package doumeemes.core.utils.dingding;
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import java.io.ByteArrayOutputStream;
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import java.nio.charset.Charset;
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import java.security.MessageDigest;
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import java.security.Permission;
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import java.security.PermissionCollection;
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import java.util.Arrays;
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import java.util.HashMap;
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import java.util.Map;
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import java.util.Random;
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import java.security.Security;
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import java.lang.reflect.Field;
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import javax.crypto.Cipher;
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import javax.crypto.spec.IvParameterSpec;
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import javax.crypto.spec.SecretKeySpec;
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import com.alibaba.fastjson.JSON;
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import org.apache.commons.codec.binary.Base64;
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/**
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* 钉钉开放平台加解密方法
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* 在ORACLE官方网站下载JCE无限制权限策略文件
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* JDK6的下载地址:http://www.oracle.com/technetwork/java/javase/downloads/jce-6-download-429243.html
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* JDK7的下载地址: http://www.oracle.com/technetwork/java/javase/downloads/jce-7-download-432124.html
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* JDK8的下载地址 https://www.oracle.com/java/technologies/javase-jce8-downloads.html
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*/
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public class DingCallbackCrypto {
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private static final Charset CHARSET = Charset.forName("utf-8");
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private static final Base64 base64 = new Base64();
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private byte[] aesKey;
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private String token;
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private String corpId;
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/**
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* ask getPaddingBytes key固定长度
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**/
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private static final Integer AES_ENCODE_KEY_LENGTH = 43;
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/**
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* 加密随机字符串字节长度
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**/
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private static final Integer RANDOM_LENGTH = 16;
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/**
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* 构造函数
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*
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* @param token 钉钉开放平台上,开发者设置的token
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* @param encodingAesKey 钉钉开放台上,开发者设置的EncodingAESKey
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* @param corpId 企业自建应用-事件订阅, 使用appKey
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* 企业自建应用-注册回调地址, 使用corpId
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* 第三方企业应用, 使用suiteKey
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*
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* @throws DingTalkEncryptException 执行失败,请查看该异常的错误码和具体的错误信息
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*/
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public DingCallbackCrypto(String token, String encodingAesKey, String corpId) throws DingTalkEncryptException {
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if (null == encodingAesKey || encodingAesKey.length() != AES_ENCODE_KEY_LENGTH) {
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throw new DingTalkEncryptException(DingTalkEncryptException.AES_KEY_ILLEGAL);
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}
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this.token = token;
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this.corpId = corpId;
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aesKey = Base64.decodeBase64(encodingAesKey + "=");
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}
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public Map<String, String> getEncryptedMap(String plaintext) throws DingTalkEncryptException {
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return getEncryptedMap(plaintext, System.currentTimeMillis(), Utils.getRandomStr(16));
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}
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/**
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* 将和钉钉开放平台同步的消息体加密,返回加密Map
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*
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* @param plaintext 传递的消息体明文
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* @param timeStamp 时间戳
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* @param nonce 随机字符串
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* @return
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* @throws DingTalkEncryptException
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*/
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public Map<String, String> getEncryptedMap(String plaintext, Long timeStamp, String nonce)
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throws DingTalkEncryptException {
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if (null == plaintext) {
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throw new DingTalkEncryptException(DingTalkEncryptException.ENCRYPTION_PLAINTEXT_ILLEGAL);
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}
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if (null == timeStamp) {
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throw new DingTalkEncryptException(DingTalkEncryptException.ENCRYPTION_TIMESTAMP_ILLEGAL);
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}
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if (null == nonce) {
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throw new DingTalkEncryptException(DingTalkEncryptException.ENCRYPTION_NONCE_ILLEGAL);
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}
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// 加密
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String encrypt = encrypt(Utils.getRandomStr(RANDOM_LENGTH), plaintext);
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String signature = getSignature(token, String.valueOf(timeStamp), nonce, encrypt);
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Map<String, String> resultMap = new HashMap<String, String>();
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resultMap.put("msg_signature", signature);
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resultMap.put("encrypt", encrypt);
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resultMap.put("timeStamp", String.valueOf(timeStamp));
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resultMap.put("nonce", nonce);
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return resultMap;
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}
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/**
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* 密文解密
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*
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* @param msgSignature 签名串
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* @param timeStamp 时间戳
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* @param nonce 随机串
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* @param encryptMsg 密文
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* @return 解密后的原文
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* @throws DingTalkEncryptException
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*/
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public String getDecryptMsg(String msgSignature, String timeStamp, String nonce, String encryptMsg)
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throws DingTalkEncryptException {
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//校验签名
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String signature = getSignature(token, timeStamp, nonce, encryptMsg);
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if (!signature.equals(msgSignature)) {
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throw new DingTalkEncryptException(DingTalkEncryptException.COMPUTE_SIGNATURE_ERROR);
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}
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// 解密
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String result = decrypt(encryptMsg);
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return result;
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}
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/*
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* 对明文加密.
