. Such input needs a general-purpose MessagePack library instead.
!!! warning "UTF-8 validation of string values"
The MessagePack specification requires `str` values (`fixstr`, `str 8`, `str 16`, `str 32`) to be valid UTF-8.
+9 -2
View File
@@ -343,13 +343,20 @@ A string could not be read from a [binary format](../features/binary_formats/ind
string was read where one was required (for instance as a map key), the string's length specification is invalid, or
the string's bytes are not valid UTF-8.
CBOR and MessagePack allow map keys of any type, but JSON object keys are always strings. Maps with keys of any other
type (for instance integers or `null`) are therefore not supported; see the notes on
[CBOR](../features/binary_formats/cbor.md) and [MessagePack](../features/binary_formats/messagepack.md).
!!! failure "Example messages"
```
[json.exception.parse_error.113] parse error at byte 2: syntax error while parsing CBOR string: expected length specification (0x60-0x7B) or indefinite string type (0x7F); last byte: 0xFF
[json.exception.parse_error.113] parse error at byte 2: syntax error while parsing CBOR object key: only string keys are supported, but found an unsigned integer; last byte: 0x01
```
```
[json.exception.parse_error.113] parse error at byte 2: syntax error while parsing MessagePack string: expected length specification (0xA0-0xBF, 0xD9-0xDB); last byte: 0xFF
[json.exception.parse_error.113] parse error at byte 2: syntax error while parsing MessagePack object key: only string keys are supported, but found nil; last byte: 0xC0
```
```
[json.exception.parse_error.113] parse error at byte 2: syntax error while parsing CBOR string: expected length specification (0x60-0x7B) or indefinite string type (0x7F); last byte: 0x7C
```
```
[json.exception.parse_error.113] parse error at byte 2: syntax error while parsing UBJSON char: byte after 'C' must be in range 0x00..0x7F; last byte: 0x82
+2
View File
@@ -19,3 +19,5 @@ The class contains the UTF-8 Decoder from Bjoern Hoehrmann which is licensed und
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 &copy; 2009 [Florian Loitsch](https://florian.loitsch.com/)
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 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 &copy; 2021 The fast_float authors
+34
View File
@@ -0,0 +1,34 @@
// __ _____ _____ _____
// __| | __| | | | JSON for Modern C++
// | | |__ | | | | | | 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 <nlohmann/detail/abi_macros.hpp>
NLOHMANN_JSON_NAMESPACE_BEGIN
namespace detail
{
/*!
@brief the configuration macros that change the library's behavior
json.hpp undefines these macros at its end (see macro_unscope.hpp), so code
that builds on the library after it (json_view.hpp) reads them here. Like the
macros, they are part of the ABI namespace, so they always match the
basic_json they are used with.
*/
struct abi_config
{
/// JSON_STRICT_NUL_HANDLING: a null byte is an error, not the end of input
static constexpr bool strict_nul_handling = JSON_STRICT_NUL_HANDLING != 0;
/// JSON_USE_LEGACY_DISCARDED_VALUE_COMPARISON
static constexpr bool legacy_discarded_value_comparison = JSON_USE_LEGACY_DISCARDED_VALUE_COMPARISON != 0;
};
} // namespace detail
NLOHMANN_JSON_NAMESPACE_END
+105
View File
@@ -0,0 +1,105 @@
// __ _____ _____ _____
// __| | __| | | | JSON for Modern C++
// | | |__ | | | | | | 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 <cstdint> // uint64_t
#include <nlohmann/detail/abi_macros.hpp>
// Portable bit-level helpers for the number and string scanners. They use
// compiler builtins where available and plain C++ otherwise, so they need no
// platform headers and work regardless of byte order.
NLOHMANN_JSON_NAMESPACE_BEGIN
namespace detail
{
/// number of leading zero bits of x (x != 0)
inline int count_leading_zeros(std::uint64_t x) noexcept
{
#if defined(__GNUC__) || defined(__clang__)
return __builtin_clzll(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
}
/// 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
{
std::uint64_t low;
std::uint64_t high;
};
inline uint128_parts full_multiplication(std::uint64_t a, std::uint64_t b) noexcept
{
#if defined(__SIZEOF_INT128__)
__extension__ using uint128 = unsigned __int128;
const uint128 r = static_cast<uint128>(a) * b;
return {static_cast<std::uint64_t>(r), static_cast<std::uint64_t>(r >> 64u)};
#else
const std::uint64_t a_lo = a & 0xFFFFFFFFu;
const std::uint64_t a_hi = a >> 32u;
const std::uint64_t b_lo = b & 0xFFFFFFFFu;
const std::uint64_t b_hi = b >> 32u;
const std::uint64_t lo_lo = a_lo * b_lo;
const std::uint64_t hi_lo = a_hi * b_lo;
const std::uint64_t lo_hi = a_lo * b_hi;
const std::uint64_t hi_hi = a_hi * b_hi;
const std::uint64_t cross = (lo_lo >> 32u) + (hi_lo & 0xFFFFFFFFu) + lo_hi;
return {(cross << 32u) | (lo_lo & 0xFFFFFFFFu), (hi_lo >> 32u) + (cross >> 32u) + hi_hi};
#endif
}
/// 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
{
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
+168 -2
View File
@@ -1324,6 +1324,80 @@ class binary_reader
}
}
/*!
@brief reads a CBOR object key
RFC 8949 allows any data item as a map key, but only strings have a
counterpart in JSON. A key of any other type is rejected with a message
naming that type, rather than the one @ref get_cbor_string gives for a
malformed string.
@param[out] result created key
@return whether key creation completed
*/
bool get_cbor_object_key(string_t& result)
{
// EOF and major type 3 (text string) are left to get_cbor_string
if (current == char_traits<char_type>::eof() || (static_cast<unsigned int>(current) & 0xE0u) == 0x60u)
{
return get_cbor_string(result);
}
const char* found = nullptr;
switch (static_cast<unsigned int>(current) >> 5u)
{
case 0:
found = "an unsigned integer";
break;
case 1:
found = "a negative integer";
break;
case 2:
found = "a byte string";
break;
case 4:
found = "an array";
break;
case 5:
found = "a map";
break;
case 6:
found = "a tag";
break;
default: // major type 7
switch (current)
{
case 0xF4:
case 0xF5:
found = "a boolean";
break;
case 0xF6:
found = "null";
break;
case 0xF7:
found = "undefined";
break;
case 0xF9:
case 0xFA:
case 0xFB:
found = "a floating-point number";
break;
case 0xFF:
found = "a break stop code";
break;
default:
found = "a simple value";
break;
}
break;
}
auto last_token = get_token_string();
return sax->parse_error(chars_read, last_token, parse_error::create(113, chars_read,
exception_message(input_format_t::cbor, concat("only string keys are supported, but found ", found, "; last byte: 0x", last_token), "object key"), nullptr));
}
/*!
@brief reads a definite-length CBOR byte array
@@ -1568,7 +1642,7 @@ class binary_reader
if (top.is_object)
{
key.clear();
if (JSON_HEDLEY_UNLIKELY(!get_cbor_string(key) || !sax->key(key)))
if (JSON_HEDLEY_UNLIKELY(!get_cbor_object_key(key) || !sax->key(key)))
{
return false;
}
@@ -2069,6 +2143,98 @@ class binary_reader
}
}
/*!
@brief reads a MessagePack object key
The MessagePack specification allows any type as a map key, but only
strings have a counterpart in JSON. A key of any other type is rejected
with a message naming that type, rather than the one @ref
get_msgpack_string gives for a malformed string.
@param[out] result created key
@return whether key creation completed
*/
bool get_msgpack_object_key(string_t& result)
{
const char* found = nullptr;
switch (current)
{
case 0xC0:
found = "nil";
break;
case 0xC2:
case 0xC3:
found = "a boolean";
break;
case 0xCA:
case 0xCB:
found = "a float";
break;
case 0xC4:
case 0xC5:
case 0xC6:
found = "a bin";
break;
case 0xC7:
case 0xC8:
case 0xC9:
case 0xD4:
case 0xD5:
case 0xD6:
case 0xD7:
case 0xD8:
found = "an ext";
break;
case 0xCC:
case 0xCD:
case 0xCE:
case 0xCF:
case 0xD0:
case 0xD1:
case 0xD2:
case 0xD3:
found = "an integer";
break;
case 0xDC:
case 0xDD:
found = "an array";
break;
case 0xDE:
case 0xDF:
found = "a map";
break;
default:
// fixint, fixmap, and fixarray; strings, EOF, and the unused
// byte 0xC1 are left to get_msgpack_string
if (current == char_traits<char_type>::eof())
{
return get_msgpack_string(result);
}
if (current <= 0x7F || current >= 0xE0)
{
found = "an integer";
}
else if (current <= 0x8F)
{
found = "a map";
}
else if (current <= 0x9F)
{
found = "an array";
}
else
{
return get_msgpack_string(result);
}
break;
}
auto last_token = get_token_string();
return sax->parse_error(chars_read, last_token, parse_error::create(113, chars_read,
exception_message(input_format_t::msgpack, concat("only string keys are supported, but found ", found, "; last byte: 0x", last_token), "object key"), nullptr));
}
/*!
@brief reads a MessagePack byte array
@@ -2231,7 +2397,7 @@ class binary_reader
{
get();
key.clear();
if (JSON_HEDLEY_UNLIKELY(!get_msgpack_string(key) || !sax->key(key)))
if (JSON_HEDLEY_UNLIKELY(!get_msgpack_object_key(key) || !sax->key(key)))
{
return false;
}
+65 -129
View File
@@ -9,10 +9,8 @@
#pragma once
#include <array> // array
#include <clocale> // localeconv
#include <cstddef> // size_t
#include <cstdio> // snprintf
#include <cstdlib> // strtof, strtod, strtold, strtoll, strtoull
#include <initializer_list> // initializer_list
#include <string> // char_traits, string
#include <utility> // move
@@ -206,7 +204,6 @@ class lexer : public lexer_base<BasicJsonType>
explicit lexer(InputAdapterType&& adapter, bool ignore_comments_ = false, bool discard_number_values_ = false) noexcept
: ia(std::move(adapter))
, ignore_comments(ignore_comments_)
, decimal_point_char(static_cast<char_int_type>(get_decimal_point()))
, discard_number_values(discard_number_values_)
{}
@@ -218,23 +215,48 @@ class lexer : public lexer_base<BasicJsonType>
~lexer() = default;
private:
/////////////////////
// locales
/////////////////////
/// return the locale-dependent decimal point
JSON_HEDLEY_PURE
static char get_decimal_point() noexcept
{
const auto* loc = localeconv();
JSON_ASSERT(loc != nullptr);
return (loc->decimal_point == nullptr) ? '.' : *(loc->decimal_point);
}
/////////////////////
// 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`
@@ -254,6 +276,14 @@ 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 };
@@ -1038,24 +1068,6 @@ class lexer : public lexer_base<BasicJsonType>
}
}
JSON_HEDLEY_NON_NULL(2)
static void strtof(float& f, const char* str, char** endptr) noexcept
{
f = std::strtof(str, endptr);
}
JSON_HEDLEY_NON_NULL(2)
static void strtof(double& f, const char* str, char** endptr) noexcept
{
f = std::strtod(str, endptr);
}
JSON_HEDLEY_NON_NULL(2)
static void strtof(long double& f, const char* str, char** endptr) noexcept
{
f = std::strtold(str, endptr);
}
/*!
@brief scan a number literal
@@ -1092,9 +1104,10 @@ class lexer : public lexer_base<BasicJsonType>
token_type::value_float if number could be successfully scanned,
token_type::parse_error otherwise
@note The scanner is independent of the current locale. Internally, the
locale's decimal point is used instead of `.` to work with the
locale-dependent converters.
@note The scanner is independent of the current locale: token_buffer
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.
{
@@ -1183,7 +1196,7 @@ scan_number_zero:
{
case '.':
{
add(decimal_point_char);
add(current);
decimal_point_position = token_buffer.size() - 1;
goto scan_number_decimal1;
}
@@ -1220,7 +1233,7 @@ scan_number_any1:
case '.':
{
add(decimal_point_char);
add(current);
decimal_point_position = token_buffer.size() - 1;
goto scan_number_decimal1;
}
@@ -1425,65 +1438,12 @@ scan_number_done:
return token_type::uninitialized;
}
/*!
@brief check whether Clinger's fast path can still succeed for this token
parse_float_fast() needs a significand below 2^53. A mantissa with 17 or
more significant digits is at least 10^16 and therefore always exceeds it,
so calling the fast path would walk the token one extra time only to
decline before strtod has to run anyway.
Significant digits are the mantissa's digits from the first nonzero one on;
the sign, the decimal point, leading zeros, and the exponent do not count.
The answer is derived from indices - the digits are not scanned again - so
this stays off the hot path of the number scanners.
@param[in] mantissa_end offset just past the last mantissa byte in
token_buffer
@return false if parse_float_fast() is guaranteed to decline
*/
bool mantissa_fits_clinger(std::size_t mantissa_end) const
{
// 10^16 already exceeds 2^53, so 17 digits can never fit
constexpr std::size_t limit = 17;
const std::size_t neg = (!token_buffer.empty() && token_buffer[0] == '-') ? 1u : 0u;
const std::size_t has_dot = (decimal_point_position != std::string::npos) ? 1u : 0u;
// the JSON grammar restricts the integer part to "0" or [1-9][0-9]*, so
// a leading zero can only be a lone "0", which is not significant
const std::size_t lead_zero = (token_buffer[neg] == '0') ? 1u : 0u;
JSON_ASSERT(mantissa_end >= neg + has_dot + lead_zero);
std::size_t digits = mantissa_end - neg - has_dot - lead_zero;
if (JSON_HEDLEY_LIKELY(digits < limit))
{
return true;
}
// Only a number below 1 can carry further insignificant zeros, and only
// while the count stays at the limit does removing them change the
// answer - so this loop is skipped for all but a few tokens. Note
// token_buffer holds the locale's decimal point, so the fraction is
// located through decimal_point_position rather than by searching '.'.
if (lead_zero != 0)
{
JSON_ASSERT(has_dot != 0); // an integer "0" cannot reach the limit
for (std::size_t i = decimal_point_position + 1;
digits >= limit && i < mantissa_end && token_buffer[i] == '0'; ++i)
{
--digits;
}
}
return digits < limit;
}
/*!
@brief convert the number text in token_buffer to its value and token type
The digit sequence in token_buffer has already been validated (by the
scan_number() state machine or by the contiguous fast path) and holds the
locale decimal point in place of '.'. Integers are parsed first and fall
scan_number() state machine or by the contiguous fast path) and holds '.'
as decimal point, independent of the locale. Integers are parsed first and fall
back to floating point on overflow. This is shared so both scanners produce
identical results.
@@ -1491,7 +1451,7 @@ scan_number_done:
token_buffer (the index of 'e'/'E', or
token_buffer.size() when there is no exponent);
used to skip Clinger's fast path when it cannot
possibly succeed - see mantissa_fits_clinger()
possibly succeed - see detail::mantissa_fits_clinger()
*/
token_type convert_number(token_type number_type, std::size_t mantissa_end)
{
@@ -1563,26 +1523,13 @@ scan_number_done:
// 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.
if (parse_float_from_chars(num_begin, num_end, value_float))
{
return token_type::value_float;
}
// Skipping a fast path that cannot succeed is lossless and saves a full
// extra pass over the token's bytes, which otherwise shows up on
// high-precision inputs such as canada.json
if (mantissa_fits_clinger(mantissa_end)
&& parse_float_fast(num_begin, num_end, decimal_point_char, value_float))
// 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;
}
char* endptr = nullptr; // NOLINT(misc-const-correctness,cppcoreguidelines-pro-type-vararg,hicpp-vararg)
strtof(value_float, token_buffer.data(), &endptr);
// we checked the number format before
JSON_ASSERT(endptr == token_buffer.data() + token_buffer.size());
convert_float_locale_aware(token_buffer, decimal_point_position, value_float);
return token_type::value_float;
}
@@ -1591,7 +1538,7 @@ scan_number_done:
Parses the whole number token straight from the input buffer, avoiding the
per-character get()/add() of scan_number(). On success it fills token_buffer
(with the locale decimal point substituted, as scan_number() does) and
(as scan_number() does) and
returns the token type. On anything it does not fully recognize as a
well-formed number it makes no state change and returns
token_type::uninitialized, so the caller falls back to scan_number(), which
@@ -1707,16 +1654,11 @@ scan_number_done:
}
#endif
// materialize the token exactly as scan_number() would, substituting the
// locale decimal point so convert_number()'s strtof fallback stays valid.
