Merge branch 'master' into sla-pr/1108-junit

This commit is contained in:
slavisa-baeldung
2017-02-13 01:21:45 +01:00
268 changed files with 4783 additions and 1020 deletions
@@ -24,7 +24,8 @@ public class RunAlgorithm {
SlopeOne.slopeOne(3);
break;
case 3:
SimpleGeneticAlgorithm.runAlgorithm(50, "1011000100000100010000100000100111001000000100000100000000001111");
SimpleGeneticAlgorithm ga = new SimpleGeneticAlgorithm();
ga.runAlgorithm(50, "1011000100000100010000100000100111001000000100000100000000001111");
break;
default:
System.out.println("Unknown option");
@@ -5,40 +5,40 @@ import lombok.Data;
@Data
public class Individual {
protected int defaultGeneLength = 64;
private byte[] genes = new byte[defaultGeneLength];
private int fitness = 0;
protected int defaultGeneLength = 64;
private byte[] genes = new byte[defaultGeneLength];
private int fitness = 0;
public Individual() {
for (int i = 0; i < genes.length; i++) {
byte gene = (byte) Math.round(Math.random());
genes[i] = gene;
}
}
public Individual() {
for (int i = 0; i < genes.length; i++) {
byte gene = (byte) Math.round(Math.random());
genes[i] = gene;
}
}
protected byte getSingleGene(int index) {
return genes[index];
}
protected byte getSingleGene(int index) {
return genes[index];
}
protected void setSingleGene(int index, byte value) {
genes[index] = value;
fitness = 0;
}
protected void setSingleGene(int index, byte value) {
genes[index] = value;
fitness = 0;
}
public int getFitness() {
if (fitness == 0) {
fitness = SimpleGeneticAlgorithm.getFitness(this);
}
return fitness;
}
public int getFitness() {
if (fitness == 0) {
fitness = SimpleGeneticAlgorithm.getFitness(this);
}
return fitness;
}
@Override
public String toString() {
String geneString = "";
for (int i = 0; i < genes.length; i++) {
geneString += getSingleGene(i);
}
return geneString;
}
@Override
public String toString() {
String geneString = "";
for (int i = 0; i < genes.length; i++) {
geneString += getSingleGene(i);
}
return geneString;
}
}
@@ -8,33 +8,33 @@ import lombok.Data;
@Data
public class Population {
private List<Individual> individuals;
private List<Individual> individuals;
public Population(int size, boolean createNew) {
individuals = new ArrayList<>();
if (createNew) {
createNewPopulation(size);
}
}
public Population(int size, boolean createNew) {
individuals = new ArrayList<>();
if (createNew) {
createNewPopulation(size);
}
}
protected Individual getIndividual(int index) {
return individuals.get(index);
}
protected Individual getIndividual(int index) {
return individuals.get(index);
}
protected Individual getFittest() {
Individual fittest = individuals.get(0);
for (int i = 0; i < individuals.size(); i++) {
if (fittest.getFitness() <= getIndividual(i).getFitness()) {
fittest = getIndividual(i);
}
}
return fittest;
}
protected Individual getFittest() {
Individual fittest = individuals.get(0);
for (int i = 0; i < individuals.size(); i++) {
if (fittest.getFitness() <= getIndividual(i).getFitness()) {
fittest = getIndividual(i);
}
}
return fittest;
}
private void createNewPopulation(int size) {
for (int i = 0; i < size; i++) {
Individual newIndividual = new Individual();
individuals.add(i, newIndividual);
}
}
private void createNewPopulation(int size) {
for (int i = 0; i < size; i++) {
Individual newIndividual = new Individual();
individuals.add(i, newIndividual);
}
}
}
@@ -5,115 +5,113 @@ import lombok.Data;
@Data
public class SimpleGeneticAlgorithm {
private static final double uniformRate = 0.5;
private static final double mutationRate = 0.025;
private static final int tournamentSize = 5;
private static final boolean elitism = true;
private static byte[] solution = new byte[64];
private static final double uniformRate = 0.5;
private static final double mutationRate = 0.025;
private static final int tournamentSize = 5;
private static final boolean elitism = true;
private static byte[] solution = new byte[64];
public static boolean runAlgorithm(int populationSize, String solution) {
if (solution.length() != SimpleGeneticAlgorithm.solution.length) {
throw new RuntimeException(
"The solution needs to have " + SimpleGeneticAlgorithm.solution.length + " bytes");
}
SimpleGeneticAlgorithm.setSolution(solution);
Population myPop = new Population(populationSize, true);
public boolean runAlgorithm(int populationSize, String solution) {
if (solution.length() != SimpleGeneticAlgorithm.solution.length) {
throw new RuntimeException("The solution needs to have " + SimpleGeneticAlgorithm.solution.length + " bytes");
}
setSolution(solution);
Population myPop = new Population(populationSize, true);
int generationCount = 1;
while (myPop.getFittest().getFitness() < SimpleGeneticAlgorithm.getMaxFitness()) {
System.out.println(
"Generation: " + generationCount + " Correct genes found: " + myPop.getFittest().getFitness());
myPop = SimpleGeneticAlgorithm.evolvePopulation(myPop);
generationCount++;
}
System.out.println("Solution found!");
System.out.println("Generation: " + generationCount);
System.out.println("Genes: ");
System.out.println(myPop.getFittest());
return true;
}
int generationCount = 1;
while (myPop.getFittest().getFitness() < getMaxFitness()) {
System.out.println("Generation: " + generationCount + " Correct genes found: " + myPop.getFittest().getFitness());
myPop = evolvePopulation(myPop);
generationCount++;
}
System.out.println("Solution found!");
System.out.println("Generation: " + generationCount);
System.out.println("Genes: ");
System.out.println(myPop.getFittest());
return true;
}
public static Population evolvePopulation(Population pop) {
int elitismOffset;
Population newPopulation = new Population(pop.getIndividuals().size(), false);
public Population evolvePopulation(Population pop) {
