javaencrypt加密
publicclass_Test2
{
publicstaticvoidmain(String[]args)throwsFileNotFoundException,IOException
{
//为了便于理解,所以有的部分为了通俗写得不够好
Scannersc=newScanner(System.in);
Stringline=sc.nextLine();
line=encrypt(line);
System.out.println(line);
newFileOutputStream("d:\word.txt").write((line+" ").getBytes());
}
//该方法是将一行数据简单加密(恺撒加密)
privatestaticStringencrypt(Stringline){
char[]chars=line.toCharArray();
for(inti=0;i<chars.length;i++)
{
//由ASCII码表得知大写字母是65-90,小写字母是97-122
if((chars[i]>=65&&chars[i]<90)||(chars[i]>=97&&chars[i]<122))
{
chars[i]=(char)(chars[i]+1);
}
if(chars[i]==90)
{
chars[i]='a';
}
if(chars[i]==122)
{
chars[i]='A';
}
}
returnnewString(chars);
}
}
㈡ java密码加密与解密
以下两个类可以很方便的完成字符串的加密和解密
加密 CryptHelper encrypt(password)
解密 CrypHelper decrypt(password)
代码如下
CryptUtils java
[java]
package gdie lab crypt;
import java io IOException;
import javax crypto Cipher;
import javax crypto KeyGenerator;
import javax crypto SecretKey;
import apache xerces internal impl dv util Base ;
public class CryptUtils {
private static String Algorithm = DES ;
private static byte[] DEFAULT_KEY=new byte[] { };
private static String VALUE_ENCODING= UTF ;
/**
* 生成密钥
*
* @return byte[] 返回生成的密钥
* @throws exception
* 扔出异常
*/
public static byte[] getSecretKey() throws Exception {
KeyGenerator keygen = KeyGenerator getInstance(Algorithm)
SecretKey deskey = keygen generateKey()
// if (debug ) System out println ( 生成密钥 +byte hex (deskey getEncoded
// ()))
return deskey getEncoded()
}
/**
* 将指定的数据根据提供的密钥进行加密
*
* @param input
* 需要加密的数据
* @param key
* 密钥
* @return byte[] 加密后的数据
* @throws Exception
*/
public static byte[] encryptData(byte[] input byte[] key) throws Exception {
SecretKey deskey = new javax crypto spec SecretKeySpec(key Algorithm)
// if (debug )
// {
// System out println ( 加密前的二进串 +byte hex (input ))
// System out println ( 加密前的字符串 +new String (input ))
//
// }
Cipher c = Cipher getInstance(Algorithm)
c init(Cipher ENCRYPT_MODE deskey)
byte[] cipherByte = c doFinal(input)
// if (debug ) System out println ( 加密后的二进串 +byte hex (cipherByte ))
return cipherByte;
}
public static byte[] encryptData(byte[] input) throws Exception {
return encryptData(input DEFAULT_KEY)
}
/**
* 将给定的已加密的数据通过指定的密钥进行解密
*
* @param input
* 待解密的数据
* @param key
* 密钥
* @return byte[] 解密后的数据
* @throws Exception
*/
public static byte[] decryptData(byte[] input byte[] key) throws Exception {
SecretKey deskey = new javax crypto spec SecretKeySpec(key Algorithm)
// if (debug ) System out println ( 解密前的信息 +byte hex (input ))
Cipher c = Cipher getInstance(Algorithm)
c init(Cipher DECRYPT_MODE deskey)
byte[] clearByte = c doFinal(input)
// if (debug )
// {
// System out println ( 解密后的二进串 +byte hex (clearByte ))
// System out println ( 解密后的字符串 +(new String (clearByte )))
//
// }
return clearByte;
}
public static byte[] decryptData(byte[] input) throws Exception {
return decryptData(input DEFAULT_KEY)
}
/**
* 字节码转换成 进制字符串
*
* @param byte[] b 输入要转换的字节码
* @return String 返回转换后的 进制字符串
*/
public static String byte hex(byte[] bytes) {
StringBuilder hs = new StringBuilder()
for(byte b : bytes)
hs append(String format( % $ X b))
return hs toString()
}
public static byte[] hex byte(String content) {
int l=content length()》 ;
byte[] result=new byte[l];
for(int i= ;i<l;i++) {
int j=i《 ;
String s=content substring(j j+ )
result[i]=Integer valueOf(s ) byteValue()
}
return result;
}
/**
* 将字节数组转换为base 编码字符串
* @param buffer
* @return
*/
public static String bytesToBase (byte[] buffer) {
//BASE Encoder en=new BASE Encoder()
return Base encode(buffer)
// return encoder encode(buffer)
}
/**
* 将base 编码的字符串解码为字节数组
* @param value
* @return
* @throws IOException
*/
public static byte[] base ToBytes(String value) throws IOException {
//return Base decodeToByteArray(value)
// System out println(decoder decodeBuffer(value))
// return decoder decodeBuffer(value)
return Base decode(value)
}
/**
* 加密给定的字符串
* @param value
* @return 加密后的base 字符串
*/
public static String encryptString(String value) {
return encryptString(value DEFAULT_KEY)
}
/**
* 根据给定的密钥加密字符串
* @param value 待加密的字符串
* @param key 以BASE 形式存在的密钥
* @return 加密后的base 字符串
* @throws IOException
*/
public static String encryptString(String value String key) throws IOException {
return encryptString(value base ToBytes(key))
}
/**
* 根据给定的密钥加密字符串
* @param value 待加密的字符串
* @param key 字节数组形式的密钥
* @return 加密后的base 字符串
*/
public static String encryptString(String value byte[] key) {
try {
byte[] data=value getBytes(VALUE_ENCODING)
data=CryptUtils encryptData(data key)
return bytesToBase (data)
} catch (Exception e) {
// TODO Auto generated catch block
e printStackTrace()
return null;
}
}
/**
* 解密字符串
* @param value base 形式存在的密文
* @return 明文
*/
public static String decryptString(String value) {
return decryptString(value DEFAULT_KEY)
}
/**
* 解密字符串
* @param value base 形式存在的密文
* @param key base 形式存在的密钥
* @return 明文
* @throws IOException
*/
public static String decryptString(String value String key) throws IOException {
String s=decryptString(value base ToBytes(key))
return s;
}
/**
* 解密字符串
* @param value base 形式存在的密文
* @param key 字节数据形式存在的密钥
* @return 明文
*/
public static String decryptString(String value byte[] key) {
try {
byte[] data=base ToBytes(value)
data=CryptUtils decryptData(data key)
return new String(data VALUE_ENCODING)
}catch(Exception e) {
e printStackTrace()
return null;
}
}
}
package gdie lab crypt;