// reset() already cleared token_buffer, so append() fills it (assign() is
// avoided because custom string_t types need not provide it)
// materialize the token exactly as scan_number() would. reset() already
// cleared token_buffer, so append() fills it (assign() is avoided
// because custom string_t types need not provide it)
token_buffer.append(reinterpret_cast<const typename string_t::value_type*>(data), len);
if (dot_index != std::string::npos)
{
token_buffer[dot_index] = static_cast<typename string_t::value_type>(decimal_point_char);
decimal_point_position = dot_index;
}
decimal_point_position = dot_index;
ia.bulk_skip(len - 1);
position.chars_read_total += (len - 1);
@@ -1983,11 +1925,7 @@ scan_number_done:
/// return current string value (implicitly resets the token; useful only once)
string_t& get_string()
{
// translate decimal points from locale back to '.' (#4084)
if (decimal_point_char != '.' && decimal_point_position != std::string::npos)
{
token_buffer[decimal_point_position] = '.';
}
// a number token holds '.' regardless of the locale (#4084)
return token_buffer;
}
@@ -2283,9 +2221,7 @@ scan_number_done:
number_unsigned_t value_unsigned = 0;
number_float_t value_float = 0;
/// the decimal point
const char_int_type decimal_point_char = '.';
/// the position of the decimal point in the input
/// the position of the decimal point in token_buffer
std::size_t decimal_point_position = std::string::npos;
/// whether the caller (e.g. accept()/json_sax_acceptor) only needs the
+428 -15
View File
@@ -3,6 +3,7 @@
// | | |__ | | | | | | version 3.12.0
// |_____|_____|_____|_|___| https://github.com/nlohmann/json
//
// SPDX-FileCopyrightText: 2021 The fast_float authors <https://github.com/fastfloat/fast_float>
// SPDX-FileCopyrightText: 2013-2026 Niels Lohmann <https://nlohmann.me>
// SPDX-License-Identifier: MIT
@@ -10,10 +11,16 @@
#include <array> // array
#include <cfloat> // FLT_EVAL_METHOD
#include <clocale> // localeconv
#include <cstddef> // size_t
#include <cstdint> // int64_t, uint64_t
#include <cstdlib> // strtof, strtod, strtold
#include <cstring> // memcpy
#include <limits> // numeric_limits
#include <string> // string
#include <nlohmann/detail/bit_ops.hpp>
#include <nlohmann/detail/input/pow5_table.hpp>
#include <nlohmann/detail/macro_scope.hpp>
// std::from_chars lives in <charconv>, but being in C++17 mode does not
@@ -29,8 +36,9 @@
// This file contains the value-conversion helpers used by the lexer to turn an
// already-validated number token into a value, without the locale/errno
// overhead of std::strtoull/std::strtod. They are free functions so the lexer
// stays focused on scanning; see lexer::convert_number().
// overhead of std::strtoull/std::strtod where possible. They are free functions
// so the lexer stays focused on scanning (see lexer::convert_number()) and so
// that other parsers of JSON text can convert tokens exactly like it does.
NLOHMANN_JSON_NAMESPACE_BEGIN
namespace detail
@@ -118,14 +126,12 @@ std::strtod. The parser only activates for number_float_t == double; float and
long double keep the std::strtof/std::strtold paths (see the templated overload
below).
@param[in] first pointer to the first character of the number
@param[in] last pointer past the last character
@param[in] decimal_point the (locale-dependent) decimal point character
@param[out] out the parsed value on success
@param[in] first pointer to the first character of the number
@param[in] last pointer past the last character
@param[out] out the parsed value on success
@return true if the value was parsed exactly; false to fall back to strtod
*/
template<typename DecimalPointType>
bool parse_float_fast(const char* first, const char* last, DecimalPointType decimal_point, double& out) noexcept
inline bool parse_float_fast(const char* first, const char* last, double& out) noexcept
{
#if defined(FLT_EVAL_METHOD) && FLT_EVAL_METHOD != 0
// Clinger's fast path is only exact when double operations are evaluated in
@@ -136,7 +142,6 @@ bool parse_float_fast(const char* first, const char* last, DecimalPointType deci
// std::from_chars / std::strtod path.
static_cast<void>(first);
static_cast<void>(last);
static_cast<void>(decimal_point);
static_cast<void>(out);
return false;
#else
@@ -175,7 +180,7 @@ bool parse_float_fast(const char* first, const char* last, DecimalPointType deci
++num_digits;
fractional_digits += static_cast<int>(seen_dot);
}
else if (static_cast<DecimalPointType>(c) == decimal_point)
else if (c == '.')
{
if (JSON_HEDLEY_UNLIKELY(seen_dot))
{
@@ -260,8 +265,8 @@ bool parse_float_fast(const char* first, const char* last, DecimalPointType deci
}
/// fast float path is only exact for `double`; decline for float/long double
template<typename DecimalPointType, typename FloatType>
bool parse_float_fast(const char* /*first*/, const char* /*last*/, DecimalPointType /*decimal_point*/, FloatType& /*out*/) noexcept
template<typename FloatType>
bool parse_float_fast(const char* /*first*/, const char* /*last*/, FloatType& /*out*/) noexcept
{
return false;
}
@@ -273,9 +278,7 @@ std::from_chars is locale-independent, correctly rounded, and - via the
Eisel-Lemire algorithm in modern standard libraries - much faster than strtod
over the whole value range (not just the Clinger subset). It is used only when
__cpp_lib_to_chars indicates full floating-point support and only when it
consumes the entire token ([first, last)); a partial parse means the buffer
uses a non-'.' locale decimal point, in which case the caller falls back to the
locale-aware path. An under-/overflow (result_out_of_range) also declines, so
consumes the entire token ([first, last)). An under-/overflow (result_out_of_range) also declines, so
the caller's strtod fallback supplies the well-defined ±inf/0 result the parser
expects (side-stepping the P4168 divergence between implementations).
@@ -298,5 +301,415 @@ bool parse_float_from_chars(const char* first, const char* last, FloatType& out)
#endif
}
/// whether the eight bytes of @a v (see read_eight_bytes()) are ASCII digits
/// (after fast_float's is_made_of_eight_digits_fast)
inline bool is_eight_digits(std::uint64_t v) noexcept
{
return ((v & 0xF0F0F0F0F0F0F0F0u) | (((v + 0x0606060606060606u) & 0xF0F0F0F0F0F0F0F0u) >> 4u)) == 0x3333333333333333u;
}
/// the value of the eight ASCII digits in @a v (see read_eight_bytes()), three
/// multiplications instead of eight (after simdjson and fast_float)
inline std::uint32_t parse_eight_digits(std::uint64_t v) noexcept
{
v = ((v & 0x0F0F0F0F0F0F0F0Fu) * 2561u) >> 8u;
v = ((v & 0x00FF00FF00FF00FFu) * 6553601u) >> 16u;
return static_cast<std::uint32_t>(((v & 0x0000FFFF0000FFFFu) * 42949672960001u) >> 32u);
}
/*!
@brief the double nearest to w * 10^q (Eisel-Lemire)
The algorithm of Daniel Lemire, "Number Parsing at a Gigabyte per Second"
(Software: Practice and Experience, 2021), after fast_float's compute_float
(used under the MIT license). With a 128-bit approximation of 5^q, the product
is always sufficient to round correctly for w with at most 19 digits (Noble
Mushtak and Daniel Lemire, "Fast number parsing without fallback", Software:
Practice and Experience, 2023). Only integer arithmetic is used, so the result
does not depend on the floating-point environment.
@param[in] q decimal exponent
@param[in] w significand, w != 0
@return the IEEE-754 bits of the positive result (0 for underflow, infinity
for overflow)
*/
inline std::uint64_t eisel_lemire(std::int64_t q, std::uint64_t w) noexcept
{
constexpr int mantissa_bits = 52;
constexpr std::uint64_t infinity = std::uint64_t{0x7FF} << mantissa_bits;
if (q < pow5_128_smallest_power)
{
return 0;
}
if (q > pow5_128_largest_power)
{
return infinity;
}
const int lz = count_leading_zeros(w);
w <<= static_cast<unsigned>(lz);
const auto index = static_cast<std::size_t>(2 * (q - pow5_128_smallest_power));
uint128_parts product = full_multiplication(w, pow5_128()[index]);
constexpr std::uint64_t precision_mask = 0xFFFFFFFFFFFFFFFFu >> (mantissa_bits + 3);
if ((product.high & precision_mask) == precision_mask)
{
// the lower bits may carry into the result: use the next 64 bits of 5^q
const uint128_parts second = full_multiplication(w, pow5_128()[index + 1]);
product.low += second.high;
if (second.high > product.low)
{
++product.high;
}
}
const auto upperbit = static_cast<int>(product.high >> 63u);
const int shift = upperbit + 64 - mantissa_bits - 3;
std::uint64_t mantissa = product.high >> static_cast<unsigned>(shift);
// floor(log2(10^q)) + 63 + 1023, with log2(10) ~ 217706 / 2^16
std::int64_t power2 = (((152170 + 65536) * q) >> 16) + 63 + upperbit - lz + 1023;
if (power2 <= 0) // subnormal
{
if (-power2 + 1 >= 64)
{
return 0;
}
mantissa >>= static_cast<unsigned>(-power2 + 1);
mantissa += (mantissa & 1u);
mantissa >>= 1u;
// rounding up may produce the smallest normal number
power2 = (mantissa < (std::uint64_t{1} << mantissa_bits)) ? 0 : 1;
return mantissa | (static_cast<std::uint64_t>(power2) << mantissa_bits);
}
// a value exactly between two doubles rounds to even; this can only
// happen for small |q|, where 5^q is exact
if (product.low <= 1 && q >= -4 && q <= 23 && (mantissa & 3u) == 1
&& (mantissa << static_cast<unsigned>(shift)) == product.high)
{
mantissa &= ~std::uint64_t{1};
}
mantissa += (mantissa & 1u);
mantissa >>= 1u;
if (mantissa >= (std::uint64_t{2} << mantissa_bits))
{
mantissa = std::uint64_t{1} << mantissa_bits;
++power2;
}
mantissa &= ~(std::uint64_t{1} << mantissa_bits);
if (power2 >= 0x7FF)
{
return infinity;
}
return mantissa | (static_cast<std::uint64_t>(power2) << mantissa_bits);
}
/*!
@brief parse a validated float token with the Eisel-Lemire algorithm
The significand is accumulated eight digits at a time where possible. A token
with more than 19 significant digits is truncated to w; the value then lies
in [w, w + 1) * 10^q, and it is only returned if both ends round to the same
double, which covers all but a few such tokens.
@param[in] first pointer to the first character of the token
@param[in] last pointer past the last character
@param[out] out the correctly rounded value on success (±infinity if it
overflows, like strtod)
@return true on success; false if strtod must decide
*/
inline bool parse_float_eisel_lemire(const char* first, const char* last, double& out) noexcept
{
const char* p = first;
const bool negative = (p != last && *p == '-');
if (negative)
{
++p;
}
std::uint64_t w = 0;
int digits = 0; // significant digits in w
std::int64_t exponent = 0;
bool truncated = false;
bool in_fraction = false;
for (;;)
{
// eight digits at a time, as long as they fit into w
while (w != 0 && digits <= 19 - 8 && last - p >= 8)
{
const std::uint64_t v = read_eight_bytes(p);
if (!is_eight_digits(v))
{
break;
}
w = (w * 100000000u) + parse_eight_digits(v);
digits += 8;
exponent -= in_fraction ? 8 : 0;
p += 8;
}
if (p == last)
{
break;
}
const char c = *p;
if (c >= '0' && c <= '9')
{
if (w == 0 && c == '0')
{
// leading zeros are not significant, but scale a fraction
exponent -= in_fraction ? 1 : 0;
}
else if (digits < 19)
{
w = (w * 10u) + static_cast<std::uint64_t>(c - '0');
++digits;
exponent -= in_fraction ? 1 : 0;
}
else
{
// dropped: the value lies between w and w + 1 (in units of
// the last kept digit) unless all dropped digits are zero
truncated = truncated || c != '0';
exponent += in_fraction ? 0 : 1;
}
++p;
}
else if (c == '.')
{
in_fraction = true;
++p;
}
else
{
break; // 'e' or 'E'
}
}
if (p != last)
{
++p; // 'e' or 'E'
bool exp_negative = false;
if (p != last && (*p == '-' || *p == '+'))
{
exp_negative = (*p == '-');
++p;
}
std::int64_t exp_value = 0;
for (; p != last; ++p)
{
// saturate: any exponent beyond this under- or overflows anyway
if (exp_value < 100000)
{
exp_value = (exp_value * 10) + (*p - '0');
}
}
exponent += exp_negative ? -exp_value : exp_value;
}
std::uint64_t bits = 0;
if (w != 0)
{
bits = eisel_lemire(exponent, w);
if (truncated && (w + 1 == 0 || eisel_lemire(exponent, w + 1) != bits))
{
return false;
}
}
bits |= negative ? (std::uint64_t{1} << 63u) : 0u;
static_assert(sizeof(double) == sizeof(std::uint64_t), "double must have 64 bits");
std::memcpy(&out, &bits, sizeof(out));
return true;
}
/// Eisel-Lemire is only implemented for `double`
template<typename FloatType>
bool parse_float_eisel_lemire(const char* /*first*/, const char* /*last*/, FloatType& /*out*/) noexcept
{
return false;
}
/*!
@brief check whether Clinger's fast path can still succeed for a float token
parse_float_fast() needs a significand below 2^53. A mantissa with 17 or
more significant digits is at least 10^16 and therefore always exceeds it,
so calling the fast path would walk the token one extra time only to
decline before strtod has to run anyway.
Significant digits are the mantissa's digits from the first nonzero one on;
the sign, the decimal point, leading zeros, and the exponent do not count.
The answer is derived from indices - the digits are not scanned again - so
this stays off the hot path of the number scanners.
@param[in] token the validated number token ('.' as decimal point)
@param[in] decimal_point_position index of the '.' in @a token, or
std::string::npos if there is none
@param[in] mantissa_end offset just past the last mantissa byte
@return false if parse_float_fast() is guaranteed to decline
*/
inline bool mantissa_fits_clinger(const char* token, std::size_t decimal_point_position, std::size_t mantissa_end) noexcept
{
// 10^16 already exceeds 2^53, so 17 digits can never fit
constexpr std::size_t limit = 17;
const std::size_t neg = (token[0] == '-') ? 1u : 0u;
const std::size_t has_dot = (decimal_point_position != std::string::npos) ? 1u : 0u;
// the JSON grammar restricts the integer part to "0" or [1-9][0-9]*, so
// a leading zero can only be a lone "0", which is not significant
const std::size_t lead_zero = (token[neg] == '0') ? 1u : 0u;
JSON_ASSERT(mantissa_end >= neg + has_dot + lead_zero);
std::size_t digits = mantissa_end - neg - has_dot - lead_zero;
if (JSON_HEDLEY_LIKELY(digits < limit))
{
return true;
}
// Only a number below 1 can carry further insignificant zeros, and only
// while the count stays at the limit does removing them change the
// answer - so this loop is skipped for all but a few tokens. The
// fraction is located through decimal_point_position rather than by
// searching '.'.
if (lead_zero != 0)
{
JSON_ASSERT(has_dot != 0); // an integer "0" cannot reach the limit
for (std::size_t i = decimal_point_position + 1;
digits >= limit && i < mantissa_end && token[i] == '0'; ++i)
{
--digits;
}
}
return digits < limit;
}
/*!
@brief convert a validated float token without the C library, if possible
Tries std::from_chars (when available), Clinger's exact fast path (double
only, skipped when it cannot succeed), and the Eisel-Lemire algorithm (double
only).
@param[in] first pointer to the first character of the token
@param[in] last pointer past the last character
@param[in] decimal_point_position index of the '.' in the token, or
std::string::npos if there is none
@param[in] mantissa_end offset just past the last mantissa byte (the
index of 'e'/'E', or the token length)
@param[out] value the converted value on success
@return true if the value was converted; false if convert_float_locale_aware()
must convert it
*/
template<typename FloatType>
bool convert_float_fast(const char* first, const char* last, std::size_t decimal_point_position,
std::size_t mantissa_end, FloatType& value) noexcept
{
if (parse_float_from_chars(first, last, value))
{
return true;
}
// Skipping a fast path that cannot succeed is lossless and saves a full
// extra pass over the token's bytes, which otherwise shows up on
// high-precision inputs such as canada.json
if (mantissa_fits_clinger(first, decimal_point_position, mantissa_end)
&& parse_float_fast(first, last, value))
{
return true;
}
return parse_float_eisel_lemire(first, last, value);
}
/// std::strtof, std::strtod, or std::strtold, chosen by the type of @a f
JSON_HEDLEY_NON_NULL(2)
inline void strtof_by_type(float& f, const char* str, char** endptr) noexcept
{
f = std::strtof(str, endptr);
}
/// std::strtof, std::strtod, or std::strtold, chosen by the type of @a f
JSON_HEDLEY_NON_NULL(2)
inline void strtof_by_type(double& f, const char* str, char** endptr) noexcept
{
f = std::strtod(str, endptr);
}
/// std::strtof, std::strtod, or std::strtold, chosen by the type of @a f
JSON_HEDLEY_NON_NULL(2)
inline void strtof_by_type(long double& f, const char* str, char** endptr) noexcept
{
f = std::strtold(str, endptr);
}
/// return the decimal point of the current locale
inline char get_decimal_point() noexcept
{
const auto* loc = localeconv();
JSON_ASSERT(loc != nullptr);
return (loc->decimal_point == nullptr) ? '.' : *(loc->decimal_point);
}
/*!
@brief convert a validated float token with strtof/strtod/strtold
These functions expect the decimal point of the *current* locale, so it is
looked up right before the conversion instead of once when the lexer is
constructed: a locale change in between (by a parser callback, a SAX
handler, or another thread) must not truncate the value (#5198). The
token has been validated before, so if the conversion stops early and the
decimal point changed in the meantime, the locale changed between the
lookup and the call, and the conversion is repeated with the new decimal
point. If the decimal point did not change, a retry cannot succeed: the
locale's decimal point is not a single character (e.g., the two-byte
U+066B of ar_EG.UTF-8 or fa_IR.UTF-8) and cannot be substituted in place.
The value strtod parsed up to that point is kept, as before this change.
Note that changing the locale in another thread *while* strtod runs is
undefined behavior of the C library, which this function cannot prevent.
