| // __ _____ _____ _____ |
| // __| | __| | | | 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" |
| |
| // capture whether JSON_DELETE_DEPRECATED_FUNCTIONS was enabled on the command |
| // line *before* including json.hpp, since the library #undefs it once the header |
| // has been fully processed (see include/nlohmann/detail/macro_unscope.hpp); the |
| // tests of deprecated functions are skipped if these functions are deleted |
| #if defined(JSON_DELETE_DEPRECATED_FUNCTIONS) && (JSON_DELETE_DEPRECATED_FUNCTIONS == 1) |
| #define JSON_TEST_DEPRECATED_FUNCTIONS_DELETED |
| #endif |
| |
| #include <nlohmann/json.hpp> |
| using nlohmann::json; |
| #ifdef JSON_TEST_NO_GLOBAL_UDLS |
| using namespace nlohmann::literals; // NOLINT(google-build-using-namespace) |
| #endif |
| |
| #include <cstdint> // SIZE_MAX, UINT32_MAX |
| #include <fstream> |
| #include <sstream> |
| #include <iomanip> |
| #include <limits> |
| #include <set> |
| #include "make_test_data_available.hpp" |
| #include "round_trip_corpus.hpp" |
| #include "test_utils.hpp" |
| #include "sax_countdown.hpp" |
| using utils::SaxCountdown; |
| |
| |
| TEST_CASE("MessagePack") |
| { |
| SECTION("individual values") |
| { |
| SECTION("discarded") |
| { |
| // a discarded value cannot be serialized to MessagePack |
| json const j = json::value_t::discarded; |
| CHECK_THROWS_WITH_AS(json::to_msgpack(j), "[json.exception.type_error.321] cannot serialize discarded value to MessagePack", json::type_error&); |
| } |
| |
| SECTION("discarded values nested in a container") |
| { |
| json const discarded = json::value_t::discarded; |
| |
| SECTION("in an array") |
| { |
| json const j = {1, discarded, 2}; |
| #if JSON_DIAGNOSTICS |
| CHECK_THROWS_WITH_AS(json::to_msgpack(j), "[json.exception.type_error.321] (/1) cannot serialize discarded value to MessagePack", json::type_error&); |
| #else |
| CHECK_THROWS_WITH_AS(json::to_msgpack(j), "[json.exception.type_error.321] cannot serialize discarded value to MessagePack", json::type_error&); |
| #endif |
| } |
| |
| SECTION("as an object value") |
| { |
| json j; |
| j["a"] = 1; |
| j["b"] = discarded; |
| #if JSON_DIAGNOSTICS |
| CHECK_THROWS_WITH_AS(json::to_msgpack(j), "[json.exception.type_error.321] (/b) cannot serialize discarded value to MessagePack", json::type_error&); |
| #else |
| CHECK_THROWS_WITH_AS(json::to_msgpack(j), "[json.exception.type_error.321] cannot serialize discarded value to MessagePack", json::type_error&); |
| #endif |
| } |
| |
| SECTION("nested deeper (array in object in array)") |
| { |
| json inner_array = {1, discarded}; |
| json middle_object; |
| middle_object["x"] = inner_array; |
| json const j = {middle_object}; |
| #if JSON_DIAGNOSTICS |
| CHECK_THROWS_WITH_AS(json::to_msgpack(j), "[json.exception.type_error.321] (/0/x/1) cannot serialize discarded value to MessagePack", json::type_error&); |
| #else |
| CHECK_THROWS_WITH_AS(json::to_msgpack(j), "[json.exception.type_error.321] cannot serialize discarded value to MessagePack", json::type_error&); |
| #endif |
| } |
| } |
| |
| SECTION("null") |
| { |
| json const j = nullptr; |
| std::vector<uint8_t> const expected = {0xc0}; |
| const auto result = json::to_msgpack(j); |
| CHECK(result == expected); |
| |
| // roundtrip |
| CHECK(json::from_msgpack(result) == j); |
| CHECK(json::from_msgpack(result, true, false) == j); |
| } |
| |
| SECTION("boolean") |
| { |
| SECTION("true") |
| { |
| json const j = true; |
| std::vector<uint8_t> const expected = {0xc3}; |
| const auto result = json::to_msgpack(j); |
| CHECK(result == expected); |
| |
| // roundtrip |
| CHECK(json::from_msgpack(result) == j); |
| CHECK(json::from_msgpack(result, true, false) == j); |
| } |
| |
| SECTION("false") |
| { |
| json const j = false; |
| std::vector<uint8_t> const expected = {0xc2}; |
| const auto result = json::to_msgpack(j); |
| CHECK(result == expected); |
| |
| // roundtrip |
| CHECK(json::from_msgpack(result) == j); |
| CHECK(json::from_msgpack(result, true, false) == j); |
| } |
| } |
| |
| SECTION("number") |
| { |
| SECTION("signed") |
| { |
| SECTION("-32..-1 (negative fixnum)") |
| { |
| for (auto i = -32; i <= -1; ++i) |
| { |
| CAPTURE(i) |
| |
| // create JSON value with integer number |
| json const j = i; |
| |
| // check type |
| CHECK(j.is_number_integer()); |
| |
| // create expected byte vector |
| std::vector<uint8_t> const expected |
| { |
| static_cast<uint8_t>(i) |
| }; |
| |
| // compare result + size |
| const auto result = json::to_msgpack(j); |
| CHECK(result == expected); |
| CHECK(result.size() == 1); |
| |
| // check individual bytes |
| CHECK(static_cast<int8_t>(result[0]) == i); |
| |
| // roundtrip |
| CHECK(json::from_msgpack(result) == j); |
| CHECK(json::from_msgpack(result, true, false) == j); |
| } |
| } |
| |
| SECTION("0..127 (positive fixnum)") |
| { |
| for (size_t i = 0; i <= 127; ++i) |
| { |
| CAPTURE(i) |
| |
| // create JSON value with integer number |
| json j = -1; |
| j.get_ref<json::number_integer_t&>() = static_cast<json::number_integer_t>(i); |
| |
| // check type |
| CHECK(j.is_number_integer()); |
| |
| // create expected byte vector |
| std::vector<uint8_t> const expected{static_cast<uint8_t>(i)}; |
| |
| // compare result + size |
| const auto result = json::to_msgpack(j); |
| CHECK(result == expected); |
| CHECK(result.size() == 1); |
| |
| // check individual bytes |
| CHECK(result[0] == i); |
| |
| // roundtrip |
| CHECK(json::from_msgpack(result) == j); |
| CHECK(json::from_msgpack(result, true, false) == j); |
| } |
| } |
| |
| SECTION("128..255 (int 8)") |
| { |
| for (size_t i = 128; i <= 255; ++i) |
| { |
| CAPTURE(i) |
| |
| // create JSON value with integer number |
| json j = -1; |
| j.get_ref<json::number_integer_t&>() = static_cast<json::number_integer_t>(i); |
| |
| // check type |
| CHECK(j.is_number_integer()); |
| |
| // create expected byte vector |
| std::vector<uint8_t> const expected |
| { |
| 0xcc, |
| static_cast<uint8_t>(i), |
| }; |
| |
| // compare result + size |
| const auto result = json::to_msgpack(j); |
| CHECK(result == expected); |
| CHECK(result.size() == 2); |
| |
| // check individual bytes |
| CHECK(result[0] == 0xcc); |
| auto const restored = static_cast<uint8_t>(result[1]); |
| CHECK(restored == i); |
| |
| // roundtrip |
| CHECK(json::from_msgpack(result) == j); |
| CHECK(json::from_msgpack(result, true, false) == j); |
| } |
| } |
| |
| SECTION("256..65535 (int 16)") |
| { |
| for (size_t i = 256; i <= 65535; i = utils::next_integer_sample(i, static_cast<size_t>(65535), static_cast<size_t>(7))) |
| { |
| CAPTURE(i) |
| |
| // create JSON value with integer number |
| json j = -1; |
| j.get_ref<json::number_integer_t&>() = static_cast<json::number_integer_t>(i); |
| |
| // check type |
| CHECK(j.is_number_integer()); |
| |
| // create expected byte vector |
| std::vector<uint8_t> const expected |
| { |
| 0xcd, |
| static_cast<uint8_t>((i >> 8) & 0xff), |
| static_cast<uint8_t>(i & 0xff), |
| }; |
| |
| // compare result + size |
| const auto result = json::to_msgpack(j); |
| CHECK(result == expected); |
| CHECK(result.size() == 3); |
| |
| // check individual bytes |
| CHECK(result[0] == 0xcd); |
| auto const restored = static_cast<uint16_t>((static_cast<uint8_t>(result[1]) * 256) + static_cast<uint8_t>(result[2])); |
| CHECK(restored == i); |
| |
| // roundtrip |
| CHECK(json::from_msgpack(result) == j); |
| CHECK(json::from_msgpack(result, true, false) == j); |
| } |
| } |
| |
| SECTION("65536..4294967295 (int 32)") |
| { |
| for (uint32_t i : |
| { |
| 65536u, 77777u, 1048576u, 4294967295u |
| }) |
| { |
| CAPTURE(i) |
| |
| // create JSON value with integer number |
| json j = -1; |
| j.get_ref<json::number_integer_t&>() = static_cast<json::number_integer_t>(i); |
| |
| // check type |
| CHECK(j.is_number_integer()); |
| |
| // create expected byte vector |
| std::vector<uint8_t> const expected |
| { |
| 0xce, |
| static_cast<uint8_t>((i >> 24) & 0xff), |
| static_cast<uint8_t>((i >> 16) & 0xff), |
| static_cast<uint8_t>((i >> 8) & 0xff), |
| static_cast<uint8_t>(i & 0xff), |
| }; |
| |
| // compare result + size |
| const auto result = json::to_msgpack(j); |
| CHECK(result == expected); |
| CHECK(result.size() == 5); |
| |
| // check individual bytes |
| CHECK(result[0] == 0xce); |
| uint32_t const restored = (static_cast<uint32_t>(result[1]) << 030) + |
| (static_cast<uint32_t>(result[2]) << 020) + |
| (static_cast<uint32_t>(result[3]) << 010) + |
| static_cast<uint32_t>(result[4]); |
| CHECK(restored == i); |
| |
| // roundtrip |
| CHECK(json::from_msgpack(result) == j); |
| CHECK(json::from_msgpack(result, true, false) == j); |
| } |
| } |
| |
| SECTION("4294967296..9223372036854775807 (int 64)") |
| { |
| for (uint64_t i : |
| { |
| 4294967296LU, 9223372036854775807LU |
| }) |
| { |
| CAPTURE(i) |
| |
| // create JSON value with integer number |
| json j = -1; |
| j.get_ref<json::number_integer_t&>() = static_cast<json::number_integer_t>(i); |
| |
| // check type |
| CHECK(j.is_number_integer()); |
| |
| // create expected byte vector |
| std::vector<uint8_t> const expected |
| { |
| 0xcf, |
| static_cast<uint8_t>((i >> 070) & 0xff), |
| static_cast<uint8_t>((i >> 060) & 0xff), |
| static_cast<uint8_t>((i >> 050) & 0xff), |
| static_cast<uint8_t>((i >> 040) & 0xff), |
| static_cast<uint8_t>((i >> 030) & 0xff), |
| static_cast<uint8_t>((i >> 020) & 0xff), |
| static_cast<uint8_t>((i >> 010) & 0xff), |
| static_cast<uint8_t>(i & 0xff), |
| }; |
| |
| // compare result + size |
| const auto result = json::to_msgpack(j); |
| CHECK(result == expected); |
| CHECK(result.size() == 9); |
| |
| // check individual bytes |
| CHECK(result[0] == 0xcf); |
| uint64_t const restored = (static_cast<uint64_t>(result[1]) << 070) + |
| (static_cast<uint64_t>(result[2]) << 060) + |
| (static_cast<uint64_t>(result[3]) << 050) + |
| (static_cast<uint64_t>(result[4]) << 040) + |
| (static_cast<uint64_t>(result[5]) << 030) + |
| (static_cast<uint64_t>(result[6]) << 020) + |
| (static_cast<uint64_t>(result[7]) << 010) + |
| static_cast<uint64_t>(result[8]); |
| CHECK(restored == i); |
| |
| // roundtrip |
| CHECK(json::from_msgpack(result) == j); |
| CHECK(json::from_msgpack(result, true, false) == j); |
| } |
| } |
| |
| SECTION("-128..-33 (int 8)") |
| { |
| for (auto i = -128; i <= -33; ++i) |
| { |
| CAPTURE(i) |
| |
| // create JSON value with integer number |
| json const j = i; |
| |
| // check type |
| CHECK(j.is_number_integer()); |
| |
| // create expected byte vector |
| std::vector<uint8_t> const expected |
| { |
| 0xd0, |
| static_cast<uint8_t>(i), |
| }; |
| |
| // compare result + size |
| const auto result = json::to_msgpack(j); |
| CHECK(result == expected); |
| CHECK(result.size() == 2); |
| |
| // check individual bytes |
| CHECK(result[0] == 0xd0); |
| CHECK(static_cast<int8_t>(result[1]) == i); |
| |
| // roundtrip |
| CHECK(json::from_msgpack(result) == j); |