int elitismOffset;
Population newPopulation = new Population(pop.getIndividuals().size(), false);
if (elitism) {
newPopulation.getIndividuals().add(0, pop.getFittest());
elitismOffset = 1;
} else {
elitismOffset = 0;
}
if (elitism) {
newPopulation.getIndividuals().add(0, pop.getFittest());
elitismOffset = 1;
} else {
elitismOffset = 0;
}
for (int i = elitismOffset; i < pop.getIndividuals().size(); i++) {
Individual indiv1 = tournamentSelection(pop);
Individual indiv2 = tournamentSelection(pop);
Individual newIndiv = crossover(indiv1, indiv2);
newPopulation.getIndividuals().add(i, newIndiv);
}
for (int i = elitismOffset; i < pop.getIndividuals().size(); i++) {
Individual indiv1 = tournamentSelection(pop);
Individual indiv2 = tournamentSelection(pop);
Individual newIndiv = crossover(indiv1, indiv2);
newPopulation.getIndividuals().add(i, newIndiv);
}
for (int i = elitismOffset; i < newPopulation.getIndividuals().size(); i++) {
mutate(newPopulation.getIndividual(i));
}
for (int i = elitismOffset; i < newPopulation.getIndividuals().size(); i++) {
mutate(newPopulation.getIndividual(i));
}
return newPopulation;
}
return newPopulation;
}
private static Individual crossover(Individual indiv1, Individual indiv2) {
Individual newSol = new Individual();
for (int i = 0; i < newSol.getDefaultGeneLength(); i++) {
if (Math.random() <= uniformRate) {
newSol.setSingleGene(i, indiv1.getSingleGene(i));
} else {
newSol.setSingleGene(i, indiv2.getSingleGene(i));
}
}
return newSol;
}
private Individual crossover(Individual indiv1, Individual indiv2) {
Individual newSol = new Individual();
for (int i = 0; i < newSol.getDefaultGeneLength(); i++) {
if (Math.random() <= uniformRate) {
newSol.setSingleGene(i, indiv1.getSingleGene(i));
} else {
newSol.setSingleGene(i, indiv2.getSingleGene(i));
}
}
return newSol;
}
private static void mutate(Individual indiv) {
for (int i = 0; i < indiv.getDefaultGeneLength(); i++) {
if (Math.random() <= mutationRate) {
byte gene = (byte) Math.round(Math.random());
indiv.setSingleGene(i, gene);
}
}
}
private void mutate(Individual indiv) {
for (int i = 0; i < indiv.getDefaultGeneLength(); i++) {
if (Math.random() <= mutationRate) {
byte gene = (byte) Math.round(Math.random());
indiv.setSingleGene(i, gene);
}
}
}
private static Individual tournamentSelection(Population pop) {
Population tournament = new Population(tournamentSize, false);
for (int i = 0; i < tournamentSize; i++) {
int randomId = (int) (Math.random() * pop.getIndividuals().size());
tournament.getIndividuals().add(i, pop.getIndividual(randomId));
}
Individual fittest = tournament.getFittest();
return fittest;
}
private Individual tournamentSelection(Population pop) {
Population tournament = new Population(tournamentSize, false);
for (int i = 0; i < tournamentSize; i++) {
int randomId = (int) (Math.random() * pop.getIndividuals().size());
tournament.getIndividuals().add(i, pop.getIndividual(randomId));
}
Individual fittest = tournament.getFittest();
return fittest;
}
protected static int getFitness(Individual individual) {
int fitness = 0;
for (int i = 0; i < individual.getDefaultGeneLength() && i < solution.length; i++) {
if (individual.getSingleGene(i) == solution[i]) {
fitness++;
}
}
return fitness;
}
protected static int getFitness(Individual individual) {
int fitness = 0;
for (int i = 0; i < individual.getDefaultGeneLength() && i < solution.length; i++) {
if (individual.getSingleGene(i) == solution[i]) {
fitness++;
}
}
return fitness;
}
protected static int getMaxFitness() {
int maxFitness = solution.length;
return maxFitness;
}
protected int getMaxFitness() {
int maxFitness = solution.length;
return maxFitness;
}
protected static void setSolution(String newSolution) {
solution = new byte[newSolution.length()];
for (int i = 0; i < newSolution.length(); i++) {
String character = newSolution.substring(i, i + 1);
if (character.contains("0") || character.contains("1")) {
solution[i] = Byte.parseByte(character);
} else {
solution[i] = 0;
}
}
}
protected void setSolution(String newSolution) {
solution = new byte[newSolution.length()];
for (int i = 0; i < newSolution.length(); i++) {
String character = newSolution.substring(i, i + 1);
if (character.contains("0") || character.contains("1")) {
solution[i] = Byte.parseByte(character);
} else {
solution[i] = 0;
}
}
}
}
@@ -15,6 +15,6 @@ public class SquareCalculator {
return executor.submit(() -> {
Thread.sleep(1000);
return input * input;
});
});
}
}
@@ -0,0 +1,50 @@
package com.baeldung.graph;
import org.neo4j.ogm.annotation.GraphId;
import org.neo4j.ogm.annotation.NodeEntity;
import org.neo4j.ogm.annotation.Relationship;
/**
* @author Danil Kornishev (danil.kornishev@mastercard.com)
*/
@NodeEntity
public class Car {
@GraphId
private Long id;
private String make;
@Relationship(direction = "INCOMING")
private Company company;
public Car(String make, String model) {
this.make = make;
this.model = model;
}
public Long getId() {
return id;
}
public void setId(Long id) {
this.id = id;
}
public String getMake() {
return make;
}
public void setMake(String make) {
this.make = make;
}
public String getModel() {
return model;
}
public void setModel(String model) {
this.model = model;
}
private String model;
}
@@ -0,0 +1,45 @@
package com.baeldung.graph;
import org.neo4j.ogm.annotation.NodeEntity;
import org.neo4j.ogm.annotation.Relationship;
/**
* @author Danil Kornishev (danil.kornishev@mastercard.com)
*/
@NodeEntity
public class Company {
private Long id;
private String name;
@Relationship(type="owns")
private Car car;
public Company(String name) {
this.name = name;
}
public Long getId() {
return id;
}
public void setId(Long id) {
this.id = id;
}
public String getName() {
return name;