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* @param text 需要加密的明文
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* @return 加密后base64编码的字符串
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*/
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private String encrypt(String random, String plaintext) throws DingTalkEncryptException {
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try {
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byte[] randomBytes = random.getBytes(CHARSET);
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byte[] plainTextBytes = plaintext.getBytes(CHARSET);
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byte[] lengthByte = Utils.int2Bytes(plainTextBytes.length);
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byte[] corpidBytes = corpId.getBytes(CHARSET);
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ByteArrayOutputStream byteStream = new ByteArrayOutputStream();
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byteStream.write(randomBytes);
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byteStream.write(lengthByte);
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byteStream.write(plainTextBytes);
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byteStream.write(corpidBytes);
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byte[] padBytes = PKCS7Padding.getPaddingBytes(byteStream.size());
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byteStream.write(padBytes);
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byte[] unencrypted = byteStream.toByteArray();
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byteStream.close();
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Cipher cipher = Cipher.getInstance("AES/CBC/NoPadding");
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SecretKeySpec keySpec = new SecretKeySpec(aesKey, "AES");
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IvParameterSpec iv = new IvParameterSpec(aesKey, 0, 16);
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cipher.init(Cipher.ENCRYPT_MODE, keySpec, iv);
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byte[] encrypted = cipher.doFinal(unencrypted);
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String result = base64.encodeToString(encrypted);
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return result;
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} catch (Exception e) {
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throw new DingTalkEncryptException(DingTalkEncryptException.COMPUTE_ENCRYPT_TEXT_ERROR);
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}
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}
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/*
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* 对密文进行解密.
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* @param text 需要解密的密文
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* @return 解密得到的明文
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*/
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private String decrypt(String text) throws DingTalkEncryptException {
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byte[] originalArr;
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try {
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// 设置解密模式为AES的CBC模式
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Cipher cipher = Cipher.getInstance("AES/CBC/NoPadding");
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SecretKeySpec keySpec = new SecretKeySpec(aesKey, "AES");
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IvParameterSpec iv = new IvParameterSpec(Arrays.copyOfRange(aesKey, 0, 16));
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cipher.init(Cipher.DECRYPT_MODE, keySpec, iv);
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// 使用BASE64对密文进行解码
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byte[] encrypted = Base64.decodeBase64(text);
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// 解密
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originalArr = cipher.doFinal(encrypted);
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} catch (Exception e) {
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throw new DingTalkEncryptException(DingTalkEncryptException.COMPUTE_DECRYPT_TEXT_ERROR);
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}
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String plainText;
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String fromCorpid;
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try {
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// 去除补位字符
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byte[] bytes = PKCS7Padding.removePaddingBytes(originalArr);
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// 分离16位随机字符串,网络字节序和corpId
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byte[] networkOrder = Arrays.copyOfRange(bytes, 16, 20);
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int plainTextLegth = Utils.bytes2int(networkOrder);
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plainText = new String(Arrays.copyOfRange(bytes, 20, 20 + plainTextLegth), CHARSET);
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fromCorpid = new String(Arrays.copyOfRange(bytes, 20 + plainTextLegth, bytes.length), CHARSET);
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} catch (Exception e) {
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throw new DingTalkEncryptException(DingTalkEncryptException.COMPUTE_DECRYPT_TEXT_LENGTH_ERROR);
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}
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// corpid不相同的情况
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if (!fromCorpid.equals(corpId)) {
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throw new DingTalkEncryptException(DingTalkEncryptException.COMPUTE_DECRYPT_TEXT_CORPID_ERROR);
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}
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return plainText;
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}
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/**
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* 数字签名
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*
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* @param token isv token
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* @param timestamp 时间戳
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* @param nonce 随机串
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* @param encrypt 加密文本
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* @return
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* @throws DingTalkEncryptException
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*/
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public String getSignature(String token, String timestamp, String nonce, String encrypt)
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throws DingTalkEncryptException {
