440 lines
14 KiB
C++
440 lines
14 KiB
C++
/*
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__ _____ _____ _____
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__| | __| | | | JSON for Modern C++ (test suite)
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| | |__ | | | | | | version 3.1.2
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|_____|_____|_____|_|___| https://github.com/nlohmann/json
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Licensed under the MIT License <http://opensource.org/licenses/MIT>.
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SPDX-License-Identifier: MIT
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Copyright (c) 2013-2018 Niels Lohmann <http://nlohmann.me>.
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Permission is hereby granted, free of charge, to any person obtaining a copy
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of this software and associated documentation files (the "Software"), to deal
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in the Software without restriction, including without limitation the rights
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to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
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copies of the Software, and to permit persons to whom the Software is
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furnished to do so, subject to the following conditions:
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The above copyright notice and this permission notice shall be included in all
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copies or substantial portions of the Software.
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THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
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AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
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OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
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SOFTWARE.
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*/
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#include "catch.hpp"
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#include <fstream>
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#include <nlohmann/json.hpp>
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using nlohmann::json;
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TEST_CASE("object inspection")
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{
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SECTION("convenience type checker")
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{
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SECTION("object")
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{
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json j {{"foo", 1}, {"bar", false}};
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CHECK(not j.is_null());
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CHECK(not j.is_boolean());
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CHECK(not j.is_number());
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CHECK(not j.is_number_integer());
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CHECK(not j.is_number_unsigned());
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CHECK(not j.is_number_float());
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CHECK(j.is_object());
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CHECK(not j.is_array());
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CHECK(not j.is_string());
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CHECK(not j.is_discarded());
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CHECK(not j.is_primitive());
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CHECK(j.is_structured());
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}
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SECTION("array")
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{
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json j {"foo", 1, 1u, 42.23, false};
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CHECK(not j.is_null());
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CHECK(not j.is_boolean());
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CHECK(not j.is_number());
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CHECK(not j.is_number_integer());
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CHECK(not j.is_number_unsigned());
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CHECK(not j.is_number_float());
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CHECK(not j.is_object());
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CHECK(j.is_array());
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CHECK(not j.is_string());
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CHECK(not j.is_discarded());
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CHECK(not j.is_primitive());
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CHECK(j.is_structured());
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}
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SECTION("null")
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{
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json j(nullptr);
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CHECK(j.is_null());
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CHECK(not j.is_boolean());
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CHECK(not j.is_number());
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CHECK(not j.is_number_integer());
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CHECK(not j.is_number_unsigned());
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CHECK(not j.is_number_float());
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CHECK(not j.is_object());
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CHECK(not j.is_array());
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CHECK(not j.is_string());
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CHECK(not j.is_discarded());
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CHECK(j.is_primitive());
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CHECK(not j.is_structured());
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}
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SECTION("boolean")
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{
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json j(true);
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CHECK(not j.is_null());
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CHECK(j.is_boolean());
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CHECK(not j.is_number());
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CHECK(not j.is_number_integer());
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CHECK(not j.is_number_unsigned());
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CHECK(not j.is_number_float());
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CHECK(not j.is_object());
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CHECK(not j.is_array());
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CHECK(not j.is_string());
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CHECK(not j.is_discarded());
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CHECK(j.is_primitive());
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CHECK(not j.is_structured());
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}
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SECTION("string")
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{
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json j("Hello world");
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CHECK(not j.is_null());
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CHECK(not j.is_boolean());
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CHECK(not j.is_number());
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CHECK(not j.is_number_integer());
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CHECK(not j.is_number_unsigned());
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CHECK(not j.is_number_float());
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CHECK(not j.is_object());
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CHECK(not j.is_array());
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CHECK(j.is_string());
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CHECK(not j.is_discarded());
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CHECK(j.is_primitive());
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CHECK(not j.is_structured());
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}
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SECTION("number (integer)")
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{
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json j(42);
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CHECK(not j.is_null());
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CHECK(not j.is_boolean());
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CHECK(j.is_number());
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CHECK(j.is_number_integer());
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CHECK(not j.is_number_unsigned());
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CHECK(not j.is_number_float());
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CHECK(not j.is_object());
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CHECK(not j.is_array());
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CHECK(not j.is_string());
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CHECK(not j.is_discarded());
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CHECK(j.is_primitive());
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CHECK(not j.is_structured());