@param[in,out] token the token with '.' as decimal point; its
decimal point is replaced during the
conversion and restored afterwards
(data() must be NUL-terminated)
@param[in] decimal_point_position index of the '.' in @a token, or
std::string::npos if there is none
@param[out] value the converted value
*/
template<typename StringType, typename FloatType>
void convert_float_locale_aware(StringType& token, std::size_t decimal_point_position, FloatType& value)
{
const bool has_dot = decimal_point_position != std::string::npos;
char decimal_point = get_decimal_point();
for (;;)
{
const bool substitute = has_dot && decimal_point != '.';
if (substitute)
{
token[decimal_point_position] = static_cast<typename StringType::value_type>(decimal_point);
}
char* endptr = nullptr; // NOLINT(misc-const-correctness,cppcoreguidelines-pro-type-vararg,hicpp-vararg)
strtof_by_type(value, token.data(), &endptr);
if (substitute)
{
// the caller hands the token on (e.g. to the SAX interface) with '.'
token[decimal_point_position] = '.';
}
if (JSON_HEDLEY_LIKELY(endptr == token.data() + token.size()))
{
return;
}
// retry only if the locale changed; otherwise, this would loop forever
const char current_decimal_point = get_decimal_point();
if (current_decimal_point == decimal_point)
{
return;
}
decimal_point = current_decimal_point;
}
}
} // namespace detail
NLOHMANN_JSON_NAMESPACE_END
@@ -0,0 +1,371 @@
// __ _____ _____ _____
// __| | __| | | | JSON for Modern C++
// | | |__ | | | | | | version 3.12.0
// |_____|_____|_____|_|___| https://github.com/nlohmann/json
//
// SPDX-FileCopyrightText: 2021 The fast_float authors <https://github.com/fastfloat/fast_float>
// SPDX-FileCopyrightText: 2013-2026 Niels Lohmann <https://nlohmann.me>
// SPDX-License-Identifier: MIT
#pragma once
#include <array> // array
#include <cstdint> // int64_t, uint64_t
#include <nlohmann/detail/abi_macros.hpp>
NLOHMANN_JSON_NAMESPACE_BEGIN
namespace detail
{
/// the range of decimal exponents covered by pow5_128()
constexpr std::int64_t pow5_128_smallest_power = -342;
constexpr std::int64_t pow5_128_largest_power = 308;
/*!
@brief 128-bit approximations of 5^q for q in [-342, 308]
Entry q (at index 2 * (q + 342)) holds the most significant 128 bits of 5^q,
normalized so that the highest bit is set: for q >= 0 the truncated value, for
q < 0 the value rounded up. This is the table of fast_float (Daniel Lemire and
contributors, used under the MIT license), generated like its
script/table_generation.py; unit-class_lexer.cpp recomputes every entry.
*/
inline const std::array<std::uint64_t, 1302>& pow5_128() noexcept
{
static const std::array<std::uint64_t, 1302> table =
{
{
0xeef453d6923bd65au, 0x113faa2906a13b3fu, 0x9558b4661b6565f8u, 0x4ac7ca59a424c507u,
0xbaaee17fa23ebf76u, 0x5d79bcf00d2df649u, 0xe95a99df8ace6f53u, 0xf4d82c2c107973dcu,
0x91d8a02bb6c10594u, 0x79071b9b8a4be869u, 0xb64ec836a47146f9u, 0x9748e2826cdee284u,
0xe3e27a444d8d98b7u, 0xfd1b1b2308169b25u, 0x8e6d8c6ab0787f72u, 0xfe30f0f5e50e20f7u,
0xb208ef855c969f4fu, 0xbdbd2d335e51a935u, 0xde8b2b66b3bc4723u, 0xad2c788035e61382u,
0x8b16fb203055ac76u, 0x4c3bcb5021afcc31u, 0xaddcb9e83c6b1793u, 0xdf4abe242a1bbf3du,
0xd953e8624b85dd78u, 0xd71d6dad34a2af0du, 0x87d4713d6f33aa6bu, 0x8672648c40e5ad68u,
0xa9c98d8ccb009506u, 0x680efdaf511f18c2u, 0xd43bf0effdc0ba48u, 0x0212bd1b2566def2u,
0x84a57695fe98746du, 0x014bb630f7604b57u, 0xa5ced43b7e3e9188u, 0x419ea3bd35385e2du,
0xcf42894a5dce35eau, 0x52064cac828675b9u, 0x818995ce7aa0e1b2u, 0x7343efebd1940993u,
0xa1ebfb4219491a1fu, 0x1014ebe6c5f90bf8u, 0xca66fa129f9b60a6u, 0xd41a26e077774ef6u,
0xfd00b897478238d0u, 0x8920b098955522b4u, 0x9e20735e8cb16382u, 0x55b46e5f5d5535b0u,
0xc5a890362fddbc62u, 0xeb2189f734aa831du, 0xf712b443bbd52b7bu, 0xa5e9ec7501d523e4u,
0x9a6bb0aa55653b2du, 0x47b233c92125366eu, 0xc1069cd4eabe89f8u, 0x999ec0bb696e840au,
0xf148440a256e2c76u, 0xc00670ea43ca250du, 0x96cd2a865764dbcau, 0x380406926a5e5728u,
0xbc807527ed3e12bcu, 0xc605083704f5ecf2u, 0xeba09271e88d976bu, 0xf7864a44c633682eu,
0x93445b8731587ea3u, 0x7ab3ee6afbe0211du, 0xb8157268fdae9e4cu, 0x5960ea05bad82964u,
0xe61acf033d1a45dfu, 0x6fb92487298e33bdu, 0x8fd0c16206306babu, 0xa5d3b6d479f8e056u,
0xb3c4f1ba87bc8696u, 0x8f48a4899877186cu, 0xe0b62e2929aba83cu, 0x331acdabfe94de87u,
0x8c71dcd9ba0b4925u, 0x9ff0c08b7f1d0b14u, 0xaf8e5410288e1b6fu, 0x07ecf0ae5ee44dd9u,
0xdb71e91432b1a24au, 0xc9e82cd9f69d6150u, 0x892731ac9faf056eu, 0xbe311c083a225cd2u,
0xab70fe17c79ac6cau, 0x6dbd630a48aaf406u, 0xd64d3d9db981787du, 0x092cbbccdad5b108u,
0x85f0468293f0eb4eu, 0x25bbf56008c58ea5u, 0xa76c582338ed2621u, 0xaf2af2b80af6f24eu,
0xd1476e2c07286faau, 0x1af5af660db4aee1u, 0x82cca4db847945cau, 0x50d98d9fc890ed4du,
0xa37fce126597973cu, 0xe50ff107bab528a0u, 0xcc5fc196fefd7d0cu, 0x1e53ed49a96272c8u,
0xff77b1fcbebcdc4fu, 0x25e8e89c13bb0f7au, 0x9faacf3df73609b1u, 0x77b191618c54e9acu,
0xc795830d75038c1du, 0xd59df5b9ef6a2417u, 0xf97ae3d0d2446f25u, 0x4b0573286b44ad1du,
0x9becce62836ac577u, 0x4ee367f9430aec32u, 0xc2e801fb244576d5u, 0x229c41f793cda73fu,
0xf3a20279ed56d48au, 0x6b43527578c1110fu, 0x9845418c345644d6u, 0x830a13896b78aaa9u,
0xbe5691ef416bd60cu, 0x23cc986bc656d553u, 0xedec366b11c6cb8fu, 0x2cbfbe86b7ec8aa8u,
0x94b3a202eb1c3f39u, 0x7bf7d71432f3d6a9u, 0xb9e08a83a5e34f07u, 0xdaf5ccd93fb0cc53u,
0xe858ad248f5c22c9u, 0xd1b3400f8f9cff68u, 0x91376c36d99995beu, 0x23100809b9c21fa1u,
0xb58547448ffffb2du, 0xabd40a0c2832a78au, 0xe2e69915b3fff9f9u, 0x16c90c8f323f516cu,
0x8dd01fad907ffc3bu, 0xae3da7d97f6792e3u, 0xb1442798f49ffb4au, 0x99cd11cfdf41779cu,
0xdd95317f31c7fa1du, 0x40405643d711d583u, 0x8a7d3eef7f1cfc52u, 0x482835ea666b2572u,
0xad1c8eab5ee43b66u, 0xda3243650005eecfu, 0xd863b256369d4a40u, 0x90bed43e40076a82u,
0x873e4f75e2224e68u, 0x5a7744a6e804a291u, 0xa90de3535aaae202u, 0x711515d0a205cb36u,
0xd3515c2831559a83u, 0x0d5a5b44ca873e03u, 0x8412d9991ed58091u, 0xe858790afe9486c2u,
0xa5178fff668ae0b6u, 0x626e974dbe39a872u, 0xce5d73ff402d98e3u, 0xfb0a3d212dc8128fu,
0x80fa687f881c7f8eu, 0x7ce66634bc9d0b99u, 0xa139029f6a239f72u, 0x1c1fffc1ebc44e80u,
0xc987434744ac874eu, 0xa327ffb266b56220u, 0xfbe9141915d7a922u, 0x4bf1ff9f0062baa8u,
0x9d71ac8fada6c9b5u, 0x6f773fc3603db4a9u, 0xc4ce17b399107c22u, 0xcb550fb4384d21d3u,
0xf6019da07f549b2bu, 0x7e2a53a146606a48u, 0x99c102844f94e0fbu, 0x2eda7444cbfc426du,
0xc0314325637a1939u, 0xfa911155fefb5308u, 0xf03d93eebc589f88u, 0x793555ab7eba27cau,
0x96267c7535b763b5u, 0x4bc1558b2f3458deu, 0xbbb01b9283253ca2u, 0x9eb1aaedfb016f16u,
0xea9c227723ee8bcbu, 0x465e15a979c1cadcu, 0x92a1958a7675175fu, 0x0bfacd89ec191ec9u,
0xb749faed14125d36u, 0xcef980ec671f667bu, 0xe51c79a85916f484u, 0x82b7e12780e7401au,
0x8f31cc0937ae58d2u, 0xd1b2ecb8b0908810u, 0xb2fe3f0b8599ef07u, 0x861fa7e6dcb4aa15u,
0xdfbdcece67006ac9u, 0x67a791e093e1d49au, 0x8bd6a141006042bdu, 0xe0c8bb2c5c6d24e0u,
0xaecc49914078536du, 0x58fae9f773886e18u, 0xda7f5bf590966848u, 0xaf39a475506a899eu,
0x888f99797a5e012du, 0x6d8406c952429603u, 0xaab37fd7d8f58178u, 0xc8e5087ba6d33b83u,
0xd5605fcdcf32e1d6u, 0xfb1e4a9a90880a64u, 0x855c3be0a17fcd26u, 0x5cf2eea09a55067fu,
0xa6b34ad8c9dfc06fu, 0xf42faa48c0ea481eu, 0xd0601d8efc57b08bu, 0xf13b94daf124da26u,
0x823c12795db6ce57u, 0x76c53d08d6b70858u, 0xa2cb1717b52481edu, 0x54768c4b0c64ca6eu,
0xcb7ddcdda26da268u, 0xa9942f5dcf7dfd09u, 0xfe5d54150b090b02u, 0xd3f93b35435d7c4cu,
0x9efa548d26e5a6e1u, 0xc47bc5014a1a6dafu, 0xc6b8e9b0709f109au, 0x359ab6419ca1091bu,
0xf867241c8cc6d4c0u, 0xc30163d203c94b62u, 0x9b407691d7fc44f8u, 0x79e0de63425dcf1du,
0xc21094364dfb5636u, 0x985915fc12f542e4u, 0xf294b943e17a2bc4u, 0x3e6f5b7b17b2939du,
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0xb913179899f68584u, 0x28e2557b59846e3fu, 0xe757dd7ec07426e5u, 0x331aeada2fe589cfu,
0x9096ea6f3848984fu, 0x3ff0d2c85def7621u, 0xb4bca50b065abe63u, 0x0fed077a756b53a9u,
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0xb080392cc4349decu, 0xbd8d794d96aacfb3u, 0xdca04777f541c567u, 0xecf0d7a0fc5583a0u,
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0xd77485cb25823ac7u, 0x7d633293366b828bu, 0x86a8d39ef77164bcu, 0xae5dff9c02033197u,
0xa8530886b54dbdebu, 0xd9f57f830283fdfcu, 0xd267caa862a12d66u, 0xd072df63c324fd7bu,
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0x91ff83775423cc06u, 0x7b6306a34627ddcfu, 0xb67f6455292cbf08u, 0x1a3bc84c17b1d542u,
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0xd98ddaee19068c76u, 0x3badd624dd9b0957u, 0x87f8a8d4cfa417c9u, 0xe54ca5d70a80e5d6u,
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0x84c8d4dfd2c63f3bu, 0x29ecd9f40041e073u, 0xa5fb0a17c777cf09u, 0xf468107100525890u,
0xcf79cc9db955c2ccu, 0x7182148d4066eeb4u, 0x81ac1fe293d599bfu, 0xc6f14cd848405530u,
0xa21727db38cb002fu, 0xb8ada00e5a506a7cu, 0xca9cf1d206fdc03bu, 0xa6d90811f0e4851cu,
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0x9a94dd3e8cf578b9u, 0x82bb74f8301958ceu, 0xc13a148e3032d6e7u, 0xe36a52363c1faf01u,
0xf18899b1bc3f8ca1u, 0xdc44e6c3cb279ac1u, 0x96f5600f15a7b7e5u, 0x29ab103a5ef8c0b9u,
0xbcb2b812db11a5deu, 0x7415d448f6b6f0e7u, 0xebdf661791d60f56u, 0x111b495b3464ad21u,
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0x813f3978f8940984u, 0x4000000000000000u, 0xa18f07d736b90be5u, 0x5000000000000000u,
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0x96769950b50d88f4u, 0x1314448000000000u, 0xbc143fa4e250eb31u, 0x17d955a000000000u,
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0xe264589a4dcdab14u, 0xc696963c7eed2dd1u, 0x8d7eb76070a08aecu, 0xfc1e1de5cf543ca2u,
0xb0de65388cc8ada8u, 0x3b25a55f43294bcbu, 0xdd15fe86affad912u, 0x49ef0eb713f39ebeu,
0x8a2dbf142dfcc7abu, 0x6e3569326c784337u, 0xacb92ed9397bf996u, 0x49c2c37f07965404u,
0xd7e77a8f87daf7fbu, 0xdc33745ec97be906u, 0x86f0ac99b4e8dafdu, 0x69a028bb3ded71a3u,
0xa8acd7c0222311bcu, 0xc40832ea0d68ce0cu, 0xd2d80db02aabd62bu, 0xf50a3fa490c30190u,
0x83c7088e1aab65dbu, 0x792667c6da79e0fau, 0xa4b8cab1a1563f52u, 0x577001b891185938u,
0xcde6fd5e09abcf26u, 0xed4c0226b55e6f86u, 0x80b05e5ac60b6178u, 0x544f8158315b05b4u,
0xa0dc75f1778e39d6u, 0x696361ae3db1c721u, 0xc913936dd571c84cu, 0x03bc3a19cd1e38e9u,
0xfb5878494ace3a5fu, 0x04ab48a04065c723u, 0x9d174b2dcec0e47bu, 0x62eb0d64283f9c76u,
0xc45d1df942711d9au, 0x3ba5d0bd324f8394u, 0xf5746577930d6500u, 0xca8f44ec7ee36479u,
0x9968bf6abbe85f20u, 0x7e998b13cf4e1ecbu, 0xbfc2ef456ae276e8u, 0x9e3fedd8c321a67eu,
0xefb3ab16c59b14a2u, 0xc5cfe94ef3ea101eu, 0x95d04aee3b80ece5u, 0xbba1f1d158724a12u,
0xbb445da9ca61281fu, 0x2a8a6e45ae8edc97u, 0xea1575143cf97226u, 0xf52d09d71a3293bdu,
0x924d692ca61be758u, 0x593c2626705f9c56u, 0xb6e0c377cfa2e12eu, 0x6f8b2fb00c77836cu,
0xe498f455c38b997au, 0x0b6dfb9c0f956447u, 0x8edf98b59a373fecu, 0x4724bd4189bd5eacu,
0xb2977ee300c50fe7u, 0x58edec91ec2cb657u, 0xdf3d5e9bc0f653e1u, 0x2f2967b66737e3edu,
0x8b865b215899f46cu, 0xbd79e0d20082ee74u, 0xae67f1e9aec07187u, 0xecd8590680a3aa11u,
0xda01ee641a708de9u, 0xe80e6f4820cc9495u, 0x884134fe908658b2u, 0x3109058d147fdcddu,
0xaa51823e34a7eedeu, 0xbd4b46f0599fd415u, 0xd4e5e2cdc1d1ea96u, 0x6c9e18ac7007c91au,
0x850fadc09923329eu, 0x03e2cf6bc604ddb0u, 0xa6539930bf6bff45u, 0x84db8346b786151cu,
0xcfe87f7cef46ff16u, 0xe612641865679a63u, 0x81f14fae158c5f6eu, 0x4fcb7e8f3f60c07eu,
0xa26da3999aef7749u, 0xe3be5e330f38f09du, 0xcb090c8001ab551cu, 0x5cadf5bfd3072cc5u,
0xfdcb4fa002162a63u, 0x73d9732fc7c8f7f6u, 0x9e9f11c4014dda7eu, 0x2867e7fddcdd9afau,
0xc646d63501a1511du, 0xb281e1fd541501b8u, 0xf7d88bc24209a565u, 0x1f225a7ca91a4226u,
0x9ae757596946075fu, 0x3375788de9b06958u, 0xc1a12d2fc3978937u, 0x0052d6b1641c83aeu,
0xf209787bb47d6b84u, 0xc0678c5dbd23a49au, 0x9745eb4d50ce6332u, 0xf840b7ba963646e0u,
0xbd176620a501fbffu, 0xb650e5a93bc3d898u, 0xec5d3fa8ce427affu, 0xa3e51f138ab4cebeu,
0x93ba47c980e98cdfu, 0xc66f336c36b10137u, 0xb8a8d9bbe123f017u, 0xb80b0047445d4184u,
0xe6d3102ad96cec1du, 0xa60dc059157491e5u, 0x9043ea1ac7e41392u, 0x87c89837ad68db2fu,
0xb454e4a179dd1877u, 0x29babe4598c311fbu, 0xe16a1dc9d8545e94u, 0xf4296dd6fef3d67au,
0x8ce2529e2734bb1du, 0x1899e4a65f58660cu, 0xb01ae745b101e9e4u, 0x5ec05dcff72e7f8fu,
0xdc21a1171d42645du, 0x76707543f4fa1f73u, 0x899504ae72497ebau, 0x6a06494a791c53a8u,
0xabfa45da0edbde69u, 0x0487db9d17636892u, 0xd6f8d7509292d603u, 0x45a9d2845d3c42b6u,
0x865b86925b9bc5c2u, 0x0b8a2392ba45a9b2u, 0xa7f26836f282b732u, 0x8e6cac7768d7141eu,
0xd1ef0244af2364ffu, 0x3207d795430cd926u, 0x8335616aed761f1fu, 0x7f44e6bd49e807b8u,
0xa402b9c5a8d3a6e7u, 0x5f16206c9c6209a6u, 0xcd036837130890a1u, 0x36dba887c37a8c0fu,
0x802221226be55a64u, 0xc2494954da2c9789u, 0xa02aa96b06deb0fdu, 0xf2db9baa10b7bd6cu,
0xc83553c5c8965d3du, 0x6f92829494e5acc7u, 0xfa42a8b73abbf48cu, 0xcb772339ba1f17f9u,
0x9c69a97284b578d7u, 0xff2a760414536efbu, 0xc38413cf25e2d70du, 0xfef5138519684abau,
0xf46518c2ef5b8cd1u, 0x7eb258665fc25d69u, 0x98bf2f79d5993802u, 0xef2f773ffbd97a61u,
0xbeeefb584aff8603u, 0xaafb550ffacfd8fau, 0xeeaaba2e5dbf6784u, 0x95ba2a53f983cf38u,
0x952ab45cfa97a0b2u, 0xdd945a747bf26183u, 0xba756174393d88dfu, 0x94f971119aeef9e4u,
