我一直在尝试使用UUID作为数据库密钥。我希望尽可能占用最少的字节数,同时仍然保持UUID表示可读。
我认为我已经使用base64将它降低到22个字节并删除了一些似乎没有必要为我的目的存储的尾随“==”。这种方法有什么缺陷吗?
基本上我的测试代码会进行一系列转换,以将UUID降低到22字节的字符串,然后将其转换回UUID。
import java.io.IOException;
import java.util.UUID;
public class UUIDTest {
public static void main(String[] args){
UUID uuid = UUID.randomUUID();
System.out.println("UUID String: " + uuid.toString());
System.out.println("Number of Bytes: " + uuid.toString().getBytes().length);
System.out.println();
byte[] uuidArr = asByteArray(uuid);
System.out.print("UUID Byte Array: ");
for(byte b: uuidArr){
System.out.print(b +" ");
}
System.out.println();
System.out.println("Number of Bytes: " + uuidArr.length);
System.out.println();
try {
// Convert a byte array to base64 string
String s = new sun.misc.BASE64Encoder().encode(uuidArr);
System.out.println("UUID Base64 String: " +s);
System.out.println("Number of Bytes: " + s.getBytes().length);
System.out.println();
String trimmed = s.split("=")[0];
System.out.println("UUID Base64 String Trimmed: " +trimmed);
System.out.println("Number of Bytes: " + trimmed.getBytes().length);
System.out.println();
// Convert base64 string to a byte array
byte[] backArr = new sun.misc.BASE64Decoder().decodeBuffer(trimmed);
System.out.print("Back to UUID Byte Array: ");
for(byte b: backArr){
System.out.print(b +" ");
}
System.out.println();
System.out.println("Number of Bytes: " + backArr.length);
byte[] fixedArr = new byte[16];
for(int i= 0; i<16; i++){
fixedArr[i] = backArr[i];
}
System.out.println();
System.out.print("Fixed UUID Byte Array: ");
for(byte b: fixedArr){
System.out.print(b +" ");
}
System.out.println();
System.out.println("Number of Bytes: " + fixedArr.length);
System.out.println();
UUID newUUID = toUUID(fixedArr);
System.out.println("UUID String: " + newUUID.toString());
System.out.println("Number of Bytes: " + newUUID.toString().getBytes().length);
System.out.println();
System.out.println("Equal to Start UUID? "+newUUID.equals(uuid));
if(!newUUID.equals(uuid)){
System.exit(0);
}
} catch (IOException e) {
}
}
public static byte[] asByteArray(UUID uuid) {
long msb = uuid.getMostSignificantBits();
long lsb = uuid.getLeastSignificantBits();
byte[] buffer = new byte[16];
for (int i = 0; i < 8; i++) {
buffer[i] = (byte) (msb >>> 8 * (7 - i));
}
for (int i = 8; i < 16; i++) {
buffer[i] = (byte) (lsb >>> 8 * (7 - i));
}
return buffer;
}
public static UUID toUUID(byte[] byteArray) {
long msb = 0;
long lsb = 0;
for (int i = 0; i < 8; i++)
msb = (msb << 8) | (byteArray[i] & 0xff);
for (int i = 8; i < 16; i++)
lsb = (lsb << 8) | (byteArray[i] & 0xff);
UUID result = new UUID(msb, lsb);
return result;
}
}
输出:
UUID String: cdaed56d-8712-414d-b346-01905d0026fe
Number of Bytes: 36
UUID Byte Array: -51 -82 -43 109 -121 18 65 77 -77 70 1 -112 93 0 38 -2
Number of Bytes: 16
UUID Base64 String: za7VbYcSQU2zRgGQXQAm/g==
Number of Bytes: 24
UUID Base64 String Trimmed: za7VbYcSQU2zRgGQXQAm/g
Number of Bytes: 22
Back to UUID Byte Array: -51 -82 -43 109 -121 18 65 77 -77 70 1 -112 93 0 38 -2 0 38
Number of Bytes: 18
Fixed UUID Byte Array: -51 -82 -43 109 -121 18 65 77 -77 70 1 -112 93 0 38 -2
Number of Bytes: 16
UUID String: cdaed56d-8712-414d-b346-01905d0026fe