| CHECK(json::from_msgpack(result, true, false) == j); |
| } |
| } |
| |
| SECTION("-9263 (int 16)") |
| { |
| json const j = -9263; |
| std::vector<uint8_t> const expected = {0xd1, 0xdb, 0xd1}; |
| |
| const auto result = json::to_msgpack(j); |
| CHECK(result == expected); |
| |
| auto const restored = static_cast<int16_t>((result[1] << 8) + result[2]); |
| CHECK(restored == -9263); |
| |
| // roundtrip |
| CHECK(json::from_msgpack(result) == j); |
| CHECK(json::from_msgpack(result, true, false) == j); |
| } |
| |
| SECTION("-32768..-129 (int 16)") |
| { |
| for (int16_t i = -32768; i <= static_cast<std::int16_t>(-129); i = utils::next_integer_sample(i, static_cast<int16_t>(-129), static_cast<int16_t>(7))) |
| { |
| CAPTURE(i) |
| |
| // create JSON value with integer number |
| json const j = i; |
| |
| // check type |
| CHECK(j.is_number_integer()); |
| |
| // create expected byte vector |
| std::vector<uint8_t> const expected |
| { |
| 0xd1, |
| static_cast<uint8_t>((i >> 8) & 0xff), |
| static_cast<uint8_t>(i & 0xff), |
| }; |
| |
| // compare result + size |
| const auto result = json::to_msgpack(j); |
| CHECK(result == expected); |
| CHECK(result.size() == 3); |
| |
| // check individual bytes |
| CHECK(result[0] == 0xd1); |
| auto const restored = static_cast<int16_t>((result[1] << 8) + result[2]); |
| CHECK(restored == i); |
| |
| // roundtrip |
| CHECK(json::from_msgpack(result) == j); |
| CHECK(json::from_msgpack(result, true, false) == j); |
| } |
| } |
| |
| SECTION("-32769..-2147483648") |
| { |
| std::vector<int32_t> const numbers |
| { |
| -32769, |
| -65536, |
| -77777, |
| -1048576, |
| -2147483648LL, |
| }; |
| for (auto i : numbers) |
| { |
| CAPTURE(i) |
| |
| // create JSON value with integer number |
| json const j = i; |
| |
| // check type |
| CHECK(j.is_number_integer()); |
| |
| // create expected byte vector |
| std::vector<uint8_t> const expected |
| { |
| 0xd2, |
| static_cast<uint8_t>((i >> 24) & 0xff), |
| static_cast<uint8_t>((i >> 16) & 0xff), |
| static_cast<uint8_t>((i >> 8) & 0xff), |
| static_cast<uint8_t>(i & 0xff), |
| }; |
| |
| // compare result + size |
| const auto result = json::to_msgpack(j); |
| CHECK(result == expected); |
| CHECK(result.size() == 5); |
| |
| // check individual bytes |
| CHECK(result[0] == 0xd2); |
| uint32_t const restored = (static_cast<uint32_t>(result[1]) << 030) + |
| (static_cast<uint32_t>(result[2]) << 020) + |
| (static_cast<uint32_t>(result[3]) << 010) + |
| static_cast<uint32_t>(result[4]); |
| CHECK(static_cast<std::int32_t>(restored) == i); |
| |
| // roundtrip |
| CHECK(json::from_msgpack(result) == j); |
| CHECK(json::from_msgpack(result, true, false) == j); |
| } |
| } |
| |
| SECTION("-9223372036854775808..-2147483649 (int 64)") |
| { |
| std::vector<int64_t> const numbers |
| { |
| (std::numeric_limits<int64_t>::min)(), |
| -2147483649LL, |
| }; |
| for (auto i : numbers) |
| { |
| CAPTURE(i) |
| |
| // create JSON value with unsigned integer number |
| json const j = i; |
| |
| // check type |
| CHECK(j.is_number_integer()); |
| |
| // create expected byte vector |
| std::vector<uint8_t> const expected |
| { |
| 0xd3, |
| static_cast<uint8_t>((i >> 070) & 0xff), |
| static_cast<uint8_t>((i >> 060) & 0xff), |
| static_cast<uint8_t>((i >> 050) & 0xff), |
| static_cast<uint8_t>((i >> 040) & 0xff), |
| static_cast<uint8_t>((i >> 030) & 0xff), |
| static_cast<uint8_t>((i >> 020) & 0xff), |
| static_cast<uint8_t>((i >> 010) & 0xff), |
| static_cast<uint8_t>(i & 0xff), |
| }; |
| |
| // compare result + size |
| const auto result = json::to_msgpack(j); |
| CHECK(result == expected); |
| CHECK(result.size() == 9); |
| |
| // check individual bytes |
| CHECK(result[0] == 0xd3); |
| int64_t const restored = (static_cast<int64_t>(result[1]) << 070) + |
| (static_cast<int64_t>(result[2]) << 060) + |
| (static_cast<int64_t>(result[3]) << 050) + |
| (static_cast<int64_t>(result[4]) << 040) + |
| (static_cast<int64_t>(result[5]) << 030) + |
| (static_cast<int64_t>(result[6]) << 020) + |
| (static_cast<int64_t>(result[7]) << 010) + |
| static_cast<int64_t>(result[8]); |
| CHECK(restored == i); |
| |
| // roundtrip |
| CHECK(json::from_msgpack(result) == j); |
| CHECK(json::from_msgpack(result, true, false) == j); |
| } |
| } |
| } |
| |
| SECTION("unsigned") |
| { |
| SECTION("0..127 (positive fixnum)") |
| { |
| for (size_t i = 0; i <= 127; ++i) |
| { |
| CAPTURE(i) |
| |
| // create JSON value with unsigned integer number |
| json const j = i; |
| |
| // check type |
| CHECK(j.is_number_unsigned()); |
| |
| // create expected byte vector |
| std::vector<uint8_t> const expected{static_cast<uint8_t>(i)}; |
| |
| // compare result + size |
| const auto result = json::to_msgpack(j); |
| CHECK(result == expected); |
| CHECK(result.size() == 1); |
| |
| // check individual bytes |
| CHECK(result[0] == i); |
| |
| // roundtrip |
| CHECK(json::from_msgpack(result) == j); |
| CHECK(json::from_msgpack(result, true, false) == j); |
| } |
| } |
| |
| SECTION("128..255 (uint 8)") |
| { |
| for (size_t i = 128; i <= 255; ++i) |
| { |
| CAPTURE(i) |
| |
| // create JSON value with unsigned integer number |
| json const j = i; |
| |
| // check type |
| CHECK(j.is_number_unsigned()); |
| |
| // create expected byte vector |
| std::vector<uint8_t> const expected |
| { |
| 0xcc, |
| static_cast<uint8_t>(i), |
| }; |
| |
| // compare result + size |
| const auto result = json::to_msgpack(j); |
| CHECK(result == expected); |
| CHECK(result.size() == 2); |
| |
| // check individual bytes |
| CHECK(result[0] == 0xcc); |
| auto const restored = static_cast<uint8_t>(result[1]); |
| CHECK(restored == i); |
| |
| // roundtrip |
| CHECK(json::from_msgpack(result) == j); |
| CHECK(json::from_msgpack(result, true, false) == j); |
| } |
| } |
| |
| SECTION("256..65535 (uint 16)") |
| { |
| for (size_t i = 256; i <= 65535; i = utils::next_integer_sample(i, static_cast<size_t>(65535), static_cast<size_t>(7))) |
| { |
| CAPTURE(i) |
| |
| // create JSON value with unsigned integer number |
| json const j = i; |
| |
| // check type |
| CHECK(j.is_number_unsigned()); |
| |
| // create expected byte vector |
| std::vector<uint8_t> const expected |
| { |
| 0xcd, |
| static_cast<uint8_t>((i >> 8) & 0xff), |
| static_cast<uint8_t>(i & 0xff), |
| }; |
| |
| // compare result + size |
| const auto result = json::to_msgpack(j); |
| CHECK(result == expected); |
| CHECK(result.size() == 3); |
| |
| // check individual bytes |
| CHECK(result[0] == 0xcd); |
| auto const restored = static_cast<uint16_t>((static_cast<uint8_t>(result[1]) * 256) + static_cast<uint8_t>(result[2])); |
| CHECK(restored == i); |
| |
| // roundtrip |
| CHECK(json::from_msgpack(result) == j); |
| CHECK(json::from_msgpack(result, true, false) == j); |
| } |
| } |
| |
| SECTION("65536..4294967295 (uint 32)") |
| { |
| for (const uint32_t i : |
| { |
| 65536u, 77777u, 1048576u, 4294967295u |
| }) |
| { |
| CAPTURE(i) |
| |
| // create JSON value with unsigned integer number |
| json const j = i; |
| |
| // check type |
| CHECK(j.is_number_unsigned()); |
| |
| // create expected byte vector |
| std::vector<uint8_t> const expected |
| { |
| 0xce, |
| static_cast<uint8_t>((i >> 24) & 0xff), |
| static_cast<uint8_t>((i >> 16) & 0xff), |
| static_cast<uint8_t>((i >> 8) & 0xff), |
| static_cast<uint8_t>(i & 0xff), |
| }; |
| |
| // compare result + size |
| const auto result = json::to_msgpack(j); |
| CHECK(result == expected); |
| CHECK(result.size() == 5); |
| |
| // check individual bytes |
| CHECK(result[0] == 0xce); |
| uint32_t const restored = (static_cast<uint32_t>(result[1]) << 030) + |
| (static_cast<uint32_t>(result[2]) << 020) + |
| (static_cast<uint32_t>(result[3]) << 010) + |
| static_cast<uint32_t>(result[4]); |
| CHECK(restored == i); |
| |
| // roundtrip |
| CHECK(json::from_msgpack(result) == j); |
| CHECK(json::from_msgpack(result, true, false) == j); |
| } |
| } |
| |
| SECTION("4294967296..18446744073709551615 (uint 64)") |
| { |
| for (const uint64_t i : |
| { |
| 4294967296LU, 18446744073709551615LU |
| }) |
| { |
| CAPTURE(i) |
| |
| // create JSON value with unsigned integer number |
| json const j = i; |
| |
| // check type |
| CHECK(j.is_number_unsigned()); |
| |
| // create expected byte vector |
| std::vector<uint8_t> const expected |
| { |
| 0xcf, |
| static_cast<uint8_t>((i >> 070) & 0xff), |
| static_cast<uint8_t>((i >> 060) & 0xff), |
| static_cast<uint8_t>((i >> 050) & 0xff), |
| static_cast<uint8_t>((i >> 040) & 0xff), |
| static_cast<uint8_t>((i >> 030) & 0xff), |
| static_cast<uint8_t>((i >> 020) & 0xff), |
| static_cast<uint8_t>((i >> 010) & 0xff), |
| static_cast<uint8_t>(i & 0xff), |
| }; |
| |
| // compare result + size |
| const auto result = json::to_msgpack(j); |
| CHECK(result == expected); |
| CHECK(result.size() == 9); |
| |
| // check individual bytes |
| CHECK(result[0] == 0xcf); |
| uint64_t const restored = (static_cast<uint64_t>(result[1]) << 070) + |
| (static_cast<uint64_t>(result[2]) << 060) + |
| (static_cast<uint64_t>(result[3]) << 050) + |
| (static_cast<uint64_t>(result[4]) << 040) + |
| (static_cast<uint64_t>(result[5]) << 030) + |
| (static_cast<uint64_t>(result[6]) << 020) + |
| (static_cast<uint64_t>(result[7]) << 010) + |
| static_cast<uint64_t>(result[8]); |
| CHECK(restored == i); |
| |
| // roundtrip |
| CHECK(json::from_msgpack(result) == j); |
| CHECK(json::from_msgpack(result, true, false) == j); |
| } |
| } |
| } |
| |
| SECTION("float") |
| { |
| SECTION("3.1415925") |
| { |
| double const v = 3.1415925; |
| json const j = v; |
| std::vector<uint8_t> const expected = |
| { |
| 0xcb, 0x40, 0x09, 0x21, 0xfb, 0x3f, 0xa6, 0xde, 0xfc |
| }; |
| const auto result = json::to_msgpack(j); |
| CHECK(result == expected); |
| |
| // roundtrip |
| CHECK(json::from_msgpack(result) == j); |
| CHECK(json::from_msgpack(result) == v); |
| CHECK(json::from_msgpack(result, true, false) == j); |
| } |
| |
| SECTION("1.0") |
| { |
| double const v = 1.0; |
| json const j = v; |
| std::vector<uint8_t> const expected = |
| { |
| 0xca, 0x3f, 0x80, 0x00, 0x00 |
| }; |
| const auto result = json::to_msgpack(j); |
| CHECK(result == expected); |
| |
| // roundtrip |
| CHECK(json::from_msgpack(result) == j); |
| CHECK(json::from_msgpack(result) == v); |
| CHECK(json::from_msgpack(result, true, false) == j); |
| } |
| |
| SECTION("128.128") |
| { |
| double const v = 128.1280059814453125; |
| json const j = v; |
| std::vector<uint8_t> const expected = |
| { |
| 0xca, 0x43, 0x00, 0x20, 0xc5 |
| }; |
| const auto result = json::to_msgpack(j); |
| CHECK(result == expected); |
| |
| // roundtrip |
| CHECK(json::from_msgpack(result) == j); |
| CHECK(json::from_msgpack(result) == v); |
| CHECK(json::from_msgpack(result, true, false) == j); |
| } |
| } |
| } |
| |
| SECTION("string") |
| { |
| SECTION("N = 0..31") |
| { |
| // explicitly enumerate the first byte for all 32 strings |
| const std::vector<uint8_t> first_bytes = |
| { |
