179 lines
5.2 KiB
C++
Executable File
179 lines
5.2 KiB
C++
Executable File
#include <iostream>
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#include <chrono>
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#include <ctime>
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#include "jwt/jwt.hpp"
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#include "gtest/gtest.h"
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TEST (DecodeVerifyExp, BeforeExpiryTest)
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{
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using namespace jwt::params;
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jwt::jwt_object obj{algorithm("HS256"), secret("secret")};
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obj.add_claim("iss", "arun.muralidharan")
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.add_claim("exp", std::chrono::system_clock::now() + std::chrono::seconds{10})
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;
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auto enc_str = obj.signature();
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auto dec_obj = jwt::decode(enc_str, algorithms({"HS256"}), secret("secret"), verify(true));
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}
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TEST (DecodeVerifyExp, AfterExpiryTest)
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{
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using namespace jwt::params;
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jwt::jwt_object obj{algorithm("HS256"), secret("secret")};
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obj.add_claim("iss", "arun.muralidharan")
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.add_claim("exp", std::chrono::system_clock::now() - std::chrono::seconds{1})
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;
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auto enc_str = obj.signature();
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EXPECT_THROW (jwt::decode(enc_str, algorithms({"HS256"}), secret("secret"), verify(true)),
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jwt::TokenExpiredError);
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}
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TEST (DecodeVerifyExp, AfterExpiryWithLeeway)
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{
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using namespace jwt::params;
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jwt::jwt_object obj{algorithm("HS256"), secret("secret")};
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obj.add_claim("iss", "arun.muralidharan")
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.add_claim("exp", std::chrono::system_clock::now() - std::chrono::seconds{1})
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;
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auto enc_str = obj.signature();
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auto dec_obj = jwt::decode(enc_str, algorithms({"HS256"}), secret("secret"), verify(true), leeway(2));
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(void)dec_obj;
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}
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TEST (DecodeVerifyExp, ValidIssuerTest)
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{
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using namespace jwt::params;
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jwt::jwt_object obj{algorithm("HS256"), secret("secret")};
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obj.add_claim("iss", "arun.muralidharan")
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.add_claim("sub", "test")
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;
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auto enc_str = obj.signature();
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auto dec_obj = jwt::decode(enc_str, algorithms({"HS256"}), secret("secret"), issuer("arun.muralidharan"));
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(void)dec_obj;
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}
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TEST (DecodeVerifyExp, InvalidIssuerTest_1)
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{
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using namespace jwt::params;
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jwt::jwt_object obj{algorithm("HS256"), secret("secret"), payload({{"sub", "test"}})};
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auto enc_str = obj.signature();
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EXPECT_THROW (jwt::decode(enc_str, algorithms({"HS256"}), secret("secret"), issuer("arun.muralidharan")),
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jwt::InvalidIssuerError);
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}
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TEST (DecodeVerifyExp, InvalidIssuerTest_2)
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{
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using namespace jwt::params;
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jwt::jwt_object obj{algorithm("HS256"), secret("secret"), payload({{"sub", "test"}})};
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obj.add_claim("iss", "arun.muralidharan");
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auto enc_str = obj.signature();
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EXPECT_THROW (jwt::decode(enc_str, algorithms({"HS256"}), secret("secret"), issuer("arun.murali")),
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jwt::InvalidIssuerError);
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}
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TEST (DecodeVerifyExp, NotImmatureSignatureTest)
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{
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using namespace jwt::params;
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jwt::jwt_object obj{algorithm("HS256"), secret("secret"), payload({{"sub", "test"}})};
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obj.add_claim(jwt::registered_claims::not_before, std::chrono::system_clock::now() - std::chrono::seconds{10});
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auto enc_str = obj.signature();
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auto dec_obj = jwt::decode(enc_str, algorithms({"HS256"}), secret("secret"));
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(void)dec_obj;
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}
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TEST (DecodeVerifyExp, ImmatureSignatureTest)
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{
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using namespace jwt::params;
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jwt::jwt_object obj{algorithm("HS256"), secret("secret"), payload({{"sub", "test"}})};
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obj.add_claim(jwt::registered_claims::not_before, std::chrono::system_clock::now() + std::chrono::seconds{10});
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auto enc_str = obj.signature();
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EXPECT_THROW (jwt::decode(enc_str, algorithms({"HS256"}), secret("secret")),
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jwt::ImmatureSignatureError);
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}
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TEST (DecodeVerifyExp, ImmatureSignatureTestWithLeeway)
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{
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using namespace jwt::params;
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jwt::jwt_object obj{algorithm("HS256"), secret("secret"), payload({{"sub", "test"}})};
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obj.add_claim(jwt::registered_claims::not_before, std::chrono::system_clock::now() + std::chrono::seconds{10});
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auto enc_str = obj.signature();
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auto dec_obj = jwt::decode(enc_str, algorithms({"HS256"}), secret("secret"), leeway(10));
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(void)dec_obj;
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}
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TEST (DecodeVerifyExp, InvalidAudienceTest)
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{
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using namespace jwt::params;
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jwt::jwt_object obj{algorithm("HS256"), secret("secret"), payload({{"sub", "test"}, {"aud", "www"}})};
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auto enc_str = obj.signature();
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EXPECT_THROW (jwt::decode(enc_str, algorithms({"HS256"}), secret("secret"), aud("ww")),
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jwt::InvalidAudienceError);
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}
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TEST (DecodeVerifyExp, InvalidSignatureTest)
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{
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using namespace jwt::params;
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const char* inv_enc_str =
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"eyJhbGciOiJOT05FIiwidHlwIjoiSldUIn0.eyJhdWQiOiJyaWZ0LmlvIiwiZXhwIjoxNTEzODYzMzcxLCJzdWIiOiJub3RoaW5nIG11Y2gifQ";
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EXPECT_THROW (jwt::decode(inv_enc_str, algorithms({"none", "HS256"})),
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jwt::SignatureFormatError);
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}
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TEST (DecodeVerifyExp, KeyNotPresentTest)
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{
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using namespace jwt::params;
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const char* enc_str =
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"eyJhbGciOiJIUzI1NiIsInR5cCI6IkpXVCJ9."
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"eyJpYXQiOjE1MTM4NjIzNzEsImlkIjoiYS1iLWMtZC1lLWYtMS0yLTMiLCJpc3MiOiJhcnVuLm11cmFsaWRoYXJhbiIsInN1YiI6ImFkbWluIn0."
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"jk7bRQKTLvs1RcuvMc2B_rt6WBYPoVPirYi_QRBPiuk";
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EXPECT_THROW (jwt::decode(enc_str, algorithms({"none", "HS256"}), verify(true)),
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jwt::KeyNotPresentError);
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}
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TEST (DecodeVerifyExp, InvalidSubjectTest)
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{
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using namespace jwt::params;
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jwt::jwt_object obj{algorithm("HS256"), secret("secret"), payload({{"sub", "test"}, {"aud", "www"}})};
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auto enc_str = obj.signature();
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EXPECT_THROW (jwt::decode(enc_str, algorithms({"HS256"}), secret("secret"), sub("TEST")),
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jwt::InvalidSubjectError);
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}
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