}
public void setName(String name) {
this.name = name;
}
public Car getCar() {
return car;
}
public void setCar(Car car) {
this.car = car;
}
}
@@ -0,0 +1,36 @@
package com.baeldung.java_8_features.groupingby;
public class BlogPost {
private String title;
private String author;
private BlogPostType type;
private int likes;
public BlogPost(String title, String author, BlogPostType type, int likes) {
this.title = title;
this.author = author;
this.type = type;
this.likes = likes;
}
public String getTitle() {
return title;
}
public String getAuthor() {
return author;
}
public BlogPostType getType() {
return type;
}
public int getLikes() {
return likes;
}
@Override
public String toString() {
return "BlogPost{" + "title='" + title + '\'' + ", type=" + type + ", likes=" + likes + '}';
}
}
@@ -0,0 +1,5 @@
package com.baeldung.java_8_features.groupingby;
public enum BlogPostType {
NEWS, REVIEW, GUIDE
}
@@ -0,0 +1,11 @@
package com.baeldung.strategy;
import java.math.BigDecimal;
public class ChristmasDiscounter implements Discounter {
@Override
public BigDecimal apply(BigDecimal amount) {
return amount.multiply(BigDecimal.valueOf(0.9));
}
}
@@ -0,0 +1,23 @@
package com.baeldung.strategy;
import java.math.BigDecimal;
import java.util.function.UnaryOperator;
public interface Discounter extends UnaryOperator<BigDecimal> {
default Discounter combine(Discounter after) {
return value -> after.apply(this.apply(value));
}
static Discounter christmas() {
return (amount) -> amount.multiply(BigDecimal.valueOf(0.9));
}
static Discounter newYear() {
return (amount) -> amount.multiply(BigDecimal.valueOf(0.8));
}
static Discounter easter() {
return (amount) -> amount.multiply(BigDecimal.valueOf(0.5));
}
}
@@ -0,0 +1,11 @@
package com.baeldung.strategy;
import java.math.BigDecimal;
public class EasterDiscounter implements Discounter {
@Override
public BigDecimal apply(BigDecimal amount) {
return amount.multiply(BigDecimal.valueOf(0.5));
}
}
@@ -0,0 +1,27 @@
package com.baeldung.stream;
import java.util.stream.Stream;
public class InfiniteStreams {
public static void main(String[] args) {
doWhileOldWay();
doWhileStreamWay();
}
private static void doWhileOldWay() {
int i = 0;
while (i < 10) {
System.out.println(i);
i++;
}
}
private static void doWhileStreamWay() {
Stream<Integer> integers = Stream.iterate(0, i -> i + 1);
integers.limit(10).forEach(System.out::println);
}
}
@@ -0,0 +1,36 @@
package com.baeldung.string;
import java.util.Arrays;
import java.util.List;
import java.util.stream.Collectors;
import java.util.stream.Stream;
public class JoinerSplitter {
public static String join ( String[] arrayOfString ) {
return Arrays.asList(arrayOfString)
.stream()
.map(x -> x)
.collect(Collectors.joining(","));
}
public static String joinWithPrefixPostFix ( String[] arrayOfString ) {
return Arrays.asList(arrayOfString)
.stream()
.map(x -> x)
.collect(Collectors.joining(",","[","]"));
}
public static List<String> split ( String str ) {
return Stream.of(str.split(","))
.map (elem -> new String(elem))
.collect(Collectors.toList());
}
public static List<Character> splitToListOfChar ( String str ) {
return str.chars()
.mapToObj(item -> (char) item)
.collect(Collectors.toList());
}
}
@@ -8,55 +8,55 @@ public class CharArrayToStringUnitTest {
@Test
public void givenCharArray_whenCallingStringConstructor_shouldConvertToString() {
char[] charArray = {'c', 'h', 'a', 'r', 'a', 'c', 't', 'e', 'r'};
char[] charArray = { 'c', 'h', 'a', 'r', 'a', 'c', 't', 'e', 'r' };
String result = new String(charArray);
String expectedValue = "character";
assertEquals(expectedValue, result);
}
@Test
public void givenCharArray_whenCallingStringConstructorWithOffsetAndLength_shouldConvertToString(){
char[] charArray = {'c', 'h', 'a', 'r', 'a', 'c', 't', 'e', 'r'};
public void givenCharArray_whenCallingStringConstructorWithOffsetAndLength_shouldConvertToString() {
char[] charArray = { 'c', 'h', 'a', 'r', 'a', 'c', 't', 'e', 'r' };
String result = new String(charArray, 4, 3);
String expectedValue = "act";
assertEquals(expectedValue, result);
}
@Test
public void givenCharArray_whenCallingStringCopyValueOf_shouldConvertToString(){
char[] charArray = {'c', 'h', 'a', 'r', 'a', 'c', 't', 'e', 'r'};
public void givenCharArray_whenCallingStringCopyValueOf_shouldConvertToString() {
char[] charArray = { 'c', 'h', 'a', 'r', 'a', 'c', 't', 'e', 'r' };
String result = String.copyValueOf(charArray);
String expectedValue = "character";
assertEquals(expectedValue, result);
}
@Test
public void givenCharArray_whenCallingStringCopyValueOfWithOffsetAndLength_shouldConvertToString(){
char[] charArray = {'c', 'h', 'a', 'r', 'a', 'c', 't', 'e', 'r'};
public void givenCharArray_whenCallingStringCopyValueOfWithOffsetAndLength_shouldConvertToString() {
char[] charArray = { 'c', 'h', 'a', 'r', 'a', 'c', 't', 'e', 'r' };
String result = String.copyValueOf(charArray, 0, 4);
String expectedValue = "char";
assertEquals(expectedValue, result);
}
@Test
public void givenCharArray_whenCallingStringValueOf_shouldConvertToString(){
char[] charArray = {'c', 'h', 'a', 'r', 'a', 'c', 't', 'e', 'r'};
public void givenCharArray_whenCallingStringValueOf_shouldConvertToString() {
char[] charArray = { 'c', 'h', 'a', 'r', 'a', 'c', 't', 'e', 'r' };
String result = String.valueOf(charArray);
String expectedValue = "character";
assertEquals(expectedValue, result);
}
@Test
public void givenCharArray_whenCallingStringValueOfWithOffsetAndLength_shouldConvertToString(){
char[] charArray = {'c', 'h', 'a', 'r', 'a', 'c', 't', 'e', 'r'};
public void givenCharArray_whenCallingStringValueOfWithOffsetAndLength_shouldConvertToString() {
char[] charArray = { 'c', 'h', 'a', 'r', 'a', 'c', 't', 'e', 'r' };