Number of Bytes: 36
Equal to Start UUID? true
您可以安全地删除此应用程序中的填充“==”。如果您要将base-64文本解码回字节,大多数库都会期望它存在,但由于您只是将结果字符串用作键,因此它不是问题。
我喜欢Base-64因为它有限的字符集看起来不像胡言乱语,但也有Base-85。它使用更多的字符和代码4个字节作为5个字符,因此您可以将文本缩小到20个字符。
我也试图做类似的事情。我正在使用一个Java应用程序,它使用6fcb514b-b878-4c9d-95b7-8dc3a7ce6fd8
形式的UUID(使用Java中的标准UUID lib生成)。在我的情况下,我需要能够将此UUID降至30个字符或更少。我使用Base64,这些是我的便利功能。希望他们对某人有所帮助,因为解决方案对我来说并不是很明显。
用法:
String uuid_str = "6fcb514b-b878-4c9d-95b7-8dc3a7ce6fd8";
String uuid_as_64 = uuidToBase64(uuid_str);
System.out.println("as base64: "+uuid_as_64);
System.out.println("as uuid: "+uuidFromBase64(uuid_as_64));
输出:
as base64: b8tRS7h4TJ2Vt43Dp85v2A
as uuid : 6fcb514b-b878-4c9d-95b7-8dc3a7ce6fd8
功能:
import org.apache.commons.codec.binary.Base64;
private static String uuidToBase64(String str) {
Base64 base64 = new Base64();
UUID uuid = UUID.fromString(str);
ByteBuffer bb = ByteBuffer.wrap(new byte[16]);
bb.putLong(uuid.getMostSignificantBits());
bb.putLong(uuid.getLeastSignificantBits());
return base64.encodeBase64URLSafeString(bb.array());
}
private static String uuidFromBase64(String str) {
Base64 base64 = new Base64();
byte[] bytes = base64.decodeBase64(str);
ByteBuffer bb = ByteBuffer.wrap(bytes);
UUID uuid = new UUID(bb.getLong(), bb.getLong());
return uuid.toString();
}
我有一个应用程序,我几乎正在这样做。 22个字符编码的UUID。它工作正常。但是,我这样做的主要原因是ID在Web应用程序的URI中公开,对于出现在URI中的内容,36个字符实际上非常大。 22个字符仍然有点长,但我们做的。
这是以下的Ruby代码:
# Make an array of 64 URL-safe characters
CHARS64 = ("a".."z").to_a + ("A".."Z").to_a + ("0".."9").to_a + ["-", "_"]
# Return a 22 byte URL-safe string, encoded six bits at a time using 64 characters
def to_s22
integer = self.to_i # UUID as a raw integer
rval = ""
22.times do
c = (integer & 0x3F)
rval += CHARS64[c]
integer = integer >> 6
end
return rval.reverse
end
它与base64编码不完全相同,因为base64使用的字符如果出现在URI路径组件中则必须进行转义。 Java实现可能会有很大的不同,因为您更可能拥有一个原始字节数组而不是一个非常大的整数。
这是我的代码,它使用org.apache.commons.codec.binary.Base64来生成长度为22个字符的url-safe唯一字符串(并且具有与UUID相同的唯一性)。
private static Base64 BASE64 = new Base64(true);
public static String generateKey(){
UUID uuid = UUID.randomUUID();
byte[] uuidArray = KeyGenerator.toByteArray(uuid);
byte[] encodedArray = BASE64.encode(uuidArray);
String returnValue = new String(encodedArray);
returnValue = StringUtils.removeEnd(returnValue, "\r\n");
return returnValue;
}
public static UUID convertKey(String key){
UUID returnValue = null;
if(StringUtils.isNotBlank(key)){
// Convert base64 string to a byte array
byte[] decodedArray = BASE64.decode(key);
returnValue = KeyGenerator.fromByteArray(decodedArray);
}
return returnValue;
}
private static byte[] toByteArray(UUID uuid) {
byte[] byteArray = new byte[(Long.SIZE / Byte.SIZE) * 2];
ByteBuffer buffer = ByteBuffer.wrap(byteArray);
LongBuffer longBuffer = buffer.asLongBuffer();
longBuffer.put(new long[] { uuid.getMostSignificantBits(), uuid.getLeastSignificantBits() });
return byteArray;
}
private static UUID fromByteArray(byte[] bytes) {
ByteBuffer buffer = ByteBuffer.wrap(bytes);
LongBuffer longBuffer = buffer.asLongBuffer();
return new UUID(longBuffer.get(0), longBuffer.get(1));
}
你没有说你正在使用什么DBMS,但如果你担心节省空间,RAW似乎是最好的方法。您只需要记住转换所有查询,否则您将面临巨大的性能下降风险。
但我不得不问:在你住的地方,字节真的很贵吗?
