1.java/android DES加密解密 base64编码用的jdk1.8
import javax.crypto.Cipher;
import javax.crypto.SecretKey;
import javax.crypto.SecretKeyFactory;
import javax.crypto.spec.DESKeySpec;
import java.io.IOException;
import java.security.SecureRandom;
import java.util.Arrays;
import java.util.Base64;
/**
* 解密请求参数
* Created by prettyRain on 2019/5/21.
*/
public class DesUtil {
/**
* 加密解密方式
*/
private final static String DES = "DES";
/**
* 秘钥
*/
private final static String DEFAULTKEY = "mOAmKLeRIFz15XOTE1PWjg==";
/**
* 字符编码
*/
private final static String ENCODE = "UTF-8";
/**
* 解码
*/
private final static Base64.Decoder DECODER = Base64.getDecoder();
/**
* 编码
*/
private final static Base64.Encoder ENCODER = Base64.getEncoder();
/**
* 加密 并用base64编码
* @param data
* @return
* @throws Exception
*/
public static String encrypt(String data) throws Exception {
byte[] bt = encrypt(data.getBytes(ENCODE), DEFAULTKEY.getBytes(ENCODE));
String strs = ENCODER.encodeToString(bt);
return strs;
}
private static byte[] encrypt(byte[] data, byte[] key) throws Exception {
// 生成一个可信任的随机数源
SecureRandom sr = new SecureRandom();
// 从原始密钥数据创建DESKeySpec对象
DESKeySpec dks = new DESKeySpec(key);
// 创建一个密钥工厂,然后用它把DESKeySpec转换成SecretKey对象
SecretKeyFactory keyFactory = SecretKeyFactory.getInstance(DES);
SecretKey securekey = keyFactory.generateSecret(dks);
// Cipher对象实际完成加密操作
Cipher cipher = Cipher.getInstance(DES);
// 用密钥初始化Cipher对象
cipher.init(Cipher.ENCRYPT_MODE, securekey, sr);
return cipher.doFinal(data);
}
/**
* 解密 后并用base64解码
* @param data
* @return
* @throws IOException
* @throws Exception
*/
public static String decrypt(String data) throws IOException, Exception {
if (data == null)
return null;
byte[] buf = DECODER.decode(data);
byte[] bt = decrypt(buf, DEFAULTKEY.getBytes(ENCODE));
return new String(bt, ENCODE);
}
private static byte[] decrypt(byte[] data, byte[] key) throws Exception {
// 生成一个可信任的随机数源
SecureRandom sr = new SecureRandom();
// 从原始密钥数据创建DESKeySpec对象
DESKeySpec dks = new DESKeySpec(key);
// 创建一个密钥工厂,然后用它把DESKeySpec转换成SecretKey对象
SecretKeyFactory keyFactory = SecretKeyFactory.getInstance(DES);
SecretKey securekey = keyFactory.generateSecret(dks);
// Cipher对象实际完成解密操作
Cipher cipher = Cipher.getInstance(DES);
// 用密钥初始化Cipher对象
cipher.init(Cipher.DECRYPT_MODE, securekey, sr);
return cipher.doFinal(data);
}
//测试 加密解密
public static void main(String[] args) throws Exception {
String data = "测试加密解密";
// System.err.println(encrypt(data, key));
// System.err.println(decrypt(encrypt(data, key), key));
System.out.println(encrypt(data));
System.out.println(decrypt(encrypt(data)));
}
2.iOS DES加密解密
//DES加密
- (NSString *)DESString {
NSString *ciphertext = nil;
//const char *textBytes = [plainText UTF8String];字符串直接转字节数组就会和java加密结果不一样, 用NSString 转 NSData 取字节流 和java加密结果一致
NSData *textData = [self dataUsingEncoding:NSUTF8StringEncoding];
NSUInteger dataLength = [textData length];
unsigned char buffer[1024];
memset(buffer, 0, sizeof(char));
Byte iv[] = {1,2,3,4,5,6,7,8};
size_t numBytesEncrypted = 0;
CCCryptorStatus cryptStatus = CCCrypt(kCCEncrypt, kCCAlgorithmDES,kCCOptionPKCS7Padding|kCCOptionECBMode,[DES__KEY UTF8String], kCCKeySizeDES,iv,[textData bytes], dataLength,buffer, 1024,&numBytesEncrypted);
if (cryptStatus == kCCSuccess) {
NSData *data = [NSData dataWithBytes:buffer length:(NSUInteger)numBytesEncrypted];
ciphertext = [data base64EncodedStringWithOptions:0];
}
return ciphertext;
}
//DES解密
+(NSString *)decryptUseDES:(NSString *)cipherText key:(NSString *)key
{
NSString *plaintext = nil;
NSData *cipherdata = [GTMBase64 decodeString:cipherText];
unsigned char buffer[1024];
memset(buffer, 0, sizeof(char));
size_t numBytesDecrypted = 0;
CCCryptorStatus cryptStatus = CCCrypt(kCCDecrypt, kCCAlgorithmDES,
kCCOptionPKCS7Padding,
[key UTF8String], kCCKeySizeDES,
iv,
[cipherdata bytes], [cipherdata length],
buffer, 1024,
&numBytesDecrypted);
if(cryptStatus == kCCSuccess)
{
NSData *plaindata = [NSData dataWithBytes:buffer length:(NSUInteger)numBytesDecrypted];
plaintext = [[NSString alloc]initWithData:plaindata encoding:NSUTF8StringEncoding];
}
return plaintext;
}
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