作者:牛小宝
在HttpClient进化到4.x后,官方提供了基于nio的异步版本:HttpAsyncClient。HttpAsyncClient 是基于httpcore NIO 和httpclient基础上做的进一步封装,主要利用异步回调方式, 适用于高性能需求的场景下.当我们发送一个http请求后,当前线程会立刻返回,并执行完后续工作。此时和服务端只有connection进行连接,没有线程等待。当收到响应后,HttpAsyncClient将回调通知客户端,用此方法提高了并发能力。
利用HttpAsyncClient并发能力强,性能好,并且拓展性强等特点,可以将其性能测试,使用异步http请求来模拟洪水压力
使用HttpAsyncClient模拟GET请求只需要如下几步:
<dependency>
<groupId>org.apache.httpcomponents</groupId>
<artifactId>httpasyncclient</artifactId>
<version>4.1.3</version>
</dependency>
CloseableHttpAsyncClient httpclient = HttpAsyncClients.createDefault();
HttpGet request = new HttpGet("http://www.kaola.com/");
import java.io.IOException;
import java.util.concurrent.CountDownLatch;
import java.util.concurrent.ExecutionException;
import org.apache.http.HttpResponse;
import org.apache.http.client.methods.HttpGet;
import org.apache.http.concurrent.FutureCallback;
import org.apache.http.impl.nio.client.CloseableHttpAsyncClient;
import org.apache.http.impl.nio.client.HttpAsyncClients;
public class AsycPerfGetClient
{
public static void main( String[] args ) throws InterruptedException, ExecutionException
{
CloseableHttpAsyncClient httpclient = HttpAsyncClients.createDefault();
try {
// Start the client
httpclient.start();
// One most likely would want to use a callback for operation result
final CountDownLatch latch = new CountDownLatch(1);
final HttpGet request = new HttpGet("http://www.kaola.com/");
httpclient.execute(request, new FutureCallback<HttpResponse>() {
public void completed(final HttpResponse response2) {
latch.countDown();
System.out.println(request.getRequestLine() + "->" + response2.getStatusLine());
}
public void failed(final Exception ex) {
latch.countDown();
System.out.println(request.getRequestLine() + "->" + ex);
}
public void cancelled() {
latch.countDown();
System.out.println(request.getRequestLine() + " cancelled");
}
});
latch.await();
} finally {
try {
httpclient.close();
} catch (IOException e) {
// TODO Auto-generated catch block
e.printStackTrace();
}
}
}
}
POST请求分为两种:
还可以在响应回调FutureCallback对象的completed方法中对响应体的正确性进行断言校验。
import java.io.IOException;
import java.io.UnsupportedEncodingException;
import java.util.ArrayList;
import java.util.List;
import java.util.concurrent.CountDownLatch;
import java.util.concurrent.ExecutionException;
import org.apache.http.HttpResponse;
import org.apache.http.NameValuePair;
import org.apache.http.ParseException;
import org.apache.http.client.entity.UrlEncodedFormEntity;
import org.apache.http.client.methods.HttpPost;
import org.apache.http.concurrent.FutureCallback;
import org.apache.http.entity.StringEntity;
import org.apache.http.impl.nio.client.CloseableHttpAsyncClient;
import org.apache.http.impl.nio.client.HttpAsyncClients;
import org.apache.http.message.BasicNameValuePair;
import org.apache.http.util.EntityUtils;
public class AsycPerfPostClient
{
/*
* method : Post request
* Content-type : application/json
*/
public void doPostForJson() throws InterruptedException, ExecutionException
{
CloseableHttpAsyncClient httpclient = HttpAsyncClients.createDefault();
try {
// Start the client
httpclient.start();
// One most likely would want to use a callback for operation result
final CountDownLatch latch = new CountDownLatch(1);
final HttpPost request = new HttpPost("http://sp.kaola.com/api/cart");
//construct request header
request.setHeader("Content-type", "application/json; charset=UTF-8");
request.setHeader("appVersion", "3.9.0");
request.setHeader("apiVersion", "207");
request.setHeader("platform", "1");
request.setHeader("User-Agent", "Mozilla/5.0 (Windows NT 6.1; WOW64) AppleWebKit/537.36 (KHTML, like Gecko) Chrome/37.0.2062.103 Safari/537.36");