| 0xa0, 0xa1, 0xa2, 0xa3, 0xa4, 0xa5, 0xa6, 0xa7, 0xa8, |
| 0xa9, 0xaa, 0xab, 0xac, 0xad, 0xae, 0xaf, 0xb0, 0xb1, |
| 0xb2, 0xb3, 0xb4, 0xb5, 0xb6, 0xb7, 0xb8, 0xb9, 0xba, |
| 0xbb, 0xbc, 0xbd, 0xbe, 0xbf |
| }; |
| |
| for (size_t N = 0; N < first_bytes.size(); ++N) |
| { |
| CAPTURE(N) |
| |
| // create JSON value with string containing of N * 'x' |
| const auto s = std::string(N, 'x'); |
| json const j = s; |
| |
| // create expected byte vector |
| std::vector<uint8_t> expected; |
| expected.push_back(first_bytes[N]); |
| for (size_t i = 0; i < N; ++i) |
| { |
| expected.push_back('x'); |
| } |
| |
| // check first byte |
| CHECK((first_bytes[N] & 0x1f) == N); |
| |
| // compare result + size |
| const auto result = json::to_msgpack(j); |
| CHECK(result == expected); |
| CHECK(result.size() == N + 1); |
| // check that no null byte is appended |
| if (N > 0) |
| { |
| CHECK(result.back() != '\x00'); |
| } |
| |
| // roundtrip |
| CHECK(json::from_msgpack(result) == j); |
| CHECK(json::from_msgpack(result, true, false) == j); |
| } |
| } |
| |
| SECTION("N = 32..255") |
| { |
| for (size_t N = 32; N <= 255; ++N) |
| { |
| CAPTURE(N) |
| |
| // create JSON value with string containing of N * 'x' |
| const auto s = std::string(N, 'x'); |
| json const j = s; |
| |
| // create expected byte vector |
| std::vector<uint8_t> expected; |
| expected.push_back(0xd9); |
| expected.push_back(static_cast<uint8_t>(N)); |
| for (size_t i = 0; i < N; ++i) |
| { |
| expected.push_back('x'); |
| } |
| |
| // compare result + size |
| const auto result = json::to_msgpack(j); |
| CHECK(result == expected); |
| CHECK(result.size() == N + 2); |
| // check that no null byte is appended |
| CHECK(result.back() != '\x00'); |
| |
| // roundtrip |
| CHECK(json::from_msgpack(result) == j); |
| CHECK(json::from_msgpack(result, true, false) == j); |
| } |
| } |
| |
| SECTION("N = 256..65535") |
| { |
| for (size_t N : |
| { |
| 256u, 999u, 1025u, 3333u, 2048u, 65535u |
| }) |
| { |
| CAPTURE(N) |
| |
| // create JSON value with string containing of N * 'x' |
| const auto s = std::string(N, 'x'); |
| json const j = s; |
| |
| // create expected byte vector (hack: create string first) |
| std::vector<uint8_t> expected(N, 'x'); |
| // reverse order of commands, because we insert at begin() |
| expected.insert(expected.begin(), static_cast<uint8_t>(N & 0xff)); |
| expected.insert(expected.begin(), static_cast<uint8_t>((N >> 8) & 0xff)); |
| expected.insert(expected.begin(), 0xda); |
| |
| // compare result + size |
| const auto result = json::to_msgpack(j); |
| CHECK(result == expected); |
| CHECK(result.size() == N + 3); |
| // check that no null byte is appended |
| CHECK(result.back() != '\x00'); |
| |
| // roundtrip |
| CHECK(json::from_msgpack(result) == j); |
| CHECK(json::from_msgpack(result, true, false) == j); |
| } |
| } |
| |
| SECTION("N = 65536..4294967295") |
| { |
| for (size_t N : |
| { |
| 65536u, 77777u, 1048576u |
| }) |
| { |
| CAPTURE(N) |
| |
| // create JSON value with string containing of N * 'x' |
| const auto s = std::string(N, 'x'); |
| json const j = s; |
| |
| // create expected byte vector (hack: create string first) |
| std::vector<uint8_t> expected(N, 'x'); |
| // reverse order of commands, because we insert at begin() |
| expected.insert(expected.begin(), static_cast<uint8_t>(N & 0xff)); |
| expected.insert(expected.begin(), static_cast<uint8_t>((N >> 8) & 0xff)); |
| expected.insert(expected.begin(), static_cast<uint8_t>((N >> 16) & 0xff)); |
| expected.insert(expected.begin(), static_cast<uint8_t>((N >> 24) & 0xff)); |
| expected.insert(expected.begin(), 0xdb); |
| |
| // compare result + size |
| const auto result = json::to_msgpack(j); |
| CHECK(result == expected); |
| CHECK(result.size() == N + 5); |
| // check that no null byte is appended |
| CHECK(result.back() != '\x00'); |
| |
| // roundtrip |
| CHECK(json::from_msgpack(result) == j); |
| CHECK(json::from_msgpack(result, true, false) == j); |
| } |
| } |
| } |
| |
| SECTION("array") |
| { |
| SECTION("empty") |
| { |
| json const j = json::array(); |
| std::vector<uint8_t> const expected = {0x90}; |
| const auto result = json::to_msgpack(j); |
| CHECK(result == expected); |
| |
| // roundtrip |
| CHECK(json::from_msgpack(result) == j); |
| CHECK(json::from_msgpack(result, true, false) == j); |
| } |
| |
| SECTION("[null]") |
| { |
| json const j = {nullptr}; |
| std::vector<uint8_t> const expected = {0x91, 0xc0}; |
| const auto result = json::to_msgpack(j); |
| CHECK(result == expected); |
| |
| // roundtrip |
| CHECK(json::from_msgpack(result) == j); |
| CHECK(json::from_msgpack(result, true, false) == j); |
| } |
| |
| SECTION("[1,2,3,4,5]") |
| { |
| json const j = json::parse("[1,2,3,4,5]"); |
| std::vector<uint8_t> const expected = {0x95, 0x01, 0x02, 0x03, 0x04, 0x05}; |
| const auto result = json::to_msgpack(j); |
| CHECK(result == expected); |
| |
| // roundtrip |
| CHECK(json::from_msgpack(result) == j); |
| CHECK(json::from_msgpack(result, true, false) == j); |
| } |
| |
| SECTION("[[[[]]]]") |
| { |
| json const j = json::parse("[[[[]]]]"); |
| std::vector<uint8_t> const expected = {0x91, 0x91, 0x91, 0x90}; |
| const auto result = json::to_msgpack(j); |
| CHECK(result == expected); |
| |
| // roundtrip |
| CHECK(json::from_msgpack(result) == j); |
| CHECK(json::from_msgpack(result, true, false) == j); |
| } |
| |
| SECTION("array 16") |
| { |
| json j(16, nullptr); |
| std::vector<uint8_t> expected(j.size() + 3, 0xc0); // all null |
| expected[0] = 0xdc; // array 16 |
| expected[1] = 0x00; // size (0x0010), byte 0 |
| expected[2] = 0x10; // size (0x0010), byte 1 |
| const auto result = json::to_msgpack(j); |
| CHECK(result == expected); |
| |
| // roundtrip |
| CHECK(json::from_msgpack(result) == j); |
| CHECK(json::from_msgpack(result, true, false) == j); |
| } |
| |
| SECTION("array 32") |
| { |
| json j(65536, nullptr); |
| std::vector<uint8_t> expected(j.size() + 5, 0xc0); // all null |
| expected[0] = 0xdd; // array 32 |
| expected[1] = 0x00; // size (0x00100000), byte 0 |
| expected[2] = 0x01; // size (0x00100000), byte 1 |
| expected[3] = 0x00; // size (0x00100000), byte 2 |
| expected[4] = 0x00; // size (0x00100000), byte 3 |
| const auto result = json::to_msgpack(j); |
| //CHECK(result == expected); |
| |
| CHECK(result.size() == expected.size()); |
| for (size_t i = 0; i < expected.size(); ++i) |
| { |
| CAPTURE(i) |
| CHECK(result[i] == expected[i]); |
| } |
| |
| // roundtrip |
| CHECK(json::from_msgpack(result) == j); |
| CHECK(json::from_msgpack(result, true, false) == j); |
| } |
| } |
| |
| SECTION("object") |
| { |
| SECTION("empty") |
| { |
| json const j = json::object(); |
| std::vector<uint8_t> const expected = {0x80}; |
| const auto result = json::to_msgpack(j); |
| CHECK(result == expected); |
| |
| // roundtrip |
| CHECK(json::from_msgpack(result) == j); |
| CHECK(json::from_msgpack(result, true, false) == j); |
| } |
| |
| SECTION("{\"\":null}") |
| { |
| json const j = {{"", nullptr}}; |
| std::vector<uint8_t> const expected = {0x81, 0xa0, 0xc0}; |
| const auto result = json::to_msgpack(j); |
| CHECK(result == expected); |
| |
| // roundtrip |
| CHECK(json::from_msgpack(result) == j); |
| CHECK(json::from_msgpack(result, true, false) == j); |
| } |
| |
| SECTION("{\"a\": {\"b\": {\"c\": {}}}}") |
| { |
| json const j = json::parse(R"({"a": {"b": {"c": {}}}})"); |
| std::vector<uint8_t> const expected = |
| { |
| 0x81, 0xa1, 0x61, 0x81, 0xa1, 0x62, 0x81, 0xa1, 0x63, 0x80 |
| }; |
| const auto result = json::to_msgpack(j); |
| CHECK(result == expected); |
| |
| // roundtrip |
| CHECK(json::from_msgpack(result) == j); |
| CHECK(json::from_msgpack(result, true, false) == j); |
| } |
| |
| SECTION("map 16") |
| { |
| json const j = R"({"00": null, "01": null, "02": null, "03": null, |
| "04": null, "05": null, "06": null, "07": null, |
| "08": null, "09": null, "10": null, "11": null, |
| "12": null, "13": null, "14": null, "15": null})"_json; |
| |
| const auto result = json::to_msgpack(j); |
| |
| // Checking against an expected vector byte by byte is |
| // difficult, because no assumption on the order of key/value |
| // pairs are made. We therefore only check the prefix (type and |
| // size) and the overall size. The rest is then handled in the |
| // roundtrip check. |
| CHECK(result.size() == 67); // 1 type, 2 size, 16*4 content |
| CHECK(result[0] == 0xde); // map 16 |
| CHECK(result[1] == 0x00); // byte 0 of size (0x0010) |
| CHECK(result[2] == 0x10); // byte 1 of size (0x0010) |
| |
| // roundtrip |
| CHECK(json::from_msgpack(result) == j); |
| CHECK(json::from_msgpack(result, true, false) == j); |
| } |
| |
| SECTION("map 32") |
| { |
| json j; |
| for (auto i = 0; i < 65536; ++i) |
| { |
| // format i to a fixed width of 5 |
| // each entry will need 7 bytes: 6 for fixstr, 1 for null |
| std::stringstream ss; |
| ss << std::setw(5) << std::setfill('0') << i; |
| j.emplace(ss.str(), nullptr); |
| } |
| |
| const auto result = json::to_msgpack(j); |
| |
| // Checking against an expected vector byte by byte is |
| // difficult, because no assumption on the order of key/value |
| // pairs are made. We therefore only check the prefix (type and |
| // size) and the overall size. The rest is then handled in the |
| // roundtrip check. |
| CHECK(result.size() == 458757); // 1 type, 4 size, 65536*7 content |
| CHECK(result[0] == 0xdf); // map 32 |
| CHECK(result[1] == 0x00); // byte 0 of size (0x00010000) |
| CHECK(result[2] == 0x01); // byte 1 of size (0x00010000) |
| CHECK(result[3] == 0x00); // byte 2 of size (0x00010000) |
| CHECK(result[4] == 0x00); // byte 3 of size (0x00010000) |
| |
| // roundtrip |
| CHECK(json::from_msgpack(result) == j); |
| CHECK(json::from_msgpack(result, true, false) == j); |
| } |
| } |
| |
| SECTION("extension") |
| { |
| SECTION("N = 0..255") |
| { |
| for (size_t N = 0; N <= 0xFF; ++N) |
| { |
| CAPTURE(N) |
| |
| // create JSON value with byte array containing of N * 'x' |
| const auto s = std::vector<uint8_t>(N, 'x'); |
| json j = json::binary(s); |
| std::uint8_t const subtype = 42; |
| j.get_binary().set_subtype(subtype); |
| |
| // create expected byte vector |
| std::vector<uint8_t> expected; |
| switch (N) |
| { |
| case 1: |
| expected.push_back(static_cast<std::uint8_t>(0xD4)); |
| break; |
| case 2: |
| expected.push_back(static_cast<std::uint8_t>(0xD5)); |
| break; |
| case 4: |
| expected.push_back(static_cast<std::uint8_t>(0xD6)); |
| break; |
| case 8: |
| expected.push_back(static_cast<std::uint8_t>(0xD7)); |
| break; |
| case 16: |
| expected.push_back(static_cast<std::uint8_t>(0xD8)); |
| break; |
| default: |
| expected.push_back(static_cast<std::uint8_t>(0xC7)); |
| expected.push_back(static_cast<std::uint8_t>(N)); |
| break; |
| } |
| expected.push_back(subtype); |
| |
| for (size_t i = 0; i < N; ++i) |
| { |
| expected.push_back(0x78); |
| } |
| |
| // compare result + size |
| const auto result = json::to_msgpack(j); |
