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5.7 KiB
5.7 KiB
Async Testing Patterns
Key Principle
Test.stopTest() forces all async operations to execute synchronously, allowing assertions on their results.
Batch Apex Testing
Basic Batch Test
Critical: In test context only one execute() invocation runs, so always set batchSize >= testRecordCount (e.g., Database.executeBatch(batch, 200) with 200 records). Never create more records than the batch size.
@isTest
static void shouldProcessAllRecords_WhenBatchExecutes() {
List<Account> accounts = TestDataFactory.createAccounts(200, true);
Test.startTest();
MyBatchClass batch = new MyBatchClass();
Id batchId = Database.executeBatch(batch, 200);
Test.stopTest();
List<Account> updated = [SELECT Id, Status__c FROM Account];
for (Account acc : updated) {
Assert.areEqual('Processed', acc.Status__c,
'Batch should update all account statuses');
}
}
Batch with Failures
@isTest
static void shouldLogErrors_WhenRecordsFail() {
List<Account> accounts = TestDataFactory.createAccounts(198, true);
List<Account> invalidAccounts = new List<Account>();
for (Integer i = 0; i < 2; i++) {
invalidAccounts.add(new Account(
Name = 'Invalid Account ' + i,
Invalid_Field__c = 'triggers_validation_error'
));
}
insert invalidAccounts;
Test.startTest();
MyBatchClass batch = new MyBatchClass();
Database.executeBatch(batch, 200);
Test.stopTest();
List<Error_Log__c> errors = [SELECT Id, Message__c FROM Error_Log__c];
Assert.areEqual(2, errors.size(), 'Should log 2 failed records');
}
Batch Chaining
Test finish() chaining in a separate test method — calling Database.executeBatch() inside finish() during a test can throw UnexpectedException. Verify the first batch independently, then test that finish() enqueues the next batch.
Queueable Testing
Basic Queueable Test
@isTest
static void shouldCompleteProcessing_WhenQueueableEnqueued() {
Account acc = TestDataFactory.createAccount(true);
Test.startTest();
MyQueueableClass queueable = new MyQueueableClass(acc.Id);
System.enqueueJob(queueable);
Test.stopTest();
Account updated = [SELECT Id, Status__c FROM Account WHERE Id = :acc.Id];
Assert.areEqual('Processed', updated.Status__c,
'Queueable should update account status');
}
Queueable Chaining
Only the first chained queueable executes in tests. Design tests to verify:
- First job completes correctly
- Chain is properly enqueued (query
AsyncApexJob) - Each job works independently in its own test method
@isTest
static void shouldChainNextJob_WhenMoreRecordsExist() {
List<Account> accounts = TestDataFactory.createAccounts(500, true);
Test.startTest();
MyChainedQueueable queueable = new MyChainedQueueable(0, 100);
System.enqueueJob(queueable);
Test.stopTest();
List<Account> processed = [SELECT Id FROM Account WHERE Processed__c = true];
Assert.areEqual(100, processed.size(), 'First batch should process 100 records');
List<AsyncApexJob> jobs = [
SELECT Id, Status, JobType
FROM AsyncApexJob
WHERE ApexClass.Name = 'MyChainedQueueable'
];
Assert.isTrue(jobs.size() >= 1, 'Chained job should be enqueued');
}
Queueable with Callouts
Set the callout mock before Test.startTest():
@isTest
static void shouldMakeCallout_WhenQueueableWithCallout() {
Test.setMock(HttpCalloutMock.class, new MockHttpResponse(200, '{"status":"ok"}'));
Account acc = TestDataFactory.createAccount(true);
Test.startTest();
MyQueueableWithCallout queueable = new MyQueueableWithCallout(acc.Id);
System.enqueueJob(queueable);
Test.stopTest();
Account updated = [SELECT Id, External_Status__c FROM Account WHERE Id = :acc.Id];
Assert.areEqual('Synced', updated.External_Status__c,
'Should update status after successful callout');
}
Future Method Testing
@isTest
static void shouldExecuteFutureMethod() {
Account acc = TestDataFactory.createAccount(true);
Test.startTest();
MyClass.processFuture(acc.Id);
Test.stopTest();
Account updated = [SELECT Id, Processed__c FROM Account WHERE Id = :acc.Id];
Assert.isTrue(updated.Processed__c, 'Future should process record');
}
Scheduled Apex Testing
Direct Execution
@isTest
static void shouldExecuteScheduledJob() {
List<Account> accounts = TestDataFactory.createAccounts(50, true);
Test.startTest();
MyScheduledClass scheduled = new MyScheduledClass();
scheduled.execute(null);
Test.stopTest();
List<Account> processed = [SELECT Id FROM Account WHERE Processed__c = true];
Assert.areEqual(50, processed.size(), 'Scheduled job should process records');
}
CRON Registration
@isTest
static void shouldScheduleJob() {
Test.startTest();
String cronExp = '0 0 6 * * ?';
String jobId = System.schedule('Daily Processing', cronExp, new MyScheduledClass());
Test.stopTest();
CronTrigger ct = [
SELECT Id, CronExpression, State
FROM CronTrigger
WHERE Id = :jobId
];
Assert.areEqual('0 0 6 * * ?', ct.CronExpression, 'CRON should match');
Assert.areEqual('WAITING', ct.State, 'Job should be waiting');
}
Common Pitfalls
| Pitfall | Impact |
|---|---|
Missing Test.stopTest() |
Async never executes, assertions fail silently |
| Expecting all chained queueables to run | Only the first runs; test each independently |
Mock set after Test.startTest() |
Callout mock must be set before Test.startTest() |
| Batch size < record count in tests | Only batchSize records processed; set batchSize >= recordCount |