String result = String.valueOf(charArray, 3, 4);
String expectedValue = "ract";
assertEquals(expectedValue, result);
}
}
@@ -6,15 +6,15 @@ import org.junit.Test;
public class StringToCharArrayUnitTest {
@Test
public void givenString_whenCallingStringToCharArray_shouldConvertToCharArray() {
String givenString = "characters";
@Test
public void givenString_whenCallingStringToCharArray_shouldConvertToCharArray() {
String givenString = "characters";
char[] result = givenString.toCharArray();
char[] result = givenString.toCharArray();
char[] expectedCharArray = { 'c', 'h', 'a', 'r', 'a', 'c', 't', 'e', 'r', 's' };
char[] expectedCharArray = { 'c', 'h', 'a', 'r', 'a', 'c', 't', 'e', 'r', 's' };
assertArrayEquals(expectedCharArray, result);
}
assertArrayEquals(expectedCharArray, result);
}
}
@@ -1,16 +0,0 @@
package com.baeldung.algorithms;
import org.junit.Assert;
import org.junit.Test;
import com.baeldung.algorithms.ga.binary.SimpleGeneticAlgorithm;
public class BinaryGeneticAlgorithmTest {
@Test
public void testGA() {
Assert.assertTrue(SimpleGeneticAlgorithm.runAlgorithm(50,
"1011000100000100010000100000100111001000000100000100000000001111"));
}
}
@@ -0,0 +1,16 @@
package com.baeldung.algorithms;
import org.junit.Assert;
import org.junit.Test;
import com.baeldung.algorithms.ga.binary.SimpleGeneticAlgorithm;
public class BinaryGeneticAlgorithmUnitTest {
@Test
public void testGA() {
SimpleGeneticAlgorithm ga = new SimpleGeneticAlgorithm();
Assert.assertTrue(ga.runAlgorithm(50, "1011000100000100010000100000100111001000000100000100000000001111"));
}
}
@@ -32,13 +32,14 @@ public class PriorityBlockingQueueUnitTest {
PriorityBlockingQueue<Integer> queue = new PriorityBlockingQueue<>();
final Thread thread = new Thread(() -> {
System.out.println("Polling...");
while (true) {
try {
Integer poll = queue.take();
System.out.println("Polled: " + poll);
} catch (InterruptedException e) {}
}
System.out.println("Polling...");
while (true) {
try {
Integer poll = queue.take();
System.out.println("Polled: " + poll);
} catch (InterruptedException e) {
}
}
});
thread.start();
@@ -0,0 +1,60 @@
package com.baeldung.graph;
import java.sql.Connection;
import java.sql.DriverManager;
import java.sql.ResultSet;
import java.sql.Statement;
import org.junit.Ignore;
import org.junit.Test;
import org.neo4j.driver.v1.AuthTokens;
import org.neo4j.driver.v1.Driver;
import org.neo4j.driver.v1.GraphDatabase;
import org.neo4j.driver.v1.Session;
import org.neo4j.driver.v1.StatementResult;
import org.testng.Assert;
@Ignore
public class Neo4JServerTest {
@Test
public void standAloneDriver() {
Driver driver = GraphDatabase.driver("bolt://localhost:7687", AuthTokens.basic("neo4j", "12345"));
Session session = driver.session();
session.run("CREATE (baeldung:Company {name:\"Baeldung\"}) " +
"-[:owns]-> (tesla:Car {make: 'tesla', model: 'modelX'})" +
"RETURN baeldung, tesla");
StatementResult result = session.run("MATCH (company:Company)-[:owns]-> (car:Car)" +
"WHERE car.make='tesla' and car.model='modelX'" +
"RETURN company.name");
Assert.assertTrue(result.hasNext());
Assert.assertEquals(result.next().get("company.name").asString(), "Baeldung");
session.close();
driver.close();
}
@Test
public void standAloneJdbc() throws Exception {
Connection con = DriverManager.getConnection("jdbc:neo4j:bolt://localhost/?user=neo4j,password=12345,scheme=basic");
// Querying
try (Statement stmt = con.createStatement()) {
stmt.execute("CREATE (baeldung:Company {name:\"Baeldung\"}) " +
"-[:owns]-> (tesla:Car {make: 'tesla', model: 'modelX'})" +
"RETURN baeldung, tesla");
ResultSet rs = stmt.executeQuery("MATCH (company:Company)-[:owns]-> (car:Car)" +
"WHERE car.make='tesla' and car.model='modelX'" +
"RETURN company.name");
while (rs.next()) {
Assert.assertEquals(rs.getString("company.name"), "Baeldung");
}
}
con.close();
}
}
@@ -0,0 +1,46 @@
package com.baeldung.graph;
import org.junit.Test;
import org.neo4j.ogm.config.Configuration;
import org.neo4j.ogm.model.Result;
import org.neo4j.ogm.session.Session;
import org.neo4j.ogm.session.SessionFactory;
import org.testng.Assert;
import java.util.HashMap;
import java.util.Map;
/**
* @author Danil Kornishev (danil.kornishev@mastercard.com)
*/
public class Neo4jOgmTest {
@Test
public void testOgm() {
Configuration conf = new Configuration();
conf.driverConfiguration().setDriverClassName("org.neo4j.ogm.drivers.embedded.driver.EmbeddedDriver");
SessionFactory factory = new SessionFactory(conf, "com.baeldung.graph");
Session session = factory.openSession();
Car tesla = new Car("tesla", "modelS");
Company baeldung = new Company("baeldung");
baeldung.setCar(tesla);
session.save(baeldung);
Map<String, String> params = new HashMap<>();
params.put("make", "tesla");
Result result = session.query("MATCH (car:Car) <-[:owns]- (company:Company)" +
" WHERE car.make=$make" +
" RETURN company", params);
Map<String, Object> firstResult = result.iterator().next();
Assert.assertEquals(firstResult.size(), 1);
Company actual = (Company) firstResult.get("company");
Assert.assertEquals(actual.getName(), baeldung.getName());
}
}
@@ -0,0 +1,167 @@
package com.baeldung.graph;
import java.io.File;
import java.util.Arrays;
import java.util.HashMap;
import java.util.Map;
import org.junit.After;
import org.junit.Before;
import org.junit.Test;
import org.neo4j.graphdb.GraphDatabaseService;
import org.neo4j.graphdb.Label;
import org.neo4j.graphdb.Node;
import org.neo4j.graphdb.NotFoundException;
import org.neo4j.graphdb.RelationshipType;
import org.neo4j.graphdb.Result;
import org.neo4j.graphdb.factory.GraphDatabaseFactory;
import org.testng.Assert;
public class Neo4jTest {
private static GraphDatabaseService graphDb;
@Before
public void setUp() {
