c加密java解密演算法
java加密字元串可以使用des加密演算法,實例如下:
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 {
/**
* 進行MD5加密
*
* @param info
* 要加密的信息
* @return String 加密後的字元串
*/
public String encryptToMD5(String info) {
byte[] digesta = null;
try {
// 得到一個md5的消息摘要
MessageDigest alga = MessageDigest.getInstance("MD5");
// 添加要進行計算摘要的信息
alga.update(info.getBytes());
// 得到該摘要
digesta = alga.digest();
} catch (NoSuchAlgorithmException e) {
e.printStackTrace();
}
// 將摘要轉為字元串
String rs = byte2hex(digesta);
return rs;
}
/**
* 進行SHA加密
*
* @param info
* 要加密的信息
* @return String 加密後的字元串
*/
public String encryptToSHA(String info) {
byte[] digesta = null;
try {
// 得到一個SHA-1的消息摘要
MessageDigest alga = MessageDigest.getInstance("SHA-1");
// 添加要進行計算摘要的信息
alga.update(info.getBytes());
// 得到該摘要
digesta = alga.digest();
} catch (NoSuchAlgorithmException e) {
e.printStackTrace();
}
// 將摘要轉為字元串
String rs = byte2hex(digesta);
return rs;
}
// //////////////////////////////////////////////////////////////////////////
/**
* 創建密匙
*
* @param algorithm
* 加密演算法,可用 DES,DESede,Blowfish
* @return SecretKey 秘密(對稱)密鑰
*/
public SecretKey createSecretKey(String algorithm) {
// 聲明KeyGenerator對象
KeyGenerator keygen;
// 聲明 密鑰對象
SecretKey deskey = null;
try {
// 返回生成指定演算法的秘密密鑰的 KeyGenerator 對象
keygen = KeyGenerator.getInstance(algorithm);
// 生成一個密鑰
deskey = keygen.generateKey();
} catch (NoSuchAlgorithmException e) {
e.printStackTrace();
}
// 返回密匙
return deskey;
}
/**
* 根據密匙進行DES加密
*
* @param key
* 密匙
* @param info
* 要加密的信息
* @return String 加密後的信息
*/
public String encryptToDES(SecretKey key, String info) {
// 定義 加密演算法,可用 DES,DESede,Blowfish
String Algorithm = "DES";
// 加密隨機數生成器 (RNG),(可以不寫)
SecureRandom sr = new SecureRandom();
// 定義要生成的密文
byte[] cipherByte = null;
try {
// 得到加密/解密器
Cipher c1 = Cipher.getInstance(Algorithm);
// 用指定的密鑰和模式初始化Cipher對象
// 參數:(ENCRYPT_MODE, DECRYPT_MODE, WRAP_MODE,UNWRAP_MODE)
c1.init(Cipher.ENCRYPT_MODE, key, sr);
// 對要加密的內容進行編碼處理,
cipherByte = c1.doFinal(info.getBytes());
} catch (Exception e) {
e.printStackTrace();
}
// 返回密文的十六進制形式
return byte2hex(cipherByte);
}
/**
* 根據密匙進行DES解密
*
* @param key
* 密匙
* @param sInfo
* 要解密的密文
* @return String 返回解密後信息
*/
public String decryptByDES(SecretKey key, String sInfo) {
// 定義 加密演算法,
String Algorithm = "DES";
// 加密隨機數生成器 (RNG)
SecureRandom sr = new SecureRandom();
byte[] cipherByte = null;
try {
// 得到加密/解密器
Cipher c1 = Cipher.getInstance(Algorithm);
// 用指定的密鑰和模式初始化Cipher對象
c1.init(Cipher.DECRYPT_MODE, key, sr);
// 對要解密的內容進行編碼處理
cipherByte = c1.doFinal(hex2byte(sInfo));
} catch (Exception e) {
e.printStackTrace();
}
// return byte2hex(cipherByte);
return new String(cipherByte);
}
// /////////////////////////////////////////////////////////////////////////////
/**
* 創建密匙組,並將公匙,私匙放入到指定文件中
*
* 默認放入mykeys.bat文件中
*/
public void createPairKey() {
try {
// 根據特定的演算法一個密鑰對生成器
KeyPairGenerator keygen = KeyPairGenerator.getInstance("DSA");
// 加密隨機數生成器 (RNG)
SecureRandom random = new SecureRandom();
// 重新設置此隨機對象的種子
random.setSeed(1000);
// 使用給定的隨機源(和默認的參數集合)初始化確定密鑰大小的密鑰對生成器
keygen.initialize(512, random);// keygen.initialize(512);
// 生成密鑰組
KeyPair keys = keygen.generateKeyPair();
// 得到公匙
PublicKey pubkey = keys.getPublic();
// 得到私匙
PrivateKey prikey = keys.getPrivate();
// 將公匙私匙寫入到文件當中
