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* Copyright (C) 2014-2019 Appsicle
*
* This program is free software: you can redistribute it and/or modify
* it under the terms of the GNU Affero General Public License, version 3,
* as published by the Free Software Foundation.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU Affero General Public License for more details.
*
* You should have received a copy of the GNU Affero General Public License
* along with this program. If not, see .
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package com.questdb.std;
import java.util.Arrays;
public abstract class AbstractLongHashSet implements Mutable {
protected static final long noEntryKey = -1;
protected static final int MIN_INITIAL_CAPACITY = 16;
protected final double loadFactor;
protected final long noEntryKeyValue;
protected long[] keys;
protected int mask;
protected int free;
protected int capacity;
public AbstractLongHashSet(int initialCapacity, double loadFactor) {
this(initialCapacity, loadFactor, noEntryKey);
}
public AbstractLongHashSet(int initialCapacity, double loadFactor, long noKeyValue) {
if (loadFactor <= 0d || loadFactor >= 1d) {
throw new IllegalArgumentException("0 < loadFactor < 1");
}
this.noEntryKeyValue = noKeyValue;
free = this.capacity = initialCapacity < MIN_INITIAL_CAPACITY ? MIN_INITIAL_CAPACITY : Numbers.ceilPow2(initialCapacity);
this.loadFactor = loadFactor;
keys = new long[(int) (this.capacity / loadFactor)];
mask = capacity - 1;
}
@Override
public void clear() {
Arrays.fill(keys, noEntryKeyValue);
free = this.capacity;
}
public boolean excludes(long key) {
return keyIndex(key) > -1;
}
public int keyIndex(long key) {
int index = (int) (key & mask);
if (Unsafe.arrayGet(keys, index) == noEntryKeyValue) {
return index;
}
if (key == Unsafe.arrayGet(keys, index)) {
return -index - 1;
}
return probe(key, index);
}
public int remove(long key) {
int index = keyIndex(key);
if (index < 0) {
removeAt(index);
return -index - 1;
}
return -1;
}
public void removeAt(int index) {
if (index < 0) {
int from = -index - 1;
erase(from);
free++;
// after we have freed up a slot
// consider non-empty keys directly below
// they may have been a direct hit but because
// directly hit slot wasn't empty these keys would
// have moved.
//
// After slot if freed these keys require re-hash
from = (from + 1) & mask;
for (
long key = Unsafe.arrayGet(keys, from);
key != noEntryKeyValue;
from = (from + 1) & mask, key = Unsafe.arrayGet(keys, from)
) {
int idealHit = (int) (key & mask);
if (idealHit != from) {
int to;
if (Unsafe.arrayGet(keys, idealHit) != noEntryKeyValue) {
to = probe(key, idealHit);
} else {
to = idealHit;
}
if (to > -1) {
move(from, to);
}
}
}
}
}
public int size() {
return capacity - free;
}
abstract protected void erase(int index);
abstract protected void move(int from, int to);
private int probe(long key, int index) {
do {
index = (index + 1) & mask;
if (Unsafe.arrayGet(keys, index) == noEntryKeyValue) {
return index;
}
if (key == Unsafe.arrayGet(keys, index)) {
return -index - 1;
}
} while (true);
}
}
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