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https://github.com/nlohmann/json.git
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Compare commits
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44325873ea | ||
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0c630d4c30 | ||
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04ed4f593c |
@@ -55,6 +55,10 @@ This implementation does exactly follow this approach, as it uses double precisi
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smaller than `-1.79769313486232e+308` and values greater than `1.79769313486232e+308` will be stored as NaN internally
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smaller than `-1.79769313486232e+308` and values greater than `1.79769313486232e+308` will be stored as NaN internally
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and be serialized to `null`.
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and be serialized to `null`.
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During deserialization (from JSON text or any of the binary formats), a finite number that does not fit into
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`number_float_t` is rejected with [`out_of_range.406`](../../home/exceptions.md#jsonexceptionout_of_range406), for
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example a double-precision number in a binary format when `number_float_t` is `#!cpp float`.
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#### Storage
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#### Storage
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Floating-point number values are stored directly inside a `basic_json` type.
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Floating-point number values are stored directly inside a `basic_json` type.
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@@ -47,8 +47,9 @@ With the default values for `NumberIntegerType` (`std::int64_t`), the default va
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When the default type is used, the maximal integer number that can be stored is `9223372036854775807` (INT64_MAX) and
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When the default type is used, the maximal integer number that can be stored is `9223372036854775807` (INT64_MAX) and
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the minimal integer number that can be stored is `-9223372036854775808` (INT64_MIN). Integer numbers that are out of
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the minimal integer number that can be stored is `-9223372036854775808` (INT64_MIN). Integer numbers that are out of
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range will yield over/underflow when used in a constructor. During deserialization, too large or small integer numbers
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range will yield over/underflow when used in a constructor. During deserialization (from JSON text or any of the binary
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will automatically be stored as [`number_unsigned_t`](number_unsigned_t.md) or [`number_float_t`](number_float_t.md).
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formats), too large or small integer numbers will automatically be stored as [`number_unsigned_t`](number_unsigned_t.md)
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or [`number_float_t`](number_float_t.md).
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[RFC 8259](https://tools.ietf.org/html/rfc8259) further states:
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[RFC 8259](https://tools.ietf.org/html/rfc8259) further states:
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> Note that when such software is used, numbers that are integers and are in the range $[-2^{53}+1, 2^{53}-1]$ are
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> Note that when such software is used, numbers that are integers and are in the range $[-2^{53}+1, 2^{53}-1]$ are
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@@ -48,8 +48,9 @@ With the default values for `NumberUnsignedType` (`std::uint64_t`), the default
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When the default type is used, the maximal integer number that can be stored is `18446744073709551615` (UINT64_MAX) and
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When the default type is used, the maximal integer number that can be stored is `18446744073709551615` (UINT64_MAX) and
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the minimal integer number that can be stored is `0`. Integer numbers that are out of range will yield over/underflow
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the minimal integer number that can be stored is `0`. Integer numbers that are out of range will yield over/underflow
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when used in a constructor. During deserialization, too large or small integer numbers will automatically be stored
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when used in a constructor. During deserialization (from JSON text or any of the binary formats), too large or small
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as [`number_integer_t`](number_integer_t.md) or [`number_float_t`](number_float_t.md).
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integer numbers will automatically be stored as [`number_integer_t`](number_integer_t.md) or
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[`number_float_t`](number_float_t.md).
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[RFC 8259](https://tools.ietf.org/html/rfc8259) further states:
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[RFC 8259](https://tools.ietf.org/html/rfc8259) further states:
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> Note that when such software is used, numbers that are integers and are in the range $[-2^{53}+1, 2^{53}-1]$ are
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> Note that when such software is used, numbers that are integers and are in the range $[-2^{53}+1, 2^{53}-1]$ are
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@@ -168,9 +168,9 @@ The library maps CBOR types to JSON value types as follows:
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!!! warning "Negative integer overflow"
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!!! warning "Negative integer overflow"
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CBOR negative integers (major type 1) are decoded as `-1 - n`. If the encoded magnitude `n` is too large for the
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CBOR negative integers (major type 1) are decoded as `-1 - n`. If the encoded magnitude `n` is too large for the
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result to fit into `number_integer_t` (`std::int64_t` by default), parsing fails with a
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result to fit into `number_integer_t` (`std::int64_t` by default), the result is stored as `number_float_t`, like
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[`parse_error.112`](../../home/exceptions.md#jsonexceptionparse_error112) exception rather than overflowing
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a too small integer in JSON text. For example, `-18446744073709551616` (`0x3B` followed by eight `0xFF` bytes) is
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silently.
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stored as `-1.8446744073709552e+19`.
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!!! warning "Object keys"
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!!! warning "Object keys"
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@@ -331,9 +331,6 @@ An unexpected byte was read in a [binary format](../features/binary_formats/inde
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[json.exception.parse_error.112] parse error at byte 15: syntax error while parsing BSON binary: byte array length cannot be negative, is -1
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[json.exception.parse_error.112] parse error at byte 15: syntax error while parsing BSON binary: byte array length cannot be negative, is -1
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```
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```
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```
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```
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[json.exception.parse_error.112] parse error at byte 9: syntax error while parsing CBOR value: negative integer overflow
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```
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```
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[json.exception.parse_error.112] parse error at byte 5: syntax error while parsing BSON document: document size 6 does not match the number of bytes read (5)
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[json.exception.parse_error.112] parse error at byte 5: syntax error while parsing BSON document: document size 6 does not match the number of bytes read (5)
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```
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```
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@@ -847,13 +844,18 @@ The JSON Patch operations 'remove' and 'add' cannot be applied to the root eleme
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### json.exception.out_of_range.406
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### json.exception.out_of_range.406
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A parsed number could not be stored as without changing it to NaN or INF.
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A parsed number could not be stored without changing it to NaN or INF. For the binary formats, this happens when a
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finite floating-point number does not fit into [`number_float_t`](../api/basic_json/number_float_t.md), for example a
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double-precision number when `number_float_t` is `#!cpp float`.
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!!! failure "Example message"
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!!! failure "Example messages"
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```
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```
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number overflow parsing '10E1000'
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number overflow parsing '10E1000'
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```
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```
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```
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[json.exception.out_of_range.406] syntax error while parsing CBOR value: number overflow
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```
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### json.exception.out_of_range.407
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### json.exception.out_of_range.407
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@@ -559,7 +559,7 @@ class binary_reader
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case 0x01: // double
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case 0x01: // double
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{
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{
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double number{};
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double number{};
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return get_number<double, true>(input_format_t::bson, number) && sax->number_float(static_cast<number_float_t>(number), "");
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return get_number<double, true>(input_format_t::bson, number) && emit_float(input_format_t::bson, number);
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}
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}
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case 0x02: // string
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case 0x02: // string
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@@ -600,19 +600,19 @@ class binary_reader
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case 0x10: // int32
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case 0x10: // int32
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{
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{
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std::int32_t value{};
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std::int32_t value{};
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return get_number<std::int32_t, true>(input_format_t::bson, value) && sax->number_integer(value);
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return get_number<std::int32_t, true>(input_format_t::bson, value) && emit_signed(input_format_t::bson, value);
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}
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}
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case 0x12: // int64
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case 0x12: // int64
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{
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{
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std::int64_t value{};
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std::int64_t value{};
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return get_number<std::int64_t, true>(input_format_t::bson, value) && sax->number_integer(value);
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return get_number<std::int64_t, true>(input_format_t::bson, value) && emit_signed(input_format_t::bson, value);
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}
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}
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case 0x11: // uint64
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case 0x11: // uint64
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{
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{
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std::uint64_t value{};
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std::uint64_t value{};
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return get_number<std::uint64_t, true>(input_format_t::bson, value) && sax->number_unsigned(value);
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return get_number<std::uint64_t, true>(input_format_t::bson, value) && emit_unsigned(input_format_t::bson, value);
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}
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}
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default: // anything else is not supported (yet)
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default: // anything else is not supported (yet)
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@@ -638,14 +638,19 @@ class binary_reader
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{
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{
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return false;
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return false;
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}
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}
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const auto max_val = static_cast<NumberType>((std::numeric_limits<number_integer_t>::max)());
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if (number > max_val)
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// the value is -1 - number, which fits into number_integer_t
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// whenever number does
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if (JSON_HEDLEY_LIKELY(value_in_range_of<number_integer_t>(number)))
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{
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{
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return sax->parse_error(chars_read, get_token_string(),
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return sax->number_integer(static_cast<number_integer_t>(-1) - static_cast<number_integer_t>(number));
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parse_error::create(112, chars_read,
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exception_message(input_format_t::cbor, "negative integer overflow", "value"), nullptr));
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}
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}
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return sax->number_integer(static_cast<number_integer_t>(-1) - static_cast<number_integer_t>(number));
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// like the lexer does for JSON text, store a value too small for
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// number_integer_t as number_float_t; compute it as long double so
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// that emit_float sees a finite value and can detect an overflow of
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// number_float_t
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return emit_float(input_format_t::cbor, static_cast<long double>(-1) - static_cast<long double>(number));
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}
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}
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||||||
/*!
