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64 lines
1.5 KiB
C++
64 lines
1.5 KiB
C++
#include <crypto/encrypted_frame.hpp>
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#include <crypto/crypto.hpp>
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#include <crypto/crypto_libsodium.hpp>
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#include <llarp_test.hpp>
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#include <messages/relay_commit.hpp>
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#include <test_util.hpp>
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#include <gtest/gtest.h>
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using namespace ::llarp;
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using namespace ::testing;
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using EncryptedFrame = EncryptedFrame;
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using SecretKey = SecretKey;
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using PubKey = PubKey;
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using LRCR = LR_CommitRecord;
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class FrameTest : public test::LlarpTest<>
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{
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public:
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SecretKey alice, bob;
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};
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TEST_F(FrameTest, TestFrameCrypto)
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{
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EncryptedFrame f(256);
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f.Fill(0);
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LRCR record;
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record.nextHop.Fill(1);
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record.tunnelNonce.Fill(2);
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record.rxid.Fill(3);
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record.txid.Fill(4);
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auto buf = f.Buffer();
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buf->cur = buf->base + EncryptedFrameOverheadSize;
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ASSERT_TRUE(record.BEncode(buf));
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EXPECT_CALL(m_crypto, randbytes(_, _))
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.WillOnce(Invoke(&test::randbytes_impl));
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EXPECT_CALL(m_crypto, dh_client(_, _, alice, _)).WillOnce(Return(true));
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EXPECT_CALL(m_crypto, xchacha20(_, _, _))
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.Times(2)
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.WillRepeatedly(Return(true));
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EXPECT_CALL(m_crypto, hmac(_, _, _)).Times(2).WillRepeatedly(Return(true));
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// rewind buffer
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buf->cur = buf->base + EncryptedFrameOverheadSize;
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// encrypt to alice
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ASSERT_TRUE(f.EncryptInPlace(alice, bob.toPublic()));
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EXPECT_CALL(m_crypto, dh_server(_, _, _, _)).WillOnce(Return(true));
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// decrypt from alice
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ASSERT_TRUE(f.DecryptInPlace(bob));
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LRCR otherRecord;
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ASSERT_TRUE(otherRecord.BDecode(buf));
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ASSERT_TRUE(otherRecord == record);
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}
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