All Downloads are FREE. Search and download functionalities are using the official Maven repository.

org.eclipse.collections.impl.stack.mutable.primitive.SynchronizedByteStack Maven / Gradle / Ivy

There is a newer version: 11.1.0-r13
Show newest version
/*
 * Copyright (c) 2022 Goldman Sachs and others.
 * All rights reserved. This program and the accompanying materials
 * are made available under the terms of the Eclipse Public License v1.0
 * and Eclipse Distribution License v. 1.0 which accompany this distribution.
 * The Eclipse Public License is available at http://www.eclipse.org/legal/epl-v10.html
 * and the Eclipse Distribution License is available at
 * http://www.eclipse.org/org/documents/edl-v10.php.
 */

package org.eclipse.collections.impl.stack.mutable.primitive;

import java.io.Serializable;
import java.util.Collection;
import java.util.Collections;

import org.eclipse.collections.api.ByteIterable;
import org.eclipse.collections.api.LazyByteIterable;
import org.eclipse.collections.api.RichIterable;
import org.eclipse.collections.api.bag.primitive.MutableByteBag;
import org.eclipse.collections.api.block.function.primitive.ByteIntToObjectFunction;
import org.eclipse.collections.api.block.function.primitive.ByteToObjectFunction;
import org.eclipse.collections.api.block.function.primitive.ObjectByteToObjectFunction;
import org.eclipse.collections.api.block.function.primitive.ObjectByteIntToObjectFunction;
import org.eclipse.collections.api.block.predicate.primitive.ByteIntPredicate;
import org.eclipse.collections.api.block.predicate.primitive.BytePredicate;
import org.eclipse.collections.api.block.procedure.primitive.ByteIntProcedure;
import org.eclipse.collections.api.block.procedure.primitive.ByteProcedure;
import org.eclipse.collections.api.collection.primitive.MutableByteCollection;
import org.eclipse.collections.api.iterator.ByteIterator;
import org.eclipse.collections.api.list.primitive.ByteList;
import org.eclipse.collections.api.list.primitive.MutableByteList;
import org.eclipse.collections.api.set.primitive.MutableByteSet;
import org.eclipse.collections.api.stack.MutableStack;
import org.eclipse.collections.api.stack.primitive.ImmutableByteStack;
import org.eclipse.collections.api.stack.primitive.MutableByteStack;
import org.eclipse.collections.impl.factory.primitive.ByteStacks;
import org.eclipse.collections.impl.iterator.UnmodifiableByteIterator;
import org.eclipse.collections.impl.lazy.primitive.LazyByteIterableAdapter;

/**
 * A synchronized view of a {@link MutableByteStack}. It is imperative that the user manually synchronize on the collection when iterating over it using the
 * {@link ByteIterator}, as per {@link Collections#synchronizedCollection(Collection)}.
 * 