GraphDatabaseFactory graphDbFactory = new GraphDatabaseFactory();
graphDb = graphDbFactory.newEmbeddedDatabase(new File("data/cars"));
}
@After
public void tearDown() {
graphDb.shutdown();
}
@Test
public void testPersonCar() {
graphDb.beginTx();
Node car = graphDb.createNode(Label.label("Car"));
car.setProperty("make", "tesla");
car.setProperty("model", "model3");
Node owner = graphDb.createNode(Label.label("Person"));
owner.setProperty("firstName", "baeldung");
owner.setProperty("lastName", "baeldung");
owner.createRelationshipTo(car, RelationshipType.withName("owner"));
Result result = graphDb.execute("MATCH (c:Car) <-[owner]- (p:Person) " +
"WHERE c.make = 'tesla'" +
"RETURN p.firstName, p.lastName");
Map<String, Object> firstResult = result.next();
Assert.assertEquals("baeldung", firstResult.get("p.firstName"));
}
@Test
public void testCreateNode() {
graphDb.beginTx();
Result result = graphDb.execute("CREATE (baeldung:Company {name:\"Baeldung\"})" +
"RETURN baeldung");
Map<String, Object> firstResult = result.next();
Node firstNode = (Node) firstResult.get("baeldung");
Assert.assertEquals(firstNode.getProperty("name"), "Baeldung");
}
@Test
public void testCreateNodeAndLink() {
graphDb.beginTx();
Result result = graphDb.execute("CREATE (baeldung:Company {name:\"Baeldung\"}) " +
"-[:owns]-> (tesla:Car {make: 'tesla', model: 'modelX'})" +
"RETURN baeldung, tesla");
Map<String, Object> firstResult = result.next();
Assert.assertTrue(firstResult.containsKey("baeldung"));
Assert.assertTrue(firstResult.containsKey("tesla"));
}
@Test
public void testFindAndReturn() {
graphDb.beginTx();
graphDb.execute("CREATE (baeldung:Company {name:\"Baeldung\"}) " +
"-[:owns]-> (tesla:Car {make: 'tesla', model: 'modelX'})" +
"RETURN baeldung, tesla");
Result result = graphDb.execute("MATCH (company:Company)-[:owns]-> (car:Car)" +
"WHERE car.make='tesla' and car.model='modelX'" +
"RETURN company.name");
Map<String, Object> firstResult = result.next();
Assert.assertEquals(firstResult.get("company.name"), "Baeldung");
}
@Test
public void testUpdate() {
graphDb.beginTx();
graphDb.execute("CREATE (baeldung:Company {name:\"Baeldung\"}) " +
"-[:owns]-> (tesla:Car {make: 'tesla', model: 'modelX'})" +
"RETURN baeldung, tesla");
Result result = graphDb.execute("MATCH (car:Car)" +
"WHERE car.make='tesla'" +
" SET car.milage=120" +
" SET car :Car:Electro" +
" SET car.model=NULL" +
" RETURN car");
Map<String, Object> firstResult = result.next();
Node car = (Node) firstResult.get("car");
Assert.assertEquals(car.getProperty("milage"), 120L);
Assert.assertEquals(car.getLabels(), Arrays.asList(Label.label("Car"), Label.label("Electro")));
try {
car.getProperty("model");
Assert.fail();
} catch (NotFoundException e) {
// expected
}
}
@Test
public void testDelete() {
graphDb.beginTx();
graphDb.execute("CREATE (baeldung:Company {name:\"Baeldung\"}) " +
"-[:owns]-> (tesla:Car {make: 'tesla', model: 'modelX'})" +
"RETURN baeldung, tesla");
graphDb.execute("MATCH (company:Company)" +
" WHERE company.name='Baeldung'" +
" DELETE company");
Result result = graphDb.execute("MATCH (company:Company)" +
" WHERE company.name='Baeldung'" +
" RETURN company");
Assert.assertFalse(result.hasNext());
}
@Test
public void testBindings() {
graphDb.beginTx();
Map<String, Object> params = new HashMap<>();
params.put("name", "baeldung");
params.put("make", "tesla");
params.put("model", "modelS");
Result result = graphDb.execute("CREATE (baeldung:Company {name:$name}) " +
"-[:owns]-> (tesla:Car {make: $make, model: $model})" +
"RETURN baeldung, tesla", params);
Map<String, Object> firstResult = result.next();
Assert.assertTrue(firstResult.containsKey("baeldung"));
Assert.assertTrue(firstResult.containsKey("tesla"));
Node car = (Node) firstResult.get("tesla");
Assert.assertEquals(car.getProperty("model"), "modelS");
}
}
@@ -14,7 +14,7 @@ import java.util.concurrent.TimeUnit;
import static org.junit.Assert.assertEquals;
import static org.junit.Assert.assertNotEquals;
public class ConcurrentMapAggregateStatusTest {
public class ConcurrentMapAggregateStatusManualTest {
private ExecutorService executorService;
private Map<String, Integer> concurrentMap;
@@ -10,7 +10,7 @@ import java.util.concurrent.ConcurrentMap;
import static org.junit.Assert.assertNull;
public class ConcurrentMapNullKeyValueTest {
public class ConcurrentMapNullKeyValueManualTest {
ConcurrentMap<String, Object> concurrentMap;
@@ -11,7 +11,7 @@ import java.util.concurrent.*;
import static org.junit.Assert.assertEquals;
import static org.junit.Assert.assertTrue;
public class ConcurrentMapPerformanceTest {
public class ConcurrentMapPerformanceManualTest {
@Test
public void givenMaps_whenGetPut500KTimes_thenConcurrentMapFaster() throws Exception {
@@ -10,7 +10,7 @@ import java.util.concurrent.atomic.AtomicInteger;
import static org.testng.Assert.*;
public class ConcurrentNavigableMapTests {
public class ConcurrentNavigableMapManualTests {
@Test
public void givenSkipListMap_whenAccessInMultiThreads_thenOrderingStable() throws InterruptedException {
@@ -18,9 +18,7 @@ public class ConcurrentNavigableMapTests {
updateMapConcurrently(skipListMap, 4);
Iterator<Integer> skipListIter = skipListMap
.keySet()
.iterator();
Iterator<Integer> skipListIter = skipListMap.keySet().iterator();
int previous = skipListIter.next();
while (skipListIter.hasNext()) {
int current = skipListIter.next();
@@ -10,7 +10,7 @@ import java.util.concurrent.TimeUnit;
import static org.junit.Assert.*;
public class ConcurretMapMemoryConsistencyTest {
public class ConcurretMapMemoryConsistencyManualTest {
@Test
public void givenConcurrentMap_whenSumParallel_thenCorrect() throws Exception {
@@ -0,0 +1,80 @@
package com.baeldung.java.concurrentmodification;