| CHECK(result == expected); |
| switch (N) |
| { |
| case 1: |
| case 2: |
| case 4: |
| case 8: |
| case 16: |
| CHECK(result.size() == N + 2); |
| break; |
| default: |
| CHECK(result.size() == N + 3); |
| break; |
| } |
| |
| // check that no null byte is appended |
| if (N > 0) |
| { |
| CHECK(result.back() != '\x00'); |
| } |
| |
| // roundtrip |
| CHECK(json::from_msgpack(result) == j); |
| CHECK(json::from_msgpack(result, true, false) == j); |
| } |
| } |
| |
| SECTION("N = 256..65535") |
| { |
| for (std::size_t N : |
| { |
| 256u, 999u, 1025u, 3333u, 2048u, 65535u |
| }) |
| { |
| CAPTURE(N) |
| |
| // create JSON value with string containing of N * 'x' |
| const auto s = std::vector<uint8_t>(N, 'x'); |
| json j = json::binary(s); |
| std::uint8_t const subtype = 42; |
| j.get_binary().set_subtype(subtype); |
| |
| // create expected byte vector (hack: create string first) |
| std::vector<uint8_t> expected(N, 'x'); |
| // reverse order of commands, because we insert at begin() |
| expected.insert(expected.begin(), subtype); |
| expected.insert(expected.begin(), static_cast<uint8_t>(N & 0xff)); |
| expected.insert(expected.begin(), static_cast<uint8_t>((N >> 8) & 0xff)); |
| expected.insert(expected.begin(), 0xC8); |
| |
| // compare result + size |
| const auto result = json::to_msgpack(j); |
| CHECK(result == expected); |
| CHECK(result.size() == N + 4); |
| // check that no null byte is appended |
| CHECK(result.back() != '\x00'); |
| |
| // roundtrip |
| CHECK(json::from_msgpack(result) == j); |
| CHECK(json::from_msgpack(result, true, false) == j); |
| } |
| } |
| |
| SECTION("N = 65536..4294967295") |
| { |
| for (std::size_t N : |
| { |
| 65536u, 77777u, 1048576u |
| }) |
| { |
| CAPTURE(N) |
| |
| // create JSON value with string containing of N * 'x' |
| const auto s = std::vector<uint8_t>(N, 'x'); |
| json j = json::binary(s); |
| std::uint8_t const subtype = 42; |
| j.get_binary().set_subtype(subtype); |
| |
| // create expected byte vector (hack: create string first) |
| std::vector<uint8_t> expected(N, 'x'); |
| // reverse order of commands, because we insert at begin() |
| expected.insert(expected.begin(), subtype); |
| expected.insert(expected.begin(), static_cast<uint8_t>(N & 0xff)); |
| expected.insert(expected.begin(), static_cast<uint8_t>((N >> 8) & 0xff)); |
| expected.insert(expected.begin(), static_cast<uint8_t>((N >> 16) & 0xff)); |
| expected.insert(expected.begin(), static_cast<uint8_t>((N >> 24) & 0xff)); |
| expected.insert(expected.begin(), 0xC9); |
| |
| // compare result + size |
| const auto result = json::to_msgpack(j); |
| CHECK(result == expected); |
| CHECK(result.size() == N + 6); |
| // check that no null byte is appended |
| CHECK(result.back() != '\x00'); |
| |
| // roundtrip |
| CHECK(json::from_msgpack(result) == j); |
| CHECK(json::from_msgpack(result, true, false) == j); |
| } |
| } |
| } |
| |
| SECTION("binary") |
| { |
| SECTION("N = 0..255") |
| { |
| for (std::size_t N = 0; N <= 0xFF; ++N) |
| { |
| CAPTURE(N) |
| |
| // create JSON value with byte array containing of N * 'x' |
| const auto s = std::vector<uint8_t>(N, 'x'); |
| json const j = json::binary(s); |
| |
| // create expected byte vector |
| std::vector<std::uint8_t> expected; |
| expected.push_back(static_cast<std::uint8_t>(0xC4)); |
| expected.push_back(static_cast<std::uint8_t>(N)); |
| for (size_t i = 0; i < N; ++i) |
| { |
| expected.push_back(0x78); |
| } |
| |
| // compare result + size |
| const auto result = json::to_msgpack(j); |
| CHECK(result == expected); |
| CHECK(result.size() == N + 2); |
| // check that no null byte is appended |
| if (N > 0) |
| { |
| CHECK(result.back() != '\x00'); |
| } |
| |
| // roundtrip |
| CHECK(json::from_msgpack(result) == j); |
| CHECK(json::from_msgpack(result, true, false) == j); |
| } |
| } |
| |
| SECTION("N = 256..65535") |
| { |
| for (std::size_t N : |
| { |
| 256u, 999u, 1025u, 3333u, 2048u, 65535u |
| }) |
| { |
| CAPTURE(N) |
| |
| // create JSON value with string containing of N * 'x' |
| const auto s = std::vector<std::uint8_t>(N, 'x'); |
| json const j = json::binary(s); |
| |
| // create expected byte vector (hack: create string first) |
| std::vector<std::uint8_t> expected(N, 'x'); |
| // reverse order of commands, because we insert at begin() |
| expected.insert(expected.begin(), static_cast<std::uint8_t>(N & 0xff)); |
| expected.insert(expected.begin(), static_cast<std::uint8_t>((N >> 8) & 0xff)); |
| expected.insert(expected.begin(), 0xC5); |
| |
| // compare result + size |
| const auto result = json::to_msgpack(j); |
| CHECK(result == expected); |
| CHECK(result.size() == N + 3); |
| // check that no null byte is appended |
| CHECK(result.back() != '\x00'); |
| |
| // roundtrip |
| CHECK(json::from_msgpack(result) == j); |
| CHECK(json::from_msgpack(result, true, false) == j); |
| } |
| } |
| |
| SECTION("N = 65536..4294967295") |
| { |
| for (std::size_t N : |
| { |
| 65536u, 77777u, 1048576u |
| }) |
| { |
| CAPTURE(N) |
| |
| // create JSON value with string containing of N * 'x' |
| const auto s = std::vector<std::uint8_t>(N, 'x'); |
| json const j = json::binary(s); |
| |
| // create expected byte vector (hack: create string first) |
| std::vector<uint8_t> expected(N, 'x'); |
| // reverse order of commands, because we insert at begin() |
| expected.insert(expected.begin(), static_cast<std::uint8_t>(N & 0xff)); |
| expected.insert(expected.begin(), static_cast<std::uint8_t>((N >> 8) & 0xff)); |
| expected.insert(expected.begin(), static_cast<std::uint8_t>((N >> 16) & 0xff)); |
| expected.insert(expected.begin(), static_cast<std::uint8_t>((N >> 24) & 0xff)); |
| expected.insert(expected.begin(), 0xC6); |
| |
| // compare result + size |
| const auto result = json::to_msgpack(j); |
| CHECK(result == expected); |
| CHECK(result.size() == N + 5); |
| // check that no null byte is appended |
| CHECK(result.back() != '\x00'); |
| |
| // roundtrip |
| CHECK(json::from_msgpack(result) == j); |
| CHECK(json::from_msgpack(result, true, false) == j); |
| } |
| } |
| } |
| } |
| |
| SECTION("from float32") |
| { |
| auto given = std::vector<uint8_t>({0xca, 0x41, 0xc8, 0x00, 0x01}); |
| json const j = json::from_msgpack(given); |
| CHECK(j.get<double>() == Approx(25.0000019073486)); |
| } |
| |
| SECTION("errors") |
| { |
| SECTION("empty byte vector") |
| { |
| json _; |
| CHECK_THROWS_WITH_AS(_ = json::from_msgpack(std::vector<uint8_t>()), "[json.exception.parse_error.110] parse error at byte 1: syntax error while parsing MessagePack value: unexpected end of input", json::parse_error&); |
| CHECK(json::from_msgpack(std::vector<uint8_t>(), true, false).is_discarded()); |
| } |
| |
| SECTION("too short byte vector") |
| { |
| json _; |
| |
| CHECK_THROWS_WITH_AS(_ = json::from_msgpack(std::vector<uint8_t>({0x87})), |
| "[json.exception.parse_error.110] parse error at byte 2: syntax error while parsing MessagePack string: unexpected end of input", json::parse_error&); |
| CHECK_THROWS_WITH_AS(_ = json::from_msgpack(std::vector<uint8_t>({0xcc})), |
| "[json.exception.parse_error.110] parse error at byte 2: syntax error while parsing MessagePack number: unexpected end of input", json::parse_error&); |
| CHECK_THROWS_WITH_AS(_ = json::from_msgpack(std::vector<uint8_t>({0xcd})), |
| "[json.exception.parse_error.110] parse error at byte 2: syntax error while parsing MessagePack number: unexpected end of input", json::parse_error&); |
| CHECK_THROWS_WITH_AS(_ = json::from_msgpack(std::vector<uint8_t>({0xcd, 0x00})), |
| "[json.exception.parse_error.110] parse error at byte 3: syntax error while parsing MessagePack number: unexpected end of input", json::parse_error&); |
| CHECK_THROWS_WITH_AS(_ = json::from_msgpack(std::vector<uint8_t>({0xce})), |
| "[json.exception.parse_error.110] parse error at byte 2: syntax error while parsing MessagePack number: unexpected end of input", json::parse_error&); |
| CHECK_THROWS_WITH_AS(_ = json::from_msgpack(std::vector<uint8_t>({0xce, 0x00})), |
| "[json.exception.parse_error.110] parse error at byte 3: syntax error while parsing MessagePack number: unexpected end of input", json::parse_error&); |
| CHECK_THROWS_WITH_AS(_ = json::from_msgpack(std::vector<uint8_t>({0xce, 0x00, 0x00})), |
| "[json.exception.parse_error.110] parse error at byte 4: syntax error while parsing MessagePack number: unexpected end of input", json::parse_error&); |
| CHECK_THROWS_WITH_AS(_ = json::from_msgpack(std::vector<uint8_t>({0xce, 0x00, 0x00, 0x00})), |
| "[json.exception.parse_error.110] parse error at byte 5: syntax error while parsing MessagePack number: unexpected end of input", json::parse_error&); |
| CHECK_THROWS_WITH_AS(_ = json::from_msgpack(std::vector<uint8_t>({0xcf})), |
| "[json.exception.parse_error.110] parse error at byte 2: syntax error while parsing MessagePack number: unexpected end of input", json::parse_error&); |
| CHECK_THROWS_WITH_AS(_ = json::from_msgpack(std::vector<uint8_t>({0xcf, 0x00})), |
| "[json.exception.parse_error.110] parse error at byte 3: syntax error while parsing MessagePack number: unexpected end of input", json::parse_error&); |
| CHECK_THROWS_WITH_AS(_ = json::from_msgpack(std::vector<uint8_t>({0xcf, 0x00, 0x00})), |
| "[json.exception.parse_error.110] parse error at byte 4: syntax error while parsing MessagePack number: unexpected end of input", json::parse_error&); |
| CHECK_THROWS_WITH_AS(_ = json::from_msgpack(std::vector<uint8_t>({0xcf, 0x00, 0x00, 0x00})), |
| "[json.exception.parse_error.110] parse error at byte 5: syntax error while parsing MessagePack number: unexpected end of input", json::parse_error&); |
| CHECK_THROWS_WITH_AS(_ = json::from_msgpack(std::vector<uint8_t>({0xcf, 0x00, 0x00, 0x00, 0x00})), |
| "[json.exception.parse_error.110] parse error at byte 6: syntax error while parsing MessagePack number: unexpected end of input", json::parse_error&); |
| CHECK_THROWS_WITH_AS(_ = json::from_msgpack(std::vector<uint8_t>({0xcf, 0x00, 0x00, 0x00, 0x00, 0x00})), |
| "[json.exception.parse_error.110] parse error at byte 7: syntax error while parsing MessagePack number: unexpected end of input", json::parse_error&); |
| CHECK_THROWS_WITH_AS(_ = json::from_msgpack(std::vector<uint8_t>({0xcf, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00})), |
| "[json.exception.parse_error.110] parse error at byte 8: syntax error while parsing MessagePack number: unexpected end of input", json::parse_error&); |
| CHECK_THROWS_WITH_AS(_ = json::from_msgpack(std::vector<uint8_t>({0xcf, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00})), |
| "[json.exception.parse_error.110] parse error at byte 9: syntax error while parsing MessagePack number: unexpected end of input", json::parse_error&); |
| CHECK_THROWS_WITH_AS(_ = json::from_msgpack(std::vector<uint8_t>({0xa5, 0x68, 0x65})), |
| "[json.exception.parse_error.110] parse error at byte 4: syntax error while parsing MessagePack string: unexpected end of input", json::parse_error&); |
