在Android和IPhone(不同的结果),使用AES-128加密 [英] Encryption using AES-128 in Android and IPhone (Different result)

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问题描述

我试图加密使用Android和IPhone平台既对AES算法的一些文字。我的问题是,即使使用相同的加密/解密算法(AES-128)和相同的固定变量(键,四,模式),我得到不同的结果在两个平台上。我包括两个平台code样品,我使用来测试加密/解密。我想AP preciate在确定什么我做错了一些帮助。

I am trying to encrypt some text using the AES algorithm on both the Android and IPhone platforms. My problem is, even using the same encryption/decryption algorithm (AES-128) and same fixed variables (key, IV, mode), I get different result on both platforms. I am including code samples from both platforms, that I am using to test the encryption/decryption. I would appreciate some help in determining what I am doing wrong.

  • 键:123456789ABCDEFG
  • 四:1111111111111111
  • 纯文本:HelloThere
  • 模式:AES / CBC / NoPadding

的Andr​​oid code:

public class Crypto {
    private final static String HEX = "0123456789ABCDEF";

    public static String encrypt(String seed, String cleartext)
            throws Exception {
        byte[] rawKey = getRawKey(seed.getBytes());
        byte[] result = encrypt(rawKey, cleartext.getBytes());
        return toHex(result);
    }

    public static String decrypt(String seed, String encrypted)
            throws Exception {
        byte[] rawKey = getRawKey(seed.getBytes());
        byte[] enc = toByte(encrypted);
        byte[] result = decrypt(rawKey, enc);
        return new String(result);
    }

    private static byte[] getRawKey(byte[] seed) throws Exception {
        KeyGenerator kgen = KeyGenerator.getInstance("CBC");
        SecureRandom sr = SecureRandom.getInstance("SHA1PRNG");
        sr.setSeed(seed);
        kgen.init(128, sr); // 192 and 256 bits may not be available
        SecretKey skey = kgen.generateKey();
        byte[] raw = skey.getEncoded();
        return raw;
    }

    private static byte[] encrypt(byte[] raw, byte[] clear) throws Exception {
        SecretKeySpec skeySpec = new SecretKeySpec(raw, "AES");
        Cipher cipher = Cipher.getInstance("AES");
        cipher.init(Cipher.ENCRYPT_MODE, skeySpec);
        byte[] encrypted = cipher.doFinal(clear);
        return encrypted;
    }

    private static byte[] decrypt(byte[] raw, byte[] encrypted)
            throws Exception {
        SecretKeySpec skeySpec = new SecretKeySpec(raw, "AES");
        Cipher cipher = Cipher.getInstance("AES");
        cipher.init(Cipher.DECRYPT_MODE, skeySpec);
        byte[] decrypted = cipher.doFinal(encrypted);
        return decrypted;
    }

    public static String toHex(String txt) {
        return toHex(txt.getBytes());
    }

    public static String fromHex(String hex) {
        return new String(toByte(hex));
    }

    public static byte[] toByte(String hexString) {
        int len = hexString.length() / 2;
        byte[] result = new byte[len];
        for (int i = 0; i < len; i++)
            result[i] = Integer.valueOf(hexString.substring(2 * i, 2 * i + 2),
                    16).byteValue();
        return result;
    }

    public static String toHex(byte[] buf) {
        if (buf == null)
            return "";

        StringBuffer result = new StringBuffer(2 * buf.length);
        for (int i = 0; i < buf.length; i++) {
            appendHex(result, buf[i]);
        }

        return result.toString();
    }

    private static void appendHex(StringBuffer sb, byte b) {
        sb.append(HEX.charAt((b >> 4) & 0x0f)).append(HEX.charAt(b & 0x0f));
    }
}

IPhone(Objective-C的)code:

- (NSData *) transform:(CCOperation) encryptOrDecrypt data:(NSData *) inputData { 

    NSData* secretKey = [Cipher md5:cipherKey];

