MAC算法结合了MD5和SHA算法的优势, 并加入了密钥的支持, 是一种更为安全的消息摘要算法.
1. 环境
jdk1.6
commons-codec-1.4.jar
2. 代码
import javax.crypto.KeyGenerator;
import javax.crypto.Mac;
import javax.crypto.SecretKey;
import javax.crypto.spec.SecretKeySpec;
import org.apache.commons.codec.binary.Hex;
public class MACCipher {
public static byte[] initHmacMD5Key() throws Exception{
// 初始化KeyGenerator
KeyGenerator kg = KeyGenerator.getInstance("HmacMD5");
//产生密钥
SecretKey secretKey = kg.generateKey();
//获得密钥
return secretKey.getEncoded();
}
public static byte[] encodeHmacMD5(byte[] data, byte[] key)throws Exception{
// 还原密钥
SecretKey secretKey = new SecretKeySpec(key, "HmacMD5");
// 实例化Mac
Mac mac = Mac.getInstance(secretKey.getAlgorithm());
// 初始化Mac
mac.init(secretKey);
// 执行消息摘要
return mac.doFinal(data);
}
public static String hmacmd5Hex(byte[] data, byte[] key)throws Exception{
return Hex.encodeHexString(encodeHmacMD5(data, key));
}
public static byte[] initHmacSHA512Key()throws Exception{
// 初始化KeyGenerator
KeyGenerator kg = KeyGenerator.getInstance("HmacSHA512");
//产生密钥
SecretKey secretKey = kg.generateKey();
//获得密钥
return secretKey.getEncoded();
}
public static byte[] encodeHmacSHA512(byte[] data, byte[] key)throws Exception{
// 还原密钥
SecretKey secretKey = new SecretKeySpec(key, "HmacSHA512");
// 实例化Mac
Mac mac = Mac.getInstance(secretKey.getAlgorithm());
// 初始化Mac
mac.init(secretKey);
// 执行消息摘要
return mac.doFinal(data);
}
public static String hmacsha512Hex(byte[] data, byte[] key)throws Exception{
return Hex.encodeHexString(encodeHmacSHA512(data, key));
}
}
3. 测试代码
String macmd5Data = MACCipher.hmacmd5Hex("HmacMD5编码".getBytes(), MACCipher.initHmacMD5Key());
System.out.println(macmd5Data);
String macsha512Data = MACCipher.hmacsha512Hex("HmacSHA512编码".getBytes(), MACCipher.initHmacSHA512Key());
System.out.println(macsha512Data);
本文介绍了一种结合MD5和SHA算法优势的消息摘要算法MAC,并通过Java代码实现HmacMD5及HmacSHA512,包括密钥生成、消息摘要等核心步骤。
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