| CHECK_THROWS_WITH_AS(_ = json::from_msgpack(std::vector<uint8_t>({0x92, 0x01})), |
| "[json.exception.parse_error.110] parse error at byte 3: syntax error while parsing MessagePack value: unexpected end of input", json::parse_error&); |
| CHECK_THROWS_WITH_AS(_ = json::from_msgpack(std::vector<uint8_t>({0x81, 0xa1, 0x61})), |
| "[json.exception.parse_error.110] parse error at byte 4: syntax error while parsing MessagePack value: unexpected end of input", json::parse_error&); |
| CHECK_THROWS_WITH_AS(_ = json::from_msgpack(std::vector<uint8_t>({0xc4, 0x02})), |
| "[json.exception.parse_error.110] parse error at byte 3: syntax error while parsing MessagePack binary: unexpected end of input", json::parse_error&); |
| |
| CHECK(json::from_msgpack(std::vector<uint8_t>({0x87}), true, false).is_discarded()); |
| CHECK(json::from_msgpack(std::vector<uint8_t>({0xcc}), true, false).is_discarded()); |
| CHECK(json::from_msgpack(std::vector<uint8_t>({0xcd}), true, false).is_discarded()); |
| CHECK(json::from_msgpack(std::vector<uint8_t>({0xcd, 0x00}), true, false).is_discarded()); |
| CHECK(json::from_msgpack(std::vector<uint8_t>({0xce}), true, false).is_discarded()); |
| CHECK(json::from_msgpack(std::vector<uint8_t>({0xce, 0x00}), true, false).is_discarded()); |
| CHECK(json::from_msgpack(std::vector<uint8_t>({0xce, 0x00, 0x00}), true, false).is_discarded()); |
| CHECK(json::from_msgpack(std::vector<uint8_t>({0xce, 0x00, 0x00, 0x00}), true, false).is_discarded()); |
| CHECK(json::from_msgpack(std::vector<uint8_t>({0xcf}), true, false).is_discarded()); |
| CHECK(json::from_msgpack(std::vector<uint8_t>({0xcf, 0x00}), true, false).is_discarded()); |
| CHECK(json::from_msgpack(std::vector<uint8_t>({0xcf, 0x00, 0x00}), true, false).is_discarded()); |
| CHECK(json::from_msgpack(std::vector<uint8_t>({0xcf, 0x00, 0x00, 0x00}), true, false).is_discarded()); |
| CHECK(json::from_msgpack(std::vector<uint8_t>({0xcf, 0x00, 0x00, 0x00, 0x00}), true, false).is_discarded()); |
| CHECK(json::from_msgpack(std::vector<uint8_t>({0xcf, 0x00, 0x00, 0x00, 0x00, 0x00}), true, false).is_discarded()); |
| CHECK(json::from_msgpack(std::vector<uint8_t>({0xcf, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00}), true, false).is_discarded()); |
| CHECK(json::from_msgpack(std::vector<uint8_t>({0xcf, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00}), true, false).is_discarded()); |
| CHECK(json::from_msgpack(std::vector<uint8_t>({0xa5, 0x68, 0x65}), true, false).is_discarded()); |
| CHECK(json::from_msgpack(std::vector<uint8_t>({0x92, 0x01}), true, false).is_discarded()); |
| CHECK(json::from_msgpack(std::vector<uint8_t>({0x81, 0xA1, 0x61}), true, false).is_discarded()); |
| CHECK(json::from_msgpack(std::vector<uint8_t>({0xc4, 0x02}), true, false).is_discarded()); |
| CHECK(json::from_msgpack(std::vector<uint8_t>({0xc4}), true, false).is_discarded()); |
| } |
| |
| SECTION("unexpected end inside int with stream") |
| { |
| json _; |
| const std::string data = {static_cast<char>(0xd2u), static_cast<char>(0x12u), static_cast<char>(0x34u), static_cast<char>(0x56u)}; |
| CHECK_THROWS_WITH_AS(_ = json::from_msgpack(std::istringstream(data, std::ios::binary)), |
| "[json.exception.parse_error.110] parse error at byte 5: syntax error while parsing MessagePack number: unexpected end of input", json::parse_error&); |
| } |
| SECTION("misuse wchar for binary") |
| { |
| json _; |
| // creates 0xd2 after UTF-8 decoding, triggers get_elements in wide_string_input_adapter for code coverage |
| const std::u32string data = {static_cast<char32_t>(0x0280)}; |
| CHECK_THROWS_WITH_AS(_ = json::from_msgpack(data), |
| "[json.exception.parse_error.112] parse error at byte 1: wide string type cannot be interpreted as binary data", json::parse_error&); |
| } |
| |
| SECTION("unsupported bytes") |
| { |
| SECTION("concrete examples") |
| { |
| json _; |
| CHECK_THROWS_WITH_AS(_ = json::from_msgpack(std::vector<uint8_t>({0xc1})), "[json.exception.parse_error.112] parse error at byte 1: syntax error while parsing MessagePack value: invalid byte: 0xC1", json::parse_error&); |
| } |
| |
| SECTION("all unsupported bytes") |
| { |
| for (auto byte : |
| { |
| // never used |
| 0xc1 |
| }) |
| { |
| json _; |
| CHECK_THROWS_AS(_ = json::from_msgpack(std::vector<uint8_t>({static_cast<uint8_t>(byte)})), json::parse_error&); |
| CHECK(json::from_msgpack(std::vector<uint8_t>({static_cast<uint8_t>(byte)}), true, false).is_discarded()); |
| } |
| } |
| } |
| |
| 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 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("ill-formed UTF-8 in string (see #5529, #5651)") |
| { |
| // the MessagePack specification explicitly allows a str object to |
| // contain a byte sequence that is not valid UTF-8 and expects a |
| // deserializer to hand the original bytes back unchanged; this |
| // library follows that, unlike CBOR/UBJSON/BJData/BSON, whose |
| // specifications require text strings to be valid UTF-8 |
| |
| // a fixstr of length 2 (0xA0 | 2) whose bytes are not valid UTF-8 |
| // (0xC0 0xAE is an overlong encoding of '.') round-trips byte for |
| // byte as a string value |
| const std::vector<uint8_t> ill_formed_value = {0xa2, 0xc0, 0xae}; |
| json j_value; |
| CHECK_NOTHROW(j_value = json::from_msgpack(ill_formed_value)); |
| REQUIRE(j_value.is_string()); |
| CHECK(j_value.get_ref<const json::string_t&>() == std::string("\xc0\xae")); |
| CHECK(json::from_msgpack(json::to_msgpack(j_value)) == j_value); |
| // dump() still requires valid UTF-8 and throws for such a value, |
| // unless an error handler that replaces or ignores the bytes is |
| // passed |
| CHECK_THROWS_AS(utils::ignore_return_value(j_value.dump()), json::type_error&); |
| |
| // the same bytes as an object key round-trip as well |
| const std::vector<uint8_t> ill_formed_key = {0x81, 0xa2, 0xc0, 0xae, 0x01}; |
| json j_key; |
| CHECK_NOTHROW(j_key = json::from_msgpack(ill_formed_key)); |
| REQUIRE(j_key.is_object()); |
| CHECK(j_key.contains(std::string("\xc0\xae"))); |
| CHECK(json::from_msgpack(json::to_msgpack(j_key)) == j_key); |
| |
| // a MessagePack bin8 blob with the very same bytes is NOT text |
| // and must still be accepted as-is |
| json _; |
| CHECK_NOTHROW(_ = json::from_msgpack(std::vector<uint8_t>({0xc4, 0x02, 0xc0, 0xae}))); |
| CHECK(_ == json::binary(std::vector<std::uint8_t>({0xc0, 0xae}))); |
| |
| // valid UTF-8 must still round-trip |
| const json j = "h\xc3\xa9llo, w\xc3\xb6rld! \xe6\x97\xa5\xe6\x9c\xac\xe8\xaa\x9e"; // héllo, wörld! 日本語 |
| CHECK(json::from_msgpack(json::to_msgpack(j)) == j); |
| } |
| |
| SECTION("strict mode") |
| { |
| std::vector<uint8_t> const vec = {0xc0, 0xc0}; |
| SECTION("non-strict mode") |
| { |
| const auto result = json::from_msgpack(vec, false); |
| CHECK(result == json()); |
| } |
| |
| SECTION("strict mode") |
| { |
| json _; |
| CHECK_THROWS_WITH_AS(_ = json::from_msgpack(vec), "[json.exception.parse_error.110] parse error at byte 2: syntax error while parsing MessagePack value: expected end of input; last byte: 0xC0", json::parse_error&); |
| CHECK(json::from_msgpack(vec, true, false).is_discarded()); |
| } |
| } |
| } |
| |
| SECTION("SAX aborts") |
| { |
| SECTION("start_array(len)") |
| { |
| std::vector<uint8_t> const v = {0x93, 0x01, 0x02, 0x03}; |
| SaxCountdown scp(0); |
| CHECK(!json::sax_parse(v, &scp, json::input_format_t::msgpack)); |
| } |
| |
| SECTION("start_object(len)") |
| { |
| std::vector<uint8_t> const v = {0x81, 0xa3, 0x66, 0x6F, 0x6F, 0xc2}; |
| SaxCountdown scp(0); |
| CHECK(!json::sax_parse(v, &scp, json::input_format_t::msgpack)); |
| } |
| |
| SECTION("key()") |
| { |
| std::vector<uint8_t> const v = {0x81, 0xa3, 0x66, 0x6F, 0x6F, 0xc2}; |
| SaxCountdown scp(1); |
| CHECK(!json::sax_parse(v, &scp, json::input_format_t::msgpack)); |
| } |
| } |
| } |
| |
| TEST_CASE("issue #5405 - array reserve for definite-length MessagePack arrays") |
| { |
| #if !defined(JSON_NOEXCEPTION) |
| // this SECTION relies on catching a thrown exception to distinguish |
| // which of two acceptable, bounded rejections a hostile header took; |
| // under JSON_NOEXCEPTION, JSON_THROW never produces a catchable C++ |
| // exception (it aborts instead), so this cannot be tested that way here |
| SECTION("a huge claimed length with no element data must not over-allocate") |
| { |
| // 0xdd: array 32 (four-byte length); claims 0xFFFFFFFF (4294967295) |
| // elements but provides none. max_size() for a std::vector is far |
| // larger than this count, so it does not reject the header outright; |
| // the (capped) reservation must not attempt to allocate space for |
| // billions of elements before the missing data is detected. |
| json _; |
| const std::vector<uint8_t> input = {0xdd, 0xFF, 0xFF, 0xFF, 0xFF}; |
| // On a platform where std::size_t is narrower than 64 bits (e.g. |
| // 32-bit), the claimed count 0xFFFFFFFF coincides with that |
| // platform's SIZE_MAX, which some size-narrowing checks treat the |
| // same as detail::unknown_size(); it may then be rejected before |
| // the SAX consumer's own max_size() check (out_of_range.408) rather |
| // than being accepted and only found short of data once the |
| // (capped) reservation looks for element bytes that were never |
| // provided (parse_error.110). Either is an acceptable, bounded |
| // rejection of the hostile header -- the property under test is |
| // that no path attempts to allocate space for billions of elements. |
| bool threw = false; |
| try |
| { |
| _ = json::from_msgpack(input); |
| } |
| catch (const json::parse_error& e) |
| { |
| threw = true; |
| CHECK(e.id == 110); |
| CHECK(std::string(e.what()) == "[json.exception.parse_error.110] parse error at byte 6: syntax error while parsing MessagePack value: unexpected end of input"); |
| } |
| catch (const json::out_of_range& e) |
| { |
| threw = true; |
| CHECK(e.id == 408); |
| CHECK(std::string(e.what()).find("excessive") != std::string::npos); |
| } |
| CHECK(threw); |
| CHECK(json::from_msgpack(input, true, false).is_discarded()); |
| } |
| #endif |
| |
| SECTION("arrays of various sizes decode to the same value as before the reserve optimization") |
| { |
| for (const auto size : |
| { |
| std::size_t{0}, std::size_t{1}, std::size_t{5}, // small |
| std::size_t{16384}, // exactly at the reserve cap |
| std::size_t{20000} // above the reserve cap |
| }) |
| { |
| CAPTURE(size) |
| json j = json::array(); |
| for (std::size_t i = 0; i < size; ++i) |
| { |
| j.push_back(static_cast<int>(i % 1000)); |
| } |
| |
| const auto packed = json::to_msgpack(j); |
| CHECK(json::from_msgpack(packed) == j); |
| } |
| } |
| |
| SECTION("a user-defined SAX consumer is unaffected by the internal DOM reserve optimization") |
| { |
| // the reserve() call is local to json_sax_dom_parser / json_sax_dom_callback_parser; |
| // a custom SAX consumer that does not touch a DOM array sees identical events |
| json j = json::array(); |