    CCCryptorRef cryptor = NULL;
    CCCryptorStatus status = kCCSuccess;

    uint8_t iv[kCCBlockSizeAES128];
    memset((void *) iv, 0x0, (size_t) sizeof(iv));

    status = CCCryptorCreate(encryptOrDecrypt, kCCAlgorithmAES128, kCCOptionPKCS7Padding,
                         [secretKey bytes], kCCKeySizeAES128, iv, &cryptor);

    if (status != kCCSuccess) {
        return nil;
    }

    size_t bufsize = CCCryptorGetOutputLength(cryptor, (size_t)[inputData length], true);

    void * buf = malloc(bufsize * sizeof(uint8_t));
    memset(buf, 0x0, bufsize);

    size_t bufused = 0;
    size_t bytesTotal = 0;

    status = CCCryptorUpdate(cryptor, [inputData bytes], (size_t)[inputData length],
                         buf, bufsize, &bufused);

    if (status != kCCSuccess) {
        free(buf);
        CCCryptorRelease(cryptor);
        return nil;
    }

    bytesTotal += bufused;

    status = CCCryptorFinal(cryptor, buf + bufused, bufsize - bufused, &bufused);

    if (status != kCCSuccess) {
        free(buf);
        CCCryptorRelease(cryptor);
        return nil;
    }

    bytesTotal += bufused;

    CCCryptorRelease(cryptor);

    return [NSData dataWithBytesNoCopy:buf length:bytesTotal];
}

+ (NSData *) md5:(NSString *) stringToHash {

    const char *src = [stringToHash UTF8String];

    unsigned char result[CC_MD5_DIGEST_LENGTH];

    CC_MD5(src, strlen(src), result);

    return [NSData dataWithBytes:result length:CC_MD5_DIGEST_LENGTH];
}

我的一些参考文献:

Some of my references :

  • http://code.google.com/p/aes-encryption-samples/wiki/HowToEncryptWithJava
  • http://automagical.rationalmind.net/2009/02/12/aes-interoperability-between-net-and-iphone/
  • AES interoperability between .Net and iPhone?

推荐答案

有关iPhone我用 AESCrypt-ObjC 和对于Android使用这种code:

For iPhone I used AESCrypt-ObjC, and for Android use this code:

public class AESCrypt {

private final Cipher cipher;
private final SecretKeySpec key;
private AlgorithmParameterSpec spec;


public AESCrypt(String password) throws Exception
{
    // hash password with SHA-256 and crop the output to 128-bit for key
    MessageDigest digest = MessageDigest.getInstance("SHA-256");
    digest.update(password.getBytes("UTF-8"));
    byte[] keyBytes = new byte[32];
    System.arraycopy(digest.digest(), 0, keyBytes, 0, keyBytes.length);

    cipher = Cipher.getInstance("AES/CBC/PKCS7Padding");
    key = new SecretKeySpec(keyBytes, "AES");
    spec = getIV();
}       

public AlgorithmParameterSpec getIV()
{
    byte[] iv = {0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, };
    IvParameterSpec ivParameterSpec;
    ivParameterSpec = new IvParameterSpec(iv);

    return ivParameterSpec;
}

public String encrypt(String plainText) throws Exception
{
    cipher.init(Cipher.ENCRYPT_MODE, key, spec);
    byte[] encrypted = cipher.doFinal(plainText.getBytes("UTF-8"));
    String encryptedText = new String(Base64.encode(encrypted, Base64.DEFAULT), "UTF-8");

    return encryptedText;
}

public String decrypt(String cryptedText) throws Exception
{
    cipher.init(Cipher.DECRYPT_MODE, key, spec);
    byte[] bytes = Base64.decode(cryptedText, Base64.DEFAULT);
    byte[] decrypted = cipher.doFinal(bytes);
    String decryptedText = new String(decrypted, "UTF-8");

    return decryptedText;
}

}

这篇关于在Android和IPhone(不同的结果),使用AES-128加密的文章就介绍到这了,希望我们推荐的答案对大家有所帮助,也希望大家多多支持IT屋!

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