doObjToFile("mykeys.bat", new Object[] { prikey, pubkey });
} catch (NoSuchAlgorithmException e) {
e.printStackTrace();
}
}
/**
* 利用私匙對信息進行簽名 把簽名後的信息放入到指定的文件中
*
* @param info
* 要簽名的信息
* @param signfile
* 存入的文件
*/
public void signToInfo(String info, String signfile) {
// 從文件當中讀取私匙
PrivateKey myprikey = (PrivateKey) getObjFromFile("mykeys.bat", 1);
// 從文件中讀取公匙
PublicKey mypubkey = (PublicKey) getObjFromFile("mykeys.bat", 2);
try {
// Signature 對象可用來生成和驗證數字簽名
Signature signet = Signature.getInstance("DSA");
// 初始化簽署簽名的私鑰
signet.initSign(myprikey);
// 更新要由位元組簽名或驗證的數據
signet.update(info.getBytes());
// 簽署或驗證所有更新位元組的簽名,返回簽名
byte[] signed = signet.sign();
// 將數字簽名,公匙,信息放入文件中
doObjToFile(signfile, new Object[] { signed, mypubkey, info });
} catch (Exception e) {
e.printStackTrace();
}
}
/**
* 讀取數字簽名文件 根據公匙,簽名,信息驗證信息的合法性
*
* @return true 驗證成功 false 驗證失敗
*/
public boolean validateSign(String signfile) {
// 讀取公匙
PublicKey mypubkey = (PublicKey) getObjFromFile(signfile, 2);
// 讀取簽名
byte[] signed = (byte[]) getObjFromFile(signfile, 1);
// 讀取信息
String info = (String) getObjFromFile(signfile, 3);
try {
// 初始一個Signature對象,並用公鑰和簽名進行驗證
Signature signetcheck = Signature.getInstance("DSA");
// 初始化驗證簽名的公鑰
signetcheck.initVerify(mypubkey);
// 使用指定的 byte 數組更新要簽名或驗證的數據
signetcheck.update(info.getBytes());
System.out.println(info);
// 驗證傳入的簽名
return signetcheck.verify(signed);
} catch (Exception e) {
e.printStackTrace();
return false;
}
}
/**
* 將二進制轉化為16進制字元串
*
* @param b
* 二進制位元組數組
* @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();
}
/**
* 十六進制字元串轉化為2進制
*
* @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;
}
/**
* 將兩個ASCII字元合成一個位元組; 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;
}
/**
* 將指定的對象寫入指定的文件
*
* @param file
* 指定寫入的文件
* @param objs
* 要寫入的對象
*/
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對象
*
* @param file
* 指定的文件
* @param i
* 從1開始
* @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;
}
/**
* 測試
*
* @param args
*/
public static void main(String[] args) {
CryptTest jiami = new CryptTest();
// 執行MD5加密"Hello world!"
System.out.println("Hello經過MD5:" + jiami.encryptToMD5("Hello"));
// 生成一個DES演算法的密匙
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為:" + str1);
// 使用這個密匙解密
String str2 = jiami.decryptByDES(key, str1);
System.out.println("解密後為:" + str2);
// 創建公匙和私匙
jiami.createPairKey();
// 對Hello world!使用私匙進行簽名
jiami.signToInfo("Hello", "mysign.bat");
// 利用公匙對簽名進行驗證。
if (jiami.validateSign("mysign.bat")) {
System.out.println("Success!");
} else {
System.out.println("Fail!");
}
}
}
❷ C#加密Java解密
DES加密 java與 C# 可以相互加密解密
這里的KEY採用Base64編碼,便用分發,因為Java的Byte范圍為-128至127,c#的Byte范圍是0-255
核心是確定Mode和Padding,關於這兩個的意思可以搜索3DES演算法相關文章
一個是C#採用CBC Mode,PKCS7 Padding,Java採用CBC Mode,PKCS5Padding Padding,
另一個是C#採用ECB Mode,PKCS7 Padding,Java採用ECB Mode,PKCS5Padding Padding,
Java的ECB模式不需要IV
對字元加密時,雙方採用的都是UTF-8編碼
C# 代碼
/// <summary>
/// DES3加密解密
/// </summary>
public class Des3
{
#region CBC模式**
/// <summary>
/// DES3 CBC模式加密
/// </summary>
/// <param name="key">密鑰</param>
/// <param name="iv">IV</param>
/// <param name="data">明文的byte數組</param>
/// <returns>密文的byte數組</returns>
public static byte[] Des3EncodeCBC( byte[] key, byte[] iv, byte[] data )
{
//復制於MSDN
try
{
// Create a MemoryStream.