import java io IOException;
import javax crypto Cipher;
import javax crypto KeyGenerator;
import javax crypto SecretKey;
import apache xerces internal impl dv util Base ;
public class CryptUtils {
private static String Algorithm = DES ;
private static byte[] DEFAULT_KEY=new byte[] { };
private static String VALUE_ENCODING= UTF ;
/**
* 生成密钥
*
* @return byte[] 返回生成的密钥
* @throws exception
* 扔出异常
*/
public static byte[] getSecretKey() throws Exception {
KeyGenerator keygen = KeyGenerator getInstance(Algorithm)
SecretKey deskey = keygen generateKey()
// if (debug ) System out println ( 生成密钥 +byte hex (deskey getEncoded
// ()))
return deskey getEncoded()
}
/**
* 将指定的数据根据提供的密钥进行加密
*
* @param input
* 需要加密的数据
* @param key
* 密钥
* @return byte[] 加密后的数据
* @throws Exception
*/
public static byte[] encryptData(byte[] input byte[] key) throws Exception {
SecretKey deskey = new javax crypto spec SecretKeySpec(key Algorithm)
// if (debug )
// {
// System out println ( 加密前的二进串 +byte hex (input ))
// System out println ( 加密前的字符串 +new String (input ))
//
// }
Cipher c = Cipher getInstance(Algorithm)
c init(Cipher ENCRYPT_MODE deskey)
byte[] cipherByte = c doFinal(input)
// if (debug ) System out println ( 加密后的二进串 +byte hex (cipherByte ))
return cipherByte;
}
public static byte[] encryptData(byte[] input) throws Exception {
return encryptData(input DEFAULT_KEY)
}
/**
* 将给定的已加密的数据通过指定的密钥进行解密
*
* @param input
* 待解密的数据
* @param key
* 密钥
* @return byte[] 解密后的数据
* @throws Exception
*/
public static byte[] decryptData(byte[] input byte[] key) throws Exception {
SecretKey deskey = new javax crypto spec SecretKeySpec(key Algorithm)
// if (debug ) System out println ( 解密前的信息 +byte hex (input ))
Cipher c = Cipher getInstance(Algorithm)
c init(Cipher DECRYPT_MODE deskey)
byte[] clearByte = c doFinal(input)
// if (debug )
// {
// System out println ( 解密后的二进串 +byte hex (clearByte ))
// System out println ( 解密后的字符串 +(new String (clearByte )))
//
// }
return clearByte;
}
public static byte[] decryptData(byte[] input) throws Exception {
return decryptData(input DEFAULT_KEY)
}
/**
* 字节码转换成 进制字符串
*
* @param byte[] b 输入要转换的字节码
* @return String 返回转换后的 进制字符串
*/
public static String byte hex(byte[] bytes) {
StringBuilder hs = new StringBuilder()
for(byte b : bytes)
hs append(String format( % $ X b))
return hs toString()
}
public static byte[] hex byte(String content) {
int l=content length()》 ;
byte[] result=new byte[l];
for(int i= ;i<l;i++) {
int j=i《 ;
String s=content substring(j j+ )
result[i]=Integer valueOf(s ) byteValue()
}
return result;
}
/**
* 将字节数组转换为base 编码字符串
* @param buffer
* @return
*/
public static String bytesToBase (byte[] buffer) {
//BASE Encoder en=new BASE Encoder()
return Base encode(buffer)
// return encoder encode(buffer)
}
/**
* 将base 编码的字符串解码为字节数组
* @param value
* @return
* @throws IOException
*/
public static byte[] base ToBytes(String value) throws IOException {
//return Base decodeToByteArray(value)
// System out println(decoder decodeBuffer(value))
// return decoder decodeBuffer(value)
return Base decode(value)
}
/**
* 加密给定的字符串
* @param value
* @return 加密后的base 字符串
*/
public static String encryptString(String value) {
return encryptString(value DEFAULT_KEY)
}
/**
* 根据给定的密钥加密字符串
* @param value 待加密的字符串
* @param key 以BASE 形式存在的密钥
* @return 加密后的base 字符串
* @throws IOException
*/
public static String encryptString(String value String key) throws IOException {
return encryptString(value base ToBytes(key))
}
/**
* 根据给定的密钥加密字符串
* @param value 待加密的字符串
* @param key 字节数组形式的密钥
* @return 加密后的base 字符串
*/
public static String encryptString(String value byte[] key) {
try {
byte[] data=value getBytes(VALUE_ENCODING)
data=CryptUtils encryptData(data key)
return bytesToBase (data)
} catch (Exception e) {
// TODO Auto generated catch block
e printStackTrace()
return null;
}
}
/**
* 解密字符串
* @param value base 形式存在的密文
* @return 明文
*/
public static String decryptString(String value) {
return decryptString(value DEFAULT_KEY)
}
/**
* 解密字符串
* @param value base 形式存在的密文
* @param key base 形式存在的密钥
* @return 明文
* @throws IOException
*/
public static String decryptString(String value String key) throws IOException {
String s=decryptString(value base ToBytes(key))
return s;
}
/**
* 解密字符串
* @param value base 形式存在的密文
* @param key 字节数据形式存在的密钥
* @return 明文
*/
public static String decryptString(String value byte[] key) {
try {
byte[] data=base ToBytes(value)
data=CryptUtils decryptData(data key)
return new String(data VALUE_ENCODING)
}catch(Exception e) {
e printStackTrace()
return null;
}
}
}
CryptHelper java
[java]
package gdie lab crypt;
import javax crypto Cipher;
import javax crypto SecretKey;
import javax crypto SecretKeyFactory;
import javax crypto spec DESKeySpec;
import javax crypto spec IvParameterSpec;
import springframework util DigestUtils;
public class CryptHelper{
private static String CRYPT_KEY = zhongqian ;
//加密
private static Cipher ecip;
//解密
private static Cipher dcip;
static {
try {
String KEY = DigestUtils md DigestAsHex(CRYPT_KEY getBytes()) toUpperCase()
KEY = KEY substring( )
byte[] bytes = KEY getBytes()
DESKeySpec ks = new DESKeySpec(bytes)
SecretKeyFactory skf = SecretKeyFactory getInstance( DES )
SecretKey sk = skf generateSecret(ks)
IvParameterSpec iv = new IvParameterSpec(bytes)
ecip = Cipher getInstance( DES/CBC/PKCS Padding )
ecip init(Cipher ENCRYPT_MODE sk iv )
