添加 SnowflakeIdGenerateor,使用雪华算法生成 ID。

feature/net-util
ZhouXY108 2023-06-16 02:39:37 +08:00
parent 23739dc9d5
commit 4678fbe816
1 changed files with 159 additions and 0 deletions

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package xyz.zhouxy.plusone.commons.util;
import java.util.concurrent.TimeUnit;
import com.google.common.annotations.Beta;
/**
* Twitter_Snowflake
*/
@Beta
public class SnowflakeIdGenerator {
// ==============================Fields===========================================
/** 开始时间截(北京时间 2008/08/08 20:00 */
private static final long TWEPOCH = 1218196800000L;
/** 机器id所占的位数 */
private static final long WORKER_ID_BITS = 5L;
/** 数据标识id所占的位数 */
private static final long DATACENTER_ID_BITS = 5L;
/** 支持的最大机器 id结果是 31 (这个移位算法可以很快的计算出几位二进制数所能表示的最大十进制数) */
private static final long MAX_WORKER_ID = -1L ^ (-1L << WORKER_ID_BITS);
/** 支持的最大数据标识 id结果是 31 */
private static final long MAX_DATACENTER_ID = -1L ^ (-1L << DATACENTER_ID_BITS);
/** 序列在 id 中占的位数 */
private static final long SEQUENCE_BITS = 12L;
/** 机器 ID 向左移 12 位 */
private static final long WORKER_ID_SHIFT = SEQUENCE_BITS;
/** 数据标识id向左移 17 位 (12+5) */
private static final long DATACENTER_ID_SHIFT = SEQUENCE_BITS + WORKER_ID_BITS;
/** 时间截向左移 22 位 (5+5+12) */
private static final long TIMESTAMP_LEFT_SHIFT = SEQUENCE_BITS + WORKER_ID_BITS + DATACENTER_ID_BITS;
/** 生成序列的掩码,这里为 4095 (0b111111111111=0xfff=4095) */
private static final long SEQUENCE_MASK = -1L ^ (-1L << SEQUENCE_BITS);
/** 工作机器 ID (0~31) */
private long workerId;
/** 数据中心 ID (0~31) */
private long datacenterId;
/** 毫秒内序列 (0~4095) */
private long sequence = 0L;
/** 上次生成 ID 的时间截 */
private long lastTimestamp = -1L;
// ==============================Constructors=====================================
/**
*
*
* @param workerId ID (0~31)
* @param datacenterId ID (0~31)
*/
public SnowflakeIdGenerator(long workerId, long datacenterId) {
if (workerId > MAX_WORKER_ID || workerId < 0) {
throw new IllegalArgumentException(
String.format("WorkerId can't be greater than %d or less than 0.", MAX_WORKER_ID));
}
if (datacenterId > MAX_DATACENTER_ID || datacenterId < 0) {
throw new IllegalArgumentException(
String.format("DatacenterId can't be greater than %d or less than 0.", MAX_DATACENTER_ID));
}
this.workerId = workerId;
this.datacenterId = datacenterId;
}
// ==============================Methods==========================================
/**
* ID (线)
*
* @return SnowflakeId
* @throws InterruptedException
*/
public synchronized long nextId() {
long timestamp = timeGen();
// 发生了回拨,此刻时间小于上次发号时间
if (timestamp < lastTimestamp) {
long offset = lastTimestamp - timestamp;
if (offset <= 5) {
// 时间偏差大小小于5ms则等待两倍时间
try {
TimeUnit.MILLISECONDS.sleep(offset << 1);
} catch (InterruptedException e) {
Thread.currentThread().interrupt();
throw new IllegalStateException(e);
}
timestamp = timeGen();
if (timestamp < lastTimestamp) {
// 还是小于,抛异常上报
throwClockBackwardsEx(lastTimestamp, timestamp);
}
} else {
throwClockBackwardsEx(lastTimestamp, timestamp);
}
}
// 如果是同一时间生成的,则进行毫秒内序列
if (lastTimestamp == timestamp) {
sequence = (sequence + 1) & SEQUENCE_MASK;
// 毫秒内序列溢出
if (sequence == 0) {
// 阻塞到下一个毫秒,获得新的时间戳
timestamp = tilNextMillis(lastTimestamp);
}
}
// 时间戳改变,毫秒内序列重置
else {
sequence = 0L;
}
// 上次生成 ID 的时间截
lastTimestamp = timestamp;
// 移位并通过或运算拼到一起组成64位的ID
return ((timestamp - TWEPOCH) << TIMESTAMP_LEFT_SHIFT) //
| (datacenterId << DATACENTER_ID_SHIFT) //
| (workerId << WORKER_ID_SHIFT) //
| sequence;
}
/**
*
*
* @param lastTimestamp ID
* @return
*/
protected long tilNextMillis(long lastTimestamp) {
long timestamp = timeGen();
while (timestamp <= lastTimestamp) {
timestamp = timeGen();
}
return timestamp;
}
/**
*
*
* @return
*/
protected long timeGen() {
return System.currentTimeMillis();
}
protected void throwClockBackwardsEx(long lastTimestamp, long timestamp) {
throw new IllegalStateException(
String.format("Clock moved backwards. Refusing to generate id for %d milliseconds",
lastTimestamp - timestamp));
}
}