https://github.com/zq2599/blog_demos
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本文是《java版gRPC实战》系列的第六篇,前面咱们在开发客户端应用时,所需的服务端地址都是按如下步骤设置的:
local-server应用是个简单的gRPC服务端,其详细信息请参考《java版gRPC实战之二:服务发布和调用》
本篇由以下章节组成:
名称 | 链接 | 备注 |
---|---|---|
项目主页 | https://github.com/zq2599/blog_demos | 该项目在GitHub上的主页 |
git仓库地址(https) | https://github.com/zq2599/blog_demos.git | 该项目源码的仓库地址,https协议 |
git仓库地址(ssh) | git@github.com:zq2599/blog_demos.git | 该项目源码的仓库地址,ssh协议 |
plugins {
id ‘org.springframework.boot‘
}
dependencies {
implementation ‘org.projectlombok:lombok‘
implementation ‘org.springframework.boot:spring-boot-starter‘
implementation ‘org.springframework.boot:spring-boot-starter-web‘
implementation ‘net.devh:grpc-client-spring-boot-starter‘
implementation ‘io.etcd:jetcd-core‘
implementation project(‘:grpc-lib‘)
}
server:
port: 8084
spring:
application:
name: get-service-addr-from-etcd
grpc:
# etcd的地址,从此处取得gRPC服务端的IP和端口
etcdendpoints: ‘http://192.168.72.128:2379,http://192.168.50.239:2380,http://192.168.50.239:2381‘
启动类DynamicServerAddressDemoApplication.java的代码就不贴了,普通的springboot启动类而已;
新增StubWrapper.java文件,这是个spring bean,要重点关注的是simpleBlockingStub方法,当bean在spring注册的时候simpleBlockingStub方法会被执行,这样每当bean在spring注册时,都会从etcd查询gRPC服务端信息,然后创建SimpleBlockingStub对象:
package com.bolingcavalry.dynamicrpcaddr;
import com.bolingcavalry.grpctutorials.lib.SimpleGrpc;
import io.etcd.jetcd.ByteSequence;
import io.etcd.jetcd.Client;
import io.etcd.jetcd.KV;
import io.etcd.jetcd.kv.GetResponse;
import io.grpc.Channel;
import io.grpc.ManagedChannelBuilder;
import lombok.Data;
import lombok.extern.slf4j.Slf4j;
import org.springframework.boot.context.properties.ConfigurationProperties;
import org.springframework.stereotype.Component;
import javax.annotation.PostConstruct;
import java.util.Arrays;
import static com.google.common.base.Charsets.UTF_8;
/**
* @author will (zq2599@gmail.com)
* @version 1.0
* @description: 包装了SimpleBlockingStub实例的类,发起gRPC请求时需要用到SimpleBlockingStub实例
* @date 2021/5/8 19:34
*/
@Component("stubWrapper")
@Data
@Slf4j
@ConfigurationProperties(prefix = "grpc")
public class StubWrapper {
/**
* 这是etcd中的一个key,该key对应的值是grpc服务端的地址信息
*/
private static final String GRPC_SERVER_INFO_KEY = "/grpc/local-server";
/**
* 配置文件中写好的etcd地址
*/
private String etcdendpoints;
private SimpleGrpc.SimpleBlockingStub simpleBlockingStub;
/**
* 从etcd查询gRPC服务端的地址
* @return
*/
public String[] getGrpcServerInfo() {
// 创建client类
KV kvClient = Client.builder().endpoints(etcdendpoints.split(",")).build().getKVClient();
GetResponse response = null;
// 去etcd查询/grpc/local-server这个key的值
try {
response = kvClient.get(ByteSequence.from(GRPC_SERVER_INFO_KEY, UTF_8)).get();
} catch (Exception exception) {
log.error("get grpc key from etcd error", exception);
}
if (null==response || response.getKvs().isEmpty()) {
log.error("empty value of key [{}]", GRPC_SERVER_INFO_KEY);
return null;
}
// 从response中取得值
String rawAddrInfo = response.getKvs().get(0).getValue().toString(UTF_8);
// rawAddrInfo是“192.169.0.1:8080”这样的字符串,即一个IP和一个端口,用":"分割,
// 这里用":"分割成数组返回
return null==rawAddrInfo ? null : rawAddrInfo.split(":");
}
/**
* 每次注册bean都会执行的方法,
* 该方法从etcd取得gRPC服务端地址,
* 用于实例化成员变量SimpleBlockingStub
*/
@PostConstruct
public void simpleBlockingStub() {
// 从etcd获取地址信息
String[] array = getGrpcServerInfo();
log.info("create stub bean, array info from etcd {}", Arrays.toString(array));
// 数组的第一个元素是gRPC服务端的IP地址,第二个元素是端口
