/**
* Copyright (c) 2016-present, RxJava Contributors.
*
* Licensed under the Apache License, Version 2.0 (the "License"); you may not use this file except in
* compliance with the License. You may obtain a copy of the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software distributed under the License is
* distributed on an "AS IS" BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. See
* the License for the specific language governing permissions and limitations under the License.
*/
package io.reactivex.internal.operators.maybe;
import java.util.*;
import java.util.concurrent.TimeUnit;
import static org.junit.Assert.*;
import org.junit.Test;
import io.reactivex.*;
import io.reactivex.Observer;
import io.reactivex.disposables.Disposable;
import io.reactivex.exceptions.TestException;
import io.reactivex.functions.Function;
import io.reactivex.internal.fuseable.QueueDisposable;
import io.reactivex.internal.util.CrashingIterable;
import io.reactivex.observers.*;
import io.reactivex.schedulers.Schedulers;
public class MaybeFlatMapIterableObservableTest {
@Test
public void normal() {
Maybe.just(1).flattenAsObservable(new Function<Integer, Iterable<Integer>>() {
@Override
public Iterable<Integer> apply(Integer v) throws Exception {
return Arrays.asList(v, v + 1);
}
})
.test()
.assertResult(1, 2);
}
@Test
public void emptyIterable() {
Maybe.just(1).flattenAsObservable(new Function<Integer, Iterable<Integer>>() {
@Override
public Iterable<Integer> apply(Integer v) throws Exception {
return Collections.<Integer>emptyList();
}
})
.test()
.assertResult();
}
@Test
public void error() {
Maybe.<Integer>error(new TestException()).flattenAsObservable(new Function<Integer, Iterable<Integer>>() {
@Override
public Iterable<Integer> apply(Integer v) throws Exception {
return Arrays.asList(v, v + 1);
}
})
.test()
.assertFailure(TestException.class);
}
@Test
public void empty() {
Maybe.<Integer>empty().flattenAsObservable(new Function<Integer, Iterable<Integer>>() {
@Override
public Iterable<Integer> apply(Integer v) throws Exception {
return Arrays.asList(v, v + 1);
}
})
.test()
.assertResult();
}
@Test
public void take() {
Maybe.just(1).flattenAsObservable(new Function<Integer, Iterable<Integer>>() {
@Override
public Iterable<Integer> apply(Integer v) throws Exception {
return Arrays.asList(v, v + 1);
}
})
.take(1)
.test()
.assertResult(1);
}
@Test
public void fused() {
TestObserver<Integer> to = ObserverFusion.newTest(QueueDisposable.ANY);
Maybe.just(1).flattenAsObservable(new Function<Integer, Iterable<Integer>>() {
@Override
public Iterable<Integer> apply(Integer v) throws Exception {
return Arrays.asList(v, v + 1);
}
})
.subscribe(to);
to.assertOf(ObserverFusion.<Integer>assertFuseable())
.assertOf(ObserverFusion.<Integer>assertFusionMode(QueueDisposable.ASYNC))
.assertResult(1, 2);
;
}
@Test
public void fusedNoSync() {
TestObserver<Integer> to = ObserverFusion.newTest(QueueDisposable.SYNC);
Maybe.just(1).flattenAsObservable(new Function<Integer, Iterable<Integer>>() {
@Override
public Iterable<Integer> apply(Integer v) throws Exception {
return Arrays.asList(v, v + 1);
}
})
.subscribe(to);
to.assertOf(ObserverFusion.<Integer>assertFuseable())
.assertOf(ObserverFusion.<Integer>assertFusionMode(QueueDisposable.NONE))
.assertResult(1, 2);
;
}
@Test
public void iteratorCrash() {
Maybe.just(1).flattenAsObservable(new Function<Integer, Iterable<Integer>>() {
@Override
public Iterable<Integer> apply(Integer v) throws Exception {
return new CrashingIterable(1, 100, 100);
}
})
.test()
.assertFailureAndMessage(TestException.class, "iterator()");
}
@Test
public void hasNextCrash() {
Maybe.just(1).flattenAsObservable(new Function<Integer, Iterable<Integer>>() {
@Override
public Iterable<Integer> apply(Integer v) throws Exception {
return new CrashingIterable(100, 1, 100);
}
})
.test()
