safedb 디버깅
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@@ -13,7 +13,7 @@ public abstract class SafeDBFaker {
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private static final String AES_256_KEY = "1234567890123456" + "1234567890123456";
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public byte[] encrypt(String userId, String table, String column, String data) {
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public byte[] encrypt(String userId, String table, String column, byte[] data) {
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if (SafeDBColumns.PSWD.isEqualsIgnoreCase(column)) {
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// SHA256 + Base64 인코딩된 가짜 비밀번호 반환
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return sha256(data);
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@@ -34,34 +34,34 @@ public abstract class SafeDBFaker {
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}
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}
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private byte[] sha256(String data) {
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private byte[] sha256(byte[] data) {
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MessageDigest digest = null;
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try {
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digest = MessageDigest.getInstance("SHA-256");
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return digest.digest(data.getBytes());
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return digest.digest(data);
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} catch (NoSuchAlgorithmException e) {
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throw new RuntimeException("Error generating SHA-256 hash", e);
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}
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}
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private String sha256Base64(String data) {
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return Base64.getEncoder().encodeToString(this.sha256(data));
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return Base64.getEncoder().encodeToString(this.sha256(data.getBytes()));
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}
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// AES256 암호화
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private byte[] aes256Encrypt(String data) {
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private byte[] aes256Encrypt(byte[] data) {
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try {
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Cipher cipher = javax.crypto.Cipher.getInstance("AES");
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SecretKeySpec keySpec = new javax.crypto.spec.SecretKeySpec(AES_256_KEY.getBytes(), "AES");
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cipher.init(javax.crypto.Cipher.ENCRYPT_MODE, keySpec);
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return cipher.doFinal(data.getBytes());
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return cipher.doFinal(data);
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} catch (Exception e) {
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throw new RuntimeException("Error during AES encryption", e);
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}
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}
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private String getAes256KeyString(String data) {
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return Base64.getEncoder().encodeToString(this.aes256Encrypt(data));
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return Base64.getEncoder().encodeToString(this.aes256Encrypt(data.getBytes()));
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}
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private byte[] aes256Decrypt(String encryptedData) {
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@@ -75,4 +75,8 @@ public abstract class SafeDBFaker {
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throw new RuntimeException("Error during AES decryption", e);
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}
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}
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public String encryptString(String safedb, String s, String notRnno, String data) {
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return new String(this.encrypt(safedb, s, notRnno, data.getBytes()));
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}
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}
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@@ -86,11 +86,11 @@ public class SafeDBWrapper extends SafeDBBroker {
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}
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public byte[] encrypt(String userId, String table, String column, String data) throws SafeDBWrapperSdkException {
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public byte[] encrypt(String userId, String table, String column, byte[] data) throws SafeDBWrapperSdkException {
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if (isRealSafeDB) {
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try {
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log.debug("[SafeDBWrapper] real / userId : {}, table : {}, column : {}, data : {}", userId, table, column, data);
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return safedb.encrypt(userId, table, column, data.getBytes());
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return safedb.encrypt(userId, table, column, data);
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} catch (Exception e) {
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throw new SafeDBWrapperSdkException("[SafeDBWrapper] Encrypt error: " + e.getMessage(), e);
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}
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@@ -99,8 +99,20 @@ public class SafeDBWrapper extends SafeDBBroker {
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}
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}
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public String encryptString(String userId, String tables, String column, String data) {
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if (isRealSafeDB) {
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try {
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return this.safedb.encryptString(userId, tables, column, data);
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} catch (Exception e) {
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throw new SafeDBWrapperSdkException("[SafeDBWrapper] Encrypt error: " + e.getMessage(), e);
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}
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} else {
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return this.encryptString(userId, tables, column, data);
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}
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}
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public String encryptNotRnnoString(String data) throws SafeDBWrapperSdkException {
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return new String(this.encrypt("SAFEDB", "SAFEDB.POLICY", "NOT_RNNO", data));
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return this.encryptString("SAFEDB", "SAFEDB.POLICY", "NOT_RNNO", data);
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}
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