MemoryStream mStream = new MemoryStream();
tdsp = new ();
tdsp.Mode = CipherMode.CBC; //默認值
tdsp.Padding = PaddingMode.PKCS7; //默認值
// Create a CryptoStream using the MemoryStream
// and the passed key and initialization vector (IV).
CryptoStream cStream = new CryptoStream( mStream,
tdsp.CreateEncryptor( key, iv ),
CryptoStreamMode.Write );
// Write the byte array to the crypto stream and flush it.
cStream.Write( data, 0, data.Length );
cStream.FlushFinalBlock();
// Get an array of bytes from the
// MemoryStream that holds the
// encrypted data.
byte[] ret = mStream.ToArray();
// Close the streams.
cStream.Close();
mStream.Close();
// Return the encrypted buffer.
return ret;
}
catch ( CryptographicException e )
{
Console.WriteLine( "A Cryptographic error occurred: {0}", e.Message );
return null;
}
}
/// <summary>
/// DES3 CBC模式解密
/// </summary>
/// <param name="key">密鑰</param>
/// <param name="iv">IV</param>
/// <param name="data">密文的byte數組</param>
/// <returns>明文的byte數組</returns>
public static byte[] Des3DecodeCBC( byte[] key, byte[] iv, byte[] data )
{
try
{
// Create a new MemoryStream using the passed
// array of encrypted data.
MemoryStream msDecrypt = new MemoryStream( data );
tdsp = new ();
tdsp.Mode = CipherMode.CBC;
tdsp.Padding = PaddingMode.PKCS7;
// Create a CryptoStream using the MemoryStream
// and the passed key and initialization vector (IV).
CryptoStream csDecrypt = new CryptoStream( msDecrypt,
tdsp.CreateDecryptor( key, iv ),
CryptoStreamMode.Read );
// Create buffer to hold the decrypted data.
byte[] fromEncrypt = new byte[data.Length];
// Read the decrypted data out of the crypto stream
// and place it into the temporary buffer.
csDecrypt.Read( fromEncrypt, 0, fromEncrypt.Length );
//Convert the buffer into a string and return it.
return fromEncrypt;
}
catch ( CryptographicException e )
{
Console.WriteLine( "A Cryptographic error occurred: {0}", e.Message );
return null;
}
}
#endregion
#region ECB模式
/// <summary>
/// DES3 ECB模式加密
/// </summary>
/// <param name="key">密鑰</param>
/// <param name="iv">IV(當模式為ECB時,IV無用)</param>
/// <param name="str">明文的byte數組</param>
/// <returns>密文的byte數組</returns>
public static byte[] Des3EncodeECB( byte[] key, byte[] iv, byte[] data )
{
try
{
// Create a MemoryStream.
MemoryStream mStream = new MemoryStream();
tdsp = new ();
tdsp.Mode = CipherMode.ECB;
tdsp.Padding = PaddingMode.PKCS7;
// Create a CryptoStream using the MemoryStream
// and the passed key and initialization vector (IV).
CryptoStream cStream = new CryptoStream( mStream,
tdsp.CreateEncryptor( key, iv ),
CryptoStreamMode.Write );
// Write the byte array to the crypto stream and flush it.
cStream.Write( data, 0, data.Length );
cStream.FlushFinalBlock();
// Get an array of bytes from the
// MemoryStream that holds the
// encrypted data.
byte[] ret = mStream.ToArray();
// Close the streams.
cStream.Close();
mStream.Close();
// Return the encrypted buffer.
return ret;
}
catch ( CryptographicException e )
{
Console.WriteLine( "A Cryptographic error occurred: {0}", e.Message );
return null;
}
}
/// <summary>
/// DES3 ECB模式解密
/// </summary>
/// <param name="key">密鑰</param>
/// <param name="iv">IV(當模式為ECB時,IV無用)</param>
/// <param name="str">密文的byte數組</param>
/// <returns>明文的byte數組</returns>
public static byte[] Des3DecodeECB( byte[] key, byte[] iv, byte[] data )
{
try
{
// Create a new MemoryStream using the passed
// array of encrypted data.
