package com.hx.util.rsa;
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import com.hx.util.StringUtils;
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import java.security.KeyFactory;
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import java.security.PrivateKey;
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import java.security.PublicKey;
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import java.security.spec.PKCS8EncodedKeySpec;
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import java.security.spec.X509EncodedKeySpec;
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import java.util.*;
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/**
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* RSA签名验签类
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*/
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public class RSASignature{
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/**
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* 签名算法
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*/
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public static final String SIGN_ALGORITHMS = "SHA1WithRSA";
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/**
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* RSA签名
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* @param content 待签名数据
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* @param privateKey 商户私钥
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* @param encode 字符集编码
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* @return 签名值
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*/
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public static String createSign(String content, String privateKey, String encode) {
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try {
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PKCS8EncodedKeySpec priPKCS8 = new PKCS8EncodedKeySpec( Base64.decode(privateKey) );
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KeyFactory keyf = KeyFactory.getInstance("RSA");
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PrivateKey priKey = keyf.generatePrivate(priPKCS8);
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java.security.Signature signature = java.security.Signature.getInstance(SIGN_ALGORITHMS);
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signature.initSign(priKey);
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signature.update( content.getBytes(encode));
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byte[] signed = signature.sign();
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return Base64.encode(signed);
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}
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catch (Exception e)
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{
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e.printStackTrace();
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}
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return null;
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}
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public static String createSign(String content, String privateKey) {
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try{
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PKCS8EncodedKeySpec priPKCS8 = new PKCS8EncodedKeySpec( Base64.decode(privateKey) );
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KeyFactory keyf = KeyFactory.getInstance("RSA");
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PrivateKey priKey = keyf.generatePrivate(priPKCS8);
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java.security.Signature signature = java.security.Signature.getInstance(SIGN_ALGORITHMS);
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signature.initSign(priKey);
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signature.update( content.getBytes());
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byte[] signed = signature.sign();
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return Base64.encode(signed);
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} catch (Exception e) {
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e.printStackTrace();
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}
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return null;
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}
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/**
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* RSA验签名检查
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* @param content 待签名数据
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* @param sign 签名值
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* @param publicKey 分配给开发商公钥
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* @param encode 字符集编码
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* @return 布尔值
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*/
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public static boolean doCheck(String content, String sign, String publicKey,String encode) {
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try {
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KeyFactory keyFactory = KeyFactory.getInstance("RSA");
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byte[] encodedKey = Base64.decode(publicKey);
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PublicKey pubKey = keyFactory.generatePublic(new X509EncodedKeySpec(encodedKey));
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java.security.Signature signature = java.security.Signature
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.getInstance(SIGN_ALGORITHMS);
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signature.initVerify(pubKey);
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signature.update( content.getBytes(encode) );
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boolean bverify = signature.verify( Base64.decode(sign) );
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return bverify;
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} catch (Exception e) {
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e.printStackTrace();
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}
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return false;
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}
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public static boolean doCheck(String content, String sign, String publicKey) {
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try {
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KeyFactory keyFactory = KeyFactory.getInstance("RSA");
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byte[] encodedKey = Base64.decode(publicKey);
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PublicKey pubKey = keyFactory.generatePublic(new X509EncodedKeySpec(encodedKey));
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java.security.Signature signature = java.security.Signature
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.getInstance(SIGN_ALGORITHMS);
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signature.initVerify(pubKey);
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signature.update( content.getBytes() );
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boolean bverify = signature.verify( Base64.decode(sign) );
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return bverify;
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} catch (Exception e) {
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e.printStackTrace();
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}
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return false;
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}
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/**
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* ASCII码递增排序(剔除空值)
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* @param params
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* @return
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*/
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public static String getSignCheckContent(Map<String, String> params) {
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if (params == null) {
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return null;
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} else {
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StringBuilder content = new StringBuilder();
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List<String> keys = new ArrayList(params.keySet());
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Collections.sort(keys);
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for(int i = 0; i < keys.size(); ++i) {
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String key = (String)keys.get(i);
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Object value = params.get(key);
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if(value == null || StringUtils.isEmpty(value.toString())){
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continue;
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}
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content.append(i == 0 ? "" : "&").append(key).append("=").append(value);
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}
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return content.toString();
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}
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}
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}
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