com.gs.collections.impl.map.mutable.primitive.SynchronizedObjectByteMap Maven / Gradle / Ivy
Show all versions of gs-collections Show documentation
/*
* Copyright 2014 Goldman Sachs.
*
* Licensed under the Apache License, Version 2.0 (the "License");
* you may not use this file except in compliance with the License.
* You may obtain a copy of the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software
* distributed under the License is distributed on an "AS IS" BASIS,
* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
* See the License for the specific language governing permissions and
* limitations under the License.
*/
package com.gs.collections.impl.map.mutable.primitive;
import java.io.Serializable;
import java.util.Collection;
import java.util.Collections;
import java.util.Set;
import com.gs.collections.api.ByteIterable;
import com.gs.collections.api.LazyByteIterable;
import com.gs.collections.api.LazyIterable;
import com.gs.collections.api.RichIterable;
import com.gs.collections.api.bag.primitive.MutableByteBag;
import com.gs.collections.api.block.function.primitive.ByteFunction;
import com.gs.collections.api.block.function.primitive.ByteFunction0;
import com.gs.collections.api.block.function.primitive.ByteToByteFunction;
import com.gs.collections.api.block.function.primitive.ByteToObjectFunction;
import com.gs.collections.api.block.function.primitive.ObjectByteToObjectFunction;
import com.gs.collections.api.block.predicate.primitive.BytePredicate;
import com.gs.collections.api.block.predicate.primitive.ObjectBytePredicate;
import com.gs.collections.api.block.procedure.Procedure;
import com.gs.collections.api.block.procedure.primitive.ByteProcedure;
import com.gs.collections.api.block.procedure.primitive.ObjectByteProcedure;
import com.gs.collections.api.collection.MutableCollection;
import com.gs.collections.api.collection.primitive.MutableByteCollection;
import com.gs.collections.api.iterator.MutableByteIterator;
import com.gs.collections.api.list.primitive.MutableByteList;
import com.gs.collections.api.map.MutableMap;
import com.gs.collections.api.map.primitive.ImmutableObjectByteMap;
import com.gs.collections.api.map.primitive.MutableObjectByteMap;
import com.gs.collections.api.map.primitive.ObjectByteMap;
import com.gs.collections.api.set.primitive.MutableByteSet;
import com.gs.collections.api.tuple.primitive.ObjectBytePair;
import com.gs.collections.impl.SynchronizedRichIterable;
import com.gs.collections.impl.collection.mutable.primitive.SynchronizedByteCollection;
import com.gs.collections.impl.factory.primitive.ObjectByteMaps;
import com.gs.collections.impl.set.mutable.SynchronizedMutableSet;
import com.gs.collections.impl.utility.LazyIterate;
import net.jcip.annotations.GuardedBy;
/**
* A synchronized view of a {@link MutableObjectByteMap}. It is imperative that the user manually synchronize on the collection when iterating over it using the
* ByteIterator as per {@link Collections#synchronizedCollection(Collection)}.
*
* This file was automatically generated from template file synchronizedObjectPrimitiveMap.stg.
*
* @see MutableObjectByteMap#asSynchronized()
* @see MutableMap#asSynchronized()
* @since 3.1.