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/*!
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@@ -702,25 +707,25 @@ class binary_reader
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case 0x18: // Unsigned integer (one-byte uint8_t follows)
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case 0x18: // Unsigned integer (one-byte uint8_t follows)
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{
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{
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std::uint8_t number{};
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std::uint8_t number{};
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return get_number(input_format_t::cbor, number) && sax->number_unsigned(number);
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return get_number(input_format_t::cbor, number) && emit_unsigned(input_format_t::cbor, number);
|
||||||
}
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}
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||||||
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||||||
case 0x19: // Unsigned integer (two-byte uint16_t follows)
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case 0x19: // Unsigned integer (two-byte uint16_t follows)
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||||||
{
|
{
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||||||
std::uint16_t number{};
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std::uint16_t number{};
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||||||
return get_number(input_format_t::cbor, number) && sax->number_unsigned(number);
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return get_number(input_format_t::cbor, number) && emit_unsigned(input_format_t::cbor, number);
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||||||
}
|
}
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||||||
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||||||
case 0x1A: // Unsigned integer (four-byte uint32_t follows)
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case 0x1A: // Unsigned integer (four-byte uint32_t follows)
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||||||
{
|
{
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||||||
std::uint32_t number{};
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std::uint32_t number{};
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||||||
return get_number(input_format_t::cbor, number) && sax->number_unsigned(number);
|
return get_number(input_format_t::cbor, number) && emit_unsigned(input_format_t::cbor, number);
|
||||||
}
|
}
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||||||
|
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||||||
case 0x1B: // Unsigned integer (eight-byte uint64_t follows)
|
case 0x1B: // Unsigned integer (eight-byte uint64_t follows)
|
||||||
{
|
{
|
||||||
std::uint64_t number{};
|
std::uint64_t number{};
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||||||
return get_number(input_format_t::cbor, number) && sax->number_unsigned(number);
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return get_number(input_format_t::cbor, number) && emit_unsigned(input_format_t::cbor, number);
|
||||||
}
|
}
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||||||
|
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||||||
// Negative integer -1-0x00..-1-0x17 (-1..-24)
|
// Negative integer -1-0x00..-1-0x17 (-1..-24)
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@@ -1165,13 +1170,13 @@ class binary_reader
|
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case 0xFA: // Single-Precision Float (four-byte IEEE 754)
|
case 0xFA: // Single-Precision Float (four-byte IEEE 754)
|
||||||
{
|
{
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||||||
float number{};
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float number{};
|
||||||
return get_number(input_format_t::cbor, number) && sax->number_float(static_cast<number_float_t>(number), "");
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return get_number(input_format_t::cbor, number) && emit_float(input_format_t::cbor, number);
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}
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}
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case 0xFB: // Double-Precision Float (eight-byte IEEE 754)
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case 0xFB: // Double-Precision Float (eight-byte IEEE 754)
|
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{
|
{
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||||||
double number{};
|
double number{};
|
||||||
return get_number(input_format_t::cbor, number) && sax->number_float(static_cast<number_float_t>(number), "");
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return get_number(input_format_t::cbor, number) && emit_float(input_format_t::cbor, number);
|
||||||
}
|
}
|
||||||
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||||||
default: // anything else (0xFF is handled inside the other types)
|
default: // anything else (0xFF is handled inside the other types)
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@@ -1861,61 +1866,61 @@ class binary_reader
|
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case 0xCA: // float 32
|
case 0xCA: // float 32
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||||||
{
|
{
|
||||||
float number{};
|
float number{};
|
||||||
return get_number(input_format_t::msgpack, number) && sax->number_float(static_cast<number_float_t>(number), "");
|
return get_number(input_format_t::msgpack, number) && emit_float(input_format_t::msgpack, number);
|
||||||
}
|
}
|
||||||
|
|
||||||
case 0xCB: // float 64
|
case 0xCB: // float 64
|
||||||
{
|
{
|
||||||
double number{};
|
double number{};
|
||||||
return get_number(input_format_t::msgpack, number) && sax->number_float(static_cast<number_float_t>(number), "");
|
return get_number(input_format_t::msgpack, number) && emit_float(input_format_t::msgpack, number);
|
||||||
}
|
}
|
||||||
|
|
||||||
case 0xCC: // uint 8
|
case 0xCC: // uint 8
|
||||||
{
|
{
|
||||||
std::uint8_t number{};
|
std::uint8_t number{};
|
||||||
return get_number(input_format_t::msgpack, number) && sax->number_unsigned(number);
|
return get_number(input_format_t::msgpack, number) && emit_unsigned(input_format_t::msgpack, number);
|
||||||
}
|
}
|
||||||
|
|
||||||
case 0xCD: // uint 16
|
case 0xCD: // uint 16
|
||||||
{
|
{
|
||||||
std::uint16_t number{};
|
std::uint16_t number{};
|
||||||
return get_number(input_format_t::msgpack, number) && sax->number_unsigned(number);
|
return get_number(input_format_t::msgpack, number) && emit_unsigned(input_format_t::msgpack, number);
|
||||||
}
|
}
|
||||||
|
|
||||||
case 0xCE: // uint 32
|
case 0xCE: // uint 32
|
||||||
{
|
{
|
||||||
std::uint32_t number{};
|
std::uint32_t number{};
|
||||||
return get_number(input_format_t::msgpack, number) && sax->number_unsigned(number);
|
return get_number(input_format_t::msgpack, number) && emit_unsigned(input_format_t::msgpack, number);
|
||||||
}
|
}
|
||||||
|
|
||||||
case 0xCF: // uint 64
|
case 0xCF: // uint 64
|
||||||
{
|
{
|
||||||
std::uint64_t number{};
|
std::uint64_t number{};
|
||||||
return get_number(input_format_t::msgpack, number) && sax->number_unsigned(number);
|
return get_number(input_format_t::msgpack, number) && emit_unsigned(input_format_t::msgpack, number);
|
||||||
}
|
}
|
||||||
|
|
||||||
case 0xD0: // int 8
|
case 0xD0: // int 8
|
||||||
{
|
{
|
||||||
std::int8_t number{};
|
std::int8_t number{};
|
||||||
return get_number(input_format_t::msgpack, number) && sax->number_integer(number);
|
return get_number(input_format_t::msgpack, number) && emit_signed(input_format_t::msgpack, number);
|
||||||
}
|
}
|
||||||
|
|
||||||
case 0xD1: // int 16
|
case 0xD1: // int 16
|
||||||
{
|
{
|
||||||
std::int16_t number{};
|
std::int16_t number{};
