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use jdk ThreadLocalRandom (#2686)
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@@ -30,6 +30,7 @@ import java.util.Properties;
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import java.util.Set;
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import java.util.StringTokenizer;
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import java.util.TreeSet;
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import java.util.concurrent.ThreadLocalRandom;
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import com.alibaba.arthas.deps.org.slf4j.Logger;
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import com.alibaba.arthas.deps.org.slf4j.LoggerFactory;
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@@ -1,271 +0,0 @@
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package com.taobao.arthas.core.util;
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import java.security.SecureRandom;
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import java.util.Random;
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import java.util.concurrent.BlockingQueue;
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import java.util.concurrent.LinkedBlockingQueue;
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import java.util.concurrent.TimeUnit;
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import java.util.concurrent.atomic.AtomicLong;
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/**
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* A random number generator isolated to the current thread. Like the global {@link java.util.Random} generator used by
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* the {@link java.lang.Math} class, a {@code ThreadLocalRandom} is initialized with an internally generated seed that
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* may not otherwise be modified. When applicable, use of {@code ThreadLocalRandom} rather than shared {@code Random}
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* objects in concurrent programs will typically encounter much less overhead and contention. Use of
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* {@code ThreadLocalRandom} is particularly appropriate when multiple tasks (for example, each a
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* {@link io.netty.util.internal.chmv8.ForkJoinTask}) use random numbers in parallel in thread pools.
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*
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* <p>
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* Usages of this class should typically be of the form: {@code ThreadLocalRandom.current().nextX(...)} (where {@code X}
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* is {@code Int}, {@code Long}, etc). When all usages are of this form, it is never possible to accidently share a
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* {@code ThreadLocalRandom} across multiple threads.
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*
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* <p>
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* This class also provides additional commonly used bounded random generation methods.
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*
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* //since 1.7 //author Doug Lea
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*/
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@SuppressWarnings("all")
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public class ThreadLocalRandom extends Random {
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private static final AtomicLong seedUniquifier = new AtomicLong();
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private static volatile long initialSeedUniquifier;
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public static void setInitialSeedUniquifier(long initialSeedUniquifier) {
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ThreadLocalRandom.initialSeedUniquifier = initialSeedUniquifier;
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}
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public static synchronized long getInitialSeedUniquifier() {
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// Use the value set via the setter.
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long initialSeedUniquifier = ThreadLocalRandom.initialSeedUniquifier;
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// Otherwise, generate one.
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if (initialSeedUniquifier == 0) {
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// Try to generate a real random number from /dev/random.
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// Get from a different thread to avoid blocking indefinitely on a machine without much entrophy.
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final BlockingQueue<Long> queue = new LinkedBlockingQueue<Long>();
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Thread generatorThread = new Thread("initialSeedUniquifierGenerator") {
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@Override
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public void run() {
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SecureRandom random = new SecureRandom(); // Get the real random seed from /dev/random
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queue.add(random.nextLong());
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}
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};
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generatorThread.start();
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// Get the random seed from the thread with timeout.
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final long timeoutSeconds = 3;
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final long deadLine = System.nanoTime() + TimeUnit.SECONDS.toNanos(timeoutSeconds);
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for (;;) {
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long waitTime = deadLine - System.nanoTime();
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if (waitTime <= 0) {
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break;
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}
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try {
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Long result = queue.poll(waitTime, TimeUnit.NANOSECONDS);
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if (result != null) {
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initialSeedUniquifier = result;
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break;
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}
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} catch (InterruptedException ignore) {
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// Ignore
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}
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}
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// Just in case the initialSeedUniquifier is zero or some other constant
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initialSeedUniquifier ^= 0x3255ecdc33bae119L; // just a meaningless random number
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initialSeedUniquifier ^= Long.reverse(System.nanoTime());
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ThreadLocalRandom.initialSeedUniquifier = initialSeedUniquifier;
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}
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return initialSeedUniquifier;
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}
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private static long newSeed() {
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for (;;) {
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final long current = seedUniquifier.get();
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final long actualCurrent = current != 0 ? current : getInitialSeedUniquifier();
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// L'Ecuyer, "Tables of Linear Congruential Generators of Different Sizes and Good Lattice Structure", 1999
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final long next = actualCurrent * 181783497276652981L;
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if (seedUniquifier.compareAndSet(current, next)) {
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return next ^ System.nanoTime();
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}
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}
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}
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// same constants as Random, but must be redeclared because private
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private static final long multiplier = 0x5DEECE66DL;
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private static final long addend = 0xBL;
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private static final long mask = (1L << 48) - 1;
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/**
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* The random seed. We can't use super.seed.
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*/
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private long rnd;
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/**
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* Initialization flag to permit calls to setSeed to succeed only while executing the Random constructor. We can't
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* allow others since it would cause setting seed in one part of a program to unintentionally impact other usages by
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* the thread.
