Junções e agregações em fluxos
Realize junções complexas entre fluxos e tabelas e agregue dados para obter insights relevantes em tempo real.
Junções e agregações em fluxos é uma aula grátis de Apache Kafka & Stream Processing Fundamentals no CoddyKit. Esta é a aula 2 de 4. Você pode ler a aula completa abaixo gratuitamente — depois pratica ao vivo no navegador com um editor de código integrado e um tutor de IA 24/7. Faz parte do caminho de aprendizado de Apache Kafka & Stream Processing Fundamentals, e seu progresso é sincronizado entre a web e o app CoddyKit. O curso de Apache Kafka & Stream Processing Fundamentals inclui 4 aulas no total.
Partes desta aula ainda não foram traduzidas e aparecem em inglês.
Combining Data Streams
In real-world data processing, you often need to combine information from different sources. Imagine tracking user clicks and matching them with user profiles, or correlating an order with its payment details.
Kafka Streams provides powerful operations to join different data streams (KStreams) and tables (KTables) based on a common key. This allows you to enrich your data and derive more complete insights in real-time.
KStream-KStream Joins
A KStream-KStream join combines records from two KStreams based on their shared key. Since KStreams represent unbounded, continuous event streams, these joins require a time window.
- Events from both streams must arrive within this defined time window to be considered for a join.
- If an event from one stream arrives outside the window of its matching event in the other stream, they won't be joined.
- This is crucial for correlating events that happen close together, like a user clicking an ad and then visiting a product page.
KStream-KStream Join Example
This example demonstrates joining two KStreams, streamA and streamB, using a 10-second time window. Only records with the same key arriving within this window will be combined.
import org.apache.kafka.common.serialization.Serdes;
import org.apache.kafka.streams.KafkaStreams;
import org.apache.kafka.streams.StreamsBuilder;
import org.apache.kafka.streams.StreamsConfig;
import org.apache.kafka.streams.kstream.JoinWindows;
import org.apache.kafka.streams.kstream.KStream;
import java.time.Duration;
import java.util.Properties;
public class StreamStreamJoin {
public static void main(String[] args) {
Properties props = new Properties();
props.put(StreamsConfig.APPLICATION_ID_CONFIG, "stream-join-app");
props.put(StreamsConfig.BOOTSTRAP_SERVERS_CONFIG, "localhost:9092");
props.put(StreamsConfig.DEFAULT_KEY_SERDE_CLASS_BY_KEY_CONFIG, Serdes.String().getClass());
props.put(StreamsConfig.DEFAULT_VALUE_SERDE_CLASS_BY_KEY_CONFIG, Serdes.String().getClass());
StreamsBuilder builder = new StreamsBuilder();
KStream<String, String> streamA = builder.stream("topic-A");
KStream<String, String> streamB = builder.stream("topic-B");
KStream<String, String> joined = streamA.join(
streamB,
(valA, valB) -> "Joined: " + valA + "-" + valB,
JoinWindows.of(Duration.ofSeconds(10))
);
joined.to("joined-topic");
KafkaStreams streams = new KafkaStreams(builder.build(), props);
streams.start();
}
}KStream-KTable Joins
A KStream-KTable join combines an event stream (KStream) with a materialized view or state table (KTable). This is a very common pattern for data enrichment.
- When a new record arrives on the KStream, it's joined with the current state of the KTable for the matching key.
- No time window is explicitly needed for the KTable side, as it always represents the latest known state.
- Think of it as looking up additional details for an event from a constantly updating database.
KStream-KTable Join Example
Here, a stream of transactions is enriched with data from a user-profiles KTable. Each transaction record gets the latest profile information for its user.
import org.apache.kafka.common.serialization.Serdes;
import org.apache.kafka.streams.KafkaStreams;
import org.apache.kafka.streams.StreamsBuilder;
import org.apache.kafka.streams.StreamsConfig;
import org.apache.kafka.streams.kstream.KStream;
import org.apache.kafka.streams.kstream.KTable;
import java.util.Properties;
public class StreamTableJoin {
public static void main(String[] args) {
Properties props = new Properties();
props.put(StreamsConfig.APPLICATION_ID_CONFIG, "stream-table-join-app");
props.put(StreamsConfig.BOOTSTRAP_SERVERS_CONFIG, "localhost:9092");
props.put(StreamsConfig.DEFAULT_KEY_SERDE_CLASS_BY_KEY_CONFIG, Serdes.String().getClass());
props.put(StreamsConfig.DEFAULT_VALUE_SERDE_CLASS_BY_KEY_CONFIG, Serdes.String().getClass());
StreamsBuilder builder = new StreamsBuilder();
KStream<String, String> transactions = builder.stream("transactions");
KTable<String, String> userProfiles = builder.table("user-profiles");
KStream<String, String> enrichedTransactions = transactions.join(
userProfiles,
(transactionVal, profileVal) -> "Tx: " + transactionVal + ", User: " + profileVal
);
enrichedTransactions.to("enriched-transactions");
KafkaStreams streams = new KafkaStreams(builder.build(), props);
streams.start();
}
}KTable-KTable Joins
A KTable-KTable join combines two materialized views (KTables) based on their shared key. This is similar to joining two constantly updating database tables.