dcip = Cipher getInstance( DES/CBC/PKCS Padding )
dcip init(Cipher DECRYPT_MODE sk iv )
}catch(Exception ex) {
ex printStackTrace()
}
}
public static String encrypt(String content) throws Exception {
byte[] bytes = ecip doFinal(content getBytes( ascii ))
return CryptUtils byte hex(bytes)
}
public static String decrypt(String content) throws Exception {
byte[] bytes = CryptUtils hex byte(content)
bytes = dcip doFinal(bytes)
return new String(bytes ascii )
}
//test
public static void main(String[] args) throws Exception {
String password = gly ;
String en = encrypt(password)
System out println(en)
System out println(decrypt(en))
}
}
package gdie lab crypt;
import javax crypto Cipher;
import javax crypto SecretKey;
import javax crypto SecretKeyFactory;
import javax crypto spec DESKeySpec;
import javax crypto spec IvParameterSpec;
import springframework util DigestUtils;
public class CryptHelper{
private static String CRYPT_KEY = zhongqian ;
//加密
private static Cipher ecip;
//解密
private static Cipher dcip;
static {
try {
String KEY = DigestUtils md DigestAsHex(CRYPT_KEY getBytes()) toUpperCase()
KEY = KEY substring( )
byte[] bytes = KEY getBytes()
DESKeySpec ks = new DESKeySpec(bytes)
SecretKeyFactory skf = SecretKeyFactory getInstance( DES )
SecretKey sk = skf generateSecret(ks)
IvParameterSpec iv = new IvParameterSpec(bytes)
ecip = Cipher getInstance( DES/CBC/PKCS Padding )
ecip init(Cipher ENCRYPT_MODE sk iv )
dcip = Cipher getInstance( DES/CBC/PKCS Padding )
dcip init(Cipher DECRYPT_MODE sk iv )
}catch(Exception ex) {
ex printStackTrace()
}
}
public static String encrypt(String content) throws Exception {
byte[] bytes = ecip doFinal(content getBytes( ascii ))
return CryptUtils byte hex(bytes)
}
public static String decrypt(String content) throws Exception {
byte[] bytes = CryptUtils hex byte(content)
bytes = dcip doFinal(bytes)
return new String(bytes ascii )
}
//test
public static void main(String[] args) throws Exception {
String password = gly ;
String en = encrypt(password)
System out println(en)
System out println(decrypt(en))
}
lishixin/Article/program/Java/hx/201311/26449
㈢ java加密解密代码
package com.cube.limail.util;
import javax.crypto.Cipher;
import javax.crypto.KeyGenerator;
import javax.crypto.SecretKey;/**
* 加密解密类
*/
public class Eryptogram
{
private static String Algorithm ="DES";
private String key="CB7A92E3D3491964";
//定义 加密算法,可用 DES,DESede,Blowfish
static boolean debug = false ;
/**
* 构造子注解.
*/
public Eryptogram ()
{
} /**
* 生成密钥
* @return byte[] 返回生成的密钥
* @throws exception 扔出异常.
*/
public static byte [] getSecretKey () throws Exception
{
KeyGenerator keygen = KeyGenerator.getInstance (Algorithm );
SecretKey deskey = keygen.generateKey ();
System.out.println ("生成密钥:"+bytesToHexString (deskey.getEncoded ()));
if (debug ) System.out.println ("生成密钥:"+bytesToHexString (deskey.getEncoded ()));
return deskey.getEncoded ();
} /**
* 将指定的数据根据提供的密钥进行加密
* @param input 需要加密的数据
* @param key 密钥
* @return byte[] 加密后的数据
* @throws Exception
*/
public static byte [] encryptData (byte [] input ,byte [] key ) throws Exception
{
SecretKey deskey = new javax.crypto.spec.SecretKeySpec (key ,Algorithm );
if (debug )
{
System.out.println ("加密前的二进串:"+byte2hex (input ));
System.out.println ("加密前的字符串:"+new String (input ));
} Cipher c1 = Cipher.getInstance (Algorithm );
c1.init (Cipher.ENCRYPT_MODE ,deskey );
byte [] cipherByte =c1.doFinal (input );
if (debug ) System.out.println ("加密后的二进串:"+byte2hex (cipherByte ));
return cipherByte ;
} /**
* 将给定的已加密的数据通过指定的密钥进行解密
* @param input 待解密的数据
* @param key 密钥
* @return byte[] 解密后的数据
* @throws Exception
*/
public static byte [] decryptData (byte [] input ,byte [] key ) throws Exception
{
SecretKey deskey = new javax.crypto.spec.SecretKeySpec (key ,Algorithm );
if (debug ) System.out.println ("解密前的信息:"+byte2hex (input ));
Cipher c1 = Cipher.getInstance (Algorithm );
c1.init (Cipher.DECRYPT_MODE ,deskey );
byte [] clearByte =c1.doFinal (input );
if (debug )
{
System.out.println ("解密后的二进串:"+byte2hex (clearByte ));
System.out.println ("解密后的字符串:"+(new String (clearByte )));
} return clearByte ;
} /**
* 字节码转换成16进制字符串
* @param byte[] b 输入要转换的字节码
* @return String 返回转换后的16进制字符串
*/
public static String byte2hex (byte [] b )
{
String hs ="";
String stmp ="";
for (int n =0 ;n <b.length ;n ++)
{
stmp =(java.lang.Integer.toHexString (b [n ] & 0XFF ));
if (stmp.length ()==1 ) hs =hs +"0"+stmp ;
else hs =hs +stmp ;
if (n <b.length -1 ) hs =hs +":";
} return hs.toUpperCase ();
}
/**
* 字符串转成字节数组.
* @param hex 要转化的字符串.
* @return byte[] 返回转化后的字符串.
*/
public static byte[] hexStringToByte(String hex) {
int len = (hex.length() / 2);
byte[] result = new byte[len];
char[] achar = hex.toCharArray();
for (int i = 0; i < len; i++) {
int pos = i * 2;
result[i] = (byte) (toByte(achar[pos]) << 4 | toByte(achar[pos + 1]));
}
return result;
}
private static byte toByte(char c) {
byte b = (byte) "0123456789ABCDEF".indexOf(c);
return b;
}
/**
* 字节数组转成字符串.
* @param String 要转化的字符串.
* @return 返回转化后的字节数组.
*/
public static final String bytesToHexString(byte[] bArray) {
StringBuffer sb = new StringBuffer(bArray.length);
String sTemp;
for (int i = 0; i < bArray.length; i++) {
sTemp = Integer.toHexString(0xFF & bArray[i]);
if (sTemp.length() < 2)
sb.append(0);
sb.append(sTemp.toUpperCase());
}
return sb.toString();
}
/**
* 从数据库中获取密钥.
* @param deptid 企业id.
* @return 要返回的字节数组.
* @throws Exception 可能抛出的异常.