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*/
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boolean initialized;
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// Padding to help avoid memory contention among seed updates in
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// different TLRs in the common case that they are located near
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// each other.
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private long pad0, pad1, pad2, pad3, pad4, pad5, pad6, pad7;
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/**
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* Constructor called only by localRandom.initialValue.
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*/
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ThreadLocalRandom() {
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super(newSeed());
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initialized = true;
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}
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/**
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* The actual ThreadLocal
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*/
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private static final ThreadLocal<ThreadLocalRandom> localRandom = new ThreadLocal<ThreadLocalRandom>() {
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protected ThreadLocalRandom initialValue() {
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return new ThreadLocalRandom();
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}
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};
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/**
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* Returns the current thread's {@code ThreadLocalRandom}.
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*
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* @return the current thread's {@code ThreadLocalRandom}
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*/
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public static ThreadLocalRandom current() {
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return localRandom.get();
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}
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/**
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* Throws {@code UnsupportedOperationException}. Setting seeds in this generator is not supported.
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*
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* @throws UnsupportedOperationException
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* always
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*/
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public void setSeed(long seed) {
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if (initialized) {
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throw new UnsupportedOperationException();
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}
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rnd = (seed ^ multiplier) & mask;
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}
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protected int next(int bits) {
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rnd = (rnd * multiplier + addend) & mask;
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return (int) (rnd >>> (48 - bits));
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}
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/**
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* Returns a pseudorandom, uniformly distributed value between the given least value (inclusive) and bound
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* (exclusive).
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*
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* @param least
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* the least value returned
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* @param bound
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* the upper bound (exclusive)
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* @throws IllegalArgumentException
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* if least greater than or equal to bound
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* @return the next value
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*/
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public int nextInt(int least, int bound) {
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if (least >= bound) {
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throw new IllegalArgumentException();
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}
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return nextInt(bound - least) + least;
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}
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/**
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* Returns a pseudorandom, uniformly distributed value between 0 (inclusive) and the specified value (exclusive).
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*
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* @param n
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* the bound on the random number to be returned. Must be positive.
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* @return the next value
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* @throws IllegalArgumentException
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* if n is not positive
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*/
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public long nextLong(long n) {
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if (n <= 0) {
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throw new IllegalArgumentException("n must be positive");
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}
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// Divide n by two until small enough for nextInt. On each
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// iteration (at most 31 of them but usually much less),
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// randomly choose both whether to include high bit in result
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// (offset) and whether to continue with the lower vs upper
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// half (which makes a difference only if odd).
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long offset = 0;
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while (n >= Integer.MAX_VALUE) {
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int bits = next(2);
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long half = n >>> 1;
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long nextn = ((bits & 2) == 0) ? half : n - half;
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if ((bits & 1) == 0) {
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offset += n - nextn;
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}
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n = nextn;
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}
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return offset + nextInt((int) n);
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}
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/**
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* Returns a pseudorandom, uniformly distributed value between the given least value (inclusive) and bound
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* (exclusive).
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*
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* @param least
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* the least value returned
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* @param bound
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* the upper bound (exclusive)
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* @return the next value
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* @throws IllegalArgumentException
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* if least greater than or equal to bound
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*/
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public long nextLong(long least, long bound) {
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if (least >= bound) {
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throw new IllegalArgumentException();
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}
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return nextLong(bound - least) + least;
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}
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/**
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* Returns a pseudorandom, uniformly distributed {@code double} value between 0 (inclusive) and the specified value
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* (exclusive).
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*
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* @param n
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* the bound on the random number to be returned. Must be positive.
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* @return the next value
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* @throws IllegalArgumentException
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* if n is not positive
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*/
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public double nextDouble(double n) {
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if (n <= 0) {
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throw new IllegalArgumentException("n must be positive");
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}
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return nextDouble() * n;
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}
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/**
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* Returns a pseudorandom, uniformly distributed value between the given least value (inclusive) and bound
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* (exclusive).
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*
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* @param least
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* the least value returned
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* @param bound
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* the upper bound (exclusive)
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* @return the next value
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* @throws IllegalArgumentException
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* if least greater than or equal to bound
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*/
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public double nextDouble(double least, double bound) {
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if (least >= bound) {
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throw new IllegalArgumentException();
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}
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return nextDouble() * (bound - least) + least;
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}
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private static final long serialVersionUID = -5851777807851030925L;
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}
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@@ -2,8 +2,7 @@ package com.taobao.arthas.core.util.metrics;
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import java.util.concurrent.atomic.AtomicLong;
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import java.util.concurrent.atomic.AtomicLongArray;
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import com.taobao.arthas.core.util.ThreadLocalRandom;
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import java.util.concurrent.ThreadLocalRandom;
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/**
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* <pre>
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Reference in New Issue
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