* This file was automatically generated from template file synchronizedPrimitiveStack.stg. * * @see MutableByteStack#asSynchronized() * @see MutableStack#asSynchronized() * @since 3.1. */ public class SynchronizedByteStack implements MutableByteStack, Serializable { private static final long serialVersionUID = 1L; private final Object lock; private final MutableByteStack stack; public SynchronizedByteStack(MutableByteStack stack) { this(stack, null); } public SynchronizedByteStack(MutableByteStack stack, Object newLock) { this.stack = stack; this.lock = newLock == null ? this : newLock; } @Override public void push(byte item) { synchronized (this.lock) { this.stack.push(item); } } @Override public byte pop() { synchronized (this.lock) { return this.stack.pop(); } } @Override public ByteList pop(int count) { synchronized (this.lock) { return this.stack.pop(count); } } @Override public byte peek() { synchronized (this.lock) { return this.stack.peek(); } } @Override public ByteList peek(int count) { synchronized (this.lock) { return this.stack.peek(count); } } @Override public byte peekAt(int index) { synchronized (this.lock) { return this.stack.peekAt(index); } } @Override public int size() { synchronized (this.lock) { return this.stack.size(); } } @Override public boolean isEmpty() { synchronized (this.lock) { return this.stack.isEmpty(); } } @Override public boolean notEmpty() { synchronized (this.lock) { return this.stack.notEmpty(); } } @Override public void clear() { synchronized (this.lock) { this.stack.clear(); } } @Override public boolean contains(byte value) { synchronized (this.lock) { return this.stack.contains(value); } } @Override public boolean containsAll(byte... source) { synchronized (this.lock) { return this.stack.containsAll(source); } } @Override public boolean containsAll(ByteIterable source) { synchronized (this.lock) { return this.stack.containsAll(source); } } /** * Must be called in a synchronized block. */ @Override public ByteIterator byteIterator() { return new UnmodifiableByteIterator(this.stack.byteIterator()); } /** * @since 7.0. */ @Override public void each(ByteProcedure procedure) { synchronized (this.lock) { this.stack.forEach(procedure); } } @Override public int count(BytePredicate predicate) { synchronized (this.lock) { return this.stack.count(predicate); } } @Override public boolean anySatisfy(BytePredicate predicate) { synchronized (this.lock) { return this.stack.anySatisfy(predicate); } } @Override public boolean allSatisfy(BytePredicate predicate) { synchronized (this.lock) { return this.stack.allSatisfy(predicate); } } @Override public boolean noneSatisfy(BytePredicate predicate) { synchronized (this.lock) { return this.stack.noneSatisfy(predicate); } } @Override public byte detectIfNone(BytePredicate predicate, byte ifNone) { synchronized (this.lock) { return this.stack.detectIfNone(predicate, ifNone); } } @Override public MutableByteStack select(BytePredicate predicate) { synchronized (this.lock) { return this.stack.select(predicate); } } @Override public MutableByteStack reject(BytePredicate predicate) { synchronized (this.lock) { return this.stack.reject(predicate); } } @Override public MutableStack collect(ByteToObjectFunction function) { synchronized (this.lock) { return this.stack.collect(function); } } @Override public long sum() { synchronized (this.lock) { return this.stack.sum(); } } @Override public byte max() { synchronized (this.lock) { return this.stack.max(); } } @Override public byte min() { synchronized (this.lock) { return this.stack.min(); } } @Override public byte minIfEmpty(byte defaultValue) { synchronized (this.lock) { return this.stack.minIfEmpty(defaultValue); } } @Override public byte maxIfEmpty(byte defaultValue) { synchronized (this.lock) { return this.stack.maxIfEmpty(defaultValue); } } @Override public double average() { synchronized (this.lock) { return this.stack.average(); } } @Override public double median() { synchronized (this.lock) { return this.stack.median(); } } @Override public MutableByteList toSortedList() { synchronized (this.lock) { return this.stack.toSortedList(); } } @Override public byte[] toSortedArray() { synchronized (this.lock) { return this.stack.toSortedArray(); } } @Override public byte[] toArray() { synchronized (this.lock) { return this.stack.toArray(); } } @Override public byte[] toArray(byte[] target) { synchronized (this.lock) { return this.stack.toArray(target); } } @Override public String toString() { synchronized (this.lock) { return this.stack.toString(); } } @Override public String makeString() { synchronized (this.lock) { return this.stack.makeString(); } } @Override public String makeString(String separator) { synchronized (this.lock) { return this.stack.makeString(separator); } } @Override public String makeString(String start, String separator, String end) { synchronized (this.lock) { return this.stack.makeString(start, separator, end); } } @Override public void appendString(Appendable appendable) { synchronized (this.lock) { this.stack.appendString(appendable); } } @Override public void appendString(Appendable appendable, String separator) { synchronized (this.lock) { this.stack.appendString(appendable, separator); } } @Override public void appendString( Appendable appendable, String start, String separator, String end) { synchronized (this.lock) { this.stack.appendString(appendable, start, separator, end); } } @Override public MutableByteList toList() { synchronized (this.lock) { return this.stack.toList(); } } @Override public MutableByteSet toSet() { synchronized (this.lock) { return this.stack.toSet(); } } @Override public MutableByteBag toBag() { synchronized (this.lock) { return this.stack.toBag(); } } @Override public boolean equals(Object otherStack) { synchronized (this.lock) { return this.stack.equals(otherStack); } } @Override public int hashCode() { synchronized (this.lock) { return this.stack.hashCode(); } } @Override public LazyByteIterable asLazy() { synchronized (this.lock) { return new LazyByteIterableAdapter(this); } } @Override public MutableByteStack asUnmodifiable() { synchronized (this.lock) { return new UnmodifiableByteStack(this); } } @Override public MutableByteStack asSynchronized() { return this; } @Override public ImmutableByteStack toImmutable() { synchronized (this.lock) { return ByteStacks.immutable.withAllReversed(this); } } /** * @since 9.2. */ public MutableByteStack newEmpty() { synchronized (this.lock) { return this.stack.newEmpty(); } } @Override public T injectInto(T injectedValue, ObjectByteToObjectFunction function) { synchronized (this.lock) { return this.stack.injectInto(injectedValue, function); } } @Override public RichIterable chunk(int size) { synchronized (this.lock) { return this.stack.chunk(size); } } @Override public byte getFirst() { synchronized (this.lock) { return this.stack.getFirst(); } } @Override public int indexOf(byte value) { synchronized (this.lock) { return this.stack.indexOf(value); } } @Override public T injectIntoWithIndex(T injectedValue, ObjectByteIntToObjectFunction function) { synchronized (this.lock) { return this.stack.injectIntoWithIndex(injectedValue, function); } } @Override public void forEachWithIndex(ByteIntProcedure procedure) { synchronized (this.lock) { this.stack.forEachWithIndex(procedure); } } /** * Returns a new MutableByteStack including all elements with corresponding indexes matching the specified predicate. * * @since 11.1. */ public MutableByteStack selectWithIndex(ByteIntPredicate predicate) { synchronized (this.lock) { return this.stack.selectWithIndex(predicate); } } /** * Returns a new MutableByteCollection including all elements with corresponding indexes matching the specified predicate. * * @since 11.1. */ public R selectWithIndex(ByteIntPredicate predicate, R target) { synchronized (this.lock) { return this.stack.selectWithIndex(predicate, target); } } /** * Returns a new MutableByteStack excluding all elements with corresponding indexes matching the specified predicate. * * @since 11.1. */ public MutableByteStack rejectWithIndex(ByteIntPredicate predicate) { synchronized (this.lock) { return this.stack.rejectWithIndex(predicate); } } /** * Returns a new MutableByteCollection excluding all elements with corresponding indexes matching the specified predicate. * * @since 11.1. */ public R rejectWithIndex(ByteIntPredicate predicate, R target) { synchronized (this.lock) { return this.stack.rejectWithIndex(predicate, target); } } /** * Returns a new MutableStack using results obtained by applying the specified function to each element * and its corresponding index. * * @since 9.1. */ @Override public MutableStack collectWithIndex(ByteIntToObjectFunction function) { synchronized (this.lock) { return this.stack.collectWithIndex(function); } } /** * Adds elements to the target Collection using results obtained by applying the specified function to each element * and its corresponding index. * * @since 9.1. */ public > R collectWithIndex(ByteIntToObjectFunction function, R target) { synchronized (this.lock) { return this.stack.collectWithIndex(function, target); } } }





© 2015 - 2025 Weber Informatics LLC | Privacy Policy