*/
public static byte[] getSecretKey(long deptid) throws Exception {
byte[] key=null;
String value=null;
//CommDao =new CommDao();
// List list=.getRecordList("from Key k where k.deptid="+deptid);
//if(list.size()>0){
//value=((com.csc.sale.bean.Key)list.get(0)).getKey();
value = "CB7A92E3D3491964";
key=hexStringToByte(value);
//}
if (debug)
System.out.println("密钥:" + value);
return key;
}
public String encryptData2(String data) {
String en = null;
try {
byte[] key=hexStringToByte(this.key);
en = bytesToHexString(encryptData(data.getBytes(),key));
} catch (Exception e) {
e.printStackTrace();
}
return en;
}
public String decryptData2(String data) {
String de = null;
try {
byte[] key=hexStringToByte(this.key);
de = new String(decryptData(hexStringToByte(data),key));
} catch (Exception e) {
e.printStackTrace();
}
return de;
}
} 加密使用: byte[] key=Eryptogram.getSecretKey(deptid); //获得钥匙(字节数组)
byte[] tmp=Eryptogram.encryptData(password.getBytes(), key); //传入密码和钥匙,获得加密后的字节数组的密码
password=Eryptogram.bytesToHexString(tmp); //将字节数组转化为字符串,获得加密后的字符串密码解密与之差不多
㈣ JAVA公钥加密,私钥解密,该怎么解决
{
publicstaticfinalStringKEY_ALGORITHM="RSA";
_ALGORITHM="MD5withRSA";
_KEY="RSAPublicKey";
_KEY="RSAPrivateKey";
/**
*用私钥对信息生成数字签名
*
*@paramdata
*加密数据
*@paramprivateKey
*私钥
*
*@return
*@throwsException
*/
publicstaticStringsign(byte[]data,StringprivateKey)throwsException{
//解密由base64编码的私钥
byte[]keyBytes=decryptBASE64(privateKey);
//构造PKCS8EncodedKeySpec对象
=newPKCS8EncodedKeySpec(keyBytes);
//KEY_ALGORITHM指定的加密算法
KeyFactorykeyFactory=KeyFactory.getInstance(KEY_ALGORITHM);
//取私钥匙对象
PrivateKeypriKey=keyFactory.generatePrivate(pkcs8KeySpec);
//用私钥对信息生成数字签名
Signaturesignature=Signature.getInstance(SIGNATURE_ALGORITHM);
signature.initSign(priKey);
signature.update(data);
returnencryptBASE64(signature.sign());
}
/**
*校验数字签名
*
*@paramdata
*加密数据
*@parampublicKey
*公钥
*@paramsign
*数字签名
*
*@return校验成功返回true失败返回false
*@throwsException
*
*/
publicstaticbooleanverify(byte[]data,StringpublicKey,Stringsign)
throwsException{
//解密由base64编码的公钥
byte[]keyBytes=decryptBASE64(publicKey);
//构造X509EncodedKeySpec对象
X509EncodedKeySpeckeySpec=newX509EncodedKeySpec(keyBytes);
//KEY_ALGORITHM指定的加密算法
KeyFactorykeyFactory=KeyFactory.getInstance(KEY_ALGORITHM);
//取公钥匙对象
PublicKeypubKey=keyFactory.generatePublic(keySpec);
Signaturesignature=Signature.getInstance(SIGNATURE_ALGORITHM);
signature.initVerify(pubKey);
signature.update(data);
//验证签名是否正常
returnsignature.verify(decryptBASE64(sign));
}
/**
*解密<br>
*用私钥解密
*
*@paramdata
*@paramkey
*@return
*@throwsException
*/
publicstaticbyte[]decryptByPrivateKey(byte[]data,Stringkey)
throwsException{
//对密钥解密
byte[]keyBytes=decryptBASE64(key);
//取得私钥
=newPKCS8EncodedKeySpec(keyBytes);
KeyFactorykeyFactory=KeyFactory.getInstance(KEY_ALGORITHM);
KeyprivateKey=keyFactory.generatePrivate(pkcs8KeySpec);
//对数据解密
Ciphercipher=Cipher.getInstance(keyFactory.getAlgorithm());
cipher.init(Cipher.DECRYPT_MODE,privateKey);
returncipher.doFinal(data);
}
/**
*解密<br>
*用公钥解密
*
*@paramdata
*@paramkey
*@return
*@throwsException
*/
publicstaticbyte[]decryptByPublicKey(byte[]data,Stringkey)
throwsException{
//对密钥解密
byte[]keyBytes=decryptBASE64(key);
//取得公钥
X509EncodedKeySpecx509KeySpec=newX509EncodedKeySpec(keyBytes);
KeyFactorykeyFactory=KeyFactory.getInstance(KEY_ALGORITHM);
KeypublicKey=keyFactory.generatePublic(x509KeySpec);
//对数据解密
Ciphercipher=Cipher.getInstance(keyFactory.getAlgorithm());
cipher.init(Cipher.DECRYPT_MODE,publicKey);
returncipher.doFinal(data);
}
/**
*加密<br>
*用公钥加密
*
*@paramdata
*@paramkey
*@return
*@throwsException
*/
publicstaticbyte[]encryptByPublicKey(byte[]data,Stringkey)
throwsException{
//对公钥解密
byte[]keyBytes=decryptBASE64(key);
//取得公钥
X509EncodedKeySpecx509KeySpec=newX509EncodedKeySpec(keyBytes);
KeyFactorykeyFactory=KeyFactory.getInstance(KEY_ALGORITHM);
KeypublicKey=keyFactory.generatePublic(x509KeySpec);
//对数据加密
Ciphercipher=Cipher.getInstance(keyFactory.getAlgorithm());
cipher.init(Cipher.ENCRYPT_MODE,publicKey);
returncipher.doFinal(data);
}
/**
*加密<br>
*用私钥加密
*
*@paramdata
*@paramkey
*@return
*@throwsException
*/
publicstaticbyte[]encryptByPrivateKey(byte[]data,Stringkey)
throwsException{
//对密钥解密
byte[]keyBytes=decryptBASE64(key);
//取得私钥
=newPKCS8EncodedKeySpec(keyBytes);
KeyFactorykeyFactory=KeyFactory.getInstance(KEY_ALGORITHM);
KeyprivateKey=keyFactory.generatePrivate(pkcs8KeySpec);
//对数据加密
Ciphercipher=Cipher.getInstance(keyFactory.getAlgorithm());
cipher.init(Cipher.ENCRYPT_MODE,privateKey);
returncipher.doFinal(data);
}
/**
*取得私钥
*
*@paramkeyMap
*@return
*@throwsException
*/
(Map<String,Object>keyMap)
throwsException{
Keykey=(Key)keyMap.get(PRIVATE_KEY);
returnencryptBASE64(key.getEncoded());
}
/**
*取得公钥
*
*@paramkeyMap
*@return
*@throwsException
*/
(Map<String,Object>keyMap)
throwsException{
Keykey=(Key)keyMap.get(PUBLIC_KEY);
returnencryptBASE64(key.getEncoded());
}
/**
*初始化密钥
*
*@return
*@throwsException
*/
publicstaticMap<String,Object>initKey()throwsException{
KeyPairGeneratorkeyPairGen=KeyPairGenerator
.getInstance(KEY_ALGORITHM);
keyPairGen.initialize(1024);
KeyPairkeyPair=keyPairGen.generateKeyPair();
//公钥
RSAPublicKeypublicKey=(RSAPublicKey)keyPair.getPublic();
//私钥
RSAPrivateKeyprivateKey=(RSAPrivateKey)keyPair.getPrivate();