0xe912b9d1478ceb17u, 0x7a37cd5601aab85du, 0x91abb422ccb812eeu, 0xac62e055c10ab33au,
0xb616a12b7fe617aau, 0x577b986b314d6009u, 0xe39c49765fdf9d94u, 0xed5a7e85fda0b80bu,
0x8e41ade9fbebc27du, 0x14588f13be847307u, 0xb1d219647ae6b31cu, 0x596eb2d8ae258fc8u,
0xde469fbd99a05fe3u, 0x6fca5f8ed9aef3bbu, 0x8aec23d680043beeu, 0x25de7bb9480d5854u,
0xada72ccc20054ae9u, 0xaf561aa79a10ae6au, 0xd910f7ff28069da4u, 0x1b2ba1518094da04u,
0x87aa9aff79042286u, 0x90fb44d2f05d0842u, 0xa99541bf57452b28u, 0x353a1607ac744a53u,
0xd3fa922f2d1675f2u, 0x42889b8997915ce8u, 0x847c9b5d7c2e09b7u, 0x69956135febada11u,
0xa59bc234db398c25u, 0x43fab9837e699095u, 0xcf02b2c21207ef2eu, 0x94f967e45e03f4bbu,
0x8161afb94b44f57du, 0x1d1be0eebac278f5u, 0xa1ba1ba79e1632dcu, 0x6462d92a69731732u,
0xca28a291859bbf93u, 0x7d7b8f7503cfdcfeu, 0xfcb2cb35e702af78u, 0x5cda735244c3d43eu,
0x9defbf01b061adabu, 0x3a0888136afa64a7u, 0xc56baec21c7a1916u, 0x088aaa1845b8fdd0u,
0xf6c69a72a3989f5bu, 0x8aad549e57273d45u, 0x9a3c2087a63f6399u, 0x36ac54e2f678864bu,
0xc0cb28a98fcf3c7fu, 0x84576a1bb416a7ddu, 0xf0fdf2d3f3c30b9fu, 0x656d44a2a11c51d5u,
0x969eb7c47859e743u, 0x9f644ae5a4b1b325u, 0xbc4665b596706114u, 0x873d5d9f0dde1feeu,
0xeb57ff22fc0c7959u, 0xa90cb506d155a7eau, 0x9316ff75dd87cbd8u, 0x09a7f12442d588f2u,
0xb7dcbf5354e9beceu, 0x0c11ed6d538aeb2fu, 0xe5d3ef282a242e81u, 0x8f1668c8a86da5fau,
0x8fa475791a569d10u, 0xf96e017d694487bcu, 0xb38d92d760ec4455u, 0x37c981dcc395a9acu,
0xe070f78d3927556au, 0x85bbe253f47b1417u, 0x8c469ab843b89562u, 0x93956d7478ccec8eu,
0xaf58416654a6babbu, 0x387ac8d1970027b2u, 0xdb2e51bfe9d0696au, 0x06997b05fcc0319eu,
0x88fcf317f22241e2u, 0x441fece3bdf81f03u, 0xab3c2fddeeaad25au, 0xd527e81cad7626c3u,
0xd60b3bd56a5586f1u, 0x8a71e223d8d3b074u, 0x85c7056562757456u, 0xf6872d5667844e49u,
0xa738c6bebb12d16cu, 0xb428f8ac016561dbu, 0xd106f86e69d785c7u, 0xe13336d701beba52u,
0x82a45b450226b39cu, 0xecc0024661173473u, 0xa34d721642b06084u, 0x27f002d7f95d0190u,
0xcc20ce9bd35c78a5u, 0x31ec038df7b441f4u, 0xff290242c83396ceu, 0x7e67047175a15271u,
0x9f79a169bd203e41u, 0x0f0062c6e984d386u, 0xc75809c42c684dd1u, 0x52c07b78a3e60868u,
0xf92e0c3537826145u, 0xa7709a56ccdf8a82u, 0x9bbcc7a142b17ccbu, 0x88a66076400bb691u,
0xc2abf989935ddbfeu, 0x6acff893d00ea435u, 0xf356f7ebf83552feu, 0x0583f6b8c4124d43u,
0x98165af37b2153deu, 0xc3727a337a8b704au, 0xbe1bf1b059e9a8d6u, 0x744f18c0592e4c5cu,
0xeda2ee1c7064130cu, 0x1162def06f79df73u, 0x9485d4d1c63e8be7u, 0x8addcb5645ac2ba8u,
0xb9a74a0637ce2ee1u, 0x6d953e2bd7173692u, 0xe8111c87c5c1ba99u, 0xc8fa8db6ccdd0437u,
0x910ab1d4db9914a0u, 0x1d9c9892400a22a2u, 0xb54d5e4a127f59c8u, 0x2503beb6d00cab4bu,
0xe2a0b5dc971f303au, 0x2e44ae64840fd61du, 0x8da471a9de737e24u, 0x5ceaecfed289e5d2u,
0xb10d8e1456105dadu, 0x7425a83e872c5f47u, 0xdd50f1996b947518u, 0xd12f124e28f77719u,
0x8a5296ffe33cc92fu, 0x82bd6b70d99aaa6fu, 0xace73cbfdc0bfb7bu, 0x636cc64d1001550bu,
0xd8210befd30efa5au, 0x3c47f7e05401aa4eu, 0x8714a775e3e95c78u, 0x65acfaec34810a71u,
0xa8d9d1535ce3b396u, 0x7f1839a741a14d0du, 0xd31045a8341ca07cu, 0x1ede48111209a050u,
0x83ea2b892091e44du, 0x934aed0aab460432u, 0xa4e4b66b68b65d60u, 0xf81da84d5617853fu,
0xce1de40642e3f4b9u, 0x36251260ab9d668eu, 0x80d2ae83e9ce78f3u, 0xc1d72b7c6b426019u,
0xa1075a24e4421730u, 0xb24cf65b8612f81fu, 0xc94930ae1d529cfcu, 0xdee033f26797b627u,
0xfb9b7cd9a4a7443cu, 0x169840ef017da3b1u, 0x9d412e0806e88aa5u, 0x8e1f289560ee864eu,
0xc491798a08a2ad4eu, 0xf1a6f2bab92a27e2u, 0xf5b5d7ec8acb58a2u, 0xae10af696774b1dbu,
0x9991a6f3d6bf1765u, 0xacca6da1e0a8ef29u, 0xbff610b0cc6edd3fu, 0x17fd090a58d32af3u,
0xeff394dcff8a948eu, 0xddfc4b4cef07f5b0u, 0x95f83d0a1fb69cd9u, 0x4abdaf101564f98eu,
0xbb764c4ca7a4440fu, 0x9d6d1ad41abe37f1u, 0xea53df5fd18d5513u, 0x84c86189216dc5edu,
0x92746b9be2f8552cu, 0x32fd3cf5b4e49bb4u, 0xb7118682dbb66a77u, 0x3fbc8c33221dc2a1u,
0xe4d5e82392a40515u, 0x0fabaf3feaa5334au, 0x8f05b1163ba6832du, 0x29cb4d87f2a7400eu,
0xb2c71d5bca9023f8u, 0x743e20e9ef511012u, 0xdf78e4b2bd342cf6u, 0x914da9246b255416u,
0x8bab8eefb6409c1au, 0x1ad089b6c2f7548eu, 0xae9672aba3d0c320u, 0xa184ac2473b529b1u,
0xda3c0f568cc4f3e8u, 0xc9e5d72d90a2741eu, 0x8865899617fb1871u, 0x7e2fa67c7a658892u,
0xaa7eebfb9df9de8du, 0xddbb901b98feeab7u, 0xd51ea6fa85785631u, 0x552a74227f3ea565u,
0x8533285c936b35deu, 0xd53a88958f87275fu, 0xa67ff273b8460356u, 0x8a892abaf368f137u,
0xd01fef10a657842cu, 0x2d2b7569b0432d85u, 0x8213f56a67f6b29bu, 0x9c3b29620e29fc73u,
0xa298f2c501f45f42u, 0x8349f3ba91b47b8fu, 0xcb3f2f7642717713u, 0x241c70a936219a73u,
0xfe0efb53d30dd4d7u, 0xed238cd383aa0110u, 0x9ec95d1463e8a506u, 0xf4363804324a40aau,
0xc67bb4597ce2ce48u, 0xb143c6053edcd0d5u, 0xf81aa16fdc1b81dau, 0xdd94b7868e94050au,
0x9b10a4e5e9913128u, 0xca7cf2b4191c8326u, 0xc1d4ce1f63f57d72u, 0xfd1c2f611f63a3f0u,
0xf24a01a73cf2dccfu, 0xbc633b39673c8cecu, 0x976e41088617ca01u, 0xd5be0503e085d813u,
0xbd49d14aa79dbc82u, 0x4b2d8644d8a74e18u, 0xec9c459d51852ba2u, 0xddf8e7d60ed1219eu,
0x93e1ab8252f33b45u, 0xcabb90e5c942b503u, 0xb8da1662e7b00a17u, 0x3d6a751f3b936243u,
0xe7109bfba19c0c9du, 0x0cc512670a783ad4u, 0x906a617d450187e2u, 0x27fb2b80668b24c5u,
0xb484f9dc9641e9dau, 0xb1f9f660802dedf6u, 0xe1a63853bbd26451u, 0x5e7873f8a0396973u,
0x8d07e33455637eb2u, 0xdb0b487b6423e1e8u, 0xb049dc016abc5e5fu, 0x91ce1a9a3d2cda62u,
0xdc5c5301c56b75f7u, 0x7641a140cc7810fbu, 0x89b9b3e11b6329bau, 0xa9e904c87fcb0a9du,
0xac2820d9623bf429u, 0x546345fa9fbdcd44u, 0xd732290fbacaf133u, 0xa97c177947ad4095u,
0x867f59a9d4bed6c0u, 0x49ed8eabcccc485du, 0xa81f301449ee8c70u, 0x5c68f256bfff5a74u,
0xd226fc195c6a2f8cu, 0x73832eec6fff3111u, 0x83585d8fd9c25db7u, 0xc831fd53c5ff7eabu,
0xa42e74f3d032f525u, 0xba3e7ca8b77f5e55u, 0xcd3a1230c43fb26fu, 0x28ce1bd2e55f35ebu,
0x80444b5e7aa7cf85u, 0x7980d163cf5b81b3u, 0xa0555e361951c366u, 0xd7e105bcc332621fu,
0xc86ab5c39fa63440u, 0x8dd9472bf3fefaa7u, 0xfa856334878fc150u, 0xb14f98f6f0feb951u,
0x9c935e00d4b9d8d2u, 0x6ed1bf9a569f33d3u, 0xc3b8358109e84f07u, 0x0a862f80ec4700c8u,
0xf4a642e14c6262c8u, 0xcd27bb612758c0fau, 0x98e7e9cccfbd7dbdu, 0x8038d51cb897789cu,
0xbf21e44003acdd2cu, 0xe0470a63e6bd56c3u, 0xeeea5d5004981478u, 0x1858ccfce06cac74u,
0x95527a5202df0ccbu, 0x0f37801e0c43ebc8u, 0xbaa718e68396cffdu, 0xd30560258f54e6bau,
0xe950df20247c83fdu, 0x47c6b82ef32a2069u, 0x91d28b7416cdd27eu, 0x4cdc331d57fa5441u,
0xb6472e511c81471du, 0xe0133fe4adf8e952u, 0xe3d8f9e563a198e5u, 0x58180fddd97723a6u,
0x8e679c2f5e44ff8fu, 0x570f09eaa7ea7648u,
}
};
return table;
}
} // namespace detail
NLOHMANN_JSON_NAMESPACE_END
+70 -29
View File
@@ -8,10 +8,12 @@
#pragma once
#include <array> // array
#include <cstddef> // size_t
#include <cstdint> // uint64_t
#include <cstdint> // uint64_t, uint8_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
@@ -69,18 +71,12 @@ 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)
{
std::uint64_t word = 0;
std::memcpy(&word, data + i, sizeof(word));
if (swar_string_special(word) != 0)
const std::uint64_t special = swar_string_special(read_eight_bytes(data + i));
if (special != 0)
{
// 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;
}
}
// 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);
}
}
for (; i < n; ++i)
@@ -114,8 +110,7 @@ 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)
{
std::uint64_t v = 0;
std::memcpy(&v, data + i, sizeof(v));
const std::uint64_t v = read_eight_bytes(data + i);
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)
@@ -126,7 +121,9 @@ inline std::size_t find_ascii_copyable_run(const unsigned char* data, std::size_
| (v & high); // >= 0x80
if (stop != 0)
{
break;
// 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);
}
}
for (; i < n; ++i)
@@ -253,12 +250,18 @@ 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
}
const std::size_t seq = validate_one_utf8(data + pos, n - pos);
if (seq == 0)
// 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
{
break; // ill-formed or truncated: let the byte path diagnose it
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;
}
pos += seq;
while (pos < n && data[pos] >= 0x80u);
}
return pos;
}
@@ -273,8 +276,7 @@ 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)
{
std::uint64_t v = 0;
std::memcpy(&v, data + i, sizeof(v));
const std::uint64_t v = read_eight_bytes(data + i);
const std::uint64_t q = v ^ 0x2222222222222222ull;
const std::uint64_t b = v ^ 0x5C5C5C5C5C5C5C5Cull;
const std::uint64_t hit = ((q - ones) & ~q & high)
@@ -282,14 +284,8 @@ inline std::size_t find_string_delimiter(const unsigned char* data, std::size_t
| ((v - 0x2020202020202020ull) & ~v & high);
if (hit != 0)
{
for (std::size_t j = 0; j < 8; ++j)
{
const unsigned char c = data[i + j];
if (c == '\"' || c == '\\' || c < 0x20u)
{
return i + j;
}
}
// 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 (; i < n; ++i)
@@ -320,5 +316,50 @@ 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
File diff suppressed because it is too large Load Diff
@@ -0,0 +1,130 @@
// __ _____ _____ _____
// __| | __| | | | JSON for Modern C++
// | | |__ | | | | | | 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 <cstddef> // size_t
#include <cstring> // memcpy
#include <new> // operator new, placement new
#include <string> // string
#include <nlohmann/json.hpp>
#include <nlohmann/detail/view/macro_scope.hpp>
#include <nlohmann/detail/view/node.hpp>
NLOHMANN_JSON_NAMESPACE_BEGIN
namespace detail
{
namespace view
{
/// storage of a parsed document; heap-allocated (header and an initial node
/// array in one block) so that views survive moves of the owning document
struct document_data
{
const char* src = nullptr;
std::size_t size = 0;
node* tape = nullptr;
std::size_t tape_size = 0;
std::size_t tape_cap = 0;
node* inline_tape = nullptr; ///< node array allocated together with this header
std::size_t inline_cap = 0;
std::string arena{}; ///< decoded strings that contained escapes // NOLINT(readability-redundant-member-init)
std::string owned{}; ///< owned copy of the input, if any // NOLINT(readability-redundant-member-init)
std::array<const char*, 4> base = {{nullptr, nullptr, nullptr, nullptr}}; ///< string bases: source, arena (indexed by flags & node_flags::storage)
bool discarded = true;
/// one allocation for the header and room for `nodes` nodes; large
/// documents get a separate node array instead (so it can be trimmed)
static document_data* create(std::size_t nodes)
{
nodes = nodes <= 256 ? nodes : 0;
void* mem = ::operator new (sizeof(document_data) + (nodes * sizeof(node)));
auto* d = new (mem) document_data(); // NOLINT(cppcoreguidelines-owning-memory): owned by the returned pointer, freed by deleter
// (aligned: sizeof is a multiple of the alignment; through void*, as GCC's -Wcast-align wants)
d->inline_tape = static_cast<node*>(static_cast<void*>(static_cast<char*>(mem) + sizeof(document_data))); // NOLINT(bugprone-casting-through-void)
d->inline_cap = nodes;
d->tape = d->inline_tape;
d->tape_cap = nodes;
return d;
}
struct deleter
{
void operator()(document_data* d) const noexcept
{
d->~document_data();
::operator delete (d);
}
};
document_data() noexcept = default;
document_data(const document_data&) = delete;
document_data(document_data&&) = delete;
document_data& operator=(const document_data&) = delete;
document_data& operator=(document_data&&) = delete;
~document_data()
{
release();
}
void release() noexcept
{
if (tape != inline_tape)
{
::operator delete (tape);
}
tape = inline_tape;
tape_cap = inline_cap;
}
/// make room for n nodes; keeps the first tape_size nodes
void reserve(std::size_t n)
{
if (n <= tape_cap)
{
return;
}
node* fresh = static_cast<node*>(::operator new (n * sizeof(node)));
if (tape_size != 0)
{
std::memcpy(fresh, tape, tape_size * sizeof(node));
}
release();
tape = fresh;
tape_cap = n;
}
const char* str(const node& n) const noexcept
{
return base[n.flags & node_flags::storage] + n.off;
}
/// the node after n's subtree (containers span `next` nodes, scalars one)
static NLOHMANN_VIEW_ALWAYS_INLINE const node* after(const node* n) noexcept
{
return n + (is_container(*n) ? n->next : 1u);
}
/// first element (array) or first key (object) of a container
static NLOHMANN_VIEW_ALWAYS_INLINE const node* first_child(const node* n) noexcept
{
return n + 1;
}
/// end of the elements of a container
static NLOHMANN_VIEW_ALWAYS_INLINE const node* child_end(const node* n) noexcept
{
return n + n->next;
}
};
} // namespace view
} // namespace detail
NLOHMANN_JSON_NAMESPACE_END
@@ -0,0 +1,63 @@
// __ _____ _____ _____
// __| | __| | | | JSON for Modern C++
// | | |__ | | | | | | version 3.12.0
// |_____|_____|_____|_|___| https://github.com/nlohmann/json
//
// SPDX-FileCopyrightText: 2013-2026 Niels Lohmann <https://nlohmann.me>
// SPDX-License-Identifier: MIT
#pragma once
// Macros of json_view.hpp and its detail headers. json.hpp undefines its own
// macros at its end (macro_unscope.hpp), so the view defines the few it needs
// under its own prefix; json_view.hpp undefines them all at its end
// (detail/view/macro_unscope.hpp). Configuration that json.hpp undefines is
// read from detail::abi_config instead.