MemoryStream msDecrypt = new MemoryStream( data );
tdsp = new ();
tdsp.Mode = CipherMode.ECB;
tdsp.Padding = PaddingMode.PKCS7;
// Create a CryptoStream using the MemoryStream
// and the passed key and initialization vector (IV).
CryptoStream csDecrypt = new CryptoStream( msDecrypt,
tdsp.CreateDecryptor( key, iv ),
CryptoStreamMode.Read );
// Create buffer to hold the decrypted data.
byte[] fromEncrypt = new byte[data.Length];
// Read the decrypted data out of the crypto stream
// and place it into the temporary buffer.
csDecrypt.Read( fromEncrypt, 0, fromEncrypt.Length );
//Convert the buffer into a string and return it.
return fromEncrypt;
}
catch ( CryptographicException e )
{
Console.WriteLine( "A Cryptographic error occurred: {0}", e.Message );
return null;
}
}
#endregion
/// <summary>
/// 類測試
/// </summary>
public static void Test()
{
System.Text.Encoding utf8 = System.Text.Encoding.UTF8;
//key為abcdefghijklmnopqrstuvwx的Base64編碼
byte[] key = Convert.FromBase64String( "" );
byte[] iv = new byte[] { 1, 2, 3, 4, 5, 6, 7, 8 }; //當模式為ECB時,IV無用
byte[] data = utf8.GetBytes( "中國ABCabc123" );
System.Console.WriteLine( "ECB模式:" );
byte[] str1 = Des3.Des3EncodeECB( key, iv, data );
byte[] str2 = Des3.Des3DecodeECB( key, iv, str1 );
System.Console.WriteLine( Convert.ToBase64String( str1 ) );
System.Console.WriteLine( System.Text.Encoding.UTF8.GetString( str2 ) );
System.Console.WriteLine();
System.Console.WriteLine( "CBC模式:" );
byte[] str3 = Des3.Des3EncodeCBC( key, iv, data );
byte[] str4 = Des3.Des3DecodeCBC( key, iv, str3 );
System.Console.WriteLine( Convert.ToBase64String( str3 ) );
System.Console.WriteLine( utf8.GetString( str4 ) );
System.Console.WriteLine();
}
}
java 代碼:
import java.security.Key;
import javax.crypto.Cipher;
import javax.crypto.SecretKeyFactory;
import javax.crypto.spec.DESedeKeySpec;
import javax.crypto.spec.IvParameterSpec;
import sun.misc.BASE64Decoder;
import sun.misc.BASE64Encoder;
public class Des3 {
public static void main(String[] args) throws Exception {
byte[] key=new BASE64Decoder().decodeBuffer("");
byte[] keyiv = { 1, 2, 3, 4, 5, 6, 7, 8 };
byte[] data="中國ABCabc123".getBytes("UTF-8");
System.out.println("ECB加密解密");
byte[] str3 = des3EncodeECB(key,data );
byte[] str4 = ees3DecodeECB(key, str3);
System.out.println(new BASE64Encoder().encode(str3));
System.out.println(new String(str4, "UTF-8"));
System.out.println();
System.out.println("CBC加密解密");
byte[] str5 = des3EncodeCBC(key, keyiv, data);
byte[] str6 = des3DecodeCBC(key, keyiv, str5);
System.out.println(new BASE64Encoder().encode(str5));
System.out.println(new String(str6, "UTF-8"));
}
/**
* ECB加密,不要IV
* @param key 密鑰
* @param data 明文
* @return Base64編碼的密文
* @throws Exception
*/
public static byte[] des3EncodeECB(byte[] key, byte[] data)
throws Exception {
Key deskey = null;
DESedeKeySpec spec = new DESedeKeySpec(key);
SecretKeyFactory keyfactory = SecretKeyFactory.getInstance("desede");
deskey = keyfactory.generateSecret(spec);
Cipher cipher = Cipher.getInstance("desede" + "/ECB/PKCS5Padding");