import org.junit.Test;
import java.util.ArrayList;
import java.util.Collection;
import java.util.ConcurrentModificationException;
import java.util.Iterator;
import java.util.List;
import static java.util.stream.Collectors.toList;
import static org.assertj.core.api.Assertions.assertThat;
import static org.assertj.core.util.Lists.newArrayList;
public class ConcurrentModificationUnitTest {
@Test(expected = ConcurrentModificationException.class)
public void givenIterating_whenRemoving_thenThrowException() throws InterruptedException {
List<Integer> integers = newArrayList(1, 2, 3);
for (Integer integer : integers) {
integers.remove(1);
}
}
@Test
public void givenIterating_whenUsingIteratorRemove_thenNoError() throws InterruptedException {
List<Integer> integers = newArrayList(1, 2, 3);
for (Iterator<Integer> iterator = integers.iterator(); iterator.hasNext();) {
Integer integer = iterator.next();
if(integer == 2) {
iterator.remove();
}
}
assertThat(integers).containsExactly(1, 3);
}
@Test
public void givenIterating_whenUsingRemovalList_thenNoError() throws InterruptedException {
List<Integer> integers = newArrayList(1, 2, 3);
List<Integer> toRemove = newArrayList();
for (Integer integer : integers) {
if(integer == 2) {
toRemove.add(integer);
}
}
integers.removeAll(toRemove);
assertThat(integers).containsExactly(1, 3);
}
@Test
public void whenUsingRemoveIf_thenRemoveElements() throws InterruptedException {
Collection<Integer> integers = newArrayList(1, 2, 3);
integers.removeIf(i -> i == 2);
assertThat(integers).containsExactly(1, 3);
}
@Test
public void whenUsingStream_thenRemoveElements() {
Collection<Integer> integers = newArrayList(1, 2, 3);
List<String> collected = integers
.stream()
.filter(i -> i != 2)
.map(Object::toString)
.collect(toList());
assertThat(collected).containsExactly("1", "3");
}
}
@@ -0,0 +1,231 @@
package com.baeldung.java8;
import com.baeldung.java_8_features.groupingby.BlogPost;
import com.baeldung.java_8_features.groupingby.BlogPostType;
import org.junit.Test;
import java.util.*;
import java.util.concurrent.ConcurrentMap;
import static java.util.Comparator.comparingInt;
import static java.util.stream.Collectors.*;
import static org.junit.Assert.*;
public class Java8GroupingByCollectorUnitTest {
private static final List<BlogPost> posts = Arrays.asList(
new BlogPost("News item 1", "Author 1", BlogPostType.NEWS, 15),
new BlogPost("Tech review 1", "Author 2", BlogPostType.REVIEW, 5),
new BlogPost("Programming guide", "Author 1", BlogPostType.GUIDE, 20),
new BlogPost("News item 2", "Author 2", BlogPostType.NEWS, 35),
new BlogPost("Tech review 2", "Author 1", BlogPostType.REVIEW, 15));
@Test
public void givenAListOfPosts_whenGroupedByType_thenGetAMapBetweenTypeAndPosts() {
Map<BlogPostType, List<BlogPost>> postsPerType = posts
.stream()
.collect(groupingBy(BlogPost::getType));
assertEquals(2, postsPerType
.get(BlogPostType.NEWS)
.size());
assertEquals(1, postsPerType
.get(BlogPostType.GUIDE)
.size());
assertEquals(2, postsPerType
.get(BlogPostType.REVIEW)
.size());
}
@Test
public void givenAListOfPosts_whenGroupedByTypeAndTheirTitlesAreJoinedInAString_thenGetAMapBetweenTypeAndCsvTitles() {
Map<BlogPostType, String> postsPerType = posts
.stream()
.collect(groupingBy(BlogPost::getType, mapping(BlogPost::getTitle, joining(", ", "Post titles: [", "]"))));
assertEquals("Post titles: [News item 1, News item 2]", postsPerType.get(BlogPostType.NEWS));
assertEquals("Post titles: [Programming guide]", postsPerType.get(BlogPostType.GUIDE));
assertEquals("Post titles: [Tech review 1, Tech review 2]", postsPerType.get(BlogPostType.REVIEW));
}
@Test
public void givenAListOfPosts_whenGroupedByTypeAndSumTheLikes_thenGetAMapBetweenTypeAndPostLikes() {
Map<BlogPostType, Integer> likesPerType = posts
.stream()
.collect(groupingBy(BlogPost::getType, summingInt(BlogPost::getLikes)));
assertEquals(50, likesPerType
.get(BlogPostType.NEWS)
.intValue());
assertEquals(20, likesPerType
.get(BlogPostType.REVIEW)
.intValue());
assertEquals(20, likesPerType
.get(BlogPostType.GUIDE)
.intValue());
}
@Test
public void givenAListOfPosts_whenGroupedByTypeInAnEnumMap_thenGetAnEnumMapBetweenTypeAndPosts() {
EnumMap<BlogPostType, List<BlogPost>> postsPerType = posts
.stream()
.collect(groupingBy(BlogPost::getType, () -> new EnumMap<>(BlogPostType.class), toList()));
assertEquals(2, postsPerType
.get(BlogPostType.NEWS)
.size());
assertEquals(1, postsPerType
.get(BlogPostType.GUIDE)
.size());
assertEquals(2, postsPerType
.get(BlogPostType.REVIEW)
.size());
}
@Test
public void givenAListOfPosts_whenGroupedByTypeInSets_thenGetAMapBetweenTypesAndSetsOfPosts() {
Map<BlogPostType, Set<BlogPost>> postsPerType = posts
.stream()
.collect(groupingBy(BlogPost::getType, toSet()));
assertEquals(2, postsPerType
.get(BlogPostType.NEWS)
.size());
assertEquals(1, postsPerType
.get(BlogPostType.GUIDE)
.size());
assertEquals(2, postsPerType
.get(BlogPostType.REVIEW)
.size());
}
@Test
public void givenAListOfPosts_whenGroupedByTypeConcurrently_thenGetAMapBetweenTypeAndPosts() {
ConcurrentMap<BlogPostType, List<BlogPost>> postsPerType = posts
.parallelStream()
.collect(groupingByConcurrent(BlogPost::getType));
assertEquals(2, postsPerType
.get(BlogPostType.NEWS)
.size());
assertEquals(1, postsPerType
.get(BlogPostType.GUIDE)
.size());
assertEquals(2, postsPerType
.get(BlogPostType.REVIEW)
.size());
}
@Test
public void givenAListOfPosts_whenGroupedByTypeAndAveragingLikes_thenGetAMapBetweenTypeAndAverageNumberOfLikes() {
Map<BlogPostType, Double> averageLikesPerType = posts
.stream()
.collect(groupingBy(BlogPost::getType, averagingInt(BlogPost::getLikes)));
assertEquals(25, averageLikesPerType
.get(BlogPostType.NEWS)
.intValue());
