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TableToTableJoinIntegrationTest.java
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TableToTableJoinIntegrationTest.java
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/*
* Copyright Confluent Inc.
*
* 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 io.confluent.examples.streams;
import org.apache.kafka.common.serialization.LongSerializer;
import org.apache.kafka.common.serialization.Serde;
import org.apache.kafka.common.serialization.Serdes;
import org.apache.kafka.common.serialization.StringDeserializer;
import org.apache.kafka.common.serialization.StringSerializer;
import org.apache.kafka.streams.KeyValue;
import org.apache.kafka.streams.StreamsBuilder;
import org.apache.kafka.streams.StreamsConfig;
import org.apache.kafka.streams.TestInputTopic;
import org.apache.kafka.streams.TestOutputTopic;
import org.apache.kafka.streams.TopologyTestDriver;
import org.apache.kafka.streams.kstream.Consumed;
import org.apache.kafka.streams.kstream.KTable;
import org.apache.kafka.streams.kstream.Materialized;
import org.apache.kafka.streams.kstream.Produced;
import org.apache.kafka.streams.state.KeyValueIterator;
import org.apache.kafka.streams.state.ReadOnlyKeyValueStore;
import org.apache.kafka.test.TestUtils;
import org.junit.Test;
import java.util.Arrays;
import java.util.LinkedList;
import java.util.List;
import java.util.Properties;
import static org.hamcrest.CoreMatchers.equalTo;
import static org.hamcrest.MatcherAssert.assertThat;
/**
* End-to-end integration test that demonstrates how to perform a join between two KTables.
* We also show how to assign a state store to the joined table, which is required to make it
* accessible for interactive queries.
*
* Note: This example uses lambda expressions and thus works with Java 8+ only.
*/
public class TableToTableJoinIntegrationTest {
private static final String userRegionTopic = "user-region-topic";
private static final String userLastLoginTopic = "user-last-login-topic";
private static final String outputTopic = "output-topic";
@Test
public void shouldJoinTwoTables() {
// Input: Region per user (multiple records allowed per user).
final List<KeyValue<String, String>> userRegionRecords = Arrays.asList(
new KeyValue<>("alice", "asia"),
new KeyValue<>("bob", "europe"),
new KeyValue<>("alice", "europe"),
new KeyValue<>("charlie", "europe"),
new KeyValue<>("bob", "asia")
);
// Input 2: Timestamp of last login per user (multiple records allowed per user)
final List<KeyValue<String, Long>> userLastLoginRecords = Arrays.asList(
new KeyValue<>("alice", 1485500000L),
new KeyValue<>("bob", 1485520000L),
new KeyValue<>("alice", 1485530000L),
new KeyValue<>("bob", 1485560000L)
);
final List<KeyValue<String, String>> expectedResults = Arrays.asList(
new KeyValue<>("alice", "europe/1485500000"),
new KeyValue<>("bob", "asia/1485520000"),
new KeyValue<>("alice", "europe/1485530000"),
new KeyValue<>("bob", "asia/1485560000")
);
final List<KeyValue<String, String>> expectedResultsForJoinStateStore = Arrays.asList(
new KeyValue<>("alice", "europe/1485530000"),
new KeyValue<>("bob", "asia/1485560000")
);
//
// Step 1: Configure and start the processor topology.
//
final Serde<String> stringSerde = Serdes.String();
final Serde<Long> longSerde = Serdes.Long();
final Properties streamsConfiguration = new Properties();
streamsConfiguration.put(StreamsConfig.APPLICATION_ID_CONFIG, "table-table-join-lambda-integration-test");
streamsConfiguration.put(StreamsConfig.BOOTSTRAP_SERVERS_CONFIG, "dummy config");
streamsConfiguration.put(StreamsConfig.DEFAULT_KEY_SERDE_CLASS_CONFIG, Serdes.String().getClass().getName());
streamsConfiguration.put(StreamsConfig.DEFAULT_VALUE_SERDE_CLASS_CONFIG, Serdes.String().getClass().getName());
// Use a temporary directory for storing state, which will be automatically removed after the test.
streamsConfiguration.put(StreamsConfig.STATE_DIR_CONFIG, TestUtils.tempDirectory().getAbsolutePath());
final StreamsBuilder builder = new StreamsBuilder();
final KTable<String, String> userRegions = builder.table(userRegionTopic);
final KTable<String, Long> userLastLogins = builder.table(userLastLoginTopic, Consumed.with(stringSerde, longSerde));
final String storeName = "joined-store";
userRegions.join(userLastLogins,
(regionValue, lastLoginValue) -> regionValue + "/" + lastLoginValue,
Materialized.as(storeName))
.toStream()
.to(outputTopic, Produced.with(Serdes.String(), Serdes.String()));
try (final TopologyTestDriver topologyTestDriver = new TopologyTestDriver(builder.build(), streamsConfiguration)) {
//
// Step 2: Setup input and output topics.
//
final TestInputTopic<String, String> regionInput = topologyTestDriver
.createInputTopic(userRegionTopic,
new StringSerializer(),
new StringSerializer());
final TestInputTopic<String, Long> loginInput = topologyTestDriver
.createInputTopic(userLastLoginTopic,
new StringSerializer(),
new LongSerializer());
final TestOutputTopic<String, String> output = topologyTestDriver
.createOutputTopic(outputTopic, new StringDeserializer(), new StringDeserializer());
//
// Step 3: Publish input data.
//
regionInput.pipeKeyValueList(userRegionRecords);
loginInput.pipeKeyValueList(userLastLoginRecords);
//
// Step 4: Verify the application's output data.
//
assertThat(output.readKeyValuesToList(), equalTo(expectedResults));
// Verify the (local) state store of the joined table.
// For a comprehensive demonstration of interactive queries please refer to KafkaMusicExample.
final ReadOnlyKeyValueStore<String, String> readOnlyKeyValueStore =
topologyTestDriver.getKeyValueStore(storeName);
final List<KeyValue<String, String>> storeData = new LinkedList<>();
try (final KeyValueIterator<String, String> keyValueIterator = readOnlyKeyValueStore.all()) {
while (keyValueIterator.hasNext()) {
storeData.add(keyValueIterator.next());
}
}
assertThat(storeData, equalTo(expectedResultsForJoinStateStore));
}
}
}