package A;

import b0.t;
import n.x;

/* JADX INFO: loaded from: classes.dex */
final class k extends e {

    /* JADX INFO: renamed from: b, reason: collision with root package name */
    private final t f129b;

    /* JADX INFO: renamed from: c, reason: collision with root package name */
    private final b0.l f130c;

    /* JADX INFO: renamed from: d, reason: collision with root package name */
    private int f131d;

    /* JADX INFO: renamed from: e, reason: collision with root package name */
    private int f132e;

    /* JADX INFO: renamed from: f, reason: collision with root package name */
    private boolean f133f;

    /* JADX INFO: renamed from: g, reason: collision with root package name */
    private boolean f134g;

    /* JADX INFO: renamed from: h, reason: collision with root package name */
    private long f135h;

    /* JADX INFO: renamed from: i, reason: collision with root package name */
    private int f136i;

    /* JADX INFO: renamed from: j, reason: collision with root package name */
    private long f137j;

    public k(v.o oVar) {
        super(oVar);
        this.f131d = 0;
        t tVar = new t(4);
        this.f129b = tVar;
        tVar.f3092a[0] = -1;
        this.f130c = new b0.l();
    }

    private void e(t tVar) {
        byte[] bArr = tVar.f3092a;
        int iD = tVar.d();
        for (int iC = tVar.c(); iC < iD; iC++) {
            byte b2 = bArr[iC];
            boolean z2 = (b2 & 255) == 255;
            boolean z3 = this.f134g && (b2 & 224) == 224;
            this.f134g = z2;
            if (z3) {
                tVar.B(iC + 1);
                this.f134g = false;
                this.f129b.f3092a[1] = bArr[iC];
                this.f132e = 2;
                this.f131d = 1;
                return;
            }
        }
        tVar.B(iD);
    }

    private void f(t tVar) {
        int iMin = Math.min(tVar.a(), this.f136i - this.f132e);
        this.f38a.a(tVar, iMin);
        int i2 = this.f132e + iMin;
        this.f132e = i2;
        int i3 = this.f136i;
        if (i2 < i3) {
            return;
        }
        this.f38a.e(this.f137j, 1, i3, 0, null);
        this.f137j += this.f135h;
        this.f132e = 0;
        this.f131d = 0;
    }

    private void g(t tVar) {
        int iMin = Math.min(tVar.a(), 4 - this.f132e);
        tVar.e(this.f129b.f3092a, this.f132e, iMin);
        int i2 = this.f132e + iMin;
        this.f132e = i2;
        if (i2 < 4) {
            return;
        }
        this.f129b.B(0);
        if (!b0.l.b(this.f129b.h(), this.f130c)) {
            this.f132e = 0;
            this.f131d = 1;
            return;
        }
        b0.l lVar = this.f130c;
        this.f136i = lVar.f3026c;
        if (!this.f133f) {
            long j2 = ((long) lVar.f3030g) * 1000000;
            int i3 = lVar.f3027d;
            this.f135h = j2 / ((long) i3);
            this.f38a.c(x.h(null, lVar.f3025b, -1, 4096, -1L, lVar.f3028e, i3, null, null));
            this.f133f = true;
        }
        this.f129b.B(0);
        this.f38a.a(this.f129b, 4);
        this.f131d = 2;
    }

    @Override // A.e
    public void a(t tVar) {
        while (tVar.a() > 0) {
            int i2 = this.f131d;
            if (i2 == 0) {
                e(tVar);
            } else if (i2 == 1) {
                g(tVar);
            } else if (i2 == 2) {
                f(tVar);
            }
        }
    }

    @Override // A.e
    public void b() {
    }

    @Override // A.e
    public void c(long j2, boolean z2) {
        this.f137j = j2;
    }

    @Override // A.e
    public void d() {
        this.f131d = 0;
        this.f132e = 0;
        this.f134g = false;
    }
}