assertEquals(20, averageLikesPerType
.get(BlogPostType.GUIDE)
.intValue());
assertEquals(10, averageLikesPerType
.get(BlogPostType.REVIEW)
.intValue());
}
@Test
public void givenAListOfPosts_whenGroupedByTypeAndCounted_thenGetAMapBetweenTypeAndNumberOfPosts() {
Map<BlogPostType, Long> numberOfPostsPerType = posts
.stream()
.collect(groupingBy(BlogPost::getType, counting()));
assertEquals(2, numberOfPostsPerType
.get(BlogPostType.NEWS)
.intValue());
assertEquals(1, numberOfPostsPerType
.get(BlogPostType.GUIDE)
.intValue());
assertEquals(2, numberOfPostsPerType
.get(BlogPostType.REVIEW)
.intValue());
}
@Test
public void givenAListOfPosts_whenGroupedByTypeAndMaxingLikes_thenGetAMapBetweenTypeAndMaximumNumberOfLikes() {
Map<BlogPostType, Optional<BlogPost>> maxLikesPerPostType = posts
.stream()
.collect(groupingBy(BlogPost::getType, maxBy(comparingInt(BlogPost::getLikes))));
assertTrue(maxLikesPerPostType
.get(BlogPostType.NEWS)
.isPresent());
assertEquals(35, maxLikesPerPostType
.get(BlogPostType.NEWS)
.get()
.getLikes());
assertTrue(maxLikesPerPostType
.get(BlogPostType.GUIDE)
.isPresent());
assertEquals(20, maxLikesPerPostType
.get(BlogPostType.GUIDE)
.get()
.getLikes());
assertTrue(maxLikesPerPostType
.get(BlogPostType.REVIEW)
.isPresent());
assertEquals(15, maxLikesPerPostType
.get(BlogPostType.REVIEW)
.get()
.getLikes());
}
@Test
public void givenAListOfPosts_whenGroupedByAuthorAndThenByType_thenGetAMapBetweenAuthorAndMapsBetweenTypeAndBlogPosts() {
Map<String, Map<BlogPostType, List<BlogPost>>> map = posts
.stream()
.collect(groupingBy(BlogPost::getAuthor, groupingBy(BlogPost::getType)));
assertEquals(1, map
.get("Author 1")
.get(BlogPostType.NEWS)
.size());
assertEquals(1, map
.get("Author 1")
.get(BlogPostType.GUIDE)
.size());
assertEquals(1, map
.get("Author 1")
.get(BlogPostType.REVIEW)
.size());
assertEquals(1, map
.get("Author 2")
.get(BlogPostType.NEWS)
.size());
assertEquals(1, map
.get("Author 2")
.get(BlogPostType.REVIEW)
.size());
assertNull(map
.get("Author 2")
.get(BlogPostType.GUIDE));
}
@Test
public void givenAListOfPosts_whenGroupedByTypeAndSummarizingLikes_thenGetAMapBetweenTypeAndSummary() {
Map<BlogPostType, IntSummaryStatistics> likeStatisticsPerType = posts
.stream()
.collect(groupingBy(BlogPost::getType, summarizingInt(BlogPost::getLikes)));
IntSummaryStatistics newsLikeStatistics = likeStatisticsPerType.get(BlogPostType.NEWS);
assertEquals(2, newsLikeStatistics.getCount());
assertEquals(50, newsLikeStatistics.getSum());
assertEquals(25.0, newsLikeStatistics.getAverage(), 0.001);
assertEquals(35, newsLikeStatistics.getMax());
assertEquals(15, newsLikeStatistics.getMin());
}
}
@@ -0,0 +1,73 @@
package com.baeldung.strategy;
import org.junit.Test;
import java.math.BigDecimal;
import java.util.Arrays;
import java.util.List;
import java.util.function.Function;
import static com.baeldung.strategy.Discounter.*;
import static org.assertj.core.api.Assertions.assertThat;
public class StrategyDesignPatternUnitTest {
@Test
public void shouldDivideByTwo_WhenApplyingStaffDiscounter() {
Discounter staffDiscounter = new EasterDiscounter();
final BigDecimal discountedValue = staffDiscounter
.apply(BigDecimal.valueOf(100));
assertThat(discountedValue)
.isEqualByComparingTo(BigDecimal.valueOf(50));
}
@Test
public void shouldDivideByTwo_WhenApplyingStaffDiscounterWithAnonyousTypes() {
Discounter staffDiscounter = new Discounter() {
@Override
public BigDecimal apply( BigDecimal amount) {
return amount.multiply(BigDecimal.valueOf(0.5));
}
};
final BigDecimal discountedValue = staffDiscounter
.apply(BigDecimal.valueOf(100));
assertThat(discountedValue)
.isEqualByComparingTo(BigDecimal.valueOf(50));
}
@Test
public void shouldDivideByTwo_WhenApplyingStaffDiscounterWithLamda() {
Discounter staffDiscounter = amount -> amount.multiply(BigDecimal.valueOf(0.5));
final BigDecimal discountedValue = staffDiscounter
.apply(BigDecimal.valueOf(100));
assertThat(discountedValue)
.isEqualByComparingTo(BigDecimal.valueOf(50));
}
@Test
public void shouldApplyAllDiscounts() {
List<Discounter> discounters = Arrays.asList(christmas(), newYear(), easter());
BigDecimal amount = BigDecimal.valueOf(100);
final Discounter combinedDiscounter = discounters
.stream()
.reduce(v -> v, Discounter::combine);
combinedDiscounter.apply(amount);
}
@Test
public void shouldChainDiscounters() {
final Function<BigDecimal, BigDecimal> combinedDiscounters = Discounter
.christmas()
.andThen(newYear());
combinedDiscounters.apply(BigDecimal.valueOf(100));
}
}
@@ -0,0 +1,48 @@
package com.baeldung.stream;
import org.junit.Test;
import java.util.Arrays;
import java.util.List;
import java.util.Random;
import java.util.UUID;
import java.util.function.Supplier;
import java.util.stream.Collectors;
import java.util.stream.Stream;
import static org.junit.Assert.assertEquals;
public class InfiniteStreamTest {
@Test
public void givenInfiniteStream_whenUseIntermediateLimitMethod_thenShouldTerminateInFiniteTime() {
//given
Stream<Integer> infiniteStream = Stream.iterate(0, i -> i + 2);
//when
List<Integer> collect = infiniteStream
.limit(10)
.collect(Collectors.toList());
//then
assertEquals(collect, Arrays.asList(0, 2, 4, 6, 8, 10, 12, 14, 16, 18));
}
@Test
public void givenInfiniteStreamOfRandomInts_whenUseLimit_shouldTerminateInFiniteTime() {
//given
Supplier<UUID> randomUUIDSupplier = UUID::randomUUID;
Stream<UUID> infiniteStreamOfRandomUUID = Stream.generate(randomUUIDSupplier);
//when
List<UUID> randomInts = infiniteStreamOfRandomUUID
.skip(10)
.limit(10)
.collect(Collectors.toList());
//then
assertEquals(randomInts.size(), 10);
}
}
@@ -0,0 +1,65 @@
package com.baeldung.string;
import static org.junit.Assert.*;
import java.util.ArrayList;
import java.util.List;