cipher.init(Cipher.ENCRYPT_MODE, deskey);
byte[] bOut = cipher.doFinal(data);
return bOut;
}
/**
* ECB解密,不要IV
* @param key 密鑰
* @param data Base64編碼的密文
* @return 明文
* @throws Exception
*/
public static byte[] ees3DecodeECB(byte[] key, byte[] data)
throws Exception {
Key deskey = null;
DESedeKeySpec spec = new DESedeKeySpec(key);
SecretKeyFactory keyfactory = SecretKeyFactory.getInstance("desede");
deskey = keyfactory.generateSecret(spec);
Cipher cipher = Cipher.getInstance("desede" + "/ECB/PKCS5Padding");
cipher.init(Cipher.DECRYPT_MODE, deskey);
byte[] bOut = cipher.doFinal(data);
return bOut;
}
/**
* CBC加密
* @param key 密鑰
* @param keyiv IV
* @param data 明文
* @return Base64編碼的密文
* @throws Exception
*/
public static byte[] des3EncodeCBC(byte[] key, byte[] keyiv, byte[] data)
throws Exception {
Key deskey = null;
DESedeKeySpec spec = new DESedeKeySpec(key);
SecretKeyFactory keyfactory = SecretKeyFactory.getInstance("desede");
deskey = keyfactory.generateSecret(spec);
Cipher cipher = Cipher.getInstance("desede" + "/CBC/PKCS5Padding");
IvParameterSpec ips = new IvParameterSpec(keyiv);
cipher.init(Cipher.ENCRYPT_MODE, deskey, ips);
byte[] bOut = cipher.doFinal(data);
return bOut;
}
/**
* CBC解密
* @param key 密鑰
* @param keyiv IV
* @param data Base64編碼的密文
* @return 明文
* @throws Exception
*/
public static byte[] des3DecodeCBC(byte[] key, byte[] keyiv, byte[] data)
throws Exception {
Key deskey = null;
DESedeKeySpec spec = new DESedeKeySpec(key);
SecretKeyFactory keyfactory = SecretKeyFactory.getInstance("desede");
deskey = keyfactory.generateSecret(spec);
Cipher cipher = Cipher.getInstance("desede" + "/CBC/PKCS5Padding");
IvParameterSpec ips = new IvParameterSpec(keyiv);
cipher.init(Cipher.DECRYPT_MODE, deskey, ips);
byte[] bOut = cipher.doFinal(data);
return bOut;
}
}
❸ des解密演算法,利用C語言解密JAVA語言加密的密碼。。密鑰為12345678,加密後的密文為:26d086be3a3a62fc
// C 語言 DES用的是 ECB模式, 沒有填充
// 因此Java端要對應, 你的明文是 liubiao 嗎?
// 另外 DES已經不安全了, 如果可以改為 3DES或者 AES吧。
public class LearnDes {
public static void main(String[] args) {
try {
System.out.println(encrypt("liubiao", "12345678"));
System.out.println(decrypt("26d086be3a3a62fc", "12345678"));
} catch (Exception e) {
e.printStackTrace();
}
}
public static String encrypt(String message, String key) throws Exception {
//Cipher cipher = Cipher.getInstance("DES/CBC/PKCS5Padding");
Cipher cipher = Cipher.getInstance("DES/ECB/NOPADDING");
DESKeySpec desKeySpec = new DESKeySpec(key.getBytes("UTF-8"));
SecretKeyFactory keyFactory = SecretKeyFactory.getInstance("DES");
SecretKey secretKey = keyFactory.generateSecret(desKeySpec);
IvParameterSpec iv = new IvParameterSpec(key.getBytes("UTF-8"));
//cipher.init(Cipher.ENCRYPT_MODE, secretKey, iv);
cipher.init(Cipher.ENCRYPT_MODE, secretKey );
return toHexString(cipher.doFinal(message.getBytes("UTF-8")));
}
public static String decrypt(String message, String key) throws Exception {
byte[] bytesrc = convertHexString(message);
//Cipher cipher = Cipher.getInstance("DES/CBC/PKCS5Padding");