|
||||||
return get_number(input_format_t::msgpack, number) && sax->number_integer(number);
|
return get_number(input_format_t::msgpack, number) && emit_signed(input_format_t::msgpack, number);
|
||||||
}
|
}
|
||||||
|
|
||||||
case 0xD2: // int 32
|
case 0xD2: // int 32
|
||||||
{
|
{
|
||||||
std::int32_t number{};
|
std::int32_t number{};
|
||||||
return get_number(input_format_t::msgpack, number) && sax->number_integer(number);
|
return get_number(input_format_t::msgpack, number) && emit_signed(input_format_t::msgpack, number);
|
||||||
}
|
}
|
||||||
|
|
||||||
case 0xD3: // int 64
|
case 0xD3: // int 64
|
||||||
{
|
{
|
||||||
std::int64_t number{};
|
std::int64_t number{};
|
||||||
return get_number(input_format_t::msgpack, number) && sax->number_integer(number);
|
return get_number(input_format_t::msgpack, number) && emit_signed(input_format_t::msgpack, number);
|
||||||
}
|
}
|
||||||
|
|
||||||
case 0xDC: // array 16
|
case 0xDC: // array 16
|
||||||
@@ -2756,7 +2761,7 @@ class binary_reader
|
|||||||
{
|
{
|
||||||
return sax->parse_error(chars_read, get_token_string(), out_of_range::create(408, exception_message(input_format, "excessive ndarray size caused overflow", "size"), nullptr));
|
return sax->parse_error(chars_read, get_token_string(), out_of_range::create(408, exception_message(input_format, "excessive ndarray size caused overflow", "size"), nullptr));
|
||||||
}
|
}
|
||||||
if (JSON_HEDLEY_UNLIKELY(!sax->number_unsigned(static_cast<number_unsigned_t>(i))))
|
if (JSON_HEDLEY_UNLIKELY(!emit_unsigned(input_format, i)))
|
||||||
{
|
{
|
||||||
return false;
|
return false;
|
||||||
}
|
}
|
||||||
@@ -2888,37 +2893,37 @@ class binary_reader
|
|||||||
break;
|
break;
|
||||||
}
|
}
|
||||||
std::uint8_t number{};
|
std::uint8_t number{};
|
||||||
return get_number(input_format, number) && sax->number_unsigned(number);
|
return get_number(input_format, number) && emit_unsigned(input_format, number);
|
||||||
}
|
}
|
||||||
|
|
||||||
case 'U':
|
case 'U':
|
||||||
{
|
{
|
||||||
std::uint8_t number{};
|
std::uint8_t number{};
|
||||||
return get_number(input_format, number) && sax->number_unsigned(number);
|
return get_number(input_format, number) && emit_unsigned(input_format, number);
|
||||||
}
|
}
|
||||||
|
|
||||||
case 'i':
|
case 'i':
|
||||||
{
|
{
|
||||||
std::int8_t number{};
|
std::int8_t number{};
|
||||||
return get_number(input_format, number) && sax->number_integer(number);
|
return get_number(input_format, number) && emit_signed(input_format, number);
|
||||||
}
|
}
|
||||||
|
|
||||||
case 'I':
|
case 'I':
|
||||||
{
|
{
|
||||||
std::int16_t number{};
|
std::int16_t number{};
|
||||||
return get_number(input_format, number) && sax->number_integer(number);
|
return get_number(input_format, number) && emit_signed(input_format, number);
|
||||||
}
|
}
|
||||||
|
|
||||||
case 'l':
|
case 'l':
|
||||||
{
|
{
|
||||||
std::int32_t number{};
|
std::int32_t number{};
|
||||||
return get_number(input_format, number) && sax->number_integer(number);
|
return get_number(input_format, number) && emit_signed(input_format, number);
|
||||||
}
|
}
|
||||||
|
|
||||||
case 'L':
|
case 'L':
|
||||||
{
|
{
|
||||||
std::int64_t number{};
|
std::int64_t number{};
|
||||||
return get_number(input_format, number) && sax->number_integer(number);
|
return get_number(input_format, number) && emit_signed(input_format, number);
|
||||||
}
|
}
|
||||||
|
|
||||||
case 'u':
|
case 'u':
|
||||||
@@ -2928,7 +2933,7 @@ class binary_reader
|
|||||||
break;
|
break;
|
||||||
}
|
}
|
||||||
std::uint16_t number{};
|
std::uint16_t number{};
|
||||||
return get_number(input_format, number) && sax->number_unsigned(number);
|
return get_number(input_format, number) && emit_unsigned(input_format, number);
|
||||||
}
|
}
|
||||||
|
|
||||||
case 'm':
|
case 'm':
|
||||||
@@ -2938,7 +2943,7 @@ class binary_reader
|
|||||||
break;
|
break;
|
||||||
}
|
}
|
||||||
std::uint32_t number{};
|
std::uint32_t number{};
|
||||||
return get_number(input_format, number) && sax->number_unsigned(number);
|
return get_number(input_format, number) && emit_unsigned(input_format, number);
|
||||||
}
|
}
|
||||||
|
|
||||||
case 'M':
|
case 'M':
|
||||||
@@ -2948,7 +2953,7 @@ class binary_reader
|
|||||||
break;
|
break;
|
||||||
}
|
}
|
||||||
std::uint64_t number{};
|
std::uint64_t number{};
|
||||||
return get_number(input_format, number) && sax->number_unsigned(number);
|
return get_number(input_format, number) && emit_unsigned(input_format, number);
|
||||||
}
|
}
|
||||||
|
|
||||||
case 'h':
|
case 'h':
|
||||||
@@ -3006,13 +3011,13 @@ class binary_reader
|
|||||||
case 'd':
|
case 'd':
|
||||||
{
|
{
|
||||||
float number{};
|
float number{};
|
||||||
return get_number(input_format, number) && sax->number_float(static_cast<number_float_t>(number), "");
|
return get_number(input_format, number) && emit_float(input_format, number);
|
||||||
}
|
}
|
||||||
|
|
||||||
case 'D':
|
case 'D':
|
||||||
{
|
{
|
||||||
double number{};
|
double number{};
|
||||||
return get_number(input_format, number) && sax->number_float(static_cast<number_float_t>(number), "");
|
return get_number(input_format, number) && emit_float(input_format, number);
|
||||||
}
|
}
|
||||||
|
|
||||||
case 'H':
|
case 'H':
|
||||||
@@ -3479,13 +3484,13 @@ class binary_reader
|
|||||||
case 0x8E: // binary32
|
case 0x8E: // binary32
|
||||||
{
|
{
|
||||||
float number{};
|
float number{};
|
||||||
return get_number(input_format_t::bon8, number) && sax->number_float(static_cast<number_float_t>(number), "");
|
return get_number(input_format_t::bon8, number) && emit_float(input_format_t::bon8, number);
|
||||||
}
|
}
|
||||||
|
|
||||||
case 0x8F: // binary64
|
case 0x8F: // binary64
|
||||||
{
|
{
|
||||||
double number{};
|
double number{};
|
||||||
return get_number(input_format_t::bon8, number) && sax->number_float(static_cast<number_float_t>(number), "");
|
return get_number(input_format_t::bon8, number) && emit_float(input_format_t::bon8, number);
|
||||||
}
|
}
|
||||||
|
|
||||||
case 0xF8:
|
case 0xF8:
|
||||||
@@ -3551,7 +3556,9 @@ class binary_reader
|
|||||||
@brief pass an integer to the SAX parser
|
@brief pass an integer to the SAX parser
|
||||||
|
|
||||||
Non-negative integers are passed as unsigned, negative integers as signed
|
Non-negative integers are passed as unsigned, negative integers as signed
|
||||||
numbers, like the other binary formats do.
|
numbers, like the other binary formats do. A value that does not fit the
|
||||||
|
number type is passed as described for @ref emit_unsigned and
|
||||||
|
@ref emit_signed.
|
||||||
|
|
||||||
@param[in] number the integer
|
@param[in] number the integer
|
||||||
@return whether the SAX parser accepted the value
|
@return whether the SAX parser accepted the value
|
||||||
@@ -3560,9 +3567,9 @@ class binary_reader
|
|||||||
{
|
{
|
||||||
if (number >= 0)
|
if (number >= 0)
|
||||||
{
|
{
|
||||||
return sax->number_unsigned(static_cast<number_unsigned_t>(number));
|
return emit_unsigned(input_format_t::bon8, static_cast<std::uint64_t>(number));
|
||||||
}
|
}
|
||||||
return sax->number_integer(static_cast<number_integer_t>(number));
|
return emit_signed(input_format_t::bon8, number);
|
||||||
}
|
}
|
||||||
|
|
||||||
/*!
|
/*!
|
||||||
@@ -3619,8 +3626,7 @@ class binary_reader
|
|||||||
value = (value << 8) | static_cast<std::int64_t>(current);
|
value = (value << 8) | static_cast<std::int64_t>(current);
|
||||||
}
|
}
|
||||||
|
|
||||||
return negative ? sax->number_integer(static_cast<number_integer_t>(-(value + offset)))
|
return emit_bon8_integer(negative ? -(value + offset) : value + offset);
|
||||||
: sax->number_unsigned(static_cast<number_unsigned_t>(value + offset));
|
|
||||||
}
|
}
|
||||||
|
|
||||||
/*!
|
/*!
|
||||||
@@ -3917,6 +3923,88 @@ class binary_reader
|
|||||||
return true;
|
return true;
|
||||||
}
|
}
|
||||||
|
|
||||||
|
/*!