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try {
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String[] array = new String[] {token, timestamp, nonce, encrypt};
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Arrays.sort(array);
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System.out.println(JSON.toJSONString(array));
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StringBuffer sb = new StringBuffer();
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for (int i = 0; i < 4; i++) {
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sb.append(array[i]);
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}
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String str = sb.toString();
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System.out.println(str);
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MessageDigest md = MessageDigest.getInstance("SHA-1");
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md.update(str.getBytes());
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byte[] digest = md.digest();
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StringBuffer hexstr = new StringBuffer();
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String shaHex = "";
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for (int i = 0; i < digest.length; i++) {
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shaHex = Integer.toHexString(digest[i] & 0xFF);
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if (shaHex.length() < 2) {
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hexstr.append(0);
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}
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hexstr.append(shaHex);
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}
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return hexstr.toString();
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} catch (Exception e) {
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throw new DingTalkEncryptException(DingTalkEncryptException.COMPUTE_SIGNATURE_ERROR);
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}
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}
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public static class Utils {
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public Utils() {
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}
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public static String getRandomStr(int count) {
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String base = "ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789";
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Random random = new Random();
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StringBuffer sb = new StringBuffer();
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for (int i = 0; i < count; ++i) {
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int number = random.nextInt(base.length());
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sb.append(base.charAt(number));
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}
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return sb.toString();
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}
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public static byte[] int2Bytes(int count) {
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byte[] byteArr = new byte[] {(byte)(count >> 24 & 255), (byte)(count >> 16 & 255), (byte)(count >> 8 & 255),
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(byte)(count & 255)};
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return byteArr;
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}
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public static int bytes2int(byte[] byteArr) {
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int count = 0;
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for (int i = 0; i < 4; ++i) {
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count <<= 8;
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count |= byteArr[i] & 255;
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}
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return count;
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}
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}
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public static class PKCS7Padding {
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private static final Charset CHARSET = Charset.forName("utf-8");
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private static final int BLOCK_SIZE = 32;
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public PKCS7Padding() {
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}
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public static byte[] getPaddingBytes(int count) {
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int amountToPad = 32 - count % 32;
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if (amountToPad == 0) {
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amountToPad = 32;
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}
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char padChr = chr(amountToPad);
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String tmp = new String();
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for (int index = 0; index < amountToPad; ++index) {
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tmp = tmp + padChr;
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}
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return tmp.getBytes(CHARSET);
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}
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public static byte[] removePaddingBytes(byte[] decrypted) {
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int pad = decrypted[decrypted.length - 1];
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if (pad < 1 || pad > 32) {
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pad = 0;
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}
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return Arrays.copyOfRange(decrypted, 0, decrypted.length - pad);
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}
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private static char chr(int a) {
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byte target = (byte)(a & 255);
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return (char)target;
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}
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}
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public static class DingTalkEncryptException extends Exception {
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public static final int SUCCESS = 0;
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public static final int ENCRYPTION_PLAINTEXT_ILLEGAL = 900001;
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public static final int ENCRYPTION_TIMESTAMP_ILLEGAL = 900002;