- Whenever a record in either KTable is updated, the join operation is re-evaluated for that key.
- The output KTable will reflect the combined latest state of the matching records from both input KTables.
- This is useful for combining different aspects of an entity, like product pricing and inventory levels.
KTable-KTable Join Example
This code joins product-prices and product-stocks KTables. Any update to a product's price or stock will trigger an update to the joined-products KTable.
import org.apache.kafka.common.serialization.Serdes;
import org.apache.kafka.streams.KafkaStreams;
import org.apache.kafka.streams.StreamsBuilder;
import org.apache.kafka.streams.StreamsConfig;
import org.apache.kafka.streams.kstream.KTable;
import java.util.Properties;
public class TableTableJoin {
public static void main(String[] args) {
Properties props = new Properties();
props.put(StreamsConfig.APPLICATION_ID_CONFIG, "table-table-join-app");
props.put(StreamsConfig.BOOTSTRAP_SERVERS_CONFIG, "localhost:9092");
props.put(StreamsConfig.DEFAULT_KEY_SERDE_CLASS_BY_KEY_CONFIG, Serdes.String().getClass());
props.put(StreamsConfig.DEFAULT_VALUE_SERDE_CLASS_BY_KEY_CONFIG, Serdes.String().getClass());
StreamsBuilder builder = new StreamsBuilder();
KTable<String, String> productPrices = builder.table("product-prices");
KTable<String, String> productStocks = builder.table("product-stocks");
KTable<String, String> joinedProducts = productPrices.join(
productStocks,
(price, stock) -> "Price: " + price + ", Stock: " + stock
);
joinedProducts.toStream().to("joined-products");
KafkaStreams streams = new KafkaStreams(builder.build(), props);
streams.start();
}
}Understanding Aggregations
Aggregations are operations that summarize data from a stream or table over a specific key or time window. Common aggregations include:
- Counting: How many events occurred for a key?
- Summing: What is the total value for a key?
- Averaging: What is the average value for a key?
- Reducing: Combining values using a custom logic.
Aggregations are fundamental for building real-time dashboards, metrics, and summary statistics from continuous data streams.
KStream Aggregation Example
This example demonstrates a simple aggregation: counting user events per user ID within 10-second tumbling windows. The groupByKey() and windowedBy() methods are key here.
import org.apache.kafka.common.serialization.Serdes;
import org.apache.kafka.streams.KafkaStreams;
import org.apache.kafka.streams.StreamsBuilder;
import org.apache.kafka.streams.StreamsConfig;
import org.apache.kafka.streams.kstream.KStream;
import org.apache.kafka.streams.kstream.Materialized;
import org.apache.kafka.streams.kstream.TimeWindows;
import java.time.Duration;
import java.util.Properties;
public class StreamAggregation {
public static void main(String[] args) {
Properties props = new Properties();
props.put(StreamsConfig.APPLICATION_ID_CONFIG, "stream-aggregation-app");
props.put(StreamsConfig.BOOTSTRAP_SERVERS_CONFIG, "localhost:9092");
props.put(StreamsConfig.DEFAULT_KEY_SERDE_CLASS_BY_KEY_CONFIG, Serdes.String().getClass());
props.put(StreamsConfig.DEFAULT_VALUE_SERDE_CLASS_BY_KEY_CONFIG, Serdes.String().getClass());
StreamsBuilder builder = new StreamsBuilder();
KStream<String, String> userEvents = builder.stream("user-events");
userEvents
.groupByKey()
.windowedBy(TimeWindows.of(Duration.ofSeconds(10)))
.count(Materialized.as("user-event-counts"))
.toStream((windowedKey, count) -> windowedKey.key())
.to("user-event-counts-output");
KafkaStreams streams = new KafkaStreams(builder.build(), props);
streams.start();
}
}Join & Aggregate Check
Which type of Kafka Streams join is typically used for data enrichment, where an incoming event stream is combined with the latest state of a dataset?
Joins & Aggregations Summary
You've learned how Kafka Streams allows you to combine and summarize data in powerful ways:
- KStream-KStream Joins: Correlate events from two streams within a time window.
- KStream-KTable Joins: Enrich stream events with the latest state from a table.
- KTable-KTable Joins: Combine two continuously updating materialized views.
- Aggregations: Summarize data (e.g., count, sum) over keys and windows to derive real-time insights.
These operations are key to building sophisticated real-time analytics and data processing pipelines with Kafka Streams.
Perguntas Frequentes
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O que vou aprender em “Junções e agregações em fluxos”?
Realize junções complexas entre fluxos e tabelas e agregue dados para obter insights relevantes em tempo real. Você pratica Apache Kafka & Stream Processing Fundamentals com código prático que executa diretamente no navegador, e um tutor de IA 24/7 responde suas dúvidas enquanto trabalha na aula.
Preciso ter experiência prévia para começar Apache Kafka & Stream Processing Fundamentals?
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Todas as aulas deste curso
- Operações de janelas no Kafka Streams
- Junções e agregações em fluxos
- Introdução ao KSQL para análise de fluxos
- Consultas interativas e armazenamentos de estado