| for (int i = 0; i < 100; ++i) |
| { |
| j.push_back(i); |
| } |
| const auto packed = json::to_msgpack(j); |
| |
| SaxCountdown scp(1000000); // large enough to never trigger an abort |
| CHECK(json::sax_parse(packed, &scp, json::input_format_t::msgpack)); |
| } |
| } |
| |
| TEST_CASE("regression test - MessagePack ext type rejects a subtype that doesn't fit a single byte") |
| { |
| // subtype 0-255 must still round-trip correctly (regression guard, pre-existing behavior) |
| CHECK(json::from_msgpack(json::to_msgpack(json::binary({1, 2}, 0))).get_binary().subtype() == 0); |
| CHECK(json::from_msgpack(json::to_msgpack(json::binary({1, 2}, 200))).get_binary().subtype() == 200); |
| CHECK(json::from_msgpack(json::to_msgpack(json::binary({1, 2}, 255))).get_binary().subtype() == 255); |
| |
| // a subtype > 255 must throw instead of silently truncating |
| CHECK_THROWS_AS(json::to_msgpack(json::binary({1, 2}, 256)), json::out_of_range); |
| CHECK_THROWS_WITH_AS(json::to_msgpack(json::binary({1, 2}, 70000)), "[json.exception.out_of_range.415] subtype 70000 is too large for the MessagePack ext type (max 255)", json::out_of_range); |
| |
| // a binary value with no subtype at all must be unaffected |
| CHECK(json::from_msgpack(json::to_msgpack(json::binary({1, 2}))).get_binary().has_subtype() == false); |
| } |
| |
| // use this testcase outside [hide] to run it with Valgrind |
| TEST_CASE("MessagePack nesting does not consume the call stack") |
| { |
| // Reading a container used to call back into the value reader once per |
| // element, so the native call stack grew with the nesting depth of the |
| // input: one frame per byte for repeated 0x91 (a one-element array), which |
| // crashes the process long before the input is exhausted (#5104). The |
| // containers are kept on a heap stack now. |
| // |
| // Note that deeply nested values must not be compared, copied or dumped |
| // here: those operations are still recursive, and would reintroduce the |
| // very crash this checks for. Depth is measured by descending instead. |
| |
| SECTION("an unterminated chain is reported, not crashed on") |
| { |
| json _; |
| const std::vector<uint8_t> input(300000, 0x91); |
| CHECK_THROWS_WITH_AS(_ = json::from_msgpack(input), "[json.exception.parse_error.110] parse error at byte 300001: syntax error while parsing MessagePack value: unexpected end of input", json::parse_error&); |
| CHECK(json::from_msgpack(input, true, false).is_discarded()); |
| } |
| |
| SECTION("a well-formed deep value is read through the SAX interface") |
| { |
| std::vector<uint8_t> input(300000, 0x91); |
| input.push_back(0x01); // innermost value |
| |
| SaxCountdown accept_all(600001); |
| CHECK(json::sax_parse(input, &accept_all, json::input_format_t::msgpack)); |
| } |
| |
| SECTION("a well-formed deep value is read into a value") |
| { |
| const std::size_t depth = 10000; |
| std::vector<uint8_t> input(depth, 0x91); |
| input.push_back(0x01); |
| |
| json j = json::from_msgpack(input); |
| |
| std::size_t measured = 0; |
| const json* p = &j; |
| while (p->is_array() && !p->empty()) |
| { |
| p = &p->front(); |
| ++measured; |
| } |
| CHECK(measured == depth); |
| CHECK(p->is_number()); |
| } |
| |
| SECTION("containers are still read the same way") |
| { |
| CHECK(json::from_msgpack(std::vector<uint8_t>({0x90})) == json::array()); |
| CHECK(json::from_msgpack(std::vector<uint8_t>({0x80})) == json::object()); |
| CHECK(json::from_msgpack(std::vector<uint8_t>({0x92, 0x90, 0x80})) == json({json::array(), json::object()})); |
| CHECK(json::from_msgpack(std::vector<uint8_t>({0x91, 0x91, 0x91, 0x90})) == json({{{json::array()}}})); |
| CHECK(json::from_msgpack(std::vector<uint8_t>({0x81, 0xA1, 'a', 0x81, 0xA1, 'b', 0x92, 0x01, 0x02})) == json({{"a", {{"b", {1, 2}}}}})); |
| // array 16 and map 32, i.e. the counted forms |
| CHECK(json::from_msgpack(std::vector<uint8_t>({0xDC, 0x00, 0x02, 0x01, 0x02})) == json({1, 2})); |
| CHECK(json::from_msgpack(std::vector<uint8_t>({0xDF, 0x00, 0x00, 0x00, 0x01, 0xA1, 'k', 0xC3})) == json({{"k", true}})); |
| } |
| } |
| |
| TEST_CASE("MessagePack input that cannot be read is discarded by every overload") |
| { |
| std::vector<std::uint8_t> input = json::to_msgpack(json({{"a", {1, 2}}})); |
| input.pop_back(); |
| |
| json _; |
| CHECK_THROWS_AS(_ = json::from_msgpack(input.begin(), input.end()), json::parse_error&); |
| CHECK(json::from_msgpack(input, true, false).is_discarded()); |
| CHECK(json::from_msgpack(input.begin(), input.end(), true, false).is_discarded()); |
| #ifndef JSON_TEST_DEPRECATED_FUNCTIONS_DELETED |
| CHECK(json::from_msgpack(input.data(), input.size(), true, false).is_discarded()); |
| CHECK(json::from_msgpack({input.data(), input.size()}, true, false).is_discarded()); |
| #endif |
| } |
| |
| TEST_CASE("MessagePack SAX parsing stops at every event") |
| { |
| // Containers are opened and closed by the loop that reads them; a SAX |
| // handler that rejects any event - including the end of a nested |
| // container - must stop the parse right there. |
| const auto count_events = [](const std::vector<std::uint8_t>& input) |
| { |
| int events = 0; |
| while (true) |
| { |
| SaxCountdown scp(events); |
| if (json::sax_parse(input, &scp, json::input_format_t::msgpack)) |
| { |
| return events; |
| } |
| ++events; |
| REQUIRE(events < 1000); |
| } |
| }; |
| |
| // 20 events: every container kind closes inside another one |
| const json j = json::parse(R"({"a": [1, {"b": []}], "c": {"d": [[2]]}})"); |
| CHECK(count_events(json::to_msgpack(j)) == 20); |
| } |
| |
| TEST_CASE("single MessagePack roundtrip") |
| { |
| SECTION("sample.json") |
| { |
| std::string const filename = TEST_DATA_DIRECTORY "/json_testsuite/sample.json"; |
| |
| // parse JSON file |
| std::ifstream f_json(filename); |
| const json j1 = json::parse(f_json); |
| |
| // parse MessagePack file |
| auto packed = utils::read_binary_file(filename + ".msgpack"); |
| json j2; |
| CHECK_NOTHROW(j2 = json::from_msgpack(packed)); |
| |
| // compare parsed JSON values |
| CHECK(j1 == j2); |
| |
| SECTION("roundtrips") |
| { |
| SECTION("std::ostringstream") |
| { |
| std::basic_ostringstream<char> ss; |
| json::to_msgpack(j1, ss); |
| json j3 = json::from_msgpack(ss.str()); |
| CHECK(j1 == j3); |
| } |
| |
| SECTION("std::string") |
| { |
| std::string s; |
| json::to_msgpack(j1, s); |
| json j3 = json::from_msgpack(s); |
| CHECK(j1 == j3); |
| } |
| } |
| |
| // check with different start index |
| packed.insert(packed.begin(), 5, 0xff); |
| CHECK(j1 == json::from_msgpack(packed.begin() + 5, packed.end())); |
| } |
| } |
| |
| TEST_CASE("Parse MessagePack directly from a file using iterator and sentinel") |
| { |
| std::string const filename = TEST_DATA_DIRECTORY "/json_testsuite/sample.json.msgpack"; |
| std::ifstream file(filename, std::ios::binary); |
| const std::istreambuf_iterator<char> first(file); |
| const json parsed = json::from_msgpack(first, utils::istreambuf_sentinel{}); |
| CHECK((parsed.is_object() || parsed.is_array())); |
| } |
| |
| TEST_CASE("MessagePack round-trip invariants") |
| { |
| // This checks what the parse_msgpack_fuzzer driver checks (see |
| // tests/src/fuzzer-parse_msgpack.cpp), so that a regression shows up in |
| // CI rather than as an OSS-Fuzz report: anything from_msgpack() returns |
| // (j1) can be serialized, parsed back (j2), and serialized again to |
| // reproduce the exact bytes. |
| for (const auto& j0 : utils::round_trip_corpus::values()) |
| { |
| json j1; |
| try |
| { |
| // turn the corpus value into a value as from_msgpack() returns it |
| j1 = json::from_msgpack(json::to_msgpack(j0)); |
| } |
| catch (const json::exception&) |
| { |
| // the fuzzer driver only ever sees values from_msgpack() actually |
| // produced, so skip corpus values that do not survive the |
| // round trip here, too |
| continue; |
| } |
| |
| INFO("j1 = " << j1.dump()); |
| const std::vector<std::uint8_t> vec = json::to_msgpack(j1); |
| json j2; |
| // anything the library writes must be parsable by the library |
| REQUIRE_NOTHROW(j2 = json::from_msgpack(vec)); |
| CHECK(json::to_msgpack(j2) == vec); |
| } |
| } |
| |
| TEST_CASE("MessagePack roundtrips" * doctest::skip()) |
| { |
| SECTION("input from msgpack-python") |
| { |
| // most of these are excluded due to differences in key order (not a real problem) |
| std::set<std::string> exclude_packed; |
| exclude_packed.insert(TEST_DATA_DIRECTORY "/json.org/1.json"); |
| exclude_packed.insert(TEST_DATA_DIRECTORY "/json.org/2.json"); |
| exclude_packed.insert(TEST_DATA_DIRECTORY "/json.org/3.json"); |
| exclude_packed.insert(TEST_DATA_DIRECTORY "/json.org/4.json"); |
| exclude_packed.insert(TEST_DATA_DIRECTORY "/json.org/5.json"); |
| exclude_packed.insert(TEST_DATA_DIRECTORY "/json_testsuite/sample.json"); // kills AppVeyor |
| exclude_packed.insert(TEST_DATA_DIRECTORY "/json_tests/pass1.json"); |
| exclude_packed.insert(TEST_DATA_DIRECTORY "/regression/working_file.json"); |
| exclude_packed.insert(TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_object.json"); |
| exclude_packed.insert(TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_object_basic.json"); |
| exclude_packed.insert(TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_object_duplicated_key.json"); |
| exclude_packed.insert(TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_object_long_strings.json"); |
| exclude_packed.insert(TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_object_simple.json"); |
| exclude_packed.insert(TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_object_string_unicode.json"); |
| |
| for (std::string filename : |
| { |
| TEST_DATA_DIRECTORY "/json_nlohmann_tests/all_unicode.json", |
| TEST_DATA_DIRECTORY "/json.org/1.json", |
| TEST_DATA_DIRECTORY "/json.org/2.json", |
| TEST_DATA_DIRECTORY "/json.org/3.json", |
| TEST_DATA_DIRECTORY "/json.org/4.json", |
| TEST_DATA_DIRECTORY "/json.org/5.json", |
| TEST_DATA_DIRECTORY "/json_roundtrip/roundtrip01.json", |
| TEST_DATA_DIRECTORY "/json_roundtrip/roundtrip02.json", |
| TEST_DATA_DIRECTORY "/json_roundtrip/roundtrip03.json", |
| TEST_DATA_DIRECTORY "/json_roundtrip/roundtrip04.json", |
| TEST_DATA_DIRECTORY "/json_roundtrip/roundtrip05.json", |
| TEST_DATA_DIRECTORY "/json_roundtrip/roundtrip06.json", |
| TEST_DATA_DIRECTORY "/json_roundtrip/roundtrip07.json", |
| TEST_DATA_DIRECTORY "/json_roundtrip/roundtrip08.json", |
| TEST_DATA_DIRECTORY "/json_roundtrip/roundtrip09.json", |
| TEST_DATA_DIRECTORY "/json_roundtrip/roundtrip10.json", |
| TEST_DATA_DIRECTORY "/json_roundtrip/roundtrip11.json", |
| TEST_DATA_DIRECTORY "/json_roundtrip/roundtrip12.json", |
| TEST_DATA_DIRECTORY "/json_roundtrip/roundtrip13.json", |
| TEST_DATA_DIRECTORY "/json_roundtrip/roundtrip14.json", |
| TEST_DATA_DIRECTORY "/json_roundtrip/roundtrip15.json", |
| TEST_DATA_DIRECTORY "/json_roundtrip/roundtrip16.json", |