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public static final int ENCRYPTION_NONCE_ILLEGAL = 900003;
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public static final int AES_KEY_ILLEGAL = 900004;
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public static final int SIGNATURE_NOT_MATCH = 900005;
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public static final int COMPUTE_SIGNATURE_ERROR = 900006;
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public static final int COMPUTE_ENCRYPT_TEXT_ERROR = 900007;
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public static final int COMPUTE_DECRYPT_TEXT_ERROR = 900008;
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public static final int COMPUTE_DECRYPT_TEXT_LENGTH_ERROR = 900009;
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public static final int COMPUTE_DECRYPT_TEXT_CORPID_ERROR = 900010;
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private static Map<Integer, String> msgMap = new HashMap();
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private Integer code;
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static {
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msgMap.put(0, "成功");
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msgMap.put(900001, "加密明文文本非法");
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msgMap.put(900002, "加密时间戳参数非法");
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msgMap.put(900003, "加密随机字符串参数非法");
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msgMap.put(900005, "签名不匹配");
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msgMap.put(900006, "签名计算失败");
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msgMap.put(900004, "不合法的aes key");
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msgMap.put(900007, "计算加密文字错误");
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msgMap.put(900008, "计算解密文字错误");
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msgMap.put(900009, "计算解密文字长度不匹配");
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msgMap.put(900010, "计算解密文字corpid不匹配");
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}
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public Integer getCode() {
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return this.code;
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}
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public DingTalkEncryptException(Integer exceptionCode) {
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super((String)msgMap.get(exceptionCode));
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this.code = exceptionCode;
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}
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}
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static {
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try {
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Security.setProperty("crypto.policy", "limited");
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RemoveCryptographyRestrictions();
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} catch (Exception var1) {
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}
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}
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private static void RemoveCryptographyRestrictions() throws Exception {
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Class<?> jceSecurity = getClazz("javax.crypto.JceSecurity");
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Class<?> cryptoPermissions = getClazz("javax.crypto.CryptoPermissions");
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Class<?> cryptoAllPermission = getClazz("javax.crypto.CryptoAllPermission");
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if (jceSecurity != null) {
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setFinalStaticValue(jceSecurity, "isRestricted", false);
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PermissionCollection defaultPolicy = (PermissionCollection)getFieldValue(jceSecurity, "defaultPolicy", (Object)null, PermissionCollection.class);
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if (cryptoPermissions != null) {
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Map<?, ?> map = (Map)getFieldValue(cryptoPermissions, "perms", defaultPolicy, Map.class);
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map.clear();
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}
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if (cryptoAllPermission != null) {
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Permission permission = (Permission)getFieldValue(cryptoAllPermission, "INSTANCE", (Object)null, Permission.class);
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defaultPolicy.add(permission);
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}
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}
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}
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private static Class<?> getClazz(String className) {
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Class clazz = null;
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try {
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clazz = Class.forName(className);
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} catch (Exception var3) {
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}
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return clazz;
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}
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private static void setFinalStaticValue(Class<?> srcClazz, String fieldName, Object newValue) throws Exception {
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Field field = srcClazz.getDeclaredField(fieldName);
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field.setAccessible(true);
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Field modifiersField = Field.class.getDeclaredField("modifiers");
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modifiersField.setAccessible(true);
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modifiersField.setInt(field, field.getModifiers() & -17);
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field.set((Object)null, newValue);
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}
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private static <T> T getFieldValue(Class<?> srcClazz, String fieldName, Object owner, Class<T> dstClazz) throws Exception {
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Field field = srcClazz.getDeclaredField(fieldName);
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field.setAccessible(true);
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return dstClazz.cast(field.get(owner));
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}
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}
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