|
||||||
|
@brief pass a signed integer read from the input to the SAX parser
|
||||||
|
|
||||||
|
Like the lexer does for JSON text, a value that does not fit into
|
||||||
|
number_integer_t is passed as number_unsigned_t if it is non-negative and
|
||||||
|
fits there, and as number_float_t otherwise. With the default number
|
||||||
|
types, every integer the binary formats can encode fits, so this only
|
||||||
|
matters for narrower custom number types.
|
||||||
|
|
||||||
|
@tparam NumberType a signed integer type
|
||||||
|
@param[in] format the current format (for diagnostics)
|
||||||
|
@param[in] number the integer
|
||||||
|
@return whether the SAX parser accepted the value
|
||||||
|
|
||||||
|
@throw out_of_range.406 if @a number overflows number_float_t (see
|
||||||
|
@ref emit_float)
|
||||||
|
*/
|
||||||
|
template<typename NumberType>
|
||||||
|
bool emit_signed(const input_format_t format, const NumberType number)
|
||||||
|
{
|
||||||
|
if (JSON_HEDLEY_LIKELY(value_in_range_of<number_integer_t>(number)))
|
||||||
|
{
|
||||||
|
return sax->number_integer(static_cast<number_integer_t>(number));
|
||||||
|
}
|
||||||
|
if (value_in_range_of<number_unsigned_t>(number))
|
||||||
|
{
|
||||||
|
return sax->number_unsigned(static_cast<number_unsigned_t>(number));
|
||||||
|
}
|
||||||
|
return emit_float(format, number);
|
||||||
|
}
|
||||||
|
|
||||||
|
/*!
|
||||||
|
@brief pass an unsigned integer read from the input to the SAX parser
|
||||||
|
|
||||||
|
Like the lexer does for JSON text, a value that does not fit into
|
||||||
|
number_unsigned_t is passed as number_float_t.
|
||||||
|
|
||||||
|
@tparam NumberType an unsigned integer type
|
||||||
|
@param[in] format the current format (for diagnostics)
|
||||||
|
@param[in] number the integer
|
||||||
|
@return whether the SAX parser accepted the value
|
||||||
|
|
||||||
|
@throw out_of_range.406 if @a number overflows number_float_t (see
|
||||||
|
@ref emit_float)
|
||||||
|
*/
|
||||||
|
template<typename NumberType>
|
||||||
|
bool emit_unsigned(const input_format_t format, const NumberType number)
|
||||||
|
{
|
||||||
|
if (JSON_HEDLEY_LIKELY(value_in_range_of<number_unsigned_t>(number)))
|
||||||
|
{
|
||||||
|
return sax->number_unsigned(static_cast<number_unsigned_t>(number));
|
||||||
|
}
|
||||||
|
return emit_float(format, number);
|
||||||
|
}
|
||||||
|
|
||||||
|
/*!
|
||||||
|
@brief pass a floating-point number read from the input to the SAX parser
|
||||||
|
|
||||||
|
Like the lexer does for JSON text, a finite value that overflows
|
||||||
|
number_float_t is rejected instead of silently becoming infinity. Infinity
|
||||||
|
and NaN in the input are passed on unchanged. Integers only overflow if
|
||||||
|
number_float_t cannot represent 2^64, e.g., a half-precision type.
|
||||||
|
|
||||||
|
@tparam NumberType a floating-point or integer type
|
||||||
|
@param[in] format the current format (for diagnostics)
|
||||||
|
@param[in] number the number
|
||||||
|
@return whether the SAX parser accepted the value
|
||||||
|
|
||||||
|
@throw out_of_range.406 if a finite @a number overflows number_float_t
|
||||||
|
*/
|
||||||
|
template<typename NumberType>
|
||||||
|
bool emit_float(const input_format_t format, const NumberType number)
|
||||||
|
{
|
||||||
|
const auto result = static_cast<number_float_t>(number);
|
||||||
|
if (JSON_HEDLEY_UNLIKELY(std::isfinite(number) && !std::isfinite(result)))
|
||||||
|
{
|
||||||
|
return sax->parse_error(chars_read, get_token_string(),
|
||||||
|
out_of_range::create(406, exception_message(format, "number overflow", "value"), nullptr));
|
||||||
|
}
|
||||||
|
return sax->number_float(result, "");
|
||||||
|
}
|
||||||
|
|
||||||
/*!
|
/*!
|
||||||
@brief create a string by reading characters from the input
|
@brief create a string by reading characters from the input
|
||||||
|
|
||||||
|
|||||||
@@ -13294,7 +13294,7 @@ class binary_reader
|
|||||||
case 0x01: // double
|
case 0x01: // double
|
||||||
{
|
{
|
||||||
double number{};
|
double number{};
|
||||||
return get_number<double, true>(input_format_t::bson, number) && sax->number_float(static_cast<number_float_t>(number), "");
|
return get_number<double, true>(input_format_t::bson, number) && emit_float(input_format_t::bson, number);
|
||||||
}
|
}
|
||||||
|
|
||||||
case 0x02: // string
|
case 0x02: // string
|
||||||
@@ -13335,19 +13335,19 @@ class binary_reader
|
|||||||
case 0x10: // int32
|
case 0x10: // int32
|
||||||
{
|
{
|
||||||
std::int32_t value{};
|
std::int32_t value{};
|
||||||
return get_number<std::int32_t, true>(input_format_t::bson, value) && sax->number_integer(value);
|
return get_number<std::int32_t, true>(input_format_t::bson, value) && emit_signed(input_format_t::bson, value);
|
||||||
}
|
}
|
||||||
|
|
||||||
case 0x12: // int64
|
case 0x12: // int64
|
||||||
{
|
{
|
||||||
std::int64_t value{};
|
std::int64_t value{};
|
||||||
return get_number<std::int64_t, true>(input_format_t::bson, value) && sax->number_integer(value);
|
return get_number<std::int64_t, true>(input_format_t::bson, value) && emit_signed(input_format_t::bson, value);
|
||||||
}
|
}
|
||||||
|
|
||||||
case 0x11: // uint64
|
case 0x11: // uint64
|
||||||
{
|
{
|
||||||
std::uint64_t value{};
|
std::uint64_t value{};
|
||||||
return get_number<std::uint64_t, true>(input_format_t::bson, value) && sax->number_unsigned(value);
|
return get_number<std::uint64_t, true>(input_format_t::bson, value) && emit_unsigned(input_format_t::bson, value);
|
||||||
}
|
}
|
||||||
|
|
||||||
default: // anything else is not supported (yet)
|
default: // anything else is not supported (yet)
|
||||||
@@ -13373,14 +13373,19 @@ class binary_reader
|
|||||||
{
|
{
|
||||||
return false;
|
return false;
|
||||||
}
|
}
|
||||||
const auto max_val = static_cast<NumberType>((std::numeric_limits<number_integer_t>::max)());
|
|
||||||
if (number > max_val)
|
// the value is -1 - number, which fits into number_integer_t
|
||||||
|
// whenever number does
|
||||||
|
if (JSON_HEDLEY_LIKELY(value_in_range_of<number_integer_t>(number)))
|
||||||
{
|
{
|
||||||
return sax->parse_error(chars_read, get_token_string(),
|
return sax->number_integer(static_cast<number_integer_t>(-1) - static_cast<number_integer_t>(number));
|
||||||
parse_error::create(112, chars_read,
|
|
||||||
exception_message(input_format_t::cbor, "negative integer overflow", "value"), nullptr));
|
|
||||||
}
|
}
|
||||||
return sax->number_integer(static_cast<number_integer_t>(-1) - static_cast<number_integer_t>(number));
|
|
||||||
|
// like the lexer does for JSON text, store a value too small for
|
||||||
|
// number_integer_t as number_float_t; compute it as long double so
|
||||||
|
// that emit_float sees a finite value and can detect an overflow of
|
||||||
|
// number_float_t
|
||||||
|
return emit_float(input_format_t::cbor, static_cast<long double>(-1) - static_cast<long double>(number));
|
||||||
}
|
}
|
||||||
|
|
||||||
/*!
|
/*!