if (null==array || array.length<2) {
log.error("can not get valid grpc address from etcd");
return;
}
// 数组的第一个元素是gRPC服务端的IP地址
String addr = array[0];
// 数组的第二个元素是端口
int port = Integer.parseInt(array[1]);
// 根据刚才获取的gRPC服务端的地址和端口,创建channel
Channel channel = ManagedChannelBuilder
.forAddress(addr, port)
.usePlaintext()
.build();
// 根据channel创建stub
simpleBlockingStub = SimpleGrpc.newBlockingStub(channel);
}
}
package com.bolingcavalry.dynamicrpcaddr;
import com.bolingcavalry.grpctutorials.lib.HelloReply;
import com.bolingcavalry.grpctutorials.lib.HelloRequest;
import com.bolingcavalry.grpctutorials.lib.SimpleGrpc;
import io.grpc.StatusRuntimeException;
import lombok.Setter;
import net.devh.boot.grpc.client.inject.GrpcClient;
import org.springframework.beans.factory.annotation.Autowired;
import org.springframework.stereotype.Service;
@Service
public class GrpcClientService {
@Autowired(required = false)
@Setter
private StubWrapper stubWrapper;
public String sendMessage(final String name) {
// 很有可能simpleStub对象为null
if (null==stubWrapper) {
return "invalid SimpleBlockingStub, please check etcd configuration";
}
try {
final HelloReply response = stubWrapper.getSimpleBlockingStub().sayHello(HelloRequest.newBuilder().setName(name).build());
return response.getMessage();
} catch (final StatusRuntimeException e) {
return "FAILED with " + e.getStatus().getCode().name();
}
}
}
package com.bolingcavalry.dynamicrpcaddr;
import org.springframework.beans.factory.annotation.Autowired;
import org.springframework.web.bind.annotation.RequestMapping;
import org.springframework.web.bind.annotation.RequestParam;
import org.springframework.web.bind.annotation.RestController;
@RestController
public class GrpcClientController {
@Autowired
private GrpcClientService grpcClientService;
@RequestMapping("/")
public String printMessage(@RequestParam(defaultValue = "will") String name) {
return grpcClientService.sendMessage(name);
}
}
package com.bolingcavalry.dynamicrpcaddr;
import com.bolingcavalry.grpctutorials.lib.SimpleGrpc;
import org.springframework.beans.BeansException;
import org.springframework.beans.factory.annotation.Autowired;
import org.springframework.beans.factory.support.AbstractBeanDefinition;
import org.springframework.beans.factory.support.BeanDefinitionBuilder;
import org.springframework.beans.factory.support.BeanDefinitionRegistry;
import org.springframework.beans.factory.support.DefaultListableBeanFactory;
import org.springframework.context.ApplicationContext;
import org.springframework.context.ApplicationContextAware;
import org.springframework.web.bind.annotation.RequestMapping;
import org.springframework.web.bind.annotation.RequestParam;
import org.springframework.web.bind.annotation.RestController;
@RestController
public class RefreshStubInstanceController implements ApplicationContextAware {
private ApplicationContext applicationContext;
@Autowired
private GrpcClientService grpcClientService;
@Override
public void setApplicationContext(ApplicationContext applicationContext) throws BeansException {
this.applicationContext = applicationContext;
}
@RequestMapping("/refreshstub")
public String refreshstub() {
String beanName = "stubWrapper";
//获取BeanFactory
DefaultListableBeanFactory defaultListableBeanFactory = (DefaultListableBeanFactory) applicationContext.getAutowireCapableBeanFactory();
// 删除已有bean
defaultListableBeanFactory.removeBeanDefinition(beanName);
//创建bean信息.