| TEST_DATA_DIRECTORY "/json_roundtrip/roundtrip17.json", |
| TEST_DATA_DIRECTORY "/json_roundtrip/roundtrip18.json", |
| TEST_DATA_DIRECTORY "/json_roundtrip/roundtrip19.json", |
| TEST_DATA_DIRECTORY "/json_roundtrip/roundtrip20.json", |
| TEST_DATA_DIRECTORY "/json_roundtrip/roundtrip21.json", |
| TEST_DATA_DIRECTORY "/json_roundtrip/roundtrip22.json", |
| TEST_DATA_DIRECTORY "/json_roundtrip/roundtrip23.json", |
| TEST_DATA_DIRECTORY "/json_roundtrip/roundtrip24.json", |
| TEST_DATA_DIRECTORY "/json_roundtrip/roundtrip25.json", |
| TEST_DATA_DIRECTORY "/json_roundtrip/roundtrip26.json", |
| TEST_DATA_DIRECTORY "/json_roundtrip/roundtrip27.json", |
| TEST_DATA_DIRECTORY "/json_roundtrip/roundtrip28.json", |
| TEST_DATA_DIRECTORY "/json_roundtrip/roundtrip29.json", |
| TEST_DATA_DIRECTORY "/json_roundtrip/roundtrip30.json", |
| TEST_DATA_DIRECTORY "/json_roundtrip/roundtrip31.json", |
| TEST_DATA_DIRECTORY "/json_roundtrip/roundtrip32.json", |
| TEST_DATA_DIRECTORY "/json_testsuite/sample.json", // kills AppVeyor |
| TEST_DATA_DIRECTORY "/json_tests/pass1.json", |
| TEST_DATA_DIRECTORY "/json_tests/pass2.json", |
| TEST_DATA_DIRECTORY "/json_tests/pass3.json", |
| TEST_DATA_DIRECTORY "/regression/floats.json", |
| TEST_DATA_DIRECTORY "/regression/signed_ints.json", |
| TEST_DATA_DIRECTORY "/regression/unsigned_ints.json", |
| TEST_DATA_DIRECTORY "/regression/working_file.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_array_arraysWithSpaces.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_array_empty-string.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_array_empty.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_array_ending_with_newline.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_array_false.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_array_heterogeneous.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_array_null.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_array_with_1_and_newline.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_array_with_leading_space.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_array_with_several_null.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_array_with_trailing_space.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_number.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_number_0e+1.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_number_0e1.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_number_after_space.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_number_double_close_to_zero.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_number_double_huge_neg_exp.json", |
| //TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_number_huge_exp.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_number_int_with_exp.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_number_minus_zero.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_number_negative_int.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_number_negative_one.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_number_negative_zero.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_number_real_capital_e.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_number_real_capital_e_neg_exp.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_number_real_capital_e_pos_exp.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_number_real_exponent.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_number_real_fraction_exponent.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_number_real_neg_exp.json", |
| //TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_number_real_neg_overflow.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_number_real_pos_exponent.json", |
| //TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_number_real_pos_overflow.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_number_real_underflow.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_number_simple_int.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_number_simple_real.json", |
| //TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_number_too_big_neg_int.json", |
| //TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_number_too_big_pos_int.json", |
| //TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_number_very_big_negative_int.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_object.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_object_basic.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_object_duplicated_key.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_object_duplicated_key_and_value.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_object_empty.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_object_empty_key.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_object_escaped_null_in_key.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_object_extreme_numbers.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_object_long_strings.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_object_simple.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_object_string_unicode.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_object_with_newlines.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_string_1_2_3_bytes_UTF-8_sequences.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_string_UTF-16_Surrogates_U+1D11E_MUSICAL_SYMBOL_G_CLEF.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_string_accepted_surrogate_pair.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_string_accepted_surrogate_pairs.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_string_allowed_escapes.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_string_backslash_and_u_escaped_zero.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_string_backslash_doublequotes.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_string_comments.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_string_double_escape_a.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_string_double_escape_n.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_string_escaped_control_character.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_string_escaped_noncharacter.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_string_in_array.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_string_in_array_with_leading_space.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_string_last_surrogates_1_and_2.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_string_newline_uescaped.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_string_nonCharacterInUTF-8_U+10FFFF.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_string_nonCharacterInUTF-8_U+1FFFF.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_string_nonCharacterInUTF-8_U+FFFF.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_string_null_escape.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_string_one-byte-utf-8.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_string_pi.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_string_simple_ascii.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_string_space.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_string_three-byte-utf-8.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_string_two-byte-utf-8.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_string_u+2028_line_sep.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_string_u+2029_par_sep.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_string_uEscape.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_string_unescaped_char_delete.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_string_unicode.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_string_unicodeEscapedBackslash.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_string_unicode_2.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_string_unicode_U+200B_ZERO_WIDTH_SPACE.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_string_unicode_U+2064_invisible_plus.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_string_unicode_escaped_double_quote.json", |
| // TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_string_utf16.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_string_utf8.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_string_with_del_character.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_structure_lonely_false.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_structure_lonely_int.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_structure_lonely_negative_real.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_structure_lonely_null.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_structure_lonely_string.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_structure_lonely_true.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_structure_string_empty.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_structure_trailing_newline.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_structure_true_in_array.json", |
| TEST_DATA_DIRECTORY "/nst_json_testsuite/test_parsing/y_structure_whitespace_array.json" |
| }) |
| { |
| CAPTURE(filename) |
| |
| std::ifstream f_json(filename); |
| const json j1 = json::parse(f_json); |
| auto packed = utils::read_binary_file(filename + ".msgpack"); |
| |
| { |
| INFO_WITH_TEMP(filename + ": std::vector<uint8_t>"); |
| json j2; |
| CHECK_NOTHROW(j2 = json::from_msgpack(packed)); |
| CHECK(j1 == j2); |
| } |
| |
| { |
| INFO_WITH_TEMP(filename + ": std::ifstream"); |
| std::ifstream f_msgpack(filename + ".msgpack", std::ios::binary); |
| json j2; |
| CHECK_NOTHROW(j2 = json::from_msgpack(f_msgpack)); |
| CHECK(j1 == j2); |
| } |
| |
| #ifndef JSON_TEST_DEPRECATED_FUNCTIONS_DELETED |
| { |
| INFO_WITH_TEMP(filename + ": uint8_t* and size"); |
| json j2; |
| CHECK_NOTHROW(j2 = json::from_msgpack({packed.data(), packed.size()})); |
| CHECK(j1 == j2); |
| } |
| #endif |
| |
| { |
| INFO_WITH_TEMP(filename + ": output to output adapters"); |
| if (exclude_packed.count(filename) == 0u) |
| { |
| { |
| INFO_WITH_TEMP(filename + ": output adapters: std::vector<uint8_t>"); |
| std::vector<uint8_t> vec; |
| json::to_msgpack(j1, vec); |
| CHECK(vec == packed); |
| } |
| } |
| } |
| } |
| } |
| } |
| |
| // the fake sizes below do not fit into a 32-bit std::size_t |
| // with clang and libstdc++ 10, the std::filesystem::path conversion that |
| // C++17 builds consider for every string type is ambiguous for a class |
| // derived from std::string, so the string case is not tested there |
| #if !(defined(__clang__) && defined(_GLIBCXX_RELEASE) && _GLIBCXX_RELEASE < 11) |
| #define JSON_TEST_BEYOND_UINT32_STRING 1 |
| #endif |
| |
| #if SIZE_MAX > UINT32_MAX |
| template<typename T, typename A = std::allocator<T>> |
| struct huge_array : std::vector<T, A> |
| { |
| using base = std::vector<T, A>; |
| using base::base; |
| |
| bool fake_size = false; |
| |
| std::size_t size() const noexcept |