|
||||||
@@ -13437,25 +13442,25 @@ class binary_reader
|
|||||||
case 0x18: // Unsigned integer (one-byte uint8_t follows)
|
case 0x18: // Unsigned integer (one-byte uint8_t follows)
|
||||||
{
|
{
|
||||||
std::uint8_t number{};
|
std::uint8_t number{};
|
||||||
return get_number(input_format_t::cbor, number) && sax->number_unsigned(number);
|
return get_number(input_format_t::cbor, number) && emit_unsigned(input_format_t::cbor, number);
|
||||||
}
|
}
|
||||||
|
|
||||||
case 0x19: // Unsigned integer (two-byte uint16_t follows)
|
case 0x19: // Unsigned integer (two-byte uint16_t follows)
|
||||||
{
|
{
|
||||||
std::uint16_t number{};
|
std::uint16_t number{};
|
||||||
return get_number(input_format_t::cbor, number) && sax->number_unsigned(number);
|
return get_number(input_format_t::cbor, number) && emit_unsigned(input_format_t::cbor, number);
|
||||||
}
|
}
|
||||||
|
|
||||||
case 0x1A: // Unsigned integer (four-byte uint32_t follows)
|
case 0x1A: // Unsigned integer (four-byte uint32_t follows)
|
||||||
{
|
{
|
||||||
std::uint32_t number{};
|
std::uint32_t number{};
|
||||||
return get_number(input_format_t::cbor, number) && sax->number_unsigned(number);
|
return get_number(input_format_t::cbor, number) && emit_unsigned(input_format_t::cbor, number);
|
||||||
}
|
}
|
||||||
|
|
||||||
case 0x1B: // Unsigned integer (eight-byte uint64_t follows)
|
case 0x1B: // Unsigned integer (eight-byte uint64_t follows)
|
||||||
{
|
{
|
||||||
std::uint64_t number{};
|
std::uint64_t number{};
|
||||||
return get_number(input_format_t::cbor, number) && sax->number_unsigned(number);
|
return get_number(input_format_t::cbor, number) && emit_unsigned(input_format_t::cbor, number);
|
||||||
}
|
}
|
||||||
|
|
||||||
// Negative integer -1-0x00..-1-0x17 (-1..-24)
|
// Negative integer -1-0x00..-1-0x17 (-1..-24)
|
||||||
@@ -13900,13 +13905,13 @@ class binary_reader
|
|||||||
case 0xFA: // Single-Precision Float (four-byte IEEE 754)
|
case 0xFA: // Single-Precision Float (four-byte IEEE 754)
|
||||||
{
|
{
|
||||||
float number{};
|
float number{};
|
||||||
return get_number(input_format_t::cbor, number) && sax->number_float(static_cast<number_float_t>(number), "");
|
return get_number(input_format_t::cbor, number) && emit_float(input_format_t::cbor, number);
|
||||||
}
|
}
|
||||||
|
|
||||||
case 0xFB: // Double-Precision Float (eight-byte IEEE 754)
|
case 0xFB: // Double-Precision Float (eight-byte IEEE 754)
|
||||||
{
|
{
|
||||||
double number{};
|
double number{};
|
||||||
return get_number(input_format_t::cbor, number) && sax->number_float(static_cast<number_float_t>(number), "");
|
return get_number(input_format_t::cbor, number) && emit_float(input_format_t::cbor, number);
|
||||||
}
|
}
|
||||||
|
|
||||||
default: // anything else (0xFF is handled inside the other types)
|
default: // anything else (0xFF is handled inside the other types)
|
||||||
@@ -14596,61 +14601,61 @@ class binary_reader
|
|||||||
case 0xCA: // float 32
|
case 0xCA: // float 32
|
||||||
{
|
{
|
||||||
float number{};
|
float number{};
|
||||||
return get_number(input_format_t::msgpack, number) && sax->number_float(static_cast<number_float_t>(number), "");
|
return get_number(input_format_t::msgpack, number) && emit_float(input_format_t::msgpack, number);
|
||||||
}
|
}
|
||||||
|
|
||||||
case 0xCB: // float 64
|
case 0xCB: // float 64
|
||||||
{
|
{
|
||||||
double number{};
|
double number{};
|
||||||
return get_number(input_format_t::msgpack, number) && sax->number_float(static_cast<number_float_t>(number), "");
|
return get_number(input_format_t::msgpack, number) && emit_float(input_format_t::msgpack, number);
|
||||||
}
|
}
|
||||||
|
|
||||||
case 0xCC: // uint 8
|
case 0xCC: // uint 8
|
||||||
{
|
{
|
||||||
std::uint8_t number{};
|
std::uint8_t number{};
|
||||||
return get_number(input_format_t::msgpack, number) && sax->number_unsigned(number);
|
return get_number(input_format_t::msgpack, number) && emit_unsigned(input_format_t::msgpack, number);
|
||||||
}
|
}
|
||||||
|
|
||||||
case 0xCD: // uint 16
|
case 0xCD: // uint 16
|
||||||
{
|
{
|
||||||
std::uint16_t number{};
|
std::uint16_t number{};
|
||||||
return get_number(input_format_t::msgpack, number) && sax->number_unsigned(number);
|
return get_number(input_format_t::msgpack, number) && emit_unsigned(input_format_t::msgpack, number);
|
||||||
}
|
}
|
||||||
|
|
||||||
case 0xCE: // uint 32
|
case 0xCE: // uint 32
|
||||||
{
|
{
|
||||||
std::uint32_t number{};
|
std::uint32_t number{};
|
||||||
return get_number(input_format_t::msgpack, number) && sax->number_unsigned(number);
|
return get_number(input_format_t::msgpack, number) && emit_unsigned(input_format_t::msgpack, number);
|
||||||
}
|
}
|
||||||
|
|
||||||
case 0xCF: // uint 64
|
case 0xCF: // uint 64
|
||||||
{
|
{
|
||||||
std::uint64_t number{};
|
std::uint64_t number{};
|
||||||
return get_number(input_format_t::msgpack, number) && sax->number_unsigned(number);
|
return get_number(input_format_t::msgpack, number) && emit_unsigned(input_format_t::msgpack, number);
|
||||||
}
|
}
|
||||||
|
|
||||||
case 0xD0: // int 8
|
case 0xD0: // int 8
|
||||||
{
|
{
|
||||||
std::int8_t number{};
|
std::int8_t number{};
|
||||||
return get_number(input_format_t::msgpack, number) && sax->number_integer(number);
|
return get_number(input_format_t::msgpack, number) && emit_signed(input_format_t::msgpack, number);
|
||||||
}
|
}
|
||||||
|
|
||||||
case 0xD1: // int 16
|
case 0xD1: // int 16
|
||||||
{
|
{
|
||||||
std::int16_t number{};
|
std::int16_t number{};
|
||||||
return get_number(input_format_t::msgpack, number) && sax->number_integer(number);
|
return get_number(input_format_t::msgpack, number) && emit_signed(input_format_t::msgpack, number);
|
||||||
}
|
}
|
||||||
|
|
||||||
case 0xD2: // int 32
|
case 0xD2: // int 32
|
||||||
{
|
{
|
||||||
std::int32_t number{};
|
std::int32_t number{};
|
||||||
return get_number(input_format_t::msgpack, number) && sax->number_integer(number);
|
return get_number(input_format_t::msgpack, number) && emit_signed(input_format_t::msgpack, number);
|
||||||
}
|
}
|
||||||
|
|
||||||
case 0xD3: // int 64
|
case 0xD3: // int 64
|
||||||
{
|
{
|
||||||
std::int64_t number{};
|
std::int64_t number{};
|
||||||
return get_number(input_format_t::msgpack, number) && sax->number_integer(number);
|
return get_number(input_format_t::msgpack, number) && emit_signed(input_format_t::msgpack, number);
|
||||||
}
|
}
|
||||||
|
|
||||||
case 0xDC: // array 16
|
case 0xDC: // array 16
|
||||||
@@ -15491,7 +15496,7 @@ class binary_reader
|
|||||||
{
|
{
|
||||||
return sax->parse_error(chars_read, get_token_string(), out_of_range::create(408, exception_message(input_format, "excessive ndarray size caused overflow", "size"), nullptr));
|
return sax->parse_error(chars_read, get_token_string(), out_of_range::create(408, exception_message(input_format, "excessive ndarray size caused overflow", "size"), nullptr));
|
||||||
}
|
}
|
||||||