BeanDefinitionBuilder beanDefinitionBuilder = BeanDefinitionBuilder.genericBeanDefinition(StubWrapper.class);
//动态注册bean.
defaultListableBeanFactory.registerBeanDefinition(beanName, beanDefinitionBuilder.getBeanDefinition());
// 更新引用关系(注意,applicationContext.getBean方法很重要,会触发StubWrapper实例化操作)
grpcClientService.setStubWrapper(applicationContext.getBean(StubWrapper.class));
return "Refresh success";
}
}
部署gRPC服务端应用很简单,启动local-server应用即可:
version: ‘3‘
services:
etcd1:
image: "quay.io/coreos/etcd:v3.4.7"
entrypoint: /usr/local/bin/etcd
command:
- ‘--name=etcd1‘
- ‘--data-dir=/etcd_data‘
- ‘--initial-advertise-peer-urls=http://etcd1:2380‘
- ‘--listen-peer-urls=http://0.0.0.0:2380‘
- ‘--listen-client-urls=http://0.0.0.0:2379‘
- ‘--advertise-client-urls=http://etcd1:2379‘
- ‘--initial-cluster-token=etcd-cluster‘
- ‘--heartbeat-interval=250‘
- ‘--election-timeout=1250‘
- ‘--initial-cluster=etcd1=http://etcd1:2380,etcd2=http://etcd2:2380,etcd3=http://etcd3:2380‘
- ‘--initial-cluster-state=new‘
ports:
- 2379:2379
volumes:
- ./store/etcd1/data:/etcd_data
etcd2:
image: "quay.io/coreos/etcd:v3.4.7"
entrypoint: /usr/local/bin/etcd
command:
- ‘--name=etcd2‘
- ‘--data-dir=/etcd_data‘
- ‘--initial-advertise-peer-urls=http://etcd2:2380‘
- ‘--listen-peer-urls=http://0.0.0.0:2380‘
- ‘--listen-client-urls=http://0.0.0.0:2379‘
- ‘--advertise-client-urls=http://etcd2:2379‘
- ‘--initial-cluster-token=etcd-cluster‘
- ‘--heartbeat-interval=250‘
- ‘--election-timeout=1250‘
- ‘--initial-cluster=etcd1=http://etcd1:2380,etcd2=http://etcd2:2380,etcd3=http://etcd3:2380‘
- ‘--initial-cluster-state=new‘
ports:
- 2380:2379
volumes:
- ./store/etcd2/data:/etcd_data
etcd3:
image: "quay.io/coreos/etcd:v3.4.7"
entrypoint: /usr/local/bin/etcd
command:
- ‘--name=etcd3‘
- ‘--data-dir=/etcd_data‘
- ‘--initial-advertise-peer-urls=http://etcd3:2380‘
- ‘--listen-peer-urls=http://0.0.0.0:2380‘
- ‘--listen-client-urls=http://0.0.0.0:2379‘
- ‘--advertise-client-urls=http://etcd3:2379‘
- ‘--initial-cluster-token=etcd-cluster‘
- ‘--heartbeat-interval=250‘
- ‘--election-timeout=1250‘
- ‘--initial-cluster=etcd1=http://etcd1:2380,etcd2=http://etcd2:2380,etcd3=http://etcd3:2380‘
- ‘--initial-cluster-state=new‘
ports:
- 2381:2379
volumes:
- ./store/etcd3/data:/etcd_data
docker exec 08_etcd2_1 /usr/local/bin/etcdctl put /grpc/local-server 192.168.50.5:9898
现在执行以下命令,将etcd中的服务端信息改为正确的:
docker exec 08_etcd2_1 /usr/local/bin/etcdctl put /grpc/local-server 192.168.50.5:9899
至此,在不修改配置不重启服务的情况下,客户端也可以适应服务端的变化了,当然了,本文只是提供基本的操作参考,实际上的微服务环境会更复杂,例如refreshstub接口可能被其他服务调用,这样服务端有了变化可以更加及时地被更新,还有客户端本身也肯能是gRPC服务提供方,那也要把自己注册到etcd上去,还有利用etcd的watch功能监控指定的服务端是否一直存活,以及同一个gRPC服务的多个实例如何做负载均衡,等等,这些都要根据您的实际情况来定制;
本篇内容过多,可见对于这些官方不支持的微服务环境,咱们自己去做注册发现的适配很费时费力的,如果设计和选型能自己做主,我们更倾向于使用现成的注册中心,接下来的文章,咱们就一起尝试使用eureka为gRPC提供注册发现服务;
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https://github.com/zq2599/blog_demos
原文:https://www.cnblogs.com/bolingcavalry/p/15307014.html