Encrypt string with Bouncy Castle AES/CBC/PKCS7

给你一囗甜甜゛ 提交于 2019-12-02 22:07:04

Here are snippets I use. It uses the default built-in System.Security.Cryptography. It doesn't need to be BC

    /// <summary>
    /// Encrypt a byte array using AES 128
    /// </summary>
    /// <param name="key">128 bit key</param>
    /// <param name="secret">byte array that need to be encrypted</param>
    /// <returns>Encrypted array</returns>
    public static byte[] EncryptByteArray(byte[] key, byte[] secret)
    {
        using (MemoryStream ms = new MemoryStream())
        {
            using (AesManaged cryptor = new AesManaged())
            {
                cryptor.Mode = CipherMode.CBC;
                cryptor.Padding = PaddingMode.PKCS7;
                cryptor.KeySize = 128;
                cryptor.BlockSize = 128;

                //We use the random generated iv created by AesManaged
                byte[] iv = cryptor.IV;

                using (CryptoStream cs = new CryptoStream(ms, cryptor.CreateEncryptor(key, iv), CryptoStreamMode.Write))
                {
                    cs.Write(secret, 0, secret.Length);
                }
                byte[] encryptedContent = ms.ToArray();

                //Create new byte array that should contain both unencrypted iv and encrypted data
                byte[] result = new byte[iv.Length + encryptedContent.Length];

                //copy our 2 array into one
                System.Buffer.BlockCopy(iv, 0, result, 0, iv.Length);
                System.Buffer.BlockCopy(encryptedContent, 0, result, iv.Length, encryptedContent.Length);

                return result;
            }
        }
    }

    /// <summary>
    /// Decrypt a byte array using AES 128
    /// </summary>
    /// <param name="key">key in bytes</param>
    /// <param name="secret">the encrypted bytes</param>
    /// <returns>decrypted bytes</returns>
    public static byte[] DecryptByteArray(byte[] key, byte[] secret)
    {
        byte[] iv = new byte[16]; //initial vector is 16 bytes
        byte[] encryptedContent = new byte[secret.Length - 16]; //the rest should be encryptedcontent

        //Copy data to byte array
        System.Buffer.BlockCopy(secret, 0, iv, 0, iv.Length);
        System.Buffer.BlockCopy(secret, iv.Length, encryptedContent, 0, encryptedContent.Length);

        using (MemoryStream ms = new MemoryStream())
        {
            using (AesManaged cryptor = new AesManaged())
            {
                cryptor.Mode = CipherMode.CBC;
                cryptor.Padding = PaddingMode.PKCS7;
                cryptor.KeySize = 128;
                cryptor.BlockSize = 128;

                using (CryptoStream cs = new CryptoStream(ms, cryptor.CreateDecryptor(key, iv), CryptoStreamMode.Write))
                {
                    cs.Write(encryptedContent, 0, encryptedContent.Length);

                }
                return ms.ToArray();
            }
        }
    }

If you really need BC, here is a quick test I manage to write based on the test suit from https://github.com/bcgit/bc-csharp/blob/master/crypto/test/src/crypto/test/AESFastTest.cs You can tailor it for your need

    private static void TestBC()
    {
        //Demo params
        string keyString = "jDxESdRrcYKmSZi7IOW4lw==";   

        string input = "abc";
        byte[] inputBytes = Encoding.UTF8.GetBytes(input);            
        byte[] iv = new byte[16]; //for the sake of demo

        //Set up
        AesEngine engine = new AesEngine();
        CbcBlockCipher blockCipher = new CbcBlockCipher(engine); //CBC
        PaddedBufferedBlockCipher cipher = new PaddedBufferedBlockCipher(blockCipher); //Default scheme is PKCS5/PKCS7
        KeyParameter keyParam = new KeyParameter(Convert.FromBase64String(keyString));
        ParametersWithIV keyParamWithIV = new ParametersWithIV(keyParam, iv, 0, 16);

        // Encrypt
        cipher.Init(true, keyParamWithIV);
        byte[] outputBytes = new byte[cipher.GetOutputSize(inputBytes.Length)];
        int length = cipher.ProcessBytes(inputBytes, outputBytes, 0);
        cipher.DoFinal(outputBytes, length); //Do the final block
        string encryptedInput = Convert.ToBase64String(outputBytes);

        Console.WriteLine("Encrypted string: {0}", encryptedInput);

        //Decrypt            
        cipher.Init(false, keyParamWithIV);
        byte[] comparisonBytes = new byte[cipher.GetOutputSize(outputBytes.Length)];
        length = cipher.ProcessBytes(outputBytes, comparisonBytes, 0);
        cipher.DoFinal(comparisonBytes, length); //Do the final block

        Console.WriteLine("Decrypted string: {0}",Encoding.UTF8.GetString(comparisonBytes)); //Should be abc
    }
Arun Singh

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        byte[] k; //32 byte
        string para; // plaintext
        string msgRefNo; // 16byte

        byte[] inputBytes = Encoding.UTF8.GetBytes(para);
        byte[] IV = Encoding.UTF8.GetBytes(msgRefNo);
        byte[] key = k;


        AesEngine engine = new AesEngine();
        CbcBlockCipher blockCipher = new CbcBlockCipher(engine);
        PaddedBufferedBlockCipher cipher1 = new PaddedBufferedBlockCipher(blockCipher, new Pkcs7Padding());

        KeyParameter keyParam = new KeyParameter(key);
        ParametersWithIV keyParamWithIv = new ParametersWithIV(keyParam, IV);


        cipher1.Init(true, keyParamWithIv); //Error Message thrown
        byte[] outputBytes = new byte[cipher1.GetOutputSize(inputBytes.Length)]; //cip
        int length = cipher1.ProcessBytes(inputBytes, outputBytes, 0);
        cipher1.DoFinal(outputBytes, length); //Do the final block
        string encryptedInput = Convert.ToBase64String(outputBytes);
        return encryptedInput;
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