import org.junit.Test;
import com.baeldung.string.JoinerSplitter;
public class JoinerSplitterTest {
@Test
public void provided_array_convert_to_stream_and_convert_to_string() {
String[] programming_languages = {"java", "python", "nodejs", "ruby"};
String expectation = "java,python,nodejs,ruby";
String result = JoinerSplitter.join(programming_languages);
assertEquals(result, expectation);
}
@Test
public void provided_array_convert_to_stream_and_convert_to_prefixPostfix() {
String[] programming_languages = {"java", "python",
"nodejs", "ruby"};
String expectation = "[java,python,nodejs,ruby]";
String result = JoinerSplitter.joinWithPrefixPostFix(programming_languages);
assertEquals(result, expectation);
}
@Test
public void provided_string_convert_to_stream_and_convert_to_listOfString() {
String programming_languages = "java,python,nodejs,ruby";
List<String> expectation = new ArrayList<String>();
expectation.add("java");
expectation.add("python");
expectation.add("nodejs");
expectation.add("ruby");
List<String> result = JoinerSplitter.split(programming_languages);
assertEquals(result, expectation);
}
@Test
public void provided_string_convert_to_stream_and_convert_to_listOfChar() {
String programming_languages = "java,python,nodejs,ruby";
List<Character> expectation = new ArrayList<Character>();
char[] charArray = programming_languages.toCharArray();
for (char c : charArray) {
expectation.add(c);
}
List<Character> result = JoinerSplitter.splitToListOfChar(programming_languages);
assertEquals(result, expectation);
}
}
@@ -0,0 +1,72 @@
package com.baeldung.weakhashmap;
import org.junit.Test;
import java.util.WeakHashMap;
import java.util.concurrent.TimeUnit;
import static com.jayway.awaitility.Awaitility.await;
import static org.junit.Assert.assertTrue;
public class WeakHashMapTest {
@Test
public void givenWeakHashMap_whenCacheValueThatHasNoReferenceToIt_GCShouldReclaimThatObject() {
//given
WeakHashMap<UniqueImageName, BigImage> map = new WeakHashMap<>();
BigImage bigImage = new BigImage("image_id");
UniqueImageName imageName = new UniqueImageName("name_of_big_image");
map.put(imageName, bigImage);
assertTrue(map.containsKey(imageName));
//when big image key is not reference anywhere
imageName = null;
System.gc();
//then GC will finally reclaim that object
await().atMost(10, TimeUnit.SECONDS).until(map::isEmpty);
}
@Test
public void givenWeakHashMap_whenCacheValueThatHasNoReferenceToIt_GCShouldReclaimThatObjectButLeaveReferencedObject() {
//given
WeakHashMap<UniqueImageName, BigImage> map = new WeakHashMap<>();
BigImage bigImageFirst = new BigImage("foo");
UniqueImageName imageNameFirst = new UniqueImageName("name_of_big_image");
BigImage bigImageSecond = new BigImage("foo_2");
UniqueImageName imageNameSecond = new UniqueImageName("name_of_big_image_2");
map.put(imageNameFirst, bigImageFirst);
map.put(imageNameSecond, bigImageSecond);
assertTrue(map.containsKey(imageNameFirst));
assertTrue(map.containsKey(imageNameSecond));
//when
imageNameFirst = null;
System.gc();
//then
await().atMost(10, TimeUnit.SECONDS).until(() -> map.size() == 1);
await().atMost(10, TimeUnit.SECONDS).until(() -> map.containsKey(imageNameSecond));
}
class BigImage {
public final String imageId;
BigImage(String imageId) {
this.imageId = imageId;
}
}
class UniqueImageName {
public final String imageName;
UniqueImageName(String imageName) {
this.imageName = imageName;
}
}
}
@@ -1,12 +1,12 @@
package org.baeldung.java;
import java.nio.charset.Charset;
import java.util.Random;
import org.apache.commons.lang3.RandomStringUtils;
import org.apache.commons.math3.random.RandomDataGenerator;
import org.junit.Test;
import java.nio.charset.Charset;
import java.util.Random;
public class JavaRandomUnitTest {
// tests - random long
@@ -164,7 +164,7 @@ public class JavaRandomUnitTest {
final int targetStringLength = 10;
final StringBuilder buffer = new StringBuilder(targetStringLength);
for (int i = 0; i < targetStringLength; i++) {
final int randomLimitedInt = leftLimit + (int) (new Random().nextFloat() * (rightLimit - leftLimit));
final int randomLimitedInt = leftLimit + (int) (new Random().nextFloat() * (rightLimit - leftLimit + 1));
buffer.append((char) randomLimitedInt);
}
final String generatedString = buffer.toString();
@@ -1,5 +1,5 @@
package org.baeldung.java.streams;
import org.junit.Test;
import java.util.ArrayList;
@@ -14,28 +14,25 @@ import static org.junit.Assert.assertEquals;
import static org.junit.Assert.assertTrue;
public class ThreadPoolInParallelStreamTest {
@Test
public void giveRangeOfLongs_whenSummedInParallel_shouldBeEqualToExpectedTotal()
throws InterruptedException, ExecutionException {
public void giveRangeOfLongs_whenSummedInParallel_shouldBeEqualToExpectedTotal() throws InterruptedException, ExecutionException {
long firstNum = 1;
long lastNum = 1_000_000;
List<Long> aList = LongStream.rangeClosed(firstNum, lastNum).boxed()
.collect(Collectors.toList());
List<Long> aList = LongStream.rangeClosed(firstNum, lastNum).boxed().collect(Collectors.toList());
ForkJoinPool customThreadPool = new ForkJoinPool(4);
long actualTotal = customThreadPool.submit(() -> aList.parallelStream()
.reduce(0L, Long::sum)).get();
assertEquals((lastNum + firstNum) * lastNum / 2, actualTotal);
long actualTotal = customThreadPool.submit(() -> aList.parallelStream().reduce(0L, Long::sum)).get();
assertEquals((lastNum + firstNum) * lastNum / 2, actualTotal);
}
@Test
public void givenList_whenCallingParallelStream_shouldBeParallelStream(){
public void givenList_whenCallingParallelStream_shouldBeParallelStream() {
List<Long> aList = new ArrayList<>();
Stream<Long> parallelStream = aList.parallelStream();
assertTrue(parallelStream.isParallel());
}
}