if (JSON_HEDLEY_UNLIKELY(!sax->number_unsigned(static_cast<number_unsigned_t>(i))))
|
if (JSON_HEDLEY_UNLIKELY(!emit_unsigned(input_format, i)))
|
||||||
{
|
{
|
||||||
return false;
|
return false;
|
||||||
}
|
}
|
||||||
@@ -15623,37 +15628,37 @@ class binary_reader
|
|||||||
break;
|
break;
|
||||||
}
|
}
|
||||||
std::uint8_t number{};
|
std::uint8_t number{};
|
||||||
return get_number(input_format, number) && sax->number_unsigned(number);
|
return get_number(input_format, number) && emit_unsigned(input_format, number);
|
||||||
}
|
}
|
||||||
|
|
||||||
case 'U':
|
case 'U':
|
||||||
{
|
{
|
||||||
std::uint8_t number{};
|
std::uint8_t number{};
|
||||||
return get_number(input_format, number) && sax->number_unsigned(number);
|
return get_number(input_format, number) && emit_unsigned(input_format, number);
|
||||||
}
|
}
|
||||||
|
|
||||||
case 'i':
|
case 'i':
|
||||||
{
|
{
|
||||||
std::int8_t number{};
|
std::int8_t number{};
|
||||||
return get_number(input_format, number) && sax->number_integer(number);
|
return get_number(input_format, number) && emit_signed(input_format, number);
|
||||||
}
|
}
|
||||||
|
|
||||||
case 'I':
|
case 'I':
|
||||||
{
|
{
|
||||||
std::int16_t number{};
|
std::int16_t number{};
|
||||||
return get_number(input_format, number) && sax->number_integer(number);
|
return get_number(input_format, number) && emit_signed(input_format, number);
|
||||||
}
|
}
|
||||||
|
|
||||||
case 'l':
|
case 'l':
|
||||||
{
|
{
|
||||||
std::int32_t number{};
|
std::int32_t number{};
|
||||||
return get_number(input_format, number) && sax->number_integer(number);
|
return get_number(input_format, number) && emit_signed(input_format, number);
|
||||||
}
|
}
|
||||||
|
|
||||||
case 'L':
|
case 'L':
|
||||||
{
|
{
|
||||||
std::int64_t number{};
|
std::int64_t number{};
|
||||||
return get_number(input_format, number) && sax->number_integer(number);
|
return get_number(input_format, number) && emit_signed(input_format, number);
|
||||||
}
|
}
|
||||||
|
|
||||||
case 'u':
|
case 'u':
|
||||||
@@ -15663,7 +15668,7 @@ class binary_reader
|
|||||||
break;
|
break;
|
||||||
}
|
}
|
||||||
std::uint16_t number{};
|
std::uint16_t number{};
|
||||||
return get_number(input_format, number) && sax->number_unsigned(number);
|
return get_number(input_format, number) && emit_unsigned(input_format, number);
|
||||||
}
|
}
|
||||||
|
|
||||||
case 'm':
|
case 'm':
|
||||||
@@ -15673,7 +15678,7 @@ class binary_reader
|
|||||||
break;
|
break;
|
||||||
}
|
}
|
||||||
std::uint32_t number{};
|
std::uint32_t number{};
|
||||||
return get_number(input_format, number) && sax->number_unsigned(number);
|
return get_number(input_format, number) && emit_unsigned(input_format, number);
|
||||||
}
|
}
|
||||||
|
|
||||||
case 'M':
|
case 'M':
|
||||||
@@ -15683,7 +15688,7 @@ class binary_reader
|
|||||||
break;
|
break;
|
||||||
}
|
}
|
||||||
std::uint64_t number{};
|
std::uint64_t number{};
|
||||||
return get_number(input_format, number) && sax->number_unsigned(number);
|
return get_number(input_format, number) && emit_unsigned(input_format, number);
|
||||||
}
|
}
|
||||||
|
|
||||||
case 'h':
|
case 'h':
|
||||||
@@ -15741,13 +15746,13 @@ class binary_reader
|
|||||||
case 'd':
|
case 'd':
|
||||||
{
|
{
|
||||||
float number{};
|
float number{};
|
||||||
return get_number(input_format, number) && sax->number_float(static_cast<number_float_t>(number), "");
|
return get_number(input_format, number) && emit_float(input_format, number);
|
||||||
}
|
}
|
||||||
|
|
||||||
case 'D':
|
case 'D':
|
||||||
{
|
{
|
||||||
double number{};
|
double number{};
|
||||||
return get_number(input_format, number) && sax->number_float(static_cast<number_float_t>(number), "");
|
return get_number(input_format, number) && emit_float(input_format, number);
|
||||||
}
|
}
|
||||||
|
|
||||||
case 'H':
|
case 'H':
|
||||||
@@ -16214,13 +16219,13 @@ class binary_reader
|
|||||||
case 0x8E: // binary32
|
case 0x8E: // binary32
|
||||||
{
|
{
|
||||||
float number{};
|
float number{};
|
||||||
return get_number(input_format_t::bon8, number) && sax->number_float(static_cast<number_float_t>(number), "");
|
return get_number(input_format_t::bon8, number) && emit_float(input_format_t::bon8, number);
|
||||||
}
|
}
|
||||||
|
|
||||||
case 0x8F: // binary64
|
case 0x8F: // binary64
|
||||||
{
|
{
|
||||||
double number{};
|
double number{};
|
||||||
return get_number(input_format_t::bon8, number) && sax->number_float(static_cast<number_float_t>(number), "");
|
return get_number(input_format_t::bon8, number) && emit_float(input_format_t::bon8, number);
|
||||||
}
|
}
|
||||||
|
|
||||||
case 0xF8:
|
case 0xF8:
|
||||||
@@ -16286,7 +16291,9 @@ class binary_reader
|
|||||||
@brief pass an integer to the SAX parser
|
@brief pass an integer to the SAX parser
|
||||||
|
|
||||||
Non-negative integers are passed as unsigned, negative integers as signed
|
Non-negative integers are passed as unsigned, negative integers as signed
|
||||||
numbers, like the other binary formats do.
|
numbers, like the other binary formats do. A value that does not fit the
|
||||||
|
number type is passed as described for @ref emit_unsigned and
|
||||||
|
@ref emit_signed.
|
||||||
|
|
||||||
@param[in] number the integer
|
@param[in] number the integer
|
||||||
@return whether the SAX parser accepted the value
|
@return whether the SAX parser accepted the value
|
||||||
@@ -16295,9 +16302,9 @@ class binary_reader
|
|||||||
{
|
{
|
||||||
if (number >= 0)
|
if (number >= 0)
|
||||||
{
|
{
|
||||||
return sax->number_unsigned(static_cast<number_unsigned_t>(number));
|
return emit_unsigned(input_format_t::bon8, static_cast<std::uint64_t>(number));
|
||||||
}
|
}
|
||||||
return sax->number_integer(static_cast<number_integer_t>(number));
|
return emit_signed(input_format_t::bon8, number);
|
||||||
}
|
}
|
||||||
|
|
||||||
/*!
|
/*!
|
||||||
@@ -16354,8 +16361,7 @@ class binary_reader
|
|||||||
value = (value << 8) | static_cast<std::int64_t>(current);
|
value = (value << 8) | static_cast<std::int64_t>(current);
|
||||||
}
|
}
|
||||||
|
|
||||||
return negative ? sax->number_integer(static_cast<number_integer_t>(-(value + offset)))
|
return emit_bon8_integer(negative ? -(value + offset) : value + offset);
|
||||||
: sax->number_unsigned(static_cast<number_unsigned_t>(value + offset));
|
|
||||||
}
|
}
|
||||||
|
|
||||||
/*!
|
/*!
|
||||||
@@ -16652,6 +16658,88 @@ class binary_reader
|
|||||||
return true;
|
return true;
|
||||||
}
|
}
|
||||||
|
|
||||||
|
/*!
|
||||||
|
@brief pass a signed integer read from the input to the SAX parser
|
||||||
|
|
||||||
|
Like the lexer does for JSON text, a value that does not fit into
|
||||||
|
number_integer_t is passed as number_unsigned_t if it is non-negative and
|
||||||
|
fits there, and as number_float_t otherwise. With the default number
|
||||||
|
types, every integer the binary formats can encode fits, so this only
|
||||||
|
matters for narrower custom number types.