Cipher cipher = Cipher.getInstance("DES/ECB/NOPADDING");
DESKeySpec desKeySpec = new DESKeySpec(key.getBytes("UTF-8"));
SecretKeyFactory keyFactory = SecretKeyFactory.getInstance("DES");
SecretKey secretKey = keyFactory.generateSecret(desKeySpec);
IvParameterSpec iv = new IvParameterSpec(key.getBytes("UTF-8"));
//cipher.init(Cipher.DECRYPT_MODE, secretKey, iv);
cipher.init(Cipher.DECRYPT_MODE, secretKey );
byte[] retByte = cipher.doFinal(bytesrc);
return new String(retByte);
}
public static byte[] convertHexString(String ss) {
byte digest[] = new byte[ss.length() / 2];
for (int i = 0; i < digest.length; i++) {
String byteString = ss.substring(2 * i, 2 * i + 2);
int byteValue = Integer.parseInt(byteString, 16);
digest[i] = (byte) byteValue;
}
return digest;
}
public static String toHexString(byte b[]) {
StringBuffer hexString = new StringBuffer();
for (int i = 0; i < b.length; i++) {
String plainText = Integer.toHexString(0xff & b[i]);
if (plainText.length() < 2)
plainText = "0" + plainText;
hexString.append(plainText);
}
return hexString.toString();
}
}
❹ 如題,求Java的DES演算法代碼,可以用於解密用C語言寫的DES加密演算法!其中C語言代碼見問題補充
加密演算法可以加解密有三個條件,一個是隨機源,一個是加密演算法(aes,des, java和c++都有實現,這個你不用管),三是填充方法,保證這3個條件一致就可以成功加解密
❺ 如何用C++實現RSA演算法
RSA演算法介紹及JAVA實現,其實java和c++差不多,參考一下吧
<一>基礎
RSA演算法非常簡單,概述如下:
找兩素數p和q
取n=p*q
取t=(p-1)*(q-1)
取任何一個數e,要求滿足e<t並且e與t互素(就是最大公因數為1)
取d*e%t==1
這樣最終得到三個數: n d e
設消息為數M (M <n)
設c=(M**d)%n就得到了加密後的消息c
設m=(c**e)%n則 m == M,從而完成對c的解密。
註:**表示次方,上面兩式中的d和e可以互換。
在對稱加密中:
n d兩個數構成公鑰,可以告訴別人;
n e兩個數構成私鑰,e自己保留,不讓任何人知道。
給別人發送的信息使用e加密,只要別人能用d解開就證明信息是由你發送的,構成了簽名機制。
別人給你發送信息時使用d加密,這樣只有擁有e的你能夠對其解密。
rsa的安全性在於對於一個大數n,沒有有效的方法能夠將其分解
從而在已知n d的情況下無法獲得e;同樣在已知n e的情況下無法
求得d。
<二>實踐
接下來我們來一個實踐,看看實際的操作:
找兩個素數:
p=47
q=59
這樣
n=p*q=2773
t=(p-1)*(q-1)=2668
取e=63,滿足e<t並且e和t互素
用perl簡單窮舉可以獲得滿主 e*d%t ==1的數d:
C:\Temp>perl -e "foreach $i (1..9999){ print($i),last if $i*63%2668==1 }"
847
即d=847
最終我們獲得關鍵的
n=2773
d=847
e=63
取消息M=244我們看看
加密:
c=M**d%n = 244**847%2773
用perl的大數計算來算一下:
C:\Temp>perl -Mbigint -e "print 244**847%2773"
465
即用d對M加密後獲得加密信息c=465
解密:
我們可以用e來對加密後的c進行解密,還原M:
m=c**e%n=465**63%2773 :
C:\Temp>perl -Mbigint -e "print 465**63%2773"
244
即用e對c解密後獲得m=244 , 該值和原始信息M相等。
<三>字元串加密
把上面的過程集成一下我們就能實現一個對字元串加密解密的示例了。
每次取字元串中的一個字元的ascii值作為M進行計算,其輸出為加密後16進制
的數的字元串形式,按3位元組表示,如01F
代碼如下:
#!/usr/bin/perl -w
#RSA 計算過程學習程序編寫的測試程序
#watercloud 2003-8-12
#
use strict;
use Math::BigInt;
my %RSA_CORE = (n=>2773,e=>63,d=>847); #p=47,q=59
my $N=new Math::BigInt($RSA_CORE{n});
my $E=new Math::BigInt($RSA_CORE{e});
my $D=new Math::BigInt($RSA_CORE{d});
print "N=$N D=$D E=$E\n";
sub RSA_ENCRYPT
{
my $r_mess = shift @_;
my ($c,$i,$M,$C,$cmess);
for($i=0;$i < length($$r_mess);$i++)
{
$c=ord(substr($$r_mess,$i,1));
$M=Math::BigInt->new($c);
$C=$M->(); $C->bmodpow($D,$N);
$c=sprintf "%03X",$C;
$cmess.=$c;
}
return \$cmess;
}
sub RSA_DECRYPT
{
my $r_mess = shift @_;
my ($c,$i,$M,$C,$dmess);
for($i=0;$i < length($$r_mess);$i+=3)
{
$c=substr($$r_mess,$i,3);
$c=hex($c);
$M=Math::BigInt->new($c);