#if (defined(__cplusplus) && __cplusplus >= 201703L) || (defined(_MSVC_LANG) && _MSVC_LANG >= 201703L)
#define NLOHMANN_VIEW_HAS_CPP_17 1
#else
#define NLOHMANN_VIEW_HAS_CPP_17 0
#endif
#if defined(__GNUC__) || defined(__clang__)
#define NLOHMANN_VIEW_LIKELY(x) __builtin_expect(!!(x), 1)
#define NLOHMANN_VIEW_UNLIKELY(x) __builtin_expect(!!(x), 0)
#define NLOHMANN_VIEW_ALWAYS_INLINE inline __attribute__((always_inline))
#define NLOHMANN_VIEW_NOINLINE __attribute__((noinline))
#elif defined(_MSC_VER)
#define NLOHMANN_VIEW_LIKELY(x) (x)
#define NLOHMANN_VIEW_UNLIKELY(x) (x)
#define NLOHMANN_VIEW_ALWAYS_INLINE __forceinline
#define NLOHMANN_VIEW_NOINLINE __declspec(noinline)
#else
#define NLOHMANN_VIEW_LIKELY(x) (x)
#define NLOHMANN_VIEW_UNLIKELY(x) (x)
#define NLOHMANN_VIEW_ALWAYS_INLINE inline
#define NLOHMANN_VIEW_NOINLINE
#endif
// exceptions as in json.hpp (JSON_NOEXCEPTION, JSON_THROW_USER)
#if (defined(__cpp_exceptions) || defined(__EXCEPTIONS) || defined(_CPPUNWIND)) && !defined(JSON_NOEXCEPTION)
#define NLOHMANN_VIEW_THROW(exception) throw exception
#else
#include <cstdlib>
// (the exception is built first, so that the arguments of the throwing
// helpers count as used; the program ends anyway)
#define NLOHMANN_VIEW_THROW(exception) (static_cast<void>(exception), std::abort())
#endif
#if defined(JSON_THROW_USER)
#undef NLOHMANN_VIEW_THROW
#define NLOHMANN_VIEW_THROW JSON_THROW_USER
#endif
// the parser stores a node's first word at once where the layout of `node` is
// known to be little-endian (MSVC targets are); elsewhere field by field
#if (defined(__BYTE_ORDER__) && defined(__ORDER_LITTLE_ENDIAN__) && __BYTE_ORDER__ == __ORDER_LITTLE_ENDIAN__) || defined(_MSC_VER)
#define NLOHMANN_VIEW_LITTLE_ENDIAN 1
#else
#define NLOHMANN_VIEW_LITTLE_ENDIAN 0
#endif
/// sixteen checks at fixed offsets 0..15
#define NLOHMANN_VIEW_REPEAT16(X) X(0) X(1) X(2) X(3) X(4) X(5) X(6) X(7) X(8) X(9) X(10) X(11) X(12) X(13) X(14) X(15)
@@ -0,0 +1,20 @@
// __ _____ _____ _____
// __| | __| | | | JSON for Modern C++
// | | |__ | | | | | | version 3.12.0
// |_____|_____|_____|_|___| https://github.com/nlohmann/json
//
// SPDX-FileCopyrightText: 2013-2026 Niels Lohmann <https://nlohmann.me>
// SPDX-License-Identifier: MIT
#pragma once
// undefine the macros of detail/view/macro_scope.hpp (at the end of json_view.hpp)
#undef NLOHMANN_VIEW_HAS_CPP_17
#undef NLOHMANN_VIEW_LIKELY
#undef NLOHMANN_VIEW_UNLIKELY
#undef NLOHMANN_VIEW_ALWAYS_INLINE
#undef NLOHMANN_VIEW_NOINLINE
#undef NLOHMANN_VIEW_THROW
#undef NLOHMANN_VIEW_LITTLE_ENDIAN
#undef NLOHMANN_VIEW_REPEAT16
+97
View File
@@ -0,0 +1,97 @@
// __ _____ _____ _____
// __| | __| | | | JSON for Modern C++
// | | |__ | | | | | | 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 <cstddef> // size_t
#include <cstdint> // uint8_t, uint16_t, uint32_t, uint64_t
#include <cstring> // memcpy
#include <nlohmann/json.hpp>
#include <nlohmann/detail/view/macro_scope.hpp>
NLOHMANN_JSON_NAMESPACE_BEGIN
namespace detail
{
namespace view
{
// the node kinds are value_t values; the tests of is_container() and of the
// number kinds depend on this numbering
static_assert(static_cast<std::uint8_t>(value_t::null) == 0 && static_cast<std::uint8_t>(value_t::object) == 1
&& static_cast<std::uint8_t>(value_t::array) == 2 && static_cast<std::uint8_t>(value_t::string) == 3
&& static_cast<std::uint8_t>(value_t::boolean) == 4 && static_cast<std::uint8_t>(value_t::number_integer) == 5
&& static_cast<std::uint8_t>(value_t::number_unsigned) == 6 && static_cast<std::uint8_t>(value_t::number_float) == 7,
"the node format depends on the numbering of value_t");
/// node flags
struct node_flags
{
static constexpr std::uint8_t escaped = 1; ///< string payload lives in the decode arena, not the source
static constexpr std::uint8_t storage = 3; ///< mask: where a string or number token lives (index into document_data::base)
static constexpr std::uint8_t is_true = 4; ///< boolean value
};
/// One entry of the flat index, in document order. An object's members are
/// stored as key node followed by the value's subtree. Integers keep their
/// converted 64-bit value in the len/next bytes (the node after a scalar is
/// always the next one, and the token length follows from `extra`).
struct node
{
std::uint8_t kind; ///< value_t
std::uint8_t flags; ///< node_flags
std::uint16_t extra; ///< numbers: integer digits (low byte) and fraction digits (high byte), 255 = "many"; otherwise 0
std::uint32_t off; ///< source offset (string content, number token, literal, bracket); arena offset if node_flags::escaped
std::uint32_t len; ///< string: decoded bytes; float: token bytes; array/object: element count
std::uint32_t next; ///< array/object: number of nodes of the subtree (its extent in the enclosing sequence)
};
static_assert(sizeof(node) == 16, "node must stay 16 bytes");
NLOHMANN_VIEW_ALWAYS_INLINE bool is_container(const node& n) noexcept
{
return static_cast<unsigned>(n.kind) - 1u <= 1u;
}
/// the converted value of an integer node (stored in len/next)
NLOHMANN_VIEW_ALWAYS_INLINE std::uint64_t integer_bits(const node& n) noexcept
{
std::uint64_t v = 0;
std::memcpy(&v, reinterpret_cast<const unsigned char*>(&n) + 8, 8); // NOLINT(cppcoreguidelines-pro-type-reinterpret-cast)
return v;
}
NLOHMANN_VIEW_ALWAYS_INLINE void set_integer_bits(node& n, std::uint64_t v) noexcept
{
std::memcpy(reinterpret_cast<unsigned char*>(&n) + 8, &v, 8); // NOLINT(cppcoreguidelines-pro-type-reinterpret-cast)
}
/// token length of a number node
NLOHMANN_VIEW_ALWAYS_INLINE std::uint32_t number_length(const node& n) noexcept
{
return n.kind == static_cast<std::uint8_t>(value_t::number_float) ? n.len
: (n.extra & 0xFFu) + (n.kind == static_cast<std::uint8_t>(value_t::number_integer) ? 1u : 0u);
}
/// estimated number of nodes for an input of `size` bytes (one node per ~12
/// bytes covers typical documents without regrowth)
inline std::size_t estimate_nodes(std::size_t size) noexcept
{
return (size / 12) + 16;
}
/// estimated number of nodes for the input [src, src + size): pretty-printed
/// input (whitespace after the first byte) needs about a node per 12 bytes,
/// minified input up to one per 4 (yyjson tells the two apart the same way)
inline std::size_t estimate_nodes(const char* src, std::size_t size) noexcept
{
return size >= 2 && (src[1] == ' ' || src[1] == '\n' || src[1] == '\r' || src[1] == '\t') ? estimate_nodes(size) : (size / 4) + 16;
}
} // namespace view
} // namespace detail
NLOHMANN_JSON_NAMESPACE_END
+189
View File
@@ -0,0 +1,189 @@
// __ _____ _____ _____
// __| | __| | | | JSON for Modern C++
// | | |__ | | | | | | version 3.12.0
// |_____|_____|_____|_|___| https://github.com/nlohmann/json
//
// SPDX-FileCopyrightText: 2013-2026 Niels Lohmann <https://nlohmann.me>
// SPDX-FileCopyrightText: 2020 YaoYuan <https://github.com/ibireme/yyjson>
// SPDX-License-Identifier: MIT
#pragma once
#include <array> // array
#include <cstddef> // size_t
#include <cstdint> // uint8_t, uint16_t, uint64_t
#include <cstring> // memcpy
#include <nlohmann/json.hpp>
#include <nlohmann/detail/view/macro_scope.hpp>
// Scanning primitives of the view's parser. The unrolled checks at fixed
// offsets follow yyjson (https://github.com/ibireme/yyjson, MIT license): the
// loads do not depend on each other, so the CPU can run ahead. Words are read
// with read_eight_bytes(), so nothing here depends on the byte order.
NLOHMANN_JSON_NAMESPACE_BEGIN
namespace detail
{
namespace view
{
/// 1 for bytes that may appear verbatim in a string: 0x20..0x7F except '"' and '\\'
inline const std::uint8_t* string_plain() noexcept
{
static const std::array<std::uint8_t, 256> table =
{
{
0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, // 0x00..0x1F
1, 1, 0, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, // 0x20..0x3F ('"')
1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 0, 1, 1, 1, // 0x40..0x5F ('\\')
1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, // 0x60..0x7F
0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, // 0x80..0x9F
0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, // 0xA0..0xBF
0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, // 0xC0..0xDF
0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, // 0xE0..0xFF
}
};
return table.data();
}
NLOHMANN_VIEW_ALWAYS_INLINE bool is_digit(unsigned char c) noexcept
{
return static_cast<unsigned char>(c - '0') <= 9;
}
/// two bytes as they are in memory (only compared with byte-symmetric patterns)
NLOHMANN_VIEW_ALWAYS_INLINE std::uint16_t load16(const unsigned char* p) noexcept
{
std::uint16_t w = 0;
std::memcpy(&w, p, 2);
return w;
}
/// Advance over plain string bytes and well-formed UTF-8. Stops at a quote,
/// a backslash, a control character, ill-formed UTF-8, or the end. The first
/// 16 bytes are checked one by one, so that the position advances by
/// constants in predicted branches (most strings are short); longer runs
/// continue eight bytes at a time.