request.setHeader("ursId", "7144239B529794E56E7733F2CAA95A803FAEE9F695EC30637D2D80EC2DB30FCC64C384852ED312E1ECE6E2456B8528581");
request.setHeader("ursToken", "3a8f8d342f56fcfac9a0f9d5168dc189e");
//construct request body
String JsonParam = "{\"skuId\":\"17752-68a3e5516d7a7dc21fbe0e7ee13bfc1c\",\"isHuanGou\":0,\"goodsId\":\"23430\",\"selected\":1,\"tempBuyAmount\":1,\"innerSource\":\"DETAIL\", \"goodsType\": 0, \"activitySchemeId\": 0}";
StringEntity entity = new StringEntity(JsonParam);
request.setEntity(entity);
httpclient.execute(request, new FutureCallback<HttpResponse>() {
public void completed(final HttpResponse response) {
latch.countDown();
try {
String responseBody = EntityUtils.toString(response.getEntity(), "UTF-8");
if (response.getStatusLine().getStatusCode() != 200 || !responseBody.contains("\"code\":0")) {
System.out.println(request.getRequestLine() + "-> error:" + responseBody);
}else {
System.out.println(request.getRequestLine() + "-> right:" + responseBody);
}
} catch (ParseException e1) {
// TODO Auto-generated catch block
e1.printStackTrace();
} catch (IOException e1) {
// TODO Auto-generated catch block
e1.printStackTrace();
}
}
public void failed(final Exception ex) {
latch.countDown();
System.out.println(request.getRequestLine() + "->" + ex);
}
public void cancelled() {
latch.countDown();
System.out.println(request.getRequestLine() + " cancelled");
}
});
latch.await();
// In real world one most likely would also want to stream
// request and response body content
} catch (UnsupportedEncodingException e) {
// TODO Auto-generated catch block
e.printStackTrace();
} finally {
try {
httpclient.close();
} catch (IOException e) {
// TODO Auto-generated catch block
e.printStackTrace();
}
}
}
/*
* method : Post request
* Content-type : application/x-www-form-urlencoded
*/
public void doPostForFrom() throws InterruptedException, ExecutionException
{
CloseableHttpAsyncClient httpclient = HttpAsyncClients.createDefault();
try {
// Start the client
httpclient.start();
// One most likely would want to use a callback for operation result
final CountDownLatch latch = new CountDownLatch(1);
final HttpPost request = new HttpPost("https://www.kaola.com/cartAjax/modify.html");
//construct request header
request.setHeader("Content-type", "application/x-www-form-urlencoded");
request.setHeader("User-Agent", "Mozilla/5.0 (Windows NT 6.1; WOW64) AppleWebKit/537.36 (KHTML, like Gecko) Chrome/37.0.2062.103 Safari/537.36");
request.setHeader("Cookie", "NTES_SESS=GFPzQP2ESrC7x6FtQRFxFxm_BqVjxTHcbjouDqrgZcQQM6xQ.MSx83AOErZ6..CVNzkl9Gaa6WbbiMymWLDvzLd0_ABLGn3JwQvGjtvLgLCRinMEwLh7cr1VbLC6OwZKDExj4gzPCr.wEdx_8603JN38JXh9AnPs.9QQMwwExAVpfbso6tM7Ad.yIt5RcQheU");
//construct request body
List<NameValuePair> nvps = new ArrayList<NameValuePair>();
nvps.add(new BasicNameValuePair("number", "1"));
nvps.add(new BasicNameValuePair("goodsId", "23430"));
nvps.add(new BasicNameValuePair("skuId", "17752-68a3e5516d7a7dc21fbe0e7ee13bfc1c"));
nvps.add(new BasicNameValuePair("innerSource", "DETAIL"));
request.setEntity(new UrlEncodedFormEntity(nvps));
httpclient.execute(request, new FutureCallback<HttpResponse>() {
public void completed(final HttpResponse response) {
latch.countDown();
try {
String responseBody = EntityUtils.toString(response.getEntity(), "UTF-8");
if (response.getStatusLine().getStatusCode() != 200 || !responseBody.contains("\"retcode\":200")) {
System.out.println(request.getRequestLine() + "-> error:" + responseBody);
}else {
System.out.println(request.getRequestLine() + "-> right:" + responseBody);
}
} catch (ParseException e1) {
// TODO Auto-generated catch block
e1.printStackTrace();
