113 lines
4.9 KiB
C#
113 lines
4.9 KiB
C#
// Copyright (c) .NET Foundation. All rights reserved.
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// Licensed under the Apache License, Version 2.0. See License.txt in the project root for license information.
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using System;
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using System.Linq;
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using System.Security.Cryptography;
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using System.Text;
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using Microsoft.AspNetCore.DataProtection.Test.Shared;
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using Microsoft.AspNetCore.Testing.xunit;
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using Xunit;
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namespace Microsoft.AspNetCore.DataProtection.Managed
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{
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public class ManagedAuthenticatedEncryptorTests
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{
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[Fact]
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public void Encrypt_Decrypt_RoundTrips()
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{
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// Arrange
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Secret kdk = new Secret(new byte[512 / 8]);
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ManagedAuthenticatedEncryptor encryptor = new ManagedAuthenticatedEncryptor(kdk,
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symmetricAlgorithmFactory: Aes.Create,
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symmetricAlgorithmKeySizeInBytes: 256 / 8,
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validationAlgorithmFactory: () => new HMACSHA256());
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ArraySegment<byte> plaintext = new ArraySegment<byte>(Encoding.UTF8.GetBytes("plaintext"));
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ArraySegment<byte> aad = new ArraySegment<byte>(Encoding.UTF8.GetBytes("aad"));
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// Act
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byte[] ciphertext = encryptor.Encrypt(plaintext, aad);
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byte[] decipheredtext = encryptor.Decrypt(new ArraySegment<byte>(ciphertext), aad);
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// Assert
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Assert.Equal(plaintext, decipheredtext);
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}
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[Fact]
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public void Encrypt_Decrypt_Tampering_Fails()
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{
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// Arrange
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Secret kdk = new Secret(new byte[512 / 8]);
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ManagedAuthenticatedEncryptor encryptor = new ManagedAuthenticatedEncryptor(kdk,
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symmetricAlgorithmFactory: Aes.Create,
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symmetricAlgorithmKeySizeInBytes: 256 / 8,
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validationAlgorithmFactory: () => new HMACSHA256());
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ArraySegment<byte> plaintext = new ArraySegment<byte>(Encoding.UTF8.GetBytes("plaintext"));
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ArraySegment<byte> aad = new ArraySegment<byte>(Encoding.UTF8.GetBytes("aad"));
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byte[] validCiphertext = encryptor.Encrypt(plaintext, aad);
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// Act & assert - 1
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// Ciphertext is too short to be a valid payload
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byte[] invalidCiphertext_tooShort = new byte[10];
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Assert.Throws<CryptographicException>(() =>
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{
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encryptor.Decrypt(new ArraySegment<byte>(invalidCiphertext_tooShort), aad);
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});
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// Act & assert - 2
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// Ciphertext has been manipulated
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byte[] invalidCiphertext_manipulated = (byte[])validCiphertext.Clone();
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invalidCiphertext_manipulated[0] ^= 0x01;
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Assert.Throws<CryptographicException>(() =>
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{
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encryptor.Decrypt(new ArraySegment<byte>(invalidCiphertext_manipulated), aad);
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});
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// Act & assert - 3
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// Ciphertext is too long
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byte[] invalidCiphertext_tooLong = validCiphertext.Concat(new byte[] { 0 }).ToArray();
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Assert.Throws<CryptographicException>(() =>
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{
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encryptor.Decrypt(new ArraySegment<byte>(invalidCiphertext_tooLong), aad);
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});
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// Act & assert - 4
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// AAD is incorrect
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Assert.Throws<CryptographicException>(() =>
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{
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encryptor.Decrypt(new ArraySegment<byte>(validCiphertext), new ArraySegment<byte>(Encoding.UTF8.GetBytes("different aad")));
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});
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}
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[Fact]
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public void Encrypt_KnownKey()
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{
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// Arrange
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Secret kdk = new Secret(Encoding.UTF8.GetBytes("master key"));
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ManagedAuthenticatedEncryptor encryptor = new ManagedAuthenticatedEncryptor(kdk,
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symmetricAlgorithmFactory: Aes.Create,
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symmetricAlgorithmKeySizeInBytes: 256 / 8,
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validationAlgorithmFactory: () => new HMACSHA256(),
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genRandom: new SequentialGenRandom());
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ArraySegment<byte> plaintext = new ArraySegment<byte>(new byte[] { 0, 1, 2, 3, 4, 5, 6, 7 }, 2, 3);
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ArraySegment<byte> aad = new ArraySegment<byte>(new byte[] { 7, 6, 5, 4, 3, 2, 1, 0 }, 1, 4);
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// Act
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byte[] retVal = encryptor.Encrypt(
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plaintext: plaintext,
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additionalAuthenticatedData: aad);
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// Assert
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// retVal := 00 01 02 03 04 05 06 07 08 09 0A 0B 0C 0D 0E 0F (keyModifier)
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// | 10 11 12 13 14 15 16 17 18 19 1A 1B 1C 1D 1E 1F (IV)
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// | B7 EA 3E 32 58 93 A3 06 03 89 C6 66 03 63 08 4B (encryptedData)
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// | 9D 8A 85 C7 0F BD 98 D8 7F 72 E7 72 3E B5 A6 26 (HMAC)
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// | 6C 38 77 F7 66 19 A2 C9 2C BB AD DA E7 62 00 00
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string retValAsString = Convert.ToBase64String(retVal);
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Assert.Equal("AAECAwQFBgcICQoLDA0ODxAREhMUFRYXGBkaGxwdHh+36j4yWJOjBgOJxmYDYwhLnYqFxw+9mNh/cudyPrWmJmw4d/dmGaLJLLut2udiAAA=", retValAsString);
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}
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}
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}
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