|
||||||
|
|
||||||
|
@tparam NumberType a signed integer type
|
||||||
|
@param[in] format the current format (for diagnostics)
|
||||||
|
@param[in] number the integer
|
||||||
|
@return whether the SAX parser accepted the value
|
||||||
|
|
||||||
|
@throw out_of_range.406 if @a number overflows number_float_t (see
|
||||||
|
@ref emit_float)
|
||||||
|
*/
|
||||||
|
template<typename NumberType>
|
||||||
|
bool emit_signed(const input_format_t format, const NumberType number)
|
||||||
|
{
|
||||||
|
if (JSON_HEDLEY_LIKELY(value_in_range_of<number_integer_t>(number)))
|
||||||
|
{
|
||||||
|
return sax->number_integer(static_cast<number_integer_t>(number));
|
||||||
|
}
|
||||||
|
if (value_in_range_of<number_unsigned_t>(number))
|
||||||
|
{
|
||||||
|
return sax->number_unsigned(static_cast<number_unsigned_t>(number));
|
||||||
|
}
|
||||||
|
return emit_float(format, number);
|
||||||
|
}
|
||||||
|
|
||||||
|
/*!
|
||||||
|
@brief pass an unsigned integer read from the input to the SAX parser
|
||||||
|
|
||||||
|
Like the lexer does for JSON text, a value that does not fit into
|
||||||
|
number_unsigned_t is passed as number_float_t.
|
||||||
|
|
||||||
|
@tparam NumberType an unsigned integer type
|
||||||
|
@param[in] format the current format (for diagnostics)
|
||||||
|
@param[in] number the integer
|
||||||
|
@return whether the SAX parser accepted the value
|
||||||
|
|
||||||
|
@throw out_of_range.406 if @a number overflows number_float_t (see
|
||||||
|
@ref emit_float)
|
||||||
|
*/
|
||||||
|
template<typename NumberType>
|
||||||
|
bool emit_unsigned(const input_format_t format, const NumberType number)
|
||||||
|
{
|
||||||
|
if (JSON_HEDLEY_LIKELY(value_in_range_of<number_unsigned_t>(number)))
|
||||||
|
{
|
||||||
|
return sax->number_unsigned(static_cast<number_unsigned_t>(number));
|
||||||
|
}
|
||||||
|
return emit_float(format, number);
|
||||||
|
}
|
||||||
|
|
||||||
|
/*!
|
||||||
|
@brief pass a floating-point number read from the input to the SAX parser
|
||||||
|
|
||||||
|
Like the lexer does for JSON text, a finite value that overflows
|
||||||
|
number_float_t is rejected instead of silently becoming infinity. Infinity
|
||||||
|
and NaN in the input are passed on unchanged. Integers only overflow if
|
||||||
|
number_float_t cannot represent 2^64, e.g., a half-precision type.
|
||||||
|
|
||||||
|
@tparam NumberType a floating-point or integer type
|
||||||
|
@param[in] format the current format (for diagnostics)
|
||||||
|
@param[in] number the number
|
||||||
|
@return whether the SAX parser accepted the value
|
||||||
|
|
||||||
|
@throw out_of_range.406 if a finite @a number overflows number_float_t
|
||||||
|
*/
|
||||||
|
template<typename NumberType>
|
||||||
|
bool emit_float(const input_format_t format, const NumberType number)
|
||||||
|
{
|
||||||
|
const auto result = static_cast<number_float_t>(number);
|
||||||
|
if (JSON_HEDLEY_UNLIKELY(std::isfinite(number) && !std::isfinite(result)))
|
||||||
|
{
|
||||||
|
return sax->parse_error(chars_read, get_token_string(),
|
||||||
|
out_of_range::create(406, exception_message(format, "number overflow", "value"), nullptr));
|
||||||
|
}
|
||||||
|
return sax->number_float(result, "");
|
||||||
|
}
|
||||||
|
|
||||||
/*!
|
/*!
|
||||||
@brief create a string by reading characters from the input
|
@brief create a string by reading characters from the input
|
||||||
|
|
||||||
|
|||||||
@@ -11,7 +11,12 @@
|
|||||||
#include <nlohmann/json.hpp>
|
#include <nlohmann/json.hpp>
|
||||||
using nlohmann::json;
|
using nlohmann::json;
|
||||||
|
|
||||||
|
#include <cmath>
|
||||||
#include <fstream>
|
#include <fstream>
|
||||||
|
#include <limits>
|
||||||
|
#include <map>
|
||||||
|
#include <string>
|
||||||
|
#include <vector>
|
||||||
#include "make_test_data_available.hpp"
|
#include "make_test_data_available.hpp"
|
||||||
|
|
||||||
TEST_CASE("Binary Formats" * doctest::skip())
|
TEST_CASE("Binary Formats" * doctest::skip())
|
||||||
@@ -224,3 +229,139 @@ TEST_CASE("Binary Formats" * doctest::skip())
|
|||||||
CHECK((100.0 * double(ubjson_3_size) / double(json_size)) == Approx(89.450));
|
CHECK((100.0 * double(ubjson_3_size) / double(json_size)) == Approx(89.450));
|
||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
|
namespace
|
||||||
|
{
|
||||||
|
// the binary formats as function pointers for "Binary formats with narrow number types";
|
||||||
|
// named functions rather than lambdas, because clang 3.5 cannot convert a lambda
|
||||||
|
// to a function pointer in the braced initializer of the format table
|
||||||
|
using narrow_json = nlohmann::basic_json<std::map, std::vector, std::string, bool, std::int32_t, std::uint32_t, float>;
|
||||||
|
using bytes = std::vector<std::uint8_t>;
|
||||||
|
|
||||||
|
bytes encode_cbor(const json& j)
|
||||||
|
{
|
||||||
|
return json::to_cbor(j);
|
||||||
|
}
|
||||||
|
narrow_json decode_cbor(const bytes& v, bool allow_exceptions)
|
||||||
|
{
|
||||||
|
return narrow_json::from_cbor(v, true, allow_exceptions);
|
||||||
|
}
|
||||||
|
|
||||||
|
bytes encode_msgpack(const json& j)
|
||||||
|
{
|
||||||
|
return json::to_msgpack(j);
|
||||||
|
}
|
||||||
|
narrow_json decode_msgpack(const bytes& v, bool allow_exceptions)
|
||||||
|
{
|
||||||
|
return narrow_json::from_msgpack(v, true, allow_exceptions);
|
||||||
|
}
|
||||||
|
|
||||||
|
bytes encode_ubjson(const json& j)
|
||||||
|
{
|
||||||
|
return json::to_ubjson(j);
|
||||||
|
}
|
||||||
|
narrow_json decode_ubjson(const bytes& v, bool allow_exceptions)
|
||||||
|
{
|
||||||
|
return narrow_json::from_ubjson(v, true, allow_exceptions);
|
||||||
|
}
|
||||||
|
|
||||||
|
bytes encode_bjdata(const json& j)
|
||||||
|
{
|
||||||
|
return json::to_bjdata(j);
|
||||||
|
}
|
||||||
|
narrow_json decode_bjdata(const bytes& v, bool allow_exceptions)
|
||||||
|
{
|
||||||
|
return narrow_json::from_bjdata(v, true, allow_exceptions);
|
||||||
|
}
|
||||||
|
|
||||||
|
// BSON can only store numbers as object members
|
||||||
|
bytes encode_bson(const json& j)
|
||||||
|
{
|
||||||
|
return json::to_bson(json{{"a", j}});
|
||||||
|
}
|
||||||
|
narrow_json decode_bson(const bytes& v, bool allow_exceptions)
|
||||||
|
{
|
||||||
|
const auto result = narrow_json::from_bson(v, true, allow_exceptions);
|
||||||
|
return result.is_discarded() ? result : result.at("a");
|
||||||
|
}
|
||||||
|
|
||||||
|
bytes encode_bon8(const json& j)
|
||||||
|
{
|
||||||
|
return json::to_bon8(j);
|
||||||
|
}
|
||||||
|
narrow_json decode_bon8(const bytes& v, bool allow_exceptions)
|
||||||
|
{
|
||||||
|
return narrow_json::from_bon8(v, true, allow_exceptions);
|
||||||
|
}
|
||||||
|
|
||||||
|
} // namespace
|
||||||
|
|
||||||
|
TEST_CASE("Binary formats with narrow number types")
|
||||||
|
{
|
||||||
|
// Numbers that do not fit the number types are handled like the lexer
|
||||||
|
// handles them in JSON text: an integer that fits neither integer type is
|
||||||
|
// stored as a floating-point number, and a finite floating-point number
|
||||||
|
// that overflows number_float_t is rejected with out_of_range.406.