.assertFailureAndMessage(TestException.class, "hasNext()");
}
@Test
public void nextCrash() {
Maybe.just(1).flattenAsObservable(new Function<Integer, Iterable<Integer>>() {
@Override
public Iterable<Integer> apply(Integer v) throws Exception {
return new CrashingIterable(100, 100, 1);
}
})
.test()
.assertFailureAndMessage(TestException.class, "next()");
}
@Test
public void hasNextCrash2() {
Maybe.just(1).flattenAsObservable(new Function<Integer, Iterable<Integer>>() {
@Override
public Iterable<Integer> apply(Integer v) throws Exception {
return new CrashingIterable(100, 2, 100);
}
})
.test()
.assertFailureAndMessage(TestException.class, "hasNext()", 0);
}
@Test
public void doubleOnSubscribe() {
TestHelper.checkDoubleOnSubscribeMaybeToObservable(new Function<Maybe<Object>, ObservableSource<Integer>>() {
@Override
public ObservableSource<Integer> apply(Maybe<Object> o) throws Exception {
return o.flattenAsObservable(new Function<Object, Iterable<Integer>>() {
@Override
public Iterable<Integer> apply(Object v) throws Exception {
return Collections.singleton(1);
}
});
}
});
}
@Test
public void dispose() {
TestHelper.checkDisposed(Maybe.just(1).flattenAsObservable(new Function<Object, Iterable<Integer>>() {
@Override
public Iterable<Integer> apply(Object v) throws Exception {
return Collections.singleton(1);
}
}));
}
@Test
public void async1() {
Maybe.just(1)
.flattenAsObservable(new Function<Object, Iterable<Integer>>() {
@Override
public Iterable<Integer> apply(Object v) throws Exception {
Integer[] array = new Integer[1000 * 1000];
Arrays.fill(array, 1);
return Arrays.asList(array);
}
})
.hide()
.observeOn(Schedulers.single())
.test()
.awaitDone(5, TimeUnit.SECONDS)
.assertSubscribed()
.assertValueCount(1000 * 1000)
.assertNoErrors()
.assertComplete();
}
@Test
public void async2() {
Maybe.just(1)
.flattenAsObservable(new Function<Object, Iterable<Integer>>() {
@Override
public Iterable<Integer> apply(Object v) throws Exception {
Integer[] array = new Integer[1000 * 1000];
Arrays.fill(array, 1);
return Arrays.asList(array);
}
})
.observeOn(Schedulers.single())
.test()
.awaitDone(5, TimeUnit.SECONDS)
.assertSubscribed()
.assertValueCount(1000 * 1000)
.assertNoErrors()
.assertComplete();
}
@Test
public void async3() {
Maybe.just(1)
.flattenAsObservable(new Function<Object, Iterable<Integer>>() {
@Override
public Iterable<Integer> apply(Object v) throws Exception {
Integer[] array = new Integer[1000 * 1000];
Arrays.fill(array, 1);
return Arrays.asList(array);
}
})
.take(500 * 1000)
.observeOn(Schedulers.single())
.test()
.awaitDone(5, TimeUnit.SECONDS)
.assertSubscribed()
.assertValueCount(500 * 1000)
.assertNoErrors()
.assertComplete();
}
@Test
public void async4() {
Maybe.just(1)
.flattenAsObservable(new Function<Object, Iterable<Integer>>() {
@Override
public Iterable<Integer> apply(Object v) throws Exception {
Integer[] array = new Integer[1000 * 1000];
Arrays.fill(array, 1);
return Arrays.asList(array);
}
})
.observeOn(Schedulers.single())
.take(500 * 1000)
.test()
.awaitDone(5, TimeUnit.SECONDS)
.assertSubscribed()
.assertValueCount(500 * 1000)
.assertNoErrors()
.assertComplete();
}
@Test
public void fusedEmptyCheck() {
Maybe.just(1)
.flattenAsObservable(new Function<Object, Iterable<Integer>>() {
@Override
public Iterable<Integer> apply(Object v) throws Exception {
return Arrays.asList(1, 2, 3);
}
}).subscribe(new Observer<Integer>() {
QueueDisposable<Integer> qd;
@SuppressWarnings("unchecked")
@Override
public void onSubscribe(Disposable d) {
qd = (QueueDisposable<Integer>)d;
assertEquals(QueueDisposable.ASYNC, qd.requestFusion(QueueDisposable.ANY));
}
@Override
public void onNext(Integer value) {
assertFalse(qd.isEmpty());
qd.clear();
assertTrue(qd.isEmpty());
qd.dispose();
}
@Override
public void onError(Throwable e) {
}
@Override
public void onComplete() {
}
});
}
}