$C=$M->(); $C->bmodpow($E,$N);
$c=chr($C);
$dmess.=$c;
}
return \$dmess;
}
my $mess="RSA 娃哈哈哈~~~";
$mess=$ARGV[0] if @ARGV >= 1;
print "原始串:",$mess,"\n";
my $r_cmess = RSA_ENCRYPT(\$mess);
print "加密串:",$$r_cmess,"\n";
my $r_dmess = RSA_DECRYPT($r_cmess);
print "解密串:",$$r_dmess,"\n";
#EOF
測試一下:
C:\Temp>perl rsa-test.pl
N=2773 D=847 E=63
原始串:RSA 娃哈哈哈~~~
加密串:
解密串:RSA 娃哈哈哈~~~
C:\Temp>perl rsa-test.pl 安全焦點(xfocus)
N=2773 D=847 E=63
原始串:安全焦點(xfocus)
加密串:
解密串:安全焦點(xfocus)
<四>提高
前面已經提到,rsa的安全來源於n足夠大,我們測試中使用的n是非常小的,根本不能保障安全性,
我們可以通過RSAKit、RSATool之類的工具獲得足夠大的N 及D E。
通過工具,我們獲得1024位的N及D E來測試一下:
n=EC3A85F5005D
4C2013433B383B
A50E114705D7E2
BC511951
d=0x10001
e=DD28C523C2995
47B77324E66AFF2
789BD782A592D2B
1965
設原始信息
M=
完成這么大數字的計算依賴於大數運算庫,用perl來運算非常簡單:
A) 用d對M進行加密如下:
c=M**d%n :
C:\Temp>perl -Mbigint -e " $x=Math::BigInt->bmodpow(0x11111111111122222222222233
333333333, 0x10001,
D55EDBC4F0
6E37108DD6
);print $x->as_hex"
b73d2576bd
47715caa6b
d59ea89b91
f1834580c3f6d90898
即用d對M加密後信息為:
c=b73d2576bd
47715caa6b
d59ea89b91
f1834580c3f6d90898
B) 用e對c進行解密如下:
m=c**e%n :
C:\Temp>perl -Mbigint -e " $x=Math::BigInt->bmodpow(0x17b287be418c69ecd7c39227ab
5aa1d99ef3
0cb4764414
, 0xE760A
3C29954C5D
7324E66AFF
2789BD782A
592D2B1965, CD15F90
4F017F9CCF
DD60438941
);print $x->as_hex"
(我的P4 1.6G的機器上計算了約5秒鍾)
得到用e解密後的m= == M
C) RSA通常的實現
RSA簡潔幽雅,但計算速度比較慢,通常加密中並不是直接使用RSA 來對所有的信息進行加密,
最常見的情況是隨機產生一個對稱加密的密鑰,然後使用對稱加密演算法對信息加密,之後用
RSA對剛才的加密密鑰進行加密。
最後需要說明的是,當前小於1024位的N已經被證明是不安全的
自己使用中不要使用小於1024位的RSA,最好使用2048位的。
----------------------------------------------------------
一個簡單的RSA演算法實現JAVA源代碼:
filename:RSA.java
/*
* Created on Mar 3, 2005
*
* TODO To change the template for this generated file go to
* Window - Preferences - Java - Code Style - Code Templates
*/
import java.math.BigInteger;
import java.io.InputStream;
import java.io.OutputStream;
import java.io.FileInputStream;
import java.io.FileOutputStream;
import java.io.FileNotFoundException;
import java.io.IOException;
import java.io.FileWriter;
import java.io.FileReader;
import java.io.BufferedReader;
import java.util.StringTokenizer;
/**
* @author Steve
*
* TODO To change the template for this generated type comment go to
* Window - Preferences - Java - Code Style - Code Templates
*/
public class RSA {
/**
* BigInteger.ZERO
*/
private static final BigInteger ZERO = BigInteger.ZERO;
/**
* BigInteger.ONE
*/
private static final BigInteger ONE = BigInteger.ONE;
/**
* Pseudo BigInteger.TWO
*/
private static final BigInteger TWO = new BigInteger("2");
private BigInteger myKey;
private BigInteger myMod;
private int blockSize;
public RSA (BigInteger key, BigInteger n, int b) {
myKey = key;
myMod = n;
blockSize = b;
}
public void encodeFile (String filename) {
byte[] bytes = new byte[blockSize / 8 + 1];
byte[] temp;
int tempLen;
InputStream is = null;
FileWriter writer = null;
try {
is = new FileInputStream(filename);
writer = new FileWriter(filename + ".enc");
}
catch (FileNotFoundException e1){
System.out.println("File not found: " + filename);