Map<String,Object>keyMap=newHashMap<String,Object>(2);
keyMap.put(PUBLIC_KEY,publicKey);
keyMap.put(PRIVATE_KEY,privateKey);
returnkeyMap;
}
}
㈤ 用java写个文件加密的代码该怎么写
import java.awt.*;
import java.awt.event.*;
import javax.swing.*;
import java.io.*;
import java.security.*;
import javax.crypto.*;
import javax.crypto.spec.*;
/**
文件名:FileEncrypter.java
JDK:1.40以上
说明:文件加密
加密方法:三重DES加密
加密过程:对选中的文件加密后在同文件夹下生成一个增加了".tdes"
扩展名的加密文件
解密过程:对选中的加密文件(必须有".tdes"扩展名)进行解密
*/
public class FileEncrypter extends JFrame{
public static final int WIDTH = 550;
public static final int HEIGHT = 200;
public static void main(String args[]) {
FileEncrypter fe = new FileEncrypter();
fe.show();
}
FileEncrypter(){
this.setSize(WIDTH,HEIGHT);
this.setDefaultCloseOperation(JFrame.EXIT_ON_CLOSE);
this.setResizable(false);
Toolkit tk = Toolkit.getDefaultToolkit();
Dimension screenSize = tk.getScreenSize();
this.setLocation((screenSize.width - WIDTH)/2,
(screenSize.height - HEIGHT)/2);
this.setTitle("文件加密器(TriDES)");
Container c = this.getContentPane();
c.setLayout( new FlowLayout());
final FilePanel fp = new FilePanel("文件选择");
c.add(fp);
final KeyPanel pp = new KeyPanel("密码");
c.add(pp);
JButton jbE = new JButton("加密");
c.add(jbE);
jbE.addActionListener(new ActionListener(){
public void actionPerformed(ActionEvent event){
File file = new File(fp.getFileName());
if (file.exists())
encrypt(file.getAbsoluteFile(),pp.getKey());
else
JOptionPane.showMessageDialog(
null,"请选择文件!","提示",JOptionPane.OK_OPTION);
}
});
JButton jbD = new JButton("解密");
c.add(jbD);
jbD.addActionListener(new ActionListener(){
public void actionPerformed(ActionEvent event){
File file = new File(fp.getFileName());
if (file.exists())
decrypt(file.getAbsoluteFile(),pp.getKey());
else
JOptionPane.showMessageDialog(
null,"请选择文件!","提示",JOptionPane.OK_OPTION);
}
});
}
/**
加密函数
输入:
要加密的文件,密码(由0-F组成,共48个字符,表示3个8位的密码)如:
其中:
AD67EA2F3BE6E5AD DES密码一
D368DFE03120B5DF DES密码二
92A8FD8FEC2F0746 DES密码三
输出:
对输入的文件加密后,保存到同一文件夹下增加了".tdes"扩展名的文件中。
*/
private void encrypt(File fileIn,String sKey){
try{
if(sKey.length() == 48){
byte[] bytK1 = getKeyByStr(sKey.substring(0,16));
byte[] bytK2 = getKeyByStr(sKey.substring(16,32));
byte[] bytK3 = getKeyByStr(sKey.substring(32,48));
FileInputStream fis = new FileInputStream(fileIn);
byte[] bytIn = new byte[(int)fileIn.length()];
for(int i = 0;i<FILEIN.LENGTH();I++){
bytIn[i] = (byte)fis.read();
}
//加密
byte[] bytOut = encryptByDES(encryptByDES(
encryptByDES(bytIn,bytK1),bytK2),bytK3);
String fileOut = fileIn.getPath() + ".tdes";
FileOutputStream fos = new FileOutputStream(fileOut);
for(int i = 0;i<BYTOUT.LENGTH;I++){
fos.write((int)bytOut[i]);
}
fos.close();
JOptionPane.showMessageDialog(
this,"加密成功!","提示",JOptionPane.OK_OPTION);
}else
JOptionPane.showMessageDialog(
this,"密码长度必须等于48!","错误信息",JOptionPane.ERROR_MESSAGE);
}catch(Exception e){
e.printStackTrace();
}
}
/**
解密函数
输入:
要解密的文件,密码(由0-F组成,共48个字符,表示3个8位的密码)如:
其中:
AD67EA2F3BE6E5AD DES密码一
D368DFE03120B5DF DES密码二
92A8FD8FEC2F0746 DES密码三
输出:
对输入的文件解密后,保存到用户指定的文件中。
*/
private void decrypt(File fileIn,String sKey){
try{
if(sKey.length() == 48){
String strPath = fileIn.getPath();
if(strPath.substring(strPath.length()-5).toLowerCase().equals(".tdes"))
strPath = strPath.substring(0,strPath.length()-5);
else{
JOptionPane.showMessageDialog(
this,"不是合法的加密文件!","提示",JOptionPane.OK_OPTION);
return;
}
JFileChooser chooser = new JFileChooser();
chooser.setCurrentDirectory(new File("."));
chooser.setSelectedFile(new File(strPath));
//用户指定要保存的文件
int ret = chooser.showSaveDialog(this);
if(ret==JFileChooser.APPROVE_OPTION){
byte[] bytK1 = getKeyByStr(sKey.substring(0,16));
byte[] bytK2 = getKeyByStr(sKey.substring(16,32));
byte[] bytK3 = getKeyByStr(sKey.substring(32,48));
FileInputStream fis = new FileInputStream(fileIn);
byte[] bytIn = new byte[(int)fileIn.length()];
for(int i = 0;i<FILEIN.LENGTH();I++){
bytIn[i] = (byte)fis.read();
}
//解密
byte[] bytOut = decryptByDES(decryptByDES(
decryptByDES(bytIn,bytK3),bytK2),bytK1);
File fileOut = chooser.getSelectedFile();
fileOut.createNewFile();
FileOutputStream fos = new FileOutputStream(fileOut);
for(int i = 0;i<BYTOUT.LENGTH;I++){
fos.write((int)bytOut[i]);
}
fos.close();
JOptionPane.showMessageDialog(
this,"解密成功!","提示",JOptionPane.OK_OPTION);
}
}else
JOptionPane.showMessageDialog(
this,"密码长度必须等于48!","错误信息",JOptionPane.ERROR_MESSAGE);
}catch(Exception e){
JOptionPane.showMessageDialog(
this,"解密失败,请核对密码!","提示",JOptionPane.OK_OPTION);
}
}
/**
用DES方法加密输入的字节
bytKey需为8字节长,是加密的密码
*/
private byte[] encryptByDES(byte[] bytP,byte[] bytKey) throws Exception{
DESKeySpec desKS = new DESKeySpec(bytKey);
SecretKeyFactory skf = SecretKeyFactory.getInstance("DES");
SecretKey sk = skf.generateSecret(desKS);
Cipher cip = Cipher.getInstance("DES");
cip.init(Cipher.ENCRYPT_MODE,sk);
return cip.doFinal(bytP);
}
/**
用DES方法解密输入的字节
bytKey需为8字节长,是解密的密码
*/
private byte[] decryptByDES(byte[] bytE,byte[] bytKey) throws Exception{
DESKeySpec desKS = new DESKeySpec(bytKey);
SecretKeyFactory skf = SecretKeyFactory.getInstance("DES");
SecretKey sk = skf.generateSecret(desKS);
Cipher cip = Cipher.getInstance("DES");
cip.init(Cipher.DECRYPT_MODE,sk);
return cip.doFinal(bytE);
}
/**
输入密码的字符形式,返回字节数组形式。
如输入字符串:AD67EA2F3BE6E5AD
返回字节数组:{173,103,234,47,59,230,229,173}
*/