NLOHMANN_VIEW_ALWAYS_INLINE const unsigned char* scan_string_run(const unsigned char* p, const unsigned char* e) noexcept
{
const std::uint8_t* plain = string_plain();
for (;;)
{
if (e - p >= 16)
{
#define NLOHMANN_VIEW_STEP(i) if (NLOHMANN_VIEW_LIKELY(plain[p[i]] != 0)) {} else { p += (i); goto stop; }
NLOHMANN_VIEW_REPEAT16(NLOHMANN_VIEW_STEP)
#undef NLOHMANN_VIEW_STEP
p += 16;
while (e - p >= 8)
{
const std::uint64_t special = swar_string_special(read_eight_bytes(p));
if (special != 0)
{
p += count_trailing_zeros(special) / 8;
goto stop;
}
p += 8;
}
continue;
}
while (p != e && plain[*p] != 0)
{
++p;
}
if (p == e)
{
return p;
}
stop:
if (*p < 0x80)
{
return p; // quote, backslash, or control character
}
// non-ASCII: a run of well-formed sequences (the library's check, so
// that exactly what json::parse accepts is accepted)
do
{
const std::size_t n = validate_one_utf8(p, static_cast<std::size_t>(e - p));
if (n == 0)
{
return p;
}
p += n;
}
while (p != e && *p >= 0x80);
}
}
/// advance over ASCII digits
NLOHMANN_VIEW_ALWAYS_INLINE const unsigned char* skip_digits(const unsigned char* p, const unsigned char* e) noexcept
{
while (e - p >= 16)
{
#define NLOHMANN_VIEW_STEP(i) if (NLOHMANN_VIEW_LIKELY(is_digit(p[i]))) {} else { return p + (i); }
NLOHMANN_VIEW_REPEAT16(NLOHMANN_VIEW_STEP)
#undef NLOHMANN_VIEW_STEP
p += 16;
}
while (p != e && is_digit(*p))
{
++p;
}
return p;
}
/// powers of ten up to 10^19 as integers
inline std::uint64_t int_pow10(unsigned k) noexcept
{
static const std::array<std::uint64_t, 20> table =
{
{
1u, 10u, 100u, 1000u, 10000u, 100000u, 1000000u, 10000000u, 100000000u, 1000000000u,
10000000000u, 100000000000u, 1000000000000u, 10000000000000u, 100000000000000u, 1000000000000000u,
10000000000000000u, 100000000000000000u, 1000000000000000000u, 10000000000000000000u
}
};
return table[k];
}
/// value of 0 < k < 8 digits at p in one step if [p, p + 8) lies below
/// limit, else one digit at a time (whole blocks of eight digits are read by
/// parse_upto19() directly)
NLOHMANN_VIEW_ALWAYS_INLINE std::uint64_t parse_upto8(const unsigned char* p, unsigned k, const unsigned char* limit) noexcept
{
if (NLOHMANN_VIEW_LIKELY(limit - p >= 8))
{
// move the k digits to the top and pad the vacated low bytes with '0'
const unsigned shift = 8 * (8 - k);
return parse_eight_digits((read_eight_bytes(p) << shift) | (0x3030303030303030u >> (8 * k)));
}
std::uint64_t v = 0;
for (unsigned i = 0; i < k; ++i)
{
v = (v * 10) + static_cast<std::uint64_t>(p[i] - '0');
}
return v;
}
/// value of k <= 19 digits at p
NLOHMANN_VIEW_ALWAYS_INLINE std::uint64_t parse_upto19(const unsigned char* p, unsigned k, const unsigned char* limit) noexcept
{
std::uint64_t w = 0;
while (k >= 8)
{
// (eight digits of the token: they lie below limit)
w = (w * 100000000u) + parse_eight_digits(read_eight_bytes(p));
p += 8;
k -= 8;
}
if (k != 0)
{
w = (w * int_pow10(k)) + parse_upto8(p, k, limit);
}
return w;
}
} // namespace view
} // namespace detail
NLOHMANN_JSON_NAMESPACE_END
+111
View File
@@ -0,0 +1,111 @@
// __ _____ _____ _____
// __| | __| | | | JSON for Modern C++
// | | |__ | | | | | | 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 <algorithm> // min
#include <cstddef> // size_t
#include <cstring> // memcmp, strlen
#include <string> // basic_string
#include <nlohmann/json.hpp>
#include <nlohmann/detail/view/macro_scope.hpp>
#if NLOHMANN_VIEW_HAS_CPP_17
#include <string_view> // string_view
#endif
#ifndef JSON_NO_IO
#include <ostream> // ostream
#endif
NLOHMANN_JSON_NAMESPACE_BEGIN
namespace detail
{
namespace view
{
#if NLOHMANN_VIEW_HAS_CPP_17
using string_ref = std::string_view;
#else
/// minimal C++11 stand-in for std::string_view
class string_ref
{
public:
using size_type = std::size_t;
using const_iterator = const char*;
string_ref() noexcept = default;
string_ref(const char* s) : m_data(s), m_size(std::strlen(s)) {} // NOLINT(google-explicit-constructor,hicpp-explicit-conversions)
string_ref(const char* s, std::size_t n) noexcept : m_data(s), m_size(n) {}
template<typename Traits, typename Alloc>
string_ref(const std::basic_string<char, Traits, Alloc>& s) noexcept : m_data(s.data()), m_size(s.size()) {} // NOLINT(google-explicit-constructor,hicpp-explicit-conversions)
const char* data() const noexcept
{
return m_data;
}
std::size_t size() const noexcept
{
return m_size;
}
std::size_t length() const noexcept
{
return m_size;
}
bool empty() const noexcept
{
return m_size == 0;
}
const char* begin() const noexcept
{
return m_data;
}
const char* end() const noexcept
{
return m_data + m_size;
}
char operator[](std::size_t i) const noexcept
{
return m_data[i];
}
template<typename Traits, typename Alloc>
explicit operator std::basic_string<char, Traits, Alloc>() const
{
return std::basic_string<char, Traits, Alloc>(m_data, m_size);
}
friend bool operator==(string_ref a, string_ref b) noexcept
{
return a.m_size == b.m_size && (a.m_size == 0 || std::memcmp(a.m_data, b.m_data, a.m_size) == 0);
}
friend bool operator!=(string_ref a, string_ref b) noexcept
{
return !(a == b);
}
friend bool operator<(string_ref a, string_ref b) noexcept
{
const int c = std::memcmp(a.m_data, b.m_data, (std::min)(a.m_size, b.m_size));
return c != 0 ? c < 0 : a.m_size < b.m_size;
}
#ifndef JSON_NO_IO
friend std::ostream& operator<<(std::ostream& o, string_ref s)
{
return o.write(s.m_data, static_cast<std::streamsize>(s.m_size));
}
#endif
private:
const char* m_data = "";
std::size_t m_size = 0;
};
#endif
} // namespace view
} // namespace detail
NLOHMANN_JSON_NAMESPACE_END
+1
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@@ -43,6 +43,7 @@
#include <nlohmann/adl_serializer.hpp>
#include <nlohmann/byte_container_with_subtype.hpp>
#include <nlohmann/detail/abi_config.hpp>
#include <nlohmann/detail/conversions/from_json.hpp>
#include <nlohmann/detail/conversions/to_json.hpp>
#include <nlohmann/detail/exceptions.hpp>
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+43 -2
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@@ -1830,10 +1830,51 @@ TEST_CASE("CBOR")
SECTION("invalid string in map")
{
json _;
CHECK_THROWS_WITH_AS(_ = json::from_cbor(std::vector<uint8_t>({0xa1, 0xff, 0x01})), "[json.exception.parse_error.113] parse error at byte 2: syntax error while parsing CBOR string: expected length specification (0x60-0x7B) or indefinite string type (0x7F); last byte: 0xFF", json::parse_error&);
CHECK_THROWS_WITH_AS(_ = json::from_cbor(std::vector<uint8_t>({0xa1, 0xff, 0x01})), "[json.exception.parse_error.113] parse error at byte 2: syntax error while parsing CBOR object key: only string keys are supported, but found a break stop code; last byte: 0xFF", json::parse_error&);
CHECK(json::from_cbor(std::vector<uint8_t>({0xa1, 0xff, 0x01}), true, false).is_discarded());
}
SECTION("non-string key (see #2766 and #3381)")
{
// only text strings map to JSON object keys; any other key is
// rejected with a message naming its type
const std::vector<std::pair<std::vector<std::uint8_t>, std::string>> cases =
{
{{0xA1, 0x01, 0x01}, "an unsigned integer; last byte: 0x01"},
{{0xA1, 0x20, 0x01}, "a negative integer; last byte: 0x20"},
{{0xA1, 0x41, 0x61, 0x01}, "a byte string; last byte: 0x41"},
{{0xA1, 0x80, 0x01}, "an array; last byte: 0x80"},
{{0xA1, 0xA0, 0x01}, "a map; last byte: 0xA0"},
{{0xA1, 0xC0, 0x61, 0x61, 0x01}, "a tag; last byte: 0xC0"},
{{0xA1, 0xF4, 0x01}, "a boolean; last byte: 0xF4"},
{{0xA1, 0xF5, 0x01}, "a boolean; last byte: 0xF5"},
{{0xA1, 0xF6, 0x01}, "null; last byte: 0xF6"},
{{0xA1, 0xF7, 0x01}, "undefined; last byte: 0xF7"},
{{0xA1, 0xF9, 0x3C, 0x00, 0x01}, "a floating-point number; last byte: 0xF9"},
{{0xA1, 0xFA, 0x3F, 0x80, 0x00, 0x00, 0x01}, "a floating-point number; last byte: 0xFA"},
{{0xA1, 0xFB, 0x3F, 0xF0, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x01}, "a floating-point number; last byte: 0xFB"},
{{0xA1, 0xE0, 0x01}, "a simple value; last byte: 0xE0"},
{{0xA1, 0xF8, 0x20, 0x01}, "a simple value; last byte: 0xF8"},
// indefinite-length map
{{0xBF, 0x01, 0x01, 0xFF}, "an unsigned integer; last byte: 0x01"},
};
for (const auto& c : cases)
{
CAPTURE(c.first)
const std::string expected = "[json.exception.parse_error.113] parse error at byte 2: syntax error while parsing CBOR object key: only string keys are supported, but found " + c.second;
json _;
CHECK_THROWS_WITH_AS(_ = json::from_cbor(c.first), expected.c_str(), json::parse_error&);
CHECK(json::from_cbor(c.first, true, false).is_discarded());
}
// a key of major type 3 with a reserved length is still reported as
// a malformed string, and a missing key as the end of input
json _;
CHECK_THROWS_WITH_AS(_ = json::from_cbor(std::vector<uint8_t>({0xA1})), "[json.exception.parse_error.110] parse error at byte 2: syntax error while parsing CBOR string: unexpected end of input", json::parse_error&);
CHECK_THROWS_WITH_AS(_ = json::from_cbor(std::vector<uint8_t>({0xA1, 0x7C, 0x01})), "[json.exception.parse_error.113] parse error at byte 2: syntax error while parsing CBOR string: expected length specification (0x60-0x7B) or indefinite string type (0x7F); last byte: 0x7C", json::parse_error&);
}
SECTION("invalid UTF-8 in string (see #5529)")
{
// a two-character text string (major type 3) whose bytes are not
@@ -2284,7 +2325,7 @@ TEST_CASE("CBOR indefinite-length strings do not recurse per chunk")
SECTION("a break marker outside an indefinite-length string is not a string")
{
// 0xFF only closes a string that was opened; on its own it is not one
CHECK_THROWS_WITH_AS(_ = json::from_cbor(std::vector<uint8_t>({0xA1, 0xFF, 0x01})), "[json.exception.parse_error.113] parse error at byte 2: syntax error while parsing CBOR string: expected length specification (0x60-0x7B) or indefinite string type (0x7F); last byte: 0xFF", json::parse_error&);
CHECK_THROWS_WITH_AS(_ = json::from_cbor(std::vector<uint8_t>({0xA1, 0xFF, 0x01})), "[json.exception.parse_error.113] parse error at byte 2: syntax error while parsing CBOR object key: only string keys are supported, but found a break stop code; last byte: 0xFF", json::parse_error&);
}
}
+887 -1
View File
@@ -12,10 +12,15 @@
#include <nlohmann/json.hpp>
using nlohmann::json;
#include <array> // array
#include <cfloat> // FLT_EVAL_METHOD
#include <cstdint> // uint32_t, uint64_t
#include <cstdlib> // strtod
#include <cstring> // memcpy
#include <random> // mt19937
#include <sstream> // stringstream
#include <string> // string
#include <utility> // pair
#include <vector> // vector
namespace
@@ -659,6 +664,184 @@ TEST_CASE("lexer string fast path")
}
}
TEST_CASE("lexer escape fast path")
{
// 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")
{
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()};
}
};
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());
}
#endif
}
TEST_CASE("parse_float_fast declines what it cannot convert exactly")
{
// The lexer only hands well-formed numbers to parse_float_fast, so the
@@ -666,7 +849,7 @@ TEST_CASE("parse_float_fast declines what it cannot convert exactly")
// always safe: the caller then falls back to a slower, exact conversion.
const auto fast = [](const std::string & s, double & out)
{
return nlohmann::detail::parse_float_fast(s.data(), s.data() + s.size(), '.', out);
return nlohmann::detail::parse_float_fast(s.data(), s.data() + s.size(), out);
};
double out = 0;
@@ -700,3 +883,706 @@ TEST_CASE("parse_float_fast declines what it cannot convert exactly")
CHECK_FALSE(fast("1e23", out));
CHECK_FALSE(fast("1e-23", out));
}
namespace
{
// arbitrary-precision unsigned integers, just enough to recompute the table of
// powers of five (little-endian 32-bit limbs)
using big_uint = std::vector<std::uint32_t>;
void big_trim(big_uint& a)
{
while (!a.empty() && a.back() == 0)
{
a.pop_back();
}
}
big_uint big_from(std::uint64_t high, std::uint64_t low)
{
big_uint a = {static_cast<std::uint32_t>(low), static_cast<std::uint32_t>(low >> 32u),
static_cast<std::uint32_t>(high), static_cast<std::uint32_t>(high >> 32u)
};
big_trim(a);
return a;
}
big_uint big_mul(const big_uint& a, const big_uint& b)
{
big_uint r(a.size() + b.size(), 0);
for (std::size_t i = 0; i < a.size(); ++i)
{
std::uint64_t carry = 0;
for (std::size_t j = 0; j < b.size(); ++j)
{
const std::uint64_t t = (static_cast<std::uint64_t>(a[i]) * b[j]) + r[i + j] + carry;
r[i + j] = static_cast<std::uint32_t>(t);
carry = t >> 32u;
}
r[i + b.size()] = static_cast<std::uint32_t>(carry);
}
big_trim(r);
return r;
}
big_uint big_shl(const big_uint& a, std::size_t s)
{
big_uint r(s / 32, 0);
std::uint32_t carry = 0;
for (const std::uint32_t x : a)
{
const std::uint64_t t = static_cast<std::uint64_t>(x) << (s % 32);
r.push_back(static_cast<std::uint32_t>(t) | carry);
carry = static_cast<std::uint32_t>(t >> 32u);
}
r.push_back(carry);
big_trim(r);
return r;
}
// a + 1 (add) or a - 1 (!add, a > 0)
big_uint big_step(big_uint a, bool add)
{
for (auto& x : a)
{
const std::uint32_t old = x;
x = add ? x + 1 : x - 1;
if ((add && x > old) || (!add && x < old))
{
break;
}
}
if (add && (a.empty() || a.back() == 0))
{
a.push_back(1);
}
big_trim(a);
return a;
}
bool big_less_equal(const big_uint& a, const big_uint& b)
{
if (a.size() != b.size())
{
return a.size() < b.size();
}
for (std::size_t i = a.size(); i-- > 0;)
{
if (a[i] != b[i])
{
return a[i] < b[i];
}
}
return true;
}
std::size_t big_bit_length(const big_uint& a)
{
std::size_t n = a.size() * 32;
for (std::uint32_t top = a.back(); (top & 0x80000000u) == 0; top <<= 1u)
{
--n;
}
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")
{
SECTION("the table of powers of five")
{
// Recompute every entry the way fast_float's table_generation.py
// defines it, using only multiplications and comparisons: for q >= 0
// the most significant 128 bits of 5^q; for q < 0 floor(2^b / 5^-q) + 1
// for b = z + 127 (q >= -27), or that value for b = 2z + 128 cut to
// its most significant 128 bits (q < -27), where z is the bit length
// of 5^-q.