| { |
| if (fake_size) |
| { |
| return (std::numeric_limits<std::uint32_t>::max)() + 1ULL; |
| } |
| |
| return base::size(); |
| } |
| }; |
| |
| using huge_array_json = nlohmann::basic_json < |
| std::map, huge_array, std::string, bool, std::int64_t, std::uint64_t, |
| double, std::allocator, nlohmann::adl_serializer, |
| std::vector<std::uint8_t>, void >; |
| |
| TEST_CASE("MessagePack Size above uint32 for array") |
| { |
| huge_array_json j = huge_array_json::array(); |
| |
| j.push_back(1); |
| j.push_back(2); |
| j.push_back(3); |
| |
| auto& array = j.get_ref<huge_array_json::array_t&>(); |
| array.fake_size = true; |
| |
| // write into a caller-owned vector: to_msgpack(j) reserves space based on |
| // the (faked) element count, which fails with bad_alloc on Windows |
| std::vector<std::uint8_t> result; |
| CHECK_THROWS_WITH_AS( |
| huge_array_json::to_msgpack(j, result), |
| "[json.exception.out_of_range.412] MessagePack length 4294967296 exceeds maximum of 4294967295", |
| json::out_of_range&); |
| |
| array.fake_size = false; |
| } |
| |
| template<typename K, typename V, |
| typename C = std::less<K>, |
| typename A = std::allocator<std::pair<const K, V>>> |
| struct huge_map : std::map<K, V, C, A> |
| { |
| using base = std::map<K, V, C, A>; |
| using base::base; |
| |
| bool fake_size = false; |
| |
| std::size_t size() const noexcept |
| { |
| if (fake_size) |
| { |
| return static_cast<std::size_t>(UINT32_MAX) + 1ULL; |
| } |
| |
| return base::size(); |
| } |
| }; |
| |
| using huge_object_json = nlohmann::basic_json < |
| huge_map, |
| std::vector, |
| std::string, |
| bool, |
| std::int64_t, |
| std::uint64_t, |
| double, |
| std::allocator, |
| nlohmann::adl_serializer, |
| std::vector<std::uint8_t>, |
| void >; |
| |
| TEST_CASE("MessagePack Size above uint32 for object") |
| { |
| |
| huge_object_json j = huge_object_json::object(); |
| |
| j["one"] = 1; |
| j["two"] = 2; |
| |
| auto& object = j.get_ref<huge_object_json::object_t&>(); |
| object.fake_size = true; |
| |
| // write into a caller-owned vector: to_msgpack(j) reserves space based on |
| // the (faked) element count, which fails with bad_alloc on Windows |
| std::vector<std::uint8_t> result; |
| CHECK_THROWS_WITH_AS( |
| huge_object_json::to_msgpack(j, result), |
| "[json.exception.out_of_range.412] MessagePack length 4294967296 exceeds maximum of 4294967295", |
| json::out_of_range&); |
| |
| object.fake_size = false; |
| } |
| |
| #ifdef JSON_TEST_BEYOND_UINT32_STRING |
| struct huge_string : std::string |
| { |
| using std::string::string; |
| |
| std::size_t size() const noexcept // NOLINT(readability-convert-member-functions-to-static) |
| { |
| return static_cast<std::size_t>(UINT32_MAX) + 1ULL; |
| } |
| }; |
| |
| using huge_string_json = nlohmann::basic_json < |
| std::map, |
| std::vector, |
| huge_string, |
| bool, |
| std::int64_t, |
| std::uint64_t, |
| double, |
| std::allocator, |
| nlohmann::adl_serializer, |
| std::vector<std::uint8_t>, |
| void >; |
| |
| TEST_CASE("MessagePack Size above uint32 for string") |
| { |
| const huge_string_json j = "hello"; |
| |
| CHECK_THROWS_WITH_AS( |
| huge_string_json::to_msgpack(j), |
| "[json.exception.out_of_range.412] MessagePack length 4294967296 exceeds maximum of 4294967295", |
| json::out_of_range&); |
| } |
| #endif |
| |
| struct huge_binary : std::vector<std::uint8_t> |
| { |
| using std::vector<std::uint8_t>::vector; |
| |
| std::size_t size() const noexcept // NOLINT(readability-convert-member-functions-to-static) |
| { |
| return static_cast<std::size_t>(UINT32_MAX) + 1ULL; |
| } |
| }; |
| |
| using huge_binary_json = nlohmann::basic_json < |
| std::map, |
| std::vector, |
| std::string, |
| bool, |
| std::int64_t, |
| std::uint64_t, |
| double, |
| std::allocator, |
| nlohmann::adl_serializer, |
| huge_binary, |
| void >; |
| |
| TEST_CASE("MessagePack Size above uint32 for binary") |
| { |
| |
| huge_binary_json j = huge_binary_json::binary(huge_binary{}); |
| |
| j.get_binary().push_back(0x01); |
| j.get_binary().push_back(0x02); |
| |
| CHECK_THROWS_WITH_AS( |
| huge_binary_json::to_msgpack(j), |
| "[json.exception.out_of_range.412] MessagePack length 4294967296 exceeds maximum of 4294967295", |
| json::out_of_range&); |
| } |
| #endif |
| |
| namespace |
| { |
| // types that report a size beyond UINT32_MAX without allocating that much |
| // memory, so the MessagePack length limit can be tested cheaply; see the |
| // similar types in unit-bson.cpp |
| std::size_t beyond_uint32_size() |
| { |
| return static_cast<std::size_t>((std::numeric_limits<std::uint32_t>::max)()) + 1; |
| } |
| |
| class beyond_uint32_binary_t : public std::vector<std::uint8_t> |
| { |
| public: |
| using std::vector<std::uint8_t>::vector; |
| |
| size_type size() const noexcept // NOLINT(readability-convert-member-functions-to-static) |
| { |
| return beyond_uint32_size(); |
| } |
| }; |
| |
| #ifdef JSON_TEST_BEYOND_UINT32_STRING |
| class beyond_uint32_string_t : public std::string |
| { |
| public: |
| using std::string::string; |
| |
| size_type size() const noexcept // NOLINT(readability-convert-member-functions-to-static) |
| { |
| return beyond_uint32_size(); |
| } |
| }; |
| |
| using beyond_uint32_string_json = nlohmann::basic_json < |
| std::map, std::vector, beyond_uint32_string_t, bool, std::int64_t, std::uint64_t, |
| double, std::allocator, nlohmann::adl_serializer, std::vector<std::uint8_t>, void >; |
| #endif |
| |
| using beyond_uint32_binary_json = nlohmann::basic_json < |
| std::map, std::vector, std::string, bool, std::int64_t, std::uint64_t, |
| double, std::allocator, nlohmann::adl_serializer, beyond_uint32_binary_t, void >; |
| } // namespace |
| |
| TEST_CASE("MessagePack lengths beyond UINT32_MAX cannot be serialized") |
| { |
| // MessagePack stores the length of a string, binary value, array, or |
| // object in at most 32 bits; a larger one used to be written without any |
| // length at all |
| #if SIZE_MAX > UINT32_MAX |
| { |
| const char* const expected = "[json.exception.out_of_range.412] MessagePack length 4294967296 exceeds maximum of 4294967295"; |
| |
| const beyond_uint32_binary_json binary = beyond_uint32_binary_json::binary(beyond_uint32_binary_t{}); |
| CHECK_THROWS_WITH_AS(beyond_uint32_binary_json::to_msgpack(binary), expected, beyond_uint32_binary_json::out_of_range&); |
| |
| const beyond_uint32_binary_json ext = beyond_uint32_binary_json::binary(beyond_uint32_binary_t{}, 42); |
| CHECK_THROWS_WITH_AS(beyond_uint32_binary_json::to_msgpack(ext), expected, beyond_uint32_binary_json::out_of_range&); |
| |
| #ifdef JSON_TEST_BEYOND_UINT32_STRING |
| // created from its type rather than from a beyond_uint32_string_t: |
| // that would consider the std::filesystem::path conversion, which |
| // libstdc++ 10 cannot decide for a class derived from std::string |
| const beyond_uint32_string_json string(beyond_uint32_string_json::value_t::string); |
| CHECK_THROWS_WITH_AS(beyond_uint32_string_json::to_msgpack(string), expected, beyond_uint32_string_json::out_of_range&); |
| #endif |
| } |
| #endif |
| } |
| |
| TEST_CASE("MessagePack numbers use the active union member (see #5644)") |
| { |
| // when number_integer_t is narrower than number_unsigned_t, to_msgpack() |
| // used to read the union member that was not the active one, writing |
| // wrong bytes for some values; std::int64_t/std::uint64_t (the default |
| // types, where both members have the same width) were not affected |
| using int32_json = nlohmann::json::with_integers_t<std::int32_t, std::uint64_t>; |
| using int16_json = nlohmann::json::with_integers_t<std::int16_t, std::uint64_t>; |
| |
| SECTION("number_integer_t = std::int32_t") |
| { |
| SECTION("6442450944 (uint 64; the low 32 bits used to be sign-extended)") |
| { |
| const int32_json j = 6442450944ULL; |
| CHECK(j.is_number_unsigned()); |
| |
| std::vector<uint8_t> const expected{0xcf, 0x00, 0x00, 0x00, 0x01, 0x80, 0x00, 0x00, 0x00}; |
| const auto result = int32_json::to_msgpack(j); |
| CHECK(result == expected); |
| CHECK(int32_json::from_msgpack(result) == j); |
| } |
| |
| SECTION("4294967496 (uint 64; the low 32 bits used to be the whole value)") |
| { |
| const int32_json j = 4294967496ULL; |
| CHECK(j.is_number_unsigned()); |
| |
| std::vector<uint8_t> const expected{0xcf, 0x00, 0x00, 0x00, 0x01, 0x00, 0x00, 0x00, 0xc8}; |
| const auto result = int32_json::to_msgpack(j); |
| CHECK(result == expected); |
| CHECK(int32_json::from_msgpack(result) == j); |
| } |
| } |
| |
| SECTION("number_integer_t = std::int16_t, 98304 (uint 32)") |
| { |
| const int16_json j = 98304ULL; |
| CHECK(j.is_number_unsigned()); |
| |
| std::vector<uint8_t> const expected{0xce, 0x00, 0x01, 0x80, 0x00}; |
| const auto result = int16_json::to_msgpack(j); |
| CHECK(result == expected); |
| CHECK(int16_json::from_msgpack(result) == j); |
| } |
| |
| SECTION("default types (std::int64_t/std::uint64_t) are unaffected") |
| { |
| const json j = 4294967496ULL; |
| CHECK(j.is_number_unsigned()); |
| |
| std::vector<uint8_t> const expected{0xcf, 0x00, 0x00, 0x00, 0x01, 0x00, 0x00, 0x00, 0xc8}; |
| const auto result = json::to_msgpack(j); |
| CHECK(result == expected); |
| CHECK(json::from_msgpack(result) == j); |
| } |
| } |
| |
| TEST_CASE("MessagePack large strings and binaries (chunked reader)") |
| { |
| // get_msgpack_string()/get_msgpack_binary() both read through get_binary(), |
| // which reads in bounded chunks (binary_reader.hpp, chunk_size == 4096); |
| // make sure roundtripping is correct for lengths around and beyond that |
| // chunk size, for both vector (iterator) and pointer inputs. |
| for (const std::size_t len : |
| { |
| std::size_t{0}, std::size_t{1}, std::size_t{4095}, std::size_t{4096}, |
| std::size_t{4097}, std::size_t{8192}, std::size_t{100000} |
| }) |
| { |
| CAPTURE(len) |
| |
| // string |
| const json j_string = std::string(len, 'x'); |
| const std::vector<std::uint8_t> v_string = json::to_msgpack(j_string); |
| CHECK(json::from_msgpack(v_string) == j_string); |
| // pointer input exercises the std::memcpy fast path |
| CHECK(json::from_msgpack(reinterpret_cast<const char*>(v_string.data()), |
| reinterpret_cast<const char*>(v_string.data()) + v_string.size()) == j_string); |
| |
| // binary |
| const json j_binary = json::binary(std::vector<std::uint8_t>(len, 0xCD)); |
| const std::vector<std::uint8_t> v_binary = json::to_msgpack(j_binary); |
| CHECK(json::from_msgpack(v_binary) == j_binary); |
| CHECK(json::from_msgpack(reinterpret_cast<const char*>(v_binary.data()), |
| reinterpret_cast<const char*>(v_binary.data()) + v_binary.size()) == j_binary); |
| |
| // a truncated payload must still be reported as an error |
| if (len > 16) |
| { |
| std::vector<std::uint8_t> truncated = v_string; |
| truncated.resize(truncated.size() - 8); |
| json _; |
| CHECK_THROWS_AS(_ = json::from_msgpack(truncated), json::parse_error); |
| } |
| } |
| } |