package i.a.n.g;

import i.a.h;
import java.util.concurrent.PriorityBlockingQueue;
import java.util.concurrent.TimeUnit;
import java.util.concurrent.atomic.AtomicInteger;

/* JADX INFO: compiled from: TrampolineScheduler.java */
/* JADX INFO: loaded from: classes.dex */
public final class m extends i.a.h {
    private static final m b = new m();

    /* JADX INFO: compiled from: TrampolineScheduler.java */
    static final class a implements Runnable {
        private final Runnable b;
        private final c d;
        private final long e;

        a(Runnable runnable, c cVar, long j2) {
            this.b = runnable;
            this.d = cVar;
            this.e = j2;
        }

        @Override // java.lang.Runnable
        public void run() {
            if (this.d.f) {
                return;
            }
            long jA = this.d.a(TimeUnit.MILLISECONDS);
            long j2 = this.e;
            if (j2 > jA) {
                long j3 = j2 - jA;
                if (j3 > 0) {
                    try {
                        Thread.sleep(j3);
                    } catch (InterruptedException e) {
                        Thread.currentThread().interrupt();
                        i.a.p.a.l(e);
                        return;
                    }
                }
            }
            if (this.d.f) {
                return;
            }
            this.b.run();
        }
    }

    /* JADX INFO: compiled from: TrampolineScheduler.java */
    static final class b implements Comparable<b> {
        final Runnable b;
        final long d;
        final int e;
        volatile boolean f;

        b(Runnable runnable, Long l2, int i2) {
            this.b = runnable;
            this.d = l2.longValue();
            this.e = i2;
        }

        @Override // java.lang.Comparable
        /* JADX INFO: renamed from: a, reason: merged with bridge method [inline-methods] */
        public int compareTo(b bVar) {
            int iB = i.a.n.b.b.b(this.d, bVar.d);
            return iB == 0 ? i.a.n.b.b.a(this.e, bVar.e) : iB;
        }
    }

    /* JADX INFO: compiled from: TrampolineScheduler.java */
    static final class c extends h.c implements i.a.k.b {
        final PriorityBlockingQueue<b> b = new PriorityBlockingQueue<>();
        private final AtomicInteger d = new AtomicInteger();
        final AtomicInteger e = new AtomicInteger();
        volatile boolean f;

        /* JADX INFO: compiled from: TrampolineScheduler.java */
        final class a implements Runnable {
            final b b;

            a(b bVar) {
                this.b = bVar;
            }

            @Override // java.lang.Runnable
            public void run() {
                this.b.f = true;
                c.this.b.remove(this.b);
            }
        }

        c() {
        }

        @Override // i.a.h.c
        public i.a.k.b b(Runnable runnable) {
            return e(runnable, a(TimeUnit.MILLISECONDS));
        }

        @Override // i.a.h.c
        public i.a.k.b c(Runnable runnable, long j2, TimeUnit timeUnit) {
            long jA = a(TimeUnit.MILLISECONDS) + timeUnit.toMillis(j2);
            return e(new a(runnable, this, jA), jA);
        }

        @Override // i.a.k.b
        public void dispose() {
            this.f = true;
        }

        i.a.k.b e(Runnable runnable, long j2) {
            if (this.f) {
                return i.a.n.a.c.INSTANCE;
            }
            b bVar = new b(runnable, Long.valueOf(j2), this.e.incrementAndGet());
            this.b.add(bVar);
            if (this.d.getAndIncrement() != 0) {
                return i.a.k.c.b(new a(bVar));
            }
            int iAddAndGet = 1;
            while (!this.f) {
                b bVarPoll = this.b.poll();
                if (bVarPoll == null) {
                    iAddAndGet = this.d.addAndGet(-iAddAndGet);
                    if (iAddAndGet == 0) {
                        return i.a.n.a.c.INSTANCE;
                    }
                } else if (!bVarPoll.f) {
                    bVarPoll.b.run();
                }
            }
            this.b.clear();
            return i.a.n.a.c.INSTANCE;
        }

        @Override // i.a.k.b
        public boolean isDisposed() {
            return this.f;
        }
    }

    m() {
    }

    public static m e() {
        return b;
    }

    @Override // i.a.h
    public h.c a() {
        return new c();
    }

    @Override // i.a.h
    public i.a.k.b b(Runnable runnable) {
        i.a.p.a.o(runnable).run();
        return i.a.n.a.c.INSTANCE;
    }

    @Override // i.a.h
    public i.a.k.b c(Runnable runnable, long j2, TimeUnit timeUnit) {
        try {
            timeUnit.sleep(j2);
            i.a.p.a.o(runnable).run();
        } catch (InterruptedException e) {
            Thread.currentThread().interrupt();
            i.a.p.a.l(e);
        }
        return i.a.n.a.c.INSTANCE;
    }
}