const auto& table = nlohmann::detail::pow5_128();
big_uint power5 = {1};
for (std::int64_t q = 0; q <= nlohmann::detail::pow5_128_largest_power; ++q)
{
const auto index = static_cast<std::size_t>(2 * (q - nlohmann::detail::pow5_128_smallest_power));
const big_uint entry = big_from(table[index], table[index + 1]);
const std::size_t bits = big_bit_length(power5);
if (bits <= 128)
{
CHECK(entry == big_shl(power5, 128 - bits));
}
else
{
// floor(5^q / 2^(bits - 128))
CHECK(big_less_equal(big_shl(entry, bits - 128), power5));
CHECK_FALSE(big_less_equal(big_shl(big_step(entry, true), bits - 128), power5));
}
power5 = big_mul(power5, {5});
}
power5 = {5};
for (std::int64_t q = -1; q >= nlohmann::detail::pow5_128_smallest_power; --q)
{
const auto index = static_cast<std::size_t>(2 * (q - nlohmann::detail::pow5_128_smallest_power));
const big_uint entry = big_from(table[index], table[index + 1]);
CHECK(big_bit_length(entry) == 128);
const std::size_t z = big_bit_length(power5);
const big_uint two_b = big_shl({1}, q >= -27 ? z + 127 : (2 * z) + 128);
// c = floor(2^b / p) + 1, stored as floor(c / 2^s):
// (entry * 2^s - 1) * p <= 2^b < ((entry + 1) * 2^s - 1) * p
const std::size_t s = q >= -27 ? 0 : z + 1;
CHECK(big_less_equal(big_mul(big_step(big_shl(entry, s), false), power5), two_b));
CHECK_FALSE(big_less_equal(big_mul(big_step(big_shl(big_step(entry, true), s), false), power5), two_b));
power5 = big_mul(power5, {5});
}
}
SECTION("128-bit products and leading zeros")
{
// whichever implementation the compiler gets (with or without a
// 128-bit integer type or a builtin)
std::uint64_t state = 42;
for (int i = 0; i < 10000; ++i)
{
state ^= state << 13u;
state ^= state >> 7u;
state ^= state << 17u;
const std::uint64_t a = state;
const std::uint64_t b = (state * 0x9E3779B97F4A7C15u) >> (i % 64);
const auto product = nlohmann::detail::full_multiplication(a, b);
CHECK(big_from(product.high, product.low) == big_mul(big_from(0, a), big_from(0, b)));
const int k = i % 64;
const std::uint64_t x = (std::uint64_t{1} << k) | (a & ((std::uint64_t{1} << k) - 1));
CHECK(nlohmann::detail::count_leading_zeros(x) == 63 - k);
}
}
SECTION("known values")
{
// Generated with Python, whose float() is correctly rounded:
// cases = [<hard cases>, 2**53 + 2k + 1, 2**54 + 4k + 2, and exact midpoints
// between neighbouring doubles, also 1e-60 above and below them]
// print('{"%s", 0x%016xu},' % (s, struct.unpack('<Q', struct.pack('<d', float(s)))[0]))
const std::vector<std::pair<std::string, std::uint64_t>> known =
{
{"0", 0x0000000000000000u},
{"-0", 0x8000000000000000u},
{"0.0", 0x0000000000000000u},
{"-0.0", 0x8000000000000000u},
{"0e5", 0x0000000000000000u},
{"0.000e-9", 0x0000000000000000u},
{"1", 0x3ff0000000000000u},
{"-1", 0xbff0000000000000u},
{"0.1", 0x3fb999999999999au},
{"0.3", 0x3fd3333333333333u},
{"1.5", 0x3ff8000000000000u},
{"-2.5e-3", 0xbf647ae147ae147bu},
{"1e23", 0x44b52d02c7e14af6u},
{"1e22", 0x4480f0cf064dd592u},
{"8.98846567431158e307", 0x7fe0000000000000u},
{"2.2250738585072011e-308", 0x000fffffffffffffu},
{"2.2250738585072012e-308", 0x0010000000000000u},
{"2.2250738585072014e-308", 0x0010000000000000u},
{"4.9406564584124654e-324", 0x0000000000000001u},
{"2.4703282292062327e-324", 0x0000000000000000u},
{"2.4703282292062328e-324", 0x0000000000000001u},
{"1e-324", 0x0000000000000000u},
{"3e-324", 0x0000000000000001u},
{"1.7976931348623157e308", 0x7fefffffffffffffu},
{"1.7976931348623158e308", 0x7fefffffffffffffu},
{"1.7976931348623159e308", 0x7ff0000000000000u},
{"1e308", 0x7fe1ccf385ebc8a0u},
{"1e309", 0x7ff0000000000000u},
{"-1e400", 0xfff0000000000000u},
{"1e-400", 0x0000000000000000u},
{"9007199254740991", 0x433fffffffffffffu},
{"9007199254740992", 0x4340000000000000u},
{"9007199254740993", 0x4340000000000000u},
{"9007199254740995", 0x4340000000000002u},
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{"266714997310714613761", 0x442cead409dffcd2u},
{"26671499731071461375.99999999999999999999999999999999999999999", 0x43f722433b19970eu},
{"0.0000000002725195963972150049060368088050545186395989816219298518262803554534912109375", 0x3df2ba37271cf5f2u},
{"0.00000000027251959639721500490603680880505451863959898162192985182628035545349121093751", 0x3df2ba37271cf5f2u},
{"0.0000000002725195963972150049060368088050545186395989816219298518262802554534912109375", 0x3df2ba37271cf5f1u},
{"0.0000000000377224663702246439557904325637937886957218314165629635681398212909698486328125", 0x3dc4bcf7157af68eu},
{"0.00000000003772246637022464395579043256379378869572183141656296356813982129096984863281251", 0x3dc4bcf7157af68fu},
{"0.0000000000377224663702246439557904325637937886957218314165629635681398112909698486328125", 0x3dc4bcf7157af68eu},
{"0.00000000000000009977342762593364154535842258994910996905560208471673566688053824691451154649257659912109375", 0x3c9cc1fac312e2a6u},
{"0.000000000000000099773427625933641545358422589949109969055602084716735666880538246914511546492576599121093751", 0x3c9cc1fac312e2a6u},
{"0.00000000000000009977342762593364154535842258994910996905560208471673566688052824691451154649257659912109375", 0x3c9cc1fac312e2a5u},
{"0.0000000003146248171139977444431948290159907662133509376189977047033607959747314453125", 0x3df59ef03588a228u},
{"0.00000000031462481711399774444319482901599076621335093761899770470336079597473144531251", 0x3df59ef03588a229u},
{"0.0000000003146248171139977444431948290159907662133509376189977047033606959747314453125", 0x3df59ef03588a228u},
{"488899209263030304", 0x439b23acf64c5e80u},
{"4888992092630303041", 0x43d0f64c19efbb10u},
{"488899209263030303.9999999999999999999999999999999999999999999", 0x439b23acf64c5e80u},
{"1.88357157350592807620870416940306313335895538330078125", 0x3ffe231bf23e21acu},
{"1.883571573505928076208704169403063133358955383300781251", 0x3ffe231bf23e21adu},
{"1.883571573505928076208704169403063133358955383300781249999999", 0x3ffe231bf23e21acu},
{"0.0000000216458400594294836451424756990254139044083103726734407246112823486328125", 0x3e573df694e72fb8u},
{"0.00000002164584005942948364514247569902541390440831037267344072461128234863281251", 0x3e573df694e72fb9u},
{"0.0000000216458400594294836451424756990254139044083103726734407246112723486328125", 0x3e573df694e72fb8u},
{"5107.79271041116453488939441740512847900390625", 0x40b3f3caef11cb26u},
{"5107.792710411164534889394417405128479003906251", 0x40b3f3caef11cb27u},
{"5107.792710411164534889394417405128479003906249999999999999999", 0x40b3f3caef11cb26u},
{"734059.8035226609208621084690093994140625", 0x412666d79b67527cu},
{"734059.80352266092086210846900939941406251", 0x412666d79b67527du},
{"734059.8035226609208621084690093994140624999999999999999999999", 0x412666d79b67527cu},
{"61431562016722684", 0x436b47f5c40021e0u},
{"614315620167226841", 0x43a10cf99a80152cu},
{"61431562016722683.99999999999999999999999999999999999999999999", 0x436b47f5c40021dfu},
{"2.0060840449445034305853141631814651191234588623046875", 0x40000c75cab08326u},
{"2.00608404494450343058531416318146511912345886230468751", 0x40000c75cab08326u},
{"2.006084044944503430585314163181465119123458862304687499999999", 0x40000c75cab08325u},
{"0.0000001760623599453036952716420489480075861621344301966018974781036376953125", 0x3e87a174e55262cau},
{"0.00000017606235994530369527164204894800758616213443019660189747810363769531251", 0x3e87a174e55262cbu},
{"0.0000001760623599453036952716420489480075861621344301966018974781035376953125", 0x3e87a174e55262cau},
{"0.833085849636964581588216560703585855662822723388671875", 0x3feaa8a3a7de6fb6u},
{"0.8330858496369645815882165607035858556628227233886718751", 0x3feaa8a3a7de6fb6u},
{"0.8330858496369645815882165607035858556628227233886718749999999", 0x3feaa8a3a7de6fb5u},
{"45031428.4182307310402393341064453125", 0x418579002358895au},
{"45031428.41823073104023933410644531251", 0x418579002358895bu},
{"45031428.41823073104023933410644531249999999999999999999999999", 0x418579002358895au},
{"5003361733758455296", 0x43d15be0bf39dd24u},
{"50033617337584552961", 0x4405b2d8ef08546cu},
{"5003361733758455295.999999999999999999999999999999999999999999", 0x43d15be0bf39dd23u},
};
for (const auto& c : known)
{
CAPTURE(c.first);
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("round trip")
{
// 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;
state ^= state >> 7u;
state ^= state << 17u;
std::uint64_t b = state;
if ((b & 0x7FF0000000000000u) == 0x7FF0000000000000u)
{
continue; // infinity or NaN
}
if (i % 4 == 0)
{
b &= 0x800FFFFFFFFFFFFFu; // subnormals
}
double d = 0;
std::memcpy(&d, &b, sizeof(d));
std::array<char, 64> buffer{};
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);
double out = 0;
REQUIRE(eisel_lemire(token, out));
CHECK(bits_of(out) == b);
// 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::string extra = longer.find('.') == std::string::npos ? ".000000000000000000001" : "000000000000000000001";
longer.insert(e == std::string::npos ? longer.size() : e, extra);
CAPTURE(longer);
if (eisel_lemire(longer, out))
{
CHECK(bits_of(out) == b);
}
else
{
// w and w + 1 round differently: only when the value is very
// close to a rounding boundary
++declined;
}
}
CHECK(declined < 1000); // 107 of the 200,000
}
SECTION("used by the lexer")
{
// 17 significant digits: beyond Clinger's fast path
CHECK(bits_of(json::parse("-65.613616999999977").get<double>()) == bits_of(-65.613616999999977));
CHECK(bits_of(json::parse("2.2250738585072011e-308").get<double>()) == 0x000FFFFFFFFFFFFFu);
CHECK(bits_of(json::parse("4.9406564584124654e-324").get<double>()) == 1u);
CHECK_THROWS_WITH_AS(json::parse("1.7976931348623159e308"),
"[json.exception.out_of_range.406] number overflow parsing '1.7976931348623159e308'", json::out_of_range&);
}
}
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;
};
for (int round = 0; round < 100000; ++round)
{
// mostly ordinary text, so that runs span several words
std::string text(static_cast<std::size_t>(next() % 8), '.');
const auto count = static_cast<std::size_t>(next() % 12);
for (std::size_t k = 0; k < count; ++k)
{
const std::size_t p = (next() % 4 == 0) ? static_cast<std::size_t>(next() % pieces.size()) : 0;
text += pieces[p];
text += std::string(static_cast<std::size_t>(next() % 10), '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);
}
}
+366
View File
@@ -0,0 +1,366 @@
// __ _____ _____ _____
// __| | __| | | | 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"
#include <nlohmann/json.hpp>
#include <nlohmann/detail/view/builder.hpp>
#include <nlohmann/detail/view/string_ref.hpp>
using nlohmann::json;
#include <cstdint>
#include <fstream>
#include <memory>
#include <random>
#include <sstream>
#include <string>
#include <utility>
#include <vector>
#include <test_data.hpp>
namespace
{
using nlohmann::detail::view::document_data;
using nlohmann::detail::view::node;
// the node index of a text; a vector input has no terminating NUL, so that
// AddressSanitizer catches any read past the last byte
struct built
{
std::unique_ptr<document_data, document_data::deleter> data{}; // NOLINT(readability-redundant-member-init)
std::vector<char> copy{}; // NOLINT(readability-redundant-member-init)
bool ok = false;
nlohmann::detail::view::parse_failure failure{};
};
built build(const std::string& text, bool comments, bool trailing_commas, bool sentinel)
{
built r;
r.data.reset(document_data::create(nlohmann::detail::view::estimate_nodes(text.data(), text.size())));
const char* src = text.c_str();
if (!sentinel)
{
r.copy.assign(text.begin(), text.end());
src = r.copy.data();
}
r.ok = nlohmann::detail::view::build < !nlohmann::detail::abi_config::strict_nul_handling > (*r.data, src, text.size(), comments, trailing_commas, sentinel, r.failure);
r.data->src = src;
r.data->base[0] = src;
r.data->base[1] = r.data->arena.data();
return r;
}
// the value of a subtree, as json::parse would build it
json value_of(const document_data& d, const node*& n)
{
const node& x = *n;
++n;
switch (static_cast<json::value_t>(x.kind))
{
case json::value_t::object:
{
json o = json::object();
const node* const end = &x + x.next;
while (n != end)
{
const std::string key(d.str(*n), n->len);
++n;
o[key] = value_of(d, n);
}
return o;
}
case json::value_t::array:
{
json a = json::array();
const node* const end = &x + x.next;
while (n != end)
{
a.push_back(value_of(d, n));
}
return a;
}
case json::value_t::string:
return std::string(d.str(x), x.len);
case json::value_t::boolean:
return (x.flags & nlohmann::detail::view::node_flags::is_true) != 0;
case json::value_t::number_integer:
return static_cast<std::int64_t>(nlohmann::detail::view::integer_bits(x));
case json::value_t::number_unsigned:
return nlohmann::detail::view::integer_bits(x);
case json::value_t::number_float:
return json::parse(std::string(d.src + x.off, x.len)).get<double>();
case json::value_t::null:
case json::value_t::binary:
case json::value_t::discarded:
default:
return nullptr;
}
}
json value_of(const built& b)
{
const node* n = b.data->tape;
json v = value_of(*b.data, n);
CHECK(n == b.data->tape + b.data->tape_size);
return v;
}
// accept/reject and the value must match json::parse, for all options and
// with and without a NUL after the text
void check_same(const std::string& text)
{
CAPTURE(text);
for (int options = 0; options < 4; ++options)
{
const bool comments = (options & 1) != 0;
const bool trailing_commas = (options & 2) != 0;
const bool accepted = json::accept(text, comments, trailing_commas);
for (const bool sentinel :
{
true, false
})
{
const built b = build(text, comments, trailing_commas, sentinel);
CHECK(b.ok == accepted);
if (b.ok && accepted)
{
CHECK(value_of(b) == json::parse(text, nullptr, true, comments, trailing_commas));
}
}
}
}
// a small deterministic generator of documents
struct generator
{
std::mt19937 rng{5295}; // NOLINT(cert-msc32-c,cert-msc51-cpp,bugprone-random-generator-seed)
int r(int n)
{
return static_cast<int>(rng() % static_cast<unsigned>(n));
}
void ws(std::string& o)
{
for (int n = r(4) == 0 ? r(12) : r(2); n > 0; --n)
{
o += " \n\t\r "[r(6)];
}
}
void str(std::string& o)
{
static const char* const pieces[] = {"a", "Z", " ", "~", "\\n", "\\\"", "\\\\", "\\/", "\\u00e9", "\\ud83d\\ude00", "\xc3\xa9", "\xe3\x81\x82", "\xf0\x9f\x98\x80", "\x7f", "\\u001f", "long enough text to leave the first 16 bytes"}; // NOLINT(cppcoreguidelines-avoid-c-arrays,hicpp-avoid-c-arrays,modernize-avoid-c-arrays)
o += '"';
for (int n = r(3) == 0 ? r(20) : r(6); n > 0; --n)
{
o += pieces[r(16)];
}
o += '"';
}
void num(std::string& o)
{
static const char* const numbers[] = {"0", "-0", "1", "-1", "12", "123456789", "1234567890123456789", "9223372036854775807", "-9223372036854775808", // NOLINT(cppcoreguidelines-avoid-c-arrays,hicpp-avoid-c-arrays,modernize-avoid-c-arrays)
"9223372036854775808", "18446744073709551615", "18446744073709551616", "-9223372036854775809",
"1.5", "-2.25e-3", "1e10", "1E+2", "0.000001", "3.141592653589793238462643", "1e308", "-1e-400", "123.456e7"
};
o += numbers[r(22)];
}
void value(std::string& o, int depth)
{
ws(o);
const int k = depth > 5 ? 2 + r(6) : r(8);
if (k == 0 || k == 1)
{
const bool object = k == 0;
o += object ? '{' : '[';
for (int i = r(5); i > 0; --i)
{
ws(o);
if (object)
{
str(o);
ws(o);
o += ':';
}
value(o, depth + 1);
o += i > 1 ? "," : "";
}
ws(o);
o += object ? '}' : ']';
}
else if (k < 4)
{
str(o);
}
else if (k < 6)
{
num(o);
}
else
{
static const char* const literals[] = {"true", "false", "null"}; // NOLINT(cppcoreguidelines-avoid-c-arrays,hicpp-avoid-c-arrays,modernize-avoid-c-arrays)
o += literals[r(3)];
}
ws(o);
}
};
} // namespace
TEST_CASE("json_view string_ref")
{
// std::string_view in C++17, a stand-in with the same members before
using nlohmann::detail::view::string_ref;
const std::string text = "abc";
const string_ref r(text);
CHECK(r.length() == 3);
CHECK(std::string(r.begin(), r.end()) == "abc");
CHECK(r[1] == 'b');
CHECK(r != string_ref("abd"));
CHECK_FALSE(r != string_ref("abcd", 3));
std::ostringstream o;
o << r;
CHECK(o.str() == "abc");
}
TEST_CASE("json_view builder")
{
SECTION("scalars and containers")
{
for (const char* text :
{
"null", "true", "false", "0", "-0", "42", "-42", "1.5", "\"\"", "\"abc\"", "[]", "{}", "[1,2,3]", "{\"a\":1,\"b\":[true,null]}", // NOLINT(modernize-raw-string-literal)
" [ 1 , 2 ] ", "{\"a\" : {\"b\" : {}}}", "[[[]]]", "\"\\u00e4\\n\\ud83d\\ude00\"", "{\"a\":1,\"a\":2}", "18446744073709551616", // NOLINT(modernize-raw-string-literal)
"-9223372036854775809", "123456789012345678901234567890", "1e400", "-1e400", "1.7976931348623157e308"
})
{
check_same(text);
}
// the midpoint between the largest double and 2^1024 rounds to
// infinity (an overflow), one less to the largest double: with more
// than 19 digits, the fast conversions cannot decide these, and the
// overflow check falls back to strtod
const std::string midpoint = "179769313486231580793728971405303415079934132710037826936173778980444968292764750946649017977587207096330286416692887910946555547851940402630657488671505820681908902000708383676273854845817711531764475730270069855571366959622842914819860834936475292719074168444365510704342711559699508093042880177904174497792";
const std::string below = "179769313486231580793728971405303415079934132710037826936173778980444968292764750946649017977587207096330286416692887910946555547851940402630657488671505820681908902000708383676273854845817711531764475730270069855571366959622842914819860834936475292719074168444365510704342711559699508093042880177904174497791";
check_same(midpoint);
check_same("-" + midpoint);
check_same(below);
check_same("[" + below + "," + midpoint + "]");
}
SECTION("malformed input")
{
for (const char* text :
{
