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EVCache 是 Netflix開源的分佈式緩存系統,基於 Memcached緩存和 Spymemcached客戶端實現,其用在了大名鼎鼎的 AWS亞馬遜雲上,而且爲雲計算作了優化,提供高效的緩存服務。java
本文利用 Memcached做爲後端緩存實例服務器,並結合 Spring Boot,來實踐一下 EVCache客戶端的具體使用。node
注: 本文首發於 My Personal Blog:CodeSheep·程序羊,歡迎光臨 小站
git clone git@github.com:Netflix/EVCache.git
./gradlew build Downloading https://services.gradle.org/distributions/gradle-2.10-bin.zip ................................................................................................................................. ... :evcache-client:check :evcache-client:build :evcache-client-sample:writeLicenseHeader :evcache-client-sample:licenseMain Missing header in: evcache-client-sample/src/main/java/com/netflix/evcache/sample/EVCacheClientSample.java :evcache-client-sample:licenseTest UP-TO-DATE :evcache-client-sample:license :evcache-client-sample:compileTestJava UP-TO-DATE :evcache-client-sample:processTestResources UP-TO-DATE :evcache-client-sample:testClasses UP-TO-DATE :evcache-client-sample:test UP-TO-DATE :evcache-client-sample:check :evcache-client-sample:build BUILD SUCCESSFUL Total time: 22.866 secs
同時 ~/EVCache/evcache-client/build/reports
目錄下會生成相應構建報告:git
接下來咱們結合 Spring工程,來實戰一下 EVCache Client的具體使用。
首先準備好兩臺 memcached實例:github
接下來搭建一個SpringBoot工程,過程再也不贅述,須要注意的一點是 pom中需加入 EVCache的依賴支持後端
<dependency> <groupId>com.netflix.evcache</groupId> <artifactId>evcache-client</artifactId> <version>4.137.0-SNAPSHOT</version> </dependency>
注:我將 Spring工程設置在 8899端口啓動
public class EVCacheClient { private final EVCache evCache; // 關鍵角色在此 public EVCacheClient() { String deploymentDescriptor = System.getenv("EVC_SAMPLE_DEPLOYMENT"); if ( deploymentDescriptor == null ) { deploymentDescriptor = "SERVERGROUP1=192.168.199.77:11211;SERVERGROUP2=192.168.199.78:11211"; } System.setProperty("EVCACHE_APP1.use.simple.node.list.provider", "true"); System.setProperty("EVCACHE_APP1-NODES", deploymentDescriptor); evCache = new EVCache.Builder().setAppName("EVCACHE_APP1").build(); } public void setKey(String key, String value, int timeToLive) throws Exception { try { Future<Boolean>[] _future = evCache.set(key, value, timeToLive); for (Future<Boolean> f : _future) { boolean didSucceed = f.get(); // System.out.println("per-shard set success code for key " + key + " is " + didSucceed); // 此處能夠針對 didSucceed作相應判斷 } System.out.println("finished setting key " + key); } catch (EVCacheException e) { e.printStackTrace(); } } public String getKey(String key) { try { String _response = evCache.<String>get(key); return _response; } catch (Exception e) { e.printStackTrace(); return null; } } }
很明顯上述類主要提供了兩個關鍵工具函數: setKey
和 getKey
緩存
咱們將 EVCacheClient 注入到Spring容器中服務器
@Configuration public class EVCacheConfig { @Bean public EVCacheClient evcacheClient() { EVCacheClient evCacheClient = new EVCacheClient(); return evCacheClient; } }
上面幾步完成以後,Service的編寫天然瓜熟蒂落,僅僅是一層封裝而已app
@Service public class EVCacheService { @Autowired private EVCacheClient evCacheClient; public void setKey( String key, String value, int timeToLive ) { try { evCacheClient.setKey( key, value, timeToLive ); } catch (Exception e) { e.printStackTrace(); } } public String getKey( String key ) { return evCacheClient.getKey( key ); } }
咱們編寫一個方便用於測試的控制器,裏面進行一系列對於緩存的 set
和 get
,從而便於觀察實驗結果分佈式
@RestController public class EVCacheTestController { @Autowired private EVCacheService evCacheService; @GetMapping("/testevcache") public void testEvcache() { try { for ( int i = 0; i < 10; i++ ) { String key = "key_" + i; String value = "data_" + i; int ttl = 180; // 此處將緩存設爲三分鐘(180s)生存期,時間一過,緩存即會失效 evCacheService.setKey(key, value, ttl); } for (int i = 0; i < 10; i++) { String key = "key_" + i; String value = evCacheService.getKey(key); System.out.println("Get of " + key + " returned " + value); } } catch (Exception e) { e.printStackTrace(); } } }
工程啓動後,咱們調用 Rest接口:localhost:8899/testevcache
,觀察控制檯中對於 key_0
到 key_9
等十個緩存 key的操做細節以下:ide
key_0
到 key_9
注意此處是向每一個後端 memcached緩存實例中都寫入了 10條測試數據
並且這些數據的有效時間僅3分鐘,3分鐘後再次驗證會發現數據已過時
[root@localhost ~]# telnet 127.0.0.1 11211 Trying 127.0.0.1... Connected to 127.0.0.1. Escape character is '^]'. get key_0 VALUE key_0 0 6 data_0 END get key_1 VALUE key_1 0 6 data_1 END get key_2 VALUE key_2 0 6 data_2 END get key_3 VALUE key_3 0 6 data_3 END get key_4 VALUE key_4 0 6 data_4 END get key_5 VALUE key_5 0 6 data_5 END get key_6 VALUE key_6 0 6 data_6 END get key_7 VALUE key_7 0 6 data_7 END get key_8 VALUE key_8 0 6 data_8 END get key_9 VALUE key_9 0 6 data_9 END
固然本文所演示的 EVCache配合 memcached使用時,memcached被硬編碼進代碼,實際過程當中使用,能夠將其與 ZK等服務發現服務進行一個結合,實現靈活運用,這就不在本文進行贅述。
因爲能力有限,如有錯誤或者不當之處,還請你們批評指正,一塊兒學習交流!