*/
public final class SynchronizedObjectByteMap
implements MutableObjectByteMap, Serializable
{
private static final long serialVersionUID = 1L;
private final Object lock;
@GuardedBy("this.lock")
private final MutableObjectByteMap map;
SynchronizedObjectByteMap(MutableObjectByteMap map)
{
this(map, null);
}
SynchronizedObjectByteMap(MutableObjectByteMap map, Object newLock)
{
this.map = map;
this.lock = newLock == null ? this : newLock;
}
public void clear()
{
synchronized (this.lock)
{
this.map.clear();
}
}
public void put(K key, byte value)
{
synchronized (this.lock)
{
this.map.put(key, value);
}
}
public void putAll(ObjectByteMap extends K> map)
{
synchronized (this.lock)
{
this.map.putAll(map);
}
}
public void removeKey(K key)
{
synchronized (this.lock)
{
this.map.removeKey(key);
}
}
public void remove(Object key)
{
synchronized (this.lock)
{
this.map.removeKey((K) key);
}
}
public byte removeKeyIfAbsent(K key, byte value)
{
synchronized (this.lock)
{
return this.map.removeKeyIfAbsent(key, value);
}
}
public byte getIfAbsentPut(K key, byte value)
{
synchronized (this.lock)
{
return this.map.getIfAbsentPut(key, value);
}
}
public byte getIfAbsentPut(K key, ByteFunction0 function)
{
synchronized (this.lock)
{
return this.map.getIfAbsentPut(key, function);
}
}
public byte getIfAbsentPutWithKey(K key, ByteFunction super K> function)
{
synchronized (this.lock)
{
return this.map.getIfAbsentPutWithKey(key, function);
}
}
public byte getIfAbsentPutWith(K key, ByteFunction super P> function, P parameter)
{
synchronized (this.lock)
{
return this.map.getIfAbsentPutWith(key, function, parameter);
}
}
public byte updateValue(K key, byte initialValueIfAbsent, ByteToByteFunction function)
{
synchronized (this.lock)
{
return this.map.updateValue(key, initialValueIfAbsent, function);
}
}
public byte get(Object key)
{
synchronized (this.lock)
{
return this.map.get(key);
}
}
public byte getOrThrow(Object key)
{
synchronized (this.lock)
{
return this.map.getOrThrow(key);
}
}
public byte getIfAbsent(Object key, byte ifAbsent)
{
synchronized (this.lock)
{
return this.map.getIfAbsent(key, ifAbsent);
}
}
public boolean containsKey(Object key)
{
synchronized (this.lock)
{
return this.map.containsKey(key);
}
}
public boolean containsValue(byte value)
{
synchronized (this.lock)
{
return this.map.containsValue(value);
}
}
public void forEachValue(ByteProcedure procedure)
{
synchronized (this.lock)
{
this.map.forEachValue(procedure);
}
}
public void forEachKey(Procedure super K> procedure)
{
synchronized (this.lock)
{
this.map.forEachKey(procedure);
}
}
public void forEachKeyValue(ObjectByteProcedure super K> procedure)
{
synchronized (this.lock)
{
this.map.forEachKeyValue(procedure);
}
}
public MutableObjectByteMap select(ObjectBytePredicate super K> predicate)
{
synchronized (this.lock)
{
return this.map.select(predicate);
}
}
public MutableObjectByteMap reject(ObjectBytePredicate super K> predicate)
{
synchronized (this.lock)
{
return this.map.reject(predicate);
}
}
/**
* Must be called in a synchronized block.
*/
public MutableByteIterator byteIterator()
{
return this.map.byteIterator();
}
public void forEach(ByteProcedure procedure)
{
this.each(procedure);
}
/**
* @since 7.0.
*/
public void each(ByteProcedure procedure)
{
synchronized (this.lock)
{
this.map.forEach(procedure);
}
}
public int count(BytePredicate predicate)
{
synchronized (this.lock)
{
return this.map.count(predicate);
}
}
public boolean anySatisfy(BytePredicate predicate)
{
synchronized (this.lock)
{
return this.map.anySatisfy(predicate);
}
}
public boolean allSatisfy(BytePredicate predicate)
{
synchronized (this.lock)
{
return this.map.allSatisfy(predicate);
}
}
public boolean noneSatisfy(BytePredicate predicate)
{
synchronized (this.lock)
{
return this.map.noneSatisfy(predicate);
}
}
public MutableByteCollection select(BytePredicate predicate)
{
synchronized (this.lock)
{
return this.map.select(predicate);
}
}
public MutableByteCollection reject(BytePredicate predicate)
{
synchronized (this.lock)
{
return this.map.reject(predicate);
}
}
public byte detectIfNone(BytePredicate predicate, byte ifNone)
{
synchronized (this.lock)
{
return this.map.detectIfNone(predicate, ifNone);
}
}
public MutableCollection collect(ByteToObjectFunction extends V1> function)
{
synchronized (this.lock)
{
return this.map.collect(function);
}
}
public long sum()