"", " ", "[", "]", "{", "}", "[1,]", "{\"a\":1,}", "[1 2]", "{\"a\" 1}", "{1:2}", "tru", "nul", "fals", "truex", "-", "01", "1.", ".5", "1e", "1e+",
"\"", "\"abc", "\"\\x\"", "\"\\u12\"", "\"\\u12G4\"", "\"\\ud800\"", "\"\\udc00\"", "\"\\ud800\\u0041\"", "\"\x01\"", "\"\xff\"", "\"\xc3\"", // NOLINT(modernize-raw-string-literal)
"\"\xe0\x80\x80\"", "\"\xed\xa0\x80\"", "[1]x", "[1] [2]", "/", "/*", "/* */ 1", "// c\n1", "1 // c", "[1,/*c*/2]", "[1,2,]"
})
{
check_same(text);
}
}
SECTION("NUL, BOM, and whitespace")
{
// a NUL inside a string is a control character, as for json::parse
// (where a NUL ends the input, it does so only between values)
for (const bool sentinel :
{
true, false
})
{
const built b = build(std::string("[\"ab\0cd\"]", 9), false, false, sentinel);
CHECK(!b.ok);
CHECK(b.failure.code == nlohmann::detail::view::error_code::string_control_character);
CHECK(b.failure.offset == 4);
}
check_same(std::string("[1]\0garbage", 11));
check_same(std::string("[1\0]", 4));
check_same(std::string("[1, // c\0\n2]", 12));
check_same(std::string("[1, /* c\0 */ 2]", 15));
check_same("\xEF\xBB\xBF[1]");
check_same("\xEF\xBB[1]");
check_same(" \t\r\n 7 \n");
for (const char* text :
{"[1]\r", "[1]\n", "[1]\r\n", "[1,\r2]", "[1,\r\n2]", "7\r", "\"x\"\r", "{\"a\":\r\n1}\r", "[\n 1,\n 2\n]", "{\n \"a\": [\n 1\n ]\n}"
})
{
check_same(text);
}
}
SECTION("deep nesting")
{
// the open containers beyond 64 levels live on the heap
for (const std::size_t depth :
{
63u, 64u, 65u, 1000u, 100000u
})
{
const std::string arrays = std::string(depth, '[') + std::string(depth, ']');
const built b = build(arrays, false, false, false);
REQUIRE(b.ok);
CHECK(b.data->tape_size == depth);
CHECK(b.data->tape[0].next == depth);
std::string objects;
for (std::size_t i = 0; i < depth; ++i)
{
objects += "{\"a\":";
}
objects += '1' + std::string(depth, '}');
const built o = build(objects, false, false, false);
REQUIRE(o.ok);
CHECK(o.data->tape_size == (2 * depth) + 1);
CHECK(!build(std::string(depth, '[') + std::string(depth - 1, ']'), false, false, false).ok);
}
}
SECTION("generated documents and damaged copies")
{
generator g;
for (int i = 0; i < 3000; ++i)
{
std::string text;
g.value(text, 0);
check_same(text);
// damage: flip one byte, or cut the text
std::string damaged = text;
const auto at = static_cast<std::size_t>(g.r(static_cast<int>(damaged.size())));
static const char replacements[] = {'x', '"', '\\', ',', ':', ']', '}', '[', '{', '1', '-', '.', 'e', '\0', '\n', '/'}; // NOLINT(cppcoreguidelines-avoid-c-arrays,hicpp-avoid-c-arrays,modernize-avoid-c-arrays)
damaged[at] = replacements[g.r(16)];
check_same(damaged);
check_same(text.substr(0, at));
}
}
SECTION("test files")
{
for (const char* name :
{
"/json.org/1.json", "/json.org/2.json", "/json.org/3.json", "/json.org/4.json", "/json.org/5.json",
"/json_testsuite/sample.json", "/nativejson-benchmark/canada.json", "/nativejson-benchmark/citm_catalog.json",
"/nativejson-benchmark/twitter.json", "/json_tests/pass1.json", "/json_tests/pass2.json", "/json_tests/pass3.json"
})
{
CAPTURE(name);
std::ifstream f(std::string(TEST_DATA_DIRECTORY) + name, std::ios::binary);
std::stringstream ss;
ss << f.rdbuf();
const std::string text = ss.str();
REQUIRE(!text.empty());
const built b = build(text, false, false, true);
REQUIRE(b.ok);
CHECK(value_of(b) == json::parse(text));
}
}
}
+210
View File
@@ -12,7 +12,12 @@
#include <nlohmann/json.hpp>
using nlohmann::json;
#include <array>
#include <clocale>
#include <map>
#include <string>
#include <utility>
#include <vector>
struct ParserImpl final: public nlohmann::json_sax<json>
{
@@ -175,3 +180,208 @@ TEST_CASE("locale-dependent test (LC_NUMERIC=de_DE)")
MESSAGE("locale de_DE is not usable");
}
}
namespace
{
// records the numbers of a flat array and switches LC_NUMERIC to the given
// locale once the array opens - after the lexer was constructed, but before
// any number in the array is lexed
struct LocaleSwitchingSax final: public nlohmann::json_sax<json>
{
explicit LocaleSwitchingSax(const char* switch_to)
: locale_after_open(switch_to)
{}
bool null() override
{
return true;
}
bool boolean(bool /*val*/) override
{
return true;
}
bool number_integer(json::number_integer_t /*val*/) override
{
return true;
}
bool number_unsigned(json::number_unsigned_t /*val*/) override
{
return true;
}
bool number_float(json::number_float_t val, const json::string_t& s) override
{
values.push_back(val);
strings.push_back(s);
return true;
}
bool string(json::string_t& /*val*/) override
{
return true;
}
bool binary(json::binary_t& /*val*/) override
{
return true;
}
bool start_object(std::size_t /*val*/) override
{
return true;
}
bool key(json::string_t& /*val*/) override
{
return true;
}
bool end_object() override
{
return true;
}
bool start_array(std::size_t /*val*/) override
{
switched = std::setlocale(LC_NUMERIC, locale_after_open.c_str()) != nullptr;
return true;
}
bool end_array() override
{
return true;
}
bool parse_error(std::size_t /*val*/, const std::string& /*val*/, const nlohmann::detail::exception& /*val*/) override
{
return false;
}
std::string locale_after_open;
bool switched = false;
std::vector<json::number_float_t> values {}; // NOLINT(readability-redundant-member-init)
std::vector<json::string_t> strings {}; // NOLINT(readability-redundant-member-init)
};
} // namespace
TEST_CASE("locale changes between lexer construction and number conversion (#5198)")
{
// 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)
{
text += (text.size() == 1 ? "" : ",") + n;
}
text += "]";
using long_double_json = nlohmann::basic_json<std::map, std::vector, std::string, bool, std::int64_t, std::uint64_t, long double>;
// reference values, parsed without a locale switch
REQUIRE(std::setlocale(LC_NUMERIC, "C") != nullptr);
const json expected = json::parse(text);
const long_double_json expected_ld = long_double_json::parse(text);
const std::array<std::pair<const char*, const char*>, 2> transitions =
{
{
{"C", "de_DE"},
{"de_DE", "C"}
}
};
for (const auto& transition : transitions)
{
CAPTURE(transition.first);
CAPTURE(transition.second);
if (std::setlocale(LC_NUMERIC, transition.first) == nullptr)
{
MESSAGE("locale is not usable");
continue;
}
// SAX parsing
{
LocaleSwitchingSax sax(transition.second);
CHECK(json::sax_parse(text, &sax));
if (sax.switched)
{
CHECK(sax.values == expected.get<std::vector<json::number_float_t>>());
CHECK(sax.strings == numbers);
}
}
// DOM parsing with a callback
{
bool switched = false;
const auto cb = [&](int /*depth*/, json::parse_event_t event, json& /*parsed*/) noexcept
{
if (event == json::parse_event_t::array_start)
{
switched = std::setlocale(LC_NUMERIC, transition.second) != nullptr;
}
return true;
};
const json j = json::parse(text, cb);
if (switched)
{
CHECK(j == expected);
}
}
// 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
{
if (event == long_double_json::parse_event_t::array_start)
{
switched = std::setlocale(LC_NUMERIC, transition.second) != nullptr;
}
return true;
};
const long_double_json j = long_double_json::parse(text, cb);
if (switched)
{
CHECK(j == expected_ld);
}
}
}
CHECK(std::setlocale(LC_NUMERIC, "C") != nullptr);
}
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 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)
{
if (std::setlocale(LC_NUMERIC, name) == nullptr)
{
continue;
}
const std::string decimal_point = std::localeconv()->decimal_point;
if (decimal_point.size() < 2)
{
continue;
}
CAPTURE(name);
tested = true;
// too many significant digits for Clinger's fast path, and an underflow
// 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(json::accept("3.14159265358979323846"));
// a value the locale-independent paths convert is not affected
CHECK(json::parse("12.5") == 12.5);
}
if (!tested)
{
MESSAGE("no locale with a multi-byte decimal point is usable");
}
CHECK(std::setlocale(LC_NUMERIC, "C") != nullptr);
}
+60 -1
View File
@@ -1551,10 +1551,69 @@ TEST_CASE("MessagePack")
SECTION("invalid string in map")
{
json _;
CHECK_THROWS_WITH_AS(_ = json::from_msgpack(std::vector<uint8_t>({0x81, 0xff, 0x01})), "[json.exception.parse_error.113] parse error at byte 2: syntax error while parsing MessagePack string: expected length specification (0xA0-0xBF, 0xD9-0xDB); last byte: 0xFF", json::parse_error&);
CHECK_THROWS_WITH_AS(_ = json::from_msgpack(std::vector<uint8_t>({0x81, 0xff, 0x01})), "[json.exception.parse_error.113] parse error at byte 2: syntax error while parsing MessagePack object key: only string keys are supported, but found an integer; last byte: 0xFF", json::parse_error&);
CHECK(json::from_msgpack(std::vector<uint8_t>({0x81, 0xff, 0x01}), true, false).is_discarded());
}
SECTION("non-string key (see #3381)")
{
// only strings map to JSON object keys; any other key is rejected
// with a message naming its type
const std::vector<std::pair<std::vector<std::uint8_t>, std::string>> cases =
{
{{0x81, 0xC0, 0x01}, "nil; last byte: 0xC0"},
{{0x81, 0xC2, 0x01}, "a boolean; last byte: 0xC2"},
{{0x81, 0xC3, 0x01}, "a boolean; last byte: 0xC3"},
{{0x81, 0xCA, 0x3F, 0x80, 0x00, 0x00, 0x01}, "a float; last byte: 0xCA"},
{{0x81, 0xCB, 0x3F, 0xF0, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x01}, "a float; last byte: 0xCB"},
{{0x81, 0xC4, 0x00, 0x01}, "a bin; last byte: 0xC4"},
{{0x81, 0xC5, 0x00, 0x00, 0x01}, "a bin; last byte: 0xC5"},
{{0x81, 0xC6, 0x00, 0x00, 0x00, 0x00, 0x01}, "a bin; last byte: 0xC6"},
{{0x81, 0xC7, 0x00, 0x01, 0x01}, "an ext; last byte: 0xC7"},
{{0x81, 0xC8, 0x00, 0x00, 0x01, 0x01}, "an ext; last byte: 0xC8"},
{{0x81, 0xC9, 0x00, 0x00, 0x00, 0x00, 0x01, 0x01}, "an ext; last byte: 0xC9"},
{{0x81, 0xD4, 0x01, 0x00, 0x01}, "an ext; last byte: 0xD4"},
{{0x81, 0xD5, 0x01, 0x00, 0x00, 0x01}, "an ext; last byte: 0xD5"},
{{0x81, 0xD6, 0x01, 0x00, 0x00, 0x00, 0x00, 0x01}, "an ext; last byte: 0xD6"},
{{0x81, 0xD7, 0x01, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x01}, "an ext; last byte: 0xD7"},
{{0x81, 0xD8, 0x01, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x01}, "an ext; last byte: 0xD8"},
{{0x81, 0xCC, 0x01, 0x01}, "an integer; last byte: 0xCC"},
{{0x81, 0xCD, 0x00, 0x01, 0x01}, "an integer; last byte: 0xCD"},
{{0x81, 0xCE, 0x00, 0x00, 0x00, 0x01, 0x01}, "an integer; last byte: 0xCE"},
{{0x81, 0xCF, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x01, 0x01}, "an integer; last byte: 0xCF"},
{{0x81, 0xD0, 0x01, 0x01}, "an integer; last byte: 0xD0"},
{{0x81, 0xD1, 0x00, 0x01, 0x01}, "an integer; last byte: 0xD1"},
{{0x81, 0xD2, 0x00, 0x00, 0x00, 0x01, 0x01}, "an integer; last byte: 0xD2"},
{{0x81, 0xD3, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x01, 0x01}, "an integer; last byte: 0xD3"},
{{0x81, 0x00, 0x01}, "an integer; last byte: 0x00"},
{{0x81, 0x7F, 0x01}, "an integer; last byte: 0x7F"},
{{0x81, 0xE0, 0x01}, "an integer; last byte: 0xE0"},
{{0x81, 0x80, 0x01}, "a map; last byte: 0x80"},
{{0x81, 0x8F, 0x01}, "a map; last byte: 0x8F"},
{{0x81, 0xDE, 0x00, 0x00, 0x01}, "a map; last byte: 0xDE"},
{{0x81, 0xDF, 0x00, 0x00, 0x00, 0x00, 0x01}, "a map; last byte: 0xDF"},
{{0x81, 0x90, 0x01}, "an array; last byte: 0x90"},
{{0x81, 0x9F, 0x01}, "an array; last byte: 0x9F"},
{{0x81, 0xDC, 0x00, 0x00, 0x01}, "an array; last byte: 0xDC"},
{{0x81, 0xDD, 0x00, 0x00, 0x00, 0x00, 0x01}, "an array; last byte: 0xDD"},
};
for (const auto& c : cases)
{
CAPTURE(c.first)
const std::string expected = "[json.exception.parse_error.113] parse error at byte 2: syntax error while parsing MessagePack object key: only string keys are supported, but found " + c.second;
json _;
CHECK_THROWS_WITH_AS(_ = json::from_msgpack(c.first), expected.c_str(), json::parse_error&);
CHECK(json::from_msgpack(c.first, true, false).is_discarded());
}
json _;
// the unused byte 0xC1 is still reported as a malformed string
CHECK_THROWS_WITH_AS(_ = json::from_msgpack(std::vector<uint8_t>({0x81, 0xC1, 0x01})), "[json.exception.parse_error.113] parse error at byte 2: syntax error while parsing MessagePack string: expected length specification (0xA0-0xBF, 0xD9-0xDB); last byte: 0xC1", json::parse_error&);
// a missing key is still reported as the end of input
CHECK_THROWS_WITH_AS(_ = json::from_msgpack(std::vector<uint8_t>({0x81})), "[json.exception.parse_error.110] parse error at byte 2: syntax error while parsing MessagePack string: unexpected end of input", json::parse_error&);
}
SECTION("invalid UTF-8 in string (see #5529)")
{
// a fixstr of length 2 (0xA0 | 2) whose bytes are not valid UTF-8
+3 -3
View File
@@ -1018,7 +1018,7 @@ TEST_CASE("regression tests 1")
};
json _;
CHECK_THROWS_WITH_AS(_ = json::from_cbor(vec), "[json.exception.parse_error.113] parse error at byte 2: syntax error while parsing CBOR string: expected length specification (0x60-0x7B) or indefinite string type (0x7F); last byte: 0x98", json::parse_error&);
CHECK_THROWS_WITH_AS(_ = json::from_cbor(vec), "[json.exception.parse_error.113] parse error at byte 2: syntax error while parsing CBOR object key: only string keys are supported, but found an array; last byte: 0x98", json::parse_error&);
// related test case: nonempty UTF-8 string (indefinite length)
std::vector<uint8_t> const vec1 {0x7f, 0x61, 0x61};
@@ -1065,7 +1065,7 @@ TEST_CASE("regression tests 1")
};
json _;
CHECK_THROWS_WITH_AS(_ = json::from_cbor(vec1), "[json.exception.parse_error.113] parse error at byte 13: syntax error while parsing CBOR string: expected length specification (0x60-0x7B) or indefinite string type (0x7F); last byte: 0xB4", json::parse_error&);
CHECK_THROWS_WITH_AS(_ = json::from_cbor(vec1), "[json.exception.parse_error.113] parse error at byte 13: syntax error while parsing CBOR object key: only string keys are supported, but found a map; last byte: 0xB4", json::parse_error&);
// related test case: double-precision
std::vector<uint8_t> const vec2
@@ -1077,7 +1077,7 @@ TEST_CASE("regression tests 1")
0x96, 0x96, 0xb4, 0xb4, 0xfa, 0x94, 0x94, 0x61,
0x61, 0x61, 0x61, 0x61, 0x61, 0x61, 0x61, 0xfb
};
CHECK_THROWS_WITH_AS(_ = json::from_cbor(vec2), "[json.exception.parse_error.113] parse error at byte 13: syntax error while parsing CBOR string: expected length specification (0x60-0x7B) or indefinite string type (0x7F); last byte: 0xB4", json::parse_error&);
CHECK_THROWS_WITH_AS(_ = json::from_cbor(vec2), "[json.exception.parse_error.113] parse error at byte 13: syntax error while parsing CBOR object key: only string keys are supported, but found a map; last byte: 0xB4", json::parse_error&);
}
SECTION("issue #452 - Heap-buffer-overflow (OSS-Fuzz issue 585)")
+3
View File
@@ -8,3 +8,6 @@ The following changes have been made to the code with respect to <https://github
- membership check
- made function from `_is_within`
- removed unused variable `actual_path`
- Added the optional config key `external`: include paths listed there are kept as
`#include` directives instead of being inlined (the first directive per path; the
repeated ones are commented out).
+5
View File
@@ -57,6 +57,11 @@ Python v.2.7.0 or higher is required.
amalgamation. Have a look at `test/source.c.json` and `test/include.h.json`
to see two examples.
The optional `external` list names include paths that are kept as `#include`
directives instead of being inlined, e.g. `["nlohmann/json.hpp"]` for a header
that includes another amalgamated header. Only the first directive for each
of these paths is kept; the repeated ones are commented out.
* The `-s, --source` option should specify the path to the source directory.
This is useful for supporting separate source and build directories.
+23 -5
View File
@@ -62,6 +62,10 @@ class Amalgamation(object):
return None
def __init__(self, args):
# include paths that are kept as #include directives instead of
# being inlined (e.g. a header amalgamated on its own)
self.external = []
self.included_external = []
with open(args.config, 'r') as f:
config = json.loads(f.read())
for key in config:
@@ -220,11 +224,14 @@ class TranslationUnit(object):
while include_match:
if not _is_within(include_match, skippable_contexts):
include_path = include_match.group("path")
search_same_dir = include_match.group(1) == '"'
found_included_path = self.amalgamation.find_included_file(
include_path, self.file_dir if search_same_dir else None)
if found_included_path:
includes.append((include_match, found_included_path))
if include_path in self.amalgamation.external:
includes.append((include_match, None))
else:
search_same_dir = include_match.group(1) == '"'
found_included_path = self.amalgamation.find_included_file(
include_path, self.file_dir if search_same_dir else None)
if found_included_path:
includes.append((include_match, found_included_path))
include_match = self.include_pattern.search(self.content,
include_match.end())
@@ -235,6 +242,17 @@ class TranslationUnit(object):
for include in includes:
include_match, found_included_path = include
tmp_content += self.content[prev_end:include_match.start()]
if found_included_path is None:
# an external header: keep the first directive and comment
# out the repeated ones
include_path = include_match.group("path")
if include_path in self.amalgamation.included_external:
tmp_content += "// {0}".format(include_match.group(0))
else:
self.amalgamation.included_external.append(include_path)
tmp_content += include_match.group(0)
prev_end = include_match.end()
continue
tmp_content += "// {0}\n".format(include_match.group(0))
if found_included_path not in self.amalgamation.included_files:
t = TranslationUnit(found_included_path, self.amalgamation, False)
+9
View File
@@ -0,0 +1,9 @@
{
"project": "JSON for Modern C++",
"target": "single_include/nlohmann/json_view.hpp",
"sources": [
"include/nlohmann/json_view.hpp"
],
"include_paths": ["include"],
"external": ["nlohmann/json.hpp"]
}