private byte[] getKeyByStr(String str){
byte[] bRet = new byte[str.length()/2];
for(int i=0;i<STR.LENGTH()
Integer itg =
new Integer(16*getChrInt(str.charAt(2*i)) + getChrInt(str.charAt(2*i+1)));
bRet[i] = itg.byteValue();
}
return bRet;
}
/**
计算一个16进制字符的10进制值
输入:0-F
*/
private int getChrInt(char chr){
int iRet=0;
if(chr=="0".charAt(0)) iRet = 0;
if(chr=="1".charAt(0)) iRet = 1;
if(chr=="2".charAt(0)) iRet = 2;
if(chr=="3".charAt(0)) iRet = 3;
if(chr=="4".charAt(0)) iRet = 4;
if(chr=="5".charAt(0)) iRet = 5;
if(chr=="6".charAt(0)) iRet = 6;
if(chr=="7".charAt(0)) iRet = 7;
if(chr=="8".charAt(0)) iRet = 8;
if(chr=="9".charAt(0)) iRet = 9;
if(chr=="A".charAt(0)) iRet = 10;
if(chr=="B".charAt(0)) iRet = 11;
if(chr=="C".charAt(0)) iRet = 12;
if(chr=="D".charAt(0)) iRet = 13;
if(chr=="E".charAt(0)) iRet = 14;
if(chr=="F".charAt(0)) iRet = 15;
return iRet;
}
}
/**
文件选择组件。
*/
class FilePanel extends JPanel{
FilePanel(String str){
JLabel label = new JLabel(str);
JTextField fileText = new JTextField(35);
JButton chooseButton = new JButton("浏览...");
this.add(label);
this.add(fileText);
this.add(chooseButton);
clickAction ca = new clickAction(this);
chooseButton.addActionListener(ca);
}
public String getFileName(){
JTextField jtf = (JTextField)this.getComponent(1);
return jtf.getText();
}
private class clickAction implements ActionListener{
clickAction(Component c){
cmpt = c;
}
public void actionPerformed(ActionEvent event){
JFileChooser chooser = new JFileChooser();
chooser.setCurrentDirectory(new File("."));
int ret = chooser.showOpenDialog(cmpt);
if(ret==JFileChooser.APPROVE_OPTION){
JPanel jp = (JPanel)cmpt;
JTextField jtf = (JTextField)jp.getComponent(1);
jtf.setText(chooser.getSelectedFile().getPath());
}
}
private Component cmpt;
}
}
/**
密码生成组件。
*/
class KeyPanel extends JPanel{
KeyPanel(String str){
JLabel label = new JLabel(str);
JTextField fileText = new JTextField(35);
JButton chooseButton = new JButton("随机产生");
this.add(label);
this.add(fileText);
this.add(chooseButton);
clickAction ca = new clickAction(this);
chooseButton.addActionListener(ca);
}
//返回生成的密码(48个字符长度)
public String getKey(){
JTextField jtf = (JTextField)this.getComponent(1);
return jtf.getText();
}
private class clickAction implements ActionListener{
clickAction(Component c){
cmpt = c;
}
public void actionPerformed(ActionEvent event){
try{
KeyGenerator kg = KeyGenerator.getInstance("DES");
kg.init(56);
Key ke = kg.generateKey();
byte[] bytK1 = ke.getEncoded();
ke = kg.generateKey();
byte[] bytK2 = ke.getEncoded();
ke = kg.generateKey();
byte[] bytK3 = ke.getEncoded();
JPanel jp = (JPanel)cmpt;
JTextField jtf = (JTextField)jp.getComponent(1);
jtf.setText(getByteStr(bytK1)+getByteStr(bytK2)+getByteStr(bytK3));
}catch(Exception e){
e.printStackTrace();
}
}
private String getByteStr(byte[] byt){
String strRet = "";
for(int i=0;i<BYT.LENGTH;I++){
//System.out.println(byt[i]);
strRet += getHexValue((byt[i]&240)/16);
strRet += getHexValue(byt[i]&15);
}
return strRet;
}
private String getHexValue(int s){
String sRet=null;
switch (s){
case 0: sRet = "0";break;
case 1: sRet = "1";break;
case 2: sRet = "2";break;
case 3: sRet = "3";break;
case 4: sRet = "4";break;
case 5: sRet = "5";break;
case 6: sRet = "6";break;
case 7: sRet = "7";break;
case 8: sRet = "8";break;
case 9: sRet = "9";break;
case 10: sRet = "A";break;
case 11: sRet = "B";break;
case 12: sRet = "C";break;
case 13: sRet = "D";break;
case 14: sRet = "E";break;
case 15: sRet = "F";
}
return sRet;
}
private Component cmpt;
}
}
㈥ 如何用JAVA实现字符串简单加密解密
java加密字符串可以使用des加密算法,实例如下:
package test;
import java.io.FileInputStream;
import java.io.FileOutputStream;
import java.io.IOException;
import java.io.ObjectInputStream;
import java.io.ObjectOutputStream;
import java.security.*;
import javax.crypto.Cipher;
import javax.crypto.KeyGenerator;
import javax.crypto.SecretKey;
/**
* 加密解密
*
* @author shy.qiu
* @since http://blog.csdn.net/qiushyfm
*/
public class CryptTest {
/**
* 进行MD5加密
*
* @param info
* 要加密的信息
* @return String 加密后的字符串
*/
public String encryptToMD5(String info) {
byte[] digesta = null;
try {
// 得到一个md5的消息摘要
MessageDigest alga = MessageDigest.getInstance("MD5");
// 添加要进行计算摘要的信息
alga.update(info.getBytes());
// 得到该摘要
digesta = alga.digest();
} catch (NoSuchAlgorithmException e) {
e.printStackTrace();
}
// 将摘要转为字符串
String rs = byte2hex(digesta);
return rs;
}
/**
* 进行SHA加密
*
* @param info
* 要加密的信息
* @return String 加密后的字符串
*/
public String encryptToSHA(String info) {
byte[] digesta = null;
try {
// 得到一个SHA-1的消息摘要
MessageDigest alga = MessageDigest.getInstance("SHA-1");
// 添加要进行计算摘要的信息
alga.update(info.getBytes());
// 得到该摘要
digesta = alga.digest();
} catch (NoSuchAlgorithmException e) {
e.printStackTrace();
}
// 将摘要转为字符串
String rs = byte2hex(digesta);
return rs;
}
// //////////////////////////////////////////////////////////////////////////
/**
* 创建密匙
*
* @param algorithm
* 加密算法,可用 DES,DESede,Blowfish
* @return SecretKey 秘密(对称)密钥
*/
public SecretKey createSecretKey(String algorithm) {
// 声明KeyGenerator对象
KeyGenerator keygen;
// 声明 密钥对象
SecretKey deskey = null;
try {
// 返回生成指定算法的秘密密钥的 KeyGenerator 对象
keygen = KeyGenerator.getInstance(algorithm);
// 生成一个密钥
deskey = keygen.generateKey();
} catch (NoSuchAlgorithmException e) {
e.printStackTrace();
}
