一.镜像拉取
docker pull wurstmeister/zookeeper
docker pull wurstmeister/kafka
二.定义docker-compose.yml
version: '3'
services:
zookeeper:
image: wurstmeister/zookeeper
ports:
- "2181:2181"
kafka:
image: wurstmeister/kafka
depends_on: [ zookeeper ]
ports:
- "9092:9092"
environment:
KAFKA_ADVERTISED_HOST_NAME: 192.168.220.150
KAFKA_CREATE_TOPICS: "test:1:1"
KAFKA_ZOOKEEPER_CONNECT: zookeeper:2181
volumes:
- /data/product/zj_bigdata/data/kafka/docker.sock:/var/run/docker.sock
在docker-compose.yml文件目录进行服务打包
[root@VM_0_16_centos kafka] # docker-compose build
zookeeper uses an image, skipping
kafka uses an image, skipping
三.启动服务
[root@VM_0_16_centos kafka]# docker-compose up -d
Starting kafka_kafka_1 ... done
Starting kafka_zookeeper_1 ... done
四.启动测试
记住启动的启动名称,kafka为 kafka_kafka_1 ,zookeeper 为 kafka_zookeeper_1 .
如果docker-compose正常启动,此时docker ps会看到以上两个容器。进入kafka容器
docker exec -it kafka_kafka_1 bash
创建一个topic
$KAFKA_HOME/bin/kafka-topics.sh --create --topic topic --partitions 4 --zookeeper kafka_zookeeper_1:2181 --replication-factor 1
注意–zookeeper后面的参数为,容器的name
查看刚刚创建的topic
$KAFKA_HOME/bin/kafka-topics.sh --zookeeper kafka_zookeeper_1:2181 --describe --topic test
发布信息
bash-4.4# $KAFKA_HOME/bin/kafka-console-producer.sh --topic=test --broker-list kafka_kafka_1:9092
>ni
>haha
同样注意--broker-list后面的参数
接收消息
bash-4.4# $KAFKA_HOME/bin/kafka-console-consumer.sh --bootstrap-server kafka_kafka_1:9092 --from-beginning --topic test
ni
haha
五.kafka集群管理界面
docker run -itd --name=kafka-manager -p 9000:9000 -e ZK_HOSTS="192.168.220.150:2181" sheepkiller/kafka-manager