package F1;

/* JADX INFO: loaded from: classes.dex */
public enum J {
    DEFAULT,
    LAZY,
    ATOMIC,
    UNDISPATCHED;

    public /* synthetic */ class a {

        /* JADX INFO: renamed from: a, reason: collision with root package name */
        public static final /* synthetic */ int[] f584a;

        static {
            int[] iArr = new int[J.values().length];
            iArr[J.DEFAULT.ordinal()] = 1;
            iArr[J.ATOMIC.ordinal()] = 2;
            iArr[J.UNDISPATCHED.ordinal()] = 3;
            iArr[J.LAZY.ordinal()] = 4;
            f584a = iArr;
        }
    }

    public static /* synthetic */ void isLazy$annotations() {
    }

    public final <T> void invoke(y1.l lVar, q1.d dVar) throws Throwable {
        int i2 = a.f584a[ordinal()];
        if (i2 == 1) {
            H1.a.d(lVar, dVar);
            return;
        }
        if (i2 == 2) {
            q1.f.a(lVar, dVar);
        } else if (i2 == 3) {
            H1.b.a(lVar, dVar);
        } else if (i2 != 4) {
            throw new n1.j();
        }
    }

    public final boolean isLazy() {
        return this == LAZY;
    }

    public final <R, T> void invoke(y1.p pVar, R r2, q1.d dVar) throws Throwable {
        int i2 = a.f584a[ordinal()];
        if (i2 == 1) {
            H1.a.f(pVar, r2, dVar, null, 4, null);
            return;
        }
        if (i2 == 2) {
            q1.f.b(pVar, r2, dVar);
        } else if (i2 == 3) {
            H1.b.b(pVar, r2, dVar);
        } else if (i2 != 4) {
            throw new n1.j();
        }
    }
}