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}
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SECTION("number (unsigned)")
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{
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json j(42u);
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CHECK(not j.is_null());
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CHECK(not j.is_boolean());
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CHECK(j.is_number());
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CHECK(j.is_number_integer());
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CHECK(j.is_number_unsigned());
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CHECK(not j.is_number_float());
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CHECK(not j.is_object());
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CHECK(not j.is_array());
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CHECK(not j.is_string());
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CHECK(not j.is_discarded());
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CHECK(j.is_primitive());
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CHECK(not j.is_structured());
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}
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SECTION("number (floating-point)")
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{
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json j(42.23);
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CHECK(not j.is_null());
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CHECK(not j.is_boolean());
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CHECK(j.is_number());
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CHECK(not j.is_number_integer());
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CHECK(not j.is_number_unsigned());
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CHECK(j.is_number_float());
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CHECK(not j.is_object());
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CHECK(not j.is_array());
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CHECK(not j.is_string());
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CHECK(not j.is_discarded());
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CHECK(j.is_primitive());
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CHECK(not j.is_structured());
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}
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SECTION("discarded")
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{
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json j(json::value_t::discarded);
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CHECK(not j.is_null());
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CHECK(not j.is_boolean());
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CHECK(not j.is_number());
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CHECK(not j.is_number_integer());
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CHECK(not j.is_number_unsigned());
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CHECK(not j.is_number_float());
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CHECK(not j.is_object());
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CHECK(not j.is_array());
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CHECK(not j.is_string());
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CHECK(j.is_discarded());
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CHECK(not j.is_primitive());
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CHECK(not j.is_structured());
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}
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}
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SECTION("serialization")
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{
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json j {{"object", json::object()}, {"array", {1, 2, 3, 4}}, {"number", 42}, {"boolean", false}, {"null", nullptr}, {"string", "Hello world"} };
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SECTION("no indent / indent=-1")
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{
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CHECK(j.dump() ==
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"{\"array\":[1,2,3,4],\"boolean\":false,\"null\":null,\"number\":42,\"object\":{},\"string\":\"Hello world\"}");
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CHECK(j.dump() == j.dump(-1));
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}
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SECTION("indent=0")
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{
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CHECK(j.dump(0) ==
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"{\n\"array\": [\n1,\n2,\n3,\n4\n],\n\"boolean\": false,\n\"null\": null,\n\"number\": 42,\n\"object\": {},\n\"string\": \"Hello world\"\n}");
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}
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SECTION("indent=1, space='\t'")
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{
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CHECK(j.dump(1, '\t') ==
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"{\n\t\"array\": [\n\t\t1,\n\t\t2,\n\t\t3,\n\t\t4\n\t],\n\t\"boolean\": false,\n\t\"null\": null,\n\t\"number\": 42,\n\t\"object\": {},\n\t\"string\": \"Hello world\"\n}");
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}
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SECTION("indent=4")
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{
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CHECK(j.dump(4) ==
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"{\n \"array\": [\n 1,\n 2,\n 3,\n 4\n ],\n \"boolean\": false,\n \"null\": null,\n \"number\": 42,\n \"object\": {},\n \"string\": \"Hello world\"\n}");
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}
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SECTION("indent=x")
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{
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CHECK(j.dump().size() == 94);
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CHECK(j.dump(1).size() == 127);
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CHECK(j.dump(2).size() == 142);
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CHECK(j.dump(512).size() == 7792);
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// important test, because it yields a resize of the indent_string
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// inside the dump() function
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CHECK(j.dump(1024).size() == 15472);
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}
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SECTION("dump and floating-point numbers")
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{
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auto s = json(42.23).dump();
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CHECK(s.find("42.23") != std::string::npos);
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}
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SECTION("dump and small floating-point numbers")
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{
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auto s = json(1.23456e-78).dump();
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CHECK(s.find("1.23456e-78") != std::string::npos);
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}
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SECTION("dump and non-ASCII characters")
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{
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CHECK(json("ä").dump() == "\"ä\"");
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CHECK(json("Ö").dump() == "\"Ö\"");
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CHECK(json("❤️").dump() == "\"❤️\"");
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}
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SECTION("dump with ensure_ascii and non-ASCII characters")
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{
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CHECK(json("ä").dump(-1, ' ', true) == "\"\\u00e4\"");
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CHECK(json("Ö").dump(-1, ' ', true) == "\"\\u00d6\"");
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CHECK(json("❤️").dump(-1, ' ', true) == "\"\\u2764\\ufe0f\"");
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}
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SECTION("full Unicode escaping to ASCII")
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{
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SECTION("parsing yields the same JSON value")
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{
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std::ifstream f_escaped("test/data/json_nlohmann_tests/all_unicode_ascii.json");
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std::ifstream f_unescaped("test/data/json_nlohmann_tests/all_unicode.json");
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json j1 = json::parse(f_escaped);
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json j2 = json::parse(f_unescaped);
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CHECK(j1 == j2);
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}
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SECTION("dumping yields the same JSON text")
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{
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std::ifstream f_escaped("test/data/json_nlohmann_tests/all_unicode_ascii.json");
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std::ifstream f_unescaped("test/data/json_nlohmann_tests/all_unicode.json");