} catch (IOException e1) {
// TODO Auto-generated catch block
e1.printStackTrace();
}
}
public void failed(final Exception ex) {
latch.countDown();
System.out.println(request.getRequestLine() + "->" + ex);
}
public void cancelled() {
latch.countDown();
System.out.println(request.getRequestLine() + " cancelled");
}
});
latch.await();
// In real world one most likely would also want to stream
// request and response body content
} catch (UnsupportedEncodingException e) {
// TODO Auto-generated catch block
e.printStackTrace();
} finally {
try {
httpclient.close();
} catch (IOException e) {
// TODO Auto-generated catch block
e.printStackTrace();
}
}
}
public static void main(String[] args) throws InterruptedException, ExecutionException {
AsycPerfPostClient asycPerfPostClient = new AsycPerfPostClient();
asycPerfPostClient.doPostForFrom();
}
}
现在已经可以用HttpAsyncClient进行GET和POST请求的发送,由于都是单一请求但是还不能用于压测,下面增加了并发能力,可以设置并发数和执行次数。
import java.io.IOException;
import java.util.concurrent.CountDownLatch;
import java.util.concurrent.ExecutionException;
import org.apache.http.HttpResponse;
import org.apache.http.client.config.RequestConfig;
import org.apache.http.client.methods.HttpGet;
import org.apache.http.concurrent.FutureCallback;
import org.apache.http.impl.nio.client.CloseableHttpAsyncClient;
import org.apache.http.impl.nio.client.HttpAsyncClients;
import org.apache.http.impl.nio.conn.PoolingNHttpClientConnectionManager;
import org.apache.http.impl.nio.reactor.DefaultConnectingIOReactor;
import org.apache.http.nio.reactor.ConnectingIOReactor;
public class AsycSimplePerfTestClient implements Runnable {
private static int requestRunTime = 0;
private static CloseableHttpAsyncClient httpclient = null;
public AsycSimplePerfTestClient(int runTime) {
// TODO Auto-generated constructor stub
requestRunTime = runTime;
}
static{
try {
RequestConfig requestConfig = RequestConfig.custom()
.setSocketTimeout(30000)
.setConnectTimeout(30000)
.build();
ConnectingIOReactor ioReactor = new DefaultConnectingIOReactor();
PoolingNHttpClientConnectionManager connManager = new PoolingNHttpClientConnectionManager(ioReactor);
connManager.setMaxTotal(500);
connManager.setDefaultMaxPerRoute(500);
httpclient = HttpAsyncClients.custom().setConnectionManager(connManager)
.setDefaultRequestConfig(requestConfig)
.build();
} catch (Exception e) {
// TODO: handle exception
}
}
public void doGetRequest(int runTime) throws InterruptedException, ExecutionException, IOException {
try {
httpclient.start();
final HttpGet request = new HttpGet("http://m.kaola.com");
final CountDownLatch latch = new CountDownLatch(runTime);
for(int i = 0; i < runTime; i++){
httpclient.execute(request, new FutureCallback<HttpResponse>() {
public void completed(final HttpResponse response) {
latch.countDown();
// System.out.println(request.getRequestLine() + "->" + response.getStatusLine());
}
public void failed(final Exception ex) {
latch.countDown();
ex.printStackTrace();
}
public void cancelled() {
latch.countDown();
System.out.println(request.getRequestLine() + " cancelled");
}
});
}
latch.await();
System.out.println("Shutting down");
} finally {
httpclient.close();
}
System.out.println("Done");
}
public void run() {
try {
doGetRequest(requestRunTime);
} catch (Exception e) {
// TODO Auto-generated catch block
e.printStackTrace();
}
}
public static void main(String[] args) {
int threadNum = 10;
int runTime = 1000;
for(int i = 0; i < threadNum; i++ ){
new Thread(new AsycSimplePerfTestClient(runTime)).start();
}
}
}
上面的实例仅仅是可以用来发异步的压测,但对于数据的统计还不够完善,需要规范日志打印,用于统计TPS,响应时间等各种性能指标,所以使用时要根据需求进行完善。
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