}
catch (IOException e1){
System.out.println("File not found: " + filename + ".enc");
}
/**
* Write encoded message to 'filename'.enc
*/
try {
while ((tempLen = is.read(bytes, 1, blockSize / 8)) > 0) {
for (int i = tempLen + 1; i < bytes.length; ++i) {
bytes[i] = 0;
}
writer.write(encodeDecode(new BigInteger(bytes)) + " ");
}
}
catch (IOException e1) {
System.out.println("error writing to file");
}
/**
* Close input stream and file writer
*/
try {
is.close();
writer.close();
}
catch (IOException e1) {
System.out.println("Error closing file.");
}
}
public void decodeFile (String filename) {
FileReader reader = null;
OutputStream os = null;
try {
reader = new FileReader(filename);
os = new FileOutputStream(filename.replaceAll(".enc", ".dec"));
}
catch (FileNotFoundException e1) {
if (reader == null)
System.out.println("File not found: " + filename);
else
System.out.println("File not found: " + filename.replaceAll(".enc", "dec"));
}
BufferedReader br = new BufferedReader(reader);
int offset;
byte[] temp, toFile;
StringTokenizer st = null;
try {
while (br.ready()) {
st = new StringTokenizer(br.readLine());
while (st.hasMoreTokens()){
toFile = encodeDecode(new BigInteger(st.nextToken())).toByteArray();
System.out.println(toFile.length + " x " + (blockSize / 8));
if (toFile[0] == 0 && toFile.length != (blockSize / 8)) {
temp = new byte[blockSize / 8];
offset = temp.length - toFile.length;
for (int i = toFile.length - 1; (i <= 0) && ((i + offset) <= 0); --i) {
temp[i + offset] = toFile[i];
}
toFile = temp;
}
/*if (toFile.length != ((blockSize / 8) + 1)){
temp = new byte[(blockSize / 8) + 1];
System.out.println(toFile.length + " x " + temp.length);
for (int i = 1; i < temp.length; i++) {
temp[i] = toFile[i - 1];
}
toFile = temp;
}
else
System.out.println(toFile.length + " " + ((blockSize / 8) + 1));*/
os.write(toFile);
}
}
}
catch (IOException e1) {
System.out.println("Something went wrong");
}
/**
* close data streams
*/
try {
os.close();
reader.close();
}
catch (IOException e1) {
System.out.println("Error closing file.");
}
}
/**
* Performs <tt>base</tt>^<sup><tt>pow</tt></sup> within the molar
* domain of <tt>mod</tt>.
*
* @param base the base to be raised
* @param pow the power to which the base will be raisded
* @param mod the molar domain over which to perform this operation
* @return <tt>base</tt>^<sup><tt>pow</tt></sup> within the molar
* domain of <tt>mod</tt>.
*/
public BigInteger encodeDecode(BigInteger base) {
BigInteger a = ONE;
BigInteger s = base;
BigInteger n = myKey;
while (!n.equals(ZERO)) {
if(!n.mod(TWO).equals(ZERO))
a = a.multiply(s).mod(myMod);
s = s.pow(2).mod(myMod);
n = n.divide(TWO);
}
return a;
}
}
❻ Des加密解密方法 用java C#和C++三種方式實現
Solaris下的系統,有一個用C做的加密工具,調用Sunwcry的des(1)對文件進行加密,然後在java中對文件進行解密。java中用的是標準的DES/CBC/NoPadding演算法,可是解密後發現開頭有8byte的數據出錯了,請高人指點一下。
cbc_encrypt.c : 加密用的C程序
cbc_decrypt.c:解密用的C程序
TestDescbc.java:解密用的java程序
Test01.dat原始文件
Test03.dat cbc_encrypt加密後的文件
Test05.dat cbc_decrypt解密後的文件
Test06.dat TestDescbc解密後的文件