// 返回密匙
return deskey;
}
/**
* 根据密匙进行DES加密
*
* @param key
* 密匙
* @param info
* 要加密的信息
* @return String 加密后的信息
*/
public String encryptToDES(SecretKey key, String info) {
// 定义 加密算法,可用 DES,DESede,Blowfish
String Algorithm = "DES";
// 加密随机数生成器 (RNG),(可以不写)
SecureRandom sr = new SecureRandom();
// 定义要生成的密文
byte[] cipherByte = null;
try {
// 得到加密/解密器
Cipher c1 = Cipher.getInstance(Algorithm);
// 用指定的密钥和模式初始化Cipher对象
// 参数:(ENCRYPT_MODE, DECRYPT_MODE, WRAP_MODE,UNWRAP_MODE)
c1.init(Cipher.ENCRYPT_MODE, key, sr);
// 对要加密的内容进行编码处理,
cipherByte = c1.doFinal(info.getBytes());
} catch (Exception e) {
e.printStackTrace();
}
// 返回密文的十六进制形式
return byte2hex(cipherByte);
}
/**
* 根据密匙进行DES解密
*
* @param key
* 密匙
* @param sInfo
* 要解密的密文
* @return String 返回解密后信息
*/
public String decryptByDES(SecretKey key, String sInfo) {
// 定义 加密算法,
String Algorithm = "DES";
// 加密随机数生成器 (RNG)
SecureRandom sr = new SecureRandom();
byte[] cipherByte = null;
try {
// 得到加密/解密器
Cipher c1 = Cipher.getInstance(Algorithm);
// 用指定的密钥和模式初始化Cipher对象
c1.init(Cipher.DECRYPT_MODE, key, sr);
// 对要解密的内容进行编码处理
cipherByte = c1.doFinal(hex2byte(sInfo));
} catch (Exception e) {
e.printStackTrace();
}
// return byte2hex(cipherByte);
return new String(cipherByte);
}
// /////////////////////////////////////////////////////////////////////////////
/**
* 创建密匙组,并将公匙,私匙放入到指定文件中
*
* 默认放入mykeys.bat文件中
*/
public void createPairKey() {
try {
// 根据特定的算法一个密钥对生成器
KeyPairGenerator keygen = KeyPairGenerator.getInstance("DSA");
// 加密随机数生成器 (RNG)
SecureRandom random = new SecureRandom();
// 重新设置此随机对象的种子
random.setSeed(1000);
// 使用给定的随机源(和默认的参数集合)初始化确定密钥大小的密钥对生成器
keygen.initialize(512, random);// keygen.initialize(512);
// 生成密钥组
KeyPair keys = keygen.generateKeyPair();
// 得到公匙
PublicKey pubkey = keys.getPublic();
// 得到私匙
PrivateKey prikey = keys.getPrivate();
// 将公匙私匙写入到文件当中
doObjToFile("mykeys.bat", new Object[] { prikey, pubkey });
} catch (NoSuchAlgorithmException e) {
e.printStackTrace();
}
}
/**
* 利用私匙对信息进行签名 把签名后的信息放入到指定的文件中
*
* @param info
* 要签名的信息
* @param signfile
* 存入的文件
*/
public void signToInfo(String info, String signfile) {
// 从文件当中读取私匙
PrivateKey myprikey = (PrivateKey) getObjFromFile("mykeys.bat", 1);
// 从文件中读取公匙
PublicKey mypubkey = (PublicKey) getObjFromFile("mykeys.bat", 2);
try {
// Signature 对象可用来生成和验证数字签名
Signature signet = Signature.getInstance("DSA");
// 初始化签署签名的私钥
signet.initSign(myprikey);
// 更新要由字节签名或验证的数据
signet.update(info.getBytes());
// 签署或验证所有更新字节的签名,返回签名
byte[] signed = signet.sign();
// 将数字签名,公匙,信息放入文件中
doObjToFile(signfile, new Object[] { signed, mypubkey, info });
} catch (Exception e) {
e.printStackTrace();
}
}
/**
* 读取数字签名文件 根据公匙,签名,信息验证信息的合法性
*
* @return true 验证成功 false 验证失败
*/
public boolean validateSign(String signfile) {
// 读取公匙
PublicKey mypubkey = (PublicKey) getObjFromFile(signfile, 2);
// 读取签名
byte[] signed = (byte[]) getObjFromFile(signfile, 1);
// 读取信息
String info = (String) getObjFromFile(signfile, 3);
try {
// 初始一个Signature对象,并用公钥和签名进行验证
Signature signetcheck = Signature.getInstance("DSA");
// 初始化验证签名的公钥
signetcheck.initVerify(mypubkey);
// 使用指定的 byte 数组更新要签名或验证的数据
signetcheck.update(info.getBytes());
System.out.println(info);
// 验证传入的签名
return signetcheck.verify(signed);
} catch (Exception e) {
e.printStackTrace();
return false;
}
}
/**
* 将二进制转化为16进制字符串
*
* @param b
* 二进制字节数组
* @return String
*/
public String byte2hex(byte[] b) {
String hs = "";
String stmp = "";
for (int n = 0; n < b.length; n++) {
stmp = (java.lang.Integer.toHexString(b[n] & 0XFF));
if (stmp.length() == 1) {
hs = hs + "0" + stmp;
} else {
hs = hs + stmp;
}
}
return hs.toUpperCase();
}
/**
* 十六进制字符串转化为2进制
*
* @param hex
* @return
*/
public byte[] hex2byte(String hex) {
byte[] ret = new byte[8];
byte[] tmp = hex.getBytes();
for (int i = 0; i < 8; i++) {
ret[i] = uniteBytes(tmp[i * 2], tmp[i * 2 + 1]);
}
return ret;
}
/**
* 将两个ASCII字符合成一个字节; 如:"EF"--> 0xEF
*
* @param src0
* byte
* @param src1
* byte
* @return byte
*/
public static byte uniteBytes(byte src0, byte src1) {
byte _b0 = Byte.decode("0x" + new String(new byte[] { src0 }))
.byteValue();
_b0 = (byte) (_b0 << 4);
byte _b1 = Byte.decode("0x" + new String(new byte[] { src1 }))
.byteValue();
byte ret = (byte) (_b0 ^ _b1);
return ret;
}
/**
* 将指定的对象写入指定的文件
*
* @param file
* 指定写入的文件
* @param objs
* 要写入的对象
*/
public void doObjToFile(String file, Object[] objs) {
ObjectOutputStream oos = null;
try {
FileOutputStream fos = new FileOutputStream(file);
oos = new ObjectOutputStream(fos);
for (int i = 0; i < objs.length; i++) {
oos.writeObject(objs[i]);
}
} catch (Exception e) {
e.printStackTrace();
} finally {
try {
oos.close();
} catch (IOException e) {
e.printStackTrace();
}
}
}
/**
* 返回在文件中指定位置的对象
*
* @param file
* 指定的文件
* @param i
* 从1开始
* @return
*/
public Object getObjFromFile(String file, int i) {
ObjectInputStream ois = null;
Object obj = null;
try {
FileInputStream fis = new FileInputStream(file);
ois = new ObjectInputStream(fis);
for (int j = 0; j < i; j++) {
obj = ois.readObject();
}
} catch (Exception e) {
e.printStackTrace();
} finally {
try {
ois.close();
} catch (IOException e) {
e.printStackTrace();
}
}
return obj;
}
/**
* 测试
*
* @param args
*/
public static void main(String[] args) {
CryptTest jiami = new CryptTest();
// 执行MD5加密"Hello world!"
