/** * 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.flowable; import java.util.concurrent.atomic.AtomicInteger; import org.reactivestreams.*; import io.reactivex.*; import io.reactivex.exceptions.*; import io.reactivex.functions.BiPredicate; import io.reactivex.internal.subscriptions.SubscriptionArbiter; public final class FlowableRetryBiPredicate<T> extends AbstractFlowableWithUpstream<T, T> { final BiPredicate<? super Integer, ? super Throwable> predicate; public FlowableRetryBiPredicate( Flowable<T> source, BiPredicate<? super Integer, ? super Throwable> predicate) { super(source); this.predicate = predicate; } @Override public void subscribeActual(Subscriber<? super T> s) { SubscriptionArbiter sa = new SubscriptionArbiter(); s.onSubscribe(sa); RetryBiSubscriber<T> rs = new RetryBiSubscriber<T>(s, predicate, sa, source); rs.subscribeNext(); } // FIXME update to a fresh Rsc algorithm static final class RetryBiSubscriber<T> extends AtomicInteger implements FlowableSubscriber<T> { private static final long serialVersionUID = -7098360935104053232L; final Subscriber<? super T> actual; final SubscriptionArbiter sa; final Publisher<? extends T> source; final BiPredicate<? super Integer, ? super Throwable> predicate; int retries; RetryBiSubscriber(Subscriber<? super T> actual, BiPredicate<? super Integer, ? super Throwable> predicate, SubscriptionArbiter sa, Publisher<? extends T> source) { this.actual = actual; this.sa = sa; this.source = source; this.predicate = predicate; } @Override public void onSubscribe(Subscription s) { sa.setSubscription(s); } @Override public void onNext(T t) { actual.onNext(t); sa.produced(1L); } @Override public void onError(Throwable t) { boolean b; try { b = predicate.test(++retries, t); } catch (Throwable e) { Exceptions.throwIfFatal(e); actual.onError(new CompositeException(t, e)); return; } if (!b) { actual.onError(t); return; } subscribeNext(); } @Override public void onComplete() { actual.onComplete(); } /** * Subscribes to the source again via trampolining. */ void subscribeNext() { if (getAndIncrement() == 0) { int missed = 1; for (;;) { if (sa.isCancelled()) { return; } source.subscribe(this); missed = addAndGet(-missed); if (missed == 0) { break; } } } } } }