package d.a.s.g;

import java.util.concurrent.Future;
import java.util.concurrent.FutureTask;
import java.util.concurrent.atomic.AtomicReference;

/* JADX INFO: loaded from: classes.dex */
public abstract class a extends AtomicReference<Future<?>> implements d.a.p.b {

    /* JADX INFO: renamed from: b, reason: collision with root package name */
    public static final FutureTask<Void> f5830b;

    /* JADX INFO: renamed from: c, reason: collision with root package name */
    public static final FutureTask<Void> f5831c;

    /* JADX INFO: renamed from: d, reason: collision with root package name */
    public final Runnable f5832d;

    /* JADX INFO: renamed from: e, reason: collision with root package name */
    public Thread f5833e;

    static {
        Runnable runnable = d.a.s.b.a.f5686a;
        f5830b = new FutureTask<>(runnable, null);
        f5831c = new FutureTask<>(runnable, null);
    }

    public a(Runnable runnable) {
        this.f5832d = runnable;
    }

    public final void a(Future<?> future) {
        Future<?> future2;
        do {
            future2 = get();
            if (future2 == f5830b) {
                return;
            }
            if (future2 == f5831c) {
                future.cancel(this.f5833e != Thread.currentThread());
                return;
            }
        } while (!compareAndSet(future2, future));
    }

    @Override // d.a.p.b
    public final void dispose() {
        FutureTask<Void> futureTask;
        Future<?> future = get();
        if (future == f5830b || future == (futureTask = f5831c) || !compareAndSet(future, futureTask) || future == null) {
            return;
        }
        future.cancel(this.f5833e != Thread.currentThread());
    }

    @Override // d.a.p.b
    public final boolean isDisposed() {
        Future<?> future = get();
        return future == f5830b || future == f5831c;
    }
}