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json value = json::parse(f_unescaped);
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std::string text = value.dump(4, ' ', true);
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std::string expected((std::istreambuf_iterator<char>(f_escaped)),
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std::istreambuf_iterator<char>());
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CHECK(text == expected);
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}
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}
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SECTION("serialization of discarded element")
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{
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json j_discarded(json::value_t::discarded);
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CHECK(j_discarded.dump() == "<discarded>");
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}
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SECTION("check that precision is reset after serialization")
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{
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// create stringstream and set precision
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std::stringstream ss;
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ss.precision(3);
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ss << 3.141592653589793 << std::fixed;
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CHECK(ss.str() == "3.14");
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// reset stringstream
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ss.str(std::string());
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// use stringstream for JSON serialization
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json j_number = 3.14159265358979;
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ss << j_number;
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// check that precision has been overridden during serialization
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CHECK(ss.str() == "3.14159265358979");
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// check that precision has been restored
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CHECK(ss.precision() == 3);
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}
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}
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SECTION("round trips")
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{
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for (const auto& s :
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{"3.141592653589793", "1000000000000000010E5"
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})
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{
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json j1 = json::parse(s);
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std::string s1 = j1.dump();
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json j2 = json::parse(s1);
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std::string s2 = j2.dump();
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CHECK(s1 == s2);
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}
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}
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SECTION("return the type of the object (explicit)")
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{
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SECTION("null")
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{
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json j = nullptr;
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CHECK(j.type() == json::value_t::null);
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}
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SECTION("object")
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{
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json j = {{"foo", "bar"}};
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CHECK(j.type() == json::value_t::object);
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}
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SECTION("array")
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{
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json j = {1, 2, 3, 4};
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CHECK(j.type() == json::value_t::array);
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}
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SECTION("boolean")
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{
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json j = true;
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CHECK(j.type() == json::value_t::boolean);
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}
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SECTION("string")
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{
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json j = "Hello world";
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CHECK(j.type() == json::value_t::string);
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}
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SECTION("number (integer)")
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{
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json j = 23;
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CHECK(j.type() == json::value_t::number_integer);
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}
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SECTION("number (unsigned)")
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{
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json j = 23u;
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CHECK(j.type() == json::value_t::number_unsigned);
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}
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SECTION("number (floating-point)")
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{
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json j = 42.23;
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CHECK(j.type() == json::value_t::number_float);
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}
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}
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SECTION("return the type of the object (implicit)")
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{
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SECTION("null")
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{
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json j = nullptr;
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json::value_t t = j;
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CHECK(t == j.type());
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}
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SECTION("object")
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{
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json j = {{"foo", "bar"}};
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json::value_t t = j;
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CHECK(t == j.type());
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}
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SECTION("array")
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{
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json j = {1, 2, 3, 4};
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json::value_t t = j;
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CHECK(t == j.type());
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}
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SECTION("boolean")
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{
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json j = true;
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json::value_t t = j;
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CHECK(t == j.type());
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}
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SECTION("string")
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{
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json j = "Hello world";
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json::value_t t = j;
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CHECK(t == j.type());
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}
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SECTION("number (integer)")
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{
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json j = 23;
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json::value_t t = j;
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CHECK(t == j.type());
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}
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SECTION("number (unsigned)")
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{
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json j = 23u;
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json::value_t t = j;
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CHECK(t == j.type());
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}
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SECTION("number (floating-point)")
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{
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json j = 42.23;
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json::value_t t = j;
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CHECK(t == j.type());
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}
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}
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}
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