以下是JDK8中引入的java.util.Base64
示例:
import java.nio.ByteBuffer;
import java.util.Base64;
import java.util.Base64.Encoder;
import java.util.UUID;
public class Uuid64 {
private static final Encoder BASE64_URL_ENCODER = Base64.getUrlEncoder().withoutPadding();
public static void main(String[] args) {
// String uuidStr = UUID.randomUUID().toString();
String uuidStr = "eb55c9cc-1fc1-43da-9adb-d9c66bb259ad";
String uuid64 = uuidHexToUuid64(uuidStr);
System.out.println(uuid64); //=> 61XJzB_BQ9qa29nGa7JZrQ
System.out.println(uuid64.length()); //=> 22
String uuidHex = uuid64ToUuidHex(uuid64);
System.out.println(uuidHex); //=> eb55c9cc-1fc1-43da-9adb-d9c66bb259ad
}
public static String uuidHexToUuid64(String uuidStr) {
UUID uuid = UUID.fromString(uuidStr);
byte[] bytes = uuidToBytes(uuid);
return BASE64_URL_ENCODER.encodeToString(bytes);
}
public static String uuid64ToUuidHex(String uuid64) {
byte[] decoded = Base64.getUrlDecoder().decode(uuid64);
UUID uuid = uuidFromBytes(decoded);
return uuid.toString();
}
public static byte[] uuidToBytes(UUID uuid) {
ByteBuffer bb = ByteBuffer.wrap(new byte[16]);
bb.putLong(uuid.getMostSignificantBits());
bb.putLong(uuid.getLeastSignificantBits());
return bb.array();
}
public static UUID uuidFromBytes(byte[] decoded) {
ByteBuffer bb = ByteBuffer.wrap(decoded);
long mostSigBits = bb.getLong();
long leastSigBits = bb.getLong();
return new UUID(mostSigBits, leastSigBits);
}
}
Base64中编码的UUID是URL安全且没有填充。
以下是我用于UUID(梳子样式)的内容。它包括将uuid字符串或uuid类型转换为base64的代码。我每64位做一次,所以我没有处理任何相同的标志:
import java.util.Calendar;
import java.util.UUID;
import org.apache.commons.codec.binary.Base64;
public class UUIDUtil{
public static UUID combUUID(){
private UUID srcUUID = UUID.randomUUID();
private java.sql.Timestamp ts = new java.sql.Timestamp(Calendar.getInstance().getTime().getTime());
long upper16OfLowerUUID = this.zeroLower48BitsOfLong( srcUUID.getLeastSignificantBits() );
long lower48Time = UUIDUtil.zeroUpper16BitsOfLong( ts );
long lowerLongForNewUUID = upper16OfLowerUUID | lower48Time;
return new UUID( srcUUID.getMostSignificantBits(), lowerLongForNewUUID );
}
public static base64URLSafeOfUUIDObject( UUID uuid ){
byte[] bytes = ByteBuffer.allocate(16).putLong(0, uuid.getLeastSignificantBits()).putLong(8, uuid.getMostSignificantBits()).array();
return Base64.encodeBase64URLSafeString( bytes );
}
public static base64URLSafeOfUUIDString( String uuidString ){
UUID uuid = UUID.fromString( uuidString );
return UUIDUtil.base64URLSafeOfUUIDObject( uuid );
}
private static long zeroLower48BitsOfLong( long longVar ){
long upper16BitMask = -281474976710656L;
return longVar & upper16BitMask;
}
private static void zeroUpper16BitsOfLong( long longVar ){
long lower48BitMask = 281474976710656L-1L;
return longVar & lower48BitMask;
}
}