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RSA公钥签名
微信转账签名
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@@ -2,11 +2,7 @@
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package com.egzosn.pay.common.util.sign.encrypt;
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import javax.crypto.Cipher;
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import java.io.ByteArrayInputStream;
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import java.io.ByteArrayOutputStream;
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import java.io.InputStream;
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import java.io.UnsupportedEncodingException;
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import java.nio.charset.Charset;
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import java.io.*;
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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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@@ -225,10 +221,7 @@ public class RSA{
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* @return 公钥
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*/
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public static PublicKey getPublicKey(String key, String signAlgorithms) throws Exception {
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KeyFactory keyFactory = KeyFactory.getInstance(signAlgorithms);
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byte[] encodedKey = Base64.decode(key);
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PublicKey pubKey = keyFactory.generatePublic(new X509EncodedKeySpec(encodedKey));
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return pubKey;
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return getPublicKey(new ByteArrayInputStream(key.getBytes()), signAlgorithms);
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}
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@@ -243,32 +236,48 @@ public class RSA{
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return getPublicKey(key, ALGORITHM);
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}
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public static String encrypt(byte[] plainBytes, PublicKey publicKey, String cipherAlgorithm, String characterEncoding ) throws Exception {
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Cipher cipher = Cipher.getInstance(cipherAlgorithm);
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cipher.init(Cipher.DECRYPT_MODE, publicKey);
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try(InputStream ins = new ByteArrayInputStream(plainBytes); ByteArrayOutputStream writer = new ByteArrayOutputStream();) {
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byte[] buf = new byte[128];
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int bufl;
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while ((bufl = ins.read(buf)) != -1) {
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byte[] block = null;
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if (buf.length == bufl) {
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block = buf;
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} else {
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block = new byte[bufl];
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for (int i = 0; i < bufl; i++) {
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block[i] = buf[i];
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}
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public static PublicKey getPublicKey(InputStream inputStream, String keyAlgorithm) throws Exception {
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try (BufferedReader br = new BufferedReader(new InputStreamReader(inputStream));) {
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StringBuilder sb = new StringBuilder();
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String readLine = null;
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while ((readLine = br.readLine()) != null) {
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if (readLine.charAt(0) == '-') {
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continue;
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}
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writer.write(cipher.doFinal(block));
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sb.append(readLine);
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sb.append('\r');
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}
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return new String(writer.toByteArray(), characterEncoding);
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X509EncodedKeySpec pubX509 = new X509EncodedKeySpec(Base64.decode(sb.toString()));
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KeyFactory keyFactory = KeyFactory.getInstance(keyAlgorithm);
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PublicKey publicKey = keyFactory.generatePublic(pubX509);
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return publicKey;
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}
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}
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public static byte[] encrypt(byte[] plainBytes, PublicKey publicKey, int keyLength, int reserveSize, String cipherAlgorithm) throws Exception {
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int keyByteSize = keyLength / 8;
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int encryptBlockSize = keyByteSize - reserveSize;
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int nBlock = plainBytes.length / encryptBlockSize;
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if ((plainBytes.length % encryptBlockSize) != 0) {
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nBlock += 1;
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}
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try (ByteArrayOutputStream outbuf = new ByteArrayOutputStream(nBlock * keyByteSize);) {
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Cipher cipher = Cipher.getInstance(cipherAlgorithm);
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cipher.init(Cipher.ENCRYPT_MODE, publicKey);
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for (int offset = 0; offset < plainBytes.length; offset += encryptBlockSize) {
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int inputLen = plainBytes.length - offset;
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if (inputLen > encryptBlockSize) {
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inputLen = encryptBlockSize;
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}
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byte[] encryptedBlock = cipher.doFinal(plainBytes, offset, inputLen);
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outbuf.write(encryptedBlock);
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}
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outbuf.flush();
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return outbuf.toByteArray();
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}
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}
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public static String encrypt(String content, String publicKey, String cipherAlgorithm, String characterEncoding ) throws Exception {
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return RSA.encrypt(Base64.decode(content), RSA.getPublicKey(publicKey), cipherAlgorithm, characterEncoding);
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return Base64.encode(RSA.encrypt(content.getBytes(characterEncoding), RSA.getPublicKey(publicKey),1024, 11, cipherAlgorithm));
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}
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}
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@@ -81,6 +81,6 @@ public class RSA2 {
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public static String encrypt(String content, String publicKey, String cipherAlgorithm, String characterEncoding ) throws Exception {
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return RSA.encrypt(content.getBytes(Charset.forName(characterEncoding)), RSA.getPublicKey(publicKey),cipherAlgorithm, characterEncoding);
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return Base64.encode(RSA.encrypt(content.getBytes(characterEncoding), RSA.getPublicKey(publicKey),2048, 11, cipherAlgorithm));
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}
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}
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