package io.reactivex.internal.operators.observable;
import java.util.concurrent.TimeUnit;
import io.reactivex.*;
import io.reactivex.disposables.Disposable;
import io.reactivex.internal.disposables.DisposableHelper;
import io.reactivex.schedulers.Timed;
public final class ObservableTimeInterval<T> extends AbstractObservableWithUpstream<T, Timed<T>> {
final Scheduler scheduler;
final TimeUnit unit;
public ObservableTimeInterval(ObservableSource<T> source, TimeUnit unit, Scheduler scheduler) {
super(source);
this.scheduler = scheduler;
this.unit = unit;
}
@Override
public void subscribeActual(Observer<? super Timed<T>> t) {
source.subscribe(new TimeIntervalObserver<T>(t, unit, scheduler));
}
static final class TimeIntervalObserver<T> implements Observer<T>, Disposable {
final Observer<? super Timed<T>> downstream;
final TimeUnit unit;
final Scheduler scheduler;
long lastTime;
Disposable upstream;
TimeIntervalObserver(Observer<? super Timed<T>> actual, TimeUnit unit, Scheduler scheduler) {
this.downstream = actual;
this.scheduler = scheduler;
this.unit = unit;
}
@Override
public void onSubscribe(Disposable d) {
if (DisposableHelper.validate(this.upstream, d)) {
this.upstream = d;
lastTime = scheduler.now(unit);
downstream.onSubscribe(this);
}
}
@Override
public void dispose() {
upstream.dispose();
}
@Override
public boolean isDisposed() {
return upstream.isDisposed();
}
@Override
public void onNext(T t) {
long now = scheduler.now(unit);
long last = lastTime;
lastTime = now;
long delta = now - last;
downstream.onNext(new Timed<T>(t, delta, unit));
}
@Override
public void onError(Throwable t) {
downstream.onError(t);
}
@Override
public void onComplete() {
downstream.onComplete();
}
}
}