System.out.println("Hello经过MD5:" + jiami.encryptToMD5("Hello"));
// 生成一个DES算法的密匙
SecretKey key = jiami.createSecretKey("DES");
// 用密匙加密信息"Hello world!"
String str1 = jiami.encryptToDES(key, "Hello");
System.out.println("使用des加密信息Hello为:" + str1);
// 使用这个密匙解密
String str2 = jiami.decryptByDES(key, str1);
System.out.println("解密后为:" + str2);
// 创建公匙和私匙
jiami.createPairKey();
// 对Hello world!使用私匙进行签名
jiami.signToInfo("Hello", "mysign.bat");
// 利用公匙对签名进行验证。
if (jiami.validateSign("mysign.bat")) {
System.out.println("Success!");
} else {
System.out.println("Fail!");
}
}
}
㈦ Java软件如何加密
Cipher c=Cipher.getInstance("AES");
c.init(c.ENCRYPT_MODE,new SecretKeySpec("1111111111111111".getBytes(),"AES"));
FileOutputStream fos=new FileOutputStream("./1.dat");
fos.write(c.doFinal("我神不是人啊~~".getBytes()));
c.init(c.DECRYPT_MODE,new SecretKeySpec("1111111111111111".getBytes(),"AES"));
FileInputStream fin=new FileInputStream("./1.dat");
byte b[]=new byte[1024];
System.out.println(new String(c.doFinal(b,0,fin.read(b))));
㈧ java编写数字加密解密
//package wangcai.test;
public interface Endecryption {
public static final byte[] EN={48,49,50,51,52,53,54,55,56,57};
public static final byte[] DE={55,53,57,49,51,54,56,48,50,52};
}
//package wangcai.test;
import java.util.Scanner;
public class Cryption implements Endecryption{
/*
* 原始数字与加密后得到的密文数字之间的对应关系如下:
原始数字:0 1 2 3 4 5 6 7 8 9
密文数字:7 5 9 1 3 6 8 0 2 4
试编写程序把原始数字转换成加密密文或把加密密文转换成原始数字。
输入:
1 6 (第一个数表示加密或解密:1加密,2解密;第二个数表示数字的个数)
1 9 9 7 7 1 (待处理的数字内容)
输出:
5 4 4 0 0 5
*/
public static void main(String[] args)
{
Scanner sc=new Scanner(System.in);
Cryption c=new Cryption();
System.out.println("请输入是加密还是解密:1加密,2解密");
int ende=sc.nextInt();
if(ende==1)
{
System.out.println("请输入加密的数字个数");
int num=sc.nextInt();
System.out.println("请输入"+num+"个数字");
String temp=new Scanner(System.in).nextLine();
System.out.println(c.Encryption(temp));
}
else if(ende==2)
{
System.out.println("请输入解密的数字个数");
int num=sc.nextInt();
System.out.println("请输入"+num+"个数字");
String temp=new Scanner(System.in).nextLine();
System.out.println(c.Decryption(temp));
}
else
{
System.out.println("输入错误");
}
}
/**
* 加密
* @param temp
* @return
*/
public String Encryption(String temp)
{
String result="";
byte[] temp_byte=temp.getBytes();
for(byte b:temp_byte)
{
int i=0;
for(;i<EN.length;i++)
{
if(b==EN[i])
{
result+=(char)DE[i];
break;
}
}
if(i==EN.length)
{
result+=(char)b;
}
}
return result;
}
/**
* 解密
* @param temp
* @return
*/
public String Decryption(String temp)
{
String result="";
byte[] temp_byte=temp.getBytes();
for(byte b:temp_byte)
{
int i=0;
for(;i<DE.length;i++)
{
if(b==DE[i])
{
result+=(char)EN[i];
break;
}
}
if(i==DE.length)
{
result+=(char)b;
}
}
return result;
}
}
加密解密方面的一般采用byte来实现
㈨ java加密的几种方式
朋友你好,很高兴为你作答。
首先,Java加密能够应对的风险包括以下几个:
1、核心技术窃取
2、核心业务破解
3、通信模块破解
4、API接口暴露
本人正在使用几维安全Java加密方式,很不错,向你推荐,希望能够帮助到你。
几维安全Java2C针对DEX文件进行加密保护,将DEX文件中标记的Java代码翻译为C代码,编译成加固后的SO文件。默认情况只加密activity中的onCreate函数,如果开发者想加密其它类和方法,只需对相关类或函数添加标记代码,在APK加密时会自动对标记的代码进行加密处理。
与传统的APP加固方案相比,不涉及到自定义修改DEX文件的加载方式,所以其兼容性非常好;其次Java函数被完全转化为C函数,直接在Native层执行,不存在Java层解密执行的步骤,其性能和执行效率更优。
如果操作上有不明白的地方,可以联系技术支持人员帮你完成Java加密。
希望以上解答能够帮助到你。