Best Testng code snippet using org.testng.Interface ITestNGMethod.setInvocationCount
Source:ITestNGMethod.java
...161 /**162 * @return the number of times this method needs to be invoked.163 */164 int getInvocationCount();165 void setInvocationCount(int count);166167 /**168 * @return the total number of thimes this method needs to be invoked, including possible169 * clones of this method - this is relevant when threadPoolSize is bigger than 1170 * where each clone of this method is only invoked once individually, i.e.171 * {@link org.testng.ITestNGMethod#getInvocationCount()} would always return 1.172 */173 int getTotalInvocationCount();174175 /**176 * @return the success percentage for this method (between 0 and 100).177 */178 int getSuccessPercentage();179
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setInvocationCount
Using AI Code Generation
1import org.testng.ITestNGMethod;2import org.testng.annotations.Test;3public class SetInvocationCount {4 @Test(invocationCount = 3)5 public void test1() {6 System.out.println("Test 1");7 }8 @Test(invocationCount = 3, invocationTimeOut = 1000)9 public void test2() {10 System.out.println("Test 2");11 }12 @Test(invocationCount = 3, invocationTimeOut = 1000, threadPoolSize = 3)13 public void test3() {14 System.out.println("Test 3");15 }16 @Test(invocationCount = 3, invocationTimeOut = 1000, threadPoolSize = 3, successPercentage = 80)17 public void test4() {18 System.out.println("Test 4");19 }20 @Test(invocationCount = 3, invocationTimeOut = 1000, threadPoolSize = 3, successPercentage = 80, timeOut = 1000)21 public void test5() {22 System.out.println("Test 5");23 }24 @Test(invocationCount = 3, invocationTimeOut = 1000, threadPoolSize = 3, successPercentage = 80, timeOut = 1000, sequential = true)25 public void test6() {26 System.out.println("Test 6");27 }28 @Test(invocationCount = 3, invocationTimeOut = 1000, threadPoolSize = 3, successPercentage = 80, timeOut = 1000, sequential = true, enabled = false)29 public void test7() {30 System.out.println("Test 7");31 }32 @Test(invocationCount = 3, invocationTimeOut = 1000, threadPoolSize = 3, successPercentage = 80, timeOut = 1000, sequential = true, enabled = false, dependsOnMethods = "test1")33 public void test8() {34 System.out.println("Test 8");35 }36 @Test(invocationCount = 3, invocationTimeOut = 1000, threadPoolSize = 3, successPercentage = 80, timeOut = 1000, sequential = true, enabled = false, dependsOnMethods = "test1", priority = 3)37 public void test9() {
setInvocationCount
Using AI Code Generation
1package com.javacodegeeks.testng.maven;2import org.testng.ITestNGMethod;3import org.testng.annotations.Test;4public class TestNGTest {5 @Test(invocationCount = 10, threadPoolSize = 10)6 public void testMethod() {7 System.out.println("TestNG Thread Pool Example!");8 }9 public void testMethod2() {10 System.out.println("TestNG Thread Pool Example!");11 }12 public void testMethod3() {13 System.out.println("TestNG Thread Pool Example!");14 }15 public void testMethod4() {16 System.out.println("TestNG Thread Pool Example!");17 }18 public void testMethod5() {19 System.out.println("TestNG Thread Pool Example!");20 }21 public void testMethod6() {22 System.out.println("TestNG Thread Pool Example!");23 }24 public void testMethod7() {25 System.out.println("TestNG Thread Pool Example!");26 }27 public void testMethod8() {28 System.out.println("TestNG Thread Pool Example!");29 }30 public void testMethod9() {31 System.out.println("TestNG Thread Pool Example!");32 }33 public void testMethod10() {34 System.out.println("TestNG Thread Pool Example!");35 }36 public void testMethod11() {37 System.out.println("TestNG Thread Pool Example!");38 }39 public void testMethod12() {40 System.out.println("TestNG Thread Pool Example!");41 }42 public void testMethod13() {43 System.out.println("TestNG Thread Pool Example!");44 }45 public void testMethod14() {46 System.out.println("TestNG Thread Pool Example!");47 }48 public void testMethod15() {49 System.out.println("TestNG Thread Pool Example!");50 }51 public void testMethod16() {52 System.out.println("TestNG Thread Pool Example!");53 }54 public void testMethod17() {55 System.out.println("TestNG Thread Pool Example!");56 }57 public void testMethod18() {58 System.out.println("TestNG Thread Pool Example!");59 }
setInvocationCount
Using AI Code Generation
1@Test(invocationCount=2)2public void testMethod() {3}4@Test(invocationTimeOut=2000)5public void testMethod() {6}7@Test(enabled=false)8public void testMethod() {9}10@Test(priority=1)11public void testMethod() {12}13@Test(successPercentage=90)14public void testMethod() {15}16@Test(skipFailedInvocations=true)17public void testMethod() {18}19@Test(alwaysRun=true)20public void testMethod() {21}22@Test(threadPoolSize=2)23public void testMethod() {24}25@Test(dependsOnMethods={"testMethod1","testMethod2"})26public void testMethod() {27}28@Test(dependsOnGroups={"group1","group2"})29public void testMethod() {30}
setInvocationCount
Using AI Code Generation
1public void testMethod() {2 ITestNGMethod method = Reporter.getCurrentTestResult().getMethod();3 method.setInvocationCount(10);4}5public void testMethod() {6 ITestNGMethod method = Reporter.getCurrentTestResult().getMethod();7 method.setInvocationNumbers(0,1,2,3,4,5,6,7,8,9);8}9public void testMethod() {10 ITestNGMethod method = Reporter.getCurrentTestResult().getMethod();11 method.setInvocationCount(10);12}13public void testMethod() {14 ITestNGMethod method = Reporter.getCurrentTestResult().getMethod();15 method.setInvocationNumbers(0,1,2,3,4,5,6,7,8,9);16}17public void testMethod() {18 ITestNGMethod method = Reporter.getCurrentTestResult().getMethod();19 method.setInvocationCount(10);20}21public void testMethod() {22 ITestNGMethod method = Reporter.getCurrentTestResult().getMethod();23 method.setInvocationNumbers(0,1,2,3,4,5,6,7,8,9);24}25public void testMethod() {26 ITestNGMethod method = Reporter.getCurrentTestResult().getMethod();27 method.setInvocationCount(10);28}29public void testMethod() {30 ITestNGMethod method = Reporter.getCurrentTestResult().getMethod();31 method.setInvocationNumbers(0,1,2,3,4,5,6,7,8,9);32}33public void testMethod() {
TestNG is a Java-based open-source framework for test automation that includes various test types, such as unit testing, functional testing, E2E testing, etc. TestNG is in many ways similar to JUnit and NUnit. But in contrast to its competitors, its extensive features make it a lot more reliable framework. One of the major reasons for its popularity is its ability to structure tests and improve the scripts' readability and maintainability. Another reason can be the important characteristics like the convenience of using multiple annotations, reliance, and priority that make this framework popular among developers and testers for test design. You can refer to the TestNG tutorial to learn why you should choose the TestNG framework.
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