{
synchronized (this.lock)
{
return this.map.sum();
}
}
public byte addToValue(K key, byte toBeAdded)
{
synchronized (this.lock)
{
return this.map.addToValue(key, toBeAdded);
}
}
public byte max()
{
synchronized (this.lock)
{
return this.map.max();
}
}
public byte maxIfEmpty(byte defaultValue)
{
synchronized (this.lock)
{
return this.map.maxIfEmpty(defaultValue);
}
}
public byte min()
{
synchronized (this.lock)
{
return this.map.min();
}
}
public byte minIfEmpty(byte defaultValue)
{
synchronized (this.lock)
{
return this.map.minIfEmpty(defaultValue);
}
}
public double average()
{
synchronized (this.lock)
{
return this.map.average();
}
}
public double median()
{
synchronized (this.lock)
{
return this.map.median();
}
}
public byte[] toSortedArray()
{
synchronized (this.lock)
{
return this.map.toSortedArray();
}
}
public MutableByteList toSortedList()
{
synchronized (this.lock)
{
return this.map.toSortedList();
}
}
public byte[] toArray()
{
synchronized (this.lock)
{
return this.map.toArray();
}
}
public boolean contains(byte value)
{
synchronized (this.lock)
{
return this.map.contains(value);
}
}
public boolean containsAll(byte... source)
{
synchronized (this.lock)
{
return this.map.containsAll(source);
}
}
public boolean containsAll(ByteIterable source)
{
synchronized (this.lock)
{
return this.map.containsAll(source);
}
}
public MutableByteList toList()
{
synchronized (this.lock)
{
return this.map.toList();
}
}
public MutableByteSet toSet()
{
synchronized (this.lock)
{
return this.map.toSet();
}
}
public MutableByteBag toBag()
{
synchronized (this.lock)
{
return this.map.toBag();
}
}
public LazyByteIterable asLazy()
{
synchronized (this.lock)
{
return this.map.asLazy();
}
}
public MutableObjectByteMap withKeyValue(K key, byte value)
{
synchronized (this.lock)
{
this.map.withKeyValue(key, value);
}
return this;
}
public MutableObjectByteMap withoutKey(K key)
{
synchronized (this.lock)
{
this.map.withoutKey(key);
}
return this;
}
public MutableObjectByteMap withoutAllKeys(Iterable extends K> keys)
{
synchronized (this.lock)
{
this.map.withoutAllKeys(keys);
}
return this;
}
public MutableObjectByteMap asUnmodifiable()
{
return new UnmodifiableObjectByteMap(this);
}
public MutableObjectByteMap asSynchronized()
{
return this;
}
public ImmutableObjectByteMap toImmutable()
{
return ObjectByteMaps.immutable.withAll(this);
}
public int size()
{
synchronized (this.lock)
{
return this.map.size();
}
}
public boolean isEmpty()
{
synchronized (this.lock)
{
return this.map.isEmpty();
}
}
public boolean notEmpty()
{
synchronized (this.lock)
{
return this.map.notEmpty();
}
}
public Set keySet()
{
synchronized (this.lock)
{
return SynchronizedMutableSet.of(this.map.keySet(), this.lock);
}
}
public MutableByteCollection values()
{
synchronized (this.lock)
{
return SynchronizedByteCollection.of(this.map.values(), this.lock);
}
}
public LazyIterable keysView()
{
return LazyIterate.adapt(this.keySet());
}
public RichIterable> keyValuesView()
{
synchronized (this.lock)
{
return SynchronizedRichIterable.of(this.map.keyValuesView(), this.lock).asLazy();
}
}
@Override
public boolean equals(Object obj)
{
synchronized (this.lock)
{
return this.map.equals(obj);
}
}
@Override
public int hashCode()
{
synchronized (this.lock)
{
return this.map.hashCode();
}
}
@Override
public String toString()
{
synchronized (this.lock)
{
return this.map.toString();
}
}
public String makeString()
{
synchronized (this.lock)
{
return this.map.makeString();
}
}
public String makeString(String separator)
{
synchronized (this.lock)
{
return this.map.makeString(separator);
}
}
public String makeString(String start, String separator, String end)
{
synchronized (this.lock)
{
return this.map.makeString(start, separator, end);
}
}
public void appendString(Appendable appendable)
{
synchronized (this.lock)
{
this.map.appendString(appendable);
}
}
public void appendString(Appendable appendable, String separator)
{
synchronized (this.lock)
{
this.map.appendString(appendable, separator);
}
}
public void appendString(Appendable appendable, String start, String separator, String end)
{
synchronized (this.lock)
{
this.map.appendString(appendable, start, separator, end);
}
}
public T injectInto(T injectedValue, ObjectByteToObjectFunction super T, ? extends T> function)
{
synchronized (this.lock)
{
return this.map.injectInto(injectedValue, function);
}
}
}