|
||||||
|
struct binary_format
|
||||||
|
{
|
||||||
|
const char* name;
|
||||||
|
bytes (*encode)(const json&);
|
||||||
|
narrow_json (*decode)(const bytes&, bool);
|
||||||
|
};
|
||||||
|
|
||||||
|
const std::vector<binary_format> formats =
|
||||||
|
{
|
||||||
|
{"CBOR", encode_cbor, decode_cbor},
|
||||||
|
{"MessagePack", encode_msgpack, decode_msgpack},
|
||||||
|
{"UBJSON", encode_ubjson, decode_ubjson},
|
||||||
|
{"BJData", encode_bjdata, decode_bjdata},
|
||||||
|
{"BSON", encode_bson, decode_bson},
|
||||||
|
{"BON8", encode_bon8, decode_bon8},
|
||||||
|
};
|
||||||
|
|
||||||
|
for (const auto& format : formats)
|
||||||
|
{
|
||||||
|
const std::string name = format.name;
|
||||||
|
INFO("format := ", name);
|
||||||
|
const auto roundtrip = [&format](const json & j)
|
||||||
|
{
|
||||||
|
return format.decode(format.encode(j), true);
|
||||||
|
};
|
||||||
|
|
||||||
|
// integers that fit keep their type
|
||||||
|
CHECK(roundtrip(json(-5)).is_number_integer());
|
||||||
|
CHECK(roundtrip(json(-5)).get<std::int32_t>() == -5);
|
||||||
|
CHECK(roundtrip(json(3000000000u)).is_number_unsigned());
|
||||||
|
CHECK(roundtrip(json(3000000000u)).get<std::uint32_t>() == 3000000000u);
|
||||||
|
|
||||||
|
// integers that fit neither integer type are stored as float
|
||||||
|
CHECK(roundtrip(json(5000000000u)).is_number_float());
|
||||||
|
CHECK(roundtrip(json(5000000000u)).get<float>() == 5000000000.0f);
|
||||||
|
if (name != "BON8") // BON8 cannot encode integers above INT64_MAX
|
||||||
|
{
|
||||||
|
CHECK(roundtrip(json(10000000000000000000u)).is_number_float());
|
||||||
|
CHECK(roundtrip(json(10000000000000000000u)).get<float>() == 10000000000000000000.0f);
|
||||||
|
}
|
||||||
|
CHECK(roundtrip(json(-3000000000LL)).is_number_float());
|
||||||
|
CHECK(roundtrip(json(-3000000000LL)).get<float>() == -3000000000.0f);
|
||||||
|
CHECK(roundtrip(json(-5000000000LL)).is_number_float());
|
||||||
|
CHECK(roundtrip(json(-5000000000LL)).get<float>() == -5000000000.0f);
|
||||||
|
|
||||||
|
// floating-point numbers that fit
|
||||||
|
CHECK(roundtrip(json(1.5)).get<float>() == 1.5f);
|
||||||
|
const auto just_above_max = std::nextafter(static_cast<double>((std::numeric_limits<float>::max)()),
|
||||||
|
std::numeric_limits<double>::infinity());
|
||||||
|
CHECK(roundtrip(json(just_above_max)).get<float>() == (std::numeric_limits<float>::max)());
|
||||||
|
|
||||||
|
// infinity and NaN are passed on
|
||||||
|
CHECK(std::isinf(roundtrip(json(std::numeric_limits<double>::infinity())).get<float>()));
|
||||||
|
CHECK(std::isnan(roundtrip(json(std::numeric_limits<double>::quiet_NaN())).get<float>()));
|
||||||
|
|
||||||
|
// finite floating-point numbers that overflow number_float_t are rejected
|
||||||
|
const std::string message = "[json.exception.out_of_range.406] syntax error while parsing " + name
|
||||||
|
+ " value: number overflow";
|
||||||
|
CHECK_THROWS_WITH_AS(roundtrip(json(1e300)), message.c_str(), narrow_json::out_of_range&);
|
||||||
|
CHECK_THROWS_WITH_AS(roundtrip(json(-1e300)), message.c_str(), narrow_json::out_of_range&);
|
||||||
|
CHECK(format.decode(format.encode(json(1e300)), false).is_discarded());
|
||||||
|
}
|
||||||
|
}
|
||||||
|
|||||||
+16
-14
@@ -3146,7 +3146,8 @@ TEST_CASE("Tagged values")
|
|||||||
// CBOR encodes negative integers as: result = -1 - n
|
// CBOR encodes negative integers as: result = -1 - n
|
||||||
// For type 0x3B, n is an 8-byte uint64_t. Valid range for n with
|
// For type 0x3B, n is an 8-byte uint64_t. Valid range for n with
|
||||||
// the default int64_t is [0, INT64_MAX], producing results in [INT64_MIN, -1].
|
// the default int64_t is [0, INT64_MAX], producing results in [INT64_MIN, -1].
|
||||||
// When n > INT64_MAX, the result exceeds int64_t range and is rejected.
|
// When n > INT64_MAX, the result exceeds int64_t range and is stored
|
||||||
|
// as a floating-point number, as the lexer does for JSON text.
|
||||||
|
|
||||||
SECTION("n = 0 is valid (result = -1)")
|
SECTION("n = 0 is valid (result = -1)")
|
||||||
{
|
{
|
||||||
@@ -3167,33 +3168,34 @@ TEST_CASE("Tagged values")
|
|||||||
CHECK(result.get<int64_t>() == (std::numeric_limits<int64_t>::min)());
|
CHECK(result.get<int64_t>() == (std::numeric_limits<int64_t>::min)());
|
||||||
}
|
}
|
||||||
|
|
||||||
SECTION("n = INT64_MAX + 1 is rejected (overflow)")
|
SECTION("n = INT64_MAX + 1 is stored as float")
|
||||||
{
|
{
|
||||||
// n = INT64_MAX + 1 (0x8000000000000000)
|
// n = INT64_MAX + 1 (0x8000000000000000)
|
||||||
// result = -1 - n = -9223372036854775809, which exceeds int64_t range
|
// result = -1 - n = -9223372036854775809, which exceeds int64_t range;
|
||||||
|
// the nearest double is -9223372036854775808.0
|
||||||
const std::vector<uint8_t> input = {0x3B, 0x80, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00};
|
const std::vector<uint8_t> input = {0x3B, 0x80, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00};
|
||||||
json _;
|
const auto result = json::from_cbor(input);
|
||||||
CHECK_THROWS_WITH_AS(_ = json::from_cbor(input),
|
CHECK(result.is_number_float());
|
||||||
"[json.exception.parse_error.112] parse error at byte 9: syntax error while parsing CBOR value: negative integer overflow",
|
CHECK(result.get<double>() == -9223372036854775808.0);
|
||||||
json::parse_error);
|
CHECK(result == json::parse("-9223372036854775809"));
|
||||||
}
|
}
|
||||||
|
|
||||||
SECTION("n = UINT64_MAX is rejected (overflow)")
|
SECTION("n = UINT64_MAX is stored as float")
|
||||||
{
|
{
|
||||||
// n = UINT64_MAX (0xFFFFFFFFFFFFFFFF)
|
// n = UINT64_MAX (0xFFFFFFFFFFFFFFFF)
|
||||||
// result = -1 - n = -18446744073709551616, which exceeds int64_t range
|
// result = -1 - n = -18446744073709551616, which exceeds int64_t range
|
||||||
const std::vector<uint8_t> input = {0x3B, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF};
|
const std::vector<uint8_t> input = {0x3B, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF};
|
||||||
json _;
|
const auto result = json::from_cbor(input);
|
||||||
CHECK_THROWS_WITH_AS(_ = json::from_cbor(input),
|
CHECK(result.is_number_float());
|
||||||
"[json.exception.parse_error.112] parse error at byte 9: syntax error while parsing CBOR value: negative integer overflow",
|
CHECK(result.get<double>() == -18446744073709551616.0);
|
||||||
json::parse_error);
|
CHECK(result == json::parse("-18446744073709551616"));
|
||||||
}
|
}
|
||||||
|
|
||||||
SECTION("overflow with allow_exceptions=false returns discarded")
|
SECTION("overflow with allow_exceptions=false is not an error")
|
||||||
{
|
{
|
||||||
const std::vector<uint8_t> input = {0x3B, 0x80, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00};
|
const std::vector<uint8_t> input = {0x3B, 0x80, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00};
|
||||||
const auto result = json::from_cbor(input, true, false);
|
const auto result = json::from_cbor(input, true, false);
|
||||||
CHECK(result.is_discarded());
|
CHECK(result.is_number_float());
|
||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
|
|||||||
Reference in New Issue
Block a user