package kotlinx.coroutines.scheduling;

import java.util.concurrent.TimeUnit;
import kotlinx.coroutines.internal.s;
import kotlinx.coroutines.internal.u;

/* JADX INFO: loaded from: classes2.dex */
public abstract class l {

    /* JADX INFO: renamed from: a, reason: collision with root package name */
    public static final long f5228a = u.e("kotlinx.coroutines.scheduler.resolution.ns", 100000, 0, 0, 12, null);

    /* JADX INFO: renamed from: b, reason: collision with root package name */
    public static final int f5229b = u.d("kotlinx.coroutines.scheduler.blocking.parallelism", 16, 0, 0, 12, null);

    /* JADX INFO: renamed from: c, reason: collision with root package name */
    public static final int f5230c;

    /* JADX INFO: renamed from: d, reason: collision with root package name */
    public static final int f5231d;

    /* JADX INFO: renamed from: e, reason: collision with root package name */
    public static final long f5232e;

    /* JADX INFO: renamed from: f, reason: collision with root package name */
    public static h f5233f;

    static {
        int iD = u.d("kotlinx.coroutines.scheduler.core.pool.size", kotlin.ranges.m.b(s.a(), 2), 1, 0, 8, null);
        f5230c = iD;
        f5231d = u.d("kotlinx.coroutines.scheduler.max.pool.size", kotlin.ranges.m.f(s.a() * 128, iD, 2097150), 0, 2097150, 4, null);
        f5232e = TimeUnit.SECONDS.toNanos(u.e("kotlinx.coroutines.scheduler.keep.alive.sec", 60L, 0L, 0L, 12, null));
        f5233f = f.f5222a;
    }
}
